wizardInputs.cpp 45 KB

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  1. /*#############################################################################
  2. HPCC SYSTEMS software Copyright (C) 2012 HPCC Systems.
  3. Licensed under the Apache License, Version 2.0 (the "License");
  4. you may not use this file except in compliance with the License.
  5. You may obtain a copy of the License at
  6. http://www.apache.org/licenses/LICENSE-2.0
  7. Unless required by applicable law or agreed to in writing, software
  8. distributed under the License is distributed on an "AS IS" BASIS,
  9. WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  10. See the License for the specific language governing permissions and
  11. limitations under the License.
  12. #############################################################################*/
  13. /////////////////////////////////////////////////////////////////////////////
  14. //
  15. // WizardInputs.cpp : implementation file
  16. //
  17. /////////////////////////////////////////////////////////////////////////////
  18. #include "wizardInputs.hpp"
  19. #include "XMLTags.h"
  20. #include "jencrypt.hpp"
  21. #include "buildset.hpp"
  22. #include "confighelper.hpp"
  23. #include "build-config.h"
  24. #define STANDARD_CONFIGXMLDIR COMPONENTFILES_DIR"/configxml/"
  25. #define STANDARD_CONFIG_DIR CONFIG_DIR
  26. //---------------------------------------------------------------------------
  27. // CWizardInputs
  28. //---------------------------------------------------------------------------
  29. CWizardInputs::CWizardInputs(const char* xmlArg,const char *service,
  30. IPropertyTree * cfg,
  31. MapStringTo<StringBuffer>* dirMap): m_service(service),
  32. m_cfg(cfg), m_overrideDirs(dirMap), m_roxieOnDemand(true),
  33. m_supportNodes(0)
  34. {
  35. m_pXml.setown(createPTreeFromXMLString(xmlArg && *xmlArg ? xmlArg : "<XmlArgs/>"));
  36. }
  37. //----------------------------------------------------------------------
  38. CWizardInputs::~CWizardInputs()
  39. {
  40. m_pXml.clear();
  41. HashIterator info(m_invalidServerCombo);
  42. for(info.first();info.isValid();info.next())
  43. {
  44. StringArray *a = *m_invalidServerCombo.mapToValue(&info.query());
  45. delete a;
  46. }
  47. HashIterator iter(m_compIpMap);
  48. ForEach(iter)
  49. {
  50. IMapping &cur = iter.query();
  51. CInstDetails* pInfo = m_compIpMap.mapToValue(&cur);
  52. pInfo->Release();
  53. }
  54. HashIterator sIter(m_compForTopology);
  55. for(sIter.first();sIter.isValid();sIter.next())
  56. {
  57. StringArray* a = *m_compForTopology.mapToValue(&sIter.query());
  58. delete a;
  59. }
  60. }
  61. //-----------------------------------------------------------------------
  62. // SetEnvironment
  63. //-----------------------------------------------------------------------
  64. void CWizardInputs::setEnvironment()
  65. {
  66. StringBuffer xpath;
  67. if(m_pXml->hasProp("@ipList"))
  68. formIPList(m_pXml->queryProp("@ipList"), m_ipaddress);
  69. if(m_pXml->hasProp("@supportNodes"))
  70. {
  71. m_supportNodes = atoi(m_pXml->queryProp("@supportNodes"));
  72. if (m_supportNodes)
  73. {
  74. if (m_ipaddress.length() > 0 && m_ipaddress.length() > m_supportNodes)
  75. {
  76. for(unsigned i = 0; i < m_supportNodes; i++)
  77. m_ipaddressSupport.append(m_ipaddress.item(i));
  78. m_ipaddress.removen(0, m_supportNodes);
  79. }
  80. else
  81. m_supportNodes = 0;
  82. }
  83. }
  84. if(m_pXml->hasProp("@roxieNodes"))
  85. m_roxieNodes = atoi(m_pXml->queryProp("@roxieNodes"));
  86. if(m_pXml->hasProp("@thorNodes"))
  87. m_thorNodes = atoi(m_pXml->queryProp("@thorNodes"));
  88. if(m_pXml->hasProp("@dbuser"))
  89. m_dbuser = m_pXml->queryProp("@dbuser");
  90. if(m_pXml->hasProp("@dbpassword"))
  91. m_dbpassword = m_pXml->queryProp("@dbpassword");
  92. m_thorSlavesPerNode = 1;
  93. if(m_pXml->hasProp("@slavesPerNode"))
  94. m_thorSlavesPerNode = atoi( m_pXml->queryProp("@slavesPerNode"));
  95. if (m_thorSlavesPerNode < 1)
  96. m_thorSlavesPerNode = 1;
  97. m_roxieOnDemand = m_pXml->getPropBool("@roxieOnDemand", true);
  98. xpath.clear().appendf("Software/EspProcess/EspService[@name='%s']/LocalConfFile", m_service.str());
  99. const char* pConfFile = m_cfg->queryProp(xpath.str());
  100. xpath.clear().appendf("Software/EspProcess/EspService[@name='%s']/LocalEnvConfFile", m_service.str());
  101. const char* pEnvConfFile = m_cfg->queryProp(xpath.str());
  102. if (pConfFile && *pConfFile && pEnvConfFile && *pEnvConfFile)
  103. {
  104. Owned<IProperties> pParams = createProperties(pConfFile);
  105. Owned<IProperties> pEnvParams = createProperties(pEnvConfFile);
  106. StringBuffer sb, fileName;
  107. CConfigHelper *pConfigHelper = CConfigHelper::getInstance(m_cfg, m_service.str());
  108. if (pConfigHelper == NULL)
  109. {
  110. throw MakeStringException( -1 , "Error loading buildset from configuration");
  111. }
  112. IPropertyTree* pBuildSet = pConfigHelper->getBuildSetTree();
  113. if (strlen(pConfigHelper->getBuildSetFileName()) == 0 || pBuildSet == NULL)
  114. {
  115. throw MakeStringException( -1 , "The buildset file %s/%s does not exist", pConfigHelper->getBuildSetFilePath(), pConfigHelper->getBuildSetFileName());
  116. }
  117. m_buildSetTree.setown(pBuildSet);
  118. fileName.clear().append((pEnvParams->queryProp("configs") != NULL ? (sb.clear().append(pEnvParams->queryProp("configs")).append("/")): STANDARD_CONFIG_DIR));
  119. fileName.append((pParams->queryProp("wizardalgorithm") != NULL ? (sb.clear().append(pParams->queryProp("wizardalgorithm"))) : STANDARD_CONFIG_ALGORITHMFILE));
  120. if(fileName.length() && checkFileExists(fileName.str()))
  121. m_algProp.setown(createProperties(fileName.str()));
  122. else
  123. throw MakeStringException( -1 , "The algorithm file %s does not exists", fileName.str());
  124. }
  125. setWizardRules();
  126. setTopologyParam();
  127. }
  128. void CWizardInputs::setWizardRules()
  129. {
  130. const char* roxieRedTypes[] = {"Full", "Circular", "None", "Overloaded"};
  131. m_roxieAgentRedType.clear().append("Circular");
  132. m_roxieAgentRedChannels = 2;
  133. m_roxieAgentRedOffset = 1;
  134. if(m_algProp)
  135. {
  136. CConfigHelper::getInstance()->addPluginsToGenEnvRules(m_algProp.get());
  137. Owned<IPropertyIterator> iter = m_algProp->getIterator();
  138. StringBuffer prop;
  139. ForEach(*iter)
