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788 lines (742 loc) · 34.1 KB
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#pragma once
#include "models/RadioModel.h"
#include "models/BandSettings.h"
#include "models/AntennaGeniusModel.h"
#include "core/AppSettings.h"
#include "core/CommandParser.h" // MessageSeverity for onRadioMessage slot
#include "core/RadioDiscovery.h"
#include "core/AudioEngine.h"
#include "core/RigctlServer.h"
#ifdef HAVE_WEBSOCKETS
#include "core/TciServer.h"
#endif
#include "core/RigctlPty.h"
#include "core/SmartLinkClient.h"
#include "core/WanConnection.h"
#include "core/CwDecoder.h"
#include "core/QsoRecorder.h"
#include "core/ClientPuduMonitor.h"
#include "core/DxClusterClient.h"
#ifdef HAVE_MQTT
#include "core/MqttClient.h"
#endif
#include "core/WsjtxClient.h"
#include "core/SpotCollectorClient.h"
#include "core/PotaClient.h"
#include "core/PropForecastClient.h"
#ifdef HAVE_WEBSOCKETS
#include "core/FreeDvClient.h"
#endif
#include <QThread>
#ifdef HAVE_SERIALPORT
#include "core/SerialPortController.h"
#include "core/FlexControlManager.h"
#endif
#ifdef HAVE_MIDI
#include "core/MidiControlManager.h"
#endif
#ifdef HAVE_HIDAPI
#include "core/HidEncoderManager.h"
#endif
#include "core/ShortcutManager.h"
#include "core/SpectrogramBuffer.h"
#include "core/SignalClassifier.h"
#include "core/TgxlConnection.h"
#include "core/PgxlConnection.h"
#include "core/DxccColorProvider.h"
#include <QMainWindow>
#include <QSplitter>
#include <QPointer>
#include <QLabel>
#include <QList>
#include <QMenu>
#include <QStatusBar>
#include <QSizeGrip>
#include <QHash>
#include <QJsonObject>
#include <QTimer>
#include <QEvent>
#include <atomic>
class QAbstractSlider;
class QMediaDevices;
#include "gui/ClientEqApplet.h" // ClientEqApplet::Path enum used in
// onEqCutoffsDragRequested signature.
#include "gui/PersistentDialog.h" // showOrRaisePersistent template needs
// PersistentDialog visible at point of use.
namespace AetherSDR {
class ConnectionPanel;
class TitleBar;
class SpectrumWidget;
class PanadapterApplet;
class PanadapterStack;
class AppletPanel;
class BandPlanManager;
class NetworkDiagnosticsHistory;
class WhatsNewDialog;
class ProfileManagerDialog;
class ProfileImportExportDialog;
class RadioSetupDialog;
class NetworkDiagnosticsDialog;
class MemoryDialog;
class PropDashboardDialog;
class TxBandDialog;
class AetherDspDialog;
class WaveformsDialog;
class DxClusterDialog;
class Ax25HfPacketDecodeDialog;
class MidiMappingDialog;
class CwxPanel;
class DvkPanel;
#ifdef HAVE_RADE
class RADEEngine;
#endif
#if defined(Q_OS_MAC)
class VirtualAudioBridge;
using DaxBridge = VirtualAudioBridge;
#elif defined(HAVE_PIPEWIRE)
class PipeWireAudioBridge;
using DaxBridge = PipeWireAudioBridge;
#endif
class VfoWidget;
// Wheel mode for FlexControl: determines what the encoder knob adjusts
enum class FlexWheelMode { Frequency, Volume, Power, Rit, Xit, AgcT };
class MainWindow : public QMainWindow {
Q_OBJECT
public:
explicit MainWindow(QWidget* parent = nullptr);
~MainWindow() override;
protected:
void closeEvent(QCloseEvent* event) override;
void changeEvent(QEvent* event) override;
void resizeEvent(QResizeEvent* event) override;
void keyPressEvent(QKeyEvent* event) override;
void keyReleaseEvent(QKeyEvent* event) override;
bool eventFilter(QObject* obj, QEvent* event) override;
private slots:
// Radio/connection events
void onConnectionStateChanged(bool connected);
void onConnectionError(const QString& msg);
void onRadioMessage(const QString& text, MessageSeverity severity);
void onSliceAdded(SliceModel* slice);
void onSliceRemoved(int id);
// Master volume — single entry point used by both the title bar slider
// (TitleBar::masterVolumeChanged) and TCI clients (TciServer::
// masterVolumeRequested) so the audio path, persistence, and TCI
// broadcast all stay in lockstep regardless of which UI changed it.
