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Sensor-Watch/watch-faces/complication/billing_face.c
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add billing face
2026-08-04 20:59:48 -03:00

246 lines
8.9 KiB
C

/*
* MIT License
*
* Copyright (c) 2025 OpenCode
*
* Permission is hereby granted, free of charge, to any person obtaining a copy
* of this software and associated documentation files (the "Software"), to deal
* in the Software without restriction, including without limitation the rights
* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
* copies of the Software, and to permit persons to whom the Software is
* furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in all
* copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
* SOFTWARE.
*/
#include <stdlib.h>
#include <string.h>
#include <stdio.h>
#include <stdint.h>
#include "billing_face.h"
#include "watch.h"
#include "watch_utility.h"
#include "watch_common_display.h"
#include "watch_rtc.h"
// distant future for the background task: January 1, 2083.
// while the timer is running we schedule a task that will never fire, which
// keeps the watch from entering low energy mode and displaying stale data.
static const watch_date_time_t distant_future = {
.unit = {0, 0, 0, 1, 1, 63}
};
#define BILLING_DEFAULT_RATE 2500 // 2500 monies/hour
// Billing math: RTC ticks at 128 Hz, rate in money, all 64-bit integer.
#define BILLING_TICKS_PER_HOUR (128u * 3600u)
static uint64_t billing_compute(uint32_t rate_money_per_hour, uint64_t elapsed_ticks) {
return (uint64_t)rate_money_per_hour * elapsed_ticks / BILLING_TICKS_PER_HOUR;
}
// bottom display: money, saturated at 999999 when it no longer fits in 6 digits.
static uint32_t billing_display(uint64_t total) {
return total > 999999u ? 999999u : (uint32_t)total;
}
// two most-significant digits of the rate
static uint32_t billing_rate_digits(uint32_t rate) {
while (rate > 99) rate /= 10;
return rate;
}
static inline void _button_beep(void) {
if (movement_button_should_sound()) {
watch_buzzer_play_note_with_volume(BUZZER_NOTE_C7, 50, movement_button_volume());
}
}
static void _redraw(billing_state_t *state, rtc_counter_t now) {
uint64_t elapsed = state->running ? ((uint64_t)now - (uint64_t)state->start_counter) : (uint64_t)state->paused_counter;
uint64_t total_money = billing_compute(state->rate_money_per_hour, elapsed);
// space-padded, not zero-padded — and full width, so stale digits clear
char buf[8];
sprintf(buf, "%6lu", (unsigned long)billing_display(total_money));
watch_display_text(WATCH_POSITION_BOTTOM, buf);
sprintf(buf, "%2lu", (unsigned long)billing_rate_digits(state->rate_money_per_hour));
watch_display_text(WATCH_POSITION_TOP_RIGHT, buf);
}
static void _editor_inc_digit(billing_state_t *state) {
uint32_t place = 1u;
for (uint8_t i = state->cursor; i < 5; i++) place *= 10u;
if (((state->rate_money_per_hour / place) % 10u) == 9) {
state->rate_money_per_hour -= place * 9u; // 9 -> 0, no carry
} else {
state->rate_money_per_hour += place;
}
}
static void _redraw_editor(billing_state_t *state, uint8_t subsecond) {
uint32_t rate = state->rate_money_per_hour;
char buf[14];
sprintf(buf, "%06lu", (unsigned long)rate);
watch_display_text(WATCH_POSITION_BOTTOM, buf);
if (subsecond % 2) watch_display_character(' ', 4 + state->cursor);
watch_display_text_with_fallback(WATCH_POSITION_TOP_LEFT, "RATE", "RA");
}
static void _show_bill_label(void) {
watch_display_text_with_fallback(WATCH_POSITION_TOP_LEFT, "BILL", "BL");
}
static void _exit_editor(billing_state_t *state, rtc_counter_t now) {
