14d6fb72aSErik Eckstein //===- FunctionComparator.h - Function Comparator -------------------------===//
24d6fb72aSErik Eckstein //
34d6fb72aSErik Eckstein //                     The LLVM Compiler Infrastructure
44d6fb72aSErik Eckstein //
54d6fb72aSErik Eckstein // This file is distributed under the University of Illinois Open Source
64d6fb72aSErik Eckstein // License. See LICENSE.TXT for details.
74d6fb72aSErik Eckstein //
84d6fb72aSErik Eckstein //===----------------------------------------------------------------------===//
94d6fb72aSErik Eckstein //
104d6fb72aSErik Eckstein // This file implements the FunctionComparator and GlobalNumberState classes
114d6fb72aSErik Eckstein // which are used by the MergeFunctions pass for comparing functions.
124d6fb72aSErik Eckstein //
134d6fb72aSErik Eckstein //===----------------------------------------------------------------------===//
144d6fb72aSErik Eckstein 
154d6fb72aSErik Eckstein #include "llvm/Transforms/Utils/FunctionComparator.h"
164d6fb72aSErik Eckstein #include "llvm/ADT/SmallSet.h"
174d6fb72aSErik Eckstein #include "llvm/IR/CallSite.h"
184d6fb72aSErik Eckstein #include "llvm/IR/Instructions.h"
194d6fb72aSErik Eckstein #include "llvm/IR/InlineAsm.h"
204d6fb72aSErik Eckstein #include "llvm/IR/Module.h"
214d6fb72aSErik Eckstein #include "llvm/Support/Debug.h"
224d6fb72aSErik Eckstein #include "llvm/Support/raw_ostream.h"
234d6fb72aSErik Eckstein 
244d6fb72aSErik Eckstein using namespace llvm;
254d6fb72aSErik Eckstein 
264d6fb72aSErik Eckstein #define DEBUG_TYPE "functioncomparator"
274d6fb72aSErik Eckstein 
284d6fb72aSErik Eckstein int FunctionComparator::cmpNumbers(uint64_t L, uint64_t R) const {
294d6fb72aSErik Eckstein   if (L < R) return -1;
304d6fb72aSErik Eckstein   if (L > R) return 1;
314d6fb72aSErik Eckstein   return 0;
324d6fb72aSErik Eckstein }
334d6fb72aSErik Eckstein 
344d6fb72aSErik Eckstein int FunctionComparator::cmpOrderings(AtomicOrdering L, AtomicOrdering R) const {
354d6fb72aSErik Eckstein   if ((int)L < (int)R) return -1;
364d6fb72aSErik Eckstein   if ((int)L > (int)R) return 1;
374d6fb72aSErik Eckstein   return 0;
384d6fb72aSErik Eckstein }
394d6fb72aSErik Eckstein 
404d6fb72aSErik Eckstein int FunctionComparator::cmpAPInts(const APInt &L, const APInt &R) const {
414d6fb72aSErik Eckstein   if (int Res = cmpNumbers(L.getBitWidth(), R.getBitWidth()))
424d6fb72aSErik Eckstein     return Res;
434d6fb72aSErik Eckstein   if (L.ugt(R)) return 1;
444d6fb72aSErik Eckstein   if (R.ugt(L)) return -1;
454d6fb72aSErik Eckstein   return 0;
464d6fb72aSErik Eckstein }
474d6fb72aSErik Eckstein 
484d6fb72aSErik Eckstein int FunctionComparator::cmpAPFloats(const APFloat &L, const APFloat &R) const {
494d6fb72aSErik Eckstein   // Floats are ordered first by semantics (i.e. float, double, half, etc.),
504d6fb72aSErik Eckstein   // then by value interpreted as a bitstring (aka APInt).
514d6fb72aSErik Eckstein   const fltSemantics &SL = L.getSemantics(), &SR = R.getSemantics();
524d6fb72aSErik Eckstein   if (int Res = cmpNumbers(APFloat::semanticsPrecision(SL),
534d6fb72aSErik Eckstein                            APFloat::semanticsPrecision(SR)))
544d6fb72aSErik Eckstein     return Res;
554d6fb72aSErik Eckstein   if (int Res = cmpNumbers(APFloat::semanticsMaxExponent(SL),
564d6fb72aSErik Eckstein                            APFloat::semanticsMaxExponent(SR)))
574d6fb72aSErik Eckstein     return Res;
584d6fb72aSErik Eckstein   if (int Res = cmpNumbers(APFloat::semanticsMinExponent(SL),
594d6fb72aSErik Eckstein                            APFloat::semanticsMinExponent(SR)))
604d6fb72aSErik Eckstein     return Res;
614d6fb72aSErik Eckstein   if (int Res = cmpNumbers(APFloat::semanticsSizeInBits(SL),
624d6fb72aSErik Eckstein                            APFloat::semanticsSizeInBits(SR)))
634d6fb72aSErik Eckstein     return Res;
644d6fb72aSErik Eckstein   return cmpAPInts(L.bitcastToAPInt(), R.bitcastToAPInt());
654d6fb72aSErik Eckstein }
664d6fb72aSErik Eckstein 
674d6fb72aSErik Eckstein int FunctionComparator::cmpMem(StringRef L, StringRef R) const {
684d6fb72aSErik Eckstein   // Prevent heavy comparison, compare sizes first.
694d6fb72aSErik Eckstein   if (int Res = cmpNumbers(L.size(), R.size()))
704d6fb72aSErik Eckstein     return Res;
714d6fb72aSErik Eckstein 
724d6fb72aSErik Eckstein   // Compare strings lexicographically only when it is necessary: only when
734d6fb72aSErik Eckstein   // strings are equal in size.
744d6fb72aSErik Eckstein   return L.compare(R);
754d6fb72aSErik Eckstein }
764d6fb72aSErik Eckstein 
774d6fb72aSErik Eckstein int FunctionComparator::cmpAttrs(const AttributeSet L,
784d6fb72aSErik Eckstein                                  const AttributeSet R) const {
794d6fb72aSErik Eckstein   if (int Res = cmpNumbers(L.getNumSlots(), R.getNumSlots()))
804d6fb72aSErik Eckstein     return Res;
814d6fb72aSErik Eckstein 
824d6fb72aSErik Eckstein   for (unsigned i = 0, e = L.getNumSlots(); i != e; ++i) {
834d6fb72aSErik Eckstein     AttributeSet::iterator LI = L.begin(i), LE = L.end(i), RI = R.begin(i),
844d6fb72aSErik Eckstein                            RE = R.end(i);
854d6fb72aSErik Eckstein     for (; LI != LE && RI != RE; ++LI, ++RI) {
864d6fb72aSErik Eckstein       Attribute LA = *LI;
874d6fb72aSErik Eckstein       Attribute RA = *RI;
884d6fb72aSErik Eckstein       if (LA < RA)
894d6fb72aSErik Eckstein         return -1;
904d6fb72aSErik Eckstein       if (RA < LA)
914d6fb72aSErik Eckstein         return 1;
924d6fb72aSErik Eckstein     }
934d6fb72aSErik Eckstein     if (LI != LE)
944d6fb72aSErik Eckstein       return 1;
954d6fb72aSErik Eckstein     if (RI != RE)
964d6fb72aSErik Eckstein       return -1;
974d6fb72aSErik Eckstein   }
984d6fb72aSErik Eckstein   return 0;
994d6fb72aSErik Eckstein }
1004d6fb72aSErik Eckstein 
1014d6fb72aSErik Eckstein int FunctionComparator::cmpRangeMetadata(const MDNode *L,
1024d6fb72aSErik Eckstein                                          const MDNode *R) const {
1034d6fb72aSErik Eckstein   if (L == R)
1044d6fb72aSErik Eckstein     return 0;
1054d6fb72aSErik Eckstein   if (!L)
1064d6fb72aSErik Eckstein     return -1;
1074d6fb72aSErik Eckstein   if (!R)
1084d6fb72aSErik Eckstein     return 1;
1094d6fb72aSErik Eckstein   // Range metadata is a sequence of numbers. Make sure they are the same
1104d6fb72aSErik Eckstein   // sequence.
1114d6fb72aSErik Eckstein   // TODO: Note that as this is metadata, it is possible to drop and/or merge
1124d6fb72aSErik Eckstein   // this data when considering functions to merge. Thus this comparison would
1134d6fb72aSErik Eckstein   // return 0 (i.e. equivalent), but merging would become more complicated
1144d6fb72aSErik Eckstein   // because the ranges would need to be unioned. It is not likely that
1154d6fb72aSErik Eckstein   // functions differ ONLY in this metadata if they are actually the same
1164d6fb72aSErik Eckstein   // function semantically.
