migration/transform_policies.py folds every insurance Access table into one `policies` table (policy_types discriminator) plus child tables, via a per-table declarative mapping that absorbs the column-name variance (num_id/numer_id, no_poliza/poliza, p_neta/prima_neta/prima1). Any source column not explicitly modeled — the type-specific coverage amounts — is preserved verbatim in coveragesJson, so consolidation loses nothing. Unpivots the hardcoded repeated slots: 4 payment installments (c_1er_pago + pago_subsec x3), up to 3 vehicles (auto tables + MCA2), up to 3 named insured drivers (MCA2 + LICENCIAS). Also loads BENEF -> policy_beneficiaries (by policy number), DATOS -> claims, AJUSTADORES(+ATLAS) -> adjusters, and builds policy_types + insurance_providers lookups. Loaded/validated (dev): 2378 policies (AUTO 1307 / MULT 760 / LICENCIAS 306 / M_EMPR 5; 10 skipped for unresolved customer FK, 0 orphans), 4678 installments, 1110 vehicles, 513 drivers, 126 beneficiaries, 1 claim, 15 providers, 17 adjusters — all child FKs verified 0 orphans. Spot-checked a customer carrying both a utility property and MULT policies (the unified cross-line view). run_all.py: add policies to the ordered pipeline. Customer FK resolves through insurance customer_legacy_refs, so this runs after customers. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
392 lines
20 KiB
Python
392 lines
20 KiB
Python
"""
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Migration plan step 3 (policies): consolidate every insurance line into one
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`policies` table + child tables, resolving each policy's customer FK through
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the insurance customer_legacy_refs (run AFTER transform_customers.py).
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One Access table per line of business becomes rows in `policies` tagged by a
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policy_types discriminator, plus:
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- policy_payment_installments : the 4 hardcoded payment slots, unpivoted
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- vehicles : the up-to-3 hardcoded vehicle slots
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- insured_drivers : the up-to-3 hardcoded named-insured slots
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- policy_beneficiaries : from BENEF (by policy number)
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- claims : from DATOS (siniestros)
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- adjusters : from AJUSTADORES / AJUSTADORESATLAS
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Design (validated against staged data):
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- Customer link column varies (num_id / numer_id); ~10 policy customer ids
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across all tables don't resolve to a loaded insurance customer -> those
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policies are skipped and counted (required FK).
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- Payment slots: c_1er_pago is the first amount, pago_subsec the recurring
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amount for slots 2-4; efectivo is a cash flag, no_cheque the check ref.
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- Any source column not explicitly modeled (coverage amounts: edificio,
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contenidos, robo, cristales, ...) is preserved verbatim in coveragesJson,
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so nothing is lost in consolidation.
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- docs_1/docs_2/foto1 (LONGBINARY) are skipped — documents are step 4.
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Run: ./.venv/bin/python transform_policies.py --env dev
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"""
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from __future__ import annotations
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import json
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import uuid
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from datetime import datetime, timezone
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from decimal import Decimal, InvalidOperation
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from pathlib import Path
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import pandas as pd
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from dbenv import connect, env_arg
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STG = Path(__file__).parent / "output" / "stg_seguros"
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LEGACY_DB = "SEGUROS 16_be"
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NULL = "∅"
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NOW = datetime.now(timezone.utc).replace(tzinfo=None)
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_ADDR = {"calle_y_no", "col", "edo", "tel", "cp", "_row_num", "nombre_aseg", "observaciones"}
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def s(v):
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if v is None or pd.isna(v):
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return None
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v = str(v).strip()
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return None if v in ("", NULL, "0000-00-00") else v
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def norm_id(v):
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v = s(v)
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if v is None:
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return None
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if v.endswith(".0"):
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v = v[:-2]
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return v
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def dec(v):
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v = s(v)
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if v is None:
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return None
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try:
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return Decimal(v.replace(",", ""))
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except (InvalidOperation, ValueError):
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return None
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def dt(v):
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v = s(v)
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if v is None:
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return None
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d = pd.to_datetime(v, errors="coerce")
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return None if pd.isna(d) else d.to_pydatetime()
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def cur(v):
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v = (s(v) or "").upper()
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if v.startswith("DOL") or v.startswith("USD") or "DOLLAR" in v:
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return "USD"
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if v.startswith("PES") or v.startswith("MXN") or v.startswith("MN"):
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return "MXN"
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return "MXN"
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def truthy(v):
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return (s(v) or "0").lower() in {"1", "-1", "true", "si", "sí", "yes", "x"}
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# --- per-table config ------------------------------------------------------- #
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# fields: policy column -> source column. installments: list of slot dicts.
