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-rw-r--r--common_features.mk6
-rw-r--r--docs/feature_hd44780.md56
-rw-r--r--docs/features.md1
-rw-r--r--drivers/avr/hd44780.c592
-rw-r--r--drivers/avr/hd44780.h371
-rw-r--r--quantum/quantum.c4
-rw-r--r--quantum/quantum.h4
-rw-r--r--quantum/template/avr/config.h28
-rw-r--r--quantum/template/avr/rules.mk1
-rw-r--r--tmk_core/common/keyboard.c3
10 files changed, 1066 insertions, 0 deletions
diff --git a/common_features.mk b/common_features.mk
index 0778f8e0f..b12b6ae51 100644
--- a/common_features.mk
+++ b/common_features.mk
@@ -197,6 +197,12 @@ ifeq ($(strip $(USB_HID_ENABLE)), yes)
197 include $(TMK_DIR)/protocol/usb_hid.mk 197 include $(TMK_DIR)/protocol/usb_hid.mk
198endif 198endif
199 199
200
201ifeq ($(strip $(HD44780_ENABLE)), yes)
202 SRC += drivers/avr/hd44780.c
203 OPT_DEFS += -DHD44780_ENABLE
204endif
205
200QUANTUM_SRC:= \ 206QUANTUM_SRC:= \
201 $(QUANTUM_DIR)/quantum.c \ 207 $(QUANTUM_DIR)/quantum.c \
202 $(QUANTUM_DIR)/keymap_common.c \ 208 $(QUANTUM_DIR)/keymap_common.c \
diff --git a/docs/feature_hd44780.md b/docs/feature_hd44780.md
new file mode 100644
index 000000000..e9d9e8b7b
--- /dev/null
+++ b/docs/feature_hd44780.md
@@ -0,0 +1,56 @@
1# HD44780 LCD Displays
2
3This is an integration of Peter Fleury's LCD library. This page will explain the basics. [For in depth documentation visit his page.](http://homepage.hispeed.ch/peterfleury/doxygen/avr-gcc-libraries/group__pfleury__lcd.html)
4
5You can enable support for HD44780 Displays by setting the `HD44780_ENABLE` flag in your keyboards `rules.mk` to yes. This will use about 400 KB of extra space.
6
7## Configuration
8
9You will need to configure the pins used by your display and its number of lines and collumn in your keyboards `config.h`.
10
11Uncomment the section labled HD44780 and change the parameters as needed.
12````
13/*
14 * HD44780 LCD Display Configuration
15 */
16
17#define LCD_LINES 2 //< number of visible lines of the display
18#define LCD_DISP_LENGTH 16 //< visibles characters per line of the display
19#define LCD_IO_MODE 1 //< 0: memory mapped mode, 1: IO port mode
20#if LCD_IO_MODE
21#define LCD_PORT PORTB //< port for the LCD lines
22#define LCD_DATA0_PORT LCD_PORT //< port for 4bit data bit 0
23#define LCD_DATA1_PORT LCD_PORT //< port for 4bit data bit 1
24#define LCD_DATA2_PORT LCD_PORT //< port for 4bit data bit 2
25#define LCD_DATA3_PORT LCD_PORT //< port for 4bit data bit 3
26#define LCD_DATA0_PIN 4 //< pin for 4bit data bit 0
27#define LCD_DATA1_PIN 5 //< pin for 4bit data bit 1
28#define LCD_DATA2_PIN 6 //< pin for 4bit data bit 2
29#define LCD_DATA3_PIN 7 //< pin for 4bit data bit 3
30#define LCD_RS_PORT LCD_PORT //< port for RS line
31#define LCD_RS_PIN 3 //< pin for RS line
32#define LCD_RW_PORT LCD_PORT //< port for RW line
33#define LCD_RW_PIN 2 //< pin for RW line
34#define LCD_E_PORT LCD_PORT //< port for Enable line
35#define LCD_E_PIN 1 //< pin for Enable line
36#endif
37````
38
39Should you need to configure other properties you can copy them from `quantum/hd44780.h` and set them in your `config.h`
40
41## Usage
42
43To initialize your display call lcd_init() with one of these parameters:
44````
45LCD_DISP_OFF : display off
46LCD_DISP_ON : display on, cursor off
47LCD_DISP_ON_CURSOR : display on, cursor on
48LCD_DISP_ON_CURSOR_BLINK : display on, cursor on flashing
49````
50This is best done in your keyboards `matrix_init_kb` or your keymaps `matrix_init_user`.
51It is advised to clear the display before use.
52To do so call `lcd_clrsrc()`.
53
54To now print something to your Display you first call `lcd_gotoxy(column, line)`. To go to the start of the first line you would call `lcd_gotoxy(0, 0)` and then print a string with `lcd_puts("example string")`.
55
56There are more posible methods to control the display. [For in depth documentation please visit the linked page.](http://homepage.hispeed.ch/peterfleury/doxygen/avr-gcc-libraries/group__pfleury__lcd.html)
diff --git a/docs/features.md b/docs/features.md
index 4dee486ef..d8ca3780d 100644
--- a/docs/features.md
+++ b/docs/features.md
@@ -9,6 +9,7 @@ QMK has a staggering number of features for building your keyboard. It can take
9* [Backlight](feature_backlight.md) - LED lighting support for your keyboard. 9* [Backlight](feature_backlight.md) - LED lighting support for your keyboard.
10* [Bootmagic](feature_bootmagic.md) - Adjust the behavior of your keyboard using hotkeys. 10* [Bootmagic](feature_bootmagic.md) - Adjust the behavior of your keyboard using hotkeys.
11* [Dynamic Macros](feature_dynamic_macros.md) - Record and playback macros from the keyboard itself. 11* [Dynamic Macros](feature_dynamic_macros.md) - Record and playback macros from the keyboard itself.
12* [HD44780 LCD Display](feature_hd44780.md) - Support for LCD character displays using the HD44780 standard.
12* [Key Lock](feature_key_lock.md) - Lock a key in the "down" state. 13* [Key Lock](feature_key_lock.md) - Lock a key in the "down" state.
13* [Layouts](feature_layouts.md) - Use one keymap with any keyboard that supports your layout. 14* [Layouts](feature_layouts.md) - Use one keymap with any keyboard that supports your layout.
14* [Leader Key](feature_leader_key.md) - Tap the leader key followed by a sequence to trigger custom behavior. 15* [Leader Key](feature_leader_key.md) - Tap the leader key followed by a sequence to trigger custom behavior.
diff --git a/drivers/avr/hd44780.c b/drivers/avr/hd44780.c
new file mode 100644
index 000000000..51414d8f9
--- /dev/null
+++ b/drivers/avr/hd44780.c
@@ -0,0 +1,592 @@
1/****************************************************************************
2 Title: HD44780U LCD library
3 Author: Peter Fleury <pfleury@gmx.ch> http://tinyurl.com/peterfleury
4 License: GNU General Public License Version 3
5 File: $Id: lcd.c,v 1.15.2.2 2015/01/17 12:16:05 peter Exp $
6 Software: AVR-GCC 3.3
7 Target: any AVR device, memory mapped mode only for AT90S4414/8515/Mega
8
9 DESCRIPTION
10 Basic routines for interfacing a HD44780U-based text lcd display
11
12 Originally based on Volker Oth's lcd library,
13 changed lcd_init(), added additional constants for lcd_command(),
14 added 4-bit I/O mode, improved and optimized code.
