mirror of
https://github.com/Atmosphere-NX/Atmosphere-libs.git
synced 2025-06-21 19:12:42 +02:00
739 lines
35 KiB
C++
739 lines
35 KiB
C++
/*
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* Copyright (c) Atmosphère-NX
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms and conditions of the GNU General Public License,
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* version 2, as published by the Free Software Foundation.
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*
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* This program is distributed in the hope it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#pragma once
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#include <vapours.hpp>
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#include <stratosphere/tipc/tipc_common.hpp>
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#include <stratosphere/tipc/tipc_out.hpp>
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#include <stratosphere/tipc/tipc_buffers.hpp>
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#include <stratosphere/tipc/tipc_handles.hpp>
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namespace ams::tipc {
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struct ClientProcessId {
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os::ProcessId value;
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};
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static_assert(std::is_trivial<ClientProcessId>::value && sizeof(ClientProcessId) == sizeof(os::ProcessId), "ClientProcessId");
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}
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#if defined(ATMOSPHERE_OS_HORIZON)
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namespace ams::tipc::impl {
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/* Machinery for filtering type lists. */
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template<class, class>
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struct TupleCat;
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template<class... First, class... Second>
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struct TupleCat<std::tuple<First...>, std::tuple<Second...>> {
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using type = std::tuple<First..., Second...>;
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};
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template<template <typename> typename Cond>
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struct TupleFilter {
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private:
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template<typename, typename>
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struct ImplType;
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template<typename Res>
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struct ImplType<Res, std::tuple<>> {
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using type = Res;
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};
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template<typename Res, typename T, typename... Ts>
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struct ImplType<Res, std::tuple<T, Ts...>> {
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using type = typename std::conditional<Cond<T>::value,
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typename ImplType<typename TupleCat<Res, std::tuple<T>>::type, std::tuple<Ts...>>::type,
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typename ImplType<Res, std::tuple<Ts...>>::type
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>::type;
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};
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public:
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template<typename T>
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using FilteredType = typename ImplType<std::tuple<>, T>::type;
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};
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enum class ArgumentType {
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InData,
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OutData,
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Buffer,
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InHandle,
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OutHandle,
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ProcessId,
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};
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template<typename T>
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constexpr inline ArgumentType GetArgumentType = [] {
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if constexpr (tipc::IsBuffer<T>) {
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return ArgumentType::Buffer;
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} else if constexpr (std::same_as<T, tipc::CopyHandle> || std::same_as<T, tipc::MoveHandle>) {
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return ArgumentType::InHandle;
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} else if constexpr (std::same_as<T, tipc::OutCopyHandle> || std::same_as<T, tipc::OutMoveHandle>) {
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return ArgumentType::OutHandle;
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} else if constexpr (std::is_base_of<tipc::impl::OutBaseTag, T>::value) {
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return ArgumentType::OutData;
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} else if constexpr (std::same_as<T, tipc::ClientProcessId>) {
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return ArgumentType::ProcessId;
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} else if constexpr (std::is_trivial<T>::value && !std::is_pointer<T>::value) {
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return ArgumentType::InData;
