xref: /llvm-project/flang/lib/Semantics/pointer-assignment.cpp (revision 37b2e2b04cf434b368b1edf29609be21952316f9)
1 //===-- lib/Semantics/pointer-assignment.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 "pointer-assignment.h"
10 #include "flang/Common/idioms.h"
11 #include "flang/Common/restorer.h"
12 #include "flang/Evaluate/characteristics.h"
13 #include "flang/Evaluate/expression.h"
14 #include "flang/Evaluate/fold.h"
15 #include "flang/Evaluate/tools.h"
16 #include "flang/Parser/message.h"
17 #include "flang/Parser/parse-tree-visitor.h"
18 #include "flang/Parser/parse-tree.h"
19 #include "flang/Semantics/expression.h"
20 #include "flang/Semantics/symbol.h"
21 #include "flang/Semantics/tools.h"
22 #include "llvm/Support/raw_ostream.h"
23 #include <optional>
24 #include <set>
25 #include <string>
26 #include <type_traits>
27 
28 // Semantic checks for pointer assignment.
29 
30 namespace Fortran::semantics {
31 
32 using namespace parser::literals;
33 using evaluate::characteristics::DummyDataObject;
34 using evaluate::characteristics::FunctionResult;
35 using evaluate::characteristics::Procedure;
36 using evaluate::characteristics::TypeAndShape;
37 using parser::MessageFixedText;
38 using parser::MessageFormattedText;
39 
40 class PointerAssignmentChecker {
41 public:
42   PointerAssignmentChecker(evaluate::FoldingContext &context,
43       parser::CharBlock source, const std::string &description)
44       : context_{context}, source_{source}, description_{description} {}
45   PointerAssignmentChecker(evaluate::FoldingContext &context, const Symbol &lhs)
46       : context_{context}, source_{lhs.name()},
47         description_{"pointer '"s + lhs.name().ToString() + '\''}, lhs_{&lhs},
48         procedure_{Procedure::Characterize(lhs, context.intrinsics())} {
49     set_lhsType(TypeAndShape::Characterize(lhs, context));
50     set_isContiguous(lhs.attrs().test(Attr::CONTIGUOUS));
51     set_isVolatile(lhs.attrs().test(Attr::VOLATILE));
52   }
53   PointerAssignmentChecker &set_lhsType(std::optional<TypeAndShape> &&);
54   PointerAssignmentChecker &set_isContiguous(bool);
55   PointerAssignmentChecker &set_isVolatile(bool);
56   PointerAssignmentChecker &set_isBoundsRemapping(bool);
57   bool Check(const SomeExpr &);
58 
59 private:
60   template <typename T> bool Check(const T &);
61   template <typename T> bool Check(const evaluate::Expr<T> &);
62   template <typename T> bool Check(const evaluate::FunctionRef<T> &);
63   template <typename T> bool Check(const evaluate::Designator<T> &);
64   bool Check(const evaluate::NullPointer &);
65   bool Check(const evaluate::ProcedureDesignator &);
66   bool Check(const evaluate::ProcedureRef &);
67   // Target is a procedure
68   bool Check(
69       parser::CharBlock rhsName, bool isCall, const Procedure * = nullptr);
70   bool LhsOkForUnlimitedPoly() const;
71   template <typename... A> parser::Message *Say(A &&...);
72 
73   evaluate::FoldingContext &context_;
74   const parser::CharBlock source_;
75   const std::string description_;
76   const Symbol *lhs_{nullptr};
77   std::optional<TypeAndShape> lhsType_;
78   std::optional<Procedure> procedure_;
79   bool isContiguous_{false};
80   bool isVolatile_{false};
81   bool isBoundsRemapping_{false};
82 };
83 
84 PointerAssignmentChecker &PointerAssignmentChecker::set_lhsType(
85     std::optional<TypeAndShape> &&lhsType) {
86   lhsType_ = std::move(lhsType);
87   return *this;
88 }
89 
90 PointerAssignmentChecker &PointerAssignmentChecker::set_isContiguous(
91     bool isContiguous) {
92   isContiguous_ = isContiguous;
93   return *this;
94 }
95 
96 PointerAssignmentChecker &PointerAssignmentChecker::set_isVolatile(
97     bool isVolatile) {
98   isVolatile_ = isVolatile;
99   return *this;
100 }
101 
102 PointerAssignmentChecker &PointerAssignmentChecker::set_isBoundsRemapping(
103     bool isBoundsRemapping) {
104   isBoundsRemapping_ = isBoundsRemapping;
