1f22ef01cSRoman Divacky //===--- Bitcode/Writer/BitcodeWriter.cpp - Bitcode Writer ----------------===//
2f22ef01cSRoman Divacky //
3f22ef01cSRoman Divacky //                     The LLVM Compiler Infrastructure
4f22ef01cSRoman Divacky //
5f22ef01cSRoman Divacky // This file is distributed under the University of Illinois Open Source
6f22ef01cSRoman Divacky // License. See LICENSE.TXT for details.
7f22ef01cSRoman Divacky //
8f22ef01cSRoman Divacky //===----------------------------------------------------------------------===//
9f22ef01cSRoman Divacky //
10f22ef01cSRoman Divacky // Bitcode writer implementation.
11f22ef01cSRoman Divacky //
12f22ef01cSRoman Divacky //===----------------------------------------------------------------------===//
13f22ef01cSRoman Divacky 
14d88c1a5aSDimitry Andric #include "llvm/Bitcode/BitcodeWriter.h"
15139f7f9bSDimitry Andric #include "ValueEnumerator.h"
163ca95b02SDimitry Andric #include "llvm/ADT/StringExtras.h"
17139f7f9bSDimitry Andric #include "llvm/ADT/Triple.h"
18f22ef01cSRoman Divacky #include "llvm/Bitcode/BitstreamWriter.h"
19f22ef01cSRoman Divacky #include "llvm/Bitcode/LLVMBitCodes.h"
207d523365SDimitry Andric #include "llvm/IR/CallSite.h"
21139f7f9bSDimitry Andric #include "llvm/IR/Constants.h"
22ff0cc061SDimitry Andric #include "llvm/IR/DebugInfoMetadata.h"
23139f7f9bSDimitry Andric #include "llvm/IR/DerivedTypes.h"
24139f7f9bSDimitry Andric #include "llvm/IR/InlineAsm.h"
25139f7f9bSDimitry Andric #include "llvm/IR/Instructions.h"
267d523365SDimitry Andric #include "llvm/IR/LLVMContext.h"
27139f7f9bSDimitry Andric #include "llvm/IR/Module.h"
28139f7f9bSDimitry Andric #include "llvm/IR/Operator.h"
2939d628a0SDimitry Andric #include "llvm/IR/UseListOrder.h"
30139f7f9bSDimitry Andric #include "llvm/IR/ValueSymbolTable.h"
316bc11b14SDimitry Andric #include "llvm/MC/StringTableBuilder.h"
32a580b014SDimitry Andric #include "llvm/Object/IRSymtab.h"
33f22ef01cSRoman Divacky #include "llvm/Support/ErrorHandling.h"
34f22ef01cSRoman Divacky #include "llvm/Support/MathExtras.h"
352754fe60SDimitry Andric #include "llvm/Support/Program.h"
363ca95b02SDimitry Andric #include "llvm/Support/SHA1.h"
37a580b014SDimitry Andric #include "llvm/Support/TargetRegistry.h"
38139f7f9bSDimitry Andric #include "llvm/Support/raw_ostream.h"
392754fe60SDimitry Andric #include <cctype>
4017a519f9SDimitry Andric #include <map>
41f22ef01cSRoman Divacky using namespace llvm;
42f22ef01cSRoman Divacky 
433ca95b02SDimitry Andric namespace {
44d88c1a5aSDimitry Andric 
45d88c1a5aSDimitry Andric cl::opt<unsigned>
46d88c1a5aSDimitry Andric     IndexThreshold("bitcode-mdindex-threshold", cl::Hidden, cl::init(25),
47d88c1a5aSDimitry Andric                    cl::desc("Number of metadatas above which we emit an index "
48d88c1a5aSDimitry Andric                             "to enable lazy-loading"));
49f22ef01cSRoman Divacky /// These are manifest constants used by the bitcode writer. They do not need to
50f22ef01cSRoman Divacky /// be kept in sync with the reader, but need to be consistent within this file.
51f22ef01cSRoman Divacky enum {
52f22ef01cSRoman Divacky   // VALUE_SYMTAB_BLOCK abbrev id's.
53f22ef01cSRoman Divacky   VST_ENTRY_8_ABBREV = bitc::FIRST_APPLICATION_ABBREV,
54f22ef01cSRoman Divacky   VST_ENTRY_7_ABBREV,
55f22ef01cSRoman Divacky   VST_ENTRY_6_ABBREV,
56f22ef01cSRoman Divacky   VST_BBENTRY_6_ABBREV,
57f22ef01cSRoman Divacky 
58f22ef01cSRoman Divacky   // CONSTANTS_BLOCK abbrev id's.
59f22ef01cSRoman Divacky   CONSTANTS_SETTYPE_ABBREV = bitc::FIRST_APPLICATION_ABBREV,
60f22ef01cSRoman Divacky   CONSTANTS_INTEGER_ABBREV,
61f22ef01cSRoman Divacky   CONSTANTS_CE_CAST_Abbrev,
62f22ef01cSRoman Divacky   CONSTANTS_NULL_Abbrev,
63f22ef01cSRoman Divacky 
64f22ef01cSRoman Divacky   // FUNCTION_BLOCK abbrev id's.
65f22ef01cSRoman Divacky   FUNCTION_INST_LOAD_ABBREV = bitc::FIRST_APPLICATION_ABBREV,
66f22ef01cSRoman Divacky   FUNCTION_INST_BINOP_ABBREV,
67f22ef01cSRoman Divacky   FUNCTION_INST_BINOP_FLAGS_ABBREV,
68f22ef01cSRoman Divacky   FUNCTION_INST_CAST_ABBREV,
69f22ef01cSRoman Divacky   FUNCTION_INST_RET_VOID_ABBREV,
70f22ef01cSRoman Divacky   FUNCTION_INST_RET_VAL_ABBREV,
71ff0cc061SDimitry Andric   FUNCTION_INST_UNREACHABLE_ABBREV,
72ff0cc061SDimitry Andric   FUNCTION_INST_GEP_ABBREV,
73f22ef01cSRoman Divacky };
74f22ef01cSRoman Divacky 
753ca95b02SDimitry Andric /// Abstract class to manage the bitcode writing, subclassed for each bitcode
76d88c1a5aSDimitry Andric /// file type.
77d88c1a5aSDimitry Andric class BitcodeWriterBase {
783ca95b02SDimitry Andric protected:
79d88c1a5aSDimitry Andric   /// The stream created and owned by the client.
80d88c1a5aSDimitry Andric   BitstreamWriter &Stream;
813ca95b02SDimitry Andric 
8224d58133SDimitry Andric   StringTableBuilder &StrtabBuilder;
8324d58133SDimitry Andric 
843ca95b02SDimitry Andric public:
85d88c1a5aSDimitry Andric   /// Constructs a BitcodeWriterBase object that writes to the provided
86d88c1a5aSDimitry Andric   /// \p Stream.
8724d58133SDimitry Andric   BitcodeWriterBase(BitstreamWriter &Stream, StringTableBuilder &StrtabBuilder)
8824d58133SDimitry Andric       : Stream(Stream), StrtabBuilder(StrtabBuilder) {}
893ca95b02SDimitry Andric 
903ca95b02SDimitry Andric protected:
913ca95b02SDimitry Andric   void writeBitcodeHeader();
926bc11b14SDimitry Andric   void writeModuleVersion();
933ca95b02SDimitry Andric };
943ca95b02SDimitry Andric 
956bc11b14SDimitry Andric void BitcodeWriterBase::writeModuleVersion() {
966bc11b14SDimitry Andric   // VERSION: [version#]
976bc11b14SDimitry Andric   Stream.EmitRecord(bitc::MODULE_CODE_VERSION, ArrayRef<uint64_t>{2});
986bc11b14SDimitry Andric }
996bc11b14SDimitry Andric 
1003ca95b02SDimitry Andric /// Class to manage the bitcode writing for a module.
101d88c1a5aSDimitry Andric class ModuleBitcodeWriter : public BitcodeWriterBase {
102d88c1a5aSDimitry Andric   /// Pointer to the buffer allocated by caller for bitcode writing.
103d88c1a5aSDimitry Andric   const SmallVectorImpl<char> &Buffer;
104d88c1a5aSDimitry Andric 
1053ca95b02SDimitry Andric   /// The Module to write to bitcode.
1063ca95b02SDimitry Andric   const Module &M;
1073ca95b02SDimitry Andric 
1083ca95b02SDimitry Andric   /// Enumerates ids for all values in the module.
1093ca95b02SDimitry Andric   ValueEnumerator VE;
1103ca95b02SDimitry Andric 
1113ca95b02SDimitry Andric   /// Optional per-module index to write for ThinLTO.
1123ca95b02SDimitry Andric   const ModuleSummaryIndex *Index;
1133ca95b02SDimitry Andric 
1143ca95b02SDimitry Andric   /// True if a module hash record should be written.
1153ca95b02SDimitry Andric   bool GenerateHash;
1163ca95b02SDimitry Andric 
1177a7e6055SDimitry Andric   /// If non-null, when GenerateHash is true, the resulting hash is written
1187a7e6055SDimitry Andric   /// into ModHash. When GenerateHash is false, that specified value
1197a7e6055SDimitry Andric   /// is used as the hash instead of computing from the generated bitcode.
1207a7e6055SDimitry Andric   /// Can be used to produce the same module hash for a minimized bitcode
1217a7e6055SDimitry Andric   /// used just for the thin link as in the regular full bitcode that will
1227a7e6055SDimitry Andric   /// be used in the backend.
1237a7e6055SDimitry Andric   ModuleHash *ModHash;
1247a7e6055SDimitry Andric 
125d88c1a5aSDimitry Andric   /// The start bit of the identification block.
126d88c1a5aSDimitry Andric   uint64_t BitcodeStartBit;
1273ca95b02SDimitry Andric 
1283ca95b02SDimitry Andric   /// Map that holds the correspondence between GUIDs in the summary index,
1293ca95b02SDimitry Andric   /// that came from indirect call profiles, and a value id generated by this
1303ca95b02SDimitry Andric   /// class to use in the VST and summary block records.
1313ca95b02SDimitry Andric   std::map<GlobalValue::GUID, unsigned> GUIDToValueIdMap;
1323ca95b02SDimitry Andric 
1333ca95b02SDimitry Andric   /// Tracks the last value id recorded in the GUIDToValueMap.
1343ca95b02SDimitry Andric   unsigned GlobalValueId;
1353ca95b02SDimitry Andric 
1366bc11b14SDimitry Andric   /// Saves the offset of the VSTOffset record that must eventually be
1376bc11b14SDimitry Andric   /// backpatched with the offset of the actual VST.
1386bc11b14SDimitry Andric   uint64_t VSTOffsetPlaceholder = 0;
1396bc11b14SDimitry Andric 
1403ca95b02SDimitry Andric public:
1413ca95b02SDimitry Andric   /// Constructs a ModuleBitcodeWriter object for the given Module,
1423ca95b02SDimitry Andric   /// writing to the provided \p Buffer.
1433ca95b02SDimitry Andric   ModuleBitcodeWriter(const Module *M, SmallVectorImpl<char> &Buffer,
1446bc11b14SDimitry Andric                       StringTableBuilder &StrtabBuilder,
145d88c1a5aSDimitry Andric                       BitstreamWriter &Stream, bool ShouldPreserveUseListOrder,
1467a7e6055SDimitry Andric                       const ModuleSummaryIndex *Index, bool GenerateHash,
1477a7e6055SDimitry Andric                       ModuleHash *ModHash = nullptr)
14824d58133SDimitry Andric       : BitcodeWriterBase(Stream, StrtabBuilder), Buffer(Buffer), M(*M),
14924d58133SDimitry Andric         VE(*M, ShouldPreserveUseListOrder), Index(Index),
1507a7e6055SDimitry Andric         GenerateHash(GenerateHash), ModHash(ModHash),
1517a7e6055SDimitry Andric         BitcodeStartBit(Stream.GetCurrentBitNo()) {
1523ca95b02SDimitry Andric     // Assign ValueIds to any callee values in the index that came from
1533ca95b02SDimitry Andric     // indirect call profiles and were recorded as a GUID not a Value*
1543ca95b02SDimitry Andric     // (which would have been assigned an ID by the ValueEnumerator).
1553ca95b02SDimitry Andric     // The starting ValueId is just after the number of values in the
1563ca95b02SDimitry Andric     // ValueEnumerator, so that they can be emitted in the VST.
1573ca95b02SDimitry Andric     GlobalValueId = VE.getValues().size();
158d88c1a5aSDimitry Andric     if (!Index)
159d88c1a5aSDimitry Andric       return;
1603ca95b02SDimitry Andric     for (const auto &GUIDSummaryLists : *Index)
1613ca95b02SDimitry Andric       // Examine all summaries for this GUID.
1620f5676f4SDimitry Andric       for (auto &Summary : GUIDSummaryLists.second.SummaryList)
1633ca95b02SDimitry Andric         if (auto FS = dyn_cast<FunctionSummary>(Summary.get()))
1643ca95b02SDimitry Andric           // For each call in the function summary, see if the call
1653ca95b02SDimitry Andric           // is to a GUID (which means it is for an indirect call,
1663ca95b02SDimitry Andric           // otherwise we would have a Value for it). If so, synthesize
1673ca95b02SDimitry Andric           // a value id.
1683ca95b02SDimitry Andric           for (auto &CallEdge : FS->calls())
1690f5676f4SDimitry Andric             if (!CallEdge.first.getValue())
1703ca95b02SDimitry Andric               assignValueId(CallEdge.first.getGUID());
1713ca95b02SDimitry Andric   }
1723ca95b02SDimitry Andric 
1733ca95b02SDimitry Andric   /// Emit the current module to the bitstream.
174d88c1a5aSDimitry Andric   void write();
1753ca95b02SDimitry Andric 
176d88c1a5aSDimitry Andric private:
1773ca95b02SDimitry Andric   uint64_t bitcodeStartBit() { return BitcodeStartBit; }
1783ca95b02SDimitry Andric 
1793ca95b02SDimitry Andric   void writeAttributeGroupTable();
1803ca95b02SDimitry Andric   void writeAttributeTable();
1813ca95b02SDimitry Andric   void writeTypeTable();
1823ca95b02SDimitry Andric   void writeComdats();
1836bc11b14SDimitry Andric   void writeValueSymbolTableForwardDecl();
1843ca95b02SDimitry Andric   void writeModuleInfo();
1853ca95b02SDimitry Andric   void writeValueAsMetadata(const ValueAsMetadata *MD,
1863ca95b02SDimitry Andric                             SmallVectorImpl<uint64_t> &Record);
1873ca95b02SDimitry Andric   void writeMDTuple(const MDTuple *N, SmallVectorImpl<uint64_t> &Record,
1883ca95b02SDimitry Andric                     unsigned Abbrev);
1893ca95b02SDimitry Andric   unsigned createDILocationAbbrev();
1903ca95b02SDimitry Andric   void writeDILocation(const DILocation *N, SmallVectorImpl<uint64_t> &Record,
1913ca95b02SDimitry Andric                        unsigned &Abbrev);
1923ca95b02SDimitry Andric   unsigned createGenericDINodeAbbrev();
1933ca95b02SDimitry Andric   void writeGenericDINode(const GenericDINode *N,
1943ca95b02SDimitry Andric                           SmallVectorImpl<uint64_t> &Record, unsigned &Abbrev);
1953ca95b02SDimitry Andric   void writeDISubrange(const DISubrange *N, SmallVectorImpl<uint64_t> &Record,
1963ca95b02SDimitry Andric                        unsigned Abbrev);
1973ca95b02SDimitry Andric   void writeDIEnumerator(const DIEnumerator *N,
1983ca95b02SDimitry Andric                          SmallVectorImpl<uint64_t> &Record, unsigned Abbrev);
1993ca95b02SDimitry Andric   void writeDIBasicType(const DIBasicType *N, SmallVectorImpl<uint64_t> &Record,
2003ca95b02SDimitry Andric                         unsigned Abbrev);
2013ca95b02SDimitry Andric   void writeDIDerivedType(const DIDerivedType *N,
2023ca95b02SDimitry Andric                           SmallVectorImpl<uint64_t> &Record, unsigned Abbrev);
2033ca95b02SDimitry Andric   void writeDICompositeType(const DICompositeType *N,
2043ca95b02SDimitry Andric                             SmallVectorImpl<uint64_t> &Record, unsigned Abbrev);
2053ca95b02SDimitry Andric   void writeDISubroutineType(const DISubroutineType *N,
2063ca95b02SDimitry Andric                              SmallVectorImpl<uint64_t> &Record,
2073ca95b02SDimitry Andric                              unsigned Abbrev);
2083ca95b02SDimitry Andric   void writeDIFile(const DIFile *N, SmallVectorImpl<uint64_t> &Record,
2093ca95b02SDimitry Andric                    unsigned Abbrev);
2103ca95b02SDimitry Andric   void writeDICompileUnit(const DICompileUnit *N,
2113ca95b02SDimitry Andric                           SmallVectorImpl<uint64_t> &Record, unsigned Abbrev);
2123ca95b02SDimitry Andric   void writeDISubprogram(const DISubprogram *N,
2133ca95b02SDimitry Andric                          SmallVectorImpl<uint64_t> &Record, unsigned Abbrev);
2143ca95b02SDimitry Andric   void writeDILexicalBlock(const DILexicalBlock *N,
2153ca95b02SDimitry Andric                            SmallVectorImpl<uint64_t> &Record, unsigned Abbrev);
2163ca95b02SDimitry Andric   void writeDILexicalBlockFile(const DILexicalBlockFile *N,
2173ca95b02SDimitry Andric                                SmallVectorImpl<uint64_t> &Record,
2183ca95b02SDimitry Andric                                unsigned Abbrev);
2193ca95b02SDimitry Andric   void writeDINamespace(const DINamespace *N, SmallVectorImpl<uint64_t> &Record,
2203ca95b02SDimitry Andric                         unsigned Abbrev);
2213ca95b02SDimitry Andric   void writeDIMacro(const DIMacro *N, SmallVectorImpl<uint64_t> &Record,
2223ca95b02SDimitry Andric                     unsigned Abbrev);
2233ca95b02SDimitry Andric   void writeDIMacroFile(const DIMacroFile *N, SmallVectorImpl<uint64_t> &Record,
2243ca95b02SDimitry Andric                         unsigned Abbrev);
2253ca95b02SDimitry Andric   void writeDIModule(const DIModule *N, SmallVectorImpl<uint64_t> &Record,
2263ca95b02SDimitry Andric                      unsigned Abbrev);
2273ca95b02SDimitry Andric   void writeDITemplateTypeParameter(const DITemplateTypeParameter *N,
2283ca95b02SDimitry Andric                                     SmallVectorImpl<uint64_t> &Record,
2293ca95b02SDimitry Andric                                     unsigned Abbrev);
2303ca95b02SDimitry Andric   void writeDITemplateValueParameter(const DITemplateValueParameter *N,
2313ca95b02SDimitry Andric                                      SmallVectorImpl<uint64_t> &Record,
2323ca95b02SDimitry Andric                                      unsigned Abbrev);
2333ca95b02SDimitry Andric   void writeDIGlobalVariable(const DIGlobalVariable *N,
2343ca95b02SDimitry Andric                              SmallVectorImpl<uint64_t> &Record,
2353ca95b02SDimitry Andric                              unsigned Abbrev);
2363ca95b02SDimitry Andric   void writeDILocalVariable(const DILocalVariable *N,
2373ca95b02SDimitry Andric                             SmallVectorImpl<uint64_t> &Record, unsigned Abbrev);
2383ca95b02SDimitry Andric   void writeDIExpression(const DIExpression *N,
2393ca95b02SDimitry Andric                          SmallVectorImpl<uint64_t> &Record, unsigned Abbrev);
240d88c1a5aSDimitry Andric   void writeDIGlobalVariableExpression(const DIGlobalVariableExpression *N,
241d88c1a5aSDimitry Andric                                        SmallVectorImpl<uint64_t> &Record,
242d88c1a5aSDimitry Andric                                        unsigned Abbrev);
2433ca95b02SDimitry Andric   void writeDIObjCProperty(const DIObjCProperty *N,
2443ca95b02SDimitry Andric                            SmallVectorImpl<uint64_t> &Record, unsigned Abbrev);
2453ca95b02SDimitry Andric   void writeDIImportedEntity(const DIImportedEntity *N,
2463ca95b02SDimitry Andric                              SmallVectorImpl<uint64_t> &Record,
2473ca95b02SDimitry Andric                              unsigned Abbrev);
2483ca95b02SDimitry Andric   unsigned createNamedMetadataAbbrev();
2493ca95b02SDimitry Andric   void writeNamedMetadata(SmallVectorImpl<uint64_t> &Record);
2503ca95b02SDimitry Andric   unsigned createMetadataStringsAbbrev();
2513ca95b02SDimitry Andric   void writeMetadataStrings(ArrayRef<const Metadata *> Strings,
2523ca95b02SDimitry Andric                             SmallVectorImpl<uint64_t> &Record);
2533ca95b02SDimitry Andric   void writeMetadataRecords(ArrayRef<const Metadata *> MDs,
254d88c1a5aSDimitry Andric                             SmallVectorImpl<uint64_t> &Record,
255d88c1a5aSDimitry Andric                             std::vector<unsigned> *MDAbbrevs = nullptr,
256d88c1a5aSDimitry Andric                             std::vector<uint64_t> *IndexPos = nullptr);
2573ca95b02SDimitry Andric   void writeModuleMetadata();
2583ca95b02SDimitry Andric   void writeFunctionMetadata(const Function &F);
2593ca95b02SDimitry Andric   void writeFunctionMetadataAttachment(const Function &F);
2603ca95b02SDimitry Andric   void writeGlobalVariableMetadataAttachment(const GlobalVariable &GV);
2613ca95b02SDimitry Andric   void pushGlobalMetadataAttachment(SmallVectorImpl<uint64_t> &Record,
2623ca95b02SDimitry Andric                                     const GlobalObject &GO);
2633ca95b02SDimitry Andric   void writeModuleMetadataKinds();
2643ca95b02SDimitry Andric   void writeOperandBundleTags();
2653ca95b02SDimitry Andric   void writeConstants(unsigned FirstVal, unsigned LastVal, bool isGlobal);
2663ca95b02SDimitry Andric   void writeModuleConstants();
2673ca95b02SDimitry Andric   bool pushValueAndType(const Value *V, unsigned InstID,
2683ca95b02SDimitry Andric                         SmallVectorImpl<unsigned> &Vals);
2693ca95b02SDimitry Andric   void writeOperandBundles(ImmutableCallSite CS, unsigned InstID);
2703ca95b02SDimitry Andric   void pushValue(const Value *V, unsigned InstID,
2713ca95b02SDimitry Andric                  SmallVectorImpl<unsigned> &Vals);
2723ca95b02SDimitry Andric   void pushValueSigned(const Value *V, unsigned InstID,
2733ca95b02SDimitry Andric                        SmallVectorImpl<uint64_t> &Vals);
2743ca95b02SDimitry Andric   void writeInstruction(const Instruction &I, unsigned InstID,
2753ca95b02SDimitry Andric                         SmallVectorImpl<unsigned> &Vals);
2766bc11b14SDimitry Andric   void writeFunctionLevelValueSymbolTable(const ValueSymbolTable &VST);
2776bc11b14SDimitry Andric   void writeGlobalValueSymbolTable(
2786bc11b14SDimitry Andric       DenseMap<const Function *, uint64_t> &FunctionToBitcodeIndex);
2793ca95b02SDimitry Andric   void writeUseList(UseListOrder &&Order);
2803ca95b02SDimitry Andric   void writeUseListBlock(const Function *F);
2813ca95b02SDimitry Andric   void
2823ca95b02SDimitry Andric   writeFunction(const Function &F,
2833ca95b02SDimitry Andric                 DenseMap<const Function *, uint64_t> &FunctionToBitcodeIndex);
2843ca95b02SDimitry Andric   void writeBlockInfo();
2853ca95b02SDimitry Andric   void writePerModuleFunctionSummaryRecord(SmallVector<uint64_t, 64> &NameVals,
2863ca95b02SDimitry Andric                                            GlobalValueSummary *Summary,
2873ca95b02SDimitry Andric                                            unsigned ValueID,
2883ca95b02SDimitry Andric                                            unsigned FSCallsAbbrev,
2893ca95b02SDimitry Andric                                            unsigned FSCallsProfileAbbrev,
2903ca95b02SDimitry Andric                                            const Function &F);
2913ca95b02SDimitry Andric   void writeModuleLevelReferences(const GlobalVariable &V,
2923ca95b02SDimitry Andric                                   SmallVector<uint64_t, 64> &NameVals,
2933ca95b02SDimitry Andric                                   unsigned FSModRefsAbbrev);
2943ca95b02SDimitry Andric   void writePerModuleGlobalValueSummary();
2953ca95b02SDimitry Andric   void writeModuleHash(size_t BlockStartPos);
2963ca95b02SDimitry Andric 
2973ca95b02SDimitry Andric   void assignValueId(GlobalValue::GUID ValGUID) {
2983ca95b02SDimitry Andric     GUIDToValueIdMap[ValGUID] = ++GlobalValueId;
2993ca95b02SDimitry Andric   }
3003ca95b02SDimitry Andric   unsigned getValueId(GlobalValue::GUID ValGUID) {
3013ca95b02SDimitry Andric     const auto &VMI = GUIDToValueIdMap.find(ValGUID);
302d88c1a5aSDimitry Andric     // Expect that any GUID value had a value Id assigned by an
303d88c1a5aSDimitry Andric     // earlier call to assignValueId.
304d88c1a5aSDimitry Andric     assert(VMI != GUIDToValueIdMap.end() &&
305d88c1a5aSDimitry Andric            "GUID does not have assigned value Id");
3063ca95b02SDimitry Andric     return VMI->second;
3073ca95b02SDimitry Andric   }
3083ca95b02SDimitry Andric   // Helper to get the valueId for the type of value recorded in VI.
3093ca95b02SDimitry Andric   unsigned getValueId(ValueInfo VI) {
3100f5676f4SDimitry Andric     if (!VI.getValue())
3113ca95b02SDimitry Andric       return getValueId(VI.getGUID());
3123ca95b02SDimitry Andric     return VE.getValueID(VI.getValue());
3133ca95b02SDimitry Andric   }
3143ca95b02SDimitry Andric   std::map<GlobalValue::GUID, unsigned> &valueIds() { return GUIDToValueIdMap; }
3153ca95b02SDimitry Andric };
3163ca95b02SDimitry Andric 
3173ca95b02SDimitry Andric /// Class to manage the bitcode writing for a combined index.
318d88c1a5aSDimitry Andric class IndexBitcodeWriter : public BitcodeWriterBase {
3193ca95b02SDimitry Andric   /// The combined index to write to bitcode.
3203ca95b02SDimitry Andric   const ModuleSummaryIndex &Index;
3213ca95b02SDimitry Andric 
3223ca95b02SDimitry Andric   /// When writing a subset of the index for distributed backends, client
3233ca95b02SDimitry Andric   /// provides a map of modules to the corresponding GUIDs/summaries to write.
324d88c1a5aSDimitry Andric   const std::map<std::string, GVSummaryMapTy> *ModuleToSummariesForIndex;
3253ca95b02SDimitry Andric 
3263ca95b02SDimitry Andric   /// Map that holds the correspondence between the GUID used in the combined
3273ca95b02SDimitry Andric   /// index and a value id generated by this class to use in references.
3283ca95b02SDimitry Andric   std::map<GlobalValue::GUID, unsigned> GUIDToValueIdMap;
3293ca95b02SDimitry Andric 
3303ca95b02SDimitry Andric   /// Tracks the last value id recorded in the GUIDToValueMap.
3313ca95b02SDimitry Andric   unsigned GlobalValueId = 0;
3323ca95b02SDimitry Andric 
3333ca95b02SDimitry Andric public:
3343ca95b02SDimitry Andric   /// Constructs a IndexBitcodeWriter object for the given combined index,
3353ca95b02SDimitry Andric   /// writing to the provided \p Buffer. When writing a subset of the index
3363ca95b02SDimitry Andric   /// for a distributed backend, provide a \p ModuleToSummariesForIndex map.
33724d58133SDimitry Andric   IndexBitcodeWriter(BitstreamWriter &Stream, StringTableBuilder &StrtabBuilder,
33824d58133SDimitry Andric                      const ModuleSummaryIndex &Index,
339d88c1a5aSDimitry Andric                      const std::map<std::string, GVSummaryMapTy>
3403ca95b02SDimitry Andric                          *ModuleToSummariesForIndex = nullptr)
34124d58133SDimitry Andric       : BitcodeWriterBase(Stream, StrtabBuilder), Index(Index),
3423ca95b02SDimitry Andric         ModuleToSummariesForIndex(ModuleToSummariesForIndex) {
3433ca95b02SDimitry Andric     // Assign unique value ids to all summaries to be written, for use
3443ca95b02SDimitry Andric     // in writing out the call graph edges. Save the mapping from GUID
3453ca95b02SDimitry Andric     // to the new global value id to use when writing those edges, which
3463ca95b02SDimitry Andric     // are currently saved in the index in terms of GUID.
347f37b6182SDimitry Andric     forEachSummary([&](GVInfo I) {
3483ca95b02SDimitry Andric       GUIDToValueIdMap[I.first] = ++GlobalValueId;
349f37b6182SDimitry Andric     });
3503ca95b02SDimitry Andric   }
3513ca95b02SDimitry Andric 
3523ca95b02SDimitry Andric   /// The below iterator returns the GUID and associated summary.
3533ca95b02SDimitry Andric   typedef std::pair<GlobalValue::GUID, GlobalValueSummary *> GVInfo;
3543ca95b02SDimitry Andric 
355f37b6182SDimitry Andric   /// Calls the callback for each value GUID and summary to be written to
356f37b6182SDimitry Andric   /// bitcode. This hides the details of whether they are being pulled from the
357f37b6182SDimitry Andric   /// entire index or just those in a provided ModuleToSummariesForIndex map.
3586d97bb29SDimitry Andric   template<typename Functor>
3596d97bb29SDimitry Andric   void forEachSummary(Functor Callback) {
360f37b6182SDimitry Andric     if (ModuleToSummariesForIndex) {
361f37b6182SDimitry Andric       for (auto &M : *ModuleToSummariesForIndex)
362f37b6182SDimitry Andric         for (auto &Summary : M.second)
363f37b6182SDimitry Andric           Callback(Summary);
3643ca95b02SDimitry Andric     } else {
365f37b6182SDimitry Andric       for (auto &Summaries : Index)
3660f5676f4SDimitry Andric         for (auto &Summary : Summaries.second.SummaryList)
367f37b6182SDimitry Andric           Callback({Summaries.first, Summary.get()});
3683ca95b02SDimitry Andric     }
3693ca95b02SDimitry Andric   }
3703ca95b02SDimitry Andric 
3716d97bb29SDimitry Andric   /// Calls the callback for each entry in the modulePaths StringMap that
3726d97bb29SDimitry Andric   /// should be written to the module path string table. This hides the details
3736d97bb29SDimitry Andric   /// of whether they are being pulled from the entire index or just those in a
3746d97bb29SDimitry Andric   /// provided ModuleToSummariesForIndex map.
3756d97bb29SDimitry Andric   template <typename Functor> void forEachModule(Functor Callback) {
3766d97bb29SDimitry Andric     if (ModuleToSummariesForIndex) {
3776d97bb29SDimitry Andric       for (const auto &M : *ModuleToSummariesForIndex) {
3786d97bb29SDimitry Andric         const auto &MPI = Index.modulePaths().find(M.first);
3796d97bb29SDimitry Andric         if (MPI == Index.modulePaths().end()) {
3806d97bb29SDimitry Andric           // This should only happen if the bitcode file was empty, in which
3816d97bb29SDimitry Andric           // case we shouldn't be importing (the ModuleToSummariesForIndex
3826d97bb29SDimitry Andric           // would only include the module we are writing and index for).
3836d97bb29SDimitry Andric           assert(ModuleToSummariesForIndex->size() == 1);
3846d97bb29SDimitry Andric           continue;
3856d97bb29SDimitry Andric         }
3866d97bb29SDimitry Andric         Callback(*MPI);
3876d97bb29SDimitry Andric       }
3886d97bb29SDimitry Andric     } else {
3896d97bb29SDimitry Andric       for (const auto &MPSE : Index.modulePaths())
3906d97bb29SDimitry Andric         Callback(MPSE);
3916d97bb29SDimitry Andric     }
3926d97bb29SDimitry Andric   }
3936d97bb29SDimitry Andric 
394d88c1a5aSDimitry Andric   /// Main entry point for writing a combined index to bitcode.
395d88c1a5aSDimitry Andric   void write();
3963ca95b02SDimitry Andric 
397d88c1a5aSDimitry Andric private:
3983ca95b02SDimitry Andric   void writeModStrings();
3993ca95b02SDimitry Andric   void writeCombinedGlobalValueSummary();
4003ca95b02SDimitry Andric 
401f9448bf3SDimitry Andric   Optional<unsigned> getValueId(GlobalValue::GUID ValGUID) {
4026bc11b14SDimitry Andric     auto VMI = GUIDToValueIdMap.find(ValGUID);
403f9448bf3SDimitry Andric     if (VMI == GUIDToValueIdMap.end())
404f9448bf3SDimitry Andric       return None;
4056bc11b14SDimitry Andric     return VMI->second;
4063ca95b02SDimitry Andric   }
4073ca95b02SDimitry Andric   std::map<GlobalValue::GUID, unsigned> &valueIds() { return GUIDToValueIdMap; }
4083ca95b02SDimitry Andric };
4093ca95b02SDimitry Andric } // end anonymous namespace
4103ca95b02SDimitry Andric 
4113ca95b02SDimitry Andric static unsigned getEncodedCastOpcode(unsigned Opcode) {
412f22ef01cSRoman Divacky   switch (Opcode) {
413f22ef01cSRoman Divacky   default: llvm_unreachable("Unknown cast instruction!");
414f22ef01cSRoman Divacky   case Instruction::Trunc   : return bitc::CAST_TRUNC;
415f22ef01cSRoman Divacky   case Instruction::ZExt    : return bitc::CAST_ZEXT;
416f22ef01cSRoman Divacky   case Instruction::SExt    : return bitc::CAST_SEXT;
417f22ef01cSRoman Divacky   case Instruction::FPToUI  : return bitc::CAST_FPTOUI;
418f22ef01cSRoman Divacky   case Instruction::FPToSI  : return bitc::CAST_FPTOSI;
419f22ef01cSRoman Divacky   case Instruction::UIToFP  : return bitc::CAST_UITOFP;
420f22ef01cSRoman Divacky   case Instruction::SIToFP  : return bitc::CAST_SITOFP;
421f22ef01cSRoman Divacky   case Instruction::FPTrunc : return bitc::CAST_FPTRUNC;
422f22ef01cSRoman Divacky   case Instruction::FPExt   : return bitc::CAST_FPEXT;
423f22ef01cSRoman Divacky   case Instruction::PtrToInt: return bitc::CAST_PTRTOINT;
424f22ef01cSRoman Divacky   case Instruction::IntToPtr: return bitc::CAST_INTTOPTR;
425f22ef01cSRoman Divacky   case Instruction::BitCast : return bitc::CAST_BITCAST;
426f785676fSDimitry Andric   case Instruction::AddrSpaceCast: return bitc::CAST_ADDRSPACECAST;
427f22ef01cSRoman Divacky   }
428f22ef01cSRoman Divacky }
429f22ef01cSRoman Divacky 
4303ca95b02SDimitry Andric static unsigned getEncodedBinaryOpcode(unsigned Opcode) {
431f22ef01cSRoman Divacky   switch (Opcode) {
432f22ef01cSRoman Divacky   default: llvm_unreachable("Unknown binary instruction!");
433f22ef01cSRoman Divacky   case Instruction::Add:
434f22ef01cSRoman Divacky   case Instruction::FAdd: return bitc::BINOP_ADD;
435f22ef01cSRoman Divacky   case Instruction::Sub:
436f22ef01cSRoman Divacky   case Instruction::FSub: return bitc::BINOP_SUB;
437f22ef01cSRoman Divacky   case Instruction::Mul:
438f22ef01cSRoman Divacky   case Instruction::FMul: return bitc::BINOP_MUL;
439f22ef01cSRoman Divacky   case Instruction::UDiv: return bitc::BINOP_UDIV;
440f22ef01cSRoman Divacky   case Instruction::FDiv:
441f22ef01cSRoman Divacky   case Instruction::SDiv: return bitc::BINOP_SDIV;
442f22ef01cSRoman Divacky   case Instruction::URem: return bitc::BINOP_UREM;
443f22ef01cSRoman Divacky   case Instruction::FRem:
444f22ef01cSRoman Divacky   case Instruction::SRem: return bitc::BINOP_SREM;
445f22ef01cSRoman Divacky   case Instruction::Shl:  return bitc::BINOP_SHL;
446f22ef01cSRoman Divacky   case Instruction::LShr: return bitc::BINOP_LSHR;
447f22ef01cSRoman Divacky   case Instruction::AShr: return bitc::BINOP_ASHR;
448f22ef01cSRoman Divacky   case Instruction::And:  return bitc::BINOP_AND;
449f22ef01cSRoman Divacky   case Instruction::Or:   return bitc::BINOP_OR;
450f22ef01cSRoman Divacky   case Instruction::Xor:  return bitc::BINOP_XOR;
451f22ef01cSRoman Divacky   }
452f22ef01cSRoman Divacky }
453f22ef01cSRoman Divacky 
4543ca95b02SDimitry Andric static unsigned getEncodedRMWOperation(AtomicRMWInst::BinOp Op) {
4556122f3e6SDimitry Andric   switch (Op) {
4566122f3e6SDimitry Andric   default: llvm_unreachable("Unknown RMW operation!");
4576122f3e6SDimitry Andric   case AtomicRMWInst::Xchg: return bitc::RMW_XCHG;
4586122f3e6SDimitry Andric   case AtomicRMWInst::Add: return bitc::RMW_ADD;
4596122f3e6SDimitry Andric   case AtomicRMWInst::Sub: return bitc::RMW_SUB;
4606122f3e6SDimitry Andric   case AtomicRMWInst::And: return bitc::RMW_AND;
4616122f3e6SDimitry Andric   case AtomicRMWInst::Nand: return bitc::RMW_NAND;
4626122f3e6SDimitry Andric   case AtomicRMWInst::Or: return bitc::RMW_OR;
4636122f3e6SDimitry Andric   case AtomicRMWInst::Xor: return bitc::RMW_XOR;
4646122f3e6SDimitry Andric   case AtomicRMWInst::Max: return bitc::RMW_MAX;
4656122f3e6SDimitry Andric   case AtomicRMWInst::Min: return bitc::RMW_MIN;
4666122f3e6SDimitry Andric   case AtomicRMWInst::UMax: return bitc::RMW_UMAX;
4676122f3e6SDimitry Andric   case AtomicRMWInst::UMin: return bitc::RMW_UMIN;
4686122f3e6SDimitry Andric   }
4696122f3e6SDimitry Andric }
4706122f3e6SDimitry Andric 
4713ca95b02SDimitry Andric static unsigned getEncodedOrdering(AtomicOrdering Ordering) {
4726122f3e6SDimitry Andric   switch (Ordering) {
4733ca95b02SDimitry Andric   case AtomicOrdering::NotAtomic: return bitc::ORDERING_NOTATOMIC;
4743ca95b02SDimitry Andric   case AtomicOrdering::Unordered: return bitc::ORDERING_UNORDERED;
4753ca95b02SDimitry Andric   case AtomicOrdering::Monotonic: return bitc::ORDERING_MONOTONIC;
4763ca95b02SDimitry Andric   case AtomicOrdering::Acquire: return bitc::ORDERING_ACQUIRE;
4773ca95b02SDimitry Andric   case AtomicOrdering::Release: return bitc::ORDERING_RELEASE;
4783ca95b02SDimitry Andric   case AtomicOrdering::AcquireRelease: return bitc::ORDERING_ACQREL;
4793ca95b02SDimitry Andric   case AtomicOrdering::SequentiallyConsistent: return bitc::ORDERING_SEQCST;
4806122f3e6SDimitry Andric   }
481dff0c46cSDimitry Andric   llvm_unreachable("Invalid ordering");
4826122f3e6SDimitry Andric }
4836122f3e6SDimitry Andric 
4843ca95b02SDimitry Andric static unsigned getEncodedSynchScope(SynchronizationScope SynchScope) {
4856122f3e6SDimitry Andric   switch (SynchScope) {
4866122f3e6SDimitry Andric   case SingleThread: return bitc::SYNCHSCOPE_SINGLETHREAD;
4876122f3e6SDimitry Andric   case CrossThread: return bitc::SYNCHSCOPE_CROSSTHREAD;
4886122f3e6SDimitry Andric   }
489dff0c46cSDimitry Andric   llvm_unreachable("Invalid synch scope");
4906122f3e6SDimitry Andric }
4916122f3e6SDimitry Andric 
492d88c1a5aSDimitry Andric static void writeStringRecord(BitstreamWriter &Stream, unsigned Code,
493d88c1a5aSDimitry Andric                               StringRef Str, unsigned AbbrevToUse) {
494f22ef01cSRoman Divacky   SmallVector<unsigned, 64> Vals;
495f22ef01cSRoman Divacky 
496f22ef01cSRoman Divacky   // Code: [strchar x N]
49717a519f9SDimitry Andric   for (unsigned i = 0, e = Str.size(); i != e; ++i) {
49817a519f9SDimitry Andric     if (AbbrevToUse && !BitCodeAbbrevOp::isChar6(Str[i]))
49917a519f9SDimitry Andric       AbbrevToUse = 0;
500f22ef01cSRoman Divacky     Vals.push_back(Str[i]);
50117a519f9SDimitry Andric   }
502f22ef01cSRoman Divacky 
503f22ef01cSRoman Divacky   // Emit the finished record.
