forked from bartvdbraak/blender
- rewrote arm rig so it creates 2 chains and blend them automatically (like the leg)
- use reverse order for palm fingers (pointer first) - allow copying bone class instances to exclude some bones - doc generation had a python error (incedently updated online docs linked from the splash)
This commit is contained in:
parent
9bc23bd616
commit
0e713ba1d0
@ -73,19 +73,23 @@ def _bone_class_instance_rename(self, attr, new_name):
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setattr(self, attr, ebone.name)
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def _bone_class_instance_copy(self, from_prefix="", to_prefix=""):
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def _bone_class_instance_copy(self, from_fmt="%s", to_fmt="%s", exclude_attrs=(), base_names=None):
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from_name_ls = []
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new_name_ls = []
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new_slot_ls = []
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for attr in self.attr_names:
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if attr in exclude_attrs:
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continue
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bone_name_orig = getattr(self, attr)
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ebone = getattr(self, attr + "_e")
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# orig_names[attr] = bone_name_orig
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# insert prefix
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if from_prefix:
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bone_name = from_prefix + bone_name_orig
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# insert formatting
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if from_fmt != "%s":
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bone_name = from_fmt % bone_name_orig
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ebone.name = bone_name
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bone_name = ebone.name # cant be sure we get what we ask for
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else:
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@ -95,8 +99,9 @@ def _bone_class_instance_copy(self, from_prefix="", to_prefix=""):
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new_slot_ls.append(attr)
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from_name_ls.append(bone_name)
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bone_name_orig = bone_name_orig.replace("ORG-", "") # XXX - we need a better way to do this
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new_name_ls.append(to_prefix + bone_name_orig)
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if base_names:
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bone_name_orig = base_names[bone_name_orig]
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new_name_ls.append(to_fmt % bone_name_orig)
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new_bones = copy_bone_simple_list(self.obj.data, from_name_ls, new_name_ls, True)
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new_bc = bone_class_instance(self.obj, new_slot_ls)
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@ -134,6 +139,10 @@ def _bone_class_instance_blend(self, from_bc, to_bc, target_bone=None, target_pr
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def bone_class_instance(obj, slots, name="BoneContainer"):
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if len(slots) != len(set(slots)):
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raise Exception("duplicate entries found %s" % attr_names)
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attr_names = tuple(slots) # dont modify the original
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slots = list(slots) # dont modify the original
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for i in range(len(slots)):
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@ -210,6 +219,11 @@ def blend_bone_list(obj, apply_bones, from_bones, to_bones, target_bone=None, ta
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if obj.mode == 'EDIT':
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raise Exception("blending cant be called in editmode")
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if len(apply_bones) != len(from_bones):
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raise Exception("lists differ in length (from -> apply): \n\t%s\n\t%s" % (from_bones, apply_bones))
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if len(apply_bones) != len(to_bones):
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raise Exception("lists differ in length (to -> apply): \n\t%s\n\t%s" % (to_bones, apply_bones))
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# setup the blend property
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if target_bone is None:
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target_bone = apply_bones[-1] # default to the last bone
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@ -320,6 +334,7 @@ def add_stretch_to(obj, from_name, to_name, name):
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bpy.ops.object.mode_set(mode=mode_orig)
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return stretch_name
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def add_pole_target_bone(obj, base_name, name, mode='CROSS'):
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'''
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@ -19,13 +19,15 @@
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# <pep8 compliant>
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import bpy
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from rigify import bone_class_instance, copy_bone_simple, add_pole_target_bone, add_stretch_to
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from rigify import bone_class_instance, copy_bone_simple, add_pole_target_bone, add_stretch_to, blend_bone_list
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from rna_prop_ui import rna_idprop_ui_prop_get
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from Mathutils import Vector
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METARIG_NAMES = "shoulder", "arm", "forearm", "hand"
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def metarig_template():
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# generated by rigify.write_meta_rig
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bpy.ops.object.mode_set(mode='EDIT')
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obj = bpy.context.object
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arm = obj.data
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@ -66,8 +68,11 @@ def metarig_definition(obj, orig_bone_name):
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mt.shoulder_p = mt.arm_p.parent
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if not mt.shoulder_p:
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raise Exception("could not find 'arm' parent, skipping:", orig_bone_name)
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print(mt.shoulder_p)
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raise Exception("could not find '%s' parent, skipping:" % orig_bone_name)
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if mt.arm_p.parent.bone.connected:
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raise Exception("expected '%s' to be disconnected from its parent" % orig_bone_name)
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mt.shoulder = mt.shoulder_p.name
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# We could have some bones attached, find the bone that has this as its 2nd parent
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@ -90,62 +95,41 @@ def metarig_definition(obj, orig_bone_name):
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return mt.names()
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def main(obj, definitions, base_names):
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"""
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the bone with the 'arm' property is the upper arm, this assumes a chain as follows.
