diff options
Diffstat (limited to 'quantum')
45 files changed, 3199 insertions, 1044 deletions
diff --git a/quantum/api.c b/quantum/api.c new file mode 100644 index 0000000000..6a7c0a4332 --- /dev/null +++ b/quantum/api.c @@ -0,0 +1,179 @@ +#include "api.h" +#include "quantum.h" + +void dword_to_bytes(uint32_t dword, uint8_t * bytes) { + bytes[0] = (dword >> 24) & 0xFF; + bytes[1] = (dword >> 16) & 0xFF; + bytes[2] = (dword >> 8) & 0xFF; + bytes[3] = (dword >> 0) & 0xFF; +} + +uint32_t bytes_to_dword(uint8_t * bytes, uint8_t index) { + return ((uint32_t)bytes[index + 0] << 24) | ((uint32_t)bytes[index + 1] << 16) | ((uint32_t)bytes[index + 2] << 8) | (uint32_t)bytes[index + 3]; +} + +__attribute__ ((weak)) +bool process_api_quantum(uint8_t length, uint8_t * data) { + return process_api_keyboard(length, data); +} + +__attribute__ ((weak)) +bool process_api_keyboard(uint8_t length, uint8_t * data) { + return process_api_user(length, data); +} + +__attribute__ ((weak)) +bool process_api_user(uint8_t length, uint8_t * data) { + return true; +} + +void process_api(uint16_t length, uint8_t * data) { + // SEND_STRING("\nRX: "); + // for (uint8_t i = 0; i < length; i++) { + // send_byte(data[i]); + // SEND_STRING(" "); + // } + if (!process_api_quantum(length, data)) + return; + + switch (data[0]) { + case MT_SET_DATA: + switch (data[1]) { + case DT_DEFAULT_LAYER: { + eeconfig_update_default_layer(data[2]); + default_layer_set((uint32_t)(data[2])); + break; + } + case DT_KEYMAP_OPTIONS: { + eeconfig_update_keymap(data[2]); + break; + } + case DT_RGBLIGHT: { + #ifdef RGBLIGHT_ENABLE + uint32_t rgblight = bytes_to_dword(data, 2); + rgblight_update_dword(rgblight); + #endif + break; + } + } + case MT_GET_DATA: + switch (data[1]) { + case DT_HANDSHAKE: { + MT_GET_DATA_ACK(DT_HANDSHAKE, NULL, 0); + break; + } + case DT_DEBUG: { + uint8_t debug_bytes[1] = { eeprom_read_byte(EECONFIG_DEBUG) }; + MT_GET_DATA_ACK(DT_DEBUG, debug_bytes, 1); + break; + } + case DT_DEFAULT_LAYER: { + uint8_t default_bytes[1] = { eeprom_read_byte(EECONFIG_DEFAULT_LAYER) }; + MT_GET_DATA_ACK(DT_DEFAULT_LAYER, default_bytes, 1); + break; + } + case DT_CURRENT_LAYER: { + uint8_t layer_state_bytes[4]; + dword_to_bytes(layer_state, layer_state_bytes); + MT_GET_DATA_ACK(DT_CURRENT_LAYER, layer_state_bytes, 4); + break; + } + case DT_AUDIO: { + #ifdef AUDIO_ENABLE + uint8_t audio_bytes[1] = { eeprom_read_byte(EECONFIG_AUDIO) }; + MT_GET_DATA_ACK(DT_AUDIO, audio_bytes, 1); + #else + MT_GET_DATA_ACK(DT_AUDIO, NULL, 0); + #endif + break; + } + case DT_BACKLIGHT: { + #ifdef BACKLIGHT_ENABLE + uint8_t backlight_bytes[1] = { eeprom_read_byte(EECONFIG_BACKLIGHT) }; + MT_GET_DATA_ACK(DT_BACKLIGHT, backlight_bytes, 1); + #else + MT_GET_DATA_ACK(DT_BACKLIGHT, NULL, 0); + #endif + break; + } + case DT_RGBLIGHT: { + #ifdef RGBLIGHT_ENABLE + uint8_t rgblight_bytes[4]; + dword_to_bytes(eeconfig_read_rgblight(), rgblight_bytes); + MT_GET_DATA_ACK(DT_RGBLIGHT, rgblight_bytes, 4); + #else + MT_GET_DATA_ACK(DT_RGBLIGHT, NULL, 0); + #endif + break; + } + case DT_KEYMAP_OPTIONS: { + uint8_t keymap_bytes[1] = { eeconfig_read_keymap() }; + MT_GET_DATA_ACK(DT_KEYMAP_OPTIONS, keymap_bytes, 1); + break; + } + case DT_KEYMAP_SIZE: { + uint8_t keymap_size[2] = {MATRIX_ROWS, MATRIX_COLS}; + MT_GET_DATA_ACK(DT_KEYMAP_SIZE, keymap_size, 2); + break; + } + // This may be too much + // case DT_KEYMAP: { + // uint8_t keymap_data[MATRIX_ROWS * MATRIX_COLS * 4 + 3]; + // keymap_data[0] = data[2]; + // keymap_data[1] = MATRIX_ROWS; + // keymap_data[2] = MATRIX_COLS; + // for (int i = 0; i < MATRIX_ROWS; i++) { + // for (int j = 0; j < MATRIX_COLS; j++) { + // keymap_data[3 + (i*MATRIX_COLS*2) + (j*2)] = pgm_read_word(&keymaps[data[2]][i][j]) >> 8; + // keymap_data[3 + (i*MATRIX_COLS*2) + (j*2) + 1] = pgm_read_word(&keymaps[data[2]][i][j]) & 0xFF; + // } + // } + // MT_GET_DATA_ACK(DT_KEYMAP, keymap_data, MATRIX_ROWS * MATRIX_COLS * 4 + 3); + // // uint8_t keymap_data[5]; + // // keymap_data[0] = data[2]; + // // keymap_data[1] = data[3]; + // // keymap_data[2] = data[4]; + // // keymap_data[3] = pgm_read_word(&keymaps[data[2]][data[3]][data[4]]) >> 8; + // // keymap_data[4] = pgm_read_word(&keymaps[data[2]][data[3]][data[4]]) & 0xFF; + + // // MT_GET_DATA_ACK(DT_KEYMAP, keymap_data, 5); + // break; + // } + default: + break; + } + break; + case MT_SET_DATA_ACK: + case MT_GET_DATA_ACK: + break; + case MT_SEND_DATA: + break; + case MT_SEND_DATA_ACK: + break; + case MT_EXE_ACTION: + break; + case MT_EXE_ACTION_ACK: + break; + case MT_TYPE_ERROR: + break; + default: ; // command not recognised + SEND_BYTES(MT_TYPE_ERROR, DT_NONE, data, length); + break; + + // #ifdef RGBLIGHT_ENABLE + // case 0x27: ; // RGB LED functions + // switch (*data++) { + // case 0x00: ; // Update HSV + // rgblight_sethsv((data[0] << 8 | data[1]) % 360, data[2], data[3]); + // break; + // case 0x01: ; // Update RGB + // break; + // case 0x02: ; // Update mode + // rgblight_mode(data[0]); + // break; + // } + // break; + // #endif + } + +}
\ No newline at end of file diff --git a/quantum/api.h b/quantum/api.h new file mode 100644 index 0000000000..00dcdb8954 --- /dev/null +++ b/quantum/api.h @@ -0,0 +1,59 @@ +#ifndef _API_H_ +#define _API_H_ + +#include "lufa.h" + +enum MESSAGE_TYPE { + MT_GET_DATA = 0x10, // Get data from keyboard + MT_GET_DATA_ACK = 0x11, // returned data to process (ACK) + MT_SET_DATA = 0x20, // Set data on keyboard + MT_SET_DATA_ACK = 0x21, // returned data to confirm (ACK) + MT_SEND_DATA = 0x30, // Sending data/action from keyboard + MT_SEND_DATA_ACK = 0x31, // returned data/action confirmation (ACK) + MT_EXE_ACTION = 0x40, // executing actions on keyboard + MT_EXE_ACTION_ACK =0x41, // return confirmation/value (ACK) + MT_TYPE_ERROR = 0x80 // type not recofgnised (ACK) +}; + +enum DATA_TYPE { + DT_NONE = 0x00, + DT_HANDSHAKE, + DT_DEFAULT_LAYER, + DT_CURRENT_LAYER, + DT_KEYMAP_OPTIONS, + DT_BACKLIGHT, + DT_RGBLIGHT, + DT_UNICODE, + DT_DEBUG, + DT_AUDIO, + DT_QUANTUM_ACTION, + DT_KEYBOARD_ACTION, + DT_USER_ACTION, + DT_KEYMAP_SIZE, + DT_KEYMAP +}; + +void dword_to_bytes(uint32_t dword, uint8_t * bytes); +uint32_t bytes_to_dword(uint8_t * bytes, uint8_t index); + +#define MT_GET_DATA(data_type, data, length) SEND_BYTES(MT_GET_DATA, data_type, data, length) +#define MT_GET_DATA_ACK(data_type, data, length) SEND_BYTES(MT_GET_DATA_ACK, data_type, data, length) +#define MT_SET_DATA(data_type, data, length) SEND_BYTES(MT_SET_DATA, data_type, data, length) +#define MT_SET_DATA_ACK(data_type, data, length) SEND_BYTES(MT_SET_DATA_ACK, data_type, data, length) +#define MT_SEND_DATA(data_type, data, length) SEND_BYTES(MT_SEND_DATA, data_type, data, length) +#define MT_SEND_DATA_ACK(data_type, data, length) SEND_BYTES(MT_SEND_DATA_ACK, data_type, data, length) +#define MT_EXE_ACTION(data_type, data, length) SEND_BYTES(MT_EXE_ACTION, data_type, data, length) +#define MT_EXE_ACTION_ACK(data_type, data, length) SEND_BYTES(MT_EXE_ACTION_ACK, data_type, data, length) + +void process_api(uint16_t length, uint8_t * data); + +__attribute__ ((weak)) +bool process_api_quantum(uint8_t length, uint8_t * data); + +__attribute__ ((weak)) +bool process_api_keyboard(uint8_t length, uint8_t * data); + +__attribute__ ((weak)) +bool process_api_user(uint8_t length, uint8_t * data); + +#endif
\ No newline at end of file diff --git a/quantum/api/api_sysex.c b/quantum/api/api_sysex.c new file mode 100644 index 0000000000..868f854b92 --- /dev/null +++ b/quantum/api/api_sysex.c @@ -0,0 +1,57 @@ +#include "api_sysex.h" +#include "sysex_tools.h" +#include "print.h" + +void send_bytes_sysex(uint8_t message_type, uint8_t data_type, uint8_t * bytes, uint16_t length) { + // SEND_STRING("\nTX: "); + // for (uint8_t i = 0; i < length; i++) { + // send_byte(bytes[i]); + // SEND_STRING(" "); + // } + if (length > API_SYSEX_MAX_SIZE) { + xprintf("Sysex msg too big %d %d %d", message_type, data_type, length); + return; + } + + + // The buffer size required is calculated as the following + // API_SYSEX_MAX_SIZE is the maximum length + // In addition to that we have a two byte message header consisting of the message_type and data_type + // This has to be encoded with an additional overhead of one byte for every starting 7 bytes + // We just add one extra byte in case it's not divisible by 7 + // Then we have an unencoded header consisting of 4 bytes + // Plus a one byte terminator + const unsigned message_header = 2; + const unsigned unencoded_message = API_SYSEX_MAX_SIZE + message_header; + const unsigned encoding_overhead = unencoded_message / 7 + 1; + const unsigned encoded_size = unencoded_message + encoding_overhead; + const unsigned unencoded_header = 4; + const unsigned terminator = 1; + const unsigned buffer_size = encoded_size + unencoded_header + terminator; + uint8_t buffer[encoded_size + unencoded_header + terminator]; + // The unencoded header + buffer[0] = 0xF0; + buffer[1] = 0x00; + buffer[2] = 0x00; + buffer[3] = 0x00; + + // We copy the message to the end of the array, this way we can do an inplace encoding, using the same + // buffer for both input and output + const unsigned message_size = length + message_header; + uint8_t* unencoded_start = buffer + buffer_size - message_size; + uint8_t* ptr = unencoded_start; + *(ptr++) = message_type; + *(ptr++) = data_type; + memcpy(ptr, bytes, length); + + unsigned encoded_length = sysex_encode(buffer + unencoded_header, unencoded_start, message_size); + unsigned final_size = unencoded_header + encoded_length + terminator; + buffer[final_size - 1] = 0xF7; + midi_send_array(&midi_device, final_size, buffer); + + // SEND_STRING("\nTD: "); + // for (uint8_t i = 0; i < encoded_length + 5; i++) { + // send_byte(buffer[i]); + // SEND_STRING(" "); + // } +} diff --git a/quantum/api/api_sysex.h b/quantum/api/api_sysex.h new file mode 100644 index 0000000000..b947b60e54 --- /dev/null +++ b/quantum/api/api_sysex.h @@ -0,0 +1,10 @@ +#ifndef _API_SYSEX_H_ +#define _API_SYSEX_H_ + +#include "api.h" + +void send_bytes_sysex(uint8_t message_type, uint8_t data_type, uint8_t * bytes, uint16_t length); + +#define SEND_BYTES(mt, dt, b, l) send_bytes_sysex(mt, dt, b, l) + +#endif
\ No newline at end of file diff --git a/quantum/audio/audio.c b/quantum/audio/audio.c index ead5fbf3e9..2a315fd168 100644 --- a/quantum/audio/audio.c +++ b/quantum/audio/audio.c @@ -77,6 +77,7 @@ static bool audio_initialized = false; audio_config_t audio_config; uint16_t envelope_index = 0; +bool glissando = true; void audio_init() { @@ -205,13 +206,17 @@ ISR(TIMER3_COMPA_vect) freq = frequencies[voice_place]; #endif } else { - if (frequency != 0 && frequency < frequencies[voices - 1] && frequency < frequencies[voices - 1] * pow(2, -440/frequencies[voices - 1]/12/2)) { - frequency = frequency * pow(2, 440/frequency/12/2); - } else if (frequency != 0 && frequency > frequencies[voices - 1] && frequency > frequencies[voices - 1] * pow(2, 440/frequencies[voices - 1]/12/2)) { - frequency = frequency * pow(2, -440/frequency/12/2); + if (glissando) { + if (frequency != 0 && frequency < frequencies[voices - 1] && frequency < frequencies[voices - 1] * pow(2, -440/frequencies[voices - 1]/12/2)) { + frequency = frequency * pow(2, 440/frequency/12/2); + } else if (frequency != 0 && frequency > frequencies[voices - 1] && frequency > frequencies[voices - 1] * pow(2, 440/frequencies[voices - 1]/12/2)) { + frequency = frequency * pow(2, -440/frequency/12/2); + } else { + frequency = frequencies[voices - 1]; + } } else { frequency = frequencies[voices - 1]; - } + } #ifdef VIBRATO_ENABLE if (vibrato_strength > 0) { diff --git a/quantum/audio/voices.c b/quantum/audio/voices.c index 6d4172a06c..c2edb75f01 100644 --- a/quantum/audio/voices.c +++ b/quantum/audio/voices.c @@ -6,6 +6,7 @@ extern uint16_t envelope_index; extern float note_timbre; extern float polyphony_rate; +extern bool glissando; voice_type voice = default_voice; @@ -18,20 +19,132 @@ void voice_iterate() { } void voice_deiterate() { - voice = (voice - 1) % number_of_voices; + voice = (voice - 1 + number_of_voices) % number_of_voices; } float voice_envelope(float frequency) { // envelope_index ranges from 0 to 0xFFFF, which is preserved at 880.0 Hz + __attribute__ ((unused)) uint16_t compensated_index = (uint16_t)((float)envelope_index * (880.0 / frequency)); switch (voice) { case default_voice: + glissando = true; note_timbre = TIMBRE_50; polyphony_rate = 0; break; + #ifdef AUDIO_VOICES + + case something: + glissando = false; + polyphony_rate = 0; + switch (compensated_index) { + case 0 ... 9: + note_timbre = TIMBRE_12; + break; + + case 10 ... 19: + note_timbre = TIMBRE_25; + break; + + case 20 ... 200: + note_timbre = .125 + .125; + break; + + default: + note_timbre = .125; + break; + } + break; + + case drums: + glissando = false; + polyphony_rate = 0; + // switch (compensated_index) { + // case 0 ... 10: + // note_timbre = 0.5; + // break; + // case 11 ... 20: + // note_timbre = 0.5 * (21 - compensated_index) / 10; + // break; + // default: + // note_timbre = 0; + // break; + // } + // frequency = (rand() % (int)(frequency * 1.2 - frequency)) + (frequency * 0.8); + + if (frequency < 80.0) { + + } else if (frequency < 160.0) { + + // Bass drum: 60 - 100 Hz + frequency = (rand() % (int)(40)) + 60; + switch (envelope_index) { + case 0 ... 10: + note_timbre = 0.5; + break; + case 11 ... 20: + note_timbre = 0.5 * (21 - envelope_index) / 10; + break; + default: + note_timbre = 0; + break; + } + + } else if (frequency < 320.0) { + + + // Snare drum: 1 - 2 KHz + frequency = (rand() % (int)(1000)) + 1000; + switch (envelope_index) { + case 0 ... 5: + note_timbre = 0.5; + break; + case 6 ... 20: + note_timbre = 0.5 * (21 - envelope_index) / 15; + break; + default: + note_timbre = 0; + break; + } + + } else if (frequency < 640.0) { + + // Closed Hi-hat: 3 - 5 KHz + frequency = (rand() % (int)(2000)) + 3000; + switch (envelope_index) { + case 0 ... 15: + note_timbre = 0.5; + break; + case 16 ... 20: + note_timbre = 0.5 * (21 - envelope_index) / 5; + break; + default: + note_timbre = 0; + break; + } + + } else if (frequency < 1280.0) { + + // Open Hi-hat: 3 - 5 KHz + frequency = (rand() % (int)(2000)) + 3000; + switch (envelope_index) { + case 0 ... 35: + note_timbre = 0.5; + break; + case 36 ... 50: + note_timbre = 0.5 * (51 - envelope_index) / 15; + break; + default: + note_timbre = 0; + break; + } + + } + break; case butts_fader: + glissando = true; polyphony_rate = 0; switch (compensated_index) { case 0 ... 