setup project

This commit is contained in:
Clément Grennerat 2025-08-18 21:34:19 +02:00
commit 6e6abff60c
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8
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.idea/ow-dash-cube.iml generated Normal file
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<?xml version="1.0" encoding="UTF-8"?>
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<?xml version="1.0" encoding="UTF-8"?>
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#THIS FILE IS AUTO GENERATED FROM THE TEMPLATE! DO NOT CHANGE!
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project(ow-dash-cube C CXX ASM)
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add_compile_options(-Os)
else ()
message(STATUS "Minimal optimization, debug info included")
add_compile_options(-Og -g)
endif ()
include_directories(Core/Inc /Users/clement/STM32Cube/Repository/STM32Cube_FW_F1_V1.8.6/Drivers/STM32F1xx_HAL_Driver/Inc /Users/clement/STM32Cube/Repository/STM32Cube_FW_F1_V1.8.6/Drivers/STM32F1xx_HAL_Driver/Inc/Legacy /Users/clement/STM32Cube/Repository/STM32Cube_FW_F1_V1.8.6/Drivers/CMSIS/Device/ST/STM32F1xx/Include /Users/clement/STM32Cube/Repository/STM32Cube_FW_F1_V1.8.6/Drivers/CMSIS/Include)
add_definitions(-DDEBUG -DUSE_HAL_DRIVER -DSTM32F103xB)
file(GLOB_RECURSE SOURCES "Core/*.*" "Drivers/*.*")
set(LINKER_SCRIPT ${CMAKE_SOURCE_DIR}/STM32F103CBTX_FLASH.ld)
add_link_options(-Wl,-gc-sections,--print-memory-usage,-Map=${PROJECT_BINARY_DIR}/${PROJECT_NAME}.map)
add_link_options(-mcpu=cortex-m3 -mthumb -mthumb-interwork)
add_link_options(-T ${LINKER_SCRIPT})
add_executable(${PROJECT_NAME}.elf ${SOURCES} ${LINKER_SCRIPT})
set(HEX_FILE ${PROJECT_BINARY_DIR}/${PROJECT_NAME}.hex)
set(BIN_FILE ${PROJECT_BINARY_DIR}/${PROJECT_NAME}.bin)
add_custom_command(TARGET ${PROJECT_NAME}.elf POST_BUILD
COMMAND ${CMAKE_OBJCOPY} -Oihex $<TARGET_FILE:${PROJECT_NAME}.elf> ${HEX_FILE}
COMMAND ${CMAKE_OBJCOPY} -Obinary $<TARGET_FILE:${PROJECT_NAME}.elf> ${BIN_FILE}
COMMENT "Building ${HEX_FILE}
Building ${BIN_FILE}")

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#${templateWarning}
set(CMAKE_SYSTEM_NAME Generic)
set(CMAKE_SYSTEM_VERSION 1)
${cmakeRequiredVersion}
# specify cross-compilers and tools
set(CMAKE_C_COMPILER arm-none-eabi-gcc)
set(CMAKE_CXX_COMPILER arm-none-eabi-g++)
set(CMAKE_ASM_COMPILER arm-none-eabi-gcc)
set(CMAKE_AR arm-none-eabi-ar)
set(CMAKE_OBJCOPY arm-none-eabi-objcopy)
set(CMAKE_OBJDUMP arm-none-eabi-objdump)
set(SIZE arm-none-eabi-size)
set(CMAKE_TRY_COMPILE_TARGET_TYPE STATIC_LIBRARY)
# project settings
project(${projectName} C CXX ASM)
set(CMAKE_CXX_STANDARD 17)
set(CMAKE_C_STANDARD 11)
#Uncomment for hardware floating point
#add_compile_definitions(ARM_MATH_CM4;ARM_MATH_MATRIX_CHECK;ARM_MATH_ROUNDING)
#add_compile_options(-mfloat-abi=hard -mfpu=fpv4-sp-d16)
#add_link_options(-mfloat-abi=hard -mfpu=fpv4-sp-d16)
#Uncomment for software floating point
#add_compile_options(-mfloat-abi=soft)
add_compile_options(-mcpu=${mcpu} -mthumb -mthumb-interwork)
add_compile_options(-ffunction-sections -fdata-sections -fno-common -fmessage-length=0)
# uncomment to mitigate c++17 absolute addresses warnings
#set(CMAKE_CXX_FLAGS "$${CMAKE_CXX_FLAGS} -Wno-register")
# Enable assembler files preprocessing
add_compile_options($<$<COMPILE_LANGUAGE:ASM>:-x$<SEMICOLON>assembler-with-cpp>)
if ("$${CMAKE_BUILD_TYPE}" STREQUAL "Release")
message(STATUS "Maximum optimization for speed")
add_compile_options(-Ofast)
elseif ("$${CMAKE_BUILD_TYPE}" STREQUAL "RelWithDebInfo")
message(STATUS "Maximum optimization for speed, debug info included")
add_compile_options(-Ofast -g)
elseif ("$${CMAKE_BUILD_TYPE}" STREQUAL "MinSizeRel")
message(STATUS "Maximum optimization for size")
add_compile_options(-Os)
else ()
message(STATUS "Minimal optimization, debug info included")
add_compile_options(-Og -g)
endif ()
include_directories(${includes})
add_definitions(${defines})
file(GLOB_RECURSE SOURCES ${sources})
set(LINKER_SCRIPT $${CMAKE_SOURCE_DIR}/${linkerScript})
add_link_options(-Wl,-gc-sections,--print-memory-usage,-Map=$${PROJECT_BINARY_DIR}/$${PROJECT_NAME}.map)
add_link_options(-mcpu=${mcpu} -mthumb -mthumb-interwork)
add_link_options(-T $${LINKER_SCRIPT})
add_executable($${PROJECT_NAME}.elf $${SOURCES} $${LINKER_SCRIPT})
set(HEX_FILE $${PROJECT_BINARY_DIR}/$${PROJECT_NAME}.hex)
set(BIN_FILE $${PROJECT_BINARY_DIR}/$${PROJECT_NAME}.bin)
add_custom_command(TARGET $${PROJECT_NAME}.elf POST_BUILD
COMMAND $${CMAKE_OBJCOPY} -Oihex $<TARGET_FILE:$${PROJECT_NAME}.elf> $${HEX_FILE}
COMMAND $${CMAKE_OBJCOPY} -Obinary $<TARGET_FILE:$${PROJECT_NAME}.elf> $${BIN_FILE}
COMMENT "Building $${HEX_FILE}
Building $${BIN_FILE}")

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#ifndef BASIC_5X5_FONT_H
#define BASIC_5X5_FONT_H
#define CHAR_WIDTH 6
#define CHAR_HEIGHT 8
static const unsigned char font[96][6] = {
{0x00,0x00,0x00,0x00,0x00,0x00}, //
{0x5c,0x00,0x00,0x00,0x00,0x00}, // !
{0x06,0x00,0x06,0x00,0x00,0x00}, // "
{0x28,0x7c,0x28,0x7c,0x28,0x00}, // #
{0x5c,0x54,0xfe,0x54,0x74,0x00}, // $
{0x44,0x20,0x10,0x08,0x44,0x00}, // %
{0x28,0x54,0x54,0x20,0x50,0x00}, // &
{0x06,0x00,0x00,0x00,0x00,0x00}, // '
{0x38,0x44,0x00,0x00,0x00,0x00}, // (
{0x44,0x38,0x00,0x00,0x00,0x00}, // )
{0x02,0x07,0x02,0x00,0x00,0x00}, // *
{0x10,0x10,0x7c,0x10,0x10,0x00}, // +
{0xc0,0x00,0x00,0x00,0x00,0x00}, // ,
{0x10,0x10,0x10,0x10,0x10,0x00}, // -
{0x40,0x00,0x00,0x00,0x00,0x00}, // .
{0x60,0x10,0x0c,0x00,0x00,0x00}, // /
{0x7c,0x64,0x54,0x4c,0x7c,0x00}, // 0
{0x48,0x7c,0x40,0x00,0x00,0x00}, // 1
{0x64,0x54,0x54,0x54,0x48,0x00}, // 2
{0x44,0x54,0x54,0x54,0x6c,0x00}, // 3
{0x3c,0x20,0x70,0x20,0x20,0x00}, // 4
{0x5c,0x54,0x54,0x54,0x24,0x00}, // 5
{0x7c,0x54,0x54,0x54,0x74,0x00}, // 6
{0x04,0x04,0x64,0x14,0x0c,0x00}, // 7
{0x7c,0x54,0x54,0x54,0x7c,0x00}, // 8
{0x5c,0x54,0x54,0x54,0x7c,0x00}, // 9
{0x44,0x00,0x00,0x00,0x00,0x00}, // :
{0xc4,0x00,0x00,0x00,0x00,0x00}, // ;
{0x10,0x28,0x44,0x00,0x00,0x00}, // <
{0x28,0x28,0x28,0x28,0x28,0x00}, // =
{0x44,0x28,0x10,0x00,0x00,0x00}, // >
{0x08,0x04,0x54,0x08,0x00,0x00}, // ?
{0x7c,0x44,0x54,0x54,0x5c,0x00}, // @
{0x7c,0x24,0x24,0x24,0x7c,0x00}, // A
{0x7c,0x54,0x54,0x54,0x6c,0x00}, // B
{0x7c,0x44,0x44,0x44,0x44,0x00}, // C
{0x7c,0x44,0x44,0x44,0x38,0x00}, // D
{0x7c,0x54,0x54,0x54,0x44,0x00}, // E
{0x7c,0x14,0x14,0x14,0x04,0x00}, // F
{0x7c,0x44,0x44,0x54,0x74,0x00}, // G
{0x7c,0x10,0x10,0x10,0x7c,0x00}, // H
{0x44,0x44,0x7c,0x44,0x44,0x00}, // I
{0x60,0x40,0x40,0x44,0x7c,0x00}, // J
{0x7c,0x10,0x10,0x28,0x44,0x00}, // K
{0x7c,0x40,0x40,0x40,0x40,0x00}, // L
{0x7c,0x08,0x10,0x08,0x7c,0x00}, // M
{0x7c,0x08,0x10,0x20,0x7c,0x00}, // N
{0x38,0x44,0x44,0x44,0x38,0x00}, // O
{0x7c,0x14,0x14,0x14,0x08,0x00}, // P
{0x3c,0x24,0x64,0x24,0x3c,0x00}, // Q
{0x7c,0x14,0x14,0x14,0x68,0x00}, // R
{0x5c,0x54,0x54,0x54,0x74,0x00}, // S
{0x04,0x04,0x7c,0x04,0x04,0x00}, // T
{0x7c,0x40,0x40,0x40,0x7c,0x00}, // U
{0x0c,0x30,0x40,0x30,0x0c,0x00}, // V
{0x3c,0x40,0x30,0x40,0x3c,0x00}, // W
{0x44,0x28,0x10,0x28,0x44,0x00}, // X
{0x0c,0x10,0x60,0x10,0x0c,0x00}, // Y
{0x44,0x64,0x54,0x4c,0x44,0x00}, // Z
{0x7c,0x44,0x00,0x00,0x00,0x00}, // [
{0x0c,0x10,0x60,0x00,0x00,0x00}, // "\"
{0x44,0x7c,0x00,0x00,0x00,0x00}, // ]
{0x00,0x01,0x00,0x01,0x00,0x00}, // ^
{0x40,0x40,0x40,0x40,0x40,0x40}, // _
{0x00,0x01,0x00,0x00,0x00,0x00}, // `
{0x7c,0x24,0x24,0x24,0x7c,0x00}, // a
{0x7c,0x54,0x54,0x54,0x6c,0x00}, // b
{0x7c,0x44,0x44,0x44,0x44,0x00}, // c
{0x7c,0x44,0x44,0x44,0x38,0x00}, // d
{0x7c,0x54,0x54,0x54,0x44,0x00}, // e
{0x7c,0x14,0x14,0x14,0x04,0x00}, // f
{0x7c,0x44,0x44,0x54,0x74,0x00}, // g
{0x7c,0x10,0x10,0x10,0x7c,0x00}, // h
{0x44,0x44,0x7c,0x44,0x44,0x00}, // i
{0x60,0x40,0x40,0x44,0x7c,0x00}, // j
{0x7c,0x10,0x10,0x28,0x44,0x00}, // k
{0x7c,0x40,0x40,0x40,0x40,0x00}, // l
{0x7c,0x08,0x10,0x08,0x7c,0x00}, // m
{0x7c,0x08,0x10,0x20,0x7c,0x00}, // n
{0x38,0x44,0x44,0x44,0x38,0x00}, // o
{0x7c,0x14,0x14,0x14,0x08,0x00}, // p
{0x3c,0x24,0x64,0x24,0x3c,0x00}, // q
{0x7c,0x14,0x14,0x14,0x68,0x00}, // r
{0x5c,0x54,0x54,0x54,0x74,0x00}, // s
{0x04,0x04,0x7c,0x04,0x04,0x00}, // t
{0x7c,0x40,0x40,0x40,0x7c,0x00}, // u
{0x0c,0x30,0x40,0x30,0x0c,0x00}, // v
{0x3c,0x40,0x30,0x40,0x3c,0x00}, // w
{0x44,0x28,0x10,0x28,0x44,0x00}, // x
{0x0c,0x10,0x60,0x10,0x0c,0x00}, // y
{0x44,0x64,0x54,0x4c,0x44,0x00}, // z
{0x10,0x7c,0x44,0x00,0x00,0x00}, // {
{0x6c,0x00,0x00,0x00,0x00,0x00}, // |
{0x44,0x7c,0x10,0x00,0x00,0x00}, // }
{0x02,0x01,0x02,0x01,0x00,0x00}, // ~
{0x00,0x00,0x00,0x00,0x00,0x00}
};
#endif

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// Driver afficheur ADA 1983/chip ILI9341 pour Kit STM32L476 IUT1 de Grenoble Dpt GEII
//
// Adaptations L476, et fusion libs : V. GRENNERAT, IUT1 de Grenoble, Dpt GEII
// Correction bug coordonnees X et Y pour Draw_Char et Draw_Text : V. GRENNERAT
// Ajout fonction LCD_Draw_Image_XY : V. GRENNERAT
// Intégration des fonctions de configuration SPI3 et GPIO : V. GRENNERAT
// --------------------------------
// MIT License
//
// Copyright (c) 2017 Matej Artnak
//
// Permission is hereby granted, free of charge, to any person obtaining a copy
// of this software and associated documentation files (the "Software"), to deal
// in the Software without restriction, including without limitation the rights
// to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
// copies of the Software, and to permit persons to whom the Software is
// furnished to do so, subject to the following conditions:
//
// The above copyright notice and this permission notice shall be included in all
// copies or substantial portions of the Software.
//
/* Includes ------------------------------------------------------------------*/
#ifndef LCD_STM32_DRIVER_H
#define LCD_STM32_DRIVER_H
#include "stm32f1xx.h"
#include "main.h"
#define SPI1_BASEDR_ADR SPI1_BASE //adresse du reg SPI3 DR pour acces 8 bits (defs std permet accès 16bits seulement)
#define LCD_SCREEN_HEIGHT 320
#define LCD_SCREEN_WIDTH 480
//CHIP SELECT PIN AND PORT, STANDARD GPIO
#define LCD_CS_PIN (1<<8)
#define LCD_DC_PIN (1<<11)
#define CMD DCX_GPIO_Port->BRR=DCX_Pin;
#define DATA DCX_GPIO_Port->BSRR=DCX_Pin;
#define TEMPO1MS_80M 4200
//RESET PIN AND PORT, STANDARD GPIO
//Reset n'est pas cable sur aff ADA1983
//#define LCD_RST_PORT GPIOC
//#define LCD_RST_PIN RST_Pin
#define BURST_MAX_SIZE 100 //buffer burst stocké sur pile. Par défaut stackSiZE=256 dans FreeRTOS.
#define BLACK 0x0000
#define NAVY 0x000F
#define DARKGREEN 0x03E0
#define DARKCYAN 0x03EF
#define MAROON 0x7800
#define PURPLE 0x780F
#define OLIVE 0x7BE0
#define LIGHTGREY 0xC618
#define DARKGREY 0x7BEF
#define BLUE 0x001F
#define GREEN 0x07E0
#define CYAN 0x07FF
#define RED 0xF800
#define MAGENTA 0xF81F
#define YELLOW 0xFFE0
#define WHITE 0xFFFF
#define ORANGE 0xFD20
#define GREENYELLOW 0xAFE5
#define PINK 0xF81F
#define SCREEN_VERTICAL_1 0
#define SCREEN_HORIZONTAL_1 1
#define SCREEN_VERTICAL_2 2
#define SCREEN_HORIZONTAL_2 3
void LCD_SPI_Init(void);
void LCD_SPI_Send(unsigned char SPI_Data);
void LCD_Write_Command(uint8_t Command);
void LCD_Write_Data(uint8_t Data);
void LCD_Set_Address(uint16_t X1, uint16_t Y1, uint16_t X2, uint16_t Y2);
//Reset n'est pas cable sur aff ADA1983:
//void LCD_Reset(void);
//void LCD_Enable(void);
void LCD_Set_Rotation(uint8_t Rotation);
// @param Rotation : valeurs= SCREEN_VERTICAL_1, SCREEN_VERTICAL_2, SCREEN_HORIZONTAL_1, SCREEN_HORIZONTAL_2
// Par defaut pour kit L476 IUT1 : SCREEN_HORIZONTAL_1
void LCD_Init(void);
void LCD_Fill_Screen(uint16_t Colour);
// @param Colour : voir #define de quelques couleurs 16 bits standard ci-dessus
void LCD_Draw_Colour(uint16_t Colour);
// @param Colour : voir #define de quelques couleurs 16 bits standard ci-dessus
void LCD_Draw_Pixel(uint16_t X,uint16_t Y,uint16_t Colour);
//@param X : coordonnee x
//@param Y : coordonnee y
//@param Colour : voir #define de quelques couleurs 16 bits standard ci-dessus
void LCD_Draw_Horizontal_Line(uint16_t X, uint16_t Y, uint16_t Width, uint16_t Colour);
void LCD_Draw_Vertical_Line(uint16_t X, uint16_t Y, uint16_t Height, uint16_t Colour);
void LCD_Draw_Rectangle(uint16_t X, uint16_t Y, uint16_t Width, uint16_t Height, uint16_t Colour);
void LCD_Draw_Colour_Burst(uint16_t Colour, uint32_t Size);
#endif
/*******************PARTIE ISSUE DE LA LIB ILI9193_GFX.h***************************/
#ifndef LCD_GFX_H
#define LCD_GFX_H
#define HORIZONTAL_IMAGE 0
#define VERTICAL_IMAGE 1
void LCD_Draw_Hollow_Circle(uint16_t X, uint16_t Y, uint16_t Radius, uint16_t Colour);
void LCD_Draw_Filled_Circle(uint16_t X, uint16_t Y, uint16_t Radius, uint16_t Colour);
void LCD_Draw_Hollow_Rectangle_Coord(uint16_t X0, uint16_t Y0, uint16_t X1, uint16_t Y1, uint16_t Colour);
void LCD_Draw_Filled_Rectangle_Coord(uint16_t X0, uint16_t Y0, uint16_t X1, uint16_t Y1, uint16_t Colour);
void LCD_Draw_Char(char Character, uint16_t X, uint16_t Y, uint16_t Colour, uint16_t Size, uint16_t Background_Colour);
void LCD_Draw_Text(const char* Text, uint16_t X, uint16_t Y, uint16_t Colour, uint16_t Size, uint16_t Background_Colour);
/*Draws a character (fonts imported from fonts.h) at X,Y location with specified font colour, size and Background colour*/
void LCD_Draw_Filled_Rectangle_Size_Text(uint16_t X0, uint16_t Y0, uint16_t Size_X, uint16_t Size_Y, uint16_t Colour);
void LCD_Draw_Image_XY(const char* Image_Array, uint16_t X, uint16_t Y, uint16_t Width, uint16_t Height);
/*Dessine une image 65K couleurs (2Bytes / Pixel) dans une zone de l'ecran, aux coordonnées X et Y*/
//CONVERTISSEUR: http://www.digole.com/tools/PicturetoC_Hex_converter.php
void LCD_Draw_Image_Full(const char* Image_Array, uint8_t Orientation);
#endif

