0028615: Visualization, TKOpenGl - enabling MSAA leads to black screen on OpenGL ES
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1Upgrade from older OCCT versions {#occt_dev_guides__upgrade}
2================================
3
4@tableofcontents
5
6@section upgrade_intro Introduction
7
8This document provides technical details on changes made in particular versions of OCCT. It can help to upgrade user applications based on previous versions of OCCT to newer ones.
9
10@subsection upgrade_intro_precautions Precautions
11
12Back-up your code before the upgrade.
13We strongly recommend using version control system during the upgrade process and saving one or several commits at each step of upgrade, until the overall result is verified.
14This will facilitate identification and correction of possible problems that can occur at the intermediate steps of upgrade.
15It is advisable to document each step carefully to be able to repeat it if necessary.
16
17@subsection upgrade_intro_disclaim Disclaimer
18
19This document describes known issues that have been encountered during porting of OCCT and some applications and approaches that have helped to resolve these issues in known cases.
20It does not pretend to cover all possible migration issues that can appear in your application.
21Take this document with discretion; apply your expertise and knowledge of your application to ensure the correct result.
22
23The automatic upgrade tool is provided as is, without warranty of any kind, and we explicitly disclaim any liability for possible errors that may appear due to use of this tool.
24It is your responsibility to ensure that the changes you made in your code are correct.
25When you upgrade the code by an automatic script, make sure to carefully review the introduced changes at each step before committing them.
26
27
28@section upgrade_65 Upgrade to OCCT 6.5.0
29
30Porting of user applications from an earlier OCCT version to version 6.5 requires taking into account the following major changes:
31* If you are not comfortable with dependence on Intel TBB, FreeImage, or Gl2Ps libraries, you will need to (re)build OCCT with these dependencies disabled.
32* The low-level format version of OCAF binary and XML persistence has been incremented. Hence, the files saved by OCCT 6.5 to OCAF binary or XML format will not be readable by previous versions of OCCT.
33* The *BRepMesh* triangulation algorithm has been seriously revised and now tries hard to fulfill the requested deflection and angular tolerance parameters. If you experience any problems with performance or triangulation quality (in particular, display of shapes in shading mode), consider revising the values of these parameters used in your application.
34* If you were using method *ToPixMap()* of class *V3d_View* to get a buffer for passing to Windows API functions (e.g. *BitBlt*), this will not work anymore. You will need to use method *Image_PixMap::AccessBuffer()* to get the raw buffer data that can be further passed to WinAPI functions.
35* As the processing of message gravity parameter in *Message* package has been improved, some application messages (especially the ones generated by IGES or STEP translators) can be suppressed or new messages appear in the application. Use relevant message level parameter to tune this behavior.
36
37@section upgrade_651 Upgrade to OCCT 6.5.1
38
39Porting of user applications from an earlier OCCT version to version 6.5.1 requires taking into account the following major changes:
40
41* Method *Graphic3d_Structure::Groups()* now returns *Graphic3d_SequenceOfGroup*. If this method has been used, the application code should be updated to iterate another collection type or, if *Graphic3d_HSetOfGroup* is required, to fill its own collection:
42~~~~
43const Graphic3d_SequenceOfGroup& aGroupsSeq = theStructure.Groups();
44Handle(Graphic3d_HSetOfGroup) aGroupSet = new Graphic3d_HSetOfGroup();
45Standard_Integer aLen = aGroupsSeq.Length();
46for (Standard_Integer aGr = 1; aGr <= aLen; ++aGr)
47{
48 aGroupSet->Add (aGroupsSeq.Value (aGr));
49}
50~~~~
51
52* All occurrences of *Select3D_Projector* in the application code (if any) should be replaced with *Handle(Select3D_Projector)*.
53* The code of inheritors of *Select3D_SensitiveEntity* should be updated if they override <i>Matches()</i> (this is probable, if clipping planes are used).
54* Constructor for *V3d_Plane* has been changed, so the extra argument should be removed if used in the application. It is necessary to add a new plane using method *V3d_Viewer::AddPlane()* if *V3d_Viewer* has been used to manage clipping planes list (this does not affect clipping planes representation). Please, have a look at the source code for new DRAWEXE *vclipplane* command in *ViewerTest_ObjectsCommands.cxx, VClipPlane* to see how clipping planes can be managed in the application.
55
56@section upgrade_652 Upgrade to OCCT 6.5.2
57
58Porting of user applications from an earlier OCCT version to version 6.5.2 requires taking into account the following major changes:
59* Any code that has been generated by WOK from CDL generic classes *Tcollection_DataMap* and *Tcollection_IndexedDataMap* needs to be regenerated by WOK to take into account the change in the interface of these classes.
60* The enumerations *CDF_StoreStatus* and *CDF_RetrievableStatus* have been replaced by the enumerations *PCDM_StoreStatus* and *PCDM_ReaderStatus*. Correspondingly, the methods *Open, Save* and *SaveAs* of the class *TDocStd_Application* have changed their return value. Any code, which uses these enumerations, needs to be updated.
61* *BRepLib_MakeFace* has been modified to receive tolerance value for resolution of degenerated edges. This tolerance parameter has no default value to ensure that the client code takes care of passing a meaningful value, not just *Precision::Confusion*, so some porting overheads are expected.
62* If the callback mechanism in call_togl_redraw function was used in the application code, it is necessary to revise it to take into account the new callback execution and provide a check of reason value of Aspect_GraphicCallbackStruct in callback methods to confirm that the callback code is executed at the right moment. Now the callbacks are executed before redrawing the underlayer, before redrawing the overlayer and at the end of redrawing. The information about the moment when the callback is invoked is provided with the reason value in form of an additional bit flag <i>(OCC_PRE_REDRAW, OCC_PRE_OVERLAY)</i>. The state of OpenGl changed in callback methods will not be restored automatically, which might lead to unwanted behavior in redrawing procedure.
63* The print method used in the application code might need to be revised to take into account the ability to choose between print algorithms: tile and stretch. The stretch algorithm will be selected by default during porting.
64* It is recommended to *BRepMesh_DiscretFactory* users, to check *BRepMesh_DiscretFactory::SetDefault()* return value to determine plugin availability / validity. *BRepMesh_DiscretFactory::Discret()* method now returns handle instead of pointer. The code should be updated in the following manner:
65~~~~
66Handle(BRepMesh_DiscretRoot) aMeshAlgo = BRepMesh_DiscretFactory::Get().Discret (theShape, theDeflection, theAngularToler);
67 if (!aMeshAlgo.IsNull()) {}
68~~~~
69
70* The default state of *BRepMesh* parallelization has been turned off. The user should switch this flag explicitly:
71 * by using methods *BRepMesh_IncrementalMesh::SetParallel(Standard_True)* for each *BRepMesh_IncrementalMesh* instance before <i>Perform()</i>;
72 * by calling *BRepMesh_IncrementalMesh::SetParallelDefault(Standard_True)* when *BRepMesh_DiscretFactory* is used to retrieve the meshing tool (this also affects auto-triangulation in *AIS*).
73
74@section upgrade_653 Upgrade to OCCT 6.5.3
75
76Porting of user applications from an earlier OCCT version to version 6.5.3 requires taking into account the following major changes:
77* As a result of code clean-up and redesign of *TKOpenGl* driver, some obsolete functions and rendering primitives <i>(TriangleMesh, TriangleSet, Bezier, Polyline, Polygon, PolygonHoles, QuadrangleMesh</i> and *QuadrangleSet*) have been removed. Instead, the application developers should use primitive arrays that provide the same functionality but are hardware-accelerated. The details can be found in OCCT Visualization User's Guide, “Primitive Arrays” chapter.
78* Applications should not call *AIS_InteractiveObject::SetPolygonOffsets()* method for an instance of *AIS_TexturedShape* class after it has been added to *AIS_InteractiveContext*. More generally, modification of *Graphic3d_AspectFillArea3d* parameters for the computed groups of any *AIS_InteractiveObject* subclass that uses texture mapping should be avoided, because this results in broken texture mapping (see issue 23118). It is still possible to apply non-default polygon offsets to *AIS_TexturedShape* by calling *SetPolygonOffsets()* before displaying the shape.
79* The applications that might have used internal functions provided by *TKOpenGl* or removed primitives will need to be updated.
80* In connection with the implementation of Z-layers it might be necessary to revise the application code or revise the custom direct descendant classes of *Graphic3d_GraphicDriver* and *Graphic3d_StructureManager* to use the Z-layer feature.
81* Global variables *Standard_PI* and *PI* have been eliminated (use macro *M_PI* instead).
82* Method *HashCode()* has been removed from class *Standard_Transient*. It is advisable to use global function <i>HashCode()</i> for Handle objects instead.
83* Declaration of operators new/delete for classes has become consistent and is encapsulated in macros.
84* Memory management has been changed to use standard heap <i>(MMGT_OPT=0)</i> and reentrant mode <i>(MMGT_REENTRANT=1)</i> by default.
85* Map classes in *NCollection* package now receive one more argument defining a hash tool.
86
87@section upgrade_654 Upgrade to OCCT 6.5.4
88
89Porting of user applications from an earlier OCCT version to version 6.5.4 requires taking into account the following major changes:
90* The code using obsolete classes *Aspect_PixMap, Xw_PixMap* and *WNT_PixMap* should be rewritten implementing class *Image_PixMap*, which is now retrieved by *ToPixMap* methods as argument. A sample code using *ToPixMap* is given below:
91~~~~
92#include <Image_AlienPixMap.hxx>
93void dump (Handle(V3d_View)& theView3D)
94{
95 Standard_Integer aWndSizeX = 0;
96 Standard_Integer aWndSizeY = 0;
97 theView3D->Window()->Size (aWndSizeX, aWndSizeY);
98 Image_AlienPixMap aPixMap;
99 theView3D->ToPixMap (aPixMap, aWndSizeX, aWndSizeY);
100 aPixMap.Save ("c:\\image.png");
101}
102~~~~
103* Now OpenGL resources related to Interactive Objects are automatically freed when the last view (window) is removed from graphical driver.
104To avoid presentation data loss, the application should replace an old view with a new one in the proper order: first the new view is created and activated and only then the old one is detached and removed.
105* It is recommended to use *NCollection* containers with hasher parameter (introduced in 6.5.3) instead of global definition <i>IsEqual()/HashCode()</i> as well as to use explicit namespaces to avoid name collision.
106
107
108@section upgrade_660 Upgrade to OCCT 6.6.0
109
110Porting of user applications from an earlier OCCT version to version 6.6.0 requires taking into account the following major changes:
111* Due to the changes in the implementation of Boolean Operations, the order of sub-shapes resulting from the same operation performed with OCCT 6.5.x and OCCT 6.6.0 can be different.
112It is necessary to introduce the corresponding changes in the applications for which the order of sub-shapes resulting from a Boolean operation is important. It is strongly recommended to use identification methods not relying on the order of sub-shapes (e.g. OCAF naming).
113* If you need to use OCCT on Mac OS X with X11 (without Cocoa), build OCCT with defined pre-processor macro *CSF_MAC_USE_GLX11*. XLib front-end (previously the only way for unofficial OCCT builds on Mac OS X) is now disabled by default on this platform. If your application has no support for Cocoa framework you may build OCCT with XLib front-end adding *MACOSX_USE_GLX* macro to compiler options (you may check the appropriate option in WOK configuration GUI and in CMake configuration). Notice that XQuartz (XLib implementation for Mac OS X) now is an optional component and does not provide a sufficient level of integrity with native (Cocoa-based) applications in the system. It is not possible to build OCCT with both XLib and Cocoa at the same time due to symbols conflict in OpenGL functions.
