Started working on next milestone
- Removed the 6V5 power enable - Tweaked the cursor position for preset configuration - Updated the MenuText header file for translation at Photonis git-svn-id: https://svn.vbchaos.nl/svn/hsb/trunk@320 05563f52-14a8-4384-a975-3d1654cca0fa
This commit is contained in:
@@ -31,8 +31,10 @@
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#include "stm32f10x_adc.h"
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#include "stm32f10x_bkp.h"
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#include "stm32f10x_dma.h"
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#include "stm32f10x_exti.h"
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#include "stm32f10x_gpio.h"
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#include "stm32f10x_pwr.h"
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#include "stm32f10x_rcc.h"
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#include "stm32f10x_it.h"
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#include "Logger.h"
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@@ -48,7 +50,6 @@
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#include "MAX5715.h"
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#include "nhd0420.h"
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#include "PCBA.h"
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#include "Power6V5Supply.h"
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#include "rtc.h"
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#include "spi.h"
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#include "spiDevice.h"
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@@ -78,9 +79,9 @@
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// SPI1 settings
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// SPI3 settings (LCD / EEPROM)
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#define SPI_LCD_EEPROM_Direction (SPI_Direction_2Lines_FullDuplex)
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#define SPI_LCD_EEPROM_RX_QUEUE (32)
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#define SPI_LCD_EEPROM_TX_QUEUE (32)
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#define SPI_LCD_Direction (SPI_Direction_2Lines_FullDuplex)
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#define SPI_LCD_RX_QUEUE (32)
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#define SPI_LCD_TX_QUEUE (32)
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// Keypad Settings
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#define KEYPAD_DEBOUNCE_TIME_MS (20)
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@@ -124,9 +125,7 @@ static struct SpiDevice _spiDAC = {.initialized = false};
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static struct SpiParameters _spi1DACParameters;
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static struct Spi _spi3 = {.initialized = false};
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static struct SpiParameters _spi3DisplayParameters;
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static struct SpiParameters _spi3EEPROMParameters;
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static struct SpiDevice _spiDisplay = {.initialized = false};
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static struct SpiDevice _spiEEPROM = {.initialized = false};
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// Keypad
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static struct Keypad _keypad = {.initialized = false};
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@@ -138,7 +137,6 @@ static struct InternalFlash _iFlash = {.initialized = false};
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// GPIOs
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static struct Gpio _ledGreen = {.initialized = false};
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static struct Gpio _ledOrange = {.initialized = false};
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static struct Gpio _power6v5Enable = {.initialized = false};
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static struct Gpio _interlockNO = {.initialized = false};
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static EXTI_InitTypeDef _interlockNOEXTI;
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static struct Gpio _interlockNC = {.initialized = false};
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@@ -180,8 +178,6 @@ struct SpiDevice* const spiDAC = &_spiDAC;
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struct SpiParameters* const spiDACParam = &_spi1DACParameters;
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struct SpiDevice* const spiDisplay = &_spiDisplay;
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struct SpiParameters* const spiDisplayParam = &_spi3DisplayParameters;
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struct SpiDevice* const spiEEPROM = &_spiEEPROM;
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struct SpiParameters* const spiEEPROMParam = &_spi3EEPROMParameters;
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struct Keypad* const keypad = &_keypad;
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struct Storm700* const storm700 = &_storm700;
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@@ -369,164 +365,83 @@ static ErrorStatus initIO (void)
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/* SPI initialisation ----------------------------------------------------*/
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// SPI1 CLK
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_spi1.SPI_CLK.GPIO_Typedef = GPIOA;
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_spi1.SPI_CLK.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_AF_PP;
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_spi1.SPI_CLK.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_5;
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_spi1.SPI_CLK.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(_spi1.SPI_CLK.GPIO_Typedef, &_spi1.SPI_CLK.GPIO_InitStruct);
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spi1->SPI_CLK = configureGPIO(GPIOA, GPIO_Mode_AF_PP, GPIO_Speed_50MHz, GPIO_Pin_5);
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// SPI1 MISO
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_spi1.SPI_MISO.GPIO_Typedef = GPIOA;
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_spi1.SPI_MISO.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_IN_FLOATING;
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_spi1.SPI_MISO.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_6;
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GPIO_Init(_spi1.SPI_MISO.GPIO_Typedef, &_spi1.SPI_MISO.GPIO_InitStruct);
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spi1->SPI_MISO = configureGPIO(GPIOA, GPIO_Mode_IN_FLOATING, GPIO_Speed_50MHz, GPIO_Pin_6);
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// SPI1 MOSI
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_spi1.SPI_MOSI.GPIO_Typedef = GPIOA;
