Major structure change.
This commit is contained in:
parent
3d497800bb
commit
cdd4834ea6
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@ -4,15 +4,25 @@ project(epd-spi)
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set(EPD_SOURCES
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"src/epd_common.c"
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"src/epd_panel_wfh0420cz35.c"
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"src/epd_panel_gdew042t2.c"
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"src/lcd_panel_jlx256128g_920.c"
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"src/oled_panel_elw1501aa.c"
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"src/driver/oled_ssd1327.c"
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"src/panel/epd_wfh0420cz35.c"
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"src/panel/epd_gdew042t2.c"
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"src/panel/lcd_jlx256128g_920.c"
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"src/panel/oled_elw1501aa.c"
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"src/panel/oled_zjy150s700.c"
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)
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set(EPD_INCLUDES
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"include"
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)
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set(EPD_PRIVATE_INCLUDES
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"include/epd-spi"
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"include/private"
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)
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add_library(${PROJECT_NAME} ${EPD_SOURCES})
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target_include_directories(${PROJECT_NAME} PUBLIC ${EPD_INCLUDES})
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target_include_directories(${PROJECT_NAME}
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PUBLIC ${EPD_INCLUDES}
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PRIVATE ${EPD_PRIVATE_INCLUDES}
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)
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@ -0,0 +1,6 @@
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#ifndef DRIVER_SSD1327_H
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#define DRIVER_SSD1327_H
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#endif
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@ -1,7 +1,7 @@
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#ifndef EPD_GDEW042T2_H
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#define EPD_GDEW042T2_H
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#include "epd_common.h"
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#include "epd-spi/epd_common.h"
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/**
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* @brief This display module has UC8176 controller IC,
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@ -1,7 +1,7 @@
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#ifndef EPD_WFH0420CZ35_H
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#define EPD_WFH0420CZ35_h
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#include "epd_common.h"
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#include "epd-spi/epd_common.h"
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/**
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* @brief This display module has UC8176 controller IC, with BWR LUT stored in OTP.
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@ -1,7 +1,7 @@
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#ifndef LCD_PANEL_JLX256128G_920_H
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#define LCD_PANEL_JLX256128G_920_H
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#include "epd_common.h"
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#include "epd-spi/epd_common.h"
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/**
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* @brief JLX256128G-920 LCD
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@ -0,0 +1,23 @@
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#ifndef OLED_PANEL_ELW1501AA_H
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#define OLED_PANEL_ELW1501AA_H
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#include "epd-spi/epd_common.h"
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/**
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* @brief Futaba ELW1501AA(R) PMOLED
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* Driver/Controller: Solomon Systech SSD1327
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* Resolution: 128x128@4bpp(16 grayscale)
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* Link: https://www.futaba.com/oled/
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* Datasheet: https://www.futaba.com/wp-content/uploads/2021/08/ELW1501AA.pdf
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*/
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typedef struct {
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epd_cb_t cb;
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void *user_data;
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} oled_elw1501aa_t;
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epd_ret_t oled_elw1501aa_init(oled_elw1501aa_t *elw);
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epd_ret_t oled_elw1501aa_upload(oled_elw1501aa_t *oled, epd_coord_t *coord, uint8_t *data);
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epd_ret_t oled_elw1501aa_power(oled_elw1501aa_t *elw, uint8_t on);
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#endif
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@ -0,0 +1,23 @@
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#ifndef OLED_PANEL_ZJY150S700_H
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#define OLED_PANEL_ZJY150S700_H
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#include "epd-spi/epd_common.h"
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/**
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* @brief Futaba zjy150s700(R) PMOLED
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* Driver/Controller: Solomon Systech SSD1327
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* Resolution: 128x128@4bpp(16 grayscale)
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* Link: https://www.futaba.com/oled/
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* Datasheet: https://www.futaba.com/wp-content/uploads/2021/08/zjy150s700.pdf
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*/
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typedef struct {
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epd_cb_t cb;
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void *user_data;
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} oled_zjy150s700_t;
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epd_ret_t oled_zjy150s700_init(oled_zjy150s700_t *elw);
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epd_ret_t oled_zjy150s700_upload(oled_zjy150s700_t *oled, epd_coord_t *coord, uint8_t *data);
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epd_ret_t oled_zjy150s700_power(oled_zjy150s700_t *elw, uint8_t on);
