diff options
Diffstat (limited to 'quantum')
| -rw-r--r-- | quantum/audio/audio_arm.c | 612 | ||||
| -rw-r--r-- | quantum/keymap_common.c | 2 | ||||
| -rw-r--r-- | quantum/keymap_extras/sendstring_german.h | 4 | ||||
| -rw-r--r-- | quantum/led_matrix.c | 391 | ||||
| -rw-r--r-- | quantum/led_matrix_drivers.c | 149 | ||||
| -rw-r--r-- | quantum/ledmatrix.h | 129 | ||||
| -rw-r--r-- | quantum/matrix.c | 2 | ||||
| -rw-r--r-- | quantum/process_keycode/process_clicky.c | 26 | ||||
| -rw-r--r-- | quantum/quantum.c | 69 | ||||
| -rw-r--r-- | quantum/quantum.h | 6 | ||||
| -rw-r--r-- | quantum/rgblight.c | 13 | ||||
| -rw-r--r-- | quantum/template/avr/config.h | 5 | ||||
| -rw-r--r-- | quantum/template/ps2avrgb/config.h | 5 |
13 files changed, 1079 insertions, 334 deletions
diff --git a/quantum/audio/audio_arm.c b/quantum/audio/audio_arm.c index 989f7a64b..f24ce4bd0 100644 --- a/quantum/audio/audio_arm.c +++ b/quantum/audio/audio_arm.c | |||
| @@ -273,19 +273,24 @@ static const DACConversionGroup dacgrpcfg2 = { | |||
| 273 | .trigger = DAC_TRG(0) | 273 | .trigger = DAC_TRG(0) |
| 274 | }; | 274 | }; |
| 275 | 275 | ||
| 276 | void audio_init() | 276 | void audio_init() { |
| 277 | { | 277 | |
| 278 | 278 | if (audio_initialized) { | |
| 279 | if (audio_initialized) | 279 | return; |
| 280 | return; | 280 | } |
| 281 | 281 | ||
| 282 | // Check EEPROM | 282 | // Check EEPROM |
| 283 | // if (!eeconfig_is_enabled()) | 283 | #if defined(STM32_EEPROM_ENABLE) || defined(PROTOCOL_ARM_ATSAM) || defined(EEPROM_SIZE) |
| 284 | // { | 284 | if (!eeconfig_is_enabled()) { |
| 285 | // eeconfig_init(); | 285 | eeconfig_init(); |
| 286 | // } | 286 | } |
| 287 | // audio_config.raw = eeconfig_read_audio(); | 287 | audio_config.raw = eeconfig_read_audio(); |
| 288 | #else // ARM EEPROM | ||
| 288 | audio_config.enable = true; | 289 | audio_config.enable = true; |
| 290 | #ifdef AUDIO_CLICKY_ON | ||
| 291 | audio_config.clicky_enable = true; | ||
| 292 | #endif | ||
| 293 | #endif // ARM EEPROM | ||
| 289 | 294 | ||
| 290 | /* | 295 | /* |
| 291 | * Starting DAC1 driver, setting up the output pin as analog as suggested | 296 | * Starting DAC1 driver, setting up the output pin as analog as suggested |
| @@ -308,16 +313,15 @@ void audio_init() | |||
| 308 | dacStartConversion(&DACD1, &dacgrpcfg1, (dacsample_t *)dac_buffer, DAC_BUFFER_SIZE); | 313 | dacStartConversion(&DACD1, &dacgrpcfg1, (dacsample_t *)dac_buffer, DAC_BUFFER_SIZE); |
| 309 | dacStartConversion(&DACD2, &dacgrpcfg2, (dacsample_t *)dac_buffer_2, DAC_BUFFER_SIZE); | 314 | dacStartConversion(&DACD2, &dacgrpcfg2, (dacsample_t *)dac_buffer_2, DAC_BUFFER_SIZE); |
| 310 | 315 | ||
| 311 | audio_initialized = true; | 316 | audio_initialized = true; |
| 312 | 317 | ||
| 313 | if (audio_config.enable) { | 318 | if (audio_config.enable) { |
| 314 | PLAY_SONG(startup_song); | 319 | PLAY_SONG(startup_song); |
| 315 | } | 320 | } |
| 316 | 321 | ||
| 317 | } | 322 | } |
| 318 | 323 | ||
| 319 | void stop_all_notes() | 324 | void stop_all_notes() { |
| 320 | { | ||
| 321 | dprintf("audio stop all notes"); | 325 | dprintf("audio stop all notes"); |
| 322 | 326 | ||
| 323 | if (!audio_initialized) { | 327 | if (!audio_initialized) { |
| @@ -342,347 +346,347 @@ void stop_all_notes() | |||
| 342 | } | 346 | } |
| 343 | } | 347 | } |
| 344 | 348 | ||
| 345 | void stop_note(float freq) | 349 | void stop_note(float freq) { |
| 346 | { | 350 | dprintf("audio stop note freq=%d", (int)freq); |
| 347 | dprintf("audio stop note freq=%d", (int)freq); | ||
| 348 | 351 | ||
| 349 | if (playing_note) { | 352 | if (playing_note) { |
| 350 | if (!audio_initialized) { | 353 | if (!audio_initialized) { |
| 351 | audio_init(); | 354 | audio_init(); |
| 352 | } | 355 | } |
| 353 | for (int i = 7; i >= 0; i--) { | 356 | for (int i = 7; i >= 0; i--) { |
| 354 | if (frequencies[i] == freq) { | 357 | if (frequencies[i] == freq) { |
| 355 | frequencies[i] = 0; | 358 | frequencies[i] = 0; |
| 356 | volumes[i] = 0; | 359 | volumes[i] = 0; |
| 357 | for (int j = i; (j < 7); j++) { | 360 | for (int j = i; (j < 7); j++) { |
| 358 | frequencies[j] = frequencies[j+1]; | 361 | frequencies[j] = frequencies[j+1]; |
| 359 | frequencies[j+1] = 0; | 362 | frequencies[j+1] = 0; |
| 360 | volumes[j] = volumes[j+1]; | 363 | volumes[j] = volumes[j+1]; |
| 361 | volumes[j+1] = 0; | 364 | volumes[j+1] = 0; |
| 362 | } | ||
| 363 | break; | ||
| 364 | } | ||
| 365 | } | ||
| 366 | voices--; | ||
| 367 | if (voices < 0) | ||
| 368 | voices = 0; | ||
| 369 | if (voice_place >= voices) { | ||
| 370 | voice_place = 0; | ||
| 371 | } | ||
| 372 | if (voices == 0) { | ||
| 373 | STOP_CHANNEL_1(); | ||
| 374 | STOP_CHANNEL_2(); | ||
| 375 | gptStopTimer(&GPTD8); | ||
| 376 | frequency = 0; | ||
| 377 | frequency_alt = 0; | ||
| 378 | volume = 0; | ||
| 379 | playing_note = false; | ||
| 380 | } | 365 | } |
| 366 | break; | ||
| 367 | } | ||
| 368 | } | ||
| 369 | voices--; | ||
| 370 | if (voices < 0) { | ||
| 371 | voices = 0; | ||
| 372 | } | ||
| 373 | if (voice_place >= voices) { | ||
| 374 | voice_place = 0; | ||
| 375 | } | ||
| 376 | if (voices == 0) { | ||
| 377 | STOP_CHANNEL_1(); | ||
| 378 | STOP_CHANNEL_2(); | ||
| 379 | gptStopTimer(&GPTD8); | ||
| 380 | frequency = 0; | ||
| 381 | frequency_alt = 0; | ||
| 382 | volume = 0; | ||
| 383 | playing_note = false; | ||
| 381 | } | 384 | } |
| 385 | } | ||
| 382 | } | 386 | } |
| 383 | 387 | ||
| 384 | #ifdef VIBRATO_ENABLE | 388 | #ifdef VIBRATO_ENABLE |
| 385 | 389 | ||
| 386 | float mod(float a, int b) | 390 | float mod(float a, int b) { |
| 387 | { | 391 | float r = fmod(a, b); |
| 388 | float r = fmod(a, b); | 392 | return r < 0 ? r + b : r; |
| 389 | return r < 0 ? r + b : r; | ||
| 390 | } | 393 | } |
| 391 | 394 | ||
| 392 | float vibrato(float average_freq) { | 395 | float vibrato(float average_freq) { |
| 393 | #ifdef VIBRATO_STRENGTH_ENABLE | 396 | #ifdef VIBRATO_STRENGTH_ENABLE |
| 394 | float vibrated_freq = average_freq * pow(vibrato_lut[(int)vibrato_counter], vibrato_strength); | 397 | float vibrated_freq = average_freq * pow(vibrato_lut[(int)vibrato_counter], vibrato_strength); |
| 395 | #else | 398 | #else |
| 396 | float vibrated_freq = average_freq * vibrato_lut[(int)vibrato_counter]; | 399 | float vibrated_freq = average_freq * vibrato_lut[(int)vibrato_counter]; |
| 397 | #endif | 400 | #endif |
| 398 | vibrato_counter = mod((vibrato_counter + vibrato_rate * (1.0 + 440.0/average_freq)), VIBRATO_LUT_LENGTH); | 401 | vibrato_counter = mod((vibrato_counter + vibrato_rate * (1.0 + 440.0/average_freq)), VIBRATO_LUT_LENGTH); |
| 399 | return vibrated_freq; | 402 | return vibrated_freq; |
| 400 | } | 403 | } |
| 401 | 404 | ||
| 402 | #endif | 405 | #endif |
| 403 | 406 | ||
| 404 | static void gpt_cb8(GPTDriver *gptp) { | 407 | static void gpt_cb8(GPTDriver *gptp) { |
| 405 | float freq; | 408 | float freq; |
| 406 | 409 | ||
| 407 | if (playing_note) { | 410 | if (playing_note) { |
| 408 | if (voices > 0) { | 411 | if (voices > 0) { |
| 409 | 412 | ||
| 410 | float freq_alt = 0; | 413 | float freq_alt = 0; |
| 411 | if (voices > 1) { | 414 | if (voices > 1) { |
| 412 | if (polyphony_rate == 0) { | 415 | if (polyphony_rate == 0) { |
| 413 | if (glissando) { | 416 | if (glissando) { |
| 414 | if (frequency_alt != 0 && frequency_alt < frequencies[voices - 2] && frequency_alt < frequencies[voices - 2] * pow(2, -440/frequencies[voices - 2]/12/2)) { | 417 | if (frequency_alt != 0 && frequency_alt < frequencies[voices - 2] && frequency_alt < frequencies[voices - 2] * pow(2, -440/frequencies[voices - 2]/12/2)) { |
| 415 | frequency_alt = frequency_alt * pow(2, 440/frequency_alt/12/2); | 418 | frequency_alt = frequency_alt * pow(2, 440/frequency_alt/12/2); |
| 416 | } else if (frequency_alt != 0 && frequency_alt > frequencies[voices - 2] && frequency_alt > frequencies[voices - 2] * pow(2, 440/frequencies[voices - 2]/12/2)) { | 419 | } else if (frequency_alt != 0 && frequency_alt > frequencies[voices - 2] && frequency_alt > frequencies[voices - 2] * pow(2, 440/frequencies[voices - 2]/12/2)) { |
| 417 | frequency_alt = frequency_alt * pow(2, -440/frequency_alt/12/2); | 420 | frequency_alt = frequency_alt * pow(2, -440/frequency_alt/12/2); |
| 418 | } else { | ||
| 419 | frequency_alt = frequencies[voices - 2]; | ||
| 420 | } | ||
| 421 | } else { | ||
| 422 | frequency_alt = frequencies[voices - 2]; | ||
| 423 | } | ||
| 424 | |||
| 425 | #ifdef VIBRATO_ENABLE | ||
| 426 | if (vibrato_strength > 0) { | ||
| 427 | freq_alt = vibrato(frequency_alt); | ||
| 428 | } else { | ||
| 429 | freq_alt = frequency_alt; | ||
| 430 | } | ||
| 431 | #else | ||
| 432 | freq_alt = frequency_alt; | ||
| 433 | #endif | ||
| 434 | } | ||
| 435 | |||
| 436 | if (envelope_index < 65535) { | ||
| 437 | envelope_index++; | ||
| 438 | } | ||
| 439 | |||
