set.c 283 KB

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  1. /*******************************************************************************
  2. 版权所有:
  3. 版本号: 1.00
  4. 文件名: set.c
  5. 生成日期: 2008.8.16
  6. 作者:
  7. 功能说明:定值结构和定值修改
  8. 修改日志:
  9. 日志1:
  10. 修改者:
  11. 修改日期:
  12. 修改内容:
  13. 修改原因:
  14. ****************************************************************************/
  15. #include "head.h"
  16. #ifdef CPU_FUXI
  17. #include <sys/socket.h>
  18. #include <netinet/in.h>
  19. #include <arpa/inet.h>
  20. // #include "shm_comm_packet.h"
  21. #include "shmem.h"
  22. #else
  23. #include "uart_user.h"
  24. #include <linux/kmod.h>
  25. #endif
  26. #include "m.h"
  27. #include "m_set.h"
  28. #define MAX_3(x, y, z) (x > y ? (x > z ? x : z) : (y > z ? y : z))
  29. #define MIN_3(x, y, z) (((x > y ? y : x) > z) ? z : (x > y ? y : x))
  30. #define MIN_2(x, y) (x > y ? y : x)
  31. #define FIXED_ARGS_NUM 7
  32. #define SET_FILE_VERSION 0X01010102 // 定值文件版本
  33. #define SW_AC_SET_NUM (SW_AC_IN_SET_END - SW_AC_IN_SET_BEGIN + 1)
  34. const short sw_ac_set_index[SW_AC_SET_NUM] =
  35. {
  36. SET_GL1_I,
  37. SET_GL1_T,
  38. SET_GL2_I,
  39. SET_GL2_T,
  40. SET_LX1_I,
  41. SET_LX1_T,
  42. SET_LX1_TT,
  43. SET_CH_T1,
  44. SET_CH_T2,
  45. SET_FA_X_T,
  46. SET_FA_Y_T,
  47. SET_SL_TT,
  48. };
  49. enum
  50. {
  51. RMT_DEAD_I = 0,
  52. RMT_DEAD_U,
  53. RMT_DEAD_ZL,
  54. RMT_DEAD_PQ,
  55. RMT_DEAD_F,
  56. RMT_DEAD_COS,
  57. RMT_DEAD_NUM
  58. };
  59. struct U_QUA
  60. {
  61. u32 run_time[2];
  62. u32 ok_time[2];
  63. u16 crc;
  64. };
  65. u8 g_creat_set_file = 0;
  66. u16 g_crc_set_desc;
  67. u16 g_crc_set_data;
  68. bool gb_yx_ac = false;
  69. bool bRunSetModify;
  70. WORD m_runsection = 0;
  71. int ParaIDNum;
  72. uint32_t g_debugnet_ip, g_debugnet_mask, g_debugnet_gate; // 调试网口IP,MASK,GATE等网络参数
  73. TSECTIONINFO tSecInfo; // 定值信息(包括定值区号及有效定值区)
  74. RUN_PARA tRunPara;
  75. TSET tRunSet[2]; // 运行定值缓冲区
  76. TSET tBakSet;
  77. TSET *pRunSet = &tRunSet[0];
  78. SET_PARAID tParaID[MAX_SET_NUMBER];
  79. #ifdef YPARA_LINK
  80. SET_PARA_VAL tPara_val[MAX_SET_NUMBER];
  81. #endif
  82. struct set_file_head_data g_fh_data;
  83. struct file_contrast setdesc_contrast;
  84. struct set_disp_index g_set_disp; // 挑选后的保护定值
  85. const char *SetUints[]= //单位符号定义,对应定值
  86. {
  87. "", //0 无单位
  88. "V",
  89. "A", //
  90. "s", //4
  91. "天", //4
  92. "%",
  93. "°",
  94. "W",
  95. "Var", //4
  96. "H",
  97. "时",
  98. "kV",
  99. "ms",
  100. "分",
  101. "Hz",
  102. "%Un",
  103. "Hz/s",
  104. "V/s",
  105. };
  106. BH_SET_GROUP SetGroups[]= //单位符号定义,对应定值
  107. {
  108. {SETGROUP_TYPE_BH, 1, SET_HYB_BH, GROUP_SET_YB_GN, "保护定值", "功能软压板", },
  109. {SETGROUP_TYPE_BH, 1, SET_HYB_BH, GROUP_SET_YB_YX, "保护定值", "运行软压板", },
  110. {SETGROUP_TYPE_BH, 1, SET_HYB_BH, GROUP_SET_BHTT, "保护定值", "常规保护控制字", },
  111. {SETGROUP_TYPE_BH, 1, SET_HYB_BH, GROUP_SET_BHDZ, "保护定值", "常规保护定值", },
  112. {SETGROUP_TYPE_BH, 1, SET_HYB_BH, GROUP_SET_CHZKZ, "保护定值", "自动重合闸控制字", },
  113. {SETGROUP_TYPE_BH, 1, SET_HYB_BH, GROUP_SET_CHZDZ, "保护定值", "自动重合闸定值", },
  114. {SETGROUP_TYPE_BH, 1, SET_HYB_BH, GROUP_SET_FAYB, "保护定值", "就地馈线自动化软压板", },
  115. {SETGROUP_TYPE_BH, 1, SET_HYB_BH, GROUP_SET_FATT, "保护定值", "就地馈线自动化控制字", },
  116. {SETGROUP_TYPE_BH, 1, SET_HYB_BH, GROUP_SET_FADZ, "保护定值", "就地馈线自动化定值", },
  117. {SETGROUP_TYPE_BH, 1, SET_HYB_BH, GROUP_SET_GOOSETT, "保护定值", "分布式FA控制字", },
  118. {SETGROUP_TYPE_BH, 1, SET_HYB_BH, GROUP_SET_GOOSEDZ, "保护定值", "分布式FA定值", },
  119. {SETGROUP_TYPE_TQ, 1, SET_HYB_TQ, GROUP_SET_TQHZ, "保护定值", "同期合闸定值", },
  120. {SETGROUP_TYPE_JL, 1, SET_HYB_JL, GROUP_SET_JLTT, "保护定值", "自动解列控制字", },
  121. {SETGROUP_TYPE_JL, 1, SET_HYB_JL, GROUP_SET_JLDZ, "保护定值", "自动解列定值", },
  122. #ifdef XDL_ZT
  123. {SETGROUP_TYPE_BH, 1, 0, GROUP_SET_XDLJDTT, "保护定值", "小电流接地控制字", },
  124. {SETGROUP_TYPE_BH, 1, 0, GROUP_SET_XDLJDDZ, "保护定值", "小电流接地定值", },
  125. #elif defined FUN_JDXX
  126. {SETGROUP_TYPE_BH, 1, 0, GROUP_SET_XDLJD, "保护定值", "小电流接地", },
  127. #endif
  128. {SETGROUP_TYPE_JL, 1, 0, GROUP_SET_LA, "保护定值", "线路断线告警", },
  129. #ifdef FUNC_DRIVE
  130. {SETGROUP_TYPE_BH, 1, 0, GROUP_SET_BTDCD, "保护定值", "不停电传动", },
  131. #endif
  132. #ifdef FUNC_DRIVE_JY
  133. {SETGROUP_TYPE_BH, 1, 0, GROUP_SET_DRIVE, "保护定值", "传动功能", },
  134. #endif
  135. {SETGROUP_TYPE_BH, 1, 0, GROUP_SET_FSX, "保护定值", "反时限定值", },
  136. {SETGROUP_TYPE_BH, 1, 0, GROUP_SET_DLYX, "保护定值", "电流越限", },
  137. {SETGROUP_TYPE_BH, 1, 0, GROUP_SET_SWSET, "保护定值", "辅助定值", },
  138. #ifdef CUSTOMIZE_BZT //备自投
  139. {SETGROUP_TYPE_BH, 1, 0, GROUP_SET_BZT, "保护定值", "备自投", },
  140. #endif
  141. {SETGROUP_TYPE_PUB, 1, 0, GROUP_SET_EQPPARA, "公共定值", "设备参数", },
  142. {SETGROUP_TYPE_PUB, 1, 0, GROUP_SET_SCT, "公共定值", "定值区", },
  143. {SETGROUP_TYPE_PUB, 1, 0, GROUP_SET_PUBYB, "公共定值", "运行软压板", },
  144. {SETGROUP_TYPE_PUB, 1, 0, GROUP_SET_PUBSET, "公共定值", "电压参数", },
  145. {SETGROUP_TYPE_PUB, 1, 0, GROUP_SET_FDL, "公共定值", "非电量", },
  146. {SETGROUP_TYPE_PUB, 1, 0, GROUP_SET_OTHERS_PUB, "公共定值", "其它", },
  147. {SETGROUP_TYPE_PARA, 1, 0, GROUP_PARA_PROTOCAL, "装置参数", "规约参数", },
  148. {SETGROUP_TYPE_PARA, 1, 0, GROUP_PARA_LINK, "装置参数", "104子站通信", },
  149. {SETGROUP_TYPE_PARA, 1, 0, GROUP_PARA_SERIAL, "装置参数", "串行口通信", },
  150. {SETGROUP_TYPE_PARA, 1, 0, GROUP_PARA_ETHERNET, "装置参数", "以太网参数", },
  151. {SETGROUP_TYPE_PARA, 1, 0, GROUP_PARA_TIME, "装置参数", "对时", },
  152. {SETGROUP_TYPE_PARA, 1, 0, GROUP_PARA_BATTERY, "装置参数", "电池管理", },
  153. {SETGROUP_TYPE_PARA, 1, 0, GROUP_PARA_RMT, "装置参数", "远动参数", },
  154. {SETGROUP_TYPE_PARA, 1, 0, GROUP_PARA_OTHERS, "装置参数", "其它", },
  155. #ifdef FUN_FUXI_ESAM
  156. {SETGROUP_TYPE_PARA, 1, 0, GROUP_PARA_S1, "装置参数", "南网加密配置", },
  157. #endif
  158. #ifdef METERING_ENERGY
  159. {SETGROUP_TYPE_PARA, 1, 0, GROUP_PARA_HISFILE, "装置参数", "历史文件", },
  160. #endif
  161. {SETGROUP_TYPE_CSTSET ,1, 0, GROUP_CSTSET_PROTECT, "内部定值", "保护逻辑", },
  162. {SETGROUP_TYPE_CSTSET ,1, 0, GROUP_CSTSET_CALC, "内部定值", "计算功能", },
  163. {SETGROUP_TYPE_CSTSET ,1, 0, GROUP_CSTSET_COMM, "内部定值", "通信功能", },
  164. {SETGROUP_TYPE_CSTSET ,1, 0, GROUP_CSTSET_FA, "内部定值", "FA功能", },
  165. {SETGROUP_TYPE_CSTSET ,1, 0, GROUP_CSTSET_RECORD, "内部定值", "录波功能", },
  166. {SETGROUP_TYPE_CSTSET ,1, 0, GROUP_CSTSET_OTHERS, "内部定值", "辅助定值", },
  167. };
  168. //保护投退列表
  169. const SET_LIST TTList[]=
  170. {
  171. {"退 出", 0, },
  172. {"投 入", 1, },
  173. };
  174. #define TTListNum sizeof(TTList)/sizeof(SET_LIST)
  175. const SET_LIST LinkList[]=
  176. {
  177. {"串口1", 0, },
  178. {"串口2", 1, },
  179. {"串口3", 2, },
  180. {"串口4", 3, },
  181. {"串口5", 4, },
  182. {"串口6", 5, },
  183. {"网口1", 6, },
  184. {"网口2", 7, },
  185. };
  186. #define LinkListNum sizeof(LinkList)/sizeof(SET_LIST)
  187. //装置类型类表
  188. const SET_LIST EQUList[]=
  189. {
  190. {"测控装置", 0, },
  191. {"管理机装置", 1, },
  192. };
  193. #define EQUListNum sizeof(EQUList)/sizeof(SET_LIST)
  194. //电压输入方式
  195. const SET_LIST VOLTYPEList[]=
  196. {
  197. {"电源电压 ", 0, },
  198. {"测量电压 ", 1, },
  199. {"测量+电源", 2, },
  200. };
  201. #define VOLTYPEListNum sizeof(VOLTYPEList)/sizeof(SET_LIST)
  202. const SET_LIST DISPMODEList[]=
  203. {
  204. {"二次值", 0,},
  205. {"一次值", 1,},
  206. };
  207. #define DISPMODEListNum sizeof(DISPMODEList)/sizeof(SET_LIST)
  208. // 系统接地方式
  209. const SET_LIST JDTYPE[]=
  210. {
  211. {"中性点不接地 ", 0, },
  212. {"经消弧线圈接地", 1,},
  213. {"经小电阻接地 ", 2,},
  214. {"经高阻接地 ", 3,},
  215. };
  216. #define JDTYPENum sizeof(JDTYPE)/sizeof(SET_LIST)
  217. const SET_LIST XDLQDList[]=
  218. {
  219. {"零序电压", 0,},
  220. {"零序电流", 1,},
  221. };
  222. #define XDLQDListNum sizeof(XDLQDList)/sizeof(SET_LIST)
  223. //告警合闸投退列表
  224. const SET_LIST GJHZList[]=
  225. {
  226. {"退 出", 0,},
  227. {"合 闸", 1,},
  228. // {"告 警", 2,},
  229. };
  230. #define GJTZListNum sizeof(GJHZList)/sizeof(SET_LIST)
  231. //告警跳闸投退列表
  232. const SET_LIST TZList[]=
  233. {
  234. {"告 警", 0,},
  235. {"跳 闸", 1, },
  236. };
  237. #define TZListNum sizeof(TZList)/sizeof(SET_LIST)
  238. //告警跳闸投退列表
  239. const SET_LIST HZList[]=
  240. {
  241. {"合 闸", 0, },
  242. {"告 警", 1,},
  243. };
  244. #define HZListNum sizeof(HZList)/sizeof(SET_LIST)
  245. //跳闸检出投退列表
  246. const SET_LIST TZCKList[]=
  247. {
  248. {"退 出", 0, },
  249. {"告 警", 1,},
  250. {"跳 闸", 2, },
  251. };
  252. #define TZCKListNum sizeof(TZCKList)/sizeof(SET_LIST)
  253. //告警跳闸投退列表
  254. const SET_LIST TZGJList[]=
  255. {
  256. {"退 出 ", 0, },
  257. {"跳 闸 ", 1, },
  258. {"告 警 ", 2,},
  259. {"告 警+跳闸", 3,},
  260. };
  261. #define TZGJListNum sizeof(TZGJList)/sizeof(SET_LIST)
  262. const SET_LIST FSXList[]=
  263. {
  264. {"一般反时限", RVS_STD, },
  265. {"非常反时限", RVS_VERY, },
  266. {"极端反时限", RVS_EXT, },
  267. };
  268. #define FSXListNum sizeof(FSXList)/sizeof(SET_LIST)
  269. const SET_LIST CHZList[]=
  270. {
  271. {"一次重合闸", 1, },
  272. {"二次重合闸", 2, },
  273. {"三次重合闸", 3, },
  274. };
  275. #define CHZListNum sizeof(CHZList)/sizeof(SET_LIST)
  276. const SET_LIST CHJSList[]=
  277. {
  278. {"后加速", 0, },
  279. {"前加速", 1, },
  280. };
  281. #define CHJSListNum sizeof(CHJSList)/sizeof(SET_LIST)
  282. const SET_LIST KGFunList[]=
  283. {
  284. #if (defined GD_AREA_ECZD_2020) ||defined GD_AREA_HEYUAN_2021_2021
  285. {"联 络", 0, },
  286. {"分 段", 1,},
  287. #else
  288. {"无 效", 0,},
  289. {"分 段", LINE_TYPE_FD,},
  290. {"联 络", LINE_TYPE_LL, }, //
  291. #endif
  292. };
  293. #define KGFunListNum sizeof(KGFunList)/sizeof(SET_LIST)
  294. const SET_LIST KGFun1List[]=
  295. {
  296. {"分段联络", 0, },
  297. {"分界 ", 1, },
  298. };
  299. #define KGFun1ListNum sizeof(KGFun1List)/sizeof(SET_LIST)
  300. #ifdef CUSTOMIZE_BZT //备自投
  301. const SET_LIST BZTFSList[]=
  302. {
  303. {"分 段", 0, },
  304. {"进 线", 1, },
  305. {"互 投", 2, },
  306. //{"单进线", 3, },
  307. {"自 复", 3, },
  308. };
  309. #define BZTFSListNum sizeof(BZTFSList)/sizeof(SET_LIST)
  310. #endif
  311. const SET_LIST HHFunList[]=
  312. {
  313. {"退 出", 0, },
  314. {"合环闭锁", 1, },
  315. {"同期合闸", 2, },
  316. };
  317. #define HHFunListNum sizeof(HHFunList)/sizeof(SET_LIST)
  318. const SET_LIST BaudList[]= // 波特率列表
  319. {
  320. {"600 ",600, },
  321. {"1200 ",1200, },
  322. {"2400 ",2400, },
  323. {"4800 ",4800, },
  324. {"9600 ",9600, },
  325. {"19200",19200,},
  326. {"38400",38400,},
  327. {"57600",57600,},
  328. {"115200",115200,},
  329. };
  330. #define BaudListNum sizeof(BaudList)/sizeof(SET_LIST)
  331. const SET_LIST ParityList[]= //校验位列表
  332. {
  333. {"偶校验",PARITY_EVEN,},
  334. {"奇校验",PARITY_ODD, },
  335. {"无校验",PARITY_NONE_1,},
  336. };
  337. #define ParityListNum sizeof(ParityList)/sizeof(SET_LIST)
  338. const SET_LIST ProtocolList[]= // 规约类型列表
  339. {
  340. {"子站非平衡101", PROTOCOL_101, },
  341. {"子站平衡式101", PROTOCOL_101_PH,},
  342. {"IEC104 ", PROTOCOL_104, },
  343. {"主站非平衡101", PROTOCOL_101_M, },
  344. {"主站平衡式101", PROTOCOL_101_PH_M,},
  345. {"主站MODBUS ", PROTOCOL_MODBUS,},
  346. #if !defined CPU_FUXI
  347. {"状态板 ", PROTOCOL_FAULT,},
  348. {"面板 ", PROTOCOL_HMI,},
  349. #endif
  350. {"维护规约 ", PROTOCOL_MAINTAIN,},
  351. {"GPS模块 ", PROTOCOL_GPS,},
  352. {"蓝牙加密模块 ", PROTOCOL_AUTHOR_BL,},
  353. {"其它应用 ", PROTOCOL_IDLE,}, // 本应用程序完全不初始化、不使用。供其它程序(例如通讯子站,内部GPRS等)使用
  354. #ifdef BATTERY_WITH_COMM
  355. #ifdef FUNC_SEL_BAT_MODULE
  356. {"兴通力规约 ", PROTOCOL_POWER_MOD,},
  357. {"中电规约 ", PROTOCOL_PWRM,},
  358. #else
  359. {"电源模块规约", PROTOCOL_POWER_MOD,},
  360. #endif
  361. #endif
  362. {" 无 ", PROTOCOL_NULL,},
  363. #ifdef FUNC_ENCRY_IN_ONE_SERIAL
  364. {"纬德多隧道 ", PROTOCOL_WED_ENC,},
  365. #endif
  366. };
  367. #define ProtocolListNum sizeof(ProtocolList)/sizeof(SET_LIST)
  368. const SET_LIST TimeList[]= //对时方式
  369. {
  370. {"网络对时 ",0,},
  371. {"B码对时 ",1, },
  372. {"B码对时(带年)",2, },
  373. {"秒脉冲对时 ",3, },
  374. {"1588对时 ",4, },
  375. };
  376. #define TimeListNum sizeof(TimeList)/sizeof(SET_LIST)
  377. const SET_LIST TimeListSelect[]= //标准化对时方式选择
  378. {
  379. {"全方式对时 ",0,},
  380. {"仅卫星对时 ",1, },
  381. {"仅主站对时 ",2, },
  382. {"仅时间同步装置",3, },
  383. };
  384. #define TimeListSelectNum sizeof(TimeListSelect)/sizeof(SET_LIST)
  385. const SET_LIST PTTypeList[]= //对时方式
  386. {
  387. {"单 点",0,},
  388. {"双 点",1, },
  389. {"单双点",2, },
  390. };
  391. #define PTTypeListNum sizeof(PTTypeList)/sizeof(SET_LIST)
  392. const SET_LIST YCTypeList[]= //遥测类型
  393. {
  394. {"规一化值",0,},
  395. {"标度化值",1, },
  396. {"浮点数值",2, },
  397. };
  398. #define YCTypeListNum sizeof(YCTypeList)/sizeof(SET_LIST)
  399. const SET_LIST YCTypeDead[]= //遥测死区类型
  400. {
  401. {"额定值",0,},
  402. {"当前值",1, },
  403. };
  404. #define YCTypeDeadNum sizeof(YCTypeDead)/sizeof(SET_LIST)
  405. const SET_LIST IEC101AddrList[]= // 101规约地址个数
  406. {
  407. {"单字节",0,},
  408. {"双字节",1, },
  409. };
  410. #define IEC101AddrListNum sizeof(IEC101AddrList)/sizeof(SET_LIST)
  411. // 字节个数
  412. const SET_LIST AddrNumList[]=
  413. {
  414. {"两字节", 0,},
  415. {"三字节", 1,},
  416. };
  417. #define AddrNumListNum (sizeof(AddrNumList) / sizeof(SET_LIST))
  418. const SET_LIST Net_Eth_List[]= //网卡地址列表
  419. {
  420. {"网口1",0,},
  421. {"网口2",1,},
  422. {"网口3",2,},
  423. };
  424. #define Net_Eth_ListNum sizeof(Net_Eth_List)/sizeof(SET_LIST)
  425. const SET_LIST WFList[]= //录波文件格式
  426. {
  427. {"ASCII",0,},
  428. {"BINARY",1,},
  429. };
  430. #define WFListNum sizeof(WFList)/sizeof(SET_LIST)
  431. const SET_LIST FA_List[]=
  432. {
  433. {"自适应综合型 ",0,},
  434. {"电压时间型 ",1,},
  435. {"电压电流时间型",2,},
  436. };
  437. #define FA_ListNum sizeof(FA_List)/sizeof(SET_LIST)
  438. //加密功能投退列表
  439. const SET_LIST JMList[]=
  440. {
  441. {"退 出", 0,},
  442. {"软件加密", 1,},
  443. {"芯片加密", 2,},
  444. };
  445. #define JMListNum sizeof(JMList)/sizeof(SET_LIST)
  446. #ifdef FIX_PARAM_FORMAT
  447. const SET_LIST TULF8List[]=
  448. {
  449. {"G B K ", 0,},
  450. {"UTF-8 ", 1,},
  451. {"UNICODE", 2,},
  452. };
  453. #define TULF8ListNum sizeof(TULF8List)/sizeof(SET_LIST)
  454. #endif
  455. //加密功能投退列表
  456. const SET_LIST T104ServerList[]=
  457. {
  458. {"服务器", 0,},
  459. {"客户端", 1,},
  460. };
  461. #define T104ServerListNum sizeof(T104ServerList)/sizeof(SET_LIST)
  462. const SET_LIST HisFileFormatList[]=
  463. {
  464. {"msg格式", 0,},
  465. {"xml格式", 1,},
  466. };
  467. #define HisFileFormatListNum sizeof(HisFileFormatList)/sizeof(SET_LIST)
  468. //电压选择功能投退列表
  469. const SET_LIST TVolSelList[]=
  470. {
  471. {"Uab1", PUB_AC_UAB1,},
  472. {"Ubc1", PUB_AC_UBC1,},
  473. {"Uca1", PUB_AC_UCA1,},
  474. {"Uab2", PUB_AC_UAB2,},
  475. {"Ubc2", PUB_AC_UBC2,},
  476. {"Uca2", PUB_AC_UCA2,},
  477. {"Us1 ", PUB_AC_US1,},
  478. {"Us2 ", PUB_AC_US2,},
  479. {"U01 ", PUB_AC_U01,},
  480. {"U02 ", PUB_AC_U02,},
  481. #ifdef FUN_JDXX
  482. {"Ua1 ", PUB_AC_UA1,},
  483. {"Ua2 ", PUB_AC_UA2,},
  484. #endif
  485. };
  486. #define TVolSelListNum sizeof(TVolSelList)/sizeof(SET_LIST)
  487. #ifdef CUSTOMIZE_BZT //备自投
  488. const SET_LIST TISelList[]=
  489. {
  490. {"BIA", SW_AC_IA},
  491. {"BIB", SW_AC_IB},
  492. {"BIC", SW_AC_IC},
  493. {"CIA", SW_AC_CIA},
  494. {"CIB", SW_AC_CIB},
  495. {"CIC", SW_AC_CIC},
  496. };
  497. #define TISelListNum sizeof(TISelList)/sizeof(SET_LIST)
  498. #endif
  499. const SET_LIST TGooseKG[]=
  500. {
  501. #ifdef GD_AREA_ECZD_2020
  502. /*#ifdef GD_AREA_ZHONGSHAN_2020
  503. {"首 开 关", 0,},
  504. {"分段开关", 1,},
  505. {"支线开关", 2,},
  506. {"联络开关", 3,},
  507. #else*/
  508. {"其 他", 0,},
  509. {"首开关", 1,},
  510. {"末开关", 2,},
  511. //#endif
  512. #else
  513. {"首 开 关", 0,},
  514. {"分段开关", 1,},
  515. {"支线开关", 2,},
  516. {"联络开关", 3,},
  517. #endif
  518. };
  519. #define TGooseKGNum sizeof(TGooseKG)/sizeof(SET_LIST)
  520. const SET_LIST FAKGTYPE[]=
  521. {
  522. {"主环开关", 0,},
  523. {"支线开关", 1,},
  524. };
  525. #define FAKGTYPENum sizeof(FAKGTYPE)/sizeof(SET_LIST)
  526. const SET_LIST TGooseFA[]=
  527. {
  528. {"退 出", 0,},
  529. {"缓 动", 1,},
  530. {"速 动", 2,},
  531. };
  532. #define TGooseFANum sizeof(TGooseFA)/sizeof(SET_LIST)
  533. const SET_LIST THHTYPE[]=
  534. {
  535. {"开 环", 0,},
  536. {"闭 环", 1,},
  537. };
  538. #define THHTYPENum sizeof(THHTYPE)/sizeof(SET_LIST)
  539. const SET_LIST TPT_Type[]=
  540. {
  541. {"单相PT ", 0,},
  542. {"VV接线PT", 1,},
  543. {"YY接线PT", 2,},
  544. };
  545. #define TPT_TypeNum sizeof(TPT_Type)/sizeof(SET_LIST)
  546. const SET_LIST PUList[]=
  547. {
  548. {"UAB2", 0,},
  549. {"UBC2", 1,},
  550. {"UCA2", 2,},
  551. };
  552. #define TPT_UNum sizeof(PUList)/sizeof(SET_LIST)
  553. const SET_LIST TFA_Type[]=
  554. {
  555. {"无 效", 0,},
  556. {"不依赖通信", 1,},
  557. {"依赖通信 ", 2,},
  558. };
  559. #define TFA_TypeNum sizeof(TFA_Type)/sizeof(SET_LIST)
  560. const SET_LIST GOOSE_NET_List[]=
  561. {
  562. {"NORMAL", 0,},
  563. {"H S R ", 1,},
  564. {"P R P ", 2,},
  565. };
  566. #define GOOSE_NET_ListNum sizeof(GOOSE_NET_List)/sizeof(SET_LIST)
  567. const SET_LIST TFGKEY_Type[]=
  568. {
  569. {"复 归", 0,},
  570. {"解 锁", 1,},
  571. {"复 位", 2,},
  572. };
  573. #define TFGKEY_TYPE_TOTAL sizeof(TFGKEY_Type)/sizeof(SET_LIST)
  574. const SET_LIST UYY_List[]=
  575. {
  576. {"三相电压最小值", 0,},
  577. {"三相电压最大值", 1,},
  578. };
  579. #define UYY_ListNum sizeof(UYY_List)/sizeof(SET_LIST)
  580. //电度列表
  581. #ifdef METERING_ENERGY
  582. const SET_LIST DDList[]=
  583. {
  584. {"硬 件", 0, },
  585. {"软 件", 1, },
  586. };
  587. #define DDListNum sizeof(DDList)/sizeof(SET_LIST)
  588. const SET_LIST JLFSList[]=
  589. {
  590. {"三相四线", 0, },
  591. {"三相三线", 1, },
  592. };
  593. #define JLFSListNum sizeof(JLFSList)/sizeof(SET_LIST)
  594. const SET_LIST WGFSList[]=
  595. {
  596. {"标 准", 0, },
  597. {"贵 州", 1, },
  598. };
  599. #define WGFSListNum sizeof(WGFSList)/sizeof(SET_LIST)
  600. #endif
  601. // 小电流突变启动方式
  602. const SET_LIST TBLTYPE[]=
  603. {
  604. {"小电流突变", 0, },
  605. {"电压突变", 1,},
  606. };
  607. #define TBLTYPENum sizeof(TBLTYPE)/sizeof(SET_LIST)
  608. // 小信号滤波方式
  609. const SET_LIST FilterTYPE[]=
  610. {
  611. {"三点线性", 0,},
  612. {"小波矩阵", 1,},
  613. {"小波卷积", 2,},
  614. };
  615. #define FilterTYPENum sizeof(FilterTYPE)/sizeof(SET_LIST)
  616. // 小波类型 优化选低维度,高维度运算量大
  617. const SET_LIST WaveletTYPE[]=
  618. {
  619. {"haar", 0,},
  620. {"db2", 1,},
  621. {"db3", 2,},
  622. {"db4", 3,},
  623. {"sym2", 4,},
  624. {"sym3", 5,},
  625. {"sym4", 6,},
  626. {"coif1", 7,},
  627. {"coif2", 8,},
  628. {"coif3", 9,},
  629. {"coif4", 10,},
  630. };
  631. #define WaveletTYPENum sizeof(WaveletTYPE)/sizeof(SET_LIST)
  632. const SET_LIST START_List[]=
  633. {
  634. {"不启动", 0},
  635. {"启 动", 1},
  636. };
  637. #define START_ListNum sizeof(START_List)/sizeof(SET_LIST)
  638. const SET_LIST BMLList[] =
  639. {
  640. {"非全相", 0, },
  641. {"加判零压", 1, },
  642. {"加判零流低压", 2, },
  643. };
  644. #define BMLListNum (sizeof(BMLList) / sizeof(SET_LIST))
  645. int g_goose_net_type=0;
  646. /**********************************************************************
  647. 公共定值
  648. ***********************************************************************/
  649. const TSETTABLE tPubSetTable[]=
  650. {
  651. /* 类型 单位 最小值 最大值 默认值 列表 列表数 组 遥调地址 类型 描述 */
  652. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_EQPPARA, 0x0000, NULL_R, "设备参数"},
  653. {SETTYPE_5INT, SET_A, 0, 2000, 600, 0, 0, GROUP_SET_EQPPARA, 0x5001, FLOAT_R, "CT额定一次值"},
  654. {SETTYPE_5INT, SET_A, 0, 100, 5, 0, 0, GROUP_SET_EQPPARA, 0x5002, FLOAT_R, "CT额定二次值"},
  655. {SETTYPE_5INT, SET_A, 0, 2000, 100, 0, 0, GROUP_SET_EQPPARA, 0x5003, FLOAT_R, "零序CT额定一次值"},
  656. {SETTYPE_5INT, SET_A, 0, 100, 5, 0, 0, GROUP_SET_EQPPARA, 0x5004, FLOAT_R, "零序CT额定二次值"},
  657. {SETTYPE_5INT, SET_U, 0, 99999, 10000, 0, 0, GROUP_SET_EQPPARA, 0x5005, FLOAT_R, "电源侧PT额定一次值"},
  658. {SETTYPE_5INT, SET_U, 0, 1000, 100, 0, 0, GROUP_SET_EQPPARA, 0x5006, FLOAT_R, "电源侧PT额定二次值"},
  659. {SETTYPE_5INT, SET_U, 0, 99999, 10000, 0, 0, GROUP_SET_EQPPARA, 0x5007, FLOAT_R, "负荷侧PT额定一次值"},
  660. {SETTYPE_5INT, SET_U, 0, 1000, 100, 0, 0, GROUP_SET_EQPPARA, 0x5008, FLOAT_R, "负荷侧PT额定二次值"},
  661. {SETTYPE_LIST, SET_NULL, 0, TPT_TypeNum - 1, 1, TPT_Type, TPT_TypeNum, GROUP_SET_EQPPARA, 0x0000, UINT_R, "A侧PT接线方式"},
  662. {SETTYPE_LIST, SET_NULL, 0, TPT_TypeNum - 1, 1, TPT_Type, TPT_TypeNum, GROUP_SET_EQPPARA, 0x0000, UINT_R, "B侧PT接线方式"},
  663. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_SCT, 0x0000, NULL_R, "定值区"},
  664. #ifdef FIXAREA_VERSION_T
  665. {SETTYPE_UINT, SET_NULL, 0, SEC_NUMBER - 1, 1, 0, 0, GROUP_SET_SCT, 0x501a, UINT_R, "当前定值区号"},
  666. {SETTYPE_UINT, SET_NULL, 0, SEC_NUMBER - 1, 1, 0, 0, GROUP_SET_SCT, 0x0000, UINT_R, "待召唤定值区号"},
  667. {SETTYPE_UINT, SET_NULL, 0, SEC_NUMBER - 1, 1, 0, 0, GROUP_SET_SCT, 0x0000, UINT_R, "待执行定值区号"},
  668. #else
  669. {SETTYPE_UINT, SET_NULL, 1, SEC_NUMBER - 1, 1, 0, 0, GROUP_SET_SCT, 0x501a, UINT_R, "定值区号"},
  670. #endif
  671. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_PUBYB, 0x0000, NULL_R, "运行软压板"},
  672. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 1, TTList, TTListNum, GROUP_SET_PUBYB, 0x5019, BOOL_R, "远程运维投入"},
  673. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_PUBSET, 0x0000, NULL_R, "电压参数"},
  674. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_PUBSET, 0x0000, BOOL_R, "过电压投退"},
  675. {SETTYPE_F, SET_U, 10.0, 440.0, 110.0, 0, 0, GROUP_SET_PUBSET, 0x0000, FLOAT_R, "过电压定值"},
  676. {SETTYPE_F, SET_S, 0, 10000.0, 600.0, 0, 0, GROUP_SET_PUBSET, 0x0000, FLOAT_R, "过电压时间"},
  677. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_PUBSET, 0x0000, BOOL_R, "低电压投退"},
  678. {SETTYPE_F, SET_U, 10.0, 440.0, 90.0, 0, 0, GROUP_SET_PUBSET, 0x0000, FLOAT_R, "低电压定值"},
  679. {SETTYPE_F, SET_S, 0, 10000.0, 600.0, 0, 0, GROUP_SET_PUBSET, 0x0000, FLOAT_R, "低电压时间"},
  680. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_PUBSET, 0x0000, BOOL_R, "线路有压投退"},
  681. {SETTYPE_F, SET_U, 10.0, 100.0, 85.0, 0, 0, GROUP_SET_PUBSET, 0x0000, FLOAT_R, "有压定值"},
  682. {SETTYPE_F, SET_S, 0, 100.0, 0.1, 0, 0, GROUP_SET_PUBSET, 0x0000, FLOAT_R, "有压时间"},
  683. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_PUBSET, 0x0000, BOOL_R, "线路无压投退"},
  684. {SETTYPE_F, SET_U, 10.0, 100.0, 65.0, 0, 0, GROUP_SET_PUBSET, 0x0000, FLOAT_R, "无压定值"},
  685. {SETTYPE_F, SET_S, 0, 100.0, 0.1, 0, 0, GROUP_SET_PUBSET, 0x0000, FLOAT_R, "无压时间"},
  686. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_PUBSET, 0x0000, BOOL_R, "直流电压1告警投退"},
  687. {SETTYPE_F, SET_U, 10.0, 60.0, 20.0, 0, 0, GROUP_SET_PUBSET, 0x0000, FLOAT_R, "直流电压1告警定值"},
  688. {SETTYPE_F, SET_S, 0.1, 100.0, 100.0, 0, 0, GROUP_SET_PUBSET, 0x0000, FLOAT_R, "直流电压1告警时间"},
  689. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_PUBSET, 0x0000, BOOL_R, "直流电压2告警投退"},
  690. {SETTYPE_F, SET_U, 10.0, 60.0, 20.0, 0, 0, GROUP_SET_PUBSET, 0x0000, FLOAT_R, "直流电压2告警定值"},
  691. {SETTYPE_F, SET_S, 0.1, 100.0, 100.0, 0, 0, GROUP_SET_PUBSET, 0x0000, FLOAT_R, "直流电压2告警时间"},
  692. #ifdef CUSTOMIZE_BZT //备自投
  693. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_PUBSET, 0x0000, BOOL_R, "失压分闸投退"},
  694. {SETTYPE_F, SET_U, 0.0, 220.0, 66.0, 0, 0, GROUP_SET_PUBSET, 0x0000, FLOAT_R, "失压分闸定值"},
  695. {SETTYPE_F, SET_S, 0.0, 99, 0.1, 0, 0, GROUP_SET_PUBSET, 0x0000, FLOAT_R, "失压分闸时间"},
  696. #endif
  697. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_FDL, 0x0000, NULL_R, "非电量保护"},
  698. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_FDL, 0x0000, UINT_R, "非电量1保护"},
  699. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_FDL, 0x0000, UINT_R, "非电量2保护"},
  700. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_FDL, 0x0000, UINT_R, "非电量3保护"},
  701. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_FDL, 0x0000, UINT_R, "非电量4保护"},
  702. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_FDL, 0x0000, UINT_R, "非电量5保护"},
  703. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_FDL, 0x0000, UINT_R, "非电量6保护"},
  704. {SETTYPE_F, SET_S, 0, 100.0, 1.0, 0, 0, GROUP_SET_FDL, 0x0000, FLOAT_R, "非电量1时间"},
  705. {SETTYPE_F, SET_S, 0, 100.0, 1.0, 0, 0, GROUP_SET_FDL, 0x0000, FLOAT_R, "非电量2时间"},
  706. {SETTYPE_F, SET_S, 0, 100.0, 1.0, 0, 0, GROUP_SET_FDL, 0x0000, FLOAT_R, "非电量3时间"},
  707. {SETTYPE_F, SET_S, 0, 100.0, 1.0, 0, 0, GROUP_SET_FDL, 0x0000, FLOAT_R, "非电量4时间"},
  708. {SETTYPE_F, SET_S, 0, 100.0, 1.0, 0, 0, GROUP_SET_FDL, 0x0000, FLOAT_R, "非电量5时间"},
  709. {SETTYPE_F, SET_S, 0, 100.0, 1.0, 0, 0, GROUP_SET_FDL, 0x0000, FLOAT_R, "非电量6时间"},
  710. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_OTHERS_PUB, 0x0000, NULL_R, "其它"},
  711. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 1, TTList, TTListNum, GROUP_SET_OTHERS_PUB, 0x0000, NULL_R, "经高阻接地方式"},
  712. {SETTYPE_LIST, SET_NULL, 0, TBLTYPENum - 1, 0, TBLTYPE, TBLTYPENum, GROUP_SET_OTHERS_PUB, 0x0000, NULL_R, "小电流突变方式"},
  713. {SETTYPE_LIST, SET_NULL, 0, FilterTYPENum - 1, 2, FilterTYPE, FilterTYPENum, GROUP_SET_OTHERS_PUB, 0x0000, NULL_R, "信号滤波方式"},
  714. {SETTYPE_LIST, SET_NULL, 0, WaveletTYPENum - 1, 0, WaveletTYPE,WaveletTYPENum, GROUP_SET_OTHERS_PUB, 0x0000, NULL_R, "小波类型"},
  715. {SETTYPE_UINT, SET_NULL, 1, 4, 2, 0, 0, GROUP_SET_OTHERS_PUB, 0x0000, NULL_R, "小波卷积阶数"},
  716. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_OTHERS_PUB, 0x0000, NULL_R, "H 变换"},
  717. {SETTYPE_F, SET_S, 0, 999.0, 10.0, 0, 0, GROUP_SET_OTHERS_PUB, 0x0000, FLOAT_R, "同期合闸判断返回时间"},
  718. #ifdef FUNC_SET_FA_JS
  719. {SETTYPE_F, SET_S, 0, 10, 0.05, 0, 0, GROUP_SET_OTHERS_PUB, 0x0000, FLOAT_R, "FA合闸解锁时间"},
  720. #endif
  721. #ifdef VOLT_ADAPTIVE_FACTOR
  722. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_OTHERS_PUB, 0x0000, BOOL_R, "自适应电压系数"},
  723. #endif
  724. };
  725. const int PUB_SET_NUMBER = sizeof( tPubSetTable ) / sizeof(tPubSetTable[0]); // 定值数目
  726. /**********************************************************************
  727. 保护定值参数
  728. ***********************************************************************/
  729. const TSETTABLE tSwSetTable[] = // min max default
  730. {
  731. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_YB_GN, 0x0000, NULL_R, "功能软压板"},
  732. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_YB_GN, 0x500d, BOOL_R, "常规保护投入"},
  733. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_YB_GN, 0x500e, BOOL_R, "自动重合闸投入"},
  734. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_YB_GN, 0x500f, BOOL_R, "就地馈线自动化投入"},
  735. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_YB_GN, 0x5010, BOOL_R, "智能分布式投入"},
  736. #ifdef JZS_FUNCTION
  737. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_YB_GN, 0, BOOL_R, "集中式压板"},
  738. #endif
  739. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_YB_GN, 0x5011, BOOL_R, "同期合闸投入"},
  740. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_YB_GN, 0x5012, BOOL_R, "自动解列投入"},
  741. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_YB_GN, 0x5013, BOOL_R, "小电流接地保护投入"},
  742. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_YB_GN, 0x5014, BOOL_R, "线路断线告警投入"},
  743. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_YB_GN, 0x5015, BOOL_R, "不停电传动投入"},
  744. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_YB_YX, 0x0000, NULL_R, "运行软压板"},
  745. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 1, TTList, TTListNum, GROUP_SET_YB_YX, 0x5016, BOOL_R, "自动化功能总投退软压板"},
  746. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 1, TTList, TTListNum, GROUP_SET_YB_YX, 0x5017, BOOL_R, "自动化功能总出口软压板"},
  747. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 1, TTList, TTListNum, GROUP_SET_YB_YX, 0x5018, BOOL_R, "重合闸软压板"},
  748. #ifdef YK_SOFT_YB
  749. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_YB_YX, 0, BOOL_R, "遥控软压板"},
  750. #endif
  751. /* 类型 单位 最小值 最大值 默认值 列表 列表数 组 遥调地址 类型 描述 */
  752. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_BHTT, 0x0000, NULL_R, "常规保护控制字"},
  753. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_BHTT, 0x500b, BOOL_R, "过流Ⅰ段投入"},
  754. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_BHTT, 0x500c, BOOL_R, "过流Ⅱ段投入"},
  755. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_BHTT, 0x0000, BOOL_R, "过流Ⅲ段投入"},
  756. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_BHTT, 0x500d, BOOL_R, "过流Ⅰ段投方向"},
  757. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_BHTT, 0x500e, BOOL_R, "过流Ⅱ段投方向"},
  758. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_BHTT, 0x0000, BOOL_R, "过流Ⅲ段投方向"},
  759. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_BHTT, 0x500f, BOOL_R, "PT断线检测投入"},
  760. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_BHTT, 0x5010, BOOL_R, "零序过流Ⅰ段投入"},
  761. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_BHTT, 0x5011, BOOL_R, "零序过流Ⅱ段投入"},
  762. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_BHTT, 0x0000, BOOL_R, "零序过流Ⅲ段投入"},
  763. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_BHTT, 0, BOOL_R, "零序过电压保护"},
  764. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_BHTT, 0, BOOL_R, "后加速保护投入"},
  765. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_BHTT, 0x5013, BOOL_R, "过流保护启动重合闸"},
  766. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_BHTT, 0x5014, BOOL_R, "零序过流保护启动重合闸"},
  767. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_BHTT, 0x5012, BOOL_R, "涌流识别投入"},
  768. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_BHTT, 0x5012, BOOL_R, "非遮断保护投入"},
  769. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_BHDZ, 0x0000, NULL_R, "常规保护整定值"},
  770. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_BHDZ, 0x5017, FLOAT_R, "过流Ⅰ段定值"},
  771. {SETTYPE_F, SET_S, 0, 99.0, 99.0, 0, 0, GROUP_SET_BHDZ, 0x5018, FLOAT_R, "过流Ⅰ段时间"},
  772. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_BHDZ, 0x5019, FLOAT_R, "过流Ⅱ段定值"},
  773. {SETTYPE_F, SET_S, 0, 99.0, 99.0, 0, 0, GROUP_SET_BHDZ, 0x501A, FLOAT_R, "过流Ⅱ段时间"},
  774. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_BHDZ, 0x0000, FLOAT_R, "过流Ⅲ段定值"},
  775. {SETTYPE_F, SET_S, 0, 99.0, 99.0, 0, 0, GROUP_SET_BHDZ, 0x0000, FLOAT_R, "过流Ⅲ段时间"},
  776. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_BHDZ, 0x501B, FLOAT_R, "零序过流Ⅰ段定值"},
  777. {SETTYPE_F, SET_S, 0, 50.0, 50.0, 0, 0, GROUP_SET_BHDZ, 0x501C, FLOAT_R, "零序过流Ⅰ段时间"},
  778. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_BHDZ, 0x501D, FLOAT_R, "零序过流Ⅱ段定值"},
  779. {SETTYPE_F, SET_S, 0, 50.0, 50.0, 0, 0, GROUP_SET_BHDZ, 0x501E, FLOAT_R, "零序过流Ⅱ段时间"},
  780. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_BHDZ, 0x0000, FLOAT_R, "零序过流Ⅲ段定值"},
  781. {SETTYPE_F, SET_S, 0, 50.0, 50.0, 0, 0, GROUP_SET_BHDZ, 0x0000, FLOAT_R, "零序过流Ⅲ段时间"},
  782. {SETTYPE_F, SET_U, 0, 100.0, 100.0, 0, 0, GROUP_SET_BHDZ, 0, FLOAT_R, "零序过电压保护定值"},
  783. {SETTYPE_F, SET_S, 0, 99.0, 99.0, 0, 0, GROUP_SET_BHDZ, 0, FLOAT_R, "零序过电压保护时间"},
  784. {SETTYPE_F, SET_A, 0, 50.0, 50.0, 0, 0, GROUP_SET_BHDZ, 0, FLOAT_R, "后加速过流保护定值"},
  785. {SETTYPE_F, SET_S, 0, 99.0, 99.0, 0, 0, GROUP_SET_BHDZ, 0, FLOAT_R, "后加速过流保护时间"},
  786. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_BHDZ, 0, FLOAT_R, "后加速零序电流保护定值"},
  787. {SETTYPE_F, SET_S, 0, 99.0, 99.0, 0, 0, GROUP_SET_BHDZ, 0, FLOAT_R, "后加速零序电流保护时间"},
  788. {SETTYPE_F, SET_NULL, 0.1, 0.35, 0.35, 0, 0, GROUP_SET_BHDZ, 0x501F, FLOAT_R, "二次谐波闭锁系数"},
  789. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_BHDZ, 0x5017, FLOAT_R, "非遮断电流定值"},
  790. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_CHZKZ, 0x0000, NULL_R, "自动重合闸控制字"},
  791. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_CHZKZ, 0x5013, BOOL_R, "一次重合闸投入"},
  792. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_CHZKZ, 0x5014, BOOL_R, "二次重合闸投入"},
  793. #ifdef DISP_SET_CH_T3
  794. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_CHZKZ, 0x0000, BOOL_R, "三次重合闸投入"},
  795. #endif
  796. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_CHZKZ, 0x5015, BOOL_R, "重合闸检同期"},
  797. #ifdef CHZ_JWY_LM
  798. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_CHZKZ, 0x0000, BOOL_R, "母线无压线路有压"},
