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qmk_firmware/keyboards/mechwild/mercutio/keymaps/fearless_spiff_en/keymap.c
Jeff Epler 9632360caa
Use a macro to compute the size of arrays at compile time (#18044)
* Add ARRAY_SIZE and CEILING utility macros

* Apply a coccinelle patch to use ARRAY_SIZE

* fix up some straggling items

* Fix 'make test:secure'

* Enhance ARRAY_SIZE macro to reject acting on pointers

The previous definition would not produce a diagnostic for
```
int *p;
size_t num_elem = ARRAY_SIZE(p)
```
but the new one will.

* explicitly get definition of ARRAY_SIZE

* Convert to ARRAY_SIZE when const is involved

The following spatch finds additional instances where the array is
const and the division is by the size of the type, not the size of
the first element:
```
@ rule5a using "empty.iso" @
type T;
const T[] E;
@@

- (sizeof(E)/sizeof(T))
+ ARRAY_SIZE(E)

@ rule6a using "empty.iso" @
type T;
const T[] E;
@@

- sizeof(E)/sizeof(T)
+ ARRAY_SIZE(E)
```

* New instances of ARRAY_SIZE added since initial spatch run

* Use `ARRAY_SIZE` in docs (found by grep)

* Manually use ARRAY_SIZE

hs_set is expected to be the same size as uint16_t, though it's made
of two 8-bit integers

* Just like char, sizeof(uint8_t) is guaranteed to be 1

This is at least true on any plausible system where qmk is actually used.

Per my understanding it's universally true, assuming that uint8_t exists:
https://stackoverflow.com/questions/48655310/can-i-assume-that-sizeofuint8-t-1

