2 new python functions for the NLA.
action.getChannelNames() and action.renameChannel(from, to) editaction.c - maximum new name length was too short
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@ -152,16 +152,37 @@ def write_header(file):
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def write_scene(file, sce, world):
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def write_camera_switch():
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def write_object_tx(ob, loc):
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'''
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We have loc to set the location if non blender objects that have a location
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'''
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if not loc:
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if ob: loc = tuple(ob.getLocation('worldspace'))
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else: loc = 0,0,0
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file.write('\n\t\t\tProperty: "Lcl Translation", "Lcl Translation", "A+",%.15f,%.15f,%.15f' % loc)
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if ob:
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file.write('\n\t\t\tProperty: "Lcl Rotation", "Lcl Rotation", "A+",%.15f,%.15f,%.15f' % tuple([degrees(a) for a in ob.getEuler('worldspace')]))
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file.write('\n\t\t\tProperty: "Lcl Scaling", "Lcl Scaling", "A+",%.15f,%.15f,%.15f' % tuple(ob.getSize('worldspace')))
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else:
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file.write('''
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Property: "Lcl Rotation", "Lcl Rotation", "A+",0,0,0
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Property: "Lcl Scaling", "Lcl Scaling", "A+",1,1,1''')
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def write_object_props(ob=None, loc=None):
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# if the type is 0 its an empty otherwise its a mesh
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# only difference at the moment is one has a color
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file.write('''
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Model: "Model::Camera Switcher", "CameraSwitcher" {
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Version: 232
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Properties60: {
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Property: "QuaternionInterpolate", "bool", "",0
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Property: "Visibility", "Visibility", "A+",0
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Property: "Lcl Translation", "Lcl Translation", "A+",0,0,0
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Property: "Lcl Rotation", "Lcl Rotation", "A+",0,0,0
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Property: "Lcl Scaling", "Lcl Scaling", "A+",1,1,1
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Property: "Visibility", "Visibility", "A+",1''')
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write_object_tx(ob, loc)
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file.write('''
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Property: "RotationOffset", "Vector3D", "",0,0,0
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Property: "RotationPivot", "Vector3D", "",0,0,0
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Property: "ScalingOffset", "Vector3D", "",0,0,0
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@ -222,9 +243,25 @@ def write_scene(file, sce, world):
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Property: "GeometricScaling", "Vector3D", "",1,1,1
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Property: "LookAtProperty", "object", ""
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Property: "UpVectorProperty", "object", ""
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Property: "Show", "bool", "",0
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Property: "Show", "bool", "",1
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Property: "NegativePercentShapeSupport", "bool", "",1
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Property: "DefaultAttributeIndex", "int", "",0
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Property: "DefaultAttributeIndex", "int", "",0''')
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if ob:
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# Only mesh objects have color
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file.write('\n\t\t\tProperty: "Color", "Color", "A",0.8,0.8,0.8')
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file.write('\n\t\t\tProperty: "Size", "double", "",100')
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file.write('\n\t\t\tProperty: "Look", "enum", "",1')
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file.write('\n\t\t}\n')
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def write_camera_switch():
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file.write('''
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Model: "Model::Camera Switcher", "CameraSwitcher" {
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Version: 232'''
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write_object_props()
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file.write('''
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Property: "Color", "Color", "A",0.8,0.8,0.8
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Property: "Camera Index", "Integer", "A+",100
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}
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@ -243,75 +280,8 @@ def write_scene(file, sce, world):
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def write_camera(name, loc, near, far, proj_type, up):
