1 //===-- lib/Semantics/symbol.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/symbol.h" 10 #include "flang/Common/idioms.h" 11 #include "flang/Evaluate/expression.h" 12 #include "flang/Semantics/scope.h" 13 #include "flang/Semantics/semantics.h" 14 #include "flang/Semantics/tools.h" 15 #include "llvm/Support/raw_ostream.h" 16 #include <string> 17 18 namespace Fortran::semantics { 19 20 template <typename T> 21 static void DumpOptional(llvm::raw_ostream &os, const char *label, const T &x) { 22 if (x) { 23 os << ' ' << label << ':' << *x; 24 } 25 } 26 template <typename T> 27 static void DumpExpr(llvm::raw_ostream &os, const char *label, 28 const std::optional<evaluate::Expr<T>> &x) { 29 if (x) { 30 x->AsFortran(os << ' ' << label << ':'); 31 } 32 } 33 34 static void DumpBool(llvm::raw_ostream &os, const char *label, bool x) { 35 if (x) { 36 os << ' ' << label; 37 } 38 } 39 40 static void DumpSymbolVector(llvm::raw_ostream &os, const SymbolVector &list) { 41 char sep{' '}; 42 for (const Symbol &elem : list) { 43 os << sep << elem.name(); 44 sep = ','; 45 } 46 } 47 48 static void DumpType(llvm::raw_ostream &os, const Symbol &symbol) { 49 if (const auto *type{symbol.GetType()}) { 50 os << *type << ' '; 51 } 52 } 53 static void DumpType(llvm::raw_ostream &os, const DeclTypeSpec *type) { 54 if (type) { 55 os << ' ' << *type; 56 } 57 } 58 59 template <typename T> 60 static void DumpList(llvm::raw_ostream &os, const char *label, const T &list) { 61 if (!list.empty()) { 62 os << ' ' << label << ':'; 63 char sep{' '}; 64 for (const auto &elem : list) { 65 os << sep << elem; 66 sep = ','; 67 } 68 } 69 } 70 71 const Scope *ModuleDetails::parent() const { 72 return isSubmodule_ && scope_ ? &scope_->parent() : nullptr; 73 } 74 const Scope *ModuleDetails::ancestor() const { 75 return isSubmodule_ && scope_ ? FindModuleContaining(*scope_) : nullptr; 76 } 77 void ModuleDetails::set_scope(const Scope *scope) { 78 CHECK(!scope_); 79 bool scopeIsSubmodule{scope->parent().kind() == Scope::Kind::Module}; 80 CHECK(isSubmodule_ == scopeIsSubmodule); 81 scope_ = scope; 82 } 83 84 llvm::raw_ostream &operator<<( 85 llvm::raw_ostream &os, const SubprogramDetails &x) { 86 DumpBool(os, "isInterface", x.isInterface_); 87 DumpExpr(os, "bindName", x.bindName_); 88 if (x.result_) { 89 DumpType(os << " result:", x.result()); 90 os << x.result_->name(); 91 if (!x.result_->attrs().empty()) { 92 os << ", " << x.result_->attrs(); 93 } 94 } 95 if (x.entryScope_) { 96 os << " entry"; 97 if (x.entryScope_->symbol()) { 98 os << " in " << x.entryScope_->symbol()->name(); 99 } 100 } 101 char sep{'('}; 102 os << ' '; 103 for (const Symbol *arg : x.dummyArgs_) { 104 os << sep; 105 sep = ','; 106 if (arg) { 107 DumpType(os, *arg); 108 os << arg->name(); 109 } else { 110 os << '*'; 111 } 112 } 113 os << (sep == '(' ? "()" : ")"); 114 return os; 115 } 116 117 void EntityDetails::set_type(const DeclTypeSpec &type) { 118 CHECK(!type_); 119 type_ = &type; 120 } 121 122 void AssocEntityDetails::set_rank(int rank) { rank_ = rank; } 123 void EntityDetails::ReplaceType(const DeclTypeSpec &type) { type_ = &type; } 124 125 void ObjectEntityDetails::set_shape(const ArraySpec &shape) { 126 CHECK(shape_.empty()); 127 for (const auto &shapeSpec : shape) { 128 shape_.push_back(shapeSpec); 129 } 130 } 131 void ObjectEntityDetails::set_coshape(const ArraySpec &coshape) { 132 CHECK(coshape_.empty()); 133 for (const auto &shapeSpec : coshape) { 134 coshape_.push_back(shapeSpec); 135 } 136 } 137 138 ProcEntityDetails::ProcEntityDetails(EntityDetails &&d) : EntityDetails(d) { 139 if (type()) { 140 interface_.set_type(*type()); 141 } 