QGIS API Documentation 3.30.0-'s-Hertogenbosch (f186b8efe0)
qgsvectorlayerrenderer.cpp
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1/***************************************************************************
2 qgsvectorlayerrenderer.cpp
3 --------------------------------------
4 Date : December 2013
5 Copyright : (C) 2013 by Martin Dobias
6 Email : wonder dot sk at gmail dot com
7 ***************************************************************************
8 * *
9 * This program is free software; you can redistribute it and/or modify *
10 * it under the terms of the GNU General Public License as published by *
11 * the Free Software Foundation; either version 2 of the License, or *
12 * (at your option) any later version. *
13 * *
14 ***************************************************************************/
15
17
18
19#include "qgsmessagelog.h"
20#include "qgspallabeling.h"
21#include "qgsrenderer.h"
22#include "qgsrendercontext.h"
24#include "qgssymbollayer.h"
25#include "qgssymbol.h"
26#include "qgsvectorlayer.h"
31#include "qgspainteffect.h"
33#include "qgsexception.h"
34#include "qgslabelsink.h"
35#include "qgslogger.h"
40#include "qgsmapclippingutils.h"
43
44#include <QPicture>
45#include <QTimer>
46
48 : QgsMapLayerRenderer( layer->id(), &context )
49 , mFeedback( std::make_unique< QgsFeedback >() )
50 , mLayer( layer )
51 , mFields( layer->fields() )
52 , mSource( std::make_unique< QgsVectorLayerFeatureSource >( layer ) )
53 , mNoSetLayerExpressionContext( layer->customProperty( QStringLiteral( "_noset_layer_expression_context" ) ).toBool() )
54{
55 std::unique_ptr< QgsFeatureRenderer > mainRenderer( layer->renderer() ? layer->renderer()->clone() : nullptr );
56
57 if ( !mainRenderer )
58 return;
59
60 QList< const QgsFeatureRendererGenerator * > generators = layer->featureRendererGenerators();
61 std::sort( generators.begin(), generators.end(), []( const QgsFeatureRendererGenerator * g1, const QgsFeatureRendererGenerator * g2 )
62 {
63 return g1->level() < g2->level();
64 } );
65
66 bool insertedMainRenderer = false;
67 double prevLevel = std::numeric_limits< double >::lowest();
68 mRenderer = mainRenderer.get();
69 for ( const QgsFeatureRendererGenerator *generator : std::as_const( generators ) )
70 {
71 if ( generator->level() >= 0 && prevLevel < 0 && !insertedMainRenderer )
72 {
73 // insert main renderer when level changes from <0 to >0
74 mRenderers.emplace_back( std::move( mainRenderer ) );
75 insertedMainRenderer = true;
76 }
77 mRenderers.emplace_back( generator->createRenderer() );
78 prevLevel = generator->level();
79 }
80 // cppcheck-suppress accessMoved
81 if ( mainRenderer )
82 {
83 // cppcheck-suppress accessMoved
84 mRenderers.emplace_back( std::move( mainRenderer ) );
85 }
86
87 mSelectedFeatureIds = layer->selectedFeatureIds();
88
89 mDrawVertexMarkers = nullptr != layer->editBuffer();
90
91 mGeometryType = layer->geometryType();
92
93 mFeatureBlendMode = layer->featureBlendMode();
94
95 if ( context.isTemporal() )
96 {
97 QgsVectorLayerTemporalContext temporalContext;
98 temporalContext.setLayer( layer );
99 mTemporalFilter = qobject_cast< const QgsVectorLayerTemporalProperties * >( layer->temporalProperties() )->createFilterString( temporalContext, context.temporalRange() );
100 QgsDebugMsgLevel( "Rendering with Temporal Filter: " + mTemporalFilter, 2 );
101 }
102
103 // if there's already a simplification method specified via the context, we respect that. Otherwise, we fall back
104 // to the layer's individual setting
105 if ( renderContext()->vectorSimplifyMethod().simplifyHints() != QgsVectorSimplifyMethod::NoSimplification )
106 {
107 mSimplifyMethod = renderContext()->vectorSimplifyMethod();
110 }
111 else
112 {
113 mSimplifyMethod = layer->simplifyMethod();
115 }
116
118
120 if ( markerTypeString == QLatin1String( "Cross" ) )
121 {
122 mVertexMarkerStyle = Qgis::VertexMarkerType::Cross;
123 }
124 else if ( markerTypeString == QLatin1String( "SemiTransparentCircle" ) )
125 {
127 }
128 else
129 {
130 mVertexMarkerStyle = Qgis::VertexMarkerType::NoMarker;
131 }
132
134
135 QgsDebugMsgLevel( "rendering v2:\n " + mRenderer->dump(), 2 );
136
137 if ( mDrawVertexMarkers )
138 {
139 // set editing vertex markers style (main renderer only)
140 mRenderer->setVertexMarkerAppearance( mVertexMarkerStyle, mVertexMarkerSize );
141 }
142 if ( !mNoSetLayerExpressionContext )
144
145 for ( const std::unique_ptr< QgsFeatureRenderer > &renderer : mRenderers )
146 {
147 mAttrNames.unite( renderer->usedAttributes( context ) );
148 }
149 if ( context.hasRenderedFeatureHandlers() )
150 {
151 const QList< QgsRenderedFeatureHandlerInterface * > handlers = context.renderedFeatureHandlers();
152 for ( QgsRenderedFeatureHandlerInterface *handler : handlers )
153 mAttrNames.unite( handler->usedAttributes( layer, context ) );
154 }
155
156 //register label and diagram layer to the labeling engine
157 prepareLabeling( layer, mAttrNames );
158 prepareDiagrams( layer, mAttrNames );
159
160 mClippingRegions = QgsMapClippingUtils::collectClippingRegionsForLayer( context, layer );
161