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# vehicles: 'trip_underscore' | 'single' | 'mca2' | None. drivers: 'mca2' |
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# 'licencias' | None.
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HOME_INST = [
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dict(seq=1, amt="c_1er_pago", cu="moned", d="fecha_pago", ck="no_cheque", cash="efectivo"),
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dict(seq=2, amt="pago_subsec", cu="moned_2", d="fecha_pago_2", ck="no_cheque_2", cash="efectivo_2"),
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dict(seq=3, amt="pago_subsec", cu="moned_3", d="fecha_pago_3", ck="no_cheque_3", cash="efectivo_3"),
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dict(seq=4, amt="pago_subsec", cu="moned_4", d="fecha_pago_4", ck="no_cheque_4", cash="efectivo_4"),
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]
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HOME_FIELDS = dict(polno="no_poliza", agent="agent", comp="comp", desde="desde", hasta="hasta",
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forma="forma_pago", curcol="moned", pneta="p_neta", dpol="d_pol", com="com",
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liquidada="liquidada", numliq="num_liquidacion", fliq="f_liquida1", renov="renovacion")
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AUTO_SINGLE_INST = [dict(seq=1, amt="total", cu="moneda", d="fecha_pago", ck="no_cheque", cash="efectivo")]
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CONFIGS = {
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"incendio": dict(ptype="INCENDIO", idcol="num_id", fields={**HOME_FIELDS, "curcol": "moneda"},
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inst=HOME_INST, veh=None, drv=None),
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"mult": dict(ptype="MULT", idcol="num_id", fields=HOME_FIELDS, inst=HOME_INST, veh=None, drv=None),
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"m_empr": dict(ptype="M_EMPR", idcol="num_id", fields=HOME_FIELDS, inst=HOME_INST, veh=None, drv=None),
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"tabla_autos": dict(ptype="AUTO", idcol="numer_id",
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fields=dict(polno="no_poliza", agent="agent", comp="comp", desde="desde",
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hasta="hasta", forma="forma_pago", curcol="moneda", pneta="prima_neta",
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dpol="d_poliza", total="total", liquidada="liquidada",
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numliq="num_liquidacion", fliq="f_liquida1", renov="renovacion"),
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inst=AUTO_SINGLE_INST, veh="trip_underscore", drv=None),
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"tabla_autos_ampl": dict(ptype="AUTO", idcol="numer_id",
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fields=dict(polno="no_poliza", agent="agent", comp="comp", desde="desde",
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hasta="hasta", forma="forma_pago", curcol="moneda", pneta="prima_neta",
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dpol="d_poliza", total="total", liquidada="liquidada",
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numliq="num_liquidacion", fliq="f_liquida1", renov="renovacion"),
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inst=AUTO_SINGLE_INST, veh="single", drv=None),
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"tabla_autos_limit": dict(ptype="AUTO", idcol="numer_id",
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fields=dict(polno="no_poliza", agent="agent", comp="comp", desde="desde",
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hasta="hasta", forma="forma_pago", curcol="moneda", pneta="prima_neta",
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dpol="d_poliza", total="total", liquidada="liquidada", renov="renovacion"),
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inst=AUTO_SINGLE_INST, veh="single", drv=None),
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"tabla_autos_ampl_r": dict(ptype="AUTO", idcol="numer_id",
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fields=dict(polno="no_poliza", agent="agent", comp="comp", desde="desde",
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hasta="hasta", forma="forma_pago", curcol="moneda", pneta="prima_neta",
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dpol="d_poliza", com="com", liquidada="liquidada",
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numliq="num_liquidacion", fliq="f_liquida1", renov="renovacion"),
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inst=[dict(seq=1, amt="c_1er_pago", cu="moneda", d="fecha_pago", ck="no_cheque", cash="efectivo"),
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dict(seq=2, amt="pago_subsec", cu="moned_2", d="fecha_pago_2", ck="no_cheque_2", cash="efectivo_2")],
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veh="single", drv=None),
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"tabla_autos_rc_r": dict(ptype="AUTO", idcol="numer_id",
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fields=dict(polno="no_poliza", agent="agent", comp="comp", desde="desde",
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hasta="hasta", forma="forma_pago", curcol="moneda", pneta="prima_neta",
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dpol="d_poliza", com="com", liquidada="liquidada",
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numliq="num_liquidacion", fliq="f_liquida1", renov="renovacion"),
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inst=[dict(seq=1, amt="c_1er_pago", cu="moneda", d="fecha_pago", ck="no_cheque", cash="efectivo"),
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dict(seq=2, amt="pago_subsec", cu="moned_2", d="fecha_pago_2", ck="no_cheque_2", cash="efectivo_2")],
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veh="single", drv=None),
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"mca2": dict(ptype="AUTO", idcol="numer_id",
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fields=dict(polno="poliza", agent="agent", comp="comp", desde="desde", hasta="hasta",
