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CD_A2plusupdater.py
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CD_A2plusupdater.py
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# -*- coding: utf-8 -*-
#***************************************************************************
#* *
#* Copyright (c) 2020 Dan Miel *
#* *
#* This program is free software; you can redistribute it and/or modify *
#* it under the terms of the GNU Lesser General Public License (LGPL) *
#* the License, or (at your option) any later version. *
#* for detail see the LICENCE text file. *
#* *
#* This program is distributed in the hope that it will be useful, *
#* but WITHOUT ANY WARRANTY; without even the implied warranty of *
#* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
#* GNU Library General Public License for more details. *
#* *
#* You should have received a copy of the GNU Library General Public *
#* License along with this program; if not, write to the Free Software *
#* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 *
#* USA *
#* *
#***************************************************************************
"""
This is to be used in conjunction with A2plus Assembly Workbench.
It records the features which are linked to the constraints and searches
for mating features after the part is replaced in the assembly.
"""
import os
import FreeCAD
import FreeCADGui
from PySide import QtUiTools
from PySide.QtGui import *
from PySide import QtGui, QtCore
import a2p_importpart
import a2plib
import CD_ConstraintViewer
from a2p_translateUtils import translate
class globaluseclass:
def __init__(self):
self.roundto = 5
self.partlabel = ''
self.partname = ''
self.notfoundfeatures = []
self.foundfeatures = []
self.alldicts = {}
self.clist = []
self.partobj = None
self.cylfaces = []
self.notcylfaces = []
self.partlog = []
def resetvars(self):
self.partlabel = ''
self.partname = ''
self.notfoundfeatures = []
self.foundfeatures = []
self.alldicts = {}
self.clist = []
self.partobj = None
self.cylfaces = []
self.notcylfaces = []
self.repaired = 0
g = globaluseclass()
class sideFuncs1():
def __init__(self):
pass
def opendoccheck(self):
doc = FreeCAD.activeDocument()
if doc is None:
msg = translate("A2plus", "A file must be selected to start this selector.") + "\n" + translate("A2plus", "Please open a file and try again.")
mApp(msg)
return('Nostart')
return()
sideFuncs = sideFuncs1()
class classFuncs():
def __init__(self):
pass
def selectfiles(self):
ret = sideFuncs.opendoccheck()
if ret == 'Nostart':
return('No')
partslist = FreeCADGui.Selection.getSelection()
if len(partslist) == 0:
mApp(translate("A2plus", "No parts were selected to update.") + "\n" + translate("A2plus", "Select one part and try again."))
return('No')
if len(partslist) > 1:
mApp(translate("A2plus", "I have limited the number of parts that can be updated to 1.") + "\n" + translate("A2plus", "Select one part and try again."))
return('No')
statusform.show()
statusform.txtboxstatus.setText(translate("A2plus", "Updating Assembly."))
statusform.update()
for num in range(0, len(partslist)):
partobj = partslist[num]
self.firstrun(partobj)
self.secondrun(False)
def firstrun(self, partobj):
g.resetvars() # reset Variables
g.partobj = partobj
g.partlabel =partobj.Label
partname = partobj.Name
g.partname = partobj.Name
g.shape1 = partobj.Shape
self.getfeatstomove()
FreeCADGui.updateGui()
return(partname)
def secondrun(self, newpart = False):
doc = FreeCAD.activeDocument()
if newpart is False:
savedAutoSolveState = a2plib.getAutoSolveState()
a2plib.setAutoSolve(False)
a2p_importpart.updateImportedParts(doc, True)
a2plib.setAutoSolve(savedAutoSolveState)
newobj = g.partobj
FreeCADGui.updateGui()
g.shape2 = newobj.Shape
getfacelists()
self.runpostchange()
doc.recompute()
FreeCADGui.updateGui()
statusform.Closeme()
def runpostchange(self):
doc = FreeCAD.activeDocument()
self.findfeats_attempt1()
doc.recompute()
FreeCADGui.updateGui()
doc = FreeCAD.activeDocument()
FreeCADGui.updateGui()
clist = []
for e in g.notfoundfeatures:
cobj = FreeCAD.ActiveDocument.getObject(e[0])
clist.append(cobj)
if len(clist) != 0:
CD_ConstraintViewer.form1.show()
CD_ConstraintViewer.form1.loadtable(clist)
else:
mApp(translate("A2plus", "Update complete.") + " " + translate("A2plus", "All surfaces found"))
print(translate("A2plus", "Update complete."))