| 440 | freq_alt = voice_envelope(freq_alt); | ||
| 441 | |||
| 442 | if (freq_alt < 30.517578125) { | ||
| 443 | freq_alt = 30.52; | ||
| 444 | } | ||
| 445 | |||
| 446 | if (GET_CHANNEL_2_FREQ != (uint16_t)freq_alt) { | ||
| 447 | UPDATE_CHANNEL_2_FREQ(freq_alt); | ||
| 448 | } else { | ||
| 449 | RESTART_CHANNEL_2(); | ||
| 450 | } | ||
| 451 | //note_timbre; | ||
| 452 | } | ||
| 453 | |||
| 454 | if (polyphony_rate > 0) { | ||
| 455 | if (voices > 1) { | ||
| 456 | voice_place %= voices; | ||
| 457 | if (place++ > (frequencies[voice_place] / polyphony_rate)) { | ||
| 458 | voice_place = (voice_place + 1) % voices; | ||
| 459 | place = 0.0; | ||
| 460 | } | ||
| 461 | } | ||
| 462 | |||
| 463 | #ifdef VIBRATO_ENABLE | ||
| 464 | if (vibrato_strength > 0) { | ||
| 465 | freq = vibrato(frequencies[voice_place]); | ||
| 466 | } else { | ||
| 467 | freq = frequencies[voice_place]; | ||
| 468 | } | ||
| 469 | #else | ||
| 470 | freq = frequencies[voice_place]; | ||
| 471 | #endif | ||
| 472 | } else { | 421 | } else { |
| 473 | if (glissando) { | 422 | frequency_alt = frequencies[voices - 2]; |
| 474 | if (frequency != 0 && frequency < frequencies[voices - 1] && frequency < frequencies[voices - 1] * pow(2, -440/frequencies[voices - 1]/12/2)) { | ||
| 475 | frequency = frequency * pow(2, 440/frequency/12/2); | ||
| 476 | } else if (frequency != 0 && frequency > frequencies[voices - 1] && frequency > frequencies[voices - 1] * pow(2, 440/frequencies[voices - 1]/12/2)) { | ||
| 477 | frequency = frequency * pow(2, -440/frequency/12/2); | ||
| 478 | } else { | ||
| 479 | frequency = frequencies[voices - 1]; | ||
| 480 | } | ||
| 481 | } else { | ||
| 482 | frequency = frequencies[voices - 1]; | ||
| 483 | } | ||
| 484 | |||
| 485 | #ifdef VIBRATO_ENABLE | ||
| 486 | if (vibrato_strength > 0) { | ||
| 487 | freq = vibrato(frequency); | ||
| 488 | } else { | ||
| 489 | freq = frequency; | ||
| 490 | } | ||
| 491 | #else | ||
| 492 | freq = frequency; | ||
| 493 | #endif | ||
| 494 | } | 423 | } |
| 424 | } else { | ||
| 425 | frequency_alt = frequencies[voices - 2]; | ||
| 426 | } | ||
| 495 | 427 | ||
| 496 | if (envelope_index < 65535) { | 428 | #ifdef VIBRATO_ENABLE |
| 497 | envelope_index++; | 429 | if (vibrato_strength > 0) { |
| 498 | } | 430 | freq_alt = vibrato(frequency_alt); |
| 499 | |||
| 500 | freq = voice_envelope(freq); | ||
| 501 | |||
| 502 | if (freq < 30.517578125) { | ||
| 503 | freq = 30.52; | ||
| 504 | } | ||
| 505 | |||
| 506 | |||
| 507 | if (GET_CHANNEL_1_FREQ != (uint16_t)freq) { | ||
| 508 | UPDATE_CHANNEL_1_FREQ(freq); | ||
| 509 | } else { | 431 | } else { |
| 510 | RESTART_CHANNEL_1(); | 432 | freq_alt = frequency_alt; |
| 511 | } | 433 | } |
| 512 | //note_timbre; | 434 | #else |
| 435 | freq_alt = frequency_alt; | ||
| 436 | #endif | ||
| 513 | } | 437 | } |
| 514 | } | ||
| 515 | 438 | ||
| 516 | if (playing_notes) { | 439 | if (envelope_index < 65535) { |
| 517 | if (note_frequency > 0) { | 440 | envelope_index++; |
| 518 | #ifdef VIBRATO_ENABLE | 441 | } |
| 519 | if (vibrato_strength > 0) { | ||
| 520 | freq = vibrato(note_frequency); | ||
| 521 | } else { | ||
| 522 | freq = note_frequency; | ||
| 523 | } | ||
| 524 | #else | ||
| 525 | freq = note_frequency; | ||
| 526 | #endif | ||
| 527 | |||
| 528 | if (envelope_index < 65535) { | ||
| 529 | envelope_index++; | ||
| 530 | } | ||
| 531 | freq = voice_envelope(freq); | ||
| 532 | 442 | ||
| 443 | freq_alt = voice_envelope(freq_alt); | ||
| 533 | 444 | ||
| 534 | if (GET_CHANNEL_1_FREQ != (uint16_t)freq) { | 445 | if (freq_alt < 30.517578125) { |
| 535 | UPDATE_CHANNEL_1_FREQ(freq); | 446 | freq_alt = 30.52; |
| 536 | UPDATE_CHANNEL_2_FREQ(freq); | 447 | } |
| 537 | } | 448 | |
| 538 | //note_timbre; | 449 | if (GET_CHANNEL_2_FREQ != (uint16_t)freq_alt) { |
| 450 | UPDATE_CHANNEL_2_FREQ(freq_alt); | ||
| 539 | } else { | 451 | } else { |
| 540 | // gptStopTimer(&GPTD6); | 452 | RESTART_CHANNEL_2(); |
| 541 | // gptStopTimer(&GPTD7); | 453 | } |
| 454 | //note_timbre; | ||
| 455 | } | ||
| 456 | |||
| 457 | if (polyphony_rate > 0) { | ||
| 458 | if (voices > 1) { | ||
| 459 | voice_place %= voices; | ||
| 460 | if (place++ > (frequencies[voice_place] / polyphony_rate)) { | ||
| 461 | voice_place = (voice_place + 1) % voices; | ||
| 462 | place = 0.0; | ||
| 463 | } | ||
| 542 | } | 464 | } |
| 543 | 465 | ||
| 544 | note_position++; | 466 | #ifdef VIBRATO_ENABLE |
| 545 | bool end_of_note = false; | 467 | if (vibrato_strength > 0) { |
| 546 | if (GET_CHANNEL_1_FREQ > 0) { | 468 | freq = vibrato(frequencies[voice_place]); |
| 547 | if (!note_resting) | 469 | } else { |
| 548 | end_of_note = (note_position >= (note_length*8 - 1)); | 470 | freq = frequencies[voice_place]; |
| 549 | else | 471 | } |
| 550 | end_of_note = (note_position >= (note_length*8)); | 472 | #else |
| 473 | freq = frequencies[voice_place]; | ||
| 474 | #endif | ||
| 475 | } else { | ||
| 476 | if (glissando) { | ||
| 477 | if (frequency != 0 && frequency < frequencies[voices - 1] && frequency < frequencies[voices - 1] * pow(2, -440/frequencies[voices - 1]/12/2)) { | ||
| 478 | frequency = frequency * pow(2, 440/frequency/12/2); | ||
| 479 | } else if (frequency != 0 && frequency > frequencies[voices - 1] && frequency > frequencies[voices - 1] * pow(2, 440/frequencies[voices - 1]/12/2)) { | ||
| 480 | frequency = frequency * pow(2, -440/frequency/12/2); | ||
| 481 | } else { | ||
| 482 | frequency = frequencies[voices - 1]; | ||
| 483 | } | ||
| 551 | } else { | 484 | } else { |
| 552 | end_of_note = (note_position >= (note_length*8)); | 485 | frequency = frequencies[voices - 1]; |
| 553 | } | 486 | } |
| 554 | 487 | ||
| 555 | if (end_of_note) { | 488 | #ifdef VIBRATO_ENABLE |
| 556 | current_note++; | 489 | if (vibrato_strength > 0) { |
| 557 | if (current_note >= notes_count) { | 490 | freq = vibrato(frequency); |
| 558 | if (notes_repeat) { | 491 | } else { |
| 559 | current_note = 0; | 492 | freq = frequency; |
| 560 | } else { | 493 | } |
| 561 | STOP_CHANNEL_1(); | 494 | #else |
| 562 | STOP_CHANNEL_2(); | 495 | freq = frequency; |
| 563 | // gptStopTimer(&GPTD8); | 496 | #endif |
| 564 | playing_notes = false; | 497 | } |
| 565 | return; | ||
| 566 | } | ||
| 567 | } | ||
| 568 | if (!note_resting) { | ||
| 569 | note_resting = true; | ||
| 570 | current_note--; | ||
| 571 | if ((*notes_pointer)[current_note][0] == (*notes_pointer)[current_note + 1][0]) { | ||
| 572 | note_frequency = 0; | ||
| 573 | note_length = 1; | ||
| 574 | } else { | ||
| 575 | note_frequency = (*notes_pointer)[current_note][0]; | ||
| 576 | note_length = 1; | ||
| 577 | } | ||
| 578 | } else { | ||
| 579 | note_resting = false; | ||
| 580 | envelope_index = 0; | ||
| 581 | note_frequency = (*notes_pointer)[current_note][0]; | ||
| 582 | note_length = ((*notes_pointer)[current_note][1] / 4) * (((float)note_tempo) / 100); | ||
| 583 | } | ||
| 584 | 498 | ||
| 585 | note_position = 0; | 499 | if (envelope_index < 65535) { |
| 586 | } | 500 | envelope_index++; |
| 587 | } | 501 | } |
| 588 | 502 | ||
| 589 | if (!audio_config.enable) { | 503 | freq = voice_envelope(freq); |
| 590 | playing_notes = false; | ||
| 591 | playing_note = false; | ||
| 592 | } | ||
| 593 | } | ||
| 594 | 504 | ||
| 595 | void play_note(float freq, int vol) { | 505 | if (freq < 30.517578125) { |
| 506 | freq = 30.52; | ||
| 507 | } | ||
| 596 | 508 | ||
| 597 | dprintf("audio play note freq=%d vol=%d", (int)freq, vol); | ||
| 598 | 509 | ||
| 599 | if (!audio_initialized) { | 510 | if (GET_CHANNEL_1_FREQ != (uint16_t)freq) { |
| 600 | audio_init(); | 511 | UPDATE_CHANNEL_1_FREQ(freq); |
| 512 | } else { | ||
| 513 | RESTART_CHANNEL_1(); | ||
| 514 | } | ||
| 515 | //note_timbre; | ||
| 601 | } | 516 | } |
| 517 | } | ||
| 602 | 518 | ||
| 603 | if (audio_config.enable && voices < 8) { | 519 | if (playing_notes) { |
| 520 | if (note_frequency > 0) { | ||
| 521 | #ifdef VIBRATO_ENABLE | ||
| 522 | if (vibrato_strength > 0) { | ||
| 523 | freq = vibrato(note_frequency); | ||
| 524 | } else { | ||
| 525 | freq = note_frequency; | ||
| 526 | } | ||
| 527 | #else | ||
| 528 | freq = note_frequency; | ||
| 529 | #endif | ||
| 604 | 530 | ||
| 531 | if (envelope_index < 65535) { | ||
| 532 | envelope_index++; | ||
| 533 | } | ||
| 534 | freq = voice_envelope(freq); | ||
| 605 | 535 | ||
| 606 | // Cancel notes if notes are playing | ||
| 607 | if (playing_notes) | ||
| 608 | stop_all_notes(); | ||
| 609 | 536 | ||
| 610 | playing_note = true; | 537 | if (GET_CHANNEL_1_FREQ != (uint16_t)freq) { |
| 538 | UPDATE_CHANNEL_1_FREQ(freq); | ||
| 539 | UPDATE_CHANNEL_2_FREQ(freq); | ||
| 540 | } | ||
| 541 | //note_timbre; | ||
| 542 | } else { | ||
| 543 | // gptStopTimer(&GPTD6); | ||
| 544 | // gptStopTimer(&GPTD7); | ||
| 545 | } | ||
| 611 | 546 | ||
| 612 | envelope_index = 0; | 547 | note_position++; |