9: @@ -79,6 +192,7 @@ float voice_envelope(float frequency) { case duty_osc: // This slows the loop down a substantial amount, so higher notes may freeze + glissando = true; polyphony_rate = 0; switch (compensated_index) { default: @@ -93,6 +207,7 @@ float voice_envelope(float frequency) { break; case duty_octave_down: + glissando = true; polyphony_rate = 0; note_timbre = (envelope_index % 2) * .125 + .375 * 2; if ((envelope_index % 4) == 0) @@ -101,6 +216,7 @@ float voice_envelope(float frequency) { note_timbre = 0; break; case delayed_vibrato: + glissando = true; polyphony_rate = 0; note_timbre = TIMBRE_50; #define VOICE_VIBRATO_DELAY 150 @@ -155,11 +271,11 @@ float voice_envelope(float frequency) { // note_timbre = 0.25; // break; + #endif + default: break; } return frequency; } - - diff --git a/quantum/audio/voices.h b/quantum/audio/voices.h index b2495b23b5..52f7e006d6 100644 --- a/quantum/audio/voices.h +++ b/quantum/audio/voices.h @@ -11,6 +11,9 @@ float voice_envelope(float frequency); typedef enum { default_voice, + #ifdef AUDIO_VOICES + something, + drums, butts_fader, octave_crunch, duty_osc, @@ -21,6 +24,7 @@ typedef enum { // duty_fourth_down, // duty_third_down, // duty_fifth_third_down, + #endif number_of_voices // important that this is last } voice_type; diff --git a/quantum/config_common.h b/quantum/config_common.h index 8ed5f4a106..28f68b9c70 100644 --- a/quantum/config_common.h +++ b/quantum/config_common.h @@ -2,58 +2,61 @@ #define CONFIG_DEFINITIONS_H /* diode directions */ -#define COL2ROW 0 -#define ROW2COL 1 -/* I/O pins */ -#define B0 0x30 -#define B1 0x31 -#define B2 0x32 -#define B3 0x33 -#define B4 0x34 -#define B5 0x35 -#define B6 0x36 -#define B7 0x37 -#define C0 0x60 -#define C1 0x61 -#define C2 0x62 -#define C3 0x63 -#define C4 0x64 -#define C5 0x65 -#define C6 0x66 -#define C7 0x67 -#define D0 0x90 -#define D1 0x91 -#define D2 0x92 -#define D3 0x93 -#define D4 0x94 -#define D5 0x95 -#define D6 0x96 -#define D7 0x97 -#define E0 0xC0 -#define E1 0xC1 -#define E2 0xC2 -#define E3 0xC3 -#define E4 0xC4 -#define E5 0xC5 -#define E6 0xC6 -#define E7 0xC7 -#define F0 0xF0 -#define F1 0xF1 -#define F2 0xF2 -#define F3 0xF3 -#define F4 0xF4 -#define F5 0xF5 -#define F6 0xF6 -#define F7 0xF7 -#define A0 0x00 -#define A1 0x01 -#define A2 0x02 -#define A3 0x03 -#define A4 0x04 -#define A5 0x05 -#define A6 0x06 -#define A7 0x07 +#define COL2ROW 0 +#define ROW2COL 1 +#define CUSTOM_MATRIX 2 /* Disables built-in matrix scanning code */ +/* I/O pins */ +#ifndef F0 + #define B0 0x30 + #define B1 0x31 + #define B2 0x32 + #define B3 0x33 + #define B4 0x34 + #define B5 0x35 + #define B6 0x36 + #define B7 0x37 + #define C0 0x60 + #define C1 0x61 + #define C2 0x62 + #define C3 0x63 + #define C4 0x64 + #define C5 0x65 + #define C6 0x66 + #define C7 0x67 + #define D0 0x90 + #define D1 0x91 + #define D2 0x92 + #define D3 0x93 + #define D4 0x94 + #define D5 0x95 + #define D6 0x96 + #define D7 0x97 + #define E0 0xC0 + #define E1 0xC1 + #define E2 0xC2 + #define E3 0xC3 + #define E4 0xC4 + #define E5 0xC5 + #define E6 0xC6 + #define E7 0xC7 + #define F0 0xF0 + #define F1 0xF1 + #define F2 0xF2 + #define F3 0xF3 + #define F4 0xF4 + #define F5 0xF5 + #define F6 0xF6 + #define F7 0xF7 + #define A0 0x00 + #define A1 0x01 + #define A2 0x02 + #define A3 0x03 + #define A4 0x04 + #define A5 0x05 + #define A6 0x06 + #define A7 0x07 +#endif /* USART configuration */ #ifdef BLUETOOTH_ENABLE @@ -76,53 +79,9 @@ } while(0) # else # error "USART configuration is needed." +# endif #endif -// I'm fairly sure these aren't needed, but oh well - Jack - -/* - * PS/2 Interrupt configuration - */ -#ifdef PS2_USE_INT -/* uses INT1 for clock line(ATMega32U4) */ -#define PS2_CLOCK_PORT PORTD -#define PS2_CLOCK_PIN PIND -#define PS2_CLOCK_DDR DDRD -#define PS2_CLOCK_BIT 1 - -#define PS2_DATA_PORT PORTD -#define PS2_DATA_PIN PIND -#define PS2_DATA_DDR DDRD -#define PS2_DATA_BIT 0 - -#define PS2_INT_INIT() do { \ - EICRA |= ((1<<ISC11) | \ - (0<<ISC10)); \ -} while (0) -#define PS2_INT_ON() do { \ - EIMSK |= (1<<INT1); \ -} while (0) -#define PS2_INT_OFF() do { \ - EIMSK &= ~(1<<INT1); \ -} while (0) -#define PS2_INT_VECT INT1_vect -#endif - -/* - * PS/2 Busywait configuration - */ -#ifdef PS2_USE_BUSYWAIT -#define PS2_CLOCK_PORT PORTD -#define PS2_CLOCK_PIN PIND -#define PS2_CLOCK_DDR DDRD -#define PS2_CLOCK_BIT 1 - -#define PS2_DATA_PORT PORTD -#define PS2_DATA_PIN PIND -#define PS2_DATA_DDR DDRD -#define PS2_DATA_BIT 0 -#endif - -#endif +#define API_SYSEX_MAX_SIZE 32 #endif diff --git a/quantum/fauxclicky.c b/quantum/fauxclicky.c new file mode 100644 index 0000000000..13273e7058 --- /dev/null +++ b/quantum/fauxclicky.c @@ -0,0 +1,68 @@ +/* +Copyright 2017 Priyadi Iman Nurcahyo + +This program is free software: you can redistribute it and/or modify +it under the terms of the GNU General Public License as published by +the Free Software Foundation, either version 2 of the License, or +(at your option) any later version. +This program is distributed in the hope that it will be useful, +but WITHOUT ANY WARRANTY; without even the implied warranty of +MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the +GNU General Public License for more details. +You should have received a copy of the GNU General Public License +along with this program. If not, see <http://www.gnu.org/licenses/>. +*/ + +#include <avr/interrupt.h> +#include <avr/io.h> +#include <timer.h> +#include <fauxclicky.h> +#include <stdbool.h> +#include <musical_notes.h> + +__attribute__ ((weak)) +float fauxclicky_pressed_note[2] = MUSICAL_NOTE(_F3, 2); +__attribute__ ((weak)) +float fauxclicky_released_note[2] = MUSICAL_NOTE(_A3, 2); +__attribute__ ((weak)) +float fauxclicky_beep_note[2] = MUSICAL_NOTE(_C3, 2); + +bool fauxclicky_enabled = true; +uint16_t note_start = 0; +bool note_playing = false; +uint16_t note_period = 0; + +void fauxclicky_init() +{ + // Set port PC6 (OC3A and /OC4A) as output + DDRC |= _BV(PORTC6); + + // TCCR3A / TCCR3B: Timer/Counter #3 Control Registers + TCCR3A = (0 << COM3A1) | (0 << COM3A0) | (1 << WGM31) | (0 << WGM30); + TCCR3B = (1 << WGM33) | (1 << WGM32) | (0 << CS32) | (1 << CS31) | (0 << CS30); +} + +void fauxclicky_stop() +{ + FAUXCLICKY_DISABLE_OUTPUT; + note_playing = false; +} + +void fauxclicky_play(float note[2]) { + if (!fauxclicky_enabled) return; + if (note_playing) fauxclicky_stop(); + FAUXCLICKY_TIMER_PERIOD = (uint16_t)(((float)F_CPU) / (note[0] * FAUXCLICKY_CPU_PRESCALER)); + FAUXCLICKY_DUTY_CYCLE = (uint16_t)((((float)F_CPU) / (note[0] * FAUXCLICKY_CPU_PRESCALER)) / 2); + note_playing = true; + note_period = (note[1] / 16) * (60 / (float)FAUXCLICKY_TEMPO) * 100; // check this + note_start = timer_read(); + FAUXCLICKY_ENABLE_OUTPUT; +} + +void fauxclicky_check() { + if (!note_playing) return; + + if (timer_elapsed(note_start) > note_period) { + fauxclicky_stop(); + } +} diff --git a/quantum/fauxclicky.h b/quantum/fauxclicky.h new file mode 100644 index 0000000000..109bd0d83e --- /dev/null +++ b/quantum/fauxclicky.h @@ -0,0 +1,99 @@ +/* +Copyright 2017 Priyadi Iman Nurcahyo + +This program is free software: you can redistribute it and/or modify +it under the terms of the GNU General Public License as published by +the Free Software Foundation, either version 2 of the License, or +(at your option) any later version. +This program is distributed in the hope that it will be useful, +but WITHOUT ANY WARRANTY; without even the implied warranty of +MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the +GNU General Public License for more details. +You should have received a copy of the GNU General Public License +along with this program. If not, see <http://www.gnu.org/licenses/>. +*/ + +#ifdef AUDIO_ENABLE +#error "AUDIO_ENABLE and FAUXCLICKY_ENABLE cannot be both enabled" +#endif + +#include "musical_notes.h" +#include "stdbool.h" + +__attribute__ ((weak)) +float fauxclicky_pressed_note[2]; +__attribute__ ((weak)) +float fauxclicky_released_note[2]; +__attribute__ ((weak)) +float fauxclicky_beep_note[2]; + +bool fauxclicky_enabled; + +// +// tempo in BPM +// + +#ifndef FAUXCLICKY_TEMPO +#define FAUXCLICKY_TEMPO TEMPO_DEFAULT +#endif + +// beep on press +#define FAUXCLICKY_ACTION_PRESS fauxclicky_play(fauxclicky_pressed_note) + +// beep on release +#define FAUXCLICKY_ACTION_RELEASE fauxclicky_play(fauxclicky_released_note) + +// general purpose beep +#define FAUXCLICKY_BEEP fauxclicky_play(fauxclicky_beep_note) + +// enable +#define FAUXCLICKY_ON fauxclicky_enabled = true + +// disable +#define FAUXCLICKY_OFF do { \ + fauxclicky_enabled = false; \ + fauxclicky_stop(); \ +} while (0) + +// toggle +#define FAUXCLICKY_TOGGLE do { \ + if (fauxclicky_enabled) { \ + FAUXCLICKY_OFF; \ + } else { \ + FAUXCLICKY_ON; \ + } \ +} while (0) + +// +// pin configuration +// + +#ifndef FAUXCLICKY_CPU_PRESCALER +#define FAUXCLICKY_CPU_PRESCALER 8 +#endif + +#ifndef FAUXCLICKY_ENABLE_OUTPUT +#define FAUXCLICKY_ENABLE_OUTPUT TCCR3A |= _BV(COM3A1); +#endif + +#ifndef FAUXCLICKY_DISABLE_OUTPUT +#define FAUXCLICKY_DISABLE_OUTPUT TCCR3A &= ~(_BV(COM3A1) | _BV(COM3A0)); +#endif + +#ifndef FAUXCLICKY_TIMER_PERIOD +#define FAUXCLICKY_TIMER_PERIOD ICR3 +#endif + +#ifndef FAUXCLICKY_DUTY_CYCLE +#define FAUXCLICKY_DUTY_CYCLE OCR3A +#endif + +// +// definitions +// + +void fauxclicky_init(void); +void fauxclicky_stop(void); +void fauxclicky_play(float note[2]); +void fauxclicky_check(void); + diff --git a/quantum/keymap.h b/quantum/keymap.h index a01bbfbd14..c000d2da8e 100644 --- a/quantum/keymap.h +++ b/quantum/keymap.h @@ -38,313 +38,16 @@ along with this program. If not, see <http://www.gnu.org/licenses/>. #define RESET QK_RESET #endif -/* translates key to keycode */ +#include "quantum_keycodes.h" + +// translates key to keycode uint16_t keymap_key_to_keycode(uint8_t layer, keypos_t key); +// translates function id to action +uint16_t keymap_function_id_to_action( uint16_t function_id ); + extern const uint16_t keymaps[][MATRIX_ROWS][MATRIX_COLS]; extern const uint16_t fn_actions[]; -enum quantum_keycodes { - // Ranges used in shortucuts - not to be used directly - QK_TMK = 0x0000, - QK_TMK_MAX = 0x00FF, - QK_MODS = 0x0100, - QK_LCTL = 0x0100, - QK_LSFT = 0x0200, - QK_LALT = 0x0400, - QK_LGUI = 0x0800, - QK_RCTL = 0x1100, - QK_RSFT = 0x1200, - QK_RALT = 0x1400, - QK_RGUI = 0x1800, - QK_MODS_MAX = 0x1FFF, - QK_FUNCTION = 0x2000, - QK_FUNCTION_MAX = 0x2FFF, - QK_MACRO = 0x3000, - QK_MACRO_MAX = 0x3FFF, - QK_LAYER_TAP = 0x4000, - QK_LAYER_TAP_MAX = 0x4FFF, - QK_TO = 0x5000, - QK_TO_MAX = 0x50FF, - QK_MOMENTARY = 0x5100, - QK_MOMENTARY_MAX = 0x51FF, - QK_DEF_LAYER = 0x5200, - QK_DEF_LAYER_MAX = 0x52FF, - QK_TOGGLE_LAYER = 0x5300, - QK_TOGGLE_LAYER_MAX = 0x53FF, - QK_ONE_SHOT_LAYER = 0x5400, - QK_ONE_SHOT_LAYER_MAX = 0x54FF, - QK_ONE_SHOT_MOD = 0x5500, - QK_ONE_SHOT_MOD_MAX = 0x55FF, -#ifndef DISABLE_CHORDING - QK_CHORDING = 0x5600, - QK_CHORDING_MAX = 0x56FF, -#endif - QK_MOD_TAP = 0x6000, - QK_MOD_TAP_MAX = 0x6FFF, - QK_TAP_DANCE = 0x7100, - QK_TAP_DANCE_MAX = 0x71FF, -#ifdef UNICODEMAP_ENABLE - QK_UNICODE_MAP = 0x7800, - QK_UNICODE_MAP_MAX = 0x7FFF, -#endif -#ifdef UNICODE_ENABLE - QK_UNICODE = 0x8000, - QK_UNICODE_MAX = 0xFFFF, -#endif - - // Loose keycodes - to be used directly - - RESET = 0x7000, - DEBUG, - MAGIC_SWAP_CONTROL_CAPSLOCK, - MAGIC_CAPSLOCK_TO_CONTROL, - MAGIC_SWAP_LALT_LGUI, - MAGIC_SWAP_RALT_RGUI, - MAGIC_NO_GUI, - MAGIC_SWAP_GRAVE_ESC, - MAGIC_SWAP_BACKSLASH_BACKSPACE, - MAGIC_HOST_NKRO, - MAGIC_SWAP_ALT_GUI, - MAGIC_UNSWAP_CONTROL_CAPSLOCK, - MAGIC_UNCAPSLOCK_TO_CONTROL, - MAGIC_UNSWAP_LALT_LGUI, - MAGIC_UNSWAP_RALT_RGUI, - MAGIC_UNNO_GUI, - MAGIC_UNSWAP_GRAVE_ESC, - MAGIC_UNSWAP_BACKSLASH_BACKSPACE, - MAGIC_UNHOST_NKRO, - MAGIC_UNSWAP_ALT_GUI, - MAGIC_TOGGLE_NKRO, - - // Leader key -#ifndef DISABLE_LEADER - KC_LEAD, -#endif - - // Audio on/off/toggle - AU_ON, - AU_OFF, - AU_TOG, - - // Music mode on/off/toggle - MU_ON, - MU_OFF, - MU_TOG, - - // Music voice iterate - MUV_IN, - MUV_DE, - - // Midi mode on/off - MIDI_ON, - MIDI_OFF, - - // Backlight functionality - BL_0, - BL_1, - BL_2, - BL_3, - BL_4, - BL_5, - BL_6, - BL_7, - BL_8, - BL_9, - BL_10, - BL_11, - BL_12, - BL_13, - BL_14, - BL_15, - BL_DEC, - BL_INC, - BL_TOGG, - BL_STEP, - - // RGB functionality - RGB_TOG, - RGB_MOD, - RGB_HUI, - RGB_HUD, - RGB_SAI, - RGB_SAD, - RGB_VAI, - RGB_VAD, - - // Left shift, open paren - KC_LSPO, - - // Right shift, close paren - KC_RSPC, - - // always leave at the end - SAFE_RANGE -}; - -// Ability to use mods in layouts -#define LCTL(kc) (kc | QK_LCTL) -#define LSFT(kc) (kc | QK_LSFT) -#define LALT(kc) (kc | QK_LALT) -#define LGUI(kc) (kc | QK_LGUI) -#define RCTL(kc) (kc | QK_RCTL) -#define RSFT(kc) (kc | QK_RSFT) -#define RALT(kc) (kc | QK_RALT) -#define RGUI(kc) (kc | QK_RGUI) - -#define HYPR(kc) (kc | QK_LCTL | QK_LSFT | QK_LALT | QK_LGUI) -#define MEH(kc) (kc | QK_LCTL | QK_LSFT | QK_LALT) -#define LCAG(kc) (kc | QK_LCTL | QK_LALT | QK_LGUI) -#define ALTG(kc) (kc | QK_RCTL | QK_RALT) - -#define MOD_HYPR 0xf -#define MOD_MEH 0x7 - - -// Aliases for shifted symbols -// Each key has a 4-letter code, and some have longer aliases too. -// While the long aliases are descriptive, the 4-letter codes -// make for nicer grid layouts (everything lines up), and are -// the preferred style for Quantum. -#define KC_TILD LSFT(KC_GRV) // ~ -#define KC_TILDE KC_TILD - -#define KC_EXLM LSFT(KC_1) // ! -#define KC_EXCLAIM KC_EXLM - -#define KC_AT LSFT(KC_2) // @ - -#define KC_HASH LSFT(KC_3) // # - -#define KC_DLR LSFT(KC_4) // $ -#define KC_DOLLAR KC_DLR - -#define KC_PERC LSFT(KC_5) // % -#define KC_PERCENT KC_PERC - -#define KC_CIRC LSFT(KC_6) // ^ -#define KC_CIRCUMFLEX KC_CIRC - -#define KC_AMPR LSFT(KC_7) // & -#define KC_AMPERSAND KC_AMPR - -#define KC_ASTR LSFT(KC_8) // * -#define KC_ASTERISK KC_ASTR - -#define KC_LPRN LSFT(KC_9) // ( -#define KC_LEFT_PAREN KC_LPRN - -#define KC_RPRN LSFT(KC_0) // ) -#define KC_RIGHT_PAREN KC_RPRN - -#define KC_UNDS LSFT(KC_MINS) // _ -#define KC_UNDERSCORE KC_UNDS - -#define KC_PLUS LSFT(KC_EQL) // + - -#define KC_LCBR LSFT(KC_LBRC) // { -#define KC_LEFT_CURLY_BRACE KC_LCBR - -#define KC_RCBR LSFT(KC_RBRC) // } -#define KC_RIGHT_CURLY_BRACE KC_RCBR - -#define KC_LABK LSFT(KC_COMM) // < -#define KC_LEFT_ANGLE_BRACKET KC_LABK - -#define KC_RABK LSFT(KC_DOT) // > -#define KC_RIGHT_ANGLE_BRACKET KC_RABK - -#define KC_COLN LSFT(KC_SCLN) // : -#define KC_COLON KC_COLN - -#define KC_PIPE LSFT(KC_BSLS) // | - -#define KC_LT LSFT(KC_COMM) // < - -#define KC_GT LSFT(KC_DOT) // > - -#define KC_QUES LSFT(KC_SLSH) // ? -#define KC_QUESTION KC_QUES - -#define KC_DQT LSFT(KC_QUOT) // " -#define KC_DOUBLE_QUOTE KC_DQT -#define KC_DQUO KC_DQT - -#define KC_DELT KC_DELETE // Del key (four letter code) - -// Alias for function layers than expand past FN31 -#define FUNC(kc) (kc | QK_FUNCTION) - -// Aliases -#define S(kc) LSFT(kc) -#define F(kc) FUNC(kc) - -#define M(kc) (kc | QK_MACRO) - -#define MACRODOWN(...) (record->event.pressed ? MACRO(__VA_ARGS__) : MACRO_NONE) - -// L-ayer, T-ap - 256 keycode max, 16 layer max -#define LT(layer, kc) (kc | QK_LAYER_TAP | ((layer & 0xF) << 8)) - -#define AG_SWAP MAGIC_SWAP_ALT_GUI -#define AG_NORM MAGIC_UNSWAP_ALT_GUI - -#define BL_ON BL_9 -#define BL_OFF BL_0 - -#define MI_ON MIDI_ON -#define MI_OFF MIDI_OFF - -// GOTO layer - 16 layers max -// when: -// ON_PRESS = 1 -// ON_RELEASE = 2 -// Unless you have a good reason not to do so, prefer ON_PRESS (1) as your default. -// In fact, we changed it to assume ON_PRESS for sanity/simplicity. If needed, you can add your own -// keycode modeled after the old version, kept below for this. -/* #define TO(layer, when) (layer | QK_TO | (when << 0x4)) */ -#define TO(layer) (layer | QK_TO | (ON_PRESS << 0x4)) - -// Momentary switch layer - 256 layer max -#define MO(layer) (layer | QK_MOMENTARY) - -// Set default layer - 256 layer max -#define DF(layer) (layer | QK_DEF_LAYER) - -// Toggle to layer - 256 layer max -#define TG(layer) (layer | QK_TOGGLE_LAYER) - -// One-shot layer - 256 layer max -#define OSL(layer) (layer | QK_ONE_SHOT_LAYER) - -// One-shot mod -#define OSM(mod) (mod | QK_ONE_SHOT_MOD) - -// M-od, T-ap - 256 keycode max -#define MT(mod, kc) (kc | QK_MOD_TAP | ((mod & 0xF) << 8)) -#define CTL_T(kc) MT(MOD_LCTL, kc) -#define SFT_T(kc) MT(MOD_LSFT, kc) -#define ALT_T(kc) MT(MOD_LALT, kc) -#define GUI_T(kc) MT(MOD_LGUI, kc) -#define C_S_T(kc) MT((MOD_LCTL | MOD_LSFT), kc) // Control + Shift e.g. for gnome-terminal -#define MEH_T(kc) MT((MOD_LCTL | MOD_LSFT | MOD_LALT), kc) // Meh is a less hyper version of the Hyper key -- doesn't include Win or Cmd, so just alt+shift+ctrl -#define LCAG_T(kc) MT((MOD_LCTL | MOD_LALT | MOD_LGUI), kc) // Left control alt and gui -#define ALL_T(kc) MT((MOD_LCTL | MOD_LSFT | MOD_LALT | MOD_LGUI), kc) // see http://brettterpstra.com/2012/12/08/a-useful-caps-lock-key/ - -// Dedicated keycode versions for Hyper and Meh, if you want to use them as standalone keys rather than mod-tap -#define KC_HYPR HYPR(KC_NO) -#define KC_MEH MEH(KC_NO) - -#ifdef UNICODE_ENABLE - // For sending unicode codes. - // You may not send codes over 7FFF -- this supports most of UTF8. - // To have a key that sends out Œ, go UC(0x0152) - #define UNICODE(n) (n | QK_UNICODE) - #define UC(n) UNICODE(n) -#endif - -#ifdef UNICODEMAP_ENABLE - #define X(n) (n | QK_UNICODE_MAP) -#endif #endif diff --git a/quantum/keymap_common.c b/quantum/keymap_common.c index 833e5a8f8d..002eabd85e 100644 --- a/quantum/keymap_common.c +++ b/quantum/keymap_common.c @@ -48,12 +48,10 @@ action_t action_for_key(uint8_t layer, keypos_t key) action_t action; uint8_t action_layer, when, mod; - // The arm-none-eabi compiler generates out of bounds warnings when using the fn_actions directly for some reason - const uint16_t* actions = fn_actions; switch (keycode) { case KC_FN0 ... KC_FN31: - action.code = pgm_read_word(&actions[FN_INDEX(keycode)]); + action.code = keymap_function_id_to_action(FN_INDEX(keycode)); break; case KC_A ... KC_EXSEL: case KC_LCTRL ... KC_RGUI: @@ -79,10 +77,13 @@ action_t action_for_key(uint8_t layer, keypos_t key) case QK_FUNCTION ... QK_FUNCTION_MAX: ; // Is a shortcut for function action_layer, pull last 12bits // This means we have 4,096 FN macros at our disposal - action.code = pgm_read_word(&actions[(int)keycode & 0xFFF]); + action.code = keymap_function_id_to_action( (int)keycode & 0xFFF ); break; case QK_MACRO ... QK_MACRO_MAX: - action.code = ACTION_MACRO(keycode & 0xFF); + if (keycode & 0x800) // tap macros have upper bit set + action.code = ACTION_MACRO_TAP(keycode & 0xFF); + else + action.code = ACTION_MACRO(keycode & 0xFF); break; case QK_LAYER_TAP ... QK_LAYER_TAP_MAX: action.code = ACTION_LAYER_TAP_KEY((keycode >> 0x8) & 0xF, keycode & 0xFF); @@ -118,8 +119,11 @@ action_t action_for_key(uint8_t layer, keypos_t key) mod = keycode & 0xFF; action.code = ACTION_MODS_ONESHOT(mod); break; + case QK_LAYER_TAP_TOGGLE ... QK_LAYER_TAP_TOGGLE_MAX: + action.code = ACTION_LAYER_TAP_TOGGLE(keycode & 0xFF); + break; case QK_MOD_TAP ... QK_MOD_TAP_MAX: - action.code = ACTION_MODS_TAP_KEY((keycode >> 0x8) & 0xF, keycode & 0xFF); + action.code = ACTION_MODS_TAP_KEY((keycode >> 0x8) & 0x1F, keycode & 0xFF); break; #ifdef BACKLIGHT_ENABLE case BL_0 ... BL_15: @@ -163,9 +167,17 @@ void