readtree.py 27 KB

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  1. from .utilities import prRed, prGreen, prPurple, prWhite, prOrange, \
  2. wrapRed, wrapGreen, wrapPurple, wrapWhite, wrapOrange
  3. from .utilities import get_node_prototype, class_for_mantis_prototype_node, \
  4. gen_nc_input_for_data
  5. # BAD NAMES ahead, as these have nothing to do with NodeReroute nodes.
  6. def reroute_common(nc, nc_to, all_nc):
  7. # we need to do this: go to the to-node
  8. # then reroute the link in the to_node all the way to the beginning
  9. # so that the number of links in "real" nodes is unchanged
  10. # then the links in the dummy nodes need to be deleted
  11. # watch=False
  12. # if nc.signature[-1] == 'NodeGroupOutput': watch=True
  13. for inp_name, inp in nc.inputs.items():
  14. # assume each input socket only has one input for now
  15. if inp.is_connected:
  16. while (inp.links):
  17. in_link = inp.links.pop()
  18. from_nc = in_link.from_node
  19. from_socket = in_link.from_socket
  20. links = []
  21. from_links = from_nc.outputs[from_socket].links.copy()
  22. while(from_links): # This is a weird way to do this HACK
  23. from_link = from_links.pop()
  24. if from_link == in_link:
  25. from_link.die()
  26. continue # DELETE the dummy node link
  27. links.append(from_link)
  28. from_nc.outputs[from_socket].links = links
  29. down = nc_to.outputs[inp_name]
  30. for downlink in down.links:
  31. downlink.from_node = from_nc
  32. downlink.from_socket = from_socket
  33. from_nc.outputs[from_socket].links.append(downlink)
  34. if hasattr(downlink.to_node, "reroute_links"):
  35. downlink.to_node.reroute_links(downlink.to_node, all_nc)
  36. in_link.die()
  37. def reroute_links_grp(nc, all_nc):
  38. if nc.inputs:
  39. if (nc_to := all_nc.get( ( *nc.signature, "NodeGroupInput") )):
  40. reroute_common(nc, nc_to, all_nc)
  41. else:
  42. raise RuntimeError("internal error: failed to enter a node group ")
  43. def reroute_links_grpout(nc, all_nc):
  44. if (nc_to := all_nc.get( ( *nc.signature[:-1],) )):
  45. reroute_common(nc, nc_to, all_nc)
  46. else:
  47. raise RuntimeError("error leaving a node group (maybe you are running the tree from inside a node group?)")
  48. def reroute_links_grpin(nc, all_nc):
  49. pass
  50. # FIXME I don't think these signatures are unique.
  51. def insert_lazy_parents(nc):
  52. from .link_containers import LinkInherit
  53. from .base_definitions import NodeLink
  54. inherit_nc = None
  55. if nc.inputs["Relationship"].is_connected:
  56. link = nc.inputs["Relationship"].links[0]
  57. # print(nc)
  58. from_nc = link.from_node
  59. if from_nc.node_type in ["XFORM"] and link.from_socket in ["xForm Out"]:
  60. inherit_nc = LinkInherit(("MANTIS_AUTOGENERATED", *nc.signature[1:], "LAZY_INHERIT"), nc.base_tree)
  61. for from_link in from_nc.outputs["xForm Out"].links:
  62. if from_link.to_node == nc and from_link.to_socket == "Relationship":
  63. break # this is it
  64. from_link.to_node = inherit_nc; from_link.to_socket="Parent"
  65. links=[]
  66. while (nc.inputs["Relationship"].links):
  67. to_link = nc.inputs["Relationship"].links.pop()
  68. if to_link.from_node == from_nc and to_link.from_socket == "xForm Out":
  69. continue # don't keep this one
  70. links.append(to_link)
  71. nc.inputs["Relationship"].links=links
  72. link=NodeLink(from_node=inherit_nc, from_socket="Inheritance", to_node=nc, to_socket="Relationship")
  73. inherit_nc.inputs["Parent"].links.append(from_link)
  74. inherit_nc.parameters = {
  75. "Parent":None,
  76. "Inherit Rotation":True,
  77. "Inherit Scale":'FULL',
  78. "Connected":False,
  79. }
  80. # because the from node may have already been done.