// See issue #1764.
void applyMasterVolume(int pct);
private:
enum class TuneIntent {
IncrementalTune,
AbsoluteJump,
CommandedTargetCenter,
ExplicitPan,
RevealOffscreen,
};
enum class BandStackPreselectResult {
NotNeeded,
Selected,
Unsupported,
};
struct TuneCenteringResult {
double oldCenterMhz{0.0};
double newCenterMhz{0.0};
double bandwidthMhz{0.0};
bool followRevealTriggered{false};
bool hardCenterUsed{false};
int animationDurationMs{0};
};
void buildUI();
void buildMenuBar();
void applyDarkTheme();
// Audio thread helpers — invoke AudioEngine methods on the worker thread (#502)
void audioStartRx();
void audioStopRx();
void audioStartTx(const QHostAddress& addr, quint16 port);
void audioStopTx();
void updatePcAudioTooltip();
void setupAudioDeviceChangeMonitor();
void scheduleAudioDeviceChangeCheck();
void handleAudioDeviceListChanged();
void applyAudioDeviceSelection(const QAudioDevice& inputDevice,
const QAudioDevice& outputDevice,
bool reinitializePcInput);
void resetMissingAudioDevicesToDefault(bool resetInput,
bool resetOutput,
bool reinitializePcInput);
SliceModel* activeSlice() const;
static const char* tuneIntentName(TuneIntent intent);
bool panFollowEnabled() const;
BandStackPreselectResult preselectBandStackForTune(SliceModel* slice, double mhz,
const char* source);
void applyTuneRequest(SliceModel* slice, double mhz,
TuneIntent intent, const char* source);
void applyPanRangeRequest(const QString& panId, double centerMhz,
double bandwidthMhz, const char* source);
// leftFlagEdgeOffsetMhz / rightFlagEdgeOffsetMhz extend the trigger
// comparison out to the VFO flag's outer edges so the flag panel never
// clips a pan edge. Only IncrementalTune consumes the offsets; other
// intents (CommandedTargetCenter, RevealOffscreen) ignore them. Default
// 0.0 preserves the original slice-frequency comparison for non-flag
// callers. See #2761 + panFollowVfo() for the integration site.
TuneCenteringResult revealFrequencyIfNeeded(SliceModel* slice, double mhz,
TuneIntent intent, const char* source,
double leftFlagEdgeOffsetMhz = 0.0,
double rightFlagEdgeOffsetMhz = 0.0);
void logTunePolicyDecision(const char* source, TuneIntent intent,
double oldFreqMhz, double newFreqMhz,
const TuneCenteringResult& result) const;
void mirrorDiversityChildFrequency(SliceModel* slice, double mhz);
// Pan-follow-VFO (#989): if mhz is outside the visible pan window, apply
// the new center locally (immediate repaint) and send the radio command.
TuneCenteringResult panFollowVfo(SliceModel* s, double mhz, const char* source);
SpectrumWidget* spectrum() const;
void setActiveSlice(int sliceId);
void setActiveSliceInternal(int sliceId, bool revealOffscreen);
void queueActiveSliceForSpectrumTarget(int sliceId);
void updateFilterLimitsForMode(const QString& mode);
void centerActiveSliceInPanadapter(bool forceRadioCenter, double centerMhz = -1.0);
void pushSliceOverlay(SliceModel* s);
void updateSplitState();
void disableSplit();
void wirePanadapter(PanadapterApplet* applet);
void schedulePanFpsReconcile(const QString& panId, int reportedFps);
void scheduleWaterfallLineDurationReconcile(const QString& panId, int reportedMs);
void reassertUnmutedSliceAudioForPan(const QString& panId);
void showPanadapterInterlockNotification(const QString& message);
void setActivePanApplet(PanadapterApplet* applet);
void routeCwDecoderOutput(); // wire CW decoder to the pan owning the active slice
// Recompute the CW decoder's run state, panel visibility, and the
// AudioEngine TX tap based on current AppSettings + MOX + slice mode.
// Called on MOX change, RX/TX toggle change, and dialog close (#2417).
void refreshCwDecodeState();
SpectrumWidget* spectrumForSlice(SliceModel* s) const;
void wireVfoWidget(VfoWidget* w, SliceModel* s);
// Push the active RX slice's filter passband (converted from
// protocol offsets to audio-domain low/high) to the RX EQ canvases.
void pushRxFilterCutoffsToEq();
void enableNr2WithWisdom(); // Wisdom-gated NR2 enable (shared by VFO + overlay)
void updateNr2Availability(); // Disable NR2 when Opus is active (#1597)
void registerShortcutActions();
void applyUiScale(int pct);
void stepUiScale(int direction); // +1 = zoom in, -1 = zoom out
void toggleMinimalMode(bool on);
// Toggle the Aetherial Audio Channel Strip — unified TX DSP window.