| 548 | bool end_of_note = false; | ||
| 549 | if (GET_CHANNEL_1_FREQ > 0) { | ||
| 550 | if (!note_resting) | ||
| 551 | end_of_note = (note_position >= (note_length*8 - 1)); | ||
| 552 | else | ||
| 553 | end_of_note = (note_position >= (note_length*8)); | ||
| 554 | } else { | ||
| 555 | end_of_note = (note_position >= (note_length*8)); | ||
| 556 | } | ||
| 613 | 557 | ||
| 614 | if (freq > 0) { | 558 | if (end_of_note) { |
| 615 | frequencies[voices] = freq; | 559 | current_note++; |
| 616 | volumes[voices] = vol; | 560 | if (current_note >= notes_count) { |
| 617 | voices++; | 561 | if (notes_repeat) { |
| 562 | current_note = 0; | ||
| 563 | } else { | ||
| 564 | STOP_CHANNEL_1(); | ||
| 565 | STOP_CHANNEL_2(); | ||
| 566 | // gptStopTimer(&GPTD8); | ||
| 567 | playing_notes = false; | ||
| 568 | return; | ||
| 569 | } | ||
| 570 | } | ||
| 571 | if (!note_resting) { | ||
| 572 | note_resting = true; | ||
| 573 | current_note--; | ||
| 574 | if ((*notes_pointer)[current_note][0] == (*notes_pointer)[current_note + 1][0]) { | ||
| 575 | note_frequency = 0; | ||
| 576 | note_length = 1; | ||
| 577 | } else { | ||
| 578 | note_frequency = (*notes_pointer)[current_note][0]; | ||
| 579 | note_length = 1; | ||
| 618 | } | 580 | } |
| 581 | } else { | ||
| 582 | note_resting = false; | ||
| 583 | envelope_index = 0; | ||
| 584 | note_frequency = (*notes_pointer)[current_note][0]; | ||
| 585 | note_length = ((*notes_pointer)[current_note][1] / 4) * (((float)note_tempo) / 100); | ||
| 586 | } | ||
| 619 | 587 | ||
| 620 | gptStart(&GPTD8, &gpt8cfg1); | 588 | note_position = 0; |
| 621 | gptStartContinuous(&GPTD8, 2U); | ||
| 622 | RESTART_CHANNEL_1(); | ||
| 623 | RESTART_CHANNEL_2(); | ||
| 624 | } | 589 | } |
| 590 | } | ||
| 625 | 591 | ||
| 592 | if (!audio_config.enable) { | ||
| 593 | playing_notes = false; | ||
| 594 | playing_note = false; | ||
| 595 | } | ||
| 626 | } | 596 | } |
| 627 | 597 | ||
| 628 | void play_notes(float (*np)[][2], uint16_t n_count, bool n_repeat) | 598 | void play_note(float freq, int vol) { |
| 629 | { | ||
| 630 | 599 | ||
| 631 | if (!audio_initialized) { | 600 | dprintf("audio play note freq=%d vol=%d", (int)freq, vol); |
| 632 | audio_init(); | 601 | |
| 602 | if (!audio_initialized) { | ||
| 603 | audio_init(); | ||
| 604 | } | ||
| 605 | |||
| 606 | if (audio_config.enable && voices < 8) { | ||
| 607 | |||
| 608 | // Cancel notes if notes are playing | ||
| 609 | if (playing_notes) { | ||
| 610 | stop_all_notes(); | ||
| 633 | } | 611 | } |
| 634 | 612 | ||
| 635 | if (audio_config.enable) { | 613 | playing_note = true; |
| 636 | 614 | ||
| 637 | // Cancel note if a note is playing | 615 | envelope_index = 0; |
| 638 | if (playing_note) | ||
| 639 | stop_all_notes(); | ||
| 640 | 616 | ||
| 641 | playing_notes = true; | 617 | if (freq > 0) { |
| 618 | frequencies[voices] = freq; | ||
| 619 | volumes[voices] = vol; | ||
| 620 | voices++; | ||
| 621 | } | ||
| 642 | 622 | ||
| 643 | notes_pointer = np; | 623 | gptStart(&GPTD8, &gpt8cfg1); |
| 644 | notes_count = n_count; | 624 | gptStartContinuous(&GPTD8, 2U); |
| 645 | notes_repeat = n_repeat; | 625 | RESTART_CHANNEL_1(); |
| 626 | RESTART_CHANNEL_2(); | ||
| 627 | } | ||
| 646 | 628 | ||
| 647 | place = 0; | 629 | } |
| 648 | current_note = 0; | ||
| 649 | 630 | ||
| 650 | note_frequency = (*notes_pointer)[current_note][0]; | 631 | void play_notes(float (*np)[][2], uint16_t n_count, bool n_repeat) { |
| 651 | note_length = ((*notes_pointer)[current_note][1] / 4) * (((float)note_tempo) / 100); | ||
| 652 | note_position = 0; | ||
| 653 | 632 | ||
| 654 | gptStart(&GPTD8, &gpt8cfg1); | 633 | if (!audio_initialized) { |
| 655 | gptStartContinuous(&GPTD8, 2U); | 634 | audio_init(); |
| 656 | RESTART_CHANNEL_1(); | 635 | } |
| 657 | RESTART_CHANNEL_2(); | 636 | |
| 637 | if (audio_config.enable) { | ||
| 638 | |||
| 639 | // Cancel note if a note is playing | ||
| 640 | if (playing_note) { | ||
| 641 | stop_all_notes(); | ||
| 658 | } | 642 | } |
| 659 | 643 | ||
| 644 | playing_notes = true; | ||
| 645 | |||
| 646 | notes_pointer = np; | ||
| 647 | notes_count = n_count; | ||
| 648 | notes_repeat = n_repeat; | ||
| 649 | |||
| 650 | place = 0; | ||
| 651 | current_note = 0; | ||
| 652 | |||
| 653 | note_frequency = (*notes_pointer)[current_note][0]; | ||
| 654 | note_length = ((*notes_pointer)[current_note][1] / 4) * (((float)note_tempo) / 100); | ||
| 655 | note_position = 0; | ||
| 656 | |||
| 657 | gptStart(&GPTD8, &gpt8cfg1); | ||
| 658 | gptStartContinuous(&GPTD8, 2U); | ||
| 659 | RESTART_CHANNEL_1(); | ||
| 660 | RESTART_CHANNEL_2(); | ||
| 661 | } | ||
| 660 | } | 662 | } |
| 661 | 663 | ||
| 662 | bool is_playing_notes(void) { | 664 | bool is_playing_notes(void) { |
| 663 | return playing_notes; | 665 | return playing_notes; |
| 664 | } | 666 | } |
| 665 | 667 | ||
| 666 | bool is_audio_on(void) { | 668 | bool is_audio_on(void) { |
| 667 | return (audio_config.enable != 0); | 669 | return (audio_config.enable != 0); |
| 668 | } | 670 | } |
| 669 | 671 | ||
| 670 | void audio_toggle(void) { | 672 | void audio_toggle(void) { |
| 671 | audio_config.enable ^= 1; | 673 | audio_config.enable ^= 1; |
| 672 | eeconfig_update_audio(audio_config.raw); | 674 | eeconfig_update_audio(audio_config.raw); |
| 673 | if (audio_config.enable) | 675 | if (audio_config.enable) { |
| 674 | audio_on_user(); | 676 | audio_on_user(); |
| 677 | } | ||
| 675 | } | 678 | } |
| 676 | 679 | ||
| 677 | void audio_on(void) { | 680 | void audio_on(void) { |
| 678 | audio_config.enable = 1; | 681 | audio_config.enable = 1; |
| 679 | eeconfig_update_audio(audio_config.raw); | 682 | eeconfig_update_audio(audio_config.raw); |
| 680 | audio_on_user(); | 683 | audio_on_user(); |
| 681 | } | 684 | } |
| 682 | 685 | ||
| 683 | void audio_off(void) { | 686 | void audio_off(void) { |
| 684 | audio_config.enable = 0; | 687 | stop_all_notes(); |
| 685 | eeconfig_update_audio(audio_config.raw); | 688 | audio_config.enable = 0; |
| 689 | eeconfig_update_audio(audio_config.raw); | ||
| 686 | } | 690 | } |
| 687 | 691 | ||
| 688 | #ifdef VIBRATO_ENABLE | 692 | #ifdef VIBRATO_ENABLE |
| @@ -690,29 +694,29 @@ void audio_off(void) { | |||
| 690 | // Vibrato rate functions | 694 | // Vibrato rate functions |
| 691 | 695 | ||
| 692 | void set_vibrato_rate(float rate) { | 696 | void set_vibrato_rate(float rate) { |
| 693 | vibrato_rate = rate; | 697 | vibrato_rate = rate; |
| 694 | } | 698 | } |
| 695 | 699 | ||
| 696 | void increase_vibrato_rate(float change) { | 700 | void increase_vibrato_rate(float change) { |
| 697 | vibrato_rate *= change; | 701 | vibrato_rate *= change; |
| 698 | } | 702 | } |
| 699 | 703 | ||
| 700 | void decrease_vibrato_rate(float change) { | 704 | void decrease_vibrato_rate(float change) { |
| 701 | vibrato_rate /= change; | 705 | vibrato_rate /= change; |
| 702 | } | 706 | } |
| 703 | 707 | ||
| 704 | #ifdef VIBRATO_STRENGTH_ENABLE | 708 | #ifdef VIBRATO_STRENGTH_ENABLE |
| 705 | 709 | ||
| 706 | void set_vibrato_strength(float strength) { | 710 | void set_vibrato_strength(float strength) { |
| 707 | vibrato_strength = strength; | 711 | vibrato_strength = strength; |
| 708 | } | 712 | } |
| 709 | 713 | ||
| 710 | void increase_vibrato_strength(float change) { | 714 | void increase_vibrato_strength(float change) { |
| 711 | vibrato_strength *= change; | 715 | vibrato_strength *= change; |
| 712 | } | 716 | } |
| 713 | 717 | ||
| 714 | void decrease_vibrato_strength(float change) { | 718 | void decrease_vibrato_strength(float change) { |
| 715 | vibrato_strength /= change; | 719 | vibrato_strength /= change; |
| 716 | } | 720 | } |
| 717 | 721 | ||
| 718 | #endif /* VIBRATO_STRENGTH_ENABLE */ | 722 | #endif /* VIBRATO_STRENGTH_ENABLE */ |
| @@ -722,45 +726,45 @@ void decrease_vibrato_strength(float change) { | |||
| 722 | // Polyphony functions | 726 | // Polyphony functions |
| 723 | 727 | ||
| 724 | void set_polyphony_rate(float rate) { | 728 | void set_polyphony_rate(float rate) { |
| 725 | polyphony_rate = rate; | 729 | polyphony_rate = rate; |
| 726 | } | 730 | } |
| 727 | 731 | ||
| 728 | void enable_polyphony() { | 732 | void enable_polyphony() { |
| 729 | polyphony_rate = 5; | 733 | polyphony_rate = 5; |
| 730 | } | 734 | } |
| 731 | 735 | ||
| 732 | void disable_polyphony() { | 736 | void disable_polyphony() { |
| 733 | polyphony_rate = 0; | 737 | polyphony_rate = 0; |
| 734 | } | 738 | } |
| 735 | 739 | ||
| 736 | void increase_polyphony_rate(float change) { | 740 | void increase_polyphony_rate(float change) { |
| 737 | polyphony_rate *= change; | 741 | polyphony_rate *= change; |
| 738 | } | 742 | } |
| 739 | 743 | ||
| 740 | void decrease_polyphony_rate(float change) { | 744 | void decrease_polyphony_rate(float change) { |
| 741 | polyphony_rate /= change; | 745 | polyphony_rate /= change; |