162 if ( std::any_of( mRenderers.begin(), mRenderers.end(), []( const auto & renderer ) { return renderer->forceRasterRender(); } ) )
163 {
164 //raster rendering is forced for this layer
165 mForceRasterRender = true;
166 }
167
169 ( ( layer->blendMode() != QPainter::CompositionMode_SourceOver )
170 || ( layer->featureBlendMode() != QPainter::CompositionMode_SourceOver )
171 || ( !qgsDoubleNear( layer->opacity(), 1.0 ) ) ) )
172 {
173 //layer properties require rasterization
174 mForceRasterRender = true;
175 }
176
177 mReadyToCompose = false;
178}
179
181
183{
184 mRenderTimeHint = time;
185}
186
188{
189 return mFeedback.get();
190}
191
193{
194 return mForceRasterRender;
195}
196
198{
199 if ( mGeometryType == Qgis::GeometryType::Null || mGeometryType == Qgis::GeometryType::Unknown )
200 {
201 mReadyToCompose = true;
202 return true;
203 }
204
205 if ( mRenderers.empty() )
206 {
207 mReadyToCompose = true;
208 mErrors.append( QObject::tr( "No renderer for drawing." ) );
209 return false;
210 }
211
212 // if the previous layer render was relatively quick (e.g. less than 3 seconds), the we show any previously
213 // cached version of the layer during rendering instead of the usual progressive updates
214 if ( mRenderTimeHint > 0 && mRenderTimeHint <= MAX_TIME_TO_USE_CACHED_PREVIEW_IMAGE )
215 {
216 mBlockRenderUpdates = true;
217 mElapsedTimer.start();
218 }
219
220 bool res = true;
221 for ( const std::unique_ptr< QgsFeatureRenderer > &renderer : mRenderers )
222 {
223 res = renderInternal( renderer.get() ) && res;
224 }
225
226 mReadyToCompose = true;
227 return res && !renderContext()->renderingStopped();
228}
229
230bool QgsVectorLayerRenderer::renderInternal( QgsFeatureRenderer *renderer )
231{
232 const bool isMainRenderer = renderer == mRenderer;
233
234 QgsRenderContext &context = *renderContext();
235 context.setSymbologyReferenceScale( renderer->referenceScale() );
236
237 if ( renderer->type() == QLatin1String( "nullSymbol" ) )
238 {
239 // a little shortcut for the null symbol renderer - most of the time it is not going to render anything
240 // so we can even skip the whole loop to fetch features
241 if ( !isMainRenderer ||
242 ( !mDrawVertexMarkers && !mLabelProvider && !mDiagramProvider && mSelectedFeatureIds.isEmpty() ) )
243 return true;
244 }
245
246 QgsScopedQPainterState painterState( context.painter() );
247
248 bool usingEffect = false;
249 if ( renderer->paintEffect() && renderer->paintEffect()->enabled() )
250 {
251 usingEffect = true;
252 renderer->paintEffect()->begin( context );
253 }
254
255 // Per feature blending mode
256 if ( context.useAdvancedEffects() && mFeatureBlendMode != QPainter::CompositionMode_SourceOver )
257 {
258 // set the painter to the feature blend mode, so that features drawn
259 // on this layer will interact and blend with each other
260 context.painter()->setCompositionMode( mFeatureBlendMode );
261 }
262
263 renderer->startRender( context, mFields );
264
265 if ( renderer->canSkipRender() )
266 {
267 // nothing to draw for now...
268 renderer->stopRender( context );
269 return true;
270 }
271
272 QString rendererFilter = renderer->filter( mFields );
273
274 QgsRectangle requestExtent = context.extent();
275 if ( !mClippingRegions.empty() )
276 {
277 mClipFilterGeom = QgsMapClippingUtils::calculateFeatureRequestGeometry( mClippingRegions, context, mApplyClipFilter );
278 requestExtent = requestExtent.intersect( mClipFilterGeom.boundingBox() );
279
280 mClipFeatureGeom = QgsMapClippingUtils::calculateFeatureIntersectionGeometry( mClippingRegions, context, mApplyClipGeometries );
281
282 bool needsPainterClipPath = false;
283 const QPainterPath path = QgsMapClippingUtils::calculatePainterClipRegion( mClippingRegions, context, Qgis::LayerType::Vector, needsPainterClipPath );
284 if ( needsPainterClipPath )
285 context.painter()->setClipPath( path, Qt::IntersectClip );
286
287 mLabelClipFeatureGeom = QgsMapClippingUtils::calculateLabelIntersectionGeometry( mClippingRegions, context, mApplyLabelClipGeometries );
288
289 if ( mDiagramProvider )
290 mDiagramProvider->setClipFeatureGeometry( mLabelClipFeatureGeom );
291 }
292 renderer->modifyRequestExtent( requestExtent, context );
293
294 QgsFeatureRequest featureRequest = QgsFeatureRequest()
295 .setFilterRect( requestExtent )
296 .setSubsetOfAttributes( mAttrNames, mFields )
298 if ( renderer->orderByEnabled() )
299 {
300 featureRequest.setOrderBy( renderer->orderBy() );
301 }
302
303 const QgsFeatureFilterProvider *featureFilterProvider = context.featureFilterProvider();
304 if ( featureFilterProvider )
305 {
306 featureFilterProvider->filterFeatures( mLayer, featureRequest );
307 }
308 if ( !rendererFilter.isEmpty() && rendererFilter != QLatin1String( "TRUE" ) )
309 {
310 featureRequest.combineFilterExpression( rendererFilter );
311 }
312 if ( !mTemporalFilter.isEmpty() )
313 {
314 featureRequest.combineFilterExpression( mTemporalFilter );
315 }
316
317 if ( renderer->usesEmbeddedSymbols() )
318 {
319 featureRequest.setFlags( featureRequest.flags() | QgsFeatureRequest::EmbeddedSymbols );
320 }
321
322 // enable the simplification of the geometries (Using the current map2pixel context) before send it to renderer engine.
