schema_solve.py 48 KB

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  1. from .utilities import (prRed, prGreen, prPurple, prWhite,
  2. prOrange,
  3. wrapRed, wrapGreen, wrapPurple, wrapWhite,
  4. wrapOrange,)
  5. from .utilities import init_connections, init_dependencies, get_link_in_out
  6. from .base_definitions import (SchemaUINode, custom_props_types, \
  7. MantisNodeGroup, SchemaGroup, replace_types, GraphError)
  8. from .node_container_common import setup_custom_props_from_np
  9. # a class that solves Schema nodes
  10. from bpy.types import NodeGroupInput, NodeGroupOutput
  11. from .readtree import execution_error_cleanup
  12. class SchemaSolver:
  13. def __init__(self, schema_dummy, nodes, prototype, signature=None, error_popups=False):
  14. self.all_nodes = nodes # this is the parsed tree from Mantis
  15. self.node = schema_dummy
  16. self.node.solver = self
  17. self.solved = False
  18. self.tree = prototype.node_tree
  19. self.uuid = self.node.uuid
  20. self.error_popups = error_popups
  21. if signature:
  22. self.signature = signature
  23. else:
  24. self.signature = self.node.signature
  25. self.schema_nodes={}
  26. self.solved_nodes = {}
  27. self.incoming_connections = {}
  28. self.outgoing_connections = {}
  29. self.constant_in = {}
  30. self.constant_out = {}
  31. self.array_input_connections = {}
  32. self.array_output_connections = {}
  33. self.nested_schemas = {}
  34. self.autogenerated_nodes = {}
  35. self.held_links = []
  36. self.tree_path_names = [*self.node.signature] # same tree as the schema node
  37. self.autogen_path_names = ['SCHEMA_AUTOGENERATED', *self.node.signature[1:]]
  38. self.is_node_group = False
  39. if self.node.prototype.bl_idname == "MantisNodeGroup":
  40. self.is_node_group = True
  41. if self.node.inputs['Schema Length'].links:
  42. self.index_link = self.node.inputs['Schema Length'].links[0]
  43. else:
  44. self.index_link = None
  45. # this should never happen, but it's OK to check.
  46. if self.node.inputs["Schema Length"].is_linked:
  47. if (other := self.node.inputs['Schema Length'].links[0].from_node).prepared == False:
  48. raise RuntimeError(f"Schema Length cannot be determined for {self.node} because {other} is not prepared.")
  49. self.solve_length = self.node.evaluate_input("Schema Length")
  50. # I'm making this a property of the solver because the solver's data is modified as it solves each iteration
  51. self.index = 0
  52. prWhite(f"\nExpanding schema {self.tree.name} in node {self.node.signature}"
  53. f" with length {self.solve_length}.")
  54. self.init_schema_links()
  55. self.set_index_strings()
  56. # Sort the multi-input nodes in reverse order of ID, this ensures that they are
  57. # read in the order they were created
  58. for inp in self.node.inputs.values():
  59. inp.links.sort(key=lambda a : -a.multi_input_sort_id)
  60. from bpy.types import NodeGroupInput, NodeGroupOutput
  61. for ui_node in self.tree.nodes:
  62. # first we need to fill the parameters of the schema nodes.
  63. # we use the bl_idname because all schema nodes should be single-instance
  64. signature = (*self.tree_path_names, ui_node.bl_idname)
  65. if isinstance(ui_node, (SchemaUINode, NodeGroupInput, NodeGroupOutput)):
  66. # We use the schema node's "natural signature" here because it represents
  67. # the "original" signature of the schema UI group node since this schema
  68. # solver may be in a nested schema, and its node's signature may have
  69. # uuid/index attached.
  70. get_sig = (*self.node.ui_signature, ui_node.bl_idname)
  71. if not (mantis_node := self.all_nodes.get(get_sig)):
  72. raise RuntimeError(wrapRed(f"Not found: {get_sig}"))
  73. self.schema_nodes[signature] = mantis_node
  74. mantis_node.fill_parameters(ui_node)
  75. # HACK to make Group Nodes work
  76. if ui_node.bl_idname == "NodeGroupInput":
  77. from .schema_containers import SchemaConstInput
  78. mantis_node = SchemaConstInput(signature=signature, base_tree=self.node.base_tree, parent_schema_node=self.node)
  79. self.schema_nodes[signature] = mantis_node
  80. mantis_node.fill_parameters(ui_node)
  81. if ui_node.bl_idname == "NodeGroupOutput":
  82. from .schema_containers import SchemaConstOutput
  83. mantis_node = SchemaConstOutput(signature=signature, base_tree=self.node.base_tree, parent_schema_node=self.node)
  84. self.schema_nodes[signature] = mantis_node
  85. mantis_node.fill_parameters(ui_node)
  86. def set_index_strings(self):
  87. self.index_str = lambda : '.'+str(self.uuid)+'.'+str(self.index).zfill(4)
  88. self.prev_index_str = lambda : '.'+str(self.uuid)+'.'+str(self.index-1).zfill(4)
  89. if self.is_node_group:
  90. self.index_str=lambda : ''
  91. self.prev_index_str=lambda : ''
  92. def init_schema_links(self,):
  93. """ Sort and store the links to/from the Schema group node."""
  94. for item in self.tree.interface.items_tree:
  95. if item.item_type == 'PANEL': continue
  96. parent_name='Constant'
  97. if item.parent.name != '': # in an "prphan" item this is left blank , it is not None or an AttributeError.