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/*
* LogoIUT.h
*
* Created on: 27 juin 2018
* Author: V. GRENNERAT
*/
const char logoIUT[60*41*2] = {0x7b,0xef,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0xe7,0x1c,0xff,0xff,0xff,0xff,0xce,0x59,0x73,0x6e,0x73,0x6e,0x8c,0x71,0xff,0xff,0xff,0xff,0xc6,0x38,0x73,0x6e,0x73,0x6e,0x8c,0x51,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0x7b,0xef,0x73,0x6e,0x73,0x6e,0xd6,0x9a,0xd6,0x9a,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0x73,0x6e,0xbd,0xd7,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xeb,0x0d,0xe1,0x46,0xe1,0x46,0xe1,0x46,0xe1,0x46,0xe1,0x66,0xff,0x1c
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,0xe0,0xe5,0xe0,0x22,0xe0,0x22,0xe0,0x22,0xe0,0x22,0xe0,0x22,0xe0,0x22,0xe0,0x22,0xe0,0x22,0xe0,0x22,0xe0,0x22,0xe0,0x22,0xe0,0x22,0xfe,0x59,0xff,0xff,0xff,0xff,0xff,0xff,0xea,0xcc,0xe0,0x63,0xe9,0x87,0xe9,0x87,0xe1,0x05,0xe0,0x83,0xff,0x5d,0xeb,0x2d,0xe9,0x87,0xff,0xff,0xe1,0x46,0xe1,0x67,0xff,0x7d,0xf5,0x35,0xe0,0x22,0xf5,0xb7,0xea,0x8b,0xe1,0x26,0xf5,0xd7,0xf5,0x96,0xf5,0x55,0xff,0x7d,0xfe,0x59,0xfe,0xfb,0xeb,0x8e,0xe0,0x22,0xfe,0xdb,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff
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};

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Core/Inc/crc.h Normal file
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/*
Copyright 2016 Benjamin Vedder benjamin@vedder.se
This file is part of the VESC firmware.
The VESC firmware is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
The VESC firmware is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef CRC_H_
#define CRC_H_
#include <stdint.h>
/*
* Functions
*/
unsigned short crc16(unsigned char *buf, unsigned int len);
#endif /* CRC_H_ */

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Core/Inc/main.h Normal file
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/* USER CODE BEGIN Header */
/**
******************************************************************************
* @file : main.h
* @brief : Header for main.c file.
* This file contains the common defines of the application.
******************************************************************************
* @attention
*
* Copyright (c) 2025 STMicroelectronics.
* All rights reserved.
*
* This software is licensed under terms that can be found in the LICENSE file
* in the root directory of this software component.
* If no LICENSE file comes with this software, it is provided AS-IS.
*
******************************************************************************
*/
/* USER CODE END Header */
/* Define to prevent recursive inclusion -------------------------------------*/
#ifndef __MAIN_H
#define __MAIN_H
#ifdef __cplusplus
extern "C" {
#endif
/* Includes ------------------------------------------------------------------*/
#include "stm32f1xx_hal.h"
/* Private includes ----------------------------------------------------------*/
/* USER CODE BEGIN Includes */
/* USER CODE END Includes */
/* Exported types ------------------------------------------------------------*/
/* USER CODE BEGIN ET */
/* USER CODE END ET */
/* Exported constants --------------------------------------------------------*/
/* USER CODE BEGIN EC */
/* USER CODE END EC */
/* Exported macro ------------------------------------------------------------*/
/* USER CODE BEGIN EM */
/* USER CODE END EM */
/* Exported functions prototypes ---------------------------------------------*/
void Error_Handler(void);
/* USER CODE BEGIN EFP */
/* USER CODE END EFP */
/* Private defines -----------------------------------------------------------*/
#define DB10_Pin GPIO_PIN_13
#define DB10_GPIO_Port GPIOC
#define DB8_Pin GPIO_PIN_14
#define DB8_GPIO_Port GPIOC
#define DB6_Pin GPIO_PIN_15
#define DB6_GPIO_Port GPIOC
#define DB4_Pin GPIO_PIN_0
#define DB4_GPIO_Port GPIOD
#define DB2_Pin GPIO_PIN_1
#define DB2_GPIO_Port GPIOD
#define DB0_Pin GPIO_PIN_0
#define DB0_GPIO_Port GPIOA
#define DRESET_Pin GPIO_PIN_1
#define DRESET_GPIO_Port GPIOA
#define DTE_Pin GPIO_PIN_2
#define DTE_GPIO_Port GPIOA
#define DCX_Pin GPIO_PIN_3
#define DCX_GPIO_Port GPIOA
#define DB1_Pin GPIO_PIN_0
#define DB1_GPIO_Port GPIOB
#define DB3_Pin GPIO_PIN_1
#define DB3_GPIO_Port GPIOB
#define DB5_Pin GPIO_PIN_2
#define DB5_GPIO_Port GPIOB
#define DB7_Pin GPIO_PIN_10
#define DB7_GPIO_Port GPIOB
#define DB9_Pin GPIO_PIN_11
#define DB9_GPIO_Port GPIOB
#define DB11_Pin GPIO_PIN_12
#define DB11_GPIO_Port GPIOB
#define DB13_Pin GPIO_PIN_13
#define DB13_GPIO_Port GPIOB
#define DB15_Pin GPIO_PIN_14
#define DB15_GPIO_Port GPIOB
#define IM0_Pin GPIO_PIN_15
#define IM0_GPIO_Port GPIOB
#define IM2_Pin GPIO_PIN_8
#define IM2_GPIO_Port GPIOA
#define IM1_Pin GPIO_PIN_9
#define IM1_GPIO_Port GPIOA
#define PB14_Pin GPIO_PIN_10
#define PB14_GPIO_Port GPIOA
#define DRDX_Pin GPIO_PIN_5
#define DRDX_GPIO_Port GPIOB
#define DB12_Pin GPIO_PIN_9
#define DB12_GPIO_Port GPIOB
/* USER CODE BEGIN Private defines */
/* USER CODE END Private defines */
#ifdef __cplusplus
}
#endif
#endif /* __MAIN_H */

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/* USER CODE BEGIN Header */
/**
******************************************************************************
* @file stm32f1xx_hal_conf.h
* @brief HAL configuration file.
******************************************************************************
* @attention
*
* Copyright (c) 2017 STMicroelectronics.
* All rights reserved.
*
* This software is licensed under terms that can be found in the LICENSE file
* in the root directory of this software component.
* If no LICENSE file comes with this software, it is provided AS-IS.
*
******************************************************************************
*/
/* USER CODE END Header */
/* Define to prevent recursive inclusion -------------------------------------*/
#ifndef __STM32F1xx_HAL_CONF_H
#define __STM32F1xx_HAL_CONF_H
#ifdef __cplusplus
extern "C" {
#endif
/* Exported types ------------------------------------------------------------*/
/* Exported constants --------------------------------------------------------*/
/* ########################## Module Selection ############################## */
/**
* @brief This is the list of modules to be used in the HAL driver
*/
#define HAL_MODULE_ENABLED
/*#define HAL_ADC_MODULE_ENABLED */
/*#define HAL_CRYP_MODULE_ENABLED */
/*#define HAL_CAN_MODULE_ENABLED */
/*#define HAL_CAN_LEGACY_MODULE_ENABLED */
/*#define HAL_CEC_MODULE_ENABLED */
/*#define HAL_CORTEX_MODULE_ENABLED */
/*#define HAL_CRC_MODULE_ENABLED */
/*#define HAL_DAC_MODULE_ENABLED */
/*#define HAL_DMA_MODULE_ENABLED */
/*#define HAL_ETH_MODULE_ENABLED */
/*#define HAL_FLASH_MODULE_ENABLED */
#define HAL_GPIO_MODULE_ENABLED
/*#define HAL_I2C_MODULE_ENABLED */
/*#define HAL_I2S_MODULE_ENABLED */
/*#define HAL_IRDA_MODULE_ENABLED */
/*#define HAL_IWDG_MODULE_ENABLED */
/*#define HAL_NOR_MODULE_ENABLED */
/*#define HAL_NAND_MODULE_ENABLED */
/*#define HAL_PCCARD_MODULE_ENABLED */
/*#define HAL_PCD_MODULE_ENABLED */
/*#define HAL_HCD_MODULE_ENABLED */
/*#define HAL_PWR_MODULE_ENABLED */
/*#define HAL_RCC_MODULE_ENABLED */
/*#define HAL_RTC_MODULE_ENABLED */
/*#define HAL_SD_MODULE_ENABLED */
/*#define HAL_MMC_MODULE_ENABLED */
/*#define HAL_SDRAM_MODULE_ENABLED */
/*#define HAL_SMARTCARD_MODULE_ENABLED */
#define HAL_SPI_MODULE_ENABLED
/*#define HAL_SRAM_MODULE_ENABLED */
/*#define HAL_TIM_MODULE_ENABLED */
#define HAL_UART_MODULE_ENABLED
/*#define HAL_USART_MODULE_ENABLED */
/*#define HAL_WWDG_MODULE_ENABLED */
#define HAL_CORTEX_MODULE_ENABLED
#define HAL_DMA_MODULE_ENABLED
#define HAL_FLASH_MODULE_ENABLED
#define HAL_EXTI_MODULE_ENABLED
#define HAL_GPIO_MODULE_ENABLED
#define HAL_PWR_MODULE_ENABLED
#define HAL_RCC_MODULE_ENABLED
/* ########################## Oscillator Values adaptation ####################*/
/**
* @brief Adjust the value of External High Speed oscillator (HSE) used in your application.
* This value is used by the RCC HAL module to compute the system frequency
* (when HSE is used as system clock source, directly or through the PLL).
*/
#if !defined (HSE_VALUE)
#define HSE_VALUE 8000000U /*!< Value of the External oscillator in Hz */
#endif /* HSE_VALUE */
#if !defined (HSE_STARTUP_TIMEOUT)
#define HSE_STARTUP_TIMEOUT 100U /*!< Time out for HSE start up, in ms */
#endif /* HSE_STARTUP_TIMEOUT */
/**
* @brief Internal High Speed oscillator (HSI) value.
* This value is used by the RCC HAL module to compute the system frequency
* (when HSI is used as system clock source, directly or through the PLL).
*/
#if !defined (HSI_VALUE)
#define HSI_VALUE 8000000U /*!< Value of the Internal oscillator in Hz*/
#endif /* HSI_VALUE */
/**
* @brief Internal Low Speed oscillator (LSI) value.
*/
#if !defined (LSI_VALUE)
#define LSI_VALUE 40000U /*!< LSI Typical Value in Hz */
#endif /* LSI_VALUE */ /*!< Value of the Internal Low Speed oscillator in Hz
The real value may vary depending on the variations
in voltage and temperature. */
/**
* @brief External Low Speed oscillator (LSE) value.
* This value is used by the UART, RTC HAL module to compute the system frequency
*/
#if !defined (LSE_VALUE)
#define LSE_VALUE 32768U /*!< Value of the External oscillator in Hz*/
#endif /* LSE_VALUE */
#if !defined (LSE_STARTUP_TIMEOUT)
#define LSE_STARTUP_TIMEOUT 5000U /*!< Time out for LSE start up, in ms */
#endif /* LSE_STARTUP_TIMEOUT */
/* Tip: To avoid modifying this file each time you need to use different HSE,
=== you can define the HSE value in your toolchain compiler preprocessor. */
/* ########################### System Configuration ######################### */
/**
* @brief This is the HAL system configuration section
*/
#define VDD_VALUE 3300U /*!< Value of VDD in mv */
#define TICK_INT_PRIORITY 15U /*!< tick interrupt priority (lowest by default) */
#define USE_RTOS 0U
#define PREFETCH_ENABLE 1U
#define USE_HAL_ADC_REGISTER_CALLBACKS 0U /* ADC register callback disabled */
#define USE_HAL_CAN_REGISTER_CALLBACKS 0U /* CAN register callback disabled */
#define USE_HAL_CEC_REGISTER_CALLBACKS 0U /* CEC register callback disabled */
#define USE_HAL_DAC_REGISTER_CALLBACKS 0U /* DAC register callback disabled */
#define USE_HAL_ETH_REGISTER_CALLBACKS 0U /* ETH register callback disabled */
#define USE_HAL_HCD_REGISTER_CALLBACKS 0U /* HCD register callback disabled */
#define USE_HAL_I2C_REGISTER_CALLBACKS 0U /* I2C register callback disabled */
#define USE_HAL_I2S_REGISTER_CALLBACKS 0U /* I2S register callback disabled */
#define USE_HAL_MMC_REGISTER_CALLBACKS 0U /* MMC register callback disabled */
#define USE_HAL_NAND_REGISTER_CALLBACKS 0U /* NAND register callback disabled */
#define USE_HAL_NOR_REGISTER_CALLBACKS 0U /* NOR register callback disabled */
#define USE_HAL_PCCARD_REGISTER_CALLBACKS 0U /* PCCARD register callback disabled */
#define USE_HAL_PCD_REGISTER_CALLBACKS 0U /* PCD register callback disabled */
#define USE_HAL_RTC_REGISTER_CALLBACKS 0U /* RTC register callback disabled */
#define USE_HAL_SD_REGISTER_CALLBACKS 0U /* SD register callback disabled */
#define USE_HAL_SMARTCARD_REGISTER_CALLBACKS 0U /* SMARTCARD register callback disabled */
#define USE_HAL_IRDA_REGISTER_CALLBACKS 0U /* IRDA register callback disabled */
#define USE_HAL_SRAM_REGISTER_CALLBACKS 0U /* SRAM register callback disabled */
#define USE_HAL_SPI_REGISTER_CALLBACKS 0U /* SPI register callback disabled */
#define USE_HAL_TIM_REGISTER_CALLBACKS 0U /* TIM register callback disabled */
#define USE_HAL_UART_REGISTER_CALLBACKS 0U /* UART register callback disabled */
#define USE_HAL_USART_REGISTER_CALLBACKS 0U /* USART register callback disabled */
#define USE_HAL_WWDG_REGISTER_CALLBACKS 0U /* WWDG register callback disabled */
/* ########################## Assert Selection ############################## */
/**
* @brief Uncomment the line below to expanse the "assert_param" macro in the
* HAL drivers code
*/
/* #define USE_FULL_ASSERT 1U */
/* ################## Ethernet peripheral configuration ##################### */
/* Section 1 : Ethernet peripheral configuration */
/* MAC ADDRESS: MAC_ADDR0:MAC_ADDR1:MAC_ADDR2:MAC_ADDR3:MAC_ADDR4:MAC_ADDR5 */
#define MAC_ADDR0 2U
#define MAC_ADDR1 0U
#define MAC_ADDR2 0U
#define MAC_ADDR3 0U
#define MAC_ADDR4 0U
#define MAC_ADDR5 0U
/* Definition of the Ethernet driver buffers size and count */
#define ETH_RX_BUF_SIZE ETH_MAX_PACKET_SIZE /* buffer size for receive */
#define ETH_TX_BUF_SIZE ETH_MAX_PACKET_SIZE /* buffer size for transmit */
#define ETH_RXBUFNB 8U /* 4 Rx buffers of size ETH_RX_BUF_SIZE */
#define ETH_TXBUFNB 4U /* 4 Tx buffers of size ETH_TX_BUF_SIZE */
/* Section 2: PHY configuration section */
/* DP83848_PHY_ADDRESS Address*/
#define DP83848_PHY_ADDRESS 0x01U
/* PHY Reset delay these values are based on a 1 ms Systick interrupt*/
#define PHY_RESET_DELAY 0x000000FFU
/* PHY Configuration delay */
#define PHY_CONFIG_DELAY 0x00000FFFU
#define PHY_READ_TO 0x0000FFFFU
#define PHY_WRITE_TO 0x0000FFFFU
/* Section 3: Common PHY Registers */
#define PHY_BCR ((uint16_t)0x00) /*!< Transceiver Basic Control Register */
#define PHY_BSR ((uint16_t)0x01) /*!< Transceiver Basic Status Register */
#define PHY_RESET ((uint16_t)0x8000) /*!< PHY Reset */
#define PHY_LOOPBACK ((uint16_t)0x4000) /*!< Select loop-back mode */
#define PHY_FULLDUPLEX_100M ((uint16_t)0x2100) /*!< Set the full-duplex mode at 100 Mb/s */
#define PHY_HALFDUPLEX_100M ((uint16_t)0x2000) /*!< Set the half-duplex mode at 100 Mb/s */
#define PHY_FULLDUPLEX_10M ((uint16_t)0x0100) /*!< Set the full-duplex mode at 10 Mb/s */
#define PHY_HALFDUPLEX_10M ((uint16_t)0x0000) /*!< Set the half-duplex mode at 10 Mb/s */
#define PHY_AUTONEGOTIATION ((uint16_t)0x1000) /*!< Enable auto-negotiation function */
#define PHY_RESTART_AUTONEGOTIATION ((uint16_t)0x0200) /*!< Restart auto-negotiation function */
#define PHY_POWERDOWN ((uint16_t)0x0800) /*!< Select the power down mode */
#define PHY_ISOLATE ((uint16_t)0x0400) /*!< Isolate PHY from MII */
#define PHY_AUTONEGO_COMPLETE ((uint16_t)0x0020) /*!< Auto-Negotiation process completed */
#define PHY_LINKED_STATUS ((uint16_t)0x0004) /*!< Valid link established */
#define PHY_JABBER_DETECTION ((uint16_t)0x0002) /*!< Jabber condition detected */
/* Section 4: Extended PHY Registers */
#define PHY_SR ((uint16_t)0x10U) /*!< PHY status register Offset */
#define PHY_SPEED_STATUS ((uint16_t)0x0002U) /*!< PHY Speed mask */
#define PHY_DUPLEX_STATUS ((uint16_t)0x0004U) /*!< PHY Duplex mask */
/* ################## SPI peripheral configuration ########################## */
/* CRC FEATURE: Use to activate CRC feature inside HAL SPI Driver
* Activated: CRC code is present inside driver
* Deactivated: CRC code cleaned from driver
*/
#define USE_SPI_CRC 0U
/* Includes ------------------------------------------------------------------*/
/**
* @brief Include module's header file
*/
#ifdef HAL_RCC_MODULE_ENABLED
#include "stm32f1xx_hal_rcc.h"
#endif /* HAL_RCC_MODULE_ENABLED */
#ifdef HAL_GPIO_MODULE_ENABLED
#include "stm32f1xx_hal_gpio.h"
#endif /* HAL_GPIO_MODULE_ENABLED */
#ifdef HAL_EXTI_MODULE_ENABLED
#include "stm32f1xx_hal_exti.h"
#endif /* HAL_EXTI_MODULE_ENABLED */
#ifdef HAL_DMA_MODULE_ENABLED
#include "stm32f1xx_hal_dma.h"
#endif /* HAL_DMA_MODULE_ENABLED */
#ifdef HAL_ETH_MODULE_ENABLED
#include "stm32f1xx_hal_eth.h"
#endif /* HAL_ETH_MODULE_ENABLED */
#ifdef HAL_CAN_MODULE_ENABLED
#include "stm32f1xx_hal_can.h"
#endif /* HAL_CAN_MODULE_ENABLED */
#ifdef HAL_CAN_LEGACY_MODULE_ENABLED
#include "Legacy/stm32f1xx_hal_can_legacy.h"
#endif /* HAL_CAN_LEGACY_MODULE_ENABLED */
#ifdef HAL_CEC_MODULE_ENABLED
#include "stm32f1xx_hal_cec.h"
#endif /* HAL_CEC_MODULE_ENABLED */
#ifdef HAL_CORTEX_MODULE_ENABLED
#include "stm32f1xx_hal_cortex.h"
#endif /* HAL_CORTEX_MODULE_ENABLED */
#ifdef HAL_ADC_MODULE_ENABLED
#include "stm32f1xx_hal_adc.h"
#endif /* HAL_ADC_MODULE_ENABLED */
#ifdef HAL_CRC_MODULE_ENABLED
#include "stm32f1xx_hal_crc.h"
#endif /* HAL_CRC_MODULE_ENABLED */
#ifdef HAL_DAC_MODULE_ENABLED
#include "stm32f1xx_hal_dac.h"
#endif /* HAL_DAC_MODULE_ENABLED */
#ifdef HAL_FLASH_MODULE_ENABLED
#include "stm32f1xx_hal_flash.h"
#endif /* HAL_FLASH_MODULE_ENABLED */
#ifdef HAL_SRAM_MODULE_ENABLED
#include "stm32f1xx_hal_sram.h"
#endif /* HAL_SRAM_MODULE_ENABLED */
#ifdef HAL_NOR_MODULE_ENABLED
#include "stm32f1xx_hal_nor.h"
#endif /* HAL_NOR_MODULE_ENABLED */
#ifdef HAL_I2C_MODULE_ENABLED
#include "stm32f1xx_hal_i2c.h"
#endif /* HAL_I2C_MODULE_ENABLED */
#ifdef HAL_I2S_MODULE_ENABLED
#include "stm32f1xx_hal_i2s.h"
#endif /* HAL_I2S_MODULE_ENABLED */
#ifdef HAL_IWDG_MODULE_ENABLED
#include "stm32f1xx_hal_iwdg.h"
#endif /* HAL_IWDG_MODULE_ENABLED */
#ifdef HAL_PWR_MODULE_ENABLED
#include "stm32f1xx_hal_pwr.h"
#endif /* HAL_PWR_MODULE_ENABLED */
#ifdef HAL_RTC_MODULE_ENABLED
#include "stm32f1xx_hal_rtc.h"
#endif /* HAL_RTC_MODULE_ENABLED */
#ifdef HAL_PCCARD_MODULE_ENABLED
#include "stm32f1xx_hal_pccard.h"
#endif /* HAL_PCCARD_MODULE_ENABLED */
#ifdef HAL_SD_MODULE_ENABLED
#include "stm32f1xx_hal_sd.h"
#endif /* HAL_SD_MODULE_ENABLED */
#ifdef HAL_NAND_MODULE_ENABLED
#include "stm32f1xx_hal_nand.h"
#endif /* HAL_NAND_MODULE_ENABLED */
#ifdef HAL_SPI_MODULE_ENABLED
#include "stm32f1xx_hal_spi.h"
#endif /* HAL_SPI_MODULE_ENABLED */
#ifdef HAL_TIM_MODULE_ENABLED
#include "stm32f1xx_hal_tim.h"
#endif /* HAL_TIM_MODULE_ENABLED */
#ifdef HAL_UART_MODULE_ENABLED
#include "stm32f1xx_hal_uart.h"
#endif /* HAL_UART_MODULE_ENABLED */
#ifdef HAL_USART_MODULE_ENABLED
#include "stm32f1xx_hal_usart.h"
#endif /* HAL_USART_MODULE_ENABLED */
#ifdef HAL_IRDA_MODULE_ENABLED
#include "stm32f1xx_hal_irda.h"
#endif /* HAL_IRDA_MODULE_ENABLED */
#ifdef HAL_SMARTCARD_MODULE_ENABLED
#include "stm32f1xx_hal_smartcard.h"
#endif /* HAL_SMARTCARD_MODULE_ENABLED */
#ifdef HAL_WWDG_MODULE_ENABLED
#include "stm32f1xx_hal_wwdg.h"
#endif /* HAL_WWDG_MODULE_ENABLED */
#ifdef HAL_PCD_MODULE_ENABLED
#include "stm32f1xx_hal_pcd.h"
#endif /* HAL_PCD_MODULE_ENABLED */
#ifdef HAL_HCD_MODULE_ENABLED
#include "stm32f1xx_hal_hcd.h"
#endif /* HAL_HCD_MODULE_ENABLED */
#ifdef HAL_MMC_MODULE_ENABLED
#include "stm32f1xx_hal_mmc.h"
#endif /* HAL_MMC_MODULE_ENABLED */
/* Exported macro ------------------------------------------------------------*/
#ifdef USE_FULL_ASSERT
/**
* @brief The assert_param macro is used for function's parameters check.
* @param expr If expr is false, it calls assert_failed function
* which reports the name of the source file and the source
* line number of the call that failed.
* If expr is true, it returns no value.
* @retval None
*/
#define assert_param(expr) ((expr) ? (void)0U : assert_failed((uint8_t *)__FILE__, __LINE__))
/* Exported functions ------------------------------------------------------- */
void assert_failed(uint8_t* file, uint32_t line);
#else
#define assert_param(expr) ((void)0U)
#endif /* USE_FULL_ASSERT */
#ifdef __cplusplus
}
#endif
#endif /* __STM32F1xx_HAL_CONF_H */

