2021-04-29 07:55:22 +00:00
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/**
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* @file ILI9163C.c
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*
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*/
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/*********************
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* INCLUDES
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*********************/
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#include "ili9163c.h"
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#include "disp_spi.h"
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#include "driver/gpio.h"
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#include "esp_log.h"
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#include "freertos/FreeRTOS.h"
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#include "freertos/task.h"
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#include "assert.h"
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/*********************
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* DEFINES
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*********************/
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#define TAG "ILI9163C"
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// ILI9163C specific commands used in init
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#define ILI9163C_NOP 0x00
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#define ILI9163C_SWRESET 0x01
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#define ILI9163C_RDDID 0x04
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#define ILI9163C_RDDST 0x09
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#define ILI9163C_SLPIN 0x10
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#define ILI9163C_SLPOUT 0x11
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#define ILI9163C_PTLON 0x12
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#define ILI9163C_NORON 0x13
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#define ILI9163C_INVOFF 0x20
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#define ILI9163C_INVON 0x21
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#define ILI9163C_CMD_GAMST 0x26
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#define ILI9163C_DISPOFF 0x28
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#define ILI9163C_DISPON 0x29
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#define ILI9163C_CASET 0x2A
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#define ILI9163C_RASET 0x2B
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#define ILI9163C_RAMWR 0x2C
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#define ILI9163C_COLORSET 0x2D
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#define ILI9163C_RAMRD 0x2E
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#define ILI9163C_PTLAR 0x30
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#define ILI9163C_VSCRDEF 0x33
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#define ILI9163C_COLMOD 0x3A
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#define ILI9163C_MADCTL 0x36
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#define ILI9163C_VSCRSADD 0x37
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#define ILI9163C_FRMCTR1 0xB1
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#define ILI9163C_FRMCTR2 0xB2
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#define ILI9163C_FRMCTR3 0xB3
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#define ILI9163C_INVCTR 0xB4
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#define ILI9163C_DISSET5 0xB6
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#define ILI9163C_SDDC 0xB7
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#define ILI9163C_PWCTR1 0xC0
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#define ILI9163C_PWCTR2 0xC1
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#define ILI9163C_PWCTR3 0xC2
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#define ILI9163C_PWCTR4 0xC3
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#define ILI9163C_PWCTR5 0xC4
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#define ILI9163C_VMCTR1 0xC5
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#define ILI9163C_VMCOFFS 0xC7
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#define ILI9163C_GAMCTL 0xF2
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#define ILI9163C_GMCTRP1 0xE0
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#define ILI9163C_GMCTRN1 0xE1
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#define ST77XX_MADCTL_MY 0x80
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#define ST77XX_MADCTL_MX 0x40
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#define ST77XX_MADCTL_MV 0x20 #define
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#define ST77XX_MADCTL_ML 0x10
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#define ST77XX_MADCTL_RGB 0x00
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#define ST77XX_MADCTL_BGR 0x08
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/**********************
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* TYPEDEFS
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**********************/
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/*The LCD needs a bunch of command/argument values to be initialized. They are stored in this struct. */
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typedef struct
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{
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uint8_t cmd;
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uint8_t data[16];
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uint8_t databytes; //No of data in data; bit 7 = delay after set; 0xFF = end of cmds.
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} lcd_init_cmd_t;
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/**********************
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* STATIC PROTOTYPES
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**********************/
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static void ili9163c_set_orientation(uint8_t orientation);
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static void ili9163c_send_cmd(uint8_t cmd);
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static void ili9163c_send_data(void *data, uint16_t length);
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static void ili9163c_send_color(void *data, uint16_t length);
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/**********************
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* STATIC VARIABLES
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**********************/
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/**********************
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* MACROS
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**********************/
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/**********************
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* GLOBAL FUNCTIONS
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**********************/
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void ili9163c_init(void)
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{
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ESP_LOGD(TAG, "Init");
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lcd_init_cmd_t ili_init_cmds[] = {
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{ILI9163C_SWRESET, {0}, 0x80}, // Software reset, 0 args, w/delay 120ms
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{ILI9163C_SLPOUT, {0}, 0x80}, // Out of sleep mode, 0 args, w/delay 5ms
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{ILI9163C_CMD_GAMST, {0x04}, 1}, // Gamma Curve
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{ILI9163C_FRMCTR1, {0x0C, 0x14}, 2}, // Frame rate ctrl - normal mode
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{ILI9163C_INVCTR, {0x07}, 1}, // Display inversion ctrl, 1 arg, no delay:No inversion
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{ILI9163C_PWCTR1, {0x0C, 0x05}, 2}, // Power control, 2 args, no delay
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{ILI9163C_PWCTR2, {0x02}, 1}, // Power control, 1 arg
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{ILI9163C_PWCTR3, {0x02}, 1}, // Power control, 1 arg
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{ILI9163C_VMCTR1, {0x20, 0x55}, 2}, // Power control, 1 arg, no delay:
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{ILI9163C_VMCOFFS, {0x40}, 1}, // VCOM Offset
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#if ILI9163C_INVERT_COLORS == 1
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{ILI9163C_INVON, {0}, 0}, // set inverted mode
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#else
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{ILI9163C_INVOFF, {0}, 0}, // set non-inverted mode
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#endif
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{ILI9163C_COLMOD, {0x5}, 1}, // set color mode, 1 arg, no delay: 16-bit color