  98. parent_name = item.parent.name
  99. match parent_name:
  100. case 'Connection':
  101. if item.in_out == 'INPUT':
  102. if incoming_links := self.node.inputs[item.identifier].links:
  103. self.incoming_connections[item.name] = incoming_links[0]
  104. else:
  105. self.incoming_connections[item.name] = None
  106. else: # OUTPUT
  107. if outgoing_links := self.node.outputs[item.identifier].links:
  108. self.outgoing_connections[item.name] = outgoing_links.copy()
  109. else:
  110. self.outgoing_connections[item.name] = []
  111. case 'Constant':
  112. if item.in_out == 'INPUT':
  113. if constant_in_links := self.node.inputs[item.identifier].links:
  114. self.constant_in[item.name] = constant_in_links[0]
  115. else:
  116. self.constant_in[item.name] = None
  117. else: # OUTPUT
  118. if constant_out_links := self.node.outputs[item.identifier].links:
  119. self.constant_out[item.name] = constant_out_links.copy()
  120. else:
  121. self.constant_out[item.name] = []
  122. case 'Array':
  123. if item.in_out == 'INPUT':
  124. if item.identifier not in self.array_input_connections.keys():
  125. self.array_input_connections[item.identifier]=[]
  126. if in_links := self.node.inputs[item.identifier].links:
  127. self.array_input_connections[item.identifier]=in_links.copy()
  128. # I am tempted to put a check here, but it is sufficient to
  129. # rely on hierarchy links ensuring the arrays are prepared.
  130. # and testing here for un-prepared arrays will mess up schema
  131. # relationships in non-hierarchy situations.
  132. # Still, I'd like to have an easier time catching these problems.
  133. else: # OUTPUT
  134. if item.identifier not in self.array_output_connections.keys():
  135. self.array_output_connections[item.identifier]=[]
  136. if out_links := self.node.outputs[item.identifier].links:
  137. self.array_output_connections[item.identifier] = out_links.copy()
  138. def gen_solve_iteration_mantis_nodes(self, frame_mantis_nodes, unprepared):
  139. for prototype_ui_node in self.tree.nodes:
  140. mantis_node_name = prototype_ui_node.name
  141. index_str = self.index_str()
  142. mContext=self.node.mContext
  143. if isinstance(prototype_ui_node, SchemaUINode):
  144. continue # IGNORE the schema interface nodes, we already made them in __init__()
  145. # they are reused for each iteration.
  146. elif prototype_ui_node.bl_idname in ['NodeFrame', 'NodeReroute']:
  147. continue # IGNORE stuff that is purely UI - frames, reroutes.
  148. elif prototype_ui_node.bl_idname in ['NodeGroupInput', 'NodeGroupOutput']:
  149. continue # we converted these to Schema Nodes because they represent a Group input.
  150. signature = (*self.autogen_path_names, mantis_node_name+index_str)
  151. ui_signature=(*self.signature, mantis_node_name)
  152. prototype_mantis_node = self.all_nodes[ui_signature]
  153. # the prototype_mantis_node was generated inside the schema when we parsed the tree.
  154. # it is the prototype of the mantis node which we make for this iteration
  155. # for Schema sub-nodes ... they need a prototype to init.
  156. if prototype_mantis_node.node_type in ['DUMMY', 'DUMMY_SCHEMA']:
  157. # We stored the prototype ui_node when creating the Mantis node.
  158. ui_node = prototype_mantis_node.prototype
  159. # if prototype_mantis_node is a group or schema: TODO changes are needed elsewhere to make this easier to read. LEGIBILITY
  160. if ui_node.bl_idname in ["MantisNodeGroup", "MantisSchemaGroup"]:
  161. mantis_node = prototype_mantis_node.__class__(
  162. signature, prototype_mantis_node.base_tree, prototype=ui_node,
  163. ui_signature = prototype_mantis_node.signature)
  164. # now let's copy the links from the prototype node
  165. if ui_node.bl_idname in ["MantisNodeGroup"]:
  166. mantis_node.prepared = False
  167. mantis_node.node_type = 'DUMMY_SCHEMA' # we promote it to a schema for now
  168. mantis_node.inputs.init_sockets(['Schema Length']) # add a Schema Length socket
  169. mantis_node.parameters['Schema Length'] = 1 # set the length to 1 since it is a single group instance
  170. # we'll make the autogenerated nodes for constant inputs. It doesn't matter that there is technically
  171. # a prototype available for each one -- these are cheap and I want this to be easy.
  172. from .readtree import make_connections_to_ng_dummy
  173. make_connections_to_ng_dummy(self.node.base_tree, self.autogen_path_names, frame_mantis_nodes, self.all_nodes, mantis_node)
  174. else:
  175. mantis_node = prototype_mantis_node.__class__(signature, prototype_mantis_node.base_tree, prototype=ui_node)
  176. else:
  177. mantis_node = prototype_mantis_node.__class__(signature, prototype_mantis_node.base_tree)
  178. frame_mantis_nodes[mantis_node.signature] = mantis_node
  179. self.all_nodes[mantis_node.signature] = mantis_node
  180. mantis_node.ui_signature=ui_signature # set the natural signature to ensure we can access from the UI
  181. if mantis_node.prepared == False:
  182. unprepared.append(mantis_node)
  183. if mantis_node.__class__.__name__ in custom_props_types:
  184. setup_custom_props_from_np(mantis_node, prototype_ui_node)
  185. mantis_node.fill_parameters(prototype_ui_node)
  186. # be sure to pass on the Mantis Context to them
  187. mantis_node.mContext=mContext
  188. def handle_link_from_index_input(self, index, frame_mantis_nodes, ui_link):
  189. from .base_definitions import can_remove_socket_for_autogen
  190. _from_name, to_name = get_link_in_out(ui_link)
  191. to_node = frame_mantis_nodes[ (*self.autogen_path_names, to_name+self.index_str()) ]
  192. if (not can_remove_socket_for_autogen(to_node, ui_link.to_socket.name)) or \
  193. to_node.node_type in ['DUMMY', 'DUMMY_SCHEMA']:
  194. from .readtree import autogen_node
  195. unique_name = "".join([
  196. ui_link.to_socket.node.name+self.index_str(),
  197. ui_link.from_socket.name, ui_link.from_socket.identifier,
  198. "==>", ui_link.to_socket.name, ui_link.to_socket.identifier,],)
  199. signature = ("MANTIS_AUTOGENERATED", *self.tree_path_names[1:-1], unique_name)
  200. from_node = self.all_nodes.get(signature)
  201. if not from_node:
  202. from_node = autogen_node(self.node.base_tree, ui_link.from_socket,
  203. signature=signature, mContext=self.node.mContext)
  204. from_node.parameters = {ui_link.from_socket.name:index}
  205. frame_mantis_nodes[signature]=from_node; self.solved_nodes[signature]=from_node
  206. self.all_nodes[signature]=from_node
  207. _connection = from_node.outputs[ui_link.from_socket.name].connect(node=to_node, socket=ui_link.to_socket.identifier)
  208. return
  209. # Since the index is already determined, it is safe to remove the socket and just keep the value.
