Merge branch 'main' into docs/encoders

Sync with upstream
This commit is contained in:
Kevin 2020-09-02 17:37:39 -07:00
commit 5b493ef334
143 changed files with 2047 additions and 302 deletions

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@ -25,7 +25,6 @@ zephyr_linker_sources(RODATA include/linker/zmk-events.ld)
target_include_directories(app PRIVATE include)
target_sources(app PRIVATE src/kscan.c)
target_sources(app PRIVATE src/matrix_transform.c)
target_sources(app PRIVATE src/keymap.c)
target_sources(app PRIVATE src/hid.c)
target_sources(app PRIVATE src/sensors.c)
target_sources_ifdef(CONFIG_ZMK_DISPLAY app PRIVATE src/display.c)
@ -36,12 +35,13 @@ target_sources(app PRIVATE src/events/modifiers_state_changed.c)
target_sources(app PRIVATE src/events/sensor_event.c)
target_sources(app PRIVATE src/behaviors/behavior_key_press.c)
target_sources(app PRIVATE src/behaviors/behavior_reset.c)
target_sources(app PRIVATE src/behaviors/behavior_mod_tap.c)
target_sources(app PRIVATE src/behaviors/behavior_hold_tap.c)
target_sources(app PRIVATE src/behaviors/behavior_momentary_layer.c)
target_sources(app PRIVATE src/behaviors/behavior_toggle_layer.c)
target_sources(app PRIVATE src/behaviors/behavior_transparent.c)
target_sources(app PRIVATE src/behaviors/behavior_none.c)
target_sources(app PRIVATE src/behaviors/behavior_sensor_rotate_key_press.c)
target_sources(app PRIVATE src/keymap.c)
target_sources_ifdef(CONFIG_ZMK_RGB_UNDERGLOW app PRIVATE src/behaviors/behavior_rgb_underglow.c)
target_sources_ifdef(CONFIG_ZMK_BLE app PRIVATE src/ble.c)
target_sources_ifdef(CONFIG_ZMK_BLE app PRIVATE src/ble_unpair_combo.c)
@ -56,3 +56,5 @@ target_sources_ifdef(CONFIG_ZMK_RGB_UNDERGLOW app PRIVATE src/rgb_underglow.c)
target_sources(app PRIVATE src/endpoints.c)
target_sources(app PRIVATE src/hid_listener.c)
target_sources(app PRIVATE src/main.c)
zephyr_cc_option(-Wfatal-errors)

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@ -0,0 +1,16 @@
# Copyright (c) 2020 Pete Johanson, Kurtis Lew
# SPDX-License-Identifier: MIT
if SHIELD_IRIS_LEFT
config ZMK_KEYBOARD_NAME
default "Iris Left"
endif
if SHIELD_IRIS_RIGHT
config ZMK_KEYBOARD_NAME
default "Iris Right"
endif

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@ -0,0 +1,8 @@
# Copyright (c) 2020 Pete Johanson, Kurtis Lew
# SPDX-License-Identifier: MIT
config SHIELD_IRIS_LEFT
def_bool $(shields_list_contains,iris_left)
config SHIELD_IRIS_RIGHT
def_bool $(shields_list_contains,iris_right)

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@ -0,0 +1,51 @@
/*
* Copyright (c) 2020 Pete Johanson, Kurtis Lew
*
* SPDX-License-Identifier: MIT
*/
#include <dt-bindings/zmk/matrix-transform.h>
/ {
chosen {
zmk,kscan = &kscan0;
zmk,matrix_transform = &default_transform;
};
default_transform: keymap_transform_0 {
compatible = "zmk,matrix-transform";
columns = <16>;
rows = <4>;
// | SW6 | SW5 | SW4 | SW3 | SW2 | SW1 | | SW1 | SW2 | SW3 | SW4 | SW5 | SW6 |
// | SW12 | SW11 | SW10 | SW9 | SW8 | SW7 | | SW7 | SW8 | SW9 | SW10 | SW11 | SW12 |
// | SW18 | SW17 | SW16 | SW15 | SW14 | SW13 | | SW13 | SW14 | SW15 | SW16 | SW17 | SW18 |
// | SW24 | SW23 | SW22 | SW21 | SW20 | SW19 | SW25 | | SW25 | SW19 | SW20 | SW21 | SW22 | SW23 | SW24 |
// | SW29 | SW28 | SW27 | SW26 | | SW26 | SW27 | SW28 | SW29 |
map = <
RC(0,0) RC(0,1) RC(0,2) RC(0,3) RC(0,4) RC(0,5) RC(0,6) RC(0,7) RC(0,8) RC(0,9) RC(0,10) RC(0,11)
RC(1,0) RC(1,1) RC(1,2) RC(1,3) RC(1,4) RC(1,5) RC(1,6) RC(1,7) RC(1,8) RC(1,9) RC(1,10) RC(1,11)
RC(2,0) RC(2,1) RC(2,2) RC(2,3) RC(2,4) RC(2,5) RC(2,6) RC(2,7) RC(2,8) RC(2,9) RC(2,10) RC(2,11)
RC(3,0) RC(3,1) RC(3,2) RC(3,3) RC(3,4) RC(3,5) RC(4,2) RC(4,9) RC(3,6) RC(3,7) RC(3,8) RC(3,9) RC(3,10) RC(3,11)
RC(4,3) RC(4,4) RC(4,5) RC(4,6) RC(4,7) RC(4,8)
>;
};
kscan0: kscan {
compatible = "zmk,kscan-gpio-matrix";
label = "KSCAN";
diode-direction = "col2row";
row-gpios
= <&pro_micro_d 6 (GPIO_ACTIVE_HIGH | GPIO_PULL_DOWN)>
, <&pro_micro_d 7 (GPIO_ACTIVE_HIGH | GPIO_PULL_DOWN)>
, <&pro_micro_d 8 (GPIO_ACTIVE_HIGH | GPIO_PULL_DOWN)>
, <&pro_micro_d 0 (GPIO_ACTIVE_HIGH | GPIO_PULL_DOWN)>
, <&pro_micro_d 4 (GPIO_ACTIVE_HIGH | GPIO_PULL_DOWN)>
;
};
bt_unpair_combo: bt_unpair_combo {
compatible = "zmk,bt-unpair-combo";
};
};

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@ -0,0 +1,59 @@
# Copyright (c) 2020 Pete Johanson, Kurtis Lew
# SPDX-License-Identifier: MIT
#include <behaviors.dtsi>
#include <dt-bindings/zmk/keys.h>
/ {
keymap {
compatible = "zmk,keymap";
default_layer {
// ------------------------------------------------------------------------------------------------------------
// | ESC | 1 | 2 | 3 | 4 | 5 | | 6 | 7 | 8 | 9 | 0 | ` |
// | TAB | Q | W | E | R | T | | Y | U | I | O | P | - |
// | CTRL | A | S | D | F | G | | H | J | K | L | ; | ' |
// | SHIFT | Z | X | C | V | B | "[" | | "]" | N | M | , | . | / | SHIFT |
// | GUI | LOWER| SPACE | | ENTER | RAISE| ALT |
bindings = <
&kp ESC &kp NUM_1 &kp NUM_2 &kp NUM_3 &kp NUM_4 &kp NUM_5 &kp NUM_6 &kp NUM_7 &kp NUM_8 &kp NUM_9 &kp NUM_0 &kp GRAV
&kp TAB &kp Q &kp W &kp E &kp R &kp T &kp Y &kp U &kp I &kp O &kp P &kp MINUS
&kp LCTL &kp A &kp S &kp D &kp F &kp G &kp H &kp J &kp K &kp L &kp SCLN &kp QUOT
&kp LSFT &kp Z &kp X &kp C &kp V &kp B &kp LBKT &kp RBKT &kp N &kp M &kp CMMA &kp DOT &kp FSLH &kp RSFT
&kp LGUI &mo 1 &kp SPC &kp RET &mo 2 &kp RALT
>;
};
lower_layer {
// ------------------------------------------------------------------------------------------------------------
// | | | | | | | | | | | | | |
// | F1 | F2 | F3 | F4 | F5 | F6 | | F7 | F8 | F9 | F10 | F11 | F12 |
// | ` | ! | @ | # | $ | % | | ^ | & | * | ( | ) | ~ |
// | | | | | | | | | | | _ | + | { | } | "|" |
// | | | | | | | |
bindings = <
&trans &trans &trans &trans &trans &trans &trans &trans &trans &trans &trans &trans
&kp F1 &kp F2 &kp F3 &kp F4 &kp F5 &kp F6 &kp F7 &kp F8 &kp F9 &kp F10 &kp F11 &kp F12
&kp GRAV &kp BANG &kp ATSN &kp HASH &kp CURU &kp PRCT &kp CRRT &kp AMPS &kp KMLT &kp LPRN &kp RPRN &kp TILD
&trans &trans &trans &trans &trans &trans &trans &trans &trans &kp MINUS &kp KPLS &kp LCUR &kp RCUR &kp PIPE
&trans &trans &trans &trans &trans &trans
>;
};
raise_layer {
// ------------------------------------------------------------------------------------------------------------
// | | | | | | | | | | | | | |
// | ` | 1 | 2 | 3 | 4 | 5 | | 6 | 7 | 8 | 9 | 0 | |
// | F1 | F2 | F3 | F4 | F5 | F6 | | | <- | ^ | v | -> | |
// | F7 | F8 | F9 | F10 | F11 | F12 | | | | + | - | = | [ | ] | \ |
// | | | | | | | |
bindings = <
&trans &trans &trans &trans &trans &trans &trans &trans &trans &trans &trans &trans
&kp GRAV &kp NUM_1 &kp NUM_2 &kp NUM_3 &kp NUM_4 &kp NUM_5 &kp NUM_6 &kp NUM_7 &kp NUM_8 &kp NUM_9 &kp NUM_0 &trans
&kp F1 &kp F2 &kp F3 &kp F4 &kp F5 &kp F6 &trans &kp LARW &kp DARW &kp UARW &kp RARW &trans
&kp F7 &kp F8 &kp F9 &kp F10 &kp F11 &kp F12 &trans &trans &kp KPLS &kp MINUS &kp EQL &kp LBKT &kp RBKT &kp BSLH
&trans &trans &trans &trans &trans &trans
>;
};
};
};