  140. {
  141. m_algProp->getProp(iter->getPropKey(), prop.clear());
  142. if(prop.length() && prop.charAt(prop.length()-1) == ',')
  143. prop.setCharAt((prop.length()-1),' ');
  144. if(!strcmp(iter->getPropKey(), "max_comps_per_node"))
  145. {
  146. m_maxCompOnNode = atoi(prop.str());
  147. }
  148. else if(!strcmp(iter->getPropKey(), "avoid_combo"))
  149. {
  150. StringArray pairValue;
  151. pairValue.appendList(prop.str(), ",");
  152. if( pairValue.ordinality() > 0)
  153. {
  154. for( unsigned i = 0; i < pairValue.ordinality() ; i++)
  155. {
  156. StringArray eachpair;
  157. eachpair.appendList(pairValue.item(i), "-");
  158. if(eachpair.ordinality() == 2 )
  159. {
  160. StringArray* serverCompArr = 0;
  161. ForEachItemIn(x, eachpair)
  162. {
  163. StringArrayPtr* pairServerArr = m_invalidServerCombo.getValue(eachpair.item(x));
  164. if(pairServerArr)
  165. {
  166. serverCompArr = (*pairServerArr);
  167. serverCompArr->append(x == 0 ? eachpair.item(1): eachpair.item(0));
  168. }
  169. else
  170. {
  171. serverCompArr = new StringArray();
  172. serverCompArr->append(x == 0 ? eachpair.item(1): eachpair.item(0));
  173. m_invalidServerCombo.setValue(eachpair.item(x),serverCompArr);
  174. }
  175. }
  176. }
  177. }
  178. }
  179. }
  180. else if(!strcmp (iter->getPropKey(),"do_not_generate"))
  181. m_doNotGenComp.appendList(prop.str(), ",");
  182. else if(!strcmp (iter->getPropKey(),"comps_on_all_nodes"))
  183. m_compOnAllNodes.appendList(prop.str(), ",");
  184. else if(!strcmp(iter->getPropKey(), "topology_for_comps"))
  185. m_clusterForTopology.appendList(prop.str(), ",");
  186. else if (!strcmp(iter->getPropKey(), "roxie_agent_redundancy"))
  187. {
  188. StringArray sbarr;
  189. sbarr.appendList(prop.str(), ",");
  190. if (sbarr.length() > 1)
  191. {
  192. int type = atoi(sbarr.item(0));
  193. if (type == 0)
  194. continue;
  195. if (type > 0 && type < 5)
  196. m_roxieAgentRedType.clear().append(roxieRedTypes[type-1]);
  197. else
  198. continue;
  199. m_roxieAgentRedChannels = atoi(sbarr.item(1));
  200. if (m_roxieAgentRedChannels <= 0)
  201. m_roxieAgentRedChannels = 1;
  202. if (sbarr.length() > 2)
  203. {
  204. m_roxieAgentRedOffset = atoi(sbarr.item(2));
  205. if (m_roxieAgentRedOffset <= 0)
  206. m_roxieAgentRedOffset = 1;
  207. }
  208. else
  209. m_roxieAgentRedOffset = 0;
  210. }
  211. }
  212. }
  213. }
  214. }
  215. CInstDetails* CWizardInputs::getServerIPMap(const char* compName, const char* buildSetName,const IPropertyTree* pEnvTree, unsigned numOfNodes)
  216. {
  217. StringBuffer xPath;
  218. xPath.appendf("./Programs/Build/BuildSet[@name=\"%s\"]",buildSetName);
  219. IPropertyTree* pBuildSet = pEnvTree->queryPropTree(xPath.str());
  220. CInstDetails* instDetails = NULL;
  221. if(pBuildSet)
  222. {
  223. if(m_doNotGenComp.find(buildSetName) != NotFound)
  224. return instDetails;
  225. if(m_compOnAllNodes.find(buildSetName) != NotFound)
  226. return instDetails;
  227. if (m_ipaddress.ordinality() + m_supportNodes == 1)
  228. {
  229. instDetails = new CInstDetails(compName, m_ipaddress.item(0));
  230. m_compIpMap.setValue(buildSetName,instDetails);
  231. return instDetails;
  232. }
  233. else if (m_supportNodes == 1 && strcmp(buildSetName, "roxie") && strcmp(buildSetName, "thor" ))
  234. {
  235. instDetails = new CInstDetails(compName, m_ipaddressSupport.item(0));
  236. m_compIpMap.setValue(buildSetName,instDetails);
  237. return instDetails;
  238. }
  239. else
  240. {
  241. unsigned x = 0;
  242. for(; x < numOfNodes ; x++)
  243. {
  244. StringArray* pIpAddrMap = NULL;
  245. if (x == 0 && m_supportNodes > 0 && !strcmp(buildSetName, "thor"))
  246. pIpAddrMap = &m_ipaddressSupport;
  247. else
  248. pIpAddrMap = &getIpAddrMap(buildSetName);
  249. unsigned numOfIPSAlreadyTaken = getCntForAlreadyAssignedIPS(buildSetName);
  250. if( numOfIPSAlreadyTaken < pIpAddrMap->ordinality())
  251. addToCompIPMap(buildSetName, pIpAddrMap->item(numOfIPSAlreadyTaken), compName);
  252. else if (!applyOverlappingRules(compName, buildSetName, numOfIPSAlreadyTaken, pIpAddrMap))
  253. break;
  254. }
  255. if(m_compIpMap.find(buildSetName) != NULL)
  256. {
  257. instDetails = m_compIpMap.getValue(buildSetName);
  258. if( (instDetails->getIpAssigned()).ordinality() != numOfNodes)
  259. {
  260. StringBuffer sb("support");
  261. StringBuffer sbBuildSet(buildSetName);
  262. unsigned ips = m_ipaddressSupport.length();
  263. unsigned ipns = m_ipaddress.length();
  264. if (!strcmp(buildSetName, "thor") && m_supportNodes > 0)
  265. {
  266. if (x == 0)
  267. {
  268. sb.clear().append(m_supportNodes == 0?"non-support":"support");
  269. sbBuildSet.clear().append("Thor Master");
  270. numOfNodes = 1;
  271. }
  272. else
  273. {
  274. sb.clear().append("non-support");
  275. sbBuildSet.clear().append("Thor Slaves");
  276. numOfNodes--;
  277. }
  278. }
  279. else if (!strcmp(buildSetName, "roxie"))
  280. sb.clear().append("non-support ");
  281. throw MakeStringException(-1, \
  282. "Total nodes: %d (%d Support Nodes + %d Non-support Nodes)\nError: Cannot assign %d number of nodes for %s due to insufficient %s nodes available. Please enter different values", \
  283. ips + ipns, ips, ipns, numOfNodes, sbBuildSet.str(), sb.str());
  284. }
  285. else{
  286. return m_compIpMap.getValue(buildSetName);
  287. }
  288. }
  289. }
  290. return instDetails;
  291. }
  292. return NULL;
  293. }
  294. bool CWizardInputs::applyOverlappingRules(const char* compName,const char* buildSetName, unsigned startpos, StringArray* pIpAddrMap)
  295. {
  296. StringArray dontAssign , ignoredForOverlap;
  297. bool assignedIP = false;
  298. CInstDetails* compPtr = NULL;
  299. if(m_invalidServerCombo.find(buildSetName) != NULL)
  300. {
  301. StringArray* serverCompArr = 0;
  302. StringArrayPtr* pairServerArr = m_invalidServerCombo.getValue(buildSetName);
  303. if(pairServerArr)
  304. serverCompArr = (*pairServerArr);
  305. for(unsigned i = 0 ; i < serverCompArr->ordinality() ; i++)
  306. {
  307. compPtr = m_compIpMap.getValue(serverCompArr->item(i));
  308. if(compPtr)
  309. {
  310. StringArray& ipArr = compPtr->getIpAssigned();
  311. ForEachItemIn(i, ipArr)
  312. dontAssign.append(ipArr.item(i));
  313. }
  314. }
  315. }
  316. //Since Roxie and thor might already have some ips asssigned we need to ignore those too.
