714 lines
29 KiB
Python
714 lines
29 KiB
Python
# -*- coding: utf-8 -*-
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import json
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import os
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from lxml import etree
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import traceback
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from collections import defaultdict
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# --- Namespaces ---
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ns = {
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"iface": "http://www.siemens.com/automation/Openness/SW/Interface/v5",
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"flg": "http://www.siemens.com/automation/Openness/SW/NetworkSource/FlgNet/v4",
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}
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# --- Helper Functions ---
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# (get_multilingual_text, get_symbol_name, parse_access, parse_part - sin cambios)
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# ... (código de estas funciones aquí) ...
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def get_multilingual_text(element, default_lang="en-US", fallback_lang="it-IT"):
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if element is None:
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return ""
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try:
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xpath_expr = (
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f".//*[local-name()='MultilingualTextItem'][*[local-name()='AttributeList']/*[local-name()='Culture' and text()='{default_lang}']]"
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f"/*[local-name()='AttributeList']/*[local-name()='Text']"
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)
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text_items = element.xpath(xpath_expr)
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if text_items and text_items[0].text is not None:
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return text_items[0].text.strip()
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xpath_expr = (
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f".//*[local-name()='MultilingualTextItem'][*[local-name()='AttributeList']/*[local-name()='Culture' and text()='{fallback_lang}']]"
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f"/*[local-name()='AttributeList']/*[local-name()='Text']"
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)
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text_items = element.xpath(xpath_expr)
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if text_items and text_items[0].text is not None:
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return text_items[0].text.strip()
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xpath_expr = f".//*[local-name()='MultilingualTextItem']/*[local-name()='AttributeList']/*[local-name()='Text']"
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text_items = element.xpath(xpath_expr)
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if text_items and text_items[0].text is not None:
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return text_items[0].text.strip()
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return ""
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except Exception as e:
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print(f"Advertencia: Error extrayendo MultilingualText: {e}")
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return ""
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def get_symbol_name(symbol_element):
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if symbol_element is None:
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return None
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try:
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components = symbol_element.xpath("./*[local-name()='Component']/@Name")
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return ".".join(f'"{c}"' for c in components) if components else None
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except Exception as e:
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print(f"Advertencia: Excepción en get_symbol_name: {e}")
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return None
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def parse_access(access_element):
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if access_element is None:
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return None
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uid = access_element.get("UId")
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scope = access_element.get("Scope")
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info = {"uid": uid, "scope": scope, "type": "unknown"}
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symbol = access_element.xpath("./*[local-name()='Symbol']")
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constant = access_element.xpath("./*[local-name()='Constant']")
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if symbol:
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info["type"] = "variable"
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info["name"] = get_symbol_name(symbol[0])
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if info["name"] is None:
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info["type"] = "error_parsing_symbol"
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print(f"Error: No se pudo parsear nombre símbolo Access UID={uid}")
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return info
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elif constant:
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info["type"] = "constant"
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const_type_elem = constant[0].xpath("./*[local-name()='ConstantType']")
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const_val_elem = constant[0].xpath("./*[local-name()='ConstantValue']")
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info["datatype"] = (
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const_type_elem[0].text
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if const_type_elem and const_type_elem[0].text is not None
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else "Unknown"
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)
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value_str = (
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const_val_elem[0].text
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if const_val_elem and const_val_elem[0].text is not None
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else None
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)
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if value_str is None:
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info["type"] = "error_parsing_constant"
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info["value"] = None
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print(f"Error: Constante sin valor Access UID={uid}")
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return info
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if info["datatype"] == "Unknown":
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val_lower = value_str.lower()
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if val_lower in ["true", "false"]:
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info["datatype"] = "Bool"
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elif value_str.isdigit() or (
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value_str.startswith("-") and value_str[1:].isdigit()
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):
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info["datatype"] = "Int"
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elif "." in value_str:
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try:
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float(value_str)
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info["datatype"] = "Real"
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except ValueError:
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pass
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elif "#" in value_str:
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info["datatype"] = "TypedConstant"
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info["value"] = value_str
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dtype_lower = info["datatype"].lower()
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val_str_processed = value_str.split("#")[-1] if "#" in value_str else value_str
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try:
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if dtype_lower in [
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"int",
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"dint",
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"udint",
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"sint",
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"usint",
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"lint",
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"ulint",
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"word",
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"dword",
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"lword",
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"byte",
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]:
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info["value"] = int(val_str_processed)
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elif dtype_lower == "bool":
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info["value"] = (
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val_str_processed.lower() == "true" or val_str_processed == "1"
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)
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elif dtype_lower in ["real", "lreal"]:
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info["value"] = float(val_str_processed)
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elif dtype_lower == "typedconstant":
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info["value"] = value_str
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except (ValueError, TypeError) as e:
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print(
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f"Advertencia: No se pudo convertir valor '{val_str_processed}' a {dtype_lower} UID={uid}. Error: {e}"
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)
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info["value"] = value_str
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else:
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info["type"] = "unknown_structure"
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print(f"Advertencia: Access UID={uid} no es Symbol ni Constant.")