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file.write('\n\tModel: "Model::%s", "Camera" {\n' % name )
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file.write('\t\tVersion: 232\n')
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file.write('\t\tProperties60: {\n')
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file.write('\t\t\tProperty: "QuaternionInterpolate", "bool", "",0\n')
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file.write('\t\t\tProperty: "Visibility", "Visibility", "A+",0\n')
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file.write('\t\t\tProperty: "Lcl Translation", "Lcl Translation", "A+",%.6f,%.6f,%.6f\n' % loc)
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file.write('\t\t\tProperty: "Lcl Rotation", "Lcl Rotation", "A+",0,0,0\n')
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file.write('\t\t\tProperty: "Lcl Scaling", "Lcl Scaling", "A+",1,1,1\n')
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file.write('\t\t\tProperty: "RotationOffset", "Vector3D", "",0,0,0\n')
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file.write('\t\t\tProperty: "RotationPivot", "Vector3D", "",0,0,0\n')
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file.write('\t\t\tProperty: "ScalingOffset", "Vector3D", "",0,0,0\n')
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file.write('\t\t\tProperty: "ScalingPivot", "Vector3D", "",0,0,0\n')
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file.write('\t\t\tProperty: "TranslationActive", "bool", "",0\n')
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file.write('\t\t\tProperty: "TranslationMin", "Vector3D", "",0,0,0\n')
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file.write('\t\t\tProperty: "TranslationMax", "Vector3D", "",0,0,0\n')
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file.write('\t\t\tProperty: "TranslationMinX", "bool", "",0\n')
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file.write('\t\t\tProperty: "TranslationMinY", "bool", "",0\n')
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file.write('\t\t\tProperty: "TranslationMinZ", "bool", "",0\n')
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file.write('\t\t\tProperty: "TranslationMaxX", "bool", "",0\n')
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file.write('\t\t\tProperty: "TranslationMaxY", "bool", "",0\n')
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file.write('\t\t\tProperty: "TranslationMaxZ", "bool", "",0\n')
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file.write('\t\t\tProperty: "RotationOrder", "enum", "",0\n')
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file.write('\t\t\tProperty: "RotationSpaceForLimitOnly", "bool", "",0\n')
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file.write('\t\t\tProperty: "AxisLen", "double", "",10\n')
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file.write('\t\t\tProperty: "PreRotation", "Vector3D", "",0,0,0\n')
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file.write('\t\t\tProperty: "PostRotation", "Vector3D", "",0,0,0\n')
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file.write('\t\t\tProperty: "RotationActive", "bool", "",0\n')
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file.write('\t\t\tProperty: "RotationMin", "Vector3D", "",0,0,0\n')
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file.write('\t\t\tProperty: "RotationMax", "Vector3D", "",0,0,0\n')
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file.write('\t\t\tProperty: "RotationMinX", "bool", "",0\n')
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file.write('\t\t\tProperty: "RotationMinY", "bool", "",0\n')
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file.write('\t\t\tProperty: "RotationMinZ", "bool", "",0\n')
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file.write('\t\t\tProperty: "RotationMaxX", "bool", "",0\n')
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file.write('\t\t\tProperty: "RotationMaxY", "bool", "",0\n')
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file.write('\t\t\tProperty: "RotationMaxZ", "bool", "",0\n')
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file.write('\t\t\tProperty: "RotationStiffnessX", "double", "",0\n')
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file.write('\t\t\tProperty: "RotationStiffnessY", "double", "",0\n')
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file.write('\t\t\tProperty: "RotationStiffnessZ", "double", "",0\n')
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file.write('\t\t\tProperty: "MinDampRangeX", "double", "",0\n')
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file.write('\t\t\tProperty: "MinDampRangeY", "double", "",0\n')
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file.write('\t\t\tProperty: "MinDampRangeZ", "double", "",0\n')
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file.write('\t\t\tProperty: "MaxDampRangeX", "double", "",0\n')
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file.write('\t\t\tProperty: "MaxDampRangeY", "double", "",0\n')
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file.write('\t\t\tProperty: "MaxDampRangeZ", "double", "",0\n')
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file.write('\t\t\tProperty: "MinDampStrengthX", "double", "",0\n')
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file.write('\t\t\tProperty: "MinDampStrengthY", "double", "",0\n')
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file.write('\t\t\tProperty: "MinDampStrengthZ", "double", "",0\n')
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file.write('\t\t\tProperty: "MaxDampStrengthX", "double", "",0\n')
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file.write('\t\t\tProperty: "MaxDampStrengthY", "double", "",0\n')
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file.write('\t\t\tProperty: "MaxDampStrengthZ", "double", "",0\n')
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file.write('\t\t\tProperty: "PreferedAngleX", "double", "",0\n')