  210. to_node.parameters[ui_link.to_socket.name] = index
  211. del to_node.inputs[ui_link.to_socket.name]
  212. def handle_link_from_schema_length_input(self, frame_mantis_nodes, ui_link):
  213. # see, here I can just use the schema node
  214. _from_name, to_name = get_link_in_out(ui_link)
  215. if to_name in replace_types:
  216. to_node = self.schema_nodes[(*self.autogen_path_names, to_name)]
  217. else:
  218. to_node = frame_mantis_nodes[(*self.autogen_path_names, to_name+self.index_str())]
  219. # this self.index_link is only used here?
  220. if self.index_link is None:
  221. # this should be impossible because the Schema gets an auto-generated Int input.
  222. raise NotImplementedError(" 241 This code should be unreachable. Please report this as a bug!")
  223. if (self.index_link.from_node):
  224. connection = self.index_link.from_node.outputs[self.index_link.from_socket].connect(node=to_node, socket=ui_link.to_socket.name)
  225. # otherwise we can autogen an int input I guess...?
  226. else:
  227. raise RuntimeError("247 I This code should be unreachable. Please report this as a bug!")
  228. def handle_link_from_incoming_connection_input(self, frame_mantis_nodes, ui_link):
  229. incoming = self.incoming_connections[ui_link.from_socket.name]
  230. if incoming is not None:
  231. from_node = incoming.from_node
  232. _from_name, to_name = get_link_in_out(ui_link)
  233. to_node = frame_mantis_nodes[ (*self.autogen_path_names, to_name+self.index_str()) ]
  234. socket_name=ui_link.to_socket.name
  235. if to_node.node_type in [ 'DUMMY_SCHEMA' ]:
  236. socket_name=ui_link.to_socket.identifier
  237. connection = from_node.outputs[incoming.from_socket].connect(node=to_node, socket=socket_name)
  238. init_connections(from_node)
  239. def handle_link_to_outgoing_connection_output(self, frame_mantis_nodes, ui_link,):
  240. mantis_incoming_node = self.schema_nodes[*self.tree_path_names, 'SchemaIncomingConnection']
  241. for mantis_link in mantis_incoming_node.outputs[ui_link.to_socket.name].links:
  242. to_mantis_node, to_mantis_socket = mantis_link.to_node, mantis_link.to_socket
  243. from_name = get_link_in_out(ui_link)[0]
  244. from_mantis_node = self.solved_nodes[ (*self.autogen_path_names, from_name+self.prev_index_str()) ]
  245. to_mantis_node = frame_mantis_nodes[ (*self.autogen_path_names, to_mantis_node.signature[-1]+self.index_str()) ]
  246. from_socket_name = ui_link.from_socket.name
  247. if from_mantis_node.node_type in ['DUMMY_SCHEMA']:
  248. from_socket_name = ui_link.from_socket.identifier
  249. connection = from_mantis_node.outputs[from_socket_name].connect(node=to_mantis_node, socket=to_mantis_socket)
  250. # We want to delete the links from the tree into the schema node.
  251. # TODO: this is not robust enough and I do not feel sure this is doing the right thing.
  252. if existing_link := self.incoming_connections[ui_link.to_socket.name]:
  253. if existing_link.to_node == self.node:
  254. print ("INFO: Deleting...", existing_link)
  255. if self.node.signature[-1] in existing_link.to_node.signature:
  256. existing_link.die()
  257. # BUG may exist here.
