Files
WeActStudio.EpaperModule/Example/EpaperModuleTest_GD32F303/Src/main.c
T
2023-11-28 22:47:01 +08:00

354 lines
9.6 KiB
C

/*---------------------------------------
- WeAct Studio Official Link
- taobao: weactstudio.taobao.com
- aliexpress: weactstudio.aliexpress.com
- github: github.com/WeActTC
- gitee: gitee.com/WeAct-TC
- blog: www.weact-tc.cn
---------------------------------------*/
#include "gd32f30x.h"
#include <stdio.h>
#include "systick.h"
#include "usart.h"
#include "gpio.h"
float temperature;
float vref_value;
void adc_config(void);
void jump_to_app(uint32_t addr);
#include "epaper.h"
#include "bmp.h"
// define for White Black Red Epaper Module
#define EPD_BWR
uint8_t image_bw[EPD_W_BUFF_SIZE * EPD_H];
#ifdef EPD_BWR
uint8_t image_red[EPD_W_BUFF_SIZE * EPD_H];
#endif
/*!
\brief main function
\param[in] none
\param[out] none
\retval none
*/
int main(void)
{
uint8_t text[20];
#ifdef HID_IAP
/* Soft :GD32 MCU HID IAP Programmer, Bootloader Size :8KB */
/* if use HID bootloader ,set ROM start addr 0x8002000 && set vector */
/* if not use HID bootloader ,set ROM start addr 0x8000000 && Comment out the following code */
// nvic_vector_table_set(NVIC_VECTTAB_FLASH,0x2000);
nvic_vector_table_set(NVIC_VECTTAB_FLASH, 0x2000);
#endif
rcu_all_reset_flag_clear();
dbg_low_power_enable(DBG_LOW_POWER_SLEEP | DBG_LOW_POWER_DEEPSLEEP | DBG_LOW_POWER_STANDBY);
systick_config();
gpio_config();
adc_config();
usart0_config();
FlagStatus sw_led = SET;
uint32_t tick1, tick2;
tick1 = tick2 = get_tick();
printf("\r\nWeAct Studio Core Board\r\n");
printf("weactstudio.taobao.com\r\n");
printf("weactstudio.aliexpress.com\r\n");
printf("wwww.weact-tc.cn\r\n\r\n");
printf("SystemClk:%d\r\n", SystemCoreClock);
printf("CK_AHB is %d\r\n", rcu_clock_freq_get(CK_AHB));
printf("CK_APB1 is %d\r\n", rcu_clock_freq_get(CK_APB1));
printf("CK_APB2 is %d\r\n", rcu_clock_freq_get(CK_APB2));
printf("Epaper Module Test\r\n");
epd_io_init();
epd_init();
#ifdef EPD_BWR
epd_paint_newimage(image_bw, EPD_W, EPD_H, EPD_ROTATE_180, EPD_COLOR_WHITE);
epd_paint_newimage(image_red, EPD_W, EPD_H, EPD_ROTATE_180, EPD_COLOR_WHITE);
epd_paint_selectimage(image_bw);
epd_paint_clear(EPD_COLOR_WHITE);
epd_paint_selectimage(image_red);
epd_paint_clear(EPD_COLOR_WHITE);
epd_paint_showPicture((EPD_H - 250) / 2, (EPD_W - 122) / 2, 250, 122, gImage_4, EPD_COLOR_WHITE);
epd_display(image_bw, image_red);
epd_enter_deepsleepmode(EPD_DEEPSLEEP_MODE1);
delay(8000);
epd_init();
epd_paint_selectimage(image_bw);
epd_paint_clear(EPD_COLOR_WHITE);
#ifdef EPD_213
epd_paint_showString(10, 0, (uint8_t *)&"2.13 Epaper Module", EPD_FONT_SIZE24x12, EPD_COLOR_BLACK);
epd_paint_showString(10, 50, (uint8_t *)&"with 250 x 122 resolution", EPD_FONT_SIZE16x8, EPD_COLOR_BLACK);
#endif
#ifdef EPD_29
epd_paint_showString(10, 0, (uint8_t *)&"2.9 Epaper Module", EPD_FONT_SIZE24x12, EPD_COLOR_BLACK);
epd_paint_showString(10, 50, (uint8_t *)&"with 296 x 128 resolution", EPD_FONT_SIZE16x8, EPD_COLOR_BLACK);
#endif
epd_paint_showString(10, 29, (uint8_t *)&"Designed By WeAct Studio", EPD_FONT_SIZE16x8, EPD_COLOR_BLACK);
epd_paint_selectimage(image_red);
