Embedded Template Library 1.0
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message_timer_atomic.h
1/******************************************************************************
2The MIT License(MIT)
3
4Embedded Template Library.
5https://github.com/ETLCPP/etl
6https://www.etlcpp.com
7
8Copyright(c) 2021 John Wellbelove
9
10Permission is hereby granted, free of charge, to any person obtaining a copy
11of this software and associated documentation files(the "Software"), to deal
12in the Software without restriction, including without limitation the rights
13to use, copy, modify, merge, publish, distribute, sublicense, and / or sell
14copies of the Software, and to permit persons to whom the Software is
15furnished to do so, subject to the following conditions :
16
17The above copyright notice and this permission notice shall be included in all
18copies or substantial portions of the Software.
19
20THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
21IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
22FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.IN NO EVENT SHALL THE
23AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
24LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
25OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
26SOFTWARE.
27******************************************************************************/
28
29#ifndef ETL_MESSAGE_TIMER_ATOMIC_INCLUDED
30#define ETL_MESSAGE_TIMER_ATOMIC_INCLUDED
31
32#include "platform.h"
33#include "algorithm.h"
34#include "atomic.h"
35#include "delegate.h"
36#include "message.h"
37#include "message_bus.h"
38#include "message_router.h"
39#include "message_types.h"
40#include "nullptr.h"
41#include "static_assert.h"
42#include "timer.h"
43
44#include <stdint.h>
45
46#if ETL_HAS_ATOMIC
47
48namespace etl
49{
50 //***************************************************************************
52 //***************************************************************************
53 template <typename TSemaphore>
54 class imessage_timer_atomic
55 {
56 public:
57
58 typedef etl::delegate<void(etl::timer::id::type)> event_callback_type;
59
60 //*******************************************
62 //*******************************************
63 etl::timer::id::type register_timer(const etl::imessage& message_, etl::imessage_router& router_, uint32_t period_, bool repeating_,
64 etl::message_router_id_t destination_router_id_ = etl::imessage_router::ALL_MESSAGE_ROUTERS)
65 {
66 etl::timer::id::type id = etl::timer::id::NO_TIMER;
67
68 bool is_space = (registered_timers < MAX_TIMERS);
69
70 if (is_space)
71 {
72 // There's no point adding null message routers.
73 if (!router_.is_null_router())
74 {
75 // Search for the free space.
76 for (uint_least8_t i = 0U; i < MAX_TIMERS; ++i)
77 {
78 timer_data& timer = timer_array[i];
79
80 if (timer.id == etl::timer::id::NO_TIMER)
81 {
82 // Create in-place.
83 new (&timer) timer_data(i, message_, router_, period_, repeating_, destination_router_id_);
84 ++registered_timers;
85 id = i;
86 break;
87 }
88 }
89 }
90 }
91
92 return id;
93 }
94
95 //*******************************************
97 //*******************************************
98 bool unregister_timer(etl::timer::id::type id_)
99 {
100 bool result = false;
101
102 if (id_ != etl::timer::id::NO_TIMER)
103 {
104 timer_data& timer = timer_array[id_];
105
106 if (timer.id != etl::timer::id::NO_TIMER)
107 {
108 if (timer.is_active())
109 {
110 ++process_semaphore;
111 active_list.remove(timer.id, false);
112 remove_callback.call_if(timer.id);
113 --process_semaphore;
114 }
115
116 // Reset in-place.
117 new (&timer) timer_data();
118 --registered_timers;
119
120 result = true;
121 }
122 }
123
124 return result;
125 }
126
127 //*******************************************
129 //*******************************************
130 void enable(bool state_)
131 {
132 enabled = state_;
133 }
134
135 //*******************************************
137 //*******************************************
138 bool is_running() const
139 {
140 return enabled;
141 }
142
143 //*******************************************
145 //*******************************************
146 void clear()
147 {
148 ++process_semaphore;
149 active_list.clear();
150 --process_semaphore;
151
152 for (int i = 0; i < MAX_TIMERS; ++i)
153 {
154 new (&timer_array[i]) timer_data();
155 }
156
157 registered_timers = 0U;
158 }
159
160 //*******************************************
161 // Called by the timer service to indicate the
162 // amount of time that has elapsed since the last successful call to 'tick'.