15
16 Library can be operated in memory mapped mode (LCD_IO_MODE=0) or in
17 4-bit IO port mode (LCD_IO_MODE=1). 8-bit IO port mode not supported.
18
19 Memory mapped mode compatible with Kanda STK200, but supports also
20 generation of R/W signal through A8 address line.
21
22 USAGE
23 See the C include lcd.h file for a description of each function
24
25*****************************************************************************/
26#include <inttypes.h>
27#include <avr/io.h>
28#include <avr/pgmspace.h>
29#include <util/delay.h>
30#include "hd44780.h"
31
32/*
33** constants/macros
34*/
35#define DDR(x) (*(&x - 1)) /* address of data direction register of port x */
36#if defined(__AVR_ATmega64__) || defined(__AVR_ATmega128__)
37 /* on ATmega64/128 PINF is on port 0x00 and not 0x60 */
38 #define PIN(x) ( &PORTF==&(x) ? _SFR_IO8(0x00) : (*(&x - 2)) )
39#else
40 #define PIN(x) (*(&x - 2)) /* address of input register of port x */
41#endif
42
43
44#if LCD_IO_MODE
45#define lcd_e_delay() _delay_us(LCD_DELAY_ENABLE_PULSE)
46#define lcd_e_high() LCD_E_PORT |= _BV(LCD_E_PIN);
47#define lcd_e_low() LCD_E_PORT &= ~_BV(LCD_E_PIN);
48#define lcd_e_toggle() toggle_e()
49#define lcd_rw_high() LCD_RW_PORT |= _BV(LCD_RW_PIN)
50#define lcd_rw_low() LCD_RW_PORT &= ~_BV(LCD_RW_PIN)
51#define lcd_rs_high() LCD_RS_PORT |= _BV(LCD_RS_PIN)
52#define lcd_rs_low() LCD_RS_PORT &= ~_BV(LCD_RS_PIN)
53#endif
54
55#if LCD_IO_MODE
56#if LCD_LINES==1
57#define LCD_FUNCTION_DEFAULT LCD_FUNCTION_4BIT_1LINE
58#else
59#define LCD_FUNCTION_DEFAULT LCD_FUNCTION_4BIT_2LINES
60#endif
61#else
62#if LCD_LINES==1
63#define LCD_FUNCTION_DEFAULT LCD_FUNCTION_8BIT_1LINE
64#else
65#define LCD_FUNCTION_DEFAULT LCD_FUNCTION_8BIT_2LINES
66#endif
67#endif
68
69#if LCD_CONTROLLER_KS0073
70#if LCD_LINES==4
71
72#define KS0073_EXTENDED_FUNCTION_REGISTER_ON 0x2C /* |0|010|1100 4-bit mode, extension-bit RE = 1 */
73#define KS0073_EXTENDED_FUNCTION_REGISTER_OFF 0x28 /* |0|010|1000 4-bit mode, extension-bit RE = 0 */
74#define KS0073_4LINES_MODE 0x09 /* |0|000|1001 4 lines mode */
75
76#endif
77#endif
78
79/*
80** function prototypes
81*/
82#if LCD_IO_MODE
83static void toggle_e(void);
84#endif
85
86/*
87** local functions
88*/
89
90
91/*************************************************************************
92delay for a minimum of <us> microseconds
93the number of loops is calculated at compile-time from MCU clock frequency
94*************************************************************************/
95#define delay(us) _delay_us(us)
96
97
98#if LCD_IO_MODE
99/* toggle Enable Pin to initiate write */
100static void toggle_e(void)
101{
102 lcd_e_high();
103 lcd_e_delay();
104 lcd_e_low();
105}
106#endif
107
108
109/*************************************************************************
110Low-level function to write byte to LCD controller
111Input: data byte to write to LCD
112 rs 1: write data
113 0: write instruction
114Returns: none
115*************************************************************************/
116#if LCD_IO_MODE
117static void lcd_write(uint8_t data,uint8_t rs)
118{
119 unsigned char dataBits ;
120
121
122 if (rs) { /* write data (RS=1, RW=0) */
123 lcd_rs_high();
124 } else { /* write instruction (RS=0, RW=0) */
125 lcd_rs_low();
126 }
127 lcd_rw_low(); /* RW=0 write mode */
128
129 if ( ( &LCD_DATA0_PORT == &LCD_DATA1_PORT) && ( &LCD_DATA1_PORT == &LCD_DATA2_PORT ) && ( &LCD_DATA2_PORT == &LCD_DATA3_PORT )
130 && (LCD_DATA0_PIN == 0) && (LCD_DATA1_PIN == 1) && (LCD_DATA2_PIN == 2) && (LCD_DATA3_PIN == 3) )
131 {
132 /* configure data pins as output */
133 DDR(LCD_DATA0_PORT) |= 0x0F;
134
135 /* output high nibble first */
136 dataBits = LCD_DATA0_PORT & 0xF0;
137 LCD_DATA0_PORT = dataBits |((data>>4)&0x0F);
138 lcd_e_toggle();
139
140 /* output low nibble */
141 LCD_DATA0_PORT = dataBits | (data&0x0F);
142 lcd_e_toggle();
143
144 /* all data pins high (inactive) */
145 LCD_DATA0_PORT = dataBits | 0x0F;
146 }
147 else
148 {
149 /* configure data pins as output */
150 DDR(LCD_DATA0_PORT) |= _BV(LCD_DATA0_PIN);
151 DDR(LCD_DATA1_PORT) |= _BV(LCD_DATA1_PIN);
152 DDR(LCD_DATA2_PORT) |= _BV(LCD_DATA2_PIN);
153 DDR(LCD_DATA3_PORT) |= _BV(LCD_DATA3_PIN);
154
155 /* output high nibble first */
156 LCD_DATA3_PORT &= ~_BV(LCD_DATA3_PIN);
157 LCD_DATA2_PORT &= ~_BV(LCD_DATA2_PIN);
158 LCD_DATA1_PORT &= ~_BV(LCD_DATA1_PIN);
159 LCD_DATA0_PORT &= ~_BV(LCD_DATA0_PIN);
