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/Semantics/scope.h"
16 #include "flang/Semantics/semantics.h"
17 #include "flang/Semantics/symbol.h"
18 #include "flang/Semantics/tools.h"
19 #include "llvm/Support/FileSystem.h"
20 #include "llvm/Support/MemoryBuffer.h"
21 #include "llvm/Support/raw_ostream.h"
22 #include <algorithm>
23 #include <fstream>
24 #include <set>
25 #include <string_view>
26 #include <vector>
27 
28 namespace Fortran::semantics {
29 
30 using namespace parser::literals;
31 
32 // The first line of a file that identifies it as a .mod file.
33 // The first three bytes are a Unicode byte order mark that ensures
34 // that the module file is decoded as UTF-8 even if source files
35 // are using another encoding.
36 struct ModHeader {
37   static constexpr const char bom[3 + 1]{"\xef\xbb\xbf"};
38   static constexpr int magicLen{13};
39   static constexpr int sumLen{16};
40   static constexpr const char magic[magicLen + 1]{"!mod$ v1 sum:"};
41   static constexpr char terminator{'\n'};
42   static constexpr int len{magicLen + 1 + sumLen};
43 };
44 
45 static std::optional<SourceName> GetSubmoduleParent(const parser::Program &);
46 static void CollectSymbols(const Scope &, SymbolVector &, SymbolVector &);
47 static void PutEntity(llvm::raw_ostream &, const Symbol &);
48 static void PutObjectEntity(llvm::raw_ostream &, const Symbol &);
49 static void PutProcEntity(llvm::raw_ostream &, const Symbol &);
50 static void PutPassName(llvm::raw_ostream &, const std::optional<SourceName> &);
51 static void PutTypeParam(llvm::raw_ostream &, const Symbol &);
52 static void PutEntity(
53     llvm::raw_ostream &, const Symbol &, std::function<void()>, Attrs);
54 static void PutInit(llvm::raw_ostream &, const Symbol &, const MaybeExpr &);
55 static void PutInit(llvm::raw_ostream &, const MaybeIntExpr &);
56 static void PutBound(llvm::raw_ostream &, const Bound &);
57 static llvm::raw_ostream &PutAttrs(llvm::raw_ostream &, Attrs,
58     const MaybeExpr & = std::nullopt, std::string before = ","s,
59     std::string after = ""s);
60 
61 static llvm::raw_ostream &PutAttr(llvm::raw_ostream &, Attr);
62 static llvm::raw_ostream &PutType(llvm::raw_ostream &, const DeclTypeSpec &);
63 static llvm::raw_ostream &PutLower(llvm::raw_ostream &, const std::string &);
64 static std::error_code WriteFile(
65     const std::string &, const std::string &, bool = true);
66 static bool FileContentsMatch(
67     const std::string &, const std::string &, const std::string &);
68 static std::string CheckSum(const std::string_view &);
69 
70 // Collect symbols needed for a subprogram interface
71 class SubprogramSymbolCollector {
72 public:
SubprogramSymbolCollector(const Symbol & symbol,const Scope & scope)73   SubprogramSymbolCollector(const Symbol &symbol, const Scope &scope)
74       : symbol_{symbol}, scope_{scope} {}
symbols() const75   const SymbolVector &symbols() const { return need_; }
imports() const76   const std::set<SourceName> &imports() const { return imports_; }
77   void Collect();
78 
79 private:
80   const Symbol &symbol_;
81   const Scope &scope_;
82   bool isInterface_{false};
83   SymbolVector need_; // symbols that are needed
84   SymbolSet needSet_; // symbols already in need_
85   SymbolSet useSet_; // use-associations that might be needed
86   std::set<SourceName> imports_; // imports from host that are needed
87 
88   void DoSymbol(const Symbol &);
89   void DoSymbol(const SourceName &, const Symbol &);
90   void DoType(const DeclTypeSpec *);
91   void DoBound(const Bound &);
92   void DoParamValue(const ParamValue &);
93   bool NeedImport(const SourceName &, const Symbol &);
94 
DoExpr(evaluate::Expr<T> expr)95   template <typename T> void DoExpr(evaluate::Expr<T> expr) {
96     for (const Symbol &symbol : evaluate::CollectSymbols(expr)) {
97       DoSymbol(symbol);
98     }
99   }
100 };
101 
WriteAll()102 bool ModFileWriter::WriteAll() {
103   // this flag affects character literals: force it to be consistent
104   auto restorer{
105       common::ScopedSet(parser::useHexadecimalEscapeSequences, false)};
106   WriteAll(context_.globalScope());
107   return !context_.AnyFatalError();
108 }
109 
WriteAll(const Scope & scope)110 void ModFileWriter::WriteAll(const Scope &scope) {
111   for (const auto &child : scope.children()) {
112     WriteOne(child);
113   }
114 }
115 
WriteOne(const Scope & scope)116 void ModFileWriter::WriteOne(const Scope &scope) {
117   if (scope.kind() == Scope::Kind::Module) {
118     auto *symbol{scope.symbol()};
119     if (!symbol->test(Symbol::Flag::ModFile)) {
120       Write(*symbol);
121     }
122     WriteAll(scope); // write out submodules
123   }
124 }
125 
126 // Construct the name of a module file. Non-empty ancestorName means submodule.