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file.write('\t\t\tProperty: "PreferedAngleY", "double", "",0\n')
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file.write('\t\t\tProperty: "PreferedAngleZ", "double", "",0\n')
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file.write('\t\t\tProperty: "InheritType", "enum", "",0\n')
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file.write('\t\t\tProperty: "ScalingActive", "bool", "",0\n')
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file.write('\t\t\tProperty: "ScalingMin", "Vector3D", "",1,1,1\n')
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file.write('\t\t\tProperty: "ScalingMax", "Vector3D", "",1,1,1\n')
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file.write('\t\t\tProperty: "ScalingMinX", "bool", "",0\n')
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file.write('\t\t\tProperty: "ScalingMinY", "bool", "",0\n')
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file.write('\t\t\tProperty: "ScalingMinZ", "bool", "",0\n')
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file.write('\t\t\tProperty: "ScalingMaxX", "bool", "",0\n')
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file.write('\t\t\tProperty: "ScalingMaxY", "bool", "",0\n')
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file.write('\t\t\tProperty: "ScalingMaxZ", "bool", "",0\n')
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file.write('\t\t\tProperty: "GeometricTranslation", "Vector3D", "",0,0,0\n')
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file.write('\t\t\tProperty: "GeometricRotation", "Vector3D", "",0,0,0\n')
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file.write('\t\t\tProperty: "GeometricScaling", "Vector3D", "",1,1,1\n')
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file.write('\t\t\tProperty: "LookAtProperty", "object", ""\n')
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file.write('\t\t\tProperty: "UpVectorProperty", "object", ""\n')
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file.write('\t\t\tProperty: "Show", "bool", "",0\n')
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file.write('\t\t\tProperty: "NegativePercentShapeSupport", "bool", "",1\n')
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file.write('\t\t\tProperty: "DefaultAttributeIndex", "int", "",0\n')
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write_object_props(None, loc)
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file.write('\t\t\tProperty: "Color", "Color", "A",0.8,0.8,0.8\n')
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file.write('\t\t\tProperty: "Roll", "Roll", "A+",0\n')
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file.write('\t\t\tProperty: "FieldOfView", "FieldOfView", "A+",40\n')
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@ -407,97 +377,62 @@ def write_scene(file, sce, world):
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write_camera('Producer Right', (4000,0,0), 1, 30000, 1, (0,1,0))
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write_camera('Producer Left', (-4000,0,0), 1, 30000, 1, (0,1,0))
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def write_object_props(ob):
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# if the type is 0 its an empty otherwise its a mesh
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# only difference at the moment is one has a color
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file.write('''
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Properties60: {
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Property: "QuaternionInterpolate", "bool", "",0
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Property: "Visibility", "Visibility", "A+",1''')
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if ob:
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file.write('\n\t\t\tProperty: "Lcl Translation", "Lcl Translation", "A+",%.15f,%.15f,%.15f' % tuple(ob.getLocation('worldspace')))
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file.write('\n\t\t\tProperty: "Lcl Rotation", "Lcl Rotation", "A+",%.15f,%.15f,%.15f' % tuple([degrees(a) for a in ob.getEuler('worldspace')]))
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file.write('\n\t\t\tProperty: "Lcl Scaling", "Lcl Scaling", "A+",%.15f,%.15f,%.15f' % tuple(ob.getSize('worldspace')))
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else:
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file.write('''
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Property: "Lcl Translation", "Lcl Translation", "A+",0,0,0
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Property: "Lcl Rotation", "Lcl Rotation", "A+",0,0,0
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Property: "Lcl Scaling", "Lcl Scaling", "A+",1,1,1''')
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def write_light(ob, name):
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light = ob.data
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file.write('\n\tModel: "Model::%s", "Light" {' % name)
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file.write('\n\t\tVersion: 232')
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file.write('''
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Property: "RotationOffset", "Vector3D", "",0,0,0
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Property: "RotationPivot", "Vector3D", "",0,0,0
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Property: "ScalingOffset", "Vector3D", "",0,0,0
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Property: "ScalingPivot", "Vector3D", "",0,0,0
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Property: "TranslationActive", "bool", "",0
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Property: "TranslationMin", "Vector3D", "",0,0,0
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Property: "TranslationMax", "Vector3D", "",0,0,0