160 if(data & 0x80) LCD_DATA3_PORT |= _BV(LCD_DATA3_PIN);
161 if(data & 0x40) LCD_DATA2_PORT |= _BV(LCD_DATA2_PIN);
162 if(data & 0x20) LCD_DATA1_PORT |= _BV(LCD_DATA1_PIN);
163 if(data & 0x10) LCD_DATA0_PORT |= _BV(LCD_DATA0_PIN);
164 lcd_e_toggle();
165
166 /* output low nibble */
167 LCD_DATA3_PORT &= ~_BV(LCD_DATA3_PIN);
168 LCD_DATA2_PORT &= ~_BV(LCD_DATA2_PIN);
169 LCD_DATA1_PORT &= ~_BV(LCD_DATA1_PIN);
170 LCD_DATA0_PORT &= ~_BV(LCD_DATA0_PIN);
171 if(data & 0x08) LCD_DATA3_PORT |= _BV(LCD_DATA3_PIN);
172 if(data & 0x04) LCD_DATA2_PORT |= _BV(LCD_DATA2_PIN);
173 if(data & 0x02) LCD_DATA1_PORT |= _BV(LCD_DATA1_PIN);
174 if(data & 0x01) LCD_DATA0_PORT |= _BV(LCD_DATA0_PIN);
175 lcd_e_toggle();
176
177 /* all data pins high (inactive) */
178 LCD_DATA0_PORT |= _BV(LCD_DATA0_PIN);
179 LCD_DATA1_PORT |= _BV(LCD_DATA1_PIN);
180 LCD_DATA2_PORT |= _BV(LCD_DATA2_PIN);
181 LCD_DATA3_PORT |= _BV(LCD_DATA3_PIN);
182 }
183}
184#else
185#define lcd_write(d,rs) if (rs) *(volatile uint8_t*)(LCD_IO_DATA) = d; else *(volatile uint8_t*)(LCD_IO_FUNCTION) = d;
186/* rs==0 -> write instruction to LCD_IO_FUNCTION */
187/* rs==1 -> write data to LCD_IO_DATA */
188#endif
189
190
191/*************************************************************************
192Low-level function to read byte from LCD controller
193Input: rs 1: read data
194 0: read busy flag / address counter
195Returns: byte read from LCD controller
196*************************************************************************/
197#if LCD_IO_MODE
198static uint8_t lcd_read(uint8_t rs)
199{
200 uint8_t data;
201
202
203 if (rs)
204 lcd_rs_high(); /* RS=1: read data */
205 else
206 lcd_rs_low(); /* RS=0: read busy flag */
207 lcd_rw_high(); /* RW=1 read mode */
208
209 if ( ( &LCD_DATA0_PORT == &LCD_DATA1_PORT) && ( &LCD_DATA1_PORT == &LCD_DATA2_PORT ) && ( &LCD_DATA2_PORT == &LCD_DATA3_PORT )
210 && ( LCD_DATA0_PIN == 0 )&& (LCD_DATA1_PIN == 1) && (LCD_DATA2_PIN == 2) && (LCD_DATA3_PIN == 3) )
211 {
212 DDR(LCD_DATA0_PORT) &= 0xF0; /* configure data pins as input */
213
214 lcd_e_high();
215 lcd_e_delay();
216 data = PIN(LCD_DATA0_PORT) << 4; /* read high nibble first */
217 lcd_e_low();
218
219 lcd_e_delay(); /* Enable 500ns low */
220
221 lcd_e_high();
222 lcd_e_delay();
223 data |= PIN(LCD_DATA0_PORT)&0x0F; /* read low nibble */
224 lcd_e_low();
225 }
226 else
227 {
228 /* configure data pins as input */
229 DDR(LCD_DATA0_PORT) &= ~_BV(LCD_DATA0_PIN);
230 DDR(LCD_DATA1_PORT) &= ~_BV(LCD_DATA1_PIN);
231 DDR(LCD_DATA2_PORT) &= ~_BV(LCD_DATA2_PIN);
232 DDR(LCD_DATA3_PORT) &= ~_BV(LCD_DATA3_PIN);
233
234 /* read high nibble first */
235 lcd_e_high();
236 lcd_e_delay();
237 data = 0;
238 if ( PIN(LCD_DATA0_PORT) & _BV(LCD_DATA0_PIN) ) data |= 0x10;
239 if ( PIN(LCD_DATA1_PORT) & _BV(LCD_DATA1_PIN) ) data |= 0x20;
240 if ( PIN(LCD_DATA2_PORT) & _BV(LCD_DATA2_PIN) ) data |= 0x40;
241 if ( PIN(LCD_DATA3_PORT) & _BV(LCD_DATA3_PIN) ) data |= 0x80;
242 lcd_e_low();
243
244 lcd_e_delay(); /* Enable 500ns low */
245
246 /* read low nibble */
247 lcd_e_high();
248 lcd_e_delay();
249 if ( PIN(LCD_DATA0_PORT) & _BV(LCD_DATA0_PIN) ) data |= 0x01;
250 if ( PIN(LCD_DATA1_PORT) & _BV(LCD_DATA1_PIN) ) data |= 0x02;
251 if ( PIN(LCD_DATA2_PORT) & _BV(LCD_DATA2_PIN) ) data |= 0x04;
252 if ( PIN(LCD_DATA3_PORT) & _BV(LCD_DATA3_PIN) ) data |= 0x08;
253 lcd_e_low();
254 }
255 return data;
256}
257#else
258#define lcd_read(rs) (rs) ? *(volatile uint8_t*)(LCD_IO_DATA+LCD_IO_READ) : *(volatile uint8_t*)(LCD_IO_FUNCTION+LCD_IO_READ)
259/* rs==0 -> read instruction from LCD_IO_FUNCTION */
260/* rs==1 -> read data from LCD_IO_DATA */
261#endif
262
263
264/*************************************************************************
265loops while lcd is busy, returns address counter
266*************************************************************************/
267static uint8_t lcd_waitbusy(void)
268
269{
270 register uint8_t c;
271
272 /* wait until busy flag is cleared */
273 while ( (c=lcd_read(0)) & (1<<LCD_BUSY)) {}
274
275 /* the address counter is updated 4us after the busy flag is cleared */
276 delay(LCD_DELAY_BUSY_FLAG);
277
278 /* now read the address counter */
279 return (lcd_read(0)); // return address counter
280
281}/* lcd_waitbusy */
282
283
284/*************************************************************************
285Move cursor to the start of next line or to the first line if the cursor
286is already on the last line.