  81. init_connections(from_nc)
  82. init_dependencies(from_nc)
  83. init_connections(inherit_nc)
  84. init_dependencies(inherit_nc)
  85. return inherit_nc
  86. from_name_filter = ["Driver", ]
  87. to_name_filter = [
  88. "Custom Object xForm Override",
  89. "Custom Object",
  90. "Deform Bones"
  91. ]
  92. # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** #
  93. # DATA FROM NODES #
  94. # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** #
  95. from .base_definitions import replace_types, NodeSocket
  96. # TODO: investigate whether I can set the properties in the downstream nodes directly.
  97. # I am doing this in Schema Solver and it seems to work quite efficiently.
  98. def make_connections_to_ng_dummy(base_tree, tree_path_names, local_nc, all_nc, np):
  99. nc_to = local_nc[(None, *tree_path_names, np.name)]
  100. for inp in np.inputs:
  101. nc_from = None
  102. if inp.bl_idname in ['WildcardSocket']:
  103. continue # it isn't a real input so I don't think it is good to check it.
  104. to_s = inp.identifier
  105. if not inp.is_linked: # make an autogenerated NC for the inputs of the group node
  106. if inp.bl_idname in ['xFormSocket']:
  107. continue
  108. from .node_container_common import get_socket_value
  109. nc_cls = gen_nc_input_for_data(inp)
  110. if (nc_cls):
  111. sig = ("MANTIS_AUTOGENERATED", *tree_path_names, np.name, inp.name, inp.identifier)
  112. nc_from = nc_cls(sig, base_tree)
  113. # ugly! maybe even a HACK!
  114. nc_from.inputs = {}
  115. nc_from.outputs = {inp.name:NodeSocket(name = inp.name, node=nc_from)}
  116. nc_from.parameters = {inp.name:get_socket_value(inp)}
  117. #
  118. local_nc[sig] = nc_from; all_nc[sig] = nc_from
  119. from_s = inp.name
  120. else:
  121. prRed("No available auto-generated class for input", *tree_path_names, np.name, inp.name)
  122. nc_from.outputs[from_s].connect(node=nc_to, socket=to_s, sort_id=0)
  123. def gen_node_containers(base_tree, current_tree, tree_path_names, all_nc, local_nc, dummy_nodes, group_nodes, schema_nodes ):
  124. from .internal_containers import DummyNode
  125. from .base_definitions import SchemaUINode
  126. for np in current_tree.nodes:
  127. # TODO: find out why I had to add this in. these should be taken care of already? BUG
  128. if np.bl_idname in ["NodeFrame", "NodeReroute"]:
  129. continue # not a Mantis Node
  130. if (nc_cls := class_for_mantis_prototype_node(np)):
  131. sig = (None, *tree_path_names, np.name)
  132. # but I will probably choose to handle this elsewhere
  133. # if isinstance(np, SchemaUINode):
  134. # continue # we won't do this one here.
