187255e34SAndrew Trick //===- CodeGenSchedule.cpp - Scheduling MachineModels ---------------------===//
287255e34SAndrew Trick //
387255e34SAndrew Trick //                     The LLVM Compiler Infrastructure
487255e34SAndrew Trick //
587255e34SAndrew Trick // This file is distributed under the University of Illinois Open Source
687255e34SAndrew Trick // License. See LICENSE.TXT for details.
787255e34SAndrew Trick //
887255e34SAndrew Trick //===----------------------------------------------------------------------===//
987255e34SAndrew Trick //
10cb402911SAlp Toker // This file defines structures to encapsulate the machine model as described in
1187255e34SAndrew Trick // the target description.
1287255e34SAndrew Trick //
1387255e34SAndrew Trick //===----------------------------------------------------------------------===//
1487255e34SAndrew Trick 
1587255e34SAndrew Trick #include "CodeGenSchedule.h"
16cbce2f02SBenjamin Kramer #include "CodeGenInstruction.h"
1787255e34SAndrew Trick #include "CodeGenTarget.h"
18cbce2f02SBenjamin Kramer #include "llvm/ADT/STLExtras.h"
19a3fe70d2SEugene Zelenko #include "llvm/ADT/SmallPtrSet.h"
20a3fe70d2SEugene Zelenko #include "llvm/ADT/SmallSet.h"
21a3fe70d2SEugene Zelenko #include "llvm/ADT/SmallVector.h"
22a3fe70d2SEugene Zelenko #include "llvm/Support/Casting.h"
2387255e34SAndrew Trick #include "llvm/Support/Debug.h"
249e1deb69SAndrew Trick #include "llvm/Support/Regex.h"
25cbce2f02SBenjamin Kramer #include "llvm/Support/raw_ostream.h"
2691d19d8eSChandler Carruth #include "llvm/TableGen/Error.h"
27a3fe70d2SEugene Zelenko #include <algorithm>
28a3fe70d2SEugene Zelenko #include <iterator>
29a3fe70d2SEugene Zelenko #include <utility>
3087255e34SAndrew Trick 
3187255e34SAndrew Trick using namespace llvm;
3287255e34SAndrew Trick 
3397acce29SChandler Carruth #define DEBUG_TYPE "subtarget-emitter"
3497acce29SChandler Carruth 
3576686496SAndrew Trick #ifndef NDEBUG
36e1761952SBenjamin Kramer static void dumpIdxVec(ArrayRef<unsigned> V) {
37e1761952SBenjamin Kramer   for (unsigned Idx : V)
38e1761952SBenjamin Kramer     dbgs() << Idx << ", ";
3933401e84SAndrew Trick }
4076686496SAndrew Trick #endif
4176686496SAndrew Trick 
4205c5a932SJuergen Ributzka namespace {
43a3fe70d2SEugene Zelenko 
449e1deb69SAndrew Trick // (instrs a, b, ...) Evaluate and union all arguments. Identical to AddOp.
459e1deb69SAndrew Trick struct InstrsOp : public SetTheory::Operator {
46716b0730SCraig Topper   void apply(SetTheory &ST, DagInit *Expr, SetTheory::RecSet &Elts,
47716b0730SCraig Topper              ArrayRef<SMLoc> Loc) override {
4870909373SJoerg Sonnenberger     ST.evaluate(Expr->arg_begin(), Expr->arg_end(), Elts, Loc);
499e1deb69SAndrew Trick   }
5005c5a932SJuergen Ributzka };
519e1deb69SAndrew Trick 
529e1deb69SAndrew Trick // (instregex "OpcPat",...) Find all instructions matching an opcode pattern.
539e1deb69SAndrew Trick struct InstRegexOp : public SetTheory::Operator {
549e1deb69SAndrew Trick   const CodeGenTarget &Target;
559e1deb69SAndrew Trick   InstRegexOp(const CodeGenTarget &t): Target(t) {}
569e1deb69SAndrew Trick 
57cbce2f02SBenjamin Kramer   /// Remove any text inside of parentheses from S.
58cbce2f02SBenjamin Kramer   static std::string removeParens(llvm::StringRef S) {
59cbce2f02SBenjamin Kramer     std::string Result;
60cbce2f02SBenjamin Kramer     unsigned Paren = 0;
61cbce2f02SBenjamin Kramer     // NB: We don't care about escaped parens here.
62cbce2f02SBenjamin Kramer     for (char C : S) {
63cbce2f02SBenjamin Kramer       switch (C) {
64cbce2f02SBenjamin Kramer       case '(':
65cbce2f02SBenjamin Kramer         ++Paren;
66cbce2f02SBenjamin Kramer         break;
67cbce2f02SBenjamin Kramer       case ')':
68cbce2f02SBenjamin Kramer         --Paren;
69cbce2f02SBenjamin Kramer         break;
70cbce2f02SBenjamin Kramer       default:
71cbce2f02SBenjamin Kramer         if (Paren == 0)
72cbce2f02SBenjamin Kramer           Result += C;
73cbce2f02SBenjamin Kramer       }
74cbce2f02SBenjamin Kramer     }
75cbce2f02SBenjamin Kramer     return Result;
76cbce2f02SBenjamin Kramer   }
77cbce2f02SBenjamin Kramer 
7805c5a932SJuergen Ributzka   void apply(SetTheory &ST, DagInit *Expr, SetTheory::RecSet &Elts,
79716b0730SCraig Topper              ArrayRef<SMLoc> Loc) override {
80fc500041SJaved Absar     for (Init *Arg : make_range(Expr->arg_begin(), Expr->arg_end())) {
81fc500041SJaved Absar       StringInit *SI = dyn_cast<StringInit>(Arg);
829e1deb69SAndrew Trick       if (!SI)
83cbce2f02SBenjamin Kramer         PrintFatalError(Loc, "instregex requires pattern string: " +
84cbce2f02SBenjamin Kramer                                  Expr->getAsString());
85*75cc2f9eSSimon Pilgrim       StringRef Original = SI->getValue();
86*75cc2f9eSSimon Pilgrim 
87cbce2f02SBenjamin Kramer       // Extract a prefix that we can binary search on.
88cbce2f02SBenjamin Kramer       static const char RegexMetachars[] = "()^$|*+?.[]\\{}";
89*75cc2f9eSSimon Pilgrim       auto FirstMeta = Original.find_first_of(RegexMetachars);
90*75cc2f9eSSimon Pilgrim 
91cbce2f02SBenjamin Kramer       // Look for top-level | or ?. We cannot optimize them to binary search.
92*75cc2f9eSSimon Pilgrim       if (removeParens(Original).find_first_of("|?") != std::string::npos)
93cbce2f02SBenjamin Kramer         FirstMeta = 0;
94*75cc2f9eSSimon Pilgrim 
95*75cc2f9eSSimon Pilgrim       Optional<Regex> Regexpr = None;
96*75cc2f9eSSimon Pilgrim       StringRef Prefix = Original.substr(0, FirstMeta);
97*75cc2f9eSSimon Pilgrim       std::string pat = Original.substr(FirstMeta);
98*75cc2f9eSSimon Pilgrim       if (!pat.empty()) {
99cbce2f02SBenjamin Kramer         // For the rest use a python-style prefix match.
1009e1deb69SAndrew Trick         if (pat[0] != '^') {
1019e1deb69SAndrew Trick           pat.insert(0, "^(");
1029e1deb69SAndrew Trick           pat.insert(pat.end(), ')');
1039e1deb69SAndrew Trick         }
104*75cc2f9eSSimon Pilgrim         Regexpr = Regex(pat);
1059e1deb69SAndrew Trick       }
106*75cc2f9eSSimon Pilgrim 
1074890a71fSBenjamin Kramer       unsigned NumGeneric = Target.getNumFixedInstructions();
108*75cc2f9eSSimon Pilgrim       ArrayRef<const CodeGenInstruction *> Generics =
109*75cc2f9eSSimon Pilgrim           Target.getInstructionsByEnumValue().slice(0, NumGeneric + 1);
110*75cc2f9eSSimon Pilgrim 
111cbce2f02SBenjamin Kramer       // The generic opcodes are unsorted, handle them manually.
112*75cc2f9eSSimon Pilgrim       for (auto *Inst : Generics) {
113*75cc2f9eSSimon Pilgrim         StringRef InstName = Inst->TheDef->getName();
114*75cc2f9eSSimon Pilgrim         if (InstName.startswith(Prefix) &&
115*75cc2f9eSSimon Pilgrim             (!Regexpr || Regexpr->match(InstName.substr(Prefix.size()))))
116cbce2f02SBenjamin Kramer           Elts.insert(Inst->TheDef);
117cbce2f02SBenjamin Kramer       }
118cbce2f02SBenjamin Kramer 
119cbce2f02SBenjamin Kramer       ArrayRef<const CodeGenInstruction *> Instructions =
1204890a71fSBenjamin Kramer           Target.getInstructionsByEnumValue().slice(NumGeneric + 1);
121cbce2f02SBenjamin Kramer 
122cbce2f02SBenjamin Kramer       // Target instructions are sorted. Find the range that starts with our
123cbce2f02SBenjamin Kramer       // prefix.
124cbce2f02SBenjamin Kramer       struct Comp {
125cbce2f02SBenjamin Kramer         bool operator()(const CodeGenInstruction *LHS, StringRef RHS) {
126cbce2f02SBenjamin Kramer           return LHS->TheDef->getName() < RHS;
127cbce2f02SBenjamin Kramer         }
128cbce2f02SBenjamin Kramer         bool operator()(StringRef LHS, const CodeGenInstruction *RHS) {
129cbce2f02SBenjamin Kramer           return LHS < RHS->TheDef->getName() &&
130cbce2f02SBenjamin Kramer                  !RHS->TheDef->getName().startswith(LHS);
131cbce2f02SBenjamin Kramer         }
132cbce2f02SBenjamin Kramer       };
133cbce2f02SBenjamin Kramer       auto Range = std::equal_range(Instructions.begin(), Instructions.end(),
134*75cc2f9eSSimon Pilgrim                                     Prefix, Comp());
135cbce2f02SBenjamin Kramer 
136cbce2f02SBenjamin Kramer       // For this range we know that it starts with the prefix. Check if there's
137cbce2f02SBenjamin Kramer       // a regex that needs to be checked.
138cbce2f02SBenjamin Kramer       for (auto *Inst : make_range(Range)) {
139*75cc2f9eSSimon Pilgrim         StringRef InstName = Inst->TheDef->getName();
140*75cc2f9eSSimon Pilgrim         if (!Regexpr || Regexpr->match(InstName.substr(Prefix.size())))
1418a417c1fSCraig Topper           Elts.insert(Inst->TheDef);
1429e1deb69SAndrew Trick       }
1439e1deb69SAndrew Trick     }
1449e1deb69SAndrew Trick   }
14505c5a932SJuergen Ributzka };
146a3fe70d2SEugene Zelenko 
14705c5a932SJuergen Ributzka } // end anonymous namespace
1489e1deb69SAndrew Trick 
14976686496SAndrew Trick /// CodeGenModels ctor interprets machine model records and populates maps.
15087255e34SAndrew Trick CodeGenSchedModels::CodeGenSchedModels(RecordKeeper &RK,
15187255e34SAndrew Trick                                        const CodeGenTarget &TGT):
152bf8a28dcSAndrew Trick   Records(RK), Target(TGT) {
15387255e34SAndrew Trick 
1549e1deb69SAndrew Trick   Sets.addFieldExpander("InstRW", "Instrs");
1559e1deb69SAndrew Trick 
1569e1deb69SAndrew Trick   // Allow Set evaluation to recognize the dags used in InstRW records:
1579e1deb69SAndrew Trick   // (instrs Op1, Op1...)
158ba6057deSCraig Topper   Sets.addOperator("instrs", llvm::make_unique<InstrsOp>());
159ba6057deSCraig Topper   Sets.addOperator("instregex", llvm::make_unique<InstRegexOp>(Target));
1609e1deb69SAndrew Trick 
16176686496SAndrew Trick   // Instantiate a CodeGenProcModel for each SchedMachineModel with the values
16276686496SAndrew Trick   // that are explicitly referenced in tablegen records. Resources associated
16376686496SAndrew Trick   // with each processor will be derived later. Populate ProcModelMap with the
16476686496SAndrew Trick   // CodeGenProcModel instances.
16576686496SAndrew Trick   collectProcModels();
16687255e34SAndrew Trick 
16776686496SAndrew Trick   // Instantiate a CodeGenSchedRW for each SchedReadWrite record explicitly
16876686496SAndrew Trick   // defined, and populate SchedReads and SchedWrites vectors. Implicit
16976686496SAndrew Trick   // SchedReadWrites that represent sequences derived from expanded variant will
17076686496SAndrew Trick   // be inferred later.
17176686496SAndrew Trick   collectSchedRW();
17276686496SAndrew Trick 
17376686496SAndrew Trick   // Instantiate a CodeGenSchedClass for each unique SchedRW signature directly
17476686496SAndrew Trick   // required by an instruction definition, and populate SchedClassIdxMap. Set
17576686496SAndrew Trick   // NumItineraryClasses to the number of explicit itinerary classes referenced
17676686496SAndrew Trick   // by instructions. Set NumInstrSchedClasses to the number of itinerary
17776686496SAndrew Trick   // classes plus any classes implied by instructions that derive from class
17876686496SAndrew Trick   // Sched and provide SchedRW list. This does not infer any new classes from
17976686496SAndrew Trick   // SchedVariant.
18076686496SAndrew Trick   collectSchedClasses();
18176686496SAndrew Trick 
18276686496SAndrew Trick   // Find instruction itineraries for each processor. Sort and populate
1839257b8f8SAndrew Trick   // CodeGenProcModel::ItinDefList. (Cycle-to-cycle itineraries). This requires
18476686496SAndrew Trick   // all itinerary classes to be discovered.
18576686496SAndrew Trick   collectProcItins();
18676686496SAndrew Trick 
18776686496SAndrew Trick   // Find ItinRW records for each processor and itinerary class.
18876686496SAndrew Trick   // (For per-operand resources mapped to itinerary classes).
18976686496SAndrew Trick   collectProcItinRW();
19033401e84SAndrew Trick 
1915f95c9afSSimon Dardis   // Find UnsupportedFeatures records for each processor.
1925f95c9afSSimon Dardis   // (For per-operand resources mapped to itinerary classes).
1935f95c9afSSimon Dardis   collectProcUnsupportedFeatures();
1945f95c9afSSimon Dardis 
19533401e84SAndrew Trick   // Infer new SchedClasses from SchedVariant.
19633401e84SAndrew Trick   inferSchedClasses();
19733401e84SAndrew Trick 
1981e46d488SAndrew Trick   // Populate each CodeGenProcModel's WriteResDefs, ReadAdvanceDefs, and
1991e46d488SAndrew Trick   // ProcResourceDefs.
2008037233bSJoel Jones   DEBUG(dbgs() << "\n+++ RESOURCE DEFINITIONS (collectProcResources) +++\n");
2011e46d488SAndrew Trick   collectProcResources();
20217cb5799SMatthias Braun 
20317cb5799SMatthias Braun   checkCompleteness();
20487255e34SAndrew Trick }
20587255e34SAndrew Trick 
20676686496SAndrew Trick /// Gather all processor models.
20776686496SAndrew Trick void CodeGenSchedModels::collectProcModels() {
20876686496SAndrew Trick   RecVec ProcRecords = Records.getAllDerivedDefinitions("Processor");
20976686496SAndrew Trick   std::sort(ProcRecords.begin(), ProcRecords.end(), LessRecordFieldName());
21087255e34SAndrew Trick 
21176686496SAndrew Trick   // Reserve space because we can. Reallocation would be ok.
21276686496SAndrew Trick   ProcModels.reserve(ProcRecords.size()+1);
21376686496SAndrew Trick 
21476686496SAndrew Trick   // Use idx=0 for NoModel/NoItineraries.
21576686496SAndrew Trick   Record *NoModelDef = Records.getDef("NoSchedModel");
21676686496SAndrew Trick   Record *NoItinsDef = Records.getDef("NoItineraries");
217f5e2fc47SBenjamin Kramer   ProcModels.emplace_back(0, "NoSchedModel", NoModelDef, NoItinsDef);
21876686496SAndrew Trick   ProcModelMap[NoModelDef] = 0;
21976686496SAndrew Trick 
22076686496SAndrew Trick   // For each processor, find a unique machine model.
2218037233bSJoel Jones   DEBUG(dbgs() << "+++ PROCESSOR MODELs (addProcModel) +++\n");
22267b042c2SJaved Absar   for (Record *ProcRecord : ProcRecords)
22367b042c2SJaved Absar     addProcModel(ProcRecord);
22476686496SAndrew Trick }
22576686496SAndrew Trick 
22676686496SAndrew Trick /// Get a unique processor model based on the defined MachineModel and
22776686496SAndrew Trick /// ProcessorItineraries.
22876686496SAndrew Trick void CodeGenSchedModels::addProcModel(Record *ProcDef) {
22976686496SAndrew Trick   Record *ModelKey = getModelOrItinDef(ProcDef);
23076686496SAndrew Trick   if (!ProcModelMap.insert(std::make_pair(ModelKey, ProcModels.size())).second)
23176686496SAndrew Trick     return;
23276686496SAndrew Trick 
23376686496SAndrew Trick   std::string Name = ModelKey->getName();
23476686496SAndrew Trick   if (ModelKey->isSubClassOf("SchedMachineModel")) {
23576686496SAndrew Trick     Record *ItinsDef = ModelKey->getValueAsDef("Itineraries");
236f5e2fc47SBenjamin Kramer     ProcModels.emplace_back(ProcModels.size(), Name, ModelKey, ItinsDef);
23776686496SAndrew Trick   }
23876686496SAndrew Trick   else {
23976686496SAndrew Trick     // An itinerary is defined without a machine model. Infer a new model.
24076686496SAndrew Trick     if (!ModelKey->getValueAsListOfDefs("IID").empty())
24176686496SAndrew Trick       Name = Name + "Model";
242f5e2fc47SBenjamin Kramer     ProcModels.emplace_back(ProcModels.size(), Name,
243f5e2fc47SBenjamin Kramer                             ProcDef->getValueAsDef("SchedModel"), ModelKey);
24476686496SAndrew Trick   }
24576686496SAndrew Trick   DEBUG(ProcModels.back().dump());
24676686496SAndrew Trick }
24776686496SAndrew Trick 
24876686496SAndrew Trick // Recursively find all reachable SchedReadWrite records.
24976686496SAndrew Trick static void scanSchedRW(Record *RWDef, RecVec &RWDefs,
25076686496SAndrew Trick                         SmallPtrSet<Record*, 16> &RWSet) {
25170573dcdSDavid Blaikie   if (!RWSet.insert(RWDef).second)
25276686496SAndrew Trick     return;
25376686496SAndrew Trick   RWDefs.push_back(RWDef);
25467b042c2SJaved Absar   // Reads don't currently have sequence records, but it can be added later.