1174d6fb72aSErik Eckstein   if (int Res = cmpNumbers(L->getNumOperands(), R->getNumOperands()))
1184d6fb72aSErik Eckstein     return Res;
1194d6fb72aSErik Eckstein   for (size_t I = 0; I < L->getNumOperands(); ++I) {
1204d6fb72aSErik Eckstein     ConstantInt *LLow = mdconst::extract<ConstantInt>(L->getOperand(I));
1214d6fb72aSErik Eckstein     ConstantInt *RLow = mdconst::extract<ConstantInt>(R->getOperand(I));
1224d6fb72aSErik Eckstein     if (int Res = cmpAPInts(LLow->getValue(), RLow->getValue()))
1234d6fb72aSErik Eckstein       return Res;
1244d6fb72aSErik Eckstein   }
1254d6fb72aSErik Eckstein   return 0;
1264d6fb72aSErik Eckstein }
1274d6fb72aSErik Eckstein 
1284d6fb72aSErik Eckstein int FunctionComparator::cmpOperandBundlesSchema(const Instruction *L,
1294d6fb72aSErik Eckstein                                                 const Instruction *R) const {
1304d6fb72aSErik Eckstein   ImmutableCallSite LCS(L);
1314d6fb72aSErik Eckstein   ImmutableCallSite RCS(R);
1324d6fb72aSErik Eckstein 
1334d6fb72aSErik Eckstein   assert(LCS && RCS && "Must be calls or invokes!");
1344d6fb72aSErik Eckstein   assert(LCS.isCall() == RCS.isCall() && "Can't compare otherwise!");
1354d6fb72aSErik Eckstein 
1364d6fb72aSErik Eckstein   if (int Res =
1374d6fb72aSErik Eckstein           cmpNumbers(LCS.getNumOperandBundles(), RCS.getNumOperandBundles()))
1384d6fb72aSErik Eckstein     return Res;
1394d6fb72aSErik Eckstein 
1404d6fb72aSErik Eckstein   for (unsigned i = 0, e = LCS.getNumOperandBundles(); i != e; ++i) {
1414d6fb72aSErik Eckstein     auto OBL = LCS.getOperandBundleAt(i);
1424d6fb72aSErik Eckstein     auto OBR = RCS.getOperandBundleAt(i);
1434d6fb72aSErik Eckstein 
1444d6fb72aSErik Eckstein     if (int Res = OBL.getTagName().compare(OBR.getTagName()))
1454d6fb72aSErik Eckstein       return Res;
1464d6fb72aSErik Eckstein 
1474d6fb72aSErik Eckstein     if (int Res = cmpNumbers(OBL.Inputs.size(), OBR.Inputs.size()))
1484d6fb72aSErik Eckstein       return Res;
1494d6fb72aSErik Eckstein   }
1504d6fb72aSErik Eckstein 
1514d6fb72aSErik Eckstein   return 0;
1524d6fb72aSErik Eckstein }
1534d6fb72aSErik Eckstein 
1544d6fb72aSErik Eckstein /// Constants comparison:
1554d6fb72aSErik Eckstein /// 1. Check whether type of L constant could be losslessly bitcasted to R
1564d6fb72aSErik Eckstein /// type.
1574d6fb72aSErik Eckstein /// 2. Compare constant contents.
1584d6fb72aSErik Eckstein /// For more details see declaration comments.
1594d6fb72aSErik Eckstein int FunctionComparator::cmpConstants(const Constant *L,
1604d6fb72aSErik Eckstein                                      const Constant *R) const {
1614d6fb72aSErik Eckstein 
1624d6fb72aSErik Eckstein   Type *TyL = L->getType();
1634d6fb72aSErik Eckstein   Type *TyR = R->getType();
1644d6fb72aSErik Eckstein 
1654d6fb72aSErik Eckstein   // Check whether types are bitcastable. This part is just re-factored
1664d6fb72aSErik Eckstein   // Type::canLosslesslyBitCastTo method, but instead of returning true/false,
1674d6fb72aSErik Eckstein   // we also pack into result which type is "less" for us.
1684d6fb72aSErik Eckstein   int TypesRes = cmpTypes(TyL, TyR);
1694d6fb72aSErik Eckstein   if (TypesRes != 0) {
1704d6fb72aSErik Eckstein     // Types are different, but check whether we can bitcast them.
1714d6fb72aSErik Eckstein     if (!TyL->isFirstClassType()) {
1724d6fb72aSErik Eckstein       if (TyR->isFirstClassType())
1734d6fb72aSErik Eckstein         return -1;
1744d6fb72aSErik Eckstein       // Neither TyL nor TyR are values of first class type. Return the result
1754d6fb72aSErik Eckstein       // of comparing the types
1764d6fb72aSErik Eckstein       return TypesRes;
1774d6fb72aSErik Eckstein     }
1784d6fb72aSErik Eckstein     if (!TyR->isFirstClassType()) {
1794d6fb72aSErik Eckstein       if (TyL->isFirstClassType())
1804d6fb72aSErik Eckstein         return 1;
1814d6fb72aSErik Eckstein       return TypesRes;
1824d6fb72aSErik Eckstein     }
1834d6fb72aSErik Eckstein 
1844d6fb72aSErik Eckstein     // Vector -> Vector conversions are always lossless if the two vector types
1854d6fb72aSErik Eckstein     // have the same size, otherwise not.
1864d6fb72aSErik Eckstein     unsigned TyLWidth = 0;
1874d6fb72aSErik Eckstein     unsigned TyRWidth = 0;
1884d6fb72aSErik Eckstein 
1894d6fb72aSErik Eckstein     if (auto *VecTyL = dyn_cast<VectorType>(TyL))
1904d6fb72aSErik Eckstein       TyLWidth = VecTyL->getBitWidth();
1914d6fb72aSErik Eckstein     if (auto *VecTyR = dyn_cast<VectorType>(TyR))
1924d6fb72aSErik Eckstein       TyRWidth = VecTyR->getBitWidth();
1934d6fb72aSErik Eckstein 
1944d6fb72aSErik Eckstein     if (TyLWidth != TyRWidth)
1954d6fb72aSErik Eckstein       return cmpNumbers(TyLWidth, TyRWidth);
1964d6fb72aSErik Eckstein 
1974d6fb72aSErik Eckstein     // Zero bit-width means neither TyL nor TyR are vectors.
1984d6fb72aSErik Eckstein     if (!TyLWidth) {
1994d6fb72aSErik Eckstein       PointerType *PTyL = dyn_cast<PointerType>(TyL);
2004d6fb72aSErik Eckstein       PointerType *PTyR = dyn_cast<PointerType>(TyR);
2014d6fb72aSErik Eckstein       if (PTyL && PTyR) {
2024d6fb72aSErik Eckstein         unsigned AddrSpaceL = PTyL->getAddressSpace();
2034d6fb72aSErik Eckstein         unsigned AddrSpaceR = PTyR->getAddressSpace();
2044d6fb72aSErik Eckstein         if (int Res = cmpNumbers(AddrSpaceL, AddrSpaceR))
2054d6fb72aSErik Eckstein           return Res;
2064d6fb72aSErik Eckstein       }
2074d6fb72aSErik Eckstein       if (PTyL)
2084d6fb72aSErik Eckstein         return 1;
2094d6fb72aSErik Eckstein       if (PTyR)
2104d6fb72aSErik Eckstein         return -1;
2114d6fb72aSErik Eckstein 
2124d6fb72aSErik Eckstein       // TyL and TyR aren't vectors, nor pointers. We don't know how to
2134d6fb72aSErik Eckstein       // bitcast them.
2144d6fb72aSErik Eckstein       return TypesRes;
2154d6fb72aSErik Eckstein     }
2164d6fb72aSErik Eckstein   }
2174d6fb72aSErik Eckstein 
2184d6fb72aSErik Eckstein   // OK, types are bitcastable, now check constant contents.
2194d6fb72aSErik Eckstein 
2204d6fb72aSErik Eckstein   if (L->isNullValue() && R->isNullValue())
2214d6fb72aSErik Eckstein     return TypesRes;
2224d6fb72aSErik Eckstein   if (L->isNullValue() && !R->isNullValue())
2234d6fb72aSErik Eckstein     return 1;
2244d6fb72aSErik Eckstein   if (!L->isNullValue() && R->isNullValue())
2254d6fb72aSErik Eckstein     return -1;
2264d6fb72aSErik Eckstein 
2274d6fb72aSErik Eckstein   auto GlobalValueL = const_cast<GlobalValue*>(dyn_cast<GlobalValue>(L));
2284d6fb72aSErik Eckstein   auto GlobalValueR = const_cast<GlobalValue*>(dyn_cast<GlobalValue>(R));
2294d6fb72aSErik Eckstein   if (GlobalValueL && GlobalValueR) {
2304d6fb72aSErik Eckstein     return cmpGlobalValues(GlobalValueL, GlobalValueR);
2314d6fb72aSErik Eckstein   }
2324d6fb72aSErik Eckstein 
2334d6fb72aSErik Eckstein   if (int Res = cmpNumbers(L->getValueID(), R->getValueID()))
2344d6fb72aSErik Eckstein     return Res;
2354d6fb72aSErik Eckstein 
2364d6fb72aSErik Eckstein   if (const auto *SeqL = dyn_cast<ConstantDataSequential>(L)) {
2374d6fb72aSErik Eckstein     const auto *SeqR = cast<ConstantDataSequential>(R);
2384d6fb72aSErik Eckstein     // This handles ConstantDataArray and ConstantDataVector. Note that we
2394d6fb72aSErik Eckstein     // compare the two raw data arrays, which might differ depending on the host
2404d6fb72aSErik Eckstein     // endianness. This isn't a problem though, because the endiness of a module
2414d6fb72aSErik Eckstein     // will affect the order of the constants, but this order is the same
2424d6fb72aSErik Eckstein     // for a given input module and host platform.
