forked from OSchip/llvm-project
690 lines
21 KiB
C++
690 lines
21 KiB
C++
//===-- lib/Evaluate/variable.cpp -----------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "flang/Evaluate/variable.h"
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#include "flang/Common/idioms.h"
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#include "flang/Evaluate/check-expression.h"
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#include "flang/Evaluate/fold.h"
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#include "flang/Evaluate/tools.h"
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#include "flang/Parser/char-block.h"
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#include "flang/Parser/characters.h"
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#include "flang/Parser/message.h"
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#include "flang/Semantics/scope.h"
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#include "flang/Semantics/symbol.h"
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#include <type_traits>
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using namespace Fortran::parser::literals;
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namespace Fortran::evaluate {
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// Constructors, accessors, mutators
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Triplet::Triplet() : stride_{Expr<SubscriptInteger>{1}} {}
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Triplet::Triplet(std::optional<Expr<SubscriptInteger>> &&l,
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std::optional<Expr<SubscriptInteger>> &&u,
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std::optional<Expr<SubscriptInteger>> &&s)
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: stride_{s ? std::move(*s) : Expr<SubscriptInteger>{1}} {
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if (l) {
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lower_.emplace(std::move(*l));
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}
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if (u) {
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upper_.emplace(std::move(*u));
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}
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}
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std::optional<Expr<SubscriptInteger>> Triplet::lower() const {
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if (lower_) {
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return {lower_.value().value()};
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}
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return std::nullopt;
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}
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Triplet &Triplet::set_lower(Expr<SubscriptInteger> &&expr) {
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lower_.emplace(std::move(expr));
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return *this;
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}
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std::optional<Expr<SubscriptInteger>> Triplet::upper() const {
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if (upper_) {
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return {upper_.value().value()};
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}
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return std::nullopt;
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}
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Triplet &Triplet::set_upper(Expr<SubscriptInteger> &&expr) {
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upper_.emplace(std::move(expr));
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return *this;
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}
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Expr<SubscriptInteger> Triplet::stride() const { return stride_.value(); }
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Triplet &Triplet::set_stride(Expr<SubscriptInteger> &&expr) {
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stride_.value() = std::move(expr);
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return *this;
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}
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bool Triplet::IsStrideOne() const {
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if (auto stride{ToInt64(stride_.value())}) {
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return stride == 1;
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} else {
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return false;
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}
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}
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CoarrayRef::CoarrayRef(SymbolVector &&base, std::vector<Subscript> &&ss,
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std::vector<Expr<SubscriptInteger>> &&css)
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: base_{std::move(base)}, subscript_(std::move(ss)),
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cosubscript_(std::move(css)) {
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CHECK(!base_.empty());
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CHECK(!cosubscript_.empty());
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}
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std::optional<Expr<SomeInteger>> CoarrayRef::stat() const {
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if (stat_) {
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return stat_.value().value();
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} else {
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return std::nullopt;
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}
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}
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std::optional<Expr<SomeInteger>> CoarrayRef::team() const {
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if (team_) {
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return team_.value().value();
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} else {
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return std::nullopt;
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}
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}
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CoarrayRef &CoarrayRef::set_stat(Expr<SomeInteger> &&v) {
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CHECK(IsVariable(v));
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stat_.emplace(std::move(v));
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return *this;
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}
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CoarrayRef &CoarrayRef::set_team(Expr<SomeInteger> &&v, bool isTeamNumber) {
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CHECK(IsVariable(v));
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team_.emplace(std::move(v));
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teamIsTeamNumber_ = isTeamNumber;
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return *this;
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}
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const Symbol &CoarrayRef::GetFirstSymbol() const { return base_.front(); }
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const Symbol &CoarrayRef::GetLastSymbol() const { return base_.back(); }
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void Substring::SetBounds(std::optional<Expr<SubscriptInteger>> &lower,
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std::optional<Expr<SubscriptInteger>> &upper) {
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if (lower) {
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set_lower(std::move(lower.value()));
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}
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if (upper) {
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set_upper(std::move(upper.value()));
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}
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}
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Expr<SubscriptInteger> Substring::lower() const {
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if (lower_) {
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return lower_.value().value();
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} else {
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return AsExpr(Constant<SubscriptInteger>{1});
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}