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} else if constexpr (std::is_same<T, ::ams::Result>::value) {
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return ArgumentType::InData;
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} else {
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static_assert(!std::is_same<T, T>::value, "Invalid ArgumentType<T>");
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}
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}();
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template<typename T, ArgumentType ArgT>
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struct ArgumentTypeFilter : public std::bool_constant<GetArgumentType<T> == ArgT>{};
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template<typename T, typename U>
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struct TypeEqualityFilter : public std::bool_constant<std::is_same<T, U>::value>{};
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/* Argument type filters. */
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template<typename T>
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using InDataFilter = ArgumentTypeFilter<T, ArgumentType::InData>;
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template<typename T>
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using OutDataFilter = ArgumentTypeFilter<T, ArgumentType::OutData>;
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template<typename T>
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using BufferFilter = ArgumentTypeFilter<T, ArgumentType::Buffer>;
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template<typename T>
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using InHandleFilter = ArgumentTypeFilter<T, ArgumentType::InHandle>;
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template<typename T>
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using OutHandleFilter = ArgumentTypeFilter<T, ArgumentType::OutHandle>;
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template<typename T>
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using ProcessIdFilter = ArgumentTypeFilter<T, ArgumentType::ProcessId>;
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/* Handle kind filters. */
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template<typename T>
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using InMoveHandleFilter = TypeEqualityFilter<T, tipc::MoveHandle>;
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template<typename T>
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using InCopyHandleFilter = TypeEqualityFilter<T, tipc::CopyHandle>;
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template<typename T>
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using OutMoveHandleFilter = TypeEqualityFilter<T, tipc::OutMoveHandle>;
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template<typename T>
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using OutCopyHandleFilter = TypeEqualityFilter<T, tipc::OutCopyHandle>;
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template<typename>
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struct BufferAttributeArrayGetter;
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template<typename ...Ts>
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struct BufferAttributeArrayGetter<std::tuple<Ts...>> {
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static constexpr std::array<u32, sizeof...(Ts)> value = { BufferAttributes<Ts>..., };
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};
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template<>
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struct BufferAttributeArrayGetter<std::tuple<>> {
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static constexpr std::array<u32, 0> value{};
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};
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template<auto Predicate>
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struct BufferAttributeCounter {
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template<size_t Size>
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static constexpr size_t GetCount(const std::array<u32, Size> &attributes_array) {
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size_t count = 0;
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for (size_t i = 0; i < Size; i++) {
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if (Predicate(attributes_array[i])) {
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count++;
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}
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}
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return count;
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}
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};
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static constexpr size_t InBufferPredicate(const u32 attribute) {
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return (attribute & SfBufferAttr_In) && !(attribute & SfBufferAttr_Out);
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}
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static constexpr size_t OutBufferPredicate(const u32 attribute) {
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return !(attribute & SfBufferAttr_In) && (attribute & SfBufferAttr_Out);
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}
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template<typename>
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struct RawDataOffsetCalculator;
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template<typename... Ts>
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struct RawDataOffsetCalculator<std::tuple<Ts...>> {
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private:
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template<typename T>
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struct LayoutHelper {