  799. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_CHZKZ, 0x0000, BOOL_R, "线路无压母线有压"},
  800. #else
  801. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_CHZKZ, 0x5016, BOOL_R, "重合闸检无压"},
  802. #endif
  803. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_CHZKZ, 0x5016, BOOL_R, "大电流闭锁重合投入"},
  804. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_CHZKZ, 0x0000, BOOL_R, "偷跳启动重合"},
  805. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_CHZDZ, 0x0000, NULL_R, "自动重合闸定值"},
  806. {SETTYPE_F, SET_S, 0.3, 900, 900, 0, 0, GROUP_SET_CHZDZ, 0x0000, FLOAT_R, "重合闸开放时间"},
  807. {SETTYPE_F, SET_S, 0, 199.0, 199.0, 0, 0, GROUP_SET_CHZDZ, 0x0000, FLOAT_R, "重合闸充电时间"},
  808. {SETTYPE_F, SET_S, 0, 199.0, 199.0, 0, 0, GROUP_SET_CHZDZ, 0x5020, FLOAT_R, "一次重合闸时间"},
  809. {SETTYPE_F, SET_S, 0, 99.0, 99.0, 0, 0, GROUP_SET_CHZDZ, 0x5021, FLOAT_R, "二次重合闸闭锁时间"},
  810. {SETTYPE_F, SET_S, 0, 199.0, 199.0, 0, 0, GROUP_SET_CHZDZ, 0x5022, FLOAT_R, "二次重合闸时间"},
  811. #ifdef DISP_SET_CH_T3
  812. {SETTYPE_F, SET_S, 0, 199.0, 199.0, 0, 0, GROUP_SET_CHZDZ, 0x0000, FLOAT_R, "三次重合闸时间"},
  813. #endif
  814. #ifdef DISP_CHZOKCHR_2_SW
  815. {SETTYPE_F, SET_S, 0, 199.0, 199.0, 0, 0, GROUP_SET_CHZDZ, 0x0000, FLOAT_R, "重合充电时间"},
  816. {SETTYPE_F, SET_S, 0, 199.0, 199.0, 0, 0, GROUP_SET_CHZDZ, 0x0000, FLOAT_R, "重合闸确认时间"},
  817. #endif
  818. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_CHZDZ, 0x501F, FLOAT_R, "大电流闭锁重合闸定值"},
  819. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_FAYB, 0x0000, NULL_R, "就地馈线自动化软压板"},
  820. {SETTYPE_LIST, SET_NULL, 0, KGFunListNum - 1, 1, KGFunList, KGFunListNum, GROUP_SET_FAYB, 0x500C, UINT_R, "分段/联络模式"},
  821. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_FATT, 0x0000, NULL_R, "就地馈线自动化控制字"},
  822. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FATT, 0x500D, BOOL_R, "电源侧得电延时合闸"},
  823. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FATT, 0x500E, BOOL_R, "负荷侧得电延时合闸"},
  824. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FATT, 0x500F, UINT_R, "A侧失电延时合闸"},
  825. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FATT, 0x5010, UINT_R, "B侧失电延时合闸"},
  826. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FATT, 0x5013, BOOL_R, "合到故障分闸"},
  827. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FATT, 0x5015, BOOL_R, "短时闭锁失压分"},
  828. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FATT, 0x5015, BOOL_R, "相间过流告警投入"},
  829. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FATT, 0x5015, BOOL_R, "接地告警投入"},
  830. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TTList, TZCKListNum, GROUP_SET_FATT, 0x5018, UINT_R, "合到零压保护"},
  831. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FATT, 0x5019, BOOL_R, "非遮断电流保护"},
  832. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FATT, 0x501A, BOOL_R, "PT断线告警"},
  833. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FATT, 0x0000, BOOL_R, "多次失压分闸闭锁"},
  834. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FATT, 0, BOOL_R, "涌流识别投入"},
  835. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FATT, 0, BOOL_R, "硬件残压闭锁"},
  836. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 1, TTList, TTListNum, GROUP_SET_FATT, 0, BOOL_R, "残压闭锁"},
  837. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 1, TTList, TTListNum, GROUP_SET_FATT, 0x5015, BOOL_R, "双侧有压闭锁合闸"},
  838. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 1, TTList, TTListNum, GROUP_SET_FATT, 0x5015, BOOL_R, "手动/遥控分闸闭锁得电合"},
  839. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FATT, 0x5015, BOOL_R, "手合无压闭锁分闸"},
  840. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 1, TTList, TTListNum, GROUP_SET_FATT, 0, BOOL_R, "合到故障分闸闭锁合闸"},
  841. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 1, TTList, TTListNum, GROUP_SET_FATT, 0x5012, BOOL_R, "失电延时分闸"},
  842. #ifdef FA_OC_COUNT
  843. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FATT, 0x0000, BOOL_R, "过流脉冲计数投退"},
  844. #endif
  845. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_FADZ, 0x0000, NULL_R, "馈线自动化定值"},
  846. {SETTYPE_F, SET_PERUN, 0, 220.0, 80.0, 0, 0, GROUP_SET_FADZ, 0x501B, FLOAT_R, "有压定值"},
  847. {SETTYPE_F, SET_PERUN, 0, 220.0, 30.0, 0, 0, GROUP_SET_FADZ, 0x501D, FLOAT_R, "无压定值"},
  848. {SETTYPE_F, SET_S, 0, 99, 99, 0, 0, GROUP_SET_FADZ, 0x501F, FLOAT_R, "得电合闸延时(X时限)"},
  849. {SETTYPE_F, SET_S, 0, 99, 99, 0, 0, GROUP_SET_FADZ, 0x5020, FLOAT_R, "故障检测时限(Y时限)"},
  850. {SETTYPE_F, SET_S, 0, 300, 300, 0, 0, GROUP_SET_FADZ, 0x5021, FLOAT_R, "失压合闸延时(XL时限)"},
  851. {SETTYPE_F, SET_S, 0, 99, 99, 0, 0, GROUP_SET_FADZ, 0x5022, FLOAT_R, "失电分闸延时(Z时限)"},
  852. {SETTYPE_F, SET_S, 0, 99, 99, 0, 0, GROUP_SET_FADZ, 0x5023, FLOAT_R, "闭锁分闸复归时间"},
  853. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_FADZ, 0x5024, FLOAT_R, "相间故障电流I段定值"},
  854. {SETTYPE_F, SET_S, 0, 99, 99, 0, 0, GROUP_SET_FADZ, 0x5026, FLOAT_R, "相间故障电流I段时间"},
  855. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_FADZ, 0x5025, FLOAT_R, "相间故障电流II段定值"},
  856. {SETTYPE_F, SET_S, 0, 99, 99, 0, 0, GROUP_SET_FADZ, 0x5026, FLOAT_R, "相间故障电流II段时间"},
  857. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_FADZ, 0x5025, FLOAT_R, "接地故障电流定值"},
  858. {SETTYPE_F, SET_S, 0, 99, 99, 0, 0, GROUP_SET_FADZ, 0x0000, FLOAT_R, "接地故障时间定值"},
  859. {SETTYPE_F, SET_U, 0, 100.0, 100.0, 0, 0, GROUP_SET_FADZ, 0x0000, FLOAT_R, "复合电压低电压定值"},
  860. {SETTYPE_F, SET_U, 0, 100.0, 100.0, 0, 0, GROUP_SET_FADZ, 0x0000, FLOAT_R, "复合电压负序电压定值"},
  861. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_FADZ, 0x5024, FLOAT_R, "相间过流告警电流定值"},
  862. {SETTYPE_F, SET_S, 0, 99, 99, 0, 0, GROUP_SET_FADZ, 0x5026, FLOAT_R, "相间过流告警时间定值"},
  863. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_FADZ, 0x5025, FLOAT_R, "接地告警电流定值"},
  864. {SETTYPE_F, SET_S, 0, 99, 99, 0, 0, GROUP_SET_FADZ, 0x0000, FLOAT_R, "接地告警时间定值"},
  865. {SETTYPE_F, SET_U, 0, 660.0, 660.0, 0, 0, GROUP_SET_FADZ, 0x0000, FLOAT_R, "零序电压保护电压定值"},
  866. {SETTYPE_F, SET_S, 0, 99.0, 0.6, 0, 0, GROUP_SET_FADZ, 0x0000, FLOAT_R, "零序电压保护时间定值"},
  867. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_FADZ, 0x5027, FLOAT_R, "非遮断电流值"},
  868. {SETTYPE_F, SET_NULL, 0.10, 0.35, 0.35, 0, 0, GROUP_SET_FADZ, 0x0000, FLOAT_R, "二次谐波闭锁系数"},
  869. {SETTYPE_UINT, SET_NULL, 1, 5, 3, 0, 0, GROUP_SET_FADZ, 0x0000, UINT_R, "多次失压分闸闭锁次数"},
  870. {SETTYPE_F, SET_S, 0, 65536.0, 480.0, 0, 0, GROUP_SET_FADZ, 0x0000, FLOAT_R, "多次失压分闸闭锁时间"},
  871. {SETTYPE_F, SET_A, 0, 100.0, 0.05, 0, 0, GROUP_SET_FADZ, 0x5025, FLOAT_R, "无流定值"},
  872. {SETTYPE_F, SET_S, 0, 99.0, 0.1, 0, 0, GROUP_SET_FADZ, 0x501C, FLOAT_R, "有压判定时间"},
  873. {SETTYPE_F, SET_S, 0, 99.0, 0.1, 0, 0, GROUP_SET_FADZ, 0x501E, FLOAT_R, "无压判定时间"},
  874. {SETTYPE_F, SET_S, 0, 99, 6, 0, 0, GROUP_SET_FADZ, 0x5020, FLOAT_R, "联络充电时间"},
  875. #if defined GD_AREA_ZHONGSHAN_2020
  876. {SETTYPE_F, SET_S, 0, 99, 99, 0, 0, GROUP_SET_FADZ, 0x5026, FLOAT_R, "快速跳闸延时"},
  877. #endif
  878. #ifdef FA_OC_COUNT
  879. {SETTYPE_UINT, SET_NULL, 1, 1000, 3, 0, 0, GROUP_SET_FADZ, 0x0000, UINT_R, "过流脉冲次数"},
  880. {SETTYPE_F, SET_S, 0.1, 65536.0, 300.0, 0, 0, GROUP_SET_FADZ, 0x0000, FLOAT_R, "过流脉冲复归时间"},
  881. #endif
  882. #if defined GD_AREA_ECZD_2020
  883. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_GOOSETT, 0x0000, NULL_R, "智能分布式控制字"},
  884. {SETTYPE_LIST, SET_NULL, 0, TGooseFANum - 1, 0, TGooseFA, TGooseFANum, GROUP_SET_GOOSETT, 0x0000, BOOL_R, "分布式FA方式"},
  885. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_GOOSETT, 0x0000, BOOL_R, "联络自投投入"},
  886. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_GOOSETT, 0x0000, BOOL_R, "过载闭锁自投投入"},
  887. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_GOOSETT, 0x0000, BOOL_R, "首开关失压保护投入"},
  888. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_GOOSETT, 0x0000, BOOL_R, "智能分布式启动重合闸"},
  889. {SETTYPE_LIST, SET_NULL, 0, TGooseKGNum - 1, 1, TGooseKG, TGooseKGNum, GROUP_SET_GOOSETT, 0x0000, UINT_R, "本接点开关类型"},
  890. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, NULL_R, "智能分布式定值"},
  891. #if defined GD_AREA_ZHONGSHAN_2020
  892. {SETTYPE_F, SET_A, 0.05, 100.0, 50.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "故障切除相电流I段"},
  893. {SETTYPE_F, SET_S, 0, 100.0, 100.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "相电流I段跳闸延时"},
  894. {SETTYPE_F, SET_A, 0.05, 100.0, 50.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "故障切除相电流II段"},
  895. {SETTYPE_F, SET_S, 0, 100.0, 100.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "相电流II段跳闸延时"},
  896. {SETTYPE_F, SET_A, 0.05, 100.0, 50.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "故障切除零序电流"},
  897. {SETTYPE_F, SET_S, 0, 100.0, 100.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "零序电流跳闸延时"},
  898. {SETTYPE_F, SET_S, 0.00, 100.0, 0.1, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "故障点下游开关隔离时间"},
  899. {SETTYPE_F, SET_S, 0.01, 100.0, 1.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "首开关失压跳闸时限"},
  900. {SETTYPE_F, SET_S, 0.01, 100.0, 5.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "供电恢复时限"},
  901. {SETTYPE_LIST, SET_NULL, 0, TGooseKGNum - 1, 1, TGooseKG, TGooseKGNum, GROUP_SET_GOOSEDZ, 0x0000, UINT_R, "本接点开关类型"},
  902. {SETTYPE_LIST, SET_NULL, 0, FAKGTYPENum - 1, 1, FAKGTYPE, FAKGTYPENum, GROUP_SET_GOOSEDZ, 0x0000, UINT_R, "开关位置类型"},
  903. #else
  904. {SETTYPE_F, SET_U, 0.0, 330.0, 30.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "无压定值"},
  905. {SETTYPE_F, SET_U, 0.0, 330.0, 70.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "有压定值"},
  906. {SETTYPE_F, SET_A, 0.0, 100.0, 0.02, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "无流定值"},
  907. {SETTYPE_F, SET_A, 0.05, 100.0, 50.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "分布式FA过流定值"},
  908. {SETTYPE_F, SET_S, 0, 100.0, 100.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "分布式FA过流时间"},
  909. {SETTYPE_F, SET_A, 0.05, 100.0, 50.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "分布式FA零序过流定值"},
  910. {SETTYPE_F, SET_S, 0, 100.0, 100.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "分布式FA零序过流时间"},
  911. {SETTYPE_F, SET_S, 0, 100.0, 100.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "联络自投充电延时"},
  912. {SETTYPE_F, SET_S, 0.01, 100.0, 1.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "首开关失压跳闸延时"},
  913. {SETTYPE_F, SET_A, 0.05, 100.0, 50.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "过载判断定值"},
  914. {SETTYPE_F, SET_S, 0, 100.0, 100.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "失灵判断延时"},
  915. {SETTYPE_F, SET_S, 0.01, 100.0, 100.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "故障隔离时限"},
  916. {SETTYPE_F, SET_S, 0, 100.0, 5.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "供电恢复时限"},
  917. #endif
  918. #else
  919. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_GOOSETT, 0x0000, NULL_R, "分布式FA控制字"},
  920. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_GOOSETT, 0x0000, BOOL_R, "分布式FA功能"},
  921. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_GOOSETT, 0x0000, BOOL_R, "首开关失压分闸"},
  922. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_GOOSETT, 0x0000, BOOL_R, "本节点供电恢复"},
  923. {SETTYPE_LIST, SET_NULL, 0, TGooseFANum - 1, 0, TGooseFA, TGooseFANum, GROUP_SET_GOOSETT, 0x0000, BOOL_R, "智能分布式动作类型"},
  924. {SETTYPE_LIST, SET_NULL, 0, TGooseKGNum - 1, 1, TGooseKG, TGooseKGNum, GROUP_SET_GOOSETT, 0x0000, UINT_R, "本节点开关类型"},
  925. {SETTYPE_LIST, SET_NULL, 0, THHTYPENum - 1, 0, THHTYPE, THHTYPENum, GROUP_SET_GOOSETT, 0x0000, UINT_R, "组网方式"},
  926. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_GOOSETT, 0x0000, BOOL_R, "母线故障跳末开关"},
  927. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_GOOSETT, 0x0000, BOOL_R, "涌流识别"},
  928. #ifdef GOOSE_NETTYPE_SET
  929. {SETTYPE_LIST, SET_NULL, 0, GOOSE_NET_ListNum - 1, 0, GOOSE_NET_List, GOOSE_NET_ListNum, GROUP_CSTSET_OTHERS, 0x0000, UINT_R, "goose网络类型"},
  930. #endif
  931. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, NULL_R, "分布式FA定值"},
  932. #ifdef GD_AREA_ZHONGSHAN
  933. {SETTYPE_F, SET_A, 0.05, 100.0, 50.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "故障切除相电流I段"},
  934. {SETTYPE_F, SET_S, 0, 100.0, 100.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "相电流I段跳闸延时"},
  935. {SETTYPE_F, SET_A, 0.05, 100.0, 50.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "故障切除相电流II段"},
  936. {SETTYPE_F, SET_S, 0, 100.0, 100.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "相电流II段跳闸延时"},
  937. {SETTYPE_F, SET_A, 0.05, 100.0, 50.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "故障切除零序电流"},
  938. {SETTYPE_F, SET_S, 0, 100.0, 100.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "零序电流跳闸延时"},
  939. #endif
  940. {SETTYPE_F, SET_S, 0.01, 100.0, 1.0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "首开关失压分闸延时"},
  941. {SETTYPE_F, SET_S, 100.0, 5.0, 0, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "恢复供电时间"},
  942. {SETTYPE_F, SET_S, 0.00, 100.0, 0.1, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "故障隔离时间"},
  943. {SETTYPE_F, SET_NULL, 0, 1.00, 0.15, 0, 0, GROUP_SET_GOOSEDZ, 0x0000, FLOAT_R, "涌流识别定值"},
  944. #endif
  945. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_TQHZ, 0x0000, NULL_R, "同期合闸定值"},
  946. {SETTYPE_F, SET_PERUN, 0, 220.0, 220.0, 0, 0, GROUP_SET_TQHZ, 0x0000, FLOAT_R, "同期允许电压差"},
  947. {SETTYPE_F, SET_ANG, 0.0, 30.0, 30.0, 0, 0, GROUP_SET_TQHZ, 0x0000, FLOAT_R, "同期允许相角差"},
  948. {SETTYPE_F, SET_HZ, 0.0, 5.0, 5.0, 0, 0, GROUP_SET_TQHZ, 0x0000, FLOAT_R, "同期允许频率差"},
  949. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_JLTT, 0x0000, NULL_R, "自动解列控制字"},
  950. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_JLTT, 0x0000, BOOL_R, "电压越限解列投入"},
  951. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_JLTT, 0x0000, BOOL_R, "电压滑差闭锁功能"},
  952. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_JLTT, 0x0000, BOOL_R, "频率越限解列投入"},
  953. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_JLTT, 0x0000, BOOL_R, "频率滑差闭锁功能"},
  954. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_JLDZ, 0x0000, NULL_R, "自动解列定值"},
  955. {SETTYPE_F, SET_S, 0, 60.0, 60.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "解列充电时间"},
  956. {SETTYPE_F, SET_PERUN, 0, 220.0, 220.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "电压过低解列定值"},
  957. {SETTYPE_F, SET_S, 0, 999.0, 999.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "电压过低解列时间"},
  958. {SETTYPE_F, SET_PERUN, 0, 220.0, 220.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "低电压解列定值"},
  959. {SETTYPE_F, SET_S, 0, 999.0, 999.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "低电压解列时间"},
  960. {SETTYPE_F, SET_PERUN, 0, 380.0, 380.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "高电压解列定值"},
  961. {SETTYPE_F, SET_S, 0, 999.0, 999.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "高电压解列时间"},
  962. {SETTYPE_F, SET_PERUN, 0, 380.0, 380.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "电压过高解列定值"},
  963. {SETTYPE_F, SET_S, 0, 999.0, 999.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "电压过高解列时间"},
  964. {SETTYPE_F, SET_U_S, 0, 500.0, 500.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "电压滑差定值"},
  965. {SETTYPE_F, SET_HZ, 45.0, 50.0, 50.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "频率过低解列定值"},
  966. {SETTYPE_F, SET_S, 0, 999.0, 999.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "频率过低解列时间"},
  967. {SETTYPE_F, SET_HZ, 45.0, 50.0, 50.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "低频解列定值"},
  968. {SETTYPE_F, SET_S, 0, 999.0, 999.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "低频解列时间"},
  969. {SETTYPE_F, SET_HZ, 50.0, 55.0, 55.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "高频解列定值"},
  970. {SETTYPE_F, SET_S, 0, 999.0, 999.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "高频解列时间"},
  971. {SETTYPE_F, SET_HZ, 50.0, 55.0, 55.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "频率过高解列定值"},
  972. {SETTYPE_F, SET_S, 0, 999.0, 999.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "频率过高解列时间"},
  973. {SETTYPE_F, SET_HZ_S, 0.5, 20.0, 20.0, 0, 0, GROUP_SET_JLDZ, 0x0000, FLOAT_R, "频率滑差定值"},
  974. #ifdef XDL_ZT // 小电流接地
  975. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_XDLJDTT, 0x0000, NULL_R, "小电流接地控制字"},
  976. {SETTYPE_LIST, SET_NULL, 0, TZCKListNum - 1, 0, TZCKList, TZCKListNum, GROUP_SET_XDLJDTT, 0x0000, BOOL_R, "小电流接地保护"},
  977. {SETTYPE_LIST, SET_NULL, 0, START_ListNum - 1, 0, START_List, START_ListNum, GROUP_SET_XDLJDTT, 0x0000, BOOL_R, "小电流接地保护启动重合闸"},
  978. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_XDLJDTT, 0x0000, BOOL_R, "小电流接地保护后加速"},
  979. {SETTYPE_LIST, SET_NULL, 0, XDLQDListNum - 1, 1, XDLQDList, XDLQDListNum, GROUP_SET_XDLJDTT, 0x0000, UINT_R, "小电流启动类型"},
  980. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_XDLJDDZ, 0x0000, NULL_R, "小电流接地定值"},
  981. {SETTYPE_F, SET_S, 0, 99.0, 99.0, 0, 0, GROUP_SET_XDLJDDZ, 0x0000, FLOAT_R, "小电流接地故障时间"},
  982. {SETTYPE_F, SET_S, 0, 900.0, 900.0, 0, 0, GROUP_SET_XDLJDDZ, 0x0000, FLOAT_R, "后加速开放时间"},
  983. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_XDLJDDZ, 0x0000, FLOAT_R, "小电流暂态电流"},
  984. #elif defined FUN_JDXX // 接地选线
  985. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_XDLJD, 0x0000, NULL_R, "小电流接地辅助定值"},
  986. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_XDLJD, 0x0000, BOOL_R, "接地选线告警投退"},
  987. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_XDLJD, 0x0000, BOOL_R, "接地选线跳闸投退"},
  988. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_XDLJD, 0x0000, BOOL_R, "接地选相投退"},
  989. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_XDLJD, 0x0000, BOOL_R, "零序功率方向投退"},
  990. {SETTYPE_F, SET_A, 0, 0.1, 0.001, 0, 0, GROUP_SET_XDLJD, 0x0000, FLOAT_R, "接地电流零漂值"},
  991. {SETTYPE_F, SET_A, 0, 1.8, 0.005, 0, 0, GROUP_SET_XDLJD, 0x0000, FLOAT_R, "启动值"},
  992. {SETTYPE_UINT, SET_NULL, 1, 32, 2, 0, 0, GROUP_SET_XDLJD, 0x0000, UINT_R, "启动点数"},
  993. {SETTYPE_UINT, SET_NULL, 1, 32, 4, 0, 0, GROUP_SET_XDLJD, 0x0000, UINT_R, "确认点数"},
  994. {SETTYPE_UINT, SET_NULL, 1, 128, 16, 0, 0, GROUP_SET_XDLJD, 0x0000, UINT_R, "采样点数"},
  995. {SETTYPE_LIST, SET_NULL, 0, TVolSelListNum - 1, 8, TVolSelList,TVolSelListNum, GROUP_SET_XDLJD, 0x0000, UINT_R, "参考电压选择"},
  996. {SETTYPE_F, SET_U, 0.01, 220, 0.1, 0, 0, GROUP_SET_XDLJD, 0x0000, FLOAT_R, "参考电压启动值"},
  997. {SETTYPE_F, SET_U, 0, 100.0, 1.0, 0, 0, GROUP_SET_XDLJD, 0x0000, FLOAT_R, "接地零序电压定值"},
  998. {SETTYPE_F, SET_S, 0, 1000, 0, 0, 0, GROUP_SET_XDLJD, 0x0000, FLOAT_R, "接地选线动作时间"},
  999. {SETTYPE_F, SET_S, 0, 1000, 0, 0, 0, GROUP_SET_XDLJD, 0x0000, FLOAT_R, "接地选线告警时间"},
  1000. {SETTYPE_LIST, SET_NULL, 0, JDTYPENum - 1, 0, JDTYPE, JDTYPENum, GROUP_SET_SWSET, 0x0000, UINT_R, "系统接地方式"},
  1001. #endif
  1002. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_LA, 0x0000, FLOAT_R, "线路断线告警"},
  1003. {SETTYPE_F, SET_S, 0, 99.0, 99.0, 0, 0, GROUP_SET_LA, 0x0000, FLOAT_R, "线路断线告警确认时间"},
  1004. {SETTYPE_F, SET_NULL, 0, BMLListNum, 0, BMLList, BMLListNum, GROUP_SET_LA, 0x0000, FLOAT_R, "线路断线判定方式"},
  1005. {SETTYPE_F, SET_U, 0, 380.0, 380.0, 0, 0, GROUP_SET_LA, 0x0000, FLOAT_R, "线路断线零压"},
  1006. {SETTYPE_F, SET_A, 0, 50.0, 50.0, 0, 0, GROUP_SET_LA, 0x0000, FLOAT_R, "线路断线零流"},
  1007. {SETTYPE_F, SET_U, 0, 380.0, 380.0, 0, 0, GROUP_SET_LA, 0x0000, FLOAT_R, "线路断线低电压"},
  1008. #ifdef FUNC_DRIVE
  1009. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_BTDCD, 0x0000, NULL_R, "传动开关定值"},
  1010. {SETTYPE_F, SET_S, 0, 99.0, 10, 0, 0, GROUP_SET_BTDCD, 0x0000, FLOAT_R, "延时合闸时间"},
  1011. {SETTYPE_F, SET_S, 0, 99.0, 15, 0, 0, GROUP_SET_BTDCD, 0x0000, FLOAT_R, "结束传动时间"},
  1012. {SETTYPE_F, SET_S, 0, 99.0, 0, 0, 0, GROUP_SET_BTDCD, 0x0000, FLOAT_R, "延时分闸时间"},
  1013. {SETTYPE_F, SET_S, 0, 99.0, 0.3, 0, 0, GROUP_SET_BTDCD, 0x0000, FLOAT_R, "合闸结束传动时间"},
  1014. #endif
  1015. #ifdef FUNC_DRIVE_JY
  1016. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_DRIVE, 0x0000, NULL_R, "传动功能"},
  1017. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_DRIVE, 0x0000, BOOL_R, "开关传动投入"},
  1018. {SETTYPE_F, SET_U, 0, 220.0, 0.0, 0, 0, GROUP_SET_DRIVE, 0x0000, FLOAT_R, "传动模拟电源侧电压"},
  1019. {SETTYPE_F, SET_U, 0, 220.0, 0.0, 0, 0, GROUP_SET_DRIVE, 0x0000, FLOAT_R, "传动模拟负荷侧电压"},
  1020. {SETTYPE_F, SET_U, 0, 220.0, 25.0, 0, 0, GROUP_SET_DRIVE, 0x0000, FLOAT_R, "传动模拟零序电压"},
  1021. {SETTYPE_F, SET_A, 0, 100.0, 10.0, 0, 0, GROUP_SET_DRIVE, 0x0000, FLOAT_R, "传动模拟电流"},
  1022. {SETTYPE_F, SET_A, 0, 100.0, 10.0, 0, 0, GROUP_SET_DRIVE, 0x0000, FLOAT_R, "传动模拟零流"},
  1023. {SETTYPE_F, SET_S, 0, 100.0, 6.0, 0, 0, GROUP_SET_DRIVE, 0x0000, FLOAT_R, "传动电源侧电压时间"},
  1024. {SETTYPE_F, SET_S, 0, 100.0, 6.0, 0, 0, GROUP_SET_DRIVE, 0x0000, FLOAT_R, "传动负荷侧电压时间"},
  1025. {SETTYPE_F, SET_S, 0, 100.0, 1.0, 0, 0, GROUP_SET_DRIVE, 0x0000, FLOAT_R, "传动零压时间"},
  1026. {SETTYPE_F, SET_S, 0, 100.0, 0.2, 0, 0, GROUP_SET_DRIVE, 0x0000, FLOAT_R, "传动过流时间"},
  1027. {SETTYPE_F, SET_S, 0, 100.0, 0.2, 0, 0, GROUP_SET_DRIVE, 0x0000, FLOAT_R, "传动零流时间"},
  1028. {SETTYPE_F, SET_S, 0, 100.0, 10.0, 0, 0, GROUP_SET_DRIVE, 0x0000, FLOAT_R, "再次传动时间"},
  1029. #endif
  1030. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_FSX, 0x0000, NULL_R, "反时限保护"},
  1031. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_FSX, 0x0000, BOOL_R, "反时限投退"},
  1032. {SETTYPE_F, SET_A, 0.3, 10.0, 5.0, 0, 0, GROUP_SET_FSX, 0x0000, FLOAT_R, "反时限基准值"},
  1033. {SETTYPE_F, SET_S, 0.005, 120.0, 120.0, 0, 0, GROUP_SET_FSX, 0x0000, FLOAT_R, "反时限时间"},
  1034. {SETTYPE_LIST, SET_NULL, 0, FSXListNum - 1, 0, FSXList, FSXListNum, GROUP_SET_FSX, 0x0000, UINT_R, "反时限曲线"},
  1035. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_DLYX, 0x0000, NULL_R, "电流越限"},
  1036. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_DLYX, 0x0000, BOOL_R, "电流重载投入"},
  1037. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_DLYX, 0x0000, FLOAT_R, "电流重载定值"},
  1038. {SETTYPE_F, SET_S, 0, 99.0, 99, 0, 0, GROUP_SET_DLYX, 0x0000, FLOAT_R, "电流重载时间"},
  1039. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_DLYX, 0x0000, BOOL_R, "电流过载投入"},
  1040. {SETTYPE_F, SET_A, 0, 100.0, 100.0, 0, 0, GROUP_SET_DLYX, 0x0000, FLOAT_R, "电流过载定值"},
  1041. {SETTYPE_F, SET_S, 0, 99.0, 99, 0, 0, GROUP_SET_DLYX, 0x0000, FLOAT_R, "电流过载时间"},
  1042. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_DLYX, 0x0000, BOOL_R, "负荷越上限投入"},
  1043. {SETTYPE_F, SET_A, 0, 10.0, 5.0, 0, 0, GROUP_SET_DLYX, 0x0000, FLOAT_R, "负荷越上限定值"},
  1044. {SETTYPE_F, SET_S, 0, 99.0, 99, 0, 0, GROUP_SET_DLYX, 0x0000, FLOAT_R, "负荷越上限时间"},
  1045. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_DLYX, 0x0000, BOOL_R, "零序电流越限投退"},
  1046. {SETTYPE_F, SET_A, 0.1, 10.0, 5.0, 0, 0, GROUP_SET_DLYX, 0x0000, FLOAT_R, "零序电流越限定值"},
  1047. {SETTYPE_F, SET_S, 0, 99.0, 99, 0, 0, GROUP_SET_DLYX, 0x0000, FLOAT_R, "零序电流越限时间"},
  1048. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_SWSET, 0x0000, NULL_R, "辅助定值"},
  1049. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_SWSET, 0x0000, BOOL_R, "功率取反投退"},
  1050. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_SWSET, 0x0000, BOOL_R, "保护方向取反投退"},
  1051. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_SWSET, 0x0000, BOOL_R, "未储能告警"},
  1052. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_SWSET, 0x0000, BOOL_R, "控制回路检查"},
  1053. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_SWSET, 0x0000, BOOL_R, "气压低闭锁分合闸"},
  1054. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_SWSET, 0x0000, BOOL_R, "PT1断线检查投退"},
  1055. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_SWSET, 0x0000, BOOL_R, "PT2断线检查投退"},
  1056. #ifdef CUSTOMIZE_BZT // 备自投
  1057. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_SET_BZT, 0x0000, NULL_R, "备自投"},
  1058. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_SET_BZT, 0x0000, BOOL_R, "备自投投退 "},
  1059. {SETTYPE_LIST, SET_NULL, 0, BZTFSListNum - 1, 0, BZTFSList, BZTFSListNum, GROUP_SET_BZT, 0x0000, UINT_R, "备自投方式 "},
  1060. {SETTYPE_F, SET_S, 0.01, 15.0, 10.0, 0, 0, GROUP_SET_BZT, 0x0000, FLOAT_R, "备自投跳闸时间"},
  1061. {SETTYPE_F, SET_S, 0.01, 15.0, 10.0, 0, 0, GROUP_SET_BZT, 0x0000, FLOAT_R, "备自投合闸时间"},
  1062. {SETTYPE_F, SET_S, 1.0, 20.0, 5.0, 0, 0, GROUP_SET_BZT, 0x0000, FLOAT_R, "备自投充电时间"},
  1063. {SETTYPE_F, SET_U, 0, 440.0, 100, 0, 0, GROUP_SET_BZT, 0x0000, FLOAT_R, "备自投有压定值"},
  1064. {SETTYPE_F, SET_U, 0, 440.0, 40, 0, 0, GROUP_SET_BZT, 0x0000, FLOAT_R, "备自投失压定值"},
  1065. {SETTYPE_F, SET_A, 0, 5.0, 0.1, 0, 0, GROUP_SET_BZT, 0x0000, FLOAT_R, "备自投无流定值"},
  1066. {SETTYPE_LIST, SET_NULL, 0, TVolSelListNum - 1, 0, TVolSelList, TVolSelListNum, GROUP_SET_BZT, 0x0000, UINT_R, "备自投母线电压1"},
  1067. {SETTYPE_LIST, SET_NULL, 0, TVolSelListNum - 1, 3, TVolSelList, TVolSelListNum, GROUP_SET_BZT, 0x0000, UINT_R, "备自投母线电压2"},
  1068. {SETTYPE_LIST, SET_NULL, 0, TVolSelListNum - 1, 0, TVolSelList, TVolSelListNum, GROUP_SET_BZT, 0x0000, UINT_R, "备自投1#进线电压"},
  1069. {SETTYPE_LIST, SET_NULL, 0, TVolSelListNum - 1, 3, TVolSelList, TVolSelListNum, GROUP_SET_BZT, 0x0000, UINT_R, "备自投2#进线电压"},
  1070. {SETTYPE_LIST, SET_NULL, 0, TISelListNum - 1, 0, TISelList, TISelListNum, GROUP_SET_BZT, 0x0000, UINT_R, "备自投1#进线电流"},
  1071. {SETTYPE_LIST, SET_NULL, 0, TISelListNum - 1, 0, TISelList, TISelListNum, GROUP_SET_BZT, 0x0000, UINT_R, "备自投2#进线电流"},
  1072. #endif
  1073. };
  1074. const int SW_SET_NUMBER = sizeof(tSwSetTable) / sizeof(tSwSetTable[0]); // 定值数目
  1075. const int SET_NUMBER = ((sizeof(tSwSetTable) / sizeof(tSwSetTable[0])) * SWITCH_NUM_MAX + sizeof(tPubSetTable) / sizeof(tPubSetTable[0]));
  1076. // 内部定值
  1077. const TSETTABLE tCstSetTable[] =
  1078. {
  1079. /* 类型 单位 最小值 最大值 默认值 列表 列表数 组 遥调地址 类型 描述 */
  1080. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, NULL_R, "保护功能"},
  1081. #ifdef XDL_ZT
  1082. {SETTYPE_F, SET_U, 0, 220.0, 220.0, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, FLOAT_R, "小电流零压1定值"},
  1083. {SETTYPE_F, SET_S, 0, 100.0, 0.04, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, FLOAT_R, "小电流零压1时间"},
  1084. {SETTYPE_F, SET_U, 0, 220.0, 220.0, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, FLOAT_R, "小电流零压2定值"},
  1085. {SETTYPE_F, SET_S, 0, 100.0, 0.04, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, FLOAT_R, "小电流零压2时间"},
  1086. #endif
  1087. {SETTYPE_F, SET_NULL, 0, 65536.0, 1.2, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, FLOAT_R, "幅值加速滤波系数"},
  1088. {SETTYPE_F, SET_A, 0.01, 25.0, 2.0, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, FLOAT_R, "突变量定值"},
  1089. {SETTYPE_F, SET_A, 0, 5.0, 0.1, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, FLOAT_R, "无流定值"},
  1090. {SETTYPE_F, SET_S, 0.2, 60.0, 5.0, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, FLOAT_R, "整组复归时间"},
  1091. {SETTYPE_F, SET_S, 0.05, 10.0, 0.15, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, FLOAT_R, "跳闸失败时间"},
  1092. {SETTYPE_F, SET_S, 0.05, 10.0, 2.0, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, FLOAT_R, "合闸失败时间"},
  1093. #ifndef DISP_CHZOKCHR_2_SW
  1094. {SETTYPE_F, SET_S, 15.0, 300.0, 180.0, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, FLOAT_R, "二次重合充电时间"},
  1095. {SETTYPE_F, SET_S, 0.3, 999.0, 180.0, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, FLOAT_R, "重合确认时间"},
  1096. #endif
  1097. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_PROTECT, 0x0000, BOOL_R, "零压闭锁零流"},
  1098. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_PROTECT, 0x0000, BOOL_R, "低压闭锁过流"},
  1099. {SETTYPE_F, SET_U, 1.0, 100.0, 100.0, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, FLOAT_R, "零压闭锁定值"},
  1100. {SETTYPE_F, SET_U, 10.0, 220.0, 80.0, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, FLOAT_R, "低压闭锁定值"},
  1101. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_PROTECT, 0x0000, BOOL_R, "低频滑差闭锁投退"},
  1102. {SETTYPE_F, SET_HZ_S, 0.3, 10.0, 0.3, 0, 0, GROUP_CSTSET_PROTECT, 0x0000, FLOAT_R, "低频减载滑差"},
  1103. #ifdef PRO_AL_LOCK_HZ
  1104. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_PROTECT, 0x0000, BOOL_R, "解列闭锁重合闸"},
  1105. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_PROTECT, 0x0000, BOOL_R, "解列后启动重合闸判频率"},
  1106. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_PROTECT, 0x0000, BOOL_R, "解列后启动重合闸判电压"},
  1107. #endif
  1108. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_CSTSET_CALC, 0x0000, NULL_R, "计算功能"},
  1109. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_CALC, 0x0000, BOOL_R, "频率跟踪投退"},
  1110. {SETTYPE_UINT, SET_NULL, 1, 15, 13, 0, 0, GROUP_CSTSET_CALC, 0x0000, UINT_R, "谐波计算次数"},
  1111. {SETTYPE_F, SET_NULL, 0, 1.0, 0.01, 0, 0, GROUP_CSTSET_CALC, 0x0000, BOOL_R, "谐波校正系数"},
  1112. {SETTYPE_5INT, SET_NULL, -100.0, 100.0, 0.0, 0, 0, GROUP_CSTSET_CALC, 0x0000, INT_R, "交流温漂(ppm)"},
  1113. {SETTYPE_5INT, SET_NULL, -10000.0, 10000.0, 0.0, 0, 0, GROUP_CSTSET_CALC, 0x0000, INT_R, "直流温漂(ppm)"},
  1114. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_CALC, 0x0000, BOOL_R, "归零值投退"},
  1115. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_CALC, 0x0000, BOOL_R, "零序电压自产"},
  1116. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_CSTSET_COMM, 0x0000, NULL_R, "通讯功能"},
  1117. {SETTYPE_5INT, SET_S, 0, 3600, 20, 0, 0, GROUP_CSTSET_COMM, 0x0000, UINT_R, "101子站重发"},
  1118. {SETTYPE_5INT, SET_S, 0, 3600, 600, 0, 0, GROUP_CSTSET_COMM, 0x0000, UINT_R, "101通道时间"},
  1119. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_COMM, 0x0000, BOOL_R, "101初始化原因03"},
  1120. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_COMM, 0x0000, BOOL_R, "104序号检查"},
  1121. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_COMM, 0x0000, BOOL_R, "101FCB检查"},
  1122. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_COMM, 0x0000, BOOL_R, "点号连续上送"},
  1123. {SETTYPE_LIST, SET_NULL, 0, JMListNum - 1, 0, JMList, JMListNum, GROUP_CSTSET_COMM, 0x0000, UINT_R, "加密功能"},
  1124. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_COMM, 0x0000, BOOL_R, "远动测试模式"},
  1125. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_COMM, 0x0000, BOOL_R, "SOE通讯续传"},
  1126. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_COMM, 0x0000, BOOL_R, "SOE上电续传"},
  1127. #ifdef FIX_PARAM_FORMAT
  1128. {SETTYPE_LIST, SET_NULL, 0, TULF8ListNum - 1, 1, TULF8List, TULF8ListNum, GROUP_CSTSET_COMM, 0x0000, UTINY_R, "固定参数上送格式"},
  1129. #endif
  1130. {SETTYPE_LIST, SET_NULL, 0, EQUListNum - 1, 0, EQUList, EQUListNum, GROUP_CSTSET_COMM, 0x0000, BOOL_R, "装置类型"},
  1131. {SETTYPE_F, SET_NULL, 0, 1.0, 0.01, 0, 0, GROUP_CSTSET_COMM, 0x0000, FLOAT_R, "遥测滤波系数"},
  1132. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_CSTSET_FA, 0x0000, NULL_R, "馈线自动化"},
  1133. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_FA, 0x0000, BOOL_R, "瞬压板投退"},
  1134. {SETTYPE_F, SET_S, 0, 100.0, 15, 0, 0, GROUP_CSTSET_FA, 0x0000, FLOAT_R, "DFA充电时间"},
  1135. {SETTYPE_F, SET_S, 1.0, 100.0, 60, 0, 0, GROUP_CSTSET_FA, 0x0000, FLOAT_R, "DFA隔离放电时间"},
  1136. {SETTYPE_F, SET_S, 1.0, 100.0, 15, 0, 0, GROUP_CSTSET_FA, 0x0000, FLOAT_R, "DFA恢复放电时间"},
  1137. {SETTYPE_F, SET_S, 1.0, 100.0, 15, 0, 0, GROUP_CSTSET_FA, 0x0000, FLOAT_R, "DFA禁止转发时间 "},
  1138. {SETTYPE_F, SET_S, 0.1, 100.0, 0.3, 0, 0, GROUP_CSTSET_FA, 0x0000, FLOAT_R, "DFA发送展宽时间"},
  1139. {SETTYPE_F, SET_S, 0.01, 0.1, 0.040, 0, 0, GROUP_CSTSET_FA, 0x0000, FLOAT_R, "goose判断时间"},
  1140. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_FA, 0x0000, BOOL_R, "负荷开关goose发布"},
  1141. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_FA, 0x0000, BOOL_R, "goose发布在故障确认后"},
  1142. {SETTYPE_F, SET_S, 0.00, 10.0, 6.0, 0, 0, GROUP_CSTSET_FA, 0x0000, FLOAT_R, "单侧来电解锁时间"},
  1143. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_FA, 0x0000, BOOL_R, "FA闭锁合闸禁止遥合"},
  1144. #ifdef FA_PL_PJ
  1145. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_FA, 0x0000, BOOL_R, "有压判频率"},
  1146. #endif
  1147. {SETTYPE_LIST, SET_NULL, 0, UYY_ListNum - 1, 0, UYY_List, UYY_ListNum, GROUP_CSTSET_FA, 0x0000, UINT_R, "有压判据"},
  1148. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_CSTSET_RECORD, 0x0000, NULL_R, "录波功能"},
  1149. {SETTYPE_LIST, SET_NULL, 0, WFListNum - 1, 1, WFList, WFListNum, GROUP_CSTSET_RECORD, 0x0000, UINT_R, "文件格式"},
