common.h 21 KB

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  1. /*********************************************************************************************************
  2. * Module : common
  3. * Abstract : defined data structure!
  4. * Version : 1.0.0
  5. * Author : Leopul(COPYRIGHT 2025 ~ 2027 Leopul. All rights reserved.)
  6. * Complete : 2025-02-16
  7. * Content : None
  8. * Note : None
  9. *********************************************************************************************************/
  10. #ifndef _COMMON_H_
  11. #define _COMMON_H_
  12. #include "stdint.h"
  13. #include "board_cfg.h"
  14. #define START_R_REGISTER 4000
  15. #define DEVICE_ID_LEN 1
  16. #define ELE_DATA 4011
  17. #define ELE_DATA_LEN (12 * RelaySlaveChaNum)
  18. #define RELAY_STATE 4209
  19. #define RELAY_STATE_LEN (RelaySlaveChaNum)
  20. #define CHANNEL_ALL_CONSUMER 4250
  21. #define CHANNEL_ALL_CONSUMER_LEN (2 * RelaySlaveChaNum)
  22. #define DETECTION 4310
  23. #define DETECTION_LEN 1
  24. #define INFOMATION (4360)
  25. #define OPEN_DELAY (4500)
  26. #define OPEN_DELAY_LEN (RelaySlaveChaNum)
  27. #define CLOSE_DELAY (4518)
  28. #define CLOSE_DELAY_LEN (RelaySlaveChaNum)
  29. #define SET_STATE (4586)
  30. #define SET_STATE_LEN (RelaySlaveChaNum)
  31. #define VALUE_THR (4629)
  32. #define VALUE_THR_LEN (RelaySlaveChaNum*2*8)
  33. #define CHANNEL_FUNC (5100)
  34. #define CHANNEL_FUNC_LEN (RelaySlaveChaNum)
  35. #define CLEAR_CONSUMER (5120)
  36. #define CLEAR_CONSUMER_LEN (RelaySlaveChaNum)
  37. #define CLEAR_CONSUMER_ALL (5128)
  38. #define SET_PT_KV (5129)
  39. #define SET_PT_KV_LEN (2)
  40. #define SET_PT_KI (5131)
  41. #define SET_PT_KI_LEN (2)
  42. #define TOTAL_THR (5200)
  43. #define TOTAL_THR_LEN (16)
  44. #define TOTAL_CHANNEL_FUNC (5250)
  45. #define BREAKE_UPGRATE (5260)
  46. #define START_R_LENTH (250)
  47. #define START_RW_REGISTER (START_R_REGISTER + START_R_LENTH)
  48. #define START_RW_LENTH (350)
  49. #define START_W_REGISTER (START_RW_REGISTER+START_RW_LENTH)
  50. #define START_W_LENTH (100)
  51. //#define
  52. #define MAX_CHANNEL 9
  53. #define MAX_INPUT_CAHNNEL 3
  54. #define VERSION_LENTH 6
  55. #define DATA_LENTH 16
  56. #define VOLTAGE_MAX (1 << 0)
  57. #define VOLTAGE_MIN (1 << 1)
  58. #define CURRENT_MAX (1 << 2)
  59. #define POWER_MAX (1 << 3)
  60. #define CONSUMER_MAX (1 << 4)
  61. #define FREQ_MAX (1 << 5)
  62. #define FREQ_MIN (1 << 6)
  63. #define VOLTAGE_MAX_EN VOLTAGE_MAX
  64. #define VOLTAGE_MIN_EN VOLTAGE_MIN
  65. #define CURRENT_MAX_EN CURRENT_MAX
  66. #define POWER_MAX_EN POWER_MAX
  67. #define CONSUMER_MAX_EN CONSUMER_MAX
  68. #define FREQ_MAX_EN FREQ_MAX
  69. #define FREQ_MIN_EN FREQ_MIN
  70. #define VOL_MAX_OVER_FUNC VOLTAGE_MAX
  71. #define VOL_MIN_OVER_FUNC VOLTAGE_MIN
  72. #define CUR_MAX_OVER_FUNC CURRENT_MAX
