pymel.core.nodetypes.PolyChipOff

digraph inheritance6eb35cffe7 { rankdir=TB; ranksep=0.15; nodesep=0.15; size="8.0, 12.0"; "DependNode" [fontname="Vera Sans, DejaVu Sans, Liberation Sans, Arial, Helvetica, sans",URL="pymel.core.nodetypes.DependNode.html#pymel.core.nodetypes.DependNode",style="setlinewidth(0.5)",height=0.25,shape=box,fontsize=8]; "PyNode" -> "DependNode" [arrowsize=0.5,style="setlinewidth(0.5)"]; "PolyBase" [fontname="Vera Sans, DejaVu Sans, Liberation Sans, Arial, Helvetica, sans",URL="pymel.core.nodetypes.PolyBase.html#pymel.core.nodetypes.PolyBase",style="setlinewidth(0.5)",height=0.25,shape=box,fontsize=8]; "DependNode" -> "PolyBase" [arrowsize=0.5,style="setlinewidth(0.5)"]; "PolyChipOff" [fontname="Vera Sans, DejaVu Sans, Liberation Sans, Arial, Helvetica, sans",URL="#pymel.core.nodetypes.PolyChipOff",style="setlinewidth(0.5)",tooltip="class counterpart of mel function `polyChipOff`",height=0.25,shape=box,fontsize=8]; "PolyMoveFace" -> "PolyChipOff" [arrowsize=0.5,style="setlinewidth(0.5)"]; "PolyModifier" [fontname="Vera Sans, DejaVu Sans, Liberation Sans, Arial, Helvetica, sans",URL="pymel.core.nodetypes.PolyModifier.html#pymel.core.nodetypes.PolyModifier",style="setlinewidth(0.5)",height=0.25,shape=box,fontsize=8]; "PolyBase" -> "PolyModifier" [arrowsize=0.5,style="setlinewidth(0.5)"]; "PolyModifierWorld" [fontname="Vera Sans, DejaVu Sans, Liberation Sans, Arial, Helvetica, sans",URL="pymel.core.nodetypes.PolyModifierWorld.html#pymel.core.nodetypes.PolyModifierWorld",style="setlinewidth(0.5)",height=0.25,shape=box,fontsize=8]; "PolyModifier" -> "PolyModifierWorld" [arrowsize=0.5,style="setlinewidth(0.5)"]; "PolyMoveEdge" [fontname="Vera Sans, DejaVu Sans, Liberation Sans, Arial, Helvetica, sans",URL="pymel.core.nodetypes.PolyMoveEdge.html#pymel.core.nodetypes.PolyMoveEdge",style="setlinewidth(0.5)",tooltip="class counterpart of mel function `polyMoveEdge`",height=0.25,shape=box,fontsize=8]; "PolyMoveVertex" -> "PolyMoveEdge" [arrowsize=0.5,style="setlinewidth(0.5)"]; "PolyMoveFace" [fontname="Vera Sans, DejaVu Sans, Liberation Sans, Arial, Helvetica, sans",URL="pymel.core.nodetypes.PolyMoveFace.html#pymel.core.nodetypes.PolyMoveFace",style="setlinewidth(0.5)",height=0.25,shape=box,fontsize=8]; "PolyMoveEdge" -> "PolyMoveFace" [arrowsize=0.5,style="setlinewidth(0.5)"]; "PolyMoveVertex" [fontname="Vera Sans, DejaVu Sans, Liberation Sans, Arial, Helvetica, sans",URL="pymel.core.nodetypes.PolyMoveVertex.html#pymel.core.nodetypes.PolyMoveVertex",style="setlinewidth(0.5)",tooltip="class counterpart of mel function `polyMoveVertex`",height=0.25,shape=box,fontsize=8]; "PolyModifierWorld" -> "PolyMoveVertex" [arrowsize=0.5,style="setlinewidth(0.5)"]; "ProxyUnicode" [fontname="Vera Sans, DejaVu Sans, Liberation Sans, Arial, Helvetica, sans",URL="../pymel.util.utilitytypes/pymel.util.utilitytypes.ProxyUnicode.html#pymel.util.utilitytypes.ProxyUnicode",style="setlinewidth(0.5)",height=0.25,shape=box,fontsize=8]; "PyNode" [fontname="Vera Sans, DejaVu Sans, Liberation Sans, Arial, Helvetica, sans",URL="../pymel.core.general/pymel.core.general.PyNode.html#pymel.core.general.PyNode",style="setlinewidth(0.5)",tooltip="Abstract class that is base for all pymel nodes classes.",height=0.25,shape=box,fontsize=8]; "ProxyUnicode" -> "PyNode" [arrowsize=0.5,style="setlinewidth(0.5)"]; }

class PolyChipOff(*args, **kwargs)

class counterpart of mel function polyChipOff

Extract facets. Faces can be extracted separately or together, and manipulations can be performed either in world or object space.