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Property: "TranslationMinX", "bool", "",0
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Property: "TranslationMinY", "bool", "",0
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Property: "TranslationMinZ", "bool", "",0
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Property: "TranslationMaxX", "bool", "",0
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Property: "TranslationMaxY", "bool", "",0
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Property: "TranslationMaxZ", "bool", "",0
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Property: "RotationOrder", "enum", "",0
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Property: "RotationSpaceForLimitOnly", "bool", "",0
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Property: "AxisLen", "double", "",10
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Property: "PreRotation", "Vector3D", "",0,0,0
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Property: "PostRotation", "Vector3D", "",0,0,0
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Property: "RotationActive", "bool", "",0
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Property: "RotationMin", "Vector3D", "",0,0,0
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Property: "RotationMax", "Vector3D", "",0,0,0
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Property: "RotationMinX", "bool", "",0
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Property: "RotationMinY", "bool", "",0
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Property: "RotationMinZ", "bool", "",0
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Property: "RotationMaxX", "bool", "",0
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Property: "RotationMaxY", "bool", "",0
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Property: "RotationMaxZ", "bool", "",0
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Property: "RotationStiffnessX", "double", "",0
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Property: "RotationStiffnessY", "double", "",0
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Property: "RotationStiffnessZ", "double", "",0
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Property: "MinDampRangeX", "double", "",0
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Property: "MinDampRangeY", "double", "",0
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Property: "MinDampRangeZ", "double", "",0
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Property: "MaxDampRangeX", "double", "",0
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Property: "MaxDampRangeY", "double", "",0
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Property: "MaxDampRangeZ", "double", "",0
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Property: "MinDampStrengthX", "double", "",0
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Property: "MinDampStrengthY", "double", "",0
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Property: "MinDampStrengthZ", "double", "",0
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Property: "MaxDampStrengthX", "double", "",0
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Property: "MaxDampStrengthY", "double", "",0
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Property: "MaxDampStrengthZ", "double", "",0
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Property: "PreferedAngleX", "double", "",0
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Property: "PreferedAngleY", "double", "",0
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Property: "PreferedAngleZ", "double", "",0
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Property: "InheritType", "enum", "",0
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Property: "ScalingActive", "bool", "",0
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Property: "ScalingMin", "Vector3D", "",1,1,1
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Property: "ScalingMax", "Vector3D", "",1,1,1
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Property: "ScalingMinX", "bool", "",0
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Property: "ScalingMinY", "bool", "",0
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Property: "ScalingMinZ", "bool", "",0
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Property: "ScalingMaxX", "bool", "",0
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Property: "ScalingMaxY", "bool", "",0
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Property: "ScalingMaxZ", "bool", "",0
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Property: "GeometricTranslation", "Vector3D", "",0,0,0
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Property: "GeometricRotation", "Vector3D", "",0,0,0
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Property: "GeometricScaling", "Vector3D", "",1,1,1
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Property: "LookAtProperty", "object", ""
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Property: "UpVectorProperty", "object", ""
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Property: "Show", "bool", "",1
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Property: "NegativePercentShapeSupport", "bool", "",1
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Property: "DefaultAttributeIndex", "int", "",0''')
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if ob:
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# Only mesh objects have color
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file.write('\n\t\t\tProperty: "Color", "Color", "A",0.8,0.8,0.8')
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file.write('\n\t\t\tProperty: "Size", "double", "",100')
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file.write('\n\t\t\tProperty: "Look", "enum", "",1')
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write_object_props(ob)
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file.write('\n\t\t}\n')
