#pragma once #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #if defined(_WIN32) #include #else #include #endif namespace rust { inline namespace cxxbridge1 { struct unsafe_bitcopy_t; namespace { template class impl; } #ifndef CXXBRIDGE1_RUST_STRING #define CXXBRIDGE1_RUST_STRING // https://cxx.rs/binding/string.html class String final { public: String() noexcept; String(const String &) noexcept; String(String &&) noexcept; ~String() noexcept; String(const std::string &); String(const char *); String(const char *, std::size_t); String &operator=(const String &) &noexcept; String &operator=(String &&) &noexcept; explicit operator std::string() const; // Note: no null terminator. const char *data() const noexcept; std::size_t size() const noexcept; std::size_t length() const noexcept; const char *c_str() noexcept; using iterator = char *; iterator begin() noexcept; iterator end() noexcept; using const_iterator = const char *; const_iterator begin() const noexcept; const_iterator end() const noexcept; const_iterator cbegin() const noexcept; const_iterator cend() const noexcept; bool operator==(const String &) const noexcept; bool operator!=(const String &) const noexcept; bool operator<(const String &) const noexcept; bool operator<=(const String &) const noexcept; bool operator>(const String &) const noexcept; bool operator>=(const String &) const noexcept; void swap(String &) noexcept; // Internal API only intended for the cxxbridge code generator. String(unsafe_bitcopy_t, const String &) noexcept; private: friend void swap(String &lhs, String &rhs) noexcept { lhs.swap(rhs); } // Size and alignment statically verified by rust_string.rs. std::array repr; }; #endif // CXXBRIDGE1_RUST_STRING #ifndef CXXBRIDGE1_RUST_STR #define CXXBRIDGE1_RUST_STR // https://cxx.rs/binding/str.html class Str final { public: Str() noexcept; Str(const String &) noexcept; Str(const std::string &); Str(const char *); Str(const char *, std::size_t); Str &operator=(const Str &) &noexcept = default; explicit operator std::string() const; // Note: no null terminator. const char *data() const noexcept; std::size_t size() const noexcept; std::size_t length() const noexcept; // Important in order for System V ABI to pass in registers. Str(const Str &) noexcept = default; ~Str() noexcept = default; using iterator = const char *; using const_iterator = const char *; const_iterator begin() const noexcept; const_iterator end() const noexcept; const_iterator cbegin() const noexcept; const_iterator cend() const noexcept; bool operator==(const Str &) const noexcept; bool operator!=(const Str &) const noexcept; bool operator<(const Str &) const noexcept; bool operator<=(const Str &) const noexcept; bool operator>(const Str &) const noexcept; bool operator>=(const Str &) const noexcept; void swap(Str &) noexcept; private: class uninit; Str(uninit) noexcept; friend impl; std::array repr; }; #endif // CXXBRIDGE1_RUST_STR #ifndef CXXBRIDGE1_RUST_SLICE namespace detail { template struct copy_assignable_if {}; template <> struct copy_assignable_if { copy_assignable_if() noexcept = default; copy_assignable_if(const copy_assignable_if &) noexcept = default; copy_assignable_if &operator=(const copy_assignable_if &) &noexcept = delete; copy_assignable_if &operator=(copy_assignable_if &&) &noexcept = default; }; } // namespace detail // https://cxx.rs/binding/slice.html template class Slice final : private detail::copy_assignable_if::value> { public: using value_type = T; Slice() noexcept; Slice(T *, std::size_t count) noexcept; Slice &operator=(const Slice &) &noexcept = default; Slice &operator=(Slice &&) &noexcept = default; T *data() const noexcept; std::size_t size() const noexcept; std::size_t length() const