MAttrClass = Enum( EnumValue('MAttrClass', 1, 'localDynamicAttr'), EnumValue('MAttrClass', 2, 'normalAttr'), EnumValue('MAttrClass', 3, 'extensionAttr'), EnumValue('MAttrClass', 4, 'invalidAttr'))
MdgTimerMetric = Enum( EnumValue('MdgTimerMetric', 0, 'metric_callback'), EnumValue('MdgTimerMetric', 1, 'metric_compute'), EnumValue('MdgTimerMetric', 2, 'metric_dirty'), EnumValue('MdgTimerMetric', 3, 'metric_draw'), EnumValue('MdgTimerMetric', 4, 'metric_fetch'), EnumValue('MdgTimerMetric', 5, 'metric_callbackViaAPI'), EnumValue('MdgTimerMetric', 6, 'metric_callbackNotViaAPI'), EnumValue('MdgTimerMetric', 7, 'metric_computeDuringCallback'), EnumValue('MdgTimerMetric', 8, 'metric_computeNotDuringCallback'), EnumValue('MdgTimerMetric', 9, 'metrics'))
MdgTimerState = Enum( EnumValue('MdgTimerState', 0, 'off'), EnumValue('MdgTimerState', 1, 'on'), EnumValue('MdgTimerState', 2, 'uninitialized'), EnumValue('MdgTimerState', 3, 'invalidState'))
MdgTimerType = Enum( EnumValue('MdgTimerType', 0, 'type_self'), EnumValue('MdgTimerType', 1, 'type_inclusive'), EnumValue('MdgTimerType', 2, 'type_count'), EnumValue('MdgTimerType', 3, 'types'))
getAttraction(**kwargs)

Attraction, related to magnet. The range is [-2.0, 2.0]. Default:0.0

Derived from mel command maya.cmds.polyChipOff

getCaching(**kwargs)

Toggle caching for all attributes so that no recomputation is needed

Derived from mel command maya.cmds.polyChipOff

getConstructionHistory(**kwargs)

Turn the construction history on or off (where applicable). If construction history is on then the corresponding node will be inserted into the history chain for the mesh. If construction history is off then the operation will be performed directly on the object. Note:If the object already has construction history then this flag is ignored and the node will always be inserted into the history chain.

Derived from mel command maya.cmds.polyChipOff

getDuplicate(**kwargs)

If on, facets are duplicated, otherwise original facets are removed. C: Default is on. Q: When queried, this flag returns an int.

Derived from mel command maya.cmds.polyChipOff

getGain(**kwargs)

Gain factor per component. Can be painted using Artisan. Default:1.0

Derived from mel command maya.cmds.polyChipOff

getGravity(**kwargs)

The gravity vector. Default:0.0, -1.0, 0.0

Derived from mel command maya.cmds.polyChipOff

getGravityX(**kwargs)

Gravity X coord.

Derived from mel command maya.cmds.polyChipOff

getGravityY(**kwargs)

Gravity Y coord.

Derived from mel command maya.cmds.polyChipOff

getGravityZ(**kwargs)

Gravity Z coord.

Derived from mel command maya.cmds.polyChipOff

getKeepFacesTogether(**kwargs)

How to extrude edges. If on, extruded faces produced from the edges being extruded will be kept together. Otherwise they are pulled independently. Default:true

Derived from mel command maya.cmds.polyChipOff

getKeepFacetTogether(**kwargs)

How to extrude edges. If on, extruded faces produced from the edges being extruded will be kept together. Otherwise they are pulled independently. Default:true

Derived from mel command maya.cmds.polyChipOff

getLocalCenter(**kwargs)

Local center on the edge : 0=Middle point, 1=Start point, 2=End point. Default:0

Derived from mel command maya.cmds.polyChipOff

getLocalDirection(**kwargs)

Direction to determine X axis for local space. Default:1.0, 0.0, 0.0

Derived from mel command maya.cmds.polyChipOff

getLocalDirectionX(**kwargs)

X coord of the X axis.

