mirror of
https://github.com/saitohirga/WSJT-X.git
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325 lines
10 KiB
C++
325 lines
10 KiB
C++
#ifndef CONFIGURATION_HPP_
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#define CONFIGURATION_HPP_
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#include <QObject>
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#include <QFont>
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#include <QString>
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#include "Radio.hpp"
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#include "models/IARURegions.hpp"
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#include "Audio/AudioDevice.hpp"
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#include "Transceiver/Transceiver.hpp"
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#include "pimpl_h.hpp"
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class QSettings;
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class QWidget;
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class QAudioDeviceInfo;
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class QDir;
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class QNetworkAccessManager;
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class Bands;
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class FrequencyList_v2;
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class StationList;
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class QStringListModel;
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class LotWUsers;
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class DecodeHighlightingModel;
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class LogBook;
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//
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// Class Configuration
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//
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// Encapsulates the control, access and, persistence of user defined
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// settings for the wsjtx GUI. Setting values are accessed through a
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// QDialog window containing concept orientated tab windows.
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//
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// Responsibilities
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//
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// Provides management of the CAT and PTT rig interfaces, providing
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// control access via a minimal generic set of Qt slots and status
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// updates via Qt signals. Internally the rig control capability is
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// farmed out to a separate thread since many of the rig control
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// functions are blocking.
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//
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// All user settings required by the wsjtx GUI are exposed through
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// query methods. Settings only become visible once they have been
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// accepted by the user which is done by clicking the "OK" button on
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// the settings dialog.
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//
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// The QSettings instance passed to the constructor is used to read
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// and write user settings.
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//
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// Pointers to three QAbstractItemModel objects are provided to give
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// access to amateur band information, user working frequencies and,
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// user operating band information. These porovide consistent data
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// models that can be used in GUI lists or tables or simply queried
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// for user defined bands, default operating frequencies and, station
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// descriptions.
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//
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class Configuration final
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: public QObject
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{
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Q_OBJECT
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public:
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using MODE = Transceiver::MODE;
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using TransceiverState = Transceiver::TransceiverState;
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using Frequency = Radio::Frequency;
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using port_type = quint16;
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enum DataMode {data_mode_none, data_mode_USB, data_mode_data};
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Q_ENUM (DataMode)
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enum Type2MsgGen {type_2_msg_1_full, type_2_msg_3_full, type_2_msg_5_only};
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Q_ENUM (Type2MsgGen)
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explicit Configuration (QNetworkAccessManager *, QDir const& temp_directory, QSettings * settings,
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LogBook * logbook, QWidget * parent = nullptr);
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~Configuration ();
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void select_tab (int);
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int exec ();
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bool is_active () const;
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QDir temp_dir () const;
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QDir doc_dir () const;
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QDir data_dir () const;
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QDir writeable_data_dir () const;
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QAudioDeviceInfo const& audio_input_device () const;
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AudioDevice::Channel audio_input_channel () const;
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QAudioDeviceInfo const& audio_output_device () const;
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AudioDevice::Channel audio_output_channel () const;
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// These query methods should be used after a call to exec() to
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// determine if either the audio input or audio output stream
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// parameters have changed. The respective streams should be
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// re-opened if they return true.
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bool restart_audio_input () const;
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bool restart_audio_output () const;
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QString my_callsign () const;
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QString my_grid () const;
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QString Field_Day_Exchange() const;
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QString RTTY_Exchange() const;
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void setEU_VHF_Contest();
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QFont text_font () const;
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QFont decoded_text_font () const;
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qint32 id_interval () const;
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qint32 ntrials() const;
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qint32 aggressive() const;
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qint32 RxBandwidth() const;
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double degrade() const;
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double txDelay() const;
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bool id_after_73 () const;
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bool tx_QSY_allowed () const;
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bool spot_to_psk_reporter () const;
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bool psk_reporter_tcpip () const;
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bool monitor_off_at_startup () const;
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bool monitor_last_used () const;
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bool log_as_RTTY () const;
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bool report_in_comments () const;
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bool prompt_to_log () const;
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bool autoLog() const;
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bool decodes_from_top () const;
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bool insert_blank () const;
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bool DXCC () const;
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bool ppfx() const;
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bool clear_DX () const;
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bool miles () const;
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bool quick_call () const;
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bool disable_TX_on_73 () const;
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bool force_call_1st() const;
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bool alternate_bindings() const;
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int watchdog () const;
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bool TX_messages () const;
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bool split_mode () const;
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bool enable_VHF_features () const;
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bool decode_at_52s () const;
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bool Tune_watchdog_disabled () const;
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bool single_decode () const;
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bool twoPass() const;
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bool bFox() const;
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bool bHound() const;
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bool bLowSidelobes() const;
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bool x2ToneSpacing() const;
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bool x4ToneSpacing() const;
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bool MyDx() const;
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bool CQMyN() const;
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bool NDxG() const;
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bool NN() const;
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bool EMEonly() const;
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bool post_decodes () const;
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QString opCall() const;
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void opCall (QString const&);
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QString udp_server_name () const;
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port_type udp_server_port () const;
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QStringList udp_interface_names () const;
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int udp_TTL () const;
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QString n1mm_server_name () const;
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port_type n1mm_server_port () const;
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bool valid_n1mm_info () const;
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bool broadcast_to_n1mm() const;
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bool lowSidelobes() const;
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bool accept_udp_requests () const;
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bool udpWindowToFront () const;
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bool udpWindowRestore () const;
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Bands * bands ();
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Bands const * bands () const;
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IARURegions::Region region () const;
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FrequencyList_v2 * frequencies ();
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FrequencyList_v2 const * frequencies () const;
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StationList * stations ();
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StationList const * stations () const;
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QStringListModel * macros ();
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QStringListModel const * macros () const;
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QDir save_directory () const;
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QDir azel_directory () const;
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QString rig_name () const;
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Type2MsgGen type_2_msg_gen () const;
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bool pwrBandTxMemory () const;
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bool pwrBandTuneMemory () const;
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LotWUsers const& lotw_users () const;
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DecodeHighlightingModel const& decode_highlighting () const;
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bool highlight_by_mode () const;
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bool highlight_only_fields () const;
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bool include_WAE_entities () const;
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bool highlight_73 () const;
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void setSpecial_Hound();
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void setSpecial_Fox();
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void setSpecial_None();
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bool highlight_DXcall () const;
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bool highlight_DXgrid () const;
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enum class SpecialOperatingActivity {NONE, NA_VHF, EU_VHF, FIELD_DAY, RTTY, WW_DIGI, ARRL_DIGI, FOX, HOUND};
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SpecialOperatingActivity special_op_id () const;
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struct CalibrationParams
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{
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CalibrationParams ()
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: intercept {0.}
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, slope_ppm {0.}
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{
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}
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CalibrationParams (double the_intercept, double the_slope_ppm)
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: intercept {the_intercept}
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, slope_ppm {the_slope_ppm}
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{
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}
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double intercept; // Hertz
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double slope_ppm; // Hertz
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};
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// Temporarily enable or disable calibration adjustments.
