mirror of
https://github.com/Atmosphere-NX/Atmosphere
synced 2024-11-14 00:56:35 +00:00
7ca83c9d3b
This caught an embarrassingly large number of bugs.
502 lines
18 KiB
C++
502 lines
18 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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#include <stratosphere.hpp>
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#include "htclow_ctrl_service.hpp"
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#include "htclow_ctrl_state.hpp"
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#include "htclow_ctrl_state_machine.hpp"
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#include "htclow_ctrl_packet_factory.hpp"
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#include "htclow_service_channel_parser.hpp"
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#include "htclow_ctrl_service_channels.hpp"
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#include "../mux/htclow_mux.hpp"
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namespace ams::htclow::ctrl {
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namespace {
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constexpr const char BeaconPacketResponseTemplate[] =
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"{\r\n"
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" \"Spec\" : \"%s\",\r\n"
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" \"Conn\" : \"%s\",\r\n"
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" \"HW\" : \"%s\",\r\n"
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" \"Name\" : \"%s\",\r\n"
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" \"SN\" : \"%s\",\r\n"
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" \"FW\" : \"%s\",\r\n"
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" \"Prot\" : \"%d\"\r\n"
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"}\r\n";
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}
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HtcctrlService::HtcctrlService(HtcctrlPacketFactory *pf, HtcctrlStateMachine *sm, mux::Mux *mux)
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: m_settings_holder(), m_beacon_response(), m_information_body(), m_packet_factory(pf), m_state_machine(sm), m_mux(mux), m_event(os::EventClearMode_ManualClear),
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m_send_buffer(pf), m_mutex(), m_condvar(), m_service_channels_packet(), m_version(ProtocolVersion)
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{
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/* Lock ourselves. */
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std::scoped_lock lk(m_mutex);
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/* Set the mux version. */
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m_mux->SetVersion(m_version);
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/* Update our beacon response. */
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this->UpdateBeaconResponse(this->GetConnectionType(impl::DriverType::Unknown));
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}
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const char *HtcctrlService::GetConnectionType(impl::DriverType driver_type) const {
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switch (driver_type) {
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case impl::DriverType::Socket: return "TCP";
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case impl::DriverType::Usb: return "USB-gen2";
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case impl::DriverType::PlainChannel: return "HBPC-gen2";
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default: return "Unknown";
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}
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}
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void HtcctrlService::UpdateBeaconResponse(const char *connection) {
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/* Load settings into the holder. */
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m_settings_holder.LoadSettings();
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/* Print our beacon response. */
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util::SNPrintf(m_beacon_response, sizeof(m_beacon_response), BeaconPacketResponseTemplate,
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m_settings_holder.GetSpec(),
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connection,
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m_settings_holder.GetHardwareType(),
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m_settings_holder.GetTargetName(),
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m_settings_holder.GetSerialNumber(),
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m_settings_holder.GetFirmwareVersion(),
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ProtocolVersion
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);
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}
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void HtcctrlService::UpdateInformationBody(const char *status) {
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util::SNPrintf(m_information_body, sizeof(m_information_body), "{\r\n \"Status\" : \"%s\"\r\n}\r\n", status);
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}
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void HtcctrlService::SetDriverType(impl::DriverType driver_type) {
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/* Lock ourselves. */
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std::scoped_lock lk(m_mutex);
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/* Update our beacon response. */
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this->UpdateBeaconResponse(this->GetConnectionType(driver_type));
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}
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Result HtcctrlService::CheckReceivedHeader(const HtcctrlPacketHeader &header) const {
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/* Check the packet signature. */
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AMS_ASSERT(header.signature == HtcctrlSignature);
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/* Validate version. */
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R_UNLESS(header.version == 1, htclow::ResultProtocolError());
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/* Switch on the packet type. */
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switch (header.packet_type) {
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case HtcctrlPacketType_ConnectFromHost:
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case HtcctrlPacketType_SuspendFromHost:
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case HtcctrlPacketType_ResumeFromHost:
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case HtcctrlPacketType_DisconnectFromHost:
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case HtcctrlPacketType_BeaconQuery:
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R_UNLESS(header.body_size == 0, htclow::ResultProtocolError());
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break;
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case HtcctrlPacketType_ReadyFromHost:
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R_UNLESS(header.body_size <= sizeof(HtcctrlPacketBody), htclow::ResultProtocolError());
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break;
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default:
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return htclow::ResultProtocolError();
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}
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return ResultSuccess();
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}
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Result HtcctrlService::ProcessReceivePacket(const HtcctrlPacketHeader &header, const void *body, size_t body_size) {
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/* Lock ourselves. */
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std::scoped_lock lk(m_mutex);
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switch (header.packet_type) {
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case HtcctrlPacketType_ConnectFromHost:
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return this->ProcessReceiveConnectPacket();
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case HtcctrlPacketType_ReadyFromHost:
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return this->ProcessReceiveReadyPacket(body, body_size);
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case HtcctrlPacketType_SuspendFromHost:
