1 /**
2  * @file lv_arc.c
3  *
4  */
5 
6 /*********************
7  *      INCLUDES
8  *********************/
9 #include "lv_arc.h"
10 #if LV_USE_ARC != 0
11 
12 #include "../core/lv_group.h"
13 #include "../core/lv_indev.h"
14 #include "../misc/lv_assert.h"
15 #include "../misc/lv_math.h"
16 #include "../draw/lv_draw_arc.h"
17 
18 /*********************
19  *      DEFINES
20  *********************/
21 #define MY_CLASS &lv_arc_class
22 
23 #define VALUE_UNSET INT16_MIN
24 
25 /**********************
26  *      TYPEDEFS
27  **********************/
28 
29 /**********************
30  *  STATIC PROTOTYPES
31  **********************/
32 
33 static void lv_arc_constructor(const lv_obj_class_t * class_p, lv_obj_t * obj);
34 static void lv_arc_draw(lv_event_t * e);
35 static void lv_arc_event(const lv_obj_class_t * class_p, lv_event_t * e);
36 static void inv_arc_area(lv_obj_t * arc, uint16_t start_angle, uint16_t end_angle, lv_part_t part);
37 static void inv_knob_area(lv_obj_t * obj);
38 static void get_center(const lv_obj_t * obj, lv_point_t * center, lv_coord_t * arc_r);
39 static lv_coord_t get_angle(const lv_obj_t * obj);
40 static void get_knob_area(lv_obj_t * arc, const lv_point_t * center, lv_coord_t r, lv_area_t * knob_area);
41 static void value_update(lv_obj_t * arc);
42 static lv_coord_t knob_get_extra_size(lv_obj_t * obj);
43 
44 /**********************
45  *  STATIC VARIABLES
46  **********************/
47 const lv_obj_class_t lv_arc_class  = {
48     .constructor_cb = lv_arc_constructor,
49     .event_cb = lv_arc_event,
50     .instance_size = sizeof(lv_arc_t),
51     .editable = LV_OBJ_CLASS_EDITABLE_TRUE,
52     .base_class = &lv_obj_class
53 };
54 
55 /**********************
56  *      MACROS
57  **********************/
58 
59 /**********************
60  *   GLOBAL FUNCTIONS
61  **********************/
62 
lv_arc_create(lv_obj_t * parent)63 lv_obj_t * lv_arc_create(lv_obj_t * parent)
64 {
65     LV_LOG_INFO("begin");
66     lv_obj_t * obj = lv_obj_class_create_obj(MY_CLASS, parent);
67     lv_obj_class_init_obj(obj);
68     return obj;
69 }
70 
71 /*======================
72  * Add/remove functions
73  *=====================*/
74 
75 /*
76  * New object specific "add" or "remove" functions come here
77  */
78 
79 /*=====================
80  * Setter functions
81  *====================*/
82 
lv_arc_set_start_angle(lv_obj_t * obj,uint16_t start)83 void lv_arc_set_start_angle(lv_obj_t * obj, uint16_t start)
84 {
85     LV_ASSERT_OBJ(obj, MY_CLASS);
86     lv_arc_t * arc = (lv_arc_t *)obj;
87 
88     if(start > 360) start -= 360;
89 
90     int16_t old_delta = arc->indic_angle_end - arc->indic_angle_start;
91     int16_t new_delta = arc->indic_angle_end - start;
92 
93     if(old_delta < 0) old_delta = 360 + old_delta;
94     if(new_delta < 0) new_delta = 360 + new_delta;
95 
96     if(LV_ABS(new_delta - old_delta) > 180)  lv_obj_invalidate(obj);
97     else if(new_delta < old_delta) inv_arc_area(obj, arc->indic_angle_start, start, LV_PART_INDICATOR);
98     else if(old_delta < new_delta) inv_arc_area(obj, start, arc->indic_angle_start, LV_PART_INDICATOR);
99 
100     inv_knob_area(obj);
101 
102     arc->indic_angle_start = start;
103 
104     inv_knob_area(obj);
105 }
106 
lv_arc_set_end_angle(lv_obj_t * obj,uint16_t end)107 void lv_arc_set_end_angle(lv_obj_t * obj, uint16_t end)
108 {
109     LV_ASSERT_OBJ(obj, MY_CLASS);
110     lv_arc_t * arc = (lv_arc_t *)obj;
111     if(end > 360) end -= 360;
112 
113     int16_t old_delta = arc->indic_angle_end - arc->indic_angle_start;
114     int16_t new_delta = end - arc->indic_angle_start;
115 
116     if(old_delta < 0) old_delta = 360 + old_delta;
117     if(new_delta < 0) new_delta = 360 + new_delta;
118 
119     if(LV_ABS(new_delta - old_delta) > 180)  lv_obj_invalidate(obj);
120     else if(new_delta < old_delta) inv_arc_area(obj, end, arc->indic_angle_end, LV_PART_INDICATOR);
121     else if(old_delta < new_delta) inv_arc_area(obj, arc->indic_angle_end, end, LV_PART_INDICATOR);
122 
123     inv_knob_area(obj);
124 
125     arc->indic_angle_end = end;
126 
127     inv_knob_area(obj);
128 }
129 
lv_arc_set_angles(lv_obj_t * obj,uint16_t start,uint16_t end)130 void lv_arc_set_angles(lv_obj_t * obj, uint16_t start, uint16_t end)
