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2 *
3 * Licensed to the Apache Software Foundation (ASF) under one
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5 * distributed with this work for additional information
6 * regarding copyright ownership. The ASF licenses this file
7 * to you under the Apache License, Version 2.0 (the
8 * "License"); you may not use this file except in compliance
9 * with the License. You may obtain a copy of the License at
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11 * http://www.apache.org/licenses/LICENSE-2.0
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13 * Unless required by applicable law or agreed to in writing,
14 * software distributed under the License is distributed on an
15 * "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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21
22 // MARKER(update_precomp.py): autogen include statement, do not remove
23 #include "precompiled_xmloff.hxx"
24
25 #include "SchXMLTableContext.hxx"
26 #include "SchXMLParagraphContext.hxx"
27 #include "SchXMLTextListContext.hxx"
28 #include "SchXMLImport.hxx"
29 #include "SchXMLTools.hxx"
30 #include "transporttypes.hxx"
31 #include "XMLStringBufferImportContext.hxx"
32 #include <tools/debug.hxx>
33 #include <rtl/math.hxx>
34 #include "xmloff/xmlnmspe.hxx"
35 #include <xmloff/xmltoken.hxx>
36 #include <xmloff/nmspmap.hxx>
37 #include <xmloff/xmluconv.hxx>
38 #include <com/sun/star/frame/XModel.hpp>
39 #include <com/sun/star/chart2/XAnyDescriptionAccess.hpp>
40 #include <com/sun/star/chart2/XDataSeriesContainer.hpp>
41 #include <com/sun/star/chart2/XChartDocument.hpp>
42 #include <com/sun/star/chart2/XChartTypeContainer.hpp>
43 #include <com/sun/star/chart2/XInternalDataProvider.hpp>
44 #include <com/sun/star/chart/ChartSeriesAddress.hpp>
45 #include <com/sun/star/beans/XPropertySet.hpp>
46 #include <com/sun/star/beans/XPropertySetInfo.hpp>
47 #include <com/sun/star/beans/PropertyAttribute.hpp>
48
49 #include <com/sun/star/chart2/XDiagram.hpp>
50 #include <com/sun/star/chart2/XAxis.hpp>
51 #include <com/sun/star/chart2/XCoordinateSystemContainer.hpp>
52 #include <com/sun/star/chart2/AxisType.hpp>
53
54 #include <vector>
55 #include <algorithm>
56 #include <iterator>
57
58 using namespace com::sun::star;
59 using namespace ::xmloff::token;
60 using ::com::sun::star::uno::Sequence;
61 using ::com::sun::star::uno::Reference;
62 using ::rtl::OUString;
63
64 namespace
65 {
66
67 const OUString lcl_aLabelPrefix( RTL_CONSTASCII_USTRINGPARAM("label "));
68 const OUString lcl_aCategoriesRange( RTL_CONSTASCII_USTRINGPARAM("categories"));
69
70 typedef ::std::multimap< ::rtl::OUString, ::rtl::OUString >
71 lcl_tOriginalRangeToInternalRangeMap;
72
lcl_getCategoriesFromTable(const SchXMLTable & rTable,bool bHasLabels)73 Sequence< OUString > lcl_getCategoriesFromTable( const SchXMLTable & rTable, bool bHasLabels )
74 {
75 sal_Int32 nNumRows( static_cast< sal_Int32 >( rTable.aData.size()));
76 OSL_ENSURE( static_cast< size_t >( nNumRows ) == rTable.aData.size(), "Table too big" );
77
78 sal_Int32 nOffset(bHasLabels ? 1 : 0);
79 Sequence< OUString > aResult( nNumRows - nOffset );
80 sal_Int32 i=nOffset;
81 for( ; i<nNumRows; ++i )
82 {
83 if( !rTable.aData[i].empty() && (rTable.aData[i].front().eType == SCH_CELL_TYPE_STRING ))
84 aResult[i - nOffset] = rTable.aData[i].front().aString;
85 }
86 return aResult;
87 }
88
lcl_getAxesHoldingCategoriesFromDiagram(const Reference<chart2::XDiagram> & xDiagram)89 std::vector< Reference< chart2::XAxis > > lcl_getAxesHoldingCategoriesFromDiagram(
90 const Reference< chart2::XDiagram > & xDiagram )
91 {
92 std::vector< Reference< chart2::XAxis > > aRet;
93
94 Reference< chart2::XAxis > xResult;
95 // return first x-axis as fall-back
96 Reference< chart2::XAxis > xFallBack;
97 try
98 {
99 Reference< chart2::XCoordinateSystemContainer > xCooSysCnt(
100 xDiagram, uno::UNO_QUERY_THROW );
101 Sequence< Reference< chart2::XCoordinateSystem > > aCooSysSeq(
102 xCooSysCnt->getCoordinateSystems());
103 for( sal_Int32 i=0; i<aCooSysSeq.getLength(); ++i )
104 {
105 Reference< chart2::XCoordinateSystem > xCooSys( aCooSysSeq[i] );
106 OSL_ASSERT( xCooSys.is());
107 for( sal_Int32 nN = xCooSys->getDimension(); nN--; )
108 {
109 const sal_Int32 nMaximumScaleIndex = xCooSys->getMaximumAxisIndexByDimension(nN);
110 for(sal_Int32 nI=0; nI<=nMaximumScaleIndex; ++nI)
111 {
112 Reference< chart2::XAxis > xAxis = xCooSys->getAxisByDimension( nN,nI );
113 OSL_ASSERT( xAxis.is());
114 if( xAxis.is())
115 {
116 chart2::ScaleData aScaleData = xAxis->getScaleData();
117 if( aScaleData.Categories.is() || (aScaleData.AxisType == chart2::AxisType::CATEGORY) )
118 {
119 aRet.push_back(xAxis);
120 }
121 if( (nN == 0) && !xFallBack.is())
122 xFallBack.set( xAxis );
123 }
124 }
125 }
126 }
127 }
128 catch( uno::Exception & )
129 {
130 }
131
132 if( aRet.empty())
133 aRet.push_back(xFallBack);
134
135 return aRet;
136 }
137
138 struct lcl_ApplyCellToData : public ::std::unary_function< SchXMLCell, void >
139 {
lcl_ApplyCellToData__anone4aca34f0111::lcl_ApplyCellToData140 lcl_ApplyCellToData( Sequence< double > & rOutData ) :
141 m_rData( rOutData ),
142 m_nIndex( 0 ),
143 m_nSize( rOutData.getLength())
144 {
145 ::rtl::math::setNan( &m_fNaN );
146 }
147
operator ()__anone4aca34f0111::lcl_ApplyCellToData148 void operator() ( const SchXMLCell & rCell )
149 {
150 if( m_nIndex < m_nSize )
151 {
152 if( rCell.eType == SCH_CELL_TYPE_FLOAT )
153 m_rData[m_nIndex] = rCell.fValue;
154 else
155 m_rData[m_nIndex] = m_fNaN;
156 }
157 ++m_nIndex;
158 }
159
getCurrentIndex__anone4aca34f0111::lcl_ApplyCellToData160 sal_Int32 getCurrentIndex() const
161 {
162 return m_nIndex;
163 }
164
165 private:
166 Sequence< double > & m_rData;
167 sal_Int32 m_nIndex;
168 sal_Int32 m_nSize;
169 double m_fNaN;
170 };
171
lcl_getSwappedArray(const Sequence<Sequence<double>> & rData)172 Sequence< Sequence< double > > lcl_getSwappedArray( const Sequence< Sequence< double > > & rData )
173 {
174 sal_Int32 nOldOuterSize = rData.getLength();
175 sal_Int32 nOldInnerSize = (nOldOuterSize == 0 ? 0 : rData[0].getLength());
176 Sequence< Sequence< double > > aResult( nOldInnerSize );
177
178 for( sal_Int32 i=0; i<nOldInnerSize; ++i )
179 aResult[i].realloc( nOldOuterSize );
180
181 for( sal_Int32 nOuter=0; nOuter<nOldOuterSize; ++nOuter )
182 for( sal_Int32 nInner=0; nInner<nOldInnerSize; ++nInner )
