190 lines
7.3 KiB
C
190 lines
7.3 KiB
C
/***************************************************************************
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* Copyright (C) 2020 by Federico Amedeo Izzo IU2NUO, *
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* Niccolò Izzo IU2KIN *
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* Frederik Saraci IU2NRO *
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* Silvano Seva IU2KWO *
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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 3 of the License, or *
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* (at your option) 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; if not, see <http://www.gnu.org/licenses/> *
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***************************************************************************/
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#include <stdio.h>
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#include <stdint.h>
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#include <ui.h>
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#include <string.h>
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void _ui_drawMainBackground()
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{
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// Print top bar line of hline_h pixel height
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gfx_drawHLine(layout.top_h, layout.hline_h, color_grey);
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// Print bottom bar line of 1 pixel height
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gfx_drawHLine(SCREEN_HEIGHT - layout.bottom_h - 1, layout.hline_h, color_grey);
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}
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void _ui_drawMainTop()
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{
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#ifdef HAS_RTC
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// Print clock on top bar
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char clock_buf[9] = "";
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snprintf(clock_buf, sizeof(clock_buf), "%02d:%02d:%02d", last_state.time.hour,
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last_state.time.minute, last_state.time.second);
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gfx_print(layout.top_pos, clock_buf, layout.top_font, TEXT_ALIGN_CENTER,
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color_white);
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#endif
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// Print battery icon on top bar, use 4 px padding
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uint16_t bat_width = SCREEN_WIDTH / 9;
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uint16_t bat_height = layout.top_h - (layout.status_v_pad * 2);
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point_t bat_pos = {SCREEN_WIDTH - bat_width - layout.horizontal_pad,
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layout.status_v_pad};
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gfx_drawBattery(bat_pos, bat_width, bat_height, last_state.charge);
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// Print radio mode on top bar
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char mode[4] = "";
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switch(last_state.channel.mode)
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{
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case FM:
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strcpy(mode, "FM");
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break;
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case DMR:
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strcpy(mode, "DMR");
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break;
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}
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gfx_print(layout.top_pos, mode, layout.top_font, TEXT_ALIGN_LEFT,
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color_white);
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}
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void _ui_drawZoneChannel()
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{
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char zone_buf[20] = "";
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char channel_buf[25] = "";
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if(!last_state.zone_enabled)
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snprintf(zone_buf, sizeof(zone_buf), "zone: %.13s", "All channels");
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else
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snprintf(zone_buf, sizeof(zone_buf), "zone: %.13s", last_state.zone.name);
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snprintf(channel_buf, sizeof(channel_buf), " %03d: %.12s", last_state.channel_index,
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last_state.channel.name);
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// Print Zone name
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gfx_print(layout.line1_pos, zone_buf, layout.line1_font, TEXT_ALIGN_LEFT, color_white);
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// Print Channel name
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gfx_print(layout.line2_pos, channel_buf, layout.line2_font, TEXT_ALIGN_LEFT, color_white);
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}
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void _ui_drawFrequency()
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{
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// Print big numbers frequency
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char freq_buf[15] = "";
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snprintf(freq_buf, sizeof(freq_buf), "%03lu.%05lu",
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(unsigned long)last_state.channel.rx_frequency/1000000,
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(unsigned long)last_state.channel.rx_frequency%1000000/10);
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gfx_print(layout.line3_pos, freq_buf, layout.line3_font, TEXT_ALIGN_CENTER,
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color_white);
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}
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void _ui_drawVFOMiddleInput(ui_state_t* ui_state)
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{
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// Add inserted number to string, skipping "Rx: "/"Tx: " and "."
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uint8_t insert_pos = ui_state->input_position + 3;
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if(ui_state->input_position > 3) insert_pos += 1;
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char input_char = ui_state->input_number + '0';
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char freq_buf[15] = "";
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if(ui_state->input_set == SET_RX)
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{
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if(ui_state->input_position == 0)
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{
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snprintf(freq_buf, sizeof(freq_buf), ">Rx:%03lu.%05lu",
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(unsigned long)ui_state->new_rx_frequency/1000000,
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(unsigned long)ui_state->new_rx_frequency%1000000/10);
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gfx_print(layout.line2_pos, freq_buf, layout.input_font, TEXT_ALIGN_CENTER,
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color_white);
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}
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else
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{
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// Replace Rx frequency with underscorses
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if(ui_state->input_position == 1)
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strcpy(ui_state->new_rx_freq_buf, ">Rx:___._____");
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ui_state->new_rx_freq_buf[insert_pos] = input_char;
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gfx_print(layout.line2_pos, ui_state->new_rx_freq_buf, layout.input_font, TEXT_ALIGN_CENTER,
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color_white);
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}
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snprintf(freq_buf, sizeof(freq_buf), " Tx:%03lu.%05lu",
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(unsigned long)last_state.channel.tx_frequency/1000000,
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(unsigned long)last_state.channel.tx_frequency%1000000/10);
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gfx_print(layout.line3_pos, freq_buf, layout.input_font, TEXT_ALIGN_CENTER,
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color_white);
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}
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else if(ui_state->input_set == SET_TX)
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{
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snprintf(freq_buf, sizeof(freq_buf), " Rx:%03lu.%05lu",
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(unsigned long)ui_state->new_rx_frequency/1000000,
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(unsigned long)ui_state->new_rx_frequency%1000000/10);
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gfx_print(layout.line2_pos, freq_buf, layout.input_font, TEXT_ALIGN_CENTER,
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color_white);
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// Replace Rx frequency with underscorses
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if(ui_state->input_position == 0)
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{
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snprintf(freq_buf, sizeof(freq_buf), ">Tx:%03lu.%05lu",
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(unsigned long)ui_state->new_rx_frequency/1000000,
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(unsigned long)ui_state->new_rx_frequency%1000000/10);
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gfx_print(layout.line3_pos, freq_buf, layout.input_font, TEXT_ALIGN_CENTER,
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color_white);
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}
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else
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{
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if(ui_state->input_position == 1)
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strcpy(ui_state->new_tx_freq_buf, ">Tx:___._____");
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ui_state->new_tx_freq_buf[insert_pos] = input_char;
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gfx_print(layout.line3_pos, ui_state->new_tx_freq_buf, layout.input_font, TEXT_ALIGN_CENTER,
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color_white);
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}
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}
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}
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void _ui_drawBottom()
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{
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// Squelch bar
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float rssi = last_state.rssi;
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float squelch = last_state.sqlLevel / 16.0f;
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point_t smeter_pos = { 0, layout.bottom_pos.y +
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layout.status_v_pad +
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layout.text_v_offset -
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layout.bottom_h };
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gfx_drawSmeter(smeter_pos, SCREEN_WIDTH, layout.bottom_h - 1, rssi, squelch, color_white);
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}
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void _ui_drawMainVFO()
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{
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gfx_clearScreen();
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_ui_drawMainTop();
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_ui_drawFrequency();
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_ui_drawBottom();
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}
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void _ui_drawMainVFOInput(ui_state_t* ui_state)
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{
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gfx_clearScreen();
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_ui_drawMainTop();
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_ui_drawVFOMiddleInput(ui_state);
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_ui_drawBottom();
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}
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void _ui_drawMainMEM()
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{
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gfx_clearScreen();
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_ui_drawMainTop();
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_ui_drawZoneChannel();
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_ui_drawFrequency();
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_ui_drawBottom();
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}
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