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# Why are these values here twice?????? - oh well, follow the holy sdk's output
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# Blender light types match FBX's, funny coincidence, we just need to
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# be sure that all unsupported types are made into a point light
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#ePOINT,
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#eDIRECTIONAL
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#eSPOT
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light_type = light.type
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if light_type > 3: light_type = 0
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file.write('\n\t\t\tProperty: "LightType", "enum", "",%i' % light_type)
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file.write('\n\t\t\tProperty: "CastLightOnObject", "bool", "",1')
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file.write('\n\t\t\tProperty: "DrawVolumetricLight", "bool", "",1')
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file.write('\n\t\t\tProperty: "DrawGroundProjection", "bool", "",1')
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file.write('\n\t\t\tProperty: "DrawFrontFacingVolumetricLight", "bool", "",0')
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file.write('\n\t\t\tProperty: "GoboProperty", "object", ""')
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file.write('\n\t\t\tProperty: "Color", "Color", "A+",1,1,1')
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file.write('\n\t\t\tProperty: "Intensity", "Intensity", "A+",%.2f' % (light.energy*100))
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file.write('\n\t\t\tProperty: "Cone angle", "Cone angle", "A+",%.2f' % light.spotSize)
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file.write('\n\t\t\tProperty: "Fog", "Fog", "A+",50')
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file.write('\n\t\t\tProperty: "Color", "Color", "A",%.2f,%.2f,%.2f' % tuple(light.col))
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file.write('\n\t\t\tProperty: "Intensity", "Intensity", "A+",%.2f' % (light.energy*100))
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file.write('\n\t\t\tProperty: "Cone angle", "Cone angle", "A+",%.2f' % light.spotSize)
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file.write('\n\t\t\tProperty: "Fog", "Fog", "A+",50')
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file.write('\n\t\t\tProperty: "LightType", "enum", "",%i' % light_type)
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file.write('\n\t\t\tProperty: "CastLightOnObject", "bool", "",1')
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file.write('\n\t\t\tProperty: "DrawGroundProjection", "bool", "",1')
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file.write('\n\t\t\tProperty: "DrawFrontFacingVolumetricLight", "bool", "",0')
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file.write('\n\t\t\tProperty: "DrawVolumetricLight", "bool", "",1')
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file.write('\n\t\t\tProperty: "GoboProperty", "object", ""')
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file.write('\n\t\t\tProperty: "DecayType", "enum", "",0')
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file.write('\n\t\t\tProperty: "DecayStart", "double", "",%.2f' % light.dist)
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file.write('\n\t\t\tProperty: "EnableNearAttenuation", "bool", "",0')
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file.write('\n\t\t\tProperty: "NearAttenuationStart", "double", "",0')
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file.write('\n\t\t\tProperty: "NearAttenuationEnd", "double", "",0')
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file.write('\n\t\t\tProperty: "EnableFarAttenuation", "bool", "",0')
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file.write('\n\t\t\tProperty: "FarAttenuationStart", "double", "",0')
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file.write('\n\t\t\tProperty: "FarAttenuationEnd", "double", "",0')
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file.write('\n\t\t\tProperty: "CastShadows", "bool", "",0')
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file.write('\n\t\t\tProperty: "ShadowColor", "ColorRGBA", "",0,0,0,1')
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file.write('\n\t\t}')
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file.write('\n\t\tMultiLayer: 0')
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file.write('\n\t\tMultiTake: 0')
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file.write('\n\t\tShading: Y')
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file.write('\n\t\tCulling: "CullingOff"')
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file.write('\n\t\tTypeFlags: "Light"')
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file.write('\n\t\tGeometryVersion: 124')
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file.write('\n\t}')
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# Material Settings
|
||||
if world:
|
||||
@ -658,13 +593,20 @@ def write_scene(file, sce, world):
|
||||
Cropping: 0,0,0,0
|
||||
}''')
|
||||
|
||||
objects = []
|
||||
ob_meshes = []
|
||||
ob_lights = []
|
||||
materials = {}
|
||||
textures = {}
|
||||
armatures = [] # We should export standalone armatures also
|
||||
armatures_totbones = 0 # we need this because each bone is a model
|
||||
for ob in sce.objects.context:
|
||||
if ob.type == 'Mesh': me = ob.getData(mesh=1)
|
||||
ob_type = ob.type
|
||||
|
||||
if ob_type == 'Lamp':
|
||||
ob_lights.append((sane_obname(ob), ob))
|
||||
|
||||
else:
|
||||
if ob_type == 'Mesh': me = ob.getData(mesh=1)
|
||||
else: me = BPyMesh.getMeshFromObject(ob)
|
||||
|
||||
if me:
|
||||
@ -696,7 +638,9 @@ def write_scene(file, sce, world):