183 aResult[nInner][nOuter] = rData[nOuter][nInner];
184
185 return aResult;
186 }
187
lcl_fillRangeMapping(const SchXMLTable & rTable,lcl_tOriginalRangeToInternalRangeMap & rOutRangeMap,chart::ChartDataRowSource eDataRowSource)188 void lcl_fillRangeMapping(
189 const SchXMLTable & rTable,
190 lcl_tOriginalRangeToInternalRangeMap & rOutRangeMap,
191 chart::ChartDataRowSource eDataRowSource )
192 {
193 sal_Int32 nRowOffset = ( rTable.bHasHeaderRow ? 1 : 0 );
194 sal_Int32 nColOffset = ( rTable.bHasHeaderColumn ? 1 : 0 );
195
196 // Fill range mapping
197 const size_t nTableRowCount( rTable.aData.size());
198 for( size_t nRow = 0; nRow < nTableRowCount; ++nRow )
199 {
200 const ::std::vector< SchXMLCell > & rRow( rTable.aData[nRow] );
201 const size_t nTableColCount( rRow.size());
202 for( size_t nCol = 0; nCol < nTableColCount; ++nCol )
203 {
204 OUString aRangeId( rRow[nCol].aRangeId );
205 if( aRangeId.getLength())
206 {
207 if( eDataRowSource == chart::ChartDataRowSource_COLUMNS )
208 {
209 if( nCol == 0 && rTable.bHasHeaderColumn )
210 {
211 OSL_ASSERT( static_cast< sal_Int32 >( nRow ) == nRowOffset );
212 rOutRangeMap.insert( lcl_tOriginalRangeToInternalRangeMap::value_type(
213 aRangeId, lcl_aCategoriesRange ));
214 }
215 else
216 {
217 OUString aColNumStr = OUString::valueOf( static_cast< sal_Int32 >( nCol - nColOffset ));
218 if( nRow == 0 && rTable.bHasHeaderRow )
219 rOutRangeMap.insert( lcl_tOriginalRangeToInternalRangeMap::value_type(
220 aRangeId, lcl_aLabelPrefix + aColNumStr ));
221 else
222 rOutRangeMap.insert( lcl_tOriginalRangeToInternalRangeMap::value_type(
223 aRangeId, aColNumStr ));
224 }
225 }
226 else // eDataRowSource == chart::ChartDataRowSource_ROWS
227 {
228 if( nRow == 0 && rTable.bHasHeaderRow )
229 {
230 OSL_ASSERT( static_cast< sal_Int32 >( nCol ) == nColOffset );
231 rOutRangeMap.insert( lcl_tOriginalRangeToInternalRangeMap::value_type(
232 aRangeId, lcl_aCategoriesRange ));
233 }
234 else
235 {
236 OUString aRowNumStr = OUString::valueOf( static_cast< sal_Int32 >( nRow - nRowOffset ));
237 if( nCol == 0 && rTable.bHasHeaderColumn )
238 rOutRangeMap.insert( lcl_tOriginalRangeToInternalRangeMap::value_type(
239 aRangeId, lcl_aLabelPrefix + aRowNumStr ));
240 else
241 rOutRangeMap.insert( lcl_tOriginalRangeToInternalRangeMap::value_type(
242 aRangeId, aRowNumStr ));
243 }
244 }
245 }
246 }
247 }
248 }
249
250 Reference< chart2::data::XDataSequence >
lcl_reassignDataSequence(const Reference<chart2::data::XDataSequence> & xSequence,const Reference<chart2::data::XDataProvider> & xDataProvider,lcl_tOriginalRangeToInternalRangeMap & rRangeMap,const OUString & rRange)251 lcl_reassignDataSequence(
252 const Reference< chart2::data::XDataSequence > & xSequence,
253 const Reference< chart2::data::XDataProvider > & xDataProvider,
254 lcl_tOriginalRangeToInternalRangeMap & rRangeMap,
255 const OUString & rRange )
256 {
257 Reference< chart2::data::XDataSequence > xResult( xSequence );
258 lcl_tOriginalRangeToInternalRangeMap::iterator aIt( rRangeMap.find( rRange ));
259 if( aIt != rRangeMap.end())
260 {
261 // set sequence with correct data
262 xResult.set( xDataProvider->createDataSequenceByRangeRepresentation( aIt->second ));
263 // remove translation, because it was used
264 rRangeMap.erase( aIt );
265 }
266
267 return xResult;
268 }
269
lcl_mapContainsRange(lcl_tOriginalRangeToInternalRangeMap & rRangeMap,const OUString & rRange)270 bool lcl_mapContainsRange(
271 lcl_tOriginalRangeToInternalRangeMap & rRangeMap,
272 const OUString & rRange )
273 {
274 lcl_tOriginalRangeToInternalRangeMap::iterator aIt( rRangeMap.find( rRange ));
275 return ( aIt != rRangeMap.end());
276 }
277
lcl_tableOfRangeMatches(const::rtl::OUString & rRange,const::rtl::OUString & rTableName)278 bool lcl_tableOfRangeMatches(
279 const ::rtl::OUString & rRange,
280 const ::rtl::OUString & rTableName )
281 {
282 // both strings are non-empty and the table name is part of the range
283 return ( (rRange.getLength() > 0) &&
284 (rTableName.getLength() > 0) &&
285 (rRange.indexOf( rTableName ) != -1 ));
286 }
287
288 template< typename T >
lcl_SequenceToVector(const uno::Sequence<T> & rSequence)289 ::std::vector< T > lcl_SequenceToVector( const uno::Sequence< T > & rSequence )
290 {
291 ::std::vector< T > aResult( rSequence.getLength());
292 ::std::copy( rSequence.getConstArray(), rSequence.getConstArray() + rSequence.getLength(),
293 aResult.begin());
294 return aResult;
295 }
296
297 } // anonymous namespace
298
299
300 // ----------------------------------------
301 // class SchXMLTableContext
302 // ----------------------------------------
303
SchXMLTableContext(SchXMLImportHelper & rImpHelper,SvXMLImport & rImport,const rtl::OUString & rLName,SchXMLTable & aTable)304 SchXMLTableContext::SchXMLTableContext( SchXMLImportHelper& rImpHelper,
305 SvXMLImport& rImport,
306 const rtl::OUString& rLName,
307 SchXMLTable& aTable ) :
308 SvXMLImportContext( rImport, XML_NAMESPACE_TABLE, rLName ),
309 mrImportHelper( rImpHelper ),
310 mrTable( aTable ),
311 mbHasRowPermutation( false ),
312 mbHasColumnPermutation( false )
313 {
314 mrTable.nColumnIndex = -1;
315 mrTable.nMaxColumnIndex = -1;
316 mrTable.nRowIndex = -1;
317 mrTable.aData.clear();
318 }
319
~SchXMLTableContext()320 SchXMLTableContext::~SchXMLTableContext()
321 {
322 }
323
CreateChildContext(sal_uInt16 nPrefix,const rtl::OUString & rLocalName,const uno::Reference<xml::sax::XAttributeList> &)324 SvXMLImportContext *SchXMLTableContext::CreateChildContext(
325 sal_uInt16 nPrefix,
326 const rtl::OUString& rLocalName,
327 const uno::Reference< xml::sax::XAttributeList >& )
328 {
329 SvXMLImportContext* pContext = 0;
330 const SvXMLTokenMap& rTokenMap = mrImportHelper.GetTableElemTokenMap();
331
332 switch( rTokenMap.Get( nPrefix, rLocalName ))
333 {
334 case XML_TOK_TABLE_HEADER_COLS:
335 mrTable.bHasHeaderColumn = true;
336 // fall through intended
337 case XML_TOK_TABLE_COLUMNS:
338 pContext = new SchXMLTableColumnsContext( mrImportHelper, GetImport(), rLocalName, mrTable );
339 break;
340
341 case XML_TOK_TABLE_COLUMN:
342 pContext = new SchXMLTableColumnContext( mrImportHelper, GetImport(), rLocalName, mrTable );
343 break;
344
345 case XML_TOK_TABLE_HEADER_ROWS:
346 mrTable.bHasHeaderRow = true;
347 // fall through intended
348 case XML_TOK_TABLE_ROWS:
349 pContext = new SchXMLTableRowsContext( mrImportHelper, GetImport(), rLocalName, mrTable );