105   return *this;
106 }
107 
108 template <typename T> bool PointerAssignmentChecker::Check(const T &) {
109   // Catch-all case for really bad target expression
110   Say("Target associated with %s must be a designator or a call to a"
111       " pointer-valued function"_err_en_US,
112       description_);
113   return false;
114 }
115 
116 template <typename T>
117 bool PointerAssignmentChecker::Check(const evaluate::Expr<T> &x) {
118   return std::visit([&](const auto &x) { return Check(x); }, x.u);
119 }
120 
121 bool PointerAssignmentChecker::Check(const SomeExpr &rhs) {
122   if (HasVectorSubscript(rhs)) { // C1025
123     Say("An array section with a vector subscript may not be a pointer target"_err_en_US);
124     return false;
125   } else if (ExtractCoarrayRef(rhs)) { // C1026
126     Say("A coindexed object may not be a pointer target"_err_en_US);
127     return false;
128   } else {
129     return std::visit([&](const auto &x) { return Check(x); }, rhs.u);
130   }
131 }
132 
133 bool PointerAssignmentChecker::Check(const evaluate::NullPointer &) {
134   return true; // P => NULL() without MOLD=; always OK
135 }
136 
137 template <typename T>
138 bool PointerAssignmentChecker::Check(const evaluate::FunctionRef<T> &f) {
139   std::string funcName;
140   const auto *symbol{f.proc().GetSymbol()};
141   if (symbol) {
142     funcName = symbol->name().ToString();
143   } else if (const auto *intrinsic{f.proc().GetSpecificIntrinsic()}) {
144     funcName = intrinsic->name;
145   }
146   auto proc{Procedure::Characterize(f.proc(), context_.intrinsics())};
147   if (!proc) {
148     return false;
149   }
150   std::optional<MessageFixedText> msg;
151   const auto &funcResult{proc->functionResult}; // C1025
152   if (!funcResult) {
153     msg = "%s is associated with the non-existent result of reference to"
154           " procedure"_err_en_US;
155   } else if (procedure_) {
156     // Shouldn't be here in this function unless lhs is an object pointer.
157     msg = "Procedure %s is associated with the result of a reference to"
158           " function '%s' that does not return a procedure pointer"_err_en_US;
159   } else if (funcResult->IsProcedurePointer()) {
160     msg = "Object %s is associated with the result of a reference to"
161           " function '%s' that is a procedure pointer"_err_en_US;
162   } else if (!funcResult->attrs.test(FunctionResult::Attr::Pointer)) {
163     msg = "%s is associated with the result of a reference to function '%s'"
164           " that is a not a pointer"_err_en_US;
165   } else if (isContiguous_ &&
166       !funcResult->attrs.test(FunctionResult::Attr::Contiguous)) {
167     msg = "CONTIGUOUS %s is associated with the result of reference to"
168           " function '%s' that is not contiguous"_err_en_US;
169   } else if (lhsType_) {
170     const auto *frTypeAndShape{funcResult->GetTypeAndShape()};
171     CHECK(frTypeAndShape);
172     if (!lhsType_->IsCompatibleWith(context_.messages(), *frTypeAndShape)) {
173       msg = "%s is associated with the result of a reference to function '%s'"
174             " whose pointer result has an incompatible type or shape"_err_en_US;
175     }
176   }
177   if (msg) {
178     auto restorer{common::ScopedSet(lhs_, symbol)};
179     Say(*msg, description_, funcName);
180     return false;
181   }
182   return true;
183 }
184 
185 template <typename T>
186 bool PointerAssignmentChecker::Check(const evaluate::Designator<T> &d) {
187   const Symbol *last{d.GetLastSymbol()};
188   const Symbol *base{d.GetBaseObject().symbol()};
189   if (!last || !base) {
190     // P => "character literal"(1:3)
191     context_.messages().Say("Pointer target is not a named entity"_err_en_US);
192     return false;
193   }
194   std::optional<std::variant<MessageFixedText, MessageFormattedText>> msg;
195   if (procedure_) {
196     // Shouldn't be here in this function unless lhs is an object pointer.
