audio_controls.c 20 KB

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  1. /*
  2. * audio control callbacks
  3. *
  4. * (c) Sebastien 2019
  5. * Philippe G. 2019, philippe_44@outlook.com
  6. *
  7. * This software is released under the MIT License.
  8. * https://opensource.org/licenses/MIT
  9. *
  10. */
  11. #include <stdlib.h>
  12. #include <string.h>
  13. #include <unistd.h>
  14. #include "freertos/FreeRTOS.h"
  15. #include "freertos/timers.h"
  16. #include "esp_system.h"
  17. #include "esp_log.h"
  18. #include "cJSON.h"
  19. #include "buttons.h"
  20. #include "platform_config.h"
  21. #include "accessors.h"
  22. #include "audio_controls.h"
  23. typedef esp_err_t (actrls_config_map_handler) (const cJSON * member, actrls_config_t *cur_config,uint32_t offset);
  24. typedef struct {
  25. char * member;
  26. uint32_t offset;
  27. actrls_config_map_handler * handler;
  28. } actrls_config_map_t;
  29. static esp_err_t actrls_process_member(const cJSON * member, actrls_config_t *cur_config);
  30. static esp_err_t actrls_process_button(const cJSON * button, actrls_config_t *cur_config);
  31. static esp_err_t actrls_process_int (const cJSON * member, actrls_config_t *cur_config, uint32_t offset);
  32. static esp_err_t actrls_process_type (const cJSON * member, actrls_config_t *cur_config, uint32_t offset);
  33. static esp_err_t actrls_process_bool (const cJSON * member, actrls_config_t *cur_config, uint32_t offset);
  34. static esp_err_t actrls_process_action (const cJSON * member, actrls_config_t *cur_config, uint32_t offset);
  35. static esp_err_t actrls_init_json(const char *profile_name, bool create);
  36. static void control_rotary_handler(void *client, rotary_event_e event, bool long_press);
  37. static void rotary_timer( TimerHandle_t xTimer );
  38. static const actrls_config_map_t actrls_config_map[] =
  39. {
  40. {"gpio", offsetof(actrls_config_t,gpio), actrls_process_int},
  41. {"debounce", offsetof(actrls_config_t,debounce), actrls_process_int},
  42. {"type", offsetof(actrls_config_t,type), actrls_process_type},
  43. {"pull", offsetof(actrls_config_t,pull), actrls_process_bool},
  44. {"long_press", offsetof(actrls_config_t,long_press),actrls_process_int},
  45. {"shifter_gpio", offsetof(actrls_config_t,shifter_gpio), actrls_process_int},
  46. {"normal", offsetof(actrls_config_t,normal), actrls_process_action},
  47. {"shifted", offsetof(actrls_config_t,shifted), actrls_process_action},
  48. {"longpress", offsetof(actrls_config_t,longpress), actrls_process_action},
  49. {"longshifted", offsetof(actrls_config_t,longshifted), actrls_process_action},
  50. {"", 0, NULL}
  51. };
  52. // BEWARE: the actions below need to stay aligned with the corresponding enum to properly support json parsing
  53. // along with the actrls_t controls in LMS_controls, bt_sink and raop_sink
  54. #define EP(x) [x] = #x /* ENUM PRINT */
  55. static const char * actrls_action_s[ ] = { EP(ACTRLS_POWER),EP(ACTRLS_VOLUP),EP(ACTRLS_VOLDOWN),EP(ACTRLS_TOGGLE),EP(ACTRLS_PLAY),
  56. EP(ACTRLS_PAUSE),EP(ACTRLS_STOP),EP(ACTRLS_REW),EP(ACTRLS_FWD),EP(ACTRLS_PREV),EP(ACTRLS_NEXT),
  57. EP(BCTRLS_UP),EP(BCTRLS_DOWN),EP(BCTRLS_LEFT),EP(BCTRLS_RIGHT),
  58. EP(BCTRLS_PS0),EP(BCTRLS_PS1),EP(BCTRLS_PS2),EP(BCTRLS_PS3),EP(BCTRLS_PS4),EP(BCTRLS_PS5),EP(BCTRLS_PS6),EP(BCTRLS_PS7),EP(BCTRLS_PS8),EP(BCTRLS_PS9),
  59. EP(KNOB_LEFT),EP(KNOB_RIGHT),EP(KNOB_PUSH),
  60. ""} ;
  61. static const char * TAG = "audio controls";
  62. static actrls_config_t *json_config;
  63. cJSON * control_profiles = NULL;