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static_assert(GetArgumentType<T> == ArgumentType::InData, "LayoutHelper InData");
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static constexpr size_t Alignment = alignof(T);
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static constexpr size_t Size = sizeof(T);
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};
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template<typename T>
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struct LayoutHelper<Out<T>> {
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static_assert(GetArgumentType<T> == ArgumentType::InData, "LayoutHelper OutData");
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static constexpr size_t Alignment = alignof(T);
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static constexpr size_t Size = sizeof(T);
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};
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public:
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static constexpr std::array<size_t, sizeof...(Ts)+1> Offsets = [] {
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std::array<size_t, sizeof...(Ts)+1> offsets{};
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offsets[0] = 0;
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if constexpr (sizeof...(Ts) > 0) {
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/* Get size, alignment for each type. */
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const std::array<size_t, sizeof...(Ts)> sizes = { LayoutHelper<Ts>::Size... };
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const std::array<size_t, sizeof...(Ts)> aligns = { LayoutHelper<Ts>::Alignment... };
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/* We want to sort...by alignment. */
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std::array<size_t, sizeof...(Ts)> map = {};
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for (size_t i = 0; i < sizeof...(Ts); i++) { map[i] = i; }
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/* TODO: Is sorting done on parameters? */
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/* Sort?(map, aligns); */
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/* Iterate over sorted sizes. */
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size_t cur_offset = 0;
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for (size_t i : map) {
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cur_offset = util::AlignUp(cur_offset, aligns[i]);
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offsets[i] = cur_offset;
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cur_offset += sizes[i];
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}
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offsets[sizeof...(Ts)] = cur_offset;
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}
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return offsets;
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}();
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};
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struct ArgumentSerializationInfo {
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/* Type used to select from below fields. */
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ArgumentType arg_type;
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/* Raw data indexing. */
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size_t in_raw_data_index;
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size_t out_raw_data_index;
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/* Buffer indexing. */
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size_t buffer_index;
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bool is_send_buffer;
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size_t send_map_alias_index;
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size_t recv_map_alias_index;
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/* Handle indexing. */
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size_t in_move_handle_index;
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size_t in_copy_handle_index;
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size_t out_move_handle_index;
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size_t out_copy_handle_index;
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};
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template<u16 _CommandId, typename ArgumentsTuple>
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struct CommandMetaInfo;
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template<u16 _CommandId, typename... Arguments>
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struct CommandMetaInfo<_CommandId, std::tuple<Arguments...>> {
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public:
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static constexpr u16 CommandId = _CommandId;
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using ArgsType = std::tuple<typename std::decay<Arguments>::type...>;
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using InDatas = TupleFilter<InDataFilter>::FilteredType<ArgsType>;
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using OutDatas = TupleFilter<OutDataFilter>::FilteredType<ArgsType>;
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using Buffers = TupleFilter<BufferFilter>::FilteredType<ArgsType>;
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using InHandles = TupleFilter<InHandleFilter>::FilteredType<ArgsType>;
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using OutHandles = TupleFilter<OutHandleFilter>::FilteredType<ArgsType>;
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using ProcessIds = TupleFilter<ProcessIdFilter>::FilteredType<ArgsType>;
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static constexpr size_t NumInDatas = std::tuple_size<InDatas>::value;
