540 lines
27 KiB
Python
540 lines
27 KiB
Python
from typing import Any
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from fastapi import UploadFile
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from sqlalchemy.ext.asyncio import AsyncSession
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from app.core.base_schema import AuthSchema, PageResultSchema, ImportResultSchema
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from app.core.exceptions import CustomException
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from app.core.logger import logger
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from app.utils.common_util import search_to_dict
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from app.utils.excel_util import ExcelUtil
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from app.utils.dict_util import DictLabelResolver, dict_value_to_label
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from app.utils.number_gen import NumberGenService
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from .crud import BreedingTreeCRUD
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from .schema import (
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TreeCreateSchema,
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TreeOutSchema,
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TreeQueryParam,
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TreeUpdateSchema,
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)
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from app.api.v1.module_bre.cross_combination.crud import BreedingCrossCombinationCRUD
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from app.api.v1.module_bre.germplasm.crud import BreedingGermplasmCRUD
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from app.api.v1.module_bre.germplasm.model import BreedingGermplasmModel
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from app.api.v1.module_bre.clone.crud import BreedingCloneCRUD
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from app.api.v1.module_bre.rootstock.crud import BreedingRootstockCRUD
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from app.api.v1.module_bre.trial_study.crud import BreedingTrialStudyCRUD
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from app.api.v1.module_bre.site.crud import BreedingPlotCRUD
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from app.api.v1.module_bre.personnel.crud import BreedingPersonnelCRUD
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from app.api.v1.module_bre.planting.crud import BreedingPlantingCRUD
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from app.api.v1.module_bre.trial_study_entry.crud import BreedingTrialStudyEntryCRUD
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from app.core.base_crud import assert_dict_values, assert_no_children, assert_parents_exist, assert_status_forward
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from app.api.v1.module_bre.site.model import BreedingPlotModel
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from app.api.v1.module_bre.cross_combination.model import CrossCombinationModel
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from app.api.v1.module_bre.clone.model import CloneModel
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from app.api.v1.module_bre.rootstock.model import RootstockModel
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from app.api.v1.module_bre.trial_study.model import TrialStudyModel
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from app.api.v1.module_bre.personnel.model import PersonnelModel
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from app.api.v1.module_bre.planting.model import PlantingModel
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from app.api.v1.module_bre.selection_result.model import SelectionResultModel
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from app.api.v1.module_bre.trait_observation.model import TraitObservationModel
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from app.api.v1.module_bre.tree_evaluation.model import TreeEvaluationModel
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from app.api.v1.module_bre.tree_photo.model import TreePhotoModel
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def _is_blank(v: Any) -> bool:
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return v is None or (isinstance(v, str) and v.strip() == "")
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def _none_if_blank(v: Any) -> Any:
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if _is_blank(v):
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return None
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return str(v).strip() if isinstance(v, str) else v
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def _to_float(v: Any) -> float | None:
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if _is_blank(v):
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return None
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try:
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return float(v)
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except (TypeError, ValueError):
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return None
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def _to_int(v: Any) -> int | None:
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if _is_blank(v):
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return None
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try:
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return int(float(v))
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except (TypeError, ValueError):
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return None
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class TreeService:
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"""育种单株 模块服务层"""
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def __init__(self, auth: AuthSchema, db: AsyncSession) -> None:
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self.auth = auth
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self.db = db
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async def _resolve_parents(
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self, combination_id: int | None, dam_id: int | None, sire_id: int | None
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) -> tuple[int | None, int | None, str | None]:
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"""母本/父本:未显式给出时从组合取 female/male 亲本;显式给出时校验种质存在且方向可用。
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显式亲本与组合父母本不一致时返回警示文案(以显式为准,不阻断)。
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"""
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combo_dam = combo_sire = None
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if combination_id is not None:
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cc = await BreedingCrossCombinationCRUD(self.auth, self.db).get(id=combination_id)
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if cc:
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combo_dam = cc.female_parent_id
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combo_sire = cc.male_parent_id
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dam = dam_id if dam_id is not None else combo_dam
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sire = sire_id if sire_id is not None else combo_sire
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mismatches = []
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if dam_id is not None and combo_dam is not None and dam_id != combo_dam:
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mismatches.append("显式母本与组合母本不一致")
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if sire_id is not None and combo_sire is not None and sire_id != combo_sire:
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mismatches.append("显式父本与组合父本不一致")
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warning = (";".join(mismatches) + "(以显式为准)") if mismatches else None
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explicit = [
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(dam_id, "can_be_female", "母本") if dam_id is not None else None,
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(sire_id, "can_be_male", "父本") if sire_id is not None else None,
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]
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explicit = [e for e in explicit if e]
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if explicit:
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ids = {e[0] for e in explicit}
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germs = await BreedingGermplasmCRUD(self.auth, self.db).get_list(search={"id": ("in", list(ids))})
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germ_map = {g.id: g for g in germs}
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for gid, flag, role in explicit:
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g = germ_map.get(gid)
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if not g:
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raise CustomException(msg=f"种质不存在(id={gid}),无法作为{role}")
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if not getattr(g, flag):
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raise CustomException(msg=f"种质「{g.cultivar_name}」不可作{role}")
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return dam, sire, warning
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async def _attach_fk_labels(self, items: list[TreeOutSchema]) -> None:
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if not items:
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return
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crud = BreedingTreeCRUD(self.auth, self.db)
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combination_id_ids = {getattr(it, "combination_id") for it in items if getattr(it, "combination_id")}
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if combination_id_ids:
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refs = await BreedingCrossCombinationCRUD(self.auth, self.db).get_list(search={"id": ("in", list(combination_id_ids))})
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ref_map = {r.id: getattr(r, "combination_code") for r in refs}
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for it in items:
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it.combination_name = ref_map.get(getattr(it, "combination_id"))
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germ_ids = {getattr(it, "dam_id") for it in items if getattr(it, "dam_id")}
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germ_ids |= {getattr(it, "sire_id") for it in items if getattr(it, "sire_id")}
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if germ_ids:
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germs = await BreedingGermplasmCRUD(self.auth, self.db).get_list(search={"id": ("in", list(germ_ids))})
