1 //===-- lib/Semantics/semantics.cpp ---------------------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8
9 #include "flang/Semantics/semantics.h"
10 #include "assignment.h"
11 #include "canonicalize-acc.h"
12 #include "canonicalize-do.h"
13 #include "canonicalize-omp.h"
14 #include "check-acc-structure.h"
15 #include "check-allocate.h"
16 #include "check-arithmeticif.h"
17 #include "check-case.h"
18 #include "check-coarray.h"
19 #include "check-data.h"
20 #include "check-deallocate.h"
21 #include "check-declarations.h"
22 #include "check-do-forall.h"
23 #include "check-if-stmt.h"
24 #include "check-io.h"
25 #include "check-namelist.h"
26 #include "check-nullify.h"
27 #include "check-omp-structure.h"
28 #include "check-purity.h"
29 #include "check-return.h"
30 #include "check-select-rank.h"
31 #include "check-select-type.h"
32 #include "check-stop.h"
33 #include "compute-offsets.h"
34 #include "mod-file.h"
35 #include "resolve-labels.h"
36 #include "resolve-names.h"
37 #include "rewrite-parse-tree.h"
38 #include "flang/Common/default-kinds.h"
39 #include "flang/Parser/parse-tree-visitor.h"
40 #include "flang/Parser/tools.h"
41 #include "flang/Semantics/expression.h"
42 #include "flang/Semantics/scope.h"
43 #include "flang/Semantics/symbol.h"
44 #include "llvm/Support/raw_ostream.h"
45
46 namespace Fortran::semantics {
47
48 using NameToSymbolMap = std::multimap<parser::CharBlock, SymbolRef>;
49 static void DoDumpSymbols(llvm::raw_ostream &, const Scope &, int indent = 0);
50 static void PutIndent(llvm::raw_ostream &, int indent);
51
GetSymbolNames(const Scope & scope,NameToSymbolMap & symbols)52 static void GetSymbolNames(const Scope &scope, NameToSymbolMap &symbols) {
53 // Finds all symbol names in the scope without collecting duplicates.
54 for (const auto &pair : scope) {
55 symbols.emplace(pair.second->name(), *pair.second);
56 }
57 for (const auto &pair : scope.commonBlocks()) {
58 symbols.emplace(pair.second->name(), *pair.second);
59 }
60 for (const auto &child : scope.children()) {
61 GetSymbolNames(child, symbols);
62 }
63 }
64
65 // A parse tree visitor that calls Enter/Leave functions from each checker
66 // class C supplied as template parameters. Enter is called before the node's
67 // children are visited, Leave is called after. No two checkers may have the
68 // same Enter or Leave function. Each checker must be constructible from
69 // SemanticsContext and have BaseChecker as a virtual base class.
70 template <typename... C> class SemanticsVisitor : public virtual C... {
71 public:
72 using C::Enter...;
73 using C::Leave...;
74 using BaseChecker::Enter;
75 using BaseChecker::Leave;
SemanticsVisitor(SemanticsContext & context)76 SemanticsVisitor(SemanticsContext &context)
77 : C{context}..., context_{context} {}
78
Pre(const N & node)79 template <typename N> bool Pre(const N &node) {
80 if constexpr (common::HasMember<const N *, ConstructNode>) {
81 context_.PushConstruct(node);
82 }
83 Enter(node);
84 return true;
85 }
Post(const N & node)86 template <typename N> void Post(const N &node) {
87 Leave(node);
88 if constexpr (common::HasMember<const N *, ConstructNode>) {
89 context_.PopConstruct();
90 }
91 }
92
Pre(const parser::Statement<T> & node)93 template <typename T> bool Pre(const parser::Statement<T> &node) {
94 context_.set_location(node.source);
95 Enter(node);
96 return true;