ModFileName(const SourceName & name,const std::string & ancestorName,const std::string & suffix)127 static std::string ModFileName(const SourceName &name,
128     const std::string &ancestorName, const std::string &suffix) {
129   std::string result{name.ToString() + suffix};
130   return ancestorName.empty() ? result : ancestorName + '-' + result;
131 }
132 
133 // Write the module file for symbol, which must be a module or submodule.
Write(const Symbol & symbol)134 void ModFileWriter::Write(const Symbol &symbol) {
135   auto *ancestor{symbol.get<ModuleDetails>().ancestor()};
136   auto ancestorName{ancestor ? ancestor->GetName().value().ToString() : ""s};
137   auto path{context_.moduleDirectory() + '/' +
138       ModFileName(symbol.name(), ancestorName, context_.moduleFileSuffix())};
139   PutSymbols(DEREF(symbol.scope()));
140   if (std::error_code error{
141           WriteFile(path, GetAsString(symbol), context_.debugModuleWriter())}) {
142     context_.Say(
143         symbol.name(), "Error writing %s: %s"_err_en_US, path, error.message());
144   }
145 }
146 
147 // Return the entire body of the module file
148 // and clear saved uses, decls, and contains.
GetAsString(const Symbol & symbol)149 std::string ModFileWriter::GetAsString(const Symbol &symbol) {
150   std::string buf;
151   llvm::raw_string_ostream all{buf};
152   auto &details{symbol.get<ModuleDetails>()};
153   if (!details.isSubmodule()) {
154     all << "module " << symbol.name();
155   } else {
156     auto *parent{details.parent()->symbol()};
157     auto *ancestor{details.ancestor()->symbol()};
158     all << "submodule(" << ancestor->name();
159     if (parent != ancestor) {
160       all << ':' << parent->name();
161     }
162     all << ") " << symbol.name();
163   }
164   all << '\n' << uses_.str();
165   uses_.str().clear();
166   all << useExtraAttrs_.str();
167   useExtraAttrs_.str().clear();
168   all << decls_.str();
169   decls_.str().clear();
170   auto str{contains_.str()};
171   contains_.str().clear();
172   if (!str.empty()) {
173     all << "contains\n" << str;
174   }
175   all << "end\n";
176   return all.str();
177 }
178 
179 // Put out the visible symbols from scope.
PutSymbols(const Scope & scope)180 bool ModFileWriter::PutSymbols(const Scope &scope) {
181   SymbolVector sorted;
182   SymbolVector uses;
183   CollectSymbols(scope, sorted, uses);
184   std::string buf; // stuff after CONTAINS in derived type
185   llvm::raw_string_ostream typeBindings{buf};
186   for (const Symbol &symbol : sorted) {
187     PutSymbol(typeBindings, symbol);
188   }
189   for (const Symbol &symbol : uses) {
190     PutUse(symbol);
191   }
192   if (auto str{typeBindings.str()}; !str.empty()) {
193     CHECK(scope.IsDerivedType());
194     decls_ << "contains\n" << str;
195     return true;
196   } else {
197     return false;
198   }
199 }
200 
PutGenericName(llvm::raw_ostream & os,const Symbol & symbol)201 static llvm::raw_ostream &PutGenericName(
202     llvm::raw_ostream &os, const Symbol &symbol) {
203   if (IsGenericDefinedOp(symbol)) {
204     return os << "operator(" << symbol.name() << ')';
205   } else {
206     return os << symbol.name();
207   }
208 }
209 
210 // Emit a symbol to decls_, except for bindings in a derived type (type-bound
211 // procedures, type-bound generics, final procedures) which go to typeBindings.
PutSymbol(llvm::raw_ostream & typeBindings,const Symbol & symbol)212 void ModFileWriter::PutSymbol(
213     llvm::raw_ostream &typeBindings, const Symbol &symbol) {
214   std::visit(common::visitors{
215                  [&](const ModuleDetails &) { /* should be current module */ },
216                  [&](const DerivedTypeDetails &) { PutDerivedType(symbol); },
217                  [&](const SubprogramDetails &) { PutSubprogram(symbol); },
218                  [&](const GenericDetails &x) {
219                    if (symbol.owner().IsDerivedType()) {
220                      // generic binding
221                      for (const Symbol &proc : x.specificProcs()) {
222                        PutGenericName(typeBindings << "generic::", symbol)
223                            << "=>" << proc.name() << '\n';
224                      }
225                    } else {
226                      PutGeneric(symbol);
227                      if (x.specific()) {
228                        PutSymbol(typeBindings, *x.specific());
229                      }
230                      if (x.derivedType()) {
231                        PutSymbol(typeBindings, *x.derivedType());
232                      }
233                    }
234                  },
235                  [&](const UseDetails &) { PutUse(symbol); },
236                  [](const UseErrorDetails &) {},
237                  [&](const ProcBindingDetails &x) {
238                    bool deferred{symbol.attrs().test(Attr::DEFERRED)};
239                    typeBindings << "procedure";
240                    if (deferred) {
241                      typeBindings << '(' << x.symbol().name() << ')';
242                    }
243                    PutPassName(typeBindings, x.passName());