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#endif
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@ -1,23 +0,0 @@
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#ifndef OLED_PANEL_EWL1501AA_H
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#define OLED_PANEL_EWL1501AA_H
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#include "epd_common.h"
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/**
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* @brief Futaba EWL1501AA(R) PMOLED
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* Driver/Controller: Solomon Systech SSD1327
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* Resolution: 128x128@4bpp(16 grayscale)
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* Link: https://www.futaba.com/oled/
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* Datasheet: https://www.futaba.com/wp-content/uploads/2021/08/ELW1501AA.pdf
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*/
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typedef struct {
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epd_cb_t cb;
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void *user_data;
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} oled_ewl1501aa_t;
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epd_ret_t oled_ewl1501aa_init(oled_ewl1501aa_t *ewl);
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epd_ret_t oled_ewl1501aa_upload(oled_ewl1501aa_t *oled, epd_coord_t *coord, uint8_t *data);
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epd_ret_t oled_ewl1501aa_power(oled_ewl1501aa_t *ewl, uint8_t on);
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#endif
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@ -1,7 +1,7 @@
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#ifndef EPD_PRIVATE_H
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#define EPD_PRIVATE_H
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#include "epd_common.h"
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#include "epd-spi/epd_common.h"
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#define EPD_ASSERT(x) if(!(x)) for(;;) { /* ABORT. */}
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#define EPD_ERROR_CHECK(x) if(x != EPD_OK) return EPD_FAIL
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@ -0,0 +1,2 @@
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#include "driver/oled_ssd1327.h"
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@ -1,6 +1,6 @@
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#include "epd_panel_gdew042t2.h"
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#include "panel/epd_gdew042t2.h"
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#include "epd_panel_gdew042t2_lut.h"
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#include "panel/epd_gdew042t2_lut.h"
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#include "epd_private.h"
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#define DTM1 0x10
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@ -1,4 +1,4 @@
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#include "epd_panel_wfh0420cz35.h"
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#include "panel/epd_wfh0420cz35.h"
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#include "epd_private.h"
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@ -1,4 +1,4 @@
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#include "lcd_panel_jlx256128g_920.h"
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#include "panel/lcd_jlx256128g_920.h"
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#include "epd_private.h"
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@ -1,8 +1,8 @@
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#include "oled_panel_elw1501aa.h"
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#include "panel/oled_elw1501aa.h"
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#include "epd_private.h"
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static uint8_t ewl1501aa_init_sequence[] = {
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static uint8_t elw1501aa_init_sequence[] = {
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0x01, 0x81, 0x9C, // Set contrast control
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0x01, 0xA0, 0x53, // Set segment re-map
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0x01, 0xA1, 0x00, // Set display start line
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@ -19,7 +19,7 @@ static uint8_t ewl1501aa_init_sequence[] = {
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0x02, 0x75, 0x00, 0x7F, // Set row address
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};
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static epd_ret_t oled_ewl1501aa_reset(oled_ewl1501aa_t *oled) {
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static epd_ret_t oled_elw1501aa_reset(oled_elw1501aa_t *oled) {
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if (oled->cb.reset_cb != NULL) {
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return oled->cb.reset_cb(oled->user_data);
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}
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@ -27,7 +27,7 @@ static epd_ret_t oled_ewl1501aa_reset(oled_ewl1501aa_t *oled) {
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return EPD_OK;
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}
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static epd_ret_t oled_ewl1501aa_window(oled_ewl1501aa_t *oled, epd_coord_t *coord) {
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static epd_ret_t oled_elw1501aa_window(oled_elw1501aa_t *oled, epd_coord_t *coord) {
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if (coord->x_start % 2 != 0 || coord->x_end % 2 == 0) {
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return EPD_FAIL;
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}
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@ -51,7 +51,7 @@ static epd_ret_t oled_ewl1501aa_window(oled_ewl1501aa_t *oled, epd_coord_t *coor
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return EPD_OK;
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}
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static inline uint32_t oled_ewl1501aa_data_size(epd_coord_t *coord) {
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static inline uint32_t oled_elw1501aa_data_size(epd_coord_t *coord) {
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return (coord->x_end - coord->x_start + 1) * (coord->y_end - coord->y_start + 1) / 2;
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}
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@ -61,13 +61,15 @@ static inline uint32_t oled_ewl1501aa_data_size(epd_coord_t *coord) {
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* less overhead and higher data rate, initialization sequence
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* are moved to this seperate function. Call this function before
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* sending framebuffer data.
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* @param oled pointer to oled_ewl1501aa_t
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* @param oled pointer to oled_elw1501aa_t
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* @return epd_ret_t EPD_OK for success, EPD_FAIL for error.