97 }
Pre(const parser::UnlabeledStatement<T> & node)98 template <typename T> bool Pre(const parser::UnlabeledStatement<T> &node) {
99 context_.set_location(node.source);
100 Enter(node);
101 return true;
102 }
Post(const parser::Statement<T> & node)103 template <typename T> void Post(const parser::Statement<T> &node) {
104 Leave(node);
105 context_.set_location(std::nullopt);
106 }
Post(const parser::UnlabeledStatement<T> & node)107 template <typename T> void Post(const parser::UnlabeledStatement<T> &node) {
108 Leave(node);
109 context_.set_location(std::nullopt);
110 }
111
Walk(const parser::Program & program)112 bool Walk(const parser::Program &program) {
113 parser::Walk(program, *this);
114 return !context_.AnyFatalError();
115 }
116
117 private:
118 SemanticsContext &context_;
119 };
120
121 class MiscChecker : public virtual BaseChecker {
122 public:
MiscChecker(SemanticsContext & context)123 explicit MiscChecker(SemanticsContext &context) : context_{context} {}
Leave(const parser::EntryStmt &)124 void Leave(const parser::EntryStmt &) {
125 if (!context_.constructStack().empty()) { // C1571
126 context_.Say("ENTRY may not appear in an executable construct"_err_en_US);
127 }
128 }
Leave(const parser::AssignStmt & stmt)129 void Leave(const parser::AssignStmt &stmt) {
130 CheckAssignGotoName(std::get<parser::Name>(stmt.t));
131 }
Leave(const parser::AssignedGotoStmt & stmt)132 void Leave(const parser::AssignedGotoStmt &stmt) {
133 CheckAssignGotoName(std::get<parser::Name>(stmt.t));
134 }
135
136 private:
CheckAssignGotoName(const parser::Name & name)137 void CheckAssignGotoName(const parser::Name &name) {
138 if (context_.HasError(name.symbol)) {
139 return;
140 }
141 const Symbol &symbol{DEREF(name.symbol)};
142 auto type{evaluate::DynamicType::From(symbol)};
143 if (!IsVariableName(symbol) || symbol.Rank() != 0 || !type ||
144 type->category() != TypeCategory::Integer ||
145 type->kind() !=
146 context_.defaultKinds().GetDefaultKind(TypeCategory::Integer)) {
147 context_
148 .Say(name.source,
149 "'%s' must be a default integer scalar variable"_err_en_US,
150 name.source)
151 .Attach(symbol.name(), "Declaration of '%s'"_en_US, symbol.name());
152 }
153 }
154
155 SemanticsContext &context_;
156 };
157
158 using StatementSemanticsPass1 = ExprChecker;
159 using StatementSemanticsPass2 = SemanticsVisitor<AccStructureChecker,
160 AllocateChecker, ArithmeticIfStmtChecker, AssignmentChecker, CaseChecker,
161 CoarrayChecker, DataChecker, DeallocateChecker, DoForallChecker,
162 IfStmtChecker, IoChecker, MiscChecker, NamelistChecker, NullifyChecker,
163 OmpStructureChecker, PurityChecker, ReturnStmtChecker,
164 SelectRankConstructChecker, SelectTypeChecker, StopChecker>;
165
PerformStatementSemantics(SemanticsContext & context,parser::Program & program)166 static bool PerformStatementSemantics(
167 SemanticsContext &context, parser::Program &program) {
168 ResolveNames(context, program);
169 RewriteParseTree(context, program);
170 ComputeOffsets(context);
171 CheckDeclarations(context);
172 StatementSemanticsPass1{context}.Walk(program);
173 StatementSemanticsPass2 pass2{context};
174 pass2.Walk(program);
175 if (!context.AnyFatalError()) {
176 pass2.CompileDataInitializationsIntoInitializers();
177 }
178 return !context.AnyFatalError();
179 }
180