  73. #define POW_MAX_OVER_FUNC POWER_MAX
  74. #define CON_MAX_OVER_FUNC CONSUMER_MAX
  75. #define FREQ_MAX_OVER_FUNC FREQ_MAX
  76. #define FREQ_MIN_OVER_FUNC FREQ_MIN
  77. #define VOLTAGE_MAX_DIS_EN (~(VOLTAGE_MAX_EN))
  78. #define VOLTAGE_MIN_DIS_EN (~(VOLTAGE_MIN_EN))
  79. #define CURRENT_MAX_DIS_EN (~(CURRENT_MAX_EN))
  80. #define POWER_MAX_DIS_EN (~(POWER_MAX_EN))
  81. #define CONSUMER_MAX_DIS_EN (~(CONSUMER_MAX_EN))
  82. #define FREQ_MAX_DIS_EN (~(FREQ_MAX_EN))
  83. #define FREQ_MIN_DIS_EN (~(FREQ_MIN_EN))
  84. #define IS_VOLTAGE_MAX_EN(reg) ((reg) & VOLTAGE_MAX_EN)
  85. #define IS_VOLTAGE_MIN_EN(reg) ((reg) & VOLTAGE_MIN_EN)
  86. #define IS_CURRENT_MAX_EN(reg) ((reg) & CURRENT_MAX_EN)
  87. #define IS_POWER_MAX_EN(reg) ((reg) & POWER_MAX_EN)
  88. #define IS_CONSUMER_MAX_EN(reg) ((reg) & CONSUMER_MAX_EN)
  89. #define IS_FREQ_MAX ((reg) & FREQ_MAX_EN)
  90. #define IS_FREQ_MIN ((reg) & FREQ_MIN_EN)
  91. #define SET_VOLTAGE_MAX_EN(reg) ((reg) |= VOLTAGE_MAX_EN)
  92. #define SET_VOLTAGE_MIN_EN(reg) ((reg) |= VOLTAGE_MIN_EN)
  93. #define SET_CURRENT_MAX_EN(reg) ((reg) |= CURRENT_MAX_EN)
  94. #define SET_POWER_MAX_EN(reg) ((reg) |= POWER_MAX_EN)
  95. #define SET_CONSUMER_MAX_EN(reg) ((reg) |= CONSUMER_MAX_EN)
  96. #define SET_FREQ_MAX_EN(reg) ((reg) |= FREQ_MAX_EN)
  97. #define SET_FREQ_MIN_EN(reg) ((reg) |= FREQ_MIN_EN)
  98. #define UNSET_VOLTAGE_MAX_EN(reg) ((reg) &= VOLTAGE_MAX_DIS_EN)
  99. #define UNSET_VOLTAGE_MIN_EN(reg) ((reg) &= VOLTAGE_MIN_DIS_EN)
  100. #define UNSET_CURRENT_MAX_EN(reg) ((reg) &= CURRENT_MAX_DIS_EN)
  101. #define UNSET_POWER_MAX_EN(reg) ((reg) &= POWER_MAX_DIS_EN)
  102. #define UNSET_CONSUMER_MAX_EN(reg) ((reg) &= CONSUMER_MAX_DIS_EN)
  103. #define UNSET_FREQ_MAX_EN(reg) ((reg) &= FREQ_MAX_DIS_EN)
  104. #define UNSET_FREQ_MIN_EN(reg) ((reg) &= FREQ_MIN_DIS_EN)
  105. #define SET_WANNING_VOLTAGE_MAX(reg) ((reg) |= VOLTAGE_MAX)
  106. #define SET_WANNING_VOLTAGE_MIN(reg) ((reg) |= VOLTAGE_MIN)
  107. #define SET_WANNING_CURRENT_MAX(reg) ((reg) |= CURRENT_MAX)
  108. #define SET_WANNING_POWER_MAX(reg) ((reg) |= POWER_MAX)
  109. #define SET_WANNING_CONSUMER_MAX(reg) ((reg) |= CONSUMER_MAX)
  110. #define SET_WANNING_FREQ_MAX(reg) ((reg) |= FREQ_MAX)
  111. #define SET_WANNING_FREQ_MIN(reg) ((reg) |= FREQ_MIN)
  112. #define UNSET_WANNING_VOLTAGE_MAX(reg) ((reg) &= (~VOLTAGE_MAX))
  113. #define UNSET_WANNING_VOLTAGE_MIN(reg) ((reg) &= (~VOLTAGE_MIN))
  114. #define UNSET_WANNING_CURRENT_MAX(reg) ((reg) &= (~CURRENT_MAX))
  115. #define UNSET_WANNING_POWER_MAX(reg) ((reg) &= (~POWER_MAX))
  116. #define UNSET_WANNING_CONSUMER_MAX(reg) ((reg) &= (~CONSUMER_MAX))
  117. #define UNSET_WANNING_FREQ_MAX(reg) ((reg) &= (~FREQ_MAX))
  118. #define UNSET_WANNING_FREQ_MIN(reg) ((reg) &= (~FREQ_MIN))
  119. #define IS_OVERFUNC_VOLTAGE_MAX(reg) ((reg) & VOL_MAX_OVER_FUNC)