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germ_map = {r.id: getattr(r, "cultivar_name") for r in germs}
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for it in items:
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it.dam_name = germ_map.get(getattr(it, "dam_id"))
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it.sire_name = germ_map.get(getattr(it, "sire_id"))
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plot_id_ids = {getattr(it, "plot_id") for it in items if getattr(it, "plot_id")}
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if plot_id_ids:
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refs = await BreedingPlotCRUD(self.auth, self.db).get_list(search={"id": ("in", list(plot_id_ids))})
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ref_map = {r.id: getattr(r, "plot_code") for r in refs}
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for it in items:
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it.plot_name = ref_map.get(getattr(it, "plot_id"))
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bre_personnel_id_ids = {getattr(it, "bre_personnel_id") for it in items if getattr(it, "bre_personnel_id")}
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if bre_personnel_id_ids:
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refs = await BreedingPersonnelCRUD(self.auth, self.db).get_list(search={"id": ("in", list(bre_personnel_id_ids))})
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ref_map = {r.id: getattr(r, "name") for r in refs}
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for it in items:
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it.bre_personnel_name = ref_map.get(getattr(it, "bre_personnel_id"))
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planting_id_ids = {getattr(it, "planting_id") for it in items if getattr(it, "planting_id")}
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if planting_id_ids:
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refs = await BreedingPlantingCRUD(self.auth, self.db).get_list(search={"id": ("in", list(planting_id_ids))})
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ref_map = {r.id: (getattr(r, "planting_date") or f"定植#{r.id}") for r in refs}
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for it in items:
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it.planting_name = ref_map.get(getattr(it, "planting_id"))
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study_ids = {getattr(it, "trial_study_id") for it in items if getattr(it, "trial_study_id")}
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if study_ids:
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refs = await BreedingTrialStudyCRUD(self.auth, self.db).get_list(search={"id": ("in", list(study_ids))})
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ref_map = {r.id: getattr(r, "study_name") for r in refs}
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for it in items:
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it.study_name = ref_map.get(getattr(it, "trial_study_id"))
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rootstock_ids = {getattr(it, "rootstock_id") for it in items if getattr(it, "rootstock_id")}
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if rootstock_ids:
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refs = await BreedingRootstockCRUD(self.auth, self.db).get_list(search={"id": ("in", list(rootstock_ids))})
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ref_map = {r.id: getattr(r, "rootstock_name") for r in refs}
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for it in items:
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it.rootstock_name = ref_map.get(getattr(it, "rootstock_id"))
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clone_ids = {getattr(it, "clone_id") for it in items if getattr(it, "clone_id")}
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if clone_ids:
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refs = await BreedingCloneCRUD(self.auth, self.db).get_list(search={"id": ("in", list(clone_ids))})
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ref_map = {r.id: getattr(r, "clone_code") for r in refs}
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for it in items:
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it.clone_name = ref_map.get(getattr(it, "clone_id"))
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germ_ids = {getattr(it, "germplasm_id") for it in items if getattr(it, "germplasm_id")}
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if germ_ids:
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germs = await BreedingGermplasmCRUD(self.auth, self.db).get_list(search={"id": ("in", list(germ_ids))})
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germ_map = {r.id: getattr(r, "cultivar_name") for r in germs}
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for it in items:
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it.germplasm_name = germ_map.get(getattr(it, "germplasm_id"))
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entry_ids = {getattr(it, "entry_id") for it in items if getattr(it, "entry_id")}
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if entry_ids:
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entries = await BreedingTrialStudyEntryCRUD(self.auth, self.db).get_list(search={"id": ("in", list(entry_ids))})
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entry_map = {r.id: getattr(r, "entry_number") for r in entries}