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}
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Substring &Substring::set_lower(Expr<SubscriptInteger> &&expr) {
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lower_.emplace(std::move(expr));
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return *this;
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}
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std::optional<Expr<SubscriptInteger>> Substring::upper() const {
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if (upper_) {
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return upper_.value().value();
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} else {
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return std::visit(
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common::visitors{
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[](const DataRef &dataRef) { return dataRef.LEN(); },
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[](const StaticDataObject::Pointer &object)
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-> std::optional<Expr<SubscriptInteger>> {
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return AsExpr(Constant<SubscriptInteger>{object->data().size()});
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},
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},
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parent_);
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}
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}
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Substring &Substring::set_upper(Expr<SubscriptInteger> &&expr) {
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upper_.emplace(std::move(expr));
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return *this;
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}
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std::optional<Expr<SomeCharacter>> Substring::Fold(FoldingContext &context) {
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if (!lower_) {
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lower_ = AsExpr(Constant<SubscriptInteger>{1});
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}
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lower_.value() = evaluate::Fold(context, std::move(lower_.value().value()));
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std::optional<ConstantSubscript> lbi{ToInt64(lower_.value().value())};
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if (lbi && *lbi < 1) {
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context.messages().Say(
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"Lower bound (%jd) on substring is less than one"_en_US, *lbi);
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*lbi = 1;
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lower_ = AsExpr(Constant<SubscriptInteger>{1});
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}
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if (!upper_) {
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upper_ = upper();
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if (!upper_) {
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return std::nullopt;
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}
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}
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upper_.value() = evaluate::Fold(context, std::move(upper_.value().value()));
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if (std::optional<ConstantSubscript> ubi{ToInt64(upper_.value().value())}) {
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auto *literal{std::get_if<StaticDataObject::Pointer>(&parent_)};
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std::optional<ConstantSubscript> length;
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if (literal) {
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length = (*literal)->data().size();
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} else if (const Symbol * symbol{GetLastSymbol()}) {
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if (const semantics::DeclTypeSpec * type{symbol->GetType()}) {
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if (type->category() == semantics::DeclTypeSpec::Character) {
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length = ToInt64(type->characterTypeSpec().length().GetExplicit());
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}
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}
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}
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if (*ubi < 1 || (lbi && *ubi < *lbi)) {
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// Zero-length string: canonicalize
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*lbi = 1, *ubi = 0;
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lower_ = AsExpr(Constant<SubscriptInteger>{*lbi});
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upper_ = AsExpr(Constant<SubscriptInteger>{*ubi});
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} else if (length && *ubi > *length) {
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context.messages().Say("Upper bound (%jd) on substring is greater "
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"than character length (%jd)"_en_US,
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*ubi, *length);
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*ubi = *length;
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}
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if (lbi && literal) {
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auto newStaticData{StaticDataObject::Create()};
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auto items{0}; // If the lower bound is greater, the length is 0
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if (*ubi >= *lbi) {
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items = *ubi - *lbi + 1;
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}
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auto width{(*literal)->itemBytes()};
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auto bytes{items * width};
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auto startByte{(*lbi - 1) * width};
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const auto *from{&(*literal)->data()[0] + startByte};
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for (auto j{0}; j < bytes; ++j) {
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newStaticData->data().push_back(from[j]);
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}
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parent_ = newStaticData;
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lower_ = AsExpr(Constant<SubscriptInteger>{1});
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ConstantSubscript length = newStaticData->data().size();
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upper_ = AsExpr(Constant<SubscriptInteger>{length});
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switch (width) {
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case 1:
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return {
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AsCategoryExpr(AsExpr(Constant<Type<TypeCategory::Character, 1>>{
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*newStaticData->AsString()}))};
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case 2:
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return {AsCategoryExpr(Constant<Type<TypeCategory::Character, 2>>{
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*newStaticData->AsU16String()})};
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case 4:
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return {AsCategoryExpr(Constant<Type<TypeCategory::Character, 4>>{
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*newStaticData->AsU32String()})};
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default:
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CRASH_NO_CASE;
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}
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}
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}
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return std::nullopt;
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}
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DescriptorInquiry::DescriptorInquiry(
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const NamedEntity &base, Field field, int dim)
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: base_{base}, field_{field}, dimension_{dim} {
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const Symbol &last{base_.GetLastSymbol()};
