conformance_scd.alc 9.5 KB

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  1. include "primitives.alh"
  2. include "library.alh"
  3. include "object_operations.alh"
  4. include "constructors.alh"
  5. include "modelling.alh"
  6. Boolean function is_direct_instance(model : Element, instance : String, type : String):
  7. // Just check whether or not the type mapping specifies the type as the type of the instance
  8. return element_eq(dict_read_node(model["type_mapping"], model["model"][instance]), model["metamodel"]["model"][type])
  9. Boolean function is_nominal_instance(model : Element, instance : String, type : String):
  10. if (bool_not(dict_in(model["metamodel"]["model"], type))):
  11. // type is not even in the specified metamodel, so this will never work
  12. return False
  13. if (bool_not(dict_in_node(model["type_mapping"], model["model"][instance]))):
  14. // Doesn't even have a type
  15. return False
  16. return is_nominal_subtype(model["metamodel"], reverseKeyLookup(model["metamodel"]["model"], dict_read_node(model["type_mapping"], model["model"][instance])), type)
  17. Boolean function is_nominal_subtype(metamodel : Element, subclass : String, superclass : String):
  18. if (element_eq(metamodel["model"][subclass], metamodel["model"][superclass])):
  19. return True
  20. if (bool_not(dict_in(metamodel["model"], subclass))):
  21. return False
  22. if (bool_not(dict_in(metamodel["model"], superclass))):
  23. return False
  24. Element superclasses
  25. Element new_superclass
  26. Element result
  27. superclasses = get_superclasses(metamodel, subclass)
  28. while (0 < list_len(superclasses)):
  29. new_superclass = set_pop(superclasses)
  30. if (is_nominal_subtype(metamodel, new_superclass, superclass)):
  31. return True
  32. return False
  33. String function conformance_scd(model : Element):
  34. // Initialization
  35. Element keys
  36. Element metamodel
  37. Element typing
  38. String model_name
  39. String src_model
  40. String dst_model
  41. String src_metamodel
  42. String dst_metamodel
  43. Element element
  44. Element check_list
  45. String check_type
  46. Element cardinalities
  47. Element scd
  48. String error_msg
  49. error_msg = ""
  50. // Load in variables
  51. scd = import_node("models/SimpleClassDiagrams")
  52. metamodel = model["metamodel"]
  53. typing = model["type_mapping"]
  54. cardinalities = create_node()
  55. // Create dictionary with all associations and allowed cardinalities
  56. if (list_len(model["model"]) > 0):
  57. keys = dict_keys(metamodel["model"])
  58. Integer slc
  59. Integer suc
  60. Integer tlc
  61. Integer tuc
  62. String key
  63. Element tmp_dict
  64. while (0 < list_len(keys)):
  65. key = set_pop(keys)
  66. if (is_nominal_instance(metamodel, key, "Association")):
  67. tmp_dict = create_node()
  68. slc = read_attribute(metamodel, key, "source_lower_cardinality")
  69. suc = read_attribute(metamodel, key, "source_upper_cardinality")
  70. tlc = read_attribute(metamodel, key, "target_lower_cardinality")
  71. tuc = read_attribute(metamodel, key, "target_upper_cardinality")
  72. if (element_neq(slc, read_root())):
  73. dict_add(tmp_dict, "slc", slc)
  74. if (element_neq(suc, read_root())):
  75. dict_add(tmp_dict, "suc", suc)
  76. if (element_neq(tlc, read_root())):
  77. dict_add(tmp_dict, "tlc", tlc)
  78. if (element_neq(tuc, read_root())):
  79. dict_add(tmp_dict, "tuc", tuc)
  80. if (list_len(tmp_dict) > 0):
  81. dict_add(cardinalities, key, tmp_dict)
  82. // Iterate over each element of the model, finding out whether everything is fine
  83. keys = dict_keys(model["model"])
  84. while (0 < list_len(keys)):
  85. model_name = set_pop(keys)
  86. element = model["model"][model_name]
  87. if (bool_not(dict_in_node(typing, element))):
  88. return "Model has no type specified: " + model_name
  89. if (bool_not(set_in_node(metamodel["model"], dict_read_node(typing, element)))):
  90. return "Type of element not in specified metamodel: " + model_name
  91. if (bool_not(is_nominal_instance(model, model_name, reverseKeyLookup(metamodel["model"], dict_read_node(typing, element))))):
  92. return "Element is not an instance of its specified type: " + model_name
  93. if (is_edge(element)):
  94. src_model = reverseKeyLookup(model["model"], read_edge_src(element))
  95. dst_model = reverseKeyLookup(model["model"], read_edge_dst(element))
  96. src_metamodel = reverseKeyLookup(metamodel["model"], read_edge_src(dict_read_node(typing, element)))
  97. dst_metamodel = reverseKeyLookup(metamodel["model"], read_edge_dst(dict_read_node(typing, element)))
  98. if (bool_not(is_nominal_instance(model, src_model, src_metamodel))):
  99. return "Source of model edge not typed by source of type: " + model_name
  100. if (bool_not(is_nominal_instance(model, dst_model, dst_metamodel))):
  101. return "Destination of model edge not typed by source of type: " + model_name
  102. // Check cardinality for all of our edges
  103. //
  104. // SLC..SUC TLC..TUC
  105. // A ---------------------> B
  106. //
  107. // First the incoming, so we are at B in the above figure
  108. Integer lower_val
  109. Integer upper_val
  110. Integer instances
  111. check_list = selectPossibleOutgoing(model, model_name, dict_keys(cardinalities))