350 break;
351
352 case XML_TOK_TABLE_ROW:
353 pContext = new SchXMLTableRowContext( mrImportHelper, GetImport(), rLocalName, mrTable );
354 break;
355
356 default:
357 pContext = new SvXMLImportContext( GetImport(), nPrefix, rLocalName );
358 }
359
360 return pContext;
361 }
362
StartElement(const uno::Reference<xml::sax::XAttributeList> & xAttrList)363 void SchXMLTableContext::StartElement( const uno::Reference< xml::sax::XAttributeList >& xAttrList )
364 {
365 // get table-name
366 sal_Int16 nAttrCount = xAttrList.is()? xAttrList->getLength(): 0;
367
368 for( sal_Int16 i = 0; i < nAttrCount; i++ )
369 {
370 rtl::OUString sAttrName = xAttrList->getNameByIndex( i );
371 rtl::OUString aLocalName;
372 sal_uInt16 nPrefix = GetImport().GetNamespaceMap().GetKeyByAttrName( sAttrName, &aLocalName );
373 if ( nPrefix == XML_NAMESPACE_TABLE )
374 {
375 if ( IsXMLToken( aLocalName, XML_NAME ) )
376 {
377 mrTable.aTableNameOfFile = xAttrList->getValueByIndex( i );
378 }
379 else if ( IsXMLToken( aLocalName, XML_PROTECTED ) )
380 {
381 if ( IsXMLToken( xAttrList->getValueByIndex( i ), XML_TRUE ) )
382 {
383 mrTable.bProtected = true;
384 }
385 }
386 }
387 }
388 }
389
EndElement()390 void SchXMLTableContext::EndElement()
391 {
392 if( mbHasColumnPermutation )
393 {
394 OSL_ASSERT( !mbHasRowPermutation );
395 ::std::vector< sal_Int32 > aPermutation( lcl_SequenceToVector( maColumnPermutation ));
396 OSL_ASSERT( !aPermutation.empty());
397 if( aPermutation.empty())
398 return;
399
400 // permute the values of all rows according to aPermutation
401 for( ::std::vector< ::std::vector< SchXMLCell > >::iterator aRowIt( mrTable.aData.begin());
402 aRowIt != mrTable.aData.end(); ++aRowIt )
403 {
404 bool bModified = false;
405 ::std::vector< SchXMLCell > aModifiedRow;
406 const size_t nPermSize = aPermutation.size();
407 OSL_ASSERT( static_cast< sal_Int32 >( nPermSize ) - 1 == *(::std::max_element( aPermutation.begin(), aPermutation.end())));
408 const size_t nRowSize = aRowIt->size();
409 const size_t nDestSize = ::std::min( nPermSize, nRowSize );
410 for( size_t nDestinationIndex = 0; nDestinationIndex < nDestSize; ++nDestinationIndex )
411 {
412 const size_t nSourceIndex = static_cast< size_t >( aPermutation[ nDestinationIndex ] );
413 if( nSourceIndex != nDestinationIndex &&
414 nSourceIndex < nRowSize )
415 {
416 // copy original on first real permutation
417 if( !bModified )
418 {
419 OSL_ASSERT( aModifiedRow.empty());
420 aModifiedRow.reserve( aRowIt->size());
421 ::std::copy( aRowIt->begin(), aRowIt->end(), ::std::back_inserter( aModifiedRow ));
422 OSL_ASSERT( !aModifiedRow.empty());
423 }
424 OSL_ASSERT( nDestinationIndex < aModifiedRow.size());
425 aModifiedRow[ nDestinationIndex ] = (*aRowIt)[ nSourceIndex ];
426 bModified = true;
427 }
428 }
429 // copy back
430 if( bModified )
431 ::std::copy( aModifiedRow.begin(), aModifiedRow.end(), aRowIt->begin());
432 }
433 }
434 else if( mbHasRowPermutation )
435 {
436 ::std::vector< sal_Int32 > aPermutation( lcl_SequenceToVector( maRowPermutation ));
437 OSL_ASSERT( !aPermutation.empty());
438 if( aPermutation.empty())
439 return;
440
441 bool bModified = false;
442 const size_t nPermSize = aPermutation.size();
443 OSL_ASSERT( static_cast< sal_Int32 >( nPermSize ) - 1 == *(::std::max_element( aPermutation.begin(), aPermutation.end())));
444 const size_t nTableRowCount = mrTable.aData.size();
445 const size_t nDestSize = ::std::min( nPermSize, nTableRowCount );
446 ::std::vector< ::std::vector< SchXMLCell > > aDestination;
447 for( size_t nDestinationIndex = 0; nDestinationIndex < nDestSize; ++nDestinationIndex )
448 {
449 const size_t nSourceIndex = static_cast< size_t >( aPermutation[ nDestinationIndex ] );
450 if( nSourceIndex != nDestinationIndex &&
451 nSourceIndex < nTableRowCount )
452 {
453 // copy original on first real permutation
454 if( !bModified )
455 {
456 OSL_ASSERT( aDestination.empty());
457 aDestination.reserve( mrTable.aData.size());
458 ::std::copy( mrTable.aData.begin(), mrTable.aData.end(), ::std::back_inserter( aDestination ));
459 OSL_ASSERT( !aDestination.empty());
460 }
461 OSL_ASSERT( nDestinationIndex < aDestination.size());
462 aDestination[ nDestinationIndex ] = mrTable.aData[ nSourceIndex ];
463 bModified = true;
464 }
465 }
466 if( bModified )
467 {
468 // copy back
469 ::std::copy( aDestination.begin(), aDestination.end(), mrTable.aData.begin());
470 }
471 }
472 }
473
setRowPermutation(const uno::Sequence<sal_Int32> & rPermutation)474 void SchXMLTableContext::setRowPermutation( const uno::Sequence< sal_Int32 > & rPermutation )
475 {
476 maRowPermutation = rPermutation;
477 mbHasRowPermutation = ( rPermutation.getLength() > 0 );
478
479 if( mbHasRowPermutation && mbHasColumnPermutation )
480 {
481 mbHasColumnPermutation = false;
482 maColumnPermutation.realloc( 0 );
483 }
484 }
485
setColumnPermutation(const uno::Sequence<sal_Int32> & rPermutation)486 void SchXMLTableContext::setColumnPermutation( const uno::Sequence< sal_Int32 > & rPermutation )
487 {
488 maColumnPermutation = rPermutation;
489 mbHasColumnPermutation = ( rPermutation.getLength() > 0 );
490
491 if( mbHasColumnPermutation && mbHasRowPermutation )
492 {
493 mbHasRowPermutation = false;
494 maRowPermutation.realloc( 0 );
495 }
496 }
497
498 // ========================================
499 // classes for columns
500 // ========================================
501
502 // ----------------------------------------
503 // class SchXMLTableColumnsContext
504 // ----------------------------------------
505
SchXMLTableColumnsContext(SchXMLImportHelper & rImpHelper,SvXMLImport & rImport,const rtl::OUString & rLocalName,SchXMLTable & aTable)506 SchXMLTableColumnsContext::SchXMLTableColumnsContext(
507 SchXMLImportHelper& rImpHelper,
508 SvXMLImport& rImport,
509 const rtl::OUString& rLocalName,
510 SchXMLTable& aTable ) :
511 SvXMLImportContext( rImport, XML_NAMESPACE_TABLE, rLocalName ),
512 mrImportHelper( rImpHelper ),
513 mrTable( aTable )
514 {
515 }
516
~SchXMLTableColumnsContext()517 SchXMLTableColumnsContext::~SchXMLTableColumnsContext()
518 {
519 }
520
CreateChildContext(sal_uInt16 nPrefix,const rtl::OUString & rLocalName,const uno::Reference<xml::sax::XAttributeList> &)521 SvXMLImportContext* SchXMLTableColumnsContext::CreateChildContext(
522 sal_uInt16 nPrefix,
523 const rtl::OUString& rLocalName,
524 const uno::Reference< xml::sax::XAttributeList >& )