323 if ( mSimplifyGeometry )
324 {
325 double map2pixelTol = mSimplifyMethod.threshold();
326 bool validTransform = true;
327
328 const QgsMapToPixel &mtp = context.mapToPixel();
329 map2pixelTol *= mtp.mapUnitsPerPixel();
330 const QgsCoordinateTransform ct = context.coordinateTransform();
331
332 // resize the tolerance using the change of size of an 1-BBOX from the source CoordinateSystem to the target CoordinateSystem
333 if ( ct.isValid() && !ct.isShortCircuited() )
334 {
335 try
336 {
337 QgsCoordinateTransform toleranceTransform = ct;
338 QgsPointXY center = context.extent().center();
339 double rectSize = toleranceTransform.sourceCrs().mapUnits() == Qgis::DistanceUnit::Degrees ? 0.0008983 /* ~100/(40075014/360=111319.4833) */ : 100;
340
341 QgsRectangle sourceRect = QgsRectangle( center.x(), center.y(), center.x() + rectSize, center.y() + rectSize );
342 toleranceTransform.setBallparkTransformsAreAppropriate( true );
343 QgsRectangle targetRect = toleranceTransform.transform( sourceRect );
344
345 QgsDebugMsgLevel( QStringLiteral( "Simplify - SourceTransformRect=%1" ).arg( sourceRect.toString( 16 ) ), 4 );
346 QgsDebugMsgLevel( QStringLiteral( "Simplify - TargetTransformRect=%1" ).arg( targetRect.toString( 16 ) ), 4 );
347
348 if ( !sourceRect.isEmpty() && sourceRect.isFinite() && !targetRect.isEmpty() && targetRect.isFinite() )
349 {
350 QgsPointXY minimumSrcPoint( sourceRect.xMinimum(), sourceRect.yMinimum() );
351 QgsPointXY maximumSrcPoint( sourceRect.xMaximum(), sourceRect.yMaximum() );
352 QgsPointXY minimumDstPoint( targetRect.xMinimum(), targetRect.yMinimum() );
353 QgsPointXY maximumDstPoint( targetRect.xMaximum(), targetRect.yMaximum() );
354
355 double sourceHypothenuse = std::sqrt( minimumSrcPoint.sqrDist( maximumSrcPoint ) );
356 double targetHypothenuse = std::sqrt( minimumDstPoint.sqrDist( maximumDstPoint ) );
357
358 QgsDebugMsgLevel( QStringLiteral( "Simplify - SourceHypothenuse=%1" ).arg( sourceHypothenuse ), 4 );
359 QgsDebugMsgLevel( QStringLiteral( "Simplify - TargetHypothenuse=%1" ).arg( targetHypothenuse ), 4 );
360
361 if ( !qgsDoubleNear( targetHypothenuse, 0.0 ) )
362 map2pixelTol *= ( sourceHypothenuse / targetHypothenuse );
363 }
364 }
365 catch ( QgsCsException &cse )
366 {
367 QgsMessageLog::logMessage( QObject::tr( "Simplify transform error caught: %1" ).arg( cse.what() ), QObject::tr( "CRS" ) );
368 validTransform = false;
369 }
370 }
371
372 if ( validTransform )
373 {
374 QgsSimplifyMethod simplifyMethod;
376 simplifyMethod.setTolerance( map2pixelTol );
377 simplifyMethod.setThreshold( mSimplifyMethod.threshold() );
378 simplifyMethod.setForceLocalOptimization( mSimplifyMethod.forceLocalOptimization() );
379 featureRequest.setSimplifyMethod( simplifyMethod );
380
381 QgsVectorSimplifyMethod vectorMethod = mSimplifyMethod;
382 vectorMethod.setTolerance( map2pixelTol );
383 context.setVectorSimplifyMethod( vectorMethod );
384 }
385 else
386 {
387 QgsVectorSimplifyMethod vectorMethod;
389 context.setVectorSimplifyMethod( vectorMethod );
390 }
391 }
392 else
393 {
394 QgsVectorSimplifyMethod vectorMethod;
396 context.setVectorSimplifyMethod( vectorMethod );
397 }
398
399 featureRequest.setFeedback( mFeedback.get() );
400 // also set the interruption checker for the expression context, in case the renderer uses some complex expression
401 // which could benefit from early exit paths...
402 context.expressionContext().setFeedback( mFeedback.get() );
403
404 QgsFeatureIterator fit = mSource->getFeatures( featureRequest );
405 // Attach an interruption checker so that iterators that have potentially
406 // slow fetchFeature() implementations, such as in the WFS provider, can
407 // check it, instead of relying on just the mContext.renderingStopped() check
408 // in drawRenderer()
409 fit.setInterruptionChecker( mFeedback.get() );
410
411 if ( ( renderer->capabilities() & QgsFeatureRenderer::SymbolLevels ) && renderer->usingSymbolLevels() )
412 drawRendererLevels( renderer, fit );
413 else
414 drawRenderer( renderer, fit );
415
416 if ( !fit.isValid() )
417 {
418 mErrors.append( QStringLiteral( "Data source invalid" ) );
419 }
420
421 if ( usingEffect )
422 {
423 renderer->paintEffect()->end( context );
424 }
425
426 context.expressionContext().setFeedback( nullptr );
427 return true;
428}
429
430
431void QgsVectorLayerRenderer::drawRenderer( QgsFeatureRenderer *renderer, QgsFeatureIterator &fit )
432{
433 const bool isMainRenderer = renderer == mRenderer;
434
436 QgsRenderContext &context = *renderContext();
437 context.expressionContext().appendScope( symbolScope );
438
439 std::unique_ptr< QgsGeometryEngine > clipEngine;
440 if ( mApplyClipFilter )
441 {
442 clipEngine.reset( QgsGeometry::createGeometryEngine( mClipFilterGeom.constGet() ) );
443 clipEngine->prepareGeometry();
444 }
445
446 QgsFeature fet;
447 while ( fit.nextFeature( fet ) )
448 {
449 try
450 {
451 if ( context.renderingStopped() )
452 {
453 QgsDebugMsgLevel( QStringLiteral( "Drawing of vector layer %1 canceled." ).arg( layerId() ), 2 );
454 break;
455 }
456
457 if ( !fet.hasGeometry() || fet.geometry().isEmpty() )
458 continue; // skip features without geometry
459
460 if ( clipEngine && !clipEngine->intersects( fet.geometry().constGet() ) )
461 continue; // skip features outside of clipping region
462
463 if ( mApplyClipGeometries )
464 context.setFeatureClipGeometry( mClipFeatureGeom );
465
466 if ( ! mNoSetLayerExpressionContext )
467 context.expressionContext().setFeature( fet );
468
469 bool sel = isMainRenderer && context.showSelection() && mSelectedFeatureIds.contains( fet.id() );
470 bool drawMarker = isMainRenderer && ( mDrawVertexMarkers && context.drawEditingInformation() && ( !mVertexMarkerOnlyForSelection || sel ) );
471
472 // render feature
473 bool rendered = false;
475 {
476 rendered = renderer->renderFeature( fet, context, -1, sel, drawMarker );
477 }
478 else
479 {
480 rendered = renderer->willRenderFeature( fet, context );
481 }
482
483 // labeling - register feature
484 if ( rendered )
485 {
486 // as soon as first feature is rendered, we can start showing layer updates.
487 // but if we are blocking render updates (so that a previously cached image is being shown), we wait
488 // at most e.g. 3 seconds before we start forcing progressive updates.