  317. if(m_compIpMap.find(buildSetName) != NULL)
  318. {
  319. compPtr = m_compIpMap.getValue(buildSetName);
  320. StringArray& ipArr = compPtr->getIpAssigned();
  321. ForEachItemIn(i, ipArr)
  322. dontAssign.append(ipArr.item(i));
  323. }
  324. unsigned pos = startpos % pIpAddrMap->ordinality();
  325. for (unsigned j=pos; j < pos + pIpAddrMap->ordinality(); j++)
  326. {
  327. unsigned ii = (j >= pIpAddrMap->ordinality()) ? 0 : j;
  328. count_t ipAssignedCount = getNumOfInstForIP(pIpAddrMap->item(ii));
  329. if(dontAssign.ordinality() > 0)
  330. {
  331. if( dontAssign.find(pIpAddrMap->item(ii)) == NotFound)
  332. {
  333. if(ipAssignedCount >= m_maxCompOnNode )
  334. {
  335. ignoredForOverlap.append(pIpAddrMap->item(ii));
  336. }
  337. else
  338. {
  339. assignedIP = true;
  340. addToCompIPMap(buildSetName, pIpAddrMap->item(ii), compName);
  341. break;
  342. }
  343. }
  344. }
  345. else
  346. {
  347. if(ipAssignedCount >= m_maxCompOnNode )
  348. {
  349. ignoredForOverlap.append(pIpAddrMap->item(ii));
  350. }
  351. else
  352. {
  353. assignedIP = true;
  354. addToCompIPMap(buildSetName, pIpAddrMap->item(ii), compName);
  355. break;
  356. }
  357. }
  358. }
  359. if(!assignedIP && ignoredForOverlap.ordinality() > 0)
  360. {
  361. addToCompIPMap(buildSetName, ignoredForOverlap.item(0), compName);
  362. assignedIP = true;
  363. }
  364. return assignedIP;
  365. }
  366. count_t CWizardInputs::getNumOfInstForIP(StringBuffer ip)
  367. {
  368. count_t cnt = 0;
  369. HashIterator ips(m_compIpMap);
  370. ForEach(ips)
  371. {
  372. CInstDetails* comp = m_compIpMap.mapToValue(&ips.query());
  373. StringArray& ipArray = comp->getIpAssigned();
  374. if(ipArray.find(ip) != NotFound)
  375. cnt++;
  376. }
  377. return cnt;
  378. }
  379. bool CWizardInputs::generateEnvironment(StringBuffer& envXml)
  380. {
  381. if(m_algProp)
  382. {
  383. Owned<IPropertyTree> pEnvTree = createEnvironment();
  384. if(pEnvTree)
  385. {
  386. toXML(pEnvTree,envXml, 0, XML_SortTags | XML_Format);
  387. }
  388. }
  389. else
  390. {
  391. DBGLOG("not yet decided");//use default algorithm
  392. }
  393. return true;
  394. }
  395. IPropertyTree* CWizardInputs::createEnvironment()
  396. {
  397. StringBuffer xpath, sbTemp, name ;
  398. sbTemp.clear().appendf("<%s><%s></%s>", XML_HEADER, XML_TAG_ENVIRONMENT, XML_TAG_ENVIRONMENT);
  399. IPropertyTree* pNewEnvTree = createPTreeFromXMLString(sbTemp.str());
  400. IPropertyTree* pSettings = pNewEnvTree->addPropTree(XML_TAG_ENVSETTINGS, createPTree());
  401. xpath.clear().appendf("%s/%s/%s[%s='%s']/LocalEnvFile", XML_TAG_SOFTWARE, XML_TAG_ESPPROCESS, XML_TAG_ESPSERVICE, XML_ATTR_NAME, m_service.str());
  402. const char* pConfFile = m_cfg->queryProp(xpath.str());
  403. xpath.clear().appendf("%s/%s/%s[%s='%s']/LocalEnvConfFile", XML_TAG_SOFTWARE, XML_TAG_ESPPROCESS, XML_TAG_ESPSERVICE, XML_ATTR_NAME, m_service.str());
  404. const char* tmp = m_cfg->queryProp(xpath.str());
  405. if (tmp && *tmp)
  406. {
  407. Owned<IProperties> pParams = createProperties(tmp);
  408. Owned<IPropertyIterator> iter = pParams->getIterator();
  409. ForEach(*iter)
  410. {
  411. StringBuffer prop;
  412. pParams->getProp(iter->getPropKey(), prop);
  413. pSettings->addProp(iter->getPropKey(), prop.length() ? prop.str():"");
  414. }
  415. }
  416. Owned<IPropertyTree> pProgramTree = createPTreeFromIPT(m_buildSetTree);
  417. pNewEnvTree->addPropTree(XML_TAG_PROGRAMS, createPTreeFromIPT(pProgramTree->queryPropTree("./" XML_TAG_PROGRAMS)));
  418. Owned<IPropertyTree> pCompTree = createPTree(XML_TAG_HARDWARE);
  419. generateHardwareHeaders(pNewEnvTree, sbTemp, false, pCompTree);
  420. pCompTree->removeProp(XML_TAG_COMPUTER);
  421. xpath.clear().appendf("./%s/%s", XML_TAG_COMPUTERTYPE, XML_ATTR_MEMORY);
  422. pCompTree->removeProp(xpath.str());
  423. xpath.clear().appendf("./%s/%s", XML_TAG_COMPUTERTYPE, XML_ATTR_NICSPEED);
  424. pCompTree->removeProp(xpath.str());
  425. xpath.clear().append(XML_TAG_SWITCH).append("/").append(XML_ATTR_NAME);
  426. pCompTree->setProp(xpath.str(), "Switch") ;
  427. xpath.clear().append(XML_TAG_DOMAIN).append("/").append(XML_ATTR_NAME);
  428. pCompTree->setProp(xpath.str(), "localdomain");
  429. xpath.clear().append(XML_TAG_DOMAIN).append("/").append(XML_ATTR_PASSWORD);
  430. pCompTree->setProp(xpath.str(), m_pXml->queryProp("@password"));
  431. xpath.clear().append(XML_TAG_DOMAIN).append("/").append(XML_ATTR_USERNAME);
  432. pCompTree->setProp(xpath.str(), m_pXml->queryProp("@username"));
  433. xpath.clear().appendf("./%s/@snmpSecurityString", XML_TAG_DOMAIN);
  434. pCompTree->removeProp(xpath.str());
  435. xpath.clear().append(XML_TAG_COMPUTERTYPE).append("/").append(XML_ATTR_COMPUTERTYPE);
  436. pCompTree->setProp(xpath.str(), "linuxmachine");
  437. xpath.clear().append(XML_TAG_COMPUTERTYPE).append("/").append(XML_ATTR_MANUFACTURER);
  438. pCompTree->setProp(xpath.str(), "unknown");
  439. xpath.clear().append(XML_TAG_COMPUTERTYPE).append("/").append(XML_ATTR_NAME);
  440. pCompTree->setProp(xpath.str(), "linuxmachine");
  441. xpath.clear().append(XML_TAG_COMPUTERTYPE).append("/").append(XML_ATTR_OPSYS);
  442. pCompTree->setProp(xpath.str(), "linux");
  443. xpath.clear().append(XML_TAG_COMPUTERTYPE).append("/").append(XML_ATTR_NICSPEED);
  444. pCompTree->setProp(xpath.str(), "1000");
  445. unsigned x;
  446. IpAddress ipaddr;
  447. for(unsigned i = 0; i < m_ipaddressSupport.ordinality(); i++)
  448. {
  449. IPropertyTree* pComputer = pCompTree->addPropTree(XML_TAG_COMPUTER,createPTree());
  450. ipaddr.ipset(m_ipaddressSupport.item(i));
  451. ipaddr.getNetAddress(sizeof(x),&x);