print(translate("A2plus", "Total Constraints ") + str(len(g.clist)))
print(translate("A2plus", "Repaired constraints ") + (str(g.repaired )))
print(translate("A2plus", "Features not found ") + str(len(g.notfoundfeatures)))
def getfeatstomove(self):
doc = FreeCAD.activeDocument()
clist = selectforpart(g.partlabel)
g.clist = clist
featname = ''
di = {}
for cobj in clist:
""" get feature info before update."""
partname = g.partname
featname = ''
subElement = ""
subElement = ""
subobj1 = doc.getObject(cobj.Object1)
subobj2 = doc.getObject(cobj.Object2)
frompart = [g.partlabel, g.partname]
for i in range(0, len(frompart)):
partname = frompart[i]
if subobj1.Label == partname:
subElement = "SubElement1"
featname = cobj.SubElement1
if subobj2.Label == partname:
subElement = "SubElement2"
featname = cobj.SubElement2
if featname != '':
break
direction = 'N'
if hasattr(cobj, 'directionConstraint'):
direction = cobj.directionConstraint
""" dict is basic info for constraint
these next functions adds info for the subelements"""
if 'Face' in featname:
""" add face info """
facenum = int(featname[4:])
di = self.getfacebynum(facenum-1, g.shape1)
if 'Edge' in featname:
""" add edge info """
num = int(featname[4:])
num = num - 1
di = self.getedgebynum(num, g.shape1)
if 'V' in featname:
""" add Vertex info """
num = int(featname[6:])
num = num - 1
di = self.getvertexbynum(num, g.shape1)
d = {'Name': cobj.Name,
'cname': cobj.Name,
'featname': featname,
'subElement': subElement,
'dir': direction,
'newname': ''
}
d.update(di)
g.alldicts[cobj.Name] = d # Save the info to a larger dictionary
def getfacebynum (self, facenum, shape):
"""Get face info."""
face = shape.Faces[facenum]
area = rondnum(face.Area)
facepoints = []
center = -1
faceedges = face.Edges
# numofpoints = len(face.Vertexes)
for f0 in face.Vertexes: # Search the Vertexes of the face
point = FreeCAD.Vector(f0.Point.x, f0.Point.y, f0.Point.z)
x, y, z = point
loc = rondlist([x, y, z])
facepoints.append(loc)
# volume = rondnum(face.Volume)
radius = -1
surftype = face.Surface
surfstr = str(surftype)
if 'Cylinder' in surfstr:
surfstr = 'Cylinder'
radius = rondnum(surftype.Radius)
center = rondlist(face.Edges[0].CenterOfMass)
if 'Plane' in surfstr:
surfstr = 'Plane'
featdict = {'surftype': surfstr,
'area': area,
'facepoints': facepoints,
'center': center,
'radius': radius,
'edges': faceedges
}
return(featdict)
def getedgebynum (self, num, shape):
pnt2 = None
edge = shape.Edges[num]
length = rondnum(edge.Length)
center = edge.CenterOfMass
center = rondlist(center)
pnt1 = edge.Vertexes[0] # Basepoints
x1 = pnt1.Point.x
y1 = pnt1.Point.y
z1 = pnt1.Point.z
startpoint = rondlist([x1, y1, z1])
try:
pnt2 = edge.Vertexes[1] # Basepoints
x2 = pnt2.Point.x
y2 = pnt2.Point.y
z2 = pnt2.Point.z
endpoint = [x2, y2, z2]
endpoint = rondlist([x2, y2, z2])
except:
endpoint = ["-", "-", "-"]
radius = -1
vector = None
curvetype = ''
center = -1
tstr = str(edge.Curve)
if 'Line' in tstr:
curvetype ='line'
if 'Circle' in tstr:
curvetype ='circle'
radius = rondnum(edge.Curve.Radius)
center = rondlist(edge.CenterOfMass)
if 'Spline' in tstr:
curvetype ='spline' # A2 is not using these
d = {'curvetype':curvetype,
'obj':edge,
'length':length,
'startpoint':startpoint,
'center':center,
'endpoint':endpoint,
'radius':radius,
'vector':vector
}
return(d)
def getvertexbynum(self, num, shape):
v = shape.Vertexes[num]
x = v.Point.x
y = v.Point.y
z = v.Point.z
xyz = rondlist([x, y, z])
return({'xyz':xyz})
## post functions***********************************
def findfeats_attempt1(self):
"""Try to find features after the update."""
