From 0a058991594da921c1e70980f62729e1d32e5b61 Mon Sep 17 00:00:00 2001 From: Localization Date: Fri, 22 May 2026 13:58:17 +0000 Subject: [PATCH] translation update & resource alignment From build https://c011.cloudbees-ci.autodesk.com/job/L10NCBCI/job/github.com/job/DynamoDS/job/Dynamo/job/master/553/ Professional translation: all languages Pseudo translation: none --- doc/distrib/xml/cs-CZ/DSCoreNodes.xml | 6 +- doc/distrib/xml/cs-CZ/ProtoGeometry.xml | 296 +----------------- doc/distrib/xml/cs-CZ/Tessellation.xml | 2 +- doc/distrib/xml/de-DE/DSCoreNodes.xml | 6 +- doc/distrib/xml/de-DE/ProtoGeometry.xml | 294 +---------------- doc/distrib/xml/de-DE/Tessellation.xml | 2 +- doc/distrib/xml/en-GB/DSCoreNodes.xml | 6 +- doc/distrib/xml/en-GB/ProtoGeometry.xml | 296 +----------------- doc/distrib/xml/en-GB/Tessellation.xml | 2 +- doc/distrib/xml/es-ES/DSCoreNodes.xml | 6 +- doc/distrib/xml/es-ES/ProtoGeometry.xml | 294 +---------------- doc/distrib/xml/es-ES/Tessellation.xml | 2 +- doc/distrib/xml/fr-FR/DSCoreNodes.xml | 6 +- doc/distrib/xml/fr-FR/ProtoGeometry.xml | 296 +----------------- doc/distrib/xml/fr-FR/Tessellation.xml | 2 +- doc/distrib/xml/it-IT/DSCoreNodes.xml | 6 +- doc/distrib/xml/it-IT/ProtoGeometry.xml | 294 +---------------- doc/distrib/xml/it-IT/Tessellation.xml | 2 +- doc/distrib/xml/ja-JP/DSCoreNodes.xml | 6 +- doc/distrib/xml/ja-JP/ProtoGeometry.xml | 294 +---------------- doc/distrib/xml/ja-JP/Tessellation.xml | 2 +- doc/distrib/xml/ko-KR/DSCoreNodes.xml | 6 +- doc/distrib/xml/ko-KR/ProtoGeometry.xml | 294 +---------------- doc/distrib/xml/ko-KR/Tessellation.xml | 2 +- doc/distrib/xml/pl-PL/DSCoreNodes.xml | 6 +- doc/distrib/xml/pl-PL/ProtoGeometry.xml | 294 +---------------- doc/distrib/xml/pl-PL/Tessellation.xml | 2 +- doc/distrib/xml/pt-BR/DSCoreNodes.xml | 6 +- doc/distrib/xml/pt-BR/ProtoGeometry.xml | 296 +----------------- doc/distrib/xml/pt-BR/Tessellation.xml | 2 +- doc/distrib/xml/ru-RU/DSCoreNodes.xml | 6 +- doc/distrib/xml/ru-RU/ProtoGeometry.xml | 294 +---------------- doc/distrib/xml/ru-RU/Tessellation.xml | 2 +- doc/distrib/xml/zh-CN/DSCoreNodes.xml | 6 +- doc/distrib/xml/zh-CN/ProtoGeometry.xml | 294 +---------------- doc/distrib/xml/zh-CN/Tessellation.xml | 2 +- doc/distrib/xml/zh-TW/DSCoreNodes.xml | 6 +- doc/distrib/xml/zh-TW/ProtoGeometry.xml | 294 +---------------- doc/distrib/xml/zh-TW/Tessellation.xml | 2 +- .../Properties/Resources.cs-CZ.resx | 8 +- .../Properties/Resources.de-DE.resx | 8 +- .../Properties/Resources.en-GB.resx | 8 +- .../Properties/Resources.es-ES.resx | 8 +- .../Properties/Resources.fr-FR.resx | 8 +- .../Properties/Resources.it-IT.resx | 8 +- .../Properties/Resources.ja-JP.resx | 8 +- .../Properties/Resources.ko-KR.resx | 8 +- .../Properties/Resources.pl-PL.resx | 8 +- .../Properties/Resources.pt-BR.resx | 8 +- .../Properties/Resources.ru-RU.resx | 8 +- .../Properties/Resources.zh-CN.resx | 8 +- .../Properties/Resources.zh-TW.resx | 8 +- 52 files changed, 199 insertions(+), 3839 deletions(-) diff --git a/doc/distrib/xml/cs-CZ/DSCoreNodes.xml b/doc/distrib/xml/cs-CZ/DSCoreNodes.xml index 4f5fb5e780f..51663f82a8a 100644 --- a/doc/distrib/xml/cs-CZ/DSCoreNodes.xml +++ b/doc/distrib/xml/cs-CZ/DSCoreNodes.xml @@ -277,7 +277,7 @@ Třída představující typ dat podporovaný aplikací Dynamo - + Třída představující typ dat podporovaný aplikací Dynamo @@ -286,6 +286,10 @@ Volitelný název, který přepíše název typu (`NUmber` místo `long`) + + Formát drátu $typeid (například „autodesk.math:point3d-1.0.0“). + Null pro primitivní typy, které nepoužívají serializaci $typeid. + Hierarchická úroveň, která se má zobrazit v uživatelském rozhraní diff --git a/doc/distrib/xml/cs-CZ/ProtoGeometry.xml b/doc/distrib/xml/cs-CZ/ProtoGeometry.xml index 10352e3331d..3d219f6d34a 100644 --- a/doc/distrib/xml/cs-CZ/ProtoGeometry.xml +++ b/doc/distrib/xml/cs-CZ/ProtoGeometry.xml @@ -228,9 +228,6 @@ Arc created from start, end point, and tangent arc,tangent,arcs - - Získat řetězcovou reprezentaci prvku Arc - Analyzujte importovaný řetězec JSON naformátovaný pomocí schématu autodesk.geometry:boundingbox3d-1.0.0. Řetězec JSON, který chcete analyzovat @@ -318,18 +315,6 @@ from a Revit BoundingBox without any conversions. bounding,bound,bymaxmin,max,min,bypoints - - Umožňuje porovnat dva objekty BoundingBox. - Druhý objekt BoundingBox - Rozhodnutí, zda jsou dva objekty stejné - - - Umožňuje získat pro tento typ hodnotu hash. - Jedinečná hodnota hash pro tento objekt - - - Získat řetězcovou reprezentaci prvku BoundingBox - Střed kružnice @@ -374,9 +359,6 @@ Kružnice vytvořená z bodů circle,approximate - - Získat řetězcovou reprezentaci prvku Circle - Předchozí objekt CoEdge v nadřazené smyčce @@ -413,9 +395,6 @@ Křivka v parametrickém prostoru povrchu vlastníka. Křivka je ve 2D podobě, takže souřadnice Z této křivky mají hodnotu 0. - - Získat řetězcovou reprezentaci prvku CoEdge - Počáteční bod @@ -474,9 +453,6 @@ circular bases in the CoordinateSystem XY Plane. cone,cone by height,cones - - Získat řetězcovou reprezentaci prvku Cone - Create a CoordinateSystem from a 4x4 matrix. This method is deprecated; prefer other constructors where possible. 4x4 transformation matrix @@ -672,18 +648,6 @@ Creates a CoordinateSystem at the specified spherical coordinate parameters with respect to the specified coordinate system. - - Compare two CoordinateSystem's - The other CoordinateSystem - Rozhodnutí, zda jsou dva objekty stejné - - - Umožňuje získat pro tento typ hodnotu hash. - Jedinečná hodnota hash pro tento objekt - - - Získat řetězcovou reprezentaci prvku CoordinateSystem - Returns length distance. Note: This return the input dimensions of the Cuboid, NOT the @@ -745,9 +709,6 @@ Kvádr vytvořený pomocí rohů box,cube,byminmax,by corners,by points,cubes - - Získat řetězcovou reprezentaci prvku Cuboid - Vrací celkovou délku oblouku křivky distance @@ -1138,9 +1099,6 @@ isocurve,curvebydir,lines 0.5,0.5,0.4 - - Získat řetězcovou reprezentaci prvku Curve - Poloměr válce @@ -1172,9 +1130,6 @@ Válec vytvořený pomocí bodů a poloměru cylinder,tube,by center points - - Získat řetězcovou reprezentaci prvku Cylinder - uchovává id spravovaného vlákna, které zavolalo tento konstruktor. Používá se k upozornění uživatele na potenciální problémy s více vlákny. @@ -1217,9 +1172,6 @@ Objekty CoEdge přiřazené k této hraně - - Získat řetězcovou reprezentaci prvku Edge - Střed elipsy @@ -1267,9 +1219,6 @@ Elipsa vytvořená z roviny a poloměrů ellipse,aligned ellipse,ellipsebylengths - - Získat řetězcovou reprezentaci prvku Ellipse - Střed elipsy @@ -1316,9 +1265,6 @@ Oblouk elipsy vytvořený pomocí poloměrů a úhlů roviny ellipsearc,arcs - - Získat řetězcovou reprezentaci prvku EllipseArc - Všechny hrany kolem této plochy v pořadí proti směru hodinových ručiček faces @@ -1339,9 +1285,6 @@ Základní povrch, který tvoří plochu Reprezentace povrchu plochy - - Získat řetězcovou reprezentaci prvku Face - Mapa mezi typy entity IGeometryEntity a konstruktory geometrie používajícími hostitele @@ -1462,10 +1405,6 @@ Scale in two dimensions by base and 2 pick points The two pick points are projected onto the base plane in order to determine the 2d scale factors resize,size,from,to,scale2d,2d - - Copy the given Geometry - A new copy - Získat vzdálenost z této geometrie do jiné Jiná geometrie @@ -1584,9 +1523,6 @@ Projection direction. Flat array of resulting Geometry. - - Get a string representation of the Geometry - Úhel ve stupních, o který se šroubovice otočí přes svoji délku @@ -1617,9 +1553,6 @@ Šroubovice vytvořená pomocí osy helix,screw,corkscrew,thread - - Získat řetězcovou reprezentaci prvku Helix - Buď 3, nebo 4, v závislosti na tom, zda představuje trojúhelník nebo čtyřúhelník @@ -1652,18 +1585,6 @@ Index c IndexGroup - - Umožňuje porovnat dva objekty IndexGroup. - Druhý objekt IndexGroup - Rozhodnutí, zda jsou dva objekty stejné - - - Umožňuje získat pro tento typ hodnotu hash. - Jedinečná hodnota hash pro tento objekt - - - Získat řetězcovou reprezentaci prvku IndexGroup - Směr křivky lines @@ -1698,9 +1619,6 @@ Čára od počátečního směru a délka linebyvector,lines - - Získat řetězcovou reprezentaci prvku Line - Celková plocha smyčky @@ -1712,9 +1630,6 @@ Určuje, zda je smyčka hraniční nebo vnitřní. - - Získat řetězcovou reprezentaci prvku Loop - Vrátí nezpracované vrcholy této sítě jako seznam čísel. Každá sada tří po sobě jdoucích čísel představuje bod. @@ -1906,10 +1821,6 @@ Posune síť podle vstupních vzdáleností. - - Convert the mesh into a JSON object formatted with dynamo.geometry:mesh-1.0.0 schema. - Výsledný řetězec JSON - Vytvořit síť z kolekce bodů a kolekce objektů IndexGroup odkazujících na kolekci bodů Seznam bodů, které určují umístění vrcholů @@ -2131,9 +2042,6 @@ spline by tangent,tangents,lines 0.5,0.5,0.45 - - Získat řetězcovou reprezentaci prvku NurbsCurve - Vrací stupeň povrchu ve směru U. surface smoothness,continuity @@ -2228,9 +2136,6 @@ lines 0.4 - - Získat řetězcovou reprezentaci prvku NurbsSurface - Typ okrajové podmínky použité na panely v síti. @@ -2398,9 +2303,6 @@ panel, surface, custom, orthogonal, lattice - - Získat řetězcovou reprezentaci prvku PanelSurface - Vrací počátek roviny. position,planecenter @@ -2485,9 +2387,6 @@ Vytvoří rovinu v prostoru YZ. Rovina v globální rovině YZ - - Získat řetězcovou reprezentaci prvku Plane - Získat komponentu X bodu @@ -2566,18 +2465,6 @@ Jedinečné body unique,duplicates,remove duplicates,distinct,near - - Umožňuje porovnat dva objekty Point. - Druhý objekt Point - Rozhodnutí, zda jsou dva objekty stejné - - - Umožňuje získat pro tento typ hodnotu hash. - Jedinečná hodnota hash pro tento objekt - - - Získat řetězcovou reprezentaci prvku Point - Vrací počáteční bod první komponenty a koncové body každé křivky komponenty. U uzavřeného objektu PolyCurve je koncový bod vynechán, protože počáteční a koncový bod jsou stejné. @@ -2710,9 +2597,6 @@ normála kolmá ke směru zesílení. Pokud normála není zadána (má parametr null), bude ve výchozím nastavení použita normála křivky. offset,thicken - - Získat řetězcovou reprezentaci prvku PolyCurve - Vrátí rohy mnohoúhelníku. @@ -2742,9 +2626,6 @@ Sestaví křivku vepsaného mnohoúhelníku v kružnici. - - Získat řetězcovou reprezentaci prvku Polygon - Vraťte nové povrchy představující základní povrchy. subsurfaces,getsurfaces,explode @@ -2817,9 +2698,6 @@ Profil tažení sweep,rail,guide,sweep1 - - Získat řetězcovou reprezentaci prvku PolySurface - Šířka obdélníku rectX,rectx @@ -2870,9 +2748,6 @@ Obdélník vytvořený z šířky a délky rectbylengths - - Získat řetězcovou reprezentaci prvku Rectangle - Vrací oblast plochy -- součet všech oblastí všech ploch. @@ -2985,9 +2860,6 @@ Brep,brep,boolean,addition - - Získat řetězcovou reprezentaci prvku Solid - Vraťte střed koule. @@ -3006,9 +2878,6 @@ Umístěte kouli co nejblíže vstupním bodům. Brep,brep - - Získat řetězcovou reprezentaci prvku Sphere - Vrací celkovou plochu povrchu. @@ -3272,9 +3141,6 @@ Povrch vytvořený záplatou edgesrf,edgesurface,patch,fill - - Získat řetězcovou reprezentaci prvku Surface - Vrcholy topologie @@ -3287,9 +3153,6 @@ Plochy topologie - - Získat řetězcovou reprezentaci prvku Topology - Objekt TSplineFaces přilehlý k této hraně @@ -3314,9 +3177,6 @@ Skupina vlastností objektu TSEdge: objekt uvnFrame a index, zda je objekt TSEdge na hranici, zda je rozložený či nikoli. - - Získat řetězcovou reprezentaci prvku TSplineEdge - Všechny objekty TSplineEdge kolem této plochy v pořadí proti směru hodinových ručiček @@ -3340,9 +3200,6 @@ Skupina vlastností objektu TSplineFace: objekt uvnFrame, index, valence a počet stran - - Získat řetězcovou reprezentaci prvku TSplineFace - Určuje, zda nově vytvořená křivka t-spline obsahuje radiální symetrii. @@ -3366,9 +3223,6 @@ Umožňuje vytvořit osový objekt TSplineInitialSymmetry s danými osami symetrie. tspline,symmetry - - Získat řetězcovou reprezentaci prvku TSplineInitialSymmetry - Určuje, zda je odraz radiální. @@ -3399,9 +3253,6 @@ Radiální odraz křivky t-spline tspline,symmetry,reflection,radial - - Získat řetězcovou reprezentaci prvku TSplineReflection - @@ -3554,7 +3405,7 @@ Vrcholy druhé skupiny mohou být z tohoto povrchu nebo z libovolného jiného povrchu. V případě různých křivek t-spline je před svařováním provedeno sloučení. První skupina vrcholů, které mají být svařeny - Druhá skupina vrcholů, které mají být svařeny + Druhá skupina vrcholů ke svaření Zachovat vyostření úseků vstupní topologie Povrch TSpline se svařenými vrcholy tspline,weld,vertex @@ -3633,7 +3484,7 @@ Pokud je předána hodnota true, použije se hladká vizualizace. V opačném případě se použije kvádrová. Povolit nebo zakázat hladkou vizualizaci Křivka t-spline s vybraným stylem vizualizace - tspline,visulization,mode,smooth,box + tspline,visualization,mode,smooth,box Umožňuje provést jedno nebo více symetrických vysunutí u sady hran a přesunout nové hany podle daného vektoru. @@ -3963,7 +3814,7 @@ tspline,cone,radius,cs - Umožňuje vytvořit kouli T-Spline vystředěnou na vstupní bod, s daným poloměrem. + Create a T-Spline Sphere centered at the input Point, with given radius. Střed koule Poloměr koule Počet radiálních rozpětí @@ -4175,9 +4026,6 @@ Povrchy T-Spline, které mají být sloučeny tspline,combine - - Získat řetězcovou reprezentaci prvku TSplineSurface - Vrcholy obsažené v tomto povrchu T-Spline @@ -4265,9 +4113,6 @@ tspline,face,byindex Plocha T-Spline - - Získat řetězcovou reprezentaci prvku TSplineTopology - Bod objektu TopologyItem na kostře @@ -4280,9 +4125,6 @@ Normála objektu TopologyItem - - Získat řetězcovou reprezentaci prvku TSplineUVNFrame - Objekty TSplineEdge vycházející z tohoto vrcholu @@ -4313,9 +4155,6 @@ Skupina vlastností objektu TSVertex: objekt uvnFrame, index, valence a funkční valence, zda je objekt TSVertex neutrální bod, T bod, zda je rozložený či nikoli. - - Získat řetězcovou reprezentaci prvku TSplineVertex - Získat komponentu U z UV @@ -4335,18 +4174,6 @@ Hodnota UV vytvořena pomocí souřadnic surfaceparam,parameters,uv,uvs - - Umožňuje porovnat dva objekty UV. - Druhý objekt UV - Rozhodnutí, zda jsou dva objekty stejné - - - Umožňuje získat pro tento typ hodnotu hash. - Jedinečná hodnota hash pro tento objekt - - - Získat řetězcovou reprezentaci prvku UV - Analyzujte vstupní řetězec JSON naformátovaný pomocí schématu autodesk.math:vector3d-1.0.0. Řetězec JSON, který chcete analyzovat @@ -4481,18 +4308,6 @@ Canonical Z axis vector (0,0,1) z, basis,up - - Umožňuje porovnat dva objekty Vector. - Druhý objekt Vector - Rozhodnutí, zda jsou dva objekty stejné - - - Umožňuje získat pro tento typ hodnotu hash. - Jedinečná hodnota hash pro tento objekt - - - Získat řetězcovou reprezentaci prvku Vector - Bod, kde se nachází tento vrchol @@ -4505,9 +4320,6 @@ Plochy přilehlé k tomuto vrcholu - - Získat řetězcovou reprezentaci prvku Vertex - Třída prostředků silného typu k vyhledávání lokalizovaných řetězců apod. @@ -4733,107 +4545,5 @@ Vyhledá lokalizovaný řetězec podobný řetězci „Tato metoda je vyřazena a bude odebrána v budoucí verzi aplikace Dynamo. Použijte místo ní metodu TSplineSurfaceBuildPipes(ICurveEntity[] curves, double defaultRadius, double snappingTolerance, int[] segmentCounts, bool autoHandleStart, bool autoHandleEnd, double[] startRotations, double[] endRotations, double[] startRadii, double[] endRadii, double[] startPositions, double[] endPositions, bool inSmoothMode). “. - - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - \ No newline at end of file diff --git a/doc/distrib/xml/cs-CZ/Tessellation.xml b/doc/distrib/xml/cs-CZ/Tessellation.xml index ed7de12a8aa..a5dc81a7735 100644 --- a/doc/distrib/xml/cs-CZ/Tessellation.xml +++ b/doc/distrib/xml/cs-CZ/Tessellation.xml @@ -55,7 +55,7 @@ Pomocné funkce pro změnu měřítka UV u povrchů. - + Vypočítá normalizované faktory měřítka UV povrchu pro zpracování anizotropních parametrických prostorů. Změna měřítka zachovává poměr stran a hodnoty udržuje v rozumném číselném rozsahu. Povrch, pro který se vypočítají faktory měřítka. diff --git a/doc/distrib/xml/de-DE/DSCoreNodes.xml b/doc/distrib/xml/de-DE/DSCoreNodes.xml index ba400bdcf33..701bfad5f1a 100644 --- a/doc/distrib/xml/de-DE/DSCoreNodes.xml +++ b/doc/distrib/xml/de-DE/DSCoreNodes.xml @@ -277,7 +277,7 @@ Eine Klasse, die einen von Dynamo unterstützten DataType darstellt - + Eine Klasse, die einen von Dynamo unterstützten DataType darstellt @@ -286,6 +286,10 @@ Optionaler Name zum Überschreiben des Typnamens (`Number` anstelle von `long`) + + Drahtformat $typeid (z. B. "autodesk.math:point3d-1.0.0"). + Null für primitive Typen, die keine $typeid-Serialisierung verwenden. + Die in der Benutzeroberfläche anzuzeigende hierarchische Ebene diff --git a/doc/distrib/xml/de-DE/ProtoGeometry.xml b/doc/distrib/xml/de-DE/ProtoGeometry.xml index 4f14b386cb4..00cdf0f2773 100644 --- a/doc/distrib/xml/de-DE/ProtoGeometry.xml +++ b/doc/distrib/xml/de-DE/ProtoGeometry.xml @@ -228,9 +228,6 @@ Arc created from start, end point, and tangent arc,tangent,arcs - - Ruft eine Zeichenfolgendarstellung des Bogens ab - Analysiert die eingehende JSON-Zeichenfolge, die mit dem Schema autodesk.geometry:boundingbox3d-1.0.0 formatiert ist. Zu analysierende JSON-Zeichenfolge @@ -318,18 +315,6 @@ from a Revit BoundingBox without any conversions. bounding,bound,bymaxmin,max,min,bypoints - - Vergleich der zwei BoundingBoxes - Die andere BoundingBox - Gibt an, ob diese zwei Objekte gleich sind - - - Ruft einen Hashcode für diesen Typ ab - Ein eindeutiger Hashcode für dieses Objekt - - - Ruft eine Zeichenfolgendarstellung der BoundingBox ab - Der Mittelpunkt des Kreises @@ -374,9 +359,6 @@ Aus Punkten erstellter Kreis circle,approximate - - Ruft eine Zeichenfolgendarstellung des Kreises ab - Die vorhergehende gemeinsame Kante innerhalb der Kontur @@ -413,9 +395,6 @@ Kurve im parametrischen Raum der Oberfläche. Da die Kurve in 2D-Form vorliegt, beträgt ihre Z-Koordinate 0. - - Ruft eine Zeichenfolgendarstellung der gemeinsamen Kante ab - Startpunkt @@ -474,9 +453,6 @@ circular bases in the CoordinateSystem XY Plane. cone,cone by height,cones - - Ruft eine Zeichenfolgendarstellung des Kegels ab - Create a CoordinateSystem from a 4x4 matrix. This method is deprecated; prefer other constructors where possible. 