i_o.py 40 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776777778779780781782783784785786787788789790791792793794795796797798799800801802803804805806807808809810811812813814815816817818819820821822823824825826827828829830831832833834835836837838839840841842843844845846847848849850851852853854855856857858859860861862863864865866867868869870871872873874875876877878879880881882883884885886887888889890891892893894895896897898899900901902903904905906907908909910911912913914915916917918919920921
  1. # this is the I/O part of mantis. I eventually intend to make this a markup language. not right now tho lol
  2. from .utilities import (prRed, prGreen, prPurple, prWhite,
  3. prOrange,
  4. wrapRed, wrapGreen, wrapPurple, wrapWhite,
  5. wrapOrange,)
  6. from mathutils import Vector
  7. # this works but it is really ugly and probably quite inneficient
  8. # TODO: make hotkeys for export and import and reload from file
  9. # we need to give the tree a filepath attribute and update it on saving
  10. # then we need to use the filepath attribute to load from
  11. # finally we need to use a few operators to choose whether to open a menu or not
  12. # and we need a message to display on save/load so that the user knows it is happening
  13. # TODO:
  14. # Additionally export MetaRig and Curve and other referenced data
  15. # Meshes can be exported as .obj and imported via GN
  16. def TellClasses():
  17. return [ MantisExportNodeTreeSaveAs, MantisExportNodeTreeSave, MantisExportNodeTree, MantisImportNodeTree, MantisReloadNodeTree]
  18. # https://stackoverflow.com/questions/42033142/is-there-an-easy-way-to-check-if-an-object-is-json-serializable-in-python - thanks!
  19. def is_jsonable(x):
  20. import json
  21. try:
  22. json.dumps(x)
  23. return True
  24. except (TypeError, OverflowError):
  25. return False
  26. # https://stackoverflow.com/questions/295135/turn-a-stritree-into-a-valid-filename - thank you user "Sophie Gage"
  27. def remove_special_characters(name):
  28. import re; return re.sub('[^\w_.)( -]', '', name)# re = regular expressions
  29. def fix_custom_parameter(n, property_definition, ):
  30. if n.bl_idname in ['xFormNullNode', 'xFormBoneNode', 'xFormRootNode', 'xFormArmatureNode', 'xFormGeometryObjectNode',]:
  31. prop_name = property_definition["name"]
  32. prop_type = property_definition["bl_idname"]
  33. if prop_type in ['ParameterBoolSocket', 'ParameterIntSocket', 'ParameterFloatSocket', 'ParameterVectorSocket' ]:
  34. # is it good to make both of them?
  35. input = n.inputs.new( prop_type, prop_name)
  36. output = n.outputs.new( prop_type, prop_name)
  37. if property_definition["is_output"] == True:
  38. return output
  39. return input
  40. elif n.bl_idname in ['LinkArmature']:
  41. prop_name = property_definition["name"]
  42. prop_type = property_definition["bl_idname"]
  43. input = n.inputs.new( prop_type, prop_name)
  44. return input
  45. return None
  46. def export_to_json(trees, path="", write_file=True, only_selected=False):
  47. # ignore these because they are either unrelated python stuff or useless or borked
  48. prop_ignore = [ "__dict__", "__doc__", "__module__", "__weakref__",# "name",
  49. "bl_height_default", "bl_height_max", "bl_height_min",
  50. "bl_icon", "bl_rna", "bl_static_type", "bl_description",
  51. "bl_width_default", "bl_width_max", "bl_width_min",
  52. "__annotations__", "original", "rna_type", "view_center",
  53. "links", "nodes", "internal_links", "inputs", "outputs",
  54. "__slots__", "dimensions", "type", "interface",
  55. "library_weak_reference", "parsed_tree", "node_tree_updater" ]
  56. # don't ignore: "bl_idname", "bl_label",
  57. # ignore the name, it's the dict - key for the node props
  58. # no that's stupid don't ignore the name good grief
  59. # I am doing this because these are interactions with other addons that cause problems and probably don't exist for any given user
  60. prop_ignore.extend(['keymesh'])
  61. export_data = {}
  62. for tree in trees:
  63. base_tree = False
  64. if tree is trees[-1]:
  65. base_tree = True
  66. tree_info, tree_in_out = {}, {}
  67. for propname in dir(tree):
  68. if (propname in prop_ignore) or ( callable(getattr(tree, propname)) ):
  69. continue
  70. if not is_jsonable( v := getattr(tree, propname)):
  71. raise RuntimeError(f"Not JSON-able: {propname}, type: {type(v)}")
  72. tree_info[propname] = v
  73. tree_info["name"] = tree.name
  74. # if only_selected:
  75. # # all in/out links, relative to the selection, should be marked and used to initialize tree properties
  76. # pass
  77. for sock in tree.interface.items_tree:
  78. sock_data={}
  79. if sock.item_type == 'PANEL':
  80. sock_data["name"] = sock.name
  81. sock_data["item_type"] = sock.item_type
  82. sock_data["description"] = sock.description
  83. sock_data["default_closed"] = sock.default_closed
  84. tree_in_out[sock.name] = sock_data
  85. # if it is a socket....
