Remove separate MD-UV380G platform files.
From now on they will be shared with MD-UV380, with only a GPS define set in meson.build.
This commit is contained in:
parent
16e4642b97
commit
5f5c993f9a
20
meson.build
20
meson.build
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@ -228,20 +228,6 @@ mduv380_inc = inc + stm32f405_inc + ['platform/targets/MD-UV380']
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mduv380_def = def + stm32f405_def + {'PLATFORM_MDUV380': ''}
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## TYT MD-UV380G
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mduv380g_src = src + stm32f405_src + ['platform/drivers/display/HX83XX_MDx.c',
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'platform/drivers/keyboard/keyboard_MDx.c',
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'platform/drivers/NVM/W25Qx.c',
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'platform/drivers/NVM/spiFlash_MDx.c',
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'platform/drivers/NVM/nvmem_MDUV3x0G.c',
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'platform/drivers/ADC/ADC1_MDx.c',
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'platform/drivers/baseband/rtx_UV3x0.c',
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'platform/targets/MD-UV380G/platform.c']
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mduv380g_inc = inc + stm32f405_inc + ['platform/targets/MD-UV380G']
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mduv380g_def = def + stm32f405_def + {'PLATFORM_MDUV380G': ''}
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## Radioddity GD77
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gd77_src = src + mk22fn512_src + ['platform/targets/GD77/platform.c',
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'platform/drivers/display/UC1701_GD77.c',
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@ -327,7 +313,7 @@ foreach k, v : mduv380_def
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endforeach
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mduv380g_args = []
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foreach k, v : mduv380g_def
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foreach k, v : mduv380_def
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if v == ''
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mduv380g_args += '-D@0@'.format(k)
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else
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@ -386,11 +372,11 @@ mduv380_opts = {'sources': mduv380_src,
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'-Wl,--print-memory-usage'],
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'include_directories': mduv380_inc}
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mduv380g_opts = {'sources': mduv380g_src,
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mduv380g_opts = {'sources': mduv380_src,
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'c_args': mduv380g_args,
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'link_args' : ['-Wl,-T../platform/mcu/STM32F4xx/linker_script.ld',
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'-Wl,--print-memory-usage'],
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'include_directories': mduv380g_inc}
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'include_directories': mduv380_inc}
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gd77_opts = {'sources': gd77_src,
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'c_args': gd77_args,
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@ -1,120 +0,0 @@
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/***************************************************************************
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* Copyright (C) 2020 by Federico Amedeo Izzo IU2NUO, *
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* Niccolò Izzo IU2KIN, *
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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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#ifndef HWCONFIG_H
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#define HWCONFIG_H
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#include <stm32f4xx.h>
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/* Device has a working real time clock */
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#define HAS_RTC
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/* Supported radio bands */
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#define BAND_VHF
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#define BAND_UHF
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/* Band limits in Hz */
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#define FREQ_LIMIT_VHF_LO 136000000
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#define FREQ_LIMIT_VHF_HI 174000000
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#define FREQ_LIMIT_UHF_LO 400000000
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#define FREQ_LIMIT_UHF_HI 480000000
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/* Screen dimensions */
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#define SCREEN_WIDTH 160
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#define SCREEN_HEIGHT 128
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/* Screen pixel format */
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#define PIX_FMT_RGB565
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/* Battery type */
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#define BAT_LIPO_2S
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/* Display */
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#define LCD_D0 GPIOD,14
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#define LCD_D1 GPIOD,15
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#define LCD_D2 GPIOD,0
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#define LCD_D3 GPIOD,1
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#define LCD_D4 GPIOE,7
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#define LCD_D5 GPIOE,8
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#define LCD_D6 GPIOE,9
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#define LCD_D7 GPIOE,10
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#define LCD_WR GPIOD,5
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#define LCD_RD GPIOD,4
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#define LCD_CS GPIOD,6
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#define LCD_RS GPIOD,12
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#define LCD_RST GPIOD,13
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#define LCD_BKLIGHT GPIOD,8
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/* Signalling LEDs */
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#define GREEN_LED GPIOE,0
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#define RED_LED GPIOE,1
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/* Analog inputs */
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#define AIN_VBAT GPIOA,1
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/* Channel selection rotary encoder */
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#define CH_SELECTOR_0 GPIOE,14
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#define CH_SELECTOR_1 GPIOB,11
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/* Push-to-talk switch */
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#define PTT_SW GPIOE,11
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/*
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* Keyboard. Here we define only rows, since coloumn lines are the same as
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* LCD_Dx. See also: https://www.qsl.net/dl4yhf/RT3/md380_hw.html#keyboard
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*
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* "Monitor" and "Function" buttons, on the other hand, are connected to
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* keyboard row 3 and on LCD_D6 and LCD_D7. They are SWAPPED with respect to
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* connections made on MD-380.