131 {
132     lv_arc_set_end_angle(obj, end);
133     lv_arc_set_start_angle(obj, start);
134 }
135 
lv_arc_set_bg_start_angle(lv_obj_t * obj,uint16_t start)136 void lv_arc_set_bg_start_angle(lv_obj_t * obj, uint16_t start)
137 {
138     LV_ASSERT_OBJ(obj, MY_CLASS);
139     lv_arc_t * arc = (lv_arc_t *)obj;
140 
141     if(start > 360) start -= 360;
142 
143     int16_t old_delta = arc->bg_angle_end - arc->bg_angle_start;
144     int16_t new_delta = arc->bg_angle_end - start;
145 
146     if(old_delta < 0) old_delta = 360 + old_delta;
147     if(new_delta < 0) new_delta = 360 + new_delta;
148 
149     if(LV_ABS(new_delta - old_delta) > 180)  lv_obj_invalidate(obj);
150     else if(new_delta < old_delta) inv_arc_area(obj, arc->bg_angle_start, start, LV_PART_MAIN);
151     else if(old_delta < new_delta) inv_arc_area(obj, start, arc->bg_angle_start, LV_PART_MAIN);
152 
153     arc->bg_angle_start = start;
154 
155     value_update(obj);
156 }
157 
lv_arc_set_bg_end_angle(lv_obj_t * obj,uint16_t end)158 void lv_arc_set_bg_end_angle(lv_obj_t * obj, uint16_t end)
159 {
160     LV_ASSERT_OBJ(obj, MY_CLASS);
161     lv_arc_t * arc = (lv_arc_t *)obj;
162 
163     if(end > 360) end -= 360;
164 
165     int16_t old_delta = arc->bg_angle_end - arc->bg_angle_start;
166     int16_t new_delta = end - arc->bg_angle_start;
167 
168     if(old_delta < 0) old_delta = 360 + old_delta;
169     if(new_delta < 0) new_delta = 360 + new_delta;
170 
171     if(LV_ABS(new_delta - old_delta) > 180)  lv_obj_invalidate(obj);
172     else if(new_delta < old_delta) inv_arc_area(obj, end, arc->bg_angle_end, LV_PART_MAIN);
173     else if(old_delta < new_delta) inv_arc_area(obj, arc->bg_angle_end, end, LV_PART_MAIN);
174 
175     arc->bg_angle_end = end;
176 
177     value_update(obj);
178 }
179 
lv_arc_set_bg_angles(lv_obj_t * obj,uint16_t start,uint16_t end)180 void lv_arc_set_bg_angles(lv_obj_t * obj, uint16_t start, uint16_t end)
181 {
182     lv_arc_set_bg_end_angle(obj, end);
183     lv_arc_set_bg_start_angle(obj, start);
184 }
185 
lv_arc_set_rotation(lv_obj_t * obj,uint16_t rotation)186 void lv_arc_set_rotation(lv_obj_t * obj, uint16_t rotation)
187 {
188     LV_ASSERT_OBJ(obj, MY_CLASS);
189     lv_arc_t * arc = (lv_arc_t *)obj;
190 
191     arc->rotation = rotation;
192 
193     lv_obj_invalidate(obj);
194 }
195 
lv_arc_set_mode(lv_obj_t * obj,lv_arc_mode_t type)196 void lv_arc_set_mode(lv_obj_t * obj, lv_arc_mode_t type)
197 {
198     LV_ASSERT_OBJ(obj, MY_CLASS);
199     lv_arc_t * arc = (lv_arc_t *)obj;
200 
201     int16_t val = arc->value;
202 
203     arc->type = type;
204     arc->value = -1; /** Force set_value handling*/
205 
206     int16_t bg_midpoint, bg_end = arc->bg_angle_end;
207     if(arc->bg_angle_end < arc->bg_angle_start) bg_end = arc->bg_angle_end + 360;
208 
209     switch(arc->type) {
210         case LV_ARC_MODE_SYMMETRICAL:
211             bg_midpoint = (arc->bg_angle_start + bg_end) / 2;
212             lv_arc_set_start_angle(obj, bg_midpoint);
213             lv_arc_set_end_angle(obj, bg_midpoint);
214             break;
215         case LV_ARC_MODE_REVERSE:
216             lv_arc_set_end_angle(obj, arc->bg_angle_end);
217             break;
218         default: /** LV_ARC_TYPE_NORMAL*/
219             lv_arc_set_start_angle(obj, arc->bg_angle_start);
220     }
221 
222     lv_arc_set_value(obj, val);
223 }
224 
lv_arc_set_value(lv_obj_t * obj,int16_t value)225 void lv_arc_set_value(lv_obj_t * obj, int16_t value)
226 {
227     LV_ASSERT_OBJ(obj, MY_CLASS);
228     lv_arc_t * arc = (lv_arc_t *)obj;
229 
230     if(arc->value == value) return;
231 
232     int16_t new_value;
233     new_value = value > arc->max_value ? arc->max_value : value;
234     new_value = new_value < arc->min_value ? arc->min_value : new_value;
235 
236     if(arc->value == new_value) return;
237     arc->value = new_value;
238 
239     value_update(obj);
240 }
241 
lv_arc_set_range(lv_obj_t * obj,int16_t min,int16_t max)242 void lv_arc_set_range(lv_obj_t * obj, int16_t min, int16_t max)
243 {
244     LV_ASSERT_OBJ(obj, MY_CLASS);
245     lv_arc_t * arc = (lv_arc_t *)obj;
246 
247     if(arc->min_value == min && arc->max_value == max) return;