| 742 | } | 746 | } |
| 743 | 747 | ||
| 744 | // Timbre function | 748 | // Timbre function |
| 745 | 749 | ||
| 746 | void set_timbre(float timbre) { | 750 | void set_timbre(float timbre) { |
| 747 | note_timbre = timbre; | 751 | note_timbre = timbre; |
| 748 | } | 752 | } |
| 749 | 753 | ||
| 750 | // Tempo functions | 754 | // Tempo functions |
| 751 | 755 | ||
| 752 | void set_tempo(uint8_t tempo) { | 756 | void set_tempo(uint8_t tempo) { |
| 753 | note_tempo = tempo; | 757 | note_tempo = tempo; |
| 754 | } | 758 | } |
| 755 | 759 | ||
| 756 | void decrease_tempo(uint8_t tempo_change) { | 760 | void decrease_tempo(uint8_t tempo_change) { |
| 757 | note_tempo += tempo_change; | 761 | note_tempo += tempo_change; |
| 758 | } | 762 | } |
| 759 | 763 | ||
| 760 | void increase_tempo(uint8_t tempo_change) { | 764 | void increase_tempo(uint8_t tempo_change) { |
| 761 | if (note_tempo - tempo_change < 10) { | 765 | if (note_tempo - tempo_change < 10) { |
| 762 | note_tempo = 10; | 766 | note_tempo = 10; |
| 763 | } else { | 767 | } else { |
| 764 | note_tempo -= tempo_change; | 768 | note_tempo -= tempo_change; |
| 765 | } | 769 | } |
| 766 | } | 770 | } |
diff --git a/quantum/keymap_common.c b/quantum/keymap_common.c index 1a6af9e08..9d2d331ce 100644 --- a/quantum/keymap_common.c +++ b/quantum/keymap_common.c | |||
| @@ -127,7 +127,7 @@ action_t action_for_key(uint8_t layer, keypos_t key) | |||
| 127 | action.code = ACTION_LAYER_TAP_TOGGLE(keycode & 0xFF); | 127 | action.code = ACTION_LAYER_TAP_TOGGLE(keycode & 0xFF); |
| 128 | break; | 128 | break; |
| 129 | case QK_LAYER_MOD ... QK_LAYER_MOD_MAX: | 129 | case QK_LAYER_MOD ... QK_LAYER_MOD_MAX: |
| 130 | mod = keycode & 0xF; | 130 | mod = mod_config(keycode & 0xF); |
| 131 | action_layer = (keycode >> 4) & 0xF; | 131 | action_layer = (keycode >> 4) & 0xF; |
| 132 | action.code = ACTION_LAYER_MODS(action_layer, mod); | 132 | action.code = ACTION_LAYER_MODS(action_layer, mod); |
| 133 | break; | 133 | break; |
diff --git a/quantum/keymap_extras/sendstring_german.h b/quantum/keymap_extras/sendstring_german.h index 1eaafee31..f20fab77d 100644 --- a/quantum/keymap_extras/sendstring_german.h +++ b/quantum/keymap_extras/sendstring_german.h | |||
| @@ -67,7 +67,7 @@ const uint8_t ascii_to_keycode_lut[0x80] PROGMEM = { | |||
| 67 | /* P Q R S T U V W */ | 67 | /* P Q R S T U V W */ |
| 68 | KC_P, KC_Q, KC_R, KC_S, KC_T, KC_U, KC_V, KC_W, | 68 | KC_P, KC_Q, KC_R, KC_S, KC_T, KC_U, KC_V, KC_W, |
| 69 | /* X Y Z [ \ ] ^ _ */ | 69 | /* X Y Z [ \ ] ^ _ */ |
| 70 | KC_X, KC_Y, KC_Z, KC_LBRC, KC_BSLS, KC_RBRC, DE_CIRC, DE_MINS, | 70 | KC_X, DE_Y, DE_Z, KC_LBRC, KC_BSLS, KC_RBRC, DE_CIRC, DE_MINS, |
| 71 | /* ` a b c d e f g */ | 71 | /* ` a b c d e f g */ |
| 72 | DE_ACUT, KC_A, KC_B, KC_C, KC_D, KC_E, KC_F, KC_G, | 72 | DE_ACUT, KC_A, KC_B, KC_C, KC_D, KC_E, KC_F, KC_G, |
| 73 | /* h i j k l m n o */ | 73 | /* h i j k l m n o */ |
| @@ -75,7 +75,7 @@ const uint8_t ascii_to_keycode_lut[0x80] PROGMEM = { | |||
| 75 | /* p q r s t u v w */ | 75 | /* p q r s t u v w */ |
| 76 | KC_P, KC_Q, KC_R, KC_S, KC_T, KC_U, KC_V, KC_W, | 76 | KC_P, KC_Q, KC_R, KC_S, KC_T, KC_U, KC_V, KC_W, |
| 77 | /* x y z { | } ~ DELETE */ | 77 | /* x y z { | } ~ DELETE */ |
| 78 | KC_X, KC_Y, KC_Z, KC_LBRC, KC_BSLS, KC_RBRC, KC_GRV, KC_DEL | 78 | KC_X, DE_Y, DE_Z, KC_LBRC, KC_BSLS, KC_RBRC, KC_GRV, KC_DEL |
| 79 | }; | 79 | }; |
| 80 | 80 | ||
| 81 | #endif | 81 | #endif |
diff --git a/quantum/led_matrix.c b/quantum/led_matrix.c new file mode 100644 index 000000000..8ef8abe71 --- /dev/null +++ b/quantum/led_matrix.c | |||
| @@ -0,0 +1,391 @@ | |||
| 1 | /* Copyright 2017 Jason Williams | ||
| 2 | * Copyright 2017 Jack Humbert | ||
| 3 | * Copyright 2018 Yiancar | ||
| 4 | * Copyright 2019 Clueboard | ||
| 5 | * | ||
| 6 | * This program is free software: you can redistribute it and/or modify | ||
| 7 | * it under the terms of the GNU General Public License as published by | ||
| 8 | * the Free Software Foundation, either version 2 of the License, or | ||
| 9 | * (at your option) any later version. | ||
| 10 | * | ||
| 11 | * This program is distributed in the hope that it will be useful, | ||
| 12 | * but WITHOUT ANY WARRANTY; without even the implied warranty of | ||
| 13 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | ||
| 14 | * GNU General Public License for more details. | ||
| 15 | * | ||
| 16 | * You should have received a copy of the GNU General Public License | ||
| 17 | * along with this program. If not, see <http://www.gnu.org/licenses/>. | ||
| 18 | */ | ||
| 19 | |||
| 20 | #include <stdint.h> | ||
| 21 | #include <stdbool.h> | ||
| 22 | #include "quantum.h" | ||
| 23 | #include "ledmatrix.h" | ||
| 24 | #include "progmem.h" | ||
| 25 | #include "config.h" | ||
| 26 | #include "eeprom.h" | ||
| 27 | #include <string.h> | ||
| 28 | #include <math.h> | ||
| 29 | |||
| 30 | led_config_t led_matrix_config; | ||
| 31 | |||
| 32 | #ifndef MAX | ||
| 33 | #define MAX(X, Y) ((X) > (Y) ? (X) : (Y)) | ||
| 34 | #endif | ||
| 35 | |||
| 36 | #ifndef MIN | ||
| 37 | #define MIN(a,b) ((a) < (b)? (a): (b)) | ||
| 38 | #endif | ||
| 39 | |||
| 40 | #ifndef LED_DISABLE_AFTER_TIMEOUT | ||
| 41 | #define LED_DISABLE_AFTER_TIMEOUT 0 | ||
| 42 | #endif | ||
| 43 | |||
| 44 | #ifndef LED_DISABLE_WHEN_USB_SUSPENDED | ||
| 45 | #define LED_DISABLE_WHEN_USB_SUSPENDED false | ||
| 46 | #endif | ||
| 47 | |||
| 48 | #ifndef EECONFIG_LED_MATRIX | ||
| 49 | #define EECONFIG_LED_MATRIX EECONFIG_RGBLIGHT | ||
| 50 | #endif | ||
| 51 | |||
| 52 | #if !defined(LED_MATRIX_MAXIMUM_BRIGHTNESS) || LED_MATRIX_MAXIMUM_BRIGHTNESS > 255 | ||
| 53 | #define LED_MATRIX_MAXIMUM_BRIGHTNESS 255 | ||
| 54 | #endif | ||
| 55 | |||
| 56 | bool g_suspend_state = false; | ||
| 57 | |||
| 58 | // Global tick at 20 Hz | ||
| 59 | uint32_t g_tick = 0; | ||
| 60 | |||
| 61 | // Ticks since this key was last hit. | ||
| 62 | uint8_t g_key_hit[LED_DRIVER_LED_COUNT]; | ||
| 63 | |||
| 64 | // Ticks since any key was last hit. | ||
| 65 | uint32_t g_any_key_hit = 0; | ||
| 66 | |||
| 67 | uint32_t eeconfig_read_led_matrix(void) { | ||
| 68 | return eeprom_read_dword(EECONFIG_LED_MATRIX); | ||
| 69 | } | ||
| 70 | |||
| 71 | void eeconfig_update_led_matrix(uint32_t config_value) { | ||
| 72 | eeprom_update_dword(EECONFIG_LED_MATRIX, config_value); | ||
| 73 | } | ||
| 74 | |||
| 75 | void eeconfig_update_led_matrix_default(void) { | ||
| 76 | dprintf("eeconfig_update_led_matrix_default\n"); | ||
| 77 | led_matrix_config.enable = 1; | ||
| 78 | led_matrix_config.mode = LED_MATRIX_UNIFORM_BRIGHTNESS; | ||
| 79 | led_matrix_config.val = 128; | ||
| 80 | led_matrix_config.speed = 0; | ||
| 81 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
| 82 | } | ||
| 83 | |||
| 84 | void eeconfig_debug_led_matrix(void) { | ||
| 85 | dprintf("led_matrix_config eeprom\n"); | ||
| 86 | dprintf("led_matrix_config.enable = %d\n", led_matrix_config.enable); | ||
| 87 | dprintf("led_matrix_config.mode = %d\n", led_matrix_config.mode); | ||
| 88 | dprintf("led_matrix_config.val = %d\n", led_matrix_config.val); | ||
| 89 | dprintf("led_matrix_config.speed = %d\n", led_matrix_config.speed); | ||
| 90 | } | ||
| 91 | |||
| 92 | // Last led hit | ||
| 93 | #ifndef LED_HITS_TO_REMEMBER | ||
| 94 | #define LED_HITS_TO_REMEMBER 8 | ||
| 95 | #endif | ||
| 96 | uint8_t g_last_led_hit[LED_HITS_TO_REMEMBER] = {255}; | ||
| 97 | uint8_t g_last_led_count = 0; | ||
| 98 | |||
| 99 | void map_row_column_to_led(uint8_t row, uint8_t column, uint8_t *led_i, uint8_t *led_count) { | ||
| 100 | led_matrix led; | ||
| 101 | *led_count = 0; | ||
| 102 | |||
| 103 | for (uint8_t i = 0; i < LED_DRIVER_LED_COUNT; i++) { | ||
| 104 | // map_index_to_led(i, &led); | ||
| 105 | led = g_leds[i]; | ||
| 106 | if (row == led.matrix_co.row && column == led.matrix_co.col) { | ||
| 107 | led_i[*led_count] = i; | ||
| 108 | (*led_count)++; | ||
| 109 | } | ||
| 110 | } | ||
| 111 | } | ||
| 112 | |||
| 113 | void led_matrix_update_pwm_buffers(void) { | ||
| 114 | led_matrix_driver.flush(); | ||
| 115 | } | ||
| 116 | |||
| 117 | void led_matrix_set_index_value(int index, uint8_t value) { | ||
| 118 | led_matrix_driver.set_value(index, value); | ||
| 119 | } | ||
| 120 | |||
| 121 | void led_matrix_set_index_value_all(uint8_t value) { | ||
| 122 | led_matrix_driver.set_value_all(value); | ||
| 123 | } | ||
| 124 | |||
| 125 | bool process_led_matrix(uint16_t keycode, keyrecord_t *record) { | ||
| 126 | if (record->event.pressed) { | ||
| 127 | uint8_t led[8], led_count; | ||
| 128 | map_row_column_to_led(record->event.key.row, record->event.key.col, led, &led_count); | ||
| 129 | if (led_count > 0) { | ||
| 130 | for (uint8_t i = LED_HITS_TO_REMEMBER; i > 1; i--) { | ||
| 131 | g_last_led_hit[i - 1] = g_last_led_hit[i - 2]; | ||
| 132 | } | ||
