Chris@64: // Copyright (c) 2013-2014 Sandstorm Development Group, Inc. and contributors Chris@64: // Licensed under the MIT License: Chris@64: // Chris@64: // Permission is hereby granted, free of charge, to any person obtaining a copy Chris@64: // of this software and associated documentation files (the "Software"), to deal Chris@64: // in the Software without restriction, including without limitation the rights Chris@64: // to use, copy, modify, merge, publish, distribute, sublicense, and/or sell Chris@64: // copies of the Software, and to permit persons to whom the Software is Chris@64: // furnished to do so, subject to the following conditions: Chris@64: // Chris@64: // The above copyright notice and this permission notice shall be included in Chris@64: // all copies or substantial portions of the Software. Chris@64: // Chris@64: // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR Chris@64: // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, Chris@64: // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE Chris@64: // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER Chris@64: // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, Chris@64: // OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN Chris@64: // THE SOFTWARE. Chris@64: Chris@64: // This file is included from all generated headers. Chris@64: Chris@64: #ifndef CAPNP_GENERATED_HEADER_SUPPORT_H_ Chris@64: #define CAPNP_GENERATED_HEADER_SUPPORT_H_ Chris@64: Chris@64: #if defined(__GNUC__) && !defined(CAPNP_HEADER_WARNINGS) Chris@64: #pragma GCC system_header Chris@64: #endif Chris@64: Chris@64: #include "raw-schema.h" Chris@64: #include "layout.h" Chris@64: #include "list.h" Chris@64: #include "orphan.h" Chris@64: #include "pointer-helpers.h" Chris@64: #include "any.h" Chris@64: #include Chris@64: #include Chris@64: Chris@64: namespace capnp { Chris@64: Chris@64: class MessageBuilder; // So that it can be declared a friend. Chris@64: Chris@64: template Chris@64: struct ToDynamic_; // Defined in dynamic.h, needs to be declared as everyone's friend. Chris@64: Chris@64: struct DynamicStruct; // So that it can be declared a friend. Chris@64: Chris@64: struct Capability; // To declare brandBindingFor() Chris@64: Chris@64: namespace _ { // private Chris@64: Chris@64: #if !CAPNP_LITE Chris@64: Chris@64: template Chris@64: inline const RawSchema& rawSchema() { Chris@64: return *CapnpPrivate::schema; Chris@64: } Chris@64: template ::typeId> Chris@64: inline const RawSchema& rawSchema() { Chris@64: return *schemas::EnumInfo::schema; Chris@64: } Chris@64: Chris@64: template Chris@64: inline const RawBrandedSchema& rawBrandedSchema() { Chris@64: return *CapnpPrivate::brand(); Chris@64: } Chris@64: template ::typeId> Chris@64: inline const RawBrandedSchema& rawBrandedSchema() { Chris@64: return schemas::EnumInfo::schema->defaultBrand; Chris@64: } Chris@64: Chris@64: template Chris@64: struct ChooseBrand; Chris@64: // If all of `Params` are `AnyPointer`, return the type's default brand. Otherwise, return a Chris@64: // specific brand instance. TypeTag is the _capnpPrivate struct for the type in question. Chris@64: Chris@64: template Chris@64: struct ChooseBrand { Chris@64: // All params were AnyPointer. No specific brand needed. Chris@64: static constexpr _::RawBrandedSchema const* brand() { return &TypeTag::schema->defaultBrand; } Chris@64: }; Chris@64: Chris@64: template Chris@64: struct ChooseBrand: public ChooseBrand {}; Chris@64: // The first parameter is AnyPointer, so recurse to check the rest. Chris@64: Chris@64: template Chris@64: struct ChooseBrand { Chris@64: // At least one parameter is not AnyPointer, so use the specificBrand constant. Chris@64: static constexpr _::RawBrandedSchema const* brand() { return &TypeTag::specificBrand; } Chris@64: }; Chris@64: Chris@64: template ()> Chris@64: struct BrandBindingFor_; Chris@64: Chris@64: #define