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*/
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epd_ret_t oled_ewl1501aa_init(oled_ewl1501aa_t *oled) {
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EPD_ERROR_CHECK(oled_ewl1501aa_reset(oled));
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EPD_ERROR_CHECK(epd_common_execute_sequence(&oled->cb, oled->user_data, ewl1501aa_init_sequence,
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sizeof(ewl1501aa_init_sequence)));
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epd_ret_t oled_elw1501aa_init(oled_elw1501aa_t *oled) {
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EPD_ERROR_CHECK(oled_elw1501aa_reset(oled));
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EPD_ERROR_CHECK(epd_common_execute_sequence(&oled->cb, oled->user_data, elw1501aa_init_sequence,
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sizeof(elw1501aa_init_sequence)));
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EPD_ERROR_CHECK(oled_elw1501aa_power(oled, 1));
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return EPD_OK;
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}
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@ -75,16 +77,16 @@ epd_ret_t oled_ewl1501aa_init(oled_ewl1501aa_t *oled) {
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/**
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* @brief Upload frame buffer to screen.
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*
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* @param oled pointer to oled_ewl1501aa_t
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* @param oled pointer to oled_elw1501aa_t
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* @param coord pointer to epd_coord_t, can be NULL to upload full frame.
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* @param data array pointer to new pixel data.
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* @return epd_ret_t EPD_OK for success, EPD_FAIL for error.
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*/
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epd_ret_t oled_ewl1501aa_upload(oled_ewl1501aa_t *oled, epd_coord_t *coord, uint8_t *data) {
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epd_ret_t oled_elw1501aa_upload(oled_elw1501aa_t *oled, epd_coord_t *coord, uint8_t *data) {
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uint32_t data_size = 8192;
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if (coord != NULL) {
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EPD_ERROR_CHECK(oled_ewl1501aa_window(oled, coord));
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data_size = oled_ewl1501aa_data_size(coord);
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EPD_ERROR_CHECK(oled_elw1501aa_window(oled, coord));
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data_size = oled_elw1501aa_data_size(coord);
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}
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EPD_ERROR_CHECK(oled->cb.write_data_cb(oled->user_data, data, data_size));
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@ -95,7 +97,7 @@ epd_ret_t oled_ewl1501aa_upload(oled_ewl1501aa_t *oled, epd_coord_t *coord, uint
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.y_start = 0,
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.y_end = 127,
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};
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EPD_ERROR_CHECK(oled_ewl1501aa_window(oled, &new_coord));
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EPD_ERROR_CHECK(oled_elw1501aa_window(oled, &new_coord));
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}
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return EPD_OK;
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}
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@ -105,11 +107,11 @@ epd_ret_t oled_ewl1501aa_upload(oled_ewl1501aa_t *oled, epd_coord_t *coord, uint
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* LCDs and OLEDs needs to be constant driven in order to
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* display a stable image, turn the drivers and source/gate scan on or off.
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*
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* @param oled pointer to oled_ewl1501aa_t
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* @param oled pointer to oled_elw1501aa_t
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* @param on 0:off, anything else: on
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* @return epd_ret_t EPD_OK for success, EPD_FAIL for error.
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*/
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epd_ret_t oled_ewl1501aa_power(oled_ewl1501aa_t *oled, uint8_t on) {
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epd_ret_t oled_elw1501aa_power(oled_elw1501aa_t *oled, uint8_t on) {
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uint8_t cmd[2] = {0xAE, 0x00};
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if (on) cmd[0] = 0xAF;
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EPD_ERROR_CHECK(oled->cb.write_command_cb(oled->user_data, cmd, 1));
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@ -0,0 +1,123 @@
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#include "panel/oled_zjy150s700.h"
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#include "epd_private.h"
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static uint8_t zjy150s700_init_sequence[] = {
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0x01, 0x81, 0x77, // Set contrast control
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0x01, 0xA0, 0x53, // Set segment re-map
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0x01, 0xA1, 0x00, // Set display start line
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0x01, 0xA2, 0x00, // Set display offset
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0x00, 0xA4, // Set normal display mode
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0x01, 0xA8, 0x7F, // Set MUX ratio
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0x01, 0xAB, 0x01, // Set enable internal VDD regulator mode
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0x01, 0xB1, 0x31, // Set phase length of phase 1, phase 2
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0x01, 0xB3, 0xB1, // Set ratio of dividing frequency & oscillation frequency
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0x01, 0xB5, 0x03, // Set GPIO pin output high (External boost regulator EN)
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0x01, 0xB6, 0x0D, // Set pre-charge period
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0x00, 0xB9, // Set gray scale table
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0x01, 0xBC, 0x07, // Set pre-charge voltage