|
||||
#### me.transform(ob.matrixWorld) # Export real ob coords.
|
||||
#### High Quality, not realy needed for now.
|
||||
#BPyMesh.meshCalcNormals(me) # high quality normals nice for realtime engines.
|
||||
objects.append( (sane_obname(ob), ob, me, mats, arm, armname) )
|
||||
ob_meshes.append( (sane_obname(ob), ob, me, mats, arm, armname) )
|
||||
|
||||
del ob_type
|
||||
|
||||
materials = [(sane_matname(mat), mat) for mat in materials.itervalues()]
|
||||
textures = [(sane_texname(img), img) for img in textures.itervalues()]
|
||||
@ -729,17 +673,17 @@ def write_scene(file, sce, world):
|
||||
|
||||
Definitions: {
|
||||
Version: 100
|
||||
Count: %i''' % (1+1+camera_count+len(objects)+len(armatures)+armatures_totbones+len(materials)+(len(textures)*2))) # add 1 for the root model 1 for global settings
|
||||
Count: %i''' % (1+1+camera_count+len(ob_meshes)+len(ob_lights)+len(armatures)+armatures_totbones+len(materials)+(len(textures)*2))) # add 1 for the root model 1 for global settings
|
||||
|
||||
file.write('''
|
||||
ObjectType: "Model" {
|
||||
Count: %i
|
||||
}''' % (1+camera_count+len(objects)+len(armatures)+armatures_totbones)) # add 1 for the root model
|
||||
}''' % (1+camera_count+len(ob_meshes)+len(ob_lights)+len(armatures)+armatures_totbones)) # add 1 for the root model
|
||||
|
||||
file.write('''
|
||||
ObjectType: "Geometry" {
|
||||
Count: %i
|
||||
}''' % len(objects))
|
||||
}''' % len(ob_meshes))
|
||||
|
||||
if materials:
|
||||
file.write('''
|
||||
@ -778,7 +722,7 @@ Objects: {''')
|
||||
file.write('''
|
||||
Model: "Model::blend_root", "Null" {
|
||||
Version: 232''')
|
||||
write_object_props(None)
|
||||
write_object_props()
|
||||
file.write(\
|
||||
''' MultiLayer: 0
|
||||
MultiTake: 1
|
||||
@ -788,7 +732,10 @@ Objects: {''')
|
||||
}''')
|
||||
|
||||
|
||||
for obname, ob, me, mats, arm, armname in objects:
|
||||
for obname, ob in ob_lights:
|
||||
write_light(ob, obname)
|
||||
|
||||
for obname, ob, me, mats, arm, armname in ob_meshes:
|
||||
file.write('\n\tModel: "Model::%s", "Mesh" {\n' % sane_obname(ob))
|
||||
file.write('\t\tVersion: 232') # newline is added in write_object_props
|
||||
write_object_props(ob)
|
||||
@ -906,9 +853,6 @@ Objects: {''')