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return info
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if info["type"] == "variable" and info.get("name") is None:
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print(f"Error Interno: parse_access var sin nombre UID {uid}.")
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info["type"] = "error_no_name"
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return info
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return info
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def parse_part(part_element):
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if part_element is None:
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return None
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uid = part_element.get("UId")
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name = part_element.get("Name")
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if not uid or not name:
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print(
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f"Error: Part sin UID o Name: {etree.tostring(part_element, encoding='unicode')}"
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)
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return None
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template_values = {}
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try:
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for tv in part_element.xpath("./*[local-name()='TemplateValue']"):
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tv_name = tv.get("Name")
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tv_type = tv.get("Type")
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if tv_name and tv_type:
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template_values[tv_name] = tv_type
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except Exception as e:
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print(f"Advertencia: Error extrayendo TemplateValues Part UID={uid}: {e}")
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return {
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"uid": uid,
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"type": name,
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"template_values": template_values,
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} # Cambiado Name a type
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# --- NUEVA FUNCIÓN parse_call ---
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def parse_call(call_element):
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"""
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Parsea un elemento Call (llamada a FC/FB) y extrae su información.
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"""
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if call_element is None:
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return None
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uid = call_element.get("UId")
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if not uid:
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print(
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f"Error: Call encontrado sin UID: {etree.tostring(call_element, encoding='unicode')}"
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)
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return None
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call_info_elem = call_element.xpath("./*[local-name()='CallInfo']")
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if not call_info_elem:
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print(f"Error: Call UID {uid} sin elemento CallInfo.")
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return None
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call_info = call_info_elem[0]
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block_name = call_info.get("Name")
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block_type = call_info.get("BlockType") # FC, FB, etc.
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instance_name = None
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instance_scope = None
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# Si es una llamada a FB, puede tener información de instancia
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instance_elem = call_info.xpath("./*[local-name()='Instance']")
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if instance_elem:
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instance = instance_elem[0]
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instance_scope = instance.get("Scope") # Ej: GlobalVariable, InstanceDB
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# El nombre de la instancia DB suele estar en Component dentro de Symbol
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symbol_elem = instance.xpath("./*[local-name()='Symbol']")
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if symbol_elem:
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instance_name = get_symbol_name(symbol_elem[0])
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if not block_name or not block_type:
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print(f"Error: CallInfo para UID {uid} sin Name o BlockType.")
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return None
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call_data = {
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"uid": uid,
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"type": "Call", # Tipo genérico para nuestra estructura JSON
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"block_name": block_name,
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"block_type": block_type,
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}
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if instance_name:
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call_data["instance_db"] = instance_name
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if instance_scope:
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call_data["instance_scope"] = instance_scope
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return call_data
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# --- FIN NUEVA FUNCIÓN ---
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# --- Función parse_network MODIFICADA ---
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def parse_network(network_element):
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"""
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Parsea una red, extrae lógica (incluyendo Calls) y añade conexiones EN implícitas.