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@ -0,0 +1,2 @@
CONFIG_ZMK_SPLIT=y
CONFIG_ZMK_SPLIT_BLE_ROLE_CENTRAL=y

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@ -0,0 +1,22 @@
/*
* Copyright (c) 2020 Pete Johanson, Kurtis Lew
*
* SPDX-License-Identifier: MIT
*/
#include "iris.dtsi"
&kscan0 {
col-gpios
= <&pro_micro_a 1 GPIO_ACTIVE_HIGH>
, <&pro_micro_a 0 GPIO_ACTIVE_HIGH>
, <&pro_micro_d 15 GPIO_ACTIVE_HIGH>
, <&pro_micro_d 14 GPIO_ACTIVE_HIGH>
, <&pro_micro_d 16 GPIO_ACTIVE_HIGH>
, <&pro_micro_d 10 GPIO_ACTIVE_HIGH>
;
};
&bt_unpair_combo {
key-positions = <0 42>;
};

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@ -0,0 +1,2 @@
CONFIG_ZMK_SPLIT=y
CONFIG_ZMK_SPLIT_BLE_ROLE_PERIPHERAL=y

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@ -0,0 +1,26 @@
/*
* Copyright (c) 2020 Pete Johanson, Kurtis Lew
*
* SPDX-License-Identifier: MIT
*/
#include "iris.dtsi"
&default_transform {
col-offset = <6>;
};
&kscan0 {
col-gpios
= <&pro_micro_a 1 GPIO_ACTIVE_HIGH>
, <&pro_micro_a 0 GPIO_ACTIVE_HIGH>
, <&pro_micro_d 15 GPIO_ACTIVE_HIGH>
, <&pro_micro_d 14 GPIO_ACTIVE_HIGH>
, <&pro_micro_d 16 GPIO_ACTIVE_HIGH>
, <&pro_micro_d 10 GPIO_ACTIVE_HIGH>
;
};
&bt_unpair_combo {
key-positions = <11 43>;
};

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@ -0,0 +1,54 @@
# Copyright (c) 2020 Ryan Cross
# SPDX-License-Identifier: MIT
if SHIELD_SOFLE_LEFT
config ZMK_KEYBOARD_NAME
default "Sofle Left"
endif
if SHIELD_SOFLE_RIGHT
config ZMK_KEYBOARD_NAME
default "Sofle Right"
endif
if SHIELD_SOFLE_LEFT || SHIELD_SOFLE_RIGHT
if ZMK_DISPLAY
config I2C
default y
config SSD1306
default y
config SSD1306_REVERSE_MODE
default y
endif # ZMK_DISPLAY
if LVGL
config LVGL_HOR_RES
default 128
config LVGL_VER_RES
default 32
config LVGL_VDB_SIZE
default 64
config LVGL_DPI
default 148
config LVGL_BITS_PER_PIXEL
default 1
choice LVGL_COLOR_DEPTH
default LVGL_COLOR_DEPTH_1
endchoice
endif # LVGL
endif

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@ -0,0 +1,8 @@
# Copyright (c) 2020 Ryan Cross
# SPDX-License-Identifier: MIT
config SHIELD_SOFLE_LEFT
def_bool $(shields_list_contains,sofle_left)
config SHIELD_SOFLE_RIGHT
def_bool $(shields_list_contains,sofle_right)

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@ -0,0 +1,9 @@
# Copyright (c) 2020 Ryan Cross
# SPDX-License-Identifier: MIT
# Uncomment the following line to enable the Sofle OLED Display
# CONFIG_ZMK_DISPLAY=y
# Uncomment these two lines to add support for encoders
# CONFIG_EC11=y
# CONFIG_EC11_TRIGGER_GLOBAL_THREAD=y

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@ -0,0 +1,91 @@
/*
* Copyright (c) 2020 Pete Johanson, Ryan Cross
*
* SPDX-License-Identifier: MIT
*/
#include <dt-bindings/zmk/matrix-transform.h>
/ {
chosen {
zmk,kscan = &kscan0;
zmk,matrix_transform = &default_transform;
};
default_transform: keymap_transform_0 {
compatible = "zmk,matrix-transform";
columns = <16>;
rows = <4>;
// | SW6 | SW5 | SW4 | SW3 | SW2 | SW1 | | SW1 | SW2 | SW3 | SW4 | SW5 | SW6 |
// | SW12 | SW11 | SW10 | SW9 | SW8 | SW7 | | SW7 | SW8 | SW9 | SW10 | SW11 | SW12 |
// | SW18 | SW17 | SW16 | SW15 | SW14 | SW13 | | SW13 | SW14 | SW15 | SW16 | SW17 | SW18 |
// | SW24 | SW23 | SW22 | SW21 | SW20 | SW19 | SW25 | | SW25 | SW19 | SW20 | SW21 | SW22 | SW23 | SW24 |
// | SW30 | SW29 | SW28 | SW27 | SW26 | | SW26 | SW27 | SW28 | SW29 | SW30 |
map = <
RC(0,0) RC(0,1) RC(0,2) RC(0,3) RC(0,4) RC(0,5) RC(0,6) RC(0,7) RC(0,8) RC(0,9) RC(0,10) RC(0,11)
RC(1,0) RC(1,1) RC(1,2) RC(1,3) RC(1,4) RC(1,5) RC(1,6) RC(1,7) RC(1,8) RC(1,9) RC(1,10) RC(1,11)
RC(2,0) RC(2,1) RC(2,2) RC(2,3) RC(2,4) RC(2,5) RC(2,6) RC(2,7) RC(2,8) RC(2,9) RC(2,10) RC(2,11)
RC(3,0) RC(3,1) RC(3,2) RC(3,3) RC(3,4) RC(3,5) RC(4,5) RC(4,6) RC(3,6) RC(3,7) RC(3,8) RC(3,9) RC(3,10) RC(3,11)
RC(4,0) RC(4,1) RC(4,2) RC(4,3) RC(4,4) RC(4,7) RC(4,8) RC(4,9) RC(4,10) RC(4,11)
>;
};
kscan0: kscan {
compatible = "zmk,kscan-gpio-matrix";
label = "KSCAN";
diode-direction = "col2row";
row-gpios
= <&pro_micro_d 5 (GPIO_ACTIVE_HIGH | GPIO_PULL_DOWN)>
, <&pro_micro_d 6 (GPIO_ACTIVE_HIGH | GPIO_PULL_DOWN)>
, <&pro_micro_d 7 (GPIO_ACTIVE_HIGH | GPIO_PULL_DOWN)>
, <&pro_micro_d 8 (GPIO_ACTIVE_HIGH | GPIO_PULL_DOWN)>
, <&pro_micro_d 9 (GPIO_ACTIVE_HIGH | GPIO_PULL_DOWN)>
;
};
left_encoder: encoder_left {
compatible = "alps,ec11";
label = "LEFT_ENCODER";
a-gpios = <&pro_micro_a 3 (GPIO_ACTIVE_HIGH | GPIO_PULL_UP)>;
b-gpios = <&pro_micro_a 2 (GPIO_ACTIVE_HIGH | GPIO_PULL_UP)>;
resolution = <4>;
};
right_encoder: encoder_right {
compatible = "alps,ec11";
label = "RIGHT_ENCODER";
a-gpios = <&pro_micro_a 2 (GPIO_ACTIVE_HIGH | GPIO_PULL_UP)>;
b-gpios = <&pro_micro_a 3 (GPIO_ACTIVE_HIGH | GPIO_PULL_UP)>;
resolution = <4>;
};
sensors {
compatible = "zmk,keymap-sensors";
sensors = <&left_encoder &right_encoder>;
};
bt_unpair_combo: bt_unpair_combo {
compatible = "zmk,bt-unpair-combo";
};
};
&pro_micro_i2c {
status = "okay";
ssd1306@3c {
compatible = "solomon,ssd1306fb";
reg = <0x3c>;
label = "DISPLAY";
width = <128>;
height = <32>;
segment-offset = <0>;
page-offset = <0>;
display-offset = <0>;
multiplex-ratio = <31>;
segment-remap;
com-invdir;
com-sequential;
prechargep = <0x22>;
};
};