// Stubbed in step 1 of #2301; step 4 lazy-creates the strip window
// and persists visibility via AppSettings("AetherialStripVisible").
void toggleAetherialStrip();
// Cutoff-line drag handler shared between the floating ClientEqEditor
// and the embedded EQ panel inside AetherialAudioStrip. Writes TX
// filter cutoffs to TransmitModel, or RX filter offsets to the
// active SliceModel (with mode-aware audio→slice conversion).
void onEqCutoffsDragRequested(ClientEqApplet::Path path,
int audioLow, int audioHigh);
// Single handler for TX chain-stage enable/bypass changes from
// ANY widget (docked Chain applet OR channel strip). Refreshes
// the matching applet's enable indicator and forces a repaint on
// both chain widgets so they stay in lock-step.
void onTxChainStageEnabledChanged(AudioEngine::TxChainStage stage,
bool enabled);
// Toggle OS window-chrome on/off (Qt::FramelessWindowHint). Persists
// to AppSettings("FramelessWindow"). When on, users move/close the
// window via keyboard shortcuts or taskbar.
void setFramelessWindow(bool on);
// Lazy-construct + show + raise + activate for a PersistentDialog
// subclass. Collapses the ~10-line "if slot raise else new+setAttribute+
// setFramelessMode+assign+show" boilerplate at every menu callback into
// a one-liner. Auto-registers the dialog so setFramelessWindow() can
// propagate the frameless toggle without an explicit qobject_cast branch.
//
// Slot must be typed QPointer<ConcreteDialog> so the ctor args match.
// Example: showOrRaisePersistent(m_profileManagerDialog, &m_radioModel);
template <class T, class... Args>
void showOrRaisePersistent(QPointer<T>& slot, Args&&... ctorArgs);
// Create-or-raise helper for the AetherDSP Settings dialog. Centralizes
// the ~17 audio-parameter signal connections that every call site was
// duplicating; on first construction wires them once, on subsequent calls
// just raises the existing instance. Returns nullptr only if construction
// failed (e.g. allocation failure).
AetherDspDialog* ensureAetherDspDialog();
// Wire the txBandSettingsRequested, serialSettingsChanged (HAVE_SERIALPORT),
// sliceLetterDisplayModeChanged, and QDialog::finished handlers on a freshly-
// constructed RadioSetupDialog. Called from every entry point (Settings →
// Radio Setup, FlexControl, USB Cables, XVTR overlay) so all four sites share
// identical wiring once they converge on the single PersistentDialog instance
// (#2781). prevComp is the audio-compression value captured at open time so
// the finished handler can detect a change and recreate the RX audio stream.
void wireRadioSetupDialogSignals(RadioSetupDialog* dlg, const QString& prevComp);
// Reorder the main splitter so the applet panel sits on the left or
// right of the panadapter stack. Wired from the dock-side icons in
// the title bar and persisted via "AppletPanelDockedLeft".
void setAppletPanelDockedLeft(bool left);
// Show/hide the applet panel — single source of truth that updates the
// title-bar dock icons and the persisted "AppletPanelVisible" setting.
void setAppletPanelVisible(bool visible);
// Toggle the applet panel between docked-in-splitter and floating in
// its own Qt::Window. Persists "AppletPanelFloating" and updates the
// title-bar pop-out icon highlight.