* Run qmk-format on core C files touched in this branch

Co-authored-by: Stefan Kerkmann <karlk90@pm.me>
2022-08-30 10:20:04 +02:00

294 lines
18 KiB
C

/* Copyright 2021 Kyle McCreery
* Copyright 2021 Jonavin Eng
* Copyright 2022 Fearless Spiff
*
* This program is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 2 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include QMK_KEYBOARD_H
#include "keymap_german.h"
// OLED setup for bongocat
#define IDLE_FRAMES 5
#define IDLE_SPEED 30
#define TAP_FRAMES 2
#define TAP_SPEED 40
#define ANIM_FRAME_DURATION 200
#define ANIM_SIZE 512
#define LABEL_LENGTH 8
#define KC_CAD LALT(LCTL(KC_DEL))
#define KC_TEAMS_CAM C(S(KC_O))
#define KC_TEAMS_MUTE C(S(KC_M))
enum layers {
QWERT,
FN_1,
FN_2
};
enum custom_user_keycodes {
KC_ENC = SAFE_RANGE
};
static long int oled_timeout = 1800000; // 30 minutes
bool gui_on = true;
char wpm_str[10];
uint32_t anim_timer = 0;
uint32_t anim_sleep = 0;
uint8_t current_idle_frame = 0;
uint8_t current_tap_frame = 0;
// Tap Dance declarations
enum {
TD_TAB_ESC,
};
// Tap Dance definitions
qk_tap_dance_action_t tap_dance_actions[] = {
// Tap once for Tab, twice for Esc
[TD_TAB_ESC] = ACTION_TAP_DANCE_DOUBLE(KC_TAB, KC_ESC),
};
typedef struct {
char label_top[LABEL_LENGTH];
char label_mid[LABEL_LENGTH];
char label_bottom[LABEL_LENGTH];
uint16_t keycode;
} encoder_key;
static const encoder_key PROGMEM encoder_keys[] = {
// list of key codes that will be scrolled through by encoder and description
// Be aware that it only works when using one char less than defined. In this case 7 max. No idea why?
{"Teams", "Toggle", "Mic", KC_TEAMS_MUTE},
{"Teams", "Toggle", "Cam", KC_TEAMS_CAM},
{"Ctrl", "Alt", "Del", KC_CAD},
{"Caps", "Lock", "", KC_CAPSLOCK},
{"Pause", "", "", KC_PAUSE},
{"PrtScr", "", "", KC_PSCR},
{"Insert", "", "", KC_INS},
{"Play", "", "", KC_MEDIA_PLAY_PAUSE}
};
#define NUMBER_OF_ENCODER_KEYS ARRAY_SIZE(encoder_keys)
static uint8_t selected_encoder_key_id = 0;
static encoder_key selected_encoder_key;
static void set_selected_encoder_key(uint8_t idx) {
// make a copy from PROGMEM
memcpy_P (&selected_encoder_key, &encoder_keys[idx], sizeof selected_encoder_key);
}
bool process_record_user(uint16_t keycode, keyrecord_t *record) {
switch (keycode) {
case KC_ENC:
if (record->event.pressed) {
tap_code16(selected_encoder_key.keycode);
}
break;
}
return true;
}
const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
[QWERT] = LAYOUT_all(
KC_ENC,
TD(TD_TAB_ESC), KC_Q, KC_W, KC_E, KC_R, KC_T, KC_Y, KC_U, KC_I, KC_O, KC_P, KC_BSPC,
LT(1,KC_CAPSLOCK), KC_A, KC_S, KC_D, KC_F, KC_G, KC_H, KC_J, KC_K, KC_L, KC_PLUS, KC_ENT,
KC_LSFT, KC_LABK, KC_Z, KC_X, KC_C, KC_V, KC_B, KC_N, KC_M, KC_COMM, KC_DOT, KC_RSFT,
KC_LCTL, KC_LGUI, LT(2,KC_LALT), KC_SPC, KC_SPC, KC_SPC, KC_RALT, MO(2), KC_RCTL ),
[FN_1] = LAYOUT_all(
KC_MUTE,
KC_GESC, _______, KC_UP, _______, KC_LCBR, KC_RCBR, _______, _______, KC_UP, _______, KC_QUES, KC_DEL,
_______, KC_LEFT, KC_DOWN, KC_RIGHT, KC_LPRN, KC_RPRN, KC_QUES, KC_LEFT, KC_DOWN, KC_LABK, KC_RABK, _______,
_______, KC_BSLS, KC_SLSH, KC_PIPE, _______, KC_LBRC, KC_RBRC, KC_HOME, KC_END, KC_QUOT, KC_DQUO, KC_EQL,
_______, _______, _______, _______, _______, _______, KC_BSLS, KC_SLSH, KC_TILD ),
[FN_2] = LAYOUT_all(
_______,
KC_ESC, KC_1, KC_2, KC_3, KC_4, KC_5, KC_6, KC_7, KC_8, KC_9, KC_0, KC_BSPC,
_______, KC_EXLM, KC_AT, KC_HASH, KC_DLR, KC_AMPR, KC_PERC, KC_ASTR, KC_LPRN, KC_RPRN, _______, _______,
_______, _______, KC_MINS, KC_PLUS, KC_BSLS, KC_SLSH, KC_SCLN, KC_COLN, KC_QUES, KC_LBRC, KC_RBRC, KC_DOT,
KC_DQUO, KC_QUOT, KC_DQUO, _______, _______, _______, _______, _______, KC_PIPE )
};
#ifdef ENCODER_ENABLE
bool encoder_update_user(uint8_t index, bool clockwise) {
if (clockwise) {
if (IS_LAYER_ON(QWERT) && selected_encoder_key_id < NUMBER_OF_ENCODER_KEYS-1) {
selected_encoder_key_id ++;
set_selected_encoder_key(selected_encoder_key_id);
}
if (IS_LAYER_ON(FN_1)) {
