dev/st7789_lcd #6
2
Makefile
2
Makefile
@ -8,6 +8,7 @@ TARGET_FILE ?= $(APPLICATION).elf
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CC = $(CROSS_COMPILE)gcc
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CPP = $(CROSS_COMPILE)cpp
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OBJCOPY = $(CROSS_COMPILE)objcopy
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SIZE = $(CROSS_COMPILE)size
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SRC_DIR = src
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OBJ_DIR = obj/$(PLATFORM)
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@ -56,6 +57,7 @@ $(TARGET): $(OBJS) $(THIS_MAKEFILE)
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@mkdir -p $(dir $@)
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$(CC) $(CC_FLAGS) $(LD_FLAGS) $(OBJS) $(addprefix -l,$(LIBS)) -o $@
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ln -sf $(shell pwd)/$@ $(shell pwd)/bin/firmware.elf
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$(SIZE) -x $@
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$(TARGET_HEX): $(TARGET) $(THIS_MAKEFILE)
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$(OBJCOPY) -O ihex $(TARGET) $(TARGET_HEX)
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4430
include/application/sdk_config.h
Normal file
4430
include/application/sdk_config.h
Normal file
File diff suppressed because it is too large
Load Diff
12
include/framebuffer.h
Normal file
12
include/framebuffer.h
Normal file
@ -0,0 +1,12 @@
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#ifndef __INCLUDE_FRAMEBUFFER_H__
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#define __INCLUDE_FRAMEBUFFER_H__
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#include <stdint.h>
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void fb_draw_pixel(uint16_t *image, uint16_t x, uint16_t y, uint16_t color);
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void fb_draw_line(uint16_t *image, int16_t x0, int16_t y0, int16_t x1, int16_t y1, uint16_t color);
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void fb_load_image(uint16_t *dst, uint16_t *src, uint32_t length);
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void fb_set_image(uint16_t *dst, uint16_t value, uint32_t length);
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#endif
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@ -5,6 +5,7 @@
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#include "gpio.h"
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#include "spi.h"
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#include "st7789.h"
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// LED 1
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const struct gpio nrf_led_1 = {
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@ -50,6 +51,8 @@ const struct driver led_4 = {
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.dev = &nrf_led_4
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};
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// LCD
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// SPI 0
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const struct spi nrf_spi_0 = {
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.sck_pin = 2,
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.mosi_pin = 3,
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@ -60,5 +63,55 @@ const struct driver spi_0 = {
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.fp = &spi_fp,
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.dev = &nrf_spi_0
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};
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const struct gpio nrf_dc_pin = {
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.pin = 18,
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.dir = OUT
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};
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const struct driver dc_pin = {
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.name = "DC",
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.fp = &gpio_fp,
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.dev = &nrf_dc_pin
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};
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const struct gpio nrf_bl_pin = {
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.pin = 23,
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.dir = OUT
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};
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const struct driver bl_pin = {
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.name = "BACKLIGHT",
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.fp = &gpio_fp,
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.dev = &nrf_bl_pin
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};
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const struct gpio nrf_rst_pin = {
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.pin = 26,
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.dir = OUT
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};
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const struct driver rst_pin = {
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.name = "RESET",
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.fp = &gpio_fp,
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.dev = &nrf_rst_pin
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};
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const struct gpio nrf_select_pin = {
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.pin = 25,
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.dir = OUT
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};
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const struct driver select_pin = {
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.name = "SELECT",
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.fp = &gpio_fp,
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.dev = &nrf_select_pin
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};
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struct st7789 nrf_lcd = {
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.spi = &spi_0,
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.dc = &dc_pin,
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.bl = &bl_pin,
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.rst = &rst_pin,
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.select = &select_pin,
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.height = 240,
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.width = 240,
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};
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const struct driver lcd = {
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.name = "LCD",
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.fp = &st7789_fp,
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.dev = &nrf_lcd
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};
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#endif
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30
include/st7789.h
Normal file
30
include/st7789.h
Normal file
@ -0,0 +1,30 @@
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#ifndef __ST7789_H__
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#define __ST7789_H__
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#include <stddef.h>
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#include "driver.h"
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int st7789_open(const struct driver *drv);