void toggleAppletPanelFloating(bool floating);
void showMemoryDialog();
void showQuickAddMemoryDialog(const QString& preferredPanId = {});
void updateKeyerAvailability(const QString& mode);
void showNr2ParamPopup(const QPoint& globalPos);
void showNr4ParamPopup(const QPoint& globalPos);
void showDfnrParamPopup(const QPoint& globalPos);
void showMnrSettings();
void applyPanLayout(const QString& layoutId);
void createPansSequentially(const QString& layoutId, int total,
std::shared_ptr<QStringList> panIds, int created);
void showPanadapterSliceCapacityMessage();
void updatePaTempLabel();
void showNetworkDiagnosticsDialog();
void showAx25HfPacketDecodeDialog();
QJsonObject buildControlDevicesSnapshot() const;
void showPropDashboard();
bool confirmClientSlotAvailability(const RadioInfo& info, QList<quint32>* disconnectHandles);
bool confirmClientSlotAvailability(const WanRadioInfo& info, QList<quint32>* disconnectHandles);
void disconnectWanRadioClients(const WanRadioInfo& info);
void startWanRadioConnect(const WanRadioInfo& info, bool promptForClientSlots = true);
void requestWanReconnect();
void showForcedDisconnectDialog(bool wasWan, const RadioInfo& radioInfo, const WanRadioInfo& wanInfo);
void setPaTempDisplayUnit(bool useFahrenheit);
void setPanadapterConnectionAnimation(bool visible, const QString& label = {});
void finishPanadapterConnectionAnimation();
void syncMemorySpot(int memoryIndex);
void removeMemorySpot(int memoryIndex);
void clearMemorySpotFeed();
void rebuildMemorySpotFeed();
void refreshMemoryBrowsePanel();
void updateBandStackIndicator();
SliceModel* preferredMemorySlice(const QString& preferredPanId) const;
bool activateMemorySpot(int memoryIndex, const QString& preferredPanId = {});
void beginSliderShortcutLease(QAbstractSlider* slider);
void renewSliderShortcutLease();
void releaseSliderShortcutLease(bool clearFocus);
BandSnapshot captureCurrentBandState() const;
void restoreBandState(const BandSnapshot& snap);
void startSwrSweep(int requestedSliceId = -1, int sweepPowerWatts = 1);
void clearSwrSweepPlot();
void advanceSwrSweep();
void finishSwrSweep(bool aborted, const QString& reason = {});
void beginSwrSweepRf();
void finishSwrSweepAfterTuneStopped();
void completeSwrSweepFinish();
void commandSwrSweepFrequency(double freqMhz, int settleMs);
void updateSwrSweepOverlay(double currentFreqMhz = -1.0);
void setSwrSweepInputsLocked(bool locked);
void clearSwrSweepForBandChange(int sliceId, const QString& panId,
const QString& newBandName);
SliceModel* swrSweepTargetSlice(int requestedSliceId = -1) const;
void setCwStraightKeyState(bool down, const QString& source = {},
quint64 traceId = 0, quint64 sourceMs = 0);
void setCwLeftPaddleState(bool down, const QString& source = {},
quint64 traceId = 0, quint64 sourceMs = 0);
void setCwRightPaddleState(bool down, const QString& source = {},
quint64 traceId = 0, quint64 sourceMs = 0);
void pushCwPaddleState(const QString& source = {},
quint64 traceId = 0, quint64 sourceMs = 0);
bool handleCwMomentaryShortcut(QKeyEvent* keyEvent, QEvent::Type eventType);
// Core objects
RadioDiscovery m_discovery;
RadioModel m_radioModel;
DxccColorProvider m_dxccProvider;
AudioEngine* m_audio{nullptr};
QThread* m_audioThread{nullptr};
QMediaDevices* m_audioDeviceMonitor{nullptr};
QTimer m_audioDeviceChangeTimer;
QList<QByteArray> m_knownAudioInputIds;
QList<QByteArray> m_knownAudioOutputIds;
bool m_audioDeviceDialogOpen{false};
NetworkDiagnosticsHistory* m_networkDiagnosticsHistory{nullptr};
QsoRecorder* m_qsoRecorder{nullptr};
ClientPuduMonitor* m_finalMonitor{nullptr};
BandSettings m_bandSettings;
// 8-channel CAT: each channel (A-H) binds to a slice index (0-7)
static constexpr int kCatChannels = 8;
RigctlServer* m_rigctlServers[kCatChannels]{};
RigctlPty* m_rigctlPtys[kCatChannels]{};
#ifdef HAVE_WEBSOCKETS
TciServer* m_tciServer{nullptr};
#endif
SmartLinkClient m_smartLink;
WanConnection m_wanConnection;
AntennaGeniusModel m_antennaGenius;
TgxlConnection m_tgxlConn; // direct TCP 9010 to TGXL for manual relay control
PgxlConnection m_pgxlConn; // direct TCP 9008 to PGXL for telemetry
BandPlanManager* m_bandPlanMgr{nullptr};
CwDecoder m_cwDecoder;
// Dedicated TX-side decoder (#2417). Fed from AudioEngine's
// sidetone mirror; emits decoded text routed to the panel via
// PanadapterApplet::appendCwTextTx so the operator can tell TX
// self-decode apart from RX in the shared text view.