114* Animation mode and degeneration presentation mode (simplified presentation for animation) and associated methods have been removed from 3D viewer functionality.
115Correspondingly, the code using methods *SetAnimationModeOn(), SetAnimationModeOff(), AnimationModeIsOn(), AnimationMode(), Tumble(), SetDegenerateModeOn(), SetDegenerateModeOff()* and *DegenerateModeIsOn()* of classes *V3d_View* and *Visual3d_View* will need to be removed or redesigned. Please, notice that Hidden Line Removal presentation was not affected; however, the old code that used methods *V3d_View::SetDegenerateModeOn* or *V3d_View::SetDegenerateModeOff* to control HLR presentation should be updated to use *V3d_View::SetComputedMode* method instead.
116* Calls of *Graphic3d_Group::BeginPrimitives()* and *Graphic3d_Group::EndPrimitives()* should be removed from the application code.
117* Application functionality for drawing 2D graphics that was formerly based on *TKV2d* API should be migrated to *TKV3d* API. The following changes are recommended for this migration:
118 * A 2D view can be implemented as a *V3d_View* instance belonging to *V3d_Viewer* managed by *AIS_InteractiveContext* instance. To turn *V3d_View* into a 2D view, the necessary view orientation should be set up at the view initialization stage using *V3d_View::SetProj()* method, and view rotation methods simply should not be called.
119 * Any 2D graphic entity (formerly represented with *AIS2D_InteractiveObject*) should become a class derived from *AIS_InteractiveObject* base. These entities should be manipulated in a view using *AIS_InteractiveContext* class API.
120 * All drawing code should be put into *Compute()* virtual method of a custom interactive object class and use API of *Graphic3d* package. In particular, all geometry should be drawn using class hierarchy derived from *Graphic3d_ArrayOfPrimitives*. Normally, the Z coordinate for 2D geometry should be constant, unless the application implements some advanced 2D drawing techniques like e.g. multiple "Z layers" of drawings.
121 * Interactive selection of 2D presentations should be set up inside *ComputeSelection()* virtual method of a custom interactive object class, using standard sensitive entities from *Select3D* package and standard or custom entity owners derived from *SelectMgr_EntityOwner* base.
122Please refer to the Visualization User's Guide for further details concerning OCCT 3D visualization and selection classes. See also *Viewer2D* OCCT sample application, which shows how 2D drawing can be implemented using TKV3d API.
123* Run-time graphic driver library loading mechanism based on *CSF_GraphicShr* environment variable usage has been replaced by explicit linking against *TKOpenGl* library. The code sample below shows how the graphic driver should be created and initialized in the application code:
124~~~~
125// initialize a new viewer with OpenGl graphic driver
126Handle(Graphic3d_GraphicDriver) aGraphicDriver =
127new OpenGl_GraphicDriver ("TKOpenGl");
128 aGraphicDriver->Begin (new Aspect_DisplayConnection());
129 TCollection_ExtendedString aNameOfViewer ("Visu3D");
130 Handle(V3d_Viewer) aViewer
131= new V3d_Viewer (aGraphicDriver, aNameOfViewer.ToExtString());
132 aViewer->Init();
133
134// create a new window or a wrapper over the existing window,
135// provided by a 3rd-party framework (Qt, MFC, C# or Cocoa)
136#if defined(_WIN32) || defined(__WIN32__)
137 Aspect_Handle aWindowHandle = (Aspect_Handle )winId();
138 Handle(WNT_Window) aWindow = new WNT_Window (winId());
139#elif defined(__APPLE__) && !defined(MACOSX_USE_GLX)
140 NSView* aViewHandle = (NSView* )winId();
141 Handle(Cocoa_Window) aWindow = new Cocoa_Window (aViewHandle);
142#else
143 Aspect_Handle aWindowHandle = (Aspect_Handle )winId();
144 Handle(Xw_Window) aWindow =
145 new Xw_Window (aGraphicDriver->GetDisplayConnection(), aWindowHandle);
146#endif // WNT
147
148// setup the window for a new view
149 Handle(V3d_View) aView = aViewer->CreateView();
150 aView->SetWindow (aWindow);
151~~~~
152
153* The following changes should be made in the application-specific implementations of texture aspect:
154 * *Graphic3d_TextureRoot* inheritors now should return texture image by overloading of *Graphic3d_TextureRoot::GetImage()* method instead of the old logic.
155 * Now you can decide if the application should store the image copy as a field of property or reload it dynamically each time (to optimize the memory usage). The default implementation (which loads the image content from the provided file path) does not hold an extra copy since it will be uploaded to the graphic memory when first used.
156 * Notice that the image itself should be created within *Image_PixMap* class from *AlienImage* package, while *Image_Image* class is no more supported and will be removed in the next OCCT release.
157
158@section upgrade_670 Upgrade to OCCT 6.7.0
159
160Porting of user applications from an earlier OCCT version to version 6.7.0 requires taking into account the following major changes.
161
162@subsection upgrade_670_clipping Object-level clipping and capping algorithm.
163
164* It might be necessary to revise and port code related to management of view-level clipping to use *Graphic3d_ClipPlane* instead of *V3d_Plane* instances. Please note that *V3d_Plane* class has been preserved -- as previously, it can be used as plane representation. Another approach to represent *Graphic3d_ClipPlane* in a view is to use custom presentable object.
165* The list of arguments of *Select3D_SensitiveEntity::Matches()* method for picking detection has changed. Since now, for correct selection clipping, the implementations should perform a depth clipping check and return (as output argument) minimum depth value found at the detected part of sensitive. Please refer to CDL / Doxygen documentation to find descriptive hints and snippets.
166* *Select3D_SensitiveEntity::ComputeDepth()* abstract method has been removed. Custom implementations should provide depth checks by method *Matches()* instead -- all data required for it is available within a scope of single method.
167* It might be necessary to revise the code of custom sensitive entities and port *Matches()* and *ComputeDepth()* methods to ensure proper selection clipping. Please note that obsolete signature of *Matches* is not used anymore by the selector. If your class inheriting *Select3D_SensitiveEntity* redefines the method with old signature the code should not compile as the return type has been changed. This is done to prevent override of removed methods.
168
169@subsection upgrade_670_markers Redesign of markers presentation
170
171* Due to the redesign of *Graphic3d_AspectMarker3d* class the code of custom markers initialization should be updated. Notice that you can reuse old markers definition code as *TColStd_HArray1OfByte*; however, *Image_PixMap* is now the preferred way (and supports full-color images on modern hardware).
172* Logics and arguments of methods *AIS_InteractiveContext::Erase()* and *AIS_InteractiveContext::EraseAll()* have been changed. Now these methods do not remove resources from *Graphic3d_Structure*; they simply change the visibility flag in it. Therefore, the code that deletes and reсomputes resources should be revised.
173* *Graphic3d_Group::MarkerSet()* has been removed. *Graphic3d_Group::AddPrimitiveArray()* should be used instead to specify marker(s) array.
174
175@subsection upgrade_670_views Default views are not created automatically
176
177As the obsolete methods *Init(), DefaultOrthographicView()* and *DefaultPerspectiveView()* have been removed from *V3d_Viewer* class, the two default views are no longer created automatically. It is obligatory to create *V3d_View* instances explicitly, either directly by operator new or by calling *V3d_Viewer::CreateView()*.
178
179The call *V3d_Viewer::SetDefaultLights()* should also be done explicitly at the application level, if the application prefers to use the default light source configuration. Otherwise, the application itself should set up the light sources to obtain a correct 3D scene.
180
181@subsection upgrade_670_dimensions Improved dimensions implementation
182
183* It might be necessary to revise and port code related to management of *AIS_LengthDimension, AIS_AngleDimension* and *AIS_DiameterDimension* presentations. There is no more need to compute value of dimension and pass it as string to constructor argument. The value is computed internally. The custom value can be set with *SetCustomValue()* method.
184* The definition of units and general aspect properties is now provided by *Prs3d_DimensionUnits* and *Prs3d_DimensionApsect* classes.
185* It might be also necessary to revise code of your application related to usage of *AIS_DimensionDisplayMode enumeration*. If it used for specifying the selection mode, then it should be replaced by a more appropriate enumeration *AIS_DimensionSelectionMode*.
186
187@subsection upgrade_670_list_collection NCollection_Set replaced by List collection
188
189It might be necessary to revise your application code, which uses non-ordered *Graphic3d_SetOfHClipPlane* collection type and replace its occurrences by ordered *Graphic3d_SequenceOfHClipPlane* collection type.
190
191
192@section upgrade_680 Upgrade to OCCT 6.8.0
193
194Porting of user applications from an earlier OCCT version to version 6.8.0 requires taking into account the following major changes.
195
196@subsection upgrade_680_ncollection Changes in NCollection classes
197
198Method *Assign()* in *NCollection* classes does not allow any more copying between different collection types. Such copying should be done manually.
199
200List and map classes in *NCollection* package now require that their items be copy-constructible, but do not require items to have default constructor. Thus the code using *NCollection* classes for non-copy-constructible objects needs be updated. One option is to provide copy constructor; another possibility is to use Handle or other smart pointer.
201
202@subsection upgrade_680_view_camera 3D View Camera
203
204If *ViewMapping* and *ViewOrientation* were used directly, this functionality has to be ported to the new camera model. The following methods should be considered as an alternative to the obsolete *Visual3d* services (all points and directions are supposed to be in world coordinates):
205* *Graphic3d_Camera::ViewDimensions()* or *V3d_View::Size()/ZSize()* -- returns view width, height and depth (or "Z size"). Since the view is symmetric now, you can easily compute top, bottom, left and right limits. *Graphic3d_Camera::ZNear()/ZFar()* can be used to obtain the near and far clipping distances with respect to the eye.
206* *Graphic3d_Camera::Up()* or *V3d_View::Up()* -- returns Y direction of the view.
207* *Graphic3d_Camera::Direction()* returns the reverse view normal directed from the eye, *V3d_View::Proj()* returns the old-style view normal.
208* *Graphic3d_Camera::Eye()* or *V3d_View::Eye()* -- returns the camera position (same as projection reference point in old implementation).
209* *Graphic3d_Camera::Center()* or *V3d_View::At()* -- returns the point the camera looks at (or view reference point according to old terminology).
210
211The current perspective model is not fully backward compatible, so the old perspective-related functionality needs to be reviewed.
212
213Please revise application-specific custom presentations to provide proper bounding box. Otherwise object might become erroneously clipped by automatic *ZFit* or frustum culling algorithms enabled by default.
214
215@subsection upgrade_680_connected_objects Redesign of Connected Interactive Objects
216
217The new implementation of connected Interactive Objects makes it necessary to take the following steps if you use connected Interactive Objects in your application.
218* Use new *PrsMgr_PresentableObject* transformation API.
219* Call *RemoveChild()* from the original object after connect if you need the original object and *AIS_ConnectedInteractive* to move independently.
220* Access instances of objects connected to *AIS_MultiplyConnectedInteractive* with *Children()* method.