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static constexpr size_t NumOutDatas = std::tuple_size<OutDatas>::value;
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static constexpr size_t NumBuffers = std::tuple_size<Buffers>::value;
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static constexpr size_t NumInHandles = std::tuple_size<InHandles>::value;
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static constexpr size_t NumOutHandles = std::tuple_size<OutHandles>::value;
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static constexpr size_t NumProcessIds = std::tuple_size<ProcessIds>::value;
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static constexpr bool HasProcessId = NumProcessIds >= 1;
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static_assert(NumBuffers <= 8, "Methods must take in <= 8 Buffers");
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static_assert(NumInHandles <= 8, "Methods must take in <= 8 Handles");
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static_assert(NumOutHandles <= 8, "Methods must output <= 8 Handles");
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static_assert(NumInHandles == 0, "In Handles not yet implemented!");
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/* Buffer marshalling. */
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static constexpr std::array<u32, NumBuffers> BufferAttributes = BufferAttributeArrayGetter<Buffers>::value;
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static constexpr size_t NumInBuffers = BufferAttributeCounter<InBufferPredicate>::GetCount(BufferAttributes);
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static constexpr size_t NumOutBuffers = BufferAttributeCounter<OutBufferPredicate>::GetCount(BufferAttributes);
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/* In/Out data marshalling. */
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static constexpr std::array<size_t, NumInDatas+1> InDataOffsets = RawDataOffsetCalculator<InDatas>::Offsets;
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static constexpr size_t InDataSize = util::AlignUp(InDataOffsets[NumInDatas], alignof(u32));
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static constexpr std::array<size_t, NumOutDatas+1> OutDataOffsets = RawDataOffsetCalculator<OutDatas>::Offsets;
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static constexpr size_t OutDataSize = util::AlignUp(OutDataOffsets[NumOutDatas], alignof(u32));
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/* Useful because reasons. */
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static constexpr size_t OutDataAlign = []() -> size_t {
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if constexpr (std::tuple_size<OutDatas>::value) {
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return alignof(typename std::tuple_element<0, OutDatas>::type);
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}
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return 0;
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}();
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/* Handle marshalling. */
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static constexpr size_t NumInMoveHandles = std::tuple_size<TupleFilter<InMoveHandleFilter>::FilteredType<InHandles>>::value;
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static constexpr size_t NumInCopyHandles = std::tuple_size<TupleFilter<InCopyHandleFilter>::FilteredType<InHandles>>::value;
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static constexpr size_t NumOutMoveHandles = std::tuple_size<TupleFilter<OutMoveHandleFilter>::FilteredType<OutHandles>>::value;
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static constexpr size_t NumOutCopyHandles = std::tuple_size<TupleFilter<OutCopyHandleFilter>::FilteredType<OutHandles>>::value;
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static_assert(NumInMoveHandles + NumInCopyHandles == NumInHandles, "NumInMoveHandles + NumInCopyHandles == NumInHandles");
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static_assert(NumOutMoveHandles + NumOutCopyHandles == NumOutHandles, "NumOutMoveHandles + NumOutCopyHandles == NumOutHandles");
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/* tipc-specific accessors. */
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static constexpr bool HasInSpecialHeader = HasProcessId || NumInHandles > 0;
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static constexpr MessageBuffer::MessageHeader InMessageHeader{CommandId, HasInSpecialHeader, 0, NumInBuffers, NumOutBuffers, 0, InDataSize / sizeof(u32), 0};
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static constexpr MessageBuffer::SpecialHeader InSpecialHeader{HasProcessId, NumInCopyHandles, NumInMoveHandles, HasInSpecialHeader};
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static constexpr auto InMessageProcessIdIndex = MessageBuffer::GetSpecialDataIndex(InMessageHeader, InSpecialHeader);
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static constexpr auto InMessageHandleIndex = MessageBuffer::GetSpecialDataIndex(InMessageHeader, InSpecialHeader) + (HasProcessId ? sizeof(u64) / sizeof(u32) : 0);
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static constexpr auto InMessageBufferIndex = MessageBuffer::GetMapAliasDescriptorIndex(InMessageHeader, InSpecialHeader);
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static constexpr auto InMessageRawDataIndex = MessageBuffer::GetRawDataIndex(InMessageHeader, InSpecialHeader);
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static constexpr bool HasOutSpecialHeader = NumOutHandles > 0;
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static constexpr MessageBuffer::MessageHeader OutMessageHeader{CommandId, HasOutSpecialHeader, 0, 0, 0, 0, (OutDataSize / sizeof(u32)) + 1, 0};
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static constexpr MessageBuffer::SpecialHeader OutSpecialHeader{false, NumOutCopyHandles, NumOutMoveHandles, HasOutSpecialHeader};