action_function(keyrecord_t *record, uint8_t id, uint8_t opt) { } -/* translates key to keycode */ +// translates key to keycode +__attribute__ ((weak)) uint16_t keymap_key_to_keycode(uint8_t layer, keypos_t key) { // Read entire word (16bits) return pgm_read_word(&keymaps[(layer)][(key.row)][(key.col)]); } + +// translates function id to action +__attribute__ ((weak)) +uint16_t keymap_function_id_to_action( uint16_t function_id ) +{ + return pgm_read_word(&fn_actions[function_id]); +} diff --git a/quantum/keymap_extras/keymap_br_abnt2.h b/quantum/keymap_extras/keymap_br_abnt2.h index 0df177721d..b001139dd4 100644 --- a/quantum/keymap_extras/keymap_br_abnt2.h +++ b/quantum/keymap_extras/keymap_br_abnt2.h @@ -1,3 +1,19 @@ +/* Copyright 2017 Potiguar Faga + * + * This program is free software: you can redistribute it and/or modify + * it under the terms of the GNU General Public License as published by + * the Free Software Foundation, either version 2 of the License, or + * (at your option) any later version. + * + * This program is distributed in the hope that it will be useful, + * but WITHOUT ANY WARRANTY; without even the implied warranty of + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the + * GNU General Public License for more details. + * + * You should have received a copy of the GNU General Public License + * along with this program. If not, see <http://www.gnu.org/licenses/>. + */ + #ifndef KEYMAP_BR_ABNT2_H #define KEYMAP_BR_ABNT2_H diff --git a/quantum/keymap_extras/keymap_french.h b/quantum/keymap_extras/keymap_french.h index 834c69650e..401bbdf644 100644 --- a/quantum/keymap_extras/keymap_french.h +++ b/quantum/keymap_extras/keymap_french.h @@ -4,7 +4,9 @@ #include "keymap.h" // Alt gr +#ifndef ALGR #define ALGR(kc) RALT(kc) +#endif #define NO_ALGR KC_RALT // Normal characters @@ -72,7 +74,7 @@ #define FR_PIPE ALGR(KC_6) #define FR_GRV ALGR(KC_7) #define FR_BSLS ALGR(KC_8) -#define FR_CIRC ALGR(KC_9) +#define FR_CCIRC ALGR(KC_9) #define FR_AT ALGR(KC_0) #define FR_RBRC ALGR(FR_RPRN) #define FR_RCBR ALGR(FR_EQL) diff --git a/quantum/keymap_extras/keymap_jp.h b/quantum/keymap_extras/keymap_jp.h new file mode 100644 index 0000000000..e81b5952e0 --- /dev/null +++ b/quantum/keymap_extras/keymap_jp.h @@ -0,0 +1,62 @@ +/* JP106-layout (Japanese Standard) + * + * For more information, see + * http://www2d.biglobe.ne.jp/~msyk/keyboard/layout/usbkeycode.html + * note: This website is written in Japanese. + */ + + +#ifndef KEYMAP_JP_H +#define KEYMAP_JP_H + + +#include "keymap.h" + + +#define JP_ZHTG KC_GRV // hankaku/zenkaku|kanzi +#define JP_YEN KC_INT3 // yen, | +#define JP_CIRC KC_EQL // ^, ~ +#define JP_AT KC_LBRC // @, ` +#define JP_LBRC KC_RBRC // [, { +#define JP_COLN KC_QUOT // :, * +#define JP_RBRC KC_NUHS // ], } +#define JP_BSLS KC_INT1 // \, _ +#define JP_MHEN KC_INT5 // muhenkan +#define JP_HENK KC_INT4 // henkan +#define JP_KANA KC_INT2 // katakana/hiragana|ro-mazi + + +//Aliases for shifted symbols +#define JP_DQT LSFT(KC_2) // " +#define JP_AMPR LSFT(KC_6) // & +#define JP_QUOT LSFT(KC_7) // ' +#define JP_LPRN LSFT(KC_8) // ( +#define JP_RPRN LSFT(KC_9) // ) +#define JP_EQL LSFT(KC_MINS) // = +#define JP_TILD LSFT(JP_CIRC) // ~ +#define JP_PIPE LSFT(JP_YEN) // | +#define JP_GRV LSFT(JP_AT) // ` +#define JP_LCBR LSFT(JP_LBRC) // { +#define JP_PLUS LSFT(KC_SCLN) // + +#define JP_ASTR LSFT(JP_COLN) // * +#define JP_RCBR LSFT(JP_RBRC) // } +#define JP_UNDS LSFT(JP_BSLS) // _ + + +// These symbols are correspond to US101-layout. +#define JP_MINS KC_MINS // - +#define JP_SCLN KC_SCLN // ; +#define JP_COMM KC_COMM // , +#define JP_DOT KC_DOT // . +#define JP_SLSH KC_SLSH // / +// shifted +#define JP_EXLM KC_EXLM // ! +#define JP_HASH KC_HASH // # +#define JP_DLR KC_DLR // $ +#define JP_PERC KC_PERC // % +#define JP_LT KC_LT // < +#define JP_GT KC_GT // > +#define JP_QUES KC_QUES // ? + + +#endif diff --git a/quantum/keymap_extras/keymap_nordic.h b/quantum/keymap_extras/keymap_nordic.h index da5c829757..9b0ef35ca9 100644 --- a/quantum/keymap_extras/keymap_nordic.h +++ b/quantum/keymap_extras/keymap_nordic.h @@ -13,7 +13,7 @@ #define NO_ACUT KC_EQL #define NO_AM KC_LBRC -#define NO_QUOT KC_RBRC +#define NO_QUOT KC_RBRC // this is the "umlaut" char on Nordic keyboards, Apple layout #define NO_AE KC_SCLN #define NO_OSLH KC_QUOT #define NO_APOS KC_NUHS diff --git a/quantum/light_ws2812.c b/quantum/light_ws2812.c index 401845e855..55bdd9cd81 100755 --- a/quantum/light_ws2812.c +++ b/quantum/light_ws2812.c @@ -16,14 +16,128 @@ #include <util/delay.h> #include "debug.h" +#ifdef RGBW_BB_TWI + +// Port for the I2C +#define I2C_DDR DDRD +#define I2C_PIN PIND +#define I2C_PORT PORTD + +// Pins to be used in the bit banging +#define I2C_CLK 0 +#define I2C_DAT 1 + +#define I2C_DATA_HI()\ +I2C_DDR &= ~ (1 << I2C_DAT);\ +I2C_PORT |= (1 << I2C_DAT); +#define I2C_DATA_LO()\ +I2C_DDR |= (1 << I2C_DAT);\ +I2C_PORT &= ~ (1 << I2C_DAT); + +#define I2C_CLOCK_HI()\ +I2C_DDR &= ~ (1 << I2C_CLK);\ +I2C_PORT |= (1 << I2C_CLK); +#define I2C_CLOCK_LO()\ +I2C_DDR |= (1 << I2C_CLK);\ +I2C_PORT &= ~ (1 << I2C_CLK); + +#define I2C_DELAY 1 + +void I2C_WriteBit(unsigned char c) +{ + if (c > 0) + { + I2C_DATA_HI(); + } + else + { + I2C_DATA_LO(); + } + + I2C_CLOCK_HI(); + _delay_us(I2C_DELAY); + + I2C_CLOCK_LO(); + _delay_us(I2C_DELAY); + + if (c > 0) + { + I2C_DATA_LO(); + } + + _delay_us(I2C_DELAY); +} + +// Inits bitbanging port, must be called before using the functions below +// +void I2C_Init(void) +{ + I2C_PORT &= ~ ((1 << I2C_DAT) | (1 << I2C_CLK)); + + I2C_CLOCK_HI(); + I2C_DATA_HI(); + + _delay_us(I2C_DELAY); +} + +// Send a START Condition +// +void I2C_Start(void) +{ + // set both to high at the same time + I2C_DDR &= ~ ((1 << I2C_DAT) | (1 << I2C_CLK)); + _delay_us(I2C_DELAY); + + I2C_DATA_LO(); + _delay_us(I2C_DELAY); + + I2C_CLOCK_LO(); + _delay_us(I2C_DELAY); +} + +// Send a STOP Condition +// +void I2C_Stop(void) +{ + I2C_CLOCK_HI(); + _delay_us(I2C_DELAY); + + I2C_DATA_HI(); + _delay_us(I2C_DELAY); +} + +// write a byte to the I2C slave device +// +unsigned char I2C_Write(unsigned char c) +{ + for (char i = 0; i < 8; i++) + { + I2C_WriteBit(c & 128); + + c <<= 1; + } + + + I2C_WriteBit(0); + _delay_us(I2C_DELAY); + _delay_us(I2C_DELAY); + + // _delay_us(I2C_DELAY); + //return I2C_ReadBit(); + return 0; +} + + +#endif + // Setleds for standard RGB -void inline ws2812_setleds(struct cRGB *ledarray, uint16_t leds) +void inline ws2812_setleds(LED_TYPE *ledarray, uint16_t leds) { // ws2812_setleds_pin(ledarray,leds, _BV(ws2812_pin)); ws2812_setleds_pin(ledarray,leds, _BV(RGB_DI_PIN & 0xF)); } -void inline ws2812_setleds_pin(struct cRGB *ledarray, uint16_t leds, uint8_t pinmask) +void inline ws2812_setleds_pin(LED_TYPE *ledarray, uint16_t leds, uint8_t pinmask) { // ws2812_DDRREG |= pinmask; // Enable DDR // new universal format (DDR) @@ -34,14 +148,41 @@ void inline ws2812_setleds_pin(struct cRGB *ledarray, uint16_t leds, uint8_t pin } // Setleds for SK6812RGBW -void inline ws2812_setleds_rgbw(struct cRGBW *ledarray, uint16_t leds) +void inline ws2812_setleds_rgbw(LED_TYPE *ledarray, uint16_t leds) { + + #ifdef RGBW_BB_TWI + uint8_t sreg_prev, twcr_prev; + sreg_prev=SREG; + twcr_prev=TWCR; + cli(); + TWCR &= ~(1<<TWEN); + I2C_Init(); + I2C_Start(); + I2C_Write(0x84); + uint16_t datlen = leds<<2; + uint8_t curbyte; + uint8_t * data = (uint8_t*)ledarray; + while (datlen--) { + curbyte=*data++; + I2C_Write(curbyte); + } + I2C_Stop(); + SREG=sreg_prev; + TWCR=twcr_prev; + #endif + + // ws2812_DDRREG |= _BV(ws2812_pin); // Enable DDR // new universal format (DDR) _SFR_IO8((RGB_DI_PIN >> 4) + 1) |= _BV(RGB_DI_PIN & 0xF); ws2812_sendarray_mask((uint8_t*)ledarray,leds<<2,_BV(RGB_DI_PIN & 0xF)); - _delay_us(80); + + + #ifndef RGBW_BB_TWI + _delay_us(80); + #endif } void ws2812_sendarray(uint8_t *data,uint16_t datlen) @@ -123,7 +264,7 @@ void inline ws2812_sendarray_mask(uint8_t *data,uint16_t datlen,uint8_t maskhi) cli(); while (datlen--) { - curbyte=*data++; + curbyte=(*data++); asm volatile( " ldi %0,8 \n\t" diff --git a/quantum/light_ws2812.h b/quantum/light_ws2812.h index 54eef22d9e..2f78c20fc1 100755 --- a/quantum/light_ws2812.h +++ b/quantum/light_ws2812.h @@ -16,6 +16,14 @@ #include <avr/io.h> #include <avr/interrupt.h> //#include "ws2812_config.h" +//#include "i2cmaster.h" + +#ifdef RGBW + #define LED_TYPE struct cRGBW +#else + #define LED_TYPE struct cRGB +#endif + /* * Structure of the LED array @@ -42,9 +50,9 @@ struct cRGBW { uint8_t g; uint8_t r; uint8_t b; uint8_t w;}; * - Wait 50�s to reset the LEDs */ -void ws2812_setleds (struct cRGB *ledarray, uint16_t number_of_leds); -void ws2812_setleds_pin (struct cRGB *ledarray, uint16_t number_of_leds,uint8_t pinmask); -void ws2812_setleds_rgbw(struct cRGBW *ledarray, uint16_t number_of_leds); +void ws2812_setleds (LED_TYPE *ledarray, uint16_t number_of_leds); +void ws2812_setleds_pin (LED_TYPE *ledarray, uint16_t number_of_leds,uint8_t pinmask); +void ws2812_setleds_rgbw(LED_TYPE *ledarray, uint16_t number_of_leds); /* * Old interface / Internal functions diff --git a/quantum/matrix.c b/quantum/matrix.c index 3174e07390..ac523482ad 100644 --- a/quantum/matrix.c +++ b/quantum/matrix.c @@ -25,37 +25,66 @@ along with this program. If not, see <http://www.gnu.org/licenses/>. #include "debug.h" #include "util.h" #include "matrix.h" +#include "timer.h" + /* Set 0 if debouncing isn't needed */ #ifndef DEBOUNCING_DELAY # define DEBOUNCING_DELAY 5 #endif -static uint8_t debouncing = DEBOUNCING_DELAY; +#if (DEBOUNCING_DELAY > 0) + static uint16_t debouncing_time; + static bool debouncing = false; +#endif + +#if (MATRIX_COLS <= 8) +# define print_matrix_header() print("\nr/c 01234567\n") +# define print_matrix_row(row) print_bin_reverse8(matrix_get_row(row)) +# define matrix_bitpop(i) bitpop(matrix[i]) +# define ROW_SHIFTER ((uint8_t)1) +#elif (MATRIX_COLS <= 16) +# define print_matrix_header() print("\nr/c 0123456789ABCDEF\n") +# define print_matrix_row(row) print_bin_reverse16(matrix_get_row(row)) +# define matrix_bitpop(i) bitpop16(matrix[i]) +# define ROW_SHIFTER ((uint16_t)1) +#elif (MATRIX_COLS <= 32) +# define print_matrix_header() print("\nr/c 0123456789ABCDEF0123456789ABCDEF\n") +# define print_matrix_row(row) print_bin_reverse32(matrix_get_row(row)) +# define matrix_bitpop(i) bitpop32(matrix[i]) +# define ROW_SHIFTER ((uint32_t)1) +#endif + +#ifdef MATRIX_MASKED + extern const matrix_row_t matrix_mask[]; +#endif + +#if (DIODE_DIRECTION == ROW2COL) || (DIODE_DIRECTION == COL2ROW) static const uint8_t row_pins[MATRIX_ROWS] = MATRIX_ROW_PINS; static const uint8_t col_pins[MATRIX_COLS] = MATRIX_COL_PINS; +#endif /* matrix state(1:on, 0:off) */ static matrix_row_t matrix[MATRIX_ROWS]; + static matrix_row_t matrix_debouncing[MATRIX_ROWS]; -#if DIODE_DIRECTION == ROW2COL - static matrix_row_t matrix_reversed[MATRIX_COLS]; - static matrix_row_t matrix_reversed_debouncing[MATRIX_COLS]; -#endif -#if MATRIX_COLS > 16 - #define SHIFTER 1UL -#else - #define SHIFTER 1 +#if (DIODE_DIRECTION == COL2ROW) + static void init_cols(void); + static bool read_cols_on_row(matrix_row_t current_matrix[], uint8_t current_row); + static void unselect_rows(void); + static void select_row(uint8_t row); + static void unselect_row(uint8_t row); +#elif (DIODE_DIRECTION == ROW2COL) + static void init_rows(void); + static bool read_rows_on_col(matrix_row_t current_matrix[], uint8_t current_col); + static void unselect_cols(void); + static void unselect_col(uint8_t col); + static void select_col(uint8_t col); #endif -static matrix_row_t read_cols(void); -static void init_cols(void); -static void unselect_rows(void); -static void select_row(uint8_t row); - __attribute__ ((weak)) void matrix_init_quantum(void) { matrix_init_kb(); @@ -95,7 +124,7 @@ uint8_t matrix_cols(void) { } // void matrix_power_up(void) { -// #if DIODE_DIRECTION == COL2ROW +// #if (DIODE_DIRECTION == COL2ROW) // for (int8_t r = MATRIX_ROWS - 1; r >= 0; --r) { // /* DDRxn */ // _SFR_IO8((row_pins[r] >> 4) + 1) |= _BV(row_pins[r] & 0xF); @@ -105,7 +134,7 @@ uint8_t matrix_cols(void) { // /* PORTxn */ // _SFR_IO8((col_pins[c] >> 4) + 2) |= _BV(col_pins[c] & 0xF); // } -// #else +// #elif (DIODE_DIRECTION == ROW2COL) // for (int8_t c = MATRIX_COLS - 1; c >= 0; --c) { // /* DDRxn */ // _SFR_IO8((col_pins[c] >> 4) + 1) |= _BV(col_pins[c] & 0xF); @@ -119,15 +148,21 @@ uint8_t matrix_cols(void) { // } void matrix_init(void) { + // To use PORTF disable JTAG with writing JTD bit twice within four cycles. - #ifdef __AVR_ATmega32U4__ + #if (defined(__AVR_AT90USB1286__) || defined(__AVR_AT90USB1287__) || defined(__AVR_ATmega32U4__)) MCUCR |= _BV(JTD); MCUCR |= _BV(JTD); #endif // initialize row and col +#if (DIODE_DIRECTION == COL2ROW) unselect_rows(); init_cols(); +#elif (DIODE_DIRECTION == ROW2COL) + unselect_cols(); + init_rows(); +#endif // initialize matrix state: all keys off for (uint8_t i=0; i < MATRIX_ROWS; i++) { @@ -141,71 +176,60 @@ void matrix_init(void) { uint8_t matrix_scan(void) { -#if DIODE_DIRECTION == COL2ROW - for (uint8_t i = 0; i < MATRIX_ROWS; i++) { - select_row(i); - wait_us(30); // without this wait read unstable value. - matrix_row_t cols = read_cols(); - if (matrix_debouncing[i] != cols) { - matrix_debouncing[i] = cols; - if (debouncing) { - debug("bounce!: "); debug_hex(debouncing); debug("\n"); - } - debouncing = DEBOUNCING_DELAY; - } - unselect_rows(); - } +#if (DIODE_DIRECTION == COL2ROW) - if (debouncing) { - if (--debouncing) { - wait_ms(1); - } else { - for (uint8_t i = 0; i < MATRIX_ROWS; i++) { - matrix[i] = matrix_debouncing[i]; + // Set row, read cols + for (uint8_t current_row = 0; current_row < MATRIX_ROWS; current_row++) { +# if (DEBOUNCING_DELAY > 0) + bool matrix_changed = read_cols_on_row(matrix_debouncing, current_row); + + if (matrix_changed) { + debouncing = true; + debouncing_time = timer_read(); } - } + +# else + read_cols_on_row(matrix, current_row); +# endif + } -#else - for (uint8_t i = 0; i < MATRIX_COLS; i++) { - select_row(i); - wait_us(30); // without this wait read unstable value. - matrix_row_t rows = read_cols(); - if (matrix_reversed_debouncing[i] != rows) { - matrix_reversed_debouncing[i] = rows; - if (debouncing) { - debug("bounce!: "); debug_hex(debouncing); debug("\n"); + +#elif (DIODE_DIRECTION == ROW2COL) + + // Set col, read rows + for (uint8_t current_col = 0; current_col < MATRIX_COLS; current_col++) { +# if (DEBOUNCING_DELAY > 0) + bool matrix_changed = read_rows_on_col(matrix_debouncing, current_col); + if (matrix_changed) { + debouncing = true; + debouncing_time = timer_read(); } - debouncing = DEBOUNCING_DELAY; - } - unselect_rows(); +# else + read_rows_on_col(matrix, current_col); +# endif + } - if (debouncing) { - if (--debouncing) { - wait_ms(1); - } else { - for (uint8_t i = 0; i < MATRIX_COLS; i++) { - matrix_reversed[i] = matrix_reversed_debouncing[i]; +#endif + +# if (DEBOUNCING_DELAY > 0) + if (debouncing && (timer_elapsed(debouncing_time) > DEBOUNCING_DELAY)) { + for (uint8_t i = 0; i < MATRIX_ROWS; i++) { + matrix[i] = matrix_debouncing[i]; } + debouncing = false; } - } - for (uint8_t y = 0; y < MATRIX_ROWS; y++) { - matrix_row_t row = 0; - for (uint8_t x = 0; x < MATRIX_COLS; x++) { - row |= ((matrix_reversed[x] & (1<<y)) >> y) << x; - } - matrix[y] = row; - } -#endif +# endif matrix_scan_quantum(); - return 1; } bool matrix_is_modified(void) { +#if (DEBOUNCING_DELAY > 0) if (debouncing) return false; +#endif return true; } @@ -218,15 +242,22 @@ bool matrix_is_on(uint8_t row, uint8_t col) inline matrix_row_t matrix_get_row(uint8_t row) { + // Matrix mask lets you disable switches in the returned matrix data. For example, if you have a + // switch blocker installed and the switch is always pressed. +#ifdef MATRIX_MASKED + return matrix[row] & matrix_mask[row]; +#else return matrix[row]; +#endif } void matrix_print(void) { - print("\nr/c 0123456789ABCDEF\n"); + print_matrix_header(); + for (uint8_t row = 0; row < MATRIX_ROWS; row++) { phex(row); print(": "); - pbin_reverse16(matrix_get_row(row)); + print_matrix_row(row); print("\n"); } } @@ -235,63 +266,148 @@ uint8_t matrix_key_count(void) { uint8_t count = 0; for (uint8_t i = 0; i < MATRIX_ROWS; i++) { - count += bitpop16(matrix[i]); + count += matrix_bitpop(i); } return count; } + + +#if (DIODE_DIRECTION == COL2ROW) + static void init_cols(void) { -#if DIODE_DIRECTION == COL2ROW - for(int x = 0; x < MATRIX_COLS; x++) { - int pin = col_pins[x]; -#else - for(int x = 0; x < MATRIX_ROWS; x++) { - int pin = row_pins[x]; -#endif - _SFR_IO8((pin >> 4) + 1) &= ~_BV(pin & 0xF); - _SFR_IO8((pin >> 4) + 2) |= _BV(pin & 0xF); + for(uint8_t x = 0; x < MATRIX_COLS; x++) { + uint8_t pin = col_pins[x]; + _SFR_IO8((pin >> 4) + 1) &= ~_BV(pin & 0xF); // IN + _SFR_IO8((pin >> 4) + 2) |= _BV(pin & 0xF); // HI } } -static matrix_row_t read_cols(void) +static bool read_cols_on_row(matrix_row_t current_matrix[], uint8_t current_row) { - matrix_row_t result = 0; + // Store last value of row prior to reading + matrix_row_t last_row_value = current_matrix[current_row]; -#if DIODE_DIRECTION == COL2ROW - for(int x = 0; x < MATRIX_COLS; x++) { - int pin = col_pins[x]; -#else - for(int x = 0; x < MATRIX_ROWS; x++) { - int pin = row_pins[x]; -#endif - result |= (_SFR_IO8(pin >> 4) & _BV(pin & 0xF)) ? 