  452. name.clear().appendf("node%03d%03d", (x >> 16) & 0xFF, (x >> 24) & 0xFF);
  453. getUniqueName(pCompTree, name, XML_TAG_COMPUTER, "");
  454. pComputer->addProp(XML_ATTR_COMPUTERTYPE, "linuxmachine");
  455. pComputer->addProp(XML_ATTR_DOMAIN, "localdomain");
  456. pComputer->addProp(XML_ATTR_NAME, name.str());
  457. pComputer->addProp(XML_ATTR_NETADDRESS, m_ipaddressSupport.item(i));
  458. }
  459. for(unsigned i = 0; i < m_ipaddress.ordinality(); i++)
  460. {
  461. IPropertyTree* pComputer = pCompTree->addPropTree(XML_TAG_COMPUTER,createPTree());
  462. ipaddr.ipset(m_ipaddress.item(i));
  463. ipaddr.getNetAddress(sizeof(x),&x);
  464. name.clear().appendf("node%03d%03d", (x >> 16) & 0xFF, (x >> 24) & 0xFF);
  465. getUniqueName(pCompTree, name, XML_TAG_COMPUTER, "");
  466. pComputer->addProp(XML_ATTR_COMPUTERTYPE, "linuxmachine");
  467. pComputer->addProp(XML_ATTR_DOMAIN, "localdomain");
  468. pComputer->addProp(XML_ATTR_NAME, name.str());
  469. pComputer->addProp(XML_ATTR_NETADDRESS, m_ipaddress.item(i));
  470. }
  471. pNewEnvTree->addPropTree(XML_TAG_HARDWARE, createPTreeFromIPT(pCompTree));
  472. //Before we generate software tree check for dependencies of component for do_not_generate ,roxie, thor
  473. checkForDependencies();
  474. generateSoftwareTree(pNewEnvTree);
  475. return pNewEnvTree;
  476. }
  477. void CWizardInputs::generateSoftwareTree(IPropertyTree* pNewEnvTree)
  478. {
  479. StringBuffer xpath;
  480. if(m_buildSetTree)
  481. {
  482. bool ovrLog = true, ovrRun = true;
  483. if (m_overrideDirs && m_overrideDirs->count() > 0)
  484. {
  485. HashIterator iter(*m_overrideDirs);
  486. ForEach(iter)
  487. {
  488. IMapping &cur = iter.query();
  489. StringBuffer* dirvalue = m_overrideDirs->mapToValue(&cur);
  490. const char * key = (const char*)cur.getKey();
  491. xpath.clear().appendf(XML_TAG_SOFTWARE"/Directories/Category[@name='%s']", key);
  492. if (!strcmp(key, "log"))
  493. ovrLog = false;
  494. else if (!strcmp(key, "run"))
  495. ovrRun = false;
  496. IPropertyTree* pDir = m_buildSetTree->queryPropTree(xpath.str());
  497. if (pDir)
  498. pDir->setProp("@dir", dirvalue->str());
  499. else
  500. {
  501. pDir = m_buildSetTree->queryPropTree(XML_TAG_SOFTWARE"/Directories/")->addPropTree("Category", createPTree());
  502. pDir->setProp(XML_ATTR_NAME, (const char*)cur.getKey());
  503. pDir->setProp("@dir", dirvalue->str());
  504. }
  505. }
  506. }
  507. pNewEnvTree->addPropTree(XML_TAG_SOFTWARE,createPTreeFromIPT(m_buildSetTree->queryPropTree("./" XML_TAG_SOFTWARE)));
  508. xpath.clear().appendf("%s/%s/%s[%s='%s']/LocalEnvConfFile", XML_TAG_SOFTWARE, XML_TAG_ESPPROCESS, XML_TAG_ESPSERVICE, XML_ATTR_NAME, m_service.str());
  509. const char* tmp = m_cfg->queryProp(xpath.str());
  510. if (tmp && *tmp)
  511. {
  512. Owned<IProperties> pParams = createProperties(tmp);
  513. updateDirsWithConfSettings(pNewEnvTree, pParams, ovrLog, ovrRun);
  514. }
  515. const char* firstComp = "esp";
  516. xpath.clear().appendf("./%s/%s/%s/[@name=\"%s\"]", XML_TAG_PROGRAMS, XML_TAG_BUILD, XML_TAG_BUILDSET, firstComp);
  517. IPropertyTree* pEspBuildSet = m_buildSetTree->queryPropTree(xpath.str());
  518. if (pEspBuildSet)
  519. addComponentToSoftware(pNewEnvTree, pEspBuildSet);
  520. xpath.clear().appendf("./%s/%s/%s", XML_TAG_PROGRAMS, XML_TAG_BUILD, XML_TAG_BUILDSET);
  521. Owned<IPropertyTreeIterator> buildSetInsts = m_buildSetTree->getElements(xpath.str());
  522. ForEach(*buildSetInsts)
  523. {
  524. IPropertyTree* pBuildSet = &buildSetInsts->query();
  525. const char* buildSetName = pBuildSet->queryProp(XML_ATTR_NAME);
  526. if (strcmp(firstComp, buildSetName))
  527. addComponentToSoftware(pNewEnvTree, &buildSetInsts->query());
  528. }
  529. getEspBindingInformation(pNewEnvTree);
  530. addTopology(pNewEnvTree);
  531. getDefaultsForWizard(pNewEnvTree);
  532. }
  533. }
  534. void CWizardInputs::addInstanceToTree(IPropertyTree* pNewEnvTree, StringBuffer attrName, const char* processName, const char* buildSetName, const char* instName)
  535. {
  536. StringBuffer sb, sbl, compName, xpath, nodeName;
  537. xpath.clear().appendf("./%s/%s[%s=\"%s\"]", XML_TAG_HARDWARE, XML_TAG_COMPUTER, XML_ATTR_NETADDRESS, attrName.str());
  538. IPropertyTree* pHardTemp = pNewEnvTree->queryPropTree(xpath.str());
  539. if(pHardTemp)
  540. nodeName.clear().append(pHardTemp->queryProp("./" XML_ATTR_NAME));//NodeName
  541. xpath.clear().appendf("./%s/%s[%s=\"%s\"]", XML_TAG_SOFTWARE, processName, XML_ATTR_BUILDSET, buildSetName);
  542. IPropertyTree* pComp = pNewEnvTree->queryPropTree(xpath.str());
  543. compName.clear().append(pComp->queryProp(XML_ATTR_NAME));//compName
  544. sb.clear().appendf("<Instance buildSet=\"%s\" compName=\"%s\" ><Instance name=\"%s\" /></Instance>", buildSetName, compName.str(), nodeName.str());
  545. Owned<IPropertyTree> pInstance = createPTreeFromXMLString(sb.str());
  546. if(pInstance)
  547. addInstanceToCompTree(pNewEnvTree, pInstance, sbl.clear(), sb.clear(),NULL);
  548. xpath.clear().appendf("./%s/%s[%s=\"%s\"]/%s[%s=\"%s\"]", XML_TAG_SOFTWARE, processName, XML_ATTR_NAME, compName.str(), XML_TAG_INSTANCE, XML_ATTR_COMPUTER, nodeName.str());
  549. IPropertyTree* pInst = pNewEnvTree->queryPropTree(xpath.str());
  550. if(pInst)
  551. {
  552. pInst->addProp(XML_ATTR_NAME, instName);
  553. }
  554. }
  555. void CWizardInputs::getDefaultsForWizard(IPropertyTree* pNewEnvTree)
  556. {
  557. StringBuffer xpath, tempName, value;
  558. Owned<IPropertyTree> pBuildTree = createPTreeFromIPT(pNewEnvTree->queryPropTree("./" XML_TAG_PROGRAMS));
  559. xpath.clear().appendf("./%s/%s/", XML_TAG_BUILD, XML_TAG_BUILDSET);