25576686496SAndrew Trick   if (RWDef->isSubClassOf("WriteSequence")) {
25676686496SAndrew Trick     RecVec Seq = RWDef->getValueAsListOfDefs("Writes");
25767b042c2SJaved Absar     for (Record *WSRec : Seq)
25867b042c2SJaved Absar       scanSchedRW(WSRec, RWDefs, RWSet);
25976686496SAndrew Trick   }
26076686496SAndrew Trick   else if (RWDef->isSubClassOf("SchedVariant")) {
26176686496SAndrew Trick     // Visit each variant (guarded by a different predicate).
26276686496SAndrew Trick     RecVec Vars = RWDef->getValueAsListOfDefs("Variants");
26367b042c2SJaved Absar     for (Record *Variant : Vars) {
26476686496SAndrew Trick       // Visit each RW in the sequence selected by the current variant.
26567b042c2SJaved Absar       RecVec Selected = Variant->getValueAsListOfDefs("Selected");
26667b042c2SJaved Absar       for (Record *SelDef : Selected)
26767b042c2SJaved Absar         scanSchedRW(SelDef, RWDefs, RWSet);
26876686496SAndrew Trick     }
26976686496SAndrew Trick   }
27076686496SAndrew Trick }
27176686496SAndrew Trick 
27276686496SAndrew Trick // Collect and sort all SchedReadWrites reachable via tablegen records.
27376686496SAndrew Trick // More may be inferred later when inferring new SchedClasses from variants.
27476686496SAndrew Trick void CodeGenSchedModels::collectSchedRW() {
27576686496SAndrew Trick   // Reserve idx=0 for invalid writes/reads.
27676686496SAndrew Trick   SchedWrites.resize(1);
27776686496SAndrew Trick   SchedReads.resize(1);
27876686496SAndrew Trick 
27976686496SAndrew Trick   SmallPtrSet<Record*, 16> RWSet;
28076686496SAndrew Trick 
28176686496SAndrew Trick   // Find all SchedReadWrites referenced by instruction defs.
28276686496SAndrew Trick   RecVec SWDefs, SRDefs;
2838cc904d6SCraig Topper   for (const CodeGenInstruction *Inst : Target.getInstructionsByEnumValue()) {
2848a417c1fSCraig Topper     Record *SchedDef = Inst->TheDef;
285a4a361dfSJakob Stoklund Olesen     if (SchedDef->isValueUnset("SchedRW"))
28676686496SAndrew Trick       continue;
28776686496SAndrew Trick     RecVec RWs = SchedDef->getValueAsListOfDefs("SchedRW");
28867b042c2SJaved Absar     for (Record *RW : RWs) {
28967b042c2SJaved Absar       if (RW->isSubClassOf("SchedWrite"))
29067b042c2SJaved Absar         scanSchedRW(RW, SWDefs, RWSet);
29176686496SAndrew Trick       else {
29267b042c2SJaved Absar         assert(RW->isSubClassOf("SchedRead") && "Unknown SchedReadWrite");
29367b042c2SJaved Absar         scanSchedRW(RW, SRDefs, RWSet);
29476686496SAndrew Trick       }
29576686496SAndrew Trick     }
29676686496SAndrew Trick   }
29776686496SAndrew Trick   // Find all ReadWrites referenced by InstRW.
29876686496SAndrew Trick   RecVec InstRWDefs = Records.getAllDerivedDefinitions("InstRW");
29967b042c2SJaved Absar   for (Record *InstRWDef : InstRWDefs) {
30076686496SAndrew Trick     // For all OperandReadWrites.
30167b042c2SJaved Absar     RecVec RWDefs = InstRWDef->getValueAsListOfDefs("OperandReadWrites");
30267b042c2SJaved Absar     for (Record *RWDef : RWDefs) {
30367b042c2SJaved Absar       if (RWDef->isSubClassOf("SchedWrite"))
30467b042c2SJaved Absar         scanSchedRW(RWDef, SWDefs, RWSet);
30576686496SAndrew Trick       else {
30667b042c2SJaved Absar         assert(RWDef->isSubClassOf("SchedRead") && "Unknown SchedReadWrite");
30767b042c2SJaved Absar         scanSchedRW(RWDef, SRDefs, RWSet);
30876686496SAndrew Trick       }
30976686496SAndrew Trick     }
31076686496SAndrew Trick   }
31176686496SAndrew Trick   // Find all ReadWrites referenced by ItinRW.
31276686496SAndrew Trick   RecVec ItinRWDefs = Records.getAllDerivedDefinitions("ItinRW");
31367b042c2SJaved Absar   for (Record *ItinRWDef : ItinRWDefs) {
31476686496SAndrew Trick     // For all OperandReadWrites.
31567b042c2SJaved Absar     RecVec RWDefs = ItinRWDef->getValueAsListOfDefs("OperandReadWrites");
31667b042c2SJaved Absar     for (Record *RWDef : RWDefs) {
31767b042c2SJaved Absar       if (RWDef->isSubClassOf("SchedWrite"))
31867b042c2SJaved Absar         scanSchedRW(RWDef, SWDefs, RWSet);
31976686496SAndrew Trick       else {
32067b042c2SJaved Absar         assert(RWDef->isSubClassOf("SchedRead") && "Unknown SchedReadWrite");
32167b042c2SJaved Absar         scanSchedRW(RWDef, SRDefs, RWSet);
32276686496SAndrew Trick       }
32376686496SAndrew Trick     }
32476686496SAndrew Trick   }
3259257b8f8SAndrew Trick   // Find all ReadWrites referenced by SchedAlias. AliasDefs needs to be sorted
3269257b8f8SAndrew Trick   // for the loop below that initializes Alias vectors.
3279257b8f8SAndrew Trick   RecVec AliasDefs = Records.getAllDerivedDefinitions("SchedAlias");
3289257b8f8SAndrew Trick   std::sort(AliasDefs.begin(), AliasDefs.end(), LessRecord());
32967b042c2SJaved Absar   for (Record *ADef : AliasDefs) {
33067b042c2SJaved Absar     Record *MatchDef = ADef->getValueAsDef("MatchRW");
33167b042c2SJaved Absar     Record *AliasDef = ADef->getValueAsDef("AliasRW");
3329257b8f8SAndrew Trick     if (MatchDef->isSubClassOf("SchedWrite")) {
3339257b8f8SAndrew Trick       if (!AliasDef->isSubClassOf("SchedWrite"))
33467b042c2SJaved Absar         PrintFatalError(ADef->getLoc(), "SchedWrite Alias must be SchedWrite");
3359257b8f8SAndrew Trick       scanSchedRW(AliasDef, SWDefs, RWSet);
3369257b8f8SAndrew Trick     }
3379257b8f8SAndrew Trick     else {
3389257b8f8SAndrew Trick       assert(MatchDef->isSubClassOf("SchedRead") && "Unknown SchedReadWrite");
3399257b8f8SAndrew Trick       if (!AliasDef->isSubClassOf("SchedRead"))
34067b042c2SJaved Absar         PrintFatalError(ADef->getLoc(), "SchedRead Alias must be SchedRead");
3419257b8f8SAndrew Trick       scanSchedRW(AliasDef, SRDefs, RWSet);
3429257b8f8SAndrew Trick     }
3439257b8f8SAndrew Trick   }
34476686496SAndrew Trick   // Sort and add the SchedReadWrites directly referenced by instructions or
34576686496SAndrew Trick   // itinerary resources. Index reads and writes in separate domains.
34676686496SAndrew Trick   std::sort(SWDefs.begin(), SWDefs.end(), LessRecord());
34767b042c2SJaved Absar   for (Record *SWDef : SWDefs) {
34867b042c2SJaved Absar     assert(!getSchedRWIdx(SWDef, /*IsRead=*/false) && "duplicate SchedWrite");
34967b042c2SJaved Absar     SchedWrites.emplace_back(SchedWrites.size(), SWDef);
35076686496SAndrew Trick   }
35176686496SAndrew Trick   std::sort(SRDefs.begin(), SRDefs.end(), LessRecord());
35267b042c2SJaved Absar   for (Record *SRDef : SRDefs) {
35367b042c2SJaved Absar     assert(!getSchedRWIdx(SRDef, /*IsRead-*/true) && "duplicate SchedWrite");
35467b042c2SJaved Absar     SchedReads.emplace_back(SchedReads.size(), SRDef);
35576686496SAndrew Trick   }
35676686496SAndrew Trick   // Initialize WriteSequence vectors.
35767b042c2SJaved Absar   for (CodeGenSchedRW &CGRW : SchedWrites) {
35867b042c2SJaved Absar     if (!CGRW.IsSequence)
35976686496SAndrew Trick       continue;
36067b042c2SJaved Absar     findRWs(CGRW.TheDef->getValueAsListOfDefs("Writes"), CGRW.Sequence,
36176686496SAndrew Trick             /*IsRead=*/false);
36276686496SAndrew Trick   }
3639257b8f8SAndrew Trick   // Initialize Aliases vectors.
36467b042c2SJaved Absar   for (Record *ADef : AliasDefs) {
36567b042c2SJaved Absar     Record *AliasDef = ADef->getValueAsDef("AliasRW");
3669257b8f8SAndrew Trick     getSchedRW(AliasDef).IsAlias = true;
36767b042c2SJaved Absar     Record *MatchDef = ADef->getValueAsDef("MatchRW");
3689257b8f8SAndrew Trick     CodeGenSchedRW &RW = getSchedRW(MatchDef);
3699257b8f8SAndrew Trick     if (RW.IsAlias)
37067b042c2SJaved Absar       PrintFatalError(ADef->getLoc(), "Cannot Alias an Alias");
37167b042c2SJaved Absar     RW.Aliases.push_back(ADef);
3729257b8f8SAndrew Trick   }
37376686496SAndrew Trick   DEBUG(
3748037233bSJoel Jones     dbgs() << "\n+++ SCHED READS and WRITES (collectSchedRW) +++\n";
37576686496SAndrew Trick     for (unsigned WIdx = 0, WEnd = SchedWrites.size(); WIdx != WEnd; ++WIdx) {
37676686496SAndrew Trick       dbgs() << WIdx << ": ";
37776686496SAndrew Trick       SchedWrites[WIdx].dump();
37876686496SAndrew Trick       dbgs() << '\n';
37976686496SAndrew Trick     }
38076686496SAndrew Trick     for (unsigned RIdx = 0, REnd = SchedReads.size(); RIdx != REnd; ++RIdx) {
38176686496SAndrew Trick       dbgs() << RIdx << ": ";
38276686496SAndrew Trick       SchedReads[RIdx].dump();
38376686496SAndrew Trick       dbgs() << '\n';
38476686496SAndrew Trick     }
38576686496SAndrew Trick     RecVec RWDefs = Records.getAllDerivedDefinitions("SchedReadWrite");
38667b042c2SJaved Absar     for (Record *RWDef : RWDefs) {
38767b042c2SJaved Absar       if (!getSchedRWIdx(RWDef, RWDef->isSubClassOf("SchedRead"))) {
38867b042c2SJaved Absar         const std::string &Name = RWDef->getName();
38976686496SAndrew Trick         if (Name != "NoWrite" && Name != "ReadDefault")
39067b042c2SJaved Absar           dbgs() << "Unused SchedReadWrite " << RWDef->getName() << '\n';
39176686496SAndrew Trick       }
39276686496SAndrew Trick     });
39376686496SAndrew Trick }
39476686496SAndrew Trick 
39576686496SAndrew Trick /// Compute a SchedWrite name from a sequence of writes.
396e1761952SBenjamin Kramer std::string CodeGenSchedModels::genRWName(ArrayRef<unsigned> Seq, bool IsRead) {
39776686496SAndrew Trick   std::string Name("(");
398e1761952SBenjamin Kramer   for (auto I = Seq.begin(), E = Seq.end(); I != E; ++I) {
39976686496SAndrew Trick     if (I != Seq.begin())
40076686496SAndrew Trick       Name += '_';
40176686496SAndrew Trick     Name += getSchedRW(*I, IsRead).Name;
40276686496SAndrew Trick   }
40376686496SAndrew Trick   Name += ')';
40476686496SAndrew Trick   return Name;
40576686496SAndrew Trick }
40676686496SAndrew Trick 
40776686496SAndrew Trick unsigned CodeGenSchedModels::getSchedRWIdx(Record *Def, bool IsRead,
40876686496SAndrew Trick                                            unsigned After) const {
40976686496SAndrew Trick   const std::vector<CodeGenSchedRW> &RWVec = IsRead ? SchedReads : SchedWrites;
41076686496SAndrew Trick   assert(After < RWVec.size() && "start position out of bounds");
41176686496SAndrew Trick   for (std::vector<CodeGenSchedRW>::const_iterator I = RWVec.begin() + After,
41276686496SAndrew Trick          E = RWVec.end(); I != E; ++I) {
41376686496SAndrew Trick     if (I->TheDef == Def)
41476686496SAndrew Trick       return I - RWVec.begin();
41576686496SAndrew Trick   }
41676686496SAndrew Trick   return 0;
41776686496SAndrew Trick }
41876686496SAndrew Trick 
419cfe222c2SAndrew Trick bool CodeGenSchedModels::hasReadOfWrite(Record *WriteDef) const {
42067b042c2SJaved Absar   for (const CodeGenSchedRW &Read : SchedReads) {
42167b042c2SJaved Absar     Record *ReadDef = Read.TheDef;
422cfe222c2SAndrew Trick     if (!ReadDef || !ReadDef->isSubClassOf("ProcReadAdvance"))
423cfe222c2SAndrew Trick       continue;
424cfe222c2SAndrew Trick 
425cfe222c2SAndrew Trick     RecVec ValidWrites = ReadDef->getValueAsListOfDefs("ValidWrites");
4260d955d0bSDavid Majnemer     if (is_contained(ValidWrites, WriteDef)) {
427cfe222c2SAndrew Trick       return true;
428cfe222c2SAndrew Trick     }
429cfe222c2SAndrew Trick   }
430cfe222c2SAndrew Trick   return false;
431cfe222c2SAndrew Trick }
432cfe222c2SAndrew Trick 
43376686496SAndrew Trick namespace llvm {
434a3fe70d2SEugene Zelenko 
43576686496SAndrew Trick void splitSchedReadWrites(const RecVec &RWDefs,
43676686496SAndrew Trick                           RecVec &WriteDefs, RecVec &ReadDefs) {
43767b042c2SJaved Absar   for (Record *RWDef : RWDefs) {
43867b042c2SJaved Absar     if (RWDef->isSubClassOf("SchedWrite"))
43967b042c2SJaved Absar       WriteDefs.push_back(RWDef);
44076686496SAndrew Trick     else {
44167b042c2SJaved Absar       assert(RWDef->isSubClassOf("SchedRead") && "unknown SchedReadWrite");
44267b042c2SJaved Absar       ReadDefs.push_back(RWDef);
44376686496SAndrew Trick     }
44476686496SAndrew Trick   }
44576686496SAndrew Trick }
446a3fe70d2SEugene Zelenko 
447a3fe70d2SEugene Zelenko } // end namespace llvm
44876686496SAndrew Trick 
44976686496SAndrew Trick // Split the SchedReadWrites defs and call findRWs for each list.
45076686496SAndrew Trick void CodeGenSchedModels::findRWs(const RecVec &RWDefs,
45176686496SAndrew Trick                                  IdxVec &Writes, IdxVec &Reads) const {
45276686496SAndrew Trick     RecVec WriteDefs;
45376686496SAndrew Trick     RecVec ReadDefs;
45476686496SAndrew Trick     splitSchedReadWrites(RWDefs, WriteDefs, ReadDefs);
45576686496SAndrew Trick     findRWs(WriteDefs, Writes, false);
45676686496SAndrew Trick     findRWs(ReadDefs, Reads, true);
45776686496SAndrew Trick }
45876686496SAndrew Trick 
45976686496SAndrew Trick // Call getSchedRWIdx for all elements in a sequence of SchedRW defs.
46076686496SAndrew Trick void CodeGenSchedModels::findRWs(const RecVec &RWDefs, IdxVec &RWs,
46176686496SAndrew Trick                                  bool IsRead) const {
46267b042c2SJaved Absar   for (Record *RWDef : RWDefs) {
46367b042c2SJaved Absar     unsigned Idx = getSchedRWIdx(RWDef, IsRead);
46476686496SAndrew Trick     assert(Idx && "failed to collect SchedReadWrite");
46576686496SAndrew Trick     RWs.push_back(Idx);
46676686496SAndrew Trick   }
46776686496SAndrew Trick }
46876686496SAndrew Trick 
46933401e84SAndrew Trick void CodeGenSchedModels::expandRWSequence(unsigned RWIdx, IdxVec &RWSeq,
47033401e84SAndrew Trick                                           bool IsRead) const {
47133401e84SAndrew Trick   const CodeGenSchedRW &SchedRW = getSchedRW(RWIdx, IsRead);
47233401e84SAndrew Trick   if (!SchedRW.IsSequence) {
47333401e84SAndrew Trick     RWSeq.push_back(RWIdx);
47433401e84SAndrew Trick     return;
47533401e84SAndrew Trick   }
47633401e84SAndrew Trick   int Repeat =
47733401e84SAndrew Trick     SchedRW.TheDef ? SchedRW.TheDef->getValueAsInt("Repeat") : 1;
47833401e84SAndrew Trick   for (int i = 0; i < Repeat; ++i) {
47967b042c2SJaved Absar     for (unsigned I : SchedRW.Sequence) {
48067b042c2SJaved Absar       expandRWSequence(I, RWSeq, IsRead);
48133401e84SAndrew Trick     }
48233401e84SAndrew Trick   }
48333401e84SAndrew Trick }
48433401e84SAndrew Trick 
485da984b1aSAndrew Trick // Expand a SchedWrite as a sequence following any aliases that coincide with
486da984b1aSAndrew Trick // the given processor model.