doc = FreeCAD.activeDocument()
for k, d in g.alldicts.items():
newfeat = ''
featname = d.get('featname')
if featname in g.foundfeatures:
newfeat = g.dOldNew.get(featname)
else:
if 'Face' in featname:
newfeat = self.findnewface_attempt1(d)
if 'Edge' in featname:
newfeat = self.findnewedge_attempt1(d)
if 'Vertex' in featname:
newfeat = self.findnewvertex_attempt1(d)
if newfeat =='' or newfeat == 'No':
g.notfoundfeatures.append([d.get('Name'), d])
pass
else:
if newfeat in g.foundfeatures == False:
g.foundfeatures.append(newfeat)
g.dOldNew[featname] = newfeat
self.swapfeature(newfeat, d)
doc.recompute()
if len(g.notfoundfeatures) > 0:
self.findfeats_attempt2()
def swapfeature(self, newfeat, d):
"""Add the new feature to the constraint."""
cname = d.get('cname')
g.partlog.append('Found ' + newfeat)
cobj = FreeCAD.ActiveDocument.getObject(cname)
mobj = FreeCAD.ActiveDocument.getObject(cname+'_mirror')
SubElement = d.get('subElement')
if SubElement == 'SubElement1':
if cobj.SubElement1 != newfeat:
cobj.SubElement1 = newfeat
mobj.SubElement1 = newfeat
g.repaired = g.repaired + 1
if SubElement == 'SubElement2':
if cobj.SubElement2 != newfeat:
cobj.SubElement2 = newfeat
mobj.SubElement2 = newfeat
g.repaired = g.repaired + 1
direction = d.get('dir')
if hasattr(cobj, 'directionConstraint'):
cobj.directionConstraint = direction
if hasattr(mobj, 'directionConstraint'):
mobj.directionConstraint = direction
return
# If not found on first attempt try again
def findfeats_attempt2(self):
newfeat = ''
notfoundtemp = g.notfoundfeatures
g.notfoundfeatures = []
for ea in notfoundtemp:
d = ea[1]
featname = d.get('featname')
if featname in g.foundfeatures:
newfeat = g.dOldNew.get(featname)
else:
if 'Face' in featname:
newfeat = self.findnewface_attempt2(d)
if 'Edge' in featname:
newfeat = self.findnewedge_attempt2(d)
if newfeat == 'No' or newfeat == '':
g.notfoundfeatures.append([d.get('Name'), d])
newfeat = 'None'
else:
if newfeat in g.foundfeatures == False:
g.foundfeatures.append(newfeat)
g.dOldNew[featname] = newfeat
self.swapfeature(newfeat, d)
def findnewface_attempt1(self, d):
# First attempt to find a face. Perfect fit is area the same and all points the same
face = ''
if d.get('surftype') == 'Cylinder':
face = self.findCylinderattempt1(d)
else:
for num in range(0, len(g.shape2.Faces)):
testd = self.getfacebynum(num, g.shape2)
if testd.get('surftype') != 'Cylinder':
if d.get('area') == testd.get('area')\
and d.get('facepoints') == testd.get('facepoints'):
face = 'Face' + str(num +1)
break
return(face)
def findnewface_attempt2(self, dict_):
""" second attempt ignores area; looks for points(perhaps this should be first
if holes are added area would change)"""
face = ''
if dict_.get('surftype') == 'Cylinder':
face = self.findCylinderattempt2(dict_)
else:
for num in range(0, len(g.shape2.Faces)):
testdict_ = self.getfacebynum(num, g.shape2)
if dict_.get('surftype') != 'Cylinder':
points = dict_.get('facepoints')
testpoints = testdict_.get('facepoints')
if len(points) < len(testpoints):
list1 = points
list2 = testpoints
else:
list1 = testpoints
list2 = points
match = 0
for vert in list1:
if vert in list2:
match = match+1
if match == len(list1):
face = 'Face' + str(num+1)
break
if face == '':
dedges = dict_.get('edges')
edge = dedges[0]