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CHECK(IsDescriptor(last));
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CHECK((field == Field::Len && dim == 0) ||
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(field != Field::Len && dim >= 0 && dim < last.Rank()));
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}
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DescriptorInquiry::DescriptorInquiry(NamedEntity &&base, Field field, int dim)
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: base_{std::move(base)}, field_{field}, dimension_{dim} {
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const Symbol &last{base_.GetLastSymbol()};
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CHECK(IsDescriptor(last));
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CHECK((field == Field::Len && dim == 0) ||
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(field != Field::Len && dim >= 0 && dim < last.Rank()));
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}
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// LEN()
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static std::optional<Expr<SubscriptInteger>> SymbolLEN(const Symbol &symbol) {
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const Symbol &ultimate{symbol.GetUltimate()};
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if (const auto *assoc{ultimate.detailsIf<semantics::AssocEntityDetails>()}) {
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if (const auto *chExpr{UnwrapExpr<Expr<SomeCharacter>>(assoc->expr())}) {
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return chExpr->LEN();
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}
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} else if (auto dyType{DynamicType::From(ultimate)}) {
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if (const semantics::ParamValue * len{dyType->charLength()}) {
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if (len->isExplicit()) {
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if (auto intExpr{len->GetExplicit()}) {
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if (IsConstantExpr(*intExpr)) {
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return ConvertToType<SubscriptInteger>(*std::move(intExpr));
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}
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}
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}
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if (IsDescriptor(ultimate) && !ultimate.owner().IsDerivedType()) {
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return Expr<SubscriptInteger>{DescriptorInquiry{
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NamedEntity{ultimate}, DescriptorInquiry::Field::Len}};
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}
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}
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}
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return std::nullopt;
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}
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std::optional<Expr<SubscriptInteger>> BaseObject::LEN() const {
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return std::visit(
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common::visitors{
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[](const Symbol &symbol) { return SymbolLEN(symbol); },
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[](const StaticDataObject::Pointer &object)
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-> std::optional<Expr<SubscriptInteger>> {
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return AsExpr(Constant<SubscriptInteger>{object->data().size()});
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},
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},
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u);
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}
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std::optional<Expr<SubscriptInteger>> Component::LEN() const {
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return SymbolLEN(GetLastSymbol());
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}
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std::optional<Expr<SubscriptInteger>> NamedEntity::LEN() const {
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return SymbolLEN(GetLastSymbol());
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}
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std::optional<Expr<SubscriptInteger>> ArrayRef::LEN() const {
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return base_.LEN();
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}
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std::optional<Expr<SubscriptInteger>> CoarrayRef::LEN() const {
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return SymbolLEN(GetLastSymbol());
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}
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std::optional<Expr<SubscriptInteger>> DataRef::LEN() const {
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return std::visit(common::visitors{
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[](SymbolRef symbol) { return SymbolLEN(symbol); },
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[](const auto &x) { return x.LEN(); },
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},
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u);
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}
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std::optional<Expr<SubscriptInteger>> Substring::LEN() const {
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if (auto top{upper()}) {
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return AsExpr(Extremum<SubscriptInteger>{Ordering::Greater,
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AsExpr(Constant<SubscriptInteger>{0}),
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*std::move(top) - lower() + AsExpr(Constant<SubscriptInteger>{1})});
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} else {
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return std::nullopt;
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}
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}
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template <typename T>
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std::optional<Expr<SubscriptInteger>> Designator<T>::LEN() const {
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if constexpr (T::category == TypeCategory::Character) {
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return std::visit(common::visitors{
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[](SymbolRef symbol) { return SymbolLEN(symbol); },
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[](const auto &x) { return x.LEN(); },
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},
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u);
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} else {
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common::die("Designator<non-char>::LEN() called");
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return std::nullopt;
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}
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}
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std::optional<Expr<SubscriptInteger>> ProcedureDesignator::LEN() const {
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using T = std::optional<Expr<SubscriptInteger>>;
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return std::visit(
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common::visitors{
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[](SymbolRef symbol) -> T { return SymbolLEN(symbol); },
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[](const common::CopyableIndirection<Component> &c) -> T {
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return c.value().LEN();
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},
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[](const SpecificIntrinsic &i) -> T {
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if (i.name == "char") {
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return Expr<SubscriptInteger>{1};
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}
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// Some other cases whose results' lengths can be determined
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// from the lengths of their arguments are handled in
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// ProcedureRef::LEN().