504f22ef01cSRoman Divacky   Stream.EmitRecord(Code, Vals, AbbrevToUse);
505f22ef01cSRoman Divacky }
506f22ef01cSRoman Divacky 
507f785676fSDimitry Andric static uint64_t getAttrKindEncoding(Attribute::AttrKind Kind) {
508f785676fSDimitry Andric   switch (Kind) {
509f785676fSDimitry Andric   case Attribute::Alignment:
510f785676fSDimitry Andric     return bitc::ATTR_KIND_ALIGNMENT;
5113ca95b02SDimitry Andric   case Attribute::AllocSize:
5123ca95b02SDimitry Andric     return bitc::ATTR_KIND_ALLOC_SIZE;
513f785676fSDimitry Andric   case Attribute::AlwaysInline:
514f785676fSDimitry Andric     return bitc::ATTR_KIND_ALWAYS_INLINE;
515875ed548SDimitry Andric   case Attribute::ArgMemOnly:
516875ed548SDimitry Andric     return bitc::ATTR_KIND_ARGMEMONLY;
517f785676fSDimitry Andric   case Attribute::Builtin:
518f785676fSDimitry Andric     return bitc::ATTR_KIND_BUILTIN;
519f785676fSDimitry Andric   case Attribute::ByVal:
520f785676fSDimitry Andric     return bitc::ATTR_KIND_BY_VAL;
521ff0cc061SDimitry Andric   case Attribute::Convergent:
522ff0cc061SDimitry Andric     return bitc::ATTR_KIND_CONVERGENT;
52391bc56edSDimitry Andric   case Attribute::InAlloca:
52491bc56edSDimitry Andric     return bitc::ATTR_KIND_IN_ALLOCA;
525f785676fSDimitry Andric   case Attribute::Cold:
526f785676fSDimitry Andric     return bitc::ATTR_KIND_COLD;
5277d523365SDimitry Andric   case Attribute::InaccessibleMemOnly:
5287d523365SDimitry Andric     return bitc::ATTR_KIND_INACCESSIBLEMEM_ONLY;
5297d523365SDimitry Andric   case Attribute::InaccessibleMemOrArgMemOnly:
5307d523365SDimitry Andric     return bitc::ATTR_KIND_INACCESSIBLEMEM_OR_ARGMEMONLY;
531f785676fSDimitry Andric   case Attribute::InlineHint:
532f785676fSDimitry Andric     return bitc::ATTR_KIND_INLINE_HINT;
533f785676fSDimitry Andric   case Attribute::InReg:
534f785676fSDimitry Andric     return bitc::ATTR_KIND_IN_REG;
53591bc56edSDimitry Andric   case Attribute::JumpTable:
53691bc56edSDimitry Andric     return bitc::ATTR_KIND_JUMP_TABLE;
537f785676fSDimitry Andric   case Attribute::MinSize:
538f785676fSDimitry Andric     return bitc::ATTR_KIND_MIN_SIZE;
539f785676fSDimitry Andric   case Attribute::Naked:
540f785676fSDimitry Andric     return bitc::ATTR_KIND_NAKED;
541f785676fSDimitry Andric   case Attribute::Nest:
542f785676fSDimitry Andric     return bitc::ATTR_KIND_NEST;
543f785676fSDimitry Andric   case Attribute::NoAlias:
544f785676fSDimitry Andric     return bitc::ATTR_KIND_NO_ALIAS;
545f785676fSDimitry Andric   case Attribute::NoBuiltin:
546f785676fSDimitry Andric     return bitc::ATTR_KIND_NO_BUILTIN;
547f785676fSDimitry Andric   case Attribute::NoCapture:
548f785676fSDimitry Andric     return bitc::ATTR_KIND_NO_CAPTURE;
549f785676fSDimitry Andric   case Attribute::NoDuplicate:
550f785676fSDimitry Andric     return bitc::ATTR_KIND_NO_DUPLICATE;
551f785676fSDimitry Andric   case Attribute::NoImplicitFloat:
552f785676fSDimitry Andric     return bitc::ATTR_KIND_NO_IMPLICIT_FLOAT;
553f785676fSDimitry Andric   case Attribute::NoInline:
554f785676fSDimitry Andric     return bitc::ATTR_KIND_NO_INLINE;
5557d523365SDimitry Andric   case Attribute::NoRecurse:
5567d523365SDimitry Andric     return bitc::ATTR_KIND_NO_RECURSE;
557f785676fSDimitry Andric   case Attribute::NonLazyBind:
558f785676fSDimitry Andric     return bitc::ATTR_KIND_NON_LAZY_BIND;
55991bc56edSDimitry Andric   case Attribute::NonNull:
56091bc56edSDimitry Andric     return bitc::ATTR_KIND_NON_NULL;
56191bc56edSDimitry Andric   case Attribute::Dereferenceable:
56291bc56edSDimitry Andric     return bitc::ATTR_KIND_DEREFERENCEABLE;
563ff0cc061SDimitry Andric   case Attribute::DereferenceableOrNull:
564ff0cc061SDimitry Andric     return bitc::ATTR_KIND_DEREFERENCEABLE_OR_NULL;
565f785676fSDimitry Andric   case Attribute::NoRedZone:
566f785676fSDimitry Andric     return bitc::ATTR_KIND_NO_RED_ZONE;
567f785676fSDimitry Andric   case Attribute::NoReturn:
568f785676fSDimitry Andric     return bitc::ATTR_KIND_NO_RETURN;
569f785676fSDimitry Andric   case Attribute::NoUnwind:
570f785676fSDimitry Andric     return bitc::ATTR_KIND_NO_UNWIND;
571f785676fSDimitry Andric   case Attribute::OptimizeForSize:
572f785676fSDimitry Andric     return bitc::ATTR_KIND_OPTIMIZE_FOR_SIZE;
573f785676fSDimitry Andric   case Attribute::OptimizeNone:
574f785676fSDimitry Andric     return bitc::ATTR_KIND_OPTIMIZE_NONE;
575f785676fSDimitry Andric   case Attribute::ReadNone:
576f785676fSDimitry Andric     return bitc::ATTR_KIND_READ_NONE;
577f785676fSDimitry Andric   case Attribute::ReadOnly:
578f785676fSDimitry Andric     return bitc::ATTR_KIND_READ_ONLY;
579f785676fSDimitry Andric   case Attribute::Returned:
580f785676fSDimitry Andric     return bitc::ATTR_KIND_RETURNED;
581f785676fSDimitry Andric   case Attribute::ReturnsTwice:
582f785676fSDimitry Andric     return bitc::ATTR_KIND_RETURNS_TWICE;
583f785676fSDimitry Andric   case Attribute::SExt:
584f785676fSDimitry Andric     return bitc::ATTR_KIND_S_EXT;
585f37b6182SDimitry Andric   case Attribute::Speculatable:
586f37b6182SDimitry Andric     return bitc::ATTR_KIND_SPECULATABLE;
587f785676fSDimitry Andric   case Attribute::StackAlignment:
588f785676fSDimitry Andric     return bitc::ATTR_KIND_STACK_ALIGNMENT;
589f785676fSDimitry Andric   case Attribute::StackProtect:
590f785676fSDimitry Andric     return bitc::ATTR_KIND_STACK_PROTECT;
591f785676fSDimitry Andric   case Attribute::StackProtectReq:
592f785676fSDimitry Andric     return bitc::ATTR_KIND_STACK_PROTECT_REQ;
593f785676fSDimitry Andric   case Attribute::StackProtectStrong:
594f785676fSDimitry Andric     return bitc::ATTR_KIND_STACK_PROTECT_STRONG;
5958f0fd8f6SDimitry Andric   case Attribute::SafeStack:
5968f0fd8f6SDimitry Andric     return bitc::ATTR_KIND_SAFESTACK;
597f785676fSDimitry Andric   case Attribute::StructRet:
598f785676fSDimitry Andric     return bitc::ATTR_KIND_STRUCT_RET;
599f785676fSDimitry Andric   case Attribute::SanitizeAddress:
600f785676fSDimitry Andric     return bitc::ATTR_KIND_SANITIZE_ADDRESS;
601f785676fSDimitry Andric   case Attribute::SanitizeThread:
602f785676fSDimitry Andric     return bitc::ATTR_KIND_SANITIZE_THREAD;
603f785676fSDimitry Andric   case Attribute::SanitizeMemory:
604f785676fSDimitry Andric     return bitc::ATTR_KIND_SANITIZE_MEMORY;
6053ca95b02SDimitry Andric   case Attribute::SwiftError:
6063ca95b02SDimitry Andric     return bitc::ATTR_KIND_SWIFT_ERROR;
6073ca95b02SDimitry Andric   case Attribute::SwiftSelf:
6083ca95b02SDimitry Andric     return bitc::ATTR_KIND_SWIFT_SELF;
609f785676fSDimitry Andric   case Attribute::UWTable:
610f785676fSDimitry Andric     return bitc::ATTR_KIND_UW_TABLE;
6113ca95b02SDimitry Andric   case Attribute::WriteOnly:
6123ca95b02SDimitry Andric     return bitc::ATTR_KIND_WRITEONLY;
613f785676fSDimitry Andric   case Attribute::ZExt:
614f785676fSDimitry Andric     return bitc::ATTR_KIND_Z_EXT;
615f785676fSDimitry Andric   case Attribute::EndAttrKinds:
616f785676fSDimitry Andric     llvm_unreachable("Can not encode end-attribute kinds marker.");
617f785676fSDimitry Andric   case Attribute::None:
618f785676fSDimitry Andric     llvm_unreachable("Can not encode none-attribute.");
619f785676fSDimitry Andric   }
620f785676fSDimitry Andric 
621f785676fSDimitry Andric   llvm_unreachable("Trying to encode unknown attribute");
622f785676fSDimitry Andric }
623f785676fSDimitry Andric 
6243ca95b02SDimitry Andric void ModuleBitcodeWriter::writeAttributeGroupTable() {
62551690af2SDimitry Andric   const std::vector<ValueEnumerator::IndexAndAttrSet> &AttrGrps =
62651690af2SDimitry Andric       VE.getAttributeGroups();
627139f7f9bSDimitry Andric   if (AttrGrps.empty()) return;
628139f7f9bSDimitry Andric 
629139f7f9bSDimitry Andric   Stream.EnterSubblock(bitc::PARAMATTR_GROUP_BLOCK_ID, 3);
630139f7f9bSDimitry Andric 
631139f7f9bSDimitry Andric   SmallVector<uint64_t, 64> Record;
63251690af2SDimitry Andric   for (ValueEnumerator::IndexAndAttrSet Pair : AttrGrps) {
63351690af2SDimitry Andric     unsigned AttrListIndex = Pair.first;
63451690af2SDimitry Andric     AttributeSet AS = Pair.second;
63551690af2SDimitry Andric     Record.push_back(VE.getAttributeGroupID(Pair));
63651690af2SDimitry Andric     Record.push_back(AttrListIndex);
637139f7f9bSDimitry Andric 
63851690af2SDimitry Andric     for (Attribute Attr : AS) {
639139f7f9bSDimitry Andric       if (Attr.isEnumAttribute()) {
640139f7f9bSDimitry Andric         Record.push_back(0);
641f785676fSDimitry Andric         Record.push_back(getAttrKindEncoding(Attr.getKindAsEnum()));
64291bc56edSDimitry Andric       } else if (Attr.isIntAttribute()) {
643139f7f9bSDimitry Andric         Record.push_back(1);
644f785676fSDimitry Andric         Record.push_back(getAttrKindEncoding(Attr.getKindAsEnum()));
645139f7f9bSDimitry Andric         Record.push_back(Attr.getValueAsInt());
646139f7f9bSDimitry Andric       } else {
647139f7f9bSDimitry Andric         StringRef Kind = Attr.getKindAsString();
648139f7f9bSDimitry Andric         StringRef Val = Attr.getValueAsString();
649139f7f9bSDimitry Andric 
650139f7f9bSDimitry Andric         Record.push_back(Val.empty() ? 3 : 4);
651139f7f9bSDimitry Andric         Record.append(Kind.begin(), Kind.end());
652139f7f9bSDimitry Andric         Record.push_back(0);
653139f7f9bSDimitry Andric         if (!Val.empty()) {
654139f7f9bSDimitry Andric           Record.append(Val.begin(), Val.end());
655139f7f9bSDimitry Andric           Record.push_back(0);
656139f7f9bSDimitry Andric         }
657139f7f9bSDimitry Andric       }
658139f7f9bSDimitry Andric     }
659139f7f9bSDimitry Andric 
660139f7f9bSDimitry Andric     Stream.EmitRecord(bitc::PARAMATTR_GRP_CODE_ENTRY, Record);
661139f7f9bSDimitry Andric     Record.clear();
662139f7f9bSDimitry Andric   }
663139f7f9bSDimitry Andric 
664139f7f9bSDimitry Andric   Stream.ExitBlock();
665139f7f9bSDimitry Andric }
666139f7f9bSDimitry Andric 
6673ca95b02SDimitry Andric void ModuleBitcodeWriter::writeAttributeTable() {
66851690af2SDimitry Andric   const std::vector<AttributeList> &Attrs = VE.getAttributeLists();
669f22ef01cSRoman Divacky   if (Attrs.empty()) return;
670f22ef01cSRoman Divacky 
671f22ef01cSRoman Divacky   Stream.EnterSubblock(bitc::PARAMATTR_BLOCK_ID, 3);
672f22ef01cSRoman Divacky 
673f22ef01cSRoman Divacky   SmallVector<uint64_t, 64> Record;
674f22ef01cSRoman Divacky   for (unsigned i = 0, e = Attrs.size(); i != e; ++i) {
675302affcbSDimitry Andric     AttributeList AL = Attrs[i];
676302affcbSDimitry Andric     for (unsigned i = AL.index_begin(), e = AL.index_end(); i != e; ++i) {
677302affcbSDimitry Andric       AttributeSet AS = AL.getAttributes(i);
678302affcbSDimitry Andric       if (AS.hasAttributes())
679302affcbSDimitry Andric         Record.push_back(VE.getAttributeGroupID({i, AS}));
680302affcbSDimitry Andric     }
681f22ef01cSRoman Divacky 
682f22ef01cSRoman Divacky     Stream.EmitRecord(bitc::PARAMATTR_CODE_ENTRY, Record);
683f22ef01cSRoman Divacky     Record.clear();
684f22ef01cSRoman Divacky   }
685f22ef01cSRoman Divacky 
686f22ef01cSRoman Divacky   Stream.ExitBlock();
687f22ef01cSRoman Divacky }
688f22ef01cSRoman Divacky 
689f22ef01cSRoman Divacky /// WriteTypeTable - Write out the type table for a module.
6903ca95b02SDimitry Andric void ModuleBitcodeWriter::writeTypeTable() {
691f22ef01cSRoman Divacky   const ValueEnumerator::TypeList &TypeList = VE.getTypes();
692f22ef01cSRoman Divacky 
69317a519f9SDimitry Andric   Stream.EnterSubblock(bitc::TYPE_BLOCK_ID_NEW, 4 /*count from # abbrevs */);
694f22ef01cSRoman Divacky   SmallVector<uint64_t, 64> TypeVals;
695f22ef01cSRoman Divacky 
696ff0cc061SDimitry Andric   uint64_t NumBits = VE.computeBitsRequiredForTypeIndicies();
697dff0c46cSDimitry Andric 
698f22ef01cSRoman Divacky   // Abbrev for TYPE_CODE_POINTER.
69995ec533aSDimitry Andric   auto Abbv = std::make_shared<BitCodeAbbrev>();
700f22ef01cSRoman Divacky   Abbv->Add(BitCodeAbbrevOp(bitc::TYPE_CODE_POINTER));
701dff0c46cSDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, NumBits));
702f22ef01cSRoman Divacky   Abbv->Add(BitCodeAbbrevOp(0));  // Addrspace = 0
70395ec533aSDimitry Andric   unsigned PtrAbbrev = Stream.EmitAbbrev(std::move(Abbv));
704f22ef01cSRoman Divacky 
705f22ef01cSRoman Divacky   // Abbrev for TYPE_CODE_FUNCTION.
70695ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
707f22ef01cSRoman Divacky   Abbv->Add(BitCodeAbbrevOp(bitc::TYPE_CODE_FUNCTION));
708f22ef01cSRoman Divacky   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 1));  // isvararg
709f22ef01cSRoman Divacky   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
710dff0c46cSDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, NumBits));
711dff0c46cSDimitry Andric 
71295ec533aSDimitry Andric   unsigned FunctionAbbrev = Stream.EmitAbbrev(std::move(Abbv));
713f22ef01cSRoman Divacky 
71417a519f9SDimitry Andric   // Abbrev for TYPE_CODE_STRUCT_ANON.
71595ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
71617a519f9SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::TYPE_CODE_STRUCT_ANON));
717f22ef01cSRoman Divacky   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 1));  // ispacked
718f22ef01cSRoman Divacky   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
719dff0c46cSDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, NumBits));
720dff0c46cSDimitry Andric 
72195ec533aSDimitry Andric   unsigned StructAnonAbbrev = Stream.EmitAbbrev(std::move(Abbv));
72217a519f9SDimitry Andric 
72317a519f9SDimitry Andric   // Abbrev for TYPE_CODE_STRUCT_NAME.
72495ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
72517a519f9SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::TYPE_CODE_STRUCT_NAME));
72617a519f9SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
72717a519f9SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Char6));
72895ec533aSDimitry Andric   unsigned StructNameAbbrev = Stream.EmitAbbrev(std::move(Abbv));
72917a519f9SDimitry Andric 
73017a519f9SDimitry Andric   // Abbrev for TYPE_CODE_STRUCT_NAMED.
73195ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
73217a519f9SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::TYPE_CODE_STRUCT_NAMED));
73317a519f9SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 1));  // ispacked
73417a519f9SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
735dff0c46cSDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, NumBits));
736dff0c46cSDimitry Andric 
73795ec533aSDimitry Andric   unsigned StructNamedAbbrev = Stream.EmitAbbrev(std::move(Abbv));
73817a519f9SDimitry Andric 
739f22ef01cSRoman Divacky   // Abbrev for TYPE_CODE_ARRAY.
74095ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
741f22ef01cSRoman Divacky   Abbv->Add(BitCodeAbbrevOp(bitc::TYPE_CODE_ARRAY));
742f22ef01cSRoman Divacky   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // size
743dff0c46cSDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, NumBits));
744dff0c46cSDimitry Andric 
74595ec533aSDimitry Andric   unsigned ArrayAbbrev = Stream.EmitAbbrev(std::move(Abbv));
746f22ef01cSRoman Divacky 
747f22ef01cSRoman Divacky   // Emit an entry count so the reader can reserve space.
748f22ef01cSRoman Divacky   TypeVals.push_back(TypeList.size());
749f22ef01cSRoman Divacky   Stream.EmitRecord(bitc::TYPE_CODE_NUMENTRY, TypeVals);
750f22ef01cSRoman Divacky   TypeVals.clear();
751f22ef01cSRoman Divacky 
752f22ef01cSRoman Divacky   // Loop over all of the types, emitting each in turn.
753f22ef01cSRoman Divacky   for (unsigned i = 0, e = TypeList.size(); i != e; ++i) {
7546122f3e6SDimitry Andric     Type *T = TypeList[i];
755f22ef01cSRoman Divacky     int AbbrevToUse = 0;
756f22ef01cSRoman Divacky     unsigned Code = 0;
757f22ef01cSRoman Divacky 
758f22ef01cSRoman Divacky     switch (T->getTypeID()) {
759f22ef01cSRoman Divacky     case Type::VoidTyID:      Code = bitc::TYPE_CODE_VOID;      break;
760dff0c46cSDimitry Andric     case Type::HalfTyID:      Code = bitc::TYPE_CODE_HALF;      break;
761f22ef01cSRoman Divacky     case Type::FloatTyID:     Code = bitc::TYPE_CODE_FLOAT;     break;
762f22ef01cSRoman Divacky     case Type::DoubleTyID:    Code = bitc::TYPE_CODE_DOUBLE;    break;
763f22ef01cSRoman Divacky     case Type::X86_FP80TyID:  Code = bitc::TYPE_CODE_X86_FP80;  break;
764f22ef01cSRoman Divacky     case Type::FP128TyID:     Code = bitc::TYPE_CODE_FP128;     break;
765f22ef01cSRoman Divacky     case Type::PPC_FP128TyID: Code = bitc::TYPE_CODE_PPC_FP128; break;
766f22ef01cSRoman Divacky     case Type::LabelTyID:     Code = bitc::TYPE_CODE_LABEL;     break;
767f22ef01cSRoman Divacky     case Type::MetadataTyID:  Code = bitc::TYPE_CODE_METADATA;  break;
7682754fe60SDimitry Andric     case Type::X86_MMXTyID:   Code = bitc::TYPE_CODE_X86_MMX;   break;
7697d523365SDimitry Andric     case Type::TokenTyID:     Code = bitc::TYPE_CODE_TOKEN;     break;
770f22ef01cSRoman Divacky     case Type::IntegerTyID:
771f22ef01cSRoman Divacky       // INTEGER: [width]
772f22ef01cSRoman Divacky       Code = bitc::TYPE_CODE_INTEGER;
773f22ef01cSRoman Divacky       TypeVals.push_back(cast<IntegerType>(T)->getBitWidth());
774f22ef01cSRoman Divacky       break;
775f22ef01cSRoman Divacky     case Type::PointerTyID: {
7766122f3e6SDimitry Andric       PointerType *PTy = cast<PointerType>(T);
777f22ef01cSRoman Divacky       // POINTER: [pointee type, address space]
778f22ef01cSRoman Divacky       Code = bitc::TYPE_CODE_POINTER;
779f22ef01cSRoman Divacky       TypeVals.push_back(VE.getTypeID(PTy->getElementType()));
780f22ef01cSRoman Divacky       unsigned AddressSpace = PTy->getAddressSpace();
781f22ef01cSRoman Divacky       TypeVals.push_back(AddressSpace);
782f22ef01cSRoman Divacky       if (AddressSpace == 0) AbbrevToUse = PtrAbbrev;
783f22ef01cSRoman Divacky       break;
784f22ef01cSRoman Divacky     }
785f22ef01cSRoman Divacky     case Type::FunctionTyID: {
7866122f3e6SDimitry Andric       FunctionType *FT = cast<FunctionType>(T);
787dff0c46cSDimitry Andric       // FUNCTION: [isvararg, retty, paramty x N]
788f22ef01cSRoman Divacky       Code = bitc::TYPE_CODE_FUNCTION;
789f22ef01cSRoman Divacky       TypeVals.push_back(FT->isVarArg());
790f22ef01cSRoman Divacky       TypeVals.push_back(VE.getTypeID(FT->getReturnType()));
791f22ef01cSRoman Divacky       for (unsigned i = 0, e = FT->getNumParams(); i != e; ++i)
792f22ef01cSRoman Divacky         TypeVals.push_back(VE.getTypeID(FT->getParamType(i)));
793f22ef01cSRoman Divacky       AbbrevToUse = FunctionAbbrev;
794f22ef01cSRoman Divacky       break;
795f22ef01cSRoman Divacky     }
796f22ef01cSRoman Divacky     case Type::StructTyID: {
7976122f3e6SDimitry Andric       StructType *ST = cast<StructType>(T);
798f22ef01cSRoman Divacky       // STRUCT: [ispacked, eltty x N]
799f22ef01cSRoman Divacky       TypeVals.push_back(ST->isPacked());
800f22ef01cSRoman Divacky       // Output all of the element types.
801f22ef01cSRoman Divacky       for (StructType::element_iterator I = ST->element_begin(),
802f22ef01cSRoman Divacky            E = ST->element_end(); I != E; ++I)
803f22ef01cSRoman Divacky         TypeVals.push_back(VE.getTypeID(*I));
80417a519f9SDimitry Andric 
8056122f3e6SDimitry Andric       if (ST->isLiteral()) {
80617a519f9SDimitry Andric         Code = bitc::TYPE_CODE_STRUCT_ANON;
80717a519f9SDimitry Andric         AbbrevToUse = StructAnonAbbrev;
80817a519f9SDimitry Andric       } else {
80917a519f9SDimitry Andric         if (ST->isOpaque()) {
81017a519f9SDimitry Andric           Code = bitc::TYPE_CODE_OPAQUE;
81117a519f9SDimitry Andric         } else {
81217a519f9SDimitry Andric           Code = bitc::TYPE_CODE_STRUCT_NAMED;
81317a519f9SDimitry Andric           AbbrevToUse = StructNamedAbbrev;
81417a519f9SDimitry Andric         }
81517a519f9SDimitry Andric 
81617a519f9SDimitry Andric         // Emit the name if it is present.
81717a519f9SDimitry Andric         if (!ST->getName().empty())
818d88c1a5aSDimitry Andric           writeStringRecord(Stream, bitc::TYPE_CODE_STRUCT_NAME, ST->getName(),
8193ca95b02SDimitry Andric                             StructNameAbbrev);
82017a519f9SDimitry Andric       }
821f22ef01cSRoman Divacky       break;
822f22ef01cSRoman Divacky     }
823f22ef01cSRoman Divacky     case Type::ArrayTyID: {
8246122f3e6SDimitry Andric       ArrayType *AT = cast<ArrayType>(T);
825f22ef01cSRoman Divacky       // ARRAY: [numelts, eltty]
826f22ef01cSRoman Divacky       Code = bitc::TYPE_CODE_ARRAY;
827f22ef01cSRoman Divacky       TypeVals.push_back(AT->getNumElements());
828f22ef01cSRoman Divacky       TypeVals.push_back(VE.getTypeID(AT->getElementType()));
829f22ef01cSRoman Divacky       AbbrevToUse = ArrayAbbrev;
830f22ef01cSRoman Divacky       break;
831f22ef01cSRoman Divacky     }
832f22ef01cSRoman Divacky     case Type::VectorTyID: {
8336122f3e6SDimitry Andric       VectorType *VT = cast<VectorType>(T);
834f22ef01cSRoman Divacky       // VECTOR [numelts, eltty]
835f22ef01cSRoman Divacky       Code = bitc::TYPE_CODE_VECTOR;
836f22ef01cSRoman Divacky       TypeVals.push_back(VT->getNumElements());
837f22ef01cSRoman Divacky       TypeVals.push_back(VE.getTypeID(VT->getElementType()));
838f22ef01cSRoman Divacky       break;
839f22ef01cSRoman Divacky     }
840f22ef01cSRoman Divacky     }
841f22ef01cSRoman Divacky 
842f22ef01cSRoman Divacky     // Emit the finished record.
843f22ef01cSRoman Divacky     Stream.EmitRecord(Code, TypeVals, AbbrevToUse);
844f22ef01cSRoman Divacky     TypeVals.clear();
845f22ef01cSRoman Divacky   }
846f22ef01cSRoman Divacky 
847f22ef01cSRoman Divacky   Stream.ExitBlock();
848f22ef01cSRoman Divacky }
849f22ef01cSRoman Divacky 
8503ca95b02SDimitry Andric static unsigned getEncodedLinkage(const GlobalValue::LinkageTypes Linkage) {
8513ca95b02SDimitry Andric   switch (Linkage) {
85239d628a0SDimitry Andric   case GlobalValue::ExternalLinkage:
85339d628a0SDimitry Andric     return 0;
85439d628a0SDimitry Andric   case GlobalValue::WeakAnyLinkage:
855ff0cc061SDimitry Andric     return 16;
85639d628a0SDimitry Andric   case GlobalValue::AppendingLinkage:
85739d628a0SDimitry Andric     return 2;
85839d628a0SDimitry Andric   case GlobalValue::InternalLinkage:
85939d628a0SDimitry Andric     return 3;
86039d628a0SDimitry Andric   case GlobalValue::LinkOnceAnyLinkage:
861ff0cc061SDimitry Andric     return 18;
86239d628a0SDimitry Andric   case GlobalValue::ExternalWeakLinkage:
86339d628a0SDimitry Andric     return 7;
86439d628a0SDimitry Andric   case GlobalValue::CommonLinkage:
86539d628a0SDimitry Andric     return 8;
86639d628a0SDimitry Andric   case GlobalValue::PrivateLinkage:
86739d628a0SDimitry Andric     return 9;
86839d628a0SDimitry Andric   case GlobalValue::WeakODRLinkage:
869ff0cc061SDimitry Andric     return 17;
87039d628a0SDimitry Andric   case GlobalValue::LinkOnceODRLinkage:
871ff0cc061SDimitry Andric     return 19;
87239d628a0SDimitry Andric   case GlobalValue::AvailableExternallyLinkage:
87339d628a0SDimitry Andric     return 12;
874f22ef01cSRoman Divacky   }
875dff0c46cSDimitry Andric   llvm_unreachable("Invalid linkage");
876f22ef01cSRoman Divacky }
877f22ef01cSRoman Divacky 
8783ca95b02SDimitry Andric static unsigned getEncodedLinkage(const GlobalValue &GV) {
8793ca95b02SDimitry Andric   return getEncodedLinkage(GV.getLinkage());
8803ca95b02SDimitry Andric }
8813ca95b02SDimitry Andric 
8823ca95b02SDimitry Andric // Decode the flags for GlobalValue in the summary
8833ca95b02SDimitry Andric static uint64_t getEncodedGVSummaryFlags(GlobalValueSummary::GVFlags Flags) {
8843ca95b02SDimitry Andric   uint64_t RawFlags = 0;
8853ca95b02SDimitry Andric 
88695ec533aSDimitry Andric   RawFlags |= Flags.NotEligibleToImport; // bool
8876d97bb29SDimitry Andric   RawFlags |= (Flags.Live << 1);
8883ca95b02SDimitry Andric   // Linkage don't need to be remapped at that time for the summary. Any future
8893ca95b02SDimitry Andric   // change to the getEncodedLinkage() function will need to be taken into
8903ca95b02SDimitry Andric   // account here as well.
8913ca95b02SDimitry Andric   RawFlags = (RawFlags << 4) | Flags.Linkage; // 4 bits
8923ca95b02SDimitry Andric 
8933ca95b02SDimitry Andric   return RawFlags;
8943ca95b02SDimitry Andric }
8953ca95b02SDimitry Andric 
89691bc56edSDimitry Andric static unsigned getEncodedVisibility(const GlobalValue &GV) {
89791bc56edSDimitry Andric   switch (GV.getVisibility()) {
898f22ef01cSRoman Divacky   case GlobalValue::DefaultVisibility:   return 0;
899f22ef01cSRoman Divacky   case GlobalValue::HiddenVisibility:    return 1;
900f22ef01cSRoman Divacky   case GlobalValue::ProtectedVisibility: return 2;
901f22ef01cSRoman Divacky   }
902dff0c46cSDimitry Andric   llvm_unreachable("Invalid visibility");
903f22ef01cSRoman Divacky }
904f22ef01cSRoman Divacky 
90591bc56edSDimitry Andric static unsigned getEncodedDLLStorageClass(const GlobalValue &GV) {
90691bc56edSDimitry Andric   switch (GV.getDLLStorageClass()) {
90791bc56edSDimitry Andric   case GlobalValue::DefaultStorageClass:   return 0;
90891bc56edSDimitry Andric   case GlobalValue::DLLImportStorageClass: return 1;
90991bc56edSDimitry Andric   case GlobalValue::DLLExportStorageClass: return 2;
91091bc56edSDimitry Andric   }
91191bc56edSDimitry Andric   llvm_unreachable("Invalid DLL storage class");
91291bc56edSDimitry Andric }
91391bc56edSDimitry Andric 
91491bc56edSDimitry Andric static unsigned getEncodedThreadLocalMode(const GlobalValue &GV) {
91591bc56edSDimitry Andric   switch (GV.getThreadLocalMode()) {
9167ae0e2c9SDimitry Andric     case GlobalVariable::NotThreadLocal:         return 0;
9177ae0e2c9SDimitry Andric     case GlobalVariable::GeneralDynamicTLSModel: return 1;
9187ae0e2c9SDimitry Andric     case GlobalVariable::LocalDynamicTLSModel:   return 2;
9197ae0e2c9SDimitry Andric     case GlobalVariable::InitialExecTLSModel:    return 3;
9207ae0e2c9SDimitry Andric     case GlobalVariable::LocalExecTLSModel:      return 4;
9217ae0e2c9SDimitry Andric   }
9227ae0e2c9SDimitry Andric   llvm_unreachable("Invalid TLS model");
9237ae0e2c9SDimitry Andric }
9247ae0e2c9SDimitry Andric 
92591bc56edSDimitry Andric static unsigned getEncodedComdatSelectionKind(const Comdat &C) {
92691bc56edSDimitry Andric   switch (C.getSelectionKind()) {
92791bc56edSDimitry Andric   case Comdat::Any:
92891bc56edSDimitry Andric     return bitc::COMDAT_SELECTION_KIND_ANY;
92991bc56edSDimitry Andric   case Comdat::ExactMatch:
93091bc56edSDimitry Andric     return bitc::COMDAT_SELECTION_KIND_EXACT_MATCH;
93191bc56edSDimitry Andric   case Comdat::Largest:
93291bc56edSDimitry Andric     return bitc::COMDAT_SELECTION_KIND_LARGEST;
93391bc56edSDimitry Andric   case Comdat::NoDuplicates:
93491bc56edSDimitry Andric     return bitc::COMDAT_SELECTION_KIND_NO_DUPLICATES;
93591bc56edSDimitry Andric   case Comdat::SameSize:
93691bc56edSDimitry Andric     return bitc::COMDAT_SELECTION_KIND_SAME_SIZE;
93791bc56edSDimitry Andric   }
93891bc56edSDimitry Andric   llvm_unreachable("Invalid selection kind");
93991bc56edSDimitry Andric }
94091bc56edSDimitry Andric 
9413ca95b02SDimitry Andric static unsigned getEncodedUnnamedAddr(const GlobalValue &GV) {
9423ca95b02SDimitry Andric   switch (GV.getUnnamedAddr()) {
9433ca95b02SDimitry Andric   case GlobalValue::UnnamedAddr::None:   return 0;
9443ca95b02SDimitry Andric   case GlobalValue::UnnamedAddr::Local:  return 2;
9453ca95b02SDimitry Andric   case GlobalValue::UnnamedAddr::Global: return 1;
9463ca95b02SDimitry Andric   }
9473ca95b02SDimitry Andric   llvm_unreachable("Invalid unnamed_addr");
9483ca95b02SDimitry Andric }
9493ca95b02SDimitry Andric 
9503ca95b02SDimitry Andric void ModuleBitcodeWriter::writeComdats() {
9513ca95b02SDimitry Andric   SmallVector<unsigned, 64> Vals;
95291bc56edSDimitry Andric   for (const Comdat *C : VE.getComdats()) {
9536bc11b14SDimitry Andric     // COMDAT: [strtab offset, strtab size, selection_kind]
9546bc11b14SDimitry Andric     Vals.push_back(StrtabBuilder.add(C->getName()));
9556bc11b14SDimitry Andric     Vals.push_back(C->getName().size());
95691bc56edSDimitry Andric     Vals.push_back(getEncodedComdatSelectionKind(*C));
95791bc56edSDimitry Andric     Stream.EmitRecord(bitc::MODULE_CODE_COMDAT, Vals, /*AbbrevToUse=*/0);
95891bc56edSDimitry Andric     Vals.clear();
95991bc56edSDimitry Andric   }
96091bc56edSDimitry Andric }
96191bc56edSDimitry Andric 
9627d523365SDimitry Andric /// Write a record that will eventually hold the word offset of the
9637d523365SDimitry Andric /// module-level VST. For now the offset is 0, which will be backpatched
9643ca95b02SDimitry Andric /// after the real VST is written. Saves the bit offset to backpatch.
