// SPDX-License-Identifier: GPL-2.0-or-later
/*
* lms501kf03 TFT LCD panel driver.
*
* Copyright (c) 2012 Samsung Electronics Co., Ltd.
* Author: Jingoo Han <jg1.han@samsung.com>
*/
#include <linux/delay.h>
#include <linux/lcd.h>
#include <linux/module.h>
#include <linux/spi/spi.h>
#include <linux/wait.h>
#define COMMAND_ONLY 0 x00
#define DATA_ONLY 0 x01
struct lms501kf03 {
struct device *dev;
struct spi_device *spi;
unsigned int power;
struct lcd_device *ld;
struct lcd_platform_data *lcd_pd;
};
static const unsigned char seq_password[] = {
0 xb9, 0 xff, 0 x83, 0 x69,
};
static const unsigned char seq_power[] = {
0 xb1, 0 x01, 0 x00, 0 x34, 0 x06, 0 x00, 0 x14, 0 x14, 0 x20, 0 x28,
0 x12, 0 x12, 0 x17, 0 x0a, 0 x01, 0 xe6, 0 xe6, 0 xe6, 0 xe6, 0 xe6,
};
static const unsigned char seq_display[] = {
0 xb2, 0 x00, 0 x2b, 0 x03, 0 x03, 0 x70, 0 x00, 0 xff, 0 x00, 0 x00,
0 x00, 0 x00, 0 x03, 0 x03, 0 x00, 0 x01,
};
static const unsigned char seq_rgb_if[] = {
0 xb3, 0 x09,
};
static const unsigned char seq_display_inv[] = {
0 xb4, 0 x01, 0 x08, 0 x77, 0 x0e, 0 x06,
};
static const unsigned char seq_vcom[] = {
0 xb6, 0 x4c, 0 x2e,
};
static const unsigned char seq_gate[] = {
0 xd5, 0 x00, 0 x05, 0 x03, 0 x29, 0 x01, 0 x07, 0 x17, 0 x68, 0 x13,
0 x37, 0 x20, 0 x31, 0 x8a, 0 x46, 0 x9b, 0 x57, 0 x13, 0 x02, 0 x75,
0 xb9, 0 x64, 0 xa8, 0 x07, 0 x0f, 0 x04, 0 x07,
};
static const unsigned char seq_panel[] = {
0 xcc, 0 x02,
};
static const unsigned char seq_col_mod[] = {
0 x3a, 0 x77,
};
static const unsigned char seq_w_gamma[] = {
0 xe0, 0 x00, 0 x04, 0 x09, 0 x0f, 0 x1f, 0 x3f, 0 x1f, 0 x2f, 0 x0a,
0 x0f, 0 x10, 0 x16, 0 x18, 0 x16, 0 x17, 0 x0d, 0 x15, 0 x00, 0 x04,
0 x09, 0 x0f, 0 x38, 0 x3f, 0 x20, 0 x39, 0 x0a, 0 x0f, 0 x10, 0 x16,
0 x18, 0 x16, 0 x17, 0 x0d, 0 x15,
};
static const unsigned char seq_rgb_gamma[] = {
0 xc1, 0 x01, 0 x03, 0 x07, 0 x0f, 0 x1a, 0 x22, 0 x2c, 0 x33, 0 x3c,
0 x46, 0 x4f, 0 x58, 0 x60, 0 x69, 0 x71, 0 x79, 0 x82, 0 x89, 0 x92,
0 x9a, 0 xa1, 0 xa9, 0 xb1, 0 xb9, 0 xc1, 0 xc9, 0 xcf, 0 xd6, 0 xde,
0 xe5, 0 xec, 0 xf3, 0 xf9, 0 xff, 0 xdd, 0 x39, 0 x07, 0 x1c, 0 xcb,
0 xab, 0 x5f, 0 x49, 0 x80, 0 x03, 0 x07, 0 x0f, 0 x19, 0 x20, 0 x2a,
0 x31, 0 x39, 0 x42, 0 x4b, 0 x53, 0 x5b, 0 x63, 0 x6b, 0 x73, 0 x7b,
0 x83, 0 x8a, 0 x92, 0 x9b, 0 xa2, 0 xaa, 0 xb2, 0 xba, 0 xc2, 0 xca,
0 xd0, 0 xd8, 0 xe1, 0 xe8, 0 xf0, 0 xf8, 0 xff, 0 xf7, 0 xd8, 0 xbe,
0 xa7, 0 x39, 0 x40, 0 x85, 0 x8c, 0 xc0, 0 x04, 0 x07, 0 x0c, 0 x17,
0 x1c, 0 x23, 0 x2b, 0 x34, 0 x3b, 0 x43, 0 x4c, 0 x54, 0 x5b, 0 x63,
0 x6a, 0 x73, 0 x7a, 0 x82, 0 x8a, 0 x91, 0 x98, 0 xa1, 0 xa8, 0 xb0,
0 xb7, 0 xc1, 0 xc9, 0 xcf, 0 xd9, 0 xe3, 0 xea, 0 xf4, 0 xff, 0 x00,
0 x00, 0 x00, 0 x00, 0 x00, 0 x00, 0 x00, 0 x00, 0 x00,
};
static const unsigned char seq_sleep_out[] = {
0 x11,
};
static const unsigned char seq_display_on[] = {
0 x29,
};
static const unsigned char seq_display_off[] = {
0 x10,
};
static int lms501kf03_spi_write_byte(struct lms501kf03 *lcd, int addr, int data)
{
u16 buf[1 ];
struct spi_message msg;
struct spi_transfer xfer = {
.len = 2 ,