248 
249     arc->min_value = min;
250     arc->max_value = max;
251 
252     if(arc->value < min) {
253         arc->value = min;
254     }
255     if(arc->value > max) {
256         arc->value = max;
257     }
258 
259     value_update(obj); /*value has changed relative to the new range*/
260 }
261 
lv_arc_set_change_rate(lv_obj_t * obj,uint16_t rate)262 void lv_arc_set_change_rate(lv_obj_t * obj, uint16_t rate)
263 {
264     LV_ASSERT_OBJ(obj, MY_CLASS);
265     lv_arc_t * arc = (lv_arc_t *)obj;
266 
267     arc->chg_rate = rate;
268 }
269 
270 /*=====================
271  * Getter functions
272  *====================*/
273 
lv_arc_get_angle_start(lv_obj_t * obj)274 uint16_t lv_arc_get_angle_start(lv_obj_t * obj)
275 {
276     LV_ASSERT_OBJ(obj, MY_CLASS);
277     return ((lv_arc_t *) obj)->indic_angle_start;
278 }
279 
lv_arc_get_angle_end(lv_obj_t * obj)280 uint16_t lv_arc_get_angle_end(lv_obj_t * obj)
281 {
282     LV_ASSERT_OBJ(obj, MY_CLASS);
283     return ((lv_arc_t *) obj)->indic_angle_end;
284 }
285 
lv_arc_get_bg_angle_start(lv_obj_t * obj)286 uint16_t lv_arc_get_bg_angle_start(lv_obj_t * obj)
287 {
288     LV_ASSERT_OBJ(obj, MY_CLASS);
289     return ((lv_arc_t *) obj)->bg_angle_start;
290 }
291 
lv_arc_get_bg_angle_end(lv_obj_t * obj)292 uint16_t lv_arc_get_bg_angle_end(lv_obj_t * obj)
293 {
294     LV_ASSERT_OBJ(obj, MY_CLASS);
295     return ((lv_arc_t *) obj)->bg_angle_end;
296 }
297 
lv_arc_get_value(const lv_obj_t * obj)298 int16_t lv_arc_get_value(const lv_obj_t * obj)
299 {
300     LV_ASSERT_OBJ(obj, MY_CLASS);
301     return ((lv_arc_t *) obj)->value;
302 }
303 
lv_arc_get_min_value(const lv_obj_t * obj)304 int16_t lv_arc_get_min_value(const lv_obj_t * obj)
305 {
306     LV_ASSERT_OBJ(obj, MY_CLASS);
307     return ((lv_arc_t *) obj)->min_value;
308 }
309 
lv_arc_get_max_value(const lv_obj_t * obj)310 int16_t lv_arc_get_max_value(const lv_obj_t * obj)
311 {
312     LV_ASSERT_OBJ(obj, MY_CLASS);
313     return ((lv_arc_t *) obj)->max_value;
314 }
315 
lv_arc_get_mode(const lv_obj_t * obj)316 lv_arc_mode_t lv_arc_get_mode(const lv_obj_t * obj)
317 {
318     LV_ASSERT_OBJ(obj, MY_CLASS);
319     return ((lv_arc_t *) obj)->type;
320 }
321 
322 /*=====================
323  * Other functions
324  *====================*/
325 
326 
lv_arc_align_obj_to_angle(const lv_obj_t * obj,lv_obj_t * obj_to_align,lv_coord_t r_offset)327 void lv_arc_align_obj_to_angle(const lv_obj_t * obj, lv_obj_t * obj_to_align, lv_coord_t r_offset)
328 {
329     LV_ASSERT_OBJ(obj, MY_CLASS);
330     LV_ASSERT_NULL(obj_to_align);
331 
332     lv_obj_update_layout(obj);
333 
334     lv_point_t center;
335     lv_coord_t arc_r;
336     get_center(obj, &center, &arc_r);
337     lv_coord_t indic_width = lv_obj_get_style_arc_width(obj, LV_PART_INDICATOR);
338     lv_coord_t indic_width_half = indic_width / 2;
339     arc_r -= indic_width_half;
340     arc_r += r_offset;
341 
342     uint16_t angle = get_angle(obj);
343     lv_coord_t knob_x = (arc_r * lv_trigo_sin(angle + 90)) >> LV_TRIGO_SHIFT;
344     lv_coord_t knob_y = (arc_r * lv_trigo_sin(angle)) >> LV_TRIGO_SHIFT;
345     lv_obj_align_to(obj_to_align, obj, LV_ALIGN_CENTER, knob_x, knob_y);
346 }
347 
lv_arc_rotate_obj_to_angle(const lv_obj_t * obj,lv_obj_t * obj_to_rotate,lv_coord_t r_offset)348 void lv_arc_rotate_obj_to_angle(const lv_obj_t * obj, lv_obj_t * obj_to_rotate, lv_coord_t r_offset)
349 {
350     LV_ASSERT_OBJ(obj, MY_CLASS);
351     LV_ASSERT_NULL(obj_to_rotate);
352 
353     lv_obj_update_layout(obj);
354 
355     lv_point_t center;
356     lv_coord_t arc_r;
357     get_center(obj, &center, &arc_r);
358     lv_coord_t indic_width = lv_obj_get_style_arc_width(obj, LV_PART_INDICATOR);
359     lv_coord_t indic_width_half = indic_width / 2;
360     arc_r -= indic_width_half;
361 
362     arc_r += r_offset;
363     lv_obj_align_to(obj_to_rotate, obj, LV_ALIGN_CENTER, 0, -arc_r);
364 
365     lv_obj_update_layout(obj);
366 
367     uint16_t angle = get_angle(obj);
368     lv_coord_t pivot_x = obj_to_rotate->coords.x1 - center.x;
369     lv_coord_t pivot_y = obj_to_rotate->coords.y1 - center.y;
370     lv_obj_set_style_transform_pivot_x(obj_to_rotate, -pivot_x, 0);