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return std::nullopt;
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},
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},
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u);
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}
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// Rank()
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int BaseObject::Rank() const {
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return std::visit(common::visitors{
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[](SymbolRef symbol) { return symbol->Rank(); },
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[](const StaticDataObject::Pointer &) { return 0; },
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},
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u);
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}
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int Component::Rank() const {
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if (int rank{symbol_->Rank()}; rank > 0) {
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return rank;
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}
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return base().Rank();
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}
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int NamedEntity::Rank() const {
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return std::visit(common::visitors{
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[](const SymbolRef s) { return s->Rank(); },
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[](const Component &c) { return c.Rank(); },
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},
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u_);
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}
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int Subscript::Rank() const {
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return std::visit(common::visitors{
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[](const IndirectSubscriptIntegerExpr &x) {
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return x.value().Rank();
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},
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[](const Triplet &) { return 1; },
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},
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u);
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}
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int ArrayRef::Rank() const {
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int rank{0};
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for (const auto &expr : subscript_) {
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rank += expr.Rank();
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}
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if (rank > 0) {
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return rank;
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} else if (const Component * component{base_.UnwrapComponent()}) {
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return component->base().Rank();
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} else {
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return 0;
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}
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}
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int CoarrayRef::Rank() const {
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if (!subscript_.empty()) {
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int rank{0};
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for (const auto &expr : subscript_) {
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rank += expr.Rank();
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}
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return rank;
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} else {
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return base_.back()->Rank();
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}
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}
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int DataRef::Rank() const {
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return std::visit(common::visitors{
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[](SymbolRef symbol) { return symbol->Rank(); },
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[](const auto &x) { return x.Rank(); },
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},
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u);
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}
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int Substring::Rank() const {
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return std::visit(common::visitors{
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[](const DataRef &dataRef) { return dataRef.Rank(); },
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[](const StaticDataObject::Pointer &) { return 0; },
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},
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parent_);
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}
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int ComplexPart::Rank() const { return complex_.Rank(); }
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template <typename T> int Designator<T>::Rank() const {
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return std::visit(common::visitors{
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[](SymbolRef symbol) { return symbol->Rank(); },
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[](const auto &x) { return x.Rank(); },
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},
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u);
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}
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// GetBaseObject(), GetFirstSymbol(), GetLastSymbol(), &c.
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const Symbol &Component::GetFirstSymbol() const {
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return base_.value().GetFirstSymbol();
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}
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const Symbol &NamedEntity::GetFirstSymbol() const {
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return std::visit(common::visitors{
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[](SymbolRef s) -> const Symbol & { return s; },
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[](const Component &c) -> const Symbol & {
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return c.GetFirstSymbol();
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},
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},
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u_);
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}
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const Symbol &NamedEntity::GetLastSymbol() const {