4x4 transformation matrix @@ -672,18 +648,6 @@ Creates a CoordinateSystem at the specified spherical coordinate parameters with respect to the specified coordinate system. - - Compare two CoordinateSystem's - The other CoordinateSystem - Gibt an, ob diese zwei Objekte gleich sind - - - Ruft einen Hashcode für diesen Typ ab - Ein eindeutiger Hashcode für dieses Objekt - - - Ruft eine Zeichenfolgendarstellung des CoordinateSystem ab - Returns length distance. Note: This return the input dimensions of the Cuboid, NOT the @@ -745,9 +709,6 @@ Durch Ecken erstellter Quader box,cube,byminmax,by corners,by points,cubes - - Ruft eine Zeichenfolgendarstellung des Quaders ab - Gibt die Gesamtbogenlänge der Kurve zurück distance @@ -1138,9 +1099,6 @@ isocurve,curvebydir,lines 0.5,0.5,0.4 - - Ruft eine Zeichenfolgendarstellung der Kurve ab - Der Radius des Zylinders @@ -1172,9 +1130,6 @@ Durch Punkte und Radius erstellter Zylinder cylinder,tube,by center points - - Ruft eine Zeichenfolgendarstellung des Zylinders ab - speichert die verwaltete Gewinde-ID des Gewindes, das diesen Konstruktor abgerufen hat. Wird verwendet, um Benutzer auf potenzielle Multithreading-Probleme hinzuweisen. @@ -1217,9 +1172,6 @@ Die zu dieser Kante gehörigen gemeinsamen Kanten - - Ruft eine Zeichenfolgendarstellung der Kante ab - Der Mittelpunkt der Ellipse. @@ -1267,9 +1219,6 @@ Aus Ebene und Radien erstellte Ellipse ellipse,aligned ellipse,ellipsebylengths - - Ruft eine Zeichenfolgendarstellung der Ellipse ab - Der Mittelpunkt der Ellipse @@ -1316,9 +1265,6 @@ Durch Ebene, Radien und Winkel erstellter Ellipsenbogen ellipsearc,arcs - - Ruft eine Zeichenfolgendarstellung der EllipseArc ab - Alle diese Fläche umgebenden Kanten gegen den Uhrzeigersinn faces @@ -1339,9 +1285,6 @@ Die die Fläche bildende und ihr zugrunde liegende Oberfläche Oberflächendarstellung der Fläche - - Ruft eine Zeichenfolgendarstellung der Fläche ab - Eine Zuordnung zwischen IGeometryEntity-Typen und Geometrie-Konstruktoren, die den Host verwenden. @@ -1462,10 +1405,6 @@ Scale in two dimensions by base and 2 pick points The two pick points are projected onto the base plane in order to determine the 2d scale factors resize,size,from,to,scale2d,2d - - Copy the given Geometry - A new copy - Ruft den Abstand zwischen dieser und anderer Geometrie ab. Die andere Geometrie @@ -1589,9 +1528,6 @@ Projection direction. Flat array of resulting Geometry. - - Get a string representation of the Geometry - Der Winkel (in Grad), um den die Schraube über ihre Länge gedreht wird @@ -1622,9 +1558,6 @@ Durch Achse erstellte Helix helix,screw,corkscrew,thread - - Ruft eine Zeichenfolgendarstellung der Spirale ab - Entweder 3 oder 4, je nachdem, ob ein Dreieck oder ein Viereck dargestellt werden soll. @@ -1657,18 +1590,6 @@ Index c IndexGroup - - Vergleich der zwei IndexGroups - Die andere IndexGroup - Gibt an, ob diese zwei Objekte gleich sind - - - Ruft einen Hashcode für diesen Typ ab - Ein eindeutiger Hashcode für dieses Objekt - - - Ruft eine Zeichenfolgendarstellung der IndexGroup ab - Die Richtung der Kurve lines @@ -1703,9 +1624,6 @@ Linie von Anfangsrichtung und -länge linebyvector,lines - - Ruft eine Zeichenfolgendarstellung der Linie ab - Die Fläche, die die Kontur umschließt @@ -1717,9 +1635,6 @@ Gibt an, ob die Schleife am Rand oder innen liegt. - - Ruft eine Zeichenfolgendarstellung der Schleife ab - Gibt Rohscheitelpunkte dieses Netzes als Liste von Zahlen zurück. Jeder Satz von drei aufeinanderfolgenden Zahlen steht für einen Punkt. @@ -1911,10 +1826,6 @@ Verschiebt das Netz um die Eingabeabstände - - Convert the mesh into a JSON object formatted with dynamo.geometry:mesh-1.0.0 schema. - Die resultierende JSON-Zeichenfolge - Erstellt ein Netz aus einer Sammlung von Punkten und einer Sammlung von IndexGroups, die die Punktsammlung referenzieren. Liste von Punkten, die die Scheitelpunktpositionen bestimmen @@ -2136,9 +2047,6 @@ spline by tangent,tangents,lines 0.5,0.5,0.45 - - Ruft eine Zeichenfolgendarstellung der NurbsCurve ab - Gibt den Grad der Oberfläche in U-Richtung zurück. surface smoothness,continuity @@ -2233,9 +2141,6 @@ lines 0.4 - - Ruft eine Zeichenfolgendarstellung der NurbsSurface ab - Typ der Begrenzungsbedingung, der auf die Panels in einem Netz angewendet wird. @@ -2403,9 +2308,6 @@ panel, surface, custom, orthogonal, lattice - - Zeichenfolgendarstellung des PanelSurface-Objekts abrufen - Gibt den Ursprung der Ebene zurück. position,planecenter @@ -2490,9 +2392,6 @@ Erstellt eine Ebene in der Welt-YZ-Ebene. Ebene an der YZ-Ebene der Welt - - Ruft eine Zeichenfolgendarstellung der Ebene ab - Die X-Komponente des Punkts @@ -2571,18 +2470,6 @@ Eindeutige Punkte unique,duplicates,remove duplicates,distinct,near - - Vergleich der zwei Punkte - Der andere Punkt - Gibt an, ob diese zwei Objekte gleich sind - - - Ruft einen Hashcode für diesen Typ ab - Ein eindeutiger Hashcode für dieses Objekt - - - Ruft eine Zeichenfolgendarstellung des Punkts ab - Gibt den Startpunkt der ersten Komponente und die Endpunkte jeder Komponentenkurve zurück. Bei einer geschlossenen Polykurve wird der Endpunkt ausgeschlossen, da Start- und Endpunkt identisch sind. @@ -2715,9 +2602,6 @@ Normale senkrecht zur Verdickungsrichtung. Wenn die Normale nicht angegeben wird (Null ist), wird vorgabemäßig die Kurvennormale verwendet. offset,thicken - - Ruft eine Zeichenfolgendarstellung der PolyCurve ab - Gibt die Ecken des Polygons zurück. @@ -2747,9 +2631,6 @@ Erstellt eine einbeschriebene Polygonkurve innerhalb eines Kreises. - - Ruft eine Zeichenfolgendarstellung des Polygons ab - Gibt neue Oberflächen zurück, die die zugrunde liegenden Oberflächen repräsentieren. subsurfaces,getsurfaces,explode @@ -2822,9 +2703,6 @@ Sweep-Profil sweep,rail,guide,sweep1 - - Ruft eine Zeichenfolgendarstellung der PolySurface ab - Die Breite des Rechtecks rectX,rectx @@ -2875,9 +2753,6 @@ Aus Breite und Länge erstelltes Rechteck rectbylengths - - Ruft eine Zeichenfolgendarstellung des Rechtecks ab - Gibt den Flächeninhalt der Oberfläche zurück -- Summe des Flächeninhalts aller Flächen. @@ -2990,9 +2865,6 @@ Brep,brep,boolean,addition - - Ruft eine Zeichenfolgendarstellung des Volumenkörpers ab - Gibt den Mittelpunkt der Kugel zurück. @@ -3011,9 +2883,6 @@ Passt eine Kugel so weit wie möglich an die eingegebenen Punkte an. Brep,brep - - Ruft eine Zeichenfolgendarstellung der Kugel ab - Gibt den Gesamtflächeninhalt der Oberfläche zurück. @@ -3277,9 +3146,6 @@ Durch Füllung erstellte Oberfläche edgesrf,edgesurface,patch,fill - - Ruft eine Zeichenfolgendarstellung der Oberfläche ab - Die Scheitelpunkte der Topologie @@ -3292,9 +3158,6 @@ Die Flächen der Topologie - - Ruft eine Zeichenfolgendarstellung der Topologie ab - Die an diese Kante angrenzenden TSplineFaces @@ -3319,9 +3182,6 @@ Bündel von TSEdge-Eigenschaften: uvnFrame und Index, ob TSEdge sich am Rand befindet, mannigfaltig oder nicht - - Ruft eine Zeichenfolgendarstellung der TSplineEdge ab - Alle diese Fläche umgebenden TSplineEdges gegen den Uhrzeigersinn @@ -3345,9 +3205,6 @@ Bündel von TSplineFace-Eigenschaften: uvnFrame, Index, Wertigkeit und Anzahl Seiten - - Ruft eine Zeichenfolgendarstellung der TSplineFace ab - Gibt an, ob der neu erstellte T-Spline radiale Symmetrie aufweist. @@ -3371,9 +3228,6 @@ Erstellt eine axiale TSplineInitialSymmetry mit gegebenen Symmetrieachsen. tspline,symmetry - - Ruft eine Zeichenfolgendarstellung der TSplineInitialSymmetry ab - Gibt an, ob die Reflexion radial ist. @@ -3404,9 +3258,6 @@ Radiale Reflexion des T-Spline tspline,symmetry,reflection,radial - - Ruft eine Zeichenfolgendarstellung der TSplineReflection ab - @@ -3638,7 +3489,7 @@ Glatte Visualisierung, wenn True übergeben wird, andernfalls Quader. Glatte Visualisierung aktivieren oder deaktivieren T-Spline mit ausgewähltem Visualisierungsstil - tspline,visulization,mode,smooth,box + tspline,visualization,mode,smooth,box Führt eine oder mehrere symmetrische Extrusion(en) für eine Gruppe von Kanten durch und verschiebt neue Kanten um den gegebenen Vektor. @@ -3968,7 +3819,7 @@ tspline,cone,radius,cs - Erstellt eine T-Spline-Kugel mit Mittelpunkt am eingegebenen Punkt und mit dem angegebenen Radius. + Create a T-Spline Sphere centered at the input Point, with given radius. Mittelpunkt der Kugel Radius der Kugel Anzahl radialer Felder @@ -4180,9 +4031,6 @@ Zu kombinierende T-Spline-Oberflächen tspline,combine - - Ruft eine Zeichenfolgendarstellung der TSplineSurface ab - In dieser T-Spline-Oberfläche enthaltene Scheitelpunkte. @@ -4270,9 +4118,6 @@ tspline,face,byindex T-Spline-Fläche - - Ruft eine Zeichenfolgendarstellung der TSplineTopology ab - Punkt des TopologyItem auf der Hülle @@ -4285,9 +4130,6 @@ Normale des TopologyItem - - Ruft eine Zeichenfolgendarstellung des TSplineUVNFrame ab - Die von diesem Scheitelpunkt ausgehenden TSplineEdges @@ -4318,9 +4160,6 @@ Bündel von TSVertex-Eigenschaften: uvnFrame, Index, Wertigkeit und functionalValence, TSVertex ist StarPoint, TPoint, mannigfaltig oder nicht - - Ruft eine Zeichenfolgendarstellung des TSplineVertex ab - Ruft die U-Komponente des UV ab. @@ -4340,18 +4179,6 @@ Durch Koordinaten erstellter UV-Wert surfaceparam,parameters,uv,uvs - - Vergleich der zwei UVs - Der andere UV - Gibt an, ob diese zwei Objekte gleich sind - - - Ruft einen Hashcode für diesen Typ ab - Ein eindeutiger Hashcode für dieses Objekt - - - Ruft eine Zeichenfolgendarstellung des UV ab - Analysiert die eingehende JSON-Zeichenfolge, die mit dem Schema autodesk.math:vector3d-1.0.0 formatiert ist. Zu analysierende JSON-Zeichenfolge @@ -4486,18 +4313,6 @@ Canonical Z axis vector (0,0,1) z, basis,up - - Vergleich der zwei Vektoren - Der andere Vektor - Gibt an, ob diese zwei Objekte gleich sind - - - Ruft einen Hashcode für diesen Typ ab - Ein eindeutiger Hashcode für dieses Objekt - - - Ruft eine Zeichenfolgendarstellung des Vektors ab - Der Punkt, der die Position des Scheitelpunkts angibt @@ -4510,9 +4325,6 @@ Die an diesen Scheitelpunkt angrenzenden Flächen - - Ruft eine Zeichenfolgendarstellung des Scheitelpunkts ab - Eine stark typisierte Ressourcenklasse zum Suchen von lokalisierten Zeichenfolgen usw. @@ -4738,107 +4550,5 @@ Sucht eine lokalisierte Zeichenfolge ähnlich wie Diese Methode ist veraltet und wird in einer zukünftigen Version von Dynamo entfernt. Verwenden Sie stattdessen TSplineSurfaceBuildPipes(ICurveEntity[] curves, double defaultRadius, double snappingTolerance, int[] segmentCounts, bool autoHandleStart, bool autoHandleEnd, double[] startRotations, double[] endRotations, double[] startRadii, double[] endRadii, double[] startPositions, double[] endPositions, bool inSmoothMode) . - - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - \ No newline at end of file diff --git a/doc/distrib/xml/de-DE/Tessellation.xml b/doc/distrib/xml/de-DE/Tessellation.xml index 0c2656a9a8b..731ba738d80 100644 --- a/doc/distrib/xml/de-DE/Tessellation.xml +++ b/doc/distrib/xml/de-DE/Tessellation.xml @@ -55,7 +55,7 @@ Dienstprogrammfunktionen für die UV-Skalierung auf Oberflächen. - + Berechnet normalisierte UV-Skalierungsfaktoren für eine Oberfläche, um anisotrope Parameterräume zu verarbeiten. Die Skalierung behält das Seitenverhältnis bei, während die Werte in einem angemessenen numerischen Bereich bleiben. Oberfläche, für die Skalierungsfaktoren berechnet werden sollen. diff --git a/doc/distrib/xml/en-GB/DSCoreNodes.xml b/doc/distrib/xml/en-GB/DSCoreNodes.xml index 5d3b15849c5..4feac0fbc95 100644 --- a/doc/distrib/xml/en-GB/DSCoreNodes.xml +++ b/doc/distrib/xml/en-GB/DSCoreNodes.xml @@ -277,7 +277,7 @@ A class representing a DataType supported by Dynamo - + A class representing a DataType supported by Dynamo @@ -286,6 +286,10 @@ An optional Name to override the Type name (`Number` instead of `long`) + + Wire-format $typeid (e.g. "autodesk.math:point3d-1.0.0"). + Null for primitive types that don't use $typeid serialization. + The hierarchical level to be displayed in the UI diff --git a/doc/distrib/xml/en-GB/ProtoGeometry.xml b/doc/distrib/xml/en-GB/ProtoGeometry.xml index b8c53c4111c..98119733c63 100644 --- a/doc/distrib/xml/en-GB/ProtoGeometry.xml +++ b/doc/distrib/xml/en-GB/ProtoGeometry.xml @@ -228,9 +228,6 @@ Arc created from start, end point, and tangent arc,tangent,arcs - - Get a string representation of the Arc - Parse the incoming JSON string formatted with autodesk.geometry:boundingbox3d-1.0.0 schema. JSON string to parse @@ -318,18 +315,6 @@ from a Revit BoundingBox without any conversions. bounding,bound,bymaxmin,max,min,bypoints - - Compare two BoundingBox's - The other BoundingBox - Whether the two objects are equal - - - Get a hashcode for this type - A unique hashcode for this object - - - Get a string representation of the BoundingBox - The center of the circle @@ -374,9 +359,6 @@ Circle created from points circle,approximate - - Get a string representation of the Circle - The previous CoEdge in the containing Loop @@ -413,9 +395,6 @@ Curve in parametric space of the owner surface. The curve is in 2D form, thus Z coordinates of this curve are 0. - - Get a string representation of the CoEdge - The start point @@ -474,9 +453,6 @@ circular bases in the CoordinateSystem XY Plane. cone,cone by height,cones - - Get a string representation of the Cone - Create a CoordinateSystem from a 4x4 matrix. This method is deprecated; prefer other constructors where possible. 4x4 transformation matrix @@ -672,18 +648,6 @@ Creates a CoordinateSystem at the specified spherical coordinate parameters with respect to the specified coordinate system. - - Compare two CoordinateSystem's - The other CoordinateSystem - Whether the two objects are equal - - - Get a hashcode for this type - A unique hashcode for this object - - - Get a string representation of the CoordinateSystem - Returns length distance. Note: This return the input dimensions of the Cuboid, NOT the @@ -745,9 +709,6 @@ Cuboind created by corners box,cube,byminmax,by corners,by points,cubes - - Get a string representation of the Cuboid - Returns the total arc length of the curve distance @@ -1138,9 +1099,6 @@ isocurve,curvebydir,lines 0.5,0.5,0.4 - - Get a string representation of the Curve - The radius of the cylinder @@ -1172,9 +1130,6 @@ Cylinder created by points and radius cylinder,tube,by center points - - Get a string representation of the Cylinder - stores the managed thread id of thread which called this constructor. Used to alert users to potential multi threaded issues. @@ -1217,9 +1172,6 @@ The CoEdges associated with this Edge - - Get a string representation of the Edge - The center of the Ellipse @@ -1267,9 +1219,6 @@ Ellipse created from plane and radii ellipse,aligned ellipse,ellipsebylengths - - Get a string representation of the Ellipse - The center of the Ellipse @@ -1316,9 +1265,6 @@ Ellipse arc created by plane radii and angles ellipsearc,arcs - - Get a string representation of the EllipseArc - All of the Edges around this Face in counterclockwise order faces @@ -1339,9 +1285,6 @@ The underlying Surface making up the Face Surface representation of face - - Get a string representation of the Face - A map between IGeometryEntity types and Geometry constructors using host. @@ -1462,10 +1405,6 @@ Scale in two dimensions by base and 2 pick points The two pick points are projected onto the base plane in order to determine the 2d scale factors resize,size,from,to,scale2d,2d - - Copy the given Geometry - A new copy - Obtain the distance from this Geometry to another The other Geometry @@ -1589,9 +1528,6 @@ Projection direction. Flat array of resulting Geometry. - - Get a string representation of the Geometry - The angle in degrees through which the Helix turns over its length @@ -1622,9 +1558,6 @@ Helix created by axis helix,screw,corkscrew,thread - - Get a string representation of the Helix - Either 3 or 4, depending if it represents a triangle or a quad @@ -1657,18 +1590,6 @@ Index c IndexGroup - - Compare two IndexGroup's - The other IndexGroup - Whether the two objects are equal - - - Get a hashcode for this type - A unique hashcode for this object - - - Get a string representation of the IndexGroup - The direction of the Curve lines @@ -1703,9 +1624,6 @@ Line from start direction and length linebyvector,lines - - Get a string representation of the Line - The containing Face of the Loop @@ -1717,9 +1635,6 @@ Whether the loop is border or inner - - Get a string representation of the Loop - Returns raw vertices of this mesh as a list of numbers. Each set of three consecutive numbers represents a point. @@ -1911,10 +1826,6 @@ Translates the Mesh by the input distances - - Convert the mesh into a JSON object formatted with dynamo.geometry:mesh-1.0.0 schema. - The resulting JSON string - Create a mesh from a collection of Points and a collection of IndexGroups referencing the Point collection List of points that determine vertex positions @@ -2136,9 +2047,6 @@ spline by tangent,tangents,lines 0.5,0.5,0.45 - - Get a string representation of the NurbsCurve - Returns surface degree in the U direction. surface smoothness,continuity @@ -2233,9 +2141,6 @@ lines 0.4 - - Get a string representation of the NurbsSurface - The type of boundary condition applied to panels in a mesh. @@ -2403,9 +2308,6 @@ panel, surface, custom, orthogonal, lattice - - Get a string representation of the PanelSurface - Returns the origin of the Plane. position,planecenter @@ -2490,9 +2392,6 @@ Creates a plane in the world YZ Plane at YZ plane of world - - Get a string representation of the Plane - Get the X component of a Point @@ -2571,18 +2470,6 @@ Unique points unique,duplicates,remove duplicates,distinct,near - - Compare two Point's - The other Point - Whether the two objects are equal - - - Get a hashcode for this type - A unique hashcode for this object - - - Get a string representation of the Point - Returns the start point of the first component and the end points of every component curve. For a closed polycurve, as the start and end points are the same, the end point is excluded. @@ -2715,9 +2602,6 @@ the normal perpendicular to the thickening direction. If the normal is not supplied (is null), the curve normal is used by default. offset,thicken - - Get a string representation of the PolyCurve - Returns corners of polygon @@ -2747,9 +2631,6 @@ Construct an inscribed Polygon Curve within a circle. - - Get a string representation of the Polygon - Return new Surfaces representing the underlying Surfaces. subsurfaces,getsurfaces,explode @@ -2822,9 +2703,6 @@ Sweep profile sweep,rail,guide,sweep1 - - Get a string representation of the PolySurface - The width of the Rectangle rectX,rectx @@ -2875,9 +2753,6 @@ Rectangle created from width and length rectbylengths - - Get a string representation of the Rectangle - Returns the surface area -- sum of all the areas of all faces @@ -2990,9 +2865,6 @@ Brep,brep,boolean,addition - - Get a string representation of the Solid - Return the center Point of the Sphere. @@ -3011,9 +2883,6 @@ Fit a Sphere as close as possible to the input Points. Brep,brep - - Get a string representation of the Sphere - Returns the total surface area. @@ -3277,9 +3146,6 @@ Surface created by patch edgesrf,edgesurface,patch,fill - - Get a string representation of the Surface - The Vertices of the Topology @@ -3292,9 +3158,6 @@ The Faces of the Topology - - Get a string representation of the Topology - The TSplineFaces adjacent to this Edge @@ -3319,9 +3182,6 @@ A bunch of TSEdge properties: uvnFrame and index, whether TSEdge is on Border, is Manifold or not - - Get a string representation of the TSplineEdge - All of the TSplineEdges around this Face in counterclockwise order @@ -3345,9 +3205,6 @@ A bunch of TSplineFace properties: uvnFrame, index, valence and number of sides - - Get a string representation of the TSplineFace - Whether newly created t-spline has radial symmetry. @@ -3371,9 +3228,6 @@ Create an axial TSplineInitialSymmetry with given symmetry axes. tspline,symmetry - - Get a string representation of the TSplineInitialSymmetry - Whether the reflection is radial @@ -3404,9 +3258,6 @@ T-Spline radial reflection tspline,symmetry,reflection,radial - - Get a string representation of the TSplineReflection - @@ -3559,7 +3410,7 @@ Second group vertices can be either from this surface or from any other. In case of different t-splines combine is performed before the weld operation First group of vertices to weld - Second group of vecrtices to weld + Second group of vertices to weld Preserve the subd-creases of the input topology TSpline surface with welded vertices tspline,weld,vertex @@ -3638,7 +3489,7 @@ Smooth visualization if true passed, box otherwise. Enable or disable smooth visualization t-spline with chosen visualization style - tspline,visulization,mode,smooth,box + tspline,visualization,mode,smooth,box Perform a single or multiple symmetric extrudes on a set of edges and move new edges by given vector. @@ -3968,7 +3819,7 @@ tspline,cone,radius,cs - Create a T-Spline Sphere cetered at the input Point, with given radius. + Create a T-Spline Sphere centered at the input Point, with given radius. Center of a sphere Radius of a sphere Number of radial spans @@ -4180,9 +4031,6 @@ T-Spline Surfaces to combine tspline,combine - - Get a string representation of the TSplineSurface - Vertices contained in this T-Spline Surface. @@ -4270,9 +4118,6 @@ tspline,face,byindex T-Spline Face - - Get a string representation of the TSplineTopology - Point of the TopologyItem on the hull @@ -4285,9 +4130,6 @@ Normal of the TopologyItem - - Get a string representation of the TSplineUVNFrame - The TSplineEdges emanating from this Vertex @@ -4318,9 +4160,6 @@ A bunch of TSVertex properties: uvnFrame, index, valence and functionalValence, whether TSVertex is a StarPoint, TPoint, Manifold or not - - Get a string representation of the TSplineVertex - Get the U component of a UV @@ -4340,18 +4179,6 @@ UV created by coordinates surfaceparam,parameters,uv,uvs - - Compare two UV's - The other UV - Whether the two objects are equal - - - Get a hashcode for this type - A unique hashcode for this object - - - Get a string representation of the UV - Parse the incoming JSON string formatted with autodesk.math:vector3d-1.0.0 schema. JSON string to parse @@ -4486,18 +4313,6 @@ Canonical Z axis vector (0,0,1) z, basis,up - - Compare two Vector's - The other Vector - Whether the two objects are equal - - - Get a hashcode for this type - A unique hashcode for this object - - - Get a string representation of the Vector - The Point where this Vertex is located @@ -4510,9 +4325,6 @@ The Faces adjacent to this Vertex - - Get a string representation of the Vertex - A strongly-typed resource class, for looking up localized strings, etc. @@ -4738,107 +4550,5 @@ Looks up a localized string similar to This method is deprecated and will be removed in a future version of Dynamo. Use TSplineSurfaceBuildPipes(ICurveEntity[] curves, double defaultRadius, double snappingTolerance, int[] segmentCounts, bool autoHandleStart, bool autoHandleEnd, double[] startRotations, double[] endRotations, double[] startRadii, double[] endRadii, double[] startPositions, double[] endPositions, bool inSmoothMode) instead . - - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - \ No newline at end of file diff --git a/doc/distrib/xml/en-GB/Tessellation.xml b/doc/distrib/xml/en-GB/Tessellation.xml index 4d38d2cb437..6d23e5bbeb8 100644 --- a/doc/distrib/xml/en-GB/Tessellation.xml +++ b/doc/distrib/xml/en-GB/Tessellation.xml @@ -55,7 +55,7 @@ Utility functions for UV scaling on surfaces. - + Computes normalized UV scaling factors for a surface to handle anisotropic parameter spaces. The scaling preserves the aspect ratio while keeping values in a reasonable numerical range. Surface to compute scaling factors for. diff --git a/doc/distrib/xml/es-ES/DSCoreNodes.xml b/doc/distrib/xml/es-ES/DSCoreNodes.xml index 380ed444f44..87877471c71 100644 --- a/doc/distrib/xml/es-ES/DSCoreNodes.xml +++ b/doc/distrib/xml/es-ES/DSCoreNodes.xml @@ -277,7 +277,7 @@ Una clase que representa un DataType admitido por Dynamo - + Una clase que representa un DataType admitido por Dynamo @@ -286,6 +286,10 @@ Un nombre opcional para modificar el nombre de tipo (`Number` en lugar de `long`) + + Formato de conductor $typeid (por ejemplo, "autodesk.math:point3d-1.0.0"). + Valor nulo para tipos primitivos que no utilizan' serialización $typeid. + El nivel jerárquico que se mostrará en la interfaz de usuario diff --git a/doc/distrib/xml/es-ES/ProtoGeometry.xml b/doc/distrib/xml/es-ES/ProtoGeometry.xml index e8ea28b91cb..c646a8f63a5 100644 --- a/doc/distrib/xml/es-ES/ProtoGeometry.xml +++ b/doc/distrib/xml/es-ES/ProtoGeometry.xml @@ -228,9 +228,6 @@ Arc created from start, end point, and tangent arc,tangent,arcs - - Permite obtener una representación de cadena del arco. - Analice la cadena JSON entrante con el formato de esquema autodesk.geometry:boundingbox3d-1.0.0. Cadena JSON que se analizará @@ -318,18 +315,6 @@ from a Revit BoundingBox without any conversions. bounding,bound,bymaxmin,max,min,bypoints - - Compara dos BoundingBox. - El otro BoundingBox - Si los dos objetos son iguales - - - Obtiene un código hash para este tipo. - Un código hash exclusivo para este objeto - - - Permite obtener una representación de cadena del BoundingBox. - El centro del círculo. @@ -374,9 +359,6 @@ Círculo creado a partir de puntos circle,approximate - - Permite obtener una representación de cadena del círculo. - La anterior arista coincidente en el bucle contenedor @@ -413,9 +395,6 @@ Curva en espacio paramétrico de la superficie de propietario. La curva está en formato 2D, así las coordenadas Z de esta curva son 0. - - Permite obtener una representación de cadena de la arista coincidente. - El punto inicial. @@ -474,9 +453,6 @@ circular bases in the CoordinateSystem XY Plane. cone,cone by height,cones - - Permite obtener una representación de cadena del cono. - Create a CoordinateSystem from a 4x4 matrix. This method is deprecated; prefer other constructors where possible. 