197     msg = "In assignment to procedure %s, the target is not a procedure or"
198           " procedure pointer"_err_en_US;
199   } else if (!evaluate::GetLastTarget(GetSymbolVector(d))) { // C1025
200     msg = "In assignment to object %s, the target '%s' is not an object with"
201           " POINTER or TARGET attributes"_err_en_US;
202   } else if (auto rhsType{TypeAndShape::Characterize(d, context_)}) {
203     if (!lhsType_) {
204       msg = "%s associated with object '%s' with incompatible type or"
205             " shape"_err_en_US;
206     } else if (rhsType->corank() > 0 &&
207         (isVolatile_ != last->attrs().test(Attr::VOLATILE))) { // C1020
208       // TODO: what if A is VOLATILE in A%B%C?  need a better test here
209       if (isVolatile_) {
210         msg = "Pointer may not be VOLATILE when target is a"
211               " non-VOLATILE coarray"_err_en_US;
212       } else {
213         msg = "Pointer must be VOLATILE when target is a"
214               " VOLATILE coarray"_err_en_US;
215       }
216     } else if (rhsType->type().IsUnlimitedPolymorphic()) {
217       if (!LhsOkForUnlimitedPoly()) {
218         msg = "Pointer type must be unlimited polymorphic or non-extensible"
219               " derived type when target is unlimited polymorphic"_err_en_US;
220       }
221     } else {
222       if (!lhsType_->type().IsTkCompatibleWith(rhsType->type())) {
223         msg = MessageFormattedText{
224             "Target type %s is not compatible with pointer type %s"_err_en_US,
225             rhsType->type().AsFortran(), lhsType_->type().AsFortran()};
226 
227       } else if (!isBoundsRemapping_) {
228         int lhsRank{evaluate::GetRank(lhsType_->shape())};
229         int rhsRank{evaluate::GetRank(rhsType->shape())};
230         if (lhsRank != rhsRank) {
231           msg = MessageFormattedText{
232               "Pointer has rank %d but target has rank %d"_err_en_US, lhsRank,
233               rhsRank};
234         }
235       }
236     }
237   }
238   if (msg) {
239     auto restorer{common::ScopedSet(lhs_, last)};
240     if (auto *m{std::get_if<MessageFixedText>(&*msg)}) {
241       std::string buf;
242       llvm::raw_string_ostream ss{buf};
243       d.AsFortran(ss);
244       Say(*m, description_, ss.str());
245     } else {
246       Say(std::get<MessageFormattedText>(*msg));
247     }
248     return false;
249   }
250   return true;
251 }
252 
253 // Compare procedure characteristics for equality except that lhs may be
254 // Pure or Elemental when rhs is not.
255 static bool CharacteristicsMatch(const Procedure &lhs, const Procedure &rhs) {
256   using Attr = Procedure::Attr;
257   auto lhsAttrs{rhs.attrs};
258   lhsAttrs.set(
259       Attr::Pure, lhs.attrs.test(Attr::Pure) | rhs.attrs.test(Attr::Pure));
260   lhsAttrs.set(Attr::Elemental,
261       lhs.attrs.test(Attr::Elemental) | rhs.attrs.test(Attr::Elemental));
262   return lhsAttrs == rhs.attrs && lhs.functionResult == rhs.functionResult &&
263       lhs.dummyArguments == rhs.dummyArguments;
264 }
265 
266 // Common handling for procedure pointer right-hand sides
267 bool PointerAssignmentChecker::Check(
268     parser::CharBlock rhsName, bool isCall, const Procedure *rhsProcedure) {
269   std::optional<MessageFixedText> msg;
270   if (!procedure_) {
271     msg = "In assignment to object %s, the target '%s' is a procedure"
272           " designator"_err_en_US;
273   } else if (!rhsProcedure) {
274     msg = "In assignment to procedure %s, the characteristics of the target"
275           " procedure '%s' could not be determined"_err_en_US;