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"""
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if network_element is None:
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return {
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"id": "ERROR",
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"title": "Invalid Network Element",
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"comment": "",
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"logic": [],
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"error": "Input element was None",
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}
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network_id = network_element.get("ID")
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title_element = network_element.xpath(
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".//*[local-name()='MultilingualText'][@CompositionName='Title']"
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)
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network_title = (
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get_multilingual_text(title_element[0])
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if title_element
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else f"Network {network_id}"
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)
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comment_title_element = network_element.xpath(
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"./*[local-name()='ObjectList']/*[local-name()='MultilingualText'][@CompositionName='Comment']"
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)
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network_comment = (
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get_multilingual_text(comment_title_element[0]) if comment_title_element else ""
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)
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flgnet_list = network_element.xpath(".//flg:FlgNet", namespaces=ns)
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if not flgnet_list:
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return {
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"id": network_id,
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"title": network_title,
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"comment": network_comment,
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"logic": [],
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"error": "FlgNet not found",
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}
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flgnet = flgnet_list[0]
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# 1. Parsear Access, Parts y Calls
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access_map = {
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acc_info["uid"]: acc_info
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for acc in flgnet.xpath(".//flg:Access", namespaces=ns)
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if (acc_info := parse_access(acc))
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}
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# --- MODIFICADO: Unir Parts y Calls en un solo mapa ---
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parts_and_calls_map = {}
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instruction_elements = flgnet.xpath(
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".//flg:Part | .//flg:Call", namespaces=ns
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) # Buscar ambos tipos
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for element in instruction_elements:
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parsed_info = None
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if element.tag.endswith("Part"):
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parsed_info = parse_part(element)
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elif element.tag.endswith("Call"):
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parsed_info = parse_call(element)
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if parsed_info and "uid" in parsed_info:
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parts_and_calls_map[parsed_info["uid"]] = parsed_info
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else:
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print(
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f"Advertencia: Se ignoró un Part/Call inválido en la red {network_id}"
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)
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# --- FIN MODIFICADO ---
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# 2. Parsear Wires y construir mapas de conexiones
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wire_connections = defaultdict(list)
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source_connections = defaultdict(list)
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eno_outputs = defaultdict(list)
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flg_ns_uri = ns["flg"]
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for wire in flgnet.xpath(".//flg:Wire", namespaces=ns):
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source_uid, source_pin, dest_uid, dest_pin = None, None, None, None
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children = wire.getchildren()
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if len(children) < 2:
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continue
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source_elem, dest_elem = children[0], children[1]
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if source_elem.tag == etree.QName(flg_ns_uri, "Powerrail"):
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source_uid, source_pin = "POWERRAIL", "out"
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elif source_elem.tag == etree.QName(flg_ns_uri, "IdentCon"):
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source_uid, source_pin = source_elem.get("UId"), "value"
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elif source_elem.tag == etree.QName(flg_ns_uri, "NameCon"):
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source_uid, source_pin = source_elem.get("UId"), source_elem.get("Name")
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if dest_elem.tag == etree.QName(flg_ns_uri, "IdentCon"):
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dest_uid, dest_pin = dest_elem.get("UId"), "value"
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elif dest_elem.tag == etree.QName(flg_ns_uri, "NameCon"):
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dest_uid, dest_pin = dest_elem.get("UId"), dest_elem.get("Name")
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if dest_uid and dest_pin and source_uid is not None:
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dest_key = (dest_uid, dest_pin)
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source_key = (source_uid, source_pin)
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source_info = (source_uid, source_pin)
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dest_info = (dest_uid, dest_pin)
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if source_info not in wire_connections[dest_key]:
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wire_connections[dest_key].append(source_info)
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if dest_info not in source_connections[source_key]:
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source_connections[source_key].append(dest_info)
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if (
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source_pin == "eno" and source_uid in parts_and_calls_map
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): # Usar mapa combinado
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if dest_info not in eno_outputs[source_uid]:
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eno_outputs[source_uid].append(dest_info)
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# 3. Construir la representación lógica INICIAL
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all_logic_steps = {}
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functional_block_types = [
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"Move",
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"Add",
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"Sub",
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"Mul",
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"Div",
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"Mod",
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"Convert",
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"Call",
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] # Añadir Call
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rlo_generators = [
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"Contact",
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"O",
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"Eq",
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"Ne",
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"Gt",
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"Lt",
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"Ge",
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"Le",
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"And",
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"Xor",
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"PBox",
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]
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# --- MODIFICADO: Iterar sobre el mapa combinado ---
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for instruction_uid, instruction_info in parts_and_calls_map.items():
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# Usar directamente la info parseada (part_info o call_info)
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instruction_repr = {
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"instruction_uid": instruction_uid,
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**instruction_info,
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} # Copiar datos base
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instruction_repr["inputs"] = {}
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instruction_repr["outputs"] = {}
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# --- FIN MODIFICADO ---
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# Rellenar inputs explícitos
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# Añadir más pines si las llamadas a FB los usan (ej: parámetros FC/FB)
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possible_pins = set(
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["en", "in", "in1", "in2", "in3", "in4", "bit", "operand", "pre", "clk"]
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)
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# Añadir pines específicos de la llamada si es un FB? Más complejo.
