simplify battery calculation for now
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@ -43,28 +43,97 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
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#define MATRIX_ROW_PINS { D7, C6, D0, D1, F5, F4, F1, F0 }
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#define UNUSED_PINS
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/* COL2ROW or ROW2COL */
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/*
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* Keyboard Matrix Assignments
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*
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* Change this to how you wired your keyboard
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* COLS: AVR pins used for columns, left to right
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* ROWS: AVR pins used for rows, top to bottom
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* DIODE_DIRECTION: COL2ROW = COL = Anode (+), ROW = Cathode (-, marked on diode)
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* ROW2COL = ROW = Anode (+), COL = Cathode (-, marked on diode)
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*
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*/
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#define DIODE_DIRECTION COL2ROW
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/* define if matrix has ghost */
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// #define BACKLIGHT_PIN B7
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// #define BACKLIGHT_BREATHING
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// #define BACKLIGHT_LEVELS 3
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/* Debounce reduces chatter (unintended double-presses) - set 0 if debouncing is not needed */
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#define DEBOUNCING_DELAY 5
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/* define if matrix has ghost (lacks anti-ghosting diodes) */
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//#define MATRIX_HAS_GHOST
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/* number of backlight levels */
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#define BACKLIGHT_LEVELS 3
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/* Set 0 if debouncing isn't needed */
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#define DEBOUNCING_DELAY 5
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/* Mechanical locking support. Use KC_LCAP, KC_LNUM or KC_LSCR instead in keymap */
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#define LOCKING_SUPPORT_ENABLE
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// #define LOCKING_SUPPORT_ENABLE
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/* Locking resynchronize hack */
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#define LOCKING_RESYNC_ENABLE
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// #define LOCKING_RESYNC_ENABLE
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/*
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* Force NKRO
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*
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* Force NKRO (nKey Rollover) to be enabled by default, regardless of the saved
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* state in the bootmagic EEPROM settings. (Note that NKRO must be enabled in the
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* makefile for this to work.)
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*
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* If forced on, NKRO can be disabled via magic key (default = LShift+RShift+N)
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* until the next keyboard reset.
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*
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* NKRO may prevent your keystrokes from being detected in the BIOS, but it is
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* fully operational during normal computer usage.
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*
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* For a less heavy-handed approach, enable NKRO via magic key (LShift+RShift+N)
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* or via bootmagic (hold SPACE+N while plugging in the keyboard). Once set by
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* bootmagic, NKRO mode will always be enabled until it is toggled again during a
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* power-up.
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*
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*/
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//#define FORCE_NKRO
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/* key combination for command */
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#define IS_COMMAND() ( \
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keyboard_report->mods == (MOD_BIT(KC_LSHIFT) | MOD_BIT(KC_RSHIFT) | MOD_BIT(KC_LCTRL) | MOD_BIT(KC_RCTRL)) \
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)
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/* control how magic key switches layers */
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//#define MAGIC_KEY_SWITCH_LAYER_WITH_FKEYS true
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//#define MAGIC_KEY_SWITCH_LAYER_WITH_NKEYS true
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//#define MAGIC_KEY_SWITCH_LAYER_WITH_CUSTOM false
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/* override magic key keymap */
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//#define MAGIC_KEY_SWITCH_LAYER_WITH_FKEYS
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//#define MAGIC_KEY_SWITCH_LAYER_WITH_NKEYS
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//#define MAGIC_KEY_SWITCH_LAYER_WITH_CUSTOM
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//#define MAGIC_KEY_HELP1 H
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//#define MAGIC_KEY_HELP2 SLASH
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//#define MAGIC_KEY_DEBUG D
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//#define MAGIC_KEY_DEBUG_MATRIX X
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//#define MAGIC_KEY_DEBUG_KBD K
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//#define MAGIC_KEY_DEBUG_MOUSE M
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//#define MAGIC_KEY_VERSION V
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//#define MAGIC_KEY_STATUS S
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//#define MAGIC_KEY_CONSOLE C
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//#define MAGIC_KEY_LAYER0_ALT1 ESC
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//#define MAGIC_KEY_LAYER0_ALT2 GRAVE
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//#define MAGIC_KEY_LAYER0 0
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//#define MAGIC_KEY_LAYER1 1
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//#define MAGIC_KEY_LAYER2 2
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//#define MAGIC_KEY_LAYER3 3
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//#define MAGIC_KEY_LAYER4 4
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//#define MAGIC_KEY_LAYER5 5
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//#define MAGIC_KEY_LAYER6 6
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//#define MAGIC_KEY_LAYER7 7
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//#define MAGIC_KEY_LAYER8 8
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//#define MAGIC_KEY_LAYER9 9
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//#define MAGIC_KEY_BOOTLOADER PAUSE
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//#define MAGIC_KEY_LOCK CAPS
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//#define MAGIC_KEY_EEPROM E
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//#define MAGIC_KEY_NKRO N
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//#define MAGIC_KEY_SLEEP_LED Z
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/*
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* Feature disable options
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* These options are also useful to firmware size reduction.
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@ -987,8 +987,8 @@ void matrix_scan_user(void) {
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led_set_layer_indicator();
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}
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void battery_poll(float percentage) {
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rgbsps_sethsv(LED_IND_BATTERY, percentage*120/100, 255, 15);
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void battery_poll(uint8_t level) {
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rgbsps_sethsv(LED_IND_BATTERY, level * 120/255, 255, 15);
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rgbsps_send();
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}
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@ -3,20 +3,17 @@
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#include "timer.h"
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#include "matrix.h"
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float battery_percentage(void) {
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// cubic fit {3.3, 0}, {3.5, 2.9}, {3.6, 5}, {3.7, 8.6}, {3.8, 36}, {3.9, 62}, {4.0, 73}, {4.05, 83}, {4.1, 89}, {4.15, 94}, {4.2, 100}
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uint8_t battery_level(void) {
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float voltage = analogRead(BATTERY_PIN) * 2 * 3.3 / 1024;
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float percentage = (voltage - 3.5) * 143;
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if (percentage > 100) {
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return 100;
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} else if (percentage < 0) {
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return 0;
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} else {
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return percentage;
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}
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if (voltage < MIN_VOLTAGE) return 0;
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if (voltage > MAX_VOLTAGE) return 255;
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return (voltage - MIN_VOLTAGE) / (MAX_VOLTAGE - MIN_VOLTAGE) * 255;
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}
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__attribute__ ((weak))
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void battery_poll(float percentage) {
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void battery_poll(uint8_t level) {
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}
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void matrix_init_kb(void) {
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@ -29,7 +26,7 @@ void matrix_scan_kb(void) {
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if (counter > BATTERY_POLL) {
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counter = 0;
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battery_poll(battery_percentage());
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battery_poll(battery_level());
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}
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matrix_scan_user();
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@ -7,6 +7,8 @@
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#define UNICODE_TYPE_DELAY 0
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#define BATTERY_PIN 9
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#define BATTERY_POLL 30000
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#define MAX_VOLTAGE 4.2
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#define MIN_VOLTAGE 3.2
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#define KEYMAP( \
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k11, k12, k13, k14, k15, k16, k17, k18, k19, k1a, k1b, k1c, \
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@ -103,4 +105,4 @@ enum led_sequence {
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#endif
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void battery_poll(float percentage);
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void battery_poll(uint8_t level);
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