od.py 14 KB

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  1. from uuid import UUID
  2. from state.base import State
  3. from services.bottom.V0 import Bottom
  4. from services.primitives.integer_type import Integer
  5. from services.primitives.string_type import String
  6. from services.primitives.boolean_type import Boolean
  7. from typing import Optional
  8. def get_attr_link_name(class_name: str, attr_name: str):
  9. return f"{class_name}_{attr_name}"
  10. # Object Diagrams service
  11. class OD:
  12. def __init__(self, type_model: UUID, model: UUID, state: State):
  13. """
  14. Implements services for the object diagrams LTM.
  15. Implementation is done in terms of services provided by LTM-bottom.
  16. Args:
  17. type_model: The SCD-conforming class diagram that contains the types of this object diagram
  18. model: UUID of the (OD) model to manipulate
  19. """
  20. self.type_model = type_model
  21. self.model = model
  22. self.bottom = Bottom(state)
  23. def create_object(self, name: str, class_name: str):
  24. class_node, = self.bottom.read_outgoing_elements(self.type_model, class_name)
  25. abstract_nodes = self.bottom.read_outgoing_elements(self.type_model, f"{class_name}.abstract")
  26. return self._create_object(name, class_node)
  27. def _create_object(self, name: str, class_node: UUID):
  28. # Look at our `type_model` as if it's an object diagram:
  29. mm_od = OD(
  30. get_scd_mm(self.bottom), # the type model of our type model
  31. self.type_model,
  32. self.bottom.state)
  33. slot = mm_od.get_slot(class_node, "abstract")
  34. if slot != None:
  35. is_abstract = read_primitive_value(self.bottom, slot, self.type_model)
  36. if is_abstract:
  37. raise Exception("Cannot instantiate abstract class!")
  38. object_node = self.bottom.create_node()
  39. self.bottom.create_edge(self.model, object_node, name) # attach to model
  40. self.bottom.create_edge(object_node, class_node, "Morphism") # typed-by link
  41. return object_node
  42. def get_class_of_object(self, object_name: str):
  43. object_node, = self.bottom.read_outgoing_elements(self.model, object_name) # get the object
  44. return self._get_class_of_object(object_node)
  45. def _get_class_of_object(self, object_node: UUID):
  46. type_el, = self.bottom.read_outgoing_elements(object_node, "Morphism")
  47. for key in self.bottom.read_keys(self.type_model):
  48. type_el2, = self.bottom.read_outgoing_elements(self.type_model, key)
  49. if type_el == type_el2:
  50. return key
  51. def create_slot(self, attr_name: str, object_name: str, target_name: str):
  52. class_name = self.get_class_of_object(object_name)
  53. attr_link_name = get_attr_link_name(class_name, attr_name)
  54. # An attribute-link is indistinguishable from an ordinary link:
  55. slot_id = self.create_link(
  56. get_attr_link_name(object_name, attr_name),
  57. attr_link_name, object_name, target_name)
  58. return slot_id
  59. def get_slot(self, object_node: UUID, attr_name: str):
  60. # I really don't like how complex and inefficient it is to read an attribute of an object...