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_spi1.SPI_MOSI.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_AF_PP;
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_spi1.SPI_MOSI.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_7;
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_spi1.SPI_MOSI.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(_spi1.SPI_MOSI.GPIO_Typedef, &_spi1.SPI_MOSI.GPIO_InitStruct);
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// SPI1 CE
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_spiDAC.SPI_CE.GPIO_Typedef = GPIOA;
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_spiDAC.SPI_CE.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_Out_PP;
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_spiDAC.SPI_CE.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_4;
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_spiDAC.SPI_CE.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(_spiDAC.SPI_CE.GPIO_Typedef, &_spiDAC.SPI_CE.GPIO_InitStruct);
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spi1->SPI_MOSI = configureGPIO(GPIOA, GPIO_Mode_AF_PP, GPIO_Speed_50MHz, GPIO_Pin_7);
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spiDAC->spi = &_spi1;
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// Assign spi1 to purpose
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spiDAC->spi = spi1;
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// SPIDAC specific CE
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spiDAC->SPI_CE = configureGPIO(GPIOA, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_4);
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// SPI3 CLK
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_spi3.SPI_CLK.GPIO_Typedef = GPIOC;
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_spi3.SPI_CLK.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_AF_PP;
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_spi3.SPI_CLK.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_10;
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_spi3.SPI_CLK.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(_spi3.SPI_CLK.GPIO_Typedef, &_spi3.SPI_CLK.GPIO_InitStruct);
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spi3->SPI_CLK = configureGPIO(GPIOC, GPIO_Mode_AF_PP, GPIO_Speed_50MHz, GPIO_Pin_10);
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// SPI3 MISO
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_spi3.SPI_MISO.GPIO_Typedef = GPIOC;
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_spi3.SPI_MISO.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_AF_PP;
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_spi3.SPI_MISO.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_11;
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_spi3.SPI_MISO.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(_spi3.SPI_MISO.GPIO_Typedef, &_spi3.SPI_MISO.GPIO_InitStruct);
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spi3->SPI_MISO = configureGPIO(GPIOC, GPIO_Mode_IN_FLOATING, GPIO_Speed_50MHz, GPIO_Pin_11);
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// SPI3 MOSI
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_spi3.SPI_MOSI.GPIO_Typedef = GPIOC;
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_spi3.SPI_MOSI.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_AF_PP;
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_spi3.SPI_MOSI.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_12;
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_spi3.SPI_MOSI.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(_spi3.SPI_MOSI.GPIO_Typedef, &_spi3.SPI_MOSI.GPIO_InitStruct);
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spi3->SPI_MOSI = configureGPIO(GPIOC, GPIO_Mode_AF_PP, GPIO_Speed_50MHz, GPIO_Pin_12);
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// Apply pin-remapping for SPI3 I/Os (alternative I/Os usage)
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GPIO_PinRemapConfig(GPIO_Remap_SPI3, ENABLE);
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// SPI3 Display shares all parameters with SPI3 but the ChipEnable, which is different
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_spiDisplay.spi = &_spi3;
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// SPI3 CE EEPROM
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_spiDisplay.SPI_CE.GPIO_Typedef = GPIOE;
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_spiDisplay.SPI_CE.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_Out_PP;
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_spiDisplay.SPI_CE.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_0;
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_spiDisplay.SPI_CE.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(_spiDisplay.SPI_CE.GPIO_Typedef, &_spiDisplay.SPI_CE.GPIO_InitStruct);
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// SPI3 EEPROM shares all parameters with SPI3 but the ChipEnable, which is different
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_spiEEPROM.spi = &_spi3;
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// SPI3 CE EEPROM
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_spiEEPROM.SPI_CE.GPIO_Typedef = GPIOE;
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_spiEEPROM.SPI_CE.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_Out_PP;
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_spiEEPROM.SPI_CE.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_2;
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_spiEEPROM.SPI_CE.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(_spiEEPROM.SPI_CE.GPIO_Typedef, &_spiEEPROM.SPI_CE.GPIO_InitStruct);
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spiDisplay->spi = spi3;
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// SPI Display specific CE
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spiDisplay->SPI_CE = configureGPIO(GPIOE, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_0);
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/* KEYPAD initialisation -------------------------------------------------*/
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// Row1
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keypad->row[0].gpio.GPIO_Typedef = GPIOD;
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keypad->row[0].gpio.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_Out_PP;
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keypad->row[0].gpio.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_0;
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keypad->row[0].gpio.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(keypad->row[0].gpio.GPIO_Typedef, &keypad->row[0].gpio.GPIO_InitStruct);
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keypad->row[0].gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_0);
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// Row2
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keypad->row[1].gpio.GPIO_Typedef = GPIOD;
