aboutsummaryrefslogtreecommitdiff
path: root/keyboards/vitamins_included/matrix.c
diff options
context:
space:
mode:
Diffstat (limited to 'keyboards/vitamins_included/matrix.c')
-rw-r--r--keyboards/vitamins_included/matrix.c510
1 files changed, 510 insertions, 0 deletions
diff --git a/keyboards/vitamins_included/matrix.c b/keyboards/vitamins_included/matrix.c
new file mode 100644
index 000000000..7079a8da9
--- /dev/null
+++ b/keyboards/vitamins_included/matrix.c
@@ -0,0 +1,510 @@
1/*
2Copyright 2012 Jun Wako <wakojun@gmail.com>
3
4This program is free software: you can redistribute it and/or modify
5it under the terms of the GNU General Public License as published by
6the Free Software Foundation, either version 2 of the License, or
7(at your option) any later version.
8
9This program is distributed in the hope that it will be useful,
10but WITHOUT ANY WARRANTY; without even the implied warranty of
11MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12GNU General Public License for more details.
13
14You should have received a copy of the GNU General Public License
15along with this program. If not, see <http://www.gnu.org/licenses/>.
16*/
17
18/*
19 * scan matrix
20 */
21#include <stdint.h>
22#include <stdbool.h>
23#include <avr/io.h>
24#include <avr/interrupt.h>
25#include <util/delay.h>
26#include "wait.h"
27#include "print.h"
28#include "debug.h"
29#include "util.h"
30#include "matrix.h"
31#include "split_util.h"
32#include "pro_micro.h"
33#include "config.h"
34#include "timer.h"
35#include <print.h>
36
37#if (defined(RGB_MIDI) | defined(RGBLIGHT_ANIMATIONS)) & defined(RGBLIGHT_ENABLE)
38 #include "rgblight.h"
39#endif
40
41
42#ifdef USE_I2C
43# include "i2c.h"
44#else // USE_SERIAL
45# include "serial.h"
46#endif
47
48#ifndef DEBOUNCING_DELAY
49# define DEBOUNCING_DELAY 5
50#endif
51
52#if (DEBOUNCING_DELAY > 0)
53 static uint16_t debouncing_time;
54 static bool debouncing = false;
55#endif
56
57#if (MATRIX_COLS <= 8)
58# define print_matrix_header() print("\nr/c 01234567\n")
59# define print_matrix_row(row) print_bin_reverse8(matrix_get_row(row))
60# define matrix_bitpop(i) bitpop(matrix[i])
61# define ROW_SHIFTER ((uint8_t)1)
62#else
63# error "Currently only supports 8 COLS"
64#endif
65static matrix_row_t matrix_debouncing[MATRIX_ROWS];
66
67#define ERROR_DISCONNECT_COUNT 5
68
69#define ROWS_PER_HAND (MATRIX_ROWS/2)
70
71static uint8_t error_count = 0;
72
73static const uint8_t row_pins[MATRIX_ROWS] = MATRIX_ROW_PINS;
74static const uint8_t col_pins[MATRIX_COLS] = MATRIX_COL_PINS;
75
76/* matrix state(1:on, 0:off) */
77static matrix_row_t matrix[MATRIX_ROWS];
78static matrix_row_t matrix_debouncing[MATRIX_ROWS];
79
80#if (DIODE_DIRECTION == COL2ROW)
81 static void init_cols(void);
82 static bool read_cols_on_row(matrix_row_t current_matrix[], uint8_t current_row);
83 static void unselect_rows(void);
84 static void select_row(uint8_t row);
85 static void unselect_row(uint8_t row);
86#elif (DIODE_DIRECTION == ROW2COL)
87 static void init_rows(void);
88 static bool read_rows_on_col(matrix_row_t current_matrix[], uint8_t current_col);
89 static void unselect_cols(void);
90 static void unselect_col(uint8_t col);
91 static void select_col(uint8_t col);
92#endif
93
94
95__attribute__ ((weak))
96void matrix_init_quantum(void) {
97 matrix_init_kb();
98}
99
100__attribute__ ((weak))
101void matrix_scan_quantum(void) {
102 matrix_scan_kb();
103}
104
105__attribute__ ((weak))
106void matrix_init_kb(void) {
107 matrix_init_user();
108}
109
110__attribute__ ((weak))
111void matrix_scan_kb(void) {
112 matrix_scan_user();
113}
114
115__attribute__ ((weak))
116void matrix_init_user(void) {
117}
118
119__attribute__ ((weak))
120void matrix_scan_user(void) {
121}
122
123inline
124uint8_t matrix_rows(void) {
125 return MATRIX_ROWS;
126}
127
128inline
129uint8_t matrix_cols(void) {
130 return MATRIX_COLS;
131}
132
133bool has_usb(void) {
134 return UDADDR & _BV(ADDEN); // This will return true of a USB connection has been established
135}
136
137void matrix_init(void)
138{
139#ifdef DISABLE_JTAG
140 // JTAG disable for PORT F. write JTD bit twice within four cycles.