  135. if np.bl_idname in replace_types:
  136. # prPurple(np.bl_idname)
  137. sig = (None, *tree_path_names, np.bl_idname)
  138. if local_nc.get(sig):
  139. continue # already made
  140. nc = nc_cls( sig , base_tree)
  141. local_nc[sig] = nc; all_nc[sig] = nc
  142. # if np.bl_idname in ['UtilityMatricesFromCurve', 'UtilityBreakArray']:
  143. # schema_nodes[sig]=nc
  144. elif np.bl_idname in ["NodeGroupInput", "NodeGroupOutput"]: # make a Dummy Node
  145. # we only want ONE dummy in/out per tree_path, so use the bl_idname
  146. sig = (None, *tree_path_names, np.bl_idname)
  147. if not local_nc.get(sig):
  148. nc = DummyNode( signature=sig , base_tree=base_tree, prototype=np )
  149. local_nc[sig] = nc; all_nc[sig] = nc; dummy_nodes[sig] = nc
  150. if np.bl_idname in ["NodeGroupOutput"]:
  151. nc.reroute_links = reroute_links_grpout
  152. if np.bl_idname in ["NodeGroupInput"]:
  153. nc.reroute_links = reroute_links_grpin
  154. # else:
  155. # nc = local_nc.get(sig)
  156. elif np.bl_idname in ["MantisNodeGroup", "MantisSchemaGroup"]:
  157. nc = DummyNode( signature= (sig := (None, *tree_path_names, np.name) ), base_tree=base_tree, prototype=np )
  158. local_nc[sig] = nc; all_nc[sig] = nc; dummy_nodes[sig] = nc
  159. make_connections_to_ng_dummy(base_tree, tree_path_names, local_nc, all_nc, np)
  160. if np.bl_idname == "MantisNodeGroup":
  161. group_nodes.append(nc)
  162. nc.reroute_links = reroute_links_grp
  163. else:
  164. group_nodes.append(nc)
  165. schema_nodes[sig] = nc
  166. else:
  167. nc = None
  168. prRed(f"Can't make nc for.. {np.bl_idname}")
  169. # this should be done at init
  170. if nc.signature[0] not in ['MANTIS_AUTOGENERATED'] and nc.node_type not in ['SCHEMA', 'DUMMY', 'DUMMY_SCHEMA']:
  171. nc.fill_parameters()
  172. def data_from_tree(base_tree, tree_path, dummy_nodes, all_nc, all_schema):
  173. # TODO: it should be realtively easy to make this use a while loop instead of recursion.
  174. local_nc, group_nodes = {}, []
  175. tree_path_names = [tree.name for tree in tree_path if hasattr(tree, "name")]
  176. if tree_path[-1]:
  177. current_tree = tree_path[-1].node_tree # this may be None.
  178. else:
  179. current_tree = base_tree
  180. #
  181. if current_tree: # the node-group may not have a tree set - if so, ignore it.
  182. from .utilities import clear_reroutes
  183. links = clear_reroutes(list(current_tree.links))
  184. gen_node_containers(base_tree, current_tree, tree_path_names, all_nc, local_nc, dummy_nodes, group_nodes, all_schema)
  185. from .utilities import link_node_containers
  186. for link in links:
  187. link_node_containers((None, *tree_path_names), link, local_nc)
  188. # Now, descend into the Node Groups and recurse
  189. for nc in group_nodes:
  190. # ng = get_node_prototype(nc.signature, base_tree)
  191. data_from_tree(base_tree, tree_path+[nc.prototype], dummy_nodes, all_nc, all_schema)
  192. return dummy_nodes, all_nc, all_schema
  193. from .utilities import check_and_add_root, init_connections, init_dependencies, init_schema_dependencies
  194. def delete_nc(nc):
  195. return
  196. # this doesn't seem to work actually
  197. for socket in nc.inputs.values():
  198. for l in socket.links:
  199. if l is not None:
  200. l.__del__()
  201. for socket in nc.outputs.values():
  202. for l in socket.links:
  203. if l is not None:
  204. l.__del__()
  205. def is_signature_in_other_signature(sig_a, sig_b):
  206. # this is the easiest but not the best way to do this:
  207. # this function is hideous but it does not seem to have any significant effect on timing
  208. # tested it with profiling on a full character rig.
  209. # OK. Had another test in a more extreme situation and this one came out on top for time spent and calls
  210. # gotta optimize this one.