525 {
526 SvXMLImportContext* pContext = 0;
527
528 if( nPrefix == XML_NAMESPACE_TABLE &&
529 IsXMLToken( rLocalName, XML_TABLE_COLUMN ) )
530 {
531 pContext = new SchXMLTableColumnContext( mrImportHelper, GetImport(), rLocalName, mrTable );
532 }
533 else
534 pContext = new SvXMLImportContext( GetImport(), nPrefix, rLocalName );
535
536 return pContext;
537 }
538
539 // ----------------------------------------
540 // class SchXMLTableColumnContext
541 // ----------------------------------------
542
SchXMLTableColumnContext(SchXMLImportHelper & rImpHelper,SvXMLImport & rImport,const rtl::OUString & rLocalName,SchXMLTable & aTable)543 SchXMLTableColumnContext::SchXMLTableColumnContext(
544 SchXMLImportHelper& rImpHelper,
545 SvXMLImport& rImport,
546 const rtl::OUString& rLocalName,
547 SchXMLTable& aTable ) :
548 SvXMLImportContext( rImport, XML_NAMESPACE_TABLE, rLocalName ),
549 mrImportHelper( rImpHelper ),
550 mrTable( aTable )
551 {
552 }
553
StartElement(const uno::Reference<xml::sax::XAttributeList> & xAttrList)554 void SchXMLTableColumnContext::StartElement( const uno::Reference< xml::sax::XAttributeList >& xAttrList )
555 {
556 // get number-columns-repeated attribute
557 sal_Int16 nAttrCount = xAttrList.is()? xAttrList->getLength(): 0;
558 sal_Int32 nRepeated = 1;
559 bool bHidden = false;
560
561 for( sal_Int16 i = 0; i < nAttrCount; i++ )
562 {
563 rtl::OUString sAttrName = xAttrList->getNameByIndex( i );
564 rtl::OUString aLocalName;
565 sal_uInt16 nPrefix = GetImport().GetNamespaceMap().GetKeyByAttrName( sAttrName, &aLocalName );
566
567 if( nPrefix == XML_NAMESPACE_TABLE &&
568 IsXMLToken( aLocalName, XML_NUMBER_COLUMNS_REPEATED ) )
569 {
570 rtl::OUString aValue = xAttrList->getValueByIndex( i );
571 if( aValue.getLength())
572 nRepeated = aValue.toInt32();
573 }
574 else if( nPrefix == XML_NAMESPACE_TABLE &&
575 IsXMLToken( aLocalName, XML_VISIBILITY ) )
576 {
577 rtl::OUString aVisibility = xAttrList->getValueByIndex( i );
578 bHidden = aVisibility.equals( GetXMLToken( XML_COLLAPSE ) );
579 }
580 }
581
582 sal_Int32 nOldCount = mrTable.nNumberOfColsEstimate;
583 sal_Int32 nNewCount = nOldCount + nRepeated;
584 mrTable.nNumberOfColsEstimate = nNewCount;
585
586 if( bHidden )
587 {
588 //i91578 display of hidden values (copy paste scenario; use hidden flag during migration to locale table upon paste )
589 sal_Int32 nColOffset = ( mrTable.bHasHeaderColumn ? 1 : 0 );
590 for( sal_Int32 nN = nOldCount; nN<nNewCount; nN++ )
591 {
592 sal_Int32 nHiddenColumnIndex = nN-nColOffset;
593 if( nHiddenColumnIndex>=0 )
594 mrTable.aHiddenColumns.push_back(nHiddenColumnIndex);
595 }
596 }
597 }
598
~SchXMLTableColumnContext()599 SchXMLTableColumnContext::~SchXMLTableColumnContext()
600 {
601 }
602
603 // ========================================
604 // classes for rows
605 // ========================================
606
607 // ----------------------------------------
608 // class SchXMLTableRowsContext
609 // ----------------------------------------
610
SchXMLTableRowsContext(SchXMLImportHelper & rImpHelper,SvXMLImport & rImport,const rtl::OUString & rLocalName,SchXMLTable & aTable)611 SchXMLTableRowsContext::SchXMLTableRowsContext(
612 SchXMLImportHelper& rImpHelper,
613 SvXMLImport& rImport,
614 const rtl::OUString& rLocalName,
615 SchXMLTable& aTable ) :
616 SvXMLImportContext( rImport, XML_NAMESPACE_TABLE, rLocalName ),
617 mrImportHelper( rImpHelper ),
618 mrTable( aTable )
619 {
620 }
621
~SchXMLTableRowsContext()622 SchXMLTableRowsContext::~SchXMLTableRowsContext()
623 {
624 }
625
CreateChildContext(sal_uInt16 nPrefix,const rtl::OUString & rLocalName,const uno::Reference<xml::sax::XAttributeList> &)626 SvXMLImportContext* SchXMLTableRowsContext::CreateChildContext(
627 sal_uInt16 nPrefix,
628 const rtl::OUString& rLocalName,
629 const uno::Reference< xml::sax::XAttributeList >& )
630 {
631 SvXMLImportContext* pContext = 0;
632
633 if( nPrefix == XML_NAMESPACE_TABLE &&
634 IsXMLToken( rLocalName, XML_TABLE_ROW ) )
635 {
636 pContext = new SchXMLTableRowContext( mrImportHelper, GetImport(), rLocalName, mrTable );
637 }
638 else
639 {
640 pContext = new SvXMLImportContext( GetImport(), nPrefix, rLocalName );
641 }
642
643 return pContext;
644 }
645
646 // ----------------------------------------
647 // class SchXMLTableRowContext
648 // ----------------------------------------
649
SchXMLTableRowContext(SchXMLImportHelper & rImpHelper,SvXMLImport & rImport,const rtl::OUString & rLocalName,SchXMLTable & aTable)650 SchXMLTableRowContext::SchXMLTableRowContext(
651 SchXMLImportHelper& rImpHelper,
652 SvXMLImport& rImport,
653 const rtl::OUString& rLocalName,
654 SchXMLTable& aTable ) :
655 SvXMLImportContext( rImport, XML_NAMESPACE_TABLE, rLocalName ),
656 mrImportHelper( rImpHelper ),
657 mrTable( aTable )
658 {
659 mrTable.nColumnIndex = -1;
660 mrTable.nRowIndex++;
661
662 std::vector< SchXMLCell > aNewRow;
663 aNewRow.reserve( mrTable.nNumberOfColsEstimate );
664 while( mrTable.aData.size() <= (unsigned long)mrTable.nRowIndex )
665 mrTable.aData.push_back( aNewRow );
666 }
667
~SchXMLTableRowContext()668 SchXMLTableRowContext::~SchXMLTableRowContext()
669 {
670 }
671
CreateChildContext(sal_uInt16 nPrefix,const rtl::OUString & rLocalName,const uno::Reference<xml::sax::XAttributeList> &)672 SvXMLImportContext* SchXMLTableRowContext::CreateChildContext(
673 sal_uInt16 nPrefix,
674 const rtl::OUString& rLocalName,
675 const uno::Reference< xml::sax::XAttributeList >& )
676 {
677 SvXMLImportContext* pContext = 0;
678
679 // <table:table-cell> element
680 if( nPrefix == XML_NAMESPACE_TABLE &&
681 IsXMLToken(rLocalName, XML_TABLE_CELL ) )
682 {
683 pContext = new SchXMLTableCellContext( mrImportHelper, GetImport(), rLocalName, mrTable );
684 }
685 else
686 {
687 pContext = new SvXMLImportContext( GetImport(), nPrefix, rLocalName );
688 }
689
690 return pContext;
691 }
692
693 //---------------------------------------------------------------------------------------------------
694 //---------------------------------------------------------------------------------------------------
695
696 class SchXMLRangeSomewhereContext : public SvXMLImportContext
697 {
698 //#i113950# previously the range was exported to attribute text:id,
699 //but that attribute does not allow arbitrary strings anymore
700 //so we need to find an alternative to save that range info for copy/paste scenario ...
