flipperzero-firmware/applications/power/power_views.c

105 lines
3.9 KiB
C
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#include "power_views.h"
static void draw_stat(Canvas* canvas, int x, int y, IconName icon, char* val) {
canvas_draw_frame(canvas, x - 7, y + 7, 30, 13);
canvas_draw_icon_name(canvas, x, y, icon);
canvas_set_color(canvas, ColorWhite);
canvas_draw_box(canvas, x - 4, y + 16, 24, 6);
canvas_set_color(canvas, ColorBlack);
canvas_draw_str_aligned(canvas, x + 8, y + 22, AlignCenter, AlignBottom, val);
};
static void draw_battery(Canvas* canvas, PowerInfoModel* data, int x, int y) {
char emote[20];
char header[20];
char value[20];
int32_t drain_current = -data->current_gauge * 1000;
uint32_t charge_current = data->current_gauge * 1000;
// battery
canvas_draw_icon_name(canvas, x, y, I_BatteryBody_52x28);
if(charge_current > 0) {
canvas_draw_icon_name(canvas, x + 16, y + 7, I_FaceCharging_29x14);
} else if(drain_current > 100) {
canvas_draw_icon_name(canvas, x + 16, y + 7, I_FaceConfused_29x14);
} else if(data->charge < 10) {
canvas_draw_icon_name(canvas, x + 16, y + 7, I_FaceNopower_29x14);
} else {
canvas_draw_icon_name(canvas, x + 16, y + 7, I_FaceNormal_29x14);
}
//bubble
canvas_draw_frame(canvas, 57, 0, 71, 39);
canvas_draw_line(canvas, 53, 23, 57, 19);
canvas_draw_line(canvas, 53, 23, 57, 27);
canvas_set_color(canvas, ColorWhite);
canvas_draw_box(canvas, 57, 0, 2, 2);
canvas_draw_box(canvas, 57, 37, 2, 2);
canvas_draw_box(canvas, 126, 0, 2, 2);
canvas_draw_box(canvas, 126, 37, 2, 2);
canvas_draw_line(canvas, 57, 20, 57, 26);
canvas_set_color(canvas, ColorBlack);
canvas_draw_dot(canvas, 58, 1);
canvas_draw_dot(canvas, 58, 37);
canvas_draw_dot(canvas, 126, 1);
canvas_draw_dot(canvas, 126, 37);
// text
if(charge_current > 0) {
snprintf(emote, sizeof(emote), "%s", "Yummy!");
snprintf(header, sizeof(header), "%s", "Charging at");
snprintf(
value,
sizeof(value),
"%ld.%ldV %ldmA",
(uint32_t)(data->voltage_vbus),
(uint32_t)(data->voltage_vbus * 10) % 10,
charge_current);
} else if(drain_current > 0) {
snprintf(emote, sizeof(emote), "%s", drain_current > 100 ? "Oh no!" : "Om-nom-nom!");
snprintf(header, sizeof(header), "%s", "Consumption is");
snprintf(
value, sizeof(value), "%ld %s", drain_current, drain_current > 100 ? "mA!" : "mA");
} else if(charge_current != 0 || drain_current != 0) {
snprintf(header, 20, "%s", "...");
memset(value, 0, sizeof(value));
memset(emote, 0, sizeof(emote));
} else {
snprintf(header, sizeof(header), "%s", "Charged!");
memset(value, 0, sizeof(value));
memset(emote, 0, sizeof(emote));
}
canvas_draw_str_aligned(canvas, 92, y + 3, AlignCenter, AlignCenter, emote);
canvas_draw_str_aligned(canvas, 92, y + 15, AlignCenter, AlignCenter, header);
canvas_draw_str_aligned(canvas, 92, y + 27, AlignCenter, AlignCenter, value);
};
void power_info_draw_callback(Canvas* canvas, void* context) {
PowerInfoModel* data = context;
canvas_clear(canvas);
canvas_set_color(canvas, ColorBlack);
draw_battery(canvas, data, 0, 5);
char batt_level[10];
char temperature[10];
char voltage[10];
char health[10];
snprintf(batt_level, sizeof(batt_level), "%ld%s", (uint32_t)data->charge, "%");
snprintf(temperature, sizeof(temperature), "%ld %s", (uint32_t)data->temperature_gauge, "C");
snprintf(
voltage,
sizeof(voltage),
"%ld.%01ld V",
(uint32_t)data->voltage_gauge,
(uint32_t)(data->voltage_gauge * 10) % 10);
snprintf(health, sizeof(health), "%d%s", data->health, "%");
draw_stat(canvas, 8, 42, I_Battery_16x16, batt_level);
draw_stat(canvas, 40, 42, I_Temperature_16x16, temperature);
draw_stat(canvas, 72, 42, I_Voltage_16x16, voltage);
draw_stat(canvas, 104, 42, I_Health_16x16, health);
}