371     lv_obj_set_style_transform_pivot_y(obj_to_rotate, -pivot_y, 0);
372     lv_obj_set_style_transform_angle(obj_to_rotate, angle * 10 + 900, 0);
373 }
374 
375 
376 /**********************
377  *   STATIC FUNCTIONS
378  **********************/
379 
lv_arc_constructor(const lv_obj_class_t * class_p,lv_obj_t * obj)380 static void lv_arc_constructor(const lv_obj_class_t * class_p, lv_obj_t * obj)
381 {
382     LV_UNUSED(class_p);
383     LV_TRACE_OBJ_CREATE("begin");
384 
385     lv_arc_t * arc = (lv_arc_t *)obj;
386 
387     /*Initialize the allocated 'ext'*/
388     arc->rotation = 0;
389     arc->bg_angle_start = 135;
390     arc->bg_angle_end   = 45;
391     arc->indic_angle_start = 135;
392     arc->indic_angle_end   = 270;
393     arc->type = LV_ARC_MODE_NORMAL;
394     arc->value = VALUE_UNSET;
395     arc->min_close = 1;
396     arc->min_value = 0;
397     arc->max_value = 100;
398     arc->dragging = false;
399     arc->chg_rate = 720;
400     arc->last_tick = lv_tick_get();
401     arc->last_angle = arc->indic_angle_end;
402 
403     lv_obj_add_flag(obj, LV_OBJ_FLAG_CLICKABLE);
404     lv_obj_clear_flag(obj, LV_OBJ_FLAG_SCROLL_CHAIN | LV_OBJ_FLAG_SCROLLABLE);
405     lv_obj_set_ext_click_area(obj, LV_DPI_DEF / 10);
406 
407 
408     LV_TRACE_OBJ_CREATE("finished");
409 }
410 
lv_arc_event(const lv_obj_class_t * class_p,lv_event_t * e)411 static void lv_arc_event(const lv_obj_class_t * class_p, lv_event_t * e)
412 {
413     LV_UNUSED(class_p);
414 
415     lv_res_t res;
416 
417     /*Call the ancestor's event handler*/
418     res = lv_obj_event_base(MY_CLASS, e);
419     if(res != LV_RES_OK) return;
420 
421     lv_event_code_t code = lv_event_get_code(e);
422     lv_obj_t * obj = lv_event_get_target(e);
423     lv_arc_t * arc = (lv_arc_t *)lv_event_get_target(e);
424     if(code == LV_EVENT_PRESSING) {
425         lv_indev_t * indev = lv_indev_get_act();
426         if(indev == NULL) return;
427 
428         /*Handle only pointers here*/
429         lv_indev_type_t indev_type = lv_indev_get_type(indev);
430         if(indev_type != LV_INDEV_TYPE_POINTER) return;
431 
432         lv_point_t p;
433         lv_indev_get_point(indev, &p);
434 
435         /*Make point relative to the arc's center*/
436         lv_point_t center;
437         lv_coord_t r;
438         get_center(obj, &center, &r);
439 
440         p.x -= center.x;
441         p.y -= center.y;
442 
443         /*Enter dragging mode if pressed out of the knob*/
444         if(arc->dragging == false) {
445             lv_coord_t indic_width = lv_obj_get_style_arc_width(obj, LV_PART_INDICATOR);
446             r -= indic_width;
447             /*Add some more sensitive area if there is no advanced git testing.
448              * (Advanced hit testing is more precise)*/
449             if(lv_obj_has_flag(obj, LV_OBJ_FLAG_ADV_HITTEST)) {
450                 r -= indic_width;
451 
452             }
453             else {
454                 r -= LV_MAX(r / 4, indic_width);
455             }
456             if(r < 1) r = 1;
457 
458             if(p.x * p.x + p.y * p.y > r * r) {
459                 arc->dragging = true;
460                 arc->last_tick = lv_tick_get(); /*Capture timestamp at dragging start*/
461             }
462         }
463 
464         /*It must be in "dragging" mode to turn the arc*/
465         if(arc->dragging == false) return;
466 
467         /*No angle can be determined if exactly the middle of the arc is being pressed*/
468         if(p.x == 0 && p.y == 0) return;
469 
470         /*Calculate the angle of the pressed point*/
471         int16_t angle;
472         int16_t bg_end = arc->bg_angle_end;
473         if(arc->bg_angle_end < arc->bg_angle_start) {
474             bg_end = arc->bg_angle_end + 360;
475         }
476 
477         angle = lv_atan2(p.y, p.x);
478         angle -= arc->rotation;
479         angle -= arc->bg_angle_start;  /*Make the angle relative to the start angle*/
480 
481         if(angle < 0) angle += 360;
482 
483         int16_t deg_range = bg_end - arc->bg_angle_start;
484 
485         int16_t last_angle_rel = arc->last_angle - arc->bg_angle_start;
486         int16_t delta_angle = angle - last_angle_rel;
487 
488         /*Do not allow big jumps.