276   } else if (CharacteristicsMatch(*procedure_, *rhsProcedure)) {
277     // OK
278   } else if (isCall) {
279     msg = "Procedure %s associated with result of reference to function '%s'"
280           " that is an incompatible procedure pointer"_err_en_US;
281   } else if (procedure_->IsPure() && !rhsProcedure->IsPure()) {
282     msg = "PURE procedure %s may not be associated with non-PURE"
283           " procedure designator '%s'"_err_en_US;
284   } else if (procedure_->IsElemental() && !rhsProcedure->IsElemental()) {
285     msg = "ELEMENTAL procedure %s may not be associated with non-ELEMENTAL"
286           " procedure designator '%s'"_err_en_US;
287   } else if (procedure_->IsFunction() && !rhsProcedure->IsFunction()) {
288     msg = "Function %s may not be associated with subroutine"
289           " designator '%s'"_err_en_US;
290   } else if (!procedure_->IsFunction() && rhsProcedure->IsFunction()) {
291     msg = "Subroutine %s may not be associated with function"
292           " designator '%s'"_err_en_US;
293   } else if (procedure_->HasExplicitInterface() &&
294       !rhsProcedure->HasExplicitInterface()) {
295     msg = "Procedure %s with explicit interface may not be associated with"
296           " procedure designator '%s' with implicit interface"_err_en_US;
297   } else if (!procedure_->HasExplicitInterface() &&
298       rhsProcedure->HasExplicitInterface()) {
299     msg = "Procedure %s with implicit interface may not be associated with"
300           " procedure designator '%s' with explicit interface"_err_en_US;
301   } else {
302     msg = "Procedure %s associated with incompatible procedure"
303           " designator '%s'"_err_en_US;
304   }
305   if (msg) {
306     Say(std::move(*msg), description_, rhsName);
307     return false;
308   }
309   return true;
310 }
311 
312 bool PointerAssignmentChecker::Check(const evaluate::ProcedureDesignator &d) {
313   if (auto chars{Procedure::Characterize(d, context_.intrinsics())}) {
314     return Check(d.GetName(), false, &*chars);
315   } else {
316     return Check(d.GetName(), false);
317   }
318 }
319 
320 bool PointerAssignmentChecker::Check(const evaluate::ProcedureRef &ref) {
321   const Procedure *procedure{nullptr};
322   auto chars{Procedure::Characterize(ref, context_.intrinsics())};
323   if (chars) {
324     procedure = &*chars;
325     if (chars->functionResult) {
326       if (const auto *proc{chars->functionResult->IsProcedurePointer()}) {
327         procedure = proc;
328       }
329     }
330   }
331   return Check(ref.proc().GetName(), true, procedure);
332 }
333 
334 // The target can be unlimited polymorphic if the pointer is, or if it is
335 // a non-extensible derived type.
336 bool PointerAssignmentChecker::LhsOkForUnlimitedPoly() const {
337   const auto &type{lhsType_->type()};
338   if (type.category() != TypeCategory::Derived || type.IsAssumedType()) {
339     return false;
340   } else if (type.IsUnlimitedPolymorphic()) {
341     return true;
342   } else {
343     return !IsExtensibleType(&type.GetDerivedTypeSpec());
344   }
345 }
346 
347 template <typename... A>
348 parser::Message *PointerAssignmentChecker::Say(A &&...x) {
349   auto *msg{context_.messages().Say(std::forward<A>(x)...)};
350   if (lhs_) {
351     return evaluate::AttachDeclaration(msg, *lhs_);
352   } else if (!source_.empty()) {
353     msg->Attach(source_, "Declaration of %s"_en_US, description_);
354   }
355   return msg;
356 }
357 
358 // Verify that any bounds on the LHS of a pointer assignment are valid.
359 // Return true if it is a bound-remapping so we can perform further checks.