287*************************************************************************/
288static inline void lcd_newline(uint8_t pos)
289{
290 register uint8_t addressCounter;
291
292
293#if LCD_LINES==1
294 addressCounter = 0;
295#endif
296#if LCD_LINES==2
297 if ( pos < (LCD_START_LINE2) )
298 addressCounter = LCD_START_LINE2;
299 else
300 addressCounter = LCD_START_LINE1;
301#endif
302#if LCD_LINES==4
303#if KS0073_4LINES_MODE
304 if ( pos < LCD_START_LINE2 )
305 addressCounter = LCD_START_LINE2;
306 else if ( (pos >= LCD_START_LINE2) && (pos < LCD_START_LINE3) )
307 addressCounter = LCD_START_LINE3;
308 else if ( (pos >= LCD_START_LINE3) && (pos < LCD_START_LINE4) )
309 addressCounter = LCD_START_LINE4;
310 else
311 addressCounter = LCD_START_LINE1;
312#else
313 if ( pos < LCD_START_LINE3 )
314 addressCounter = LCD_START_LINE2;
315 else if ( (pos >= LCD_START_LINE2) && (pos < LCD_START_LINE4) )
316 addressCounter = LCD_START_LINE3;
317 else if ( (pos >= LCD_START_LINE3) && (pos < LCD_START_LINE2) )
318 addressCounter = LCD_START_LINE4;
319 else
320 addressCounter = LCD_START_LINE1;
321#endif
322#endif
323 lcd_command((1<<LCD_DDRAM)+addressCounter);
324
325}/* lcd_newline */
326
327
328/*
329** PUBLIC FUNCTIONS
330*/
331
332/*************************************************************************
333Send LCD controller instruction command
334Input: instruction to send to LCD controller, see HD44780 data sheet
335Returns: none
336*************************************************************************/
337void lcd_command(uint8_t cmd)
338{
339 lcd_waitbusy();
340 lcd_write(cmd,0);
341}
342
343
344/*************************************************************************
345Send data byte to LCD controller
346Input: data to send to LCD controller, see HD44780 data sheet
347Returns: none
348*************************************************************************/
349void lcd_data(uint8_t data)
350{
351 lcd_waitbusy();
352 lcd_write(data,1);
353}
354
355
356
357/*************************************************************************
358Set cursor to specified position
359Input: x horizontal position (0: left most position)
360 y vertical position (0: first line)
361Returns: none
362*************************************************************************/
363void lcd_gotoxy(uint8_t x, uint8_t y)
364{
365#if LCD_LINES==1
366 lcd_command((1<<LCD_DDRAM)+LCD_START_LINE1+x);
367#endif
368#if LCD_LINES==2
369 if ( y==0 )
370 lcd_command((1<<LCD_DDRAM)+LCD_START_LINE1+x);
371 else
372 lcd_command((1<<LCD_DDRAM)+LCD_START_LINE2+x);
373#endif
374#if LCD_LINES==4
375 if ( y==0 )
376 lcd_command((1<<LCD_DDRAM)+LCD_START_LINE1+x);
377 else if ( y==1)
378 lcd_command((1<<LCD_DDRAM)+LCD_START_LINE2+x);
379 else if ( y==2)
380 lcd_command((1<<LCD_DDRAM)+LCD_START_LINE3+x);
381 else /* y==3 */
382 lcd_command((1<<LCD_DDRAM)+LCD_START_LINE4+x);
383#endif
384
385}/* lcd_gotoxy */
386
387
388/*************************************************************************
389*************************************************************************/
390int lcd_getxy(void)
391{
392 return lcd_waitbusy();
393}
394
395
396/*************************************************************************
397Clear display and set cursor to home position
398*************************************************************************/
399void lcd_clrscr(void)
400{
401 lcd_command(1<<LCD_CLR);
402}
403
404
405/*************************************************************************
406Set cursor to home position
407*************************************************************************/
408void lcd_home(void)
409{
410 lcd_command(1<<LCD_HOME);
411}
412
413
414/*************************************************************************
415Display character at current cursor position
416Input: character to be displayed
417Returns: none
418*************************************************************************/
419void lcd_putc(char c)
420{
421 uint8_t pos;
422
423
424 pos = lcd_waitbusy(); // read busy-flag and address counter
425 if (c=='\n')
426 {
427 lcd_newline(pos);
428 }
429 else
430 {
431#if LCD_WRAP_LINES==1
432#if LCD_LINES==1
433 if ( pos == LCD_START_LINE1+LCD_DISP_LENGTH ) {
434 lcd_write((1<<LCD_DDRAM)+LCD_START_LINE1,0);
435 }
436#elif LCD_LINES==2
437 if ( pos == LCD_START_LINE1+LCD_DISP_LENGTH ) {
438 lcd_write((1<<LCD_DDRAM)+LCD_START_LINE2,0);
439 }else if ( pos == LCD_START_LINE2+LCD_DISP_LENGTH ){
440 lcd_write((1<<LCD_DDRAM)+LCD_START_LINE1,0);
441 }
442#elif LCD_LINES==4
443 if ( pos == LCD_START_LINE1+LCD_DISP_LENGTH ) {
444 lcd_write((1<<LCD_DDRAM)+LCD_START_LINE2,0);
445 }else if ( pos == LCD_START_LINE2+LCD_DISP_LENGTH ) {
446 lcd_write((1<<LCD_DDRAM)+LCD_START_LINE3,0);
447 }else if ( pos == LCD_START_LINE3+LCD_DISP_LENGTH ) {
448 lcd_write((1<<LCD_DDRAM)+LCD_START_LINE4,0);
449 }else if ( pos == LCD_START_LINE4+LCD_DISP_LENGTH ) {
450 lcd_write((1<<LCD_DDRAM)+LCD_START_LINE1,0);
451 }
452#endif
453 lcd_waitbusy();
454#endif
455 lcd_write(c, 1);
456 }
457
458}/* lcd_putc */
459
460
461/*************************************************************************
462Display string without auto linefeed
463Input: string to be displayed
464Returns: none
465*************************************************************************/
466void lcd_puts(const char *s)
467/* print string on lcd (no auto linefeed) */
468{
469 register char c;
470
471 while ( (c = *s++) ) {
472 lcd_putc(c);
473 }
474
475}/* lcd_puts */
476
477
478/*************************************************************************
479Display string from program memory without auto linefeed
480Input: string from program memory be be displayed
481Returns: none
482*************************************************************************/