  1150. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_RECORD, 0x0000, BOOL_R, "过流故障启动"},
  1151. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_RECORD, 0x0000, BOOL_R, "线路失压启动"},
  1152. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_RECORD, 0x0000, BOOL_R, "零序电压启动"},
  1153. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_RECORD, 0x0000, BOOL_R, "零序过流启动"},
  1154. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_RECORD, 0x0000, BOOL_R, "零流突变启动"},
  1155. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_RECORD, 0x0000, BOOL_R, "重合闸启动"},
  1156. #if defined FUN_JDXX || defined XDL_ZT
  1157. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_RECORD, 0x0000, BOOL_R, "小电流接地启动"},
  1158. #endif
  1159. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_CSTSET_OTHERS, 0x0000, NULL_R, "辅助定值"},
  1160. {SETTYPE_UINT, SET_S, 1, 30, 20, 0, 0, GROUP_CSTSET_OTHERS, 0x0000, UINT_R, "未储能告警时间"},
  1161. {SETTYPE_UINT, SET_S, 0, 65535, 0, 0, 0, GROUP_CSTSET_OTHERS, 0x0000, UINT_R, "失电闭锁遥信时间"},
  1162. {SETTYPE_F, SET_HOUR, 0, 100.0, 0.5, 0, 0, GROUP_CSTSET_OTHERS, 0x0000, FLOAT_R, "电池充满维持时间"},
  1163. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_OTHERS, 0x0000, BOOL_R, "记录文件投退"},
  1164. {SETTYPE_LIST, SET_NULL, 0, HisFileFormatListNum - 1, 0,HisFileFormatList, HisFileFormatListNum, GROUP_CSTSET_OTHERS, 0x0000, UTINY_R, "记录文件格式"},
  1165. {SETTYPE_LIST, SET_NULL, 0, TFGKEY_TYPE_TOTAL - 1, 1, TFGKEY_Type, TFGKEY_TYPE_TOTAL, GROUP_CSTSET_OTHERS, 0x0000, UINT_R, "复归按键复用功能选择"},
  1166. {SETTYPE_UINT, SET_S, 0, 60, 3, 0, 0, GROUP_CSTSET_OTHERS, 0x0000, UINT_R, "复归按键复用功能防抖时间"},
  1167. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_OTHERS, 0x0000, BOOL_R, "远动参数有效"},
  1168. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_OTHERS, 0x0000, BOOL_R, "现场运行模式"},
  1169. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_OTHERS, 0x0000, BOOL_R, "101文件传输确认帧"},
  1170. {SETTYPE_UINT, SET_NULL, 0, 2000, 0, 0, 0, GROUP_CSTSET_OTHERS, 0x0000, UINT_R, "测量差值"},
  1171. {SETTYPE_F, SET_U, 0, 150, 48, 0, 0, GROUP_CSTSET_OTHERS, 0x0000, FLOAT_R, "直流电压定值"},
  1172. {SETTYPE_UINT, SET_NULL, 1, 2, 1, 0, 0, GROUP_CSTSET_OTHERS, 0x0000, UINT_R, "直流通道数"},
  1173. {SETTYPE_LIST, SET_NULL, 0, TPT_UNum - 1, 0, PUList, TPT_UNum, GROUP_CSTSET_OTHERS, 0x0000, UINT_R, "负荷侧电压选择"},
  1174. {SETTYPE_LIST, SET_NULL, 0, DISPMODEListNum - 1,0, DISPMODEList, DISPMODEListNum, GROUP_CSTSET_OTHERS, 0x0000, UINT_R, "液晶遥测数据显示"},
  1175. {SETTYPE_LIST, SET_NULL, 0, AddrNumListNum - 1, 0, AddrNumList, AddrNumListNum, GROUP_CSTSET_OTHERS, 0x0000, BOOL_R, "故障事件遥信地址长度"},
  1176. #ifdef YC_QUANTITY
  1177. {SETTYPE_UINT, SET_NULL, 1, 999, 50, 0, 0, GROUP_CSTSET_OTHERS, 0x0000, UINT_R, "每间隔遥参数量"},
  1178. #endif
  1179. #ifdef METERING_ENERGY
  1180. {SETTYPE_LIST, SET_NULL, 0, DDListNum - 1, DDListNum - 1, DDList, DDListNum, GROUP_CSTSET_OTHERS, 0x0000, UINT_R, "电度计算方式"},
  1181. {SETTYPE_LIST, SET_NULL, 0, JLFSListNum - 1, 0, JLFSList, JLFSListNum, GROUP_CSTSET_OTHERS, 0x0000, UINT_R, "计量接线方式"},
  1182. {SETTYPE_LIST, SET_NULL, 0, WGFSListNum - 1, 0, WGFSList, WGFSListNum, GROUP_CSTSET_OTHERS, 0x0000, UINT_R, "无功电能算法"},
  1183. #endif
  1184. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_OTHERS, 0x0000, BOOL_R, "SOE遥测系数投退"},
  1185. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_CSTSET_OTHERS, 0x0000, BOOL_R, "遥测总死区有效投退"},
  1186. };
  1187. const int CSTSET_NUMBER = (sizeof(tCstSetTable) / sizeof(tCstSetTable[0]));
  1188. /**********************************************************************
  1189. 装置参数
  1190. ***********************************************************************/
  1191. const TSETTABLE tEquipParaTable[] = // min max default
  1192. {
  1193. /* 类型 单位 最小值 最大值 默认值 列表 列表数 组 遥调地址 类型 描述 */
  1194. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_PARA_PROTOCAL, 0x0000, NULL_R, "规约参数"},
  1195. {SETTYPE_5INT, SET_NULL, 1, 65535, 1, 0, 0, GROUP_PARA_PROTOCAL, 0x0000, UINT_R, "装置地址"},
  1196. {SETTYPE_LIST, SET_NULL, 0, PTTypeListNum - 1, 0, PTTypeList, PTTypeListNum, GROUP_PARA_PROTOCAL, 0x0000, UINT_R, "遥信报文类型"},
  1197. {SETTYPE_LIST, SET_NULL, 0, PTTypeListNum - 1, 2, PTTypeList, PTTypeListNum, GROUP_PARA_PROTOCAL, 0x0000, UINT_R, "遥控报文类型"},
  1198. {SETTYPE_LIST, SET_NULL, 0, YCTypeListNum - 1, 2, YCTypeList, YCTypeListNum, GROUP_PARA_PROTOCAL, 0x0000, UINT_R, "遥测报文类型"},
  1199. {SETTYPE_F, SET_S, 0, 3600, 0.4, 0, 0, GROUP_PARA_PROTOCAL, 0x0000, FLOAT_R, "遥测发送间隔"},
  1200. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_PARA_PROTOCAL, 0x0000, BOOL_R, "遥测自动上送"},
  1201. {SETTYPE_LIST, SET_NULL, 0, YCTypeDeadNum - 1, 0, YCTypeDead, YCTypeDeadNum, GROUP_PARA_PROTOCAL, 0x0000, BOOL_R, "遥测上传死区类型"},
  1202. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_PARA_PROTOCAL, 0x0000, BOOL_R, "COS自动上送"},
  1203. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_PARA_PROTOCAL, 0x0000, BOOL_R, "事件参数上送"},
  1204. {SETTYPE_5INT, SET_S, 10, 3600, 300, 0, 0, GROUP_PARA_PROTOCAL, 0x0000, UINT_R, "遥控超时时间"},
  1205. {SETTYPE_LIST, SET_NULL, 0, IEC101AddrListNum - 1, 1, IEC101AddrList, IEC101AddrListNum, GROUP_PARA_PROTOCAL, 0x0000, BOOL_R, "101链路地址"},
  1206. {SETTYPE_LIST, SET_NULL, 0, IEC101AddrListNum - 1, 1, IEC101AddrList, IEC101AddrListNum, GROUP_PARA_PROTOCAL, 0x0000, BOOL_R, "101应用地址"},
  1207. {SETTYPE_LIST, SET_NULL, 0, IEC101AddrListNum - 1, 1, IEC101AddrList, IEC101AddrListNum, GROUP_PARA_PROTOCAL, 0x0000, BOOL_R, "101传送原因"},
  1208. {SETTYPE_LIST, SET_NULL, 0, T104ServerListNum - 1, 0, T104ServerList, T104ServerListNum, GROUP_PARA_PROTOCAL, 0x0000, BOOL_R, "104规约模式"},
  1209. {SETTYPE_5INT, SET_NULL, 0, 65535, 2404, 0, 0, GROUP_PARA_PROTOCAL, 0x0000, UINT_R, "104规约端口"},
  1210. {SETTYPE_5INT, SET_S, 1, 65535, 30, 0, 0, GROUP_PARA_PROTOCAL, 0x0000, UINT_R, "104确认超时"},
  1211. {SETTYPE_5INT, SET_S, 1, 65535, 30, 0, 0, GROUP_PARA_PROTOCAL, 0x0000, UINT_R, "104测试超时"},
  1212. {SETTYPE_5INT, SET_NULL, 0, 48, 12, 0, 0, GROUP_PARA_PROTOCAL, 0x0000, UINT_R, "104 K值"},
  1213. {SETTYPE_5INT, SET_NULL, 0, 48, 8, 0, 0, GROUP_PARA_PROTOCAL, 0x0000, UINT_R, "104 W值"},
  1214. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_PROTOCAL, 0x0000, STR_R, "104主站1 IP"},
  1215. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_PROTOCAL, 0x0000, STR_R, "104主站2 IP"},
  1216. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_PROTOCAL, 0x0000, STR_R, "104主站3 IP"},
  1217. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_PROTOCAL, 0x0000, STR_R, "104主站4 IP"},
  1218. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_PARA_LINK, 0x0000, NULL_R, "104子站通信"},
  1219. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_LINK, 0x0000, STR_R, "104子站1 IP"},
  1220. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_LINK, 0x0000, STR_R, "104子站2 IP"},
  1221. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_LINK, 0x0000, STR_R, "104子站3 IP"},
  1222. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_LINK, 0x0000, STR_R, "104子站4 IP"},
  1223. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_LINK, 0x0000, STR_R, "104子站5 IP"},
  1224. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_LINK, 0x0000, STR_R, "104子站6 IP"},
  1225. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_LINK, 0x0000, STR_R, "104子站7 IP"},
  1226. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_LINK, 0x0000, STR_R, "104子站8 IP"},
  1227. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_PARA_SERIAL, 0x0000, NULL_R, "串行口通道"},
  1228. {SETTYPE_LIST, SET_NULL, 0, ProtocolListNum - 1,0, ProtocolList, ProtocolListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "485口1规约"},
  1229. {SETTYPE_LIST, SET_NULL, 0, BaudListNum - 1, 4, BaudList, BaudListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "485口1波特率"},
  1230. {SETTYPE_LIST, SET_NULL, 0, ParityListNum - 1, 2, ParityList, ParityListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "485口1校验"},
  1231. {SETTYPE_LIST, SET_NULL, 0, ProtocolListNum - 1,0, ProtocolList, ProtocolListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "485口2规约"},
  1232. {SETTYPE_LIST, SET_NULL, 0, BaudListNum - 1, 4, BaudList, BaudListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "485口2波特率"},
  1233. {SETTYPE_LIST, SET_NULL, 0, ParityListNum - 1, 2, ParityList, ParityListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "485口2校验"},
  1234. {SETTYPE_LIST, SET_NULL, 0, ProtocolListNum - 1,0, ProtocolList, ProtocolListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "232口1规约"},
  1235. {SETTYPE_LIST, SET_NULL, 0, BaudListNum - 1, 4, BaudList, BaudListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "232口1波特率"},
  1236. {SETTYPE_LIST, SET_NULL, 0, ParityListNum - 1, 2, ParityList, ParityListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "232口1校验方式"},
  1237. {SETTYPE_LIST, SET_NULL, 0, ProtocolListNum - 1,0, ProtocolList, ProtocolListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "232口2规约"},
  1238. {SETTYPE_LIST, SET_NULL, 0, BaudListNum - 1, 4, BaudList, BaudListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "232口2波特率"},
  1239. {SETTYPE_LIST, SET_NULL, 0, ParityListNum - 1, 2, ParityList, ParityListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "232口2校验方式"},
  1240. {SETTYPE_LIST, SET_NULL, 0, ProtocolListNum - 1,7, ProtocolList, ProtocolListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "GPS串口5规约"},
  1241. {SETTYPE_LIST, SET_NULL, 0, BaudListNum - 1, 4, BaudList, BaudListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "GPS串口5波特率"},
  1242. {SETTYPE_LIST, SET_NULL, 0, ParityListNum - 1, 2, ParityList, ParityListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "GPS串口5校验"},
  1243. {SETTYPE_LIST, SET_NULL, 0, ProtocolListNum - 1,0, ProtocolList, ProtocolListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "备用串口6规约"},
  1244. {SETTYPE_LIST, SET_NULL, 0, BaudListNum - 1, 4, BaudList, BaudListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "备用串口6波特率"},
  1245. {SETTYPE_LIST, SET_NULL, 0, ParityListNum - 1, 2, ParityList, ParityListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "备用串口6校验方式"},
  1246. {SETTYPE_LIST, SET_NULL, 0, ProtocolListNum - 1,0, ProtocolList, ProtocolListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "备用串口7规约"},
  1247. {SETTYPE_LIST, SET_NULL, 0, BaudListNum - 1, 4, BaudList, BaudListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "备用串口7波特率"},
  1248. {SETTYPE_LIST, SET_NULL, 0, ParityListNum - 1, 2, ParityList, ParityListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "备用串口7校验"},
  1249. #ifdef FUN_FUXI_ESAM
  1250. {SETTYPE_LIST, SET_NULL, 0, ProtocolListNum - 1,2, ProtocolList, ProtocolListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "南网加密规约"},
  1251. {SETTYPE_LIST, SET_NULL, 0, BaudListNum - 1, 7, BaudList, BaudListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "南网加密波特率"},
  1252. {SETTYPE_LIST, SET_NULL, 0, ParityListNum - 1, 0, ParityList, ParityListNum, GROUP_PARA_SERIAL, 0x0000, UINT_R, "南网加密校验"},
  1253. #endif
  1254. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_PARA_ETHERNET, 0x0000, NULL_R, "以太网通道"},
  1255. {SETTYPE_LIST, SET_NULL, 0, Net_Eth_ListNum - 1,0, Net_Eth_List, Net_Eth_ListNum, GROUP_PARA_ETHERNET, 0x0000, UINT_R, "1#_网络"},
  1256. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0xc0a80164, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "1#IP地址"}, // IP 192.168.1.100
  1257. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0xffffff00, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "1#子网掩码"}, // 255.255.255.0
  1258. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "1#目标网络"}, // 192.168.64.240
  1259. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "1#目标掩码"}, // 0.0.0.0
  1260. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "1#网关"}, // 192.168.64.240
  1261. {SETTYPE_LIST, SET_NULL, 0, Net_Eth_ListNum - 1,1, Net_Eth_List, Net_Eth_ListNum, GROUP_PARA_ETHERNET, 0x0000, UINT_R, "2#_网络"},
  1262. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0xc0a80264, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "2#IP地址"}, // IP 192.168.2.100
  1263. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0xffffff00, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "2#子网掩码"}, // 255.255.255.0
  1264. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "2#目标网络"}, // IP 192.168.2.100
  1265. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "2#目标掩码"}, // 0.0.0.0
  1266. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "2#网关"}, // 192.168.2.100
  1267. {SETTYPE_LIST, SET_NULL, 0, Net_Eth_ListNum - 1,2, Net_Eth_List, Net_Eth_ListNum, GROUP_PARA_ETHERNET, 0x0000, UINT_R, "3#_网络"},
  1268. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0xc0a80364, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "3#IP地址"}, // IP 192.168.3.100
  1269. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0xffffff00, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "3#子网掩码"}, // 255.255.255.0
  1270. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "3#目标网络"}, // IP 192.168.3.100
  1271. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "3#目标掩码"}, // 0.0.0.0
  1272. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "3#网关"}, // 192.168.3.100
  1273. {SETTYPE_LIST, SET_NULL, 0, Net_Eth_ListNum - 1,2, Net_Eth_List, Net_Eth_ListNum, GROUP_PARA_ETHERNET, 0x0000, UINT_R, "4#_网络"},
  1274. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0xc0a840f0, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "4#IP地址"}, // IP 192.168.4.100
  1275. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0xffffff00, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "4#子网掩码"}, // 255.255.255.0
  1276. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "4#目标网络"}, // 192.168.3.100
  1277. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "4#目标掩码"}, // 0.0.0.0
  1278. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "4#网关"}, // 192.168.3.254
  1279. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0xc0a840fe, 0, GROUP_PARA_ETHERNET, 0x0000, STR_R, "默认网关"}, // 192.168.64.254
  1280. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_PARA_TIME, 0x0000, NULL_R, "对时"},
  1281. {SETTYPE_LIST, SET_NULL, 0, TimeListNum - 1, 0, TimeList, TimeListNum, GROUP_PARA_TIME, 0x0000, UINT_R, "对时方式"},
  1282. {SETTYPE_LIST, SET_NULL, 0, TimeListSelectNum - 1, 0, TimeListSelect, TimeListSelectNum, GROUP_PARA_TIME, 0x0000, UINT_R, "标准化对时方式"},
  1283. {SETTYPE_4INT, SET_S, 1, 300, 1, 0, 0, GROUP_PARA_TIME, 0x0000, UINT_R, "卫星对时间隔"},
  1284. {SETTYPE_4INT, SET_MIN, 1, 6000, 60, 0, 0, GROUP_PARA_TIME, 0x0000, UINT_R, "对时切换时长"},
  1285. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_TIME, 0x0000, STR_R, "SNTP服务器IP"},
  1286. {SETTYPE_5INT, SET_S, 10, 1024, 64, 0, 0, GROUP_PARA_TIME, 0x0000, UINT_R, "SNTP对时间隔"},
  1287. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_PARA_BATTERY, 0x0000, NULL_R, "电池管理"},
  1288. {SETTYPE_YMD, SET_NULL, 0, 0xffffffff, 0, 0, 0, GROUP_PARA_BATTERY, 0x0000, ULONG_R, "活化启动时间"},
  1289. {SETTYPE_UINT, SET_HOUR, 0, 23, 0, 0, 0, GROUP_PARA_BATTERY, 0x0000, UINT_R, "电池活化时刻"},
  1290. {SETTYPE_UINT, SET_D, 0, 360, 0, 0, 0, GROUP_PARA_BATTERY, 0x0000, UINT_R, "电池活化周期"},
  1291. {SETTYPE_F, SET_HOUR, 1.0, 100.0, 6.0, 0, 0, GROUP_PARA_BATTERY, 0x0000, FLOAT_R, "电池告警阀值"},
  1292. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_PARA_RMT, 0x0000, NULL_R, "远动参数"},
  1293. #ifdef PARAM_DEAD_PER
  1294. {SETTYPE_F, SET_PER, 0.0, 100.0, 1.0, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "遥测死区"},
  1295. #else
  1296. {SETTYPE_F, SET_NULL, 0, 0.3, 0.01, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "遥测死区"},
  1297. #endif
  1298. #ifndef PARAM_DEAD_PER
  1299. {SETTYPE_F, SET_PER, 0.0, 0.3, 0.01, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "电流死区"},
  1300. {SETTYPE_F, SET_PER, 0.0, 0.3, 0.01, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "交流电压死区"},
  1301. {SETTYPE_F, SET_PER, 0.0, 0.3, 0.01, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "直流电压死区"},
  1302. {SETTYPE_F, SET_PER, 0.0, 0.3, 0.01, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "功率死区"},
  1303. {SETTYPE_F, SET_PER, 0.0, 0.3, 0.05, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "频率死区"},
  1304. {SETTYPE_F, SET_PER, 0.0, 0.3, 0.01, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "功率因数死区"},
  1305. #else
  1306. {SETTYPE_F, SET_PER, 0.0, 100.0, 1.0, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "电流死区"},
  1307. {SETTYPE_F, SET_PER, 0.0, 100.0, 1.0, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "交流电压死区"},
  1308. {SETTYPE_F, SET_PER, 0.0, 100.0, 1.0, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "直流电压死区"},
  1309. {SETTYPE_F, SET_PER, 0.0, 100.0, 1.0, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "功率死区"},
  1310. {SETTYPE_F, SET_PER, 0.0, 100.0, 1.0, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "频率死区"},
  1311. {SETTYPE_F, SET_PER, 0.0, 100.0, 1.0, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "功率因数死区"},
  1312. #endif
  1313. {SETTYPE_LINT, SET_MS, 0.0, 60000.0, 20.0, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "遥信防抖时间"},
  1314. {SETTYPE_LINT, SET_MS, 0.0, 50000.0, 200.0, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "分闸脉冲"},
  1315. {SETTYPE_LINT, SET_MS, 0.0, 50000.0, 200.0, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "合闸脉冲"},
  1316. {SETTYPE_F, SET_U, 0, 20.0, 5, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "电压零漂"},
  1317. {SETTYPE_F, SET_A, 0, 1.0, 0.25, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "相电流零漂"},
  1318. {SETTYPE_F, SET_A, 0, 1.0, 0.04, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "零序电流零漂"},
  1319. #ifdef CPU_FUXI
  1320. {SETTYPE_F, SET_U, 0, 20.0, 1, 0, 0, GROUP_PARA_RMT, 0x0000, FLOAT_R, "直流电压零漂"},
  1321. #endif
  1322. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_PARA_OTHERS, 0x0000, NULL_R, "其它"},
  1323. {SETTYPE_LINT, SET_MS, 0.0, 50000.0, 200.0, 0, 0, GROUP_PARA_OTHERS, 0x0000, FLOAT_R, "合分闸脉冲"},
  1324. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_PARA_OTHERS, 0x0000, BOOL_R, "信号自动复归投退"},
  1325. {SETTYPE_5INT, SET_MIN, 0, 3000, 2880, 0, 0, GROUP_PARA_OTHERS, 0x0000, FLOAT_R, "信号自动复归时间"},
  1326. #ifdef YX_RESET_TIME
  1327. {SETTYPE_F, SET_S, 0, 6000, 5, 0, 0, GROUP_PARA_OTHERS, 0x0000, FLOAT_R, "故障遥信保持时间"},
  1328. #endif
  1329. {SETTYPE_5INT, SET_S, 0, 65535, 180, 0, 0, GROUP_PARA_OTHERS, 0x0000, UINT_R, "液晶背光时间"},
  1330. {SETTYPE_LIST, SET_NULL, 0, LinkListNum - 1, 1, LinkList, LinkListNum, GROUP_PARA_OTHERS, 0x0000, UINT_R, "级联状态监测"},
  1331. #if (defined GD_AREA_ZHONGSHAN || defined GD_AREA_ZHONGSHAN_2020)
  1332. {SETTYPE_UINT, SET_NULL, 1, 32, 1, 0, 0, GROUP_PARA_OTHERS, 0x0000, FLOAT_R, "GOOSE通信ID"},
  1333. {SETTYPE_F, SET_S, 0, 100.0, 6.0, 0, 0, GROUP_PARA_OTHERS, 0x0000, FLOAT_R, "GOOSE通信T1"},
  1334. {SETTYPE_F, SET_S, 0, 100.0, 3.0, 0, 0, GROUP_PARA_OTHERS, 0x0000, FLOAT_R, "GOOSE通信T2"},
  1335. #endif
  1336. #ifdef RCD_STRAN_M_EN
  1337. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_PARA_OTHERS, 0x0000, BOOL_R, "级联录波主站使能"},
  1338. #endif
  1339. #ifdef YPARA_LINK_S_EN
  1340. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_PARA_OTHERS, 0x0000, BOOL_R, "子站参数变化通知"},
  1341. #endif
  1342. #ifdef FUN_FUXI_ESAM
  1343. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_PARA_S1, 0x0000, NULL_R, "南网加密配置(重新配置需重启)"},
  1344. {SETTYPE_LIST, SET_NULL, 0, T104ServerListNum - 1, 0, T104ServerList, T104ServerListNum, GROUP_PARA_S1, 0x0000, BOOL_R, "加密工作模式"},
  1345. {SETTYPE_5INT, SET_NULL, 0, 65535, 2404, 0, 0, GROUP_PARA_S1, 0x0000, UINT_R, "加密监听端口"},
  1346. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0x00000000, 0, GROUP_PARA_S1, 0x0000, STR_R, "NAT"}, // 192.168.1.100
  1347. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0xc0a80296, 0, GROUP_PARA_S1, 0x0000, STR_R, "加密IP地址"}, // 192.168.1.100
  1348. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0xffffff00, 0, GROUP_PARA_S1, 0x0000, STR_R, "加密掩码"}, // 255.255.255.0
  1349. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0xc0a80201, 0, GROUP_PARA_S1, 0x0000, STR_R, "加密网关"}, // 192.168.1.1
  1350. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0xac100001, 0, GROUP_PARA_S1, 0x0000, STR_R, "远端IP地址"}, // 192.168.0.2
  1351. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0xffffff00, 0, GROUP_PARA_S1, 0x0000, STR_R, "远端掩码"}, // 255.255.255.0
  1352. {SETTYPE_IP, SET_NULL, 0, 0xffffffff, 0, (void *)0xac100014, 0, GROUP_PARA_S1, 0x0000, STR_R, "远端网关"}, // 192.168.0.1
  1353. #endif
  1354. #ifdef METERING_ENERGY
  1355. {SETTYPE_LABEL, SET_NULL, 0, 0, 0, 0, 0, GROUP_PARA_HISFILE, 0x0000, NULL_R, "历史文件"},
  1356. {SETTYPE_UINT, SET_MIN, 5, 60.0, 15.0, 0, 0, GROUP_PARA_HISFILE, 0x0000, UINT_R, "遥测定点间隔时间"},
  1357. {SETTYPE_LIST, SET_NULL, 0, TTListNum - 1, 0, TTList, TTListNum, GROUP_PARA_HISFILE, 0x0000, BOOL_R, "线损文件投退"},
  1358. {SETTYPE_UINT, SET_NULL, 1, 16.0, 1.0, 0, 0, GROUP_PARA_HISFILE, 0x0000, UINT_R, "开关ID"},
  1359. {SETTYPE_UINT, SET_MIN, 5, 60.0, 15.0, 0, 0, GROUP_PARA_HISFILE, 0x0000, UINT_R, "线损定点间隔时间"},
  1360. {SETTYPE_UINT, SET_D, 1, 28.0, 1.0, 0, 0, GROUP_PARA_HISFILE, 0x0000, UINT_R, "考核日冻结日"},
  1361. {SETTYPE_UINT, SET_HOUR, 0, 23.0, 0, 0, 0, GROUP_PARA_HISFILE, 0x0000, UINT_R, "考核日冻结小时"},
  1362. #endif
  1363. };
  1364. const int EQUIP_PARA_NUMBER = sizeof(tEquipParaTable) / sizeof(tEquipParaTable[0]);
  1365. // 时间设置
  1366. const TSETTABLE tTimeTable[] =
  1367. {
  1368. {SETTYPE_UINT, SET_NULL, 0, 99, 15, 0, 0, 0, 0, 0, "年"},
  1369. {SETTYPE_UINT, SET_NULL, 1, 12, 1, 0, 0, 0, 0, 0, "月"},
  1370. {SETTYPE_UINT, SET_NULL, 1, 31, 1, 0, 0, 0, 0, 0, "日"},
  1371. {SETTYPE_UINT, SET_NULL, 0, 24, 8, 0, 0, 0, 0, 0, "时"},
  1372. {SETTYPE_UINT, SET_NULL, 0, 59, 8, 0, 0, 0, 0, 0, "分"},
  1373. {SETTYPE_UINT, SET_NULL, 0, 59, 8, 0, 0, 0, 0, 0, "秒"},
  1374. };
  1375. const int TIME_SET_NUMBER = sizeof(tTimeTable) / sizeof(tTimeTable[0]);
  1376. // 密码设置
  1377. const TSETTABLE tCodeTable[] =
  1378. {
  1379. {SETTYPE_4INT, SET_NULL, 0, 9999, 0, 0, 0, 0, 0, 0, "用户密码"},
  1380. };
  1381. const int CODE_SET_NUMBER = sizeof(tCodeTable) / sizeof(tCodeTable[0]);
  1382. // 输入密码
  1383. const TSETTABLE tPasswordTable[] =
  1384. {
  1385. {SETTYPE_4INT, SET_NULL, 0, 9999, 0, 0, 0, 0, 0, 0, "输入密码"},
  1386. };
  1387. const TRMTSETTABLE tRmtsettable[]= //
  1388. { // 点号 单位 定值组属性 开关定值偏移索引 系数 对应索引
  1389. #if (0)
  1390. {0x5001, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, PARA_CT_ONE,}, // CT额定一次值
  1391. {0x5002, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, PARA_CT_TWO,}, // CT额定二次值
  1392. {0x5003, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, PARA_0CT_ONE,}, // 零序CT额定一次值
  1393. {0x5004, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, PARA_0CT_TWO,}, // 零序CT额定二次值
  1394. {0x5005, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, PARA_PPT_ONE,}, // 电源侧PT额定一次值
  1395. {0x5006, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, PARA_PPT_TWO,}, // 电源侧PT额定二次值
  1396. {0x5007, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, PARA_LPT_ONE,}, // 负荷侧PT额定一次值
  1397. {0x5008, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, PARA_LPT_TWO,}, // 负荷侧PT额定二次值
  1398. {0x5009, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, PARA_0PPT_ONE,}, // 电源侧零序PT额定一次值
  1399. {0x500A, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, PARA_0PPT_TWO,}, // 电源侧零序PT额定二次值
  1400. {0x500B, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, PARA_0LPT_ONE,}, // 负荷侧零序PT额定一次值
  1401. {0x500C, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, PARA_0LPT_TWO,}, // 负荷侧零序PT额定二次值
  1402. {0x500D, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_FUNSOFTPLT_GEN_TT,}, // 常规保护投入
  1403. {0x500E, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_FUNSOFTPLT_AR_TT,}, // 自动重合闸投入
  1404. {0x500F, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_FUNSOFTPLT_FA_TT,}, // 就地馈线自动化投入
  1405. {0x5010, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_FUNSOFTPLT_DFA_TT,}, // 智能分布式投入
  1406. {0x5011, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_FUNSOFTPLT_SYNC_TT,}, // 同期合闸投入
  1407. {0x5012, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_FUNSOFTPLT_STE_TT,}, // 自动解列投入
  1408. {0x5013, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_FUNSOFTPLT_XDL_TT,}, // 小电流接地保护投入
  1409. {0x5014, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_FUNSOFTPLT_LA_TT,}, // 线路断线告警投入
  1410. {0x5015, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_FUNSOFTPLT_TRASW_TT,}, // 不停电传动投入
  1411. {0x5016, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_RUNSOFTOLT_TOTALFUN_TT,}, // 自动化功能总投退软压板
  1412. {0x5017, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_RUNSOFTOLT_TOTALOUT_TT,}, // 自动化功能总出口软压板
  1413. {0x5018, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_RUNSOFTOLT_AROUT_TT,}, // 重合闸软压板
  1414. {0x5019, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_RUNSOFTOLT_REMOPT_TT,}, // 远程运维投入
  1415. {0x501A, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, PARA_FIX_AREA,}, // 定值区号
  1416. {0x501B, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GL1_TT,}, // 过流Ⅰ段投入
  1417. {0x501C, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GL2_TT,}, // 过流Ⅱ段投入
  1418. {0x501D, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GL3_TT,}, // 过流Ⅲ段投入
  1419. {0x501E, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GL1_Dir_TT,}, // 过流Ⅰ段投方向
  1420. {0x501F, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GL2_Dir_TT,}, // 过流Ⅱ段投方向
  1421. {0x5020, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GL3_Dir_TT,}, // 过流Ⅲ段投方向
  1422. {0x5021, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_LA_CON_PTBREAK_TT,}, // PT断线检测投入
  1423. {0x5022, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_LX1_TT,}, // 零序过流Ⅰ段投入
  1424. {0x5023, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_LX2_TT,}, // 零序过流Ⅱ段投入
  1425. {0x5024, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GENDY_U0HV_TT,}, // 零序过电压保护
  1426. {0x5025, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GLJS_TT,}, // 后加速保护投入
  1427. {0x5026, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GLQDCH_TT,}, // 过流保护启动重合闸
  1428. {0x5027, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_LXQDCH_TT,}, // 零序过流保护启动重合闸
  1429. {0x5028, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_YLBS_TT,}, // 涌流闭锁投入
  1430. {0x5029, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GL1_I,}, // 过流Ⅰ段定值
  1431. {0x502A, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GL1_T,}, // 过流Ⅰ段时间
  1432. {0x502B, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GL2_I,}, // 过流Ⅱ段定值
  1433. {0x502C, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GL2_T,}, // 过流Ⅱ段时间
  1434. {0x502D, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GL3_I,}, // 过流Ⅲ段定值
  1435. {0x502E, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GL3_T,}, // 过流Ⅲ段时间
  1436. {0x502F, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_LX1_I,}, // 零序过流Ⅰ段定值
  1437. {0x5030, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_LX1_T,}, // 零序过流Ⅰ段时间
  1438. {0x5031, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_LX2_I,}, // 零序过流Ⅱ段定值
  1439. {0x5032, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_LX2_T,}, // 零序过流Ⅱ段时间
  1440. {0x5033, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GENDY_U0HV_U,}, // 零序过电压保护定值
  1441. {0x5034, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GENDY_U0HV_T,}, // 零序过电压保护时间
  1442. {0x5035, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_JSKF_T,}, // 加速段保护开放时间
  1443. {0x5036, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GLJS_I,}, // 后加速过流保护定值
  1444. {0x5037, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_GLJS_T,}, // 后加速过流保护时间
  1445. {0x5038, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_LXJS_I,}, // 后加速零序电流保护定值
  1446. {0x5039, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_LXJS_T,}, // 后加速零序电流保护时间
  1447. {0x503A, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_YLBS_V,}, // 二次谐波闭锁系数
  1448. {0x503B, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_CH1_TT,}, // 一次重合闸投入
  1449. {0x503C, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_CH2_TT,}, // 二次重合闸投入
  1450. {0x503D, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_CHJTQ_TT,}, // 重合闸检同期
  1451. {0x503E, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_CHJWY_TT,}, // 重合闸检无压
  1452. {0x503F, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_CH_DLBS_TT,}, // 大电流闭锁重合投入
  1453. {0x5040, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_CHKF_T,}, // 重合闸开放时间
  1454. {0x5041, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_CHCD_T,}, // 重合闸充电时间
  1455. {0x5042, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_CH1_T,}, // 一次重合闸时间
  1456. {0x5043, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_ECBS_T,}, // 二次重合闸闭锁时间
  1457. {0x5044, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_CH2_T,}, // 二次重合闸时间
  1458. {0x5045, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_CH_DLBS_I,}, // 大电流闭锁重合定值
  1459. {0x5046, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_TYPE,}, // 分段/联络模式
  1460. {0x5047, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_S_A_VO,}, // 电源侧得电延时合闸
  1461. {0x5048, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_S_B_VO,}, // 负荷侧得电延时合闸
  1462. {0x5049, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_L_A_LO,}, // A侧失压延时合闸
  1463. {0x504A, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_L_B_LO,}, // B侧失压延时合闸
  1464. {0x504B, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_CUR_TT,}, // 合到故障分闸
  1465. {0x504C, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_CLOK_LF_TT,}, // 短时失压闭锁分闸
  1466. {0x504D, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_OVI_ALM_TT,}, // 相间过流告警投入
  1467. {0x504E, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_OVI0_ALM_TT,}, // 接地告警投入
  1468. {0x504F, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_U0_TT,}, // 合到零压保护
  1469. {0x5050, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_ILOCKOFF_TT,}, // 非遮断电流保护
  1470. {0x5051, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_LA_FA_PTBREAK_TT,}, // PT断线告警
  1471. {0x5052, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_LOST_V_LOCK_TT,}, // 多次失压分闸闭锁
  1472. {0x5053, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_INRUSH_C_TT,}, // 涌流闭锁投入
  1473. {0x5054, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_HW_RESI_VOLT_TT,}, // 硬件残压模块投入
  1474. {0x5055, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_U_HAVE,}, // 有压定值
  1475. {0x5056, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_U_NO,}, // 无压定值
  1476. {0x5057, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_X_T,}, // 得电合闸延时(X时限)
  1477. {0x5058, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_Y_T,}, // 故障检测时限(Y时限)
  1478. {0x5059, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_XL_T,}, // 失压合闸延时(XL时限)
  1479. {0x505A, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_Z_T,}, // 失电分闸延时(Z时限)
  1480. {0x505B, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_CLOK_LF_T,}, // 闭锁分闸复归时间
  1481. {0x505C, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_GL1_I,}, // 相间故障电流I段定值
  1482. {0x505D, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_GL1_T,}, // 相间故障电流I段时间
  1483. {0x505E, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_GL2_I,}, // 相间故障电流II段定值
  1484. {0x505F, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_GL2_T,}, // 相间故障电流II段时间
  1485. {0x5060, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_LX_I,}, // 接地故障电流定值
  1486. {0x5061, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_LX_T,}, // 接地故障时间定值
  1487. {0x5062, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_COMPOUND_LOWU,}, // 复合电压低电压定值
  1488. {0x5063, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_COMPOUND_NSU,}, // 复合电压负序电压定值
  1489. {0x5064, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_OVI_ALM_I,}, // 相间过流告警电流定值
  1490. {0x5065, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_OVI_ALM_T,}, // 相间过流告警时间定值