noexcept; bool empty() const noexcept; T &operator[](std::size_t n) const noexcept; T &at(std::size_t n) const; T &front() const noexcept; T &back() const noexcept; // Important in order for System V ABI to pass in registers. Slice(const Slice &) noexcept = default; ~Slice() noexcept = default; class iterator; iterator begin() const noexcept; iterator end() const noexcept; void swap(Slice &) noexcept; private: class uninit; Slice(uninit) noexcept; friend impl; friend void sliceInit(void *, const void *, std::size_t) noexcept; friend void *slicePtr(const void *) noexcept; friend std::size_t sliceLen(const void *) noexcept; std::array repr; }; template class Slice::iterator final { public: using iterator_category = std::random_access_iterator_tag; using value_type = T; using difference_type = std::ptrdiff_t; using pointer = typename std::add_pointer::type; using reference = typename std::add_lvalue_reference::type; reference operator*() const noexcept; pointer operator->() const noexcept; reference operator[](difference_type) const noexcept; iterator &operator++() noexcept; iterator operator++(int) noexcept; iterator &operator--() noexcept; iterator operator--(int) noexcept; iterator &operator+=(difference_type) noexcept; iterator &operator-=(difference_type) noexcept; iterator operator+(difference_type) const noexcept; iterator operator-(difference_type) const noexcept; difference_type operator-(const iterator &) const noexcept; bool operator==(const iterator &) const noexcept; bool operator!=(const iterator &) const noexcept; bool operator<(const iterator &) const noexcept; bool operator<=(const iterator &) const noexcept; bool operator>(const iterator &) const noexcept; bool operator>=(const iterator &) const noexcept; private: friend class Slice; void *pos; std::size_t stride; }; #endif // CXXBRIDGE1_RUST_SLICE #ifndef CXXBRIDGE1_RUST_BOX // https://cxx.rs/binding/box.html template class Box final { public: using element_type = T; using const_pointer = typename std::add_pointer::type>::type; using pointer = typename std::add_pointer::type; Box() = delete; Box(Box &&) noexcept; ~Box() noexcept; explicit Box(const T &); explicit Box(T &&); Box &operator=(Box &&) &noexcept; const T *operator->() const noexcept; const T &operator*() const noexcept; T *operator->() noexcept; T &operator*() noexcept; template static Box in_place(Fields &&...); void swap(Box &) noexcept; // Important: requires that `raw` came from an into_raw call. Do not pass a // pointer from `new` or any other source. static Box from_raw(T *) noexcept; T *into_raw() noexcept; /* Deprecated */ using value_type = element_type; private: class uninit; class allocation; Box(uninit) noexcept; void drop() noexcept; friend void swap(Box &lhs, Box &rhs) noexcept { lhs.swap(rhs); } T *ptr; }; #endif // CXXBRIDGE1_RUST_BOX #ifndef CXXBRIDGE1_RUST_VEC // https://cxx.rs/binding/vec.html template class Vec final { public: using value_type = T; Vec() noexcept; Vec(std::initializer_list); Vec(const Vec &); Vec(Vec &&) noexcept; ~Vec() noexcept; Vec &operator=(Vec &&) &noexcept; Vec &operator=(const Vec &) &; std::size_t size() const noexcept; bool empty() const noexcept; const T *data() const noexcept; T *data() noexcept; std::size_t capacity() const noexcept; const T &operator[](std::size_t n) const noexcept; const T &at(std::size_t n) const; const T &front() const noexcept; const T &back() const noexcept; T &operator[](std::size_t n) noexcept; T &at(std::size_t n); T &front() noexcept; T &back() noexcept; void reserve(std::size_t new_cap); void push_back(const T &value); void push_back(T &&value); template void emplace_back(Args &&...args); using iterator = typename Slice::iterator; iterator begin() noexcept; iterator