  560. Owned<IPropertyTreeIterator> buildSetInsts = pBuildTree->getElements(xpath.str());
  561. ForEach(*buildSetInsts)
  562. {
  563. IPropertyTree* pBuildSet = &buildSetInsts->query();
  564. StringBuffer buildSetPath, compName;
  565. const char* buildSetName = pBuildSet->queryProp(XML_ATTR_NAME);
  566. const char* xsdFileName = pBuildSet->queryProp(XML_ATTR_SCHEMA);
  567. const char* processName = pBuildSet->queryProp(XML_ATTR_PROCESS_NAME);
  568. if(processName && *processName && buildSetName && * buildSetName && xsdFileName && *xsdFileName)
  569. {
  570. Owned<IPropertyTree> pSchema = loadSchema(pBuildTree->queryPropTree("./" XML_TAG_BUILD "[1]"), pBuildSet, buildSetPath, NULL);
  571. Owned<IPropertyTree> pCompTree = generateTreeFromXsd(pNewEnvTree, pSchema, processName, buildSetName, m_cfg, m_service.str(), true, true, this);
  572. xpath.clear().appendf("./%s/%s/[%s=\"%s\"]", XML_TAG_SOFTWARE, processName, XML_ATTR_BUILDSET, buildSetName);
  573. IPropertyTree* pSWCompTree = pNewEnvTree->queryPropTree(xpath.str());
  574. if(pSWCompTree && pCompTree)
  575. {
  576. Owned<IAttributeIterator> iAttr = pCompTree->getAttributes();
  577. ForEach(*iAttr)
  578. {
  579. if( pSWCompTree->hasProp(iAttr->queryName()) && strcmp(iAttr->queryName(), "@buildSet") != 0)
  580. {
  581. if (!strcmp(iAttr->queryName(), XML_ATTR_NAME))
  582. {
  583. StringBuffer sbxpath, sbnew, sbMsg;
  584. sbnew.clear().append(iAttr->queryValue());
  585. sbxpath.clear().append(processName);
  586. getUniqueName(pNewEnvTree, sbnew, sbxpath.str(), XML_TAG_SOFTWARE);
  587. bool ret = checkComponentReferences(pNewEnvTree, pSWCompTree, pSWCompTree->queryProp(iAttr->queryName()), sbMsg, sbnew.str());
  588. if (ret)
  589. pSWCompTree->setProp(iAttr->queryName(), iAttr->queryValue());
  590. }
  591. else
  592. pSWCompTree->setProp(iAttr->queryName(), iAttr->queryValue());
  593. }
  594. }
  595. //Now adding elements
  596. Owned<IPropertyTreeIterator> iterElems = pCompTree->getElements("*");
  597. ForEach (*iterElems)
  598. {
  599. IPropertyTree* pElem = &iterElems->query();
  600. Owned<IAttributeIterator> iAttr = pElem->getAttributes();
  601. ForEach(*iAttr)
  602. {
  603. IPropertyTree* pNewSubElem = pSWCompTree->queryPropTree(pElem->queryName());
  604. if (!pNewSubElem)
  605. {
  606. pNewSubElem = pSWCompTree->addPropTree(pElem->queryName(), createPTreeFromIPT(pElem));
  607. break;
  608. }
  609. else
  610. {
  611. Owned<IPropertyTreeIterator> srcElems = pSWCompTree->getElements(pElem->queryName());
  612. IPropertyTree* pSrcElem = NULL;
  613. ForEach(*srcElems)
  614. {
  615. pSrcElem = &srcElems->query();
  616. Owned<IAttributeIterator> iAttrElem = pElem->getAttributes();
  617. ForEach(*iAttrElem)
  618. {
  619. const char* attrName = iAttrElem->queryName();
  620. if (pSrcElem->hasProp(attrName))
  621. pSrcElem->setProp(attrName, iAttrElem->queryValue());
  622. Owned<IPropertyTreeIterator> iterSubElems = pElem->getElements("*");
  623. ForEach (*iterSubElems)
  624. {
  625. IPropertyTree* pSubElem = &iterSubElems->query();
  626. Owned<IPropertyTreeIterator> srcSubElems = pSWCompTree->getElements(pSubElem->queryName());
  627. IPropertyTree* pSrcSubElem = NULL;
  628. ForEach(*srcSubElems)
  629. {
  630. pSrcSubElem = &srcSubElems->query();
  631. Owned<IAttributeIterator> iAttrElem = pSubElem->getAttributes();
  632. ForEach(*iAttrElem)
  633. {
  634. const char* attrName = iAttrElem->queryName();
  635. if (pSrcSubElem->hasProp(attrName))
  636. pSrcSubElem->setProp(attrName, iAttrElem->queryValue());
  637. }
  638. }
  639. }
  640. }
  641. }
  642. }
  643. }
  644. }
  645. }
  646. }
  647. }
  648. }
  649. void CWizardInputs::addToCompIPMap(const char* buildSetName, const char* value, const char* compName)
  650. {
  651. CInstDetails* pInst = NULL;
  652. if(m_compIpMap.find(buildSetName) != NULL)
  653. {
  654. pInst = m_compIpMap.getValue(buildSetName);
  655. (pInst->getIpAssigned()).append(value);
  656. }
  657. else
  658. {
  659. pInst = new CInstDetails();
  660. pInst->setParams(compName, value);
  661. m_compIpMap.setValue(buildSetName, pInst);
  662. }
  663. }
  664. unsigned CWizardInputs::getCntForAlreadyAssignedIPS(const char* buildSetName)
  665. {
  666. unsigned cnt = 0;
  667. CInstDetails* pInstRoxie = NULL, *pInstThor = NULL;
  668. if (!strcmp(buildSetName, "roxie") || !strcmp(buildSetName, "thor" ))
  669. {
  670. if (m_compIpMap.find("roxie") != NULL)
  671. {
  672. CInstDetails* pInst = m_compIpMap.getValue("roxie");
  673. cnt += pInst->getIpAssigned().length();
  674. }
  675. if (m_compIpMap.find("thor") != NULL)
  676. {
  677. CInstDetails* pInst = m_compIpMap.getValue("thor");
  678. cnt += pInst->getIpAssigned().length();
  679. }
  680. return cnt;
  681. }
  682. else
  683. {
  684. if (m_compIpMap.find("roxie") != NULL)
  685. pInstRoxie = m_compIpMap.getValue("roxie");
  686. if (m_compIpMap.find("thor") != NULL)
  687. pInstThor = m_compIpMap.getValue("thor");
  688. }
  689. HashIterator ips(m_compIpMap);
  690. ForEach(ips)
  691. {
  692. CInstDetails* comp = m_compIpMap.mapToValue(&ips.query());
  693. if (pInstRoxie == comp || pInstThor == comp)
  694. continue;
  695. StringArray& ipArray = comp->getIpAssigned();
  696. cnt += ipArray.length();
  697. }
  698. return cnt;
  699. }
  700. void CWizardInputs::addRoxieThorClusterToEnv(IPropertyTree* pNewEnvTree, CInstDetails* pInstDetails, const char* buildSetName, bool genRoxieOnDemand)
  701. {
  702. StringBuffer xmlForRoxiePorts, xmlForRoxieServers, xpath, compName, computerName, msg;
  703. if(!strcmp(buildSetName, "roxie"))
  704. {
  705. //Before proceeding remove the roxieserver already added to env via xsd.