0 : (SHIFTER << x); + // Clear data in matrix row + current_matrix[current_row] = 0; + + // Select row and wait for row selecton to stabilize + select_row(current_row); + wait_us(30); + + // For each col... + for(uint8_t col_index = 0; col_index < MATRIX_COLS; col_index++) { + + // Select the col pin to read (active low) + uint8_t pin = col_pins[col_index]; + uint8_t pin_state = (_SFR_IO8(pin >> 4) & _BV(pin & 0xF)); + + // Populate the matrix row with the state of the col pin + current_matrix[current_row] |= pin_state ? 0 : (ROW_SHIFTER << col_index); } - return result; + + // Unselect row + unselect_row(current_row); + + return (last_row_value != current_matrix[current_row]); +} + +static void select_row(uint8_t row) +{ + uint8_t pin = row_pins[row]; + _SFR_IO8((pin >> 4) + 1) |= _BV(pin & 0xF); // OUT + _SFR_IO8((pin >> 4) + 2) &= ~_BV(pin & 0xF); // LOW +} + +static void unselect_row(uint8_t row) +{ + uint8_t pin = row_pins[row]; + _SFR_IO8((pin >> 4) + 1) &= ~_BV(pin & 0xF); // IN + _SFR_IO8((pin >> 4) + 2) |= _BV(pin & 0xF); // HI } static void unselect_rows(void) { -#if DIODE_DIRECTION == COL2ROW - for(int x = 0; x < MATRIX_ROWS; x++) { - int pin = row_pins[x]; -#else - for(int x = 0; x < MATRIX_COLS; x++) { - int pin = col_pins[x]; -#endif - _SFR_IO8((pin >> 4) + 1) &= ~_BV(pin & 0xF); - _SFR_IO8((pin >> 4) + 2) |= _BV(pin & 0xF); + for(uint8_t x = 0; x < MATRIX_ROWS; x++) { + uint8_t pin = row_pins[x]; + _SFR_IO8((pin >> 4) + 1) &= ~_BV(pin & 0xF); // IN + _SFR_IO8((pin >> 4) + 2) |= _BV(pin & 0xF); // HI } } -static void select_row(uint8_t row) +#elif (DIODE_DIRECTION == ROW2COL) + +static void init_rows(void) { + for(uint8_t x = 0; x < MATRIX_ROWS; x++) { + uint8_t pin = row_pins[x]; + _SFR_IO8((pin >> 4) + 1) &= ~_BV(pin & 0xF); // IN + _SFR_IO8((pin >> 4) + 2) |= _BV(pin & 0xF); // HI + } +} -#if DIODE_DIRECTION == COL2ROW - int pin = row_pins[row]; -#else - int pin = col_pins[row]; -#endif - _SFR_IO8((pin >> 4) + 1) |= _BV(pin & 0xF); - _SFR_IO8((pin >> 4) + 2) &= ~_BV(pin & 0xF); +static bool read_rows_on_col(matrix_row_t current_matrix[], uint8_t current_col) +{ + bool matrix_changed = false; + + // Select col and wait for col selecton to stabilize + select_col(current_col); + wait_us(30); + + // For each row... + for(uint8_t row_index = 0; row_index < MATRIX_ROWS; row_index++) + { + + // Store last value of row prior to reading + matrix_row_t last_row_value = current_matrix[row_index]; + + // Check row pin state + if ((_SFR_IO8(row_pins[row_index] >> 4) & _BV(row_pins[row_index] & 0xF)) == 0) + { + // Pin LO, set col bit + current_matrix[row_index] |= (ROW_SHIFTER << current_col); + } + else + { + // Pin HI, clear col bit + current_matrix[row_index] &= ~(ROW_SHIFTER << current_col); + } + + // Determine if the matrix changed state + if ((last_row_value != current_matrix[row_index]) && !(matrix_changed)) + { + matrix_changed = true; + } + } + + // Unselect col + unselect_col(current_col); + + return matrix_changed; } + +static void select_col(uint8_t col) +{ + uint8_t pin = col_pins[col]; + _SFR_IO8((pin >> 4) + 1) |= _BV(pin & 0xF); // OUT + _SFR_IO8((pin >> 4) + 2) &= ~_BV(pin & 0xF); // LOW +} + +static void unselect_col(uint8_t col) +{ + uint8_t pin = col_pins[col]; + _SFR_IO8((pin >> 4) + 1) &= ~_BV(pin & 0xF); // IN + _SFR_IO8((pin >> 4) + 2) |= _BV(pin & 0xF); // HI +} + +static void unselect_cols(void) +{ + for(uint8_t x = 0; x < MATRIX_COLS; x++) { + uint8_t pin = col_pins[x]; + _SFR_IO8((pin >> 4) + 1) &= ~_BV(pin & 0xF); // IN + _SFR_IO8((pin >> 4) + 2) |= _BV(pin & 0xF); // HI + } +} + +#endif diff --git a/quantum/pincontrol.h b/quantum/pincontrol.h new file mode 100644 index 0000000000..36ce29ef22 --- /dev/null +++ b/quantum/pincontrol.h @@ -0,0 +1,37 @@ +#pragma once +// Some helpers for controlling gpio pins +#include <avr/io.h> + +enum { + PinDirectionInput = 0, + PinDirectionOutput = 1, + PinLevelHigh = 1, + PinLevelLow = 0, +}; + +// ex: pinMode(B0, PinDirectionOutput); +static inline void pinMode(uint8_t pin, int mode) { + uint8_t bv = _BV(pin & 0xf); + if (mode == PinDirectionOutput) { + _SFR_IO8((pin >> 4) + 1) |= bv; + } else { + _SFR_IO8((pin >> 4) + 1) &= ~bv; + _SFR_IO8((pin >> 4) + 2) &= ~bv; + } +} + +// ex: digitalWrite(B0, PinLevelHigh); +static inline void digitalWrite(uint8_t pin, int mode) { + uint8_t bv = _BV(pin & 0xf); + if (mode == PinLevelHigh) { + _SFR_IO8((pin >> 4) + 2) |= bv; + } else { + _SFR_IO8((pin >> 4) + 2) &= ~bv; + } +} + +// Return true if the pin is HIGH +// digitalRead(B0) +static inline bool digitalRead(uint8_t pin) { + return _SFR_IO8(pin >> 4) & _BV(pin & 0xf); +} diff --git a/quantum/process_keycode/process_combo.c b/quantum/process_keycode/process_combo.c new file mode 100644 index 0000000000..e2189ad98b --- /dev/null +++ b/quantum/process_keycode/process_combo.c @@ -0,0 +1,134 @@ +#include "process_combo.h" +#include "print.h" + + +#define COMBO_TIMER_ELAPSED -1 + + +__attribute__ ((weak)) +combo_t key_combos[] = { + +}; + +__attribute__ ((weak)) +void process_combo_event(uint8_t combo_index, bool pressed) { + +} + +static uint8_t current_combo_index = 0; + +static inline void send_combo(uint16_t action, bool pressed) +{ + if (action) { + if (pressed) { + register_code16(action); + } else { + unregister_code16(action); + } + } else { + process_combo_event(current_combo_index, pressed); + } +} + +#define ALL_COMBO_KEYS_ARE_DOWN (((1<<count)-1) == combo->state) +#define NO_COMBO_KEYS_ARE_DOWN (0 == combo->state) +#define KEY_STATE_DOWN(key) do{ combo->state |= (1<<key); } while(0) +#define KEY_STATE_UP(key) do{ combo->state &= ~(1<<key); } while(0) +static bool process_single_combo(combo_t *combo, uint16_t keycode, keyrecord_t *record) +{ + uint8_t count = 0; + uint8_t index = -1; + /* Find index of keycode and number of combo keys */ + for (const uint16_t *keys = combo->keys; ;++count) { + uint16_t key = pgm_read_word(&keys[count]); + if (keycode == key) index = count; + if (COMBO_END == key) break; + } + + /* Return if not a combo key */ + if (-1 == (int8_t)index) return false; + + /* The combos timer is used to signal whether the combo is active */ + bool is_combo_active = COMBO_TIMER_ELAPSED == combo->timer ? false : true; + + if (record->event.pressed) { + KEY_STATE_DOWN(index); + + if (is_combo_active) { + if (ALL_COMBO_KEYS_ARE_DOWN) { /* Combo was pressed */ + send_combo(combo->keycode, true); + combo->timer = COMBO_TIMER_ELAPSED; + } else { /* Combo key was pressed */ + combo->timer = timer_read(); +#ifdef COMBO_ALLOW_ACTION_KEYS + combo->prev_record = *record; +#else + combo->prev_key = keycode; +#endif + } + } + } else { + if (ALL_COMBO_KEYS_ARE_DOWN) { /* Combo was released */ + send_combo(combo->keycode, false); + } + + if (is_combo_active) { /* Combo key was tapped */ +#ifdef COMBO_ALLOW_ACTION_KEYS + record->event.pressed = true; + process_action(record, store_or_get_action(record->event.pressed, record->event.key)); + record->event.pressed = false; + process_action(record, store_or_get_action(record->event.pressed, record->event.key)); +#else + register_code16(keycode); + send_keyboard_report(); + unregister_code16(keycode); +#endif + combo->timer = 0; + } + + KEY_STATE_UP(index); + } + + if (NO_COMBO_KEYS_ARE_DOWN) { + combo->timer = 0; + } + + return is_combo_active; +} + +bool process_combo(uint16_t keycode, keyrecord_t *record) +{ + bool is_combo_key = false; + + for (current_combo_index = 0; current_combo_index < COMBO_COUNT; ++current_combo_index) { + combo_t *combo = &key_combos[current_combo_index]; + is_combo_key |= process_single_combo(combo, keycode, record); + } + + return !is_combo_key; +} + +void matrix_scan_combo(void) +{ + for (int i = 0; i < COMBO_COUNT; ++i) { + combo_t *combo = &key_combos[i]; + if (combo->timer && + combo->timer != COMBO_TIMER_ELAPSED && + timer_elapsed(combo->timer) > COMBO_TERM) { + + /* This disables the combo, meaning key events for this + * combo will be handled by the next processors in the chain + */ + combo->timer = COMBO_TIMER_ELAPSED; + +#ifdef COMBO_ALLOW_ACTION_KEYS + process_action(&combo->prev_record, + store_or_get_action(combo->prev_record.event.pressed, + combo->prev_record.event.key)); +#else + unregister_code16(combo->prev_key); + register_code16(combo->prev_key); +#endif + } + } +} diff --git a/quantum/process_keycode/process_combo.h b/quantum/process_keycode/process_combo.h new file mode 100644 index 0000000000..847f2b7376 --- /dev/null +++ b/quantum/process_keycode/process_combo.h @@ -0,0 +1,43 @@ +#ifndef PROCESS_COMBO_H +#define PROCESS_COMBO_H + +#include <stdint.h> +#include "progmem.h" +#include "quantum.h" + +typedef struct +{ + const uint16_t *keys; + uint16_t keycode; +#ifdef EXTRA_EXTRA_LONG_COMBOS + uint32_t state; +#elif EXTRA_LONG_COMBOS + uint16_t state; +#else + uint8_t state; +#endif + uint16_t timer; +#ifdef COMBO_ALLOW_ACTION_KEYS + keyrecord_t prev_record; +#else + uint16_t prev_key; +#endif +} combo_t; + + +#define COMBO(ck, ca) {.keys = &(ck)[0], .keycode = (ca)} +#define COMBO_ACTION(ck) {.keys = &(ck)[0]} + +#define COMBO_END 0 +#ifndef COMBO_COUNT +#define COMBO_COUNT 0 +#endif +#ifndef COMBO_TERM +#define COMBO_TERM TAPPING_TERM +#endif + +bool process_combo(uint16_t keycode, keyrecord_t *record); +void matrix_scan_combo(void); +void process_combo_event(uint8_t combo_index, bool pressed); + +#endif diff --git a/quantum/process_keycode/process_music.c b/quantum/process_keycode/process_music.c index 2d52e47a72..1e2648bff5 100644 --- a/quantum/process_keycode/process_music.c +++ b/quantum/process_keycode/process_music.c @@ -1,8 +1,8 @@ #include "process_music.h" bool music_activated = false; -uint8_t starting_note = 0x0C; -int offset = 7; +uint8_t music_starting_note = 0x0C; +int music_offset = 7; // music sequencer static bool music_sequence_recording = false; @@ -114,8 +114,18 @@ bool process_music(uint16_t keycode, keyrecord_t *record) { music_sequence_interval+=10; return false; } + #define MUSIC_MODE_GUITAR + + #ifdef MUSIC_MODE_CHROMATIC + float freq = ((float)220.0)*pow(2.0, -5.0)*pow(2.0,(music_starting_note + record->event.key.col + music_offset)/12.0+(MATRIX_ROWS - record->event.key.row)); + #elif defined(MUSIC_MODE_GUITAR) + float freq = ((float)220.0)*pow(2.0, -5.0)*pow(2.0,(music_starting_note + record->event.key.col + music_offset)/12.0+(float)(MATRIX_ROWS - record->event.key.row + 7)*5.0/12); + #elif defined(MUSIC_MODE_VIOLIN) + float freq = ((float)220.0)*pow(2.0, -5.0)*pow(2.0,(music_starting_note + record->event.key.col + music_offset)/12.0+(float)(MATRIX_ROWS - record->event.key.row + 5)*7.0/12); + #else + float freq = ((float)220.0)*pow(2.0, -5.0)*pow(2.0,(music_starting_note + SCALE[record->event.key.col + music_offset])/12.0+(MATRIX_ROWS - record->event.key.row)); + #endif - float freq = ((float)220.0)*pow(2.0, -5.0)*pow(2.0,(starting_note + SCALE[record->event.key.col + offset])/12.0+(MATRIX_ROWS - record->event.key.row)); if (record->event.pressed) { play_note(freq, 0xF); if (music_sequence_recording) { diff --git a/quantum/process_keycode/process_printer.c b/quantum/process_keycode/process_printer.c new file mode 100644 index 0000000000..2e11dd366c --- /dev/null +++ b/quantum/process_keycode/process_printer.c @@ -0,0 +1,254 @@ +#include "process_printer.h" +#include "action_util.h" + +bool printing_enabled = false; +uint8_t character_shift = 0; + +void enabled_printing() { + printing_enabled = true; + serial_init(); +} + +void disable_printing() { + printing_enabled = false; +} + +uint8_t shifted_numbers[10] = {0x21, 0x40, 0x23, 0x24, 0x25, 0x5E, 0x26, 0x2A, 0x28, 0x29}; + +// uint8_t keycode_to_ascii[0xFF][2]; + +// keycode_to_ascii[KC_MINS] = {0x2D, 0x5F}; + +void print_char(char c) { + USB_Disable(); + serial_send(c); + USB_Init(); +} + +void print_box_string(uint8_t text[]) { + uint8_t len = strlen(text); + uint8_t out[len * 3 + 8]; + out[0] = 0xDA; + for (uint8_t i = 0; i < len; i++) { + out[i+1] = 0xC4; + } + out[len + 1] = 0xBF; + out[len + 2] = '\n'; + + out[len + 3] = 0xB3; + for (uint8_t i = 0; i < len; i++) { + out[len + 4 + i] = text[i]; + } + out[len * 2 + 4] = 0xB3; + out[len * 2 + 5] = '\n'; + + + out[len * 2 + 6] = 0xC0; + for (uint8_t i = 0; i < len; i++) { + out[len * 2 + 7 + i] = 0xC4; + } + out[len * 3 + 7] = 0xD9; + out[len * 3 + 8] = '\n'; + + print_string(out); +} + +void print_string(char c[]) { + for(uint8_t i = 0; i < strlen(c); i++) + print_char(c[i]); +} + +bool process_printer(uint16_t keycode, keyrecord_t *record) { + if (keycode == PRINT_ON) { + enabled_printing(); + return false; + } + if (keycode == PRINT_OFF) { + disable_printing(); + return false; + } + + if (printing_enabled) { + switch(keycode) { + case KC_EXLM ... KC_RPRN: + case KC_UNDS: + case KC_PLUS: + case KC_LCBR: + case KC_RCBR: + case KC_PIPE: + case KC_TILD: + keycode &= 0xFF; + case KC_LSFT: + case KC_RSFT: + if (record->event.pressed) { + character_shift++; + } else { + character_shift--; + } + return false; + break; + } + + switch(keycode) { + case KC_F1: + if (record->event.pressed) { + print_box_string("This is a line of text!"); + } + return false; + case KC_ESC: + if (record->event.pressed) { + print_char(0x1B); + } + return false; + break; + case KC_SPC: + if (record->event.pressed) { + print_char(0x20); + } + return false; + break; + case KC_A ... KC_Z: + if (record->event.pressed) { + if (character_shift) { + print_char(0x41 + (keycode - KC_A)); + } else { + print_char(0x61 + (keycode - KC_A)); + } + } + return false; + break; + case KC_1 ... KC_0: + if (record->event.pressed) { + if (character_shift) { + print_char(shifted_numbers[keycode - KC_1]); + } else { + print_char(0x30 + ((keycode - KC_1 + 1) % 10)); + } + } + return false; + break; + case KC_ENT: + if (record->event.pressed) { + if (character_shift) { + print_char(0x0C); + } else { + print_char(0x0A); + } + } + return false; + break; + case KC_BSPC: + if (record->event.pressed) { + if (character_shift) { + print_char(0x18); + } else { + print_char(0x1A); + } + } + return false; + break; + case KC_DOT: + if (record->event.pressed) { + if (character_shift) { + print_char(0x3E); + } else { + print_char(0x2E); + } + } + return false; + break; + case KC_COMM: + if (record->event.pressed) { + if (character_shift) { + print_char(0x3C); + } else { + print_char(0x2C); + } + } + return false; + break; + case KC_SLSH: + if (record->event.pressed) { + if (character_shift) { + print_char(0x3F); + } else { + print_char(0x2F); + } + } + return false; + break; + case KC_QUOT: + if (record->event.pressed) { + if (character_shift) { + print_char(0x22); + } else { + print_char(0x27); + } + } + return false; + break; + case KC_GRV: + if (record->event.pressed) { + if (character_shift) { + print_char(0x7E); + } else { + print_char(0x60); + } + } + return false; + break; + case KC_MINS: + if (record->event.pressed) { + if (character_shift) { + print_char(0x5F); + } else { + print_char(0x2D); + } + } + return false; + break; + case KC_EQL: + if (record->event.pressed) { + if (character_shift) { + print_char(0x2B); + } else { + print_char(0x3D); + } + } + return false; + break; + case KC_LBRC: + if (record->event.pressed) { + if (character_shift) { + print_char(0x7B); + } else { + print_char(0x5B); + } + } + return false; + break; + case KC_RBRC: + if (record->event.pressed) { + if (character_shift) { + print_char(0x7D); + } else { + print_char(0x5D); + } + } + return false; + break; + case KC_BSLS: + if (record->event.pressed) { + if (character_shift) { + print_char(0x7C); + } else { + print_char(0x5C); + } + } + return false; + break; + } + } + return true; + +}
\ No newline at end of file diff --git a/quantum/process_keycode/process_printer.h b/quantum/process_keycode/process_printer.h new file mode 100644 index 0000000000..fdd36d75a8 --- /dev/null +++ b/quantum/process_keycode/process_printer.h @@ -0,0 +1,8 @@ +#ifndef PROCESS_PRINTER_H +#define PROCESS_PRINTER_H + +#include "quantum.h" + +#include "protocol/serial.h" + +#endif
