1 //===-- lib/Semantics/mod-file.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 "mod-file.h" 10 #include "resolve-names.h" 11 #include "flang/Common/restorer.h" 12 #include "flang/Evaluate/tools.h" 13 #include "flang/Parser/message.h" 14 #include "flang/Parser/parsing.h" 15 #include "flang/Parser/unparse.h" 16 #include "flang/Semantics/scope.h" 17 #include "flang/Semantics/semantics.h" 18 #include "flang/Semantics/symbol.h" 19 #include "flang/Semantics/tools.h" 20 #include "llvm/Support/FileSystem.h" 21 #include "llvm/Support/MemoryBuffer.h" 22 #include "llvm/Support/raw_ostream.h" 23 #include <algorithm> 24 #include <fstream> 25 #include <set> 26 #include <string_view> 27 #include <vector> 28 29 namespace Fortran::semantics { 30 31 using namespace parser::literals; 32 33 // The first line of a file that identifies it as a .mod file. 34 // The first three bytes are a Unicode byte order mark that ensures 35 // that the module file is decoded as UTF-8 even if source files 36 // are using another encoding. 37 struct ModHeader { 38 static constexpr const char bom[3 + 1]{"\xef\xbb\xbf"}; 39 static constexpr int magicLen{13}; 40 static constexpr int sumLen{16}; 41 static constexpr const char magic[magicLen + 1]{"!mod$ v1 sum:"}; 42 static constexpr char terminator{'\n'}; 43 static constexpr int len{magicLen + 1 + sumLen}; 44 }; 45 46 static std::optional<SourceName> GetSubmoduleParent(const parser::Program &); 47 static void CollectSymbols(const Scope &, SymbolVector &, SymbolVector &); 48 static void PutPassName(llvm::raw_ostream &, const std::optional<SourceName> &); 49 static void PutInit(llvm::raw_ostream &, const Symbol &, const MaybeExpr &, 50 const parser::Expr *); 51 static void PutInit(llvm::raw_ostream &, const MaybeIntExpr &); 52 static void PutBound(llvm::raw_ostream &, const Bound &); 53 static void PutShapeSpec(llvm::raw_ostream &, const ShapeSpec &); 54 static void PutShape( 55 llvm::raw_ostream &, const ArraySpec &, char open, char close); 56 llvm::raw_ostream &PutAttrs(llvm::raw_ostream &, Attrs, 57 const std::string * = nullptr, std::string before = ","s, 58 std::string after = ""s); 59 60 static llvm::raw_ostream &PutAttr(llvm::raw_ostream &, Attr); 61 static llvm::raw_ostream &PutType(llvm::raw_ostream &, const DeclTypeSpec &); 62 static llvm::raw_ostream &PutLower(llvm::raw_ostream &, const std::string &); 63 static std::error_code WriteFile( 64 const std::string &, const std::string &, bool = true); 65 static bool FileContentsMatch( 66 const std::string &, const std::string &, const std::string &); 67 static std::string CheckSum(const std::string_view &); 68 69 // Collect symbols needed for a subprogram interface 70 class SubprogramSymbolCollector { 71 public: 72 SubprogramSymbolCollector(const Symbol &symbol, const Scope &scope) 73 : symbol_{symbol}, scope_{scope} {} 74 const SymbolVector &symbols() const { return need_; } 75 const std::set<SourceName> &imports() const { return imports_; } 76 void Collect(); 77 78 private: 79 const Symbol &symbol_; 80 const Scope &scope_; 81 bool isInterface_{false}; 82 SymbolVector need_; // symbols that are needed 83 UnorderedSymbolSet needSet_; // symbols already in need_ 84 UnorderedSymbolSet useSet_; // use-associations that might be needed 85 std::set<SourceName> imports_; // imports from host that are needed 86 87 void DoSymbol(const Symbol &); 88 void DoSymbol(const SourceName &, const Symbol &); 89 void DoType(const DeclTypeSpec *); 90 void DoBound(const Bound &); 91 void DoParamValue(const ParamValue &); 92 bool NeedImport(const SourceName &, const Symbol &); 93 94 template <typename T> void DoExpr(evaluate::Expr<T> expr) { 95 for (const Symbol &symbol : evaluate::CollectSymbols(expr)) { 96 DoSymbol(symbol); 97 } 98 } 99 }; 100 101 bool ModFileWriter::WriteAll() { 102 // this flag affects character literals: force it to be consistent 103 auto restorer{ 104 common::ScopedSet(parser::useHexadecimalEscapeSequences, false)}; 105 WriteAll(context_.globalScope()); 106 return !context_.AnyFatalError(); 107 } 108 109 void ModFileWriter::WriteAll(const Scope &scope) { 110 for (const auto &child : scope.children()) { 111 WriteOne(child); 112 } 113 } 114 115 void ModFileWriter::WriteOne(const Scope &scope) { 116 if (scope.kind() == Scope::Kind::Module) { 117 auto *symbol{scope.symbol()}; 118 if (!symbol->test(Symbol::Flag::ModFile)) { 119 Write(*symbol); 120 } 121 WriteAll(scope); // write out submodules 122 } 123 } 124 125 // Construct the name of a module file. Non-empty ancestorName means submodule. 126 static std::string ModFileName(const SourceName &name, 127 const std::string &ancestorName, const std::string &suffix) { 128 std::string result{name.ToString() + suffix}; 129 return ancestorName.empty() ? result : ancestorName + '-' + result; 130 } 131 132 // Write the module file for symbol, which must be a module or submodule. 