  706. xpath.clear().appendf("./%s/%s/%s", XML_TAG_SOFTWARE, XML_TAG_ROXIECLUSTER, XML_ATTR_NAME);
  707. compName.clear().append(pNewEnvTree->queryProp(xpath.str()));
  708. xmlForRoxiePorts.clear().appendf("<RoxieData type=\"RoxieFarm\" parentName=\"\" roxieName=\"%s\" ", compName.str());
  709. if (genRoxieOnDemand)
  710. xmlForRoxiePorts.append("port=\"0\" >");
  711. else
  712. xmlForRoxiePorts.append(">");
  713. if (m_roxieNodes >= 1)
  714. xmlForRoxieServers.clear().appendf("<RoxieData type=\"None\" roxieName=\"%s\" >", compName.str());
  715. if(pInstDetails)
  716. {
  717. StringArray& ipAssignedToComp = pInstDetails->getIpAssigned();
  718. xmlForRoxieServers.append("<Instances>");
  719. ForEachItemIn(i, ipAssignedToComp)
  720. {
  721. xpath.clear().appendf("./%s/%s/[%s=\"%s\"]", XML_TAG_HARDWARE, XML_TAG_COMPUTER, XML_ATTR_NETADDRESS, ipAssignedToComp.item(i));
  722. IPropertyTree* pHardTemp = pNewEnvTree->queryPropTree(xpath.str());
  723. if(pHardTemp){
  724. xmlForRoxiePorts.appendf("<Component name=\"%s\" />", pHardTemp->queryProp("./@name"));
  725. xmlForRoxieServers.appendf("<Instance name=\"%s\"/>", pHardTemp->queryProp("./@name"));
  726. }
  727. }
  728. xmlForRoxieServers.append("</Instances>");
  729. xmlForRoxiePorts.append("</RoxieData>");
  730. xmlForRoxieServers.append("</RoxieData>");
  731. handleRoxieOperation(pNewEnvTree, "AddRoxieFarm", xmlForRoxiePorts.str());
  732. if (!genRoxieOnDemand)
  733. handleRoxieOperation(pNewEnvTree, "RoxieSlaveConfig" ,xmlForRoxieServers.str());
  734. }
  735. xpath.clear().appendf("./%s/%s[%s=\"%s\"]/%s[%s=\"\"]", XML_TAG_SOFTWARE, XML_TAG_ROXIECLUSTER, XML_ATTR_NAME, compName.str(), XML_TAG_ROXIE_SERVER, XML_ATTR_NETADDRESS);
  736. pNewEnvTree->removeProp(xpath.str());
  737. }
  738. else if(!strcmp(buildSetName, "thor"))
  739. {
  740. //We need only one master
  741. StringBuffer masterIP, xml;
  742. xpath.clear().appendf("./%s/%s/%s", XML_TAG_SOFTWARE, XML_TAG_THORCLUSTER, XML_ATTR_NAME);
  743. compName.clear().append(pNewEnvTree->queryProp(xpath.str()));
  744. if(pInstDetails)
  745. {
  746. StringArray& ipAssignedToComp = pInstDetails->getIpAssigned();
  747. if(!ipAssignedToComp.empty())
  748. masterIP.clear().append(ipAssignedToComp.item(0));
  749. xpath.clear().appendf("./%s/%s[%s=\"%s\"]", XML_TAG_HARDWARE, XML_TAG_COMPUTER, XML_ATTR_NETADDRESS, masterIP.str());
  750. IPropertyTree* pHardTemp = pNewEnvTree->queryPropTree(xpath.str());
  751. if(pHardTemp)
  752. xml.clear().appendf("<ThorData type=\"Master\" name=\"%s\" validateComputers=\"false\" skipExisting=\"false\" > <Computer name=\"%s\" /></ThorData>", compName.str(), pHardTemp->queryProp("./@name"));
  753. handleThorTopologyOp(pNewEnvTree, "Add", xml.str(), msg);
  754. //Now add Slave
  755. xml.clear().appendf("<ThorData type=\"Slave\" name=\"%s\" validateComputers=\"false\" slavesPerNode=\"%d\" skipExisting=\"false\" >", compName.str(), m_thorSlavesPerNode);
  756. unsigned numOfNodes = ipAssignedToComp.ordinality() == 1 ? 0 : 1;
  757. for( ; numOfNodes < ipAssignedToComp.ordinality() ; numOfNodes++)
  758. {
  759. xpath.clear().appendf("./%s/%s[%s=\"%s\"]", XML_TAG_HARDWARE, XML_TAG_COMPUTER, XML_ATTR_NETADDRESS, ipAssignedToComp.item(numOfNodes));
  760. IPropertyTree* pHardTemp = pNewEnvTree->queryPropTree(xpath.str());
  761. if(pHardTemp)
  762. xml.appendf("<Computer name=\"%s\" />", pHardTemp->queryProp("./@name"));
  763. }
  764. xml.append("</ThorData>");
  765. handleThorTopologyOp(pNewEnvTree, "Add" , xml.str(), msg);
  766. }
  767. }
  768. }
  769. void CWizardInputs::getEspBindingInformation(IPropertyTree* pNewEnvTree)
  770. {
  771. StringBuffer xpath, sbDefn, xmlArg, compName, sbNewName;
  772. Owned<IPropertyTreeIterator> espProcessIter = pNewEnvTree->getElements("./" XML_TAG_SOFTWARE "/" XML_TAG_ESPPROCESS);
  773. ForEach(*espProcessIter)
  774. {
  775. IPropertyTree* pEspProcess = &espProcessIter->query();
  776. compName.clear().append(pEspProcess->queryProp(XML_ATTR_NAME));
  777. xpath.clear().appendf("./%s/%s/%s[@processName=\"%s\"]", XML_TAG_PROGRAMS, XML_TAG_BUILD, XML_TAG_BUILDSET, XML_TAG_ESPSERVICE);
  778. Owned<IPropertyTreeIterator> espServiceIter = pNewEnvTree->getElements(xpath.str());
  779. ForEach (*espServiceIter)
  780. {
  781. IPropertyTree* pEspService = &espServiceIter->query();
  782. if(pEspService)
  783. {
  784. StringBuffer espServiceName;
  785. espServiceName.appendf("my%s", pEspService->queryProp("@name"));
  786. xpath.clear().appendf("./%s/%s[%s=\"%s\"]", XML_TAG_SOFTWARE, XML_TAG_ESPSERVICE, XML_ATTR_NAME, espServiceName.str());
  787. IPropertyTree* pEspServiceInSWTree = pNewEnvTree->queryPropTree(xpath.str());
  788. if(pEspServiceInSWTree)
  789. {
  790. xpath.clear().append("./Properties/@defaultPort");
  791. const char* port = pEspService->queryProp(xpath.str());
  792. xpath.clear().append("./Properties/@defaultResourcesBasedn");
  793. const char* resourceBasedn = pEspService->queryProp(xpath.str());
  794. const char* buildSetName = pEspService->queryProp(XML_ATTR_NAME);
  795. const char* processName = pEspService->queryProp(XML_ATTR_PROCESS_NAME);
  796. StringBuffer buildSetPath;
  797. Owned<IPropertyTree> pSchema = loadSchema(pNewEnvTree->queryPropTree("./Programs/Build[1]"), pEspService, buildSetPath, NULL);
  798. xmlArg.clear().appendf("<EspServiceBindings type=\"EspBinding\" compName=\"%s\" > <Item name=\"%s\" params=\"pcType=EspProcess::pcName=%s::subType=EspBinding::subTypeKey=%s \"/></EspServiceBindings>", compName.str(), espServiceName.str(), compName.str(), espServiceName.str());