4x4 transformation matrix @@ -672,18 +648,6 @@ Creates a CoordinateSystem at the specified spherical coordinate parameters with respect to the specified coordinate system. - - Compare two CoordinateSystem's - The other CoordinateSystem - Si los dos objetos son iguales - - - Obtiene un código hash para este tipo. - Un código hash exclusivo para este objeto - - - Permite obtener una representación de cadena del CoordinateSystem. - Returns length distance. Note: This return the input dimensions of the Cuboid, NOT the @@ -745,9 +709,6 @@ Ortoedro creado por esquinas box,cube,byminmax,by corners,by points,cubes - - Permite obtener una representación de cadena del cubo. - Devuelve la longitud de arco total de la curva. distance @@ -1138,9 +1099,6 @@ isocurve,curvebydir,lines 0.5,0.5,0.4 - - Permite obtener una representación de cadena de la curva. - El radio del cilindro @@ -1172,9 +1130,6 @@ Cilindro creado por puntos y radio cylinder,tube,by center points - - Permite obtener una representación de cadena del cilindro. - almacena el ID de proceso administrado que ha llamado a este constructor. Se utiliza para avisar a los usuarios de posibles problemas de multiproceso. @@ -1217,9 +1172,6 @@ Las aristas coincidentes asociadas con esta arista - - Permite obtener una representación de cadena de la arista. - El centro de la elipse. @@ -1267,9 +1219,6 @@ Elipse creada a partir de un plano y radios ellipse,aligned ellipse,ellipsebylengths - - Permite obtener una representación de cadena de la elipse. - El centro de la elipse. @@ -1316,9 +1265,6 @@ Arco elíptico creado por ángulos y radios de plano ellipsearc,arcs - - Permite obtener una representación de cadena del EllipseArc. - Todas las aristas alrededor de esta cara, de derecha a izquierda. faces @@ -1339,9 +1285,6 @@ La superficie subyacente que forma la cara. Representación de superficie de cara - - Permite obtener una representación de cadena de la cara. - Un mapeo entre tipos IGeometryEntity y constructores de geometría con anfitrión. @@ -1462,10 +1405,6 @@ Scale in two dimensions by base and 2 pick points The two pick points are projected onto the base plane in order to determine the 2d scale factors resize,size,from,to,scale2d,2d - - Copy the given Geometry - A new copy - Obtiene la distancia entre esta Geometry y otra. La otra Geometry. @@ -1587,9 +1526,6 @@ un objeto LibG. Projection direction. Flat array of resulting Geometry. - - Get a string representation of the Geometry - El ángulo expresado en grados por el cual la hélice gira sobre su longitud. @@ -1620,9 +1556,6 @@ un objeto LibG. Hélice creada por eje helix,screw,corkscrew,thread - - Permite obtener una representación de cadena de la hélice. - Pueden ser 3 o 4, según si se representa un triángulo o un cuadrilátero. @@ -1655,18 +1588,6 @@ un objeto LibG. Índice c IndexGroup - - Compara dos IndexGroup. - El otro IndexGroup - Si los dos objetos son iguales - - - Obtiene un código hash para este tipo - Un código hash exclusivo para este objeto - - - Permite obtener una representación de cadena del IndexGroup. - La dirección de la curva. lines @@ -1701,9 +1622,6 @@ un objeto LibG. Línea desde la longitud y la dirección iniciales linebyvector,lines - - Permite obtener una representación de cadena de la línea. - La cara contenedora del bucle @@ -1715,9 +1633,6 @@ un objeto LibG. Si el bucle es de borde o interior - - Permite obtener una representación de cadena del bucle. - Devuelve vértices sin procesar de esta malla como una lista de números. Cada conjunto de tres números consecutivos representan un punto. @@ -1909,10 +1824,6 @@ un objeto LibG. Traslada la malla según las distancias de entrada. - - Convert the mesh into a JSON object formatted with dynamo.geometry:mesh-1.0.0 schema. - La cadena JSON resultante - Crea una malla a partir de una colección de puntos y una colección de IndexGroups que hacen referencia a la colección de puntos. Lista de puntos que determinan las posiciones del vértice @@ -2134,9 +2045,6 @@ un objeto LibG. spline by tangent,tangents,lines 0.5,0.5,0.45 - - Permite obtener una representación de cadena de la NurbsCurve. - Devuelve el grado de la superficie en la dirección U. surface smoothness,continuity @@ -2231,9 +2139,6 @@ un objeto LibG. lines 0.4 - - Permite obtener una representación de cadena de la NurbsSurface. - El tipo de condición de contorno que se aplica a los paneles de una malla. @@ -2401,9 +2306,6 @@ un objeto LibG. panel, surface, custom, orthogonal, lattice - - Obtenga una representación de cadena de la PanelSurface. - Devuelve el origen del plano. position,planecenter @@ -2488,9 +2390,6 @@ un objeto LibG. Crea un plano en el plano YZ universal. Plano en el plano YZ universal - - Permite obtener una representación de cadena del plano. - Obtiene el componente X de un punto. @@ -2569,18 +2468,6 @@ un objeto LibG. Puntos únicos unique,duplicates,remove duplicates,distinct,near - - Compara dos puntos. - El otro punto - Si los dos objetos son iguales - - - Obtiene un código hash para este tipo - Un código hash exclusivo para este objeto - - - Permite obtener una representación de cadena del punto. - Devuelve el punto inicial del primer componente y los puntos finales de cada curva de componente. En una PolyCurve cerrada, como los puntos inicial y final son los mismos, se excluye el punto final. @@ -2713,9 +2600,6 @@ un objeto LibG. la normal perpendicular a la dirección de engrosado. Si no se proporciona la normal (es nula), se utiliza por defecto la normal de la curva. offset,thicken - - Permite obtener una representación de cadena de la PolyCurve. - Devuelve las esquinas del polígono. @@ -2745,9 +2629,6 @@ un objeto LibG. Genera una curva de polígono inscrita dentro de un círculo. - - Permite obtener una representación de cadena del polígono. - Devuelve nuevas superficies que representan las superficies subyacentes. subsurfaces,getsurfaces,explode @@ -2820,9 +2701,6 @@ un objeto LibG. Perfil de barrido sweep,rail,guide,sweep1 - - Permite obtener una representación de cadena de la PolySurface. - La anchura del rectángulo. rectX,rectx @@ -2873,9 +2751,6 @@ un objeto LibG. Rectángulo creado a partir de la anchura y la longitud rectbylengths - - Permite obtener una representación de cadena del rectángulo. - Devuelve el área de superficie; la suma de todas las áreas de todas las caras. @@ -2988,9 +2863,6 @@ un objeto LibG. Brep,brep,boolean,addition
- - Permite obtener una representación de cadena del sólido. - Devuelve el punto central de la esfera. @@ -3009,9 +2881,6 @@ un objeto LibG. Ajusta una esfera a los puntos de entrada lo más cerca posible. Brep,brep
- - Permite obtener una representación de cadena de la esfera. - Devuelve el área de superficie total. @@ -3275,9 +3144,6 @@ un objeto LibG. Superficie creada por parche edgesrf,edgesurface,patch,fill - - Permite obtener una representación de cadena de la superficie. - Los vértices de la topología. @@ -3290,9 +3156,6 @@ un objeto LibG. Las caras de la topología - - Permite obtener una representación de cadena de la topología. - Las TSplineFaces adyacentes a esta arista @@ -3317,9 +3180,6 @@ un objeto LibG. Conjunto de propiedades de TSEdge: uvnFrame e índice, si TSEdge está en la arista, es múltiple o no - - Permite obtener una representación de cadena de la TSplineEdge. - Todas las TSplineEdges alrededor de esta cara, de derecha a izquierda @@ -3343,9 +3203,6 @@ un objeto LibG. Conjunto de propiedades de TSplineFace: uvnFrame, índice, valencia y número de lados - - Permite obtener una representación de cadena de la TSplineFace. - Si la T-Spline recientemente creada tiene simetría radial. @@ -3369,9 +3226,6 @@ un objeto LibG. Crea una TSplineInitialSymmetry axial con ejes de simetría especificados. tspline,symmetry - - Permite obtener una representación de cadena de la TSplineInitialSymmetry. - Si la reflexión es radial @@ -3402,9 +3256,6 @@ un objeto LibG. Reflexión radial de T-Spline tspline,symmetry,reflection,radial - - Permite obtener una representación de cadena de la TSplineReflection. - @@ -3636,7 +3487,7 @@ un objeto LibG. Visualización suave si se pasa true, de lo contrario es de cuadro. Activar o desactivar visualización suave T-Spline con estilo de visualización elegido - tspline,visulization,mode,smooth,box + tspline,visualization,mode,smooth,box Efectúa una extrusión simétrica simple o múltiple en un conjunto de aristas y mueve las aristas nuevas según un vector especificado. @@ -3966,7 +3817,7 @@ un objeto LibG. tspline,cone,radius,cs - Crea una esfera de T-Spline centrada en el punto de entrada con el radio especificado. + Create a T-Spline Sphere centered at the input Point, with given radius. Centro de una esfera Radio de una espera Número de tramos radiales @@ -4178,9 +4029,6 @@ un objeto LibG. Superficies de T-Spline que combinar tspline,combine - - Permite obtener una representación de cadena de la TSplineSurface. - Vértices contenidos en esta superficie de T-Spline. @@ -4268,9 +4116,6 @@ un objeto LibG. tspline,face,byindex Cara de T-Spline - - Permite obtener una representación de cadena de la TSplineTopology. - Punto del TopologyItem en la rejilla @@ -4283,9 +4128,6 @@ un objeto LibG. Normal del TopologyItem - - Permite obtener una representación de cadena de TSplineUVNFrame. - TSplineEdges que emanan de este vértice @@ -4316,9 +4158,6 @@ un objeto LibG. Conjunto de propiedades de TSVertex: uvnFrame, índice, valencia y functionalValence, si TSVertex es un punto de estrella, punto T, múltiple o no - - Permite obtener una representación de cadena del TSplineVertex. - Obtiene el componente U de un UV. @@ -4338,18 +4177,6 @@ un objeto LibG. UV creado por coordenadas surfaceparam,parameters,uv,uvs - - Compara dos UV. - El otro UV - Si los dos objetos son iguales - - - Obtiene un código hash para este tipo - Un código hash exclusivo para este objeto - - - Permite obtener una representación de cadena del UV. - Analice la cadena JSON entrante con el formato de esquema autodesk.math:vector3d-1.0.0. Cadena JSON que se analizará @@ -4484,18 +4311,6 @@ un objeto LibG. Canonical Z axis vector (0,0,1) z, basis,up - - Compara dos vectores. - El otro vector. - Si los dos objetos son iguales - - - Obtiene un código hash para este tipo - Un código hash exclusivo para este objeto - - - Permite obtener una representación de cadena del vector. - El punto en que se encuentra este vértice. @@ -4508,9 +4323,6 @@ un objeto LibG. Las caras adyacentes a este vértice. - - Permite obtener una representación de cadena del vértice. - Una clase de recurso con tipado fuerte que permite buscar cadenas localizadas, etc. @@ -4737,107 +4549,5 @@ un objeto LibG. Busca una cadena localizada similar a Este método se ha dejado de usar y se eliminará en una versión futura de Dynamo. Utilice TSplineSurfaceBuildPipes(ICurveEntity[] curves, double defaultRadius, double snappingTolerance, int[] segmentCounts, bool autoHandleStart, bool autoHandleEnd, double[] startRotations, double[] endRotations, double[] startRadii, double[] endRadii, double[] startPositions, double[] endPositions, bool inSmoothMode) en su lugar. . - - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - \ No newline at end of file diff --git a/doc/distrib/xml/es-ES/Tessellation.xml b/doc/distrib/xml/es-ES/Tessellation.xml index 9dc6837c921..162914665b7 100644 --- a/doc/distrib/xml/es-ES/Tessellation.xml +++ b/doc/distrib/xml/es-ES/Tessellation.xml @@ -55,7 +55,7 @@ Funciones de utilidad de la escala UV en superficies. - + Calcula los factores de escala de UV normalizados de una superficie para gestionar espacios de parámetros anisotrópicos. La escala conserva la relación de anchura-altura, mientras mantiene los valores dentro de un rango numérico razonable. Superficie para la que se calcularán los factores de escala. diff --git a/doc/distrib/xml/fr-FR/DSCoreNodes.xml b/doc/distrib/xml/fr-FR/DSCoreNodes.xml index 2afaa6d8fa1..88dc3e5339e 100644 --- a/doc/distrib/xml/fr-FR/DSCoreNodes.xml +++ b/doc/distrib/xml/fr-FR/DSCoreNodes.xml @@ -277,7 +277,7 @@ Classe représentant un type de données pris en charge par Dynamo - + Classe représentant un type de données pris en charge par Dynamo @@ -286,6 +286,10 @@ Nom facultatif remplaçant le nom du type (`Numéro` au lieu de `long`) + + $typeid au format filaire (par exemple, "autodesk.math:point3d-1.0.0"). + Null pour les types primitifs qui n'utilisent pas la sérialisation $typeid. + Niveau hiérarchique à afficher dans l'interface utilisateur diff --git a/doc/distrib/xml/fr-FR/ProtoGeometry.xml b/doc/distrib/xml/fr-FR/ProtoGeometry.xml index 846d559796d..db75fd3a430 100644 --- a/doc/distrib/xml/fr-FR/ProtoGeometry.xml +++ b/doc/distrib/xml/fr-FR/ProtoGeometry.xml @@ -228,9 +228,6 @@ Arc created from start, end point, and tangent arc,tangent,arcs - - Obtenir une représentation de l'arc sous forme de chaîne - Analyser la chaîne JSON entrante formatée avec le schéma aautodesk.geometry:boundingbox3d-1.0.0. Chaîne JSON à analyser @@ -318,18 +315,6 @@ from a Revit BoundingBox without any conversions. bounding,bound,bymaxmin,max,min,bypoints - - Comparer deux BoundingBox - L'autre BoundingBox - Si les deux objets sont égaux - - - Obtenir un code de hachage pour ce type - Un code de hachage unique pour cet objet - - - Obtenir une représentation de la BoundingBox sous forme de chaîne - Centre du cercle @@ -374,9 +359,6 @@ Cercle créé à partir de points circle,approximate - - Obtenir une représentation du Circle sous forme de chaîne - L'arête concourante précédente dans la boucle de contenu @@ -413,9 +395,6 @@ Courbe dans l'espace paramétrique de la surface propriétaire. La courbe est de forme 2D, ainsi les coordonnées Z de cette courbe sont de 0. - - Obtenir une représentation sous forme de chaîne de l'arête concourante - Point de début @@ -474,9 +453,6 @@ circular bases in the CoordinateSystem XY Plane. cone,cone by height,cones - - Obtenir une représentation du Cone sous forme de chaîne - Create a CoordinateSystem from a 4x4 matrix. This method is deprecated; prefer other constructors where possible. 4x4 transformation matrix @@ -672,18 +648,6 @@ Creates a CoordinateSystem at the specified spherical coordinate parameters with respect to the specified coordinate system. - - Compare two CoordinateSystem's - The other CoordinateSystem - Si les deux objets sont égaux - - - Obtenir un code de hachage pour ce type - Un code de hachage unique pour cet objet - - - Obtenir une représentation du CoordinateSystem sous forme de chaîne - Returns length distance. Note: This return the input dimensions of the Cuboid, NOT the @@ -745,9 +709,6 @@ Cuboïde créé par des coins box,cube,byminmax,by corners,by points,cubes - - Obtenir une représentation du Cuboid sous forme de chaîne - Renvoie la longueur d'arc totale de la courbe distance @@ -1138,9 +1099,6 @@ isocurve,curvebydir,lines 0.5,0.5,0.4 - - Obtenir une représentation de la Curve sous forme de chaîne - Rayon du cylindre @@ -1172,9 +1130,6 @@ Cylindre créé par des points et un rayon cylinder,tube,by center points - - Obtenir une représentation du Cylinder sous forme de chaîne - stocke l'ID de filetage géré du filetage qui a appelé ce constructeur. Utilisé pour alerter les utilisateurs sur les problèmes éventuels de multifile. @@ -1217,9 +1172,6 @@ Les arêtes concourantes associées à cette Edge - - Obtenir une représentation de l'Edge sous forme de chaîne - Centre de l'ellipse @@ -1267,9 +1219,6 @@ Ellipse créée à partir d'un plan et de rayons ellipse,aligned ellipse,ellipsebylengths - - Obtenir une représentation de l'ellipse sous forme de chaîne - Centre de l'ellipse @@ -1316,9 +1265,6 @@ Arc d'ellipse créé par des rayons et des angles de plan ellipsearc,arcs - - Obtenir une représentation de l'EllipseArc sous forme de chaîne - Toutes les Edges autour de cette face dans le sens trigonométrique faces @@ -1339,9 +1285,6 @@ Surface sous-jacente constituant la face Représentation de la surface de la face - - Obtenir une représentation de la face sous forme de chaîne - Un mappage entre les types IGeometryEntity et les constructeurs de Geometry à l'aide de l'hôte. @@ -1462,10 +1405,6 @@ Scale in two dimensions by base and 2 pick points The two pick points are projected onto the base plane in order to determine the 2d scale factors resize,size,from,to,scale2d,2d - - Copy the given Geometry - A new copy - Obtenir la distance entre cette Geometry et une autre L'autre Geometry @@ -1588,9 +1527,6 @@ Projection direction. Flat array of resulting Geometry. - - Get a string representation of the Geometry - Angle (en degrés) selon lequel l'hélice tourne sur sa longueur @@ -1621,9 +1557,6 @@ Hélice créée par axe helix,screw,corkscrew,thread - - Obtenir une représentation de l'hélice sous forme de chaîne - 3 ou 4, selon qu'il représente un triangle ou un quadrilatère. @@ -1656,18 +1589,6 @@ Index c GroupeIndex - - Comparer deux IndexGroup - L'autre IndexGroup - Si les deux objets sont égaux - - - Obtenir un code de hachage pour ce type - Un code de hachage unique pour cet objet - - - Obtenir une représentation de l'IndexGroup sous forme de chaîne - Direction de la Curve lines @@ -1702,9 +1623,6 @@ Ligne à partir de la direction de départ et de la longueur linebyvector,lines - - Obtenir une représentation de la ligne sous forme de chaîne - La face de contenu de la boucle @@ -1716,9 +1634,6 @@ Si l'option Boucle est de type bord ou intérieur - - Obtenir une représentation de la boucle sous forme de chaîne - Renvoie les sommets bruts de ce maillage sous forme de liste de nombres. Chaque jeu de trois nombres consécutifs représentent un point. @@ -1910,10 +1825,6 @@ Convertit le maillage en fonction des distances d’entrée - - Convert the mesh into a JSON object formatted with dynamo.geometry:mesh-1.0.0 schema. - Chaîne JSON obtenue - Créer un maillage à partir d'un ensemble de points et un ensemble d'IndexGroups référençant l'ensemble de points Liste des points déterminant les positions des sommets @@ -2135,9 +2046,6 @@ spline by tangent,tangents,lines 0.5,0.5,0.45 - - Obtenir une représentation de la NURBSCurve sous forme de chaîne - Renvoie le degré de surface dans la direction