| 133 | g_last_led_hit[0] = led[0]; | ||
| 134 | g_last_led_count = MIN(LED_HITS_TO_REMEMBER, g_last_led_count + 1); | ||
| 135 | } | ||
| 136 | for(uint8_t i = 0; i < led_count; i++) | ||
| 137 | g_key_hit[led[i]] = 0; | ||
| 138 | g_any_key_hit = 0; | ||
| 139 | } else { | ||
| 140 | #ifdef LED_MATRIX_KEYRELEASES | ||
| 141 | uint8_t led[8], led_count; | ||
| 142 | map_row_column_to_led(record->event.key.row, record->event.key.col, led, &led_count); | ||
| 143 | for(uint8_t i = 0; i < led_count; i++) | ||
| 144 | g_key_hit[led[i]] = 255; | ||
| 145 | |||
| 146 | g_any_key_hit = 255; | ||
| 147 | #endif | ||
| 148 | } | ||
| 149 | return true; | ||
| 150 | } | ||
| 151 | |||
| 152 | void led_matrix_set_suspend_state(bool state) { | ||
| 153 | g_suspend_state = state; | ||
| 154 | } | ||
| 155 | |||
| 156 | // All LEDs off | ||
| 157 | void led_matrix_all_off(void) { | ||
| 158 | led_matrix_set_index_value_all(0); | ||
| 159 | } | ||
| 160 | |||
| 161 | // Uniform brightness | ||
| 162 | void led_matrix_uniform_brightness(void) { | ||
| 163 | led_matrix_set_index_value_all(LED_MATRIX_MAXIMUM_BRIGHTNESS / BACKLIGHT_LEVELS * led_matrix_config.val); | ||
| 164 | } | ||
| 165 | |||
| 166 | void led_matrix_custom(void) {} | ||
| 167 | |||
| 168 | void led_matrix_task(void) { | ||
| 169 | if (!led_matrix_config.enable) { | ||
| 170 | led_matrix_all_off(); | ||
| 171 | led_matrix_indicators(); | ||
| 172 | return; | ||
| 173 | } | ||
| 174 | |||
| 175 | g_tick++; | ||
| 176 | |||
| 177 | if (g_any_key_hit < 0xFFFFFFFF) { | ||
| 178 | g_any_key_hit++; | ||
| 179 | } | ||
| 180 | |||
| 181 | for (int led = 0; led < LED_DRIVER_LED_COUNT; led++) { | ||
| 182 | if (g_key_hit[led] < 255) { | ||
| 183 | if (g_key_hit[led] == 254) | ||
| 184 | g_last_led_count = MAX(g_last_led_count - 1, 0); | ||
| 185 | g_key_hit[led]++; | ||
| 186 | } | ||
| 187 | } | ||
| 188 | |||
| 189 | // Ideally we would also stop sending zeros to the LED driver PWM buffers | ||
| 190 | // while suspended and just do a software shutdown. This is a cheap hack for now. | ||
| 191 | bool suspend_backlight = ((g_suspend_state && LED_DISABLE_WHEN_USB_SUSPENDED) || | ||
| 192 | (LED_DISABLE_AFTER_TIMEOUT > 0 && g_any_key_hit > LED_DISABLE_AFTER_TIMEOUT * 60 * 20)); | ||
| 193 | uint8_t effect = suspend_backlight ? 0 : led_matrix_config.mode; | ||
| 194 | |||
| 195 | // this gets ticked at 20 Hz. | ||
| 196 | // each effect can opt to do calculations | ||
| 197 | // and/or request PWM buffer updates. | ||
| 198 | switch (effect) { | ||
| 199 | case LED_MATRIX_UNIFORM_BRIGHTNESS: | ||
| 200 | led_matrix_uniform_brightness(); | ||
| 201 | break; | ||
| 202 | default: | ||
| 203 | led_matrix_custom(); | ||
| 204 | break; | ||
| 205 | } | ||
| 206 | |||
| 207 | if (!suspend_backlight) { | ||
| 208 | led_matrix_indicators(); | ||
| 209 | } | ||
| 210 | |||
| 211 | // Tell the LED driver to update its state | ||
| 212 | led_matrix_driver.flush(); | ||
| 213 | } | ||
| 214 | |||
| 215 | void led_matrix_indicators(void) { | ||
| 216 | led_matrix_indicators_kb(); | ||
| 217 | led_matrix_indicators_user(); | ||
| 218 | } | ||
| 219 | |||
| 220 | __attribute__((weak)) | ||
| 221 | void led_matrix_indicators_kb(void) {} | ||
| 222 | |||
| 223 | __attribute__((weak)) | ||
| 224 | void led_matrix_indicators_user(void) {} | ||
| 225 | |||
| 226 | |||
| 227 | // void led_matrix_set_indicator_index(uint8_t *index, uint8_t row, uint8_t column) | ||
| 228 | // { | ||
| 229 | // if (row >= MATRIX_ROWS) | ||
| 230 | // { | ||
| 231 | // // Special value, 255=none, 254=all | ||
| 232 | // *index = row; | ||
| 233 | // } | ||
| 234 | // else | ||
| 235 | // { | ||
| 236 | // // This needs updated to something like | ||
| 237 | // // uint8_t led[8], led_count; | ||
| 238 | // // map_row_column_to_led(row,column,led,&led_count); | ||
| 239 | // // for(uint8_t i = 0; i < led_count; i++) | ||
| 240 | // map_row_column_to_led(row, column, index); | ||
| 241 | // } | ||
| 242 | // } | ||
| 243 | |||
| 244 | void led_matrix_init(void) { | ||
| 245 | led_matrix_driver.init(); | ||
| 246 | |||
| 247 | // Wait half a second for the driver to finish initializing | ||
| 248 | wait_ms(500); | ||
| 249 | |||
| 250 | // clear the key hits | ||
| 251 | for (int led=0; led<LED_DRIVER_LED_COUNT; led++) { | ||
| 252 | g_key_hit[led] = 255; | ||
| 253 | } | ||
| 254 | |||
| 255 | if (!eeconfig_is_enabled()) { | ||
| 256 | dprintf("led_matrix_init_drivers eeconfig is not enabled.\n"); | ||
| 257 | eeconfig_init(); | ||
| 258 | eeconfig_update_led_matrix_default(); | ||
| 259 | } | ||
| 260 | |||
| 261 | led_matrix_config.raw = eeconfig_read_led_matrix(); | ||
| 262 | |||
| 263 | if (!led_matrix_config.mode) { | ||
| 264 | dprintf("led_matrix_init_drivers led_matrix_config.mode = 0. Write default values to EEPROM.\n"); | ||
| 265 | eeconfig_update_led_matrix_default(); | ||
| 266 | led_matrix_config.raw = eeconfig_read_led_matrix(); | ||
| 267 | } | ||
| 268 | |||
| 269 | eeconfig_debug_led_matrix(); // display current eeprom values | ||
| 270 | } | ||
| 271 | |||
| 272 | // Deals with the messy details of incrementing an integer | ||
| 273 | static uint8_t increment(uint8_t value, uint8_t step, uint8_t min, uint8_t max) { | ||
| 274 | int16_t new_value = value; | ||
| 275 | new_value += step; | ||
| 276 | return MIN(MAX(new_value, min), max); | ||
| 277 | } | ||
| 278 | |||
| 279 | static uint8_t decrement(uint8_t value, uint8_t step, uint8_t min, uint8_t max) { | ||
| 280 | int16_t new_value = value; | ||
| 281 | new_value -= step; | ||
| 282 | return MIN(MAX(new_value, min), max); | ||
| 283 | } | ||
| 284 | |||
| 285 | // void *backlight_get_custom_key_value_eeprom_address(uint8_t led) { | ||
| 286 | // // 3 bytes per value | ||
| 287 | // return EECONFIG_LED_MATRIX + (led * 3); | ||
| 288 | // } | ||
| 289 | |||
| 290 | // void backlight_get_key_value(uint8_t led, uint8_t *value) { | ||
| 291 | // void *address = backlight_get_custom_key_value_eeprom_address(led); | ||
| 292 | // value = eeprom_read_byte(address); | ||
| 293 | // } | ||
| 294 | |||
| 295 | // void backlight_set_key_value(uint8_t row, uint8_t column, uint8_t value) { | ||
| 296 | // uint8_t led[8], led_count; | ||
| 297 | // map_row_column_to_led(row,column,led,&led_count); | ||
| 298 | // for(uint8_t i = 0; i < led_count; i++) { | ||
| 299 | // if (led[i] < LED_DRIVER_LED_COUNT) { | ||
| 300 | // void *address = backlight_get_custom_key_value_eeprom_address(led[i]); | ||
| 301 | // eeprom_update_byte(address, value); | ||
| 302 | // } | ||
| 303 | // } | ||
| 304 | // } | ||
| 305 | |||
| 306 | uint32_t led_matrix_get_tick(void) { | ||
| 307 | return g_tick; | ||
| 308 | } | ||
| 309 | |||
| 310 | void led_matrix_toggle(void) { | ||
| 311 | led_matrix_config.enable ^= 1; | ||
| 312 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
| 313 | } | ||
| 314 | |||
| 315 | void led_matrix_enable(void) { | ||
| 316 | led_matrix_config.enable = 1; | ||
| 317 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
| 318 | } | ||
| 319 | |||
| 320 | void led_matrix_enable_noeeprom(void) { | ||
| 321 | led_matrix_config.enable = 1; | ||
| 322 | } | ||
| 323 | |||
| 324 | void led_matrix_disable(void) { | ||
| 325 | led_matrix_config.enable = 0; | ||
| 326 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
| 327 | } | ||
| 328 | |||
| 329 | void led_matrix_disable_noeeprom(void) { | ||
| 330 | led_matrix_config.enable = 0; | ||
| 331 | } | ||
| 332 | |||
| 333 | void led_matrix_step(void) { | ||
| 334 | led_matrix_config.mode++; | ||
| 335 | if (led_matrix_config.mode >= LED_MATRIX_EFFECT_MAX) { | ||
| 336 | led_matrix_config.mode = 1; | ||
| 337 | } | ||
| 338 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
| 339 | } | ||
| 340 | |||
| 341 | void led_matrix_step_reverse(void) { | ||
| 342 | led_matrix_config.mode--; | ||
| 343 | if (led_matrix_config.mode < 1) { | ||
| 344 | led_matrix_config.mode = LED_MATRIX_EFFECT_MAX - 1; | ||
| 345 | } | ||
| 346 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
| 347 | } | ||
| 348 | |||
| 349 | void led_matrix_increase_val(void) { | ||
| 350 | led_matrix_config.val = increment(led_matrix_config.val, 8, 0, LED_MATRIX_MAXIMUM_BRIGHTNESS); | ||
| 351 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
| 352 | } | ||
| 353 | |||
| 354 | void led_matrix_decrease_val(void) { | ||
| 355 | led_matrix_config.val = decrement(led_matrix_config.val, 8, 0, LED_MATRIX_MAXIMUM_BRIGHTNESS); | ||
| 356 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
| 357 | } | ||
| 358 | |||
| 359 | void led_matrix_increase_speed(void) { | ||
| 360 | led_matrix_config.speed = increment(led_matrix_config.speed, 1, 0, 3); | ||
| 361 | eeconfig_update_led_matrix(led_matrix_config.raw);//EECONFIG needs to be increased to support this | ||
| 362 | } | ||
| 363 | |||
