1 //===-- lib/Semantics/scope.cpp -------------------------------------------===// 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 #include "flang/Semantics/scope.h" 10 #include "flang/Parser/characters.h" 11 #include "flang/Semantics/symbol.h" 12 #include "flang/Semantics/type.h" 13 #include "llvm/Support/raw_ostream.h" 14 #include <algorithm> 15 #include <memory> 16 17 namespace Fortran::semantics { 18 19 Symbols<1024> Scope::allSymbols; 20 21 bool EquivalenceObject::operator==(const EquivalenceObject &that) const { 22 return symbol == that.symbol && subscripts == that.subscripts && 23 substringStart == that.substringStart; 24 } 25 26 bool EquivalenceObject::operator<(const EquivalenceObject &that) const { 27 return &symbol < &that.symbol || 28 (&symbol == &that.symbol && 29 (subscripts < that.subscripts || 30 (subscripts == that.subscripts && 31 substringStart < that.substringStart))); 32 } 33 34 std::string EquivalenceObject::AsFortran() const { 35 std::string buf; 36 llvm::raw_string_ostream ss{buf}; 37 ss << symbol.name().ToString(); 38 if (!subscripts.empty()) { 39 char sep{'('}; 40 for (auto subscript : subscripts) { 41 ss << sep << subscript; 42 sep = ','; 43 } 44 ss << ')'; 45 } 46 if (substringStart) { 47 ss << '(' << *substringStart << ":)"; 48 } 49 return ss.str(); 50 } 51 52 bool Scope::IsModule() const { 53 return kind_ == Kind::Module && !symbol_->get<ModuleDetails>().isSubmodule(); 54 } 55 bool Scope::IsSubmodule() const { 56 return kind_ == Kind::Module && symbol_->get<ModuleDetails>().isSubmodule(); 57 } 58 59 Scope &Scope::MakeScope(Kind kind, Symbol *symbol) { 60 return children_.emplace_back(*this, kind, symbol); 61 } 62 63 template <typename T> 64 static std::vector<common::Reference<T>> GetSortedSymbols( 65 std::map<SourceName, MutableSymbolRef> symbols) { 66 std::vector<common::Reference<T>> result; 67 result.reserve(symbols.size()); 68 for (auto &pair : symbols) { 69 result.push_back(*pair.second); 70 } 71 std::sort(result.begin(), result.end()); 72 return result; 73 } 74 75 MutableSymbolVector Scope::GetSymbols() { 76 return GetSortedSymbols<Symbol>(symbols_); 77 } 78 SymbolVector Scope::GetSymbols() const { 79 return GetSortedSymbols<const Symbol>(symbols_); 80 } 81 82 Scope::iterator Scope::find(const SourceName &name) { 83 return symbols_.find(name); 84 } 85 Scope::size_type Scope::erase(const SourceName &name) { 86 auto it{symbols_.find(name)}; 87 if (it != end()) { 88 symbols_.erase(it); 89 return 1; 90 } else { 91 return 0; 92 } 93 } 94 Symbol *Scope::FindSymbol(const SourceName &name) const { 95 auto it{find(name)}; 96 if (it != end()) { 97 return &*it->second; 98 } else if (CanImport(name)) { 99 return parent_.FindSymbol(name); 100 } else { 101 return nullptr; 102 } 103 } 104 105 Symbol *Scope::FindComponent(SourceName name) const { 106 CHECK(IsDerivedType()); 107 auto found{find(name)}; 108 if (found != end()) { 109 return &*found->second; 110 } else if (const Scope * parent{GetDerivedTypeParent()}) { 111 return parent->FindComponent(name); 112 } else { 113 return nullptr; 114 } 115 } 116 117 std::optional<SourceName> Scope::GetName() const { 118 if (const auto *sym{GetSymbol()}) { 119 return sym->name(); 120 } else { 121 return std::nullopt; 122 } 123 } 124 125 bool Scope::Contains(const Scope &that) const { 126 for (const Scope *scope{&that};; scope = &scope->parent()) { 127 if (*scope == *this) { 128 return true; 129 } 130 if (scope->IsGlobal()) { 131 return false; 132 } 133 } 134 } 135 136 Symbol *Scope::CopySymbol(const Symbol &symbol) { 137 auto pair{try_emplace(symbol.name(), symbol.attrs())}; 138 if (!pair.second) { 139 return nullptr; // already exists 140 } else { 141 Symbol &result{*pair.first->second}; 142 result.flags() = symbol.flags(); 143 result.set_details(common::Clone(symbol.details())); 144 return &result; 145 } 146 } 147 148 void Scope::add_equivalenceSet(EquivalenceSet &&set) { 149 equivalenceSets_.emplace_back(std::move(set)); 150 } 151 152 void Scope::add_crayPointer(const