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
# Write UV and texture layers.
|
||||
uvlayers = []
|
||||
if me.faceUV:
|
||||
@ -1164,8 +1108,10 @@ Relations: {
|
||||
''')
|
||||
|
||||
file.write('\tModel: "Model::blend_root", "Null" {\n\t}\n')
|
||||
for obname, ob in ob_lights:
|
||||
file.write('\tModel: "Model::%s", "Light" {\n\t}\n' % obname)
|
||||
|
||||
for obname, ob, me, mats, arm, armname in objects:
|
||||
for obname, ob, me, mats, arm, armname in ob_meshes:
|
||||
file.write('\tModel: "Model::%s", "Mesh" {\n\t}\n' % obname)
|
||||
|
||||
file.write(''' Model: "Model::Producer Perspective", "Camera" {
|
||||
@ -1207,16 +1153,19 @@ Connections: {
|
||||
# write the fake root node
|
||||
file.write('\tConnect: "OO", "Model::blend_root", "Model::Scene"\n')
|
||||
|
||||
for obname, ob, me, mats, arm, armname in objects:
|
||||
for obname, ob in ob_lights:
|
||||
file.write('\tConnect: "OO", "Model::%s", "Model::blend_root"\n' % obname)
|
||||
|
||||
for obname, ob, me, mats, arm, armname in objects:
|
||||
for obname, ob, me, mats, arm, armname in ob_meshes:
|
||||
file.write('\tConnect: "OO", "Model::%s", "Model::blend_root"\n' % obname)
|
||||
|
||||
for obname, ob, me, mats, arm, armname in ob_meshes:
|
||||
# Connect all materials to all objects, not good form but ok for now.
|
||||
for mat in mats:
|
||||
file.write(' Connect: "OO", "Material::%s", "Model::%s"\n' % (sane_matname(mat), obname))
|
||||
|
||||
if textures:
|
||||
for obname, ob, me, mats, arm, armname in objects:
|
||||
for obname, ob, me, mats, arm, armname in ob_meshes:
|
||||
for texname, tex in textures:
|
||||
file.write('\tConnect: "OO", "Texture::%s", "Model::%s"\n' % (texname, obname))
|
||||
|
||||
|
@ -88,6 +88,8 @@ struct PyMethodDef M_NLA_methods[] = {
|
||||
static PyObject *Action_setActive( BPy_Action * self, PyObject * args );
|
||||
static PyObject *Action_getFrameNumbers(BPy_Action *self);
|
||||
static PyObject *Action_getChannelIpo( BPy_Action * self, PyObject * args );
|
||||
static PyObject *Action_getChannelNames( BPy_Action * self );
|
||||
static PyObject *Action_renameChannel( BPy_Action * self, PyObject * args );
|
||||
static PyObject *Action_verifyChannel( BPy_Action * self, PyObject * args );
|
||||
static PyObject *Action_removeChannel( BPy_Action * self, PyObject * args );
|
||||
static PyObject *Action_getAllChannelIpos( BPy_Action * self );
|
||||
@ -107,6 +109,10 @@ static PyMethodDef BPy_Action_methods[] = {
|
||||
"() - get the frame numbers at which keys have been inserted"},
|
||||
{"getChannelIpo", ( PyCFunction ) Action_getChannelIpo, METH_VARARGS,
|
||||
"(str) -get the Ipo from a named action channel in this action"},
|
||||
{"getChannelNames", ( PyCFunction ) Action_getChannelNames, METH_NOARGS,
|
||||
"() -get the channel names for this action"},
|
||||
{"renameChannel", ( PyCFunction ) Action_renameChannel, METH_VARARGS,
|
||||
"(from, to) -rename the channel from string to string"},
|
||||
{"verifyChannel", ( PyCFunction ) Action_verifyChannel, METH_VARARGS,
|
||||
"(str) -verify the channel in this action"},
|
||||
{"removeChannel", ( PyCFunction ) Action_removeChannel, METH_VARARGS,
|
||||
@ -283,6 +289,44 @@ static PyObject *Action_getChannelIpo( BPy_Action * self, PyObject * args )
|
||||