163 // Returns true if the tick was processed,
164 // false if not.
165 //*******************************************
166 bool tick(uint32_t count)
167 {
168 if (enabled)
169 {
170 if (process_semaphore == 0U)
171 {
172 // We have something to do?
173 bool has_active = !active_list.empty();
174
175 if (has_active)
176 {
177 while (has_active && (count >= active_list.front().delta))
178 {
179 timer_data& timer = active_list.front();
180
181 count -= timer.delta;
182
183 active_list.remove(timer.id, true);
184 remove_callback.call_if(timer.id);
185
186 if (timer.p_router != ETL_NULLPTR)
187 {
188 timer.p_router->receive(timer.destination_router_id, *(timer.p_message));
189 }
190
191 if (timer.repeating)
192 {
193 timer.delta = timer.period;
194 active_list.insert(timer.id);
195 insert_callback.call_if(timer.id);
196 }
197
198 has_active = !active_list.empty();
199 }
200
201 if (has_active)
202 {
203 // Subtract any remainder from the next due timeout.
204 active_list.front().delta -= count;
205 }
206 }
207
208 return true;
209 }
210 }
211
212 return false;
213 }
214
215 //*******************************************
217 //*******************************************
218 bool start(etl::timer::id::type id_, bool immediate_ = false)
219 {
220 bool result = false;
221
222 // Valid timer id?
223 if (id_ != etl::timer::id::NO_TIMER)
224 {
225 timer_data& timer = timer_array[id_];
226
227 // Registered timer?
228 if (timer.id != etl::timer::id::NO_TIMER)
229 {
230 // Has a valid period.
231 if (timer.period != etl::timer::state::Inactive)
232 {
233 ++process_semaphore;
234 if (timer.is_active())
235 {
236 active_list.remove(timer.id, false);
237 remove_callback.call_if(timer.id);
238 }
239
240 timer.delta = immediate_ ? 0U : timer.period;
241 active_list.insert(timer.id);
242 insert_callback.call_if(timer.id);
243 --process_semaphore;
244
245 result = true;
246 }
247 }
248 }
249
250 return result;
251 }
252
253 //*******************************************
255 //*******************************************
256 bool stop(etl::timer::id::type id_)
257 {
258 bool result = false;
259
260 // Valid timer id?
261 if (id_ != etl::timer::id::NO_TIMER)
262 {
263 timer_data& timer = timer_array[id_];
264
265 // Registered timer?
266 if (timer.id != etl::timer::id::NO_TIMER)
267 {
268 if (timer.is_active())
269 {
270 ++process_semaphore;
271 active_list.remove(timer.id, false);
272 remove_callback.call_if(timer.id);
273 --process_semaphore;
274 }
275
276 result = true;
277 }
278 }
279
280 return result;
281 }
282
283 //*******************************************
285 //*******************************************
286 bool set_period(etl::timer::id::type id_, uint32_t period_)
287 {
288 if (stop(id_))
289 {
290 timer_array[id_].period = period_;
291 return true;
292 }
293
294 return false;
295 }
296
297 //*******************************************
299 //*******************************************
300 bool set_mode(etl::timer::id::type id_, bool repeating_)
301 {
302 if (stop(id_))
303 {
304 timer_array[id_].repeating = repeating_;
305 return true;
306 }
307
308 return false;
309 }
310
311 //*******************************************
313 //*******************************************
314 bool has_active_timer() const
315 {
316 ++process_semaphore;
317 bool result = !active_list.empty();
318 --process_semaphore;
319
320 return result;
321 }
322
323 //*******************************************
327 //*******************************************
328 uint32_t time_to_next() const
329 {
330 uint32_t delta = static_cast<uint32_t>(etl::timer::interval::No_Active_Interval);
331
332 ++process_semaphore;
333 if (!active_list.empty())
334 {
335 delta = active_list.front().delta;
336 }
337 --process_semaphore;
338
339 return delta;
340 }
341
342 //*******************************************
344 //*******************************************
345 void set_insert_callback(event_callback_type insert_)
346 {
347 insert_callback = insert_;
348 }
349
350 //*******************************************