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*/
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#define KB_ROW1 GPIOA,6 /* K1 */
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#define KB_ROW2 GPIOD,2 /* K2 */
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#define KB_ROW3 GPIOD,3 /* K3 */
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#define MONI_SW LCD_D6
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#define FUNC_SW LCD_D7
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/* External flash */
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#define FLASH_CS GPIOD,7
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#define FLASH_CLK GPIOB,3
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#define FLASH_SDO GPIOB,4
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#define FLASH_SDI GPIOB,5
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/*
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* To enable pwm for display backlight dimming uncomment this directive.
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*
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* WARNING: backlight pwm is disabled by default because it generates a
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* continuous tone in the speaker and headphones.
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*
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* This issue cannot be solved in any way because it derives from how the
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* MD-UV380 mcu pins are used: to have a noiseless backlight pwm, the control
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* pin has to be connected to a mcu pin having between its alternate functions
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* an output compare channel of one of the timers. With this configuration, the
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* pwm signal can completely generated in hardware and its frequency can be well
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* above 22kHz, which is the upper limit for human ears.
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*
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* In the MD-UV380 radio, display backlight is connected to PD8, which is not
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* connected to any of the available output compare channels. Thus, the pwm
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* signal generation is managed inside the TIM11 ISR by toggling the backlight
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* pin and its frequency has to be low (~250Hz) to not put too much overehad on
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* the processor due to timer ISR triggering at an high rate.
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*
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* #define ENABLE_BKLIGHT_DIMMING
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*/
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#endif
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@ -1,236 +0,0 @@
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/***************************************************************************
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* Copyright (C) 2020 by Federico Amedeo Izzo IU2NUO, *
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* Niccolò Izzo IU2KIN, *
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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 <interfaces/platform.h>
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#include <interfaces/gpio.h>
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#include <os.h>
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#include <hwconfig.h>
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#include <ADC1_MDx.h>
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#include <calibInfo_MDx.h>
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#include <interfaces/nvmem.h>
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#include <interfaces/rtc.h>
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mduv3x0Calib_t calibration;
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#ifdef ENABLE_BKLIGHT_DIMMING
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void TIM1_TRG_COM_TIM11_IRQHandler()
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{
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OSIntEnter();
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if(TIM11->SR & TIM_SR_CC1IF)
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{
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gpio_clearPin(LCD_BKLIGHT); /* Clear pin on compare match */
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}
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if(TIM11->SR & TIM_SR_UIF)
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{
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gpio_setPin(LCD_BKLIGHT); /* Set pin on counter reload */
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}
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TIM11->SR = 0;
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OSIntExit();
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}
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#endif
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void platform_init()
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{
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/* Configure GPIOs */
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gpio_setMode(GREEN_LED, OUTPUT);
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gpio_setMode(RED_LED, OUTPUT);
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gpio_setMode(LCD_BKLIGHT, OUTPUT);
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gpio_clearPin(LCD_BKLIGHT);
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gpio_setMode(CH_SELECTOR_0, INPUT);
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gpio_setMode(CH_SELECTOR_1, INPUT);
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gpio_setMode(PTT_SW, INPUT);
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/*
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* Initialise ADC1, for vbat, RSSI, ...
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* Configuration of corresponding GPIOs in analog input mode is done inside
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* the driver.
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*/
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adc1_init();
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nvm_init(); /* Initialise non volatile memory manager */
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nvm_readCalibData(&calibration); /* Load calibration data */
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rtc_init(); /* Initialise RTC */
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#ifdef ENABLE_BKLIGHT_DIMMING
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/*
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* Configure TIM11 for backlight PWM: Fpwm = 256Hz, 8 bit of resolution.
