############################## ### DM2_w24 hu_05_setUp ### ### _diag / 2024 11 15 ### ### Lea Koraimann ### ############################## import rhinoscriptsyntax as rs import random, time, sys ### import random as rd sys.path.append("P:/") ### add path where "DM_lib.py" can be found !!! sys.path.append("P:/DM2/") ### add path where "DM_lib.py" can be found !!! sys.path.append("P:/dm2/") ### add path where "DM_lib.py" can be found !!! import DM_lib as dm ### reload(dm) ############################## rs.UnitSystem(4) # km = 5, meters = 4, cm = 3 etc rs.ShowGrid(None, 0) # grid > 0 = off rs.ShowGridAxes(None, 1) # y/y/z axen display > 0/1 = off/on rs.ViewDisplayMode(rs.CurrentView(), "wireframe") rs.Command("cplane w t enter", 0) # cPlane World Top dm.PointRadius(displayModeX=0, rad=3, styl=3) dm.printDisplay(0) # nomen est omen rs.EnableRedraw(0) ### MAC >> uncomment ! ###_________________________________________# ### basic settings for grid to fit UN_slab # ### # ! no need 2 change ! floors = H = dm.H = 40 # default=40 / incl roof slabs = L = dm.L = 11 # default=11 depth = D = dm.D = 4 # default= 4 / division in building_depth floorHeight = fH = dm.fH = 4.0 # default= 4.0 / 4.0*(H-1) = 156 meters # ############# # get gridCoords L*D*H = 1760 UnoGridCoords = dm.getUnoGridCoords() # get from DM_lib as dm #################___________________________# dm.newEmptyLayer("UNO::setUp::points", [150,150,200]) dm.newEmptyLayer("UNO::setUp::geo", [150, 20,150]) dm.newEmptyLayer("UNO::setUp::crv", [200, 100, 100]) dm.newEmptyLayer("UNO::setUp", [120,120,140]) ################## depthVec = dVec = rs.VectorUnitize(rs.VectorSubtract( dm.getUnoCoord(0, 0, 0), dm.getUnoCoord(0, 2, 0) )) lengthVec = lVec = rs.VectorUnitize(rs.VectorSubtract( dm.getUnoCoord(0, 0, 0), dm.getUnoCoord(1, 0, 0) )) ################## if 1: ### SETUP >> dont' exec @ homework ! if 1: rs.AddLine( dm.getUnoCoord(0, 0, 0), dm.getUnoCoord(1, 0, 0) ) rs.AddLine( dm.getUnoCoord(0, 0, 0), dm.getUnoCoord(0, 1, 0) ) rs.AddLine( dm.getUnoCoord(0, 0, 0), dm.getUnoCoord(0, 0, 1) ) # rs.ObjectColor(rs.AllObjects()[2], [0, 222, 0] ) # rs.ObjectColor(rs.AllObjects()[1], [222, 0, 0] ) # rs.ObjectColor(rs.AllObjects()[0], [0, 0, 222] ) rs.ObjectPrintWidth( rs.AllObjects()[0:3], 1.0 ) p0 = dm.getUnoCoord( 0, 0, 0) p1 = dm.getUnoCoord( 10, 0, 0) p2 = dm.getUnoCoord( 10, 3, 0) p3 = dm.getUnoCoord( 0, 3, 0) unoBaseCoords = [p0, p1, p2, p3, p0] unoBaseCrv = rs.AddCurve( unoBaseCoords, 1) unoTopCoords = [dm.getUnoCoord( 0, 0, 39), dm.getUnoCoord( 10, 0, 39), dm.getUnoCoord( 10, 3, 39), dm.getUnoCoord( 0, 3, 39), dm.getUnoCoord( 0, 0, 39), ] unoTopCrv = rs.AddCurve( unoTopCoords, 1) rs.ZoomExtents() if 1: ############################## rs.CurrentLayer("UNO::setUp::points") # rs.AddPoints( UnoGridCoords ) # for i in range(L): rs.ObjectColor( rs.AddTextDot( str(i), dm.getUnoCoord(i, 0, 0) ), [0, 222, 0] ) # for i in range(D): rs.ObjectColor( rs.AddTextDot( str(i), dm.getUnoCoord(0, i, 0) ), [222, 0, 0] ) # for i in range(H): rs.ObjectColor( rs.AddTextDot( str(i), dm.getUnoCoord(0, 0, i) ), [0, 0, 222] ) ############################## if 0: rs.CurrentLayer("UNO::setUp::crv") for i in range(8): p0 = dm.getUnoCoord( random.randint(0,L-1), random.randint(0,D-1), random.randint(0,H-1) ) p1 = dm.getUnoCoord( random.randint(0,L-1), random.randint(0,D-1), random.randint(0,H-1) ) rs.AddCurve( [p0, p1] ) dm.textDots( [p0, p1] ) rs.ZoomExtents() if 