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@ -0,0 +1,63 @@
#include <behaviors.dtsi>
#include <dt-bindings/zmk/keys.h>
/ {
keymap {
compatible = "zmk,keymap";
default_layer {
// ------------------------------------------------------------------------------------------------------------
// | ` | 1 | 2 | 3 | 4 | 5 | | 6 | 7 | 8 | 9 | 0 | |
// | ESC | Q | W | E | R | T | | Y | U | I | O | P | BKSPC |
// | TAB | A | S | D | F | G | | H | J | K | L | ; | ' |
// | SHIFT | Z | X | C | V | B | MUTE | | | N | M | , | . | / | SHIFT |
// | GUI | ALT | CTRL | LOWER| ENTER | | SPACE | RAISE| CTRL | ALT | GUI |
bindings = <
&kp GRAV &kp NUM_1 &kp NUM_2 &kp NUM_3 &kp NUM_4 &kp NUM_5 &kp NUM_6 &kp NUM_7 &kp NUM_8 &kp NUM_9 &kp NUM_0 &none
&kp ESC &kp Q &kp W &kp E &kp R &kp T &kp Y &kp U &kp I &kp O &kp P &kp BKSP
&kp TAB &kp A &kp S &kp D &kp F &kp G &kp H &kp J &kp K &kp L &kp SCLN &kp QUOT
&kp LSFT &kp Z &kp X &kp C &kp V &kp B &cp M_MUTE &none &kp N &kp M &kp CMMA &kp DOT &kp FSLH &kp RSFT
&kp LGUI &kp LALT &kp LCTL &mo 1 &kp RET &kp SPC &mo 2 &kp RCTL &kp RALT &kp RGUI
>;
sensor-bindings = <&inc_dec_cp M_VOLU M_VOLD &inc_dec_kp PGUP PGDN>;
};
lower_layer {
// TODO: Some binds are waiting for shifted keycode support.
// ------------------------------------------------------------------------------------------------------------
// | | F1 | F2 | F3 | F4 | F5 | | F6 | F7 | F8 | F9 | F10 | F11 |
// | ` | 1 | 2 | 3 | 4 | 5 | | 6 | 7 | 8 | 9 | 0 | F12 |
// | | ! | @ | # | $ | % | | ^ | & | * | ( | ) | | |
// | | = | - | + | { | } | | | | [ | ] | ; | : | \ | |
// | | | | | | | | | | | |
bindings = <
&trans &kp F1 &kp F2 &kp F3 &kp F4 &kp F5 &kp F6 &kp F7 &kp F8 &kp F9 &kp F10 &kp F11
&kp GRAV &kp NUM_1 &kp NUM_2 &kp NUM_3 &kp NUM_4 &kp NUM_5 &kp NUM_6 &kp NUM_7 &kp NUM_8 &kp NUM_9 &kp NUM_0 &kp F12
&trans &kp BANG &kp ATSN &kp HASH &kp CURU &kp PRCT &kp CRRT &kp AMPS &kp KMLT &kp LPRN &kp RPRN &kp PIPE
&trans &kp EQL &kp MINUS &kp KPLS &kp LCUR &kp RCUR &trans &trans &kp LBKT &kp RBKT &kp SCLN &kp COLN &kp BSLH &trans
&trans &trans &trans &trans &trans &trans &trans &trans &trans &trans
>;
sensor-bindings = <&inc_dec_cp M_VOLU M_VOLD &inc_dec_kp PGUP PGDN>;
};
raise_layer {
// ------------------------------------------------------------------------------------------------------------
// | | | | | | | | | | | | | |
// | | INS | PSCR | GUI | | | | PGUP | | ^ | | | |
// | | ALT | CTRL | SHIFT | | CAPS | | PGDN | <- | v | -> | DEL | BKSPC |
// | | UNDO | CUT | COPY | PASTE | | | | | | | | | | |
// | | | | | | | | | | | |
bindings = <
&trans &trans &trans &trans &trans &trans &trans &trans &trans &trans &trans &trans
&trans &kp INS &kp PRSC &kp GUI &trans &trans &kp PGUP &trans &kp UARW &trans &kp NUM_0 &trans
&trans &kp LALT &kp LCTL &kp LSFT &trans &kp CLCK &kp PGDN &kp LARW &kp DARW &kp RARW &kp DEL &kp BKSP
&trans &kp UNDO &kp CUT &kp COPY &kp PSTE &trans &trans &trans &trans &trans &trans &trans &trans &trans
&trans &trans &trans &trans &trans &trans &trans &trans &trans &trans
>;
sensor-bindings = <&inc_dec_cp M_VOLU M_VOLD &inc_dec_kp PGUP PGDN>;
};
};
};

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@ -0,0 +1,5 @@
# Copyright (c) 2020 Ryan Cross
# SPDX-License-Identifier: MIT
CONFIG_ZMK_SPLIT=y
CONFIG_ZMK_SPLIT_BLE_ROLE_CENTRAL=y

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@ -0,0 +1,26 @@
/*
* Copyright (c) 2020 Ryan Cross
*
* SPDX-License-Identifier: MIT
*/
#include "sofle.dtsi"
&kscan0 {
col-gpios
= <&pro_micro_a 1 GPIO_ACTIVE_HIGH>
, <&pro_micro_a 0 GPIO_ACTIVE_HIGH>
, <&pro_micro_d 15 GPIO_ACTIVE_HIGH>
, <&pro_micro_d 14 GPIO_ACTIVE_HIGH>
, <&pro_micro_d 16 GPIO_ACTIVE_HIGH>
, <&pro_micro_d 10 GPIO_ACTIVE_HIGH>
;
};
&left_encoder {
status = "okay";
};
&bt_unpair_combo {
key-positions = <0 54>;
};

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@ -0,0 +1,5 @@
# Copyright (c) 2020 Ryan Cross
# SPDX-License-Identifier: MIT
CONFIG_ZMK_SPLIT=y
CONFIG_ZMK_SPLIT_BLE_ROLE_PERIPHERAL=y

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@ -0,0 +1,30 @@
/*
* Copyright (c) 2020 Ryan Cross
*
* SPDX-License-Identifier: MIT
*/
#include "sofle.dtsi"
&default_transform {
col-offset = <6>;
};
&kscan0 {
col-gpios
= <&pro_micro_d 10 GPIO_ACTIVE_HIGH>
, <&pro_micro_d 16 GPIO_ACTIVE_HIGH>
, <&pro_micro_d 14 GPIO_ACTIVE_HIGH>
, <&pro_micro_d 15 GPIO_ACTIVE_HIGH>
, <&pro_micro_a 0 GPIO_ACTIVE_HIGH>
, <&pro_micro_a 1 GPIO_ACTIVE_HIGH>
;
};
&right_encoder {
status = "okay";
};
&bt_unpair_combo {
key-positions = <11 55>;
};

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@ -156,7 +156,6 @@ static int kscan_gpio_read(struct device *dev)
struct kscan_gpio_data *data = dev->driver_data;
const struct kscan_gpio_config *cfg = dev->config_info;
u32_t read_state = data->pin_state;
LOG_DBG("Scanning the pins for updated state");
for (int i = 0; i < cfg->num_of_inputs; i++)
{
struct device *in_dev = kscan_gpio_input_devices(dev)[i];
@ -165,8 +164,9 @@ static int kscan_gpio_read(struct device *dev)
}
for (int i = 0; i < cfg->num_of_inputs; i++)
{
bool prev_pressed = BIT(i) & data->pin_state;
bool pressed = BIT(i) & read_state;
if (pressed != (BIT(i) & data->pin_state))
if (pressed != prev_pressed)
{
LOG_DBG("Sending event at %d,%d state %s",
0, i, (pressed ? "on" : "off"));

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@ -2,6 +2,7 @@
#include <behaviors/transparent.dtsi>
#include <behaviors/none.dtsi>
#include <behaviors/mod_tap.dtsi>
#include <behaviors/layer_tap.dtsi>
#include <behaviors/momentary_layer.dtsi>
#include <behaviors/toggle_layer.dtsi>
#include <behaviors/reset.dtsi>

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@ -0,0 +1,12 @@
/ {
behaviors {
lt: behavior_layer_tap {
compatible = "zmk,behavior-hold-tap";
label = "LAYER_TAP";
#binding-cells = <2>;
flavor = "tap-preferred";
tapping_term_ms = <200>;
bindings = <&mo>, <&kp>;
};
};
};

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@ -1,9 +1,12 @@
/ {
behaviors {
mt: behavior_mod_tap {
compatible = "zmk,behavior-mod-tap";
compatible = "zmk,behavior-hold-tap";
label = "MOD_TAP";
#binding-cells = <2>;
flavor = "hold-preferred";
tapping_term_ms = <200>;
bindings = <&kp>, <&kp>;
};
};
};

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@ -0,0 +1,23 @@
# Copyright (c) 2020, Cody McGinnis; Okke Formsma
# SPDX-License-Identifier: MIT
description: Hold or Tap behavior
compatible: "zmk,behavior-hold-tap"
include: two_param.yaml
properties:
bindings:
type: phandles
required: true
tapping_term_ms:
type: int
flavor:
type: string
required: false
default: "hold-preferred"
enum:
- "hold-preferred"
- "balanced"
- "tap-preferred"

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@ -1,8 +0,0 @@
# Copyright (c) 2020, Pete Johanson
# SPDX-License-Identifier: MIT
description: Mod-Tap Beavhior
compatible: "zmk,behavior-mod-tap"
include: two_param.yaml

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@ -92,6 +92,11 @@
#define GUI 0x65
#define UNDO 0x7A
#define CUT 0x7B
#define COPY 0x7C
#define PSTE 0x7D
#define CURU 0xB4
#define LPRN 0xB6