  120. #define IS_OVERFUNC_VOLTAGE_MIN(reg) ((reg) & VOL_MIN_OVER_FUNC)
  121. #define IS_OVERFUNC_CURRENT_MAX(reg) ((reg) & CUR_MAX_OVER_FUNC)
  122. #define IS_OVERFUNC_POWER_MAX(reg) ((reg) & POW_MAX_OVER_FUNC)
  123. #define IS_OVERFUNC_CONSUMER_MAX(reg) ((reg) & CON_MAX_OVER_FUNC)
  124. #define IS_OVERFUNC_FREQ_MAX(reg) ((reg) & FREQ_MAX_OVER_FUNC)
  125. #define IS_OVERFUNC_FREQ_MIN(reg) ((reg) & FREQ_MIN_OVER_FUNC)
  126. // EEPROM
  127. #define EEPROM_RELAY_STARTUS_ADDR (0)
  128. #define EEPROM_RELAY_BYTES (2)
  129. #define EEPROM_RELAY_COUNT_MAX (64) /* 2 page */
  130. #define EEPROM_DELAY_ADDR (64)
  131. #define EEPROM_DELAY_BYTES (2)
  132. #define EEPROM_DELAY_COUNT_MAX (64) /* 2 page */
  133. #define EEPROM_THRESHOLD_INPUT_ADDR (128)
  134. #define EEPROM_THRESHOLD_INPUT_BYTES (4)
  135. #define EEPROM_THRESHOLD_INPUT_MAX (64) /* 2 page */
  136. #define EEPROM_THRESHOLD_OUTPUT_ADDR (192)
  137. #define EEPROM_THRESHOLD_OUTPUT_BYTES (4)
  138. #define EEPROM_THRESHOLD_OUTPUT_MAX (256) /* 8 page */
  139. #define EEPROM_INPUT_OVER_FUNC_ADDR (448)
  140. #define EEPROM_INPUT_OVER_FUNC_BYTES (2)
  141. #define EEPROM_INPUT_OVER_FUNC_MAX (32) /* 1 page */
  142. #define EEPROM_OUTPUT_OVER_FUNC_ADDR (480)
  143. #define EEPROM_OUTPUT_OVER_FUNC_BYTES (2)
  144. #define EEPROM_OUTPUT_OVER_FUNC_MAX (32) /* 1 page */
  145. #define EEPROM_DEVICES_ADDR (0) //device signal
  146. #define EEPROM_DEVICES_LENTH (2)
  147. #define EEPROM_STATUS_ADDR (64) // one page
  148. #define EEPROM_STATUS_LENTH (16*2)
  149. #define EEPROM_OTHER_ADDR (128)
  150. #define EEPROM_OTHER_LENTH (32*30) // 30 page
  151. #define EEPROM_CHANNEL_PHASE (2048)
  152. #define EEPROM_CHANNEL_LENTH (9)
  153. //#define EEPROM_CHN_CTRL (2080)
  154. //#define EEPROM_CHN_CTRL_LENTH (32) //one page
  155. #define CONSUM_PAGE (64)
  156. #define MAX_ROW (40)
  157. #define EEPROM_CONSUMER_ADDR (3072)
  158. #define EEPROM_CONSUMER_ADDR_LEN (CONSUM_PAGE*MAX_ROW)
  159. #define EEPROM_K_V_ADDR (6144)
  160. #define EEPROM_K_V_LEN (4)
  161. #define EEPROM_K_I_ADDR (6176)
  162. #define EEPROM_K_I_LEN (4)
  163. #define THRESHOLD_IN 0
  164. #define THRESHOLD_OUT 1
  165. #define ELE_INPUT 0
  166. #define ELE_OUTPUT 1
  167. #define AC3PPDU_Lack_Voltage (30000)
  168. #define Default_Consum_Max (4000000000)
  169. #define Default_Voltage_Max (1000000000)
  170. #define Default_Current_Max (1000000000)
  171. #define Default_Power_Max (1000000000)
  172. #define THRESHOULD_JUDGMENT (50)
  173. /* relay controller */
  174. #define RL_STATUS (1 << 0)
  175. #define RL_COUNTER_END_FLAG (1 << 1)
  176. #define RL_COUNTER_BEGIN_FLAG (1 << 2)
  177. #define RL_ORDER_FLAG (1 << 3)
  178. #define RL_ON_FLAG (1 << 4)
  179. #define RL_OFF_FLAG (1 << 5)
  180. #define RL_ON_DELAY_FLAG (1 << 6)
  181. #define RL_OFF_DELAY_FLAG (1 << 7)