2434d6fb72aSErik Eckstein     return cmpMem(SeqL->getRawDataValues(), SeqR->getRawDataValues());
2444d6fb72aSErik Eckstein   }
2454d6fb72aSErik Eckstein 
2464d6fb72aSErik Eckstein   switch (L->getValueID()) {
2474d6fb72aSErik Eckstein   case Value::UndefValueVal:
2484d6fb72aSErik Eckstein   case Value::ConstantTokenNoneVal:
2494d6fb72aSErik Eckstein     return TypesRes;
2504d6fb72aSErik Eckstein   case Value::ConstantIntVal: {
2514d6fb72aSErik Eckstein     const APInt &LInt = cast<ConstantInt>(L)->getValue();
2524d6fb72aSErik Eckstein     const APInt &RInt = cast<ConstantInt>(R)->getValue();
2534d6fb72aSErik Eckstein     return cmpAPInts(LInt, RInt);
2544d6fb72aSErik Eckstein   }
2554d6fb72aSErik Eckstein   case Value::ConstantFPVal: {
2564d6fb72aSErik Eckstein     const APFloat &LAPF = cast<ConstantFP>(L)->getValueAPF();
2574d6fb72aSErik Eckstein     const APFloat &RAPF = cast<ConstantFP>(R)->getValueAPF();
2584d6fb72aSErik Eckstein     return cmpAPFloats(LAPF, RAPF);
2594d6fb72aSErik Eckstein   }
2604d6fb72aSErik Eckstein   case Value::ConstantArrayVal: {
2614d6fb72aSErik Eckstein     const ConstantArray *LA = cast<ConstantArray>(L);
2624d6fb72aSErik Eckstein     const ConstantArray *RA = cast<ConstantArray>(R);
2634d6fb72aSErik Eckstein     uint64_t NumElementsL = cast<ArrayType>(TyL)->getNumElements();
2644d6fb72aSErik Eckstein     uint64_t NumElementsR = cast<ArrayType>(TyR)->getNumElements();
2654d6fb72aSErik Eckstein     if (int Res = cmpNumbers(NumElementsL, NumElementsR))
2664d6fb72aSErik Eckstein       return Res;
2674d6fb72aSErik Eckstein     for (uint64_t i = 0; i < NumElementsL; ++i) {
2684d6fb72aSErik Eckstein       if (int Res = cmpConstants(cast<Constant>(LA->getOperand(i)),
2694d6fb72aSErik Eckstein                                  cast<Constant>(RA->getOperand(i))))
2704d6fb72aSErik Eckstein         return Res;
2714d6fb72aSErik Eckstein     }
2724d6fb72aSErik Eckstein     return 0;
2734d6fb72aSErik Eckstein   }
2744d6fb72aSErik Eckstein   case Value::ConstantStructVal: {
2754d6fb72aSErik Eckstein     const ConstantStruct *LS = cast<ConstantStruct>(L);
2764d6fb72aSErik Eckstein     const ConstantStruct *RS = cast<ConstantStruct>(R);
2774d6fb72aSErik Eckstein     unsigned NumElementsL = cast<StructType>(TyL)->getNumElements();
2784d6fb72aSErik Eckstein     unsigned NumElementsR = cast<StructType>(TyR)->getNumElements();
2794d6fb72aSErik Eckstein     if (int Res = cmpNumbers(NumElementsL, NumElementsR))
2804d6fb72aSErik Eckstein       return Res;
2814d6fb72aSErik Eckstein     for (unsigned i = 0; i != NumElementsL; ++i) {
2824d6fb72aSErik Eckstein       if (int Res = cmpConstants(cast<Constant>(LS->getOperand(i)),
2834d6fb72aSErik Eckstein                                  cast<Constant>(RS->getOperand(i))))
2844d6fb72aSErik Eckstein         return Res;
2854d6fb72aSErik Eckstein     }
2864d6fb72aSErik Eckstein     return 0;
2874d6fb72aSErik Eckstein   }
2884d6fb72aSErik Eckstein   case Value::ConstantVectorVal: {
2894d6fb72aSErik Eckstein     const ConstantVector *LV = cast<ConstantVector>(L);
2904d6fb72aSErik Eckstein     const ConstantVector *RV = cast<ConstantVector>(R);
2914d6fb72aSErik Eckstein     unsigned NumElementsL = cast<VectorType>(TyL)->getNumElements();
2924d6fb72aSErik Eckstein     unsigned NumElementsR = cast<VectorType>(TyR)->getNumElements();
2934d6fb72aSErik Eckstein     if (int Res = cmpNumbers(NumElementsL, NumElementsR))
2944d6fb72aSErik Eckstein       return Res;
2954d6fb72aSErik Eckstein     for (uint64_t i = 0; i < NumElementsL; ++i) {
2964d6fb72aSErik Eckstein       if (int Res = cmpConstants(cast<Constant>(LV->getOperand(i)),
2974d6fb72aSErik Eckstein                                  cast<Constant>(RV->getOperand(i))))
2984d6fb72aSErik Eckstein         return Res;
2994d6fb72aSErik Eckstein     }
3004d6fb72aSErik Eckstein     return 0;
3014d6fb72aSErik Eckstein   }
3024d6fb72aSErik Eckstein   case Value::ConstantExprVal: {
3034d6fb72aSErik Eckstein     const ConstantExpr *LE = cast<ConstantExpr>(L);
3044d6fb72aSErik Eckstein     const ConstantExpr *RE = cast<ConstantExpr>(R);
3054d6fb72aSErik Eckstein     unsigned NumOperandsL = LE->getNumOperands();
3064d6fb72aSErik Eckstein     unsigned NumOperandsR = RE->getNumOperands();
3074d6fb72aSErik Eckstein     if (int Res = cmpNumbers(NumOperandsL, NumOperandsR))
3084d6fb72aSErik Eckstein       return Res;
3094d6fb72aSErik Eckstein     for (unsigned i = 0; i < NumOperandsL; ++i) {
3104d6fb72aSErik Eckstein       if (int Res = cmpConstants(cast<Constant>(LE->getOperand(i)),
3114d6fb72aSErik Eckstein                                  cast<Constant>(RE->getOperand(i))))
3124d6fb72aSErik Eckstein         return Res;
3134d6fb72aSErik Eckstein     }
3144d6fb72aSErik Eckstein     return 0;
3154d6fb72aSErik Eckstein   }
3164d6fb72aSErik Eckstein   case Value::BlockAddressVal: {
3174d6fb72aSErik Eckstein     const BlockAddress *LBA = cast<BlockAddress>(L);
3184d6fb72aSErik Eckstein     const BlockAddress *RBA = cast<BlockAddress>(R);
3194d6fb72aSErik Eckstein     if (int Res = cmpValues(LBA->getFunction(), RBA->getFunction()))
3204d6fb72aSErik Eckstein       return Res;
3214d6fb72aSErik Eckstein     if (LBA->getFunction() == RBA->getFunction()) {
3224d6fb72aSErik Eckstein       // They are BBs in the same function. Order by which comes first in the
3234d6fb72aSErik Eckstein       // BB order of the function. This order is deterministic.
3244d6fb72aSErik Eckstein       Function* F = LBA->getFunction();
3254d6fb72aSErik Eckstein       BasicBlock *LBB = LBA->getBasicBlock();
3264d6fb72aSErik Eckstein       BasicBlock *RBB = RBA->getBasicBlock();
3274d6fb72aSErik Eckstein       if (LBB == RBB)
3284d6fb72aSErik Eckstein         return 0;
3294d6fb72aSErik Eckstein       for(BasicBlock &BB : F->getBasicBlockList()) {
3304d6fb72aSErik Eckstein         if (&BB == LBB) {
3314d6fb72aSErik Eckstein           assert(&BB != RBB);
3324d6fb72aSErik Eckstein           return -1;
3334d6fb72aSErik Eckstein         }
3344d6fb72aSErik Eckstein         if (&BB == RBB)
3354d6fb72aSErik Eckstein           return 1;
3364d6fb72aSErik Eckstein       }
3374d6fb72aSErik Eckstein       llvm_unreachable("Basic Block Address does not point to a basic block in "
3384d6fb72aSErik Eckstein                        "its function.");
3394d6fb72aSErik Eckstein       return -1;
3404d6fb72aSErik Eckstein     } else {
3414d6fb72aSErik Eckstein       // cmpValues said the functions are the same. So because they aren't
3424d6fb72aSErik Eckstein       // literally the same pointer, they must respectively be the left and
3434d6fb72aSErik Eckstein       // right functions.
3444d6fb72aSErik Eckstein       assert(LBA->getFunction() == FnL && RBA->getFunction() == FnR);
3454d6fb72aSErik Eckstein       // cmpValues will tell us if these are equivalent BasicBlocks, in the
3464d6fb72aSErik Eckstein       // context of their respective functions.
3474d6fb72aSErik Eckstein       return cmpValues(LBA->getBasicBlock(), RBA->getBasicBlock());
3484d6fb72aSErik Eckstein     }
3494d6fb72aSErik Eckstein   }
3504d6fb72aSErik Eckstein   default: // Unknown constant, abort.