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keypad->row[1].gpio.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_Out_PP;
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keypad->row[1].gpio.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_1;
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keypad->row[1].gpio.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(keypad->row[1].gpio.GPIO_Typedef, &keypad->row[1].gpio.GPIO_InitStruct);
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keypad->row[1].gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_1);
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// Row3
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keypad->row[2].gpio.GPIO_Typedef = GPIOD;
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keypad->row[2].gpio.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_Out_PP;
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keypad->row[2].gpio.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_2;
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keypad->row[2].gpio.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(keypad->row[2].gpio.GPIO_Typedef, &keypad->row[2].gpio.GPIO_InitStruct);
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keypad->row[2].gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_2);
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// Row4
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keypad->row[3].gpio.GPIO_Typedef = GPIOD;
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keypad->row[3].gpio.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_Out_PP;
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keypad->row[3].gpio.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_3;
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keypad->row[3].gpio.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(keypad->row[3].gpio.GPIO_Typedef, &keypad->row[3].gpio.GPIO_InitStruct);
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keypad->row[3].gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_3);
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// Column1
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keypad->column[0].gpio.GPIO_Typedef = GPIOD;
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keypad->column[0].gpio.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_IPU;
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keypad->column[0].gpio.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_4;
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keypad->column[0].gpio.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(keypad->column[0].gpio.GPIO_Typedef, &keypad->column[0].gpio.GPIO_InitStruct);
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GPIO_EXTILineConfig(GPIO_PortSourceGPIOD, GPIO_PinSource4);
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keypad->column[0].gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_4);
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// Column2
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keypad->column[1].gpio.GPIO_Typedef = GPIOD;
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keypad->column[1].gpio.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_IPU;
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keypad->column[1].gpio.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_5;
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keypad->column[1].gpio.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(keypad->column[1].gpio.GPIO_Typedef, &keypad->column[1].gpio.GPIO_InitStruct);
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GPIO_EXTILineConfig(GPIO_PortSourceGPIOD, GPIO_PinSource5);
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keypad->column[1].gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_5);
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// Column3
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keypad->column[2].gpio.GPIO_Typedef = GPIOD;
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keypad->column[2].gpio.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_IPU;
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keypad->column[2].gpio.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_6;
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keypad->column[2].gpio.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(keypad->column[2].gpio.GPIO_Typedef, &keypad->column[2].gpio.GPIO_InitStruct);
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GPIO_EXTILineConfig(GPIO_PortSourceGPIOD, GPIO_PinSource6);
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keypad->column[2].gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_6);
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// Column4
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keypad->column[3].gpio.GPIO_Typedef = GPIOD;
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keypad->column[3].gpio.GPIO_InitStruct.GPIO_Mode = GPIO_Mode_IPU;
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keypad->column[3].gpio.GPIO_InitStruct.GPIO_Pin = GPIO_Pin_7;
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keypad->column[3].gpio.GPIO_InitStruct.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(keypad->column[3].gpio.GPIO_Typedef, &keypad->column[3].gpio.GPIO_InitStruct);
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GPIO_EXTILineConfig(GPIO_PortSourceGPIOD, GPIO_PinSource7);
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keypad->column[3].gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_7);
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/* GPIO initialisation ---------------------------------------------------*/
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// 6V5 enable -> PE12 output
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_power6v5Enable.gpio = configureGPIO(GPIOE, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_12);
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// Interlock1 - PB0 input
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_interlockNO.gpio = configureGPIO(GPIOB, GPIO_Mode_IPU, GPIO_Speed_50MHz, GPIO_Pin_0);
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_interlockNO.gpio = configureGPIO(GPIOB, GPIO_Mode_IPU, GPIO_Speed_50MHz, GPIO_Pin_0);
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GPIO_EXTILineConfig(GPIO_PortSourceGPIOB, GPIO_PinSource0);
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// Interlock2 - PB1 input
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_interlockNC.gpio = configureGPIO(GPIOB, GPIO_Mode_IPU, GPIO_Speed_50MHz, GPIO_Pin_1);
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_interlockNC.gpio = configureGPIO(GPIOB, GPIO_Mode_IPU, GPIO_Speed_50MHz, GPIO_Pin_1);
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GPIO_EXTILineConfig(GPIO_PortSourceGPIOB, GPIO_PinSource1);
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// Solenoid - PB5 output
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_solenoid.gpio = configureGPIO(GPIOB, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_5);