701 //-> use description at an empty group element for now
702
703 private:
704 ::rtl::OUString& mrRangeString;
705 ::rtl::OUStringBuffer maRangeStringBuffer;
706
707 public:
708 SchXMLRangeSomewhereContext( SvXMLImport& rImport,
709 sal_uInt16 nPrefix,
710 const ::rtl::OUString& rLocalName,
711 ::rtl::OUString& rRangeString );
712 virtual ~SchXMLRangeSomewhereContext();
713
714 virtual SvXMLImportContext* CreateChildContext(
715 sal_uInt16 nPrefix,
716 const ::rtl::OUString& rLocalName,
717 const com::sun::star::uno::Reference< com::sun::star::xml::sax::XAttributeList >& xAttrList );
718 virtual void EndElement();
719 };
720
721 //---------------------------------------------------------------------------------------------------
722 //---------------------------------------------------------------------------------------------------
723
724 // ========================================
725 // classes for cells and their content
726 // ========================================
727
728 // ----------------------------------------
729 // class SchXMLTableCellContext
730 // ----------------------------------------
731
SchXMLTableCellContext(SchXMLImportHelper & rImpHelper,SvXMLImport & rImport,const rtl::OUString & rLocalName,SchXMLTable & aTable)732 SchXMLTableCellContext::SchXMLTableCellContext(
733 SchXMLImportHelper& rImpHelper,
734 SvXMLImport& rImport,
735 const rtl::OUString& rLocalName,
736 SchXMLTable& aTable ) :
737 SvXMLImportContext( rImport, XML_NAMESPACE_TABLE, rLocalName ),
738 mrImportHelper( rImpHelper ),
739 mrTable( aTable )
740 {
741 }
742
~SchXMLTableCellContext()743 SchXMLTableCellContext::~SchXMLTableCellContext()
744 {
745 }
746
StartElement(const uno::Reference<xml::sax::XAttributeList> & xAttrList)747 void SchXMLTableCellContext::StartElement( const uno::Reference< xml::sax::XAttributeList >& xAttrList )
748 {
749 sal_Int16 nAttrCount = xAttrList.is()? xAttrList->getLength(): 0;
750 rtl::OUString aValue;
751 rtl::OUString aLocalName;
752 rtl::OUString aCellContent;
753 SchXMLCellType eValueType = SCH_CELL_TYPE_UNKNOWN;
754 const SvXMLTokenMap& rAttrTokenMap = mrImportHelper.GetCellAttrTokenMap();
755
756 for( sal_Int16 i = 0; i < nAttrCount; i++ )
757 {
758 rtl::OUString sAttrName = xAttrList->getNameByIndex( i );
759 sal_uInt16 nPrefix = GetImport().GetNamespaceMap().GetKeyByAttrName( sAttrName, &aLocalName );
760
761 switch( rAttrTokenMap.Get( nPrefix, aLocalName ))
762 {
763 case XML_TOK_CELL_VAL_TYPE:
764 aValue = xAttrList->getValueByIndex( i );
765 if( IsXMLToken( aValue, XML_FLOAT ) )
766 eValueType = SCH_CELL_TYPE_FLOAT;
767 else if( IsXMLToken( aValue, XML_STRING ) )
768 eValueType = SCH_CELL_TYPE_STRING;
769 break;
770
771 case XML_TOK_CELL_VALUE:
772 aCellContent = xAttrList->getValueByIndex( i );
773 break;
774 }
775 }
776
777 mbReadText = sal_True;
778 SchXMLCell aCell;
779 aCell.eType = eValueType;
780
781 if( eValueType == SCH_CELL_TYPE_FLOAT )
782 {
783 double fData;
784 // the result may be false if a NaN is read, but that's ok
785 SvXMLUnitConverter::convertDouble( fData, aCellContent );
786
787 aCell.fValue = fData;
788 // dont read text from following <text:p> or <text:list> element
789 mbReadText = sal_False;
790 }
791
792 mrTable.aData[ mrTable.nRowIndex ].push_back( aCell );
793 mrTable.nColumnIndex++;
794 if( mrTable.nMaxColumnIndex < mrTable.nColumnIndex )
795 mrTable.nMaxColumnIndex = mrTable.nColumnIndex;
796 }
797
CreateChildContext(sal_uInt16 nPrefix,const rtl::OUString & rLocalName,const uno::Reference<xml::sax::XAttributeList> &)798 SvXMLImportContext* SchXMLTableCellContext::CreateChildContext(
799 sal_uInt16 nPrefix,
800 const rtl::OUString& rLocalName,
801 const uno::Reference< xml::sax::XAttributeList >& )
802 {
803 SvXMLImportContext* pContext = 0;
804
805 // <text:list> element
806 if( nPrefix == XML_NAMESPACE_TEXT && IsXMLToken( rLocalName, XML_LIST ) && mbReadText )
807 {
808 SchXMLCell& rCell = mrTable.aData[ mrTable.nRowIndex ][ mrTable.nColumnIndex ];
809 rCell.pComplexString = new Sequence< OUString >();
810 rCell.eType = SCH_CELL_TYPE_COMPLEX_STRING;
811 pContext = new SchXMLTextListContext( GetImport(), rLocalName, *rCell.pComplexString );
812 mbReadText = sal_False;//don't apply text from <text:p>
813 }
814 // <text:p> element - read text (and range from text:id old version)
815 else if( nPrefix == XML_NAMESPACE_TEXT && IsXMLToken( rLocalName, XML_P ) )
816 {
817 pContext = new SchXMLParagraphContext( GetImport(), rLocalName, maCellContent, &maRangeId );
818 }
819 // <draw:g> element - read range
820 else if( nPrefix == XML_NAMESPACE_DRAW && IsXMLToken( rLocalName, XML_G ) )
821 {
822 //#i113950# previously the range was exported to attribute text:id, but that attribute does not allow arbitrary strings anymore
823 //so we need to find an alternative to save that range info for copy/paste scenario ... -> use description at an empty group element for now
824 pContext = new SchXMLRangeSomewhereContext( GetImport(), nPrefix, rLocalName, maRangeId );
825 }
826 else
827 {
828 pContext = new SvXMLImportContext( GetImport(), nPrefix, rLocalName );
829 }
830
831 return pContext;
832 }
833
EndElement()834 void SchXMLTableCellContext::EndElement()
835 {
836 if( mbReadText && maCellContent.getLength() ) //apply text from <text:p> element
837 mrTable.aData[ mrTable.nRowIndex ][ mrTable.nColumnIndex ].aString = maCellContent;
838 if( maRangeId.getLength())
839 mrTable.aData[ mrTable.nRowIndex ][ mrTable.nColumnIndex ].aRangeId = maRangeId;
840 }
841
842 // ========================================
843