  86. else:
  87. sock_parent = None
  88. if sock.parent:
  89. sock_parent = sock.parent.name
  90. for propname in dir(sock):
  91. if (propname in prop_ignore) or ( callable(v) ):
  92. continue
  93. if (propname == "parent"):
  94. sock_data[propname] = sock_parent
  95. continue
  96. v = getattr(sock, propname)
  97. if not is_jsonable( v ):
  98. raise RuntimeError(f"{propname}, {type(v)}")
  99. sock_data[propname] = v
  100. tree_in_out[sock.identifier] = sock_data
  101. nodes = {}
  102. for n in tree.nodes:
  103. if only_selected and n.select == False:
  104. continue
  105. node_props, sockets = {}, {}
  106. for propname in dir(n):
  107. v = getattr(n, propname)
  108. if propname in ['fake_fcurve_ob']:
  109. v=v.name
  110. if (propname in prop_ignore) or ( callable(v) ):
  111. continue
  112. if v.__class__.__name__ in ["Vector", "Color"]:
  113. v = tuple(v)
  114. if isinstance(v, bpy.types.NodeTree):
  115. v = v.name
  116. if isinstance(v, bpy.types.bpy_prop_array):
  117. v = tuple(v)
  118. if propname == "parent" and v:
  119. v = v.name
  120. if not is_jsonable(v):
  121. raise RuntimeError(f"Could not export... {n.name}, {propname}, {type(v)}")
  122. if v is None:
  123. continue
  124. node_props[propname] = v
  125. # so we have to accumulate the parent location because the location is not absolute
  126. if propname == "location" and n.parent is not None:
  127. location_acc = Vector((0,0))
  128. parent = n.parent
  129. while (parent):
  130. location_acc += parent.location
  131. parent = parent.parent
  132. location_acc += getattr(n, propname)
  133. node_props[propname] = tuple(location_acc)
  134. # this works!
  135. # n.parent = None
  136. # if propname == "location":
  137. # print (v, n.location)
  138. # if parent:
  139. # n.parent = parent
  140. # now we need to get the sockets...
  141. # WHY IS THIS FUNCTION DEFINED IN THIS SCOPE?
  142. def socket_data(s):
  143. socket = {}
  144. socket["name"] = s.name
  145. socket["bl_idname"] = s.bl_idname
  146. socket["is_output"] = s.is_output
  147. socket["is_multi_input"] = s.is_multi_input
  148. # if s.bl_idname == 'TransformSpaceSocket':
  149. # prGreen(s.default_value)
  150. # here is where we'll handle a socket's special data
  151. if s.bl_idname == "EnumMetaBoneSocket":
  152. socket["bone"] = s.bone
  153. if s.bl_idname in ["EnumMetaBoneSocket", "EnumMetaRigSocket", "EnumCurveSocket"]:
  154. if sp := s.get("search_prop"): # may be None
  155. socket["search_prop"] = sp.name # this is an object.
  156. #
  157. # v = s.get("default_value") # this doesn't seem to work, see below
  158. if hasattr(s, "default_value"):
  159. v = s.default_value
  160. else:
  161. v = None
  162. v_type = type(v)
  163. # this identifies a weird bug...
  164. # try:
  165. # problem = v != s.default_value
  166. # if problem:
  167. # prRed(s.node.name, s.name, s.bl_idname, s.default_value)
  168. # print(s.default_value, v)
  169. # except AttributeError:
  170. # pass
  171. # so it seems doing the .get thing bypassed some kind of getter that made the value "nice"
  172. # so e.g. enums were using the Int identifier and bool vectors used int bitmasks
  173. # if s.bl_idname == 'TransformSpaceSocket':
  174. # prWhite(v)
  175. if v is None:
  176. return socket # we don't need to store this.