tap_code16(KC_PGDOWN);
}
if (IS_LAYER_ON(FN_2)) {
tap_code(KC_VOLU);
}
} else {
if (IS_LAYER_ON(QWERT) && selected_encoder_key_id > 0) {
selected_encoder_key_id --;
set_selected_encoder_key(selected_encoder_key_id);
}
if (IS_LAYER_ON(FN_1)) {
tap_code16(KC_PGUP);
}
if (IS_LAYER_ON(FN_2)) {
tap_code(KC_VOLD);
}
}
return false;
}
#endif
#ifdef OLED_ENABLE
oled_rotation_t oled_init_user(oled_rotation_t rotation) {
set_selected_encoder_key(selected_encoder_key_id);
return OLED_ROTATION_180; // flips the display 180 degrees
}
static void render_anim(void) {
// Idle animation
static const char PROGMEM idle[IDLE_FRAMES][ANIM_SIZE] = {
{
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},
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}
};
// Prep animation
static const char PROGMEM prep[][ANIM_SIZE] = {
{
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64,64,32,32,32,32,16,16,16,16,8,8,8,8,8,4,4,4,4,4,2,2,2,2,1,1,1,1,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,128,112,12,3,0,0,24,6,5,152,153,132,195,124,65,65,64,64,32,33,34,18,17,17,17,9,8,8,8,8,4,4,4,4,4,4,2,2,2,1,1,1,1,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,128,128,128,128,128,64,64,64,64,64,32,32,32,32,32,16,16,16,16,16,8,8,8,8,8,4,4,4,4,4,2,3,2,2,1,1,1,1,1,1,0,0,0,0,0,0,0,0,0,
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}
};
// Typing animation
static const char PROGMEM tap[TAP_FRAMES][ANIM_SIZE] = {
{
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95,95,79,76,32,32,32,32,16,16,16,16,8,8,8,8,8,4,4,4,4,4,2,2,2,2,1,1,1,1,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,128,112,12,3,0,0,24,6,5,152,153,132,67,124,65,65,64,64,32,33,34,18,17,17,17,9,8,8,8,8,4,4,8,8,16,16,16,16,16,17,15,1,61,124,252,252,252,252,252,60,12,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,128,128,128,128,128,64,64,64,64,64,32,32,32,32,32,16,16,16,16,16,8,8,8,8,8,4,4,4,4,4,2,3,2,2,1,1,1,
1,1,1,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,1,3,3,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0
},
{
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32,32,32,16,16,16,16,8,8,8,8,8,4,4,4,4,4,2,2,2,2,1,1,1,1,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,128,112,12,3,0,0,0,0,0,0,0,0,0,0,1,1,0,64,160,33,34,18,17,17,17,9,8,8,8,8,4,4,4,4,4,4,2,2,2,1,1,1,1,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,128,128,128,128,128,64,64,64,64,64,32,32,32,32,32,16,16,16,16,16,8,8,8,8,8,4,4,4,4,4,2,3,122,122,121,121,121,121,57,49,2,2,4,4,8,8,8,136,136,135,128,
0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0
}
};
void animation_phase(void) {
if (get_current_wpm() <= IDLE_SPEED) {
current_idle_frame = (current_idle_frame + 1) % IDLE_FRAMES;
oled_write_raw_P(idle[abs((IDLE_FRAMES-1)-current_idle_frame)], ANIM_SIZE);
}
if (get_current_wpm() > IDLE_SPEED && get_current_wpm() < TAP_SPEED) {
oled_write_raw_P(prep[0], ANIM_SIZE);
}
if (get_current_wpm() >= TAP_SPEED) {
current_tap_frame = (current_tap_frame + 1) % TAP_FRAMES;
oled_write_raw_P(tap[abs((TAP_FRAMES-1)-current_tap_frame)], ANIM_SIZE);
}
}
if (get_current_wpm() != 000) {
oled_on();
if (timer_elapsed32(anim_timer) > ANIM_FRAME_DURATION) {
anim_timer = timer_read32();
animation_phase();
}
anim_sleep = timer_read32();
} else {
if (timer_elapsed32(anim_sleep) > oled_timeout) {
oled_off();
} else {
if (timer_elapsed32(anim_timer) > ANIM_FRAME_DURATION) {
anim_timer = timer_read32();
animation_phase();
}
}
}
}
bool oled_task_user(void) {
render_anim();
oled_set_cursor(0,0);
oled_write(selected_encoder_key.label_top, false);
oled_set_cursor(0,1);
oled_write(selected_encoder_key.label_mid, false);
oled_set_cursor(0,2);
oled_write(selected_encoder_key.label_bottom, false);
/* hide wpm display for now
oled_set_cursor(13,3);
oled_write_P(PSTR("WPM: "), false);
oled_write(get_u8_str(get_current_wpm(), ' '), false);
*/
return false;
}
void suspend_power_down_user(void) {
oled_off();
}
#endif