  211. sig_a = list(sig_a)
  212. sig_a = ['MANTIS_NONE' if val is None else val for val in sig_a]
  213. sig_b = list(sig_b)
  214. sig_b = ['MANTIS_NONE' if val is None else val for val in sig_b]
  215. string_a = "".join(sig_a)
  216. string_b = "".join(sig_b)
  217. return string_a in string_b
  218. def solve_schema_to_tree(nc, all_nc, roots=[]):
  219. from .utilities import get_node_prototype
  220. np = get_node_prototype(nc.signature, nc.base_tree)
  221. # if not hasattr(np, 'node_tree'):
  222. # nc.bPrepare()
  223. # nc.prepared=True
  224. # return {}
  225. from .schema_solve import SchemaSolver
  226. length = nc.evaluate_input("Schema Length")
  227. tree = np.node_tree
  228. prOrange(f"Expanding schema {tree.name} in node {nc} with length {length}.")
  229. for inp in nc.inputs.values():
  230. inp.links.sort(key=lambda a : -a.multi_input_sort_id)
  231. solver = SchemaSolver(nc, all_nc, np)
  232. solved_nodes = solver.solve(length)
  233. # prGreen(f"Finished solving schema {tree.name} in node {nc}.")
  234. prWhite(f"Schema declared {len(solved_nodes)} nodes.")
  235. nc.prepared = True
  236. # TODO this should be handled by the schema's finalize() function
  237. del_me = []
  238. for k, v in all_nc.items():
  239. # delete all the schema's internal nodes. The links have already been deleted by the solver.
  240. if v.signature[0] not in ['MANTIS_AUTOGENERATED'] and is_signature_in_other_signature(nc.signature, k):
  241. # print (wrapOrange("Culling: ")+wrapRed(v))
  242. delete_nc(v)
  243. del_me.append(k)
  244. for k in del_me:
  245. del all_nc[k]
  246. for k,v in solved_nodes.items():
  247. all_nc[k]=v
  248. init_connections(v)
  249. check_and_add_root(v, roots, include_non_hierarchy=True)
  250. # end TODO
  251. return solved_nodes
  252. # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** #
  253. # PARSE NODE TREE #
  254. # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** # *** #
  255. from .utilities import get_all_dependencies
  256. def get_schema_length_dependencies(node):
  257. """ Find all of the nodes that the Schema Length input depends on. """
  258. # the deps recursively from the from_nodes connected to Schema Length
  259. deps = []
  260. # return get_all_dependencies(node)
  261. inp = node.inputs.get("Schema Length")
  262. if not inp:
  263. inp = node.inputs.get("Array")
  264. # this way we can handle Schema and Array Get nodes with one function
  265. # ... since I may add more in the future this is not a robust solution HACK
  266. for l in inp.links:
  267. deps.extend(get_all_dependencies(l.from_node))
  268. if inp := node.inputs.get("Index"):
  269. for l in inp.links:
  270. deps.extend(get_all_dependencies(l.from_node))
  271. # now get the auto-generated simple inputs. These should not really be there but I haven't figured out how to set things directly yet lol
  272. for inp in node.inputs.values():
  273. for l in inp.links:
  274. if "MANTIS_AUTOGENERATED" in l.from_node.signature:
  275. # l.from_node.bPrepare() # try this...
  276. # l.from_node.prepared = True; l.from_node.executed = True
  277. deps.extend([l.from_node]) # why we need this lol
  278. return deps
  279. def parse_tree(base_tree):
  280. from uuid import uuid4 # do this here?
  281. base_tree.execution_id = uuid4().__str__() # set this, it may be used by nodes during execution
  282. # annoyingly I have to pass in values for all of the dicts because if I initialize them in the function call
  283. # then they stick around because the function definition inits them once and keeps a reference
  284. # so instead I have to supply them to avoid ugly code or bugs elsewhere
  285. # it's REALLY confusing when you run into this sort of problem. So it warrants four entire lines of comments!