SemanticsContext(const common::IntrinsicTypeDefaultKinds & defaultKinds,const common::LanguageFeatureControl & languageFeatures,parser::AllCookedSources & allCookedSources)181 SemanticsContext::SemanticsContext(
182 const common::IntrinsicTypeDefaultKinds &defaultKinds,
183 const common::LanguageFeatureControl &languageFeatures,
184 parser::AllCookedSources &allCookedSources)
185 : defaultKinds_{defaultKinds}, languageFeatures_{languageFeatures},
186 allCookedSources_{allCookedSources},
187 intrinsics_{evaluate::IntrinsicProcTable::Configure(defaultKinds_)},
188 foldingContext_{
189 parser::ContextualMessages{&messages_}, defaultKinds_, intrinsics_} {}
190
~SemanticsContext()191 SemanticsContext::~SemanticsContext() {}
192
GetDefaultKind(TypeCategory category) const193 int SemanticsContext::GetDefaultKind(TypeCategory category) const {
194 return defaultKinds_.GetDefaultKind(category);
195 }
196
IsEnabled(common::LanguageFeature feature) const197 bool SemanticsContext::IsEnabled(common::LanguageFeature feature) const {
198 return languageFeatures_.IsEnabled(feature);
199 }
200
ShouldWarn(common::LanguageFeature feature) const201 bool SemanticsContext::ShouldWarn(common::LanguageFeature feature) const {
202 return languageFeatures_.ShouldWarn(feature);
203 }
204
MakeNumericType(TypeCategory category,int kind)205 const DeclTypeSpec &SemanticsContext::MakeNumericType(
206 TypeCategory category, int kind) {
207 if (kind == 0) {
208 kind = GetDefaultKind(category);
209 }
210 return globalScope_.MakeNumericType(category, KindExpr{kind});
211 }
MakeLogicalType(int kind)212 const DeclTypeSpec &SemanticsContext::MakeLogicalType(int kind) {
213 if (kind == 0) {
214 kind = GetDefaultKind(TypeCategory::Logical);
215 }
216 return globalScope_.MakeLogicalType(KindExpr{kind});
217 }
218
AnyFatalError() const219 bool SemanticsContext::AnyFatalError() const {
220 return !messages_.empty() &&
221 (warningsAreErrors_ || messages_.AnyFatalError());
222 }
HasError(const Symbol & symbol)223 bool SemanticsContext::HasError(const Symbol &symbol) {
224 return errorSymbols_.count(symbol) > 0;
225 }
HasError(const Symbol * symbol)226 bool SemanticsContext::HasError(const Symbol *symbol) {
227 return !symbol || HasError(*symbol);
228 }
HasError(const parser::Name & name)229 bool SemanticsContext::HasError(const parser::Name &name) {
230 return HasError(name.symbol);
231 }
SetError(const Symbol & symbol,bool value)232 void SemanticsContext::SetError(const Symbol &symbol, bool value) {
233 if (value) {
234 CheckError(symbol);
235 errorSymbols_.emplace(symbol);
236 }
237 }
CheckError(const Symbol & symbol)238 void SemanticsContext::CheckError(const Symbol &symbol) {
239 if (!AnyFatalError()) {
240 std::string buf;
241 llvm::raw_string_ostream ss{buf};
242 ss << symbol;
243 common::die(
244 "No error was reported but setting error on: %s", ss.str().c_str());
245 }
246 }
247
FindScope(parser::CharBlock source) const248 const Scope &SemanticsContext::FindScope(parser::CharBlock source) const {
249 return const_cast<SemanticsContext *>(this)->FindScope(source);
250 }
251
FindScope(parser::CharBlock source)252 Scope &SemanticsContext::FindScope(parser::CharBlock source) {
253 if (auto *scope{globalScope_.FindScope(source)}) {
254 return *scope;
255 } else {
256 common::die("SemanticsContext::FindScope(): invalid source location");
257 }
258 }
259
PopConstruct()260 void SemanticsContext::PopConstruct() {