  258. self.incoming_connections[ui_link.to_socket.name] = connection
  259. def handle_link_from_constant_input(self, frame_mantis_nodes, ui_link, to_ui_node):
  260. incoming = self.constant_in[ui_link.from_socket.name]
  261. if incoming is None:
  262. raise GraphError (f"{self.node} is missing a required input: {ui_link.from_socket.name}")
  263. from_node = incoming.from_node
  264. to_name = get_link_in_out(ui_link)[1]
  265. to_node = frame_mantis_nodes[(*self.autogen_path_names, to_name+self.index_str())]
  266. to_socket=ui_link.to_socket.name
  267. from .base_definitions import MantisNodeGroup, SchemaGroup
  268. if isinstance(to_ui_node, (SchemaGroup, MantisNodeGroup)):
  269. to_socket=ui_link.to_socket.identifier
  270. connection = from_node.outputs[incoming.from_socket].connect(node=to_node, socket=to_socket)
  271. init_connections(from_node)
  272. def handle_link_from_array_input_get(self, frame_mantis_nodes, ui_link ):
  273. from_ui_node = ui_link.from_socket.node
  274. from_node = self.schema_nodes[(*self.node.ui_signature, from_ui_node.bl_idname)]
  275. from collections import deque
  276. unprepared = deque(from_node.hierarchy_dependencies)
  277. self.prepare_nodes(unprepared)
  278. from .utilities import cap, wrap
  279. get_index = from_node.evaluate_input("Index", self.index) # get the most recent link
  280. # getting the link at self.index just saves the trouble of killing the old links
  281. # that are left because this node is reused in each iteration of the schema
  282. assert(get_index is not None), f"Cannot get index in {from_node}"
  283. oob = from_node.evaluate_input("OoB Behaviour")
  284. array_length = len(self.array_input_connections[ui_link.from_socket.identifier])-1
  285. if oob == 'WRAP':
  286. get_index = wrap(0, array_length+1, get_index)
  287. if oob == 'HOLD':
  288. get_index = cap(get_index, array_length)
  289. try:
  290. incoming = self.array_input_connections[ui_link.from_socket.identifier][get_index]
  291. except IndexError:
  292. raise RuntimeError(f"The array index {get_index} is out of bounds. Size: "
  293. f"{len(self.array_input_connections[ui_link.from_socket.identifier])}")
  294. to_name = get_link_in_out(ui_link)[1]
  295. to_node = frame_mantis_nodes[(*self.autogen_path_names, to_name+self.index_str())]
  296. from_socket = incoming.from_node.outputs[incoming.from_socket]
  297. connection = from_socket.connect(to_node, ui_link.to_socket.name)
  298. # TODO: kill links to the array get that are no longer needed
  299. # right now I inefficiently waste cpu-time solving extra nodes
  300. # because I took the lazy way out
  301. def handle_link_to_array_input_get(self, frame_mantis_nodes, ui_link):
  302. from_name, to_name = get_link_in_out(ui_link)
  303. from_nc = frame_mantis_nodes[(*self.autogen_path_names, from_name+self.index_str())]
  304. to_nc = self.schema_nodes[(*self.tree_path_names, to_name)]
  305. # this only needs to be done once:
  306. if self.index == 0: # BUG? HACK? TODO find out what is going on here.
  307. # Kill the link between the schema node group and the node connecting to it
  308. old_nc = self.all_nodes[(*self.tree_path_names, from_name)]
  309. # I am not sure about this!
  310. existing_link = old_nc.outputs[ui_link.from_socket.name].links[0]
  311. existing_link.die()
  312. #
  313. connection = from_nc.outputs[ui_link.from_socket.name].connect(node=to_nc, socket=ui_link.to_socket.name)
  314. connection.is_hierarchy = True # we have to mark this because links to Schema are not usually hierarchy (?)
  315. to_nc.hierarchy_dependencies.append(from_nc); from_nc.hierarchy_connections.append(to_nc)
  316. # TODO: review the wisdom of this default.
  317. def handle_link_from_array_input(self, frame_mantis_nodes, ui_link, index):
  318. get_index = index
  319. try:
  320. incoming = self.array_input_connections[ui_link.from_socket.identifier][get_index]
  321. except IndexError:
  322. if len(self.array_input_connections[ui_link.from_socket.identifier]) > 0:
  323. incoming = self.array_input_connections[ui_link.from_socket.identifier][0]
  324. # prOrange(incoming.from_node.node_type)
  325. if incoming.from_node.node_type not in ['DUMMY_SCHEMA']:
  326. raise NotImplementedError(wrapRed("dev: make it so Mantis checks if there are enough Array inputs."))
  327. else: # do nothing
  328. return
  329. else:
  330. raise RuntimeError(wrapRed("make it so Mantis checks if there are enough Array inputs!"))
  331. to_name = get_link_in_out(ui_link)[1]
  332. to_node = frame_mantis_nodes[(*self.autogen_path_names, to_name+self.index_str())]
  333. connection = incoming.from_node.outputs[incoming.from_socket].connect(node=to_node, socket=ui_link.to_socket.name)
  334. init_connections(incoming.from_node)
  335. def handle_link_from_array_input_all(self, frame_mantis_nodes, ui_link):
  336. all_links = self.array_input_connections[ui_link.from_socket.identifier]
  337. to_name = get_link_in_out(ui_link)[1]
  338. to_node = frame_mantis_nodes[(*self.autogen_path_names, to_name+self.index_str())]
  339. # connection = incoming.from_node.outputs[incoming.from_socket].connect(node=to_node, socket=ui_link.to_socket.name)
  340. for l in all_links:
  341. # we need to copy the link with the new from-node info
  342. from .base_definitions import NodeLink
  343. to_socket_name=ui_link.to_socket.name
  344. if to_node.node_type in ['DUMMY_SCHEMA']:
  345. to_socket_name=ui_link.to_socket.identifier
  346. connection = NodeLink(l.from_node, l.from_socket, to_node, to_socket_name, l.multi_input_sort_id)
  347. to_node.flush_links()
  348. def handle_link_to_constant_output(self, frame_mantis_nodes, index, ui_link, to_ui_node):
  349. to_node = self.schema_nodes[(*self.tree_path_names, to_ui_node.bl_idname)]
  350. expose_when = to_node.evaluate_input('Expose when N==')
  351. # this will be None for nested Groups that have ordinary Group Input and Group Output nodes.
  352. # and in that case we just do it no matter what
  353. if expose_when is not None and expose_when > self.solve_length-1:
  354. raise GraphError(f"The Schema has a constant output at index {expose_when}"
  355. f" but it terminates at index {self.solve_length-1}. "
  356. f"The Schema must have a length of at least {expose_when+1}.")