9656bc11b14SDimitry Andric void ModuleBitcodeWriter::writeValueSymbolTableForwardDecl() {
9667d523365SDimitry Andric   // Write a placeholder value in for the offset of the real VST,
9677d523365SDimitry Andric   // which is written after the function blocks so that it can include
9687d523365SDimitry Andric   // the offset of each function. The placeholder offset will be
9697d523365SDimitry Andric   // updated when the real VST is written.
97095ec533aSDimitry Andric   auto Abbv = std::make_shared<BitCodeAbbrev>();
9717d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::MODULE_CODE_VSTOFFSET));
9727d523365SDimitry Andric   // Blocks are 32-bit aligned, so we can use a 32-bit word offset to
9737d523365SDimitry Andric   // hold the real VST offset. Must use fixed instead of VBR as we don't
9747d523365SDimitry Andric   // know how many VBR chunks to reserve ahead of time.
9757d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
97695ec533aSDimitry Andric   unsigned VSTOffsetAbbrev = Stream.EmitAbbrev(std::move(Abbv));
9777d523365SDimitry Andric 
9787d523365SDimitry Andric   // Emit the placeholder
9797d523365SDimitry Andric   uint64_t Vals[] = {bitc::MODULE_CODE_VSTOFFSET, 0};
9807d523365SDimitry Andric   Stream.EmitRecordWithAbbrev(VSTOffsetAbbrev, Vals);
9817d523365SDimitry Andric 
9823ca95b02SDimitry Andric   // Compute and save the bit offset to the placeholder, which will be
9837d523365SDimitry Andric   // patched when the real VST is written. We can simply subtract the 32-bit
9847d523365SDimitry Andric   // fixed size from the current bit number to get the location to backpatch.
9853ca95b02SDimitry Andric   VSTOffsetPlaceholder = Stream.GetCurrentBitNo() - 32;
9863ca95b02SDimitry Andric }
9873ca95b02SDimitry Andric 
9883ca95b02SDimitry Andric enum StringEncoding { SE_Char6, SE_Fixed7, SE_Fixed8 };
9893ca95b02SDimitry Andric 
9903ca95b02SDimitry Andric /// Determine the encoding to use for the given string name and length.
9916d97bb29SDimitry Andric static StringEncoding getStringEncoding(StringRef Str) {
9923ca95b02SDimitry Andric   bool isChar6 = true;
9936d97bb29SDimitry Andric   for (char C : Str) {
9943ca95b02SDimitry Andric     if (isChar6)
9956d97bb29SDimitry Andric       isChar6 = BitCodeAbbrevOp::isChar6(C);
9966d97bb29SDimitry Andric     if ((unsigned char)C & 128)
9973ca95b02SDimitry Andric       // don't bother scanning the rest.
9983ca95b02SDimitry Andric       return SE_Fixed8;
9993ca95b02SDimitry Andric   }
10003ca95b02SDimitry Andric   if (isChar6)
10013ca95b02SDimitry Andric     return SE_Char6;
10023ca95b02SDimitry Andric   return SE_Fixed7;
10037d523365SDimitry Andric }
10047d523365SDimitry Andric 
10057d523365SDimitry Andric /// Emit top-level description of module, including target triple, inline asm,
10067d523365SDimitry Andric /// descriptors for global variables, and function prototype info.
10077d523365SDimitry Andric /// Returns the bit offset to backpatch with the location of the real VST.
10083ca95b02SDimitry Andric void ModuleBitcodeWriter::writeModuleInfo() {
1009f22ef01cSRoman Divacky   // Emit various pieces of data attached to a module.
10103ca95b02SDimitry Andric   if (!M.getTargetTriple().empty())
1011d88c1a5aSDimitry Andric     writeStringRecord(Stream, bitc::MODULE_CODE_TRIPLE, M.getTargetTriple(),
10123ca95b02SDimitry Andric                       0 /*TODO*/);
10133ca95b02SDimitry Andric   const std::string &DL = M.getDataLayoutStr();
101491bc56edSDimitry Andric   if (!DL.empty())
1015d88c1a5aSDimitry Andric     writeStringRecord(Stream, bitc::MODULE_CODE_DATALAYOUT, DL, 0 /*TODO*/);
10163ca95b02SDimitry Andric   if (!M.getModuleInlineAsm().empty())
1017d88c1a5aSDimitry Andric     writeStringRecord(Stream, bitc::MODULE_CODE_ASM, M.getModuleInlineAsm(),
10183ca95b02SDimitry Andric                       0 /*TODO*/);
1019f22ef01cSRoman Divacky 
1020f22ef01cSRoman Divacky   // Emit information about sections and GC, computing how many there are. Also
1021f22ef01cSRoman Divacky   // compute the maximum alignment value.
1022f22ef01cSRoman Divacky   std::map<std::string, unsigned> SectionMap;
1023f22ef01cSRoman Divacky   std::map<std::string, unsigned> GCMap;
1024f22ef01cSRoman Divacky   unsigned MaxAlignment = 0;
1025f22ef01cSRoman Divacky   unsigned MaxGlobalType = 0;
10263ca95b02SDimitry Andric   for (const GlobalValue &GV : M.globals()) {
102791bc56edSDimitry Andric     MaxAlignment = std::max(MaxAlignment, GV.getAlignment());
1028ff0cc061SDimitry Andric     MaxGlobalType = std::max(MaxGlobalType, VE.getTypeID(GV.getValueType()));
102991bc56edSDimitry Andric     if (GV.hasSection()) {
1030f22ef01cSRoman Divacky       // Give section names unique ID's.
103191bc56edSDimitry Andric       unsigned &Entry = SectionMap[GV.getSection()];
10326122f3e6SDimitry Andric       if (!Entry) {
1033d88c1a5aSDimitry Andric         writeStringRecord(Stream, bitc::MODULE_CODE_SECTIONNAME, GV.getSection(),
10343ca95b02SDimitry Andric                           0 /*TODO*/);
1035f22ef01cSRoman Divacky         Entry = SectionMap.size();
1036f22ef01cSRoman Divacky       }
10376122f3e6SDimitry Andric     }
10386122f3e6SDimitry Andric   }
10393ca95b02SDimitry Andric   for (const Function &F : M) {
104091bc56edSDimitry Andric     MaxAlignment = std::max(MaxAlignment, F.getAlignment());
104191bc56edSDimitry Andric     if (F.hasSection()) {
1042f22ef01cSRoman Divacky       // Give section names unique ID's.
104391bc56edSDimitry Andric       unsigned &Entry = SectionMap[F.getSection()];
1044f22ef01cSRoman Divacky       if (!Entry) {
1045d88c1a5aSDimitry Andric         writeStringRecord(Stream, bitc::MODULE_CODE_SECTIONNAME, F.getSection(),
10463ca95b02SDimitry Andric                           0 /*TODO*/);
1047f22ef01cSRoman Divacky         Entry = SectionMap.size();
1048f22ef01cSRoman Divacky       }
1049f22ef01cSRoman Divacky     }
105091bc56edSDimitry Andric     if (F.hasGC()) {
1051f22ef01cSRoman Divacky       // Same for GC names.
105291bc56edSDimitry Andric       unsigned &Entry = GCMap[F.getGC()];
1053f22ef01cSRoman Divacky       if (!Entry) {
1054d88c1a5aSDimitry Andric         writeStringRecord(Stream, bitc::MODULE_CODE_GCNAME, F.getGC(),
1055d88c1a5aSDimitry Andric                           0 /*TODO*/);
1056f22ef01cSRoman Divacky         Entry = GCMap.size();
1057f22ef01cSRoman Divacky       }
1058f22ef01cSRoman Divacky     }
1059f22ef01cSRoman Divacky   }
1060f22ef01cSRoman Divacky 
1061f22ef01cSRoman Divacky   // Emit abbrev for globals, now that we know # sections and max alignment.
1062f22ef01cSRoman Divacky   unsigned SimpleGVarAbbrev = 0;
10633ca95b02SDimitry Andric   if (!M.global_empty()) {
1064f22ef01cSRoman Divacky     // Add an abbrev for common globals with no visibility or thread localness.
106595ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
1066f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::MODULE_CODE_GLOBALVAR));
10676bc11b14SDimitry Andric     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
10686bc11b14SDimitry Andric     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
1069f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed,
1070f22ef01cSRoman Divacky                               Log2_32_Ceil(MaxGlobalType+1)));
1071ff0cc061SDimitry Andric     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));   // AddrSpace << 2
1072ff0cc061SDimitry Andric                                                            //| explicitType << 1
1073ff0cc061SDimitry Andric                                                            //| constant
1074f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));   // Initializer.
1075ff0cc061SDimitry Andric     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 5)); // Linkage.
1076f22ef01cSRoman Divacky     if (MaxAlignment == 0)                                 // Alignment.
1077f22ef01cSRoman Divacky       Abbv->Add(BitCodeAbbrevOp(0));
1078f22ef01cSRoman Divacky     else {
1079f22ef01cSRoman Divacky       unsigned MaxEncAlignment = Log2_32(MaxAlignment)+1;
1080f22ef01cSRoman Divacky       Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed,
1081f22ef01cSRoman Divacky                                Log2_32_Ceil(MaxEncAlignment+1)));
1082f22ef01cSRoman Divacky     }
1083f22ef01cSRoman Divacky     if (SectionMap.empty())                                    // Section.
1084f22ef01cSRoman Divacky       Abbv->Add(BitCodeAbbrevOp(0));
1085f22ef01cSRoman Divacky     else
1086f22ef01cSRoman Divacky       Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed,
1087f22ef01cSRoman Divacky                                Log2_32_Ceil(SectionMap.size()+1)));
1088f22ef01cSRoman Divacky     // Don't bother emitting vis + thread local.
108995ec533aSDimitry Andric     SimpleGVarAbbrev = Stream.EmitAbbrev(std::move(Abbv));
1090f22ef01cSRoman Divacky   }
1091f22ef01cSRoman Divacky 
1092f22ef01cSRoman Divacky   SmallVector<unsigned, 64> Vals;
10936bc11b14SDimitry Andric   // Emit the module's source file name.
10946bc11b14SDimitry Andric   {
10956d97bb29SDimitry Andric     StringEncoding Bits = getStringEncoding(M.getSourceFileName());
10966bc11b14SDimitry Andric     BitCodeAbbrevOp AbbrevOpToUse = BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 8);
10976bc11b14SDimitry Andric     if (Bits == SE_Char6)
10986bc11b14SDimitry Andric       AbbrevOpToUse = BitCodeAbbrevOp(BitCodeAbbrevOp::Char6);
10996bc11b14SDimitry Andric     else if (Bits == SE_Fixed7)
11006bc11b14SDimitry Andric       AbbrevOpToUse = BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 7);
11016bc11b14SDimitry Andric 
11026bc11b14SDimitry Andric     // MODULE_CODE_SOURCE_FILENAME: [namechar x N]
11036bc11b14SDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
11046bc11b14SDimitry Andric     Abbv->Add(BitCodeAbbrevOp(bitc::MODULE_CODE_SOURCE_FILENAME));
11056bc11b14SDimitry Andric     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
11066bc11b14SDimitry Andric     Abbv->Add(AbbrevOpToUse);
11076bc11b14SDimitry Andric     unsigned FilenameAbbrev = Stream.EmitAbbrev(std::move(Abbv));
11086bc11b14SDimitry Andric 
11096bc11b14SDimitry Andric     for (const auto P : M.getSourceFileName())
11106bc11b14SDimitry Andric       Vals.push_back((unsigned char)P);
11116bc11b14SDimitry Andric 
11126bc11b14SDimitry Andric     // Emit the finished record.
11136bc11b14SDimitry Andric     Stream.EmitRecord(bitc::MODULE_CODE_SOURCE_FILENAME, Vals, FilenameAbbrev);
11146bc11b14SDimitry Andric     Vals.clear();
11156bc11b14SDimitry Andric   }
11166bc11b14SDimitry Andric 
11176bc11b14SDimitry Andric   // Emit the global variable information.
11183ca95b02SDimitry Andric   for (const GlobalVariable &GV : M.globals()) {
1119f22ef01cSRoman Divacky     unsigned AbbrevToUse = 0;
1120f22ef01cSRoman Divacky 
11216bc11b14SDimitry Andric     // GLOBALVAR: [strtab offset, strtab size, type, isconst, initid,
11222754fe60SDimitry Andric     //             linkage, alignment, section, visibility, threadlocal,
1123ff0cc061SDimitry Andric     //             unnamed_addr, externally_initialized, dllstorageclass,
11245517e702SDimitry Andric     //             comdat, attributes]
11256bc11b14SDimitry Andric     Vals.push_back(StrtabBuilder.add(GV.getName()));
11266bc11b14SDimitry Andric     Vals.push_back(GV.getName().size());
1127ff0cc061SDimitry Andric     Vals.push_back(VE.getTypeID(GV.getValueType()));
1128ff0cc061SDimitry Andric     Vals.push_back(GV.getType()->getAddressSpace() << 2 | 2 | GV.isConstant());
112991bc56edSDimitry Andric     Vals.push_back(GV.isDeclaration() ? 0 :
113091bc56edSDimitry Andric                    (VE.getValueID(GV.getInitializer()) + 1));
1131f22ef01cSRoman Divacky     Vals.push_back(getEncodedLinkage(GV));
113291bc56edSDimitry Andric     Vals.push_back(Log2_32(GV.getAlignment())+1);
113391bc56edSDimitry Andric     Vals.push_back(GV.hasSection() ? SectionMap[GV.getSection()] : 0);
113491bc56edSDimitry Andric     if (GV.isThreadLocal() ||
113591bc56edSDimitry Andric         GV.getVisibility() != GlobalValue::DefaultVisibility ||
11363ca95b02SDimitry Andric         GV.getUnnamedAddr() != GlobalValue::UnnamedAddr::None ||
11373ca95b02SDimitry Andric         GV.isExternallyInitialized() ||
113891bc56edSDimitry Andric         GV.getDLLStorageClass() != GlobalValue::DefaultStorageClass ||
11395517e702SDimitry Andric         GV.hasComdat() ||
11405517e702SDimitry Andric         GV.hasAttributes()) {
1141f22ef01cSRoman Divacky       Vals.push_back(getEncodedVisibility(GV));
11427ae0e2c9SDimitry Andric       Vals.push_back(getEncodedThreadLocalMode(GV));
11433ca95b02SDimitry Andric       Vals.push_back(getEncodedUnnamedAddr(GV));
114491bc56edSDimitry Andric       Vals.push_back(GV.isExternallyInitialized());
114591bc56edSDimitry Andric       Vals.push_back(getEncodedDLLStorageClass(GV));
114691bc56edSDimitry Andric       Vals.push_back(GV.hasComdat() ? VE.getComdatID(GV.getComdat()) : 0);
11475517e702SDimitry Andric 
11485517e702SDimitry Andric       auto AL = GV.getAttributesAsList(AttributeList::FunctionIndex);
11495517e702SDimitry Andric       Vals.push_back(VE.getAttributeListID(AL));
1150f22ef01cSRoman Divacky     } else {
1151f22ef01cSRoman Divacky       AbbrevToUse = SimpleGVarAbbrev;
1152f22ef01cSRoman Divacky     }
1153f22ef01cSRoman Divacky 
1154f22ef01cSRoman Divacky     Stream.EmitRecord(bitc::MODULE_CODE_GLOBALVAR, Vals, AbbrevToUse);
1155f22ef01cSRoman Divacky     Vals.clear();
1156f22ef01cSRoman Divacky   }
1157f22ef01cSRoman Divacky 
1158f22ef01cSRoman Divacky   // Emit the function proto information.
11593ca95b02SDimitry Andric   for (const Function &F : M) {
11606bc11b14SDimitry Andric     // FUNCTION:  [strtab offset, strtab size, type, callingconv, isproto,
11616bc11b14SDimitry Andric     //             linkage, paramattrs, alignment, section, visibility, gc,
11626bc11b14SDimitry Andric     //             unnamed_addr, prologuedata, dllstorageclass, comdat,
11636bc11b14SDimitry Andric     //             prefixdata, personalityfn]
11646bc11b14SDimitry Andric     Vals.push_back(StrtabBuilder.add(F.getName()));
11656bc11b14SDimitry Andric     Vals.push_back(F.getName().size());
1166ff0cc061SDimitry Andric     Vals.push_back(VE.getTypeID(F.getFunctionType()));
116791bc56edSDimitry Andric     Vals.push_back(F.getCallingConv());
116891bc56edSDimitry Andric     Vals.push_back(F.isDeclaration());
1169f22ef01cSRoman Divacky     Vals.push_back(getEncodedLinkage(F));
117051690af2SDimitry Andric     Vals.push_back(VE.getAttributeListID(F.getAttributes()));
117191bc56edSDimitry Andric     Vals.push_back(Log2_32(F.getAlignment())+1);
117291bc56edSDimitry Andric     Vals.push_back(F.hasSection() ? SectionMap[F.getSection()] : 0);
1173f22ef01cSRoman Divacky     Vals.push_back(getEncodedVisibility(F));
117491bc56edSDimitry Andric     Vals.push_back(F.hasGC() ? GCMap[F.getGC()] : 0);
11753ca95b02SDimitry Andric     Vals.push_back(getEncodedUnnamedAddr(F));
117639d628a0SDimitry Andric     Vals.push_back(F.hasPrologueData() ? (VE.getValueID(F.getPrologueData()) + 1)
1177f785676fSDimitry Andric                                        : 0);
117891bc56edSDimitry Andric     Vals.push_back(getEncodedDLLStorageClass(F));
117991bc56edSDimitry Andric     Vals.push_back(F.hasComdat() ? VE.getComdatID(F.getComdat()) : 0);
118039d628a0SDimitry Andric     Vals.push_back(F.hasPrefixData() ? (VE.getValueID(F.getPrefixData()) + 1)
118139d628a0SDimitry Andric                                      : 0);
11828f0fd8f6SDimitry Andric     Vals.push_back(
11838f0fd8f6SDimitry Andric         F.hasPersonalityFn() ? (VE.getValueID(F.getPersonalityFn()) + 1) : 0);
1184f22ef01cSRoman Divacky 
1185f22ef01cSRoman Divacky     unsigned AbbrevToUse = 0;
1186f22ef01cSRoman Divacky     Stream.EmitRecord(bitc::MODULE_CODE_FUNCTION, Vals, AbbrevToUse);
1187f22ef01cSRoman Divacky     Vals.clear();
1188f22ef01cSRoman Divacky   }
1189f22ef01cSRoman Divacky 
1190f22ef01cSRoman Divacky   // Emit the alias information.
11913ca95b02SDimitry Andric   for (const GlobalAlias &A : M.aliases()) {
11926bc11b14SDimitry Andric     // ALIAS: [strtab offset, strtab size, alias type, aliasee val#, linkage,
11936bc11b14SDimitry Andric     //         visibility, dllstorageclass, threadlocal, unnamed_addr]
11946bc11b14SDimitry Andric     Vals.push_back(StrtabBuilder.add(A.getName()));
11956bc11b14SDimitry Andric     Vals.push_back(A.getName().size());
11967d523365SDimitry Andric     Vals.push_back(VE.getTypeID(A.getValueType()));
11977d523365SDimitry Andric     Vals.push_back(A.getType()->getAddressSpace());
119891bc56edSDimitry Andric     Vals.push_back(VE.getValueID(A.getAliasee()));
119991bc56edSDimitry Andric     Vals.push_back(getEncodedLinkage(A));
120091bc56edSDimitry Andric     Vals.push_back(getEncodedVisibility(A));
120191bc56edSDimitry Andric     Vals.push_back(getEncodedDLLStorageClass(A));
120291bc56edSDimitry Andric     Vals.push_back(getEncodedThreadLocalMode(A));
12033ca95b02SDimitry Andric     Vals.push_back(getEncodedUnnamedAddr(A));
1204f22ef01cSRoman Divacky     unsigned AbbrevToUse = 0;
1205f22ef01cSRoman Divacky     Stream.EmitRecord(bitc::MODULE_CODE_ALIAS, Vals, AbbrevToUse);
1206f22ef01cSRoman Divacky     Vals.clear();
1207f22ef01cSRoman Divacky   }
12087d523365SDimitry Andric 
12093ca95b02SDimitry Andric   // Emit the ifunc information.
12103ca95b02SDimitry Andric   for (const GlobalIFunc &I : M.ifuncs()) {
12116bc11b14SDimitry Andric     // IFUNC: [strtab offset, strtab size, ifunc type, address space, resolver
12126bc11b14SDimitry Andric     //         val#, linkage, visibility]
12136bc11b14SDimitry Andric     Vals.push_back(StrtabBuilder.add(I.getName()));
12146bc11b14SDimitry Andric     Vals.push_back(I.getName().size());
12153ca95b02SDimitry Andric     Vals.push_back(VE.getTypeID(I.getValueType()));
12163ca95b02SDimitry Andric     Vals.push_back(I.getType()->getAddressSpace());
12173ca95b02SDimitry Andric     Vals.push_back(VE.getValueID(I.getResolver()));
12183ca95b02SDimitry Andric     Vals.push_back(getEncodedLinkage(I));
12193ca95b02SDimitry Andric     Vals.push_back(getEncodedVisibility(I));
12203ca95b02SDimitry Andric     Stream.EmitRecord(bitc::MODULE_CODE_IFUNC, Vals);
12217d523365SDimitry Andric     Vals.clear();
1222f22ef01cSRoman Divacky   }
1223f22ef01cSRoman Divacky 
12243ca95b02SDimitry Andric   writeValueSymbolTableForwardDecl();
12253ca95b02SDimitry Andric }
12263ca95b02SDimitry Andric 
12273ca95b02SDimitry Andric static uint64_t getOptimizationFlags(const Value *V) {
1228f22ef01cSRoman Divacky   uint64_t Flags = 0;
1229f22ef01cSRoman Divacky 
123039d628a0SDimitry Andric   if (const auto *OBO = dyn_cast<OverflowingBinaryOperator>(V)) {
1231f22ef01cSRoman Divacky     if (OBO->hasNoSignedWrap())
1232f22ef01cSRoman Divacky       Flags |= 1 << bitc::OBO_NO_SIGNED_WRAP;
1233f22ef01cSRoman Divacky     if (OBO->hasNoUnsignedWrap())
1234f22ef01cSRoman Divacky       Flags |= 1 << bitc::OBO_NO_UNSIGNED_WRAP;
123539d628a0SDimitry Andric   } else if (const auto *PEO = dyn_cast<PossiblyExactOperator>(V)) {
12362754fe60SDimitry Andric     if (PEO->isExact())
12372754fe60SDimitry Andric       Flags |= 1 << bitc::PEO_EXACT;
123839d628a0SDimitry Andric   } else if (const auto *FPMO = dyn_cast<FPMathOperator>(V)) {
1239139f7f9bSDimitry Andric     if (FPMO->hasUnsafeAlgebra())
1240139f7f9bSDimitry Andric       Flags |= FastMathFlags::UnsafeAlgebra;
1241139f7f9bSDimitry Andric     if (FPMO->hasNoNaNs())
1242139f7f9bSDimitry Andric       Flags |= FastMathFlags::NoNaNs;
1243139f7f9bSDimitry Andric     if (FPMO->hasNoInfs())
1244139f7f9bSDimitry Andric       Flags |= FastMathFlags::NoInfs;
1245139f7f9bSDimitry Andric     if (FPMO->hasNoSignedZeros())
1246139f7f9bSDimitry Andric       Flags |= FastMathFlags::NoSignedZeros;
1247139f7f9bSDimitry Andric     if (FPMO->hasAllowReciprocal())
1248139f7f9bSDimitry Andric       Flags |= FastMathFlags::AllowReciprocal;
12497a7e6055SDimitry Andric     if (FPMO->hasAllowContract())
12507a7e6055SDimitry Andric       Flags |= FastMathFlags::AllowContract;
1251f22ef01cSRoman Divacky   }
1252f22ef01cSRoman Divacky 
1253f22ef01cSRoman Divacky   return Flags;
1254f22ef01cSRoman Divacky }
1255f22ef01cSRoman Divacky 
12563ca95b02SDimitry Andric void ModuleBitcodeWriter::writeValueAsMetadata(
12573ca95b02SDimitry Andric     const ValueAsMetadata *MD, SmallVectorImpl<uint64_t> &Record) {
125839d628a0SDimitry Andric   // Mimic an MDNode with a value as one operand.
125939d628a0SDimitry Andric   Value *V = MD->getValue();
126039d628a0SDimitry Andric   Record.push_back(VE.getTypeID(V->getType()));
126139d628a0SDimitry Andric   Record.push_back(VE.getValueID(V));
126239d628a0SDimitry Andric   Stream.EmitRecord(bitc::METADATA_VALUE, Record, 0);
126339d628a0SDimitry Andric   Record.clear();
126439d628a0SDimitry Andric }
126539d628a0SDimitry Andric 
12663ca95b02SDimitry Andric void ModuleBitcodeWriter::writeMDTuple(const MDTuple *N,
12673ca95b02SDimitry Andric                                        SmallVectorImpl<uint64_t> &Record,
12683ca95b02SDimitry Andric                                        unsigned Abbrev) {
1269f22ef01cSRoman Divacky   for (unsigned i = 0, e = N->getNumOperands(); i != e; ++i) {
127039d628a0SDimitry Andric     Metadata *MD = N->getOperand(i);
1271ff0cc061SDimitry Andric     assert(!(MD && isa<LocalAsMetadata>(MD)) &&
1272ff0cc061SDimitry Andric            "Unexpected function-local metadata");
1273ff0cc061SDimitry Andric     Record.push_back(VE.getMetadataOrNullID(MD));
1274f22ef01cSRoman Divacky   }
127539d628a0SDimitry Andric   Stream.EmitRecord(N->isDistinct() ? bitc::METADATA_DISTINCT_NODE
127639d628a0SDimitry Andric                                     : bitc::METADATA_NODE,
1277ff0cc061SDimitry Andric                     Record, Abbrev);
127839d628a0SDimitry Andric   Record.clear();
127939d628a0SDimitry Andric }
128039d628a0SDimitry Andric 
12813ca95b02SDimitry Andric unsigned ModuleBitcodeWriter::createDILocationAbbrev() {
12823ca95b02SDimitry Andric   // Assume the column is usually under 128, and always output the inlined-at
12833ca95b02SDimitry Andric   // location (it's never more expensive than building an array size 1).
128495ec533aSDimitry Andric   auto Abbv = std::make_shared<BitCodeAbbrev>();
12853ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::METADATA_LOCATION));
12863ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 1));
12873ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));
12883ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
12893ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));
12903ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));
129195ec533aSDimitry Andric   return Stream.EmitAbbrev(std::move(Abbv));
12923ca95b02SDimitry Andric }
12933ca95b02SDimitry Andric 
12943ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDILocation(const DILocation *N,
129539d628a0SDimitry Andric                                           SmallVectorImpl<uint64_t> &Record,
12963ca95b02SDimitry Andric                                           unsigned &Abbrev) {
12973ca95b02SDimitry Andric   if (!Abbrev)
12983ca95b02SDimitry Andric     Abbrev = createDILocationAbbrev();
12993ca95b02SDimitry Andric 
130039d628a0SDimitry Andric   Record.push_back(N->isDistinct());
130139d628a0SDimitry Andric   Record.push_back(N->getLine());
130239d628a0SDimitry Andric   Record.push_back(N->getColumn());
130339d628a0SDimitry Andric   Record.push_back(VE.getMetadataID(N->getScope()));
1304ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getInlinedAt()));
130539d628a0SDimitry Andric 
130639d628a0SDimitry Andric   Stream.EmitRecord(bitc::METADATA_LOCATION, Record, Abbrev);
1307f22ef01cSRoman Divacky   Record.clear();
1308f22ef01cSRoman Divacky }
1309f22ef01cSRoman Divacky 
13103ca95b02SDimitry Andric unsigned ModuleBitcodeWriter::createGenericDINodeAbbrev() {
13113ca95b02SDimitry Andric   // Assume the column is usually under 128, and always output the inlined-at
13123ca95b02SDimitry Andric   // location (it's never more expensive than building an array size 1).
131395ec533aSDimitry Andric   auto Abbv = std::make_shared<BitCodeAbbrev>();
13143ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::METADATA_GENERIC_DEBUG));
13153ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 1));
13163ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));
13173ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 1));
13183ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));
13193ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
13203ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));
132195ec533aSDimitry Andric   return Stream.EmitAbbrev(std::move(Abbv));
13223ca95b02SDimitry Andric }
13233ca95b02SDimitry Andric 
13243ca95b02SDimitry Andric void ModuleBitcodeWriter::writeGenericDINode(const GenericDINode *N,
1325ff0cc061SDimitry Andric                                              SmallVectorImpl<uint64_t> &Record,
13263ca95b02SDimitry Andric                                              unsigned &Abbrev) {
13273ca95b02SDimitry Andric   if (!Abbrev)
13283ca95b02SDimitry Andric     Abbrev = createGenericDINodeAbbrev();
13293ca95b02SDimitry Andric 
1330ff0cc061SDimitry Andric   Record.push_back(N->isDistinct());
1331ff0cc061SDimitry Andric   Record.push_back(N->getTag());
1332ff0cc061SDimitry Andric   Record.push_back(0); // Per-tag version field; unused for now.
1333ff0cc061SDimitry Andric 
1334ff0cc061SDimitry Andric   for (auto &I : N->operands())
1335ff0cc061SDimitry Andric     Record.push_back(VE.getMetadataOrNullID(I));
1336ff0cc061SDimitry Andric 
1337ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_GENERIC_DEBUG, Record, Abbrev);
1338ff0cc061SDimitry Andric   Record.clear();
1339ff0cc061SDimitry Andric }
1340ff0cc061SDimitry Andric 
1341ff0cc061SDimitry Andric static uint64_t rotateSign(int64_t I) {
1342ff0cc061SDimitry Andric   uint64_t U = I;
1343ff0cc061SDimitry Andric   return I < 0 ? ~(U << 1) : U << 1;
1344ff0cc061SDimitry Andric }
1345ff0cc061SDimitry Andric 
13463ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDISubrange(const DISubrange *N,
1347ff0cc061SDimitry Andric                                           SmallVectorImpl<uint64_t> &Record,
1348ff0cc061SDimitry Andric                                           unsigned Abbrev) {
1349ff0cc061SDimitry Andric   Record.push_back(N->isDistinct());
1350ff0cc061SDimitry Andric   Record.push_back(N->getCount());
1351ff0cc061SDimitry Andric   Record.push_back(rotateSign(N->getLowerBound()));
1352ff0cc061SDimitry Andric 
1353ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_SUBRANGE, Record, Abbrev);
1354ff0cc061SDimitry Andric   Record.clear();
1355ff0cc061SDimitry Andric }
1356ff0cc061SDimitry Andric 
13573ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDIEnumerator(const DIEnumerator *N,
1358ff0cc061SDimitry Andric                                             SmallVectorImpl<uint64_t> &Record,
1359ff0cc061SDimitry Andric                                             unsigned Abbrev) {
1360ff0cc061SDimitry Andric   Record.push_back(N->isDistinct());
1361ff0cc061SDimitry Andric   Record.push_back(rotateSign(N->getValue()));
1362ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawName()));
1363ff0cc061SDimitry Andric 
1364ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_ENUMERATOR, Record, Abbrev);
1365ff0cc061SDimitry Andric   Record.clear();
1366ff0cc061SDimitry Andric }
1367ff0cc061SDimitry Andric 
13683ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDIBasicType(const DIBasicType *N,
1369ff0cc061SDimitry Andric                                            SmallVectorImpl<uint64_t> &Record,
1370ff0cc061SDimitry Andric                                            unsigned Abbrev) {
1371ff0cc061SDimitry Andric   Record.push_back(N->isDistinct());
1372ff0cc061SDimitry Andric   Record.push_back(N->getTag());
1373ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawName()));
1374ff0cc061SDimitry Andric   Record.push_back(N->getSizeInBits());
1375ff0cc061SDimitry Andric   Record.push_back(N->getAlignInBits());
1376ff0cc061SDimitry Andric   Record.push_back(N->getEncoding());
1377ff0cc061SDimitry Andric 
1378ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_BASIC_TYPE, Record, Abbrev);
1379ff0cc061SDimitry Andric   Record.clear();
1380ff0cc061SDimitry Andric }
1381ff0cc061SDimitry Andric 
13823ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDIDerivedType(const DIDerivedType *N,
1383ff0cc061SDimitry Andric                                              SmallVectorImpl<uint64_t> &Record,
1384ff0cc061SDimitry Andric                                              unsigned Abbrev) {
1385ff0cc061SDimitry Andric   Record.push_back(N->isDistinct());
1386ff0cc061SDimitry Andric   Record.push_back(N->getTag());
1387ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawName()));
1388ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getFile()));
1389ff0cc061SDimitry Andric   Record.push_back(N->getLine());
1390ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getScope()));
1391ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getBaseType()));
1392ff0cc061SDimitry Andric   Record.push_back(N->getSizeInBits());
1393ff0cc061SDimitry Andric   Record.push_back(N->getAlignInBits());
1394ff0cc061SDimitry Andric   Record.push_back(N->getOffsetInBits());
1395ff0cc061SDimitry Andric   Record.push_back(N->getFlags());
1396ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getExtraData()));
1397ff0cc061SDimitry Andric 
13987a7e6055SDimitry Andric   // DWARF address space is encoded as N->getDWARFAddressSpace() + 1. 0 means
13997a7e6055SDimitry Andric   // that there is no DWARF address space associated with DIDerivedType.