pnt1 = edge.Vertexes[0] # Basepoints
x = pnt1.Point.x
y = pnt1.Point.y
z = pnt1.Point.z
dlist = [rondnum(edge.Length), x, y, z]
for num in range(0, len(g.shape2.Faces)):
testdict_ = self.getfacebynum(num, g.shape2)
if dict_.get('surftype') != 'Cylinder':
ed = testdict_.get('edges')
for e in ed:
pnt1 = e.Vertexes[0] # Basepoints
x = pnt1.Point.x
y = pnt1.Point.y
z = pnt1.Point.z
tlist = [e.Length, x, y, z]
if dlist == tlist:
face = 'Face' + str(num+1)
break
return(face)
def findCylinderattempt1(self, dict_):
face = ''
for num in g.cylfaces:
testdict = self.getfacebynum(num, g.shape2)
if dict_.get('facepoints') == testdict.get('facepoints') and\
dict_.get('radius') == testdict.get('radius'):
face = 'Face' + str(num +1)
break
return(face)
def findCylinderattempt2(self, dict_):
#First attempt to find a face. Perfect fit is area = same all points = same
face = ''
ver1 = dict_.get('center')
for num in g.cylfaces:
testdict_ = self.getfacebynum(num, g.shape2)
ver2 = testdict_.get('center')
if ver1 == ver2:
face = 'Face' + str(num+1)
break
return(face)
def findnewedge_attempt1(self, dict_):
edge = ''
if dict_.get('curvetype') == 'circle':
for num in range(0, len(g.shape2.Edges)):
testdict_ = self.getedgebynum(num, g.shape2)
if dict_.get('radius') == testdict_.get('radius')\
and dict_.get('center') == testdict_.get('center'):
edge = 'Edge' + str(num +1)
break
else:
for num in g.notcylfaces:
testdict_ = self.getfacebynum(num, g.shape2)
if dict_.get('length') == testdict_.get('length')\
and dict_.get('center') == testdict_.get('center'):
edge ='Edge' + str(num +1)
break
return(edge)
def findnewedge_attempt2(self, dict_):
edge = ''
if dict_.get('curvetype') == 'circle':
center1 = dict_.get('center')
for num in range(0, len(g.shape2.Edges)):
testdict_ = self.getedgebynum(num, g.shape2)
center2 = testdict_.get('center')
if center1 == center2:
edge ='Edge' + str(num +1)
break
for num in range(0, len(g.shape2.Edges)):
testdict_ = self.getedgebynum(num, g.shape2)
if dict_.get('curvetype') == 'circle':
if testdict_.get('curvetype') == 'circle':
if dict_.get('startpoint') == testdict_.get('startpoint'):
edge ='Edge' + str(num +1)
break
return(edge)
def findnewvertex_attempt1(self, dict_):
vertex = ''
for num in range(0, len(g.shape2.Vertexes)):
test = self.getvertexbynum(num, g.shape2)
if dict_.get('xyz') == test.get('xyz'):
vertex = 'Vertex' + str(num +1)
return(vertex)
funcs = classFuncs()
def getfacelists():
g.cylfaces = []
g.notcylfaces = []
for num in range(0, len(g.shape2.Faces)):
if str(g.shape2.Faces[num].Surface) == '<Cylinder object>':
g.cylfaces.append(num)
elif str(g.shape2.Faces[num].Surface) == '<Plane object>':
g.notcylfaces.append(num)
def selectforpart(partlabel, selectType = 'std'):
#find the constraints for the part selected
doc = FreeCAD.activeDocument()
clist = []
pnamelist = []
pnamelist.append(partlabel)
for obj in FreeCAD.ActiveDocument.Objects: # Select constraints
if 'ConstraintInfo' in obj.Content:
if '_mirror' not in obj.Name:
subobj1 = doc.getObject(obj.Object1)
subobj2 = doc.getObject(obj.Object2)
part1name = subobj1.Label
part2name = subobj2.Label
if selectType == 'betweenonly':
clist.append(obj)
else:
if part1name in pnamelist or part2name in pnamelist:
clist.append(obj)
return(clist)
def rondnum(num, rndto = g.roundto, mmorin = 'mm'):