133 void ModFileWriter::Write(const Symbol &symbol) { 134 auto *ancestor{symbol.get<ModuleDetails>().ancestor()}; 135 auto ancestorName{ancestor ? ancestor->GetName().value().ToString() : ""s}; 136 auto path{context_.moduleDirectory() + '/' + 137 ModFileName(symbol.name(), ancestorName, context_.moduleFileSuffix())}; 138 PutSymbols(DEREF(symbol.scope())); 139 if (std::error_code error{ 140 WriteFile(path, GetAsString(symbol), context_.debugModuleWriter())}) { 141 context_.Say( 142 symbol.name(), "Error writing %s: %s"_err_en_US, path, error.message()); 143 } 144 } 145 146 // Return the entire body of the module file 147 // and clear saved uses, decls, and contains. 148 std::string ModFileWriter::GetAsString(const Symbol &symbol) { 149 std::string buf; 150 llvm::raw_string_ostream all{buf}; 151 auto &details{symbol.get<ModuleDetails>()}; 152 if (!details.isSubmodule()) { 153 all << "module " << symbol.name(); 154 } else { 155 auto *parent{details.parent()->symbol()}; 156 auto *ancestor{details.ancestor()->symbol()}; 157 all << "submodule(" << ancestor->name(); 158 if (parent != ancestor) { 159 all << ':' << parent->name(); 160 } 161 all << ") " << symbol.name(); 162 } 163 all << '\n' << uses_.str(); 164 uses_.str().clear(); 165 all << useExtraAttrs_.str(); 166 useExtraAttrs_.str().clear(); 167 all << decls_.str(); 168 decls_.str().clear(); 169 auto str{contains_.str()}; 170 contains_.str().clear(); 171 if (!str.empty()) { 172 all << "contains\n" << str; 173 } 174 all << "end\n"; 175 return all.str(); 176 } 177 178 // Put out the visible symbols from scope. 179 void ModFileWriter::PutSymbols(const Scope &scope) { 180 SymbolVector sorted; 181 SymbolVector uses; 182 CollectSymbols(scope, sorted, uses); 183 std::string buf; // stuff after CONTAINS in derived type 184 llvm::raw_string_ostream typeBindings{buf}; 185 for (const Symbol &symbol : sorted) { 186 if (!symbol.test(Symbol::Flag::CompilerCreated)) { 187 PutSymbol(typeBindings, symbol); 188 } 189 } 190 for (const Symbol &symbol : uses) { 191 PutUse(symbol); 192 } 193 for (const auto &set : scope.equivalenceSets()) { 194 if (!set.empty() && 195 !set.front().symbol.test(Symbol::Flag::CompilerCreated)) { 196 char punctuation{'('}; 197 decls_ << "equivalence"; 198 for (const auto &object : set) { 199 decls_ << punctuation << object.AsFortran(); 200 punctuation = ','; 201 } 202 decls_ << ")\n"; 203 } 204 } 205 CHECK(typeBindings.str().empty()); 206 } 207 208 // Emit components in order 209 bool ModFileWriter::PutComponents(const Symbol &typeSymbol) { 210 const auto &scope{DEREF(typeSymbol.scope())}; 211 std::string buf; // stuff after CONTAINS in derived type 212 llvm::raw_string_ostream typeBindings{buf}; 213 UnorderedSymbolSet emitted; 214 SymbolVector symbols{scope.GetSymbols()}; 215 // Emit type parameters first 216 for (const Symbol &symbol : symbols) { 217 if (symbol.has<TypeParamDetails>()) { 218 PutSymbol(typeBindings, symbol); 219 emitted.emplace(symbol); 220 } 221 } 222 // Emit components in component order. 223 const auto &details{typeSymbol.get<DerivedTypeDetails>()}; 224 for (SourceName name : details.componentNames()) { 225 auto iter{scope.find(name)}; 226 if (iter != scope.end()) { 227 const Symbol &component{*iter->second}; 228 if (!component.test(Symbol::Flag::ParentComp)) { 229 PutSymbol(typeBindings, component); 230 } 231 emitted.emplace(component); 232 } 233 } 234 // Emit remaining symbols from the type's scope 235 for (const Symbol &symbol : symbols) { 236 if (emitted.find(symbol) == emitted.end()) { 237 PutSymbol(typeBindings, symbol); 238 } 239 } 240 if (auto str{typeBindings.str()}; !str.empty()) { 241 CHECK(scope.IsDerivedType()); 242 decls_ << "contains\n" << str; 243 return true; 244 } else { 245 return false; 246 } 247 } 248 249 static llvm::raw_ostream &PutGenericName( 250 llvm::raw_ostream &os, const Symbol &symbol) { 251 if (IsGenericDefinedOp(symbol)) { 252 return os << "operator(" << symbol.name() << ')'; 253 } else { 254 return os << symbol.name(); 255 } 256 } 257 258 // Emit a symbol to decls_, except for bindings in a derived type (type-bound 259 // procedures, type-bound generics, final procedures) which go to typeBindings. 260 void ModFileWriter::PutSymbol( 261 llvm::raw_ostream &typeBindings, const Symbol &symbol) { 262 common::visit( 263 common::visitors{ 264 [&](const ModuleDetails &) { /* should be current module */ }, 265 [&](const DerivedTypeDetails &) { PutDerivedType(symbol); }, 266 [&](const SubprogramDetails &) { PutSubprogram(symbol); }, 267 [&](const GenericDetails &x) { 268 if (symbol.owner().IsDerivedType()) { 269 // generic binding 270 for (const Symbol &proc : x.specificProcs()) { 271 PutGenericName(typeBindings << "generic::", symbol) 272 << "=>" << proc.name() << '\n'; 273 } 274 } else { 275 PutGeneric(symbol); 276 if (x.specific()) { 277 PutSymbol(typeBindings, *x.specific()); 278 } 279 if (x.derivedType()) { 280 PutSymbol(typeBindings, *x.derivedType()); 281 } 282 } 283 }, 284 [&](const UseDetails &) { PutUse(symbol); }, 285 [](const UseErrorDetails &) {}, 286 [&](const ProcBindingDetails &x) { 287 bool deferred{symbol.attrs().test(Attr::DEFERRED)}; 288 typeBindings << "procedure"; 289 if (deferred) { 290 typeBindings << '(' << x.symbol().name() << ')'; 291 } 292 PutPassName(typeBindings, x.passName()); 293 auto attrs{symbol.attrs()}; 294 if (x.passName()) { 295 attrs.reset(Attr::PASS); 296 } 297 PutAttrs(typeBindings, attrs); 298 typeBindings << "::" << symbol.name(); 299 if (!deferred && x.symbol().name() != symbol.name()) { 300 typeBindings << "=>" << x.symbol().name(); 301 } 302 typeBindings << '\n'; 303 }, 304 [&](const NamelistDetails &x) { 305 decls_ << "namelist/" << symbol.name(); 306 char sep{'/'}; 307 for (const Symbol &object : x.objects()) { 308 decls_ << sep << object.name(); 309 sep = ','; 310 } 311 decls_ << '\n'; 312 }, 313 [&](const CommonBlockDetails &x) { 314 decls_ << "common/" << symbol.name(); 315 char sep = '/'; 316 for (const auto &object : x.objects()) { 317 decls_ << sep << object->name(); 318 sep = ','; 319 } 320 decls_ << '\n'; 321 if (symbol.attrs().test(Attr::BIND_C)) { 322 PutAttrs(decls_, symbol.attrs(), x.bindName(), ""s); 323 decls_ << "::/" << symbol.name() << "/\n"; 324 } 325 }, 326 [](const HostAssocDetails &) {}, 327 [](const MiscDetails &) {}, 328 [&](const auto &) { 329 PutEntity(decls_, symbol); 330 if (symbol.test(Symbol::Flag::OmpThreadprivate)) { 331 decls_ << "!$omp threadprivate(" << symbol.name() << ")\n"; 332 } 333 }, 334 }, 335 symbol.details()); 336 } 337 338 void ModFileWriter::PutDerivedType( 339 const Symbol &typeSymbol, const Scope *scope) { 340 auto &details{typeSymbol.get<DerivedTypeDetails>()}; 341 if (details.isDECStructure()) { 342 PutDECStructure(typeSymbol, scope); 343 return; 344 } 345 PutAttrs(decls_ << "type", typeSymbol.attrs()); 346 if (const DerivedTypeSpec * extends{typeSymbol.GetParentTypeSpec()}) { 347 decls_ << ",extends(" << extends->name() << ')'; 348 } 349 decls_ << "::" << typeSymbol.name(); 350 if (!details.paramNames().empty()) { 351 char sep{'('}; 352 for (const auto &name : details.paramNames()) { 353 decls_ << sep << name; 354 sep = ','; 355 } 356 decls_ << ')'; 357 } 358 decls_ << '\n'; 359 if (details.sequence()) { 360 decls_ << "sequence\n"; 361 } 362 bool contains{PutComponents(typeSymbol)}; 363 if (!details.finals().empty()) { 364 const char *sep{contains ? "final::" : "contains\nfinal::"}; 365 for (const auto &pair : details.finals()) { 366 decls_ << sep << pair.second->name(); 367 sep = ","; 368 } 369 if (*sep == ',') { 370 decls_ << '\n'; 371 } 372 } 373 decls_ << "end type\n"; 374 } 375 376 void ModFileWriter::PutDECStructure( 377 const Symbol &typeSymbol, const Scope *scope) { 378 if (emittedDECStructures_.find(typeSymbol) != emittedDECStructures_.end()) { 379 return; 380 } 381 if (!scope && context_.IsTempName(typeSymbol.name().ToString())) { 382 return; // defer until used 383 } 384 emittedDECStructures_.insert(typeSymbol); 385 decls_ << "structure "; 386 if (!context_.IsTempName(typeSymbol.name().ToString())) { 387 decls_ << typeSymbol.name(); 388 } 389 if (scope && scope->kind() == Scope::Kind::DerivedType) { 390 // Nested STRUCTURE: emit entity declarations right now 391 // on the STRUCTURE statement. 392 bool any{false}; 393 for (const auto &ref : scope->GetSymbols()) { 394 const auto *object{ref->detailsIf<ObjectEntityDetails>()}; 395 if (object && object->type() && 396 object->type()->category() == DeclTypeSpec::TypeDerived && 397 &object->type()->derivedTypeSpec().typeSymbol() == &typeSymbol) { 398 if (any) { 399 decls_ << ','; 400 } else { 401 any = true; 402 } 403 decls_ << ref->name(); 404 PutShape(decls_, object->shape(), '(', ')'); 405 PutInit(decls_, *ref, object->init(), nullptr); 406 emittedDECFields_.insert(*ref); 407 } else if (any) { 408 break; // any later use of this structure will use RECORD/str/ 409 } 410 } 411 } 412 decls_ << '\n'; 413 PutComponents(typeSymbol); 414 decls_ << "end structure\n"; 415 } 416 417 // Attributes that may be in a subprogram prefix 418 static const Attrs subprogramPrefixAttrs{Attr::ELEMENTAL, Attr::IMPURE, 419 Attr::MODULE, Attr::NON_RECURSIVE, Attr::PURE, Attr::RECURSIVE}; 420 421 void ModFileWriter::PutSubprogram(const Symbol &symbol) { 422 auto attrs{symbol.attrs()}; 423 auto &details{symbol.get<SubprogramDetails>()}; 424 Attrs bindAttrs{}; 425 if (attrs.test(Attr::BIND_C)) { 426 // bind(c) is a suffix, not prefix 427 bindAttrs.set(Attr::BIND_C, true); 428 attrs.set(Attr::BIND_C, false); 429 } 430 bool isAbstract{attrs.test(Attr::ABSTRACT)}; 431 if (isAbstract) { 432 attrs.set(Attr::ABSTRACT, false); 433 } 434 Attrs prefixAttrs{subprogramPrefixAttrs & attrs}; 435 // emit any non-prefix attributes in an attribute statement 436 attrs &= ~subprogramPrefixAttrs; 437 std::string ssBuf; 438 llvm::raw_string_ostream ss{ssBuf}; 439 PutAttrs(ss, attrs); 440 if (!ss.str().empty()) { 441 decls_ << ss.str().substr(1) << "::" << symbol.name() << '\n'; 442 } 443 bool isInterface{details.isInterface()}; 444 llvm::raw_ostream &os{isInterface ? decls_ : contains_}; 445 if (isInterface) { 446 os << (isAbstract ? "abstract " : "") << "interface\n"; 447 } 448 PutAttrs(os, prefixAttrs, nullptr, ""s, " "s); 449 os << (details.isFunction() ? "function " : "subroutine "); 450 os << symbol.name() << '('; 451 int n = 0; 452 for (const auto &dummy : details.dummyArgs()) { 453 if (n++ > 0) { 454 os << ','; 455 } 456 if (dummy) { 457 os << dummy->name(); 458 } else { 459 os << "*"; 460 } 461 } 462 os << ')'; 463 PutAttrs(os, bindAttrs, details.bindName(), " "s, ""s); 464 if (details.isFunction()) { 465 const Symbol &result{details.result()}; 466 if (result.name() != symbol.name()) { 467 os << " result(" << result.name() << ')'; 468 } 