  61. class_name = self._get_class_of_object(object_node)
  62. attr_link_name = get_attr_link_name(class_name, attr_name)
  63. type_edge, = self.bottom.read_outgoing_elements(self.type_model, attr_link_name)
  64. for outgoing_edge in self.bottom.read_outgoing_edges(object_node):
  65. if type_edge in self.bottom.read_outgoing_elements(outgoing_edge, "Morphism"):
  66. slot_ref = self.bottom.read_edge_target(outgoing_edge)
  67. return slot_ref
  68. def get_slots(self, object_node):
  69. attrlink_node = get_scd_mm_attributelink_node(self.bottom)
  70. slots = []
  71. outgoing_links = self.bottom.read_outgoing_edges(object_node)
  72. for l in outgoing_links:
  73. for type_of_link in self.bottom.read_outgoing_elements(l, "Morphism"):
  74. for type_of_type_of_link in self.bottom.read_outgoing_elements(type_of_link, "Morphism"):
  75. if type_of_type_of_link == attrlink_node:
  76. # hooray, we have a slot
  77. attr_name = get_attr_name(self.bottom, type_of_link)
  78. slots.append((attr_name, l))
  79. return slots
  80. def read_slot(self, slot_id):
  81. tgt = self.bottom.read_edge_target(slot_id)
  82. return read_primitive_value(self.bottom, tgt, self.type_model)
  83. def create_integer_value(self, name: str, value: int):
  84. from services.primitives.integer_type import Integer
  85. int_node = self.bottom.create_node()
  86. integer_t = Integer(int_node, self.bottom.state)
  87. integer_t.create(value)
  88. # name = 'int'+str(value) # name of the ref to the created integer
  89. # By convention, the type model must have a ModelRef named "Integer"
  90. self.create_model_ref(name, "Integer", int_node)
  91. return name
  92. def create_boolean_value(self, name: str, value: bool):
  93. from services.primitives.boolean_type import Boolean
  94. bool_node = self.bottom.create_node()
  95. bool_service = Boolean(bool_node, self.bottom.state)
  96. bool_service.create(value)
  97. # name = 'int'+str(value) # name of the ref to the created integer
  98. # By convention, the type model must have a ModelRef named "Integer"
  99. self.create_model_ref(name, "Boolean", bool_node)
  100. return name
  101. def create_string_value(self, name: str, value: str):
  102. from services.primitives.string_type import String
  103. string_node = self.bottom.create_node()
  104. string_t = String(string_node, self.bottom.state)
  105. string_t.create(value)
  106. # name = 'str-'+value # name of the ref to the created integer
  107. # By convention, the type model must have a ModelRef named "Integer"
  108. self.create_model_ref(name, "String", string_node)
  109. return name
  110. # Identical to the same SCD method:
  111. def create_model_ref(self, name: str, type_name: str, model: UUID):
  112. # create element + morphism links
  113. element_node = self.bottom.create_node(str(model)) # create element node
  114. self.bottom.create_edge(self.model, element_node, name) # attach to model
  115. type_node, = self.bottom.read_outgoing_elements(self.type_model, type_name) # retrieve type
  116. self.bottom.create_edge(element_node, type_node, "Morphism") # create morphism link
  117. def create_link(self, link_name: Optional[str], assoc_name: str, src_obj_name: str, tgt_obj_name: str):
  118. src_obj_node, = self.bottom.read_outgoing_elements(self.model, src_obj_name)
  119. tgt_obj_node, = self.bottom.read_outgoing_elements(self.model, tgt_obj_name)
  120. # generate a unique name for the link
  121. if link_name == None:
  122. i = 0;
  123. while True:
  124. link_name = f"{assoc_name}{i}"
  125. if len(self.bottom.read_outgoing_elements(self.model, link_name)) == 0:
  126. break
  127. i += 1
  128. type_edge, = self.bottom.read_outgoing_elements(self.type_model, assoc_name)
  129. link_id = self._create_link(link_name, type_edge, src_obj_node, tgt_obj_node)