  177. if not is_jsonable(v):
  178. v = tuple(v)
  179. if not is_jsonable(v):
  180. raise RuntimeError(f"Error serializing data in {s.node.name}::{s.name} for value of type {v_type}")
  181. socket["default_value"] = v
  182. # at this point we can get the custom parameter ui hints if we want
  183. if not s.is_output:
  184. # try and get this data
  185. if v := getattr(s,'min', None):
  186. socket["min"] = v
  187. if v := getattr(s,'max', None):
  188. socket["max"] = v
  189. if v := getattr(s,'soft_min', None):
  190. socket["soft_min"] = v
  191. if v := getattr(s,'soft_max', None):
  192. socket["soft_max"] = v
  193. if v := getattr(s,'description', None):
  194. socket["description"] = v
  195. # if s.bl_idname == 'TransformSpaceSocket':
  196. # prRed(socket['default_value'])
  197. return socket
  198. #
  199. for i, s in enumerate(n.inputs):
  200. socket = socket_data(s)
  201. socket["index"]=i
  202. sockets[s.identifier] = socket
  203. for i, s in enumerate(n.outputs):
  204. socket = socket_data(s)
  205. socket["index"]=i
  206. sockets[s.identifier] = socket
  207. # for i, s in enumerate(n.inputs):
  208. # sockets[s.identifier]["index"] = i
  209. # for i, s in enumerate(n.outputs):
  210. # sockets[s.identifier]["index"] = i
  211. node_props["sockets"] = sockets
  212. nodes[n.name] = node_props
  213. links = []
  214. in_sockets = {}
  215. out_sockets = {}
  216. # new_tree_items = {}
  217. in_node = {"name":"MANTIS_AUTOGEN_GROUP_INPUT", "bl_idname":"NodeGroupInput", "sockets":in_sockets}
  218. out_node = {"name":"MANTIS_AUTOGEN_GROUP_OUTPUT", "bl_idname":"NodeGroupOutput", "sockets":out_sockets}
  219. add_input_node, add_output_node = False, False
  220. #
  221. # dict_keys(['Driver Variable', 'second', 'main', 'drivers and such', 'Copy Location', 'Float', 'Reroute', 'Reroute.001', 'Reroute.002'])
  222. # bl_idname, name, label, location,
  223. # Variable Type {'name': 'Variable Type', 'bl_idname': 'EnumDriverVariableType', 'is_output': False, 'is_multi_input': False, 'default_value': 'SINGLE_PROP', 'index': 0}
  224. # Property {'name': 'Property', 'bl_idname': 'ParameterStringSocket', 'is_output': False, 'is_multi_input': False, 'default_value': 'slide', 'index': 1}
  225. # Property Index {'name': 'Property Index', 'bl_idname': 'IntSocket', 'is_output': False, 'is_multi_input': False, 'default_value': 0, 'index': 2}
  226. # Evaluation Space {'name': 'Evaluation Space', 'bl_idname': 'EnumDriverVariableEvaluationSpace', 'is_output': False, 'is_multi_input': False, 'default_value': 'WORLD_SPACE', 'index': 3}
  227. # Rotation Mode {'name': 'Rotation Mode', 'bl_idname': 'EnumDriverRotationMode', 'is_output': False, 'is_multi_input': False, 'default_value': 'AUTO', 'index': 4}
  228. # xForm 1 {'name': 'xForm 1', 'bl_idname': 'xFormSocket', 'is_output': False, 'is_multi_input': False, 'index': 5}
  229. # xForm 2 {'name': 'xForm 2', 'bl_idname': 'xFormSocket', 'is_output': False, 'is_multi_input': False, 'index': 6}
  230. # Driver Variable {'name': 'Driver Variable', 'bl_idname': 'DriverVariableSocket', 'is_output': True, 'is_multi_input': False, 'index': 0}
  231. # Socket_254
  232. # index 16
  233. unique_sockets_from={}
  234. unique_sockets_to={}
  235. for l in tree.links:
  236. a, b = l.from_node.name, l.from_socket.identifier
  237. c, d = l.to_node.name, l.to_socket.identifier
  238. # get the indices of the sockets to be absolutely sure
  239. for e, outp in enumerate(l.from_node.outputs):
  240. # for some reason, 'is' does not return True no matter what...
  241. # so we are gonn compare the memory address directly, this is stupid
  242. if (outp.as_pointer() == l.from_socket.as_pointer()): break
  243. else:
  244. problem=l.from_node.name + "::" + l.from_socket.name
  245. raise RuntimeError(wrapRed(f"Error saving index of socket: {problem}"))
  246. for f, inp in enumerate(l.to_node.inputs):
  247. if (inp.as_pointer() == l.to_socket.as_pointer()): break
  248. else:
  249. problem = l.to_node.name + "::" + l.to_socket.name
  250. raise RuntimeError(wrapRed(f"Error saving index of socket: {problem}"))
  251. g, h = l.from_socket.name, l.to_socket.name
  252. # print (f"{a}:{b} --> {c}:{d})")
  253. # this data is good enough
  254. if base_tree:
  255. if (only_selected and l.from_node.select) and (not l.to_node.select):
  256. # handle an output in the tree
  257. add_output_node=True
  258. if not (sock_name := unique_sockets_to.get(l.to_socket.node.name+l.to_socket.identifier)):
  259. sock_name = l.to_socket.name; name_stub = sock_name