244                    auto attrs{symbol.attrs()};
245                    if (x.passName()) {
246                      attrs.reset(Attr::PASS);
247                    }
248                    PutAttrs(typeBindings, attrs);
249                    typeBindings << "::" << symbol.name();
250                    if (!deferred && x.symbol().name() != symbol.name()) {
251                      typeBindings << "=>" << x.symbol().name();
252                    }
253                    typeBindings << '\n';
254                  },
255                  [&](const NamelistDetails &x) {
256                    decls_ << "namelist/" << symbol.name();
257                    char sep{'/'};
258                    for (const Symbol &object : x.objects()) {
259                      decls_ << sep << object.name();
260                      sep = ',';
261                    }
262                    decls_ << '\n';
263                  },
264                  [&](const CommonBlockDetails &x) {
265                    decls_ << "common/" << symbol.name();
266                    char sep = '/';
267                    for (const auto &object : x.objects()) {
268                      decls_ << sep << object->name();
269                      sep = ',';
270                    }
271                    decls_ << '\n';
272                    if (symbol.attrs().test(Attr::BIND_C)) {
273                      PutAttrs(decls_, symbol.attrs(), x.bindName(), ""s);
274                      decls_ << "::/" << symbol.name() << "/\n";
275                    }
276                  },
277                  [](const HostAssocDetails &) {},
278                  [](const MiscDetails &) {},
279                  [&](const auto &) { PutEntity(decls_, symbol); },
280              },
281       symbol.details());
282 }
283 
PutDerivedType(const Symbol & typeSymbol)284 void ModFileWriter::PutDerivedType(const Symbol &typeSymbol) {
285   auto &details{typeSymbol.get<DerivedTypeDetails>()};
286   PutAttrs(decls_ << "type", typeSymbol.attrs());
287   if (const DerivedTypeSpec * extends{typeSymbol.GetParentTypeSpec()}) {
288     decls_ << ",extends(" << extends->name() << ')';
289   }
290   decls_ << "::" << typeSymbol.name();
291   auto &typeScope{*typeSymbol.scope()};
292   if (!details.paramNames().empty()) {
293     char sep{'('};
294     for (const auto &name : details.paramNames()) {
295       decls_ << sep << name;
296       sep = ',';
297     }
298     decls_ << ')';
299   }
300   decls_ << '\n';
301   if (details.sequence()) {
302     decls_ << "sequence\n";
303   }
304   bool contains{PutSymbols(typeScope)};
305   if (!details.finals().empty()) {
306     const char *sep{contains ? "final::" : "contains\nfinal::"};
307     for (const auto &pair : details.finals()) {
308       decls_ << sep << pair.second->name();
309       sep = ",";
310     }
311     if (*sep == ',') {
312       decls_ << '\n';
313     }
314   }
315   decls_ << "end type\n";
316 }
317 
318 // Attributes that may be in a subprogram prefix
319 static const Attrs subprogramPrefixAttrs{Attr::ELEMENTAL, Attr::IMPURE,
320     Attr::MODULE, Attr::NON_RECURSIVE, Attr::PURE, Attr::RECURSIVE};
321 
PutSubprogram(const Symbol & symbol)322 void ModFileWriter::PutSubprogram(const Symbol &symbol) {
323   auto attrs{symbol.attrs()};
324   auto &details{symbol.get<SubprogramDetails>()};
325   Attrs bindAttrs{};
326   if (attrs.test(Attr::BIND_C)) {
327     // bind(c) is a suffix, not prefix
328     bindAttrs.set(Attr::BIND_C, true);
329     attrs.set(Attr::BIND_C, false);
330   }
331   bool isAbstract{attrs.test(Attr::ABSTRACT)};
332   if (isAbstract) {
333     attrs.set(Attr::ABSTRACT, false);
334   }
335   Attrs prefixAttrs{subprogramPrefixAttrs & attrs};
336   // emit any non-prefix attributes in an attribute statement
337   attrs &= ~subprogramPrefixAttrs;
338   std::string ssBuf;
339   llvm::raw_string_ostream ss{ssBuf};
340   PutAttrs(ss, attrs);
341   if (!ss.str().empty()) {
342     decls_ << ss.str().substr(1) << "::" << symbol.name() << '\n';
343   }
344   bool isInterface{details.isInterface()};
345   llvm::raw_ostream &os{isInterface ? decls_ : contains_};
346   if (isInterface) {
347     os << (isAbstract ? "abstract " : "") << "interface\n";
348   }
349   PutAttrs(os, prefixAttrs, std::nullopt, ""s, " "s);
350   os << (details.isFunction() ? "function " : "subroutine ");
351   os << symbol.name() << '(';
352   int n = 0;
353   for (const auto &dummy : details.dummyArgs()) {
354     if (n++ > 0) {
355       os << ',';
356     }
357     if (dummy) {
358       os << dummy->name();
359     } else {
360       os << "*";
361     }
362   }
363   os << ')';
364   PutAttrs(os, bindAttrs, details.bindName(), " "s, ""s);
365   if (details.isFunction()) {
366     const Symbol &result{details.result()};
367     if (result.name() != symbol.name()) {
368       os << " result(" << result.name() << ')';
369     }
370   }
371   os << '\n';
372 
373   // walk symbols, collect ones needed for interface
374   const Scope &scope{
375       details.entryScope() ? *details.entryScope() : DEREF(symbol.scope())};
376   SubprogramSymbolCollector collector{symbol, scope};