489          *It's mainly to avoid jumping to the opposite end if the "dead" range between min. and max. is crossed.
490          *Check which end was closer on the last valid press (arc->min_close) and prefer that end*/
491         if(LV_ABS(delta_angle) > 280) {
492             if(arc->min_close) angle = 0;
493             else angle = deg_range;
494         }
495         else {
496             if(angle < deg_range / 2)arc->min_close = 1;
497             else arc->min_close = 0;
498         }
499 
500         /*Calculate the slew rate limited angle based on change rate (degrees/sec)*/
501         delta_angle = angle - last_angle_rel;
502         uint32_t delta_tick = lv_tick_elaps(arc->last_tick);
503         int16_t delta_angle_max = (arc->chg_rate * delta_tick) / 1000;
504 
505         if(delta_angle > delta_angle_max) {
506             delta_angle = delta_angle_max;
507         }
508         else if(delta_angle < -delta_angle_max) {
509             delta_angle = -delta_angle_max;
510         }
511 
512         angle = last_angle_rel + delta_angle; /*Apply the limited angle change*/
513 
514         /*Rounding for symmetry*/
515         int32_t round = ((bg_end - arc->bg_angle_start) * 8) / (arc->max_value - arc->min_value);
516         round = (round + 4) >> 4;
517         angle += round;
518 
519         angle += arc->bg_angle_start;  /*Make the angle absolute again*/
520 
521         /*Set the new value*/
522         int16_t old_value = arc->value;
523         int16_t new_value = lv_map(angle, arc->bg_angle_start, bg_end, arc->min_value, arc->max_value);
524         if(new_value != lv_arc_get_value(obj)) {
525             arc->last_tick = lv_tick_get(); /*Cache timestamp for the next iteration*/
526             lv_arc_set_value(obj, new_value); /*set_value caches the last_angle for the next iteration*/
527             if(new_value != old_value) {
528                 res = lv_event_send(obj, LV_EVENT_VALUE_CHANGED, NULL);
529                 if(res != LV_RES_OK) return;
530             }
531         }
532 
533         /*Don't let the elapsed time become too big while sitting on an end point*/
534         if(new_value == arc->min_value || new_value == arc->max_value) {
535             arc->last_tick = lv_tick_get(); /*Cache timestamp for the next iteration*/
536         }
537     }
538     else if(code == LV_EVENT_RELEASED || code == LV_EVENT_PRESS_LOST) {
539         arc->dragging = false;
540 
541         /*Leave edit mode if released. (No need to wait for LONG_PRESS)*/
542         lv_group_t * g             = lv_obj_get_group(obj);
543         bool editing               = lv_group_get_editing(g);
544         lv_indev_type_t indev_type = lv_indev_get_type(lv_indev_get_act());
545         if(indev_type == LV_INDEV_TYPE_ENCODER) {
546             if(editing) lv_group_set_editing(g, false);
547         }
548 
549     }
550     else if(code == LV_EVENT_KEY) {
551         char c = *((char *)lv_event_get_param(e));
552 
553         int16_t old_value = arc->value;
554         if(c == LV_KEY_RIGHT || c == LV_KEY_UP) {
555             lv_arc_set_value(obj, lv_arc_get_value(obj) + 1);
556         }
557         else if(c == LV_KEY_LEFT || c == LV_KEY_DOWN) {
558             lv_arc_set_value(obj, lv_arc_get_value(obj) - 1);
559         }
560 
561         if(old_value != arc->value) {
562             res = lv_event_send(obj, LV_EVENT_VALUE_CHANGED, NULL);
563             if(res != LV_RES_OK) return;
564         }
565     }
566     else if(code == LV_EVENT_HIT_TEST) {
567         lv_hit_test_info_t * info = lv_event_get_param(e);;
568 
569         lv_point_t p;
570         lv_coord_t r;
571         get_center(obj, &p, &r);
572 
573         lv_coord_t ext_click_area = 0;
574         if(obj->spec_attr) ext_click_area = obj->spec_attr->ext_click_pad;
575 
576         lv_coord_t w = lv_obj_get_style_arc_width(obj, LV_PART_MAIN);
577         r -= w + ext_click_area;
578 
579         lv_area_t a;
580         /*Invalid if clicked inside*/
581         lv_area_set(&a, p.x - r, p.y - r, p.x + r, p.y + r);
582         if(_lv_area_is_point_on(&a, info->point, LV_RADIUS_CIRCLE)) {
