datadef.h 22 KB

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  1. #ifndef __DATADEF_Hx__
  2. #define __DATADEF_Hx__
  3. #include <stdint.h>
  4. #include "log.h"
  5. #define POWER_CH_MAX 12
  6. #define POWER_BOARD_MAX 32
  7. #define POWER_BOARD_TIMEOUT 200
  8. #define POWER_RETRY_TIMES 3
  9. #define POWER_SLAVE_CH_MAX 32
  10. #define POWER_CASCADE_MAX 32
  11. #define BREAKER_BOARD_MAX 8
  12. #define BREAKER_CH_MAX 6
  13. #define BREAKER_BOARD_ADDR_START 64
  14. enum {
  15. RW_READ=0, //读
  16. RW_WRITE //写
  17. };
  18. enum{
  19. A_P = 0,
  20. B_P,
  21. C_P,
  22. };
  23. enum {
  24. TIME_ABS=0, //绝对时间
  25. TIME_REL //相对时间
  26. };
  27. enum {
  28. LOOP_HOUR=0,
  29. LOOP_DAY,
  30. LOOP_WEEK,
  31. LOOP_MONTH,
  32. LOOP_YEAR,
  33. LOOP_USER
  34. };
  35. enum {
  36. PDU_AC_I1O1=0,
  37. PDU_DC_I1O1,
  38. PDU_AC_I3O3=3,
  39. PDU_AC_I3O1,
  40. PDU_AC_I3O1_H,
  41. };
  42. enum {
  43. ALARM_TYPE_POWER=0,
  44. ALARM_TYPE_SENSOR,
  45. ALARM_TYPE_NETWORK,
  46. ALARM_TYPE_OPRATION,
  47. ALARM_TYPE_RUNNING,
  48. ALARM_TYPE_MAX
  49. };
  50. enum {
  51. ALARM_V_UPPER=0,
  52. ALARM_V_LOWER,
  53. ALARM_C_UPPER,
  54. ALARM_W_UPPER,
  55. ALARM_P_UPPER,
  56. ALARM_PH_LOSS,
  57. ALARM_MAX
  58. };
  59. enum {
  60. ALARM_ACT_CLOSE_CH=1,
  61. ALARM_ACT_MESG,
  62. ALARM_ACT_CLOSE_CHALL,
  63. };
  64. enum {
  65. IP_MODE_DHCP=0,
  66. IP_MODE_STATIC,
  67. };
  68. enum {
  69. IP_VER_ERR=0,
  70. IP_VER_V4,
  71. IP_VER_V6,
  72. };
  73. enum {
  74. MODBUS_MASTER=0,
  75. MODBUS_SLAVE,
  76. };
  77. enum {
  78. SNMP_AUTH_NONE=0,
  79. SNMP_AUTH_MD5,
  80. SNMP_AUTH_SHA,
  81. SNMP_AUTH_MAX
  82. };
  83. enum {
  84. SNMP_ENCYPT_NONE=0,
  85. SNMP_ENCYPT_DES,
  86. SNMP_ENCYPT_AES,
  87. SNMP_ENCYPT_MAX
  88. };
  89. enum
  90. {
  91. SENSOR_TYPE_TEMP_HUMI=0, //温湿度传感器
  92. SENSOR_TYPE_SMOKE, //烟雾传感器
  93. SENSOR_TYPE_WATER, //水浸传感器
  94. SENSOR_TYPE_ACCESS, //门禁传感器
  95. SENSOR_TYPE_GAS, //气体传感器
  96. SENSOR_TYPE_AIR_PRESS, //气压传感器
  97. SENSOR_TYPE_AIR_COND, //空条传感器
  98. SENSOR_TYPE_LEAK, //泄漏传感器
  99. SENSOR_TYPE_TEMP, //温度传感器
  100. SENSOR_TYPE_TEMP_DOUBLE, //双温度传感器
  101. SENSOR_TYPE_PRESS, //压力传感器
  102. SENSOR_TYPE_MAX,
  103. };
  104. enum {
  105. SENSOR_TYPE_TEMP_HUMI_RSWSN01PVC=0,
  106. SENSOR_TYPE_TEMP_HUMI_HKSHT301T1H536VRS485,
  107. SENSOR_TYPE_TEMP_HUMI_MAX
  108. };
  109. enum {
  110. SENSOR_TYPE_TEMP_DOUBLE_DL10BM485V24D2=0,
  111. SENSOR_TYPE_TEMP_DOUBLE_MAX
  112. };
  113. enum {
  114. SENSOR_TYPE_TEMP_BTG50H8EL3200=0,
  115. SENSOR_TYPE_TEMP_MAX
  116. };
  117. enum {
  118. SENSOR_TYPE_LEAK_XWDC01A=0,