  1491. {0x5066, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_OVI0_ALM_I,}, // 接地告警电流定值
  1492. {0x5067, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_OVI0_ALM_T,}, // 接地告警时间定值
  1493. {0x5068, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_U0_U,}, // 零序电压保护电压定值
  1494. {0x5069, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_U0_T,}, // 零序电压保护时间定值
  1495. {0x506A, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_FA_ILOCKOFF_I,}, // 非遮断电流值
  1496. {0x506B, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_INRUSH_C_I,}, // 二次谐波闭锁系数
  1497. {0x506C, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_TYPE_TT,}, // 分布式FA方式
  1498. {0x506D, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_L_TYPE_TT,}, // 联络自投投入
  1499. {0x506E, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_OVI_LOCK_L_TT,}, // 过载闭锁自投投入
  1500. {0x506F, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_FSW_LV_TT,}, // 首开关失压保护投入
  1501. {0x5070, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_STR_AR_TT,}, // 智能分布式启动重合闸
  1502. {0x5071, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_U_HAVE,}, // 有压定值
  1503. {0x5072, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_U_NO,}, // 无压定值
  1504. {0x5073, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_C_NO,}, // 无流定值
  1505. {0x5074, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_GL_I,}, // 分布式FA过流定值
  1506. {0x5075, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_GL_T,}, // 分布式FA过流时间
  1507. {0x5076, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_LX_I,}, // 分布式FA零序过流定值
  1508. {0x5077, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_LX_T,}, // 分布式FA零序过流时间
  1509. {0x5078, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_L_CHG_T,}, // 联络自投充电延时
  1510. {0x5079, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_XL_T,}, // 联络自投合闸延时
  1511. {0x507A, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_FSW_LVOFF_T,}, // 首开关失压跳闸延时
  1512. {0x507B, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_FAULT_CUT_T,}, // 故障隔离时限
  1513. {0x507C, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_OVI_I,}, // 过载判断定值
  1514. {0x507D, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_DFA_NOTWORK_T,}, // 失灵判断延时
  1515. {0x507E, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_SYNC_ALLOW_U,}, // 同期允许电压差
  1516. {0x507F, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_SYNC_ALLOW_ANG,}, // 同期允许相角差
  1517. {0x5080, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_SYNC_ALLOW_FRQ,}, // 同期允许频率差
  1518. {0x5081, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_U_TT,}, // 电压越限解列投入
  1519. {0x5082, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_U_SLIP_T,}, // 电压滑差闭锁功能
  1520. {0x5083, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_F_TT,}, // 频率越限解列投入
  1521. {0x5084, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_F_SLIP_T,}, // 频率滑差闭锁功能
  1522. {0x5085, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_CHAR_T,}, // 解列充电时间
  1523. {0x5086, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_LOW_U,}, // 低电压解列定值
  1524. {0x5087, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_LOW_T,}, // 低电压解列时间
  1525. {0x5088, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_TOO_LOW_U,}, // 电压过低解列定值
  1526. {0x5089, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_TOO_LOW_T,}, // 电压过低解列时间
  1527. {0x508A, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_HIGH_U,}, // 高电压解列定值
  1528. {0x508B, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_HIGH_T,}, // 高电压解列时间
  1529. {0x508C, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_TOO_HIGH_U,}, // 电压过高解列定值
  1530. {0x508D, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_TOO_HIGH_T,}, // 电压过高解列时间
  1531. {0x508E, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_U_RATE,}, // 电压滑差定值
  1532. {0x508F, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_LOW_FRQ,}, // 低频解列定值
  1533. {0x5090, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_LOW_FRQ_T,}, // 低频解列时间
  1534. {0x5091, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_TOO_LOW_FRQ,}, // 频率过低解列定值
  1535. {0x5092, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_TOO_LOW_FRQ_T,}, // 频率过低解列时间
  1536. {0x5093, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_HIGH_FRQ,}, // 高频解列定值
  1537. {0x5094, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_HIGH_FRQ_T,}, // 高频解列时间
  1538. {0x5095, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_TOO_HIGH_FRQ,}, // 频率过高解列定值
  1539. {0x5096, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_TOO_HIGH_FRQ_T,}, // 频率过高解列时间
  1540. {0x5097, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_STE_FRQ_RATE,}, // 频率滑差定值
  1541. {0x5098, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_XDL_TT,}, // 小电流接地保护
  1542. {0x5099, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_XDL_STR_AR_TT,}, // 小电流接地保护启动重合闸
  1543. {0x509A, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_XDL_HJS_TT,}, // 小电流接地保护后加速
  1544. {0x509B, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_CET_U0_OVV_T,}, // 小电流接地故障时间 TODO 暂时使用集中式的零压时间来代替 因为波形回放是暂态 不能有延时
  1545. {0x509C, FLOAT_R, RMT_GRP_SWSET, 0, 1.0, SET_XDL_HJSKF_T,}, // 后加速开放时间
  1546. {0x509D, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_LA_BREAKLINE_A_T,}, // 线路断线告警确认时间
  1547. {0x509E, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_TRASW_DELAY_ON_T,}, // 延时合闸时间
  1548. {0x509F, FLOAT_R, RMT_GRP_PUSET, 0, 1.0, SET_TRASW_END_T,}, // 结束传动时间
  1549. {0x8001, STR_R, RMT_GRP_NUMBER, 0, 1.0, PARA_NUM, }, /* 终端ID */
  1550. {0x8002, STR_R, RMT_GRP_NUMBER, 0, 1.0, PARA_NUM, }, /* 终端厂商 */
  1551. {0x8003, STR_R, RMT_GRP_NUMBER, 0, 1.0, PARA_NUM, }, /* 终端型号 */
  1552. {0x8004, STR_R, RMT_GRP_NUMBER, 0, 1.0, PARA_NUM, }, /* 终端硬件版本 */
  1553. {0x8005, STR_R, RMT_GRP_NUMBER, 0, 1.0, PARA_NUM, }, /* 终端软件版本 */
  1554. {0x8006, INT_R, RMT_GRP_EQSET, 0, 1.0, CSTSET_AP_COM, }, /* 规约参数 */
  1555. {0x8007, INT_R, RMT_GRP_EQSET, 0, 1.0, CSTSET_AP_EQU_ADDR }, /* 终端逻辑地址 */
  1556. {0x8008, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, CSTSET_AP_YC_DEAD_ZONE }, /* 遥测死区 */
  1557. {0x8009, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, CSTSET_AP_DI_AS_TIME }, /* 开入量采集防抖时间 */
  1558. {0x800a, FLOAT_R, RMT_GRP_EQSET, 0, 1.0, CSTSET_AP_BAAC }, /* 蓄电池自动活化周期 */
  1559. {0x800b, STR_R, RMT_GRP_EQSET, 0, 1.0, CSTSET_AP_IP_M1 }, /* 主站侧IP1地址 */
  1560. {0x800c, STR_R, RMT_GRP_EQSET, 0, 1.0, CSTSET_AP_IP_M2 }, /* 主站侧IP2地址 */
  1561. {0x800d, STR_R, RMT_GRP_EQSET, 0, 1.0, CSTSET_AP_IP_M3 }, /* 主站侧IP3地址 */
  1562. {0x800e, STR_R, RMT_GRP_EQSET, 0, 1.0, CSTSET_AP_IP_M4 }, /* 主站侧IP4地址 */
  1563. #endif
  1564. };
  1565. const int RMT_SET_TABLE_NUMBER = sizeof( tRmtsettable ) / sizeof(tRmtsettable[0]);
  1566. const TFIXEDSETTABLE tfixedsettable[]= //
  1567. {
  1568. #if !defined CPU_FUXI
  1569. {FIXED_SET_EQU, 0x8001, STR_R, "D30", "终端类型",},
  1570. {FIXED_SET_SYS, 0x8002, STR_R, "Linux 5.10.214", "操作系统",},
  1571. {FIXED_SET_MAU, 0x8003, STR_R, "", " 制造商",},
  1572. {FIXED_SET_HVR, 0x8004, STR_R, "HV01.02", "硬件版本",},
  1573. {FIXED_SET_SVR, 0x8005, STR_R, "", "软件版本",},
  1574. {FIXED_SET_CRC, 0x8006, USHORT_R,"", "软件校验",},
  1575. {FIXED_SET_COM, 0x8007, STR_R, "101-2016,104-2016", "通信规约",},
  1576. {FIXED_SET_TPE, 0x8008, STR_R, "CSP-6000", "出厂型号",},
  1577. {FIXED_SET_ID, 0x8009, STR_R, "", "终端ID号",},
  1578. {FIXED_SET_MAC1, 0x800A, STR_R, "", "网卡1MAC",},
  1579. {FIXED_SET_MAC2, 0x800B, STR_R, "", "网卡2MAC",},
  1580. {FIXED_SET_PTRATE, 0x800C, STR_R, "100", "PT变比",},
  1581. {FIXED_SET_CTRATE, 0x800D, STR_R, "120", "CT变比",},
  1582. #else
  1583. {FIXED_SET_ID, 0x8001, STR_R, "", "终端ID",},
  1584. {FIXED_SET_MAU, 0x8002, STR_R, "", "终端厂商",},
  1585. {FIXED_SET_TPE, 0x8003, STR_R, "", "终端型号",},
  1586. {FIXED_SET_HVR, 0x8004, STR_R, "HV01.00", "终端硬件版本",},
  1587. {FIXED_SET_SVR, 0x8005, STR_R, "SV01.00", "终端软件版本",},
  1588. {FIXED_SET_COM, 0x8006, UINT_R, "104", "规约参数",},
  1589. {FIXED_SET_EQU_ADDR, 0x8007, UINT_R, "1", "终端逻辑地址",},
  1590. {FIXED_SET_YC_DEAD_ZONE, 0x8008, FLOAT_R, "2", "遥测死区",},
  1591. {FIXED_SET_DI_AS_TIME, 0x8009, FLOAT_R, "20", "开入量采集防抖时间",},
  1592. {FIXED_SET_BAAC, 0x800a, FLOAT_R, "2", "蓄电池自动活化周期",},
  1593. {FIXED_SET_IP_M1, 0x800b, STR_R, "", "主站侧IP1地址",},
  1594. {FIXED_SET_IP_M2, 0x800c, STR_R, "", "主站侧IP2地址",},
  1595. {FIXED_SET_IP_M3, 0x800d, STR_R, "", "主站侧IP3地址",},
  1596. {FIXED_SET_IP_M4, 0x800e, STR_R, "", "主站侧IP4地址",},
  1597. {FIXED_SET_CRC, 0x800f, STR_R, "", "软件校验",},
  1598. {FIXED_SET_MAN, 0x8010, STR_R, "", "终端名称",},
  1599. {FIXED_SET_CPT, 0x8011, STR_R, "", "编译时间",},
  1600. #endif
  1601. };
  1602. const int FIXEDSET_TABLE_NUMBER = sizeof( tfixedsettable ) / sizeof(tfixedsettable[0]);
  1603. const CSTVAL_FORWARD_TABLE tCstValForwardTable[] =
  1604. {//以下元素排序时需按分组排序:装置参数、公共定值、保护定值、内部定值
  1605. #if defined GD_AREA_NAME //举例
  1606. // 装置参数
  1607. {SETGROUP_TYPE_PARA, PARA_ADDR, 0x5001}, //装置地址
  1608. {SETGROUP_TYPE_PARA, PARA_DEAD_I, 0x5002}, //电流死区
  1609. {SETGROUP_TYPE_PARA, PARA_DEAD_U, 0x5003}, //交流电压死区
  1610. {SETGROUP_TYPE_PARA, PARA_DEAD_P, 0x5004}, //功率死区
  1611. {SETGROUP_TYPE_PARA, PARA_DEAD_COS, 0x5005}, //功率因数死区
  1612. {SETGROUP_TYPE_PARA, PARA_YXFD, 0x5006}, //遥信防抖时间
  1613. {SETGROUP_TYPE_PARA, PARA_BAT_INTERVAL, 0x5007}, //电池活化间隔
  1614. // 公共定值
  1615. {SETGROUP_TYPE_PUB, SET_SECTION, 0x5008}, //定值区
  1616. {SETGROUP_TYPE_PUB, SET_BHCT1_A, 0x5009}, //保护CT额定值1次
  1617. {SETGROUP_TYPE_PUB, SET_BHCT2_A, 0x500A}, //保护CT额定值2次
  1618. {SETGROUP_TYPE_PUB, SET_I0CT1_A, 0x500B}, //零序CT额定值1次
  1619. {SETGROUP_TYPE_PUB, SET_I0CT2_A, 0x500C}, //零序CT额定值2次
  1620. // 保护定值
  1621. {SETGROUP_TYPE_BH, SET_EDIT_PAR_YB, 0x5010}, // 远方修改投入
  1622. {SETGROUP_TYPE_BH, SET_GL1_TT, 0x5012}, // 过流1投入
  1623. {SETGROUP_TYPE_BH, SET_GL2_TT, 0x5013}, // 过流2投入
  1624. {SETGROUP_TYPE_BH, SET_BH_PTDX, 0x5014}, // PT断线检查
  1625. {SETGROUP_TYPE_BH, SET_LX1_TT, 0x5015}, // 零序1投入
  1626. {SETGROUP_TYPE_BH, SET_BH_XBBS_TT, 0x5016}, // 涌流闭锁投入
  1627. {SETGROUP_TYPE_BH, SET_CH1_TT, 0x5017}, // 一次重合闸投入
  1628. {SETGROUP_TYPE_BH, SET_DLYX_TT, 0x5018}, // 过负荷告警投入
  1629. #endif
  1630. };
  1631. struct THREE_REMOTE g_three_remote_func[]=
  1632. {
  1633. {KEYWORD_YX,"遥信","<交流>","可配置成交流遥信",get_yx_ac},
  1634. //示例:
  1635. //{KEYWORD_YC,"遥测","<**>","****",void},
  1636. //{KEYWORD_YK,"遥控","<**>","****",void},
  1637. };
  1638. const int REMOTE_NUM = (sizeof(g_three_remote_func)/sizeof(g_three_remote_func[0]));
  1639. struct _list_item
  1640. {
  1641. const SET_LIST *list;
  1642. int num;
  1643. };
  1644. struct _list_item g_list_all[] =
  1645. {
  1646. {TTList, sizeof(TTList) / sizeof(SET_LIST),},
  1647. {GJHZList, sizeof(GJHZList) / sizeof(SET_LIST),},
  1648. {TZList, sizeof(TZList) / sizeof(SET_LIST),},
  1649. {FSXList, sizeof(FSXList) / sizeof(SET_LIST),},
  1650. {CHZList, sizeof(CHZList) / sizeof(SET_LIST),},
  1651. {CHJSList, sizeof(CHJSList) / sizeof(SET_LIST),},
  1652. {BaudList, sizeof(BaudList) / sizeof(SET_LIST),},
  1653. {ParityList, sizeof(ParityList) / sizeof(SET_LIST),},
  1654. {ProtocolList, sizeof(ProtocolList) / sizeof(SET_LIST),},
  1655. {KGFunList, sizeof(KGFunList) / sizeof(SET_LIST),},
  1656. {TimeList, sizeof(TimeList) / sizeof(SET_LIST),},
  1657. {PTTypeList, sizeof(PTTypeList) / sizeof(SET_LIST),},
  1658. {YCTypeList, sizeof(YCTypeList) / sizeof(SET_LIST),},
  1659. {IEC101AddrList, sizeof(IEC101AddrList) / sizeof(SET_LIST),},
  1660. {AddrNumList, sizeof(AddrNumList) / sizeof(SET_LIST),},
  1661. {TZCKList, sizeof(TZCKList) / sizeof(SET_LIST),},
  1662. {TZGJList, sizeof(TZGJList) / sizeof(SET_LIST),},
  1663. {HHFunList, sizeof(HHFunList) / sizeof(SET_LIST),},
  1664. {Net_Eth_List, sizeof(Net_Eth_List) / sizeof(SET_LIST),},
  1665. {FA_List, sizeof(FA_List) / sizeof(SET_LIST),},
  1666. {WFList, sizeof(WFList) / sizeof(SET_LIST),},
  1667. {JMList, sizeof(JMList) / sizeof(SET_LIST),},
  1668. {JDTYPE, sizeof(JDTYPE) / sizeof(SET_LIST),},
  1669. {XDLQDList, sizeof(XDLQDList) / sizeof(SET_LIST),},
  1670. {KGFun1List, sizeof(KGFun1List) / sizeof(SET_LIST),},
  1671. {T104ServerList, sizeof(T104ServerList) / sizeof(SET_LIST),},
  1672. {TVolSelList, sizeof(TVolSelList) / sizeof(SET_LIST),},
  1673. {HZList, sizeof(HZList) / sizeof(SET_LIST),},
  1674. {TGooseKG, sizeof(TGooseKG) / sizeof(SET_LIST),},
  1675. {TGooseFA, sizeof(TGooseFA) / sizeof(SET_LIST),},
  1676. {THHTYPE, sizeof(THHTYPE) / sizeof(SET_LIST),},
  1677. {TFA_Type, sizeof(TFA_Type) / sizeof(SET_LIST),},
  1678. {TPT_Type, sizeof(TPT_Type) / sizeof(SET_LIST),},
  1679. {EQUList, sizeof(EQUList) / sizeof(SET_LIST),},
  1680. {YCTypeDead, sizeof(YCTypeDead) / sizeof(SET_LIST),},
  1681. {PUList, sizeof(PUList) / sizeof(SET_LIST),},
  1682. {LinkList, sizeof(LinkList) / sizeof(SET_LIST),},
  1683. {DISPMODEList, sizeof(DISPMODEList) / sizeof(SET_LIST),},
  1684. {GOOSE_NET_List, sizeof(GOOSE_NET_List) / sizeof(SET_LIST),},
  1685. {FAKGTYPE, sizeof(FAKGTYPE) / sizeof(SET_LIST),},
  1686. #ifdef CUSTOMIZE_BZT // 备自投
  1687. {BZTFSList, sizeof(BZTFSList) / sizeof(SET_LIST),},
  1688. {TISelList, sizeof(TISelList) / sizeof(SET_LIST),},
  1689. #endif
  1690. {TFGKEY_Type, sizeof(TFGKEY_Type) / sizeof(SET_LIST),},
  1691. {UYY_List, sizeof(UYY_List) / sizeof(SET_LIST),},
  1692. #ifdef METERING_ENERGY
  1693. {DDList, sizeof(DDList) / sizeof(SET_LIST),},
  1694. {JLFSList, sizeof(JLFSList) / sizeof(SET_LIST),},
  1695. {WGFSList, sizeof(WGFSList) / sizeof(SET_LIST),},
  1696. #endif
  1697. {HisFileFormatList, sizeof(HisFileFormatList) / sizeof(SET_LIST),},
  1698. #ifdef FIX_PARAM_FORMAT
  1699. {TULF8List, sizeof(TULF8List) / sizeof(SET_LIST),},
  1700. #endif
  1701. {TimeListSelect, sizeof(TimeListSelect) / sizeof(SET_LIST),},
  1702. {TBLTYPE, sizeof(TBLTYPE) / sizeof(SET_LIST),},
  1703. {FilterTYPE, sizeof(FilterTYPE) / sizeof(SET_LIST),},
  1704. {WaveletTYPE, sizeof(WaveletTYPE) / sizeof(SET_LIST),},
  1705. {START_List, sizeof(START_List) / sizeof(SET_LIST),},
  1706. {BMLList, sizeof(BMLList) / sizeof(SET_LIST),},
  1707. };
  1708. #define LIST_ALL_NUM (sizeof(g_list_all) / sizeof(struct _list_item))
  1709. // 得到一个固定参数的值
  1710. int set_get_fixed_arg(int index, char *buf, int len)
  1711. {
  1712. RMT_FIXED_TABLE tfixedset;
  1713. int i;
  1714. iec_init_fixedset(&g_t104[0], &tfixedset, true); // 获取固定定值
  1715. // 检查参数
  1716. if (index < 0 || index >= FIXEDSET_TABLE_NUMBER) // FIXEDSET_TABLE_NUMBER)
  1717. {
  1718. return -1;
  1719. }
  1720. if (buf == NULL || len < 32)
  1721. {
  1722. return -2;
  1723. }
  1724. memset(buf, 0, len);
  1725. len--;
  1726. #if !defined CPU_FUXI
  1727. for (i = 0; i < RMT_FIXED_SET_NUM; i++)
  1728. {
  1729. if (index == tfixedset.set[i].type)
  1730. {
  1731. switch (index)
  1732. {
  1733. case FIXED_SET_CRC: // 软件校验。
  1734. sprintf(buf, "%04x", (tfixedset.set[i].str[0] + (tfixedset.set[i].str[1] << 8)));
  1735. break;
  1736. #if !defined CPU_FUXI
  1737. case FIXED_SET_MAC1:
  1738. case FIXED_SET_MAC2:
  1739. sprintf(buf, "%02x-%02x-%02x-%02x-%02x-%02x", tfixedset.set[i].str[0], tfixedset.set[i].str[1], tfixedset.set[i].str[2], tfixedset.set[i].str[3], tfixedset.set[i].str[4], tfixedset.set[i].str[5]);
  1740. break;
  1741. #endif
  1742. default:
  1743. strncpy(buf, tfixedset.set[i].str, len);
  1744. break;
  1745. }
  1746. return 0;
  1747. }
  1748. }
  1749. return -3;
  1750. #else
  1751. for (i = 0; i < RMT_FIXED_SET_NUM; i++)
  1752. {
  1753. if (index == tfixedset.set[i].type)
  1754. {
  1755. switch (index)
  1756. {
  1757. case FIXED_SET_CRC: // 软件校验。
  1758. sprintf(buf, "%04x", (tfixedset.set[i].str[0] + (tfixedset.set[i].str[1] << 8)));
  1759. break;
  1760. default:
  1761. strncpy(buf, tfixedset.set[i].str, len);
  1762. break;
  1763. }
  1764. }
  1765. }
  1766. return 0;
  1767. #endif
  1768. }
  1769. // 得到固定参数字符串,维护工具接口用
  1770. int set_get_fixed_args_sz(int index, char *buf, int len)
  1771. {
  1772. int i, len_line, len_all, num;
  1773. char sz[64], arg[64];
  1774. len_all = 0;
  1775. num = 0;
  1776. for (i = index * FIXED_ARGS_NUM; i < FIXEDSET_TABLE_NUMBER && num < FIXED_ARGS_NUM; i++, num++)
  1777. {
  1778. set_get_fixed_arg(i, arg, 64);
  1779. len_line = sprintf(sz, "%s[%04x]:%s\r\n", tfixedsettable[i].name, tfixedsettable[i].di, arg);
  1780. strncpy(buf + len_all, sz, len - len_all);
  1781. len_all += len_line;
  1782. // dp_err_n_c("index = %ld, i = %d, len_all = %d, len_line = %d, arg: %s, sz: %s", index, i, len_all, len_line, arg, sz);
  1783. if (len_all >= len)
  1784. {
  1785. buf[len - 1] = 0;
  1786. return len;
  1787. }
  1788. }
  1789. // 删除最后的回车换行
  1790. if (len_all > 2)
  1791. {
  1792. len_all -= 2;
  1793. }
  1794. buf[len_all] = 0;
  1795. return len_all + 1;
  1796. }
  1797. /*********************eep操作通用函数:包含装置型号及CRC信息*******************/
  1798. /**************************************************************************
  1799. 函数名称:SaveEppData
  1800. 函数版本:1.00
  1801. 作者:
  1802. 创建日期:2008.8.20
  1803. 函数功能说明:在EEP中,保存信息,附加了装置类型及校验码
  1804. 输入参数:
  1805. 输出参数:无
  1806. 返回值: 成功时返回1,否则,0
  1807. 函数扇入清单:
  1808. ***************************************************************************/
  1809. bool SaveEppData(DWORD wAddr, void *pdat, WORD num)
  1810. {
  1811. EQUIP_INF tInf;
  1812. tInf.wType = EQUIP_TYPE; // 装置类型
  1813. tInf.wVerH = SOFT_VERH; // 版本号
  1814. tInf.wVerL = SOFT_VERL;
  1815. tInf.wCrc = CrcStr((BYTE *)pdat, num);
  1816. tInf.wdescCrc = g_crc_set_desc;
  1817. if (e2prom_write(wAddr, (BYTE *)pdat, num) != 0) // 保存信息
  1818. {
  1819. return false;
  1820. }
  1821. if (e2prom_write((wAddr + num), (BYTE *)&tInf, sizeof(EQUIP_INF)) != 0) // 保存校验信息,包括校验码
  1822. {
  1823. return false;
  1824. }
  1825. return true;
  1826. }
  1827. /**************************************************************************
  1828. 函数名称:ReadEppData
  1829. 函数版本:1.00
  1830. 作者:
  1831. 创建日期:2008.8.20
  1832. 函数功能说明:读EEP中保存信息,并进行装置类型及校验码的校验
  1833. 输入参数:
  1834. 输出参数:无
  1835. 返回值: 成功时返回1,否则,0
  1836. 函数扇入清单:
  1837. ***************************************************************************/
  1838. bool ReadEppData(DWORD wAddr, void *pdat, WORD num)
  1839. {
  1840. EQUIP_INF tInf;
  1841. WORD crc;
  1842. e2prom_read(wAddr, (BYTE *)pdat, num);
  1843. e2prom_read((wAddr + num), (BYTE *)&tInf, sizeof(EQUIP_INF));
  1844. if (tInf.wType != EQUIP_TYPE) // 不是本装置
  1845. {
  1846. return false;
  1847. }
  1848. if (tInf.wdescCrc != g_crc_set_desc)
  1849. {
  1850. // return false;
  1851. }
  1852. crc = CrcStr((BYTE *)pdat, num);
  1853. if (crc != tInf.wCrc)
  1854. {
  1855. return false;
  1856. }
  1857. return true;
  1858. }
  1859. /******************下面是关于定值区及定值读取及校验的操作********************************/
  1860. /**********************************************************
  1861. 函数名称:ReadSet
  1862. 函数版本:1.00
  1863. 作者:
  1864. 创建日期:2008.8.20
  1865. 函数功能说明:从指定定值区setno读取定值到pf中,并进行CRC-16校验
  1866. 输入参数:BYTE setno指定定值区
  1867. 输出参数:无
  1868. 返回值: 成功时返回1,否则,0
  1869. 函数扇入清单:
  1870. ************************************************************/
  1871. bool ReadSet(WORD setno, void *pbuf)
  1872. {
  1873. float *pf = (float *)pbuf;
  1874. if (setno >= SEC_NUMBER)
  1875. {
  1876. rt_printf("定值区号异常section=%d", setno);
  1877. return false;
  1878. }
  1879. if (!ReadPara((void *)pf, EEP_PUB_ADDR + setno * PUB_SETSIZE, PUB_SET_NUMBER, &tPubSetTable[0]))
  1880. {
  1881. return false;
  1882. }
  1883. if (!ReadPara((void *)&pf[PUB_SET_NUMBER], EEP_SET_ADDR + setno * SETSIZE, SW_SET_NUMBER, &tSwSetTable[0]))
  1884. {
  1885. return false;
  1886. }
  1887. return true;
  1888. }
  1889. /**************************************************************************
  1890. 函数名称:SaveSet
  1891. 函数版本:1.00
  1892. 作者:
  1893. 创建日期:2008.8.20
  1894. 函数功能说明:从指定定值区setno读取定值到pf中,并进行CRC-16校验
  1895. 输入参数:BYTE setno指定定值区
  1896. 输出参数:无
  1897. 返回值: 成功时返回1,否则,0
  1898. 函数扇入清单:
  1899. ***************************************************************************/
  1900. bool SaveSet(WORD setno, void *pf)
  1901. {
  1902. float *pff = (float *)pf;
  1903. bool ret1 = false, ret2 = false;
  1904. if (setno >= SEC_NUMBER)
  1905. {
  1906. rt_printf("定值区号异常section=%d", setno);
  1907. return false;
  1908. }
  1909. ret1 = SavePara((void *)pff, EEP_PUB_ADDR + setno * PUB_SETSIZE, PUB_SET_NUMBER, &tPubSetTable[0]);
  1910. ret2 = SavePara((void *)&pff[PUB_SET_NUMBER], (EEP_SET_ADDR + setno * SETSIZE), SW_SET_NUMBER, &tSwSetTable[0]);
  1911. if (ret1 || ret2)
  1912. {
  1913. g_creat_set_file |= 0x01;
  1914. }
  1915. return (ret1 || ret2);
  1916. }
  1917. /**************************************************************************
  1918. 函数名称:CheckRunSet
  1919. 函数版本:1.00
  1920. 作者:
  1921. 创建日期:2008.8.20
  1922. 函数功能说明:检查运行定值
  1923. 检查运行定值指针的正确性
  1924. 检查当前运行的定值的值是否与备份的定值的信息互为反码
  1925. 输入参数:
  1926. 其他输入:
  1927. 输出参数:
  1928. 返回值: true 检查的内容均正常 false 检查的内容至少有一项不正常
  1929. 函数扇入清单:
  1930. ***************************************************************************/
  1931. bool CheckRunSet(void)
  1932. {
  1933. BYTE *pBak = (BYTE *)&tBakSet;
  1934. BYTE *pRun = (BYTE *)pRunSet;
  1935. int i = sizeof(struct TSET);
  1936. for (; i > 0; i--)
  1937. {
  1938. if ((BYTE)*pRun != (BYTE)(~*pBak))
  1939. {
  1940. return false;
  1941. }
  1942. pRun++;
  1943. pBak++;
  1944. }
  1945. return true;
  1946. }
  1947. /**************************************************************************
  1948. 函数名称:GetSetNormal
  1949. 函数版本:1.00
  1950. 作者:
  1951. 创建日期:2008.8.20
  1952. 函数功能说明:转换定值,将定值转为运行程序可使用的值,目的为了减少代码
  1953. 输入参数:fk为转换的系数
  1954. 其他输入:
  1955. 输出参数:
  1956. 返回值:
  1957. 函数扇入清单:
  1958. ***************************************************************************/
  1959. static DWORD GetSetNormal(float ff, float fk)
  1960. {
  1961. DWORD ret;
  1962. ret = (DWORD)rt_round((ff * fk));
  1963. return ret;
  1964. }
  1965. /**************************************************************************
  1966. 函数名称:GetSetSQR
  1967. 函数版本:1.00
  1968. 作者:
  1969. 创建日期:2008.8.20
  1970. 函数功能说明:转换定值,将定值转为运行程序可使用的平方值, 目的为了减少代码
  1971. 输入参数:fk为转换的系数
  1972. 其他输入:
  1973. 输出参数:
  1974. 返回值:
  1975. 函数扇入清单:
  1976. ***************************************************************************/
  1977. DWORD GetSetSQR(float ff, float fk)
  1978. {
  1979. DWORD ret;
  1980. float fv;
  1981. fv = ff * fk;
  1982. if (fv >= 65536.0)
  1983. {
  1984. ret = ((DWORD)65536 * 65535);
  1985. }
  1986. else
  1987. {
  1988. ret = (DWORD)rt_round((ff * fk) * (ff * fk));
  1989. }
  1990. return ret;
  1991. }
  1992. /**************************************************************************
  1993. 函数名称:GetSetTIME
  1994. 函数版本:1.00
  1995. 作者:
  1996. 创建日期:2008.8.20
  1997. 函数功能说明:转换时间定值,将时间转为系统的定时tick值 目的为了减少代码
  1998. 输入参数:
  1999. 其他输入:
  2000. 输出参数:
  2001. 返回值:
  2002. 函数扇入清单:
  2003. ***************************************************************************/
  2004. static DWORD GetSetTIME(float ff)
  2005. {
  2006. DWORD ret;
  2007. ret = (DWORD)(0.5 + ff * SAM_FREQUENCY);
  2008. return ret;
  2009. }
  2010. void fresh_set_soe(WORD soe_no, bool bY, bool bFirst, int sw)
  2011. {
  2012. WORD code = soe_no + EV_SW_NUM * sw;
  2013. if (bFirst) // 第一次不上送
  2014. {
  2015. if (bY) // 开出压板状态更新到事件记录中
  2016. {
  2017. soe_ev_set(code, 1);
  2018. }
  2019. else
  2020. {
  2021. soe_ev_set(code, 0);
  2022. }
  2023. }
  2024. else
  2025. {
  2026. if (bY) // 开出压板状态更新到事件记录中
  2027. {
  2028. if (!soe_check(code))
  2029. {
  2030. soe_record_ev(code, 1, 0, 0, 0);
  2031. }
  2032. }
  2033. else
  2034. {
  2035. if (soe_check(code))
  2036. {
  2037. soe_record_ev(code, 0, 0, 0, 0);
  2038. }
  2039. }
  2040. }
  2041. }
  2042. void fresh_sw_ac_set(SET_VALUE *psetbuf, int sw)
  2043. {
  2044. int i;
  2045. int index;
  2046. for (i = 0; i < SW_AC_SET_NUM; i++)
  2047. {
  2048. index = sw_ac_set_index[i];
  2049. // 针对佛山供电局遥测中的定值部分(零序一段、二段)和遥参不对应,特殊处理
  2050. if ((index == SET_LX1_TT) || (index == SET_LX2_TT))
  2051. {
  2052. if (psetbuf[index + sw * SW_SET_NUMBER].ff == 0)
  2053. {
  2054. g_sw[sw].ac_in[SW_AC_IN_SET_BEGIN + i] = 2 * Q16_BASE;
  2055. }
  2056. else
  2057. {
  2058. g_sw[sw].ac_in[SW_AC_IN_SET_BEGIN + i] = psetbuf[index + sw * SW_SET_NUMBER].ff * Q16_BASE;
  2059. }
  2060. }
  2061. else
  2062. {
  2063. g_sw[sw].ac_in[SW_AC_IN_SET_BEGIN + i] = psetbuf[index + sw * SW_SET_NUMBER].ff * Q16_BASE;
  2064. }
  2065. }
  2066. }
  2067. /**************************************************************************
  2068. 函数名称:get_yx_ac
  2069. 创建日期:2021.11
  2070. 函数功能说明:获取开入通道配置"<交流>"关键字以确定是否配置为交流遥信
  2071. 输入参数:无
  2072. 输出参数:无
  2073. 返回值: s_bYX_AC
  2074. ***************************************************************************/
  2075. void get_yx_ac(u8 index, u32 type)
  2076. {
  2077. gb_yx_ac = true;
  2078. }
  2079. /**************************************************************************
  2080. 函数名称:MakeRunSet
  2081. 函数版本:1.00
  2082. 作者:
  2083. 创建日期:2008.8.18
  2084. 函数功能说明:将psetbuf中保存的定值转换为运行定值
  2085. 输入参数:
  2086. 输出参数:无
  2087. 返回值: 成功时返回1,否则,0
  2088. 函数扇入清单:
  2089. ***************************************************************************/
  2090. bool MakeRunSet(bool bFirst)
  2091. {
  2092. TSET *ptSet;
  2093. SET_VALUE *psetbuf = m_SetBuf;
  2094. float fKI, fKI0, fKU[PUB_AC_NUM], fIn, fUn; // 电流电压系数及额定电流值
  2095. int sw, i;
  2096. bool bRet;
  2097. #ifdef CPU_FUXI
  2098. SHM_FREQ_TR_T freq_tr;
  2099. #endif
  2100. #ifdef CUSTOMIZE_BZT // 备自投
  2101. int dw = 0;
  2102. #endif
  2103. BYTE mode_total;
  2104. bRet = true;
  2105. // 检查定值个数
  2106. if (SET_NUMBER > MAX_SET_NUMBER)
  2107. {
  2108. rt_printf("SET_NUMBER(%d) > MAX_SET_NUMBER(%d).\r\n", SET_NUMBER, MAX_SET_NUMBER);
  2109. rt_err_set(ERR_CODE_SET, 0);
  2110. return false;
  2111. }
  2112. if (pRunSet == (&tRunSet[0])) // 运行定值缓冲区切换
  2113. {
  2114. ptSet = &tRunSet[1];
  2115. }
  2116. else
  2117. {
  2118. ptSet = &tRunSet[0];
  2119. }
  2120. for (i = 0; i < PUB_AC_NUM; i++)
  2121. {
  2122. ptSet->dKU[i] = sw_v_m2_factor_k(i); // 电压互感器系数
  2123. fKU[i] = (float)ptSet->dKU[i] / 256.0;
  2124. }
  2125. /* 读取内部定值 */
  2126. if (!ReadPara((void *)psetbuf, EEP_CSTSET_ADDR, CSTSET_NUMBER, &tCstSetTable[0]))
  2127. {
  2128. rt_err_set(ERR_CODE_SET_IN, 0);
  2129. GetDefPara((void *)psetbuf, CSTSET_NUMBER, &tCstSetTable[0]);
  2130. }
  2131. else
  2132. {
  2133. rt_err_clr(ERR_CODE_SET_IN, 0);
  2134. }
  2135. ptSet->fFZLBXS = psetbuf[CSTSET_FZLBXS].ff; // 幅值加速滤波系数
  2136. #ifdef XDL_ZT
  2137. // 小电流接地零压定值,有效值非瞬时值
  2138. ptSet->dU_xdl_u0[0] = GetSetSQR(psetbuf[CSTSET_XDL_U0_U1].ff, fKU[PUB_AC_U01]); // 小电流接地零压定值1
  2139. ptSet->dU_xdl_u0_fh[0] = _Mul_Div_U(ptSet->dU_xdl_u0[0], 96, 100); // 0.96=0.98*0.98
  2140. ptSet->dU_xdl_u0_zt[0] = GetSetNormal(psetbuf[CSTSET_XDL_U0_U1].ff, 1 / (g_ui[PUB_AC_U01].e_factor0));
  2141. ptSet->dT_xdl_u0[0] = GetSetTIME(psetbuf[CSTSET_XDL_U0_T1].ff);
  2142. ptSet->dU_xdl_u0[1] = GetSetSQR(psetbuf[CSTSET_XDL_U0_U2].ff, fKU[PUB_AC_U02]); // 小电流接地零压定值2
  2143. ptSet->dU_xdl_u0_fh[1] = _Mul_Div_U(ptSet->dU_xdl_u0[1], 96, 100); // 0.96=0.98*0.98
  2144. ptSet->dU_xdl_u0_zt[1] = GetSetNormal(psetbuf[CSTSET_XDL_U0_U2].ff, 1 / (g_ui[PUB_AC_U02].e_factor0));
  2145. ptSet->dT_xdl_u0[1] = GetSetTIME(psetbuf[CSTSET_XDL_U0_T2].ff);
  2146. ptSet->dU_xdl_22V[0] = GetSetNormal(20, 1 / (g_ui[PUB_AC_U01].e_factor0));
  2147. ptSet->dU_xdl_22V[1] = GetSetNormal(20, 1 / (g_ui[PUB_AC_U02].e_factor0));
  2148. #endif
  2149. for (sw = 0; sw < SWITCH_NUM_MAX; sw++)
  2150. {
  2151. int ui_begin;
  2152. ui_begin = UI_SW_INDEX_BEGIN(sw);
  2153. fKI = (float)(g_ui[ui_begin + SW_AC_IA].m2_factor_k) / 256.0;
  2154. fIn = (float)(g_ui[ui_begin + SW_AC_IA].m2_factor_k) / 256.0;
  2155. fKI0 = (float)(g_ui[ui_begin + SW_AC_I0].m2_factor_k) / 256.0;
  2156. ptSet->dTBLValue[sw] = GetSetNormal(psetbuf[CSTSET_TBLQD].ff, fIn); // 突变量
  2157. ptSet->dIWL_SQR[sw] = GetSetSQR(psetbuf[CSTSET_IWL].ff, fIn);
  2158. #ifndef DISP_CHZOKCHR_2_SW
  2159. ptSet->tSwSet[sw].dT_chz_ok = GetSetTIME(psetbuf[CSTSET_CHZ_OK].ff); // GetSetTIME(180); //重合闸确认时间,默认180秒
  2160. #endif
  2161. }
  2162. ptSet->dT_ZZFG = GetSetTIME(psetbuf[CSTSET_TZZ].ff); // 整组复归时间定值
  2163. ptSet->dT_TZSB = GetSetTIME(psetbuf[CSTSET_TZSB].ff); // 跳闸失败时间
  2164. ptSet->dT_HZSB = GetSetTIME(psetbuf[CSTSET_HZSB].ff); // 合闸失败时间
  2165. ptSet->bTT_FREQ = ((WORD)psetbuf[CSTSET_FREQ].ff == 1) ? true : false; // 频率跟踪投退
  2166. #ifdef CPU_FUXI
  2167. if (ptSet->bTT_FREQ)
  2168. freq_tr.enable_flag = 0x55;
  2169. else
  2170. freq_tr.enable_flag = 0;
  2171. write_freq_tr((uint8_t *)&freq_tr);
  2172. #endif
  2173. #ifndef DISP_CHZOKCHR_2_SW
  2174. ptSet->dT_chzcd_2 = GetSetTIME(psetbuf[CSTSET_CHZCD_2].ff); // 二次充电时间
  2175. #endif
  2176. ptSet->bTT_U0BS = ((WORD)psetbuf[CSTSET_U0BS_TT].ff == 1) ? true : false; // 零压闭锁零流
  2177. ptSet->bTT_DDYBS = ((WORD)psetbuf[CSTSET_DDYBS_TT].ff == 1) ? true : false; // 低压闭锁过流
  2178. ptSet->dU_U0BS = GetSetSQR(psetbuf[CSTSET_U0BS_U].ff, fKU[PUB_AC_U01]); // 零压闭锁定值
  2179. ptSet->dU_DDYBS = GetSetSQR(psetbuf[CSTSET_DDYBS_U].ff, fKU[PUB_AC_UAB1]); // 零压闭锁定值
  2180. ptSet->bKG2_DP_DELTAF = ((WORD)psetbuf[CSTSET_DP_DELTAF_TT].ff == 1) ? true : false; // 低频滑差投入
  2181. ptSet->dDP_DELTAF = GetSetNormal(psetbuf[CSTSET_DP_DELTAF].ff, 65536); // 滑差,扩大了65536倍
  2182. #ifdef PRO_AL_LOCK_HZ
  2183. ptSet->bTT_JLlockCHZ = ((WORD)psetbuf[CSSET_JL_LOCK_CHZ].ff == 1) ? true : false; // 解列闭锁重合闸
  2184. ptSet->bTT_StartCHZ_judgeFreq = ((WORD)psetbuf[CSSET_START_CHZ_JUDGE_FREQ].ff == 1) ? true : false; // 解列后启动重合闸判频率
  2185. ptSet->bTT_StartCHZ_judgeVolt = ((WORD)psetbuf[CSSET_START_CHZ_JUDGE_VOLT].ff == 1) ? true : false; // 解列后启动重合闸判电压
  2186. #endif
  2187. {
  2188. int ui_begin;
  2189. ui_begin = UI_SW_INDEX_BEGIN(0);
  2190. fKI = (float)(g_ui[ui_begin + SW_AC_IA].m2_factor_k) / 256.0;
  2191. fKI0 = (float)(g_ui[ui_begin + SW_AC_I0].m2_factor_k) / 256.0;
  2192. }
  2193. // 谐波
  2194. {
  2195. int i;
  2196. float f;
  2197. g_harmonic_num = (int)psetbuf[CSSET_HARMONIC_NUM].ff;
  2198. f = psetbuf[CSSET_HARMONIC_FACTOR].ff / (CFG_ADC_DOTS_PER_PERIOD / 2 - 2);
  2199. for (i = 1; i < (CFG_ADC_DOTS_PER_PERIOD / 2); i++)
  2200. {
  2201. g_harmonic_factor[i] = 1.0 + f * (i - 1);
  2202. }
  2203. }
  2204. // 模拟量温度校正系数
  2205. ptSet->f_temp_factor_ac = psetbuf[CSSET_TEMP_FACTOR_AC].ff; // 交流温漂
  2206. ptSet->f_temp_factor_dc = psetbuf[CSSET_TEMP_FACTOR_DC].ff; // 直流温漂
  2207. ptSet->bTT_RET_ZERO = ((WORD)psetbuf[CSTSET_RET_ZERO].ff == 1) ? true : false; // 归零值投退
  2208. ptSet->bTT_U0ZC = ((WORD)psetbuf[CSTSET_U0ZC_TT].ff == 1) ? true : false; // 零序电压自产
  2209. ptSet->dT101Resend = (DWORD)(psetbuf[CSSET_101RESEND_T].ff); // 101规约通道检查时间
  2210. ptSet->dT101Check = (DWORD)(psetbuf[CSSET_IEC101].ff); // 101规约通道检查时间 xj 2015.5.8
  2211. ptSet->bTT_101Cot03 = ((WORD)psetbuf[CSSET_101_COT03].ff == 1) ? true : false; // 平衡101初始化结束传输原因03
  2212. ptSet->bTT_104ChkAck = ((WORD)psetbuf[CSSET_104_CHECK_ACK].ff == 1) ? true : false; // 104检查确认序号
  2213. ptSet->bTT_101FCB = ((WORD)psetbuf[CSSET_101FCB].ff == 1) ? true : false; // 101规约FCB不判断
  2214. ptSet->bDIContinue = ((WORD)psetbuf[CSSET_DI_CONTINUE].ff == 1) ? true : false; // 连续点号上送
  2215. ptSet->bTT_SM2 = ((WORD)psetbuf[CSSET_SM2_TT].ff == 1) ? true : false; // 规约软件加密
  2216. ptSet->bTT_ESAM = ((WORD)psetbuf[CSSET_SM2_TT].ff == 2) ? true : false; // 规约硬件加密
  2217. ptSet->bTT_RmtTest = ((WORD)psetbuf[CSSET_RMTTEST_TT].ff == 1) ? true : false; // 远动测试模式
  2218. ptSet->bTT_SoeResumeComm = ((WORD)psetbuf[CSSET_SOE_RESUME_COMM].ff == 1) ? true : false; // SOE通讯续传,通讯重连时上送未确认的SOE
  2219. ptSet->bTT_SoeResumePower = ((WORD)psetbuf[CSSET_SOE_RESUME_POWER].ff == 1) ? true : false; // SOE上电续传
  2220. ptSet->wEquTypeDFTU = ((WORD)psetbuf[CSSET_EQU_TYPE].ff == 0) ? true : false; // 装置类型 DTFU模式
  2221. ptSet->wEquTypeManager = ((WORD)psetbuf[CSSET_EQU_TYPE].ff == 1) ? true : false; // 装置类型 通信管理机模式