lcl_ApplyCellToComplexLabel(const SchXMLCell & rCell,Sequence<uno::Any> & rComplexLabel)844 void lcl_ApplyCellToComplexLabel( const SchXMLCell& rCell, Sequence< uno::Any >& rComplexLabel )
845 {
846 if( rCell.eType == SCH_CELL_TYPE_STRING )
847 {
848 rComplexLabel.realloc(1);
849 rComplexLabel[0] = uno::makeAny( rCell.aString );
850 }
851 else if( rCell.pComplexString && rCell.eType == SCH_CELL_TYPE_COMPLEX_STRING )
852 {
853 sal_Int32 nCount = rCell.pComplexString->getLength();
854 rComplexLabel.realloc( nCount );
855 for( sal_Int32 nN=0; nN<nCount; nN++)
856 rComplexLabel[nN] = uno::makeAny((*rCell.pComplexString)[nN]);
857 }
858 else if( rCell.eType == SCH_CELL_TYPE_FLOAT )
859 {
860 rComplexLabel.realloc(1);
861 rComplexLabel[0] = uno::makeAny( rCell.fValue );
862 }
863 }
864
applyTableToInternalDataProvider(const SchXMLTable & rTable,uno::Reference<chart2::XChartDocument> xChartDoc)865 void SchXMLTableHelper::applyTableToInternalDataProvider(
866 const SchXMLTable& rTable,
867 uno::Reference< chart2::XChartDocument > xChartDoc )
868 {
869 // apply all data read from the local table to the internal data provider
870 if( !xChartDoc.is() || !xChartDoc->hasInternalDataProvider() )
871 return;
872 Reference< chart2::data::XDataProvider > xDataProv( xChartDoc->getDataProvider() );
873 if( !xDataProv.is() )
874 return;
875
876 // prepare the read local table data
877 sal_Int32 nNumRows( static_cast< sal_Int32 >( rTable.aData.size()));
878 sal_Int32 nRowOffset = 0;
879 if( rTable.bHasHeaderRow )
880 {
881 --nNumRows;
882 nRowOffset = 1;
883 }
884 sal_Int32 nNumColumns( rTable.nMaxColumnIndex + 1 );
885 sal_Int32 nColOffset = 0;
886 if( rTable.bHasHeaderColumn )
887 {
888 --nNumColumns;
889 nColOffset = 1;
890 }
891
892 Sequence< Sequence< double > > aDataInRows( nNumRows );
893 Sequence< Sequence< uno::Any > > aComplexRowDescriptions( nNumRows );
894 Sequence< Sequence< uno::Any > > aComplexColumnDescriptions( nNumColumns );
895 for( sal_Int32 i=0; i<nNumRows; ++i )
896 aDataInRows[i].realloc( nNumColumns );
897
898 if( rTable.aData.begin() != rTable.aData.end())
899 {
900 // apply column labels
901 if( rTable.bHasHeaderRow )
902 {
903 const ::std::vector< SchXMLCell >& rFirstRow = rTable.aData.front();
904 const sal_Int32 nColumnLabelsSize = aComplexColumnDescriptions.getLength();
905 const sal_Int32 nMax = ::std::min< sal_Int32 >( nColumnLabelsSize, static_cast< sal_Int32 >( rFirstRow.size()) - nColOffset );
906 OSL_ASSERT( nMax == nColumnLabelsSize );
907 for( sal_Int32 i=0; i<nMax; ++i )
908 lcl_ApplyCellToComplexLabel( rFirstRow[i+nColOffset], aComplexColumnDescriptions[i] );
909 }
910
911 std::vector< ::std::vector< SchXMLCell > >::const_iterator aRowIter( rTable.aData.begin() + nRowOffset );
912 std::vector< ::std::vector< SchXMLCell > >::const_iterator aEnd( rTable.aData.end() );
913 for( sal_Int32 nRow = 0; aRowIter != aEnd && nRow < nNumRows; ++aRowIter, ++nRow )
914 {
915 const ::std::vector< SchXMLCell >& rRow = *aRowIter;
916 if( !rRow.empty() )
917 {
918 // row label
919 if( rTable.bHasHeaderColumn )
920 lcl_ApplyCellToComplexLabel( rRow.front(), aComplexRowDescriptions[nRow] );
921
922 // values
923 Sequence< double >& rTargetRow = aDataInRows[nRow];
924 lcl_ApplyCellToData aApplyCellToData = ::std::for_each( rRow.begin() + nColOffset, rRow.end(), lcl_ApplyCellToData( rTargetRow ) );
925 double fNaN = 0.0;
926 ::rtl::math::setNan( &fNaN );
927 for( sal_Int32 nCurrentIndex = aApplyCellToData.getCurrentIndex(); nCurrentIndex<nNumColumns; nCurrentIndex++ )
928 rTargetRow[nCurrentIndex] = fNaN;//#i110615#
929 }
930 }
931 }
932
933 // apply the collected data to the chart
934 Reference< chart2::XAnyDescriptionAccess > xDataAccess( xDataProv, uno::UNO_QUERY );
935 if( !xDataAccess.is() )
936 return;
937
938 xDataAccess->setData( aDataInRows );
939 if( rTable.bHasHeaderColumn )
940 xDataAccess->setAnyRowDescriptions( aComplexRowDescriptions );
941 if( rTable.bHasHeaderRow )
942 xDataAccess->setAnyColumnDescriptions( aComplexColumnDescriptions );
943
944 if ( rTable.bProtected )
945 {
946 try
947 {
948 Reference< beans::XPropertySet > xProps( xChartDoc, uno::UNO_QUERY_THROW );
949 xProps->setPropertyValue( OUString( RTL_CONSTASCII_USTRINGPARAM( "DisableDataTableDialog" ) ), uno::makeAny( sal_True ) );
950 xProps->setPropertyValue( OUString( RTL_CONSTASCII_USTRINGPARAM( "DisableComplexChartTypes" ) ), uno::makeAny( sal_True ) );
951 }
952 catch ( uno::Exception& )
953 {
954 }
955 }
956 }
957
switchRangesFromOuterToInternalIfNecessary(const SchXMLTable & rTable,const tSchXMLLSequencesPerIndex & rLSequencesPerIndex,uno::Reference<chart2::XChartDocument> xChartDoc,chart::ChartDataRowSource eDataRowSource)958 void SchXMLTableHelper::switchRangesFromOuterToInternalIfNecessary(
959 const SchXMLTable& rTable,
960 const tSchXMLLSequencesPerIndex & rLSequencesPerIndex,
961 uno::Reference< chart2::XChartDocument > xChartDoc,
962 chart::ChartDataRowSource eDataRowSource )
963 {
964 if( ! (xChartDoc.is() && xChartDoc->hasInternalDataProvider()))
965 return;
966
967 // If the range-strings are valid (starting with "local-table") they should
968 // be interpreted like given, otherwise (when the ranges refer to Calc- or
969 // Writer-ranges, but the container is not available like when pasting a
970 // chart from Calc to Impress) the range is ignored, and every object gets
971 // one table column in the order of appearance, which is: 1. categories,
972 // 2. data series: 2.a) domains, 2.b) values (main-role, usually y-values)
973
974 Reference< chart2::data::XDataProvider > xDataProv( xChartDoc->getDataProvider());
975
976 // create a mapping from original ranges to new ranges