  119. SENSOR_TYPE_LEAK_MAX
  120. };
  121. enum {
  122. LANG_ID_CHINESE=0,
  123. LANG_ID_ENGLISH,
  124. LANG_ID_RUSSIAN,
  125. LANG_ID_SPANISH,
  126. LANG_ID_PORTYGYESE,
  127. LANG_ID_GERMAN,
  128. LANG_ID_FRENCH,
  129. LANG_ID_ITALIAN,
  130. LANG_ID_JAPANESE,
  131. LANG_ID_MAX
  132. };
  133. ////////////////////////////////////////////////
  134. #pragma pack (1)
  135. typedef struct {
  136. uint16_t year;
  137. uint8_t mon;
  138. uint8_t day;
  139. uint8_t hour;
  140. uint8_t min;
  141. uint8_t sec;
  142. }datetime_t;
  143. typedef struct {
  144. uint8_t mode;
  145. uint8_t addr;
  146. uint32_t baud;
  147. }modbus_data_t;
  148. typedef struct {
  149. uint8_t mode; //0:DHCP 1:STATIC
  150. char ipaddr[48]; //
  151. char mask[48]; //
  152. char gateway[48]; //
  153. char dns1[48]; //dns1
  154. char dns2[48]; //dns2
  155. }network_data_t;
  156. typedef struct {
  157. uint32_t id; //产品ID
  158. char pname[32]; //产品名称
  159. char pnumber[32]; //产品编号
  160. char status[32]; //产品状态
  161. char name[32]; //设备名称
  162. char number[32]; //设备编号
  163. char date[32]; //设备生产日期
  164. char batch[32]; //设备生产批次
  165. uint8_t type; //产品类型
  166. uint8_t count; //级联设备数
  167. uint32_t samp_time; //采集周期 单位ms
  168. uint32_t save_time; //采集周期 单位ms
  169. uint16_t ph_group; //三组相数
  170. uint16_t ch_delay; //通道延时
  171. }product_data_t;
  172. typedef struct {
  173. uint8_t watchdog;
  174. int32_t flip_time;
  175. uint8_t led;
  176. uint8_t beep;
  177. uint16_t rotate;
  178. }misc_data_t;
  179. typedef struct {
  180. char name[256];
  181. char site[256];
  182. char mail[256];
  183. char addr[256];
  184. char tele[32];
  185. }service_data_t;
  186. typedef struct {
  187. uint32_t id[3];
  188. uint32_t chs;
  189. uint32_t time;
  190. char ver[12];
  191. }board_info_t;
  192. typedef struct {
  193. uint8_t type;
  194. uint8_t chs;
  195. }board_key_t;
  196. typedef struct {
  197. char ver[16];
  198. char bldtime[32];
  199. }version_data_t;
  200. typedef struct {
  201. uint8_t lang;
  202. int8_t tzone;
  203. }system_data_t;
  204. typedef struct {
  205. uint32_t th_max_1;
  206. uint32_t th_min_1;
  207. uint32_t th_max_2;
  208. uint32_t th_min_2;
  209. }sensor_th_t;
  210. typedef struct {
  211. system_data_t sys;
  212. version_data_t ver;
  213. modbus_data_t cas;
  214. misc_data_t misc;
  215. product_data_t prod;
  216. service_data_t serv;
  217. network_data_t netwk;
  218. sensor_th_t sensor[3];
  219. }paras_data_t;
  220. typedef struct {
  221. // float voltage; //电压
  222. // float current; //电流
  223. // float power; //功率(视在)