\ No newline at end of file diff --git a/quantum/process_keycode/process_printer_bb.c b/quantum/process_keycode/process_printer_bb.c new file mode 100644 index 0000000000..1924d03774 --- /dev/null +++ b/quantum/process_keycode/process_printer_bb.c @@ -0,0 +1,260 @@ +#include "process_printer.h" +#include "action_util.h" + +bool printing_enabled = false; +uint8_t character_shift = 0; + +#define SERIAL_PIN_DDR DDRD +#define SERIAL_PIN_PORT PORTD +#define SERIAL_PIN_MASK _BV(PD3) +#define SERIAL_DELAY 52 + +inline static +void serial_delay(void) { + _delay_us(SERIAL_DELAY); +} + +inline static +void serial_high(void) { + SERIAL_PIN_PORT |= SERIAL_PIN_MASK; +} + +inline static +void serial_low(void) { + SERIAL_PIN_PORT &= ~SERIAL_PIN_MASK; +} + +inline static +void serial_output(void) { + SERIAL_PIN_DDR |= SERIAL_PIN_MASK; +} + + +void enabled_printing() { + printing_enabled = true; + serial_output(); + serial_high(); +} + +void disable_printing() { + printing_enabled = false; +} + +uint8_t shifted_numbers[10] = {0x21, 0x40, 0x23, 0x24, 0x25, 0x5E, 0x26, 0x2A, 0x28, 0x29}; + +// uint8_t keycode_to_ascii[0xFF][2]; + +// keycode_to_ascii[KC_MINS] = {0x2D, 0x5F}; + +void print_char(char c) { + uint8_t b = 8; + serial_output(); + while( b-- ) { + if(c & (1 << b)) { + serial_high(); + } else { + serial_low(); + } + serial_delay(); + } +} + +void print_string(char c[]) { + for(uint8_t i = 0; i < strlen(c); i++) + print_char(c[i]); +} + +bool process_printer(uint16_t keycode, keyrecord_t *record) { + if (keycode == PRINT_ON) { + enabled_printing(); + return false; + } + if (keycode == PRINT_OFF) { + disable_printing(); + return false; + } + + if (printing_enabled) { + switch(keycode) { + case KC_EXLM ... KC_RPRN: + case KC_UNDS: + case KC_PLUS: + case KC_LCBR: + case KC_RCBR: + case KC_PIPE: + case KC_TILD: + keycode &= 0xFF; + case KC_LSFT: + case KC_RSFT: + if (record->event.pressed) { + character_shift++; + } else { + character_shift--; + } + return false; + break; + } + + switch(keycode) { + case KC_F1: + if (record->event.pressed) { + print_string("This is a line of text!\n\n\n"); + } + return false; + case KC_ESC: + if (record->event.pressed) { + print_char(0x1B); + } + return false; + break; + case KC_SPC: + if (record->event.pressed) { + print_char(0x20); + } + return false; + break; + case KC_A ... KC_Z: + if (record->event.pressed) { + if (character_shift) { + print_char(0x41 + (keycode - KC_A)); + } else { + print_char(0x61 + (keycode - KC_A)); + } + } + return false; + break; + case KC_1 ... KC_0: + if (record->event.pressed) { + if (character_shift) { + print_char(shifted_numbers[keycode - KC_1]); + } else { + print_char(0x30 + ((keycode - KC_1 + 1) % 10)); + } + } + return false; + break; + case KC_ENT: + if (record->event.pressed) { + if (character_shift) { + print_char(0x0C); + } else { + print_char(0x0A); + } + } + return false; + break; + case KC_BSPC: + if (record->event.pressed) { + if (character_shift) { + print_char(0x18); + } else { + print_char(0x1A); + } + } + return false; + break; + case KC_DOT: + if (record->event.pressed) { + if (character_shift) { + print_char(0x3E); + } else { + print_char(0x2E); + } + } + return false; + break; + case KC_COMM: + if (record->event.pressed) { + if (character_shift) { + print_char(0x3C); + } else { + print_char(0x2C); + } + } + return false; + break; + case KC_SLSH: + if (record->event.pressed) { + if (character_shift) { + print_char(0x3F); + } else { + print_char(0x2F); + } + } + return false; + break; + case KC_QUOT: + if (record->event.pressed) { + if (character_shift) { + print_char(0x22); + } else { + print_char(0x27); + } + } + return false; + break; + case KC_GRV: + if (record->event.pressed) { + if (character_shift) { + print_char(0x7E); + } else { + print_char(0x60); + } + } + return false; + break; + case KC_MINS: + if (record->event.pressed) { + if (character_shift) { + print_char(0x5F); + } else { + print_char(0x2D); + } + } + return false; + break; + case KC_EQL: + if (record->event.pressed) { + if (character_shift) { + print_char(0x2B); + } else { + print_char(0x3D); + } + } + return false; + break; + case KC_LBRC: + if (record->event.pressed) { + if (character_shift) { + print_char(0x7B); + } else { + print_char(0x5B); + } + } + return false; + break; + case KC_RBRC: + if (record->event.pressed) { + if (character_shift) { + print_char(0x7D); + } else { + print_char(0x5D); + } + } + return false; + break; + case KC_BSLS: + if (record->event.pressed) { + if (character_shift) { + print_char(0x7C); + } else { + print_char(0x5C); + } + } + return false; + break; + } + } + return true; + +}
\ No newline at end of file diff --git a/quantum/process_keycode/process_tap_dance.c b/quantum/process_keycode/process_tap_dance.c index 6ae362c4c2..403dca5380 100644 --- a/quantum/process_keycode/process_tap_dance.c +++ b/quantum/process_keycode/process_tap_dance.c @@ -43,12 +43,16 @@ static inline void process_tap_dance_action_on_dance_finished (qk_tap_dance_acti if (action->state.finished) return; action->state.finished = true; + add_mods(action->state.oneshot_mods); + send_keyboard_report(); _process_tap_dance_action_fn (&action->state, action->user_data, action->fn.on_dance_finished); } static inline void process_tap_dance_action_on_reset (qk_tap_dance_action_t *action) { _process_tap_dance_action_fn (&action->state, action->user_data, action->fn.on_reset); + del_mods(action->state.oneshot_mods); + send_keyboard_report(); } bool process_tap_dance(uint16_t keycode, keyrecord_t *record) { @@ -70,6 +74,7 @@ bool process_tap_dance(uint16_t keycode, keyrecord_t *record) { action->state.keycode = keycode; action->state.count++; action->state.timer = timer_read(); + action->state.oneshot_mods = get_oneshot_mods(); process_tap_dance_action_on_each_tap (action); if (last_td && last_td != keycode) { @@ -109,7 +114,7 @@ void matrix_scan_tap_dance () { if (highest_td == -1) return; - for (int i = 0; i <= highest_td; i++) { +for (int i = 0; i <= highest_td; i++) { qk_tap_dance_action_t *action = &tap_dance_actions[i]; if (action->state.count && timer_elapsed (action->state.timer) > TAPPING_TERM) { diff --git a/quantum/process_keycode/process_tap_dance.h b/quantum/process_keycode/process_tap_dance.h index f753cbba66..726752ecc7 100644 --- a/quantum/process_keycode/process_tap_dance.h +++ b/quantum/process_keycode/process_tap_dance.h @@ -9,6 +9,7 @@ typedef struct { uint8_t count; + uint8_t oneshot_mods; uint16_t keycode; uint16_t timer; bool interrupted; diff --git a/quantum/process_keycode/process_ucis.c b/quantum/process_keycode/process_ucis.c new file mode 100644 index 0000000000..4ad2533b08 --- /dev/null +++ b/quantum/process_keycode/process_ucis.c @@ -0,0 +1,133 @@ +#include "process_ucis.h" + +qk_ucis_state_t qk_ucis_state; + +void qk_ucis_start(void) { + qk_ucis_state.count = 0; + qk_ucis_state.in_progress = true; + + qk_ucis_start_user(); +} + +__attribute__((weak)) +void qk_ucis_start_user(void) { + unicode_input_start(); + register_hex(0x2328); + unicode_input_finish(); +} + +static bool is_uni_seq(char *seq) { + uint8_t i; + + for (i = 0; seq[i]; i++) { + uint16_t code; + if (('1' <= seq[i]) && (seq[i] <= '0')) + code = seq[i] - '1' + KC_1; + else + code = seq[i] - 'a' + KC_A; + + if (i > qk_ucis_state.count || qk_ucis_state.codes[i] != code) + return false; + } + + return (qk_ucis_state.codes[i] == KC_ENT || + qk_ucis_state.codes[i] == KC_SPC); +} + +__attribute__((weak)) +void qk_ucis_symbol_fallback (void) { + for (uint8_t i = 0; i < qk_ucis_state.count - 1; i++) { + uint8_t code = qk_ucis_state.codes[i]; + register_code(code); + unregister_code(code); + wait_ms(UNICODE_TYPE_DELAY); + } +} + +void register_ucis(const char *hex) { + for(int i = 0; hex[i]; i++) { + uint8_t kc = 0; + char c = hex[i]; + + switch (c) { + case '0': + kc = KC_0; + break; + case '1' ... '9': + kc = c - '1' + KC_1; + break; + case 'a' ... 'f': + kc = c - 'a' + KC_A; + break; + case 'A' ... 'F': + kc = c - 'A' + KC_A; + break; + } + + if (kc) { + register_code (kc); + unregister_code (kc); + wait_ms (UNICODE_TYPE_DELAY); + } + } +} + +bool process_ucis (uint16_t keycode, keyrecord_t *record) { + uint8_t i; + + if (!qk_ucis_state.in_progress) + return true; + + if (qk_ucis_state.count >= UCIS_MAX_SYMBOL_LENGTH && + !(keycode == KC_BSPC || keycode == KC_ESC || keycode == KC_SPC || keycode == KC_ENT)) { + return false; + } + + if (!record->event.pressed) + return true; + + qk_ucis_state.codes[qk_ucis_state.count] = keycode; + qk_ucis_state.count++; + + if (keycode == KC_BSPC) { + if (qk_ucis_state.count >= 2) { + qk_ucis_state.count -= 2; + return true; + } else { + qk_ucis_state.count--; + return false; + } + } + + if (keycode == KC_ENT || keycode == KC_SPC || keycode == KC_ESC) { + bool symbol_found = false; + + for (i = qk_ucis_state.count; i > 0; i--) { + register_code (KC_BSPC); + unregister_code (KC_BSPC); + wait_ms(UNICODE_TYPE_DELAY); + } + + if (keycode == KC_ESC) { + qk_ucis_state.in_progress = false; + return false; + } + + unicode_input_start(); + for (i = 0; ucis_symbol_table[i].symbol; i++) { + if (is_uni_seq (ucis_symbol_table[i].symbol)) { + symbol_found = true; + register_ucis(ucis_symbol_table[i].code + 2); + break; + } + } + if (!symbol_found) { + qk_ucis_symbol_fallback(); + } + unicode_input_finish(); + + qk_ucis_state.in_progress = false; + return false; + } + return true; +}
\ No newline at end of file diff --git a/quantum/process_keycode/process_ucis.h b/quantum/process_keycode/process_ucis.h new file mode 100644 index 0000000000..4332f57b35 --- /dev/null +++ b/quantum/process_keycode/process_ucis.h @@ -0,0 +1,35 @@ +#ifndef PROCESS_UCIS_H +#define PROCESS_UCIS_H + +#include "quantum.h" +#include "process_unicode_common.h" + +#ifndef UCIS_MAX_SYMBOL_LENGTH +#define UCIS_MAX_SYMBOL_LENGTH 32 +#endif + +typedef struct { + char *symbol; + char *code; +} qk_ucis_symbol_t; + +typedef struct { + uint8_t count; + uint16_t codes[UCIS_MAX_SYMBOL_LENGTH]; + bool in_progress:1; +} qk_ucis_state_t; + +extern qk_ucis_state_t qk_ucis_state; + +#define UCIS_TABLE(...) {__VA_ARGS__, {NULL, NULL}} +#define UCIS_SYM(name, code) {name, #code} + +extern const qk_ucis_symbol_t ucis_symbol_table[]; + +void qk_ucis_start(void); +void qk_ucis_start_user(void); +void qk_ucis_symbol_fallback (void); +void register_ucis(const char *hex); +bool process_ucis (uint16_t keycode, keyrecord_t *record); + +#endif diff --git a/quantum/process_keycode/process_unicode.c b/quantum/process_keycode/process_unicode.c index cd3a610b4d..ccae6fdcad 100644 --- a/quantum/process_keycode/process_unicode.c +++ b/quantum/process_keycode/process_unicode.c @@ -1,77 +1,5 @@ #include "process_unicode.h" - -static uint8_t input_mode; - -__attribute__((weak)) -uint16_t hex_to_keycode(uint8_t hex) -{ - if (hex == 0x0) { - return KC_0; - } else if (hex < 0xA) { - return KC_1 + (hex - 0x1); - } else { - return KC_A + (hex - 0xA); - } -} - -void set_unicode_input_mode(uint8_t os_target) -{ - input_mode = os_target; -} - -uint8_t get_unicode_input_mode(void) { - return input_mode; -} - -__attribute__((weak)) -void unicode_input_start (void) { - switch(input_mode) { - case UC_OSX: - register_code(KC_LALT); - break; - case UC_LNX: - register_code(KC_LCTL); - register_code(KC_LSFT); - register_code(KC_U); - unregister_code(KC_U); - unregister_code(KC_LSFT); - unregister_code(KC_LCTL); - break; - case UC_WIN: - register_code(KC_LALT); - register_code(KC_PPLS); - unregister_code(KC_PPLS); - break; - case UC_WINC: - register_code(KC_RALT); - unregister_code(KC_RALT); - register_code(KC_U); - unregister_code(KC_U); - } - wait_ms(UNICODE_TYPE_DELAY); -} - -__attribute__((weak)) -void unicode_input_finish (void) { - switch(input_mode) { - case UC_OSX: - case UC_WIN: - unregister_code(KC_LALT); - break; - case UC_LNX: - register_code(KC_SPC); - unregister_code(KC_SPC); - break; - } -} - -void register_hex(uint16_t hex) { - for(int i = 3; i >= 0; i--) { - uint8_t digit = ((hex >> (i*4)) & 0xF); - register_code(hex_to_keycode(digit)); - unregister_code(hex_to_keycode(digit)); - } -} +#include "action_util.h" bool process_unicode(uint16_t keycode, keyrecord_t *record) { if (keycode > QK_UNICODE && record->event.pressed) { @@ -83,182 +11,3 @@ bool process_unicode(uint16_t keycode, keyrecord_t *record) { return true; } -#ifdef UNICODEMAP_ENABLE -__attribute__((weak)) -const uint32_t PROGMEM unicode_map[] = { -}; - -void register_hex32(uint32_t hex) { - uint8_t onzerostart = 1; - for(int i = 7; i >= 0; i--) { - if (i <= 3) { - onzerostart = 0; - } - uint8_t digit = ((hex >> (i*4)) & 0xF); - if (digit == 0) { - if (onzerostart == 0) { - register_code(hex_to_keycode(digit)); - unregister_code(hex_to_keycode(digit)); - } - } else { - register_code(hex_to_keycode(digit)); - unregister_code(hex_to_keycode(digit)); - onzerostart = 0; - } - } -} - -__attribute__((weak)) -void unicode_map_input_error() {} - -bool process_unicode_map(uint16_t keycode, keyrecord_t *record) { - if ((keycode & QK_UNICODE_MAP) == QK_UNICODE_MAP && record->event.pressed) { - const uint32_t* map = unicode_map; - uint16_t index = keycode & 0x7FF; - uint32_t code = pgm_read_dword_far(&map[index]); - if ((code > 0xFFFF && input_mode == UC_OSX) || (code > 0xFFFFF && input_mode == UC_LNX)) { - // when character is out of range supported by the OS - unicode_map_input_error(); - } else { - unicode_input_start(); - register_hex32(code); - unicode_input_finish(); - } - } - return true; -} -#endif - -#ifdef UCIS_ENABLE -qk_ucis_state_t qk_ucis_state; - -void qk_ucis_start(void) { - qk_ucis_state.count = 0; - qk_ucis_state.in_progress = true; - - qk_ucis_start_user(); -} - -__attribute__((weak)) -void qk_ucis_start_user(void) { - unicode_input_start(); - register_hex(0x2328); - unicode_input_finish(); -} - -static bool is_uni_seq(char *seq) { - uint8_t i; - - for (i = 0; seq[i]; i++) { - uint16_t code; - if (('1' <= seq[i]) && (seq[i] <= '0')) - code = seq[i] - '1' + KC_1; - else - code = seq[i] - 'a' + KC_A; - - if (i > qk_ucis_state.count || qk_ucis_state.codes[i] != code) - return false; - } - - return (qk_ucis_state.codes[i] == KC_ENT || - qk_ucis_state.codes[i] == KC_SPC); -} - -__attribute__((weak)) -void qk_ucis_symbol_fallback (void) { - for (uint8_t i = 0; i < qk_ucis_state.count - 1; i++) { - uint8_t code = qk_ucis_state.codes[i]; - register_code(code); - unregister_code(code); - wait_ms(UNICODE_TYPE_DELAY); - } -} - -void register_ucis(const char *hex) { - for(int i = 0; hex[i]; i++) { - uint8_t kc = 0; - char c = hex[i]; - - switch (c) { - case '0': - kc = KC_0; - break; - case '1' ... '9': - kc = c - '1' + KC_1; - break; - case 'a' ... 'f': - kc = c - 'a' + KC_A; - break; - case 'A' ... 'F': - kc = c - 'A' + KC_A; - break; - } - - if (kc) { - register_code (kc); - unregister_code (kc); - wait_ms (UNICODE_TYPE_DELAY); - } - } -} - -bool process_ucis (uint16_t keycode, keyrecord_t *record) { - uint8_t i; - - if (!qk_ucis_state.in_progress) - return true; - - if (qk_ucis_state.count >= UCIS_MAX_SYMBOL_LENGTH && - !