977 lcl_tOriginalRangeToInternalRangeMap aRangeMap;
978
979 lcl_fillRangeMapping( rTable, aRangeMap, eDataRowSource );
980
981 bool bCategoriesApplied = false;
982 // translate ranges (using the map created before)
983 for( tSchXMLLSequencesPerIndex::const_iterator aLSeqIt( rLSequencesPerIndex.begin());
984 aLSeqIt != rLSequencesPerIndex.end(); ++aLSeqIt )
985 {
986 if( aLSeqIt->second.is())
987 {
988 // values/error bars/categories
989 if( aLSeqIt->first.second == SCH_XML_PART_VALUES ||
990 aLSeqIt->first.second == SCH_XML_PART_ERROR_BARS )
991 {
992 Reference< chart2::data::XDataSequence > xSeq( aLSeqIt->second->getValues());
993 OUString aRange;
994 if( xSeq.is() &&
995 SchXMLTools::getXMLRangePropertyFromDataSequence( xSeq, aRange, /* bClearProp = */ true ) &&
996 lcl_mapContainsRange( aRangeMap, aRange ))
997 {
998 Reference< chart2::data::XDataSequence > xNewSeq(
999 lcl_reassignDataSequence( xSeq, xDataProv, aRangeMap, aRange ));
1000 if( xNewSeq != xSeq )
1001 {
1002 SchXMLTools::copyProperties( Reference< beans::XPropertySet >( xSeq, uno::UNO_QUERY ),
1003 Reference< beans::XPropertySet >( xNewSeq, uno::UNO_QUERY ));
1004 aLSeqIt->second->setValues( xNewSeq );
1005 }
1006 }
1007 else
1008 {
1009 if( lcl_tableOfRangeMatches( aRange, rTable.aTableNameOfFile ))
1010 {
1011 if( aLSeqIt->first.first == SCH_XML_CATEGORIES_INDEX )
1012 bCategoriesApplied = true;
1013 }
1014 else
1015 {
1016 if( aLSeqIt->first.first == SCH_XML_CATEGORIES_INDEX )
1017 {
1018 Reference< beans::XPropertySet > xOldSequenceProp( aLSeqIt->second->getValues(), uno::UNO_QUERY );
1019 Reference< chart2::data::XDataSequence > xNewSequence(
1020 xDataProv->createDataSequenceByRangeRepresentation(
1021 OUString(RTL_CONSTASCII_USTRINGPARAM("categories"))));
1022 SchXMLTools::copyProperties(
1023 xOldSequenceProp, Reference< beans::XPropertySet >( xNewSequence, uno::UNO_QUERY ));
1024 aLSeqIt->second->setValues( xNewSequence );
1025 bCategoriesApplied = true;
1026 }
1027 else
1028 {
1029 Reference< beans::XPropertySet > xOldSequenceProp( aLSeqIt->second->getValues(), uno::UNO_QUERY );
1030 OUString aRep( OUString::valueOf( aLSeqIt->first.first ));
1031 Reference< chart2::data::XDataSequence > xNewSequence(
1032 xDataProv->createDataSequenceByRangeRepresentation( aRep ));
1033 SchXMLTools::copyProperties(
1034 xOldSequenceProp, Reference< beans::XPropertySet >( xNewSequence, uno::UNO_QUERY ));
1035 aLSeqIt->second->setValues( xNewSequence );
1036 }
1037 }
1038 }
1039 }
1040 else // labels
1041 {
1042 OSL_ASSERT( aLSeqIt->first.second == SCH_XML_PART_LABEL );
1043 // labels
1044 Reference< chart2::data::XDataSequence > xSeq( aLSeqIt->second->getLabel());
1045 OUString aRange;
1046 if( xSeq.is() &&
1047 SchXMLTools::getXMLRangePropertyFromDataSequence( xSeq, aRange, /* bClearProp = */ true ) &&
1048 lcl_mapContainsRange( aRangeMap, aRange ))
1049 {
1050 Reference< chart2::data::XDataSequence > xNewSeq(
1051 lcl_reassignDataSequence( xSeq, xDataProv, aRangeMap, aRange ));
1052 if( xNewSeq != xSeq )
1053 {
1054 SchXMLTools::copyProperties( Reference< beans::XPropertySet >( xSeq, uno::UNO_QUERY ),
1055 Reference< beans::XPropertySet >( xNewSeq, uno::UNO_QUERY ));
1056 aLSeqIt->second->setLabel( xNewSeq );
1057 }
1058 }
1059 else if( ! lcl_tableOfRangeMatches( aRange, rTable.aTableNameOfFile ))
1060 {
1061 OUString aRep( RTL_CONSTASCII_USTRINGPARAM("label "));
1062 aRep += OUString::valueOf( aLSeqIt->first.first );
1063
1064 Reference< chart2::data::XDataSequence > xNewSeq(
1065 xDataProv->createDataSequenceByRangeRepresentation( aRep ));
1066 SchXMLTools::copyProperties( Reference< beans::XPropertySet >( xSeq, uno::UNO_QUERY ),
1067 Reference< beans::XPropertySet >( xNewSeq, uno::UNO_QUERY ));
1068 aLSeqIt->second->setLabel( xNewSeq );
1069 }
1070 }
1071 }
1072 }
1073
1074 // there exist files with own data without a categories element but with row
1075 // descriptions. The row descriptions were used as categories even without
1076 // the categories element
1077 if( ! bCategoriesApplied )
1078 {
1079 SchXMLTools::CreateCategories(
1080 xDataProv, xChartDoc, OUString(RTL_CONSTASCII_USTRINGPARAM("categories")),
1081 0 /* nCooSysIndex */, 0 /* nDimension */ );
1082 }
1083
1084 //i91578 display of hidden values (copy paste scenario; use hidden flag during migration to locale table upon paste )
1085 //remove series that consist only of hidden columns
1086 Reference< chart2::XInternalDataProvider > xInternalDataProvider( xDataProv, uno::UNO_QUERY );
1087 if( xInternalDataProvider.is() && !rTable.aHiddenColumns.empty() )
1088 {
1089 try
1090 {
1091 Reference< chart2::XCoordinateSystemContainer > xCooSysCnt( xChartDoc->getFirstDiagram(), uno::UNO_QUERY_THROW );
1092 Sequence< Reference< chart2::XCoordinateSystem > > aCooSysSeq( xCooSysCnt->getCoordinateSystems() );
1093 for( sal_Int32 nC=0; nC<aCooSysSeq.getLength(); ++nC )
1094 {
1095 Reference< chart2::XChartTypeContainer > xCooSysContainer( aCooSysSeq[nC], uno::UNO_QUERY_THROW );
1096 Sequence< Reference< chart2::XChartType > > aChartTypeSeq( xCooSysContainer->getChartTypes());
1097 for( sal_Int32 nT=0; nT<aChartTypeSeq.getLength(); ++nT )
1098 {
1099 Reference< chart2::XDataSeriesContainer > xSeriesContainer( aChartTypeSeq[nT], uno::UNO_QUERY );
1100 if(!xSeriesContainer.is())
1101 continue;
1102 Sequence< Reference< chart2::XDataSeries > > aSeriesSeq( xSeriesContainer->getDataSeries() );
1103 std::vector< Reference< chart2::XDataSeries > > aRemainingSeries;
1104
1105 for( sal_Int32 nS = 0; nS < aSeriesSeq.getLength(); nS++ )
1106 {