U. surface smoothness,continuity @@ -2232,9 +2140,6 @@ lines 0.4 - - Obtenir une représentation de la NURBSSurface sous forme chaîne - Type de condition aux limites appliqué aux panneaux d'un maillage. @@ -2402,9 +2307,6 @@ panel, surface, custom, orthogonal, lattice - - Obtenir une représentation de la PanelSurface sous forme de chaîne - Renvoie l'origine du plan. position,planecenter @@ -2489,9 +2391,6 @@ Crée un plan dans l'univers YZ Plan au plan YZ universel - - Obtenir une représentation du plan sous forme de chaîne - Obtenir le composant X d'un point @@ -2570,18 +2469,6 @@ Points uniques unique,duplicates,remove duplicates,distinct,near - - Comparer les deux points - L'autre point - Si les deux objets sont égaux - - - Obtenir un code de hachage pour ce type - Un code de hachage unique pour cet objet - - - Obtenir une représentation du point sous forme de chaîne - Renvoie le point de départ du premier composant et les points d'arrivée de chaque courbe de composant. Pour une polycourbe fermée, comme les points de départ et d'arrivée sont les mêmes, le point d'arrivée est exclu. @@ -2714,9 +2601,6 @@ la normale perpendiculaire à la direction d'épaississement. Si la normale n'est pas fournie (nulle), la normale de la courbe est utilisée par défaut. offset,thicken - - Obtenir une représentation de la PolyCurve sous forme de chaîne - Renvoie les coins du polygone @@ -2746,9 +2630,6 @@ Créer une Curve de polygone inscrit dans un cercle. - - Obtenir une représentation du polygone sous forme de chaîne - Renvoie les nouvelles surfaces représentant les surfaces sous-jacentes. subsurfaces,getsurfaces,explode @@ -2821,9 +2702,6 @@ Profil de balayage sweep,rail,guide,sweep1 - - Obtenir une représentation de la polysurface sous forme de chaîne - Largeur du rectangle rectX,rectx @@ -2874,9 +2752,6 @@ Rectangle créé à partir de la largeur et de la longueur rectbylengths - - Obtenir une représentation du rectangle sous forme de chaîne - Renvoie la superficie -- somme de toutes les superficies de toutes les faces @@ -2989,9 +2864,6 @@ Brep,brep,boolean,addition - - Obtenir une représentation du solide sous forme de chaîne - Renvoyer le point central de la sphère. @@ -3010,9 +2882,6 @@ Ajuster une sphère aussi près que possible des points d'entrée. Brep,brep - - Obtenir une représentation de la sphère sous forme de chaîne - Renvoie la superficie totale. @@ -3276,9 +3145,6 @@ Surface créée par correction edgesrf,edgesurface,patch,fill - - Obtenir une représentation de la surface sous forme de chaîne - Sommets de la topologie @@ -3291,9 +3157,6 @@ Faces de la topologie - - Obtenir une représentation de la topologie sous forme de chaîne - Le TSplineFaces adjacentes à cette Edge @@ -3318,9 +3181,6 @@ Un groupe de propriétés TSEdge: uvnFrame et index, si TSEdge est sur le bord manifold, est ou non - - Obtenir une représentation du TSplineEdge sous forme de chaîne - Tous les TSplineEdges autour de cette face dans le sens trigonométrique @@ -3344,9 +3204,6 @@ Un groupe de propriétés TSplineFace: uvnFrame, index, une valence de et nombre de côtés - - Obtenir une représentation du TSplineFace sous forme de chaîne - Si les nouveaux T-Spline A la symétrie radiale. @@ -3370,9 +3227,6 @@ Crée une symétrie axiale avec les axes TSplineInitialSymmetry donné. tspline,symmetry - - Obtenir une représentation du TSplineInitialSymmetry sous forme de chaîne - Si la réflexion est radiale @@ -3403,9 +3257,6 @@ Réflexion de T-Spline radial tspline,symmetry,reflection,radial - - Obtenir une représentation du TSplineReflection sous forme de chaîne - @@ -3558,7 +3409,7 @@ deuxième groupe de sommets peut être de cette surface ou dans les autres. Dans le cas des différents T-Splines Combiner est effectuée avant l'opération de soudure Le premier groupe de sommets à souder - Deuxième groupe de vecrtices à souder + Deuxième groupe de sommets à souder Conserver la subd-creases de la topologie d'entrée La surface TSpline avec les sommets soudés tspline,weld,vertex @@ -3637,7 +3488,7 @@ Lisser la visualisation Si True transmise, sinon. Activer ou désactiver le lissage de visualisation T-Spline avec style de visualisation choisie - tspline,visulization,mode,smooth,box + tspline,visualization,mode,smooth,box Effectuer un seul ou plusieurs symétrique Extrude dans un jeu d'arêtes et déplacez des arêtes en vecteur donné. @@ -3967,7 +3818,7 @@ tspline,cone,radius,cs - Créez une sphère T-Spline centrée au niveau du point d'entrée, avec un rayon donné. + Create a T-Spline Sphere centered at the input Point, with given radius. Le centre de la sphère Rayon de la sphère Nombre de travées radiale @@ -4179,9 +4030,6 @@ Les surfaces T-Spline pour combiner tspline,combine - - Obtenir une représentation de la chaîne TSplineSurface - Les sommets contenus dans cette surface de T-spline. @@ -4269,9 +4117,6 @@ tspline,face,byindex Face T-Spline - - Obtenir une représentation du TSplineTopology sous forme de chaîne - Point de la TopologyItem sur la coque @@ -4284,9 +4129,6 @@ Normale de la TopologyItem - - Obtenir une représentation du TSplineUVNFrame sous forme de chaîne - Le TSplineEdges provenant de ce sommet @@ -4317,9 +4159,6 @@ Un groupe de propriétés TSVertex: uvnFrame, index, une valence de et functionalValence, si TSVertex est un StarPoint, TPoint, multiples ou non - - Obtenir une représentation du TSplineVertex sous forme de chaîne - Obtenir le composant U d'un UV @@ -4339,18 +4178,6 @@ UV créé à l'aide de coordonnées surfaceparam,parameters,uv,uvs - - Comparer les deux UV - L'autre UV - Si les deux objets sont égaux - - - Obtenir un code de hachage pour ce type - Un code de hachage unique pour cet objet - - - Obtenir une représentation de l'UV sous forme de chaîne - Analyser la chaîne JSON entrante formatée avec le schéma autodesk.math:vector3d-1.0.0. Chaîne JSON à analyser @@ -4485,18 +4312,6 @@ Canonical Z axis vector (0,0,1) z, basis,up - - Comparer les deux vecteurs - L'autre vecteur - Si les deux objets sont égaux - - - Obtenir un code de hachage pour ce type - Un code de hachage unique pour cet objet - - - Obtenir une représentation du vecteur sous forme de chaîne - Point où ce sommet est placé @@ -4509,9 +4324,6 @@ Faces adjacentes à ce sommet - - Obtenir une représentation du sommet sous forme de chaîne - Une classe de ressource fortement typée, pour la recherche de chaînes localisées, etc. @@ -4737,107 +4549,5 @@ La fonctionnalité "Rechercher une chaîne localisée similaire à cette méthode" est obsolète et sera supprimée dans une version ultérieure de Dynamo. Utilisez plutôt TSplineSurfaceBuildPipes(ICurveEntity[] curves, double defaultRadius, double snappingTolerance, int[] segmentCounts, bool autoHandleStart, bool autoHandleEnd, double[] startRotations, double[] endRotations, double[] startRadii, double[] endRadii, double[] startPositions, double[] endPositions, bool inSmoothMode) . - - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - \ No newline at end of file diff --git a/doc/distrib/xml/fr-FR/Tessellation.xml b/doc/distrib/xml/fr-FR/Tessellation.xml index bbfadd2823a..34b707d9221 100644 --- a/doc/distrib/xml/fr-FR/Tessellation.xml +++ b/doc/distrib/xml/fr-FR/Tessellation.xml @@ -55,7 +55,7 @@ Fonctions utilitaires pour la mise à l’échelle UV sur les surfaces. - + Calcule les facteurs de mise à l'échelle UV normalisés d'une surface pour gérer les espaces de paramètres anisotropes. La mise à l'échelle préserve les proportions tout en conservant les valeurs dans une plage numérique raisonnable. Surface pour calculer les facteurs de mise à l'échelle. diff --git a/doc/distrib/xml/it-IT/DSCoreNodes.xml b/doc/distrib/xml/it-IT/DSCoreNodes.xml index 7bf7e714cae..1e6eaf45cbc 100644 --- a/doc/distrib/xml/it-IT/DSCoreNodes.xml +++ b/doc/distrib/xml/it-IT/DSCoreNodes.xml @@ -277,7 +277,7 @@ Classe che rappresenta un DataType supportato da Dynamo - + Classe che rappresenta un DataType supportato da Dynamo @@ -286,6 +286,10 @@ Nome facoltativo che consente di sostituire il nome del tipo (`Number` anziché `long`) + + Formato di filo $typeid (ad esempio, "autodesk.math:point3d-1.0.0"). + Null per' tipi primitivi che non utilizzano la serializzazione $typeid. + Livello gerarchico da visualizzare nell'interfaccia utente diff --git a/doc/distrib/xml/it-IT/ProtoGeometry.xml b/doc/distrib/xml/it-IT/ProtoGeometry.xml index 49577506f88..b144a6c891e 100644 --- a/doc/distrib/xml/it-IT/ProtoGeometry.xml +++ b/doc/distrib/xml/it-IT/ProtoGeometry.xml @@ -227,9 +227,6 @@ Arc created from start, end point, and tangent arc,tangent,arcs - - Ottiene una rappresentazione stringa dell'arco - Analizzare la stringa JSON in entrata formattata con lo schema autodesk.geometry:boundingbox3d-1.0.0. Stringa JSON da analizzare @@ -317,18 +314,6 @@ from a Revit BoundingBox without any conversions. bounding,bound,bymaxmin,max,min,bypoints - - Confronta due elementi BoundingBox - Altro elemento BoundingBox - Indica se i due oggetti sono uguali - - - Ottiene un hashcode per il tipo - Hashcode univoco per l'oggetto corrente - - - Ottiene una rappresentazione stringa di BoundingBox - Centro del cerchio @@ -373,9 +358,6 @@ Cerchio creato da punti circle,approximate - - Ottiene una rappresentazione stringa del cerchio - Il CoEdge precedente nel perimetro chiuso contenente @@ -412,9 +394,6 @@ Curva nello spazio parametrico della superficie proprietaria. La curva è in formato 2D, pertanto le coordinate Z di questa curva sono 0. - - Ottenere una rappresentazione stringa del CoEdge - Punto iniziale @@ -473,9 +452,6 @@ circular bases in the CoordinateSystem XY Plane. cone,cone by height,cones - - Ottiene una rappresentazione stringa del cono - Create a CoordinateSystem from a 4x4 matrix. This method is deprecated; prefer other constructors where possible. 4x4 transformation matrix @@ -667,18 +643,6 @@ Creates a CoordinateSystem at the specified spherical coordinate parameters with respect to the specified coordinate system. - - Compare two CoordinateSystem's - The other CoordinateSystem - Indica se i due oggetti sono uguali - - - Ottiene un hashcode per il tipo - Hashcode univoco per l'oggetto corrente - - - Ottiene una rappresentazione stringa di CoordinateSystem - Returns length distance. Note: This return the input dimensions of the Cuboid, NOT the @@ -740,9 +704,6 @@ Curvatura creata da angoli box,cube,byminmax,by corners,by points,cubes - - Ottiene una rappresentazione stringa del cuboide - Restituisce la lunghezza dell'arco totale della curva. distance @@ -1133,9 +1094,6 @@ isocurve,curvebydir,lines 0.5,0.5,0.4 - - Ottiene una rappresentazione stringa della curva - Il raggio del cilindro @@ -1167,9 +1125,6 @@ Cilindro creato da punti e raggio cylinder,tube,by center points - - Ottiene una rappresentazione stringa del cilindro - Memorizza l'ID thread gestito del thread che ha chiamato questo costruttore. Utilizzato per avvertire gli utenti in caso di potenziali problemi di multi-threading. @@ -1212,9 +1167,6 @@ I CoEdge associati a questo spigolo - - Ottiene una rappresentazione stringa del bordo - Centro dell'ellisse @@ -1262,9 +1214,6 @@ Ellisse creata da piano e raggi ellipse,aligned ellipse,ellipsebylengths - - Ottiene una rappresentazione stringa dell'ellisse - Centro dell'ellisse @@ -1311,9 +1260,6 @@ Arco di ellisse creato da raggi e angoli del piano ellipsearc,arcs - - Ottiene una rappresentazione stringa di EllipseArc - Tutti gli spigoli intorno alla faccia, in ordine antiorario faces @@ -1334,9 +1280,6 @@ Superficie sottostante che forma la faccia Rappresentazione della superficie - - Ottiene una rappresentazione stringa della faccia - Mappatura tra tipi IGeometryEntity e costruttori Geometry mediante host. @@ -1456,10 +1399,6 @@ Scale in two dimensions by base and 2 pick points The two pick points are projected onto the base plane in order to determine the 2d scale factors resize,size,from,to,scale2d,2d - - Copy the given Geometry - A new copy - Restituisce la distanza tra la geometria corrente e un'altra geometria Altra geometria @@ -1582,9 +1521,6 @@ Projection direction. Flat array of resulting Geometry. - - Get a string representation of the Geometry - Angolo in gradi per il quale l'elica ruota nel senso della lunghezza @@ -1615,9 +1551,6 @@ Elica creata dall'asse helix,screw,corkscrew,thread - - Ottiene una rappresentazione stringa dell'elica - 3 o 4, a seconda che rappresenti un triangolo o un quadrilatero @@ -1650,18 +1583,6 @@ Indice c IndexGroup - - Confronta due IndexGroup - L'altro IndexGroup - Indica se i due oggetti sono uguali - - - Ottiene un hashcode per il tipo - Hashcode univoco per l'oggetto corrente - - - Ottiene una rappresentazione stringa di IndexGroup - Direzione della curva lines @@ -1696,9 +1617,6 @@ Linea da direzione iniziale e lunghezza linebyvector,lines - - Ottiene una rappresentazione stringa della linea - La faccia contenente del perimetro chiuso @@ -1710,9 +1628,6 @@ Se il perimetro chiuso è bordo o interno - - Ottenere una rappresentazione stringa del perimetro chiuso - Restituisce i vertici grezzi di questa mesh come elenco di numeri. Ogni serie di tre numeri consecutivi rappresenta un punto. @@ -1904,10 +1819,6 @@ Trasla la mesh in base alle distanze di input. - - Convert the mesh into a JSON object formatted with dynamo.geometry:mesh-1.0.0 schema. - Stringa JSON risultante - Crea una mesh da una raccolta di punti e una raccolta di IndexGroup che fanno riferimento alla raccolta di punti. Elenco di punti che determinano le posizioni dei vertici @@ -2129,9 +2040,6 @@ spline by tangent,tangents,lines 0.5,0.5,0.45 - - Ottiene una rappresentazione stringa di NurbsCurve - Restituisce il grado di superficie in direzione U. surface smoothness,continuity @@ -2226,9 +2134,6 @@ lines 0.4 - - Ottiene una rappresentazione stringa di NurbsSurface - Il tipo di condizione al contorno applicato ai pannelli in una mesh. @@ -2396,9 +2301,6 @@ panel, surface, custom, orthogonal, lattice - - Ottiene una rappresentazione stringa di PanelSurface. - Restituisce l'origine del piano. position,planecenter @@ -2483,9 +2385,6 @@ Crea un piano nel piano YZ globale Piano in corrispondenza del piano YZ globale - - Ottiene una rappresentazione stringa del piano - Ottiene il componente X di un punto @@ -2564,18 +2463,6 @@ Punti univoci unique,duplicates,remove duplicates,distinct,near - - Confronta due punti - L'altro punto - Indica se i due oggetti sono uguali - - - Ottiene un hashcode per il tipo - Hashcode univoco per l'oggetto corrente - - - Ottiene una rappresentazione stringa del punto - Restituisce il punto iniziale del primo componente e i punti finali di ogni curva del componente. Per una PolyCurve chiusa, poiché i punti iniziale e finale sono gli stessi, il punto finale è escluso. @@ -2708,9 +2595,6 @@ perpendicolare normale alla direzione di ispessimento. Se la normale non viene fornita (è nulla), per default viene utilizzata la normale della curva. offset,thicken - - Ottiene una rappresentazione stringa di PolyCurve - Restituisce gli angoli del poligono @@ -2740,9 +2624,6 @@ Creare una curva poligonale inscritta in un cerchio. - - Ottiene una rappresentazione stringa del poligono - Restituisce nuove superfici che rappresentano le superfici sottostanti. subsurfaces,getsurfaces,explode @@ -2815,9 +2696,6 @@ Profilo di sweep sweep,rail,guide,sweep1 - - Ottiene una rappresentazione stringa di PolySurface - Larghezza del rettangolo rectX,rectx @@ -2868,9 +2746,6 @@ Rettangolo creato da larghezza e lunghezza rectbylengths - - Ottiene una rappresentazione stringa del rettangolo - Restituisce l'area della superficie, ovvero la somma di tutte le aree di tutte le facce @@ -2983,9 +2858,6 @@ Brep,brep,boolean,addition - - Ottiene una rappresentazione stringa del solido - Restituisce il centro della sfera. @@ -3004,9 +2876,6 @@ Adatta una sfera il più vicino possibile ai punti di input. Brep,brep - - Ottiene una rappresentazione stringa della sfera - Restituisce l'area totale della superficie. @@ -3270,9 +3139,6 @@ Superficie creata da patch edgesrf,edgesurface,patch,fill - - Ottiene una rappresentazione stringa della superficie - Vertici della topologia @@ -3285,9 +3151,6 @@ Facce della topologia - - Ottiene una rappresentazione stringa della topologia - Le TSplineFaces adiacenti a questo bordo @@ -3312,9 +3175,6 @@ Un gruppo di proprietà TSEdge: uvnFrame e indice, se TSEdge è attivato sul bordo, se è o non è Manifold - - Ottiene una rappresentazione stringa di TSplineEdge - Tutti i TSplineEdges intorno alla faccia, in ordine antiorario @@ -3338,9 +3198,6 @@ Una serie di proprietà TSplineFace: uvnFrame, indice, valenza e numero di lati - - Ottiene una rappresentazione stringa di TSplineFace - Indica se la T-Spline appena creata presenta una simmetria radiale. @@ -3364,9 +3221,6 @@ Creare una TSplineInitialSymmetry assiale con assi di simmetria specificati. tspline,symmetry - - Ottiene una rappresentazione stringa di TSplineInitialSymmetry - Indica se il riflesso è radiale @@ -3397,9 +3251,6 @@ Riflesso radiale T-Spline tspline,symmetry,reflection,radial - - Ottiene una rappresentazione stringa di TSplineReflection - @@ -3631,7 +3482,7 @@ Visualizzazione uniforme se True, con riquadro in caso contrario. Attiva o disattiva la visualizzazione uniforme T-Spline con lo stile di visualizzazione selezionato - tspline,visulization,mode,smooth,box + tspline,visualization,mode,smooth,box Eseguire una o più estrusioni simmetriche su un gruppo di bordi e spostare i nuovi bordi in base al vettore specificato. @@ -3961,7 +3812,7 @@ tspline,cone,radius,cs - Creare una sfera T-Spline centrata nel punto di input, con il raggio specificato. + Create a T-Spline Sphere centered at the input Point, with given radius. Centro di una sfera Raggio di una sfera Numero di campate radiali @@ -4173,9 +4024,6 @@ Superfici T-Spline da combinare tspline,combine - - Ottiene una rappresentazione stringa di TSplineSurface - Vertici contenuti in questa superficie T-Spline. @@ -4263,9 +4111,6 @@ tspline,face,byindex Faccia T-Spline - - Ottiene una rappresentazione stringa di TSplineTopology - Punto del TopologyItem sullo scafo @@ -4278,9 +4123,6 @@ Normale del TopologyItem - - Ottiene una rappresentazione stringa di TSplineUVNFrame - I TSplineEdges che partono da questo vertice @@ -4311,9 +4153,6 @@ Una serie di proprietà TSVertex: uvnFrame, indice, valenza e valenza funzionale, se TSVertex è StarPoint, TPoint o Manifold - - Ottiene una rappresentazione stringa di TSplineVertex - Ottiene il componente U di un UV @@ -4333,18 +4172,6 @@ Valore UV creato da coordinate surfaceparam,parameters,uv,uvs - - Confronta due elementi UV - L'altro elemento UV - Indica se i due oggetti sono uguali - - - Ottiene un hashcode per il tipo - Hashcode univoco per l'oggetto corrente - - - Ottiene una rappresentazione stringa di UV - Analizzare la stringa JSON in entrata formattata con lo schema autodesk.matem:vector3d-1.0.0. Stringa JSON da analizzare @@ -4479,18 +4306,6 @@ Canonical Z axis vector (0,0,1) z, basis,up - - Confronta due vettori - L'altro vettore - Indica se i due oggetti sono uguali - - - Ottiene un hashcode per il tipo - Hashcode univoco per l'oggetto corrente - - - Ottiene una rappresentazione stringa del vettore - Punto in cui è posizionato il vertice corrente @@ -4503,9 +4318,6 @@ Facce adiacenti al vertice corrente - - Ottiene una rappresentazione stringa del vertice - Classe di risorse fortemente tipizzata per la ricerca di stringhe localizzate e così via. @@ -4730,107 +4542,5 @@ Cerca una stringa localizzata simile a Questo metodo è obsoleto e verrà rimosso in una versione futura di Dynamo. Utilizzare TSplineSurfaceBuildPipes(ICurveEntity[] curves, double defaultRadius, double snappingTolerance, int[] segmentCounts, bool autoHandleStart, bool autoHandleEnd, double[] startRotations, double[] endRotations, double[] startRadii, double[] endRadii, double[] startPositions, double[] endPositions, bool inSmoothMode). . - - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - \ No newline at end of file diff --git a/doc/distrib/xml/it-IT/Tessellation.xml b/doc/distrib/xml/it-IT/Tessellation.xml index eb6b4dfb761..55f5c53b741 100644 --- a/doc/distrib/xml/it-IT/Tessellation.xml +++ b/doc/distrib/xml/it-IT/Tessellation.xml @@ -54,7 +54,7 @@ Funzioni di utilità per la messa in scala UV sulle superfici. - + Calcola i fattori di scala UV normalizzati per una superficie, al fine di gestire spazi dei parametri anisotropi. La messa in scala preserva le proporzioni, mantenendo i valori entro un intervallo numerico ragionevole. Superficie per la quale calcolare i fattori di scala. diff --git a/doc/distrib/xml/ja-JP/DSCoreNodes.xml b/doc/distrib/xml/ja-JP/DSCoreNodes.xml index 45cb6d603b9..1d3a78d35c9 100644 --- a/doc/distrib/xml/ja-JP/DSCoreNodes.xml +++ b/doc/distrib/xml/ja-JP/DSCoreNodes.xml @@ -277,7 +277,7 @@ Dynamo でサポートされる DataType を表すクラス - + Dynamo でサポートされる DataType を表すクラス @@ -286,6 +286,10 @@ タイプ名を上書きする任意の名前(「長整数型」ではなく「数字」) + + ワイヤ形式の $typeid (例: "autodesk.math:point3d-1.0.0")。 + $typeid シリアル化を使用しないプリミティブ タイプの場合は null。 + UI に表示される階層レベル diff --git a/doc/distrib/xml/ja-JP/ProtoGeometry.xml b/doc/distrib/xml/ja-JP/ProtoGeometry.xml index de42add0659..8acd16fadfb 100644 --- a/doc/distrib/xml/ja-JP/ProtoGeometry.xml +++ b/doc/distrib/xml/ja-JP/ProtoGeometry.xml @@ -228,9 +228,6 @@ Arc created from start, end point, and tangent arc,tangent,arcs - - 円弧の文字列表現を取得します - autodesk.geometry:boundingbox3d-1.0.0 スキーマでフォーマットされて取り込まれる JSON 文字列を解析します。 解析する JSON 文字列 @@ -318,18 +315,6 @@ from a Revit BoundingBox without any conversions. bounding,bound,bymaxmin,max,min,bypoints - - 2 つの BoundingBox を比較します - その他の BoundingBox - 2 つのオブジェクトが等しいかどうか - - - このタイプのハッシュ値を取得します - このオブジェクトのユニークなハッシュ値 - - - BoundingBox の文字列表現を取得します - 円の中心 @@ -374,9 +359,6 @@ 点群から作成した円 circle,approximate - - 円の文字列表現を取得します - ループに含まれている前の共有エッジ @@ -413,9 +395,6 @@ オーナー サーフェスのパラメトリック空間内の曲線です。曲線は 2D 形状であるため、この曲線の Z 座標は 0 です。 - - 共有エッジの文字列表現を取得します - 始点 @@ -474,9 +453,6 @@ circular bases in the CoordinateSystem XY Plane. cone,cone by height,cones - - 円錐の文字列表現を取得します - Create a CoordinateSystem from a 4x4 matrix. This method is deprecated; prefer other constructors where possible. 4x4 transformation matrix @@ -672,18 +648,6 @@ Creates a CoordinateSystem at the specified spherical coordinate parameters with respect to the specified coordinate system. - - Compare two CoordinateSystem's - The other CoordinateSystem - 2 つのオブジェクトが等しいかどうか - - - このタイプのハッシュ値を取得します - このオブジェクトのユニークなハッシュ値 - - - 座標系の文字列表現を取得します - Returns length distance. Note: This return the input dimensions of the Cuboid, NOT the @@ -745,9 +709,6 @@ コーナーで作成した直方体 box,cube,byminmax,by corners,by points,cubes - - 直方体の文字列表現を取得します - 曲線の円弧全体の長さを返します distance @@ -1138,9 +1099,6 @@ isocurve,curvebydir,lines 0.5,0.5,0.4 - - 曲線の文字列表現を取得します - 円柱の半径 @@ -1172,9 +1130,6 @@ 点群と半径で作成した円柱 cylinder,tube,by center points - - 円柱の文字列表現を取得します - このコンストラクタを呼び出したスレッドの管理されたスレッド ID を格納します。 マルチスレッド化に関する潜在的な問題をユーザに警告するために使用されます。 @@ -1217,9 +1172,6 @@ このエッジに関連付けられている共有エッジ - - エッジの文字列表現を取得します - 楕円の中心 @@ -1267,9 +1219,6 @@ 平面と半径から作成した楕円 ellipse,aligned ellipse,ellipsebylengths - - 楕円の文字列表現を取得します - 楕円の中心 @@ -1316,9 +1265,6 @@ 平面の半径と角度で作成した楕円弧 ellipsearc,arcs - - 楕円弧の文字列表現を取得します - この面の周囲のすべてのエッジ(反時計回り順) faces @@ -1339,9 +1285,6 @@ 面の作成基準とするサーフェス 面のサーフェス表示 - - 面の文字列表現を取得します - ホストを使用した IGeometryEntity タイプと Geometry コンストラクタの間のマップ。 @@ -1462,10 +1405,6 @@ Scale in two dimensions by base and 2 pick points The two pick points are projected onto the base plane in order to determine the 2d scale factors resize,size,from,to,scale2d,2d - - Copy the given Geometry - A new copy - このジオメトリから別のジオメトリへの距離を取得します。 他の Geometry @@ -1588,9 +1527,6 @@ Projection direction. Flat array of resulting Geometry. - - Get a string representation of the Geometry - らせんがその長さだけ回転する角度(度単位) @@ -1621,9 +1557,6 @@ 軸で作成したらせん helix,screw,corkscrew,thread - - らせんの文字列表現を取得します - 三角形の場合は 3、四半円形の場合は 4 になります @@ -1656,18 +1589,6 @@ インデックス c IndexGroup - - 2 つの IndexGroup を比較します - その他の IndexGroup - 2 つのオブジェクトが等しいかどうか - - - このタイプのハッシュ値を取得します - このオブジェクトのユニークなハッシュ値 - - - IndexGroup の文字列表現を取得します - 曲線の方向を返します。 lines @@ -1702,9 +1623,6 @@ 開始方向と長さによる線分 linebyvector,lines - - 線分の文字列表現を取得します - ループに含まれている面 @@ -1716,9 +1634,6 @@ ループが境界と内側のいずれであるか - - ループの文字列表現を取得します - このメッシュの未処理の頂点を数値のリストとして返します。各セットの 連続する 3 つの数値は点を表します。 @@ -1910,10 +1825,6 @@ 入力距離だけメッシュを移動します - - Convert the mesh into a JSON object formatted with dynamo.geometry:mesh-1.0.0 schema. - 結果として得られる JSON 文字列 - 点群の集合と、点群の集合を参照する IndexGroup の集合からメッシュを作成します。 頂点の位置を決定する点群のリスト @@ -2135,9 +2046,6 @@ spline by tangent,tangents,lines 0.5,0.5,0.45 - - NURBS 曲線の文字列表現を取得します - U 方向のサーフェスの次数を返します。 surface smoothness,continuity @@ -2232,9 +2140,6 @@ lines 0.4 - - NURBS サーフェスの文字列表現を取得します - メッシュ内のパネルに適用される境界条件のタイプ。 @@ -2402,9 +2307,6 @@ panel, surface, custom, orthogonal, lattice - - PanelSurface の文字列表現を取得 - 平面の基準点を返します。 position,planecenter @@ -2489,9 +2391,6 @@ ワールド座標系の YZ に平面を作成します。 ワールド座標系の YZ 平面での平面 - - 平面の文字列表現を取得します - 点の X 座標を取得します @@ -2570,18 +2469,6 @@ 一意の点 unique,duplicates,remove duplicates,distinct,near - - 2 つの点を比較します - 他の点 - 2 つのオブジェクトが等しいかどうか - - - このタイプのハッシュ値を取得します - このオブジェクトのユニークなハッシュ値 - - - 点の文字列表現を取得します - 最初のコンポーネントの始点と各コンポーネント曲線の終点を返します。閉じたポリカーブの場合、始点と終点は同じになるため、終点は除外されます。 @@ -2714,9 +2601,6 @@ 厚み方向に垂直な法線。法線が指定されていない(null である)場合、既定で曲線の法線が使用されます。 offset,thicken - - ポリカーブの文字列表現を取得します - ポリゴンのコーナーを返します @@ -2746,9 +2630,6 @@ 円に内接するポリゴン カーブを作成します。 - - ポリゴンの文字列表現を取得します - 基本のサーフェスを模倣する新しいサーフェスを返します。 subsurfaces,getsurfaces,explode @@ -2821,9 +2702,6 @@ スイープ プロファイル sweep,rail,guide,sweep1 - - ポリサーフェスの文字列表現を取得します - 長方形の幅 rectX,rectx @@ -2874,9 +2752,6 @@ 幅と長さから作成した長方形 rectbylengths - - 長方形の文字列表現を取得します - サーフェスの面積を返します。すべての面のすべての面積の合計になります。 @@ -2989,9 +2864,6 @@ Brep,brep,boolean,addition - - ソリッドの文字列表現を取得します - 球の中心点を返します。 @@ -3010,9 +2882,6 @@ 入力された点群にできる限り近づくように球をフィットさせます。 Brep,brep - - 球体の文字列表現を取得します - サーフェスの合計面積を返します。 @@ -3276,9 +3145,6 @@ パッチで作成したサーフェス edgesrf,edgesurface,patch,fill - - サーフェスの文字列表現を取得します - トポロジの頂点 @@ -3291,9 +3157,6 @@ トポロジの面 - - トポロジの文字列表現を取得します - このエッジに隣接する T スプライン エッジ @@ -3318,9 +3181,6 @@ T スプライン エッジの一連のプロパティ: uvn フレームおよびインデックス、T スプライン エッジが境界線上にあるかどうか、T スプライン エッジが多様体であるかどうか - - T スプライン エッジの文字列表現を取得します - この面の周囲のすべての T スプライン エッジ(反時計回り順) @@ -3344,9 +3204,6 @@ T スプライン面の一連のプロパティ: uvn フレーム、インデックス、価数、側面の数 - - T スプライン面の文字列表現を取得します - 新しく作成する T スプラインを放射相称にするかどうか。 @@ -3370,9 +3227,6 @@ 入力された対称軸を持つ TSplineInitialSymmetry を作成します。 tspline,symmetry - - TSplineInitialSymmetry の文字列表現を取得します - 反射が放射状であるかどうか @@ -3403,9 +3257,6 @@ T スプラインの放射状の反射 tspline,symmetry,reflection,radial - - TSplineReflection の文字列表現を取得します - @@ -3637,7 +3488,7 @@ true を指定するとスムーズな表示スタイルになり、false を指定するとボックスの表示スタイルになります。 スムーズな表示スタイルのオン/オフを切り替える 選択した表示スタイルの T スプライン - tspline,visulization,mode,smooth,box + tspline,visualization,mode,smooth,box エッジのセット上で単一または複数の対称的な押し出し処理を実行し、入力されたベクトルによって新しいエッジを移動します。 @@ -3967,7 +3818,7 @@ tspline,cone,radius,cs - 入力された中心点から、指定された半径の範囲に広がる T スプライン球体を作成します。 + Create a T-Spline Sphere centered at the input Point, with given radius. 球体の中心点 球体の半径 放射状のスパンの数 @@ -4179,9 +4030,6 @@ 結合する T スプライン サーフェス tspline,combine - - T スプライン サーフェスの文字列表現を取得します - この T スプライン サーフェスに含まれている頂点。 @@ -4269,9 +4117,6 @@ tspline,face,byindex T スプライン面 - - T スプライン トポロジの文字列表現を取得します - ハル上のトポロジ アイテムの点 @@ -4284,9 +4129,6 @@ トポロジ アイテムの法線 - - TSplineUVNFrame の文字列表現を取得します - この頂点から放射される T スプライン エッジ @@ -4317,9 +4159,6 @@ T スプライン頂点の一連のプロパティ: UVN フレーム、インデックス、価数および関数の価数、T スプライン頂点がスターポイントであるかどうか、T スプライン頂点が T ポイントであるかどうか、T スプライン頂点が多様体であるかどうか。 - - T スプライン頂点の文字列表現を取得します - UV の U コンポーネントを取得 @@ -4339,18 +4178,6 @@ 座標で作成した UV surfaceparam,parameters,uv,uvs - - 2 つの UV を比較します - 他の UV - 2 つのオブジェクトが等しいかどうか - - - このタイプのハッシュ値を取得します - このオブジェクトのユニークなハッシュ値 - - - UV の文字列表現を取得します - autodesk.math:vector3d-1.0.0 スキーマでフォーマットされて取り込まれる JSON 文字列を解析します。 解析する JSON 文字列 @@ -4485,18 +4312,6 @@ Canonical Z axis vector (0,0,1) z, basis,up - - 2 つのベクトルを比較 - 他のベクトル - 2 つのオブジェクトが等しいかどうか - - - このタイプのハッシュ値を取得します - このオブジェクトのユニークなハッシュ値 - - - ベクトルの文字列表現を取得します - この頂点がある点 @@ -4509,9 +4324,6 @@ この頂点に接する面 - - 頂点の文字列表現を取得します - ローカライズされた文字列などを検索するための、厳密に型指定されたリソース クラス。 @@ -4737,107 +4549,5 @@ 「このメソッドは廃止され、Dynamo の今後のバージョンで削除される予定です。代わりに TSplineSurfaceBuildPipes(ICurveEntity[] curves, double defaultRadius, double snappingTolerance, int[] segmentCounts, bool autoHandleStart, bool autoHandleEnd, double[] startRotations, double[] endRotations, double[] startRadii, double[] endRadii, double[] startPositions, double[] endPositions, bool inSmoothMode)を使用してください」に類似するローカライズされた文字列を検索します 。 - - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - \ No newline at end of file diff --git a/doc/distrib/xml/ja-JP/Tessellation.xml b/doc/distrib/xml/ja-JP/Tessellation.xml index 0d4d8f98325..3f473828d7b 100644 --- a/doc/distrib/xml/ja-JP/Tessellation.xml +++ b/doc/distrib/xml/ja-JP/Tessellation.xml @@ -55,7 +55,7 @@ サーフェス上の UV スケーリングのユーティリティ関数。 - + 異方性パラメータ空間を処理するために、サーフェスの正規化された UV スケール係数を計算します。 スケーリングでは、縦横比を維持しながら、値を妥当な数値範囲内に保ちます。 スケール係数を計算するサーフェス。 diff --git a/doc/distrib/xml/ko-KR/DSCoreNodes.xml b/doc/distrib/xml/ko-KR/DSCoreNodes.xml index d0e4f351b6e..42e1a4400f3 100644 --- a/doc/distrib/xml/ko-KR/DSCoreNodes.xml +++ b/doc/distrib/xml/ko-KR/DSCoreNodes.xml @@ -277,7 +277,7 @@ Dynamo에서 지원하는 DataType을 나타내는 클래스 - + Dynamo에서 지원하는 DataType을 나타내는 클래스 @@ -286,6 +286,10 @@ Type 이름을 재지정할 선택적 Name(`long` 대신 Number`) + + 와이어 형식 $typeid(예: "autodesk.math:point3d-1.0.0"). + $typeid 직렬화를 사용하지 않는' 기본체 유형의 경우 null. + UI에 표시할 계층 레벨 diff --git a/doc/distrib/xml/ko-KR/ProtoGeometry.xml b/doc/distrib/xml/ko-KR/ProtoGeometry.xml index 503e7eca4f9..d58dced20b6 100644 --- a/doc/distrib/xml/ko-KR/ProtoGeometry.xml +++ b/doc/distrib/xml/ko-KR/ProtoGeometry.xml @@ -228,9 +228,6 @@ Arc created from start, end point, and tangent arc,tangent,arcs - - Arc의 문자열 표현을 가져옵니다 - autodesk.geometry:boundingbox3d-1.0.0 스키마로 형식이 지정된 수신 JSON 문자열을 구문 분석합니다. 구문 분석할 JSON 문자열 @@ -318,18 +315,6 @@ from a Revit BoundingBox without any conversions. bounding,bound,bymaxmin,max,min,bypoints - - 두 BoundingBox를 비교합니다 - 다른 BoundingBox - 두 객체가 같은지 여부 - - - 이 유형에 대한 hashcode를 가져옵니다 - 이 객체 전용 hashcode - - - BoundingBox의 문자열 표현을 가져옵니다 - 원의 중심 @@ -374,9 +359,6 @@ 점으로 작성된 원 circle,approximate - - Circle의 문자열 표현을 가져옵니다 - 포함 루프의 이전 CoEdge @@ -413,9 +395,6 @@ 곡선이 소유자 표면의 파라메트릭 공간에 있습니다. 곡선이 2D 양식이므로 이 곡선의 Z 좌표는 0입니다. - - CoEdge의 문자열 표현을 가져옵니다. - 시작점 @@ -474,9 +453,6 @@ circular bases in the CoordinateSystem XY Plane. cone,cone by height,cones - - Cone의 문자열 표현을 가져옵니다 - Create a CoordinateSystem from a 4x4 matrix. This method is deprecated; prefer other constructors where possible. 4x4 transformation matrix @@ -672,18 +648,6 @@ Creates a CoordinateSystem at the specified spherical coordinate parameters with respect to the specified coordinate system. - - Compare two CoordinateSystem's - The other CoordinateSystem - 두 객체가 같은지 여부 - - - 이 유형에 대한 hashcode를 가져옵니다 - 이 객체 전용 hashcode - - - CoordinateSystem의 문자열 표현을 가져옵니다 - Returns length distance. Note: This return the input dimensions of the Cuboid, NOT the @@ -745,9 +709,6 @@ 모서리로 작성된 직육면체 box,cube,byminmax,by corners,by points,cubes - - Cuboid의 문자열 표현을 가져옵니다 - 곡선의 총 호 길이를 반환 distance @@ -1138,9 +1099,6 @@ isocurve,curvebydir,lines 0.5,0.5,0.4 - - Curve의 문자열 표현을 가져옵니다 - 원통의 반지름 @@ -1172,9 +1130,6 @@ 점과 반지름으로 작성된 원통 cylinder,tube,by center points - - Cylinder의 문자열 표현을 가져옵니다 - 이 구성자를 호출한 스레드의 관리되는 스레드 ID를 저장합니다. 발생할 수 있는 여러 스레드 문제를 사용자에게 알리는 데 사용됩니다. @@ -1217,9 +1172,6 @@ 해당 모서리와 연관된 CoEdge - - Edge의 문자열 표현을 가져옵니다 - 타원의 중심 @@ -1267,9 +1219,6 @@ 평면 및 반지름에서 작성된 타원 ellipse,aligned ellipse,ellipsebylengths - - Ellipse의 문자열 표현을 가져옵니다 - 타원의 중심 @@ -1316,9 +1265,6 @@ 평면 반지름 및 각도로 작성된 타원 호 ellipsearc,arcs - - EllipseArc의 문자열 표현을 가져옵니다 - 이 면 주위의 모든 모서리(시계 반대 방향) faces @@ -1339,9 +1285,6 @@ 면을 구성하는 기본 표면 면의 표면 표현 - - Face의 문자열 표현을 가져옵니다 - IGeometryEntity 유형과 호스트를 사용하는 Geometry 구성자 사이의 맵. @@ -1462,10 +1405,6 @@ Scale in two dimensions by base and 2 pick points The two pick points are projected onto the base plane in order to determine the 2d scale factors resize,size,from,to,scale2d,2d - - Copy the given Geometry - A new copy - 이 형상에서 다른 형상까지의 거리 가져오기 다른 형상 @@ -1588,9 +1527,6 @@ Projection direction. Flat array of resulting Geometry. - - Get a string representation of the Geometry - 나선이 길이 방향으로 회전하는 각도(도) @@ -1621,9 +1557,6 @@ 축으로 작성된 나선 helix,screw,corkscrew,thread - - Helix의 문자열 표현을 가져옵니다 - 삼각형을 나타내는지 사각형을 나타내는지 여부에 따라 3 또는 4 @@ -1656,18 +1589,6 @@ 색인 c IndexGroup - - 두 IndexGroup을 비교합니다 - 다른 IndexGroup - 두 객체가 같은지 여부 - - - 이 유형에 대한 hashcode를 가져옵니다 - 이 객체 전용 hashcode - - - IndexGroup의 문자열 표현을 가져옵니다 - 곡선 방향 lines @@ -1702,9 +1623,6 @@ 시작 방향 및 길이에서의 선 linebyvector,lines - - Line의 문자열 표현을 가져옵니다 - 루프의 포함 면 @@ -1716,9 +1634,6 @@ 루프가 경계 또는 내부에 있는지 여부 - - 루프의 문자열 표현을 가져옵니다. - 이 메쉬의 원시 정점을 숫자 리스트로 반환합니다. 연속된 3개의 숫자로 이루어진 각 세트는 하나의 점을 나타냅니다. @@ -1910,10 +1825,6 @@ 입력 거리만큼 메쉬를 변환합니다. - - Convert the mesh into a JSON object formatted with dynamo.geometry:mesh-1.0.0 schema. - 결과 JSON 문자열 - 점 모음 및 점 모음을 참조하는 IndexGroup 모음에서 메쉬를 만듭니다 정점 위치를 결정하는 점 리스트 @@ -2135,9 +2046,6 @@ spline by tangent,tangents,lines 0.5,0.5,0.45 - - NurbsCurve의 문자열 표현을 가져옵니다 - U 방향의 표면 각도를 반환합니다. surface smoothness,continuity @@ -2232,9 +2140,6 @@ lines 0.4 - - NurbsSurface의 문자열 표현을 가져옵니다 - 메쉬의 패널에 적용되는 경계 조건의 유형입니다. @@ -2402,9 +2307,6 @@ panel, surface, custom, orthogonal, lattice - - PanelSurface의 문자열 표현을 가져옵니다 - 평면의 원점을 반환합니다. position,planecenter @@ -2489,9 +2391,6 @@ 표준 YZ 평면에 평면을 만듭니다 표준 YZ 평면에 있는 평면 - - Plane의 문자열 표현을 가져옵니다 - 점의 X 구성요소 가져오기 @@ -2570,18 +2469,6 @@ 고유한 점 unique,duplicates,remove duplicates,distinct,near - - 두 Point를 비교합니다 - 다른 Point - 두 객체가 같은지 여부 - - - 이 유형에 대한 hashcode를 가져옵니다 - 이 객체 전용 hashcode - - - Point의 문자열 표현을 가져옵니다 - 첫 번째 구성요소의 시작점과 모든 구성요소 곡선의 끝점을 반환합니다. 닫힌 polycurve의 경우 시작점과 끝점이 동일하므로 끝점이 제외됩니다. @@ -2714,9 +2601,6 @@ 두껍게 하기 방향에 수직인 법선입니다. 법선이 제공되지 않은 경우(Null인 경우) 곡선 법선이 기본적으로 사용됩니다. offset,thicken - - PolyCurve의 문자열 표현을 가져옵니다 - 다각형의 모서리를 반환합니다 @@ -2746,9 +2630,6 @@ 원 안에 내접 다각형 곡선을 구성합니다. - - Polygon의 문자열 표현을 가져옵니다 - 기본 표면을 나타내는 새 표면을 반환합니다. subsurfaces,getsurfaces,explode @@ -2821,9 +2702,6 @@ 스윕 프로파일 sweep,rail,guide,sweep1 - - PolySurface의 문자열 표현을 가져옵니다 - 직사각형의 폭 rectX,rectx @@ -2874,9 +2752,6 @@ 폭 및 길이에서 작성된 직사각형 rectbylengths - - Rectangle의 문자열 표현을 가져옵니다 - 표면적(모든 면의 면적의 합)을 반환합니다 @@ -2989,9 +2864,6 @@ Brep,brep,boolean,addition - - Solid의 문자열 표현을 가져옵니다 - 구의 중심점을 반환합니다. @@ -3010,9 +2882,6 @@ 구를 입력 점에 최대한 가깝게 맞춥니다. Brep,brep - - Sphere의 문자열 표현을 가져옵니다 - 총 표면적을 반환합니다. @@ -3276,9 +3145,6 @@ 패치로 작성된 표면 edgesrf,edgesurface,patch,fill - - Surface의 문자열 표현을 가져옵니다 - 토폴로지의 정점 @@ -3291,9 +3157,6 @@ 위상 면 - - Topology의 문자열 표현을 가져옵니다 - 이 모서리에 인접한 TSplineFaces @@ -3318,9 +3181,6 @@ 여러 TSEdge 특성: uvnFrame 및 색인, TSEdge가 경계에 있는지 여부, TSEdge의 매니폴드 여부 - - TSplineEdge의 문자열 표현을 가져옵니다. - 반시계 방향으로 이 면 주위의 모든 TSplineEdges @@ -3344,9 +3204,6 @@ 여러 TSplineFace 특성: uvnFrame, 색인, Valence 및 측면의 수 - - TSplineFace의 문자열 표현을 가져옵니다. - 새로 작성된 T-Spline에 방사형 대칭이 있는지 여부입니다. @@ -3370,9 +3227,6 @@ 지정된 대칭 축을 갖는 축 TSplineInitialSymmetry를 만듭니다. tspline,symmetry - - TSplineInitialSymmetry의 문자열 표현을 가져옵니다. - 반사가 방사형인지 여부 @@ -3403,9 +3257,6 @@ T-Spline 방사형 반사 tspline,symmetry,reflection,radial - - TSplineReflection의 문자열 표현을 가져옵니다. - @@ -3637,7 +3488,7 @@ True가 전달되면 부드러운 시각화가 적용되고 그렇지 않으면 상자 모드가 적용됩니다. 부드러운 시각화 활성화 또는 비활성화 선택한 시각화 스타일이 적용된 T-Spline - tspline,visulization,mode,smooth,box + tspline,visualization,mode,smooth,box 모서리 세트에서 단일 또는 다중 대칭 돌출을 수행하고 지정된 벡터를 따라 새 모서리를 이동합니다. @@ -3966,7 +3817,7 @@ tspline,cone,radius,cs - 입력점을 중심으로 지정된 반지름을 사용하여 T-Spline 구를 만듭니다. + Create a T-Spline Sphere centered at the input Point, with given radius. 구의 중심점 구의 반지름 방사형 스팬 수 @@ -4178,9 +4029,6 @@ 결합할 T-Spline 표면 tspline,combine - - TSplineSurface의 문자열 표현을 가져옵니다. - 이 T-Spline 표면에 포함된 정점입니다. @@ -4268,9 +4116,6 @@ tspline,face,byindex T-Spline 면 - - TSplineTopology의 문자열 표현을 가져옵니다. - 헐에 있는 TopologyItem의 점 @@ -4283,9 +4128,6 @@ TopologyItem의 법선 - - TSplineUVNFrame의 문자열 표현을 가져옵니다. - 이 정점에서 나오는 TSplineEdges @@ -4316,9 +4158,6 @@ 여러 TSVertex 특성: uvnFrame, 색인, Valence 및 기능적 Valence, TSVertex가 별 점, T 점 또는 매니폴드인지 여부 - - TSplineVertex의 문자열 표현을 가져옵니다. - UV의 U 구성요소 가져오기 @@ -4338,18 +4177,6 @@ 좌표로 작성된 UV surfaceparam,parameters,uv,uvs - - 두 UV를 비교합니다 - 다른 UV - 두 객체가 같은지 여부 - - - 이 유형에 대한 hashcode를 가져옵니다 - 이 객체 전용 hashcode - - - UV의 문자열 표현을 가져옵니다 - autodesk.math:vector3d-1.0.0 스키마로 형식이 지정된 수신 JSON 문자열을 구문 분석합니다. 구문 분석할 JSON 문자열 @@ -4484,18 +4311,6 @@ Canonical Z axis vector (0,0,1) z, basis,up - - 두 Vector를 비교합니다 - 다른 Vector - 두 객체가 같은지 여부 - - - 이 유형에 대한 hashcode를 가져옵니다 - 이 객체 전용 hashcode - - - Vector의 문자열 표현을 가져옵니다 - 이 정점이 있는 점 @@ -4508,9 +4323,6 @@ 이 정점에 인접한 면 - - Vertex의 문자열 표현을 가져옵니다 - 현지화된 문자열 등을 조회하기 위한 강력한 유형의 리소스 클래스 @@ -4736,107 +4548,5 @@ 유사한 현지화된 문자열을 조회합니다. 이 메서드는 더 이상 사용되지 않으며 이후 버전의 Dynamo에서 제거될 예정입니다. 대신 TSplineSurfaceBuildPipes(ICurveEntity[] curves, double defaultRadius, double snappingTolerance, int[] segmentCounts, bool autoHandleStart, bool autoHandleEnd, double[] startRotations, double[] endRotations, double[] startRadii, double[] endRadii, double[] startPositions, double[] endPositions, bool inSmoothMode)를 사용하십시오. . - - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - \ No newline at end of file diff --git a/doc/distrib/xml/ko-KR/Tessellation.xml b/doc/distrib/xml/ko-KR/Tessellation.xml index 43994e6b682..d67dd60142e 100644 --- a/doc/distrib/xml/ko-KR/Tessellation.xml +++ b/doc/distrib/xml/ko-KR/Tessellation.xml @@ -55,7 +55,7 @@ 표면의 UV 배율을 위한 유틸리티 함수입니다. - + 비등방성 매개변수 공간을 처리하기 위해 표면에 대한 정규화된 UV 축척 비율을 계산합니다. 배율 조정은 적절한 숫자 범위 내의 값을 유지하면서 종횡비를 유지합니다. 축척 비율을 계산할 지표면입니다. diff --git a/doc/distrib/xml/pl-PL/DSCoreNodes.xml b/doc/distrib/xml/pl-PL/DSCoreNodes.xml index 442acc96af8..be728629142 100644 --- a/doc/distrib/xml/pl-PL/DSCoreNodes.xml +++ b/doc/distrib/xml/pl-PL/DSCoreNodes.xml @@ -277,7 +277,7 @@ Klasa reprezentująca typ danych (DataType) obsługiwany przez dodatek Dynamo - + Klasa reprezentująca typ danych (DataType) obsługiwany przez dodatek Dynamo @@ -286,6 +286,10 @@ Opcjonalna nazwa do zastąpienia nazwy typu (`Number` zamiast `long`) + + Format przewodu $typeid (np. „autodesk.math:point3d-1.0.0”). + Ma wartość null dla typów podstawowych, w których nie występuje serializacja $typeid. + Poziom hierarchiczny, który ma być wyświetlany w interfejsie użytkownika diff --git a/doc/distrib/xml/pl-PL/ProtoGeometry.xml b/doc/distrib/xml/pl-PL/ProtoGeometry.xml index 071b1aafa98..e13b7707b85 100644 --- a/doc/distrib/xml/pl-PL/ProtoGeometry.xml +++ b/doc/distrib/xml/pl-PL/ProtoGeometry.xml @@ -227,9 +227,6 @@ Arc created from start, end point, and tangent arc,tangent,arcs - - Pobierz reprezentację ciągu znaków łuku - Przeanalizuj przychodzący ciąg JSON sformatowany w schemacie autodesk.geometry:boundingbox3d-1.0.0. Ciąg JSON do przeanalizowania @@ -317,18 +314,6 @@ from a Revit BoundingBox without any conversions. bounding,bound,bymaxmin,max,min,bypoints - - Porównaj dwa BoundingBox - Inny BoundingBox - Czy oba obiekty są równe - - - Pobierz wartość skrótu dla tego typu - Unikalna wartość skrótu dla tego obiektu - - - Uzyskaj reprezentację ciągu znaków ramki ograniczającej - Środek okręgu @@ -373,9 +358,6 @@ Okrąg utworzony z punktów circle,approximate - - Pobierz reprezentację ciągu znaków okręgu - Poprzednia krawędź wspólna w zawierającej pętli @@ -412,9 +394,6 @@ Krzywa w przestrzeni parametrycznej powierzchni właściciela. Krzywa jest dwuwymiarowa, dlatego jej współrzędna Z wynosi 0. - - Pobierz reprezentację ciągu znaków krawędzi wspólnej - Punkt początkowy @@ -473,9 +452,6 @@ circular bases in the CoordinateSystem XY Plane. cone,cone by height,cones - - Pobierz reprezentację ciągu znaków stożka - Create a CoordinateSystem from a 4x4 matrix. This method is deprecated; prefer other constructors where possible. 