  260. used_names = list(tree_in_out.keys()); i=0
  261. while sock_name in used_names:
  262. sock_name=name_stub+'.'+str(i).zfill(3); i+=1
  263. unique_sockets_to[l.to_socket.node.name+l.to_socket.identifier]=sock_name
  264. out_sock = out_sockets.get(sock_name)
  265. if not out_sock:
  266. out_sock = {}; out_sockets[sock_name] = out_sock
  267. out_sock["index"]=len(out_sockets) # zero indexed, so zero length makes zero the first index and so on, this works
  268. out_sock["name"] = sock_name
  269. out_sock["identifier"] = sock_name
  270. out_sock["bl_idname"] = l.to_socket.bl_idname
  271. out_sock["is_output"] = False
  272. out_sock["source"]=[l.to_socket.node.name,l.to_socket.identifier]
  273. out_sock["is_multi_input"] = False # this is not something I can even set on tree interface items, and this code is not intended for making Schema
  274. sock_data={}
  275. sock_data["name"] = sock_name
  276. sock_data["item_type"] = "SOCKET"
  277. sock_data["default_closed"] = False
  278. sock_data["socket_type"] = l.from_socket.bl_idname
  279. sock_data["identifier"] = sock_name
  280. sock_data["in_out"]="OUTPUT"
  281. sock_data["index"]=out_sock["index"]
  282. tree_in_out[sock_name] = sock_data
  283. c=out_node["name"]
  284. d=out_sock["identifier"]
  285. f=out_sock["index"]
  286. h=out_sock["name"]
  287. elif (only_selected and (not l.from_node.select)) and l.to_node.select:
  288. add_input_node=True
  289. # we need to get a unique name for this
  290. # use the Tree IN/Out because we are dealing with Group in/out
  291. if not (sock_name := unique_sockets_from.get(l.from_socket.node.name+l.from_socket.identifier)):
  292. sock_name = l.from_socket.name; name_stub = sock_name
  293. used_names = list(tree_in_out.keys()); i=0
  294. while sock_name in used_names:
  295. sock_name=name_stub+'.'+str(i).zfill(3); i+=1
  296. unique_sockets_from[l.from_socket.node.name+l.from_socket.identifier]=sock_name
  297. in_sock = in_sockets.get(sock_name)
  298. if not in_sock:
  299. in_sock = {}; in_sockets[sock_name] = in_sock
  300. in_sock["index"]=len(in_sockets) # zero indexed, so zero length makes zero the first index and so on, this works
  301. #
  302. in_sock["name"] = sock_name
  303. in_sock["identifier"] = sock_name
  304. in_sock["bl_idname"] = l.from_socket.bl_idname
  305. in_sock["is_output"] = True
  306. in_sock["is_multi_input"] = False # this is not something I can even set on tree interface items, and this code is not intended for making Schema
  307. in_sock["source"] = [l.from_socket.node.name,l.from_socket.identifier]
  308. sock_data={}
  309. sock_data["name"] = sock_name
  310. sock_data["item_type"] = "SOCKET"
  311. sock_data["default_closed"] = False
  312. sock_data["socket_type"] = l.from_socket.bl_idname
  313. sock_data["identifier"] = sock_name
  314. sock_data["in_out"]="INPUT"
  315. sock_data["index"]=in_sock["index"]
  316. tree_in_out[sock_name] = sock_data
  317. a=in_node.get("name")
  318. b=in_sock["identifier"]
  319. e=in_sock["index"]
  320. g=in_node.get("name")
  321. # parentheses matter here...
  322. elif (only_selected and not (l.from_node.select and l.to_node.select)):
  323. continue
  324. elif only_selected and not (l.from_node.select and l.to_node.select):
  325. continue # pass if both links are not selected
  326. links.append( (a,b,c,d,e,f,g,h) ) # it's a tuple
  327. if add_input_node or add_output_node:
  328. all_nodes_bounding_box=[Vector((float("inf"),float("inf"))), Vector((-float("inf"),-float("inf")))]
  329. for n in nodes.values():
  330. if n["location"][0] < all_nodes_bounding_box[0].x:
  331. all_nodes_bounding_box[0].x = n["location"][0]
  332. if n["location"][1] < all_nodes_bounding_box[0].y:
  333. all_nodes_bounding_box[0].y = n["location"][1]
  334. #
  335. if n["location"][0] > all_nodes_bounding_box[1].x:
  336. all_nodes_bounding_box[1].x = n["location"][0]
  337. if n["location"][1] > all_nodes_bounding_box[1].y:
  338. all_nodes_bounding_box[1].y = n["location"][1]
  339. if add_input_node:
  340. in_node["location"] = Vector((all_nodes_bounding_box[0].x-400, all_nodes_bounding_box[0].lerp(all_nodes_bounding_box[1], 0.5).y))
  341. nodes["MANTIS_AUTOGEN_GROUP_INPUT"]=in_node
  342. if add_output_node:
  343. out_node["location"] = Vector((all_nodes_bounding_box[1].x+400, all_nodes_bounding_box[0].lerp(all_nodes_bounding_box[1], 0.5).y))
  344. nodes["MANTIS_AUTOGEN_GROUP_OUTPUT"]=out_node
  345. # f_curves = {}
  346. export_data[tree.name] = (tree_info, tree_in_out, nodes, links,) # f_curves)