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return this->ProcessReceiveSuspendPacket();
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case HtcctrlPacketType_ResumeFromHost:
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return this->ProcessReceiveResumePacket();
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case HtcctrlPacketType_DisconnectFromHost:
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return this->ProcessReceiveDisconnectPacket();
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case HtcctrlPacketType_BeaconQuery:
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return this->ProcessReceiveBeaconQueryPacket();
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default:
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return this->ProcessReceiveUnexpectedPacket();
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}
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}
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Result HtcctrlService::ProcessReceiveConnectPacket() {
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/* Try to transition to sent connect state. */
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if (R_FAILED(this->SetState(HtcctrlState_SentConnectFromHost))) {
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/* We couldn't transition to sent connect. */
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return this->ProcessReceiveUnexpectedPacket();
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}
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/* Send a connect packet. */
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m_send_buffer.AddPacket(m_packet_factory->MakeConnectPacket(m_beacon_response, util::Strnlen(m_beacon_response, sizeof(m_beacon_response)) + 1));
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/* Signal our event. */
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m_event.Signal();
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return ResultSuccess();
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}
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Result HtcctrlService::ProcessReceiveReadyPacket(const void *body, size_t body_size) {
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/* Update our service channels. */
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this->UpdateServiceChannels(body, body_size);
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/* Check that our version is correct. */
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if (m_version < ProtocolVersion) {
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return this->ProcessReceiveUnexpectedPacket();
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}
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/* Set our version. */
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m_version = ProtocolVersion;
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m_mux->SetVersion(m_version);
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/* Set our state. */
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if (R_FAILED(this->SetState(HtcctrlState_SentReadyFromHost))) {
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return this->ProcessReceiveUnexpectedPacket();
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}
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/* Ready ourselves. */
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this->TryReadyInternal();
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return ResultSuccess();
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}
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Result HtcctrlService::ProcessReceiveSuspendPacket() {
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/* Try to set our state to enter sleep. */
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if (R_FAILED(this->SetState(HtcctrlState_EnterSleep))) {
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/* We couldn't transition to sleep. */
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return this->ProcessReceiveUnexpectedPacket();
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}
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return ResultSuccess();
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}
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Result HtcctrlService::ProcessReceiveResumePacket() {
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/* If our state is sent-resume, change to readied. */
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if (m_state_machine->GetHtcctrlState() != HtcctrlState_SentResumeFromTarget || R_FAILED(this->SetState(HtcctrlState_Ready))) {
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/* We couldn't perform a valid resume transition. */
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return this->ProcessReceiveUnexpectedPacket();
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}
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return ResultSuccess();
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}
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Result HtcctrlService::ProcessReceiveDisconnectPacket() {
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/* Set our state. */
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R_TRY(this->SetState(HtcctrlState_Disconnected));
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return ResultSuccess();
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}
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Result HtcctrlService::ProcessReceiveBeaconQueryPacket() {
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/* Send a beacon response packet. */
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m_send_buffer.AddPacket(m_packet_factory->MakeBeaconResponsePacket(m_beacon_response, util::Strnlen(m_beacon_response, sizeof(m_beacon_response)) + 1));
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/* Signal our event. */
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m_event.Signal();
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return ResultSuccess();
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}
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Result HtcctrlService::ProcessReceiveUnexpectedPacket() {
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/* Set our state. */
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R_TRY(this->SetState(HtcctrlState_Error));
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/* Send a disconnection packet. */
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m_send_buffer.AddPacket(m_packet_factory->MakeDisconnectPacket());
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/* Signal our event. */
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m_event.Signal();
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/* Return unexpected packet error. */
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return htclow::ResultHtcctrlReceiveUnexpectedPacket();
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}
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void HtcctrlService::ProcessSendConnectPacket() {
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/* Set our state. */
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const Result result = this->SetState(HtcctrlState_Connected);
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R_ASSERT(result);
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}
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void HtcctrlService::ProcessSendReadyPacket() {
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/* Set our state. */
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if (m_state_machine->GetHtcctrlState() == HtcctrlState_SentReadyFromHost) {
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const Result result = this->SetState(HtcctrlState_Ready);
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R_ASSERT(result);
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}
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/* Update channel states. */
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m_mux->UpdateChannelState();
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}
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void HtcctrlService::ProcessSendSuspendPacket() {
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/* Set our state. */
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const Result result = this->SetState(HtcctrlState_SentSuspendFromTarget);
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R_ASSERT(result);
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}