142 } 143 144 UseErrorDetails::UseErrorDetails(const UseDetails &useDetails) { 145 add_occurrence(useDetails.location(), *GetUsedModule(useDetails).scope()); 146 } 147 UseErrorDetails &UseErrorDetails::add_occurrence( 148 const SourceName &location, const Scope &module) { 149 occurrences_.push_back(std::make_pair(location, &module)); 150 return *this; 151 } 152 153 GenericDetails::GenericDetails(const SymbolVector &specificProcs) 154 : specificProcs_{specificProcs} {} 155 156 void GenericDetails::AddSpecificProc( 157 const Symbol &proc, SourceName bindingName) { 158 specificProcs_.push_back(proc); 159 bindingNames_.push_back(bindingName); 160 } 161 void GenericDetails::set_specific(Symbol &specific) { 162 CHECK(!specific_); 163 CHECK(!derivedType_); 164 specific_ = &specific; 165 } 166 void GenericDetails::set_derivedType(Symbol &derivedType) { 167 CHECK(!specific_); 168 CHECK(!derivedType_); 169 derivedType_ = &derivedType; 170 } 171 172 const Symbol *GenericDetails::CheckSpecific() const { 173 return const_cast<GenericDetails *>(this)->CheckSpecific(); 174 } 175 Symbol *GenericDetails::CheckSpecific() { 176 if (specific_) { 177 for (const Symbol &proc : specificProcs_) { 178 if (&proc == specific_) { 179 return nullptr; 180 } 181 } 182 return specific_; 183 } else { 184 return nullptr; 185 } 186 } 187 188 void GenericDetails::CopyFrom(const GenericDetails &from) { 189 if (from.specific_) { 190 CHECK(!specific_ || specific_ == from.specific_); 191 specific_ = from.specific_; 192 } 193 if (from.derivedType_) { 194 CHECK(!derivedType_ || derivedType_ == from.derivedType_); 195 derivedType_ = from.derivedType_; 196 } 197 for (const Symbol &symbol : from.specificProcs_) { 198 if (std::find_if(specificProcs_.begin(), specificProcs_.end(), 199 [&](const Symbol &mySymbol) { return &mySymbol == &symbol; }) == 200 specificProcs_.end()) { 201 specificProcs_.push_back(symbol); 202 } 203 } 204 } 205 206 // The name of the kind of details for this symbol. 207 // This is primarily for debugging. 208 std::string DetailsToString(const Details &details) { 209 return std::visit( 210 common::visitors{ 211 [](const UnknownDetails &) { return "Unknown"; }, 212 [](const MainProgramDetails &) { return "MainProgram"; }, 213 [](const ModuleDetails &) { return "Module"; }, 214 [](const SubprogramDetails &) { return "Subprogram"; }, 215 [](const SubprogramNameDetails &) { return "SubprogramName"; }, 216 [](const EntityDetails &) { return "Entity"; }, 217 [](const ObjectEntityDetails &) { return "ObjectEntity"; }, 218 [](const ProcEntityDetails &) { return "ProcEntity"; }, 219 [](const DerivedTypeDetails &) { return "DerivedType"; }, 220 [](const UseDetails &) { return "Use"; }, 221 [](const UseErrorDetails &) { return "UseError"; }, 222 [](const HostAssocDetails &) { return "HostAssoc"; }, 223 [](const GenericDetails &) { return "Generic"; }, 224 [](const ProcBindingDetails &) { return "ProcBinding"; }, 225 [](const NamelistDetails &) { return "Namelist"; }, 226 [](const CommonBlockDetails &) { return "CommonBlockDetails"; }, 227 [](const FinalProcDetails &) { return "FinalProc"; }, 228 [](const TypeParamDetails &) { return "TypeParam"; }, 229 [](const MiscDetails &) { return "Misc"; }, 230 [](const AssocEntityDetails &) { return "AssocEntity"; }, 231 }, 232 details); 233 } 234 235 const std::string Symbol::GetDetailsName() const { 236 return DetailsToString(details_); 237 } 238 239 void Symbol::set_details(Details &&details) { 240 CHECK(CanReplaceDetails(details)); 241 details_ = std::move(details); 242 } 243 244 bool Symbol::CanReplaceDetails(const Details &details) const { 245 if (has<UnknownDetails>()) { 