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for dest_pin_name in possible_pins:
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dest_key = (instruction_uid, dest_pin_name)
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if dest_key in wire_connections:
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sources_list = wire_connections[dest_key]
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input_sources_repr = []
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for source_uid, source_pin in sources_list:
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if source_uid == "POWERRAIL":
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input_sources_repr.append({"type": "powerrail"})
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elif source_uid in access_map:
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input_sources_repr.append(access_map[source_uid])
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elif source_uid in parts_and_calls_map: # Usar mapa combinado
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input_sources_repr.append(
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{
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"type": "connection",
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# Usar el tipo del mapa combinado
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"source_instruction_type": parts_and_calls_map[
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source_uid
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]["type"],
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"source_instruction_uid": source_uid,
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"source_pin": source_pin,
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}
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)
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else:
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input_sources_repr.append(
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{"type": "unknown_source", "uid": source_uid}
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)
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if len(input_sources_repr) == 1:
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instruction_repr["inputs"][dest_pin_name] = input_sources_repr[0]
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elif len(input_sources_repr) > 1:
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instruction_repr["inputs"][dest_pin_name] = input_sources_repr
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# Rellenar outputs explícitos (hacia Access)
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for source_pin_name in [
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"out",
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"out1",
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"Q",
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"eno",
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]: # Añadir salidas comunes de FC/FB si es necesario
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source_key = (instruction_uid, source_pin_name)
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if source_key in source_connections:
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for dest_uid, dest_pin in source_connections[source_key]:
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if dest_uid in access_map:
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if source_pin_name not in instruction_repr["outputs"]:
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instruction_repr["outputs"][source_pin_name] = []
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if (
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access_map[dest_uid]
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not in instruction_repr["outputs"][source_pin_name]
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):
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instruction_repr["outputs"][source_pin_name].append(
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access_map[dest_uid]
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)
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all_logic_steps[instruction_uid] = instruction_repr
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# --- 4. INFERENCIA Y PROPAGACIÓN DE CONEXIONES 'EN' IMPLÍCITAS ---
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# (Esta lógica probablemente necesite ajustes para considerar 'Call' como bloque funcional)
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# print(f"DEBUG: Iniciando inferencia EN para Red {network_id}...")