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/* USER CODE BEGIN Header */
/**
******************************************************************************
* @file stm32f1xx_it.h
* @brief This file contains the headers of the interrupt handlers.
******************************************************************************
* @attention
*
* Copyright (c) 2025 STMicroelectronics.
* All rights reserved.
*
* This software is licensed under terms that can be found in the LICENSE file
* in the root directory of this software component.
* If no LICENSE file comes with this software, it is provided AS-IS.
*
******************************************************************************
*/
/* USER CODE END Header */
/* Define to prevent recursive inclusion -------------------------------------*/
#ifndef __STM32F1xx_IT_H
#define __STM32F1xx_IT_H
#ifdef __cplusplus
extern "C" {
#endif
/* Private includes ----------------------------------------------------------*/
/* USER CODE BEGIN Includes */
/* USER CODE END Includes */
/* Exported types ------------------------------------------------------------*/
/* USER CODE BEGIN ET */
/* USER CODE END ET */
/* Exported constants --------------------------------------------------------*/
/* USER CODE BEGIN EC */
/* USER CODE END EC */
/* Exported macro ------------------------------------------------------------*/
/* USER CODE BEGIN EM */
/* USER CODE END EM */
/* Exported functions prototypes ---------------------------------------------*/
void NMI_Handler(void);
void HardFault_Handler(void);
void MemManage_Handler(void);
void BusFault_Handler(void);
void UsageFault_Handler(void);
void SVC_Handler(void);
void DebugMon_Handler(void);
void PendSV_Handler(void);
void SysTick_Handler(void);
/* USER CODE BEGIN EFP */
/* USER CODE END EFP */
#ifdef __cplusplus
}
#endif
#endif /* __STM32F1xx_IT_H */