377   collector.Collect();
378   std::string typeBindingsBuf;
379   llvm::raw_string_ostream typeBindings{typeBindingsBuf};
380   ModFileWriter writer{context_};
381   for (const Symbol &need : collector.symbols()) {
382     writer.PutSymbol(typeBindings, need);
383   }
384   CHECK(typeBindings.str().empty());
385   os << writer.uses_.str();
386   for (const SourceName &import : collector.imports()) {
387     decls_ << "import::" << import << "\n";
388   }
389   os << writer.decls_.str();
390   os << "end\n";
391   if (isInterface) {
392     os << "end interface\n";
393   }
394 }
395 
IsIntrinsicOp(const Symbol & symbol)396 static bool IsIntrinsicOp(const Symbol &symbol) {
397   if (const auto *details{symbol.GetUltimate().detailsIf<GenericDetails>()}) {
398     return details->kind().IsIntrinsicOperator();
399   } else {
400     return false;
401   }
402 }
403 
PutGeneric(const Symbol & symbol)404 void ModFileWriter::PutGeneric(const Symbol &symbol) {
405   const auto &genericOwner{symbol.owner()};
406   auto &details{symbol.get<GenericDetails>()};
407   PutGenericName(decls_ << "interface ", symbol) << '\n';
408   for (const Symbol &specific : details.specificProcs()) {
409     if (specific.owner() == genericOwner) {
410       decls_ << "procedure::" << specific.name() << '\n';
411     }
412   }
413   decls_ << "end interface\n";
414   if (symbol.attrs().test(Attr::PRIVATE)) {
415     PutGenericName(decls_ << "private::", symbol) << '\n';
416   }
417 }
418 
PutUse(const Symbol & symbol)419 void ModFileWriter::PutUse(const Symbol &symbol) {
420   auto &details{symbol.get<UseDetails>()};
421   auto &use{details.symbol()};
422   uses_ << "use " << GetUsedModule(details).name();
423   PutGenericName(uses_ << ",only:", symbol);
424   // Can have intrinsic op with different local-name and use-name
425   // (e.g. `operator(<)` and `operator(.lt.)`) but rename is not allowed
426   if (!IsIntrinsicOp(symbol) && use.name() != symbol.name()) {
427     PutGenericName(uses_ << "=>", use);
428   }
429   uses_ << '\n';
430   PutUseExtraAttr(Attr::VOLATILE, symbol, use);
431   PutUseExtraAttr(Attr::ASYNCHRONOUS, symbol, use);
432   if (symbol.attrs().test(Attr::PRIVATE)) {
433     PutGenericName(useExtraAttrs_ << "private::", symbol) << '\n';
434   }
435 }
436 
437 // We have "USE local => use" in this module. If attr was added locally
438 // (i.e. on local but not on use), also write it out in the mod file.
PutUseExtraAttr(Attr attr,const Symbol & local,const Symbol & use)439 void ModFileWriter::PutUseExtraAttr(
440     Attr attr, const Symbol &local, const Symbol &use) {
441   if (local.attrs().test(attr) && !use.attrs().test(attr)) {
442     PutAttr(useExtraAttrs_, attr) << "::";
443     useExtraAttrs_ << local.name() << '\n';
444   }
445 }
446 
447 // When a generic interface has the same name as a derived type
448 // in the same scope, the generic shadows the derived type.
449 // If the derived type were declared first, emit the generic
450 // interface at the position of derived type's declaration.
451 // (ReplaceName() is not used for this purpose because doing so
452 // would confusingly position error messages pertaining to the generic
453 // interface upon the derived type's declaration.)
NameInModuleFile(const Symbol & symbol)454 static inline SourceName NameInModuleFile(const Symbol &symbol) {
455   if (const auto *generic{symbol.detailsIf<GenericDetails>()}) {
456     if (const auto *derivedTypeOverload{generic->derivedType()}) {
457       if (derivedTypeOverload->name().begin() < symbol.name().begin()) {
458         return derivedTypeOverload->name();
459       }
460     }
461   } else if (const auto *use{symbol.detailsIf<UseDetails>()}) {
462     if (use->symbol().attrs().test(Attr::PRIVATE)) {
463       // Avoid the use in sorting of names created to access private
464       // specific procedures as a result of generic resolution;
465       // they're not in the cooked source.
466       return use->symbol().name();
467     }
468   }
469   return symbol.name();
470 }
471 
472 // Collect the symbols of this scope sorted by their original order, not name.
473 // Namelists are an exception: they are sorted after other symbols.
CollectSymbols(const Scope & scope,SymbolVector & sorted,SymbolVector & uses)474 void CollectSymbols(
475     const Scope &scope, SymbolVector &sorted, SymbolVector &uses) {
476   SymbolVector namelist;
477   std::size_t commonSize{scope.commonBlocks().size()};
478   auto symbols{scope.GetSymbols()};
479   sorted.reserve(symbols.size() + commonSize);
480   for (SymbolRef symbol : symbols) {
481     if (!symbol->test(Symbol::Flag::ParentComp)) {
482       if (symbol->has<NamelistDetails>()) {
483         namelist.push_back(symbol);
484       } else {
485         sorted.push_back(symbol);
486       }
487       if (const auto *details{symbol->detailsIf<GenericDetails>()}) {
488         uses.insert(uses.end(), details->uses().begin(), details->uses().end());
489       }
490     }
491   }
492   // Sort most symbols by name: use of Symbol::ReplaceName ensures the source
493   // location of a symbol's name is the first "real" use.
