modelling.alc 17 KB

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  1. include "primitives.alh"
  2. include "io.alh"
  3. include "object_operations.alh"
  4. include "constructors.alh"
  5. include "metamodels.alh"
  6. include "library.alh"
  7. Element global_models = ?
  8. String function instantiated_name(element : Element, original : String):
  9. if (original == ""):
  10. return "__" + cast_id2s(element)!
  11. else:
  12. return original!
  13. Element function instantiate_bottom():
  14. // Just create a new node that serves as the basis for everything
  15. // We don't know anything about the model yet, so just create an empty one
  16. Element new_model
  17. // The actual root node of the model
  18. new_model = create_node()
  19. // Add an empty model and empty type mapping
  20. dict_add(new_model, "model", create_node())
  21. dict_add(new_model, "type_mapping", create_node())
  22. // Return the created model
  23. return new_model!
  24. String function model_add_node(model : Element, name : String):
  25. // Adds a new node to the specified model with the desired name
  26. // This is a bottom operation, as it doesn't take any type
  27. Element new_node
  28. String actual_name
  29. new_node = create_node()
  30. actual_name = instantiated_name(new_node, name)
  31. dict_add(model["model"], actual_name, new_node)
  32. return actual_name!
  33. String function model_add_value(model : Element, name : String, value : Element):
  34. // Similar to model_add_node, but add a value as well
  35. String actual_name
  36. actual_name = instantiated_name(value, name)
  37. dict_add(model["model"], actual_name, value)
  38. return actual_name!
  39. String function model_add_edge(model : Element, name : String, source : String, destination : String):
  40. // Add an edge between the source and destination nodes
  41. // Nodes are specified using their string representation previously defined
  42. Element new_edge
  43. String actual_name
  44. if (bool_not(dict_in(model["model"], source))):
  45. log("In link " + name)
  46. log("ERROR: source of link unknown: " + source)
  47. log("Destination: " + destination)
  48. return ""!
  49. if (bool_not(dict_in(model["model"], destination))):
  50. log("In link " + name)
  51. log("ERROR: destination of link unknown: " + destination)
  52. log("Source: " + source)
  53. return ""!
  54. new_edge = create_edge(model["model"][source], model["model"][destination])
  55. actual_name = instantiated_name(new_edge, name)
  56. dict_add(model["model"], actual_name, new_edge)
  57. return actual_name!
  58. Void function retype_model(model : Element, metamodel : Element):
  59. // Remove the type mapping and add a new one for the specified metamodel
  60. dict_delete(model, "type_mapping")
  61. dict_add(model, "type_mapping", create_node())
  62. dict_add(model, "metamodel", metamodel)
  63. return!
  64. Void function retype(model : Element, element : String, type : String):
  65. // Retype a model, deleting any previous type the element had
  66. // The type string is evaluated in the metamodel previously specified
  67. if (dict_in_node(model["type_mapping"], model["model"][element])):
  68. dict_delete_node(model["type_mapping"], model["model"][element])
  69. dict_add(model["type_mapping"], model["model"][element], model["metamodel"]["model"][type])
  70. return!
  71. Element function instantiate_model(metamodel : Element):
  72. // Instantiate a model
  73. // Basically create an untyped model and retype it
  74. Element model
  75. model = instantiate_bottom()
  76. retype_model(model, metamodel)
  77. return model!
  78. String function instantiate_node(model : Element, type_name : String, instance_name : String):
  79. // Create a node typed by a node from the metamodel
  80. // Basically create a node and type it immediately
  81. String actual_name
  82. actual_name = model_add_node(model, instance_name)
  83. retype(model, actual_name, type_name)
  84. return actual_name!
  85. String function instantiate_value(model : Element, type_name : String, instance_name : String, value : Element):
  86. // Create a node typed by a node from the metamodel
  87. // Basically create a node and type it immediately
  88. String actual_name
  89. actual_name = model_add_value(model, instance_name, value)
  90. retype(model, actual_name, type_name)
  91. return actual_name!
  92. String function find_attribute_type(model : Element, elem : String, name : String):
  93. String mm_elem
  94. String direct_type
  95. direct_type = reverseKeyLookup(model["metamodel"]["model"], dict_read_node(model["type_mapping"], model["model"][elem]))
  96. mm_elem = find_attribute_definer(model["metamodel"], direct_type, name)
  97. if (value_eq(mm_elem, "")):
  98. // Couldn't find element, so is not allowed!
  99. return ""!
  100. else:
  101. return reverseKeyLookup(model["metamodel"]["model"], dict_read_edge(model["metamodel"]["model"][mm_elem], name))!