141 MCUCR |= (1<<JTD);
142 MCUCR |= (1<<JTD);
143#endif
144
145 // initialize row and col
146#if (DIODE_DIRECTION == COL2ROW)
147 unselect_rows();
148 init_cols();
149#elif (DIODE_DIRECTION == ROW2COL)
150 unselect_cols();
151 init_rows();
152#endif
153
154 TX_RX_LED_INIT;
155
156 // initialize matrix state: all keys off
157 for (uint8_t i=0; i < MATRIX_ROWS; i++) {
158 matrix[i] = 0;
159 matrix_debouncing[i] = 0;
160 }
161
162 #ifdef RGBLIGHT_ENABLE
163 rgblight_init();
164 #endif
165
166 timer_init();
167 #ifdef USE_I2C
168 i2c_slave_init(SLAVE_I2C_ADDRESS);
169 #else
170 serial_slave_init();
171 #endif
172
173 sei();
174
175 matrix_init_quantum();
176 while(!has_usb() || contacted_by_master){
177 matrix_slave_scan();
178 }
179
180 // Set up as master
181 #ifdef USE_I2C
182 i2c_reset_state();
183 i2c_master_init();
184 #else
185 serial_master_init();
186 #endif
187}
188
189uint8_t _matrix_scan(void)
190{
191 int offset = isLeftHand ? 0 : (ROWS_PER_HAND);
192#if (DIODE_DIRECTION == COL2ROW)
193 // Set row, read cols
194 for (uint8_t current_row = 0; current_row < ROWS_PER_HAND; current_row++) {
195# if (DEBOUNCING_DELAY > 0)
196 bool matrix_changed = read_cols_on_row(matrix_debouncing+offset, current_row);
197
198 if (matrix_changed) {
199 debouncing = true;
200 debouncing_time = timer_read();
201 PORTD ^= (1 << 2);
202 }
203
204# else
205 read_cols_on_row(matrix+offset, current_row);
206# endif
207
208 }
209
210#elif (DIODE_DIRECTION == ROW2COL)
211 // Set col, read rows
212 for (uint8_t current_col = 0; current_col < MATRIX_COLS; current_col++) {
213# if (DEBOUNCING_DELAY > 0)
214 bool matrix_changed = read_rows_on_col(matrix_debouncing+offset, current_col);
215 if (matrix_changed) {
216 debouncing = true;
217 debouncing_time = timer_read();
218 }
219# else
220 read_rows_on_col(matrix+offset, current_col);
221# endif
222
223 }
224#endif
225
226# if (DEBOUNCING_DELAY > 0)
227 if (debouncing && (timer_elapsed(debouncing_time) > DEBOUNCING_DELAY)) {
228 for (uint8_t i = 0; i < ROWS_PER_HAND; i++) {
229 matrix[i+offset] = matrix_debouncing[i+offset];
230 }
231 debouncing = false;
232 }
233# endif
234
235 return 1;
236}
237
238#ifdef USE_I2C
239
240// Get rows from other half over i2c
241int i2c_transaction(void) {
242 int slaveOffset = (isLeftHand) ? (ROWS_PER_HAND) : 0;
243
244 int err = i2c_master_start(SLAVE_I2C_ADDRESS + I2C_WRITE);
245 if (err) goto i2c_error;
246
247 // start of matrix stored at 0x00
248 err = i2c_master_write(0x00);
249 if (err) goto i2c_error;
250
251 // Start read
252 err = i2c_master_start(SLAVE_I2C_ADDRESS + I2C_READ);
253 if (err) goto i2c_error;
254
255 if (!err) {
256 int i;
257 for (i = 0; i < ROWS_PER_HAND-1; ++i) {
258 matrix[slaveOffset+i] = i2c_master_read(I2C_ACK);
259 }
260 matrix[slaveOffset+i] = i2c_master_read(I2C_NACK);
261 i2c_master_stop();
262 } else {
263i2c_error: // the cable is disconnceted, or something else went wrong
