MostDevice.cpp 8.8 KB

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  1. // MostDevice.cpp : 定义 DLL 的初始化例程。
  2. //
  3. #include "stdafx.h"
  4. #include "MostDevice.h"
  5. #include "CommFactory.h"
  6. #include ".\mostdevice.h"
  7. #ifdef _DEBUG
  8. #define new DEBUG_NEW
  9. #endif
  10. // CMostDeviceApp
  11. BEGIN_MESSAGE_MAP(CMostDeviceApp, CWinApp)
  12. END_MESSAGE_MAP()
  13. // CMostDeviceApp 构造
  14. CMostDeviceApp::CMostDeviceApp()
  15. {
  16. // TODO: 在此处添加构造代码,
  17. // 将所有重要的初始化放置在 InitInstance 中
  18. }
  19. // 唯一的一个 CMostDeviceApp 对象
  20. CMostDeviceApp theApp;
  21. //CCommFactory *g_pObjCommFactory = NULL;
  22. typedef struct __COMM_FACTORY
  23. {
  24. CCommFactory *pObjCommFactory;
  25. int nCommPort;
  26. char szIniName[MAX_PATH]; // 配置文件名称
  27. }CommFactory;
  28. CommFactory g_tagCommFactory[MAX_DEVICE_NUM];//结构数组;
  29. // CMostDeviceApp 初始化
  30. BOOL CMostDeviceApp::InitInstance()
  31. {
  32. CWinApp::InitInstance();
  33. //清空所有的串口句柄 ;
  34. for( int i = 0; i < MAX_DEVICE_NUM; i++ )
  35. {
  36. g_tagCommFactory[i].pObjCommFactory = NULL;
  37. g_tagCommFactory[i].nCommPort = 0;
  38. memset( g_tagCommFactory[i].szIniName, 0, sizeof(g_tagCommFactory[i].szIniName) );
  39. }
  40. return TRUE;
  41. }
  42. int CMostDeviceApp::ExitInstance()
  43. {
  44. // TODO: 在此添加专用代码和/或调用基类
  45. //LOG4C((LOG_NOTICE , "ExitInstance退出"));
  46. return CWinApp::ExitInstance();
  47. }
  48. int GetCommFactoryIndex(int nCommPort, char szIniName[MAX_PATH])
  49. {
  50. int nIndex = -1;
  51. for( int i = 0; i < MAX_DEVICE_NUM; i++ )
  52. {
  53. if( strcmp(g_tagCommFactory[i].szIniName, szIniName) == 0 && nCommPort == g_tagCommFactory[i].nCommPort)
  54. {
  55. nIndex = i;//查找此串口设备,找到返回当前位置
  56. //LOG4C((LOG_NOTICE , "返回串口在数组中的位置 : %d",i));
  57. }
  58. }
  59. return nIndex;
  60. }
  61. int GetCommFactoryMaxIndex()
  62. {
  63. int nIndex = -1;
  64. for( int i = 0; i < MAX_DEVICE_NUM; i++ )
  65. {
  66. if( strcmp(g_tagCommFactory[i].szIniName, "") == 0 && g_tagCommFactory[i].nCommPort == 0 )
  67. {
  68. nIndex = i;//查找一个空的串口0 设备,并返回当前位置
  69. break;
  70. }
  71. }
  72. return nIndex;
  73. }
  74. // 大写转换成小写
  75. int StrLower(char *pSource, char *pDest)
  76. {
  77. int length, i;
  78. length = (int)strlen(pSource);
  79. for (i = 0; i < length; i++) {
  80. if ((pSource[i] >= 'A') && (pSource[i] <= 'Z'))
  81. {
  82. pDest[i] = _tolower(pSource[i]);
  83. }
  84. else
  85. pDest[i] = pSource[i];
  86. }
  87. return 0;
  88. }
  89. BOOL DLL_MostDeviceInit(
  90. char szPath[MAX_PATH], // 程序所在路径
  91. char szIniName[MAX_PATH], // 配置文件名称
  92. int nCommPort, // 串行端口
  93. int nAddr, // 设备地址
  94. int nRate, // 波特率
  95. int nDataBit, // 数据位
  96. int nStopBit, // 停止位
  97. int nParity, // 校验位
  98. int nInterval // 时间间隔