487da984b1aSAndrew Trick void CodeGenSchedModels::expandRWSeqForProc(
488da984b1aSAndrew Trick   unsigned RWIdx, IdxVec &RWSeq, bool IsRead,
489da984b1aSAndrew Trick   const CodeGenProcModel &ProcModel) const {
490da984b1aSAndrew Trick 
491da984b1aSAndrew Trick   const CodeGenSchedRW &SchedWrite = getSchedRW(RWIdx, IsRead);
49224064771SCraig Topper   Record *AliasDef = nullptr;
493da984b1aSAndrew Trick   for (RecIter AI = SchedWrite.Aliases.begin(), AE = SchedWrite.Aliases.end();
494da984b1aSAndrew Trick        AI != AE; ++AI) {
495da984b1aSAndrew Trick     const CodeGenSchedRW &AliasRW = getSchedRW((*AI)->getValueAsDef("AliasRW"));
496da984b1aSAndrew Trick     if ((*AI)->getValueInit("SchedModel")->isComplete()) {
497da984b1aSAndrew Trick       Record *ModelDef = (*AI)->getValueAsDef("SchedModel");
498da984b1aSAndrew Trick       if (&getProcModel(ModelDef) != &ProcModel)
499da984b1aSAndrew Trick         continue;
500da984b1aSAndrew Trick     }
501da984b1aSAndrew Trick     if (AliasDef)
502635debe8SJoerg Sonnenberger       PrintFatalError(AliasRW.TheDef->getLoc(), "Multiple aliases "
503da984b1aSAndrew Trick                       "defined for processor " + ProcModel.ModelName +
504da984b1aSAndrew Trick                       " Ensure only one SchedAlias exists per RW.");
505da984b1aSAndrew Trick     AliasDef = AliasRW.TheDef;
506da984b1aSAndrew Trick   }
507da984b1aSAndrew Trick   if (AliasDef) {
508da984b1aSAndrew Trick     expandRWSeqForProc(getSchedRWIdx(AliasDef, IsRead),
509da984b1aSAndrew Trick                        RWSeq, IsRead,ProcModel);
510da984b1aSAndrew Trick     return;
511da984b1aSAndrew Trick   }
512da984b1aSAndrew Trick   if (!SchedWrite.IsSequence) {
513da984b1aSAndrew Trick     RWSeq.push_back(RWIdx);
514da984b1aSAndrew Trick     return;
515da984b1aSAndrew Trick   }
516da984b1aSAndrew Trick   int Repeat =
517da984b1aSAndrew Trick     SchedWrite.TheDef ? SchedWrite.TheDef->getValueAsInt("Repeat") : 1;
518da984b1aSAndrew Trick   for (int i = 0; i < Repeat; ++i) {
51967b042c2SJaved Absar     for (unsigned I : SchedWrite.Sequence) {
52067b042c2SJaved Absar       expandRWSeqForProc(I, RWSeq, IsRead, ProcModel);
521da984b1aSAndrew Trick     }
522da984b1aSAndrew Trick   }
523da984b1aSAndrew Trick }
524da984b1aSAndrew Trick 
52533401e84SAndrew Trick // Find the existing SchedWrite that models this sequence of writes.
526e1761952SBenjamin Kramer unsigned CodeGenSchedModels::findRWForSequence(ArrayRef<unsigned> Seq,
52733401e84SAndrew Trick                                                bool IsRead) {
52833401e84SAndrew Trick   std::vector<CodeGenSchedRW> &RWVec = IsRead ? SchedReads : SchedWrites;
52933401e84SAndrew Trick 
53033401e84SAndrew Trick   for (std::vector<CodeGenSchedRW>::iterator I = RWVec.begin(), E = RWVec.end();
53133401e84SAndrew Trick        I != E; ++I) {
532e1761952SBenjamin Kramer     if (makeArrayRef(I->Sequence) == Seq)
53333401e84SAndrew Trick       return I - RWVec.begin();
53433401e84SAndrew Trick   }
53533401e84SAndrew Trick   // Index zero reserved for invalid RW.
53633401e84SAndrew Trick   return 0;
53733401e84SAndrew Trick }
53833401e84SAndrew Trick 
53933401e84SAndrew Trick /// Add this ReadWrite if it doesn't already exist.
54033401e84SAndrew Trick unsigned CodeGenSchedModels::findOrInsertRW(ArrayRef<unsigned> Seq,
54133401e84SAndrew Trick                                             bool IsRead) {
54233401e84SAndrew Trick   assert(!Seq.empty() && "cannot insert empty sequence");
54333401e84SAndrew Trick   if (Seq.size() == 1)
54433401e84SAndrew Trick     return Seq.back();
54533401e84SAndrew Trick 
54633401e84SAndrew Trick   unsigned Idx = findRWForSequence(Seq, IsRead);
54733401e84SAndrew Trick   if (Idx)
54833401e84SAndrew Trick     return Idx;
54933401e84SAndrew Trick 
550da984b1aSAndrew Trick   unsigned RWIdx = IsRead ? SchedReads.size() : SchedWrites.size();
551da984b1aSAndrew Trick   CodeGenSchedRW SchedRW(RWIdx, IsRead, Seq, genRWName(Seq, IsRead));
552da984b1aSAndrew Trick   if (IsRead)
55333401e84SAndrew Trick     SchedReads.push_back(SchedRW);
554da984b1aSAndrew Trick   else
55533401e84SAndrew Trick     SchedWrites.push_back(SchedRW);
556da984b1aSAndrew Trick   return RWIdx;
55733401e84SAndrew Trick }
55833401e84SAndrew Trick 
55976686496SAndrew Trick /// Visit all the instruction definitions for this target to gather and
56076686496SAndrew Trick /// enumerate the itinerary classes. These are the explicitly specified
56176686496SAndrew Trick /// SchedClasses. More SchedClasses may be inferred.
56276686496SAndrew Trick void CodeGenSchedModels::collectSchedClasses() {
56376686496SAndrew Trick 
56476686496SAndrew Trick   // NoItinerary is always the first class at Idx=0
56587255e34SAndrew Trick   SchedClasses.resize(1);
566bf8a28dcSAndrew Trick   SchedClasses.back().Index = 0;
567bf8a28dcSAndrew Trick   SchedClasses.back().Name = "NoInstrModel";
568bf8a28dcSAndrew Trick   SchedClasses.back().ItinClassDef = Records.getDef("NoItinerary");
56976686496SAndrew Trick   SchedClasses.back().ProcIndices.push_back(0);
57087255e34SAndrew Trick 
571bf8a28dcSAndrew Trick   // Create a SchedClass for each unique combination of itinerary class and
572bf8a28dcSAndrew Trick   // SchedRW list.
5738cc904d6SCraig Topper   for (const CodeGenInstruction *Inst : Target.getInstructionsByEnumValue()) {
5748a417c1fSCraig Topper     Record *ItinDef = Inst->TheDef->getValueAsDef("Itinerary");
57576686496SAndrew Trick     IdxVec Writes, Reads;
5768a417c1fSCraig Topper     if (!Inst->TheDef->isValueUnset("SchedRW"))
5778a417c1fSCraig Topper       findRWs(Inst->TheDef->getValueAsListOfDefs("SchedRW"), Writes, Reads);
578bf8a28dcSAndrew Trick 
57976686496SAndrew Trick     // ProcIdx == 0 indicates the class applies to all processors.
58076686496SAndrew Trick     IdxVec ProcIndices(1, 0);
581bf8a28dcSAndrew Trick 
582bf8a28dcSAndrew Trick     unsigned SCIdx = addSchedClass(ItinDef, Writes, Reads, ProcIndices);
5838a417c1fSCraig Topper     InstrClassMap[Inst->TheDef] = SCIdx;
58487255e34SAndrew Trick   }
5859257b8f8SAndrew Trick   // Create classes for InstRW defs.
58676686496SAndrew Trick   RecVec InstRWDefs = Records.getAllDerivedDefinitions("InstRW");
58776686496SAndrew Trick   std::sort(InstRWDefs.begin(), InstRWDefs.end(), LessRecord());
5888037233bSJoel Jones   DEBUG(dbgs() << "\n+++ SCHED CLASSES (createInstRWClass) +++\n");
58967b042c2SJaved Absar   for (Record *RWDef : InstRWDefs)
59067b042c2SJaved Absar     createInstRWClass(RWDef);
59187255e34SAndrew Trick 
59276686496SAndrew Trick   NumInstrSchedClasses = SchedClasses.size();
59387255e34SAndrew Trick 
59476686496SAndrew Trick   bool EnableDump = false;
59576686496SAndrew Trick   DEBUG(EnableDump = true);
59676686496SAndrew Trick   if (!EnableDump)
59787255e34SAndrew Trick     return;
598bf8a28dcSAndrew Trick 
5998037233bSJoel Jones   dbgs() << "\n+++ ITINERARIES and/or MACHINE MODELS (collectSchedClasses) +++\n";
6008cc904d6SCraig Topper   for (const CodeGenInstruction *Inst : Target.getInstructionsByEnumValue()) {
601bcd3c37fSCraig Topper     StringRef InstName = Inst->TheDef->getName();
6028a417c1fSCraig Topper     unsigned SCIdx = InstrClassMap.lookup(Inst->TheDef);
603bf8a28dcSAndrew Trick     if (!SCIdx) {
6048e0a734fSMatthias Braun       if (!Inst->hasNoSchedulingInfo)
6058a417c1fSCraig Topper         dbgs() << "No machine model for " << Inst->TheDef->getName() << '\n';
606bf8a28dcSAndrew Trick       continue;
607bf8a28dcSAndrew Trick     }
608bf8a28dcSAndrew Trick     CodeGenSchedClass &SC = getSchedClass(SCIdx);
609bf8a28dcSAndrew Trick     if (SC.ProcIndices[0] != 0)
6108a417c1fSCraig Topper       PrintFatalError(Inst->TheDef->getLoc(), "Instruction's sched class "
611bf8a28dcSAndrew Trick                       "must not be subtarget specific.");
612bf8a28dcSAndrew Trick 
613bf8a28dcSAndrew Trick     IdxVec ProcIndices;
614bf8a28dcSAndrew Trick     if (SC.ItinClassDef->getName() != "NoItinerary") {
615bf8a28dcSAndrew Trick       ProcIndices.push_back(0);
616bf8a28dcSAndrew Trick       dbgs() << "Itinerary for " << InstName << ": "
617bf8a28dcSAndrew Trick              << SC.ItinClassDef->getName() << '\n';
618bf8a28dcSAndrew Trick     }
619bf8a28dcSAndrew Trick     if (!SC.Writes.empty()) {
620bf8a28dcSAndrew Trick       ProcIndices.push_back(0);
62176686496SAndrew Trick       dbgs() << "SchedRW machine model for " << InstName;
622bf8a28dcSAndrew Trick       for (IdxIter WI = SC.Writes.begin(), WE = SC.Writes.end(); WI != WE; ++WI)
62376686496SAndrew Trick         dbgs() << " " << SchedWrites[*WI].Name;
624bf8a28dcSAndrew Trick       for (IdxIter RI = SC.Reads.begin(), RE = SC.Reads.end(); RI != RE; ++RI)
62576686496SAndrew Trick         dbgs() << " " << SchedReads[*RI].Name;
62676686496SAndrew Trick       dbgs() << '\n';
62776686496SAndrew Trick     }
62876686496SAndrew Trick     const RecVec &RWDefs = SchedClasses[SCIdx].InstRWs;
62967b042c2SJaved Absar     for (Record *RWDef : RWDefs) {
63076686496SAndrew Trick       const CodeGenProcModel &ProcModel =
63167b042c2SJaved Absar         getProcModel(RWDef->getValueAsDef("SchedModel"));
632bf8a28dcSAndrew Trick       ProcIndices.push_back(ProcModel.Index);
6337aba6beaSAndrew Trick       dbgs() << "InstRW on " << ProcModel.ModelName << " for " << InstName;
63476686496SAndrew Trick       IdxVec Writes;
63576686496SAndrew Trick       IdxVec Reads;
63667b042c2SJaved Absar       findRWs(RWDef->getValueAsListOfDefs("OperandReadWrites"),
63776686496SAndrew Trick               Writes, Reads);
63867b042c2SJaved Absar       for (unsigned WIdx : Writes)
63967b042c2SJaved Absar         dbgs() << " " << SchedWrites[WIdx].Name;
64067b042c2SJaved Absar       for (unsigned RIdx : Reads)
64167b042c2SJaved Absar         dbgs() << " " << SchedReads[RIdx].Name;
64276686496SAndrew Trick       dbgs() << '\n';
64376686496SAndrew Trick     }
644f9df92c9SAndrew Trick     // If ProcIndices contains zero, the class applies to all processors.
645f9df92c9SAndrew Trick     if (!std::count(ProcIndices.begin(), ProcIndices.end(), 0)) {
64621c75912SJaved Absar       for (const CodeGenProcModel &PM : ProcModels) {
647fc500041SJaved Absar         if (!std::count(ProcIndices.begin(), ProcIndices.end(), PM.Index))
6488a417c1fSCraig Topper           dbgs() << "No machine model for " << Inst->TheDef->getName()
649fc500041SJaved Absar                  << " on processor " << PM.ModelName << '\n';
65087255e34SAndrew Trick       }
65187255e34SAndrew Trick     }
65276686496SAndrew Trick   }
653f9df92c9SAndrew Trick }
65476686496SAndrew Trick 
65576686496SAndrew Trick /// Find an SchedClass that has been inferred from a per-operand list of
65676686496SAndrew Trick /// SchedWrites and SchedReads.
657bf8a28dcSAndrew Trick unsigned CodeGenSchedModels::findSchedClassIdx(Record *ItinClassDef,
658e1761952SBenjamin Kramer                                                ArrayRef<unsigned> Writes,
659e1761952SBenjamin Kramer                                                ArrayRef<unsigned> Reads) const {
66076686496SAndrew Trick   for (SchedClassIter I = schedClassBegin(), E = schedClassEnd(); I != E; ++I) {
661e1761952SBenjamin Kramer     if (I->ItinClassDef == ItinClassDef && makeArrayRef(I->Writes) == Writes &&
662e1761952SBenjamin Kramer         makeArrayRef(I->Reads) == Reads) {
66376686496SAndrew Trick       return I - schedClassBegin();
66476686496SAndrew Trick     }
66576686496SAndrew Trick   }
66676686496SAndrew Trick   return 0;
66776686496SAndrew Trick }
66876686496SAndrew Trick 
66976686496SAndrew Trick // Get the SchedClass index for an instruction.
67076686496SAndrew Trick unsigned CodeGenSchedModels::getSchedClassIdx(
67176686496SAndrew Trick   const CodeGenInstruction &Inst) const {
67276686496SAndrew Trick 
673bf8a28dcSAndrew Trick   return InstrClassMap.lookup(Inst.TheDef);
67476686496SAndrew Trick }
67576686496SAndrew Trick 
676e1761952SBenjamin Kramer std::string
677e1761952SBenjamin Kramer CodeGenSchedModels::createSchedClassName(Record *ItinClassDef,
678e1761952SBenjamin Kramer                                          ArrayRef<unsigned> OperWrites,
679e1761952SBenjamin Kramer                                          ArrayRef<unsigned> OperReads) {
68076686496SAndrew Trick 
68176686496SAndrew Trick   std::string Name;
682bf8a28dcSAndrew Trick   if (ItinClassDef && ItinClassDef->getName() != "NoItinerary")
683bf8a28dcSAndrew Trick     Name = ItinClassDef->getName();
684e1761952SBenjamin Kramer   for (unsigned Idx : OperWrites) {
685bf8a28dcSAndrew Trick     if (!Name.empty())
68676686496SAndrew Trick       Name += '_';
687e1761952SBenjamin Kramer     Name += SchedWrites[Idx].Name;
68876686496SAndrew Trick   }
689e1761952SBenjamin Kramer   for (unsigned Idx : OperReads) {
69076686496SAndrew Trick     Name += '_';
691e1761952SBenjamin Kramer     Name += SchedReads[Idx].Name;
69276686496SAndrew Trick   }
69376686496SAndrew Trick   return Name;
69476686496SAndrew Trick }
69576686496SAndrew Trick 
69676686496SAndrew Trick std::string CodeGenSchedModels::createSchedClassName(const RecVec &InstDefs) {
69776686496SAndrew Trick 
69876686496SAndrew Trick   std::string Name;
69976686496SAndrew Trick   for (RecIter I = InstDefs.begin(), E = InstDefs.end(); I != E; ++I) {
70076686496SAndrew Trick     if (I != InstDefs.begin())
70176686496SAndrew Trick       Name += '_';
70276686496SAndrew Trick     Name += (*I)->getName();
70376686496SAndrew Trick   }
70476686496SAndrew Trick   return Name;
70576686496SAndrew Trick }
70676686496SAndrew Trick 
707bf8a28dcSAndrew Trick /// Add an inferred sched class from an itinerary class and per-operand list of
708bf8a28dcSAndrew Trick /// SchedWrites and SchedReads. ProcIndices contains the set of IDs of
709bf8a28dcSAndrew Trick /// processors that may utilize this class.
710bf8a28dcSAndrew Trick unsigned CodeGenSchedModels::addSchedClass(Record *ItinClassDef,
711e1761952SBenjamin Kramer                                            ArrayRef<unsigned> OperWrites,
712e1761952SBenjamin Kramer                                            ArrayRef<unsigned> OperReads,
713e1761952SBenjamin Kramer                                            ArrayRef<unsigned> ProcIndices) {
71476686496SAndrew Trick   assert(!ProcIndices.empty() && "expect at least one ProcIdx");
71576686496SAndrew Trick 
716bf8a28dcSAndrew Trick   unsigned Idx = findSchedClassIdx(ItinClassDef, OperWrites, OperReads);
717bf8a28dcSAndrew Trick   if (Idx || SchedClasses[0].isKeyEqual(ItinClassDef, OperWrites, OperReads)) {
71876686496SAndrew Trick     IdxVec PI;
71976686496SAndrew Trick     std::set_union(SchedClasses[Idx].ProcIndices.begin(),
72076686496SAndrew Trick                    SchedClasses[Idx].ProcIndices.end(),
72176686496SAndrew Trick                    ProcIndices.begin(), ProcIndices.end(),
72276686496SAndrew Trick                    std::back_inserter(PI));
72376686496SAndrew Trick     SchedClasses[Idx].ProcIndices.swap(PI);
72476686496SAndrew Trick     return Idx;
72576686496SAndrew Trick   }
72676686496SAndrew Trick   Idx = SchedClasses.size();
72776686496SAndrew Trick   SchedClasses.resize(Idx+1);
72876686496SAndrew Trick   CodeGenSchedClass &SC = SchedClasses.back();
729bf8a28dcSAndrew Trick   SC.Index = Idx;
730bf8a28dcSAndrew Trick   SC.Name = createSchedClassName(ItinClassDef, OperWrites, OperReads);
731bf8a28dcSAndrew Trick   SC.ItinClassDef = ItinClassDef;
73276686496SAndrew Trick   SC.Writes = OperWrites;
73376686496SAndrew Trick   SC.Reads = OperReads;
73476686496SAndrew Trick   SC.ProcIndices = ProcIndices;
73576686496SAndrew Trick 
73676686496SAndrew Trick   return Idx;
73776686496SAndrew Trick }
73876686496SAndrew Trick 
73976686496SAndrew Trick // Create classes for each set of opcodes that are in the same InstReadWrite
74076686496SAndrew Trick // definition across all processors.
74176686496SAndrew Trick void CodeGenSchedModels::createInstRWClass(Record *InstRWDef) {
74276686496SAndrew Trick   // ClassInstrs will hold an entry for each subset of Instrs in InstRWDef that
74376686496SAndrew Trick   // intersects with an existing class via a previous InstRWDef. Instrs that do
74476686496SAndrew Trick   // not intersect with an existing class refer back to their former class as
74576686496SAndrew Trick   // determined from ItinDef or SchedRW.