(keycode == KC_BSPC || keycode == KC_ESC || keycode == KC_SPC || keycode == KC_ENT)) { - return false; - } - - if (!record->event.pressed) - return true; - - qk_ucis_state.codes[qk_ucis_state.count] = keycode; - qk_ucis_state.count++; - - if (keycode == KC_BSPC) { - if (qk_ucis_state.count >= 2) { - qk_ucis_state.count -= 2; - return true; - } else { - qk_ucis_state.count--; - return false; - } - } - - if (keycode == KC_ENT || keycode == KC_SPC || keycode == KC_ESC) { - bool symbol_found = false; - - for (i = qk_ucis_state.count; i > 0; i--) { - register_code (KC_BSPC); - unregister_code (KC_BSPC); - wait_ms(UNICODE_TYPE_DELAY); - } - - if (keycode == KC_ESC) { - qk_ucis_state.in_progress = false; - return false; - } - - unicode_input_start(); - for (i = 0; ucis_symbol_table[i].symbol; i++) { - if (is_uni_seq (ucis_symbol_table[i].symbol)) { - symbol_found = true; - register_ucis(ucis_symbol_table[i].code + 2); - break; - } - } - if (!symbol_found) { - qk_ucis_symbol_fallback(); - } - unicode_input_finish(); - - qk_ucis_state.in_progress = false; - return false; - } - return true; -} -#endif diff --git a/quantum/process_keycode/process_unicode.h b/quantum/process_keycode/process_unicode.h index 065eeb5f6a..4c21f11eb9 100644 --- a/quantum/process_keycode/process_unicode.h +++ b/quantum/process_keycode/process_unicode.h @@ -2,165 +2,8 @@ #define PROCESS_UNICODE_H #include "quantum.h" - -#define UC_OSX 0 // Mac OS X -#define UC_LNX 1 // Linux -#define UC_WIN 2 // Windows 'HexNumpad' -#define UC_BSD 3 // BSD (not implemented) -#define UC_WINC 4 // WinCompose https://github.com/samhocevar/wincompose - -#ifndef UNICODE_TYPE_DELAY -#define UNICODE_TYPE_DELAY 10 -#endif - -void set_unicode_input_mode(uint8_t os_target); -uint8_t get_unicode_input_mode(void); -void unicode_input_start(void); -void unicode_input_finish(void); -void register_hex(uint16_t hex); +#include "process_unicode_common.h" bool process_unicode(uint16_t keycode, keyrecord_t *record); -#ifdef UNICODEMAP_ENABLE -bool process_unicode_map(uint16_t keycode, keyrecord_t *record); -#endif - -#ifdef UCIS_ENABLE -#ifndef UCIS_MAX_SYMBOL_LENGTH -#define UCIS_MAX_SYMBOL_LENGTH 32 -#endif - -typedef struct { - char *symbol; - char *code; -} qk_ucis_symbol_t; - -typedef struct { - uint8_t count; - uint16_t codes[UCIS_MAX_SYMBOL_LENGTH]; - bool in_progress:1; -} qk_ucis_state_t; - -extern qk_ucis_state_t qk_ucis_state; - -#define UCIS_TABLE(...) {__VA_ARGS__, {NULL, NULL}} -#define UCIS_SYM(name, code) {name, #code} - -extern const qk_ucis_symbol_t ucis_symbol_table[]; - -void qk_ucis_start(void); -void qk_ucis_start_user(void); -void qk_ucis_symbol_fallback (void); -void register_ucis(const char *hex); -bool process_ucis (uint16_t keycode, keyrecord_t *record); - -#endif - -#define UC_BSPC UC(0x0008) - -#define UC_SPC UC(0x0020) - -#define UC_EXLM UC(0x0021) -#define UC_DQUT UC(0x0022) -#define UC_HASH UC(0x0023) -#define UC_DLR UC(0x0024) -#define UC_PERC UC(0x0025) -#define UC_AMPR UC(0x0026) -#define UC_QUOT UC(0x0027) -#define UC_LPRN UC(0x0028) -#define UC_RPRN UC(0x0029) -#define UC_ASTR UC(0x002A) -#define UC_PLUS UC(0x002B) -#define UC_COMM UC(0x002C) -#define UC_DASH UC(0x002D) -#define UC_DOT UC(0x002E) -#define UC_SLSH UC(0x002F) - -#define UC_0 UC(0x0030) -#define UC_1 UC(0x0031) -#define UC_2 UC(0x0032) -#define UC_3 UC(0x0033) -#define UC_4 UC(0x0034) -#define UC_5 UC(0x0035) -#define UC_6 UC(0x0036) -#define UC_7 UC(0x0037) -#define UC_8 UC(0x0038) -#define UC_9 UC(0x0039) - -#define UC_COLN UC(0x003A) -#define UC_SCLN UC(0x003B) -#define UC_LT UC(0x003C) -#define UC_EQL UC(0x003D) -#define UC_GT UC(0x003E) -#define UC_QUES UC(0x003F) -#define UC_AT UC(0x0040) - -#define UC_A UC(0x0041) -#define UC_B UC(0x0042) -#define UC_C UC(0x0043) -#define UC_D UC(0x0044) -#define UC_E UC(0x0045) -#define UC_F UC(0x0046) -#define UC_G UC(0x0047) -#define UC_H UC(0x0048) -#define UC_I UC(0x0049) -#define UC_J UC(0x004A) -#define UC_K UC(0x004B) -#define UC_L UC(0x004C) -#define UC_M UC(0x004D) -#define UC_N UC(0x004E) -#define UC_O UC(0x004F) -#define UC_P UC(0x0050) -#define UC_Q UC(0x0051) -#define UC_R UC(0x0052) -#define UC_S UC(0x0053) -#define UC_T UC(0x0054) -#define UC_U UC(0x0055) -#define UC_V UC(0x0056) -#define UC_W UC(0x0057) -#define UC_X UC(0x0058) -#define UC_Y UC(0x0059) -#define UC_Z UC(0x005A) - -#define UC_LBRC UC(0x005B) -#define UC_BSLS UC(0x005C) -#define UC_RBRC UC(0x005D) -#define UC_CIRM UC(0x005E) -#define UC_UNDR UC(0x005F) - -#define UC_GRV UC(0x0060) - -#define UC_a UC(0x0061) -#define UC_b UC(0x0062) -#define UC_c UC(0x0063) -#define UC_d UC(0x0064) -#define UC_e UC(0x0065) -#define UC_f UC(0x0066) -#define UC_g UC(0x0067) -#define UC_h UC(0x0068) -#define UC_i UC(0x0069) -#define UC_j UC(0x006A) -#define UC_k UC(0x006B) -#define UC_l UC(0x006C) -#define UC_m UC(0x006D) -#define UC_n UC(0x006E) -#define UC_o UC(0x006F) -#define UC_p UC(0x0070) -#define UC_q UC(0x0071) -#define UC_r UC(0x0072) -#define UC_s UC(0x0073) -#define UC_t UC(0x0074) -#define UC_u UC(0x0075) -#define UC_v UC(0x0076) -#define UC_w UC(0x0077) -#define UC_x UC(0x0078) -#define UC_y UC(0x0079) -#define UC_z UC(0x007A) - -#define UC_LCBR UC(0x007B) -#define UC_PIPE UC(0x007C) -#define UC_RCBR UC(0x007D) -#define UC_TILD UC(0x007E) -#define UC_DEL UC(0x007F) - #endif diff --git a/quantum/process_keycode/process_unicode_common.c b/quantum/process_keycode/process_unicode_common.c new file mode 100644 index 0000000000..31bc3b7ab3 --- /dev/null +++ b/quantum/process_keycode/process_unicode_common.c @@ -0,0 +1,85 @@ +#include "process_unicode_common.h" + +uint8_t mods; + +void set_unicode_input_mode(uint8_t os_target) +{ + input_mode = os_target; +} + +uint8_t get_unicode_input_mode(void) { + return input_mode; +} + +__attribute__((weak)) +void unicode_input_start (void) { + // save current mods + mods = keyboard_report->mods; + + // unregister all mods to start from clean state + if (mods & MOD_BIT(KC_LSFT)) unregister_code(KC_LSFT); + if (mods & MOD_BIT(KC_RSFT)) unregister_code(KC_RSFT); + if (mods & MOD_BIT(KC_LCTL)) unregister_code(KC_LCTL); + if (mods & MOD_BIT(KC_RCTL)) unregister_code(KC_RCTL); + if (mods & MOD_BIT(KC_LALT)) unregister_code(KC_LALT); + if (mods & MOD_BIT(KC_RALT)) unregister_code(KC_RALT); + if (mods & MOD_BIT(KC_LGUI)) unregister_code(KC_LGUI); + if (mods & MOD_BIT(KC_RGUI)) unregister_code(KC_RGUI); + + switch(input_mode) { + case UC_OSX: + register_code(KC_LALT); + break; + case UC_LNX: + register_code(KC_LCTL); + register_code(KC_LSFT); + register_code(KC_U); + unregister_code(KC_U); + unregister_code(KC_LSFT); + unregister_code(KC_LCTL); + break; + case UC_WIN: + register_code(KC_LALT); + register_code(KC_PPLS); + unregister_code(KC_PPLS); + break; + case UC_WINC: + register_code(KC_RALT); + unregister_code(KC_RALT); + register_code(KC_U); + unregister_code(KC_U); + } + wait_ms(UNICODE_TYPE_DELAY); +} + +__attribute__((weak)) +void unicode_input_finish (void) { + switch(input_mode) { + case UC_OSX: + case UC_WIN: + unregister_code(KC_LALT); + break; + case UC_LNX: + register_code(KC_SPC); + unregister_code(KC_SPC); + break; + } + + // reregister previously set mods + if (mods & MOD_BIT(KC_LSFT)) register_code(KC_LSFT); + if (mods & MOD_BIT(KC_RSFT)) register_code(KC_RSFT); + if (mods & MOD_BIT(KC_LCTL)) register_code(KC_LCTL); + if (mods & MOD_BIT(KC_RCTL)) register_code(KC_RCTL); + if (mods & MOD_BIT(KC_LALT)) register_code(KC_LALT); + if (mods & MOD_BIT(KC_RALT)) register_code(KC_RALT); + if (mods & MOD_BIT(KC_LGUI)) register_code(KC_LGUI); + if (mods & MOD_BIT(KC_RGUI)) register_code(KC_RGUI); +} + +void register_hex(uint16_t hex) { + for(int i = 3; i >= 0; i--) { + uint8_t digit = ((hex >> (i*4)) & 0xF); + register_code(hex_to_keycode(digit)); + unregister_code(hex_to_keycode(digit)); + } +}
\ No newline at end of file diff --git a/quantum/process_keycode/process_unicode_common.h b/quantum/process_keycode/process_unicode_common.h new file mode 100644 index 0000000000..864693cdd0 --- /dev/null +++ b/quantum/process_keycode/process_unicode_common.h @@ -0,0 +1,132 @@ +#ifndef PROCESS_UNICODE_COMMON_H +#define PROCESS_UNICODE_COMMON_H + +#include "quantum.h" + +#ifndef UNICODE_TYPE_DELAY +#define UNICODE_TYPE_DELAY 10 +#endif + +__attribute__ ((unused)) +static uint8_t input_mode; + +void set_unicode_input_mode(uint8_t os_target); +uint8_t get_unicode_input_mode(void); +void unicode_input_start(void); +void unicode_input_finish(void); +void register_hex(uint16_t hex); + +#define UC_OSX 0 // Mac OS X +#define UC_LNX 1 // Linux +#define UC_WIN 2 // Windows 'HexNumpad' +#define UC_BSD 3 // BSD (not implemented) +#define UC_WINC 4 // WinCompose https://github.com/samhocevar/wincompose + +#define UC_BSPC UC(0x0008) + +#define UC_SPC UC(0x0020) + +#define UC_EXLM UC(0x0021) +#define UC_DQUT UC(0x0022) +#define UC_HASH UC(0x0023) +#define UC_DLR UC(0x0024) +#define UC_PERC UC(0x0025) +#define UC_AMPR UC(0x0026) +#define UC_QUOT UC(0x0027) +#define UC_LPRN UC(0x0028) +#define UC_RPRN UC(0x0029) +#define UC_ASTR UC(0x002A) +#define UC_PLUS UC(0x002B) +#define UC_COMM UC(0x002C) +#define UC_DASH UC(0x002D) +#define UC_DOT UC(0x002E) +#define UC_SLSH UC(0x002F) + +#define UC_0 UC(0x0030) +#define UC_1 UC(0x0031) +#define UC_2 UC(0x0032) +#define UC_3 UC(0x0033) +#define UC_4 UC(0x0034) +#define UC_5 UC(0x0035) +#define UC_6 UC(0x0036) +#define UC_7 UC(0x0037) +#define UC_8 UC(0x0038) +#define UC_9 UC(0x0039) + +#define UC_COLN UC(0x003A) +#define UC_SCLN UC(0x003B) +#define UC_LT UC(0x003C) +#define UC_EQL UC(0x003D) +#define UC_GT UC(0x003E) +#define UC_QUES UC(0x003F) +#define UC_AT UC(0x0040) + +#define UC_A UC(0x0041) +#define UC_B UC(0x0042) +#define UC_C UC(0x0043) +#define UC_D UC(0x0044) +#define UC_E UC(0x0045) +#define UC_F UC(0x0046) +#define UC_G UC(0x0047) +#define UC_H UC(0x0048) +#define UC_I UC(0x0049) +#define UC_J UC(0x004A) +#define UC_K UC(0x004B) +#define UC_L UC(0x004C) +#define UC_M UC(0x004D) +#define UC_N UC(0x004E) +#define UC_O UC(0x004F) +#define UC_P UC(0x0050) +#define UC_Q UC(0x0051) +#define UC_R UC(0x0052) +#define UC_S UC(0x0053) +#define UC_T UC(0x0054) +#define UC_U UC(0x0055) +#define UC_V UC(0x0056) +#define UC_W UC(0x0057) +#define UC_X UC(0x0058) +#define UC_Y UC(0x0059) +#define UC_Z UC(0x005A) + +#define UC_LBRC UC(0x005B) +#define UC_BSLS UC(0x005C) +#define UC_RBRC UC(0x005D) +#define UC_CIRM UC(0x005E) +#define UC_UNDR UC(0x005F) + +#define UC_GRV UC(0x0060) + +#define UC_a UC(0x0061) +#define UC_b UC(0x0062) +#define UC_c UC(0x0063) +#define UC_d UC(0x0064) +#define UC_e UC(0x0065) +#define UC_f UC(0x0066) +#define UC_g UC(0x0067) +#define UC_h UC(0x0068) +#define UC_i UC(0x0069) +#define UC_j UC(0x006A) +#define UC_k UC(0x006B) +#define UC_l UC(0x006C) +#define UC_m UC(0x006D) +#define UC_n UC(0x006E) +#define UC_o UC(0x006F) +#define UC_p UC(0x0070) +#define UC_q UC(0x0071) +#define UC_r UC(0x0072) +#define UC_s UC(0x0073) +#define UC_t UC(0x0074) +#define UC_u UC(0x0075) +#define UC_v UC(0x0076) +#define UC_w UC(0x0077) +#define UC_x UC(0x0078) +#define UC_y UC(0x0079) +#define UC_z UC(0x007A) + +#define UC_LCBR UC(0x007B) +#define UC_PIPE UC(0x007C) +#define UC_RCBR UC(0x007D) +#define UC_TILD UC(0x007E) +#define UC_DEL UC(0x007F) + +#endif
\ No newline at end of file diff --git a/quantum/process_keycode/process_unicodemap.c b/quantum/process_keycode/process_unicodemap.c new file mode 100644 index 0000000000..68a593a186 --- /dev/null +++ b/quantum/process_keycode/process_unicodemap.c @@ -0,0 +1,56 @@ +#include "process_unicodemap.h" +#include "process_unicode_common.h" + +__attribute__((weak)) +const uint32_t PROGMEM unicode_map[] = { +}; + +void register_hex32(uint32_t hex) { + bool onzerostart = true; + for(int i = 7; i >= 0; i--) { + if (i <= 3) { + onzerostart = false; + } + uint8_t digit = ((hex >> (i*4)) & 0xF); + if (digit == 0) { + if (!onzerostart) { + register_code(hex_to_keycode(digit)); + unregister_code(hex_to_keycode(digit)); + } + } else { + register_code(hex_to_keycode(digit)); + unregister_code(hex_to_keycode(digit)); + onzerostart = false; + } + } +} + +__attribute__((weak)) +void unicode_map_input_error() {} + +bool process_unicode_map(uint16_t keycode, keyrecord_t *record) { + uint8_t input_mode = get_unicode_input_mode(); + if ((keycode & QK_UNICODE_MAP) == QK_UNICODE_MAP && record->event.pressed) { + const uint32_t* map = unicode_map; + uint16_t index = keycode - QK_UNICODE_MAP; + uint32_t code = pgm_read_dword_far(&map[index]); + if (code > 0xFFFF && code <= 0x10ffff && input_mode == UC_OSX) { + // Convert to UTF-16 surrogate pair + code -= 0x10000; + uint32_t lo = code & 0x3ff; + uint32_t hi = (code & 0xffc00) >> 10; + unicode_input_start(); + register_hex32(hi + 0xd800); + register_hex32(lo + 0xdc00); + unicode_input_finish(); + } else if ((code > 0x10ffff && input_mode == UC_OSX) || (code > 0xFFFFF && input_mode == UC_LNX)) { + // when character is out of range supported by the OS + unicode_map_input_error(); + } else { + unicode_input_start(); + register_hex32(code); + unicode_input_finish(); + } + } + return true; +}
\ No newline at end of file diff --git a/quantum/process_keycode/process_unicodemap.h b/quantum/process_keycode/process_unicodemap.h new file mode 100644 index 0000000000..64a7a01090 --- /dev/null +++ b/quantum/process_keycode/process_unicodemap.h @@ -0,0 +1,9 @@ +#ifndef PROCESS_UNICODEMAP_H +#define PROCESS_UNICODEMAP_H + +#include "quantum.h" +#include "process_unicode_common.h" + +void unicode_map_input_error(void); +bool process_unicode_map(uint16_t keycode, keyrecord_t *record); +#endif
\ No newline at end of file diff --git a/quantum/quantum.c b/quantum/quantum.c index 098312e6ef..4a6d0355fa 100644 --- a/quantum/quantum.c +++ b/quantum/quantum.c @@ -1,4 +1,15 @@ #include "quantum.h" +#ifdef PROTOCOL_LUFA +#include "outputselect.h" +#endif + +#ifndef TAPPING_TERM +#define TAPPING_TERM 200 +#endif + +#ifdef FAUXCLICKY_ENABLE +#include "fauxclicky.h" +#endif static void do_code16 (uint16_t code, void (*f) (uint8_t)) { switch (code) { @@ -17,6 +28,8 @@ static void do_code16 (uint16_t code, void (*f) (uint8_t)) { if (code & QK_LGUI) f(KC_LGUI); + if (code < QK_RMODS_MIN) return; + if (code & QK_RCTL) f(KC_RCTL); if (code & QK_RSFT) @@ -27,14 +40,42 @@ static void do_code16 (uint16_t code, void (*f) (uint8_t)) { f(KC_RGUI); } +static inline void qk_register_weak_mods(uint8_t kc) { + add_weak_mods(MOD_BIT(kc)); + send_keyboard_report(); +} + +static inline void qk_unregister_weak_mods(uint8_t kc) { + del_weak_mods(MOD_BIT(kc)); + send_keyboard_report(); +} + +static inline void qk_register_mods(uint8_t kc) { + add_weak_mods(MOD_BIT(kc)); + send_keyboard_report(); +} + +static inline void qk_unregister_mods(uint8_t kc) { + del_weak_mods(MOD_BIT(kc)); + send_keyboard_report(); +} + void register_code16 (uint16_t code) { - do_code16 (code, register_code); + if (IS_MOD(code) || code == KC_NO) { + do_code16 (code, qk_register_mods); + } else { + do_code16 (code, qk_register_weak_mods); + } register_code (code); } void unregister_code16 (uint16_t code) { unregister_code (code); - do_code16 (code, unregister_code); + if (IS_MOD(code) || code == KC_NO) { + do_code16 (code, qk_unregister_mods); + } else { + do_code16 (code, qk_unregister_weak_mods); + } } __attribute__ ((weak)) @@ -75,6 +116,7 @@ void reset_keyboard(void) { #endif static bool shift_interrupted[2] = {0, 0}; +static uint16_t scs_timer = 0; bool process_record_quantum(keyrecord_t *record) { @@ -123,12 +165,18 @@ bool process_record_quantum(keyrecord_t *record) { #ifndef DISABLE_CHORDING process_chording(keycode, record) && #endif + #ifdef COMBO_ENABLE + process_combo(keycode, record) && + #endif #ifdef UNICODE_ENABLE process_unicode(keycode, record) && #endif #ifdef UCIS_ENABLE process_ucis(keycode, record) && #endif + #ifdef PRINTING_ENABLE + process_printer(keycode, record) && + #endif #ifdef UNICODEMAP_ENABLE process_unicode_map(keycode, record) && #endif @@ -152,6 +200,26 @@ bool process_record_quantum(keyrecord_t *record) { } return false; break; + #ifdef FAUXCLICKY_ENABLE + case FC_TOG: + if (record->event.pressed) { + FAUXCLICKY_TOGGLE; + } + return false; + break; + case FC_ON: + if (record->event.pressed) { + FAUXCLICKY_ON; + } + return false; + break; + case FC_OFF: + if (record->event.pressed) { + FAUXCLICKY_OFF; + } + return false; + break; + #endif #ifdef RGBLIGHT_ENABLE case RGB_TOG: if (record->event.pressed) { @@ -202,6 +270,36 @@ bool process_record_quantum(keyrecord_t *record) { return false; break; #endif + #ifdef PROTOCOL_LUFA + case OUT_AUTO: + if (record->event.pressed) { + set_output(OUTPUT_AUTO); + } + return false; + break; + case OUT_USB: + if (record->event.pressed) { + set_output(OUTPUT_USB); + } + return false; + break; + #ifdef BLUETOOTH_ENABLE + case OUT_BT: + if (record->event.pressed) { + set_output(OUTPUT_BLUETOOTH); + } + return false; + break; + #endif + #ifdef ADAFRUIT_BLE_ENABLE + case OUT_BLE: + if (record->event.pressed) { + set_output(OUTPUT_ADAFRUIT_BLE); + } + return false; + break; + #endif + #endif case MAGIC_SWAP_CONTROL_CAPSLOCK ... MAGIC_TOGGLE_NKRO: if (record->event.pressed) { // MAGIC actions (BOOTMAGIC without the boot) @@ -283,6 +381,7 @@ bool process_record_quantum(keyrecord_t *record) { case KC_LSPO: { if (record->event.pressed) { shift_interrupted[0] = false; + scs_timer = timer_read (); register_mods(MOD_BIT(KC_LSFT)); } else { @@ -292,7 +391,7 @@ bool process_record_quantum(keyrecord_t *record) { shift_interrupted[1] = true; } #endif - if (!shift_interrupted[0]) { + if (!shift_interrupted[0] && timer_elapsed(scs_timer) < TAPPING_TERM) { register_code(LSPO_KEY); unregister_code(LSPO_KEY); } @@ -305,6 +404,7 @@ bool process_record_quantum(keyrecord_t *record) { case KC_RSPC: { if (record->event.pressed) { shift_interrupted[1] = false; + scs_timer = timer_read (); register_mods(MOD_BIT(KC_RSFT)); } else { @@ -314,7 +414,7 @@ bool process_record_quantum(keyrecord_t *record) { shift_interrupted[1] = true; } #endif - if (!shift_interrupted[1]) { + if (!shift_interrupted[1] && timer_elapsed(scs_timer) < TAPPING_TERM) { register_code(RSPC_KEY); unregister_code(RSPC_KEY); } @@ -496,6 +596,11 @@ void matrix_scan_quantum() { #ifdef TAP_DANCE_ENABLE matrix_scan_tap_dance(); #endif + + #ifdef COMBO_ENABLE + matrix_scan_combo(); + #endif + matrix_scan_kb(); } @@ -513,34 +618,45 @@ static const uint8_t backlight_pin = BACKLIGHT_PIN; # define COM1x1 COM1A1 # define OCR1x OCR1A #else -# error "Backlight pin not supported - use B5, B6, or B7" +# define NO_BACKLIGHT_CLOCK +#endif + +#ifndef BACKLIGHT_ON_STATE +#define BACKLIGHT_ON_STATE 0 #endif __attribute__ ((weak)) void backlight_init_ports(void) { - // Setup backlight pin as output and output low. + // Setup backlight pin as output and output to on state. // DDRx |= n _SFR_IO8((backlight_pin >> 4) + 1) |= _BV(backlight_pin & 0xF); - // PORTx &= ~n - _SFR_IO8((backlight_pin >> 4) + 2) &= ~_BV(backlight_pin & 0xF); + #if BACKLIGHT_ON_STATE == 0 + // PORTx &= ~n + _SFR_IO8((backlight_pin >> 4) + 2) &= ~_BV(backlight_pin & 0xF); + #else + // PORTx |= n + _SFR_IO8((backlight_pin >> 4) + 2) |= _BV(backlight_pin & 0xF); + #endif - // Use full 16-bit resolution. - ICR1 = 0xFFFF; + #ifndef NO_BACKLIGHT_CLOCK + // Use full 16-bit resolution. + ICR1 = 0xFFFF; - // I could write a wall of