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for it in items:
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it.entry_number = entry_map.get(getattr(it, "entry_id"))
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async def detail(self, id: int) -> TreeOutSchema:
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obj = await BreedingTreeCRUD(self.auth, self.db).get(id=id)
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if not obj:
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raise CustomException(msg="该育种单株不存在")
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out = TreeOutSchema.model_validate(obj)
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await self._attach_fk_labels([out])
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return out
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async def get_list(
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self,
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search: TreeQueryParam | None = None,
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order_by: list[dict[str, str]] | None = None,
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) -> list[TreeOutSchema]:
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obj_list = await BreedingTreeCRUD(self.auth, self.db).get_list(
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search=search_to_dict(search), order_by=order_by
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)
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outs = [TreeOutSchema.model_validate(obj) for obj in obj_list]
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await self._attach_fk_labels(outs)
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return outs
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async def page(
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self,
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page_no: int,
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page_size: int,
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search: TreeQueryParam | None = None,
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order_by: list[dict[str, str]] | None = None,
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) -> PageResultSchema[TreeOutSchema]:
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offset = (page_no - 1) * page_size
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result = await BreedingTreeCRUD(self.auth, self.db).page(
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offset=offset,
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limit=page_size,
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order_by=order_by or [{"id": "asc"}],
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search=search_to_dict(search, {}),
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out_schema=TreeOutSchema,
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)
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await self._attach_fk_labels(result.items)
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return result
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async def _gen_tree_no(self, combination_id: int) -> str:
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"""自动生成单株编号:{组合编号}-{两位序号}(如 26001-01),原子取号。"""
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cc = await BreedingCrossCombinationCRUD(self.auth, self.db).get(id=combination_id)
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base = (cc.combination_code or f"C{combination_id}") if cc else f"C{combination_id}"
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async def _seed() -> int | None:
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crud = BreedingTreeCRUD(self.auth, self.db)
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objs = await crud.get_list(search={"combination_id": ("eq", combination_id)})
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max_seq = 0
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for o in objs:
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tail = (o.tree_no or "").rsplit("-", 1)[-1]
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if tail.isdigit():
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max_seq = max(max_seq, int(tail))
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return max_seq + 1
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seq = await NumberGenService(self.db).next_seq(f"tree:{combination_id}", seed_fn=_seed)
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return f"{base}-{seq:02d}"
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async def _derive_from_planting(self, planting_id: int | None, fields: dict[str, Any]) -> None:
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"""单写点派生:试验/区组/参试条目以定植记录为准,覆盖写入单株。"""
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if not planting_id:
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return
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planting = await BreedingPlantingCRUD(self.auth, self.db).get(id=planting_id)
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if not planting:
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return
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for col in ("trial_study_id", "block_no", "entry_id"):
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val = getattr(planting, col, None)
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if val is not None:
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fields[col] = val
