TGParser.h 9.4 KB

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  1. //===- TGParser.h - Parser for TableGen Files -------------------*- C++ -*-===//
  2. //
  3. // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
  4. // See https://llvm.org/LICENSE.txt for license information.
  5. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  6. //
  7. //===----------------------------------------------------------------------===//
  8. //
  9. // This class represents the Parser for tablegen files.
  10. //
  11. //===----------------------------------------------------------------------===//
  12. #ifndef LLVM_LIB_TABLEGEN_TGPARSER_H
  13. #define LLVM_LIB_TABLEGEN_TGPARSER_H
  14. #include "TGLexer.h"
  15. #include "llvm/TableGen/Error.h"
  16. #include "llvm/TableGen/Record.h"
  17. #include <map>
  18. namespace llvm {
  19. class SourceMgr;
  20. class Twine;
  21. struct ForeachLoop;
  22. struct MultiClass;
  23. struct SubClassReference;
  24. struct SubMultiClassReference;
  25. struct LetRecord {
  26. StringInit *Name;
  27. std::vector<unsigned> Bits;
  28. Init *Value;
  29. SMLoc Loc;
  30. LetRecord(StringInit *N, ArrayRef<unsigned> B, Init *V, SMLoc L)
  31. : Name(N), Bits(B), Value(V), Loc(L) {
  32. }
  33. };
  34. /// RecordsEntry - Can be either a record or a foreach loop.
  35. struct RecordsEntry {
  36. std::unique_ptr<Record> Rec;
  37. std::unique_ptr<ForeachLoop> Loop;
  38. void dump() const;
  39. RecordsEntry() {}
  40. RecordsEntry(std::unique_ptr<Record> Rec) : Rec(std::move(Rec)) {}
  41. RecordsEntry(std::unique_ptr<ForeachLoop> Loop)
  42. : Loop(std::move(Loop)) {}
  43. };
  44. /// ForeachLoop - Record the iteration state associated with a for loop.
  45. /// This is used to instantiate items in the loop body.
  46. ///
  47. /// IterVar is allowed to be null, in which case no iteration variable is
  48. /// defined in the loop at all. (This happens when a ForeachLoop is
  49. /// constructed by desugaring an if statement.)
  50. struct ForeachLoop {
  51. SMLoc Loc;
  52. VarInit *IterVar;
  53. Init *ListValue;
  54. std::vector<RecordsEntry> Entries;
  55. void dump() const;
  56. ForeachLoop(SMLoc Loc, VarInit *IVar, Init *LValue)
  57. : Loc(Loc), IterVar(IVar), ListValue(LValue) {}
  58. };
  59. struct DefsetRecord {
  60. SMLoc Loc;
  61. RecTy *EltTy = nullptr;
  62. SmallVector<Init *, 16> Elements;
  63. };
  64. class TGLocalVarScope {
  65. // A scope to hold local variable definitions from defvar.
  66. std::map<std::string, Init *, std::less<>> vars;
  67. std::unique_ptr<TGLocalVarScope> parent;
  68. public:
  69. TGLocalVarScope() = default;
  70. TGLocalVarScope(std::unique_ptr<TGLocalVarScope> parent)
  71. : parent(std::move(parent)) {}
  72. std::unique_ptr<TGLocalVarScope> extractParent() {
  73. // This is expected to be called just before we are destructed, so
  74. // it doesn't much matter what state we leave 'parent' in.
  75. return std::move(parent);
  76. }
  77. Init *getVar(StringRef Name) const {
  78. auto It = vars.find(Name);
  79. if (It != vars.end())
  80. return It->second;
  81. if (parent)
  82. return parent->getVar(Name);
  83. return nullptr;
  84. }
  85. bool varAlreadyDefined(StringRef Name) const {
  86. // When we check whether a variable is already defined, for the purpose of
  87. // reporting an error on redefinition, we don't look up to the parent
  88. // scope, because it's all right to shadow an outer definition with an
  89. // inner one.