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@ -75,9 +75,14 @@ struct zmk_event_subscription {
#define ZMK_EVENT_RAISE_AFTER(ev, mod) \
zmk_event_manager_raise_after((struct zmk_event_header *)ev, &zmk_listener_##mod);
#define ZMK_EVENT_RAISE_AT(ev, mod) \
zmk_event_manager_raise_at((struct zmk_event_header *)ev, &zmk_listener_##mod);
#define ZMK_EVENT_RELEASE(ev) \
zmk_event_manager_release((struct zmk_event_header *)ev);
int zmk_event_manager_raise(struct zmk_event_header *event);
int zmk_event_manager_raise_after(struct zmk_event_header *event, const struct zmk_listener *listener);
int zmk_event_manager_raise_at(struct zmk_event_header *event, const struct zmk_listener *listener);
int zmk_event_manager_release(struct zmk_event_header *event);

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@ -0,0 +1,502 @@
/*
* Copyright (c) 2020 Cody McGinnis, Okke Formsma
*
* SPDX-License-Identifier: MIT
*/
#define DT_DRV_COMPAT zmk_behavior_hold_tap
#include <device.h>
#include <drivers/behavior.h>
#include <logging/log.h>
#include <zmk/behavior.h>
#include <zmk/matrix.h>
#include <zmk/endpoints.h>
#include <zmk/event-manager.h>
#include <zmk/events/position-state-changed.h>
#include <zmk/events/keycode-state-changed.h>
#include <zmk/events/modifiers-state-changed.h>
#include <zmk/hid.h>
LOG_MODULE_DECLARE(zmk, CONFIG_ZMK_LOG_LEVEL);
#if DT_NODE_EXISTS(DT_DRV_INST(0))
#define ZMK_BHV_HOLD_TAP_MAX_HELD 10
#define ZMK_BHV_HOLD_TAP_MAX_CAPTURED_EVENTS 40
// increase if you have keyboard with more keys.
#define ZMK_BHV_HOLD_TAP_POSITION_NOT_USED 9999
enum flavor {
ZMK_BHV_HOLD_TAP_FLAVOR_HOLD_PREFERRED = 0,
ZMK_BHV_HOLD_TAP_FLAVOR_BALANCED = 1,
ZMK_BHV_HOLD_TAP_FLAVOR_TAP_PREFERRED = 2,
};
struct behavior_hold_tap_behaviors {
struct zmk_behavior_binding tap;
struct zmk_behavior_binding hold;
};
typedef k_timeout_t (*timer_func)();
struct behavior_hold_tap_config {
timer_func tapping_term_ms;
struct behavior_hold_tap_behaviors *behaviors;
enum flavor flavor;
};
// this data is specific for each hold-tap
struct active_hold_tap {
s32_t position;
u32_t param_hold;
u32_t param_tap;
bool is_decided;
bool is_hold;
const struct behavior_hold_tap_config *config;
struct k_delayed_work work;
bool work_is_cancelled;
};
// The undecided hold tap is the hold tap that needs to be decided before
// other keypress events can be released. While the undecided_hold_tap is
// not NULL, most events are captured in captured_events.
// After the hold_tap is decided, it will stay in the active_hold_taps until
// its key-up has been processed and the delayed work is cleaned up.
struct active_hold_tap *undecided_hold_tap = NULL;
struct active_hold_tap active_hold_taps[ZMK_BHV_HOLD_TAP_MAX_HELD] = {};
// We capture most position_state_changed events and some modifiers_state_changed events.
const struct zmk_event_header *captured_events[ZMK_BHV_HOLD_TAP_MAX_CAPTURED_EVENTS] = {};
static int capture_event(const struct zmk_event_header *event)
{
for (int i = 0; i < ZMK_BHV_HOLD_TAP_MAX_CAPTURED_EVENTS; i++) {
if (captured_events[i] == NULL) {
captured_events[i] = event;
return 0;
}
}
return -ENOMEM;
}
static struct position_state_changed *find_captured_keydown_event(u32_t position)
{
struct position_state_changed *last_match = NULL;
for (int i = 0; i < ZMK_BHV_HOLD_TAP_MAX_CAPTURED_EVENTS; i++) {
const struct zmk_event_header *eh = captured_events[i];
if (eh == NULL) {
return last_match;
}
if (!is_position_state_changed(eh)) {
continue;
}
struct position_state_changed *position_event = cast_position_state_changed(eh);
if (position_event->position == position && position_event->state) {
last_match = position_event;
}
}
return last_match;
}
const struct zmk_listener zmk_listener_behavior_hold_tap;
static void release_captured_events()
{
if (undecided_hold_tap != NULL) {
return;
}
// We use a trick to prevent copying the captured_events array.
//
// Events for different mod-tap instances are separated by a NULL pointer.
//
// The first event popped will never be catched by the next active hold-tap
// because to start capturing a mod-tap-key-down event must first completely
// go through the events queue.
//
// Example of this release process;
// [mt2_down, k1_down, k1_up, mt2_up, null, ...]
// ^
// mt2_down position event isn't captured because no hold-tap is active.
// mt2_down behavior event is handled, now we have an undecided hold-tap
// [null, k1_down, k1_up, mt2_up, null, ...]
// ^
// k1_down is captured by the mt2 mod-tap
// !note that searches for find_captured_keydown_event by the mt2 behavior will stop at the first null encountered
// [mt1_down, null, k1_up, mt2_up, null, ...]
// ^
// k1_up event is captured by the new hold-tap:
// [k1_down, k1_up, null, mt2_up, null, ...]
// ^
// mt2_up event is not captured but causes release of mt2 behavior
// [k1_down, k1_up, null, null, null, ...]
// now mt2 will start releasing it's own captured positions.
for (int i = 0; i < ZMK_BHV_HOLD_TAP_MAX_CAPTURED_EVENTS; i++) {
const struct zmk_event_header *captured_event = captured_events[i];
if (captured_event == NULL) {
return;
}
captured_events[i] = NULL;
if (undecided_hold_tap != NULL) {
k_msleep(10);
}
if (is_position_state_changed(captured_event)) {
struct position_state_changed *position_event = cast_position_state_changed(captured_event);
LOG_DBG("Releasing key position event for position %d %s", position_event->position, (position_event->state ? "pressed" : "released"));
} else {
struct keycode_state_changed *modifier_event = cast_keycode_state_changed(captured_event);
LOG_DBG("Releasing mods changed event 0x%02X %s", modifier_event->keycode, (modifier_event->state ? "pressed" : "released"));
}
ZMK_EVENT_RAISE_AT(captured_event, behavior_hold_tap);
}
}
static struct active_hold_tap *find_hold_tap(u32_t position)
{
for (int i = 0; i < ZMK_BHV_HOLD_TAP_MAX_HELD; i++) {
if (active_hold_taps[i].position == position) {
return &active_hold_taps[i];
}
}
return NULL;
}
static struct active_hold_tap *store_hold_tap(u32_t position, u32_t param_hold, u32_t param_tap, const struct behavior_hold_tap_config *config)
{
for (int i = 0; i < ZMK_BHV_HOLD_TAP_MAX_HELD; i++) {
if (active_hold_taps[i].position != ZMK_BHV_HOLD_TAP_POSITION_NOT_USED) {
continue;
}
active_hold_taps[i].position = position;
active_hold_taps[i].is_decided = false;
active_hold_taps[i].is_hold = false;
active_hold_taps[i].config = config;
active_hold_taps[i].param_hold = param_hold;
active_hold_taps[i].param_tap = param_tap;
return &active_hold_taps[i];
}
return NULL;
}
static void clear_hold_tap(struct active_hold_tap *hold_tap)
{
hold_tap->position = ZMK_BHV_HOLD_TAP_POSITION_NOT_USED;
hold_tap->is_decided = false;
hold_tap->is_hold = false;
hold_tap->work_is_cancelled = false;
}
enum decision_moment {
HT_KEY_UP = 0,
HT_OTHER_KEY_DOWN = 1,
HT_OTHER_KEY_UP = 2,
HT_TIMER_EVENT = 3,
};
static void decide_balanced(struct active_hold_tap *hold_tap, enum decision_moment event)
{
switch (event) {
case HT_KEY_UP:
hold_tap->is_hold = 0;
hold_tap->is_decided = true;
break;
case HT_OTHER_KEY_UP:
case HT_TIMER_EVENT:
hold_tap->is_hold = 1;
hold_tap->is_decided = true;
break;
default: return;
}
}
static void decide_tap_preferred(struct active_hold_tap *hold_tap, enum decision_moment event)
{
switch (event) {
case HT_KEY_UP:
hold_tap->is_hold = 0;
hold_tap->is_decided = true;
break;
case HT_TIMER_EVENT:
hold_tap->is_hold = 1;
hold_tap->is_decided = true;
break;
default: return;
}
}
static void decide_hold_preferred(struct active_hold_tap *hold_tap, enum decision_moment event)
{
switch (event) {
case HT_KEY_UP:
hold_tap->is_hold = 0;
hold_tap->is_decided = true;
break;
case HT_OTHER_KEY_DOWN:
case HT_TIMER_EVENT:
hold_tap->is_hold = 1;
hold_tap->is_decided = true;
break;
default: return;
}
}
static inline char* flavor_str(enum flavor flavor) {
switch(flavor) {
case ZMK_BHV_HOLD_TAP_FLAVOR_HOLD_PREFERRED:
return "hold-preferred";
case ZMK_BHV_HOLD_TAP_FLAVOR_BALANCED:
return "balanced";
case ZMK_BHV_HOLD_TAP_FLAVOR_TAP_PREFERRED:
return "tap-preferred";