352 //*******************************************
353 void set_remove_callback(event_callback_type remove_)
354 {
355 remove_callback = remove_;
356 }
357
358 //*******************************************
359 void clear_insert_callback()
360 {
361 insert_callback.clear();
362 }
363
364 //*******************************************
365 void clear_remove_callback()
366 {
367 remove_callback.clear();
368 }
369
370 protected:
371
372 //*************************************************************************
374 struct timer_data
375 {
376 //*******************************************
377 timer_data()
378 : p_message(ETL_NULLPTR)
379 , p_router(ETL_NULLPTR)
380 , period(0U)
381 , delta(etl::timer::state::Inactive)
382 , destination_router_id(etl::imessage_bus::ALL_MESSAGE_ROUTERS)
383 , id(etl::timer::id::NO_TIMER)
384 , previous(etl::timer::id::NO_TIMER)
385 , next(etl::timer::id::NO_TIMER)
386 , repeating(true)
387 {
388 }
389
390 //*******************************************
391 timer_data(etl::timer::id::type id_, const etl::imessage& message_, etl::imessage_router& irouter_, uint32_t period_, bool repeating_,
392 etl::message_router_id_t destination_router_id_ = etl::imessage_bus::ALL_MESSAGE_ROUTERS)
393 : p_message(&message_)
394 , p_router(&irouter_)
395 , period(period_)
396 , delta(etl::timer::state::Inactive)
397 , destination_router_id(destination_router_id_)
398 , id(id_)
399 , previous(etl::timer::id::NO_TIMER)
400 , next(etl::timer::id::NO_TIMER)
401 , repeating(repeating_)
402 {
403 }
404
405 //*******************************************
407 //*******************************************
408 bool is_active() const
409 {
410 return delta != etl::timer::state::Inactive;
411 }
412
413 //*******************************************
415 //*******************************************
416 void set_inactive()
417 {
418 delta = etl::timer::state::Inactive;
419 }
420
421 const etl::imessage* p_message;
422 etl::imessage_router* p_router;
423 uint32_t period;
424 uint32_t delta;
425 etl::message_router_id_t destination_router_id;
426 etl::timer::id::type id;
427 uint_least8_t previous;
428 uint_least8_t next;
429 bool repeating;
430
431 private:
432
433 // Disabled.
434 timer_data(const timer_data& other);
435 timer_data& operator=(const timer_data& other);
436 };
437
438 //*******************************************
440 //*******************************************
441 imessage_timer_atomic(timer_data* const timer_array_, const uint_least8_t Max_Timers)
442 : timer_array(timer_array_)
443 , active_list(timer_array_)
444 , enabled(false)
445 , process_semaphore(0U)
446 , registered_timers(0U)
447 , MAX_TIMERS(Max_Timers)
448 {
449 }
450
451 //*******************************************
453 //*******************************************
454 ~imessage_timer_atomic() {}
455
456 private:
457
458 //*************************************************************************
460 //*************************************************************************
461 class timer_list
462 {
463 public:
464
465 //*******************************
466 timer_list(timer_data* ptimers_)
467 : head(etl::timer::id::NO_TIMER)
468 , tail(etl::timer::id::NO_TIMER)
469 , ptimers(ptimers_)
470 {
471 }
472
473 //*******************************
474 bool empty() const
475 {
476 return head == etl::timer::id::NO_TIMER;
477 }
478
479 //*******************************
480 // Inserts the timer at the correct delta position
481 //*******************************
482 void insert(etl::timer::id::type id_)
483 {
484 timer_data& timer = ptimers[id_];
485
486 if (head == etl::timer::id::NO_TIMER)
487 {
488 // No entries yet.
489 head = id_;
490 tail = id_;
491 timer.previous = etl::timer::id::NO_TIMER;
492 timer.next = etl::timer::id::NO_TIMER;
493 }
494 else
495 {
496 // We already have entries.
497 etl::timer::id::type test_id = begin();
498
499 while (test_id != etl::timer::id::NO_TIMER)
500 {
501 timer_data& test = ptimers[test_id];
502
503 // Find the correct place to insert.
