rewriter.py 9.1 KB

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  1. # Things you can do:
  2. # - Create/delete objects, associations, attributes
  3. # - Change attribute values
  4. # - ? that's it?
  5. from uuid import UUID
  6. from services.bottom.V0 import Bottom
  7. from transformation import ramify
  8. from services import od
  9. from services.primitives.string_type import String
  10. from services.primitives.integer_type import Integer
  11. def process_rule(state, lhs: UUID, rhs: UUID):
  12. bottom = Bottom(state)
  13. # : bottom.read_outgoing_elements(rhs, name)[0]
  14. to_delete = { name for name in bottom.read_keys(lhs) if name not in bottom.read_keys(rhs) }
  15. to_create = { name for name in bottom.read_keys(rhs) if name not in bottom.read_keys(lhs) }
  16. common = { name for name in bottom.read_keys(lhs) if name in bottom.read_keys(rhs) }
  17. print("to_delete:", to_delete)
  18. print("to_create:", to_create)
  19. return to_delete, to_create, common
  20. def rewrite(state, lhs: UUID, rhs: UUID, rhs_mm: UUID, match_mapping: dict, m_to_transform: UUID, mm: UUID) -> UUID:
  21. bottom = Bottom(state)
  22. scd_metamodel_id = state.read_dict(state.read_root(), "SCD")
  23. scd_metamodel = UUID(state.read_value(scd_metamodel_id))
  24. class_type = od.get_scd_mm_class_node(bottom)
  25. attr_link_type = od.get_scd_mm_attributelink_node(bottom)
  26. assoc_type = od.get_scd_mm_assoc_node(bottom)
  27. modelref_type = od.get_scd_mm_modelref_node(bottom)
  28. m_od = od.OD(mm, m_to_transform, bottom.state)
  29. rhs_od = od.OD(rhs_mm, rhs, bottom.state)
  30. print('rhs type:', od.get_type(bottom, rhs))
  31. to_delete, to_create, common = process_rule(state, lhs, rhs)
  32. # Perform deletions
  33. for pattern_name_to_delete in to_delete:
  34. # For every name in `to_delete`, look up the name of the matched element in the host graph
  35. model_element_name_to_delete = match_mapping[pattern_name_to_delete]
  36. print('deleting', model_element_name_to_delete)
  37. # Look up the matched element in the host graph
  38. element_to_delete, = bottom.read_outgoing_elements(m_to_transform, model_element_name_to_delete)
  39. # Delete
  40. bottom.delete_element(element_to_delete)
  41. extended_mapping = dict(match_mapping) # will be extended with created elements
  42. edges_to_create = [] # postpone creation of edges after creation of nodes
  43. # Perform creations
  44. for pattern_name_to_create in to_create:
  45. print('creating', pattern_name_to_create)
  46. # We have to come up with a name for the element-to-create in the host graph
  47. i = 0
  48. while True:
  49. model_element_name_to_create = pattern_name_to_create + str(i) # use the label of the element in the RHS as a basis
  50. if len(bottom.read_outgoing_elements(m_to_transform, model_element_name_to_create)) == 0:
  51. break # found an available name
  52. # Determine the type of the thing to create
  53. rhs_element_to_create, = bottom.read_outgoing_elements(rhs, pattern_name_to_create)
  54. rhs_type = od.get_type(bottom, rhs_element_to_create)
  55. original_type = ramify.get_original_type(bottom, rhs_type)
  56. if original_type != None:
  57. # Now get the type of the type
  58. if od.is_typed_by(bottom, original_type, class_type):
  59. # It's type is typed by Class -> it's an object
  60. print(' -> creating object')
  61. o = m_od._create_object(model_element_name_to_create, original_type)
  62. extended_mapping[pattern_name_to_create] = model_element_name_to_create
  63. elif od.is_typed_by(bottom, original_type, attr_link_type):
  64. print(' -> postpone (is attribute link)')
  65. edges_to_create.append((pattern_name_to_create, rhs_element_to_create, original_type, 'attribute link', rhs_type, model_element_name_to_create))
  66. elif od.is_typed_by(bottom, original_type, assoc_type):
  67. print(' -> postpone (is link)')
  68. edges_to_create.append((pattern_name_to_create, rhs_element_to_create, original_type, 'link', rhs_type, model_element_name_to_create))
  69. else:
  70. original_type_name = od.get_object_name(bottom, mm, original_type)
  71. print(" -> warning: don't know about", original_type_name)
  72. else:
  73. print(" -> no original (un-RAMified) type")
  74. # assume the type of the object is already the original type
  75. # this is because primitive types (e.g., Integer) are not RAMified
  76. type_name = od.get_object_name(bottom, rhs_mm, rhs_type)
  77. if type_name == "String":
  78. s_model = UUID(bottom.read_value(rhs_element_to_create))
  79. python_expr = String(s_model, bottom.state).read()
  80. result = eval(python_expr, {}, {})
  81. print('result:', result)
  82. if isinstance(result, int):
  83. m_od.create_integer_value(model_element_name_to_create, result)
  84. elif isinstance(result, str):
  85. m_od.create_string_value(model_element_name_to_create, result)
  86. extended_mapping[pattern_name_to_create] = model_element_name_to_create
  87. print('extended_mapping:', extended_mapping)
  88. print("create edges....")