489 if ( !mBlockRenderUpdates || mElapsedTimer.elapsed() > MAX_TIME_TO_USE_CACHED_PREVIEW_IMAGE )
490 {
491 mReadyToCompose = true;
492 }
493
494 // new labeling engine
495 if ( isMainRenderer && context.labelingEngine() && ( mLabelProvider || mDiagramProvider ) )
496 {
497 QgsGeometry obstacleGeometry;
498 QgsSymbolList symbols = renderer->originalSymbolsForFeature( fet, context );
499 QgsSymbol *symbol = nullptr;
500 if ( !symbols.isEmpty() && fet.geometry().type() == Qgis::GeometryType::Point )
501 {
502 obstacleGeometry = QgsVectorLayerLabelProvider::getPointObstacleGeometry( fet, context, symbols );
503 }
504
505 if ( !symbols.isEmpty() )
506 {
507 symbol = symbols.at( 0 );
509 }
510
511 if ( mApplyLabelClipGeometries )
512 context.setFeatureClipGeometry( mLabelClipFeatureGeom );
513
514 if ( mLabelProvider )
515 {
516 mLabelProvider->registerFeature( fet, context, obstacleGeometry, symbol );
517 }
518 if ( mDiagramProvider )
519 {
520 mDiagramProvider->registerFeature( fet, context, obstacleGeometry );
521 }
522
523 if ( mApplyLabelClipGeometries )
525 }
526 }
527 }
528 catch ( const QgsCsException &cse )
529 {
530 Q_UNUSED( cse )
531 QgsDebugMsg( QStringLiteral( "Failed to transform a point while drawing a feature with ID '%1'. Ignoring this feature. %2" )
532 .arg( fet.id() ).arg( cse.what() ) );
533 }
534 }
535
536 delete context.expressionContext().popScope();
537
538 stopRenderer( renderer, nullptr );
539}
540
541void QgsVectorLayerRenderer::drawRendererLevels( QgsFeatureRenderer *renderer, QgsFeatureIterator &fit )
542{
543 const bool isMainRenderer = renderer == mRenderer;
544
545 QHash< QgsSymbol *, QList<QgsFeature> > features; // key = symbol, value = array of features
546 QgsRenderContext &context = *renderContext();
547
548 QgsSingleSymbolRenderer *selRenderer = nullptr;
549 if ( !mSelectedFeatureIds.isEmpty() )
550 {
551 selRenderer = new QgsSingleSymbolRenderer( QgsSymbol::defaultSymbol( mGeometryType ) );
552 selRenderer->symbol()->setColor( context.selectionColor() );
553 selRenderer->setVertexMarkerAppearance( mVertexMarkerStyle, mVertexMarkerSize );
554 selRenderer->startRender( context, mFields );
555 }
556
558 std::unique_ptr< QgsExpressionContextScopePopper > scopePopper = std::make_unique< QgsExpressionContextScopePopper >( context.expressionContext(), symbolScope );
559
560
561 std::unique_ptr< QgsGeometryEngine > clipEngine;
562 if ( mApplyClipFilter )
563 {
564 clipEngine.reset( QgsGeometry::createGeometryEngine( mClipFilterGeom.constGet() ) );
565 clipEngine->prepareGeometry();
566 }
567
568 if ( mApplyLabelClipGeometries )
569 context.setFeatureClipGeometry( mLabelClipFeatureGeom );
570
571 // 1. fetch features
572 QgsFeature fet;
573 while ( fit.nextFeature( fet ) )
574 {
575 if ( context.renderingStopped() )
576 {
577 qDebug( "rendering stop!" );
578 stopRenderer( renderer, selRenderer );
579 return;
580 }
581
582 if ( !fet.hasGeometry() )
583 continue; // skip features without geometry
584
585 if ( clipEngine && !clipEngine->intersects( fet.geometry().constGet() ) )
586 continue; // skip features outside of clipping region
587
588 if ( ! mNoSetLayerExpressionContext )
589 context.expressionContext().setFeature( fet );
590 QgsSymbol *sym = renderer->symbolForFeature( fet, context );
591 if ( !sym )
592 {
593 continue;
594 }
595
597 {
598 if ( !features.contains( sym ) )
599 {
600 features.insert( sym, QList<QgsFeature>() );
601 }
602 features[sym].append( fet );
603 }
604
605 // new labeling engine
606 if ( isMainRenderer && context.labelingEngine() && ( mLabelProvider || mDiagramProvider ) )
607 {
608 QgsGeometry obstacleGeometry;
609 QgsSymbolList symbols = renderer->originalSymbolsForFeature( fet, context );
610 QgsSymbol *symbol = nullptr;
611 if ( !symbols.isEmpty() && fet.geometry().type() == Qgis::GeometryType::Point )
612 {
613 obstacleGeometry = QgsVectorLayerLabelProvider::getPointObstacleGeometry( fet, context, symbols );
614 }
615
616 if ( !symbols.isEmpty() )
617 {
618 symbol = symbols.at( 0 );
620 }
621
622 if ( mLabelProvider )
623 {
624 mLabelProvider->registerFeature( fet, context, obstacleGeometry, symbol );
625 }
626 if ( mDiagramProvider )
627 {
628 mDiagramProvider->registerFeature( fet, context, obstacleGeometry );
629 }
630 }
631 }
632
633 if ( mApplyLabelClipGeometries )
635
636 scopePopper.reset();
637
638 if ( features.empty() )
639 {
640 // nothing to draw
641 stopRenderer( renderer, selRenderer );
642 return;
643 }
644
645 // find out the order
646 QgsSymbolLevelOrder levels;
647 QgsSymbolList symbols = renderer->symbols( context );
648 for ( int i = 0; i < symbols.count(); i++ )
649 {
650 QgsSymbol *sym = symbols[i];
651 for ( int j = 0; j < sym->symbolLayerCount(); j++ )
652 {
653 int level = sym->symbolLayer( j )->renderingPass();
654 if ( level < 0 || level >= 1000 ) // ignore invalid levels
655 continue;
656 QgsSymbolLevelItem item( sym, j );
657 while ( level >= levels.count() ) // append new empty levels
658 levels.append( QgsSymbolLevel() );
659 levels[level].append( item );
660 }
661 }
662
663 if ( mApplyClipGeometries )
664 context.setFeatureClipGeometry( mClipFeatureGeom );
665
666 // 2. draw features in correct order
667 for ( int l = 0; l < levels.count(); l++ )
668 {
669 QgsSymbolLevel &level = levels[l];
670 for ( int i = 0; i < level.count(); i++ )
671 {
672 QgsSymbolLevelItem &item = level[i];
673 if ( !features.contains( item.symbol() ) )
674 {
675 QgsDebugMsg( QStringLiteral( "level item's symbol not found!" ) );
676 continue;
677 }
678 int layer = item.layer();
679 QList<QgsFeature> &lst = features[item.symbol()];
680 QList<QgsFeature>::iterator fit;
681 for ( fit = lst.begin(); fit != lst.end(); ++fit )
682 {
683 if ( context.renderingStopped() )
684 {
685 stopRenderer( renderer, selRenderer );
686 return;
687 }
688
689 bool sel = isMainRenderer && context.showSelection() && mSelectedFeatureIds.contains( fit->id() );
690 // maybe vertex markers should be drawn only during the last pass...