CwDecoder m_cwDecoderTx;
DxClusterClient* m_dxCluster{nullptr};
DxClusterClient* m_rbnClient{nullptr};
#ifdef HAVE_MQTT
MqttClient* m_mqttClient{nullptr};
#endif
WsjtxClient* m_wsjtxClient{nullptr};
SpotCollectorClient* m_spotCollectorClient{nullptr};
PotaClient* m_potaClient{nullptr};
PropForecastClient* m_propForecast{nullptr};
#ifdef HAVE_WEBSOCKETS
FreeDvClient* m_freedvClient{nullptr};
#endif
QThread* m_spotThread{nullptr};
// Spot deduplication: callsign → {freqMhz, timestamp ms}
struct SpotDedup {
double freqMhz;
qint64 addedMs;
};
QHash<QString, SpotDedup> m_spotDedup;
// S History Markers — auto-detected voice signals per panadapter
struct SHistoryEntry {
double freqMhz;
float peakDbm;
QString mode;
qint64 firstDetectedMs{0};
qint64 lastSeenMs{0};
double widthHz{0.0};
bool suspectQrm{false};
// Hit timestamps for the last 10 seconds. Used to detect both
// qualification streaks and QRM persistence (>90% occupancy).
QVector<qint64> hitTimestamps;
bool visible{false};
bool confirmedVoice{false}; // true once shown as a gold voice marker
qint64 lastGapMs{0}; // last time a ≥1 s gap was detected (epoch ms)
// CNN classifier: exponential moving average of carrier probability.
// 0.0 = strongly voice, 1.0 = strongly carrier. 0.5 = unknown (ONNX absent).
float carrierScore{0.5f};
// Last time a voice-width (1.8–8 kHz) signal was detected while this
// entry was already QRM-classified. Drives the "voice over QRM"
// double-marker — shows both a red QRM marker and a gold voice marker.
qint64 voiceOverQrmLastMs{0};
};
struct SHistoryPanState {
double centerMhz{0.0};
double bandwidthMhz{0.0};
qint64 suppressUntilMs{0};
qint64 lastFrameMs{0};
float fpsEwma{25.0f}; // EWMA of observed frames/sec; starts at 25 fps
};
QHash<QString, QVector<SHistoryEntry>> m_sHistoryData; // panId → entries
QHash<QString, SHistoryPanState> m_sHistoryPanState;
QTimer* m_sHistoryExpireTimer{nullptr};
bool m_sHistoryEnabled{false};
bool m_sHistoryQrmEnabled{false};
bool m_smartSpotFilterEnabled{false};
qint64 m_smartSpotFilterEnabledMs{0};
// Single apply path used by the SpotHub Display tab toggles (no
// View-menu duplicate). Updates the member flag, persists via
// AppSettings, pushes to all spectrum widgets, and clears the data
// hashes when both markers go off.
void applySHistoryEnabled(bool on);
void applySHistoryQrmEnabled(bool on);
void rebuildSHistoryForPan(const QString& panId);
void expireSHistoryMarkers();
void onSpectrumReadyForSHistory(quint32 streamId, const QVector<float>& bins, qint64 emittedNs);
// Per-pan spectrogram ring buffer for CNN classification.
// shared_ptr so QHash COW can copy the pointer on detach without deep-copying
// the 32-frame ring buffer (unique_ptr is non-copyable, which breaks QHash::operator[]).
QHash<QString, std::shared_ptr<AetherSDR::SpectrogramBuffer>> m_spectrogramBuffers;
AetherSDR::SignalClassifier m_signalClassifier;
// Batched spot add commands (flushed 1/sec)
QStringList m_spotCmdBatch;
int m_nextPassiveSpotId{-2000000};
QHash<int, qint64> m_passiveSpotExpiryMs;
// External controllers run on a dedicated worker thread (#502)
QThread* m_extCtrlThread{nullptr};
#ifdef HAVE_SERIALPORT
SerialPortController* m_serialPort{nullptr};
FlexControlManager* m_flexControl{nullptr};
QTimer m_flexCoalesceTimer;
double m_flexTargetMhz{-1.0};
FlexWheelMode m_flexWheelMode{FlexWheelMode::Frequency};
#endif
#ifdef HAVE_HIDAPI
HidEncoderManager* m_hidEncoder{nullptr};
QTimer m_hidCoalesceTimer;
int m_hidPendingSteps{0};
#endif
#ifdef HAVE_MIDI
MidiControlManager* m_midiControl{nullptr};
QTimer m_midiTuneIdleTimer;
double m_midiTuneTargetMhz{-1.0};
void registerMidiParams();
struct MidiActionTrace {
QString paramId;
quint64 traceId{0};