  286. import time
  287. data_start_time = time.time()
  288. dummy_nodes, all_nc, all_schema = data_from_tree(base_tree, tree_path = [None], dummy_nodes = {}, all_nc = {}, all_schema={})
  289. # return
  290. prGreen(f"Pulling data from tree took {time.time() - data_start_time} seconds")
  291. for sig, dummy in dummy_nodes.items():
  292. if (hasattr(dummy, "reroute_links")):
  293. dummy.reroute_links(dummy, all_nc)
  294. # TODO
  295. # MODIFY BELOW to use hierarchy_dependencies instead
  296. # SCHEMA DUMMY nodes will need to gather the hierarchy and non-hierarchy dependencies
  297. # so SCHEMA DUMMY will not make their dependencies all hierarchy
  298. # since they will need to be able to send drivers and such
  299. start_time = time.time()
  300. sig_check = (None, 'Node Group.001', 'switch_thigh')
  301. roots = []
  302. arrays = []
  303. from .misc_containers import UtilityArrayGet
  304. for nc in all_nc.values():
  305. # clean up the groups
  306. if nc.node_type in ["DUMMY"]:
  307. if nc.prototype.bl_idname in ("MantisNodeGroup", "NodeGroupOutput"):
  308. continue
  309. from .base_definitions import from_name_filter, to_name_filter
  310. init_dependencies(nc)
  311. init_connections(nc)
  312. check_and_add_root(nc, roots, include_non_hierarchy=True)
  313. if isinstance(nc, UtilityArrayGet):
  314. arrays.append(nc)
  315. from collections import deque
  316. unsolved_schema = deque()
  317. solve_only_these = []; solve_only_these.extend(list(all_schema.values()))
  318. for schema in all_schema.values():
  319. # so basically we need to check every parent node if it is a schema
  320. # this is a fairly slapdash solution but it works and I won't change it
  321. for i in range(len(schema.signature)-1): # -1, we don't want to check this node, obviously
  322. if parent := all_schema.get(schema.signature[:i+1]):
  323. solve_only_these.remove(schema)
  324. break
  325. else:
  326. init_schema_dependencies(schema, all_nc)
  327. solve_only_these.extend(get_schema_length_dependencies(schema))
  328. unsolved_schema.append(schema)
  329. for array in arrays:
  330. solve_only_these.extend(get_schema_length_dependencies(array))
  331. solve_only_these.extend(arrays)
  332. schema_solve_done = set()
  333. solve_only_these = set(solve_only_these)
  334. solve_layer = unsolved_schema.copy(); solve_layer.extend(roots)
  335. while(solve_layer):
  336. n = solve_layer.pop()
  337. if n not in solve_only_these: # removes the unneeded node from the solve-layer
  338. continue
  339. if n.signature in all_schema.keys():
  340. for dep in n.hierarchy_dependencies:
  341. if dep not in schema_solve_done and (dep in solve_only_these):
  342. solve_layer.appendleft(n)
  343. break
  344. else:
  345. solved_nodes = solve_schema_to_tree(n, all_nc, roots)
  346. unsolved_schema.remove(n)
  347. schema_solve_done.add(n)
  348. for node in solved_nodes.values():
  349. #
  350. init_dependencies(node)
  351. init_connections(node)
  352. #
  353. solve_layer.appendleft(node)
  354. for conn in n.hierarchy_connections:
  355. if conn not in schema_solve_done and conn not in solve_layer:
  356. solve_layer.appendleft(conn)
  357. else:
  358. for dep in n.hierarchy_dependencies:
  359. if dep not in schema_solve_done:
  360. break
  361. else:
  362. n.bPrepare()
  363. schema_solve_done.add(n)
  364. for conn in n.hierarchy_connections:
  365. if conn not in schema_solve_done and conn not in solve_layer:
  366. solve_layer.appendleft(conn)
  367. if unsolved_schema:
  368. raise RuntimeError("Failed to resolve all schema declarations")
  369. # I had a problem with this looping forever. I think it is resolved... but I don't know lol