  64. static EXT_RAM_ATTR actrls_t default_controls, current_controls;
  65. static actrls_hook_t *default_hook, *current_hook;
  66. static bool default_raw_controls, current_raw_controls;
  67. static actrls_ir_handler_t *default_ir_handler, *current_ir_handler;
  68. static EXT_RAM_ATTR struct {
  69. bool long_state;
  70. bool volume_lock;
  71. TimerHandle_t timer;
  72. bool click_pending;
  73. int left_count;
  74. } rotary;
  75. static const struct ir_action_map_s{
  76. uint32_t code;
  77. actrls_action_e action;
  78. } ir_action_map[] = {
  79. {0x7689b04f, BCTRLS_DOWN}, {0x7689906f, BCTRLS_LEFT}, {0x7689d02f, BCTRLS_RIGHT}, {0x7689e01f, BCTRLS_UP},
  80. {0x768900ff, ACTRLS_VOLDOWN}, {0x7689807f, ACTRLS_VOLUP},
  81. {0x7689c03f, ACTRLS_PREV}, {0x7689a05f, ACTRLS_NEXT},
  82. {0x768920df, ACTRLS_PAUSE}, {0x768910ef, ACTRLS_PLAY},
  83. {0x00, 0x00},
  84. };
  85. /****************************************************************************************
  86. * This function can be called to map IR codes to default actions
  87. */
  88. bool actrls_ir_action(uint16_t addr, uint16_t cmd) {
  89. uint32_t code = (addr << 16) | cmd;
  90. struct ir_action_map_s const *map = ir_action_map;
  91. while (map->code && map->code != code) map++;
  92. if (map->code && current_controls[map->action]) {
  93. current_controls[map->action](true);
  94. return true;
  95. } else {
  96. return false;
  97. }
  98. }
  99. /****************************************************************************************
  100. *
  101. */
  102. static void ir_handler(uint16_t addr, uint16_t cmd) {
  103. ESP_LOGD(TAG, "recaived IR %04hx:%04hx", addr, cmd);
  104. if (current_ir_handler) current_ir_handler(addr, cmd);
  105. }
  106. /****************************************************************************************
  107. *
  108. */
  109. static void set_ir_gpio(int gpio, char *value) {
  110. if (strcasestr(value, "ir")) {
  111. if (strcasestr(value, "rc5")) create_infrared(gpio, ir_handler, IR_RC5);
  112. else create_infrared(gpio, ir_handler, IR_NEC);
  113. }
  114. }
  115. /****************************************************************************************
  116. *
  117. */
  118. esp_err_t actrls_init(const char *profile_name) {
  119. esp_err_t err = ESP_OK;
  120. char *config = config_alloc_get_default(NVS_TYPE_STR, "rotary_config", NULL, 0);
  121. if (config && *config) {
  122. char *p;
  123. int A = -1, B = -1, SW = -1, longpress = 0;
  124. // parse config
  125. PARSE_PARAM(config, "A", '=', A);
  126. PARSE_PARAM(config, "B", '=', B);
  127. PARSE_PARAM(config, "SW", '=', SW);
  128. if ((p = strcasestr(config, "knobonly"))) {
  129. p = strchr(p, '=');
  130. int double_press = p ? atoi(p + 1) : 350;
  131. rotary.timer = xTimerCreate("knobTimer", double_press / portTICK_RATE_MS, pdFALSE, NULL, rotary_timer);
  132. longpress = 500;
  133. ESP_LOGI(TAG, "single knob navigation %d", double_press);
  134. } else {
  135. if ((p = strcasestr(config, "volume")) != NULL) rotary.volume_lock = true;
  136. if ((p = strcasestr(config, "longpress")) != NULL) longpress = 1000;
  137. }
  138. // create rotary (no handling of long press)
  139. err = create_rotary(NULL, A, B, SW, longpress, control_rotary_handler) ? ESP_OK : ESP_FAIL;
  140. }
  141. // set infrared GPIO if any
  142. parse_set_GPIO(set_ir_gpio);
  143. if (!err) return actrls_init_json(profile_name, true);
  144. else return err;
  145. }
  146. /****************************************************************************************
  147. *
  148. */