  2222. ptSet->f_yc_filter_factor = psetbuf[CSSET_YC_FILTER_FACTOR].ff; // 遥测滤波系数
  2223. #ifdef FIX_PARAM_FORMAT
  2224. ptSet->bTT_Utf8 = ((WORD)psetbuf[CSSET_SET_ULF8].ff == 1) ? true : false; // 固定参数上送格式
  2225. ptSet->bTT_Unicode = ((WORD)psetbuf[CSSET_SET_ULF8].ff == 2) ? true : false; // 固定参数上送格式
  2226. #endif
  2227. ptSet->dGroupYxSize = 0; // 组召遥信分组大小
  2228. ptSet->dGroupYcSize = 0; // 组召遥测分组大小
  2229. // 瞬压检出
  2230. ptSet->bTT_SY_Board = ((WORD)psetbuf[CSTSET_SYBOARD_TT].ff == 1) ? true : false; // 零压闭锁零流
  2231. // ptSet->dT_XCY = GetSetTIME(0.05); //残压检出时间默认50毫秒
  2232. #ifdef GD_AREA_ECZD_2020 // 25V/30ms
  2233. ptSet->dT_XCY = GetSetTIME(0.02); // 残压检出时间默认20毫秒
  2234. #else
  2235. ptSet->dT_XCY = GetSetTIME(0.03); // 残压检出时间默认30毫秒
  2236. #endif
  2237. // goose 内部定值
  2238. ptSet->dT_cd = GetSetTIME(psetbuf[CSTSET_GOOSE_CD_T].ff); // DFA充电时间
  2239. ptSet->dT_glfd = GetSetTIME(psetbuf[CSTSET_GOOSE_GLFD_T].ff); // DFA隔离放电时间
  2240. ptSet->dT_llfd = GetSetTIME(psetbuf[CSTSET_GOOSE_LLFD_T].ff); // DFA恢复放电时间
  2241. ptSet->dT_frobit = GetSetTIME(psetbuf[CSTSET_GOOSE_FORBIT_T].ff); // DFA禁止转发时间
  2242. ptSet->dT_sendext = GetSetTIME(psetbuf[CSTSET_GOOSE_SENDEXT_T].ff); // DFA发送展宽时间
  2243. ptSet->dT_goosecheck = GetSetTIME(psetbuf[CSTSET_GOOSE_CHECK_T].ff); // goose判断时间
  2244. ptSet->bTT_fhkg_pub = ((WORD)psetbuf[CSTSET_GOOSE_FHKG_PUB].ff == 1) ? true : false; // 负荷开关发送goose投退
  2245. ptSet->dT_ldjs = GetSetTIME(psetbuf[CSTSET_SHORT_LDJS_T].ff); // 单侧来电解锁时间
  2246. ptSet->bTT_bs_ykon = ((WORD)psetbuf[CSTSET_BS_YKON_TT].ff == 1) ? true : false; // FA闭锁合闸禁止遥合
  2247. ptSet->bTT_goose_send_after = (((WORD)psetbuf[CSTSET_GOOSE_SEND_FAULT].ff == 1) ? true : false); // goose发布在故障确认后
  2248. // 录波
  2249. g_wave_filetype = (int)psetbuf[CSTSET_WAVE_FILETYPE].ff; // 录波文件格式
  2250. g_rcd_type_enable[RECORD_TYPE_SD] = 1;//
  2251. g_rcd_type_enable[RECORD_TYPE_QD] = 1;//
  2252. g_rcd_type_enable[RECORD_TYPE_GLGZ] = ((WORD)psetbuf[CSTSET_WAVE_GLGZ].ff == 1) ? true : false; // 过流故障启动
  2253. g_rcd_type_enable[RECORD_TYPE_XLSY] = ((WORD)psetbuf[CSTSET_WAVE_XLSY].ff == 1) ? true : false; // 线路失压启动
  2254. g_rcd_type_enable[RECORD_TYPE_LXDY] = ((WORD)psetbuf[CSTSET_WAVE_LXDY].ff == 1) ? true : false; // 零序电压启动
  2255. g_rcd_type_enable[RECORD_TYPE_LXGL] = ((WORD)psetbuf[CSTSET_WAVE_LXGL].ff == 1) ? true : false; // 零序过流启动
  2256. g_rcd_type_enable[RECORD_TYPE_LLTB] = ((WORD)psetbuf[CSTSET_WAVE_LLTB].ff == 1) ? true : false; // 零流突变启动
  2257. g_rcd_type_enable[RECORD_TYPE_CHZ] = ((WORD)psetbuf[CSTSET_WAVE_CHZ].ff == 1) ? true : false; // 重合闸启动
  2258. #if defined FUN_JDXX || defined XDL_ZT
  2259. g_rcd_type_enable[RECORD_TYPE_XDLJD] = ((WORD)psetbuf[SET_WAVE_XDLJD].ff == 1) ? true : false; // 小电流接地启动
  2260. #endif
  2261. ptSet->dWCN_T = GetSetTIME(psetbuf[CSTSET_WCNALARM_T].ff); // 未储能告警时间
  2262. ptSet->dSDYX_T = GetSetTIME(psetbuf[CSTSET_SD_YX_T].ff); // 失电闭锁遥信时间
  2263. ptSet->bat_chargeok_time = psetbuf[CSTSET_CHARGEOK_TIME].ff; // 电池充满维持时间
  2264. ptSet->bTT_HistoryFile = (((WORD)psetbuf[CSSET_HS_FILE_TT].ff == 1) ? true : false); // 历史记录投退
  2265. ptSet->wHSFileFormat = (WORD)psetbuf[CSSET_HS_FILE_FORMAT].ff; // 记录文件格式
  2266. ptSet->bTT_MsgFile = (ptSet->wHSFileFormat == 0) ? true : false; // 记录文件格式 msg
  2267. ptSet->bTT_XmlFile = (ptSet->wHSFileFormat == 1) ? true : false; // 记录文件格式 xml
  2268. if (pRunSet->bTT_HistoryFile != ptSet->bTT_HistoryFile)
  2269. {
  2270. histrory_file_set = true;
  2271. }
  2272. if (pRunSet->wHSFileFormat != ptSet->wHSFileFormat)
  2273. {
  2274. b_hisfile_format = true;
  2275. }
  2276. ptSet->resReuseFuncSelect = (BYTE)psetbuf[CSSET_RST_REUSE_FUNC].ff; // 复归按键复用功能选择
  2277. ptSet->resReuseFuncFilterTime = (WORD)psetbuf[CSSET_RST_REUSE_FILTER_TIME].ff; // 复归按键复用功能防抖时长
  2278. ptSet->bTT_LogPrintf = (((WORD)psetbuf[CSSET_LOG_PRINTF_TT].ff == 1) ? true : false); // 现场运行模式
  2279. ptSet->bTT_101Transsure = (((WORD)psetbuf[CSSET_101_TRANSSURE_TT].ff == 1) ? true : false); // 101文件传输确认帧
  2280. ptSet->dSmoothZero = (DWORD)(psetbuf[CSSET_ZERO].ff); // 零漂值
  2281. ptSet->dwZL = (DWORD)(psetbuf[CSSET_ZL].ff * 65536); // 直流判断
  2282. ptSet->bTT_faultparaDKY = (((WORD)psetbuf[CSSET_FAULT_PARA_DKY].ff == 1) ? true : false); // 故障事件遥信地址长度
  2283. ptSet->bTT_RmtPara = (((WORD)psetbuf[CSSET_RMT_PARA_TT].ff == 1) ? true : false); // 远动参数有效
  2284. if ((WORD)psetbuf[CSSET_PT2_VOL].ff == 1)// 负荷侧电压选择 bc
  2285. ptSet->pt2vol = PUB_AC_UBC2;
  2286. else if ((WORD)psetbuf[CSSET_PT2_VOL].ff == 2)// 负荷侧电压选择 ca
  2287. ptSet->pt2vol = PUB_AC_UCA2;
  2288. else
  2289. ptSet->pt2vol = PUB_AC_UAB2;
  2290. ptSet->bTT_ShowOne = ((WORD)psetbuf[CSSET_DISP_ONE_TWO].ff == 1) ? true : false; // 液晶遥测数据显示
  2291. ptSet->dDc_num = (DWORD)(psetbuf[CSSET_SET_DC_NUM].ff); // 直流通道数量
  2292. #ifdef YC_QUANTITY
  2293. ptSet->dYC_num = (DWORD)(psetbuf[CSSET_YC_NUM].ff); // 每间隔遥参数量
  2294. #endif
  2295. #ifdef FA_PL_PJ
  2296. ptSet->bTT_judgeFreq = ((WORD)psetbuf[CSSET_JUDGE_FREQ].ff == 1) ? true : false; // 有压判频率投退
  2297. #endif
  2298. ptSet->bTT_UYYmin = ((WORD)psetbuf[CSSET_U_PJ].ff == 0) ? true : false; // 电压判据,取三相最小值时标志为1
  2299. #ifdef METERING_ENERGY
  2300. ptSet->dd_calc_mode = (((WORD)psetbuf[CSSET_DD_CALC_MODE].ff == 1) ? true : false); // 电度计算方式
  2301. ptSet->wJLJX = (WORD)psetbuf[CSSET_JLJX].ff;
  2302. ptSet->wWGFS = (WORD)psetbuf[CSSET_WGFS].ff;
  2303. #endif
  2304. ptSet->bTT_EV_YCRate = ((WORD)psetbuf[CSSET_SET_EV_YC_RATE].ff == 1) ? true : false; // SOE遥测系数投退
  2305. ptSet->bTT_YC_DeadZone_All = ((WORD)psetbuf[CSSET_SET_YC_DEAD_ZONE_ALL].ff == 1) ? true : false; // 遥测总死区有效投退
  2306. ptSet->bTT_CheckPhase = false; // 相序检查
  2307. ptSet->bTT_CTYC = true; // CT异常检查
  2308. #ifdef PUB_SET_SECTION
  2309. /*先读取定值区0的公共定值*/
  2310. if (!ReadPara((void *)psetbuf, EEP_PUB_ADDR, PUB_SET_NUMBER, &tPubSetTable[0]))
  2311. {
  2312. rt_err_set(ERR_CODE_SET_PUB, 0);
  2313. GetDefPara((void *)psetbuf, PUB_SET_NUMBER, &tPubSetTable[0]);
  2314. rt_printf("%s(a):m_runsection=%d\r\n", __func__, m_runsection);
  2315. }
  2316. else
  2317. {
  2318. rt_err_clr(ERR_CODE_SET_PUB, 0);
  2319. }
  2320. // 公共定值
  2321. ptSet->section = (u8)psetbuf[SET_SECTION].ff; // 定值区
  2322. /*读取公共定值*/
  2323. if (!ReadPara((void *)psetbuf, EEP_PUB_ADDR + ptSet->section * PUB_SETSIZE, PUB_SET_NUMBER, &tPubSetTable[0]))
  2324. {
  2325. rt_err_set(ERR_CODE_SET_PUB, 0);
  2326. GetDefPara((void *)psetbuf, PUB_SET_NUMBER, &tPubSetTable[0]);
  2327. rt_printf("%s(b):m_runsection=%d\r\n", __func__, m_runsection);
  2328. }
  2329. else
  2330. {
  2331. rt_err_clr(ERR_CODE_SET_PUB, 0);
  2332. }
  2333. #else
  2334. /*读取公共定值*/
  2335. if (!ReadPara((void *)psetbuf, EEP_PUB_ADDR, PUB_SET_NUMBER, &tPubSetTable[0]))
  2336. {
  2337. rt_err_set(ERR_CODE_SET_PUB, 0);
  2338. GetDefPara((void *)psetbuf, PUB_SET_NUMBER, &tPubSetTable[0]);
  2339. }
  2340. else
  2341. {
  2342. rt_err_clr(ERR_CODE_SET_PUB, 0);
  2343. }
  2344. ptSet->section = (u8)psetbuf[SET_SECTION].ff; // 定值区
  2345. #endif
  2346. // 公共定值
  2347. ptSet->ct_one = (u32)psetbuf[SET_BHCT1_A].ff; // CT额定一次值
  2348. ptSet->ct_two = (u32)psetbuf[SET_BHCT2_A].ff; // CT额定二次值
  2349. ptSet->ct0_one = (u32)psetbuf[SET_I0CT1_A].ff; // 零序CT额定一次值
  2350. ptSet->ct0_two = (u32)psetbuf[SET_I0CT2_A].ff; // 零序CT额定二次值
  2351. ptSet->a_pt_one = (u32)psetbuf[SET_APT1_U].ff; // 电源侧PT额定一次值
  2352. ptSet->a_pt_two = (u32)psetbuf[SET_APT2_U].ff; // 电源侧PT额定二次值
  2353. ptSet->b_pt_one = (u32)psetbuf[SET_BPT1_U].ff; // 负荷侧PT额定一次值
  2354. ptSet->b_pt_two = (u32)psetbuf[SET_BPT2_U].ff; // 负荷侧PT额定二次值
  2355. ptSet->a_side_pt_type = (u8)psetbuf[SET_PPT_TYPE].ff; // A侧PT接线方式
  2356. ptSet->b_side_pt_type = (u8)psetbuf[SET_LPT_TYPE].ff; // B侧PT接线方式
  2357. ptSet->bTT_EDIT_YB = ((WORD)psetbuf[SET_EDIT_PAR_YB].ff == 1) ? true : false; // 远程运维投入
  2358. ptSet->pt_rate = 10; // 10KV,一次值单位为KV
  2359. /* 非电量 */
  2360. for (i = 0; i < 6; i++)
  2361. {
  2362. ptSet->bTT_FDLGj[i] = ((WORD)psetbuf[SET_FDL1_TT + i].ff == 1) ? true : false;
  2363. ptSet->bTT_FDLTz[i] = ((WORD)psetbuf[SET_FDL1_TT + i].ff == 2) ? true : false;
  2364. ptSet->dTFDL[i] = GetSetTIME(psetbuf[SET_FDL1_T + i].ff);
  2365. }
  2366. #ifdef VOLT_ADAPTIVE_FACTOR
  2367. ptSet->bTT_AdaptiveFactor = (((WORD)psetbuf[SET_ADAPTIVEFACTOR].ff == 1) ? true : false); // 投退自适应电压系数
  2368. #endif
  2369. #ifdef FUNC_SET_FA_JS
  2370. ptSet->dT_FA_JS = GetSetTIME(psetbuf[SET_FA_JS].ff); // FA合闸解锁时间
  2371. #endif
  2372. ptSet->dT_tq_fh = GetSetTIME(psetbuf[SET_TQ_FH].ff); // 同期判断返回时间
  2373. fUn = ptSet->a_pt_two; // 额定电压
  2374. #if defined GD_AREA_ZHONGSHAN || defined GD_AREA_ECZD_2020 || defined GD_AREA_ZHONGSHAN_2020 // 中山局将此定值放至公共定值
  2375. for (sw = 0; sw < SWITCH_NUM_MAX; sw++)
  2376. {
  2377. ptSet->tSwSet[sw].bTT_KZHL = (((WORD)psetbuf[SET_TT_KZHL].ff == 1) ? true : false); // 控制回路
  2378. #ifdef YF_TQ_JL_TY_PUBLIC
  2379. ptSet->tSwSet[sw].bTT_BH_ALL_YB = (((WORD)psetbuf[SET_BH_YB].ff == 0) ? true : false); // 停用压板
  2380. #endif
  2381. }
  2382. #endif
  2383. for (i = 0; i < VOL_NUMBER; i++)
  2384. {
  2385. VOL_SET *pvol = &ptSet->tVolSet[i]; // 电压定值 含 过电压、低电压、电源有压,电源无压 U0告警
  2386. float fKU1;
  2387. if (i == VOL_GDY_Uab1 || i == VOL_DDY_Uab1)
  2388. {
  2389. fKU1 = fKU[PUB_AC_UAB1];
  2390. }
  2391. else if (i == VOL_GDY_Ubc1 || i == VOL_DDY_Ubc1)
  2392. {
  2393. fKU1 = fKU[PUB_AC_UBC1];
  2394. }
  2395. else if (i == VOL_GDY_Uca1 || i == VOL_DDY_Uca1)
  2396. {
  2397. fKU1 = fKU[PUB_AC_UCA1];
  2398. }
  2399. else if (i == VOL_GDY_Uab2 || i == VOL_DDY_Uab2)
  2400. {
  2401. fKU1 = fKU[PUB_AC_UAB2];
  2402. }
  2403. else if (i == VOL_GDY_Ubc2 || i == VOL_DDY_Ubc2)
  2404. {
  2405. fKU1 = fKU[PUB_AC_UBC2];
  2406. }
  2407. else if (i == VOL_GDY_Uca2 || i == VOL_DDY_Uca2)
  2408. {
  2409. fKU1 = fKU[PUB_AC_UCA2];
  2410. }
  2411. #if (0) // 计算PT1、PT2定值
  2412. else if (i == VOL_YY_POW1 || i == VOL_WY_POW1)
  2413. {
  2414. fKU1 = fKU[PUB_AC_US1];
  2415. }
  2416. else if (i == VOL_YY_POW2 || i == VOL_WY_POW2)
  2417. {
  2418. fKU1 = fKU[PUB_AC_US2];
  2419. }
  2420. #endif
  2421. else
  2422. {
  2423. fKU1 = 0;
  2424. }
  2425. // 线路电压鉴别
  2426. if (i == VOL_YY_POW1 || i == VOL_YY_POW2)
  2427. {
  2428. pvol->dUVol = GetSetSQR(psetbuf[SET_YY_U].ff, fKU1); // 有压定值
  2429. pvol->dUVol_fh = _Mul_Div_U(pvol->dUVol, 96, 100); // 0.96=0.98*0.98
  2430. pvol->dTVol = GetSetTIME(psetbuf[SET_YY_T].ff);
  2431. pvol->bTT = ((((WORD)psetbuf[SET_YY_TT].ff) == 1) ? true : false);
  2432. }
  2433. if (i == VOL_WY_POW1 || i == VOL_WY_POW2)
  2434. {
  2435. pvol->dUVol = GetSetSQR(psetbuf[SET_WY_U].ff, fKU1); // 无压定值
  2436. pvol->dUVol_fh = _Mul_Div_U(pvol->dUVol, 104, 100); // 1.04=1.02*1.02
  2437. pvol->dTVol = GetSetTIME(psetbuf[SET_YY_T].ff);
  2438. pvol->bTT = ((((WORD)psetbuf[SET_WY_TT].ff) == 1) ? true : false);
  2439. }
  2440. // 电压越限
  2441. if (i == VOL_GDY_Uab1 || i == VOL_GDY_Ubc1 || i == VOL_GDY_Uca1 || i == VOL_GDY_Uab2 || i == VOL_GDY_Ubc2 || i == VOL_GDY_Uca2)
  2442. {
  2443. pvol->dUVol = GetSetSQR(psetbuf[SET_GDY_U].ff, fKU1); // 过电压定值
  2444. pvol->dUVol_fh = _Mul_Div_U(pvol->dUVol, 96, 100); // 0.96=0.98*0.98
  2445. pvol->dTVol = GetSetTIME(psetbuf[SET_GDY_T].ff);
  2446. pvol->bTT = ((((WORD)psetbuf[SET_GDY_TT].ff) == 1) ? true : false);
  2447. }
  2448. if (i == VOL_DDY_Uab1 || i == VOL_DDY_Ubc1 || i == VOL_DDY_Uca1 || i == VOL_DDY_Uab2 || i == VOL_DDY_Ubc2 || i == VOL_DDY_Uca2)
  2449. {
  2450. pvol->dUVol = GetSetSQR(psetbuf[SET_DDY_U].ff, fKU1); // 低电压定值
  2451. pvol->dUVol_fh = _Mul_Div_U(pvol->dUVol, 104, 100); // 1.04=1.02*1.02
  2452. pvol->dTVol = GetSetTIME(psetbuf[SET_DDY_T].ff);
  2453. pvol->bTT = ((((WORD)psetbuf[SET_DDY_TT].ff) == 1) ? true : false);
  2454. }
  2455. if (i == VOL_DDY_DC1)
  2456. {
  2457. pvol->dUVol = (DWORD)(psetbuf[SET_DC1GJ_U].ff * Q16_BASE); // 直流电压1告警定值
  2458. pvol->dUVol_fh = pvol->dUVol * 98 / 100;
  2459. pvol->dTVol = GetSetTIME(psetbuf[SET_DC1GJ_T].ff);
  2460. pvol->bTT = ((((WORD)psetbuf[SET_DC1GJ_TT].ff) == 1) ? true : false);
  2461. }
  2462. if (i == VOL_DDY_DC2)
  2463. {
  2464. pvol->dUVol = (DWORD)(psetbuf[SET_DC2GJ_U].ff * Q16_BASE); // 直流电压2告警定值
  2465. pvol->dUVol_fh = pvol->dUVol * 98 / 100;
  2466. pvol->dTVol = GetSetTIME(psetbuf[SET_DC2GJ_T].ff);
  2467. pvol->bTT = ((((WORD)psetbuf[SET_DC2GJ_TT].ff) == 1) ? true : false);
  2468. }
  2469. }
  2470. #ifdef CUSTOMIZE_BZT // 备自投
  2471. ptSet->tVolLostSet.dUVol = GetSetSQR(psetbuf[SET_LOST_U].ff, fKU[PUB_AC_UAB1]);
  2472. ptSet->tVolLostSet.dUVol_fh = _Mul_Div_U(ptSet->tVolLostSet.dUVol, 96, 100); // 0.96=0.98*0.98
  2473. ptSet->tVolLostSet.dTVol = GetSetTIME(psetbuf[SET_LOST_T].ff);
  2474. ptSet->tVolLostSet.bTT = ((((WORD)psetbuf[SET_LOST_TT].ff) == 1) ? true : false);
  2475. #endif
  2476. ptSet->wZDJG = 15; // 定点保存数据间隔,默认15秒
  2477. ptSet->wDDJG = 15;
  2478. #ifdef FUN_JDXX // 接地选线定值:系统接地方式
  2479. tJDXX_val[0].jd_type = ((WORD)psetbuf[SET_JDTYPE].ff); // 系统接地方式
  2480. #endif
  2481. // if(bFirst)
  2482. m_runsection = ptSet->section; // 第一次初始化,取公共定值终端运行区为整定区
  2483. /*读取开关定值*/
  2484. if (!ReadPara((void *)psetbuf, EEP_SET_ADDR + m_runsection * SETSIZE, SW_SET_NUMBER, &tSwSetTable[0]))
  2485. {
  2486. rt_err_set(ERR_CODE_SET, 0);
  2487. GetDefPara((void *)psetbuf, SW_SET_NUMBER, &tSwSetTable[0]);
  2488. }
  2489. else
  2490. {
  2491. rt_err_clr(ERR_CODE_SET, 0);
  2492. }
  2493. // 开关定值
  2494. for (sw = 0; sw < SWITCH_NUM_MAX; sw++)
  2495. {
  2496. int ui_begin;
  2497. OC_SET *poc;
  2498. ui_begin = UI_SW_INDEX_BEGIN(sw);
  2499. fKI = (float)(g_ui[ui_begin + SW_AC_IA].m2_factor_k) / 256.0;
  2500. fKI0 = (float)(g_ui[ui_begin + SW_AC_I0].m2_factor_k) / 256.0;
  2501. fresh_sw_ac_set(psetbuf, sw); // 将定值刷新到测量值中
  2502. /* 压板 */
  2503. {
  2504. ptSet->tSwSet[sw].btt_gnyb_cg = (((WORD)psetbuf[SET_BH_YBTT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 常规保护投入
  2505. ptSet->tSwSet[sw].btt_gnyb_zdchz = (((WORD)psetbuf[SET_CHZ_YB + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 自动重合闸投入
  2506. ptSet->tSwSet[sw].btt_gnyb_fa = (((WORD)psetbuf[SET_FA_YBTT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 就地馈线自动化投入
  2507. ptSet->tSwSet[sw].btt_gnyb_dfa = (((WORD)psetbuf[SET_GOOSE_YBTT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 智能分布式投入
  2508. // ptSet->tSwSet[sw].btt_gnyb_jzs = (((WORD)psetbuf[SET_MODE_JZS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 集中模式压板
  2509. ptSet->tSwSet[sw].btt_gnyb_jzs = false; // 集中模式压板
  2510. ptSet->tSwSet[sw].btt_gnyb_tqhz = (((WORD)psetbuf[SET_TQ_YB + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 同期合闸投入
  2511. ptSet->tSwSet[sw].btt_gnyb_zdjl = (((WORD)psetbuf[SET_JL_YB + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 自动解列投入
  2512. ptSet->tSwSet[sw].btt_gnyb_xdljd = (((WORD)psetbuf[SET_XDL_YB + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 小电流接地保护投入
  2513. ptSet->tSwSet[sw].btt_gnyb_xldxgj = (((WORD)psetbuf[SET_LA_YB + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 线路断线告警投入
  2514. ptSet->tSwSet[sw].btt_gnyb_btdcd = (((WORD)psetbuf[SET_TRASW_YB + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 不停电传动投入
  2515. ptSet->tSwSet[sw].btt_yxyb_gnztt = (((WORD)psetbuf[SET_BH_YB + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 自动化功能总投退软压板
  2516. ptSet->tSwSet[sw].btt_yxyb_gnzck = (((WORD)psetbuf[SET_KZ_OUT_YB + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 自动化功能总出口软压板
  2517. ptSet->tSwSet[sw].btt_yxyb_chz = (((WORD)psetbuf[SET_RECS_YB + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 重合闸软压板
  2518. mode_total = (BYTE)(psetbuf[SET_BH_YBTT + sw * SW_SET_NUMBER].ff + psetbuf[SET_FA_YBTT + sw * SW_SET_NUMBER].ff + psetbuf[SET_GOOSE_YBTT + sw * SW_SET_NUMBER].ff);
  2519. if (mode_total > 1)
  2520. { // 当前只允许一种功能模式投入运行
  2521. ptSet->tSwSet[sw].btt_gnyb_cg = false;
  2522. ptSet->tSwSet[sw].btt_gnyb_fa = false;
  2523. ptSet->tSwSet[sw].btt_gnyb_dfa = false;
  2524. }
  2525. #ifdef YK_SOFT_YB // 遥控压板
  2526. ptSet->bTT_SOFT_YK_YB = ((WORD)psetbuf[SET_YK_YBTT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2527. #endif
  2528. }
  2529. // 过流类定值
  2530. {
  2531. poc = &ptSet->tSwSet[sw].toc[BH_GL1]; // 过流1段
  2532. poc->bTz = (((WORD)psetbuf[SET_GL1_TT + sw * SW_SET_NUMBER].ff == 2) ? true : false);
  2533. poc->bGj = (((WORD)psetbuf[SET_GL1_TT + sw * SW_SET_NUMBER].ff == 0) ? false : true);
  2534. poc->bDir = (((WORD)psetbuf[SET_GL1_DIR + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2535. poc->dT = GetSetTIME(psetbuf[SET_GL1_T + sw * SW_SET_NUMBER].ff);
  2536. #ifdef OCI_XB_0MS
  2537. ptSet->tSwSet[sw].bTT_bh_xbbs = (((WORD)psetbuf[SET_BH_XBBS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 谐波闭锁
  2538. if ((psetbuf[SET_GL1_T + sw * SW_SET_NUMBER].ff == 0) && (ptSet->tSwSet[sw].bTT_bh_xbbs))
  2539. {
  2540. poc->dT = GetSetTIME(0.026);
  2541. }
  2542. #endif
  2543. poc->dI = GetSetSQR(psetbuf[SET_GL1_I + sw * SW_SET_NUMBER].ff, fKI);
  2544. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100); // 返回值
  2545. poc = &ptSet->tSwSet[sw].toc[BH_GL2]; // 过流2段
  2546. poc->bTz = (((WORD)psetbuf[SET_GL2_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2547. poc->bGj = (((WORD)psetbuf[SET_GL2_TT + sw * SW_SET_NUMBER].ff == 0) ? false : true);
  2548. poc->bDir = (((WORD)psetbuf[SET_GL2_DIR + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2549. poc->dT = GetSetTIME(psetbuf[SET_GL2_T + sw * SW_SET_NUMBER].ff);
  2550. poc->dI = GetSetSQR(psetbuf[SET_GL2_I + sw * SW_SET_NUMBER].ff, fKI);
  2551. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100); // 返回值
  2552. poc = &ptSet->tSwSet[sw].toc[BH_GL3]; // 过流3段
  2553. poc->bTz = (((WORD)psetbuf[SET_GL3_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2554. poc->bGj = (((WORD)psetbuf[SET_GL3_TT + sw * SW_SET_NUMBER].ff == 0) ? false : true);
  2555. poc->bDir = (((WORD)psetbuf[SET_GL3_DIR + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2556. poc->dT = GetSetTIME(psetbuf[SET_GL3_T + sw * SW_SET_NUMBER].ff);
  2557. poc->dI = GetSetSQR(psetbuf[SET_GL3_I + sw * SW_SET_NUMBER].ff, fKI);
  2558. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100); // 返回值
  2559. poc = &ptSet->tSwSet[sw].toc[BH_LX1]; // 零序1段
  2560. poc->bTz = (((WORD)psetbuf[SET_LX1_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2561. poc->bGj = (((WORD)psetbuf[SET_LX1_TT + sw * SW_SET_NUMBER].ff == 0) ? false : true);
  2562. poc->bDir = false;
  2563. poc->dT = GetSetTIME(psetbuf[SET_LX1_T + sw * SW_SET_NUMBER].ff);
  2564. poc->dI = GetSetSQR(psetbuf[SET_LX1_I + sw * SW_SET_NUMBER].ff, fKI0);
  2565. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100);
  2566. poc = &ptSet->tSwSet[sw].toc[BH_LX2]; // 零序2段
  2567. poc->bTz = (((WORD)psetbuf[SET_LX2_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2568. poc->bGj = (((WORD)psetbuf[SET_LX2_TT + sw * SW_SET_NUMBER].ff == 0) ? false : true);
  2569. poc->bDir = false;
  2570. poc->dT = GetSetTIME(psetbuf[SET_LX2_T + sw * SW_SET_NUMBER].ff);
  2571. poc->dI = GetSetSQR(psetbuf[SET_LX2_I + sw * SW_SET_NUMBER].ff, fKI0);
  2572. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100);
  2573. poc = &ptSet->tSwSet[sw].toc[BH_LX3]; // 零序3段
  2574. poc->bTz = (((WORD)psetbuf[SET_LX3_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2575. poc->bGj = (((WORD)psetbuf[SET_LX3_TT + sw * SW_SET_NUMBER].ff == 0) ? true : false);
  2576. poc->bDir = false;
  2577. poc->dT = GetSetTIME(psetbuf[SET_LX3_T + sw * SW_SET_NUMBER].ff);
  2578. poc->dI = GetSetSQR(psetbuf[SET_LX3_I + sw * SW_SET_NUMBER].ff, fKI0);
  2579. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100);
  2580. poc = &ptSet->tSwSet[sw].toc[BH_DLBS]; // 常规保护大电流闭锁
  2581. poc->bGj = (((WORD)psetbuf[SET_BH_DLBS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2582. poc->bTz = (((WORD)psetbuf[SET_BH_DLBS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2583. poc->dI = GetSetSQR(psetbuf[SET_BH_DLBS_I + sw * SW_SET_NUMBER].ff, fKI);
  2584. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100); // 返回值
  2585. poc = &ptSet->tSwSet[sw].toc[BH_GLJS]; // 后加速,固定为过流1段定值
  2586. poc->bTz = (((WORD)psetbuf[SET_GLJS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2587. poc->bDir = false;
  2588. poc->bGj = false;
  2589. poc->dT = GetSetTIME(psetbuf[SET_GLJS_T + sw * SW_SET_NUMBER].ff);
  2590. if (GetSetSQR(psetbuf[SET_GLJS_I + sw * SW_SET_NUMBER].ff, fKI))
  2591. poc->dI = GetSetSQR(psetbuf[SET_GLJS_I + sw * SW_SET_NUMBER].ff, fKI);
  2592. else
  2593. poc->dI = GetSetSQR(psetbuf[SET_GL1_I + sw * SW_SET_NUMBER].ff, fKI);
  2594. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100);
  2595. poc = &ptSet->tSwSet[sw].toc[BH_LXJS]; // 零序加速段
  2596. poc->bTz = (((WORD)psetbuf[SET_GLJS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2597. poc->bGj = false;
  2598. poc->bDir = false;
  2599. poc->dT = GetSetTIME(psetbuf[SET_LXJS_T + sw * SW_SET_NUMBER].ff);
  2600. if (GetSetSQR(psetbuf[SET_LXJS_I + sw * SW_SET_NUMBER].ff, fKI0))
  2601. poc->dI = GetSetSQR(psetbuf[SET_LXJS_I + sw * SW_SET_NUMBER].ff, fKI0);
  2602. else
  2603. poc->dI = GetSetSQR(psetbuf[SET_LX1_I + sw * SW_SET_NUMBER].ff, fKI0);
  2604. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100);
  2605. poc = &ptSet->tSwSet[sw].toc[BH_OVI_ZZ]; // 电流重载
  2606. poc->bGj = (((WORD)psetbuf[SET_DLZZ_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2607. poc->bDir = false;
  2608. poc->bTz = false;
  2609. poc->dT = GetSetTIME(psetbuf[SET_DLZZ_T + sw * SW_SET_NUMBER].ff);
  2610. poc->dI = GetSetSQR(psetbuf[SET_DLZZ_I + sw * SW_SET_NUMBER].ff, fKI);
  2611. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100); // 返回值
  2612. poc = &ptSet->tSwSet[sw].toc[BH_OVI_GZ]; // 电流过载
  2613. poc->bGj = (((WORD)psetbuf[SET_DLGZ_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2614. poc->bDir = false;
  2615. poc->bTz = false;
  2616. poc->dT = GetSetTIME(psetbuf[SET_DLGZ_T + sw * SW_SET_NUMBER].ff);
  2617. poc->dI = GetSetSQR(psetbuf[SET_DLGZ_I + sw * SW_SET_NUMBER].ff, fKI);
  2618. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100); // 返回值
  2619. poc = &ptSet->tSwSet[sw].toc[BH_OVI]; // 电流越限
  2620. poc->bGj = (((WORD)psetbuf[SET_DLYX_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2621. poc->bDir = false;
  2622. poc->bTz = false;
  2623. poc->dT = GetSetTIME(psetbuf[SET_DLYX_T + sw * SW_SET_NUMBER].ff);
  2624. poc->dI = GetSetSQR(psetbuf[SET_DLYX_I + sw * SW_SET_NUMBER].ff, fKI);
  2625. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100); // 返回值
  2626. poc = &ptSet->tSwSet[sw].toc[BH_OVI0]; // 零序电流越限
  2627. poc->bGj = (((WORD)psetbuf[SET_LXYX_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2628. poc->bDir = false;
  2629. poc->bTz = false;
  2630. poc->dT = GetSetTIME(psetbuf[SET_LXYX_T + sw * SW_SET_NUMBER].ff);
  2631. poc->dI = GetSetSQR(psetbuf[SET_LXYX_I + sw * SW_SET_NUMBER].ff, fKI0);
  2632. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100); // 返回值
  2633. }
  2634. // 智能分布式定值
  2635. {
  2636. GOC_SET *poc = &ptSet->tSwSet[sw].tGocSet;
  2637. poc->bKg_mainloop = false;
  2638. #if defined GD_AREA_ECZD_2020
  2639. poc->bTT_gooseFA = true; // 默认智能分布式投入
  2640. ptSet->tSwSet[sw].bTT_goose_xbbs = false;
  2641. poc->bTT_DIR = false; // 合环运行
  2642. poc->bFA_slow = (((WORD)psetbuf[SET_GOOSE_FA_TYPE + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 速动/缓动
  2643. #if defined GD_AREA_ZHONGSHAN // 中山要求联络开关固定
  2644. poc->bsw_sd = (((WORD)psetbuf[SET_GOOSE_FTU_TYPE + sw * SW_SET_NUMBER].ff == 0) ? true : false); // 首端
  2645. poc->bsw_fz = (((WORD)psetbuf[SET_GOOSE_FTU_TYPE + sw * SW_SET_NUMBER].ff == 2) ? true : false); // 末端
  2646. poc->bsw_ll = (((WORD)psetbuf[SET_GOOSE_FTU_TYPE + sw * SW_SET_NUMBER].ff == 3) ? true : false); // 联络
  2647. #else
  2648. poc->bsw_sd = (((WORD)psetbuf[SET_GOOSE_FTU_TYPE + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 首端
  2649. poc->bsw_fz = (((WORD)psetbuf[SET_GOOSE_FTU_TYPE + sw * SW_SET_NUMBER].ff == 2) ? true : false); // 末端
  2650. poc->bsw_ll = false; // 非中山局,联络开关不固定
  2651. #endif
  2652. poc->dIgl = GetSetSQR(psetbuf[SET_GOOSET_GL_I + sw * SW_SET_NUMBER].ff, fKI); // 过流定值
  2653. poc->dIgl_fh = _Mul_Div_U(poc->dIgl, 96, 100); // 过流定值返回值
  2654. poc->dTgl = GetSetTIME(psetbuf[SET_GOOSET_GL_T + sw * SW_SET_NUMBER].ff);
  2655. poc->dIlx = GetSetSQR(psetbuf[SET_GOOSET_LX_I + sw * SW_SET_NUMBER].ff, fKI0); // 零序定值
  2656. poc->dIlx_fh = _Mul_Div_U(poc->dIlx, 96, 100); // 零序定值返回值
  2657. poc->dTlx = GetSetTIME(psetbuf[SET_GOOSET_GL_T + sw * SW_SET_NUMBER].ff); // 2020指导意见默认只有一个时限,共用 "故障跳闸时限"
  2658. #if defined GD_AREA_ZHONGSHAN_2020
  2659. poc->dIgl2 = GetSetSQR(psetbuf[SET_GOOSET_GL2_I + sw * SW_SET_NUMBER].ff, fKI); // 过流2定值
  2660. poc->dIgl2_fh = _Mul_Div_U(poc->dIgl2, 96, 100); // 返回值
  2661. poc->dTgl2 = GetSetTIME(psetbuf[SET_GOOSET_GL2_T + sw * SW_SET_NUMBER].ff);
  2662. poc->dTlx = GetSetTIME(psetbuf[SET_GOOSET_LX_T + sw * SW_SET_NUMBER].ff); // 中山分开零序延时
  2663. poc->bKg_mainloop = (((WORD)psetbuf[SET_GOOSE_KG_TYPE + sw * SW_SET_NUMBER].ff == 0) ? true : false); // 主环开关
  2664. poc->dTgzgl = GetSetTIME(psetbuf[SET_GOOSET_GZGL_T + sw * SW_SET_NUMBER].ff); // 故障隔离时间
  2665. #endif
  2666. poc->dTsdlost = GetSetTIME(psetbuf[SET_GOOSET_SDLOST_T + sw * SW_SET_NUMBER].ff); // 首端失压时间
  2667. poc->bTT_sdlost = (((WORD)psetbuf[SET_GOOSE_SDLOSTVOL_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 首端失压分闸
  2668. poc->bTT_ll = (((WORD)psetbuf[SET_GOOSE_LL_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 联络合闸
  2669. poc->dTll = GetSetTIME(psetbuf[SET_GOOSET_LL_T + sw * SW_SET_NUMBER].ff); // 联络合闸时间
  2670. // poc->bTT_DIR = (((WORD)psetbuf[SET_GOOSET_DIR_TT+sw*SW_SET_NUMBER ].ff == 1 )?true:false); // 合环运行
  2671. // poc->bTT_mxTfz = (((WORD)psetbuf[SET_GOOSET_MXTFZ_TT+sw*SW_SET_NUMBER ].ff == 1 )?true:false); // 母线故障跳分支
  2672. #else
  2673. poc->bTT_gooseFA = (((WORD)psetbuf[SET_GOOSE_FA_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 智能分布式投退
  2674. poc->bFA_slow = (((WORD)psetbuf[SET_GOOSE_FA_TYPE + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 速动/缓动
  2675. poc->bsw_sd = (((WORD)psetbuf[SET_GOOSE_FTU_TYPE + sw * SW_SET_NUMBER].ff == 0) ? true : false); // 首端
  2676. poc->bsw_fz = (((WORD)psetbuf[SET_GOOSE_FTU_TYPE + sw * SW_SET_NUMBER].ff == 2) ? true : false); // 末端
  2677. poc->bsw_ll = (((WORD)psetbuf[SET_GOOSE_FTU_TYPE + sw * SW_SET_NUMBER].ff == 3) ? true : false); // 联络
  2678. poc->dIgl = GetSetSQR(psetbuf[SET_GOOSET_GL_I + sw * SW_SET_NUMBER].ff, fKI); // 过流定值
  2679. poc->dIgl_fh = _Mul_Div_U(poc->dIgl, 96, 100); // 过流定值返回值
  2680. poc->dTgl = GetSetTIME(psetbuf[SET_GOOSET_GL_T + sw * SW_SET_NUMBER].ff);
  2681. #ifdef GD_AREA_ZHONGSHAN
  2682. poc->dIgl2 = GetSetSQR(psetbuf[SET_GOOSET_GL2_I + sw * SW_SET_NUMBER].ff, fKI); // 过流2定值
  2683. poc->dIgl2_fh = _Mul_Div_U(poc->dIgl2, 96, 100); // 返回值
  2684. poc->dTgl2 = GetSetTIME(psetbuf[SET_GOOSET_GL2_T + sw * SW_SET_NUMBER].ff);
  2685. #endif
  2686. poc->dIlx = GetSetSQR(psetbuf[SET_GOOSET_LX_I + sw * SW_SET_NUMBER].ff, fKI0); // 零序定值
  2687. poc->dIlx_fh = _Mul_Div_U(poc->dIlx, 96, 100); // 零序定值返回值
  2688. poc->dTlx = GetSetTIME(psetbuf[SET_GOOSET_LX_T + sw * SW_SET_NUMBER].ff);
  2689. poc->dTsdlost = GetSetTIME(psetbuf[SET_GOOSET_SDLOST_T + sw * SW_SET_NUMBER].ff); // 首端失压时间
  2690. poc->bTT_sdlost = (((WORD)psetbuf[SET_GOOSE_SDLOSTVOL_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 首端失压分闸
  2691. poc->dTgzgl = GetSetTIME(psetbuf[SET_GOOSET_GZGL_T + sw * SW_SET_NUMBER].ff); // 故障隔离时间
  2692. poc->bTT_ll = (((WORD)psetbuf[SET_GOOSE_LL_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 联络合闸
  2693. poc->dTll = GetSetTIME(psetbuf[SET_GOOSET_LL_T + sw * SW_SET_NUMBER].ff); // 联络合闸时间
  2694. poc->bTT_DIR = (((WORD)psetbuf[SET_GOOSET_DIR_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 合环运行
  2695. poc->bTT_mxTfz = (((WORD)psetbuf[SET_GOOSET_MXTFZ_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 母线故障跳分支
  2696. ptSet->tSwSet[sw].d_goose_xbcoe = GetSetSQR(psetbuf[SET_GOOSE_XBCOE + sw * SW_SET_NUMBER].ff / 100, 256);
  2697. ptSet->tSwSet[sw].bTT_goose_xbbs = ((DWORD)psetbuf[SET_GOOSE_XBBS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2698. #ifdef GOOSE_NETTYPE_SET
  2699. g_goose_net_type = (WORD)psetbuf[SET_GOOSE_NET_TYPE].ff;
  2700. #endif
  2701. #endif
  2702. }
  2703. // 重合闸
  2704. {
  2705. bool bch1, bch2, bch3;
  2706. bch1 = (((WORD)psetbuf[SET_CH1_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 一次重合闸
  2707. bch2 = (((WORD)psetbuf[SET_CH2_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 二次重合闸
  2708. #ifdef DISP_SET_CH_T3
  2709. bch3 = (((WORD)psetbuf[SET_CH3_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 多次重合闸
  2710. #else
  2711. bch3 = false;
  2712. #endif
  2713. ptSet->tSwSet[sw].bTT_CHZ = bch1 || bch2 || bch3;
  2714. ptSet->tSwSet[sw].bTT_chz_tq = (((WORD)psetbuf[SET_CH_TQ + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 重合检同期
  2715. #ifdef CHZ_JWY_LM
  2716. ptSet->tSwSet[sw].bTT_chz_mwy = (((WORD)psetbuf[SET_CH_MWY + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 检母线无压
  2717. ptSet->tSwSet[sw].bTT_chz_lwy = (((WORD)psetbuf[SET_CH_XWY + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 检线路无压
  2718. #else
  2719. ptSet->tSwSet[sw].bTT_chz_wy = (((WORD)psetbuf[SET_CH_WY + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 无压重合闸
  2720. #endif
  2721. ptSet->tSwSet[sw].bTT_TTCH_TT = (((WORD)psetbuf[SET_TTCH_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 偷跳启动重合
  2722. ptSet->tSwSet[sw].dT_chz[0] = GetSetTIME(psetbuf[SET_CH_T1 + sw * SW_SET_NUMBER].ff);
  2723. ptSet->tSwSet[sw].dT_chz[1] = GetSetTIME(psetbuf[SET_CH_T2 + sw * SW_SET_NUMBER].ff);
  2724. #ifdef DISP_SET_CH_T3
  2725. ptSet->tSwSet[sw].dT_chz[2] = GetSetTIME(psetbuf[SET_CH_T3 + sw * SW_SET_NUMBER].ff);
  2726. #else
  2727. ptSet->tSwSet[sw].dT_chz[2] = 0;
  2728. #endif
  2729. ptSet->tSwSet[sw].dT_ch_gl_tt = (((WORD)psetbuf[SET_CH_GL_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2730. ptSet->tSwSet[sw].dT_ch_jd_tt = (((WORD)psetbuf[SET_CH_JD_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2731. #ifdef DISP_CHZOKCHR_2_SW
  2732. ptSet->tSwSet[sw].dT_chz_cd = GetSetTIME(psetbuf[SET_CHZCD_2 + sw * SW_SET_NUMBER].ff);
  2733. ptSet->tSwSet[sw].dT_chz_ok = GetSetTIME(psetbuf[SET_CHZ_OK + sw * SW_SET_NUMBER].ff);
  2734. #else
  2735. ptSet->tSwSet[sw].dT_chz_cd = GetSetTIME(psetbuf[SET_CHZCD + sw * SW_SET_NUMBER].ff); // 重合闸充电时间
  2736. #endif
  2737. ptSet->tSwSet[sw].dT_chz_bs = GetSetTIME(psetbuf[SET_CHBS_T + sw * SW_SET_NUMBER].ff);
  2738. ptSet->tSwSet[sw].dT_chz_ok = (bch2 || bch3) ? ptSet->tSwSet[sw].dT_chz_ok : T_1s * 15; // 只投一次重合闸的时候,重合闸确认时间强制为15S 2020-7-25
  2739. if (bch3)
  2740. ptSet->tSwSet[sw].d_chz_times = 3;
  2741. else if (bch2)
  2742. ptSet->tSwSet[sw].d_chz_times = 2;
  2743. else
  2744. ptSet->tSwSet[sw].d_chz_times = 1;
  2745. ptSet->tSwSet[sw].dU_chz_deltaU = GetSetNormal(0.2 * fUn, fKU[PUB_AC_UAB1]); // 0.2 倍的额定值
  2746. ptSet->tSwSet[sw].dA_chz_deltaAng = GetSetNormal(30, 65536); // 30度压差
  2747. ptSet->tSwSet[sw].dU_chz_wy = GetSetSQR(0.4 * fUn, fKU[PUB_AC_UAB1]); // 0.4 倍的额定值
  2748. #ifdef FUNC_TQ_YY
  2749. ptSet->tSwSet[sw].dU_chz_yy = GetSetSQR(0.8 * fUn, fKU[PUB_AC_UAB1]); // 0.8 倍的额定值
  2750. #else
  2751. ptSet->tSwSet[sw].dU_chz_yy = GetSetSQR(0.5 * fUn, fKU[PUB_AC_UAB1]); // 0.5 倍的额定值
  2752. #endif
  2753. }
  2754. // 反时限定值
  2755. {
  2756. ptSet->tSwSet[sw].bTT_FSX = (((WORD)psetbuf[SET_FSX_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 反时限投退
  2757. ptSet->tSwSet[sw].dIglfsx = GetSetNormal(psetbuf[SET_FSX_I + sw * SW_SET_NUMBER].ff, fKI); // 反时限基准值
  2758. ptSet->tSwSet[sw].dTglfsx = GetSetTIME(psetbuf[SET_FSX_Tp + sw * SW_SET_NUMBER].ff);
  2759. ptSet->tSwSet[sw].wFsxType = (WORD)psetbuf[SET_FSX_TYPE + sw * SW_SET_NUMBER].ff;
  2760. ptSet->tSwSet[sw].dIglfsx098 = _Mul_Div_U(ptSet->tSwSet[sw].dIglfsx, 96, 100); // 反时限过流*0.96
