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#include <iostream>
#include <sstream>
#include <fstream>
#include <xercesc/dom/DOMNode.hpp>
#include <xercesc/dom/DOM.hpp>
#include <xercesc/parsers/XercesDOMParser.hpp>
#include "Utilities/Xerces/interface/Xerces.h"
#include "Utilities/Xerces/interface/XercesStrUtils.h"
#include <xercesc/util/XMLString.hpp>
#include <xercesc/sax/SAXException.hpp>
#include <xercesc/framework/LocalFileFormatTarget.hpp>
#include "CondTools/Ecal/interface/EcalDAQTowerStatusXMLTranslator.h"
#include "CondTools/Ecal/interface/DOMHelperFunctions.h"
#include "CondTools/Ecal/interface/XMLTags.h"
using namespace XERCES_CPP_NAMESPACE;
using namespace xuti;
using namespace std;
int EcalDAQTowerStatusXMLTranslator::readXML(const std::string& filename,
EcalCondHeader& header,
EcalDAQTowerStatus& record) {
std::cout << " DAQTowerStatus should not be filled out from an xml file ..." << std::endl;
cms::concurrency::xercesInitialize();
XercesDOMParser* parser = new XercesDOMParser;
parser->setValidationScheme(XercesDOMParser::Val_Never);
parser->setDoNamespaces(false);
parser->setDoSchema(false);
parser->parse(filename.c_str());
DOMDocument* xmlDoc = parser->getDocument();
if (!xmlDoc) {
std::cout << "EcalDAQTowerStatusXMLTranslator::Error parsing document" << std::endl;
return -1;
}
DOMElement* elementRoot = xmlDoc->getDocumentElement();
xuti::readHeader(elementRoot, header);
DOMNode* cellnode = getChildNode(elementRoot, Cell_tag);
while (cellnode) {
int status = -1;
DetId detid = readCellId(dynamic_cast<DOMElement*>(cellnode));
DOMNode* my_node = getChildNode(cellnode, DAQStatusCode_tag);
GetNodeData(my_node, status);
record[detid] = status;
cellnode = cellnode->getNextSibling();
while (cellnode && cellnode->getNodeType() != DOMNode::ELEMENT_NODE)
cellnode = cellnode->getNextSibling();
}
delete parser;
cms::concurrency::xercesTerminate();
return 0;
}
int EcalDAQTowerStatusXMLTranslator::writeXML(const std::string& filename,
const EcalCondHeader& header,
const EcalDAQTowerStatus& record) {
cms::concurrency::xercesInitialize();
std::fstream fs(filename.c_str(), ios::out);
fs << dumpXML(header, record);
cms::concurrency::xercesTerminate();
return 0;
}
std::string EcalDAQTowerStatusXMLTranslator::dumpXML(const EcalCondHeader& header, const EcalDAQTowerStatus& record) {
unique_ptr<DOMImplementation> impl(DOMImplementationRegistry::getDOMImplementation(cms::xerces::uStr("LS").ptr()));
DOMLSSerializer* writer = impl->createLSSerializer();
if (writer->getDomConfig()->canSetParameter(XMLUni::fgDOMWRTFormatPrettyPrint, true))
writer->getDomConfig()->setParameter(XMLUni::fgDOMWRTFormatPrettyPrint, true);
DOMDocumentType* doctype = impl->createDocumentType(cms::xerces::uStr("XML").ptr(), nullptr, nullptr);
DOMDocument* doc = impl->createDocument(nullptr, cms::xerces::uStr(DAQTowerStatus_tag.c_str()).ptr(), doctype);
DOMElement* root = doc->getDocumentElement();
xuti::writeHeader(root, header);
std::cout << " barrel size " << record.barrelItems().size() << std::endl;
if (record.barrelItems().empty())
return std::string();
for (uint cellid = 0; cellid < EcalTrigTowerDetId::kEBTotalTowers; ++cellid) {
uint32_t rawid = EcalTrigTowerDetId::detIdFromDenseIndex(cellid);
if (record.find(rawid) == record.end())
continue;
DOMElement* cellnode = writeCell(root, rawid);
WriteNodeWithValue(cellnode, DAQStatusCode_tag, record[rawid].getStatusCode());
}
std::cout << " endcap size " << record.endcapItems().size() << std::endl;
if (record.endcapItems().empty())
return std::string();
for (uint cellid = 0; cellid < EcalTrigTowerDetId::kEETotalTowers; ++cellid) {
if (!EcalScDetId::validHashIndex(cellid))
continue;
uint32_t rawid = EcalScDetId::unhashIndex(cellid);
if (record.find(rawid) == record.end())
continue;
DOMElement* cellnode = writeCell(root, rawid);
WriteNodeWithValue(cellnode, DAQStatusCode_tag, record[rawid].getStatusCode());
}
std::string dump = cms::xerces::toString(writer->writeToString(root));
doc->release();
doctype->release();
writer->release();
return dump;
}
void EcalDAQTowerStatusXMLTranslator::plot(std::string fn, const EcalDAQTowerStatus& record) {
std::ofstream fout(fn.c_str());
int valEB[34][72];
std::cout << " barrel size " << record.barrelItems().size() << std::endl;
if (record.barrelItems().empty())
return;
for (uint cellid = 0; cellid < EcalTrigTowerDetId::kEBTotalTowers; ++cellid) {
EcalTrigTowerDetId rawid = EcalTrigTowerDetId::detIdFromDenseIndex(cellid);
if (record.find(rawid) == record.end())
continue;
int ieta = rawid.ieta();
int line = 17 - ieta;
if (ieta < 0)
line--;
int iphi = rawid.iphi() - 1; // 0 to 71
valEB[line][iphi] = record[rawid].getStatusCode();
}
for (int line = 0; line < 34; line++) {
for (int iphi = 0; iphi < 72; iphi++)
fout << valEB[line][iphi] << " ";
fout << std::endl;
if (line == 16)
fout << std::endl;
}
std::cout << " endcap size " << record.endcapItems().size() << std::endl;
if (record.endcapItems().empty())
return;
int valEE[2][20][20];
for (int k = 0; k < 2; k++)
for (int ix = 0; ix < 20; ix++)
for (int iy = 0; iy < 20; iy++)
valEE[k][ix][iy] = -1;
for (uint cellid = 0; cellid < EcalTrigTowerDetId::kEETotalTowers; ++cellid) {
if (EcalScDetId::validHashIndex(cellid)) {
EcalScDetId rawid = EcalScDetId::unhashIndex(cellid);
int ix = rawid.ix() - 1; // 0 to 19
int iy = 20 - rawid.iy(); // 0 to 19
int side = rawid.zside();
int iz = side;
if (side == -1)
iz = 0;
if (ix < 0 || ix > 19)
std::cout << " Pb in ix " << ix << std::endl;
if (iy < 0 || iy > 19)
std::cout << " Pb in iy " << iy << std::endl;
valEE[iz][ix][iy] = record[rawid].getStatusCode();
}
}
for (int k = 0; k < 2; k++) {
int iz = -1;
if (k == 1)
iz = 1;
fout << " Side : " << iz << std::endl;
for (int line = 0; line < 20; line++) {
for (int ix = 0; ix < 20; ix++) {
if (valEE[k][ix][line] < 0)
fout << ". ";
else
fout << valEE[k][ix][line] << " ";
}
fout << std::endl;
}
fout << std::endl;
}
return;
}
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