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// Driver afficheur ADA 1983/chip ILI9341 pour Kit STM32L476 IUT1 de Grenoble Dpt GEII
//
// Adaptations L476, et fusion libs : V. GRENNERAT, IUT1 de Grenoble, Dpt GEII
// Correction bug coordonnees X et Y pour Draw_Char et Draw_Text : V. GRENNERAT
// Ajout fonction LCD_Draw_Image_XY : V. GRENNERAT
// Intégration des fonctions de configuration SPI3 et GPIO : V. GRENNERAT
// Version 2 (1/12/2019) :
// Suppression de l'utilisation de la HAL STM32 : V. GRENNERAT
// Diverses optimisations, dans les burst images.
// --------------------------------
// MIT License
//
// Copyright (c) 2017 Matej Artnak
//
// Permission is hereby granted, free of charge, to any person obtaining a copy
// of this software and associated documentation files (the "Software"), to deal
// in the Software without restriction, including without limitation the rights
// to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
// copies of the Software, and to permit persons to whom the Software is
// furnished to do so, subject to the following conditions:
//
// The above copyright notice and this permission notice shall be included in all
// copies or substantial portions of the Software.
//
/* Includes ------------------------------------------------------------------*/
#include "LCD_driver.h"
#include "5x5_font.h"
#include "stm32f1xx.h"
/* Global Variables ------------------------------------------------------------------*/
volatile uint16_t LCD_HEIGHT = LCD_SCREEN_HEIGHT;
volatile uint16_t LCD_WIDTH = LCD_SCREEN_WIDTH;
/* SPI3 & GPIOs init function */
void LCD_SPI_Init(void)
{
//__HAL_RCC_SPI3_CLK_ENABLE();
RCC->APB1ENR1 |= RCC_APB1ENR1_SPI3EN; // SPI3 clock enable
RCC->AHB2ENR |= RCC_AHB2ENR_GPIOCEN; // GPIOC clock enable
/** CS & DC GPIO signals configuration
PC8 ------> LCD_CS_PIN
PC11 ------> LCD_DC_PIN
*/
GPIOC->BSRR = LCD_CS_PIN | (LCD_DC_PIN <<16); //CS à 1 et DC à 0
GPIOC->MODER |= (1<<16)|(1<<22); //GPIO out
GPIOC->MODER &= ~((1<<17)|(1<<23)); //mise à 0
GPIOC->OTYPER &= (GPIO_OTYPER_OT8 | GPIO_OTYPER_OT11); //PC8 & 11 en PP
GPIOC->OSPEEDR |= (3<<16) | (3<<22); //High speed
/**SPI3 GPIO Configuration
PC10 ------> SPI3_SCK
PC12 ------> SPI3_MOSI */
GPIOC->AFR[1] |= (6 << 8)|(6 << 16); //PC10 en AF6 : SPI3_SCK, PC12 en AF6 : SPI3_MOSI
GPIOC->AFR[1] &= 0xFFF6F6FF; //Mise à 0
GPIOC->MODER |= (2<<20)|(2<<24); //MODE AF
GPIOC->MODER &= 0xFEEFFFFF; //Mise à 0
GPIOC->OTYPER &= (GPIO_OTYPER_OT10 | GPIO_OTYPER_OT12); //PC10 & 12 en PP
GPIOC->OSPEEDR |= (3<<24) | (3<<20); //High speed
/*Configure module SPI3*/
SPI3->CR1=SPI_CR1_SSM | SPI_CR1_SSI; //CS soft, SSI à 1 sinon decl. mode fault
SPI3->CR1|=SPI_CR1_MSTR; // 0 sauf SPE et mode Master, BR = 0 => /2=> Fsck=40M
SPI3->CR2=0x0700 | SPI_CR2_FRXTH;// | SPI_CR2_NSSP; //mode 8 bits, ITs disabled, no DMA, FRXTH doit être à 1 en 8 bits
SPI3->CR1|=SPI_CR1_SPE;
}
/* Send command (char) to LCD via SPI bus */
void LCD_Write_Command(uint8_t Command)
{
// principe : on attend toujours la fin du transfert, à cause du CS_OFF soft qui arrive après.
// donc à priori pas besoin de tester l'état du buffer TX avant l'envoi :
// le buffer devrait toujours vide
CMD; //Ligne de commande a '1'
//CS_ON;
while ((SPI1->SR & SPI_SR_TXE) != 0); // SPI_SR_BSY si besoin dattendre la fin complète de lenvoi des trames SPI.
*(uint8_t *)(SPI1_DR_ADR) = Command; //Cast sur pointeur, pour ecriture 8 bits. Sinon l'acces 16 bits provoque un tfert 16 bits
//CS_OFF;
}
/* Send Data (char) to LCD via SPI bus */
void LCD_Write_Data(uint8_t Data)
{
DATA; //Ligne de data a '1'
CS_ON;
*(uint8_t *)(SPI1_DR_ADR) = Data;
while ((SPI1->SR & SPI_SR_BSY) != 0); //Attendre fin envoi trame (cf RM P1289)
CS_OFF;
}
/* Set Address - Location block - to draw into */
void LCD_Set_Address(uint16_t X1, uint16_t Y1, uint16_t X2, uint16_t Y2)
{
LCD_Write_Command(0x2A);
LCD_Write_Data(X1>>8);
LCD_Write_Data(X1);
LCD_Write_Data(X2>>8);
LCD_Write_Data(X2);
LCD_Write_Command(0x2B);
LCD_Write_Data(Y1>>8);
LCD_Write_Data(Y1);
LCD_Write_Data(Y2>>8);
LCD_Write_Data(Y2);
LCD_Write_Command(0x2C);
}
/*HARDWARE RESET*/
//Reset n'est pas cable sur aff ADA1983
// void LCD_Reset(void)
// {
// HAL_GPIO_WritePin(LCD_RST_PORT, LCD_RST_PIN, GPIO_PIN_SET);
// HAL_Delay(200);
// CS_ON;
// HAL_Delay(200);
// HAL_GPIO_WritePin(LCD_RST_PORT, LCD_RST_PIN, GPIO_PIN_SET);
// }
/*Ser rotation of the screen - changes x0 and y0*/
void LCD_Set_Rotation(uint8_t Rotation)
{
uint8_t screen_rotation = Rotation;
LCD_Write_Command(0x36);
for(volatile uint32_t i=0;i<TEMPO1MS_80M;i++); //~1ms attente
switch(screen_rotation)
{
case SCREEN_VERTICAL_1:
LCD_Write_Data(0x40|0x08);
LCD_WIDTH = 240;
LCD_HEIGHT = 320;
break;
case SCREEN_HORIZONTAL_1:
LCD_Write_Data(0x20|0x08);
LCD_WIDTH = 320;
LCD_HEIGHT = 240;
break;
case SCREEN_VERTICAL_2:
LCD_Write_Data(0x80|0x08);
LCD_WIDTH = 240;
LCD_HEIGHT = 320;
break;
case SCREEN_HORIZONTAL_2:
LCD_Write_Data(0x40|0x80|0x20|0x08);
LCD_WIDTH = 320;
LCD_HEIGHT = 240;
break;
default:
//EXIT IF SCREEN ROTATION NOT VALID!
break;
}
}
/*Enable LCD display*/
//Reset n'est pas cable sur aff ADA1983
// void LCD_Enable(void)
// {
// HAL_GPIO_WritePin(LCD_RST_PORT, LCD_RST_PIN, GPIO_PIN_SET);
// }
/*Initialize LCD display*/
void LCD_Init(void)
{
volatile uint32_t i; //Boucle att
//Reset n'est pas cable sur aff ADA1983
//LCD_Enable();
LCD_SPI_Init();
//LCD_Reset();
//SOFTWARE RESET
LCD_Write_Command(0x01);
for(i=0; i<(1000*TEMPO1MS_80M); i++); //~1s attente @80M
//POWER CONTROL A
LCD_Write_Command(0xCB);
LCD_Write_Data(0x39);
LCD_Write_Data(0x2C);
LCD_Write_Data(0x00);
LCD_Write_Data(0x34);
LCD_Write_Data(0x02);
//POWER CONTROL B
LCD_Write_Command(0xCF);
LCD_Write_Data(0x00);
LCD_Write_Data(0xC1);
LCD_Write_Data(0x30);
//DRIVER TIMING CONTROL A
LCD_Write_Command(0xE8);
LCD_Write_Data(0x85);
LCD_Write_Data(0x00);
LCD_Write_Data(0x78);
//DRIVER TIMING CONTROL B
LCD_Write_Command(0xEA);
LCD_Write_Data(0x00);
LCD_Write_Data(0x00);
//POWER ON SEQUENCE CONTROL
LCD_Write_Command(0xED);
LCD_Write_Data(0x64);
LCD_Write_Data(0x03);
LCD_Write_Data(0x12);
LCD_Write_Data(0x81);
//PUMP RATIO CONTROL
LCD_Write_Command(0xF7);
LCD_Write_Data(0x20);
//POWER CONTROL,VRH[5:0]
LCD_Write_Command(0xC0);
LCD_Write_Data(0x23);
//POWER CONTROL,SAP[2:0];BT[3:0]
LCD_Write_Command(0xC1);
LCD_Write_Data(0x10);
//VCM CONTROL
LCD_Write_Command(0xC5);
LCD_Write_Data(0x3E);
LCD_Write_Data(0x28);
//VCM CONTROL 2
LCD_Write_Command(0xC7);
LCD_Write_Data(0x86);
//MEMORY ACCESS CONTROL
LCD_Write_Command(0x36);
LCD_Write_Data(0x48);
//PIXEL FORMAT
LCD_Write_Command(0x3A);
LCD_Write_Data(0x55);
//FRAME RATIO CONTROL, STANDARD RGB COLOR
LCD_Write_Command(0xB1);
LCD_Write_Data(0x00);
LCD_Write_Data(0x18);
//DISPLAY FUNCTION CONTROL
LCD_Write_Command(0xB6);
LCD_Write_Data(0x08);
LCD_Write_Data(0x82);
LCD_Write_Data(0x27);
//3GAMMA FUNCTION DISABLE
LCD_Write_Command(0xF2);
LCD_Write_Data(0x00);
//GAMMA CURVE SELECTED
LCD_Write_Command(0x26);
LCD_Write_Data(0x01);
//POSITIVE GAMMA CORRECTION
LCD_Write_Command(0xE0);
LCD_Write_Data(0x0F);
LCD_Write_Data(0x31);
LCD_Write_Data(0x2B);
LCD_Write_Data(0x0C);
LCD_Write_Data(0x0E);
LCD_Write_Data(0x08);
LCD_Write_Data(0x4E);
LCD_Write_Data(0xF1);
LCD_Write_Data(0x37);
LCD_Write_Data(0x07);
LCD_Write_Data(0x10);
LCD_Write_Data(0x03);
LCD_Write_Data(0x0E);
LCD_Write_Data(0x09);
LCD_Write_Data(0x00);
//NEGATIVE GAMMA CORRECTION
LCD_Write_Command(0xE1);
LCD_Write_Data(0x00);
LCD_Write_Data(0x0E);
LCD_Write_Data(0x14);
LCD_Write_Data(0x03);
LCD_Write_Data(0x11);
LCD_Write_Data(0x07);
LCD_Write_Data(0x31);
LCD_Write_Data(0xC1);
LCD_Write_Data(0x48);
LCD_Write_Data(0x08);
LCD_Write_Data(0x0F);
LCD_Write_Data(0x0C);
LCD_Write_Data(0x31);
LCD_Write_Data(0x36);
LCD_Write_Data(0x0F);
//EXIT SLEEP
LCD_Write_Command(0x11);
for(i=0; i<(120/TEMPO1MS_80M); i++); //~120ms attente
//TURN ON DISPLAY
LCD_Write_Command(0x29);
//STARTING ROTATION
LCD_Set_Rotation(SCREEN_HORIZONTAL_1);
}
//INTERNAL FUNCTION OF LIBRARY
/*Sends block colour information to LCD*/
void LCD_Draw_Colour_Burst(uint16_t Colour, uint32_t Size)
{
short bufColour;
// On envoie la même couleur sur Size pixels
bufColour = Colour>>8; // pour le tfert dans DR en 1 seul write mais
bufColour |= Colour<<8; // en mode 8 bits, il faut inverser les octets MSB/LSB
DATA;
CS_ON;
for(uint32_t j=0;j<Size;j++){
while((SPI3->SR & SPI_SR_TXE) == 0); //Si FIFO full (TX buffer Empty=0), on attend
SPI3->DR = bufColour;
}
while ((SPI3->SR & SPI_SR_BSY) != 0); //Attendre fin envoi trame
CS_OFF;
}
//FILL THE ENTIRE SCREEN WITH SELECTED COLOUR (either #define-d ones or custom 16bit)
/*Sets address (entire screen) and Sends Height*Width ammount of colour information to LCD*/
void LCD_Fill_Screen(uint16_t Colour)
{
LCD_Set_Address(0,0,LCD_WIDTH,LCD_HEIGHT);
LCD_Draw_Colour_Burst(Colour, LCD_WIDTH*LCD_HEIGHT);
}
//DRAW PIXEL AT XY POSITION WITH SELECTED COLOUR
//
//Location is dependant on screen orientation. x0 and y0 locations change with orientations.
//Using pixels to draw big simple structures is not recommended as it is really slow
//Try using either rectangles or lines if possible
//
void LCD_Draw_Pixel(uint16_t X,uint16_t Y,uint16_t Colour)
{
if((X >=LCD_WIDTH) || (Y >=LCD_HEIGHT)) return; //OUT OF BOUNDS!
//ADDRESS
LCD_Write_Command(0x2A);
//XDATA
DATA;
CS_ON;
SPI3->DR = (X>>8) | (X<<8); //inversion MSB / LSB pour envoi des 2 mots 8 bits en 1W 16bits
//Pas d'att si FIFO full (TX buffer Empty=0) car juste 2 écriture 16 bits tiennent dans FIFO
SPI3->DR = ((X+1)>>8) | ((X+1)<<8);
while ((SPI3->SR & SPI_SR_BSY) != 0); //Attendre fin envoi trame
CS_OFF;
//ADDRESS
LCD_Write_Command(0x2B);
//YDATA
DATA;
CS_ON;
SPI3->DR = (Y>>8) | (Y<<8);
SPI3->DR = ((Y+1)>>8) | ((Y+1)<<8);
while ((SPI3->SR & SPI_SR_BSY) != 0); //Attendre fin envoi trame
CS_OFF;
//ADDRESS
LCD_Write_Command(0x2C);
//COLOUR
DATA;
CS_ON;
SPI3->DR = (Colour>>8) | (Colour<<8);
while ((SPI3->SR & SPI_SR_BSY) != 0); //Attendre fin envoi trame
CS_OFF;
}
//DRAW RECTANGLE OF SET SIZE AND HEIGTH AT X and Y POSITION WITH CUSTOM COLOUR
//
//Rectangle is hollow. X and Y positions mark the upper left corner of rectangle
//As with all other draw calls x0 and y0 locations dependant on screen orientation
//
void LCD_Draw_Rectangle(uint16_t X, uint16_t Y, uint16_t Width, uint16_t Height, uint16_t Colour)
{
if((X >=LCD_WIDTH) || (Y >=LCD_HEIGHT)) return;
if((X+Width-1)>=LCD_WIDTH)
{
Width=LCD_WIDTH-X;
}
if((Y+Height-1)>=LCD_HEIGHT)
{
Height=LCD_HEIGHT-Y;
}
LCD_Set_Address(X, Y, X+Width-1, Y+Height-1);
LCD_Draw_Colour_Burst(Colour, Height*Width);
}
//DRAW LINE FROM X,Y LOCATION to X+Width,Y LOCATION
void LCD_Draw_Horizontal_Line(uint16_t X, uint16_t Y, uint16_t Width, uint16_t Colour)
{
if((X >=LCD_WIDTH) || (Y >=LCD_HEIGHT)) return;
if((X+Width-1)>=LCD_WIDTH)
{
Width=LCD_WIDTH-X;
}
LCD_Set_Address(X, Y, X+Width-1, Y);
LCD_Draw_Colour_Burst(Colour, Width);
}
//DRAW LINE FROM X,Y LOCATION to X,Y+Height LOCATION
void LCD_Draw_Vertical_Line(uint16_t X, uint16_t Y, uint16_t Height, uint16_t Colour)
{
if((X >=LCD_WIDTH) || (Y >=LCD_HEIGHT)) return;
if((Y+Height-1)>=LCD_HEIGHT)
{
Height=LCD_HEIGHT-Y;
}
LCD_Set_Address(X, Y, X, Y+Height-1);
LCD_Draw_Colour_Burst(Colour, Height);
}
/*********************Partie de la Lib issue de LCD_GFX**************************/
/*Draw hollow circle at X,Y location with specified radius and colour. X and Y represent circles center */
void LCD_Draw_Hollow_Circle(uint16_t X, uint16_t Y, uint16_t Radius, uint16_t Colour)
{
int x = Radius-1;
int y = 0;
int dx = 1;
int dy = 1;
int err = dx - (Radius << 1);
while (x >= y)
{
LCD_Draw_Pixel(X + x, Y + y, Colour);
LCD_Draw_Pixel(X + y, Y + x, Colour);
LCD_Draw_Pixel(X - y, Y + x, Colour);
LCD_Draw_Pixel(X - x, Y + y, Colour);
LCD_Draw_Pixel(X - x, Y - y, Colour);
LCD_Draw_Pixel(X - y, Y - x, Colour);
LCD_Draw_Pixel(X + y, Y - x, Colour);
LCD_Draw_Pixel(X + x, Y - y, Colour);
if (err <= 0)
{
y++;
err += dy;
dy += 2;
}
if (err > 0)
{
x--;
dx += 2;
err += (-Radius << 1) + dx;
}
}
}
/*Draw filled circle at X,Y location with specified radius and colour. X and Y represent circles center */
void LCD_Draw_Filled_Circle(uint16_t X, uint16_t Y, uint16_t Radius, uint16_t Colour)
{
int x = Radius;
int y = 0;
int xChange = 1 - (Radius << 1);
int yChange = 0;
int radiusError = 0;
while (x >= y)
{
for (int i = X - x; i <= X + x; i++)
{
LCD_Draw_Pixel(i, Y + y,Colour);
LCD_Draw_Pixel(i, Y - y,Colour);
}
for (int i = X - y; i <= X + y; i++)
{
LCD_Draw_Pixel(i, Y + x,Colour);
LCD_Draw_Pixel(i, Y - x,Colour);
}
y++;
radiusError += yChange;
yChange += 2;
if (((radiusError << 1) + xChange) > 0)
{
x--;
radiusError += xChange;
xChange += 2;
}
}
//Really slow implementation, will require future overhaul
//TODO: https://stackoverflow.com/questions/1201200/fast-algorithm-for-drawing-filled-circles
}
/*Draw a hollow rectangle between positions X0,Y0 and X1,Y1 with specified colour*/
void LCD_Draw_Hollow_Rectangle_Coord(uint16_t X0, uint16_t Y0, uint16_t X1, uint16_t Y1, uint16_t Colour)
{
uint16_t X_length = 0;
uint16_t Y_length = 0;
uint8_t Negative_X = 0;
uint8_t Negative_Y = 0;
float Calc_Negative = 0;
Calc_Negative = X1 - X0;
if(Calc_Negative < 0) Negative_X = 1;
Calc_Negative = 0;
Calc_Negative = Y1 - Y0;
if(Calc_Negative < 0) Negative_Y = 1;
//DRAW HORIZONTAL!
if(!Negative_X)
{
X_length = X1 - X0;
}
else
{
X_length = X0 - X1;
}
LCD_Draw_Horizontal_Line(X0, Y0, X_length, Colour);
LCD_Draw_Horizontal_Line(X0, Y1, X_length, Colour);
//DRAW VERTICAL!
if(!Negative_Y)
{
Y_length = Y1 - Y0;
}
else
{
Y_length = Y0 - Y1;
}
LCD_Draw_Vertical_Line(X0, Y0, Y_length, Colour);
LCD_Draw_Vertical_Line(X1, Y0, Y_length, Colour);
if((X_length > 0)||(Y_length > 0))
{
LCD_Draw_Pixel(X1, Y1, Colour);
}
}
/*Draw a filled rectangle between positions X0,Y0 and X1,Y1 with specified colour*/
void LCD_Draw_Filled_Rectangle_Coord(uint16_t X0, uint16_t Y0, uint16_t X1, uint16_t Y1, uint16_t Colour)
{
uint16_t X_length = 0;
uint16_t Y_length = 0;
uint8_t Negative_X = 0;
uint8_t Negative_Y = 0;
int32_t Calc_Negative = 0;
uint16_t X0_true = 0;
uint16_t Y0_true = 0;
Calc_Negative = X1 - X0;
if(Calc_Negative < 0) Negative_X = 1;
Calc_Negative = 0;
Calc_Negative = Y1 - Y0;
if(Calc_Negative < 0) Negative_Y = 1;
//DRAW HORIZONTAL!
if(!Negative_X)
{
X_length = X1 - X0;
X0_true = X0;
}
else
{
X_length = X0 - X1;
X0_true = X1;
}
//DRAW VERTICAL!
if(!Negative_Y)
{
Y_length = Y1 - Y0;
Y0_true = Y0;
}
else
{
Y_length = Y0 - Y1;
Y0_true = Y1;
}
LCD_Draw_Rectangle(X0_true, Y0_true, X_length, Y_length, Colour);
}
/*Draws a character (fonts imported from fonts.h) at X,Y location with specified font colour, size and Background colour*/
/*See fonts.h implementation of font on what is required for changing to a different font when switching fonts libraries*/
void LCD_Draw_Char(char Character, uint16_t X, uint16_t Y, uint16_t Colour, uint16_t Size, uint16_t Background_Colour)
{
uint8_t function_char;
uint8_t i,j;
function_char = Character;
if (function_char < ' ') {
Character = 0;
} else {
function_char -= 32;
}
char temp[CHAR_WIDTH];
for(uint8_t k = 0; k<CHAR_WIDTH; k++)
{
temp[k] = font[function_char][k];
}
// Draw pixels
LCD_Draw_Rectangle(X, Y, CHAR_WIDTH*Size, CHAR_HEIGHT*Size, Background_Colour);
for (j=0; j<CHAR_WIDTH; j++) {
for (i=0; i<CHAR_HEIGHT; i++) {
if (temp[j] & (1<<i)) {
if(Size == 1)
{
LCD_Draw_Pixel(X+j, Y+i, Colour);
}
else
{
LCD_Draw_Rectangle(X+(j*Size), Y+(i*Size), Size, Size, Colour);
}
}
}
}
}
/*Draws an array of characters (fonts imported from fonts.h) at X,Y location with specified font colour, size and Background colour*/
/*See fonts.h implementation of font on what is required for changing to a different font when switching fonts libraries*/
void LCD_Draw_Text(const char* Text, uint16_t X, uint16_t Y, uint16_t Colour, uint16_t Size, uint16_t Background_Colour)
{
while (*Text) {
LCD_Draw_Char(*Text++, X, Y, Colour, Size, Background_Colour);
X += CHAR_WIDTH*Size;
}
}
/*Dessine une image dans une zone de l'ecran, aux coordonnées X et Y*/
//CONVERTISSEUR: http://www.digole.com/tools/PicturetoC_Hex_converter.php
//65K colour (2Bytes / Pixel)
void LCD_Draw_Image_XY(const char* Image_Array, uint16_t X, uint16_t Y, uint16_t Width, uint16_t Height)
{
LCD_Set_Address(X,Y,X+Width-1,Y+Height-1);
DATA;
CS_ON;
for(uint32_t i = 0; i < Width*Height*2; i+=2)
{
while((SPI3->SR & SPI_SR_TXE) == 0); //Si FIFO full (TX buffer Empty=0), on attend
// on utilise l'ecriture 16 bits dans DR, pour des envois 8 bits
// Le LSB doit etre place ds le MSB :
SPI3->DR = ((short)Image_Array[i+1])<<8 | Image_Array[i];
}
while ((SPI3->SR & SPI_SR_BSY) != 0); //Attendre fin envoi trame
CS_OFF;
}
/*Draws a full screen picture from flash. Image converted from RGB .jpeg/other to C array using online converter*/
//USING CONVERTER: http://www.digole.com/tools/PicturetoC_Hex_converter.php
//65K colour (2Bytes / Pixel)
void LCD_Draw_Image_Full(const char* Image_Array, uint8_t Orientation)
{
switch(Orientation)
{
case SCREEN_HORIZONTAL_1 :
LCD_Set_Rotation(SCREEN_HORIZONTAL_1);
LCD_Set_Address(0,0,LCD_SCREEN_WIDTH,LCD_SCREEN_HEIGHT);
break;
case SCREEN_HORIZONTAL_2 :
LCD_Set_Rotation(SCREEN_HORIZONTAL_2);
LCD_Set_Address(0,0,LCD_SCREEN_WIDTH,LCD_SCREEN_HEIGHT);
break;
case SCREEN_VERTICAL_1 :
LCD_Set_Rotation(SCREEN_VERTICAL_1);
LCD_Set_Address(0,0,LCD_SCREEN_HEIGHT,LCD_SCREEN_WIDTH);
break;
case SCREEN_VERTICAL_2 :
LCD_Set_Rotation(SCREEN_VERTICAL_2);
LCD_Set_Address(0,0,LCD_SCREEN_HEIGHT,LCD_SCREEN_WIDTH);
break;
}
DATA;
CS_ON;
for(uint32_t i = 0; i < LCD_SCREEN_WIDTH*LCD_SCREEN_HEIGHT*2; i+=2)
{
while((SPI3->SR & SPI_SR_TXE) == 0); //Si FIFO full (TX buffer Empty=0), on attend
// on utilise l'ecriture 16 bits dans DR, pour des envois 8 bits
// Le LSB doit etre place ds le MSB :
SPI3->DR = ((short)Image_Array[i+1])<<8 | Image_Array[i];
}
while ((SPI3->SR & SPI_SR_BSY) != 0); //Attendre fin envoi trame
CS_OFF;
}

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/*
Copyright 2016 Benjamin Vedder benjamin@vedder.se
This file is part of the VESC firmware.
The VESC firmware is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
The VESC firmware is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include "crc.h"
// CRC Table
const unsigned short crc16_tab[] = { 0x0000, 0x1021, 0x2042, 0x3063, 0x4084,
0x50a5, 0x60c6, 0x70e7, 0x8108, 0x9129, 0xa14a, 0xb16b, 0xc18c, 0xd1ad,
0xe1ce, 0xf1ef, 0x1231, 0x0210, 0x3273, 0x2252, 0x52b5, 0x4294, 0x72f7,
0x62d6, 0x9339, 0x8318, 0xb37b, 0xa35a, 0xd3bd, 0xc39c, 0xf3ff, 0xe3de,
0x2462, 0x3443, 0x0420, 0x1401, 0x64e6, 0x74c7, 0x44a4, 0x5485, 0xa56a,
0xb54b, 0x8528, 0x9509, 0xe5ee, 0xf5cf, 0xc5ac, 0xd58d, 0x3653, 0x2672,
0x1611, 0x0630, 0x76d7, 0x66f6, 0x5695, 0x46b4, 0xb75b, 0xa77a, 0x9719,
0x8738, 0xf7df, 0xe7fe, 0xd79d, 0xc7bc, 0x48c4, 0x58e5, 0x6886, 0x78a7,
0x0840, 0x1861, 0x2802, 0x3823, 0xc9cc, 0xd9ed, 0xe98e, 0xf9af, 0x8948,
0x9969, 0xa90a, 0xb92b, 0x5af5, 0x4ad4, 0x7ab7, 0x6a96, 0x1a71, 0x0a50,
0x3a33, 0x2a12, 0xdbfd, 0xcbdc, 0xfbbf, 0xeb9e, 0x9b79, 0x8b58, 0xbb3b,
0xab1a, 0x6ca6, 0x7c87, 0x4ce4, 0x5cc5, 0x2c22, 0x3c03, 0x0c60, 0x1c41,
0xedae, 0xfd8f, 0xcdec, 0xddcd, 0xad2a, 0xbd0b, 0x8d68, 0x9d49, 0x7e97,
0x6eb6, 0x5ed5, 0x4ef4, 0x3e13, 0x2e32, 0x1e51, 0x0e70, 0xff9f, 0xefbe,
0xdfdd, 0xcffc, 0xbf1b, 0xaf3a, 0x9f59, 0x8f78, 0x9188, 0x81a9, 0xb1ca,
0xa1eb, 0xd10c, 0xc12d, 0xf14e, 0xe16f, 0x1080, 0x00a1, 0x30c2, 0x20e3,
0x5004, 0x4025, 0x7046, 0x6067, 0x83b9, 0x9398, 0xa3fb, 0xb3da, 0xc33d,
0xd31c, 0xe37f, 0xf35e, 0x02b1, 0x1290, 0x22f3, 0x32d2, 0x4235, 0x5214,
0x6277, 0x7256, 0xb5ea, 0xa5cb, 0x95a8, 0x8589, 0xf56e, 0xe54f, 0xd52c,
0xc50d, 0x34e2, 0x24c3, 0x14a0, 0x0481, 0x7466, 0x6447, 0x5424, 0x4405,
0xa7db, 0xb7fa, 0x8799, 0x97b8, 0xe75f, 0xf77e, 0xc71d, 0xd73c, 0x26d3,
0x36f2, 0x0691, 0x16b0, 0x6657, 0x7676, 0x4615, 0x5634, 0xd94c, 0xc96d,
0xf90e, 0xe92f, 0x99c8, 0x89e9, 0xb98a, 0xa9ab, 0x5844, 0x4865, 0x7806,
0x6827, 0x18c0, 0x08e1, 0x3882, 0x28a3, 0xcb7d, 0xdb5c, 0xeb3f, 0xfb1e,
0x8bf9, 0x9bd8, 0xabbb, 0xbb9a, 0x4a75, 0x5a54, 0x6a37, 0x7a16, 0x0af1,
0x1ad0, 0x2ab3, 0x3a92, 0xfd2e, 0xed0f, 0xdd6c, 0xcd4d, 0xbdaa, 0xad8b,
0x9de8, 0x8dc9, 0x7c26, 0x6c07, 0x5c64, 0x4c45, 0x3ca2, 0x2c83, 0x1ce0,
0x0cc1, 0xef1f, 0xff3e, 0xcf5d, 0xdf7c, 0xaf9b, 0xbfba, 0x8fd9, 0x9ff8,
0x6e17, 0x7e36, 0x4e55, 0x5e74, 0x2e93, 0x3eb2, 0x0ed1, 0x1ef0 };
unsigned short crc16(unsigned char *buf, unsigned int len) {
unsigned int i;
unsigned short cksum = 0;
for (i = 0; i < len; i++) {
cksum = crc16_tab[(((cksum >> 8) ^ *buf++) & 0xFF)] ^ (cksum << 8);
}
return cksum;
}