end() noexcept; using const_iterator = typename Slice::iterator; const_iterator begin() const noexcept; const_iterator end() const noexcept; const_iterator cbegin() const noexcept; const_iterator cend() const noexcept; void swap(Vec &) noexcept; // Internal API only intended for the cxxbridge code generator. Vec(unsafe_bitcopy_t, const Vec &) noexcept; private: void reserve_total(std::size_t cap) noexcept; void set_len(std::size_t len) noexcept; void drop() noexcept; friend void swap(Vec &lhs, Vec &rhs) noexcept { lhs.swap(rhs); } // Size and alignment statically verified by rust_vec.rs. std::array repr; }; #endif // CXXBRIDGE1_RUST_VEC #ifndef CXXBRIDGE1_RUST_FN // https://cxx.rs/binding/fn.html template class Fn; template class Fn final { public: Ret operator()(Args... args) const noexcept; Fn operator*() const noexcept; private: Ret (*trampoline)(Args..., void *fn) noexcept; void *fn; }; #endif // CXXBRIDGE1_RUST_FN #ifndef CXXBRIDGE1_RUST_ERROR #define CXXBRIDGE1_RUST_ERROR // https://cxx.rs/binding/result.html class Error final : public std::exception { public: Error(const Error &); Error(Error &&) noexcept; ~Error() noexcept override; Error &operator=(const Error &) &; Error &operator=(Error &&) &noexcept; const char *what() const noexcept override; private: Error() noexcept = default; friend impl; const char *msg; std::size_t len; }; #endif // CXXBRIDGE1_RUST_ERROR #ifndef CXXBRIDGE1_RUST_ISIZE #define CXXBRIDGE1_RUST_ISIZE #if defined(_WIN32) using isize = SSIZE_T; #else using isize = ssize_t; #endif #endif // CXXBRIDGE1_RUST_ISIZE std::ostream &operator<<(std::ostream &, const String &); std::ostream &operator<<(std::ostream &, const Str &); #ifndef CXXBRIDGE1_RUST_OPAQUE #define CXXBRIDGE1_RUST_OPAQUE // Base class of generated opaque Rust types. class Opaque { public: Opaque() = delete; Opaque(const Opaque &) = delete; ~Opaque() = delete; }; #endif // CXXBRIDGE1_RUST_OPAQUE template std::size_t size_of(); template std::size_t align_of(); // IsRelocatable is used in assertions that a C++ type passed by value // between Rust and C++ is soundly relocatable by Rust. // // There may be legitimate reasons to opt out of the check for support of types // that the programmer knows are soundly Rust-movable despite not being // recognized as such by the C++ type system due to a move constructor or // destructor. To opt out of the relocatability check, do either of the // following things in any header used by `include!` in the bridge. // // --- if you define the type: // struct MyType { // ... // + using IsRelocatable = std::true_type; // }; // // --- otherwise: // + template <> // + struct rust::IsRelocatable : std::true_type {}; template struct IsRelocatable; using u8 = std::uint8_t; using u16 = std::uint16_t; using u32 = std::uint32_t; using u64 = std::uint64_t; using usize = std::size_t; // see static asserts in cxx.cc using i8 = std::int8_t; using i16 = std::int16_t; using i32 = std::int32_t; using i64 = std::int64_t; using f32 = float; using f64 = double; // Snake case aliases for use in code that uses this style for type names. using string = String; using str = Str; template using slice = Slice; template using box = Box; template using vec = Vec; using error = Error; template using fn = Fn; template using is_relocatable = IsRelocatable; //////////////////////////////////////////////////////////////////////////////// /// end public API, begin implementation details #ifndef CXXBRIDGE1_PANIC #define CXXBRIDGE1_PANIC template void panic [[noreturn]] (const char *msg); #endif // CXXBRIDGE1_PANIC #ifndef CXXBRIDGE1_RUST_FN #define CXXBRIDGE1_RUST_FN template Ret Fn::operator()(Args... args) const noexcept { return (*this->trampoline)(std::move(args)..., this->fn); } template