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async def create(self, data: TreeCreateSchema) -> TreeOutSchema:
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fields = data.model_dump(exclude_none=True)
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if _is_blank(fields.get("tree_no")):
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fields["tree_no"] = await self._gen_tree_no(fields["combination_id"])
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# 育种阶段自动设置:F 代/回交杂种实生苗 → seedling(童期),亲本/成株由调用方显式给
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if _is_blank(fields.get("stage")):
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gen = str(fields.get("generation") or "").strip().upper()
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if gen in ("F1", "F2", "BC1", "BC2", "BC3"):
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fields["stage"] = "seedling"
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fields["dam_id"], fields["sire_id"], parent_warning = await self._resolve_parents(
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fields.get("combination_id"), fields.get("dam_id"), fields.get("sire_id")
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)
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await self._derive_from_planting(fields.get("planting_id"), fields)
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data = TreeCreateSchema(**fields)
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exist_obj = await BreedingTreeCRUD(self.auth, self.db).get(tree_no=data.tree_no)
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if exist_obj:
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raise CustomException(msg="创建失败,单株编号已存在")
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await assert_parents_exist(
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self.db,
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[
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(CrossCombinationModel, data.combination_id, '杂交组合'),
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(TrialStudyModel, data.trial_study_id, '试验执行'),
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(CloneModel, data.clone_id, '无性系'),
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(RootstockModel, data.rootstock_id, '砧木'),
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(BreedingPlotModel, data.plot_id, '试验地块'),
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(PlantingModel, data.planting_id, '定植'),
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(PersonnelModel, data.bre_personnel_id, '育种人员'),
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],
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)
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await assert_dict_values(
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self.db,
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[
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('row_orientation', data.row_orientation, '行向'),
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('tree_status', data.status, '单株状态'),
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('breeding_stage', data.stage, '育种阶段'),
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('breeding_generation', data.generation, '世代'),
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],
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)
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obj = await BreedingTreeCRUD(self.auth, self.db).create(data=data)
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out = TreeOutSchema.model_validate(obj)
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if parent_warning:
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out.warning = parent_warning
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await self._attach_fk_labels([out])
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return out
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async def update(self, id: int, data: TreeUpdateSchema) -> TreeOutSchema:
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obj = await BreedingTreeCRUD(self.auth, self.db).get(id=id)
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if not obj:
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raise CustomException(msg="更新失败,该育种单株不存在")
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if data.tree_no is not None:
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exist_obj = await BreedingTreeCRUD(self.auth, self.db).get(tree_no=data.tree_no)
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if exist_obj and exist_obj.id != id:
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raise CustomException(msg="更新失败,单株编号重复")
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await assert_parents_exist(
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self.db,
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[
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(CrossCombinationModel, data.combination_id, '杂交组合'),
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(TrialStudyModel, data.trial_study_id, '试验执行'),
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(CloneModel, data.clone_id, '无性系'),
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(RootstockModel, data.rootstock_id, '砧木'),
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(BreedingPlotModel, data.plot_id, '试验地块'),
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(PlantingModel, data.planting_id, '定植'),
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(PersonnelModel, data.bre_personnel_id, '育种人员'),