  130. return link_id
  131. def _create_link(self, link_name: str, type_edge: UUID, src_obj_node: UUID, tgt_obj_node: UUID):
  132. # the link itself is unlabeled:
  133. link_edge = self.bottom.create_edge(src_obj_node, tgt_obj_node)
  134. # it is only in the context of the model, that the link has a name:
  135. self.bottom.create_edge(self.model, link_edge, link_name) # add to model
  136. self.bottom.create_edge(link_edge, type_edge, "Morphism")
  137. return link_edge
  138. def get_objects(self, class_node):
  139. return get_typed_by(self.bottom, self.model, class_node)
  140. def get_all_objects(self):
  141. scd_mm = get_scd_mm(self.bottom)
  142. class_node = get_scd_mm_class_node(self.bottom)
  143. all_classes = OD(scd_mm, self.type_model, self.bottom.state).get_objects(class_node)
  144. result = {}
  145. for class_name, class_node in all_classes.items():
  146. objects = self.get_objects(class_node)
  147. result[class_name] = objects
  148. return result
  149. def get_all_links(self):
  150. scd_mm = get_scd_mm(self.bottom)
  151. assoc_node = get_scd_mm_assoc_node(self.bottom)
  152. all_classes = OD(scd_mm, self.type_model, self.bottom.state).get_objects(assoc_node)
  153. result = {}
  154. for assoc_name, assoc_node in all_classes.items():
  155. links = self.get_objects(assoc_node)
  156. m = {}
  157. for link_name, link_edge in links.items():
  158. src_node = self.bottom.read_edge_source(link_edge)
  159. tgt_node = self.bottom.read_edge_target(link_edge)
  160. src_name = get_object_name(self.bottom, self.model, src_node)
  161. tgt_name = get_object_name(self.bottom, self.model, tgt_node)
  162. m[link_name] = (link_edge, src_name, tgt_name)
  163. result[assoc_name] = m
  164. return result
  165. def get_object_name(self, obj: UUID):
  166. for key in self.bottom.read_keys(self.model):
  167. for el in self.bottom.read_outgoing_elements(self.model, key):
  168. if el == obj:
  169. return key
  170. def get_types(bottom: Bottom, obj: UUID):
  171. return bottom.read_outgoing_elements(obj, "Morphism")
  172. def get_type(bottom: Bottom, obj: UUID):
  173. types = get_types(bottom, obj)
  174. if len(types) == 1:
  175. return types[0]
  176. elif len(types) > 1:
  177. raise Exception(f"Expected at most one type. Instead got {len(types)}.")
  178. def is_typed_by(bottom, el: UUID, typ: UUID):
  179. for typed_by in get_types(bottom, el):
  180. if typed_by == typ:
  181. return True
  182. return False
  183. def get_typed_by(bottom, model, type_node: UUID):
  184. name_to_instance = {}
  185. for key in bottom.read_keys(model):
  186. element, = bottom.read_outgoing_elements(model, key)
  187. element_types = bottom.read_outgoing_elements(element, "Morphism")
  188. if type_node in element_types:
  189. name_to_instance[key] = element
  190. # mapping from instance name to UUID
  191. return name_to_instance
  192. def get_scd_mm(bottom):
  193. scd_metamodel_id = bottom.state.read_dict(bottom.state.read_root(), "SCD")
  194. scd_metamodel = UUID(bottom.state.read_value(scd_metamodel_id))
  195. return scd_metamodel
  196. def get_scd_mm_class_node(bottom: Bottom):
  197. return get_scd_mm_node(bottom, "Class")
  198. def get_scd_mm_attributelink_node(bottom: Bottom):
  199. return get_scd_mm_node(bottom, "AttributeLink")
  200. def get_scd_mm_attributelink_name_node(bottom: Bottom):
  201. return get_scd_mm_node(bottom, "AttributeLink_name")
  202. def get_scd_mm_assoc_node(bottom: Bottom):
  203. return get_scd_mm_node(bottom, "Association")
  204. def get_scd_mm_modelref_node(bottom: Bottom):
  205. return get_scd_mm_node(bottom, "ModelRef")
  206. def get_scd_mm_node(bottom: Bottom, node_name: str):
  207. scd_metamodel = get_scd_mm(bottom)
  208. node, = bottom.read_outgoing_elements(scd_metamodel, node_name)
