mirror of
https://git.salome-platform.org/gitpub/modules/geom.git
synced 2024-12-28 02:10:36 +05:00
some cleaning and update of the dialog box
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29
src/Tools/CMakeLists.txt
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29
src/Tools/CMakeLists.txt
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@ -0,0 +1,29 @@
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# Copyright (C) 2012-2014 EDF R&D
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#
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# This library is free software; you can redistribute it and/or
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# modify it under the terms of the GNU Lesser General Public
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# License as published by the Free Software Foundation; either
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# version 2.1 of the License, or (at your option) any later version.
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#
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# This library is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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# Lesser General Public License for more details.
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#
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# You should have received a copy of the GNU Lesser General Public
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# License along with this library; if not, write to the Free Software
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# Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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#
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# See http://www.salome-platform.org/ or email : webmaster.salome@opencascade.com
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#
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ADD_SUBDIRECTORY(t_shape)
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# scripts / static
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SET(plugin_SCRIPTS
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geom_plugins.py
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)
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# --- rules ---
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SALOME_INSTALL_SCRIPTS("${plugin_SCRIPTS}" ${SALOME_GEOM_INSTALL_PLUGINS})
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@ -35,9 +35,9 @@ def t_shape_fluid(context):
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# gui and used to create the shape of the tube.
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dialog.exec_()
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if dialog.wasOk():
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r1, r2, h1, h2 = dialog.getData()
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r1, r2, h1, h2, thickness = dialog.getData()
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#QMessageBox.about(None, "Building in progress", "building shape, please be patient")
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shape = t_shape_builder.build_shape(activeStudy, r1, r2, h1, h2)
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shape = t_shape_builder.build_shape(activeStudy, r1, r2, h1, h2, thickness)
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entry = xalome.addToStudy(activeStudy, shape, "T_shape_fluid" )
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xalome.displayShape(entry)
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#if dialog.wasOk():
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@ -7,6 +7,7 @@ import GEOM
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from salome.geom import geomBuilder
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import math
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import SALOMEDS
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import time
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def demidisk(study, r1, a1, roty=0, solid_thickness=0):
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@ -47,26 +48,31 @@ def demidisk(study, r1, a1, roty=0, solid_thickness=0):
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arc1 = geompy.MakeArc(v[1], v7, v[3])
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l[0] = geompy.MakeLineTwoPnt(v[1], v[3])
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face1 = geompy.MakeFaceWires([arc1, l[0]], 1)
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part1 = geompy.MakePartition([face1], [l[2], l[4], l[5], l[6], l[7]], [], [], geompy.ShapeType["FACE"], 0, [], 0, True)
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if with_solid:
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# Vertices
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# Add some faces corresponding to the solid layer outside
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# the fluid part
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# --- Vertices
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v0 = geompy.MakeVertex(0, r1 + solid_thickness, 0)
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v1 = geompy.MakeRotation(v0, OX, a1*math.pi/180.0)
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v2 = geompy.MakeRotation(v0, OX, math.pi - (a1*math.pi/180.0))
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v3 = geompy.MakeRotation(v0, OX, math.pi)
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v.extend([v0,v1,v3,v2]) # The order is important for use in pointsProjetes
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# --- Lines
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l0 = geompy.MakeLineTwoPnt(v[1], v0)
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l2 = geompy.MakeRotation(l0, OX, a1*math.pi/180.0)
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l3 = geompy.MakeRotation(l0, OX, math.pi - (a1*math.pi/180.0))
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# --- Faces
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face2 = geompy.MakeRevolution(l0, OX, a1*math.pi/180.0)
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face3 = geompy.MakeRevolution(l2, OX, math.pi - 2*a1*math.pi/180.0)
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face4 = geompy.MakeRevolution(l3, OX, a1*math.pi/180.0)
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part0 = geompy.MakePartition([face1], [l[2], l[4], l[5], l[6], l[7]], [], [], geompy.ShapeType["FACE"], 0, [], 0, True)
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compound1 = geompy.MakeCompound([part0, face2, face3, face4])
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# --- Compound of the "fluid part" of the divided disk and the additional faces
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compound1 = geompy.MakeCompound([part1, face2, face3, face4])
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# --- Glue edges
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part1 = geompy.MakeGlueEdges(compound1,1e-7)
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else:
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part1 = geompy.MakePartition([face1], [l[2], l[4], l[5], l[6], l[7]], [], [], geompy.ShapeType["FACE"], 0, [], 0, True)
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if roty != 0:
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vrot = [ geompy.MakeRotation(vert, OY, roty*math.pi/180.0) for vert in v ]
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lrot = [ geompy.MakeRotation(lin, OY, roty*math.pi/180.0) for lin in l ]