  2761. ptSet->tSwSet[sw].dIglfsx105 = _Mul_Div_U(ptSet->tSwSet[sw].dIglfsx, 105, 100); // 反时限过流*1.05*1.05
  2762. ptSet->tSwSet[sw].dRVS_MIN_T = GetSetTIME(0.025); // 反时限最短时间
  2763. ptSet->tSwSet[sw].dRVS_MAX_T = GetSetTIME(9999); // 反时限最长时间
  2764. }
  2765. ptSet->tSwSet[sw].d_bh_xbcoe = GetSetSQR(psetbuf[SET_BH_XBCOE + sw * SW_SET_NUMBER].ff, 256); // 二次谐波闭锁系数
  2766. ptSet->tSwSet[sw].bTT_bh_ptdx = (((WORD)psetbuf[SET_BH_PTDX + sw * SW_SET_NUMBER].ff == 1) ? true : false); // PT断线检查
  2767. ptSet->tSwSet[sw].bTT_bh_xbbs = (((WORD)psetbuf[SET_BH_XBBS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 谐波闭锁
  2768. // 同期
  2769. {
  2770. ptSet->tSwSet[sw].dU_tq_deltaU = GetSetNormal(psetbuf[SET_TQ_U + sw * SW_SET_NUMBER].ff * fUn / 100, fKU[PUB_AC_UAB1]);
  2771. ptSet->tSwSet[sw].dA_tq_delatA = GetSetNormal(psetbuf[SET_TQ_ANG + sw * SW_SET_NUMBER].ff, 65536);
  2772. ptSet->tSwSet[sw].dF_tq_deltaF = GetSetNormal(psetbuf[SET_TQ_F + sw * SW_SET_NUMBER].ff, 65536);
  2773. ptSet->tSwSet[sw].dT_tq = GetSetTIME(1.0); // 同期默认时间1秒
  2774. }
  2775. // 电压解列
  2776. {
  2777. ptSet->tSwSet[sw].bTT_jl_dy = (((WORD)psetbuf[SET_VOLJL_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2778. ptSet->tSwSet[sw].dT_jl_gddy = GetSetTIME(psetbuf[SET_GDYJL_T + sw * SW_SET_NUMBER].ff); // 过低电压
  2779. ptSet->tSwSet[sw].dT_jl_ddy = GetSetTIME(psetbuf[SET_DYJL_T + sw * SW_SET_NUMBER].ff); // 低电压
  2780. ptSet->tSwSet[sw].dT_jl_gdy = GetSetTIME(psetbuf[SET_GYJL_T + sw * SW_SET_NUMBER].ff); // 高电压
  2781. ptSet->tSwSet[sw].dT_jl_ggdy = GetSetTIME(0.2); // 过高电压
  2782. ptSet->tSwSet[sw].dU_jl_gdy = GetSetSQR(psetbuf[SET_GYJL_U + sw * SW_SET_NUMBER].ff * fUn / 100, fKU[PUB_AC_UAB1]); // 0.4 倍的额定值
  2783. ptSet->tSwSet[sw].dU_jl_ddy = GetSetSQR(psetbuf[SET_DYJL_U + sw * SW_SET_NUMBER].ff * fUn / 100, fKU[PUB_AC_UAB1]); // 0.4 倍的额定值
  2784. ptSet->tSwSet[sw].dU_jl_ggdy = GetSetSQR(1.35 * fUn, fKU[PUB_AC_UAB1]); // 1.35 倍的额定值
  2785. ptSet->tSwSet[sw].dU_jl_gddy = GetSetSQR(psetbuf[SET_GDYJL_U + sw * SW_SET_NUMBER].ff * fUn / 100, fKU[PUB_AC_UAB1]); // 0.5 倍的额定值
  2786. ptSet->tSwSet[sw].dU_jl_gddy_fh = _Mul_Div_U(ptSet->tSwSet[sw].dU_jl_gddy, 104, 100); // 1.02的返回值
  2787. ptSet->tSwSet[sw].dU_jl_ddy_fh = _Mul_Div_U(ptSet->tSwSet[sw].dU_jl_ddy, 104, 100); // 1.02的返回值
  2788. ptSet->tSwSet[sw].dU_jl_gdy_fh = _Mul_Div_U(ptSet->tSwSet[sw].dU_jl_gdy, 96, 100); // 0.98的返回值
  2789. ptSet->tSwSet[sw].dU_jl_ggdy_fh = _Mul_Div_U(ptSet->tSwSet[sw].dU_jl_ggdy, 96, 100); // 0.98的返回值
  2790. #ifdef PRO_AL_LOCK_HZ
  2791. ptSet->tSwSet[sw].dU_reclose_gdy_fh = _Mul_Div_U(ptSet->tSwSet[sw].dU_jl_gdy, 104, 100); // 1.04的高电压解列值为返回值
  2792. ptSet->tSwSet[sw].dU_reclose_ddy_fh = _Mul_Div_U(ptSet->tSwSet[sw].dU_jl_ddy, 96, 100); // 0.96的低电压解列值为返回值
  2793. #endif
  2794. }
  2795. // 频率解列
  2796. {
  2797. ptSet->tSwSet[sw].bTT_jl_hz = (((WORD)psetbuf[SET_PLJL_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2798. ptSet->tSwSet[sw].dT_jl_ghz = GetSetTIME(psetbuf[SET_GPJL_T + sw * SW_SET_NUMBER].ff);
  2799. ptSet->tSwSet[sw].dT_jl_dhz = GetSetTIME(psetbuf[SET_DPJL_T + sw * SW_SET_NUMBER].ff);
  2800. ptSet->tSwSet[sw].dT_jl_lowhz = GetSetTIME(0.2); // 频率过低
  2801. ptSet->tSwSet[sw].dU_jl_ghz = GetSetNormal(psetbuf[SET_GPJL_HZ + sw * SW_SET_NUMBER].ff, 65536);
  2802. ptSet->tSwSet[sw].dU_jl_dhz = GetSetNormal(psetbuf[SET_DPJL_HZ + sw * SW_SET_NUMBER].ff, 65536);
  2803. ptSet->tSwSet[sw].dU_jl_lowhz = GetSetNormal(47.0, 65536);
  2804. ptSet->tSwSet[sw].dU_jl_dhz_fh = ptSet->tSwSet[sw].dU_jl_dhz + 1310; // 返回值小 0.02
  2805. ptSet->tSwSet[sw].dU_jl_lowhz_fh = ptSet->tSwSet[sw].dU_jl_lowhz + 1310; // 0.98的返回值
  2806. ptSet->tSwSet[sw].dU_jl_ghz_fh = ptSet->tSwSet[sw].dU_jl_ghz - 1310; // 0.98的返回值
  2807. }
  2808. ptSet->tSwSet[sw].bTT_hcbs_dy = (((WORD)psetbuf[SET_DYJL_HCBS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 电压滑差投退
  2809. ptSet->tSwSet[sw].bTT_hcbs_hz = (((WORD)psetbuf[SET_DPJL_HCBS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 频率滑差投退
  2810. ptSet->tSwSet[sw].dhcbs_hz = GetSetNormal(psetbuf[SET_DPJL_HCBS_HZ + sw * SW_SET_NUMBER].ff, 65536); // 频率滑差定值
  2811. ptSet->tSwSet[sw].dhcbs_u = GetSetNormal(psetbuf[SET_DYJL_HCBS_U + sw * SW_SET_NUMBER].ff, fKU[PUB_AC_UAB1]); // 电压滑差定值
  2812. #ifdef XDL_ZT
  2813. // 小电流接地
  2814. ptSet->tSwSet[sw].bTT_xdlgj = (((WORD)psetbuf[SET_XDL_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false || ((WORD)psetbuf[SET_XDL_TT + sw * SW_SET_NUMBER].ff == 2) ? true : false);
  2815. ptSet->tSwSet[sw].bTT_xdltz = (((WORD)psetbuf[SET_XDL_TT + sw * SW_SET_NUMBER].ff == 2) ? true : false);
  2816. if (ptSet->tSwSet[sw].bTT_xdlgj || ptSet->tSwSet[sw].bTT_xdltz)
  2817. {
  2818. ptSet->tSwSet[sw].bTT_xdlqd = (((WORD)psetbuf[SET_XDLQD_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2819. ptSet->bTT_xdl = true;
  2820. }
  2821. else
  2822. {
  2823. ptSet->tSwSet[sw].bTT_xdlqd = -1;
  2824. }
  2825. if (g_ui[UI_SW_INDEX(sw, SW_AC_I0)].chn_index == CFG_ADC_CHANNEL_ZERO)
  2826. {
  2827. ptSet->tSwSet[sw].dI_xdl_zt = -1;
  2828. }
  2829. else
  2830. {
  2831. // 定值由峰值改为有效值
  2832. // ptSet->tSwSet[sw].dI_xdl_zt = GetSetNormal(psetbuf[SET_XDL_I+sw*SW_SET_NUMBER].ff,1/(g_ui[UI_SW_INDEX(sw,SW_AC_I0)].e_factor0*1.4142));
  2833. ptSet->tSwSet[sw].dI_xdl_zt = GetSetNormal(psetbuf[SET_XDL_I + sw * SW_SET_NUMBER].ff, 1 / (g_ui[UI_SW_INDEX(sw, SW_AC_I0)].e_factor0));
  2834. ptSet->tSwSet[sw].dI_xdl_300ma = GetSetNormal(0.2, 1 / (g_ui[UI_SW_INDEX(sw, SW_AC_I0)].e_factor0)); // 200毫安,电流定值
  2835. }
  2836. ptSet->tSwSet[sw].dI_xdl = GetSetSQR(psetbuf[SET_XDL_I + sw * SW_SET_NUMBER].ff, fKI0); // 过流定值
  2837. ptSet->tSwSet[sw].dI_xdl_fh = _Mul_Div_U(ptSet->tSwSet[sw].dI_xdl, 96, 100);
  2838. #endif
  2839. #ifdef FUNC_DRIVE
  2840. ptSet->tSwSet[sw].btt_gnyb_btdcd = ((WORD)psetbuf[SET_XDL_YB + sw * SW_SET_NUMBER].ff == 1) ? true : false; // 不停电传动功能软压板
  2841. fresh_set_soe(EV_DRIVE, ptSet->tSwSet[sw].btt_gnyb_btdcd, bFirst, 0);
  2842. ptSet->tSwSet[sw].dT_Drive_hz = GetSetTIME(psetbuf[SET_DRIVE_HZ_T + sw * SW_SET_NUMBER].ff);
  2843. ptSet->tSwSet[sw].dT_Drive_fz = GetSetTIME(psetbuf[SET_DRIVE_FZ_T + sw * SW_SET_NUMBER].ff);
  2844. ptSet->tSwSet[sw].dT_fz_end = GetSetTIME(psetbuf[SET_FZ_END_T + sw * SW_SET_NUMBER].ff);
  2845. ptSet->tSwSet[sw].dT_hz_end = GetSetTIME(psetbuf[SET_HZ_END_T].ff);
  2846. #endif
  2847. ptSet->tSwSet[sw].bTT_IBSCHZ = (((WORD)psetbuf[SET_CH_DLBS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2848. ptSet->tSwSet[sw].dIBSCHZ = GetSetSQR(psetbuf[SET_CH_DLBS_I + sw * SW_SET_NUMBER].ff, fKI);
  2849. ptSet->tSwSet[sw].dT_chz_Topen = GetSetTIME(psetbuf[SET_CHZ_OPEN + sw * SW_SET_NUMBER].ff); // 重合闸开放时间,默认300秒
  2850. // FA
  2851. {
  2852. ptSet->tSwSet[sw].bTT_fa_poweron = ((DWORD)psetbuf[SET_P_YY_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2853. ptSet->tSwSet[sw].bTT_fa_lineon = ((DWORD)psetbuf[SET_L_YY_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2854. ptSet->tSwSet[sw].bTT_fa_poweroff = (BYTE)psetbuf[SET_P_WY_TT + sw * SW_SET_NUMBER].ff;
  2855. ptSet->tSwSet[sw].bTT_fa_lineoff = (BYTE)psetbuf[SET_L_WY_TT + sw * SW_SET_NUMBER].ff;
  2856. ptSet->tSwSet[sw].bTT_fa_Lostfz = ((DWORD)psetbuf[SET_LOSTFZ_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2857. ptSet->tSwSet[sw].bTT_fa_Icheck = ((DWORD)psetbuf[SET_GZCHECK_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2858. ptSet->tSwSet[sw].bTT_fa_gzTz = (((DWORD)psetbuf[SET_GZCHECK_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2859. #ifdef GD_AREA_ECZD_2020 // 2020-9-8
  2860. ptSet->tSwSet[sw].bTT_fa_scyy_bs = false; // 联络双侧有压闭锁自动合闸但不闭锁遥控合闸、电动合闸、手动合闸
  2861. ptSet->tSwSet[sw].bTT_fa_sfbs = true; // 默认手分闭锁
  2862. ptSet->tSwSet[sw].bTT_fa_gzbshz = true; // 默认合后故障闭锁合闸
  2863. ptSet->tSwSet[sw].bTT_fa_shbs = false; // 默认手合无压,闭锁分闸
  2864. ptSet->tSwSet[sw].bTT_FA = true; // 默认投入就地FA功能
  2865. ptSet->tSwSet[sw].bTT_fa_LL = ((DWORD)psetbuf[SET_SL_TT + sw * SW_SET_NUMBER].ff == 0) ? true : false;
  2866. #else
  2867. ptSet->tSwSet[sw].bTT_fa_scyy_bs = ((DWORD)psetbuf[SET_SCYY_BSHZ + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2868. ptSet->tSwSet[sw].bTT_fa_sfbs = ((DWORD)psetbuf[SET_SF_BSHZ + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2869. ptSet->tSwSet[sw].bTT_fa_gzbshz = ((DWORD)psetbuf[SET_GZBSHZ_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2870. ptSet->tSwSet[sw].bTT_fa_shbs = ((DWORD)psetbuf[SET_SH_BSFZ + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2871. ptSet->tSwSet[sw].bTT_fa_LL = ((DWORD)psetbuf[SET_SL_TT + sw * SW_SET_NUMBER].ff == 2) ? true : false;
  2872. ptSet->tSwSet[sw].bTT_FA = ((DWORD)psetbuf[SET_FA_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2873. #endif
  2874. #if defined GD_AREA_HEYUAN_2021_2021
  2875. ptSet->tSwSet[sw].bTT_fa_LL = ((DWORD)psetbuf[SET_SL_TT + sw * SW_SET_NUMBER].ff == 0) ? true : false;
  2876. #endif
  2877. ptSet->tSwSet[sw].bTT_fa_gl2 = ((DWORD)psetbuf[SET_FA_GL2_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2878. ptSet->tSwSet[sw].bTT_fa_lx2 = ((DWORD)psetbuf[SET_FA_LX2_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2879. ptSet->tSwSet[sw].bTT_fa_bsTz = ((DWORD)psetbuf[SET_BSTZ_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2880. ptSet->tSwSet[sw].bTT_fa_cybs = ((DWORD)psetbuf[SET_CYBS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2881. ptSet->tSwSet[sw].bTT_fa_xbbs = ((DWORD)psetbuf[SET_FA_XBBS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2882. ptSet->tSwSet[sw].bTT_fa_U0Tz = ((DWORD)psetbuf[SET_U0TZ_TT + sw * SW_SET_NUMBER].ff == 2) ? true : false;
  2883. ptSet->tSwSet[sw].bTT_fa_U0Gj = ((DWORD)psetbuf[SET_U0TZ_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2884. ptSet->tSwSet[sw].bTT_fa_ptdx = ((DWORD)psetbuf[SET_FA_PTDX + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  2885. ptSet->tSwSet[sw].bTT_hzbs = (((DWORD)psetbuf[SET_HZBS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2886. ptSet->tSwSet[sw].dU_fa_YY = GetSetSQR(psetbuf[SET_FA_YY_U + sw * SW_SET_NUMBER].ff * fUn / 100, fKU[PUB_AC_UAB1]); // 0.4 倍的额定值
  2887. ptSet->tSwSet[sw].dU_fa_WY = GetSetSQR(psetbuf[SET_FA_WY_U + sw * SW_SET_NUMBER].ff * fUn / 100, fKU[PUB_AC_UAB1]); // 0.4 倍的额定值
  2888. ptSet->tSwSet[sw].dU_fa_YY_fh = _Mul_Div_U(ptSet->tSwSet[sw].dU_fa_YY, 96, 100); // 0.98的返回值
  2889. ptSet->tSwSet[sw].dU_fa_WY_fh = _Mul_Div_U(ptSet->tSwSet[sw].dU_fa_WY, 104, 100); // 1.02的返回值
  2890. ptSet->tSwSet[sw].dT_fa_YY = GetSetTIME(psetbuf[SET_FA_YY_T + sw * SW_SET_NUMBER].ff);
  2891. ptSet->tSwSet[sw].dT_fa_WY = GetSetTIME(psetbuf[SET_FA_WY_T + sw * SW_SET_NUMBER].ff);
  2892. // ptSet->tSwSet[sw].dT_fa_YY = GetSetTIME(0.025);//有压延时默认25ms
  2893. // ptSet->tSwSet[sw].dT_fa_WY = GetSetTIME(0.025);//无压延时默认25ms
  2894. // FA负荷侧pt变比生效
  2895. ptSet->tSwSet[sw].dU_fa_YY2 = GetSetSQR(psetbuf[SET_FA_YY_U + sw * SW_SET_NUMBER].ff * ptSet->b_pt_two / 100, fKU[PUB_AC_UAB2]); // 0.4 倍的额定值
  2896. ptSet->tSwSet[sw].dU_fa_WY2 = GetSetSQR(psetbuf[SET_FA_WY_U + sw * SW_SET_NUMBER].ff * ptSet->b_pt_two / 100, fKU[PUB_AC_UAB2]); // 0.4 倍的额定值
  2897. ptSet->tSwSet[sw].dU_fa_YY2_fh = _Mul_Div_U(ptSet->tSwSet[sw].dU_fa_YY2, 96, 100); // 0.98的返回值
  2898. ptSet->tSwSet[sw].dU_fa_WY2_fh = _Mul_Div_U(ptSet->tSwSet[sw].dU_fa_WY2, 104, 100); // 1.02的返回值
  2899. ptSet->tSwSet[sw].dT_X = GetSetTIME(psetbuf[SET_FA_X_T + sw * SW_SET_NUMBER].ff);
  2900. ptSet->tSwSet[sw].dT_Y = GetSetTIME(psetbuf[SET_FA_Y_T + sw * SW_SET_NUMBER].ff);
  2901. #ifdef GD_AREA_ZHONGSHAN_2020
  2902. ptSet->tSwSet[sw].dT_LL_CD = GetSetTIME(psetbuf[SET_FA_LL_CD_T + sw * SW_SET_NUMBER].ff);
  2903. #endif
  2904. ptSet->tSwSet[sw].dT_XL = GetSetTIME(psetbuf[SET_FA_XL_T + sw * SW_SET_NUMBER].ff);
  2905. ptSet->tSwSet[sw].dT_Z = GetSetTIME(psetbuf[SET_FA_Z_T + sw * SW_SET_NUMBER].ff);
  2906. ptSet->tSwSet[sw].dT_fa_bsTz = GetSetTIME(psetbuf[SET_FA_BSTZ_T + sw * SW_SET_NUMBER].ff);
  2907. #ifdef FA_OC_COUNT
  2908. ptSet->tSwSet[sw].bTT_fa_oc_count = (((DWORD)psetbuf[SET_FA_OC_COUNT_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2909. ptSet->tSwSet[sw].fa_oc_count_m = ((DWORD)psetbuf[SET_FA_OC_COUNT_M + sw * SW_SET_NUMBER].ff);
  2910. ptSet->tSwSet[sw].fa_oc_conut_time = GetSetTIME(psetbuf[SET_FA_OC_COUNT_T + sw * SW_SET_NUMBER].ff); // ((WORD)psetbuf[SET_FA_OC_COUNT_T+sw*SW_SET_NUMBER].ff);
  2911. if (ptSet->tSwSet[sw].fa_oc_count_m == 0 || ptSet->tSwSet[sw].fa_oc_conut_time == 0)
  2912. ptSet->tSwSet[sw].bTT_fa_oc_count = FALSE;
  2913. #endif
  2914. ptSet->tSwSet[sw].d_fa_xbcoe = GetSetSQR(psetbuf[SET_FA_XBCOE + sw * SW_SET_NUMBER].ff, 256);
  2915. ptSet->tSwSet[sw].dU_OverU0 = GetSetSQR(psetbuf[SET_FA_U0_U + sw * SW_SET_NUMBER].ff, fKU[PUB_AC_U01]); //
  2916. ptSet->tSwSet[sw].dU_OverU0_fh = _Mul_Div_U(ptSet->tSwSet[sw].dU_OverU0, 96, 100);
  2917. ptSet->tSwSet[sw].dT_OverU0 = GetSetTIME(psetbuf[SET_FA_U0_T + sw * SW_SET_NUMBER].ff);
  2918. #if defined GD_AREA_ECZD_2020
  2919. ptSet->tSwSet[sw].dU_UF = GetSetSQR(0.20 * fUn, fKU[PUB_AC_UAB1]); // 瞬压定值固定取20%额定值
  2920. ptSet->tSwSet[sw].dU_UF2 = GetSetSQR(0.20 * ptSet->b_pt_two, fKU[PUB_AC_UAB2]); // 瞬压定值固定取20%额定值
  2921. #else
  2922. ptSet->tSwSet[sw].dU_UF = GetSetSQR(0.25 * fUn, fKU[PUB_AC_UAB1]); // 瞬压定值固定取25%额定值
  2923. ptSet->tSwSet[sw].dU_UF2 = GetSetSQR(0.25 * ptSet->b_pt_two, fKU[PUB_AC_UAB2]); // 瞬压定值固定取25%额定值
  2924. #endif
  2925. ptSet->tSwSet[sw].hzbstimes = ((DWORD)psetbuf[SET_HZBS_TIMES + sw * SW_SET_NUMBER].ff); // psetbuf[SET_HZBS_TIMES+sw*SW_SET_NUMBER].ff)
  2926. ptSet->tSwSet[sw].dT_hzbs = GetSetTIME(psetbuf[SET_HZBS_T + sw * SW_SET_NUMBER].ff);
  2927. ptSet->tSwSet[sw].dT_wldz = GetSetSQR(psetbuf[SET_FA_WLDZ].ff, fIn);
  2928. poc = &ptSet->tSwSet[sw].toc[FA_GL]; // 相间故障
  2929. poc->bTz = ((((WORD)psetbuf[SET_GZCHECK_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false));
  2930. poc->bDir = false;
  2931. poc->bGj = false;
  2932. #if defined GD_AREA_ECZD_2020
  2933. poc->dT = GetSetTIME(psetbuf[SET_FA_GLI_T + sw * SW_SET_NUMBER].ff);
  2934. #else
  2935. poc->dT = GetSetTIME(psetbuf[SET_FA_GZTZ_T + sw * SW_SET_NUMBER].ff);
  2936. #endif
  2937. if (poc->dT < T_FA_TZ_MIN_TIME)
  2938. poc->dT = T_FA_TZ_MIN_TIME; // 不小于20ms
  2939. poc->dI = GetSetSQR(psetbuf[SET_FA_GL_I + sw * SW_SET_NUMBER].ff, fKI);
  2940. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100); // 返回值
  2941. poc = &ptSet->tSwSet[sw].toc[FA_GL_II]; // 相间II段故障
  2942. poc->bTz = ((((WORD)psetbuf[SET_GZCHECK_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false));
  2943. poc->bDir = false;
  2944. poc->bGj = false;
  2945. #if defined GD_AREA_ECZD_2020
  2946. #ifdef GD_AREA_ZHONGSHAN_2020
  2947. if (ptSet->tSwSet[sw].bTT_fa_hjs)
  2948. {
  2949. poc->dT = GetSetTIME(psetbuf[SET_FA_GZTZ_T + sw * SW_SET_NUMBER].ff);
  2950. }
  2951. else
  2952. {
  2953. poc->dT = GetSetTIME(psetbuf[SET_FA_GLII_T + sw * SW_SET_NUMBER].ff);
  2954. }
  2955. ptSet->tSwSet[sw].dT_fa_ocing = GetSetTIME(psetbuf[SET_FA_GLII_T + sw * SW_SET_NUMBER].ff);
  2956. #else
  2957. poc->dT = GetSetTIME(psetbuf[SET_FA_GLII_T + sw * SW_SET_NUMBER].ff);
  2958. #endif
  2959. #else
  2960. poc->dT = GetSetTIME(psetbuf[SET_FA_GZTZ_T + sw * SW_SET_NUMBER].ff);
  2961. #endif
  2962. if (poc->dT < T_FA_TZ_MIN_TIME)
  2963. poc->dT = T_FA_TZ_MIN_TIME; // 不小于20ms
  2964. #if defined GD_AREA_ECZD_2020 // 合后电流两段处理
  2965. poc->dI = GetSetSQR(psetbuf[SET_FA_GL_II + sw * SW_SET_NUMBER].ff, fKI);
  2966. #else
  2967. poc->bTz = false;
  2968. poc->bDir = false;
  2969. poc->bGj = false;
  2970. poc->dI = false;
  2971. #endif
  2972. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100); // 返回值
  2973. poc = &ptSet->tSwSet[sw].toc[FA_GL2]; // 相间告警
  2974. poc->bTz = false;
  2975. poc->bDir = false;
  2976. poc->bGj = (((WORD)psetbuf[SET_FA_GL2_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2977. poc->dT = GetSetTIME(psetbuf[SET_FA_GL2_T + sw * SW_SET_NUMBER].ff);
  2978. poc->dI = GetSetSQR(psetbuf[SET_FA_GL2_I + sw * SW_SET_NUMBER].ff, fKI);
  2979. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100); // 返回值
  2980. #ifdef GD_AREA_ECZD_2020
  2981. poc->dU = GetSetSQR(psetbuf[SET_FA_FHDDY + sw * SW_SET_NUMBER].ff * fUn / 100, fKU[PUB_AC_UAB1]); // 低电压定值
  2982. poc->dU_fh = _Mul_Div_U(poc->dU, 104, 100); // 返回值
  2983. poc->dU2 = GetSetSQR(psetbuf[SET_FA_FHFDY + sw * SW_SET_NUMBER].ff * fUn / 100, fKU[PUB_AC_UAB1]); // 负序电压值
  2984. poc->dU2_fh = _Mul_Div_U(poc->dU2, 96, 100);
  2985. #endif
  2986. poc = &ptSet->tSwSet[sw].toc[FA_DLBS];
  2987. poc->bTz = (((WORD)psetbuf[SET_DLBS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2988. poc->bDir = false;
  2989. poc->bGj = false;
  2990. poc->dT = GetSetTIME(0.00); // 大电流闭锁0毫秒
  2991. poc->dI = GetSetSQR(psetbuf[SET_FA_DLBS_I + sw * SW_SET_NUMBER].ff, fKI);
  2992. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100); // 返回值
  2993. poc = &ptSet->tSwSet[sw].toc[FA_LX]; // 零序故障
  2994. poc->bTz = (((WORD)psetbuf[SET_GZCHECK_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  2995. poc->bDir = false;
  2996. poc->bGj = false;
  2997. #if defined GD_AREA_ECZD_2020
  2998. #ifdef GD_AREA_ZHONGSHAN_2020
  2999. if (ptSet->tSwSet[sw].bTT_fa_hjs)
  3000. {
  3001. poc->dT = GetSetTIME(psetbuf[SET_FA_GZTZ_T + sw * SW_SET_NUMBER].ff);
  3002. }
  3003. else
  3004. {
  3005. poc->dT = GetSetTIME(psetbuf[SET_FA_LX_T + sw * SW_SET_NUMBER].ff);
  3006. }
  3007. ptSet->tSwSet[sw].dT_fa_lxing = GetSetTIME(psetbuf[SET_FA_LX_T + sw * SW_SET_NUMBER].ff);
  3008. #else
  3009. poc->dT = GetSetTIME(psetbuf[SET_FA_LX_T + sw * SW_SET_NUMBER].ff);
  3010. #endif
  3011. #else
  3012. poc->dT = GetSetTIME(psetbuf[SET_FA_GZTZ_T + sw * SW_SET_NUMBER].ff);
  3013. #endif
  3014. if (poc->dT < T_FA_TZ_MIN_TIME)
  3015. poc->dT = T_FA_TZ_MIN_TIME; // 不小于20ms
  3016. poc->dI = GetSetSQR(psetbuf[SET_FA_LX_I + sw * SW_SET_NUMBER].ff, fKI0);
  3017. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100); // 返回值
  3018. poc = &ptSet->tSwSet[sw].toc[FA_LX2]; // 零序告警
  3019. poc->bTz = false;
  3020. poc->bDir = false;
  3021. poc->bGj = (((WORD)psetbuf[SET_FA_LX2_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  3022. poc->dT = GetSetTIME(psetbuf[SET_FA_LX2_T + sw * SW_SET_NUMBER].ff);
  3023. poc->dI = GetSetSQR(psetbuf[SET_FA_LX2_I + sw * SW_SET_NUMBER].ff, fKI0);
  3024. poc->dI_fh = _Mul_Div_U(poc->dI, 96, 100); // 返回值
  3025. }
  3026. // 零序过电压投入
  3027. {
  3028. #if defined GD_AREA_ECZD_2020 // be modified by Jack.Liu on 2020/07/23--14:4:47
  3029. #if defined GD_AREA_ECZD_YUNFU_2021_2021
  3030. ptSet->tSwSet[sw].bTT_3U0Tz = (((WORD)psetbuf[SET_3U0_TT + sw * SW_SET_NUMBER].ff == 2) ? true : false);
  3031. ptSet->tSwSet[sw].bTT_3U0Gj = (((WORD)psetbuf[SET_3U0_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  3032. #else
  3033. ptSet->tSwSet[sw].bTT_3U0Tz = (((WORD)psetbuf[SET_3U0_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  3034. ptSet->tSwSet[sw].bTT_3U0Gj = 0;
  3035. #endif
  3036. #else
  3037. ptSet->tSwSet[sw].bTT_3U0Tz = (((WORD)psetbuf[SET_3U0_TT + sw * SW_SET_NUMBER].ff == 2) ? true : false);
  3038. ptSet->tSwSet[sw].bTT_3U0Gj = (((WORD)psetbuf[SET_3U0_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false);
  3039. #endif
  3040. ptSet->tSwSet[sw].dBHOverU0 = GetSetSQR(psetbuf[SET_U0_U + sw * SW_SET_NUMBER].ff, fKU[PUB_AC_U01]);
  3041. ptSet->tSwSet[sw].dBHOverU0_fh = _Mul_Div_U(ptSet->tSwSet[sw].dBHOverU0, 96, 100); // 0.96=0.98*0.98
  3042. ptSet->tSwSet[sw].dBHTOverU0 = GetSetTIME(psetbuf[SET_U0_T + sw * SW_SET_NUMBER].ff);
  3043. }
  3044. #ifdef GD_AREA_ZHONGSHAN_2020 // 中山智能分布式手合故障处理
  3045. ptSet->tSwSet[sw].tGocSet.tOc[FAG_GL1] = ptSet->tSwSet[sw].toc[FA_GL]; // 使用相间故障1段定值
  3046. ptSet->tSwSet[sw].tGocSet.tOc[FAG_GL2] = ptSet->tSwSet[sw].toc[FA_GL2]; // 使用相间故障2段定值
  3047. ptSet->tSwSet[sw].tGocSet.tOc[FAG_LX] = ptSet->tSwSet[sw].toc[FA_LX]; // 使用FA零序定值
  3048. #endif
  3049. // 其他定值
  3050. {
  3051. ptSet->tSwSet[sw].bTT_Current_Inv = ((WORD)psetbuf[SET_CURRENT_INV_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  3052. ptSet->tSwSet[sw].bTT_DIR_Inv = ((WORD)psetbuf[SET_DIR_INV_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  3053. ptSet->tSwSet[sw].bTT_WCN = (((WORD)psetbuf[SET_TT_TWCN + sw * SW_SET_NUMBER].ff == 1) ? true : false); //&ptSet->bFUN_TWCN; //弹簧未储能
  3054. #ifndef GD_AREA_ZHONGSHAN
  3055. ptSet->tSwSet[sw].bTT_KZHL = (((WORD)psetbuf[SET_TT_KZHL + sw * SW_SET_NUMBER].ff == 1) ? true : false); //&ptSet->bFUN_TWCN; //控制回路
  3056. #endif
  3057. ptSet->tSwSet[sw].bTT_QYD_BS = ((WORD)psetbuf[SET_QYD_BS_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  3058. ptSet->tSwSet[sw].bTT_Power_v2 = false;
  3059. #ifdef CUSTOMIZE_BZT // 备自投
  3060. ptSet->tSwSet[sw].bBZT_TT = ((WORD)psetbuf[SET_BZT_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  3061. ptSet->tSwSet[sw].bFD = ((WORD)psetbuf[SET_BZT_FS + sw * SW_SET_NUMBER].ff == 0) ? true : false;
  3062. ptSet->tSwSet[sw].bJX = ((WORD)psetbuf[SET_BZT_FS + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  3063. ptSet->tSwSet[sw].bAUTO = ((WORD)psetbuf[SET_BZT_FS + sw * SW_SET_NUMBER].ff == 2) ? true : false;
  3064. // ptSet->tSwSet[sw].bDJX = ((WORD)psetbuf[SET_BZT_FS+sw*SW_SET_NUMBER].ff==3 )?true:false;
  3065. ptSet->tSwSet[sw].bZF = ((WORD)psetbuf[SET_BZT_FS + sw * SW_SET_NUMBER].ff == 3) ? true : false;
  3066. // ptSet->tSwSet[sw].bZF = ((WORD)psetbuf[SET_BZF_TT+sw*SW_SET_NUMBER].ff==1 )?true:false;
  3067. ptSet->tSwSet[sw].dT_BTTZ = GetSetTIME(psetbuf[SET_BZTT_T + sw * SW_SET_NUMBER].ff);
  3068. ptSet->tSwSet[sw].dT_BTHZ = GetSetTIME(psetbuf[SET_BZTH_T + sw * SW_SET_NUMBER].ff);
  3069. ptSet->tSwSet[sw].dT_BTCD = GetSetTIME(psetbuf[SET_TCD + sw * SW_SET_NUMBER].ff);
  3070. // 母线pt1电压电压选择
  3071. dw = (int)(psetbuf[SET_BZT_MX_PT1 + sw * SW_SET_NUMBER].ff);
  3072. ptSet->tSwSet[sw].bzt_mx_pt1 = (u8)tSwSetTable[SET_BZT_MX_PT1].list[dw].dat;
  3073. // 母线pt2电压电压选择
  3074. dw = (int)(psetbuf[SET_BZT_MX_PT2 + sw * SW_SET_NUMBER].ff);
  3075. ptSet->tSwSet[sw].bzt_mx_pt2 = (u8)tSwSetTable[SET_BZT_MX_PT2].list[dw].dat;
  3076. // 进线1pt电压
  3077. dw = (int)(psetbuf[SET_BZT_DL1_PT + sw * SW_SET_NUMBER].ff);
  3078. ptSet->tSwSet[sw].bzt_dl1_pt = (u8)tSwSetTable[SET_BZT_DL1_PT].list[dw].dat;
  3079. // 进线2pt电压
  3080. dw = (int)(psetbuf[SET_BZT_DL2_PT + sw * SW_SET_NUMBER].ff);
  3081. ptSet->tSwSet[sw].bzt_dl2_pt = (u8)tSwSetTable[SET_BZT_DL2_PT].list[dw].dat;
  3082. // 进线1pt电流
  3083. dw = (int)(psetbuf[SET_BZT_DL1_I + sw * SW_SET_NUMBER].ff);
  3084. ptSet->tSwSet[sw].bzt_dl1_ct = (u8)tSwSetTable[SET_BZT_DL1_I].list[dw].dat;
  3085. // 进线2pt电流
  3086. dw = (int)(psetbuf[SET_BZT_DL2_I + sw * SW_SET_NUMBER].ff);
  3087. ptSet->tSwSet[sw].bzt_dl2_ct = (u8)tSwSetTable[SET_BZT_DL2_I].list[dw].dat;
  3088. ptSet->tSwSet[sw].dJX1UPower = GetSetSQR(psetbuf[SET_POWERON_U + sw * SW_SET_NUMBER].ff, fKU[ptSet->tSwSet[sw].bzt_dl1_pt]); // 备自投进线1有压定值
  3089. ptSet->tSwSet[sw].dJX2UPower = GetSetSQR(psetbuf[SET_POWERON_U + sw * SW_SET_NUMBER].ff, fKU[ptSet->tSwSet[sw].bzt_dl2_pt]); // 备自投进线2有压定值
  3090. ptSet->tSwSet[sw].dMX1UPower = GetSetSQR(psetbuf[SET_POWERON_U + sw * SW_SET_NUMBER].ff, fKU[ptSet->tSwSet[sw].bzt_mx_pt1]); // 备自投母线1有压定值
  3091. ptSet->tSwSet[sw].dMX2UPower = GetSetSQR(psetbuf[SET_POWERON_U + sw * SW_SET_NUMBER].ff, fKU[ptSet->tSwSet[sw].bzt_mx_pt2]); // 备自投母线2有压定值
  3092. ptSet->tSwSet[sw].dJX1UPower_fh = _Mul_Div_U(ptSet->tSwSet[sw].dJX1UPower, 96, 100);
  3093. ptSet->tSwSet[sw].dJX2UPower_fh = _Mul_Div_U(ptSet->tSwSet[sw].dJX2UPower, 96, 100);
  3094. ptSet->tSwSet[sw].dMX1UPower_fh = _Mul_Div_U(ptSet->tSwSet[sw].dMX1UPower, 96, 100);
  3095. ptSet->tSwSet[sw].dMX2UPower_fh = _Mul_Div_U(ptSet->tSwSet[sw].dMX2UPower, 96, 100);
  3096. ptSet->tSwSet[sw].dJX1UPowerLost = GetSetSQR(psetbuf[SET_POWEROFF_U + sw * SW_SET_NUMBER].ff, fKU[ptSet->tSwSet[sw].bzt_dl1_pt]); // 备自投进线1无压定值
  3097. ptSet->tSwSet[sw].dJX2UPowerLost = GetSetSQR(psetbuf[SET_POWEROFF_U + sw * SW_SET_NUMBER].ff, fKU[ptSet->tSwSet[sw].bzt_dl1_pt]); // 备自投进线2无压定值
  3098. ptSet->tSwSet[sw].dMX1UPowerLost = GetSetSQR(psetbuf[SET_POWEROFF_U + sw * SW_SET_NUMBER].ff, fKU[ptSet->tSwSet[sw].bzt_dl1_pt]); // 备自投母线1无压定值
  3099. ptSet->tSwSet[sw].dMX2UPowerLost = GetSetSQR(psetbuf[SET_POWEROFF_U + sw * SW_SET_NUMBER].ff, fKU[ptSet->tSwSet[sw].bzt_dl1_pt]); // 备自投母线2无压定值
  3100. ptSet->tSwSet[sw].dJX1UPowerLost_fh = _Mul_Div_U(ptSet->tSwSet[sw].dJX1UPowerLost, 104, 100);
  3101. ptSet->tSwSet[sw].dJX2UPowerLost_fh = _Mul_Div_U(ptSet->tSwSet[sw].dJX2UPowerLost, 104, 100);
  3102. ptSet->tSwSet[sw].dMX1UPowerLost_fh = _Mul_Div_U(ptSet->tSwSet[sw].dMX1UPowerLost, 104, 100);
  3103. ptSet->tSwSet[sw].dMX2UPowerLost_fh = _Mul_Div_U(ptSet->tSwSet[sw].dMX2UPowerLost, 104, 100);
  3104. poc->dI = GetSetSQR(psetbuf[SET_GL1_I + sw * SW_SET_NUMBER].ff, fKI);
  3105. ptSet->tSwSet[sw].dwl = GetSetSQR(psetbuf[SET_BZT_WL + sw * SW_SET_NUMBER].ff, fKI);
  3106. ptSet->tSwSet[sw].dwl_fh = _Mul_Div_U(ptSet->tSwSet[sw].dwl, 96, 100);
  3107. #endif
  3108. }
  3109. ptSet->tSwSet[sw].bTT_PT1_ll_check = ((WORD)psetbuf[SET_PT1_LL_CHECK_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  3110. ptSet->tSwSet[sw].bTT_PT2_ll_check = ((WORD)psetbuf[SET_PT2_LL_CHECK_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false;
  3111. // 功能模块配置项目表
  3112. ptSet->tSwSet[sw].bTT_jl_dy = (ptSet->tSwSet[sw].bTT_jl_dy && ptSet->tSwSet[sw].btt_gnyb_zdjl);
  3113. ptSet->tSwSet[sw].bTT_jl_hz = (ptSet->tSwSet[sw].bTT_jl_hz && ptSet->tSwSet[sw].btt_gnyb_zdjl);
  3114. #ifdef FUN_JDXX
  3115. { // 接地选线定值
  3116. JDXX_SET *poc = &tJDXX_val[sw];
  3117. poc->bTT_jdxx_gj = (((WORD)psetbuf[SET_JDXXGJ_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 投退字
  3118. poc->bTT_jdxx_tz = (((WORD)psetbuf[SET_JDXXTZ_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 投退字
  3119. poc->bTT_jdxx = poc->bTT_jdxx_gj || poc->bTT_jdxx_tz;
  3120. poc->bTT_jdxx_cph = (((WORD)psetbuf[SET_JDXX_CPH_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 选相投退字
  3121. poc->bTT_jdxx = poc->bTT_jdxx_gj || poc->bTT_jdxx_tz;
  3122. poc->bTT_jdxx_p0dir = (((WORD)psetbuf[SET_JDXX_P0_TT + sw * SW_SET_NUMBER].ff == 1) ? true : false); // 零序功率方向投退字
  3123. #ifdef SW_AC_I0S_SAMPLE
  3124. if (g_ui[UI_SW_INDEX(sw, SW_AC_I0s)].chn_index != CFG_ADC_CHANNEL_ZERO)
  3125. {
  3126. poc->jd_zero = (short)(psetbuf[SET_JDXX_ZERO + sw * SW_SET_NUMBER].ff * g_ui[UI_SW_INDEX(sw, SW_AC_I0s)].m2_factor_k / 256.0 + 0.5); // 高精度零序零漂值 码值
  3127. poc->jd_qdval = (short)(psetbuf[SET_JDXX_QD + sw * SW_SET_NUMBER].ff * g_ui[UI_SW_INDEX(sw, SW_AC_I0s)].m2_factor_k / 256.0 + 0.5); // 高精度零序启动值,转为电流对应的码值
  3128. poc->jd_qdval2 = GetSetSQR(psetbuf[SET_JDXX_QD + sw * SW_SET_NUMBER].ff, g_ui[UI_SW_INDEX(sw, SW_AC_I0s)].m2_factor_k / 256.0);
  3129. poc->jd_ov_val = (short)(0.5 * g_ui[UI_SW_INDEX(sw, SW_AC_I0s)].m2_factor_k / 256.0 + 0.5); // 高精度零序 1.9A满偏,采用1.7A作为满偏定值
  3130. poc->jd_ov_val2 = GetSetSQR(0.3, g_ui[UI_SW_INDEX(sw, SW_AC_I0)].m2_factor_k / 256.0);
  3131. poc->i0_chan = UI_SW_INDEX(sw, SW_AC_I0s);
  3132. }
  3133. else
  3134. #endif
  3135. {
  3136. poc->jd_zero = (short)(psetbuf[SET_JDXX_ZERO + sw * SW_SET_NUMBER].ff * g_ui[UI_SW_INDEX(sw, SW_AC_I0)].m2_factor_k / 256.0 + 0.5); // 高精度零序零漂值 码值
  3137. poc->jd_qdval = (short)(psetbuf[SET_JDXX_QD + sw * SW_SET_NUMBER].ff * g_ui[UI_SW_INDEX(sw, SW_AC_I0)].m2_factor_k / 256.0 + 0.5); // 高精度零序启动值,转为电流对应的码值
  3138. poc->jd_qdval2 = GetSetSQR(psetbuf[SET_JDXX_QD + sw * SW_SET_NUMBER].ff, g_ui[UI_SW_INDEX(sw, SW_AC_I0)].m2_factor_k / 256.0);
  3139. poc->i0_chan = UI_SW_INDEX(sw, SW_AC_I0);
  3140. }
  3141. poc->jd_qdPoints = (WORD)psetbuf[SET_JDXX_QDPOINTS + sw * SW_SET_NUMBER].ff;
  3142. poc->jd_surePoints = (WORD)psetbuf[SET_JDXX_SUREPOINTS + sw * SW_SET_NUMBER].ff;
  3143. poc->jd_faultPoints = (WORD)psetbuf[SET_JDXX_FAULTPOINTS + sw * SW_SET_NUMBER].ff;
  3144. poc->jd_voltype = tSwSetTable[SET_JDXX_VOLTYPE].list[(WORD)psetbuf[SET_JDXX_VOLTYPE + sw * SW_SET_NUMBER].ff].dat;
  3145. poc->jd_volzero = (WORD)(psetbuf[SET_JDXX_VOLZERO + sw * SW_SET_NUMBER].ff * g_ui[poc->jd_voltype].m2_factor_k / 256.0 + 0.5);
  3146. poc->jd_U0gl = GetSetSQR(psetbuf[SET_JDXX_U0 + sw * SW_SET_NUMBER].ff, g_ui[poc->jd_voltype].m2_factor_k / 256.0);
  3147. poc->jd_U0gl_fh = _Mul_Div_U(poc->jd_U0gl, 96, 100);
  3148. poc->jd_trip_time = GetSetTIME(psetbuf[SET_JDXX_TRIP_TIME + sw * SW_SET_NUMBER].ff);
  3149. poc->jd_alarm_time = GetSetTIME(psetbuf[SET_JDXX_GJ_TIME + sw * SW_SET_NUMBER].ff);
  3150. }
  3151. #endif
  3152. #ifdef FUNC_DRIVE_JY
  3153. ptSet->tSwSet[sw].bTT_drive = ((WORD)psetbuf[SET_DRIVE + sw * SW_SET_NUMBER].ff == 1) ? true : false; // 不停电传动功能软压板
  3154. ptSet->tSwSet[sw].dU_drive_ua1 = (psetbuf[SET_UA1 + sw * SW_SET_NUMBER].ff);
  3155. ptSet->tSwSet[sw].dU_drive_ua2 = (psetbuf[SET_UA2 + sw * SW_SET_NUMBER].ff);
  3156. ptSet->tSwSet[sw].dU_drive_u0 = (psetbuf[SET_U0 + sw * SW_SET_NUMBER].ff);
  3157. ptSet->tSwSet[sw].dU_drive_i = (psetbuf[SET_I + sw * SW_SET_NUMBER].ff);
  3158. ptSet->tSwSet[sw].dU_drive_i0 = (psetbuf[SET_I0 + sw * SW_SET_NUMBER].ff);
  3159. ptSet->tSwSet[sw].dT_drive_ua1 = GetSetTIME(psetbuf[SET_DRIVE_UA1_T + sw * SW_SET_NUMBER].ff);
  3160. ptSet->tSwSet[sw].dT_drive_ua2 = GetSetTIME(psetbuf[SET_DRIVE_UA2_T + sw * SW_SET_NUMBER].ff);
  3161. ptSet->tSwSet[sw].dT_drive_u0 = GetSetTIME(psetbuf[SET_DRIVE_U0_T + sw * SW_SET_NUMBER].ff);
  3162. ptSet->tSwSet[sw].dT_drive_i = GetSetTIME(psetbuf[SET_DRIVE_I_T + sw * SW_SET_NUMBER].ff);
  3163. ptSet->tSwSet[sw].dT_drive_i0 = GetSetTIME(psetbuf[SET_DRIVE_I0_T + sw * SW_SET_NUMBER].ff);
  3164. ptSet->tSwSet[sw].dT_drive_again = GetSetTIME(psetbuf[SET_DRIVE_AGAIN_T + sw * SW_SET_NUMBER].ff);
  3165. #endif
  3166. }
  3167. // 无压定值为0.3倍的电压值
  3168. ptSet->dU02V_SQR = (DWORD)rt_round((0.8 * fKU[PUB_AC_U01]) * (0.8 * fKU[PUB_AC_U01])); // 16电压
  3169. #if 0
  3170. ptSet->dVOL10V_SQR =(DWORD)rt_round((10.0*fKU[PUB_AC_UAB1])*(16.0*fKU[PUB_AC_UAB1])); // 16电压
  3171. ptSet->dVOL16V_SQR =(DWORD)rt_round((16.0*fKU[PUB_AC_UAB1])*(16.0*fKU[PUB_AC_UAB1])); // 16电压
  3172. ptSet->dVOL50V_SQR =(DWORD)rt_round((50.0*fKU[PUB_AC_UAB1])*(50.0*fKU[PUB_AC_UAB1])); // 70电压
  3173. ptSet->dVOL90V_SQR =(DWORD)rt_round((90.0*fKU[PUB_AC_UAB1])*(90.0*fKU[PUB_AC_UAB1])); // 64电压
  3174. ptSet->dVOL70V_SQR =(DWORD)rt_round((70.0*fKU[PUB_AC_UAB1])*(70.0*fKU[PUB_AC_UAB1])); // 64电压
  3175. #else
  3176. ptSet->dVOL10V_SQR = (DWORD)rt_round((0.1 * fUn * fKU[PUB_AC_UAB1]) * (0.1 * fUn * fKU[PUB_AC_UAB1])); // 10电压
  3177. ptSet->dVOL16V_SQR = (DWORD)rt_round((0.16 * fUn * fKU[PUB_AC_UAB1]) * (0.16 * fUn * fKU[PUB_AC_UAB1])); // 16电压
  3178. ptSet->dVOL50V_SQR = (DWORD)rt_round((0.5 * fUn * fKU[PUB_AC_UAB1]) * (0.5 * fUn * fKU[PUB_AC_UAB1])); // 70电压
  3179. ptSet->dVOL90V_SQR = (DWORD)rt_round((0.9 * fUn * fKU[PUB_AC_UAB1]) * (0.9 * fUn * fKU[PUB_AC_UAB1])); // 64电压
  3180. ptSet->dVOL70V_SQR = (DWORD)rt_round((0.7 * fUn * fKU[PUB_AC_UAB1]) * (0.7 * fUn * fKU[PUB_AC_UAB1])); // 64电压
  3181. #endif
  3182. // 转换当前运行定值的镜象,做定值有效性检查时用
  3183. {
  3184. BYTE *pBak = (BYTE *)&tBakSet;
  3185. BYTE *pRun = (BYTE *)ptSet;
  3186. int i = sizeof(struct TSET);
  3187. for (; i > 0; i--)
  3188. {
  3189. *pBak++ = ~*pRun++;
  3190. }
  3191. }
  3192. pRunSet = ptSet; // 将运行定值切换
  3193. bRunSetModify = true;
  3194. if ((histrory_file_set && pRunSet->bTT_HistoryFile) || b_hisfile_format)
  3195. {
  3196. hf_init();
  3197. init_hs_file(b_hisfile_format && !bFirst);
  3198. }
  3199. else
  3200. {
  3201. for (i = 0; i < HS_FILE_NUM; i++)
  3202. {
  3203. p_his_file[i] = pRunSet->bTT_MsgFile ? (char *)history_file_name[i][0] : (char *)history_file_name[i][1];
  3204. }
  3205. }
  3206. m_runsection = pRunSet->section;
  3207. #if !defined CPU_FUXI
  3208. create_set_data_txt();
  3209. #endif
  3210. return bRet;
  3211. }
  3212. /******************************************************************************
  3213. 函数名称: print_EquipParaTable
  3214. 函数版本: 01.01
  3215. 创建作者:
  3216. 创建日期:
  3217. 函数说明: 打印装置参数.
