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[ADT] Introduce ‘OptionSet’ in llvm/ADT headers, which is a utility class that makes it convenient to work with enumerators representing bit options.
git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@260652 91177308-0d34-0410-b5e6-96231b3b80d8
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include/llvm/ADT/OptionSet.h
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include/llvm/ADT/OptionSet.h
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//===--- OptionSet.h - Sets of boolean options ------------------*- C++ -*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This file defines the OptionSet class template.
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_ADT_OPTIONSET_H
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#define LLVM_ADT_OPTIONSET_H
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#include "llvm/ADT/None.h"
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#include <type_traits>
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#include <cstdint>
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namespace llvm {
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/// The class template \c OptionSet captures a set of options stored as the
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/// bits in an unsigned integral value.
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///
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/// Each option corresponds to a particular flag value in the provided
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/// enumeration type (\c Flags). The option set provides ways to add options,
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/// remove options, intersect sets, etc., providing a thin type-safe layer
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/// over the underlying unsigned value.
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///
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/// \tparam Flags An enumeration type that provides the individual flags
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/// for options. Each enumerator should have a power-of-two value, indicating
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/// which bit it is associated with.
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///
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/// \tparam StorageType The unsigned integral type to use to store the flags
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/// enabled within this option set. This defaults to the unsigned form of the
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/// underlying type of the enumeration.
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template<typename Flags,
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typename StorageType = typename std::make_unsigned<
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typename std::underlying_type<Flags>::type
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>::type>
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class OptionSet {
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StorageType Storage;
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public:
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/// Create an empty option set.
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OptionSet() : Storage() { }
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/// Create an empty option set.
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OptionSet(llvm::NoneType) : Storage() { }
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/// Create an option set with only the given option set.
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OptionSet(Flags flag) : Storage(static_cast<StorageType>(flag)) { }
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/// Create an option set from raw storage.
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explicit OptionSet(StorageType storage) : Storage(storage) { }
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/// Check whether an option set is non-empty.
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explicit operator bool() const { return Storage != 0; }
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/// Explicitly convert an option set to its underlying storage.
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explicit operator StorageType() const { return Storage; }
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/// Explicitly convert an option set to intptr_t, for use in
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/// llvm::PointerIntPair.
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///
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/// This member is not present if the underlying type is bigger than
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/// a pointer.
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template <typename T = std::intptr_t>
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explicit operator typename std::enable_if<sizeof(StorageType) <= sizeof(T),
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std::intptr_t>::type () const {
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return static_cast<intptr_t>(Storage);
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}
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/// Retrieve the "raw" representation of this option set.
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StorageType toRaw() const { return Storage; }
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/// Determine whether this option set contains all of the options in the
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/// given set.
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bool contains(OptionSet set) const {
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return !static_cast<bool>(set - *this);
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}
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/// Produce the union of two option sets.
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friend OptionSet operator|(OptionSet lhs, OptionSet rhs) {
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return OptionSet(lhs.Storage | rhs.Storage);
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}
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/// Produce the union of two option sets.
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friend OptionSet &operator|=(OptionSet &lhs, OptionSet rhs) {
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lhs.Storage |= rhs.Storage;
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return lhs;
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}
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/// Produce the intersection of two option sets.
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friend OptionSet operator&(OptionSet lhs, OptionSet rhs) {
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return OptionSet(lhs.Storage & rhs.Storage);
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}
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/// Produce the intersection of two option sets.
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friend OptionSet &operator&=(OptionSet &lhs, OptionSet rhs) {
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lhs.Storage &= rhs.Storage;
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return lhs;
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}
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/// Produce the difference of two option sets.
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friend OptionSet operator-(OptionSet lhs, OptionSet rhs) {
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return OptionSet(lhs.Storage & ~rhs.Storage);
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}
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/// Produce the intersection of two option sets.