  347. import json
  348. if not write_file:
  349. return export_data # gross to have a different type of return value... but I don't care
  350. with open(path, "w") as file:
  351. print(wrapWhite("Writing mantis tree data to: "), wrapGreen(file.name))
  352. file.write( json.dumps(export_data, indent = 4) )
  353. # I'm gonna do this in a totally naive way, because this should already be sorted properly
  354. # for the sake of dependency satisfaction. So the current "tree" should be the "main" tree
  355. tree.filepath = path
  356. return {'FINISHED'}
  357. def do_import_from_file(filepath, context):
  358. import json
  359. all_trees = [n_tree for n_tree in bpy.data.node_groups if n_tree.bl_idname in ["MantisTree", "SchemaTree"]]
  360. for tree in all_trees:
  361. tree.do_live_update = False
  362. with open(filepath, 'r', encoding='utf-8') as f:
  363. data = json.load(f)
  364. do_import(data,context)
  365. # repeat this because we left the with, this is bad and ugly but I don't care
  366. for tree in all_trees:
  367. tree.do_live_update = True
  368. tree = bpy.data.node_groups[list(data.keys())[-1]]
  369. try:
  370. context.space_data.node_tree = tree
  371. except AttributeError: # not hovering over the Node Editor
  372. pass
  373. return {'FINISHED'}
  374. return {'CANCELLED'}
  375. def do_import(data, context):
  376. trees = []
  377. for tree_name, tree_data in data.items():
  378. print ("Importing sub-graph: %s with %s nodes" % (wrapGreen(tree_name), wrapPurple(len(tree_data[2]))) )
  379. # print (tree_data)
  380. tree_info = tree_data[0]
  381. tree_in_out = tree_data[1]
  382. nodes = tree_data[2]
  383. links = tree_data[3]
  384. parent_me = []
  385. # need to make a new tree:
  386. #
  387. # first, try to get it:
  388. tree = bpy.data.node_groups.get(tree_info["name"])
  389. if tree is None:
  390. tree = bpy.data.node_groups.new(tree_info["name"], tree_info["bl_idname"])
  391. tree.nodes.clear(); tree.links.clear(); tree.interface.clear()
  392. # this may be a bad bad thing to do without some kind of warning TODO TODO
  393. tree.is_executing = True
  394. tree.do_live_update = False
  395. trees.append(tree)
  396. tree_sock_id_map={}
  397. interface_parent_me = {}
  398. for s_name, s_props in tree_in_out.items():
  399. if s_props["item_type"] == 'SOCKET':
  400. if s_props["socket_type"] == "LayerMaskSocket":
  401. continue
  402. if (socket_type := s_props["socket_type"]) == "NodeSocketColor":
  403. socket_type = "VectorSocket"
  404. sock = tree.interface.new_socket(s_props["name"], in_out=s_props["in_out"], socket_type=socket_type)
  405. tree_sock_id_map[s_name] = sock.identifier
  406. # TODO: set whatever properties are needed (default, etc)
  407. if panel := s_props.get("parent"): # this get is just to maintain compatibility with an older form of this script... and it is harmless
  408. interface_parent_me[sock] = (panel, s_props["position"])
  409. else: # it's a panel
  410. panel = tree.interface.new_panel(s_props["name"], description=s_props.get("description"), default_closed=s_props.get("default_closed"))
  411. for socket, (panel, index) in interface_parent_me.items():
  412. tree.interface.move_to_parent(
  413. socket,
  414. tree.interface.items_tree.get(panel),
  415. index,
  416. )
  417. for k,v in tree_sock_id_map.items():
  418. prRed(k,v)
  419. # at this point, the identifiers may not match
  420. # so we have to map them back
  421. # from mantis.utilities import prRed, prWhite, prOrange, prGreen
  422. for name, propslist in nodes.items():
  423. n = tree.nodes.new(propslist["bl_idname"])
  424. if propslist["bl_idname"] in ["DeformerMorphTargetDeform"]:
  425. n.inputs.remove(n.inputs[1]) # get rid of the wildcard
  426. # prPurple(n.bl_idname)
  427. if n.bl_idname in [ "SchemaArrayInput",
  428. "SchemaArrayInputGet",
  429. "SchemaArrayOutput",
  430. "SchemaConstInput",
  431. "SchemaConstOutput",
  432. "SchemaOutgoingConnection",
  433. "SchemaIncomingConnection",]:
  434. n.update()
  435. in_group_node = False
  436. if sub_tree := propslist.get("node_tree"):
  437. in_group_node = True
  438. n.node_tree = bpy.data.node_groups.get(sub_tree)
  439. # for s_name, s_val in propslist["sockets"].items():
  440. # print( wrapRed(s_name), wrapWhite(s_val))
  441. # we have to do this first or the sockets won't exist to set their data.
  442. #
  443. for i, (s_id, s_val) in enumerate(propslist["sockets"].items()):
  444. try:
  445. if s_val["is_output"]: # for some reason it thinks the index is a string?