  224. // float freq; //频率
  225. // float factor; //功率因数
  226. // float consump; //耗电量consumption
  227. // float active; //有功功率
  228. // float reactive; //无功功率
  229. // uint8_t ph_out; //三相输出时,用于判断该相是否有输出
  230. //
  231. // uint8_t status; //开关状态
  232. // uint8_t nwire; //零线状态
  233. uint16_t freq; // 频率 保留1位小数,单位Hz
  234. uint8_t factor; // 因素 保留2位小数,单位fa
  235. uint16_t voltage; // 电压 保留1位小数,单位V
  236. uint16_t current; // 电流 保留1位小数,单位A
  237. uint32_t power; // 功率 保留3位小数,单位W,最大值65535W
  238. uint32_t consump; // 耗电量 保留3位小数,单位kWh
  239. // uint8_t status;
  240. // uint8_t nwire;
  241. }power_t;
  242. //designed by liyi
  243. typedef struct
  244. {
  245. uint16_t freq; // 频率 保留1位小数,单位Hz
  246. uint8_t factor; // 因素 保留1位小数,单位fa
  247. uint16_t voltage; // 电压 保留1位小数,单位V
  248. uint16_t current; // 电流 保留1位小数,单位A
  249. uint32_t power; // 功率 保留0位小数,单位W,最大值65535W
  250. uint32_t consumer; // 耗电量 保留2位小数,单位kWh
  251. }n_power_t; // 16字节 相比于power_t 节约内存,20字节
  252. typedef struct{
  253. uint16_t v_upper;
  254. uint16_t v_lower;
  255. uint16_t c_upper;
  256. uint32_t p_upper;
  257. uint32_t w_upper;
  258. }n_thr_t; //相对于thr_t节约内存 17字节
  259. typedef struct{
  260. uint8_t en;
  261. n_thr_t thr[3];
  262. uint8_t para[14];
  263. }total_thr_t; //总阈值
  264. typedef struct{
  265. uint16_t v_upper : 1; //电压超上限
  266. uint16_t v_lower : 1; //电压超下限
  267. uint16_t c_upper : 1; //电流超上限
  268. uint16_t p_upper : 1; //功率超上限
  269. uint16_t w_upper : 1; //耗电量超上限
  270. uint16_t : 3; //预留
  271. uint16_t ph_1_lose : 1; //缺相L1用于输入端
  272. uint16_t ph_2_lose : 1; //缺相L2用于输入端
  273. uint16_t ph_3_lose : 1; //缺相L3用于输入端
  274. uint16_t : 5; //预留
  275. }n_alarm_t; //告警节约5字节
  276. typedef struct{
  277. char name[16]; //通道信息数据;
  278. uint8_t type;
  279. uint8_t addr;
  280. uint8_t ch; //表头id
  281. uint8_t sch; //在控制板上的通道;
  282. uint8_t ph_id; //相信息
  283. uint8_t status;
  284. uint8_t ph_val;
  285. uint8_t open_delay; //开延时 单位s
  286. uint8_t close_delay; //关延时 单位s
  287. }n_info_t; //节约20字节
  288. //designed over by liyi
  289. typedef struct {
  290. uint8_t en;
  291. float max; //threashold max value
  292. float min; //
  293. uint8_t act;
  294. uint8_t para[14]; //14*8=128 channels
  295. }thr_val_t;
  296. typedef struct {
  297. uint16_t v_upper_en:1;
  298. uint16_t v_lower_en:1;
  299. uint16_t c_upper_en:1;
  300. uint16_t p_upper_en:1;
  301. uint16_t w_upper_en:1;
  302. }thr_en;
  303. typedef struct {
  304. // thr_val_t v_upper;
  305. // thr_val_t v_lower;
  306. // thr_val_t c_upper; //current
  307. // thr_val_t p_upper;
  308. // thr_val_t w_upper; //power consumption