74676686496SAndrew Trick   SmallVector<std::pair<unsigned, SmallVector<Record *, 8>>, 4> ClassInstrs;
74776686496SAndrew Trick   // Sort Instrs into sets.
7489e1deb69SAndrew Trick   const RecVec *InstDefs = Sets.expand(InstRWDef);
7499e1deb69SAndrew Trick   if (InstDefs->empty())
750635debe8SJoerg Sonnenberger     PrintFatalError(InstRWDef->getLoc(), "No matching instruction opcodes");
7519e1deb69SAndrew Trick 
75293dd77d2SCraig Topper   for (Record *InstDef : *InstDefs) {
753fc500041SJaved Absar     InstClassMapTy::const_iterator Pos = InstrClassMap.find(InstDef);
754bf8a28dcSAndrew Trick     if (Pos == InstrClassMap.end())
755fc500041SJaved Absar       PrintFatalError(InstDef->getLoc(), "No sched class for instruction.");
756bf8a28dcSAndrew Trick     unsigned SCIdx = Pos->second;
75776686496SAndrew Trick     unsigned CIdx = 0, CEnd = ClassInstrs.size();
75876686496SAndrew Trick     for (; CIdx != CEnd; ++CIdx) {
75976686496SAndrew Trick       if (ClassInstrs[CIdx].first == SCIdx)
76076686496SAndrew Trick         break;
76176686496SAndrew Trick     }
76276686496SAndrew Trick     if (CIdx == CEnd) {
76376686496SAndrew Trick       ClassInstrs.resize(CEnd + 1);
76476686496SAndrew Trick       ClassInstrs[CIdx].first = SCIdx;
76576686496SAndrew Trick     }
766fc500041SJaved Absar     ClassInstrs[CIdx].second.push_back(InstDef);
76776686496SAndrew Trick   }
76876686496SAndrew Trick   // For each set of Instrs, create a new class if necessary, and map or remap
76976686496SAndrew Trick   // the Instrs to it.
7707f31e735SCraig Topper   for (unsigned CIdx = 0, CEnd = ClassInstrs.size(); CIdx != CEnd; ++CIdx) {
77176686496SAndrew Trick     unsigned OldSCIdx = ClassInstrs[CIdx].first;
77276686496SAndrew Trick     ArrayRef<Record*> InstDefs = ClassInstrs[CIdx].second;
77376686496SAndrew Trick     // If the all instrs in the current class are accounted for, then leave
77476686496SAndrew Trick     // them mapped to their old class.
77578a08517SAndrew Trick     if (OldSCIdx) {
77678a08517SAndrew Trick       const RecVec &RWDefs = SchedClasses[OldSCIdx].InstRWs;
77778a08517SAndrew Trick       if (!RWDefs.empty()) {
77878a08517SAndrew Trick         const RecVec *OrigInstDefs = Sets.expand(RWDefs[0]);
77978a08517SAndrew Trick         unsigned OrigNumInstrs = 0;
78093dd77d2SCraig Topper         for (Record *OIDef : *OrigInstDefs) {
78167b042c2SJaved Absar           if (InstrClassMap[OIDef] == OldSCIdx)
78278a08517SAndrew Trick             ++OrigNumInstrs;
78378a08517SAndrew Trick         }
78478a08517SAndrew Trick         if (OrigNumInstrs == InstDefs.size()) {
78576686496SAndrew Trick           assert(SchedClasses[OldSCIdx].ProcIndices[0] == 0 &&
78676686496SAndrew Trick                  "expected a generic SchedClass");
787e1d6a4dfSCraig Topper           Record *RWModelDef = InstRWDef->getValueAsDef("SchedModel");
788e1d6a4dfSCraig Topper           // Make sure we didn't already have a InstRW containing this
789e1d6a4dfSCraig Topper           // instruction on this model.
790e1d6a4dfSCraig Topper           for (Record *RWD : RWDefs) {
791e1d6a4dfSCraig Topper             if (RWD->getValueAsDef("SchedModel") == RWModelDef &&
792e1d6a4dfSCraig Topper                 RWModelDef->getValueAsBit("FullInstRWOverlapCheck")) {
793e1d6a4dfSCraig Topper               for (Record *Inst : InstDefs) {
794e1d6a4dfSCraig Topper                 PrintFatalError(InstRWDef->getLoc(), "Overlapping InstRW def " +
795e1d6a4dfSCraig Topper                             Inst->getName() + " also matches " +
796e1d6a4dfSCraig Topper                             RWD->getValue("Instrs")->getValue()->getAsString());
797e1d6a4dfSCraig Topper               }
798e1d6a4dfSCraig Topper             }
799e1d6a4dfSCraig Topper           }
80078a08517SAndrew Trick           DEBUG(dbgs() << "InstRW: Reuse SC " << OldSCIdx << ":"
80178a08517SAndrew Trick                 << SchedClasses[OldSCIdx].Name << " on "
802e1d6a4dfSCraig Topper                 << RWModelDef->getName() << "\n");
80378a08517SAndrew Trick           SchedClasses[OldSCIdx].InstRWs.push_back(InstRWDef);
80476686496SAndrew Trick           continue;
80576686496SAndrew Trick         }
80678a08517SAndrew Trick       }
80778a08517SAndrew Trick     }
80876686496SAndrew Trick     unsigned SCIdx = SchedClasses.size();
80976686496SAndrew Trick     SchedClasses.resize(SCIdx+1);
81076686496SAndrew Trick     CodeGenSchedClass &SC = SchedClasses.back();
811bf8a28dcSAndrew Trick     SC.Index = SCIdx;
81276686496SAndrew Trick     SC.Name = createSchedClassName(InstDefs);
81378a08517SAndrew Trick     DEBUG(dbgs() << "InstRW: New SC " << SCIdx << ":" << SC.Name << " on "
81478a08517SAndrew Trick           << InstRWDef->getValueAsDef("SchedModel")->getName() << "\n");
81578a08517SAndrew Trick 
81676686496SAndrew Trick     // Preserve ItinDef and Writes/Reads for processors without an InstRW entry.
81776686496SAndrew Trick     SC.ItinClassDef = SchedClasses[OldSCIdx].ItinClassDef;
81876686496SAndrew Trick     SC.Writes = SchedClasses[OldSCIdx].Writes;
81976686496SAndrew Trick     SC.Reads = SchedClasses[OldSCIdx].Reads;
82076686496SAndrew Trick     SC.ProcIndices.push_back(0);
82176686496SAndrew Trick     // Map each Instr to this new class.
82276686496SAndrew Trick     // Note that InstDefs may be a smaller list than InstRWDef's "Instrs".
8239e1deb69SAndrew Trick     Record *RWModelDef = InstRWDef->getValueAsDef("SchedModel");
8249e1deb69SAndrew Trick     SmallSet<unsigned, 4> RemappedClassIDs;
82576686496SAndrew Trick     for (ArrayRef<Record*>::const_iterator
82676686496SAndrew Trick            II = InstDefs.begin(), IE = InstDefs.end(); II != IE; ++II) {
82776686496SAndrew Trick       unsigned OldSCIdx = InstrClassMap[*II];
82870573dcdSDavid Blaikie       if (OldSCIdx && RemappedClassIDs.insert(OldSCIdx).second) {
8299e1deb69SAndrew Trick         for (RecIter RI = SchedClasses[OldSCIdx].InstRWs.begin(),
8309e1deb69SAndrew Trick                RE = SchedClasses[OldSCIdx].InstRWs.end(); RI != RE; ++RI) {
8319e1deb69SAndrew Trick           if ((*RI)->getValueAsDef("SchedModel") == RWModelDef) {
832635debe8SJoerg Sonnenberger             PrintFatalError(InstRWDef->getLoc(), "Overlapping InstRW def " +
8339e1deb69SAndrew Trick                           (*II)->getName() + " also matches " +
8349e1deb69SAndrew Trick                           (*RI)->getValue("Instrs")->getValue()->getAsString());
8359e1deb69SAndrew Trick           }
8369e1deb69SAndrew Trick           assert(*RI != InstRWDef && "SchedClass has duplicate InstRW def");
8379e1deb69SAndrew Trick           SC.InstRWs.push_back(*RI);
8389e1deb69SAndrew Trick         }
83976686496SAndrew Trick       }
84076686496SAndrew Trick       InstrClassMap[*II] = SCIdx;
84176686496SAndrew Trick     }
84276686496SAndrew Trick     SC.InstRWs.push_back(InstRWDef);
84376686496SAndrew Trick   }
84487255e34SAndrew Trick }
84587255e34SAndrew Trick 
846bf8a28dcSAndrew Trick // True if collectProcItins found anything.
847bf8a28dcSAndrew Trick bool CodeGenSchedModels::hasItineraries() const {
84867b042c2SJaved Absar   for (const CodeGenProcModel &PM : make_range(procModelBegin(),procModelEnd())) {
84967b042c2SJaved Absar     if (PM.hasItineraries())
850bf8a28dcSAndrew Trick       return true;
851bf8a28dcSAndrew Trick   }
852bf8a28dcSAndrew Trick   return false;
853bf8a28dcSAndrew Trick }
854bf8a28dcSAndrew Trick 
85587255e34SAndrew Trick // Gather the processor itineraries.
85676686496SAndrew Trick void CodeGenSchedModels::collectProcItins() {
8578037233bSJoel Jones   DEBUG(dbgs() << "\n+++ PROBLEM ITINERARIES (collectProcItins) +++\n");
8588a417c1fSCraig Topper   for (CodeGenProcModel &ProcModel : ProcModels) {
859bf8a28dcSAndrew Trick     if (!ProcModel.hasItineraries())
86076686496SAndrew Trick       continue;
86187255e34SAndrew Trick 
862bf8a28dcSAndrew Trick     RecVec ItinRecords = ProcModel.ItinsDef->getValueAsListOfDefs("IID");
863bf8a28dcSAndrew Trick     assert(!ItinRecords.empty() && "ProcModel.hasItineraries is incorrect");
864bf8a28dcSAndrew Trick 
865bf8a28dcSAndrew Trick     // Populate ItinDefList with Itinerary records.
866bf8a28dcSAndrew Trick     ProcModel.ItinDefList.resize(NumInstrSchedClasses);
86787255e34SAndrew Trick 
86887255e34SAndrew Trick     // Insert each itinerary data record in the correct position within
86987255e34SAndrew Trick     // the processor model's ItinDefList.
870fc500041SJaved Absar     for (Record *ItinData : ItinRecords) {
87187255e34SAndrew Trick       Record *ItinDef = ItinData->getValueAsDef("TheClass");
872e7bac5f5SAndrew Trick       bool FoundClass = false;
873e7bac5f5SAndrew Trick       for (SchedClassIter SCI = schedClassBegin(), SCE = schedClassEnd();
874e7bac5f5SAndrew Trick            SCI != SCE; ++SCI) {
875e7bac5f5SAndrew Trick         // Multiple SchedClasses may share an itinerary. Update all of them.
876bf8a28dcSAndrew Trick         if (SCI->ItinClassDef == ItinDef) {
877bf8a28dcSAndrew Trick           ProcModel.ItinDefList[SCI->Index] = ItinData;
878e7bac5f5SAndrew Trick           FoundClass = true;
87987255e34SAndrew Trick         }
880bf8a28dcSAndrew Trick       }
881e7bac5f5SAndrew Trick       if (!FoundClass) {
882bf8a28dcSAndrew Trick         DEBUG(dbgs() << ProcModel.ItinsDef->getName()
883bf8a28dcSAndrew Trick               << " missing class for itinerary " << ItinDef->getName() << '\n');
884bf8a28dcSAndrew Trick       }
88587255e34SAndrew Trick     }
88687255e34SAndrew Trick     // Check for missing itinerary entries.
88787255e34SAndrew Trick     assert(!ProcModel.ItinDefList[0] && "NoItinerary class can't have rec");
88876686496SAndrew Trick     DEBUG(
88987255e34SAndrew Trick       for (unsigned i = 1, N = ProcModel.ItinDefList.size(); i < N; ++i) {
89087255e34SAndrew Trick         if (!ProcModel.ItinDefList[i])
89176686496SAndrew Trick           dbgs() << ProcModel.ItinsDef->getName()
89276686496SAndrew Trick                  << " missing itinerary for class "
89376686496SAndrew Trick                  << SchedClasses[i].Name << '\n';
89476686496SAndrew Trick       });
89587255e34SAndrew Trick   }
89687255e34SAndrew Trick }
89776686496SAndrew Trick 
89876686496SAndrew Trick // Gather the read/write types for each itinerary class.
89976686496SAndrew Trick void CodeGenSchedModels::collectProcItinRW() {
90076686496SAndrew Trick   RecVec ItinRWDefs = Records.getAllDerivedDefinitions("ItinRW");
90176686496SAndrew Trick   std::sort(ItinRWDefs.begin(), ItinRWDefs.end(), LessRecord());
90221c75912SJaved Absar   for (Record *RWDef  : ItinRWDefs) {
903f45d0b98SJaved Absar     if (!RWDef->getValueInit("SchedModel")->isComplete())
904f45d0b98SJaved Absar       PrintFatalError(RWDef->getLoc(), "SchedModel is undefined");
905f45d0b98SJaved Absar     Record *ModelDef = RWDef->getValueAsDef("SchedModel");
90676686496SAndrew Trick     ProcModelMapTy::const_iterator I = ProcModelMap.find(ModelDef);
90776686496SAndrew Trick     if (I == ProcModelMap.end()) {
908f45d0b98SJaved Absar       PrintFatalError(RWDef->getLoc(), "Undefined SchedMachineModel "
90976686496SAndrew Trick                     + ModelDef->getName());
91076686496SAndrew Trick     }
911f45d0b98SJaved Absar     ProcModels[I->second].ItinRWDefs.push_back(RWDef);
91276686496SAndrew Trick   }
91376686496SAndrew Trick }
91476686496SAndrew Trick 
9155f95c9afSSimon Dardis // Gather the unsupported features for processor models.
9165f95c9afSSimon Dardis void CodeGenSchedModels::collectProcUnsupportedFeatures() {
9175f95c9afSSimon Dardis   for (CodeGenProcModel &ProcModel : ProcModels) {
9185f95c9afSSimon Dardis     for (Record *Pred : ProcModel.ModelDef->getValueAsListOfDefs("UnsupportedFeatures")) {
9195f95c9afSSimon Dardis        ProcModel.UnsupportedFeaturesDefs.push_back(Pred);
9205f95c9afSSimon Dardis     }
9215f95c9afSSimon Dardis   }
9225f95c9afSSimon Dardis }
9235f95c9afSSimon Dardis 
92433401e84SAndrew Trick /// Infer new classes from existing classes. In the process, this may create new
92533401e84SAndrew Trick /// SchedWrites from sequences of existing SchedWrites.
92633401e84SAndrew Trick void CodeGenSchedModels::inferSchedClasses() {
9278037233bSJoel Jones   DEBUG(dbgs() << "\n+++ INFERRING SCHED CLASSES (inferSchedClasses) +++\n");
928bf8a28dcSAndrew Trick   DEBUG(dbgs() << NumInstrSchedClasses << " instr sched classes.\n");
929bf8a28dcSAndrew Trick 
93033401e84SAndrew Trick   // Visit all existing classes and newly created classes.
93133401e84SAndrew Trick   for (unsigned Idx = 0; Idx != SchedClasses.size(); ++Idx) {
932bf8a28dcSAndrew Trick     assert(SchedClasses[Idx].Index == Idx && "bad SCIdx");
933bf8a28dcSAndrew Trick 
93433401e84SAndrew Trick     if (SchedClasses[Idx].ItinClassDef)
93533401e84SAndrew Trick       inferFromItinClass(SchedClasses[Idx].ItinClassDef, Idx);
936bf8a28dcSAndrew Trick     if (!SchedClasses[Idx].InstRWs.empty())
93733401e84SAndrew Trick       inferFromInstRWs(Idx);
938bf8a28dcSAndrew Trick     if (!SchedClasses[Idx].Writes.empty()) {
93933401e84SAndrew Trick       inferFromRW(SchedClasses[Idx].Writes, SchedClasses[Idx].Reads,
94033401e84SAndrew Trick                   Idx, SchedClasses[Idx].ProcIndices);
94133401e84SAndrew Trick     }
94233401e84SAndrew Trick     assert(SchedClasses.size() < (NumInstrSchedClasses*6) &&
94333401e84SAndrew Trick            "too many SchedVariants");
94433401e84SAndrew Trick   }
94533401e84SAndrew Trick }
94633401e84SAndrew Trick 
94733401e84SAndrew Trick /// Infer classes from per-processor itinerary resources.
94833401e84SAndrew Trick void CodeGenSchedModels::inferFromItinClass(Record *ItinClassDef,
94933401e84SAndrew Trick                                             unsigned FromClassIdx) {
95033401e84SAndrew Trick   for (unsigned PIdx = 0, PEnd = ProcModels.size(); PIdx != PEnd; ++PIdx) {
95133401e84SAndrew Trick     const CodeGenProcModel &PM = ProcModels[PIdx];
95233401e84SAndrew Trick     // For all ItinRW entries.
95333401e84SAndrew Trick     bool HasMatch = false;
95433401e84SAndrew Trick     for (RecIter II = PM.ItinRWDefs.begin(), IE = PM.ItinRWDefs.end();
95533401e84SAndrew Trick          II != IE; ++II) {
95633401e84SAndrew Trick       RecVec Matched = (*II)->getValueAsListOfDefs("MatchedItinClasses");
95733401e84SAndrew Trick       if (!std::count(Matched.begin(), Matched.end(), ItinClassDef))
95833401e84SAndrew Trick         continue;
95933401e84SAndrew Trick       if (HasMatch)
960635debe8SJoerg Sonnenberger         PrintFatalError((*II)->getLoc(), "Duplicate itinerary class "
96133401e84SAndrew Trick                       + ItinClassDef->getName()
96233401e84SAndrew Trick                       + " in ItinResources for " + PM.ModelName);
96333401e84SAndrew Trick       HasMatch = true;
96433401e84SAndrew Trick       IdxVec Writes, Reads;
96533401e84SAndrew Trick       findRWs((*II)->getValueAsListOfDefs("OperandReadWrites"), Writes, Reads);
96633401e84SAndrew Trick       IdxVec ProcIndices(1, PIdx);
96733401e84SAndrew Trick       inferFromRW(Writes, Reads, FromClassIdx, ProcIndices);
96833401e84SAndrew Trick     }
96933401e84SAndrew Trick   }
97033401e84SAndrew Trick }
97133401e84SAndrew Trick 
97233401e84SAndrew Trick /// Infer classes from per-processor InstReadWrite definitions.