  149. static void control_handler(void *client, button_event_e event, button_press_e press, bool long_press) {
  150. actrls_config_t *key = (actrls_config_t*) client;
  151. actrls_action_detail_t action_detail;
  152. // in raw mode, we just do normal action press *and* release, there is no longpress nor shift
  153. if (current_raw_controls) {
  154. ESP_LOGD(TAG, "calling action %u in raw mode", key->normal[0].action);
  155. if (current_controls[key->normal[0].action]) (*current_controls[key->normal[0].action])(event == BUTTON_PRESSED);
  156. return;
  157. }
  158. switch(press) {
  159. case BUTTON_NORMAL:
  160. if (long_press) action_detail = key->longpress[event == BUTTON_PRESSED ? 0 : 1];
  161. else action_detail = key->normal[event == BUTTON_PRESSED ? 0 : 1];
  162. break;
  163. case BUTTON_SHIFTED:
  164. if (long_press) action_detail = key->longshifted[event == BUTTON_PRESSED ? 0 : 1];
  165. else action_detail = key->shifted[event == BUTTON_PRESSED ? 0 : 1];
  166. break;
  167. default:
  168. action_detail.action = ACTRLS_NONE;
  169. break;
  170. }
  171. ESP_LOGD(TAG, "control gpio:%u press:%u long:%u event:%u action:%u", key->gpio, press, long_press, event, action_detail.action);
  172. // stop here if control hook served the request
  173. if (current_hook && (*current_hook)(key->gpio, action_detail.action, event, press, long_press)) return;
  174. // otherwise process using configuration
  175. if (action_detail.action == ACTRLS_REMAP) {
  176. // remap requested
  177. ESP_LOGD(TAG, "remapping buttons to profile %s",action_detail.name);
  178. cJSON * profile_obj = cJSON_GetObjectItem(control_profiles,action_detail.name);
  179. if (profile_obj) {
  180. actrls_config_t *cur_config = (actrls_config_t *) cJSON_GetStringValue(profile_obj);
  181. if (cur_config) {
  182. ESP_LOGD(TAG,"Remapping all the buttons that are found in the new profile");
  183. while (cur_config->gpio != -1) {
  184. ESP_LOGD(TAG,"Remapping button with gpio %u", cur_config->gpio);
  185. button_remap((void*) cur_config, cur_config->gpio, control_handler, cur_config->long_press, cur_config->shifter_gpio);
  186. cur_config++;
  187. }
  188. } else {
  189. ESP_LOGE(TAG,"Profile %s exists, but is empty. Cannot remap buttons",action_detail.name);
  190. }
  191. } else {
  192. ESP_LOGE(TAG,"Invalid profile name %s. Cannot remap buttons",action_detail.name);
  193. }
  194. } else if (action_detail.action != ACTRLS_NONE) {
  195. ESP_LOGD(TAG, "calling action %u", action_detail.action);
  196. if (current_controls[action_detail.action]) (*current_controls[action_detail.action])(event == BUTTON_PRESSED);
  197. }
  198. }
  199. /****************************************************************************************
  200. *
  201. */
  202. static void control_rotary_handler(void *client, rotary_event_e event, bool long_press) {
  203. actrls_action_e action = ACTRLS_NONE;
  204. bool pressed = true;
  205. // in raw mode, we just pass rotary events
  206. if (current_raw_controls) {
  207. if (event == ROTARY_LEFT) (*current_controls[KNOB_LEFT])(true);
  208. else if (event == ROTARY_RIGHT) (*current_controls[KNOB_RIGHT])(true);
  209. else (*current_controls[KNOB_PUSH])(event == ROTARY_PRESSED);
  210. return;
  211. }
  212. switch(event) {
  213. case ROTARY_LEFT:
  214. if (rotary.timer) {
  215. if (rotary.left_count) {
  216. action = KNOB_LEFT;
  217. // need to add a left button the first time
  218. if (rotary.left_count == 1) (*current_controls[KNOB_LEFT])(true);
  219. }
  220. xTimerStart(rotary.timer, 20 / portTICK_RATE_MS);
  221. rotary.left_count++;
  222. }