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static constexpr auto OutMessageHandleIndex = MessageBuffer::GetSpecialDataIndex(OutMessageHeader, OutSpecialHeader);
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static constexpr auto OutMessageResultIndex = MessageBuffer::GetRawDataIndex(OutMessageHeader, OutSpecialHeader);
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static constexpr auto OutMessageRawDataIndex = OutMessageResultIndex + 1;
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static constexpr size_t InMessageTotalSize = (InMessageRawDataIndex * sizeof(u32)) + InDataSize;
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static constexpr size_t OutMessageTotalSize = (OutMessageRawDataIndex * sizeof(u32)) + OutDataSize;
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/* Construction of argument serialization structs. */
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private:
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template<typename>
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struct ArgumentSerializationInfoConstructor;
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template<typename ...Ts>
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struct ArgumentSerializationInfoConstructor<std::tuple<Ts...>> {
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template<typename T>
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static constexpr ArgumentSerializationInfo ProcessUpdate(ArgumentSerializationInfo ¤t_info) {
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/* Save a copy of the current state to return. */
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ArgumentSerializationInfo returned_info = current_info;
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constexpr auto arg_type = GetArgumentType<T>;
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returned_info.arg_type = arg_type;
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if constexpr (arg_type == ArgumentType::InData) {
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/* New rawdata, so increment index. */
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current_info.in_raw_data_index++;
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} else if constexpr (arg_type == ArgumentType::OutData) {
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/* New rawdata, so increment index. */
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current_info.out_raw_data_index++;
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} else if constexpr (arg_type == ArgumentType::InHandle) {
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/* New InHandle, increment the appropriate index. */
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if constexpr (std::same_as<T, tipc::MoveHandle>) {
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current_info.in_move_handle_index++;
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} else if constexpr (std::same_as<T, tipc::CopyHandle>) {
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current_info.in_copy_handle_index++;
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} else {
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static_assert(!std::is_same<T, T>::value, "Invalid InHandle kind");
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}
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} else if constexpr (arg_type == ArgumentType::OutHandle) {
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/* New OutHandle, increment the appropriate index. */
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if constexpr (std::same_as<T, tipc::OutMoveHandle>) {
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current_info.out_move_handle_index++;
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} else if constexpr (std::same_as<T, tipc::OutCopyHandle>) {
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current_info.out_copy_handle_index++;
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} else {
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static_assert(!std::is_same<T, T>::value, "Invalid OutHandle kind");
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}
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} else if constexpr (arg_type == ArgumentType::Buffer) {
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/* New Buffer, increment the appropriate index. */
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const auto attributes = BufferAttributes[current_info.buffer_index++];
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if (attributes & SfBufferAttr_In) {
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returned_info.is_send_buffer = true;
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current_info.send_map_alias_index++;
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} else if (attributes & SfBufferAttr_Out) {
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returned_info.is_send_buffer = false;
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current_info.recv_map_alias_index++;
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}
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} else if constexpr (arg_type == ArgumentType::ProcessId) {
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/* Nothing needs to be done to track process ids. */
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} else {
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static_assert(!std::is_same<T, T>::value, "Invalid ArgumentType<T>");
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}
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return returned_info;
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}
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static constexpr std::array<ArgumentSerializationInfo, sizeof...(Ts)> ArgumentSerializationInfos = [] {
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ArgumentSerializationInfo current_info = {};