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void HtcctrlService::ProcessSendResumePacket() {
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/* Set our state. */
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const Result result = this->SetState(HtcctrlState_SentResumeFromTarget);
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R_ASSERT(result);
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}
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void HtcctrlService::ProcessSendDisconnectPacket() {
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/* Set our state. */
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const Result result = this->SetState(HtcctrlState_Disconnected);
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R_ASSERT(result);
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}
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void HtcctrlService::UpdateServiceChannels(const void *body, size_t body_size) {
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/* Copy the packet body to our member. */
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std::memcpy(m_service_channels_packet, body, body_size);
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/* Parse service channels. */
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impl::ChannelInternalType channels[10];
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int num_channels;
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s16 version = m_version;
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ctrl::ParseServiceChannel(std::addressof(version), channels, std::addressof(num_channels), util::size(channels), m_service_channels_packet, body_size);
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/* Update version. */
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m_version = version;
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/* Notify state machine of supported channels. */
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m_state_machine->NotifySupportedServiceChannels(channels, num_channels);
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}
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void HtcctrlService::TryReadyInternal() {
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/* If we can send ready, do so. */
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if (m_state_machine->IsPossibleToSendReady()) {
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/* Print the channels. */
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char channel_str[0x100];
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this->PrintServiceChannels(channel_str, sizeof(channel_str));
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/* Send a ready packet. */
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m_send_buffer.AddPacket(m_packet_factory->MakeReadyPacket(channel_str, util::Strnlen(channel_str, sizeof(channel_str)) + 1));
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/* Signal our event. */
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m_event.Signal();
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/* Set connecting checked in state machine. */
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m_state_machine->SetConnectingChecked();
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}
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}
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bool HtcctrlService::QuerySendPacket(HtcctrlPacketHeader *header, HtcctrlPacketBody *body, int *out_body_size) {
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/* Lock ourselves. */
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std::scoped_lock lk(m_mutex);
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return m_send_buffer.QueryNextPacket(header, body, out_body_size);
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}
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void HtcctrlService::RemovePacket(const HtcctrlPacketHeader &header) {
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/* Lock ourselves. */
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std::scoped_lock lk(m_mutex);
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/* Remove the packet from our buffer. */
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m_send_buffer.RemovePacket(header);
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/* Switch on the packet type. */
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switch (header.packet_type) {
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case HtcctrlPacketType_ConnectFromTarget:
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this->ProcessSendConnectPacket();
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break;
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case HtcctrlPacketType_ReadyFromTarget:
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this->ProcessSendReadyPacket();
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break;
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case HtcctrlPacketType_SuspendFromTarget:
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this->ProcessSendSuspendPacket();
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break;
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case HtcctrlPacketType_ResumeFromTarget:
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this->ProcessSendResumePacket();
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break;
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case HtcctrlPacketType_DisconnectFromTarget:
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this->ProcessSendDisconnectPacket();
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break;
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case HtcctrlPacketType_BeaconResponse:
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case HtcctrlPacketType_InformationFromTarget:
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break;
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default:
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AMS_ABORT("Send unsupported packet 0x%04x\n", static_cast<u32>(header.packet_type));
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}
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}
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void HtcctrlService::TryReady() {
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/* Lock ourselves. */
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std::scoped_lock lk(m_mutex);
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this->TryReadyInternal();
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}
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void HtcctrlService::Disconnect() {
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/* Lock ourselves. */
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std::scoped_lock lk(m_mutex);
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this->DisconnectInternal();
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}
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void HtcctrlService::DisconnectInternal() {
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/* Disconnect, if we need to. */
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if (m_state_machine->IsDisconnectionNeeded()) {
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/* Send a disconnect packet. */
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m_send_buffer.AddPacket(m_packet_factory->MakeDisconnectPacket());
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/* Signal our event. */
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m_event.Signal();
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/* Wait for us to be disconnected. */
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while (!m_state_machine->IsDisconnected()) {
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m_condvar.Wait(m_mutex);
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}
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}
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}
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void HtcctrlService::Resume() {
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/* Lock ourselves. */
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std::scoped_lock lk(m_mutex);
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/* Send resume packet, if we can. */
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if (const auto state = m_state_machine->GetHtcctrlState(); state == HtcctrlState_Sleep || state == HtcctrlState_ExitSleep) {
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/* Send a resume packet. */