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0x01, 0xBE, 0x07, // Set voltage VCOMH
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0x01, 0xD5, 0x02, // Set second precharge enable
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0x02, 0x15, 0x00, 0x3F, // Set column address
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0x02, 0x75, 0x00, 0x7F, // Set row address
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};
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static epd_ret_t oled_zjy150s700_reset(oled_zjy150s700_t *oled) {
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if (oled->cb.reset_cb != NULL) {
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return oled->cb.reset_cb(oled->user_data);
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}
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return EPD_OK;
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}
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static epd_ret_t oled_zjy150s700_window(oled_zjy150s700_t *oled, epd_coord_t *coord) {
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if (coord->x_start % 2 != 0 || coord->x_end % 2 == 0) {
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return EPD_FAIL;
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}
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if (coord->x_end > 127 || coord->x_start > coord->x_end) {
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return EPD_FAIL;
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}
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if (coord->y_end > 127 || coord->y_start > coord->y_end) {
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return EPD_FAIL;
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}
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uint8_t col_start = coord->x_start / 2;
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uint8_t col_end = coord->x_end / 2;
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uint8_t col_cmd_buf[3] = {0x15, col_start, col_end};
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uint8_t row_cmd_buf[3] = {0x75, coord->y_start, coord->y_end};
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EPD_ERROR_CHECK(oled->cb.write_command_cb(oled->user_data, col_cmd_buf, 3));
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EPD_ERROR_CHECK(oled->cb.write_command_cb(oled->user_data, row_cmd_buf, 3));
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return EPD_OK;
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}
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static inline uint32_t oled_zjy150s700_data_size(epd_coord_t *coord) {
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return (coord->x_end - coord->x_start + 1) * (coord->y_end - coord->y_start + 1) / 2;
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}
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/**
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* @brief Initialize OLED panel
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* As OLEDs and LCDs need to be driven constantly, also with
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* less overhead and higher data rate, initialization sequence
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* are moved to this seperate function. Call this function before
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* sending framebuffer data.
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* @param oled pointer to oled_zjy150s700_t
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* @return epd_ret_t EPD_OK for success, EPD_FAIL for error.
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*/
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epd_ret_t oled_zjy150s700_init(oled_zjy150s700_t *oled) {
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EPD_ERROR_CHECK(oled_zjy150s700_reset(oled));
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EPD_ERROR_CHECK(epd_common_execute_sequence(&oled->cb, oled->user_data, zjy150s700_init_sequence,
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sizeof(zjy150s700_init_sequence)));
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EPD_ERROR_CHECK(oled_zjy150s700_power(oled, 1));
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return EPD_OK;
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}
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/**
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* @brief Upload frame buffer to screen.
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*
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* @param oled pointer to oled_zjy150s700_t
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* @param coord pointer to epd_coord_t, can be NULL to upload full frame.
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* @param data array pointer to new pixel data.
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* @return epd_ret_t EPD_OK for success, EPD_FAIL for error.
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*/
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epd_ret_t oled_zjy150s700_upload(oled_zjy150s700_t *oled, epd_coord_t *coord, uint8_t *data) {
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uint32_t data_size = 8192;
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if (coord != NULL) {
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EPD_ERROR_CHECK(oled_zjy150s700_window(oled, coord));
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data_size = oled_zjy150s700_data_size(coord);
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}
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EPD_ERROR_CHECK(oled->cb.write_data_cb(oled->user_data, data, data_size));
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if (coord != NULL) {
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epd_coord_t new_coord = {
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.x_start = 0,
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.x_end = 127,
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.y_start = 0,
|
||||
.y_end = 127,
|
||||
};
|
||||
EPD_ERROR_CHECK(oled_zjy150s700_window(oled, &new_coord));
|
||||
}
|
||||
return EPD_OK;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Control the OLED drivers.
|
||||
* LCDs and OLEDs needs to be constant driven in order to
|
||||
* display a stable image, turn the drivers and source/gate scan on or off.
|
||||
*
|
||||
* @param oled pointer to oled_zjy150s700_t
|
||||
* @param on 0:off, anything else: on
|
||||
* @return epd_ret_t EPD_OK for success, EPD_FAIL for error.
|
||||
*/
|
||||
epd_ret_t oled_zjy150s700_power(oled_zjy150s700_t *oled, uint8_t on) {
|
||||
uint8_t cmd[2] = {0xAE, 0x00};
|
||||
if (on) cmd[0] = 0xAF;
|
||||
EPD_ERROR_CHECK(oled->cb.write_command_cb(oled->user_data, cmd, 1));
|
||||
|
||||
return EPD_OK;
|
||||
}
|
Loading…
Reference in New Issue