483void lcd_puts_p(const char *progmem_s)
484/* print string from program memory on lcd (no auto linefeed) */
485{
486 register char c;
487
488 while ( (c = pgm_read_byte(progmem_s++)) ) {
489 lcd_putc(c);
490 }
491
492}/* lcd_puts_p */
493
494
495/*************************************************************************
496Initialize display and select type of cursor
497Input: dispAttr LCD_DISP_OFF display off
498 LCD_DISP_ON display on, cursor off
499 LCD_DISP_ON_CURSOR display on, cursor on
500 LCD_DISP_CURSOR_BLINK display on, cursor on flashing
501Returns: none
502*************************************************************************/
503void lcd_init(uint8_t dispAttr)
504{
505#if LCD_IO_MODE
506 /*
507 * Initialize LCD to 4 bit I/O mode
508 */
509
510 if ( ( &LCD_DATA0_PORT == &LCD_DATA1_PORT) && ( &LCD_DATA1_PORT == &LCD_DATA2_PORT ) && ( &LCD_DATA2_PORT == &LCD_DATA3_PORT )
511 && ( &LCD_RS_PORT == &LCD_DATA0_PORT) && ( &LCD_RW_PORT == &LCD_DATA0_PORT) && (&LCD_E_PORT == &LCD_DATA0_PORT)
512 && (LCD_DATA0_PIN == 0 ) && (LCD_DATA1_PIN == 1) && (LCD_DATA2_PIN == 2) && (LCD_DATA3_PIN == 3)
513 && (LCD_RS_PIN == 4 ) && (LCD_RW_PIN == 5) && (LCD_E_PIN == 6 ) )
514 {
515 /* configure all port bits as output (all LCD lines on same port) */
516 DDR(LCD_DATA0_PORT) |= 0x7F;
517 }
518 else if ( ( &LCD_DATA0_PORT == &LCD_DATA1_PORT) && ( &LCD_DATA1_PORT == &LCD_DATA2_PORT ) && ( &LCD_DATA2_PORT == &LCD_DATA3_PORT )
519 && (LCD_DATA0_PIN == 0 ) && (LCD_DATA1_PIN == 1) && (LCD_DATA2_PIN == 2) && (LCD_DATA3_PIN == 3) )
520 {
521 /* configure all port bits as output (all LCD data lines on same port, but control lines on different ports) */
522 DDR(LCD_DATA0_PORT) |= 0x0F;
523 DDR(LCD_RS_PORT) |= _BV(LCD_RS_PIN);
524 DDR(LCD_RW_PORT) |= _BV(LCD_RW_PIN);
525 DDR(LCD_E_PORT) |= _BV(LCD_E_PIN);
526 }
527 else
528 {
529 /* configure all port bits as output (LCD data and control lines on different ports */
530 DDR(LCD_RS_PORT) |= _BV(LCD_RS_PIN);
531 DDR(LCD_RW_PORT) |= _BV(LCD_RW_PIN);
532 DDR(LCD_E_PORT) |= _BV(LCD_E_PIN);
533 DDR(LCD_DATA0_PORT) |= _BV(LCD_DATA0_PIN);
534 DDR(LCD_DATA1_PORT) |= _BV(LCD_DATA1_PIN);
535 DDR(LCD_DATA2_PORT) |= _BV(LCD_DATA2_PIN);
536 DDR(LCD_DATA3_PORT) |= _BV(LCD_DATA3_PIN);
537 }
538 delay(LCD_DELAY_BOOTUP); /* wait 16ms or more after power-on */
539
540 /* initial write to lcd is 8bit */
541 LCD_DATA1_PORT |= _BV(LCD_DATA1_PIN); // LCD_FUNCTION>>4;
542 LCD_DATA0_PORT |= _BV(LCD_DATA0_PIN); // LCD_FUNCTION_8BIT>>4;
543 lcd_e_toggle();
544 delay(LCD_DELAY_INIT); /* delay, busy flag can't be checked here */
545
546 /* repeat last command */
547 lcd_e_toggle();
548 delay(LCD_DELAY_INIT_REP); /* delay, busy flag can't be checked here */
549
550 /* repeat last command a third time */
551 lcd_e_toggle();
552 delay(LCD_DELAY_INIT_REP); /* delay, busy flag can't be checked here */
553
554 /* now configure for 4bit mode */
555 LCD_DATA0_PORT &= ~_BV(LCD_DATA0_PIN); // LCD_FUNCTION_4BIT_1LINE>>4
556 lcd_e_toggle();
557 delay(LCD_DELAY_INIT_4BIT); /* some displays need this additional delay */
558
559 /* from now the LCD only accepts 4 bit I/O, we can use lcd_command() */
560#else
561 /*
562 * Initialize LCD to 8 bit memory mapped mode
563 */
564
565 /* enable external SRAM (memory mapped lcd) and one wait state */
566 MCUCR = _BV(SRE) | _BV(SRW);
567
568 /* reset LCD */
569 delay(LCD_DELAY_BOOTUP); /* wait 16ms after power-on */
570 lcd_write(LCD_FUNCTION_8BIT_1LINE,0); /* function set: 8bit interface */
571 delay(LCD_DELAY_INIT); /* wait 5ms */
572 lcd_write(LCD_FUNCTION_8BIT_1LINE,0); /* function set: 8bit interface */
573 delay(LCD_DELAY_INIT_REP); /* wait 64us */
574 lcd_write(LCD_FUNCTION_8BIT_1LINE,0); /* function set: 8bit interface */
575 delay(LCD_DELAY_INIT_REP); /* wait 64us */
576#endif
577
578#if KS0073_4LINES_MODE
579 /* Display with KS0073 controller requires special commands for enabling 4 line mode */
580 lcd_command(KS0073_EXTENDED_FUNCTION_REGISTER_ON);
581 lcd_command(KS0073_4LINES_MODE);
582 lcd_command(KS0073_EXTENDED_FUNCTION_REGISTER_OFF);
583#else
584 lcd_command(LCD_FUNCTION_DEFAULT); /* function set: display lines */
585#endif
586 lcd_command(LCD_DISP_OFF); /* display off */
587 lcd_clrscr(); /* display clear */
588 lcd_command(LCD_MODE_DEFAULT); /* set entry mode */
589 lcd_command(dispAttr); /* display/cursor control */
590
591}/* lcd_init */
592
diff --git a/drivers/avr/hd44780.h b/drivers/avr/hd44780.h
new file mode 100644
index 000000000..7421c8131
--- /dev/null
+++ b/drivers/avr/hd44780.h
@@ -0,0 +1,371 @@
1#ifndef LCD_H
2#define LCD_H
3/*************************************************************************
4 Title : C include file for the HD44780U LCD library (lcd.c)
5 Author: Peter Fleury <pfleury@gmx.ch> http://tinyurl.com/peterfleury
6 License: GNU General Public License Version 3
7 File: $Id: lcd.h,v 1.14.2.4 2015/01/20 17:16:07 peter Exp $
8 Software: AVR-GCC 4.x
9 Hardware: any AVR device, memory mapped mode only for AVR with
10 memory mapped interface (AT90S8515/ATmega8515/ATmega128)
11***************************************************************************/
12
13/**
14 @mainpage
15 Collection of libraries for AVR-GCC
16 @author Peter Fleury pfleury@gmx.ch http://tinyurl.com/peterfleury
17 @copyright (C) 2015 Peter Fleury, GNU General Public License Version 3
18
19 @file
20 @defgroup pfleury_lcd LCD library <lcd.h>
21 @code #include <lcd.h> @endcode
22
23 @brief Basic routines for interfacing a HD44780U-based character LCD display
24
25 LCD character displays can be found in many devices, like espresso machines, laser printers.
26 The Hitachi HD44780 controller and its compatible controllers like Samsung KS0066U have become an industry standard for these types of displays.