  182. #define GET_RL_STATUS(reg) (reg & (RL_STATUS))
  183. #define IS_RL_ORDER_FLAG_EN(reg) (reg & RL_ORDER_FLAG)
  184. #define IS_RL_COUNTER_END_FLAG_EN(reg) (reg & RL_COUNTER_END_FLAG)
  185. #define IS_RL_COUNTER_BEGINE_FLAG_EN(reg) (reg & RL_COUNTER_BEGIN_FLAG)
  186. #define IS_RL_ON_FLAG_EN(reg) (reg & RL_ON_FLAG)
  187. #define IS_RL_OFF_FLAG_EN(reg) (reg & RL_OFF_FLAG)
  188. #define IS_RL_ON_DELAY_FLAG_EN(reg) (reg & RL_ON_DELAY_FLAG)
  189. #define IS_RL_OFF_DELAY_FLAG_EN(reg) (reg & RL_OFF_DELAY_FLAG)
  190. #define SET_RL_STATUS(reg,value) ((reg) = ((value) ? ((reg) | 1) : ((reg) & (~1))))
  191. #define SET_RL_ORDER_FLAG(reg) (reg |= RL_ORDER_FLAG)
  192. #define SET_RL_COUNTER_END_FLAG(reg) (reg |= RL_COUNTER_END_FLAG)
  193. #define SET_RL_COUNTER_BEGIN_FLAG(reg) (reg |= RL_COUNTER_BEGIN_FLAG )
  194. #define SET_RL_ON_FLAG(reg) (reg |= RL_ON_FLAG)
  195. #define SET_RL_OFF_FLAG(reg) (reg |= RL_OFF_FLAG)
  196. #define SET_RL_ON_DELAY_FLAG(reg) (reg |= RL_ON_DELAY_FLAG)
  197. #define SET_RL_OFF_DELAY_FLAG(reg) (reg |= RL_OFF_DELAY_FLAG)
  198. #define CLEAR_RL_ORDER_FLAG(reg) (reg &= (~(RL_ORDER_FLAG)))
  199. #define CLEAR_RL_COUNTER_END_FLAG(reg) (reg &= (~(RL_COUNTER_END_FLAG)))
  200. #define CLEAR_RL_COUNTER_BEGIN_FLAG(reg) (reg &= (~(RL_COUNTER_BEGIN_FLAG)))
  201. #define CLEAR_RL_ON_FLAG(reg) (reg &= (~(RL_ON_FLAG)))
  202. #define CLEAR_RL_OFF_FLAG(reg) (reg &= (~(RL_OFF_FLAG)))
  203. #define CLEAR_RL_ON_DELAY_FLAG(reg) (reg &= (~(RL_ON_DELAY_FLAG)))
  204. #define CLEAR_RL_OFF_DELAY_FLAG(reg) (reg &= (~(RL_OFF_DELAY_FLAG)))
  205. enum{
  206. DELAY_CTRL = 0,
  207. PROMPT_CTRL,
  208. };
  209. enum{
  210. STM32_ADC_V_1 = 0,
  211. STM32_ADC_V_2,
  212. };
  213. #pragma pack (2)
  214. typedef struct {
  215. uint32_t uniq_3;
  216. uint32_t uniq_2;
  217. uint32_t uniq_1;
  218. uint32_t dev_chn;
  219. uint16_t version[6];
  220. uint16_t date[16];
  221. uint64_t keep_running_time;
  222. }board_info_t;
  223. typedef struct {
  224. uint32_t voltage;
  225. uint32_t current;
  226. uint32_t power;
  227. uint32_t freq;
  228. uint32_t consumer;
  229. uint32_t factor;
  230. }old_ele_info_t;
  231. typedef struct
  232. {
  233. uint16_t state :1;
  234. uint16_t v_top_en :1;
  235. uint16_t v_top_wanning :1;
  236. uint16_t v_down_en :1;
  237. uint16_t v_down_wanning :1;
  238. uint16_t c_top_en :1;
  239. uint16_t c_top_wanning :1;
  240. uint16_t p_top_en :1;
  241. uint16_t p_top_wanning :1;
  242. uint16_t e_top_en :1;
  243. uint16_t e_top_wanning :1;
  244. uint16_t :5;
  245. }old_state_t;
  246. typedef uint32_t old_consumer_t;
  247. typedef struct {
  248. old_ele_info_t ele_info[8];
  249. }ac_ele_t;
  250. typedef struct {
  251. old_state_t state[8];
  252. }ac_state_t;
  253. typedef struct {
  254. old_consumer_t consumer[8];
  255. }ac_consumer_t;