Derived from mel command maya.cmds.polyChipOff

getLocalDirectionY(**kwargs)

Y coord of the X axis.

Derived from mel command maya.cmds.polyChipOff

getLocalDirectionZ(**kwargs)

Z coord of the X axis.

Derived from mel command maya.cmds.polyChipOff

getLocalRotate(**kwargs)

The local rotations. Default:0.0, 0.0, 0.0

Derived from mel command maya.cmds.polyChipOff

getLocalRotateX(**kwargs)

Local rotate X coord. The range is [0, 360].

Derived from mel command maya.cmds.polyChipOff

getLocalRotateY(**kwargs)

Local rotate Y coord. The range is [0, 360].

Derived from mel command maya.cmds.polyChipOff

getLocalRotateZ(**kwargs)

Local rotate Z coord : Rotation along the normal. The range is [0, 360].

Derived from mel command maya.cmds.polyChipOff

getLocalScale(**kwargs)

Local Scale. Default:1.0, 1.0, 1.0

Derived from mel command maya.cmds.polyChipOff

getLocalScaleX(**kwargs)

Scale X coord.

Derived from mel command maya.cmds.polyChipOff

getLocalScaleY(**kwargs)

Scale Y coord.

Derived from mel command maya.cmds.polyChipOff

getLocalScaleZ(**kwargs)

Scale Z coord.

Derived from mel command maya.cmds.polyChipOff

getLocalTranslate(**kwargs)

Local translate. Default:0.0, 0.0, 0.0

Derived from mel command maya.cmds.polyChipOff

getLocalTranslateX(**kwargs)

Local translation X coord.

Derived from mel command maya.cmds.polyChipOff

getLocalTranslateY(**kwargs)

Local translation Y coord.

Derived from mel command maya.cmds.polyChipOff

getLocalTranslateZ(**kwargs)

Local translation Z coord : Move along the normal.

Derived from mel command maya.cmds.polyChipOff

getMagnX(**kwargs)

Magnet X coord.

Derived from mel command maya.cmds.polyChipOff

getMagnY(**kwargs)

Magnet Y coord.

Derived from mel command maya.cmds.polyChipOff

getMagnZ(**kwargs)

Magnet Z coord.

Derived from mel command maya.cmds.polyChipOff

getMagnet(**kwargs)

The magnet vector. Default:0.0, 0.0, 0.0

Derived from mel command maya.cmds.polyChipOff

getNodeState(**kwargs)

Maya dependency nodes have 6 possible states. The Normal (0), HasNoEffect (1), and Blocking (2)states can be used to alter how the graph is evaluated. The Waiting-Normal (3), Waiting-HasNoEffect (4), Waiting-Blocking (5)are for internal use only. They temporarily shut off parts of the graph during interaction (e.g., manipulation). The understanding is that once the operation is done, the state will be reset appropriately, e.g. Waiting-Blockingwill reset back to Blocking. The Normaland Blockingcases apply to all nodes, while HasNoEffectis node specific; many nodes do not support this option. Plug-ins store state in the MPxNode::stateattribute. Anyone can set it or check this attribute. Additional details about each of these 3 states follow. StateDescriptionNormalThe normal node state. This is the default.HasNoEffectThe HasNoEffectoption (a.k.a. pass-through), is used in cases where there is an operation on an input producing an output of the same data type. Nearly all deformers support this state, as do a few other nodes. As stated earlier, it is not supported by all nodes. Its typical to implement support for the HasNoEffectstate in the nodes compute method and to perform appropriate operations. Plug-ins can also support HasNoEffect. The usual implementation of this state is to copy the input directly to the matching output without applying the algorithm in the node. For deformers, applying this state leaves the input geometry undeformed on the output. BlockingThis is implemented in the depend node base class and applies to all nodes. Blockingis applied during the evaluation phase to connections. An evaluation request to a blocked connection will return as failures, causing the destination plug to retain its current value. Dirty propagation is indirectly affected by this state since blocked connections are never cleaned. When a node is set to Blockingthe behavior is supposed to be the same as if all outgoing connections were broken. As long as nobody requests evaluation of the blocked node directly it wont evaluate after that. Note that a blocked node will still respond to getAttrrequests but a getAttron a downstream node will not reevaluate the blocked node. Setting the root transform of a hierarchy to Blockingwont automatically influence child transforms in the hierarchy. To do this, youd need to explicitly set all child nodes to the Blockingstate. For example, to set all child transforms to Blocking, you could use the following script. import maya.cmds as cmds def blockTree(root): nodesToBlock = [] for node in {child:1 for child in cmds.listRelatives( root, path=True, allDescendents=True )}.keys(): nodesToBlock += cmds.listConnections(node, source=True, destination=True ) for node in {source:1 for source in nodesToBlock}.keys(): cmds.setAttr( ‘%s.nodeState’ % node, 2 ) Applying this script would continue to draw objects but things would not be animated. Default:kdnNormal