  309. thr_en en;
  310. uint16_t v_upper;
  311. uint16_t v_lower;
  312. uint16_t c_upper;
  313. uint32_t p_upper;
  314. uint32_t w_upper;
  315. }thr_t;
  316. typedef struct {
  317. // uint8_t v_upper; //电压超上限
  318. // uint8_t v_lower; //电压超下限
  319. // uint8_t c_upper; //电流超上限
  320. // uint8_t p_upper; //功率超上限
  321. // uint8_t w_upper; //耗电量超上限
  322. //
  323. // uint8_t ph_loss; //缺相,0,1,2位分别代表L1,L2,L3相,相应位为1则代表缺相,为0则不缺
  324. uint16_t v_upper : 1; //电压超上限
  325. uint16_t v_lower : 1; //电压超下限
  326. uint16_t c_upper : 1; //电流超上限
  327. uint16_t p_upper : 1; //功率超上限
  328. uint16_t w_upper : 1; //耗电量超上限
  329. uint16_t : 3; //预留
  330. uint16_t ph_1_lose : 1; //缺相L1用于输入端
  331. uint16_t ph_2_lose : 1; //缺相L2用于输入端
  332. uint16_t ph_3_lose : 1; //缺相L3用于输入端
  333. uint16_t : 5; //预留
  334. }alarm_t;
  335. typedef struct {
  336. uint8_t ch;
  337. alarm_t alarm;
  338. uint32_t time;
  339. }alarm_data_t;
  340. typedef struct {
  341. char name[16];
  342. uint8_t type;
  343. uint8_t addr;
  344. uint8_t ch; //该通道在全部板上的所排序号,程序始于0,用户始于1
  345. uint8_t sch; //该通道在其所在的板上的序号,程序始于0,用户始于1
  346. uint8_t ph_id; //phase id, 0:L1相 1:L2相 2:L3相
  347. uint8_t ph_val; //三相输出设置,0:单相 1:三相
  348. uint8_t open_delay;
  349. uint8_t close_delay;
  350. }info_t;
  351. typedef struct {
  352. info_t info;
  353. power_t power[3]; //电力信息
  354. thr_t thr; //阈值
  355. alarm_t alarm;
  356. uint8_t status;
  357. uint8_t nwire;
  358. //uint32_t time;
  359. void *pbrd;
  360. }power_ch_t;
  361. typedef struct {
  362. char name[16];
  363. uint8_t addr;
  364. }breaker_info_t;
  365. typedef struct {
  366. uint8_t id; //breaker id
  367. uint8_t nid; //node id
  368. uint8_t sw;
  369. uint32_t time;
  370. }breaker_samp_t;
  371. typedef struct {
  372. breaker_info_t info;
  373. breaker_samp_t samp;
  374. }breaker_data_t;
  375. typedef struct {
  376. uint8_t cnt;
  377. breaker_data_t *data;
  378. }breaker_all_t;
  379. typedef struct {
  380. int (*get_power)(power_ch_t *pch);
  381. int (*get_alarm)(power_ch_t *pch);
  382. int (*set_ch)(power_ch_t *pch);
  383. int (*set_open_delay)(power_ch_t *pch);
  384. int (*set_close_delay)(power_ch_t *pch);
  385. int (*set_kb_value)(power_ch_t *pch);
  386. int (*set_threshold)(power_ch_t *pch);
  387. int (*reset_consump)(power_ch_t *pch);
  388. int (*detect)(uint8_t addr);
  389. int (*get_info)(uint8_t addr, board_info_t *info);
  390. //int (*get_board)(board_data_t *pbrd);
  391. int (*set_board)(uint8_t addr, uint8_t on);
  392. int (*set_all)(uint8_t on);
  393. }board_fn_t;
  394. typedef struct {
  395. board_fn_t fn;