  370. all_nc = list(all_nc.values()).copy()
  371. kept_nc = {}
  372. while (all_nc):
  373. nc = all_nc.pop()
  374. if nc in arrays:
  375. continue
  376. if nc.node_type in ["DUMMY"]:
  377. continue
  378. # cleanup autogen nodes
  379. if nc.signature[0] == "MANTIS_AUTOGENERATED" and len(nc.inputs) == 0 and len(nc.outputs) == 1:
  380. output=list(nc.outputs.values())[0]
  381. value=list(nc.parameters.values())[0] # TODO modify the dependecy get function to exclude these nodes completely
  382. for l in output.links:
  383. to_node = l.to_node; to_socket = l.to_socket
  384. l.die()
  385. to_node.parameters[to_socket] = value
  386. del to_node.inputs[to_socket]
  387. init_dependencies(to_node)
  388. # init_connections(from_node) # this is unnecesary
  389. continue
  390. if (nc.node_type in ['XFORM']) and ("Relationship" in nc.inputs.keys()):
  391. if (new_nc := insert_lazy_parents(nc)):
  392. kept_nc[new_nc.signature]=new_nc
  393. kept_nc[nc.signature]=nc
  394. prWhite(f"Parsing tree took {time.time()-start_time} seconds.")
  395. prWhite("Number of Nodes: %s" % (len(kept_nc)))
  396. return kept_nc
  397. def switch_mode(mode='OBJECT', objects = []):
  398. active = None
  399. if objects:
  400. from bpy import context, ops
  401. active = objects[-1]
  402. context.view_layer.objects.active = active
  403. if (active):
  404. with context.temp_override(**{'active_object':active, 'selected_objects':objects}):
  405. ops.object.mode_set(mode=mode)
  406. return active
  407. def execution_error_cleanup(node, exception, switch_objects = [] ):
  408. from bpy import context
  409. if node:
  410. # this stuff that is commented out is good and useful but I fear to enable it by default.
  411. # TODO: see about this zoom-to-node stuff.
  412. base_tree = node.base_tree
  413. tree = base_tree
  414. try:
  415. pass
  416. space = context.space_data
  417. # path = space.path
  418. # path.clear()
  419. # path.start(base_tree)
  420. for name in node.signature[1:]:
  421. for n in tree.nodes: n.select = False
  422. n = tree.nodes[name]
  423. n.select = True
  424. tree.nodes.active = n
  425. if hasattr(n, "node_tree"):
  426. tree = n.node_tree
  427. # path.append(tree, node=n)
  428. except AttributeError: # not being run in node graph
  429. pass
  430. finally:
  431. def error_popup_draw(self, context):
  432. self.layout.label(text=f"Error: {exception}")
  433. self.layout.label(text=f"see node: {node.signature[1:]}.")
  434. context.window_manager.popup_menu(error_popup_draw, title="Error", icon='ERROR')
  435. switch_mode(mode='OBJECT', objects=switch_objects)
  436. for ob in switch_objects:
  437. ob.data.pose_position = 'POSE'
  438. prRed(f"Error: {exception} in node {node}")
  439. return exception
  440. #execute tree is really slow overall, but still completes 1000s of nodes in only
  441. def execute_tree(nodes, base_tree, context, error_popups = False):
  442. # return
  443. import bpy
  444. from time import time
  445. from .node_container_common import GraphError
  446. original_active = context.view_layer.objects.active
  447. start_execution_time = time()
  448. from collections import deque
  449. xForm_pass = deque()
  450. for nc in nodes.values():
  451. nc.prepared = False
  452. nc.executed = False
  453. check_and_add_root(nc, xForm_pass)
  454. executed = []
  455. # check for cycles here by keeping track of the number of times a node has been visited.
  456. visited={}
  457. check_max_len=len(nodes)**2 # seems too high but safe. In a well-ordered graph, I guess this number should be less than the number of nodes.