14007a7e6055SDimitry Andric   if (const auto &DWARFAddressSpace = N->getDWARFAddressSpace())
14017a7e6055SDimitry Andric     Record.push_back(*DWARFAddressSpace + 1);
14027a7e6055SDimitry Andric   else
14037a7e6055SDimitry Andric     Record.push_back(0);
14047a7e6055SDimitry Andric 
1405ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_DERIVED_TYPE, Record, Abbrev);
1406ff0cc061SDimitry Andric   Record.clear();
1407ff0cc061SDimitry Andric }
1408ff0cc061SDimitry Andric 
14093ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDICompositeType(
14103ca95b02SDimitry Andric     const DICompositeType *N, SmallVectorImpl<uint64_t> &Record,
1411ff0cc061SDimitry Andric     unsigned Abbrev) {
14123ca95b02SDimitry Andric   const unsigned IsNotUsedInOldTypeRef = 0x2;
14133ca95b02SDimitry Andric   Record.push_back(IsNotUsedInOldTypeRef | (unsigned)N->isDistinct());
1414ff0cc061SDimitry Andric   Record.push_back(N->getTag());
1415ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawName()));
1416ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getFile()));
1417ff0cc061SDimitry Andric   Record.push_back(N->getLine());
1418ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getScope()));
1419ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getBaseType()));
1420ff0cc061SDimitry Andric   Record.push_back(N->getSizeInBits());
1421ff0cc061SDimitry Andric   Record.push_back(N->getAlignInBits());
1422ff0cc061SDimitry Andric   Record.push_back(N->getOffsetInBits());
1423ff0cc061SDimitry Andric   Record.push_back(N->getFlags());
1424ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getElements().get()));
1425ff0cc061SDimitry Andric   Record.push_back(N->getRuntimeLang());
1426ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getVTableHolder()));
1427ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getTemplateParams().get()));
1428ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawIdentifier()));
1429ff0cc061SDimitry Andric 
1430ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_COMPOSITE_TYPE, Record, Abbrev);
1431ff0cc061SDimitry Andric   Record.clear();
1432ff0cc061SDimitry Andric }
1433ff0cc061SDimitry Andric 
14343ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDISubroutineType(
14353ca95b02SDimitry Andric     const DISubroutineType *N, SmallVectorImpl<uint64_t> &Record,
1436ff0cc061SDimitry Andric     unsigned Abbrev) {
14373ca95b02SDimitry Andric   const unsigned HasNoOldTypeRefs = 0x2;
14383ca95b02SDimitry Andric   Record.push_back(HasNoOldTypeRefs | (unsigned)N->isDistinct());
1439ff0cc061SDimitry Andric   Record.push_back(N->getFlags());
1440ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getTypeArray().get()));
14413ca95b02SDimitry Andric   Record.push_back(N->getCC());
1442ff0cc061SDimitry Andric 
1443ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_SUBROUTINE_TYPE, Record, Abbrev);
1444ff0cc061SDimitry Andric   Record.clear();
1445ff0cc061SDimitry Andric }
1446ff0cc061SDimitry Andric 
14473ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDIFile(const DIFile *N,
14483ca95b02SDimitry Andric                                       SmallVectorImpl<uint64_t> &Record,
14493ca95b02SDimitry Andric                                       unsigned Abbrev) {
1450ff0cc061SDimitry Andric   Record.push_back(N->isDistinct());
1451ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawFilename()));
1452ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawDirectory()));
1453d88c1a5aSDimitry Andric   Record.push_back(N->getChecksumKind());
1454d88c1a5aSDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawChecksum()));
1455ff0cc061SDimitry Andric 
1456ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_FILE, Record, Abbrev);
1457ff0cc061SDimitry Andric   Record.clear();
1458ff0cc061SDimitry Andric }
1459ff0cc061SDimitry Andric 
14603ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDICompileUnit(const DICompileUnit *N,
1461ff0cc061SDimitry Andric                                              SmallVectorImpl<uint64_t> &Record,
1462ff0cc061SDimitry Andric                                              unsigned Abbrev) {
14637d523365SDimitry Andric   assert(N->isDistinct() && "Expected distinct compile units");
14647d523365SDimitry Andric   Record.push_back(/* IsDistinct */ true);
1465ff0cc061SDimitry Andric   Record.push_back(N->getSourceLanguage());
1466ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getFile()));
1467ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawProducer()));
1468ff0cc061SDimitry Andric   Record.push_back(N->isOptimized());
1469ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawFlags()));
1470ff0cc061SDimitry Andric   Record.push_back(N->getRuntimeVersion());
1471ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawSplitDebugFilename()));
1472ff0cc061SDimitry Andric   Record.push_back(N->getEmissionKind());
1473ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getEnumTypes().get()));
1474ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRetainedTypes().get()));
14753ca95b02SDimitry Andric   Record.push_back(/* subprograms */ 0);
1476ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getGlobalVariables().get()));
1477ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getImportedEntities().get()));
1478ff0cc061SDimitry Andric   Record.push_back(N->getDWOId());
14797d523365SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getMacros().get()));
1480d88c1a5aSDimitry Andric   Record.push_back(N->getSplitDebugInlining());
14817a7e6055SDimitry Andric   Record.push_back(N->getDebugInfoForProfiling());
1482ff0cc061SDimitry Andric 
1483ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_COMPILE_UNIT, Record, Abbrev);
1484ff0cc061SDimitry Andric   Record.clear();
1485ff0cc061SDimitry Andric }
1486ff0cc061SDimitry Andric 
14873ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDISubprogram(const DISubprogram *N,
1488ff0cc061SDimitry Andric                                             SmallVectorImpl<uint64_t> &Record,
1489ff0cc061SDimitry Andric                                             unsigned Abbrev) {
14903ca95b02SDimitry Andric   uint64_t HasUnitFlag = 1 << 1;
14913ca95b02SDimitry Andric   Record.push_back(N->isDistinct() | HasUnitFlag);
1492ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getScope()));
1493ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawName()));
1494ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawLinkageName()));
1495ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getFile()));
1496ff0cc061SDimitry Andric   Record.push_back(N->getLine());
1497ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getType()));
1498ff0cc061SDimitry Andric   Record.push_back(N->isLocalToUnit());
1499ff0cc061SDimitry Andric   Record.push_back(N->isDefinition());
1500ff0cc061SDimitry Andric   Record.push_back(N->getScopeLine());
1501ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getContainingType()));
1502ff0cc061SDimitry Andric   Record.push_back(N->getVirtuality());
1503ff0cc061SDimitry Andric   Record.push_back(N->getVirtualIndex());
1504ff0cc061SDimitry Andric   Record.push_back(N->getFlags());
1505ff0cc061SDimitry Andric   Record.push_back(N->isOptimized());
15063ca95b02SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawUnit()));
1507ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getTemplateParams().get()));
1508ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getDeclaration()));
1509ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getVariables().get()));
15103ca95b02SDimitry Andric   Record.push_back(N->getThisAdjustment());
1511f37b6182SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getThrownTypes().get()));
1512ff0cc061SDimitry Andric 
1513ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_SUBPROGRAM, Record, Abbrev);
1514ff0cc061SDimitry Andric   Record.clear();
1515ff0cc061SDimitry Andric }
1516ff0cc061SDimitry Andric 
15173ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDILexicalBlock(const DILexicalBlock *N,
1518ff0cc061SDimitry Andric                                               SmallVectorImpl<uint64_t> &Record,
1519ff0cc061SDimitry Andric                                               unsigned Abbrev) {
1520ff0cc061SDimitry Andric   Record.push_back(N->isDistinct());
1521ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getScope()));
1522ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getFile()));
1523ff0cc061SDimitry Andric   Record.push_back(N->getLine());
1524ff0cc061SDimitry Andric   Record.push_back(N->getColumn());
1525ff0cc061SDimitry Andric 
1526ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_LEXICAL_BLOCK, Record, Abbrev);
1527ff0cc061SDimitry Andric   Record.clear();
1528ff0cc061SDimitry Andric }
1529ff0cc061SDimitry Andric 
15303ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDILexicalBlockFile(
15313ca95b02SDimitry Andric     const DILexicalBlockFile *N, SmallVectorImpl<uint64_t> &Record,
1532ff0cc061SDimitry Andric     unsigned Abbrev) {
1533ff0cc061SDimitry Andric   Record.push_back(N->isDistinct());
1534ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getScope()));
1535ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getFile()));
1536ff0cc061SDimitry Andric   Record.push_back(N->getDiscriminator());
1537ff0cc061SDimitry Andric 
1538ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_LEXICAL_BLOCK_FILE, Record, Abbrev);
1539ff0cc061SDimitry Andric   Record.clear();
1540ff0cc061SDimitry Andric }
1541ff0cc061SDimitry Andric 
15423ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDINamespace(const DINamespace *N,
1543ff0cc061SDimitry Andric                                            SmallVectorImpl<uint64_t> &Record,
1544ff0cc061SDimitry Andric                                            unsigned Abbrev) {
1545d88c1a5aSDimitry Andric   Record.push_back(N->isDistinct() | N->getExportSymbols() << 1);
1546ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getScope()));
1547ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawName()));
1548ff0cc061SDimitry Andric 
1549ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_NAMESPACE, Record, Abbrev);
1550ff0cc061SDimitry Andric   Record.clear();
1551ff0cc061SDimitry Andric }
1552ff0cc061SDimitry Andric 
15533ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDIMacro(const DIMacro *N,
15543ca95b02SDimitry Andric                                        SmallVectorImpl<uint64_t> &Record,
15553ca95b02SDimitry Andric                                        unsigned Abbrev) {
15567d523365SDimitry Andric   Record.push_back(N->isDistinct());
15577d523365SDimitry Andric   Record.push_back(N->getMacinfoType());
15587d523365SDimitry Andric   Record.push_back(N->getLine());
15597d523365SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawName()));
15607d523365SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawValue()));
15617d523365SDimitry Andric 
15627d523365SDimitry Andric   Stream.EmitRecord(bitc::METADATA_MACRO, Record, Abbrev);
15637d523365SDimitry Andric   Record.clear();
15647d523365SDimitry Andric }
15657d523365SDimitry Andric 
15663ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDIMacroFile(const DIMacroFile *N,
15677d523365SDimitry Andric                                            SmallVectorImpl<uint64_t> &Record,
15687d523365SDimitry Andric                                            unsigned Abbrev) {
15697d523365SDimitry Andric   Record.push_back(N->isDistinct());
15707d523365SDimitry Andric   Record.push_back(N->getMacinfoType());
15717d523365SDimitry Andric   Record.push_back(N->getLine());
15727d523365SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getFile()));
15737d523365SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getElements().get()));
15747d523365SDimitry Andric 
15757d523365SDimitry Andric   Stream.EmitRecord(bitc::METADATA_MACRO_FILE, Record, Abbrev);
15767d523365SDimitry Andric   Record.clear();
15777d523365SDimitry Andric }
15787d523365SDimitry Andric 
15793ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDIModule(const DIModule *N,
15803ca95b02SDimitry Andric                                         SmallVectorImpl<uint64_t> &Record,
15813ca95b02SDimitry Andric                                         unsigned Abbrev) {
15823dac3a9bSDimitry Andric   Record.push_back(N->isDistinct());
15833dac3a9bSDimitry Andric   for (auto &I : N->operands())
15843dac3a9bSDimitry Andric     Record.push_back(VE.getMetadataOrNullID(I));
15853dac3a9bSDimitry Andric 
15863dac3a9bSDimitry Andric   Stream.EmitRecord(bitc::METADATA_MODULE, Record, Abbrev);
15873dac3a9bSDimitry Andric   Record.clear();
15883dac3a9bSDimitry Andric }
15893dac3a9bSDimitry Andric 
15903ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDITemplateTypeParameter(
15913ca95b02SDimitry Andric     const DITemplateTypeParameter *N, SmallVectorImpl<uint64_t> &Record,
1592ff0cc061SDimitry Andric     unsigned Abbrev) {
1593ff0cc061SDimitry Andric   Record.push_back(N->isDistinct());
1594ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawName()));
1595ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getType()));
1596ff0cc061SDimitry Andric 
1597ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_TEMPLATE_TYPE, Record, Abbrev);
1598ff0cc061SDimitry Andric   Record.clear();
1599ff0cc061SDimitry Andric }
1600ff0cc061SDimitry Andric 
16013ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDITemplateValueParameter(
16023ca95b02SDimitry Andric     const DITemplateValueParameter *N, SmallVectorImpl<uint64_t> &Record,
1603ff0cc061SDimitry Andric     unsigned Abbrev) {
1604ff0cc061SDimitry Andric   Record.push_back(N->isDistinct());
1605ff0cc061SDimitry Andric   Record.push_back(N->getTag());
1606ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawName()));
1607ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getType()));
1608ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getValue()));
1609ff0cc061SDimitry Andric 
1610ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_TEMPLATE_VALUE, Record, Abbrev);
1611ff0cc061SDimitry Andric   Record.clear();
1612ff0cc061SDimitry Andric }
1613ff0cc061SDimitry Andric 
16143ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDIGlobalVariable(
16153ca95b02SDimitry Andric     const DIGlobalVariable *N, SmallVectorImpl<uint64_t> &Record,
1616ff0cc061SDimitry Andric     unsigned Abbrev) {
1617d88c1a5aSDimitry Andric   const uint64_t Version = 1 << 1;
1618d88c1a5aSDimitry Andric   Record.push_back((uint64_t)N->isDistinct() | Version);
1619ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getScope()));
1620ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawName()));
1621ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawLinkageName()));
1622ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getFile()));
1623ff0cc061SDimitry Andric   Record.push_back(N->getLine());
1624ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getType()));
1625ff0cc061SDimitry Andric   Record.push_back(N->isLocalToUnit());
1626ff0cc061SDimitry Andric   Record.push_back(N->isDefinition());
1627d88c1a5aSDimitry Andric   Record.push_back(/* expr */ 0);
1628ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getStaticDataMemberDeclaration()));
1629d88c1a5aSDimitry Andric   Record.push_back(N->getAlignInBits());
1630ff0cc061SDimitry Andric 
1631ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_GLOBAL_VAR, Record, Abbrev);
1632ff0cc061SDimitry Andric   Record.clear();
1633ff0cc061SDimitry Andric }
1634ff0cc061SDimitry Andric 
16353ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDILocalVariable(
16363ca95b02SDimitry Andric     const DILocalVariable *N, SmallVectorImpl<uint64_t> &Record,
1637ff0cc061SDimitry Andric     unsigned Abbrev) {
1638d88c1a5aSDimitry Andric   // In order to support all possible bitcode formats in BitcodeReader we need
1639d88c1a5aSDimitry Andric   // to distinguish the following cases:
1640d88c1a5aSDimitry Andric   // 1) Record has no artificial tag (Record[1]),
1641d88c1a5aSDimitry Andric   //   has no obsolete inlinedAt field (Record[9]).
1642d88c1a5aSDimitry Andric   //   In this case Record size will be 8, HasAlignment flag is false.
1643d88c1a5aSDimitry Andric   // 2) Record has artificial tag (Record[1]),
1644d88c1a5aSDimitry Andric   //   has no obsolete inlignedAt field (Record[9]).
1645d88c1a5aSDimitry Andric   //   In this case Record size will be 9, HasAlignment flag is false.
1646d88c1a5aSDimitry Andric   // 3) Record has both artificial tag (Record[1]) and
1647d88c1a5aSDimitry Andric   //   obsolete inlignedAt field (Record[9]).
1648d88c1a5aSDimitry Andric   //   In this case Record size will be 10, HasAlignment flag is false.
1649d88c1a5aSDimitry Andric   // 4) Record has neither artificial tag, nor inlignedAt field, but
1650d88c1a5aSDimitry Andric   //   HasAlignment flag is true and Record[8] contains alignment value.
1651d88c1a5aSDimitry Andric   const uint64_t HasAlignmentFlag = 1 << 1;
1652d88c1a5aSDimitry Andric   Record.push_back((uint64_t)N->isDistinct() | HasAlignmentFlag);
1653ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getScope()));
1654ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawName()));
1655ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getFile()));
1656ff0cc061SDimitry Andric   Record.push_back(N->getLine());
1657ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getType()));
1658ff0cc061SDimitry Andric   Record.push_back(N->getArg());
1659ff0cc061SDimitry Andric   Record.push_back(N->getFlags());
1660d88c1a5aSDimitry Andric   Record.push_back(N->getAlignInBits());
1661ff0cc061SDimitry Andric 
1662ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_LOCAL_VAR, Record, Abbrev);
1663ff0cc061SDimitry Andric   Record.clear();
1664ff0cc061SDimitry Andric }
1665ff0cc061SDimitry Andric 
16663ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDIExpression(const DIExpression *N,
1667ff0cc061SDimitry Andric                                             SmallVectorImpl<uint64_t> &Record,
1668ff0cc061SDimitry Andric                                             unsigned Abbrev) {
1669ff0cc061SDimitry Andric   Record.reserve(N->getElements().size() + 1);
167024d58133SDimitry Andric   const uint64_t Version = 3 << 1;
16716bc11b14SDimitry Andric   Record.push_back((uint64_t)N->isDistinct() | Version);
1672ff0cc061SDimitry Andric   Record.append(N->elements_begin(), N->elements_end());
1673ff0cc061SDimitry Andric 
1674ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_EXPRESSION, Record, Abbrev);
1675ff0cc061SDimitry Andric   Record.clear();
1676ff0cc061SDimitry Andric }
1677ff0cc061SDimitry Andric 
1678d88c1a5aSDimitry Andric void ModuleBitcodeWriter::writeDIGlobalVariableExpression(
1679d88c1a5aSDimitry Andric     const DIGlobalVariableExpression *N, SmallVectorImpl<uint64_t> &Record,
1680d88c1a5aSDimitry Andric     unsigned Abbrev) {
1681d88c1a5aSDimitry Andric   Record.push_back(N->isDistinct());
1682d88c1a5aSDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getVariable()));
1683d88c1a5aSDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getExpression()));
1684d88c1a5aSDimitry Andric 
1685d88c1a5aSDimitry Andric   Stream.EmitRecord(bitc::METADATA_GLOBAL_VAR_EXPR, Record, Abbrev);
1686d88c1a5aSDimitry Andric   Record.clear();
1687d88c1a5aSDimitry Andric }
1688d88c1a5aSDimitry Andric 
16893ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDIObjCProperty(const DIObjCProperty *N,
1690ff0cc061SDimitry Andric                                               SmallVectorImpl<uint64_t> &Record,
1691ff0cc061SDimitry Andric                                               unsigned Abbrev) {
1692ff0cc061SDimitry Andric   Record.push_back(N->isDistinct());
1693ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawName()));
1694ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getFile()));
1695ff0cc061SDimitry Andric   Record.push_back(N->getLine());
1696ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawSetterName()));
1697ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawGetterName()));
1698ff0cc061SDimitry Andric   Record.push_back(N->getAttributes());
1699ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getType()));
1700ff0cc061SDimitry Andric 
1701ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_OBJC_PROPERTY, Record, Abbrev);
1702ff0cc061SDimitry Andric   Record.clear();
1703ff0cc061SDimitry Andric }
1704ff0cc061SDimitry Andric 
17053ca95b02SDimitry Andric void ModuleBitcodeWriter::writeDIImportedEntity(
17063ca95b02SDimitry Andric     const DIImportedEntity *N, SmallVectorImpl<uint64_t> &Record,
1707ff0cc061SDimitry Andric     unsigned Abbrev) {
1708ff0cc061SDimitry Andric   Record.push_back(N->isDistinct());
1709ff0cc061SDimitry Andric   Record.push_back(N->getTag());
1710ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getScope()));
1711ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getEntity()));
1712ff0cc061SDimitry Andric   Record.push_back(N->getLine());
1713ff0cc061SDimitry Andric   Record.push_back(VE.getMetadataOrNullID(N->getRawName()));
1714ff0cc061SDimitry Andric 
1715ff0cc061SDimitry Andric   Stream.EmitRecord(bitc::METADATA_IMPORTED_ENTITY, Record, Abbrev);
1716ff0cc061SDimitry Andric   Record.clear();
1717ff0cc061SDimitry Andric }
1718ff0cc061SDimitry Andric 
17193ca95b02SDimitry Andric unsigned ModuleBitcodeWriter::createNamedMetadataAbbrev() {
172095ec533aSDimitry Andric   auto Abbv = std::make_shared<BitCodeAbbrev>();
17213ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::METADATA_NAME));
1722f22ef01cSRoman Divacky   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
1723f22ef01cSRoman Divacky   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 8));
172495ec533aSDimitry Andric   return Stream.EmitAbbrev(std::move(Abbv));
1725f22ef01cSRoman Divacky }
1726f22ef01cSRoman Divacky 
17273ca95b02SDimitry Andric void ModuleBitcodeWriter::writeNamedMetadata(
17283ca95b02SDimitry Andric     SmallVectorImpl<uint64_t> &Record) {
17293ca95b02SDimitry Andric   if (M.named_metadata_empty())
17303ca95b02SDimitry Andric     return;
17313ca95b02SDimitry Andric 
17323ca95b02SDimitry Andric   unsigned Abbrev = createNamedMetadataAbbrev();
17333ca95b02SDimitry Andric   for (const NamedMDNode &NMD : M.named_metadata()) {
17343ca95b02SDimitry Andric     // Write name.
17353ca95b02SDimitry Andric     StringRef Str = NMD.getName();
17363ca95b02SDimitry Andric     Record.append(Str.bytes_begin(), Str.bytes_end());
17373ca95b02SDimitry Andric     Stream.EmitRecord(bitc::METADATA_NAME, Record, Abbrev);
17383ca95b02SDimitry Andric     Record.clear();
17393ca95b02SDimitry Andric 
17403ca95b02SDimitry Andric     // Write named metadata operands.
17413ca95b02SDimitry Andric     for (const MDNode *N : NMD.operands())
17423ca95b02SDimitry Andric       Record.push_back(VE.getMetadataID(N));
17433ca95b02SDimitry Andric     Stream.EmitRecord(bitc::METADATA_NAMED_NODE, Record, 0);
17443ca95b02SDimitry Andric     Record.clear();
17453ca95b02SDimitry Andric   }
17463ca95b02SDimitry Andric }
17473ca95b02SDimitry Andric 
17483ca95b02SDimitry Andric unsigned ModuleBitcodeWriter::createMetadataStringsAbbrev() {
174995ec533aSDimitry Andric   auto Abbv = std::make_shared<BitCodeAbbrev>();
17503ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::METADATA_STRINGS));
17513ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6)); // # of strings
17523ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6)); // offset to chars
17533ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob));
175495ec533aSDimitry Andric   return Stream.EmitAbbrev(std::move(Abbv));
17553ca95b02SDimitry Andric }
17563ca95b02SDimitry Andric 
17573ca95b02SDimitry Andric /// Write out a record for MDString.
17583ca95b02SDimitry Andric ///
17593ca95b02SDimitry Andric /// All the metadata strings in a metadata block are emitted in a single
17603ca95b02SDimitry Andric /// record.  The sizes and strings themselves are shoved into a blob.
17613ca95b02SDimitry Andric void ModuleBitcodeWriter::writeMetadataStrings(
17623ca95b02SDimitry Andric     ArrayRef<const Metadata *> Strings, SmallVectorImpl<uint64_t> &Record) {
17633ca95b02SDimitry Andric   if (Strings.empty())
17643ca95b02SDimitry Andric     return;
17653ca95b02SDimitry Andric 
17663ca95b02SDimitry Andric   // Start the record with the number of strings.
17673ca95b02SDimitry Andric   Record.push_back(bitc::METADATA_STRINGS);
17683ca95b02SDimitry Andric   Record.push_back(Strings.size());
17693ca95b02SDimitry Andric 
17703ca95b02SDimitry Andric   // Emit the sizes of the strings in the blob.
17713ca95b02SDimitry Andric   SmallString<256> Blob;
17723ca95b02SDimitry Andric   {
17733ca95b02SDimitry Andric     BitstreamWriter W(Blob);
17743ca95b02SDimitry Andric     for (const Metadata *MD : Strings)
17753ca95b02SDimitry Andric       W.EmitVBR(cast<MDString>(MD)->getLength(), 6);
17763ca95b02SDimitry Andric     W.FlushToWord();
17773ca95b02SDimitry Andric   }
17783ca95b02SDimitry Andric 
17793ca95b02SDimitry Andric   // Add the offset to the strings to the record.
17803ca95b02SDimitry Andric   Record.push_back(Blob.size());
17813ca95b02SDimitry Andric 
17823ca95b02SDimitry Andric   // Add the strings to the blob.
17833ca95b02SDimitry Andric   for (const Metadata *MD : Strings)
17843ca95b02SDimitry Andric     Blob.append(cast<MDString>(MD)->getString());
17853ca95b02SDimitry Andric 
17863ca95b02SDimitry Andric   // Emit the final record.
17873ca95b02SDimitry Andric   Stream.EmitRecordWithBlob(createMetadataStringsAbbrev(), Record, Blob);
17883ca95b02SDimitry Andric   Record.clear();
17893ca95b02SDimitry Andric }
17903ca95b02SDimitry Andric 
1791d88c1a5aSDimitry Andric // Generates an enum to use as an index in the Abbrev array of Metadata record.
1792d88c1a5aSDimitry Andric enum MetadataAbbrev : unsigned {
1793d88c1a5aSDimitry Andric #define HANDLE_MDNODE_LEAF(CLASS) CLASS##AbbrevID,
1794d88c1a5aSDimitry Andric #include "llvm/IR/Metadata.def"
1795d88c1a5aSDimitry Andric   LastPlusOne
1796d88c1a5aSDimitry Andric };
1797d88c1a5aSDimitry Andric 
17983ca95b02SDimitry Andric void ModuleBitcodeWriter::writeMetadataRecords(
1799d88c1a5aSDimitry Andric     ArrayRef<const Metadata *> MDs, SmallVectorImpl<uint64_t> &Record,
1800d88c1a5aSDimitry Andric     std::vector<unsigned> *MDAbbrevs, std::vector<uint64_t> *IndexPos) {
18013ca95b02SDimitry Andric   if (MDs.empty())
18023ca95b02SDimitry Andric     return;
18033ca95b02SDimitry Andric 
1804ff0cc061SDimitry Andric   // Initialize MDNode abbreviations.
1805ff0cc061SDimitry Andric #define HANDLE_MDNODE_LEAF(CLASS) unsigned CLASS##Abbrev = 0;
1806ff0cc061SDimitry Andric #include "llvm/IR/Metadata.def"
1807ff0cc061SDimitry Andric 
180839d628a0SDimitry Andric   for (const Metadata *MD : MDs) {
1809d88c1a5aSDimitry Andric     if (IndexPos)
1810d88c1a5aSDimitry Andric       IndexPos->push_back(Stream.GetCurrentBitNo());
181139d628a0SDimitry Andric     if (const MDNode *N = dyn_cast<MDNode>(MD)) {
1812ff0cc061SDimitry Andric       assert(N->isResolved() && "Expected forward references to be resolved");
1813ff0cc061SDimitry Andric 
1814ff0cc061SDimitry Andric       switch (N->getMetadataID()) {
1815ff0cc061SDimitry Andric       default:
1816ff0cc061SDimitry Andric         llvm_unreachable("Invalid MDNode subclass");
1817ff0cc061SDimitry Andric #define HANDLE_MDNODE_LEAF(CLASS)                                              \
1818ff0cc061SDimitry Andric   case Metadata::CLASS##Kind:                                                  \
1819d88c1a5aSDimitry Andric     if (MDAbbrevs)                                                             \
1820d88c1a5aSDimitry Andric       write##CLASS(cast<CLASS>(N), Record,                                     \
1821d88c1a5aSDimitry Andric                    (*MDAbbrevs)[MetadataAbbrev::CLASS##AbbrevID]);             \
1822d88c1a5aSDimitry Andric     else                                                                       \
18233ca95b02SDimitry Andric       write##CLASS(cast<CLASS>(N), Record, CLASS##Abbrev);                     \
182439d628a0SDimitry Andric     continue;
1825ff0cc061SDimitry Andric #include "llvm/IR/Metadata.def"
1826ff0cc061SDimitry Andric       }
182739d628a0SDimitry Andric     }
18283ca95b02SDimitry Andric     writeValueAsMetadata(cast<ValueAsMetadata>(MD), Record);
182939d628a0SDimitry Andric   }
1830e580952dSDimitry Andric }
1831e580952dSDimitry Andric 
18323ca95b02SDimitry Andric void ModuleBitcodeWriter::writeModuleMetadata() {
18333ca95b02SDimitry Andric   if (!VE.hasMDs() && M.named_metadata_empty())
18343ca95b02SDimitry Andric     return;
1835f22ef01cSRoman Divacky 
1836d88c1a5aSDimitry Andric   Stream.EnterSubblock(bitc::METADATA_BLOCK_ID, 4);
18373ca95b02SDimitry Andric   SmallVector<uint64_t, 64> Record;
1838d88c1a5aSDimitry Andric 
1839d88c1a5aSDimitry Andric   // Emit all abbrevs upfront, so that the reader can jump in the middle of the
1840d88c1a5aSDimitry Andric   // block and load any metadata.
1841d88c1a5aSDimitry Andric   std::vector<unsigned> MDAbbrevs;
1842d88c1a5aSDimitry Andric 
1843d88c1a5aSDimitry Andric   MDAbbrevs.resize(MetadataAbbrev::LastPlusOne);
1844d88c1a5aSDimitry Andric   MDAbbrevs[MetadataAbbrev::DILocationAbbrevID] = createDILocationAbbrev();
1845d88c1a5aSDimitry Andric   MDAbbrevs[MetadataAbbrev::GenericDINodeAbbrevID] =
1846d88c1a5aSDimitry Andric       createGenericDINodeAbbrev();
1847d88c1a5aSDimitry Andric 
184895ec533aSDimitry Andric   auto Abbv = std::make_shared<BitCodeAbbrev>();
1849d88c1a5aSDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::METADATA_INDEX_OFFSET));
1850d88c1a5aSDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
1851d88c1a5aSDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
185295ec533aSDimitry Andric   unsigned OffsetAbbrev = Stream.EmitAbbrev(std::move(Abbv));
1853d88c1a5aSDimitry Andric 
185495ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
1855d88c1a5aSDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::METADATA_INDEX));
1856d88c1a5aSDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
1857d88c1a5aSDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));
185895ec533aSDimitry Andric   unsigned IndexAbbrev = Stream.EmitAbbrev(std::move(Abbv));
1859d88c1a5aSDimitry Andric 
1860d88c1a5aSDimitry Andric   // Emit MDStrings together upfront.
18613ca95b02SDimitry Andric   writeMetadataStrings(VE.getMDStrings(), Record);
1862d88c1a5aSDimitry Andric 
1863d88c1a5aSDimitry Andric   // We only emit an index for the metadata record if we have more than a given
1864d88c1a5aSDimitry Andric   // (naive) threshold of metadatas, otherwise it is not worth it.
1865d88c1a5aSDimitry Andric   if (VE.getNonMDStrings().size() > IndexThreshold) {
1866d88c1a5aSDimitry Andric     // Write a placeholder value in for the offset of the metadata index,
1867d88c1a5aSDimitry Andric     // which is written after the records, so that it can include
1868d88c1a5aSDimitry Andric     // the offset of each entry. The placeholder offset will be
1869d88c1a5aSDimitry Andric     // updated after all records are emitted.
1870d88c1a5aSDimitry Andric     uint64_t Vals[] = {0, 0};
1871d88c1a5aSDimitry Andric     Stream.EmitRecord(bitc::METADATA_INDEX_OFFSET, Vals, OffsetAbbrev);
1872d88c1a5aSDimitry Andric   }
1873d88c1a5aSDimitry Andric 
1874d88c1a5aSDimitry Andric   // Compute and save the bit offset to the current position, which will be
1875d88c1a5aSDimitry Andric   // patched when we emit the index later. We can simply subtract the 64-bit
1876d88c1a5aSDimitry Andric   // fixed size from the current bit number to get the location to backpatch.
1877d88c1a5aSDimitry Andric   uint64_t IndexOffsetRecordBitPos = Stream.GetCurrentBitNo();
1878d88c1a5aSDimitry Andric 
1879d88c1a5aSDimitry Andric   // This index will contain the bitpos for each individual record.
1880d88c1a5aSDimitry Andric   std::vector<uint64_t> IndexPos;
1881d88c1a5aSDimitry Andric   IndexPos.reserve(VE.getNonMDStrings().size());
1882d88c1a5aSDimitry Andric 
1883d88c1a5aSDimitry Andric   // Write all the records
1884d88c1a5aSDimitry Andric   writeMetadataRecords(VE.getNonMDStrings(), Record, &MDAbbrevs, &IndexPos);
1885d88c1a5aSDimitry Andric 
1886d88c1a5aSDimitry Andric   if (VE.getNonMDStrings().size() > IndexThreshold) {
1887d88c1a5aSDimitry Andric     // Now that we have emitted all the records we will emit the index. But
1888d88c1a5aSDimitry Andric     // first
1889d88c1a5aSDimitry Andric     // backpatch the forward reference so that the reader can skip the records
1890d88c1a5aSDimitry Andric     // efficiently.
1891d88c1a5aSDimitry Andric     Stream.BackpatchWord64(IndexOffsetRecordBitPos - 64,
1892d88c1a5aSDimitry Andric                            Stream.GetCurrentBitNo() - IndexOffsetRecordBitPos);
1893d88c1a5aSDimitry Andric 
1894d88c1a5aSDimitry Andric     // Delta encode the index.
1895d88c1a5aSDimitry Andric     uint64_t PreviousValue = IndexOffsetRecordBitPos;
1896d88c1a5aSDimitry Andric     for (auto &Elt : IndexPos) {
1897d88c1a5aSDimitry Andric       auto EltDelta = Elt - PreviousValue;
1898d88c1a5aSDimitry Andric       PreviousValue = Elt;
1899d88c1a5aSDimitry Andric       Elt = EltDelta;
1900d88c1a5aSDimitry Andric     }
1901d88c1a5aSDimitry Andric     // Emit the index record.
1902d88c1a5aSDimitry Andric     Stream.EmitRecord(bitc::METADATA_INDEX, IndexPos, IndexAbbrev);
1903d88c1a5aSDimitry Andric     IndexPos.clear();
1904d88c1a5aSDimitry Andric   }
1905d88c1a5aSDimitry Andric 
1906d88c1a5aSDimitry Andric   // Write the named metadata now.
19073ca95b02SDimitry Andric   writeNamedMetadata(Record);
1908f22ef01cSRoman Divacky 
19093ca95b02SDimitry Andric   auto AddDeclAttachedMetadata = [&](const GlobalObject &GO) {
19103ca95b02SDimitry Andric     SmallVector<uint64_t, 4> Record;
19113ca95b02SDimitry Andric     Record.push_back(VE.getValueID(&GO));
19123ca95b02SDimitry Andric     pushGlobalMetadataAttachment(Record, GO);
19133ca95b02SDimitry Andric     Stream.EmitRecord(bitc::METADATA_GLOBAL_DECL_ATTACHMENT, Record);
19143ca95b02SDimitry Andric   };
19153ca95b02SDimitry Andric   for (const Function &F : M)
19163ca95b02SDimitry Andric     if (F.isDeclaration() && F.hasMetadata())
19173ca95b02SDimitry Andric       AddDeclAttachedMetadata(F);
19183ca95b02SDimitry Andric   // FIXME: Only store metadata for declarations here, and move data for global
19193ca95b02SDimitry Andric   // variable definitions to a separate block (PR28134).
19203ca95b02SDimitry Andric   for (const GlobalVariable &GV : M.globals())
19213ca95b02SDimitry Andric     if (GV.hasMetadata())
19223ca95b02SDimitry Andric       AddDeclAttachedMetadata(GV);
19233ca95b02SDimitry Andric 
1924f22ef01cSRoman Divacky   Stream.ExitBlock();
1925f22ef01cSRoman Divacky }
1926f22ef01cSRoman Divacky 
19273ca95b02SDimitry Andric void ModuleBitcodeWriter::writeFunctionMetadata(const Function &F) {
19283ca95b02SDimitry Andric   if (!VE.hasMDs())
19293ca95b02SDimitry Andric     return;
1930f22ef01cSRoman Divacky 
19313ca95b02SDimitry Andric   Stream.EnterSubblock(bitc::METADATA_BLOCK_ID, 3);
1932f22ef01cSRoman Divacky   SmallVector<uint64_t, 64> Record;
19333ca95b02SDimitry Andric   writeMetadataStrings(VE.getMDStrings(), Record);
19343ca95b02SDimitry Andric   writeMetadataRecords(VE.getNonMDStrings(), Record);
19353ca95b02SDimitry Andric   Stream.ExitBlock();
19363ca95b02SDimitry Andric }
1937f22ef01cSRoman Divacky 
19383ca95b02SDimitry Andric void ModuleBitcodeWriter::pushGlobalMetadataAttachment(
19393ca95b02SDimitry Andric     SmallVectorImpl<uint64_t> &Record, const GlobalObject &GO) {
19403ca95b02SDimitry Andric   // [n x [id, mdnode]]
1941f22ef01cSRoman Divacky   SmallVector<std::pair<unsigned, MDNode *>, 4> MDs;
19423ca95b02SDimitry Andric   GO.getAllMetadata(MDs);
1943ff0cc061SDimitry Andric   for (const auto &I : MDs) {
1944ff0cc061SDimitry Andric     Record.push_back(I.first);
1945ff0cc061SDimitry Andric     Record.push_back(VE.getMetadataID(I.second));
1946ff0cc061SDimitry Andric   }
19473ca95b02SDimitry Andric }
19483ca95b02SDimitry Andric 
19493ca95b02SDimitry Andric void ModuleBitcodeWriter::writeFunctionMetadataAttachment(const Function &F) {
19503ca95b02SDimitry Andric   Stream.EnterSubblock(bitc::METADATA_ATTACHMENT_ID, 3);
19513ca95b02SDimitry Andric 
19523ca95b02SDimitry Andric   SmallVector<uint64_t, 64> Record;
19533ca95b02SDimitry Andric 
19543ca95b02SDimitry Andric   if (F.hasMetadata()) {
19553ca95b02SDimitry Andric     pushGlobalMetadataAttachment(Record, F);
1956ff0cc061SDimitry Andric     Stream.EmitRecord(bitc::METADATA_ATTACHMENT, Record, 0);
1957ff0cc061SDimitry Andric     Record.clear();
1958ff0cc061SDimitry Andric   }
1959f22ef01cSRoman Divacky 
19603ca95b02SDimitry Andric   // Write metadata attachments
19613ca95b02SDimitry Andric   // METADATA_ATTACHMENT - [m x [value, [n x [id, mdnode]]]
19623ca95b02SDimitry Andric   SmallVector<std::pair<unsigned, MDNode *>, 4> MDs;
19637d523365SDimitry Andric   for (const BasicBlock &BB : F)
19647d523365SDimitry Andric     for (const Instruction &I : BB) {
1965f22ef01cSRoman Divacky       MDs.clear();
19667d523365SDimitry Andric       I.getAllMetadataOtherThanDebugLoc(MDs);
1967f22ef01cSRoman Divacky 
1968f22ef01cSRoman Divacky       // If no metadata, ignore instruction.