691 bool drawMarker = isMainRenderer && ( mDrawVertexMarkers && context.drawEditingInformation() && ( !mVertexMarkerOnlyForSelection || sel ) );
692
693 if ( ! mNoSetLayerExpressionContext )
694 context.expressionContext().setFeature( *fit );
695
696 try
697 {
698 renderer->renderFeature( *fit, context, layer, sel, drawMarker );
699
700 // as soon as first feature is rendered, we can start showing layer updates.
701 // but if we are blocking render updates (so that a previously cached image is being shown), we wait
702 // at most e.g. 3 seconds before we start forcing progressive updates.
703 if ( !mBlockRenderUpdates || mElapsedTimer.elapsed() > MAX_TIME_TO_USE_CACHED_PREVIEW_IMAGE )
704 {
705 mReadyToCompose = true;
706 }
707 }
708 catch ( const QgsCsException &cse )
709 {
710 Q_UNUSED( cse )
711 QgsDebugMsg( QStringLiteral( "Failed to transform a point while drawing a feature with ID '%1'. Ignoring this feature. %2" )
712 .arg( fet.id() ).arg( cse.what() ) );
713 }
714 }
715 }
716 }
717
718 stopRenderer( renderer, selRenderer );
719}
720
721void QgsVectorLayerRenderer::stopRenderer( QgsFeatureRenderer *renderer, QgsSingleSymbolRenderer *selRenderer )
722{
723 QgsRenderContext &context = *renderContext();
724 renderer->stopRender( context );
725 if ( selRenderer )
726 {
727 selRenderer->stopRender( context );
728 delete selRenderer;
729 }
730}
731
732void QgsVectorLayerRenderer::prepareLabeling( QgsVectorLayer *layer, QSet<QString> &attributeNames )
733{
734 QgsRenderContext &context = *renderContext();
735 // TODO: add attributes for geometry generator
736 if ( QgsLabelingEngine *engine2 = context.labelingEngine() )
737 {
738 if ( layer->labelsEnabled() )
739 {
740 if ( context.labelSink() )
741 {
742 if ( const QgsRuleBasedLabeling *rbl = dynamic_cast<const QgsRuleBasedLabeling *>( layer->labeling() ) )
743 {
744 mLabelProvider = new QgsRuleBasedLabelSinkProvider( *rbl, layer, context.labelSink() );
745 }
746 else
747 {
748 QgsPalLayerSettings settings = layer->labeling()->settings();
749 mLabelProvider = new QgsLabelSinkProvider( layer, QString(), context.labelSink(), &settings );
750 }
751 }
752 else
753 {
754 mLabelProvider = layer->labeling()->provider( layer );
755 }
756 if ( mLabelProvider )
757 {
758 engine2->addProvider( mLabelProvider );
759 if ( !mLabelProvider->prepare( context, attributeNames ) )
760 {
761 engine2->removeProvider( mLabelProvider );
762 mLabelProvider = nullptr; // deleted by engine
763 }
764 }
765 }
766 }
767
768#if 0 // TODO: limit of labels, font not found
769 QgsPalLayerSettings &palyr = mContext.labelingEngine()->layer( mLayerID );
770
771 // see if feature count limit is set for labeling
772 if ( palyr.limitNumLabels && palyr.maxNumLabels > 0 )
773 {
774 QgsFeatureIterator fit = getFeatures( QgsFeatureRequest()
775 .setFilterRect( mContext.extent() )
776 .setNoAttributes() );
777
778 // total number of features that may be labeled
779 QgsFeature f;
780 int nFeatsToLabel = 0;
781 while ( fit.nextFeature( f ) )
782 {
783 nFeatsToLabel++;
784 }
785 palyr.mFeaturesToLabel = nFeatsToLabel;
786 }
787
788 // notify user about any font substitution
789 if ( !palyr.mTextFontFound && !mLabelFontNotFoundNotified )
790 {
791 emit labelingFontNotFound( this, palyr.mTextFontFamily );
792 mLabelFontNotFoundNotified = true;
793 }
794#endif
795}
796
797void QgsVectorLayerRenderer::prepareDiagrams( QgsVectorLayer *layer, QSet<QString> &attributeNames )
798{
799 QgsRenderContext &context = *renderContext();
800 if ( QgsLabelingEngine *engine2 = context.labelingEngine() )
801 {
802 if ( layer->diagramsEnabled() )
803 {
804 mDiagramProvider = new QgsVectorLayerDiagramProvider( layer );
805 // need to be added before calling prepare() - uses map settings from engine
806 engine2->addProvider( mDiagramProvider );
807 if ( !mDiagramProvider->prepare( context, attributeNames ) )
808 {
809 engine2->removeProvider( mDiagramProvider );
810 mDiagramProvider = nullptr; // deleted by engine
811 }
812 }
813 }
814}
815
@ SkipSymbolRendering
Disable symbol rendering while still drawing labels if enabled (since QGIS 3.24)
@ UseAdvancedEffects
Enable layer opacity and blending effects.
@ SemiTransparentCircle
Semi-transparent circle marker.
@ Cross
Cross marker.
virtual QgsPalLayerSettings settings(const QString &providerId=QString()) const =0
Gets associated label settings.
virtual QgsVectorLayerLabelProvider * provider(QgsVectorLayer *layer) const
Factory for label provider implementation.
Q_GADGET Qgis::DistanceUnit mapUnits
Class for doing transforms between two map coordinate systems.
QgsCoordinateReferenceSystem sourceCrs() const
Returns the source coordinate reference system, which the transform will transform coordinates from.
void setBallparkTransformsAreAppropriate(bool appropriate)
Sets whether approximate "ballpark" results are appropriate for this coordinate transform.
bool isShortCircuited() const
Returns true if the transform short circuits because the source and destination are equivalent.
bool isValid() const
Returns true if the coordinate transform is valid, ie both the source and destination CRS have been s...
QgsPointXY transform(const QgsPointXY &point, Qgis::TransformDirection direction=Qgis::TransformDirection::Forward) const SIP_THROW(QgsCsException)
Transform the point from the source CRS to the destination CRS.
Custom exception class for Coordinate Reference System related exceptions.
Definition: qgsexception.h:66
QString what() const
Definition: qgsexception.h:48
Single scope for storing variables and functions for use within a QgsExpressionContext.
static QgsExpressionContextScope * updateSymbolScope(const QgsSymbol *symbol, QgsExpressionContextScope *symbolScope=nullptr)
Updates a symbol scope related to a QgsSymbol to an expression context.
static QgsExpressionContextScope * layerScope(const QgsMapLayer *layer)
Creates a new scope which contains variables and functions relating to a QgsMapLayer.