  396. uint8_t type;
  397. uint8_t addr;
  398. uint8_t chs;
  399. uint8_t sw; //开关监测状态
  400. uint8_t ch0; //board ch start
  401. uint8_t ph_loss;
  402. board_info_t info;
  403. breaker_data_t brk[2];
  404. power_ch_t *pch; //根据实际通道数申请连续内存
  405. }board_data_t;
  406. typedef struct {
  407. float voltage; //电压
  408. float current; //电流
  409. float power; //视在功率
  410. float freq; //频率
  411. float factor; //功率因数
  412. float consump; //耗电量
  413. float active; //有功功率
  414. float reactive; //无功功率
  415. }total_t;
  416. typedef struct {
  417. uint8_t type;
  418. total_t total[3];
  419. }power_total_t;
  420. typedef struct {
  421. uint8_t chs; //所有控制板的总通道数
  422. power_ch_t *pch;
  423. power_total_t ttl;
  424. }power_all_t;
  425. typedef struct {
  426. char name[32];
  427. uint8_t type;
  428. uint8_t addr;
  429. }sensor_info_t;
  430. typedef struct {
  431. thr_val_t thr;
  432. float value;
  433. }sensor_val_t;
  434. typedef struct {
  435. sensor_info_t info;
  436. sensor_val_t val[2];
  437. //uint32_t time;
  438. }sensor_data_t;
  439. typedef struct {
  440. uint8_t cnt;
  441. uint8_t max;
  442. sensor_data_t *data;
  443. }sensor_all_t;
  444. typedef struct {
  445. uint8_t type;
  446. uint32_t str_id;
  447. uint32_t sep_id;
  448. uint32_t time;
  449. }alarm_msg_t;
  450. typedef struct {
  451. uint32_t brd[POWER_BOARD_MAX];
  452. uint8_t time_mode; //绝对时间/相对时间
  453. uint32_t time_s; //起始时间, 单位: 秒
  454. uint32_t time_inv; //间隔时间, 单位: 秒
  455. int8_t loop_mode; //按日/周/月/年
  456. int32_t loop_times; //循环次数, 负值为无限循环
  457. }schedule_data_t;
  458. typedef struct cascade_saddr{
  459. uint8_t addr;
  460. uint16_t channels;
  461. //board_fn_t *fn;
  462. power_ch_t ch[POWER_SLAVE_CH_MAX];
  463. }slave_info_t;
  464. //////////////////////////////
  465. typedef struct
  466. {
  467. uint8_t userID; //用户ID
  468. char name[32]; //用户名-登录
  469. char password[32]; //用户密码
  470. char nick[32]; //用户名称
  471. uint8_t roleID; //角色ID
  472. uint32_t time; //用户创建时间
  473. }user_data_t;
  474. typedef struct
  475. {
  476. uint8_t roleID; //角色ID
  477. char roleName[32]; //角色名称
  478. uint8_t roleLevel; //角色等级
  479. char auth[32]; //角色权限
  480. int roleSort; //显示顺序
  481. uint32_t time; //创建时间
  482. }role_data_t;
  483. typedef struct {
  484. char alg[12];
  485. char passwd[64];
  486. }crypt_data_t;
  487. typedef struct {
  488. char user[32];
  489. crypt_data_t auth;
  490. crypt_data_t priv;
  491. }crypt_t;
  492. typedef struct {
  493. uint8_t mode;
  494. uint8_t version;
  495. char publics[64];
  496. uint8_t trapmode;
  497. crypt_t crypt;