97333401e84SAndrew Trick void CodeGenSchedModels::inferFromInstRWs(unsigned SCIdx) {
97458bd79c4SBenjamin Kramer   for (unsigned I = 0, E = SchedClasses[SCIdx].InstRWs.size(); I != E; ++I) {
975b22643a4SBenjamin Kramer     assert(SchedClasses[SCIdx].InstRWs.size() == E && "InstrRWs was mutated!");
97658bd79c4SBenjamin Kramer     Record *Rec = SchedClasses[SCIdx].InstRWs[I];
97758bd79c4SBenjamin Kramer     const RecVec *InstDefs = Sets.expand(Rec);
9789e1deb69SAndrew Trick     RecIter II = InstDefs->begin(), IE = InstDefs->end();
97933401e84SAndrew Trick     for (; II != IE; ++II) {
98033401e84SAndrew Trick       if (InstrClassMap[*II] == SCIdx)
98133401e84SAndrew Trick         break;
98233401e84SAndrew Trick     }
98333401e84SAndrew Trick     // If this class no longer has any instructions mapped to it, it has become
98433401e84SAndrew Trick     // irrelevant.
98533401e84SAndrew Trick     if (II == IE)
98633401e84SAndrew Trick       continue;
98733401e84SAndrew Trick     IdxVec Writes, Reads;
98858bd79c4SBenjamin Kramer     findRWs(Rec->getValueAsListOfDefs("OperandReadWrites"), Writes, Reads);
98958bd79c4SBenjamin Kramer     unsigned PIdx = getProcModel(Rec->getValueAsDef("SchedModel")).Index;
99033401e84SAndrew Trick     IdxVec ProcIndices(1, PIdx);
99158bd79c4SBenjamin Kramer     inferFromRW(Writes, Reads, SCIdx, ProcIndices); // May mutate SchedClasses.
99233401e84SAndrew Trick   }
99333401e84SAndrew Trick }
99433401e84SAndrew Trick 
99533401e84SAndrew Trick namespace {
996a3fe70d2SEugene Zelenko 
9979257b8f8SAndrew Trick // Helper for substituteVariantOperand.
9989257b8f8SAndrew Trick struct TransVariant {
999da984b1aSAndrew Trick   Record *VarOrSeqDef;  // Variant or sequence.
1000da984b1aSAndrew Trick   unsigned RWIdx;       // Index of this variant or sequence's matched type.
10019257b8f8SAndrew Trick   unsigned ProcIdx;     // Processor model index or zero for any.
10029257b8f8SAndrew Trick   unsigned TransVecIdx; // Index into PredTransitions::TransVec.
10039257b8f8SAndrew Trick 
10049257b8f8SAndrew Trick   TransVariant(Record *def, unsigned rwi, unsigned pi, unsigned ti):
1005da984b1aSAndrew Trick     VarOrSeqDef(def), RWIdx(rwi), ProcIdx(pi), TransVecIdx(ti) {}
10069257b8f8SAndrew Trick };
10079257b8f8SAndrew Trick 
100833401e84SAndrew Trick // Associate a predicate with the SchedReadWrite that it guards.
100933401e84SAndrew Trick // RWIdx is the index of the read/write variant.
101033401e84SAndrew Trick struct PredCheck {
101133401e84SAndrew Trick   bool IsRead;
101233401e84SAndrew Trick   unsigned RWIdx;
101333401e84SAndrew Trick   Record *Predicate;
101433401e84SAndrew Trick 
101533401e84SAndrew Trick   PredCheck(bool r, unsigned w, Record *p): IsRead(r), RWIdx(w), Predicate(p) {}
101633401e84SAndrew Trick };
101733401e84SAndrew Trick 
101833401e84SAndrew Trick // A Predicate transition is a list of RW sequences guarded by a PredTerm.
101933401e84SAndrew Trick struct PredTransition {
102033401e84SAndrew Trick   // A predicate term is a conjunction of PredChecks.
102133401e84SAndrew Trick   SmallVector<PredCheck, 4> PredTerm;
102233401e84SAndrew Trick   SmallVector<SmallVector<unsigned,4>, 16> WriteSequences;
102333401e84SAndrew Trick   SmallVector<SmallVector<unsigned,4>, 16> ReadSequences;
10249257b8f8SAndrew Trick   SmallVector<unsigned, 4> ProcIndices;
102533401e84SAndrew Trick };
102633401e84SAndrew Trick 
102733401e84SAndrew Trick // Encapsulate a set of partially constructed transitions.
102833401e84SAndrew Trick // The results are built by repeated calls to substituteVariants.
102933401e84SAndrew Trick class PredTransitions {
103033401e84SAndrew Trick   CodeGenSchedModels &SchedModels;
103133401e84SAndrew Trick 
103233401e84SAndrew Trick public:
103333401e84SAndrew Trick   std::vector<PredTransition> TransVec;
103433401e84SAndrew Trick 
103533401e84SAndrew Trick   PredTransitions(CodeGenSchedModels &sm): SchedModels(sm) {}
103633401e84SAndrew Trick 
103733401e84SAndrew Trick   void substituteVariantOperand(const SmallVectorImpl<unsigned> &RWSeq,
103833401e84SAndrew Trick                                 bool IsRead, unsigned StartIdx);
103933401e84SAndrew Trick 
104033401e84SAndrew Trick   void substituteVariants(const PredTransition &Trans);
104133401e84SAndrew Trick 
104233401e84SAndrew Trick #ifndef NDEBUG
104333401e84SAndrew Trick   void dump() const;
104433401e84SAndrew Trick #endif
104533401e84SAndrew Trick 
104633401e84SAndrew Trick private:
104733401e84SAndrew Trick   bool mutuallyExclusive(Record *PredDef, ArrayRef<PredCheck> Term);
1048da984b1aSAndrew Trick   void getIntersectingVariants(
1049da984b1aSAndrew Trick     const CodeGenSchedRW &SchedRW, unsigned TransIdx,
1050da984b1aSAndrew Trick     std::vector<TransVariant> &IntersectingVariants);
10519257b8f8SAndrew Trick   void pushVariant(const TransVariant &VInfo, bool IsRead);
105233401e84SAndrew Trick };
1053a3fe70d2SEugene Zelenko 
1054a3fe70d2SEugene Zelenko } // end anonymous namespace
105533401e84SAndrew Trick 
105633401e84SAndrew Trick // Return true if this predicate is mutually exclusive with a PredTerm. This
105733401e84SAndrew Trick // degenerates into checking if the predicate is mutually exclusive with any
105833401e84SAndrew Trick // predicate in the Term's conjunction.
105933401e84SAndrew Trick //
106033401e84SAndrew Trick // All predicates associated with a given SchedRW are considered mutually
106133401e84SAndrew Trick // exclusive. This should work even if the conditions expressed by the
106233401e84SAndrew Trick // predicates are not exclusive because the predicates for a given SchedWrite
106333401e84SAndrew Trick // are always checked in the order they are defined in the .td file. Later
106433401e84SAndrew Trick // conditions implicitly negate any prior condition.
106533401e84SAndrew Trick bool PredTransitions::mutuallyExclusive(Record *PredDef,
106633401e84SAndrew Trick                                         ArrayRef<PredCheck> Term) {
106721c75912SJaved Absar   for (const PredCheck &PC: Term) {
1068fc500041SJaved Absar     if (PC.Predicate == PredDef)
106933401e84SAndrew Trick       return false;
107033401e84SAndrew Trick 
1071fc500041SJaved Absar     const CodeGenSchedRW &SchedRW = SchedModels.getSchedRW(PC.RWIdx, PC.IsRead);
107233401e84SAndrew Trick     assert(SchedRW.HasVariants && "PredCheck must refer to a SchedVariant");
107333401e84SAndrew Trick     RecVec Variants = SchedRW.TheDef->getValueAsListOfDefs("Variants");
107433401e84SAndrew Trick     for (RecIter VI = Variants.begin(), VE = Variants.end(); VI != VE; ++VI) {
107533401e84SAndrew Trick       if ((*VI)->getValueAsDef("Predicate") == PredDef)
107633401e84SAndrew Trick         return true;
107733401e84SAndrew Trick     }
107833401e84SAndrew Trick   }
107933401e84SAndrew Trick   return false;
108033401e84SAndrew Trick }
108133401e84SAndrew Trick 
1082da984b1aSAndrew Trick static bool hasAliasedVariants(const CodeGenSchedRW &RW,
1083da984b1aSAndrew Trick                                CodeGenSchedModels &SchedModels) {
1084da984b1aSAndrew Trick   if (RW.HasVariants)
1085da984b1aSAndrew Trick     return true;
1086da984b1aSAndrew Trick 
108721c75912SJaved Absar   for (Record *Alias : RW.Aliases) {
1088da984b1aSAndrew Trick     const CodeGenSchedRW &AliasRW =
1089fc500041SJaved Absar       SchedModels.getSchedRW(Alias->getValueAsDef("AliasRW"));
1090da984b1aSAndrew Trick     if (AliasRW.HasVariants)
1091da984b1aSAndrew Trick       return true;
1092da984b1aSAndrew Trick     if (AliasRW.IsSequence) {
1093da984b1aSAndrew Trick       IdxVec ExpandedRWs;
1094da984b1aSAndrew Trick       SchedModels.expandRWSequence(AliasRW.Index, ExpandedRWs, AliasRW.IsRead);
1095da984b1aSAndrew Trick       for (IdxIter SI = ExpandedRWs.begin(), SE = ExpandedRWs.end();
1096da984b1aSAndrew Trick            SI != SE; ++SI) {
1097da984b1aSAndrew Trick         if (hasAliasedVariants(SchedModels.getSchedRW(*SI, AliasRW.IsRead),
1098da984b1aSAndrew Trick                                SchedModels)) {
1099da984b1aSAndrew Trick           return true;
1100da984b1aSAndrew Trick         }
1101da984b1aSAndrew Trick       }
1102da984b1aSAndrew Trick     }
1103da984b1aSAndrew Trick   }
1104da984b1aSAndrew Trick   return false;
1105da984b1aSAndrew Trick }
1106da984b1aSAndrew Trick 
1107da984b1aSAndrew Trick static bool hasVariant(ArrayRef<PredTransition> Transitions,
1108da984b1aSAndrew Trick                        CodeGenSchedModels &SchedModels) {
1109da984b1aSAndrew Trick   for (ArrayRef<PredTransition>::iterator
1110da984b1aSAndrew Trick          PTI = Transitions.begin(), PTE = Transitions.end();
1111da984b1aSAndrew Trick        PTI != PTE; ++PTI) {
1112da984b1aSAndrew Trick     for (SmallVectorImpl<SmallVector<unsigned,4>>::const_iterator
1113da984b1aSAndrew Trick            WSI = PTI->WriteSequences.begin(), WSE = PTI->WriteSequences.end();
1114da984b1aSAndrew Trick          WSI != WSE; ++WSI) {
1115da984b1aSAndrew Trick       for (SmallVectorImpl<unsigned>::const_iterator
1116da984b1aSAndrew Trick              WI = WSI->begin(), WE = WSI->end(); WI != WE; ++WI) {
1117da984b1aSAndrew Trick         if (hasAliasedVariants(SchedModels.getSchedWrite(*WI), SchedModels))
1118da984b1aSAndrew Trick           return true;
1119da984b1aSAndrew Trick       }
1120da984b1aSAndrew Trick     }
1121da984b1aSAndrew Trick     for (SmallVectorImpl<SmallVector<unsigned,4>>::const_iterator
1122da984b1aSAndrew Trick            RSI = PTI->ReadSequences.begin(), RSE = PTI->ReadSequences.end();
1123da984b1aSAndrew Trick          RSI != RSE; ++RSI) {
1124da984b1aSAndrew Trick       for (SmallVectorImpl<unsigned>::const_iterator
1125da984b1aSAndrew Trick              RI = RSI->begin(), RE = RSI->end(); RI != RE; ++RI) {
1126da984b1aSAndrew Trick         if (hasAliasedVariants(SchedModels.getSchedRead(*RI), SchedModels))
1127da984b1aSAndrew Trick           return true;
1128da984b1aSAndrew Trick       }
1129da984b1aSAndrew Trick     }
1130da984b1aSAndrew Trick   }
1131da984b1aSAndrew Trick   return false;
1132da984b1aSAndrew Trick }
1133da984b1aSAndrew Trick 
1134da984b1aSAndrew Trick // Populate IntersectingVariants with any variants or aliased sequences of the
1135da984b1aSAndrew Trick // given SchedRW whose processor indices and predicates are not mutually
1136d97ff1fcSAndrew Trick // exclusive with the given transition.
1137da984b1aSAndrew Trick void PredTransitions::getIntersectingVariants(
1138da984b1aSAndrew Trick   const CodeGenSchedRW &SchedRW, unsigned TransIdx,
1139da984b1aSAndrew Trick   std::vector<TransVariant> &IntersectingVariants) {
1140da984b1aSAndrew Trick 
1141d97ff1fcSAndrew Trick   bool GenericRW = false;
1142d97ff1fcSAndrew Trick 
1143da984b1aSAndrew Trick   std::vector<TransVariant> Variants;
1144da984b1aSAndrew Trick   if (SchedRW.HasVariants) {
1145da984b1aSAndrew Trick     unsigned VarProcIdx = 0;
1146da984b1aSAndrew Trick     if (SchedRW.TheDef->getValueInit("SchedModel")->isComplete()) {
1147da984b1aSAndrew Trick       Record *ModelDef = SchedRW.TheDef->getValueAsDef("SchedModel");
1148da984b1aSAndrew Trick       VarProcIdx = SchedModels.getProcModel(ModelDef).Index;
1149da984b1aSAndrew Trick     }
1150da984b1aSAndrew Trick     // Push each variant. Assign TransVecIdx later.
1151da984b1aSAndrew Trick     const RecVec VarDefs = SchedRW.TheDef->getValueAsListOfDefs("Variants");
1152f45d0b98SJaved Absar     for (Record *VarDef : VarDefs)
1153f45d0b98SJaved Absar       Variants.push_back(TransVariant(VarDef, SchedRW.Index, VarProcIdx, 0));
1154d97ff1fcSAndrew Trick     if (VarProcIdx == 0)
1155d97ff1fcSAndrew Trick       GenericRW = true;
1156da984b1aSAndrew Trick   }
1157da984b1aSAndrew Trick   for (RecIter AI = SchedRW.Aliases.begin(), AE = SchedRW.Aliases.end();
1158da984b1aSAndrew Trick        AI != AE; ++AI) {
1159da984b1aSAndrew Trick     // If either the SchedAlias itself or the SchedReadWrite that it aliases
1160da984b1aSAndrew Trick     // to is defined within a processor model, constrain all variants to
1161da984b1aSAndrew Trick     // that processor.
1162da984b1aSAndrew Trick     unsigned AliasProcIdx = 0;
1163da984b1aSAndrew Trick     if ((*AI)->getValueInit("SchedModel")->isComplete()) {
1164da984b1aSAndrew Trick       Record *ModelDef = (*AI)->getValueAsDef("SchedModel");
1165da984b1aSAndrew Trick       AliasProcIdx = SchedModels.getProcModel(ModelDef).Index;
1166da984b1aSAndrew Trick     }
1167da984b1aSAndrew Trick     const CodeGenSchedRW &AliasRW =
1168da984b1aSAndrew Trick       SchedModels.getSchedRW((*AI)->getValueAsDef("AliasRW"));
1169da984b1aSAndrew Trick 
1170da984b1aSAndrew Trick     if (AliasRW.HasVariants) {
1171da984b1aSAndrew Trick       const RecVec VarDefs = AliasRW.TheDef->getValueAsListOfDefs("Variants");
11729003dd78SJaved Absar       for (Record *VD : VarDefs)
11739003dd78SJaved Absar         Variants.push_back(TransVariant(VD, AliasRW.Index, AliasProcIdx, 0));
1174da984b1aSAndrew Trick     }
1175da984b1aSAndrew Trick     if (AliasRW.IsSequence) {
1176da984b1aSAndrew Trick       Variants.push_back(
1177da984b1aSAndrew Trick         TransVariant(AliasRW.TheDef, SchedRW.Index, AliasProcIdx, 0));
1178da984b1aSAndrew Trick     }
1179d97ff1fcSAndrew Trick     if (AliasProcIdx == 0)
1180d97ff1fcSAndrew Trick       GenericRW = true;
1181da984b1aSAndrew Trick   }
1182f45d0b98SJaved Absar   for (TransVariant &Variant : Variants) {
1183da984b1aSAndrew Trick     // Don't expand variants if the processor models don't intersect.
1184da984b1aSAndrew Trick     // A zero processor index means any processor.
1185b94011fdSCraig Topper     SmallVectorImpl<unsigned> &ProcIndices = TransVec[TransIdx].ProcIndices;
1186f45d0b98SJaved Absar     if (ProcIndices[0] && Variant.ProcIdx) {
1187da984b1aSAndrew Trick       unsigned Cnt = std::count(ProcIndices.begin(), ProcIndices.end(),
1188da984b1aSAndrew Trick                                 Variant.ProcIdx);
1189da984b1aSAndrew Trick       if (!Cnt)
1190da984b1aSAndrew Trick         continue;
1191da984b1aSAndrew Trick       if (Cnt > 1) {
1192da984b1aSAndrew Trick         const CodeGenProcModel &PM =
1193da984b1aSAndrew Trick           *(SchedModels.procModelBegin() + Variant.ProcIdx);
1194635debe8SJoerg Sonnenberger         PrintFatalError(Variant.VarOrSeqDef->getLoc(),
1195635debe8SJoerg Sonnenberger                         "Multiple variants defined for processor " +
1196635debe8SJoerg Sonnenberger                         PM.ModelName +
1197da984b1aSAndrew Trick                         " Ensure only one SchedAlias exists per RW.");
1198da984b1aSAndrew Trick       }
1199da984b1aSAndrew Trick     }
1200da984b1aSAndrew Trick     if (Variant.VarOrSeqDef->isSubClassOf("SchedVar")) {
1201da984b1aSAndrew Trick       Record *PredDef = Variant.VarOrSeqDef->getValueAsDef("Predicate");
1202da984b1aSAndrew Trick       if (mutuallyExclusive(PredDef, TransVec[TransIdx].PredTerm))
1203da984b1aSAndrew Trick         continue;
1204da984b1aSAndrew Trick     }
1205da984b1aSAndrew Trick     if (IntersectingVariants.empty()) {
1206da984b1aSAndrew Trick       // The first variant builds on the existing transition.
1207da984b1aSAndrew Trick       Variant.TransVecIdx = TransIdx;
1208da984b1aSAndrew Trick       IntersectingVariants.push_back(Variant);
1209da984b1aSAndrew Trick     }
1210da984b1aSAndrew Trick     else {
1211da984b1aSAndrew Trick       // Push another copy of the current transition for more variants.