  256. typedef uint32_t ac_total_consumer_t;
  257. typedef struct{
  258. uint16_t i_max_func : 1;
  259. uint16_t v_max_func : 1;
  260. uint16_t v_min_func : 1;
  261. uint16_t p_max_func : 1;
  262. uint16_t c_max_func : 1;
  263. uint16_t : 3;
  264. }ac_over_func_t;
  265. typedef struct{
  266. uint16_t total_v_wanning_max : 1;
  267. uint16_t total_v_wanning_min : 1;
  268. uint16_t total_i_wanning_max : 1;
  269. uint16_t total_p_waning_max : 1;
  270. uint16_t total_c_waning_max : 1;
  271. uint16_t : 3;
  272. }total_waning_t;
  273. typedef struct {
  274. uint32_t uniq_ID_64_95;
  275. uint32_t uniq_ID_32_63;
  276. uint32_t uniq_ID_00_31;
  277. int channels;
  278. char ver[12];
  279. char date[32];
  280. uint64_t runing_time;
  281. }ac_information_t;
  282. typedef struct {
  283. uint16_t delay_open[8];
  284. }ac_delay_open_t;
  285. typedef struct {
  286. uint16_t delay_close[8];
  287. }ac_delay_close_t;
  288. typedef struct {
  289. uint32_t v_top;
  290. uint32_t v_down;
  291. uint32_t i_top;
  292. uint32_t i_down;
  293. uint32_t p_top;
  294. uint32_t p_down;
  295. uint32_t e_top;
  296. uint32_t e_down;
  297. }thr_t;
  298. typedef struct {
  299. thr_t th[8];
  300. }ac_thr_t;
  301. typedef thr_t all_thr_t;
  302. //typedef uint16_t all_over_func_t;
  303. typedef struct {
  304. uint16_t dev_chn;
  305. ac_ele_t ac_ele;
  306. ac_state_t state;
  307. ac_consumer_t consumer;
  308. uint32_t total_sonsumer;
  309. uint16_t detection;
  310. total_waning_t total_wanning;
  311. ac_information_t info;
  312. }ac_r_data_t;
  313. typedef struct{
  314. ac_delay_open_t open;
  315. ac_delay_close_t close;
  316. ac_thr_t thr;
  317. all_thr_t totol_thr;
  318. ac_over_func_t over_func[8];
  319. }ac_rw_data_t;
  320. typedef struct {
  321. uint32_t voltage;
  322. uint32_t current;
  323. uint32_t power;
  324. uint32_t consumer;
  325. uint16_t freq;
  326. uint16_t factor;
  327. uint16_t wanning;
  328. uint16_t resever;
  329. }elect_info_t;
  330. typedef struct{
  331. elect_info_t info[3];
  332. }elect_3_info_t;
  333. typedef struct {
  334. uint16_t delay_open;
  335. uint16_t delay_close;
  336. }delay_t;
  337. typedef struct{
  338. uint32_t th_voltage_max;
  339. uint32_t th_voltage_min;
  340. uint32_t th_current_max;
  341. uint32_t th_power_max;
  342. uint32_t th_consumer_max;
  343. uint32_t reserve1;
  344. uint32_t reserve2;
  345. }threshold_t;
  346. typedef struct {
  347. uint16_t dev_chn;
  348. board_info_t b_info;
  349. elect_3_info_t ele_3_in;
  350. elect_info_t ele_out[MAX_CHANNEL];
  351. uint16_t detection;
  352. uint16_t wanning_lock_L1;
  353. uint16_t wanning_lock_L2;
  354. uint16_t wanning_lock_L3;
  355. }r_data_t;
  356. typedef struct {
  357. uint16_t relay_status[MAX_CHANNEL];
  358. uint16_t combin_relay_status[4];