text here to explain... but TL;DW - // Go read the ATmega32u4 datasheet. - // And this: http://blog.saikoled.com/post/43165849837/secret-konami-cheat-code-to-high-resolution-pwm-on + // I could write a wall of text here to explain... but TL;DW + // Go read the ATmega32u4 datasheet. + // And this: http://blog.saikoled.com/post/43165849837/secret-konami-cheat-code-to-high-resolution-pwm-on - // Pin PB7 = OCR1C (Timer 1, Channel C) - // Compare Output Mode = Clear on compare match, Channel C = COM1C1=1 COM1C0=0 - // (i.e. start high, go low when counter matches.) - // WGM Mode 14 (Fast PWM) = WGM13=1 WGM12=1 WGM11=1 WGM10=0 - // Clock Select = clk/1 (no prescaling) = CS12=0 CS11=0 CS10=1 + // Pin PB7 = OCR1C (Timer 1, Channel C) + // Compare Output Mode = Clear on compare match, Channel C = COM1C1=1 COM1C0=0 + // (i.e. start high, go low when counter matches.) + // WGM Mode 14 (Fast PWM) = WGM13=1 WGM12=1 WGM11=1 WGM10=0 + // Clock Select = clk/1 (no prescaling) = CS12=0 CS11=0 CS10=1 - TCCR1A = _BV(COM1x1) | _BV(WGM11); // = 0b00001010; - TCCR1B = _BV(WGM13) | _BV(WGM12) | _BV(CS10); // = 0b00011001; + TCCR1A = _BV(COM1x1) | _BV(WGM11); // = 0b00001010; + TCCR1B = _BV(WGM13) | _BV(WGM12) | _BV(CS10); // = 0b00011001; + #endif backlight_init(); #ifdef BACKLIGHT_BREATHING @@ -552,24 +668,43 @@ __attribute__ ((weak)) void backlight_set(uint8_t level) { // Prevent backlight blink on lowest level - // PORTx &= ~n - _SFR_IO8((backlight_pin >> 4) + 2) &= ~_BV(backlight_pin & 0xF); + #if BACKLIGHT_ON_STATE == 0 + // PORTx &= ~n + _SFR_IO8((backlight_pin >> 4) + 2) &= ~_BV(backlight_pin & 0xF); + #else + // PORTx |= n + _SFR_IO8((backlight_pin >> 4) + 2) |= _BV(backlight_pin & 0xF); + #endif if ( level == 0 ) { - // Turn off PWM control on backlight pin, revert to output low. - TCCR1A &= ~(_BV(COM1x1)); - OCR1x = 0x0; - } else if ( level == BACKLIGHT_LEVELS ) { - // Turn on PWM control of backlight pin - TCCR1A |= _BV(COM1x1); - // Set the brightness - OCR1x = 0xFFFF; - } else { - // Turn on PWM control of backlight pin - TCCR1A |= _BV(COM1x1); - // Set the brightness - OCR1x = 0xFFFF >> ((BACKLIGHT_LEVELS - level) * ((BACKLIGHT_LEVELS + 1) / 2)); - } + #ifndef NO_BACKLIGHT_CLOCK + // Turn off PWM control on backlight pin, revert to output low. + TCCR1A &= ~(_BV(COM1x1)); + OCR1x = 0x0; + #else + #if BACKLIGHT_ON_STATE == 0 + // PORTx |= n + _SFR_IO8((backlight_pin >> 4) + 2) |= _BV(backlight_pin & 0xF); + #else + // PORTx &= ~n + _SFR_IO8((backlight_pin >> 4) + 2) &= ~_BV(backlight_pin & 0xF); + #endif + #endif + } + #ifndef NO_BACKLIGHT_CLOCK + else if ( level == BACKLIGHT_LEVELS ) { + // Turn on PWM control of backlight pin + TCCR1A |= _BV(COM1x1); + // Set the brightness + OCR1x = 0xFFFF; + } + else { + // Turn on PWM control of backlight pin + TCCR1A |= _BV(COM1x1); + // Set the brightness + OCR1x = 0xFFFF >> ((BACKLIGHT_LEVELS - level) * ((BACKLIGHT_LEVELS + 1) / 2)); + } + #endif #ifdef BACKLIGHT_BREATHING breathing_intensity_default(); @@ -799,6 +934,64 @@ void backlight_set(uint8_t level) #endif // backlight +// Functions for spitting out values +// + +void send_dword(uint32_t number) { // this might not actually work + uint16_t word = (number >> 16); + send_word(word); + send_word(number & 0xFFFFUL); +} + +void send_word(uint16_t number) { + uint8_t byte = number >> 8; + send_byte(byte); + send_byte(number & 0xFF); +} + +void send_byte(uint8_t number) { + uint8_t nibble = number >> 4; + send_nibble(nibble); + send_nibble(number & 0xF); +} + +void send_nibble(uint8_t number) { + switch (number) { + case 0: + register_code(KC_0); + unregister_code(KC_0); + break; + case 1 ... 9: + register_code(KC_1 + (number - 1)); + unregister_code(KC_1 + (number - 1)); + break; + case 0xA ... 0xF: + register_code(KC_A + (number - 0xA)); + unregister_code(KC_A + (number - 0xA)); + break; + } +} + + +__attribute__((weak)) +uint16_t hex_to_keycode(uint8_t hex) +{ + if (hex == 0x0) { + return KC_0; + } else if (hex < 0xA) { + return KC_1 + (hex - 0x1); + } else { + return KC_A + (hex - 0xA); + } +} + +void api_send_unicode(uint32_t unicode) { +#ifdef API_ENABLE + uint8_t chunk[4]; + dword_to_bytes(unicode, chunk); + MT_SEND_DATA(DT_UNICODE, chunk, 5); +#endif +} __attribute__ ((weak)) void led_set_user(uint8_t usb_led) { diff --git a/quantum/quantum.h b/quantum/quantum.h index 0c60466495..580d51202a 100644 --- a/quantum/quantum.h +++ b/quantum/quantum.h @@ -15,7 +15,6 @@ #ifdef RGBLIGHT_ENABLE #include "rgblight.h" #endif - #include "action_layer.h" #include "eeconfig.h" #include <stddef.h> @@ -57,8 +56,24 @@ extern uint32_t default_layer_state; #include "process_unicode.h" #endif +#ifdef UCIS_ENABLE + #include "process_ucis.h" +#endif + +#ifdef UNICODEMAP_ENABLE + #include "process_unicodemap.h" +#endif + #include "process_tap_dance.h" +#ifdef PRINTING_ENABLE + #include "process_printer.h" +#endif + +#ifdef COMBO_ENABLE + #include "process_combo.h" +#endif + #define SEND_STRING(str) send_string(PSTR(str)) void send_string(const char *str); @@ -106,8 +121,15 @@ void breathing_speed_dec(uint8_t value); #endif #endif +void send_dword(uint32_t number); +void send_word(uint16_t number); +void send_byte(uint8_t number); +void send_nibble(uint8_t number); +uint16_t hex_to_keycode(uint8_t hex); void led_set_user(uint8_t usb_led); void led_set_kb(uint8_t usb_led); +void api_send_unicode(uint32_t unicode); + #endif diff --git a/quantum/quantum_keycodes.h b/quantum/quantum_keycodes.h new file mode 100644 index 0000000000..63b626926d --- /dev/null +++ b/quantum/quantum_keycodes.h @@ -0,0 +1,359 @@ + +#ifndef QUANTUM_KEYCODES_H +#define QUANTUM_KEYCODES_H + +enum quantum_keycodes { + // Ranges used in shortucuts - not to be used directly + QK_TMK = 0x0000, + QK_TMK_MAX = 0x00FF, + QK_MODS = 0x0100, + QK_LCTL = 0x0100, + QK_LSFT = 0x0200, + QK_LALT = 0x0400, + QK_LGUI = 0x0800, + QK_RMODS_MIN = 0x1000, + QK_RCTL = 0x1100, + QK_RSFT = 0x1200, + QK_RALT = 0x1400, + QK_RGUI = 0x1800, + QK_MODS_MAX = 0x1FFF, + QK_FUNCTION = 0x2000, + QK_FUNCTION_MAX = 0x2FFF, + QK_MACRO = 0x3000, + QK_MACRO_MAX = 0x3FFF, + QK_LAYER_TAP = 0x4000, + QK_LAYER_TAP_MAX = 0x4FFF, + QK_TO = 0x5000, + QK_TO_MAX = 0x50FF, + QK_MOMENTARY = 0x5100, + QK_MOMENTARY_MAX = 0x51FF, + QK_DEF_LAYER = 0x5200, + QK_DEF_LAYER_MAX = 0x52FF, + QK_TOGGLE_LAYER = 0x5300, + QK_TOGGLE_LAYER_MAX = 0x53FF, + QK_ONE_SHOT_LAYER = 0x5400, + QK_ONE_SHOT_LAYER_MAX = 0x54FF, + QK_ONE_SHOT_MOD = 0x5500, + QK_ONE_SHOT_MOD_MAX = 0x55FF, +#ifndef DISABLE_CHORDING + QK_CHORDING = 0x5600, + QK_CHORDING_MAX = 0x56FF, +#endif + QK_TAP_DANCE = 0x5700, + QK_TAP_DANCE_MAX = 0x57FF, + QK_LAYER_TAP_TOGGLE = 0x5800, + QK_LAYER_TAP_TOGGLE_MAX = 0x58FF, + QK_MOD_TAP = 0x6000, + QK_MOD_TAP_MAX = 0x7FFF, +#if defined(UNICODEMAP_ENABLE) && defined(UNICODE_ENABLE) + #error "Cannot enable both UNICODEMAP && UNICODE" +#endif +#ifdef UNICODE_ENABLE + QK_UNICODE = 0x8000, + QK_UNICODE_MAX = 0xFFFF, +#endif +#ifdef UNICODEMAP_ENABLE + QK_UNICODE_MAP = 0x8000, + QK_UNICODE_MAP_MAX = 0x83FF, +#endif + + // Loose keycodes - to be used directly + + RESET = 0x5C00, + DEBUG, + MAGIC_SWAP_CONTROL_CAPSLOCK, + MAGIC_CAPSLOCK_TO_CONTROL, + MAGIC_SWAP_LALT_LGUI, + MAGIC_SWAP_RALT_RGUI, + MAGIC_NO_GUI, + MAGIC_SWAP_GRAVE_ESC, + MAGIC_SWAP_BACKSLASH_BACKSPACE, + MAGIC_HOST_NKRO, + MAGIC_SWAP_ALT_GUI, + MAGIC_UNSWAP_CONTROL_CAPSLOCK, + MAGIC_UNCAPSLOCK_TO_CONTROL, + MAGIC_UNSWAP_LALT_LGUI, + MAGIC_UNSWAP_RALT_RGUI, + MAGIC_UNNO_GUI, + MAGIC_UNSWAP_GRAVE_ESC, + MAGIC_UNSWAP_BACKSLASH_BACKSPACE, + MAGIC_UNHOST_NKRO, + MAGIC_UNSWAP_ALT_GUI, + MAGIC_TOGGLE_NKRO, + + // Leader key +#ifndef DISABLE_LEADER + KC_LEAD, +#endif + + // Audio on/off/toggle + AU_ON, + AU_OFF, + AU_TOG, + +#ifdef FAUXCLICKY_ENABLE + // Faux clicky + FC_ON, + FC_OFF, + FC_TOG, +#endif + + // Music mode on/off/toggle + MU_ON, + MU_OFF, + MU_TOG, + + // Music voice iterate + MUV_IN, + MUV_DE, + + // Midi mode on/off + MIDI_ON, + MIDI_OFF, + + // Backlight functionality + BL_0, + BL_1, + BL_2, + BL_3, + BL_4, + BL_5, + BL_6, + BL_7, + BL_8, + BL_9, + BL_10, + BL_11, + BL_12, + BL_13, + BL_14, + BL_15, + BL_DEC, + BL_INC, + BL_TOGG, + BL_STEP, + + // RGB functionality + RGB_TOG, + RGB_MOD, + RGB_HUI, + RGB_HUD, + RGB_SAI, + RGB_SAD, + RGB_VAI, + RGB_VAD, + + // Left shift, open paren + KC_LSPO, + + // Right shift, close paren + KC_RSPC, + + // Printing + PRINT_ON, + PRINT_OFF, + + // output selection + OUT_AUTO, + OUT_USB, +#ifdef BLUETOOTH_ENABLE + OUT_BT, +#endif +#ifdef ADAFRUIT_BLE_ENABLE + OUT_BLE, +#endif + + // always leave at the end + SAFE_RANGE +}; + +// Ability to use mods in layouts +#define LCTL(kc) (kc | QK_LCTL) +#define LSFT(kc) (kc | QK_LSFT) +#define LALT(kc) (kc | QK_LALT) +#define LGUI(kc) (kc | QK_LGUI) +#define RCTL(kc) (kc | QK_RCTL) +#define RSFT(kc) (kc | QK_RSFT) +#define RALT(kc) (kc | QK_RALT) +#define RGUI(kc) (kc | QK_RGUI) + +#define HYPR(kc) (kc | QK_LCTL | QK_LSFT | QK_LALT | QK_LGUI) +#define MEH(kc) (kc | QK_LCTL | QK_LSFT | QK_LALT) +#define LCAG(kc) (kc | QK_LCTL | QK_LALT | QK_LGUI) +#define ALTG(kc) (kc | QK_RCTL | QK_RALT) +#define SCMD(kc) (kc | QK_LGUI | QK_LSFT) +#define SWIN(kc) SCMD(kc) + +#define MOD_HYPR 0xf +#define MOD_MEH 0x7 + + +// Aliases for shifted symbols +// Each key has a 4-letter code, and some have longer aliases too. +// While the long aliases are descriptive, the 4-letter codes +// make for nicer grid layouts (everything lines up), and are +// the preferred style for Quantum. +#define KC_TILD LSFT(KC_GRV) // ~ +#define KC_TILDE KC_TILD + +#define KC_EXLM LSFT(KC_1) // ! +#define KC_EXCLAIM KC_EXLM + +#define KC_AT LSFT(KC_2) // @ + +#define KC_HASH LSFT(KC_3) // # + +#define KC_DLR LSFT(KC_4) // $ +#define KC_DOLLAR KC_DLR + +#define KC_PERC LSFT(KC_5) // % +#define KC_PERCENT KC_PERC + +#define KC_CIRC LSFT(KC_6) // ^ +#define KC_CIRCUMFLEX KC_CIRC + +#define KC_AMPR LSFT(KC_7) // & +#define KC_AMPERSAND KC_AMPR + +#define KC_ASTR LSFT(KC_8) // * +#define KC_ASTERISK KC_ASTR + +#define KC_LPRN LSFT(KC_9) // ( +#define KC_LEFT_PAREN KC_LPRN + +#define KC_RPRN LSFT(KC_0) // ) +#define KC_RIGHT_PAREN KC_RPRN + +#define KC_UNDS LSFT(KC_MINS) // _ +#define KC_UNDERSCORE KC_UNDS + +#define KC_PLUS LSFT(KC_EQL) // + + +#define KC_LCBR LSFT(KC_LBRC) // { +#define KC_LEFT_CURLY_BRACE KC_LCBR + +#define KC_RCBR LSFT(KC_RBRC) // } +#define KC_RIGHT_CURLY_BRACE KC_RCBR + +#define KC_LABK LSFT(KC_COMM) // < +#define KC_LEFT_ANGLE_BRACKET KC_LABK + +#define KC_RABK LSFT(KC_DOT) // > +#define KC_RIGHT_ANGLE_BRACKET KC_RABK + +#define KC_COLN LSFT(KC_SCLN) // : +#define KC_COLON KC_COLN + +#define KC_PIPE LSFT(KC_BSLS) // | + +#define KC_LT LSFT(KC_COMM) // < + +#define KC_GT LSFT(KC_DOT) // > + +#define KC_QUES LSFT(KC_SLSH) // ? +#define KC_QUESTION KC_QUES + +#define KC_DQT LSFT(KC_QUOT) // " +#define KC_DOUBLE_QUOTE KC_DQT +#define KC_DQUO KC_DQT + +#define KC_DELT KC_DELETE // Del key (four letter code) + +// Alias for function layers than expand past FN31 +#define FUNC(kc) (kc | QK_FUNCTION) + +// Aliases +#define S(kc) LSFT(kc) +#define F(kc) FUNC(kc) + +#define M(kc) (kc | QK_MACRO) + +#define MACROTAP(kc) (kc | QK_MACRO | FUNC_TAP<<8) +#define MACRODOWN(...) (record->event.pressed ? MACRO(__VA_ARGS__) : MACRO_NONE) + + +// L-ayer, T-ap - 256 keycode max, 16 layer max +#define LT(layer, kc) (kc | QK_LAYER_TAP | ((layer & 0xF) << 8)) + +#define AG_SWAP MAGIC_SWAP_ALT_GUI +#define AG_NORM MAGIC_UNSWAP_ALT_GUI + +#define BL_ON BL_9 +#define BL_OFF BL_0 + +#define MI_ON MIDI_ON +#define MI_OFF MIDI_OFF + +// GOTO layer - 16 layers max +// when: +// ON_PRESS = 1 +// ON_RELEASE = 2 +// Unless you have a good reason not to do so, prefer ON_PRESS (1) as your default. +// In fact, we changed it to assume ON_PRESS for sanity/simplicity. If needed, you can add your own +// keycode modeled after the old version, kept below for this. +/* #define TO(layer, when) (layer | QK_TO | (when << 0x4)) */ +#define TO(layer) (layer | QK_TO | (ON_PRESS << 0x4)) + +// Momentary switch layer - 256 layer max +#define MO(layer) (layer | QK_MOMENTARY) + +// Set default layer - 256 layer max +#define DF(layer) (layer | QK_DEF_LAYER) + +// Toggle to layer - 256 layer max +#define TG(layer) (layer | QK_TOGGLE_LAYER) + +// One-shot layer - 256 layer max +#define OSL(layer) (layer | QK_ONE_SHOT_LAYER) + +// One-shot mod +#define OSM(mod) (mod | QK_ONE_SHOT_MOD) + +// Layer tap-toggle +#define TT(layer) (layer | QK_LAYER_TAP_TOGGLE) + +// M-od, T-ap - 256 keycode max +#define MT(mod, kc) (kc | QK_MOD_TAP | ((mod & 0x1F) << 8)) + +#define CTL_T(kc) MT(MOD_LCTL, kc) +#define LCTL_T(kc) MT(MOD_LCTL, kc) +#define RCTL_T(kc) MT(MOD_RCTL, kc) + +#define SFT_T(kc) MT(MOD_LSFT, kc) +#define LSFT_T(kc) MT(MOD_LSFT, kc) +#define RSFT_T(kc) MT(MOD_RSFT, kc) + +#define ALT_T(kc) MT(MOD_LALT, kc) +#define LALT_T(kc) MT(MOD_LALT, kc) +#define RALT_T(kc) MT(MOD_RALT, kc) +#define ALGR_T(kc) MT(MOD_RALT, kc) // dual-function AltGR + +#define GUI_T(kc) MT(MOD_LGUI, kc) +#define LGUI_T(kc) MT(MOD_LGUI, kc) +#define RGUI_T(kc) MT(MOD_RGUI, kc) + +#define C_S_T(kc) MT((MOD_LCTL | MOD_LSFT), kc) // Control + Shift e.g. for gnome-terminal +#define MEH_T(kc) MT((MOD_LCTL | MOD_LSFT | MOD_LALT), kc) // Meh is a less hyper version of the Hyper key -- doesn't include Win or Cmd, so just alt+shift+ctrl +#define LCAG_T(kc) MT((MOD_LCTL | MOD_LALT | MOD_LGUI), kc) // Left control alt and gui +#define RCAG_T(kc) MT((MOD_RCTL | MOD_RALT | MOD_RGUI), kc) // Right control alt and gui +#define ALL_T(kc) MT((MOD_LCTL | MOD_LSFT | MOD_LALT | MOD_LGUI), kc) // see http://brettterpstra.com/2012/12/08/a-useful-caps-lock-key/ +#define SCMD_T(kc) MT((MOD_LGUI | MOD_LSFT), kc) +#define SWIN_T(kc) SCMD_T(kc) + +// Dedicated keycode versions for Hyper and Meh, if you want to use them as standalone keys rather than mod-tap +#define KC_HYPR HYPR(KC_NO) +#define KC_MEH MEH(KC_NO) + +#ifdef UNICODE_ENABLE + // For sending unicode codes. + // You may not send codes over 7FFF -- this supports most of UTF8. + // To have a key that sends out Œ, go UC(0x0152) + #define UNICODE(n) (n | QK_UNICODE) + #define UC(n) UNICODE(n) +#endif + +#ifdef UNICODEMAP_ENABLE + #define X(n) (n | QK_UNICODE_MAP) +#endif + +#endif // QUANTUM_KEYCODES_H diff --git a/quantum/rgblight.c b/quantum/rgblight.c index d550c58660..dd1b91c63c 100644 --- a/quantum/rgblight.c +++ b/quantum/rgblight.c @@ -66,14 +66,17 @@ __attribute__ ((weak)) const uint8_t RGBLED_SNAKE_INTERVALS[] PROGMEM = {100, 50, 20}; __attribute__ ((weak)) const uint8_t RGBLED_KNIGHT_INTERVALS[] PROGMEM = {100, 50, 20}; +__attribute__ ((weak)) +const uint16_t RGBLED_GRADIENT_RANGES[] PROGMEM = {360, 240, 180, 120, 90}; rgblight_config_t rgblight_config; rgblight_config_t inmem_config; -struct cRGB led[RGBLED_NUM]; -uint8_t rgblight_inited = 0; +LED_TYPE led[RGBLED_NUM]; +uint8_t rgblight_inited = 0; +bool rgblight_timer_enabled = false; -void sethsv(uint16_t hue, uint8_t sat, uint8_t val, struct cRGB *led1) { +void sethsv(uint16_t hue, uint8_t sat, uint8_t val, LED_TYPE *led1) { uint8_t r = 0, g = 0, b = 0, base, color; if (sat == 0) { // Acromatic color (gray). Hue doesn't mind. @@ -124,7 +127,7 @@ void sethsv(uint16_t hue, uint8_t sat, uint8_t val, struct cRGB *led1) { setrgb(r, g, b, led1); } -void setrgb(uint8_t r, uint8_t g, uint8_t b, struct cRGB *led1) { +void setrgb(uint8_t r, uint8_t g, uint8_t b, LED_TYPE *led1) { (*led1).r = r; (*led1).g = g; (*led1).b = b; @@ -141,9 +144,9 @@ void eeconfig_update_rgblight_default(void) { dprintf("eeconfig_update_rgblight_default\n"); rgblight_config.enable = 1; rgblight_config.mode = 1; - rgblight_config.hue = 200; - rgblight_config.sat = 204; - rgblight_config.val = 204; + rgblight_config.hue = 0; + rgblight_config.sat = 255; + rgblight_config.val = 255; eeconfig_update_rgblight(rgblight_config.raw); } void eeconfig_debug_rgblight(void) { @@ -173,7 +176,7 @@ void rgblight_init(void) { } eeconfig_debug_rgblight(); // display current eeprom values - #if !defined(AUDIO_ENABLE) && defined(RGBLIGHT_TIMER) + #ifdef RGBLIGHT_ANIMATIONS rgblight_timer_init(); // setup the timer #endif @@ -182,6 +185,19 @@ void rgblight_init(void) { } } +void rgblight_update_dword(uint32_t dword) { + rgblight_config.raw = dword; + eeconfig_update_rgblight(rgblight_config.raw); + if (rgblight_config.enable) + rgblight_mode(rgblight_config.mode); + else { + #ifdef RGBLIGHT_ANIMATIONS + rgblight_timer_disable(); + #endif + rgblight_set(); + } +} + void rgblight_increase(void) { uint8_t mode = 0; if (rgblight_config.mode < RGBLIGHT_MODES) { @@ -205,6 +221,14 @@ void rgblight_step(void) { } rgblight_mode(mode); } +void rgblight_step_reverse(void) { + uint8_t mode = 0; + mode = rgblight_config.mode - 1; + if (mode < 1) { + mode = RGBLIGHT_MODES; + } + rgblight_mode(mode); +} void rgblight_mode(uint8_t mode) { if (!rgblight_config.enable) { @@ -220,19 +244,25 @@ void rgblight_mode(uint8_t mode) { eeconfig_update_rgblight(rgblight_config.raw); xprintf("rgblight