.tx_buf = buf,
};
buf[0 ] = (addr << 8 ) | data;
spi_message_init(&msg);
spi_message_add_tail(&xfer, &msg);
return spi_sync(lcd->spi, &msg);
}
static int lms501kf03_spi_write(struct lms501kf03 *lcd, unsigned char address,
unsigned char command)
{
return lms501kf03_spi_write_byte(lcd, address, command);
}
static int lms501kf03_panel_send_sequence(struct lms501kf03 *lcd,
const unsigned char *wbuf,
unsigned int len)
{
int ret = 0 , i = 0 ;
while (i < len) {
if (i == 0 )
ret = lms501kf03_spi_write(lcd, COMMAND_ONLY, wbuf[i]);
else
ret = lms501kf03_spi_write(lcd, DATA_ONLY, wbuf[i]);
if (ret)
break ;
i += 1 ;
}
return ret;
}
static int lms501kf03_ldi_init(struct lms501kf03 *lcd)
{
int ret, i;
static const unsigned char *init_seq[] = {
seq_password,
seq_power,
seq_display,
seq_rgb_if,
seq_display_inv,
seq_vcom,
seq_gate,
seq_panel,
seq_col_mod,
seq_w_gamma,
seq_rgb_gamma,
seq_sleep_out,
};
static const unsigned int size_seq[] = {
ARRAY_SIZE(seq_password),
ARRAY_SIZE(seq_power),
ARRAY_SIZE(seq_display),
ARRAY_SIZE(seq_rgb_if),
ARRAY_SIZE(seq_display_inv),
ARRAY_SIZE(seq_vcom),
ARRAY_SIZE(seq_gate),
ARRAY_SIZE(seq_panel),
ARRAY_SIZE(seq_col_mod),
ARRAY_SIZE(seq_w_gamma),
ARRAY_SIZE(seq_rgb_gamma),
ARRAY_SIZE(seq_sleep_out),
};
for (i = 0 ; i < ARRAY_SIZE(init_seq); i++) {
ret = lms501kf03_panel_send_sequence(lcd, init_seq[i],
size_seq[i]);
if (ret)
break ;
}
/*
* According to the datasheet, 120ms delay time is required.
* After sleep out sequence, command is blocked for 120ms.
* Thus, LDI should wait for 120ms.
*/
msleep(120 );
return ret;
}
static int lms501kf03_ldi_enable(struct lms501kf03 *lcd)
{
return lms501kf03_panel_send_sequence(lcd, seq_display_on,
ARRAY_SIZE(seq_display_on));
}
static int lms501kf03_ldi_disable(struct lms501kf03 *lcd)
{
return lms501kf03_panel_send_sequence(lcd, seq_display_off,
ARRAY_SIZE(seq_display_off));
}
static int lms501kf03_power_is_on(int power)
{
return (power) <= LCD_POWER_REDUCED;
}
static int lms501kf03_power_on(struct lms501kf03 *lcd)
{
int ret = 0 ;
struct lcd_platform_data *pd;
pd = lcd->lcd_pd;
if (!pd->power_on) {
dev_err(lcd->dev, "power_on is NULL.\n" );
return -EINVAL;
}
pd->power_on(lcd->ld, 1 );
msleep(pd->power_on_delay);
if (!pd->reset) {
dev_err(lcd->dev, "reset is NULL.\n" );
return -EINVAL;
}
pd->reset(lcd->ld);
msleep(pd->reset_delay);
ret = lms501kf03_ldi_init(lcd);
if (ret) {
dev_err(lcd->dev, "failed to initialize ldi.\n" );
return ret;
}
ret = lms501kf03_ldi_enable(lcd);
if (ret) {
dev_err(lcd->dev, "failed to enable ldi.\n" );
return ret;
}
return 0 ;
}
static int lms501kf03_power_off(struct lms501kf03 *lcd)
{
int ret = 0 ;
struct lcd_platform_data *pd;
pd = lcd->lcd_pd;
ret = lms501kf03_ldi_disable(lcd);
if (ret) {
dev_err(lcd->dev, "lcd setting failed.\n" );
return -EIO;
}
msleep(pd->power_off_delay);
pd->power_on(lcd->ld, 0 );
return 0 ;
}
static int lms501kf03_power(struct lms501kf03 *lcd, int power)
{
int ret = 0 ;
if (lms501kf03_power_is_on(power) &&
!lms501kf03_power_is_on(lcd->power))
ret = lms501kf03_power_on(lcd);
else if (!lms501kf03_power_is_on(power) &&