1107 Reference< chart2::data::XDataSource > xDataSource( aSeriesSeq[nS], uno::UNO_QUERY );
1108 if( xDataSource.is() )
1109 {
1110 bool bHasUnhiddenColumns = false;
1111 rtl::OUString aRange;
1112 uno::Sequence< Reference< chart2::data::XLabeledDataSequence > > aSequences( xDataSource->getDataSequences() );
1113 for( sal_Int32 nN=0; nN< aSequences.getLength(); ++nN )
1114 {
1115 Reference< chart2::data::XLabeledDataSequence > xLabeledSequence( aSequences[nN] );
1116 if(!xLabeledSequence.is())
1117 continue;
1118 Reference< chart2::data::XDataSequence > xValues( xLabeledSequence->getValues() );
1119 if( xValues.is() )
1120 {
1121 aRange = xValues->getSourceRangeRepresentation();
1122 if( ::std::find( rTable.aHiddenColumns.begin(), rTable.aHiddenColumns.end(), aRange.toInt32() ) == rTable.aHiddenColumns.end() )
1123 bHasUnhiddenColumns = true;
1124 }
1125 if( !bHasUnhiddenColumns )
1126 {
1127 Reference< chart2::data::XDataSequence > xLabel( xLabeledSequence->getLabel() );
1128 if( xLabel.is() )
1129 {
1130 aRange = xLabel->getSourceRangeRepresentation();
1131 sal_Int32 nSearchIndex = 0;
1132 OUString aSecondToken = aRange.getToken( 1, ' ', nSearchIndex );
1133 if( ::std::find( rTable.aHiddenColumns.begin(), rTable.aHiddenColumns.end(), aSecondToken.toInt32() ) == rTable.aHiddenColumns.end() )
1134 bHasUnhiddenColumns = true;
1135 }
1136 }
1137 }
1138 if( bHasUnhiddenColumns )
1139 aRemainingSeries.push_back( aSeriesSeq[nS] );
1140 }
1141 }
1142
1143 if( static_cast<sal_Int32>(aRemainingSeries.size()) != aSeriesSeq.getLength() )
1144 {
1145 //remove the series that have only hidden data
1146 Sequence< Reference< chart2::XDataSeries > > aRemainingSeriesSeq( aRemainingSeries.size());
1147 ::std::copy( aRemainingSeries.begin(), aRemainingSeries.end(), aRemainingSeriesSeq.getArray());
1148 xSeriesContainer->setDataSeries( aRemainingSeriesSeq );
1149
1150 //remove unused sequences
1151 Reference< chart2::data::XDataSource > xDataSource( xChartDoc, uno::UNO_QUERY );
1152 if( xDataSource.is() )
1153 {
1154 //first detect which columns are really used
1155 std::map< sal_Int32, bool > aUsageMap;
1156 rtl::OUString aRange;
1157 Sequence< Reference< chart2::data::XLabeledDataSequence > > aUsedSequences( xDataSource->getDataSequences() );
1158 for( sal_Int32 nN=0; nN< aUsedSequences.getLength(); ++nN )
1159 {
1160 Reference< chart2::data::XLabeledDataSequence > xLabeledSequence( aUsedSequences[nN] );
1161 if(!xLabeledSequence.is())
1162 continue;
1163 Reference< chart2::data::XDataSequence > xValues( xLabeledSequence->getValues() );
1164 if( xValues.is() )
1165 {
1166 aRange = xValues->getSourceRangeRepresentation();
1167 sal_Int32 nIndex = aRange.toInt32();
1168 if( nIndex!=0 || !aRange.equals(lcl_aCategoriesRange) )
1169 aUsageMap[nIndex] = true;
1170 }
1171 Reference< chart2::data::XDataSequence > xLabel( xLabeledSequence->getLabel() );
1172 if( xLabel.is() )
1173 {
1174 aRange = xLabel->getSourceRangeRepresentation();
1175 sal_Int32 nSearchIndex = 0;
1176 OUString aSecondToken = aRange.getToken( 1, ' ', nSearchIndex );
1177 if( aSecondToken.getLength() )
1178 aUsageMap[aSecondToken.toInt32()] = true;
1179 }
1180 }
1181
1182 ::std::vector< sal_Int32 > aSequenceIndexesToDelete;
1183 for( ::std::vector< sal_Int32 >::const_iterator aIt(
1184 rTable.aHiddenColumns.begin()); aIt != rTable.aHiddenColumns.end(); ++aIt )
1185 {
1186 sal_Int32 nSequenceIndex = *aIt;
1187 if( aUsageMap.find(nSequenceIndex) != aUsageMap.end() )
1188 continue;
1189 aSequenceIndexesToDelete.push_back(nSequenceIndex);
1190 }
1191
1192 // delete unnecessary sequences of the internal data
1193 // iterate using greatest index first, so that deletion does not
1194 // shift other sequences that will be deleted later
1195 ::std::sort( aSequenceIndexesToDelete.begin(), aSequenceIndexesToDelete.end());
1196 for( ::std::vector< sal_Int32 >::reverse_iterator aIt(
1197 aSequenceIndexesToDelete.rbegin()); aIt != aSequenceIndexesToDelete.rend(); ++aIt )
1198 {
1199 if( *aIt != -1 )
1200 xInternalDataProvider->deleteSequence( *aIt );
1201 }
1202 }
1203 }
1204 }
1205 }
1206 }
1207 catch( uno::Exception & ex )
1208 {
1209 (void)ex; // avoid warning for pro build
1210 }
1211 }
1212 }
1213
1214 //---------------------------------------------------------------------------------------------------
1215
SchXMLRangeSomewhereContext(SvXMLImport & rImport,sal_uInt16 nPrefix,const OUString & rLocalName,OUString & rRangeString)1216 SchXMLRangeSomewhereContext::SchXMLRangeSomewhereContext( SvXMLImport& rImport,
1217 sal_uInt16 nPrefix,
1218 const OUString& rLocalName,
1219 OUString& rRangeString ) :
1220 SvXMLImportContext( rImport, nPrefix, rLocalName ),
1221 mrRangeString( rRangeString )
1222 {
1223 }
1224
~SchXMLRangeSomewhereContext()1225 SchXMLRangeSomewhereContext::~SchXMLRangeSomewhereContext()
1226 {
1227 }
1228
CreateChildContext(sal_uInt16 nPrefix,const OUString & rLocalName,const uno::Reference<xml::sax::XAttributeList> &)1229 SvXMLImportContext* SchXMLRangeSomewhereContext::CreateChildContext(
1230 sal_uInt16 nPrefix,
1231 const OUString& rLocalName,
1232 const uno::Reference< xml::sax::XAttributeList >& )
1233 {
1234 if( XML_NAMESPACE_SVG == nPrefix && IsXMLToken( rLocalName, XML_DESC ) )
1235 {
1236 return new XMLStringBufferImportContext(
1237 GetImport(), nPrefix, rLocalName, maRangeStringBuffer );
1238 }
1239 return new SvXMLImportContext( GetImport(), nPrefix, rLocalName );
1240 }
1241
EndElement()1242 void SchXMLRangeSomewhereContext::EndElement()
1243 {
1244 mrRangeString = maRangeStringBuffer.makeStringAndClear();
1245 }
1246
1247 /* vim: set noet sw=4 ts=4: */
1248