  223. else if (rotary.long_state) action = ACTRLS_PREV;
  224. else if (rotary.volume_lock) action = ACTRLS_VOLDOWN;
  225. else action = KNOB_LEFT;
  226. break;
  227. case ROTARY_RIGHT:
  228. if (rotary.timer) {
  229. if (rotary.left_count == 1) {
  230. action = ACTRLS_PAUSE;
  231. rotary.left_count = 0;
  232. xTimerStop(rotary.timer, 0);
  233. } else action = KNOB_RIGHT;
  234. }
  235. else if (rotary.long_state) action = ACTRLS_NEXT;
  236. else if (rotary.volume_lock) action = ACTRLS_VOLUP;
  237. else action = KNOB_RIGHT;
  238. break;
  239. case ROTARY_PRESSED:
  240. if (rotary.timer) {
  241. if (long_press) action = ACTRLS_PLAY;
  242. else if (rotary.click_pending) {
  243. action = BCTRLS_LEFT;
  244. xTimerStop(rotary.timer, 0);
  245. }
  246. else xTimerStart(rotary.timer, 20 / portTICK_RATE_MS);
  247. rotary.click_pending = !rotary.click_pending;
  248. }
  249. else if (long_press) rotary.long_state = !rotary.long_state;
  250. else if (rotary.volume_lock) action = ACTRLS_TOGGLE;
  251. else action = KNOB_PUSH;
  252. break;
  253. default:
  254. break;
  255. }
  256. if (action != ACTRLS_NONE) (*current_controls[action])(pressed);
  257. }
  258. /****************************************************************************************
  259. *
  260. */
  261. static void rotary_timer( TimerHandle_t xTimer ) {
  262. if (rotary.click_pending) {
  263. (*current_controls[KNOB_PUSH])(true);
  264. rotary.click_pending = false;
  265. } else if (rotary.left_count) {
  266. if (rotary.left_count == 1) (*current_controls[KNOB_LEFT])(true);
  267. rotary.left_count = 0;
  268. }
  269. }
  270. /****************************************************************************************
  271. *
  272. */
  273. static actrls_action_e actrls_parse_action_json(const char * name){
  274. actrls_action_e action = ACTRLS_NONE;
  275. if(!strcasecmp("ACTRLS_NONE",name)) return ACTRLS_NONE;
  276. for(int i=0;i<ACTRLS_MAX && actrls_action_s[i][0]!='\0' ;i++){
  277. if(!strcmp(actrls_action_s[i], name)){
  278. return (actrls_action_e) i;
  279. }
  280. }
  281. // Action name wasn't recognized.
  282. // Check if this is a profile name that has a match in nvs
  283. ESP_LOGD(TAG,"unknown action %s, trying to find matching profile ", name);
  284. cJSON * existing = cJSON_GetObjectItem(control_profiles, name);
  285. if (!existing) {
  286. ESP_LOGD(TAG,"Loading new audio control profile with name: %s", name);
  287. if (actrls_init_json(name, false) == ESP_OK) {
  288. action = ACTRLS_REMAP;
  289. }
  290. } else {
  291. ESP_LOGD(TAG,"Existing profile %s was referenced", name);
  292. action = ACTRLS_REMAP;
  293. }
  294. return action;
  295. }
  296. /****************************************************************************************
  297. *
  298. */
  299. static esp_err_t actrls_process_int (const cJSON * member, actrls_config_t *cur_config,uint32_t offset){
  300. esp_err_t err = ESP_OK;
  301. ESP_LOGD(TAG,"Processing int member");
  302. int *value = (int*)((char*) cur_config + offset);
  303. *value = member->valueint;
  304. return err;
  305. }
  306. /****************************************************************************************
  307. *
  308. */
  309. static esp_err_t actrls_process_type (const cJSON * member, actrls_config_t *cur_config, uint32_t offset){
  310. esp_err_t err = ESP_OK;
  311. ESP_LOGD(TAG,"Processing type member");
  312. int *value = (int *)((char*) cur_config + offset);
  313. if (member->type == cJSON_String) {
  314. *value =
  315. !strcmp(member->valuestring,
  316. "BUTTON_LOW") ?