  102. Element function get_superclasses(model : Element, name : String):
  103. Element result
  104. Integer i
  105. Integer j
  106. Integer num_edges
  107. Element edge
  108. Element elem
  109. Element nodes
  110. nodes = create_node()
  111. set_add(nodes, model["model"][name])
  112. // Initialize empty set
  113. result = create_node()
  114. i = 0
  115. while (0 < list_len(nodes)):
  116. elem = set_pop(nodes)
  117. create_edge(result, reverseKeyLookup(model["model"], elem))
  118. // Read out all outgoing edges
  119. num_edges = read_nr_out(elem)
  120. j = 0
  121. while (j < num_edges):
  122. edge = read_out(elem, j)
  123. if (element_eq(dict_read_node(model["type_mapping"], edge), model["inheritance"])):
  124. set_add(nodes, read_edge_dst(edge))
  125. j = j + 1
  126. return result!
  127. String function find_attribute_definer(model : Element, elem_name : String, name : String):
  128. Element superclasses
  129. String current
  130. Integer nr_out
  131. Element out
  132. String name_attr
  133. superclasses = get_superclasses(model, elem_name)
  134. while (list_len(superclasses) > 0):
  135. current = set_pop(superclasses)
  136. nr_out = read_nr_out(model["model"][current])
  137. while (nr_out > 0):
  138. nr_out = nr_out - 1
  139. out = read_out(model["model"][current], nr_out)
  140. name_attr = read_attribute(model, reverseKeyLookup(model["model"], out), "name")
  141. if (name_attr == name):
  142. return current!
  143. return ""!
  144. Void function instantiate_attribute(model : Element, element : String, attribute_name : String, value : Element):
  145. // Instantiate an attribute of something that needs to be instantiated
  146. // Actually a bit more difficult than all the rest, as we need to find the attribute to instantiate
  147. String attr_type
  148. String attr_name
  149. attr_type = find_attribute_type(model, element, attribute_name)
  150. if (attr_type == ""):
  151. log("Could not find attribute " + cast_v2s(attribute_name))
  152. return!
  153. // Make a copy of the value, as it is likely that this value is reused later on
  154. value = create_value(value)
  155. attr_name = model_add_value(model, (element + ".") + attribute_name, value)
  156. retype(model, attr_name, reverseKeyLookup(model["metamodel"]["model"], read_edge_dst(model["metamodel"]["model"][attr_type])))
  157. instantiate_link(model, attr_type, "", element, attr_name)
  158. return!
  159. Void function instantiate_attribute_ref(model : Element, element : String, attribute_name : String, ref : String):
  160. // Instantiate an attribute of something that needs to be instantiated
  161. // Actually a bit more difficult than all the rest, as we need to find the attribute to instantiate
  162. String attr_type
  163. String attr_name
  164. attr_type = find_attribute_type(model, element, attribute_name)
  165. if (attr_type == ""):
  166. log("Could not find attribute " + cast_v2s(attribute_name))
  167. return!
  168. instantiate_link(model, attr_type, "", element, ref)
  169. return!
  170. Void function instantiate_attribute_code(model : Element, element : String, attribute_name : String, code : Element):
  171. String ref
  172. ref = add_AL(model, code)
  173. instantiate_existing_attribute(model, element, attribute_name, ref)
  174. return!
  175. Void function instantiate_existing_attribute(model : Element, element : String, attribute_name : String, attr_ref : String):
  176. // Instantiate an attribute of something that needs to be instantiated
  177. // Actually a bit more difficult than all the rest, as we need to find the attribute to instantiate
  178. String attr_type
  179. String attr_name
  180. attr_type = find_attribute_type(model, element, attribute_name)
  181. if (attr_type == ""):
  182. log("Could not find attribute " + cast_v2s(attribute_name))
  183. return!
  184. // Make a copy of the value, as it is likely that this value is reused later on
  185. retype(model, attr_ref, reverseKeyLookup(model["metamodel"]["model"], read_edge_dst(model["metamodel"]["model"][attr_type])))
  186. instantiate_link(model, attr_type, "", element, attr_ref)
  187. return!
  188. String function instantiate_link(model : Element, type : String, name : String, source : String, destination : String):
  189. // Create a typed link between two nodes
  190. String actual_name
  191. actual_name = model_add_edge(model, name, source, destination)
  192. if (type == ""):
  193. // Have to find the type ourselves, as it isn't defined
  194. Element out
  195. Element in
  196. Element options
  197. options = allowedAssociationsBetween(model, source, destination)
  198. if (read_nr_out(options) == 1):
  199. type = set_pop(options)
  200. elif (read_nr_out(options) == 0):
  201. log("ERROR: cannot find possible link between entries")
  202. return ""!
  203. else:
  204. log("ERROR: too many possible links between entries")
  205. return ""!
  206. retype(model, actual_name, type)
  207. return actual_name!