221* For *PrsMgr_PresentableObject* transformation:
222 * *SetLocation (TopLoc_Location) -> SetLocalTransformation (gp_Trsf)*
223 * *Location -> LocalTransformation*
224 * *HasLocation -> HasTransformation*
225 * *ResetLocation -> ResetTransformation*
226
227@subsection upgrade_680_unicode Support of UNICODE Characters
228
229Support of UNICODE characters introduced in OCCT breaks backward compatibility with applications, which currently use filenames in extended ASCII encoding bound to the current locale. Such applications should be updated to convert such strings to UTF-8 format.
230
231The conversion from UTF-8 to wchar_t is made using little-endian approach. Thus, this code will not work correctly on big-endian platforms. It is needed to complete this in the way similar as it is done for binary persistence (see the macro *DO_INVERSE* in *FSD_FileHeader.hxx).*
232
233@subsection upgrade_680_projection_shift Elimination of Projection Shift Concept
234
235It might be necessary to revise the application code, which deals with *Center()* method of *V3d_View*.
236
237This method was used to pan a *V3d* view by virtually moving the screen center with respect to the projection ray passed through Eye and At points. There is no more need to derive the panning from the Center parameter to get a camera-like eye position and look at the coordinates. *Eye()* and *At()* now return these coordinates directly. When porting code dealing with *Center()*, the parameters *Eye()* and *At()* can be adjusted instead. Also *V3d_View::SetCenter(Xpix, Ypix)* method can be used instead of *V3d_View::Center(X, Y)* to center the view at the given point. However, if the center coordinates X and Y come from older OCCT releases, calling *V3d_View::Panning(-X, -Y)* can be recommended to compensate missing projection shift effect.
238
239There are several changes introduced to *Graphic3d_Camera*. The internal data structure of the camera is based on *Standard_Real* data types to avoid redundant application-level conversions and precision errors. The transformation matrices now can be evaluated both for *Standard_Real* and *Standard_ShortReal* value types. *ZNear* and *ZFar* planes can be either negative or positive for orthographic camera projection, providing a trade-off between the camera distance and the range of *ZNear* or *ZFar* to reduce difference of exponents of values composing the orientation matrix - to avoid calculation errors. The negative values can be specified to avoid Z-clipping if the reference system of camera goes inside of the model when decreasing camera distance.
240
241The auto z fit mode, since now, has a parameter defining Z-range margin (the one which is usually passed as argument to *ZFitAll()* method). The methods *SetAutoZFitMode(), AutoZFitScaleFactor()* and *ZFitAll()* from class *V3d_View* deal with the new parameter.
242
243The class *Select3D_Projector* now supports both orientation and projection transformation matrices, which can be naturally set for the projector. The definition of projector was revised in *StdSelect_ViewerSelector3d*: perspective and orthographic projection parameters are handled properly. Orthographic projector is based only on direction of projection - no more *Center* property. This makes it possible to avoid unnecessary re-projection of sensitive while panning, zooming or moving along the projection ray of the view. These operations do not affect the orthographic projection.
244
245
246@section upgrade_690 Upgrade to OCCT 6.9.0
247
248Porting of user applications from an earlier OCCT version to version 6.9.0 requires taking into account the following major changes.
249
250@subsection upgrade_690_shaders 3D Viewer initialization
251
2523D Viewer now uses GLSL programs for managing frame buffer and stereoscopic output.
253For proper initialization, application should configure **CSF_ShadersDirectory** environment variable pointing to a folder with GLSL resources - files from folder **CASROOT**/src/Shaders.
254*Note that **CSF_ShadersDirectory** become optional since OCCT 7.1.0 release*.
255
256@subsection upgrade_690_selection Changes in Selection
257
258Selection mechanism of 3D Viewer has been redesigned to use 3-level BVH tree traverse directly in 3D space instead of projection onto 2D screen space (updated on each rotation). This architectural redesign may require appropriate changes at application level in case if custom Interactive Objects are used.
259
260#### Standard selection
261Usage of standard OCCT selection entities would require only minor updates.
262
263Custom Interactive Objects should implement new virtual method *SelectMgr_SelectableObject::BoundingBox().*
264
265Now the method *SelectMgr_Selection::Sensitive()* does not return *SelectBasics_SensitiveEntity*. It returns an instance of *SelectMgr_SensitiveEntity*, which belongs to a different class hierarchy (thus *DownCast()* will fail). To access base sensitive it is necessary to use method *SelectMgr_SensitiveEntity::BaseSensitive()*. For example:
266
267~~~~
268Handle(SelectMgr_Selection) aSelection = anInteractiveObject->Selection (aMode);
269for (aSelection->Init(); aSelection->More(); aSelection->Next())
270{
271 Handle(SelectBasics_SensitiveEntity) anEntity = aSelection->Sensitive()->BaseSensitive();
272}
273~~~~
274
275#### Custom sensitive entities
276
277Custom sensitive entities require more complex changes, since the selection algorithm has been redesigned and requires different output from the entities.
278
279The method *SelectBasics_SensitiveEntity::Matches()* of the base class should be overridden following the new signature:
280
281*Standard_Boolean Matches (SelectBasics_SelectingVolumeManager& theMgr, SelectBasics_PickResult& thePickResult)*, where *theMgr* contains information about the currently selected frustum or set of frustums (see *SelectMgr_RectangularFrustum, SelectMgr_TrangularFrustum, SelectMgr_TriangularFrustumSet)* and *SelectBasics_PickResult* is an output parameter, containing information about the depth of the detected entity and distance to its center of geometry.
282
283In the overridden method it is necessary to implement an algorithm of overlap and inclusion detection (the active mode is returned by *theMgr.IsOverlapAllowed()*) with triangular and rectangular frustums.
284
285The depth and distance to the center of geometry must be calculated for the 3D projection of user-picked screen point in the world space. You may use already implemented overlap and inclusion detection methods for different primitives from *SelectMgr_RectangularFrustum* and *SelectMgr_TriangularFrustum*, including triangle, point, axis-aligned box, line segment and planar polygon.
286
287Here is an example of overlap/inclusion test for a box:
288
289~~~~
290if (!theMgr.IsOverlapAllowed()) // check for inclusion
291{
292 Standard_Boolean isInside = Standard_True;
293 return theMgr.Overlaps (myBox.CornerMin(), myBox.CornerMax(), &isInside) && isInside;
294}
295
296Standard_Real aDepth;
297if (!theMgr.Overlaps (myBox, aDepth)) // check for overlap
298{
299 return Standard_False;
300}
301
302thePickResult =
303SelectBasics_PickResult (aDepth, theMgr.DistToGeometryCenter (myCenter3d));
304~~~~
305
306The interface of *SelectBasics_SensitiveEntity* now contains four new pure virtual functions that should be implemented by each custom sensitive:
307* <i>BoundingBox()</i> – returns a bounding box of the entity;
308* <i>Clear()</i> – clears up all the resources and memory allocated for complex sensitive entities;
309* <i>BVH()</i> – builds a BVH tree for complex sensitive entities, if it is needed;
310* <i>NbSubElements()</i> – returns atomic sub-entities of a complex sensitive entity, which will be used as primitives for BVH building. If the entity is simple and no BVH is required, this method returns 1.
311
312Each sensitive entity now has its own tolerance, which can be overridden by method *SelectBasics_SensitiveEntity::SetSensitivityFactor()* called from constructor.
313
314
315@subsection upgrade_690_adaptor3d-curve Changes in Adaptor3d_Curve class
316
317All classes inheriting *Adaptor3d_Curve* (directly or indirectly) must be updated in application code to use new signature of methods *Intervals()* and *NbIntervals()*. Note that no compiler warning will be generated if this is not done.
318
319@subsection upgrade_690_v3d_view Changes in V3d_View class
320
321The methods *V3d_View::Convert* and *V3d_View::ConvertWithProj()* have ceased to return point on the active grid. It might be necessary to revise the code of your application so that *V3d_View::ConvertToGrid()* was called explicitly for the values returned by *V3d_View::Convert* to get analogous coordinates on the grid. The methods *V3d_View::Convert* and *V3d_View::ConvertWithProj* convert point into reference plane of the view corresponding to the intersection with the projection plane of the eye/view point vector.
322
323@section upgrade_700 Upgrade to OCCT 7.0.0
324
325Porting of user applications from an earlier OCCT version to version 7.0.0 requires taking into account the following major changes.
326
327@subsection upgrade_700_persist Removal of legacy persistence
328
329Legacy persistence for shapes and OCAF data based on *Storage_Schema* (toolkits *TKPShape*, *TKPLCAF*, *TKPCAF*, *TKShapeShcema, TLStdLSchema, TKStdSchema*, and *TKXCAFSchema*) has been removed in OCCT 7.0.0.
330The applications that used these data persistence tools need to be updated to use other persistence mechanisms.
331
332@note For compatibility with previous versions, the possibility to read standard OCAF data (*TKLCAF* and *TKCAF*) from files stored in the old format is preserved (toolkits *TKStdL* and *TKStd*).
333
334The existing data files in standard formats can be converted using OCCT 6.9.1 or a previous version, as follows.
335
336#### CSFDB files
337
338Files in *CSFDB* format (usually with extension .csfdb) contain OCCT shape data that can be converted to BRep format.
339The easiest way to do that is to use ImportExport sample provided with OCCT 6.9.0 (or earlier):
340
341- Start ImportExport sample;
342- Select File / New;
343- Select File / Import / CSFDB... and specify the file to be converted;
344- Drag the mouse with the right button pressed across the view to select all shapes by the rectangle;
345- Select File / Export / BREP... and specify the location and name for the resulting file
346
347#### OCAF and XCAF documents
348
349Files containing OCAF data saved in the old format usually have extensions <i>.std, .sgd</i> or <i>.dxc</i> (XDE documents).
350These files can be converted to XML or binary OCAF formats using DRAW Test Harness commands.
351Note that if the file contains only attributes defined in *TKLCAF* and *TKCAF*, this action can be performed in OCCT 7.0; otherwise OCCT 6.9.1 or earlier should be used.
352
353For that, start *DRAWEXE* and perform the following commands:
354
355 * To convert <i>*.std</i> and <i>*.sgd</i> file formats to binary format <i>*.cbf</i> (The created document should be in *BinOcaf* format instead of *MDTV-Standard*):
356
357 @code
358 Draw[]> pload ALL
359 Draw[]> Open [path to *.std or *.sgd file] Doc
360 Draw[]> Format Doc BinOcaf
361 Draw[]> SaveAs Doc [path to the new file]
362 @endcode
363
364 * To convert <i>*.dxc</i> file format to binary format <i>*.xbf</i> (The created document should be in *BinXCAF* format instead of *MDTV-XCAF*):
365
366 @code
367 Draw[]> pload ALL
368 Draw[]> XOpen [path to *.dxc file] Doc
369 Draw[]> Format Doc BinXCAF
370 Draw[]> XSave Doc [path to the new file]
371 @endcode
372
373On Windows, it is necessary to replace back slashes in the file path by direct slashes or pairs of back slashes.
374
375Use *XmlOcaf* or *XmlXCAF* instead of *BinOcaf* and *BinXCAF*, respectively, to save in XML format instead of binary one.
