battery_info.c 5.0 KB

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  1. #include "battery_info.h"
  2. #include <furi.h>
  3. #include <gui/elements.h>
  4. #include <assets_icons.h>
  5. #define LOW_CHARGE_THRESHOLD 10
  6. #define HIGH_DRAIN_CURRENT_THRESHOLD 100
  7. struct BatteryInfo {
  8. View* view;
  9. };
  10. static void draw_stat(Canvas* canvas, int x, int y, const Icon* icon, char* val) {
  11. canvas_draw_frame(canvas, x - 7, y + 7, 30, 13);
  12. canvas_draw_icon(canvas, x, y, icon);
  13. canvas_set_color(canvas, ColorWhite);
  14. canvas_draw_box(canvas, x - 4, y + 16, 24, 6);
  15. canvas_set_color(canvas, ColorBlack);
  16. canvas_draw_str_aligned(canvas, x + 8, y + 22, AlignCenter, AlignBottom, val);
  17. };
  18. static void draw_battery(Canvas* canvas, BatteryInfoModel* data, int x, int y) {
  19. char emote[20] = {};
  20. char header[20] = {};
  21. char value[20] = {};
  22. int32_t drain_current = data->gauge_current * (-1000);
  23. uint32_t charge_current = data->gauge_current * 1000;
  24. // Draw battery
  25. canvas_draw_icon(canvas, x, y, &I_BatteryBody_52x28);
  26. if(charge_current > 0) {
  27. canvas_draw_icon(canvas, x + 16, y + 7, &I_FaceCharging_29x14);
  28. } else if(drain_current > HIGH_DRAIN_CURRENT_THRESHOLD) {
  29. canvas_draw_icon(canvas, x + 16, y + 7, &I_FaceConfused_29x14);
  30. } else if(data->charge < LOW_CHARGE_THRESHOLD) {
  31. canvas_draw_icon(canvas, x + 16, y + 7, &I_FaceNopower_29x14);
  32. } else {
  33. canvas_draw_icon(canvas, x + 16, y + 7, &I_FaceNormal_29x14);
  34. }
  35. // Draw bubble
  36. elements_bubble(canvas, 53, 0, 71, 39);
  37. // Set text
  38. if(charge_current > 0) {
  39. snprintf(emote, sizeof(emote), "%s", "Yummy!");
  40. snprintf(header, sizeof(header), "%s", "Charging at");
  41. snprintf(
  42. value,
  43. sizeof(value),
  44. "%lu.%luV %lumA",
  45. (uint32_t)(data->vbus_voltage),
  46. (uint32_t)(data->vbus_voltage * 10) % 10,
  47. charge_current);
  48. } else if(drain_current > 0) {
  49. snprintf(
  50. emote,
  51. sizeof(emote),
  52. "%s",
  53. drain_current > HIGH_DRAIN_CURRENT_THRESHOLD ? "Oh no!" : "Om-nom-nom!");
  54. snprintf(header, sizeof(header), "%s", "Consumption is");
  55. snprintf(
  56. value,
  57. sizeof(value),
  58. "%ld %s",
  59. drain_current,
  60. drain_current > HIGH_DRAIN_CURRENT_THRESHOLD ? "mA!" : "mA");
  61. } else if(drain_current != 0) {
  62. snprintf(header, 20, "...");
  63. } else if(data->charging_voltage < 4.2) {
  64. // Non-default battery charging limit, mention it
  65. snprintf(emote, sizeof(emote), "Charged!");
  66. snprintf(header, sizeof(header), "Limited to");
  67. snprintf(
  68. value,
  69. sizeof(value),
  70. "%lu.%luV",
  71. (uint32_t)(data->charging_voltage),
  72. (uint32_t)(data->charging_voltage * 10) % 10);
  73. } else {
  74. snprintf(header, sizeof(header), "Charged!");
  75. }
  76. canvas_draw_str_aligned(canvas, 92, y + 3, AlignCenter, AlignCenter, emote);
  77. canvas_draw_str_aligned(canvas, 92, y + 15, AlignCenter, AlignCenter, header);
  78. canvas_draw_str_aligned(canvas, 92, y + 27, AlignCenter, AlignCenter, value);
  79. };
  80. static void battery_info_draw_callback(Canvas* canvas, void* context) {
  81. furi_assert(context);
  82. BatteryInfoModel* model = context;
  83. canvas_clear(canvas);
  84. canvas_set_color(canvas, ColorBlack);
  85. draw_battery(canvas, model, 0, 5);
  86. char batt_level[10];
  87. char temperature[10];
  88. char voltage[10];
  89. char health[10];
  90. snprintf(batt_level, sizeof(batt_level), "%lu%%", (uint32_t)model->charge);
  91. snprintf(temperature, sizeof(temperature), "%lu C", (uint32_t)model->gauge_temperature);
  92. snprintf(
  93. voltage,
  94. sizeof(voltage),
  95. "%lu.%01lu V",
  96. (uint32_t)model->gauge_voltage,
  97. (uint32_t)(model->gauge_voltage * 10) % 10UL);
  98. snprintf(health, sizeof(health), "%d%%", model->health);
  99. draw_stat(canvas, 8, 42, &I_Battery_16x16, batt_level);
  100. draw_stat(canvas, 40, 42, &I_Temperature_16x16, temperature);
  101. draw_stat(canvas, 72, 42, &I_Voltage_16x16, voltage);
  102. draw_stat(canvas, 104, 42, &I_Health_16x16, health);
  103. }
  104. BatteryInfo* battery_info_alloc() {
  105. BatteryInfo* battery_info = malloc(sizeof(BatteryInfo));
  106. battery_info->view = view_alloc();
  107. view_set_context(battery_info->view, battery_info);
  108. view_allocate_model(battery_info->view, ViewModelTypeLocking, sizeof(BatteryInfoModel));
  109. view_set_draw_callback(battery_info->view, battery_info_draw_callback);
  110. return battery_info;
  111. }
  112. void battery_info_free(BatteryInfo* battery_info) {
  113. furi_assert(battery_info);
  114. view_free(battery_info->view);
  115. free(battery_info);
  116. }
  117. View* battery_info_get_view(BatteryInfo* battery_info) {
  118. furi_assert(battery_info);
  119. return battery_info->view;
  120. }
  121. void battery_info_set_data(BatteryInfo* battery_info, BatteryInfoModel* data) {
  122. furi_assert(battery_info);
  123. furi_assert(data);
  124. with_view_model(
  125. battery_info->view,
  126. BatteryInfoModel * model,
  127. { memcpy(model, data, sizeof(BatteryInfoModel)); },
  128. true);
  129. }