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-rw-r--r--keyboards/infinity60/keymaps/jpetermans/keymap.c1
-rw-r--r--keyboards/infinity60/led_controller.c32
-rw-r--r--keyboards/infinity60/led_controller.h3
-rw-r--r--keyboards/infinity60/rules.mk2
4 files changed, 10 insertions, 28 deletions
diff --git a/keyboards/infinity60/keymaps/jpetermans/keymap.c b/keyboards/infinity60/keymaps/jpetermans/keymap.c
index cc4633b1b..59249ff72 100644
--- a/keyboards/infinity60/keymaps/jpetermans/keymap.c
+++ b/keyboards/infinity60/keymaps/jpetermans/keymap.c
@@ -247,7 +247,6 @@ bool process_record_user (uint16_t keycode, keyrecord_t *record) {
247 247
248// Runs just one time when the keyboard initializes. 248// Runs just one time when the keyboard initializes.
249void matrix_init_user(void) { 249void matrix_init_user(void) {
250 xprintf("init start");
251 250
252 led_controller_init(); 251 led_controller_init();
253 252
diff --git a/keyboards/infinity60/led_controller.c b/keyboards/infinity60/led_controller.c
index 5c177d26b..21f95a9c1 100644
--- a/keyboards/infinity60/led_controller.c
+++ b/keyboards/infinity60/led_controller.c
@@ -135,7 +135,6 @@ msg_t is31_read_register(uint8_t page, uint8_t reg, uint8_t *result) {
135 * initialise the IS31 chip 135 * initialise the IS31 chip
136 * ======================== */ 136 * ======================== */
137void is31_init(void) { 137void is31_init(void) {
138 xprintf("_is31_init\n");
139 // just to be sure that it's all zeroes 138 // just to be sure that it's all zeroes
140 __builtin_memset(full_page,0,0xB4+1); 139 __builtin_memset(full_page,0,0xB4+1);
141 // zero function page, all registers (assuming full_page is all zeroes) 140 // zero function page, all registers (assuming full_page is all zeroes)
@@ -200,41 +199,33 @@ static THD_FUNCTION(LEDthread, arg) {
200 msg_args[1] = (msg >> 16) & 0XFF; 199 msg_args[1] = (msg >> 16) & 0XFF;
201 msg_args[2] = (msg >> 24) & 0xFF; 200 msg_args[2] = (msg >> 24) & 0xFF;
202 201
203 xprintf("msg_type: %d-%d-%d\n", msg_type, msg_args[0], msg_args[1]);
204 202
205 switch (msg_type){ 203 switch (msg_type){
206 case SET_FULL_ROW: 204 case SET_FULL_ROW:
207 xprintf("FULL ROW: %d-%d\n", msg_args[0], msg_args[1]);
208 //write full byte to pin address, msg_args[1] = pin #, msg_args[0] = 8 bits to write 205 //write full byte to pin address, msg_args[1] = pin #, msg_args[0] = 8 bits to write
209 //writes only to currently displayed page 206 //writes only to currently displayed page
210 write_led_byte(page_status, msg_args[1], msg_args[0]); 207 write_led_byte(page_status, msg_args[1], msg_args[0]);
211 break; 208 break;
212 209
213 case OFF_LED: 210 case OFF_LED:
214 xprintf("OFF: %d-%d\n", msg_args[0], msg_args[1]);
215 //on/off/toggle single led, msg_args[0] = row/col of led, msg_args[1] = page 211 //on/off/toggle single led, msg_args[0] = row/col of led, msg_args[1] = page
216 set_led_bit(msg_args[1], control_register_word, msg_args[0], 0); 212 set_led_bit(msg_args[1], control_register_word, msg_args[0], 0);
217 break; 213 break;
218 case ON_LED: 214 case ON_LED:
219 xprintf("ON: %d-%d\n", msg_args[0], msg_args[1]);