376
377@subsection upgrade_occt700_cdl Removal of CDL and WOK
378
379OCCT code has been completely refactored in version 7.0 to get rid of obsolete technologies used since its inception: CDL (Cas.Cade Definition Language) and WOK (Workshop Organization Kit).
380
381C++ code previously generated by WOK from CDL declarations is now included directly in OCCT sources.
382
383This modification did not change names, API, and behavior of existing OCCT classes, thus in general the code based on OCCT 6.x should compile and work fine with OCCT 7.0.
384However, due to redesign of basic mechanisms (CDL generic classes, Handles and RTTI) using C++ templates, some changes may be necessary in the code when porting to OCCT 7.0, as described below.
385
386WOK is not necessary anymore for building OCCT from sources, though it still can be used in a traditional way -- auxiliary files required for that are preserved.
387The recommended method for building OCCT 7.x is CMake, see @ref occt_dev_guides__building_cmake.
388The alternative solution is to use project files generated by OCCT legacy tool **genproj**, see @ref occt_dev_guides__building_msvc, @ref occt_dev_guides__building_code_blocks, and @ref occt_dev_guides__building_xcode.
389
390@subsubsection upgrade_occt700_cdl_auto Automatic upgrade
391
392Most of typical changes required for upgrading code for OCCT 7.0 can be done automatically using the *upgrade* tool included in OCCT 7.0.
393This tool is a Tcl script, thus Tcl should be available on your workstation to run it.
394
395Example:
396~~~~~
397 $ tclsh
398 % source <path_to_occt>/adm/upgrade.tcl
399 % upgrade -recurse -all -src=<path_to_your_sources>
400~~~~~
401
402On Windows, the helper batch script *upgrade.bat* can be used, provided that Tcl is either available in *PATH*, or configured via *custom.bat* script (for instance, if you use OCCT installed from Windows installer package). Start it from the command prompt:
403
404~~~~~
405cmd> <path_to_occt>\upgrade.bat -recurse -all -inc=<path_to_occt>\inc -src=<path_to_your_sources> [options]
406~~~~~
407
408Run the upgrade tool without arguments to see the list of available options.
409
410The upgrade tool performs the following changes in the code.
411
4121. Replaces macro *DEFINE_STANDARD_RTTI* by *DEFINE_STANDARD_RTTIEXT*, with second argument indicating base class for the main argument class (if inheritance is recognized by the script):
413~~~~~
414DEFINE_STANDARD_RTTI(Class) -> DEFINE_STANDARD_RTTIEXT(Class, Base)
415~~~~~
416
417 @note If macro *DEFINE_STANDARD_RTTI* with two arguments (used in intermediate development versions of OCCT 7.0) is found, the script will convert it to either *DEFINE_STANDARD_RTTIEXT* or *DEFINE_STANDARD_RTTI_INLINE*.
418 The former case is used if current file is header and source file with the same name is found in the same folder.
419 In this case, macro *IMPLEMENT_STANDARD_RTTI* is injected in the corresponding source file.
420 The latter variant defines all methods for RTTI as inline, and does not require *IMPLEMENT_STANDARD_RTTIEXT* macro.
421
4222. Replaces forward declarations of collection classes previously generated from CDL generics (defined in *TCollection* package) by inclusion of the corresponding header:
423~~~~~
424class TColStd_Array1OfReal; -> #include <TColStd_Array1OfReal.hxx>
425~~~~~
426
4273. Replaces underscored names of *Handle* classes by usage of a macro:
428~~~~~
429Handle_Class -> Handle(Class)
430~~~~~
431 This change is not applied if the source or header file is recognized as containing the definition of Qt class with signals or slots, to avoid possible compilation errors of MOC files caused by inability of MOC to recognize macros (see http://doc.qt.io/qt-4.8/signalsandslots.html).
432 The file is considered as defining a Qt object if it contains strings *Q_OBJECT* and either *slots:* or *signals:*.
433
4344. Removes forward declarations of classes with names <i>Handle(C)</i> or *Handle_C*, replacing them either by forward declaration of its argument class, or (for files defining Qt objects) <i>\#include</i> statement for a header with the name of the argument class and extension .hxx:
435~~~~~
436class Handle(TColStd_HArray1OfReal); -> #include <TColStd_HArray1OfReal.hxx>
437~~~~~
438
4395. Removes <i> \#includes </i> of files <i>Handle_...hxx</i> that have disappeared in OCCT 7.0:
440~~~~~
441#include <Handle_Geom_Curve.hxx> ->
442~~~~~
443
4446. Removes *typedef* statements that use *Handle* macro to generate the name:
445~~~~~
446typedef NCollection_Handle<Message_Msg> Handle(Message_Msg); ->
447~~~~~
448
4497. Converts C-style casts applied to Handles into calls to <i>DownCast()</i> method:
450~~~~~
451 ((Handle(A)&)b) -> Handle(A)::DownCast(b)
452 (Handle(A)&)b -> Handle(A)::DownCast(b)
453 (*((Handle(A)*)&b)) -> Handle(A)::DownCast(b)
454 *((Handle(A)*)&b) -> Handle(A)::DownCast(b)
455 (*(Handle(A)*)&b) -> Handle(A)::DownCast(b)
456~~~~~
457
4588. Moves <i>Handle()</i> macro out of namespace scope:
459~~~~~
460Namespace::Handle(Class) -> Handle(Namespace::Class)
461~~~~~
462
4639. Converts local variables of reference type, which are initialized by a temporary object returned by call to <i>DownCast()</i>, to the variables of non-reference type (to avoid using references to destroyed memory):
464~~~~~
465 const Handle(A)& a = Handle(B)::DownCast (b); -> Handle(A) a (Handle(B)::DownCast (b));
466~~~~~
467
46810. Adds <i>\#include</i> for all classes used as argument to macro <i>STANDARD_TYPE()</i>, except for already included ones;
469
47011. Removes uses of obsolete macros *IMPLEMENT_DOWNCAST* and *IMPLEMENT_STANDARD_*..., except *IMPLEMENT_STANDARD_RTTIEXT*.
471
472 @note If you plan to keep compatibility of your code with older versions of OCCT, add option <i>-compat</i> to avoid this change. See also @ref upgrade_occt700_cdl_compat.
473
474.
475
476As long as the upgrade routine runs, some information messages are sent to the standard output.
477In some cases the warnings or errors like the following may appear:
478
479~~~~~
480 Error in {HEADER_FILE}: Macro DEFINE_STANDARD_RTTI used for class {CLASS_NAME} whose declaration is not found in this file, cannot fix
481~~~~~
482
483Be sure to check carefully all reported errors and warnings, as the corresponding code will likely require manual corrections.
484In some cases these messages may help you to detect errors in your code, for instance, cases where *DEFINE_STANDARD_RTTI* macro is used with incorrect class name as an argument.
485
486@subsubsection upgrade_occt700_cdl_compiler Possible compiler errors
487
488Some situations requiring upgrade cannot be detected and / or handled by the automatic procedure.
489If you get compiler errors or warnings when trying to build the upgraded code, you will need to fix them manually.
490The following paragraphs list known situations of this kind.
491
492#### Missing header files
493
494The use of handle objects (construction, comparison using operators == or !=, use of function <i>STANDRAD_TYPE()</i> and method <i>DownCast()</i>) now requires the type of the object pointed by Handle to be completely known at compile time. Thus it may be necessary to include header of the corresponding class to make the code compilable.
495
496For example, the following lines will fail to compile if *Geom_Line.hxx* is not included:
497
498~~~~~
499Handle(Geom_Line) aLine = 0;
500if (aLine != aCurve) {...}
501if (aCurve->IsKind(STANDARD_TYPE(Geom_Line)) {...}
502aLine = Handle(Geom_Line)::DownCast (aCurve);
503~~~~~
504
505Note that it is not necessary to include header of the class to declare Handle to it.
506However, if you define a class *B* that uses Handle(*A*) in its fields, or contains a method returning Handle(*A*), it is advisable to have header defining *A* included in the header of *B*.
507This will eliminate the need to include the header *A* in each source file where class *B* is used.
508
509#### Ambiguity of calls to overloaded functions
510
511This issue appears in the compilers that do not support default arguments in template functions (known cases are Visual C++ 10 and 11): the compiler reports an ambiguity error if a handle is used in the argument of a call to the function that has two or more overloaded versions, receiving handles to different types.
512The problem is that operator <i> const handle<T2>& </i> is defined for any type *T2*, thus the compiler cannot make the right choice.
513
514Example:
515~~~~~
516void func (const Handle(Geom_Curve)&);
517void func (const Handle(Geom_Surface)&);
518
519Handle(Geom_TrimmedCurve) aCurve = new Geom_TrimmedCurve (...);
520func (aCurve); // ambiguity error in VC++ 10
521~~~~~
522
523Note that this problem can be avoided in many cases if macro *OCCT_HANDLE_NOCAST* is used, see @ref upgrade_occt700_cdl_nocast "below".
524
525To resolve this ambiguity, change your code so that argument type should correspond exactly to the function signature.
526In some cases this can be done by using the relevant type for the corresponding variable, like in the example above:
527
528~~~~~
529Handle(Geom_Curve) aCurve = new Geom_TrimmedCurve (...);
530~~~~~
531
532Other variants consist in assigning the argument to a local variable of the correct type and using the direct cast or constructor:
533
534~~~~~
535const Handle(Geom_Curve)& aGCurve (aTrimmedCurve);
536func (aGCurve); // OK - argument has exact type
537func (static_cast(aCurve)); // OK - direct cast
538func (Handle(Geom_Curve)(aCurve)); // OK - temporary handle is constructed
539~~~~~
540
541Another possibility consists in defining additional template variant of the overloaded function causing ambiguity, and using *SFINAE* to resolve the ambiguity.
542This technique can be illustrated by the definition of the template variant of method <i>IGESData_IGESWriter::Send()</i>.
543
544#### Lack of implicit cast to base type
545
546As the cast of a handle to the reference to another handle to the base type has become a user-defined operation, the conversions that require this cast together with another user-defined cast will not be resolved automatically by the compiler.
547
548For example:
549
550~~~~~
551Handle(Geom_Geometry) aC = GC_MakeLine (p, v); // compiler error
552~~~~~
553
554The problem is that the class *GC_MakeLine* has a user-defined conversion to <i>const Handle(Geom_TrimmedCurve)&,</i> which is not the same as the type of the local variable *aC*.
555
556To resolve this, use method <i>Value()</i>:
557
558~~~~~
559Handle(Geom_Geometry) aC = GC_MakeLine (p, v).Value(); // ok
560~~~~~
561
562or use variable of the appropriate type:
563
564~~~~~
565Handle(Geom_TrimmedCurve) aC = GC_MakeLine (p, v); // ok
566~~~~~
567
568A similar problem appears with GCC compiler, when *const* handle to derived type is used to construct handle to base type via assignment (and in some cases in return statement), for instance:
569
570~~~~~
571 const Handle(Geom_Line) aLine;
572 Handle(Geom_Curve) c1 = aLine; // GCC error
573 Handle(Geom_Curve) c2 (aLine); // ok
574~~~~~
575
576This problem is specific to GCC and it does not appear if macro *OCCT_HANDLE_NOCAST* is used, see @ref upgrade_occt700_cdl_nocast "below".