  446. # try:
  447. if n.bl_idname == "MantisSchemaGroup":
  448. socket = n.outputs.new(s_val["bl_idname"], s_val["name"], identifier=s_id)
  449. elif n.bl_idname in ["NodeGroupInput"]:
  450. pass
  451. else:
  452. socket = n.outputs[int(s_val["index"])]
  453. # except Exception as e:
  454. # prRed(n.name, s_id)
  455. # raise e
  456. else:
  457. if s_val["index"] >= len(n.inputs):
  458. if n.bl_idname == "UtilityDriver":
  459. with bpy.context.temp_override(**{'node':n}):
  460. bpy.ops.mantis.driver_node_add_variable()
  461. socket = n.inputs[int(s_val["index"])]
  462. elif n.bl_idname == "UtilityFCurve":
  463. with bpy.context.temp_override(**{'node':n}):
  464. bpy.ops.mantis.fcurve_node_add_kf()
  465. socket = n.inputs[int(s_val["index"])]
  466. elif n.bl_idname == "MantisSchemaGroup":
  467. socket = n.inputs.new(s_val["bl_idname"], s_val["name"], identifier=s_id, use_multi_input=s_val["is_multi_input"])
  468. # for k,v in s_val.items():
  469. # print(f"{k}:{v}")
  470. # print (s_id)
  471. # raise NotImplementedError(s_val["is_multi_input"])
  472. elif n.bl_idname in ["NodeGroupOutput"]:
  473. # print (len(n.inputs), len(n.outputs))
  474. pass
  475. elif n.bl_idname == "LinkArmature":
  476. with bpy.context.temp_override(**{'node':n}):
  477. bpy.ops.mantis.link_armature_node_add_target()
  478. socket = n.inputs[int(s_val["index"])]
  479. elif n.bl_idname == "DeformerMorphTargetDeform": # this one doesn't use an operator since I figure out how to do dynamic node stuff
  480. socket = n.inputs.new(s_val["bl_idname"], s_val["name"], identifier=s_id)
  481. else:
  482. prRed(s_val["index"], len(n.inputs))
  483. raise NotImplementedError(wrapRed(f"{n.bl_idname} needs to be handled in JSON load."))
  484. # if n.bl_idname in ['']
  485. else: # most of the time
  486. socket = n.inputs[int(s_val["index"])]
  487. except IndexError:
  488. socket = fix_custom_parameter(n, propslist["sockets"][s_id])
  489. if socket is None:
  490. is_output = "output" if {s_val["is_output"]} else "input"
  491. prRed(s_val, type(s_val))
  492. raise RuntimeError(is_output, n.name, s_val["name"], s_id, len(n.inputs))
  493. # if propslist["bl_idname"] == "UtilityMetaRig":#and i == 0:
  494. # pass#prRed (i, s_id, s_val)
  495. # if propslist["bl_idname"] == "UtilityMetaRig":# and i > 0:
  496. # prRed("Not Found: %s" % (s_id))
  497. # prOrange(propslist["sockets"][s_id])
  498. # socket = fix_custom_parameter(n, propslist["sockets"][s_id]
  499. for s_p, s_v in s_val.items():
  500. if s_p not in ["default_value"]:
  501. if s_p == "search_prop" and n.bl_idname == 'UtilityMetaRig':
  502. socket.node.armature= s_v
  503. socket.search_prop=bpy.data.objects.get(s_v)
  504. if s_p == "search_prop" and n.bl_idname in ['UtilityMatrixFromCurve', 'UtilityMatricesFromCurve']:
  505. socket.search_prop=bpy.data.objects.get(s_v)
  506. elif s_p == "bone" and socket.bl_idname == 'EnumMetaBoneSocket':
  507. socket.bone = s_v
  508. socket.node.pose_bone = s_v
  509. continue # not editable and NOT SAFE
  510. #
  511. if socket.bl_idname in ["BooleanThreeTupleSocket"]:
  512. value = bool(s_v[0]), bool(s_v[1]), bool(s_v[2]),
  513. s_v = value
  514. try:
  515. setattr(socket, s_p , s_v)
  516. except TypeError as e:
  517. prRed("Can't set socket due to type mismatch: ", socket, s_p, s_v)
  518. # raise e
  519. except ValueError as e:
  520. prRed("Can't set socket due to type mismatch: ", socket, s_p, s_v)
  521. # raise e
  522. except AttributeError as e:
  523. prWhite("Tried to write a read-only property, ignoring...")
  524. prWhite(f"{socket.node.name}[{socket.name}].{s_p} is read only, cannot set value to {s_v}")
  525. # raise e
  526. # not sure if this is true:
  527. # this can find properties that aren't node in/out
  528. # we should also be checking those above actually
  529. # TODO:
  530. # find out why "Bone hide" not being found
  531. for p, v in propslist.items():
  532. if p == "sockets": # it's the sockets dict
  533. continue
  534. if p == "node_tree":
  535. continue # we've already done this # v = bpy.data.node_groups.get(v)
  536. # will throw AttributeError if read-only
  537. # will throw TypeError if wrong type...