1969f22ef01cSRoman Divacky       if (MDs.empty()) continue;
1970f22ef01cSRoman Divacky 
19717d523365SDimitry Andric       Record.push_back(VE.getInstructionID(&I));
1972f22ef01cSRoman Divacky 
1973f22ef01cSRoman Divacky       for (unsigned i = 0, e = MDs.size(); i != e; ++i) {
1974f22ef01cSRoman Divacky         Record.push_back(MDs[i].first);
197539d628a0SDimitry Andric         Record.push_back(VE.getMetadataID(MDs[i].second));
1976f22ef01cSRoman Divacky       }
197717a519f9SDimitry Andric       Stream.EmitRecord(bitc::METADATA_ATTACHMENT, Record, 0);
1978f22ef01cSRoman Divacky       Record.clear();
1979f22ef01cSRoman Divacky     }
1980f22ef01cSRoman Divacky 
1981f22ef01cSRoman Divacky   Stream.ExitBlock();
1982f22ef01cSRoman Divacky }
1983f22ef01cSRoman Divacky 
19843ca95b02SDimitry Andric void ModuleBitcodeWriter::writeModuleMetadataKinds() {
1985f22ef01cSRoman Divacky   SmallVector<uint64_t, 64> Record;
1986f22ef01cSRoman Divacky 
1987f22ef01cSRoman Divacky   // Write metadata kinds
1988f22ef01cSRoman Divacky   // METADATA_KIND - [n x [id, name]]
1989139f7f9bSDimitry Andric   SmallVector<StringRef, 8> Names;
19903ca95b02SDimitry Andric   M.getMDKindNames(Names);
1991f22ef01cSRoman Divacky 
1992e580952dSDimitry Andric   if (Names.empty()) return;
1993f22ef01cSRoman Divacky 
19947d523365SDimitry Andric   Stream.EnterSubblock(bitc::METADATA_KIND_BLOCK_ID, 3);
1995f22ef01cSRoman Divacky 
1996e580952dSDimitry Andric   for (unsigned MDKindID = 0, e = Names.size(); MDKindID != e; ++MDKindID) {
1997f22ef01cSRoman Divacky     Record.push_back(MDKindID);
1998f22ef01cSRoman Divacky     StringRef KName = Names[MDKindID];
1999f22ef01cSRoman Divacky     Record.append(KName.begin(), KName.end());
2000f22ef01cSRoman Divacky 
2001f22ef01cSRoman Divacky     Stream.EmitRecord(bitc::METADATA_KIND, Record, 0);
2002f22ef01cSRoman Divacky     Record.clear();
2003f22ef01cSRoman Divacky   }
2004f22ef01cSRoman Divacky 
2005f22ef01cSRoman Divacky   Stream.ExitBlock();
2006f22ef01cSRoman Divacky }
2007f22ef01cSRoman Divacky 
20083ca95b02SDimitry Andric void ModuleBitcodeWriter::writeOperandBundleTags() {
20097d523365SDimitry Andric   // Write metadata kinds
20107d523365SDimitry Andric   //
20117d523365SDimitry Andric   // OPERAND_BUNDLE_TAGS_BLOCK_ID : N x OPERAND_BUNDLE_TAG
20127d523365SDimitry Andric   //
20137d523365SDimitry Andric   // OPERAND_BUNDLE_TAG - [strchr x N]
20147d523365SDimitry Andric 
20157d523365SDimitry Andric   SmallVector<StringRef, 8> Tags;
20163ca95b02SDimitry Andric   M.getOperandBundleTags(Tags);
20177d523365SDimitry Andric 
20187d523365SDimitry Andric   if (Tags.empty())
20197d523365SDimitry Andric     return;
20207d523365SDimitry Andric 
20217d523365SDimitry Andric   Stream.EnterSubblock(bitc::OPERAND_BUNDLE_TAGS_BLOCK_ID, 3);
20227d523365SDimitry Andric 
20237d523365SDimitry Andric   SmallVector<uint64_t, 64> Record;
20247d523365SDimitry Andric 
20257d523365SDimitry Andric   for (auto Tag : Tags) {
20267d523365SDimitry Andric     Record.append(Tag.begin(), Tag.end());
20277d523365SDimitry Andric 
20287d523365SDimitry Andric     Stream.EmitRecord(bitc::OPERAND_BUNDLE_TAG, Record, 0);
20297d523365SDimitry Andric     Record.clear();
20307d523365SDimitry Andric   }
20317d523365SDimitry Andric 
20327d523365SDimitry Andric   Stream.ExitBlock();
20337d523365SDimitry Andric }
20347d523365SDimitry Andric 
20353861d79fSDimitry Andric static void emitSignedInt64(SmallVectorImpl<uint64_t> &Vals, uint64_t V) {
20363861d79fSDimitry Andric   if ((int64_t)V >= 0)
20373861d79fSDimitry Andric     Vals.push_back(V << 1);
20383861d79fSDimitry Andric   else
20393861d79fSDimitry Andric     Vals.push_back((-V << 1) | 1);
20403861d79fSDimitry Andric }
20413861d79fSDimitry Andric 
20423ca95b02SDimitry Andric void ModuleBitcodeWriter::writeConstants(unsigned FirstVal, unsigned LastVal,
20433ca95b02SDimitry Andric                                          bool isGlobal) {
2044f22ef01cSRoman Divacky   if (FirstVal == LastVal) return;
2045f22ef01cSRoman Divacky 
2046f22ef01cSRoman Divacky   Stream.EnterSubblock(bitc::CONSTANTS_BLOCK_ID, 4);
2047f22ef01cSRoman Divacky 
2048f22ef01cSRoman Divacky   unsigned AggregateAbbrev = 0;
2049f22ef01cSRoman Divacky   unsigned String8Abbrev = 0;
2050f22ef01cSRoman Divacky   unsigned CString7Abbrev = 0;
2051f22ef01cSRoman Divacky   unsigned CString6Abbrev = 0;
2052f22ef01cSRoman Divacky   // If this is a constant pool for the module, emit module-specific abbrevs.
2053f22ef01cSRoman Divacky   if (isGlobal) {
2054f22ef01cSRoman Divacky     // Abbrev for CST_CODE_AGGREGATE.
205595ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
2056f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::CST_CODE_AGGREGATE));
2057f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
2058f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, Log2_32_Ceil(LastVal+1)));
205995ec533aSDimitry Andric     AggregateAbbrev = Stream.EmitAbbrev(std::move(Abbv));
2060f22ef01cSRoman Divacky 
2061f22ef01cSRoman Divacky     // Abbrev for CST_CODE_STRING.
206295ec533aSDimitry Andric     Abbv = std::make_shared<BitCodeAbbrev>();
2063f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::CST_CODE_STRING));
2064f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
2065f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 8));
206695ec533aSDimitry Andric     String8Abbrev = Stream.EmitAbbrev(std::move(Abbv));
2067f22ef01cSRoman Divacky     // Abbrev for CST_CODE_CSTRING.
206895ec533aSDimitry Andric     Abbv = std::make_shared<BitCodeAbbrev>();
2069f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::CST_CODE_CSTRING));
2070f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
2071f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 7));
207295ec533aSDimitry Andric     CString7Abbrev = Stream.EmitAbbrev(std::move(Abbv));
2073f22ef01cSRoman Divacky     // Abbrev for CST_CODE_CSTRING.
207495ec533aSDimitry Andric     Abbv = std::make_shared<BitCodeAbbrev>();
2075f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::CST_CODE_CSTRING));
2076f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
2077f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Char6));
207895ec533aSDimitry Andric     CString6Abbrev = Stream.EmitAbbrev(std::move(Abbv));
2079f22ef01cSRoman Divacky   }
2080f22ef01cSRoman Divacky 
2081f22ef01cSRoman Divacky   SmallVector<uint64_t, 64> Record;
2082f22ef01cSRoman Divacky 
2083f22ef01cSRoman Divacky   const ValueEnumerator::ValueList &Vals = VE.getValues();
208491bc56edSDimitry Andric   Type *LastTy = nullptr;
2085f22ef01cSRoman Divacky   for (unsigned i = FirstVal; i != LastVal; ++i) {
2086f22ef01cSRoman Divacky     const Value *V = Vals[i].first;
2087f22ef01cSRoman Divacky     // If we need to switch types, do so now.
2088f22ef01cSRoman Divacky     if (V->getType() != LastTy) {
2089f22ef01cSRoman Divacky       LastTy = V->getType();
2090f22ef01cSRoman Divacky       Record.push_back(VE.getTypeID(LastTy));
2091f22ef01cSRoman Divacky       Stream.EmitRecord(bitc::CST_CODE_SETTYPE, Record,
2092f22ef01cSRoman Divacky                         CONSTANTS_SETTYPE_ABBREV);
2093f22ef01cSRoman Divacky       Record.clear();
2094f22ef01cSRoman Divacky     }
2095f22ef01cSRoman Divacky 
2096f22ef01cSRoman Divacky     if (const InlineAsm *IA = dyn_cast<InlineAsm>(V)) {
2097f22ef01cSRoman Divacky       Record.push_back(unsigned(IA->hasSideEffects()) |
20983861d79fSDimitry Andric                        unsigned(IA->isAlignStack()) << 1 |
20993861d79fSDimitry Andric                        unsigned(IA->getDialect()&1) << 2);
2100f22ef01cSRoman Divacky 
2101f22ef01cSRoman Divacky       // Add the asm string.
2102f22ef01cSRoman Divacky       const std::string &AsmStr = IA->getAsmString();
2103f22ef01cSRoman Divacky       Record.push_back(AsmStr.size());
2104ff0cc061SDimitry Andric       Record.append(AsmStr.begin(), AsmStr.end());
2105f22ef01cSRoman Divacky 
2106f22ef01cSRoman Divacky       // Add the constraint string.
2107f22ef01cSRoman Divacky       const std::string &ConstraintStr = IA->getConstraintString();
2108f22ef01cSRoman Divacky       Record.push_back(ConstraintStr.size());
2109ff0cc061SDimitry Andric       Record.append(ConstraintStr.begin(), ConstraintStr.end());
2110f22ef01cSRoman Divacky       Stream.EmitRecord(bitc::CST_CODE_INLINEASM, Record);
2111f22ef01cSRoman Divacky       Record.clear();
2112f22ef01cSRoman Divacky       continue;
2113f22ef01cSRoman Divacky     }
2114f22ef01cSRoman Divacky     const Constant *C = cast<Constant>(V);
2115f22ef01cSRoman Divacky     unsigned Code = -1U;
2116f22ef01cSRoman Divacky     unsigned AbbrevToUse = 0;
2117f22ef01cSRoman Divacky     if (C->isNullValue()) {
2118f22ef01cSRoman Divacky       Code = bitc::CST_CODE_NULL;
2119f22ef01cSRoman Divacky     } else if (isa<UndefValue>(C)) {
2120f22ef01cSRoman Divacky       Code = bitc::CST_CODE_UNDEF;
2121f22ef01cSRoman Divacky     } else if (const ConstantInt *IV = dyn_cast<ConstantInt>(C)) {
2122f785676fSDimitry Andric       if (IV->getBitWidth() <= 64) {
2123f785676fSDimitry Andric         uint64_t V = IV->getSExtValue();
2124f785676fSDimitry Andric         emitSignedInt64(Record, V);
2125f785676fSDimitry Andric         Code = bitc::CST_CODE_INTEGER;
2126f785676fSDimitry Andric         AbbrevToUse = CONSTANTS_INTEGER_ABBREV;
2127f785676fSDimitry Andric       } else {                             // Wide integers, > 64 bits in size.
2128f785676fSDimitry Andric         // We have an arbitrary precision integer value to write whose
2129f785676fSDimitry Andric         // bit width is > 64. However, in canonical unsigned integer
2130f785676fSDimitry Andric         // format it is likely that the high bits are going to be zero.
2131f785676fSDimitry Andric         // So, we only write the number of active words.
2132f785676fSDimitry Andric         unsigned NWords = IV->getValue().getActiveWords();
2133f785676fSDimitry Andric         const uint64_t *RawWords = IV->getValue().getRawData();
2134f785676fSDimitry Andric         for (unsigned i = 0; i != NWords; ++i) {
2135f785676fSDimitry Andric           emitSignedInt64(Record, RawWords[i]);
2136f785676fSDimitry Andric         }
2137f785676fSDimitry Andric         Code = bitc::CST_CODE_WIDE_INTEGER;
2138f785676fSDimitry Andric       }
2139f22ef01cSRoman Divacky     } else if (const ConstantFP *CFP = dyn_cast<ConstantFP>(C)) {
2140f22ef01cSRoman Divacky       Code = bitc::CST_CODE_FLOAT;
21416122f3e6SDimitry Andric       Type *Ty = CFP->getType();
2142dff0c46cSDimitry Andric       if (Ty->isHalfTy() || Ty->isFloatTy() || Ty->isDoubleTy()) {
2143f22ef01cSRoman Divacky         Record.push_back(CFP->getValueAPF().bitcastToAPInt().getZExtValue());
2144f22ef01cSRoman Divacky       } else if (Ty->isX86_FP80Ty()) {
2145f22ef01cSRoman Divacky         // api needed to prevent premature destruction
2146f22ef01cSRoman Divacky         // bits are not in the same order as a normal i80 APInt, compensate.
2147f22ef01cSRoman Divacky         APInt api = CFP->getValueAPF().bitcastToAPInt();
2148f22ef01cSRoman Divacky         const uint64_t *p = api.getRawData();
2149f22ef01cSRoman Divacky         Record.push_back((p[1] << 48) | (p[0] >> 16));
2150f22ef01cSRoman Divacky         Record.push_back(p[0] & 0xffffLL);
2151f22ef01cSRoman Divacky       } else if (Ty->isFP128Ty() || Ty->isPPC_FP128Ty()) {
2152f22ef01cSRoman Divacky         APInt api = CFP->getValueAPF().bitcastToAPInt();
2153f22ef01cSRoman Divacky         const uint64_t *p = api.getRawData();
2154f22ef01cSRoman Divacky         Record.push_back(p[0]);
2155f22ef01cSRoman Divacky         Record.push_back(p[1]);
2156f22ef01cSRoman Divacky       } else {
2157f22ef01cSRoman Divacky         assert (0 && "Unknown FP type!");
2158f22ef01cSRoman Divacky       }
2159dff0c46cSDimitry Andric     } else if (isa<ConstantDataSequential>(C) &&
2160dff0c46cSDimitry Andric                cast<ConstantDataSequential>(C)->isString()) {
2161dff0c46cSDimitry Andric       const ConstantDataSequential *Str = cast<ConstantDataSequential>(C);
2162f22ef01cSRoman Divacky       // Emit constant strings specially.
2163dff0c46cSDimitry Andric       unsigned NumElts = Str->getNumElements();
2164f22ef01cSRoman Divacky       // If this is a null-terminated string, use the denser CSTRING encoding.
2165dff0c46cSDimitry Andric       if (Str->isCString()) {
2166f22ef01cSRoman Divacky         Code = bitc::CST_CODE_CSTRING;
2167dff0c46cSDimitry Andric         --NumElts;  // Don't encode the null, which isn't allowed by char6.
2168f22ef01cSRoman Divacky       } else {
2169f22ef01cSRoman Divacky         Code = bitc::CST_CODE_STRING;
2170f22ef01cSRoman Divacky         AbbrevToUse = String8Abbrev;
2171f22ef01cSRoman Divacky       }
2172f22ef01cSRoman Divacky       bool isCStr7 = Code == bitc::CST_CODE_CSTRING;
2173f22ef01cSRoman Divacky       bool isCStrChar6 = Code == bitc::CST_CODE_CSTRING;
2174dff0c46cSDimitry Andric       for (unsigned i = 0; i != NumElts; ++i) {
2175dff0c46cSDimitry Andric         unsigned char V = Str->getElementAsInteger(i);
2176f22ef01cSRoman Divacky         Record.push_back(V);
2177f22ef01cSRoman Divacky         isCStr7 &= (V & 128) == 0;
2178f22ef01cSRoman Divacky         if (isCStrChar6)
2179f22ef01cSRoman Divacky           isCStrChar6 = BitCodeAbbrevOp::isChar6(V);
2180f22ef01cSRoman Divacky       }
2181f22ef01cSRoman Divacky 
2182f22ef01cSRoman Divacky       if (isCStrChar6)
2183f22ef01cSRoman Divacky         AbbrevToUse = CString6Abbrev;
2184f22ef01cSRoman Divacky       else if (isCStr7)
2185f22ef01cSRoman Divacky         AbbrevToUse = CString7Abbrev;
2186dff0c46cSDimitry Andric     } else if (const ConstantDataSequential *CDS =
2187dff0c46cSDimitry Andric                   dyn_cast<ConstantDataSequential>(C)) {
2188dff0c46cSDimitry Andric       Code = bitc::CST_CODE_DATA;
2189dff0c46cSDimitry Andric       Type *EltTy = CDS->getType()->getElementType();
2190dff0c46cSDimitry Andric       if (isa<IntegerType>(EltTy)) {
2191dff0c46cSDimitry Andric         for (unsigned i = 0, e = CDS->getNumElements(); i != e; ++i)
2192dff0c46cSDimitry Andric           Record.push_back(CDS->getElementAsInteger(i));
2193dff0c46cSDimitry Andric       } else {
2194444ed5c5SDimitry Andric         for (unsigned i = 0, e = CDS->getNumElements(); i != e; ++i)
2195444ed5c5SDimitry Andric           Record.push_back(
2196444ed5c5SDimitry Andric               CDS->getElementAsAPFloat(i).bitcastToAPInt().getLimitedValue());
2197dff0c46cSDimitry Andric       }
21983ca95b02SDimitry Andric     } else if (isa<ConstantAggregate>(C)) {
2199f22ef01cSRoman Divacky       Code = bitc::CST_CODE_AGGREGATE;
22003dac3a9bSDimitry Andric       for (const Value *Op : C->operands())
22013dac3a9bSDimitry Andric         Record.push_back(VE.getValueID(Op));
2202f22ef01cSRoman Divacky       AbbrevToUse = AggregateAbbrev;
2203f22ef01cSRoman Divacky     } else if (const ConstantExpr *CE = dyn_cast<ConstantExpr>(C)) {
2204f22ef01cSRoman Divacky       switch (CE->getOpcode()) {
2205f22ef01cSRoman Divacky       default:
2206f22ef01cSRoman Divacky         if (Instruction::isCast(CE->getOpcode())) {
2207f22ef01cSRoman Divacky           Code = bitc::CST_CODE_CE_CAST;
22083ca95b02SDimitry Andric           Record.push_back(getEncodedCastOpcode(CE->getOpcode()));
2209f22ef01cSRoman Divacky           Record.push_back(VE.getTypeID(C->getOperand(0)->getType()));
2210f22ef01cSRoman Divacky           Record.push_back(VE.getValueID(C->getOperand(0)));
2211f22ef01cSRoman Divacky           AbbrevToUse = CONSTANTS_CE_CAST_Abbrev;
2212f22ef01cSRoman Divacky         } else {
2213f22ef01cSRoman Divacky           assert(CE->getNumOperands() == 2 && "Unknown constant expr!");
2214f22ef01cSRoman Divacky           Code = bitc::CST_CODE_CE_BINOP;
22153ca95b02SDimitry Andric           Record.push_back(getEncodedBinaryOpcode(CE->getOpcode()));
2216f22ef01cSRoman Divacky           Record.push_back(VE.getValueID(C->getOperand(0)));
2217f22ef01cSRoman Divacky           Record.push_back(VE.getValueID(C->getOperand(1)));
22183ca95b02SDimitry Andric           uint64_t Flags = getOptimizationFlags(CE);
2219f22ef01cSRoman Divacky           if (Flags != 0)
2220f22ef01cSRoman Divacky             Record.push_back(Flags);
2221f22ef01cSRoman Divacky         }
2222f22ef01cSRoman Divacky         break;
2223ff0cc061SDimitry Andric       case Instruction::GetElementPtr: {
2224f22ef01cSRoman Divacky         Code = bitc::CST_CODE_CE_GEP;
2225ff0cc061SDimitry Andric         const auto *GO = cast<GEPOperator>(C);
2226ff0cc061SDimitry Andric         Record.push_back(VE.getTypeID(GO->getSourceElementType()));
2227d88c1a5aSDimitry Andric         if (Optional<unsigned> Idx = GO->getInRangeIndex()) {
2228d88c1a5aSDimitry Andric           Code = bitc::CST_CODE_CE_GEP_WITH_INRANGE_INDEX;
2229d88c1a5aSDimitry Andric           Record.push_back((*Idx << 1) | GO->isInBounds());
2230d88c1a5aSDimitry Andric         } else if (GO->isInBounds())
2231d88c1a5aSDimitry Andric           Code = bitc::CST_CODE_CE_INBOUNDS_GEP;
2232f22ef01cSRoman Divacky         for (unsigned i = 0, e = CE->getNumOperands(); i != e; ++i) {
2233f22ef01cSRoman Divacky           Record.push_back(VE.getTypeID(C->getOperand(i)->getType()));
2234f22ef01cSRoman Divacky           Record.push_back(VE.getValueID(C->getOperand(i)));
2235f22ef01cSRoman Divacky         }
2236f22ef01cSRoman Divacky         break;
2237ff0cc061SDimitry Andric       }
2238f22ef01cSRoman Divacky       case Instruction::Select:
2239f22ef01cSRoman Divacky         Code = bitc::CST_CODE_CE_SELECT;
2240f22ef01cSRoman Divacky         Record.push_back(VE.getValueID(C->getOperand(0)));
2241f22ef01cSRoman Divacky         Record.push_back(VE.getValueID(C->getOperand(1)));
2242f22ef01cSRoman Divacky         Record.push_back(VE.getValueID(C->getOperand(2)));
2243f22ef01cSRoman Divacky         break;
2244f22ef01cSRoman Divacky       case Instruction::ExtractElement:
2245f22ef01cSRoman Divacky         Code = bitc::CST_CODE_CE_EXTRACTELT;
2246f22ef01cSRoman Divacky         Record.push_back(VE.getTypeID(C->getOperand(0)->getType()));
2247f22ef01cSRoman Divacky         Record.push_back(VE.getValueID(C->getOperand(0)));
224891bc56edSDimitry Andric         Record.push_back(VE.getTypeID(C->getOperand(1)->getType()));
2249f22ef01cSRoman Divacky         Record.push_back(VE.getValueID(C->getOperand(1)));
2250f22ef01cSRoman Divacky         break;
2251f22ef01cSRoman Divacky       case Instruction::InsertElement:
2252f22ef01cSRoman Divacky         Code = bitc::CST_CODE_CE_INSERTELT;
2253f22ef01cSRoman Divacky         Record.push_back(VE.getValueID(C->getOperand(0)));
2254f22ef01cSRoman Divacky         Record.push_back(VE.getValueID(C->getOperand(1)));
225591bc56edSDimitry Andric         Record.push_back(VE.getTypeID(C->getOperand(2)->getType()));
2256f22ef01cSRoman Divacky         Record.push_back(VE.getValueID(C->getOperand(2)));
2257f22ef01cSRoman Divacky         break;
2258f22ef01cSRoman Divacky       case Instruction::ShuffleVector:
2259f22ef01cSRoman Divacky         // If the return type and argument types are the same, this is a
2260f22ef01cSRoman Divacky         // standard shufflevector instruction.  If the types are different,
2261f22ef01cSRoman Divacky         // then the shuffle is widening or truncating the input vectors, and
2262f22ef01cSRoman Divacky         // the argument type must also be encoded.
2263f22ef01cSRoman Divacky         if (C->getType() == C->getOperand(0)->getType()) {
2264f22ef01cSRoman Divacky           Code = bitc::CST_CODE_CE_SHUFFLEVEC;
2265f22ef01cSRoman Divacky         } else {
2266f22ef01cSRoman Divacky           Code = bitc::CST_CODE_CE_SHUFVEC_EX;
2267f22ef01cSRoman Divacky           Record.push_back(VE.getTypeID(C->getOperand(0)->getType()));
2268f22ef01cSRoman Divacky         }
2269f22ef01cSRoman Divacky         Record.push_back(VE.getValueID(C->getOperand(0)));
2270f22ef01cSRoman Divacky         Record.push_back(VE.getValueID(C->getOperand(1)));
2271f22ef01cSRoman Divacky         Record.push_back(VE.getValueID(C->getOperand(2)));
2272f22ef01cSRoman Divacky         break;
2273f22ef01cSRoman Divacky       case Instruction::ICmp:
2274f22ef01cSRoman Divacky       case Instruction::FCmp:
2275f22ef01cSRoman Divacky         Code = bitc::CST_CODE_CE_CMP;
2276f22ef01cSRoman Divacky         Record.push_back(VE.getTypeID(C->getOperand(0)->getType()));
2277f22ef01cSRoman Divacky         Record.push_back(VE.getValueID(C->getOperand(0)));
2278f22ef01cSRoman Divacky         Record.push_back(VE.getValueID(C->getOperand(1)));
2279f22ef01cSRoman Divacky         Record.push_back(CE->getPredicate());
2280f22ef01cSRoman Divacky         break;
2281f22ef01cSRoman Divacky       }
2282f22ef01cSRoman Divacky     } else if (const BlockAddress *BA = dyn_cast<BlockAddress>(C)) {
2283f22ef01cSRoman Divacky       Code = bitc::CST_CODE_BLOCKADDRESS;
2284f22ef01cSRoman Divacky       Record.push_back(VE.getTypeID(BA->getFunction()->getType()));
2285f22ef01cSRoman Divacky       Record.push_back(VE.getValueID(BA->getFunction()));
2286f22ef01cSRoman Divacky       Record.push_back(VE.getGlobalBasicBlockID(BA->getBasicBlock()));
2287f22ef01cSRoman Divacky     } else {
2288e580952dSDimitry Andric #ifndef NDEBUG
2289e580952dSDimitry Andric       C->dump();
2290e580952dSDimitry Andric #endif
2291f22ef01cSRoman Divacky       llvm_unreachable("Unknown constant!");
2292f22ef01cSRoman Divacky     }
2293f22ef01cSRoman Divacky     Stream.EmitRecord(Code, Record, AbbrevToUse);
2294f22ef01cSRoman Divacky     Record.clear();
2295f22ef01cSRoman Divacky   }
2296f22ef01cSRoman Divacky 
2297f22ef01cSRoman Divacky   Stream.ExitBlock();
2298f22ef01cSRoman Divacky }
2299f22ef01cSRoman Divacky 
23003ca95b02SDimitry Andric void ModuleBitcodeWriter::writeModuleConstants() {
2301f22ef01cSRoman Divacky   const ValueEnumerator::ValueList &Vals = VE.getValues();
2302f22ef01cSRoman Divacky 
2303f22ef01cSRoman Divacky   // Find the first constant to emit, which is the first non-globalvalue value.
2304f22ef01cSRoman Divacky   // We know globalvalues have been emitted by WriteModuleInfo.
2305f22ef01cSRoman Divacky   for (unsigned i = 0, e = Vals.size(); i != e; ++i) {
2306f22ef01cSRoman Divacky     if (!isa<GlobalValue>(Vals[i].first)) {
23073ca95b02SDimitry Andric       writeConstants(i, Vals.size(), true);
2308f22ef01cSRoman Divacky       return;
2309f22ef01cSRoman Divacky     }
2310f22ef01cSRoman Divacky   }
2311f22ef01cSRoman Divacky }
2312f22ef01cSRoman Divacky 
23133ca95b02SDimitry Andric /// pushValueAndType - The file has to encode both the value and type id for
2314f22ef01cSRoman Divacky /// many values, because we need to know what type to create for forward
2315f22ef01cSRoman Divacky /// references.  However, most operands are not forward references, so this type
2316f22ef01cSRoman Divacky /// field is not needed.
2317f22ef01cSRoman Divacky ///
2318f22ef01cSRoman Divacky /// This function adds V's value ID to Vals.  If the value ID is higher than the
2319f22ef01cSRoman Divacky /// instruction ID, then it is a forward reference, and it also includes the
23203861d79fSDimitry Andric /// type ID.  The value ID that is written is encoded relative to the InstID.
23213ca95b02SDimitry Andric bool ModuleBitcodeWriter::pushValueAndType(const Value *V, unsigned InstID,
23223ca95b02SDimitry Andric                                            SmallVectorImpl<unsigned> &Vals) {
2323f22ef01cSRoman Divacky   unsigned ValID = VE.getValueID(V);
23243861d79fSDimitry Andric   // Make encoding relative to the InstID.
23253861d79fSDimitry Andric   Vals.push_back(InstID - ValID);
2326f22ef01cSRoman Divacky   if (ValID >= InstID) {
2327f22ef01cSRoman Divacky     Vals.push_back(VE.getTypeID(V->getType()));
2328f22ef01cSRoman Divacky     return true;
2329f22ef01cSRoman Divacky   }
2330f22ef01cSRoman Divacky   return false;
2331f22ef01cSRoman Divacky }
2332f22ef01cSRoman Divacky 
23333ca95b02SDimitry Andric void ModuleBitcodeWriter::writeOperandBundles(ImmutableCallSite CS,
23343ca95b02SDimitry Andric                                               unsigned InstID) {
23357d523365SDimitry Andric   SmallVector<unsigned, 64> Record;
23367d523365SDimitry Andric   LLVMContext &C = CS.getInstruction()->getContext();
23377d523365SDimitry Andric 
23387d523365SDimitry Andric   for (unsigned i = 0, e = CS.getNumOperandBundles(); i != e; ++i) {
23397d523365SDimitry Andric     const auto &Bundle = CS.getOperandBundleAt(i);
23407d523365SDimitry Andric     Record.push_back(C.getOperandBundleTagID(Bundle.getTagName()));
23417d523365SDimitry Andric 
23427d523365SDimitry Andric     for (auto &Input : Bundle.Inputs)
23433ca95b02SDimitry Andric       pushValueAndType(Input, InstID, Record);
23447d523365SDimitry Andric 
23457d523365SDimitry Andric     Stream.EmitRecord(bitc::FUNC_CODE_OPERAND_BUNDLE, Record);
23467d523365SDimitry Andric     Record.clear();
23477d523365SDimitry Andric   }
23487d523365SDimitry Andric }
23497d523365SDimitry Andric 
23503ca95b02SDimitry Andric /// pushValue - Like pushValueAndType, but where the type of the value is
23513861d79fSDimitry Andric /// omitted (perhaps it was already encoded in an earlier operand).
23523ca95b02SDimitry Andric void ModuleBitcodeWriter::pushValue(const Value *V, unsigned InstID,
23533ca95b02SDimitry Andric                                     SmallVectorImpl<unsigned> &Vals) {
23543861d79fSDimitry Andric   unsigned ValID = VE.getValueID(V);
23553861d79fSDimitry Andric   Vals.push_back(InstID - ValID);
23563861d79fSDimitry Andric }
23573861d79fSDimitry Andric 
23583ca95b02SDimitry Andric void ModuleBitcodeWriter::pushValueSigned(const Value *V, unsigned InstID,
23593ca95b02SDimitry Andric                                           SmallVectorImpl<uint64_t> &Vals) {
23603861d79fSDimitry Andric   unsigned ValID = VE.getValueID(V);
23613861d79fSDimitry Andric   int64_t diff = ((int32_t)InstID - (int32_t)ValID);
23623861d79fSDimitry Andric   emitSignedInt64(Vals, diff);
23633861d79fSDimitry Andric }
23643861d79fSDimitry Andric 
2365f22ef01cSRoman Divacky /// WriteInstruction - Emit an instruction to the specified stream.
23663ca95b02SDimitry Andric void ModuleBitcodeWriter::writeInstruction(const Instruction &I,
23673ca95b02SDimitry Andric                                            unsigned InstID,
2368f785676fSDimitry Andric                                            SmallVectorImpl<unsigned> &Vals) {
2369f22ef01cSRoman Divacky   unsigned Code = 0;
2370f22ef01cSRoman Divacky   unsigned AbbrevToUse = 0;
2371f22ef01cSRoman Divacky   VE.setInstructionID(&I);
2372f22ef01cSRoman Divacky   switch (I.getOpcode()) {
2373f22ef01cSRoman Divacky   default:
2374f22ef01cSRoman Divacky     if (Instruction::isCast(I.getOpcode())) {
2375f22ef01cSRoman Divacky       Code = bitc::FUNC_CODE_INST_CAST;
23763ca95b02SDimitry Andric       if (!pushValueAndType(I.getOperand(0), InstID, Vals))
2377f22ef01cSRoman Divacky         AbbrevToUse = FUNCTION_INST_CAST_ABBREV;
2378f22ef01cSRoman Divacky       Vals.push_back(VE.getTypeID(I.getType()));
23793ca95b02SDimitry Andric       Vals.push_back(getEncodedCastOpcode(I.getOpcode()));
2380f22ef01cSRoman Divacky     } else {
2381f22ef01cSRoman Divacky       assert(isa<BinaryOperator>(I) && "Unknown instruction!");
2382f22ef01cSRoman Divacky       Code = bitc::FUNC_CODE_INST_BINOP;
23833ca95b02SDimitry Andric       if (!pushValueAndType(I.getOperand(0), InstID, Vals))
2384f22ef01cSRoman Divacky         AbbrevToUse = FUNCTION_INST_BINOP_ABBREV;
23853ca95b02SDimitry Andric       pushValue(I.getOperand(1), InstID, Vals);
23863ca95b02SDimitry Andric       Vals.push_back(getEncodedBinaryOpcode(I.getOpcode()));
23873ca95b02SDimitry Andric       uint64_t Flags = getOptimizationFlags(&I);
2388f22ef01cSRoman Divacky       if (Flags != 0) {
2389f22ef01cSRoman Divacky         if (AbbrevToUse == FUNCTION_INST_BINOP_ABBREV)
2390f22ef01cSRoman Divacky           AbbrevToUse = FUNCTION_INST_BINOP_FLAGS_ABBREV;
2391f22ef01cSRoman Divacky         Vals.push_back(Flags);
2392f22ef01cSRoman Divacky       }
2393f22ef01cSRoman Divacky     }
2394f22ef01cSRoman Divacky     break;
2395f22ef01cSRoman Divacky 
2396ff0cc061SDimitry Andric   case Instruction::GetElementPtr: {
2397f22ef01cSRoman Divacky     Code = bitc::FUNC_CODE_INST_GEP;
2398ff0cc061SDimitry Andric     AbbrevToUse = FUNCTION_INST_GEP_ABBREV;
2399ff0cc061SDimitry Andric     auto &GEPInst = cast<GetElementPtrInst>(I);
2400ff0cc061SDimitry Andric     Vals.push_back(GEPInst.isInBounds());
2401ff0cc061SDimitry Andric     Vals.push_back(VE.getTypeID(GEPInst.getSourceElementType()));
2402f22ef01cSRoman Divacky     for (unsigned i = 0, e = I.getNumOperands(); i != e; ++i)
24033ca95b02SDimitry Andric       pushValueAndType(I.getOperand(i), InstID, Vals);
2404f22ef01cSRoman Divacky     break;
2405ff0cc061SDimitry Andric   }
2406f22ef01cSRoman Divacky   case Instruction::ExtractValue: {
2407f22ef01cSRoman Divacky     Code = bitc::FUNC_CODE_INST_EXTRACTVAL;
24083ca95b02SDimitry Andric     pushValueAndType(I.getOperand(0), InstID, Vals);
2409f22ef01cSRoman Divacky     const ExtractValueInst *EVI = cast<ExtractValueInst>(&I);
2410ff0cc061SDimitry Andric     Vals.append(EVI->idx_begin(), EVI->idx_end());
2411f22ef01cSRoman Divacky     break;
2412f22ef01cSRoman Divacky   }
2413f22ef01cSRoman Divacky   case Instruction::InsertValue: {
2414f22ef01cSRoman Divacky     Code = bitc::FUNC_CODE_INST_INSERTVAL;
24153ca95b02SDimitry Andric     pushValueAndType(I.getOperand(0), InstID, Vals);
24163ca95b02SDimitry Andric     pushValueAndType(I.getOperand(1), InstID, Vals);
2417f22ef01cSRoman Divacky     const InsertValueInst *IVI = cast<InsertValueInst>(&I);
2418ff0cc061SDimitry Andric     Vals.append(IVI->idx_begin(), IVI->idx_end());
2419f22ef01cSRoman Divacky     break;
2420f22ef01cSRoman Divacky   }
2421f22ef01cSRoman Divacky   case Instruction::Select:
2422f22ef01cSRoman Divacky     Code = bitc::FUNC_CODE_INST_VSELECT;
24233ca95b02SDimitry Andric     pushValueAndType(I.getOperand(1), InstID, Vals);
24243ca95b02SDimitry Andric     pushValue(I.getOperand(2), InstID, Vals);
24253ca95b02SDimitry Andric     pushValueAndType(I.getOperand(0), InstID, Vals);
2426f22ef01cSRoman Divacky     break;
2427f22ef01cSRoman Divacky   case Instruction::ExtractElement:
2428f22ef01cSRoman Divacky     Code = bitc::FUNC_CODE_INST_EXTRACTELT;
24293ca95b02SDimitry Andric     pushValueAndType(I.getOperand(0), InstID, Vals);
24303ca95b02SDimitry Andric     pushValueAndType(I.getOperand(1), InstID, Vals);
2431f22ef01cSRoman Divacky     break;
2432f22ef01cSRoman Divacky   case Instruction::InsertElement:
2433f22ef01cSRoman Divacky     Code = bitc::FUNC_CODE_INST_INSERTELT;
24343ca95b02SDimitry Andric     pushValueAndType(I.getOperand(0), InstID, Vals);
24353ca95b02SDimitry Andric     pushValue(I.getOperand(1), InstID, Vals);
24363ca95b02SDimitry Andric     pushValueAndType(I.getOperand(2), InstID, Vals);
2437f22ef01cSRoman Divacky     break;
2438f22ef01cSRoman Divacky   case Instruction::ShuffleVector:
2439f22ef01cSRoman Divacky     Code = bitc::FUNC_CODE_INST_SHUFFLEVEC;
24403ca95b02SDimitry Andric     pushValueAndType(I.getOperand(0), InstID, Vals);
24413ca95b02SDimitry Andric     pushValue(I.getOperand(1), InstID, Vals);
24423ca95b02SDimitry Andric     pushValue(I.getOperand(2), InstID, Vals);
2443f22ef01cSRoman Divacky     break;
2444f22ef01cSRoman Divacky   case Instruction::ICmp:
2445875ed548SDimitry Andric   case Instruction::FCmp: {
2446f22ef01cSRoman Divacky     // compare returning Int1Ty or vector of Int1Ty
2447f22ef01cSRoman Divacky     Code = bitc::FUNC_CODE_INST_CMP2;
24483ca95b02SDimitry Andric     pushValueAndType(I.getOperand(0), InstID, Vals);
24493ca95b02SDimitry Andric     pushValue(I.getOperand(1), InstID, Vals);
2450f22ef01cSRoman Divacky     Vals.push_back(cast<CmpInst>(I).getPredicate());
24513ca95b02SDimitry Andric     uint64_t Flags = getOptimizationFlags(&I);
2452875ed548SDimitry Andric     if (Flags != 0)
2453875ed548SDimitry Andric       Vals.push_back(Flags);
2454f22ef01cSRoman Divacky     break;
2455875ed548SDimitry Andric   }
2456f22ef01cSRoman Divacky 
2457f22ef01cSRoman Divacky   case Instruction::Ret:
2458f22ef01cSRoman Divacky     {
2459f22ef01cSRoman Divacky       Code = bitc::FUNC_CODE_INST_RET;
2460f22ef01cSRoman Divacky       unsigned NumOperands = I.getNumOperands();
2461f22ef01cSRoman Divacky       if (NumOperands == 0)
2462f22ef01cSRoman Divacky         AbbrevToUse = FUNCTION_INST_RET_VOID_ABBREV;
2463f22ef01cSRoman Divacky       else if (NumOperands == 1) {
24643ca95b02SDimitry Andric         if (!pushValueAndType(I.getOperand(0), InstID, Vals))
2465f22ef01cSRoman Divacky           AbbrevToUse = FUNCTION_INST_RET_VAL_ABBREV;
2466f22ef01cSRoman Divacky       } else {
2467f22ef01cSRoman Divacky         for (unsigned i = 0, e = NumOperands; i != e; ++i)
24683ca95b02SDimitry Andric           pushValueAndType(I.getOperand(i), InstID, Vals);
2469f22ef01cSRoman Divacky       }
2470f22ef01cSRoman Divacky     }
2471f22ef01cSRoman Divacky     break;
2472f22ef01cSRoman Divacky   case Instruction::Br:
2473f22ef01cSRoman Divacky     {
2474f22ef01cSRoman Divacky       Code = bitc::FUNC_CODE_INST_BR;
2475139f7f9bSDimitry Andric       const BranchInst &II = cast<BranchInst>(I);
2476f22ef01cSRoman Divacky       Vals.push_back(VE.getValueID(II.getSuccessor(0)));
2477f22ef01cSRoman Divacky       if (II.isConditional()) {
2478f22ef01cSRoman Divacky         Vals.push_back(VE.getValueID(II.getSuccessor(1)));
24793ca95b02SDimitry Andric         pushValue(II.getCondition(), InstID, Vals);
2480f22ef01cSRoman Divacky       }
2481f22ef01cSRoman Divacky     }
2482f22ef01cSRoman Divacky     break;
2483f22ef01cSRoman Divacky   case Instruction::Switch:
2484dff0c46cSDimitry Andric     {
2485f22ef01cSRoman Divacky       Code = bitc::FUNC_CODE_INST_SWITCH;
2486139f7f9bSDimitry Andric       const SwitchInst &SI = cast<SwitchInst>(I);
2487f785676fSDimitry Andric       Vals.push_back(VE.getTypeID(SI.getCondition()->getType()));
24883ca95b02SDimitry Andric       pushValue(SI.getCondition(), InstID, Vals);
2489f785676fSDimitry Andric       Vals.push_back(VE.getValueID(SI.getDefaultDest()));
24907a7e6055SDimitry Andric       for (auto Case : SI.cases()) {
24917d523365SDimitry Andric         Vals.push_back(VE.getValueID(Case.getCaseValue()));
24927d523365SDimitry Andric         Vals.push_back(VE.getValueID(Case.getCaseSuccessor()));
2493dff0c46cSDimitry Andric       }
2494dff0c46cSDimitry Andric     }
2495f22ef01cSRoman Divacky     break;
2496f22ef01cSRoman Divacky   case Instruction::IndirectBr:
2497f22ef01cSRoman Divacky     Code = bitc::FUNC_CODE_INST_INDIRECTBR;
2498f22ef01cSRoman Divacky     Vals.push_back(VE.getTypeID(I.getOperand(0)->getType()));
24993861d79fSDimitry Andric     // Encode the address operand as relative, but not the basic blocks.
