################################### ### DM2_w24 # AGruber@tugraz.at ### ### hu_06 UN_headquaters NYC ### ###################################################### ### paneling / new dimensions ### 87.5 x 22.0 meters (was lenY = 116.56 / lenX = 28.18) ################################### ###################################################### ############################## import rhinoscriptsyntax as rs import random, time, sys ### sys.path.append("P:/") ### 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(1) # nomen est omen rs.EnableRedraw(0) ###_________________________________________# ### basic settings for grid to fit UN_slab # ### # 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 from DM_lib as dm: UnoGridCoords = dm.UnoGridCoords # get gridCoords L*D*H = 1760 UnoPanelCoords = dm.UnoPanelCoords # get panelCoords [frontPanels, backPanels, sidePanels, upSidePanels] / default arguments s.u. ################____________________________# ################ lengthVec = lVec = rs.VectorUnitize(rs.VectorSubtract( dm.getUnoCoord(0, 0, 0), dm.getUnoCoord(1, 0, 0) )) ## rs.AddPoint( dm.getUnoCoord(1, 0, 0) ) depthVec = dVec = rs.VectorUnitize(rs.VectorSubtract( dm.getUnoCoord(0, 1, 0), dm.getUnoCoord(0, 0, 0) )) ## rs.AddPoint( dm.getUnoCoord(0, 1, 0) ) ################ ########################################################################################### UnoPanelCoords = dm.getUNpanelCoords(anzL=10*7, anzH=39, anzD=3, stepL=1, stepH=1, stepD=1) ### = all ~windows_panels BigPanelCoords = dm.getUNpanelCoords(anzL=10*1, anzH=39, anzD=3, stepL=2, stepH=6, stepD=2) ### = all ~windows_panels UnoPanelCoords = dm.getUNpanelCoords(anzL=10*1, anzH=39*2, anzD=3, stepL=2, stepH=3, stepD=2) ### = standard for hu_06 ########################################################################################### ########################################################## frontPanels = UnoPanelCoords[0] ### list of coordLists ! backPanels = UnoPanelCoords[1] sidePanels = UnoPanelCoords[2] upSidePanels = UnoPanelCoords[3] allPanels = UnoPanelCoords[4] ################################# dm.newEmptyLayer("UNO::setUp", [120,120,140]) if 1: ### SETUP >> dont' exec @ homework ! rs.ObjectColor(rs.AddCurve( [dm.getUnoCoord(0,0,0), dm.getUnoCoord(0,0,39), dm.getUnoCoord(10,0,39), dm.getUnoCoord(10,0,0), dm.getUnoCoord(10,3,0), dm.getUnoCoord(0,3,0), dm.getUnoCoord(0,3,39), dm.getUnoCoord(10,3,39)], 1), [100,0,200]) rs.ObjectColor(rs.AddLine( dm.getUnoCoord(0, 0, 0), dm.getUnoCoord(0, 1, 0) ), [222, 0, 0] ) rs.ObjectColor(rs.AddLine( dm.getUnoCoord(0, 0, 0), dm.getUnoCoord(1, 0, 0) ), [0, 222, 0] ) rs.ObjectColor(rs.AddLine( dm.getUnoCoord(0, 0, 0), dm.getUnoCoord(0, 0, 2) ), [0, 0, 222] ) rs.ObjectPrintWidth( rs.AllObjects()[0:4], 1.0 ) rs.ZoomExtents() #for coords in BigPanelCoords[4]: rs.AddCurve( coords, 1 ) #for list in frontPanels: # rs.AddCurve( list, 1) # #dm.textDots( frontPanels[0] ) #dm.textDots( frontPanels[13] ) # #rs.AddSrfPt( frontPanels[13] ) #_____________________________here you go: def myPanel(panel, stockwerk, farbwechsel, abstand, farbe1=[100, 100, 100], farbe2=[150, 150, 150]): p0, p1, p2, p3 = panel nVec = dm.normVec3pnts(p0, p1, p2) NVEC = rs.VectorScale(nVec, abstand) multi = 1.5 #Abstand zwischen den Panels coordsI = [dm.pntInbetween(p0, p2, multi), dm.pntInbetween(p3, p1, multi), dm.pntInbetween(p2, p0, multi), dm.pntInbetween(p1, p3, multi), dm.pntInbetween(p0, p2, multi)] diviO = 0.6 #Abstand zwischen den Panels Aussen coordsA2 = [dm.pntInbetween(p0, p2, diviO), dm.pntInbetween(p1, p3, diviO), dm.pntInbetween(p2, p0, diviO), dm.pntInbetween(p3, p1, diviO), dm.pntInbetween(p0, p2, diviO)] for i, cor in enumerate(coordsA2): coordsA2[i] = rs.VectorAdd(cor, NVEC) # Kurven erstellen innen = rs.AddCurve(coordsI, 10) # Innenkurve aussen = rs.AddCurve(coordsA2, 10) # Aussenkurve # Farbe wechseln je nach Stockwerk if (stockwerk // farbwechsel) % 2 == 0: linienfarbe = farbe1 else: linienfarbe = farbe2 anz = 40 coordsAUSSEN = rs.DivideCurve(aussen, anz, 0) coordsINNEN = rs.DivideCurve(innen, anz, 0) for i in range(anz): rs.ObjectColor(rs.AddCurve([coordsAUSSEN[i], coordsINNEN[i]], 2), linienfarbe) rs.ObjectColor(innen, linienfarbe) rs.ObjectColor(aussen, linienfarbe) stockwerke_pro_panel = len(frontPanels) // 40 for idx, panel in enumerate(frontPanels + sidePanels): stockwerk = idx // stockwerke_pro_panel myPanel(panel, stockwerk, farbwechsel=5, abstand=10, farbe1=[0, 0, 0], farbe2=[random.randint(0,255), random.randint(0,255), random.randint(0,255)]) rs.ObjectPrintWidth( rs.AllObjects(), 0.3 ) #Linienstaerke der Panels #____________________________:here you end ################################# #rs.ZoomExtents() rs.EnableRedraw(1) ### 4 the MACs dm.printDisplay(1) dm.newEmptyLayer("Default")