forked from forks/qmk_firmware
Merge remote-tracking branch 'origin/master' into develop
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commit
06f9297f94
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@ -21,8 +21,6 @@
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#include <math.h>
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uint8_t DRV2605L_transfer_buffer[2];
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uint8_t DRV2605L_tx_register[0];
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uint8_t DRV2605L_read_buffer[0];
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uint8_t DRV2605L_read_register;
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void DRV_write(uint8_t drv_register, uint8_t settings) {
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@ -32,8 +30,7 @@ void DRV_write(uint8_t drv_register, uint8_t settings) {
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}
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uint8_t DRV_read(uint8_t regaddress) {
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i2c_readReg(DRV2605L_BASE_ADDRESS << 1, regaddress, DRV2605L_read_buffer, 1, 100);
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DRV2605L_read_register = (uint8_t)DRV2605L_read_buffer[0];
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i2c_readReg(DRV2605L_BASE_ADDRESS << 1, regaddress, &DRV2605L_read_register, 1, 100);
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return DRV2605L_read_register;
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}
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@ -208,8 +208,6 @@ uint32_t layer_state_set_kb(uint32_t state) {
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if (is_keyboard_master())
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{
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current_layer = biton32(state);
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serial_m2s_buffer.current_layer = biton32(state);
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// If left half, do the LED toggle thing
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@ -56,8 +56,6 @@
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{ R40, R41, R42, R43, R44, R45, KC_NO } \
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}
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uint8_t current_layer;
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extern void led_toggle(int id, bool on);
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void set_all_leds(bool leds[6]);
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extern void set_layer_indicators(uint8_t layer);
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@ -15,7 +15,6 @@ extern size_t keymapsCount; // Total keymaps
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extern uint32_t cChord; // Current Chord
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extern uint32_t stenoLayers[]; // Chords that simulate QMK layers
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extern size_t stenoLayerCount; // Number of simulated layers
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uint32_t refChord; // Reference chord for PC macro
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// Function defs
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void processChord(bool useFakeSteno);
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@ -35,7 +34,7 @@ void CLICK_MOUSE(uint8_t);
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#define P(chord, act) if (cChord == (chord)) { if (!lookup) {act;} return chord;}
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#define PC(chord, act) if (cChord == (chord)) { if (!lookup) {act;} return chord;} \
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for(int i = 0; i < stenoLayerCount; i++) { \
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refChord = stenoLayers[i] | chord; \
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uint32_t refChord = stenoLayers[i] | chord; \
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if (cChord == (refChord)) { if (!lookup) {act;} return refChord;}; \
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}
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@ -15,7 +15,6 @@ extern size_t keymapsCount; // Total keymaps
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extern uint32_t cChord; // Current Chord
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extern uint32_t stenoLayers[]; // Chords that simulate QMK layers
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extern size_t stenoLayerCount; // Number of simulated layers
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uint32_t refChord; // Reference chord for PC macro
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// Function defs
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void processChord(bool useFakeSteno);
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@ -35,7 +34,7 @@ void CLICK_MOUSE(uint8_t);
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#define P(chord, act) if (cChord == (chord)) { if (!lookup) {act;} return chord;}
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#define PC(chord, act) if (cChord == (chord)) { if (!lookup) {act;} return chord;} \
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for(int i = 0; i < stenoLayerCount; i++) { \
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refChord = stenoLayers[i] | chord; \
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uint32_t refChord = stenoLayers[i] | chord; \
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if (cChord == (refChord)) { if (!lookup) {act;} return refChord;}; \
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}
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@ -38,37 +38,37 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
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#endif
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// MCP Pin Defs
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#define RROW1 (1<<3)
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#define RROW2 (1<<2)
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#define RROW3 (1<<1)
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#define RROW4 (1<<0)
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#define COL0 (1<<0)
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#define COL1 (1<<1)
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#define COL2 (1<<2)
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#define COL3 (1<<3)
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#define COL4 (1<<4)
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#define COL5 (1<<5)
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#define COL6 (1<<6)
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#define RROW1 (1u<<3)
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#define RROW2 (1u<<2)
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#define RROW3 (1u<<1)
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#define RROW4 (1u<<0)
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#define COL0 (1u<<0)
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#define COL1 (1u<<1)
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#define COL2 (1u<<2)
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#define COL3 (1u<<3)
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#define COL4 (1u<<4)
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#define COL5 (1u<<5)
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#define COL6 (1u<<6)
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// ATmega pin defs
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#define ROW1 (1<<6)
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#define ROW2 (1<<5)
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#define ROW3 (1<<4)
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#define ROW4 (1<<1)
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#define COL7 (1<<0)
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#define COL8 (1<<1)
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#define COL9 (1<<2)
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#define COL10 (1<<3)
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#define COL11 (1<<2)
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#define COL12 (1<<3)
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#define COL13 (1<<6)
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#define ROW1 (1u<<6)
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#define ROW2 (1u<<5)
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#define ROW3 (1u<<4)
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#define ROW4 (1u<<1)
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#define COL7 (1u<<0)
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#define COL8 (1u<<1)
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#define COL9 (1u<<2)
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#define COL10 (1u<<3)
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#define COL11 (1u<<2)
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#define COL12 (1u<<3)
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#define COL13 (1u<<6)
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//Trackball pin defs
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#define TRKUP (1<<4)
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#define TRKDN (1<<5)
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#define TRKLT (1<<6)
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#define TRKRT (1<<7)
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#define TRKBTN (1<<6)
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#define TRKUP (1u<<4)
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#define TRKDN (1u<<5)
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#define TRKLT (1u<<6)
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#define TRKRT (1u<<7)
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#define TRKBTN (1u<<6)
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// Multiple for mouse moves
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@ -1,6 +1,8 @@
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#include QMK_KEYBOARD_H
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#include <string.h>
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dynamic_macro_t dynamic_macros[DYNAMIC_MACRO_COUNT];
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void dynamic_macro_init(void) {
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/* zero out macro blocks */
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memset(&dynamic_macros, 0, DYNAMIC_MACRO_COUNT * sizeof(dynamic_macro_t));
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@ -71,8 +71,6 @@ typedef struct {
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uint16_t checksum;
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} dynamic_macro_t;
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dynamic_macro_t dynamic_macros[DYNAMIC_MACRO_COUNT];
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void dynamic_macro_init(void);
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void dynamic_macro_led_blink(void);
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void dynamic_macro_record_start(uint8_t macro_id);
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@ -24,7 +24,7 @@ __attribute__((weak)) float fauxclicky_pressed_note[2] = MUSICAL_NOTE(_D4, 0.25
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__attribute__((weak)) float fauxclicky_released_note[2] = MUSICAL_NOTE(_C4, 0.125);
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__attribute__((weak)) float fauxclicky_beep_note[2] = MUSICAL_NOTE(_C4, 0.25);
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bool fauxclicky_enabled;
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extern bool fauxclicky_enabled;
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//
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// tempo in BPM
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