469 } 470 os << '\n'; 471 472 // walk symbols, collect ones needed for interface 473 const Scope &scope{ 474 details.entryScope() ? *details.entryScope() : DEREF(symbol.scope())}; 475 SubprogramSymbolCollector collector{symbol, scope}; 476 collector.Collect(); 477 std::string typeBindingsBuf; 478 llvm::raw_string_ostream typeBindings{typeBindingsBuf}; 479 ModFileWriter writer{context_}; 480 for (const Symbol &need : collector.symbols()) { 481 writer.PutSymbol(typeBindings, need); 482 } 483 CHECK(typeBindings.str().empty()); 484 os << writer.uses_.str(); 485 for (const SourceName &import : collector.imports()) { 486 decls_ << "import::" << import << "\n"; 487 } 488 os << writer.decls_.str(); 489 os << "end\n"; 490 if (isInterface) { 491 os << "end interface\n"; 492 } 493 } 494 495 static bool IsIntrinsicOp(const Symbol &symbol) { 496 if (const auto *details{symbol.GetUltimate().detailsIf<GenericDetails>()}) { 497 return details->kind().IsIntrinsicOperator(); 498 } else { 499 return false; 500 } 501 } 502 503 void ModFileWriter::PutGeneric(const Symbol &symbol) { 504 const auto &genericOwner{symbol.owner()}; 505 auto &details{symbol.get<GenericDetails>()}; 506 PutGenericName(decls_ << "interface ", symbol) << '\n'; 507 for (const Symbol &specific : details.specificProcs()) { 508 if (specific.owner() == genericOwner) { 509 decls_ << "procedure::" << specific.name() << '\n'; 510 } 511 } 512 decls_ << "end interface\n"; 513 if (symbol.attrs().test(Attr::PRIVATE)) { 514 PutGenericName(decls_ << "private::", symbol) << '\n'; 515 } 516 } 517 518 void ModFileWriter::PutUse(const Symbol &symbol) { 519 auto &details{symbol.get<UseDetails>()}; 520 auto &use{details.symbol()}; 521 uses_ << "use " << GetUsedModule(details).name(); 522 PutGenericName(uses_ << ",only:", symbol); 523 // Can have intrinsic op with different local-name and use-name 524 // (e.g. `operator(<)` and `operator(.lt.)`) but rename is not allowed 525 if (!IsIntrinsicOp(symbol) && use.name() != symbol.name()) { 526 PutGenericName(uses_ << "=>", use); 527 } 528 uses_ << '\n'; 529 PutUseExtraAttr(Attr::VOLATILE, symbol, use); 530 PutUseExtraAttr(Attr::ASYNCHRONOUS, symbol, use); 531 if (symbol.attrs().test(Attr::PRIVATE)) { 532 PutGenericName(useExtraAttrs_ << "private::", symbol) << '\n'; 533 } 534 } 535 536 // We have "USE local => use" in this module. If attr was added locally 537 // (i.e. on local but not on use), also write it out in the mod file. 538 void ModFileWriter::PutUseExtraAttr( 539 Attr attr, const Symbol &local, const Symbol &use) { 540 if (local.attrs().test(attr) && !use.attrs().test(attr)) { 541 PutAttr(useExtraAttrs_, attr) << "::"; 542 useExtraAttrs_ << local.name() << '\n'; 543 } 544 } 545 546 // When a generic interface has the same name as a derived type 547 // in the same scope, the generic shadows the derived type. 548 // If the derived type were declared first, emit the generic 549 // interface at the position of derived type's declaration. 550 // (ReplaceName() is not used for this purpose because doing so 551 // would confusingly position error messages pertaining to the generic 552 // interface upon the derived type's declaration.) 553 static inline SourceName NameInModuleFile(const Symbol &symbol) { 554 if (const auto *generic{symbol.detailsIf<GenericDetails>()}) { 555 if (const auto *derivedTypeOverload{generic->derivedType()}) { 556 if (derivedTypeOverload->name().begin() < symbol.name().begin()) { 557 return derivedTypeOverload->name(); 558 } 559 } 560 } else if (const auto *use{symbol.detailsIf<UseDetails>()}) { 561 if (use->symbol().attrs().test(Attr::PRIVATE)) { 562 // Avoid the use in sorting of names created to access private 563 // specific procedures as a result of generic resolution; 564 // they're not in the cooked source. 565 return use->symbol().name(); 566 } 567 } 568 return symbol.name(); 569 } 570 571 // Collect the symbols of this scope sorted by their original order, not name. 572 // Namelists are an exception: they are sorted after other symbols. 573 void CollectSymbols( 574 const Scope &scope, SymbolVector &sorted, SymbolVector &uses) { 575 SymbolVector namelist; 576 std::size_t commonSize{scope.commonBlocks().size()}; 577 auto symbols{scope.GetSymbols()}; 578 sorted.reserve(symbols.size() + commonSize); 579 for (SymbolRef symbol : symbols) { 580 if (!symbol->test(Symbol::Flag::ParentComp)) { 581 if (symbol->has<NamelistDetails>()) { 582 namelist.push_back(symbol); 583 } else { 584 sorted.push_back(symbol); 585 } 586 if (const auto *details{symbol->detailsIf<GenericDetails>()}) { 587 uses.insert(uses.end(), details->uses().begin(), details->uses().end()); 588 } 589 } 590 } 591 // Sort most symbols by name: use of Symbol::ReplaceName ensures the source 592 // location of a symbol's name is the first "real" use. 593 std::sort(sorted.begin(), sorted.end(), [](SymbolRef x, SymbolRef y) { 594 return NameInModuleFile(x).begin() < NameInModuleFile(y).begin(); 595 }); 596 sorted.insert(sorted.end(), namelist.begin(), namelist.end()); 597 for (const auto &pair : scope.commonBlocks()) { 598 sorted.push_back(*pair.second); 599 } 600 std::sort( 601 sorted.end() - commonSize, sorted.end(), SymbolSourcePositionCompare{}); 602 } 603 604 void ModFileWriter::PutEntity(llvm::raw_ostream &os, const Symbol &symbol) { 605 common::visit( 606 common::visitors{ 607 [&](const ObjectEntityDetails &) { PutObjectEntity(os, symbol); }, 608 [&](const ProcEntityDetails &) { PutProcEntity(os, symbol); }, 609 [&](const TypeParamDetails &) { PutTypeParam(os, symbol); }, 610 [&](const auto &) { 611 common::die("PutEntity: unexpected details: %s", 612 DetailsToString(symbol.details()).c_str()); 613 }, 614 }, 615 symbol.details()); 616 } 617 618 void PutShapeSpec(llvm::raw_ostream &os, const ShapeSpec &x) { 619 if (x.lbound().isStar()) { 620 CHECK(x.ubound().isStar()); 621 os << ".."; // assumed rank 622 } else { 623 if (!x.lbound().isColon()) { 624 PutBound(os, x.lbound()); 625 } 626 os << ':'; 627 if (!x.ubound().isColon()) { 628 PutBound(os, x.ubound()); 629 } 630 } 631 } 632 void PutShape( 633 llvm::raw_ostream &os, const ArraySpec &shape, char open, char close) { 634 if (!shape.empty()) { 635 os << open; 636 bool first{true}; 637 for (const auto &shapeSpec : shape) { 638 if (first) { 639 first = false; 640 } else { 641 os << ','; 642 } 643 PutShapeSpec(os, shapeSpec); 644 } 645 os << close; 646 } 647 } 648 649 void ModFileWriter::PutObjectEntity( 650 llvm::raw_ostream &os, const Symbol &symbol) { 651 auto &details{symbol.get<ObjectEntityDetails>()}; 652 if (details.type() && 653 details.type()->category() == DeclTypeSpec::TypeDerived) { 654 const Symbol &typeSymbol{details.type()->derivedTypeSpec().typeSymbol()}; 655 if (typeSymbol.get<DerivedTypeDetails>().isDECStructure()) { 656 PutDerivedType(typeSymbol, &symbol.owner()); 657 if (emittedDECFields_.find(symbol) != emittedDECFields_.end()) { 658 return; // symbol was emitted on STRUCTURE statement 659 } 660 } 661 } 662 PutEntity( 663 os, symbol, [&]() { PutType(os, DEREF(symbol.GetType())); }, 664 symbol.attrs()); 665 PutShape(os, details.shape(), '(', ')'); 666 PutShape(os, details.coshape(), '[', ']'); 667 PutInit(os, symbol, details.init(), details.unanalyzedPDTComponentInit()); 668 os << '\n'; 669 } 670 671 void ModFileWriter::PutProcEntity(llvm::raw_ostream &os, const Symbol &symbol) { 672 if (symbol.attrs().test(Attr::INTRINSIC)) { 673 os << "intrinsic::" << symbol.name() << '\n'; 674 if (symbol.attrs().test(Attr::PRIVATE)) { 675 os << "private::" << symbol.name() << '\n'; 676 } 677 return; 678 } 679 const auto &details{symbol.get<ProcEntityDetails>()}; 680 const ProcInterface &interface{details.interface()}; 681 Attrs attrs{symbol.attrs()}; 682 if (details.passName()) { 683 attrs.reset(Attr::PASS); 684 } 685 PutEntity( 686 os, symbol, 687 [&]() { 688 os << "procedure("; 689 if (interface.symbol()) { 690 os << interface.symbol()->name(); 691 } else if (interface.type()) { 692 PutType(os, *interface.type()); 693 } 694 os << ')'; 695 PutPassName(os, details.passName()); 696 }, 697 attrs); 698 os << '\n'; 699 } 700 701 void PutPassName( 702 llvm::raw_ostream &os, const std::optional<SourceName> &passName) { 703 if (passName) { 704 os << ",pass(" << *passName << ')'; 705 } 706 } 707 708 void ModFileWriter::PutTypeParam(llvm::raw_ostream &os, const Symbol &symbol) { 709 auto &details{symbol.get<TypeParamDetails>()}; 710 PutEntity( 711 os, symbol, 712 [&]() { 713 PutType(os, DEREF(symbol.GetType())); 714 PutLower(os << ',', common::EnumToString(details.attr())); 715 }, 716 symbol.attrs()); 717 PutInit(os, details.init()); 718 os << '\n'; 719 } 720 721 void PutInit(llvm::raw_ostream &os, const Symbol &symbol, const MaybeExpr &init, 722 const parser::Expr *unanalyzed) { 723 if (symbol.attrs().test(Attr::PARAMETER) || symbol.owner().IsDerivedType()) { 724 const char *assign{symbol.attrs().test(Attr::POINTER) ? "=>" : "="}; 725 if (unanalyzed) { 726 parser::Unparse(os << assign, *unanalyzed); 727 } else if (init) { 728 init->AsFortran(os << assign); 729 } 730 } 731 } 732 733 void PutInit(llvm::raw_ostream &os, const MaybeIntExpr &init) { 734 if (init) { 735 init->AsFortran(os << '='); 736 } 737 } 738 739 void PutBound(llvm::raw_ostream &os, const Bound &x) { 740 if (x.isStar()) { 741 os << '*'; 742 } else if (x.isColon()) { 743 os << ':'; 744 } else { 745 x.GetExplicit()->AsFortran(os); 746 } 747 } 748 749 // Write an entity (object or procedure) declaration. 750 // writeType is called to write out the type. 751 void ModFileWriter::PutEntity(llvm::raw_ostream &os, const Symbol &symbol, 752 std::function<void()> writeType, Attrs attrs) { 753 writeType(); 754 PutAttrs(os, attrs, symbol.GetBindName()); 755 if (symbol.owner().kind() == Scope::Kind::DerivedType && 756 context_.IsTempName(symbol.name().ToString())) { 757 os << "::%FILL"; 758 } else { 759 os << "::" << symbol.name(); 760 } 761 } 762 763 // Put out each attribute to os, surrounded by `before` and `after` and 764 // mapped to lower case. 765 llvm::raw_ostream &PutAttrs(llvm::raw_ostream &os, Attrs attrs, 766 const std::string *bindName, std::string before, std::string after) { 767 attrs.set(Attr::PUBLIC, false); // no need to write PUBLIC 768 attrs.set(Attr::EXTERNAL, false); // no need to write EXTERNAL 769 if (bindName) { 770 os << before << "bind(c, name=\"" << *bindName << "\")" << after; 771 attrs.set(Attr::BIND_C, false); 772 } 773 for (std::size_t i{0}; i < Attr_enumSize; ++i) { 774 Attr attr{static_cast<Attr>(i)}; 775 if (attrs.test(attr)) { 776 PutAttr(os << before, attr) << after; 777 } 778 } 779 return os; 780 } 781 782 llvm::raw_ostream &PutAttr(llvm::raw_ostream &os, Attr attr) { 783 return PutLower(os, AttrToString(attr)); 784 } 785 786 llvm::raw_ostream &PutType(llvm::raw_ostream &os, const DeclTypeSpec &type) { 787 return PutLower(os, type.AsFortran()); 788 } 789 790 llvm::raw_ostream &PutLower(llvm::raw_ostream &os, const std::string &str) { 791 for (char c : str) { 792 os << parser::ToLowerCaseLetter(c); 793 } 794 return os; 795 } 796 797 struct Temp { 798 Temp(int fd, std::string path) : fd{fd}, path{path} {} 799 Temp(Temp &&t) : fd{std::exchange(t.fd, -1)}, path{std::move(t.path)} {} 800 ~Temp() { 801 if (fd >= 0) { 802 llvm::sys::fs::file_t native{llvm::sys::fs::convertFDToNativeFile(fd)}; 803 llvm::sys::fs::closeFile(native); 804 llvm::sys::fs::remove(path.c_str()); 805 } 806 } 807 int fd; 808 std::string path; 809 }; 810 811 // Create a temp file in the same directory and with the same suffix as path. 812 // Return an open file descriptor and its path. 813 static llvm::ErrorOr<Temp> MkTemp(const std::string &path) { 814 auto length{path.length()}; 815 auto dot{path.find_last_of("./")}; 816 std::string suffix{ 817 dot < length && path[dot] == '.' ? path.substr(dot + 1) : ""}; 818 CHECK(length > suffix.length() && 819 path.substr(length - suffix.length()) == suffix); 820 auto prefix{path.substr(0, length - suffix.length())}; 821 int fd; 822 llvm::SmallString<16> tempPath; 823 if (std::error_code err{llvm::sys::fs::createUniqueFile( 824 prefix + "%%%%%%" + suffix, fd, tempPath)}) { 825 return err; 826 } 827 return Temp{fd, tempPath.c_str()}; 828 } 829 830 // Write the module file at path, prepending header. If an error occurs, 831 // return errno, otherwise 0. 832 static std::error_code WriteFile( 833 const std::string &path, const std::string &contents, bool debug) { 834 auto header{std::string{ModHeader::bom} + ModHeader::magic + 835 CheckSum(contents) + ModHeader::terminator}; 836 if (debug) { 837 llvm::dbgs() << "Processing module " << path << ": "; 838 } 839 if (FileContentsMatch(path, header, contents)) { 840 if (debug) { 841 llvm::dbgs() << "module unchanged, not writing\n"; 842 } 843 return {}; 844 } 845 llvm::ErrorOr<Temp> temp{MkTemp(path)}; 846 if (!temp) { 847 return temp.getError(); 848 } 849 llvm::raw_fd_ostream writer(temp->fd, /*shouldClose=*/false); 850 writer << header; 851 writer << contents; 852 writer.flush(); 853 if (writer.has_error()) { 854 return writer.error(); 855 } 856 if (debug) { 857 llvm::dbgs() << "module written\n"; 858 } 859 return llvm::sys::fs::rename(temp->path, path); 860 } 861 862 // Return true if the stream matches what we would write for the mod file. 863 static bool FileContentsMatch(const std::string &path, 864 const std::string &header, const std::string &contents) { 865 std::size_t hsize{header.size()}; 866 std::size_t csize{contents.size()}; 867 auto buf_or{llvm::MemoryBuffer::getFile(path)}; 868 if (!buf_or) { 869 return false; 870 } 871 auto buf = std::move(buf_or.get()); 872 if (buf->getBufferSize() != hsize + csize) { 873 return false; 874 } 875 if (!std::equal(header.begin(), header.end(), buf->getBufferStart(), 876 buf->getBufferStart() + hsize)) { 877 return false; 878 } 879 880 return std::equal(contents.begin(), contents.end(), 881 buf->getBufferStart() + hsize, buf->getBufferEnd()); 882 } 883 884 // Compute a simple hash of the contents of a module file and 885 // return it as a string of hex digits. 886 // This uses the Fowler-Noll-Vo hash function. 887 static std::string CheckSum(const std::string_view &contents) { 888 std::uint64_t hash{0xcbf29ce484222325ull}; 889 for (char c : contents) { 890 hash ^= c & 0xff; 891 hash *= 0x100000001b3; 892 } 893 static const char *digits = "0123456789abcdef"; 894 std::string result(ModHeader::sumLen, '0'); 895 for (size_t i{ModHeader::sumLen}; hash != 0; hash >>= 4) { 896 result[--i] = digits[hash & 0xf]; 897 } 898 return result; 899 } 900 901 static bool VerifyHeader(llvm::ArrayRef<char> content) { 902 std::string_view sv{content.data(), content.size()}; 903 if (sv.substr(0, ModHeader::magicLen) != ModHeader::magic) { 904 return false; 905 } 906 std::string_view expectSum{sv.substr(ModHeader::magicLen, ModHeader::sumLen)}; 907 std::string actualSum{CheckSum(sv.substr(ModHeader::len))}; 908 return expectSum == actualSum; 909 } 910 911 Scope *ModFileReader::Read(const SourceName &name, 912 std::optional<bool> isIntrinsic, Scope *ancestor, bool silent) { 913 std::string ancestorName; // empty for module 914 Symbol *notAModule{nullptr}; 915 bool fatalError{false}; 916 if (ancestor) { 917 if (auto *scope{ancestor->FindSubmodule(name)}) { 918 return scope; 919 } 920 ancestorName = ancestor->GetName().value().ToString(); 921 } else { 922 if (!isIntrinsic.value_or(false)) { 923 auto it{context_.globalScope().find(name)}; 924 if (it != context_.globalScope().end()) { 925 Scope *scope{it->second->scope()}; 926 if (scope->kind() == Scope::Kind::Module) { 927 return scope; 928 } else { 929 notAModule = scope->symbol(); 930 // USE, NON_INTRINSIC global name isn't a module? 