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m_send_buffer.AddPacket(m_packet_factory->MakeResumePacket());
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/* Signal our event. */
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m_event.Signal();
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}
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}
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void HtcctrlService::Suspend() {
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/* Lock ourselves. */
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std::scoped_lock lk(m_mutex);
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/* If we can, perform a suspend. */
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if (m_state_machine->GetHtcctrlState() == HtcctrlState_Ready) {
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/* Send a suspend packet. */
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m_send_buffer.AddPacket(m_packet_factory->MakeSuspendPacket());
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/* Signal our event. */
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m_event.Signal();
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/* Wait for our state to transition. */
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for (auto state = m_state_machine->GetHtcctrlState(); state == HtcctrlState_Ready || state == HtcctrlState_SentSuspendFromTarget; state = m_state_machine->GetHtcctrlState()) {
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m_condvar.Wait(m_mutex);
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}
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} else {
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/* Otherwise, just disconnect. */
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this->DisconnectInternal();
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}
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}
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void HtcctrlService::NotifyAwake() {
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/* Lock ourselves. */
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std::scoped_lock lk(m_mutex);
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/* Update our information. */
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this->UpdateInformationBody("Awake");
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/* Send information to host. */
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this->SendInformation();
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}
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void HtcctrlService::NotifyAsleep() {
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/* Lock ourselves. */
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std::scoped_lock lk(m_mutex);
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/* Update our information. */
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this->UpdateInformationBody("Asleep");
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/* Send information to host. */
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this->SendInformation();
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}
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void HtcctrlService::SendInformation() {
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/* If we need information, send information. */
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if (m_state_machine->IsInformationNeeded()) {
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/* Send an information packet. */
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m_send_buffer.AddPacket(m_packet_factory->MakeInformationPacket(m_information_body, util::Strnlen(m_information_body, sizeof(m_information_body)) + 1));
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/* Signal our event. */
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m_event.Signal();
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}
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}
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Result HtcctrlService::NotifyDriverConnected() {
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/* Lock ourselves. */
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std::scoped_lock lk(m_mutex);
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if (m_state_machine->GetHtcctrlState() == HtcctrlState_Sleep) {
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R_TRY(this->SetState(HtcctrlState_ExitSleep));
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} else {
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R_TRY(this->SetState(HtcctrlState_DriverConnected));
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}
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return ResultSuccess();
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}
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Result HtcctrlService::NotifyDriverDisconnected() {
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/* Lock ourselves. */
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std::scoped_lock lk(m_mutex);
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if (m_state_machine->GetHtcctrlState() == HtcctrlState_EnterSleep) {
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R_TRY(this->SetState(HtcctrlState_Sleep));
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} else {
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R_TRY(this->SetState(HtcctrlState_DriverDisconnected));
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}
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return ResultSuccess();
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}
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Result HtcctrlService::SetState(HtcctrlState state) {
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/* Set the state. */
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bool did_transition;
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R_TRY(m_state_machine->SetHtcctrlState(std::addressof(did_transition), state));
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/* Reflect the state transition, if one occurred. */
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if (did_transition) {
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this->ReflectState();
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}
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return ResultSuccess();
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}
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void HtcctrlService::ReflectState() {
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/* If our connected status changed, update. */
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if (m_state_machine->IsConnectedStatusChanged()) {
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m_mux->UpdateChannelState();
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}
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/* If our sleeping status changed, update. */
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if (m_state_machine->IsSleepingStatusChanged()) {
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m_mux->UpdateMuxState();
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}
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/* Broadcast our state transition. */
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m_condvar.Broadcast();
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}
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void HtcctrlService::PrintServiceChannels(char *dst, size_t dst_size) {
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size_t ofs = 0;
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ofs += util::SNPrintf(dst + ofs, dst_size - ofs, "{\r\n \"Chan\" : [\r\n \"%d:%d:%d\"", static_cast<int>(ServiceChannels[0].module_id), ServiceChannels[0].reserved, static_cast<int>(ServiceChannels[0].channel_id));
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for (size_t i = 1; i < util::size(ServiceChannels); ++i) {
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ofs += util::SNPrintf(dst + ofs, dst_size - ofs, ",\r\n \"%d:%d:%d\"", static_cast<int>(ServiceChannels[i].module_id), ServiceChannels[i].reserved, static_cast<int>(ServiceChannels[i].channel_id));
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}
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ofs += util::SNPrintf(dst + ofs, dst_size - ofs, "\r\n],\r\n \"Prot\" : %d\r\n}\r\n", ProtocolVersion);
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}
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}
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