Fn Fn::operator*() const noexcept { return *this; } #endif // CXXBRIDGE1_RUST_FN #ifndef CXXBRIDGE1_RUST_BITCOPY_T #define CXXBRIDGE1_RUST_BITCOPY_T struct unsafe_bitcopy_t final { explicit unsafe_bitcopy_t() = default; }; #endif // CXXBRIDGE1_RUST_BITCOPY_T #ifndef CXXBRIDGE1_RUST_BITCOPY #define CXXBRIDGE1_RUST_BITCOPY constexpr unsafe_bitcopy_t unsafe_bitcopy{}; #endif // CXXBRIDGE1_RUST_BITCOPY #ifndef CXXBRIDGE1_RUST_SLICE #define CXXBRIDGE1_RUST_SLICE template Slice::Slice() noexcept { sliceInit(this, reinterpret_cast(align_of()), 0); } template Slice::Slice(T *s, std::size_t count) noexcept { assert(s != nullptr || count == 0); sliceInit(this, s == nullptr && count == 0 ? reinterpret_cast(align_of()) : const_cast::type *>(s), count); } template T *Slice::data() const noexcept { return reinterpret_cast(slicePtr(this)); } template std::size_t Slice::size() const noexcept { return sliceLen(this); } template std::size_t Slice::length() const noexcept { return this->size(); } template bool Slice::empty() const noexcept { return this->size() == 0; } template T &Slice::operator[](std::size_t n) const noexcept { assert(n < this->size()); auto pos = static_cast(slicePtr(this)) + size_of() * n; return *reinterpret_cast(pos); } template T &Slice::at(std::size_t n) const { if (n >= this->size()) { panic("rust::Slice index out of range"); } return (*this)[n]; } template T &Slice::front() const noexcept { assert(!this->empty()); return (*this)[0]; } template T &Slice::back() const noexcept { assert(!this->empty()); return (*this)[this->size() - 1]; } template typename Slice::iterator::reference Slice::iterator::operator*() const noexcept { return *static_cast(this->pos); } template typename Slice::iterator::pointer Slice::iterator::operator->() const noexcept { return static_cast(this->pos); } template typename Slice::iterator::reference Slice::iterator::operator[]( typename Slice::iterator::difference_type n) const noexcept { auto pos = static_cast(this->pos) + this->stride * n; return *reinterpret_cast(pos); } template typename Slice::iterator &Slice::iterator::operator++() noexcept { this->pos = static_cast(this->pos) + this->stride; return *this; } template typename Slice::iterator Slice::iterator::operator++(int) noexcept { auto ret = iterator(*this); this->pos = static_cast(this->pos) + this->stride; return ret; } template typename Slice::iterator &Slice::iterator::operator--() noexcept { this->pos = static_cast(this->pos) - this->stride; return *this; } template typename Slice::iterator Slice::iterator::operator--(int) noexcept { auto ret = iterator(*this); this->pos = static_cast(this->pos) - this->stride; return ret; } template typename Slice::iterator &Slice::iterator::operator+=( typename Slice::iterator::difference_type n) noexcept { this->pos = static_cast(this->pos) + this->stride * n; return *this; } template typename Slice::iterator &Slice::iterator::operator-=( typename Slice::iterator::difference_type n) noexcept { this->pos = static_cast(this->pos) - this->stride * n; return *this; } template typename Slice::iterator Slice::iterator::operator+( typename Slice::iterator::difference_type n) const noexcept { auto ret = iterator(*this); ret.pos = static_cast(this->pos) + this->stride * n; return ret; } template typename Slice::iterator Slice::iterator::operator-( typename Slice::iterator::difference_type n) const noexcept { auto ret = iterator(*this); ret.pos = static_cast(this->pos) - this->stride * n; return ret; } template typename Slice::iterator::difference_type Slice::iterator::operator-(const iterator &other) const noexcept { auto diff = std::distance(static_cast(other.pos), static_cast(this->pos)); return diff / this->stride; } template bool Slice::iterator::operator==(const iterator &other) const noexcept { return this->pos == other.pos; } template bool Slice::iterator::operator!