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/* USER CODE BEGIN Header */
/**
******************************************************************************
* @file : main.c
* @brief : Main program body
******************************************************************************
* @attention
*
* Copyright (c) 2025 STMicroelectronics.
* All rights reserved.
*
* This software is licensed under terms that can be found in the LICENSE file
* in the root directory of this software component.
* If no LICENSE file comes with this software, it is provided AS-IS.
*
******************************************************************************
*/
/* USER CODE END Header */
/* Includes ------------------------------------------------------------------*/
#include "main.h"
#include "LCD_driver.h"
#include "5x5_font.h"
#include "LogoIUT.h"
/* Private includes ----------------------------------------------------------*/
/* USER CODE BEGIN Includes */
/* USER CODE END Includes */
/* Private typedef -----------------------------------------------------------*/
/* USER CODE BEGIN PTD */
/* USER CODE END PTD */
/* Private define ------------------------------------------------------------*/
/* USER CODE BEGIN PD */
/* USER CODE END PD */
/* Private macro -------------------------------------------------------------*/
/* USER CODE BEGIN PM */
/* USER CODE END PM */
/* Private variables ---------------------------------------------------------*/
SPI_HandleTypeDef hspi1;
UART_HandleTypeDef huart1;
/* USER CODE BEGIN PV */
/* USER CODE END PV */
/* Private function prototypes -----------------------------------------------*/
void SystemClock_Config(void);
static void MX_GPIO_Init(void);
static void MX_SPI1_Init(void);
static void MX_USART1_UART_Init(void);
/* USER CODE BEGIN PFP */
/* USER CODE END PFP */
/* Private user code ---------------------------------------------------------*/
/* USER CODE BEGIN 0 */
/* USER CODE END 0 */
/**
* @brief The application entry point.
* @retval int
*/
int main(void)
{
/* USER CODE BEGIN 1 */
/* USER CODE END 1 */
/* MCU Configuration--------------------------------------------------------*/
/* Reset of all peripherals, Initializes the Flash interface and the Systick. */
HAL_Init();
/* USER CODE BEGIN Init */
/* USER CODE END Init */
/* Configure the system clock */
SystemClock_Config();
/* USER CODE BEGIN SysInit */
/* USER CODE END SysInit */
/* Initialize all configured peripherals */
MX_GPIO_Init();
MX_SPI1_Init();
MX_USART1_UART_Init();
/* USER CODE BEGIN 2 */
/* USER CODE END 2 */
/* Infinite loop */
/* USER CODE BEGIN WHILE */
while (1)
{
/* USER CODE END WHILE */
/* USER CODE BEGIN 3 */
}
/* USER CODE END 3 */
}
/**
* @brief System Clock Configuration
* @retval None
*/
void SystemClock_Config(void)
{
RCC_OscInitTypeDef RCC_OscInitStruct = {0};
RCC_ClkInitTypeDef RCC_ClkInitStruct = {0};
/** Initializes the RCC Oscillators according to the specified parameters
* in the RCC_OscInitTypeDef structure.
*/
RCC_OscInitStruct.OscillatorType = RCC_OSCILLATORTYPE_HSI;
RCC_OscInitStruct.HSIState = RCC_HSI_ON;
RCC_OscInitStruct.HSICalibrationValue = RCC_HSICALIBRATION_DEFAULT;
RCC_OscInitStruct.PLL.PLLState = RCC_PLL_ON;
RCC_OscInitStruct.PLL.PLLSource = RCC_PLLSOURCE_HSI_DIV2;
RCC_OscInitStruct.PLL.PLLMUL = RCC_PLL_MUL16;
if (HAL_RCC_OscConfig(&RCC_OscInitStruct) != HAL_OK)
{
Error_Handler();
}
/** Initializes the CPU, AHB and APB buses clocks
*/
RCC_ClkInitStruct.ClockType = RCC_CLOCKTYPE_HCLK|RCC_CLOCKTYPE_SYSCLK
|RCC_CLOCKTYPE_PCLK1|RCC_CLOCKTYPE_PCLK2;
RCC_ClkInitStruct.SYSCLKSource = RCC_SYSCLKSOURCE_PLLCLK;
RCC_ClkInitStruct.AHBCLKDivider = RCC_SYSCLK_DIV1;
RCC_ClkInitStruct.APB1CLKDivider = RCC_HCLK_DIV2;
RCC_ClkInitStruct.APB2CLKDivider = RCC_HCLK_DIV1;
if (HAL_RCC_ClockConfig(&RCC_ClkInitStruct, FLASH_LATENCY_2) != HAL_OK)
{
Error_Handler();
}
}
/**
* @brief SPI1 Initialization Function
* @param None
* @retval None
*/
static void MX_SPI1_Init(void)
{
/* USER CODE BEGIN SPI1_Init 0 */
/* USER CODE END SPI1_Init 0 */
/* USER CODE BEGIN SPI1_Init 1 */
/* USER CODE END SPI1_Init 1 */
/* SPI1 parameter configuration*/
hspi1.Instance = SPI1;
hspi1.Init.Mode = SPI_MODE_MASTER;
hspi1.Init.Direction = SPI_DIRECTION_2LINES;
hspi1.Init.DataSize = SPI_DATASIZE_8BIT;
hspi1.Init.CLKPolarity = SPI_POLARITY_LOW;
hspi1.Init.CLKPhase = SPI_PHASE_1EDGE;
hspi1.Init.NSS = SPI_NSS_HARD_OUTPUT;
hspi1.Init.BaudRatePrescaler = SPI_BAUDRATEPRESCALER_4;
hspi1.Init.FirstBit = SPI_FIRSTBIT_MSB;
hspi1.Init.TIMode = SPI_TIMODE_DISABLE;
hspi1.Init.CRCCalculation = SPI_CRCCALCULATION_DISABLE;
hspi1.Init.CRCPolynomial = 10;
if (HAL_SPI_Init(&hspi1) != HAL_OK)
{
Error_Handler();
}
/* USER CODE BEGIN SPI1_Init 2 */
/* USER CODE END SPI1_Init 2 */
}
/**
* @brief USART1 Initialization Function
* @param None
* @retval None
*/
static void MX_USART1_UART_Init(void)
{
/* USER CODE BEGIN USART1_Init 0 */
/* USER CODE END USART1_Init 0 */
/* USER CODE BEGIN USART1_Init 1 */
/* USER CODE END USART1_Init 1 */
huart1.Instance = USART1;
huart1.Init.BaudRate = 115200;
huart1.Init.WordLength = UART_WORDLENGTH_8B;
huart1.Init.StopBits = UART_STOPBITS_1;
huart1.Init.Parity = UART_PARITY_NONE;
huart1.Init.Mode = UART_MODE_TX_RX;
huart1.Init.HwFlowCtl = UART_HWCONTROL_NONE;
huart1.Init.OverSampling = UART_OVERSAMPLING_16;
if (HAL_UART_Init(&huart1) != HAL_OK)
{
Error_Handler();
}
/* USER CODE BEGIN USART1_Init 2 */
/* USER CODE END USART1_Init 2 */
}
/**
* @brief GPIO Initialization Function
* @param None
* @retval None
*/
static void MX_GPIO_Init(void)
{
GPIO_InitTypeDef GPIO_InitStruct = {0};
/* USER CODE BEGIN MX_GPIO_Init_1 */
/* USER CODE END MX_GPIO_Init_1 */
/* GPIO Ports Clock Enable */
__HAL_RCC_GPIOC_CLK_ENABLE();
__HAL_RCC_GPIOD_CLK_ENABLE();
__HAL_RCC_GPIOA_CLK_ENABLE();
__HAL_RCC_GPIOB_CLK_ENABLE();
/*Configure GPIO pin Output Level */
HAL_GPIO_WritePin(GPIOC, DB10_Pin|DB8_Pin|DB6_Pin, GPIO_PIN_RESET);
/*Configure GPIO pin Output Level */
HAL_GPIO_WritePin(GPIOD, DB4_Pin|DB2_Pin, GPIO_PIN_RESET);
/*Configure GPIO pin Output Level */
HAL_GPIO_WritePin(GPIOA, DB0_Pin|DRESET_Pin|DCX_Pin|IM2_Pin
|IM1_Pin|PB14_Pin, GPIO_PIN_RESET);
/*Configure GPIO pin Output Level */
HAL_GPIO_WritePin(GPIOB, DB1_Pin|DB3_Pin|DB5_Pin|DB7_Pin
|DB9_Pin|DB11_Pin|DB13_Pin|DB15_Pin
|IM0_Pin|DRDX_Pin|DB12_Pin, GPIO_PIN_RESET);
/*Configure GPIO pins : DB10_Pin DB8_Pin DB6_Pin */
GPIO_InitStruct.Pin = DB10_Pin|DB8_Pin|DB6_Pin;
GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP;
GPIO_InitStruct.Pull = GPIO_NOPULL;
GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_LOW;
HAL_GPIO_Init(GPIOC, &GPIO_InitStruct);
/*Configure GPIO pins : DB4_Pin DB2_Pin */
GPIO_InitStruct.Pin = DB4_Pin|DB2_Pin;
GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP;
GPIO_InitStruct.Pull = GPIO_NOPULL;
GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_LOW;
HAL_GPIO_Init(GPIOD, &GPIO_InitStruct);
/*Configure GPIO pins : DB0_Pin DRESET_Pin DCX_Pin IM2_Pin
PB14_Pin */
GPIO_InitStruct.Pin = DB0_Pin|DRESET_Pin|DCX_Pin|IM2_Pin
|PB14_Pin;
GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP;
GPIO_InitStruct.Pull = GPIO_NOPULL;
GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_LOW;
HAL_GPIO_Init(GPIOA, &GPIO_InitStruct);
/*Configure GPIO pin : DTE_Pin */
GPIO_InitStruct.Pin = DTE_Pin;
GPIO_InitStruct.Mode = GPIO_MODE_INPUT;
GPIO_InitStruct.Pull = GPIO_NOPULL;
HAL_GPIO_Init(DTE_GPIO_Port, &GPIO_InitStruct);
/*Configure GPIO pins : DB1_Pin DB3_Pin DB5_Pin DB7_Pin
DB9_Pin DB11_Pin DB13_Pin DB15_Pin
IM0_Pin DRDX_Pin DB12_Pin */
GPIO_InitStruct.Pin = DB1_Pin|DB3_Pin|DB5_Pin|DB7_Pin
|DB9_Pin|DB11_Pin|DB13_Pin|DB15_Pin
|IM0_Pin|DRDX_Pin|DB12_Pin;
GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP;
GPIO_InitStruct.Pull = GPIO_NOPULL;
GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_LOW;
HAL_GPIO_Init(GPIOB, &GPIO_InitStruct);
/*Configure GPIO pin : IM1_Pin */
GPIO_InitStruct.Pin = IM1_Pin;
GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP;
GPIO_InitStruct.Pull = GPIO_NOPULL;
GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_HIGH;
HAL_GPIO_Init(IM1_GPIO_Port, &GPIO_InitStruct);
/*Configure GPIO pin : PA11 */
GPIO_InitStruct.Pin = GPIO_PIN_11;
GPIO_InitStruct.Mode = GPIO_MODE_INPUT;
GPIO_InitStruct.Pull = GPIO_NOPULL;
HAL_GPIO_Init(GPIOA, &GPIO_InitStruct);
/*Configure GPIO pin : PA12 */
GPIO_InitStruct.Pin = GPIO_PIN_12;
GPIO_InitStruct.Mode = GPIO_MODE_AF_PP;
GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_HIGH;
HAL_GPIO_Init(GPIOA, &GPIO_InitStruct);
/*Configure peripheral I/O remapping */
__HAL_AFIO_REMAP_PD01_ENABLE();
/* USER CODE BEGIN MX_GPIO_Init_2 */
/* USER CODE END MX_GPIO_Init_2 */
}
/* USER CODE BEGIN 4 */
/* USER CODE END 4 */
/**
* @brief This function is executed in case of error occurrence.
* @retval None
*/
void Error_Handler(void)
{
/* USER CODE BEGIN Error_Handler_Debug */
/* User can add his own implementation to report the HAL error return state */
__disable_irq();
while (1)
{
}
/* USER CODE END Error_Handler_Debug */
}
#ifdef USE_FULL_ASSERT
/**
* @brief Reports the name of the source file and the source line number
* where the assert_param error has occurred.
* @param file: pointer to the source file name
* @param line: assert_param error line source number
* @retval None
*/
void assert_failed(uint8_t *file, uint32_t line)
{
/* USER CODE BEGIN 6 */
/* User can add his own implementation to report the file name and line number,
ex: printf("Wrong parameters value: file %s on line %d\r\n", file, line) */
/* USER CODE END 6 */
}
#endif /* USE_FULL_ASSERT */

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/* USER CODE BEGIN Header */
/**
******************************************************************************
* @file stm32f1xx_hal_msp.c
* @brief This file provides code for the MSP Initialization
* and de-Initialization codes.
******************************************************************************
* @attention
*
* Copyright (c) 2025 STMicroelectronics.
* All rights reserved.
*
* This software is licensed under terms that can be found in the LICENSE file
* in the root directory of this software component.
* If no LICENSE file comes with this software, it is provided AS-IS.
*
******************************************************************************
*/
/* USER CODE END Header */
/* Includes ------------------------------------------------------------------*/
#include "main.h"
/* USER CODE BEGIN Includes */
/* USER CODE END Includes */
/* Private typedef -----------------------------------------------------------*/
/* USER CODE BEGIN TD */
/* USER CODE END TD */
/* Private define ------------------------------------------------------------*/
/* USER CODE BEGIN Define */
/* USER CODE END Define */
/* Private macro -------------------------------------------------------------*/
/* USER CODE BEGIN Macro */
/* USER CODE END Macro */
/* Private variables ---------------------------------------------------------*/
/* USER CODE BEGIN PV */
/* USER CODE END PV */
/* Private function prototypes -----------------------------------------------*/
/* USER CODE BEGIN PFP */
/* USER CODE END PFP */
/* External functions --------------------------------------------------------*/
/* USER CODE BEGIN ExternalFunctions */
/* USER CODE END ExternalFunctions */
/* USER CODE BEGIN 0 */
/* USER CODE END 0 */
/**
* Initializes the Global MSP.
*/
void HAL_MspInit(void)
{
/* USER CODE BEGIN MspInit 0 */
/* USER CODE END MspInit 0 */
__HAL_RCC_AFIO_CLK_ENABLE();
__HAL_RCC_PWR_CLK_ENABLE();
/* System interrupt init*/
/** DISABLE: JTAG-DP Disabled and SW-DP Disabled
*/
__HAL_AFIO_REMAP_SWJ_DISABLE();
/* USER CODE BEGIN MspInit 1 */
/* USER CODE END MspInit 1 */
}
/**
* @brief SPI MSP Initialization
* This function configures the hardware resources used in this example
* @param hspi: SPI handle pointer
* @retval None
*/
void HAL_SPI_MspInit(SPI_HandleTypeDef* hspi)
{
GPIO_InitTypeDef GPIO_InitStruct = {0};
if(hspi->Instance==SPI1)
{
/* USER CODE BEGIN SPI1_MspInit 0 */
/* USER CODE END SPI1_MspInit 0 */
/* Peripheral clock enable */
__HAL_RCC_SPI1_CLK_ENABLE();
__HAL_RCC_GPIOA_CLK_ENABLE();
/**SPI1 GPIO Configuration
PA4 ------> SPI1_NSS
PA5 ------> SPI1_SCK
PA6 ------> SPI1_MISO
PA7 ------> SPI1_MOSI
*/
GPIO_InitStruct.Pin = GPIO_PIN_4|GPIO_PIN_5|GPIO_PIN_7;
GPIO_InitStruct.Mode = GPIO_MODE_AF_PP;
GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_HIGH;
HAL_GPIO_Init(GPIOA, &GPIO_InitStruct);
GPIO_InitStruct.Pin = GPIO_PIN_6;
GPIO_InitStruct.Mode = GPIO_MODE_INPUT;
GPIO_InitStruct.Pull = GPIO_NOPULL;
HAL_GPIO_Init(GPIOA, &GPIO_InitStruct);
/* USER CODE BEGIN SPI1_MspInit 1 */
/* USER CODE END SPI1_MspInit 1 */
}
}
/**
* @brief SPI MSP De-Initialization
* This function freeze the hardware resources used in this example
* @param hspi: SPI handle pointer
* @retval None
*/
void HAL_SPI_MspDeInit(SPI_HandleTypeDef* hspi)
{
if(hspi->Instance==SPI1)
{
/* USER CODE BEGIN SPI1_MspDeInit 0 */
/* USER CODE END SPI1_MspDeInit 0 */
/* Peripheral clock disable */
__HAL_RCC_SPI1_CLK_DISABLE();
/**SPI1 GPIO Configuration
PA4 ------> SPI1_NSS
PA5 ------> SPI1_SCK
PA6 ------> SPI1_MISO
PA7 ------> SPI1_MOSI
*/
HAL_GPIO_DeInit(GPIOA, GPIO_PIN_4|GPIO_PIN_5|GPIO_PIN_6|GPIO_PIN_7);
/* USER CODE BEGIN SPI1_MspDeInit 1 */
/* USER CODE END SPI1_MspDeInit 1 */
}
}
/**
* @brief UART MSP Initialization
* This function configures the hardware resources used in this example
* @param huart: UART handle pointer
* @retval None
*/
void HAL_UART_MspInit(UART_HandleTypeDef* huart)
{
GPIO_InitTypeDef GPIO_InitStruct = {0};
if(huart->Instance==USART1)
{
/* USER CODE BEGIN USART1_MspInit 0 */
/* USER CODE END USART1_MspInit 0 */
/* Peripheral clock enable */
__HAL_RCC_USART1_CLK_ENABLE();
__HAL_RCC_GPIOB_CLK_ENABLE();
/**USART1 GPIO Configuration
PB6 ------> USART1_TX
PB7 ------> USART1_RX
*/
GPIO_InitStruct.Pin = GPIO_PIN_6;
GPIO_InitStruct.Mode = GPIO_MODE_AF_PP;
GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_HIGH;
HAL_GPIO_Init(GPIOB, &GPIO_InitStruct);
GPIO_InitStruct.Pin = GPIO_PIN_7;
GPIO_InitStruct.Mode = GPIO_MODE_INPUT;
GPIO_InitStruct.Pull = GPIO_NOPULL;
HAL_GPIO_Init(GPIOB, &GPIO_InitStruct);
__HAL_AFIO_REMAP_USART1_ENABLE();
/* USER CODE BEGIN USART1_MspInit 1 */
/* USER CODE END USART1_MspInit 1 */
}
}
/**
* @brief UART MSP De-Initialization
* This function freeze the hardware resources used in this example
* @param huart: UART handle pointer
* @retval None
*/
void HAL_UART_MspDeInit(UART_HandleTypeDef* huart)
{
if(huart->Instance==USART1)
{
/* USER CODE BEGIN USART1_MspDeInit 0 */
/* USER CODE END USART1_MspDeInit 0 */
/* Peripheral clock disable */
__HAL_RCC_USART1_CLK_DISABLE();
/**USART1 GPIO Configuration
PB6 ------> USART1_TX
PB7 ------> USART1_RX
*/
HAL_GPIO_DeInit(GPIOB, GPIO_PIN_6|GPIO_PIN_7);
/* USER CODE BEGIN USART1_MspDeInit 1 */
/* USER CODE END USART1_MspDeInit 1 */
}
}
/* USER CODE BEGIN 1 */
/* USER CODE END 1 */