583             info->res = false;
584             return;
585         }
586 
587         /*Valid if no clicked outside*/
588         lv_area_increase(&a, w + ext_click_area * 2, w + ext_click_area * 2);
589         info->res = _lv_area_is_point_on(&a, info->point, LV_RADIUS_CIRCLE);
590     }
591     else if(code == LV_EVENT_REFR_EXT_DRAW_SIZE) {
592         lv_coord_t bg_left = lv_obj_get_style_pad_left(obj, LV_PART_MAIN);
593         lv_coord_t bg_right = lv_obj_get_style_pad_right(obj, LV_PART_MAIN);
594         lv_coord_t bg_top = lv_obj_get_style_pad_top(obj, LV_PART_MAIN);
595         lv_coord_t bg_bottom = lv_obj_get_style_pad_bottom(obj, LV_PART_MAIN);
596         lv_coord_t bg_pad = LV_MAX4(bg_left, bg_right, bg_top, bg_bottom);
597 
598         lv_coord_t knob_left = lv_obj_get_style_pad_left(obj, LV_PART_KNOB);
599         lv_coord_t knob_right = lv_obj_get_style_pad_right(obj, LV_PART_KNOB);
600         lv_coord_t knob_top = lv_obj_get_style_pad_top(obj, LV_PART_KNOB);
601         lv_coord_t knob_bottom = lv_obj_get_style_pad_bottom(obj, LV_PART_KNOB);
602         lv_coord_t knob_pad = LV_MAX4(knob_left, knob_right, knob_top, knob_bottom) + 2;
603 
604         lv_coord_t knob_extra_size = knob_pad - bg_pad;
605         knob_extra_size += knob_get_extra_size(obj);
606 
607         lv_coord_t * s = lv_event_get_param(e);
608         *s = LV_MAX(*s, knob_extra_size);
609     }
610     else if(code == LV_EVENT_DRAW_MAIN) {
611         lv_arc_draw(e);
612     }
613 }
614 
lv_arc_draw(lv_event_t * e)615 static void lv_arc_draw(lv_event_t * e)
616 {
617     lv_obj_t * obj = lv_event_get_target(e);
618     lv_arc_t * arc = (lv_arc_t *)obj;
619 
620     lv_draw_ctx_t * draw_ctx = lv_event_get_draw_ctx(e);
621 
622     lv_point_t center;
623     lv_coord_t arc_r;
624     get_center(obj, &center, &arc_r);
625 
626     lv_obj_draw_part_dsc_t part_draw_dsc;
627     lv_obj_draw_dsc_init(&part_draw_dsc, draw_ctx);
628 
629     /*Draw the background arc*/
630     lv_draw_arc_dsc_t arc_dsc;
631     if(arc_r > 0) {
632         lv_draw_arc_dsc_init(&arc_dsc);
633         lv_obj_init_draw_arc_dsc(obj, LV_PART_MAIN, &arc_dsc);
634 
635         part_draw_dsc.part = LV_PART_MAIN;
636         part_draw_dsc.class_p = MY_CLASS;
637         part_draw_dsc.type = LV_ARC_DRAW_PART_BACKGROUND;
638         part_draw_dsc.p1 = &center;
639         part_draw_dsc.radius = arc_r;
640         part_draw_dsc.arc_dsc = &arc_dsc;
641         lv_event_send(obj, LV_EVENT_DRAW_PART_BEGIN, &part_draw_dsc);
642 
643         lv_draw_arc(draw_ctx, &arc_dsc, &center, part_draw_dsc.radius, arc->bg_angle_start + arc->rotation,
644                     arc->bg_angle_end + arc->rotation);
645 
646         lv_event_send(obj, LV_EVENT_DRAW_PART_END, &part_draw_dsc);
647     }
648 
649     /*Make the indicator arc smaller or larger according to its greatest padding value*/
650     lv_coord_t left_indic = lv_obj_get_style_pad_left(obj, LV_PART_INDICATOR);
651     lv_coord_t right_indic = lv_obj_get_style_pad_right(obj, LV_PART_INDICATOR);
652     lv_coord_t top_indic = lv_obj_get_style_pad_top(obj, LV_PART_INDICATOR);
653     lv_coord_t bottom_indic = lv_obj_get_style_pad_bottom(obj, LV_PART_INDICATOR);
654     lv_coord_t indic_r = arc_r - LV_MAX4(left_indic, right_indic, top_indic, bottom_indic);
655 
656     if(indic_r > 0) {
657         lv_draw_arc_dsc_init(&arc_dsc);
658         lv_obj_init_draw_arc_dsc(obj, LV_PART_INDICATOR, &arc_dsc);
659 
660         part_draw_dsc.part = LV_PART_INDICATOR;
661         part_draw_dsc.class_p = MY_CLASS;
662         part_draw_dsc.type = LV_ARC_DRAW_PART_FOREGROUND;
663         part_draw_dsc.p1 = &center;
664         part_draw_dsc.radius = indic_r;
665         part_draw_dsc.arc_dsc = &arc_dsc;
666         lv_event_send(obj, LV_EVENT_DRAW_PART_BEGIN, &part_draw_dsc);
667 
668         if(arc_dsc.width > part_draw_dsc.radius) arc_dsc.width = part_draw_dsc.radius;
669         lv_draw_arc(draw_ctx, &arc_dsc, &center, part_draw_dsc.radius, arc->indic_angle_start + arc->rotation,
670                     arc->indic_angle_end + arc->rotation);
671 