quint64 callbackMs{0};
quint64 dispatchMs{0};
};
MidiActionTrace m_currentMidiTrace;
// MIDI param setters indexed by ID — called on main thread from
// paramActionTrace signal (worker thread cannot call them directly). (#502)
QHash<QString, std::function<void(float)>> m_midiSetters;
QHash<QString, std::function<float()>> m_midiGetters;
#endif
// GUI — left sidebar
ConnectionPanel* m_connPanel{nullptr};
// GUI — main area
TitleBar* m_titleBar{nullptr};
::QSizeGrip* m_sizeGrip{nullptr};
QSplitter* m_splitter{nullptr};
PanadapterStack* m_panStack{nullptr};
QPointer<PanadapterApplet> m_panApplet; // backward compat alias to active applet
QPointer<PanadapterApplet> m_cwDecoderApplet; // applet receiving CW decoder output
// GUI — right applet panel
AppletPanel* m_appletPanel{nullptr};
// Modeless dialogs
QPointer<DxClusterDialog> m_spotHubDialog;
QPointer<RadioSetupDialog> m_radioSetupDialog;
QPointer<NetworkDiagnosticsDialog> m_networkDiagnosticsDialog;
QPointer<PropDashboardDialog> m_propDashboardDialog;
QPointer<TxBandDialog> m_txBandDialog;
QPointer<MemoryDialog> m_memoryDialog;
QPointer<Ax25HfPacketDecodeDialog> m_ax25HfPacketDecodeDialog;
QPointer<WhatsNewDialog> m_whatsNewDialog;
QPointer<AetherDspDialog> m_dspDialog;
QPointer<WaveformsDialog> m_waveformsDialog;
QPointer<ProfileManagerDialog> m_profileManagerDialog;
QPointer<ProfileImportExportDialog> m_profileImportExportDialog;
#ifdef HAVE_MIDI
QPointer<MidiMappingDialog> m_midiDialog;
#endif
// Tracks every PersistentDialog created via showOrRaisePersistent() so
// setFramelessWindow() can propagate the frameless toggle without an
// explicit per-dialog qobject_cast branch. QPointer entries auto-null on
// dialog destruction (QSet::insert handles deduplication on null QPointer
// re-creation by removing them on iteration via removeIf below).
QList<QPointer<PersistentDialog>> m_persistentDialogs;
// Menus
QMenu* m_profilesMenu{nullptr};
QAction* m_txBandAction{nullptr};
// Audio stream re-creation flag (after profile load)
bool m_needAudioStream{false};
// Pending WAN radio (between requestConnect and connectReady)
WanRadioInfo m_pendingWanRadio;
QTimer m_wanReconnectTimer;
bool m_wanReconnectAttemptInProgress{false};
// Status bar labels (SmartSDR-style)
QLabel* m_connStatusLabel{nullptr}; // hidden, used for connection state logic
QLabel* m_addPanLabel{nullptr};
QLabel* m_tnfIndicator{nullptr};
QLabel* m_cwxIndicator{nullptr};
CwxPanel* m_cwxPanel{nullptr};
DvkPanel* m_dvkPanel{nullptr};
QLabel* m_dvkIndicator{nullptr};
QLabel* m_fdxIndicator{nullptr};
QLabel* m_radioInfoLabel{nullptr};
QLabel* m_radioVersionLabel{nullptr};
QLabel* m_stationLabel{nullptr};
QLabel* m_stationNickLabel{nullptr};
QLabel* m_gpsLabel{nullptr};
QLabel* m_gpsStatusLabel{nullptr};
QLabel* m_bandStackIndicator{nullptr};
QLabel* m_cpuLabel{nullptr};
QLabel* m_memLabel{nullptr};
QTimer* m_cpuTimer{nullptr};
QLabel* m_paTempLabel{nullptr};
QLabel* m_supplyVoltLabel{nullptr};
QLabel* m_networkLabel{nullptr};
QTimer m_networkTooltipRefreshTimer;
QTimer m_perfHeartbeatTimer;
QLabel* m_tgxlSeparator{nullptr};
QLabel* m_tgxlIndicator{nullptr};
QLabel* m_pgxlSeparator{nullptr};
QLabel* m_pgxlIndicator{nullptr};
QLabel* m_txIndicator{nullptr};
QLabel* m_gpsDateLabel{nullptr};
QLabel* m_gpsTimeLabel{nullptr};
// Active slice tracking for multi-slice support
int m_activeSliceId{-1};
bool m_splitActive{false};
int m_splitRxSliceId{-1};
int m_splitTxSliceId{-1};
int m_pendingMemoryRevealSliceId{-1};
double m_pendingMemoryRevealTargetMhz{0.0};
int m_pendingSpectrumTargetSliceId{-1};
// Guard: set true while updating controls from the model so shared tune
// helpers do not echo model-driven changes back to the radio.