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/* USER CODE BEGIN Header */
/**
******************************************************************************
* @file stm32f1xx_it.c
* @brief Interrupt Service Routines.
******************************************************************************
* @attention
*
* Copyright (c) 2025 STMicroelectronics.
* All rights reserved.
*
* This software is licensed under terms that can be found in the LICENSE file
* in the root directory of this software component.
* If no LICENSE file comes with this software, it is provided AS-IS.
*
******************************************************************************
*/
/* USER CODE END Header */
/* Includes ------------------------------------------------------------------*/
#include "main.h"
#include "stm32f1xx_it.h"
/* Private includes ----------------------------------------------------------*/
/* USER CODE BEGIN Includes */
/* USER CODE END Includes */
/* Private typedef -----------------------------------------------------------*/
/* USER CODE BEGIN TD */
/* USER CODE END TD */
/* Private define ------------------------------------------------------------*/
/* USER CODE BEGIN PD */
/* USER CODE END PD */
/* Private macro -------------------------------------------------------------*/
/* USER CODE BEGIN PM */
/* USER CODE END PM */
/* Private variables ---------------------------------------------------------*/
/* USER CODE BEGIN PV */
/* USER CODE END PV */
/* Private function prototypes -----------------------------------------------*/
/* USER CODE BEGIN PFP */
/* USER CODE END PFP */
/* Private user code ---------------------------------------------------------*/
/* USER CODE BEGIN 0 */
/* USER CODE END 0 */
/* External variables --------------------------------------------------------*/
/* USER CODE BEGIN EV */
/* USER CODE END EV */
/******************************************************************************/
/* Cortex-M3 Processor Interruption and Exception Handlers */
/******************************************************************************/
/**
* @brief This function handles Non maskable interrupt.
*/
void NMI_Handler(void)
{
/* USER CODE BEGIN NonMaskableInt_IRQn 0 */
/* USER CODE END NonMaskableInt_IRQn 0 */
/* USER CODE BEGIN NonMaskableInt_IRQn 1 */
while (1)
{
}
/* USER CODE END NonMaskableInt_IRQn 1 */
}
/**
* @brief This function handles Hard fault interrupt.
*/
void HardFault_Handler(void)
{
/* USER CODE BEGIN HardFault_IRQn 0 */
/* USER CODE END HardFault_IRQn 0 */
while (1)
{
/* USER CODE BEGIN W1_HardFault_IRQn 0 */
/* USER CODE END W1_HardFault_IRQn 0 */
}
}
/**
* @brief This function handles Memory management fault.
*/
void MemManage_Handler(void)
{
/* USER CODE BEGIN MemoryManagement_IRQn 0 */
/* USER CODE END MemoryManagement_IRQn 0 */
while (1)
{
/* USER CODE BEGIN W1_MemoryManagement_IRQn 0 */
/* USER CODE END W1_MemoryManagement_IRQn 0 */
}
}
/**
* @brief This function handles Prefetch fault, memory access fault.
*/
void BusFault_Handler(void)
{
/* USER CODE BEGIN BusFault_IRQn 0 */
/* USER CODE END BusFault_IRQn 0 */
while (1)
{
/* USER CODE BEGIN W1_BusFault_IRQn 0 */
/* USER CODE END W1_BusFault_IRQn 0 */
}
}
/**
* @brief This function handles Undefined instruction or illegal state.
*/
void UsageFault_Handler(void)
{
/* USER CODE BEGIN UsageFault_IRQn 0 */
/* USER CODE END UsageFault_IRQn 0 */
while (1)
{
/* USER CODE BEGIN W1_UsageFault_IRQn 0 */
/* USER CODE END W1_UsageFault_IRQn 0 */
}
}
/**
* @brief This function handles System service call via SWI instruction.
*/
void SVC_Handler(void)
{
/* USER CODE BEGIN SVCall_IRQn 0 */
/* USER CODE END SVCall_IRQn 0 */
/* USER CODE BEGIN SVCall_IRQn 1 */
/* USER CODE END SVCall_IRQn 1 */
}
/**
* @brief This function handles Debug monitor.
*/
void DebugMon_Handler(void)
{
/* USER CODE BEGIN DebugMonitor_IRQn 0 */
/* USER CODE END DebugMonitor_IRQn 0 */
/* USER CODE BEGIN DebugMonitor_IRQn 1 */
/* USER CODE END DebugMonitor_IRQn 1 */
}
/**
* @brief This function handles Pendable request for system service.
*/
void PendSV_Handler(void)
{
/* USER CODE BEGIN PendSV_IRQn 0 */
/* USER CODE END PendSV_IRQn 0 */
/* USER CODE BEGIN PendSV_IRQn 1 */
/* USER CODE END PendSV_IRQn 1 */
}
/**
* @brief This function handles System tick timer.
*/
void SysTick_Handler(void)
{
/* USER CODE BEGIN SysTick_IRQn 0 */
/* USER CODE END SysTick_IRQn 0 */
HAL_IncTick();
/* USER CODE BEGIN SysTick_IRQn 1 */
/* USER CODE END SysTick_IRQn 1 */
}
/******************************************************************************/
/* STM32F1xx Peripheral Interrupt Handlers */
/* Add here the Interrupt Handlers for the used peripherals. */
/* For the available peripheral interrupt handler names, */
/* please refer to the startup file (startup_stm32f1xx.s). */
/******************************************************************************/
/* USER CODE BEGIN 1 */
/* USER CODE END 1 */

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/**
******************************************************************************
* @file syscalls.c
* @author Auto-generated by STM32CubeIDE
* @brief STM32CubeIDE Minimal System calls file
*
* For more information about which c-functions
* need which of these lowlevel functions
* please consult the Newlib libc-manual
******************************************************************************
* @attention
*
* Copyright (c) 2020-2025 STMicroelectronics.
* All rights reserved.
*
* This software is licensed under terms that can be found in the LICENSE file
* in the root directory of this software component.
* If no LICENSE file comes with this software, it is provided AS-IS.
*
******************************************************************************
*/
/* Includes */
#include <sys/stat.h>
#include <stdlib.h>
#include <errno.h>
#include <stdio.h>
#include <signal.h>
#include <time.h>
#include <sys/time.h>
#include <sys/times.h>
/* Variables */
extern int __io_putchar(int ch) __attribute__((weak));
extern int __io_getchar(void) __attribute__((weak));
char *__env[1] = { 0 };
char **environ = __env;
/* Functions */
void initialise_monitor_handles()
{
}
int _getpid(void)
{
return 1;
}
int _kill(int pid, int sig)
{
(void)pid;
(void)sig;
errno = EINVAL;
return -1;
}
void _exit (int status)
{
_kill(status, -1);
while (1) {} /* Make sure we hang here */
}
__attribute__((weak)) int _read(int file, char *ptr, int len)
{
(void)file;
int DataIdx;
for (DataIdx = 0; DataIdx < len; DataIdx++)
{
*ptr++ = __io_getchar();
}
return len;
}
__attribute__((weak)) int _write(int file, char *ptr, int len)
{
(void)file;
int DataIdx;
for (DataIdx = 0; DataIdx < len; DataIdx++)
{
__io_putchar(*ptr++);
}
return len;
}
int _close(int file)
{
(void)file;
return -1;
}
int _fstat(int file, struct stat *st)
{
(void)file;
st->st_mode = S_IFCHR;
return 0;
}
int _isatty(int file)
{
(void)file;
return 1;
}
int _lseek(int file, int ptr, int dir)
{
(void)file;
(void)ptr;
(void)dir;
return 0;
}
int _open(char *path, int flags, ...)
{
(void)path;
(void)flags;
/* Pretend like we always fail */
return -1;
}
int _wait(int *status)
{
(void)status;
errno = ECHILD;
return -1;
}
int _unlink(char *name)
{
(void)name;
errno = ENOENT;
return -1;
}
int _times(struct tms *buf)
{
(void)buf;
return -1;
}
int _stat(char *file, struct stat *st)
{
(void)file;
st->st_mode = S_IFCHR;
return 0;
}
int _link(char *old, char *new)
{
(void)old;
(void)new;
errno = EMLINK;
return -1;
}
int _fork(void)
{
errno = EAGAIN;
return -1;
}
int _execve(char *name, char **argv, char **env)
{
(void)name;
(void)argv;
(void)env;
errno = ENOMEM;
return -1;
}

79
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/**
******************************************************************************
* @file sysmem.c
* @author Generated by STM32CubeIDE
* @brief STM32CubeIDE System Memory calls file
*
* For more information about which C functions
* need which of these lowlevel functions
* please consult the newlib libc manual
******************************************************************************
* @attention
*
* Copyright (c) 2025 STMicroelectronics.
* All rights reserved.
*
* This software is licensed under terms that can be found in the LICENSE file
* in the root directory of this software component.
* If no LICENSE file comes with this software, it is provided AS-IS.
*
******************************************************************************
*/
/* Includes */
#include <errno.h>
#include <stdint.h>
/**
* Pointer to the current high watermark of the heap usage
*/
static uint8_t *__sbrk_heap_end = NULL;
/**
* @brief _sbrk() allocates memory to the newlib heap and is used by malloc
* and others from the C library
*
* @verbatim
* ############################################################################
* # .data # .bss # newlib heap # MSP stack #
* # # # # Reserved by _Min_Stack_Size #
* ############################################################################
* ^-- RAM start ^-- _end _estack, RAM end --^
* @endverbatim
*
* This implementation starts allocating at the '_end' linker symbol
* The '_Min_Stack_Size' linker symbol reserves a memory for the MSP stack
* The implementation considers '_estack' linker symbol to be RAM end
* NOTE: If the MSP stack, at any point during execution, grows larger than the
* reserved size, please increase the '_Min_Stack_Size'.
*
* @param incr Memory size
* @return Pointer to allocated memory
*/
void *_sbrk(ptrdiff_t incr)
{
extern uint8_t _end; /* Symbol defined in the linker script */
extern uint8_t _estack; /* Symbol defined in the linker script */
extern uint32_t _Min_Stack_Size; /* Symbol defined in the linker script */
const uint32_t stack_limit = (uint32_t)&_estack - (uint32_t)&_Min_Stack_Size;
const uint8_t *max_heap = (uint8_t *)stack_limit;
uint8_t *prev_heap_end;
/* Initialize heap end at first call */
if (NULL == __sbrk_heap_end)
{
__sbrk_heap_end = &_end;
}
/* Protect heap from growing into the reserved MSP stack */
if (__sbrk_heap_end + incr > max_heap)
{
errno = ENOMEM;
return (void *)-1;
}
prev_heap_end = __sbrk_heap_end;
__sbrk_heap_end += incr;
return (void *)prev_heap_end;
}