QgsExpressionContextScope * popScope()
Removes the last scope from the expression context and return it.
void appendScope(QgsExpressionContextScope *scope)
Appends a scope to the end of the context.
void setFeedback(QgsFeedback *feedback)
Attach a feedback object that can be queried regularly by the expression engine to check if expressio...
void setFeature(const QgsFeature &feature)
Convenience function for setting a feature for the context.
Abstract interface for use by classes that filter the features or attributes of a layer.
virtual void filterFeatures(const QgsVectorLayer *layer, QgsFeatureRequest &featureRequest) const =0
Add additional filters to the feature request to further restrict the features returned by the reques...
Wrapper for iterator of features from vector data provider or vector layer.
bool nextFeature(QgsFeature &f)
void setInterruptionChecker(QgsFeedback *interruptionChecker)
Attach an object that can be queried regularly by the iterator to check if it must stopped.
bool isValid() const
Will return if this iterator is valid.
An interface for objects which generate feature renderers for vector layers.
virtual bool canSkipRender()
Returns true if the renderer can be entirely skipped, i.e.
virtual void modifyRequestExtent(QgsRectangle &extent, QgsRenderContext &context)
Allows for a renderer to modify the extent of a feature request prior to rendering.
virtual QString filter(const QgsFields &fields=QgsFields())
If a renderer does not require all the features this method may be overridden and return an expressio...
Definition: qgsrenderer.h:216
QgsPaintEffect * paintEffect() const
Returns the current paint effect for the renderer.
virtual QgsSymbolList symbols(QgsRenderContext &context) const
Returns list of symbols used by the renderer.
virtual void stopRender(QgsRenderContext &context)
Must be called when a render cycle has finished, to allow the renderer to clean up.
QString type() const
Definition: qgsrenderer.h:142
virtual bool usesEmbeddedSymbols() const
Returns true if the renderer uses embedded symbols for features.
double referenceScale() const
Returns the symbology reference scale.
Definition: qgsrenderer.h:476
bool usingSymbolLevels() const
Definition: qgsrenderer.h:302
virtual QString dump() const
Returns debug information about this renderer.
virtual QgsFeatureRenderer::Capabilities capabilities()
Returns details about internals of this renderer.
Definition: qgsrenderer.h:293
virtual QgsSymbol * symbolForFeature(const QgsFeature &feature, QgsRenderContext &context) const =0
To be overridden.
@ SymbolLevels
Rendering with symbol levels (i.e. implements symbols(), symbolForFeature())
Definition: qgsrenderer.h:273
bool orderByEnabled() const
Returns whether custom ordering will be applied before features are processed by this renderer.
virtual bool willRenderFeature(const QgsFeature &feature, QgsRenderContext &context) const
Returns whether the renderer will render a feature or not.
virtual void startRender(QgsRenderContext &context, const QgsFields &fields)
Must be called when a new render cycle is started.
Definition: qgsrenderer.cpp:90
virtual bool renderFeature(const QgsFeature &feature, QgsRenderContext &context, int layer=-1, bool selected=false, bool drawVertexMarker=false) SIP_THROW(QgsCsException)
Render a feature using this renderer in the given context.
void setVertexMarkerAppearance(Qgis::VertexMarkerType type, double size)
Sets type and size of editing vertex markers for subsequent rendering.
QgsFeatureRequest::OrderBy orderBy() const
Gets the order in which features shall be processed by this renderer.
virtual QgsSymbolList originalSymbolsForFeature(const QgsFeature &feature, QgsRenderContext &context) const
Equivalent of originalSymbolsForFeature() call extended to support renderers that may use more symbol...
virtual QgsFeatureRenderer * clone() const =0
Create a deep copy of this renderer.
This class wraps a request for features to a vector layer (or directly its vector data provider).
QgsFeatureRequest & setSimplifyMethod(const QgsSimplifyMethod &simplifyMethod)
Set a simplification method for geometries that will be fetched.
QgsFeatureRequest & combineFilterExpression(const QString &expression)
Modifies the existing filter expression to add an additional expression filter.
QgsFeatureRequest & setFlags(QgsFeatureRequest::Flags flags)
Sets flags that affect how features will be fetched.
Flags flags() const
Returns the flags which affect how features are fetched.
QgsFeatureRequest & setSubsetOfAttributes(const QgsAttributeList &attrs)
Set a subset of attributes that will be fetched.
void setFeedback(QgsFeedback *feedback)
Attach a feedback object that can be queried regularly by the iterator to check if it should be cance...
@ EmbeddedSymbols
Retrieve any embedded feature symbology (since QGIS 3.20)
QgsFeatureRequest & setExpressionContext(const QgsExpressionContext &context)
Sets the expression context used to evaluate filter expressions.
QgsFeatureRequest & setNoAttributes()
Set that no attributes will be fetched.
QgsFeatureRequest & setOrderBy(const OrderBy &orderBy)
Set a list of order by clauses.
QgsFeatureRequest & setFilterRect(const QgsRectangle &rectangle)
Sets the rectangle from which features will be taken.
The feature class encapsulates a single feature including its unique ID, geometry and a list of field...
Definition: qgsfeature.h:56
QgsGeometry geometry
Definition: qgsfeature.h:67
bool hasGeometry() const
Returns true if the feature has an associated geometry.
Definition: qgsfeature.cpp:233
Q_GADGET QgsFeatureId id
Definition: qgsfeature.h:64
Base class for feedback objects to be used for cancellation of something running in a worker thread.
Definition: qgsfeedback.h:45
A geometry is the spatial representation of a feature.
Definition: qgsgeometry.h:164
const QgsAbstractGeometry * constGet() const SIP_HOLDGIL
Returns a non-modifiable (const) reference to the underlying abstract geometry primitive.
Qgis::GeometryType type
Definition: qgsgeometry.h:167
static QgsGeometryEngine * createGeometryEngine(const QgsAbstractGeometry *geometry)
Creates and returns a new geometry engine representing the specified geometry.
bool isEmpty() const
Returns true if the geometry is empty (eg a linestring with no vertices, or a collection with no geom...
QgsRectangle boundingBox() const
Returns the bounding box of the geometry.
Implements a derived label provider for use with QgsLabelSink.