494   std::sort(sorted.begin(), sorted.end(), [](SymbolRef x, SymbolRef y) {
495     return NameInModuleFile(x).begin() < NameInModuleFile(y).begin();
496   });
497   sorted.insert(sorted.end(), namelist.begin(), namelist.end());
498   for (const auto &pair : scope.commonBlocks()) {
499     sorted.push_back(*pair.second);
500   }
501   std::sort(sorted.end() - commonSize, sorted.end());
502 }
503 
PutEntity(llvm::raw_ostream & os,const Symbol & symbol)504 void PutEntity(llvm::raw_ostream &os, const Symbol &symbol) {
505   std::visit(
506       common::visitors{
507           [&](const ObjectEntityDetails &) { PutObjectEntity(os, symbol); },
508           [&](const ProcEntityDetails &) { PutProcEntity(os, symbol); },
509           [&](const TypeParamDetails &) { PutTypeParam(os, symbol); },
510           [&](const auto &) {
511             common::die("PutEntity: unexpected details: %s",
512                 DetailsToString(symbol.details()).c_str());
513           },
514       },
515       symbol.details());
516 }
517 
PutShapeSpec(llvm::raw_ostream & os,const ShapeSpec & x)518 void PutShapeSpec(llvm::raw_ostream &os, const ShapeSpec &x) {
519   if (x.lbound().isAssumed()) {
520     CHECK(x.ubound().isAssumed());
521     os << "..";
522   } else {
523     if (!x.lbound().isDeferred()) {
524       PutBound(os, x.lbound());
525     }
526     os << ':';
527     if (!x.ubound().isDeferred()) {
528       PutBound(os, x.ubound());
529     }
530   }
531 }
PutShape(llvm::raw_ostream & os,const ArraySpec & shape,char open,char close)532 void PutShape(
533     llvm::raw_ostream &os, const ArraySpec &shape, char open, char close) {
534   if (!shape.empty()) {
535     os << open;
536     bool first{true};
537     for (const auto &shapeSpec : shape) {
538       if (first) {
539         first = false;
540       } else {
541         os << ',';
542       }
543       PutShapeSpec(os, shapeSpec);
544     }
545     os << close;
546   }
547 }
548 
PutObjectEntity(llvm::raw_ostream & os,const Symbol & symbol)549 void PutObjectEntity(llvm::raw_ostream &os, const Symbol &symbol) {
550   auto &details{symbol.get<ObjectEntityDetails>()};
551   PutEntity(
552       os, symbol, [&]() { PutType(os, DEREF(symbol.GetType())); },
553       symbol.attrs());
554   PutShape(os, details.shape(), '(', ')');
555   PutShape(os, details.coshape(), '[', ']');
556   PutInit(os, symbol, details.init());
557   os << '\n';
558 }
559 
PutProcEntity(llvm::raw_ostream & os,const Symbol & symbol)560 void PutProcEntity(llvm::raw_ostream &os, const Symbol &symbol) {
561   if (symbol.attrs().test(Attr::INTRINSIC)) {
562     os << "intrinsic::" << symbol.name() << '\n';
563     return;
564   }
565   const auto &details{symbol.get<ProcEntityDetails>()};
566   const ProcInterface &interface{details.interface()};
567   Attrs attrs{symbol.attrs()};
568   if (details.passName()) {
569     attrs.reset(Attr::PASS);
570   }
571   PutEntity(
572       os, symbol,
573       [&]() {
574         os << "procedure(";
575         if (interface.symbol()) {
576           os << interface.symbol()->name();
577         } else if (interface.type()) {
578           PutType(os, *interface.type());
579         }
580         os << ')';
581         PutPassName(os, details.passName());
582       },
583       attrs);
584   os << '\n';
585 }
586 
PutPassName(llvm::raw_ostream & os,const std::optional<SourceName> & passName)587 void PutPassName(
588     llvm::raw_ostream &os, const std::optional<SourceName> &passName) {
589   if (passName) {
590     os << ",pass(" << *passName << ')';
591   }
592 }
PutTypeParam(llvm::raw_ostream & os,const Symbol & symbol)593 void PutTypeParam(llvm::raw_ostream &os, const Symbol &symbol) {
594   auto &details{symbol.get<TypeParamDetails>()};
595   PutEntity(
596       os, symbol,
597       [&]() {
598         PutType(os, DEREF(symbol.GetType()));
599         PutLower(os << ',', common::EnumToString(details.attr()));
600       },
601       symbol.attrs());
602   PutInit(os, details.init());
603   os << '\n';
604 }
605 
PutInit(llvm::raw_ostream & os,const Symbol & symbol,const MaybeExpr & init)606 void PutInit(
607     llvm::raw_ostream &os, const Symbol &symbol, const MaybeExpr &init) {
608   if (init) {
609     if (symbol.attrs().test(Attr::PARAMETER) ||
610         symbol.owner().IsDerivedType()) {
611       os << (symbol.attrs().test(Attr::POINTER) ? "=>" : "=");
612       init->AsFortran(os);
613     }
614   }
615 }
616 
PutInit(llvm::raw_ostream & os,const MaybeIntExpr & init)617 void PutInit(llvm::raw_ostream &os, const MaybeIntExpr &init) {
618   if (init) {
619     init->AsFortran(os << '=');
620   }
621 }
622 
PutBound(llvm::raw_ostream & os,const Bound & x)623 void PutBound(llvm::raw_ostream &os, const Bound &x) {
624   if (x.isAssumed()) {
625     os << '*';
626   } else if (x.isDeferred()) {
627     os << ':';
628   } else {
629     x.GetExplicit()->AsFortran(os);
630   }
631 }
632 
633 // Write an entity (object or procedure) declaration.
634 // writeType is called to write out the type.