HANDLE_TYPE(Type, which) \ Chris@64: template <> \ Chris@64: struct BrandBindingFor_ { \ Chris@64: static constexpr RawBrandedSchema::Binding get(uint16_t listDepth) { \ Chris@64: return { which, listDepth, nullptr }; \ Chris@64: } \ Chris@64: } Chris@64: HANDLE_TYPE(Void, 0); Chris@64: HANDLE_TYPE(bool, 1); Chris@64: HANDLE_TYPE(int8_t, 2); Chris@64: HANDLE_TYPE(int16_t, 3); Chris@64: HANDLE_TYPE(int32_t, 4); Chris@64: HANDLE_TYPE(int64_t, 5); Chris@64: HANDLE_TYPE(uint8_t, 6); Chris@64: HANDLE_TYPE(uint16_t, 7); Chris@64: HANDLE_TYPE(uint32_t, 8); Chris@64: HANDLE_TYPE(uint64_t, 9); Chris@64: HANDLE_TYPE(float, 10); Chris@64: HANDLE_TYPE(double, 11); Chris@64: #undef HANDLE_TYPE Chris@64: Chris@64: template <> Chris@64: struct BrandBindingFor_ { Chris@64: static constexpr RawBrandedSchema::Binding get(uint16_t listDepth) { Chris@64: return { 12, listDepth, nullptr }; Chris@64: } Chris@64: }; Chris@64: Chris@64: template <> Chris@64: struct BrandBindingFor_ { Chris@64: static constexpr RawBrandedSchema::Binding get(uint16_t listDepth) { Chris@64: return { 13, listDepth, nullptr }; Chris@64: } Chris@64: }; Chris@64: Chris@64: template Chris@64: struct BrandBindingFor_, Kind::LIST> { Chris@64: static constexpr RawBrandedSchema::Binding get(uint16_t listDepth) { Chris@64: return BrandBindingFor_::get(listDepth + 1); Chris@64: } Chris@64: }; Chris@64: Chris@64: template Chris@64: struct BrandBindingFor_ { Chris@64: static constexpr RawBrandedSchema::Binding get(uint16_t listDepth) { Chris@64: return { 15, listDepth, nullptr }; Chris@64: } Chris@64: }; Chris@64: Chris@64: template Chris@64: struct BrandBindingFor_ { Chris@64: static constexpr RawBrandedSchema::Binding get(uint16_t listDepth) { Chris@64: return { 16, listDepth, T::_capnpPrivate::brand() }; Chris@64: } Chris@64: }; Chris@64: Chris@64: template Chris@64: struct BrandBindingFor_ { Chris@64: static constexpr RawBrandedSchema::Binding get(uint16_t listDepth) { Chris@64: return { 17, listDepth, T::_capnpPrivate::brand() }; Chris@64: } Chris@64: }; Chris@64: Chris@64: template <> Chris@64: struct BrandBindingFor_ { Chris@64: static constexpr RawBrandedSchema::Binding get(uint16_t listDepth) { Chris@64: return { 18, listDepth, 0, 0 }; Chris@64: } Chris@64: }; Chris@64: Chris@64: template <> Chris@64: struct BrandBindingFor_ { Chris@64: static constexpr RawBrandedSchema::Binding get(uint16_t listDepth) { Chris@64: return { 18, listDepth, 0, 1 }; Chris@64: } Chris@64: }; Chris@64: Chris@64: template <> Chris@64: struct BrandBindingFor_ { Chris@64: static constexpr RawBrandedSchema::Binding get(uint16_t listDepth) { Chris@64: return { 18, listDepth, 0, 2 }; Chris@64: } Chris@64: }; Chris@64: Chris@64: template <> Chris@64: struct BrandBindingFor_ { Chris@64: static constexpr RawBrandedSchema::Binding get(uint16_t listDepth) { Chris@64: return { 18, listDepth, 0, 3 }; Chris@64: } Chris@64: }; Chris@64: Chris@64: template Chris@64: constexpr RawBrandedSchema::Binding brandBindingFor() { Chris@64: return BrandBindingFor_::get(0); Chris@64: } Chris@64: Chris@64: kj::StringTree structString(StructReader reader, const RawBrandedSchema& schema); Chris@64: kj::String enumString(uint16_t value, const RawBrandedSchema& schema); Chris@64: // Declared here so that we can declare inline stringify methods on generated types. Chris@64: // Defined in stringify.c++, which depends on dynamic.c++, which is allowed not to be linked in. Chris@64: Chris@64: template Chris@64: inline kj::StringTree structString(StructReader reader) { Chris@64: return structString(reader, rawBrandedSchema()); Chris@64: } Chris@64: template Chris@64: inline kj::String enumString(T value) { Chris@64: return enumString(static_cast(value), rawBrandedSchema()); Chris@64: } Chris@64: Chris@64: #endif // !CAPNP_LITE Chris@64: Chris@64: // TODO(cleanup): Unify ConstStruct and ConstList. Chris@64: template Chris@64: class ConstStruct { Chris@64: public: Chris@64: ConstStruct() = delete; Chris@64: KJ_DISALLOW_COPY(ConstStruct); Chris@64: inline explicit constexpr ConstStruct(const word* ptr): ptr(ptr) {} Chris@64: Chris@64: inline typename T::Reader get() const { Chris@64: return AnyPointer::Reader(PointerReader::getRootUnchecked(ptr)).getAs(); Chris@64: } Chris@64: Chris@64: inline operator typename T::Reader() const { return get(); } Chris@64: inline typename T::Reader operator*() const { return get(); } Chris@64: inline TemporaryPointer operator->() const { return get(); } Chris@64: Chris@64: private: Chris@64: const word* ptr; Chris@64: }; Chris@64: Chris@64: template Chris@64: class ConstList { Chris@64: public: Chris@64: ConstList() = delete; Chris@64: KJ_DISALLOW_COPY(ConstList); Chris@64: inline explicit constexpr ConstList(const word* ptr): ptr(ptr) {} Chris@64: Chris@64: inline typename List::Reader get() const { Chris@64: return AnyPointer::Reader(PointerReader::getRootUnchecked(ptr)).getAs>(); Chris@64: } Chris@64: Chris@64: inline operator typename List::Reader() const { return get(); } Chris@64: inline typename List::Reader operator*() const { return get(); } Chris@64: inline TemporaryPointer::Reader> operator->() const { return get(); } Chris@64: Chris@64: private: Chris@64: const word* ptr; Chris@64: }; Chris@64: Chris@64: template Chris@64: class ConstText { Chris@64: public: Chris@64: ConstText() = delete; Chris@64: KJ_DISALLOW_COPY(ConstText); Chris@64: inline explicit constexpr ConstText(const word* ptr): ptr(ptr) {} Chris@64: Chris@64: inline Text::Reader get() const { Chris@64: return Text::Reader(reinterpret_cast(ptr), size); Chris@64: } Chris@64: Chris@64: inline operator Text::Reader() const { return get(); } Chris@64: inline Text::Reader operator*() const { return get(); } Chris@64: inline TemporaryPointer operator->() const { return get(); } Chris@64: Chris@64: inline kj::StringPtr toString() const { Chris@64: return get(); Chris@64: } Chris@64: Chris@64: private: Chris@64: const word* ptr; Chris@64: }; Chris@64: Chris@64: template Chris@64: inline kj::StringPtr KJ_STRINGIFY(const ConstText& s) { Chris@64: return s.get(); Chris@64: } Chris@64: Chris@64: template Chris@64: class ConstData { Chris@64: public: Chris@64: ConstData() = delete; Chris@64: KJ_DISALLOW_COPY(ConstData); Chris@64: inline explicit constexpr ConstData(const word* ptr): ptr(ptr) {} Chris@64: Chris@64: inline Data::Reader get() const { Chris@64: return Data::Reader(reinterpret_cast(ptr), size); Chris@64: } Chris@64: Chris@64: inline operator Data::Reader() const { return get(); } Chris@64: inline Data::Reader operator*() const { return get(); } Chris@64: inline TemporaryPointer operator->() const { return get(); } Chris@64: Chris@64: private: Chris@64: const word* ptr; Chris@64: }; Chris@64: Chris@64: template Chris@64: inline auto KJ_STRINGIFY(const ConstData& s) -> decltype(kj::toCharSequence(s.get())) { Chris@64: return kj::toCharSequence(s.get()); Chris@64: } Chris@64: Chris@64: } // namespace _ (private) Chris@64: Chris@64: template Chris@64: inline constexpr uint64_t typeId() { return CapnpPrivate::typeId; } Chris@64: template ::typeId> Chris@64: inline constexpr uint64_t typeId() { return id; } Chris@64: // typeId() returns the type ID as defined in the schema. Works with structs, enums, and Chris@64: // interfaces. Chris@64: Chris@64: template Chris@64: inline constexpr uint sizeInWords() { Chris@64: // Return the size, in words, of a Struct type, if allocated free-standing (not in a list). Chris@64: // May be useful for pre-computing space needed in order to precisely allocate messages. Chris@64: Chris@64: return unbound((upgradeBound(_::structSize().data) + Chris@64: _::structSize().pointers * WORDS_PER_POINTER) / WORDS); Chris@64: } Chris@64: Chris@64: } // namespace capnp Chris@64: Chris@64: #if _MSC_VER Chris@64: // MSVC doesn't understand floating-point