Definition: qgslabelsink.h:75
The QgsLabelingEngine class provides map labeling functionality.
static QPainterPath calculatePainterClipRegion(const QList< QgsMapClippingRegion > &regions, const QgsRenderContext &context, Qgis::LayerType layerType, bool &shouldClip)
Returns a QPainterPath representing the intersection of clipping regions from context which should be...
static QList< QgsMapClippingRegion > collectClippingRegionsForLayer(const QgsRenderContext &context, const QgsMapLayer *layer)
Collects the list of map clipping regions from a context which apply to a map layer.
static QgsGeometry calculateLabelIntersectionGeometry(const QList< QgsMapClippingRegion > &regions, const QgsRenderContext &context, bool &shouldClip)
Returns the geometry representing the intersection of clipping regions from context which should be u...
static QgsGeometry calculateFeatureIntersectionGeometry(const QList< QgsMapClippingRegion > &regions, const QgsRenderContext &context, bool &shouldClip)
Returns the geometry representing the intersection of clipping regions from context which should be u...
static QgsGeometry calculateFeatureRequestGeometry(const QList< QgsMapClippingRegion > &regions, const QgsRenderContext &context, bool &shouldFilter)
Returns the geometry representing the intersection of clipping regions from context.
Base class for utility classes that encapsulate information necessary for rendering of map layers.
bool mReadyToCompose
The flag must be set to false in renderer's constructor if wants to use the smarter map redraws funct...
static constexpr int MAX_TIME_TO_USE_CACHED_PREVIEW_IMAGE
Maximum time (in ms) to allow display of a previously cached preview image while rendering layers,...
QString layerId() const
Gets access to the ID of the layer rendered by this class.
QgsRenderContext * renderContext()
Returns the render context associated with the renderer.
QPainter::CompositionMode blendMode() const
Returns the current blending mode for a layer.
double opacity
Definition: qgsmaplayer.h:82
Perform transforms between map coordinates and device coordinates.
Definition: qgsmaptopixel.h:39
double mapUnitsPerPixel() const
Returns the current map units per pixel.
static void logMessage(const QString &message, const QString &tag=QString(), Qgis::MessageLevel level=Qgis::MessageLevel::Warning, bool notifyUser=true)
Adds a message to the log instance (and creates it if necessary).
virtual void begin(QgsRenderContext &context)
Begins intercepting paint operations to a render context.
virtual void end(QgsRenderContext &context)
Ends interception of paint operations to a render context, and draws the result to the render context...
bool enabled() const
Returns whether the effect is enabled.
Contains settings for how a map layer will be labeled.
A class to represent a 2D point.
Definition: qgspointxy.h:59
double y
Definition: qgspointxy.h:63
Q_GADGET double x
Definition: qgspointxy.h:62
A rectangle specified with double values.
Definition: qgsrectangle.h:42
QString toString(int precision=16) const
Returns a string representation of form xmin,ymin : xmax,ymax Coordinates will be truncated to the sp...
double yMaximum() const SIP_HOLDGIL
Returns the y maximum value (top side of rectangle).
Definition: qgsrectangle.h:193
double xMaximum() const SIP_HOLDGIL
Returns the x maximum value (right side of rectangle).
Definition: qgsrectangle.h:183
double xMinimum() const SIP_HOLDGIL
Returns the x minimum value (left side of rectangle).
Definition: qgsrectangle.h:188
double yMinimum() const SIP_HOLDGIL
Returns the y minimum value (bottom side of rectangle).
Definition: qgsrectangle.h:198
bool isEmpty() const
Returns true if the rectangle is empty.
Definition: qgsrectangle.h:469
QgsRectangle intersect(const QgsRectangle &rect) const
Returns the intersection with the given rectangle.
Definition: qgsrectangle.h:333
bool isFinite() const
Returns true if the rectangle has finite boundaries.
Definition: qgsrectangle.h:559
QgsPointXY center() const SIP_HOLDGIL
Returns the center point of the rectangle.
Definition: qgsrectangle.h:251
Contains information about the context of a rendering operation.
bool useAdvancedEffects() const
Returns true if advanced effects such as blend modes such be used.
bool hasRenderedFeatureHandlers() const
Returns true if the context has any rendered feature handlers.
QPainter * painter()
Returns the destination QPainter for the render operation.
QgsExpressionContext & expressionContext()
Gets the expression context.
void setVectorSimplifyMethod(const QgsVectorSimplifyMethod &simplifyMethod)
Sets the simplification setting to use when rendering vector layers.
QgsLabelSink * labelSink() const
Returns the associated label sink, or nullptr if not set.
const QgsRectangle & extent() const
When rendering a map layer, calling this method returns the "clipping" extent for the layer (in the l...
bool testFlag(Qgis::RenderContextFlag flag) const
Check whether a particular flag is enabled.
void setFeatureClipGeometry(const QgsGeometry &geometry)
Sets a geometry to use to clip features at render time.
const QgsFeatureFilterProvider * featureFilterProvider() const
Gets the filter feature provider used for additional filtering of rendered features.
QList< QgsRenderedFeatureHandlerInterface * > renderedFeatureHandlers() const
Returns the list of rendered feature handlers to use while rendering map layers.
void setSymbologyReferenceScale(double scale)
Sets the symbology reference scale.
bool showSelection() const
Returns true if vector selections should be shown in the rendered map.
const QgsVectorSimplifyMethod & vectorSimplifyMethod() const
Returns the simplification settings to use when rendering vector layers.
const QgsMapToPixel & mapToPixel() const
Returns the context's map to pixel transform, which transforms between map coordinates and device coo...
QColor selectionColor() const
Returns the color to use when rendering selected features.
bool drawEditingInformation() const
Returns true if edit markers should be drawn during the render operation.
bool renderingStopped() const
Returns true if the rendering operation has been stopped and any ongoing rendering should be canceled...
QgsLabelingEngine * labelingEngine() const
Gets access to new labeling engine (may be nullptr).
QgsCoordinateTransform coordinateTransform() const
Returns the current coordinate transform for the context.
An interface for classes which provider custom handlers for features rendered as part of a map render...
Implements a derived label provider for rule based labels for use with QgsLabelSink.
Definition: qgslabelsink.h:95
Rule based labeling for a vector layer.
Scoped object for saving and restoring a QPainter object's state.
T value(const QString &dynamicKeyPart=QString()) const
Returns settings value.
T value(const QString &dynamicKeyPart=QString()) const
Returns settings value.
static const QgsSettingsEntryDouble * settingsDigitizingMarkerSizeMm
Settings entry digitizing marker size mm.
static const QgsSettingsEntryBool * settingsDigitizingMarkerOnlyForSelected
Settings entry digitizing marker only for selected.
static const QgsSettingsEntryString * settingsDigitizingMarkerStyle
Settings entry digitizing marker style.