577
578#### Incorrect use of STANDARD_TYPE and Handle macros
579
580You might need to clean your code from incorrect use of macros *STANDARD_TYPE*() and *Handle*().
581
5821. Explicit definitions of static functions with names generated by macro *STANDARD_TYPE()*, which are artifacts of old implementation of RTTI, should be removed.
583
584 Example:
585~~~~~
586const Handle(Standard_Type)& STANDARD_TYPE(math_GlobOptMin)
587{
588 static Handle(Standard_Type) _atype = new Standard_Type ("math_GlobOptMin", sizeof (math_GlobOptMin));
589 return _atype;
590}
591~~~~~
592
5932. Incorrect location of closing parenthesis of *Handle()* macro that was not detectable in OCCT 6.x will cause a compiler error and must be corrected.
594
595 Example (note misplaced closing parenthesis):
596~~~~~
597aBSpline = Handle( Geom2d_BSplineCurve::DownCast(BS->Copy()) );
598~~~~~
599
600#### Use of class Standard_AncestorIterator
601
602Class *Standard_AncestorIterator* has been removed; use method *Parent()* of *Standard_Type* class to parse the inheritance chain.
603
604#### Absence of cast to Standard_Transient*
605
606Handles in OCCT 7.0 do not have the operator of conversion to <i>Standard_Transient*,</i> which was present in earlier versions.
607This is done to prevent possible unintended errors like this:
608
609~~~~~
610Handle(Geom_Line) aLine = ...;
611Handle(Geom_Surface) aSurf = ...;
612...
613if (aLine == aSurf) {...} // will cause a compiler error in OCCT 7.0, but not OCCT 6.x
614~~~~~
615
616The places where this implicit cast has been used should be corrected manually.
617The typical situation is when Handle is passed to stream:
618
619~~~~~
620Handle(Geom_Line) aLine = ...;
621os << aLine; // in OCCT 6.9.0, resolves to operator << (void*)
622~~~~~
623
624Call method <i>get()</i> explicitly to output the address of the Handle.
625
626#### Method DownCast for non-base types
627
628Method *DownCast()* in OCCT 7.0 is made templated; if its argument is not a base class, "deprecated" compiler warning is generated.
629This is done to prevent possible unintended errors like this:
630
631~~~~~
632Handle(Geom_Surface) aSurf = ;
633Handle(Geom_Line) aLine =
634 Handle(Geom_Line)::DownCast (aSurf); // will cause a compiler warning in OCCT 7.0, but not OCCT 6.x
635~~~~~
636
637The places where this cast has been used should be corrected manually.
638
639If down casting is used in a template context where the argument can have the same or unrelated type so that *DownCast()* may be not available in all cases, use C++ *dynamic_cast<>* instead, e.g.:
640
641~~~~~
642template <class T>
643bool CheckLine (const Handle(T) theArg)
644{
645 Handle(Geom_Line) aLine = dynamic_cast<Geom_Line> (theArg.get());
646 ...
647}
648~~~~~
649
650@subsubsection upgrade_occt700_cdl_runtime Possible runtime problems
651
652Here is the list of known possible problems at run time after the upgrade to OCCT 7.0.
653
654#### References to temporary objects
655
656In previous versions, the compiler was able to detect the situation when a local variable of a "reference to a Handle" type is initialized by temporary object, and ensured that lifetime of that object is longer than that of the variable.
657In OCCT 7.0 with default options, it will not work if types of the temporary object and variable are different (due to involvement of user-defined type cast), thus such temporary object will be destroyed immediately.
658
659This problem does not appear if macro *OCCT_HANDLE_NOCAST* is used during compilation, see below.
660
661Example:
662
663~~~~~
664// note that DownCast() returns new temporary object!
665const Handle(Geom_BoundedCurve)& aBC =
666Handle(Geom_TrimmedCurve)::DownCast(aCurve);
667aBC->Transform (T); // access violation in OCCT 7.0
668~~~~~
669
670@subsubsection upgrade_occt700_cdl_nocast Option to avoid cast of handle to reference to base type
671
672In OCCT 6.x and earlier versions the handle classes formed a hierarchy echoing the hierarchy of the corresponding object classes .
673This automatically enabled the possibility to use the handle to a derived class in all contexts where the handle to a base class was needed, e.g. to pass it in a function by reference without copying:
674
675~~~~
676Standard_Boolean GetCurve (Handle(Geom_Curve)& theCurve);
677....
678Handle(Geom_Line) aLine;
679if (GetCurve (aLine)) {
680 // use aLine, unsafe
681}
682~~~~
683
684This feature was used in multiple places in OCCT and dependent projects.
685However it is potentially unsafe: in the above example no checks are done at compile time or at run time to ensure that the type assigned to the argument handle is compatible with the type of the handle passed as argument.
686If an object of incompatible type (e.g. Geom_Circle) is assigned to *theCurve*, the behavior will be unpredictable.
687
688For compatibility with the existing code, OCCT 7.0 keeps this possibility by default, providing operators of type cast to the handle to a base type. However, this feature is unsafe and in specific situations it may cause compile-time or run-time errors as described above.
689
690To provide a safer behavior, this feature can be disabled by a compile-time macro *OCCT_HANDLE_NOCAST*.
691When it is used, constructors and assignment operators are defined (instead of type cast operators) to convert handles to a derived type into handles to a base type.
692This implies creation of temporary objects and hence may be more expensive at run time in some circumstances, however this way is more standard, safer, and in general recommended.
693
694The code that relies on the possibility of casting to base should be amended to always use the handle of argument type in function call and to use *DownCast()* to safely convert the result to the desired type.
695For instance, the code from the example below can be changed as follows:
696
697~~~~~
698Handle(Geom_Line) aLine;
699Handle(Geom_Curve) aCurve;
700if (GetCurve (aCure) && !(aLine = Handle(Geom_Line)::DownCast (aCurve)).IsNull()) {
701 // use aLine safely
702}
703~~~~~
704
705@subsubsection upgrade_occt700_cdl_compat Preserving compatibility with OCCT 6.x
706
707If you like to preserve the compatibility of your application code with OCCT versions 6.x even after the upgrade to 7.0, consider the following suggestions:
708
7091. If your code used sequences of macros *IMPLEMENT_STANDARD_*... generated by WOK, replace them by single macro *IMPLEMENT_STANDARD_RTTIEXT*
710
7112. When running automatic upgrade tool, add option <i>-compat</i>.
712
7133. Define macros *DEFINE_STANDARD_RTTIEXT* and *DEFINE_STANDARD_RTTI_INLINE* when building with previous versions of OCCT, resolving to *DEFINE_STANDARD_RTTI* with single argument
714
715 Example:
716~~~~~
717#if OCC_VERSION_HEX < 0x070000
718 #define DEFINE_STANDARD_RTTIEXT(C1,C2) DEFINE_STANDARD_RTTI(C1)
719 #define DEFINE_STANDARD_RTTI_INLINE(C1,C2) DEFINE_STANDARD_RTTI(C1)
720#endif
721~~~~~
722
723@subsubsection upgrade_occt700_cdl_wok Applications based on CDL and WOK
724
725If your application is essentially based on CDL, and you need to upgrade it to OCCT 7.0, you will very likely need to convert your application code to non-CDL form.
726This is a non-trivial effort; the required actions would depend strongly on the structure of the code and used CDL features.
727
728The upgrade script and sources of a specialized WOK version used for OCCT code upgrade can be found in WOK Git repository in branch [CR0_700_2](http://git.dev.opencascade.org/gitweb/?p=occt-wok.git;a=log;h=refs/heads/CR0_700_2).
729
730[Contact us](http://www.opencascade.com/contact/) if you need more help.
731
732@subsection upgrade_occt700_bspline Separation of BSpline cache
733
734Implementation of NURBS curves and surfaces has been revised: the cache of polynomial coefficients, which is used to accelerate the calculation of values of a B-spline, has been separated from data objects *Geom2d_BSplineCurve, Geom_BSplineCurve* and *Geom_BSplineSurface* into the dedicated classes *BSplCLib_Cache* and *BSplSLib_Cache*.
735
736The benefits of this change are:
737* Reduced memory footprint of OCCT shapes (up to 20% on some cases)
738* Possibility to evaluate the same B-Spline concurrently in parallel threads without data races and mutex locks
739
740The drawback is that direct evaluation of B-Splines using methods of curves and surfaces becomes slower due to the absence of cache. The slow-down can be avoided by using adaptor classes *Geom2dAdaptor_Curve, GeomAdaptor_Curve* and *GeomAdaptor_Surface*, which now use cache when the curve or surface is a B-spline.
741
742OCCT algorithms have been changed to use adaptors for B-spline calculations instead of direct methods for curves and surfaces.
743The same changes (use of adaptors instead of direct call to curve and surface methods) should be implemented in relevant places in the applications based on OCCT to get the maximum performance.
744
745@subsection upgrade_occt700_booleanresult Structural result of Boolean operations
746
747The result of Boolean operations became structured according to the structure of the input shapes. Therefore it may impact old applications that always iterate on direct children of the result compound assuming to obtain solids as iteration items, regardless of the structure of the input shapes. In order to get always solids as iteration items it is recommended to use TopExp_Explorer instead of TopoDS_Iterator.
748
749@subsection upgrade_occt700_brepextrema BRepExtrema_ExtCC finds one solution only
750
751Extrema computation between non-analytical curves in shape-shape distance calculation algorithm has been changed in order to return only one solution. So, if e.g. two edges are created on parallel b-spline curves the algorithm BRepExtrema_DistShapeShape will return only one solution instead of enormous number of solutions. There is no way to get algorithm working in old manner.
752
753@subsection upgrade_occt700_sorttools Removal of SortTools package
754
755Package *SortTools* has been removed.
756The code that used the tools provided by that package should be corrected manually.
757The recommended approach is to use sorting algorithms provided by STL.
758
759For instance:
760~~~~~
761#include <SortTools_StraightInsertionSortOfReal.hxx>
762#include <SortTools_ShellSortOfReal.hxx>
763#include <TCollection_CompareOfReal.hxx>
764...
765TCollection_Array1OfReal aValues = ...;
766...
767TCollection_CompareOfReal aCompReal;
768SortTools_StraightInsertionSortOfReal::Sort(aValues, aCompReal);
769~~~~~
770can be replaced by:
771~~~~~
772#include <algorithm>
773...
774TCollection_Array1OfReal aValues = ...;
775...
776std::stable_sort (aValues.begin(), aValues.end());
777~~~~~
778
779@subsection upgrade_occt700_2dlayers On-screen objects and ColorScale
780
781The old mechanism for rendering Underlay and Overlay on-screen 2D objects based on *Visual3d_Layer* and immediate drawing model (uncached and thus slow) has been removed.
782Classes *Aspect_Clayer2d, OpenGl_GraphicDriver_Layer, Visual3d_Layer, Visual3d_LayerItem, V3d_LayerMgr* and *V3d_LayerMgrPointer* have been deleted.
783
784General AIS interactive objects with transformation persistence flag *Graphic3d_TMF_2d* can be used as a replacement of *Visual3d_LayerItem*.
785The anchor point specified for transformation persistence defines the window corner of (or center in case of (0, 0) point).
786To keep on-screen 2D objects on top of the main screen, they can be assigned to the appropriate Z-layer.