}
return "UNKNOWN FLAVOR";
}
static void decide_hold_tap(struct active_hold_tap *hold_tap, enum decision_moment event)
{
if (hold_tap->is_decided) {
return;
}
if (hold_tap != undecided_hold_tap) {
LOG_DBG("ERROR found undecided tap hold that is not the active tap hold");
return;
}
switch(hold_tap->config->flavor) {
case ZMK_BHV_HOLD_TAP_FLAVOR_HOLD_PREFERRED:
decide_hold_preferred(hold_tap, event);
case ZMK_BHV_HOLD_TAP_FLAVOR_BALANCED:
decide_balanced(hold_tap, event);
case ZMK_BHV_HOLD_TAP_FLAVOR_TAP_PREFERRED:
decide_tap_preferred(hold_tap, event);
}
if (!hold_tap->is_decided) {
return;
}
LOG_DBG("%d decided %s (%s event %d)",
hold_tap->position,
hold_tap->is_hold ? "hold" : "tap",
flavor_str(hold_tap->config->flavor),
event);
undecided_hold_tap = NULL;
struct zmk_behavior_binding *behavior;
if (hold_tap->is_hold) {
behavior = &hold_tap->config->behaviors->hold;
struct device *behavior_device = device_get_binding(behavior->behavior_dev);
behavior_keymap_binding_pressed(behavior_device, hold_tap->position, hold_tap->param_hold, 0);
} else {
behavior = &hold_tap->config->behaviors->tap;
struct device *behavior_device = device_get_binding(behavior->behavior_dev);
behavior_keymap_binding_pressed(behavior_device, hold_tap->position, hold_tap->param_tap, 0);
}
release_captured_events();
}
static int on_hold_tap_binding_pressed(struct device *dev, u32_t position, u32_t param_hold, u32_t param_tap)
{
const struct behavior_hold_tap_config *cfg = dev->config_info;
if (undecided_hold_tap != NULL) {
LOG_DBG("ERROR another hold-tap behavior is undecided.");
// if this happens, make sure the behavior events occur AFTER other position events.
return 0;
}
struct active_hold_tap *hold_tap = store_hold_tap(position, param_hold, param_tap, cfg);
if (hold_tap == NULL) {
LOG_ERR("unable to store hold-tap info, did you press more than %d hold-taps?", ZMK_BHV_HOLD_TAP_MAX_HELD);
return 0;
}
LOG_DBG("%d new undecided hold_tap", position);
undecided_hold_tap = hold_tap;
k_delayed_work_submit(&hold_tap->work, cfg->tapping_term_ms());
// todo: once we get timing info for keypresses, start the timer relative to the original keypress
// don't forget to simulate a timer-event before the event after that time was handled.
return 0;
}
static int on_hold_tap_binding_released(struct device *dev, u32_t position, u32_t _, u32_t __)
{
struct active_hold_tap *hold_tap = find_hold_tap(position);
if (hold_tap == NULL) {
LOG_ERR("ACTIVE_HOLD_TAP_CLEANED_UP_TOO_EARLY");
return 0;
}
int work_cancel_result = k_delayed_work_cancel(&hold_tap->work);
decide_hold_tap(hold_tap, HT_KEY_UP);
struct zmk_behavior_binding *behavior;
if (hold_tap->is_hold) {
behavior = &hold_tap->config->behaviors->hold;
struct device *behavior_device = device_get_binding(behavior->behavior_dev);
behavior_keymap_binding_released(behavior_device, hold_tap->position, hold_tap->param_hold, 0);
} else {
behavior = &hold_tap->config->behaviors->tap;
struct device *behavior_device = device_get_binding(behavior->behavior_dev);
behavior_keymap_binding_released(behavior_device, hold_tap->position, hold_tap->param_tap, 0);
}
if (work_cancel_result == -EINPROGRESS) {
// let the timer handler clean up
// if we'd clear now, the timer may call back for an uninitialized active_hold_tap.
LOG_DBG("%d hold-tap timer work in event queue", position);
hold_tap->work_is_cancelled = true;
} else {
LOG_DBG("%d cleaning up hold-tap", position);
clear_hold_tap(hold_tap);
}
return 0;
}
static const struct behavior_driver_api behavior_hold_tap_driver_api = {
.binding_pressed = on_hold_tap_binding_pressed,
.binding_released = on_hold_tap_binding_released,
};
static int position_state_changed_listener(const struct zmk_event_header *eh)
{
struct position_state_changed *ev = cast_position_state_changed(eh);
if (undecided_hold_tap == NULL) {
LOG_DBG("%d bubble (no undecided hold_tap active)", ev->position);
return 0;
}
if (undecided_hold_tap->position == ev->position) {
if (ev->state) { // keydown
LOG_ERR("hold-tap listener should be called before before most other listeners!");
return 0;
} else { // keyup
LOG_DBG("%d bubble undecided hold-tap keyrelease event", undecided_hold_tap->position);
return 0;
}
}
if (!ev->state && find_captured_keydown_event(ev->position) == NULL) {
// no keydown event has been captured, let it bubble.
// we'll catch modifiers later in modifier_state_changed_listener
LOG_DBG("%d bubbling %d %s event", undecided_hold_tap->position, ev->position, ev->state ? "down" : "up");
return 0;
}
LOG_DBG("%d capturing %d %s event", undecided_hold_tap->position, ev->position, ev->state ? "down" : "up");
capture_event(eh);
decide_hold_tap(undecided_hold_tap, ev->state ? HT_OTHER_KEY_DOWN : HT_OTHER_KEY_UP);
return ZMK_EV_EVENT_CAPTURED;
}
static bool is_mod(struct keycode_state_changed *ev)
{
return ev->usage_page == USAGE_KEYPAD && ev->keycode >= LCTL && ev->keycode <= RGUI;
}
static int keycode_state_changed_listener(const struct zmk_event_header *eh)
{
// we want to catch layer-up events too... how?
struct keycode_state_changed *ev = cast_keycode_state_changed(eh);
if (undecided_hold_tap == NULL) {
// LOG_DBG("0x%02X bubble (no undecided hold_tap active)", ev->keycode);
return 0;
}
if (!is_mod(ev)) {
// LOG_DBG("0x%02X bubble (not a mod)", ev->keycode);
return 0;
}
// only key-up events will bubble through position_state_changed_listener
// if a undecided_hold_tap is active.
LOG_DBG("%d capturing 0x%02X %s event", undecided_hold_tap->position, ev->keycode, ev->state ? "down" : "up");
capture_event(eh);
return ZMK_EV_EVENT_CAPTURED;
}
int behavior_hold_tap_listener(const struct zmk_event_header *eh)
{
if (is_position_state_changed(eh)) {
return position_state_changed_listener(eh);
} else if (is_keycode_state_changed(eh)) {
return keycode_state_changed_listener(eh);
}
return 0;
}
ZMK_LISTENER(behavior_hold_tap, behavior_hold_tap_listener);
ZMK_SUBSCRIPTION(behavior_hold_tap, position_state_changed);
// this should be modifiers_state_changed, but unfrotunately that's not implemented yet.
ZMK_SUBSCRIPTION(behavior_hold_tap, keycode_state_changed);
void behavior_hold_tap_timer_work_handler(struct k_work *item)
{
struct active_hold_tap *hold_tap = CONTAINER_OF(item, struct active_hold_tap, work);
if (hold_tap->work_is_cancelled) {
clear_hold_tap(hold_tap);
} else {
decide_hold_tap(hold_tap, HT_TIMER_EVENT);
}
}
static int behavior_hold_tap_init(struct device *dev)
{
static bool init_first_run = true;
if (init_first_run) {
for (int i = 0; i < ZMK_BHV_HOLD_TAP_MAX_HELD; i++) {
k_delayed_work_init(&active_hold_taps[i].work, behavior_hold_tap_timer_work_handler);
active_hold_taps[i].position = ZMK_BHV_HOLD_TAP_POSITION_NOT_USED;
}
}
init_first_run = false;
return 0;
}
struct behavior_hold_tap_data {};
static struct behavior_hold_tap_data behavior_hold_tap_data;
#define _TRANSFORM_ENTRY(idx, node) \
{ \
.behavior_dev = DT_LABEL(DT_INST_PHANDLE_BY_IDX(node, bindings, idx)), \
.param1 = COND_CODE_0(DT_INST_PHA_HAS_CELL_AT_IDX(node, bindings, idx, param1), (0), (DT_INST_PHA_BY_IDX(node, bindings, idx, param1))), \
.param2 = COND_CODE_0(DT_INST_PHA_HAS_CELL_AT_IDX(node, bindings, idx, param2), (0), (DT_INST_PHA_BY_IDX(node, bindings, idx, param2))), \
},
#define KP_INST(n) \
static k_timeout_t behavior_hold_tap_config_##n##_gettime() { return K_MSEC(DT_INST_PROP(n, tapping_term_ms)); } \
static struct behavior_hold_tap_behaviors behavior_hold_tap_behaviors_##n = { \
.hold = _TRANSFORM_ENTRY(0, n) \
.tap = _TRANSFORM_ENTRY(1, n) \
}; \
static struct behavior_hold_tap_config behavior_hold_tap_config_##n = { \
.behaviors = &behavior_hold_tap_behaviors_##n, \
.tapping_term_ms = &behavior_hold_tap_config_##n##_gettime, \
.flavor = DT_ENUM_IDX(DT_DRV_INST(n), flavor), \
}; \
DEVICE_AND_API_INIT( \
behavior_hold_tap_##n, DT_INST_LABEL(n), behavior_hold_tap_init, \
&behavior_hold_tap_data, \
&behavior_hold_tap_config_##n, \
APPLICATION, CONFIG_KERNEL_INIT_PRIORITY_DEFAULT, \
&behavior_hold_tap_driver_api);
DT_INST_FOREACH_STATUS_OKAY(KP_INST)
#endif