  209. return node
  210. def get_scd_mm_class_uppercard_node(bottom: Bottom):
  211. return get_scd_mm_node(bottom, "Class_upper_cardinality")
  212. def get_scd_mm_class_lowercard_node(bottom: Bottom):
  213. return get_scd_mm_node(bottom, "Class_lower_cardinality")
  214. def get_scd_mm_assoc_src_uppercard_node(bottom: Bottom):
  215. return get_scd_mm_node(bottom, "Association_source_upper_cardinality")
  216. def get_scd_mm_assoc_src_lowercard_node(bottom: Bottom):
  217. return get_scd_mm_node(bottom, "Association_source_lower_cardinality")
  218. def get_scd_mm_assoc_tgt_uppercard_node(bottom: Bottom):
  219. return get_scd_mm_node(bottom, "Association_target_upper_cardinality")
  220. def get_scd_mm_assoc_tgt_lowercard_node(bottom: Bottom):
  221. return get_scd_mm_node(bottom, "Association_target_lower_cardinality")
  222. def get_object_name(bottom: Bottom, model: UUID, object_node: UUID):
  223. for key in bottom.read_keys(model):
  224. for el in bottom.read_outgoing_elements(model, key):
  225. if el == object_node:
  226. return key
  227. def get_type2(bottom: Bottom, mm: UUID, object_node: UUID):
  228. type_node, = bottom.read_outgoing_elements(object_node, "Morphism")
  229. return type_node, get_object_name(bottom, mm, type_node)
  230. def find_outgoing_typed_by(bottom, src: UUID, type_node: UUID):
  231. edges = []
  232. for outgoing_edge in bottom.read_outgoing_edges(src):
  233. for typedBy in bottom.read_outgoing_elements(outgoing_edge, "Morphism"):
  234. if typedBy == type_node:
  235. edges.append(outgoing_edge)
  236. break
  237. return edges
  238. def navigate_modelref(bottom, node: UUID):
  239. uuid = bottom.read_value(node)
  240. return UUID(uuid)
  241. def find_cardinality(bottom, class_node: UUID, type_node: UUID):
  242. upper_card_edges = find_outgoing_typed_by(bottom, class_node, type_node)
  243. if len(upper_card_edges) == 1:
  244. ref = bottom.read_edge_target(upper_card_edges[0])
  245. integer, = bottom.read_outgoing_elements(
  246. navigate_modelref(bottom, ref),
  247. "integer")
  248. # finally, the value we're looking for:
  249. return bottom.read_value(integer)
  250. def get_attributes(bottom, class_node: UUID):
  251. attr_link_node = get_scd_mm_attributelink_node(bottom)
  252. attr_edges = find_outgoing_typed_by(bottom, class_node, attr_link_node)
  253. result = []
  254. for attr_edge in attr_edges:
  255. attr_name = get_attr_name(bottom, attr_edge)
  256. result.append((attr_name, attr_edge))
  257. return result
  258. def get_attr_name(bottom, attr_edge: UUID):
  259. attr_link_name_node = get_scd_mm_attributelink_name_node(bottom)
  260. name_edge, = find_outgoing_typed_by(bottom, attr_edge, attr_link_name_node)
  261. if name_edge == None:
  262. raise Exception("Expected attribute to have a name...")
  263. ref_name = bottom.read_edge_target(name_edge)
  264. string, = bottom.read_outgoing_elements(
  265. navigate_modelref(bottom, ref_name),
  266. "string")
  267. return bottom.read_value(string)
  268. # We need the meta-model (`mm`) to find out how to read the `modelref`
  269. def read_primitive_value(bottom, modelref: UUID, mm: UUID):
  270. typ = get_type(bottom, modelref)
  271. if not is_typed_by(bottom, typ, get_scd_mm_modelref_node(bottom)):
  272. raise Exception("Assertion failed: argument must be typed by ModelRef")
  273. referred_model = UUID(bottom.read_value(modelref))
  274. typ_name = get_object_name(bottom, mm, typ)
  275. if typ_name == "Integer":
  276. return Integer(referred_model, bottom.state).read()
  277. elif typ_name == "String":
  278. return String(referred_model, bottom.state).read()
  279. elif typ_name == "Boolean":
  280. return Boolean(referred_model, bottom.state).read()
  281. else:
  282. raise Exception("Unimplemented type:", host_type_name)