1212da984b1aSAndrew Trick       Variant.TransVecIdx = TransVec.size();
1213da984b1aSAndrew Trick       IntersectingVariants.push_back(Variant);
1214f6169d02SDan Gohman       TransVec.push_back(TransVec[TransIdx]);
1215da984b1aSAndrew Trick     }
1216da984b1aSAndrew Trick   }
1217d97ff1fcSAndrew Trick   if (GenericRW && IntersectingVariants.empty()) {
1218d97ff1fcSAndrew Trick     PrintFatalError(SchedRW.TheDef->getLoc(), "No variant of this type has "
1219d97ff1fcSAndrew Trick                     "a matching predicate on any processor");
1220d97ff1fcSAndrew Trick   }
1221da984b1aSAndrew Trick }
1222da984b1aSAndrew Trick 
12239257b8f8SAndrew Trick // Push the Reads/Writes selected by this variant onto the PredTransition
12249257b8f8SAndrew Trick // specified by VInfo.
12259257b8f8SAndrew Trick void PredTransitions::
12269257b8f8SAndrew Trick pushVariant(const TransVariant &VInfo, bool IsRead) {
12279257b8f8SAndrew Trick   PredTransition &Trans = TransVec[VInfo.TransVecIdx];
12289257b8f8SAndrew Trick 
12299257b8f8SAndrew Trick   // If this operand transition is reached through a processor-specific alias,
12309257b8f8SAndrew Trick   // then the whole transition is specific to this processor.
12319257b8f8SAndrew Trick   if (VInfo.ProcIdx != 0)
12329257b8f8SAndrew Trick     Trans.ProcIndices.assign(1, VInfo.ProcIdx);
12339257b8f8SAndrew Trick 
123433401e84SAndrew Trick   IdxVec SelectedRWs;
1235da984b1aSAndrew Trick   if (VInfo.VarOrSeqDef->isSubClassOf("SchedVar")) {
1236da984b1aSAndrew Trick     Record *PredDef = VInfo.VarOrSeqDef->getValueAsDef("Predicate");
1237da984b1aSAndrew Trick     Trans.PredTerm.push_back(PredCheck(IsRead, VInfo.RWIdx,PredDef));
1238da984b1aSAndrew Trick     RecVec SelectedDefs = VInfo.VarOrSeqDef->getValueAsListOfDefs("Selected");
123933401e84SAndrew Trick     SchedModels.findRWs(SelectedDefs, SelectedRWs, IsRead);
1240da984b1aSAndrew Trick   }
1241da984b1aSAndrew Trick   else {
1242da984b1aSAndrew Trick     assert(VInfo.VarOrSeqDef->isSubClassOf("WriteSequence") &&
1243da984b1aSAndrew Trick            "variant must be a SchedVariant or aliased WriteSequence");
1244da984b1aSAndrew Trick     SelectedRWs.push_back(SchedModels.getSchedRWIdx(VInfo.VarOrSeqDef, IsRead));
1245da984b1aSAndrew Trick   }
124633401e84SAndrew Trick 
12479257b8f8SAndrew Trick   const CodeGenSchedRW &SchedRW = SchedModels.getSchedRW(VInfo.RWIdx, IsRead);
124833401e84SAndrew Trick 
124933401e84SAndrew Trick   SmallVectorImpl<SmallVector<unsigned,4>> &RWSequences = IsRead
125033401e84SAndrew Trick     ? Trans.ReadSequences : Trans.WriteSequences;
125133401e84SAndrew Trick   if (SchedRW.IsVariadic) {
125233401e84SAndrew Trick     unsigned OperIdx = RWSequences.size()-1;
125333401e84SAndrew Trick     // Make N-1 copies of this transition's last sequence.
125433401e84SAndrew Trick     for (unsigned i = 1, e = SelectedRWs.size(); i != e; ++i) {
12553bd2524bSArnold Schwaighofer       // Create a temporary copy the vector could reallocate.
1256f84a03a5SArnold Schwaighofer       RWSequences.reserve(RWSequences.size() + 1);
1257f84a03a5SArnold Schwaighofer       RWSequences.push_back(RWSequences[OperIdx]);
125833401e84SAndrew Trick     }
125933401e84SAndrew Trick     // Push each of the N elements of the SelectedRWs onto a copy of the last
126033401e84SAndrew Trick     // sequence (split the current operand into N operands).
126133401e84SAndrew Trick     // Note that write sequences should be expanded within this loop--the entire
126233401e84SAndrew Trick     // sequence belongs to a single operand.
126333401e84SAndrew Trick     for (IdxIter RWI = SelectedRWs.begin(), RWE = SelectedRWs.end();
126433401e84SAndrew Trick          RWI != RWE; ++RWI, ++OperIdx) {
126533401e84SAndrew Trick       IdxVec ExpandedRWs;
126633401e84SAndrew Trick       if (IsRead)
126733401e84SAndrew Trick         ExpandedRWs.push_back(*RWI);
126833401e84SAndrew Trick       else
126933401e84SAndrew Trick         SchedModels.expandRWSequence(*RWI, ExpandedRWs, IsRead);
127033401e84SAndrew Trick       RWSequences[OperIdx].insert(RWSequences[OperIdx].end(),
127133401e84SAndrew Trick                                   ExpandedRWs.begin(), ExpandedRWs.end());
127233401e84SAndrew Trick     }
127333401e84SAndrew Trick     assert(OperIdx == RWSequences.size() && "missed a sequence");
127433401e84SAndrew Trick   }
127533401e84SAndrew Trick   else {
127633401e84SAndrew Trick     // Push this transition's expanded sequence onto this transition's last
127733401e84SAndrew Trick     // sequence (add to the current operand's sequence).
127833401e84SAndrew Trick     SmallVectorImpl<unsigned> &Seq = RWSequences.back();
127933401e84SAndrew Trick     IdxVec ExpandedRWs;
128033401e84SAndrew Trick     for (IdxIter RWI = SelectedRWs.begin(), RWE = SelectedRWs.end();
128133401e84SAndrew Trick          RWI != RWE; ++RWI) {
128233401e84SAndrew Trick       if (IsRead)
128333401e84SAndrew Trick         ExpandedRWs.push_back(*RWI);
128433401e84SAndrew Trick       else
128533401e84SAndrew Trick         SchedModels.expandRWSequence(*RWI, ExpandedRWs, IsRead);
128633401e84SAndrew Trick     }
128733401e84SAndrew Trick     Seq.insert(Seq.end(), ExpandedRWs.begin(), ExpandedRWs.end());
128833401e84SAndrew Trick   }
128933401e84SAndrew Trick }
129033401e84SAndrew Trick 
129133401e84SAndrew Trick // RWSeq is a sequence of all Reads or all Writes for the next read or write
129233401e84SAndrew Trick // operand. StartIdx is an index into TransVec where partial results
12939257b8f8SAndrew Trick // starts. RWSeq must be applied to all transitions between StartIdx and the end
129433401e84SAndrew Trick // of TransVec.
129533401e84SAndrew Trick void PredTransitions::substituteVariantOperand(
129633401e84SAndrew Trick   const SmallVectorImpl<unsigned> &RWSeq, bool IsRead, unsigned StartIdx) {
129733401e84SAndrew Trick 
129833401e84SAndrew Trick   // Visit each original RW within the current sequence.
129933401e84SAndrew Trick   for (SmallVectorImpl<unsigned>::const_iterator
130033401e84SAndrew Trick          RWI = RWSeq.begin(), RWE = RWSeq.end(); RWI != RWE; ++RWI) {
130133401e84SAndrew Trick     const CodeGenSchedRW &SchedRW = SchedModels.getSchedRW(*RWI, IsRead);
130233401e84SAndrew Trick     // Push this RW on all partial PredTransitions or distribute variants.
130333401e84SAndrew Trick     // New PredTransitions may be pushed within this loop which should not be
130433401e84SAndrew Trick     // revisited (TransEnd must be loop invariant).
130533401e84SAndrew Trick     for (unsigned TransIdx = StartIdx, TransEnd = TransVec.size();
130633401e84SAndrew Trick          TransIdx != TransEnd; ++TransIdx) {
130733401e84SAndrew Trick       // In the common case, push RW onto the current operand's sequence.
13089257b8f8SAndrew Trick       if (!hasAliasedVariants(SchedRW, SchedModels)) {
130933401e84SAndrew Trick         if (IsRead)
131033401e84SAndrew Trick           TransVec[TransIdx].ReadSequences.back().push_back(*RWI);
131133401e84SAndrew Trick         else
131233401e84SAndrew Trick           TransVec[TransIdx].WriteSequences.back().push_back(*RWI);
131333401e84SAndrew Trick         continue;
131433401e84SAndrew Trick       }
131533401e84SAndrew Trick       // Distribute this partial PredTransition across intersecting variants.
1316da984b1aSAndrew Trick       // This will push a copies of TransVec[TransIdx] on the back of TransVec.
13179257b8f8SAndrew Trick       std::vector<TransVariant> IntersectingVariants;
1318da984b1aSAndrew Trick       getIntersectingVariants(SchedRW, TransIdx, IntersectingVariants);
131933401e84SAndrew Trick       // Now expand each variant on top of its copy of the transition.
13209257b8f8SAndrew Trick       for (std::vector<TransVariant>::const_iterator
132133401e84SAndrew Trick              IVI = IntersectingVariants.begin(),
132233401e84SAndrew Trick              IVE = IntersectingVariants.end();
13239257b8f8SAndrew Trick            IVI != IVE; ++IVI) {
13249257b8f8SAndrew Trick         pushVariant(*IVI, IsRead);
13259257b8f8SAndrew Trick       }
132633401e84SAndrew Trick     }
132733401e84SAndrew Trick   }
132833401e84SAndrew Trick }
132933401e84SAndrew Trick 
133033401e84SAndrew Trick // For each variant of a Read/Write in Trans, substitute the sequence of
133133401e84SAndrew Trick // Read/Writes guarded by the variant. This is exponential in the number of
133233401e84SAndrew Trick // variant Read/Writes, but in practice detection of mutually exclusive
133333401e84SAndrew Trick // predicates should result in linear growth in the total number variants.
133433401e84SAndrew Trick //
133533401e84SAndrew Trick // This is one step in a breadth-first search of nested variants.
133633401e84SAndrew Trick void PredTransitions::substituteVariants(const PredTransition &Trans) {
133733401e84SAndrew Trick   // Build up a set of partial results starting at the back of
133833401e84SAndrew Trick   // PredTransitions. Remember the first new transition.
133933401e84SAndrew Trick   unsigned StartIdx = TransVec.size();
134033401e84SAndrew Trick   TransVec.resize(TransVec.size() + 1);
134133401e84SAndrew Trick   TransVec.back().PredTerm = Trans.PredTerm;
13429257b8f8SAndrew Trick   TransVec.back().ProcIndices = Trans.ProcIndices;
134333401e84SAndrew Trick 
134433401e84SAndrew Trick   // Visit each original write sequence.
134533401e84SAndrew Trick   for (SmallVectorImpl<SmallVector<unsigned,4>>::const_iterator
134633401e84SAndrew Trick          WSI = Trans.WriteSequences.begin(), WSE = Trans.WriteSequences.end();
134733401e84SAndrew Trick        WSI != WSE; ++WSI) {
134833401e84SAndrew Trick     // Push a new (empty) write sequence onto all partial Transitions.
134933401e84SAndrew Trick     for (std::vector<PredTransition>::iterator I =
135033401e84SAndrew Trick            TransVec.begin() + StartIdx, E = TransVec.end(); I != E; ++I) {
135133401e84SAndrew Trick       I->WriteSequences.resize(I->WriteSequences.size() + 1);
135233401e84SAndrew Trick     }
135333401e84SAndrew Trick     substituteVariantOperand(*WSI, /*IsRead=*/false, StartIdx);
135433401e84SAndrew Trick   }
135533401e84SAndrew Trick   // Visit each original read sequence.
135633401e84SAndrew Trick   for (SmallVectorImpl<SmallVector<unsigned,4>>::const_iterator
135733401e84SAndrew Trick          RSI = Trans.ReadSequences.begin(), RSE = Trans.ReadSequences.end();
135833401e84SAndrew Trick        RSI != RSE; ++RSI) {
135933401e84SAndrew Trick     // Push a new (empty) read sequence onto all partial Transitions.
136033401e84SAndrew Trick     for (std::vector<PredTransition>::iterator I =
136133401e84SAndrew Trick            TransVec.begin() + StartIdx, E = TransVec.end(); I != E; ++I) {
136233401e84SAndrew Trick       I->ReadSequences.resize(I->ReadSequences.size() + 1);
136333401e84SAndrew Trick     }
136433401e84SAndrew Trick     substituteVariantOperand(*RSI, /*IsRead=*/true, StartIdx);
136533401e84SAndrew Trick   }
136633401e84SAndrew Trick }
136733401e84SAndrew Trick 
136833401e84SAndrew Trick // Create a new SchedClass for each variant found by inferFromRW. Pass
136933401e84SAndrew Trick static void inferFromTransitions(ArrayRef<PredTransition> LastTransitions,
13709257b8f8SAndrew Trick                                  unsigned FromClassIdx,
137133401e84SAndrew Trick                                  CodeGenSchedModels &SchedModels) {
137233401e84SAndrew Trick   // For each PredTransition, create a new CodeGenSchedTransition, which usually
137333401e84SAndrew Trick   // requires creating a new SchedClass.
137433401e84SAndrew Trick   for (ArrayRef<PredTransition>::iterator
137533401e84SAndrew Trick          I = LastTransitions.begin(), E = LastTransitions.end(); I != E; ++I) {
137633401e84SAndrew Trick     IdxVec OperWritesVariant;
13771970e955SCraig Topper     transform(I->WriteSequences, std::back_inserter(OperWritesVariant),
13781970e955SCraig Topper               [&SchedModels](ArrayRef<unsigned> WS) {
13791970e955SCraig Topper                 return SchedModels.findOrInsertRW(WS, /*IsRead=*/false);
13801970e955SCraig Topper               });
138133401e84SAndrew Trick     IdxVec OperReadsVariant;
13821970e955SCraig Topper     transform(I->ReadSequences, std::back_inserter(OperReadsVariant),
13831970e955SCraig Topper               [&SchedModels](ArrayRef<unsigned> RS) {
13841970e955SCraig Topper                 return SchedModels.findOrInsertRW(RS, /*IsRead=*/true);
13851970e955SCraig Topper               });
13869257b8f8SAndrew Trick     IdxVec ProcIndices(I->ProcIndices.begin(), I->ProcIndices.end());
138733401e84SAndrew Trick     CodeGenSchedTransition SCTrans;
138833401e84SAndrew Trick     SCTrans.ToClassIdx =
138924064771SCraig Topper       SchedModels.addSchedClass(/*ItinClassDef=*/nullptr, OperWritesVariant,
1390bf8a28dcSAndrew Trick                                 OperReadsVariant, ProcIndices);
139133401e84SAndrew Trick     SCTrans.ProcIndices = ProcIndices;
139233401e84SAndrew Trick     // The final PredTerm is unique set of predicates guarding the transition.
139333401e84SAndrew Trick     RecVec Preds;
13941970e955SCraig Topper     transform(I->PredTerm, std::back_inserter(Preds),
13951970e955SCraig Topper               [](const PredCheck &P) {
13961970e955SCraig Topper                 return P.Predicate;
13971970e955SCraig Topper               });
1398b5ed2750SCraig Topper     Preds.erase(std::unique(Preds.begin(), Preds.end()), Preds.end());
139933401e84SAndrew Trick     SCTrans.PredTerm = Preds;
140033401e84SAndrew Trick     SchedModels.getSchedClass(FromClassIdx).Transitions.push_back(SCTrans);
140133401e84SAndrew Trick   }
140233401e84SAndrew Trick }
140333401e84SAndrew Trick 
14049257b8f8SAndrew Trick // Create new SchedClasses for the given ReadWrite list. If any of the
14059257b8f8SAndrew Trick // ReadWrites refers to a SchedVariant, create a new SchedClass for each variant
14069257b8f8SAndrew Trick // of the ReadWrite list, following Aliases if necessary.
1407e1761952SBenjamin Kramer void CodeGenSchedModels::inferFromRW(ArrayRef<unsigned> OperWrites,
1408e1761952SBenjamin Kramer                                      ArrayRef<unsigned> OperReads,
140933401e84SAndrew Trick                                      unsigned FromClassIdx,
1410e1761952SBenjamin Kramer                                      ArrayRef<unsigned> ProcIndices) {
1411e97978f9SAndrew Trick   DEBUG(dbgs() << "INFER RW proc("; dumpIdxVec(ProcIndices); dbgs() << ") ");
141233401e84SAndrew Trick 
141333401e84SAndrew Trick   // Create a seed transition with an empty PredTerm and the expanded sequences
141433401e84SAndrew Trick   // of SchedWrites for the current SchedClass.
141533401e84SAndrew Trick   std::vector<PredTransition> LastTransitions;
141633401e84SAndrew Trick   LastTransitions.resize(1);
14179257b8f8SAndrew Trick   LastTransitions.back().ProcIndices.append(ProcIndices.begin(),
14189257b8f8SAndrew Trick                                             ProcIndices.end());
14199257b8f8SAndrew Trick 
1420e1761952SBenjamin Kramer   for (unsigned WriteIdx : OperWrites) {
142133401e84SAndrew Trick     IdxVec WriteSeq;
1422e1761952SBenjamin Kramer     expandRWSequence(WriteIdx, WriteSeq, /*IsRead=*/false);
142333401e84SAndrew Trick     unsigned Idx = LastTransitions[0].WriteSequences.size();
142433401e84SAndrew Trick     LastTransitions[0].WriteSequences.resize(Idx + 1);
142533401e84SAndrew Trick     SmallVectorImpl<unsigned> &Seq = LastTransitions[0].WriteSequences[Idx];
14261f57456cSCraig Topper     Seq.append(WriteSeq.begin(), WriteSeq.end());
142733401e84SAndrew Trick     DEBUG(dbgs() << "("; dumpIdxVec(Seq); dbgs() << ") ");
142833401e84SAndrew Trick   }
142933401e84SAndrew Trick   DEBUG(dbgs() << " Reads: ");
1430e1761952SBenjamin Kramer   for (unsigned ReadIdx : OperReads) {
143133401e84SAndrew Trick     IdxVec ReadSeq;
1432e1761952SBenjamin Kramer     expandRWSequence(ReadIdx, ReadSeq, /*IsRead=*/true);
143333401e84SAndrew Trick     unsigned Idx = LastTransitions[0].ReadSequences.size();
143433401e84SAndrew Trick     LastTransitions[0].ReadSequences.resize(Idx + 1);
143533401e84SAndrew Trick     SmallVectorImpl<unsigned> &Seq = LastTransitions[0].ReadSequences[Idx];
14361f57456cSCraig Topper     Seq.append(ReadSeq.begin(), ReadSeq.end());
143733401e84SAndrew Trick     DEBUG(dbgs() << "("; dumpIdxVec(Seq); dbgs() << ") ");
143833401e84SAndrew Trick   }
143933401e84SAndrew Trick   DEBUG(dbgs() << '\n');
144033401e84SAndrew Trick 
144133401e84SAndrew Trick   // Collect all PredTransitions for individual operands.