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@ -1,252 +0,0 @@
/*
* Copyright (c) 2020 Peter Johanson <peter@peterjohanson.com>
*
* SPDX-License-Identifier: MIT
*/
#define DT_DRV_COMPAT zmk_behavior_mod_tap
#include <device.h>
#include <drivers/behavior.h>
#include <logging/log.h>
#include <zmk/matrix.h>
#include <zmk/endpoints.h>
#include <zmk/event-manager.h>
#include <zmk/events/keycode-state-changed.h>
#include <zmk/events/modifiers-state-changed.h>
#include <zmk/hid.h>
LOG_MODULE_DECLARE(zmk, CONFIG_ZMK_LOG_LEVEL);
#define ZMK_BHV_MOD_TAP_MAX_HELD 4
#define ZMK_BHV_MOD_TAP_MAX_PENDING_KC 4
struct active_mod_tap_item {
u32_t keycode;
u8_t mods;
bool pending;
zmk_mod_flags active_mods;
};
struct captured_keycode_state_change_item {
struct keycode_state_changed* event;
zmk_mod_flags active_mods;
};
struct behavior_mod_tap_config { };
struct behavior_mod_tap_data {
struct active_mod_tap_item active_mod_taps[ZMK_BHV_MOD_TAP_MAX_HELD];
struct captured_keycode_state_change_item captured_keycode_events[ZMK_BHV_MOD_TAP_MAX_PENDING_KC];
};
bool have_pending_mods(char *label) {
struct device *dev = device_get_binding(label);
struct behavior_mod_tap_data *data = dev->driver_data;
for (int i = 0; i < ZMK_BHV_MOD_TAP_MAX_HELD; i++) {
if (data->active_mod_taps[i].mods) {
LOG_DBG("Found pending mods for %d and keycode 0x%02X", data->active_mod_taps[i].mods, data->active_mod_taps[i].keycode);
return true;
}
}
return false;
}
struct captured_keycode_state_change_item* find_pending_keycode(struct behavior_mod_tap_data *data, u32_t keycode)
{
for (int i = 0; i < ZMK_BHV_MOD_TAP_MAX_PENDING_KC; i++) {
if (data->captured_keycode_events[i].event == NULL) {
continue;
}
if (data->captured_keycode_events[i].event->keycode == keycode) {
return &data->captured_keycode_events[i];
}
}
return NULL;
}
zmk_mod_flags behavior_mod_tap_active_mods(struct behavior_mod_tap_data *data)
{
zmk_mod_flags mods = 0;
for (int i = 0; i < ZMK_BHV_MOD_TAP_MAX_HELD; i++) {
mods |= data->active_mod_taps[i].mods;
}
return mods;
}
int behavior_mod_tap_capture_keycode_event(struct behavior_mod_tap_data *data, struct keycode_state_changed *ev)
{
for (int i = 0; i < ZMK_BHV_MOD_TAP_MAX_PENDING_KC; i++) {
if (data->captured_keycode_events[i].event != NULL) {
continue;
}
data->captured_keycode_events[i].event = ev;
data->captured_keycode_events[i].active_mods = behavior_mod_tap_active_mods(data);
return 0;
}
return -ENOMEM;
}
void behavior_mod_tap_update_active_mods_state(struct behavior_mod_tap_data *data, zmk_mod_flags used_flags)
{
for (int i = 0; i < ZMK_BHV_MOD_TAP_MAX_HELD; i++) {
if ((data->active_mod_taps[i].mods & used_flags) == data->active_mod_taps[i].mods) {
data->active_mod_taps[i].pending = false;
}
}
}
// How to pass context to subscription?!
int behavior_mod_tap_listener(const struct zmk_event_header *eh)
{
if (is_keycode_state_changed(eh) && have_pending_mods(DT_INST_LABEL(0))) {
struct device *dev = device_get_binding(DT_INST_LABEL(0));
struct keycode_state_changed *ev = cast_keycode_state_changed(eh);
struct behavior_mod_tap_data *data = dev->driver_data;
struct captured_keycode_state_change_item* pending_keycode;
if (ev->state) {
LOG_DBG("Have pending mods, capturing keycode 0x%02X event to ressend later", ev->keycode);
behavior_mod_tap_capture_keycode_event(data, ev);
return ZMK_EV_EVENT_CAPTURED;
} else if ((pending_keycode = find_pending_keycode(data, ev->keycode)) != NULL) {
LOG_DBG("Key released, going to activate mods 0x%02X then send pending key press for keycode 0x%02X",
pending_keycode->active_mods, pending_keycode->event->keycode);
zmk_hid_register_mods(pending_keycode->active_mods);
behavior_mod_tap_update_active_mods_state(data, pending_keycode->active_mods);
ZMK_EVENT_RELEASE(pending_keycode->event);
k_msleep(10);
pending_keycode->event = NULL;
pending_keycode->active_mods = 0;
}
}
return 0;
}
ZMK_LISTENER(behavior_mod_tap, behavior_mod_tap_listener);
ZMK_SUBSCRIPTION(behavior_mod_tap, keycode_state_changed);
static int behavior_mod_tap_init(struct device *dev)
{
return 0;
};
static int on_keymap_binding_pressed(struct device *dev, u32_t position, u32_t mods, u32_t keycode)
{
struct behavior_mod_tap_data *data = dev->driver_data;
LOG_DBG("mods: %d, keycode: 0x%02X", mods, keycode);
for (int i = 0; i < ZMK_BHV_MOD_TAP_MAX_HELD; i++) {
if (data->active_mod_taps[i].mods != 0) {
continue;
}
zmk_mod_flags active_mods = behavior_mod_tap_active_mods(data);
data->active_mod_taps[i].active_mods = active_mods;
data->active_mod_taps[i].mods = mods;
data->active_mod_taps[i].keycode = keycode;
data->active_mod_taps[i].pending = true;
return 0;
}
LOG_WRN("Failed to record mod-tap activation, at maximum concurrent mod-tap activations");
return -ENOMEM;
}
static int on_keymap_binding_released(struct device *dev, u32_t position, u32_t mods, u32_t keycode)
{
struct behavior_mod_tap_data *data = dev->driver_data;
LOG_DBG("mods: %d, keycode: %d", mods, keycode);
for (int i = 0; i < ZMK_BHV_MOD_TAP_MAX_HELD; i++) {
struct active_mod_tap_item *item = &data->active_mod_taps[i];
if (item->mods == mods && item->keycode == keycode) {
if (item->pending) {
LOG_DBG("Sending un-triggered mod-tap for keycode: 0x%02X", keycode);
if (item->active_mods) {
LOG_DBG("Registering recorded active mods captured when mod-tap initially activated: 0x%02X", item->active_mods);
behavior_mod_tap_update_active_mods_state(data, item->active_mods);
zmk_hid_register_mods(item->active_mods);
}
struct keycode_state_changed *key_press = create_keycode_state_changed(USAGE_KEYPAD, item->keycode, true);
ZMK_EVENT_RAISE_AFTER(key_press, behavior_mod_tap);
k_msleep(10);
for (int j = 0; j < ZMK_BHV_MOD_TAP_MAX_PENDING_KC; j++) {
if (data->captured_keycode_events[j].event == NULL) {
continue;
}
struct keycode_state_changed *ev = data->captured_keycode_events[j].event;
data->captured_keycode_events[j].event = NULL;
data->captured_keycode_events[j].active_mods = 0;
LOG_DBG("Re-sending latched key press for usage page 0x%02X keycode 0x%02X state %s", ev->usage_page, ev->keycode, (ev->state ? "pressed" : "released"));
ZMK_EVENT_RELEASE(ev);
k_msleep(10);
}
struct keycode_state_changed *key_release = create_keycode_state_changed(USAGE_KEYPAD, keycode, false);
LOG_DBG("Sending un-triggered mod-tap release for keycode: 0x%02X", keycode);
ZMK_EVENT_RAISE_AFTER(key_release, behavior_mod_tap);
k_msleep(10);
if (item->active_mods) {
LOG_DBG("Unregistering recorded active mods captured when mod-tap initially activated: 0x%02X", item->active_mods);
zmk_hid_unregister_mods(item->active_mods);
zmk_endpoints_send_report(USAGE_KEYPAD);
}
} else {
LOG_DBG("Releasing triggered mods: %d", mods);
zmk_hid_unregister_mods(mods);
zmk_endpoints_send_report(USAGE_KEYPAD);
}
item->mods = 0;
item->keycode = 0;
item->active_mods = 0;
LOG_DBG("Removing mods %d from active_mods for other held mod-taps", mods);
for (int j = 0; j < ZMK_BHV_MOD_TAP_MAX_HELD; j++) {
if (data->active_mod_taps[j].active_mods & mods) {
LOG_DBG("Removing 0x%02X from active mod tap mods 0x%02X keycode 0x%02X", mods, data->active_mod_taps[j].mods, data->active_mod_taps[j].keycode);
data->active_mod_taps[j].active_mods &= ~mods;
}
}
break;
}
}
return 0;
}
static const struct behavior_driver_api behavior_mod_tap_driver_api = {
.binding_pressed = on_keymap_binding_pressed,
.binding_released = on_keymap_binding_released,
};
static const struct behavior_mod_tap_config behavior_mod_tap_config = {};
static struct behavior_mod_tap_data behavior_mod_tap_data;
DEVICE_AND_API_INIT(behavior_mod_tap, DT_INST_LABEL(0), behavior_mod_tap_init,
&behavior_mod_tap_data,
&behavior_mod_tap_config,
APPLICATION, CONFIG_KERNEL_INIT_PRIORITY_DEFAULT,
&behavior_mod_tap_driver_api);