672         lv_event_send(obj, LV_EVENT_DRAW_PART_END, &part_draw_dsc);
673     }
674 
675     lv_area_t knob_area;
676     get_knob_area(obj, &center, arc_r, &knob_area);
677 
678     lv_draw_rect_dsc_t knob_rect_dsc;
679     lv_draw_rect_dsc_init(&knob_rect_dsc);
680     lv_obj_init_draw_rect_dsc(obj, LV_PART_KNOB, &knob_rect_dsc);
681 
682     part_draw_dsc.part = LV_PART_KNOB;
683     part_draw_dsc.class_p = MY_CLASS;
684     part_draw_dsc.type = LV_ARC_DRAW_PART_KNOB;
685     part_draw_dsc.draw_area = &knob_area;
686     part_draw_dsc.rect_dsc = &knob_rect_dsc;
687     lv_event_send(obj, LV_EVENT_DRAW_PART_BEGIN, &part_draw_dsc);
688 
689     lv_draw_rect(draw_ctx, &knob_rect_dsc, &knob_area);
690 
691     lv_event_send(obj, LV_EVENT_DRAW_PART_END, &part_draw_dsc);
692 }
693 
inv_arc_area(lv_obj_t * obj,uint16_t start_angle,uint16_t end_angle,lv_part_t part)694 static void inv_arc_area(lv_obj_t * obj, uint16_t start_angle, uint16_t end_angle, lv_part_t part)
695 {
696     LV_ASSERT_OBJ(obj, MY_CLASS);
697 
698     /*Skip this complicated invalidation if the arc is not visible*/
699     if(lv_obj_is_visible(obj) == false) return;
700 
701     lv_arc_t * arc = (lv_arc_t *)obj;
702 
703     if(start_angle == end_angle) return;
704 
705     if(start_angle > 360) start_angle -= 360;
706     if(end_angle > 360) end_angle -= 360;
707 
708     start_angle += arc->rotation;
709     end_angle += arc->rotation;
710 
711     if(start_angle > 360) start_angle -= 360;
712     if(end_angle > 360) end_angle -= 360;
713 
714     lv_coord_t r;
715     lv_point_t c;
716     get_center(obj, &c, &r);
717 
718     lv_coord_t w = lv_obj_get_style_arc_width(obj, part);
719     lv_coord_t rounded = lv_obj_get_style_arc_rounded(obj, part);
720 
721     lv_area_t inv_area;
722     lv_draw_arc_get_area(c.x, c.y, r, start_angle, end_angle, w, rounded, &inv_area);
723 
724     lv_obj_invalidate_area(obj, &inv_area);
725 }
726 
inv_knob_area(lv_obj_t * obj)727 static void inv_knob_area(lv_obj_t * obj)
728 {
729     lv_point_t c;
730     lv_coord_t r;
731     get_center(obj, &c, &r);
732 
733     lv_area_t a;
734     get_knob_area(obj, &c, r, &a);
735 
736     lv_coord_t knob_extra_size = knob_get_extra_size(obj);
737 
738     if(knob_extra_size > 0) {
739         lv_area_increase(&a, knob_extra_size, knob_extra_size);
740     }
741 
742     lv_obj_invalidate_area(obj, &a);
743 }
744 
get_center(const lv_obj_t * obj,lv_point_t * center,lv_coord_t * arc_r)745 static void get_center(const lv_obj_t * obj, lv_point_t * center, lv_coord_t * arc_r)
746 {
747     lv_coord_t left_bg = lv_obj_get_style_pad_left(obj, LV_PART_MAIN);
748     lv_coord_t right_bg = lv_obj_get_style_pad_right(obj, LV_PART_MAIN);
749     lv_coord_t top_bg = lv_obj_get_style_pad_top(obj, LV_PART_MAIN);
750     lv_coord_t bottom_bg = lv_obj_get_style_pad_bottom(obj, LV_PART_MAIN);
751 
752     lv_coord_t r = (LV_MIN(lv_obj_get_width(obj) - left_bg - right_bg,
753                            lv_obj_get_height(obj) - top_bg - bottom_bg)) / 2;
754 
755     center->x = obj->coords.x1 + r + left_bg;
756     center->y = obj->coords.y1 + r + top_bg;
757 
758     if(arc_r) *arc_r = r;
759 }
760 
get_angle(const lv_obj_t * obj)761 static lv_coord_t get_angle(const lv_obj_t * obj)
762 {
763     lv_arc_t * arc = (lv_arc_t *)obj;
764     uint16_t angle = arc->rotation;
765     if(arc->type == LV_ARC_MODE_NORMAL) {
766         angle += arc->indic_angle_end;
767     }
768     else if(arc->type == LV_ARC_MODE_REVERSE) {
769         angle += arc->indic_angle_start;
770     }
771     else if(arc->type == LV_ARC_MODE_SYMMETRICAL) {
772         int16_t bg_end = arc->bg_angle_end;
773         if(arc->bg_angle_end < arc->bg_angle_start) bg_end = arc->bg_angle_end + 360;
774         int16_t indic_end = arc->indic_angle_end;
775         if(arc->indic_angle_end < arc->indic_angle_start) indic_end = arc->indic_angle_end + 360;
776 
777         int32_t angle_midpoint = (int32_t)(arc->bg_angle_start + bg_end) / 2;
778         if(arc->indic_angle_start < angle_midpoint) angle += arc->indic_angle_start;
779         else if(indic_end > angle_midpoint) angle += arc->indic_angle_end;