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int st7789_close(const struct driver *drv);
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int st7789_write(const struct driver *drv, const char *buffer, unsigned int len);
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struct st7789 {
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const struct driver *spi;
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const struct driver *dc;
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const struct driver *bl;
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const struct driver *rst;
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const struct driver *select;
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unsigned int height;
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unsigned int width;
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};
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static const struct driver_fp st7789_fp = {
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.open = st7789_open,
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.close = st7789_close,
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.read = NULL,
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.write = st7789_write,
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.ioctl = NULL,
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};
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#endif
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@ -1,30 +1,33 @@
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#include <string.h>
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#include "app_util_platform.h"
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#include "board.h"
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#include "nrf_gpio.h"
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#include "nrf_delay.h"
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#include "boards.h"
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#include "app_error.h"
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#include <string.h>
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#include "nrf_log.h"
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#include "nrf_log_ctrl.h"
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#include "nrf_log_default_backends.h"
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#include "board.h"
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#include "driver.h"
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#include "delay.h"
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const char buffer[] = "Hello world!\r\n";
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int main(void)
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{
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unsigned int i = 0;
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unsigned int cnt = 0;
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APP_ERROR_CHECK(NRF_LOG_INIT(NULL));
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NRF_LOG_DEFAULT_BACKENDS_INIT();
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drv_open(&led_1);
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drv_write(&led_1, "1", 1);
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drv_open(&spi_0);
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drv_open(&lcd);
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// APP_ERROR_CHECK(NRF_LOG_INIT(NULL));
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// NRF_LOG_DEFAULT_BACKENDS_INIT();
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// NRF_LOG_INFO("SPI example started.");
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NRF_LOG_INFO("SPI example started.");
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while(1) {
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drv_write(&spi_0, buffer, sizeof(buffer));
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// NRF_LOG_FLUSH();
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char c = (i++ % 2) + 0x30;
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char c = (cnt++ % 2) + 0x30;
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drv_write(&led_1, &c, 1);
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delay_ms(200);
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NRF_LOG_FLUSH();
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nrf_delay_ms(200);
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}
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}
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76
src/framebuffer.c
Normal file
76
src/framebuffer.c
Normal file
@ -0,0 +1,76 @@
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#include <assert.h>
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#include <stddef.h>
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#include <stdlib.h>
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#include "framebuffer.h"
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void fb_draw_pixel(uint16_t *image, uint16_t x, uint16_t y, uint16_t color)
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{
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assert(image != NULL);
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image[x + 240 * y] = color;
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}
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#ifndef _swap_int16_t
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#define _swap_int16_t(a, b) { int16_t t = a; a = b; b = t; }
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#endif
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void fb_draw_line(uint16_t *image, int16_t x0, int16_t y0, int16_t x1, int16_t y1, uint16_t color)
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{
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assert(image != NULL);
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int16_t steep = abs(y1 - y0) > abs(x1 - x0);
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if(steep) {
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_swap_int16_t(x0, y0);
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_swap_int16_t(x1, y1);
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}
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if(x0 > x1) {
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_swap_int16_t(x0, x1);
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_swap_int16_t(y0, y1);
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}
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int16_t dx, dy;
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dx = x1 - x0;
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dy = abs(y1 - y0);
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int16_t err = dx / 2;
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int16_t ystep;
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if(y0 < y1) {
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ystep = 1;
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} else {
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ystep = -1;
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}
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for(; x0 <= x1; x0++) {
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if(steep) {
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fb_draw_pixel(image, y0, x0, color);
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} else {
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fb_draw_pixel(image, x0, y0, color);
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}