constexpr yet. Chris@64: // Chris@64: // TODO(msvc): Remove this hack when MSVC is fixed. Chris@64: #define CAPNP_NON_INT_CONSTEXPR_DECL_INIT(value) Chris@64: #define CAPNP_NON_INT_CONSTEXPR_DEF_INIT(value) = value Chris@64: #else Chris@64: #define CAPNP_NON_INT_CONSTEXPR_DECL_INIT(value) = value Chris@64: #define CAPNP_NON_INT_CONSTEXPR_DEF_INIT(value) Chris@64: #endif Chris@64: Chris@64: #if _MSC_VER Chris@64: // TODO(msvc): A little hack to allow MSVC to use C++14 return type deduction in cases where the Chris@64: // explicit type exposes bugs in the compiler. Chris@64: #define CAPNP_AUTO_IF_MSVC(...) auto Chris@64: #else Chris@64: #define CAPNP_AUTO_IF_MSVC(...) __VA_ARGS__ Chris@64: #endif Chris@64: Chris@64: #if CAPNP_LITE Chris@64: Chris@64: #define CAPNP_DECLARE_SCHEMA(id) \ Chris@64: extern ::capnp::word const* const bp_##id Chris@64: Chris@64: #define CAPNP_DECLARE_ENUM(type, id) \ Chris@64: inline ::kj::String KJ_STRINGIFY(type##_##id value) { \ Chris@64: return ::kj::str(static_cast(value)); \ Chris@64: } \ Chris@64: template <> struct EnumInfo { \ Chris@64: struct IsEnum; \ Chris@64: static constexpr uint64_t typeId = 0x##id; \ Chris@64: static inline ::capnp::word const* encodedSchema() { return bp_##id; } \ Chris@64: } Chris@64: Chris@64: #if _MSC_VER Chris@64: // TODO(msvc): MSVC dosen't expect constexprs to have definitions. Chris@64: #define CAPNP_DEFINE_ENUM(type, id) Chris@64: #else Chris@64: #define CAPNP_DEFINE_ENUM(type, id) \ Chris@64: constexpr uint64_t EnumInfo::typeId Chris@64: #endif Chris@64: Chris@64: #define CAPNP_DECLARE_STRUCT_HEADER(id, dataWordSize_, pointerCount_) \ Chris@64: struct IsStruct; \ Chris@64: static constexpr uint64_t typeId = 0x##id; \ Chris@64: static constexpr uint16_t dataWordSize = dataWordSize_; \ Chris@64: static constexpr uint16_t pointerCount = pointerCount_; \ Chris@64: static inline ::capnp::word const* encodedSchema() { return ::capnp::schemas::bp_##id; } Chris@64: Chris@64: #else // CAPNP_LITE Chris@64: Chris@64: #define CAPNP_DECLARE_SCHEMA(id) \ Chris@64: extern ::capnp::word const* const bp_##id; \ Chris@64: extern const ::capnp::_::RawSchema s_##id Chris@64: Chris@64: #define CAPNP_DECLARE_ENUM(type, id) \ Chris@64: inline ::kj::String KJ_STRINGIFY(type##_##id value) { \ Chris@64: return ::capnp::_::enumString(value); \ Chris@64: } \ Chris@64: template <> struct EnumInfo { \ Chris@64: struct IsEnum; \ Chris@64: static constexpr uint64_t typeId = 0x##id; \ Chris@64: static inline ::capnp::word const* encodedSchema() { return bp_##id; } \ Chris@64: static constexpr ::capnp::_::RawSchema const* schema = &s_##id; \ Chris@64: } Chris@64: #define CAPNP_DEFINE_ENUM(type, id) \ Chris@64: constexpr uint64_t EnumInfo::typeId; \ Chris@64: constexpr ::capnp::_::RawSchema const* EnumInfo::schema Chris@64: Chris@64: #define CAPNP_DECLARE_STRUCT_HEADER(id, dataWordSize_, pointerCount_) \ Chris@64: struct IsStruct; \ Chris@64: static constexpr uint64_t typeId = 0x##id; \ Chris@64: static constexpr ::capnp::Kind kind = ::capnp::Kind::STRUCT; \ Chris@64: static constexpr uint16_t dataWordSize = dataWordSize_; \ Chris@64: static constexpr uint16_t pointerCount = pointerCount_; \ Chris@64: static inline ::capnp::word const* encodedSchema() { return ::capnp::schemas::bp_##id; } \ Chris@64: static constexpr ::capnp::_::RawSchema const* schema = &::capnp::schemas::s_##id; Chris@64: Chris@64: #define CAPNP_DECLARE_INTERFACE_HEADER(id) \ Chris@64: struct IsInterface; \ Chris@64: static constexpr uint64_t typeId = 0x##id; \ Chris@64: static constexpr ::capnp::Kind kind = ::capnp::Kind::INTERFACE; \ Chris@64: static inline ::capnp::word const* encodedSchema() { return ::capnp::schemas::bp_##id; } \ Chris@64: static constexpr ::capnp::_::RawSchema const* schema = &::capnp::schemas::s_##id; Chris@64: Chris@64: #endif // CAPNP_LITE, else Chris@64: Chris@64: #endif // CAPNP_GENERATED_HEADER_SUPPORT_H_