epd_paint_clear(EPD_COLOR_WHITE);
sprintf((char *)&text, ">> Hello World.");
epd_paint_showString(10, 71, text, EPD_FONT_SIZE24x12, EPD_COLOR_RED);
#if 1
epd_paint_showString(10,100,(uint8_t *)&"GD32F303CCT6 Example",EPD_FONT_SIZE16x8,EPD_COLOR_RED);
#else
epd_paint_drawRectangle(10, 103, EPD_H - 10, 116, EPD_COLOR_RED, 1);
#endif
epd_display(image_bw, image_red);
#else
epd_paint_newimage(image_bw, EPD_W, EPD_H, EPD_ROTATE_180, EPD_COLOR_WHITE);
epd_paint_selectimage(image_bw);
#ifdef EPD_154
epd_paint_clear(EPD_COLOR_WHITE);
epd_paint_showPicture((EPD_H - 200) / 2,(EPD_W - 64) / 2,200,64,gImage_5,EPD_COLOR_WHITE);
#else
epd_paint_clear(EPD_COLOR_WHITE);
epd_paint_showPicture((EPD_H - 250) / 2, (EPD_W - 122) / 2, 250, 122, gImage_4, EPD_COLOR_WHITE);
#endif
epd_displayBW(image_bw);
epd_enter_deepsleepmode(EPD_DEEPSLEEP_MODE1);
delay(5000);
epd_init_partial();
epd_paint_selectimage(image_bw);
epd_paint_clear(EPD_COLOR_WHITE);
#ifdef EPD_154
epd_paint_showString(10, 0, (uint8_t *)&"1.54 Inch", EPD_FONT_SIZE24x12, EPD_COLOR_BLACK);
epd_paint_showString(10, 23, (uint8_t *)&"Epaper Module", EPD_FONT_SIZE24x12, EPD_COLOR_BLACK);
epd_paint_showString(10, 48, (uint8_t *)&"Designed By WeAct Studio", EPD_FONT_SIZE12x6, EPD_COLOR_BLACK);
epd_paint_showString(10, 60, (uint8_t *)&"with 200 x 200 resolution", EPD_FONT_SIZE12x6, EPD_COLOR_BLACK);
epd_paint_showPicture((EPD_H - 200) / 2,130,200,64,gImage_5,EPD_COLOR_WHITE);
#endif
#ifdef EPD_213
epd_paint_showString(10, 0, (uint8_t *)&"2.13 Epaper Module", EPD_FONT_SIZE24x12, EPD_COLOR_BLACK);
epd_paint_showString(10, 50, (uint8_t *)&"with 250 x 122 resolution", EPD_FONT_SIZE16x8, EPD_COLOR_BLACK);
epd_paint_showString(10, 29, (uint8_t *)&"Designed By WeAct Studio", EPD_FONT_SIZE16x8, EPD_COLOR_BLACK);
#endif
#ifdef EPD_29
epd_paint_showString(10, 0, (uint8_t *)&"2.9 Epaper Module", EPD_FONT_SIZE24x12, EPD_COLOR_BLACK);
epd_paint_showString(10, 50, (uint8_t *)&"with 296 x 128 resolution", EPD_FONT_SIZE16x8, EPD_COLOR_BLACK);
epd_paint_showString(10, 29, (uint8_t *)&"Designed By WeAct Studio", EPD_FONT_SIZE16x8, EPD_COLOR_BLACK);
#endif
#if 1
epd_paint_showString(10,100,(uint8_t *)&"GD32F303CCT6 Example",EPD_FONT_SIZE16x8,EPD_COLOR_BLACK);
#else
epd_paint_drawRectangle(10, 103, EPD_H - 10, 116, EPD_COLOR_BLACK, 1);
#endif
sprintf((char *)&text, ">> Partial Mode");
epd_paint_showString(10, 71, text, EPD_FONT_SIZE24x12, EPD_COLOR_BLACK);
epd_displayBW_partial(image_bw);
delay(1000);
for (uint32_t i = 123; i < 8 * 123; i += 123)
{
sprintf((char *)&text, ">> Num=%d ", i);
epd_paint_showString(10, 71, text, EPD_FONT_SIZE24x12, EPD_COLOR_BLACK);
epd_displayBW_partial(image_bw);
delay(100);
}
sprintf((char *)&text, ">> Hello World.");
epd_paint_showString(10, 71, text, EPD_FONT_SIZE24x12, EPD_COLOR_BLACK);
epd_displayBW_partial(image_bw);
delay(1000);
epd_update();
#endif
epd_enter_deepsleepmode(EPD_DEEPSLEEP_MODE1);
while (1)
{
if (get_tick() > tick1)
{
tick1 = get_tick() + 500 / SysTick_Tick;
if (sw_led == SET)
{
/* toggle LED */
gpio_bit_write(LED_PB2_PORT, LED_PB2_PIN, (gpio_output_bit_get(LED_PB2_PORT, LED_PB2_PIN)) == SET ? RESET : SET);