246 return true; // can always replace UnknownDetails 247 } else { 248 return std::visit( 249 common::visitors{ 250 [](const UseErrorDetails &) { return true; }, 251 [&](const ObjectEntityDetails &) { return has<EntityDetails>(); }, 252 [&](const ProcEntityDetails &) { return has<EntityDetails>(); }, 253 [&](const SubprogramDetails &) { 254 return has<SubprogramNameDetails>() || has<EntityDetails>(); 255 }, 256 [&](const DerivedTypeDetails &) { 257 auto *derived{detailsIf<DerivedTypeDetails>()}; 258 return derived && derived->isForwardReferenced(); 259 }, 260 [](const auto &) { return false; }, 261 }, 262 details); 263 } 264 } 265 266 // Usually a symbol's name is the first occurrence in the source, but sometimes 267 // we want to replace it with one at a different location (but same characters). 268 void Symbol::ReplaceName(const SourceName &name) { 269 CHECK(name == name_); 270 name_ = name; 271 } 272 273 void Symbol::SetType(const DeclTypeSpec &type) { 274 std::visit(common::visitors{ 275 [&](EntityDetails &x) { x.set_type(type); }, 276 [&](ObjectEntityDetails &x) { x.set_type(type); }, 277 [&](AssocEntityDetails &x) { x.set_type(type); }, 278 [&](ProcEntityDetails &x) { x.interface().set_type(type); }, 279 [&](TypeParamDetails &x) { x.set_type(type); }, 280 [](auto &) {}, 281 }, 282 details_); 283 } 284 285 bool Symbol::IsFuncResult() const { 286 return std::visit( 287 common::visitors{[](const EntityDetails &x) { return x.isFuncResult(); }, 288 [](const ObjectEntityDetails &x) { return x.isFuncResult(); }, 289 [](const ProcEntityDetails &x) { return x.isFuncResult(); }, 290 [](const HostAssocDetails &x) { return x.symbol().IsFuncResult(); }, 291 [](const auto &) { return false; }}, 292 details_); 293 } 294 295 bool Symbol::IsObjectArray() const { 296 const auto *details{std::get_if<ObjectEntityDetails>(&details_)}; 297 return details && details->IsArray(); 298 } 299 300 bool Symbol::IsSubprogram() const { 301 return std::visit( 302 common::visitors{ 303 [](const SubprogramDetails &) { return true; }, 304 [](const SubprogramNameDetails &) { return true; }, 305 [](const GenericDetails &) { return true; }, 306 [](const UseDetails &x) { return x.symbol().IsSubprogram(); }, 307 [](const auto &) { return false; }, 308 }, 309 details_); 310 } 311 312 bool Symbol::IsFromModFile() const { 313 return test(Flag::ModFile) || 314 (!owner_->IsGlobal() && owner_->symbol()->IsFromModFile()); 315 } 316 317 ObjectEntityDetails::ObjectEntityDetails(EntityDetails &&d) 318 : EntityDetails(d) {} 319 320 llvm::raw_ostream &operator<<(llvm::raw_ostream &os, const EntityDetails &x) { 321 DumpBool(os, "dummy", x.isDummy()); 322 DumpBool(os, "funcResult", x.isFuncResult()); 323 if (x.type()) { 324 os << " type: " << *x.type(); 325 } 326 DumpExpr(os, "bindName", x.bindName_); 327 return os; 328 } 329 330 llvm::raw_ostream &operator<<( 331 llvm::raw_ostream &os, const ObjectEntityDetails &x) { 332 os << *static_cast<const EntityDetails *>(&x); 333 DumpList(os, "shape", x.shape()); 334 DumpList(os, "coshape", x.coshape()); 335 DumpExpr(os, "init", x.init_); 336 return os; 337 } 338 339 llvm::raw_ostream &operator<<( 340 llvm::raw_ostream &os, const AssocEntityDetails &x) { 341 os << *static_cast<const EntityDetails *>(&x); 342 if (auto assocRank{x.rank()}) { 343 os << " rank: " << *assocRank; 344 } 345 DumpExpr(os, "expr", x.expr()); 346 return os; 347 } 348 349 llvm::raw_ostream &operator<<( 350 llvm::raw_ostream &os, const ProcEntityDetails &x) { 351 if (auto *symbol{x.interface_.symbol()}) { 352 os << ' ' << symbol->name(); 353 } else { 354 DumpType(os, x.interface_.type()); 355 } 