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@ -85,7 +91,6 @@ def pointsProjetes(study, vref, face):
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for i,v in enumerate(vproj):
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dist = [ (geompy.MinDistance(v, vr), j) for j,vr in enumerate(vref) ]
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dist.sort()
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#print dist
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if dist[0][0] < 1.e-3:
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vord[dist[0][1]] = vface[i]
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return vord
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@ -107,6 +112,8 @@ def arcsProjetes(study, vf, face):
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return lord
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def build_shape(study, r1, r2, h1, h2, solid_thickness=0):
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""" Builds the final shape """
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if solid_thickness < 1e-7:
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with_solid = False
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else:
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@ -124,16 +131,13 @@ def build_shape(study, r1, r2, h1, h2, solid_thickness=0):
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ratio = float(r2)/float(r1)
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if ratio > (1.0 -seuilmax):
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a1 = 45.0*(1.0 -ratio)/seuilmax
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"""
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res = geompy.MakeCompound([demicyl1,demicyl2])
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return res
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"""
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# --- creation des faces de la jonction
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# --- Creation of the jonction faces
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[faci, sect45, arc1, l1, lord90, lord45, edges, arcextru] = jonction(study, r1, r2,\
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h1, h2, a1)
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if with_solid:
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# The same code is executed again with different external radiuses in order
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# to get the needed faces and edges to build the solid layer of the pipe
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[faci_ext, sect45_ext, arc1_ext, l1_ext, \
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lord90_ext, lord45_ext, edges_ext, arcextru_ext] = jonction(study, r1 + solid_thickness, r2 + solid_thickness,\
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h1, h2, a1)
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@ -149,17 +153,12 @@ def build_shape(study, r1, r2, h1, h2, solid_thickness=0):
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geompy.addToStudy(faces_jonction_ext[i], "faci_ext_%d"%i)
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# --- extrusion droite des faces de jonction, pour reconstituer les demi cylindres
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# TODO : ajouter les faces nécessaires à sect45 dans le cas avec solide
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if with_solid:
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sect45 = geompy.MakeCompound([sect45]+faces_jonction_ext[-3:])
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sect45 = geompy.MakeGlueEdges(sect45, 1e-7)
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#return sect45, faces_jonction_ext[-3:]
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extru1 = geompy.MakePrismVecH(sect45, OX, h1+10)
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#base2 = geompy.MakeCompound(faci[5:])
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#base2 = geompy.MakeGlueEdges(base2, 1e-7)
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# RNC : perf
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faces_coupe = faci[5:]
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if with_solid:
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faces_coupe = faci[5:]+faces_jonction_ext[:3]
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@ -177,22 +176,22 @@ def build_shape(study, r1, r2, h1, h2, solid_thickness=0):
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box = geompy.MakeBox(0, -2*(r1+h1), -2*(r1+h1), 2*(r1+h1), 2*(r1+h1), 2*(r1+h1))
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rot = geompy.MakeRotation(box, OY, 45*math.pi/180.0)
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# NOTE: The following Cut takes almost half of the total execution time
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garder = geompy.MakeCutList(demiCylindre, [extru2, rot], True)
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geompy.addToStudy(garder,"garder")
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faces_coupe = faci[:5]
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if with_solid:
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faces_coupe.extend(faces_jonction_ext[-7:])
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t4=time.time()
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raccord = geompy.MakePartition([garder], faces_coupe + [arcextru], [], [], geompy.ShapeType["SOLID"], 0, [], 0, True)
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assemblage = geompy.MakeCompound([raccord, extru1, extru2])
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assemblage = geompy.MakeGlueFaces(assemblage, 1e-7)
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# RNC : perf
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#assemblage = geompy.MakePartition([raccord, extru1, extru2], [], [], [], geompy.ShapeType["SOLID"], 0, [], 0, True)
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#return extru2, garder, raccord
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box = geompy.MakeBox(-1, -(r1+r2+2*solid_thickness), -1, h1, r1+r2+2*solid_thickness, h2)
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geompy.addToStudy(box, "box")
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# NOTE: This operation takes about 1/4 of the total execution time
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final = geompy.MakeCommonList([box, assemblage], True)
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# --- Partie inférieure
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@ -212,6 +211,9 @@ def build_shape(study, r1, r2, h1, h2, solid_thickness=0):
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def jonction(study, r1, r2, h1, h2, a1):
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""" Builds the jonction faces and
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returns what is needed to build the whole pipe
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"""
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O = geompy.MakeVertex(0, 0, 0)
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OX = geompy.MakeVectorDXDYDZ(1, 0, 0)
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@ -221,9 +223,7 @@ def jonction(study, r1, r2, h1, h2, a1):
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# --- sections droites des deux demi cylindres avec le partionnement
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v1, l1, arc1, part1 = demidisk(study, r1, a1, 0.)