220 set_led_bit(msg_args[1], control_register_word, msg_args[0], 1); 215 set_led_bit(msg_args[1], control_register_word, msg_args[0], 1);
221 break; 216 break;
222 case TOGGLE_LED: 217 case TOGGLE_LED:
223 xprintf("TOGGLE: %d-%d\n", msg_args[0], msg_args[1]);
224 set_led_bit(msg_args[1], control_register_word, msg_args[0], 2); 218 set_led_bit(msg_args[1], control_register_word, msg_args[0], 2);
225 break; 219 break;
226 220
227 case BLINK_OFF_LED: 221 case BLINK_OFF_LED:
228 xprintf("B_on: %d-%d\n", msg_args[0], msg_args[1]);
229 //on/off/toggle single led, msg_args[0] = row/col of led 222 //on/off/toggle single led, msg_args[0] = row/col of led
230 set_led_bit(msg_args[1], control_register_word, msg_args[0], 4); 223 set_led_bit(msg_args[1], control_register_word, msg_args[0], 4);
231 break; 224 break;
232 case BLINK_ON_LED: 225 case BLINK_ON_LED:
233 xprintf("B_off: %d-%d\n", msg_args[0], msg_args[1]);
234 set_led_bit(msg_args[1], control_register_word, msg_args[0], 5); 226 set_led_bit(msg_args[1], control_register_word, msg_args[0], 5);
235 break; 227 break;
236 case BLINK_TOGGLE_LED: 228 case BLINK_TOGGLE_LED:
237 xprintf("B_togg: %d-%d\n", msg_args[0], msg_args[1]);
238 set_led_bit(msg_args[1], control_register_word, msg_args[0], 6); 229 set_led_bit(msg_args[1], control_register_word, msg_args[0], 6);
239 break; 230 break;
240 231
@@ -244,12 +235,10 @@ static THD_FUNCTION(LEDthread, arg) {
244 chThdSleepMilliseconds(5); 235 chThdSleepMilliseconds(5);
245 is31_read_register(0, 0x00, &temp); 236 is31_read_register(0, 0x00, &temp);
246 is31_write_register(IS31_FUNCTIONREG, IS31_REG_SHUTDOWN, IS31_REG_SHUTDOWN_OFF); 237 is31_write_register(IS31_FUNCTIONREG, IS31_REG_SHUTDOWN, IS31_REG_SHUTDOWN_OFF);
247 xprintf("TOGGLE_ALL: %d-%d\n", msg_args[0], msg_args[1]);
248 xprintf("temp: %d\n", temp);
249 238
250 led_control_reg[0] = 0; 239 led_control_reg[0] = 0;
251 240
252 //if first leds are already on, toggle frame 0 off 241 //toggle led mask based on current state (temp)
253 if (temp==0 || page_status > 0) { 242 if (temp==0 || page_status > 0) {
254 __builtin_memcpy(led_control_reg+1, all_on_leds_mask, 0x12); 243 __builtin_memcpy(led_control_reg+1, all_on_leds_mask, 0x12);
255 } else { 244 } else {
@@ -262,13 +251,14 @@ static THD_FUNCTION(LEDthread, arg) {
262 251
263 page_status=0; 252 page_status=0;
264 253
265 //maintain lock leds 254 //maintain lock leds, reset to off and force recheck to blink of all leds toggled on
255 numlock_status = 0;
256 capslock_status = 0;
266 led_set(host_keyboard_leds()); 257 led_set(host_keyboard_leds());
267 } 258 }
268 break; 259 break;
269 260
270 case TOGGLE_BACKLIGHT: 261 case TOGGLE_BACKLIGHT:
271 xprintf("TOGGLE_BKLT: %d-%d\n", msg_args[0], msg_args[1]);
272 //msg_args[0] = on/off 262 //msg_args[0] = on/off
273 263
274 //populate 9 byte rows to be written to each pin, first byte is register (pin) address 264 //populate 9 byte rows to be written to each pin, first byte is register (pin) address
@@ -287,12 +277,13 @@ static THD_FUNCTION(LEDthread, arg) {
287 277
288 case DISPLAY_PAGE: 278 case DISPLAY_PAGE:
289 //msg_args[0] = page to toggle on 279 //msg_args[0] = page to toggle on
290 xprintf("DSPY_PG: %d-%d\n", msg_args[0], msg_args[1]);