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forma="forma_pago", curcol="moned", pneta="prima1", dpol="d_poliza1",
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liquidada="liquidada", numliq="nuliquida", fliq="f_liquida1", renov="renovacion"),
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inst=[dict(seq=1, amt="c_1er_pago", cu="moned", d="fecha_pago", ck="no_cheque", cash="efectivo")],
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veh="mca2", drv="mca2"),
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"licencias": dict(ptype="LICENCIAS", idcol="numer_id",
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fields=dict(polno="no_poliza", agent="agent", comp="comp", desde="desde", hasta="hasta",
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forma="forma_pago", curcol="moneda", pneta="prima_neta", dpol="d_poliza",
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total="total", liquidada="liquidada", numliq="num_liquidacion",
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fliq="f_liquida1", renov="renovacion"),
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inst=[dict(seq=1, amt="total", cu="moneda", d="fecha_pago", ck="no_cheque", cash="efectivo")],
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veh=None, drv="licencias"),
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}
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def load(name):
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df = pd.read_parquet(STG / f"{name}.parquet").sort_values("_row_num").reset_index(drop=True)
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df = df[[c for c in df.columns if c != "_legacy_source_table"]].copy()
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for c in df.columns:
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if c != "_row_num":
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df[c] = df[c].astype("string").str.strip()
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return df
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def main():
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env = env_arg()
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conn = connect(env)
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print(f"[policies] target env: {env}")
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c = conn.cursor()
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c.execute("SELECT legacyId, customerId FROM customer_legacy_refs WHERE sourceSystem='insurance'")
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cust = {r[0]: r[1] for r in c.fetchall()}
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policies, insts, vehicles, drivers = [], [], [], []
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polno_to_id = {} # policy number -> a policyId (for BENEF/DATOS linking)
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providers, ptypes = set(), set()
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skipped = 0
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for table, cfg in CONFIGS.items():
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df = load(table)
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F = cfg["fields"]
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ptypes.add(cfg["ptype"])
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consumed = {cfg["idcol"], *F.values()}
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for slot in cfg["inst"]:
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consumed |= {slot["amt"], slot["cu"], slot["d"], slot["ck"], slot["cash"]}
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for _, row in df.iterrows():
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cid = cust.get(norm_id(row[cfg["idcol"]]))
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if not cid:
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skipped += 1
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continue
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pid = str(uuid.uuid4())
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comp = s(row.get(F.get("comp", ""), None)) if F.get("comp") else None
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if comp:
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providers.add(comp)
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polno = s(row.get(F["polno"])) if F.get("polno") else None
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if polno:
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polno_to_id[polno] = pid
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# coverages = everything not explicitly consumed / address / doc-ish
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cov = {}
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for col in df.columns:
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if col in consumed or col in _ADDR:
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continue
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if col.startswith(("marca", "modelo", "carroceria", "motor", "placa", "clase",
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"auto_id", "a_o", "edo", "name", "birth", "edad", "lic",
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"ocup", "sex", "nombre_aseg_", "docs_", "foto")):
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continue
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val = s(row[col])
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if val is not None:
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cov[col] = val
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policies.append((
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pid, polno or "(SIN POLIZA)", cid, cfg["ptype"], comp,
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s(row.get(F.get("agent", ""))) if F.get("agent") else None,
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dt(row.get(F.get("desde", ""))) if F.get("desde") else None,
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dt(row.get(F.get("desde", ""))) if F.get("desde") else None,
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dt(row.get(F.get("hasta", ""))) if F.get("hasta") else None,
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dec(row.get(F.get("pneta", ""))) if F.get("pneta") else None,
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dec(row.get(F.get("dpol", ""))) if F.get("dpol") else None,