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/**
******************************************************************************
* @file system_stm32f1xx.c
* @author MCD Application Team
* @brief CMSIS Cortex-M3 Device Peripheral Access Layer System Source File.
*
* 1. This file provides two functions and one global variable to be called from
* user application:
* - SystemInit(): Setups the system clock (System clock source, PLL Multiplier
* factors, AHB/APBx prescalers and Flash settings).
* This function is called at startup just after reset and
* before branch to main program. This call is made inside
* the "startup_stm32f1xx_xx.s" file.
*
* - SystemCoreClock variable: Contains the core clock (HCLK), it can be used
* by the user application to setup the SysTick
* timer or configure other parameters.
*
* - SystemCoreClockUpdate(): Updates the variable SystemCoreClock and must
* be called whenever the core clock is changed
* during program execution.
*
* 2. After each device reset the HSI (8 MHz) is used as system clock source.
* Then SystemInit() function is called, in "startup_stm32f1xx_xx.s" file, to
* configure the system clock before to branch to main program.
*
* 4. The default value of HSE crystal is set to 8 MHz (or 25 MHz, depending on
* the product used), refer to "HSE_VALUE".
* When HSE is used as system clock source, directly or through PLL, and you
* are using different crystal you have to adapt the HSE value to your own
* configuration.
*
******************************************************************************
* @attention
*
* Copyright (c) 2017-2021 STMicroelectronics.
* All rights reserved.
*
* This software is licensed under terms that can be found in the LICENSE file
* in the root directory of this software component.
* If no LICENSE file comes with this software, it is provided AS-IS.
*
******************************************************************************
*/
/** @addtogroup CMSIS
* @{
*/
/** @addtogroup stm32f1xx_system
* @{
*/
/** @addtogroup STM32F1xx_System_Private_Includes
* @{
*/
#include "stm32f1xx.h"
/**
* @}
*/
/** @addtogroup STM32F1xx_System_Private_TypesDefinitions
* @{
*/
/**
* @}
*/
/** @addtogroup STM32F1xx_System_Private_Defines
* @{
*/
#if !defined (HSE_VALUE)
#define HSE_VALUE 8000000U /*!< Default value of the External oscillator in Hz.
This value can be provided and adapted by the user application. */
#endif /* HSE_VALUE */
#if !defined (HSI_VALUE)
#define HSI_VALUE 8000000U /*!< Default value of the Internal oscillator in Hz.
This value can be provided and adapted by the user application. */
#endif /* HSI_VALUE */
/*!< Uncomment the following line if you need to use external SRAM */
#if defined(STM32F100xE) || defined(STM32F101xE) || defined(STM32F101xG) || defined(STM32F103xE) || defined(STM32F103xG)
/* #define DATA_IN_ExtSRAM */
#endif /* STM32F100xE || STM32F101xE || STM32F101xG || STM32F103xE || STM32F103xG */
/* Note: Following vector table addresses must be defined in line with linker
configuration. */
/*!< Uncomment the following line if you need to relocate the vector table
anywhere in Flash or Sram, else the vector table is kept at the automatic
remap of boot address selected */
/* #define USER_VECT_TAB_ADDRESS */
#if defined(USER_VECT_TAB_ADDRESS)
/*!< Uncomment the following line if you need to relocate your vector Table
in Sram else user remap will be done in Flash. */
/* #define VECT_TAB_SRAM */
#if defined(VECT_TAB_SRAM)
#define VECT_TAB_BASE_ADDRESS SRAM_BASE /*!< Vector Table base address field.
This value must be a multiple of 0x200. */
#define VECT_TAB_OFFSET 0x00000000U /*!< Vector Table base offset field.
This value must be a multiple of 0x200. */
#else
#define VECT_TAB_BASE_ADDRESS FLASH_BASE /*!< Vector Table base address field.
This value must be a multiple of 0x200. */
#define VECT_TAB_OFFSET 0x00000000U /*!< Vector Table base offset field.
This value must be a multiple of 0x200. */
#endif /* VECT_TAB_SRAM */
#endif /* USER_VECT_TAB_ADDRESS */
/******************************************************************************/
/**
* @}
*/
/** @addtogroup STM32F1xx_System_Private_Macros
* @{
*/
/**
* @}
*/
/** @addtogroup STM32F1xx_System_Private_Variables
* @{
*/
/* This variable is updated in three ways:
1) by calling CMSIS function SystemCoreClockUpdate()
2) by calling HAL API function HAL_RCC_GetHCLKFreq()
3) each time HAL_RCC_ClockConfig() is called to configure the system clock frequency
Note: If you use this function to configure the system clock; then there
is no need to call the 2 first functions listed above, since SystemCoreClock
variable is updated automatically.
*/
uint32_t SystemCoreClock = 8000000;
const uint8_t AHBPrescTable[16U] = {0, 0, 0, 0, 0, 0, 0, 0, 1, 2, 3, 4, 6, 7, 8, 9};
const uint8_t APBPrescTable[8U] = {0, 0, 0, 0, 1, 2, 3, 4};
/**
* @}
*/
/** @addtogroup STM32F1xx_System_Private_FunctionPrototypes
* @{
*/
#if defined(STM32F100xE) || defined(STM32F101xE) || defined(STM32F101xG) || defined(STM32F103xE) || defined(STM32F103xG)
#ifdef DATA_IN_ExtSRAM
static void SystemInit_ExtMemCtl(void);
#endif /* DATA_IN_ExtSRAM */
#endif /* STM32F100xE || STM32F101xE || STM32F101xG || STM32F103xE || STM32F103xG */
/**
* @}
*/
/** @addtogroup STM32F1xx_System_Private_Functions
* @{
*/
/**
* @brief Setup the microcontroller system
* Initialize the Embedded Flash Interface, the PLL and update the
* SystemCoreClock variable.
* @note This function should be used only after reset.
* @param None
* @retval None
*/
void SystemInit (void)
{
#if defined(STM32F100xE) || defined(STM32F101xE) || defined(STM32F101xG) || defined(STM32F103xE) || defined(STM32F103xG)
#ifdef DATA_IN_ExtSRAM
SystemInit_ExtMemCtl();
#endif /* DATA_IN_ExtSRAM */
#endif
/* Configure the Vector Table location -------------------------------------*/
#if defined(USER_VECT_TAB_ADDRESS)
SCB->VTOR = VECT_TAB_BASE_ADDRESS | VECT_TAB_OFFSET; /* Vector Table Relocation in Internal SRAM. */
#endif /* USER_VECT_TAB_ADDRESS */
}
/**
* @brief Update SystemCoreClock variable according to Clock Register Values.
* The SystemCoreClock variable contains the core clock (HCLK), it can
* be used by the user application to setup the SysTick timer or configure
* other parameters.
*
* @note Each time the core clock (HCLK) changes, this function must be called
* to update SystemCoreClock variable value. Otherwise, any configuration
* based on this variable will be incorrect.
*
* @note - The system frequency computed by this function is not the real
* frequency in the chip. It is calculated based on the predefined
* constant and the selected clock source:
*
* - If SYSCLK source is HSI, SystemCoreClock will contain the HSI_VALUE(*)
*
* - If SYSCLK source is HSE, SystemCoreClock will contain the HSE_VALUE(**)
*
* - If SYSCLK source is PLL, SystemCoreClock will contain the HSE_VALUE(**)
* or HSI_VALUE(*) multiplied by the PLL factors.
*
* (*) HSI_VALUE is a constant defined in stm32f1xx.h file (default value
* 8 MHz) but the real value may vary depending on the variations
* in voltage and temperature.
*
* (**) HSE_VALUE is a constant defined in stm32f1xx.h file (default value
* 8 MHz or 25 MHz, depending on the product used), user has to ensure
* that HSE_VALUE is same as the real frequency of the crystal used.
* Otherwise, this function may have wrong result.
*
* - The result of this function could be not correct when using fractional
* value for HSE crystal.
* @param None
* @retval None
*/
void SystemCoreClockUpdate (void)
{
uint32_t tmp = 0U, pllmull = 0U, pllsource = 0U;
#if defined(STM32F105xC) || defined(STM32F107xC)
uint32_t prediv1source = 0U, prediv1factor = 0U, prediv2factor = 0U, pll2mull = 0U;
#endif /* STM32F105xC */
#if defined(STM32F100xB) || defined(STM32F100xE)
uint32_t prediv1factor = 0U;
#endif /* STM32F100xB or STM32F100xE */
/* Get SYSCLK source -------------------------------------------------------*/
tmp = RCC->CFGR & RCC_CFGR_SWS;
switch (tmp)
{
case 0x00U: /* HSI used as system clock */
SystemCoreClock = HSI_VALUE;
break;
case 0x04U: /* HSE used as system clock */
SystemCoreClock = HSE_VALUE;
break;
case 0x08U: /* PLL used as system clock */
/* Get PLL clock source and multiplication factor ----------------------*/
pllmull = RCC->CFGR & RCC_CFGR_PLLMULL;
pllsource = RCC->CFGR & RCC_CFGR_PLLSRC;
#if !defined(STM32F105xC) && !defined(STM32F107xC)
pllmull = ( pllmull >> 18U) + 2U;
if (pllsource == 0x00U)
{
/* HSI oscillator clock divided by 2 selected as PLL clock entry */
SystemCoreClock = (HSI_VALUE >> 1U) * pllmull;
}
else
{
#if defined(STM32F100xB) || defined(STM32F100xE)
prediv1factor = (RCC->CFGR2 & RCC_CFGR2_PREDIV1) + 1U;
/* HSE oscillator clock selected as PREDIV1 clock entry */
SystemCoreClock = (HSE_VALUE / prediv1factor) * pllmull;
#else
/* HSE selected as PLL clock entry */
if ((RCC->CFGR & RCC_CFGR_PLLXTPRE) != (uint32_t)RESET)
{/* HSE oscillator clock divided by 2 */
SystemCoreClock = (HSE_VALUE >> 1U) * pllmull;
}
else
{
SystemCoreClock = HSE_VALUE * pllmull;
}
#endif
}
#else
pllmull = pllmull >> 18U;
if (pllmull != 0x0DU)
{
pllmull += 2U;
}
else
{ /* PLL multiplication factor = PLL input clock * 6.5 */
pllmull = 13U / 2U;
}
if (pllsource == 0x00U)
{
/* HSI oscillator clock divided by 2 selected as PLL clock entry */
SystemCoreClock = (HSI_VALUE >> 1U) * pllmull;
}
else
{/* PREDIV1 selected as PLL clock entry */
/* Get PREDIV1 clock source and division factor */
prediv1source = RCC->CFGR2 & RCC_CFGR2_PREDIV1SRC;
prediv1factor = (RCC->CFGR2 & RCC_CFGR2_PREDIV1) + 1U;
if (prediv1source == 0U)
{
/* HSE oscillator clock selected as PREDIV1 clock entry */
SystemCoreClock = (HSE_VALUE / prediv1factor) * pllmull;
}
else
{/* PLL2 clock selected as PREDIV1 clock entry */
/* Get PREDIV2 division factor and PLL2 multiplication factor */
prediv2factor = ((RCC->CFGR2 & RCC_CFGR2_PREDIV2) >> 4U) + 1U;
pll2mull = ((RCC->CFGR2 & RCC_CFGR2_PLL2MUL) >> 8U) + 2U;
SystemCoreClock = (((HSE_VALUE / prediv2factor) * pll2mull) / prediv1factor) * pllmull;
}
}
#endif /* STM32F105xC */
break;
default:
SystemCoreClock = HSI_VALUE;
break;
}
/* Compute HCLK clock frequency ----------------*/
/* Get HCLK prescaler */
tmp = AHBPrescTable[((RCC->CFGR & RCC_CFGR_HPRE) >> 4U)];
/* HCLK clock frequency */
SystemCoreClock >>= tmp;
}
#if defined(STM32F100xE) || defined(STM32F101xE) || defined(STM32F101xG) || defined(STM32F103xE) || defined(STM32F103xG)
/**
* @brief Setup the external memory controller. Called in startup_stm32f1xx.s
* before jump to __main
* @param None
* @retval None
*/
#ifdef DATA_IN_ExtSRAM
/**
* @brief Setup the external memory controller.
* Called in startup_stm32f1xx_xx.s/.c before jump to main.
* This function configures the external SRAM mounted on STM3210E-EVAL
* board (STM32 High density devices). This SRAM will be used as program
* data memory (including heap and stack).
* @param None
* @retval None
*/
void SystemInit_ExtMemCtl(void)
{
__IO uint32_t tmpreg;
/*!< FSMC Bank1 NOR/SRAM3 is used for the STM3210E-EVAL, if another Bank is
required, then adjust the Register Addresses */
/* Enable FSMC clock */
RCC->AHBENR = 0x00000114U;
/* Delay after an RCC peripheral clock enabling */
tmpreg = READ_BIT(RCC->AHBENR, RCC_AHBENR_FSMCEN);
/* Enable GPIOD, GPIOE, GPIOF and GPIOG clocks */
RCC->APB2ENR = 0x000001E0U;
/* Delay after an RCC peripheral clock enabling */
tmpreg = READ_BIT(RCC->APB2ENR, RCC_APB2ENR_IOPDEN);
(void)(tmpreg);
/* --------------- SRAM Data lines, NOE and NWE configuration ---------------*/
/*---------------- SRAM Address lines configuration -------------------------*/
/*---------------- NOE and NWE configuration --------------------------------*/
/*---------------- NE3 configuration ----------------------------------------*/
/*---------------- NBL0, NBL1 configuration ---------------------------------*/
GPIOD->CRL = 0x44BB44BBU;
GPIOD->CRH = 0xBBBBBBBBU;
GPIOE->CRL = 0xB44444BBU;
GPIOE->CRH = 0xBBBBBBBBU;
GPIOF->CRL = 0x44BBBBBBU;
GPIOF->CRH = 0xBBBB4444U;
GPIOG->CRL = 0x44BBBBBBU;
GPIOG->CRH = 0x444B4B44U;
/*---------------- FSMC Configuration ---------------------------------------*/
/*---------------- Enable FSMC Bank1_SRAM Bank ------------------------------*/
FSMC_Bank1->BTCR[4U] = 0x00001091U;
FSMC_Bank1->BTCR[5U] = 0x00110212U;
}
#endif /* DATA_IN_ExtSRAM */
#endif /* STM32F100xE || STM32F101xE || STM32F101xG || STM32F103xE || STM32F103xG */
/**
* @}
*/
/**
* @}
*/
/**
* @}
*/

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@ -0,0 +1,364 @@
/**
*************** (C) COPYRIGHT 2017 STMicroelectronics ************************
* @file startup_stm32f103xb.s
* @author MCD Application Team
* @brief STM32F103xB Devices vector table for Atollic toolchain.
* This module performs:
* - Set the initial SP
* - Set the initial PC == Reset_Handler,
* - Set the vector table entries with the exceptions ISR address
* - Configure the clock system
* - Branches to main in the C library (which eventually
* calls main()).
* After Reset the Cortex-M3 processor is in Thread mode,
* priority is Privileged, and the Stack is set to Main.
******************************************************************************
* @attention
*
* Copyright (c) 2017-2021 STMicroelectronics.
* All rights reserved.
*
* This software is licensed under terms that can be found in the LICENSE file
* in the root directory of this software component.
* If no LICENSE file comes with this software, it is provided AS-IS.
*
******************************************************************************
*/
.syntax unified
.cpu cortex-m3
.fpu softvfp
.thumb
.global g_pfnVectors
.global Default_Handler
/* start address for the initialization values of the .data section.
defined in linker script */
.word _sidata
/* start address for the .data section. defined in linker script */
.word _sdata
/* end address for the .data section. defined in linker script */
.word _edata
/* start address for the .bss section. defined in linker script */
.word _sbss
/* end address for the .bss section. defined in linker script */
.word _ebss
.equ BootRAM, 0xF108F85F
/**
* @brief This is the code that gets called when the processor first
* starts execution following a reset event. Only the absolutely
* necessary set is performed, after which the application
* supplied main() routine is called.
* @param None
* @retval : None
*/
.section .text.Reset_Handler
.weak Reset_Handler
.type Reset_Handler, %function
Reset_Handler:
/* Call the clock system initialization function.*/
bl SystemInit
/* Copy the data segment initializers from flash to SRAM */
ldr r0, =_sdata
ldr r1, =_edata
ldr r2, =_sidata
movs r3, #0
b LoopCopyDataInit
CopyDataInit:
ldr r4, [r2, r3]
str r4, [r0, r3]
adds r3, r3, #4
LoopCopyDataInit:
adds r4, r0, r3
cmp r4, r1
bcc CopyDataInit
/* Zero fill the bss segment. */
ldr r2, =_sbss
ldr r4, =_ebss
movs r3, #0
b LoopFillZerobss
FillZerobss:
str r3, [r2]
adds r2, r2, #4
LoopFillZerobss:
cmp r2, r4
bcc FillZerobss
/* Call static constructors */
bl __libc_init_array
/* Call the application's entry point.*/
bl main
bx lr
.size Reset_Handler, .-Reset_Handler
/**
* @brief This is the code that gets called when the processor receives an
* unexpected interrupt. This simply enters an infinite loop, preserving
* the system state for examination by a debugger.
*
* @param None
* @retval : None
*/
.section .text.Default_Handler,"ax",%progbits
Default_Handler:
Infinite_Loop:
b Infinite_Loop
.size Default_Handler, .-Default_Handler
/******************************************************************************
*
* The minimal vector table for a Cortex M3. Note that the proper constructs
* must be placed on this to ensure that it ends up at physical address
* 0x0000.0000.
*
******************************************************************************/
.section .isr_vector,"a",%progbits
.type g_pfnVectors, %object
.size g_pfnVectors, .-g_pfnVectors
g_pfnVectors:
.word _estack
.word Reset_Handler
.word NMI_Handler
.word HardFault_Handler
.word MemManage_Handler
.word BusFault_Handler
.word UsageFault_Handler
.word 0
.word 0
.word 0
.word 0
.word SVC_Handler
.word DebugMon_Handler
.word 0
.word PendSV_Handler
.word SysTick_Handler
.word WWDG_IRQHandler
.word PVD_IRQHandler
.word TAMPER_IRQHandler
.word RTC_IRQHandler
.word FLASH_IRQHandler
.word RCC_IRQHandler
.word EXTI0_IRQHandler
.word EXTI1_IRQHandler
.word EXTI2_IRQHandler
.word EXTI3_IRQHandler
.word EXTI4_IRQHandler
.word DMA1_Channel1_IRQHandler
.word DMA1_Channel2_IRQHandler
.word DMA1_Channel3_IRQHandler
.word DMA1_Channel4_IRQHandler
.word DMA1_Channel5_IRQHandler
.word DMA1_Channel6_IRQHandler
.word DMA1_Channel7_IRQHandler
.word ADC1_2_IRQHandler
.word USB_HP_CAN1_TX_IRQHandler
.word USB_LP_CAN1_RX0_IRQHandler
.word CAN1_RX1_IRQHandler
.word CAN1_SCE_IRQHandler
.word EXTI9_5_IRQHandler
.word TIM1_BRK_IRQHandler
.word TIM1_UP_IRQHandler
.word TIM1_TRG_COM_IRQHandler
.word TIM1_CC_IRQHandler
.word TIM2_IRQHandler
.word TIM3_IRQHandler
.word TIM4_IRQHandler
.word I2C1_EV_IRQHandler
.word I2C1_ER_IRQHandler
.word I2C2_EV_IRQHandler
.word I2C2_ER_IRQHandler
.word SPI1_IRQHandler
.word SPI2_IRQHandler
.word USART1_IRQHandler
.word USART2_IRQHandler
.word USART3_IRQHandler
.word EXTI15_10_IRQHandler
.word RTC_Alarm_IRQHandler
.word USBWakeUp_IRQHandler
.word 0
.word 0
.word 0
.word 0
.word 0
.word 0
.word 0
.word BootRAM /* @0x108. This is for boot in RAM mode for
STM32F10x Medium Density devices. */
/*******************************************************************************
*
* Provide weak aliases for each Exception handler to the Default_Handler.
* As they are weak aliases, any function with the same name will override
* this definition.
*
*******************************************************************************/
.weak NMI_Handler
.thumb_set NMI_Handler,Default_Handler
.weak HardFault_Handler
.thumb_set HardFault_Handler,Default_Handler
.weak MemManage_Handler
.thumb_set MemManage_Handler,Default_Handler
.weak BusFault_Handler
.thumb_set BusFault_Handler,Default_Handler
.weak UsageFault_Handler
.thumb_set UsageFault_Handler,Default_Handler
.weak SVC_Handler
.thumb_set SVC_Handler,Default_Handler
.weak DebugMon_Handler
.thumb_set DebugMon_Handler,Default_Handler
.weak PendSV_Handler
.thumb_set PendSV_Handler,Default_Handler
.weak SysTick_Handler
.thumb_set SysTick_Handler,Default_Handler
.weak WWDG_IRQHandler
.thumb_set WWDG_IRQHandler,Default_Handler
.weak PVD_IRQHandler
.thumb_set PVD_IRQHandler,Default_Handler
.weak TAMPER_IRQHandler
.thumb_set TAMPER_IRQHandler,Default_Handler
.weak RTC_IRQHandler
.thumb_set RTC_IRQHandler,Default_Handler
.weak FLASH_IRQHandler
.thumb_set FLASH_IRQHandler,Default_Handler
.weak RCC_IRQHandler
.thumb_set RCC_IRQHandler,Default_Handler
.weak EXTI0_IRQHandler
.thumb_set EXTI0_IRQHandler,Default_Handler
.weak EXTI1_IRQHandler
.thumb_set EXTI1_IRQHandler,Default_Handler
.weak EXTI2_IRQHandler
.thumb_set EXTI2_IRQHandler,Default_Handler
.weak EXTI3_IRQHandler
.thumb_set EXTI3_IRQHandler,Default_Handler
.weak EXTI4_IRQHandler
.thumb_set EXTI4_IRQHandler,Default_Handler
.weak DMA1_Channel1_IRQHandler
.thumb_set DMA1_Channel1_IRQHandler,Default_Handler
.weak DMA1_Channel2_IRQHandler
.thumb_set DMA1_Channel2_IRQHandler,Default_Handler
.weak DMA1_Channel3_IRQHandler
.thumb_set DMA1_Channel3_IRQHandler,Default_Handler
.weak DMA1_Channel4_IRQHandler
.thumb_set DMA1_Channel4_IRQHandler,Default_Handler
.weak DMA1_Channel5_IRQHandler
.thumb_set DMA1_Channel5_IRQHandler,Default_Handler
.weak DMA1_Channel6_IRQHandler
.thumb_set DMA1_Channel6_IRQHandler,Default_Handler
.weak DMA1_Channel7_IRQHandler
.thumb_set DMA1_Channel7_IRQHandler,Default_Handler
.weak ADC1_2_IRQHandler
.thumb_set ADC1_2_IRQHandler,Default_Handler
.weak USB_HP_CAN1_TX_IRQHandler
.thumb_set USB_HP_CAN1_TX_IRQHandler,Default_Handler
.weak USB_LP_CAN1_RX0_IRQHandler
.thumb_set USB_LP_CAN1_RX0_IRQHandler,Default_Handler
.weak CAN1_RX1_IRQHandler
.thumb_set CAN1_RX1_IRQHandler,Default_Handler
.weak CAN1_SCE_IRQHandler
.thumb_set CAN1_SCE_IRQHandler,Default_Handler
.weak EXTI9_5_IRQHandler
.thumb_set EXTI9_5_IRQHandler,Default_Handler
.weak TIM1_BRK_IRQHandler
.thumb_set TIM1_BRK_IRQHandler,Default_Handler
.weak TIM1_UP_IRQHandler
.thumb_set TIM1_UP_IRQHandler,Default_Handler
.weak TIM1_TRG_COM_IRQHandler
.thumb_set TIM1_TRG_COM_IRQHandler,Default_Handler
.weak TIM1_CC_IRQHandler
.thumb_set TIM1_CC_IRQHandler,Default_Handler
.weak TIM2_IRQHandler
.thumb_set TIM2_IRQHandler,Default_Handler
.weak TIM3_IRQHandler
.thumb_set TIM3_IRQHandler,Default_Handler
.weak TIM4_IRQHandler
.thumb_set TIM4_IRQHandler,Default_Handler
.weak I2C1_EV_IRQHandler
.thumb_set I2C1_EV_IRQHandler,Default_Handler
.weak I2C1_ER_IRQHandler
.thumb_set I2C1_ER_IRQHandler,Default_Handler
.weak I2C2_EV_IRQHandler
.thumb_set I2C2_EV_IRQHandler,Default_Handler
.weak I2C2_ER_IRQHandler
.thumb_set I2C2_ER_IRQHandler,Default_Handler
.weak SPI1_IRQHandler
.thumb_set SPI1_IRQHandler,Default_Handler
.weak SPI2_IRQHandler
.thumb_set SPI2_IRQHandler,Default_Handler
.weak USART1_IRQHandler
.thumb_set USART1_IRQHandler,Default_Handler
.weak USART2_IRQHandler
.thumb_set USART2_IRQHandler,Default_Handler
.weak USART3_IRQHandler
.thumb_set USART3_IRQHandler,Default_Handler
.weak EXTI15_10_IRQHandler
.thumb_set EXTI15_10_IRQHandler,Default_Handler
.weak RTC_Alarm_IRQHandler
.thumb_set RTC_Alarm_IRQHandler,Default_Handler
.weak USBWakeUp_IRQHandler
.thumb_set USBWakeUp_IRQHandler,Default_Handler