Derived from mel command maya.cmds.polyChipOff

getOffset(**kwargs)

Local offset. Faces are moved this distance towards the inside of the face. Default:0.0

Derived from mel command maya.cmds.polyChipOff

getPivot(**kwargs)

The pivot for scaling and rotation. Default:0.0, 0.0, 0.0

Derived from mel command maya.cmds.polyChipOff

getPivotX(**kwargs)

Pivot X coord.

Derived from mel command maya.cmds.polyChipOff

getPivotY(**kwargs)

Pivot Y coord.

Derived from mel command maya.cmds.polyChipOff

getPivotZ(**kwargs)

Pivot Z coord.

Derived from mel command maya.cmds.polyChipOff

getRandom(**kwargs)

Random value for all parameters. Default:0.0

Derived from mel command maya.cmds.polyChipOff

getScale(**kwargs)

Scaling vector. Default:1.0, 1.0, 1.0

Derived from mel command maya.cmds.polyChipOff

getScaleX(**kwargs)

Scale X coord.

Derived from mel command maya.cmds.polyChipOff

getScaleY(**kwargs)

Scale Y coord.

Derived from mel command maya.cmds.polyChipOff

getScaleZ(**kwargs)

Scale Z coord.

Derived from mel command maya.cmds.polyChipOff

getTranslate(**kwargs)

Translation vector. Default:0.0, 0.0, 0.0

Derived from mel command maya.cmds.polyChipOff

getTranslateX(**kwargs)

Translation X coord.

Derived from mel command maya.cmds.polyChipOff

getTranslateY(**kwargs)

Translation Y coord.

Derived from mel command maya.cmds.polyChipOff

getTranslateZ(**kwargs)

Translation Z coord.

Derived from mel command maya.cmds.polyChipOff

getWeight(**kwargs)

The weight, related to gravity. Default:0.0

Derived from mel command maya.cmds.polyChipOff

getWorldSpace(**kwargs)

This flag specifies which reference to use. If on: all geometrical values are taken in world reference. If off: all geometrical values are taken in object reference. C: Default is off. Q: When queried, this flag returns an int. Flag can have multiple arguments, passed either as a tuple or a list.

Derived from mel command maya.cmds.polyChipOff

setAttraction(val=True, **kwargs)

Attraction, related to magnet. The range is [-2.0, 2.0]. Default:0.0

Derived from mel command maya.cmds.polyChipOff

setCaching(val=True, **kwargs)

Toggle caching for all attributes so that no recomputation is needed

Derived from mel command maya.cmds.polyChipOff

setDuplicate(val=True, **kwargs)

If on, facets are duplicated, otherwise original facets are removed. C: Default is on. Q: When queried, this flag returns an int.

Derived from mel command maya.cmds.polyChipOff

setGain(val=True, **kwargs)

Gain factor per component. Can be painted using Artisan. Default:1.0

Derived from mel command maya.cmds.polyChipOff

setGravity(val=True, **kwargs)

The gravity vector. Default:0.0, -1.0, 0.0

Derived from mel command maya.cmds.polyChipOff

setGravityX(val=True, **kwargs)

Gravity X coord.

Derived from mel command maya.cmds.polyChipOff

setGravityY(val=True, **kwargs)

Gravity Y coord.