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[shoulder, upper_arm, forearm, hand]
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...where this bone is 'upper_arm'
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there are 3 chains
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- Original
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- IK, MCH-%s_ik
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- IKSwitch, MCH-%s ()
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"""
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# Since there are 3 chains, this gets confusing so divide into 3 chains
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# Initialize container classes for convenience
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mt = bone_class_instance(obj, METARIG_NAMES) # meta
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def ik(obj, definitions, base_names):
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mt = bone_class_instance(obj, METARIG_NAMES)
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mt.shoulder, mt.arm, mt.forearm, mt.hand = definitions
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ik = bone_class_instance(obj, ["arm", "forearm", "pole", "hand"]) # ik
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sw = bone_class_instance(obj, ["socket", "shoulder", "arm", "forearm", "hand"]) # hinge
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ex = bone_class_instance(obj, ["arm_hinge"]) # hinge & extras
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arm = obj.data
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def chain_ik(prefix="MCH-%s_ik"):
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mt.update()
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# Add the edit bones
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ik.hand_e = copy_bone_simple(arm, mt.hand, prefix % base_names[mt.hand])
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ik.hand = ik.hand_e.name
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ik = bone_class_instance(obj, ["pole", "pole_vis", "hand_vis"])
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ik_chain = mt.copy(to_fmt="MCH-%s_ik", base_names=base_names, exclude_attrs=["shoulder"])
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ik.arm_e = copy_bone_simple(arm, mt.arm, prefix % base_names[mt.arm])
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ik.arm = ik.arm_e.name
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ik.forearm_e = copy_bone_simple(arm, mt.forearm, prefix % base_names[mt.forearm])
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ik.forearm = ik.forearm_e.name
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ik.arm_e.parent = mt.arm_e.parent
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ik.forearm_e.connected = mt.arm_e.connected
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ik.forearm_e.parent = ik.arm_e
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ik.forearm_e.connected = True
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# IK needs no parent_index
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ik_chain.hand_e.connected = False
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ik_chain.hand_e.parent = None
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ik_chain.arm_e.connected = False
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ik_chain.arm_e.parent = mt.shoulder_e
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# Add the bone used for the arms poll target
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ik.pole = add_pole_target_bone(obj, mt.forearm, "elbow_poll", mode='+Z')
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bpy.ops.object.mode_set(mode='OBJECT')
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# update bones after this!
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ik.hand_vis = add_stretch_to(obj, mt.hand, ik_chain.hand, "VIS-%s_ik" % base_names[mt.hand])
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ik.pole_vis = add_stretch_to(obj, mt.forearm, ik.pole, "VIS-%s_ik" % base_names[mt.forearm])
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ik.update()
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ik.hand_vis_e.restrict_select = True
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ik.pole_vis_e.restrict_select = True
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con = ik.forearm_p.constraints.new('IK')
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bpy.ops.object.mode_set(mode='OBJECT')
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mt.update()
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ik.update()
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ik_chain.update()
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con = ik_chain.forearm_p.constraints.new('IK')
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con.target = obj
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con.subtarget = ik.hand
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con.subtarget = ik_chain.hand
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con.pole_target = obj
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con.pole_subtarget = ik.pole
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@ -158,164 +142,78 @@ def main(obj, definitions, base_names):
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# ID Propery on the hand for IK/FK switch
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prop = rna_idprop_ui_prop_get(ik.hand_p, "ik", create=True)
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ik.hand_p["ik"] = 0.5
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prop = rna_idprop_ui_prop_get(ik_chain.hand_p, "ik", create=True)
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ik_chain.hand_p["ik"] = 0.5
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prop["soft_min"] = 0.0
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prop["soft_max"] = 1.0
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bpy.ops.object.mode_set(mode='EDIT')
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def chain_switch(prefix="MCH-%s"):
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print(mt.obj.mode)
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sw.update()
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# don't blend the shoulder
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return [None] + ik_chain.names()
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def fk(obj, definitions, base_names):
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arm = obj.data
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mt = bone_class_instance(obj, METARIG_NAMES)
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mt.shoulder, mt.arm, mt.forearm, mt.hand = definitions