4x4 transformation matrix @@ -671,18 +647,6 @@ Creates a CoordinateSystem at the specified spherical coordinate parameters with respect to the specified coordinate system. - - Compare two CoordinateSystem's - The other CoordinateSystem - Czy oba obiekty są równe - - - Pobierz wartość skrótu dla tego typu - Unikalna wartość skrótu dla tego obiektu - - - Pobierz reprezentację ciągu znaków układu współrzędnych - Returns length distance. Note: This return the input dimensions of the Cuboid, NOT the @@ -744,9 +708,6 @@ Prostopadłościan utworzony na podstawie narożników box,cube,byminmax,by corners,by points,cubes - - Pobierz reprezentację ciągu znaków prostopadłościanu - Zwraca całkowitą długość łuku krzywej distance @@ -1137,9 +1098,6 @@ isocurve,curvebydir,lines 0.5,0.5,0.4 - - Pobierz reprezentację ciągu znaków krzywej - Promień walca @@ -1171,9 +1129,6 @@ Walec utworzony na podstawie punktów i promienia cylinder,tube,by center points - - Pobierz reprezentację ciągu znaków walca - przechowuje id. wątku zarządzanego, który wywołał ten konstruktor. Służy do ostrzegania użytkowników o potencjalnych problemach wielowątkowych. @@ -1216,9 +1171,6 @@ Krawędzi wspólne skojarzone z tą krawędzią - - Pobierz reprezentację ciągu znaków krawędzi - Środek elipsy @@ -1266,9 +1218,6 @@ Elipsa utworzona z płaszczyzny i promieni ellipse,aligned ellipse,ellipsebylengths - - Pobierz reprezentację ciągu znaków elipsy - Środek elipsy @@ -1315,9 +1264,6 @@ Łuk eliptyczny utworzony na podstawie promieni i kątów płaszczyzny ellipsearc,arcs - - Pobierz reprezentację ciągu znaków łuku elipsy - Wszystkie krawędzie wokół tej powierzchni w kierunku przeciwnym do ruchu wskazówek zegara faces @@ -1338,9 +1284,6 @@ Oryginalna powierzchnia tworząca tę powierzchnię Reprezentacja płaszczyzny w postaci powierzchni - - Pobierz reprezentację ciągu znaków boku - Mapa pomiędzy typami IGeometryEntity a konstruktorami Geometrii wykorzystującymi hosta. @@ -1461,10 +1404,6 @@ Scale in two dimensions by base and 2 pick points The two pick points are projected onto the base plane in order to determine the 2d scale factors resize,size,from,to,scale2d,2d - - Copy the given Geometry - A new copy - Wyznacz odległość od tej geometrii do innej Druga geometria @@ -1588,9 +1527,6 @@ Projection direction. Flat array of resulting Geometry. - - Get a string representation of the Geometry - Kąt w stopniach, przez który spirala obraca się na swoją długość @@ -1621,9 +1557,6 @@ Helisa utworzona na podstawie osi helix,screw,corkscrew,thread - - Pobierz reprezentację ciągu znaków helisy - 3 lub 4, w zależności od tego, czy jest to trójkąt czy prostokąt @@ -1656,18 +1589,6 @@ Indeks c IndexGroup - - Porównaj dwie IndexGroup - Inne IndexGroup - Czy oba obiekty są równe - - - Pobierz wartość skrótu dla tego typu - Unikalna wartość skrótu dla tego obiektu - - - Pobierz reprezentację ciągu znaków IndexGroup - Kierunek krzywej lines @@ -1702,9 +1623,6 @@ Linia utworzona na podstawie kierunku początkowego i długości linebyvector,lines - - Pobierz reprezentację ciągu znaków linii - Powierzchnia zawierająca pętli @@ -1716,9 +1634,6 @@ Czy pętla jest krawędziowa czy wewnętrzna - - Pobierz reprezentację ciągu znaków pętli - Zwraca wierzchołki nieprzetworzone tej siatki jako listę liczb. Każdy zestaw trzech kolejnych liczb reprezentuje punkt. @@ -1910,10 +1825,6 @@ Przekształca siatkę o odległości wejściowe - - Convert the mesh into a JSON object formatted with dynamo.geometry:mesh-1.0.0 schema. - Wynikowy ciąg JSON - Utwórz siatkę z kolekcji punktów oraz kolekcji IndexGroups odwołujących się do kolekcji punktów Lista punktów określających położenie wierzchołków @@ -2135,9 +2046,6 @@ spline by tangent,tangents,lines 0.5,0.5,0.45 - - Pobierz reprezentację ciągu znaków krzywej NURBS - Zwraca stopień powierzchni w kierunku U. surface smoothness,continuity @@ -2232,9 +2140,6 @@ lines 0.4 - - Pobierz reprezentację ciągu znaków powierzchni NURBS - Typ warunku obwiedni zastosowany do paneli w siatce. @@ -2402,9 +2307,6 @@ panel, surface, custom, orthogonal, lattice - - Pobierz reprezentację obiektu PanelSurface w postaci ciągu znaków - Zwraca początek płaszczyzny. position,planecenter @@ -2489,9 +2391,6 @@ Tworzy płaszczyznę w globalnej płaszczyźnie XY Płaszczyzna na płaszczyźnie YZ świata - - Pobierz reprezentację ciągu znaków płaszczyzny - Pobierz składową X punktu @@ -2570,18 +2469,6 @@ Niepowtarzalne punkty unique,duplicates,remove duplicates,distinct,near - - Porównaj dwa punkty - Drugi punkt - Czy oba obiekty są równe - - - Pobierz wartość skrótu dla tego typu - Unikalna wartość skrótu dla tego obiektu - - - Pobierz reprezentację ciągu znaków punktu - Zwraca punkt początkowy pierwszej krzywej składowej i punkty końcowe poszczególnych krzywych składowych. W przypadku zamkniętej krzywej PolyCurve, ponieważ punkty początkowy i końcowy są takie same, punkt końcowy jest wykluczony. @@ -2714,9 +2601,6 @@ wektor normalny prostopadły do kierunku pogrubienia. Jeśli nie podano wektora normalnego (ma on wartość null), domyślnie jest używany wektor normalny krzywej. offset,thicken - - Pobierz reprezentację ciągu znaków PolyCurve - Zwraca narożniki wieloboku @@ -2746,9 +2630,6 @@ Utwórz wpisany wielokąt łuku w okręgu. - - Pobierz reprezentację ciągu znaków wieloboku - Zwróć nowe powierzchnie reprezentujące oryginalne powierzchnie. subsurfaces,getsurfaces,explode @@ -2821,9 +2702,6 @@ Profil przeciągnięcia sweep,rail,guide,sweep1 - - Pobierz reprezentację ciągu znaków PolySurface - Szerokość prostokąta rectX,rectx @@ -2874,9 +2752,6 @@ Prostokąt utworzony z szerokości i długości rectbylengths - - Pobierz reprezentację ciągu znaków prostokąta - Zwraca pole powierzchni — sumę wszystkich obszarów wszystkich powierzchni @@ -2989,9 +2864,6 @@ Brep,brep,boolean,addition - - Pobierz reprezentację ciągu znaków bryły - Zwróć punkt środkowy sfery. @@ -3010,9 +2882,6 @@ Sfera powinna być możliwie jak najwierniej dopasowana do punktów wejściowych. Brep,brep - - Pobierz reprezentację ciągu znaków sfery - Zwraca całkowity obszar powierzchni. @@ -3276,9 +3145,6 @@ Powierzchnia utworzona przez zamknięcie edgesrf,edgesurface,patch,fill - - Pobierz reprezentację ciągu znaków powierzchni - Wierzchołki topologii @@ -3291,9 +3157,6 @@ Powierzchnie topologii - - Pobierz reprezentację ciągu znaków topologii - W TSplineFaces przylegające do tej krawędzi @@ -3318,9 +3181,6 @@ Wiele właściwości TSEdge: uvnFrame i indeks, czy TSEdge znajduje się na granicy, czy jest rozgałęziona - - Pobierz reprezentację ciągu znaków TSplineEdge - Wszystkie TSplineEdges wokół tej powierzchni w kierunku przeciwnym do ruchu wskazówek zegara @@ -3344,9 +3204,6 @@ Wiele właściwości TSplineFace: uvnFrame, indeks, stopień i liczba boków - - Pobierz reprezentację ciągu znaków TSplineFace - Czy nowo utworzona bryła t-splajn ma symetrię radialną. @@ -3370,9 +3227,6 @@ Utwórz osiową TSplineInitialSymmetry z danymi osiami symetrii. tspline,symmetry - - Pobierz reprezentację ciągu znaków TSplineInitialSymmetry - Czy odbicie jest promieniowe @@ -3403,9 +3257,6 @@ Odbicie promieniowe T-splajn tspline,symmetry,reflection,radial - - Pobierz reprezentację ciągu znaków TSplineReflection - @@ -3637,7 +3488,7 @@ Wizualizacja gładka, jeśli przekazano wartość Prawda; w innym przypadku pole. Włącz lub wyłącz wygładzoną wizualizację T-splajn z wybranym stylem wizualizacji - tspline,visulization,mode,smooth,box + tspline,visualization,mode,smooth,box Wykonaj jedno lub kilka symetrycznych wytłoczeń na zestawie krawędzi i przesuń nowe krawędzie o dany wektor. @@ -3967,7 +3818,7 @@ tspline,cone,radius,cs - Utwórz kulę T-splajn ze środkiem w punkcie wejściowym, o podanym promieniu. + Create a T-Spline Sphere centered at the input Point, with given radius. Środek sfery Promień kuli Liczba rozpiętości promieniowych @@ -4179,9 +4030,6 @@ Powierzchnie T-splajn do połączenie tspline,combine - - Pobierz reprezentację ciągu znaków TSplineSurface - Wierzchołki zawarte w tej powierzchni bryły T-splajn. @@ -4269,9 +4117,6 @@ tspline,face,byindex Powierzchnia bryły T-splajn - - Pobierz reprezentację ciągu znaków TSplineTopology - Punkt TopologyItem na powłoce @@ -4284,9 +4129,6 @@ Normalne — TopologyItem - - Pobierz reprezentację ciągu znaków TSplineUVNFrame - TSplineEdges wychodzące z tego wierzchołka @@ -4317,9 +4159,6 @@ Wiele właściwości TSVertex: uvnFrame, indeks, stopień i functionalValence, czy TSVertex jest punktem gwiazdy, punktem T i czy jest rozgałęziony - - Pobierz reprezentację ciągu znaków TSplineVertex - Pobierz składową U z UV @@ -4339,18 +4178,6 @@ UV utworzone na podstawie współrzędnych surfaceparam,parameters,uv,uvs - - Porównaj dwa UV - Inne UV - Czy oba obiekty są równe - - - Pobierz wartość skrótu dla tego typu - Unikalna wartość skrótu dla tego obiektu - - - Pobierz reprezentację ciągu znaków UV - Przeanalizuj przychodzący ciąg JSON sformatowany w schemacie autodesk.math:vector3d-1.0.0. Ciąg JSON do przeanalizowania @@ -4485,18 +4312,6 @@ Canonical Z axis vector (0,0,1) z, basis,up - - Porównaj dwa wektory - Drugi wektor - Czy oba obiekty są równe - - - Pobierz wartość skrótu dla tego typu - Unikalna wartość skrótu dla tego obiektu - - - Pobierz reprezentację ciągu znaków wektora - Punkt, w którym znajduje się ten wierzchołek @@ -4509,9 +4324,6 @@ Powierzchnie przylegające do tego wierzchołka - - Pobierz reprezentację ciągu znaków wierzchołka - Silnie typizowana klasa zasobów do wyszukiwnia zlokalizowanych ciągów itp. @@ -4736,107 +4548,5 @@ Wyszukuje zlokalizowany ciąg podobny do: Ta metoda została wycofana i zostanie usunięta w przyszłej wersji dodatku Dynamo. Zamiast niej użyj TSplineSurfaceBuildPipes(ICurveEntity[] curves, double defaultRadius, double snappingTolerance, int[] segmentCounts, bool autoHandleStart, bool autoHandleEnd, double[] startRotations, double[] endRotations, double[] startRadii, double[] endRadii, double[] startPositions, double[] endPositions, bool inSmoothMode) . - - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - \ No newline at end of file diff --git a/doc/distrib/xml/pl-PL/Tessellation.xml b/doc/distrib/xml/pl-PL/Tessellation.xml index d95b68d4dbb..7f1884337bc 100644 --- a/doc/distrib/xml/pl-PL/Tessellation.xml +++ b/doc/distrib/xml/pl-PL/Tessellation.xml @@ -55,7 +55,7 @@ Funkcje narzędziowe do skalowania UV na powierzchniach. - + Oblicza znormalizowane współczynniki skalowania UV dla powierzchni w celu obsługi anizotropowych przestrzeni parametrów. Skalowanie zachowuje współczynnik proporcji, utrzymując wartości w rozsądnym zakresie liczbowym. Powierzchnia do obliczenia współczynników skalowania. diff --git a/doc/distrib/xml/pt-BR/DSCoreNodes.xml b/doc/distrib/xml/pt-BR/DSCoreNodes.xml index d1ac953979d..71944922d00 100644 --- a/doc/distrib/xml/pt-BR/DSCoreNodes.xml +++ b/doc/distrib/xml/pt-BR/DSCoreNodes.xml @@ -277,7 +277,7 @@ Uma classe representando um DataType suportado pelo Dynamo - + Uma classe representando um DataType suportado pelo Dynamo @@ -286,6 +286,10 @@ Um nome opcional para substituir o nome do tipo (`Number` em vez de `long`) + + Formato de fio $typeid (por exemplo, “autodesk.math:point3d-1.0.0”). + Nulo para tipos de primitivos que não usam serialização $typeid. + O nível hierárquico a ser exibido na interface do usuário diff --git a/doc/distrib/xml/pt-BR/ProtoGeometry.xml b/doc/distrib/xml/pt-BR/ProtoGeometry.xml index d6974f55708..22a5a266531 100644 --- a/doc/distrib/xml/pt-BR/ProtoGeometry.xml +++ b/doc/distrib/xml/pt-BR/ProtoGeometry.xml @@ -227,9 +227,6 @@ Arc created from start, end point, and tangent arc,tangent,arcs - - Obtém uma representação da sequência de caracteres do Arco - Analise a sequência de caracteres JSON de entrada formatada com o esquema autodesk.geometry:boundingbox3d-1.0.0. Sequência de caracteres JSON a ser analisada @@ -317,18 +314,6 @@ from a Revit BoundingBox without any conversions. bounding,bound,bymaxmin,max,min,bypoints - - Comparar duas BoundingBox - A outra BoundingBox - Se os dois objetos forem iguais - - - Obter um hashcode para este tipo - Um único hashcode para este objeto - - - Obtém uma representação da sequência de caracteres da BoundingBox - O centro do círculo @@ -373,9 +358,6 @@ Círculo criado com base nos pontos circle,approximate - - Obtém uma representação da sequência de caracteres do Círculo - O CoEdge anterior no contorno correspondente @@ -412,9 +394,6 @@ Curva em um espaço paramétrico da superfície do proprietário. A curva está na forma 2D, portanto, as coordenadas Z da curva são 0. - - Obtém uma representação da sequência de caracteres do CoEdge - O ponto inicial @@ -473,9 +452,6 @@ circular bases in the CoordinateSystem XY Plane. cone,cone by height,cones - - Obtém uma representação da sequência de caracteres do Cone - Create a CoordinateSystem from a 4x4 matrix. This method is deprecated; prefer other constructors where possible. 4x4 transformation matrix @@ -667,18 +643,6 @@ Creates a CoordinateSystem at the specified spherical coordinate parameters with respect to the specified coordinate system. - - Compare two CoordinateSystem's - The other CoordinateSystem - Se os dois objetos forem iguais - - - Obter um hashcode para este tipo - Um único hashcode para este objeto - - - Obtém uma representação da sequência de caracteres do Sistema de coordenadas - Returns length distance. Note: This return the input dimensions of the Cuboid, NOT the @@ -740,9 +704,6 @@ Cubo criado usando os cantos box,cube,byminmax,by corners,by points,cubes - - Obtém uma representação da sequência de caracteres do Cuboide - Retorna o comprimento total do arco da curva distance @@ -1133,9 +1094,6 @@ isocurve,curvebydir,lines 0.5,0.5,0.4 - - Obtém uma representação da sequência de caracteres da Curva - O raio do cilindro @@ -1167,9 +1125,6 @@ Cilindro criado usando os pontos e o raio cylinder,tube,by center points - - Obtém uma representação da sequência de caracteres do Cilindro - armazena a ID da segmentação gerenciada que chamou esse construtor. Usado para alertar os usuários sobre potenciais problemas de multissegmentação. @@ -1212,9 +1167,6 @@ Os CoEdges associados a esta aresta - - Obtém uma representação da sequência de caracteres da Aresta - O centro da elipse @@ -1262,9 +1214,6 @@ Elipse criada com base no plano e nos raios ellipse,aligned ellipse,ellipsebylengths - - Obtém uma representação da sequência de caracteres da Elipse - O centro da elipse @@ -1311,9 +1260,6 @@ Arco da elipse criado usando os raios e os ângulos do plano ellipsearc,arcs - - Obtém uma representação da sequência de caracteres do EllipseArc - Todas as arestas em torno desta face na ordem de sentido anti-horário faces @@ -1334,9 +1280,6 @@ A superfície subjacente que compõem a face Representação da superfície da face - - Obtém uma representação da sequência de caracteres da Face - Um mapa entre os tipos IGeometryEntity e os construtores de geometria usando hospedeiros. @@ -1456,10 +1399,6 @@ Scale in two dimensions by base and 2 pick points The two pick points are projected onto the base plane in order to determine the 2d scale factors resize,size,from,to,scale2d,2d - - Copy the given Geometry - A new copy - Obter a distância desde esta geometria para outra A outra geometria @@ -1582,9 +1521,6 @@ Projection direction. Flat array of resulting Geometry. - - Get a string representation of the Geometry - O ângulo em graus através do qual a hélice girar sobre seu comprimento @@ -1615,9 +1551,6 @@ Hélice criada usando o eixo helix,screw,corkscrew,thread - - Obtém uma representação da sequência de caracteres da Hélice - Qualquer 3 ou 4, dependendo se ele representa um triângulo ou um quadrado @@ -1650,18 +1583,6 @@ Índice c IndexGroup - - Comparar dois grupos de indexação - O outro Grupo de indexação - Se os dois objetos forem iguais - - - Obter um hashcode para este tipo - Um único hashcode para este objeto - - - Obtém uma representação da sequência de caracteres do Grupo de índices - A direção da curva lines @@ -1696,9 +1617,6 @@ Linha com base na direção inicial e no comprimento linebyvector,lines - - Obtém uma representação da sequência de caracteres da Linha - A face que contém o contorno @@ -1710,9 +1628,6 @@ Se o contorno é de borda ou interno - - Obtém uma representação da sequência de caracteres do contorno - Retorna os vértices brutos dessa malha como uma lista de números. Cada conjunto de três números consecutivos representa um ponto. @@ -1904,10 +1819,6 @@ Converte a malha pelas distâncias de entrada - - Convert the mesh into a JSON object formatted with dynamo.geometry:mesh-1.0.0 schema. - A sequência de caracteres JSON resultante - Cria uma malha a partir de uma coleção de pontos e uma coleção de grupos de indexação referenciando a coleção de pontos Lista de pontos que determinam as posições do vértice @@ -2129,9 +2040,6 @@ spline by tangent,tangents,lines 0.5,0.5,0.45 - - Obtém uma representação da sequência de caracteres da NurbsCurve - Retona o grau da superfície na direção U. surface smoothness,continuity @@ -2226,9 +2134,6 @@ lines 0.4 - - Obtém uma representação da sequência de caracteres da NurbsSurface - O tipo de condição de limite aplicado aos painéis em uma malha. @@ -2396,9 +2301,6 @@ panel, surface, custom, orthogonal, lattice - - Obteruma representação da sequência de caracteres de PanelSurface - Retorna a origem do plano. position,planecenter @@ -2483,9 +2385,6 @@ Cria um plano no YZ universal Plano no plano YZ global - - Obtém uma representação da sequência de caracteres do Plano - Obter o componente X de um ponto @@ -2564,18 +2463,6 @@ Pontos únicos unique,duplicates,remove duplicates,distinct,near - - Comparar dois pontos - O outro ponto - Se os dois objetos forem iguais - - - Obter um hashcode para este tipo - Um único hashcode para este objeto - - - Obtém uma representação da sequência de caracteres do Ponto - Retorna o ponto inicial do primeiro componente e os pontos finais de cada curva de componente. Para uma PolyCurve fechada, como os pontos inicial e final são os mesmos, o ponto final é excluído. @@ -2708,9 +2595,6 @@ a perpendicular normal à direção de espessamento. Se a normal não for fornecida (for nula), a normal da curva será utilizada por padrão. offset,thicken - - Obtém uma representação da sequência de caracteres da PolyCurve - Retorna os cantos do polígono @@ -2740,9 +2624,6 @@ Criar uma curva de polígono inscrita dentro de um círculo. - - Obtém uma representação da sequência de caracteres do Polígono - Retorna novas superfícies que representam a superfície subjacente. subsurfaces,getsurfaces,explode @@ -2815,9 +2696,6 @@ Perfil de varredura sweep,rail,guide,sweep1 - - Obtém uma representação da sequência de caracteres da PolySurface - A largura do retângulo rectX,rectx @@ -2868,9 +2746,6 @@ Retângulo criado com base na largura e no comprimento rectbylengths - - Obtém uma representação da sequência de caracteres do Retângulo - Retorna a área da superfície -- a soma de todas as áreas de todas as faces @@ -2983,9 +2858,6 @@ Brep,brep,boolean,addition - - Obtém uma representação da sequência de caracteres do Sólido - Retorna o ponto central da esfera. @@ -3004,9 +2876,6 @@ Ajuste uma esfera é o mais perto possível dos pontos de entrada. Brep,brep - - Obtém uma representação da sequência de caracteres da Esfera - Retorna a área do total da superfície. @@ -3270,9 +3139,6 @@ Superfície criada por fechamento edgesrf,edgesurface,patch,fill - - Obtém uma representação da sequência de caracteres da Superfície - Os vértices da topologia @@ -3285,9 +3151,6 @@ As faces da topologia - - Obtém uma representação da sequência de caracteres da Topologia - O TSplineFaces adjacente a esta aresta @@ -3312,9 +3175,6 @@ Diversas propriedades do TSEdge: uvnFrame e índice, se o TSEdge estiver na borda, se for ou não um objeto múltiplo - - Obtém uma representação de sequência de caracteres do TSplineEdge - Todas os TSplineEdges em torno desta face no sentido anti-horário @@ -3338,9 +3198,6 @@ Diversas propriedades do TSplineFace: uvnFrame e índice, valência e número de lados - - Obtém uma representação de sequência de caracteres do TSplineEdge - Se a T-Spline recém-criada possuir simetria radial. @@ -3364,9 +3221,6 @@ Crie um TSplineInitialSymmetry axial com determinados eixos de simetria. tspline,symmetry - - Obtém uma representação da sequência de caracteres do TSplineInitialSymmetry - Se a reflexão for radial @@ -3397,9 +3251,6 @@ Reflexão radial da T-Spline tspline,symmetry,reflection,radial - - Obtém uma representação da sequência de caracteres do TSplineReflection - @@ -3552,7 +3403,7 @@ O segundo grupo de vértices pode ser desta superfície ou de qualquer outra. No caso de T-Splines diferentes, combinar é executado antes da operação de solda O primeiro grupo de vértices para soldar - O segundo grupo de vértices para soldar + Segundo grupo de vértices para soldar Preservar as dobras subdivididas da topologia de entrada Superfície da T-Spline com vértices soldados tspline,weld,vertex @@ -3631,7 +3482,7 @@ Visualização suave se verdadeiro passou, caso contrário, caixa. Ativar ou desativar a visualização suave T-Spline com o estilo de visualização escolhido - tspline,visulization,mode,smooth,box + tspline,visualization,mode,smooth,box Executar extrusões simétricas únicas ou múltiplas em um conjunto de arestas e mover as novas arestas por um determinado vetor. @@ -3961,7 +3812,7 @@ tspline,cone,radius,cs - Crie uma esfera de T-Spline centralizada no ponto de entrada, com o raio especificado. + Create a T-Spline Sphere centered at the input Point, with given radius. Centro de uma esfera Raio de uma esfera Número de vãos radiais @@ -4173,9 +4024,6 @@ Superfícies da T-Spline para combinar tspline,combine - - Obter uma representação da sequência de caracteres do TSplineSurface - Vértices contidos nesta superfície da T-Spline. @@ -4263,9 +4111,6 @@ tspline,face,byindex Face da T-Spline - - Obtém uma representação da sequência de caracteres do TSplineTopology - Ponto do TopologyItem na cobertura @@ -4278,9 +4123,6 @@ Normal do TopologyItem - - Obtém uma representação da sequência de caracteres do TSplineUVNFrame - Os TSplineEdges provenientes deste vértice @@ -4311,9 +4153,6 @@ Diversas propriedades do TSVertex: uvnFrame e índice, valência de funcional/Valência, se o TSVertex for ou não um StarPoint, TPoint, Manifold - - Obtém uma representação da sequência de caracteres do TSplineVertex - Obter o componente U de um UV @@ -4333,18 +4172,6 @@ UV criado por coordenadas surfaceparam,parameters,uv,uvs - - Comparar dois UV's - O outro UV - Se os dois objetos forem iguais - - - Obter um hashcode para este tipo - Um único hashcode para este objeto - - - Obtém uma representação da sequência de caracteres de UV - Analise a sequência de caracteres