  99. )
  100. {
  101. //LOG4C((LOG_NOTICE,"DLL_MostDeviceInit szIniName = %s, nCommPort = %d ,nAddr = %d, nRate = %d",szIniName,nCommPort,nAddr,nRate));
  102. BOOL bResult = FALSE;
  103. int nIndex = GetCommFactoryIndex(nCommPort, szIniName); //获取串口信息,如果返回-1(没有此串口设备)
  104. //返回-1,没有此设备,重新添加到生产类集合中;
  105. if( nIndex == -1 )
  106. {
  107. //返回当前空口串口0 设备位置,将当前的设备打入
  108. nIndex = GetCommFactoryMaxIndex();
  109. strcpy(g_tagCommFactory[nIndex].szIniName, szIniName);
  110. g_tagCommFactory[nIndex].nCommPort = nCommPort;
  111. if( g_tagCommFactory[nIndex].pObjCommFactory == NULL )
  112. {
  113. g_tagCommFactory[nIndex].pObjCommFactory = new CCommFactory(); //新建串口句柄;
  114. //新建串句柄,打开串口
  115. //LOG4C((LOG_NOTICE, "新建串句柄,打开串口"));
  116. bResult = g_tagCommFactory[nIndex].pObjCommFactory->CreateDeviceCommunication(
  117. szPath,
  118. szIniName,
  119. nCommPort,
  120. nAddr,
  121. nRate,
  122. nDataBit,
  123. nStopBit,
  124. nParity,
  125. nInterval
  126. );
  127. if( FALSE == bResult )//打开串口失败,从队列中删除
  128. {
  129. LOG4C((LOG_NOTICE , "打开串口失败,从队列中删除"));
  130. delete g_tagCommFactory[nIndex].pObjCommFactory;
  131. g_tagCommFactory[nIndex].pObjCommFactory = NULL;
  132. g_tagCommFactory[nIndex].nCommPort = 0;
  133. memset(g_tagCommFactory[nIndex].szIniName, 0, sizeof(g_tagCommFactory[nIndex].szIniName));
  134. }
  135. }
  136. }
  137. else //该串口句柄存在;
  138. {
  139. if( g_tagCommFactory[nIndex].pObjCommFactory )
  140. {
  141. bResult = TRUE;
  142. }
  143. }
  144. return bResult;
  145. }
  146. //退出线程,销毁串口句柄;
  147. void DLL_MostDeviceUnInit(
  148. char szPath[MAX_PATH], // 程序所在路径
  149. char szIniName[MAX_PATH], // 配置文件名称
  150. int nCommPort // 串行端口
  151. )
  152. {
  153. //查找(获取)当前串口,获取当前串口位置
  154. int nIndex = GetCommFactoryIndex(nCommPort, szIniName);
  155. if( nIndex == -1 ) return;
  156. //删除串口句柄;
  157. if( g_tagCommFactory[nIndex].pObjCommFactory != NULL )
  158. {
  159. g_tagCommFactory[nIndex].pObjCommFactory->DestroyDeviceCommnication(szPath, szIniName, nCommPort);
  160. delete g_tagCommFactory[nIndex].pObjCommFactory;
  161. g_tagCommFactory[nIndex].pObjCommFactory = NULL;
  162. }
  163. }
  164. int DLL_MostDeviceRead(
  165. char szPath[MAX_PATH], // 程序所在路径
  166. char szIniName[MAX_PATH], // 配置文件名称
  167. int nCommPort, // 串行端口
  168. int nAddr, // 设备地址
  169. char szCmd[MAX_CMD], // 请求命令
  170. char szMsg[VAR_MSG], // 响应的值
  171. int nReversed1, // 预留整形参数1接口
  172. int nReversed2, // 预留整形参数2接口
  173. int nReversed3, // 预留整形参数3接口
  174. int nReversed4, // 预留整形参数4接口
  175. int nReversed5, // 预留整形参数5接口
  176. float fReversed1, // 预留float参数1接口
  177. float fReversed2, // 预留float参数2接口
  178. float fReversed3, // 预留float参数3接口
  179. char szReversed1[MAX_RESERVED1], // 预留字符数组参数1接口
  180. char szReversed2[MAX_RESERVED2], // 预留字符数组参数2接口
