ResistAlarm.h 7.4 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264
  1. #pragma once
  2. #include <map>
  3. #include <thread>
  4. #include <string>
  5. #include <list>
  6. #include "AlarmDefine.h"
  7. #include <rapidjson/stringbuffer.h>
  8. #include <mutex>
  9. class CResistAlarm
  10. {
  11. CResistAlarm();
  12. ~CResistAlarm();
  13. friend class CResistAlarmMng;
  14. public:
  15. };
  16. typedef struct tagBaseInfo
  17. {
  18. uint8_t no = 255; //0, 1, 2 //通道号
  19. eZL_ALARMTYPE type = (eZL_ALARMTYPE)0x00; //报警类型
  20. bool enable = false; //报警开关
  21. time_t tmLastCheckTime = 0;
  22. }BASE_INFO;
  23. typedef struct tagMax_Over_Limit : public tagBaseInfo
  24. {
  25. int alarm_high_limit = INT_MAX; //锁闭力 定向反
  26. int warn_high_limit = INT_MAX; //锁闭力 反向定
  27. //short d_alarm_high_limit;
  28. //short d_warn_high_limit;
  29. int f_alarm_high_limit = INT_MAX; //保持力 反向定
  30. int f_warn_high_limit = INT_MAX; //保持力 反向定
  31. }MAX_OVER_LIMIT_INFO;
  32. typedef struct tagFriction_Over_Limit : public tagBaseInfo
  33. {
  34. int up_alarm_low_limit = INT_MAX; //上超低限报警值(暂定名称) 整数
  35. int up_warn_low_limit = INT_MAX; //上超低限预警值 整数
  36. int dw_alarm_high_limit = INT_MIN; //下超高限报警值 整数
  37. int dw_warn_high_limit = INT_MIN; //下超高限预警值 整数
  38. }FRICTION_OVER_LIMIT_INFO;
  39. typedef struct tagSuobi_Over_Limit : public tagBaseInfo
  40. {
  41. int alarm_low_limit = INT_MIN; //最小告警值
  42. int warn_low_limit = INT_MIN; //最小预警值
  43. int alarm_high_limit = INT_MAX; //最大告警值
  44. int warn_high_limit = INT_MAX; //最大预警值
  45. }SUOBI_OVER_LIMIT_INFO;
  46. typedef struct tagConvertResist_Over_Limit : public tagBaseInfo
  47. {
  48. int dw_alarm_low_limit = INT_MIN; //伸出告警值
  49. int dw_warn_low_limit = INT_MIN; //伸出预警值
  50. int up_alarm_high_limit = INT_MAX; //缩进告警值
  51. int up_warn_high_limit = INT_MAX; //缩进预警值
  52. }CONVERT_RESIST_OVER_LIMIT;
  53. typedef struct tagRetension_Force_Drop : public tagBaseInfo
  54. {
  55. int dw_alarm_low_drop = INT_MIN; //最低预警值
  56. int alarm_low_percent = 20; //下降百分比报警值
  57. int alarm_high_percent = 40; //上升百分比报警值
  58. time_t tLastCalc = 0; //上一次计算时间(不参与配置) //是不是可以用 tmLastCheckTime
  59. tagRetension_Force_Drop()
  60. {
  61. type = eZL_ALARMTYPE::RETENSION_FORCE;
  62. enable = true;
  63. }
  64. }RETENSION_FORCE_DROP;
  65. //有string 不能拷贝
  66. typedef struct tagAlarmInfo
  67. {
  68. uint32_t id; //报警唯一ID
  69. string mo; //监控对象
  70. string mp; //监控点
  71. uint8_t no; //通道
  72. eZL_ALARMTYPE type;//报警类型
  73. uint8_t level; //0 预警 1 报警
  74. SYSTEMTIME time; //报警时间
  75. string desc; //报警描述
  76. string suggest; //建议
  77. int val = 0;
  78. uint8_t ack_result = 0; //是否受理
  79. string ack_name; //受理人
  80. CTime ack_time; //受理时间
  81. string event_id; //事件ID
  82. string rel_id; //第一次报警id
  83. eDaoChaPosi posi = eDaoChaPosi::DCP_UNKNOWN; //方向
  84. eLowHigh loworhigh = eLowHigh::LH_UNKNOWN;
  85. int refer_val = 0; //报警参数值
  86. SYSTEMTIME recoveryTime = { 0 };
  87. uint32_t zzjno = 0;
  88. uint8_t sunroof = 0; //是否天窗
  89. }ALARM_INFO;
  90. //获取报警名称
  91. inline string GetAlarmName(eZL_ALARMTYPE id)
  92. {
  93. switch (id)
  94. {
  95. case eZL_ALARMTYPE::MAX_OVER_LIMIT:
  96. return "最大值超限";
  97. case eZL_ALARMTYPE::FRICTION_OVER_LIMIT:
  98. return "摩擦力超限";
  99. case eZL_ALARMTYPE::EQUIP_OFFLINE:
  100. return "设备离线";
  101. case eZL_ALARMTYPE::SENSOR_ABNORMAL:
  102. return "传感器异常";
  103. case eZL_ALARMTYPE::CONVERT_LIMIT:
  104. return "转换阻力超限";
  105. case eZL_ALARMTYPE::SUOBI_LOCK_LIMIT:
  106. return "锁闭力超限";
  107. case eZL_ALARMTYPE::RETENSION_FORCE:
  108. return "保持力异常告警";
  109. default:
  110. return "未知";
  111. }
  112. }
  113. typedef struct eCalcMoveInfo
  114. {
  115. string imei;
  116. uint8_t idx;
  117. string mo;
  118. string mp;
  119. eCalcMoveInfo(string a, uint8_t b, string c, string d)
  120. {
  121. imei = a;
  122. idx = b;
  123. mo = c;
  124. mp = d;
  125. }
  126. }CALC_MOVE_INFO;