261 CHECK(!constructStack_.empty());
262 constructStack_.pop_back();
263 }
264
CheckIndexVarRedefine(const parser::CharBlock & location,const Symbol & variable,parser::MessageFixedText && message)265 void SemanticsContext::CheckIndexVarRedefine(const parser::CharBlock &location,
266 const Symbol &variable, parser::MessageFixedText &&message) {
267 if (const Symbol * root{GetAssociationRoot(variable)}) {
268 auto it{activeIndexVars_.find(*root)};
269 if (it != activeIndexVars_.end()) {
270 std::string kind{EnumToString(it->second.kind)};
271 Say(location, std::move(message), kind, root->name())
272 .Attach(it->second.location, "Enclosing %s construct"_en_US, kind);
273 }
274 }
275 }
276
WarnIndexVarRedefine(const parser::CharBlock & location,const Symbol & variable)277 void SemanticsContext::WarnIndexVarRedefine(
278 const parser::CharBlock &location, const Symbol &variable) {
279 CheckIndexVarRedefine(
280 location, variable, "Possible redefinition of %s variable '%s'"_en_US);
281 }
282
CheckIndexVarRedefine(const parser::CharBlock & location,const Symbol & variable)283 void SemanticsContext::CheckIndexVarRedefine(
284 const parser::CharBlock &location, const Symbol &variable) {
285 CheckIndexVarRedefine(
286 location, variable, "Cannot redefine %s variable '%s'"_err_en_US);
287 }
288
CheckIndexVarRedefine(const parser::Variable & variable)289 void SemanticsContext::CheckIndexVarRedefine(const parser::Variable &variable) {
290 if (const Symbol * entity{GetLastName(variable).symbol}) {
291 CheckIndexVarRedefine(variable.GetSource(), *entity);
292 }
293 }
294
CheckIndexVarRedefine(const parser::Name & name)295 void SemanticsContext::CheckIndexVarRedefine(const parser::Name &name) {
296 if (const Symbol * entity{name.symbol}) {
297 CheckIndexVarRedefine(name.source, *entity);
298 }
299 }
300
ActivateIndexVar(const parser::Name & name,IndexVarKind kind)301 void SemanticsContext::ActivateIndexVar(
302 const parser::Name &name, IndexVarKind kind) {
303 CheckIndexVarRedefine(name);
304 if (const Symbol * indexVar{name.symbol}) {
305 if (const Symbol * root{GetAssociationRoot(*indexVar)}) {
306 activeIndexVars_.emplace(*root, IndexVarInfo{name.source, kind});
307 }
308 }
309 }
310
DeactivateIndexVar(const parser::Name & name)311 void SemanticsContext::DeactivateIndexVar(const parser::Name &name) {
312 if (Symbol * indexVar{name.symbol}) {
313 if (const Symbol * root{GetAssociationRoot(*indexVar)}) {
314 auto it{activeIndexVars_.find(*root)};
315 if (it != activeIndexVars_.end() && it->second.location == name.source) {
316 activeIndexVars_.erase(it);
317 }
318 }
319 }
320 }
321
GetIndexVars(IndexVarKind kind)322 SymbolVector SemanticsContext::GetIndexVars(IndexVarKind kind) {
323 SymbolVector result;
324 for (const auto &[symbol, info] : activeIndexVars_) {
325 if (info.kind == kind) {
326 result.push_back(symbol);
327 }
328 }
329 return result;
330 }
331
GetTempName(const Scope & scope)332 SourceName SemanticsContext::GetTempName(const Scope &scope) {
333 for (const auto &str : tempNames_) {
334 SourceName name{str};
335 if (scope.find(name) == scope.end()) {
336 return name;
337 }
338 }
339 tempNames_.emplace_back(".F18.");
340 tempNames_.back() += std::to_string(tempNames_.size());
341 return {tempNames_.back()};
342 }
343
Perform()344 bool Semantics::Perform() {
345 return ValidateLabels(context_, program_) &&