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void enable_calibration (bool = true);
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// Set the calibration parameters and enable calibration corrections.
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void set_calibration (CalibrationParams);
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// Set the dynamic grid which is only used if configuration setting is enabled.
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void set_location (QString const&);
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// This method queries if a CAT and PTT connection is operational.
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bool is_transceiver_online () const;
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// Start the rig connection, safe and normal to call when rig is
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// already open.
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bool transceiver_online ();
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// check if a real rig is configured
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bool is_dummy_rig () const;
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// Frequency resolution of the rig
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//
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// 0 - 1Hz
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// 1 - 10Hz rounded
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// -1 - 10Hz truncated
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// 2 - 100Hz rounded
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// -2 - 100Hz truncated
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int transceiver_resolution () const;
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// Close down connection to rig.
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void transceiver_offline ();
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// Set transceiver frequency in Hertz.
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Q_SLOT void transceiver_frequency (Frequency);
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// Setting a non zero TX frequency means split operation
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// rationalise_mode means ensure TX uses same mode as RX.
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Q_SLOT void transceiver_tx_frequency (Frequency = 0u);
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// Set transceiver mode.
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Q_SLOT void transceiver_mode (MODE);
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// Set/unset PTT.
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//
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// Note that this must be called even if VOX PTT is selected since
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// the "Emulate Split" mode requires PTT information to coordinate
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// frequency changes.
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Q_SLOT void transceiver_ptt (bool = true);
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// Attempt to (re-)synchronise transceiver state.
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//
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// Force signal guarantees either a transceiver_update or a
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// transceiver_failure signal.
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//
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// The enforce_mode_and_split parameter ensures that future
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// transceiver updates have the correct mode and split setting
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// i.e. the transceiver is ready for use.
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Q_SLOT void sync_transceiver (bool force_signal = false, bool enforce_mode_and_split = false);
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Q_SLOT void invalidate_audio_input_device (QString error);
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Q_SLOT void invalidate_audio_output_device (QString error);
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//
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// These signals indicate a font has been selected and accepted for
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// the application text and decoded text respectively.
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//
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Q_SIGNAL void text_font_changed (QFont) const;
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Q_SIGNAL void decoded_text_font_changed (QFont) const;
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//
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// This signal is emitted when the UDP server changes
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//
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Q_SIGNAL void udp_server_changed (QString& udp_server_name, QStringList const& network_interfaces) const;
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Q_SIGNAL void udp_server_port_changed (port_type server_port) const;
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Q_SIGNAL void udp_TTL_changed (int TTL) const;
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Q_SIGNAL void accept_udp_requests_changed (bool checked) const;
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// signal updates to decode highlighting
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Q_SIGNAL void decode_highlighting_changed (DecodeHighlightingModel const&) const;
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//
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// These signals are emitted and reflect transceiver state changes
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//
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// signals a change in one of the TransceiverState members
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Q_SIGNAL void transceiver_update (Transceiver::TransceiverState const&) const;
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// Signals a failure of a control rig CAT or PTT connection.
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//
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// A failed rig CAT or PTT connection is fatal and the underlying
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// connections are closed automatically. The connections can be
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// re-established with a call to transceiver_online(true) assuming
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// the fault condition has been rectified or is transient.
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Q_SIGNAL void transceiver_failure (QString const& reason) const;
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// signal announces audio devices are being enumerated
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//
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// As this can take some time, particularly on Linux, consumers
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// might like to notify the user.
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Q_SIGNAL void enumerating_audio_devices ();
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private:
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class impl;
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pimpl<impl> m_;
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};
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ENUM_QDATASTREAM_OPS_DECL (Configuration, DataMode);
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ENUM_QDATASTREAM_OPS_DECL (Configuration, Type2MsgGen);
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ENUM_CONVERSION_OPS_DECL (Configuration, DataMode);
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ENUM_CONVERSION_OPS_DECL (Configuration, Type2MsgGen);
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#endif
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