  127. BOOL ConmpareValue(std::map<time_t, int>::const_iterator i, std::map<time_t, int>::const_iterator j, int refer_value, int& hight_num, int& low_num);
  128. class CResistAlarmMng
  129. {
  130. CResistAlarmMng();
  131. ~CResistAlarmMng();
  132. friend class CLWSServer;
  133. friend class CMGDataHandler;
  134. public:
  135. static CResistAlarmMng* Instance() { return &obj; }
  136. BOOL Start();
  137. void Stop();
  138. //BASE_INFO* Find(string momp, uint8_t no, uint8_t type);
  139. BASE_INFO* Find(string mo, string mp, uint8_t no, eZL_ALARMTYPE type);
  140. bool Insert(string mo, string mp, uint8_t no, uint8_t type, BASE_INFO* info);
  141. //bool Insert(const string& momp, uint8_t no, uint8_t type, BASE_INFO* info);
  142. //bool ConfirmAlarm(string mo, string mp, uint8_t no, uint8_t type, const SYSTEMTIME& st);
  143. //受理报警
  144. bool AckAlarm(int alarm_id, string& name, CTime& time);
  145. //处理报警
  146. bool HandleAlarm(int alarm_id);
  147. //外部调用产生报警
  148. void GeneralAlarm(string mo, string mp, uint8_t no, eZL_ALARMTYPE type, uint8_t level, SYSTEMTIME& tAlarm);
  149. //外部调用恢复报警
  150. void RecoverAlarm(const string mo, const string mp, const uint8_t no, const eZL_ALARMTYPE type, const uint8_t level, const SYSTEMTIME& tAlarm);
  151. static bool AlarmInfo2Pack(const ALARM_INFO* pAlarmInfo, rapidjson::StringBuffer& strBuf, bool bGb2312 = false);
  152. eZL_MP_STAT GetAlarmStat(string& mo, string& mp, SYSTEMTIME& stAlarm);
  153. inline void InsertCalcMoveInfo(string imei, uint8_t idx, string mo, string mp)
  154. {
  155. m_lstCalcMoveInfo.emplace_back(imei, idx, mo, mp);
  156. }
  157. //序列化
  158. uint32_t GeneralAlarmSet(uint8_t** pack, int* len);
  159. uint32_t GeneralUnAck(uint8_t** pack, int* len);
  160. static uint32_t GeneralNewAlarmData(ALARM_INFO *pAlarmInfo, uint8_t** pack, int* len);
  161. private:
  162. static CResistAlarmMng obj;
  163. static void InsertToDBByMove(string mo, string mp, time_t show_time, time_t start_time, time_t end_time,
  164. int curr_val, int show_val, uint8_t idx, uint8_t posi, uint8_t type, string mark);
  165. static void JudgeAlarm(CResistAlarmMng* pService, SUOBI_OVER_LIMIT_INFO* pSuobiOverInfo,
  166. time_t show_time, int show_val, eSuoBiPosi posi, string mo, string mp, uint32_t zzjno);
  167. static void JudgeAlarm(CResistAlarmMng* pService, CONVERT_RESIST_OVER_LIMIT* pConvertResistOverLimitInfo,
  168. time_t show_time, int show_val, eDaoChaPosi posi, eUpOrDownInfo eUpOrDown, string mo, string mp, uint32_t zzjno);
  169. static void JudgeAlarm(CResistAlarmMng* pService, RETENSION_FORCE_DROP* pRetensionForceDropInfo,
  170. time_t show_time, int show_val, eSuoBiPosi posi, string mo, string mp, uint32_t zzjno);
  171. static void JudgeAlarm1(CResistAlarmMng* pService, RETENSION_FORCE_DROP* pRetensionForceDropInfo,
  172. time_t show_time, int show_val, eSuoBiPosi posi, string mo, string mp, uint32_t zzjno);
  173. //判断报警,且保存数据
  174. static void JudgeAlarm(CResistAlarmMng* pService, RETENSION_FORCE_DROP* pConstRetensionForceWaveInfo,
  175. time_t show_time, int show_val, eSuoBiPosi posi, string mo, string mp, uint32_t zzjno, void* pMoMpInfo);
  176. //报警规则检测线程
  177. static void ThreadProcAlarmSet(DWORD_PTR);
  178. //设备报警检测线程
  179. static void ThreadProcDevice(DWORD_PTR);
  180. //扳动线程检测线程
  181. static void ThreadProcMove(DWORD_PTR);
  182. BOOL LoadAlarmSet();
  183. BOOL LoadAlarmID();
  184. BOOL LoadUnAck();
  185. //报警ID
  186. int m_nAlarmID = 0;
  187. time_t m_lastDetectTime = 0;
  188. time_t m_lastDetectMove = 0;
  189. time_t m_lastDetectDrop = 0;
  190. bool m_bWork = false;
  191. //报警规则检测线程
  192. std::thread *m_pThreadAlarmSet = nullptr;
  193. //设备报警检测线程
  194. std::thread* m_pThreadDevice = nullptr;
  195. //扳动线程检测
  196. std::thread* m_pThreadMove = nullptr;
  197. //计算阻力值和锁闭力值
  198. std::list<CALC_MOVE_INFO> m_lstCalcMoveInfo;
  199. //报警参数 mo.mp
  200. std::map<std::string, BASE_INFO*> m_alarm_set;
  201. //未确认报警
  202. std::mutex m_mtxAlarm;
  203. std::list<ALARM_INFO*> m_lstUnConfirmAlarm; //未受理报警和未恢复集合
  204. };