PutEntity(llvm::raw_ostream & os,const Symbol & symbol,std::function<void ()> writeType,Attrs attrs)635 void PutEntity(llvm::raw_ostream &os, const Symbol &symbol,
636     std::function<void()> writeType, Attrs attrs) {
637   writeType();
638   MaybeExpr bindName;
639   std::visit(common::visitors{
640                  [&](const SubprogramDetails &x) { bindName = x.bindName(); },
641                  [&](const ObjectEntityDetails &x) { bindName = x.bindName(); },
642                  [&](const ProcEntityDetails &x) { bindName = x.bindName(); },
643                  [&](const auto &) {},
644              },
645       symbol.details());
646   PutAttrs(os, attrs, bindName);
647   os << "::" << symbol.name();
648 }
649 
650 // Put out each attribute to os, surrounded by `before` and `after` and
651 // mapped to lower case.
PutAttrs(llvm::raw_ostream & os,Attrs attrs,const MaybeExpr & bindName,std::string before,std::string after)652 llvm::raw_ostream &PutAttrs(llvm::raw_ostream &os, Attrs attrs,
653     const MaybeExpr &bindName, std::string before, std::string after) {
654   attrs.set(Attr::PUBLIC, false); // no need to write PUBLIC
655   attrs.set(Attr::EXTERNAL, false); // no need to write EXTERNAL
656   if (bindName) {
657     bindName->AsFortran(os << before << "bind(c, name=") << ')' << after;
658     attrs.set(Attr::BIND_C, false);
659   }
660   for (std::size_t i{0}; i < Attr_enumSize; ++i) {
661     Attr attr{static_cast<Attr>(i)};
662     if (attrs.test(attr)) {
663       PutAttr(os << before, attr) << after;
664     }
665   }
666   return os;
667 }
668 
PutAttr(llvm::raw_ostream & os,Attr attr)669 llvm::raw_ostream &PutAttr(llvm::raw_ostream &os, Attr attr) {
670   return PutLower(os, AttrToString(attr));
671 }
672 
PutType(llvm::raw_ostream & os,const DeclTypeSpec & type)673 llvm::raw_ostream &PutType(llvm::raw_ostream &os, const DeclTypeSpec &type) {
674   return PutLower(os, type.AsFortran());
675 }
676 
PutLower(llvm::raw_ostream & os,const std::string & str)677 llvm::raw_ostream &PutLower(llvm::raw_ostream &os, const std::string &str) {
678   for (char c : str) {
679     os << parser::ToLowerCaseLetter(c);
680   }
681   return os;
682 }
683 
684 struct Temp {
TempFortran::semantics::Temp685   Temp(int fd, std::string path) : fd{fd}, path{path} {}
TempFortran::semantics::Temp686   Temp(Temp &&t) : fd{std::exchange(t.fd, -1)}, path{std::move(t.path)} {}
~TempFortran::semantics::Temp687   ~Temp() {
688     if (fd >= 0) {
689       llvm::sys::fs::file_t native{llvm::sys::fs::convertFDToNativeFile(fd)};
690       llvm::sys::fs::closeFile(native);
691       llvm::sys::fs::remove(path.c_str());
692     }
693   }
694   int fd;
695   std::string path;
696 };
697 
698 // Create a temp file in the same directory and with the same suffix as path.
699 // Return an open file descriptor and its path.
MkTemp(const std::string & path)700 static llvm::ErrorOr<Temp> MkTemp(const std::string &path) {
701   auto length{path.length()};
702   auto dot{path.find_last_of("./")};
703   std::string suffix{
704       dot < length && path[dot] == '.' ? path.substr(dot + 1) : ""};
705   CHECK(length > suffix.length() &&
706       path.substr(length - suffix.length()) == suffix);
707   auto prefix{path.substr(0, length - suffix.length())};
708   int fd;
709   llvm::SmallString<16> tempPath;
710   if (std::error_code err{llvm::sys::fs::createUniqueFile(
711           prefix + "%%%%%%" + suffix, fd, tempPath)}) {
712     return err;
713   }
714   return Temp{fd, tempPath.c_str()};
715 }
716 
717 // Write the module file at path, prepending header. If an error occurs,
718 // return errno, otherwise 0.
WriteFile(const std::string & path,const std::string & contents,bool debug)719 static std::error_code WriteFile(
720     const std::string &path, const std::string &contents, bool debug) {
721   auto header{std::string{ModHeader::bom} + ModHeader::magic +
722       CheckSum(contents) + ModHeader::terminator};
723   if (debug) {
724     llvm::dbgs() << "Processing module " << path << ": ";
725   }
726   if (FileContentsMatch(path, header, contents)) {
727     if (debug) {
728       llvm::dbgs() << "module unchanged, not writing\n";
729     }
730     return {};
731   }
732   llvm::ErrorOr<Temp> temp{MkTemp(path)};
733   if (!temp) {
734     return temp.getError();
735   }
736   llvm::raw_fd_ostream writer(temp->fd, /*shouldClose=*/false);
737   writer << header;
738   writer << contents;
739   writer.flush();
740   if (writer.has_error()) {
741     return writer.error();
742   }
743   if (debug) {
744     llvm::dbgs() << "module written\n";
745   }
746   return llvm::sys::fs::rename(temp->path, path);
747 }
748 
749 // Return true if the stream matches what we would write for the mod file.