| 364 | void led_matrix_decrease_speed(void) { | ||
| 365 | led_matrix_config.speed = decrement(led_matrix_config.speed, 1, 0, 3); | ||
| 366 | eeconfig_update_led_matrix(led_matrix_config.raw);//EECONFIG needs to be increased to support this | ||
| 367 | } | ||
| 368 | |||
| 369 | void led_matrix_mode(uint8_t mode, bool eeprom_write) { | ||
| 370 | led_matrix_config.mode = mode; | ||
| 371 | if (eeprom_write) { | ||
| 372 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
| 373 | } | ||
| 374 | } | ||
| 375 | |||
| 376 | uint8_t led_matrix_get_mode(void) { | ||
| 377 | return led_matrix_config.mode; | ||
| 378 | } | ||
| 379 | |||
| 380 | void led_matrix_set_value_noeeprom(uint8_t val) { | ||
| 381 | led_matrix_config.val = val; | ||
| 382 | } | ||
| 383 | |||
| 384 | void led_matrix_set_value(uint8_t val) { | ||
| 385 | led_matrix_set_value_noeeprom(val); | ||
| 386 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
| 387 | } | ||
| 388 | |||
| 389 | void backlight_set(uint8_t val) { | ||
| 390 | led_matrix_set_value(val); | ||
| 391 | } | ||
diff --git a/quantum/led_matrix_drivers.c b/quantum/led_matrix_drivers.c new file mode 100644 index 000000000..4ee509ee5 --- /dev/null +++ b/quantum/led_matrix_drivers.c | |||
| @@ -0,0 +1,149 @@ | |||
| 1 | /* Copyright 2018 James Laird-Wah | ||
| 2 | * Copyright 2019 Clueboard | ||
| 3 | * | ||
| 4 | * This program is free software: you can redistribute it and/or modify | ||
| 5 | * it under the terms of the GNU General Public License as published by | ||
| 6 | * the Free Software Foundation, either version 2 of the License, or | ||
| 7 | * (at your option) any later version. | ||
| 8 | * | ||
| 9 | * This program is distributed in the hope that it will be useful, | ||
| 10 | * but WITHOUT ANY WARRANTY; without even the implied warranty of | ||
| 11 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | ||
| 12 | * GNU General Public License for more details. | ||
| 13 | * | ||
| 14 | * You should have received a copy of the GNU General Public License | ||
| 15 | * along with this program. If not, see <http://www.gnu.org/licenses/>. | ||
| 16 | */ | ||
| 17 | |||
| 18 | #include <stdint.h> | ||
| 19 | #include <stdbool.h> | ||
| 20 | #include "quantum.h" | ||
| 21 | #include "ledmatrix.h" | ||
| 22 | |||
| 23 | /* Each driver needs to define a struct: | ||
| 24 | * | ||
| 25 | * const led_matrix_driver_t led_matrix_driver; | ||
| 26 | * | ||
| 27 | * All members must be provided. Keyboard custom drivers must define this | ||
| 28 | * in their own files. | ||
| 29 | */ | ||
| 30 | |||
| 31 | #if defined(IS31FL3731) || defined(IS31FL3733) | ||
| 32 | |||
| 33 | #if defined(IS31FL3731) | ||
| 34 | #include "is31fl3731-simple.h" | ||
| 35 | #endif | ||
| 36 | |||
| 37 | #include "i2c_master.h" | ||
| 38 | |||
| 39 | static void init(void) { | ||
| 40 | i2c_init(); | ||
| 41 | #ifdef IS31FL3731 | ||
| 42 | #ifdef LED_DRIVER_ADDR_1 | ||
| 43 | IS31FL3731_init(LED_DRIVER_ADDR_1); | ||
| 44 | #endif | ||
| 45 | #ifdef LED_DRIVER_ADDR_2 | ||
| 46 | IS31FL3731_init(LED_DRIVER_ADDR_2); | ||
| 47 | #endif | ||
| 48 | #ifdef LED_DRIVER_ADDR_3 | ||
| 49 | IS31FL3731_init(LED_DRIVER_ADDR_3); | ||
| 50 | #endif | ||
| 51 | #ifdef LED_DRIVER_ADDR_4 | ||
| 52 | IS31FL3731_init(LED_DRIVER_ADDR_4); | ||
| 53 | #endif | ||
| 54 | #else | ||
| 55 | #ifdef LED_DRIVER_ADDR_1 | ||
| 56 | IS31FL3733_init(LED_DRIVER_ADDR_1); | ||
| 57 | #endif | ||
| 58 | #ifdef LED_DRIVER_ADDR_2 | ||
| 59 | IS31FL3733_init(LED_DRIVER_ADDR_2); | ||
| 60 | #endif | ||
| 61 | #ifdef LED_DRIVER_ADDR_3 | ||
| 62 | IS31FL3733_init(LED_DRIVER_ADDR_3); | ||
| 63 | #endif | ||
| 64 | #ifdef LED_DRIVER_ADDR_4 | ||
| 65 | IS31FL3733_init(LED_DRIVER_ADDR_4); | ||
| 66 | #endif | ||
| 67 | #endif | ||
| 68 | |||
| 69 | for (int index = 0; index < LED_DRIVER_LED_COUNT; index++) { | ||
| 70 | #ifdef IS31FL3731 | ||
| 71 | IS31FL3731_set_led_control_register(index, true); | ||
| 72 | #else | ||
| 73 | IS31FL3733_set_led_control_register(index, true); | ||
| 74 | #endif | ||
| 75 | } | ||
| 76 | // This actually updates the LED drivers | ||
| 77 | #ifdef IS31FL3731 | ||
| 78 | #ifdef LED_DRIVER_ADDR_1 | ||
| 79 | IS31FL3731_update_led_control_registers(LED_DRIVER_ADDR_1, 0); | ||
| 80 | #endif | ||
| 81 | #ifdef LED_DRIVER_ADDR_2 | ||
| 82 | IS31FL3731_update_led_control_registers(LED_DRIVER_ADDR_2, 1); | ||
| 83 | #endif | ||
| 84 | #ifdef LED_DRIVER_ADDR_3 | ||
| 85 | IS31FL3731_update_led_control_registers(LED_DRIVER_ADDR_3, 2); | ||
| 86 | #endif | ||
| 87 | #ifdef LED_DRIVER_ADDR_4 | ||
| 88 | IS31FL3731_update_led_control_registers(LED_DRIVER_ADDR_4, 3); | ||
| 89 | #endif | ||
| 90 | #else | ||
| 91 | #ifdef LED_DRIVER_ADDR_1 | ||
| 92 | IS31FL3733_update_led_control_registers(LED_DRIVER_ADDR_1, 0); | ||
| 93 | #endif | ||
| 94 | #ifdef LED_DRIVER_ADDR_2 | ||
| 95 | IS31FL3733_update_led_control_registers(LED_DRIVER_ADDR_2, 1); | ||
| 96 | #endif | ||
| 97 | #ifdef LED_DRIVER_ADDR_3 | ||
| 98 | IS31FL3733_update_led_control_registers(LED_DRIVER_ADDR_3, 2); | ||
| 99 | #endif | ||
| 100 | #ifdef LED_DRIVER_ADDR_4 | ||
| 101 | IS31FL3733_update_led_control_registers(LED_DRIVER_ADDR_4, 3); | ||
| 102 | #endif | ||
| 103 | #endif | ||
| 104 | } | ||
| 105 | |||
| 106 | static void flush(void) { | ||
| 107 | #ifdef IS31FL3731 | ||
| 108 | #ifdef LED_DRIVER_ADDR_1 | ||
| 109 | IS31FL3731_update_pwm_buffers(LED_DRIVER_ADDR_1, 0); | ||
| 110 | #endif | ||
| 111 | #ifdef LED_DRIVER_ADDR_2 | ||
| 112 | IS31FL3731_update_pwm_buffers(LED_DRIVER_ADDR_2, 1); | ||
| 113 | #endif | ||
| 114 | #ifdef LED_DRIVER_ADDR_3 | ||
| 115 | IS31FL3731_update_pwm_buffers(LED_DRIVER_ADDR_3, 2); | ||
| 116 | #endif | ||
| 117 | #ifdef LED_DRIVER_ADDR_4 | ||
| 118 | IS31FL3731_update_pwm_buffers(LED_DRIVER_ADDR_4, 3); | ||
| 119 | #endif | ||
| 120 | #else | ||
| 121 | #ifdef LED_DRIVER_ADDR_1 | ||
| 122 | IS31FL3733_update_pwm_buffers(LED_DRIVER_ADDR_1, 0); | ||
| 123 | #endif | ||
| 124 | #ifdef LED_DRIVER_ADDR_2 | ||
| 125 | IS31FL3733_update_pwm_buffers(LED_DRIVER_ADDR_2, 1); | ||
| 126 | #endif | ||
| 127 | #ifdef LED_DRIVER_ADDR_3 | ||
| 128 | IS31FL3733_update_pwm_buffers(LED_DRIVER_ADDR_3, 2); | ||
| 129 | #endif | ||
| 130 | #ifdef LED_DRIVER_ADDR_4 | ||
| 131 | IS31FL3733_update_pwm_buffers(LED_DRIVER_ADDR_4, 3); | ||
| 132 | #endif | ||
| 133 | #endif | ||
| 134 | } | ||
| 135 | |||
| 136 | const led_matrix_driver_t led_matrix_driver = { | ||
| 137 | .init = init, | ||
| 138 | .flush = flush, | ||
| 139 | #ifdef IS31FL3731 | ||
| 140 | .set_value = IS31FL3731_set_value, | ||
| 141 | .set_value_all = IS31FL3731_set_value_all, | ||
| 142 | #else | ||
| 143 | .set_value = IS31FL3733_set_value, | ||
| 144 | .set_value_all = IS31FL3733_set_value_all, | ||
| 145 | #endif | ||
| 146 | }; | ||
| 147 | |||
| 148 | |||
| 149 | #endif | ||
diff --git a/quantum/ledmatrix.h b/quantum/ledmatrix.h new file mode 100644 index 000000000..618c5d676 --- /dev/null +++ b/quantum/ledmatrix.h | |||
| @@ -0,0 +1,129 @@ | |||
| 1 | /* Copyright 2017 Jason Williams | ||
| 2 | * Copyright 2017 Jack Humbert | ||
| 3 | * Copyright 2018 Yiancar | ||
| 4 | * Copyright 2019 Clueboard | ||
| 5 | * | ||
| 6 | * This program is free software: you can redistribute it and/or modify | ||
| 7 | * it under the terms of the GNU General Public License as published by | ||
| 8 | * the Free Software Foundation, either version 2 of the License, or | ||
| 9 | * (at your option) any later version. | ||
| 10 | * | ||
| 11 | * This program is distributed in the hope that it will be useful, | ||
| 12 | * but WITHOUT ANY WARRANTY; without even the implied warranty of | ||
| 13 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | ||
| 14 | * GNU General Public License for more details. | ||
| 15 | * | ||
| 16 | * You should have received a copy of the GNU General Public License | ||
| 17 | * along with this program. If not, see <http://www.gnu.org/licenses/>. | ||
| 18 | */ | ||
| 19 | |||
| 20 | #ifndef LED_MATRIX_H | ||
| 21 | #define LED_MATRIX_H | ||
| 22 | |||
| 23 | |||
| 24 | #ifndef BACKLIGHT_ENABLE | ||
| 25 | #error You must define BACKLIGHT_ENABLE with LED_MATRIX_ENABLE | ||
| 26 | #endif | ||
| 27 | |||
| 28 | |||
| 29 | typedef struct Point { | ||
| 30 | uint8_t x; | ||
| 31 | uint8_t y; | ||
| 32 | } __attribute__((packed)) Point; | ||
| 33 | |||
| 34 | typedef struct led_matrix { | ||
| 35 | union { | ||
| 36 | uint8_t raw; | ||
| 37 | struct { | ||
| 38 | uint8_t row:4; // 16 max | ||
| 39 | uint8_t col:4; // 16 max | ||
| 40 | }; | ||
| 41 | } matrix_co; | ||
| 42 | Point point; | ||
| 43 | uint8_t modifier:1; | ||
| 44 | } __attribute__((packed)) led_matrix; | ||
| 45 | |||
| 46 | extern const led_matrix g_leds[LED_DRIVER_LED_COUNT]; | ||
| 47 | |||
| 48 | typedef struct { | ||
| 49 | uint8_t index; | ||
| 50 | uint8_t value; | ||