144233401e84SAndrew Trick   // Iterate until no variant writes remain.
144333401e84SAndrew Trick   while (hasVariant(LastTransitions, *this)) {
144433401e84SAndrew Trick     PredTransitions Transitions(*this);
1445f6114259SCraig Topper     for (const PredTransition &Trans : LastTransitions)
1446f6114259SCraig Topper       Transitions.substituteVariants(Trans);
144733401e84SAndrew Trick     DEBUG(Transitions.dump());
144833401e84SAndrew Trick     LastTransitions.swap(Transitions.TransVec);
144933401e84SAndrew Trick   }
145033401e84SAndrew Trick   // If the first transition has no variants, nothing to do.
145133401e84SAndrew Trick   if (LastTransitions[0].PredTerm.empty())
145233401e84SAndrew Trick     return;
145333401e84SAndrew Trick 
145433401e84SAndrew Trick   // WARNING: We are about to mutate the SchedClasses vector. Do not refer to
145533401e84SAndrew Trick   // OperWrites, OperReads, or ProcIndices after calling inferFromTransitions.
14569257b8f8SAndrew Trick   inferFromTransitions(LastTransitions, FromClassIdx, *this);
145733401e84SAndrew Trick }
145833401e84SAndrew Trick 
1459cf398b22SAndrew Trick // Check if any processor resource group contains all resource records in
1460cf398b22SAndrew Trick // SubUnits.
1461cf398b22SAndrew Trick bool CodeGenSchedModels::hasSuperGroup(RecVec &SubUnits, CodeGenProcModel &PM) {
1462cf398b22SAndrew Trick   for (unsigned i = 0, e = PM.ProcResourceDefs.size(); i < e; ++i) {
1463cf398b22SAndrew Trick     if (!PM.ProcResourceDefs[i]->isSubClassOf("ProcResGroup"))
1464cf398b22SAndrew Trick       continue;
1465cf398b22SAndrew Trick     RecVec SuperUnits =
1466cf398b22SAndrew Trick       PM.ProcResourceDefs[i]->getValueAsListOfDefs("Resources");
1467cf398b22SAndrew Trick     RecIter RI = SubUnits.begin(), RE = SubUnits.end();
1468cf398b22SAndrew Trick     for ( ; RI != RE; ++RI) {
14690d955d0bSDavid Majnemer       if (!is_contained(SuperUnits, *RI)) {
1470cf398b22SAndrew Trick         break;
1471cf398b22SAndrew Trick       }
1472cf398b22SAndrew Trick     }
1473cf398b22SAndrew Trick     if (RI == RE)
1474cf398b22SAndrew Trick       return true;
1475cf398b22SAndrew Trick   }
1476cf398b22SAndrew Trick   return false;
1477cf398b22SAndrew Trick }
1478cf398b22SAndrew Trick 
1479cf398b22SAndrew Trick // Verify that overlapping groups have a common supergroup.
1480cf398b22SAndrew Trick void CodeGenSchedModels::verifyProcResourceGroups(CodeGenProcModel &PM) {
1481cf398b22SAndrew Trick   for (unsigned i = 0, e = PM.ProcResourceDefs.size(); i < e; ++i) {
1482cf398b22SAndrew Trick     if (!PM.ProcResourceDefs[i]->isSubClassOf("ProcResGroup"))
1483cf398b22SAndrew Trick       continue;
1484cf398b22SAndrew Trick     RecVec CheckUnits =
1485cf398b22SAndrew Trick       PM.ProcResourceDefs[i]->getValueAsListOfDefs("Resources");
1486cf398b22SAndrew Trick     for (unsigned j = i+1; j < e; ++j) {
1487cf398b22SAndrew Trick       if (!PM.ProcResourceDefs[j]->isSubClassOf("ProcResGroup"))
1488cf398b22SAndrew Trick         continue;
1489cf398b22SAndrew Trick       RecVec OtherUnits =
1490cf398b22SAndrew Trick         PM.ProcResourceDefs[j]->getValueAsListOfDefs("Resources");
1491cf398b22SAndrew Trick       if (std::find_first_of(CheckUnits.begin(), CheckUnits.end(),
1492cf398b22SAndrew Trick                              OtherUnits.begin(), OtherUnits.end())
1493cf398b22SAndrew Trick           != CheckUnits.end()) {
1494cf398b22SAndrew Trick         // CheckUnits and OtherUnits overlap
1495cf398b22SAndrew Trick         OtherUnits.insert(OtherUnits.end(), CheckUnits.begin(),
1496cf398b22SAndrew Trick                           CheckUnits.end());
1497cf398b22SAndrew Trick         if (!hasSuperGroup(OtherUnits, PM)) {
1498cf398b22SAndrew Trick           PrintFatalError((PM.ProcResourceDefs[i])->getLoc(),
1499cf398b22SAndrew Trick                           "proc resource group overlaps with "
1500cf398b22SAndrew Trick                           + PM.ProcResourceDefs[j]->getName()
1501cf398b22SAndrew Trick                           + " but no supergroup contains both.");
1502cf398b22SAndrew Trick         }
1503cf398b22SAndrew Trick       }
1504cf398b22SAndrew Trick     }
1505cf398b22SAndrew Trick   }
1506cf398b22SAndrew Trick }
1507cf398b22SAndrew Trick 
15081e46d488SAndrew Trick // Collect and sort WriteRes, ReadAdvance, and ProcResources.
15091e46d488SAndrew Trick void CodeGenSchedModels::collectProcResources() {
15106b1fd9aaSMatthias Braun   ProcResourceDefs = Records.getAllDerivedDefinitions("ProcResourceUnits");
15116b1fd9aaSMatthias Braun   ProcResGroups = Records.getAllDerivedDefinitions("ProcResGroup");
15126b1fd9aaSMatthias Braun 
15131e46d488SAndrew Trick   // Add any subtarget-specific SchedReadWrites that are directly associated
15141e46d488SAndrew Trick   // with processor resources. Refer to the parent SchedClass's ProcIndices to
15151e46d488SAndrew Trick   // determine which processors they apply to.
15161e46d488SAndrew Trick   for (SchedClassIter SCI = schedClassBegin(), SCE = schedClassEnd();
15171e46d488SAndrew Trick        SCI != SCE; ++SCI) {
15181e46d488SAndrew Trick     if (SCI->ItinClassDef)
15191e46d488SAndrew Trick       collectItinProcResources(SCI->ItinClassDef);
15204fe440d4SAndrew Trick     else {
15214fe440d4SAndrew Trick       // This class may have a default ReadWrite list which can be overriden by
15224fe440d4SAndrew Trick       // InstRW definitions.
15234fe440d4SAndrew Trick       if (!SCI->InstRWs.empty()) {
15244fe440d4SAndrew Trick         for (RecIter RWI = SCI->InstRWs.begin(), RWE = SCI->InstRWs.end();
15254fe440d4SAndrew Trick              RWI != RWE; ++RWI) {
15264fe440d4SAndrew Trick           Record *RWModelDef = (*RWI)->getValueAsDef("SchedModel");
15274fe440d4SAndrew Trick           IdxVec ProcIndices(1, getProcModel(RWModelDef).Index);
15284fe440d4SAndrew Trick           IdxVec Writes, Reads;
15294fe440d4SAndrew Trick           findRWs((*RWI)->getValueAsListOfDefs("OperandReadWrites"),
15304fe440d4SAndrew Trick                   Writes, Reads);
15314fe440d4SAndrew Trick           collectRWResources(Writes, Reads, ProcIndices);
15324fe440d4SAndrew Trick         }
15334fe440d4SAndrew Trick       }
15341e46d488SAndrew Trick       collectRWResources(SCI->Writes, SCI->Reads, SCI->ProcIndices);
15351e46d488SAndrew Trick     }
15364fe440d4SAndrew Trick   }
15371e46d488SAndrew Trick   // Add resources separately defined by each subtarget.
15381e46d488SAndrew Trick   RecVec WRDefs = Records.getAllDerivedDefinitions("WriteRes");
15392c9570c0SJaved Absar   for (Record *WR : WRDefs) {
15402c9570c0SJaved Absar     Record *ModelDef = WR->getValueAsDef("SchedModel");
15412c9570c0SJaved Absar     addWriteRes(WR, getProcModel(ModelDef).Index);
15421e46d488SAndrew Trick   }
1543dca870b2SAndrew Trick   RecVec SWRDefs = Records.getAllDerivedDefinitions("SchedWriteRes");
15442c9570c0SJaved Absar   for (Record *SWR : SWRDefs) {
15452c9570c0SJaved Absar     Record *ModelDef = SWR->getValueAsDef("SchedModel");
15462c9570c0SJaved Absar     addWriteRes(SWR, getProcModel(ModelDef).Index);
1547dca870b2SAndrew Trick   }
15481e46d488SAndrew Trick   RecVec RADefs = Records.getAllDerivedDefinitions("ReadAdvance");
15492c9570c0SJaved Absar   for (Record *RA : RADefs) {
15502c9570c0SJaved Absar     Record *ModelDef = RA->getValueAsDef("SchedModel");
15512c9570c0SJaved Absar     addReadAdvance(RA, getProcModel(ModelDef).Index);
15521e46d488SAndrew Trick   }
1553dca870b2SAndrew Trick   RecVec SRADefs = Records.getAllDerivedDefinitions("SchedReadAdvance");
15542c9570c0SJaved Absar   for (Record *SRA : SRADefs) {
15552c9570c0SJaved Absar     if (SRA->getValueInit("SchedModel")->isComplete()) {
15562c9570c0SJaved Absar       Record *ModelDef = SRA->getValueAsDef("SchedModel");
15572c9570c0SJaved Absar       addReadAdvance(SRA, getProcModel(ModelDef).Index);
1558dca870b2SAndrew Trick     }
1559dca870b2SAndrew Trick   }
156040c4f380SAndrew Trick   // Add ProcResGroups that are defined within this processor model, which may
156140c4f380SAndrew Trick   // not be directly referenced but may directly specify a buffer size.
156240c4f380SAndrew Trick   RecVec ProcResGroups = Records.getAllDerivedDefinitions("ProcResGroup");
156321c75912SJaved Absar   for (Record *PRG : ProcResGroups) {
1564fc500041SJaved Absar     if (!PRG->getValueInit("SchedModel")->isComplete())
156540c4f380SAndrew Trick       continue;
1566fc500041SJaved Absar     CodeGenProcModel &PM = getProcModel(PRG->getValueAsDef("SchedModel"));
1567fc500041SJaved Absar     if (!is_contained(PM.ProcResourceDefs, PRG))
1568fc500041SJaved Absar       PM.ProcResourceDefs.push_back(PRG);
156940c4f380SAndrew Trick   }
1570eb4f5d28SClement Courbet   // Add ProcResourceUnits unconditionally.
1571eb4f5d28SClement Courbet   for (Record *PRU : Records.getAllDerivedDefinitions("ProcResourceUnits")) {
1572eb4f5d28SClement Courbet     if (!PRU->getValueInit("SchedModel")->isComplete())
1573eb4f5d28SClement Courbet       continue;
1574eb4f5d28SClement Courbet     CodeGenProcModel &PM = getProcModel(PRU->getValueAsDef("SchedModel"));
1575eb4f5d28SClement Courbet     if (!is_contained(PM.ProcResourceDefs, PRU))
1576eb4f5d28SClement Courbet       PM.ProcResourceDefs.push_back(PRU);
1577eb4f5d28SClement Courbet   }
15781e46d488SAndrew Trick   // Finalize each ProcModel by sorting the record arrays.
15798a417c1fSCraig Topper   for (CodeGenProcModel &PM : ProcModels) {
15801e46d488SAndrew Trick     std::sort(PM.WriteResDefs.begin(), PM.WriteResDefs.end(),
15811e46d488SAndrew Trick               LessRecord());
15821e46d488SAndrew Trick     std::sort(PM.ReadAdvanceDefs.begin(), PM.ReadAdvanceDefs.end(),
15831e46d488SAndrew Trick               LessRecord());
15841e46d488SAndrew Trick     std::sort(PM.ProcResourceDefs.begin(), PM.ProcResourceDefs.end(),
15851e46d488SAndrew Trick               LessRecord());
15861e46d488SAndrew Trick     DEBUG(
15871e46d488SAndrew Trick       PM.dump();
15881e46d488SAndrew Trick       dbgs() << "WriteResDefs: ";
15891e46d488SAndrew Trick       for (RecIter RI = PM.WriteResDefs.begin(),
15901e46d488SAndrew Trick              RE = PM.WriteResDefs.end(); RI != RE; ++RI) {
15911e46d488SAndrew Trick         if ((*RI)->isSubClassOf("WriteRes"))
15921e46d488SAndrew Trick           dbgs() << (*RI)->getValueAsDef("WriteType")->getName() << " ";
15931e46d488SAndrew Trick         else
15941e46d488SAndrew Trick           dbgs() << (*RI)->getName() << " ";
15951e46d488SAndrew Trick       }
15961e46d488SAndrew Trick       dbgs() << "\nReadAdvanceDefs: ";
15971e46d488SAndrew Trick       for (RecIter RI = PM.ReadAdvanceDefs.begin(),
15981e46d488SAndrew Trick              RE = PM.ReadAdvanceDefs.end(); RI != RE; ++RI) {
15991e46d488SAndrew Trick         if ((*RI)->isSubClassOf("ReadAdvance"))
16001e46d488SAndrew Trick           dbgs() << (*RI)->getValueAsDef("ReadType")->getName() << " ";
16011e46d488SAndrew Trick         else
16021e46d488SAndrew Trick           dbgs() << (*RI)->getName() << " ";
16031e46d488SAndrew Trick       }
16041e46d488SAndrew Trick       dbgs() << "\nProcResourceDefs: ";
16051e46d488SAndrew Trick       for (RecIter RI = PM.ProcResourceDefs.begin(),
16061e46d488SAndrew Trick              RE = PM.ProcResourceDefs.end(); RI != RE; ++RI) {
16071e46d488SAndrew Trick         dbgs() << (*RI)->getName() << " ";
16081e46d488SAndrew Trick       }
16091e46d488SAndrew Trick       dbgs() << '\n');
1610cf398b22SAndrew Trick     verifyProcResourceGroups(PM);
16111e46d488SAndrew Trick   }
16126b1fd9aaSMatthias Braun 
16136b1fd9aaSMatthias Braun   ProcResourceDefs.clear();
16146b1fd9aaSMatthias Braun   ProcResGroups.clear();
16151e46d488SAndrew Trick }
16161e46d488SAndrew Trick 
161717cb5799SMatthias Braun void CodeGenSchedModels::checkCompleteness() {
161817cb5799SMatthias Braun   bool Complete = true;
161917cb5799SMatthias Braun   bool HadCompleteModel = false;
162017cb5799SMatthias Braun   for (const CodeGenProcModel &ProcModel : procModels()) {
162117cb5799SMatthias Braun     if (!ProcModel.ModelDef->getValueAsBit("CompleteModel"))
162217cb5799SMatthias Braun       continue;
162317cb5799SMatthias Braun     for (const CodeGenInstruction *Inst : Target.getInstructionsByEnumValue()) {
162417cb5799SMatthias Braun       if (Inst->hasNoSchedulingInfo)
162517cb5799SMatthias Braun         continue;
16265f95c9afSSimon Dardis       if (ProcModel.isUnsupported(*Inst))
16275f95c9afSSimon Dardis         continue;
162817cb5799SMatthias Braun       unsigned SCIdx = getSchedClassIdx(*Inst);
162917cb5799SMatthias Braun       if (!SCIdx) {
163017cb5799SMatthias Braun         if (Inst->TheDef->isValueUnset("SchedRW") && !HadCompleteModel) {
163117cb5799SMatthias Braun           PrintError("No schedule information for instruction '"
163217cb5799SMatthias Braun                      + Inst->TheDef->getName() + "'");
163317cb5799SMatthias Braun           Complete = false;
163417cb5799SMatthias Braun         }
163517cb5799SMatthias Braun         continue;
163617cb5799SMatthias Braun       }
163717cb5799SMatthias Braun 
163817cb5799SMatthias Braun       const CodeGenSchedClass &SC = getSchedClass(SCIdx);
163917cb5799SMatthias Braun       if (!SC.Writes.empty())
164017cb5799SMatthias Braun         continue;
164175cda2f2SUlrich Weigand       if (SC.ItinClassDef != nullptr &&
164275cda2f2SUlrich Weigand           SC.ItinClassDef->getName() != "NoItinerary")
164342d9ad9cSMatthias Braun         continue;
164417cb5799SMatthias Braun 
164517cb5799SMatthias Braun       const RecVec &InstRWs = SC.InstRWs;
1646562e8294SDavid Majnemer       auto I = find_if(InstRWs, [&ProcModel](const Record *R) {
1647562e8294SDavid Majnemer         return R->getValueAsDef("SchedModel") == ProcModel.ModelDef;
164817cb5799SMatthias Braun       });
164917cb5799SMatthias Braun       if (I == InstRWs.end()) {
165017cb5799SMatthias Braun         PrintError("'" + ProcModel.ModelName + "' lacks information for '" +
165117cb5799SMatthias Braun                    Inst->TheDef->getName() + "'");
165217cb5799SMatthias Braun         Complete = false;
165317cb5799SMatthias Braun       }
165417cb5799SMatthias Braun     }
165517cb5799SMatthias Braun     HadCompleteModel = true;
165617cb5799SMatthias Braun   }
1657a939bd07SMatthias Braun   if (!Complete) {
1658a939bd07SMatthias Braun     errs() << "\n\nIncomplete schedule models found.\n"
1659a939bd07SMatthias Braun       << "- Consider setting 'CompleteModel = 0' while developing new models.\n"
1660a939bd07SMatthias Braun       << "- Pseudo instructions can be marked with 'hasNoSchedulingInfo = 1'.\n"
1661a939bd07SMatthias Braun       << "- Instructions should usually have Sched<[...]> as a superclass, "
16625f95c9afSSimon Dardis          "you may temporarily use an empty list.\n"
16635f95c9afSSimon Dardis       << "- Instructions related to unsupported features can be excluded with "
16645f95c9afSSimon Dardis          "list<Predicate> UnsupportedFeatures = [HasA,..,HasY]; in the "
16655f95c9afSSimon Dardis          "processor model.\n\n";
166617cb5799SMatthias Braun     PrintFatalError("Incomplete schedule model");
166717cb5799SMatthias Braun   }
1668a939bd07SMatthias Braun }
166917cb5799SMatthias Braun 
16701e46d488SAndrew Trick // Collect itinerary class resources for each processor.
16711e46d488SAndrew Trick void CodeGenSchedModels::collectItinProcResources(Record *ItinClassDef) {
16721e46d488SAndrew Trick   for (unsigned PIdx = 0, PEnd = ProcModels.size(); PIdx != PEnd; ++PIdx) {
16731e46d488SAndrew Trick     const CodeGenProcModel &PM = ProcModels[PIdx];
16741e46d488SAndrew Trick     // For all ItinRW entries.