3514d6fb72aSErik Eckstein     DEBUG(dbgs() << "Looking at valueID " << L->getValueID() << "\n");
3524d6fb72aSErik Eckstein     llvm_unreachable("Constant ValueID not recognized.");
3534d6fb72aSErik Eckstein     return -1;
3544d6fb72aSErik Eckstein   }
3554d6fb72aSErik Eckstein }
3564d6fb72aSErik Eckstein 
3574d6fb72aSErik Eckstein int FunctionComparator::cmpGlobalValues(GlobalValue *L, GlobalValue *R) const {
358c1d52e5cSErik Eckstein   uint64_t LNumber = GlobalNumbers->getNumber(L);
359c1d52e5cSErik Eckstein   uint64_t RNumber = GlobalNumbers->getNumber(R);
360c1d52e5cSErik Eckstein   return cmpNumbers(LNumber, RNumber);
3614d6fb72aSErik Eckstein }
3624d6fb72aSErik Eckstein 
3634d6fb72aSErik Eckstein /// cmpType - compares two types,
3644d6fb72aSErik Eckstein /// defines total ordering among the types set.
3654d6fb72aSErik Eckstein /// See method declaration comments for more details.
3664d6fb72aSErik Eckstein int FunctionComparator::cmpTypes(Type *TyL, Type *TyR) const {
3674d6fb72aSErik Eckstein   PointerType *PTyL = dyn_cast<PointerType>(TyL);
3684d6fb72aSErik Eckstein   PointerType *PTyR = dyn_cast<PointerType>(TyR);
3694d6fb72aSErik Eckstein 
3704d6fb72aSErik Eckstein   const DataLayout &DL = FnL->getParent()->getDataLayout();
3714d6fb72aSErik Eckstein   if (PTyL && PTyL->getAddressSpace() == 0)
3724d6fb72aSErik Eckstein     TyL = DL.getIntPtrType(TyL);
3734d6fb72aSErik Eckstein   if (PTyR && PTyR->getAddressSpace() == 0)
3744d6fb72aSErik Eckstein     TyR = DL.getIntPtrType(TyR);
3754d6fb72aSErik Eckstein 
3764d6fb72aSErik Eckstein   if (TyL == TyR)
3774d6fb72aSErik Eckstein     return 0;
3784d6fb72aSErik Eckstein 
3794d6fb72aSErik Eckstein   if (int Res = cmpNumbers(TyL->getTypeID(), TyR->getTypeID()))
3804d6fb72aSErik Eckstein     return Res;
3814d6fb72aSErik Eckstein 
3824d6fb72aSErik Eckstein   switch (TyL->getTypeID()) {
3834d6fb72aSErik Eckstein   default:
3844d6fb72aSErik Eckstein     llvm_unreachable("Unknown type!");
3854d6fb72aSErik Eckstein     // Fall through in Release mode.
3864d6fb72aSErik Eckstein     LLVM_FALLTHROUGH;
3874d6fb72aSErik Eckstein   case Type::IntegerTyID:
3884d6fb72aSErik Eckstein     return cmpNumbers(cast<IntegerType>(TyL)->getBitWidth(),
3894d6fb72aSErik Eckstein                       cast<IntegerType>(TyR)->getBitWidth());
3904d6fb72aSErik Eckstein   // TyL == TyR would have returned true earlier, because types are uniqued.
3914d6fb72aSErik Eckstein   case Type::VoidTyID:
3924d6fb72aSErik Eckstein   case Type::FloatTyID:
3934d6fb72aSErik Eckstein   case Type::DoubleTyID:
3944d6fb72aSErik Eckstein   case Type::X86_FP80TyID:
3954d6fb72aSErik Eckstein   case Type::FP128TyID:
3964d6fb72aSErik Eckstein   case Type::PPC_FP128TyID:
3974d6fb72aSErik Eckstein   case Type::LabelTyID:
3984d6fb72aSErik Eckstein   case Type::MetadataTyID:
3994d6fb72aSErik Eckstein   case Type::TokenTyID:
4004d6fb72aSErik Eckstein     return 0;
4014d6fb72aSErik Eckstein 
4024d6fb72aSErik Eckstein   case Type::PointerTyID: {
4034d6fb72aSErik Eckstein     assert(PTyL && PTyR && "Both types must be pointers here.");
4044d6fb72aSErik Eckstein     return cmpNumbers(PTyL->getAddressSpace(), PTyR->getAddressSpace());
4054d6fb72aSErik Eckstein   }
4064d6fb72aSErik Eckstein 
4074d6fb72aSErik Eckstein   case Type::StructTyID: {
4084d6fb72aSErik Eckstein     StructType *STyL = cast<StructType>(TyL);
4094d6fb72aSErik Eckstein     StructType *STyR = cast<StructType>(TyR);
4104d6fb72aSErik Eckstein     if (STyL->getNumElements() != STyR->getNumElements())
4114d6fb72aSErik Eckstein       return cmpNumbers(STyL->getNumElements(), STyR->getNumElements());
4124d6fb72aSErik Eckstein 
4134d6fb72aSErik Eckstein     if (STyL->isPacked() != STyR->isPacked())
4144d6fb72aSErik Eckstein       return cmpNumbers(STyL->isPacked(), STyR->isPacked());
4154d6fb72aSErik Eckstein 
4164d6fb72aSErik Eckstein     for (unsigned i = 0, e = STyL->getNumElements(); i != e; ++i) {
4174d6fb72aSErik Eckstein       if (int Res = cmpTypes(STyL->getElementType(i), STyR->getElementType(i)))
4184d6fb72aSErik Eckstein         return Res;
4194d6fb72aSErik Eckstein     }
4204d6fb72aSErik Eckstein     return 0;
4214d6fb72aSErik Eckstein   }
4224d6fb72aSErik Eckstein 
4234d6fb72aSErik Eckstein   case Type::FunctionTyID: {
4244d6fb72aSErik Eckstein     FunctionType *FTyL = cast<FunctionType>(TyL);
4254d6fb72aSErik Eckstein     FunctionType *FTyR = cast<FunctionType>(TyR);
4264d6fb72aSErik Eckstein     if (FTyL->getNumParams() != FTyR->getNumParams())
4274d6fb72aSErik Eckstein       return cmpNumbers(FTyL->getNumParams(), FTyR->getNumParams());
4284d6fb72aSErik Eckstein 
4294d6fb72aSErik Eckstein     if (FTyL->isVarArg() != FTyR->isVarArg())
4304d6fb72aSErik Eckstein       return cmpNumbers(FTyL->isVarArg(), FTyR->isVarArg());
4314d6fb72aSErik Eckstein 
4324d6fb72aSErik Eckstein     if (int Res = cmpTypes(FTyL->getReturnType(), FTyR->getReturnType()))
4334d6fb72aSErik Eckstein       return Res;
4344d6fb72aSErik Eckstein 
4354d6fb72aSErik Eckstein     for (unsigned i = 0, e = FTyL->getNumParams(); i != e; ++i) {
4364d6fb72aSErik Eckstein       if (int Res = cmpTypes(FTyL->getParamType(i), FTyR->getParamType(i)))
4374d6fb72aSErik Eckstein         return Res;
4384d6fb72aSErik Eckstein     }
4394d6fb72aSErik Eckstein     return 0;
4404d6fb72aSErik Eckstein   }
4414d6fb72aSErik Eckstein 
442*bc070524SPeter Collingbourne   case Type::ArrayTyID:
443*bc070524SPeter Collingbourne   case Type::VectorTyID: {
444*bc070524SPeter Collingbourne     auto *STyL = cast<SequentialType>(TyL);
445*bc070524SPeter Collingbourne     auto *STyR = cast<SequentialType>(TyR);
446*bc070524SPeter Collingbourne     if (STyL->getNumElements() != STyR->getNumElements())
447*bc070524SPeter Collingbourne       return cmpNumbers(STyL->getNumElements(), STyR->getNumElements());
448*bc070524SPeter Collingbourne     return cmpTypes(STyL->getElementType(), STyR->getElementType());
4494d6fb72aSErik Eckstein   }
4504d6fb72aSErik Eckstein   }
4514d6fb72aSErik Eckstein }
4524d6fb72aSErik Eckstein 
4534d6fb72aSErik Eckstein // Determine whether the two operations are the same except that pointer-to-A
4544d6fb72aSErik Eckstein // and pointer-to-B are equivalent. This should be kept in sync with
4554d6fb72aSErik Eckstein // Instruction::isSameOperationAs.
4564d6fb72aSErik Eckstein // Read method declaration comments for more details.
4574d6fb72aSErik Eckstein int FunctionComparator::cmpOperations(const Instruction *L,
4584d6fb72aSErik Eckstein                                       const Instruction *R,
4594d6fb72aSErik Eckstein                                       bool &needToCmpOperands) const {
4604d6fb72aSErik Eckstein   needToCmpOperands = true;
4614d6fb72aSErik Eckstein   if (int Res = cmpValues(L, R))
4624d6fb72aSErik Eckstein     return Res;
4634d6fb72aSErik Eckstein 
4644d6fb72aSErik Eckstein   // Differences from Instruction::isSameOperationAs:
4654d6fb72aSErik Eckstein   //  * replace type comparison with calls to cmpTypes.
4664d6fb72aSErik Eckstein   //  * we test for I->getRawSubclassOptionalData (nuw/nsw/tail) at the top.