View File

@ -71,7 +71,23 @@ int zmk_event_manager_raise_after(struct zmk_event_header *event, const struct z
return -EINVAL;
}
int zmk_event_manager_raise_at(struct zmk_event_header *event, const struct zmk_listener *listener)
{
u8_t len = __event_subscriptions_end - __event_subscriptions_start;
for (int i = 0; i < len; i++) {
struct zmk_event_subscription *ev_sub = __event_subscriptions_start + i;
if (ev_sub->event_type == event->event && ev_sub->listener == listener) {
return zmk_event_manager_handle_from(event, i);
}
}
LOG_WRN("Unable to find where to raise this event");
return -EINVAL;
}
int zmk_event_manager_release(struct zmk_event_header *event)
{
return zmk_event_manager_handle_from(event, event->last_listener_index + 1);
}
}

View File

@ -51,10 +51,10 @@ static u8_t zmk_keymap_layer_default = 0;
// State
// When a behavior handles a key position "down" event, we record that layer
// When a behavior handles a key position "down" event, we record the layer state
// here so that even if that layer is deactivated before the "up", event, we
// still send the release event to the behavior in that layer also.
static u8_t zmk_keymap_active_behavior_layer[ZMK_KEYMAP_LEN];
static u32_t zmk_keymap_active_behavior_layer[ZMK_KEYMAP_LEN];
static struct zmk_behavior_binding zmk_keymap[ZMK_KEYMAP_LAYERS_LEN][ZMK_KEYMAP_LEN] = {
DT_INST_FOREACH_CHILD(0, TRANSFORMED_LAYER)
@ -101,47 +101,51 @@ int zmk_keymap_layer_toggle(u8_t layer)
return zmk_keymap_layer_activate(layer);
};
bool is_active_position(u32_t position, u8_t layer)
bool is_active_layer(u8_t layer, u32_t layer_state)
{
return (zmk_keymap_layer_state & BIT(layer)) == BIT(layer)
|| layer == zmk_keymap_layer_default
|| zmk_keymap_active_behavior_layer[position] == layer;
return (layer_state & BIT(layer)) == BIT(layer)
|| layer == zmk_keymap_layer_default;
}
int zmk_keymap_apply_position_state(int layer, u32_t position, bool pressed)
{
struct zmk_behavior_binding *binding = &zmk_keymap[layer][position];
struct device *behavior;
LOG_DBG("layer: %d position: %d, binding name: %s", layer, position, log_strdup(binding->behavior_dev));
behavior = device_get_binding(binding->behavior_dev);
if (!behavior) {
LOG_DBG("No behavior assigned to %d on layer %d", position, layer);
return 1;
}
if (pressed) {
return behavior_keymap_binding_pressed(behavior, position, binding->param1, binding->param2);
} else {
return behavior_keymap_binding_released(behavior, position, binding->param1, binding->param2);
}
}
int zmk_keymap_position_state_changed(u32_t position, bool pressed)
{
for (int layer = ZMK_KEYMAP_LAYERS_LEN - 1; layer >= zmk_keymap_layer_default; layer--)
{
if (is_active_position(position, layer))
u32_t layer_state = pressed ? zmk_keymap_layer_state : zmk_keymap_active_behavior_layer[position];
if (is_active_layer(layer, layer_state))
{
struct zmk_behavior_binding *binding = &zmk_keymap[layer][position];
struct device *behavior;
int ret;
int ret = zmk_keymap_apply_position_state(layer, position, pressed);
LOG_DBG("layer: %d position: %d, binding name: %s", layer, position, log_strdup(binding->behavior_dev));
behavior = device_get_binding(binding->behavior_dev);
if (!behavior) {
LOG_DBG("No behavior assigned to %d on layer %d", position, layer);
continue;
}
if (pressed) {
ret = behavior_keymap_binding_pressed(behavior, position, binding->param1, binding->param2);
} else {
ret = behavior_keymap_binding_released(behavior, position, binding->param1, binding->param2);
}
zmk_keymap_active_behavior_layer[position] = zmk_keymap_layer_state;
if (ret > 0) {
LOG_DBG("behavior processing to continue to next layer");
continue;
} else if (ret < 0) {
LOG_DBG("Behavior returned error: %d", ret);
zmk_keymap_active_behavior_layer[position] = 0;
return ret;
} else {
zmk_keymap_active_behavior_layer[position] = pressed ? layer : 0;
return ret;
}
}

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@ -0,0 +1 @@
Refer to the pdf/open document "zmk-modtap-proposal.{pdf,odt}" in this directory for a visual representation of the numbered tests for hold-tap.

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

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@ -0,0 +1,5 @@
ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided tap (balanced event 0)
kp_pressed: usage_page 0x07 keycode 0x09
kp_released: usage_page 0x07 keycode 0x09
ht_binding_released: 0 cleaning up hold-tap

View File

@ -0,0 +1,11 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(0,0,10)
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

View File

@ -0,0 +1,5 @@
ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided hold (balanced event 3)
kp_pressed: usage_page 0x07 keycode 0xe1
kp_released: usage_page 0x07 keycode 0xe1
ht_binding_released: 0 cleaning up hold-tap

View File

@ -0,0 +1,11 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(0,0,500)
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

View File

@ -0,0 +1,7 @@
kp_pressed: usage_page 0x07 keycode 0xe4
ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided tap (balanced event 0)
kp_pressed: usage_page 0x07 keycode 0x09
kp_released: usage_page 0x07 keycode 0xe4
kp_released: usage_page 0x07 keycode 0x09
ht_binding_released: 0 cleaning up hold-tap

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@ -0,0 +1,13 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(1,1,10) /*ctrl*/
ZMK_MOCK_PRESS(0,0,100) /*mt f-shift */
ZMK_MOCK_RELEASE(1,1,10)
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

View File

@ -0,0 +1,7 @@
kp_pressed: usage_page 0x07 keycode 0xe4
ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided hold (balanced event 3)
kp_pressed: usage_page 0x07 keycode 0xe1
kp_released: usage_page 0x07 keycode 0xe4
kp_released: usage_page 0x07 keycode 0xe1
ht_binding_released: 0 cleaning up hold-tap

View File

@ -0,0 +1,14 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(1,1,10) /*ctrl*/
ZMK_MOCK_PRESS(0,0,50) /*mt f-shift */
ZMK_MOCK_RELEASE(1,1,300)
/*timer*/
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

View File

@ -0,0 +1,7 @@
kp_pressed: usage_page 0x07 keycode 0x07
ht_binding_pressed: 0 new undecided hold_tap
kp_released: usage_page 0x07 keycode 0x07
ht_decide: 0 decided tap (balanced event 0)
kp_pressed: usage_page 0x07 keycode 0x09
kp_released: usage_page 0x07 keycode 0x09
ht_binding_released: 0 cleaning up hold-tap

View File

@ -0,0 +1,13 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(1,0,10) /*d*/
ZMK_MOCK_PRESS(0,0,100) /*mt f-shift */
ZMK_MOCK_RELEASE(1,0,10)
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

View File

@ -0,0 +1,7 @@
kp_pressed: usage_page 0x07 keycode 0x07
ht_binding_pressed: 0 new undecided hold_tap
kp_released: usage_page 0x07 keycode 0x07
ht_decide: 0 decided hold (balanced event 3)
kp_pressed: usage_page 0x07 keycode 0xe1
kp_released: usage_page 0x07 keycode 0xe1
ht_binding_released: 0 cleaning up hold-tap

View File

@ -0,0 +1,13 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(1,0,10) /* d */
ZMK_MOCK_PRESS(0,0,100) /* mt f-shift */
ZMK_MOCK_RELEASE(1,0,400)
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

View File

@ -0,0 +1,10 @@
ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided hold (balanced event 3)
kp_pressed: usage_page 0x07 keycode 0xe1
ht_binding_pressed: 1 new undecided hold_tap
ht_decide: 1 decided tap (balanced event 0)
kp_pressed: usage_page 0x07 keycode 0x0d
kp_released: usage_page 0x07 keycode 0x0d
ht_binding_released: 1 cleaning up hold-tap
kp_released: usage_page 0x07 keycode 0xe1
ht_binding_released: 0 cleaning up hold-tap

View File

@ -0,0 +1,14 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(0,0,200)
ZMK_MOCK_PRESS(0,1,200)
/* timer fires */
ZMK_MOCK_RELEASE(0,1,10)
ZMK_MOCK_RELEASE(0,0,10)
>;
};

View File

@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

View File

@ -0,0 +1,7 @@
ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided hold (balanced event 3)
kp_pressed: usage_page 0x07 keycode 0xe1
kp_pressed: usage_page 0x07 keycode 0x07
kp_released: usage_page 0x07 keycode 0x07
kp_released: usage_page 0x07 keycode 0xe1
ht_binding_released: 0 cleaning up hold-tap

View File

@ -0,0 +1,14 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(0,0,200)
ZMK_MOCK_PRESS(1,0,200)
/* timer fires */
ZMK_MOCK_RELEASE(1,0,10)
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