360 static bool CheckPointerBounds(
361     evaluate::FoldingContext &context, const evaluate::Assignment &assignment) {
362   auto &messages{context.messages()};
363   const SomeExpr &lhs{assignment.lhs};
364   const SomeExpr &rhs{assignment.rhs};
365   bool isBoundsRemapping{false};
366   std::size_t numBounds{std::visit(
367       common::visitors{
368           [&](const evaluate::Assignment::BoundsSpec &bounds) {
369             return bounds.size();
370           },
371           [&](const evaluate::Assignment::BoundsRemapping &bounds) {
372             isBoundsRemapping = true;
373             evaluate::ExtentExpr lhsSizeExpr{1};
374             for (const auto &bound : bounds) {
375               lhsSizeExpr = std::move(lhsSizeExpr) *
376                   (common::Clone(bound.second) - common::Clone(bound.first) +
377                       evaluate::ExtentExpr{1});
378             }
379             if (std::optional<std::int64_t> lhsSize{evaluate::ToInt64(
380                     evaluate::Fold(context, std::move(lhsSizeExpr)))}) {
381               if (auto shape{evaluate::GetShape(context, rhs)}) {
382                 if (std::optional<std::int64_t> rhsSize{
383                         evaluate::ToInt64(evaluate::Fold(
384                             context, evaluate::GetSize(std::move(*shape))))}) {
385                   if (*lhsSize > *rhsSize) {
386                     messages.Say(
387                         "Pointer bounds require %d elements but target has"
388                         " only %d"_err_en_US,
389                         *lhsSize, *rhsSize); // 10.2.2.3(9)
390                   }
391                 }
392               }
393             }
394             return bounds.size();
395           },
396           [](const auto &) -> std::size_t {
397             DIE("not valid for pointer assignment");
398           },
399       },
400       assignment.u)};
401   if (numBounds > 0) {
402     if (lhs.Rank() != static_cast<int>(numBounds)) {
403       messages.Say("Pointer '%s' has rank %d but the number of bounds specified"
404                    " is %d"_err_en_US,
405           lhs.AsFortran(), lhs.Rank(), numBounds); // C1018
406     }
407   }
408   if (isBoundsRemapping && rhs.Rank() != 1 &&
409       !evaluate::IsSimplyContiguous(rhs, context.intrinsics())) {
410     messages.Say("Pointer bounds remapping target must have rank 1 or be"
411                  " simply contiguous"_err_en_US); // 10.2.2.3(9)
412   }
413   return isBoundsRemapping;
414 }
415 
416 bool CheckPointerAssignment(
417     evaluate::FoldingContext &context, const evaluate::Assignment &assignment) {
418   return CheckPointerAssignment(context, assignment.lhs, assignment.rhs,
419       CheckPointerBounds(context, assignment));
420 }
421 
422 bool CheckPointerAssignment(evaluate::FoldingContext &context,
423     const SomeExpr &lhs, const SomeExpr &rhs, bool isBoundsRemapping) {
424   const Symbol *pointer{GetLastSymbol(lhs)};
425   if (!pointer) {
426     return false; // error was reported
427   }
428   if (!IsPointer(*pointer)) {
429     evaluate::SayWithDeclaration(context.messages(), *pointer,
430         "'%s' is not a pointer"_err_en_US, pointer->name());
431     return false;
432   }
433   if (pointer->has<ProcEntityDetails>() && evaluate::ExtractCoarrayRef(lhs)) {
434     context.messages().Say( // C1027
435         "Procedure pointer may not be a coindexed object"_err_en_US);
436     return false;
437   }
438   return PointerAssignmentChecker{context, *pointer}
439       .set_isBoundsRemapping(isBoundsRemapping)
440       .Check(rhs);
441 }
442 
443 bool CheckPointerAssignment(
444     evaluate::FoldingContext &context, const Symbol &lhs, const SomeExpr &rhs) {
445   CHECK(IsPointer(lhs));
446   return PointerAssignmentChecker{context, lhs}.Check(rhs);
447 }
448 
449 bool CheckPointerAssignment(evaluate::FoldingContext &context,
450     parser::CharBlock source, const std::string &description,
451     const DummyDataObject &lhs, const SomeExpr &rhs) {
452   return PointerAssignmentChecker{context, source, description}
453       .set_lhsType(common::Clone(lhs.type))
454       .set_isContiguous(lhs.attrs.test(DummyDataObject::Attr::Contiguous))
455       .set_isVolatile(lhs.attrs.test(DummyDataObject::Attr::Volatile))
456       .Check(rhs);
457 }
458 
459 bool CheckInitialTarget(evaluate::FoldingContext &context,
460     const SomeExpr &pointer, const SomeExpr &init) {
461   return evaluate::IsInitialDataTarget(init, &context.messages()) &&
462       CheckPointerAssignment(context, pointer, init);
463 }
464 
465 } // namespace Fortran::semantics
466