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v2, l2, arc2, part2 = demidisk(study, r2, a1, 90.0)
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#elems_disk1 = [v1, l1, arc1, part1]
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#elems_disk2 = [v2, l2, arc2, part2]
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# --- extrusion des sections --> demi cylindres de travail, pour en extraire les sections utilisées au niveau du Té
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# et enveloppe cylindrique du cylindre principal
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@ -264,23 +264,11 @@ def jonction(study, r1, r2, h1, h2, a1):
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geompy.addToStudyInFather(sect90, l, 'l%d'%i)
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# --- abaissement des quatre points centraux de la section du cylindre secondaire
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#if with_solid:
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#dz = -(r2 + solid_thickness)/2.0
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#else:
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#dz = -r2/2.0
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dz = -r2/2.0
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for i in (0, 2, 4, 5):
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vord90[i] = geompy.TranslateDXDYDZ(vord90[i], 0, 0, dz, True)
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geompy.addToStudyInFather(sect90, vord90[i], 'vm%d'%i)
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#if with_solid:
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#for i in (1, 3, 6, 7):
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#vord90[i] = geompy.TranslateDXDYDZ(vord90[i], 0, 0, dz*solid_thickness/(r2+solid_thickness), True)
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"""
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res=vord90
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return res
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"""
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# --- création des deux arêtes curvilignes sur l'enveloppe cylindrique du cylindre principal, à la jonction
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@ -301,9 +289,7 @@ def jonction(study, r1, r2, h1, h2, a1):
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secpart = geompy.MakePartition([section], [sect45, sect90], [], [], geompy.ShapeType["EDGE"], 0, [], 0, True)
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geompy.addToStudy(secpart, "secpart%d"%i)
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lsec = geompy.ExtractShapes(secpart, geompy.ShapeType["EDGE"], True)
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#print "len(lsec)", len(lsec)
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# TODO : revoir ça dans le cas avec solide
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for l in lsec:
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pts = geompy.ExtractShapes(l, geompy.ShapeType["VERTEX"], True)
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if (((geompy.MinDistance(pts[0], p0) < 0.001) and (geompy.MinDistance(pts[1], p1) < 0.001)) or
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@ -311,9 +297,6 @@ def jonction(study, r1, r2, h1, h2, a1):
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curv[i+2] =l
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print "curv_%d OK"%i
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break
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# RNC : commente temporairement
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#for i,l in enumerate(curv):
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# geompy.addToStudyInFather(arcextru, l, "curv%d"%i)
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# --- creation des arêtes droites manquantes, des faces et volumes pour les quatre volumes de la jonction
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@ -44,8 +44,9 @@ class TShapeDialog(QtGui.QDialog):
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r2 = self.ui.doubleSpinBox_2.value()
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h1 = self.ui.doubleSpinBox_3.value()
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h2 = self.ui.doubleSpinBox_4.value()
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thickness = self.ui.doubleSpinBox_5.value()
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return r1, r2, h1, h2
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return r1, r2, h1, h2, thickness
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def reject(self):
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self._wasOk = False
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@ -6,15 +6,15 @@
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<rect>
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<x>0</x>
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<y>0</y>
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<width>321</width>
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<height>242</height>
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<width>349</width>
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<height>283</height>
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</rect>
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</property>
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<property name="windowTitle">
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<string>Dialog</string>
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</property>
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<layout class="QVBoxLayout" name="verticalLayout">
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<item>
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<layout class="QGridLayout" name="gridLayout_3">
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<item row="0" column="0">
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<layout class="QGridLayout" name="gridLayout">
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<item row="2" column="1">
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<widget class="QDoubleSpinBox" name="doubleSpinBox_2"/>
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@ -58,14 +58,28 @@
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</item>
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</layout>
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</item>
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<item>
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<widget class="QCheckBox" name="checkBox">
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<property name="text">
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<string>Build solid part</string>
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</property>
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</widget>
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<item row="1" column="0">