0: coords = UnoGridCoords[:] ### make COPY - not equal ! #random.shuffle( coords ) rs.AddCurve( coords[0:], 2 ) #_____________________________here you go: dm.newEmptyLayer("myPROJ", [100,100,100]) #Gebaeude kreieren if 1: unoP1 = dm.getUnoCoord( 0, 0, 0) unoP2 = dm.getUnoCoord( 10, 0, 0) unoP3 = dm.getUnoCoord( 10, 3, 0) unoP4 = dm.getUnoCoord( 0, 3, 0) unoP5 = dm.getUnoCoord( 0, 0, 39) unoP6 = dm.getUnoCoord( 10, 0, 39) unoP7 = dm.getUnoCoord( 10, 3, 39) unoP8 = dm.getUnoCoord( 0, 3, 39) #Punktedefinierung unoTop = [unoP5,unoP6,unoP7,unoP8,unoP5] unoBottom = [unoP1,unoP2,unoP3,unoP4,unoP1] #Verbindung unoTopCrv = rs.AddCurve( unoTop, 1) unoBottomCrv = rs.AddCurve( unoBottom, 1) unoCrn1 = rs.AddLine(unoP1,unoP5) unoCrn2 = rs.AddLine(unoP2,unoP6) unoCrn3 = rs.AddLine(unoP3,unoP7) unoCrn4 = rs.AddLine(unoP4,unoP8) ############################# p0 = dm.getUnoCoord(0,0,39) p1=rs.VectorAdd(dm.getUnoCoord(0,0,39), rs.VectorScale(dVec, 50.0)) p2=rs.VectorAdd(dm.getUnoCoord(0,0,30), rs.VectorScale(dVec, 50.0)) p3=rs.VectorAdd(dm.getUnoCoord(10,0,25), rs.VectorScale(dVec, 50.0)) p4=rs.VectorAdd(dm.getUnoCoord(10,2,30), rs.VectorScale(dVec, 50.0)) p5=rs.VectorAdd(dm.getUnoCoord(10,0,24), rs.VectorScale(dVec, -20.0)) p6=rs.VectorAdd(dm.getUnoCoord(10,1,20), rs.VectorScale(dVec, -15.0)) p7=rs.VectorAdd(dm.getUnoCoord(10,3,18), rs.VectorScale(lVec, -25.0)) p8=rs.VectorAdd(dm.getUnoCoord(10,3,18), rs.VectorScale(dVec, -5.0)) p9=rs.VectorAdd(dm.getUnoCoord(10,3,14), rs.VectorScale(dVec, -2.0)) p10=rs.VectorAdd(dm.getUnoCoord(3,3,9), rs.VectorScale(lVec, 10.0)) p11=rs.VectorAdd(dm.getUnoCoord(2,3,8), rs.VectorScale(lVec, 20.0)) p12=rs.VectorAdd(dm.getUnoCoord(0,3,8), rs.VectorScale(lVec, 10.0)) p13=rs.VectorAdd(dm.getUnoCoord(0,0,7), rs.VectorScale(dVec, 10.0)) p14=rs.VectorAdd(dm.getUnoCoord(0,0,4), rs.VectorScale(dVec, 10.0)) p15=rs.VectorAdd(dm.getUnoCoord(2,0,6), rs.VectorScale(dVec,5.0)) p16=rs.VectorAdd(dm.getUnoCoord(3,0,3), rs.VectorScale(dVec,5.0)) p17=rs.VectorAdd(dm.getUnoCoord(8,0,2), rs.VectorScale(lVec,20.0)) p18=rs.VectorAdd(dm.getUnoCoord(9,1,1), rs.VectorScale(lVec, 0.0)) crvPts = [p0,p1,p2,p3,p4,p5,p6,p7,p8,p9,p10,p11,p12,p13,p14,p15,p16,p17,p18] crv = rs.AddCurve(crvPts, 2) ####################### dom = rs.CurveDomain( crv )[1] print dom anzahl = 30 circDivision = 30*3 rad = 5 allCoords = [] for i in range(anzahl+1): para = dom/anzahl*i pX = rs.EvaluateCurve( crv, para) rs.AddPoint( pX ) planeX = rs.CurvePerpFrame( crv, para ) circ = rs.AddCircle(planeX, rad) coords = rs.DivideCurve(circ, circDivision, 0) rs.DeleteObject( circ ) allCoords.append( coords ) spant = rs.AddCurve( coords[int(circDivision*0.5): ], 1 ) rs.ObjectPrintWidth( spant, 1.5) rs.ObjectColor( spant, [128,128,0] ) midPt = rs.CurveMidPoint( spant ) para = rs.CurveClosestPoint(unoBaseCrv, midPt) pUnten = rs.EvaluateCurve(unoBaseCrv, para) stuetze = rs.AddLine( midPt, pUnten) rs.ObjectPrintWidth( stuetze, 1) i=int(circDivision*0.) #Roehrenrutsche for i in range(int(circDivision*0.), circDivision): coords = [] for coordList in allCoords: p0 = coordList[i] coords.append( p0 ) rs.AddCurve( coords, 2 ) if i%5==0: rs.Redraw() # Festlegen der Farbe aller Objekte auf Oliv for obj in rs.AllObjects(): rs.ObjectColor(obj, [128, 128, 0]) #____________________________:here you end ################################### rs.ZoomExtents() rs.EnableRedraw(1) ### 4 the MACs dm.printDisplay(1) dm.newEmptyLayer("Default")