return Ipo_CreatePyObject( chan->ipo );
|
||||
}
|
||||
|
||||
static PyObject *Action_getChannelNames( BPy_Action * self )
|
||||
{
|
||||
PyObject *list = PyList_New( BLI_countlist(&(self->action->chanbase)) );
|
||||
bActionChannel *chan = NULL;
|
||||
int index=0;
|
||||
for( chan = self->action->chanbase.first; chan; chan = chan->next ) {
|
||||
PyList_SetItem( list, index, PyString_FromString(chan->name) );
|
||||
index++;
|
||||
}
|
||||
return list;
|
||||
}
|
||||
|
||||
static PyObject *Action_renameChannel( BPy_Action * self, PyObject * args )
|
||||
{
|
||||
char *chanFrom, *chanTo;
|
||||
bActionChannel *chan;
|
||||
|
||||
if( !PyArg_ParseTuple( args, "ss", &chanFrom, &chanTo ) )
|
||||
return EXPP_ReturnPyObjError( PyExc_AttributeError,
|
||||
"2 strings expected" );
|
||||
|
||||
chan = get_action_channel( self->action, chanFrom );
|
||||
if( !chan )
|
||||
return EXPP_ReturnPyObjError( PyExc_ValueError,
|
||||
"no channel with that name" );
|
||||
if (strlen(chanTo) > 31)
|
||||
return EXPP_ReturnPyObjError( PyExc_ValueError,
|
||||
"new name greater then 31 characters long" );
|
||||
|
||||
if (get_action_channel( self->action, chanTo ))
|
||||
return EXPP_ReturnPyObjError( PyExc_ValueError,
|
||||
"channel target name alredy exists" );
|
||||
|
||||
strcpy(chan->name, chanTo);
|
||||
|
||||
Py_RETURN_NONE;
|
||||
}
|
||||
|
||||
/*----------------------------------------------------------------------*/
|
||||
static PyObject *Action_verifyChannel( BPy_Action * self, PyObject * args )
|
||||
{
|
||||
|
@ -109,6 +109,21 @@ class Action:
|
||||
@return: the Ipos for all the channels in the action
|
||||
"""
|
||||
|
||||
def getChannelNames():
|
||||
"""
|
||||
Returns a list of channel names
|
||||
@rtype: list
|
||||
@return: the channel names that match bone and constraint names.
|
||||
"""
|
||||
|
||||
def renameChannel(nameFrom, nameTo):
|
||||
"""
|
||||
rename an existing channel to a new name.
|
||||
|
||||
if the nameFrom channel dosnt exist or the nameTo exists, an error will be raised.
|
||||
@return: None
|
||||
"""
|
||||
|
||||
import id_generics
|
||||
Action.__doc__ += id_generics.attributes
|
||||
|
||||
|
@ -2965,7 +2965,7 @@ static void clever_achannel_names(short *mval)
|
||||
protect= (achan->flag & ACHAN_PROTECTED);
|
||||
expand = (achan->flag & ACHAN_EXPANDED);
|
||||
|
||||
add_numbut(but++, TEX, "ActChan: ", 0, 24, str, "Name of Action Channel");
|
||||
add_numbut(but++, TEX, "ActChan: ", 0, 31, str, "Name of Action Channel");
|
||||
add_numbut(but++, TOG|SHO, "Expanded", 0, 24, &expand, "Action Channel is Expanded");
|
||||
add_numbut(but++, TOG|SHO, "Protected", 0, 24, &protect, "Channel is Protected");
|
||||
}
|
||||
@ -2975,7 +2975,7 @@ static void clever_achannel_names(short *mval)
|
||||
strcpy(str, conchan->name);
|
||||
protect= (conchan->flag & CONSTRAINT_CHANNEL_PROTECTED);
|
||||
|
||||
add_numbut(but++, TEX, "ConChan: ", 0, 24, str, "Name of Constraint Channel");
|
||||
add_numbut(but++, TEX, "ConChan: ", 0, 29, str, "Name of Constraint Channel");
|
||||
add_numbut(but++, TOG|SHO, "Protected", 0, 24, &protect, "Channel is Protected");
|
||||
}
|
||||
#if 0 /* tempolarily disabled until there is actually something to display */
|
||||
|
Loading…
Reference in New Issue
Block a user