View File

@ -0,0 +1,7 @@
ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided hold (balanced event 2)
kp_pressed: usage_page 0x07 keycode 0xe1
kp_pressed: usage_page 0x07 keycode 0x07
kp_released: usage_page 0x07 keycode 0x07
kp_released: usage_page 0x07 keycode 0xe1
ht_binding_released: 0 cleaning up hold-tap

View File

@ -0,0 +1,14 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(0,0,100)
ZMK_MOCK_PRESS(1,0,100)
ZMK_MOCK_RELEASE(1,0,200)
/* timer fires */
ZMK_MOCK_RELEASE(0,0,10)
>;
};

View File

@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

View File

@ -0,0 +1,7 @@
ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided hold (balanced event 2)
kp_pressed: usage_page 0x07 keycode 0xe1
kp_pressed: usage_page 0x07 keycode 0x07
kp_released: usage_page 0x07 keycode 0x07
kp_released: usage_page 0x07 keycode 0xe1
ht_binding_released: 0 cleaning up hold-tap

View File

@ -0,0 +1,14 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(0,0,10)
ZMK_MOCK_PRESS(1,0,10)
ZMK_MOCK_RELEASE(1,0,10)
ZMK_MOCK_RELEASE(0,0,10)
/* timer */
>;
};

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

View File

@ -0,0 +1,7 @@
ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided tap (balanced event 0)
kp_pressed: usage_page 0x07 keycode 0x09
kp_pressed: usage_page 0x07 keycode 0x07
kp_released: usage_page 0x07 keycode 0x09
ht_binding_released: 0 cleaning up hold-tap
kp_released: usage_page 0x07 keycode 0x07

View File

@ -0,0 +1,14 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(0,0,100)
ZMK_MOCK_PRESS(1,0,100)
ZMK_MOCK_RELEASE(0,0,200)
/* timer fires */
ZMK_MOCK_RELEASE(1,0,10)
>;
};

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@ -0,0 +1,27 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
/ {
behaviors {
ht_bal: behavior_hold_tap_balanced {
compatible = "zmk,behavior-hold-tap";
label = "HOLD_TAP_BALANCED";
#binding-cells = <2>;
flavor = "balanced";
tapping_term_ms = <300>;
bindings = <&kp>, <&kp>;
};
};
keymap {
compatible = "zmk,keymap";
label ="Default keymap";
default_layer {
bindings = <
&ht_bal LSFT F &ht_bal LCTL J
&kp D &kp RCTL>;
};
};
};

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

View File

@ -0,0 +1,5 @@
ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided tap (hold-preferred event 0)
kp_pressed: usage_page 0x07 keycode 0x09
kp_released: usage_page 0x07 keycode 0x09
ht_binding_released: 0 cleaning up hold-tap

View File

@ -0,0 +1,11 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(0,0,10)
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

View File

@ -0,0 +1,5 @@
ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided hold (hold-preferred event 3)
kp_pressed: usage_page 0x07 keycode 0xe1
kp_released: usage_page 0x07 keycode 0xe1
ht_binding_released: 0 cleaning up hold-tap

View File

@ -0,0 +1,11 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(0,0,500)
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

View File

@ -0,0 +1,7 @@
kp_pressed: usage_page 0x07 keycode 0xe4
ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided tap (hold-preferred event 0)
kp_pressed: usage_page 0x07 keycode 0x09
kp_released: usage_page 0x07 keycode 0xe4
kp_released: usage_page 0x07 keycode 0x09
ht_binding_released: 0 cleaning up hold-tap

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@ -0,0 +1,13 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(1,1,10) /*ctrl*/
ZMK_MOCK_PRESS(0,0,100) /*mt f-shift */
ZMK_MOCK_RELEASE(1,1,10)
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

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kp_pressed: usage_page 0x07 keycode 0xe4
ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided hold (hold-preferred event 3)
kp_pressed: usage_page 0x07 keycode 0xe1
kp_released: usage_page 0x07 keycode 0xe4
kp_released: usage_page 0x07 keycode 0xe1
ht_binding_released: 0 cleaning up hold-tap

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#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(1,1,10) /*ctrl*/
ZMK_MOCK_PRESS(0,0,50) /*mt f-shift */
ZMK_MOCK_RELEASE(1,1,300)
/*timer*/
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

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kp_pressed: usage_page 0x07 keycode 0x07
ht_binding_pressed: 0 new undecided hold_tap
kp_released: usage_page 0x07 keycode 0x07
ht_decide: 0 decided tap (hold-preferred event 0)
kp_pressed: usage_page 0x07 keycode 0x09
kp_released: usage_page 0x07 keycode 0x09
ht_binding_released: 0 cleaning up hold-tap

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#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(1,0,10) /*d*/
ZMK_MOCK_PRESS(0,0,100) /*mt f-shift */
ZMK_MOCK_RELEASE(1,0,10)
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

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kp_pressed: usage_page 0x07 keycode 0x07
ht_binding_pressed: 0 new undecided hold_tap
kp_released: usage_page 0x07 keycode 0x07
ht_decide: 0 decided hold (hold-preferred event 3)
kp_pressed: usage_page 0x07 keycode 0xe1
kp_released: usage_page 0x07 keycode 0xe1
ht_binding_released: 0 cleaning up hold-tap

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#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(1,0,10) /* d */
ZMK_MOCK_PRESS(0,0,100) /* mt f-shift */
ZMK_MOCK_RELEASE(1,0,400)
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

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ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided hold (hold-preferred event 1)
kp_pressed: usage_page 0x07 keycode 0xe1
ht_binding_pressed: 1 new undecided hold_tap
ht_decide: 1 decided tap (hold-preferred event 0)
kp_pressed: usage_page 0x07 keycode 0x0d
kp_released: usage_page 0x07 keycode 0x0d
ht_binding_released: 1 cleaning up hold-tap
kp_released: usage_page 0x07 keycode 0xe1
ht_binding_released: 0 cleaning up hold-tap

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@ -0,0 +1,14 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(0,0,200)
ZMK_MOCK_PRESS(0,1,200)
/* timer fires */
ZMK_MOCK_RELEASE(0,1,10)
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

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ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided hold (hold-preferred event 1)
kp_pressed: usage_page 0x07 keycode 0xe1
kp_pressed: usage_page 0x07 keycode 0x07
kp_released: usage_page 0x07 keycode 0x07
kp_released: usage_page 0x07 keycode 0xe1
ht_binding_released: 0 cleaning up hold-tap

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#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(0,0,200)
ZMK_MOCK_PRESS(1,0,200)
/* timer fires */
ZMK_MOCK_RELEASE(1,0,10)
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

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ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided hold (hold-preferred event 1)
kp_pressed: usage_page 0x07 keycode 0xe1
kp_pressed: usage_page 0x07 keycode 0x07
kp_released: usage_page 0x07 keycode 0x07
kp_released: usage_page 0x07 keycode 0xe1
ht_binding_released: 0 cleaning up hold-tap

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@ -0,0 +1,14 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(0,0,100)
ZMK_MOCK_PRESS(1,0,100)
ZMK_MOCK_RELEASE(1,0,200)
/* timer fires */
ZMK_MOCK_RELEASE(0,0,10)
>;
};

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

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ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided hold (hold-preferred event 1)
kp_pressed: usage_page 0x07 keycode 0xe1
kp_pressed: usage_page 0x07 keycode 0x07
kp_released: usage_page 0x07 keycode 0x07
kp_released: usage_page 0x07 keycode 0xe1
ht_binding_released: 0 cleaning up hold-tap

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@ -0,0 +1,14 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(0,0,10)
ZMK_MOCK_PRESS(1,0,10)
ZMK_MOCK_RELEASE(1,0,10)
ZMK_MOCK_RELEASE(0,0,10)
/* timer */
>;
};

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@ -0,0 +1,4 @@
s/.*hid_listener_keycode/kp/p
s/.*mo_keymap_binding/mo/p
s/.*on_hold_tap_binding/ht_binding/p
s/.*decide_hold_tap/ht_decide/p

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@ -0,0 +1,7 @@
ht_binding_pressed: 0 new undecided hold_tap
ht_decide: 0 decided hold (hold-preferred event 1)
kp_pressed: usage_page 0x07 keycode 0xe1
kp_pressed: usage_page 0x07 keycode 0x07
kp_released: usage_page 0x07 keycode 0xe1
ht_binding_released: 0 cleaning up hold-tap
kp_released: usage_page 0x07 keycode 0x07

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@ -0,0 +1,14 @@
#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
#include "../behavior_keymap.dtsi"
&kscan {
events = <
ZMK_MOCK_PRESS(0,0,100)
ZMK_MOCK_PRESS(1,0,100)
ZMK_MOCK_RELEASE(0,0,200)
/* timer fires */
ZMK_MOCK_RELEASE(1,0,10)
>;
};

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#include <dt-bindings/zmk/keys.h>
#include <behaviors.dtsi>
#include <dt-bindings/zmk/kscan-mock.h>
/ {
behaviors {
ht_hold: behavior_hold_hold_tap {
compatible = "zmk,behavior-hold-tap";
label = "hold_hold_tap";
#binding-cells = <2>;
flavor = "hold-preferred";
tapping_term_ms = <300>;
bindings = <&kp>, <&kp>;
};
};
keymap {
compatible = "zmk,keymap";
label ="Default keymap";
default_layer {
bindings = <
&ht_hold LSFT F &ht_hold LCTL J
&kp D &kp RCTL>;
};
};
};

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