SourceName &name, Symbol &pointer) { 153 CHECK(pointer.test(Symbol::Flag::CrayPointer)); 154 crayPointers_.emplace(name, pointer); 155 } 156 157 Symbol &Scope::MakeCommonBlock(const SourceName &name) { 158 const auto it{commonBlocks_.find(name)}; 159 if (it != commonBlocks_.end()) { 160 return *it->second; 161 } else { 162 Symbol &symbol{MakeSymbol(name, Attrs{}, CommonBlockDetails{})}; 163 commonBlocks_.emplace(name, symbol); 164 return symbol; 165 } 166 } 167 Symbol *Scope::FindCommonBlock(const SourceName &name) { 168 const auto it{commonBlocks_.find(name)}; 169 return it != commonBlocks_.end() ? &*it->second : nullptr; 170 } 171 172 Scope *Scope::FindSubmodule(const SourceName &name) const { 173 auto it{submodules_.find(name)}; 174 if (it == submodules_.end()) { 175 return nullptr; 176 } else { 177 return &*it->second; 178 } 179 } 180 bool Scope::AddSubmodule(const SourceName &name, Scope &submodule) { 181 return submodules_.emplace(name, submodule).second; 182 } 183 184 const DeclTypeSpec *Scope::FindType(const DeclTypeSpec &type) const { 185 auto it{std::find(declTypeSpecs_.begin(), declTypeSpecs_.end(), type)}; 186 return it != declTypeSpecs_.end() ? &*it : nullptr; 187 } 188 189 const DeclTypeSpec &Scope::MakeNumericType( 190 TypeCategory category, KindExpr &&kind) { 191 return MakeLengthlessType(NumericTypeSpec{category, std::move(kind)}); 192 } 193 const DeclTypeSpec &Scope::MakeLogicalType(KindExpr &&kind) { 194 return MakeLengthlessType(LogicalTypeSpec{std::move(kind)}); 195 } 196 const DeclTypeSpec &Scope::MakeTypeStarType() { 197 return MakeLengthlessType(DeclTypeSpec{DeclTypeSpec::TypeStar}); 198 } 199 const DeclTypeSpec &Scope::MakeClassStarType() { 200 return MakeLengthlessType(DeclTypeSpec{DeclTypeSpec::ClassStar}); 201 } 202 // Types that can't have length parameters can be reused without having to 203 // compare length expressions. They are stored in the global scope. 204 const DeclTypeSpec &Scope::MakeLengthlessType(DeclTypeSpec &&type) { 205 const auto *found{FindType(type)}; 206 return found ? *found : declTypeSpecs_.emplace_back(std::move(type)); 207 } 208 209 const DeclTypeSpec &Scope::MakeCharacterType( 210 ParamValue &&length, KindExpr &&kind) { 211 return declTypeSpecs_.emplace_back( 212 CharacterTypeSpec{std::move(length), std::move(kind)}); 213 } 214 215 DeclTypeSpec &Scope::MakeDerivedType( 216 DeclTypeSpec::Category category, DerivedTypeSpec &&spec) { 217 return declTypeSpecs_.emplace_back(category, std::move(spec)); 218 } 219 220 void Scope::set_chars(parser::CookedSource &cooked) { 221 CHECK(kind_ == Kind::Module); 222 CHECK(parent_.IsGlobal() || parent_.IsModuleFile()); 223 CHECK(DEREF(symbol_).test(Symbol::Flag::ModFile)); 224 // TODO: Preserve the CookedSource rather than acquiring its string. 225 chars_ = cooked.AcquireData(); 226 } 227 228 Scope::ImportKind Scope::GetImportKind() const { 229 if (importKind_) { 230 return *importKind_; 231 } 232 if (symbol_ && !symbol_->attrs().test(Attr::MODULE)) { 233 if (auto *details{symbol_->detailsIf<SubprogramDetails>()}) { 234 if (details->isInterface()) { 235 return ImportKind::None; // default for non-mod-proc interface body 236 } 237 } 238 } 239 return ImportKind::Default; 240 } 241 242 std::optional<parser::MessageFixedText> Scope::SetImportKind(ImportKind kind) { 243 if (!importKind_) { 244 importKind_ = kind; 245 return std::nullopt; 246 } 247 bool hasNone{kind == ImportKind::None || *importKind_ == ImportKind::None}; 248 bool hasAll{kind == ImportKind::All || *importKind_ == ImportKind::All}; 249 // Check C8100 and C898: constraints on multiple IMPORT statements 250 if (hasNone || hasAll) { 251 return hasNone 252 ? "IMPORT,NONE must be the only IMPORT statement in a scope"_err_en_US 253 : "IMPORT,ALL must be the only IMPORT statement in a scope"_err_en_US; 254 } else if (kind != *importKind_ && 255 (kind != ImportKind::Only || kind != ImportKind::Only)) { 256 return "Every IMPORT must have ONLY specifier if one of them does"_err_en_US; 257 } else { 258 return std::nullopt; 259 } 260 } 261 262 void Scope::add_importName(const SourceName &name) { 263 importNames_.insert(name); 264 } 265 266 // true if name can be imported or host-associated from parent scope. 