JSON de entrada formatada com o esquema autodesk.math:vetor3d-1.0.0. Sequência de caracteres JSON a ser analisada @@ -4479,18 +4306,6 @@ Canonical Z axis vector (0,0,1) z, basis,up - - Comparar dois vetores - O outro Vetor - Se os dois objetos forem iguais - - - Obter um hashcode para este tipo - Um único hashcode para este objeto - - - Obtém uma representação da sequência de caracteres do Vetor - O ponto onde este vértice está localizado @@ -4503,9 +4318,6 @@ As faces adjacentes a esse vértice - - Obtém uma representação da sequência de caracteres do Vértice - Uma classe de recurso digitada com ênfase, para pesquisar sequências de caracteres etc. @@ -4731,107 +4543,5 @@ Procura uma sequência de caracteres localizada, que seja similar a “Esse método está obsoleto e será removido em uma versão futura do Dynamo. Use TSplineSurfaceBuildPipes(ICurveEntity[] curves, double defaultRadius, double snappingTolerance, int[] segmentCounts, bool autoHandleStart, bool autoHandleEnd, double[] startRotations, double[] endRotations, double[] startRadii, double[] endRadii, double[] startPositions, double[] endPositions, bool inSmoothMode)” . - - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - \ No newline at end of file diff --git a/doc/distrib/xml/pt-BR/Tessellation.xml b/doc/distrib/xml/pt-BR/Tessellation.xml index d67846f5950..d649f7ce4d6 100644 --- a/doc/distrib/xml/pt-BR/Tessellation.xml +++ b/doc/distrib/xml/pt-BR/Tessellation.xml @@ -55,7 +55,7 @@ Funções do utilitário para a escala de UV em superfícies. - + Calcula fatores de escala UV normalizados em uma superfície para lidar com espaços de parâmetros anisotrópicos. A escala preserva a proporção mantendo os valores em um intervalo numérico razoável. Superfície para a qual calcular os fatores de escala. diff --git a/doc/distrib/xml/ru-RU/DSCoreNodes.xml b/doc/distrib/xml/ru-RU/DSCoreNodes.xml index da969e1b655..03b39fe4830 100644 --- a/doc/distrib/xml/ru-RU/DSCoreNodes.xml +++ b/doc/distrib/xml/ru-RU/DSCoreNodes.xml @@ -277,7 +277,7 @@ Класс, представляющий элемент DataType, поддерживаемый Dynamo - + Класс, представляющий элемент DataType, поддерживаемый Dynamo @@ -286,6 +286,10 @@ Необязательное имя для переопределения имени типа (`Number` вместо `long`) + + Формат провода $typeid (например, autodesk.math:point3d-1.0.0). + Null для типов примитивов, которые не используют сериализацию $typeid. + Иерархический уровень, который требуется отобразить в пользовательском интерфейсе diff --git a/doc/distrib/xml/ru-RU/ProtoGeometry.xml b/doc/distrib/xml/ru-RU/ProtoGeometry.xml index 99bad22f1ff..5b6884ebd84 100644 --- a/doc/distrib/xml/ru-RU/ProtoGeometry.xml +++ b/doc/distrib/xml/ru-RU/ProtoGeometry.xml @@ -228,9 +228,6 @@ Arc created from start, end point, and tangent arc,tangent,arcs - - Получение строчного представления дуги - Проанализируйте входящую строку JSON, отформатированную с помощью схемы autodesk.geometry:boundingbox3d-1.0.0. Строка JSON для анализа @@ -318,18 +315,6 @@ from a Revit BoundingBox without any conversions. bounding,bound,bymaxmin,max,min,bypoints - - Сравнение двух объектов BoundingBox - Другой объект BoundingBox - Являются ли два объекта одинаковыми - - - Получение хэш-кода для данного типа - Уникальный хэш-код для данного объекта - - - Получение строчного представления объекта BoundingBox - Центр окружности @@ -374,9 +359,6 @@ Окружность, созданная по точкам circle,approximate - - Получение строчного представления окружности - Предыдущее смежное ребро в содержащем контуре @@ -413,9 +395,6 @@ Кривая в параметрическом пространстве поверхности владельца. Кривая представлена в 2D-форме, поэтому координаты Z данной кривой равны 0. - - Получение строчного представления смежного ребра - Начальная точка @@ -474,9 +453,6 @@ circular bases in the CoordinateSystem XY Plane. cone,cone by height,cones - - Получение строчного представления конуса - Create a CoordinateSystem from a 4x4 matrix. This method is deprecated; prefer other constructors where possible. 4x4 transformation matrix @@ -672,18 +648,6 @@ Creates a CoordinateSystem at the specified spherical coordinate parameters with respect to the specified coordinate system. - - Compare two CoordinateSystem's - The other CoordinateSystem - Являются ли два объекта одинаковыми - - - Получение хэш-кода для данного типа - Уникальный хэш-код для данного объекта - - - Получение строчного представления системы координат - Returns length distance. Note: This return the input dimensions of the Cuboid, NOT the @@ -745,9 +709,6 @@ Кубоид, созданный по углам box,cube,byminmax,by corners,by points,cubes - - Получение строчного представления кубоида - Возврат общей длины дуги кривой distance @@ -1138,9 +1099,6 @@ isocurve,curvebydir,lines 0.5,0.5,0.4 - - Получение строчного представления кривой - Радиус цилиндра @@ -1172,9 +1130,6 @@ Цилиндр, созданный по точкам и радиусу cylinder,tube,by center points - - Получение строчного представления цилиндра - хранение идентификатора управляемого потока, вызвавшего этот конструктор. Служит для оповещения пользователей о потенциальных проблемах в многопотоковом режиме. @@ -1217,9 +1172,6 @@ Смежные ребра, связанные с данным ребром - - Получение строчного представления ребра - Центр эллипса @@ -1267,9 +1219,6 @@ Эллипс, созданный по плоскости и радиусам ellipse,aligned ellipse,ellipsebylengths - - Получение строчного представления эллипса - Центр эллипса @@ -1316,9 +1265,6 @@ Дуга эллипса, созданная по радиусам и углам плоскости ellipsearc,arcs - - Получение строчного представления объекта EllipseArc - Все ребра вокруг этой грани против часовой стрелки faces @@ -1339,9 +1285,6 @@ Базовая поверхность, образующая грань Представление поверхности грани - - Получение строчного представления грани - Карта между типами IGeometryEntity и геометрическими конструкциями, для которой используется основа. @@ -1462,10 +1405,6 @@ Scale in two dimensions by base and 2 pick points The two pick points are projected onto the base plane in order to determine the 2d scale factors resize,size,from,to,scale2d,2d - - Copy the given Geometry - A new copy - Получение расстояния от этой геометрии до другой Другая геометрия @@ -1589,9 +1528,6 @@ Projection direction. Flat array of resulting Geometry. - - Get a string representation of the Geometry - Угол (в градусах), с которым спираль проходит витки по всей длине @@ -1622,9 +1558,6 @@ Спираль, созданная по оси helix,screw,corkscrew,thread - - Получение строчного представления спирали - Либо 3 или 4, в зависимости от фигуры — треугольника или квадрата @@ -1657,18 +1590,6 @@ Индекс c Группа индексов - - Сравнение двух объектов IndexGroup - Другие объекты IndexGroup - Являются ли два объекта одинаковыми - - - Получение хэш-кода для данного типа - Уникальный хэш-код для данного объекта - - - Получение строчного представления объекта IndexGroup - Направление кривой lines @@ -1703,9 +1624,6 @@ Линия по начальному направлению и длине linebyvector,lines - - Получение строчного представления линии - Содержащая грань контура @@ -1717,9 +1635,6 @@ Является ли контур граничным или внутренним - - Получение строчного представления контура - Возврат исходных вершин данной сети в виде списка чисел. Каждый набор из трех последовательных чисел соответствует одной точке. @@ -1911,10 +1826,6 @@ Преобразование сети в соответствии с заданными значениями расстояний - - Convert the mesh into a JSON object formatted with dynamo.geometry:mesh-1.0.0 schema. - Итоговая строка JSON - Создание сетки на основе набора точек и набора элементов IndexGroups, ссылающихся на набор точек Список точек, определяющих положение вершин @@ -2136,9 +2047,6 @@ spline by tangent,tangents,lines 0.5,0.5,0.45 - - Получение строчного представления объекта NurbsCurve - Возврат кривизны поверхности в направлении U. surface smoothness,continuity @@ -2233,9 +2141,6 @@ lines 0.4 - - Получение строчного представления объекта NurbsSurface - Тип граничного условия, применяемого к панелям в сети. @@ -2403,9 +2308,6 @@ panel, surface, custom, orthogonal, lattice - - Получение строчного представления объекта PanelSurface - Получение начала координат плоскости. position,planecenter @@ -2490,9 +2392,6 @@ Создание плоскости в YZ МСК Плоскость в плоскости YZ МСК - - Получение строчного представления плоскости - Получение координаты точки по оси X @@ -2571,18 +2470,6 @@ Уникальные точки unique,duplicates,remove duplicates,distinct,near - - Сравнение двух точек: - Другая точка - Являются ли два объекта одинаковыми - - - Получение хэш-кода для данного типа - Уникальный хэш-код для данного объекта - - - Получение строчного представления точки - Возврат начальной точки первого компонента и конечных точек всех компонентов кривой. У замкнутой сложной кривой начальная и конечная точки совпадают, поэтому конечная точка исключается. @@ -2715,9 +2602,6 @@ Нормаль, перпендикулярная направлению утолщения. Если нормаль не указана (является нулевой), по умолчанию используется нормаль кривой. offset,thicken - - Получение строчного представления объекта PolyCurve - Получение углов полигона @@ -2747,9 +2631,6 @@ Построение вписанной кривой полигона в окружности. - - Получение строчного представления полигона - Получение новых поверхностей, представляющих собой базовые поверхности. subsurfaces,getsurfaces,explode @@ -2822,9 +2703,6 @@ Профиль сдвига sweep,rail,guide,sweep1 - - Получение строчного представления объекта PolySurface - Ширина прямоугольника rectX,rectx @@ -2875,9 +2753,6 @@ Прямоугольник, созданный по ширине и длине rectbylengths - - Получение строчного представления прямоугольника - Получение площади поверхности — суммы площадей всех граней @@ -2991,9 +2866,6 @@ Brep,brep,boolean,addition - - Получение строчного представления тела - Получение центральной точки сферы. @@ -3012,9 +2884,6 @@ Поместить сферу как можно ближе к входным точкам. Brep,brep - - Получение строчного представления сферы - Получение общей площади поверхности. @@ -3278,9 +3147,6 @@ Поверхность, созданная путем замыкания edgesrf,edgesurface,patch,fill - - Получение строчного представления поверхности - Вершины топологии @@ -3293,9 +3159,6 @@ Грани топологии - - Получение строчного представления топологии - Объекты TSplineFace, примыкающие к этому объекту Edge @@ -3320,9 +3183,6 @@ Ряд свойств объекта TSEdge: uvnFrame и индекс, находится ли TSEdge на границе, является ли однородным - - Получение строчного представления для объекта TSplineEdge - Положение всех объектов TSplineEdge вокруг этой грани направлено против часовой стрелки @@ -3346,9 +3206,6 @@ Ряд свойств объекта TSplineFace: uvnFrame, индекс, степень и количество сторон - - Получение строчного представления для объекта TSplineFace - Задана ли для вновь созданного Т-сплайна радиальная симметрия. @@ -3372,9 +3229,6 @@ Создание осевого объекта TSplineInitialSymmetry с заданными осями симметрии. tspline,symmetry - - Получение строчного представления объекта TSplineInitialSymmetry - Является ли отражение радиальным @@ -3405,9 +3259,6 @@ Радиальное отражение Т-сплайна tspline,symmetry,reflection,radial - - Получение строчного представления TSplineReflection - @@ -3639,7 +3490,7 @@ Сглаживание визуализации, если передано значение true, или без сглаживания, если передано значение false. Включение или отключение сглаживания при визуализации Т-сплайн с выбранным стилем визуализации - tspline,visulization,mode,smooth,box + tspline,visualization,mode,smooth,box Выполните одну или несколько операций симметричного выдавливания для набора ребер и переместите новые ребра по заданному вектору. @@ -3969,7 +3820,7 @@ tspline,cone,radius,cs - Создание Т-сплайновой сферы, центрированной во входной точке с заданным радиусом. + Create a T-Spline Sphere centered at the input Point, with given radius. Центр сферы Радиус сферы Количество радиальных пролетов @@ -4181,9 +4032,6 @@ Т-сплайновые поверхности для объединения tspline,combine - - Получение строчного представления TSplineSurface - Вершины, содержащиеся на этой T-сплайновой поверхности. @@ -4271,9 +4119,6 @@ tspline,face,byindex Грань Т-сплайна - - Получение строчного представления TSplineTopology - Точка TopologyItem на выпуклой оболочке @@ -4286,9 +4131,6 @@ Нормаль объекта TopologyItem - - Получение строчного представления TSplineUVNFrame - Объекты TSplineEdge, выходящие из этой вершины @@ -4319,9 +4161,6 @@ Ряд свойств объекта TSVertex: uvnFrame, индекс, степень и свойство functionalValence; является ли TSVertex объектом StarPoint, TPoint, является ли он однородным. - - Получение строчного представления TSplineVertex - Получение U-компонента для UV @@ -4341,18 +4180,6 @@ UV-плоскость, созданная по координатам surfaceparam,parameters,uv,uvs - - Сравнение двух UV: - Другое значение UV - Являются ли два объекта одинаковыми - - - Получение хэш-кода для данного типа - Уникальный хэш-код для данного объекта - - - Получение строчного представления UV - Проанализируйте входящую строку JSON, отформатированную по схеме autodesk.math:vector3d-1.0.0. Строка JSON для анализа @@ -4487,18 +4314,6 @@ Canonical Z axis vector (0,0,1) z, basis,up - - Сравнение двух векторов: - Другой вектор - Являются ли два объекта одинаковыми - - - Получение хэш-кода для данного типа - Уникальный хэш-код для данного объекта - - - Получение строчного представления вектора - Точка, в которой расположена данная вершина @@ -4511,9 +4326,6 @@ Грани, смежные с данной вершиной - - Получение строчного представления вершины - Класс ресурса со строгим контролем типа, используемый для поиска локализованных строк и т. п. @@ -4736,107 +4548,5 @@ Поиск локализованной строки, аналогичной строке «Этот метод исключен и в следующей версии Dynamo будет удален. Используйте вместо него TSplineSurfaceBuildPipes(ICurveEntity[] curves, double defaultRadius, double snappingTolerance, int[] segmentCounts, bool autoHandleStart, bool autoHandleEnd, double[] startRotations, double[] endRotations, double[] startRadii, double[] endRadii, double[] startPositions, double[] endPositions, bool inSmoothMode)». - - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - \ No newline at end of file diff --git a/doc/distrib/xml/ru-RU/Tessellation.xml b/doc/distrib/xml/ru-RU/Tessellation.xml index ccf8c705c81..ed5c9ccd491 100644 --- a/doc/distrib/xml/ru-RU/Tessellation.xml +++ b/doc/distrib/xml/ru-RU/Tessellation.xml @@ -55,7 +55,7 @@ Служебные функции для масштабирования поверхностей по UV-координатам. - + Вычисление нормализованных коэффициентов UV-масштабирования для поверхности с целью обработки анизотропных пространств параметров. При масштабировании сохраняются пропорции, а значения не выходят за пределы адекватного числового диапазона. Поверхность, для которой требуется рассчитать масштабные коэффициенты. diff --git a/doc/distrib/xml/zh-CN/DSCoreNodes.xml b/doc/distrib/xml/zh-CN/DSCoreNodes.xml index 489a2eb4eff..f639b0f1e2e 100644 --- a/doc/distrib/xml/zh-CN/DSCoreNodes.xml +++ b/doc/distrib/xml/zh-CN/DSCoreNodes.xml @@ -277,7 +277,7 @@ 表示 Dynamo 支持的 DataType 的类 - + 表示 Dynamo 支持的 DataType 的类 @@ -286,6 +286,10 @@ 替代类型名称的可选名称(`Number` 而不是 `long`) + + 导线格式 $typeid (例如 "autodesk.math:point3d-1.0.0")。 + 对于不使用 $typeid 序列化'基元类型为 Null。 + 要在 UI 中显示的层次级别 diff --git a/doc/distrib/xml/zh-CN/ProtoGeometry.xml b/doc/distrib/xml/zh-CN/ProtoGeometry.xml index 4bbd140203b..663d97f1690 100644 --- a/doc/distrib/xml/zh-CN/ProtoGeometry.xml +++ b/doc/distrib/xml/zh-CN/ProtoGeometry.xml @@ -228,9 +228,6 @@ Arc created from start, end point, and tangent arc,tangent,arcs - - 获取 Arc 的字符串表示 - 解析使用 autodesk.geometry:boundingbox3d-1.0.0 模式格式化的传入 JSON 字符串。 要解析的 JSON 字符串 @@ -318,18 +315,6 @@ from a Revit BoundingBox without any conversions. bounding,bound,bymaxmin,max,min,bypoints - - 比较两个 BoundingBox 的字符串表示 - 其他 BoundingBox - 两个对象是否相等 - - - 获取此类型的哈希代码 - 此对象的唯一哈希代码 - - - 获取 BoundingBox 的字符串表示 - 圆的圆心 @@ -374,9 +359,6 @@ 基于点创建的圆 circle,approximate - - 获取 Circle 的字符串表示 - 包含环路的上一个 CoEdge @@ -413,9 +395,6 @@ 曲面位于所有者曲面参数化空间。曲线采用二维形式,因此此曲线 Z 坐标为 0。 - - 获取 CoEdge 的字符串表示 - 起点 @@ -474,9 +453,6 @@ circular bases in the CoordinateSystem XY Plane. cone,cone by height,cones - - 获取 Cone 的字符串表示 - Create a CoordinateSystem from a 4x4 matrix. This method is deprecated; prefer other constructors where possible. 4x4 transformation matrix @@ -672,18 +648,6 @@ Creates a CoordinateSystem at the specified spherical coordinate parameters with respect to the specified coordinate system. - - Compare two CoordinateSystem's - The other CoordinateSystem - 两个对象是否相等 - - - 获取此类型的哈希代码 - 此对象的唯一哈希代码 - - - 获取 CoordinateSystem 的字符串表示 - Returns length distance. Note: This return the input dimensions of the Cuboid, NOT the @@ -745,9 +709,6 @@ 由角点创建的长方体 box,cube,byminmax,by corners,by points,cubes - - 获取 Cuboid 的字符串表示 - 返回曲线的圆弧总长 distance @@ -1138,9 +1099,6 @@ isocurve,curvebydir,lines 0.5,0.5,0.4 - - 获取 Curve 的字符串表示 - 圆柱体的半径 @@ -1172,9 +1130,6 @@ 由点和半径创建的圆柱体 cylinder,tube,by center points - - 获取 Cylinder 的字符串表示 - 存储调用此构造函数的线程的托管线程 ID。 用于提醒用户潜在的多线程问题。 @@ -1217,9 +1172,6 @@ 与此边关联的 CoEdge - - 获取 Edge 的字符串表示 - 椭圆的中心 @@ -1267,9 +1219,6 @@ 基于平面和半径创建的椭圆 ellipse,aligned ellipse,ellipsebylengths - - 获取 Ellipse 的字符串表示 - 椭圆的中心 @@ -1316,9 +1265,6 @@ 由平面半径和角度创建的椭圆弧 ellipsearc,arcs - - 获取 EllipseArc 的字符串表示 - 按逆时针顺序围绕该面的所有边 faces @@ -1339,9 +1285,6 @@ 构成面的基本曲面 面的曲面表示 - - 获取 Face 的字符串表示 - 使用主体的 IGeometryEntity 类型和几何图形构造函数之间的贴图。 @@ -1462,10 +1405,6 @@ Scale in two dimensions by base and 2 pick points The two pick points are projected onto the base plane in order to determine the 2d scale factors resize,size,from,to,scale2d,2d - - Copy the given Geometry - A new copy - 获取从该几何图形到另一几何图形的距离 其他几何图形 @@ -1589,9 +1528,6 @@ Projection direction. Flat array of resulting Geometry. - - Get a string representation of the Geometry - 螺旋线展开长度所经过的以度为单位的角度 @@ -1622,9 +1558,6 @@ 由轴创建的螺旋 helix,screw,corkscrew,thread - - 获取 Helix 的字符串表示 - 3 或 4,取决于它表示三角形还是四边形 @@ -1657,18 +1590,6 @@ 索引 c IndexGroup - - 比较两个 IndexGroup 的字符串表示 - 其他 IndexGroup - 两个对象是否相等 - - - 获取此类型的哈希代码 - 此对象的唯一哈希代码 - - - 获取 IndexGroup 的字符串表示 - 曲线的方向 lines @@ -1703,9 +1624,6 @@ 基于起始方向和长度的线 linebyvector,lines - - 获取 Line 的字符串表示 - 环路的包含面 @@ -1717,9 +1635,6 @@ 是边界环还是内环 - - 获取 Loop 的字符串表示 - 以数字列表形式返回此网格的原始顶点。每套 三个连续数字表示一个点。 @@ -1911,10 +1826,6 @@ 按输入距离平移网格 - - Convert the mesh into a JSON object formatted with dynamo.geometry:mesh-1.0.0 schema. - 生成的 JSON 字符串 - 由点集和引用点集的 IndexGroups 集创建面片 确定顶点位置的点列表 @@ -2136,9 +2047,6 @@ spline by tangent,tangents,lines 0.5,0.5,0.45 - - 获取 NurbsCurve 的字符串表示 - 返回 U 方向上的曲面阶数。 surface smoothness,continuity @@ -2233,9 +2141,6 @@ lines 0.4 - - 获取 NurbsSurface 的字符串表示 - 应用于网格中面板的边界条件类型。 @@ -2403,9 +2308,6 @@ panel, surface, custom, orthogonal, lattice - - 获取 PanelSurface 的字符串表示。 - 返回平面的原点。 position,planecenter @@ -2490,9 +2392,6 @@ 在世界坐标 YZ 平面创建平面 世界坐标系 YZ 平面处的平面 - - 获取 Plane 的字符串表示 - 获取点的 X 分量 @@ -2571,18 +2470,6 @@ 唯一点 unique,duplicates,remove duplicates,distinct,near - - 比较两个 Point 的字符串表示 - 其他点 - 两个对象是否相等 - - - 获取此类型的哈希代码 - 此对象的唯一哈希代码 - - - 获取 Point 的字符串表示 - 返回第一个分量的起点和每个分量曲线的终点。对于闭合的复合线,由于起点和终点相同,因此不会包括终点。 @@ -2715,9 +2602,6 @@ 垂直于加厚方向的法线。如果未提供法线(为空),则默认情况下将使用曲线法线。 offset,thicken - - 获取 PolyCurve 的字符串表示 - 返回多边形各角 @@ -2747,9 +2631,6 @@ 创建圆内接多边形。 - - 获取 Polygon 的字符串表示 - 返回表示基本曲面的新曲面。 subsurfaces,getsurfaces,explode @@ -2822,9 +2703,6 @@ 扫掠轮廓 sweep,rail,guide,sweep1 - - 获取 PolySurface 的字符串表示 - 矩形的宽度 rectX,rectx @@ -2875,9 +2753,6 @@ 基于宽度和长度创建的矩形 rectbylengths - - 获取 Rectangle 的字符串表示 - 返回曲面面积 -- 所有表面的所有面积总和 @@ -2990,9 +2865,6 @@ Brep,brep,boolean,addition - - 获取 Solid 的字符串表示 - 返回球体球心点。 @@ -3011,9 +2883,6 @@ 尽可能接近输入点拟合球体。 Brep,brep - - 获取 Sphere 的字符串表示 - 返回总曲面面积。 @@ -3277,9 +3146,6 @@ 由面片创建的曲面 edgesrf,edgesurface,patch,fill - - 获取 Surface 的字符串表示 - 拓扑的顶点 @@ -3292,9 +3158,6 @@ 拓扑的面 - - 获取 Topology 的字符串表示 - 与该 Edge 相邻的 TSplineFace @@ -3319,9 +3182,6 @@ 一系列 TSEdge 特性: uvnFrame 和索引,无论 TSEdge 是否位于边界上,是否为流形 - - 获取 TSplineEdge 的字符串表示 - 按逆时针顺序围绕该面的所有 TSplineEdge @@ -3345,9 +3205,6 @@ 一系列 TSplineFace 特性: uvnFrame、索引、边价和边数 - - 获取 TSplineFace 的字符串表示 - 无论新创建的 T 样条曲线是否径向对称。 @@ -3371,9 +3228,6 @@ 以给定对称轴创建轴向 TSplineInitialSymmetry。 tspline,symmetry - - 获取 TSplineInitialSymmetry 的字符串表示 - 反射是否为径向 @@ -3404,9 +3258,6 @@ T 样条曲线径向反射 tspline,symmetry,reflection,radial - - 获取 TSplineReflection 的字符串表示 - @@ -3638,7 +3489,7 @@ 若通过 True 则采用平滑可视化,否则为方框可视化。 启用或禁用平滑可视化 可视化样式已选定的 T 样条曲线 - tspline,visulization,mode,smooth,box + tspline,visualization,mode,smooth,box 对一组边执行单个或多个对称拉伸,并按给定向量移动新边。 @@ -3968,7 +3819,7 @@ tspline,cone,radius,cs - 以输入点为球心按给定半径创建 T 样条曲线球体。 + Create a T-Spline Sphere centered at the input Point, with given radius. 球体中心 球体半径 径向跨距数 @@ -4180,9 +4031,6 @@ 要组合的 T 样条曲线曲面 tspline,combine - - 获取 TSplineSurface 的字符串表示 - 该 T 样条曲线曲面中包含的顶点。 @@ -4270,9 +4118,6 @@ tspline,face,byindex T 样条曲线面 - - 获取 TSplineTopology 的字符串表示 - 外壳上 TopologyItem 的点 @@ -4285,9 +4130,6 @@ TopologyItem 的法线 - - 获取 TSplineUVNFrame 的字符串表示 - 从该顶点发出的 TSplineEdge @@ -4318,9 +4160,6 @@ 一系列 TSVertex 特性: uvnFrame、索引、边价和 functionalValence,无论 TSVertex 是否为 StarPoint、TPoint、流形 - - 获取 TSplineVertex 的字符串表示 - 获取 UV 的 U 分量 @@ -4340,18 +4179,6 @@ 由坐标创建的 UV surfaceparam,parameters,uv,uvs - - 比较两个 UV 的字符串表示 - 其他 UV - 两个对象是否相等 - - - 获取此类型的哈希代码 - 此对象的唯一哈希代码 - - - 获取 UV 的字符串表示 - 解析使用 autodesk.math:vector3d-1.0.0 模式格式化的传入 JSON 字符串。 要解析的 JSON 字符串 @@ -4486,18 +4313,6 @@ Canonical Z axis vector (0,0,1) z, basis,up - - 比较两个 Vector 的字符串表示 - 其他向量 - 两个对象是否相等 - - - 获取此类型的哈希代码 - 此对象的唯一哈希代码 - - - 获取 Vector 的字符串表示 - 该顶点所在的点 @@ -4510,9 +4325,6 @@ 与该顶点相邻的面 - - 获取 Vertex 的字符串表示 - 强类型资源类别,用于查看本地化字符串等。 @@ -4738,107 +4550,5 @@ 查找类似“此方法已弃用,将在未来版本的 Dynamo 中删除。请改用‘TSplineSurfaceBuildPipes(ICurveEntity[] curves, double defaultRadius, double snappingTolerance, int[] segmentCounts, bool autoHandleStart, bool autoHandleEnd, double[] startRotations, double[] endRotations, double[] startRadii, double[] endRadii, double[] startPositions, double[] endPositions, bool inSmoothMode)’ 。”的本地化字符串。 - - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - \ No newline at end of file diff --git a/doc/distrib/xml/zh-CN/Tessellation.xml b/doc/distrib/xml/zh-CN/Tessellation.xml index d5f9c52c058..be24e7b7e93 100644 --- a/doc/distrib/xml/zh-CN/Tessellation.xml +++ b/doc/distrib/xml/zh-CN/Tessellation.xml @@ -55,7 +55,7 @@ 用于曲面上 UV 缩放的实用程序函数。 - + 为曲面计算规格化 UV 比例因子以处理各向异性参数空间。 缩放将保留纵横比,同时将值保持在合理的数值范围内。 要计算比例因子的曲面。 diff --git a/doc/distrib/xml/zh-TW/DSCoreNodes.xml b/doc/distrib/xml/zh-TW/DSCoreNodes.xml index db7542e2937..6be13a861e1 100644 --- a/doc/distrib/xml/zh-TW/DSCoreNodes.xml +++ b/doc/distrib/xml/zh-TW/DSCoreNodes.xml @@ -277,7 +277,7 @@ 表示 Dynamo 支援的 DataType 的類別 - + 表示 Dynamo 支援的 DataType 的類別 @@ -286,6 +286,10 @@ 要取代類型名稱的可選名稱 (`Number` 而非 `long`) + + 線路格式 $typeid (例如「autodesk.math:point3d-1.0.0」)。 + 如果是不使用 $typeid 序列化的基本型類型,則為空值。 + 要在使用者介面中顯示的階層層級 diff --git a/doc/distrib/xml/zh-TW/ProtoGeometry.xml b/doc/distrib/xml/zh-TW/ProtoGeometry.xml index 6aa0727c33a..65b6bf972bb 100644 --- a/doc/distrib/xml/zh-TW/ProtoGeometry.xml +++ b/doc/distrib/xml/zh-TW/ProtoGeometry.xml @@ -228,9 +228,6 @@ Arc created from start, end point, and tangent arc,tangent,arcs - - 取得 Arc 的字串表現法 - 剖析使用 autodesk.geometry:boundingbox3d-1.0.0 資料架構格式化的進入 JSON 字串。 要剖析的 JSON 字串 @@ -318,18 +315,6 @@ from a Revit BoundingBox without any conversions. bounding,bound,bymaxmin,max,min,bypoints - - 比較兩個邊界框 - 其他邊界框 - 兩個物件是否相等 - - - 取得此類型的雜湊碼 - 此物件的唯一雜湊碼 - - - 取得 BoundingBox 的字串表現法 - 圓的中心 @@ -374,9 +359,6 @@ 從點建立的圓 circle,approximate - - 取得 Circle 的字串表現法 - 包含迴路中的前一個「共有邊」 @@ -413,9 +395,6 @@ 曲線在參數式空間表面的擁有者。 「 曲線」會在 2D 形式,因此 Z 座標的此曲線為 0。 - - 取得 CoEdge 的字串表現法 - 起點 @@ -474,9 +453,6 @@ circular bases in the CoordinateSystem XY Plane. cone,cone by height,cones - - 取得 Cone 的字串表現法 - Create a CoordinateSystem from a 4x4 matrix. This method is deprecated; prefer other constructors where possible. 4x4 transformation matrix @@ -668,18 +644,6 @@ Creates a CoordinateSystem at the specified spherical coordinate parameters with respect to the specified coordinate system. - - Compare two CoordinateSystem's - The other CoordinateSystem - 兩個物件是否相等 - - - 取得此類型的雜湊碼 - 此物件的唯一雜湊碼 - - - 取得 CoordinateSystem 的字串表現法 - Returns length distance. Note: This return the input dimensions of the Cuboid, NOT the @@ -741,9 +705,6 @@ 透過角點建立的立方體 box,cube,byminmax,by corners,by points,cubes - - 取得 Cuboid 的字串表現法 - 傳回曲線的總弧長 distance @@ -1134,9 +1095,6 @@ isocurve,curvebydir,lines 0.5,0.5,0.4 - - 取得 Curve 的字串表現法 - 圓柱的半徑 @@ -1168,9 +1126,6 @@ 透過點和半徑建立的圓柱 cylinder,tube,by center points - - 取得 Cylinder 的字串表現法 - 儲存呼叫此建構函式之執行緒的受管理執行緒 ID。 用來向使用者警示潛在的多執行緒問題。 @@ -1213,9 +1168,6 @@ 與此邊相關聯的「共有邊」 - - 取得 Edge 的字串表現法 - 橢圓的中心 @@ -1263,9 +1215,6 @@ 從平面和半徑建立的橢圓 ellipse,aligned ellipse,ellipsebylengths - - 取得 Ellipse 的字串表現法 - 橢圓的中心 @@ -1312,9 +1261,6 @@ 透過平面半徑和角度建立的橢圓弧 ellipsearc,arcs - - 取得 EllipseArc 的字串表現法 - 以逆時鐘次序圍繞此面的所有邊 faces @@ -1335,9 +1281,6 @@ 組成面的基本曲面 面的曲面表現法 - - 取得 Face 的字串表現法 - IGeometryEntity 類型與使用主體的幾何圖形建構函式之間的對映。 @@ -1457,10 +1400,6 @@ Scale in two dimensions by base and 2 pick points The two pick points are projected onto the base plane in order to determine the 2d scale factors resize,size,from,to,scale2d,2d - - Copy the given Geometry - A new copy - 取得這個幾何圖形到另一個幾何圖形的距離 其他幾何圖形 @@ -1583,9 +1522,6 @@ Projection direction. Flat array of resulting Geometry. - - Get a string representation of the Geometry - 螺旋線翻轉其長度的角度 (以度為單位) @@ -1616,9 +1552,6 @@ 透過軸建立的螺旋線 helix,screw,corkscrew,thread - - 取得 Helix 的字串表現法 - 3 或 4,視其表示三角形還是四邊形而定 @@ -1651,18 +1584,6 @@ 索引 c IndexGroup - - 比較兩個 IndexGroup - 其他 IndexGroup - 兩個物件是否相等 - - - 取得此類型的雜湊碼 - 此物件的唯一雜湊碼 - - - 取得 IndexGroup 的字串表現法 - 曲線的方向 lines @@ -1697,9 +1618,6 @@ 從起始方向和長度建立的線 linebyvector,lines - - 取得 Line 的字串表現法 - 迴路的包含面 @@ -1711,9 +1629,6 @@ 循環是邊界還是內部 - - 取得 Loop 的字串表現法 - 以數字清單傳回此網格的原始頂點。每三個 連續數字表示一個點。 @@ -1905,10 +1820,6 @@ 將網格平移輸入距離 - - Convert the mesh into a JSON object formatted with dynamo.geometry:mesh-1.0.0 schema. - 產生的 JSON 字串 - 從點集合和參考點集合的 IndexGroups 集合建立網面 決定頂點位置的點清單 @@ -2130,9 +2041,6 @@ spline by tangent,tangents,lines 0.5,0.5,0.45 - - 取得 NurbsCurve 的字串表現法 - 傳回 U 方向的曲面次數。 surface smoothness,continuity @@ -2227,9 +2135,6 @@ lines 0.4 - - 取得 NurbsSurface 的字串表現法 - 套用至網格中嵌板的邊界條件類型。 @@ -2397,9 +2302,6 @@ panel, surface, custom, orthogonal, lattice - - 取得 PanelSurface 的字串表現法 - 傳回平面的原點。 position,planecenter @@ -2484,9 +2386,6 @@ 在世界 YZ 建立平面 位於世界 YZ 平面的平面 - - 取得 Plane 的字串表現法 - 取得點的 X 元件 @@ -2565,18 +2464,6 @@ 唯一點 unique,duplicates,remove duplicates,distinct,near - - 比較兩個點 - 其他點 - 兩個物件是否相等 - - - 取得此類型的雜湊碼 - 此物件的唯一雜湊碼 - - - 取得 Point 的字串表現法 - 傳回第一條組成曲線的起點和每條組成曲線的終點。如果是封閉的 PolyCurve,由於起點和終點相同,因此會排除終點。 @@ -2709,9 +2596,6 @@ 垂直於增厚方向的法線。如果未提供法線 (為空),依預設會使用曲線法線。 offset,thicken - - 取得 PolyCurve 的字串表現法 - 傳回多邊形的轉角 @@ -2741,9 +2625,6 @@ 在圓形內建構內接多邊形曲線。 - - 取得 Polygon 的字串表現法 - 傳回表示基本曲面的新曲面。 subsurfaces,getsurfaces,explode @@ -2816,9 +2697,6 @@ 掃掠輪廓 sweep,rail,guide,sweep1 - - 取得 PolySurface 的字串表現法 - 矩形的寬度 rectX,rectx @@ -2869,9 +2747,6 @@ 從寬度和長度建立的矩形 rectbylengths - - 取得 Rectangle 的字串表現法 - 傳回表面積 -- 所有面的所有區域總和 @@ -2984,9 +2859,6 @@ Brep,brep,boolean,addition - - 取得 Solid 的字串表現法 - 傳回圓球的中心點。 @@ -3005,9 +2877,6 @@ 將圓球儘可能擬合至輸入點。 Brep,brep - - 取得 Sphere 的字串表現法 - 傳回總表面積。 @@ -3271,9 +3140,6 @@ 透過修補建立的曲面 edgesrf,edgesurface,patch,fill - - 取得 Surface 的字串表現法 - 拓樸的頂點 @@ -3286,9 +3152,6 @@ 拓樸的面 - - 取得 Topology 的字串表現法 - 與此邊相鄰的 TSplineFaces @@ -3313,9 +3176,6 @@ 一組 TSEdge 性質: uvnFrame 和索引、TSEdge 是否位於邊界、是否為流形 - - 取得 TSplineEdge 的字串表現法 - 以逆時鐘順序圍繞此面的所有 TSplineEdges @@ -3339,9 +3199,6 @@ 一組 TSplineFace 性質: uvnFrame、索引、價和邊數 - - 取得 TSplineFace 的字串表現法 - 新建立的 T 雲形線是否具有徑向對稱。 @@ -3365,9 +3222,6 @@ 建立具有指定對稱軸的軸向 TSplineInitialSymmetry。 tspline,symmetry - - 取得 TSplineInitialSymmetry 的字串表現法 - 反射是否為徑向 @@ -3398,9 +3252,6 @@ T 雲形線徑向反射 tspline,symmetry,reflection,radial - - 取得 TSplineReflection 的字串表現法 - @@ -3632,7 +3483,7 @@ 若傳遞 true,則進行平滑視覺化,否則使用框。 啟用或停用平滑視覺化 具有所選視覺型式的 T 雲形線 - tspline,visulization,mode,smooth,box + tspline,visualization,mode,smooth,box 在一組邊上執行一或多項對稱擠出,然後根據指定向量移動新邊。 @@ -3964,7 +3815,7 @@ tspline,cone,radius,cs - 建立定心至輸入點並具有指定半徑的 T 雲形線圓球。 + Create a T-Spline Sphere centered at the input Point, with given radius. 圓球的中心 圓球的半徑 徑向跨越的數量 @@ -4176,9 +4027,6 @@ 要結合的 T 雲形線曲面 tspline,combine - - 取得 TSplineSurface 的字串表現法 - 此 T 雲形線曲面中包含的頂點。 @@ -4266,9 +4114,6 @@ tspline,face,byindex T 雲形線面 - - 取得 TSplineTopology 的字串表現法 - 關聯線上的 TopologyItem 點 @@ -4281,9 +4126,6 @@ TopologyItem 的法線 - - 取得 TSplineUVNFrame 的字串表現法 - 從此頂點引出的 TSplineEdges @@ -4314,9 +4156,6 @@ 一組 TSVertex 性質: uvnFrame、索引、價和 functionalValence,TSVertex 是否為 StarPoint、TPoint、流形 - - 取得 TSplineVertex 的字串表現法 - 取得 UV 的 U 元件 @@ -4336,18 +4175,6 @@ 透過座標建立的 UV surfaceparam,parameters,uv,uvs - - 比較兩個 UV - 其他 UV - 兩個物件是否相等 - - - 取得此類型的雜湊碼 - 此物件的唯一雜湊碼 - - - 取得 UV 的字串表現法 - 剖析使用 autodesk.math:vector3d-1.0.0 資料架構格式化的進入 JSON 字串。 要剖析的 JSON 字串 @@ -4482,18 +4309,6 @@ Canonical Z axis vector (0,0,1) z, basis,up - - 比較兩個向量 - 其他向量 - 兩個物件是否相等 - - - 取得此類型的雜湊碼 - 此物件的唯一雜湊碼 - - - 取得 Vector 的字串表現法 - 此頂點所在的點 @@ -4506,9 +4321,6 @@ 與此頂點相鄰的面 - - 取得 Vertex 的字串表現法 - 一種強型別資源類別,用於查找本土化的字串,等等。 @@ -4734,107 +4546,5 @@ 查找類似於「此方法已棄用,未來版本的 Dynamo 將移除。請改用 TSplineSurfaceBuildPipes(ICurveEntity[] curves, double defaultRadius, double snappingTolerance, int[] segmentCounts, bool autoHandleStart, bool autoHandleEnd, double[] startRotations, double[] endRotations, double[] startRadii, double[] endRadii, double[] startPositions, double[] endPositions, bool inSmoothMode)」 的本土化字串。 - - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - The is the main attribute the generator looks for when it is - deciding the classes to auto implement. The type should - be a type from Autodesk.DesignScript.Interfaces and should - be the source of all the static constructor methods for the interface. -

- The attribute must be attached to a class that matches the protoInterface name, i.e. if the interface - is named IPointEntity, then the class must be named Point for the generator to work correctly. -

- The generator will implement wrappers for every property and method on protoInterface - using ProtoGeometry as instance methods. In addition, all methods that start with the class name - (Point) on the factory interface will be implemented as static methods. -

- Generated implementations can be overriden by implementing a property or method that exactly matches the - interface method signature. See and for - other ways to override automatic implementations.
-
- - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Replace the body of the named property or method with this implementation. - - Properties and methods implemented by the generator using the can - be overriden. This attribute will replace the body of the generated method, but let the generator handle - documentation, scaling, ASM extents checks and the required boilerplate. - - The method or property to override - Implement the generated function as virtual - - - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - Properties and methods implemented by the generator using the can - be overriden. This attribute will prevent the generation of a method named - whose params exactly matches the array. -

- Some of the methods in the library don't match the generated output exactly, meaning the generator can't see - them as overrides. This attribute lets a method take the place of another method, by explicitly shadowing - what the generator would have implemented. -

- Several [class]es implement a static FromJson method that takes a single , where - the factory interface has a method [class]FromJson that takes and . - This attribute lets the single version override the automatic one.
-
- - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets an interface property be auto generated from a backing field, letting that - field take the property's place in the ToString, Equals and HashCode methods. - Special handling is added for Point and Vector types when backed by a Coordinate. - This also lets the generator handle documentation for the property. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - - - This attribute lets a class override the CompareUsing attribute on the defining interface - (or set one at all if it is missing). This in turn lets the generator create the - (Get|Compute)HashCode and Equals methods for the class based on the supplied property names. - \ No newline at end of file diff --git a/doc/distrib/xml/zh-TW/Tessellation.xml b/doc/distrib/xml/zh-TW/Tessellation.xml index 51a54d7700c..57c323b31bf 100644 --- a/doc/distrib/xml/zh-TW/Tessellation.xml +++ b/doc/distrib/xml/zh-TW/Tessellation.xml @@ -55,7 +55,7 @@ 用於在曲面上調整 UV 比例的公用程式函數。 - + 計算曲面的標準化 UV 比例係數,以處理非等向性參數空間。 比例可維持縱橫比,同時讓值維持在合理的數值範圍內。 要為其計算比例係數的曲面。 diff --git a/src/DynamoCoreWpf/Properties/Resources.cs-CZ.resx b/src/DynamoCoreWpf/Properties/Resources.cs-CZ.resx index d252315885a..0261018ab04 100644 --- a/src/DynamoCoreWpf/Properties/Resources.cs-CZ.resx +++ b/src/DynamoCoreWpf/Properties/Resources.cs-CZ.resx @@ -1146,6 +1146,12 @@ Balíček můžete kdykoli znovu stáhnout. Nepodařilo se načíst neplatný balíček. + + Instalace byla zrušena z důvodu konfliktu vlastních uzlů. + + + Restartováním aplikace Dynamo odeberete konfliktní balíček. + Nebyl nalezen žádný uzel s daným ID. @@ -3633,7 +3639,7 @@ V určitém kontextu složitých grafů nebo hostitelských režimů může auto _Soubor - _Šablona + Ze šablony… Pracovní prostory není možné uložit do složky Templates. Uložte soubor výběrem jiné složky. diff --git a/src/DynamoCoreWpf/Properties/Resources.de-DE.resx b/src/DynamoCoreWpf/Properties/Resources.de-DE.resx index 55b2b9be18f..1b4fc6741b6 100644 --- a/src/DynamoCoreWpf/Properties/Resources.de-DE.resx +++ b/src/DynamoCoreWpf/Properties/Resources.de-DE.resx @@ -1146,6 +1146,12 @@ Sie können das Paket jederzeit erneut herunterladen. Ungültiges Paket konnte nicht geladen werden. + + Installation wurde aufgrund eines Konflikts bei benutzerdefinierten Blöcken abgebrochen. + + + Starten Sie Dynamo neu, um das in Konflikt stehende Paket zu entfernen. + Kein Block mit dieser ID gefunden @@ -3632,7 +3638,7 @@ In bestimmten komplexen Diagrammen oder Host-Programmszenarien kann der automati _Datei - _Vorlage + Von Vorlage... Arbeitsbereiche können nicht direkt im Vorlagenordner gespeichert werden. Wählen Sie einen anderen Ordner, um die Datei zu speichern. diff --git a/src/DynamoCoreWpf/Properties/Resources.en-GB.resx b/src/DynamoCoreWpf/Properties/Resources.en-GB.resx index f7dc64a70df..6b20f7f5a8c 100644 --- a/src/DynamoCoreWpf/Properties/Resources.en-GB.resx +++ b/src/DynamoCoreWpf/Properties/Resources.en-GB.resx @@ -1146,6 +1146,12 @@ You can always redownload the package. Failed to load an invalid package. + + Installation cancelled due to custom node conflict. + + + Restart Dynamo to remove the conflicting package. + No node could be found with that Id. @@ -3634,7 +3640,7 @@ In certain complex graphs or host program scenarios, Automatic mode may cause in _File - _Template + From Template... Workspaces cannot be saved directly to the Templates folder. Please choose a different folder to save your file. diff --git a/src/DynamoCoreWpf/Properties/Resources.es-ES.resx b/src/DynamoCoreWpf/Properties/Resources.es-ES.resx index 3a2e87bf8e2..c1062cf869d 100644 --- a/src/DynamoCoreWpf/Properties/Resources.es-ES.resx +++ b/src/DynamoCoreWpf/Properties/Resources.es-ES.resx @@ -1146,6 +1146,12 @@ Siempre puede volver a descargar el paquete. No se ha podido cargar un paquete no válido. + + La instalación se ha cancelado debido a un conflicto de nodos personalizados. + + + Reinicie Dynamo para eliminar el paquete en conflicto. + No se ha podido encontrar ningún nodo con ese ID @@ -3634,7 +3640,7 @@ En determinados gráficos complejos o al usar programas anfitriones, el modo Aut _Archivo - _Plantilla + Desde plantilla... Los espacios de trabajo no se pueden guardar en la carpeta de plantillas. Elija otra carpeta para guardar el archivo. diff --git a/src/DynamoCoreWpf/Properties/Resources.fr-FR.resx b/src/DynamoCoreWpf/Properties/Resources.fr-FR.resx index 312ca03fa51..0fd333c5108 100644 --- a/src/DynamoCoreWpf/Properties/Resources.fr-FR.resx +++ b/src/DynamoCoreWpf/Properties/Resources.fr-FR.resx @@ -1146,6 +1146,12 @@ Vous pouvez toujours télécharger une nouvelle fois le package. Echec du chargement d'un package incorrect. + + Installation annulée en raison d'un conflit de noeuds personnalisés. + + + Redémarrez Dynamo pour supprimer le package en conflit. + Aucun noeud ne correspond à cet ID. @@ -3628,7 +3634,7 @@ Vous pouvez gérer ce paramètre dans Préférences -> Sécurité. _Fichier - _Gabarit + À partir d'un gabarit... Les espaces de travail ne peuvent pas être enregistrés directement dans le dossier Gabarits. Veuillez choisir un autre dossier pour enregistrer votre fichier. diff --git a/src/DynamoCoreWpf/Properties/Resources.it-IT.resx b/src/DynamoCoreWpf/Properties/Resources.it-IT.resx index cecf314a0c4..4d987915fb7 100644 --- a/src/DynamoCoreWpf/Properties/Resources.it-IT.resx +++ b/src/DynamoCoreWpf/Properties/Resources.it-IT.resx @@ -1144,6 +1144,12 @@ Salvare le modifiche? Impossibile caricare un pacchetto non valido. + + Installazione annullata a causa di un conflitto di nodi personalizzati. + + + Riavviare Dynamo per rimuovere il pacchetto in conflitto. + Nessun nodo trovato con l'ID specificato. @@ -3616,7 +3622,7 @@ In alcuni scenari complessi di programmi host o grafici, la modalità Automatico _File - _Modello + Da modello... Impossibile salvare le aree di lavoro direttamente nella cartella Modelli. Scegliere una cartella diversa per salvare il file. diff --git a/src/DynamoCoreWpf/Properties/Resources.ja-JP.resx b/src/DynamoCoreWpf/Properties/Resources.ja-JP.resx index 8196203d8cb..1e8e6ee7ec1 100644 --- a/src/DynamoCoreWpf/Properties/Resources.ja-JP.resx +++ b/src/DynamoCoreWpf/Properties/Resources.ja-JP.resx @@ -1146,6 +1146,12 @@ 無効なパッケージのロードに失敗しました。 + + カスタム ノードの競合により、インストールがキャンセルされました。 + + + 競合するパッケージを削除するには、Dynamo を再起動してください。 + この ID のノードが見つかりませんでした。 @@ -3634,7 +3640,7 @@ Dynamo を再起動してアンインストールを完了します。 ファイル(_F) - テンプレート(_T) + テンプレートから... テンプレート フォルダにはワークスペースを直接保存できません。ファイルを保存するには、別のフォルダを選択してください。 diff --git a/src/DynamoCoreWpf/Properties/Resources.ko-KR.resx b/src/DynamoCoreWpf/Properties/Resources.ko-KR.resx index ace48776029..6c2427dbbd4 100644 --- a/src/DynamoCoreWpf/Properties/Resources.ko-KR.resx +++ b/src/DynamoCoreWpf/Properties/Resources.ko-KR.resx @@ -1145,6 +1145,12 @@ 잘못된 패키지를 로드하지 못했습니다. + + 사용자 노드 충돌로 인해 설치가 취소되었습니다. + + + 충돌하는 패키지를 제거하려면 Dynamo를 다시 시작하십시오. + 해당 ID로 노드를 찾을 수 없습니다. @@ -3632,7 +3638,7 @@ 파일(_F) - 템플릿(&T) + 템플릿으로부터... 작업공간을 템플릿 폴더에 바로 저장할 수 없습니다. 다른 폴더를 선택하여 파일을 저장하십시오. diff --git a/src/DynamoCoreWpf/Properties/Resources.pl-PL.resx b/src/DynamoCoreWpf/Properties/Resources.pl-PL.resx index 8013bc75664..36e55c00d54 100644 --- a/src/DynamoCoreWpf/Properties/Resources.pl-PL.resx +++ b/src/DynamoCoreWpf/Properties/Resources.pl-PL.resx @@ -1146,6 +1146,12 @@ Można później ponownie pobrać pakiet. Nie można wczytać nieprawidłowego pakietu. + + Anulowano instalację z powodu konfliktu węzłów niestandardowych. + + + Uruchom ponownie dodatek Dynamo, aby usunąć pakiet powodujący konflikt. + Nie można odnaleźć węzła z tym identyfikatorem. @@ -3634,7 +3640,7 @@ W niektórych sytuacjach ze złożonymi wykresami lub programami nadrzędnymi tr _Plik - _Szablon + Z szablonu… Obszarów roboczych nie można zapisać bezpośrednio w folderze szablonów. Wybierz inny folder, aby zapisać plik. diff --git a/src/DynamoCoreWpf/Properties/Resources.pt-BR.resx b/src/DynamoCoreWpf/Properties/Resources.pt-BR.resx index b53c3479607..c96a7b9e334 100644 --- a/src/DynamoCoreWpf/Properties/Resources.pt-BR.resx +++ b/src/DynamoCoreWpf/Properties/Resources.pt-BR.resx @@ -1146,6 +1146,12 @@ Sempre é possível fazer o download do pacote novamente. Falha ao carregar um pacote inválido. + + Instalação cancelada devido a um conflito de nós personalizados. + + + Reinicie o Dynamo para remover o pacote conflitante. + Nenhum nó pôde ser encontrado com essa ID. @@ -3634,7 +3640,7 @@ Em alguns gráficos complexos ou cenários de programas hospedeiros, o modo Auto _Arquivo - _Modelo + Do modelo... Não é possível salvar os espaços de trabalho na pasta Modelos. Escolha uma pasta diferente para salvar o arquivo. diff --git a/src/DynamoCoreWpf/Properties/Resources.ru-RU.resx b/src/DynamoCoreWpf/Properties/Resources.ru-RU.resx index 10175173a7c..1e08c35d021 100644 --- a/src/DynamoCoreWpf/Properties/Resources.ru-RU.resx +++ b/src/DynamoCoreWpf/Properties/Resources.ru-RU.resx @@ -1146,6 +1146,12 @@ Не удалось загрузить недопустимый пакет. + + Установка отменена из-за конфликта пользовательских узлов. + + + Перезапустите Dynamo, чтобы удалить конфликтующий пакет. + Не удается найти узел с таким идентификатором. @@ -3634,7 +3640,7 @@ _Файл - _Шаблон + Из шаблона... Рабочие пространства невозможно сохранить непосредственно в папке шаблонов. Выберите другую папку для сохранения файла. diff --git a/src/DynamoCoreWpf/Properties/Resources.zh-CN.resx b/src/DynamoCoreWpf/Properties/Resources.zh-CN.resx index abf5e3c849f..a5c77c44a1d 100644 --- a/src/DynamoCoreWpf/Properties/Resources.zh-CN.resx +++ b/src/DynamoCoreWpf/Properties/Resources.zh-CN.resx @@ -1146,6 +1146,12 @@ 无法加载无效的软件包。 + + 由于自定义节点冲突,安装已取消。 + + + 重新启动 Dynamo 以删除冲突的软件包。 + 找不到具有该 ID 的任何节点。 @@ -3632,7 +3638,7 @@ 文件(_F) - 模板(_T) + 从模板… 工作空间无法直接保存到“Templates”文件夹。请选择其他文件夹以保存文件。 diff --git a/src/DynamoCoreWpf/Properties/Resources.zh-TW.resx b/src/DynamoCoreWpf/Properties/Resources.zh-TW.resx index 8a24cbcc6bb..96358f03bdb 100644 --- a/src/DynamoCoreWpf/Properties/Resources.zh-TW.resx +++ b/src/DynamoCoreWpf/Properties/Resources.zh-TW.resx @@ -1146,6 +1146,12 @@ 無法載入無效的套件。 + + 安裝因自訂節點發生衝突而取消。 + + + 請重新啟動 Dynamo 移除衝突的套件。 + 找不到任何具有該 ID 的節點。 @@ -3633,7 +3639,7 @@ 檔案(_F) - 樣板(_T) + 從樣板... 無法將工作區直接儲存至「Templates」資料夾。請選擇其他資料夾儲存檔案。