  458. max_iterations = len(nodes)**2
  459. i = 0
  460. switch_me = [] # switch the mode on these objects
  461. active = None # only need it for switching modes
  462. select_me = []
  463. try:
  464. while(xForm_pass):
  465. if i >= max_iterations:
  466. raise GraphError("There is probably a cycle somewhere in the graph.")
  467. i+=1
  468. n = xForm_pass.pop()
  469. if visited.get(n.signature):
  470. visited[n.signature]+=1
  471. else:
  472. visited[n.signature]=0
  473. if visited[n.signature] > check_max_len:
  474. raise GraphError("There is a probably a cycle in the graph somewhere. Fix it!")
  475. # we're trying to solve the halting problem at this point.. don't do that.
  476. # TODO find a better way! there are algo's for this but they will require using a different solving algo, too
  477. if n.prepared:
  478. continue
  479. if n.node_type not in ['XFORM', 'UTILITY']:
  480. for dep in n.hierarchy_dependencies:
  481. if not dep.prepared:
  482. xForm_pass.appendleft(n) # hold it
  483. break
  484. else:
  485. n.prepared=True
  486. executed.append(n)
  487. for conn in n.hierarchy_connections:
  488. if not conn.prepared:
  489. xForm_pass.appendleft(conn)
  490. else:
  491. for dep in n.hierarchy_dependencies:
  492. if not dep.prepared:
  493. break
  494. else:
  495. try:
  496. n.bPrepare(context)
  497. if not n.executed:
  498. n.bExecute(context)
  499. if (n.__class__.__name__ == "xFormArmature" ):
  500. ob = n.bGetObject()
  501. switch_me.append(ob)
  502. active = ob
  503. if not (n.__class__.__name__ == "xFormBone" ) and hasattr(n, "bGetObject"):
  504. ob = n.bGetObject()
  505. if isinstance(ob, bpy.types.Object):
  506. select_me.append(ob)
  507. except Exception as e:
  508. if error_popups:
  509. raise execution_error_cleanup(n, e,)
  510. else:
  511. raise e
  512. n.prepared=True
  513. executed.append(n)
  514. for conn in n.hierarchy_connections:
  515. if not conn.prepared:
  516. xForm_pass.appendleft(conn)
  517. switch_mode(mode='POSE', objects=switch_me)
  518. if (active):
  519. with context.temp_override(**{'active_object':active, 'selected_objects':switch_me}):
  520. bpy.ops.object.mode_set(mode='POSE')
  521. for n in executed:
  522. try:
  523. n.bPrepare(context)
  524. if not n.executed:
  525. n.bExecute(context)
  526. except Exception as e:
  527. if error_popups:
  528. raise execution_error_cleanup(n, e,)
  529. else:
  530. raise e
  531. for n in executed:
  532. try:
  533. n.bFinalize(context)
  534. except Exception as e:
  535. if error_popups:
  536. raise execution_error_cleanup(n, e,)
  537. else:
  538. raise e
  539. switch_mode(mode='OBJECT', objects=switch_me)
  540. for ob in switch_me:
  541. ob.data.pose_position = 'POSE'
  542. tot_time = (time() - start_execution_time)
  543. prGreen(f"Executed tree of {len(executed)} nodes in {tot_time} seconds")
  544. if (original_active):
  545. context.view_layer.objects.active = original_active
  546. original_active.select_set(True)
  547. except Exception as e:
  548. execution_error_cleanup(None, e, switch_me)
  549. if error_popups == False:
  550. raise e
  551. finally:
  552. context.view_layer.objects.active = active
  553. # clear the selection first.
  554. for ob in context.selected_objects:
  555. try:
  556. ob.select_set(False)
  557. except RuntimeError: # it isn't in the view layer
  558. pass
  559. for ob in select_me:
  560. try:
  561. ob.select_set(True)
  562. except RuntimeError: # it isn't in the view layer
  563. pass