504 if (timer.delta <= test.delta)
505 {
506 if (test.id == head)
507 {
508 head = timer.id;
509 }
510
511 // Insert before test.
512 timer.previous = test.previous;
513 test.previous = timer.id;
514 timer.next = test.id;
515
516 // Adjust the next delta to compensate.
517 test.delta -= timer.delta;
518
519 if (timer.previous != etl::timer::id::NO_TIMER)
520 {
521 ptimers[timer.previous].next = timer.id;
522 }
523 break;
524 }
525 else
526 {
527 timer.delta -= test.delta;
528 }
529
530 test_id = next(test_id);
531 }
532
533 // Reached the end?
534 if (test_id == etl::timer::id::NO_TIMER)
535 {
536 // Tag on to the tail.
537 ptimers[tail].next = timer.id;
538 timer.previous = tail;
539 timer.next = etl::timer::id::NO_TIMER;
540 tail = timer.id;
541 }
542 }
543 }
544
545 //*******************************
546 void remove(etl::timer::id::type id_, bool has_expired)
547 {
548 timer_data& timer = ptimers[id_];
549
550 if (head == id_)
551 {
552 head = timer.next;
553 }
554 else
555 {
556 ptimers[timer.previous].next = timer.next;
557 }
558
559 if (tail == id_)
560 {
561 tail = timer.previous;
562 }
563 else
564 {
565 ptimers[timer.next].previous = timer.previous;
566 }
567
568 if (!has_expired)
569 {
570 // Adjust the next delta.
571 if (timer.next != etl::timer::id::NO_TIMER)
572 {
573 ptimers[timer.next].delta += timer.delta;
574 }
575 }
576
577 timer.previous = etl::timer::id::NO_TIMER;
578 timer.next = etl::timer::id::NO_TIMER;
579 timer.delta = etl::timer::state::Inactive;
580 }
581
582 //*******************************
583 timer_data& front()
584 {
585 return ptimers[head];
586 }
587
588 //*******************************
589 const timer_data& front() const
590 {
591 return ptimers[head];
592 }
593
594 //*******************************
595 etl::timer::id::type begin()
596 {
597 return head;
598 }
599
600 //*******************************
601 etl::timer::id::type next(etl::timer::id::type last)
602 {
603 return ptimers[last].next;
604 }
605
606 //*******************************
607 void clear()
608 {
609 etl::timer::id::type id = begin();
610
611 while (id != etl::timer::id::NO_TIMER)
612 {
613 timer_data& timer = ptimers[id];
614 id = next(id);
615 timer.next = etl::timer::id::NO_TIMER;
616 }
617
618 head = etl::timer::id::NO_TIMER;
619 tail = etl::timer::id::NO_TIMER;
620 }
621
622 private:
623
624 etl::timer::id::type head;
625 etl::timer::id::type tail;
626
627 timer_data* const ptimers;
628 };
629
630 // The array of timer data structures.
631 timer_data* const timer_array;
632
633 // The list of active timers.
634 timer_list active_list;
635
636 bool enabled;
637 mutable TSemaphore process_semaphore;
638 uint_least8_t registered_timers;
639
640 event_callback_type insert_callback;
641 event_callback_type remove_callback;
642
643 public:
644
645 const uint_least8_t MAX_TIMERS;
646 };
647
648 //***************************************************************************
650 //***************************************************************************
651 template <uint_least8_t Max_Timers, typename TSemaphore>
652 class message_timer_atomic : public etl::imessage_timer_atomic<TSemaphore>
653 {
654 public:
655
656 ETL_STATIC_ASSERT(Max_Timers <= 254, "No more than 254 timers are allowed");
657
658 //*******************************************
660 //*******************************************
661 message_timer_atomic()
662 : imessage_timer_atomic<TSemaphore>(timer_array, Max_Timers)
663 {
664 }
665
666 private:
667
668 typename etl::imessage_timer_atomic<TSemaphore>::timer_data timer_array[Max_Timers];
669 };
670} // namespace etl
671
672#endif
673#endif
ETL_CONSTEXPR14 TIterator remove(TIterator first, TIterator last, const T &value)
Definition algorithm.h:2381
Definition absolute.h:40
TContainer::iterator begin(TContainer &container)
Definition iterator.h:1136