object_operations.alc 4.8 KB

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  1. include "primitives.alh"
  2. include "conformance_scd.alh"
  3. include "constructors.alh"
  4. Element function allInstances(model : Element, type : Element):
  5. Element type_mapping
  6. Element result
  7. type_mapping = model["type_mapping"]
  8. result = create_node()
  9. Integer counter
  10. counter = 0
  11. Integer length
  12. length = read_nr_out(type_mapping)
  13. Element edge
  14. while (counter < length):
  15. edge = read_out(type_mapping, counter)
  16. if (element_eq(read_edge_dst(edge), type)):
  17. // Found an element of the specified type
  18. set_add(result, read_edge_dst(read_out(edge, 0)))
  19. counter = counter + 1
  20. return result
  21. Element function selectPossibleIncoming(model : Element, target : String, limit_set : Element):
  22. // Find all possible incoming link types for the target model
  23. // Should also include those specified on the superclass(es)
  24. String type
  25. Element metamodel
  26. Element elem
  27. Element result
  28. result = create_node()
  29. metamodel = model["metamodel"]
  30. while (0 < list_len(limit_set)):
  31. type = set_pop(limit_set)
  32. elem = metamodel["model"][type]
  33. if (is_edge(elem)):
  34. if (is_nominal_instance(model, model["model"][target], read_edge_src(elem))):
  35. set_add(result, elem)
  36. return result
  37. Element function selectPossibleOutgoing(model : Element, source : String, limit_set : Element):
  38. // Find all possible outgoing link types for the source model
  39. // Should also include those specified on the superclass(es)
  40. String type
  41. Element metamodel
  42. Element elem
  43. Element result
  44. result = create_node()
  45. metamodel = model["metamodel"]
  46. while (0 < list_len(limit_set)):
  47. type = set_pop(limit_set)
  48. elem = metamodel["model"][type]
  49. if (is_edge(elem)):
  50. if (is_nominal_instance(model, model["model"][source], read_edge_dst(elem))):
  51. set_add(result, elem)
  52. return result
  53. Element function allOutgoingAssociationInstances(model : Element, source : Element, assoc : Element):
  54. // Read out all outgoing edges of the model and select those that are typed by the specified association
  55. // TODO for some reason this crashes if allInstances is used!
  56. Integer length
  57. length = read_nr_out(source)
  58. Integer counter
  59. counter = 0
  60. Element result
  61. result = create_node()
  62. Element edge
  63. while (counter < length):
  64. edge = read_out(source, counter)
  65. if (element_eq(dict_read_node(model["type_mapping"], edge), assoc)):
  66. set_add(result, edge)
  67. counter = counter + 1
  68. return result
  69. Element function allIncomingAssociationInstances(model : Element, source : Element, assoc : Element):
  70. // Read out all outgoing edges of the model and select those that are typed by the specified association
  71. Element result
  72. result = create_node()
  73. Element allinsts
  74. allinsts = allInstances(model, assoc)
  75. Element understudy
  76. while (0 < read_nr_out(allinsts)):
  77. understudy = set_pop(allinsts)
  78. if (element_eq(read_edge_dst(understudy), source)):
  79. set_add(result, understudy)
  80. return result
  81. Element function readElementByName(model : Element, name : String):
  82. return model["model"][name]
  83. Element function getAttributeList(model : Element, element : String):
  84. Element result
  85. Element keys
  86. Element type
  87. Element attr_name
  88. String attr_type
  89. result = create_node()
  90. type = dict_read_node(model["type_mapping"], model["model"][element])
  91. keys = dict_keys(type)
  92. // Add our own attributes
  93. while (0 < list_len(keys)):
  94. attr_name = set_pop(keys)
  95. if (is_physical_string(attr_name)):
  96. attr_type = getName(model["metamodel"], type[attr_name])
  97. dict_add(result, attr_name, attr_type)
  98. // Go on to the metalevel
  99. // TODO
  100. return result
  101. Element function getInstantiatableAttributes(model : Element, element : Element):
  102. Element result
  103. result = create_node()
  104. // Get all outgoing "dictionary" links
  105. Element set_own
  106. set_own = dict_keys(element)
  107. // Filter them
  108. Element e
  109. while (0 < read_nr_out(set_own)):
  110. e = set_pop(set_own)
  111. if (is_physical_string(e)):
  112. dict_add(result, e, getName(model, element[e]))
  113. return result
  114. String function getName(m : Element, e : Element):
  115. Element element_keys
  116. Element s
  117. s = m["model"]
  118. element_keys = dict_keys(s)
  119. Element key
  120. while (0 < read_nr_out(element_keys)):
  121. key = set_pop(element_keys)
  122. if (element_eq(dict_read_node(s, key), e)):
  123. return key
  124. return string_join(string_join("(unknown: ", cast_e2s(e)), " )")
  125. String function reverseKeyLookup(dict : Element, element : Element):
  126. Element elements
  127. String name
  128. elements = dict_keys(dict)
  129. while (0 < list_len(elements)):
  130. name = set_pop(elements)
  131. if (element_eq(dict[name], element)):
  132. return name
  133. return string_join(string_join("(unknown: ", cast_e2s(element)), " )")
  134. String function print_dict(dict : Element):
  135. Element keys
  136. Element key
  137. String result
  138. keys = dict_keys(dict)
  139. result = ""
  140. while (0 < list_len(keys)):
  141. key = set_pop(keys)
  142. result = result + cast_v2s(key)
  143. result = result + ": "
  144. result = result + cast_v2s(dict[key])
  145. result = result + "\n"
  146. return result