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friend OptionSet &operator-=(OptionSet &lhs, OptionSet rhs) {
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lhs.Storage &= ~rhs.Storage;
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return lhs;
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}
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private:
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template <typename T>
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static auto _checkResultTypeOperatorOr(T t) -> decltype(t | t) { return T(); }
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static void _checkResultTypeOperatorOr(...) {}
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static_assert(!std::is_same<decltype(_checkResultTypeOperatorOr(Flags())),
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Flags>::value,
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"operator| should produce an OptionSet");
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};
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}
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#endif
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@ -24,6 +24,7 @@ set(ADTSources
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MakeUniqueTest.cpp
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MapVectorTest.cpp
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OptionalTest.cpp
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OptionSetTest.cpp
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PackedVectorTest.cpp
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PointerEmbeddedIntTest.cpp
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PointerIntPairTest.cpp
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108
unittests/ADT/OptionSetTest.cpp
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unittests/ADT/OptionSetTest.cpp
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//===- llvm/unittests/ADT/OptionSetTest.cpp -------------------------------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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#include "llvm/ADT/OptionSet.h"
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#include "gtest/gtest.h"
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using namespace llvm;
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TEST(OptionSet, contains) {
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enum class Flags {
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A = 1 << 0,
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B = 1 << 1,
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C = 1 << 2
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};
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OptionSet<Flags> emptySet;
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OptionSet<Flags> aSet = Flags::A;
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OptionSet<Flags> abSet = aSet | Flags::B;
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OptionSet<Flags> abcSet = abSet | Flags::C;
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OptionSet<Flags> bcSet = abcSet - Flags::A;
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OptionSet<Flags> cSet = bcSet - Flags::B;
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EXPECT_TRUE(emptySet.contains(emptySet));
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EXPECT_FALSE(emptySet.contains(aSet));
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EXPECT_FALSE(emptySet.contains(abSet));
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EXPECT_FALSE(emptySet.contains(abcSet));
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EXPECT_FALSE(emptySet.contains(bcSet));
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EXPECT_FALSE(emptySet.contains(cSet));
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EXPECT_TRUE(aSet.contains(emptySet));
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EXPECT_TRUE(aSet.contains(aSet));
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EXPECT_FALSE(aSet.contains(abSet));
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EXPECT_FALSE(aSet.contains(abcSet));
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EXPECT_FALSE(aSet.contains(bcSet));
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EXPECT_FALSE(aSet.contains(cSet));
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EXPECT_TRUE(abSet.contains(emptySet));
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EXPECT_TRUE(abSet.contains(aSet));
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EXPECT_TRUE(abSet.contains(abSet));
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EXPECT_FALSE(abSet.contains(abcSet));
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EXPECT_FALSE(abSet.contains(bcSet));
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EXPECT_FALSE(abSet.contains(cSet));
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EXPECT_TRUE(abcSet.contains(emptySet));
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EXPECT_TRUE(abcSet.contains(aSet));
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EXPECT_TRUE(abcSet.contains(abSet));
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EXPECT_TRUE(abcSet.contains(abcSet));
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EXPECT_TRUE(abcSet.contains(bcSet));
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EXPECT_TRUE(abcSet.contains(cSet));
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}
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TEST(OptionSet, intptr_t) {
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enum class Small : int8_t {
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A = 1 << 0
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};
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OptionSet<Small> small = Small::A;
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EXPECT_EQ(static_cast<intptr_t>(Small::A), static_cast<intptr_t>(small));
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enum class UPtr : uintptr_t {
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A = std::numeric_limits<uintptr_t>::max()
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};
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OptionSet<UPtr> uptr = UPtr::A;
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EXPECT_EQ(static_cast<intptr_t>(UPtr::A), static_cast<intptr_t>(uptr));
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enum class Ptr : intptr_t {
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A = std::numeric_limits<intptr_t>::min()
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};
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OptionSet<Ptr> ptr = Ptr::A;
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EXPECT_EQ(static_cast<intptr_t>(Ptr::A), static_cast<intptr_t>(ptr));
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}
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TEST(OptionSet, intptr_t_isConstructible) {
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// First check that std::is_constructible counts explicit conversion
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// operators.
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class AlwaysConvertible {
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public:
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explicit operator intptr_t () const { return 0; }
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};
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if (!std::is_constructible<intptr_t, AlwaysConvertible>::value) {
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// std::is_constructible doesn't test what we want it to. Just exit early.
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return;
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}
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enum class LongLong : unsigned long long {
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A = 1
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};
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bool isConvertible =
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std::is_constructible<intptr_t, OptionSet<LongLong>>::value;
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if (sizeof(intptr_t) < sizeof(long long)) {
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EXPECT_FALSE(isConvertible);
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} else {
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EXPECT_TRUE(isConvertible);
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}
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}
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