This class contains information about how to simplify geometries fetched from a QgsFeatureIterator.
void setTolerance(double tolerance)
Sets the tolerance of simplification in map units. Represents the maximum distance in map units betwe...
void setThreshold(float threshold)
Sets the simplification threshold in pixels. Represents the maximum distance in pixels between two co...
void setForceLocalOptimization(bool localOptimization)
Sets whether the simplification executes after fetch the geometries from provider,...
void setMethodType(MethodType methodType)
Sets the simplification type.
@ OptimizeForRendering
Simplify using the map2pixel data to optimize the rendering of geometries.
QgsSymbol * symbol() const
Returns the symbol which will be rendered for every feature.
void stopRender(QgsRenderContext &context) override
Must be called when a render cycle has finished, to allow the renderer to clean up.
void startRender(QgsRenderContext &context, const QgsFields &fields) override
Must be called when a new render cycle is started.
int renderingPass() const
Specifies the rendering pass in which this symbol layer should be rendered.
int layer() const
The layer of this symbol level.
QgsSymbol * symbol() const
The symbol of this symbol level.
Abstract base class for all rendered symbols.
Definition: qgssymbol.h:93
QgsSymbolLayer * symbolLayer(int layer)
Returns the symbol layer at the specified index.
Definition: qgssymbol.cpp:756
void setColor(const QColor &color) const
Sets the color for the symbol.
Definition: qgssymbol.cpp:898
int symbolLayerCount() const
Returns the total number of symbol layers contained in the symbol.
Definition: qgssymbol.h:215
static QgsSymbol * defaultSymbol(Qgis::GeometryType geomType)
Returns a new default symbol for the specified geometry type.
Definition: qgssymbol.cpp:704
const QgsDateTimeRange & temporalRange() const
Returns the datetime range for the object.
bool isTemporal() const
Returns true if the object's temporal range is enabled, and the object will be filtered when renderin...
The QgsVectorLayerDiagramProvider class implements support for diagrams within the labeling engine.
virtual bool prepare(const QgsRenderContext &context, QSet< QString > &attributeNames)
Prepare for registration of features.
virtual void registerFeature(QgsFeature &feature, QgsRenderContext &context, const QgsGeometry &obstacleGeometry=QgsGeometry())
Register a feature for labeling as one or more QgsLabelFeature objects stored into mFeatures.
void setClipFeatureGeometry(const QgsGeometry &geometry)
Sets a geometry to use to clip features to when registering them as diagrams.
Partial snapshot of vector layer's state (only the members necessary for access to features)
virtual bool prepare(QgsRenderContext &context, QSet< QString > &attributeNames)
Prepare for registration of features.
static QgsGeometry getPointObstacleGeometry(QgsFeature &fet, QgsRenderContext &context, const QgsSymbolList &symbols)
Returns the geometry for a point feature which should be used as an obstacle for labels.
virtual QList< QgsLabelFeature * > registerFeature(const QgsFeature &feature, QgsRenderContext &context, const QgsGeometry &obstacleGeometry=QgsGeometry(), const QgsSymbol *symbol=nullptr)
Register a feature for labeling as one or more QgsLabelFeature objects stored into mLabels.
bool forceRasterRender() const override
Returns true if the renderer must be rendered to a raster paint device (e.g.
QgsVectorLayerRenderer(QgsVectorLayer *layer, QgsRenderContext &context)
~QgsVectorLayerRenderer() override
void setLayerRenderingTimeHint(int time) override
Sets approximate render time (in ms) for the layer to render.
bool render() override
Do the rendering (based on data stored in the class).
QgsFeedback * feedback() const override
Access to feedback object of the layer renderer (may be nullptr)
Encapsulates the context in which a QgsVectorLayer's temporal capabilities will be applied.
void setLayer(QgsVectorLayer *layer)
Sets the associated layer.
Represents a vector layer which manages a vector based data sets.
bool labelsEnabled() const
Returns whether the layer contains labels which are enabled and should be drawn.
QgsMapLayerTemporalProperties * temporalProperties() override
Returns the layer's temporal properties.
QPainter::CompositionMode featureBlendMode() const
Returns the current blending mode for features.
bool diagramsEnabled() const
Returns whether the layer contains diagrams which are enabled and should be drawn.
Q_INVOKABLE const QgsFeatureIds & selectedFeatureIds() const
Returns a list of the selected features IDs in this layer.
const QgsAbstractVectorLayerLabeling * labeling() const
Access to const labeling configuration.
QgsFeatureRenderer * renderer()
Returns the feature renderer used for rendering the features in the layer in 2D map views.
Q_INVOKABLE QgsVectorLayerEditBuffer * editBuffer()
Buffer with uncommitted editing operations. Only valid after editing has been turned on.
Q_INVOKABLE Qgis::GeometryType geometryType() const
Returns point, line or polygon.
const QgsVectorSimplifyMethod & simplifyMethod() const
Returns the simplification settings for fast rendering of features.
bool simplifyDrawingCanbeApplied(const QgsRenderContext &renderContext, QgsVectorSimplifyMethod::SimplifyHint simplifyHint) const
Returns whether the VectorLayer can apply the specified simplification hint.
QList< const QgsFeatureRendererGenerator * > featureRendererGenerators() const
Returns a list of the feature renderer generators owned by the layer.
This class contains information how to simplify geometries fetched from a vector layer.
bool forceLocalOptimization() const
Gets where the simplification executes, after fetch the geometries from provider, or when supported,...
void setSimplifyHints(SimplifyHints simplifyHints)
Sets the simplification hints of the vector layer managed.
SimplifyHints simplifyHints() const
Gets the simplification hints of the vector layer managed.
void setTolerance(double tolerance)
Sets the tolerance of simplification in map units. Represents the maximum distance in map units betwe...
float threshold() const
Gets the simplification threshold of the vector layer managed.
@ GeometrySimplification
The geometries can be simplified using the current map2pixel context state.
@ FullSimplification
All simplification hints can be applied ( Geometry + AA-disabling )
@ NoSimplification
No simplification can be applied.
bool qgsDoubleNear(double a, double b, double epsilon=4 *std::numeric_limits< double >::epsilon())
Compare two doubles (but allow some difference)
Definition: qgis.h:3509
#define QgsDebugMsgLevel(str, level)
Definition: qgslogger.h:39
#define QgsDebugMsg(str)
Definition: qgslogger.h:38
QList< QgsSymbolLevel > QgsSymbolLevelOrder
Definition: qgsrenderer.h:88
QList< QgsSymbolLevelItem > QgsSymbolLevel
Definition: qgsrenderer.h:84
QList< QgsSymbol * > QgsSymbolList
Definition: qgsrenderer.h:44