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_solenoid.gpio = configureGPIO(GPIOB, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_5);
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if (PCBA_getInstance()->pcba == PCBA_CathodeMCP)
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{
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// MCP0Relay - PD8 output
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_mcp0Relay.gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_8);
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_mcp0Relay.gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_8);
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// MCP1Relay - PD9 output
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_mcp1Relay.gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_9);
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_mcp1Relay.gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_9);
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// MCP2Relay - PD10 output
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_mcp2Relay.gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_10);
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_mcp2Relay.gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_10);
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// CAT0Relay - PD11 output
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_cat0Relay.gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_11);
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_cat0Relay.gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_11);
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// CAT1Relay - PD12 output
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_cat1Relay.gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_12);
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_cat1Relay.gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_12);
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// CAT2Relay - PD13 output
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_cat2Relay.gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_13);
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_cat2Relay.gpio = configureGPIO(GPIOD, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_13);
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}
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if (PCBA_getInstance()->pcba == PCBA_Tesla)
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{
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// Tesla Gun relay PB9 (or 10???)
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_teslaRelay.gpio = configureGPIO(GPIOB, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_9);
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// Tesla Gun relay PB9
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_teslaRelay.gpio = configureGPIO(GPIOB, GPIO_Mode_Out_PP, GPIO_Speed_50MHz, GPIO_Pin_9);
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}
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return returnValue;
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}
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@@ -657,13 +572,12 @@ static ErrorStatus initPeriphery(void)
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// Use full-duples instead of TX only, because the EEPROM is both write- and readable
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spiDisplayParam->SPI_Direction = SPI_Direction_2Lines_FullDuplex;
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// Adjust the RX and TX queues for multiple use
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spiDisplayParam->rxQueueSize = SPI_LCD_EEPROM_RX_QUEUE;
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spiDisplayParam->txQueueSize = SPI_LCD_EEPROM_TX_QUEUE;
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spiDisplayParam->rxQueueSize = SPI_LCD_RX_QUEUE;
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spiDisplayParam->txQueueSize = SPI_LCD_TX_QUEUE;
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///TODO SPI_CE should be initialized individually
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GPIO_SetBits(spiDisplay->SPI_CE.GPIO_Typedef, spiDisplay->SPI_CE.GPIO_InitStruct.GPIO_Pin);
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GPIO_SetBits(spiEEPROM->SPI_CE.GPIO_Typedef, spiEEPROM->SPI_CE.GPIO_InitStruct.GPIO_Pin);
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SpiDevice_construct(spiDisplay, spi3, spiDisplayParam);
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SpiDevice_construct(spiEEPROM, spi3, spiEEPROMParam);
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/* --------------------------------------------------------------------*/
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/* KEYPAD COLUMNS */
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@@ -703,7 +617,6 @@ static ErrorStatus initPeriphery(void)
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InternalFlash_construct(iFlash);
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/* --------------------------------------------------------------------*/
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/* GPIOs */
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/* --------------------------------------------------------------------*/
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@@ -711,8 +624,6 @@ static ErrorStatus initPeriphery(void)
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GPIO_construct(ledGreen, OUTPUT, ledGreen->gpio);
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// Orange LED
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GPIO_construct(ledOrange, OUTPUT, ledOrange->gpio);
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// 6V5 Power Enable
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GPIO_construct(&_power6v5Enable, OUTPUT, _power6v5Enable.gpio);
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IRQ_setInterruptProperties(EXTI0_IRQn, 12, 0, ENABLE);
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IRQ_setInterruptProperties(EXTI1_IRQn, 12, 0, ENABLE);
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@@ -765,11 +676,6 @@ static ErrorStatus initPlatformDevices (void)
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Interlock_construct(interlock, COMMON_INTERLOCK, &_interlockNO, _interlockNOEXTI, &_interlockNC, _interlockNCEXTI, INTERLOCK_DEBOUNCE_TIME_MS);
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}
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if (returnValue == SUCCESS)
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{
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Power6V5Supply_construct(&_power6v5Enable);
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}
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if (returnValue == SUCCESS)
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{
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CoverSolenoid_construct(&_solenoid);
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Reference in New Issue
Block a user