264 i2c_reset_state();
265 return err;
266 }
267
268 return 0;
269}
270
271#else // USE_SERIAL
272
273int serial_transaction(void) {
274 int slaveOffset = (isLeftHand) ? (ROWS_PER_HAND) : 0;
275
276 if (serial_update_buffers()) {
277 return 1;
278 }
279
280 for (int i = 0; i < ROWS_PER_HAND; ++i) {
281 matrix[slaveOffset+i] = serial_slave_buffer[i];
282 }
283 return 0;
284}
285#endif
286
287uint8_t matrix_scan(void)
288{
289 uint8_t ret = _matrix_scan();
290
291#ifdef USE_I2C
292 if( i2c_transaction() ) {
293#else // USE_SERIAL
294 if( serial_transaction() ) {
295#endif
296 // turn on the indicator led when halves are disconnected
297 TXLED1;
298
299 error_count++;
300
301 if (error_count > ERROR_DISCONNECT_COUNT) {
302 // reset other half if disconnected
303 int slaveOffset = (isLeftHand) ? (ROWS_PER_HAND) : 0;
304 for (int i = 0; i < ROWS_PER_HAND; ++i) {
305 matrix[slaveOffset+i] = 0;
306 }
307 }
308 } else {
309 // turn off the indicator led on no error
310 TXLED0;
311 error_count = 0;
312 }
313 matrix_scan_quantum();
314 return ret;
315}
316
317void matrix_slave_scan(void) {
318 #if defined(RGBLIGHT_ANIMATIONS) & defined(RGBLIGHT_ENABLE)
319 rgblight_task();
320 #endif
321 _matrix_scan();
322
323 int offset = (isLeftHand) ? 0 : ROWS_PER_HAND;
324
325#ifdef USE_I2C
326 for (int i = 0; i < ROWS_PER_HAND; ++i) {
327 i2c_slave_buffer[i] = matrix[offset+i];
328 }
329#else // USE_SERIAL
330 for (int i = 0; i < ROWS_PER_HAND; ++i) {
331 serial_slave_buffer[i] = matrix[offset+i];
332 }
333#endif
334}
335
336bool matrix_is_modified(void)
337{
338 if (debouncing) return false;
339 return true;
340}
341
342inline
343bool matrix_is_on(uint8_t row, uint8_t col)
344{
345 return (matrix[row] & ((matrix_row_t)1<<col));
346}
347
348inline
349matrix_row_t matrix_get_row(uint8_t row)
350{
351 return matrix[row];
352}
353
354void matrix_print(void)
355{
356 print("\nr/c 0123456789ABCDEF\n");
357 for (uint8_t row = 0; row < MATRIX_ROWS; row++) {
358 phex(row); print(": ");
359 pbin_reverse16(matrix_get_row(row));
360 print("\n");
361 }
362}
363
364uint8_t matrix_key_count(void)
365{
366 uint8_t count = 0;
367 for (uint8_t i = 0; i < MATRIX_ROWS; i++) {
368 count += bitpop16(matrix[i]);
369 }
370 return count;
371}
372
373#if (DIODE_DIRECTION == COL2ROW)
374
375static void init_cols(void)
376{
377 for(uint8_t x = 0; x < MATRIX_COLS; x++) {
378 uint8_t pin = col_pins[x];
379 _SFR_IO8((pin >> 4) + 1) &= ~_BV(pin & 0xF); // IN
380 _SFR_IO8((pin >> 4) + 2) |= _BV(pin & 0xF); // HI
381 }
382}
383
384static bool read_cols_on_row(matrix_row_t current_matrix[], uint8_t current_row)
385{
386 // Store last value of row prior to reading
387 matrix_row_t last_row_value = current_matrix[current_row];
388
389 // Clear data in matrix row
390 current_matrix[current_row] = 0;
391
392 // Select row and wait for row selecton to stabilize
393 select_row(current_row);
394 wait_us(30);
395
396 // For each col...