  89. for pattern_name_to_create, rhs_element_to_create, original_type, original_type_name, rhs_type, model_element_name_to_create in edges_to_create:
  90. print('creating', pattern_name_to_create)
  91. if original_type_name == 'attribute link':
  92. print(' -> creating attribute link')
  93. src = bottom.read_edge_source(rhs_element_to_create)
  94. src_name = od.get_object_name(bottom, rhs, src)
  95. tgt = bottom.read_edge_target(rhs_element_to_create)
  96. tgt_name = od.get_object_name(bottom, rhs, tgt)
  97. obj_name = extended_mapping[src_name] # name of object in host graph to create slot for
  98. attr_name = od.get_object_name(bottom, mm, original_type)
  99. class_name = m_od.get_class_of_object(obj_name)
  100. # Just when you thought the code couldn't get any dirtier:
  101. attribute_name = attr_name[len(class_name)+1:]
  102. # print(attribute_name, obj_name, extended_mapping[tgt_name])
  103. m_od.create_slot(attribute_name, obj_name, extended_mapping[tgt_name])
  104. elif original_type_name == 'link':
  105. print(' -> creating link')
  106. src = bottom.read_edge_source(rhs_element_to_create)
  107. src_name = od.get_object_name(bottom, rhs, src)
  108. tgt = bottom.read_edge_target(rhs_element_to_create)
  109. tgt_name = od.get_object_name(bottom, rhs, tgt)
  110. obj_name = extended_mapping[src_name] # name of object in host graph to create slot for
  111. attr_name = od.get_object_name(bottom, mm, original_type)
  112. class_name = m_od.get_class_of_object(obj_name)
  113. # print(attr_name, obj_name, extended_mapping[tgt_name])
  114. m_od.create_link(model_element_name_to_create, attr_name, obj_name, extended_mapping[tgt_name])
  115. # Perform updates
  116. for pattern_element_name in common:
  117. model_element_name = match_mapping[pattern_element_name]
  118. print('updating', model_element_name)
  119. model_element, = bottom.read_outgoing_elements(m_to_transform, model_element_name)
  120. old_value = bottom.read_value(model_element)
  121. print('old value:', old_value)
  122. host_type = od.get_type(bottom, model_element)
  123. if od.is_typed_by(bottom, host_type, class_type):
  124. print(' -> is classs')
  125. elif od.is_typed_by(bottom, host_type, attr_link_type):
  126. print(' -> is attr link')
  127. elif od.is_typed_by(bottom, host_type, modelref_type):
  128. print(' -> is modelref')
  129. referred_model_id = UUID(bottom.read_value(model_element))
  130. # referred_model_type = od.get_type(bottom, referred_model_id) # None
  131. # print('referred_model_type:', referred_model_type)
  132. host_type_name = od.get_object_name(bottom, mm, host_type)
  133. print('host_type_name:', host_type_name)
  134. if host_type_name == "Integer":
  135. v = Integer(UUID(old_value), state).read()
  136. elif host_type_name == "String":
  137. v = String(UUID(old_value), state).read()
  138. else:
  139. raise Exception("Unimplemented type:", host_type_name)
  140. # the referred model itself doesn't have a type, so we have to look at the type of the ModelRef element in the RHS-MM:
  141. rhs_element, = bottom.read_outgoing_elements(rhs, pattern_element_name)
  142. rhs_type = od.get_type(bottom, rhs_element)
  143. rhs_type_name = od.get_object_name(bottom, rhs_mm, rhs_type)
  144. print("rhs_type_name:", rhs_type_name)
  145. print(od.get_object_name(bottom, mm, model_element))
  146. if rhs_type_name == "String":
  147. python_expr = String(UUID(bottom.read_value(rhs_element)), state).read()
  148. result = eval(python_expr, {}, {'v': v})
  149. print('eval result=', result)
  150. if isinstance(result, int):
  151. # overwrite the old value
  152. Integer(UUID(old_value), state).create(result)
  153. else:
  154. raise Exception("Unimplemented type. Value:", result)