Derived from mel command maya.cmds.polyChipOff

setGravityZ(val=True, **kwargs)

Gravity Z coord.

Derived from mel command maya.cmds.polyChipOff

setKeepFacesTogether(val=True, **kwargs)

How to extrude edges. If on, extruded faces produced from the edges being extruded will be kept together. Otherwise they are pulled independently. Default:true

Derived from mel command maya.cmds.polyChipOff

setKeepFacetTogether(val=True, **kwargs)

How to extrude edges. If on, extruded faces produced from the edges being extruded will be kept together. Otherwise they are pulled independently. Default:true

Derived from mel command maya.cmds.polyChipOff

setLocalCenter(val=True, **kwargs)

Local center on the edge : 0=Middle point, 1=Start point, 2=End point. Default:0

Derived from mel command maya.cmds.polyChipOff

setLocalDirection(val=True, **kwargs)

Direction to determine X axis for local space. Default:1.0, 0.0, 0.0

Derived from mel command maya.cmds.polyChipOff

setLocalDirectionX(val=True, **kwargs)

X coord of the X axis.

Derived from mel command maya.cmds.polyChipOff

setLocalDirectionY(val=True, **kwargs)

Y coord of the X axis.

Derived from mel command maya.cmds.polyChipOff

setLocalDirectionZ(val=True, **kwargs)

Z coord of the X axis.

Derived from mel command maya.cmds.polyChipOff

setLocalRotate(val=True, **kwargs)

The local rotations. Default:0.0, 0.0, 0.0

Derived from mel command maya.cmds.polyChipOff

setLocalRotateX(val=True, **kwargs)

Local rotate X coord. The range is [0, 360].

Derived from mel command maya.cmds.polyChipOff

setLocalRotateY(val=True, **kwargs)

Local rotate Y coord. The range is [0, 360].

Derived from mel command maya.cmds.polyChipOff

setLocalRotateZ(val=True, **kwargs)

Local rotate Z coord : Rotation along the normal. The range is [0, 360].

Derived from mel command maya.cmds.polyChipOff

setLocalScale(val=True, **kwargs)

Local Scale. Default:1.0, 1.0, 1.0

Derived from mel command maya.cmds.polyChipOff

setLocalScaleX(val=True, **kwargs)

Scale X coord.

Derived from mel command maya.cmds.polyChipOff

setLocalScaleY(val=True, **kwargs)

Scale Y coord.

Derived from mel command maya.cmds.polyChipOff

setLocalScaleZ(val=True, **kwargs)

Scale Z coord.

Derived from mel command maya.cmds.polyChipOff

setLocalTranslate(val=True, **kwargs)

Local translate. Default:0.0, 0.0, 0.0

Derived from mel command maya.cmds.polyChipOff

setLocalTranslateX(val=True, **kwargs)

Local translation X coord.

Derived from mel command maya.cmds.polyChipOff

setLocalTranslateY(val=True, **kwargs)

Local translation Y coord.

Derived from mel command maya.cmds.polyChipOff

setLocalTranslateZ(val=True, **kwargs)

Local translation Z coord : Move along the normal.

Derived from mel command maya.cmds.polyChipOff

setMagnX(val=True, **kwargs)

Magnet X coord.

Derived from mel command maya.cmds.polyChipOff

setMagnY(val=True, **kwargs)

Magnet Y coord.

Derived from mel command maya.cmds.polyChipOff

setMagnZ(val=True, **kwargs)

Magnet Z coord.

Derived from mel command maya.cmds.polyChipOff

setMagnet(val=True, **kwargs)

The magnet vector. Default:0.0, 0.0, 0.0

Derived from mel command maya.cmds.polyChipOff

setNodeState(val=True, **kwargs)