25003ca95b02SDimitry Andric     pushValue(I.getOperand(0), InstID, Vals);
25013861d79fSDimitry Andric     for (unsigned i = 1, e = I.getNumOperands(); i != e; ++i)
2502f22ef01cSRoman Divacky       Vals.push_back(VE.getValueID(I.getOperand(i)));
2503f22ef01cSRoman Divacky     break;
2504f22ef01cSRoman Divacky 
2505f22ef01cSRoman Divacky   case Instruction::Invoke: {
2506f22ef01cSRoman Divacky     const InvokeInst *II = cast<InvokeInst>(&I);
2507ff0cc061SDimitry Andric     const Value *Callee = II->getCalledValue();
2508ff0cc061SDimitry Andric     FunctionType *FTy = II->getFunctionType();
25097d523365SDimitry Andric 
25107d523365SDimitry Andric     if (II->hasOperandBundles())
25113ca95b02SDimitry Andric       writeOperandBundles(II, InstID);
25127d523365SDimitry Andric 
2513f22ef01cSRoman Divacky     Code = bitc::FUNC_CODE_INST_INVOKE;
2514f22ef01cSRoman Divacky 
251551690af2SDimitry Andric     Vals.push_back(VE.getAttributeListID(II->getAttributes()));
2516ff0cc061SDimitry Andric     Vals.push_back(II->getCallingConv() | 1 << 13);
2517f22ef01cSRoman Divacky     Vals.push_back(VE.getValueID(II->getNormalDest()));
2518f22ef01cSRoman Divacky     Vals.push_back(VE.getValueID(II->getUnwindDest()));
2519ff0cc061SDimitry Andric     Vals.push_back(VE.getTypeID(FTy));
25203ca95b02SDimitry Andric     pushValueAndType(Callee, InstID, Vals);
2521f22ef01cSRoman Divacky 
2522f22ef01cSRoman Divacky     // Emit value #'s for the fixed parameters.
2523f22ef01cSRoman Divacky     for (unsigned i = 0, e = FTy->getNumParams(); i != e; ++i)
25243ca95b02SDimitry Andric       pushValue(I.getOperand(i), InstID, Vals); // fixed param.
2525f22ef01cSRoman Divacky 
2526f22ef01cSRoman Divacky     // Emit type/value pairs for varargs params.
2527f22ef01cSRoman Divacky     if (FTy->isVarArg()) {
2528d88c1a5aSDimitry Andric       for (unsigned i = FTy->getNumParams(), e = II->getNumArgOperands();
2529f22ef01cSRoman Divacky            i != e; ++i)
25303ca95b02SDimitry Andric         pushValueAndType(I.getOperand(i), InstID, Vals); // vararg
2531f22ef01cSRoman Divacky     }
2532f22ef01cSRoman Divacky     break;
2533f22ef01cSRoman Divacky   }
25346122f3e6SDimitry Andric   case Instruction::Resume:
25356122f3e6SDimitry Andric     Code = bitc::FUNC_CODE_INST_RESUME;
25363ca95b02SDimitry Andric     pushValueAndType(I.getOperand(0), InstID, Vals);
25376122f3e6SDimitry Andric     break;
25387d523365SDimitry Andric   case Instruction::CleanupRet: {
25397d523365SDimitry Andric     Code = bitc::FUNC_CODE_INST_CLEANUPRET;
25407d523365SDimitry Andric     const auto &CRI = cast<CleanupReturnInst>(I);
25413ca95b02SDimitry Andric     pushValue(CRI.getCleanupPad(), InstID, Vals);
25427d523365SDimitry Andric     if (CRI.hasUnwindDest())
25437d523365SDimitry Andric       Vals.push_back(VE.getValueID(CRI.getUnwindDest()));
25447d523365SDimitry Andric     break;
25457d523365SDimitry Andric   }
25467d523365SDimitry Andric   case Instruction::CatchRet: {
25477d523365SDimitry Andric     Code = bitc::FUNC_CODE_INST_CATCHRET;
25487d523365SDimitry Andric     const auto &CRI = cast<CatchReturnInst>(I);
25493ca95b02SDimitry Andric     pushValue(CRI.getCatchPad(), InstID, Vals);
25507d523365SDimitry Andric     Vals.push_back(VE.getValueID(CRI.getSuccessor()));
25517d523365SDimitry Andric     break;
25527d523365SDimitry Andric   }
25537d523365SDimitry Andric   case Instruction::CleanupPad:
25547d523365SDimitry Andric   case Instruction::CatchPad: {
25557d523365SDimitry Andric     const auto &FuncletPad = cast<FuncletPadInst>(I);
25567d523365SDimitry Andric     Code = isa<CatchPadInst>(FuncletPad) ? bitc::FUNC_CODE_INST_CATCHPAD
25577d523365SDimitry Andric                                          : bitc::FUNC_CODE_INST_CLEANUPPAD;
25583ca95b02SDimitry Andric     pushValue(FuncletPad.getParentPad(), InstID, Vals);
25597d523365SDimitry Andric 
25607d523365SDimitry Andric     unsigned NumArgOperands = FuncletPad.getNumArgOperands();
25617d523365SDimitry Andric     Vals.push_back(NumArgOperands);
25627d523365SDimitry Andric     for (unsigned Op = 0; Op != NumArgOperands; ++Op)
25633ca95b02SDimitry Andric       pushValueAndType(FuncletPad.getArgOperand(Op), InstID, Vals);
25647d523365SDimitry Andric     break;
25657d523365SDimitry Andric   }
25667d523365SDimitry Andric   case Instruction::CatchSwitch: {
25677d523365SDimitry Andric     Code = bitc::FUNC_CODE_INST_CATCHSWITCH;
25687d523365SDimitry Andric     const auto &CatchSwitch = cast<CatchSwitchInst>(I);
25697d523365SDimitry Andric 
25703ca95b02SDimitry Andric     pushValue(CatchSwitch.getParentPad(), InstID, Vals);
25717d523365SDimitry Andric 
25727d523365SDimitry Andric     unsigned NumHandlers = CatchSwitch.getNumHandlers();
25737d523365SDimitry Andric     Vals.push_back(NumHandlers);
25747d523365SDimitry Andric     for (const BasicBlock *CatchPadBB : CatchSwitch.handlers())
25757d523365SDimitry Andric       Vals.push_back(VE.getValueID(CatchPadBB));
25767d523365SDimitry Andric 
25777d523365SDimitry Andric     if (CatchSwitch.hasUnwindDest())
25787d523365SDimitry Andric       Vals.push_back(VE.getValueID(CatchSwitch.getUnwindDest()));
25797d523365SDimitry Andric     break;
25807d523365SDimitry Andric   }
2581f22ef01cSRoman Divacky   case Instruction::Unreachable:
2582f22ef01cSRoman Divacky     Code = bitc::FUNC_CODE_INST_UNREACHABLE;
2583f22ef01cSRoman Divacky     AbbrevToUse = FUNCTION_INST_UNREACHABLE_ABBREV;
2584f22ef01cSRoman Divacky     break;
2585f22ef01cSRoman Divacky 
258617a519f9SDimitry Andric   case Instruction::PHI: {
258717a519f9SDimitry Andric     const PHINode &PN = cast<PHINode>(I);
2588f22ef01cSRoman Divacky     Code = bitc::FUNC_CODE_INST_PHI;
25893861d79fSDimitry Andric     // With the newer instruction encoding, forward references could give
25903861d79fSDimitry Andric     // negative valued IDs.  This is most common for PHIs, so we use
25913861d79fSDimitry Andric     // signed VBRs.
25923861d79fSDimitry Andric     SmallVector<uint64_t, 128> Vals64;
25933861d79fSDimitry Andric     Vals64.push_back(VE.getTypeID(PN.getType()));
259417a519f9SDimitry Andric     for (unsigned i = 0, e = PN.getNumIncomingValues(); i != e; ++i) {
25953ca95b02SDimitry Andric       pushValueSigned(PN.getIncomingValue(i), InstID, Vals64);
25963861d79fSDimitry Andric       Vals64.push_back(VE.getValueID(PN.getIncomingBlock(i)));
259717a519f9SDimitry Andric     }
25983861d79fSDimitry Andric     // Emit a Vals64 vector and exit.
25993861d79fSDimitry Andric     Stream.EmitRecord(Code, Vals64, AbbrevToUse);
26003861d79fSDimitry Andric     Vals64.clear();
26013861d79fSDimitry Andric     return;
260217a519f9SDimitry Andric   }
2603f22ef01cSRoman Divacky 
26046122f3e6SDimitry Andric   case Instruction::LandingPad: {
26056122f3e6SDimitry Andric     const LandingPadInst &LP = cast<LandingPadInst>(I);
26066122f3e6SDimitry Andric     Code = bitc::FUNC_CODE_INST_LANDINGPAD;
26076122f3e6SDimitry Andric     Vals.push_back(VE.getTypeID(LP.getType()));
26086122f3e6SDimitry Andric     Vals.push_back(LP.isCleanup());
26096122f3e6SDimitry Andric     Vals.push_back(LP.getNumClauses());
26106122f3e6SDimitry Andric     for (unsigned I = 0, E = LP.getNumClauses(); I != E; ++I) {
26116122f3e6SDimitry Andric       if (LP.isCatch(I))
26126122f3e6SDimitry Andric         Vals.push_back(LandingPadInst::Catch);
26136122f3e6SDimitry Andric       else
26146122f3e6SDimitry Andric         Vals.push_back(LandingPadInst::Filter);
26153ca95b02SDimitry Andric       pushValueAndType(LP.getClause(I), InstID, Vals);
26166122f3e6SDimitry Andric     }
26176122f3e6SDimitry Andric     break;
26186122f3e6SDimitry Andric   }
26196122f3e6SDimitry Andric 
262091bc56edSDimitry Andric   case Instruction::Alloca: {
2621f22ef01cSRoman Divacky     Code = bitc::FUNC_CODE_INST_ALLOCA;
2622ff0cc061SDimitry Andric     const AllocaInst &AI = cast<AllocaInst>(I);
2623ff0cc061SDimitry Andric     Vals.push_back(VE.getTypeID(AI.getAllocatedType()));
2624ffd1746dSEd Schouten     Vals.push_back(VE.getTypeID(I.getOperand(0)->getType()));
2625f22ef01cSRoman Divacky     Vals.push_back(VE.getValueID(I.getOperand(0))); // size.
262691bc56edSDimitry Andric     unsigned AlignRecord = Log2_32(AI.getAlignment()) + 1;
262791bc56edSDimitry Andric     assert(Log2_32(Value::MaximumAlignment) + 1 < 1 << 5 &&
262891bc56edSDimitry Andric            "not enough bits for maximum alignment");
262991bc56edSDimitry Andric     assert(AlignRecord < 1 << 5 && "alignment greater than 1 << 64");
263091bc56edSDimitry Andric     AlignRecord |= AI.isUsedWithInAlloca() << 5;
2631ff0cc061SDimitry Andric     AlignRecord |= 1 << 6;
26323ca95b02SDimitry Andric     AlignRecord |= AI.isSwiftError() << 7;
263391bc56edSDimitry Andric     Vals.push_back(AlignRecord);
2634f22ef01cSRoman Divacky     break;
263591bc56edSDimitry Andric   }
2636f22ef01cSRoman Divacky 
2637f22ef01cSRoman Divacky   case Instruction::Load:
26386122f3e6SDimitry Andric     if (cast<LoadInst>(I).isAtomic()) {
26396122f3e6SDimitry Andric       Code = bitc::FUNC_CODE_INST_LOADATOMIC;
26403ca95b02SDimitry Andric       pushValueAndType(I.getOperand(0), InstID, Vals);
26416122f3e6SDimitry Andric     } else {
2642f22ef01cSRoman Divacky       Code = bitc::FUNC_CODE_INST_LOAD;
26433ca95b02SDimitry Andric       if (!pushValueAndType(I.getOperand(0), InstID, Vals)) // ptr
2644f22ef01cSRoman Divacky         AbbrevToUse = FUNCTION_INST_LOAD_ABBREV;
26456122f3e6SDimitry Andric     }
2646ff0cc061SDimitry Andric     Vals.push_back(VE.getTypeID(I.getType()));
2647f22ef01cSRoman Divacky     Vals.push_back(Log2_32(cast<LoadInst>(I).getAlignment())+1);
2648f22ef01cSRoman Divacky     Vals.push_back(cast<LoadInst>(I).isVolatile());
26496122f3e6SDimitry Andric     if (cast<LoadInst>(I).isAtomic()) {
26503ca95b02SDimitry Andric       Vals.push_back(getEncodedOrdering(cast<LoadInst>(I).getOrdering()));
26513ca95b02SDimitry Andric       Vals.push_back(getEncodedSynchScope(cast<LoadInst>(I).getSynchScope()));
26526122f3e6SDimitry Andric     }
2653f22ef01cSRoman Divacky     break;
2654f22ef01cSRoman Divacky   case Instruction::Store:
26556122f3e6SDimitry Andric     if (cast<StoreInst>(I).isAtomic())
26566122f3e6SDimitry Andric       Code = bitc::FUNC_CODE_INST_STOREATOMIC;
26576122f3e6SDimitry Andric     else
265817a519f9SDimitry Andric       Code = bitc::FUNC_CODE_INST_STORE;
26593ca95b02SDimitry Andric     pushValueAndType(I.getOperand(1), InstID, Vals); // ptrty + ptr
26603ca95b02SDimitry Andric     pushValueAndType(I.getOperand(0), InstID, Vals); // valty + val
2661f22ef01cSRoman Divacky     Vals.push_back(Log2_32(cast<StoreInst>(I).getAlignment())+1);
2662f22ef01cSRoman Divacky     Vals.push_back(cast<StoreInst>(I).isVolatile());
26636122f3e6SDimitry Andric     if (cast<StoreInst>(I).isAtomic()) {
26643ca95b02SDimitry Andric       Vals.push_back(getEncodedOrdering(cast<StoreInst>(I).getOrdering()));
26653ca95b02SDimitry Andric       Vals.push_back(getEncodedSynchScope(cast<StoreInst>(I).getSynchScope()));
26666122f3e6SDimitry Andric     }
26676122f3e6SDimitry Andric     break;
26686122f3e6SDimitry Andric   case Instruction::AtomicCmpXchg:
26696122f3e6SDimitry Andric     Code = bitc::FUNC_CODE_INST_CMPXCHG;
26703ca95b02SDimitry Andric     pushValueAndType(I.getOperand(0), InstID, Vals); // ptrty + ptr
26713ca95b02SDimitry Andric     pushValueAndType(I.getOperand(1), InstID, Vals); // cmp.
26723ca95b02SDimitry Andric     pushValue(I.getOperand(2), InstID, Vals);        // newval.
26736122f3e6SDimitry Andric     Vals.push_back(cast<AtomicCmpXchgInst>(I).isVolatile());
26743ca95b02SDimitry Andric     Vals.push_back(
26753ca95b02SDimitry Andric         getEncodedOrdering(cast<AtomicCmpXchgInst>(I).getSuccessOrdering()));
26763ca95b02SDimitry Andric     Vals.push_back(
26773ca95b02SDimitry Andric         getEncodedSynchScope(cast<AtomicCmpXchgInst>(I).getSynchScope()));
26783ca95b02SDimitry Andric     Vals.push_back(
26793ca95b02SDimitry Andric         getEncodedOrdering(cast<AtomicCmpXchgInst>(I).getFailureOrdering()));
268091bc56edSDimitry Andric     Vals.push_back(cast<AtomicCmpXchgInst>(I).isWeak());
26816122f3e6SDimitry Andric     break;
26826122f3e6SDimitry Andric   case Instruction::AtomicRMW:
26836122f3e6SDimitry Andric     Code = bitc::FUNC_CODE_INST_ATOMICRMW;
26843ca95b02SDimitry Andric     pushValueAndType(I.getOperand(0), InstID, Vals); // ptrty + ptr
26853ca95b02SDimitry Andric     pushValue(I.getOperand(1), InstID, Vals);        // val.
26863ca95b02SDimitry Andric     Vals.push_back(
26873ca95b02SDimitry Andric         getEncodedRMWOperation(cast<AtomicRMWInst>(I).getOperation()));
26886122f3e6SDimitry Andric     Vals.push_back(cast<AtomicRMWInst>(I).isVolatile());
26893ca95b02SDimitry Andric     Vals.push_back(getEncodedOrdering(cast<AtomicRMWInst>(I).getOrdering()));
26903ca95b02SDimitry Andric     Vals.push_back(
26913ca95b02SDimitry Andric         getEncodedSynchScope(cast<AtomicRMWInst>(I).getSynchScope()));
26926122f3e6SDimitry Andric     break;
26936122f3e6SDimitry Andric   case Instruction::Fence:
26946122f3e6SDimitry Andric     Code = bitc::FUNC_CODE_INST_FENCE;
26953ca95b02SDimitry Andric     Vals.push_back(getEncodedOrdering(cast<FenceInst>(I).getOrdering()));
26963ca95b02SDimitry Andric     Vals.push_back(getEncodedSynchScope(cast<FenceInst>(I).getSynchScope()));
2697f22ef01cSRoman Divacky     break;
2698f22ef01cSRoman Divacky   case Instruction::Call: {
2699ffd1746dSEd Schouten     const CallInst &CI = cast<CallInst>(I);
2700ff0cc061SDimitry Andric     FunctionType *FTy = CI.getFunctionType();
2701f22ef01cSRoman Divacky 
27027d523365SDimitry Andric     if (CI.hasOperandBundles())
27033ca95b02SDimitry Andric       writeOperandBundles(&CI, InstID);
27047d523365SDimitry Andric 
270517a519f9SDimitry Andric     Code = bitc::FUNC_CODE_INST_CALL;
2706f22ef01cSRoman Divacky 
270751690af2SDimitry Andric     Vals.push_back(VE.getAttributeListID(CI.getAttributes()));
27087d523365SDimitry Andric 
27093ca95b02SDimitry Andric     unsigned Flags = getOptimizationFlags(&I);
27107d523365SDimitry Andric     Vals.push_back(CI.getCallingConv() << bitc::CALL_CCONV |
27117d523365SDimitry Andric                    unsigned(CI.isTailCall()) << bitc::CALL_TAIL |
27127d523365SDimitry Andric                    unsigned(CI.isMustTailCall()) << bitc::CALL_MUSTTAIL |
27137d523365SDimitry Andric                    1 << bitc::CALL_EXPLICIT_TYPE |
27147d523365SDimitry Andric                    unsigned(CI.isNoTailCall()) << bitc::CALL_NOTAIL |
27157d523365SDimitry Andric                    unsigned(Flags != 0) << bitc::CALL_FMF);
27167d523365SDimitry Andric     if (Flags != 0)
27177d523365SDimitry Andric       Vals.push_back(Flags);
27187d523365SDimitry Andric 
2719ff0cc061SDimitry Andric     Vals.push_back(VE.getTypeID(FTy));
27203ca95b02SDimitry Andric     pushValueAndType(CI.getCalledValue(), InstID, Vals); // Callee
2721f22ef01cSRoman Divacky 
2722f22ef01cSRoman Divacky     // Emit value #'s for the fixed parameters.
27233861d79fSDimitry Andric     for (unsigned i = 0, e = FTy->getNumParams(); i != e; ++i) {
27243861d79fSDimitry Andric       // Check for labels (can happen with asm labels).
27253861d79fSDimitry Andric       if (FTy->getParamType(i)->isLabelTy())
27263861d79fSDimitry Andric         Vals.push_back(VE.getValueID(CI.getArgOperand(i)));
27273861d79fSDimitry Andric       else
27283ca95b02SDimitry Andric         pushValue(CI.getArgOperand(i), InstID, Vals); // fixed param.
27293861d79fSDimitry Andric     }
2730f22ef01cSRoman Divacky 
2731f22ef01cSRoman Divacky     // Emit type/value pairs for varargs params.
2732f22ef01cSRoman Divacky     if (FTy->isVarArg()) {
2733ffd1746dSEd Schouten       for (unsigned i = FTy->getNumParams(), e = CI.getNumArgOperands();
2734f22ef01cSRoman Divacky            i != e; ++i)
27353ca95b02SDimitry Andric         pushValueAndType(CI.getArgOperand(i), InstID, Vals); // varargs
2736f22ef01cSRoman Divacky     }
2737f22ef01cSRoman Divacky     break;
2738f22ef01cSRoman Divacky   }
2739f22ef01cSRoman Divacky   case Instruction::VAArg:
2740f22ef01cSRoman Divacky     Code = bitc::FUNC_CODE_INST_VAARG;
2741f22ef01cSRoman Divacky     Vals.push_back(VE.getTypeID(I.getOperand(0)->getType()));   // valistty
27423ca95b02SDimitry Andric     pushValue(I.getOperand(0), InstID, Vals);                   // valist.
2743f22ef01cSRoman Divacky     Vals.push_back(VE.getTypeID(I.getType())); // restype.
2744f22ef01cSRoman Divacky     break;
2745f22ef01cSRoman Divacky   }
2746f22ef01cSRoman Divacky 
2747f22ef01cSRoman Divacky   Stream.EmitRecord(Code, Vals, AbbrevToUse);
2748f22ef01cSRoman Divacky   Vals.clear();
2749f22ef01cSRoman Divacky }
2750f22ef01cSRoman Divacky 
27516bc11b14SDimitry Andric /// Write a GlobalValue VST to the module. The purpose of this data structure is
27526bc11b14SDimitry Andric /// to allow clients to efficiently find the function body.
27536bc11b14SDimitry Andric void ModuleBitcodeWriter::writeGlobalValueSymbolTable(
27546bc11b14SDimitry Andric   DenseMap<const Function *, uint64_t> &FunctionToBitcodeIndex) {
27557d523365SDimitry Andric   // Get the offset of the VST we are writing, and backpatch it into
27567d523365SDimitry Andric   // the VST forward declaration record.
27577d523365SDimitry Andric   uint64_t VSTOffset = Stream.GetCurrentBitNo();
2758d88c1a5aSDimitry Andric   // The BitcodeStartBit was the stream offset of the identification block.
27593ca95b02SDimitry Andric   VSTOffset -= bitcodeStartBit();
27607d523365SDimitry Andric   assert((VSTOffset & 31) == 0 && "VST block not 32-bit aligned");
2761d88c1a5aSDimitry Andric   // Note that we add 1 here because the offset is relative to one word
2762d88c1a5aSDimitry Andric   // before the start of the identification block, which was historically
2763d88c1a5aSDimitry Andric   // always the start of the regular bitcode header.
2764d88c1a5aSDimitry Andric   Stream.BackpatchWord(VSTOffsetPlaceholder, VSTOffset / 32 + 1);
27657d523365SDimitry Andric 
2766f22ef01cSRoman Divacky   Stream.EnterSubblock(bitc::VALUE_SYMTAB_BLOCK_ID, 4);
2767f22ef01cSRoman Divacky 
276895ec533aSDimitry Andric   auto Abbv = std::make_shared<BitCodeAbbrev>();
27697d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::VST_CODE_FNENTRY));
27707d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8)); // value id
27717d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8)); // funcoffset
27726bc11b14SDimitry Andric   unsigned FnEntryAbbrev = Stream.EmitAbbrev(std::move(Abbv));
27737d523365SDimitry Andric 
27746bc11b14SDimitry Andric   for (const Function &F : M) {
27756bc11b14SDimitry Andric     uint64_t Record[2];
27767d523365SDimitry Andric 
27776bc11b14SDimitry Andric     if (F.isDeclaration())
27786bc11b14SDimitry Andric       continue;
27793ca95b02SDimitry Andric 
27806bc11b14SDimitry Andric     Record[0] = VE.getValueID(&F);
27816bc11b14SDimitry Andric 
27826bc11b14SDimitry Andric     // Save the word offset of the function (from the start of the
27836bc11b14SDimitry Andric     // actual bitcode written to the stream).
27846bc11b14SDimitry Andric     uint64_t BitcodeIndex = FunctionToBitcodeIndex[&F] - bitcodeStartBit();
27856bc11b14SDimitry Andric     assert((BitcodeIndex & 31) == 0 && "function block not 32-bit aligned");
27866bc11b14SDimitry Andric     // Note that we add 1 here because the offset is relative to one word
27876bc11b14SDimitry Andric     // before the start of the identification block, which was historically
27886bc11b14SDimitry Andric     // always the start of the regular bitcode header.
27896bc11b14SDimitry Andric     Record[1] = BitcodeIndex / 32 + 1;
27906bc11b14SDimitry Andric 
27916bc11b14SDimitry Andric     Stream.EmitRecord(bitc::VST_CODE_FNENTRY, Record, FnEntryAbbrev);
27927d523365SDimitry Andric   }
27937d523365SDimitry Andric 
27946bc11b14SDimitry Andric   Stream.ExitBlock();
27956bc11b14SDimitry Andric }
27966bc11b14SDimitry Andric 
27976bc11b14SDimitry Andric /// Emit names for arguments, instructions and basic blocks in a function.
27986bc11b14SDimitry Andric void ModuleBitcodeWriter::writeFunctionLevelValueSymbolTable(
27996bc11b14SDimitry Andric     const ValueSymbolTable &VST) {
28006bc11b14SDimitry Andric   if (VST.empty())
28016bc11b14SDimitry Andric     return;
28026bc11b14SDimitry Andric 
28036bc11b14SDimitry Andric   Stream.EnterSubblock(bitc::VALUE_SYMTAB_BLOCK_ID, 4);
28046bc11b14SDimitry Andric 
2805f22ef01cSRoman Divacky   // FIXME: Set up the abbrev, we know how many values there are!
2806f22ef01cSRoman Divacky   // FIXME: We know if the type names can use 7-bit ascii.
28073ca95b02SDimitry Andric   SmallVector<uint64_t, 64> NameVals;
2808f22ef01cSRoman Divacky 
28097d523365SDimitry Andric   for (const ValueName &Name : VST) {
2810f22ef01cSRoman Divacky     // Figure out the encoding to use for the name.
28116d97bb29SDimitry Andric     StringEncoding Bits = getStringEncoding(Name.getKey());
2812f22ef01cSRoman Divacky 
2813f22ef01cSRoman Divacky     unsigned AbbrevToUse = VST_ENTRY_8_ABBREV;
28147d523365SDimitry Andric     NameVals.push_back(VE.getValueID(Name.getValue()));
28157d523365SDimitry Andric 
28163ca95b02SDimitry Andric     // VST_CODE_ENTRY:   [valueid, namechar x N]
28173ca95b02SDimitry Andric     // VST_CODE_BBENTRY: [bbid, namechar x N]
2818f22ef01cSRoman Divacky     unsigned Code;
28197d523365SDimitry Andric     if (isa<BasicBlock>(Name.getValue())) {
2820f22ef01cSRoman Divacky       Code = bitc::VST_CODE_BBENTRY;
28217d523365SDimitry Andric       if (Bits == SE_Char6)
2822f22ef01cSRoman Divacky         AbbrevToUse = VST_BBENTRY_6_ABBREV;
2823f22ef01cSRoman Divacky     } else {
2824f22ef01cSRoman Divacky       Code = bitc::VST_CODE_ENTRY;
28257d523365SDimitry Andric       if (Bits == SE_Char6)
2826f22ef01cSRoman Divacky         AbbrevToUse = VST_ENTRY_6_ABBREV;
28277d523365SDimitry Andric       else if (Bits == SE_Fixed7)
2828f22ef01cSRoman Divacky         AbbrevToUse = VST_ENTRY_7_ABBREV;
2829f22ef01cSRoman Divacky     }
2830f22ef01cSRoman Divacky 
28317d523365SDimitry Andric     for (const auto P : Name.getKey())
28327d523365SDimitry Andric       NameVals.push_back((unsigned char)P);
2833f22ef01cSRoman Divacky 
2834f22ef01cSRoman Divacky     // Emit the finished record.
2835f22ef01cSRoman Divacky     Stream.EmitRecord(Code, NameVals, AbbrevToUse);
2836f22ef01cSRoman Divacky     NameVals.clear();
2837f22ef01cSRoman Divacky   }
2838f22ef01cSRoman Divacky 
28397d523365SDimitry Andric   Stream.ExitBlock();
28407d523365SDimitry Andric }
28417d523365SDimitry Andric 
28423ca95b02SDimitry Andric void ModuleBitcodeWriter::writeUseList(UseListOrder &&Order) {
284339d628a0SDimitry Andric   assert(Order.Shuffle.size() >= 2 && "Shuffle too small");
284439d628a0SDimitry Andric   unsigned Code;
284539d628a0SDimitry Andric   if (isa<BasicBlock>(Order.V))
284639d628a0SDimitry Andric     Code = bitc::USELIST_CODE_BB;
284739d628a0SDimitry Andric   else
284839d628a0SDimitry Andric     Code = bitc::USELIST_CODE_DEFAULT;
284939d628a0SDimitry Andric 
2850ff0cc061SDimitry Andric   SmallVector<uint64_t, 64> Record(Order.Shuffle.begin(), Order.Shuffle.end());
285139d628a0SDimitry Andric   Record.push_back(VE.getValueID(Order.V));
285239d628a0SDimitry Andric   Stream.EmitRecord(Code, Record);
285339d628a0SDimitry Andric }
285439d628a0SDimitry Andric 
28553ca95b02SDimitry Andric void ModuleBitcodeWriter::writeUseListBlock(const Function *F) {
2856ff0cc061SDimitry Andric   assert(VE.shouldPreserveUseListOrder() &&
2857ff0cc061SDimitry Andric          "Expected to be preserving use-list order");
2858ff0cc061SDimitry Andric 
285939d628a0SDimitry Andric   auto hasMore = [&]() {
286039d628a0SDimitry Andric     return !VE.UseListOrders.empty() && VE.UseListOrders.back().F == F;
286139d628a0SDimitry Andric   };
286239d628a0SDimitry Andric   if (!hasMore())
286339d628a0SDimitry Andric     // Nothing to do.
286439d628a0SDimitry Andric     return;
286539d628a0SDimitry Andric 
286639d628a0SDimitry Andric   Stream.EnterSubblock(bitc::USELIST_BLOCK_ID, 3);
286739d628a0SDimitry Andric   while (hasMore()) {
28683ca95b02SDimitry Andric     writeUseList(std::move(VE.UseListOrders.back()));
286939d628a0SDimitry Andric     VE.UseListOrders.pop_back();
287039d628a0SDimitry Andric   }
287139d628a0SDimitry Andric   Stream.ExitBlock();
287239d628a0SDimitry Andric }
287339d628a0SDimitry Andric 
28747d523365SDimitry Andric /// Emit a function body to the module stream.
28753ca95b02SDimitry Andric void ModuleBitcodeWriter::writeFunction(
28763ca95b02SDimitry Andric     const Function &F,
28773ca95b02SDimitry Andric     DenseMap<const Function *, uint64_t> &FunctionToBitcodeIndex) {
28787d523365SDimitry Andric   // Save the bitcode index of the start of this function block for recording
28797d523365SDimitry Andric   // in the VST.
28803ca95b02SDimitry Andric   FunctionToBitcodeIndex[&F] = Stream.GetCurrentBitNo();
28817d523365SDimitry Andric 
2882f22ef01cSRoman Divacky   Stream.EnterSubblock(bitc::FUNCTION_BLOCK_ID, 4);
2883f22ef01cSRoman Divacky   VE.incorporateFunction(F);
2884f22ef01cSRoman Divacky 
2885f22ef01cSRoman Divacky   SmallVector<unsigned, 64> Vals;
2886f22ef01cSRoman Divacky 
2887f22ef01cSRoman Divacky   // Emit the number of basic blocks, so the reader can create them ahead of
2888f22ef01cSRoman Divacky   // time.
2889f22ef01cSRoman Divacky   Vals.push_back(VE.getBasicBlocks().size());
2890f22ef01cSRoman Divacky   Stream.EmitRecord(bitc::FUNC_CODE_DECLAREBLOCKS, Vals);
2891f22ef01cSRoman Divacky   Vals.clear();
2892f22ef01cSRoman Divacky 
2893f22ef01cSRoman Divacky   // If there are function-local constants, emit them now.
2894f22ef01cSRoman Divacky   unsigned CstStart, CstEnd;
2895f22ef01cSRoman Divacky   VE.getFunctionConstantRange(CstStart, CstEnd);
28963ca95b02SDimitry Andric   writeConstants(CstStart, CstEnd, false);
2897f22ef01cSRoman Divacky 
2898f22ef01cSRoman Divacky   // If there is function-local metadata, emit it now.
28993ca95b02SDimitry Andric   writeFunctionMetadata(F);
2900f22ef01cSRoman Divacky 
2901f22ef01cSRoman Divacky   // Keep a running idea of what the instruction ID is.