  357. from_name = get_link_in_out(ui_link)[0]
  358. from bpy.types import NodeSocket
  359. #use it directly if it is a mantis node; this happens when the previous node was a Schema
  360. if isinstance( ui_link.from_socket, NodeSocket): # normal
  361. from_node = frame_mantis_nodes[(*self.autogen_path_names, from_name+self.index_str()) ]
  362. else: # it's a mantis socket, set manually while looping though prepped links
  363. from_node = ui_link.from_socket.node
  364. from_socket_name = ui_link.from_socket.name
  365. if from_node.node_type == 'DUMMY_SCHEMA':
  366. if isinstance( ui_link.from_socket, NodeSocket): # normal
  367. from_socket_name = ui_link.from_socket.identifier
  368. else:
  369. from_socket_name = ui_link.from_socket.name
  370. # HACK here to force it to work with ordinary node groups, which don't seem to set this value correctly.
  371. if to_ui_node.bl_idname == "NodeGroupOutput":
  372. expose_when = index # the expose-when value is None because the GroupOutput doesn't have the socket.
  373. # end HACK
  374. if index == expose_when:
  375. for outgoing in self.constant_out[ui_link.to_socket.name]:
  376. to_node = outgoing.to_node
  377. connection = from_node.outputs[from_socket_name].connect(node=to_node, socket=outgoing.to_socket)
  378. def handle_link_from_subschema_to_output(self, frame_mantis_nodes, ui_link, to_ui_node):
  379. # wire the schema node itself to the output so it will push the connections when solving
  380. to_node = self.schema_nodes[(*self.tree_path_names, to_ui_node.bl_idname)]
  381. from_name = get_link_in_out(ui_link)[0]
  382. from_node = frame_mantis_nodes[ (*self.autogen_path_names, from_name+self.index_str()) ]
  383. connection = from_node.outputs[ui_link.from_socket.identifier].connect(node=to_node, socket=ui_link.to_socket.name)
  384. def handle_link_from_array_type_to_array_out(self, original_ui_link, dummy_link):
  385. # this is so annoyingly specific lol
  386. from_node = dummy_link.nc_from; from_socket_name=dummy_link.from_socket.name
  387. for outgoing in self.array_output_connections[original_ui_link.to_socket.identifier]:
  388. to_node = outgoing.to_node
  389. connection = from_node.outputs[from_socket_name].connect(node=to_node, socket=outgoing.to_socket)
  390. # WTF is even happening here?? TODO BUG HACK
  391. def handle_link_to_array_output(self, frame_mantis_nodes, index, ui_link, to_ui_node, from_ui_node):# if this duplicated code works, dedupe!
  392. to_node = self.schema_nodes[(*self.tree_path_names, to_ui_node.bl_idname)] # get it by [], we want a KeyError if this fails
  393. from_name = get_link_in_out(ui_link)[0]
  394. from bpy.types import NodeSocket
  395. #use it directly if it is a mantis node; this happens when the previous node was a Schema
  396. if isinstance( ui_link.from_socket, NodeSocket): # normal
  397. from_node = frame_mantis_nodes[(*self.autogen_path_names, from_name+self.index_str()) ]
  398. else: # it's a mantis socket, set manually while looping though prepped links
  399. from_node = ui_link.from_socket.node
  400. from_socket_name = ui_link.from_socket.name
  401. for outgoing in self.array_output_connections[ui_link.to_socket.identifier]:
  402. if not from_node:
  403. from_node = self.schema_nodes[(*self.tree_path_names, from_ui_node.bl_idname)]
  404. to_node = outgoing.to_node
  405. from .schema_containers import SchemaIndex
  406. if isinstance(from_node, SchemaIndex):
  407. signature = ("MANTIS_AUTOGENERATED", *self.tree_path_names[1:-1], self.index_str(),
  408. ui_link.from_socket.name, ui_link.from_socket.identifier)
  409. from_node = self.all_nodes.get(signature)
  410. if not from_node:
  411. from .readtree import autogen_node
  412. from_node = autogen_node(self.node.base_tree, ui_link.from_socket,
  413. signature, self.node.mContext)
  414. if ui_link.from_socket.name in ['Index']:
  415. from_node.parameters = {ui_link.from_socket.name:index}
  416. else:
  417. from_node.parameters = {ui_link.from_socket.name:self.solve_length}
  418. frame_mantis_nodes[signature]=from_node; self.solved_nodes[signature]=from_node
  419. self.all_nodes[signature]=from_node
  420. elif from_node.node_type == 'DUMMY_SCHEMA':
  421. if isinstance( ui_link.from_socket, NodeSocket): # normal
  422. from_socket_name = ui_link.from_socket.identifier
  423. else:
  424. from_socket_name = ui_link.from_socket.name
  425. if to_node.node_type == 'DUMMY_SCHEMA' and to_node.prepared:
  426. other_stem = ('SCHEMA_AUTOGENERATED', *to_node.signature[1:])
  427. other_schema_np = to_node.prototype
  428. other_schema_tree = other_schema_np.node_tree
  429. for n in other_schema_tree.nodes:
  430. if n.bl_idname not in ["SchemaArrayInput", "SchemaArrayInputGet", "SchemaArrayInputAll"]:
  431. continue
  432. out = n.outputs[outgoing.to_socket]
  433. for l in out.links:
  434. other_index_str = lambda : '.'+str(to_node.uuid)+'.'+str(index).zfill(4)
  435. other_sig = (*other_stem, l.to_node.name+other_index_str())
  436. out_node = self.all_nodes.get(other_sig)
  437. if not out_node: # if it is a sub-schema, the other node is in the parent
  438. out_node = to_node.solver.all_nodes.get(other_sig)
  439. if not out_node:
  440. raise KeyError(f"Cannot find node: {other_sig}")
  441. connection = from_node.outputs[from_socket_name].connect(node=out_node, socket=l.to_socket.name)
  442. else:
  443. connection = from_node.outputs[from_socket_name].connect(node=to_node, socket=outgoing.to_socket)
  444. def spoof_link_for_subschema_to_output_edge_case(self, ui_link, ):
  445. to_ui_node = ui_link.to_socket.node
  446. # ui_link is the link between the Schema & the output but we have mantis_links
  447. # connected up correctly. between the output and the schema's generated nodes.
