mirror of
https://github.com/eried/portapack-mayhem.git
synced 2024-12-21 05:34:24 -05:00
ced8012783
* Themes instead of Styles * Colors changed to theme colors * Reworked style management * Theme settings app * warn, menu dual set * Added Aqua style
315 lines
9.5 KiB
C++
315 lines
9.5 KiB
C++
/*
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* Copyright (C) 2015 Jared Boone, ShareBrained Technology, Inc.
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* Copyright (C) 2016 Furrtek
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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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#include "ui_lcr.hpp"
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#include "ui_modemsetup.hpp"
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#include "baseband_api.hpp"
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#include "string_format.hpp"
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#include "serializer.hpp"
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using namespace portapack;
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namespace ui::external_app::lcr {
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void LCRView::focus() {
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button_set_rgsb.focus();
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}
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LCRView::~LCRView() {
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transmitter_model.disable();
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baseband::shutdown();
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}
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std::string LCRView::generate_message(std::string rgsb, std::vector<std::string> litterals, size_t option_ec) {
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const std::string ec_lut[4] = {"A", "J", "N", "S"}; // Eclairage (Auto, Jour, Nuit)
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char eom[3] = {3, 0, 0}; // EOM and space for checksum
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uint8_t i;
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std::string lcr_message{127, 127, 127, 127, 127, 127, 127, 5}; // 5/15 ? Modem sync and SOM
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char checksum = 0;
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// Pad litterals to 7 chars (not required ?)
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for (auto& litteral : litterals)
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while (litteral.length() < 7)
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litteral += ' ';
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// Compose LCR message
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lcr_message += rgsb;
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lcr_message += "PA ";
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i = 1;
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for (auto& litteral : litterals) {
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lcr_message += "AM=";
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lcr_message += to_string_dec_uint(i, 1);
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lcr_message += " AF=\"";
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lcr_message += litteral;
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lcr_message += "\" CL=0 ";
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i++;
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}
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lcr_message += "EC=";
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lcr_message += ec_lut[option_ec];
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lcr_message += " SAB=0";
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// Checksum
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i = 7; // Skip modem sync
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while (lcr_message[i])
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checksum ^= lcr_message[i++];
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checksum ^= eom[0]; // EOM char
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checksum &= 0x7F; // Trim
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eom[1] = checksum;
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lcr_message += eom;
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return lcr_message;
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}
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/*
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// Recap: frequency @ baudrate
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final_str = to_string_short_freq(persistent_memory::tuned_frequency());
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final_str += '@';
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final_str += to_string_dec_int(persistent_memory::modem_baudrate(), 4);
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final_str += "bps ";
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//final_str += modem_defs[persistent_memory::modem_def_index()].name;
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text_recap.set(final_str);*/
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void LCRView::update_progress() {
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if (tx_mode == IDLE) {
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text_status.set(LanguageHelper::currentMessages[LANG_READY]);
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progress.set_value(0);
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} else {
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std::string progress_str = to_string_dec_uint(repeat_index) + "/" + to_string_dec_uint(persistent_memory::modem_repeat()) +
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" " + to_string_dec_uint(scan_index + 1) + "/" + to_string_dec_uint(scan_count);
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text_status.set(progress_str);
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if (tx_mode == SINGLE)
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progress.set_value(repeat_index);
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else if (tx_mode == SCAN)
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progress.set_value(scan_progress);
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}
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}
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void LCRView::on_tx_progress(const uint32_t progress, const bool done) {
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if (!done) {
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// Repeating...