4674d6fb72aSErik Eckstein   //  * because of the above, we don't test for the tail bit on calls later on.
4684d6fb72aSErik Eckstein   if (int Res = cmpNumbers(L->getOpcode(), R->getOpcode()))
4694d6fb72aSErik Eckstein     return Res;
4704d6fb72aSErik Eckstein 
4714d6fb72aSErik Eckstein   if (const GetElementPtrInst *GEPL = dyn_cast<GetElementPtrInst>(L)) {
4724d6fb72aSErik Eckstein     needToCmpOperands = false;
4734d6fb72aSErik Eckstein     const GetElementPtrInst *GEPR = cast<GetElementPtrInst>(R);
4744d6fb72aSErik Eckstein     if (int Res =
4754d6fb72aSErik Eckstein             cmpValues(GEPL->getPointerOperand(), GEPR->getPointerOperand()))
4764d6fb72aSErik Eckstein       return Res;
4774d6fb72aSErik Eckstein     return cmpGEPs(GEPL, GEPR);
4784d6fb72aSErik Eckstein   }
4794d6fb72aSErik Eckstein 
4804d6fb72aSErik Eckstein   if (int Res = cmpNumbers(L->getNumOperands(), R->getNumOperands()))
4814d6fb72aSErik Eckstein     return Res;
4824d6fb72aSErik Eckstein 
4834d6fb72aSErik Eckstein   if (int Res = cmpTypes(L->getType(), R->getType()))
4844d6fb72aSErik Eckstein     return Res;
4854d6fb72aSErik Eckstein 
4864d6fb72aSErik Eckstein   if (int Res = cmpNumbers(L->getRawSubclassOptionalData(),
4874d6fb72aSErik Eckstein                            R->getRawSubclassOptionalData()))
4884d6fb72aSErik Eckstein     return Res;
4894d6fb72aSErik Eckstein 
4904d6fb72aSErik Eckstein   // We have two instructions of identical opcode and #operands.  Check to see
4914d6fb72aSErik Eckstein   // if all operands are the same type
4924d6fb72aSErik Eckstein   for (unsigned i = 0, e = L->getNumOperands(); i != e; ++i) {
4934d6fb72aSErik Eckstein     if (int Res =
4944d6fb72aSErik Eckstein             cmpTypes(L->getOperand(i)->getType(), R->getOperand(i)->getType()))
4954d6fb72aSErik Eckstein       return Res;
4964d6fb72aSErik Eckstein   }
4974d6fb72aSErik Eckstein 
4984d6fb72aSErik Eckstein   // Check special state that is a part of some instructions.
4994d6fb72aSErik Eckstein   if (const AllocaInst *AI = dyn_cast<AllocaInst>(L)) {
5004d6fb72aSErik Eckstein     if (int Res = cmpTypes(AI->getAllocatedType(),
5014d6fb72aSErik Eckstein                            cast<AllocaInst>(R)->getAllocatedType()))
5024d6fb72aSErik Eckstein       return Res;
5034d6fb72aSErik Eckstein     return cmpNumbers(AI->getAlignment(), cast<AllocaInst>(R)->getAlignment());
5044d6fb72aSErik Eckstein   }
5054d6fb72aSErik Eckstein   if (const LoadInst *LI = dyn_cast<LoadInst>(L)) {
5064d6fb72aSErik Eckstein     if (int Res = cmpNumbers(LI->isVolatile(), cast<LoadInst>(R)->isVolatile()))
5074d6fb72aSErik Eckstein       return Res;
5084d6fb72aSErik Eckstein     if (int Res =
5094d6fb72aSErik Eckstein             cmpNumbers(LI->getAlignment(), cast<LoadInst>(R)->getAlignment()))
5104d6fb72aSErik Eckstein       return Res;
5114d6fb72aSErik Eckstein     if (int Res =
5124d6fb72aSErik Eckstein             cmpOrderings(LI->getOrdering(), cast<LoadInst>(R)->getOrdering()))
5134d6fb72aSErik Eckstein       return Res;
5144d6fb72aSErik Eckstein     if (int Res =
5154d6fb72aSErik Eckstein             cmpNumbers(LI->getSynchScope(), cast<LoadInst>(R)->getSynchScope()))
5164d6fb72aSErik Eckstein       return Res;
5174d6fb72aSErik Eckstein     return cmpRangeMetadata(LI->getMetadata(LLVMContext::MD_range),
5184d6fb72aSErik Eckstein         cast<LoadInst>(R)->getMetadata(LLVMContext::MD_range));
5194d6fb72aSErik Eckstein   }
5204d6fb72aSErik Eckstein   if (const StoreInst *SI = dyn_cast<StoreInst>(L)) {
5214d6fb72aSErik Eckstein     if (int Res =
5224d6fb72aSErik Eckstein             cmpNumbers(SI->isVolatile(), cast<StoreInst>(R)->isVolatile()))
5234d6fb72aSErik Eckstein       return Res;
5244d6fb72aSErik Eckstein     if (int Res =
5254d6fb72aSErik Eckstein             cmpNumbers(SI->getAlignment(), cast<StoreInst>(R)->getAlignment()))
5264d6fb72aSErik Eckstein       return Res;
5274d6fb72aSErik Eckstein     if (int Res =
5284d6fb72aSErik Eckstein             cmpOrderings(SI->getOrdering(), cast<StoreInst>(R)->getOrdering()))
5294d6fb72aSErik Eckstein       return Res;
5304d6fb72aSErik Eckstein     return cmpNumbers(SI->getSynchScope(), cast<StoreInst>(R)->getSynchScope());
5314d6fb72aSErik Eckstein   }
5324d6fb72aSErik Eckstein   if (const CmpInst *CI = dyn_cast<CmpInst>(L))
5334d6fb72aSErik Eckstein     return cmpNumbers(CI->getPredicate(), cast<CmpInst>(R)->getPredicate());
5344d6fb72aSErik Eckstein   if (const CallInst *CI = dyn_cast<CallInst>(L)) {
5354d6fb72aSErik Eckstein     if (int Res = cmpNumbers(CI->getCallingConv(),
5364d6fb72aSErik Eckstein                              cast<CallInst>(R)->getCallingConv()))
5374d6fb72aSErik Eckstein       return Res;
5384d6fb72aSErik Eckstein     if (int Res =
5394d6fb72aSErik Eckstein             cmpAttrs(CI->getAttributes(), cast<CallInst>(R)->getAttributes()))
5404d6fb72aSErik Eckstein       return Res;
5414d6fb72aSErik Eckstein     if (int Res = cmpOperandBundlesSchema(CI, R))
5424d6fb72aSErik Eckstein       return Res;
5434d6fb72aSErik Eckstein     return cmpRangeMetadata(
5444d6fb72aSErik Eckstein         CI->getMetadata(LLVMContext::MD_range),
5454d6fb72aSErik Eckstein         cast<CallInst>(R)->getMetadata(LLVMContext::MD_range));
5464d6fb72aSErik Eckstein   }
5474d6fb72aSErik Eckstein   if (const InvokeInst *II = dyn_cast<InvokeInst>(L)) {
5484d6fb72aSErik Eckstein     if (int Res = cmpNumbers(II->getCallingConv(),
5494d6fb72aSErik Eckstein                              cast<InvokeInst>(R)->getCallingConv()))
5504d6fb72aSErik Eckstein       return Res;
5514d6fb72aSErik Eckstein     if (int Res =
5524d6fb72aSErik Eckstein             cmpAttrs(II->getAttributes(), cast<InvokeInst>(R)->getAttributes()))
5534d6fb72aSErik Eckstein       return Res;
5544d6fb72aSErik Eckstein     if (int Res = cmpOperandBundlesSchema(II, R))
5554d6fb72aSErik Eckstein       return Res;
5564d6fb72aSErik Eckstein     return cmpRangeMetadata(
5574d6fb72aSErik Eckstein         II->getMetadata(LLVMContext::MD_range),
5584d6fb72aSErik Eckstein         cast<InvokeInst>(R)->getMetadata(LLVMContext::MD_range));
5594d6fb72aSErik Eckstein   }
5604d6fb72aSErik Eckstein   if (const InsertValueInst *IVI = dyn_cast<InsertValueInst>(L)) {
5614d6fb72aSErik Eckstein     ArrayRef<unsigned> LIndices = IVI->getIndices();
5624d6fb72aSErik Eckstein     ArrayRef<unsigned> RIndices = cast<InsertValueInst>(R)->getIndices();
5634d6fb72aSErik Eckstein     if (int Res = cmpNumbers(LIndices.size(), RIndices.size()))
5644d6fb72aSErik Eckstein       return Res;
5654d6fb72aSErik Eckstein     for (size_t i = 0, e = LIndices.size(); i != e; ++i) {
5664d6fb72aSErik Eckstein       if (int Res = cmpNumbers(LIndices[i], RIndices[i]))
5674d6fb72aSErik Eckstein         return Res;
5684d6fb72aSErik Eckstein     }
5694d6fb72aSErik Eckstein     return 0;
5704d6fb72aSErik Eckstein   }
5714d6fb72aSErik Eckstein   if (const ExtractValueInst *EVI = dyn_cast<ExtractValueInst>(L)) {
5724d6fb72aSErik Eckstein     ArrayRef<unsigned> LIndices = EVI->getIndices();
5734d6fb72aSErik Eckstein     ArrayRef<unsigned> RIndices = cast<ExtractValueInst>(R)->getIndices();
5744d6fb72aSErik Eckstein     if (int Res = cmpNumbers(LIndices.size(), RIndices.size()))
5754d6fb72aSErik Eckstein       return Res;
5764d6fb72aSErik Eckstein     for (size_t i = 0, e = LIndices.size(); i != e; ++i) {
5774d6fb72aSErik Eckstein       if (int Res = cmpNumbers(LIndices[i], RIndices[i]))