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err -= dy;
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if (err < 0) {
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y0 += ystep;
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err += dx;
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}
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}
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}
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void fb_load_image(uint16_t *dst, uint16_t *src, uint32_t length)
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{
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assert(NULL != dst);
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assert(NULL != src);
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for(uint32_t i = 0; i < length; i++) {
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dst[i] = src[i];
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}
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}
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void fb_set_image(uint16_t *dst, uint16_t value, uint32_t length)
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{
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assert(NULL != dst);
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for (uint32_t i = 0; i < length; i++) {
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dst[i] = value;
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}
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}
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@ -58,3 +58,4 @@ static inline int spi_transfer(uint32_t t)
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}
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r = NRF_SPI0->RXD; // in
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return (int)r;
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}
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192
src/st7789.c
Normal file
192
src/st7789.c
Normal file
@ -0,0 +1,192 @@
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#include <assert.h>
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#include <stddef.h>
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#include <stdint.h>
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#include <unistd.h>
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#include "delay.h"
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#include "st7789.h"
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static void send_cmd(const struct driver *drv, uint8_t cmd);
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static void send_data_8bit(const struct driver *drv, uint8_t data);
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static void lcd_init(const struct driver *drv);
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static void lcd_set_windows(const struct driver *drv, uint16_t x_start, uint16_t y_start, uint16_t x_end, uint16_t y_end);
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static void lcd_clear(const struct driver *drv, uint16_t Color)
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{
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unsigned int i,j;
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struct st7789 *this = (struct st7789*)(drv->dev);
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lcd_set_windows(drv, 0, 0, 240, 240);
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drv_write(this->dc, "1", 1);
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for(i = 0; i < 240; i++) {
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for(j = 0; j < 240; j++){
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char c = (Color >> 8) & 0xff;
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drv_write(this->spi, &c, 1);
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c = Color & 0xff;
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drv_write(this->spi, &c, 1);
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}
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}
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}
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int st7789_open(const struct driver *drv)
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{
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assert(drv != NULL);
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struct st7789 *this = (struct st7789*)(drv->dev);
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drv_open(this->rst);
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drv_write(this->rst, "1", 1);
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drv_open(this->dc);
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drv_write(this->dc, "1", 1);
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drv_open(this->bl);
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drv_write(this->bl, "1", 1);
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drv_open(this->select);
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drv_write(this->select, "0", 1);
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drv_open(this->spi);
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// hard reset
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drv_write(this->rst, "0", 1);
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delay_ms(100);
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drv_write(this->rst, "1", 1);
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delay_ms(100);
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lcd_init(drv);
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lcd_clear(drv, 0x0000);
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return 0;
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}
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int st7789_close(const struct driver *drv)
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{
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assert(drv != NULL);
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struct st7789 *this = (struct st7789*)(drv->dev);
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drv_close(this->rst);
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drv_close(this->dc);
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drv_close(this->bl);
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drv_close(this->spi);
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return 0;
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}
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int st7789_write(const struct driver *drv, const char *buffer, unsigned int len)
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{
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assert(drv != NULL);
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struct st7789 *this = (struct st7789*)(drv->dev);
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uint16_t *image = (uint16_t *)buffer;
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lcd_set_windows(drv, 0, 0, this->width, this->height);
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drv_write(this->dc, "1", 1);
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for (uint16_t i = 0; i < this->height; i++) {
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drv_write(this->spi, (const char *)&image[i * this->width], len);
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}
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return len;
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}
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static void send_cmd(const struct driver *drv, uint8_t cmd)