931 fatalError = isIntrinsic.has_value(); 932 } 933 } 934 } 935 if (isIntrinsic.value_or(true)) { 936 auto it{context_.intrinsicModulesScope().find(name)}; 937 if (it != context_.intrinsicModulesScope().end()) { 938 return it->second->scope(); 939 } 940 } 941 } 942 parser::Parsing parsing{context_.allCookedSources()}; 943 parser::Options options; 944 options.isModuleFile = true; 945 options.features.Enable(common::LanguageFeature::BackslashEscapes); 946 options.features.Enable(common::LanguageFeature::OpenMP); 947 if (!isIntrinsic.value_or(false) && !notAModule) { 948 // Scan non-intrinsic module directories 949 options.searchDirectories = context_.searchDirectories(); 950 // If a directory is in both lists, the intrinsic module directory 951 // takes precedence. 952 for (const auto &dir : context_.intrinsicModuleDirectories()) { 953 std::remove(options.searchDirectories.begin(), 954 options.searchDirectories.end(), dir); 955 } 956 } 957 if (isIntrinsic.value_or(true)) { 958 for (const auto &dir : context_.intrinsicModuleDirectories()) { 959 options.searchDirectories.push_back(dir); 960 } 961 } 962 auto path{ModFileName(name, ancestorName, context_.moduleFileSuffix())}; 963 const auto *sourceFile{fatalError ? nullptr : parsing.Prescan(path, options)}; 964 if (fatalError || parsing.messages().AnyFatalError()) { 965 if (!silent) { 966 if (notAModule) { 967 // Module is not explicitly INTRINSIC, and there's already a global 968 // symbol of the same name that is not a module. 969 context_.SayWithDecl( 970 *notAModule, name, "'%s' is not a module"_err_en_US, name); 971 } else { 972 for (auto &msg : parsing.messages().messages()) { 973 std::string str{msg.ToString()}; 974 Say(name, ancestorName, 975 parser::MessageFixedText{str.c_str(), str.size(), msg.severity()}, 976 path); 977 } 978 } 979 } 980 return nullptr; 981 } 982 CHECK(sourceFile); 983 if (!VerifyHeader(sourceFile->content())) { 984 Say(name, ancestorName, "File has invalid checksum: %s"_warn_en_US, 985 sourceFile->path()); 986 return nullptr; 987 } 988 llvm::raw_null_ostream NullStream; 989 parsing.Parse(NullStream); 990 std::optional<parser::Program> &parsedProgram{parsing.parseTree()}; 991 if (!parsing.messages().empty() || !parsing.consumedWholeFile() || 992 !parsedProgram) { 993 Say(name, ancestorName, "Module file is corrupt: %s"_err_en_US, 994 sourceFile->path()); 995 return nullptr; 996 } 997 parser::Program &parseTree{context_.SaveParseTree(std::move(*parsedProgram))}; 998 Scope *parentScope; // the scope this module/submodule goes into 999 if (!isIntrinsic.has_value()) { 1000 for (const auto &dir : context_.intrinsicModuleDirectories()) { 1001 if (sourceFile->path().size() > dir.size() && 1002 sourceFile->path().find(dir) == 0) { 1003 isIntrinsic = true; 1004 break; 1005 } 1006 } 1007 } 1008 Scope &topScope{isIntrinsic.value_or(false) ? context_.intrinsicModulesScope() 1009 : context_.globalScope()}; 1010 if (!ancestor) { 1011 parentScope = &topScope; 1012 } else if (std::optional<SourceName> parent{GetSubmoduleParent(parseTree)}) { 1013 parentScope = Read(*parent, false /*not intrinsic*/, ancestor, silent); 1014 } else { 1015 parentScope = ancestor; 1016 } 1017 auto pair{parentScope->try_emplace(name, UnknownDetails{})}; 1018 if (!pair.second) { 1019 return nullptr; 1020 } 1021 // Process declarations from the module file 1022 Symbol &modSymbol{*pair.first->second}; 1023 modSymbol.set(Symbol::Flag::ModFile); 1024 bool wasInModuleFile{context_.foldingContext().inModuleFile()}; 1025 context_.foldingContext().set_inModuleFile(true); 1026 ResolveNames(context_, parseTree, topScope); 1027 context_.foldingContext().set_inModuleFile(wasInModuleFile); 1028 CHECK(modSymbol.has<ModuleDetails>()); 1029 CHECK(modSymbol.test(Symbol::Flag::ModFile)); 1030 if (isIntrinsic.value_or(false)) { 1031 modSymbol.attrs().set(Attr::INTRINSIC); 1032 } 1033 return modSymbol.scope(); 1034 } 1035 1036 parser::Message &ModFileReader::Say(const SourceName &name, 1037 const std::string &ancestor, parser::MessageFixedText &&msg, 1038 const std::string &arg) { 1039 return context_.Say(name, "Cannot read module file for %s: %s"_err_en_US, 1040 parser::MessageFormattedText{ancestor.empty() 1041 ? "module '%s'"_en_US 1042 : "submodule '%s' of module '%s'"_en_US, 1043 name, ancestor} 1044 .MoveString(), 1045 parser::MessageFormattedText{std::move(msg), arg}.MoveString()); 1046 } 1047 1048 // program was read from a .mod file for a submodule; return the name of the 1049 // submodule's parent submodule, nullptr if none. 1050 static std::optional<SourceName> GetSubmoduleParent( 1051 const parser::Program &program) { 1052 CHECK(program.v.size() == 1); 1053 auto &unit{program.v.front()}; 1054 auto &submod{std::get<common::Indirection<parser::Submodule>>(unit.u)}; 1055 auto &stmt{ 1056 std::get<parser::Statement<parser::SubmoduleStmt>>(submod.value().t)}; 1057 auto &parentId{std::get<parser::ParentIdentifier>(stmt.statement.t)}; 1058 if (auto &parent{std::get<std::optional<parser::Name>>(parentId.t)}) { 1059 return parent->source; 1060 } else { 1061 return std::nullopt; 1062 } 1063 } 1064 1065 void SubprogramSymbolCollector::Collect() { 1066 const auto &details{symbol_.get<SubprogramDetails>()}; 1067 isInterface_ = details.isInterface(); 1068 for (const Symbol *dummyArg : details.dummyArgs()) { 1069 if (dummyArg) { 1070 DoSymbol(*dummyArg); 1071 } 1072 } 1073 if (details.isFunction()) { 1074 DoSymbol(details.result()); 1075 } 1076 for (const auto &pair : scope_) { 1077 const Symbol &symbol{*pair.second}; 1078 if (const auto *useDetails{symbol.detailsIf<UseDetails>()}) { 1079 const Symbol &ultimate{useDetails->symbol().GetUltimate()}; 1080 bool needed{useSet_.count(ultimate) > 0}; 1081 if (const auto *generic{ultimate.detailsIf<GenericDetails>()}) { 1082 // The generic may not be needed itself, but the specific procedure 1083 // &/or derived type that it shadows may be needed. 