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processed_blocks_en_inference = set()
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something_changed = True
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inference_passes = 0
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max_inference_passes = len(all_logic_steps) + 5
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while something_changed and inference_passes < max_inference_passes:
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something_changed = False
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inference_passes += 1
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try:
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sorted_uids_for_pass = sorted(
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all_logic_steps.keys(),
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key=lambda x: int(x) if x.isdigit() else float("inf"),
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)
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except ValueError:
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sorted_uids_for_pass = sorted(all_logic_steps.keys())
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current_logic_list = [
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all_logic_steps[uid]
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for uid in sorted_uids_for_pass
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if uid in all_logic_steps
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]
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for i, instruction in enumerate(
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current_logic_list
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): # Usar enumerate para obtener índice
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part_uid = instruction["instruction_uid"]
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part_type = instruction["type"] # Ahora puede ser 'Call'
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# Si es un bloque funcional (incluyendo Call) sin 'en' explícito
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if (
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part_type in functional_block_types
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and "en" not in instruction["inputs"]
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and part_uid not in processed_blocks_en_inference
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):
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inferred_en_source = None
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my_index = i # Ya tenemos el índice
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if my_index > 0:
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for j in range(my_index - 1, -1, -1): # Buscar hacia atrás
|
|
prev_instr = current_logic_list[j]
|
|
prev_uid = prev_instr["instruction_uid"]
|
|
prev_type = prev_instr["type"]
|
|
if prev_type in rlo_generators:
|
|
inferred_en_source = {
|
|
"type": "connection",
|
|
"source_instruction_uid": prev_uid,
|
|
"source_instruction_type": prev_type,
|
|
"source_pin": "out",
|
|
}
|
|
break
|
|
elif prev_type in functional_block_types:
|
|
source_key_eno = (prev_uid, "eno")
|
|
if source_key_eno in source_connections:
|
|
inferred_en_source = {
|
|
"type": "connection",
|
|
"source_instruction_uid": prev_uid,
|
|
"source_instruction_type": prev_type,
|
|
"source_pin": "eno",
|
|
}
|
|
break
|
|
|
|
if inferred_en_source:
|
|
# Asegurarse de que 'instruction' se refiera al diccionario original
|
|
all_logic_steps[part_uid]["inputs"]["en"] = inferred_en_source
|
|
processed_blocks_en_inference.add(part_uid)
|
|
something_changed = True
|
|
|
|
# --- 5. Añadir lógica ENO interesante ---
|
|
# (Necesita usar parts_and_calls_map ahora)
|
|
for source_instr_uid, eno_destinations in eno_outputs.items():
|
|
if source_instr_uid not in all_logic_steps:
|
|
continue
|
|
interesting_eno_logic = []
|
|
for dest_uid, dest_pin in eno_destinations:
|
|
is_direct_en_connection = (
|
|
dest_uid in parts_and_calls_map and dest_pin == "en"
|
|
) # Check en mapa combinado
|
|
if not is_direct_en_connection:
|
|
target_info = {"target_pin": dest_pin}
|
|
if dest_uid in parts_and_calls_map:
|
|
target_info.update(
|
|
{
|
|
"target_type": "instruction",
|
|
"target_uid": dest_uid,
|
|
"target_name": parts_and_calls_map[dest_uid].get(
|
|
"name", parts_and_calls_map[dest_uid].get("type")
|
|
),
|
|
}
|
|
) # Usar 'name' si existe (Part) o 'type' (Call)
|
|
elif dest_uid in access_map:
|
|
target_info.update(
|
|
{
|
|
"target_type": "operand",
|
|
"target_details": access_map[dest_uid],
|
|
}
|
|
)
|
|
else:
|
|
target_info.update(
|
|
{"target_type": "unknown", "target_uid": dest_uid}
|
|
)
|
|
interesting_eno_logic.append(target_info)
|
|
if interesting_eno_logic:
|
|
all_logic_steps[source_instr_uid]["eno_logic"] = interesting_eno_logic
|
|
|
|
# --- 6. Ordenar Lógica Final y Devolver ---
|
|
try:
|
|
sorted_uids = sorted(
|
|
all_logic_steps.keys(),
|
|
key=lambda x: int(x) if x.isdigit() else float("inf"),
|
|
)
|
|
except ValueError:
|
|
print(f"Advertencia: UIDs no numéricos red {network_id}. Orden alfabético.")
|
|
sorted_uids = sorted(all_logic_steps.keys())
|
|
network_logic = [
|
|
all_logic_steps[uid] for uid in sorted_uids if uid in all_logic_steps
|
|
]
|
|
|
|
return {
|
|
"id": network_id,
|
|
"title": network_title,
|
|
"comment": network_comment,
|
|
"logic": network_logic,
|
|
}
|
|
|
|
|
|
# --- Función Principal convert_xml_to_json (sin cambios) ---
|
|
def convert_xml_to_json(xml_filepath, json_filepath):
|
|
print(f"Iniciando conversión de '{xml_filepath}' a '{json_filepath}'...")