  538. if n.bl_idname == "NodeFrame" and p in ["width, height, location"]:
  539. continue
  540. if p == "parent" and v is not None:
  541. parent_me.append( (n.name, v) )
  542. v = None # for now) #TODO
  543. try:
  544. setattr(n, p, v)
  545. except Exception as e:
  546. print (p)
  547. raise e
  548. # raise NotImplementedError
  549. # for k,v in tree_sock_id_map.items():
  550. # print (wrapGreen(k), " ", wrapPurple(v))
  551. for l in links:
  552. id1 = l[1]
  553. id2 = l[3]
  554. #
  555. name1=l[6]
  556. name2=l[7]
  557. prWhite(l[0], l[1], " --> ", l[2], l[3])
  558. # l has...
  559. # node 1
  560. # identifier 1
  561. # node 2
  562. # identifier 2
  563. from_node = tree.nodes[l[0]]
  564. if hasattr(from_node, "node_tree"): # now we have to map by name actually
  565. try:
  566. id1 = from_node.outputs[l[4]].identifier
  567. except IndexError:
  568. prRed ("Index incorrect")
  569. id1 = None
  570. elif from_node.bl_idname in ["NodeGroupInput"]:
  571. id1 = tree_sock_id_map.get(l[1])
  572. if id1 is None:
  573. prRed(l[1])
  574. # prOrange (l[1], id1)
  575. elif from_node.bl_idname in ["SchemaArrayInput", "SchemaConstInput", "SchemaIncomingConnection"]:
  576. # try the index instead
  577. id1 = from_node.outputs[l[4]].identifier
  578. for from_sock in from_node.outputs:
  579. if from_sock.identifier == id1: break
  580. else: # we can raise a runtime error here actually
  581. from_sock = None
  582. to_node = tree.nodes[l[2]]
  583. if hasattr(to_node, "node_tree"):
  584. try:
  585. id2 = to_node.inputs[l[5]].identifier
  586. except IndexError:
  587. prRed ("Index incorrect")
  588. id2 = None
  589. elif to_node.bl_idname in ["NodeGroupOutput"]:
  590. id2 = tree_sock_id_map.get(l[3])
  591. # prPurple(to_node.name)
  592. # for inp in to_node.inputs:
  593. # prPurple(inp.name, inp.identifier)
  594. # prOrange (l[3], id2)
  595. elif to_node.bl_idname in ["SchemaArrayOutput", "SchemaConstOutput", "SchemaOutgoingConnection"]:
  596. # try the index instead
  597. id2 = to_node.inputs[l[5]].identifier
  598. # try to get by name
  599. #id2 = to_node.inputs[name2]
  600. for to_sock in to_node.inputs:
  601. if to_sock.identifier == id2: break
  602. else:
  603. to_sock = None
  604. try:
  605. link = tree.links.new(from_sock, to_sock)
  606. except TypeError:
  607. if ((id1 is not None) and ("Layer Mask" in id1)) or ((id2 is not None) and ("Layer Mask" in id2)):
  608. pass
  609. else:
  610. prWhite(f"looking for... {name1}:{id1}, {name2}:{id2}")
  611. prRed (f"Failed: {l[0]}:{l[1]} --> {l[2]}:{l[3]}")
  612. prRed (f" got node: {from_node.name}, {to_node.name}")
  613. prRed (f" got socket: {from_sock}, {to_sock}")
  614. if from_sock is None:
  615. prOrange ("Candidates...")
  616. for out in from_node.outputs:
  617. prOrange(" %s, id=%s" % (out.name, out.identifier))
  618. for k, v in tree_sock_id_map.items():
  619. print (wrapOrange(k), wrapPurple(v))
  620. if to_sock is None:
  621. prOrange ("Candidates...")
  622. for inp in to_node.inputs:
  623. prOrange(" %s, id=%s" % (inp.name, inp.identifier))
  624. for k, v in tree_sock_id_map.items():
  625. print (wrapOrange(k), wrapPurple(v))
  626. raise RuntimeError
  627. # if at this point it doesn't work... we need to fix
  628. for name, p in parent_me:
  629. if (n := tree.nodes.get(name)) and (p := tree.nodes.get(p)):
  630. n.parent = p
  631. # otherwise the frame node is missing because it was not included in the data e.g. when grouping nodes.
  632. tree.is_executing = False
  633. tree.do_live_update = True
  634. # try:
  635. # tree=context.space_data.path[0].node_tree
  636. # tree.update_tree(context)
  637. # except: #update tree can cause all manner of errors
  638. # pass
  639. import bpy
  640. from bpy_extras.io_utils import ImportHelper, ExportHelper
  641. from bpy.props import StringProperty, BoolProperty, EnumProperty
  642. from bpy.types import Operator
  643. # Save As
  644. class MantisExportNodeTreeSaveAs(Operator, ExportHelper):
  645. """Export a Mantis Node Tree by filename."""
  646. bl_idname = "mantis.export_save_as"
  647. bl_label = "Export Mantis Tree as ...(JSON)"
  648. # ExportHelper mix-in class uses this.
