Updated build script to create win32/linux/macos versions. Fixed the defaults to they work with PLA. Fixed the temperature plugin default "ON" problem. Removed all profiles except for PLA.
95 lines
3.9 KiB
Python
95 lines
3.9 KiB
Python
"""
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Boolean geometry carve.
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"""
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from __future__ import absolute_import
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#Init has to be imported first because it has code to workaround the python bug where relative imports don't work if the module is imported as a main module.
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import __init__
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from fabmetheus_utilities.geometry.geometry_tools import path
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from fabmetheus_utilities.geometry.geometry_utilities.evaluate_elements import setting
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from fabmetheus_utilities.geometry.geometry_utilities import boolean_geometry
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from fabmetheus_utilities.geometry.geometry_utilities import evaluate
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from fabmetheus_utilities.geometry.geometry_utilities import matrix
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from fabmetheus_utilities.geometry.solids import triangle_mesh
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from fabmetheus_utilities import euclidean
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from fabmetheus_utilities import xml_simple_reader
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__author__ = 'Enrique Perez (perez_enrique@yahoo.com)'
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__credits__ = 'Art of Illusion <http://www.artofillusion.org/>'
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__date__ = '$Date: 2008/02/05 $'
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__license__ = 'GNU Affero General Public License http://www.gnu.org/licenses/agpl.html'
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def getLinkedElementNode(idSuffix, parentNode, target):
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'Get elementNode with identifiers and parentNode.'
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linkedElementNode = xml_simple_reader.ElementNode()
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euclidean.overwriteDictionary(target.attributes, ['id', 'name', 'quantity'], linkedElementNode.attributes)
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linkedElementNode.addSuffixToID(idSuffix)
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tagKeys = target.getTagKeys()
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tagKeys.append('carve')
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tagKeys.sort()
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tags = ', '.join(tagKeys)
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linkedElementNode.attributes['tags'] = tags
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linkedElementNode.setParentAddToChildNodes(parentNode)
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linkedElementNode.addToIdentifierDictionaries()
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return linkedElementNode
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def getNewDerivation(elementNode):
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'Get new derivation.'
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return CarveDerivation(elementNode)
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def processElementNode(elementNode):
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'Process the xml element.'
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processElementNodeByDerivation(None, elementNode)
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def processElementNodeByDerivation(derivation, elementNode):
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'Process the xml element by derivation.'
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if derivation == None:
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derivation = CarveDerivation(elementNode)
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targetElementNode = derivation.targetElementNode
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if targetElementNode == None:
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print('Warning, carve could not get target for:')
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print(elementNode)
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return
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xmlObject = targetElementNode.xmlObject
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if xmlObject == None:
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print('Warning, processElementNodeByDerivation in carve could not get xmlObject for:')
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print(targetElementNode)
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print(derivation.elementNode)
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return
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matrix.getBranchMatrixSetElementNode(targetElementNode)
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transformedVertexes = xmlObject.getTransformedVertexes()
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if len(transformedVertexes) < 1:
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print('Warning, transformedVertexes is zero in processElementNodeByDerivation in carve for:')
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print(xmlObject)
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print(targetElementNode)
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print(derivation.elementNode)
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return
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elementNode.localName = 'group'
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elementNode.getXMLProcessor().processElementNode(elementNode)
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minimumZ = boolean_geometry.getMinimumZ(xmlObject)
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maximumZ = euclidean.getTopPath(transformedVertexes)
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zoneArrangement = triangle_mesh.ZoneArrangement(derivation.layerHeight, transformedVertexes)
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oldVisibleString = targetElementNode.attributes['visible']
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targetElementNode.attributes['visible'] = True
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z = minimumZ + 0.5 * derivation.layerHeight
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loopLayers = boolean_geometry.getLoopLayers([xmlObject], derivation.importRadius, derivation.layerHeight, maximumZ, False, z, zoneArrangement)
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targetElementNode.attributes['visible'] = oldVisibleString
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for loopLayerIndex, loopLayer in enumerate(loopLayers):
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if len(loopLayer.loops) > 0:
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pathElement = getLinkedElementNode('_carve_%s' % loopLayerIndex, elementNode, targetElementNode)
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vector3Loops = euclidean.getVector3Paths(loopLayer.loops, loopLayer.z)
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path.convertElementNode(pathElement, vector3Loops)
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class CarveDerivation:
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"Class to hold carve variables."
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def __init__(self, elementNode):
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'Set defaults.'
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self.elementNode = elementNode
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self.importRadius = setting.getImportRadius(elementNode)
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self.layerHeight = setting.getLayerHeight(elementNode)
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self.targetElementNode = evaluate.getElementNodeByKey(elementNode, 'target')
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