27
28 This library allows easy interfacing with a HD44780 compatible display and can be
29 operated in memory mapped mode (LCD_IO_MODE defined as 0 in the include file lcd.h.) or in
30 4-bit IO port mode (LCD_IO_MODE defined as 1). 8-bit IO port mode is not supported.
31
32 Memory mapped mode is compatible with old Kanda STK200 starter kit, but also supports
33 generation of R/W signal through A8 address line.
34
35 @see The chapter <a href=" http://homepage.hispeed.ch/peterfleury/avr-lcd44780.html" target="_blank">Interfacing a HD44780 Based LCD to an AVR</a>
36 on my home page, which shows example circuits how to connect an LCD to an AVR controller.
37
38 @author Peter Fleury pfleury@gmx.ch http://tinyurl.com/peterfleury
39
40 @version 2.0
41
42 @copyright (C) 2015 Peter Fleury, GNU General Public License Version 3
43
44*/
45
46#include <inttypes.h>
47#include <avr/pgmspace.h>
48
49#if (__GNUC__ * 100 + __GNUC_MINOR__) < 405
50#error "This library requires AVR-GCC 4.5 or later, update to newer AVR-GCC compiler !"
51#endif
52
53
54/**@{*/
55
56/*
57 * LCD and target specific definitions below can be defined in a separate include file with name lcd_definitions.h instead modifying this file
58 * by adding -D_LCD_DEFINITIONS_FILE to the CDEFS section in the Makefile
59 * All definitions added to the file lcd_definitions.h will override the default definitions from lcd.h
60 */
61#ifdef _LCD_DEFINITIONS_FILE
62#include "lcd_definitions.h"
63#endif
64
65
66/**
67 * @name Definition for LCD controller type
68 * Use 0 for HD44780 controller, change to 1 for displays with KS0073 controller.
69 */
70#ifndef LCD_CONTROLLER_KS0073
71#define LCD_CONTROLLER_KS0073 0 /**< Use 0 for HD44780 controller, 1 for KS0073 controller */
72#endif
73
74/**
75 * @name Definitions for Display Size
76 * Change these definitions to adapt setting to your display
77 *
78 * These definitions can be defined in a separate include file \b lcd_definitions.h instead modifying this file by
79 * adding -D_LCD_DEFINITIONS_FILE to the CDEFS section in the Makefile.
80 * All definitions added to the file lcd_definitions.h will override the default definitions from lcd.h
81 *
82 */
83#ifndef LCD_LINES
84#define LCD_LINES 2 /**< number of visible lines of the display */
85#endif
86#ifndef LCD_DISP_LENGTH
87#define LCD_DISP_LENGTH 16 /**< visibles characters per line of the display */
88#endif
89#ifndef LCD_LINE_LENGTH
90#define LCD_LINE_LENGTH 0x40 /**< internal line length of the display */
91#endif
92#ifndef LCD_START_LINE1
93#define LCD_START_LINE1 0x00 /**< DDRAM address of first char of line 1 */
94#endif
95#ifndef LCD_START_LINE2
96#define LCD_START_LINE2 0x40 /**< DDRAM address of first char of line 2 */
97#endif
98#ifndef LCD_START_LINE3
99#define LCD_START_LINE3 0x14 /**< DDRAM address of first char of line 3 */
100#endif
101#ifndef LCD_START_LINE4
102#define LCD_START_LINE4 0x54 /**< DDRAM address of first char of line 4 */
103#endif
104#ifndef LCD_WRAP_LINES
105#define LCD_WRAP_LINES 0 /**< 0: no wrap, 1: wrap at end of visibile line */
106#endif
107
108
109/**
110 * @name Definitions for 4-bit IO mode
111 *
112 * The four LCD data lines and the three control lines RS, RW, E can be on the
113 * same port or on different ports.
114 * Change LCD_RS_PORT, LCD_RW_PORT, LCD_E_PORT if you want the control lines on
115 * different ports.
116 *
117 * Normally the four data lines should be mapped to bit 0..3 on one port, but it
118 * is possible to connect these data lines in different order or even on different
119 * ports by adapting the LCD_DATAx_PORT and LCD_DATAx_PIN definitions.
120 *
121 * Adjust these definitions to your target.\n
122 * These definitions can be defined in a separate include file \b lcd_definitions.h instead modifying this file by
123 * adding \b -D_LCD_DEFINITIONS_FILE to the \b CDEFS section in the Makefile.
124 * All definitions added to the file lcd_definitions.h will override the default definitions from lcd.h
125 *
126 */
127#define LCD_IO_MODE 1 /**< 0: memory mapped mode, 1: IO port mode */
128
129#if LCD_IO_MODE
130
131#ifndef LCD_PORT
132#define LCD_PORT PORTA /**< port for the LCD lines */
133#endif
134#ifndef LCD_DATA0_PORT
135#define LCD_DATA0_PORT LCD_PORT /**< port for 4bit data bit 0 */
136#endif
137#ifndef LCD_DATA1_PORT
138#define LCD_DATA1_PORT LCD_PORT /**< port for 4bit data bit 1 */
139#endif
140#ifndef LCD_DATA2_PORT
141#define LCD_DATA2_PORT LCD_PORT /**< port for 4bit data bit 2 */
142#endif
143#ifndef LCD_DATA3_PORT
144#define LCD_DATA3_PORT LCD_PORT /**< port for 4bit data bit 3 */
145#endif
146#ifndef LCD_DATA0_PIN
147#define LCD_DATA0_PIN 4 /**< pin for 4bit data bit 0 */
148#endif
149#ifndef LCD_DATA1_PIN
150#define LCD_DATA1_PIN 5 /**< pin for 4bit data bit 1 */
151#endif
152#ifndef LCD_DATA2_PIN
153#define LCD_DATA2_PIN 6 /**< pin for 4bit data bit 2 */
154#endif
155#ifndef LCD_DATA3_PIN
156#define LCD_DATA3_PIN 7 /**< pin for 4bit data bit 3 */
157#endif
158#ifndef LCD_RS_PORT
159#define LCD_RS_PORT LCD_PORT /**< port for RS line */
160#endif
161#ifndef LCD_RS_PIN
162#define LCD_RS_PIN 3 /**< pin for RS line */
163#endif
164#ifndef LCD_RW_PORT
165#define LCD_RW_PORT LCD_PORT /**< port for RW line */
166#endif
167#ifndef LCD_RW_PIN
168#define LCD_RW_PIN 2 /**< pin for RW line */
169#endif
170#ifndef LCD_E_PORT
171#define LCD_E_PORT LCD_PORT /**< port for Enable line */
172#endif
173#ifndef LCD_E_PIN
174#define LCD_E_PIN 1 /**< pin for Enable line */
175#endif
176
177#elif defined(__AVR_AT90S4414__) || defined(__AVR_AT90S8515__) || defined(__AVR_ATmega64__) || \
178 defined(__AVR_ATmega8515__)|| defined(__AVR_ATmega103__) || defined(__AVR_ATmega128__) || \
179 defined(__AVR_ATmega161__) || defined(__AVR_ATmega162__)
180/*
181 * memory mapped mode is only supported when the device has an external data memory interface
182 */
183#define LCD_IO_DATA 0xC000 /* A15=E=1, A14=RS=1 */
184#define LCD_IO_FUNCTION 0x8000 /* A15=E=1, A14=RS=0 */
185#define LCD_IO_READ 0x0100 /* A8 =R/W=1 (R/W: 1=Read, 0=Write */
186
187#else
188#error "external data memory interface not available for this device, use 4-bit IO port mode"
189
190#endif
191
192
193/**
194 * @name Definitions of delays
195 * Used to calculate delay timers.