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mt.update()
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sw.shoulder_e = copy_bone_simple(arm, mt.shoulder, prefix % base_names[mt.shoulder])
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sw.shoulder = sw.shoulder_e.name
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sw.shoulder_e.parent = mt.shoulder_e.parent
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sw.shoulder_e.connected = mt.shoulder_e.connected
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ex = bone_class_instance(obj, ["socket", "arm_hinge", "hand_delta"])
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fk_chain = mt.copy(base_names=base_names)
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sw.arm_e = copy_bone_simple(arm, mt.arm, prefix % base_names[mt.arm])
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sw.arm = sw.arm_e.name
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sw.arm_e.parent = sw.shoulder_e
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sw.arm_e.connected = arm.edit_bones[mt.shoulder].connected
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# shoulder is used as a hinge
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fk_chain.rename("shoulder", "MCH-%s_hinge" % base_names[mt.arm])
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fk_chain.shoulder_e.translate(Vector(0.0, fk_chain.shoulder_e.length / 2, 0.0))
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sw.forearm_e = copy_bone_simple(arm, mt.forearm, prefix % base_names[mt.forearm])
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sw.forearm = sw.forearm_e.name
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sw.forearm_e.parent = sw.arm_e
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sw.forearm_e.connected = arm.edit_bones[mt.forearm].connected
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# upper arm constrains to this.
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ex.socket_e = copy_bone_simple(arm, mt.arm, "MCH-%s_socket" % base_names[mt.arm])
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ex.socket = ex.socket_e.name
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ex.socket_e.connected = False
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ex.socket_e.parent = mt.shoulder_e
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ex.socket_e.tail = mt.shoulder_e.tail
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sw.hand_e = copy_bone_simple(arm, mt.hand, prefix % base_names[mt.hand])
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sw.hand = sw.hand_e.name
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sw.hand_e.parent = sw.forearm_e
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sw.hand_e.connected = arm.edit_bones[mt.hand].connected
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# The sw.hand_e needs to own all the children on the metarig's hand
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for child in mt.hand_e.children:
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child.parent = sw.hand_e
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# These are made the children of sw.shoulder_e
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# insert the 'DLT-hand', between the forearm and the hand
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# copies forarm rotation
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ex.hand_delta_e = copy_bone_simple(arm, fk_chain.hand, "DLT-%s" % base_names[mt.hand], parent=True)
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ex.hand_delta = ex.hand_delta_e.name
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ex.hand_delta_e.length *= 0.5
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ex.hand_delta_e.connected = False
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fk_chain.hand_e.connected = False
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fk_chain.hand_e.parent = ex.hand_delta_e
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bpy.ops.object.mode_set(mode='OBJECT')
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# Add constraints
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sw.update()
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#dummy, ik.arm, ik.forearm, ik.hand, ik.pole = ik_chain_tuple
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ik_driver_path = obj.pose.bones[ik.hand].path_to_id() + '["ik"]'
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def ik_fk_driver(con):
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'''
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3 bones use this for ik/fk switching
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'''
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fcurve = con.driver_add("influence", 0)
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driver = fcurve.driver
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tar = driver.targets.new()
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driver.type = 'AVERAGE'
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tar.name = "ik"
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tar.id_type = 'OBJECT'
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tar.id = obj
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tar.rna_path = ik_driver_path
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# ***********
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con = sw.arm_p.constraints.new('COPY_ROTATION')
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con.name = "FK"
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con.target = obj
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con.subtarget = mt.arm
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con = sw.arm_p.constraints.new('COPY_ROTATION')
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con.target = obj
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con.subtarget = ik.arm
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con.influence = 0.5
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ik_fk_driver(con)
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# ***********
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con = sw.forearm_p.constraints.new('COPY_ROTATION')
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con.name = "FK"
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con.target = obj
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con.subtarget = mt.forearm
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con = sw.forearm_p.constraints.new('COPY_ROTATION')
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con.name = "IK"
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con.target = obj
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con.subtarget = ik.forearm
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con.influence = 0.5