| 51 | } led_indicator; | ||
| 52 | |||
| 53 | typedef union { | ||
| 54 | uint32_t raw; | ||
| 55 | struct { | ||
| 56 | bool enable :1; | ||
| 57 | uint8_t mode :6; | ||
| 58 | uint8_t hue :8; // Unused by led_matrix | ||
| 59 | uint8_t sat :8; // Unused by led_matrix | ||
| 60 | uint8_t val :8; | ||
| 61 | uint8_t speed :8;//EECONFIG needs to be increased to support this | ||
| 62 | }; | ||
| 63 | } led_config_t; | ||
| 64 | |||
| 65 | enum led_matrix_effects { | ||
| 66 | LED_MATRIX_UNIFORM_BRIGHTNESS = 1, | ||
| 67 | // All new effects go above this line | ||
| 68 | LED_MATRIX_EFFECT_MAX | ||
| 69 | }; | ||
| 70 | |||
| 71 | void led_matrix_set_index_value(int index, uint8_t value); | ||
| 72 | void led_matrix_set_index_value_all(uint8_t value); | ||
| 73 | |||
| 74 | // This runs after another backlight effect and replaces | ||
| 75 | // colors already set | ||
| 76 | void led_matrix_indicators(void); | ||
| 77 | void led_matrix_indicators_kb(void); | ||
| 78 | void led_matrix_indicators_user(void); | ||
| 79 | |||
| 80 | void led_matrix_init(void); | ||
| 81 | void led_matrix_setup_drivers(void); | ||
| 82 | |||
| 83 | void led_matrix_set_suspend_state(bool state); | ||
| 84 | void led_matrix_set_indicator_state(uint8_t state); | ||
| 85 | |||
| 86 | void led_matrix_task(void); | ||
| 87 | |||
| 88 | // This should not be called from an interrupt | ||
| 89 | // (eg. from a timer interrupt). | ||
| 90 | // Call this while idle (in between matrix scans). | ||
| 91 | // If the buffer is dirty, it will update the driver with the buffer. | ||
| 92 | void led_matrix_update_pwm_buffers(void); | ||
| 93 | |||
| 94 | bool process_led_matrix(uint16_t keycode, keyrecord_t *record); | ||
| 95 | |||
| 96 | uint32_t led_matrix_get_tick(void); | ||
| 97 | |||
| 98 | void led_matrix_toggle(void); | ||
| 99 | void led_matrix_enable(void); | ||
| 100 | void led_matrix_enable_noeeprom(void); | ||
| 101 | void led_matrix_disable(void); | ||
| 102 | void led_matrix_disable_noeeprom(void); | ||
| 103 | void led_matrix_step(void); | ||
| 104 | void led_matrix_step_reverse(void); | ||
| 105 | void led_matrix_increase_val(void); | ||
| 106 | void led_matrix_decrease_val(void); | ||
| 107 | void led_matrix_increase_speed(void); | ||
| 108 | void led_matrix_decrease_speed(void); | ||
| 109 | void led_matrix_mode(uint8_t mode, bool eeprom_write); | ||
| 110 | void led_matrix_mode_noeeprom(uint8_t mode); | ||
| 111 | uint8_t led_matrix_get_mode(void); | ||
| 112 | void led_matrix_set_value(uint8_t mode); | ||
| 113 | void led_matrix_set_value_noeeprom(uint8_t mode); | ||
| 114 | |||
| 115 | typedef struct { | ||
| 116 | /* Perform any initialisation required for the other driver functions to work. */ | ||
| 117 | void (*init)(void); | ||
| 118 | |||
| 119 | /* Set the brightness of a single LED in the buffer. */ | ||
| 120 | void (*set_value)(int index, uint8_t value); | ||
| 121 | /* Set the brightness of all LEDS on the keyboard in the buffer. */ | ||
| 122 | void (*set_value_all)(uint8_t value); | ||
| 123 | /* Flush any buffered changes to the hardware. */ | ||
| 124 | void (*flush)(void); | ||
| 125 | } led_matrix_driver_t; | ||
| 126 | |||
| 127 | extern const led_matrix_driver_t led_matrix_driver; | ||
| 128 | |||
| 129 | #endif | ||
diff --git a/quantum/matrix.c b/quantum/matrix.c index 5b7a0e03b..f7cad1a0f 100644 --- a/quantum/matrix.c +++ b/quantum/matrix.c | |||
| @@ -159,7 +159,7 @@ bool matrix_is_modified(void) | |||
| 159 | inline | 159 | inline |
| 160 | bool matrix_is_on(uint8_t row, uint8_t col) | 160 | bool matrix_is_on(uint8_t row, uint8_t col) |
| 161 | { | 161 | { |
| 162 | return (matrix[row] & ((matrix_row_t)1<col)); | 162 | return (matrix[row] & ((matrix_row_t)1<<col)); |
| 163 | } | 163 | } |
| 164 | 164 | ||
| 165 | inline | 165 | inline |
diff --git a/quantum/process_keycode/process_clicky.c b/quantum/process_keycode/process_clicky.c index 8238c263f..34c3f620b 100644 --- a/quantum/process_keycode/process_clicky.c +++ b/quantum/process_keycode/process_clicky.c | |||
| @@ -32,7 +32,7 @@ extern bool midi_activated; | |||
| 32 | 32 | ||
| 33 | void clicky_play(void) { | 33 | void clicky_play(void) { |
| 34 | #ifndef NO_MUSIC_MODE | 34 | #ifndef NO_MUSIC_MODE |
| 35 | if (music_activated || midi_activated) return; | 35 | if (music_activated || midi_activated || audio_config.enable) return; |
| 36 | #endif // !NO_MUSIC_MODE | 36 | #endif // !NO_MUSIC_MODE |
| 37 | clicky_song[0][0] = 2.0f * clicky_freq * (1.0f + clicky_rand * ( ((float)rand()) / ((float)(RAND_MAX)) ) ); | 37 | clicky_song[0][0] = 2.0f * clicky_freq * (1.0f + clicky_rand * ( ((float)rand()) / ((float)(RAND_MAX)) ) ); |
| 38 | clicky_song[1][0] = clicky_freq * (1.0f + clicky_rand * ( ((float)rand()) / ((float)(RAND_MAX)) ) ); | 38 | clicky_song[1][0] = clicky_freq * (1.0f + clicky_rand * ( ((float)rand()) / ((float)(RAND_MAX)) ) ); |
| @@ -73,27 +73,29 @@ void clicky_off(void) { | |||
| 73 | } | 73 | } |
| 74 | 74 | ||
| 75 | bool is_clicky_on(void) { | 75 | bool is_clicky_on(void) { |
| 76 | return (audio_config.clicky_enable != 0); | 76 | return (audio_config.clicky_enable != 0); |
| 77 | } | 77 | } |
| 78 | 78 | ||
| 79 | bool process_clicky(uint16_t keycode, keyrecord_t *record) { | 79 | bool process_clicky(uint16_t keycode, keyrecord_t *record) { |
| 80 | if (keycode == CLICKY_TOGGLE && record->event.pressed) { clicky_toggle(); } | 80 | if (keycode == CLICKY_TOGGLE && record->event.pressed) { clicky_toggle(); } |
| 81 | 81 | ||
| 82 | if (keycode == CLICKY_ENABLE && record->event.pressed) { clicky_on(); } | 82 | if (keycode == CLICKY_ENABLE && record->event.pressed) { clicky_on(); } |
| 83 | if (keycode == CLICKY_DISABLE && record->event.pressed) { clicky_off(); } | 83 | if (keycode == CLICKY_DISABLE && record->event.pressed) { clicky_off(); } |
| 84 | 84 | ||
| 85 | if (keycode == CLICKY_RESET && record->event.pressed) { clicky_freq_reset(); } | 85 | if (keycode == CLICKY_RESET && record->event.pressed) { clicky_freq_reset(); } |
| 86 | 86 | ||
| 87 | if (keycode == CLICKY_UP && record->event.pressed) { clicky_freq_up(); } | 87 | if (keycode == CLICKY_UP && record->event.pressed) { clicky_freq_up(); } |
| 88 | if (keycode == CLICKY_DOWN && record->event.pressed) { clicky_freq_down(); } | 88 | if (keycode == CLICKY_DOWN && record->event.pressed) { clicky_freq_down(); } |
| 89 | 89 | ||
| 90 | 90 | ||
| 91 | if ( audio_config.clicky_enable ) { | 91 | if (audio_config.enable && audio_config.clicky_enable) { |
| 92 | if (record->event.pressed) { | 92 | if (record->event.pressed) { // Leave this separate so it's easier to add upstroke sound |
| 93 | clicky_play();; | 93 | if (keycode != AU_OFF && keycode != AU_TOG) { // DO NOT PLAY if audio will be disabled, and causes issuse on ARM |
| 94 | clicky_play(); | ||
| 94 | } | 95 | } |
| 95 | } | 96 | } |
| 96 | return true; | 97 | } |
| 98 | return true; | ||
| 97 | } | 99 | } |
| 98 | 100 | ||
| 99 | #endif //AUDIO_CLICKY | 101 | #endif //AUDIO_CLICKY |
diff --git a/quantum/quantum.c b/quantum/quantum.c index 5d8ffe34e..376578ade 100644 --- a/quantum/quantum.c +++ b/quantum/quantum.c | |||
| @@ -195,6 +195,13 @@ void reset_keyboard(void) { | |||
| 195 | #define RSPC_KEY KC_0 | 195 | #define RSPC_KEY KC_0 |
| 196 | #endif | 196 | #endif |
| 197 | 197 | ||
| 198 | #ifndef LSPO_MOD | ||
| 199 | #define LSPO_MOD KC_LSFT | ||
| 200 | #endif | ||
| 201 | #ifndef RSPC_MOD | ||
| 202 | #define RSPC_MOD KC_RSFT | ||
| 203 | #endif | ||
| 204 | |||
| 198 | // Shift / Enter setup | 205 | // Shift / Enter setup |
| 199 | #ifndef SFTENT_KEY | 206 | #ifndef SFTENT_KEY |
| 200 | #define SFTENT_KEY KC_ENT | 207 | #define SFTENT_KEY KC_ENT |
| @@ -674,14 +681,27 @@ bool process_record_quantum(keyrecord_t *record) { | |||
| 674 | } | 681 | } |
| 675 | else { | 682 | else { |
| 676 | #ifdef DISABLE_SPACE_CADET_ROLLOVER | 683 | #ifdef DISABLE_SPACE_CADET_ROLLOVER |
| 677 | if (get_mods() & MOD_BIT(KC_RSFT)) { | 684 | if (get_mods() & MOD_BIT(RSPC_MOD)) { |
| 678 | shift_interrupted[0] = true; | 685 | shift_interrupted[0] = true; |
| 679 | shift_interrupted[1] = true; | 686 | shift_interrupted[1] = true; |
| 680 | } | 687 | } |
| 681 | #endif | 688 | #endif |
| 682 | if (!shift_interrupted[0] && timer_elapsed(scs_timer[0]) < TAPPING_TERM) { | 689 | if (!shift_interrupted[0] && timer_elapsed(scs_timer[0]) < TAPPING_TERM) { |
| 690 | #ifdef DISABLE_SPACE_CADET_MODIFIER | ||
| 691 | unregister_mods(MOD_BIT(KC_LSFT)); | ||
| 692 | #else | ||
| 693 | if( LSPO_MOD != KC_LSFT ){ | ||
| 694 | unregister_mods(MOD_BIT(KC_LSFT)); | ||
| 695 | register_mods(MOD_BIT(LSPO_MOD)); | ||
| 696 | } | ||
| 697 | #endif | ||
| 683 | register_code(LSPO_KEY); | 698 | register_code(LSPO_KEY); |
| 684 | unregister_code(LSPO_KEY); | 699 | unregister_code(LSPO_KEY); |
| 700 | #ifndef DISABLE_SPACE_CADET_MODIFIER | ||