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{ILI9163C_SDDC, {0}, 1}, // set source driver direction control
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{ILI9163C_GAMCTL, {0x01}, 1}, // set source driver direction control
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{ILI9163C_GMCTRP1, {0x36, 0x29, 0x12, 0x22, 0x1C, 0x15, 0x42, 0xB7, 0x2F, 0x13, 0x12, 0x0A, 0x11, 0x0B, 0x06}, 16}, // 16 args, no delay:
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{ILI9163C_GMCTRN1, {0x09, 0x16, 0x2D, 0x0D, 0x13, 0x15, 0x40, 0x48, 0x53, 0x0C, 0x1D, 0x25, 0x2E, 0x34, 0x39}, 16}, // 16 args, no delay:
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{ILI9163C_NORON, {0}, 0x80}, // Normal display on, no args, w/delay 10 ms delay
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{ILI9163C_DISPON, {0}, 0x80}, // Main screen turn on, no args w/delay 100 ms delay
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{0, {0}, 0xff}
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};
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//Initialize non-SPI GPIOs
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2023-05-26 12:25:42 +00:00
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gpio_reset_pin(ILI9163C_DC);
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2021-04-29 07:55:22 +00:00
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gpio_set_direction(ILI9163C_DC, GPIO_MODE_OUTPUT);
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2023-05-26 12:25:42 +00:00
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gpio_reset_pin(ILI9163C_RST);
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2021-04-29 07:55:22 +00:00
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gpio_set_direction(ILI9163C_RST, GPIO_MODE_OUTPUT);
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//Reset the display
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gpio_set_level(ILI9163C_RST, 0);
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2023-05-26 12:25:42 +00:00
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vTaskDelay(100 / portTICK_PERIOD_MS);
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2021-04-29 07:55:22 +00:00
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gpio_set_level(ILI9163C_RST, 1);
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2023-05-26 12:25:42 +00:00
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vTaskDelay(150 / portTICK_PERIOD_MS);
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2021-04-29 07:55:22 +00:00
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//Send all the commands
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uint16_t cmd = 0;
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while (ili_init_cmds[cmd].databytes != 0xff)
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{
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ili9163c_send_cmd(ili_init_cmds[cmd].cmd);
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ili9163c_send_data(ili_init_cmds[cmd].data, ili_init_cmds[cmd].databytes & 0x1F);
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if (ili_init_cmds[cmd].databytes & 0x80)
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{
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2023-05-26 12:25:42 +00:00
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vTaskDelay(150 / portTICK_PERIOD_MS);
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2021-04-29 07:55:22 +00:00
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}
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cmd++;
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}
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ili9163c_set_orientation(CONFIG_LV_DISPLAY_ORIENTATION);
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}
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void ili9163c_flush(lv_disp_drv_t *drv, const lv_area_t *area, lv_color_t *color_map)
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{
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uint8_t data[4];
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/*Column addresses*/
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ili9163c_send_cmd(ILI9163C_CASET);
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data[0] = (area->x1 >> 8) & 0xFF;
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data[1] = area->x1 & 0xFF;
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data[2] = (area->x2 >> 8) & 0xFF;
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data[3] = area->x2 & 0xFF;
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ili9163c_send_data(data, 4);
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/*Page addresses*/
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ili9163c_send_cmd(ILI9163C_RASET);
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data[0] = (area->y1 >> 8) & 0xFF;
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data[1] = area->y1 & 0xFF;
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data[2] = (area->y2 >> 8) & 0xFF;
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data[3] = area->y2 & 0xFF;
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ili9163c_send_data(data, 4);
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/*Memory write*/
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ili9163c_send_cmd(ILI9163C_RAMWR);
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uint32_t size = lv_area_get_width(area) * lv_area_get_height(area);
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ili9163c_send_color((void *)color_map, size * 2);
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}
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void ili9163c_sleep_in()
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{
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uint8_t data[] = {0x08};
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ili9163c_send_cmd(ILI9163C_SLPIN);
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ili9163c_send_data(&data, 1);
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}
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void ili9163c_sleep_out()
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{
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uint8_t data[] = {0x08};
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ili9163c_send_cmd(ILI9163C_SLPOUT);
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ili9163c_send_data(&data, 1);
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}
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/**********************
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* STATIC FUNCTIONS
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**********************/
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static void ili9163c_send_cmd(uint8_t cmd)
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{
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disp_wait_for_pending_transactions();
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gpio_set_level(ILI9163C_DC, 0); /*Command mode*/
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disp_spi_send_data(&cmd, 1);
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}
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static void ili9163c_send_data(void *data, uint16_t length)
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{
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disp_wait_for_pending_transactions();
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gpio_set_level(ILI9163C_DC, 1); /*Data mode*/
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disp_spi_send_data(data, length);
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}
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static void ili9163c_send_color(void *data, uint16_t length)
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{
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disp_wait_for_pending_transactions();
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gpio_set_level(ILI9163C_DC, 1); /*Data mode*/
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disp_spi_send_colors(data, length);
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}
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static void ili9163c_set_orientation(uint8_t orientation)
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{
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assert(orientation < 4);
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const char *orientation_str[] = {
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"PORTRAIT", "PORTRAIT_INVERTED", "LANDSCAPE", "LANDSCAPE_INVERTED"};
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ESP_LOGD(TAG, "Display orientation: %s", orientation_str[orientation]);
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uint8_t data[] = {0x48, 0x88, 0xA8, 0x68};
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ili9163c_send_cmd(ILI9163C_MADCTL);
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ili9163c_send_data((void *)&data[orientation], 1);
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}
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