  90. return vars.find(Name) != vars.end();
  91. }
  92. void addVar(StringRef Name, Init *I) {
  93. bool Ins = vars.insert(std::make_pair(std::string(Name), I)).second;
  94. (void)Ins;
  95. assert(Ins && "Local variable already exists");
  96. }
  97. };
  98. struct MultiClass {
  99. Record Rec; // Placeholder for template args and Name.
  100. std::vector<RecordsEntry> Entries;
  101. void dump() const;
  102. MultiClass(StringRef Name, SMLoc Loc, RecordKeeper &Records) :
  103. Rec(Name, Loc, Records) {}
  104. };
  105. class TGParser {
  106. TGLexer Lex;
  107. std::vector<SmallVector<LetRecord, 4>> LetStack;
  108. std::map<std::string, std::unique_ptr<MultiClass>> MultiClasses;
  109. /// Loops - Keep track of any foreach loops we are within.
  110. ///
  111. std::vector<std::unique_ptr<ForeachLoop>> Loops;
  112. SmallVector<DefsetRecord *, 2> Defsets;
  113. /// CurMultiClass - If we are parsing a 'multiclass' definition, this is the
  114. /// current value.
  115. MultiClass *CurMultiClass;
  116. /// CurLocalScope - Innermost of the current nested scopes for 'defvar' local
  117. /// variables.
  118. std::unique_ptr<TGLocalVarScope> CurLocalScope;
  119. // Record tracker
  120. RecordKeeper &Records;
  121. // A "named boolean" indicating how to parse identifiers. Usually
  122. // identifiers map to some existing object but in special cases
  123. // (e.g. parsing def names) no such object exists yet because we are
  124. // in the middle of creating in. For those situations, allow the
  125. // parser to ignore missing object errors.
  126. enum IDParseMode {
  127. ParseValueMode, // We are parsing a value we expect to look up.
  128. ParseNameMode, // We are parsing a name of an object that does not yet
  129. // exist.
  130. };
  131. public:
  132. TGParser(SourceMgr &SM, ArrayRef<std::string> Macros,
  133. RecordKeeper &records)
  134. : Lex(SM, Macros), CurMultiClass(nullptr), Records(records) {}
  135. /// ParseFile - Main entrypoint for parsing a tblgen file. These parser
  136. /// routines return true on error, or false on success.
  137. bool ParseFile();
  138. bool Error(SMLoc L, const Twine &Msg) const {
  139. PrintError(L, Msg);
  140. return true;
  141. }
  142. bool TokError(const Twine &Msg) const {
  143. return Error(Lex.getLoc(), Msg);
  144. }
  145. const TGLexer::DependenciesSetTy &getDependencies() const {
  146. return Lex.getDependencies();
  147. }
  148. TGLocalVarScope *PushLocalScope() {
  149. CurLocalScope = std::make_unique<TGLocalVarScope>(std::move(CurLocalScope));
  150. // Returns a pointer to the new scope, so that the caller can pass it back
  151. // to PopLocalScope which will check by assertion that the pushes and pops
  152. // match up properly.
  153. return CurLocalScope.get();
  154. }
  155. void PopLocalScope(TGLocalVarScope *ExpectedStackTop) {
  156. assert(ExpectedStackTop == CurLocalScope.get() &&
  157. "Mismatched pushes and pops of local variable scopes");
  158. CurLocalScope = CurLocalScope->extractParent();
  159. }
  160. private: // Semantic analysis methods.
  161. bool AddValue(Record *TheRec, SMLoc Loc, const RecordVal &RV);
  162. bool SetValue(Record *TheRec, SMLoc Loc, Init *ValName,
  163. ArrayRef<unsigned> BitList, Init *V,
  164. bool AllowSelfAssignment = false);
  165. bool AddSubClass(Record *Rec, SubClassReference &SubClass);
  166. bool AddSubClass(RecordsEntry &Entry, SubClassReference &SubClass);
  167. bool AddSubMultiClass(MultiClass *CurMC,
  168. SubMultiClassReference &SubMultiClass);
  169. using SubstStack = SmallVector<std::pair<Init *, Init *>, 8>;
  170. bool addEntry(RecordsEntry E);
  171. bool resolve(const ForeachLoop &Loop, SubstStack &Stack, bool Final,
  172. std::vector<RecordsEntry> *Dest, SMLoc *Loc = nullptr);
  173. bool resolve(const std::vector<RecordsEntry> &Source, SubstStack &Substs,
  174. bool Final, std::vector<RecordsEntry> *Dest,
  175. SMLoc *Loc = nullptr);
  176. bool addDefOne(std::unique_ptr<Record> Rec);
  177. private: // Parser methods.