787Predefined Z-layers *Graphic3d_ZLayerId_TopOSD* and *Graphic3d_ZLayerId_BotOSD* are intended to replace Underlay and Overlay layers within the old API.
788
789*ColorScale* object previously implemented using *Visual3d_LayerItem* has been moved to a new class *AIS_ColorScale*, with width and height specified explicitly.
790The property of *V3d_View* storing the global *ColorScale* object has been removed with associated methods *V3d_View::ColorScaleDisplay(), V3d_View::ColorScaleErase(), V3d_View::ColorScaleIsDisplayed()* and *V3d_View::ColorScale()* as well as the classes *V3d_ColorScale, V3d_ColorScaleLayerItem* and *Aspect_ColorScale*.
791Here is an example of creating *ColorScale* using the updated API:
792
793~~~~~
794Handle(AIS_ColorScale) aCS = new AIS_ColorScale();
795// configuring
796Standard_Integer aWidth, aHeight;
797aView->Window()->Size (aWidth, aHeight);
798aCS->SetSize (aWidth, aHeight);
799aCS->SetRange (0.0, 10.0);
800aCS->SetNumberOfIntervals (10);
801// displaying
802aCS->SetZLayer (Graphic3d_ZLayerId_TopOSD);
803aCS->SetTransformPersistence (Graphic3d_TMF_2d, gp_Pnt (-1,-1,0));
804aCS->SetToUpdate();
805theContextAIS->Display (aCS);
806~~~~~
807
808To see how 2d objects are implemented in OCCT you can call Draw commands *vcolorscale, vlayerline* or *vdrawtext* (with <i>-2d</i> option).
809Draw command *vcolorscale* now requires the name of *ColorScale* object as argument.
810To display this object use command *vdisplay*. For example:
811
812~~~~~
813pload VISUALIZATION
814vinit
815vcolorscale cs -demo
816pload MODELING
817box b 100 100 100
818vdisplay b
819vsetdispmode 1
820vfit
821vlayerline 0 300 300 300 10
822vdrawtext t "2D-TEXT" -2d -pos 0 150 0 -color red
823~~~~~
824
825Here is a small example in C++ illustrating how to display a custom AIS object in 2d:
826~~~~~
827Handle(AIS_InteractiveContext) aContext = ...;
828Handle(AIS_InteractiveObject) anObj =...; // create an AIS object
829anObj->SetZLayer(Graphic3d_ZLayerId_TopOSD); // display object in overlay
830anObj->SetTransformPersistence (Graphic3d_TMF_2d, gp_Pnt (-1,-1,0)); // set 2d flag, coordinate origin is set to down-left corner
831aContext->Display (anObj); // display the object
832~~~~~
833
834@subsection upgrade_occt700_userdraw UserDraw and Visual3d
835
836#### Visual3d package
837
838Package *Visual3d* implementing the intermediate layer between high-level *V3d* classes
839and low-level OpenGl classes for views and graphic structures management has been dropped.
840
841The *OpenGl_View* inherits from the new class *Graphic3d_CView*.
842*Graphic3d_CView* is an interface class that declares abstract methods for managing displayed structures,
843display properties and a base layer code that implements computation
844and management of HLR (or more broadly speaking view-depended) structures.
845
846In the new implementation it takes place of the eliminated *Visual3d_View*.
847As before the instance of *Graphic3d_CView* is still completely managed by *V3d_View* classes.
848It can be accessed through *V3d_View* interface but normally it should not be required as all its methods are completely wrapped.
849
850In more details, a concrete specialization of *Graphic3d_CView* is created and returned by the graphical driver on request.
851Right after the creation the views are directly used for setting rendering properties and adding graphical structures to be displayed.
852
853The rendering of graphics is possible after mapping a window and activating the view.
854The direct setting of properties obsoletes the use of intermediate structures with display parameter
855like *Visual3d_ContextView*, etc. This means that the whole package *Visual3d* becomes redundant.
856
857The functionality previously provided by *Visual3d* package has been redesigned in the following way :
858- The management of display of structures has been moved from *Visual3d_ViewManager* into *Graphic3d_StructureManager*.
859- The class *Visual3d_View* has been removed. The management of computed structures has been moved into the base layer of *Graphi3d_CView*.
860- All intermediate structures for storing view parameters, e.g. *Visual3d_ContextView*, have been removed.
861 The settings are now kept by instances of *Graphic3d_CView*.
862- The intermediate class *Visual3d_Light* has been removed. All light properties are stored in *Graphic3d_CLight* structure, which is directly accessed by instances of *V3d_Light* classes.
863- All necessary enumerations have been moved into *Graphic3d* package.
864
865#### Custom OpenGL rendering and UserDraw
866
867Old APIs based on global callback functions for creating *UserDraw* objects and for performing custom OpenGL rendering within the view have been dropped.
868*UserDraw* callbacks are no more required since *OpenGl_Group* now inherits *Graphic3d_Group* and thus can be accessed directly from *AIS_InteractiveObject*:
869
870~~~~~
871//! Class implementing custom OpenGL element.
872class UserDrawElement : public OpenGl_Element {};
873
874//! Implementation of virtual method AIS_InteractiveObject::Compute().
875void UserDrawObject::Compute (const Handle(PrsMgr_PresentationManager3d)& thePrsMgr,
876 const Handle(Prs3d_Presentation)& thePrs,
877 const Standard_Integer theMode)
878{
879 Graphic3d_Vec4 aBndMin (myCoords[0], myCoords[1], myCoords[2], 1.0f);
880 Graphic3d_Vec4 aBndMax (myCoords[3], myCoords[4], myCoords[5], 1.0f);
881
882 // casting to OpenGl_Group should be always true as far as application uses OpenGl_GraphicDriver for rendering
883 Handle(OpenGl_Group) aGroup = Handle(OpenGl_Group)::DownCast (thePrs->NewGroup());
884 aGroup->SetMinMaxValues (aBndMin.x(), aBndMin.y(), aBndMin.z(),
885 aBndMax.x(), aBndMax.y(), aBndMax.z());
886 UserDrawElement* anElem = new UserDrawElement (this);
887 aGroup->AddElement(anElem);
888
889 // invalidate bounding box of the scene
890 thePrsMgr->StructureManager()->Update();
891}
892~~~~~
893
894To perform a custom OpenGL code within the view, it is necessary to inherit from class *OpenGl_View*.
895See the following code sample:
896
897~~~~~
898//! Custom view.
899class UserView : public OpenGl_View
900{
901public:
902 //! Override rendering into the view.
903 virtual void render (Graphic3d_Camera::Projection theProjection,
904 OpenGl_FrameBuffer* theReadDrawFbo,
905 const Standard_Boolean theToDrawImmediate)
906 {
907 OpenGl_View::render (theProjection, theReadDrawFbo, theToDrawImmediate);
908 if (theToDrawImmediate)
909 {
910 return;
911 }
912
913 // perform custom drawing
914 const Handle(OpenGl_Context)& aCtx = myWorkspace->GetGlContext();
915 GLfloat aVerts[3] = { 0.0f, 0,0f, 0,0f };
916 aCtx->core20->glEnableClientState(GL_VERTEX_ARRAY);
917 aCtx->core20->glVertexPointer(3, GL_FLOAT, 0, aVerts);
918 aCtx->core20->glDrawArrays(GL_POINTS, 0, 1);
919 aCtx->core20->glDisableClientState(GL_VERTEX_ARRAY);
920 }
921
922};
923
924//! Custom driver for creating UserView.
925class UserDriver : public OpenGl_GraphicDriver
926{
927public:
928 //! Create instance of own view.
929 virtual Handle(Graphic3d_CView) CreateView (const Handle(Graphic3d_StructureManager)& theMgr) Standard_OVERRIDE
930 {
931 Handle(UserView) aView = new UserView (theMgr, this, myCaps, myDeviceLostFlag, &myStateCounter);
932 myMapOfView.Add (aView);
933 for (TColStd_SequenceOfInteger::Iterator aLayerIt (myLayerSeq); aLayerIt.More(); aLayerIt.Next())
934 {
935 const Graphic3d_ZLayerId aLayerID = aLayerIt.Value();
936 const Graphic3d_ZLayerSettings& aSettings = myMapOfZLayerSettings.Find (aLayerID);
937 aView->AddZLayer (aLayerID);
938 aView->SetZLayerSettings (aLayerID, aSettings);
939 }
940 return aView;
941 }
942};
943
944~~~~~
945
946@subsection upgrade_occt700_localcontext Deprecation of Local Context
947
948The conception of Local Context has been deprecated.
949The related classes, e.g. *AIS_LocalContext*, and methods ( <i>AIS_InteractiveContext::OpenLocalContext()</i> and others) will be removed in a future OCCT release.
950
951The main functionality provided by Local Context - selection of object subparts - can be now used within Neutral Point without opening any Local Context.
952
953The property *SelectionMode()* has been removed from the class *AIS_InteractiveObject*.
954This property contradicts to selection logic, since it is allowed to activate several Selection modes at once.
955Therefore keeping one selection mode as object field makes no sense.
956Applications that used this method should implement selection mode caching at application level, if it is necessary for some reason.
957
958@subsection upgrade_occt700_separate_caf_visualisation Separation of visualization part from TKCAF
959
960Visualization CAF attributes have been moved into a new toolkit *TKVCAF*.
961If your application uses the classes from *TPrsStd* package then add link to *TKVCAF* library.
962
963Version numbers of *BinOCAF* and *XmlOCAF* formats are incremented; new files cannot be read by earlier versions of OCCT.
964
965Before loading the OCAF files saved by previous versions and containing *TPrsStd_AISPresentation* attribute it is necessary to define the environment variable *CSF_MIGRATION_TYPES*, pointing to file *src/StdResources/MigrationSheet.txt*.
966When using documents loaded from a file, make sure to call method *TPrsStd_AISViewer::New()* prior to accessing *TPrsStd_AISPresentation* attributes in this document as that method creates them.
967
968@subsection upgrade_euler_angles Correction of interpretation of Euler angles in gp_Quaternion
969
970Conversion of *gp_Quaternion* to and from intrinsic Tait-Bryan angles (including *gp_YawPitchRoll*) is fixed.
971
972Before that fix the sequence of rotation axes was opposite to the intended; e.g. *gp_YawPitchRoll* (equivalent to *gp_Intrinsic_ZYX*) actually defined intrinsic rotations around X, then Y, then Z. Now the rotations are made in the correct order.
973
974The applications that use *gp_Quaternion* to convert Yaw-Pitch-Roll angles (or other intrinsic Tait-Bryan sequences) may need to be updated to take this change into account.
975
976@subsection upgrade_zoom_persistent_selection Zoom Persistent Selection
977
978Zoom persistent selection introduces a new structure *Graphic3d_TransformPers* to transform persistence methods and parameters and a new class *Graphic3d_WorldViewProjState* to refer to the camera transformation state. You might need to update your code to deal with the new classes if you were using the related features. Please, keep in mind the following:
979* *Graphic3d_Camera::ModelViewState* has been renamed to *Graphic3d_Camera::WorldViewState*.
980* Transformation matrix utilities from *OpenGl_Utils* namespace have been moved to *Graphic3d_TransformUtils* and *Graphic3d_TransformUtils.hxx* header respectively.