356 DumpExpr(os, "bindName", x.bindName()); 357 DumpOptional(os, "passName", x.passName()); 358 if (x.init()) { 359 if (const Symbol * target{*x.init()}) { 360 os << " => " << target->name(); 361 } else { 362 os << " => NULL()"; 363 } 364 } 365 return os; 366 } 367 368 llvm::raw_ostream &operator<<( 369 llvm::raw_ostream &os, const DerivedTypeDetails &x) { 370 DumpBool(os, "sequence", x.sequence_); 371 DumpList(os, "components", x.componentNames_); 372 return os; 373 } 374 375 llvm::raw_ostream &operator<<(llvm::raw_ostream &os, const Details &details) { 376 os << DetailsToString(details); 377 std::visit( // 378 common::visitors{ 379 [&](const UnknownDetails &) {}, 380 [&](const MainProgramDetails &) {}, 381 [&](const ModuleDetails &x) { 382 if (x.isSubmodule()) { 383 os << " ("; 384 if (x.ancestor()) { 385 auto ancestor{x.ancestor()->GetName().value()}; 386 os << ancestor; 387 if (x.parent()) { 388 auto parent{x.parent()->GetName().value()}; 389 if (ancestor != parent) { 390 os << ':' << parent; 391 } 392 } 393 } 394 os << ")"; 395 } 396 }, 397 [&](const SubprogramNameDetails &x) { 398 os << ' ' << EnumToString(x.kind()); 399 }, 400 [&](const UseDetails &x) { 401 os << " from " << x.symbol().name() << " in " 402 << GetUsedModule(x).name(); 403 }, 404 [&](const UseErrorDetails &x) { 405 os << " uses:"; 406 for (const auto &[location, module] : x.occurrences()) { 407 os << " from " << module->GetName().value() << " at " << location; 408 } 409 }, 410 [](const HostAssocDetails &) {}, 411 [&](const GenericDetails &x) { 412 os << ' ' << x.kind().ToString(); 413 DumpBool(os, "(specific)", x.specific() != nullptr); 414 DumpBool(os, "(derivedType)", x.derivedType() != nullptr); 415 os << " procs:"; 416 DumpSymbolVector(os, x.specificProcs()); 417 }, 418 [&](const ProcBindingDetails &x) { 419 os << " => " << x.symbol().name(); 420 DumpOptional(os, "passName", x.passName()); 421 }, 422 [&](const NamelistDetails &x) { 423 os << ':'; 424 DumpSymbolVector(os, x.objects()); 425 }, 426 [&](const CommonBlockDetails &x) { 427 if (x.alignment()) { 428 os << " alignment=" << x.alignment(); 429 } 430 os << ':'; 431 for (const auto &object : x.objects()) { 432 os << ' ' << object->name(); 433 } 434 }, 435 [&](const FinalProcDetails &) {}, 436 [&](const TypeParamDetails &x) { 437 DumpOptional(os, "type", x.type()); 438 os << ' ' << common::EnumToString(x.attr()); 439 DumpExpr(os, "init", x.init()); 440 }, 441 [&](const MiscDetails &x) { 442 os << ' ' << MiscDetails::EnumToString(x.kind()); 443 }, 444 [&](const auto &x) { os << x; }, 445 }, 446 details); 447 return os; 448 } 449 450 llvm::raw_ostream &operator<<(llvm::raw_ostream &o, Symbol::Flag flag) { 451 return o << Symbol::EnumToString(flag); 452 } 453 454 llvm::raw_ostream &operator<<( 455 llvm::raw_ostream &o, const Symbol::Flags &flags) { 456 std::size_t n{flags.count()}; 457 std::size_t seen{0}; 458 for (std::size_t j{0}; seen < n; ++j) { 459 Symbol::Flag flag{static_cast<Symbol::Flag>(j)}; 460 if (flags.test(flag)) { 461 if (seen++ > 0) { 462 o << ", "; 463 } 464 o << flag; 465 } 466 } 467 return o; 468 } 469 470 llvm::raw_ostream &operator<<(llvm::raw_ostream &os, const Symbol &symbol) { 471 os << symbol.name(); 472 if (!symbol.attrs().empty()) { 473 os << ", " << symbol.attrs(); 474 } 475 if (!symbol.flags().empty()) { 476 os << " (" << symbol.flags() << ')'; 477 } 478 if (symbol.size_) { 479 os << " size=" << symbol.size_ << " offset=" << symbol.offset_; 480 } 481 os << ": " << symbol.details_; 482 return os; 483 } 484 485 // Output a unique name for a scope by qualifying it with the names of 486 // parent scopes. For scopes without corresponding symbols, use the kind 487 // with an index (e.g. Block1, Block2, etc.). 