196 * Adapt the F_CPU define in the Makefile to the clock frequency in Hz of your target
197 *
198 * These delay times can be adjusted, if some displays require different delays.\n
199 * These definitions can be defined in a separate include file \b lcd_definitions.h instead modifying this file by
200 * adding \b -D_LCD_DEFINITIONS_FILE to the \b CDEFS section in the Makefile.
201 * All definitions added to the file lcd_definitions.h will override the default definitions from lcd.h
202 */
203#ifndef LCD_DELAY_BOOTUP
204#define LCD_DELAY_BOOTUP 16000 /**< delay in micro seconds after power-on */
205#endif
206#ifndef LCD_DELAY_INIT
207#define LCD_DELAY_INIT 5000 /**< delay in micro seconds after initialization command sent */
208#endif
209#ifndef LCD_DELAY_INIT_REP
210#define LCD_DELAY_INIT_REP 64 /**< delay in micro seconds after initialization command repeated */
211#endif
212#ifndef LCD_DELAY_INIT_4BIT
213#define LCD_DELAY_INIT_4BIT 64 /**< delay in micro seconds after setting 4-bit mode */
214#endif
215#ifndef LCD_DELAY_BUSY_FLAG
216#define LCD_DELAY_BUSY_FLAG 4 /**< time in micro seconds the address counter is updated after busy flag is cleared */
217#endif
218#ifndef LCD_DELAY_ENABLE_PULSE
219#define LCD_DELAY_ENABLE_PULSE 1 /**< enable signal pulse width in micro seconds */
220#endif
221
222
223/**
224 * @name Definitions for LCD command instructions
225 * The constants define the various LCD controller instructions which can be passed to the
226 * function lcd_command(), see HD44780 data sheet for a complete description.
227 */
228
229/* instruction register bit positions, see HD44780U data sheet */
230#define LCD_CLR 0 /* DB0: clear display */
231#define LCD_HOME 1 /* DB1: return to home position */
232#define LCD_ENTRY_MODE 2 /* DB2: set entry mode */
233#define LCD_ENTRY_INC 1 /* DB1: 1=increment, 0=decrement */
234#define LCD_ENTRY_SHIFT 0 /* DB2: 1=display shift on */
235#define LCD_ON 3 /* DB3: turn lcd/cursor on */
236#define LCD_ON_DISPLAY 2 /* DB2: turn display on */
237#define LCD_ON_CURSOR 1 /* DB1: turn cursor on */
238#define LCD_ON_BLINK 0 /* DB0: blinking cursor ? */
239#define LCD_MOVE 4 /* DB4: move cursor/display */
240#define LCD_MOVE_DISP 3 /* DB3: move display (0-> cursor) ? */
241#define LCD_MOVE_RIGHT 2 /* DB2: move right (0-> left) ? */
242#define LCD_FUNCTION 5 /* DB5: function set */
243#define LCD_FUNCTION_8BIT 4 /* DB4: set 8BIT mode (0->4BIT mode) */
244#define LCD_FUNCTION_2LINES 3 /* DB3: two lines (0->one line) */
245#define LCD_FUNCTION_10DOTS 2 /* DB2: 5x10 font (0->5x7 font) */
246#define LCD_CGRAM 6 /* DB6: set CG RAM address */
247#define LCD_DDRAM 7 /* DB7: set DD RAM address */
248#define LCD_BUSY 7 /* DB7: LCD is busy */
249
250/* set entry mode: display shift on/off, dec/inc cursor move direction */
251#define LCD_ENTRY_DEC 0x04 /* display shift off, dec cursor move dir */
252#define LCD_ENTRY_DEC_SHIFT 0x05 /* display shift on, dec cursor move dir */
253#define LCD_ENTRY_INC_ 0x06 /* display shift off, inc cursor move dir */
254#define LCD_ENTRY_INC_SHIFT 0x07 /* display shift on, inc cursor move dir */
255
256/* display on/off, cursor on/off, blinking char at cursor position */
257#define LCD_DISP_OFF 0x08 /* display off */
258#define LCD_DISP_ON 0x0C /* display on, cursor off */
259#define LCD_DISP_ON_BLINK 0x0D /* display on, cursor off, blink char */
260#define LCD_DISP_ON_CURSOR 0x0E /* display on, cursor on */
261#define LCD_DISP_ON_CURSOR_BLINK 0x0F /* display on, cursor on, blink char */
262
263/* move cursor/shift display */
264#define LCD_MOVE_CURSOR_LEFT 0x10 /* move cursor left (decrement) */
265#define LCD_MOVE_CURSOR_RIGHT 0x14 /* move cursor right (increment) */
266#define LCD_MOVE_DISP_LEFT 0x18 /* shift display left */
267#define LCD_MOVE_DISP_RIGHT 0x1C /* shift display right */
268
269/* function set: set interface data length and number of display lines */
270#define LCD_FUNCTION_4BIT_1LINE 0x20 /* 4-bit interface, single line, 5x7 dots */
271#define LCD_FUNCTION_4BIT_2LINES 0x28 /* 4-bit interface, dual line, 5x7 dots */
272#define LCD_FUNCTION_8BIT_1LINE 0x30 /* 8-bit interface, single line, 5x7 dots */
273#define LCD_FUNCTION_8BIT_2LINES 0x38 /* 8-bit interface, dual line, 5x7 dots */
274
275
276#define LCD_MODE_DEFAULT ((1<<LCD_ENTRY_MODE) | (1<<LCD_ENTRY_INC) )
277
278
279
280/**
281 * @name Functions
282 */
283
284
285/**
286 @brief Initialize display and select type of cursor
287 @param dispAttr \b LCD_DISP_OFF display off\n
288 \b LCD_DISP_ON display on, cursor off\n
289 \b LCD_DISP_ON_CURSOR display on, cursor on\n
290 \b LCD_DISP_ON_CURSOR_BLINK display on, cursor on flashing
291 @return none
292*/
293extern void lcd_init(uint8_t dispAttr);
294
295
296/**
297 @brief Clear display and set cursor to home position
298 @return none
299*/
300extern void lcd_clrscr(void);
301
302
303/**
304 @brief Set cursor to home position
305 @return none
306*/
307extern void lcd_home(void);
308
309
310/**
311 @brief Set cursor to specified position
312
313 @param x horizontal position\n (0: left most position)
314 @param y vertical position\n (0: first line)
315 @return none
316*/
317extern void lcd_gotoxy(uint8_t x, uint8_t y);
318
319