16751e46d488SAndrew Trick     bool HasMatch = false;
16761e46d488SAndrew Trick     for (RecIter II = PM.ItinRWDefs.begin(), IE = PM.ItinRWDefs.end();
16771e46d488SAndrew Trick          II != IE; ++II) {
16781e46d488SAndrew Trick       RecVec Matched = (*II)->getValueAsListOfDefs("MatchedItinClasses");
16791e46d488SAndrew Trick       if (!std::count(Matched.begin(), Matched.end(), ItinClassDef))
16801e46d488SAndrew Trick         continue;
16811e46d488SAndrew Trick       if (HasMatch)
1682635debe8SJoerg Sonnenberger         PrintFatalError((*II)->getLoc(), "Duplicate itinerary class "
16831e46d488SAndrew Trick                         + ItinClassDef->getName()
16841e46d488SAndrew Trick                         + " in ItinResources for " + PM.ModelName);
16851e46d488SAndrew Trick       HasMatch = true;
16861e46d488SAndrew Trick       IdxVec Writes, Reads;
16871e46d488SAndrew Trick       findRWs((*II)->getValueAsListOfDefs("OperandReadWrites"), Writes, Reads);
16881e46d488SAndrew Trick       IdxVec ProcIndices(1, PIdx);
16891e46d488SAndrew Trick       collectRWResources(Writes, Reads, ProcIndices);
16901e46d488SAndrew Trick     }
16911e46d488SAndrew Trick   }
16921e46d488SAndrew Trick }
16931e46d488SAndrew Trick 
1694d0b9c445SAndrew Trick void CodeGenSchedModels::collectRWResources(unsigned RWIdx, bool IsRead,
1695e1761952SBenjamin Kramer                                             ArrayRef<unsigned> ProcIndices) {
1696d0b9c445SAndrew Trick   const CodeGenSchedRW &SchedRW = getSchedRW(RWIdx, IsRead);
1697d0b9c445SAndrew Trick   if (SchedRW.TheDef) {
1698d0b9c445SAndrew Trick     if (!IsRead && SchedRW.TheDef->isSubClassOf("SchedWriteRes")) {
1699e1761952SBenjamin Kramer       for (unsigned Idx : ProcIndices)
1700e1761952SBenjamin Kramer         addWriteRes(SchedRW.TheDef, Idx);
1701d0b9c445SAndrew Trick     }
1702d0b9c445SAndrew Trick     else if (IsRead && SchedRW.TheDef->isSubClassOf("SchedReadAdvance")) {
1703e1761952SBenjamin Kramer       for (unsigned Idx : ProcIndices)
1704e1761952SBenjamin Kramer         addReadAdvance(SchedRW.TheDef, Idx);
1705d0b9c445SAndrew Trick     }
1706d0b9c445SAndrew Trick   }
1707d0b9c445SAndrew Trick   for (RecIter AI = SchedRW.Aliases.begin(), AE = SchedRW.Aliases.end();
1708d0b9c445SAndrew Trick        AI != AE; ++AI) {
1709d0b9c445SAndrew Trick     IdxVec AliasProcIndices;
1710d0b9c445SAndrew Trick     if ((*AI)->getValueInit("SchedModel")->isComplete()) {
1711d0b9c445SAndrew Trick       AliasProcIndices.push_back(
1712d0b9c445SAndrew Trick         getProcModel((*AI)->getValueAsDef("SchedModel")).Index);
1713d0b9c445SAndrew Trick     }
1714d0b9c445SAndrew Trick     else
1715d0b9c445SAndrew Trick       AliasProcIndices = ProcIndices;
1716d0b9c445SAndrew Trick     const CodeGenSchedRW &AliasRW = getSchedRW((*AI)->getValueAsDef("AliasRW"));
1717d0b9c445SAndrew Trick     assert(AliasRW.IsRead == IsRead && "cannot alias reads to writes");
1718d0b9c445SAndrew Trick 
1719d0b9c445SAndrew Trick     IdxVec ExpandedRWs;
1720d0b9c445SAndrew Trick     expandRWSequence(AliasRW.Index, ExpandedRWs, IsRead);
1721d0b9c445SAndrew Trick     for (IdxIter SI = ExpandedRWs.begin(), SE = ExpandedRWs.end();
1722d0b9c445SAndrew Trick          SI != SE; ++SI) {
1723d0b9c445SAndrew Trick       collectRWResources(*SI, IsRead, AliasProcIndices);
1724d0b9c445SAndrew Trick     }
1725d0b9c445SAndrew Trick   }
1726d0b9c445SAndrew Trick }
17271e46d488SAndrew Trick 
17281e46d488SAndrew Trick // Collect resources for a set of read/write types and processor indices.
1729e1761952SBenjamin Kramer void CodeGenSchedModels::collectRWResources(ArrayRef<unsigned> Writes,
1730e1761952SBenjamin Kramer                                             ArrayRef<unsigned> Reads,
1731e1761952SBenjamin Kramer                                             ArrayRef<unsigned> ProcIndices) {
1732e1761952SBenjamin Kramer   for (unsigned Idx : Writes)
1733e1761952SBenjamin Kramer     collectRWResources(Idx, /*IsRead=*/false, ProcIndices);
1734d0b9c445SAndrew Trick 
1735e1761952SBenjamin Kramer   for (unsigned Idx : Reads)
1736e1761952SBenjamin Kramer     collectRWResources(Idx, /*IsRead=*/true, ProcIndices);
17371e46d488SAndrew Trick }
1738d0b9c445SAndrew Trick 
17391e46d488SAndrew Trick // Find the processor's resource units for this kind of resource.
17401e46d488SAndrew Trick Record *CodeGenSchedModels::findProcResUnits(Record *ProcResKind,
17419dc54e25SEvandro Menezes                                              const CodeGenProcModel &PM,
17429dc54e25SEvandro Menezes                                              ArrayRef<SMLoc> Loc) const {
17431e46d488SAndrew Trick   if (ProcResKind->isSubClassOf("ProcResourceUnits"))
17441e46d488SAndrew Trick     return ProcResKind;
17451e46d488SAndrew Trick 
174624064771SCraig Topper   Record *ProcUnitDef = nullptr;
17476b1fd9aaSMatthias Braun   assert(!ProcResourceDefs.empty());
17486b1fd9aaSMatthias Braun   assert(!ProcResGroups.empty());
17491e46d488SAndrew Trick 
175067b042c2SJaved Absar   for (Record *ProcResDef : ProcResourceDefs) {
175167b042c2SJaved Absar     if (ProcResDef->getValueAsDef("Kind") == ProcResKind
175267b042c2SJaved Absar         && ProcResDef->getValueAsDef("SchedModel") == PM.ModelDef) {
17531e46d488SAndrew Trick       if (ProcUnitDef) {
17549dc54e25SEvandro Menezes         PrintFatalError(Loc,
17551e46d488SAndrew Trick                         "Multiple ProcessorResourceUnits associated with "
17561e46d488SAndrew Trick                         + ProcResKind->getName());
17571e46d488SAndrew Trick       }
175867b042c2SJaved Absar       ProcUnitDef = ProcResDef;
17591e46d488SAndrew Trick     }
17601e46d488SAndrew Trick   }
176167b042c2SJaved Absar   for (Record *ProcResGroup : ProcResGroups) {
176267b042c2SJaved Absar     if (ProcResGroup == ProcResKind
176367b042c2SJaved Absar         && ProcResGroup->getValueAsDef("SchedModel") == PM.ModelDef) {
17644e67cba8SAndrew Trick       if (ProcUnitDef) {
17659dc54e25SEvandro Menezes         PrintFatalError(Loc,
17664e67cba8SAndrew Trick                         "Multiple ProcessorResourceUnits associated with "
17674e67cba8SAndrew Trick                         + ProcResKind->getName());
17684e67cba8SAndrew Trick       }
176967b042c2SJaved Absar       ProcUnitDef = ProcResGroup;
17704e67cba8SAndrew Trick     }
17714e67cba8SAndrew Trick   }
17721e46d488SAndrew Trick   if (!ProcUnitDef) {
17739dc54e25SEvandro Menezes     PrintFatalError(Loc,
17741e46d488SAndrew Trick                     "No ProcessorResources associated with "
17751e46d488SAndrew Trick                     + ProcResKind->getName());
17761e46d488SAndrew Trick   }
17771e46d488SAndrew Trick   return ProcUnitDef;
17781e46d488SAndrew Trick }
17791e46d488SAndrew Trick 
17801e46d488SAndrew Trick // Iteratively add a resource and its super resources.
17811e46d488SAndrew Trick void CodeGenSchedModels::addProcResource(Record *ProcResKind,
17829dc54e25SEvandro Menezes                                          CodeGenProcModel &PM,
17839dc54e25SEvandro Menezes                                          ArrayRef<SMLoc> Loc) {
1784a3fe70d2SEugene Zelenko   while (true) {
17859dc54e25SEvandro Menezes     Record *ProcResUnits = findProcResUnits(ProcResKind, PM, Loc);
17861e46d488SAndrew Trick 
17871e46d488SAndrew Trick     // See if this ProcResource is already associated with this processor.
178842531260SDavid Majnemer     if (is_contained(PM.ProcResourceDefs, ProcResUnits))
17891e46d488SAndrew Trick       return;
17901e46d488SAndrew Trick 
17911e46d488SAndrew Trick     PM.ProcResourceDefs.push_back(ProcResUnits);
17924e67cba8SAndrew Trick     if (ProcResUnits->isSubClassOf("ProcResGroup"))
17934e67cba8SAndrew Trick       return;
17944e67cba8SAndrew Trick 
17951e46d488SAndrew Trick     if (!ProcResUnits->getValueInit("Super")->isComplete())
17961e46d488SAndrew Trick       return;
17971e46d488SAndrew Trick 
17981e46d488SAndrew Trick     ProcResKind = ProcResUnits->getValueAsDef("Super");
17991e46d488SAndrew Trick   }
18001e46d488SAndrew Trick }
18011e46d488SAndrew Trick 
18021e46d488SAndrew Trick // Add resources for a SchedWrite to this processor if they don't exist.
18031e46d488SAndrew Trick void CodeGenSchedModels::addWriteRes(Record *ProcWriteResDef, unsigned PIdx) {
18049257b8f8SAndrew Trick   assert(PIdx && "don't add resources to an invalid Processor model");
18059257b8f8SAndrew Trick 
18061e46d488SAndrew Trick   RecVec &WRDefs = ProcModels[PIdx].WriteResDefs;
180742531260SDavid Majnemer   if (is_contained(WRDefs, ProcWriteResDef))
18081e46d488SAndrew Trick     return;
18091e46d488SAndrew Trick   WRDefs.push_back(ProcWriteResDef);
18101e46d488SAndrew Trick 
18111e46d488SAndrew Trick   // Visit ProcResourceKinds referenced by the newly discovered WriteRes.
18121e46d488SAndrew Trick   RecVec ProcResDefs = ProcWriteResDef->getValueAsListOfDefs("ProcResources");
18131e46d488SAndrew Trick   for (RecIter WritePRI = ProcResDefs.begin(), WritePRE = ProcResDefs.end();
18141e46d488SAndrew Trick        WritePRI != WritePRE; ++WritePRI) {
18159dc54e25SEvandro Menezes     addProcResource(*WritePRI, ProcModels[PIdx], ProcWriteResDef->getLoc());
18161e46d488SAndrew Trick   }
18171e46d488SAndrew Trick }
18181e46d488SAndrew Trick 
18191e46d488SAndrew Trick // Add resources for a ReadAdvance to this processor if they don't exist.
18201e46d488SAndrew Trick void CodeGenSchedModels::addReadAdvance(Record *ProcReadAdvanceDef,
18211e46d488SAndrew Trick                                         unsigned PIdx) {
18221e46d488SAndrew Trick   RecVec &RADefs = ProcModels[PIdx].ReadAdvanceDefs;
182342531260SDavid Majnemer   if (is_contained(RADefs, ProcReadAdvanceDef))
18241e46d488SAndrew Trick     return;
18251e46d488SAndrew Trick   RADefs.push_back(ProcReadAdvanceDef);
18261e46d488SAndrew Trick }
18271e46d488SAndrew Trick 
18288fa00f50SAndrew Trick unsigned CodeGenProcModel::getProcResourceIdx(Record *PRDef) const {
18290d955d0bSDavid Majnemer   RecIter PRPos = find(ProcResourceDefs, PRDef);
18308fa00f50SAndrew Trick   if (PRPos == ProcResourceDefs.end())
1831635debe8SJoerg Sonnenberger     PrintFatalError(PRDef->getLoc(), "ProcResource def is not included in "
18328fa00f50SAndrew Trick                     "the ProcResources list for " + ModelName);
18338fa00f50SAndrew Trick   // Idx=0 is reserved for invalid.
18347296139dSRafael Espindola   return 1 + (PRPos - ProcResourceDefs.begin());
18358fa00f50SAndrew Trick }
18368fa00f50SAndrew Trick 
18375f95c9afSSimon Dardis bool CodeGenProcModel::isUnsupported(const CodeGenInstruction &Inst) const {
18385f95c9afSSimon Dardis   for (const Record *TheDef : UnsupportedFeaturesDefs) {
18395f95c9afSSimon Dardis     for (const Record *PredDef : Inst.TheDef->getValueAsListOfDefs("Predicates")) {
18405f95c9afSSimon Dardis       if (TheDef->getName() == PredDef->getName())
18415f95c9afSSimon Dardis         return true;
18425f95c9afSSimon Dardis     }
18435f95c9afSSimon Dardis   }
18445f95c9afSSimon Dardis   return false;
18455f95c9afSSimon Dardis }
18465f95c9afSSimon Dardis 
184776686496SAndrew Trick #ifndef NDEBUG
184876686496SAndrew Trick void CodeGenProcModel::dump() const {
184976686496SAndrew Trick   dbgs() << Index << ": " << ModelName << " "
185076686496SAndrew Trick          << (ModelDef ? ModelDef->getName() : "inferred") << " "
185176686496SAndrew Trick          << (ItinsDef ? ItinsDef->getName() : "no itinerary") << '\n';
185276686496SAndrew Trick }
185376686496SAndrew Trick 
185476686496SAndrew Trick void CodeGenSchedRW::dump() const {
185576686496SAndrew Trick   dbgs() << Name << (IsVariadic ? " (V) " : " ");
185676686496SAndrew Trick   if (IsSequence) {
185776686496SAndrew Trick     dbgs() << "(";
185876686496SAndrew Trick     dumpIdxVec(Sequence);
185976686496SAndrew Trick     dbgs() << ")";
186076686496SAndrew Trick   }
186176686496SAndrew Trick }
186276686496SAndrew Trick 
186376686496SAndrew Trick void CodeGenSchedClass::dump(const CodeGenSchedModels* SchedModels) const {
1864bf8a28dcSAndrew Trick   dbgs() << "SCHEDCLASS " << Index << ":" << Name << '\n'
186576686496SAndrew Trick          << "  Writes: ";
186676686496SAndrew Trick   for (unsigned i = 0, N = Writes.size(); i < N; ++i) {
186776686496SAndrew Trick     SchedModels->getSchedWrite(Writes[i]).dump();
186876686496SAndrew Trick     if (i < N-1) {
186976686496SAndrew Trick       dbgs() << '\n';
187076686496SAndrew Trick       dbgs().indent(10);
187176686496SAndrew Trick     }
187276686496SAndrew Trick   }
187376686496SAndrew Trick   dbgs() << "\n  Reads: ";
187476686496SAndrew Trick   for (unsigned i = 0, N = Reads.size(); i < N; ++i) {
187576686496SAndrew Trick     SchedModels->getSchedRead(Reads[i]).dump();
187676686496SAndrew Trick     if (i < N-1) {
187776686496SAndrew Trick       dbgs() << '\n';
187876686496SAndrew Trick       dbgs().indent(10);
187976686496SAndrew Trick     }
188076686496SAndrew Trick   }
188176686496SAndrew Trick   dbgs() << "\n  ProcIdx: "; dumpIdxVec(ProcIndices); dbgs() << '\n';
1882e97978f9SAndrew Trick   if (!Transitions.empty()) {
1883e97978f9SAndrew Trick     dbgs() << "\n Transitions for Proc ";
188467b042c2SJaved Absar     for (const CodeGenSchedTransition &Transition : Transitions) {
188567b042c2SJaved Absar       dumpIdxVec(Transition.ProcIndices);
1886e97978f9SAndrew Trick     }
1887e97978f9SAndrew Trick   }
188876686496SAndrew Trick }
188933401e84SAndrew Trick 
189033401e84SAndrew Trick void PredTransitions::dump() const {
189133401e84SAndrew Trick   dbgs() << "Expanded Variants:\n";
189233401e84SAndrew Trick   for (std::vector<PredTransition>::const_iterator
189333401e84SAndrew Trick          TI = TransVec.begin(), TE = TransVec.end(); TI != TE; ++TI) {
189433401e84SAndrew Trick     dbgs() << "{";
189533401e84SAndrew Trick     for (SmallVectorImpl<PredCheck>::const_iterator
189633401e84SAndrew Trick            PCI = TI->PredTerm.begin(), PCE = TI->PredTerm.end();
189733401e84SAndrew Trick          PCI != PCE; ++PCI) {
189833401e84SAndrew Trick       if (PCI != TI->PredTerm.begin())
189933401e84SAndrew Trick         dbgs() << ", ";
190033401e84SAndrew Trick       dbgs() << SchedModels.getSchedRW(PCI->RWIdx, PCI->IsRead).Name
190133401e84SAndrew Trick              << ":" << PCI->Predicate->getName();
190233401e84SAndrew Trick     }
190333401e84SAndrew Trick     dbgs() << "},\n  => {";
190433401e84SAndrew Trick     for (SmallVectorImpl<SmallVector<unsigned,4>>::const_iterator
190533401e84SAndrew Trick            WSI = TI->WriteSequences.begin(), WSE = TI->WriteSequences.end();
190633401e84SAndrew Trick          WSI != WSE; ++WSI) {
190733401e84SAndrew Trick       dbgs() << "(";
190833401e84SAndrew Trick       for (SmallVectorImpl<unsigned>::const_iterator
190933401e84SAndrew Trick              WI = WSI->begin(), WE = WSI->end(); WI != WE; ++WI) {
191033401e84SAndrew Trick         if (WI != WSI->begin())
191133401e84SAndrew Trick           dbgs() << ", ";
191233401e84SAndrew Trick         dbgs() << SchedModels.getSchedWrite(*WI).Name;
191333401e84SAndrew Trick       }
191433401e84SAndrew Trick       dbgs() << "),";
191533401e84SAndrew Trick     }
191633401e84SAndrew Trick     dbgs() << "}\n";
191733401e84SAndrew Trick   }
191833401e84SAndrew Trick }
191976686496SAndrew Trick #endif // NDEBUG
1920