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)} { 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_)}; 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 // Common handling for procedure pointer right-hand sides 254 bool PointerAssignmentChecker::Check( 255 parser::CharBlock rhsName, bool isCall, const Procedure *rhsProcedure) { 256 if (std::optional<MessageFixedText> msg{ 257 evaluate::CheckProcCompatibility(isCall, procedure_, rhsProcedure)}) { 258 Say(std::move(*msg), description_, rhsName); 259 return false; 260 } 261 return true; 262 } 263 264 bool PointerAssignmentChecker::Check(const evaluate::ProcedureDesignator &d) { 265 if (auto chars{Procedure::Characterize(d, context_)}) { 266 return Check(d.GetName(), false, &*chars); 267 } else { 268 return Check(d.GetName(), false); 269 } 270 } 271 272 bool PointerAssignmentChecker::Check(const evaluate::ProcedureRef &ref) { 273 const Procedure *procedure{nullptr}; 274 auto chars{Procedure::Characterize(ref, context_)}; 275 if (chars) { 276 procedure = &*chars; 277 if (chars->functionResult) { 278 if (const auto *proc{chars->functionResult->IsProcedurePointer()}) { 279 procedure = proc; 280 } 281 } 282 } 283 return Check(ref.proc().GetName(), true, procedure); 284 } 285 286 // The target can be unlimited polymorphic if the pointer is, or if it is 287 // a non-extensible derived type. 288 bool PointerAssignmentChecker::LhsOkForUnlimitedPoly() const { 289 const auto &type{lhsType_->type()}; 290 if (type.category() != TypeCategory::Derived || type.IsAssumedType()) { 291 return false; 292 } else if (type.IsUnlimitedPolymorphic()) { 293 return true; 294 } else { 295 return !IsExtensibleType(&type.GetDerivedTypeSpec()); 296 } 297 } 298 299 template <typename... A> 300 parser::Message *PointerAssignmentChecker::Say(A &&...x) { 301 auto *msg{context_.messages().Say(std::forward<A>(x)...)}; 302 if (msg) { 303 if (lhs_) { 304 return evaluate::AttachDeclaration(msg, *lhs_); 305 } 306 if (!source_.empty()) { 307 msg->Attach(source_, "Declaration of %s"_en_US, description_); 308 } 309 } 310 return msg; 311 } 312 313 // Verify that any bounds on the LHS of a pointer assignment are valid. 314 // Return true if it is a bound-remapping so we can perform further checks. 315 static bool CheckPointerBounds( 316 evaluate::FoldingContext &context, const evaluate::Assignment &assignment) { 317 auto &messages{context.messages()}; 318 const SomeExpr &lhs{assignment.lhs}; 319 const SomeExpr &rhs{assignment.rhs}; 320 bool isBoundsRemapping{false}; 321 std::size_t numBounds{std::visit( 322 common::visitors{ 323 [&](const evaluate::Assignment::BoundsSpec &bounds) { 324 return bounds.size(); 325 }, 326 [&](const evaluate::Assignment::BoundsRemapping &bounds) { 327 isBoundsRemapping = true; 328 evaluate::ExtentExpr lhsSizeExpr{1}; 329 for (const auto &bound : bounds) { 330 lhsSizeExpr = std::move(lhsSizeExpr) * 331 (common::Clone(bound.second) - common::Clone(bound.first) + 332 evaluate::ExtentExpr{1}); 333 } 334 if (std::optional<std::int64_t> lhsSize{evaluate::ToInt64( 335 evaluate::Fold(context, std::move(lhsSizeExpr)))}) { 336 if (auto shape{evaluate::GetShape(context, rhs)}) { 337 if (std::optional<std::int64_t> rhsSize{ 338 evaluate::ToInt64(evaluate::Fold( 339 context, evaluate::GetSize(std::move(*shape))))}) { 340 if (*lhsSize > *rhsSize) { 341 messages.Say( 342 "Pointer bounds require %d elements but target has" 343 " only %d"_err_en_US, 344 *lhsSize, *rhsSize); // 10.2.2.3(9) 345 } 346 } 347 } 348 } 349 return bounds.size(); 350 }, 351 [](const auto &) -> std::size_t { 352 DIE("not valid for pointer assignment"); 353 }, 354 }, 355 assignment.u)}; 356 if (numBounds > 0) { 357 if (lhs.Rank() != static_cast<int>(numBounds)) { 358 messages.Say("Pointer '%s' has rank %d but the number of bounds specified" 359 " is %d"_err_en_US, 360 lhs.AsFortran(), lhs.Rank(), numBounds); // C1018 361 } 362 } 363 if (isBoundsRemapping && rhs.Rank() != 1 && 364 !evaluate::IsSimplyContiguous(rhs, context)) { 365 messages.Say("Pointer bounds remapping target must have rank 1 or be" 366 " simply contiguous"_err_en_US); // 10.2.2.3(9) 367 } 368 return isBoundsRemapping; 369 } 370 371 bool CheckPointerAssignment( 372 evaluate::FoldingContext &context, const evaluate::Assignment &assignment) { 373 return CheckPointerAssignment(context, assignment.lhs, assignment.rhs, 374 CheckPointerBounds(context, assignment)); 375 } 376 377 bool CheckPointerAssignment(evaluate::FoldingContext &context, 378 const SomeExpr &lhs, const SomeExpr &rhs, bool isBoundsRemapping) { 379 const Symbol *pointer{GetLastSymbol(lhs)}; 380 if (!pointer) { 381 return false; // error was reported 382 } 383 if (!IsPointer(*pointer)) { 384 evaluate::SayWithDeclaration(context.messages(), *pointer, 385 "'%s' is not a pointer"_err_en_US, pointer->name()); 386 return false; 387 } 388 if (pointer->has<ProcEntityDetails>() && evaluate::ExtractCoarrayRef(lhs)) { 389 context.messages().Say( // C1027 390 "Procedure pointer may not be a coindexed object"_err_en_US); 391 return false; 392 } 393 return PointerAssignmentChecker{context, *pointer} 394 .set_isBoundsRemapping(isBoundsRemapping) 395 .Check(rhs); 396 } 397 398 bool CheckPointerAssignment( 399 evaluate::FoldingContext &context, const Symbol &lhs, const SomeExpr &rhs) { 400 CHECK(IsPointer(lhs)); 401 return PointerAssignmentChecker{context, lhs}.Check(rhs); 402 } 403 404 bool CheckPointerAssignment(evaluate::FoldingContext &context, 405 parser::CharBlock source, const std::string &description, 406 const DummyDataObject &lhs, const SomeExpr &rhs) { 407 return PointerAssignmentChecker{context, source, description} 408 .set_lhsType(common::Clone(lhs.type)) 409 .set_isContiguous(lhs.attrs.test(DummyDataObject::Attr::Contiguous)) 410 .set_isVolatile(lhs.attrs.test(DummyDataObject::Attr::Volatile)) 411 .Check(rhs); 412 } 413 414 bool CheckInitialTarget(evaluate::FoldingContext &context, 415 const SomeExpr &pointer, const SomeExpr &init) { 416 return evaluate::IsInitialDataTarget(init, &context.messages()) && 417 CheckPointerAssignment(context, pointer, init); 418 } 419 420 } // namespace Fortran::semantics 421