  181. char szReversed3[MAX_RESERVED3], // 预留字符数组参数3接口
  182. char szReversed4[MAX_RESERVED4], // 预留字符数组参数4接口
  183. char szReversed5[MAX_RESERVED5] // 预留字符数组参数5接口
  184. )
  185. {
  186. //LOG4C((LOG_NOTICE, "DLL_MostDeviceRead szPath = %s,szIniName = %s , nCommPort = %d", szPath, szIniName ,nCommPort));
  187. char szTmpIniName[MAX_PATH] = {0};
  188. StrLower(szIniName,szTmpIniName);
  189. int nRet = -1;
  190. int nIndex = GetCommFactoryIndex(nCommPort, szIniName);//读取操作时,先判断是哪个串口句柄;
  191. if( nIndex == -1 )
  192. {
  193. LOG4C((LOG_NOTICE,"串口位置为-1"));
  194. return nRet;
  195. }
  196. if( g_tagCommFactory[nIndex].pObjCommFactory )//相应串口句柄;
  197. {
  198. //LOG4C((LOG_NOTICE, "读接口!"));
  199. nRet = g_tagCommFactory[nIndex].pObjCommFactory->SendReadRequest( szPath,
  200. szIniName,
  201. nCommPort,
  202. nAddr,
  203. szCmd,
  204. szMsg,
  205. nReversed1,
  206. nReversed2,
  207. nReversed3,
  208. nReversed4,
  209. nReversed5,
  210. fReversed1,
  211. fReversed2,
  212. fReversed3,
  213. szReversed1,
  214. szReversed2,
  215. szReversed3,
  216. szReversed4,
  217. szReversed5 );
  218. }
  219. return nRet;
  220. }
  221. int DLL_MostDeviceSet(
  222. char szPath[MAX_PATH], // 程序所在路径
  223. char szIniName[MAX_PATH], // 配置文件名称
  224. int nCommPort, // 串行端口
  225. int nAddr, // 设备地址
  226. char szCmd[MAX_CMD], // 请求命令
  227. char szMsg[VAR_MSG], // 写入设备里的值
  228. int nReversed1, // 预留整形参数1接口
  229. int nReversed2, // 预留整形参数2接口
  230. int nReversed3, // 预留整形参数3接口
  231. int nReversed4, // 预留整形参数4接口
  232. int nReversed5, // 预留整形参数5接口
  233. float fReversed1, // 预留float参数1接口
  234. float fReversed2, // 预留float参数2接口
  235. float fReversed3, // 预留float参数3接口
  236. char szReversed1[MAX_RESERVED1], // 预留字符数组参数1接口
  237. char szReversed2[MAX_RESERVED2], // 预留字符数组参数2接口
  238. char szReversed3[MAX_RESERVED3], // 预留字符数组参数3接口
  239. char szReversed4[MAX_RESERVED4], // 预留字符数组参数4接口
  240. char szReversed5[MAX_RESERVED5] // 预留字符数组参数5接口
  241. )
  242. {
  243. //LOG4C((LOG_NOTICE , "DLL_MostDeviceSet"));
  244. char szTmpIniName[MAX_PATH] = {0};
  245. StrLower(szIniName,szTmpIniName);
  246. int nRet = -1;
  247. int nIndex = GetCommFactoryIndex(nCommPort, szIniName);//写操作之前,判断串口句柄;
  248. if( nIndex == -1 ) return nRet;
  249. if( g_tagCommFactory[nIndex].pObjCommFactory )//相应串口句柄;
  250. {
  251. nRet = g_tagCommFactory[nIndex].pObjCommFactory->SendSetReuest( szPath,
  252. szIniName,
  253. nCommPort,
  254. nAddr,
  255. szCmd,
  256. szMsg,
  257. nReversed1,
  258. nReversed2,
  259. nReversed3,
  260. nReversed4,
  261. nReversed5,
  262. fReversed1,
  263. fReversed2,
  264. fReversed3,
  265. szReversed1,
  266. szReversed2,
  267. szReversed3,
  268. szReversed4,
  269. szReversed5 );
  270. }
  271. return nRet;
  272. }