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return std::visit(common::visitors{
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[](SymbolRef s) -> const Symbol & { return s; },
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[](const Component &c) -> const Symbol & {
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return c.GetLastSymbol();
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},
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},
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u_);
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}
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const Component *NamedEntity::UnwrapComponent() const {
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return std::visit(common::visitors{
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[](SymbolRef) -> const Component * { return nullptr; },
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[](const Component &c) { return &c; },
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},
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u_);
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}
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Component *NamedEntity::UnwrapComponent() {
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return std::visit(common::visitors{
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[](SymbolRef &) -> Component * { return nullptr; },
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[](Component &c) { return &c; },
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},
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u_);
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}
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const Symbol &ArrayRef::GetFirstSymbol() const {
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return base_.GetFirstSymbol();
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}
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const Symbol &ArrayRef::GetLastSymbol() const { return base_.GetLastSymbol(); }
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const Symbol &DataRef::GetFirstSymbol() const {
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return *std::visit(common::visitors{
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[](SymbolRef symbol) { return &*symbol; },
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[](const auto &x) { return &x.GetFirstSymbol(); },
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},
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u);
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}
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const Symbol &DataRef::GetLastSymbol() const {
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return *std::visit(common::visitors{
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[](SymbolRef symbol) { return &*symbol; },
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[](const auto &x) { return &x.GetLastSymbol(); },
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},
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u);
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}
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BaseObject Substring::GetBaseObject() const {
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return std::visit(common::visitors{
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[](const DataRef &dataRef) {
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return BaseObject{dataRef.GetFirstSymbol()};
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},
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[](StaticDataObject::Pointer pointer) {
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return BaseObject{std::move(pointer)};
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},
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},
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parent_);
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}
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const Symbol *Substring::GetLastSymbol() const {
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return std::visit(
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common::visitors{
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[](const DataRef &dataRef) { return &dataRef.GetLastSymbol(); },
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[](const auto &) -> const Symbol * { return nullptr; },
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},
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parent_);
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|
}
|
|
|
|
template <typename T> BaseObject Designator<T>::GetBaseObject() const {
|
|
return std::visit(
|
|
common::visitors{
|
|
[](SymbolRef symbol) { return BaseObject{symbol}; },
|
|
[](const Substring &sstring) { return sstring.GetBaseObject(); },
|
|
[](const auto &x) {
|
|
#if !__clang__ && __GNUC__ == 7 && __GNUC_MINOR__ == 2
|
|
if constexpr (std::is_same_v<std::decay_t<decltype(x)>,
|
|
Substring>) {
|
|
return x.GetBaseObject();
|
|
} else
|
|
#endif
|
|
return BaseObject{x.GetFirstSymbol()};
|
|
},
|
|
},
|
|
u);
|
|
}
|
|
|
|
template <typename T> const Symbol *Designator<T>::GetLastSymbol() const {
|
|
return std::visit(
|
|
common::visitors{
|
|
[](SymbolRef symbol) { return &*symbol; },
|
|
[](const Substring &sstring) { return sstring.GetLastSymbol(); },
|
|
[](const auto &x) {
|
|
#if !__clang__ && __GNUC__ == 7 && __GNUC_MINOR__ == 2
|
|
if constexpr (std::is_same_v<std::decay_t<decltype(x)>,
|
|
Substring>) {
|
|
return x.GetLastSymbol();
|
|
} else
|
|
#endif
|
|
return &x.GetLastSymbol();
|
|
},
|
|
},
|
|
u);
|
|
}
|
|
|
|
template <typename T>
|
|
std::optional<DynamicType> Designator<T>::GetType() const {
|
|
if constexpr (IsLengthlessIntrinsicType<Result>) {
|
|
return Result::GetType();
|
|
} else if (const Symbol * symbol{GetLastSymbol()}) {
|
|
return DynamicType::From(*symbol);
|
|
} else if constexpr (Result::category == TypeCategory::Character) {
|
|
if (const Substring * substring{std::get_if<Substring>(&u)}) {
|
|
const auto *parent{substring->GetParentIf<StaticDataObject::Pointer>()};
|
|
CHECK(parent);
|
|
return DynamicType{TypeCategory::Character, (*parent)->itemBytes()};
|
|
}
|
|
}
|
|
return std::nullopt;
|
|
}
|
|
|
|
static NamedEntity AsNamedEntity(const SymbolVector &x) {
|
|
CHECK(!x.empty());
|
|
NamedEntity result{x.front()};
|
|
int j{0};
|
|
for (const Symbol &symbol : x) {
|
|
if (j++ != 0) {
|
|
DataRef base{result.IsSymbol() ? DataRef{result.GetLastSymbol()}
|
|
: DataRef{result.GetComponent()}};
|
|
result = NamedEntity{Component{std::move(base), symbol}};
|
|
}
|
|
}
|
|
return result;
|
|
}
|
|
|
|
NamedEntity CoarrayRef::GetBase() const { return AsNamedEntity(base_); }
|
|
|
|
// Equality testing
|
|
|
|
// For the purposes of comparing type parameter expressions while
|
|
// testing the compatibility of procedure characteristics, two
|
|
// object dummy arguments with the same name are considered equal.