  448. # so seek BACK from the output node and grab the from-node that is connected to
  449. # the link. then modify the ui_link to point to that node.
  450. from .base_definitions import DummyLink
  451. if not isinstance(ui_link, DummyLink): # make it a Dummy so i can modify it
  452. ui_link = DummyLink(ui_link.from_socket, ui_link.to_socket,
  453. multi_input_sort_id=ui_link.multi_input_sort_id)
  454. to_node = self.schema_nodes[(*self.tree_path_names, to_ui_node.bl_idname)]
  455. for inp in to_node.inputs:
  456. if inp.name == ui_link.to_socket.name: # the most recent one is from
  457. l = inp.links[-1]; break # <---- this index of the outer schema
  458. ui_link.from_nc = l.from_node; ui_link.from_socket = l.from_node.outputs[l.from_socket]
  459. return ui_link
  460. def test_is_sub_schema(self, other):
  461. for i in range(len(other.ui_signature)-1): # -1, we don't want to check this node, obviously
  462. if self.node.ui_signature[:i+1]:
  463. return False
  464. return True
  465. def prepare_nodes(self, unprepared):
  466. # At this point, we've already run a pretty exhaustive preperation phase to prep the schema's dependencies
  467. # So we should not need to add any new dependencies unless there is a bug elsewhere.
  468. # and in fact, I could skip this in some cases, and should investigate if profiling reveals a slowdown here.
  469. forbidden=set()
  470. e = None
  471. # forbid some nodes - they aren't necessary to solve the schema & cause problems.
  472. while unprepared:
  473. nc = unprepared.pop()
  474. if nc.node_type == 'DUMMY_SCHEMA' and not self.test_is_sub_schema(nc):
  475. forbidden.add(nc) # do NOT add this as a dependency.
  476. if nc in forbidden: continue # trying to resolve dependencies for.
  477. if sum([dep.prepared for dep in nc.hierarchy_dependencies]) == len(nc.hierarchy_dependencies):
  478. try:
  479. nc.bPrepare()
  480. if nc.node_type == 'DUMMY_SCHEMA':
  481. self.solve_nested_schema(nc)
  482. except Exception as e:
  483. raise execution_error_cleanup(nc, e, show_error = False)
  484. break
  485. if not nc.prepared:
  486. raise RuntimeError( f"{nc} has failed to prepare."
  487. " Please report this as a bug in mantis." )
  488. else: # Keeping this for-loop as a fallback, it should never add dependencies though
  489. can_add_me = True
  490. for dep in nc.hierarchy_dependencies:
  491. if not dep.prepared and dep not in unprepared:
  492. if dep in forbidden:
  493. can_add_me=False
  494. forbidden.add(nc) # forbid the parent, too
  495. continue
  496. unprepared.appendleft(dep)
  497. if can_add_me:
  498. unprepared.appendleft(nc) # just rotate them until they are ready.
  499. def solve_iteration(self):
  500. """ Solve an iteration of the schema.
  501. - 1 Create the Mantis Node instances that represent this iteration of the schema
  502. - 2 Connect the links from the entrypoint or previous iteration.
  503. - 3 Connect the constant and array links, and any link between nodes entirely within the tree
  504. - 4 Prepare the nodes that modify data (in case of e.g. array get index or nested schema length input)
  505. - 5 Connect the final prepared nodes
  506. and return the nodes that were created in this schema iteration (frame).
  507. This function also adds to held_links to pass data between iterations.
  508. """
  509. from .schema_definitions import (SchemaIndex,
  510. SchemaArrayInput,
  511. SchemaArrayInputGet,
  512. SchemaArrayInputAll,
  513. SchemaArrayOutput,
  514. SchemaConstInput,
  515. SchemaConstOutput,
  516. SchemaOutgoingConnection,
  517. SchemaIncomingConnection,)
  518. from .utilities import clear_reroutes, link_node_containers
  519. from .base_definitions import array_output_types
  520. self.set_index_strings()
  521. frame_mantis_nodes = {}
  522. # Later we have to run bPrepare() on these guys, so we make the deque and fill it now.
  523. from collections import deque
  524. unprepared= deque()
  525. self.gen_solve_iteration_mantis_nodes(frame_mantis_nodes, unprepared)
  526. # This is where we handle node connections BETWEEN frames
  527. while(self.held_links):
  528. ui_link = self.held_links.pop()
  529. to_ui_node = ui_link.to_socket.node; from_ui_node = ui_link.from_socket.node
  530. if isinstance(to_ui_node, SchemaOutgoingConnection):
  531. self.handle_link_to_outgoing_connection_output(frame_mantis_nodes, ui_link)
  532. # Get the rerouted links from the graph. We don't really need to do this every iteration.
  533. # TODO: use profiling to determine if this is slow; if so: copy & reuse the data, refactor the pop()'s out.
