Add Mousekey parameters and accel keys.
parent
e451c05929
commit
8f7ed2bc19
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@ -29,10 +29,11 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
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#define IS_MOD(code) (KC_LCTRL <= (code) && (code) <= KC_RGUI)
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#define IS_FN(code) (KC_FN0 <= (code) && (code) <= KC_FN7)
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#define IS_MOUSEKEY(code) (KC_MS_UP <= (code) && (code) <= KC_MS_WH_RIGHT)
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#define IS_MOUSEKEY(code) (KC_MS_UP <= (code) && (code) <= KC_MS_ACCEL2)
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#define IS_MOUSEKEY_MOVE(code) (KC_MS_UP <= (code) && (code) <= KC_MS_RIGHT)
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#define IS_MOUSEKEY_BUTTON(code) (KC_MS_BTN1 <= (code) && (code) <= KC_MS_BTN5)
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#define IS_MOUSEKEY_WHEEL(code) (KC_MS_WH_UP <= (code) && (code) <= KC_MS_WH_RIGHT)
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#define IS_MOUSEKEY_ACCEL(code) (KC_MS_ACCEL0 <= (code) && (code) <= KC_MS_ACCEL2)
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#define IS_SPECIAL(code) ((0xB0 <= (code) && (code) <= 0xDF) || (0xE8 <= (code) && (code) <= 0xFF))
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#define IS_CONSUMER(code) (KC_MUTE <= (code) && (code) <= KC_WFAV)
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@ -120,6 +121,9 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
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#define KC_WH_D KC_MS_WH_DOWN
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#define KC_WH_L KC_MS_WH_LEFT
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#define KC_WH_R KC_MS_WH_RIGHT
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#define KC_ACL0 KC_MS_ACCEL0
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#define KC_ACL1 KC_MS_ACCEL1
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#define KC_ACL2 KC_MS_ACCEL2
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/* Sytem Control */
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#define KC_PWR KC_SYSTEM_POWER
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#define KC_SLEP KC_SYSTEM_SLEEP
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@ -429,13 +433,16 @@ enum internal_special_keycodes {
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KC_MS_BTN2,
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KC_MS_BTN3,
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KC_MS_BTN4,
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KC_MS_BTN5,
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KC_MS_BTN5, /* 0xF8 */
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/* Mousekey wheel */
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KC_MS_WH_UP,
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KC_MS_WH_DOWN,
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KC_MS_WH_LEFT,
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KC_MS_WH_RIGHT, /* 0xFC */
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/* 0xFD-FF vacant for future use */
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/* Mousekey accel */
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KC_MS_ACCEL0,
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KC_MS_ACCEL1,
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KC_MS_ACCEL2 /* 0xFF */
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};
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#endif /* KEYCODE_H */
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@ -27,40 +27,11 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
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static uint8_t mousekey_repeat = 0;
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static uint8_t mousekey_accel = 0;
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static void mousekey_debug(void);
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/* max value on report descriptor */
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#define MOUSEKEY_MOVE_MAX 127
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#define MOUSEKEY_WHEEL_MAX 15
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#ifndef MOUSEKEY_MOVE_DELTA
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#define MOUSEKEY_MOVE_DELTA 5
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#endif
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#ifndef MOUSEKEY_WHEEL_DELTA
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#define MOUSEKEY_WHEEL_DELTA 1
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#endif
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#ifndef MOUSEKEY_DELAY
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#define MOUSEKEY_DELAY 300
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#endif
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#ifndef MOUSEKEY_INTERVAL
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#define MOUSEKEY_INTERVAL 50
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#endif
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#ifndef MOUSEKEY_MAX_SPEED
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#define MOUSEKEY_MAX_SPEED 10
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#endif
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#ifndef MOUSEKEY_TIME_TO_MAX
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#define MOUSEKEY_TIME_TO_MAX 20
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#endif
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#ifndef MOUSEKEY_WHEEL_MAX_SPEED
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#define MOUSEKEY_WHEEL_MAX_SPEED 8
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#endif
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#ifndef MOUSEKEY_WHEEL_TIME_TO_MAX
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#define MOUSEKEY_WHEEL_TIME_TO_MAX 40
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#endif