FileContentsMatch(const std::string & path,const std::string & header,const std::string & contents)750 static bool FileContentsMatch(const std::string &path,
751     const std::string &header, const std::string &contents) {
752   std::size_t hsize{header.size()};
753   std::size_t csize{contents.size()};
754   auto buf_or{llvm::MemoryBuffer::getFile(path)};
755   if (!buf_or) {
756     return false;
757   }
758   auto buf = std::move(buf_or.get());
759   if (buf->getBufferSize() != hsize + csize) {
760     return false;
761   }
762   if (!std::equal(header.begin(), header.end(), buf->getBufferStart(),
763           buf->getBufferStart() + hsize)) {
764     return false;
765   }
766 
767   return std::equal(contents.begin(), contents.end(),
768       buf->getBufferStart() + hsize, buf->getBufferEnd());
769 }
770 
771 // Compute a simple hash of the contents of a module file and
772 // return it as a string of hex digits.
773 // This uses the Fowler-Noll-Vo hash function.
CheckSum(const std::string_view & contents)774 static std::string CheckSum(const std::string_view &contents) {
775   std::uint64_t hash{0xcbf29ce484222325ull};
776   for (char c : contents) {
777     hash ^= c & 0xff;
778     hash *= 0x100000001b3;
779   }
780   static const char *digits = "0123456789abcdef";
781   std::string result(ModHeader::sumLen, '0');
782   for (size_t i{ModHeader::sumLen}; hash != 0; hash >>= 4) {
783     result[--i] = digits[hash & 0xf];
784   }
785   return result;
786 }
787 
VerifyHeader(llvm::ArrayRef<char> content)788 static bool VerifyHeader(llvm::ArrayRef<char> content) {
789   std::string_view sv{content.data(), content.size()};
790   if (sv.substr(0, ModHeader::magicLen) != ModHeader::magic) {
791     return false;
792   }
793   std::string_view expectSum{sv.substr(ModHeader::magicLen, ModHeader::sumLen)};
794   std::string actualSum{CheckSum(sv.substr(ModHeader::len))};
795   return expectSum == actualSum;
796 }
797 
Read(const SourceName & name,Scope * ancestor)798 Scope *ModFileReader::Read(const SourceName &name, Scope *ancestor) {
799   std::string ancestorName; // empty for module
800   if (ancestor) {
801     if (auto *scope{ancestor->FindSubmodule(name)}) {
802       return scope;
803     }
804     ancestorName = ancestor->GetName().value().ToString();
805   } else {
806     auto it{context_.globalScope().find(name)};
807     if (it != context_.globalScope().end()) {
808       return it->second->scope();
809     }
810   }
811   parser::Parsing parsing{context_.allCookedSources()};
812   parser::Options options;
813   options.isModuleFile = true;
814   options.features.Enable(common::LanguageFeature::BackslashEscapes);
815   options.searchDirectories = context_.searchDirectories();
816   auto path{ModFileName(name, ancestorName, context_.moduleFileSuffix())};
817   const auto *sourceFile{parsing.Prescan(path, options)};
818   if (parsing.messages().AnyFatalError()) {
819     for (auto &msg : parsing.messages().messages()) {
820       std::string str{msg.ToString()};
821       Say(name, ancestorName, parser::MessageFixedText{str.c_str(), str.size()},
822           path);
823     }
824     return nullptr;
825   }
826   CHECK(sourceFile);
827   if (!VerifyHeader(sourceFile->content())) {
828     Say(name, ancestorName, "File has invalid checksum: %s"_en_US,
829         sourceFile->path());
830     return nullptr;
831   }
832   llvm::raw_null_ostream NullStream;
833   parsing.Parse(NullStream);
834   auto &parseTree{parsing.parseTree()};
835   if (!parsing.messages().empty() || !parsing.consumedWholeFile() ||
836       !parseTree) {
837     Say(name, ancestorName, "Module file is corrupt: %s"_err_en_US,
838         sourceFile->path());
839     return nullptr;
840   }
841   Scope *parentScope; // the scope this module/submodule goes into
842   if (!ancestor) {
843     parentScope = &context_.globalScope();
844   } else if (std::optional<SourceName> parent{GetSubmoduleParent(*parseTree)}) {
845     parentScope = Read(*parent, ancestor);
846   } else {
847     parentScope = ancestor;
848   }
849   auto pair{parentScope->try_emplace(name, UnknownDetails{})};
850   if (!pair.second) {
851     return nullptr;
852   }
853   Symbol &modSymbol{*pair.first->second};
854   modSymbol.set(Symbol::Flag::ModFile);
855   ResolveNames(context_, *parseTree);
856   CHECK(modSymbol.has<ModuleDetails>());
857   CHECK(modSymbol.test(Symbol::Flag::ModFile));
858   return modSymbol.scope();
859 }
860 
Say(const SourceName & name,const std::string & ancestor,parser::MessageFixedText && msg,const std::string & arg)861 parser::Message &ModFileReader::Say(const SourceName &name,
862     const std::string &ancestor, parser::MessageFixedText &&msg,
863     const std::string &arg) {
864   return context_
865       .Say(name,
866           ancestor.empty()
867               ? "Error reading module file for module '%s'"_err_en_US
868               : "Error reading module file for submodule '%s' of module '%s'"_err_en_US,
869           name, ancestor)
870       .Attach(name, std::move(msg), arg);
871 }
872 
873 // program was read from a .mod file for a submodule; return the name of the
874 // submodule's parent submodule, nullptr if none.