267 bool Scope::CanImport(const SourceName &name) const { 268 if (IsGlobal() || parent_.IsGlobal()) { 269 return false; 270 } 271 switch (GetImportKind()) { 272 SWITCH_COVERS_ALL_CASES 273 case ImportKind::None: 274 return false; 275 case ImportKind::All: 276 case ImportKind::Default: 277 return true; 278 case ImportKind::Only: 279 return importNames_.count(name) > 0; 280 } 281 } 282 283 const Scope *Scope::FindScope(parser::CharBlock source) const { 284 return const_cast<Scope *>(this)->FindScope(source); 285 } 286 287 Scope *Scope::FindScope(parser::CharBlock source) { 288 bool isContained{sourceRange_.Contains(source)}; 289 if (!isContained && !IsGlobal() && !IsModuleFile()) { 290 return nullptr; 291 } 292 for (auto &child : children_) { 293 if (auto *scope{child.FindScope(source)}) { 294 return scope; 295 } 296 } 297 return isContained ? this : nullptr; 298 } 299 300 void Scope::AddSourceRange(const parser::CharBlock &source) { 301 for (auto *scope = this; !scope->IsGlobal(); scope = &scope->parent()) { 302 scope->sourceRange_.ExtendToCover(source); 303 } 304 } 305 306 llvm::raw_ostream &operator<<(llvm::raw_ostream &os, const Scope &scope) { 307 os << Scope::EnumToString(scope.kind()) << " scope: "; 308 if (auto *symbol{scope.symbol()}) { 309 os << *symbol << ' '; 310 } 311 if (scope.derivedTypeSpec_) { 312 os << "instantiation of " << *scope.derivedTypeSpec_ << ' '; 313 } 314 os << scope.children_.size() << " children\n"; 315 for (const auto &pair : scope.symbols_) { 316 const Symbol &symbol{*pair.second}; 317 os << " " << symbol << '\n'; 318 } 319 if (!scope.equivalenceSets_.empty()) { 320 os << " Equivalence Sets:\n"; 321 for (const auto &set : scope.equivalenceSets_) { 322 os << " "; 323 for (const auto &object : set) { 324 os << ' ' << object.AsFortran(); 325 } 326 os << '\n'; 327 } 328 } 329 for (const auto &pair : scope.commonBlocks_) { 330 const Symbol &symbol{*pair.second}; 331 os << " " << symbol << '\n'; 332 } 333 return os; 334 } 335 336 bool Scope::IsParameterizedDerivedType() const { 337 if (!IsDerivedType()) { 338 return false; 339 } 340 if (const Scope * parent{GetDerivedTypeParent()}) { 341 if (parent->IsParameterizedDerivedType()) { 342 return true; 343 } 344 } 345 for (const auto &pair : symbols_) { 346 if (pair.second->has<TypeParamDetails>()) { 347 return true; 348 } 349 } 350 return false; 351 } 352 353 const DeclTypeSpec *Scope::FindInstantiatedDerivedType( 354 const DerivedTypeSpec &spec, DeclTypeSpec::Category category) const { 355 DeclTypeSpec type{category, spec}; 356 if (const auto *result{FindType(type)}) { 357 return result; 358 } else if (IsGlobal()) { 359 return nullptr; 360 } else { 361 return parent().FindInstantiatedDerivedType(spec, category); 362 } 363 } 364 365 const Symbol *Scope::GetSymbol() const { 366 if (symbol_) { 367 return symbol_; 368 } 369 if (derivedTypeSpec_) { 370 return &derivedTypeSpec_->typeSymbol(); 371 } 372 return nullptr; 373 } 374 375 const Scope *Scope::GetDerivedTypeParent() const { 376 if (const Symbol * symbol{GetSymbol()}) { 377 if (const DerivedTypeSpec * parent{symbol->GetParentTypeSpec(this)}) { 378 return parent->scope(); 379 } 380 } 381 return nullptr; 382 } 383 384 const Scope &Scope::GetDerivedTypeBase() const { 385 const Scope *child{this}; 386 for (const Scope *parent{GetDerivedTypeParent()}; parent != nullptr; 387 parent = child->GetDerivedTypeParent()) { 388 child = parent; 389 } 390 return *child; 391 } 392 393 void Scope::InstantiateDerivedTypes(SemanticsContext &context) { 394 for (DeclTypeSpec &type : declTypeSpecs_) { 395 if (type.category() == DeclTypeSpec::TypeDerived || 396 type.category() == DeclTypeSpec::ClassDerived) { 397 type.derivedTypeSpec().Instantiate(*this, context); 398 } 399 } 400 } 401 } // namespace Fortran::semantics 402