state->mode = 0;
state->editor_quick = false;
movement_request_tick_frequency(state->running ? 32 : 1);
_show_bill_label();
_redraw(state, now);
}
void billing_face_setup(uint8_t watch_face_index, void ** context_ptr) {
(void) watch_face_index;
if (*context_ptr == NULL) {
*context_ptr = malloc(sizeof(billing_state_t));
memset(*context_ptr, 0, sizeof(billing_state_t));
billing_state_t *state = (billing_state_t *)*context_ptr;
state->rate_money_per_hour = BILLING_DEFAULT_RATE;
}
}
void billing_face_activate(void *context) {
billing_state_t *state = (billing_state_t *)context;
watch_clear_colon();
_show_bill_label();
movement_request_tick_frequency(state->running ? 32 : 1);
if (state->running) {
movement_schedule_background_task(distant_future);
}
}
bool billing_face_loop(movement_event_t event, void *context) {
billing_state_t *state = (billing_state_t *)context;
rtc_counter_t now = watch_rtc_get_counter();
switch (event.event_type) {
case EVENT_ACTIVATE:
if (state->mode == 1) _redraw_editor(state, 0);
else _redraw(state, now);
break;
case EVENT_TICK:
if (state->mode == 1) {
if (state->editor_quick) _editor_inc_digit(state);
_redraw_editor(state, event.subsecond);
} else {
_redraw(state, now);
}
break;
case EVENT_ALARM_BUTTON_DOWN:
if (state->mode == 1) {
_button_beep();
_editor_inc_digit(state);
_redraw_editor(state, 0);
} else {
_button_beep();
if (state->running) {
state->paused_counter = now - state->start_counter;
state->running = false;
movement_cancel_background_task();
movement_request_tick_frequency(1);
} else {
state->start_counter = now - state->paused_counter;
state->running = true;
movement_request_tick_frequency(32);
movement_schedule_background_task(distant_future);
}
_redraw(state, now);
}
break;
case EVENT_ALARM_LONG_PRESS:
if (state->mode == 1) {
state->editor_quick = true;
movement_request_tick_frequency(8);
}
break;
case EVENT_ALARM_LONG_UP:
if (state->mode == 1) {
state->editor_quick = false;
movement_request_tick_frequency(4);
}
break;
case EVENT_LIGHT_BUTTON_DOWN:
if (state->mode == 1) {
state->cursor = (uint8_t)((state->cursor + 1) % 6);
_redraw_editor(state, 0);
} else if (!state->running) {
// reset the timer while stopped (matches the stopwatch face)
state->start_counter = 0;
state->paused_counter = 0;
_redraw(state, now);
}
break;
case EVENT_LIGHT_LONG_PRESS:
if (state->mode == 1) {
_exit_editor(state, now);
} else {
// enter the rate editor
state->mode = 1;
state->cursor = 0;
state->saved_rate = state->rate_money_per_hour;
state->editor_quick = false;
movement_request_tick_frequency(4);
_redraw_editor(state, 0);
}
break;
case EVENT_MODE_BUTTON_UP:
if (state->mode == 1) {
// Mode confirms and exits the editor, staying on this face.
_exit_editor(state, now);
return true;
}
return movement_default_loop_handler(event);
case EVENT_TIMEOUT:
if (state->mode == 1) {
// walked away mid-edit: discard the edit and leave the editor,
// so we don't idle at 4 Hz forever with a half-entered rate
state->rate_money_per_hour = state->saved_rate;
_exit_editor(state, now);
}
// otherwise stay on screen, just like the stopwatch face
break;
case EVENT_LOW_ENERGY_UPDATE:
if (state->mode == 0) {
if (!state->running) {
// show a blank display so it's clear we're in sleep mode
watch_display_text(WATCH_POSITION_BOTTOM, "------");
} else {
_redraw(state, now);
}
}
break;
default:
return movement_default_loop_handler(event);
}
return true;
}
void billing_face_resign(void *context) {
(void) context;
movement_cancel_background_task();
movement_request_tick_frequency(1);
}