  498. char nms_ip[64];
  499. }snmp_data_t;
  500. typedef struct
  501. {
  502. int id;
  503. int use;
  504. char account[64];
  505. }mail_recv_t;
  506. typedef struct
  507. {
  508. uint8_t id;
  509. uint8_t mode; //0: open 1: close
  510. char account[64]; //用户账号
  511. char password[24]; //用户密码
  512. char server[64]; //服务器
  513. char port[10]; //端口
  514. char auth[16]; //认证方式
  515. char *ca; //ca cert
  516. }mail_send_t;
  517. typedef struct
  518. {
  519. mail_send_t send;
  520. #define MAIL_RECV_MAX 10
  521. mail_recv_t recv[MAIL_RECV_MAX]; //接收账号列表
  522. }mail_info_t;
  523. enum {
  524. MQTT_PLAT_EMQX=0,
  525. MQTT_PLAT_ALIYUN,
  526. MQTT_PLAT_MAX
  527. };
  528. typedef struct {
  529. uint8_t id; //id
  530. uint8_t plat; //0: emqx 1: aliyun
  531. uint8_t mode; //0: open 1: close
  532. char proto[16]; //mqtt, mqtts, ws, wss
  533. char name[32]; //server name
  534. char server[256]; //server ip
  535. char port[10]; //server port
  536. char cid[64]; //client ID
  537. char user[32]; //
  538. char password[32];
  539. char *cert;
  540. uint8_t status;
  541. }mqtt_server_t;
  542. typedef struct {
  543. #define MQTT_SER_MAX 5
  544. mqtt_server_t ser[MQTT_SER_MAX];
  545. }mqtt_info_t;
  546. typedef struct {
  547. uint8_t type;
  548. char *content;
  549. uint32_t time;
  550. }log_data_t;
  551. ///////////////////////////////////////////////////////////
  552. typedef struct ac_dc_out{
  553. uint32_t voltage;
  554. uint32_t current;
  555. uint32_t power;
  556. uint32_t freq;
  557. uint32_t consumer;
  558. uint32_t factor;
  559. }ac_dc_out_t;
  560. typedef struct ac_dc_in{
  561. uint32_t all_voltage;
  562. uint32_t all_current;
  563. uint32_t all_power;
  564. uint32_t all_consumer;
  565. }ac_dc_in_t;
  566. typedef struct md_ac_dc{
  567. uint16_t dev_cnt; //设备类型和通道数
  568. ac_dc_out_t power[POWER_SLAVE_CH_MAX]; //最大64通道
  569. ac_dc_in_t power_all;
  570. uint16_t temp;
  571. uint16_t humity;
  572. uint16_t switch_stu[POWER_SLAVE_CH_MAX];
  573. uint16_t delay_open[POWER_SLAVE_CH_MAX];
  574. uint16_t delay_close[POWER_SLAVE_CH_MAX];
  575. sensor_info_t md_s[4];
  576. //uint16_t dry_node[4];
  577. }md_ac_dc_t;
  578. typedef struct all_info{
  579. uint32_t voltage;
  580. uint32_t current;
  581. uint32_t power;
  582. uint32_t consumer;
  583. }all_info_t;
  584. typedef struct {
  585. uint32_t power;
  586. uint32_t freq;
  587. uint32_t consumer;
  588. uint16_t fac;
  589. uint32_t out_type;
  590. }all_chn_info_t;
  591. typedef struct chn_phase_info{
  592. uint32_t p_voltage;
  593. uint32_t p_current;
  594. uint32_t p_power;
