mirror of
https://github.com/Atmosphere-NX/Atmosphere.git
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76 lines
4 KiB
C++
76 lines
4 KiB
C++
/*
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* Copyright (c) 2018-2020 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 <stratosphere.hpp>
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#include "../../htclow/htclow_manager.hpp"
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#include "../../htc/server/driver/htc_htclow_driver.hpp"
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#include "../../htc/server/driver/htc_driver_manager.hpp"
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#include "../../htc/server/rpc/htc_rpc_client.hpp"
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#include "rpc/htcs_data_channel_manager.hpp"
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#include "htcs_service.hpp"
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#include "htcs_monitor.hpp"
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namespace ams::htcs::impl {
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class HtcsManagerImpl {
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private:
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mem::StandardAllocator *m_allocator;
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htc::server::driver::HtclowDriver m_driver;
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htc::server::driver::DriverManager m_driver_manager;
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htc::server::rpc::RpcClient m_rpc_client;
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rpc::DataChannelManager m_data_channel_manager;
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HtcsService m_service;
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HtcsMonitor m_monitor;
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public:
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HtcsManagerImpl(mem::StandardAllocator *allocator, htclow::HtclowManager *htclow_manager);
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~HtcsManagerImpl();
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public:
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os::EventType *GetServiceAvailabilityEvent();
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bool IsServiceAvailable();
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public:
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Result CreateSocket(s32 *out_err, s32 *out_desc, bool enable_disconnection_emulation);
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Result DestroySocket(s32 desc);
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Result Connect(s32 *out_err, s32 desc, const SockAddrHtcs &address);
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Result Bind(s32 *out_err, s32 desc, const SockAddrHtcs &address);
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Result Listen(s32 *out_err, s32 desc, s32 backlog_count);
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Result Receive(s32 *out_err, s64 *out_size, char *buffer, size_t size, s32 desc, s32 flags);
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Result Send(s32 *out_err, s64 *out_size, const char *buffer, size_t size, s32 desc, s32 flags);
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Result Shutdown(s32 *out_err, s32 desc, s32 how);
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Result Fcntl(s32 *out_err, s32 *out_res, s32 desc, s32 command, s32 value);
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Result AcceptStart(u32 *out_task_id, Handle *out_handle, s32 desc);
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Result AcceptResults(s32 *out_err, s32 *out_desc, SockAddrHtcs *out_address, u32 task_id, s32 desc);
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Result RecvStart(u32 *out_task_id, Handle *out_handle, s64 size, s32 desc, s32 flags);
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Result RecvResults(s32 *out_err, s64 *out_size, char *buffer, s64 buffer_size, u32 task_id, s32 desc);
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Result SendStart(u32 *out_task_id, Handle *out_handle, const char *buffer, s64 size, s32 desc, s32 flags);
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Result SendLargeStart(u32 *out_task_id, Handle *out_handle, const char **buffers, const s64 *sizes, s32 count, s32 desc, s32 flags);
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Result SendResults(s32 *out_err, s64 *out_size, u32 task_id, s32 desc);
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Result StartSend(u32 *out_task_id, Handle *out_handle, s32 desc, s64 size, s32 flags);
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Result ContinueSend(s64 *out_size, const char *buffer, s64 buffer_size, u32 task_id, s32 desc);
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Result EndSend(s32 *out_err, s64 *out_size, u32 task_id, s32 desc);
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Result StartRecv(u32 *out_task_id, Handle *out_handle, s64 size, s32 desc, s32 flags);
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Result EndRecv(s32 *out_err, s64 *out_size, char *buffer, s64 buffer_size, u32 task_id, s32 desc);
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Result StartSelect(u32 *out_task_id, Handle *out_handle, Span<const int> read_handles, Span<const int> write_handles, Span<const int> exception_handles, s64 tv_sec, s64 tv_usec);
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Result EndSelect(s32 *out_err, bool *out_empty, Span<int> read_handles, Span<int> write_handles, Span<int> exception_handles, u32 task_id);
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};
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}
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