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return std::array<ArgumentSerializationInfo, sizeof...(Ts)>{ ProcessUpdate<Ts>(current_info)... };
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}();
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};
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public:
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static constexpr std::array<ArgumentSerializationInfo, std::tuple_size<ArgsType>::value> ArgumentSerializationInfos = ArgumentSerializationInfoConstructor<ArgsType>::ArgumentSerializationInfos;
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};
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template<size_t _Size, size_t _Align, size_t OutIndex>
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class OutRawHolder {
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public:
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static constexpr size_t Size = _Size;
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static constexpr size_t Align = _Align ? _Align : alignof(u8);
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private:
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alignas(Align) u8 data[Size];
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public:
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constexpr ALWAYS_INLINE OutRawHolder() : data() { /* ... */ }
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template<size_t Offset, size_t TypeSize>
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constexpr ALWAYS_INLINE uintptr_t GetAddress() const {
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static_assert(Offset <= Size, "Offset <= Size");
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static_assert(TypeSize <= Size, "TypeSize <= Size");
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static_assert(Offset + TypeSize <= Size, "Offset + TypeSize <= Size");
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return reinterpret_cast<uintptr_t>(data + Offset);
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}
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constexpr ALWAYS_INLINE void CopyTo(const MessageBuffer &buffer) const {
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if constexpr (Size > 0) {
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buffer.SetRawArray(OutIndex, data, Size);
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}
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}
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};
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template<size_t _NumMove, size_t _NumCopy, size_t OutIndex>
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class OutHandleHolder {
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public:
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static constexpr size_t NumMove = _NumMove;
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static constexpr size_t NumCopy = _NumCopy;
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private:
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tipc::NativeHandle move_handles[NumMove];
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tipc::NativeHandle copy_handles[NumCopy];
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public:
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ALWAYS_INLINE OutHandleHolder() { /* ... */ }
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template<size_t Index>
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constexpr ALWAYS_INLINE tipc::NativeHandle *GetMoveHandlePointer() {
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static_assert(Index < NumMove, "Index < NumMove");
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return move_handles + Index;
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}
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template<size_t Index>
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constexpr ALWAYS_INLINE tipc::NativeHandle *GetCopyHandlePointer() {
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static_assert(Index < NumCopy, "Index < NumCopy");
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return copy_handles + Index;
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}
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ALWAYS_INLINE void CopyTo(const MessageBuffer &buffer) const {
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#define _TIPC_OUT_HANDLE_HOLDER_WRITE_COPY_HANDLE(n) do { if constexpr (NumCopy > n) { buffer.SetHandle(OutIndex + n, copy_handles[n]); } } while (0)
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_TIPC_OUT_HANDLE_HOLDER_WRITE_COPY_HANDLE(0);
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_TIPC_OUT_HANDLE_HOLDER_WRITE_COPY_HANDLE(1);
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_TIPC_OUT_HANDLE_HOLDER_WRITE_COPY_HANDLE(2);
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_TIPC_OUT_HANDLE_HOLDER_WRITE_COPY_HANDLE(3);
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_TIPC_OUT_HANDLE_HOLDER_WRITE_COPY_HANDLE(4);
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_TIPC_OUT_HANDLE_HOLDER_WRITE_COPY_HANDLE(5);
|
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_TIPC_OUT_HANDLE_HOLDER_WRITE_COPY_HANDLE(6);
|
|
_TIPC_OUT_HANDLE_HOLDER_WRITE_COPY_HANDLE(7);
|
|
#undef _TIPC_OUT_HANDLE_HOLDER_WRITE_COPY_HANDLE
|
|
#define _TIPC_OUT_HANDLE_HOLDER_WRITE_MOVE_HANDLE(n) do { if constexpr (NumMove > n) { buffer.SetHandle(OutIndex + NumCopy + n, move_handles[n]); } } while (0)
|
|
_TIPC_OUT_HANDLE_HOLDER_WRITE_MOVE_HANDLE(0);
|
|
_TIPC_OUT_HANDLE_HOLDER_WRITE_MOVE_HANDLE(1);
|
|
_TIPC_OUT_HANDLE_HOLDER_WRITE_MOVE_HANDLE(2);
|
|
_TIPC_OUT_HANDLE_HOLDER_WRITE_MOVE_HANDLE(3);
|
|
_TIPC_OUT_HANDLE_HOLDER_WRITE_MOVE_HANDLE(4);
|
|
_TIPC_OUT_HANDLE_HOLDER_WRITE_MOVE_HANDLE(5);
|
|
_TIPC_OUT_HANDLE_HOLDER_WRITE_MOVE_HANDLE(6);
|
|
_TIPC_OUT_HANDLE_HOLDER_WRITE_MOVE_HANDLE(7);
|
|
#undef _TIPC_OUT_HANDLE_HOLDER_WRITE_MOVE_HANDLE
|
|
}
|
|
};
|
|
|
|