  595. uint32_t p_consumer;
  596. uint32_t p_status;
  597. }chn_phase_info_t;
  598. typedef struct md_3_ac{
  599. uint16_t dev_cnt; //设备类型和通道数
  600. all_info_t ac_3_all_pw[3];
  601. all_chn_info_t ac_3_all_chn[POWER_SLAVE_CH_MAX];
  602. chn_phase_info_t ac_3_chn_p[POWER_SLAVE_CH_MAX][3];
  603. uint16_t temp;
  604. uint16_t humity;
  605. uint16_t switch_chn[POWER_SLAVE_CH_MAX];
  606. uint16_t delay_open[POWER_SLAVE_CH_MAX];
  607. uint16_t delay_close[POWER_SLAVE_CH_MAX];
  608. sensor_info_t md_s[4];
  609. //uint16_t dry_node[4];
  610. }md_3_ac_t;
  611. typedef struct cascade_data{
  612. uint8_t chs; //从机读取通道数
  613. power_ch_t *pch;
  614. }cascade_data_t;
  615. ///////////////////////////////////////////////////////////
  616. typedef struct {
  617. uint8_t flag;
  618. }sys_stat_t;
  619. typedef struct {
  620. uint8_t flag;
  621. }mesg_data_t;
  622. typedef struct {
  623. uint8_t cnt;
  624. uint8_t addr[POWER_CASCADE_MAX];
  625. }slave_list_t;
  626. enum {
  627. PKT_TYPE_ACK=0,
  628. PKT_TYPE_PARAS,
  629. PKT_TYPE_POWER_CH, //power_ch_t
  630. PKT_TYPE_POWER_TOTAL, //power_total_t
  631. PKT_TYPE_POWER_RESET,
  632. PKT_TYPE_CH_ALL,
  633. PKT_TYPE_SCAN,
  634. PKT_TYPE_FACTORY,
  635. PKT_TYPE_ALARM,
  636. PKT_TYPE_SENSOR,
  637. PKT_TYPE_BREAKER,
  638. PKT_TYPE_STAT,
  639. PKT_TYPE_MESG,
  640. PKT_TYPE_FILE,
  641. PKT_TYPE_SLAVE_LIST, //slave addr list
  642. PKT_TYPE_MAX
  643. };
  644. enum {
  645. SUB_TYPE_POWER_SWITCH=0, //set relay switch
  646. SUB_TYPE_POWER_ALARM,
  647. SUB_TYPE_POWER_THRESHOLD,
  648. SUB_TYPE_POWER_OPEN_DELAY,
  649. SUB_TYPE_POWER_CLOSE_DELAY,
  650. SUB_TYPE_PARAS_SYS,
  651. SUB_TYPE_PARAS_MODBUS,
  652. SUB_TYPE_PARAS_MISC,
  653. SUB_TYPE_PARAS_PROD,
  654. SUB_TYPE_PARAS_SERV,
  655. SUB_TYPE_PARAS_NETWORK,
  656. SUB_TYPE_MAX
  657. };
  658. #define PKT_MAGIC 0xdead
  659. typedef struct {
  660. uint16_t magic;
  661. uint8_t addr;
  662. uint8_t type;
  663. uint8_t subtype;
  664. uint8_t nack;
  665. uint32_t flag;
  666. uint32_t dlen;
  667. uint8_t data[0];
  668. }pkt_hdr_t;
  669. #pragma pack ()
  670. #define CONCAT(a,b) a b
  671. #define SD_DEV "sd"
  672. #define NOR_DEV "nor"
  673. #define ROOT_PATH "/"
  674. #define SD_PATH CONCAT(ROOT_PATH,SD_DEV)
  675. #define NOR_PATH CONCAT(ROOT_PATH,NOR_DEV)
  676. #define DB_NAME "smartPDU"
  677. #define INI_NAME "smartPDU.ini"
  678. #define INF_NAME "PDUInfo.txt"
  679. #if 1
  680. #define DB_PATH SD_PATH
  681. #define CFG_PATH NOR_PATH
  682. #else
  683. #define DB_PATH ROOT_PATH
  684. #define CFG_PATH ROOT_PATH
  685. #endif
  686. #endif