  317. BUTTON_LOW : BUTTON_HIGH;
  318. } else {
  319. ESP_LOGE(TAG,
  320. "Button type value expected string value of BUTTON_LOW or BUTTON_HIGH, none found");
  321. err=ESP_FAIL;
  322. }
  323. return err;
  324. }
  325. /****************************************************************************************
  326. *
  327. */
  328. static esp_err_t actrls_process_bool (const cJSON * member, actrls_config_t *cur_config, uint32_t offset){
  329. esp_err_t err = ESP_OK;
  330. if (!member) {
  331. ESP_LOGE(TAG,"Null json member pointer!");
  332. err = ESP_FAIL;
  333. } else {
  334. ESP_LOGD(TAG,"Processing bool member ");
  335. if (cJSON_IsBool(member)) {
  336. bool*value = (bool*)((char*) cur_config + offset);
  337. *value = cJSON_IsTrue(member);
  338. } else {
  339. ESP_LOGE(TAG,"Member %s is not a boolean", member->string?member->string:"unknown");
  340. err = ESP_FAIL;
  341. }
  342. }
  343. return err;
  344. }
  345. /****************************************************************************************
  346. *
  347. */
  348. static esp_err_t actrls_process_action (const cJSON * member, actrls_config_t *cur_config, uint32_t offset){
  349. esp_err_t err = ESP_OK;
  350. cJSON * button_action= cJSON_GetObjectItemCaseSensitive(member, "pressed");
  351. actrls_action_detail_t*value = (actrls_action_detail_t*)((char *)cur_config + offset);
  352. if (button_action != NULL) {
  353. value[0].action = actrls_parse_action_json( button_action->valuestring);
  354. if(value[0].action == ACTRLS_REMAP){
  355. value[0].name = strdup(button_action->valuestring);
  356. }
  357. }
  358. button_action = cJSON_GetObjectItemCaseSensitive(member, "released");
  359. if (button_action != NULL) {
  360. value[1].action = actrls_parse_action_json( button_action->valuestring);
  361. if (value[1].action == ACTRLS_REMAP){
  362. value[1].name = strdup(button_action->valuestring);
  363. }
  364. }
  365. return err;
  366. }
  367. /****************************************************************************************
  368. *
  369. */
  370. static esp_err_t actrls_process_member(const cJSON * member, actrls_config_t *cur_config) {
  371. esp_err_t err = ESP_OK;
  372. const actrls_config_map_t * h=actrls_config_map;
  373. char * str = cJSON_Print(member);
  374. while (h->handler && strcmp(member->string, h->member)) { h++; }
  375. if (h->handler) {
  376. ESP_LOGD(TAG,"found handler for member %s, json value %s", h->member,str?str:"");
  377. err = h->handler(member, cur_config, h->offset);
  378. } else {
  379. err = ESP_FAIL;
  380. ESP_LOGE(TAG, "Unknown json structure member : %s", str?str:"");
  381. }
  382. if (str) free(str);
  383. return err;
  384. }
  385. /****************************************************************************************
  386. *
  387. */
  388. static esp_err_t actrls_process_button(const cJSON * button, actrls_config_t *cur_config) {
  389. esp_err_t err= ESP_OK;
  390. const cJSON *member;
  391. cJSON_ArrayForEach(member, button)
  392. {
  393. ESP_LOGD(TAG,"Processing member %s. ", member->string);
  394. esp_err_t loc_err = actrls_process_member(member, cur_config);
  395. err = (err == ESP_OK) ? loc_err : err;
  396. }
  397. return err;
  398. }
  399. /****************************************************************************************
  400. *
  401. */
  402. static actrls_config_t * actrls_init_alloc_structure(const cJSON *buttons, const char * name){
  403. int member_count = 0;
  404. const cJSON *button;
  405. actrls_config_t * json_config=NULL;
  406. // Check if the main profiles array was created
  407. if(!control_profiles){
  408. control_profiles = cJSON_CreateObject();
  409. }
  410. ESP_LOGD(TAG,"Counting the number of buttons definition");
  411. cJSON_ArrayForEach(button, buttons) {
  412. member_count++;
  413. }
  414. ESP_LOGD(TAG, "config contains %u button definitions", member_count);
  415. if (member_count != 0) {
  416. json_config = calloc(sizeof(actrls_config_t) * (member_count + 1), 1);
  417. if (json_config){
  418. json_config[member_count].gpio = -1;
  419. } else {
  420. ESP_LOGE(TAG,"Unable to allocate memory to hold configuration for %u buttons ",member_count);
  421. }
  422. } else {
  423. ESP_LOGE(TAG,"No button found in configuration structure");
  424. }
  425. // we're cheating here; we're going to store the control profile
  426. // pointer as a string reference; this will prevent cJSON
  427. // from trying to free the structure if we ever want to free the object