  799. addEspBindingInformation(xmlArg, pNewEnvTree, sbNewName, NULL, m_cfg, m_service.str());
  800. xpath.clear().appendf("./%s/%s/%s/[%s=\"\"]", XML_TAG_SOFTWARE, XML_TAG_ESPPROCESS, XML_TAG_ESPBINDING, XML_ATTR_SERVICE);
  801. IPropertyTree* pEspBindingInfo = pNewEnvTree->queryPropTree(xpath.str());
  802. pEspBindingInfo->setProp(XML_ATTR_NAME,(espServiceName.toLowerCase()).str());
  803. pEspBindingInfo->setProp(XML_ATTR_SERVICE,(espServiceName.toLowerCase()).str());
  804. pEspBindingInfo->setProp(XML_ATTR_PORT, port );
  805. pEspBindingInfo->setProp("@resourcesBasedn",resourceBasedn);
  806. xpath.clear().appendf("%s/%s[%s=\"%s\"]/Properties", XML_TAG_SOFTWARE, XML_TAG_ESPSERVICE, XML_ATTR_NAME, (espServiceName.toLowerCase()).str());
  807. IPropertyTree* pSvcProps = pNewEnvTree->queryPropTree(xpath.str());
  808. Owned<IPropertyTree> pCompTree = generateTreeFromXsd(pNewEnvTree, pSchema, processName, buildSetName, m_cfg, m_service.str(), true, false, 0);
  809. Owned<IPropertyTreeIterator> i = pSvcProps->getElements("Authenticate");
  810. ForEach(*i)
  811. {
  812. IPropertyTree* pAuthCopy = createPTreeFromIPT(&i->query());
  813. mergeAttributes(pAuthCopy, pCompTree->queryPropTree("Authenticate"));
  814. IPropertyTree* pNewNode = pEspBindingInfo->addPropTree("Authenticate", pAuthCopy);
  815. }
  816. i.setown( pSvcProps->getElements("AuthenticateFeature") );
  817. ForEach(*i)
  818. {
  819. IPropertyTree* pAuthCopy = createPTreeFromIPT(&i->query());
  820. //Adding authentication to true for espbinding.
  821. pAuthCopy->addProp("@authenticate","Yes");
  822. mergeAttributes(pAuthCopy, pCompTree->queryPropTree("AuthenticateFeature"));
  823. IPropertyTree* pNewNode = pEspBindingInfo->addPropTree("AuthenticateFeature", pAuthCopy);
  824. }
  825. i.setown( pSvcProps->getElements("AuthenticateSetting") );
  826. ForEach(*i)
  827. {
  828. IPropertyTree* pAuthCopy = createPTreeFromIPT(&i->query());
  829. mergeAttributes(pAuthCopy, pCompTree->queryPropTree("AuthenticateSetting"));
  830. IPropertyTree* pNewNode = pEspBindingInfo->addPropTree("AuthenticateSetting", pAuthCopy);
  831. }
  832. }
  833. }
  834. }
  835. }
  836. }
  837. void CWizardInputs::addTopology(IPropertyTree* pNewEnvTree)
  838. {
  839. StringBuffer xpath;
  840. if(!pNewEnvTree->hasProp("./" XML_TAG_SOFTWARE "/" XML_TAG_TOPOLOGY))
  841. pNewEnvTree->addPropTree("./" XML_TAG_SOFTWARE "/" XML_TAG_TOPOLOGY, createPTree());
  842. HashIterator sIter(m_compForTopology);
  843. for(sIter.first();sIter.isValid();sIter.next())
  844. {
  845. IMapping &cur = sIter.query();
  846. IPropertyTree* pCluster = createTopologyForComp(pNewEnvTree,(const char *) cur.getKey());
  847. if(pCluster)
  848. pNewEnvTree->addPropTree("./" XML_TAG_SOFTWARE "/" XML_TAG_TOPOLOGY "/Cluster", pCluster);
  849. }
  850. }
  851. IPropertyTree* CWizardInputs::createTopologyForComp(IPropertyTree* pNewEnvTree, const char* component)
  852. {
  853. StringBuffer xmlTag, xpath , compName, clusterStr;
  854. if(!strcmp(component, "roxie"))
  855. xmlTag.clear().append(XML_TAG_ROXIECLUSTER);
  856. else if(!strcmp(component, "thor"))
  857. xmlTag.clear().append(XML_TAG_THORCLUSTER);
  858. else if(!strcmp(component, "hthor"))
  859. xmlTag.clear().append("hthor");
  860. xpath.clear().appendf("./%s/%s[1]/%s", XML_TAG_SOFTWARE, xmlTag.str(), XML_ATTR_NAME);
  861. clusterStr.clear().appendf("<Cluster name=\"%s\" prefix=\"%s\"></Cluster>", component, component);
  862. IPropertyTree* pCluster = createPTreeFromXMLString(clusterStr.str());
  863. if(pCluster)
  864. {
  865. if(pNewEnvTree->hasProp(xpath.str()))
  866. {
  867. IPropertyTree* pComponent = pCluster->addPropTree(xmlTag.str(), createPTree());
  868. pComponent->addProp(XML_ATTR_PROCESS, pNewEnvTree->queryProp(xpath.str()));
  869. }
  870. if(m_compForTopology.find(component) != NULL)
  871. {
  872. StringArray* clusterCompEle = 0;
  873. StringArrayPtr* clusterPair = m_compForTopology.getValue(component);
  874. if(clusterPair)
  875. {
  876. clusterCompEle = (*clusterPair);
  877. for(unsigned i = 0 ; i < clusterCompEle->ordinality() ; i++)
  878. {
  879. const char* eachClusterElem = clusterCompEle->item(i);
  880. xpath.clear().appendf("./%s/%s/%s[%s=\"%s\"]", XML_TAG_PROGRAMS, XML_TAG_BUILD, XML_TAG_BUILDSET, XML_ATTR_NAME, eachClusterElem);
  881. IPropertyTree* pBuildset = pNewEnvTree->queryPropTree(xpath.str());
  882. if(pBuildset)
  883. {
  884. const char* processName = pBuildset->queryProp(XML_ATTR_PROCESS_NAME);
  885. if(processName && *processName)
  886. {
  887. IPropertyTree* pElement = pCluster->addPropTree(processName,createPTree());
  888. xpath.clear().appendf("./%s/%s[1]/%s", XML_TAG_SOFTWARE, processName, XML_ATTR_NAME);
  889. if(pElement && pNewEnvTree->hasProp(xpath.str()))
  890. pElement->addProp(XML_ATTR_PROCESS, pNewEnvTree->queryProp(xpath.str()));
  891. }
  892. }
  893. }
  894. }
  895. clusterCompEle->kill();
  896. }
  897. return pCluster;
  898. }
  899. else
  900. return NULL;
  901. }
  902. void CWizardInputs::checkForDependencies()
  903. {
  904. StringBuffer xpath;
  905. if(m_buildSetTree)
  906. {
  907. xpath.clear().appendf("./%s/%s/%s", XML_TAG_PROGRAMS, XML_TAG_BUILD, XML_TAG_BUILDSET);
  908. Owned<IPropertyTreeIterator> buildSetInsts = m_buildSetTree->getElements(xpath.str());
  909. ForEach(*buildSetInsts)
  910. {
  911. IPropertyTree* pBuildSet = &buildSetInsts->query();
  912. const char* buildSetName = pBuildSet->queryProp(XML_ATTR_NAME);
  913. unsigned numOfNodesNeeded = 1;