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/*
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* Mouse keys acceleration algorithm
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* http://en.wikipedia.org/wiki/Mouse_keys
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@ -68,18 +39,18 @@ static void mousekey_debug(void);
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* speed = delta * max_speed * (repeat / time_to_max)**((1000+curve)/1000)
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*/
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/* milliseconds between the initial key press and first repeated motion event (0-2550) */
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static uint8_t mk_delay = MOUSEKEY_DELAY/10;
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uint8_t mk_delay = MOUSEKEY_DELAY/10;
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/* milliseconds between repeated motion events (0-255) */
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static uint8_t mk_interval = MOUSEKEY_INTERVAL;
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uint8_t mk_interval = MOUSEKEY_INTERVAL;
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/* steady speed (in action_delta units) applied each event (0-255) */
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static uint8_t mk_max_speed = MOUSEKEY_MAX_SPEED;
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uint8_t mk_max_speed = MOUSEKEY_MAX_SPEED;
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/* number of events (count) accelerating to steady speed (0-255) */
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static uint8_t mk_time_to_max = MOUSEKEY_TIME_TO_MAX;
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uint8_t mk_time_to_max = MOUSEKEY_TIME_TO_MAX;
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/* ramp used to reach maximum pointer speed (NOT SUPPORTED) */
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//static int8_t mk_curve = 0;
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static uint8_t mk_wheel_max_speed = MOUSEKEY_WHEEL_MAX_SPEED;
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static uint8_t mk_wheel_time_to_max = MOUSEKEY_WHEEL_TIME_TO_MAX;
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//int8_t mk_curve = 0;
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/* wheel params */
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uint8_t mk_wheel_max_speed = MOUSEKEY_WHEEL_MAX_SPEED;
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uint8_t mk_wheel_time_to_max = MOUSEKEY_WHEEL_TIME_TO_MAX;
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static uint16_t last_timer = 0;
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@ -88,25 +59,39 @@ static uint16_t last_timer = 0;
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static uint8_t move_unit(void)
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{
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uint16_t unit;
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if (mousekey_repeat > mk_time_to_max) {
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if (mousekey_accel & (1<<0)) {
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unit = (MOUSEKEY_MOVE_DELTA * mk_max_speed)/4;
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} else if (mousekey_accel & (1<<1)) {
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unit = (MOUSEKEY_MOVE_DELTA * mk_max_speed)/2;
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} else if (mousekey_accel & (1<<2)) {
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unit = (MOUSEKEY_MOVE_DELTA * mk_max_speed);
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} else if (mousekey_repeat == 0) {
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unit = MOUSEKEY_MOVE_DELTA;
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} else if (mousekey_repeat >= mk_time_to_max) {
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unit = MOUSEKEY_MOVE_DELTA * mk_max_speed;
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} else {
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unit = (MOUSEKEY_MOVE_DELTA * mk_max_speed * mousekey_repeat) / mk_time_to_max;
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}
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if (unit == 0) return 1;
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return (unit > MOUSEKEY_MOVE_MAX ? MOUSEKEY_MOVE_MAX : unit);
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return (unit > MOUSEKEY_MOVE_MAX ? MOUSEKEY_MOVE_MAX : (unit == 0 ? 1 : unit));
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}
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static uint8_t wheel_unit(void)
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{
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uint16_t unit;
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if (mousekey_repeat > mk_time_to_max) {
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if (mousekey_accel & (1<<0)) {
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unit = (MOUSEKEY_WHEEL_DELTA * mk_wheel_max_speed)/4;
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} else if (mousekey_accel & (1<<1)) {
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unit = (MOUSEKEY_WHEEL_DELTA * mk_wheel_max_speed)/2;
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} else if (mousekey_accel & (1<<2)) {
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unit = (MOUSEKEY_WHEEL_DELTA * mk_wheel_max_speed);
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} else if (mousekey_repeat == 0) {
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unit = MOUSEKEY_WHEEL_DELTA;
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} else if (mousekey_repeat >= mk_time_to_max) {
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unit = MOUSEKEY_WHEEL_DELTA * mk_wheel_max_speed;
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} else {
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unit = (MOUSEKEY_WHEEL_DELTA * mk_wheel_max_speed * mousekey_repeat) / mk_wheel_time_to_max;