188
STM32F103CBTX_FLASH.ld Normal file
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/*
******************************************************************************
**
** @file : LinkerScript.ld
**
** @author : Auto-generated by STM32CubeIDE
**
** @brief : Linker script for STM32F103CBTx Device from STM32F1 series
** 128KBytes FLASH
** 20KBytes RAM
**
** Set heap size, stack size and stack location according
** to application requirements.
**
** Set memory bank area and size if external memory is used
**
** Target : STMicroelectronics STM32
**
** Distribution: The file is distributed as is, without any warranty
** of any kind.
**
******************************************************************************
** @attention
**
** Copyright (c) 2025 STMicroelectronics.
** All rights reserved.
**
** This software is licensed under terms that can be found in the LICENSE file
** in the root directory of this software component.
** If no LICENSE file comes with this software, it is provided AS-IS.
**
******************************************************************************
*/
/* Entry Point */
ENTRY(Reset_Handler)
/* Highest address of the user mode stack */
_estack = ORIGIN(RAM) + LENGTH(RAM); /* end of "RAM" Ram type memory */
_Min_Heap_Size = 0x200; /* required amount of heap */
_Min_Stack_Size = 0x400; /* required amount of stack */
/* Memories definition */
MEMORY
{
RAM (xrw) : ORIGIN = 0x20000000, LENGTH = 20K
FLASH (rx) : ORIGIN = 0x8000000, LENGTH = 128K
}
/* Sections */
SECTIONS
{
/* The startup code into "FLASH" Rom type memory */
.isr_vector :
{
. = ALIGN(4);
KEEP(*(.isr_vector)) /* Startup code */
. = ALIGN(4);
} >FLASH
/* The program code and other data into "FLASH" Rom type memory */
.text :
{
. = ALIGN(4);
*(.text) /* .text sections (code) */
*(.text*) /* .text* sections (code) */
*(.glue_7) /* glue arm to thumb code */
*(.glue_7t) /* glue thumb to arm code */
*(.eh_frame)
KEEP (*(.init))
KEEP (*(.fini))
. = ALIGN(4);
_etext = .; /* define a global symbols at end of code */
} >FLASH
/* Constant data into "FLASH" Rom type memory */
.rodata :
{
. = ALIGN(4);
*(.rodata) /* .rodata sections (constants, strings, etc.) */
*(.rodata*) /* .rodata* sections (constants, strings, etc.) */
. = ALIGN(4);
} >FLASH
.ARM.extab (READONLY) : /* The "READONLY" keyword is only supported in GCC11 and later, remove it if using GCC10 or earlier. */
{
. = ALIGN(4);
*(.ARM.extab* .gnu.linkonce.armextab.*)
. = ALIGN(4);
} >FLASH
.ARM (READONLY) : /* The "READONLY" keyword is only supported in GCC11 and later, remove it if using GCC10 or earlier. */
{
. = ALIGN(4);
__exidx_start = .;
*(.ARM.exidx*)
__exidx_end = .;
. = ALIGN(4);
} >FLASH
.preinit_array (READONLY) : /* The "READONLY" keyword is only supported in GCC11 and later, remove it if using GCC10 or earlier. */
{
. = ALIGN(4);
PROVIDE_HIDDEN (__preinit_array_start = .);
KEEP (*(.preinit_array*))
PROVIDE_HIDDEN (__preinit_array_end = .);
. = ALIGN(4);
} >FLASH
.init_array (READONLY) : /* The "READONLY" keyword is only supported in GCC11 and later, remove it if using GCC10 or earlier. */
{
. = ALIGN(4);
PROVIDE_HIDDEN (__init_array_start = .);
KEEP (*(SORT(.init_array.*)))
KEEP (*(.init_array*))
PROVIDE_HIDDEN (__init_array_end = .);
. = ALIGN(4);
} >FLASH
.fini_array (READONLY) : /* The "READONLY" keyword is only supported in GCC11 and later, remove it if using GCC10 or earlier. */
{
. = ALIGN(4);
PROVIDE_HIDDEN (__fini_array_start = .);
KEEP (*(SORT(.fini_array.*)))
KEEP (*(.fini_array*))
PROVIDE_HIDDEN (__fini_array_end = .);
. = ALIGN(4);
} >FLASH
/* Used by the startup to initialize data */
_sidata = LOADADDR(.data);
/* Initialized data sections into "RAM" Ram type memory */
.data :
{
. = ALIGN(4);
_sdata = .; /* create a global symbol at data start */
*(.data) /* .data sections */
*(.data*) /* .data* sections */
*(.RamFunc) /* .RamFunc sections */
*(.RamFunc*) /* .RamFunc* sections */
. = ALIGN(4);
_edata = .; /* define a global symbol at data end */
} >RAM AT> FLASH
/* Uninitialized data section into "RAM" Ram type memory */
. = ALIGN(4);
.bss :
{
/* This is used by the startup in order to initialize the .bss section */
_sbss = .; /* define a global symbol at bss start */
__bss_start__ = _sbss;
*(.bss)
*(.bss*)
*(COMMON)
. = ALIGN(4);
_ebss = .; /* define a global symbol at bss end */
__bss_end__ = _ebss;
} >RAM
/* User_heap_stack section, used to check that there is enough "RAM" Ram type memory left */
._user_heap_stack :
{
. = ALIGN(8);
PROVIDE ( end = . );
PROVIDE ( _end = . );
. = . + _Min_Heap_Size;
. = . + _Min_Stack_Size;
. = ALIGN(8);
} >RAM
/* Remove information from the compiler libraries */
/DISCARD/ :
{
libc.a ( * )
libm.a ( * )
libgcc.a ( * )
}
.ARM.attributes 0 : { *(.ARM.attributes) }
}

259
ow-dash-cube.ioc Normal file
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@ -0,0 +1,259 @@
#MicroXplorer Configuration settings - do not modify
CAD.formats=
CAD.pinconfig=
CAD.provider=
File.Version=6
GPIO.groupedBy=Group By Peripherals
KeepUserPlacement=false
Mcu.CPN=STM32F103CBT6
Mcu.Family=STM32F1
Mcu.IP0=NVIC
Mcu.IP1=RCC
Mcu.IP2=SPI1
Mcu.IP3=SYS
Mcu.IP4=USART1
Mcu.IPNb=5
Mcu.Name=STM32F103C(8-B)Tx
Mcu.Package=LQFP48
Mcu.Pin0=PC13-TAMPER-RTC
Mcu.Pin1=PC14-OSC32_IN
Mcu.Pin10=PA5
Mcu.Pin11=PA6
Mcu.Pin12=PA7
Mcu.Pin13=PB0
Mcu.Pin14=PB1
Mcu.Pin15=PB2
Mcu.Pin16=PB10
Mcu.Pin17=PB11
Mcu.Pin18=PB12
Mcu.Pin19=PB13
Mcu.Pin2=PC15-OSC32_OUT
Mcu.Pin20=PB14
Mcu.Pin21=PB15
Mcu.Pin22=PA8
Mcu.Pin23=PA9
Mcu.Pin24=PA10
Mcu.Pin25=PA11
Mcu.Pin26=PA12
Mcu.Pin27=PA13
Mcu.Pin28=PA14
Mcu.Pin29=PB3
Mcu.Pin3=PD0-OSC_IN
Mcu.Pin30=PB5
Mcu.Pin31=PB6
Mcu.Pin32=PB7
Mcu.Pin33=PB9
Mcu.Pin34=VP_SYS_VS_ND
Mcu.Pin35=VP_SYS_VS_Systick
Mcu.Pin4=PD1-OSC_OUT
Mcu.Pin5=PA0-WKUP
Mcu.Pin6=PA1
Mcu.Pin7=PA2
Mcu.Pin8=PA3
Mcu.Pin9=PA4
Mcu.PinsNb=36
Mcu.ThirdPartyNb=0
Mcu.UserConstants=
Mcu.UserName=STM32F103CBTx
MxCube.Version=6.15.0
MxDb.Version=DB.6.0.150
NVIC.BusFault_IRQn=true\:0\:0\:false\:false\:true\:false\:false\:false
NVIC.DebugMonitor_IRQn=true\:0\:0\:false\:false\:true\:false\:false\:false
NVIC.ForceEnableDMAVector=true
NVIC.HardFault_IRQn=true\:0\:0\:false\:false\:true\:false\:false\:false
NVIC.MemoryManagement_IRQn=true\:0\:0\:false\:false\:true\:false\:false\:false
NVIC.NonMaskableInt_IRQn=true\:0\:0\:false\:false\:true\:false\:false\:false
NVIC.PendSV_IRQn=true\:0\:0\:false\:false\:true\:false\:false\:false
NVIC.PriorityGroup=NVIC_PRIORITYGROUP_4
NVIC.SVCall_IRQn=true\:0\:0\:false\:false\:true\:false\:false\:false
NVIC.SysTick_IRQn=true\:15\:0\:false\:false\:true\:false\:true\:false
NVIC.UsageFault_IRQn=true\:0\:0\:false\:false\:true\:false\:false\:false
PA0-WKUP.GPIOParameters=GPIO_Label
PA0-WKUP.GPIO_Label=DB0
PA0-WKUP.Locked=true
PA0-WKUP.Signal=GPIO_Output
PA1.GPIOParameters=GPIO_Label
PA1.GPIO_Label=DRESET
PA1.Locked=true
PA1.Signal=GPIO_Output
PA10.GPIOParameters=GPIO_Label
PA10.GPIO_Label=PB14
PA10.Locked=true
PA10.Signal=GPIO_Output
PA11.Locked=true
PA11.Signal=CAN_RX
PA12.Locked=true
PA12.Signal=CAN_TX
PA13.Locked=true
PA13.Signal=SYS_JTMS-SWDIO
PA14.Locked=true
PA14.Signal=SYS_JTCK-SWCLK
PA2.GPIOParameters=GPIO_Label
PA2.GPIO_Label=DTE
PA2.Locked=true
PA2.Signal=GPIO_Input
PA3.GPIOParameters=GPIO_Label
PA3.GPIO_Label=DCX
PA3.Locked=true
PA3.Signal=GPIO_Output
PA4.Locked=true
PA4.Mode=NSS_Signal_Hard_Output
PA4.Signal=SPI1_NSS
PA5.Locked=true
PA5.Mode=Full_Duplex_Master
PA5.Signal=SPI1_SCK
PA6.Locked=true
PA6.Mode=Full_Duplex_Master
PA6.Signal=SPI1_MISO
PA7.Locked=true
PA7.Mode=Full_Duplex_Master
PA7.Signal=SPI1_MOSI
PA8.GPIOParameters=GPIO_Speed,GPIO_Label
PA8.GPIO_Label=IM2
PA8.GPIO_Speed=GPIO_SPEED_FREQ_LOW
PA8.Locked=true
PA8.Signal=GPIO_Output
PA9.GPIOParameters=GPIO_Speed,GPIO_Label
PA9.GPIO_Label=IM1
PA9.GPIO_Speed=GPIO_SPEED_FREQ_HIGH
PA9.Locked=true
PA9.Signal=GPIO_Output
PB0.GPIOParameters=GPIO_Label
PB0.GPIO_Label=DB1
PB0.Locked=true
PB0.Signal=GPIO_Output
PB1.GPIOParameters=GPIO_Label
PB1.GPIO_Label=DB3
PB1.Locked=true
PB1.Signal=GPIO_Output
PB10.GPIOParameters=GPIO_Label
PB10.GPIO_Label=DB7
PB10.Locked=true
PB10.Signal=GPIO_Output
PB11.GPIOParameters=GPIO_Label
PB11.GPIO_Label=DB9
PB11.Locked=true
PB11.Signal=GPIO_Output
PB12.GPIOParameters=GPIO_Label
PB12.GPIO_Label=DB11
PB12.Locked=true
PB12.Signal=GPIO_Output
PB13.GPIOParameters=GPIO_Label
PB13.GPIO_Label=DB13
PB13.Locked=true
PB13.Signal=GPIO_Output
PB14.GPIOParameters=GPIO_Label
PB14.GPIO_Label=DB15
PB14.Locked=true
PB14.Signal=GPIO_Output
PB15.GPIOParameters=GPIO_Label
PB15.GPIO_Label=IM0
PB15.Locked=true
PB15.Signal=GPIO_Output
PB2.GPIOParameters=GPIO_Label
PB2.GPIO_Label=DB5
PB2.Locked=true
PB2.Signal=GPIO_Output
PB3.Locked=true
PB3.Signal=SYS_JTDO-TRACESWO
PB5.GPIOParameters=GPIO_Label
PB5.GPIO_Label=DRDX
PB5.Locked=true
PB5.Signal=GPIO_Output
PB6.Locked=true
PB6.Mode=Asynchronous
PB6.Signal=USART1_TX
PB7.Locked=true
PB7.Mode=Asynchronous
PB7.Signal=USART1_RX
PB9.GPIOParameters=GPIO_Label
PB9.GPIO_Label=DB12
PB9.Locked=true
PB9.Signal=GPIO_Output
PC13-TAMPER-RTC.GPIOParameters=GPIO_Label
PC13-TAMPER-RTC.GPIO_Label=DB10
PC13-TAMPER-RTC.Locked=true
PC13-TAMPER-RTC.Signal=GPIO_Output
PC14-OSC32_IN.GPIOParameters=GPIO_Label
PC14-OSC32_IN.GPIO_Label=DB8
PC14-OSC32_IN.Locked=true
PC14-OSC32_IN.Signal=GPIO_Output
PC15-OSC32_OUT.GPIOParameters=GPIO_Label
PC15-OSC32_OUT.GPIO_Label=DB6
PC15-OSC32_OUT.Locked=true
PC15-OSC32_OUT.Signal=GPIO_Output
PD0-OSC_IN.GPIOParameters=GPIO_Label
PD0-OSC_IN.GPIO_Label=DB4
PD0-OSC_IN.Locked=true
PD0-OSC_IN.Signal=GPIO_Output
PD1-OSC_OUT.GPIOParameters=GPIO_Label
PD1-OSC_OUT.GPIO_Label=DB2
PD1-OSC_OUT.Locked=true
PD1-OSC_OUT.Signal=GPIO_Output
PinOutPanel.RotationAngle=-90
ProjectManager.AskForMigrate=true
ProjectManager.BackupPrevious=false
ProjectManager.CompilerLinker=GCC
ProjectManager.CompilerOptimize=6
ProjectManager.ComputerToolchain=false
ProjectManager.CoupleFile=false
ProjectManager.CustomerFirmwarePackage=
ProjectManager.DefaultFWLocation=true
ProjectManager.DeletePrevious=true
ProjectManager.DeviceId=STM32F103CBTx
ProjectManager.FirmwarePackage=STM32Cube FW_F1 V1.8.6
ProjectManager.FreePins=false
ProjectManager.HalAssertFull=false
ProjectManager.HeapSize=0x200
ProjectManager.KeepUserCode=true
ProjectManager.LastFirmware=true
ProjectManager.LibraryCopy=2
ProjectManager.MainLocation=Core/Src
ProjectManager.NoMain=false
ProjectManager.PreviousToolchain=
ProjectManager.ProjectBuild=false
ProjectManager.ProjectFileName=ow-dash-cube.ioc
ProjectManager.ProjectName=ow-dash-cube
ProjectManager.ProjectStructure=
ProjectManager.RegisterCallBack=
ProjectManager.StackSize=0x400
ProjectManager.TargetToolchain=STM32CubeIDE
ProjectManager.ToolChainLocation=
ProjectManager.UAScriptAfterPath=
ProjectManager.UAScriptBeforePath=
ProjectManager.UnderRoot=true
ProjectManager.functionlistsort=1-SystemClock_Config-RCC-false-HAL-false,2-MX_GPIO_Init-GPIO-false-HAL-true,3-MX_CRC_Init-CRC-false-HAL-true,4-MX_SPI1_Init-SPI1-false-HAL-true,5-MX_USART1_UART_Init-USART1-false-HAL-true
RCC.ADCFreqValue=32000000
RCC.AHBFreq_Value=64000000
RCC.APB1CLKDivider=RCC_HCLK_DIV2
RCC.APB1Freq_Value=32000000
RCC.APB1TimFreq_Value=64000000
RCC.APB2Freq_Value=64000000
RCC.APB2TimFreq_Value=64000000
RCC.FCLKCortexFreq_Value=64000000
RCC.FamilyName=M
RCC.HCLKFreq_Value=64000000
RCC.IPParameters=ADCFreqValue,AHBFreq_Value,APB1CLKDivider,APB1Freq_Value,APB1TimFreq_Value,APB2Freq_Value,APB2TimFreq_Value,FCLKCortexFreq_Value,FamilyName,HCLKFreq_Value,MCOFreq_Value,PLLCLKFreq_Value,PLLMCOFreq_Value,PLLMUL,SYSCLKFreq_VALUE,SYSCLKSource,TimSysFreq_Value,USBFreq_Value
RCC.MCOFreq_Value=64000000
RCC.PLLCLKFreq_Value=64000000
RCC.PLLMCOFreq_Value=32000000
RCC.PLLMUL=RCC_PLL_MUL16
RCC.SYSCLKFreq_VALUE=64000000
RCC.SYSCLKSource=RCC_SYSCLKSOURCE_PLLCLK
RCC.TimSysFreq_Value=64000000
RCC.USBFreq_Value=64000000
SPI1.BaudRatePrescaler=SPI_BAUDRATEPRESCALER_4
SPI1.CalculateBaudRate=16.0 MBits/s
SPI1.Direction=SPI_DIRECTION_2LINES
SPI1.IPParameters=VirtualType,Mode,Direction,CalculateBaudRate,VirtualNSS,BaudRatePrescaler
SPI1.Mode=SPI_MODE_MASTER
SPI1.VirtualNSS=VM_NSSHARD
SPI1.VirtualType=VM_MASTER
USART1.IPParameters=VirtualMode
USART1.VirtualMode=VM_ASYNC
VP_SYS_VS_ND.Mode=No_Debug
VP_SYS_VS_ND.Signal=SYS_VS_ND
VP_SYS_VS_Systick.Mode=SysTick
VP_SYS_VS_Systick.Signal=SYS_VS_Systick
board=custom
isbadioc=false