5784d6fb72aSErik Eckstein         return Res;
5794d6fb72aSErik Eckstein     }
5804d6fb72aSErik Eckstein   }
5814d6fb72aSErik Eckstein   if (const FenceInst *FI = dyn_cast<FenceInst>(L)) {
5824d6fb72aSErik Eckstein     if (int Res =
5834d6fb72aSErik Eckstein             cmpOrderings(FI->getOrdering(), cast<FenceInst>(R)->getOrdering()))
5844d6fb72aSErik Eckstein       return Res;
5854d6fb72aSErik Eckstein     return cmpNumbers(FI->getSynchScope(), cast<FenceInst>(R)->getSynchScope());
5864d6fb72aSErik Eckstein   }
5874d6fb72aSErik Eckstein   if (const AtomicCmpXchgInst *CXI = dyn_cast<AtomicCmpXchgInst>(L)) {
5884d6fb72aSErik Eckstein     if (int Res = cmpNumbers(CXI->isVolatile(),
5894d6fb72aSErik Eckstein                              cast<AtomicCmpXchgInst>(R)->isVolatile()))
5904d6fb72aSErik Eckstein       return Res;
5914d6fb72aSErik Eckstein     if (int Res = cmpNumbers(CXI->isWeak(),
5924d6fb72aSErik Eckstein                              cast<AtomicCmpXchgInst>(R)->isWeak()))
5934d6fb72aSErik Eckstein       return Res;
5944d6fb72aSErik Eckstein     if (int Res =
5954d6fb72aSErik Eckstein             cmpOrderings(CXI->getSuccessOrdering(),
5964d6fb72aSErik Eckstein                          cast<AtomicCmpXchgInst>(R)->getSuccessOrdering()))
5974d6fb72aSErik Eckstein       return Res;
5984d6fb72aSErik Eckstein     if (int Res =
5994d6fb72aSErik Eckstein             cmpOrderings(CXI->getFailureOrdering(),
6004d6fb72aSErik Eckstein                          cast<AtomicCmpXchgInst>(R)->getFailureOrdering()))
6014d6fb72aSErik Eckstein       return Res;
6024d6fb72aSErik Eckstein     return cmpNumbers(CXI->getSynchScope(),
6034d6fb72aSErik Eckstein                       cast<AtomicCmpXchgInst>(R)->getSynchScope());
6044d6fb72aSErik Eckstein   }
6054d6fb72aSErik Eckstein   if (const AtomicRMWInst *RMWI = dyn_cast<AtomicRMWInst>(L)) {
6064d6fb72aSErik Eckstein     if (int Res = cmpNumbers(RMWI->getOperation(),
6074d6fb72aSErik Eckstein                              cast<AtomicRMWInst>(R)->getOperation()))
6084d6fb72aSErik Eckstein       return Res;
6094d6fb72aSErik Eckstein     if (int Res = cmpNumbers(RMWI->isVolatile(),
6104d6fb72aSErik Eckstein                              cast<AtomicRMWInst>(R)->isVolatile()))
6114d6fb72aSErik Eckstein       return Res;
6124d6fb72aSErik Eckstein     if (int Res = cmpOrderings(RMWI->getOrdering(),
6134d6fb72aSErik Eckstein                              cast<AtomicRMWInst>(R)->getOrdering()))
6144d6fb72aSErik Eckstein       return Res;
6154d6fb72aSErik Eckstein     return cmpNumbers(RMWI->getSynchScope(),
6164d6fb72aSErik Eckstein                       cast<AtomicRMWInst>(R)->getSynchScope());
6174d6fb72aSErik Eckstein   }
6184d6fb72aSErik Eckstein   if (const PHINode *PNL = dyn_cast<PHINode>(L)) {
6194d6fb72aSErik Eckstein     const PHINode *PNR = cast<PHINode>(R);
6204d6fb72aSErik Eckstein     // Ensure that in addition to the incoming values being identical
6214d6fb72aSErik Eckstein     // (checked by the caller of this function), the incoming blocks
6224d6fb72aSErik Eckstein     // are also identical.
6234d6fb72aSErik Eckstein     for (unsigned i = 0, e = PNL->getNumIncomingValues(); i != e; ++i) {
6244d6fb72aSErik Eckstein       if (int Res =
6254d6fb72aSErik Eckstein               cmpValues(PNL->getIncomingBlock(i), PNR->getIncomingBlock(i)))
6264d6fb72aSErik Eckstein         return Res;
6274d6fb72aSErik Eckstein     }
6284d6fb72aSErik Eckstein   }
6294d6fb72aSErik Eckstein   return 0;
6304d6fb72aSErik Eckstein }
6314d6fb72aSErik Eckstein 
6324d6fb72aSErik Eckstein // Determine whether two GEP operations perform the same underlying arithmetic.
6334d6fb72aSErik Eckstein // Read method declaration comments for more details.
6344d6fb72aSErik Eckstein int FunctionComparator::cmpGEPs(const GEPOperator *GEPL,
6354d6fb72aSErik Eckstein                                 const GEPOperator *GEPR) const {
6364d6fb72aSErik Eckstein 
6374d6fb72aSErik Eckstein   unsigned int ASL = GEPL->getPointerAddressSpace();
6384d6fb72aSErik Eckstein   unsigned int ASR = GEPR->getPointerAddressSpace();
6394d6fb72aSErik Eckstein 
6404d6fb72aSErik Eckstein   if (int Res = cmpNumbers(ASL, ASR))
6414d6fb72aSErik Eckstein     return Res;
6424d6fb72aSErik Eckstein 
6434d6fb72aSErik Eckstein   // When we have target data, we can reduce the GEP down to the value in bytes
6444d6fb72aSErik Eckstein   // added to the address.
6454d6fb72aSErik Eckstein   const DataLayout &DL = FnL->getParent()->getDataLayout();
6464d6fb72aSErik Eckstein   unsigned BitWidth = DL.getPointerSizeInBits(ASL);
6474d6fb72aSErik Eckstein   APInt OffsetL(BitWidth, 0), OffsetR(BitWidth, 0);
6484d6fb72aSErik Eckstein   if (GEPL->accumulateConstantOffset(DL, OffsetL) &&
6494d6fb72aSErik Eckstein       GEPR->accumulateConstantOffset(DL, OffsetR))
6504d6fb72aSErik Eckstein     return cmpAPInts(OffsetL, OffsetR);
6514d6fb72aSErik Eckstein   if (int Res = cmpTypes(GEPL->getSourceElementType(),
6524d6fb72aSErik Eckstein                          GEPR->getSourceElementType()))
6534d6fb72aSErik Eckstein     return Res;
6544d6fb72aSErik Eckstein 
6554d6fb72aSErik Eckstein   if (int Res = cmpNumbers(GEPL->getNumOperands(), GEPR->getNumOperands()))
6564d6fb72aSErik Eckstein     return Res;
6574d6fb72aSErik Eckstein 
6584d6fb72aSErik Eckstein   for (unsigned i = 0, e = GEPL->getNumOperands(); i != e; ++i) {
6594d6fb72aSErik Eckstein     if (int Res = cmpValues(GEPL->getOperand(i), GEPR->getOperand(i)))
6604d6fb72aSErik Eckstein       return Res;
6614d6fb72aSErik Eckstein   }
6624d6fb72aSErik Eckstein 
6634d6fb72aSErik Eckstein   return 0;
6644d6fb72aSErik Eckstein }
6654d6fb72aSErik Eckstein 
6664d6fb72aSErik Eckstein int FunctionComparator::cmpInlineAsm(const InlineAsm *L,
6674d6fb72aSErik Eckstein                                      const InlineAsm *R) const {
6684d6fb72aSErik Eckstein   // InlineAsm's are uniqued. If they are the same pointer, obviously they are
6694d6fb72aSErik Eckstein   // the same, otherwise compare the fields.
6704d6fb72aSErik Eckstein   if (L == R)
6714d6fb72aSErik Eckstein     return 0;
6724d6fb72aSErik Eckstein   if (int Res = cmpTypes(L->getFunctionType(), R->getFunctionType()))
6734d6fb72aSErik Eckstein     return Res;
6744d6fb72aSErik Eckstein   if (int Res = cmpMem(L->getAsmString(), R->getAsmString()))
6754d6fb72aSErik Eckstein     return Res;
6764d6fb72aSErik Eckstein   if (int Res = cmpMem(L->getConstraintString(), R->getConstraintString()))
6774d6fb72aSErik Eckstein     return Res;
6784d6fb72aSErik Eckstein   if (int Res = cmpNumbers(L->hasSideEffects(), R->hasSideEffects()))
6794d6fb72aSErik Eckstein     return Res;
6804d6fb72aSErik Eckstein   if (int Res = cmpNumbers(L->isAlignStack(), R->isAlignStack()))
6814d6fb72aSErik Eckstein     return Res;
6824d6fb72aSErik Eckstein   if (int Res = cmpNumbers(L->getDialect(), R->getDialect()))
6834d6fb72aSErik Eckstein     return Res;
6844d6fb72aSErik Eckstein   llvm_unreachable("InlineAsm blocks were not uniqued.");
6854d6fb72aSErik Eckstein   return 0;
6864d6fb72aSErik Eckstein }
6874d6fb72aSErik Eckstein 
6884d6fb72aSErik Eckstein /// Compare two values used by the two functions under pair-wise comparison. If
6894d6fb72aSErik Eckstein /// this is the first time the values are seen, they're added to the mapping so
6904d6fb72aSErik Eckstein /// that we will detect mismatches on next use.