bool m_updatingFromModel{false};
bool m_shuttingDown{false};
bool m_panadapterUiPreparedForShutdown{false};
void preparePanadapterUiForShutdown();
void toggleConnectionDialog();
bool m_useSystemClock{true}; // true when no GPS installed
bool m_paTempUseFahrenheit{true};
bool m_hasPaTempTelemetry{false};
float m_lastPaTempC{0.0f};
bool m_userDisconnected{false}; // true after explicit disconnect, blocks auto-connect
QDialog* m_reconnectDlg{nullptr}; // shown on unexpected disconnect, dismissed on reconnect
void cancelTransmitFromIndicator();
class ClientEqEditor* m_clientEqEditor{nullptr}; // lazy — created on first Edit… click
// Lazy-construct the floating EQ editor on first access, with all
// bypass-toggled wiring set up once. Used from every site that
// wants to open the editor (CEQ-TX applet, CEQ-RX applet, TX
// chain widget Eq stage, RX chain widget Eq stage).
class ClientEqEditor* ensureClientEqEditor();
class ClientGateEditor* ensureClientGateEditor();
class ClientCompEditor* ensureClientCompEditor();
class ClientTubeEditor* ensureClientTubeEditor();
class ClientPuduEditor* ensureClientPuduEditor();
// Wire AetherDspWidget parameter signals to AudioEngine setters. Used
// by both the modeless AetherDspDialog and the docked ClientRxDspApplet
// so they push every change into the engine identically.
void wireAetherDspWidget(class AetherDspWidget* widget);
class ClientCompEditor* m_clientCompEditor{nullptr}; // lazy — created on first Edit… click
class ClientGateEditor* m_clientGateEditor{nullptr}; // lazy — created on first Edit… click
class ClientTubeEditor* m_clientTubeEditor{nullptr}; // lazy — created on first Edit… click
class ClientPuduEditor* m_clientPuduEditor{nullptr}; // lazy — created on first Edit… click
class AetherialAudioStrip* m_aetherialStrip{nullptr}; // lazy — created on first egg-nub click (#2301)
// Applet-panel pop-out support (#1713 Phase 6). When floating,
// the panel lives inside m_appletPanelFloatWindow and its splitter
// slot is removed; re-dock appends a fresh slot and re-applies the
// canonical {0, 0, width-260, 260} sizing.
QWidget* m_appletPanelFloatWindow{nullptr};
void floatAppletPanel();
void dockAppletPanel();
bool m_displaySettingsPushed{false}; // one-shot: push saved display settings after pan created
bool m_applyingLayout{false}; // true during layout tear-down/recreate — suppresses panadapterAdded handler
struct PanFpsReconcileState {
QTimer* timer{nullptr};
QPointer<SpectrumWidget> spectrum;
qint64 lastSentMs{0};
int lastSentDesired{-1};
};
QHash<QString, PanFpsReconcileState> m_panFpsReconcile;
QHash<QString, QMetaObject::Connection> m_panFpsReconcileConnections;
struct WaterfallLineDurationReconcileState {
QTimer* timer{nullptr};
QPointer<SpectrumWidget> spectrum;
qint64 lastSentMs{0};
int lastSentDesired{-1};
};
QHash<QString, WaterfallLineDurationReconcileState> m_wfLineDurationReconcile;
QHash<QString, QMetaObject::Connection> m_wfLineDurationReconcileConnections;
QTimer* m_layoutRestoreTimer{nullptr}; // debounced layout rearrange after pans added on connect
qint64 m_layoutRestoreUntilMs{0};
// User layout choices should suppress startup rearrange, but still allow
// the pending timer to restore saved floating pan windows.