|
|
static bool AreSameSymbol(const Symbol &x, const Symbol &y) {
|
|
if (&x == &y) {
|
|
return true;
|
|
}
|
|
if (x.name() == y.name()) {
|
|
if (const auto *xObject{x.detailsIf<semantics::ObjectEntityDetails>()}) {
|
|
if (const auto *yObject{y.detailsIf<semantics::ObjectEntityDetails>()}) {
|
|
return xObject->isDummy() && yObject->isDummy();
|
|
}
|
|
}
|
|
}
|
|
return false;
|
|
}
|
|
|
|
// Implements operator==() for a union type, using special case handling
|
|
// for Symbol references.
|
|
template <typename A> static bool TestVariableEquality(const A &x, const A &y) {
|
|
const SymbolRef *xSymbol{std::get_if<SymbolRef>(&x.u)};
|
|
if (const SymbolRef * ySymbol{std::get_if<SymbolRef>(&y.u)}) {
|
|
return xSymbol && AreSameSymbol(*xSymbol, *ySymbol);
|
|
} else {
|
|
return x.u == y.u;
|
|
}
|
|
}
|
|
|
|
bool BaseObject::operator==(const BaseObject &that) const {
|
|
return TestVariableEquality(*this, that);
|
|
}
|
|
bool Component::operator==(const Component &that) const {
|
|
return base_ == that.base_ && &*symbol_ == &*that.symbol_;
|
|
}
|
|
bool NamedEntity::operator==(const NamedEntity &that) const {
|
|
if (IsSymbol()) {
|
|
return that.IsSymbol() &&
|
|
AreSameSymbol(GetFirstSymbol(), that.GetFirstSymbol());
|
|
} else {
|
|
return !that.IsSymbol() && GetComponent() == that.GetComponent();
|
|
}
|
|
}
|
|
bool TypeParamInquiry::operator==(const TypeParamInquiry &that) const {
|
|
return &*parameter_ == &*that.parameter_ && base_ == that.base_;
|
|
}
|
|
bool Triplet::operator==(const Triplet &that) const {
|
|
return lower_ == that.lower_ && upper_ == that.upper_ &&
|
|
stride_ == that.stride_;
|
|
}
|
|
bool Subscript::operator==(const Subscript &that) const { return u == that.u; }
|
|
bool ArrayRef::operator==(const ArrayRef &that) const {
|
|
return base_ == that.base_ && subscript_ == that.subscript_;
|
|
}
|
|
bool CoarrayRef::operator==(const CoarrayRef &that) const {
|
|
return base_ == that.base_ && subscript_ == that.subscript_ &&
|
|
cosubscript_ == that.cosubscript_ && stat_ == that.stat_ &&
|
|
team_ == that.team_ && teamIsTeamNumber_ == that.teamIsTeamNumber_;
|
|
}
|
|
bool DataRef::operator==(const DataRef &that) const {
|
|
return TestVariableEquality(*this, that);
|
|
}
|
|
bool Substring::operator==(const Substring &that) const {
|
|
return parent_ == that.parent_ && lower_ == that.lower_ &&
|
|
upper_ == that.upper_;
|
|
}
|
|
bool ComplexPart::operator==(const ComplexPart &that) const {
|
|
return part_ == that.part_ && complex_ == that.complex_;
|
|
}
|
|
bool ProcedureRef::operator==(const ProcedureRef &that) const {
|
|
return proc_ == that.proc_ && arguments_ == that.arguments_;
|
|
}
|
|
template <typename T>
|
|
bool Designator<T>::operator==(const Designator<T> &that) const {
|
|
return TestVariableEquality(*this, that);
|
|
}
|
|
bool DescriptorInquiry::operator==(const DescriptorInquiry &that) const {
|
|
return field_ == that.field_ && base_ == that.base_ &&
|
|
dimension_ == that.dimension_;
|
|
}
|
|
|
|
INSTANTIATE_VARIABLE_TEMPLATES
|
|
} // namespace Fortran::evaluate
|
|
|
|
template class Fortran::common::Indirection<Fortran::evaluate::Component, true>;
|