mirror of
https://github.com/eried/portapack-mayhem.git
synced 2024-10-01 01:26:06 -04:00
324 lines
9.5 KiB
C++
324 lines
9.5 KiB
C++
/*
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* Copyright (C) 2015 Jared Boone, ShareBrained Technology, Inc.
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* Copyright (C) 2020 euquiq
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* Copyright (C) 2023 gullradriel, Nilorea Studio Inc.
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*
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* This file is part of PortaPack.
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2, or (at your option)
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* any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for 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; see the file COPYING. If not, write to
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* the Free Software Foundation, Inc., 51 Franklin Street,
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* Boston, MA 02110-1301, USA.
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*/
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#ifndef _UI_GLASS
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#define _UI_GLASS
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#include "ui.hpp"
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#include "portapack.hpp"
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#include "app_settings.hpp"
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#include "baseband_api.hpp"
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#include "radio_state.hpp"
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#include "receiver_model.hpp"
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#include "ui_widget.hpp"
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#include "ui_navigation.hpp"
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#include "ui_receiver.hpp"
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#include "ui_styles.hpp"
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#include "string_format.hpp"
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#include "analog_audio_app.hpp"
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#include "spectrum_color_lut.hpp"
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namespace ui {
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#define LOOKING_GLASS_SLICE_WIDTH_MAX 20000000
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#define MHZ_DIV 1000000
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// blanked DC (16 centered bins ignored ) and top left and right (2 bins ignored on each side )
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#define LOOKING_GLASS_FASTSCAN 0
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// only first half used (so DC spike is not ignored, it's stopped before the DC spike) minus the 2 first bins
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#define LOOKING_GLASS_SLOWSCAN 1
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// analog audio view like
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#define LOOKING_GLASS_SINGLEPASS 2
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// one spectrum line number of bins
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#define SPEC_NB_BINS 256
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// screen dimensions
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#define SCREEN_W 240
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#define SCREEN_H 320
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class GlassView : public View {
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public:
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GlassView(NavigationView& nav);
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GlassView(const GlassView&);
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GlassView& operator=(const GlassView& nav);
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~GlassView();
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std::string title() const override { return "Looking Glass"; };
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void on_show() override;
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void on_hide() override;
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void focus() override;
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uint8_t get_spec_iq_phase_calibration_value();
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void set_spec_iq_phase_calibration_value(uint8_t cal_value);
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private:
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NavigationView& nav_;
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RxRadioState radio_state_{ReceiverModel::Mode::SpectrumAnalysis};
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// Settings
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rf::Frequency f_min = 260 * MHZ_DIV; // Default to 315/433 remote range.
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rf::Frequency f_max = 500 * MHZ_DIV;
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uint8_t preset_index = 0; // Manual
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uint8_t filter_index = 0; // OFF
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uint8_t trigger = 32;
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uint8_t mode = LOOKING_GLASS_FASTSCAN;
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uint8_t live_frequency_view = 0; // Spectrum
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uint8_t live_frequency_integrate = 3; // Default (3 * old value + new_value) / 4
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uint8_t iq_phase_calibration_value{15}; // initial default RX IQ phase calibration value , used for both max2837 & max2839
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int32_t beep_squelch = 20; // range from -100 to +20, >=20 disabled
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bool beep_enabled = false; // activate on bip button click
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app_settings::SettingsManager settings_{
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"rx_glass"sv,
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app_settings::Mode::RX,
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{
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{"min"sv, &f_min},
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{"max"sv, &f_max},
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{"preset"sv, &preset_index},
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{"filter"sv, &filter_index},
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{"trigger"sv, &trigger},
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{"scan_mode"sv, &mode},
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{"freq_view"sv, &live_frequency_view},
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{"freq_integrate"sv, &live_frequency_integrate},
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{"iq_phase_calibration"sv, &iq_phase_calibration_value}, // we are saving and restoring that CAL from Settings.
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{"beep_squelch"sv, &beep_squelch},
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{"beep_enabled"sv, &beep_enabled},
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}};
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struct preset_entry {
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rf::Frequency min{};
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rf::Frequency max{};
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std::string label{};
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};
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int32_t map(int32_t value, int32_t fromLow, int32_t fromHigh, int32_t toLow, int32_t toHigh);
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std::vector<preset_entry> presets_db{};
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void manage_beep_audio();
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void update_display_beep();
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void update_min(int32_t v);
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void update_max(int32_t v);
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void update_range_field();
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void get_max_power(const ChannelSpectrum& spectrum, uint8_t bin, uint8_t& max_power);
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rf::Frequency get_freq_from_bin_pos(uint8_t pos);
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void on_marker_change();
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void retune();
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bool process_bins(uint8_t* powerlevel);
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void on_channel_spectrum(const ChannelSpectrum& spectrum);
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void do_timers();
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int64_t next_mult_of(int64_t num, int64_t multiplier);
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void adjust_range(int64_t* f_min, int64_t* f_max, int64_t width);
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void on_range_changed();
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void reset_live_view();
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void add_spectrum_pixel(uint8_t power);
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void plot_marker(uint8_t pos);
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void load_presets();
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void populate_presets();
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void launch_audio(rf::Frequency center_freq);
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rf::Frequency search_span{0};
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rf::Frequency f_center{0};
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rf::Frequency f_center_ini{0};
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rf::Frequency marker{0};
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uint8_t marker_pixel_index{0};
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rf::Frequency marker_pixel_step{0};
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// Size of one spectrum bin in Hz.