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repeat_index = progress + 1;
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if (tx_mode == SCAN)
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scan_progress++;
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} else {
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// Done transmitting
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tx_view.set_transmitting(false);
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transmitter_model.disable();
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if ((tx_mode == SCAN) && (scan_index < (scan_count - 1))) {
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// Next address
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scan_index++;
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scan_progress++;
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repeat_index = 1;
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start_tx(true);
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} else {
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tx_mode = IDLE;
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}
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}
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update_progress();
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}
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void LCRView::start_tx(const bool scan) {
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uint32_t repeats = persistent_memory::modem_repeat();
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if (scan) {
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if (tx_mode != SCAN) {
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scan_index = 0;
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scan_count = scan_list[options_scanlist.selected_index()].count;
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scan_progress = 1;
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repeat_index = 1;
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tx_mode = SCAN;
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progress.set_max(scan_count * repeats);
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update_progress();
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}
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rgsb = scan_list[options_scanlist.selected_index()].addresses[scan_index];
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button_set_rgsb.set_text(rgsb);
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} else {
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tx_mode = SINGLE;
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repeat_index = 1;
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scan_count = 1;
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scan_index = 0;
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progress.set_max(repeats);
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update_progress();
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}
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std::vector<std::string> litterals_list;
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for (size_t i = 0; i < LCR_MAX_AM; i++) {
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if (checkboxes[i].value())
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litterals_list.push_back(litteral[i]);
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}
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modems::generate_data(generate_message(rgsb, litterals_list, options_ec.selected_index()), lcr_message_data);
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/* It is AFSK modulation , measuring original fw 1.7.4 spectrum BW is just around 30khz , NBFM */
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transmitter_model.set_baseband_bandwidth(1'750'000); // Min TX LPF 1M75, same spectrum as previous fw 1.7.4
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transmitter_model.enable();
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memcpy(shared_memory.bb_data.data, lcr_message_data, sizeof(lcr_message_data));
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baseband::set_afsk_data(
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AFSK_TX_SAMPLERATE / persistent_memory::modem_baudrate(),
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persistent_memory::afsk_mark_freq(),
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persistent_memory::afsk_space_freq(),
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repeats,
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transmitter_model.channel_bandwidth(),
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serializer::symbol_count(persistent_memory::serial_format()));
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}
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void LCRView::on_button_set_am(NavigationView& nav, int16_t button_id) {
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text_prompt(
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nav,
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litteral[button_id],
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7,
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[this, button_id](std::string& buffer) {
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texts[button_id].set(buffer);
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});
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}
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LCRView::LCRView(NavigationView& nav) {
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std::string label;
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baseband::run_image(portapack::spi_flash::image_tag_afsk);
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add_children({&labels,
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&options_ec,
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&button_set_rgsb,
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&button_modem_setup,
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&text_status,
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&progress,
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&options_scanlist,
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&check_scan,
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&button_clear,
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&tx_view});
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options_scanlist.set_selected_index(0);
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const auto button_set_am_fn = [this, &nav](Button& button) {
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on_button_set_am(nav, button.id);
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};
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for (size_t n = 0; n < LCR_MAX_AM; n++) {
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Button* button = &buttons[n];
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button->on_select = button_set_am_fn;
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button->id = n;
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button->set_text("AM " + to_string_dec_uint(n + 1));
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button->set_parent_rect({static_cast<Coord>(40),
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static_cast<Coord>(n * 32 + 64),
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48, 24});
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add_child(button);
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Checkbox* checkbox = &checkboxes[n];
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checkbox->set_parent_rect({static_cast<Coord>(8),
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static_cast<Coord>(n * 32 + 64),
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48, 24});
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checkbox->set_value(false);
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add_child(checkbox);
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Rectangle* rectangle = &rectangles[n];
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rectangle->set_parent_rect({static_cast<Coord>(98),
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static_cast<Coord>(n * 32 + 66),
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68, 20});
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rectangle->set_color(Theme::getInstance()->fg_medium->foreground);
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rectangle->set_outline(true);
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add_child(rectangle);
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Text* text = &texts[n];
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text->set_parent_rect({static_cast<Coord>(104),
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static_cast<Coord>(n * 32 + 68),
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7 * 8, 16});
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add_child(text);
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}
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button_set_rgsb.set_text(rgsb);
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options_ec.set_selected_index(0); // Auto
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checkboxes[0].set_value(true);
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button_set_rgsb.on_select = [this, &nav](Button&) {
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text_prompt(
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nav,
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rgsb,
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4,
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[this](std::string& buffer) {
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button_set_rgsb.set_text(buffer);
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});
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};
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button_modem_setup.on_select = [this, &nav](Button&) {
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if (tx_mode == IDLE)
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nav.push<ModemSetupView>();
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};
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button_clear.on_select = [this, &nav](Button&) {
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options_ec.set_selected_index(0); // Auto
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for (size_t n = 0; n < LCR_MAX_AM; n++) {
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litteral[n] = " ";
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checkboxes[n].set_value(true);
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}
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};
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tx_view.on_edit_frequency = [this, &nav]() {
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auto new_view = nav.push<FrequencyKeypadView>(transmitter_model.target_frequency());
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new_view->on_changed = [this](rf::Frequency f) {
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transmitter_model.set_target_frequency(f);
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};
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};
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tx_view.on_start = [this]() {
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if (check_scan.value()) {
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if (tx_mode == IDLE) {
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start_tx(true);
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tx_view.set_transmitting(true);
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} else {
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// Kill scan process
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baseband::kill_afsk();
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tx_view.set_transmitting(false);
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transmitter_model.disable();
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text_status.set("Abort @" + rgsb);
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progress.set_value(0);
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tx_mode = IDLE;
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}
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} else {
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if (tx_mode == IDLE) {
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start_tx(false);
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tx_view.set_transmitting(true);
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}
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}
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};
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tx_view.on_stop = [this]() {
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tx_view.set_transmitting(false);
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transmitter_model.disable();
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tx_mode = IDLE;
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};
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}
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} /* namespace ui::external_app::lcr */
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