780         else angle += angle_midpoint;
781     }
782 
783     return angle;
784 }
785 
786 
get_knob_area(lv_obj_t * obj,const lv_point_t * center,lv_coord_t r,lv_area_t * knob_area)787 static void get_knob_area(lv_obj_t * obj, const lv_point_t * center, lv_coord_t r, lv_area_t * knob_area)
788 {
789     lv_coord_t indic_width = lv_obj_get_style_arc_width(obj, LV_PART_INDICATOR);
790     lv_coord_t indic_width_half = indic_width / 2;
791     r -= indic_width_half;
792 
793     lv_coord_t angle = get_angle(obj);
794     lv_coord_t knob_x = (r * lv_trigo_sin(angle + 90)) >> LV_TRIGO_SHIFT;
795     lv_coord_t knob_y = (r * lv_trigo_sin(angle)) >> LV_TRIGO_SHIFT;
796 
797     lv_coord_t left_knob = lv_obj_get_style_pad_left(obj, LV_PART_KNOB);
798     lv_coord_t right_knob = lv_obj_get_style_pad_right(obj, LV_PART_KNOB);
799     lv_coord_t top_knob = lv_obj_get_style_pad_top(obj, LV_PART_KNOB);
800     lv_coord_t bottom_knob = lv_obj_get_style_pad_bottom(obj, LV_PART_KNOB);
801 
802     knob_area->x1 = center->x + knob_x - left_knob - indic_width_half;
803     knob_area->x2 = center->x + knob_x + right_knob + indic_width_half;
804     knob_area->y1 = center->y + knob_y - top_knob - indic_width_half;
805     knob_area->y2 = center->y + knob_y + bottom_knob + indic_width_half;
806 }
807 
808 /**
809  * Used internally to update arc angles after a value change
810  * @param arc pointer to an arc object
811  */
value_update(lv_obj_t * obj)812 static void value_update(lv_obj_t * obj)
813 {
814     LV_ASSERT_OBJ(obj, MY_CLASS);
815     lv_arc_t * arc = (lv_arc_t *)obj;
816 
817     /*If the value is still not set to any value do not update*/
818     if(arc->value == VALUE_UNSET) return;
819 
820     int16_t bg_midpoint, range_midpoint, bg_end = arc->bg_angle_end;
821     if(arc->bg_angle_end < arc->bg_angle_start) bg_end = arc->bg_angle_end + 360;
822 
823     int16_t angle;
824     switch(arc->type) {
825         case LV_ARC_MODE_SYMMETRICAL:
826             bg_midpoint = (arc->bg_angle_start + bg_end) / 2;
827             range_midpoint = (int32_t)(arc->min_value + arc->max_value) / 2;
828 
829             if(arc->value < range_midpoint) {
830                 angle = lv_map(arc->value, arc->min_value, range_midpoint, arc->bg_angle_start, bg_midpoint);
831                 lv_arc_set_start_angle(obj, angle);
832                 lv_arc_set_end_angle(obj, bg_midpoint);
833             }
834             else {
835                 angle = lv_map(arc->value, range_midpoint, arc->max_value, bg_midpoint, bg_end);
836                 lv_arc_set_start_angle(obj, bg_midpoint);
837                 lv_arc_set_end_angle(obj, angle);
838             }
839             break;
840         case LV_ARC_MODE_REVERSE:
841             angle = lv_map(arc->value, arc->min_value, arc->max_value, bg_end, arc->bg_angle_start);
842             lv_arc_set_angles(obj, angle, arc->bg_angle_end);
843             break;
844         case LV_ARC_MODE_NORMAL:
845             angle = lv_map(arc->value, arc->min_value, arc->max_value, arc->bg_angle_start, bg_end);
846             lv_arc_set_angles(obj, arc->bg_angle_start, angle);
847 
848             break;
849         default:
850             LV_LOG_WARN("Invalid mode: %d", arc->type);
851             return;
852     }
853     arc->last_angle = angle; /*Cache angle for slew rate limiting*/
854 }
855 
knob_get_extra_size(lv_obj_t * obj)856 static lv_coord_t knob_get_extra_size(lv_obj_t * obj)
857 {
858     lv_coord_t knob_shadow_size = 0;
859     knob_shadow_size += lv_obj_get_style_shadow_width(obj, LV_PART_KNOB);
860     knob_shadow_size += lv_obj_get_style_shadow_spread(obj, LV_PART_KNOB);
861     knob_shadow_size += LV_ABS(lv_obj_get_style_shadow_ofs_x(obj, LV_PART_KNOB));
862     knob_shadow_size += LV_ABS(lv_obj_get_style_shadow_ofs_y(obj, LV_PART_KNOB));
863 
864     lv_coord_t knob_outline_size = 0;
865     knob_outline_size += lv_obj_get_style_outline_width(obj, LV_PART_KNOB);
866     knob_outline_size += lv_obj_get_style_outline_pad(obj, LV_PART_KNOB);
867 
868     return LV_MAX(knob_shadow_size, knob_outline_size);
869 }
870 
871 #endif
872