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{
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assert(drv != NULL);
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struct st7789 *this = (struct st7789*)(drv->dev);
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drv_write(this->dc, "0", 1);
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drv_write(this->spi, (const char* )&cmd, 1);
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}
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static void send_data_8bit(const struct driver *drv, uint8_t data)
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{
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assert(drv != NULL);
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struct st7789 *this = (struct st7789*)(drv->dev);
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drv_write(this->dc, "1", 1);
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drv_write(this->spi, (const char* )&data, 1);
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}
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static void lcd_init(const struct driver *drv)
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{
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send_cmd(drv, 0x36);
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send_data_8bit(drv, 0x00);
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send_cmd(drv, 0x3A);
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send_data_8bit(drv, 0x05);
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send_cmd(drv, 0xB2);
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send_data_8bit(drv, 0x0C);
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send_data_8bit(drv, 0x0C);
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send_data_8bit(drv, 0x00);
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send_data_8bit(drv, 0x33);
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send_data_8bit(drv, 0x33);
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send_cmd(drv, 0xB7); //Gate Control
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send_data_8bit(drv, 0x35);
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send_cmd(drv, 0xBB); //VCOM Setting
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send_data_8bit(drv, 0x19);
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send_cmd(drv, 0xC0); //LCM Control
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send_data_8bit(drv, 0x2C);
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send_cmd(drv, 0xC2); //VDV and VRH Command Enable
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send_data_8bit(drv, 0x01);
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send_cmd(drv, 0xC3); //VRH Set
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send_data_8bit(drv, 0x12);
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send_cmd(drv, 0xC4); //VDV Set
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send_data_8bit(drv, 0x20);
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send_cmd(drv, 0xC6); //Frame Rate Control in Normal Mode
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send_data_8bit(drv, 0x0F);
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send_cmd(drv, 0xD0); // Power Control 1
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send_data_8bit(drv, 0xA4);
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send_data_8bit(drv, 0xA1);
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send_cmd(drv, 0xE0); //Positive Voltage Gamma Control
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send_data_8bit(drv, 0xD0);
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send_data_8bit(drv, 0x04);
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send_data_8bit(drv, 0x0D);
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send_data_8bit(drv, 0x11);
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send_data_8bit(drv, 0x13);
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send_data_8bit(drv, 0x2B);
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send_data_8bit(drv, 0x3F);
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send_data_8bit(drv, 0x54);
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send_data_8bit(drv, 0x4C);
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send_data_8bit(drv, 0x18);
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send_data_8bit(drv, 0x0D);
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send_data_8bit(drv, 0x0B);
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send_data_8bit(drv, 0x1F);
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send_data_8bit(drv, 0x23);
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send_cmd(drv, 0xE1); //Negative Voltage Gamma Control
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send_data_8bit(drv, 0xD0);
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send_data_8bit(drv, 0x04);
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send_data_8bit(drv, 0x0C);
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send_data_8bit(drv, 0x11);
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send_data_8bit(drv, 0x13);
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send_data_8bit(drv, 0x2C);
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send_data_8bit(drv, 0x3F);
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send_data_8bit(drv, 0x44);
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send_data_8bit(drv, 0x51);
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send_data_8bit(drv, 0x2F);
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send_data_8bit(drv, 0x1F);
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send_data_8bit(drv, 0x1F);
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send_data_8bit(drv, 0x20);
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send_data_8bit(drv, 0x23);
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send_cmd(drv, 0x21); //Display Inversion On
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send_cmd(drv, 0x11); //Sleep Out
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send_cmd(drv, 0x29); //Display On
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}
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static void lcd_set_windows(const struct driver *drv, uint16_t x_start, uint16_t y_start, uint16_t x_end, uint16_t y_end)
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{
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//set the X coordinates
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send_cmd(drv, 0x2A);
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send_data_8bit(drv, (x_start >> 8) & 0xFF);
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send_data_8bit(drv, x_start & 0xFF);
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send_data_8bit(drv, ((x_end - 1) >> 8) & 0xFF);
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send_data_8bit(drv, (x_end - 1) & 0xFF);
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//set the Y coordinates
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send_cmd(drv, 0x2B);
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send_data_8bit(drv, (y_start >> 8) & 0xFF);
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send_data_8bit(drv, y_start & 0xFF);
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send_data_8bit(drv, ((y_end - 1) >> 8) & 0xFF);
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send_data_8bit(drv, (y_end - 1) & 0xFF);
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|
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send_cmd(drv, 0X2C);
|
||||
}
|
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Block a user