397 for(uint8_t col_index = 0; col_index < MATRIX_COLS; col_index++) {
398
399 // Select the col pin to read (active low)
400 uint8_t pin = col_pins[col_index];
401 uint8_t pin_state = (_SFR_IO8(pin >> 4) & _BV(pin & 0xF));
402
403 // Populate the matrix row with the state of the col pin
404 current_matrix[current_row] |= pin_state ? 0 : (ROW_SHIFTER << col_index);
405 }
406
407 // Unselect row
408 unselect_row(current_row);
409
410 return (last_row_value != current_matrix[current_row]);
411}
412
413static void select_row(uint8_t row)
414{
415 uint8_t pin = row_pins[row];
416 _SFR_IO8((pin >> 4) + 1) |= _BV(pin & 0xF); // OUT
417 _SFR_IO8((pin >> 4) + 2) &= ~_BV(pin & 0xF); // LOW
418}
419
420static void unselect_row(uint8_t row)
421{
422 uint8_t pin = row_pins[row];
423 _SFR_IO8((pin >> 4) + 1) &= ~_BV(pin & 0xF); // IN
424 _SFR_IO8((pin >> 4) + 2) |= _BV(pin & 0xF); // HI
425}
426
427static void unselect_rows(void)
428{
429 for(uint8_t x = 0; x < ROWS_PER_HAND; x++) {
430 uint8_t pin = row_pins[x];
431 _SFR_IO8((pin >> 4) + 1) &= ~_BV(pin & 0xF); // IN
432 _SFR_IO8((pin >> 4) + 2) |= _BV(pin & 0xF); // HI
433 }
434}
435
436#elif (DIODE_DIRECTION == ROW2COL)
437
438static void init_rows(void)
439{
440 for(uint8_t x = 0; x < ROWS_PER_HAND; x++) {
441 uint8_t pin = row_pins[x];
442 _SFR_IO8((pin >> 4) + 1) &= ~_BV(pin & 0xF); // IN
443 _SFR_IO8((pin >> 4) + 2) |= _BV(pin & 0xF); // HI
444 }
445}
446
447static bool read_rows_on_col(matrix_row_t current_matrix[], uint8_t current_col)
448{
449 bool matrix_changed = false;
450
451 // Select col and wait for col selecton to stabilize
452 select_col(current_col);
453 wait_us(30);
454
455 // For each row...
456 for(uint8_t row_index = 0; row_index < ROWS_PER_HAND; row_index++)
457 {
458
459 // Store last value of row prior to reading
460 matrix_row_t last_row_value = current_matrix[row_index];
461
462 // Check row pin state
463 if ((_SFR_IO8(row_pins[row_index] >> 4) & _BV(row_pins[row_index] & 0xF)) == 0)
464 {
465 // Pin LO, set col bit
466 current_matrix[row_index] |= (ROW_SHIFTER << current_col);
467 }
468 else
469 {
470 // Pin HI, clear col bit
471 current_matrix[row_index] &= ~(ROW_SHIFTER << current_col);
472 }
473
474 // Determine if the matrix changed state
475 if ((last_row_value != current_matrix[row_index]) && !(matrix_changed))
476 {
477 matrix_changed = true;
478 }
479 }
480
481 // Unselect col
482 unselect_col(current_col);
483
484 return matrix_changed;
485}
486
487static void select_col(uint8_t col)
488{
489 uint8_t pin = col_pins[col];
490 _SFR_IO8((pin >> 4) + 1) |= _BV(pin & 0xF); // OUT
491 _SFR_IO8((pin >> 4) + 2) &= ~_BV(pin & 0xF); // LOW
492}
493
494static void unselect_col(uint8_t col)
495{
496 uint8_t pin = col_pins[col];
497 _SFR_IO8((pin >> 4) + 1) &= ~_BV(pin & 0xF); // IN
498 _SFR_IO8((pin >> 4) + 2) |= _BV(pin & 0xF); // HI
499}
500
501static void unselect_cols(void)
502{
503 for(uint8_t x = 0; x < MATRIX_COLS; x++) {
504 uint8_t pin = col_pins[x];
505 _SFR_IO8((pin >> 4) + 1) &= ~_BV(pin & 0xF); // IN
506 _SFR_IO8((pin >> 4) + 2) |= _BV(pin & 0xF); // HI
507 }
508}
509
510#endif