Make any_internal::FastTypeId() and IdForType() constexpr
This means removing all side effects from FastTypeId(). So rather than instantiate dummy_var in the first call to FastTypeId(), move this responsibility to the linker, and only read its address during execution - guaranteed to never change. This allows for more optimization opportunities, with more explicit uses of constexpr
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1 changed files with 29 additions and 21 deletions
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@ -94,23 +94,20 @@ namespace absl {
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namespace any_internal {
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// FastTypeId<Type>() evaluates at compile/link-time to a unique integer for the
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// passed in type. Their values are neither contiguous nor small, making them
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// unfit for using as an index into a vector, but a good match for keys into
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// maps or straight up comparisons.
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// Note that on 64-bit (unix) systems size_t is 64-bit while int is 32-bit and
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// the compiler will happily and quietly assign such a 64-bit value to a
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// 32-bit integer. While a client should never do that it SHOULD still be safe,
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// assuming the BSS segment doesn't span more than 4GiB.
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template<typename Type>
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inline size_t FastTypeId() {
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static_assert(sizeof(char*) <= sizeof(size_t),
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"ptr size too large for size_t");
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template <typename Type>
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struct TypeTag {
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constexpr static char dummy_var = 0;
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};
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// This static variable isn't actually used, only its address, so there are
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// no concurrency issues.
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static char dummy_var;
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return reinterpret_cast<size_t>(&dummy_var);
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template <typename Type>
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constexpr char TypeTag<Type>::dummy_var;
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// FastTypeId<Type>() evaluates at compile/link-time to a unique pointer for the
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// passed in type. These are meant to be good match for keys into maps or straight
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// up comparisons.
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template<typename Type>
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constexpr inline const void* FastTypeId() {
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return &TypeTag<Type>::dummy_var;
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}
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} // namespace any_internal
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@ -382,10 +379,20 @@ class any {
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public:
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virtual ~ObjInterface() = default;
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virtual std::unique_ptr<ObjInterface> Clone() const = 0;
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virtual size_t type_id() const noexcept = 0;
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virtual const void* ObjTypeId() const noexcept = 0;
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#if ABSL_ANY_DETAIL_HAS_RTTI
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virtual const std::type_info& Type() const noexcept = 0;
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#endif // ABSL_ANY_DETAIL_HAS_RTTI
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// Note that on 64-bit (unix) systems size_t is 64-bit while int is 32-bit and
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// the compiler will happily and quietly assign such a 64-bit value to a
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// 32-bit integer. While a client should never do that it SHOULD still be safe,
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// assuming the BSS segment doesn't span more than 4GiB.
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size_t type_id() const noexcept {
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static_assert(sizeof(void*) <= sizeof(size_t),
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"ptr size too large for size_t");
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return reinterpret_cast<size_t>(ObjTypeId());
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}
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};
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// Hold a value of some queryable type, with an ability to Clone it.
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@ -400,7 +407,7 @@ class any {
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return std::unique_ptr<ObjInterface>(new Obj(in_place, value));
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}
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size_t type_id() const noexcept final { return IdForType<T>(); }
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const void* ObjTypeId() const noexcept final { return IdForType<T>(); }
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#if ABSL_ANY_DETAIL_HAS_RTTI
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const std::type_info& Type() const noexcept final { return typeid(T); }
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@ -415,7 +422,7 @@ class any {
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}
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template <typename T>
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static size_t IdForType() {
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constexpr static const void* IdForType() {
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// Note: This type dance is to make the behavior consistent with typeid.
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using NormalizedType =
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typename std::remove_cv<typename std::remove_reference<T>::type>::type;
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@ -423,8 +430,9 @@ class any {
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return any_internal::FastTypeId<NormalizedType>();
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}
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size_t GetObjTypeId() const {
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return obj_ == nullptr ? any_internal::FastTypeId<void>() : obj_->type_id();
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const void* GetObjTypeId() const {
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return obj_ == nullptr ? any_internal::FastTypeId<void>()
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: obj_->ObjTypeId();
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}
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// `absl::any` nonmember functions //
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