291 if (page_status != msg_args[0]) { 280 if (page_status != msg_args[0]) {
292 is31_write_register(IS31_FUNCTIONREG, IS31_REG_PICTDISP, msg_args[0]); 281 is31_write_register(IS31_FUNCTIONREG, IS31_REG_PICTDISP, msg_args[0]);
293 page_status = msg_args[0]; 282 page_status = msg_args[0];
294 283
295 //maintain lock leds 284 //maintain lock leds, reset to off and force recheck for new page
285 numlock_status = 0;
286 capslock_status = 0;
296 led_set(host_keyboard_leds()); 287 led_set(host_keyboard_leds());
297 } 288 }
298 break; 289 break;
@@ -309,7 +300,6 @@ static THD_FUNCTION(LEDthread, arg) {
309 break; 300 break;
310 301
311 case TOGGLE_NUM_LOCK: 302 case TOGGLE_NUM_LOCK:
312 xprintf("NMLK: %d-%d\n", msg_args[0], msg_args[1]);
313 //msg_args[0] = 0 or 1, off/on 303 //msg_args[0] = 0 or 1, off/on
314 if (numlock_status != msg_args[0]) { 304 if (numlock_status != msg_args[0]) {
315 set_lock_leds(NUM_LOCK_LED_ADDRESS, msg_args[0], page_status); 305 set_lock_leds(NUM_LOCK_LED_ADDRESS, msg_args[0], page_status);
@@ -317,7 +307,6 @@ static THD_FUNCTION(LEDthread, arg) {
317 } 307 }
318 break; 308 break;
319 case TOGGLE_CAPS_LOCK: 309 case TOGGLE_CAPS_LOCK:
320 xprintf("CPLK: %d-%d\n", msg_args[0], msg_args[1]);
321 //msg_args[0] = 0 or 1, off/on 310 //msg_args[0] = 0 or 1, off/on
322 if (capslock_status != msg_args[0]) { 311 if (capslock_status != msg_args[0]) {
323 set_lock_leds(CAPS_LOCK_LED_ADDRESS, msg_args[0], page_status); 312 set_lock_leds(CAPS_LOCK_LED_ADDRESS, msg_args[0], page_status);
@@ -326,7 +315,6 @@ static THD_FUNCTION(LEDthread, arg) {
326 break; 315 break;
327 316
328 case STEP_BRIGHTNESS: 317 case STEP_BRIGHTNESS:
329 xprintf("Step: %d-%d\n", msg_args[0], msg_args[1]);
330 //led_args[0] = step up (1) or down (0) 318 //led_args[0] = step up (1) or down (0)
331 switch (msg_args[0]) { 319 switch (msg_args[0]) {
332 case 0: 320 case 0:
@@ -373,7 +361,6 @@ void set_led_bit (uint8_t page, uint8_t *led_control_word, uint8_t led_addr, uin
373 if (led_addr < 0 || led_addr > 87 || led_addr % 10 > 8) { 361 if (led_addr < 0 || led_addr > 87 || led_addr % 10 > 8) {
374 return; 362 return;
375 } 363 }
376 xprintf("_set action-led: %x-%d\n", action, led_addr);
377 364
378 blink_bit = action>>2;//check for blink bit 365 blink_bit = action>>2;//check for blink bit
379 action &= ~(1<<2); //strip blink bit 366 action &= ~(1<<2); //strip blink bit
@@ -381,17 +368,14 @@ void set_led_bit (uint8_t page, uint8_t *led_control_word, uint8_t led_addr, uin
381 //led_addr tens column is pin#, ones column is bit position in 8-bit mask 368 //led_addr tens column is pin#, ones column is bit position in 8-bit mask
382 control_reg_addr = ((led_addr / 10) % 10 - 1 ) * 0x02;// A-matrix is every other byte 369 control_reg_addr = ((led_addr / 10) % 10 - 1 ) * 0x02;// A-matrix is every other byte
383 control_reg_addr += blink_bit == 1 ? 0x12 : 0x00;//if blink_bit, shift 12 bytes to blink register 370 control_reg_addr += blink_bit == 1 ? 0x12 : 0x00;//if blink_bit, shift 12 bytes to blink register
384 xprintf("_set control address: %x\n", control_reg_addr);
385 371