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* APB2 freq. is 84MHz but timer runs at twice this frequency, then:
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* PSC = 2564 to have Ftick = 65.52kHz
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* With ARR = 256, Fpwm is 256Hz;
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*/
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RCC->APB2ENR |= RCC_APB2ENR_TIM11EN;
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__DSB();
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TIM11->ARR = 255;
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TIM11->PSC = 2563;
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TIM11->CNT = 0;
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TIM11->CR1 |= TIM_CR1_ARPE;
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TIM11->CCMR1 |= TIM_CCMR1_OC1M_2
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| TIM_CCMR1_OC1M_1
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| TIM_CCMR1_OC1PE;
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TIM11->CCER |= TIM_CCER_CC1E;
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TIM11->CCR1 = 0;
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TIM11->EGR = TIM_EGR_UG; /* Update registers */
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TIM11->SR = 0; /* Clear interrupt flags */
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TIM11->DIER = TIM_DIER_CC1IE /* Interrupt on compare match */
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| TIM_DIER_UIE; /* Interrupt on counter reload */
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TIM11->CR1 |= TIM_CR1_CEN; /* Start timer */
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NVIC_ClearPendingIRQ(TIM1_TRG_COM_TIM11_IRQn);
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NVIC_SetPriority(TIM1_TRG_COM_TIM11_IRQn,15);
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NVIC_EnableIRQ(TIM1_TRG_COM_TIM11_IRQn);
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#endif
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}
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void platform_terminate()
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{
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/* Shut down backlight */
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gpio_clearPin(LCD_BKLIGHT);
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#ifdef ENABLE_BKLIGHT_DIMMING
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RCC->APB2ENR &= ~RCC_APB2ENR_TIM11EN;
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__DSB();
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#endif
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/* Shut down LEDs */
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gpio_clearPin(GREEN_LED);
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gpio_clearPin(RED_LED);
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/* Shut down all the modules */
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adc1_terminate();
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nvm_terminate();
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rtc_terminate();
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}
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float platform_getVbat()
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{
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/*
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* Battery voltage is measured through an 1:3 voltage divider and
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* adc1_getMeasurement returns a value in mV. Thus, to have effective
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* battery voltage multiply by three and divide by 1000
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*/
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return adc1_getMeasurement(0)*3.0f/1000.0f;
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}
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float platform_getMicLevel()
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{
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return 0.0f;
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}
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float platform_getVolumeLevel()
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{
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return 0.0f;
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}
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uint8_t platform_getChSelector()
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{
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static const uint8_t rsPositions[] = { 1, 4, 2, 3};
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int pos = gpio_readPin(CH_SELECTOR_0)
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| (gpio_readPin(CH_SELECTOR_1) << 1);
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return rsPositions[pos];
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}
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bool platform_getPttStatus()
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{
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/* PTT line has a pullup resistor with PTT switch closing to ground */
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return (gpio_readPin(PTT_SW) == 0) ? true : false;
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}
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void platform_ledOn(led_t led)
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{
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switch(led)
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{
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case GREEN:
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gpio_setPin(GREEN_LED);
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break;
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case RED:
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gpio_setPin(RED_LED);
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break;
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default:
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break;
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}
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}
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void platform_ledOff(led_t led)
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{
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switch(led)
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{
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case GREEN:
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gpio_clearPin(GREEN_LED);
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break;
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case RED:
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gpio_clearPin(RED_LED);
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break;
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default:
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break;
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}
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}
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void platform_beepStart(uint16_t freq)
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{
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/* TODO */
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(void) freq;
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}
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void platform_beepStop()
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{
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/* TODO */
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}
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void platform_setBacklightLevel(uint8_t level)
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{
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/*
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* Little workaround for the following nasty behaviour: if CCR1 value is
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* zero, a waveform with 99% duty cycle is generated. This is because we are
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* emulating pwm with interrupts.
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*/
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if(level > 1)
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{
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#ifdef ENABLE_BKLIGHT_DIMMING
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TIM11->CCR1 = level;
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TIM11->CR1 |= TIM_CR1_CEN;
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#else
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gpio_setPin(LCD_BKLIGHT);
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#endif
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}
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else
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{
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#ifdef ENABLE_BKLIGHT_DIMMING
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TIM11->CR1 &= ~TIM_CR1_CEN;
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#endif
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gpio_clearPin(LCD_BKLIGHT);
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}
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}
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const void *platform_getCalibrationData()
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{
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return ((const void *) &calibration);
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}
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