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dec(row.get(F.get("com", ""))) if F.get("com") else None,
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dec(row.get(F.get("total", ""))) if F.get("total") else None,
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cur(row.get(F.get("curcol", ""))) if F.get("curcol") else "MXN",
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s(row.get("observaciones")),
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json.dumps(cov, ensure_ascii=False) if cov else None,
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1 if truthy(row.get(F.get("liquidada", ""))) else 0,
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s(row.get(F.get("numliq", ""))) if F.get("numliq") else None,
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dt(row.get(F.get("fliq", ""))) if F.get("fliq") else None,
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LEGACY_DB, table, str(int(row["_row_num"])), NOW,
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))
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# installments
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for slot in cfg["inst"]:
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amt = dec(row.get(slot["amt"]))
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pdate = dt(row.get(slot["d"]))
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if amt is None and pdate is None:
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continue
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insts.append((str(uuid.uuid4()), pid, slot["seq"], amt,
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cur(row.get(slot["cu"])), pdate, s(row.get(slot["ck"])),
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1 if truthy(row.get(slot["cash"])) else 0))
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# vehicles
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def add_vehicle(make, model, body, engine, plate, year=None, state=None):
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if not any([make, model, plate, engine]):
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return
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vehicles.append((str(uuid.uuid4()), cid, pid, make, model, year, body,
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engine, plate, state, table, str(int(row["_row_num"]))))
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if cfg["veh"] == "trip_underscore":
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for i in ("1", "2", "3"):
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add_vehicle(s(row.get(f"marca_{i}")), s(row.get(f"modelo_{i}")),
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s(row.get(f"carroceria_{i}")), s(row.get(f"motor_{i}")),
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s(row.get(f"placa_{i}")))
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elif cfg["veh"] == "single":
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add_vehicle(s(row.get("marca")), s(row.get("modelo")), s(row.get("carroceria")),
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s(row.get("motor")), s(row.get("placa")))
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elif cfg["veh"] == "mca2":
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for i in ("1", "2", "3"):
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add_vehicle(s(row.get(f"marca{i}")), s(row.get(f"modelo{i}")),
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s(row.get(f"clase{i}")), s(row.get(f"auto_id{i}")),
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s(row.get(f"placa{i}")), year=s(row.get(f"a_o{i}")),
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state=s(row.get(f"edo{i}")))
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# drivers
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def add_driver(name, birth=None, sex=None, occ=None, lic=None, lstate=None):
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if not name and not lic:
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return
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drivers.append((str(uuid.uuid4()), pid, name, dt(birth), sex, occ, lic, lstate))
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if cfg["drv"] == "mca2":
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for i in ("1", "2", "3"):
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add_driver(s(row.get(f"name{i}")), s(row.get(f"birth{i}")),
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s(row.get(f"sex{i}")), s(row.get(f"ocup{i}")),
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s(row.get(f"lic{i}")), s(row.get(f"licedo{i}")))
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elif cfg["drv"] == "licencias":
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for i in ("1", "2", "3"):
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add_driver(s(row.get(f"nombre_aseg_{i}")), lic=s(row.get(f"lic_{i}")),
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lstate=s(row.get(f"edo_{i}")))
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# beneficiaries (BENEF -> by policy number)
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benef = load("benef")
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benes = []
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for _, r in benef.iterrows():
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pid = polno_to_id.get(s(r["bpoliza"]))
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if pid:
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benes.append((str(uuid.uuid4()), pid, s(r["bnombre"]), s(r["bdireccion"]),
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s(r["btel"]), s(r["bemail"])))
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# adjusters (AJUSTADORES + ATLAS)
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adj_rows, adj_by_name = [], {}
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for t in ("ajustadores", "ajustadoresatlas"):
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for _, r in load(t).iterrows():
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aid = str(uuid.uuid4())
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name = s(r["nombre"])
