get_input_positions im INterface verändert, dass eine allgemeine Funktion darunter abgeleitet werden konnte. So können nun auch alle Symbole/inserts in der Hauptmethode aufgerufen werden
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+35
-15
@@ -193,7 +193,7 @@ class CompareBuffer:
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l.append(b)
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l.append(b)
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return l
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return l
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def extract_input_positions(insert_iterable) -> tuple[dict, dict, dict, dict]:
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def extract_input_positions(all_inserts, all_positions) -> tuple[dict, dict, dict, dict]:
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"""
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"""
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Extracts and organizes input positions from an iterable of inserts.
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Extracts and organizes input positions from an iterable of inserts.
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@@ -219,7 +219,6 @@ def extract_input_positions(insert_iterable) -> tuple[dict, dict, dict, dict]:
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all_unknowns = list()
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all_unknowns = list()
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wp = CompareBuffer()
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wp = CompareBuffer()
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all_inserts, all_positions = attribs_to_dicts(insert_iterable)
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for insert, pos in zip(all_inserts, all_positions):
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for insert, pos in zip(all_inserts, all_positions):
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ld, id_, typ = get_attributes_of_insert(insert, pos)
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ld, id_, typ = get_attributes_of_insert(insert, pos)
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@@ -366,12 +365,6 @@ def attribs_to_dicts(insert_iterable) -> tuple[list, list]:
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all_positions.append(positions)
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all_positions.append(positions)
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return all_inserts, all_positions
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return all_inserts, all_positions
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def get_input_positions(msp) -> tuple[dict, dict, dict, dict]:
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return extract_input_positions(msp.query('INSERT'))
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def get_input_positions_iter(dxf_path) -> tuple[dict, dict, dict, dict]:
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return extract_input_positions(iterdxf.modelspace(dxf_path))
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def create_mappings(positions: dict) -> tuple[dict, dict]:
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def create_mappings(positions: dict) -> tuple[dict, dict]:
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unterverteiler_pfad = ""
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unterverteiler_pfad = ""
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dnamen = dict()
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dnamen = dict()
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@@ -414,6 +407,35 @@ def create_mappings(positions: dict) -> tuple[dict, dict]:
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return (uv2sensor, warnings)
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return (uv2sensor, warnings)
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def get_subdistributor_positions_of_symbol(d_insert: dict, d_pos: dict) -> tuple[dict, str, str]:
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"""
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Diese Funktion schaut nach den aktuell definierten Attributen in den Blöcken
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die ID aus dem Eintrag unter "NAME"
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"""
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id_ = ""
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ld = d_insert
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typ = 'unknown'
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# die neueren Bläcke heissen nicht IO, sondern haben einen Namen
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if "NAME" in d_insert:
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typ = get_type_of_name_cfg(d_insert["NAME"])
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id_ = d_insert["NAME"]
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pos = d_pos["NAME"]
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ld["pos"] = (pos[0], pos[1])
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if "REALE_POSITION" in d_insert and d_insert["REALE_POSITION"] == 'x':
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pos = d_pos["REALE_POSITION"]
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# Hoehe und Breite von "x" addieren, um Mittelpunkt zu finden
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breite_marker = config.getfloat("GetPos-Geom-Sensor", "Breite")
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hoehe_marker = config.getfloat("GetPos-Geom-Sensor", "Hoehe")
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midx = pos[0] + breite_marker * 0.5
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midy = pos[1] + hoehe_marker * 0.5
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ld["pos"] = (round(midx, 1), round(midy, 1))
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return ld, id_, typ
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def get_subdistributor_positions(msp, dist2sensors: dict) -> dict:
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def get_subdistributor_positions(msp, dist2sensors: dict) -> dict:
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"""Hole alle Positionen der Unterverteiler !!UV-Positionen bereits 'Mitte-Mitte'!!"""
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"""Hole alle Positionen der Unterverteiler !!UV-Positionen bereits 'Mitte-Mitte'!!"""
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ret = dict()
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ret = dict()
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@@ -691,12 +713,6 @@ def check_environment_var(env_str: str) -> Path:
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print(f"Umgebungsvariable {env_str} ist nicht gesetzt oder leer.")
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print(f"Umgebungsvariable {env_str} ist nicht gesetzt oder leer.")
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exit()
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exit()
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def get_input_positions_combined(source: str, use_iter: bool) -> tuple[dict, dict, dict, dict]:
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if use_iter:
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return get_input_positions_iter(source)
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else:
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return get_input_positions(source)
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if __name__ == '__main__':
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if __name__ == '__main__':
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parser = argparse.ArgumentParser(description='fetches the x/y positions from a dxf file', prog='getpositions')
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parser = argparse.ArgumentParser(description='fetches the x/y positions from a dxf file', prog='getpositions')
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parser.add_argument('-f', '--filename', action='store', required=True, default="ST_6300_Steuerungstestlayout1_neueBloecke.dwg", help='which file should be fetched', metavar='myfile.dxf')
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parser.add_argument('-f', '--filename', action='store', required=True, default="ST_6300_Steuerungstestlayout1_neueBloecke.dwg", help='which file should be fetched', metavar='myfile.dxf')
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@@ -762,7 +778,11 @@ if __name__ == '__main__':
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if args.sensors:
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if args.sensors:
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# Sensoren auslesen
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# Sensoren auslesen
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res_sens, res_schaltschrank_elemente, res_double, missing_attribs = get_input_positions_combined(dxf_path if use_iter else msp, use_iter)
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if use_iter:
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all_inserts, all_positions = attribs_to_dicts(iterdxf.modelspace(dxf_path))
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else:
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all_inserts, all_positions = attribs_to_dicts(msp)
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res_sens, res_schaltschrank_elemente, res_double, missing_attribs = extract_input_positions(all_inserts, all_positions)
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if args.errors and len(res_double) > 0:
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if args.errors and len(res_double) > 0:
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print("Duplicate blocks found. Writing errors-file.")
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print("Duplicate blocks found. Writing errors-file.")
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