}
else
{
gpio_bit_reset(LED_PB2_PORT, LED_PB2_PIN);
}
}
if (get_tick() > tick2)
{
tick2 = get_tick() + 10 / SysTick_Tick;
static uint32_t PressTimeCount = 0;
static FlagStatus IsPress = RESET;
if (gpio_input_bit_get(KEY_PORT, KEY_PIN) != SET)
{
if (IsPress == SET)
{
IsPress = RESET;
/* KEY click */
sw_led = sw_led == SET ? RESET : SET;
printf("Hello,WeAct Studio\r\n");
/* ADC software trigger enable */
adc_software_trigger_enable(ADC0, ADC_INSERTED_CHANNEL);
/* delay a time in milliseconds */
while (adc_flag_get(ADC0, ADC_FLAG_EOC) == RESET)
{
delay_lp(1);
}
adc_flag_clear(ADC0, ADC_FLAG_EOC);
/* value convert */
temperature = (1430.f - ADC_IDATA0(ADC0) * 3300 / 4096) / 4.3f + 25;
vref_value = (ADC_IDATA1(ADC0) * 3300 / 4096.f);
/* value print */
printf("The temperature data is %2.1f degrees Celsius\r\n", temperature);
printf("The reference voltage data is %5.3fmV \r\n", vref_value);
printf("\r\n");
PressTimeCount = 0;
}
}
else
{
if (IsPress == RESET)
{
IsPress = SET;
}
PressTimeCount++;
/*0.5s KEY long press */
if (PressTimeCount >= 50)
{
/* long press , system reset and enter the IAP bootloader */
if (SCB->VTOR != 0)
{
printf("Enter IAP Bootloader ...\r\n");
NVIC_SystemReset();
}
else
{
printf("Enter system ISP Bootloader ...\r\n");
#define ISP_ADDR ((uint32_t)0x1FFFF000)
systick_deinit();
gpio_deinit(LED_PB2_PORT);
gpio_deinit(KEY_PORT);
jump_to_app(ISP_ADDR);
}
}
}
}
pmu_to_sleepmode(WFI_CMD);
}
}
/*!
\brief configure the ADC peripheral
\param[in] none
\param[out] none
\retval none
*/
void adc_config(void)
{
/* enable ADC clock */
rcu_periph_clock_enable(RCU_ADC0);
/* config ADC clock */
rcu_adc_clock_config(RCU_CKADC_CKAPB2_DIV4);
/* ADC SCAN function enable */
adc_special_function_config(ADC0, ADC_SCAN_MODE, ENABLE);
adc_special_function_config(ADC0, ADC_CONTINUOUS_MODE, DISABLE);
/* ADC trigger config */
adc_external_trigger_source_config(ADC0, ADC_INSERTED_CHANNEL, ADC0_1_2_EXTTRIG_INSERTED_NONE);
/* ADC mode config */
adc_mode_config(ADC_MODE_FREE);
/* ADC data alignment config */
adc_data_alignment_config(ADC0, ADC_DATAALIGN_RIGHT);
/* ADC channel length config */
adc_channel_length_config(ADC0, ADC_INSERTED_CHANNEL, 2);
/* ADC temperature sensor channel config */
adc_inserted_channel_config(ADC0, 0, ADC_CHANNEL_16, ADC_SAMPLETIME_239POINT5);
/* ADC internal reference voltage channel config */
adc_inserted_channel_config(ADC0, 1, ADC_CHANNEL_17, ADC_SAMPLETIME_239POINT5);
adc_external_trigger_config(ADC0, ADC_INSERTED_CHANNEL, ENABLE);
/* ADC temperature and Vrefint enable */
adc_tempsensor_vrefint_enable();
/* enable ADC interface */
adc_enable(ADC0);
delay(1);
/* ADC calibration and reset calibration */
adc_calibration_enable(ADC0);
}
void jump_to_app(uint32_t addr)
{
uint32_t app_address;
void *(*application)(void);
/* test if user code is programmed starting from address */
if (((*(__IO uint32_t *)addr) & 0x2FFE0000) == 0x20000000)
{
app_address = *(__IO uint32_t *)(addr + 4);
application = (void *(*)(void))app_address;
/* initialize user application's stack pointer */
__set_MSP(*(__IO uint32_t *)addr);
/* jump to application */
application();
}
}