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+""" Optional file providing a tool to visualize Mantis Graphs, for debugging and development"""
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+
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+from bpy.types import Node, NodeTree, Operator
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+
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+from .utilities import (prRed, prGreen, prPurple, prWhite,
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+ prOrange,
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+ wrapRed, wrapGreen, wrapPurple, wrapWhite,
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+ wrapOrange,)
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+
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+class MantisVisualizeTree(NodeTree):
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+ '''A custom node tree type that will show up in the editor type list'''
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+ bl_idname = 'MantisVisualizeTree'
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+ bl_label = "mantis output"
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+ bl_icon = 'HIDE_OFF'
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+
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+class MantisVisualizeNode(Node):
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+ bl_idname = "MantisVisualizeNode"
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+ bl_label = "Node"
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+ @classmethod
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+ def poll(cls, ntree):
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+ return (ntree.bl_idname in ['MantisVisualizeTree'])
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+
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+ def init(self, context):
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+ pass
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+
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+ def gen_data(self, mantis_node, mode='DEBUG_CONNECTIONS'):
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+ from .utilities import get_node_prototype
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+ np=get_node_prototype(mantis_node.ui_signature, mantis_node.base_tree)
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+ self.use_custom_color = True
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+ match mantis_node.node_type:
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+ case 'XFORM': self.color = (1.0 ,0.5, 0.0)
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+ case 'LINK': self.color = (0.4 ,0.2, 1.0)
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+ case 'UTILITY': self.color = (0.2 ,0.2, 0.2)
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+ case 'DUMMY_SCHEMA': self.color = (0.85 ,0.95, 0.9)
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+ case 'DUMMY': self.color = (0.05 ,0.05, 0.15)
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+ self.name = '.'.join(mantis_node.signature[1:])
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+
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+ if np:
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+ if np.label:
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+ self.label=np.label
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+ else:
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+ self.label=np.name
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+ for inp in mantis_node.inputs:
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+ match mode:
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+ case "DEBUG_CONNECTIONS":
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+ if not inp.is_connected:
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+ continue
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+ s = self.inputs.new('WildcardSocket', inp.name)
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+ try:
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+ if sock := np.inputs.get(inp.name):
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+ s.color = inp.color_simple
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+ except AttributeError: #default bl_idname types like Float and Vector, no biggie
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+ pass
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+ except KeyError:
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+ pass
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+ for out in mantis_node.outputs:
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+ match mode:
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+ case "DEBUG_CONNECTIONS":
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+ if not out.is_connected:
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+ continue
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+
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+ s = self.outputs.new('WildcardSocket', out.name)
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+ try:
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+ if sock := np.outputs.get(out.name):
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+ s.color = out.color_simple
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+ except AttributeError: #default bl_idname types like Float and Vector, no biggie
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+ pass
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+ except KeyError:
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+ pass
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+ self.location = np.location # will get overwritten by Grandalf later.
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+ else:
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+ self.label = mantis_node.signature[-1] # which is be the unique name.