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<layout class="QGridLayout" name="gridLayout_2">
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<item row="0" column="0">
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<widget class="QCheckBox" name="checkBox">
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<property name="text">
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<string>Build solid part</string>
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</property>
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</widget>
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</item>
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<item row="1" column="0">
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<widget class="QLabel" name="label_5">
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<property name="text">
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<string>Solid thickness</string>
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</property>
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</widget>
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</item>
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<item row="1" column="1">
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<widget class="QDoubleSpinBox" name="doubleSpinBox_5"/>
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</item>
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</layout>
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</item>
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<item>
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<item row="2" column="0">
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<widget class="QDialogButtonBox" name="buttonBox">
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<property name="orientation">
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<enum>Qt::Horizontal</enum>
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@ -86,12 +100,12 @@
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<slot>accept()</slot>
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<hints>
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<hint type="sourcelabel">
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<x>248</x>
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<y>254</y>
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<x>205</x>
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<y>241</y>
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</hint>
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<hint type="destinationlabel">
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<x>157</x>
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<y>274</y>
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<y>250</y>
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</hint>
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</hints>
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</connection>
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@ -102,12 +116,44 @@
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<slot>reject()</slot>
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<hints>
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<hint type="sourcelabel">
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<x>316</x>
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<y>260</y>
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<x>205</x>
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<y>241</y>
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</hint>
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<hint type="destinationlabel">
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<x>286</x>
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<y>274</y>
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<x>214</x>
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<y>250</y>
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</hint>
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</hints>
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</connection>
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<connection>
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<sender>checkBox</sender>
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<signal>clicked(bool)</signal>
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<receiver>label_5</receiver>
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<slot>setEnabled(bool)</slot>
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<hints>
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<hint type="sourcelabel">
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<x>89</x>
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<y>184</y>
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</hint>
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<hint type="destinationlabel">
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<x>107</x>
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<y>205</y>
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</hint>
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</hints>
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</connection>
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<connection>
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<sender>checkBox</sender>
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<signal>clicked(bool)</signal>
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<receiver>doubleSpinBox_5</receiver>
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<slot>setEnabled(bool)</slot>
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<hints>
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<hint type="sourcelabel">
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<x>140</x>
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<y>178</y>
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</hint>
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<hint type="destinationlabel">
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<x>277</x>
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<y>212</y>
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</hint>
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</hints>
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</connection>
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@ -2,7 +2,7 @@
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# Form implementation generated from reading ui file 't_shape_dialog.ui'
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#
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# Created: Thu Jun 19 11:13:43 2014
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# Created: Tue Nov 4 16:52:09 2014
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# by: PyQt4 UI code generator 4.9.6
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#
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# WARNING! All changes made in this file will be lost!