  112. while (0 < list_len(check_list)):
  113. check_type = set_pop(check_list)
  114. if (dict_in(cardinalities, check_type)):
  115. // Cardinalities defined for this association, so check them
  116. lower_val = cardinalities[check_type]["tlc"]
  117. upper_val = cardinalities[check_type]["tuc"]
  118. instances = list_len(allOutgoingAssociationInstances(model, model_name, check_type))
  119. if (dict_in(cardinalities[check_type], "tlc")):
  120. // A lower cardinality was defined at the target
  121. if (integer_gt(cardinalities[check_type]["tlc"], instances)):
  122. return "Lower cardinality violation for outgoing edge at " + model_name
  123. if (dict_in(cardinalities[check_type], "tuc")):
  124. // An upper cardinality was defined at the target
  125. if (integer_lt(cardinalities[check_type]["tuc"], instances)):
  126. return "Upper cardinality violation for outgoing edge at " + model_name
  127. // Identical, but for outgoing, and thus for A in the figure
  128. check_list = selectPossibleIncoming(model, model_name, dict_keys(cardinalities))
  129. while (0 < list_len(check_list)):
  130. check_type = set_pop(check_list)
  131. if (dict_in(cardinalities, check_type)):
  132. // Cardinalities defined for this association, so check them
  133. lower_val = cardinalities[check_type]["slc"]
  134. upper_val = cardinalities[check_type]["suc"]
  135. instances = list_len(allIncomingAssociationInstances(model, model_name, check_type))
  136. if (dict_in(cardinalities[check_type], "slc")):
  137. // A lower cardinality was defined at the source
  138. if (integer_gt(cardinalities[check_type]["slc"], instances)):
  139. return "Lower cardinality violation for incoming edge at " + model_name
  140. if (dict_in(cardinalities[check_type], "suc")):
  141. // An upper cardinality was defined at the source
  142. if (integer_lt(cardinalities[check_type]["suc"], instances)):
  143. return "Upper cardinality violation for incoming edge at " + model_name
  144. Element constraint_function
  145. constraint_function = read_attribute(model["metamodel"], reverseKeyLookup(model["metamodel"]["model"], dict_read_node(model["type_mapping"], element)), "constraint")
  146. if (element_neq(constraint_function, read_root())):
  147. String result
  148. // TODO define the local_constraint execution function
  149. log("Exec constraint!")
  150. result = execute_local_constraint(model, model_name)
  151. if (result != "OK"):
  152. return result
  153. // Check multiplicities, if they are defined (optional)
  154. Element metamodel_keys
  155. String metamodel_element
  156. Integer attr_value
  157. metamodel_keys = dict_keys(metamodel["model"])
  158. while (0 < list_len(metamodel_keys)):
  159. metamodel_element = set_pop(metamodel_keys)
  160. // Lower multiplicities
  161. attr_value = read_attribute(metamodel, metamodel_element, "lower_cardinality")
  162. if (element_neq(attr_value, read_root())):
  163. // We have defined a lower cardinality, so check number of instances!
  164. if (attr_value > list_len(allInstances(model, metamodel_element))):
  165. return "Lower cardinality violated for class: " + metamodel_element
  166. // Upper multiplicities
  167. attr_value = read_attribute(metamodel, metamodel_element, "upper_cardinality")
  168. if (element_neq(attr_value, read_root())):
  169. // We have defined a lower cardinality, so check number of instances!
  170. if (attr_value < list_len(allInstances(model, metamodel_element))):
  171. return "Upper cardinality violated for class: " + metamodel_element
  172. // Structure seems fine, now do static semantics
  173. if (dict_in(metamodel, "constraints")):
  174. Element constraint_function
  175. constraint_function = metamodel["constraints"]
  176. return constraint_function(model)
  177. else:
  178. return "OK"
  179. Element function set_model_constraints(model : Element, func : Element):
  180. if (dict_in(model, "constraints")):
  181. dict_delete(model, "constraints")
  182. dict_add(model, "constraints", func)
  183. return model
  184. Element function generate_bottom_type_mapping(model : Element):
  185. Element mm
  186. mm = model["metamodel"]["model"]
  187. dict_delete(model, "type_mapping")
  188. Element tm
  189. tm = create_node()
  190. dict_add(model, "type_mapping", tm)
  191. // Iterate over every element
  192. Element elem_keys
  193. Element elem
  194. elem_keys = dict_keys(model["model"])
  195. while (0 < read_nr_out(elem_keys)):
  196. elem = model["model"][set_pop(elem_keys)]
  197. if (is_edge(elem)):
  198. dict_add(tm, elem, mm["Edge"])
  199. else:
  200. dict_add(tm, elem, mm["Node"])
  201. return model
  202. String function execute_local_constraint(model : Element, element : String):
  203. Element action
  204. Element params
  205. Element param
  206. Element second_param
  207. action = read_attribute(model, element, "constraint")
  208. params = create_node()
  209. param = create_node()
  210. dict_add(param, "name", "a")
  211. dict_add(param, "value", model)
  212. second_param = create_node()
  213. dict_add(second_param, "name", "b")
  214. dict_add(second_param, "value", element)
  215. dict_add(param, "next_param", second_param)
  216. dict_add(params, "params", param)
  217. dict_add(params, "last_param", second_param)
  218. return eval(action, params)