mirror of
https://github.com/Atmosphere-NX/Atmosphere
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196 lines
6.5 KiB
C++
196 lines
6.5 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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#include <stratosphere.hpp>
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#include "htclow_mux_channel_impl.hpp"
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#include "../ctrl/htclow_ctrl_state_machine.hpp"
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namespace ams::htclow::mux {
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void ChannelImpl::SetVersion(s16 version) {
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/* Sanity check the version. */
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AMS_ASSERT(version <= ProtocolVersion);
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/* Set version. */
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m_version = version;
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m_send_buffer.SetVersion(version);
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}
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Result ChannelImpl::CheckState(std::initializer_list<ChannelState> states) const {
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/* Determine if we have a matching state. */
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bool match = false;
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for (const auto &state : states) {
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match |= m_state == state;
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}
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/* If we do, we're good. */
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R_SUCCEED_IF(match);
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/* Otherwise, return appropriate failure error. */
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if (m_state == ChannelState_Disconnected) {
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return htclow::ResultInvalidChannelStateDisconnected();
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} else {
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return htclow::ResultInvalidChannelState();
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}
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}
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Result ChannelImpl::CheckPacketVersion(s16 version) const {
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R_UNLESS(version == m_version, htclow::ResultChannelVersionNotMatched());
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return ResultSuccess();
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}
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Result ChannelImpl::ProcessReceivePacket(const PacketHeader &header, const void *body, size_t body_size) {
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switch (header.packet_type) {
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case PacketType_Data:
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return this->ProcessReceiveDataPacket(header.version, header.share, header.offset, body, body_size);
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case PacketType_MaxData:
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return this->ProcessReceiveMaxDataPacket(header.version, header.share);
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case PacketType_Error:
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return this->ProcessReceiveErrorPacket();
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default:
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return htclow::ResultProtocolError();
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}
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}
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Result ChannelImpl::ProcessReceiveDataPacket(s16 version, u64 share, u32 offset, const void *body, size_t body_size) {
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/* Check our state. */
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R_TRY(this->CheckState({ChannelState_Connectable, ChannelState_Connected}));
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/* Check the packet version. */
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R_TRY(this->CheckPacketVersion(version));
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/* Check that offset matches. */
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R_UNLESS(offset == static_cast<u32>(m_offset), htclow::ResultProtocolError());
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/* Check for flow control, if we should. */
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if (m_config.flow_control_enabled) {
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/* Check that the share increases monotonically. */
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if (m_share.has_value()) {
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R_UNLESS(m_share.value() <= share, htclow::ResultProtocolError());
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}
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/* Update our share. */
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m_share = share;
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/* Signal our event. */
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this->SignalSendPacketEvent();
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}
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/* Update our offset. */
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m_offset += body_size;
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/* Write the packet body. */
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R_ABORT_UNLESS(m_receive_buffer.Write(body, body_size));
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/* Notify the data was received. */
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m_task_manager->NotifyReceiveData(m_channel, m_receive_buffer.GetDataSize());
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return ResultSuccess();
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}
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Result ChannelImpl::ProcessReceiveMaxDataPacket(s16 version, u64 share) {
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/* Check our state. */
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R_TRY(this->CheckState({ChannelState_Connectable, ChannelState_Connected}));
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/* Check the packet version. */
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R_TRY(this->CheckPacketVersion(version));
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/* Check for flow control, if we should. */
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if (m_config.flow_control_enabled) {
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/* Check that the share increases monotonically. */
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if (m_share.has_value()) {
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R_UNLESS(m_share.value() <= share, htclow::ResultProtocolError());
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}
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/* Update our share. */
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m_share = share;
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/* Signal our event. */
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this->SignalSendPacketEvent();
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}
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return ResultSuccess();
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}
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Result ChannelImpl::ProcessReceiveErrorPacket() {
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if (m_state == ChannelState_Connected || m_state == ChannelState_Disconnected) {
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this->ShutdownForce();
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}
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return ResultSuccess();
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}
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void ChannelImpl::UpdateState() {
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/* Check if shutdown must be forced. */
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if (m_state_machine->IsUnsupportedServiceChannelToShutdown(m_channel)) {
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this->ShutdownForce();
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}
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/* Check if we're readied. */
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if (m_state_machine->IsReadied()) {
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m_task_manager->NotifyConnectReady();
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}
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/* Update our state transition. */
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if (m_state_machine->IsConnectable(m_channel)) {
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if (m_state == ChannelState_Unconnectable) {
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this->SetState(ChannelState_Connectable);
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}
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} else if (m_state_machine->IsUnconnectable()) {
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if (m_state == ChannelState_Connectable) {
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this->SetState(ChannelState_Unconnectable);
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m_state_machine->SetNotConnecting(m_channel);
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} else if (m_state == ChannelState_Connected) {
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this->ShutdownForce();
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}
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}
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}
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void ChannelImpl::ShutdownForce() {
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/* Clear our send buffer. */
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m_send_buffer.Clear();
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/* Set our state to shutdown. */
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this->SetState(ChannelState_Disconnected);
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}
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void ChannelImpl::SetState(ChannelState state) {
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/* Check that we can perform the transition. */
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AMS_ABORT_UNLESS(IsStateTransitionAllowed(m_state, state));
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/* Perform the transition. */
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this->SetStateWithoutCheck(state);
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}
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void ChannelImpl::SetStateWithoutCheck(ChannelState state) {
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/* Change our state. */
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if (m_state != state) {
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m_state = state;
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m_state_change_event.Signal();
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}
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/* If relevant, notify disconnect. */
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if (m_state == ChannelState_Disconnected) {
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m_task_manager->NotifyDisconnect(m_channel);
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}
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}
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void ChannelImpl::SignalSendPacketEvent() {
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if (m_event != nullptr) {
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m_event->Signal();
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}
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}
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}
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