  208. Void function define_inheritance(model : Element, inheritance_name : String):
  209. // Set the inheritance link to the one defined in our own metamodel, given by the specified name
  210. dict_add(model, "inheritance", model["metamodel"]["model"][inheritance_name])
  211. return!
  212. Void function model_delete_element(model : Element, name : String):
  213. // Remove the link
  214. // 1) from the type mapping
  215. dict_delete_node(model["type_mapping"], model["model"][name])
  216. // 2) from the model
  217. delete_element(model["model"][name])
  218. return!
  219. String function model_define_attribute(model : Element, elem : String, name : String, type : String):
  220. // Create the necessary links to make it an attribute
  221. String edge_name
  222. edge_name = instantiate_link(model, "Association", "", elem, type)
  223. instantiate_attribute(model, edge_name, "name", name)
  224. return edge_name!
  225. Element function read_attribute(model : Element, element : String, attribute : String):
  226. Integer i
  227. Integer count
  228. Element edge
  229. Element edge_type
  230. Element elem
  231. Element typing
  232. elem = model["model"][element]
  233. typing = model["type_mapping"]
  234. count = read_nr_out(elem)
  235. i = 0
  236. while (i < count):
  237. edge = read_out(elem, i)
  238. if (dict_in_node(typing, edge)):
  239. edge_type = dict_read_node(typing, edge)
  240. if (element_eq(edge_type, dict_read_edge(read_edge_src(edge_type), attribute))):
  241. return read_edge_dst(edge)!
  242. i = i + 1
  243. return read_root()!
  244. Void function unset_attribute(model : Element, element : String, attribute : String):
  245. // Removes an attribute if it exists
  246. String attr_type
  247. Element attr_links
  248. String attr_link
  249. attr_type = find_attribute_type(model, element, attribute)
  250. attr_links = allOutgoingAssociationInstances(model, element, attr_type)
  251. while (list_len(attr_links) > 0):
  252. attr_link = set_pop(attr_links)
  253. dict_delete_node(model["type_mapping"], read_edge_dst(model["model"][attr_link]))
  254. dict_delete_node(model["type_mapping"], model["model"][attr_link])
  255. dict_delete_node(model["model"], reverseKeyLookup(model["model"], read_edge_dst(model["model"][attr_link])))
  256. delete_element(model["model"][attr_link])
  257. return!
  258. Void function add_AL_links(model : Element, list : Element, element : Element, type: String, linkname : String, expected_type : String):
  259. if (bool_not(dict_in(element, linkname))):
  260. return!
  261. Element link
  262. link = dict_read_edge(element, linkname)
  263. // The link
  264. dict_add(model["model"], "__" + cast_id2s(link), link)
  265. dict_add(model["type_mapping"], link, model["metamodel"]["model"][(type + "_") + linkname])
  266. // The name link
  267. link = read_out(link, 0)
  268. dict_add(model["model"], "__" + cast_id2s(link), link)
  269. dict_add(model["type_mapping"], link, model["metamodel"]["model"]["to_str"])
  270. // The name node
  271. link = read_edge_dst(link)
  272. if (bool_not(set_in_node(model["model"], link))):
  273. dict_add(model["model"], "__" + cast_id2s(link), link)
  274. dict_add(model["type_mapping"], link, model["metamodel"]["model"]["String"])
  275. // Now add the destination to the worker list
  276. Element node
  277. node = create_node()
  278. list_append(node, element[linkname])
  279. list_append(node, expected_type)
  280. set_add(list, node)
  281. return!