template<size_t... Ix>
|
|
struct PrintIndex;
|
|
|
|
template<typename CommandMeta>
|
|
class CommandProcessor {
|
|
public:
|
|
/* Useful defines. */
|
|
using ArgsType = typename CommandMeta::ArgsType;
|
|
using OutRawHolderType = OutRawHolder<CommandMeta::OutDataSize, CommandMeta::OutDataAlign, CommandMeta::OutMessageRawDataIndex>;
|
|
using OutHandleHolderType = OutHandleHolder<CommandMeta::NumOutMoveHandles, CommandMeta::NumOutCopyHandles, CommandMeta::OutMessageHandleIndex>;
|
|
private:
|
|
static constexpr u64 GetMessageHeaderForCheck(const MessageBuffer::MessageHeader &header) {
|
|
using Value = util::BitPack32::Field<0, BITSIZEOF(util::BitPack32)>;
|
|
|
|
const util::BitPack32 *data = header.GetData();
|
|
const u32 lower = data[0].Get<Value>();
|
|
const u32 upper = data[1].Get<Value>();
|
|
|
|
return static_cast<u64>(lower) | (static_cast<u64>(upper) << BITSIZEOF(u32));
|
|
}
|
|
|
|
static constexpr u32 GetSpecialHeaderForCheck(const MessageBuffer::SpecialHeader &header) {
|
|
using Value = util::BitPack32::Field<0, BITSIZEOF(util::BitPack32)>;
|
|
|
|
return header.GetHeader()->Get<Value>();
|
|
}
|
|
|
|
/* Argument deserialization. */
|
|
template<size_t Index, typename T = typename std::tuple_element<Index, ArgsType>::type>
|
|
static ALWAYS_INLINE typename std::tuple_element<Index, ArgsType>::type DeserializeArgumentImpl(const MessageBuffer &message_buffer, const OutRawHolderType &out_raw_holder, OutHandleHolderType &out_handles_holder) {
|
|
constexpr auto Info = CommandMeta::ArgumentSerializationInfos[Index];
|
|
if constexpr (Info.arg_type == ArgumentType::InData) {
|
|
/* New in rawdata. */
|
|
constexpr size_t Offset = CommandMeta::InDataOffsets[Info.in_raw_data_index];
|
|
constexpr size_t RawIndex = Offset / sizeof(u32);
|
|
static_assert(Offset == RawIndex * sizeof(u32)); /* TODO: Do unaligned data exist? */
|
|
|
|
if constexpr (!std::same_as<T, bool>) {
|
|
return message_buffer.GetRaw<T>(CommandMeta::InMessageRawDataIndex + RawIndex);
|
|
} else {
|
|
return message_buffer.GetRaw<u8>(CommandMeta::InMessageRawDataIndex + RawIndex) & 1;
|
|
}
|
|
} else if constexpr (Info.arg_type == ArgumentType::OutData) {
|
|
/* New out rawdata. */
|
|
constexpr size_t Offset = CommandMeta::OutDataOffsets[Info.out_raw_data_index];
|
|
return T(out_raw_holder.template GetAddress<Offset, T::TypeSize>());
|
|
} else if constexpr (Info.arg_type == ArgumentType::InHandle) {
|
|
/* New InHandle. */
|
|
if constexpr (std::same_as<T, tipc::MoveHandle>) {
|
|
constexpr auto HandleIndex = CommandMeta::InMessageHandleIndex + CommandMeta::NumInCopyHandles + Info.in_move_handle_index;
|
|
return T(message_buffer.GetHandle(HandleIndex));
|
|
} else if constexpr (std::same_as<T, tipc::CopyHandle>) {
|
|
constexpr auto HandleIndex = CommandMeta::InMessageHandleIndex + Info.in_copy_handle_index;
|
|
return T(message_buffer.GetHandle(HandleIndex));
|
|
} else {
|
|
static_assert(!std::is_same<T, T>::value, "Invalid InHandle kind");
|
|
}
|
|
} else if constexpr (Info.arg_type == ArgumentType::OutHandle) {
|
|
/* New OutHandle. */
|
|
if constexpr (std::same_as<T, tipc::OutMoveHandle>) {
|
|
tipc::NativeHandle * const ptr = out_handles_holder.template GetMoveHandlePointer<Info.out_move_handle_index>();
|
|
*ptr = tipc::InvalidNativeHandle;
|
|
return T(ptr);
|
|
} else if constexpr (std::same_as<T, tipc::OutCopyHandle>) {
|
|
tipc::NativeHandle * const ptr = out_handles_holder.template GetCopyHandlePointer<Info.out_copy_handle_index>();
|
|
*ptr = tipc::InvalidNativeHandle;
|
|
return T(ptr);
|
|
} else {
|
|
static_assert(!std::is_same<T, T>::value, "Invalid OutHandle kind");
|
|
}
|
|
} else if constexpr (Info.arg_type == ArgumentType::Buffer) {
|
|
/* NOTE: There are currently no tipc commands which use buffers-with-attributes */
|
|
/* If these are added (e.g., NonSecure buffers), implement checking here? */
|
|
constexpr size_t MapAliasDescriptorSize = MessageBuffer::MapAliasDescriptor::GetDataSize();
|
|
|
|
if constexpr (Info.is_send_buffer) {
|
|
/* Input send buffer. */
|
|
constexpr auto BufferIndex = CommandMeta::InMessageBufferIndex + (Info.send_map_alias_index * MapAliasDescriptorSize / sizeof(util::BitPack32));
|
|
|
|
const MessageBuffer::MapAliasDescriptor descriptor(message_buffer, BufferIndex);
|
|
return T(descriptor.GetAddress(), descriptor.GetSize());
|
|
} else {
|
|
/* Input receive buffer. */
|
|
constexpr auto BufferIndex = CommandMeta::InMessageBufferIndex + ((CommandMeta::NumInBuffers + Info.recv_map_alias_index) * MapAliasDescriptorSize / sizeof(util::BitPack32));
|
|
|
|
const MessageBuffer::MapAliasDescriptor descriptor(message_buffer, BufferIndex);
|
|
return T(descriptor.GetAddress(), descriptor.GetSize());
|
|
}
|
|
} else if constexpr (Info.arg_type == ArgumentType::ProcessId) {
|
|
return T{ os::ProcessId{ message_buffer.GetProcessId(CommandMeta::InMessageProcessIdIndex) } };
|
|
} else {
|
|
static_assert(!std::is_same<T, T>::value, "Invalid ArgumentType<T>");
|
|
}
|
|
}
|
|
public:
|
|
static ALWAYS_INLINE Result ValidateCommandFormat(const MessageBuffer &message_buffer) {
|
|
/* Validate the message header. */
|
|
constexpr auto ExpectedMessageHeader = GetMessageHeaderForCheck(CommandMeta::InMessageHeader);
|
|
R_UNLESS(message_buffer.Get64(0) == ExpectedMessageHeader, tipc::ResultInvalidMessageFormat());
|
|
|
|
/* Validate the special header. */
|
|
if constexpr (CommandMeta::HasInSpecialHeader) {
|
|
constexpr auto ExpectedSpecialHeader = GetSpecialHeaderForCheck(CommandMeta::InSpecialHeader);
|
|
constexpr auto SpecialHeaderIndex = MessageBuffer::MessageHeader::GetDataSize() / sizeof(util::BitPack32);
|
|
R_UNLESS(message_buffer.Get32(SpecialHeaderIndex) == ExpectedSpecialHeader, tipc::ResultInvalidMessageFormat());
|
|
}
|
|
|
|
R_SUCCEED();
|
|
}
|
|
|
|
template<size_t Ix>
|
|
static ALWAYS_INLINE auto DeserializeArgument(const MessageBuffer &message_buffer, const OutRawHolderType &out_raw_holder, OutHandleHolderType &out_handles_holder) {
|
|