  649. filename_ext = ".rig"
  650. filter_glob: StringProperty(
  651. default="*.rig",
  652. options={'HIDDEN'},
  653. maxlen=255, # Max internal buffer length, longer would be clamped.
  654. )
  655. @classmethod
  656. def poll(cls, context):
  657. return hasattr(context.space_data, 'path')
  658. def execute(self, context):
  659. # we need to get the dependent trees from self.tree...
  660. # there is no self.tree
  661. # how do I choose a tree?
  662. base_tree=context.space_data.path[-1].node_tree
  663. from .utilities import all_trees_in_tree
  664. trees = all_trees_in_tree(base_tree)[::-1]
  665. prGreen("Exporting node graph with dependencies...")
  666. for t in trees:
  667. prGreen ("Node graph: \"%s\"" % (t.name))
  668. return export_to_json(trees, self.filepath)
  669. # Save
  670. class MantisExportNodeTreeSave(Operator):
  671. """Save a Mantis Node Tree to disk."""
  672. bl_idname = "mantis.export_save"
  673. bl_label = "Export Mantis Tree (JSON)"
  674. @classmethod
  675. def poll(cls, context):
  676. return hasattr(context.space_data, 'path')
  677. def execute(self, context):
  678. base_tree=context.space_data.path[-1].node_tree
  679. from .utilities import all_trees_in_tree
  680. trees = all_trees_in_tree(base_tree)[::-1]
  681. prGreen("Exporting node graph with dependencies...")
  682. for t in trees:
  683. prGreen ("Node graph: \"%s\"" % (t.name))
  684. return export_to_json(trees, base_tree.filepath)
  685. # Save Choose:
  686. class MantisExportNodeTree(Operator):
  687. """Save a Mantis Node Tree to disk."""
  688. bl_idname = "mantis.export_save_choose"
  689. bl_label = "Export Mantis Tree (JSON)"
  690. @classmethod
  691. def poll(cls, context):
  692. return hasattr(context.space_data, 'path')
  693. def execute(self, context):
  694. base_tree=context.space_data.path[-1].node_tree
  695. if base_tree.filepath:
  696. prRed(base_tree.filepath)
  697. return bpy.ops.mantis.export_save()
  698. else:
  699. return bpy.ops.mantis.export_save_as('INVOKE_DEFAULT')
  700. # here is what needs to be done...
  701. # - modify this to work with a sort of parsed-tree instead (sort of)
  702. # - this needs to treat each sub-graph on its own
  703. # - is this a problem? do I need to reconsider how I treat the graph data in mantis?
  704. # - I should learn functional programming / currying
  705. # - then the parsed-tree this builds must be executed as Blender nodes
  706. # - I think... this is not important right now. not yet.
  707. # - KEEP IT SIMPLE, STUPID
  708. class MantisImportNodeTree(Operator, ImportHelper):
  709. """Import a Mantis Node Tree."""
  710. bl_idname = "mantis.import_tree"
  711. bl_label = "Import Mantis Tree (JSON)"
  712. # ImportHelper mixin class uses this
  713. filename_ext = ".rig"
  714. filter_glob : StringProperty(
  715. default="*.rig",
  716. options={'HIDDEN'},
  717. maxlen=255, # Max internal buffer length, longer would be clamped.
  718. )
  719. def execute(self, context):
  720. return do_import_from_file(self.filepath, context)
  721. # this is useful:
  722. # https://blender.stackexchange.com/questions/73286/how-to-call-a-confirmation-dialog-box
  723. # class MantisReloadConfirmMenu(bpy.types.Panel):
  724. # bl_label = "Confirm?"
  725. # bl_idname = "OBJECT_MT_mantis_reload_confirm"
  726. # def draw(self, context):
  727. # layout = self.layout
  728. # layout.operator("mantis.reload_tree")
  729. class MantisReloadNodeTree(Operator):
  730. # """Import a Mantis Node Tree."""
  731. # bl_idname = "mantis.reload_tree"
  732. # bl_label = "Import Mantis Tree"
  733. """Reload Mantis Tree"""
  734. bl_idname = "mantis.reload_tree"
  735. bl_label = "Confirm reload tree?"
  736. bl_options = {'REGISTER', 'INTERNAL'}
  737. @classmethod
  738. def poll(cls, context):
  739. if hasattr(context.space_data, 'path'):
  740. return True
  741. return False
  742. def invoke(self, context, event):
  743. return context.window_manager.invoke_confirm(self, event)
  744. def execute(self, context):
  745. base_tree=context.space_data.path[-1].node_tree
  746. if not base_tree.filepath:
  747. self.report({'ERROR'}, "Tree has not been saved - so it cannot be reloaded.")
  748. return {'CANCELLED'}
  749. self.report({'INFO'}, "reloading tree")
  750. return do_import_from_file(base_tree.filepath, context)
  751. # todo:
  752. # - export metarig and option to import it
  753. # - same with controls
  754. # - it would be nice to have a library of these that can be imported alongside the mantis graph