346 parser::CanonicalizeDo(program_) && // force line break
347 CanonicalizeAcc(context_.messages(), program_) &&
348 CanonicalizeOmp(context_.messages(), program_) &&
349 PerformStatementSemantics(context_, program_) &&
350 ModFileWriter{context_}.WriteAll();
351 }
352
EmitMessages(llvm::raw_ostream & os) const353 void Semantics::EmitMessages(llvm::raw_ostream &os) const {
354 context_.messages().Emit(os, context_.allCookedSources());
355 }
356
DumpSymbols(llvm::raw_ostream & os)357 void Semantics::DumpSymbols(llvm::raw_ostream &os) {
358 DoDumpSymbols(os, context_.globalScope());
359 }
360
DumpSymbolsSources(llvm::raw_ostream & os) const361 void Semantics::DumpSymbolsSources(llvm::raw_ostream &os) const {
362 NameToSymbolMap symbols;
363 GetSymbolNames(context_.globalScope(), symbols);
364 const parser::AllCookedSources &allCooked{context_.allCookedSources()};
365 for (const auto &pair : symbols) {
366 const Symbol &symbol{pair.second};
367 if (auto sourceInfo{allCooked.GetSourcePositionRange(symbol.name())}) {
368 os << symbol.name().ToString() << ": " << sourceInfo->first.file.path()
369 << ", " << sourceInfo->first.line << ", " << sourceInfo->first.column
370 << "-" << sourceInfo->second.column << "\n";
371 } else if (symbol.has<semantics::UseDetails>()) {
372 os << symbol.name().ToString() << ": "
373 << symbol.GetUltimate().owner().symbol()->name().ToString() << "\n";
374 }
375 }
376 }
377
DoDumpSymbols(llvm::raw_ostream & os,const Scope & scope,int indent)378 void DoDumpSymbols(llvm::raw_ostream &os, const Scope &scope, int indent) {
379 PutIndent(os, indent);
380 os << Scope::EnumToString(scope.kind()) << " scope:";
381 if (const auto *symbol{scope.symbol()}) {
382 os << ' ' << symbol->name();
383 }
384 if (scope.alignment().has_value()) {
385 os << " size=" << scope.size() << " alignment=" << *scope.alignment();
386 }
387 if (scope.derivedTypeSpec()) {
388 os << " instantiation of " << *scope.derivedTypeSpec();
389 }
390 os << '\n';
391 ++indent;
392 for (const auto &pair : scope) {
393 const auto &symbol{*pair.second};
394 PutIndent(os, indent);
395 os << symbol << '\n';
396 if (const auto *details{symbol.detailsIf<GenericDetails>()}) {
397 if (const auto &type{details->derivedType()}) {
398 PutIndent(os, indent);
399 os << *type << '\n';
400 }
401 }
402 }
403 if (!scope.equivalenceSets().empty()) {
404 PutIndent(os, indent);
405 os << "Equivalence Sets:";
406 for (const auto &set : scope.equivalenceSets()) {
407 os << ' ';
408 char sep = '(';
409 for (const auto &object : set) {
410 os << sep << object.AsFortran();
411 sep = ',';
412 }
413 os << ')';
414 }
415 os << '\n';
416 }
417 if (!scope.crayPointers().empty()) {
418 PutIndent(os, indent);
419 os << "Cray Pointers:";
420 for (const auto &[pointee, pointer] : scope.crayPointers()) {
421 os << " (" << pointer->name() << ',' << pointee << ')';
422 }
423 }
424 for (const auto &pair : scope.commonBlocks()) {
425 const auto &symbol{*pair.second};
426 PutIndent(os, indent);
427 os << symbol << '\n';
428 }
429 for (const auto &child : scope.children()) {
430 DoDumpSymbols(os, child, indent);
431 }
432 --indent;
433 }
434
PutIndent(llvm::raw_ostream & os,int indent)435 static void PutIndent(llvm::raw_ostream &os, int indent) {
436 for (int i = 0; i < indent; ++i) {
437 os << " ";
438 }
439 }
440 } // namespace Fortran::semantics
441