  178. bool consume(tgtok::TokKind K);
  179. bool ParseObjectList(MultiClass *MC = nullptr);
  180. bool ParseObject(MultiClass *MC);
  181. bool ParseClass();
  182. bool ParseMultiClass();
  183. bool ParseDefm(MultiClass *CurMultiClass);
  184. bool ParseDef(MultiClass *CurMultiClass);
  185. bool ParseDefset();
  186. bool ParseDefvar();
  187. bool ParseForeach(MultiClass *CurMultiClass);
  188. bool ParseIf(MultiClass *CurMultiClass);
  189. bool ParseIfBody(MultiClass *CurMultiClass, StringRef Kind);
  190. bool ParseAssert(MultiClass *CurMultiClass, Record *CurRec);
  191. bool ParseTopLevelLet(MultiClass *CurMultiClass);
  192. void ParseLetList(SmallVectorImpl<LetRecord> &Result);
  193. bool ParseObjectBody(Record *CurRec);
  194. bool ParseBody(Record *CurRec);
  195. bool ParseBodyItem(Record *CurRec);
  196. bool ParseTemplateArgList(Record *CurRec);
  197. Init *ParseDeclaration(Record *CurRec, bool ParsingTemplateArgs);
  198. VarInit *ParseForeachDeclaration(Init *&ForeachListValue);
  199. SubClassReference ParseSubClassReference(Record *CurRec, bool isDefm);
  200. SubMultiClassReference ParseSubMultiClassReference(MultiClass *CurMC);
  201. Init *ParseIDValue(Record *CurRec, StringInit *Name, SMLoc NameLoc,
  202. IDParseMode Mode = ParseValueMode);
  203. Init *ParseSimpleValue(Record *CurRec, RecTy *ItemType = nullptr,
  204. IDParseMode Mode = ParseValueMode);
  205. Init *ParseValue(Record *CurRec, RecTy *ItemType = nullptr,
  206. IDParseMode Mode = ParseValueMode);
  207. void ParseValueList(SmallVectorImpl<llvm::Init*> &Result, Record *CurRec,
  208. Record *ArgsRec = nullptr, RecTy *EltTy = nullptr);
  209. void ParseDagArgList(
  210. SmallVectorImpl<std::pair<llvm::Init*, StringInit*>> &Result,
  211. Record *CurRec);
  212. bool ParseOptionalRangeList(SmallVectorImpl<unsigned> &Ranges);
  213. bool ParseOptionalBitList(SmallVectorImpl<unsigned> &Ranges);
  214. void ParseRangeList(SmallVectorImpl<unsigned> &Result);
  215. bool ParseRangePiece(SmallVectorImpl<unsigned> &Ranges,
  216. TypedInit *FirstItem = nullptr);
  217. RecTy *ParseType();
  218. Init *ParseOperation(Record *CurRec, RecTy *ItemType);
  219. Init *ParseOperationSubstr(Record *CurRec, RecTy *ItemType);
  220. Init *ParseOperationForEachFilter(Record *CurRec, RecTy *ItemType);
  221. Init *ParseOperationCond(Record *CurRec, RecTy *ItemType);
  222. RecTy *ParseOperatorType();
  223. Init *ParseObjectName(MultiClass *CurMultiClass);
  224. Record *ParseClassID();
  225. MultiClass *ParseMultiClassID();
  226. bool ApplyLetStack(Record *CurRec);
  227. bool ApplyLetStack(RecordsEntry &Entry);
  228. void CheckAssert(SMLoc Loc, Init *Condition, Init *Message);
  229. void CheckRecordAsserts(Record &Rec);
  230. };
  231. } // end namespace llvm
  232. #endif