lms501kf03_power_is_on(lcd->power))
ret = lms501kf03_power_off(lcd);
if (!ret)
lcd->power = power;
return ret;
}
static int lms501kf03_get_power(struct lcd_device *ld)
{
struct lms501kf03 *lcd = lcd_get_data(ld);
return lcd->power;
}
static int lms501kf03_set_power(struct lcd_device *ld, int power)
{
struct lms501kf03 *lcd = lcd_get_data(ld);
if (power != LCD_POWER_ON && power != LCD_POWER_OFF &&
power != LCD_POWER_REDUCED) {
dev_err(lcd->dev, "power value should be 0, 1 or 4.\n" );
return -EINVAL;
}
return lms501kf03_power(lcd, power);
}
static const struct lcd_ops lms501kf03_lcd_ops = {
.get_power = lms501kf03_get_power,
.set_power = lms501kf03_set_power,
};
static int lms501kf03_probe(struct spi_device *spi)
{
struct lms501kf03 *lcd = NULL;
struct lcd_device *ld = NULL;
int ret = 0 ;
lcd = devm_kzalloc(&spi->dev, sizeof (struct lms501kf03), GFP_KERNEL);
if (!lcd)
return -ENOMEM;
/* lms501kf03 lcd panel uses 3-wire 9-bit SPI Mode. */
spi->bits_per_word = 9 ;
ret = spi_setup(spi);
if (ret < 0 ) {
dev_err(&spi->dev, "spi setup failed.\n" );
return ret;
}
lcd->spi = spi;
lcd->dev = &spi->dev;
lcd->lcd_pd = dev_get_platdata(&spi->dev);
if (!lcd->lcd_pd) {
dev_err(&spi->dev, "platform data is NULL\n" );
return -EINVAL;
}
ld = devm_lcd_device_register(&spi->dev, "lms501kf03" , &spi->dev, lcd,
&lms501kf03_lcd_ops);
if (IS_ERR(ld))
return PTR_ERR(ld);
lcd->ld = ld;
if (!lcd->lcd_pd->lcd_enabled) {
/*
* if lcd panel was off from bootloader then
* current lcd status is powerdown and then
* it enables lcd panel.
*/
lcd->power = LCD_POWER_OFF;
lms501kf03_power(lcd, LCD_POWER_ON);
} else {
lcd->power = LCD_POWER_ON;
}
spi_set_drvdata(spi, lcd);
dev_info(&spi->dev, "lms501kf03 panel driver has been probed.\n" );
return 0 ;
}
static void lms501kf03_remove(struct spi_device *spi)
{
struct lms501kf03 *lcd = spi_get_drvdata(spi);
lms501kf03_power(lcd, LCD_POWER_OFF);
}
#ifdef CONFIG_PM_SLEEP
static int lms501kf03_suspend(struct device *dev)
{
struct lms501kf03 *lcd = dev_get_drvdata(dev);
dev_dbg(dev, "lcd->power = %d\n" , lcd->power);
/*
* when lcd panel is suspend, lcd panel becomes off
* regardless of status.
*/
return lms501kf03_power(lcd, LCD_POWER_OFF);
}
static int lms501kf03_resume(struct device *dev)
{
struct lms501kf03 *lcd = dev_get_drvdata(dev);
lcd->power = LCD_POWER_OFF;
return lms501kf03_power(lcd, LCD_POWER_ON);
}
#endif
static SIMPLE_DEV_PM_OPS(lms501kf03_pm_ops, lms501kf03_suspend,
lms501kf03_resume);
static void lms501kf03_shutdown(struct spi_device *spi)
{
struct lms501kf03 *lcd = spi_get_drvdata(spi);
lms501kf03_power(lcd, LCD_POWER_OFF);
}
static struct spi_driver lms501kf03_driver = {
.driver = {
.name = "lms501kf03" ,
.pm = &lms501kf03_pm_ops,
},
.probe = lms501kf03_probe,
.remove = lms501kf03_remove,
.shutdown = lms501kf03_shutdown,
};
module_spi_driver(lms501kf03_driver);
MODULE_AUTHOR("Jingoo Han <jg1.han@samsung.com>" );
MODULE_DESCRIPTION("lms501kf03 LCD Driver" );
MODULE_LICENSE("GPL" );
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(vorverarbeitet am 2026-06-07)
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