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ik_fk_driver(con)
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# ***********
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con = sw.hand_p.constraints.new('COPY_ROTATION')
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con.name = "FK"
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con.target = obj
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con.subtarget = mt.hand
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con = sw.hand_p.constraints.new('COPY_ROTATION')
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con.name = "IK"
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con.target = obj
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con.subtarget = ik.hand
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con.influence = 0.5
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ik_fk_driver(con)
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add_stretch_to(obj, sw.forearm, ik.pole, "VIS-elbow_ik_poll")
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add_stretch_to(obj, sw.hand, ik.hand, "VIS-hand_ik")
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bpy.ops.object.mode_set(mode='EDIT')
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def chain_shoulder(prefix="MCH-%s"):
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sw.socket_e = copy_bone_simple(arm, mt.arm, (prefix % base_names[mt.arm]) + "_socket")
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sw.socket = sw.socket_e.name
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sw.socket_e.tail = arm.edit_bones[mt.shoulder].tail
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# Set the shoulder as parent
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ik.update()
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sw.update()
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mt.update()
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sw.socket_e.parent = sw.shoulder_e
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ik.arm_e.parent = sw.shoulder_e
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# ***** add the shoulder hinge
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# yes this is correct, the shoulder copy gets the arm's name
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ex.arm_hinge_e = copy_bone_simple(arm, mt.shoulder, (prefix % base_names[mt.arm]) + "_hinge")
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ex.arm_hinge = ex.arm_hinge_e.name
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offset = ex.arm_hinge_e.length / 2.0
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ex.arm_hinge_e.head.y += offset
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ex.arm_hinge_e.tail.y += offset
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# Note: meta arm becomes child of hinge
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mt.arm_e.parent = ex.arm_hinge_e
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bpy.ops.object.mode_set(mode='OBJECT')
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ex.update()
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fk_chain.update()
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con = mt.arm_p.constraints.new('COPY_LOCATION')
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con = fk_chain.arm_p.constraints.new('COPY_LOCATION')
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con.target = obj
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con.subtarget = sw.socket
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con.subtarget = ex.socket
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fk_chain.hand_p.lock_location = True, True, True
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con = ex.hand_delta_p.constraints.new('COPY_ROTATION')
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con.target = obj
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con.subtarget = fk_chain.forearm
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def hinge_setup():
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# Hinge constraint & driver
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con = ex.arm_hinge_p.constraints.new('COPY_ROTATION')
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con = fk_chain.shoulder_p.constraints.new('COPY_ROTATION')
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con.name = "hinge"
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con.target = obj
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con.subtarget = sw.shoulder
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con.subtarget = mt.shoulder
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driver_fcurve = con.driver_add("influence", 0)
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driver = driver_fcurve.driver
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controller_path = mt.arm_p.path_to_id()
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controller_path = fk_chain.arm_p.path_to_id()
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# add custom prop
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mt.arm_p["hinge"] = 0.0
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prop = rna_idprop_ui_prop_get(mt.arm_p, "hinge", create=True)
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fk_chain.arm_p["hinge"] = 0.0
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prop = rna_idprop_ui_prop_get(fk_chain.arm_p, "hinge", create=True)
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prop["soft_min"] = 0.0
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prop["soft_max"] = 1.0
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@ -330,16 +228,21 @@ def main(obj, definitions, base_names):
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tar.id = obj
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tar.rna_path = controller_path + '["hinge"]'
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mod = driver_fcurve.modifiers[0]
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mod.poly_order = 1
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mod.coefficients[0] = 1.0
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mod.coefficients[1] = -1.0
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hinge_setup()
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bpy.ops.object.mode_set(mode='EDIT')
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# remove the shoulder and re-parent
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return None, fk_chain.arm, fk_chain.forearm, fk_chain.hand
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chain_ik()
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chain_switch()
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chain_shoulder()
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# Shoulder with its delta and hinge.