  428. cJSON * new_profile = cJSON_CreateStringReference((const char *)json_config);
  429. cJSON_AddItemToObject(control_profiles, name, new_profile);
  430. return json_config;
  431. }
  432. /****************************************************************************************
  433. *
  434. */
  435. static void actrls_defaults(actrls_config_t *config) {
  436. config->type = BUTTON_LOW;
  437. config->pull = false;
  438. config->debounce = 0;
  439. config->long_press = 0;
  440. config->shifter_gpio = -1;
  441. config->normal[0].action = config->normal[1].action = ACTRLS_NONE;
  442. config->longpress[0].action = config->longpress[1].action = ACTRLS_NONE;
  443. config->shifted[0].action = config->shifted[1].action = ACTRLS_NONE;
  444. config->longshifted[0].action = config->longshifted[1].action = ACTRLS_NONE;
  445. }
  446. /****************************************************************************************
  447. *
  448. */
  449. static esp_err_t actrls_init_json(const char *profile_name, bool create) {
  450. esp_err_t err = ESP_OK;
  451. actrls_config_t *cur_config = NULL;
  452. actrls_config_t *config_root = NULL;
  453. char *config;
  454. const cJSON *button;
  455. if (!profile_name) return ESP_OK;
  456. if ((config = config_alloc_get_str(profile_name, NULL, CONFIG_AUDIO_CONTROLS)) == NULL) return ESP_FAIL;
  457. if (!*config) goto exit;
  458. ESP_LOGD(TAG,"Parsing JSON structure %s", config);
  459. cJSON *buttons = cJSON_Parse(config);
  460. if (buttons == NULL) {
  461. ESP_LOGE(TAG,"JSON Parsing failed for %s", config);
  462. err = ESP_FAIL;
  463. } else {
  464. ESP_LOGD(TAG,"Json parsing completed");
  465. if (cJSON_IsArray(buttons)) {
  466. ESP_LOGD(TAG,"configuration is an array as expected");
  467. cur_config =config_root= actrls_init_alloc_structure(buttons, profile_name);
  468. if(!cur_config) {
  469. ESP_LOGE(TAG,"Config buffer was empty. ");
  470. cJSON_Delete(buttons);
  471. err = ESP_FAIL;
  472. goto exit;
  473. }
  474. ESP_LOGD(TAG,"Processing button definitions. ");
  475. cJSON_ArrayForEach(button, buttons){
  476. char * str = cJSON_Print(button);
  477. ESP_LOGD(TAG,"Processing %s. ", str?str:"");
  478. if(str){
  479. free(str);
  480. }
  481. actrls_defaults(cur_config);
  482. esp_err_t loc_err = actrls_process_button(button, cur_config);
  483. err = (err == ESP_OK) ? loc_err : err;
  484. if (loc_err == ESP_OK) {
  485. if (create) button_create((void*) cur_config, cur_config->gpio,cur_config->type,
  486. cur_config->pull,cur_config->debounce, control_handler,
  487. cur_config->long_press, cur_config->shifter_gpio);
  488. } else {
  489. ESP_LOGE(TAG,"Error parsing button structure. Button will not be registered.");
  490. }
  491. cur_config++;
  492. }
  493. } else {
  494. ESP_LOGE(TAG,"Invalid configuration; array is expected and none received in %s ", config);
  495. }
  496. cJSON_Delete(buttons);
  497. }
  498. // Now update the global json_config object. If we are recursively processing menu structures,
  499. // the last init that completes will assigh the first json config object found, which will match
  500. // the default config from nvs.
  501. json_config = config_root;
  502. exit:
  503. free(config);
  504. return err;
  505. }
  506. /****************************************************************************************
  507. *
  508. */
  509. void actrls_set_default(const actrls_t controls, bool raw_controls, actrls_hook_t *hook, actrls_ir_handler_t *ir_handler) {
  510. memcpy(default_controls, controls, sizeof(actrls_t));
  511. memcpy(current_controls, default_controls, sizeof(actrls_t));
  512. default_hook = current_hook = hook;
  513. default_raw_controls = current_raw_controls = raw_controls;
  514. default_ir_handler = current_ir_handler = ir_handler;
  515. }
  516. /****************************************************************************************
  517. *
  518. */
  519. void actrls_set(const actrls_t controls, bool raw_controls, actrls_hook_t *hook, actrls_ir_handler_t *ir_handler) {
  520. memcpy(current_controls, controls, sizeof(actrls_t));
  521. current_hook = hook;
  522. current_raw_controls = raw_controls;
  523. current_ir_handler = ir_handler;
  524. }
  525. /****************************************************************************************
  526. *
  527. */
  528. void actrls_unset(void) {
  529. memcpy(current_controls, default_controls, sizeof(actrls_t));
  530. current_hook = default_hook;
  531. current_raw_controls = default_raw_controls;
  532. current_ir_handler = default_ir_handler;
  533. }