bool m_suppressStartupPanLayoutRearrange{false};
QTimer* m_heartbeatMissTimer{nullptr}; // fires every 1.5s to detect missed discovery beats
QTimer* m_bsExpiryTimer{nullptr}; // band-stack bookmark auto-expiry, started on connect only (#1471)
QTimer* m_bsAutoSaveTimer{nullptr}; // band-stack dwell auto-save (single-shot per dwell window)
QTimer* m_agManualConnectTimer{nullptr}; // deferred AG manual connect — cancelled on disconnect
class CwxLocalKeyer* m_cwxLocalKeyer{nullptr}; // local Morse keyer for CWX sidetone
std::unique_ptr<class IambicKeyer> m_iambicKeyer; // local iambic state machine for paddle sidetone
std::atomic<quint64> m_lastCwPaddleTraceId{0};
std::atomic<quint64> m_lastCwPaddleSourceMs{0};
qint64 m_bsConnectGraceUntilMs{0}; // suppress auto-save right after connect
bool m_keyboardShortcutsEnabled{false}; // global enable for keyboard shortcuts (View menu)
bool m_spacePttActive{false}; // true while Space is held for PTT
bool m_cwStraightKeyActive{false};
bool m_cwLeftPaddleActive{false};
bool m_cwRightPaddleActive{false};
QPointer<QAbstractSlider> m_sliderShortcutLease;
QTimer m_sliderShortcutLeaseTimer;
struct SwrSweepSample {
double freqMhz{0.0};
float swr{1.0f};
};
enum class SwrSweepPhase {
Idle,
WaitingForTgxlBypass,
TgxlBypassSettle,
Sweeping,
StoppingTune,
RestoringTgxl,
};
enum class SwrSweepMeterSource {
Radio,
Tgxl,
};
struct SwrSweepState {
bool running{false};
SwrSweepPhase phase{SwrSweepPhase::Idle};
SwrSweepMeterSource meterSource{SwrSweepMeterSource::Radio};
int sliceId{-1};
QString panId;
double originalFreqMhz{0.0};
double originalPanCenterMhz{0.0};
double originalPanBandwidthMhz{0.0};
QVector<double> frequencies;
QVector<SwrSweepSample> samples;
int currentIndex{-1};
qint64 commandIssuedAtMs{0};
qint64 sampleNotBeforeMs{0};
qint64 phaseStartedAtMs{0};
float minimumForwardPowerW{0.0f};
int originalTunePower{0};
int sweepTunePower{1};
bool tuneStarted{false};
bool finalAborted{false};
bool clearPlotOnFinish{false};
bool tgxlOriginalOperate{false};
bool tgxlOriginalBypass{false};
bool tgxlBypassRequested{false};
bool tgxlRestoreNeeded{false};
bool tgxlRestoreTimedOut{false};
QString finalReason;
QString sourceLabel;
QString originalBandName;
bool preserveBandSwitchOnFinish{false};
bool appletPanelWasEnabled{true};
bool panStackWasEnabled{true};
};
SwrSweepState m_swrSweep;
QTimer m_swrSweepTimer;
bool m_minimalMode{false}; // true when spectrum is hidden (#208)
bool m_exitingMinimalMode{false}; // re-entry guard for changeEvent → toggleMinimalMode(false)
bool m_enteringMinimalMode{false}; // suppress changeEvent during enter (macOS deferred WindowStateChange, #2365)
QAction* m_minimalModeAction{nullptr};
bool m_panadapterConnectionAnimationVisible{false};
bool m_waitingForFirstPanadapterFrame{false};
QString m_panadapterConnectionAnimationLabel;
ShortcutManager m_shortcutManager;
#ifdef HAVE_RADE
RADEEngine* m_radeEngine{nullptr};
QThread* m_radeThread{nullptr};
int m_radeSliceId{-1};
bool m_radePrevMute{false};
quint32 m_radeDaxStreamId{0};
QMetaObject::Connection m_radeDaxStreamConn;
QMetaObject::Connection m_freedvMoxConn;
QString m_lastRadeRxCallsign;
void activateRADE(int sliceId);
void deactivateRADE();
void onRadeSliceModeChanged(const QString& mode);
void startFreeDvReporting(int sliceId);
void stopFreeDvReporting(int sliceId);
// FreeDV Docker waveform sync/SNR display state
int m_fdvDisplaySliceId{-1};
int m_fdvSnrMeterIndex{-1};
bool m_fdvSynced{false};
void activateFdvDisplay(int sliceId);
void deactivateFdvDisplay();
void onFdvMeterUpdated(int index, float value);
void onFdvMetersChanged();
#endif
#if defined(Q_OS_MAC) || defined(HAVE_PIPEWIRE)
DaxBridge* m_daxBridge{nullptr};
QString m_savedMicSelection; // restore on stopDax
bool startDax();
void stopDax();
#endif
};
template <class T, class... Args>
void MainWindow::showOrRaisePersistent(QPointer<T>& slot, Args&&... ctorArgs)
{
if (!slot) {
auto* dlg = new T(std::forward<Args>(ctorArgs)..., this);
dlg->setAttribute(Qt::WA_DeleteOnClose);
dlg->setFramelessMode(
AppSettings::instance().value("FramelessWindow", "True").toString() == "True");
slot = dlg;
m_persistentDialogs.append(QPointer<PersistentDialog>(dlg));
}
slot->show();
slot->raise();
slot->activateWindow();
}
} // namespace AetherSDR