=(const iterator &other) const noexcept { return this->pos != other.pos; } template bool Slice::iterator::operator<(const iterator &other) const noexcept { return this->pos < other.pos; } template bool Slice::iterator::operator<=(const iterator &other) const noexcept { return this->pos <= other.pos; } template bool Slice::iterator::operator>(const iterator &other) const noexcept { return this->pos > other.pos; } template bool Slice::iterator::operator>=(const iterator &other) const noexcept { return this->pos >= other.pos; } template typename Slice::iterator Slice::begin() const noexcept { iterator it; it.pos = slicePtr(this); it.stride = size_of(); return it; } template typename Slice::iterator Slice::end() const noexcept { iterator it = this->begin(); it.pos = static_cast(it.pos) + it.stride * this->size(); return it; } template void Slice::swap(Slice &rhs) noexcept { std::swap(*this, rhs); } #endif // CXXBRIDGE1_RUST_SLICE #ifndef CXXBRIDGE1_RUST_BOX #define CXXBRIDGE1_RUST_BOX template class Box::uninit {}; template class Box::allocation { static T *alloc() noexcept; static void dealloc(T *) noexcept; public: allocation() noexcept : ptr(alloc()) {} ~allocation() noexcept { if (this->ptr) { dealloc(this->ptr); } } T *ptr; }; template Box::Box(Box &&other) noexcept : ptr(other.ptr) { other.ptr = nullptr; } template Box::Box(const T &val) { allocation alloc; ::new (alloc.ptr) T(val); this->ptr = alloc.ptr; alloc.ptr = nullptr; } template Box::Box(T &&val) { allocation alloc; ::new (alloc.ptr) T(std::move(val)); this->ptr = alloc.ptr; alloc.ptr = nullptr; } template Box::~Box() noexcept { if (this->ptr) { this->drop(); } } template Box &Box::operator=(Box &&other) &noexcept { if (this->ptr) { this->drop(); } this->ptr = other.ptr; other.ptr = nullptr; return *this; } template const T *Box::operator->() const noexcept { return this->ptr; } template const T &Box::operator*() const noexcept { return *this->ptr; } template T *Box::operator->() noexcept { return this->ptr; } template T &Box::operator*() noexcept { return *this->ptr; } template template Box Box::in_place(Fields &&...fields) { allocation alloc; auto ptr = alloc.ptr; ::new (ptr) T{std::forward(fields)...}; alloc.ptr = nullptr; return from_raw(ptr); } template void Box::swap(Box &rhs) noexcept { using std::swap; swap(this->ptr, rhs.ptr); } template Box Box::from_raw(T *raw) noexcept { Box box = uninit{}; box.ptr = raw; return box; } template T *Box::into_raw() noexcept { T *raw = this->ptr; this->ptr = nullptr; return raw; } template Box::Box(uninit) noexcept {} #endif // CXXBRIDGE1_RUST_BOX #ifndef CXXBRIDGE1_RUST_VEC #define CXXBRIDGE1_RUST_VEC template Vec::Vec(std::initializer_list init) : Vec{} { this->reserve_total(init.size()); std::move(init.begin(), init.end(), std::back_inserter(*this)); } template Vec::Vec(const Vec &other) : Vec() { this->reserve_total(other.size()); std::copy(other.begin(), other.end(), std::back_inserter(*this)); } template Vec::Vec(Vec &&other) noexcept : repr(other.repr) { new (&other) Vec(); } template Vec::~Vec() noexcept { this->drop(); } template Vec &Vec::operator=(Vec &&other) &noexcept { this->drop(); this->repr = other.repr; new (&other) Vec(); return *this; } template Vec &Vec::operator=(const Vec &other) & { if (this != &other) { this->drop(); new (this) Vec(other); } return *this; } template bool Vec::empty() const noexcept { return this->size() == 0; } template T *Vec::data() noexcept { return const_cast(const_cast *>(this)->data()); } template const T &Vec::operator[](std::size_t n) const noexcept { assert(n < this->size()); auto