6914d6fb72aSErik Eckstein /// See comments in declaration for more details.
6924d6fb72aSErik Eckstein int FunctionComparator::cmpValues(const Value *L, const Value *R) const {
6934d6fb72aSErik Eckstein   // Catch self-reference case.
6944d6fb72aSErik Eckstein   if (L == FnL) {
6954d6fb72aSErik Eckstein     if (R == FnR)
6964d6fb72aSErik Eckstein       return 0;
6974d6fb72aSErik Eckstein     return -1;
6984d6fb72aSErik Eckstein   }
6994d6fb72aSErik Eckstein   if (R == FnR) {
7004d6fb72aSErik Eckstein     if (L == FnL)
7014d6fb72aSErik Eckstein       return 0;
7024d6fb72aSErik Eckstein     return 1;
7034d6fb72aSErik Eckstein   }
7044d6fb72aSErik Eckstein 
7054d6fb72aSErik Eckstein   const Constant *ConstL = dyn_cast<Constant>(L);
7064d6fb72aSErik Eckstein   const Constant *ConstR = dyn_cast<Constant>(R);
7074d6fb72aSErik Eckstein   if (ConstL && ConstR) {
7084d6fb72aSErik Eckstein     if (L == R)
7094d6fb72aSErik Eckstein       return 0;
7104d6fb72aSErik Eckstein     return cmpConstants(ConstL, ConstR);
7114d6fb72aSErik Eckstein   }
7124d6fb72aSErik Eckstein 
7134d6fb72aSErik Eckstein   if (ConstL)
7144d6fb72aSErik Eckstein     return 1;
7154d6fb72aSErik Eckstein   if (ConstR)
7164d6fb72aSErik Eckstein     return -1;
7174d6fb72aSErik Eckstein 
7184d6fb72aSErik Eckstein   const InlineAsm *InlineAsmL = dyn_cast<InlineAsm>(L);
7194d6fb72aSErik Eckstein   const InlineAsm *InlineAsmR = dyn_cast<InlineAsm>(R);
7204d6fb72aSErik Eckstein 
7214d6fb72aSErik Eckstein   if (InlineAsmL && InlineAsmR)
7224d6fb72aSErik Eckstein     return cmpInlineAsm(InlineAsmL, InlineAsmR);
7234d6fb72aSErik Eckstein   if (InlineAsmL)
7244d6fb72aSErik Eckstein     return 1;
7254d6fb72aSErik Eckstein   if (InlineAsmR)
7264d6fb72aSErik Eckstein     return -1;
7274d6fb72aSErik Eckstein 
7284d6fb72aSErik Eckstein   auto LeftSN = sn_mapL.insert(std::make_pair(L, sn_mapL.size())),
7294d6fb72aSErik Eckstein        RightSN = sn_mapR.insert(std::make_pair(R, sn_mapR.size()));
7304d6fb72aSErik Eckstein 
7314d6fb72aSErik Eckstein   return cmpNumbers(LeftSN.first->second, RightSN.first->second);
7324d6fb72aSErik Eckstein }
7334d6fb72aSErik Eckstein 
7344d6fb72aSErik Eckstein // Test whether two basic blocks have equivalent behaviour.
7354d6fb72aSErik Eckstein int FunctionComparator::cmpBasicBlocks(const BasicBlock *BBL,
7364d6fb72aSErik Eckstein                                        const BasicBlock *BBR) const {
7374d6fb72aSErik Eckstein   BasicBlock::const_iterator InstL = BBL->begin(), InstLE = BBL->end();
7384d6fb72aSErik Eckstein   BasicBlock::const_iterator InstR = BBR->begin(), InstRE = BBR->end();
7394d6fb72aSErik Eckstein 
7404d6fb72aSErik Eckstein   do {
7414d6fb72aSErik Eckstein     bool needToCmpOperands = true;
7424d6fb72aSErik Eckstein     if (int Res = cmpOperations(&*InstL, &*InstR, needToCmpOperands))
7434d6fb72aSErik Eckstein       return Res;
7444d6fb72aSErik Eckstein     if (needToCmpOperands) {
7454d6fb72aSErik Eckstein       assert(InstL->getNumOperands() == InstR->getNumOperands());
7464d6fb72aSErik Eckstein 
7474d6fb72aSErik Eckstein       for (unsigned i = 0, e = InstL->getNumOperands(); i != e; ++i) {
7484d6fb72aSErik Eckstein         Value *OpL = InstL->getOperand(i);
7494d6fb72aSErik Eckstein         Value *OpR = InstR->getOperand(i);
7504d6fb72aSErik Eckstein         if (int Res = cmpValues(OpL, OpR))
7514d6fb72aSErik Eckstein           return Res;
7524d6fb72aSErik Eckstein         // cmpValues should ensure this is true.
7534d6fb72aSErik Eckstein         assert(cmpTypes(OpL->getType(), OpR->getType()) == 0);
7544d6fb72aSErik Eckstein       }
7554d6fb72aSErik Eckstein     }
7564d6fb72aSErik Eckstein 
7574d6fb72aSErik Eckstein     ++InstL;
7584d6fb72aSErik Eckstein     ++InstR;
7594d6fb72aSErik Eckstein   } while (InstL != InstLE && InstR != InstRE);
7604d6fb72aSErik Eckstein 
7614d6fb72aSErik Eckstein   if (InstL != InstLE && InstR == InstRE)
7624d6fb72aSErik Eckstein     return 1;
7634d6fb72aSErik Eckstein   if (InstL == InstLE && InstR != InstRE)
7644d6fb72aSErik Eckstein     return -1;
7654d6fb72aSErik Eckstein   return 0;
7664d6fb72aSErik Eckstein }
7674d6fb72aSErik Eckstein 
7684d6fb72aSErik Eckstein int FunctionComparator::compareSignature() const {
7694d6fb72aSErik Eckstein   if (int Res = cmpAttrs(FnL->getAttributes(), FnR->getAttributes()))
7704d6fb72aSErik Eckstein     return Res;
7714d6fb72aSErik Eckstein 
7724d6fb72aSErik Eckstein   if (int Res = cmpNumbers(FnL->hasGC(), FnR->hasGC()))
7734d6fb72aSErik Eckstein     return Res;
7744d6fb72aSErik Eckstein 
7754d6fb72aSErik Eckstein   if (FnL->hasGC()) {
7764d6fb72aSErik Eckstein     if (int Res = cmpMem(FnL->getGC(), FnR->getGC()))
7774d6fb72aSErik Eckstein       return Res;
7784d6fb72aSErik Eckstein   }
7794d6fb72aSErik Eckstein 
7804d6fb72aSErik Eckstein   if (int Res = cmpNumbers(FnL->hasSection(), FnR->hasSection()))
7814d6fb72aSErik Eckstein     return Res;
7824d6fb72aSErik Eckstein 
7834d6fb72aSErik Eckstein   if (FnL->hasSection()) {
7844d6fb72aSErik Eckstein     if (int Res = cmpMem(FnL->getSection(), FnR->getSection()))
7854d6fb72aSErik Eckstein       return Res;
7864d6fb72aSErik Eckstein   }
7874d6fb72aSErik Eckstein 
7884d6fb72aSErik Eckstein   if (int Res = cmpNumbers(FnL->isVarArg(), FnR->isVarArg()))
7894d6fb72aSErik Eckstein     return Res;
7904d6fb72aSErik Eckstein 
7914d6fb72aSErik Eckstein   // TODO: if it's internal and only used in direct calls, we could handle this
7924d6fb72aSErik Eckstein   // case too.
7934d6fb72aSErik Eckstein   if (int Res = cmpNumbers(FnL->getCallingConv(), FnR->getCallingConv()))
7944d6fb72aSErik Eckstein     return Res;
7954d6fb72aSErik Eckstein 
7964d6fb72aSErik Eckstein   if (int Res = cmpTypes(FnL->getFunctionType(), FnR->getFunctionType()))
7974d6fb72aSErik Eckstein     return Res;
7984d6fb72aSErik Eckstein 
7994d6fb72aSErik Eckstein   assert(FnL->arg_size() == FnR->arg_size() &&
8004d6fb72aSErik Eckstein          "Identically typed functions have different numbers of args!");
8014d6fb72aSErik Eckstein 
8024d6fb72aSErik Eckstein   // Visit the arguments so that they get enumerated in the order they're
8034d6fb72aSErik Eckstein   // passed in.