981* Matrix stack utilities from *OpenGl_Utils* namespace have been moved to *OpenGl_MatrixStack* class and *OpenGl_MatrixStack.hxx* header respectively.
982* *OpenGl_View* methods *Begin/EndTransformPersistence* have been removed. Please, use *Graphic3d_TransformPers::Apply()* instead to apply persistence to perspective and world-view projection matrices.
983
984@subsection upgrade_occt700_correction_of_texture Texture mapping of objects
985
986Textured objects now have the priority over the environment mapping.
987
988Redundant enumerations *V3d_TypeOfSurface* and *Graphic3d_TypeOfSurface*, class *OpenGl_SurfaceDetailState*, the corresponding methods from *Graphic3d_CView, OpenGl_ShaderManager, OpenGl_View, V3d_View* and *V3d_Viewer* have been deleted.
989Draw command *VSetTextureMode* has been deleted.
990
991@subsection upgrade_occt700_wfshape Shape presentation builders
992
993Presentation tools for building Wireframe presentation have been refactored to eliminate duplicated code and interfaces.
994Therefore, the following classes have been modified:
995* *StdPrs_WFDeflectionShape* and *Prs3d_WFShape* have been removed. *StdPrs_WFShape* should be used instead.
996* *StdPrs_ToolShadedShape* has been renamed to *StdPrs_ToolTriangulatedShape*.
997
998@section upgrade_occt710 Upgrade to OCCT 7.1.0
999
1000@subsection upgrade_710_aspects Presentation attributes
1001
1002This section should be considered if application defines custom presentations, i.e. inherited from *AIS_InteractiveObject*.
1003The previous versions of OCCT have three levels for defining presentation properties (e.g. colors, materials, etc.):
1004
10051. For the entire structure - *Graphic3d_Structure* / *Prs3d_Presentation*.
10062. For a specific group of primitives - *Graphic3d_Group::SetGroupPrimitivesAspect()* overriding structure aspects.
10073. For a specific primitive array within the graphic group - *Graphic3d_Group::SetPrimitivesAspect()*.
1008
1009The structure level has de facto not been used for a long time since OCCT presentations always define aspects at the graphic group level (overriding any structure aspects).
1010Within this OCCT release, structure level of aspects has been completely removed. In most cases the application code should just remove missing methods. In those rare cases, when this functionality was intentionally used, the application should explicitly define aspects to the appropriate graphic groups.
1011
1012Note that defining several different aspects within the same graphic group should also be avoided in the application code since it is a deprecated functionality which can be removed in further releases.
1013*Graphic3d_Group::SetGroupPrimitivesAspect()* should be the main method defining presentation attributes.
1014
1015The implementation of *Graphic3d_Group::SetGroupPrimitivesAspect()* has been changed from copying aspect values to keeping the passed object.
1016Although it was not documented, previously it was possible to modify a single aspect instance, like *Graphic3d_AspectFillArea3d* and set it to multiple groups.
1017Now such code would produce an unexpected result and therefore should be updated to create the dedicated aspect instance.
1018
1019@subsection upgrade_710_types Typedefs
1020
1021The following type definitions in OCCT has been modified to use C++11 types:
1022- *Standard_Boolean* is now *bool* (previously *unsigned int*).
1023- *Standard_ExtCharacter* is now *char16_t* (previously *short*).
1024- *Standard_ExtString;* is now *const char16_t* (previously *const short*).
1025- *Standard_Utf16Char* is now *char16_t* (previously *uint16_t* for compatibility with old compilers).
1026- *Standard_Utf32Char* is now *char32_t* (previously *uint32_t* for compatibility with old compilers).
1027
1028For most applications this change should be transparent on the level of source code. Binary compatibility is not maintained, as *bool* has a different size in comparison with *unsigned int*.
1029
1030@subsection upgrade_710_ffp Programmable Pipeline
1031
1032Fixed-function pipeline has been already deprecated since OCCT 7.0.0.
1033Release 7.1.0 disables this functionality by default in favor of Programmable Pipeline (based on GLSL programs).
1034
1035Method *V3d_View::Export()*, based on *gl2ps* library, requires fixed pipeline and will return error if used with default settings.
1036Applications should explicitly enable fixed pipeline by setting *OpenGl_Caps::ffpEnable* flag to TRUE within *OpenGl_GraphicDriver::ChangeOptions()* before creating the viewer to use *V3d_View::Export()*.
1037This method is declared as deprecated and will be removed in one of the the next OCCT releases.
1038The recommended way to generate a vector image of a 3D model or scene is to use an application-level solution independent from OpenGL.
1039
1040@subsection upgrade_710_trsfpers Transformation persistence
1041
1042The behavior of transformation persistence flags *Graphic3d_TMF_ZoomPers* and *Graphic3d_TMF_TriedronPers* has been changed for consistency with a textured fixed-size 2D text.
1043An object with these flags is considered as defined in pixel units, and the presentation is no more scaled depending on the view height.
1044The applications that need to scale such objects depending on viewport size should update them manually.
1045
1046Flags *Graphic3d_TMF_PanPers* and *Graphic3d_TMF_FullPers* have been removed.
1047*Graphic3d_TMF_TriedronPers* or *Graphic3d_TMF_2d* can be used instead depending on the context.
1048
1049*Graphic3d_TransModeFlags* is not an integer bitmask anymore - enumeration values should be specified instead.
1050Several transformation persistence methods in *PrsMgr_PresentableObject* have been marked deprecated.
1051Transformation persistence should be defined using *Graphic3d_TransformPers* constructor directly and passed by a handle, not value.
1052
1053@subsection upgrade_710_selprops Dynamic highlight and selection properties
1054
1055Release 7.1.0 introduces *Graphic3d_HighlightStyle* - an entity that allows flexible customization of highlighting parameters (such as highlighting method, color, and transparency). Therefore, the signatures of the following methods related to highlighting:
1056- *AIS_InteractiveContext::Hilight()*;
1057- *AIS_InteractiveContext::HilightWithColor()*;
1058- *PrsMgr_PresentationManager::Color()*;
1059- *SelectMgr_EntityOwner::HilightWithColor()*;
1060have been changed to receive *Graphic3d_HighlightStyle* instead of *Quantity_Color*.
1061
1062Method *AIS_InteractiveContext::Hilight* is now deprecated and highlights the interactive object with selection style.
1063
1064A group of methods *AIS_InteractiveContext::IsHilighted* has changed its behavior - now they only check highlight flags of the object or the owner in the global status. If the highlight color is required on the application level, it is necessary to use overloaded methods *AIS_InteractiveContext::HighlightStyle* for the owner and the object.
1065
1066The following methods have been replaced in *AIS_InteractiveContext* class:
1067- *HilightColor* and *SetHilightColor* by *HighlightStyle* and *SetHighlightStyle*;
1068- *SelectionColor* setter and getter by *SelectionStyle* and *SetSelectionStyle*.
1069
1070The API of *Prs3d_Drawer* has been extended to allow setting up styles for both dynamic selection and highlighting. Therefore, it is possible to change the highlight style of a particular object on the application level via *SelectMgr_SelectableObject::HilightAttributes()* and process it in the entity owner.
1071
1072@subsection upgrade_occt710_correction_of_TObj_Model Correction in TObj_Model class
1073
1074Methods *TObj_Model::SaveAs* and *TObj_Model::Load* now receive *TCollection_ExtendedString* filename arguments instead of char*. UTF-16 encoding can be used to pass file names containing Unicode symbols.
1075
1076@subsection upgrade_710_env Redundant environment variables
1077
1078The following environment variables have become redundant:
1079
1080* *CSF_UnitsLexicon* and *CSF_UnitsDefinition* are no more used. Units definition (*UnitsAPI/Lexi_Expr.dat* and *UnitsAPI/Units.dat*) is now embedded into source code.
1081* *CSF_XSMessage* and *CSF_XHMessage* are now optional.
1082 English messages (XSMessage/*XSTEP.us* and SHMessage/*SHAPE.us*) are now embedded into source code
1083 and automatically loaded when environment variables are not set.
1084* *CSF_ShadersDirectory* is not required any more, though it still can be used to load custom shaders.
1085 Mandatory GLSL resources are now embedded into source code.
1086* *CSF_PluginDefaults* and other variables pointing to OCAF plugin resources (*CSF_StandardDefaults*, *CSF_XCAFDefaults*, *CSF_StandardLiteDefaults* and *CSF_XmlOcafResource*) are not necessary if method *TDocStd_Application::DefineFormat()* is used to enable persistence of OCAF documents.
1087
1088Other environment variables still can be used to customize behavior of relevant algorithms but are not necessary any more (all required resources are embedded).
1089
1090@subsection upgrade_710_removed Removed features
1091
1092The following obsolete features have been removed:
1093* Anti-aliasing API *V3d_View::SetAntialiasingOn()*. This method was intended to activate deprecated OpenGL functionality *GL_POLYGON_SMOOTH, GL_LINE_SMOOTH* and *GL_POINT_SMOOTH*.
1094 Instead of the old API, the application should request MSAA buffers for anti-aliasing by assigning *Graphic3d_RenderingParams::NbMsaaSamples* property of the structure returned by *V3d_View::ChangeRenderingParams()*.
1095* *Prs3d_Drawer::ShadingAspectGlobal()* flag has been removed as not used. The corresponding calls can be removed safely from the application code.
1096* The methods managing ZClipping planes and ZCueing: *V3d_View::SetZClippingType()*, *V3d_View::SetZCueingOn()*, etc. have been removed. ZClipping planes can be replaced by general-purpose clipping planes (the application should update plane definition manually).
1097* The 3D viewer printing API *V3d_View::Print()* has been removed. This functionality was available on Windows platforms only. The applications should use the general image dump API *V3d_View::ToPixMap()* and manage printing using a platform-specific API at the application level.
1098 Text resolution can be managed by rendering parameter *Graphic3d_RenderingParams::Resolution*, returned by *V3d_View::ChangeRenderingParams()*.
1099* Methods *PrsMgr_PresentationManager::BoundBox*, *PrsMgr_PresentationManager::Hilight* and *SelectMgr_EntityOwner::Hilight* have been removed as not used. The corresponding method in custom implementations of *SelectMgr_EntityOwner* can be removed safely. *PrsMgr_PresentationManager::Color* with the corresponding style must be used instead.
1100* Class *NCollection_QuickSort* has been removed. The code that used the tools provided by that class should be corrected manually. The recommended approach is to use sorting algorithms provided by STL (std::sort). See also @ref upgrade_occt700_sorttools above.
1101
1102* Package *Dico*. The code that used the tools provided by that package should be corrected manually. The recommended approach is to use *NCollection_DataMap* and *NCollection_IndexedDataMap* classes.
1103
1104@subsection upgrade_710_changed_methods Other changes
1105
1106The following classes have been changed:
1107
1108* *BVH_Sorter* class has become abstract. The list of arguments of both *Perform* methods has been changed and the methods became pure virtual.
1109* *Extrema_FuncExtPS* has been renamed to *Extrema_FuncPSNorm*.
1110* The default constructor and the constructor taking a point and a surface have been removed from class *Extrema_GenLocateExtPS*. Now the only constructor takes the surface and optional tolerances in U and V directions. The new method *Perform* takes the point with the start solution and processes it. The class has become not assignable and not copy-constructable.
