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auxdisplay: charlcd: Add support for 4-bit interfaces
In 4-bit mode, 8-bit commands and data are written using two raw writes to the data interface: high nibble first, low nibble last. This must be handled by the low-level driver. However, as we don't know in which mode (4-bit or 8-bit) nor 4-bit phase the LCD was left, initialization must always be handled using raw writes, and needs to configure the LCD for 8-bit mode first. Signed-off-by: Geert Uytterhoeven <geert@linux-m68k.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
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@ -223,24 +223,46 @@ static void charlcd_clear_display(struct charlcd *lcd)
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static int charlcd_init_display(struct charlcd *lcd)
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{
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void (*write_cmd_raw)(struct charlcd *lcd, int cmd);
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struct charlcd_priv *priv = to_priv(lcd);
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u8 init;
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if (lcd->ifwidth != 4 && lcd->ifwidth != 8)
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return -EINVAL;
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priv->flags = ((lcd->height > 1) ? LCD_FLAG_N : 0) | LCD_FLAG_D |
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LCD_FLAG_C | LCD_FLAG_B;
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long_sleep(20); /* wait 20 ms after power-up for the paranoid */
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/* 8bits, 1 line, small fonts; let's do it 3 times */
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lcd->ops->write_cmd(lcd, LCD_CMD_FUNCTION_SET | LCD_CMD_DATA_LEN_8BITS);
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/*
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* 8-bit mode, 1 line, small fonts; let's do it 3 times, to make sure
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* the LCD is in 8-bit mode afterwards
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*/
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init = LCD_CMD_FUNCTION_SET | LCD_CMD_DATA_LEN_8BITS;
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if (lcd->ifwidth == 4) {
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init >>= 4;
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write_cmd_raw = lcd->ops->write_cmd_raw4;
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} else {
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write_cmd_raw = lcd->ops->write_cmd;
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}
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write_cmd_raw(lcd, init);
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long_sleep(10);
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lcd->ops->write_cmd(lcd, LCD_CMD_FUNCTION_SET | LCD_CMD_DATA_LEN_8BITS);
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write_cmd_raw(lcd, init);
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long_sleep(10);
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lcd->ops->write_cmd(lcd, LCD_CMD_FUNCTION_SET | LCD_CMD_DATA_LEN_8BITS);
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write_cmd_raw(lcd, init);
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long_sleep(10);
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if (lcd->ifwidth == 4) {
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/* Switch to 4-bit mode, 1 line, small fonts */
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lcd->ops->write_cmd_raw4(lcd, LCD_CMD_FUNCTION_SET >> 4);
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long_sleep(10);
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}
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/* set font height and lines number */
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lcd->ops->write_cmd(lcd,
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LCD_CMD_FUNCTION_SET | LCD_CMD_DATA_LEN_8BITS |
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LCD_CMD_FUNCTION_SET |
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((lcd->ifwidth == 8) ? LCD_CMD_DATA_LEN_8BITS : 0) |
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((priv->flags & LCD_FLAG_F) ? LCD_CMD_FONT_5X10_DOTS : 0) |
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((priv->flags & LCD_FLAG_N) ? LCD_CMD_TWO_LINES : 0));
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long_sleep(10);
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@ -482,7 +504,8 @@ static inline int handle_lcd_special_code(struct charlcd *lcd)
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/* check whether one of F,N flags was changed */
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else if ((oldflags ^ priv->flags) & (LCD_FLAG_F | LCD_FLAG_N))
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lcd->ops->write_cmd(lcd,
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LCD_CMD_FUNCTION_SET | LCD_CMD_DATA_LEN_8BITS |
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LCD_CMD_FUNCTION_SET |
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((lcd->ifwidth == 8) ? LCD_CMD_DATA_LEN_8BITS : 0) |
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((priv->flags & LCD_FLAG_F) ? LCD_CMD_FONT_5X10_DOTS : 0) |
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((priv->flags & LCD_FLAG_N) ? LCD_CMD_TWO_LINES : 0));
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/* check whether L flag was changed */
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@ -716,6 +739,7 @@ struct charlcd *charlcd_alloc(unsigned int drvdata_size)
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priv->esc_seq.len = -1;
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lcd = &priv->lcd;
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lcd->ifwidth = 8;
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lcd->bwidth = DEFAULT_LCD_BWIDTH;
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lcd->hwidth = DEFAULT_LCD_HWIDTH;
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lcd->drvdata = priv->drvdata;
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@ -14,6 +14,7 @@ struct charlcd {
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const struct charlcd_ops *ops;
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const unsigned char *char_conv; /* Optional */
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int ifwidth; /* 4-bit or 8-bit (default) */
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int height;
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int width;
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int bwidth; /* Default set by charlcd_alloc() */
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@ -28,6 +29,7 @@ struct charlcd_ops {
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void (*write_data)(struct charlcd *lcd, int data);
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/* Optional */
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void (*write_cmd_raw4)(struct charlcd *lcd, int cmd); /* 4-bit only */
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void (*clear_fast)(struct charlcd *lcd);
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void (*backlight)(struct charlcd *lcd, int on);
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};
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