2902f22ef01cSRoman Divacky   unsigned InstID = CstEnd;
2903f22ef01cSRoman Divacky 
2904ff0cc061SDimitry Andric   bool NeedsMetadataAttachment = F.hasMetadata();
2905f22ef01cSRoman Divacky 
2906ff0cc061SDimitry Andric   DILocation *LastDL = nullptr;
2907f22ef01cSRoman Divacky   // Finally, emit all the instructions, in order.
2908f22ef01cSRoman Divacky   for (Function::const_iterator BB = F.begin(), E = F.end(); BB != E; ++BB)
2909f22ef01cSRoman Divacky     for (BasicBlock::const_iterator I = BB->begin(), E = BB->end();
2910f22ef01cSRoman Divacky          I != E; ++I) {
29113ca95b02SDimitry Andric       writeInstruction(*I, InstID, Vals);
29127d523365SDimitry Andric 
2913f22ef01cSRoman Divacky       if (!I->getType()->isVoidTy())
2914f22ef01cSRoman Divacky         ++InstID;
2915f22ef01cSRoman Divacky 
2916f22ef01cSRoman Divacky       // If the instruction has metadata, write a metadata attachment later.
2917f22ef01cSRoman Divacky       NeedsMetadataAttachment |= I->hasMetadataOtherThanDebugLoc();
2918f22ef01cSRoman Divacky 
2919f22ef01cSRoman Divacky       // If the instruction has a debug location, emit it.
2920ff0cc061SDimitry Andric       DILocation *DL = I->getDebugLoc();
2921ff0cc061SDimitry Andric       if (!DL)
2922ff0cc061SDimitry Andric         continue;
2923ff0cc061SDimitry Andric 
2924ff0cc061SDimitry Andric       if (DL == LastDL) {
2925f22ef01cSRoman Divacky         // Just repeat the same debug loc as last time.
2926f22ef01cSRoman Divacky         Stream.EmitRecord(bitc::FUNC_CODE_DEBUG_LOC_AGAIN, Vals);
2927ff0cc061SDimitry Andric         continue;
2928ff0cc061SDimitry Andric       }
2929f22ef01cSRoman Divacky 
2930ff0cc061SDimitry Andric       Vals.push_back(DL->getLine());
2931ff0cc061SDimitry Andric       Vals.push_back(DL->getColumn());
2932ff0cc061SDimitry Andric       Vals.push_back(VE.getMetadataOrNullID(DL->getScope()));
2933ff0cc061SDimitry Andric       Vals.push_back(VE.getMetadataOrNullID(DL->getInlinedAt()));
293417a519f9SDimitry Andric       Stream.EmitRecord(bitc::FUNC_CODE_DEBUG_LOC, Vals);
2935f22ef01cSRoman Divacky       Vals.clear();
2936f22ef01cSRoman Divacky 
2937f22ef01cSRoman Divacky       LastDL = DL;
2938f22ef01cSRoman Divacky     }
2939f22ef01cSRoman Divacky 
2940f22ef01cSRoman Divacky   // Emit names for all the instructions etc.
2941d88c1a5aSDimitry Andric   if (auto *Symtab = F.getValueSymbolTable())
29426bc11b14SDimitry Andric     writeFunctionLevelValueSymbolTable(*Symtab);
2943f22ef01cSRoman Divacky 
2944f22ef01cSRoman Divacky   if (NeedsMetadataAttachment)
29453ca95b02SDimitry Andric     writeFunctionMetadataAttachment(F);
2946ff0cc061SDimitry Andric   if (VE.shouldPreserveUseListOrder())
29473ca95b02SDimitry Andric     writeUseListBlock(&F);
2948f22ef01cSRoman Divacky   VE.purgeFunction();
2949f22ef01cSRoman Divacky   Stream.ExitBlock();
2950f22ef01cSRoman Divacky }
2951f22ef01cSRoman Divacky 
2952f22ef01cSRoman Divacky // Emit blockinfo, which defines the standard abbreviations etc.
29533ca95b02SDimitry Andric void ModuleBitcodeWriter::writeBlockInfo() {
2954f22ef01cSRoman Divacky   // We only want to emit block info records for blocks that have multiple
29553861d79fSDimitry Andric   // instances: CONSTANTS_BLOCK, FUNCTION_BLOCK and VALUE_SYMTAB_BLOCK.
29563861d79fSDimitry Andric   // Other blocks can define their abbrevs inline.
2957d88c1a5aSDimitry Andric   Stream.EnterBlockInfoBlock();
2958f22ef01cSRoman Divacky 
29593ca95b02SDimitry Andric   { // 8-bit fixed-width VST_CODE_ENTRY/VST_CODE_BBENTRY strings.
296095ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
2961f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 3));
2962f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
2963f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
2964f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 8));
29653ca95b02SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::VALUE_SYMTAB_BLOCK_ID, Abbv) !=
29663ca95b02SDimitry Andric         VST_ENTRY_8_ABBREV)
2967f22ef01cSRoman Divacky       llvm_unreachable("Unexpected abbrev ordering!");
2968f22ef01cSRoman Divacky   }
2969f22ef01cSRoman Divacky 
29703ca95b02SDimitry Andric   { // 7-bit fixed width VST_CODE_ENTRY strings.
297195ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
2972f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::VST_CODE_ENTRY));
2973f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
2974f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
2975f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 7));
29763ca95b02SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::VALUE_SYMTAB_BLOCK_ID, Abbv) !=
29773ca95b02SDimitry Andric         VST_ENTRY_7_ABBREV)
2978f22ef01cSRoman Divacky       llvm_unreachable("Unexpected abbrev ordering!");
2979f22ef01cSRoman Divacky   }
29803ca95b02SDimitry Andric   { // 6-bit char6 VST_CODE_ENTRY strings.
298195ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
2982f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::VST_CODE_ENTRY));
2983f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
2984f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
2985f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Char6));
29863ca95b02SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::VALUE_SYMTAB_BLOCK_ID, Abbv) !=
29873ca95b02SDimitry Andric         VST_ENTRY_6_ABBREV)
2988f22ef01cSRoman Divacky       llvm_unreachable("Unexpected abbrev ordering!");
2989f22ef01cSRoman Divacky   }
29903ca95b02SDimitry Andric   { // 6-bit char6 VST_CODE_BBENTRY strings.
299195ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
2992f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::VST_CODE_BBENTRY));
2993f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
2994f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
2995f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Char6));
29963ca95b02SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::VALUE_SYMTAB_BLOCK_ID, Abbv) !=
29973ca95b02SDimitry Andric         VST_BBENTRY_6_ABBREV)
2998f22ef01cSRoman Divacky       llvm_unreachable("Unexpected abbrev ordering!");
2999f22ef01cSRoman Divacky   }
3000f22ef01cSRoman Divacky 
3001f22ef01cSRoman Divacky 
3002f22ef01cSRoman Divacky 
3003f22ef01cSRoman Divacky   { // SETTYPE abbrev for CONSTANTS_BLOCK.
300495ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
3005f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::CST_CODE_SETTYPE));
3006f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed,
3007ff0cc061SDimitry Andric                               VE.computeBitsRequiredForTypeIndicies()));
30083ca95b02SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::CONSTANTS_BLOCK_ID, Abbv) !=
30093ca95b02SDimitry Andric         CONSTANTS_SETTYPE_ABBREV)
3010f22ef01cSRoman Divacky       llvm_unreachable("Unexpected abbrev ordering!");
3011f22ef01cSRoman Divacky   }
3012f22ef01cSRoman Divacky 
3013f22ef01cSRoman Divacky   { // INTEGER abbrev for CONSTANTS_BLOCK.
301495ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
3015f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::CST_CODE_INTEGER));
3016f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
30173ca95b02SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::CONSTANTS_BLOCK_ID, Abbv) !=
30183ca95b02SDimitry Andric         CONSTANTS_INTEGER_ABBREV)
3019f22ef01cSRoman Divacky       llvm_unreachable("Unexpected abbrev ordering!");
3020f22ef01cSRoman Divacky   }
3021f22ef01cSRoman Divacky 
3022f22ef01cSRoman Divacky   { // CE_CAST abbrev for CONSTANTS_BLOCK.
302395ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
3024f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::CST_CODE_CE_CAST));
3025f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 4));  // cast opc
3026f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed,       // typeid
3027ff0cc061SDimitry Andric                               VE.computeBitsRequiredForTypeIndicies()));
3028f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));    // value id
3029f22ef01cSRoman Divacky 
30303ca95b02SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::CONSTANTS_BLOCK_ID, Abbv) !=
30313ca95b02SDimitry Andric         CONSTANTS_CE_CAST_Abbrev)
3032f22ef01cSRoman Divacky       llvm_unreachable("Unexpected abbrev ordering!");
3033f22ef01cSRoman Divacky   }
3034f22ef01cSRoman Divacky   { // NULL abbrev for CONSTANTS_BLOCK.
303595ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
3036f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::CST_CODE_NULL));
30373ca95b02SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::CONSTANTS_BLOCK_ID, Abbv) !=
30383ca95b02SDimitry Andric         CONSTANTS_NULL_Abbrev)
3039f22ef01cSRoman Divacky       llvm_unreachable("Unexpected abbrev ordering!");
3040f22ef01cSRoman Divacky   }
3041f22ef01cSRoman Divacky 
3042f22ef01cSRoman Divacky   // FIXME: This should only use space for first class types!
3043f22ef01cSRoman Divacky 
3044f22ef01cSRoman Divacky   { // INST_LOAD abbrev for FUNCTION_BLOCK.
304595ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
3046f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::FUNC_CODE_INST_LOAD));
3047f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6)); // Ptr
3048ff0cc061SDimitry Andric     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed,    // dest ty
3049ff0cc061SDimitry Andric                               VE.computeBitsRequiredForTypeIndicies()));
3050f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 4)); // Align
3051f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 1)); // volatile
30523ca95b02SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::FUNCTION_BLOCK_ID, Abbv) !=
30533ca95b02SDimitry Andric         FUNCTION_INST_LOAD_ABBREV)
3054f22ef01cSRoman Divacky       llvm_unreachable("Unexpected abbrev ordering!");
3055f22ef01cSRoman Divacky   }
3056f22ef01cSRoman Divacky   { // INST_BINOP abbrev for FUNCTION_BLOCK.
305795ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
3058f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::FUNC_CODE_INST_BINOP));
3059f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6)); // LHS
3060f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6)); // RHS
3061f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 4)); // opc
30623ca95b02SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::FUNCTION_BLOCK_ID, Abbv) !=
30633ca95b02SDimitry Andric         FUNCTION_INST_BINOP_ABBREV)
3064f22ef01cSRoman Divacky       llvm_unreachable("Unexpected abbrev ordering!");
3065f22ef01cSRoman Divacky   }
3066f22ef01cSRoman Divacky   { // INST_BINOP_FLAGS abbrev for FUNCTION_BLOCK.
306795ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
3068f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::FUNC_CODE_INST_BINOP));
3069f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6)); // LHS
3070f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6)); // RHS
3071f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 4)); // opc
3072f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 7)); // flags
30733ca95b02SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::FUNCTION_BLOCK_ID, Abbv) !=
30743ca95b02SDimitry Andric         FUNCTION_INST_BINOP_FLAGS_ABBREV)
3075f22ef01cSRoman Divacky       llvm_unreachable("Unexpected abbrev ordering!");
3076f22ef01cSRoman Divacky   }
3077f22ef01cSRoman Divacky   { // INST_CAST abbrev for FUNCTION_BLOCK.
307895ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
3079f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::FUNC_CODE_INST_CAST));
3080f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));    // OpVal
3081f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed,       // dest ty
3082ff0cc061SDimitry Andric                               VE.computeBitsRequiredForTypeIndicies()));
3083f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 4));  // opc
30843ca95b02SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::FUNCTION_BLOCK_ID, Abbv) !=
30853ca95b02SDimitry Andric         FUNCTION_INST_CAST_ABBREV)
3086f22ef01cSRoman Divacky       llvm_unreachable("Unexpected abbrev ordering!");
3087f22ef01cSRoman Divacky   }
3088f22ef01cSRoman Divacky 
3089f22ef01cSRoman Divacky   { // INST_RET abbrev for FUNCTION_BLOCK.
309095ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
3091f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::FUNC_CODE_INST_RET));
30923ca95b02SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::FUNCTION_BLOCK_ID, Abbv) !=
30933ca95b02SDimitry Andric         FUNCTION_INST_RET_VOID_ABBREV)
3094f22ef01cSRoman Divacky       llvm_unreachable("Unexpected abbrev ordering!");
3095f22ef01cSRoman Divacky   }
3096f22ef01cSRoman Divacky   { // INST_RET abbrev for FUNCTION_BLOCK.
309795ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
3098f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::FUNC_CODE_INST_RET));
3099f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6)); // ValID
31003ca95b02SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::FUNCTION_BLOCK_ID, Abbv) !=
31013ca95b02SDimitry Andric         FUNCTION_INST_RET_VAL_ABBREV)
3102f22ef01cSRoman Divacky       llvm_unreachable("Unexpected abbrev ordering!");
3103f22ef01cSRoman Divacky   }
3104f22ef01cSRoman Divacky   { // INST_UNREACHABLE abbrev for FUNCTION_BLOCK.
310595ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
3106f22ef01cSRoman Divacky     Abbv->Add(BitCodeAbbrevOp(bitc::FUNC_CODE_INST_UNREACHABLE));
31073ca95b02SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::FUNCTION_BLOCK_ID, Abbv) !=
31083ca95b02SDimitry Andric         FUNCTION_INST_UNREACHABLE_ABBREV)
3109f22ef01cSRoman Divacky       llvm_unreachable("Unexpected abbrev ordering!");
3110f22ef01cSRoman Divacky   }
3111ff0cc061SDimitry Andric   {
311295ec533aSDimitry Andric     auto Abbv = std::make_shared<BitCodeAbbrev>();
3113ff0cc061SDimitry Andric     Abbv->Add(BitCodeAbbrevOp(bitc::FUNC_CODE_INST_GEP));
3114ff0cc061SDimitry Andric     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 1));
3115ff0cc061SDimitry Andric     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, // dest ty
3116ff0cc061SDimitry Andric                               Log2_32_Ceil(VE.getTypes().size() + 1)));
3117ff0cc061SDimitry Andric     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
3118ff0cc061SDimitry Andric     Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));
3119ff0cc061SDimitry Andric     if (Stream.EmitBlockInfoAbbrev(bitc::FUNCTION_BLOCK_ID, Abbv) !=
3120ff0cc061SDimitry Andric         FUNCTION_INST_GEP_ABBREV)
3121ff0cc061SDimitry Andric       llvm_unreachable("Unexpected abbrev ordering!");
3122ff0cc061SDimitry Andric   }
3123f22ef01cSRoman Divacky 
3124f22ef01cSRoman Divacky   Stream.ExitBlock();
3125f22ef01cSRoman Divacky }
3126f22ef01cSRoman Divacky 
31277d523365SDimitry Andric /// Write the module path strings, currently only used when generating
31287d523365SDimitry Andric /// a combined index file.
31293ca95b02SDimitry Andric void IndexBitcodeWriter::writeModStrings() {
31307d523365SDimitry Andric   Stream.EnterSubblock(bitc::MODULE_STRTAB_BLOCK_ID, 3);
31317d523365SDimitry Andric 
31327d523365SDimitry Andric   // TODO: See which abbrev sizes we actually need to emit
31337d523365SDimitry Andric 
31347d523365SDimitry Andric   // 8-bit fixed-width MST_ENTRY strings.
313595ec533aSDimitry Andric   auto Abbv = std::make_shared<BitCodeAbbrev>();
31367d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::MST_CODE_ENTRY));
31377d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
31387d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
31397d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 8));
314095ec533aSDimitry Andric   unsigned Abbrev8Bit = Stream.EmitAbbrev(std::move(Abbv));
31417d523365SDimitry Andric 
31427d523365SDimitry Andric   // 7-bit fixed width MST_ENTRY strings.
314395ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
31447d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::MST_CODE_ENTRY));
31457d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
31467d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
31477d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 7));
314895ec533aSDimitry Andric   unsigned Abbrev7Bit = Stream.EmitAbbrev(std::move(Abbv));
31497d523365SDimitry Andric 
31507d523365SDimitry Andric   // 6-bit char6 MST_ENTRY strings.
315195ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
31527d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::MST_CODE_ENTRY));
31537d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
31547d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
31557d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Char6));
315695ec533aSDimitry Andric   unsigned Abbrev6Bit = Stream.EmitAbbrev(std::move(Abbv));
31577d523365SDimitry Andric 
31583ca95b02SDimitry Andric   // Module Hash, 160 bits SHA1. Optionally, emitted after each MST_CODE_ENTRY.
315995ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
31603ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::MST_CODE_HASH));
31613ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
31623ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
31633ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
31643ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
31653ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
316695ec533aSDimitry Andric   unsigned AbbrevHash = Stream.EmitAbbrev(std::move(Abbv));
31673ca95b02SDimitry Andric 
31683ca95b02SDimitry Andric   SmallVector<unsigned, 64> Vals;
31696d97bb29SDimitry Andric   forEachModule(
31706d97bb29SDimitry Andric       [&](const StringMapEntry<std::pair<uint64_t, ModuleHash>> &MPSE) {
31716d97bb29SDimitry Andric         StringRef Key = MPSE.getKey();
31726d97bb29SDimitry Andric         const auto &Value = MPSE.getValue();
31736d97bb29SDimitry Andric         StringEncoding Bits = getStringEncoding(Key);
31747d523365SDimitry Andric         unsigned AbbrevToUse = Abbrev8Bit;
31757d523365SDimitry Andric         if (Bits == SE_Char6)
31767d523365SDimitry Andric           AbbrevToUse = Abbrev6Bit;
31777d523365SDimitry Andric         else if (Bits == SE_Fixed7)
31787d523365SDimitry Andric           AbbrevToUse = Abbrev7Bit;
31797d523365SDimitry Andric 
31806d97bb29SDimitry Andric         Vals.push_back(Value.first);
31816d97bb29SDimitry Andric         Vals.append(Key.begin(), Key.end());
31827d523365SDimitry Andric 
31837d523365SDimitry Andric         // Emit the finished record.
31843ca95b02SDimitry Andric         Stream.EmitRecord(bitc::MST_CODE_ENTRY, Vals, AbbrevToUse);
31853ca95b02SDimitry Andric 
31863ca95b02SDimitry Andric         // Emit an optional hash for the module now
31876d97bb29SDimitry Andric         const auto &Hash = Value.second;
31886d97bb29SDimitry Andric         if (llvm::any_of(Hash, [](uint32_t H) { return H; })) {
31896d97bb29SDimitry Andric           Vals.assign(Hash.begin(), Hash.end());
31903ca95b02SDimitry Andric           // Emit the hash record.
31913ca95b02SDimitry Andric           Stream.EmitRecord(bitc::MST_CODE_HASH, Vals, AbbrevHash);
31923ca95b02SDimitry Andric         }
31933ca95b02SDimitry Andric 
31943ca95b02SDimitry Andric         Vals.clear();
31956d97bb29SDimitry Andric       });
31967d523365SDimitry Andric   Stream.ExitBlock();
31977d523365SDimitry Andric }
31987d523365SDimitry Andric 
31997a7e6055SDimitry Andric /// Write the function type metadata related records that need to appear before
32007a7e6055SDimitry Andric /// a function summary entry (whether per-module or combined).
32017a7e6055SDimitry Andric static void writeFunctionTypeMetadataRecords(BitstreamWriter &Stream,
32027a7e6055SDimitry Andric                                              FunctionSummary *FS) {
32037a7e6055SDimitry Andric   if (!FS->type_tests().empty())
32047a7e6055SDimitry Andric     Stream.EmitRecord(bitc::FS_TYPE_TESTS, FS->type_tests());
32057a7e6055SDimitry Andric 
32067a7e6055SDimitry Andric   SmallVector<uint64_t, 64> Record;
32077a7e6055SDimitry Andric 
32087a7e6055SDimitry Andric   auto WriteVFuncIdVec = [&](uint64_t Ty,
32097a7e6055SDimitry Andric                              ArrayRef<FunctionSummary::VFuncId> VFs) {
32107a7e6055SDimitry Andric     if (VFs.empty())
32117a7e6055SDimitry Andric       return;
32127a7e6055SDimitry Andric     Record.clear();
32137a7e6055SDimitry Andric     for (auto &VF : VFs) {
32147a7e6055SDimitry Andric       Record.push_back(VF.GUID);
32157a7e6055SDimitry Andric       Record.push_back(VF.Offset);
32167a7e6055SDimitry Andric     }
32177a7e6055SDimitry Andric     Stream.EmitRecord(Ty, Record);
32187a7e6055SDimitry Andric   };
32197a7e6055SDimitry Andric 
32207a7e6055SDimitry Andric   WriteVFuncIdVec(bitc::FS_TYPE_TEST_ASSUME_VCALLS,
32217a7e6055SDimitry Andric                   FS->type_test_assume_vcalls());
32227a7e6055SDimitry Andric   WriteVFuncIdVec(bitc::FS_TYPE_CHECKED_LOAD_VCALLS,
32237a7e6055SDimitry Andric                   FS->type_checked_load_vcalls());
32247a7e6055SDimitry Andric 
32257a7e6055SDimitry Andric   auto WriteConstVCallVec = [&](uint64_t Ty,
32267a7e6055SDimitry Andric                                 ArrayRef<FunctionSummary::ConstVCall> VCs) {
32277a7e6055SDimitry Andric     for (auto &VC : VCs) {
32287a7e6055SDimitry Andric       Record.clear();
32297a7e6055SDimitry Andric       Record.push_back(VC.VFunc.GUID);
32307a7e6055SDimitry Andric       Record.push_back(VC.VFunc.Offset);
32317a7e6055SDimitry Andric       Record.insert(Record.end(), VC.Args.begin(), VC.Args.end());
32327a7e6055SDimitry Andric       Stream.EmitRecord(Ty, Record);
32337a7e6055SDimitry Andric     }
32347a7e6055SDimitry Andric   };
32357a7e6055SDimitry Andric 
32367a7e6055SDimitry Andric   WriteConstVCallVec(bitc::FS_TYPE_TEST_ASSUME_CONST_VCALL,
32377a7e6055SDimitry Andric                      FS->type_test_assume_const_vcalls());
32387a7e6055SDimitry Andric   WriteConstVCallVec(bitc::FS_TYPE_CHECKED_LOAD_CONST_VCALL,
32397a7e6055SDimitry Andric                      FS->type_checked_load_const_vcalls());
32407a7e6055SDimitry Andric }
32417a7e6055SDimitry Andric 
32427d523365SDimitry Andric // Helper to emit a single function summary record.
32433ca95b02SDimitry Andric void ModuleBitcodeWriter::writePerModuleFunctionSummaryRecord(
32443ca95b02SDimitry Andric     SmallVector<uint64_t, 64> &NameVals, GlobalValueSummary *Summary,
32453ca95b02SDimitry Andric     unsigned ValueID, unsigned FSCallsAbbrev, unsigned FSCallsProfileAbbrev,
32463ca95b02SDimitry Andric     const Function &F) {
32477d523365SDimitry Andric   NameVals.push_back(ValueID);
32483ca95b02SDimitry Andric 
32493ca95b02SDimitry Andric   FunctionSummary *FS = cast<FunctionSummary>(Summary);
32507a7e6055SDimitry Andric   writeFunctionTypeMetadataRecords(Stream, FS);
3251d88c1a5aSDimitry Andric 
32523ca95b02SDimitry Andric   NameVals.push_back(getEncodedGVSummaryFlags(FS->flags()));
32537d523365SDimitry Andric   NameVals.push_back(FS->instCount());
32543ca95b02SDimitry Andric   NameVals.push_back(FS->refs().size());
32553ca95b02SDimitry Andric 
32563ca95b02SDimitry Andric   for (auto &RI : FS->refs())
32573ca95b02SDimitry Andric     NameVals.push_back(VE.getValueID(RI.getValue()));
32583ca95b02SDimitry Andric 
32593ca95b02SDimitry Andric   bool HasProfileData = F.getEntryCount().hasValue();
3260d88c1a5aSDimitry Andric   for (auto &ECI : FS->calls()) {
32613ca95b02SDimitry Andric     NameVals.push_back(getValueId(ECI.first));
32623ca95b02SDimitry Andric     if (HasProfileData)
3263d88c1a5aSDimitry Andric       NameVals.push_back(static_cast<uint8_t>(ECI.second.Hotness));
32643ca95b02SDimitry Andric   }
32653ca95b02SDimitry Andric 
32663ca95b02SDimitry Andric   unsigned FSAbbrev = (HasProfileData ? FSCallsProfileAbbrev : FSCallsAbbrev);
32673ca95b02SDimitry Andric   unsigned Code =
32683ca95b02SDimitry Andric       (HasProfileData ? bitc::FS_PERMODULE_PROFILE : bitc::FS_PERMODULE);
32697d523365SDimitry Andric 
32707d523365SDimitry Andric   // Emit the finished record.
32713ca95b02SDimitry Andric   Stream.EmitRecord(Code, NameVals, FSAbbrev);
32727d523365SDimitry Andric   NameVals.clear();
32737d523365SDimitry Andric }
32747d523365SDimitry Andric 
32753ca95b02SDimitry Andric // Collect the global value references in the given variable's initializer,
32763ca95b02SDimitry Andric // and emit them in a summary record.
32773ca95b02SDimitry Andric void ModuleBitcodeWriter::writeModuleLevelReferences(
32783ca95b02SDimitry Andric     const GlobalVariable &V, SmallVector<uint64_t, 64> &NameVals,
32793ca95b02SDimitry Andric     unsigned FSModRefsAbbrev) {
32800f5676f4SDimitry Andric   auto VI = Index->getValueInfo(GlobalValue::getGUID(V.getName()));
32810f5676f4SDimitry Andric   if (!VI || VI.getSummaryList().empty()) {
3282d88c1a5aSDimitry Andric     // Only declarations should not have a summary (a declaration might however
3283d88c1a5aSDimitry Andric     // have a summary if the def was in module level asm).
3284d88c1a5aSDimitry Andric     assert(V.isDeclaration());
32853ca95b02SDimitry Andric     return;
3286d88c1a5aSDimitry Andric   }
32870f5676f4SDimitry Andric   auto *Summary = VI.getSummaryList()[0].get();
32883ca95b02SDimitry Andric   NameVals.push_back(VE.getValueID(&V));
32893ca95b02SDimitry Andric   GlobalVarSummary *VS = cast<GlobalVarSummary>(Summary);
3290d88c1a5aSDimitry Andric   NameVals.push_back(getEncodedGVSummaryFlags(VS->flags()));
32913ca95b02SDimitry Andric 
32923ca95b02SDimitry Andric   unsigned SizeBeforeRefs = NameVals.size();
32933ca95b02SDimitry Andric   for (auto &RI : VS->refs())
32943ca95b02SDimitry Andric     NameVals.push_back(VE.getValueID(RI.getValue()));
32953ca95b02SDimitry Andric   // Sort the refs for determinism output, the vector returned by FS->refs() has
32963ca95b02SDimitry Andric   // been initialized from a DenseSet.
32973ca95b02SDimitry Andric   std::sort(NameVals.begin() + SizeBeforeRefs, NameVals.end());
32983ca95b02SDimitry Andric 
32993ca95b02SDimitry Andric   Stream.EmitRecord(bitc::FS_PERMODULE_GLOBALVAR_INIT_REFS, NameVals,
33003ca95b02SDimitry Andric                     FSModRefsAbbrev);
33013ca95b02SDimitry Andric   NameVals.clear();
33023ca95b02SDimitry Andric }
33033ca95b02SDimitry Andric 
33043ca95b02SDimitry Andric // Current version for the summary.
33053ca95b02SDimitry Andric // This is bumped whenever we introduce changes in the way some record are
33063ca95b02SDimitry Andric // interpreted, like flags for instance.
330795ec533aSDimitry Andric static const uint64_t INDEX_VERSION = 3;
33083ca95b02SDimitry Andric 
33093ca95b02SDimitry Andric /// Emit the per-module summary section alongside the rest of
33107d523365SDimitry Andric /// the module's bitcode.
33113ca95b02SDimitry Andric void ModuleBitcodeWriter::writePerModuleGlobalValueSummary() {
3312db17bf38SDimitry Andric   // By default we compile with ThinLTO if the module has a summary, but the
3313db17bf38SDimitry Andric   // client can request full LTO with a module flag.
3314db17bf38SDimitry Andric   bool IsThinLTO = true;
3315db17bf38SDimitry Andric   if (auto *MD =
3316db17bf38SDimitry Andric           mdconst::extract_or_null<ConstantInt>(M.getModuleFlag("ThinLTO")))
3317db17bf38SDimitry Andric     IsThinLTO = MD->getZExtValue();
3318db17bf38SDimitry Andric   Stream.EnterSubblock(IsThinLTO ? bitc::GLOBALVAL_SUMMARY_BLOCK_ID
3319db17bf38SDimitry Andric                                  : bitc::FULL_LTO_GLOBALVAL_SUMMARY_BLOCK_ID,
3320db17bf38SDimitry Andric                        4);
33213ca95b02SDimitry Andric 
33223ca95b02SDimitry Andric   Stream.EmitRecord(bitc::FS_VERSION, ArrayRef<uint64_t>{INDEX_VERSION});
33233ca95b02SDimitry Andric 
3324d88c1a5aSDimitry Andric   if (Index->begin() == Index->end()) {
3325d88c1a5aSDimitry Andric     Stream.ExitBlock();
3326d88c1a5aSDimitry Andric     return;
3327d88c1a5aSDimitry Andric   }
3328d88c1a5aSDimitry Andric 
33296bc11b14SDimitry Andric   for (const auto &GVI : valueIds()) {
33306bc11b14SDimitry Andric     Stream.EmitRecord(bitc::FS_VALUE_GUID,
33316bc11b14SDimitry Andric                       ArrayRef<uint64_t>{GVI.second, GVI.first});
33326bc11b14SDimitry Andric   }
33336bc11b14SDimitry Andric 
33343ca95b02SDimitry Andric   // Abbrev for FS_PERMODULE.
333595ec533aSDimitry Andric   auto Abbv = std::make_shared<BitCodeAbbrev>();
33363ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::FS_PERMODULE));
33377d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // valueid
33383ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));   // flags
33397d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // instcount
33403ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 4));   // numrefs
3341d88c1a5aSDimitry Andric   // numrefs x valueid, n x (valueid)
33423ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
33433ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
334495ec533aSDimitry Andric   unsigned FSCallsAbbrev = Stream.EmitAbbrev(std::move(Abbv));
33457d523365SDimitry Andric 
33463ca95b02SDimitry Andric   // Abbrev for FS_PERMODULE_PROFILE.
334795ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
33483ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::FS_PERMODULE_PROFILE));
33493ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // valueid
33503ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));   // flags
33517d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // instcount
33523ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 4));   // numrefs
3353d88c1a5aSDimitry Andric   // numrefs x valueid, n x (valueid, hotness)
33543ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
33553ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
335695ec533aSDimitry Andric   unsigned FSCallsProfileAbbrev = Stream.EmitAbbrev(std::move(Abbv));
33577d523365SDimitry Andric 
33583ca95b02SDimitry Andric   // Abbrev for FS_PERMODULE_GLOBALVAR_INIT_REFS.
335995ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
33603ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::FS_PERMODULE_GLOBALVAR_INIT_REFS));
33613ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8)); // valueid
33623ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6)); // flags
33633ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));  // valueids
33643ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
336595ec533aSDimitry Andric   unsigned FSModRefsAbbrev = Stream.EmitAbbrev(std::move(Abbv));
33667d523365SDimitry Andric 
33673ca95b02SDimitry Andric   // Abbrev for FS_ALIAS.
336895ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
33693ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::FS_ALIAS));
33703ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // valueid
33713ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));   // flags
33723ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // valueid
337395ec533aSDimitry Andric   unsigned FSAliasAbbrev = Stream.EmitAbbrev(std::move(Abbv));
33747d523365SDimitry Andric 
33753ca95b02SDimitry Andric   SmallVector<uint64_t, 64> NameVals;
33763ca95b02SDimitry Andric   // Iterate over the list of functions instead of the Index to
33773ca95b02SDimitry Andric   // ensure the ordering is stable.
33783ca95b02SDimitry Andric   for (const Function &F : M) {
33793ca95b02SDimitry Andric     // Summary emission does not support anonymous functions, they have to
33803ca95b02SDimitry Andric     // renamed using the anonymous function renaming pass.
33813ca95b02SDimitry Andric     if (!F.hasName())
33823ca95b02SDimitry Andric       report_fatal_error("Unexpected anonymous function when writing summary");
33837d523365SDimitry Andric 
33840f5676f4SDimitry Andric     ValueInfo VI = Index->getValueInfo(GlobalValue::getGUID(F.getName()));
33850f5676f4SDimitry Andric     if (!VI || VI.getSummaryList().empty()) {
3386d88c1a5aSDimitry Andric       // Only declarations should not have a summary (a declaration might
3387d88c1a5aSDimitry Andric       // however have a summary if the def was in module level asm).
3388d88c1a5aSDimitry Andric       assert(F.isDeclaration());
3389d88c1a5aSDimitry Andric       continue;
3390d88c1a5aSDimitry Andric     }
33910f5676f4SDimitry Andric     auto *Summary = VI.getSummaryList()[0].get();
33923ca95b02SDimitry Andric     writePerModuleFunctionSummaryRecord(NameVals, Summary, VE.getValueID(&F),
33933ca95b02SDimitry Andric                                         FSCallsAbbrev, FSCallsProfileAbbrev, F);
33943ca95b02SDimitry Andric   }
33953ca95b02SDimitry Andric 
33963ca95b02SDimitry Andric   // Capture references from GlobalVariable initializers, which are outside
33973ca95b02SDimitry Andric   // of a function scope.
33983ca95b02SDimitry Andric   for (const GlobalVariable &G : M.globals())
33993ca95b02SDimitry Andric     writeModuleLevelReferences(G, NameVals, FSModRefsAbbrev);
34003ca95b02SDimitry Andric 
34013ca95b02SDimitry Andric   for (const GlobalAlias &A : M.aliases()) {
34023ca95b02SDimitry Andric     auto *Aliasee = A.getBaseObject();
34033ca95b02SDimitry Andric     if (!Aliasee->hasName())
34043ca95b02SDimitry Andric       // Nameless function don't have an entry in the summary, skip it.
34053ca95b02SDimitry Andric       continue;
34063ca95b02SDimitry Andric     auto AliasId = VE.getValueID(&A);
34073ca95b02SDimitry Andric     auto AliaseeId = VE.getValueID(Aliasee);
34083ca95b02SDimitry Andric     NameVals.push_back(AliasId);
3409d88c1a5aSDimitry Andric     auto *Summary = Index->getGlobalValueSummary(A);
3410d88c1a5aSDimitry Andric     AliasSummary *AS = cast<AliasSummary>(Summary);
3411d88c1a5aSDimitry Andric     NameVals.push_back(getEncodedGVSummaryFlags(AS->flags()));
34123ca95b02SDimitry Andric     NameVals.push_back(AliaseeId);
34133ca95b02SDimitry Andric     Stream.EmitRecord(bitc::FS_ALIAS, NameVals, FSAliasAbbrev);
34147d523365SDimitry Andric     NameVals.clear();
34157d523365SDimitry Andric   }
34163ca95b02SDimitry Andric 
34173ca95b02SDimitry Andric   Stream.ExitBlock();
34183ca95b02SDimitry Andric }
34193ca95b02SDimitry Andric 
34203ca95b02SDimitry Andric /// Emit the combined summary section into the combined index file.
34213ca95b02SDimitry Andric void IndexBitcodeWriter::writeCombinedGlobalValueSummary() {
34223ca95b02SDimitry Andric   Stream.EnterSubblock(bitc::GLOBALVAL_SUMMARY_BLOCK_ID, 3);
34233ca95b02SDimitry Andric   Stream.EmitRecord(bitc::FS_VERSION, ArrayRef<uint64_t>{INDEX_VERSION});
34243ca95b02SDimitry Andric 
34256bc11b14SDimitry Andric   for (const auto &GVI : valueIds()) {
34266bc11b14SDimitry Andric     Stream.EmitRecord(bitc::FS_VALUE_GUID,
34276bc11b14SDimitry Andric                       ArrayRef<uint64_t>{GVI.second, GVI.first});
34286bc11b14SDimitry Andric   }
34296bc11b14SDimitry Andric 
34303ca95b02SDimitry Andric   // Abbrev for FS_COMBINED.
343195ec533aSDimitry Andric   auto Abbv = std::make_shared<BitCodeAbbrev>();
34323ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::FS_COMBINED));
34333ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // valueid
34343ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // modid
34353ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));   // flags
34363ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // instcount
34373ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 4));   // numrefs
3438d88c1a5aSDimitry Andric   // numrefs x valueid, n x (valueid)
34393ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
34403ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
344195ec533aSDimitry Andric   unsigned FSCallsAbbrev = Stream.EmitAbbrev(std::move(Abbv));
34423ca95b02SDimitry Andric 
34433ca95b02SDimitry Andric   // Abbrev for FS_COMBINED_PROFILE.
344495ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
34453ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::FS_COMBINED_PROFILE));
34463ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // valueid
34473ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // modid
34483ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));   // flags
34493ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // instcount
34503ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 4));   // numrefs
3451d88c1a5aSDimitry Andric   // numrefs x valueid, n x (valueid, hotness)
34523ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
34533ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
345495ec533aSDimitry Andric   unsigned FSCallsProfileAbbrev = Stream.EmitAbbrev(std::move(Abbv));
34553ca95b02SDimitry Andric 
34563ca95b02SDimitry Andric   // Abbrev for FS_COMBINED_GLOBALVAR_INIT_REFS.