1111* Constructors with arguments *(const gp_Ax22d& D, const gp_Pnt2d& F)* have been removed from *GCE2d_MakeParabola*, *gce_MakeParab2d* and *gp_Parab2d*. The objects created with some constructors of class *gp_Parab2d* may differ from the previous version (see the comments in *gp_Parab2d.hxx*). The result returned by *gp_Parab2d::Directrix()* method has an opposite direction in comparison with the previous OCCT versions.
1112* *BRepTools_Modifier* class now has two modes of work. They are defined by the boolean parameter *MutableInput*, which is turned off by default. This means that the algorithm always makes a copy of a sub-shape (e.g. vertex) if its tolerance is to be increased in the output shape. The old mode corresponds to *MutableInput* turned on. This change may impact an application if it implements a class derived from *BRepTools_Modifier*.
1113* The second parameter *theIsOuterWire* of method *ShapeAnalysis_Wire::CheckSmallArea* has been removed.
1114* In class *GeomPlate_CurveConstraint*, two constructors taking boundary curves of different types have been replaced with one constructor taking the curve of an abstract type.
1115* The last optional argument *RemoveInvalidFaces* has been removed from the constructor of class *BRepOffset_MakeOffset* and method *Initialize*.
1116* The public method *BOPDS_DS::VerticesOnIn* has been renamed into *SubShapesOnIn* and the new output parameter *theCommonPB* has been added.
1117
1118@section upgrade_occt720 Upgrade to OCCT 7.2.0
1119
1120@subsection upgrade_720_removed Removed features
1121
1122The following obsolete features have been removed:
1123* *AIS_InteractiveContext::PreSelectionColor()*, *DefaultColor()*, *WasCurrentTouched()*, *ZDetection()*.
1124 These properties were unused, and therefore application should remove occurrences of these methods.
1125* *AIS_InteractiveObject::SelectionPriority()*.
1126 These property was not implemented.
1127* The class *LocOpe_HBuilder* has been removed as obsolete.
1128* The package *TestTopOpe* has been removed;
1129* The package *TestTopOpeDraw* has been removed;
1130* The package *TestTopOpeTools* has been removed.
1131* The packages *QANewModTopOpe*, *QANewBRepNaming* and *QANewDBRepNaming* have been removed as containing obsolete features.
1132
1133@subsection upgrade_occt720_correction_of_Offset_API Corrections in BRepOffset API
1134
1135Class *BRepOffsetAPI_MakeOffsetShape*:
1136* *BRepOffsetAPI_MakeOffsetShape::BRepOffsetAPI_MakeOffsetShape()* - constructor with parameters has been deleted.
1137* *BRepOffsetAPI_MakeOffsetShape::PerformByJoin()* - method has been added. This method is old algorithm behaviour.
1138
1139The code below shows new calling procedure:
1140~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~{.cpp}
1141 BRepOffsetAPI_MakeOffsetShape OffsetMaker;
1142 OffsetMaker.PerformByJoin(Shape, OffsetValue, Tolerance);
1143 NewShape = OffsetMaker.Shape();
1144~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
1145
1146Class *BRepOffsetAPI_MakeThickSolid*:
1147* *BRepOffsetAPI_MakeThickSolid::BRepOffsetAPI_MakeThickSolid()* - constructor with parameters has been deleted.
1148* *BRepOffsetAPI_MakeThickSolid::MakeThickSolidByJoin()* - method has been added. This method is old algorithm behaviour.
1149
1150The code below shows new calling procedure:
1151~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~{.cpp}
1152 BRepOffsetAPI_MakeThickSolid BodyMaker;
1153 BodyMaker.MakeThickSolidByJoin(myBody, facesToRemove, -myThickness / 50, 1.e-3);
1154 myBody = BodyMaker.Shape();
1155~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
1156
1157@subsection upgrade_720_highlight Highlight style
1158
1159Management of highlight attributes has been revised and might require modifications from application side:
1160* New class *Graphic3d_PresentationAttributes* defining basic presentation attributes has been introduced.
1161 It's definition includes properties previously defined by class Graphic3d_HighlightStyle (*Color*, *Transparency*),
1162 and new properties (*Display mode*, *ZLayer*, optional *FillArea aspect*).
1163* Class *Prs3d_Drawer* now inherits class *Graphic3d_PresentationAttributes*.
1164 So that overall presentation attributes are now split into two parts - Basic attributes and Detailed attributes.
1165* Class *Graphic3d_HighlightStyle* has been dropped.
1166 It is now defined as a typedef to *Prs3d_Drawer*.
1167 Therefore, highlight style now also includes not only Basic presentation attributes, but also Detailed attributes
1168 which can be used by custom presentation builders.
1169* Highlighting style defined by class *Graphic3d_PresentationAttributes* now provides more options:
1170 - *Graphic3d_PresentationAttributes::BasicFillAreaAspect()* property providing complete Material definition.
1171 This option, when defined, can be used instead of the pair Object Material + Highlight Color.
1172 - *Graphic3d_PresentationAttributes::ZLayer()* property specifying the Layer where highlighted presentation should be shown.
1173 This property can be set to Graphic3d_ZLayerId_UNKNOWN, which means that ZLayer of main presentation should be used instead.
1174 - *Graphic3d_PresentationAttributes::DisplayMode()* property specifying Display Mode for highlight presentation.
1175* Since Highlight and Selection styles within *AIS_InteractiveContext* are now defined by *Prs3d_Drawer* inheriting from *Graphic3d_PresentationAttributes*,
1176 it is now possible to customize default highlight attributes like *Display Mode* and *ZLayer*, which previously could be defined only on Object level.
1177* Properties *Prs3d_Drawer::HighlightStyle()* and *Prs3d_Drawer::SelectionStyle()* have been removed.
1178 Instead, *AIS_InteractiveObject* now defines *DynamicHilightAttributes()* for dynamic highlighting in addition to *HilightAttributes()* used for highlighting in selected state.
1179* The following protected fields have been removed from class *AIS_InteractiveObject*:
1180 - *myOwnColor*, replaced by *myDrawer->Color()*
1181 - *myTransparency*, replaced by *myDrawer->Transparency()*
1182 - *myZLayer*, replaced by *myDrawer->ZLayer()*
1183* The method *PrsMgr_PresentationManager::Unhighlight()* taking Display Mode as an argument has been marked deprecated.
1184 Implementation now performs unhighlighting of all highlighted presentation mode.
1185
1186@subsection upgrade_720_implicit_viewer_update Elimination of implicit 3D Viewer updates
1187
1188Most AIS_InteractiveContext methods are defined with a flag to update viewer immediatly or not.
1189Within previous version of OCCT, this argument had default value TRUE.
1190While immediate viewer updates are useful for beginners (the result is displayed as soon as possible),
1191this approach is inefficent for batch viewer updates, and having default value as TRUE
1192leaded to non-intended accidential updates which are difficult to find.
1193
1194To avoid such issues, the interface has been modified and default value has been removed.
1195Therefore, old application code should be updated to set the flag theToUpdateViewer explicitly
1196to desired value (TRUE to preserve old previous behavior), if it was not already set.
1197
1198The follow AIS_InteractiveContext methods have been changed:
1199 Display, Erase, EraseAll, DisplayAll, EraseSelected, DisplaySelected, ClearPrs, Remove, RemoveAll, Hilight,
1200 HilightWithColor, Unhilight, Redisplay, RecomputePrsOnly, Update, SetDisplayMode, UnsetDisplayMode, SetColor,
1201 UnsetColor, SetWidth, UnsetWidth, SetMaterial, UnsetMaterial, SetTransparency, UnsetTransparency,
1202 SetLocalAttributes, UnsetLocalAttributes, SetPolygonOffsets, SetTrihedronSize, SetPlaneSize, SetPlaneSize,
1203 SetDeviationCoefficient, SetDeviationAngle, SetAngleAndDeviation, SetHLRDeviationCoefficient,
1204 SetHLRDeviationAngle, SetHLRAngleAndDeviation, SetSelectedAspect, MoveTo, Select, ShiftSelect, SetSelected,
1205 UpdateSelected, AddOrRemoveSelected, HilightSelected, UnhilightSelected, ClearSelected, ResetOriginalState,
1206 SubIntensityOn, SubIntensityOff, FitSelected, EraseGlobal, ClearGlobal, ClearGlobalPrs.
1207
1208In addition, the API for immediate viewer update has been removed from V3d_View and Graphic3d_StructureManager classes
1209(enumerations *Aspect_TypeOfUpdate* and *V3d_TypeOfUpdate*):
1210 V3d::SetUpdateMode(), V3d::UpdateMode(), Graphic3d_StructureManager::SetUpdateMode(), Graphic3d_StructureManager::UpdateMode().
1211
1212The argument theUpdateMode has been removed from methods Graphic3d_CView::Display(), Erase(), Update().
1213Method Graphic3d_CView::Update() does not redraw the view and does not re-compute structures anymore.
1214
1215The following Grid management methods within class V3d_Viewer do not implicitly redraw the viewer:
1216 ActivateGrid, DeactivateGrid, SetRectangularGridValues, SetCircularGridValues,
1217 RectangularGridGraphicValues, CircularGridGraphicValues, SetPrivilegedPlane, DisplayPrivilegedPlane.
1218
1219@subsection upgrade_720_Result_Of_BOP_On_Containers Result of Boolean operations on containers
1220
1221* The result of Boolean operations on arguments of collection types (WIRE/SHELL/COMPSOLID) is now filtered from duplicating containers.
1222
1223@subsection upgrade_720_changes_methods Other changes
1224
1225* Class GeomPlate_BuildPlateSurface accepts base class Adaptor3d_HCurve (instead of inherited Adaptor3d_HCurveOnSurface accepted earlier).
1226* Types GeomPlate_Array1OfHCurveOnSurface and GeomPlate_HArray1OfHCurveOnSurface have been replaced with GeomPlate_Array1OfHCurve and GeomPlate_HArray1OfHCurve correspondingly (accept base class Adaptor3d_HCurve instead of Adaptor3d_HCurveOnSurface).
1227* Enumeration *Image_PixMap::ImgFormat*, previously declared as nested enumeration within class *Image_PixMap*, has been moved to global namespace as *Image_Format* following OCCT coding rules.
1228 The enumeration values have suffix Image_Format_ and preserve previous name scheme for easy renaming of old values - e.g. Image_PixMap::ImgGray become Image_Format_Gray.
1229 Old definitions are preserved as depreacated aliases to the new ones.
1230
1231@subsection upgrade_720_BOP_DataStructure BOP - Pairs of interfering indices
1232
1233* The classes *BOPDS_PassKey* and *BOPDS_PassKeyBoolean* are too excessive and not used any more in Boolean Operations. To replace them the new *BOPDS_Pair* class has been implemented. Thus:
1234 - The method *BOPDS_DS::Interferences()* now returns the *BOPDS_MapOfPair*;
1235 - The method *BOPDS_Iterator::Value()* takes now only two parameters - the indices of interfering sub-shapes.
1236
1237@subsection upgrade_720_Removal_Of_Old_Boolean_Operations_Draw Removal of the Draw commands based on old Boolean operations
1238
1239* The commands *fubl* and *cubl* have been removed. The alternative for these commands are the commands *bfuseblend* and *bcutblend* respectively.
1240* The command *ksection* has been removed. The alternative for this command is the command *bsection*.