320/**
321 @brief Display character at current cursor position
322 @param c character to be displayed
323 @return none
324*/
325extern void lcd_putc(char c);
326
327
328/**
329 @brief Display string without auto linefeed
330 @param s string to be displayed
331 @return none
332*/
333extern void lcd_puts(const char *s);
334
335
336/**
337 @brief Display string from program memory without auto linefeed
338 @param progmem_s string from program memory be be displayed
339 @return none
340 @see lcd_puts_P
341*/
342extern void lcd_puts_p(const char *progmem_s);
343
344
345/**
346 @brief Send LCD controller instruction command
347 @param cmd instruction to send to LCD controller, see HD44780 data sheet
348 @return none
349*/
350extern void lcd_command(uint8_t cmd);
351
352
353/**
354 @brief Send data byte to LCD controller
355
356 Similar to lcd_putc(), but without interpreting LF
357 @param data byte to send to LCD controller, see HD44780 data sheet
358 @return none
359*/
360extern void lcd_data(uint8_t data);
361
362
363/**
364 @brief macros for automatically storing string constant in program memory
365*/
366#define lcd_puts_P(__s) lcd_puts_p(PSTR(__s))
367
368/**@}*/
369
370#endif //LCD_H
371
diff --git a/quantum/quantum.c b/quantum/quantum.c
index b9934aee8..2bd2c71af 100644
--- a/quantum/quantum.c
+++ b/quantum/quantum.c
@@ -1187,6 +1187,10 @@ void backlight_set(uint8_t level) {}
1187 1187
1188#endif // backlight 1188#endif // backlight
1189 1189
1190#ifdef HD44780_ENABLED
1191#include "hd44780.h"
1192#endif
1193
1190 1194
1191// Functions for spitting out values 1195// Functions for spitting out values
1192// 1196//
diff --git a/quantum/quantum.h b/quantum/quantum.h
index 2958a0abd..223846412 100644
--- a/quantum/quantum.h
+++ b/quantum/quantum.h
@@ -121,6 +121,10 @@ extern uint32_t default_layer_state;
121 #include "process_terminal_nop.h" 121 #include "process_terminal_nop.h"
122#endif 122#endif
123 123
124#ifdef HD44780_ENABLE
125 #include "hd44780.h"
126#endif
127
124#define STRINGIZE(z) #z 128#define STRINGIZE(z) #z
125#define ADD_SLASH_X(y) STRINGIZE(\x ## y) 129#define ADD_SLASH_X(y) STRINGIZE(\x ## y)
126#define SYMBOL_STR(x) ADD_SLASH_X(x) 130#define SYMBOL_STR(x) ADD_SLASH_X(x)
diff --git a/quantum/template/avr/config.h b/quantum/template/avr/config.h
index e739c93c9..ac3174502 100644
--- a/quantum/template/avr/config.h
+++ b/quantum/template/avr/config.h
@@ -187,4 +187,32 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
187/* override number of MIDI tone keycodes (each octave adds 12 keycodes and allocates 12 bytes) */ 187/* override number of MIDI tone keycodes (each octave adds 12 keycodes and allocates 12 bytes) */
188//#define MIDI_TONE_KEYCODE_OCTAVES 1 188//#define MIDI_TONE_KEYCODE_OCTAVES 1
189 189
190/*
191 * HD44780 LCD Display Configuration
192 */
193/*
194#define LCD_LINES 2 //< number of visible lines of the display
195#define LCD_DISP_LENGTH 16 //< visibles characters per line of the display
196
197#define LCD_IO_MODE 1 //< 0: memory mapped mode, 1: IO port mode
198
199#if LCD_IO_MODE
200#define LCD_PORT PORTB //< port for the LCD lines
201#define LCD_DATA0_PORT LCD_PORT //< port for 4bit data bit 0
202#define LCD_DATA1_PORT LCD_PORT //< port for 4bit data bit 1
203#define LCD_DATA2_PORT LCD_PORT //< port for 4bit data bit 2
204#define LCD_DATA3_PORT LCD_PORT //< port for 4bit data bit 3
205#define LCD_DATA0_PIN 4 //< pin for 4bit data bit 0
206#define LCD_DATA1_PIN 5 //< pin for 4bit data bit 1
207#define LCD_DATA2_PIN 6 //< pin for 4bit data bit 2
208#define LCD_DATA3_PIN 7 //< pin for 4bit data bit 3
209#define LCD_RS_PORT LCD_PORT //< port for RS line
210#define LCD_RS_PIN 3 //< pin for RS line
211#define LCD_RW_PORT LCD_PORT //< port for RW line
212#define LCD_RW_PIN 2 //< pin for RW line
213#define LCD_E_PORT LCD_PORT //< port for Enable line
214#define LCD_E_PIN 1 //< pin for Enable line
215#endif
216*/
217
190#endif 218#endif
diff --git a/quantum/template/avr/rules.mk b/quantum/template/avr/rules.mk
index 45eb6ee37..d567544c7 100644
--- a/quantum/template/avr/rules.mk
+++ b/quantum/template/avr/rules.mk
@@ -66,3 +66,4 @@ UNICODE_ENABLE = no # Unicode
66BLUETOOTH_ENABLE = no # Enable Bluetooth with the Adafruit EZ-Key HID 66BLUETOOTH_ENABLE = no # Enable Bluetooth with the Adafruit EZ-Key HID
67AUDIO_ENABLE = no # Audio output on port C6 67AUDIO_ENABLE = no # Audio output on port C6
68FAUXCLICKY_ENABLE = no # Use buzzer to emulate clicky switches 68FAUXCLICKY_ENABLE = no # Use buzzer to emulate clicky switches
69HD44780_ENABLE = no # Enable support for HD44780 based LCDs (+400)
diff --git a/tmk_core/common/keyboard.c b/tmk_core/common/keyboard.c
index d3fbe2d87..13b3cb4c0 100644
--- a/tmk_core/common/keyboard.c
+++ b/tmk_core/common/keyboard.c
@@ -69,6 +69,9 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
69#ifdef MIDI_ENABLE 69#ifdef MIDI_ENABLE
70# include "process_midi.h" 70# include "process_midi.h"
71#endif 71#endif
72#ifdef HD44780_ENABLE
73# include "hd44780.h"
74#endif
72 75
73#ifdef MATRIX_HAS_GHOST 76#ifdef MATRIX_HAS_GHOST
74extern const uint16_t keymaps[][MATRIX_ROWS][MATRIX_COLS]; 77extern const uint16_t keymaps[][MATRIX_ROWS][MATRIX_COLS];