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def main(obj, bone_definition, base_names):
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bones_ik = ik(obj, bone_definition, base_names)
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bones_fk = fk(obj, bone_definition, base_names)
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# TODO - return a list for fk and IK
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return None
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bpy.ops.object.mode_set(mode='OBJECT')
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blend_bone_list(obj, bone_definition, bones_ik, bones_fk)
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@ -146,7 +146,7 @@ def ik(obj, bone_definition, base_names):
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|
||||
|
||||
# Make a new chain, ORG are the original bones renamed.
|
||||
ik_chain = mt_chain.copy(to_prefix="MCH-")
|
||||
ik_chain = mt_chain.copy(to_fmt="MCH-%s")
|
||||
|
||||
# simple rename
|
||||
ik_chain.rename("thigh", ik_chain.thigh + "_ik")
|
||||
|
@ -41,31 +41,31 @@ def metarig_template():
|
||||
bone.roll = -3.1396
|
||||
bone.connected = False
|
||||
bone.parent = arm.edit_bones['hand']
|
||||
bone = arm.edit_bones.new('palm.04')
|
||||
bone = arm.edit_bones.new('palm.02')
|
||||
bone.head[:] = 0.5000, -0.0000, 0.0000
|
||||
bone.tail[:] = 0.6433, 1.2444, -0.1299
|
||||
bone.roll = -3.1357
|
||||
bone.connected = False
|
||||
bone.parent = arm.edit_bones['hand']
|
||||
bone = arm.edit_bones.new('palm.05')
|
||||
bone = arm.edit_bones.new('palm.01')
|
||||
bone.head[:] = 1.0000, 0.0000, 0.0000
|
||||
bone.tail[:] = 1.3961, 1.0084, -0.1299
|
||||
bone.roll = -3.1190
|
||||
bone.connected = False
|
||||
bone.parent = arm.edit_bones['hand']
|
||||
bone = arm.edit_bones.new('palm.02')
|
||||
bone = arm.edit_bones.new('palm.04')
|
||||
bone.head[:] = -0.5000, 0.0000, -0.0000
|
||||
bone.tail[:] = -0.5674, 1.2022, -0.1299
|
||||
bone.roll = 3.1386
|
||||
bone.connected = False
|
||||
bone.parent = arm.edit_bones['hand']
|
||||
bone = arm.edit_bones.new('palm.01')
|
||||
bone = arm.edit_bones.new('palm.05')
|
||||
bone.head[:] = -1.0000, 0.0000, -0.0000
|
||||
bone.tail[:] = -1.3286, 1.0590, -0.1299
|
||||
bone.roll = 3.1239
|
||||
bone.connected = False
|
||||
bone.parent = arm.edit_bones['hand']
|
||||
bone = arm.edit_bones.new('palm.06')
|
||||
bone = arm.edit_bones.new('thumb')
|
||||
bone.head[:] = 1.3536, -0.2941, 0.0000
|
||||
bone.tail[:] = 2.1109, 0.4807, -0.1299
|
||||
bone.roll = -3.0929
|
||||
@ -73,16 +73,16 @@ def metarig_template():
|
||||
bone.parent = arm.edit_bones['hand']
|
||||
|
||||
bpy.ops.object.mode_set(mode='OBJECT')
|
||||
pbone = obj.pose.bones['palm.05']
|
||||
pbone = obj.pose.bones['palm.01']
|
||||
pbone['type'] = 'palm'
|
||||
|
||||
|
||||
def metarig_definition(obj, orig_bone_name):
|
||||
'''
|
||||
The bone given is the first in an array of siblings with a matching basename
|
||||
sorted with the little finger lowest.
|
||||
sorted with pointer first, little finger last.
|
||||
eg.
|
||||
[pinky, ring... etc]
|
||||
[pointer, middle, ring, pinky... ] # any number of fingers
|
||||
'''
|
||||
arm = obj.data
|
||||
|
||||
@ -91,6 +91,7 @@ def metarig_definition(obj, orig_bone_name):
|
||||
palm_base = palm_bone.basename
|
||||
bone_definition = [bone.name for bone in palm_parent.children if bone.basename == palm_base]
|
||||
bone_definition.sort()
|
||||
bone_definition.reverse()
|
||||
|
||||
return [palm_parent.name] + bone_definition
|
||||
|
||||
|
@ -691,7 +691,14 @@ def op2epy(BASEPATH):
|
||||
operators = dir(op_mod)
|
||||
for op in sorted(operators):
|
||||
# rna = getattr(bpy.types, op).bl_rna
|
||||
try:
|
||||
rna = getattr(op_mod, op).get_rna()
|
||||
except AttributeError:
|
||||
rna = None
|
||||
except TypeError:
|
||||
rna = None
|
||||
|
||||
if rna:
|
||||
write_func(rna, '', out, 'OPERATOR')
|
||||
|
||||
out.write('\n')
|
||||
|
Loading…
Reference in New Issue
Block a user