386 is31_write_register(IS31_FUNCTIONREG, IS31_REG_SHUTDOWN, IS31_REG_SHUTDOWN_ON); 372 is31_write_register(IS31_FUNCTIONREG, IS31_REG_SHUTDOWN, IS31_REG_SHUTDOWN_ON);
387 chThdSleepMilliseconds(5); 373 chThdSleepMilliseconds(5);
388 is31_read_register(page, control_reg_addr, &temp);//maintain status of leds on this byte 374 is31_read_register(page, control_reg_addr, &temp);//maintain status of leds on this byte
389 is31_write_register(IS31_FUNCTIONREG, IS31_REG_SHUTDOWN, IS31_REG_SHUTDOWN_OFF); 375 is31_write_register(IS31_FUNCTIONREG, IS31_REG_SHUTDOWN, IS31_REG_SHUTDOWN_OFF);
390 xprintf("_set temp_byte_mask: %x\n", temp);
391 376
392 column_bit = 1<<(led_addr % 10 - 1); 377 column_bit = 1<<(led_addr % 10 - 1);
393 column_byte = temp; 378 column_byte = temp;
394 xprintf("_set col_byte_mask: %x\n", column_byte);
395 379
396 switch(action) { 380 switch(action) {
397 case 0: 381 case 0:
@@ -451,7 +435,6 @@ void set_lock_leds(uint8_t led_addr, uint8_t led_action, uint8_t page) {
451 led_action |= (1<<2); //set blink bit 435 led_action |= (1<<2); //set blink bit
452 } 436 }
453 } 437 }
454 xprintf("_lock action: %d\n", led_action);
455 438
456 set_led_bit(page,led_control_word,led_addr,led_action); 439 set_led_bit(page,led_control_word,led_addr,led_action);
457} 440}
@@ -462,7 +445,6 @@ void set_lock_leds(uint8_t led_addr, uint8_t led_action, uint8_t page) {
462void led_controller_init(void) { 445void led_controller_init(void) {
463 uint8_t i; 446 uint8_t i;
464 447
465 xprintf("led_init\n");
466 /* initialise I2C */ 448 /* initialise I2C */
467 /* I2C pins */ 449 /* I2C pins */
468 palSetPadMode(GPIOB, 0, PAL_MODE_ALTERNATIVE_2); // PTB0/I2C0/SCL 450 palSetPadMode(GPIOB, 0, PAL_MODE_ALTERNATIVE_2); // PTB0/I2C0/SCL
diff --git a/keyboards/infinity60/led_controller.h b/keyboards/infinity60/led_controller.h
index 457b21a92..eb6060f26 100644
--- a/keyboards/infinity60/led_controller.h
+++ b/keyboards/infinity60/led_controller.h
@@ -75,7 +75,8 @@ void led_controller_init(void);
75// D2:D0 extinguish time (3.5ms*2^i) 75// D2:D0 extinguish time (3.5ms*2^i)
76 76
77#define IS31_REG_SHUTDOWN 0x0A 77#define IS31_REG_SHUTDOWN 0x0A
78#define IS31_REG_SHUTDOWN_ON 0x1 78#define IS31_REG_SHUTDOWN_OFF 0x1
79#define IS31_REG_SHUTDOWN_ON 0x0
79 80
80#define IS31_REG_AGCCTRL 0x0B 81#define IS31_REG_AGCCTRL 0x0B
81#define IS31_REG_ADCRATE 0x0C 82#define IS31_REG_ADCRATE 0x0C
diff --git a/keyboards/infinity60/rules.mk b/keyboards/infinity60/rules.mk
index f58bb2642..c19f62401 100644
--- a/keyboards/infinity60/rules.mk
+++ b/keyboards/infinity60/rules.mk
@@ -56,7 +56,7 @@ OPT_DEFS = -DCORTEX_VTOR_INIT=0x00001000
56# Build Options 56# Build Options
57# comment out to disable the options. 57# comment out to disable the options.
58# 58#
59BOOTMAGIC_ENABLE ?= yes # Virtual DIP switch configuration 59BOOTMAGIC_ENABLE ?= no # Virtual DIP switch configuration
60## (Note that for BOOTMAGIC on Teensy LC you have to use a custom .ld script.) 60## (Note that for BOOTMAGIC on Teensy LC you have to use a custom .ld script.)
61MOUSEKEY_ENABLE ?= yes # Mouse keys 61MOUSEKEY_ENABLE ?= yes # Mouse keys
62EXTRAKEY_ENABLE ?= yes # Audio control and System control 62EXTRAKEY_ENABLE ?= yes # Audio control and System control