  914. if((!strcmp(buildSetName,"roxie") && m_roxieNodes == 0 )|| (!strcmp(buildSetName,"thor")&& m_thorNodes == 0)){
  915. numOfNodesNeeded = 0;
  916. m_doNotGenComp.append(buildSetName);
  917. }
  918. if(numOfNodesNeeded == 0 || (m_doNotGenComp.find(buildSetName) != NotFound))
  919. {
  920. if(m_compForTopology.find(buildSetName) != NULL )
  921. m_compForTopology.remove(buildSetName);
  922. checkAndAddDependComponent(buildSetName);
  923. }
  924. }
  925. }
  926. }
  927. void CWizardInputs::checkAndAddDependComponent(const char* key)
  928. {
  929. StringBuffer paramEntry(key);
  930. paramEntry.append("_dependencies");
  931. if(m_algProp)
  932. {
  933. if(m_algProp->hasProp(paramEntry.str()))
  934. {
  935. StringArray sArray;
  936. sArray.appendList(m_algProp->queryProp(paramEntry.str()), ";");
  937. ForEachItemIn(x, sArray)
  938. {
  939. if(m_doNotGenComp.find(sArray.item(x)) == NotFound)
  940. {
  941. m_doNotGenComp.append(sArray.item(x));
  942. checkAndAddDependComponent(sArray.item(x));
  943. }
  944. }
  945. }
  946. }
  947. }
  948. unsigned CWizardInputs::getNumOfNodes(const char* compName)
  949. {
  950. if(m_compIpMap.find(compName) != NULL)
  951. {
  952. CInstDetails* pInst = NULL;
  953. pInst = m_compIpMap.getValue(compName);
  954. StringArray& ipArr = pInst->getIpAssigned();
  955. return ipArr.ordinality();
  956. }
  957. return 0;
  958. }
  959. void CWizardInputs::setTopologyParam()
  960. {
  961. if(m_clusterForTopology.ordinality() > 0)
  962. {
  963. StringBuffer topologySec;
  964. ForEachItemIn(x, m_clusterForTopology)
  965. {
  966. topologySec.clear().appendf("%s_topology",m_clusterForTopology.item(x));
  967. const char * elemForCluster = m_algProp->queryProp(topologySec.str());
  968. if(elemForCluster && *elemForCluster)
  969. {
  970. StringArray* compClusterArr = new StringArray();
  971. StringArray clusterElemArr;
  972. clusterElemArr.appendList(elemForCluster, ",");
  973. ForEachItemIn(y, clusterElemArr)
  974. compClusterArr->append(clusterElemArr.item(y));
  975. m_compForTopology.setValue(m_clusterForTopology.item(x),compClusterArr);
  976. }
  977. }
  978. }
  979. }
  980. void CWizardInputs::addComponentToSoftware(IPropertyTree* pNewEnvTree, IPropertyTree* pBuildSet)
  981. {
  982. if (!pBuildSet)
  983. return;
  984. StringBuffer xpath, sbNewName;
  985. StringBuffer buildSetPath, compName, assignedIP, sbl;
  986. const char* buildSetName = pBuildSet->queryProp(XML_ATTR_NAME);
  987. const char* xsdFileName = pBuildSet->queryProp(XML_ATTR_SCHEMA);
  988. const char* processName = pBuildSet->queryProp(XML_ATTR_PROCESS_NAME);
  989. StringBuffer deployable = pBuildSet->queryProp("@" TAG_DEPLOYABLE);
  990. unsigned numOfIpNeeded = 1;
  991. if (m_doNotGenComp.find(buildSetName) != NotFound )
  992. return;
  993. if (processName && *processName && buildSetName && * buildSetName && xsdFileName && *xsdFileName)
  994. {
  995. Owned<IPropertyTree> pSchema = loadSchema(m_buildSetTree->queryPropTree("./" XML_TAG_PROGRAMS "/" XML_TAG_BUILD "[1]"), pBuildSet, buildSetPath, NULL);
  996. IPropertyTree* pCompTree = generateTreeFromXsd(pNewEnvTree, pSchema, processName, buildSetName, m_cfg, m_service.str(), false);
  997. sbNewName.clear();
  998. if (strstr(buildSetName ,"my") == NULL && (strcmp(buildSetName, "topology") != 0))
  999. sbNewName.append("my");
  1000. addComponentToEnv(pNewEnvTree, buildSetName, sbNewName, pCompTree);
  1001. if (!strcmp(processName, XML_TAG_ESPSERVICE) || !strcmp(processName, XML_TAG_PLUGINPROCESS))
  1002. processName = buildSetName;
  1003. if (strcmp(deployable,"no") != 0)
  1004. {
  1005. if (m_compOnAllNodes.find(buildSetName) != NotFound)
  1006. {
  1007. for (unsigned i = 0; i < m_ipaddressSupport.ordinality(); i++)
  1008. {
  1009. sbl.clear().appendf("s").append(i+1);
  1010. assignedIP.clear().append(m_ipaddressSupport.item(i));
  1011. addInstanceToTree(pNewEnvTree, assignedIP, processName, buildSetName,sbl.str());
  1012. }
  1013. for (unsigned i = 0; i < m_ipaddress.ordinality(); i++)
  1014. {
  1015. sbl.clear().appendf("s").append(m_ipaddressSupport.ordinality() + i+1);
  1016. assignedIP.clear().append(m_ipaddress.item(i));
  1017. addInstanceToTree(pNewEnvTree, assignedIP, processName, buildSetName,sbl.str());
  1018. }
  1019. }
  1020. else if (numOfIpNeeded > 0)
  1021. {
  1022. if (!strcmp(buildSetName, "roxie"))
  1023. numOfIpNeeded = m_roxieNodes;
  1024. else if (!strcmp(buildSetName, "thor"))
  1025. numOfIpNeeded = m_thorNodes + 1;
  1026. CInstDetails* pInstDetail = getServerIPMap(sbNewName.str(), buildSetName, pNewEnvTree, numOfIpNeeded);
  1027. if (pInstDetail)
  1028. {
  1029. if (!strcmp(buildSetName, "roxie") || !strcmp(buildSetName, "thor" ))
  1030. {
  1031. addRoxieThorClusterToEnv(pNewEnvTree, pInstDetail, buildSetName);
  1032. if (!strcmp(buildSetName, "roxie") && m_roxieOnDemand)
  1033. addRoxieThorClusterToEnv(pNewEnvTree, pInstDetail, buildSetName, true);
  1034. }
  1035. else
  1036. {
  1037. StringArray& ipArr = pInstDetail->getIpAssigned();
  1038. ForEachItemIn(x, ipArr)
  1039. {
  1040. assignedIP.clear().append(ipArr.item(x));
  1041. addInstanceToTree(pNewEnvTree, assignedIP, processName, buildSetName, "s1");
  1042. }
  1043. }
  1044. }
  1045. }
  1046. }
  1047. }
  1048. }
  1049. StringArray& CWizardInputs::getIpAddrMap(const char* buildSetName)
  1050. {
  1051. if (m_supportNodes == 0)
  1052. return m_ipaddress;
  1053. else
  1054. {
  1055. if (!strcmp(buildSetName, "roxie") || !strcmp(buildSetName, "thor" ))
  1056. return m_ipaddress;
  1057. }
  1058. return m_ipaddressSupport;
  1059. }