1084 const Symbol *spec{generic->specific()}; 1085 const Symbol *dt{generic->derivedType()}; 1086 needed = needed || (spec && useSet_.count(*spec) > 0) || 1087 (dt && useSet_.count(*dt) > 0); 1088 } 1089 if (needed) { 1090 need_.push_back(symbol); 1091 } 1092 } else if (symbol.has<SubprogramDetails>()) { 1093 // An internal subprogram is needed if it is used as interface 1094 // for a dummy or return value procedure. 1095 bool needed{false}; 1096 const auto hasInterface{[&symbol](const Symbol *s) -> bool { 1097 // Is 's' a procedure with interface 'symbol'? 1098 if (s) { 1099 if (const auto *sDetails{s->detailsIf<ProcEntityDetails>()}) { 1100 const ProcInterface &sInterface{sDetails->interface()}; 1101 if (sInterface.symbol() == &symbol) { 1102 return true; 1103 } 1104 } 1105 } 1106 return false; 1107 }}; 1108 for (const Symbol *dummyArg : details.dummyArgs()) { 1109 needed = needed || hasInterface(dummyArg); 1110 } 1111 needed = 1112 needed || (details.isFunction() && hasInterface(&details.result())); 1113 if (needed && needSet_.insert(symbol).second) { 1114 need_.push_back(symbol); 1115 } 1116 } 1117 } 1118 } 1119 1120 void SubprogramSymbolCollector::DoSymbol(const Symbol &symbol) { 1121 DoSymbol(symbol.name(), symbol); 1122 } 1123 1124 // Do symbols this one depends on; then add to need_ 1125 void SubprogramSymbolCollector::DoSymbol( 1126 const SourceName &name, const Symbol &symbol) { 1127 const auto &scope{symbol.owner()}; 1128 if (scope != scope_ && !scope.IsDerivedType()) { 1129 if (scope != scope_.parent()) { 1130 useSet_.insert(symbol); 1131 } 1132 if (NeedImport(name, symbol)) { 1133 imports_.insert(name); 1134 } 1135 return; 1136 } 1137 if (!needSet_.insert(symbol).second) { 1138 return; // already done 1139 } 1140 common::visit(common::visitors{ 1141 [this](const ObjectEntityDetails &details) { 1142 for (const ShapeSpec &spec : details.shape()) { 1143 DoBound(spec.lbound()); 1144 DoBound(spec.ubound()); 1145 } 1146 for (const ShapeSpec &spec : details.coshape()) { 1147 DoBound(spec.lbound()); 1148 DoBound(spec.ubound()); 1149 } 1150 if (const Symbol * commonBlock{details.commonBlock()}) { 1151 DoSymbol(*commonBlock); 1152 } 1153 }, 1154 [this](const CommonBlockDetails &details) { 1155 for (const auto &object : details.objects()) { 1156 DoSymbol(*object); 1157 } 1158 }, 1159 [](const auto &) {}, 1160 }, 1161 symbol.details()); 1162 if (!symbol.has<UseDetails>()) { 1163 DoType(symbol.GetType()); 1164 } 1165 if (!scope.IsDerivedType()) { 1166 need_.push_back(symbol); 1167 } 1168 } 1169 1170 void SubprogramSymbolCollector::DoType(const DeclTypeSpec *type) { 1171 if (!type) { 1172 return; 1173 } 1174 switch (type->category()) { 1175 case DeclTypeSpec::Numeric: 1176 case DeclTypeSpec::Logical: 1177 break; // nothing to do 1178 case DeclTypeSpec::Character: 1179 DoParamValue(type->characterTypeSpec().length()); 1180 break; 1181 default: 1182 if (const DerivedTypeSpec * derived{type->AsDerived()}) { 1183 const auto &typeSymbol{derived->typeSymbol()}; 1184 if (const DerivedTypeSpec * extends{typeSymbol.GetParentTypeSpec()}) { 1185 DoSymbol(extends->name(), extends->typeSymbol()); 1186 } 1187 for (const auto &pair : derived->parameters()) { 1188 DoParamValue(pair.second); 1189 } 1190 for (const auto &pair : *typeSymbol.scope()) { 1191 const Symbol &comp{*pair.second}; 1192 DoSymbol(comp); 1193 } 1194 DoSymbol(derived->name(), derived->typeSymbol()); 1195 } 1196 } 1197 } 1198 1199 void SubprogramSymbolCollector::DoBound(const Bound &bound) { 1200 if (const MaybeSubscriptIntExpr & expr{bound.GetExplicit()}) { 1201 DoExpr(*expr); 1202 } 1203 } 1204 void SubprogramSymbolCollector::DoParamValue(const ParamValue ¶mValue) { 1205 if (const auto &expr{paramValue.GetExplicit()}) { 1206 DoExpr(*expr); 1207 } 1208 } 1209 1210 // Do we need a IMPORT of this symbol into an interface block? 1211 bool SubprogramSymbolCollector::NeedImport( 1212 const SourceName &name, const Symbol &symbol) { 1213 if (!isInterface_) { 1214 return false; 1215 } else if (symbol.owner().Contains(scope_)) { 1216 return true; 1217 } else if (const Symbol * found{scope_.FindSymbol(name)}) { 1218 // detect import from ancestor of use-associated symbol 1219 return found->has<UseDetails>() && found->owner() != scope_; 1220 } else { 1221 // "found" can be null in the case of a use-associated derived type's parent 1222 // type 1223 CHECK(symbol.has<DerivedTypeDetails>()); 1224 return false; 1225 } 1226 } 1227 1228 } // namespace Fortran::semantics 1229