mode: %u\n", rgblight_config.mode); if (rgblight_config.mode == 1) { - #if !defined(AUDIO_ENABLE) && defined(RGBLIGHT_TIMER) + #ifdef RGBLIGHT_ANIMATIONS rgblight_timer_disable(); #endif - } else if (rgblight_config.mode >= 2 && rgblight_config.mode <= 23) { + } else if (rgblight_config.mode >= 2 && rgblight_config.mode <= 24) { // MODE 2-5, breathing // MODE 6-8, rainbow mood // MODE 9-14, rainbow swirl // MODE 15-20, snake // MODE 21-23, knight - #if !defined(AUDIO_ENABLE) && defined(RGBLIGHT_TIMER) + #ifdef RGBLIGHT_ANIMATIONS rgblight_timer_enable(); #endif + } else if (rgblight_config.mode >= 25 && rgblight_config.mode <= 34) { + // MODE 25-34, static gradient + + #ifdef RGBLIGHT_ANIMATIONS + rgblight_timer_disable(); + #endif } rgblight_sethsv(rgblight_config.hue, rgblight_config.sat, rgblight_config.val); } @@ -244,7 +274,7 @@ void rgblight_toggle(void) { if (rgblight_config.enable) { rgblight_mode(rgblight_config.mode); } else { - #if !defined(AUDIO_ENABLE) && defined(RGBLIGHT_TIMER) + #ifdef RGBLIGHT_ANIMATIONS rgblight_timer_disable(); #endif _delay_ms(50); @@ -252,6 +282,13 @@ void rgblight_toggle(void) { } } +void rgblight_enable(void) { + rgblight_config.enable = 1; + eeconfig_update_rgblight(rgblight_config.raw); + xprintf("rgblight enable: rgblight_config.enable = %u\n", rgblight_config.enable); + rgblight_mode(rgblight_config.mode); +} + void rgblight_increase_hue(void) { uint16_t hue; @@ -307,7 +344,7 @@ void rgblight_decrease_val(void) { void rgblight_sethsv_noeeprom(uint16_t hue, uint8_t sat, uint8_t val) { inmem_config.raw = rgblight_config.raw; if (rgblight_config.enable) { - struct cRGB tmp_led; + LED_TYPE tmp_led; sethsv(hue, sat, val, &tmp_led); inmem_config.hue = hue; inmem_config.sat = sat; @@ -329,6 +366,17 @@ void rgblight_sethsv(uint16_t hue, uint8_t sat, uint8_t val) { } else if (rgblight_config.mode >= 6 && rgblight_config.mode <= 14) { // rainbow mood and rainbow swirl, ignore the change of hue hue = rgblight_config.hue; + } else if (rgblight_config.mode >= 25 && rgblight_config.mode <= 34) { + // static gradient + uint16_t _hue; + int8_t direction = ((rgblight_config.mode - 25) % 2) ? -1 : 1; + uint16_t range = pgm_read_word(&RGBLED_GRADIENT_RANGES[(rgblight_config.mode - 25) / 2]); + for (uint8_t i = 0; i < RGBLED_NUM; i++) { + _hue = (range / RGBLED_NUM * i * direction + hue + 360) % 360; + dprintf("rgblight rainbow set hsv: %u,%u,%d,%u\n", i, _hue, direction, range); + sethsv(_hue, sat, val, (LED_TYPE *)&led[i]); + } + rgblight_set(); } } rgblight_config.hue = hue; @@ -349,68 +397,90 @@ void rgblight_setrgb(uint8_t r, uint8_t g, uint8_t b) { rgblight_set(); } +__attribute__ ((weak)) void rgblight_set(void) { if (rgblight_config.enable) { - ws2812_setleds(led, RGBLED_NUM); + #ifdef RGBW + ws2812_setleds_rgbw(led, RGBLED_NUM); + #else + ws2812_setleds(led, RGBLED_NUM); + #endif } else { for (uint8_t i = 0; i < RGBLED_NUM; i++) { led[i].r = 0; led[i].g = 0; led[i].b = 0; } - ws2812_setleds(led, RGBLED_NUM); + #ifdef RGBW + ws2812_setleds_rgbw(led, RGBLED_NUM); + #else + ws2812_setleds(led, RGBLED_NUM); + #endif } } -#if !defined(AUDIO_ENABLE) && defined(RGBLIGHT_TIMER) +#ifdef RGBLIGHT_ANIMATIONS // Animation timer -- AVR Timer3 void rgblight_timer_init(void) { - static uint8_t rgblight_timer_is_init = 0; - if (rgblight_timer_is_init) { - return; - } - rgblight_timer_is_init = 1; - /* Timer 3 setup */ - TCCR3B = _BV(WGM32) //CTC mode OCR3A as TOP - | _BV(CS30); //Clock selelct: clk/1 - /* Set TOP value */ - uint8_t sreg = SREG; - cli(); - OCR3AH = (RGBLED_TIMER_TOP >> 8) & 0xff; - OCR3AL = RGBLED_TIMER_TOP & 0xff; - SREG = sreg; + // static uint8_t rgblight_timer_is_init = 0; + // if (rgblight_timer_is_init) { + // return; + // } + // rgblight_timer_is_init = 1; + // /* Timer 3 setup */ + // TCCR3B = _BV(WGM32) // CTC mode OCR3A as TOP + // | _BV(CS30); // Clock selelct: clk/1 + // /* Set TOP value */ + // uint8_t sreg = SREG; + // cli(); + // OCR3AH = (RGBLED_TIMER_TOP >> 8) & 0xff; + // OCR3AL = RGBLED_TIMER_TOP & 0xff; + // SREG = sreg; + + rgblight_timer_enabled = true; } void rgblight_timer_enable(void) { - TIMSK3 |= _BV(OCIE3A); + rgblight_timer_enabled = true; dprintf("TIMER3 enabled.\n"); } void rgblight_timer_disable(void) { - TIMSK3 &= ~_BV(OCIE3A); + rgblight_timer_enabled = false; dprintf("TIMER3 disabled.\n"); } void rgblight_timer_toggle(void) { - TIMSK3 ^= _BV(OCIE3A); + rgblight_timer_enabled ^= rgblight_timer_enabled; dprintf("TIMER3 toggled.\n"); } -ISR(TIMER3_COMPA_vect) { - // mode = 1, static light, do nothing here - if (rgblight_config.mode >= 2 && rgblight_config.mode <= 5) { - // mode = 2 to 5, breathing mode - rgblight_effect_breathing(rgblight_config.mode - 2); - } else if (rgblight_config.mode >= 6 && rgblight_config.mode <= 8) { - // mode = 6 to 8, rainbow mood mod - rgblight_effect_rainbow_mood(rgblight_config.mode - 6); - } else if (rgblight_config.mode >= 9 && rgblight_config.mode <= 14) { - // mode = 9 to 14, rainbow swirl mode - rgblight_effect_rainbow_swirl(rgblight_config.mode - 9); - } else if (rgblight_config.mode >= 15 && rgblight_config.mode <= 20) { - // mode = 15 to 20, snake mode - rgblight_effect_snake(rgblight_config.mode - 15); - } else if (rgblight_config.mode >= 21 && rgblight_config.mode <= 23) { - // mode = 21 to 23, knight mode - rgblight_effect_knight(rgblight_config.mode - 21); +void rgblight_show_solid_color(uint8_t r, uint8_t g, uint8_t b) { + rgblight_enable(); + rgblight_mode(1); + rgblight_setrgb(r, g, b); +} + +void rgblight_task(void) { + if (rgblight_timer_enabled) { + // mode = 1, static light, do nothing here + if (rgblight_config.mode >= 2 && rgblight_config.mode <= 5) { + // mode = 2 to 5, breathing mode + rgblight_effect_breathing(rgblight_config.mode - 2); + } else if (rgblight_config.mode >= 6 && rgblight_config.mode <= 8) { + // mode = 6 to 8, rainbow mood mod + rgblight_effect_rainbow_mood(rgblight_config.mode - 6); + } else if (rgblight_config.mode >= 9 && rgblight_config.mode <= 14) { + // mode = 9 to 14, rainbow swirl mode + rgblight_effect_rainbow_swirl(rgblight_config.mode - 9); + } else if (rgblight_config.mode >= 15 && rgblight_config.mode <= 20) { + // mode = 15 to 20, snake mode + rgblight_effect_snake(rgblight_config.mode - 15); + } else if (rgblight_config.mode >= 21 && rgblight_config.mode <= 23) { + // mode = 21 to 23, knight mode + rgblight_effect_knight(rgblight_config.mode - 21); + } else if (rgblight_config.mode == 24) { + // mode = 24, christmas mode + rgblight_effect_christmas(); + } } } @@ -449,7 +519,7 @@ void rgblight_effect_rainbow_swirl(uint8_t interval) { last_timer = timer_read(); for (i = 0; i < RGBLED_NUM; i++) { hue = (360 / RGBLED_NUM * i + current_hue) % 360; - sethsv(hue, rgblight_config.sat, rgblight_config.val, &led[i]); + sethsv(hue, rgblight_config.sat, rgblight_config.val, (LED_TYPE *)&led[i]); } rgblight_set(); @@ -486,7 +556,7 @@ void rgblight_effect_snake(uint8_t interval) { k = k + RGBLED_NUM; } if (i == k) { - sethsv(rgblight_config.hue, rgblight_config.sat, (uint8_t)(rgblight_config.val*(RGBLIGHT_EFFECT_SNAKE_LENGTH-j)/RGBLIGHT_EFFECT_SNAKE_LENGTH), &led[i]); + sethsv(rgblight_config.hue, rgblight_config.sat, (uint8_t)(rgblight_config.val*(RGBLIGHT_EFFECT_SNAKE_LENGTH-j)/RGBLIGHT_EFFECT_SNAKE_LENGTH), (LED_TYPE *)&led[i]); } } } @@ -506,7 +576,7 @@ void rgblight_effect_knight(uint8_t interval) { static uint16_t last_timer = 0; uint8_t i, j, cur; int8_t k; - struct cRGB preled[RGBLED_NUM]; + LED_TYPE preled[RGBLED_NUM]; static int8_t increment = -1; if (timer_elapsed(last_timer) < pgm_read_byte(&RGBLED_KNIGHT_INTERVALS[interval])) { return; @@ -525,7 +595,7 @@ void rgblight_effect_knight(uint8_t interval) { k = RGBLED_NUM - 1; } if (i == k) { - sethsv(rgblight_config.hue, rgblight_config.sat, rgblight_config.val, &preled[i]); + sethsv(rgblight_config.hue, rgblight_config.sat, rgblight_config.val, (LED_TYPE *)&preled[i]); } } } @@ -555,4 +625,22 @@ void rgblight_effect_knight(uint8_t interval) { } } + +void rgblight_effect_christmas(void) { + static uint16_t current_offset = 0; + static uint16_t last_timer = 0; + uint16_t hue; + uint8_t i; + if (timer_elapsed(last_timer) < RGBLIGHT_EFFECT_CHRISTMAS_INTERVAL) { + return; + } + last_timer = timer_read(); + current_offset = (current_offset + 1) % 2; + for (i = 0; i < RGBLED_NUM; i++) { + hue = 0 + ((i/RGBLIGHT_EFFECT_CHRISTMAS_STEP + current_offset) % 2) * 120; + sethsv(hue, rgblight_config.sat, rgblight_config.val, (LED_TYPE *)&led[i]); + } + rgblight_set(); +} + #endif diff --git a/quantum/rgblight.h b/quantum/rgblight.h index 17f04ffcf2..2b3e791bf8 100644 --- a/quantum/rgblight.h +++ b/quantum/rgblight.h @@ -1,9 +1,8 @@ #ifndef RGBLIGHT_H #define RGBLIGHT_H - -#if !defined(AUDIO_ENABLE) && defined(RGBLIGHT_TIMER) - #define RGBLIGHT_MODES 23 +#ifdef RGBLIGHT_ANIMATIONS + #define RGBLIGHT_MODES 34 #else #define RGBLIGHT_MODES 1 #endif @@ -23,6 +22,14 @@ #define RGBLIGHT_EFFECT_DUALKNIGHT_LENGTH 4 #endif +#ifndef RGBLIGHT_EFFECT_CHRISTMAS_INTERVAL +#define RGBLIGHT_EFFECT_CHRISTMAS_INTERVAL 1000 +#endif + +#ifndef RGBLIGHT_EFFECT_CHRISTMAS_STEP +#define RGBLIGHT_EFFECT_CHRISTMAS_STEP 2 +#endif + #ifndef RGBLIGHT_HUE_STEP #define RGBLIGHT_HUE_STEP 10 #endif @@ -34,12 +41,15 @@ #endif #define RGBLED_TIMER_TOP F_CPU/(256*64) +// #define RGBLED_TIMER_TOP 0xFF10 #include <stdint.h> #include <stdbool.h> #include "eeconfig.h" #include "light_ws2812.h" +extern LED_TYPE led[RGBLED_NUM]; + extern const uint8_t RGBLED_BREATHING_INTERVALS[4] PROGMEM; extern const uint8_t RGBLED_RAINBOW_MOOD_INTERVALS[3] PROGMEM; extern const uint8_t RGBLED_RAINBOW_SWIRL_INTERVALS[3] PROGMEM; @@ -61,9 +71,12 @@ void rgblight_init(void); void rgblight_increase(void); void rgblight_decrease(void); void rgblight_toggle(void); +void rgblight_enable(void); void rgblight_step(void); +void rgblight_step_reverse(void); void rgblight_mode(uint8_t mode); void rgblight_set(void); +void rgblight_update_dword(uint32_t dword); void rgblight_increase_hue(void); void rgblight_decrease_hue(void); void rgblight_increase_sat(void); @@ -78,10 +91,15 @@ void eeconfig_update_rgblight(uint32_t val); void eeconfig_update_rgblight_default(void); void eeconfig_debug_rgblight(void); -void sethsv(uint16_t hue, uint8_t sat, uint8_t val, struct cRGB *led1); -void setrgb(uint8_t r, uint8_t g, uint8_t b, struct cRGB *led1); +void sethsv(uint16_t hue, uint8_t sat, uint8_t val, LED_TYPE *led1); +void setrgb(uint8_t r, uint8_t g, uint8_t b, LED_TYPE *led1); void rgblight_sethsv_noeeprom(uint16_t hue, uint8_t sat, uint8_t val); +#define EZ_RGB(val) rgblight_show_solid_color((val >> 16) & 0xFF, (val >> 8) & 0xFF, val & 0xFF) +void rgblight_show_solid_color(uint8_t r, uint8_t g, uint8_t b); + +void rgblight_task(void); + void rgblight_timer_init(void); void rgblight_timer_enable(void); void rgblight_timer_disable(void); @@ -91,5 +109,6 @@ void rgblight_effect_rainbow_mood(uint8_t interval); void rgblight_effect_rainbow_swirl(uint8_t interval); void rgblight_effect_snake(uint8_t interval); void rgblight_effect_knight(uint8_t interval); +void rgblight_effect_christmas(void); #endif diff --git a/quantum/template/config.h b/quantum/template/config.h index b02f0c7ebc..c61c4a6181 100644 --- a/quantum/template/config.h +++ b/quantum/template/config.h @@ -46,7 +46,7 @@ along with this program. If not, see <http://www.gnu.org/licenses/>. #define MATRIX_COL_PINS { F1, F0, B0 } #define UNUSED_PINS -/* COL2ROW or ROW2COL */ +/* COL2ROW, ROW2COL, or CUSTOM_MATRIX */ #define DIODE_DIRECTION COL2ROW // #define BACKLIGHT_PIN B7 diff --git a/quantum/template/rules.mk b/quantum/template/rules.mk index 55898147dd..bad3387bf4 100644 --- a/quantum/template/rules.mk +++ b/quantum/template/rules.mk @@ -65,3 +65,4 @@ MIDI_ENABLE ?= no # MIDI controls UNICODE_ENABLE ?= no # Unicode BLUETOOTH_ENABLE ?= no # Enable Bluetooth with the Adafruit EZ-Key HID AUDIO_ENABLE ?= no # Audio output on port C6 +FAUXCLICKY_ENABLE ?= no # Use buzzer to emulate clicky switches diff --git a/quantum/visualizer/visualizer.c b/quantum/visualizer/visualizer.c index 54f6faaa42..5826d909e4 100644 --- a/quantum/visualizer/visualizer.c +++ b/quantum/visualizer/visualizer.c @@ -53,10 +53,13 @@ SOFTWARE. #define "Visualizer thread priority not defined" #endif +// mods status +#include "action_util.h" static visualizer_keyboard_status_t current_status = { .layer = 0xFFFFFFFF, .default_layer = 0xFFFFFFFF, + .mods = 0xFF, .leds = 0xFFFFFFFF, .suspended = false, }; @@ -64,6 +67,7 @@ static visualizer_keyboard_status_t current_status = { static bool same_status(visualizer_keyboard_status_t* status1, visualizer_keyboard_status_t* status2) { return status1->layer == status2->layer && status1->default_layer == status2->default_layer && + status1->mods == status2->mods && status1->leds == status2->leds && status1->suspended == status2->suspended; } @@ -307,6 +311,45 @@ bool keyframe_display_layer_bitmap(keyframe_animation_t* animation, visualizer_s gdispFlush(); return false; } + +static void format_mods_bitmap_string(uint8_t mods, char* buffer) { + *buffer = ' '; + ++buffer; + + for (int i = 0; i<8; i++) + { + uint32_t mask = (1u << i); + if (mods & mask) { + *buffer = '1'; + } else { + *buffer = '0'; + } + ++buffer; + + if (i==3) { + *buffer = ' '; + ++buffer; + } + } + *buffer = 0; +} + +bool keyframe_display_mods_bitmap(keyframe_animation_t* animation, visualizer_state_t* state) { + (void)animation; + + const char* title = "Modifier states"; + const char* mods_header = " CSAG CSAG "; + char status_buffer[12]; + + gdispClear(White); + gdispDrawString(0, 0, title, state->font_fixed5x8, Black); + gdispDrawString(0, 10, mods_header, state->font_fixed5x8, Black); + format_mods_bitmap_string(state->status.mods, status_buffer); + gdispDrawString(0, 20, status_buffer, state->font_fixed5x8, Black); + + gdispFlush(); + return false; +} #endif // LCD_ENABLE bool keyframe_disable_lcd_and_backlight(keyframe_animation_t* animation, visualizer_state_t* state) { @@ -350,6 +393,7 @@ static DECLARE_THREAD_FUNCTION(visualizerThread, arg) { visualizer_keyboard_status_t initial_status = { .default_layer = 0xFFFFFFFF, .layer = 0xFFFFFFFF, + .mods = 0xFF, .leds = 0xFFFFFFFF, .suspended = false, }; @@ -499,7 +543,18 @@ void update_status(bool changed) { #endif } -void visualizer_update(uint32_t default_state, uint32_t state, uint32_t leds) { +uint8_t visualizer_get_mods() { + uint8_t mods = get_mods(); + +#ifndef NO_ACTION_ONESHOT + if (!has_oneshot_mods_timed_out()) { + mods |= get_oneshot_mods(); + } +#endif + return mods; +} + +void visualizer_update(uint32_t default_state, uint32_t state, uint8_t mods, uint32_t leds) { // Note that there's a small race condition here, the thread could read // a state where one of these are set but not the other. But this should // not really matter as it will be fixed during the next loop step. @@ -523,6 +578,7 @@ void visualizer_update(uint32_t default_state, uint32_t state, uint32_t leds) { visualizer_keyboard_status_t new_status = { .layer = state, .default_layer = default_state, + .mods = mods, .leds = leds, .suspended = current_status.suspended, }; diff --git a/quantum/visualizer/visualizer.h b/quantum/visualizer/visualizer.h index 53e250725c..315af50228 100644 --- a/quantum/visualizer/visualizer.h +++ b/quantum/visualizer/visualizer.h @@ -34,10 +34,14 @@ SOFTWARE. #include "lcd_backlight.h" #endif +// use this function to merget both real_mods and oneshot_mods in a uint16_t +uint8_t visualizer_get_mods(void); + // This need to be called once at the start void visualizer_init(void); // This should be called at every matrix scan -void visualizer_update(uint32_t default_state, uint32_t state, uint32_t leds); +void visualizer_update(uint32_t default_state, uint32_t state, uint8_t mods, uint32_t leds); + // This should be called when the keyboard goes to suspend state void visualizer_suspend(void); // This should be called when the keyboard wakes up from suspend state @@ -61,6 +65,7 @@ struct keyframe_animation_t; typedef struct { uint32_t layer; uint32_t default_layer; + uint8_t mods; uint32_t leds; // See led.h for available statuses bool suspended; } visualizer_keyboard_status_t; @@ -129,6 +134,8 @@ bool keyframe_set_backlight_color(keyframe_animation_t* animation, visualizer_st bool keyframe_display_layer_text(keyframe_animation_t* animation, visualizer_state_t* state); // Displays a bitmap (0/1) of all the currently active layers bool keyframe_display_layer_bitmap(keyframe_animation_t* animation, visualizer_state_t* state); +// Displays a bitmap (0/1) of all the currently active mods +bool keyframe_display_mods_bitmap(keyframe_animation_t* animation, visualizer_state_t* state); bool keyframe_disable_lcd_and_backlight(keyframe_animation_t* animation, visualizer_state_t* state); bool keyframe_enable_lcd_and_backlight(keyframe_animation_t* animation, visualizer_state_t* state); |