return DeserializeArgumentImpl<Ix>(message_buffer, out_raw_holder, out_handles_holder);
|
|
}
|
|
|
|
static ALWAYS_INLINE void SerializeResults(const MessageBuffer &message_buffer, const Result &result, const OutRawHolderType &out_raw_holder, const OutHandleHolderType &out_handles_holder) {
|
|
/* Set output headers. */
|
|
message_buffer.Set(CommandMeta::OutMessageHeader);
|
|
if constexpr (CommandMeta::HasOutSpecialHeader) {
|
|
message_buffer.Set(CommandMeta::OutSpecialHeader);
|
|
}
|
|
|
|
/* Set output handles. */
|
|
out_handles_holder.CopyTo(message_buffer);
|
|
|
|
/* Set output result. */
|
|
message_buffer.Set(CommandMeta::OutMessageResultIndex, result.GetValue());
|
|
|
|
/* Set output data. */
|
|
out_raw_holder.CopyTo(message_buffer);
|
|
}
|
|
};
|
|
|
|
struct FunctionTraits {
|
|
public:
|
|
template<typename R, typename C, typename... A>
|
|
static std::tuple<A...> GetArgumentsImpl(R(C::*)(A...));
|
|
|
|
template<typename R, typename C, typename... A>
|
|
static R GetReturnImpl(R(C::*)(A...));
|
|
};
|
|
|
|
template<u16 _CommmandId, auto ServiceCommandImpl, typename ClassType>
|
|
constexpr ALWAYS_INLINE Result InvokeServiceCommandImpl(ClassType *object, const MessageBuffer &message_buffer) {
|
|
using Return = decltype(FunctionTraits::GetReturnImpl(ServiceCommandImpl));
|
|
using TrueArgumentsTuple = decltype(FunctionTraits::GetArgumentsImpl(ServiceCommandImpl));
|
|
|
|
using CommandMeta = CommandMetaInfo<_CommmandId, TrueArgumentsTuple>;
|
|
using Processor = CommandProcessor<CommandMeta>;
|
|
/* TODO: ValidateClassType is valid? */
|
|
|
|
constexpr bool ReturnsResult = std::is_same<Return, Result>::value;
|
|
constexpr bool ReturnsVoid = std::is_same<Return, void>::value;
|
|
static_assert(ReturnsResult || ReturnsVoid, "Service Commands must return Result or void.");
|
|
|
|
/* Validate that the command is valid. */
|
|
R_TRY(Processor::ValidateCommandFormat(message_buffer));
|
|
|
|
/* Deserialize arguments. */
|
|
typename Processor::OutRawHolderType out_raw_holder;
|
|
typename Processor::OutHandleHolderType out_handles_holder;
|
|
const Result command_result = [&]<size_t... Ix>(std::index_sequence<Ix...>) ALWAYS_INLINE_LAMBDA {
|
|
if constexpr (ReturnsResult) {
|
|
R_RETURN((object->*ServiceCommandImpl)(Processor::template DeserializeArgument<Ix>(message_buffer, out_raw_holder, out_handles_holder)...));
|
|
} else {
|
|
(object->*ServiceCommandImpl)(Processor::template DeserializeArgument<Ix>(message_buffer, out_raw_holder, out_handles_holder)...);
|
|
R_SUCCEED();
|
|
}
|
|
}(std::make_index_sequence<std::tuple_size<typename CommandMeta::ArgsType>::value>());
|
|
|
|
/* Serialize output. */
|
|
Processor::SerializeResults(message_buffer, command_result, out_raw_holder, out_handles_holder);
|
|
|
|
R_SUCCEED();
|
|
}
|
|
|
|
}
|
|
#elif defined(ATMOSPHERE_OS_WINDOWS)
|
|
namespace ams::tipc::impl {
|
|
|
|
template<u16 _CommandId, typename ArgumentsTuple>
|
|
struct CommandMetaInfo;
|
|
|
|
template<u16 _CommandId, typename... Arguments>
|
|
struct CommandMetaInfo<_CommandId, std::tuple<Arguments...>> {
|
|
public:
|
|
static constexpr size_t InMessageTotalSize = 0x40; /* TODO */
|
|
static constexpr size_t OutMessageTotalSize = 0x40; /* TODO */
|
|
};
|
|
|
|
template<typename CommandMeta>
|
|
class CommandProcessor {
|
|
public:
|
|
static ALWAYS_INLINE Result ValidateCommandFormat(const MessageBuffer &) {
|
|
AMS_ABORT("TODO");
|
|
}
|
|
};
|
|
|
|
template<u16 _CommmandId, auto ServiceCommandImpl, typename ClassType>
|
|
ALWAYS_INLINE Result InvokeServiceCommandImpl(ClassType *object, const MessageBuffer &message_buffer) {
|
|
/* TODO: Is some kind of emulated serialization interesting/desirable? */
|
|
/* TIPC is generally a huge TODO. */
|
|
AMS_UNUSED(object, message_buffer);
|
|
AMS_ABORT("TIPC serialization not currently supported on Windows.");
|
|
}
|
|
|
|
}
|
|
#elif defined(ATMOSPHERE_OS_LINUX)
|
|
namespace ams::tipc::impl {
|
|
|
|
template<u16 _CommandId, typename ArgumentsTuple>
|
|
struct CommandMetaInfo;
|
|
|
|
template<u16 _CommandId, typename... Arguments>
|
|
struct CommandMetaInfo<_CommandId, std::tuple<Arguments...>> {
|
|
public:
|
|
static constexpr size_t InMessageTotalSize = 0x40; /* TODO */
|
|
static constexpr size_t OutMessageTotalSize = 0x40; /* TODO */
|
|
};
|
|
|
|
template<typename CommandMeta>
|
|
class CommandProcessor {
|
|
public:
|
|
static ALWAYS_INLINE Result ValidateCommandFormat(const MessageBuffer &) {
|
|
AMS_ABORT("TODO");
|
|
}
|
|
};
|
|
|
|
template<u16 _CommmandId, auto ServiceCommandImpl, typename ClassType>
|
|
ALWAYS_INLINE Result InvokeServiceCommandImpl(ClassType *object, const MessageBuffer &message_buffer) {
|
|
/* TODO: Is some kind of emulated serialization interesting/desirable? */
|
|
/* TIPC is generally a huge TODO. */
|
|
AMS_UNUSED(object, message_buffer);
|
|
AMS_ABORT("TIPC serialization not currently supported on Linux.");
|
|
}
|
|
|
|
}
|
|
#elif defined(ATMOSPHERE_OS_MACOS)
|
|
namespace ams::tipc::impl {
|
|
|
|
template<u16 _CommandId, typename ArgumentsTuple>
|
|
struct CommandMetaInfo;
|
|
|
|
template<u16 _CommandId, typename... Arguments>
|
|
struct CommandMetaInfo<_CommandId, std::tuple<Arguments...>> {
|
|
public:
|
|
static constexpr size_t InMessageTotalSize = 0x40; /* TODO */
|
|
static constexpr size_t OutMessageTotalSize = 0x40; /* TODO */
|
|
};
|
|
|
|
template<typename CommandMeta>
|
|
class CommandProcessor {
|
|
public:
|
|
static ALWAYS_INLINE Result ValidateCommandFormat(const MessageBuffer &) {
|
|
AMS_ABORT("TODO");
|
|
}
|
|
};
|
|
|
|
template<u16 _CommmandId, auto ServiceCommandImpl, typename ClassType>
|
|
ALWAYS_INLINE Result InvokeServiceCommandImpl(ClassType *object, const MessageBuffer &message_buffer) {
|
|
/* TODO: Is some kind of emulated serialization interesting/desirable? */
|
|
/* TIPC is generally a huge TODO. */
|
|
AMS_UNUSED(object, message_buffer);
|
|
AMS_ABORT("TIPC serialization not currently supported on macOS.");
|
|
}
|
|
|
|
}
|
|
|
|
#else
|
|
#error "Unknown OS for tipc Command serialization."
|
|
#endif
|