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],
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)
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await assert_dict_values(
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self.db,
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[
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('row_orientation', data.row_orientation, '行向'),
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('tree_status', data.status, '单株状态'),
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('breeding_stage', data.stage, '育种阶段'),
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('breeding_generation', data.generation, '世代'),
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],
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)
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await assert_status_forward(self.db, "tree_status", [obj.status], data.status, "单株状态")
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# 母本/父本:显式给出则校验;否则随当前(新)组合自动派生
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eff_combo = data.combination_id if data.combination_id is not None else obj.combination_id
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dam, sire, parent_warning = await self._resolve_parents(eff_combo, data.dam_id, data.sire_id)
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data = data.model_copy(update={"dam_id": dam, "sire_id": sire})
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# 单写点派生:定植记录持有试验/区组/参试条目
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eff_planting = data.planting_id if data.planting_id is not None else obj.planting_id
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if data.planting_id is not None or obj.planting_id is not None:
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fields = dict(data.model_dump(exclude_none=True))
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await self._derive_from_planting(eff_planting, fields)
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if any(fields.get(c) != getattr(obj, c) for c in ("trial_study_id", "block_no", "entry_id")):
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data = TreeUpdateSchema(**fields)
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obj = await BreedingTreeCRUD(self.auth, self.db).update(id=id, data=data)
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out = TreeOutSchema.model_validate(obj)
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if parent_warning:
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out.warning = parent_warning
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await self._attach_fk_labels([out])
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return out
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async def delete(self, ids: list[int]) -> None:
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if not ids:
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raise CustomException(msg="删除失败,删除对象不能为空")
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objs = await BreedingTreeCRUD(self.auth, self.db).get_list(search={"id": ("in", ids)})
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obj_map = {o.id: o for o in objs}
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for id_ in ids:
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if id_ not in obj_map:
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raise CustomException(msg="删除失败,该育种单株不存在")
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await assert_no_children(
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self.db,
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ids,
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[
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(TreeEvaluationModel, 'tree_id', '单株评价'),
|
||
(TreePhotoModel, 'tree_id', '单株照片'),
|
||
(SelectionResultModel, 'tree_id', '选择结果'),
|
||
(TraitObservationModel, 'tree_id', '性状观测'),
|
||
],
|
||
)
|
||
await BreedingTreeCRUD(self.auth, self.db).delete(ids=ids)
|
||
|
||
async def list_options(self) -> list[dict[str, Any]]:
|
||
"""供前端下拉选择使用:返回 [{value, label}]。"""
|
||
obj_list = await BreedingTreeCRUD(self.auth, self.db).get_list(order_by=[{"id": "asc"}])
|
||
return [{"value": o.id, "label": o.tree_no} for o in obj_list]
|
||
|
||
@staticmethod
|
||
def batch_export(obj_list: list[dict[str, Any]]) -> bytes:
|
||
mapping_dict = {
|
||
"combination_name": "杂交组合",
|
||
"plot_name": "试验地块/位置",
|
||
"planting_name": "来源定植批次",
|
||
"tree_no": "单株编号",
|
||
"row_orientation": "行向",
|
||
"row_no": "行数",
|
||
"col_no": "列数",
|
||
"planted_date": "定植时间",
|
||
"bre_personnel_name": "责任人",
|
||
"status": "状态",
|
||
"stage": "育种阶段",
|
||
"generation": "世代",
|
||
"germplasm_name": "关联种质",
|
||
"entry_number": "参试编号",
|
||
"remark": "备注",
|
||
"created_time": "创建时间",
|
||
"created_by": "创建者",
|
||
}
|
||
data = [dict(item) for item in obj_list]
|
||
for item in data:
|
||
creator = item.get("created_by")
|
||
item["created_by"] = creator.get("name", "未知") if isinstance(creator, dict) else "未知"
|
||
item["row_orientation"] = dict_value_to_label("row_orientation", item.get("row_orientation"))
|
||
item["status"] = dict_value_to_label("tree_status", item.get("status"))
|
||
item["stage"] = dict_value_to_label("breeding_stage", item.get("stage"))
|
||
item["generation"] = dict_value_to_label("breeding_generation", item.get("generation"))
|
||
return ExcelUtil.export_list2excel(list_data=data, mapping_dict=mapping_dict)
|
||
|
||