|
|
if not os.path.exists(xml_filepath):
|
|
print(f"Error Crítico: Archivo XML no encontrado: '{xml_filepath}'")
|
|
return
|
|
try:
|
|
print("Paso 1: Parseando archivo XML...")
|
|
parser = etree.XMLParser(remove_blank_text=True)
|
|
tree = etree.parse(xml_filepath, parser)
|
|
root = tree.getroot()
|
|
print("Paso 1: Parseo XML completado.")
|
|
print("Paso 2: Buscando el bloque SW.Blocks.FC...")
|
|
fc_block_list = root.xpath("//*[local-name()='SW.Blocks.FC']")
|
|
if not fc_block_list:
|
|
print("Error Crítico: No se encontró <SW.Blocks.FC>.")
|
|
return
|
|
fc_block = fc_block_list[0]
|
|
print(f"Paso 2: Bloque SW.Blocks.FC encontrado (ID={fc_block.get('ID')}).")
|
|
print("Paso 3: Extrayendo atributos del bloque...")
|
|
attribute_list_node = fc_block.xpath("./*[local-name()='AttributeList']")
|
|
block_name_val, block_number_val, block_lang_val = "Unknown", None, "Unknown"
|
|
if attribute_list_node:
|
|
attr_list = attribute_list_node[0]
|
|
name_node = attr_list.xpath("./*[local-name()='Name']/text()")
|
|
block_name_val = name_node[0].strip() if name_node else block_name_val
|
|
num_node = attr_list.xpath("./*[local-name()='Number']/text()")
|
|
block_number_val = (
|
|
int(num_node[0])
|
|
if num_node and num_node[0].isdigit()
|
|
else block_number_val
|
|
)
|
|
lang_node = attr_list.xpath(
|
|
"./*[local-name()='ProgrammingLanguage']/text()"
|
|
)
|
|
block_lang_val = lang_node[0].strip() if lang_node else block_lang_val
|
|
print(
|
|
f"Paso 3: Atributos: Nombre='{block_name_val}', Número={block_number_val}, Lenguaje='{block_lang_val}'"
|
|
)
|
|
else:
|
|
print("Advertencia: No se encontró AttributeList para el bloque FC.")
|
|
block_comment_val = ""
|
|
comment_node_list = fc_block.xpath(
|
|
"./*[local-name()='ObjectList']/*[local-name()='MultilingualText'][@CompositionName='Comment']"
|
|
)
|
|
if comment_node_list:
|
|
block_comment_val = get_multilingual_text(comment_node_list[0])
|
|
print(f"Paso 3b: Comentario bloque: '{block_comment_val[:50]}...'")
|
|
result = {
|
|
"block_name": block_name_val,
|
|
"block_number": block_number_val,
|
|
"language": block_lang_val,
|
|
"block_comment": block_comment_val,
|
|
"interface": {},
|
|
"networks": [],
|
|
}
|
|
print("Paso 4: Extrayendo la interfaz del bloque...")
|
|
if attribute_list_node:
|
|
interface_node_list = attribute_list_node[0].xpath(
|
|
"./*[local-name()='Interface']"
|
|
)
|
|
if interface_node_list:
|
|
interface_node = interface_node_list[0]
|
|
print("Paso 4: Nodo Interface encontrado.")
|
|
for section in interface_node.xpath(".//iface:Section", namespaces=ns):
|
|
section_name = section.get("Name")
|
|
members = []
|
|
for member in section.xpath("./iface:Member", namespaces=ns):
|
|
member_name = member.get("Name")
|
|
member_dtype = member.get("Datatype")
|
|
if member_name and member_dtype:
|
|
members.append(
|
|
{"name": member_name, "datatype": member_dtype}
|
|
)
|
|
if members:
|
|
result["interface"][section_name] = members
|
|
if not result["interface"]:
|
|
print("Advertencia: Interface sin secciones iface:Section válidas.")