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rf::Frequency each_bin_size{0};
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// Bandwidth of a single spectrum bin.
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rf::Frequency bins_hz_size{0};
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rf::Frequency looking_glass_sampling_rate{0};
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rf::Frequency looking_glass_bandwidth{0};
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rf::Frequency looking_glass_range{0};
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rf::Frequency looking_glass_step{0};
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uint8_t min_color_power{0}; // Filter cutoff level.
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uint32_t pixel_index{0};
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std::array<Color, SCREEN_W> spectrum_row{};
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std::array<uint8_t, SCREEN_W> spectrum_data{};
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ChannelSpectrumFIFO* fifo{};
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int32_t steps = 1;
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bool locked_range = false;
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uint8_t range_max_power = 0;
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uint8_t range_max_power_counter = 0;
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uint8_t max_power = 0;
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rf::Frequency max_freq_hold = 0;
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rf::Frequency last_max_freq = 0;
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int16_t max_freq_power = -1000;
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uint8_t bin_length = SCREEN_W;
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uint8_t offset = 0;
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uint8_t ignore_dc = 0;
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Labels labels{
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{{0, 0 * 16}, "MIN: MAX: LNA VGA ", Color::light_grey()},
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{{0, 1 * 16}, "RANGE: FILTER: AMP:", Color::light_grey()},
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{{0, 2 * 16}, "P:", Color::light_grey()},
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{{0, 3 * 16}, "MARKER: MHz RXIQCAL", Color::light_grey()},
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//{{0, 4 * 16}, "RES: STEPS:", Color::light_grey()}};
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{{0, 4 * 16}, "RES: VOL:", Color::light_grey()}};
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NumberField field_frequency_min{
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{4 * 8, 0 * 16},
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4,
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{0, 7199},
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1, // number of steps by encoder delta
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' '};
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NumberField field_frequency_max{
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{13 * 8, 0 * 16},
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4,
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{1, 7200},
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1, // number of steps by encoder delta
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' '};
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LNAGainField field_lna{
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{21 * 8, 0 * 16}};
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VGAGainField field_vga{
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{27 * 8, 0 * 16}};
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TextField field_range{
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{6 * 8, 1 * 16, 6 * 8, 16},
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""};
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OptionsField filter_config{
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{20 * 8, 1 * 16},
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4,
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{
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{"OFF ", 0},
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{"MID ", 118}, // 85 + 25 (110) + a bit more to kill all blue
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{"HIGH", 202}, // 168 + 25 (193)
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}};
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RFAmpField field_rf_amp{
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{28 * 8, 1 * 16}};
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OptionsField range_presets{
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{2 * 8, 2 * 16},
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20,
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{}};
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ButtonWithEncoder button_beep_squelch{
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{240 - 8 * 8, 2 * 16 + 4, 8 * 8, 1 * 8},
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""};
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TextField field_marker{
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{7 * 8, 3 * 16, 9 * 8, 16},
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""};
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NumberField field_rx_iq_phase_cal{
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{28 * 8, 3 * 16},
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2,
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{0, 63}, // 5 or 6 bits IQ CAL phase adjustment (range updated later)
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1,
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' ',
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};
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NumberField field_trigger{
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{4 * 8, 4 * 16},
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3,
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{2, 128},
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2,
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' '};
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AudioVolumeField field_volume{
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{13 * 8, 4 * 16}};
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/*OptionsField steps_config{
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{13 * 8, 4 * 16},
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3,
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{
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{"1", 1},
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{"25", 25},
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{"50", 50},
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{"100", 100},
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{"250", 250},
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{"500", 500},
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}};*/
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OptionsField scan_type{
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{17 * 8, 4 * 16},
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2,
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{
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{"F-", LOOKING_GLASS_FASTSCAN},
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{"S-", LOOKING_GLASS_SLOWSCAN},
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}};
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OptionsField view_config{
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{19 * 8, 4 * 16},
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7,
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{
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{"SPCTR-V", 0},
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{"LEVEL-V", 1},
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{"PEAK-V", 2},
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}};
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OptionsField level_integration{
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{27 * 8, 4 * 16},
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2,
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{
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{"x0", 0},
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{"x1", 1},
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{"x2", 2},
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{"x3", 3},
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{"x4", 4},
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{"x5", 5},
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{"x6", 6},
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{"x7", 7},
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{"x8", 8},
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{"x9", 9},
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}};
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Button button_jump{
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{SCREEN_W - 4 * 8, 5 * 16, 4 * 8, 16},
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"JMP"};
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Button button_rst{
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{SCREEN_W - 9 * 8, 5 * 16, 4 * 8, 16},
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"RST"};
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Text freq_stats{
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{0 * 8, 5 * 16, SCREEN_W - 10 * 8, 8},
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""};
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MessageHandlerRegistration message_handler_spectrum_config{
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Message::ID::ChannelSpectrumConfig,
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[this](const Message* const p) {
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const auto message = *reinterpret_cast<const ChannelSpectrumConfigMessage*>(p);
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this->fifo = message.fifo;
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}};
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MessageHandlerRegistration message_handler_frame_sync{
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Message::ID::DisplayFrameSync,
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[this](const Message* const) {
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if (this->fifo) {
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ChannelSpectrum channel_spectrum;
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while (fifo->out(channel_spectrum)) {
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this->on_channel_spectrum(channel_spectrum);
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}
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}
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}};
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};
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} // namespace ui
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#endif
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