async def batch_import(self, file: UploadFile, update_support: bool = False) -> ImportResultSchema:
|
||
header_dict = {
|
||
"杂交组合": "combination_id",
|
||
"试验地块/位置": "plot_id",
|
||
"来源定植批次": "planting_id",
|
||
"单株编号": "tree_no",
|
||
"行向": "row_orientation",
|
||
"行数": "row_no",
|
||
"列数": "col_no",
|
||
"定植时间": "planted_date",
|
||
"责任人": "bre_personnel_id",
|
||
"状态": "status",
|
||
"育种阶段": "stage",
|
||
"世代": "generation",
|
||
"备注": "remark",
|
||
}
|
||
try:
|
||
contents = await file.read()
|
||
rows = ExcelUtil.read_excel_to_dicts(contents)
|
||
await file.close()
|
||
if not rows:
|
||
raise CustomException(msg="导入文件为空")
|
||
missing_headers = [h for h in header_dict if h not in rows[0]]
|
||
if missing_headers:
|
||
raise CustomException(msg=f"导入文件缺少必要的列: {', '.join(missing_headers)}")
|
||
combination_id_refs = await BreedingCrossCombinationCRUD(self.auth, self.db).get_list(order_by=[{"id": "asc"}])
|
||
combination_id_map = {getattr(r, "combination_code"): r.id for r in combination_id_refs}
|
||
combination_parents_map = {
|
||
r.id: (getattr(r, "female_parent_id"), getattr(r, "male_parent_id")) for r in combination_id_refs
|
||
}
|
||
plot_id_refs = await BreedingPlotCRUD(self.auth, self.db).get_list(order_by=[{"id": "asc"}])
|
||
plot_id_map = {getattr(r, "plot_code"): r.id for r in plot_id_refs}
|
||
bre_personnel_id_refs = await BreedingPersonnelCRUD(self.auth, self.db).get_list(order_by=[{"id": "asc"}])
|
||
bre_personnel_id_map = {getattr(r, "name"): r.id for r in bre_personnel_id_refs}
|
||
planting_id_refs = await BreedingPlantingCRUD(self.auth, self.db).get_list(order_by=[{"id": "asc"}])
|
||
planting_id_map = {str(getattr(r, "planting_date") or r.id): r.id for r in planting_id_refs}
|
||
mapped_rows = []
|
||
for row in rows:
|
||
mapped_rows.append({en: row.get(ch) for ch, en in header_dict.items()})
|
||
required_fields = ["combination_id", "tree_no"]
|
||
errors = []
|
||
for field in required_fields:
|
||
missing_indices = [i + 1 for i, r in enumerate(mapped_rows) if _is_blank(r.get(field))]
|
||
if missing_indices:
|
||
field_name = next(k for k, v in header_dict.items() if v == field)
|
||
rows_str = "、".join(str(i) for i in missing_indices)
|
||
errors.append(f"{field_name}不能为空,第{rows_str}行")
|
||
if errors:
|
||
raise CustomException(msg=f"导入失败,以下行缺少必要字段:\n{'; '.join(errors)}")
|
||
error_msgs: list[str] = []
|
||
success_count = 0
|
||
crud = BreedingTreeCRUD(self.auth, self.db)
|
||
resolver = DictLabelResolver(
|
||
self.auth, self.db,
|
||
["row_orientation", "tree_status", "breeding_stage", "breeding_generation"],
|
||
)
|
||
for i, row in enumerate(mapped_rows, start=1):
|
||
try:
|
||
combination_id_val = combination_id_map.get(str(row.get("combination_id")).strip()) if not _is_blank(row.get("combination_id")) else None
|
||
plot_id_val = plot_id_map.get(str(row.get("plot_id")).strip()) if not _is_blank(row.get("plot_id")) else None
|
||
planting_id_val = planting_id_map.get(str(row.get("planting_id")).strip()) if not _is_blank(row.get("planting_id")) else None
|
||
bre_personnel_id_val = bre_personnel_id_map.get(str(row.get("bre_personnel_id")).strip()) if not _is_blank(row.get("bre_personnel_id")) else None
|
||
combo_parents = combination_parents_map.get(combination_id_val, (None, None))
|
||
fields = {
|
||
"combination_id": combination_id_val,
|
||
"dam_id": combo_parents[0],
|
||
"sire_id": combo_parents[1],
|
||
"plot_id": plot_id_val,
|
||
"planting_id": planting_id_val,
|
||
"tree_no": _none_if_blank(row.get("tree_no")),
|
||
"row_orientation": await resolver.resolve("row_orientation", row.get("row_orientation")),
|
||
"row_no": _to_int(row.get("row_no")),
|
||
"col_no": _to_int(row.get("col_no")),
|
||
"planted_date": _none_if_blank(row.get("planted_date")),
|
||
"bre_personnel_id": bre_personnel_id_val,
|
||
"status": await resolver.resolve("tree_status", row.get("status")),
|
||
"stage": await resolver.resolve("breeding_stage", row.get("stage")),
|
||
"generation": await resolver.resolve("breeding_generation", row.get("generation")),
|
||
"remark": _none_if_blank(row.get("remark")),
|
||
}
|
||
unique_kwargs = {"tree_no": fields["tree_no"]}
|
||
create_data = TreeCreateSchema(**fields)
|
||
exist_obj = await crud.get(**unique_kwargs)
|
||
if exist_obj:
|
||
if update_support:
|
||
await crud.update(id=exist_obj.id, data=TreeUpdateSchema(**fields))
|
||
success_count += 1
|
||
else:
|
||
error_msgs.append(f"第{i}行: 单株编号 {fields['tree_no']} 已存在")
|
||
else:
|
||
await crud.create(data=create_data)
|
||
success_count += 1
|
||
except Exception as e:
|
||
error_msgs.append(f"第{i}行: {e!s}")
|
||
continue
|
||
return ImportResultSchema(
|
||
valid_count=success_count,
|
||
invalid_count=len(error_msgs),
|
||
message_list=error_msgs,
|
||
)
|
||
except Exception as e:
|
||
logger.error(f"批量导入育种单株失败: {e!s}")
|
||
raise CustomException(msg=f"导入失败: {e!s}")
|
||
|
||
@staticmethod
|
||
def import_template_download() -> bytes:
|
||
header_list = [
|
||
"杂交组合",
|
||
"试验地块/位置",
|
||
"来源定植批次",
|
||
"单株编号",
|
||
"行向",
|
||
"行数",
|
||
"列数",
|
||
"定植时间",
|
||
"责任人",
|
||
"状态",
|
||
"育种阶段",
|
||
"世代",
|
||
"备注",
|
||
]
|
||
selector_header_list = ["行向", "状态", "育种阶段", "世代"]
|
||
option_list = [
|
||
{"行向": ["南北行", "东西行"]},
|
||
{"状态": ["存活", "入选", "初选", "重点", "保存", "淘汰"]},
|
||
{"育种阶段": ["种质", "亲本", "实生苗", "初选株", "复选株", "品系", "区试品系", "新品种"]},
|
||
{"世代": ["F1", "F2", "BC1", "BC2", "BC3"]},
|
||
]
|
||
return ExcelUtil.get_excel_template(
|
||
header_list=header_list,
|
||
selector_header_list=selector_header_list,
|
||
option_list=option_list,
|
||
) |