  359. uint16_t zero_relay_status[3];
  360. delay_t delay_chn[MAX_CHANNEL];
  361. delay_t combin_chn[4];
  362. delay_t zero_chn[3];
  363. threshold_t th_in[MAX_INPUT_CAHNNEL];
  364. threshold_t th_out[MAX_CHANNEL];
  365. threshold_t th_combin_out[4];
  366. uint16_t over_fun_in[3];
  367. uint16_t over_func_out[MAX_CHANNEL];
  368. uint16_t combin_over_func[4];
  369. uint16_t chn_ctrl[MAX_CHANNEL];
  370. #define CTRL_YES 0
  371. #define CTRL_HARD_OPEN 1
  372. #define CTRL_HARD_CLOSE 2
  373. }rw_data_t;
  374. typedef union{
  375. uint16_t data[START_R_LENTH];
  376. r_data_t r_d;
  377. }mod_bus_r;
  378. typedef union{
  379. uint16_t data[START_RW_LENTH];
  380. rw_data_t rw_d;
  381. }mod_bus_rw;
  382. typedef struct {
  383. //mod_bus_r r_data;
  384. //mod_bus_rw rw_data;
  385. ac_r_data_t r_data;
  386. ac_rw_data_t rw_data;
  387. }mod_data_t;
  388. typedef struct {
  389. uint32_t iic_consumer[MAX_CHANNEL];
  390. uint64_t recode_index1;
  391. }iic_consumer_chache_t;
  392. typedef union{
  393. uint8_t data[64];
  394. iic_consumer_chache_t iic_con;
  395. }iic_data;
  396. typedef union{
  397. uint8_t data[4];
  398. uint32_t value;
  399. }Rx_Data;
  400. #pragma pack ()
  401. typedef struct{
  402. iic_data iic_da;
  403. uint64_t index;
  404. uint16_t row;
  405. }consumer_data;
  406. typedef struct {
  407. uint8_t flag;
  408. uint16_t start_addr;
  409. uint16_t lenth;
  410. uint8_t data[72];
  411. }eeprom_write_cache_t;
  412. typedef struct {
  413. uint16_t start_addr;
  414. uint16_t lenth;
  415. uint8_t data[36];
  416. }w_eeprom_data_t;
  417. typedef struct {
  418. #define QUEUE_MAX 25
  419. uint8_t front;
  420. uint8_t rear;
  421. w_eeprom_data_t data[QUEUE_MAX];
  422. uint8_t (*is_empty)(void);
  423. uint8_t (*is_full)(void);
  424. uint8_t (*en_queue)(w_eeprom_data_t *d);
  425. uint8_t (*de_queue)(w_eeprom_data_t *d);
  426. }queue_t;
  427. typedef struct {
  428. uint8_t fire_or_zero;
  429. #define _FIRE 0
  430. #define _ZERO 1
  431. uint8_t channel;
  432. uint16_t *reg;
  433. uint8_t method;
  434. uint16_t status;
  435. uint8_t w_eep_flag;
  436. #define FLAG_N_W_EEP 0
  437. #define FLAG_W_EEP 1
  438. }async_data;
  439. typedef struct {
  440. mod_data_t md_data;
  441. uint8_t flag_1s;
  442. uint8_t flag_10s;
  443. uint8_t flag_100ms;
  444. uint8_t clear_flag; /* erase consumer and all successful this flag is 0 */
  445. uint8_t out_wanning_en[8];
  446. uint8_t in_wanning_en[MAX_INPUT_CAHNNEL];
  447. uint8_t in_over_func[3];
  448. uint8_t over_func[MAX_CHANNEL];
  449. uint16_t relay_staging_staus[MAX_CHANNEL];
  450. //uint16_t relay_combin_staging_status[4];
  451. //uint16_t relay_zero_staging_status[3];
  452. uint16_t relay_limit_counter[MAX_CHANNEL];
  453. //uint16_t relay_zero_limit_counter[3];
  454. consumer_data con_da;