| 701 | if( LSPO_MOD != KC_LSFT ){ | ||
| 702 | unregister_mods(MOD_BIT(LSPO_MOD)); | ||
| 703 | } | ||
| 704 | #endif | ||
| 685 | } | 705 | } |
| 686 | unregister_mods(MOD_BIT(KC_LSFT)); | 706 | unregister_mods(MOD_BIT(KC_LSFT)); |
| 687 | } | 707 | } |
| @@ -696,14 +716,27 @@ bool process_record_quantum(keyrecord_t *record) { | |||
| 696 | } | 716 | } |
| 697 | else { | 717 | else { |
| 698 | #ifdef DISABLE_SPACE_CADET_ROLLOVER | 718 | #ifdef DISABLE_SPACE_CADET_ROLLOVER |
| 699 | if (get_mods() & MOD_BIT(KC_LSFT)) { | 719 | if (get_mods() & MOD_BIT(LSPO_MOD)) { |
| 700 | shift_interrupted[0] = true; | 720 | shift_interrupted[0] = true; |
| 701 | shift_interrupted[1] = true; | 721 | shift_interrupted[1] = true; |
| 702 | } | 722 | } |
| 703 | #endif | 723 | #endif |
| 704 | if (!shift_interrupted[1] && timer_elapsed(scs_timer[1]) < TAPPING_TERM) { | 724 | if (!shift_interrupted[1] && timer_elapsed(scs_timer[1]) < TAPPING_TERM) { |
| 725 | #ifdef DISABLE_SPACE_CADET_MODIFIER | ||
| 726 | unregister_mods(MOD_BIT(KC_RSFT)); | ||
| 727 | #else | ||
| 728 | if( RSPC_MOD != KC_RSFT ){ | ||
| 729 | unregister_mods(MOD_BIT(KC_RSFT)); | ||
| 730 | register_mods(MOD_BIT(RSPC_MOD)); | ||
| 731 | } | ||
| 732 | #endif | ||
| 705 | register_code(RSPC_KEY); | 733 | register_code(RSPC_KEY); |
| 706 | unregister_code(RSPC_KEY); | 734 | unregister_code(RSPC_KEY); |
| 735 | #ifndef DISABLE_SPACE_CADET_MODIFIER | ||
| 736 | if ( RSPC_MOD != KC_RSFT ){ | ||
| 737 | unregister_mods(MOD_BIT(RSPC_MOD)); | ||
| 738 | } | ||
| 739 | #endif | ||
| 707 | } | 740 | } |
| 708 | unregister_mods(MOD_BIT(KC_RSFT)); | 741 | unregister_mods(MOD_BIT(KC_RSFT)); |
| 709 | } | 742 | } |
| @@ -998,7 +1031,11 @@ void matrix_init_quantum() { | |||
| 998 | eeconfig_init(); | 1031 | eeconfig_init(); |
| 999 | } | 1032 | } |
| 1000 | #ifdef BACKLIGHT_ENABLE | 1033 | #ifdef BACKLIGHT_ENABLE |
| 1001 | backlight_init_ports(); | 1034 | #ifdef LED_MATRIX_ENABLE |
| 1035 | led_matrix_init(); | ||
| 1036 | #else | ||
| 1037 | backlight_init_ports(); | ||
| 1038 | #endif | ||
| 1002 | #endif | 1039 | #endif |
| 1003 | #ifdef AUDIO_ENABLE | 1040 | #ifdef AUDIO_ENABLE |
| 1004 | audio_init(); | 1041 | audio_init(); |
| @@ -1034,8 +1071,12 @@ void matrix_scan_quantum() { | |||
| 1034 | matrix_scan_combo(); | 1071 | matrix_scan_combo(); |
| 1035 | #endif | 1072 | #endif |
| 1036 | 1073 | ||
| 1037 | #if defined(BACKLIGHT_ENABLE) && defined(BACKLIGHT_PIN) | 1074 | #if defined(BACKLIGHT_ENABLE) |
| 1038 | backlight_task(); | 1075 | #if defined(LED_MATRIX_ENABLE) |
| 1076 | led_matrix_task(); | ||
| 1077 | #elif defined(BACKLIGHT_PIN) | ||
| 1078 | backlight_task(); | ||
| 1079 | #endif | ||
| 1039 | #endif | 1080 | #endif |
| 1040 | 1081 | ||
| 1041 | #ifdef RGB_MATRIX_ENABLE | 1082 | #ifdef RGB_MATRIX_ENABLE |
| @@ -1448,6 +1489,24 @@ void led_set(uint8_t usb_led) | |||
| 1448 | // PORTE &= ~(1<<6); | 1489 | // PORTE &= ~(1<<6); |
| 1449 | // } | 1490 | // } |
| 1450 | 1491 | ||
| 1492 | #if defined(BACKLIGHT_CAPS_LOCK) && defined(BACKLIGHT_ENABLE) | ||
| 1493 | // Use backlight as Caps Lock indicator | ||
| 1494 | uint8_t bl_toggle_lvl = 0; | ||
| 1495 | |||
| 1496 | if (IS_LED_ON(usb_led, USB_LED_CAPS_LOCK) && !backlight_config.enable) { | ||
| 1497 | // Turning Caps Lock ON and backlight is disabled in config | ||
| 1498 | // Toggling backlight to the brightest level | ||
| 1499 | bl_toggle_lvl = BACKLIGHT_LEVELS; | ||
| 1500 | } else if (IS_LED_OFF(usb_led, USB_LED_CAPS_LOCK) && backlight_config.enable) { | ||
| 1501 | // Turning Caps Lock OFF and backlight is enabled in config | ||
| 1502 | // Toggling backlight and restoring config level | ||
| 1503 | bl_toggle_lvl = backlight_config.level; | ||
| 1504 | } | ||
| 1505 | |||
| 1506 | // Set level without modify backlight_config to keep ability to restore state | ||
| 1507 | backlight_set(bl_toggle_lvl); | ||
| 1508 | #endif | ||
| 1509 | |||
| 1451 | led_set_kb(usb_led); | 1510 | led_set_kb(usb_led); |
| 1452 | } | 1511 | } |
| 1453 | 1512 | ||
diff --git a/quantum/quantum.h b/quantum/quantum.h index 56a6a1a99..c6acf83e5 100644 --- a/quantum/quantum.h +++ b/quantum/quantum.h | |||
| @@ -28,7 +28,11 @@ | |||
| 28 | #include "matrix.h" | 28 | #include "matrix.h" |
| 29 | #include "keymap.h" | 29 | #include "keymap.h" |
| 30 | #ifdef BACKLIGHT_ENABLE | 30 | #ifdef BACKLIGHT_ENABLE |
| 31 | #include "backlight.h" | 31 | #ifdef LED_MATRIX_ENABLE |
| 32 | #include "ledmatrix.h" | ||
| 33 | #else | ||
| 34 | #include "backlight.h" | ||
| 35 | #endif | ||
| 32 | #endif | 36 | #endif |
| 33 | #ifdef RGBLIGHT_ENABLE | 37 | #ifdef RGBLIGHT_ENABLE |
| 34 | #include "rgblight.h" | 38 | #include "rgblight.h" |
diff --git a/quantum/rgblight.c b/quantum/rgblight.c index 23420ddd8..22dce963c 100644 --- a/quantum/rgblight.c +++ b/quantum/rgblight.c | |||
| @@ -19,6 +19,11 @@ | |||
| 19 | #include <avr/eeprom.h> | 19 | #include <avr/eeprom.h> |
| 20 | #include <avr/interrupt.h> | 20 | #include <avr/interrupt.h> |
| 21 | #endif | 21 | #endif |
| 22 | #ifdef STM32_EEPROM_ENABLE | ||
| 23 | #include "hal.h" | ||
| 24 | #include "eeprom.h" | ||
| 25 | #include "eeprom_stm32.h" | ||
| 26 | #endif | ||
| 22 | #include "wait.h" | 27 | #include "wait.h" |
| 23 | #include "progmem.h" | 28 | #include "progmem.h" |
| 24 | #include "timer.h" | 29 | #include "timer.h" |
| @@ -120,15 +125,17 @@ void setrgb(uint8_t r, uint8_t g, uint8_t b, LED_TYPE *led1) { | |||
| 120 | 125 | ||
| 121 | 126 | ||
| 122 | uint32_t eeconfig_read_rgblight(void) { | 127 | uint32_t eeconfig_read_rgblight(void) { |
| 123 | #ifdef __AVR__ | 128 | #if defined(__AVR__) || defined(STM32_EEPROM_ENABLE) || defined(PROTOCOL_ARM_ATSAM) || defined(EEPROM_SIZE) |
| 124 | return eeprom_read_dword(EECONFIG_RGBLIGHT); | 129 | return eeprom_read_dword(EECONFIG_RGBLIGHT); |
| 125 | #else | 130 | #else |
| 126 | return 0; | 131 | return 0; |
| 127 | #endif | 132 | #endif |
| 128 | } | 133 | } |
| 129 | void eeconfig_update_rgblight(uint32_t val) { | 134 | void eeconfig_update_rgblight(uint32_t val) { |
| 130 | #ifdef __AVR__ | 135 | #if defined(__AVR__) || defined(STM32_EEPROM_ENABLE) || defined(PROTOCOL_ARM_ATSAM) || defined(EEPROM_SIZE) |
| 136 | if (eeconfig_read_rgblight() != val) { | ||
| 131 | eeprom_update_dword(EECONFIG_RGBLIGHT, val); | 137 | eeprom_update_dword(EECONFIG_RGBLIGHT, val); |
| 138 | } | ||
| 132 | #endif | 139 | #endif |
| 133 | } | 140 | } |
| 134 | void eeconfig_update_rgblight_default(void) { | 141 | void eeconfig_update_rgblight_default(void) { |
| @@ -331,7 +338,7 @@ void rgblight_disable_noeeprom(void) { | |||
| 331 | #ifdef RGBLIGHT_USE_TIMER | 338 | #ifdef RGBLIGHT_USE_TIMER |
| 332 | rgblight_timer_disable(); | 339 | rgblight_timer_disable(); |
| 333 | #endif | 340 | #endif |
| 334 | _delay_ms(50); | 341 | wait_ms(50); |
| 335 | rgblight_set(); | 342 | rgblight_set(); |
| 336 | } | 343 | } |
| 337 | 344 | ||
diff --git a/quantum/template/avr/config.h b/quantum/template/avr/config.h index d05b2cb98..a31fcf236 100644 --- a/quantum/template/avr/config.h +++ b/quantum/template/avr/config.h | |||
| @@ -131,9 +131,8 @@ along with this program. If not, see <http://www.gnu.org/licenses/>. | |||
| 131 | */ | 131 | */ |
| 132 | 132 | ||
| 133 | /* key combination for magic key command */ | 133 | /* key combination for magic key command */ |
| 134 | #define IS_COMMAND() ( \ | 134 | /* defined by default; to change, uncomment and set to the combination you want */ |
| 135 | keyboard_report->mods == (MOD_BIT(KC_LSHIFT) | MOD_BIT(KC_RSHIFT)) \ | 135 | // #define IS_COMMAND() (get_mods() == (MOD_BIT(KC_LSHIFT) | MOD_BIT(KC_RSHIFT))) |
| 136 | ) | ||
| 137 | 136 | ||
| 138 | /* control how magic key switches layers */ | 137 | /* control how magic key switches layers */ |
| 139 | //#define MAGIC_KEY_SWITCH_LAYER_WITH_FKEYS true | 138 | //#define MAGIC_KEY_SWITCH_LAYER_WITH_FKEYS true |
diff --git a/quantum/template/ps2avrgb/config.h b/quantum/template/ps2avrgb/config.h index 4ff3513bc..01cdf932e 100644 --- a/quantum/template/ps2avrgb/config.h +++ b/quantum/template/ps2avrgb/config.h | |||
| @@ -42,8 +42,9 @@ along with this program. If not, see <http://www.gnu.org/licenses/>. | |||
| 42 | 42 | ||
| 43 | #define NO_UART 1 | 43 | #define NO_UART 1 |
| 44 | 44 | ||
| 45 | /* key combination for command */ | 45 | /* key combination for magic key command */ |
| 46 | #define IS_COMMAND() (keyboard_report->mods == (MOD_BIT(KC_LSHIFT) | MOD_BIT(KC_RSHIFT))) | 46 | /* defined by default; to change, uncomment and set to the combination you want */ |
| 47 | // #define IS_COMMAND() (get_mods() == (MOD_BIT(KC_LSHIFT) | MOD_BIT(KC_RSHIFT))) | ||
| 47 | 48 | ||
| 48 | /* Bootmagic Lite key configuration */ | 49 | /* Bootmagic Lite key configuration */ |
| 49 | // #define BOOTMAGIC_LITE_ROW 0 | 50 | // #define BOOTMAGIC_LITE_ROW 0 |