8044d6fb72aSErik Eckstein   for (Function::const_arg_iterator ArgLI = FnL->arg_begin(),
8054d6fb72aSErik Eckstein        ArgRI = FnR->arg_begin(),
8064d6fb72aSErik Eckstein        ArgLE = FnL->arg_end();
8074d6fb72aSErik Eckstein        ArgLI != ArgLE; ++ArgLI, ++ArgRI) {
8084d6fb72aSErik Eckstein     if (cmpValues(&*ArgLI, &*ArgRI) != 0)
8094d6fb72aSErik Eckstein       llvm_unreachable("Arguments repeat!");
8104d6fb72aSErik Eckstein   }
8114d6fb72aSErik Eckstein   return 0;
8124d6fb72aSErik Eckstein }
8134d6fb72aSErik Eckstein 
8144d6fb72aSErik Eckstein // Test whether the two functions have equivalent behaviour.
8154d6fb72aSErik Eckstein int FunctionComparator::compare() {
8164d6fb72aSErik Eckstein   beginCompare();
8174d6fb72aSErik Eckstein 
8184d6fb72aSErik Eckstein   if (int Res = compareSignature())
8194d6fb72aSErik Eckstein     return Res;
8204d6fb72aSErik Eckstein 
8214d6fb72aSErik Eckstein   // We do a CFG-ordered walk since the actual ordering of the blocks in the
8224d6fb72aSErik Eckstein   // linked list is immaterial. Our walk starts at the entry block for both
8234d6fb72aSErik Eckstein   // functions, then takes each block from each terminator in order. As an
8244d6fb72aSErik Eckstein   // artifact, this also means that unreachable blocks are ignored.
8254d6fb72aSErik Eckstein   SmallVector<const BasicBlock *, 8> FnLBBs, FnRBBs;
8264d6fb72aSErik Eckstein   SmallPtrSet<const BasicBlock *, 32> VisitedBBs; // in terms of F1.
8274d6fb72aSErik Eckstein 
8284d6fb72aSErik Eckstein   FnLBBs.push_back(&FnL->getEntryBlock());
8294d6fb72aSErik Eckstein   FnRBBs.push_back(&FnR->getEntryBlock());
8304d6fb72aSErik Eckstein 
8314d6fb72aSErik Eckstein   VisitedBBs.insert(FnLBBs[0]);
8324d6fb72aSErik Eckstein   while (!FnLBBs.empty()) {
8334d6fb72aSErik Eckstein     const BasicBlock *BBL = FnLBBs.pop_back_val();
8344d6fb72aSErik Eckstein     const BasicBlock *BBR = FnRBBs.pop_back_val();
8354d6fb72aSErik Eckstein 
8364d6fb72aSErik Eckstein     if (int Res = cmpValues(BBL, BBR))
8374d6fb72aSErik Eckstein       return Res;
8384d6fb72aSErik Eckstein 
8394d6fb72aSErik Eckstein     if (int Res = cmpBasicBlocks(BBL, BBR))
8404d6fb72aSErik Eckstein       return Res;
8414d6fb72aSErik Eckstein 
8424d6fb72aSErik Eckstein     const TerminatorInst *TermL = BBL->getTerminator();
8434d6fb72aSErik Eckstein     const TerminatorInst *TermR = BBR->getTerminator();
8444d6fb72aSErik Eckstein 
8454d6fb72aSErik Eckstein     assert(TermL->getNumSuccessors() == TermR->getNumSuccessors());
8464d6fb72aSErik Eckstein     for (unsigned i = 0, e = TermL->getNumSuccessors(); i != e; ++i) {
8474d6fb72aSErik Eckstein       if (!VisitedBBs.insert(TermL->getSuccessor(i)).second)
8484d6fb72aSErik Eckstein         continue;
8494d6fb72aSErik Eckstein 
8504d6fb72aSErik Eckstein       FnLBBs.push_back(TermL->getSuccessor(i));
8514d6fb72aSErik Eckstein       FnRBBs.push_back(TermR->getSuccessor(i));
8524d6fb72aSErik Eckstein     }
8534d6fb72aSErik Eckstein   }
8544d6fb72aSErik Eckstein   return 0;
8554d6fb72aSErik Eckstein }
8564d6fb72aSErik Eckstein 
8574d6fb72aSErik Eckstein namespace {
8584d6fb72aSErik Eckstein 
8594d6fb72aSErik Eckstein // Accumulate the hash of a sequence of 64-bit integers. This is similar to a
8604d6fb72aSErik Eckstein // hash of a sequence of 64bit ints, but the entire input does not need to be
8614d6fb72aSErik Eckstein // available at once. This interface is necessary for functionHash because it
8624d6fb72aSErik Eckstein // needs to accumulate the hash as the structure of the function is traversed
8634d6fb72aSErik Eckstein // without saving these values to an intermediate buffer. This form of hashing
8644d6fb72aSErik Eckstein // is not often needed, as usually the object to hash is just read from a
8654d6fb72aSErik Eckstein // buffer.
8664d6fb72aSErik Eckstein class HashAccumulator64 {
8674d6fb72aSErik Eckstein   uint64_t Hash;
8684d6fb72aSErik Eckstein public:
8694d6fb72aSErik Eckstein   // Initialize to random constant, so the state isn't zero.
8704d6fb72aSErik Eckstein   HashAccumulator64() { Hash = 0x6acaa36bef8325c5ULL; }
8714d6fb72aSErik Eckstein   void add(uint64_t V) {
8724d6fb72aSErik Eckstein      Hash = llvm::hashing::detail::hash_16_bytes(Hash, V);
8734d6fb72aSErik Eckstein   }
8744d6fb72aSErik Eckstein   // No finishing is required, because the entire hash value is used.
8754d6fb72aSErik Eckstein   uint64_t getHash() { return Hash; }
8764d6fb72aSErik Eckstein };
8774d6fb72aSErik Eckstein } // end anonymous namespace
8784d6fb72aSErik Eckstein 
8794d6fb72aSErik Eckstein // A function hash is calculated by considering only the number of arguments and
8804d6fb72aSErik Eckstein // whether a function is varargs, the order of basic blocks (given by the
8814d6fb72aSErik Eckstein // successors of each basic block in depth first order), and the order of
8824d6fb72aSErik Eckstein // opcodes of each instruction within each of these basic blocks. This mirrors
8834d6fb72aSErik Eckstein // the strategy compare() uses to compare functions by walking the BBs in depth
8844d6fb72aSErik Eckstein // first order and comparing each instruction in sequence. Because this hash
8854d6fb72aSErik Eckstein // does not look at the operands, it is insensitive to things such as the
8864d6fb72aSErik Eckstein // target of calls and the constants used in the function, which makes it useful
8874d6fb72aSErik Eckstein // when possibly merging functions which are the same modulo constants and call
8884d6fb72aSErik Eckstein // targets.
8894d6fb72aSErik Eckstein FunctionComparator::FunctionHash FunctionComparator::functionHash(Function &F) {
8904d6fb72aSErik Eckstein   HashAccumulator64 H;
8914d6fb72aSErik Eckstein   H.add(F.isVarArg());
8924d6fb72aSErik Eckstein   H.add(F.arg_size());
8934d6fb72aSErik Eckstein 
8944d6fb72aSErik Eckstein   SmallVector<const BasicBlock *, 8> BBs;
8954d6fb72aSErik Eckstein   SmallSet<const BasicBlock *, 16> VisitedBBs;
8964d6fb72aSErik Eckstein 
8974d6fb72aSErik Eckstein   // Walk the blocks in the same order as FunctionComparator::cmpBasicBlocks(),
8984d6fb72aSErik Eckstein   // accumulating the hash of the function "structure." (BB and opcode sequence)
8994d6fb72aSErik Eckstein   BBs.push_back(&F.getEntryBlock());
9004d6fb72aSErik Eckstein   VisitedBBs.insert(BBs[0]);
9014d6fb72aSErik Eckstein   while (!BBs.empty()) {
9024d6fb72aSErik Eckstein     const BasicBlock *BB = BBs.pop_back_val();
9034d6fb72aSErik Eckstein     // This random value acts as a block header, as otherwise the partition of
9044d6fb72aSErik Eckstein     // opcodes into BBs wouldn't affect the hash, only the order of the opcodes
9054d6fb72aSErik Eckstein     H.add(45798);
9064d6fb72aSErik Eckstein     for (auto &Inst : *BB) {
9074d6fb72aSErik Eckstein       H.add(Inst.getOpcode());
9084d6fb72aSErik Eckstein     }
9094d6fb72aSErik Eckstein     const TerminatorInst *Term = BB->getTerminator();
9104d6fb72aSErik Eckstein     for (unsigned i = 0, e = Term->getNumSuccessors(); i != e; ++i) {
9114d6fb72aSErik Eckstein       if (!VisitedBBs.insert(Term->getSuccessor(i)).second)
9124d6fb72aSErik Eckstein         continue;
9134d6fb72aSErik Eckstein       BBs.push_back(Term->getSuccessor(i));
9144d6fb72aSErik Eckstein     }
9154d6fb72aSErik Eckstein   }
9164d6fb72aSErik Eckstein   return H.getHash();
9174d6fb72aSErik Eckstein }
9184d6fb72aSErik Eckstein 
9194d6fb72aSErik Eckstein 
920