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@ -26,9 +26,9 @@ except AttributeError:
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class Ui_Dialog(object):
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def setupUi(self, Dialog):
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Dialog.setObjectName(_fromUtf8("Dialog"))
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Dialog.resize(331, 242)
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self.verticalLayout = QtGui.QVBoxLayout(Dialog)
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self.verticalLayout.setObjectName(_fromUtf8("verticalLayout"))
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Dialog.resize(349, 283)
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self.gridLayout_3 = QtGui.QGridLayout(Dialog)
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self.gridLayout_3.setObjectName(_fromUtf8("gridLayout_3"))
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self.gridLayout = QtGui.QGridLayout()
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self.gridLayout.setObjectName(_fromUtf8("gridLayout"))
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self.doubleSpinBox_2 = QtGui.QDoubleSpinBox(Dialog)
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@ -55,19 +55,30 @@ class Ui_Dialog(object):
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self.label_4 = QtGui.QLabel(Dialog)
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self.label_4.setObjectName(_fromUtf8("label_4"))
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self.gridLayout.addWidget(self.label_4, 4, 0, 1, 1)
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self.verticalLayout.addLayout(self.gridLayout)
|
||||
self.gridLayout_3.addLayout(self.gridLayout, 0, 0, 1, 1)
|
||||
self.gridLayout_2 = QtGui.QGridLayout()
|
||||
self.gridLayout_2.setObjectName(_fromUtf8("gridLayout_2"))
|
||||
self.checkBox = QtGui.QCheckBox(Dialog)
|
||||
self.checkBox.setObjectName(_fromUtf8("checkBox"))
|
||||
self.verticalLayout.addWidget(self.checkBox)
|
||||
self.gridLayout_2.addWidget(self.checkBox, 0, 0, 1, 1)
|
||||
self.label_5 = QtGui.QLabel(Dialog)
|
||||
self.label_5.setObjectName(_fromUtf8("label_5"))
|
||||
self.gridLayout_2.addWidget(self.label_5, 1, 0, 1, 1)
|
||||
self.doubleSpinBox_5 = QtGui.QDoubleSpinBox(Dialog)
|
||||
self.doubleSpinBox_5.setObjectName(_fromUtf8("doubleSpinBox_5"))
|
||||
self.gridLayout_2.addWidget(self.doubleSpinBox_5, 1, 1, 1, 1)
|
||||
self.gridLayout_3.addLayout(self.gridLayout_2, 1, 0, 1, 1)
|
||||
self.buttonBox = QtGui.QDialogButtonBox(Dialog)
|
||||
self.buttonBox.setOrientation(QtCore.Qt.Horizontal)
|
||||
self.buttonBox.setStandardButtons(QtGui.QDialogButtonBox.Cancel|QtGui.QDialogButtonBox.Ok)
|
||||
self.buttonBox.setObjectName(_fromUtf8("buttonBox"))
|
||||
self.verticalLayout.addWidget(self.buttonBox)
|
||||
self.gridLayout_3.addWidget(self.buttonBox, 2, 0, 1, 1)
|
||||
|
||||
self.retranslateUi(Dialog)
|
||||
QtCore.QObject.connect(self.buttonBox, QtCore.SIGNAL(_fromUtf8("accepted()")), Dialog.accept)
|
||||
QtCore.QObject.connect(self.buttonBox, QtCore.SIGNAL(_fromUtf8("rejected()")), Dialog.reject)
|
||||
QtCore.QObject.connect(self.checkBox, QtCore.SIGNAL(_fromUtf8("clicked(bool)")), self.label_5.setEnabled)
|
||||
QtCore.QObject.connect(self.checkBox, QtCore.SIGNAL(_fromUtf8("clicked(bool)")), self.doubleSpinBox_5.setEnabled)
|
||||
QtCore.QMetaObject.connectSlotsByName(Dialog)
|
||||
|
||||
def retranslateUi(self, Dialog):
|
||||
@ -77,8 +88,8 @@ class Ui_Dialog(object):
|
||||
self.label_2.setText(_translate("Dialog", "Small pipe radius", None))
|
||||
self.label_4.setText(_translate("Dialog", "Small pipe height", None))
|
||||
self.checkBox.setText(_translate("Dialog", "Build solid part", None))
|
||||
|
||||
|
||||
self.label_5.setText(_translate("Dialog", "Solid thickness", None))
|
||||
|
||||
if __name__ == "__main__":
|
||||
import sys
|
||||
app = QtGui.QApplication(sys.argv)
|
||||
@ -88,3 +99,5 @@ if __name__ == "__main__":
|
||||
Dialog.show()
|
||||
sys.exit(app.exec_())
|
||||
|
||||
|
||||
|
Loading…
Reference in New Issue
Block a user