|
|
else:
|
|
print(
|
|
"Advertencia: No se encontró <Interface> DENTRO de <AttributeList>."
|
|
)
|
|
if not result["interface"]:
|
|
print("Advertencia: No se pudo extraer información de la interfaz.")
|
|
|
|
print("Paso 5: Extrayendo y PROCESANDO lógica de redes (CompileUnits)...")
|
|
networks_processed_count = 0
|
|
object_list_node = fc_block.xpath("./*[local-name()='ObjectList']")
|
|
if object_list_node:
|
|
compile_units = object_list_node[0].xpath(
|
|
"./*[local-name()='SW.Blocks.CompileUnit']"
|
|
)
|
|
print(
|
|
f"Paso 5: Se encontraron {len(compile_units)} elementos SW.Blocks.CompileUnit."
|
|
)
|
|
for network_elem in compile_units:
|
|
networks_processed_count += 1
|
|
# print(f"DEBUG: Procesando red #{networks_processed_count} (ID={network_elem.get('ID')})...")
|
|
parsed_network = parse_network(
|
|
network_elem
|
|
) # Llamada a la función modificada
|
|
if parsed_network and parsed_network.get("error") is None:
|
|
result["networks"].append(parsed_network)
|
|
elif parsed_network:
|
|
print(
|
|
f"Error: Falló parseo red ID={parsed_network.get('id')}: {parsed_network.get('error')}"
|
|
)
|
|
result["networks"].append(parsed_network)
|
|
else:
|
|
print(
|
|
f"Error: parse_network devolvió None para CompileUnit (ID={network_elem.get('ID')})."
|
|
)
|
|
if networks_processed_count == 0:
|
|
print("Advertencia: ObjectList sin SW.Blocks.CompileUnit.")
|
|
else:
|
|
print("Advertencia: No se encontró ObjectList.")
|
|
|
|
print("Paso 6: Escribiendo el resultado en el archivo JSON...")
|
|
if not result["interface"]:
|
|
print("ADVERTENCIA FINAL: 'interface' está vacía.")
|
|
if not result["networks"]:
|
|
print("ADVERTENCIA FINAL: 'networks' está vacía.")
|
|
# else: # Chequeo ENO logic
|
|
# eno_logic_found = any(instr.get('eno_logic') for net in result.get('networks', []) if net.get('error') is None for instr in net.get('logic', []))
|
|
# if eno_logic_found: print("INFO FINAL: Lógica ENO interesante detectada.")
|
|
# else: print("INFO FINAL: No se detectó lógica ENO interesante.")
|
|
|
|
try:
|
|
with open(json_filepath, "w", encoding="utf-8") as f:
|
|
json.dump(result, f, indent=4, ensure_ascii=False)
|
|
print(f"Paso 6: Escritura completada.")
|
|
print(f"Conversión finalizada. JSON guardado en: '{json_filepath}'")
|
|
except IOError as e:
|
|
print(
|
|
f"Error Crítico: No se pudo escribir JSON en '{json_filepath}'. Error: {e}"
|
|
)
|
|
except TypeError as e:
|
|
print(f"Error Crítico: Problema al serializar a JSON. Error: {e}")
|
|
|
|
except etree.XMLSyntaxError as e:
|
|
print(f"Error Crítico: Sintaxis XML en '{xml_filepath}'. Detalles: {e}")
|
|
except Exception as e:
|
|
print(f"Error Crítico: Error inesperado: {e}")
|
|
print("--- Traceback ---")
|
|
traceback.print_exc()
|
|
print("--- Fin Traceback ---")
|
|
|
|
|
|
# --- Punto de Entrada Principal ---
|
|
if __name__ == "__main__":
|
|
xml_file = "BlenderCtrl__Main.xml" # CAMBIAR AL NUEVO ARCHIVO XML
|
|
json_file = xml_file.replace(
|
|
".xml", "_simplified.json"
|
|
) # Nombre de salida dinámico
|
|
convert_xml_to_json(xml_file, json_file)
|