GetSubmoduleParent(const parser::Program & program)875 static std::optional<SourceName> GetSubmoduleParent(
876     const parser::Program &program) {
877   CHECK(program.v.size() == 1);
878   auto &unit{program.v.front()};
879   auto &submod{std::get<common::Indirection<parser::Submodule>>(unit.u)};
880   auto &stmt{
881       std::get<parser::Statement<parser::SubmoduleStmt>>(submod.value().t)};
882   auto &parentId{std::get<parser::ParentIdentifier>(stmt.statement.t)};
883   if (auto &parent{std::get<std::optional<parser::Name>>(parentId.t)}) {
884     return parent->source;
885   } else {
886     return std::nullopt;
887   }
888 }
889 
Collect()890 void SubprogramSymbolCollector::Collect() {
891   const auto &details{symbol_.get<SubprogramDetails>()};
892   isInterface_ = details.isInterface();
893   for (const Symbol *dummyArg : details.dummyArgs()) {
894     if (dummyArg) {
895       DoSymbol(*dummyArg);
896     }
897   }
898   if (details.isFunction()) {
899     DoSymbol(details.result());
900   }
901   for (const auto &pair : scope_) {
902     const Symbol &symbol{*pair.second};
903     if (const auto *useDetails{symbol.detailsIf<UseDetails>()}) {
904       if (useSet_.count(useDetails->symbol().GetUltimate()) > 0) {
905         need_.push_back(symbol);
906       }
907     }
908   }
909 }
910 
DoSymbol(const Symbol & symbol)911 void SubprogramSymbolCollector::DoSymbol(const Symbol &symbol) {
912   DoSymbol(symbol.name(), symbol);
913 }
914 
915 // Do symbols this one depends on; then add to need_
DoSymbol(const SourceName & name,const Symbol & symbol)916 void SubprogramSymbolCollector::DoSymbol(
917     const SourceName &name, const Symbol &symbol) {
918   const auto &scope{symbol.owner()};
919   if (scope != scope_ && !scope.IsDerivedType()) {
920     if (scope != scope_.parent()) {
921       useSet_.insert(symbol);
922     }
923     if (NeedImport(name, symbol)) {
924       imports_.insert(name);
925     }
926     return;
927   }
928   if (!needSet_.insert(symbol).second) {
929     return; // already done
930   }
931   std::visit(common::visitors{
932                  [this](const ObjectEntityDetails &details) {
933                    for (const ShapeSpec &spec : details.shape()) {
934                      DoBound(spec.lbound());
935                      DoBound(spec.ubound());
936                    }
937                    for (const ShapeSpec &spec : details.coshape()) {
938                      DoBound(spec.lbound());
939                      DoBound(spec.ubound());
940                    }
941                    if (const Symbol * commonBlock{details.commonBlock()}) {
942                      DoSymbol(*commonBlock);
943                    }
944                  },
945                  [this](const CommonBlockDetails &details) {
946                    for (const auto &object : details.objects()) {
947                      DoSymbol(*object);
948                    }
949                  },
950                  [](const auto &) {},
951              },
952       symbol.details());
953   if (!symbol.has<UseDetails>()) {
954     DoType(symbol.GetType());
955   }
956   if (!scope.IsDerivedType()) {
957     need_.push_back(symbol);
958   }
959 }
960 
DoType(const DeclTypeSpec * type)961 void SubprogramSymbolCollector::DoType(const DeclTypeSpec *type) {
962   if (!type) {
963     return;
964   }
965   switch (type->category()) {
966   case DeclTypeSpec::Numeric:
967   case DeclTypeSpec::Logical:
968     break; // nothing to do
969   case DeclTypeSpec::Character:
970     DoParamValue(type->characterTypeSpec().length());
971     break;
972   default:
973     if (const DerivedTypeSpec * derived{type->AsDerived()}) {
974       const auto &typeSymbol{derived->typeSymbol()};
975       if (const DerivedTypeSpec * extends{typeSymbol.GetParentTypeSpec()}) {
976         DoSymbol(extends->name(), extends->typeSymbol());
977       }
978       for (const auto &pair : derived->parameters()) {
979         DoParamValue(pair.second);
980       }
981       for (const auto &pair : *typeSymbol.scope()) {
982         const Symbol &comp{*pair.second};
983         DoSymbol(comp);
984       }
985       DoSymbol(derived->name(), derived->typeSymbol());
986     }
987   }
988 }
989 
DoBound(const Bound & bound)990 void SubprogramSymbolCollector::DoBound(const Bound &bound) {
991   if (const MaybeSubscriptIntExpr & expr{bound.GetExplicit()}) {
992     DoExpr(*expr);
993   }
994 }
DoParamValue(const ParamValue & paramValue)995 void SubprogramSymbolCollector::DoParamValue(const ParamValue &paramValue) {
996   if (const auto &expr{paramValue.GetExplicit()}) {
997     DoExpr(*expr);
998   }
999 }
1000 
1001 // Do we need a IMPORT of this symbol into an interface block?
NeedImport(const SourceName & name,const Symbol & symbol)1002 bool SubprogramSymbolCollector::NeedImport(
1003     const SourceName &name, const Symbol &symbol) {
1004   if (!isInterface_) {
1005     return false;
1006   } else if (symbol.owner().Contains(scope_)) {
1007     return true;
1008   } else if (const Symbol * found{scope_.FindSymbol(name)}) {
1009     // detect import from ancestor of use-associated symbol
1010     return found->has<UseDetails>() && found->owner() != scope_;
1011   } else {
1012     // "found" can be null in the case of a use-associated derived type's parent
1013     // type
1014     CHECK(symbol.has<DerivedTypeDetails>());
1015     return false;
1016   }
1017 }
1018 
1019 } // namespace Fortran::semantics
1020