  3218. 参数说明:
  3219. 返回值: 成功返回0,失败返回负数
  3220. 修改记录:
  3221. */
  3222. int print_EquipParaTable(void)
  3223. {
  3224. SET_VALUE *psetbuf = m_SetBuf;
  3225. TSETTABLE *pTable;
  3226. DWORD dat, dw;
  3227. int i;
  3228. if (!ReadPara((void *)psetbuf, EEP_EQUIP_PARA_ADDR, EQUIP_PARA_NUMBER, &tEquipParaTable[0]))
  3229. {
  3230. rt_printf("读取装置参数发生错误!\r\n");
  3231. return -1;
  3232. }
  3233. rt_printf("装置参数:\r\n");
  3234. rt_printf("序号\t名称\t\t\t\t当前值\r\n");
  3235. for (i = 0; i < PARA_NUM; i++)
  3236. {
  3237. pTable = (TSETTABLE *)&tEquipParaTable[i];
  3238. dat = (DWORD)psetbuf[i].ff;
  3239. rt_printf("%d\t%-20s\t\t", i + 1, pTable->szName);
  3240. switch (pTable->wType)
  3241. {
  3242. case SETTYPE_F:
  3243. rt_printf("%f", psetbuf[i].ff);
  3244. break;
  3245. case SETTYPE_UINT: // 16进制显示 控制字
  3246. rt_printf("%d", dat);
  3247. break;
  3248. case SETTYPE_4INT: // 10进制显示 4位
  3249. rt_printf("%d", dat);
  3250. break;
  3251. case SETTYPE_5INT: // 10进制显示 5位
  3252. rt_printf("%d", dat);
  3253. break;
  3254. case SETTYPE_LINT: // 16进制显示 控制字
  3255. rt_printf("%d", dat);
  3256. break;
  3257. case SETTYPE_LIST: // 列表选择
  3258. {
  3259. dw = (WORD)(psetbuf[i].ff); // 通信规约
  3260. rt_printf("%s", tEquipParaTable[i].list[dw].str);
  3261. }
  3262. break;
  3263. case SETTYPE_IP:
  3264. {
  3265. dat = (DWORD)psetbuf[i].tt;
  3266. rt_printf("%d.%d.%d.%d", (dat >> 24) & 0xFF, (dat >> 16) & 0xFF, (dat >> 8) & 0xFF, (dat >> 0) & 0xFF);
  3267. }
  3268. break;
  3269. case SETTYPE_YMD:
  3270. {
  3271. struct timespec ts;
  3272. struct rtc_time_t tTime;
  3273. memset(&ts, 0, sizeof(ts));
  3274. memset(&tTime, 0, sizeof(tTime));
  3275. // 年月日
  3276. ts.tv_sec = (long)psetbuf[i].tt;
  3277. timespec_to_rtc(ts, &tTime, 1);
  3278. rt_printf("%04d-%02d-%02d", 2000 + tTime.year, tTime.month, tTime.day);
  3279. }
  3280. break;
  3281. case SETTYPE_HMS:
  3282. {
  3283. struct timespec ts;
  3284. struct rtc_time_t tTime;
  3285. extern int timespec_to_rtchms(struct timespec ts, struct rtc_time_t * p_rtc, int is_round);
  3286. memset(&ts, 0, sizeof(ts));
  3287. memset(&tTime, 0, sizeof(tTime));
  3288. // 年月日
  3289. ts.tv_sec = (long)psetbuf[i].tt;
  3290. timespec_to_rtchms(ts, &tTime, 1);
  3291. rt_printf("%02d:%02d:%02d", tTime.hour, tTime.min, tTime.ms % 1000);
  3292. }
  3293. break;
  3294. }
  3295. rt_printf("\r\n");
  3296. }
  3297. return 0;
  3298. }
  3299. /******************下面是关于装置参数读取及校验的操作********************************/
  3300. /******************************************************************************
  3301. 函数名称: string_to_ip
  3302. 函数版本: 01.01
  3303. 创建作者: xxxxxx
  3304. 创建日期: 2015-01-07
  3305. 函数说明: 字符串IP转整形IP.
  3306. 参数说明:
  3307. s:字符串IP
  3308. 返回值: 整形IP。
  3309. 修改记录:
  3310. */
  3311. static uint32_t string_to_ip(char *s)
  3312. {
  3313. uint32_t addr;
  3314. char *e;
  3315. int i;
  3316. if (s == NULL)
  3317. return (0);
  3318. for (addr = 0, i = 0; i < 4; ++i)
  3319. {
  3320. uint32_t val = s ? simple_strtoul(s, &e, 10) : 0;
  3321. addr <<= 8;
  3322. addr |= (val & 0xFF);
  3323. if (s)
  3324. {
  3325. s = (*e) ? e + 1 : e;
  3326. }
  3327. }
  3328. return (htonl(addr));
  3329. }
  3330. /******************************************************************************
  3331. 函数名称: notify_sock_close
  3332. 函数版本: 01.01
  3333. 创建作者: xxxxxx
  3334. 创建日期: 2015-02-28
  3335. 函数说明: 通知相关socket要关闭.
  3336. 参数说明:
  3337. bFirstInit:是否第一次初始化.true表示是第一次.false表示不是第一次.
  3338. 返回值: 无。
  3339. 修改记录:
  3340. */
  3341. static void notify_sock_close(bool bFirstInit)
  3342. {
  3343. int i = 0;
  3344. RUN_PARA *pRunPara = &tRunPara;
  3345. // for(i=0;i<g_net_num;i++)
  3346. for (i = 0; i < CFG_ETH_MAX_LOGIC; i++)
  3347. {
  3348. // 已经修改网络参数
  3349. if (pRunPara->tNetPara[i].bInit)
  3350. {
  3351. // 非第一次
  3352. if (!bFirstInit)
  3353. {
  3354. net_maintain_set_sock_closing(i);
  3355. net_debug_set_sock_closing(i);
  3356. net_104_set_sock_closing(i);
  3357. }
  3358. }
  3359. else
  3360. {
  3361. if (pRunPara->sock_104_flag && (!bFirstInit))
  3362. {
  3363. net_104_set_sock_closing(i);
  3364. }
  3365. }
  3366. }
  3367. }
  3368. /******************************************************************************
  3369. 函数名称: get_ethcnt
  3370. 函数版本: 01.01
  3371. 创建作者: xxxxxx
  3372. 创建日期: 2016-03-29
  3373. 函数说明: 获取在序号no之前有多少个eth_id
  3374. 参数说明:
  3375. no:tRunPara.tNetPara数组下标
  3376. eth_id: 以太网卡序号(从0开始)
  3377. 返回值: 无。
  3378. 修改记录:
  3379. */
  3380. int get_ethcnt(int no, int eth_id)
  3381. {
  3382. int ret = 0;
  3383. int i;
  3384. for (i = 0; i < no; i++)
  3385. {
  3386. if ((int)tRunPara.tNetPara[i].ethid == eth_id)
  3387. {
  3388. ret++;
  3389. }
  3390. }
  3391. return ret;
  3392. }
  3393. int get_rmtparatype(u8 sw, u8 index)
  3394. {
  3395. u8 unit;
  3396. index -= 1;
  3397. if (sw == 0)
  3398. {
  3399. unit = g_pub_ac_desc[index].unit;
  3400. }
  3401. else
  3402. {
  3403. unit = g_sw_ac_desc[index].unit;
  3404. }
  3405. if (unit == UNIT_V100 || unit == UNIT_V220 || unit == UNIT_V001)
  3406. return RMT_DEAD_U;
  3407. else if (unit == UNIT_A5 || unit == UNIT_A1 || unit == UNIT_BIA || unit == UNIT_I0A)
  3408. return RMT_DEAD_I;
  3409. else if (unit == UNIT_W || unit == UNIT_Var || unit == UNIT_kW || unit == UNIT_kVar)
  3410. return RMT_DEAD_PQ;
  3411. else if (unit == UNIT_Hz)
  3412. return RMT_DEAD_F;
  3413. else if (unit == UNIT_COS)
  3414. return RMT_DEAD_COS;
  3415. else if (unit == UNIT_V050)
  3416. return RMT_DEAD_ZL;
  3417. return -1;
  3418. }
  3419. void GetDefDebugNetPara(void)
  3420. {
  3421. SET_VALUE *psetbuf = m_SetBuf;
  3422. if (g_debugnet_ip > 0)
  3423. {
  3424. psetbuf[PARA_IP_NET1 + (CFG_ETH_MAX_LOGIC - 1) * 6].tt = g_debugnet_ip;
  3425. }
  3426. if (g_debugnet_mask > 0)
  3427. {
  3428. psetbuf[PARA_MA_NET1 + (CFG_ETH_MAX_LOGIC - 1) * 6].tt = g_debugnet_mask;
  3429. }
  3430. if (g_debugnet_gate > 0)
  3431. {
  3432. psetbuf[PARA_GATE_NET].tt = g_debugnet_gate;
  3433. }
  3434. }
  3435. #if (0)
  3436. void eth0_debug_ip_setup(void) // 设置网口1虚拟网络IP地址
  3437. {
  3438. char *argv[] = {"/sbin/ifconfig", "eth0:3", "192.168.64.240", NULL};
  3439. char *envp[] = {NULL};
  3440. call_usermodehelper(argv[0], argv, envp, UMH_WAIT_PROC);
  3441. }
  3442. #endif
  3443. void MakeRunPara(bool bFirstInit, bool bUboot)
  3444. {
  3445. int i;
  3446. SET_VALUE *psetbuf = m_SetBuf;
  3447. RUN_PARA *pRunPara = &tRunPara;
  3448. DWORD dat, dw;
  3449. u8 hmi_protocol = 0;
  3450. u8 fault_protocol = 0;
  3451. u8 protocol[CFG_UART_NUM_MAX] = {0};
  3452. int debug_port = 0;
  3453. char *acteth;
  3454. uint32_t ip, mask, gate;
  3455. unsigned int serverip = 0;
  3456. int tm = 0;
  3457. #ifdef SNTP_FUNC
  3458. extern int sntp_setpara(unsigned int serverip, int tm);
  3459. #endif
  3460. #ifdef METERING_ENERGY
  3461. bool b_ll_file;
  3462. #endif
  3463. if (!ReadPara((void *)psetbuf, EEP_EQUIP_PARA_ADDR, EQUIP_PARA_NUMBER, &tEquipParaTable[0]))
  3464. {
  3465. rt_err_set(ERR_CODE_EQU_PARA, 0);
  3466. GetDefPara((void *)psetbuf, EQUIP_PARA_NUMBER, &tEquipParaTable[0]);
  3467. }
  3468. else
  3469. {
  3470. rt_err_clr(ERR_CODE_EQU_PARA, 0);
  3471. }
  3472. for (i = 0; i < CFG_UART_NUM_MAX; i++)
  3473. {
  3474. dw = (WORD)(psetbuf[PARA_PROTOCOL_S1 + i * 3].ff); // 通信规约
  3475. dat = (WORD)tEquipParaTable[PARA_PROTOCOL_S1 + i * 3].list[dw].dat;
  3476. if (pRunPara->tUartPara[i].wProtocol != dat)
  3477. {
  3478. pRunPara->tUartPara[i].wProtocol = dat;
  3479. pRunPara->tUartPara[i].bInit = true;
  3480. }
  3481. dw = (WORD)(psetbuf[PARA_BAUD_S1 + i * 3].ff); // 波特率
  3482. dat = (DWORD)tEquipParaTable[PARA_BAUD_S1 + i * 3].list[dw].dat;
  3483. if (pRunPara->tUartPara[i].dBaud != dat)
  3484. {
  3485. pRunPara->tUartPara[i].dBaud = dat;
  3486. pRunPara->tUartPara[i].bInit = true;
  3487. }
  3488. dw = (WORD)(psetbuf[PARA_PARITY_S1 + i * 3].ff); // 校验位
  3489. dat = (WORD)tEquipParaTable[PARA_PARITY_S1 + i * 3].list[dw].dat;
  3490. if (pRunPara->tUartPara[i].wParity != dat)
  3491. {
  3492. pRunPara->tUartPara[i].wParity = dat;
  3493. pRunPara->tUartPara[i].bInit = true;
  3494. }
  3495. pRunPara->tUartPara[i].b101PH = ((((WORD)(psetbuf[PARA_PROTOCOL_S1 + i * 3].ff)) == PROTOCOL_101_PH) || (((WORD)(psetbuf[PARA_PROTOCOL_S1 + i * 3].ff)) == PROTOCOL_MAINTAIN)) ? true : false; // 101为平衡式
  3496. if (bFirstInit)
  3497. pRunPara->tUartPara[i].bInit = true; // 第一次初始化,置通道初始化标志
  3498. #if !defined CPU_FUXI
  3499. if (pRunPara->tUartPara[i].wProtocol == PROTOCOL_HMI)
  3500. {
  3501. protocol[hmi_protocol] = i;
  3502. hmi_protocol++;
  3503. }
  3504. if (pRunPara->tUartPara[i].wProtocol == PROTOCOL_FAULT)
  3505. {
  3506. fault_protocol++;
  3507. }
  3508. #endif
  3509. }
  3510. #if !defined CPU_FUXI
  3511. // 判断是否有多个串口配置为面板或状态板
  3512. if (hmi_protocol > 1)
  3513. {
  3514. for (i = 0; i < hmi_protocol; i++)
  3515. {
  3516. if (UART_CHANNEL[protocol[hmi_protocol]] != CFG_UART_HMI)
  3517. {
  3518. // 有多个时,除RS232_3外,都配置为平衡101
  3519. pRunPara->tUartPara[protocol[hmi_protocol]].wProtocol = 1;
  3520. }
  3521. }
  3522. rt_printf("面板配置超限制 \n");
  3523. }
  3524. if (fault_protocol > 1)
  3525. {
  3526. rt_err_set(ERR_CODE_FAULT_BOARD, 0);
  3527. }
  3528. else
  3529. {
  3530. rt_err_clr(ERR_CODE_FAULT_BOARD, 0);
  3531. }
  3532. #endif
  3533. // 从环境变量得到调试网口
  3534. acteth = env_get_info(ENV_ETHACT);
  3535. if (acteth != NULL)
  3536. {
  3537. if (strcmp(acteth, "FEC0") == 0)
  3538. {
  3539. debug_port = 0;
  3540. }
  3541. else if (strcmp(acteth, "FEC1") == 0)
  3542. {
  3543. debug_port = 1;
  3544. }
  3545. else if (strcmp(acteth, "DM9000") == 0)
  3546. {
  3547. debug_port = 2;
  3548. }
  3549. else
  3550. {
  3551. debug_port = 2;
  3552. }
  3553. }
  3554. else
  3555. {
  3556. debug_port = 2;
  3557. }
  3558. // 从环境变量得到IP地址
  3559. ip = string_to_ip(env_get_info(ENV_IPADDR));
  3560. Swap_32(&ip);
  3561. // 从环境变量得到MASK
  3562. mask = string_to_ip(env_get_info(ENV_NETMASK));
  3563. Swap_32(&mask);
  3564. // 从环境变量得到默认网关
  3565. gate = string_to_ip(env_get_info(ENV_GATEWAYIP));
  3566. Swap_32(&gate);
  3567. for (i = 0; i < CFG_ETH_MAX_LOGIC; i++)
  3568. {
  3569. pRunPara->tNetPara[i].changed = 0; // 清零
  3570. dat = (DWORD)(psetbuf[PARA_NET1 + i * 6].ff); // 物理网卡序号
  3571. if (pRunPara->tNetPara[i].ethid != dat)
  3572. {
  3573. pRunPara->tNetPara[i].ethid = dat;
  3574. pRunPara->tNetPara[i].bInit = true;
  3575. if (!bUboot)
  3576. {
  3577. // 网口已经改变,标志需要将网口写到UBOOT中
  3578. pRunPara->tNetPara[i].changed |= 1 << 6;
  3579. }
  3580. }
  3581. dat = (DWORD)(psetbuf[PARA_IP_NET1 + i * 6].tt);
  3582. if (pRunPara->tNetPara[i].wIp != dat)
  3583. {
  3584. pRunPara->tNetPara[i].wIp = dat;
  3585. pRunPara->tNetPara[i].bInit = true;
  3586. if (!bUboot)
  3587. {
  3588. // IP已经改变,标志需要将IP写到UBOOT中
  3589. pRunPara->tNetPara[i].changed |= 1 << 0;
  3590. }
  3591. }
  3592. dat = (DWORD)(psetbuf[PARA_GATE_NET].tt);
  3593. if (pRunPara->tNetPara[i].wGate != dat)
  3594. {
  3595. pRunPara->tNetPara[i].wGate = dat;
  3596. pRunPara->tNetPara[i].bInit = true;
  3597. if (!bUboot)
  3598. {
  3599. // 网关已经改变,标志需要将网关写到UBOOT中
  3600. pRunPara->tNetPara[i].changed |= 1 << 1;
  3601. }
  3602. }
  3603. dat = (DWORD)(psetbuf[PARA_MA_NET1 + i * 6].tt);
  3604. if (pRunPara->tNetPara[i].wMask != dat)
  3605. {
  3606. pRunPara->tNetPara[i].wMask = dat;
  3607. pRunPara->tNetPara[i].bInit = true;
  3608. if (!bUboot)
  3609. {
  3610. // MASK已经改变,标志需要将MASK写到UBOOT中
  3611. pRunPara->tNetPara[i].changed |= 1 << 2;
  3612. }
  3613. }
  3614. // 网段
  3615. dat = (DWORD)(psetbuf[PARA_ROUTE_NET1 + i * 6].tt);
  3616. if (pRunPara->tNetPara[i].wRouteNet != dat)
  3617. {
  3618. pRunPara->tNetPara[i].wRouteNet = dat;
  3619. pRunPara->tNetPara[i].bInit = true;
  3620. if (!bUboot)
  3621. {
  3622. // MASK已经改变,标志需要将MASK写到UBOOT中
  3623. pRunPara->tNetPara[i].changed |= 1 << 3;
  3624. }
  3625. }
  3626. // 网段掩码
  3627. dat = (DWORD)(psetbuf[PARA_ROUTE_NETMASK1 + i * 6].tt);
  3628. if (pRunPara->tNetPara[i].wRouteNetMask != dat)
  3629. {
  3630. pRunPara->tNetPara[i].wRouteNetMask = dat;
  3631. pRunPara->tNetPara[i].bInit = true;
  3632. if (!bUboot)
  3633. {
  3634. // MASK已经改变,标志需要将MASK写到UBOOT中
  3635. pRunPara->tNetPara[i].changed |= 1 << 4;
  3636. }
  3637. }
  3638. // 网关
  3639. dat = (DWORD)(psetbuf[PARA_ROUTE_GATE1 + i * 6].tt);
  3640. if (pRunPara->tNetPara[i].wRouteGate != dat)
  3641. {
  3642. pRunPara->tNetPara[i].wRouteGate = dat;
  3643. pRunPara->tNetPara[i].bInit = true;
  3644. if (!bUboot)
  3645. {
  3646. // MASK已经改变,标志需要将MASK写到UBOOT中
  3647. pRunPara->tNetPara[i].changed |= 1 << 5;
  3648. }
  3649. }
  3650. if (bFirstInit)
  3651. {
  3652. pRunPara->tNetPara[i].bInit = true; // 第一次初始化,置通道初始化标志
  3653. // 第一次初始化网络号和索引号默认同步
  3654. pRunPara->tNetPara[i].old_ethid = pRunPara->tNetPara[i].ethid;
  3655. pRunPara->tNetPara[i].old_index = pRunPara->tNetPara[i].index;
  3656. }
  3657. }
  3658. #if (0)
  3659. eth0_debug_ip_setup();
  3660. #endif
  3661. // 保存调试网口的IP,子网掩码
  3662. g_debugnet_ip = psetbuf[PARA_IP_NET1 + (CFG_ETH_MAX_LOGIC - 1) * 6].tt;
  3663. g_debugnet_mask = psetbuf[PARA_MA_NET1 + (CFG_ETH_MAX_LOGIC - 1) * 6].tt;
  3664. g_debugnet_gate = psetbuf[PARA_GATE_NET].tt;
  3665. // 如果端口和主站IP有修改,需重新初始化104连接。
  3666. pRunPara->sock_104_flag = false;
  3667. // 104端口判断
  3668. dat = (WORD)psetbuf[PARA_104_PORT].ff; // 104协议端口号
  3669. if (pRunPara->w104Port != dat)
  3670. {
  3671. pRunPara->sock_104_flag = true;
  3672. }
  3673. // 104主站IP1地址改变
  3674. dat = (DWORD)(psetbuf[PARA_IP_104MASTER1].tt);
  3675. if (pRunPara->ip104Master1 != dat)
  3676. {
  3677. // 104 socket需重新初始化
  3678. pRunPara->sock_104_flag = true;
  3679. }
  3680. // 104主站IP2地址改变
  3681. dat = (DWORD)(psetbuf[PARA_IP_104MASTER2].tt);
  3682. if (pRunPara->ip104Master2 != dat)
  3683. {
  3684. // 104 socket需重新初始化
  3685. pRunPara->sock_104_flag = true;
  3686. }
  3687. // 104主站IP3地址改变
  3688. dat = (DWORD)(psetbuf[PARA_IP_104MASTER3].tt);
  3689. if (pRunPara->ip104Master3 != dat)
  3690. {
  3691. // 104 socket需重新初始化
  3692. pRunPara->sock_104_flag = true;
  3693. }
  3694. // 104主站IP4地址改变
  3695. dat = (DWORD)(psetbuf[PARA_IP_104MASTER4].tt);
  3696. if (pRunPara->ip104Master4 != dat)
  3697. {
  3698. // 104 socket需重新初始化
  3699. pRunPara->sock_104_flag = true;
  3700. }
  3701. pRunPara->byAddr = (WORD)psetbuf[PARA_ADDR].ff; // 装置地址
  3702. pRunPara->fYcTime = psetbuf[PARA_YCTIME].ff; // 遥测主动发送间隔
  3703. pRunPara->dYKTime = GetSetTIME(psetbuf[PARA_YK_TIME].ff); // 遥控超时
  3704. pRunPara->dSM2Time = (DWORD)rt_round(psetbuf[PARA_YK_TIME].ff); // 加密遥控超时
  3705. dido_qd_set_keeptime(pRunPara->dSM2Time * USTIMER_SEC); // 以遥控超时作为启动继电器超时
  3706. if (sizeof(SYSTEM_DATA) == EEP_SYSTEM_DATA_SIZE)
  3707. ReadSysData(&pRunPara->sysData);
  3708. else
  3709. rt_printf("SYSTEM_DATA define error!\r\n ");
  3710. pRunPara->wPassword = ReadPassword(); // 装置密码
  3711. pRunPara->bGPS = (((WORD)(psetbuf[PARA_TIMETYPE].ff)) == 1) ? true : false; // 对时方式,默认是网络对时
  3712. pRunPara->set_time_mode = (WORD)(psetbuf[PARA_TIMETYPE_STANDER].ff); // 标准化对时方式选择
  3713. // 全方式对时或者仅卫星对时都使能卫星同步
  3714. pRunPara->bGPS_sync_enable = (pRunPara->set_time_mode == 0 || pRunPara->set_time_mode == 1) ? true : false;
  3715. pRunPara->GPS_sync_time = (WORD)(psetbuf[PARA_GPS_INTERVAL].ff); // 卫星对时时间隔
  3716. pRunPara->GPS_switch_delay = (WORD)(psetbuf[PARA_CHANGETIME].ff); // 无卫星信号对时切换延时
  3717. pRunPara->bDPI = (((WORD)(psetbuf[PARA_YXTYPE].ff)) == 1) ? true : false; // 遥信双点上送
  3718. pRunPara->bSDPI = (((WORD)(psetbuf[PARA_YXTYPE].ff)) == 2) ? true : false; // 遥信单双点上送
  3719. pRunPara->YKtype = rt_round(psetbuf[PARA_YKTYPE].ff); // 遥控类型
  3720. pRunPara->bYcBDH = (((WORD)(psetbuf[PARA_YCTYPE].ff)) == 1) ? true : false; // 遥测标度化值上送
  3721. pRunPara->bYcFloat = (((WORD)(psetbuf[PARA_YCTYPE].ff)) == 2) ? true : false; // 遥测浮点数上送
  3722. pRunPara->b101Addr2Byte = (((WORD)(psetbuf[PARA_101LINKADDR].ff)) == 1) ? true : false; // 101为双字节地址
  3723. pRunPara->b101App2Byte = (((WORD)(psetbuf[PARA_101APPADDR].ff)) == 1) ? true : false; // 101应用单元
  3724. pRunPara->b101Cot2Byte = (((WORD)(psetbuf[PARA_101COT].ff)) == 1) ? true : false; // 101为双字节地址
  3725. pRunPara->bAutoSendYc = (((WORD)(psetbuf[PARA_YCAUTO].ff)) == 1) ? true : false; // 遥测自动上送
  3726. pRunPara->bDeadType = (((WORD)(psetbuf[PARA_YC_DEAD_TYPE].ff)) == 0) ? true : false; // 规约死区上传类型
  3727. pRunPara->bAutoCos = (((WORD)(psetbuf[PARA_COSAUTO].ff)) == 1) ? true : false; // COS自动上送
  3728. pRunPara->bEvPara = (((WORD)(psetbuf[PARA_EVPARA].ff)) == 1) ? true : false; // 事件参数上送
  3729. pRunPara->bAutoRst = (((WORD)(psetbuf[PARA_RST_TT].ff)) == 1) ? true : false; // 自动复归投退
  3730. pRunPara->dTRstT = GetSetTIME(psetbuf[PARA_RSTTIME].ff * 60);
  3731. #ifdef RCD_STRAN_M_EN
  3732. pRunPara->b_lb_master = (((WORD)(psetbuf[PARA_LB_MASTER_TT].ff)) == 1) ? true : false; // 级联录波主站使能投退
  3733. #endif
  3734. #ifdef YPARA_LINK_S_EN
  3735. pRunPara->b_ypar_slave = (((WORD)(psetbuf[PARA_YPAR_CHG_TT].ff)) == 1) ? true : false; // 参数变化通知使能
  3736. #endif
  3737. dat = (DWORD)rt_round(psetbuf[PARA_BATBEGIN_YMD].tt) + (DWORD)rt_round(psetbuf[PARA_BATBEGIN_HMS].ff * 3600);
  3738. #ifdef YX_RESET_TIME
  3739. pRunPara->dTEventRst = GetSetTIME(psetbuf[PARA_EVTRSTTIME].ff);
  3740. pRunPara->fT_LBXH_RST = psetbuf[PARA_EVTRSTTIME].ff;
  3741. #endif
  3742. if (pRunPara->dTBatBegin != dat)
  3743. {
  3744. pRunPara->dTBatBegin = dat;
  3745. bat_begin_time(); // 修改电池活化启动时间
  3746. }
  3747. pRunPara->dTBatInterval = (DWORD)rt_round(psetbuf[PARA_BAT_INTERVAL].ff * 24 * 3600); // 电池活化间隔 小时数
  3748. pRunPara->bat_alarm = psetbuf[PARA_BAT_ALARM].ff; // 电池告警阀值
  3749. fresh_set_soe(EV_TT_BAT, (pRunPara->dTBatInterval > 0 ? true : false), bFirstInit, 0);
  3750. pRunPara->dLightTime = GetSetTIME(psetbuf[PARA_LHTTIME].ff); // 背光时间默认1分钟
  3751. pRunPara->dMainTime = GetSetTIME(psetbuf[PARA_LHTTIME].ff); // 返回时间默认3分钟
  3752. pRunPara->dLinkStateCh = (WORD)(psetbuf[PARA_LINK_STATE].ff); // 级联状态通道
  3753. pRunPara->w104Port = (WORD)psetbuf[PARA_104_PORT].ff; // 104协议端口号
  3754. pRunPara->w104AckTime = (WORD)psetbuf[PARA_104_ACK_TIME].ff; // 104确认超时
  3755. pRunPara->w104TestTime = (WORD)psetbuf[PARA_104_TEST_TIME].ff; // 104测试超时
  3756. pRunPara->w104K = (WORD)psetbuf[PARA_104_K].ff * 2; // 104 K值
  3757. pRunPara->w104W = (WORD)psetbuf[PARA_104_W].ff * 2; // 104 W值
  3758. pRunPara->ip104Master1 = (DWORD)(psetbuf[PARA_IP_104MASTER1].tt); // 104主站IP1
  3759. pRunPara->ip104Master2 = (DWORD)(psetbuf[PARA_IP_104MASTER2].tt); // 104主站IP2
  3760. pRunPara->ip104Master3 = (DWORD)(psetbuf[PARA_IP_104MASTER3].tt); // 104主站IP3
  3761. pRunPara->ip104Master4 = (DWORD)(psetbuf[PARA_IP_104MASTER4].tt); // 104主站IP4
  3762. pRunPara->b104Client = (((WORD)(psetbuf[PARA_104_Client].ff)) == 1) ? true : false; // 104是客户端还是服务器端
  3763. pRunPara->ip104Master[0] = pRunPara->ip104Master1;
  3764. pRunPara->ip104Master[1] = pRunPara->ip104Master2;
  3765. pRunPara->ip104Master[2] = pRunPara->ip104Master3;
  3766. pRunPara->ip104Master[3] = pRunPara->ip104Master4;
  3767. for (i = 0; i < CFG_LINK_104_NUM; i++)
  3768. {
  3769. pRunPara->ip104Link[i] = (DWORD)(psetbuf[PARA_IP_104LINK1 + i].tt); // 104级联IP
  3770. }
  3771. #ifdef METERING_ENERGY
  3772. b_ll_file = (((WORD)psetbuf[PARA_LL_FILE_TT].ff == 1) ? true : false);
  3773. if (b_ll_file != pRunPara->bTT_LLFile)
  3774. {
  3775. ll_file_set = true;
  3776. pRunPara->bTT_LLFile = b_ll_file;
  3777. }
  3778. pRunPara->wZDJG = (WORD)psetbuf[PARA_YC_JG_T].ff; // 定点保存数据间隔,默认15秒
  3779. pRunPara->wSWID = (WORD)psetbuf[PARA_LL_SW_ID].ff;
  3780. pRunPara->wDDJG = (WORD)psetbuf[PARA_LL_JG_T].ff;
  3781. pRunPara->wMonday = (WORD)psetbuf[PARA_LL_MONTHD_DAY].ff;
  3782. pRunPara->wMonhour = (WORD)psetbuf[PARA_LL_MONTHD_HOUR].ff;
  3783. /*if(histrory_file_set&&pRunPara->bTT_HistoryFile)
  3784. {
  3785. hf_init();
  3786. init_hs_file();
  3787. }*/
  3788. if (ll_file_set && pRunPara->bTT_LLFile)
  3789. {
  3790. ll_init();
  3791. init_ll_file();
  3792. }
  3793. #endif
  3794. /************零漂处理*******************/
  3795. {
  3796. s32 uzero;
  3797. s32 phase_i_zero, zero_i_zero;
  3798. uzero = (s32)(psetbuf[PARA_U_ZERO].ff * 65536); // 电压零漂
  3799. phase_i_zero = (s32)(psetbuf[PARA_PHASE_I_ZERO].ff * 65536); // 相电流零漂
  3800. zero_i_zero = (s32)(psetbuf[PARA_ZERO_I_ZERO].ff * 65536); // 零序电流零漂
  3801. for (i = 0; i < UNIT_NUM; i++)
  3802. {
  3803. if (i == UNIT_V100 || i == UNIT_V220)
  3804. {
  3805. g_unit[i].zero = uzero;
  3806. }
  3807. if (i == UNIT_A1 || i == UNIT_A5 || i == UNIT_BIA)
  3808. {
  3809. g_unit[i].zero = phase_i_zero;
  3810. }
  3811. else if (i == UNIT_I0A)
  3812. {
  3813. g_unit[i].zero = zero_i_zero;
  3814. }
  3815. }
  3816. }
  3817. #ifdef CPU_FUXI
  3818. pRunPara->wDC_ZERO = psetbuf[PARA_DC_ZERO].ff;
  3819. #endif
  3820. pRunPara->wFAFZT = (DWORD)rt_round(psetbuf[PARA_FZPULSE].ff); // 分闸脉冲
  3821. pRunPara->wFAHZT = (DWORD)rt_round(psetbuf[PARA_HZPULSE].ff); // 合闸脉冲
  3822. #if (defined GD_AREA_ZHONGSHAN || defined GD_AREA_ZHONGSHAN_2020)
  3823. pRunPara->gse_id = (WORD)rt_round(psetbuf[PARA_GOOSE_ID].ff) - 1;
  3824. pRunPara->gse_T1 = GetSetTIME(psetbuf[PARA_GOOSE_T1].ff);
  3825. pRunPara->gse_T2 = GetSetTIME(psetbuf[PARA_GOOSE_T2].ff);
  3826. #endif
  3827. #ifdef FUN_FUXI_ESAM /* 加密芯片 */
  3828. pRunPara->s1_mode = (((WORD)(psetbuf[PARA_S1_MODE].ff)) == 1) ? true : false; //
  3829. pRunPara->s1_port = (WORD)(psetbuf[PARA_S1_PORT].ff); // 104协议端口号
  3830. pRunPara->s1_nat = (DWORD)(psetbuf[PARA_S1_NAT].tt); // 加密芯片IP
  3831. pRunPara->s1_ip = (DWORD)(psetbuf[PARA_S1_IP].tt); // 加密芯片IP
  3832. pRunPara->s1_mask = (DWORD)(psetbuf[PARA_S1_MASK].tt); // 掩码
  3833. pRunPara->s1_gate = (DWORD)(psetbuf[PARA_S1_GATE].tt); // 网关
  3834. pRunPara->s1_far_ip = (DWORD)(psetbuf[PARA_S1_FAR_IP].tt); // 远端IP
  3835. pRunPara->s1_far_mask = (DWORD)(psetbuf[PARA_S1_FAR_MASK].tt); // 掩码
  3836. pRunPara->s1_far_gate = (DWORD)(psetbuf[PARA_S1_FAR_GATE].tt); // 网关
  3837. #endif
  3838. /**远动参数处理,死区及跳合闸脉宽,需更新到配置文件中************************/
  3839. if (pRunSet->bTT_RmtPara)
  3840. {
  3841. int i;
  3842. qs16 deadval[RMT_DEAD_NUM];
  3843. if (pRunSet->bTT_YC_DeadZone_All)
  3844. {
  3845. deadval[RMT_DEAD_I] = deadval[RMT_DEAD_U] = deadval[RMT_DEAD_ZL] =
  3846. deadval[RMT_DEAD_PQ] = deadval[RMT_DEAD_F] = deadval[RMT_DEAD_COS] =
  3847. (qs16)(psetbuf[PARA_DEAD_ZONE_ALL].ff * 65536); // 遥测死区
  3848. }
  3849. else
  3850. {
  3851. deadval[RMT_DEAD_I] = (qs16)(psetbuf[PARA_DEAD_I].ff * 65536); // 电流死区
  3852. deadval[RMT_DEAD_U] = (qs16)(psetbuf[PARA_DEAD_U].ff * 65536); // 电压死区
  3853. deadval[RMT_DEAD_ZL] = (qs16)(psetbuf[PARA_DEAD_ZL].ff * 65536); // 直流死区
  3854. deadval[RMT_DEAD_PQ] = (qs16)(psetbuf[PARA_DEAD_P].ff * 65536); // 功率死区
  3855. deadval[RMT_DEAD_F] = (qs16)(psetbuf[PARA_DEAD_F].ff * 65536); // 频率死区
  3856. deadval[RMT_DEAD_COS] = (qs16)(psetbuf[PARA_DEAD_COS].ff * 65536); // 功率因数死区
  3857. }
  3858. for (i = 0; i < g_table_head->ac_num; i++) // 将定值死区更新到点表数据中
  3859. {
  3860. int type;
  3861. type = get_rmtparatype(g_ac_table[i].owner, g_ac_table[i].indexno);
  3862. if (type >= 0 && type < RMT_DEAD_NUM)
  3863. {
  3864. #ifndef PARAM_DEAD_PER
  3865. g_ac_table[i].dead_value = deadval[type] * 100;
  3866. #else
  3867. g_ac_table[i].dead_value = deadval[type];
  3868. #endif
  3869. }
  3870. }
  3871. {
  3872. int bChanged = 0;
  3873. dw = (DWORD)rt_round(psetbuf[PARA_YXFD].ff); // 遥信防抖时间
  3874. if (dw != pRunPara->wYXFD)
  3875. {
  3876. pRunPara->wYXFD = dw;
  3877. bChanged = 1;
  3878. }
  3879. dw = (DWORD)rt_round(psetbuf[PARA_FZPULSE].ff); // 分闸脉冲
  3880. if (dw != pRunPara->wFZMC)
  3881. {
  3882. pRunPara->wFZMC = dw;
  3883. bChanged = 1;
  3884. }
  3885. dw = (DWORD)rt_round(psetbuf[PARA_HZPULSE].ff); // 合闸脉冲
  3886. if (dw != pRunPara->wHZMC)
  3887. {
  3888. pRunPara->wHZMC = dw;
  3889. bChanged = 1;
  3890. }
  3891. // 如果不是第一次初始化,且子板参数有变化,复位子板
  3892. if (bFirstInit == 0 && bChanged)
  3893. {
  3894. #if defined(BSP_CAN_ENABLE)
  3895. // 复位所有子板
  3896. can_app_reset(0);
  3897. #endif
  3898. }
  3899. // 如果是第一次初始化,或子板参数有变化,复位子板
  3900. if (bFirstInit || bChanged)
  3901. {
  3902. extern int equ_config_di_yd(void);
  3903. extern int equ_config_do_yd(void);
  3904. equ_config_di_yd();
  3905. equ_config_do_yd();
  3906. equ_reinit_rv_di();
  3907. }
  3908. }
  3909. }
  3910. // 通知socket关闭
  3911. notify_sock_close(bFirstInit);
  3912. IEC_CommInit(); // 串口参数修改外部通信重新初始化
  3913. Net_Init();
  3914. // 设置SNTP同步对时参数
  3915. #ifdef SNTP_FUNC
  3916. tm = (int)(psetbuf[PARA_SNTP_SYNC_TM].ff); // SNTP对时间隔
  3917. serverip = (DWORD)(psetbuf[PARA_IP_SNTP].tt); // SNTP服务器IP
  3918. sntp_setpara(serverip, tm);
  3919. #endif
  3920. bRunSetModify = true;
  3921. #if !defined CPU_FUXI
  3922. create_set_data_txt();
  3923. #endif
  3924. }
  3925. /***************************************************
  3926. 函数名称:ReadSysPara
  3927. 函数版本:1.00
  3928. 作者:
  3929. 创建日期:2008.8.20
  3930. 函数功能说明:读取参数到pf中,并进行CRC-16校验
  3931. 输入参数:
  3932. 输出参数:无
  3933. 返回值: 成功时返回1,否则,0
  3934. 函数扇入清单:
  3935. ***************************************************/
  3936. bool ReadPara(void *pbuf, DWORD wAddr, WORD num, const TSETTABLE *pTable)
  3937. {
  3938. int i;
  3939. bool ret;
  3940. float *pf = (float *)pbuf;
  3941. ret = ReadEppData(wAddr, (void *)pbuf, (num * 4));
  3942. if (!ret)
  3943. {
  3944. return false;
  3945. }
  3946. for (i = 0; i < num; i++)
  3947. {
  3948. if ((pTable[i].wType == SETTYPE_IP) || (pTable[i].wType == SETTYPE_YMD) || (pTable[i].wType == SETTYPE_HMS))
  3949. {
  3950. continue; // IP地址方式,不判断最大最小值
  3951. }
  3952. if (CheckFloatSet(&pf[i], pTable[i].fMax, pTable[i].fMin) > 0)
  3953. return false;
  3954. }
  3955. return true;
  3956. }
  3957. /**************************************************************************
  3958. 函数名称:SaveSysPara
  3959. 函数版本:1.00
  3960. 作者:
  3961. 创建日期:2008.8.20
  3962. 函数功能说明:保存测控参数到EEP中,
  3963. 输入参数:
  3964. 输出参数:无
  3965. 返回值: 成功时返回1,否则,0
  3966. 函数扇入清单:
  3967. ***************************************************************************/
  3968. bool SavePara(void *pbuf, DWORD wAddr, WORD num, const TSETTABLE *pTable)
  3969. {
  3970. int i;
  3971. bool ret;
  3972. float *pf = (float *)pbuf;
  3973. u8 buf[128];
  3974. for (i = 0; i < num; i++)
  3975. {
  3976. if ((pTable[i].wType == SETTYPE_IP) || (pTable[i].wType == SETTYPE_YMD) || (pTable[i].wType == SETTYPE_HMS))
  3977. {
  3978. continue; // IP地址方式,不判断最大最小值
  3979. }
  3980. if (CheckFloatSet(&pf[i], pTable[i].fMax, pTable[i].fMin) > 0)
  3981. {
  3982. sprintf(buf, "%s越限(%f)\r\n", pTable[i].szName, pf[i]);
  3983. rt_printf(buf);
  3984. log_str_time(LOG_OPERATE, buf, 0, 0);
  3985. return false;
  3986. }
  3987. }
  3988. para_change_check_soe(pf, wAddr, num, pTable); // 判断定值变化,上送soe
  3989. ret = SaveEppData(wAddr, (void *)pbuf, (num * 4));
  3990. if (ret)
  3991. {
  3992. g_creat_set_file |= 0x02;
  3993. }
  3994. return ret;
  3995. }
  3996. /**************************************************************************
  3997. 函数名称:GetDefSysPara
  3998. 函数版本:1.00
  3999. 作者:
  4000. 创建日期:2008.8.20
  4001. 函数功能说明:获得默认定值
  4002. 输入参数:
  4003. 输出参数:无
  4004. 返回值:
  4005. 函数扇入清单:
  4006. ***************************************************************************/
  4007. void GetDefPara(float *pbuf, WORD num, const TSETTABLE *pTable)
  4008. {
  4009. int i;
  4010. for (i = 0; i < num; i++)
  4011. {
  4012. if ((pTable[i].wType == SETTYPE_IP) // 数据类型为IP地址,默认值从pTable[i].list中获取
  4013. || (pTable[i].wType == SETTYPE_YMD) || (pTable[i].wType == SETTYPE_HMS))
  4014. {
  4015. *((DWORD *)pbuf++) = (DWORD)pTable[i].list;
  4016. }
  4017. else
  4018. {
  4019. *pbuf++ = pTable[i].fDef;
  4020. }
  4021. }
  4022. }
  4023. void GetDefSet(float *pbuf)
  4024. {
  4025. int i, sw;
  4026. for (i = 0; i < PUB_SET_NUMBER; i++) // 公共定值
  4027. {
  4028. *pbuf++ = tPubSetTable[i].fDef;
  4029. }
  4030. for (sw = 0; sw < SWITCH_NUM_MAX; sw++) // 线路定值
  4031. {
  4032. for (i = 0; i < SW_SET_NUMBER; i++)
  4033. {
  4034. *pbuf++ = tSwSetTable[i].fDef;
  4035. }
  4036. }
  4037. }
  4038. bool ReadSysData(SYSTEM_DATA *st)
  4039. {
  4040. WORD crc;
  4041. e2prom_read(EEP_SYSTEM_DATA_START, (BYTE *)st, EEP_SYSTEM_DATA_SIZE);
  4042. crc = Modbus_CRC16(((BYTE *)st) + 2, EEP_SYSTEM_DATA_SIZE - 4);
  4043. if (st->wCrc != crc) // 数据不合法
  4044. {
  4045. memset((char *)st, 0, EEP_SYSTEM_DATA_SIZE);
  4046. st->bWriteFlag = TRUE;
  4047. // 初始化以下数据区,防止跟初始数据一致造成数据未刷新
  4048. sprintf(m_TzCount, "%d", tRunPara.sysData.wSwTzCount);
  4049. sprintf(m_HzCount, "%d", tRunPara.sysData.wSwHzCount);
  4050. }
  4051. return TRUE;
  4052. }
  4053. bool WriteSysData(SYSTEM_DATA *st)
  4054. {
  4055. if (st->bWriteLock) // 简易多线程写数据互锁处理
  4056. {
  4057. // rt_printf("bWriteLock....\r\n");
  4058. return FALSE;
  4059. }
  4060. st->bWriteLock = TRUE;
  4061. st->wCrc = Modbus_CRC16(((BYTE *)st) + 2, EEP_SYSTEM_DATA_SIZE - 4);
  4062. if (e2prom_write(EEP_SYSTEM_DATA_START, (BYTE *)st, EEP_SYSTEM_DATA_SIZE) != 0)
  4063. ; // return false;
  4064. st->bWriteFlag = FALSE;
  4065. st->bWriteLock = FALSE;
  4066. // rt_printf("WriteSysData OK...\r\n");
  4067. return TRUE;
  4068. }
  4069. /******************下面是关于密码读取及校验的操作********************************/
  4070. /*****************************************************************************
  4071. 函数名称:ReadPassword
  4072. 函数版本:1.00
  4073. 作者:
  4074. 创建日期:2008.8.18
  4075. 函数功能说明:读密码,若校验错误,则返回默认密码
  4076. 输入参数:
  4077. 输出参数:无