345795ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
34583ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::FS_COMBINED_GLOBALVAR_INIT_REFS));
34593ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // valueid
34603ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // modid
34613ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));   // flags
34623ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));    // valueids
34633ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));
346495ec533aSDimitry Andric   unsigned FSModRefsAbbrev = Stream.EmitAbbrev(std::move(Abbv));
34653ca95b02SDimitry Andric 
34663ca95b02SDimitry Andric   // Abbrev for FS_COMBINED_ALIAS.
346795ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
34683ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::FS_COMBINED_ALIAS));
34693ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // valueid
34703ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // modid
34713ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));   // flags
34723ca95b02SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8));   // valueid
347395ec533aSDimitry Andric   unsigned FSAliasAbbrev = Stream.EmitAbbrev(std::move(Abbv));
34743ca95b02SDimitry Andric 
34753ca95b02SDimitry Andric   // The aliases are emitted as a post-pass, and will point to the value
34763ca95b02SDimitry Andric   // id of the aliasee. Save them in a vector for post-processing.
34773ca95b02SDimitry Andric   SmallVector<AliasSummary *, 64> Aliases;
34783ca95b02SDimitry Andric 
34793ca95b02SDimitry Andric   // Save the value id for each summary for alias emission.
34803ca95b02SDimitry Andric   DenseMap<const GlobalValueSummary *, unsigned> SummaryToValueIdMap;
34813ca95b02SDimitry Andric 
34823ca95b02SDimitry Andric   SmallVector<uint64_t, 64> NameVals;
34833ca95b02SDimitry Andric 
34843ca95b02SDimitry Andric   // For local linkage, we also emit the original name separately
34853ca95b02SDimitry Andric   // immediately after the record.
34863ca95b02SDimitry Andric   auto MaybeEmitOriginalName = [&](GlobalValueSummary &S) {
34873ca95b02SDimitry Andric     if (!GlobalValue::isLocalLinkage(S.linkage()))
34883ca95b02SDimitry Andric       return;
34893ca95b02SDimitry Andric     NameVals.push_back(S.getOriginalName());
34903ca95b02SDimitry Andric     Stream.EmitRecord(bitc::FS_COMBINED_ORIGINAL_NAME, NameVals);
34913ca95b02SDimitry Andric     NameVals.clear();
34923ca95b02SDimitry Andric   };
34933ca95b02SDimitry Andric 
3494f37b6182SDimitry Andric   forEachSummary([&](GVInfo I) {
34953ca95b02SDimitry Andric     GlobalValueSummary *S = I.second;
34963ca95b02SDimitry Andric     assert(S);
34973ca95b02SDimitry Andric 
3498f9448bf3SDimitry Andric     auto ValueId = getValueId(I.first);
3499f9448bf3SDimitry Andric     assert(ValueId);
3500f9448bf3SDimitry Andric     SummaryToValueIdMap[S] = *ValueId;
35013ca95b02SDimitry Andric 
35023ca95b02SDimitry Andric     if (auto *AS = dyn_cast<AliasSummary>(S)) {
35033ca95b02SDimitry Andric       // Will process aliases as a post-pass because the reader wants all
35043ca95b02SDimitry Andric       // global to be loaded first.
35053ca95b02SDimitry Andric       Aliases.push_back(AS);
3506f37b6182SDimitry Andric       return;
35073ca95b02SDimitry Andric     }
35083ca95b02SDimitry Andric 
35093ca95b02SDimitry Andric     if (auto *VS = dyn_cast<GlobalVarSummary>(S)) {
3510f9448bf3SDimitry Andric       NameVals.push_back(*ValueId);
35113ca95b02SDimitry Andric       NameVals.push_back(Index.getModuleId(VS->modulePath()));
35123ca95b02SDimitry Andric       NameVals.push_back(getEncodedGVSummaryFlags(VS->flags()));
35133ca95b02SDimitry Andric       for (auto &RI : VS->refs()) {
3514f9448bf3SDimitry Andric         auto RefValueId = getValueId(RI.getGUID());
3515f9448bf3SDimitry Andric         if (!RefValueId)
3516f9448bf3SDimitry Andric           continue;
3517f9448bf3SDimitry Andric         NameVals.push_back(*RefValueId);
35183ca95b02SDimitry Andric       }
35193ca95b02SDimitry Andric 
35203ca95b02SDimitry Andric       // Emit the finished record.
35213ca95b02SDimitry Andric       Stream.EmitRecord(bitc::FS_COMBINED_GLOBALVAR_INIT_REFS, NameVals,
35223ca95b02SDimitry Andric                         FSModRefsAbbrev);
35233ca95b02SDimitry Andric       NameVals.clear();
35243ca95b02SDimitry Andric       MaybeEmitOriginalName(*S);
3525f37b6182SDimitry Andric       return;
35263ca95b02SDimitry Andric     }
35273ca95b02SDimitry Andric 
35283ca95b02SDimitry Andric     auto *FS = cast<FunctionSummary>(S);
35297a7e6055SDimitry Andric     writeFunctionTypeMetadataRecords(Stream, FS);
3530d88c1a5aSDimitry Andric 
3531f9448bf3SDimitry Andric     NameVals.push_back(*ValueId);
35323ca95b02SDimitry Andric     NameVals.push_back(Index.getModuleId(FS->modulePath()));
35333ca95b02SDimitry Andric     NameVals.push_back(getEncodedGVSummaryFlags(FS->flags()));
35343ca95b02SDimitry Andric     NameVals.push_back(FS->instCount());
3535f9448bf3SDimitry Andric     // Fill in below
3536f9448bf3SDimitry Andric     NameVals.push_back(0);
35373ca95b02SDimitry Andric 
3538f9448bf3SDimitry Andric     unsigned Count = 0;
35393ca95b02SDimitry Andric     for (auto &RI : FS->refs()) {
3540f9448bf3SDimitry Andric       auto RefValueId = getValueId(RI.getGUID());
3541f9448bf3SDimitry Andric       if (!RefValueId)
3542f9448bf3SDimitry Andric         continue;
3543f9448bf3SDimitry Andric       NameVals.push_back(*RefValueId);
3544f9448bf3SDimitry Andric       Count++;
35453ca95b02SDimitry Andric     }
3546f9448bf3SDimitry Andric     NameVals[4] = Count;
35473ca95b02SDimitry Andric 
35483ca95b02SDimitry Andric     bool HasProfileData = false;
35493ca95b02SDimitry Andric     for (auto &EI : FS->calls()) {
3550d88c1a5aSDimitry Andric       HasProfileData |= EI.second.Hotness != CalleeInfo::HotnessType::Unknown;
35513ca95b02SDimitry Andric       if (HasProfileData)
35523ca95b02SDimitry Andric         break;
35533ca95b02SDimitry Andric     }
35543ca95b02SDimitry Andric 
35553ca95b02SDimitry Andric     for (auto &EI : FS->calls()) {
35563ca95b02SDimitry Andric       // If this GUID doesn't have a value id, it doesn't have a function
35573ca95b02SDimitry Andric       // summary and we don't need to record any calls to it.
35587a7e6055SDimitry Andric       GlobalValue::GUID GUID = EI.first.getGUID();
3559f9448bf3SDimitry Andric       auto CallValueId = getValueId(GUID);
3560f9448bf3SDimitry Andric       if (!CallValueId) {
35617a7e6055SDimitry Andric         // For SamplePGO, the indirect call targets for local functions will
35627a7e6055SDimitry Andric         // have its original name annotated in profile. We try to find the
35637a7e6055SDimitry Andric         // corresponding PGOFuncName as the GUID.
35647a7e6055SDimitry Andric         GUID = Index.getGUIDFromOriginalID(GUID);
3565f9448bf3SDimitry Andric         if (GUID == 0)
3566f9448bf3SDimitry Andric           continue;
3567f9448bf3SDimitry Andric         CallValueId = getValueId(GUID);
3568f9448bf3SDimitry Andric         if (!CallValueId)
35693ca95b02SDimitry Andric           continue;
35707a7e6055SDimitry Andric       }
3571f9448bf3SDimitry Andric       NameVals.push_back(*CallValueId);
35723ca95b02SDimitry Andric       if (HasProfileData)
3573d88c1a5aSDimitry Andric         NameVals.push_back(static_cast<uint8_t>(EI.second.Hotness));
35743ca95b02SDimitry Andric     }
35753ca95b02SDimitry Andric 
35763ca95b02SDimitry Andric     unsigned FSAbbrev = (HasProfileData ? FSCallsProfileAbbrev : FSCallsAbbrev);
35773ca95b02SDimitry Andric     unsigned Code =
35783ca95b02SDimitry Andric         (HasProfileData ? bitc::FS_COMBINED_PROFILE : bitc::FS_COMBINED);
35793ca95b02SDimitry Andric 
35803ca95b02SDimitry Andric     // Emit the finished record.
35813ca95b02SDimitry Andric     Stream.EmitRecord(Code, NameVals, FSAbbrev);
35823ca95b02SDimitry Andric     NameVals.clear();
35833ca95b02SDimitry Andric     MaybeEmitOriginalName(*S);
3584f37b6182SDimitry Andric   });
35853ca95b02SDimitry Andric 
35863ca95b02SDimitry Andric   for (auto *AS : Aliases) {
35873ca95b02SDimitry Andric     auto AliasValueId = SummaryToValueIdMap[AS];
35883ca95b02SDimitry Andric     assert(AliasValueId);
35893ca95b02SDimitry Andric     NameVals.push_back(AliasValueId);
35903ca95b02SDimitry Andric     NameVals.push_back(Index.getModuleId(AS->modulePath()));
35913ca95b02SDimitry Andric     NameVals.push_back(getEncodedGVSummaryFlags(AS->flags()));
35923ca95b02SDimitry Andric     auto AliaseeValueId = SummaryToValueIdMap[&AS->getAliasee()];
35933ca95b02SDimitry Andric     assert(AliaseeValueId);
35943ca95b02SDimitry Andric     NameVals.push_back(AliaseeValueId);
35953ca95b02SDimitry Andric 
35963ca95b02SDimitry Andric     // Emit the finished record.
35973ca95b02SDimitry Andric     Stream.EmitRecord(bitc::FS_COMBINED_ALIAS, NameVals, FSAliasAbbrev);
35983ca95b02SDimitry Andric     NameVals.clear();
35993ca95b02SDimitry Andric     MaybeEmitOriginalName(*AS);
36007d523365SDimitry Andric   }
36017d523365SDimitry Andric 
360224d58133SDimitry Andric   if (!Index.cfiFunctionDefs().empty()) {
360324d58133SDimitry Andric     for (auto &S : Index.cfiFunctionDefs()) {
360424d58133SDimitry Andric       NameVals.push_back(StrtabBuilder.add(S));
360524d58133SDimitry Andric       NameVals.push_back(S.size());
360624d58133SDimitry Andric     }
360724d58133SDimitry Andric     Stream.EmitRecord(bitc::FS_CFI_FUNCTION_DEFS, NameVals);
360824d58133SDimitry Andric     NameVals.clear();
360924d58133SDimitry Andric   }
361024d58133SDimitry Andric 
361124d58133SDimitry Andric   if (!Index.cfiFunctionDecls().empty()) {
361224d58133SDimitry Andric     for (auto &S : Index.cfiFunctionDecls()) {
361324d58133SDimitry Andric       NameVals.push_back(StrtabBuilder.add(S));
361424d58133SDimitry Andric       NameVals.push_back(S.size());
361524d58133SDimitry Andric     }
361624d58133SDimitry Andric     Stream.EmitRecord(bitc::FS_CFI_FUNCTION_DECLS, NameVals);
361724d58133SDimitry Andric     NameVals.clear();
361824d58133SDimitry Andric   }
361924d58133SDimitry Andric 
36207d523365SDimitry Andric   Stream.ExitBlock();
36217d523365SDimitry Andric }
36227d523365SDimitry Andric 
3623d88c1a5aSDimitry Andric /// Create the "IDENTIFICATION_BLOCK_ID" containing a single string with the
3624d88c1a5aSDimitry Andric /// current llvm version, and a record for the epoch number.
36257a7e6055SDimitry Andric static void writeIdentificationBlock(BitstreamWriter &Stream) {
36267d523365SDimitry Andric   Stream.EnterSubblock(bitc::IDENTIFICATION_BLOCK_ID, 5);
36277d523365SDimitry Andric 
36287d523365SDimitry Andric   // Write the "user readable" string identifying the bitcode producer
362995ec533aSDimitry Andric   auto Abbv = std::make_shared<BitCodeAbbrev>();
36307d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::IDENTIFICATION_CODE_STRING));
36317d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Array));
36327d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Char6));
363395ec533aSDimitry Andric   auto StringAbbrev = Stream.EmitAbbrev(std::move(Abbv));
3634d88c1a5aSDimitry Andric   writeStringRecord(Stream, bitc::IDENTIFICATION_CODE_STRING,
36353ca95b02SDimitry Andric                     "LLVM" LLVM_VERSION_STRING, StringAbbrev);
36367d523365SDimitry Andric 
36377d523365SDimitry Andric   // Write the epoch version
363895ec533aSDimitry Andric   Abbv = std::make_shared<BitCodeAbbrev>();
36397d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(bitc::IDENTIFICATION_CODE_EPOCH));
36407d523365SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6));
364195ec533aSDimitry Andric   auto EpochAbbrev = Stream.EmitAbbrev(std::move(Abbv));
36427d523365SDimitry Andric   SmallVector<unsigned, 1> Vals = {bitc::BITCODE_CURRENT_EPOCH};
36437d523365SDimitry Andric   Stream.EmitRecord(bitc::IDENTIFICATION_CODE_EPOCH, Vals, EpochAbbrev);
36447d523365SDimitry Andric   Stream.ExitBlock();
36457d523365SDimitry Andric }
36467d523365SDimitry Andric 
36473ca95b02SDimitry Andric void ModuleBitcodeWriter::writeModuleHash(size_t BlockStartPos) {
36483ca95b02SDimitry Andric   // Emit the module's hash.
36493ca95b02SDimitry Andric   // MODULE_CODE_HASH: [5*i32]
36507a7e6055SDimitry Andric   if (GenerateHash) {
36513ca95b02SDimitry Andric     SHA1 Hasher;
36527a7e6055SDimitry Andric     uint32_t Vals[5];
36533ca95b02SDimitry Andric     Hasher.update(ArrayRef<uint8_t>((const uint8_t *)&(Buffer)[BlockStartPos],
36543ca95b02SDimitry Andric                                     Buffer.size() - BlockStartPos));
3655d88c1a5aSDimitry Andric     StringRef Hash = Hasher.result();
36563ca95b02SDimitry Andric     for (int Pos = 0; Pos < 20; Pos += 4) {
3657d88c1a5aSDimitry Andric       Vals[Pos / 4] = support::endian::read32be(Hash.data() + Pos);
36583ca95b02SDimitry Andric     }
36593ca95b02SDimitry Andric 
36603ca95b02SDimitry Andric     // Emit the finished record.
36613ca95b02SDimitry Andric     Stream.EmitRecord(bitc::MODULE_CODE_HASH, Vals);
36627a7e6055SDimitry Andric 
36637a7e6055SDimitry Andric     if (ModHash)
36647a7e6055SDimitry Andric       // Save the written hash value.
36657a7e6055SDimitry Andric       std::copy(std::begin(Vals), std::end(Vals), std::begin(*ModHash));
36667a7e6055SDimitry Andric   } else if (ModHash)
36677a7e6055SDimitry Andric     Stream.EmitRecord(bitc::MODULE_CODE_HASH, ArrayRef<uint32_t>(*ModHash));
36683ca95b02SDimitry Andric }
36693ca95b02SDimitry Andric 
3670d88c1a5aSDimitry Andric void ModuleBitcodeWriter::write() {
3671d88c1a5aSDimitry Andric   writeIdentificationBlock(Stream);
36723ca95b02SDimitry Andric 
3673f22ef01cSRoman Divacky   Stream.EnterSubblock(bitc::MODULE_BLOCK_ID, 3);
36743ca95b02SDimitry Andric   size_t BlockStartPos = Buffer.size();
3675f22ef01cSRoman Divacky 
36766bc11b14SDimitry Andric   writeModuleVersion();
3677f22ef01cSRoman Divacky 
3678f22ef01cSRoman Divacky   // Emit blockinfo, which defines the standard abbreviations etc.
36793ca95b02SDimitry Andric   writeBlockInfo();
3680f22ef01cSRoman Divacky 
3681139f7f9bSDimitry Andric   // Emit information about attribute groups.
36823ca95b02SDimitry Andric   writeAttributeGroupTable();
3683139f7f9bSDimitry Andric 
3684f22ef01cSRoman Divacky   // Emit information about parameter attributes.
36853ca95b02SDimitry Andric   writeAttributeTable();
3686f22ef01cSRoman Divacky 
3687f22ef01cSRoman Divacky   // Emit information describing all of the types in the module.
36883ca95b02SDimitry Andric   writeTypeTable();
3689f22ef01cSRoman Divacky 
36903ca95b02SDimitry Andric   writeComdats();
369191bc56edSDimitry Andric 
3692f22ef01cSRoman Divacky   // Emit top-level description of module, including target triple, inline asm,
3693f22ef01cSRoman Divacky   // descriptors for global variables, and function prototype info.
36943ca95b02SDimitry Andric   writeModuleInfo();
3695f22ef01cSRoman Divacky 
3696f22ef01cSRoman Divacky   // Emit constants.
36973ca95b02SDimitry Andric   writeModuleConstants();
36983ca95b02SDimitry Andric 
36993ca95b02SDimitry Andric   // Emit metadata kind names.
37003ca95b02SDimitry Andric   writeModuleMetadataKinds();
3701f22ef01cSRoman Divacky 
3702f22ef01cSRoman Divacky   // Emit metadata.
37033ca95b02SDimitry Andric   writeModuleMetadata();
3704f22ef01cSRoman Divacky 
370539d628a0SDimitry Andric   // Emit module-level use-lists.
3706ff0cc061SDimitry Andric   if (VE.shouldPreserveUseListOrder())
37073ca95b02SDimitry Andric     writeUseListBlock(nullptr);
3708dff0c46cSDimitry Andric 
37093ca95b02SDimitry Andric   writeOperandBundleTags();
37107d523365SDimitry Andric 
3711dff0c46cSDimitry Andric   // Emit function bodies.
37123ca95b02SDimitry Andric   DenseMap<const Function *, uint64_t> FunctionToBitcodeIndex;
37133ca95b02SDimitry Andric   for (Module::const_iterator F = M.begin(), E = M.end(); F != E; ++F)
3714dff0c46cSDimitry Andric     if (!F->isDeclaration())
37153ca95b02SDimitry Andric       writeFunction(*F, FunctionToBitcodeIndex);
37167d523365SDimitry Andric 
37177d523365SDimitry Andric   // Need to write after the above call to WriteFunction which populates
37187d523365SDimitry Andric   // the summary information in the index.
37193ca95b02SDimitry Andric   if (Index)
37203ca95b02SDimitry Andric     writePerModuleGlobalValueSummary();
37217d523365SDimitry Andric 
37226bc11b14SDimitry Andric   writeGlobalValueSymbolTable(FunctionToBitcodeIndex);
37233ca95b02SDimitry Andric 
37243ca95b02SDimitry Andric   writeModuleHash(BlockStartPos);
3725dff0c46cSDimitry Andric 
3726f22ef01cSRoman Divacky   Stream.ExitBlock();
3727f22ef01cSRoman Divacky }
3728f22ef01cSRoman Divacky 
37293ca95b02SDimitry Andric static void writeInt32ToBuffer(uint32_t Value, SmallVectorImpl<char> &Buffer,
37303ca95b02SDimitry Andric                                uint32_t &Position) {
37313ca95b02SDimitry Andric   support::endian::write32le(&Buffer[Position], Value);
37323ca95b02SDimitry Andric   Position += 4;
37333ca95b02SDimitry Andric }
37343ca95b02SDimitry Andric 
37353ca95b02SDimitry Andric /// If generating a bc file on darwin, we have to emit a
3736f22ef01cSRoman Divacky /// header and trailer to make it compatible with the system archiver.  To do
3737f22ef01cSRoman Divacky /// this we emit the following header, and then emit a trailer that pads the
3738f22ef01cSRoman Divacky /// file out to be a multiple of 16 bytes.
3739f22ef01cSRoman Divacky ///
3740f22ef01cSRoman Divacky /// struct bc_header {
3741f22ef01cSRoman Divacky ///   uint32_t Magic;         // 0x0B17C0DE
3742f22ef01cSRoman Divacky ///   uint32_t Version;       // Version, currently always 0.
3743f22ef01cSRoman Divacky ///   uint32_t BitcodeOffset; // Offset to traditional bitcode file.
3744f22ef01cSRoman Divacky ///   uint32_t BitcodeSize;   // Size of traditional bitcode file.
3745f22ef01cSRoman Divacky ///   uint32_t CPUType;       // CPU specifier.
3746f22ef01cSRoman Divacky ///   ... potentially more later ...
3747f22ef01cSRoman Divacky /// };
37483ca95b02SDimitry Andric static void emitDarwinBCHeaderAndTrailer(SmallVectorImpl<char> &Buffer,
3749dff0c46cSDimitry Andric                                          const Triple &TT) {
3750f22ef01cSRoman Divacky   unsigned CPUType = ~0U;
3751f22ef01cSRoman Divacky 
3752f22ef01cSRoman Divacky   // Match x86_64-*, i[3-9]86-*, powerpc-*, powerpc64-*, arm-*, thumb-*,
3753f22ef01cSRoman Divacky   // armv[0-9]-*, thumbv[0-9]-*, armv5te-*, or armv6t2-*. The CPUType is a magic
3754f22ef01cSRoman Divacky   // number from /usr/include/mach/machine.h.  It is ok to reproduce the
3755f22ef01cSRoman Divacky   // specific constants here because they are implicitly part of the Darwin ABI.
3756f22ef01cSRoman Divacky   enum {
3757f22ef01cSRoman Divacky     DARWIN_CPU_ARCH_ABI64      = 0x01000000,
3758f22ef01cSRoman Divacky     DARWIN_CPU_TYPE_X86        = 7,
3759f22ef01cSRoman Divacky     DARWIN_CPU_TYPE_ARM        = 12,
3760f22ef01cSRoman Divacky     DARWIN_CPU_TYPE_POWERPC    = 18
3761f22ef01cSRoman Divacky   };
3762f22ef01cSRoman Divacky 
376317a519f9SDimitry Andric   Triple::ArchType Arch = TT.getArch();
376417a519f9SDimitry Andric   if (Arch == Triple::x86_64)
3765f22ef01cSRoman Divacky     CPUType = DARWIN_CPU_TYPE_X86 | DARWIN_CPU_ARCH_ABI64;
376617a519f9SDimitry Andric   else if (Arch == Triple::x86)
3767f22ef01cSRoman Divacky     CPUType = DARWIN_CPU_TYPE_X86;
376817a519f9SDimitry Andric   else if (Arch == Triple::ppc)
3769f22ef01cSRoman Divacky     CPUType = DARWIN_CPU_TYPE_POWERPC;
377017a519f9SDimitry Andric   else if (Arch == Triple::ppc64)
3771f22ef01cSRoman Divacky     CPUType = DARWIN_CPU_TYPE_POWERPC | DARWIN_CPU_ARCH_ABI64;
377217a519f9SDimitry Andric   else if (Arch == Triple::arm || Arch == Triple::thumb)
3773f22ef01cSRoman Divacky     CPUType = DARWIN_CPU_TYPE_ARM;
3774f22ef01cSRoman Divacky 
3775f22ef01cSRoman Divacky   // Traditional Bitcode starts after header.
37763ca95b02SDimitry Andric   assert(Buffer.size() >= BWH_HeaderSize &&
3777dff0c46cSDimitry Andric          "Expected header size to be reserved");
37783ca95b02SDimitry Andric   unsigned BCOffset = BWH_HeaderSize;
37793ca95b02SDimitry Andric   unsigned BCSize = Buffer.size() - BWH_HeaderSize;
3780f22ef01cSRoman Divacky 
3781dff0c46cSDimitry Andric   // Write the magic and version.
3782dff0c46cSDimitry Andric   unsigned Position = 0;
37833ca95b02SDimitry Andric   writeInt32ToBuffer(0x0B17C0DE, Buffer, Position);
37843ca95b02SDimitry Andric   writeInt32ToBuffer(0, Buffer, Position); // Version.
37853ca95b02SDimitry Andric   writeInt32ToBuffer(BCOffset, Buffer, Position);
37863ca95b02SDimitry Andric   writeInt32ToBuffer(BCSize, Buffer, Position);
37873ca95b02SDimitry Andric   writeInt32ToBuffer(CPUType, Buffer, Position);
3788f22ef01cSRoman Divacky 
3789f22ef01cSRoman Divacky   // If the file is not a multiple of 16 bytes, insert dummy padding.
3790dff0c46cSDimitry Andric   while (Buffer.size() & 15)
3791dff0c46cSDimitry Andric     Buffer.push_back(0);
3792f22ef01cSRoman Divacky }
3793f22ef01cSRoman Divacky 
37947d523365SDimitry Andric /// Helper to write the header common to all bitcode files.
3795d88c1a5aSDimitry Andric static void writeBitcodeHeader(BitstreamWriter &Stream) {
37967d523365SDimitry Andric   // Emit the file header.
37977d523365SDimitry Andric   Stream.Emit((unsigned)'B', 8);
37987d523365SDimitry Andric   Stream.Emit((unsigned)'C', 8);
37997d523365SDimitry Andric   Stream.Emit(0x0, 4);
38007d523365SDimitry Andric   Stream.Emit(0xC, 4);
38017d523365SDimitry Andric   Stream.Emit(0xE, 4);
38027d523365SDimitry Andric   Stream.Emit(0xD, 4);
38037d523365SDimitry Andric }
38047d523365SDimitry Andric 
3805d88c1a5aSDimitry Andric BitcodeWriter::BitcodeWriter(SmallVectorImpl<char> &Buffer)
3806d88c1a5aSDimitry Andric     : Buffer(Buffer), Stream(new BitstreamWriter(Buffer)) {
3807d88c1a5aSDimitry Andric   writeBitcodeHeader(*Stream);
3808d88c1a5aSDimitry Andric }
3809d88c1a5aSDimitry Andric 
38106bc11b14SDimitry Andric BitcodeWriter::~BitcodeWriter() { assert(WroteStrtab); }
38116bc11b14SDimitry Andric 
38126bc11b14SDimitry Andric void BitcodeWriter::writeBlob(unsigned Block, unsigned Record, StringRef Blob) {
38136bc11b14SDimitry Andric   Stream->EnterSubblock(Block, 3);
38146bc11b14SDimitry Andric 
38156bc11b14SDimitry Andric   auto Abbv = std::make_shared<BitCodeAbbrev>();
38166bc11b14SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(Record));
38176bc11b14SDimitry Andric   Abbv->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob));
38186bc11b14SDimitry Andric   auto AbbrevNo = Stream->EmitAbbrev(std::move(Abbv));
38196bc11b14SDimitry Andric 
38206bc11b14SDimitry Andric   Stream->EmitRecordWithBlob(AbbrevNo, ArrayRef<uint64_t>{Record}, Blob);
38216bc11b14SDimitry Andric 
38226bc11b14SDimitry Andric   Stream->ExitBlock();
38236bc11b14SDimitry Andric }
38246bc11b14SDimitry Andric 
3825a580b014SDimitry Andric void BitcodeWriter::writeSymtab() {
3826a580b014SDimitry Andric   assert(!WroteStrtab && !WroteSymtab);
3827a580b014SDimitry Andric 
3828a580b014SDimitry Andric   // If any module has module-level inline asm, we will require a registered asm
3829a580b014SDimitry Andric   // parser for the target so that we can create an accurate symbol table for
3830a580b014SDimitry Andric   // the module.
3831a580b014SDimitry Andric   for (Module *M : Mods) {
3832a580b014SDimitry Andric     if (M->getModuleInlineAsm().empty())
3833a580b014SDimitry Andric       continue;
3834a580b014SDimitry Andric 
3835a580b014SDimitry Andric     std::string Err;
3836a580b014SDimitry Andric     const Triple TT(M->getTargetTriple());
3837a580b014SDimitry Andric     const Target *T = TargetRegistry::lookupTarget(TT.str(), Err);
3838a580b014SDimitry Andric     if (!T || !T->hasMCAsmParser())
3839a580b014SDimitry Andric       return;
3840a580b014SDimitry Andric   }
3841a580b014SDimitry Andric 
3842a580b014SDimitry Andric   WroteSymtab = true;
3843a580b014SDimitry Andric   SmallVector<char, 0> Symtab;
3844a580b014SDimitry Andric   // The irsymtab::build function may be unable to create a symbol table if the
3845a580b014SDimitry Andric   // module is malformed (e.g. it contains an invalid alias). Writing a symbol
3846a580b014SDimitry Andric   // table is not required for correctness, but we still want to be able to
3847a580b014SDimitry Andric   // write malformed modules to bitcode files, so swallow the error.
3848a580b014SDimitry Andric   if (Error E = irsymtab::build(Mods, Symtab, StrtabBuilder, Alloc)) {
3849a580b014SDimitry Andric     consumeError(std::move(E));
3850a580b014SDimitry Andric     return;
3851a580b014SDimitry Andric   }
3852a580b014SDimitry Andric 
3853a580b014SDimitry Andric   writeBlob(bitc::SYMTAB_BLOCK_ID, bitc::SYMTAB_BLOB,
3854a580b014SDimitry Andric             {Symtab.data(), Symtab.size()});
3855a580b014SDimitry Andric }
3856a580b014SDimitry Andric 
38576bc11b14SDimitry Andric void BitcodeWriter::writeStrtab() {
38586bc11b14SDimitry Andric   assert(!WroteStrtab);
38596bc11b14SDimitry Andric 
38606bc11b14SDimitry Andric   std::vector<char> Strtab;
38616bc11b14SDimitry Andric   StrtabBuilder.finalizeInOrder();
38626bc11b14SDimitry Andric   Strtab.resize(StrtabBuilder.getSize());
38636bc11b14SDimitry Andric   StrtabBuilder.write((uint8_t *)Strtab.data());
38646bc11b14SDimitry Andric 
38656bc11b14SDimitry Andric   writeBlob(bitc::STRTAB_BLOCK_ID, bitc::STRTAB_BLOB,
38666bc11b14SDimitry Andric             {Strtab.data(), Strtab.size()});
38676bc11b14SDimitry Andric 
38686bc11b14SDimitry Andric   WroteStrtab = true;
38696bc11b14SDimitry Andric }
38706bc11b14SDimitry Andric 
38716bc11b14SDimitry Andric void BitcodeWriter::copyStrtab(StringRef Strtab) {
38726bc11b14SDimitry Andric   writeBlob(bitc::STRTAB_BLOCK_ID, bitc::STRTAB_BLOB, Strtab);
38736bc11b14SDimitry Andric   WroteStrtab = true;
38746bc11b14SDimitry Andric }
3875d88c1a5aSDimitry Andric 
3876d88c1a5aSDimitry Andric void BitcodeWriter::writeModule(const Module *M,
3877d88c1a5aSDimitry Andric                                 bool ShouldPreserveUseListOrder,
3878d88c1a5aSDimitry Andric                                 const ModuleSummaryIndex *Index,
38797a7e6055SDimitry Andric                                 bool GenerateHash, ModuleHash *ModHash) {
3880a580b014SDimitry Andric   assert(!WroteStrtab);
3881a580b014SDimitry Andric 
3882a580b014SDimitry Andric   // The Mods vector is used by irsymtab::build, which requires non-const
3883a580b014SDimitry Andric   // Modules in case it needs to materialize metadata. But the bitcode writer
3884a580b014SDimitry Andric   // requires that the module is materialized, so we can cast to non-const here,
3885a580b014SDimitry Andric   // after checking that it is in fact materialized.
3886a580b014SDimitry Andric   assert(M->isMaterialized());
3887a580b014SDimitry Andric   Mods.push_back(const_cast<Module *>(M));
3888a580b014SDimitry Andric 
38896bc11b14SDimitry Andric   ModuleBitcodeWriter ModuleWriter(M, Buffer, StrtabBuilder, *Stream,
38907a7e6055SDimitry Andric                                    ShouldPreserveUseListOrder, Index,
38917a7e6055SDimitry Andric                                    GenerateHash, ModHash);
3892d88c1a5aSDimitry Andric   ModuleWriter.write();
3893d88c1a5aSDimitry Andric }
3894d88c1a5aSDimitry Andric 
389524d58133SDimitry Andric void BitcodeWriter::writeIndex(
389624d58133SDimitry Andric     const ModuleSummaryIndex *Index,
389724d58133SDimitry Andric     const std::map<std::string, GVSummaryMapTy> *ModuleToSummariesForIndex) {
389824d58133SDimitry Andric   IndexBitcodeWriter IndexWriter(*Stream, StrtabBuilder, *Index,
389924d58133SDimitry Andric                                  ModuleToSummariesForIndex);
390024d58133SDimitry Andric   IndexWriter.write();
390124d58133SDimitry Andric }
390224d58133SDimitry Andric 
3903f22ef01cSRoman Divacky /// WriteBitcodeToFile - Write the specified module to the specified output
3904f22ef01cSRoman Divacky /// stream.
3905ff0cc061SDimitry Andric void llvm::WriteBitcodeToFile(const Module *M, raw_ostream &Out,
39067d523365SDimitry Andric                               bool ShouldPreserveUseListOrder,
39073ca95b02SDimitry Andric                               const ModuleSummaryIndex *Index,
39087a7e6055SDimitry Andric                               bool GenerateHash, ModuleHash *ModHash) {
3909139f7f9bSDimitry Andric   SmallVector<char, 0> Buffer;
3910f22ef01cSRoman Divacky   Buffer.reserve(256*1024);
3911f22ef01cSRoman Divacky 
3912dff0c46cSDimitry Andric   // If this is darwin or another generic macho target, reserve space for the
3913dff0c46cSDimitry Andric   // header.
391417a519f9SDimitry Andric   Triple TT(M->getTargetTriple());
39153ca95b02SDimitry Andric   if (TT.isOSDarwin() || TT.isOSBinFormatMachO())
39163ca95b02SDimitry Andric     Buffer.insert(Buffer.begin(), BWH_HeaderSize, 0);
3917dff0c46cSDimitry Andric 
3918d88c1a5aSDimitry Andric   BitcodeWriter Writer(Buffer);
39197a7e6055SDimitry Andric   Writer.writeModule(M, ShouldPreserveUseListOrder, Index, GenerateHash,
39207a7e6055SDimitry Andric                      ModHash);
3921a580b014SDimitry Andric   Writer.writeSymtab();
39226bc11b14SDimitry Andric   Writer.writeStrtab();
3923f22ef01cSRoman Divacky 
39243ca95b02SDimitry Andric   if (TT.isOSDarwin() || TT.isOSBinFormatMachO())
39253ca95b02SDimitry Andric     emitDarwinBCHeaderAndTrailer(Buffer, TT);
3926dff0c46cSDimitry Andric 
3927dff0c46cSDimitry Andric   // Write the generated bitstream to "Out".
3928dff0c46cSDimitry Andric   Out.write((char*)&Buffer.front(), Buffer.size());
3929f22ef01cSRoman Divacky }
39307d523365SDimitry Andric 
3931d88c1a5aSDimitry Andric void IndexBitcodeWriter::write() {
39327d523365SDimitry Andric   Stream.EnterSubblock(bitc::MODULE_BLOCK_ID, 3);
39337d523365SDimitry Andric 
39346bc11b14SDimitry Andric   writeModuleVersion();
39357d523365SDimitry Andric 
39363ca95b02SDimitry Andric   // Write the module paths in the combined index.
39373ca95b02SDimitry Andric   writeModStrings();
39383ca95b02SDimitry Andric 
39393ca95b02SDimitry Andric   // Write the summary combined index records.
39403ca95b02SDimitry Andric   writeCombinedGlobalValueSummary();
39417d523365SDimitry Andric 
39427d523365SDimitry Andric   Stream.ExitBlock();
39433ca95b02SDimitry Andric }
39443ca95b02SDimitry Andric 
39453ca95b02SDimitry Andric // Write the specified module summary index to the given raw output stream,
39463ca95b02SDimitry Andric // where it will be written in a new bitcode block. This is used when
39473ca95b02SDimitry Andric // writing the combined index file for ThinLTO. When writing a subset of the
39483ca95b02SDimitry Andric // index for a distributed backend, provide a \p ModuleToSummariesForIndex map.
39493ca95b02SDimitry Andric void llvm::WriteIndexToFile(
39503ca95b02SDimitry Andric     const ModuleSummaryIndex &Index, raw_ostream &Out,
3951d88c1a5aSDimitry Andric     const std::map<std::string, GVSummaryMapTy> *ModuleToSummariesForIndex) {
39523ca95b02SDimitry Andric   SmallVector<char, 0> Buffer;
39533ca95b02SDimitry Andric   Buffer.reserve(256 * 1024);
39543ca95b02SDimitry Andric 
395524d58133SDimitry Andric   BitcodeWriter Writer(Buffer);
395624d58133SDimitry Andric   Writer.writeIndex(&Index, ModuleToSummariesForIndex);
395724d58133SDimitry Andric   Writer.writeStrtab();
39587d523365SDimitry Andric 
39597d523365SDimitry Andric   Out.write((char *)&Buffer.front(), Buffer.size());
39607d523365SDimitry Andric }
3961