# round a number to digits in global
# left in mm for accuracy.
rn = round(num, rndto)
if mmorin == 'in':
rn = rn/25.4
return(rn)
def rondlist(inpList, inch = False):
x = inpList[0]
y = inpList[1]
z = inpList[2]
x = rondnum(x)
y = rondnum(y)
z = rondnum(z)
if inch:
x = x/25.4
y = y/25.4
z = z/25.4
return([x, y, z])
class mApp(QtGui.QWidget):
# for error messages
def __init__(self, msg, msgtype = 'ok'):
super().__init__()
self.initUI(msg)
def initUI(self, msg, msgtype = 'ok'):
self.setGeometry(800, 300, 300, 400)
if msgtype == 'ok':
buttonReply = QtGui.QMessageBox.question(self, translate("A2plus", "Information"), msg, QtGui.QMessageBox.Ok | QtGui.QMessageBox.Ok)
if msgtype == 'yn':
buttonReply = QtGui.QMessageBox.question(self, translate("A2plus", "Information"), msg, QtGui.QMessageBox.Yes | QtGui.QMessageBox.No, QtGui.QMessageBox.No)
if buttonReply == QtGui.QMessageBox.Yes:
return('y')
else:
return('n')
class formReport(QtGui.QDialog):
""" Form shows while updating edited parts. """
def __init__(self, name):
self.name = name
super(formReport, self).__init__()
self.setWindowTitle(translate("A2plus", "Constraint Checker"))
self.setWindowFlags(QtCore.Qt.WindowStaysOnTopHint)
self.setGeometry(300, 100, 300, 200) # xy , wh
self.setStyleSheet("font: 10pt arial MS")
self.txtboxstatus = QtGui.QTextEdit(self)
self.txtboxstatus.move(5,30)
self.txtboxstatus.setFixedWidth(250)
self.txtboxstatus.setFixedHeight(60)
self.lblviewlabel = QtGui.QLabel(self)
self.lblviewlabel.setText(translate("A2plus", "Status"))
self.lblviewlabel.move(5, 5)
self.lblviewlabel.setFixedWidth(250)
self.lblviewlabel.setFixedHeight(20)
self.lblviewlabel.setStyleSheet("font: 13pt arial MS")
def showme(self, msg):
print(translate("A2plus", "Showing editing part"))
self.show()
def Closeme(self):
self.close()
def closeEvent(self, event):
self.close()
statusform = formReport('statusform')
toolTipText = \
translate("A2plus",
'''
Updates the A2plus.assembly when parts are modified.
To update the assembly, select the part that you have modified and press the icon.
When the update has finished run the A2plus solver to vereify if there are broken constraints.
This is an attempt to reduce the number of broken constraints caused
when modifying a part from FreeCAD A2plus assembly program. This records the
constraints mating surfaces immediately before the update and tries to
reconnect them after the update.
If this fails you can undo this update by using the undo button
and running the standard A2plus updater.
'''
)
class rnp_Update_A2pParts:
def Activated(self):
#funcs.runinorder()
funcs.selectfiles()
def Deactivated(self):
"""This function is executed when the workbench is deactivated"""
FreeCADGui.Selection.clearSelection()
return
def GetResources(self):
mypath = os.path.dirname(__file__)
return {
'Pixmap': mypath + "/icons/a2p_Update.svg",
'MenuText': translate("A2plus", "Updates parts from the A2plus program that has been modified"),
'ToolTip': translate("A2plus", "Updates modified parts.")
}
FreeCADGui.addCommand('rnp_Update_A2pParts', rnp_Update_A2pParts())
#==============================================================================
#2020-08-06 Changed Lines 162 to 172 to open the viewer if there are missing features.