  4078. 返回值: 成功时返回1,否则,0
  4079. 函数扇入清单:
  4080. *********************************************************************************/
  4081. WORD ReadPassword(void)
  4082. {
  4083. BYTE pass1[12];
  4084. WORD crc1, crc2;
  4085. e2prom_read(EEP_PASSWORD_ADDR, (BYTE *)pass1, 10);
  4086. crc2 = Modbus_CRC16((BYTE *)pass1, PASSWORD_LEN);
  4087. e2prom_read(EEP_PASSWORD_ADDR + PASSWORD_LEN, (BYTE *)&crc1, 2);
  4088. if (crc1 == crc2)
  4089. {
  4090. memcpy(tRunPara.wPasswordstr, pass1, PASSWORD_LEN);
  4091. tRunPara.wPasswordstr[PASSWORD_LEN] = '\0';
  4092. #ifdef PASSWORD_4_STR
  4093. tRunPara.wPasswordstr[4] = '\0';
  4094. #endif
  4095. }
  4096. else
  4097. {
  4098. #ifdef PASSWORD_4_STR
  4099. strcpy(tRunPara.wPasswordstr, INIT_PASSWORD_STR_4);
  4100. #else
  4101. strcpy(tRunPara.wPasswordstr, INIT_PASSWORD_STR);
  4102. #endif
  4103. }
  4104. // 二级密码读取
  4105. e2prom_read(EEP_PASSWORD2_ADDR, (BYTE *)pass1, 10);
  4106. crc2 = Modbus_CRC16((BYTE *)pass1, PASSWORD_LEN);
  4107. e2prom_read(EEP_PASSWORD2_ADDR + PASSWORD_LEN, (BYTE *)&crc1, 2);
  4108. if (crc1 == crc2)
  4109. {
  4110. memcpy(tRunPara.wPasswordstr2, pass1, PASSWORD_LEN);
  4111. tRunPara.wPasswordstr2[PASSWORD_LEN] = '\0';
  4112. #ifdef PASSWORD_4_STR
  4113. tRunPara.wPasswordstr2[4] = '\0';
  4114. #endif
  4115. }
  4116. else
  4117. {
  4118. #ifdef PASSWORD_4_STR
  4119. strcpy(tRunPara.wPasswordstr2, INIT_PASSWORD_STR_4);
  4120. #else
  4121. strcpy(tRunPara.wPasswordstr2, INIT_PASSWORD_STR);
  4122. #endif
  4123. }
  4124. return INIT_PASSWORD; // 返回初始密码
  4125. }
  4126. /***********************************
  4127. 函数名称:SavePassword
  4128. 函数版本:1.00
  4129. 作者:
  4130. 创建日期:2008.8.18
  4131. 函数功能说明:保存密码到eep中
  4132. 输入参数:
  4133. 输出参数:无
  4134. 返回值: 成功时返回1,否则,0
  4135. 函数扇入清单:
  4136. ***************************************/
  4137. bool SavePassword(BYTE *str)
  4138. {
  4139. WORD crc;
  4140. if (e2prom_write(EEP_PASSWORD_ADDR, (BYTE *)str, PASSWORD_LEN) != 0)
  4141. return false;
  4142. crc = Modbus_CRC16((BYTE *)str, PASSWORD_LEN);
  4143. if (e2prom_write(EEP_PASSWORD_ADDR + PASSWORD_LEN, (BYTE *)&crc, 2) != 0)
  4144. return false;
  4145. return true;
  4146. }
  4147. bool SavePassword2(BYTE *str)
  4148. {
  4149. WORD crc;
  4150. if (e2prom_write(EEP_PASSWORD2_ADDR, (BYTE *)str, PASSWORD_LEN) != 0)
  4151. return false;
  4152. crc = Modbus_CRC16((BYTE *)str, PASSWORD_LEN);
  4153. if (e2prom_write(EEP_PASSWORD2_ADDR + PASSWORD_LEN, (BYTE *)&crc, 2) != 0)
  4154. return false;
  4155. return true;
  4156. }
  4157. /******************下面是关于电压合格率读取及校验的操作********************************/
  4158. /*****************************************************************************
  4159. 函数名称:ReadUqua
  4160. 函数版本:1.00
  4161. 作者:
  4162. 创建日期:2008.8.18
  4163. 函数功能说明:读密码,若校验错误,则返回默认密码
  4164. 输入参数:
  4165. 输出参数:无
  4166. 返回值: 成功时返回1,否则,0
  4167. 函数扇入清单:
  4168. *********************************************************************************/
  4169. void ReadUqua(void)
  4170. {
  4171. struct U_QUA uq;
  4172. u16 crc;
  4173. e2prom_read(EEP_UEUQ_ADDR, (BYTE *)&uq, sizeof(uq));
  4174. crc = Modbus_CRC16((BYTE *)&uq, 16);
  4175. if (crc == uq.crc)
  4176. {
  4177. g_sw_pub.vol_qua_ok_time[0] = uq.ok_time[0];
  4178. g_sw_pub.vol_qua_run_time[0] = uq.run_time[0];
  4179. g_sw_pub.vol_qua_ok_time[1] = uq.ok_time[1];
  4180. g_sw_pub.vol_qua_run_time[1] = uq.run_time[1];
  4181. }
  4182. }
  4183. /***********************************
  4184. 函数名称:SaveUqua
  4185. 函数版本:1.00
  4186. 作者:
  4187. 创建日期:2008.8.18
  4188. 函数功能说明:保存密码到eep中
  4189. 输入参数:
  4190. 输出参数:无
  4191. 返回值: 成功时返回1,否则,0
  4192. 函数扇入清单:
  4193. ***************************************/
  4194. void SaveUqua(bool clr)
  4195. {
  4196. struct U_QUA uq;
  4197. if (!clr)
  4198. {
  4199. uq.ok_time[0] = g_sw_pub.vol_qua_ok_time[0];
  4200. uq.run_time[0] = g_sw_pub.vol_qua_run_time[0];
  4201. uq.ok_time[1] = g_sw_pub.vol_qua_ok_time[1];
  4202. uq.run_time[1] = g_sw_pub.vol_qua_run_time[1];
  4203. }
  4204. else
  4205. {
  4206. uq.ok_time[0] = 0;
  4207. uq.run_time[0] = 0;
  4208. uq.ok_time[1] = 0;
  4209. uq.run_time[1] = 0;
  4210. g_sw_pub.bclearqua = true;
  4211. }
  4212. uq.crc = Modbus_CRC16((BYTE *)&uq, 16);
  4213. e2prom_write(EEP_UEUQ_ADDR, (BYTE *)&uq, sizeof(uq));
  4214. }
  4215. // 逻辑网络索引
  4216. int set_get_network_id_from_socket(SOCKET s)
  4217. {
  4218. struct sockaddr_in local_addr;
  4219. unsigned int len = sizeof(local_addr);
  4220. int i;
  4221. rt_getsockname(s, (struct sockaddr *)&local_addr, &len);
  4222. for (i = 0; i < CFG_ETH_MAX_LOGIC; i++)
  4223. {
  4224. if (tRunPara.tNetPara[i].wIp == local_addr.sin_addr.s_addr)
  4225. {
  4226. return i;
  4227. }
  4228. }
  4229. return -1;
  4230. }
  4231. /****************以下是远方修改定值及程序更新相关代码************/
  4232. int set_get_list_index(const SET_LIST *p_list)
  4233. {
  4234. int i;
  4235. for (i = 0; i < LIST_ALL_NUM; i++)
  4236. {
  4237. if (p_list == g_list_all[i].list)
  4238. {
  4239. return i;
  4240. }
  4241. }
  4242. return -1;
  4243. }
  4244. int set_create_desc_file(void)
  4245. {
  4246. unsigned int i, j, len, num, file_length;
  4247. char *p;
  4248. loff_t pos;
  4249. struct file *pfile;
  4250. struct set_file_head_desc fh;
  4251. struct set_item set_item;
  4252. struct list_item list_item;
  4253. struct list_sum_item list_sum_item;
  4254. struct unit_item unit_item;
  4255. // 写文件头
  4256. // 配置文件头
  4257. memset(&fh, 0, sizeof(fh));
  4258. fh.cfh.signature = SIG_SET_DESC_FILE;
  4259. fh.cfh.version = SET_FILE_VERSION;
  4260. fh.equ_sw_num = SWITCH_NUM_MAX; // 增加开关数量,这样工具能够正确识别数据文件的大小
  4261. // 外部定值
  4262. fh.set_extpub_addr = FILE_ADDR_ALGIN(sizeof(fh));
  4263. fh.set_extpub_num = PUB_SET_NUMBER;
  4264. fh.set_extsw_addr = FILE_ADDR_ALGIN(fh.set_extpub_addr + fh.set_extpub_num * sizeof(struct set_item));
  4265. fh.set_extsw_num = SW_SET_NUMBER;
  4266. // 内部定值
  4267. fh.set_int_addr = FILE_ADDR_ALGIN(fh.set_extsw_addr + fh.set_extsw_num * sizeof(struct set_item));
  4268. fh.set_int_num = CSTSET_NUMBER;
  4269. // 装置参数
  4270. fh.set_arg_addr = FILE_ADDR_ALGIN(fh.set_int_addr + fh.set_int_num * sizeof(struct set_item));
  4271. fh.set_arg_num = EQUIP_PARA_NUMBER;
  4272. // 列表结构
  4273. fh.list_addr = FILE_ADDR_ALGIN(fh.set_arg_addr + fh.set_arg_num * sizeof(struct set_item));
  4274. fh.list_num = 0;
  4275. for (i = 0; i < LIST_ALL_NUM; i++)
  4276. {
  4277. fh.list_num += g_list_all[i].num;
  4278. }
  4279. // 列表结构描述总表
  4280. fh.list_sum_addr = FILE_ADDR_ALGIN(fh.list_addr + fh.list_num * sizeof(struct list_item));
  4281. fh.list_sum_num = LIST_ALL_NUM;
  4282. // 单位表
  4283. fh.unit_addr = FILE_ADDR_ALGIN(fh.list_sum_addr + fh.list_sum_num * sizeof(struct list_sum_item));
  4284. fh.unit_num = sizeof(SetUints) / sizeof(char *);
  4285. // 得到文件长度
  4286. file_length = FILE_ADDR_ALGIN(fh.unit_addr + fh.unit_num * sizeof(struct unit_item));
  4287. // 分配并初始化空间
  4288. p = rt_malloc(file_length + 2); // 加crc长度
  4289. if (!p)
  4290. {
  4291. return -1;
  4292. }
  4293. memset(p, 0, file_length);
  4294. // 写入文件头
  4295. memcpy(p, (char *)&fh, sizeof(fh));
  4296. // 写外部定值
  4297. for (i = 0; i < fh.set_extpub_num; i++)
  4298. {
  4299. set_item.type = tPubSetTable[i].wType;
  4300. set_item.unit = tPubSetTable[i].wUnit;
  4301. len = strlen(tPubSetTable[i].szName);
  4302. if (len >= MOD_NAME_LEN - 1)
  4303. {
  4304. rt_free(p);
  4305. return -3;
  4306. }
  4307. memset(set_item.name, 0, sizeof(set_item.name));
  4308. memcpy(set_item.name, tPubSetTable[i].szName, len);
  4309. set_item.max = tPubSetTable[i].fMax;
  4310. set_item.min = tPubSetTable[i].fMin;
  4311. set_item.def = tPubSetTable[i].fDef;
  4312. set_item.list_index = set_get_list_index(tPubSetTable[i].list);
  4313. set_item.group = tPubSetTable[i].group;
  4314. memcpy(p + fh.set_extpub_addr + i * sizeof(set_item), (char *)&set_item, sizeof(set_item));
  4315. }
  4316. for (i = 0; i < fh.set_extsw_num; i++)
  4317. {
  4318. set_item.type = tSwSetTable[i].wType;
  4319. set_item.unit = tSwSetTable[i].wUnit;
  4320. len = strlen(tSwSetTable[i].szName);
  4321. if (len >= MOD_NAME_LEN - 1)
  4322. {
  4323. rt_free(p);
  4324. return -3;
  4325. }
  4326. memset(set_item.name, 0, sizeof(set_item.name));
  4327. memcpy(set_item.name, tSwSetTable[i].szName, len);
  4328. {
  4329. set_item.max = tSwSetTable[i].fMax;
  4330. set_item.min = tSwSetTable[i].fMin;
  4331. }
  4332. set_item.def = tSwSetTable[i].fDef;
  4333. set_item.list_index = set_get_list_index(tSwSetTable[i].list);
  4334. set_item.group = tSwSetTable[i].group;
  4335. memcpy(p + fh.set_extsw_addr + i * sizeof(set_item), (char *)&set_item, sizeof(set_item));
  4336. }
  4337. // 写内部定值
  4338. for (i = 0; i < fh.set_int_num; i++)
  4339. {
  4340. set_item.type = tCstSetTable[i].wType;
  4341. set_item.unit = tCstSetTable[i].wUnit;
  4342. len = strlen(tCstSetTable[i].szName);
  4343. if (len >= MOD_NAME_LEN - 1)
  4344. {
  4345. rt_free(p);
  4346. return -4;
  4347. }
  4348. memset(set_item.name, 0, sizeof(set_item.name));
  4349. memcpy(set_item.name, tCstSetTable[i].szName, len);
  4350. set_item.max = tCstSetTable[i].fMax;
  4351. set_item.min = tCstSetTable[i].fMin;
  4352. set_item.def = tCstSetTable[i].fDef;
  4353. set_item.list_index = set_get_list_index(tCstSetTable[i].list);
  4354. set_item.group = tCstSetTable[i].group;
  4355. memcpy(p + fh.set_int_addr + i * sizeof(set_item), (char *)&set_item, sizeof(set_item));
  4356. }
  4357. // 写装置参数
  4358. for (i = 0; i < fh.set_arg_num; i++)
  4359. {
  4360. set_item.type = tEquipParaTable[i].wType;
  4361. set_item.unit = tEquipParaTable[i].wUnit;
  4362. len = strlen(tEquipParaTable[i].szName);
  4363. if (len >= MOD_NAME_LEN - 1)
  4364. {
  4365. rt_free(p);
  4366. return -5;
  4367. }
  4368. memset(set_item.name, 0, sizeof(set_item.name));
  4369. memcpy(set_item.name, tEquipParaTable[i].szName, len);
  4370. set_item.max = tEquipParaTable[i].fMax;
  4371. set_item.min = tEquipParaTable[i].fMin;
  4372. if ((tEquipParaTable[i].wType == SETTYPE_IP) || (tEquipParaTable[i].wType == SETTYPE_YMD) || (tEquipParaTable[i].wType == SETTYPE_HMS))
  4373. {
  4374. memcpy(&set_item.def, &tEquipParaTable[i].list, 4);
  4375. }
  4376. else
  4377. {
  4378. set_item.def = tEquipParaTable[i].fDef;
  4379. }
  4380. set_item.list_index = set_get_list_index(tEquipParaTable[i].list);
  4381. set_item.group = tEquipParaTable[i].group;
  4382. memcpy(p + fh.set_arg_addr + i * sizeof(set_item), (char *)&set_item, sizeof(set_item));
  4383. }
  4384. // 写列表结构
  4385. num = 0;
  4386. for (i = 0; i < fh.list_sum_num; i++)
  4387. {
  4388. for (j = 0; j < g_list_all[i].num; j++)
  4389. {
  4390. list_item.value = g_list_all[i].list[j].dat;
  4391. len = strlen(g_list_all[i].list[j].str);
  4392. if (len >= MOD_NAME_LEN - 1)
  4393. {
  4394. rt_free(p);
  4395. return -6;
  4396. }
  4397. memset(list_item.name, 0, sizeof(list_item.name));
  4398. memcpy(list_item.name, g_list_all[i].list[j].str, len);
  4399. memcpy(p + fh.list_addr + num * sizeof(list_item), (char *)&list_item, sizeof(list_item));
  4400. num++;
  4401. }
  4402. }
  4403. // 写列表结构描述总表
  4404. num = 0;
  4405. for (i = 0; i < fh.list_sum_num; i++)
  4406. {
  4407. list_sum_item.index = num;
  4408. list_sum_item.num = g_list_all[i].num;
  4409. memcpy(p + fh.list_sum_addr + i * sizeof(list_sum_item), (char *)&list_sum_item, sizeof(list_sum_item));
  4410. num += list_sum_item.num;
  4411. }
  4412. // 写单位表
  4413. for (i = 0; i < fh.unit_num; i++)
  4414. {
  4415. len = strlen(SetUints[i]);
  4416. if (len >= MOD_NAME_LEN - 1)
  4417. {
  4418. rt_free(p);
  4419. return -7;
  4420. }
  4421. memset(unit_item.unit, 0, sizeof(unit_item.unit));
  4422. memcpy(unit_item.unit, SetUints[i], len);
  4423. memcpy(p + fh.unit_addr + i * sizeof(unit_item), (char *)&unit_item, sizeof(unit_item));
  4424. }
  4425. // 创建描述文件
  4426. pfile = rt_file_open("/tmp/" FILE_NAME_SET_DESC, O_CREAT | O_RDWR | O_TRUNC, 0);
  4427. if (IS_ERR(pfile))
  4428. {
  4429. return -8;
  4430. }
  4431. // 计算CRC
  4432. g_crc_set_desc = CrcStr(p, file_length);
  4433. memcpy(p + file_length, &g_crc_set_desc, 2);
  4434. pos = 0;
  4435. rt_file_write(pfile, p, file_length + 2, &pos);
  4436. rt_file_close(pfile, 0);
  4437. setdesc_contrast.version = fh.cfh.version;
  4438. setdesc_contrast.signature = fh.cfh.signature;
  4439. setdesc_contrast.length = file_length + 2;
  4440. setdesc_contrast.crc = g_crc_set_desc;
  4441. rt_free(p);
  4442. return 0;
  4443. }
  4444. /*****************************************************************************
  4445. 函数名称:read_prjname
  4446. 函数版本:1.00
  4447. 作者:
  4448. 创建日期:2013.10.14
  4449. 函数功能说明:
  4450. 输入参数:
  4451. 输出参数:无
  4452. 返回值: 成功时返回1,否则,0
  4453. 函数扇入清单:
  4454. *********************************************************************************/
  4455. int read_prjname(s8 *name)
  4456. {
  4457. if (e2prom_read(EEP_PRJNAME_ADDR, name, 64) != 0)
  4458. return false;
  4459. else
  4460. return true;
  4461. }
  4462. /***********************************
  4463. 函数名称:write_prjname
  4464. 函数版本:1.00
  4465. 作者:
  4466. 创建日期:2013.10.14
  4467. 函数功能说明:
  4468. 输入参数:
  4469. 输出参数:无
  4470. 返回值: 成功时返回1,否则,0
  4471. 函数扇入清单:
  4472. ***************************************/
  4473. int write_prjname(s8 *name)
  4474. {
  4475. if (e2prom_write(EEP_PRJNAME_ADDR, name, 64) != 0)
  4476. return false;
  4477. else
  4478. return true;
  4479. }
  4480. // 建立数据文件
  4481. int set_create_data_file(void)
  4482. {
  4483. unsigned int addr, file_length;
  4484. char *p;
  4485. loff_t pos;
  4486. struct file *pfile;
  4487. // 写文件头
  4488. memset(&g_fh_data, 0, sizeof(g_fh_data));
  4489. g_fh_data.cfh.signature = SIG_SET_DATA_FILE;
  4490. g_fh_data.cfh.version = SET_FILE_VERSION;
  4491. g_fh_data.desc_signature = setdesc_contrast.signature;
  4492. g_fh_data.desc_version = setdesc_contrast.version;
  4493. g_fh_data.desc_length = setdesc_contrast.length;
  4494. g_fh_data.desc_crc = setdesc_contrast.crc;
  4495. read_prjname(g_fh_data.prj_name);
  4496. g_fh_data.equ_sw_num = SWITCH_NUM_MAX;
  4497. // 外部定值
  4498. g_fh_data.set_extpub_addr = FILE_ADDR_ALGIN(sizeof(g_fh_data));
  4499. g_fh_data.set_extpub_num = PUB_SET_NUMBER;
  4500. addr = g_fh_data.set_extpub_addr + g_fh_data.set_extpub_num * 4;
  4501. g_fh_data.set_extsw_addr = addr;
  4502. g_fh_data.set_extsw_num = SW_SET_NUMBER * SWITCH_NUM_MAX;
  4503. // 内部定值
  4504. addr = g_fh_data.set_extsw_addr + g_fh_data.set_extsw_num * 4;
  4505. addr += (g_fh_data.set_extpub_num + g_fh_data.set_extsw_num + 7) / 8;
  4506. g_fh_data.set_int_addr = FILE_ADDR_ALGIN(addr);
  4507. g_fh_data.set_int_num = CSTSET_NUMBER;
  4508. // 装置参数
  4509. addr = g_fh_data.set_int_addr + g_fh_data.set_int_num * 4;
  4510. addr += (g_fh_data.set_int_num + 7) / 8;
  4511. g_fh_data.set_arg_addr = FILE_ADDR_ALGIN(addr);
  4512. g_fh_data.set_arg_num = EQUIP_PARA_NUMBER;
  4513. // 得到文件长度
  4514. addr = g_fh_data.set_arg_addr + g_fh_data.set_arg_num * 4;
  4515. addr += (g_fh_data.set_arg_num + 7) / 8;
  4516. file_length = FILE_ADDR_ALGIN(addr);
  4517. // 分配并初始化空间
  4518. p = rt_malloc(file_length + 2); // 加crc长度
  4519. if (!p)
  4520. {
  4521. return -1;
  4522. }
  4523. memset(p, 0, file_length);
  4524. // 写入文件头
  4525. memcpy(p, (char *)&g_fh_data, sizeof(g_fh_data));
  4526. // 写外部定值
  4527. if (!ReadSet(m_runsection, (void *)(p + g_fh_data.set_extpub_addr))) // 读当前定值无效
  4528. {
  4529. GetDefSet((float *)(p + g_fh_data.set_extpub_addr));
  4530. }
  4531. // 写内部定值
  4532. if (!ReadPara((void *)(p + g_fh_data.set_int_addr), EEP_CSTSET_ADDR, CSTSET_NUMBER, &tCstSetTable[0]))
  4533. {
  4534. GetDefPara((float *)(p + g_fh_data.set_int_addr), CSTSET_NUMBER, &tCstSetTable[0]);
  4535. }
  4536. // 写装置参数
  4537. if (!ReadPara((void *)(p + g_fh_data.set_arg_addr), EEP_EQUIP_PARA_ADDR, EQUIP_PARA_NUMBER, &tEquipParaTable[0]))
  4538. {
  4539. GetDefPara((float *)(p + g_fh_data.set_arg_addr), EQUIP_PARA_NUMBER, &tEquipParaTable[0]);
  4540. }
  4541. // 创建数据文件
  4542. pfile = rt_file_open("/tmp/set_data.bin", O_CREAT | O_RDWR | O_TRUNC, 0);
  4543. if (IS_ERR(pfile))
  4544. {
  4545. rt_free(p);
  4546. return -8;
  4547. }
  4548. // 计算CRC
  4549. g_crc_set_data = CrcStr(p, file_length);
  4550. memcpy(p + file_length, &g_crc_set_data, 2);
  4551. pos = 0;
  4552. rt_file_write(pfile, p, file_length + 2, &pos);
  4553. rt_file_close(pfile, 0);
  4554. rt_free(p);
  4555. return 0;
  4556. }
  4557. int set_save_data_file(s32 index)
  4558. {
  4559. unsigned char *change_field, *local_data;
  4560. unsigned int i, addr, file_length, len;
  4561. unsigned short crc;
  4562. int ret;
  4563. u8 updata_flag[3] = {0};
  4564. int setdata_err = 0;
  4565. struct set_file_head_data fh_data;
  4566. u8 *buf;
  4567. char file_name[64];
  4568. struct file *pfile;
  4569. loff_t pos;
  4570. local_data = 0;
  4571. sprintf(file_name, "%s%s", g_file_item[index].file_dir, g_file_item[index].file_name);
  4572. // 打开文件
  4573. pfile = rt_file_open(file_name, O_RDONLY, 0);
  4574. if (IS_ERR(pfile))
  4575. {
  4576. return -1;
  4577. }
  4578. // 得到文件长度
  4579. len = rt_file_getfile_size(pfile);
  4580. if (len <= 0)
  4581. {
  4582. rt_file_close(pfile, 0);
  4583. return -11;
  4584. }
  4585. // 分配内存
  4586. buf = rt_malloc(len);
  4587. if ((buf) == NULL)
  4588. {
  4589. rt_file_close(pfile, 0);
  4590. return -2;
  4591. }
  4592. // 读出内容
  4593. pos = 0;
  4594. if (rt_file_read(pfile, buf, len, &pos) != len)
  4595. {
  4596. rt_file_close(pfile, 0);
  4597. rt_free(buf);
  4598. return -3;
  4599. }
  4600. // 关闭文件
  4601. rt_file_close(pfile, 0);
  4602. // 检查CRC
  4603. crc = CrcStr(buf, len - 2);
  4604. if (crc != *(u16 *)(buf + len - 2))
  4605. {
  4606. rt_free(buf);
  4607. return -4;
  4608. }
  4609. // 配置文件头
  4610. memcpy(&fh_data, buf, sizeof(fh_data));
  4611. // 检查文件签名
  4612. if (fh_data.cfh.signature != SIG_SET_DATA_FILE)
  4613. {
  4614. rt_free(buf);
  4615. return -6;
  4616. }
  4617. // 比对定值描述文件
  4618. if ((fh_data.desc_version != setdesc_contrast.version) || (fh_data.desc_signature != setdesc_contrast.signature) || (fh_data.desc_length != setdesc_contrast.length) || (fh_data.desc_crc != setdesc_contrast.crc))
  4619. {
  4620. rt_free(buf);
  4621. return -7;
  4622. }
  4623. // 得到文件长度
  4624. file_length = fh_data.set_arg_addr + fh_data.set_arg_num * 4;
  4625. file_length += (fh_data.set_arg_num + 7) / 8;
  4626. file_length = FILE_ADDR_ALGIN(file_length);
  4627. file_length += 2; // CRC 长度
  4628. if (len != file_length)
  4629. {
  4630. rt_free(buf);
  4631. return -8;
  4632. }
  4633. // 分配内存,用来保存本地定值参数值
  4634. local_data = rt_malloc(len);
  4635. if (local_data == NULL)
  4636. {
  4637. rt_free(buf); // sunxi 20180719
  4638. return -9;
  4639. }
  4640. // 读取外部定值
  4641. if (!ReadSet(m_runsection, local_data + fh_data.set_extpub_addr))
  4642. {
  4643. GetDefSet((void *)(local_data + fh_data.set_extpub_addr));
  4644. updata_flag[0] = true;
  4645. setdata_err |= 0x01;
  4646. }
  4647. // 读取内部定值
  4648. if (!ReadPara((void *)(local_data + fh_data.set_int_addr), EEP_CSTSET_ADDR, CSTSET_NUMBER, &tCstSetTable[0]))
  4649. {
  4650. GetDefPara((void *)(local_data + fh_data.set_int_addr), CSTSET_NUMBER, &tCstSetTable[0]);
  4651. updata_flag[1] = true;
  4652. setdata_err |= 0x02;
  4653. }
  4654. // 读取装置参数
  4655. if (!ReadPara((void *)(local_data + fh_data.set_arg_addr), EEP_EQUIP_PARA_ADDR, EQUIP_PARA_NUMBER, &tEquipParaTable[0]))
  4656. {
  4657. GetDefPara((void *)(local_data + fh_data.set_arg_addr), EQUIP_PARA_NUMBER, &tEquipParaTable[0]);
  4658. updata_flag[2] = true;
  4659. setdata_err |= 0x04;
  4660. }
  4661. // 合并外部定值
  4662. change_field = buf + fh_data.set_extpub_addr + fh_data.set_extpub_num * 4 + fh_data.set_extsw_num * 4;
  4663. for (i = 0; i < fh_data.set_extpub_num + fh_data.set_extsw_num; i++)
  4664. {
  4665. if ((change_field[i / 8] & (1 << (i % 8))) == 0)
  4666. {
  4667. // 使用本地数据
  4668. addr = fh_data.set_extpub_addr + i * 4;
  4669. memcpy(buf + addr, local_data + addr, 4);
  4670. }
  4671. else
  4672. {
  4673. updata_flag[0] = true;
  4674. }
  4675. }
  4676. // 合并内部定值
  4677. change_field = buf + fh_data.set_int_addr + fh_data.set_int_num * 4;
  4678. for (i = 0; i < fh_data.set_int_num; i++)
  4679. {
  4680. if ((change_field[i / 8] & (1 << (i % 8))) == 0)
  4681. {
  4682. // 使用本地数据
  4683. addr = fh_data.set_int_addr + i * 4;
  4684. memcpy(buf + addr, local_data + addr, 4);
  4685. }
  4686. else
  4687. {
  4688. updata_flag[1] = true;
  4689. }
  4690. }
  4691. // 合并装置参数
  4692. change_field = buf + fh_data.set_arg_addr + fh_data.set_arg_num * 4;
  4693. for (i = 0; i < fh_data.set_arg_num; i++)
  4694. {
  4695. if ((change_field[i / 8] & (1 << (i % 8))) == 0)
  4696. {
  4697. // 使用本地数据
  4698. addr = fh_data.set_arg_addr + i * 4;
  4699. memcpy(buf + addr, local_data + addr, 4);
  4700. }
  4701. else
  4702. {
  4703. updata_flag[2] = true;
  4704. }
  4705. }
  4706. // 保存外部定值
  4707. if (updata_flag[0])
  4708. {
  4709. if (SaveSet(m_runsection, (void *)(buf + fh_data.set_extpub_addr)))
  4710. {
  4711. soe_record_opt(EV_SET_OK, 0);
  4712. MakeRunSet(false);
  4713. rt_err_clr(ERR_CODE_SET, 0);
  4714. }
  4715. else
  4716. {
  4717. setdata_err |= 0x10;
  4718. }
  4719. }
  4720. // 保存内部定值
  4721. if (updata_flag[1])
  4722. {
  4723. if (SavePara((void *)(buf + fh_data.set_int_addr), EEP_CSTSET_ADDR, CSTSET_NUMBER, &tCstSetTable[0]))
  4724. {
  4725. soe_record_opt(EV_CSTSET_OK, 0); // 内部定值整定成功
  4726. MakeRunSet(false); // 将当前运行定值区转换为运行定值区
  4727. rt_err_clr(ERR_CODE_SET_IN, 0);
  4728. }
  4729. else
  4730. {
  4731. setdata_err |= 0x20;
  4732. }
  4733. }
  4734. // 保存装置参数
  4735. if (updata_flag[2])
  4736. {
  4737. if (SavePara((void *)(buf + fh_data.set_arg_addr), EEP_EQUIP_PARA_ADDR, EQUIP_PARA_NUMBER, &tEquipParaTable[0]))
  4738. {
  4739. soe_record_opt(EV_EQUPARA_OK, 0);
  4740. MakeRunPara(false, false);
  4741. rt_err_clr(ERR_CODE_EQU_PARA, 0);
  4742. }
  4743. else
  4744. {
  4745. setdata_err |= 0x40;
  4746. }
  4747. }
  4748. #ifdef YPARA_LINK_S
  4749. set_para_flag();
  4750. #endif
  4751. write_prjname(fh_data.prj_name);
  4752. if (setdata_err)
  4753. {
  4754. ret = setdata_err;
  4755. }
  4756. else
  4757. {
  4758. ret = 0;
  4759. }
  4760. // RET:
  4761. if (local_data)
  4762. {
  4763. rt_free(local_data);
  4764. }
  4765. rt_free(buf); // sunxi 20180719
  4766. return ret;
  4767. }
  4768. void create_set_file(void)
  4769. {
  4770. if (g_creat_set_file)
  4771. {
  4772. set_create_data_file();
  4773. g_creat_set_file = 0;
  4774. }
  4775. }
  4776. /******************************************************************************
  4777. 函数名称: mmd_get_set_dip_index()
  4778. 函数版本: 01.01
  4779. 创建作者: xxxxxx
  4780. 创建日期: 2014-12-16
  4781. 函数说明: 开关类型刷新定值显示
  4782. 参数说明: set_type: 1 装置参数,2 保护定值,3 内部定值
  4783. 返回值: 成功返回0.
  4784. 修改记录:
  4785. */
  4786. void mmd_get_set_dip_index(const TSETTABLE *pTable, int num)
  4787. {
  4788. int i;
  4789. g_set_disp.num = 0;
  4790. for (i = 0; i < num; i++)
  4791. {
  4792. if (pTable[i].wType != SETTYPE_LABEL)
  4793. {
  4794. g_set_disp.no[g_set_disp.num] = i;
  4795. g_set_disp.num++;
  4796. }
  4797. }
  4798. }
  4799. void get_set_value(char *str, const TSETTABLE *pTable, float value)
  4800. {
  4801. WORD type = pTable->wType;
  4802. DWORD wDat;
  4803. wDat = (DWORD)value;
  4804. if (type == SETTYPE_F)
  4805. {
  4806. sprintf(str, "%.3f", value);
  4807. }
  4808. else if (type == SETTYPE_LIST)
  4809. {
  4810. sprintf(str, "%s", pTable->list[wDat].str);
  4811. }
  4812. else if (type == SETTYPE_UINT || type == SETTYPE_5INT || type == SETTYPE_LINT || type == SETTYPE_4INT)
  4813. {
  4814. sprintf(str, "%d", wDat);
  4815. }
  4816. else if (type == SETTYPE_IP)
  4817. {
  4818. sprintf(str, "%d.%d.%d.%d", (u8)(wDat >> 24), (u8)(wDat >> 16), (u8)(wDat >> 8), (u8)(wDat >> 0));
  4819. }
  4820. else if (type == SETTYPE_YMD)
  4821. {
  4822. sprintf(str, "%d年%d月%d日", 2000 + (u8)(wDat >> 16), (u8)(wDat >> 8), (u8)(wDat >> 0));
  4823. }
  4824. else if (type == SETTYPE_HMS)
  4825. {
  4826. sprintf(str, "%d:%d:%d秒", (u8)(wDat >> 16), (u8)(wDat >> 8), (u8)(wDat >> 0));
  4827. }
  4828. else
  4829. {
  4830. strcpy(str, "非法值");
  4831. }
  4832. }
  4833. void creatListString(void)
  4834. {
  4835. int i, j;
  4836. loff_t pos;
  4837. char tmpstr[256];
  4838. struct file *pfile;
  4839. char *p = tmpstr;
  4840. pfile = rt_file_open("/tmp/typeDefine.csv", O_CREAT | O_RDWR | O_TRUNC, 0);
  4841. if (IS_ERR(pfile))
  4842. {
  4843. return;
  4844. }
  4845. pos = 0;
  4846. sprintf(p, "List序号,0,1,2,3,4,5,6,7,8,9,10,11,12 \r\n");
  4847. rt_file_write(pfile, p, strlen(p), &pos);
  4848. for (i = 0; i < LIST_ALL_NUM; i++)
  4849. {
  4850. sprintf(p, "%d,", i + 1);
  4851. for (j = 0; j < g_list_all[i].num; j++)
  4852. {
  4853. strcat(p, g_list_all[i].list[j].str);
  4854. strcat(p, ",");
  4855. }
  4856. strcat(p, "\r\n");
  4857. rt_file_write(pfile, p, strlen(p), &pos);
  4858. }
  4859. rt_file_close(pfile, 0);
  4860. }
  4861. extern void creatModifyFile(void);
  4862. void create_set_data_txt(void) // 生成txt格式的定值文件,保存在tmp文件下
  4863. {
  4864. struct file *pfile;
  4865. loff_t pos;
  4866. char tmpstr[128];
  4867. char valstr[24];
  4868. char *p = tmpstr;
  4869. int i;
  4870. u8 setgroup[GROUP_NUM];
  4871. creatModifyFile();
  4872. creatListString();
  4873. return;
  4874. // 创建描述文件
  4875. pfile = rt_file_open("/tmp/setdata_file.txt", O_CREAT | O_RDWR | O_TRUNC, 0);
  4876. if (IS_ERR(pfile))
  4877. {
  4878. return;
  4879. }
  4880. pos = 0;
  4881. if (!ReadEppData(EEP_SETGROUP_ADDR, setgroup, GROUP_NUM))
  4882. {
  4883. GetDefSetGroup(setgroup);
  4884. }
  4885. /*读取压板定值*/
  4886. if (!ReadPara((void *)m_SetBuf, EEP_PUB_ADDR + PUB_SETSIZE * m_runsection, PUB_SET_NUMBER, &tPubSetTable[0]))
  4887. {
  4888. GetDefPara((void *)m_SetBuf, PUB_SET_NUMBER, &tPubSetTable[0]);
  4889. }
  4890. for (i = 0; i < PUB_SET_NUMBER; i++)
  4891. {
  4892. if ((tPubSetTable[i].group == 0 || setgroup[tPubSetTable[i].group - 1])) // 定值分类组为0 或显示定制为1
  4893. {
  4894. if (tPubSetTable[i].wType == SETTYPE_LABEL)
  4895. {
  4896. sprintf(p, "%s:\r\n", tPubSetTable[i].szName);
  4897. }
  4898. else
  4899. {
  4900. get_set_value(valstr, &tPubSetTable[i], m_SetBuf[i].ff);
  4901. sprintf(p, " %-20.20s%-10.10s%s\r\n", tPubSetTable[i].szName, valstr, SetUints[tPubSetTable[i].wUnit]);
  4902. }
  4903. rt_file_write(pfile, p, strlen(p), &pos);
  4904. }
  4905. }
  4906. if (!ReadPara((void *)m_SetBuf, EEP_SET_ADDR + SETSIZE * m_runsection, SW_SET_NUMBER, &tSwSetTable[0]))
  4907. {
  4908. GetDefPara((void *)m_SetBuf, SW_SET_NUMBER, &tSwSetTable[0]);
  4909. }
  4910. for (i = 0; i < SW_SET_NUMBER; i++)
  4911. {
  4912. if ((tSwSetTable[i].group == 0 || setgroup[tSwSetTable[i].group - 1])) // 定值分类组为0 或显示定制为1
  4913. {
  4914. if (tSwSetTable[i].wType == SETTYPE_LABEL)
  4915. {
  4916. sprintf(p, "%s:\r\n", tSwSetTable[i].szName);
  4917. }
  4918. else
  4919. {
  4920. get_set_value(valstr, &tSwSetTable[i], m_SetBuf[i].ff);
  4921. sprintf(p, " %-20.20s%-10.10s%s\r\n", tSwSetTable[i].szName, valstr, SetUints[tSwSetTable[i].wUnit]);
  4922. }
  4923. rt_file_write(pfile, p, strlen(p), &pos);
  4924. }
  4925. }
  4926. rt_file_close(pfile, 0);
  4927. }
  4928. /************************************************************************
  4929. 函数名称:getTypeBeginIndexAndEndIndex
  4930. 函数版本:V0.01
  4931. 作 者:
  4932. 创建日期:2021.08.05
  4933. 形参说明:type:定值类型(公共、装置、开关、内部)
  4934. *p_begin_no:存放在缓存区开始索引号的地址
  4935. *p_end_no:存放在缓存区结束索引号的地址
  4936. 函数说明:获取这种类型的定值在缓存区的起始索引号和结束索引号
  4937. 返 回 值:true:获取成功 false:获取失败
  4938. ************************************************************************/
  4939. static bool getTypeBeginIndexAndEndIndex(const BYTE type, int *p_begin_no, int *p_end_no)
  4940. {
  4941. int i;
  4942. int arr_total;
  4943. bool b_bg = false, b_eg = false;
  4944. arr_total = sizeof(tCstValForwardTable) / sizeof(CSTVAL_FORWARD_TABLE);
  4945. if (!arr_total)
  4946. return false;
  4947. for (i = 0; i < arr_total; i++)
  4948. {
  4949. if (tCstValForwardTable[i].valType == type && !b_bg)
  4950. {
  4951. *p_begin_no = i;
  4952. b_bg = true;
  4953. continue;
  4954. }
  4955. if (tCstValForwardTable[i].valType != type && b_bg)
  4956. {
  4957. *p_end_no = i;
  4958. b_eg = true;
  4959. break;
  4960. }
  4961. }
  4962. if (!b_bg)
  4963. return false;
  4964. if (b_bg && !b_eg)
  4965. {
  4966. *p_end_no = i;
  4967. }
  4968. return true;
  4969. }
  4970. /************************************************************************
  4971. 函数名称:GetCstValForwardAddr
  4972. 函数版本:V0.01
  4973. 作 者:
  4974. 创建日期:2021.08.05
  4975. 形参说明:type:定值类型(公共、装置、开关、内部)
  4976. index:定值索引号
  4977. 函数说明:获取定值转发地址
  4978. 返 回 值:定值转发地址 0:表示获取失败
  4979. ************************************************************************/
  4980. WORD GetCstValForwardAddr(const BYTE type, const int index)
  4981. {
  4982. int i;
  4983. WORD addr = 0;
  4984. int begin_no = 0, end_no = 0;
  4985. if (!getTypeBeginIndexAndEndIndex(type, &begin_no, &end_no))
  4986. return 0;
  4987. for (i = begin_no; i < end_no; i++)
  4988. {
  4989. if (tCstValForwardTable[i].arrIndex != index)
  4990. continue;
  4991. addr = tCstValForwardTable[i].forwardAddr;
  4992. break;
  4993. }
  4994. return addr;
  4995. }
  4996. //========================== 本文件结束 =============================