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adj_rows.append((aid, s(r["comp"]), s(r["ciudad"]), name, s(r["tel"]), s(r["beeper"])))
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if name:
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adj_by_name.setdefault(name.upper(), aid)
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# claims (DATOS)
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claims = []
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for _, r in load("datos").iterrows():
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pid = polno_to_id.get(s(r["poliza"]))
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if not pid:
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continue
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adjid = adj_by_name.get((s(r["ajustador"]) or "").upper())
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claims.append((str(uuid.uuid4()), pid, s(r["tipo"]), dt(r["fecha_siniestro"]),
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dt(r["fecha_reportado"]), s(r["descripcion"]), adjid,
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dec(r["cantidad_reclamada"]), dec(r["cantidad_pactada"]),
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dt(r["fecha_cheque"]), s(r["num_cheque"]),
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1 if truthy(r["concluido"]) else 0, s(r["resolucion"])))
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# --- write (children first on truncate) ---
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c.execute("SET FOREIGN_KEY_CHECKS=0")
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for t in ("policy_payment_installments", "insured_drivers", "policy_beneficiaries",
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"claims", "vehicles", "policy_documents", "policies", "policy_types",
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"insurance_providers", "adjusters"):
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c.execute(f"TRUNCATE TABLE {t}")
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c.execute("SET FOREIGN_KEY_CHECKS=1")
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ptype_ids = {n: str(uuid.uuid4()) for n in ptypes}
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c.executemany("INSERT INTO policy_types (id,name) VALUES (%s,%s)",
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[(i, n) for n, i in ptype_ids.items()])
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prov_ids = {n: str(uuid.uuid4()) for n in providers}
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c.executemany("INSERT INTO insurance_providers (id,name) VALUES (%s,%s)",
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[(i, n) for n, i in prov_ids.items()])
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c.executemany("INSERT INTO adjusters (id,company,city,name,phone,beeper) VALUES (%s,%s,%s,%s,%s,%s)", adj_rows)
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# patch policyType/provider FKs into policy tuples
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pol_cols = ("id,policyNumber,customerId,policyTypeId,insuranceProviderId,agentName,policyDate,"
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"policyFrom,policyTo,netPremium,policyFee,commission,total,currency,observations,"
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"coveragesJson,liquidated,liquidationNumber,liquidationDate,legacySourceDb,"
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"legacySourceTable,legacyId,updatedAt")
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fixed = []
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for p in policies:
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p = list(p)
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p[3] = ptype_ids.get(p[3]) # ptype name -> policyTypeId
|
|
p[4] = prov_ids.get(p[4]) # provider name -> insuranceProviderId
|
|
fixed.append(tuple(p))
|
|
ph = ",".join(["%s"] * 23)
|
|
c.executemany(f"INSERT INTO policies ({pol_cols}) VALUES ({ph})", fixed)
|
|
|
|
c.executemany("INSERT INTO policy_payment_installments "
|
|
"(id,policyId,sequence,amount,currency,paidDate,checkNumber,isCash) "
|
|
"VALUES (%s,%s,%s,%s,%s,%s,%s,%s)", insts)
|
|
c.executemany("INSERT INTO vehicles (id,customerId,policyId,make,model,modelYear,bodyType,"
|
|
"engineNumber,licensePlate,stateCode,legacySourceTable,legacyId) "
|
|
"VALUES (%s,%s,%s,%s,%s,%s,%s,%s,%s,%s,%s,%s)", vehicles)
|
|
c.executemany("INSERT INTO insured_drivers (id,policyId,fullName,birthDate,sex,occupation,"
|
|
"licenseNumber,licenseState) VALUES (%s,%s,%s,%s,%s,%s,%s,%s)", drivers)
|
|
c.executemany("INSERT INTO policy_beneficiaries (id,policyId,name,address,phone,email) "
|
|
"VALUES (%s,%s,%s,%s,%s,%s)", benes)
|
|
c.executemany("INSERT INTO claims (id,policyId,claimType,incidentDate,reportedDate,description,"
|
|
"adjusterId,claimedAmount,settledAmount,settlementDate,checkNumber,resolved,"
|
|
"resolutionNotes) VALUES (%s,%s,%s,%s,%s,%s,%s,%s,%s,%s,%s,%s,%s)", claims)
|
|
conn.commit()
|
|
|
|
# --- report ---
|
|
def count(t):
|
|
c.execute(f"SELECT COUNT(*) FROM {t}"); return c.fetchone()[0]
|
|
c.execute("SELECT pt.name, COUNT(*) FROM policies p JOIN policy_types pt ON p.policyTypeId=pt.id "
|
|
"GROUP BY pt.name ORDER BY 2 DESC")
|
|
by_type = c.fetchall()
|
|
c.execute("SELECT COUNT(*) FROM policies p LEFT JOIN customers c ON p.customerId=c.id WHERE c.id IS NULL")
|
|
orphans = c.fetchone()[0]
|
|
print("=== Policies load complete ===")
|
|
print(f" skipped (unresolved customer): {skipped}")
|
|
print(f" -> policies : {count('policies')}")
|
|
for n, k in by_type:
|
|
print(f" {n:12} {k}")
|
|
print(f" -> payment_installments : {count('policy_payment_installments')}")
|
|
print(f" -> vehicles : {count('vehicles')}")
|
|
print(f" -> insured_drivers : {count('insured_drivers')}")
|
|
print(f" -> policy_beneficiaries : {count('policy_beneficiaries')}")
|
|
print(f" -> claims : {count('claims')}")
|
|
print(f" -> policy_types : {count('policy_types')}")
|
|
print(f" -> insurance_providers : {count('insurance_providers')}")
|
|
print(f" -> adjusters : {count('adjusters')}")
|
|
print(f" orphan policies (bad customer FK): {orphans}")
|
|
assert orphans == 0, "policy customer FK invariant failed"
|
|
print(" validation: OK")
|
|
conn.close()
|
|
|
|
|
|
if __name__ == "__main__":
|
|
main()
|