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}
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if (unit == 0) return 1;
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return (unit > MOUSEKEY_WHEEL_MAX ? MOUSEKEY_WHEEL_MAX : unit);
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return (unit > MOUSEKEY_WHEEL_MAX ? MOUSEKEY_WHEEL_MAX : (unit == 0 ? 1 : unit));
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}
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void mousekey_task(void)
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@ -126,6 +111,7 @@ void mousekey_task(void)
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if (mouse_report.y > 0) mouse_report.y = move_unit();
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if (mouse_report.y < 0) mouse_report.y = move_unit() * -1;
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/* diagonal move [1/sqrt(2) = 0.7] */
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if (mouse_report.x && mouse_report.y) {
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mouse_report.x *= 0.7;
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mouse_report.y *= 0.7;
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@ -141,19 +127,22 @@ void mousekey_task(void)
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void mousekey_on(uint8_t code)
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{
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if (code == KC_MS_UP) mouse_report.y = MOUSEKEY_MOVE_DELTA * -1;
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else if (code == KC_MS_DOWN) mouse_report.y = MOUSEKEY_MOVE_DELTA;
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else if (code == KC_MS_LEFT) mouse_report.x = MOUSEKEY_MOVE_DELTA * -1;
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else if (code == KC_MS_RIGHT) mouse_report.x = MOUSEKEY_MOVE_DELTA;
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else if (code == KC_MS_WH_UP) mouse_report.v = MOUSEKEY_WHEEL_DELTA;
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else if (code == KC_MS_WH_DOWN) mouse_report.v = MOUSEKEY_WHEEL_DELTA * -1;
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else if (code == KC_MS_WH_LEFT) mouse_report.h = MOUSEKEY_WHEEL_DELTA * -1;
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else if (code == KC_MS_WH_RIGHT) mouse_report.h = MOUSEKEY_WHEEL_DELTA;
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if (code == KC_MS_UP) mouse_report.y = move_unit() * -1;
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else if (code == KC_MS_DOWN) mouse_report.y = move_unit();
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else if (code == KC_MS_LEFT) mouse_report.x = move_unit() * -1;
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else if (code == KC_MS_RIGHT) mouse_report.x = move_unit();
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else if (code == KC_MS_WH_UP) mouse_report.v = wheel_unit();
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else if (code == KC_MS_WH_DOWN) mouse_report.v = wheel_unit() * -1;
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else if (code == KC_MS_WH_LEFT) mouse_report.h = wheel_unit() * -1;
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else if (code == KC_MS_WH_RIGHT) mouse_report.h = wheel_unit();
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else if (code == KC_MS_BTN1) mouse_report.buttons |= MOUSE_BTN1;
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else if (code == KC_MS_BTN2) mouse_report.buttons |= MOUSE_BTN2;
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else if (code == KC_MS_BTN3) mouse_report.buttons |= MOUSE_BTN3;
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else if (code == KC_MS_BTN4) mouse_report.buttons |= MOUSE_BTN4;
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else if (code == KC_MS_BTN5) mouse_report.buttons |= MOUSE_BTN5;
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else if (code == KC_MS_ACCEL0) mousekey_accel |= (1<<0);
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else if (code == KC_MS_ACCEL1) mousekey_accel |= (1<<1);
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else if (code == KC_MS_ACCEL2) mousekey_accel |= (1<<2);
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}
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void mousekey_off(uint8_t code)
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@ -171,6 +160,9 @@ void mousekey_off(uint8_t code)
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else if (code == KC_MS_BTN3) mouse_report.buttons &= ~MOUSE_BTN3;
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else if (code == KC_MS_BTN4) mouse_report.buttons &= ~MOUSE_BTN4;
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else if (code == KC_MS_BTN5) mouse_report.buttons &= ~MOUSE_BTN5;
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else if (code == KC_MS_ACCEL0) mousekey_accel &= ~(1<<0);
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else if (code == KC_MS_ACCEL1) mousekey_accel &= ~(1<<1);
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else if (code == KC_MS_ACCEL2) mousekey_accel &= ~(1<<2);
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if (mouse_report.x == 0 && mouse_report.y == 0 && mouse_report.v == 0 && mouse_report.h == 0)
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mousekey_repeat = 0;
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@ -186,17 +178,19 @@ void mousekey_send(void)
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void mousekey_clear(void)
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{
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mouse_report = (report_mouse_t){};
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mousekey_repeat = 0;
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mousekey_accel = 0;
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}
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static void mousekey_debug(void)
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{