data = reinterpret_cast(this->data()); return *reinterpret_cast(data + n * size_of()); } template const T &Vec::at(std::size_t n) const { if (n >= this->size()) { panic("rust::Vec index out of range"); } return (*this)[n]; } template const T &Vec::front() const noexcept { assert(!this->empty()); return (*this)[0]; } template const T &Vec::back() const noexcept { assert(!this->empty()); return (*this)[this->size() - 1]; } template T &Vec::operator[](std::size_t n) noexcept { assert(n < this->size()); auto data = reinterpret_cast(this->data()); return *reinterpret_cast(data + n * size_of()); } template T &Vec::at(std::size_t n) { if (n >= this->size()) { panic("rust::Vec index out of range"); } return (*this)[n]; } template T &Vec::front() noexcept { assert(!this->empty()); return (*this)[0]; } template T &Vec::back() noexcept { assert(!this->empty()); return (*this)[this->size() - 1]; } template void Vec::reserve(std::size_t new_cap) { this->reserve_total(new_cap); } template void Vec::push_back(const T &value) { this->emplace_back(value); } template void Vec::push_back(T &&value) { this->emplace_back(std::move(value)); } template template void Vec::emplace_back(Args &&...args) { auto size = this->size(); this->reserve_total(size + 1); ::new (reinterpret_cast(reinterpret_cast(this->data()) + size * size_of())) T(std::forward(args)...); this->set_len(size + 1); } template typename Vec::iterator Vec::begin() noexcept { return Slice(this->data(), this->size()).begin(); } template typename Vec::iterator Vec::end() noexcept { return Slice(this->data(), this->size()).end(); } template typename Vec::const_iterator Vec::begin() const noexcept { return this->cbegin(); } template typename Vec::const_iterator Vec::end() const noexcept { return this->cend(); } template typename Vec::const_iterator Vec::cbegin() const noexcept { return Slice(this->data(), this->size()).begin(); } template typename Vec::const_iterator Vec::cend() const noexcept { return Slice(this->data(), this->size()).end(); } template void Vec::swap(Vec &rhs) noexcept { using std::swap; swap(this->repr, rhs.repr); } // Internal API only intended for the cxxbridge code generator. template Vec::Vec(unsafe_bitcopy_t, const Vec &bits) noexcept : repr(bits.repr) {} #endif // CXXBRIDGE1_RUST_VEC #ifndef CXXBRIDGE1_IS_COMPLETE #define CXXBRIDGE1_IS_COMPLETE namespace detail { namespace { template struct is_complete : std::false_type {}; template struct is_complete : std::true_type {}; } // namespace } // namespace detail #endif // CXXBRIDGE1_IS_COMPLETE #ifndef CXXBRIDGE1_LAYOUT #define CXXBRIDGE1_LAYOUT class layout { template friend std::size_t size_of(); template friend std::size_t align_of(); template static typename std::enable_if::value, std::size_t>::type do_size_of() { return T::layout::size(); } template static typename std::enable_if::value, std::size_t>::type do_size_of() { return sizeof(T); } template static typename std::enable_if::value, std::size_t>::type size_of() { return do_size_of(); } template static typename std::enable_if::value, std::size_t>::type do_align_of() { return T::layout::align(); } template static typename std::enable_if::value, std::size_t>::type do_align_of() { return alignof(T); } template static typename std::enable_if::value, std::size_t>::type align_of() { return do_align_of(); } }; template std::size_t size_of() { return layout::size_of(); } template std::size_t align_of() { return layout::align_of(); } #endif // CXXBRIDGE1_LAYOUT #ifndef CXXBRIDGE1_RELOCATABLE #define CXXBRIDGE1_RELOCATABLE namespace detail { template struct make_void { using type = void; }; template using void_t = typename make_void::type; template class, typename...> struct detect : std::false_type {}; template