  534. ui_links = clear_reroutes(list(self.tree.links))
  535. # Now we handle ui_links in the current frame, including those ui_links between Schema nodes and "real" nodes
  536. links_to_output = []
  537. array_input_get_link = []
  538. for ui_link in ui_links:
  539. to_ui_node = ui_link.to_socket.node; from_ui_node = ui_link.from_socket.node
  540. if isinstance(from_ui_node, SchemaIndex):
  541. if ui_link.from_socket.name == "Index":
  542. self.handle_link_from_index_input(self.index, frame_mantis_nodes, ui_link)
  543. elif ui_link.from_socket.name == "Schema Length":
  544. self.handle_link_from_schema_length_input(frame_mantis_nodes, ui_link)
  545. continue
  546. if isinstance(from_ui_node, SchemaIncomingConnection):
  547. if ui_link.from_socket.name in self.incoming_connections.keys():
  548. self.handle_link_from_incoming_connection_input(frame_mantis_nodes, ui_link)
  549. continue
  550. if isinstance(from_ui_node, (SchemaConstInput, NodeGroupInput)):
  551. if ui_link.from_socket.name in self.constant_in.keys():
  552. self.handle_link_from_constant_input( frame_mantis_nodes, ui_link, to_ui_node)
  553. continue
  554. if isinstance(to_ui_node, SchemaArrayInputGet):
  555. self.handle_link_to_array_input_get( frame_mantis_nodes, ui_link)
  556. continue
  557. if isinstance(from_ui_node, SchemaArrayInput):
  558. self.handle_link_from_array_input(frame_mantis_nodes, ui_link, self.index)
  559. continue
  560. if isinstance(from_ui_node, SchemaArrayInputAll):
  561. self.handle_link_from_array_input_all(frame_mantis_nodes, ui_link)
  562. continue
  563. # HOLD these links to the next iteration:
  564. if isinstance(to_ui_node, SchemaOutgoingConnection):
  565. if isinstance(from_ui_node, (MantisNodeGroup, SchemaGroup)):
  566. e = NotImplementedError(
  567. "You have connected a Node Group or Schema directly into an Outgoing Connection node"
  568. " inside another Schema. This is not currently supported. Try using a Constant Output" \
  569. f" instead. Affected node: {from_ui_node.name}"
  570. )
  571. e = execution_error_cleanup(self.node, e, show_error=self.error_popups)
  572. raise e # always raise this error because it is not implemented.
  573. self.handle_link_from_subschema_to_output(frame_mantis_nodes, ui_link, to_ui_node)
  574. self.held_links.append(ui_link)
  575. continue
  576. # HOLD these links until prep is done a little later
  577. if isinstance(to_ui_node, (SchemaConstOutput, NodeGroupOutput)) or isinstance(to_ui_node, SchemaArrayOutput):
  578. if isinstance(from_ui_node, (MantisNodeGroup, SchemaGroup)):
  579. self.handle_link_from_subschema_to_output(frame_mantis_nodes, ui_link, to_ui_node)
  580. # both links are desirable to create, so don't continue here
  581. if from_ui_node.bl_idname in array_output_types:
  582. self.handle_link_from_subschema_to_output(frame_mantis_nodes, ui_link, to_ui_node)
  583. # this one wires links around - we need to finish connecting it to the output
  584. # before we can prepare it. Otherwise, it will send a link from *itself* instead of
  585. # rewiring one of its *inputs* to the next node.
  586. # We have to prep it, and then deal with the links between it and the array. pain.
  587. links_to_output.append(ui_link)
  588. continue
  589. if isinstance(from_ui_node, SchemaArrayInputGet):
  590. array_input_get_link.append(ui_link)
  591. continue
  592. # for any of the special cases, we hit a 'continue' block. So this connection is not special, and is made here.
  593. connection = link_node_containers(self.autogen_path_names, ui_link,
  594. frame_mantis_nodes, from_suffix=self.index_str(),
  595. to_suffix=self.index_str())
  596. for signature, node in frame_mantis_nodes.items():
  597. self.solved_nodes[signature]=node
  598. if node.node_type == "DUMMY_SCHEMA":
  599. # make sure to add the nodes to the group's sockets if the user set them directly
  600. from .readtree import make_connections_to_ng_dummy
  601. make_connections_to_ng_dummy(
  602. self.node.base_tree,
  603. self.autogen_path_names,
  604. {}, # just pass an empty dict, this argument is not needed in this context
  605. self.all_nodes,
  606. node)
  607. from .utilities import init_schema_dependencies
  608. init_schema_dependencies(node, self.all_nodes)
  609. else:
  610. init_dependencies(node) # it is hard to overstate how important this single line of code is
  611. # We have to prepare the nodes leading to Schema Length
  612. unprepared=deque()
  613. for node in frame_mantis_nodes.values():
  614. if node.node_type == 'DUMMY_SCHEMA' and (schema_len_in := node.inputs.get("Schema Length")):
  615. for l in schema_len_in.links:
  616. unprepared.append(l.from_node)
  617. self.prepare_nodes(unprepared)
  618. # We have to prepare the nodes leading to Array Input Get
  619. for ui_link in array_input_get_link:
  620. from_name = get_link_in_out(ui_link)[0]
  621. # because this both provides and receives deps, it must be solved first.
  622. from_node = self.schema_nodes.get( (*self.node.ui_signature, ui_link.from_node.bl_idname) )
  623. self.handle_link_from_array_input_get(frame_mantis_nodes, ui_link )
  624. # Finally, we have to prepare nodes leading to outputs.
  625. for i in range(len(links_to_output)):
  626. unprepared=deque()
  627. ui_link = links_to_output[i]
  628. to_ui_node = ui_link.to_socket.node; from_ui_node = ui_link.from_socket.node
  629. # ugly workaround here in a very painful edge case...
  630. if isinstance(from_ui_node, (MantisNodeGroup, SchemaGroup)) or\
  631. from_ui_node.bl_idname in array_output_types:
  632. ui_link=self.spoof_link_for_subschema_to_output_edge_case(ui_link)
  633. links_to_output[i] = ui_link
  634. from_name = get_link_in_out(ui_link)[0]
  635. signature = (*self.autogen_path_names, from_name+self.index_str())
  636. #use it directly if it is a mantis node; this happens when the previous node was a Schema
  637. if hasattr(ui_link, "from_node") and (from_node := self.schema_nodes.get( (*self.node.ui_signature, ui_link.from_node.bl_idname))):
  638. unprepared.append(from_node)
  639. unprepared.extend(from_node.hierarchy_dependencies)
  640. elif from_node := frame_mantis_nodes.get(signature):
  641. unprepared.append(from_node)
  642. unprepared.extend(from_node.hierarchy_dependencies)
  643. else:
  644. raise RuntimeError(" 671 there has been an error parsing the tree. Please report this as a bug.")