488 static void DumpUniqueName(llvm::raw_ostream &os, const Scope &scope) { 489 if (!scope.IsGlobal()) { 490 DumpUniqueName(os, scope.parent()); 491 os << '/'; 492 if (auto *scopeSymbol{scope.symbol()}; 493 scopeSymbol && !scopeSymbol->name().empty()) { 494 os << scopeSymbol->name(); 495 } else { 496 int index{1}; 497 for (auto &child : scope.parent().children()) { 498 if (child == scope) { 499 break; 500 } 501 if (child.kind() == scope.kind()) { 502 ++index; 503 } 504 } 505 os << Scope::EnumToString(scope.kind()) << index; 506 } 507 } 508 } 509 510 // Dump a symbol for UnparseWithSymbols. This will be used for tests so the 511 // format should be reasonably stable. 512 llvm::raw_ostream &DumpForUnparse( 513 llvm::raw_ostream &os, const Symbol &symbol, bool isDef) { 514 DumpUniqueName(os, symbol.owner()); 515 os << '/' << symbol.name(); 516 if (isDef) { 517 if (!symbol.attrs().empty()) { 518 os << ' ' << symbol.attrs(); 519 } 520 if (!symbol.flags().empty()) { 521 os << " (" << symbol.flags() << ')'; 522 } 523 os << ' ' << symbol.GetDetailsName(); 524 DumpType(os, symbol.GetType()); 525 } 526 return os; 527 } 528 529 const DerivedTypeSpec *Symbol::GetParentTypeSpec(const Scope *scope) const { 530 if (const Symbol * parentComponent{GetParentComponent(scope)}) { 531 const auto &object{parentComponent->get<ObjectEntityDetails>()}; 532 return &object.type()->derivedTypeSpec(); 533 } else { 534 return nullptr; 535 } 536 } 537 538 const Symbol *Symbol::GetParentComponent(const Scope *scope) const { 539 if (const auto *dtDetails{detailsIf<DerivedTypeDetails>()}) { 540 if (!scope) { 541 scope = scope_; 542 } 543 return dtDetails->GetParentComponent(DEREF(scope)); 544 } else { 545 return nullptr; 546 } 547 } 548 549 void DerivedTypeDetails::add_component(const Symbol &symbol) { 550 if (symbol.test(Symbol::Flag::ParentComp)) { 551 CHECK(componentNames_.empty()); 552 } 553 componentNames_.push_back(symbol.name()); 554 } 555 556 const Symbol *DerivedTypeDetails::GetParentComponent(const Scope &scope) const { 557 if (auto extends{GetParentComponentName()}) { 558 if (auto iter{scope.find(*extends)}; iter != scope.cend()) { 559 if (const Symbol & symbol{*iter->second}; 560 symbol.test(Symbol::Flag::ParentComp)) { 561 return &symbol; 562 } 563 } 564 } 565 return nullptr; 566 } 567 568 void TypeParamDetails::set_type(const DeclTypeSpec &type) { 569 CHECK(!type_); 570 type_ = &type; 571 } 572 573 bool GenericKind::IsIntrinsicOperator() const { 574 return Is(OtherKind::Concat) || Has<common::LogicalOperator>() || 575 Has<common::NumericOperator>() || Has<common::RelationalOperator>(); 576 } 577 578 bool GenericKind::IsOperator() const { 579 return IsDefinedOperator() || IsIntrinsicOperator(); 580 } 581 582 std::string GenericKind::ToString() const { 583 return std::visit( 584 common::visitors { 585 [](const OtherKind &x) { return EnumToString(x); }, 586 [](const DefinedIo &x) { return EnumToString(x); }, 587 #if !__clang__ && __GNUC__ == 7 && __GNUC_MINOR__ == 2 588 [](const common::NumericOperator &x) { 589 return common::EnumToString(x); 590 }, 591 [](const common::LogicalOperator &x) { 592 return common::EnumToString(x); 593 }, 594 [](const common::RelationalOperator &x) { 595 return common::EnumToString(x); 596 }, 597 #else 598 [](const auto &x) { return common::EnumToString(x); }, 599 #endif 600 }, 601 u); 602 } 603 604 bool GenericKind::Is(GenericKind::OtherKind x) const { 605 const OtherKind *y{std::get_if<OtherKind>(&u)}; 606 return y && *y == x; 607 } 608 609 } // namespace Fortran::semantics 610