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if (!debug_mouse) return;
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print("mousekey [btn|x y v h]rep: [");
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print("mousekey [btn|x y v h](rep/acl): [");
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phex(mouse_report.buttons); print("|");
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phex(mouse_report.x); print(" ");
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phex(mouse_report.y); print(" ");
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phex(mouse_report.v); print(" ");
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phex(mouse_report.h); print("]");
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phex(mousekey_repeat);
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print("\n");
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phex(mouse_report.h); print("](");
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phex(mousekey_repeat); print("/");
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phex(mousekey_accel); print(")\n");
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}
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@ -21,6 +21,45 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
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#include <stdbool.h>
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#include "host.h"
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/* max value on report descriptor */
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#define MOUSEKEY_MOVE_MAX 127
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#define MOUSEKEY_WHEEL_MAX 127
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#ifndef MOUSEKEY_MOVE_DELTA
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#define MOUSEKEY_MOVE_DELTA 5
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#endif
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#ifndef MOUSEKEY_WHEEL_DELTA
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#define MOUSEKEY_WHEEL_DELTA 1
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#endif
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#ifndef MOUSEKEY_DELAY
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#define MOUSEKEY_DELAY 300
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#endif
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#ifndef MOUSEKEY_INTERVAL
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#define MOUSEKEY_INTERVAL 50
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#endif
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#ifndef MOUSEKEY_MAX_SPEED
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#define MOUSEKEY_MAX_SPEED 10
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#endif
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#ifndef MOUSEKEY_TIME_TO_MAX
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#define MOUSEKEY_TIME_TO_MAX 20
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#endif
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#ifndef MOUSEKEY_WHEEL_MAX_SPEED
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#define MOUSEKEY_WHEEL_MAX_SPEED 16
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#endif
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#ifndef MOUSEKEY_WHEEL_TIME_TO_MAX
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#define MOUSEKEY_WHEEL_TIME_TO_MAX 40
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#endif
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uint8_t mk_delay;
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uint8_t mk_interval;
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uint8_t mk_max_speed;
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uint8_t mk_time_to_max;
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uint8_t mk_wheel_max_speed;
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uint8_t mk_wheel_time_to_max;
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void mousekey_task(void);
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void mousekey_on(uint8_t code);
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void mousekey_off(uint8_t code);
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@ -59,7 +59,7 @@ static const uint8_t PROGMEM fn_layer[] = {
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2, // Fn2
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3, // Fn3
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3, // Fn4
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4, // Fn5
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5, // Fn5
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0, // Fn6
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0 // Fn7
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};
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@ -162,9 +162,9 @@ static const uint8_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
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LGUI,LALT, BTN1, RALT,FN4),
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#else
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KEYMAP(ESC, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, INS, DEL, \
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TAB, WH_L,WH_U,MS_U,WH_D,WH_R,WH_L,WH_D,WH_U,WH_R,NO, NO, NO, BSPC, \
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LCTL,NO, MS_L,MS_D,MS_R,NO, MS_L,MS_D,MS_U,MS_R,FN3, NO, ENT, \
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LSFT,BTN4,BTN5,BTN1,BTN2,BTN3,BTN2,BTN1,BTN4,BTN5,NO, RSFT,NO, \
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TAB, NO, NO, NO, NO, NO, WH_L,WH_D,WH_U,WH_R,NO, NO, NO, BSPC, \
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LCTL,NO, ACL0,ACL1,ACL2,NO, MS_L,MS_D,MS_U,MS_R,FN3, NO, ENT, \
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LSFT,NO, NO, NO, NO, BTN3,BTN2,BTN1,BTN4,BTN5,NO, RSFT,NO, \
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LGUI,LALT, BTN1, RALT,FN4),
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#endif
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