  645. self.prepare_nodes(unprepared) # prepare only the dependencies we need for this link
  646. # and handle the output by the specific type
  647. if isinstance(to_ui_node, (SchemaConstOutput, NodeGroupOutput)):
  648. self.handle_link_to_constant_output(frame_mantis_nodes, self.index, ui_link, to_ui_node)
  649. if isinstance(to_ui_node, SchemaArrayOutput):
  650. if from_node.bl_idname in array_output_types:
  651. from .base_definitions import DummyLink
  652. for l in from_node.rerouted:
  653. new_link = DummyLink(
  654. from_socket=l.from_node.outputs[l.from_socket],
  655. to_socket=l.to_node.inputs[l.to_socket],
  656. nc_from=l.from_node, nc_to=l.to_node,
  657. multi_input_sort_id=l.multi_input_sort_id
  658. )
  659. self.handle_link_from_array_type_to_array_out(ui_link, new_link)
  660. else:
  661. self.handle_link_to_array_output(frame_mantis_nodes, self.index, ui_link, to_ui_node, from_ui_node)
  662. return frame_mantis_nodes
  663. def solve_nested_schema(self, schema_nc):
  664. """ Solves all schema node groups found in this Schema. This is a recursive function, which will
  665. solve all levels of nested schema - since this function is called by solver.solve().
  666. """
  667. solver=None
  668. if schema_nc.prepared == False:
  669. all_nodes = self.all_nodes.copy()
  670. ui_node = schema_nc.prototype
  671. length = schema_nc.evaluate_input("Schema Length")
  672. tree = ui_node.node_tree
  673. if schema_nc.prototype.bl_idname == "MantisNodeGroup":
  674. prOrange(f"Expanding Node Group {tree.name} in node {schema_nc}.")
  675. else:
  676. prOrange(f"Expanding schema {tree.name} in node {schema_nc} with length {length}.")
  677. solver = SchemaSolver(schema_nc, all_nodes, ui_node, schema_nc.ui_signature, error_popups=self.error_popups)
  678. solved_nodes = solver.solve()
  679. schema_nc.prepared = True
  680. for k,v in solved_nodes.items():
  681. self.solved_nodes[k]=v
  682. return solver
  683. def finalize(self, frame_nc):
  684. from .schema_definitions import (SchemaOutgoingConnection,)
  685. for i in range(len(self.held_links)):
  686. link = self.held_links.pop()
  687. to_np = link.to_socket.node; from_np = link.from_socket.node
  688. if isinstance(to_np, SchemaOutgoingConnection):
  689. if link.to_socket.name in self.outgoing_connections.keys():
  690. if (outgoing_links := self.outgoing_connections[link.to_socket.name]) is None: continue
  691. for outgoing in outgoing_links:
  692. if outgoing:
  693. to_node = outgoing.to_node
  694. from_node =frame_nc[(*self.autogen_path_names, from_np.name+self.index_str()) ]
  695. from_socket_name = link.from_socket.name
  696. if from_node.node_type in ['DUMMY_SCHEMA']:
  697. from_socket_name = link.from_socket.identifier
  698. connection = from_node.outputs[from_socket_name].connect(node=to_node, socket=outgoing.to_socket)
  699. # we need to kill the link between the Schema itself and the next node and update the deps. Otherwise:confusing bugs.
  700. outgoing.die(); init_dependencies(to_node)
  701. # else: # the node just isn't connected out this socket.
  702. # # solve all unsolved nested schemas...
  703. for schema_sig, schema_nc in self.nested_schemas.items():
  704. self.solve_nested_schema(schema_nc)
  705. for n in self.autogenerated_nodes.values():
  706. init_connections(n)
  707. for c in n.connections:
  708. init_dependencies(c)
  709. all_outgoing_links = []
  710. for conn in self.outgoing_connections.values():
  711. for outgoing in conn:
  712. all_outgoing_links.append(outgoing)
  713. for conn in self.constant_out.values():
  714. for outgoing in conn:
  715. all_outgoing_links.append(outgoing)
  716. for conn in self.array_output_connections.values():
  717. for outgoing in conn:
  718. all_outgoing_links.append(outgoing)
  719. for outgoing in all_outgoing_links:
  720. to_node = outgoing.to_node
  721. for l in to_node.inputs[outgoing.to_socket].links:
  722. if self.node == l.from_node:
  723. l.die()
  724. for inp in self.node.inputs.values():
  725. for l in inp.links:
  726. init_connections(l.from_node) # to force it to have hierarchy connections with the new nodes.
  727. def solve(self):
  728. if self.solve_length < 1:
  729. from .base_definitions import GraphError
  730. for o in self.node.outputs:
  731. if o.is_linked:
  732. raise GraphError(f"ERROR: Schema {self} has a length"
  733. " of 0 but other nodes depend on it.")
  734. print (f"WARN: Schema {self} has a length of 0 or less and will not expand.")
  735. return {} # just don't do anything - it's OK to have a noop schema if it doesn't have dependencies.
  736. for index in range(self.solve_length):
  737. self.index = index
  738. frame_mantis_nodes = self.solve_iteration()
  739. for sig, nc in frame_mantis_nodes.items():
  740. if nc.node_type == 'DUMMY_SCHEMA':
  741. self.nested_schemas[sig] = nc
  742. self.finalize(frame_mantis_nodes)
  743. self.solved = True
  744. self.node.prepared = True
  745. prGreen(f"Schema declared {len(self.solved_nodes)} nodes.\n")
  746. return self.solved_nodes