Maya dependency nodes have 6 possible states. The Normal (0), HasNoEffect (1), and Blocking (2)states can be used to alter how the graph is evaluated. The Waiting-Normal (3), Waiting-HasNoEffect (4), Waiting-Blocking (5)are for internal use only. They temporarily shut off parts of the graph during interaction (e.g., manipulation). The understanding is that once the operation is done, the state will be reset appropriately, e.g. Waiting-Blockingwill reset back to Blocking. The Normaland Blockingcases apply to all nodes, while HasNoEffectis node specific; many nodes do not support this option. Plug-ins store state in the MPxNode::stateattribute. Anyone can set it or check this attribute. Additional details about each of these 3 states follow. StateDescriptionNormalThe normal node state. This is the default.HasNoEffectThe HasNoEffectoption (a.k.a. pass-through), is used in cases where there is an operation on an input producing an output of the same data type. Nearly all deformers support this state, as do a few other nodes. As stated earlier, it is not supported by all nodes. Its typical to implement support for the HasNoEffectstate in the nodes compute method and to perform appropriate operations. Plug-ins can also support HasNoEffect. The usual implementation of this state is to copy the input directly to the matching output without applying the algorithm in the node. For deformers, applying this state leaves the input geometry undeformed on the output. BlockingThis is implemented in the depend node base class and applies to all nodes. Blockingis applied during the evaluation phase to connections. An evaluation request to a blocked connection will return as failures, causing the destination plug to retain its current value. Dirty propagation is indirectly affected by this state since blocked connections are never cleaned. When a node is set to Blockingthe behavior is supposed to be the same as if all outgoing connections were broken. As long as nobody requests evaluation of the blocked node directly it wont evaluate after that. Note that a blocked node will still respond to getAttrrequests but a getAttron a downstream node will not reevaluate the blocked node. Setting the root transform of a hierarchy to Blockingwont automatically influence child transforms in the hierarchy. To do this, youd need to explicitly set all child nodes to the Blockingstate. For example, to set all child transforms to Blocking, you could use the following script. import maya.cmds as cmds def blockTree(root): nodesToBlock = [] for node in {child:1 for child in cmds.listRelatives( root, path=True, allDescendents=True )}.keys(): nodesToBlock += cmds.listConnections(node, source=True, destination=True ) for node in {source:1 for source in nodesToBlock}.keys(): cmds.setAttr( ‘%s.nodeState’ % node, 2 ) Applying this script would continue to draw objects but things would not be animated. Default:kdnNormal

Derived from mel command maya.cmds.polyChipOff

setOffset(val=True, **kwargs)

Local offset. Faces are moved this distance towards the inside of the face. Default:0.0

Derived from mel command maya.cmds.polyChipOff

setPivot(val=True, **kwargs)

The pivot for scaling and rotation. Default:0.0, 0.0, 0.0

Derived from mel command maya.cmds.polyChipOff

setPivotX(val=True, **kwargs)

Pivot X coord.

Derived from mel command maya.cmds.polyChipOff

setPivotY(val=True, **kwargs)

Pivot Y coord.

Derived from mel command maya.cmds.polyChipOff

setPivotZ(val=True, **kwargs)

Pivot Z coord.

Derived from mel command maya.cmds.polyChipOff

setRandom(val=True, **kwargs)

Random value for all parameters. Default:0.0

Derived from mel command maya.cmds.polyChipOff

setScale(val=True, **kwargs)

Scaling vector. Default:1.0, 1.0, 1.0

Derived from mel command maya.cmds.polyChipOff

setScaleX(val=True, **kwargs)

Scale X coord.

Derived from mel command maya.cmds.polyChipOff

setScaleY(val=True, **kwargs)

Scale Y coord.

Derived from mel command maya.cmds.polyChipOff

setScaleZ(val=True, **kwargs)

Scale Z coord.

Derived from mel command maya.cmds.polyChipOff

setTranslate(val=True, **kwargs)

Translation vector. Default:0.0, 0.0, 0.0

Derived from mel command maya.cmds.polyChipOff

setTranslateX(val=True, **kwargs)

Translation X coord.

Derived from mel command maya.cmds.polyChipOff

setTranslateY(val=True, **kwargs)

Translation Y coord.

Derived from mel command maya.cmds.polyChipOff

setTranslateZ(val=True, **kwargs)

Translation Z coord.

Derived from mel command maya.cmds.polyChipOff

setWeight(val=True, **kwargs)

The weight, related to gravity. Default:0.0

Derived from mel command maya.cmds.polyChipOff

setWorldSpace(val=True, **kwargs)

This flag specifies which reference to use. If on: all geometrical values are taken in world reference. If off: all geometrical values are taken in object reference. C: Default is off. Q: When queried, this flag returns an int. Flag can have multiple arguments, passed either as a tuple or a list.

Derived from mel command maya.cmds.polyChipOff