  455. uint32_t ele_restore[MAX_CHANNEL];
  456. uint16_t v_k[2];
  457. uint16_t i_k[2];
  458. uint8_t haddr;
  459. uint8_t detection_1_value;
  460. uint32_t detection_1_count;
  461. uint32_t timer_count;
  462. queue_t q_cache;
  463. #if SURPPORT_2_PT
  464. uint8_t detection_2_value;
  465. uint32_t detection_2_count;
  466. #endif
  467. #if SUPPORT_SELF_LOCK
  468. // #if (RelaySlaveChaNum >= 1)
  469. // uint8_t handle_k_1_status;
  470. // uint8_t key_1;
  471. // #endif
  472. // #if (RelaySlaveChaNum >= 2)
  473. // uint8_t handle_k_2_status;
  474. // uint8_t key_2;
  475. // #endif
  476. // #if (RelaySlaveChaNum >= 3)
  477. // uint8_t handle_k_3_status;
  478. // uint8_t key_3;
  479. // #endif
  480. // #if (RelaySlaveChaNum >= 4)
  481. // uint8_t handle_k_4_status;
  482. // uint8_t key_4;
  483. // #endif
  484. uint8_t handle_k_status[4];
  485. uint8_t val_key[4];
  486. #endif
  487. #if SUPPORT_RELAY_REMENBER
  488. uint8_t handle_status[MAX_CHANNEL]; /* Save the state before the power failure */
  489. #if SURPPORT_2_PT
  490. uint8_t handle_input_pt[2]; /* recode input status */
  491. #else
  492. uint8_t handle_input_pt[1];
  493. #endif
  494. #endif
  495. #if SUPPORT_SELF_LOCK
  496. // #if (RelaySlaveChaNum >= 1)
  497. // void (*read_key_1)();
  498. // #endif
  499. // #if (RelaySlaveChaNum >= 2)
  500. // void (*read_key_2)();
  501. // #endif
  502. // #if (RelaySlaveChaNum >= 3)
  503. // void (*read_key_3)();
  504. // #endif
  505. // #if (RelaySlaveChaNum >= 4)
  506. // void (*read_key_4)();
  507. // #endif
  508. void (*get_lock_key)();
  509. void (*opt_lock_key)();
  510. #endif
  511. void (*open)(uint8_t channel);
  512. void (*close)(uint8_t channel);
  513. void (*read_ele)(uint8_t channel);
  514. void (*led_flash)(void);
  515. void (*read_eeprom)(uint16_t addr,uint8_t *r_buff,uint16_t lenth);
  516. void (*write_eeprom)(uint16_t addr,uint8_t *w_buff,uint16_t lenth);
  517. void (*check_wanning)(uint8_t in_out, uint8_t channel);
  518. void (*detection)(void);
  519. void (*opt_detection)(void);
  520. void (*erase_consumer)(void);
  521. void (*opt_overfunc)(uint8_t channel);
  522. void (*opt_alloverfunc)(uint8_t input);
  523. void (*break_uboot)(void);
  524. void (*feed_dog)(void);
  525. void (*lock)(void);
  526. void (*unlock)(void);
  527. void (*check_threshold)(uint8_t in_out,uint8_t channel);
  528. void (*relay_sync)(void);
  529. void (*read_eeprom_page)(uint16_t addr,uint8_t *r_buff,uint16_t lenth);
  530. void (*write_eeprom_page)(uint16_t addr,uint8_t *r_buff,uint16_t lenth);
  531. }board_t;
  532. board_t *get_board(void);
  533. void set_relay_status_async(uint16_t *reg,uint8_t method,uint16_t status);
  534. void read_config_from_eeprom(void);
  535. void reset_config_for_eeprom(void);
  536. void set_relay_sta_async(async_data *data);
  537. #endif