  282. String function add_AL(model : Element, element : Element):
  283. Element todo
  284. Element node
  285. Element work_node
  286. Element elem
  287. String type
  288. todo = create_node()
  289. node = create_node()
  290. list_append(node, element)
  291. list_append(node, "funcdef")
  292. set_add(todo, node)
  293. while (0 < dict_len(todo)):
  294. work_node = set_pop(todo)
  295. elem = list_read(work_node, 0)
  296. type = list_read(work_node, 1)
  297. if (bool_not(set_in_node(model["model"], elem))):
  298. // Determine the type if we don't know it
  299. if (type == ""):
  300. if (is_physical_action(elem)):
  301. type = cast_a2s(elem)
  302. else:
  303. type = "Any"
  304. // Add the node itself
  305. dict_add(model["model"], "__" + cast_id2s(elem), elem)
  306. dict_add(model["type_mapping"], elem, model["metamodel"]["model"][type])
  307. // Now add its edges
  308. if (type == "if"):
  309. add_AL_links(model, todo, elem, type, "cond", "")
  310. add_AL_links(model, todo, elem, type, "then", "")
  311. add_AL_links(model, todo, elem, type, "else", "")
  312. add_AL_links(model, todo, elem, type, "next", "")
  313. elif (type == "while"):
  314. add_AL_links(model, todo, elem, type, "cond", "")
  315. add_AL_links(model, todo, elem, type, "body", "")
  316. add_AL_links(model, todo, elem, type, "next", "")
  317. elif (type == "assign"):
  318. add_AL_links(model, todo, elem, type, "var", "")
  319. add_AL_links(model, todo, elem, type, "value", "")
  320. add_AL_links(model, todo, elem, type, "next", "")
  321. elif (type == "break"):
  322. add_AL_links(model, todo, elem, type, "while", "while")
  323. elif (type == "continue"):
  324. add_AL_links(model, todo, elem, type, "while", "while")
  325. elif (type == "return"):
  326. add_AL_links(model, todo, elem, type, "value", "")
  327. elif (type == "resolve"):
  328. add_AL_links(model, todo, elem, type, "var", "")
  329. elif (type == "access"):
  330. add_AL_links(model, todo, elem, type, "var", "")
  331. elif (type == "constant"):
  332. add_AL_links(model, todo, elem, type, "node", "")
  333. elif (type == "output"):
  334. add_AL_links(model, todo, elem, type, "node", "")
  335. add_AL_links(model, todo, elem, type, "next", "")
  336. elif (type == "global"):
  337. add_AL_links(model, todo, elem, type, "var", "String")
  338. add_AL_links(model, todo, elem, type, "next", "")
  339. elif (type == "param"):
  340. add_AL_links(model, todo, elem, type, "name", "String")
  341. add_AL_links(model, todo, elem, type, "value", "")
  342. add_AL_links(model, todo, elem, type, "next_param", "param")
  343. elif (type == "funcdef"):
  344. add_AL_links(model, todo, elem, type, "body", "")
  345. add_AL_links(model, todo, elem, type, "next", "")
  346. elif (type == "call"):
  347. add_AL_links(model, todo, elem, type, "func", "")
  348. add_AL_links(model, todo, elem, type, "params", "param")
  349. add_AL_links(model, todo, elem, type, "last_param", "param")
  350. add_AL_links(model, todo, elem, type, "next", "")
  351. return reverseKeyLookup(model["model"], element)!
  352. Void function add_constraint(model : Element, element : String, constraint : Action):
  353. // Add local constraints to an element
  354. Element attr_type
  355. String link_name
  356. String constraint_name
  357. constraint_name = add_AL(model, constraint)
  358. attr_type = find_attribute_type(model, element, "constraint")
  359. instantiate_link(model, attr_type, "", element, constraint_name)
  360. return!
  361. Void function construct_model():
  362. String command
  363. while (True):
  364. command = input()
  365. log(command)
  366. if (command == "instantiate_bottom"):
  367. Element m
  368. m = instantiate_bottom()
  369. dict_add(global_models, input(), m)
  370. elif (command == "add_node"):
  371. model_add_node(global_models[input()], input())
  372. elif (command == "add_value"):
  373. model_add_value(global_models[input()], input(), input())
  374. elif (command == "add_edge"):
  375. model_add_edge(global_models[input()], input(), input(), input())
  376. elif (command == "exit"):
  377. return!
  378. elif (command == "retype_model"):
  379. retype_model(global_models[input()], global_models[input()])
  380. elif (command == "retype"):
  381. retype(global_models[input()], input(), input())
  382. elif (command == "instantiate_model"):
  383. Element m
  384. m = instantiate_model(global_models[input()])
  385. dict_add(global_models, input(), m)
  386. elif (command == "instantiate_node"):
  387. instantiate_node(global_models[input()], input(), input())
  388. elif (command == "instantiate_attribute"):
  389. instantiate_attribute(global_models[input()], input(), input(), input())
  390. elif (command == "instantiate_attribute_ref"):
  391. instantiate_attribute_ref(global_models[input()], input(), input(), input())
  392. elif (command == "instantiate_attribute_code"):
  393. instantiate_attribute_code(global_models[input()], input(), input(), construct_function())
  394. elif (command == "instantiate_link"):
  395. instantiate_link(global_models[input()], input(), input(), input(), input())
  396. elif (command == "define_inheritance"):
  397. define_inheritance(global_models[input()], input())
  398. elif (command == "add_constraint"):
  399. add_constraint(global_models[input()], input(), construct_function())
  400. elif (command == "initialize_SCD"):
  401. initialize_SCD(input())
  402. elif (command == "initialize_bottom"):
  403. initialize_bottom(input())
  404. elif (command == "export_node"):
  405. String local_name
  406. String location
  407. local_name = input()
  408. location = input()
  409. export_node(location, global_models[local_name])
  410. elif (command == "import_node"):
  411. Element m
  412. command = input()
  413. m = import_node(command)
  414. if (element_eq(m, read_root())):
  415. log("Error: import not found for " + command)
  416. else:
  417. dict_add(global_models, input(), m)
  418. else:
  419. log("Modelling error: did not understand command " + command)