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+ for inp in mantis_node.inputs.keys():
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+ match mode:
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+ case "DEBUG_CONNECTIONS":
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+ if not inp.is_connected:
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+ continue
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+ self.inputs.new('WildcardSocket', inp.name)
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+ for out in mantis_node.outputs.keys():
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+ match mode:
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+ case "DEBUG_CONNECTIONS":
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+ if not out.is_connected:
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+ continue
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+ self.outputs.new('WildcardSocket', out.name)
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+
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+def gen_vis_node(mantis_node, vis_tree, links):
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+ from .utilities import get_node_prototype
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+ base_tree= mantis_node.base_tree
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+ vis = vis_tree.nodes.new('MantisVisualizeNode')
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+ vis.gen_data(mantis_node)
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+ for inp in mantis_node.inputs.values():
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+ for l in inp.links:
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+ links.add(l)
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+ for out in mantis_node.outputs.values():
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+ for l in out.links:
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+ links.add(l)
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+ return vis
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+
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+def visualize_tree(nodes, base_tree, context):
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+ # first create a MantisVisualizeTree
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+ from .readtree import check_and_add_root
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+ from .utilities import trace_all_nodes_from_root
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+ import bpy
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+ trace_all_nodes=True
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+ if trace_all_nodes:
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+ roots=[]
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+ for n in nodes.values():
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+ check_and_add_root(n, roots)
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+ mantis_nodes=set()
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+ for r in roots:
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+ nodes_from_root = ( trace_all_nodes_from_root(r, mantis_nodes))
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+ if len(mantis_nodes) == 0:
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+ print ("No nodes to visualize")
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+ return
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+ all_links = set()
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+ nodes={}
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+ vis_tree = bpy.data.node_groups.new(base_tree.name+'_visualized', type='MantisVisualizeTree')
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+ else:
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+ mantis_nodes = list(base_tree.parsed_tree.values())
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+
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+ for m in mantis_nodes:
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+ nodes[m.signature]=gen_vis_node(m, vis_tree,all_links)
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+
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+ for l in all_links:
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+ if l.to_node.node_type in ['DUMMY_SCHEMA', 'DUMMY'] or \
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+ l.from_node.node_type in ['DUMMY_SCHEMA', 'DUMMY']:
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+ pass
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+ # print (l.from_node.node_type, l.to_node.node_type)
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+ # n_name_in = '.'.join(l.from_node.signature[1:])
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+ # s_name_in = l.from_socket
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+ # n_name_out = '.'.join(l.to_node.signature[1:])
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+ # s_name_out = l.to_socket
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+ # print (n_name_in, s_name_in, " --> ", n_name_out, s_name_out)
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+ from_node=nodes[l.from_node.signature]
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+ to_node=nodes[l.to_node.signature]
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+ from_socket = from_node.outputs[l.from_socket]
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+ to_socket = to_node.inputs[l.to_socket]
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+ try:
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+ vis_tree.links.new(
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+ input=from_socket,
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+ output=to_socket,
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+ )
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+ except Exception as e:
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+ print (type(e))
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+ prRed(f"Could not make link {n_name_in}:{s_name_in}-->{n_name_out}:{s_name_out}")
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+ print(e)
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+ raise e
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+ # at this point not all links are in the tree yet!
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+
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+ def has_links (n):
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+ for input in n.inputs:
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+ if input.is_linked:
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+ return True
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+ for output in n.outputs:
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+ if output.is_linked:
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+ return True
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+ return False
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+
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+ no_links=[]
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+
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+ for n in vis_tree.nodes:
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+ if not has_links(n):
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+ no_links.append(n)
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+
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+ def side_len(n):
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+ from math import floor
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+ side = floor(n**(1/2)) + 1
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+ return side
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+ side=side_len(len(no_links))
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+ break_me = True
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+ for i in range(side):
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+ for j in range(side):
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+ index = side*i+j
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+ try:
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+ n = no_links[index]
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+ n.location.x = i*200
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+ n.location.y = j*200
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+ except IndexError:
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+ break_me = True # it's too big, that's OK the square is definitely bigger
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+ break
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+ if break_me:
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+ break
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+
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+
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+ from .utilities import SugiyamaGraph
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+ SugiyamaGraph(vis_tree, 16)
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+
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+from .ops_nodegroup import mantis_tree_poll_op
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+
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+class MantisVisualizeOutput(Operator):
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+ """Mantis Visualize Output Operator"""
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+ bl_idname = "mantis.visualize_output"
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+ bl_label = "Visualize Output"
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+
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+ @classmethod
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+ def poll(cls, context):
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+ return (mantis_tree_poll_op(context))
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+
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+ def execute(self, context):
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+ from time import time
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+ from .utilities import wrapGreen, prGreen
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+
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+ tree=context.space_data.path[0].node_tree
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+ tree.update_tree(context)
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+ # tree.execute_tree(context)
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+ prGreen(f"Visualize Tree: {tree.name}")
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+ nodes = tree.parsed_tree
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+ visualize_tree(nodes, tree, context)
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+ return {"FINISHED"}
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