2026-09-10 21:43:39 +08:00
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"""画像 → 图投影:把 MySQL 里权威的画像与事实投影成 Neo4j 的节点与关系。
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**为什么要有图**(这是它存在的理由,不是技术偏好):投顾要靠"买过 A 的客户还买过什么"
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这类多跳关系做组合推荐,风控要靠关系网络发现关联账户与资金链路;这些查询用关系库写
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既别扭又慢,用图是顺手的事。
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设计约束:
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1. **单向投影**:MySQL 是唯一真相,图库只是派生视图。图数据损坏或模型变更时可以直接重建
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(拿同一份画像重投影即可),因此这里**不需要与 MySQL 保持事务一致**。
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2. **幂等**:全部用 MERGE,重复投影不会产生重复节点或关系。
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3. **降级**:图库不可用时返回 `degraded`,**绝不把异常抛给画像重建这类主链路**
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—— 投顾推荐可以暂时没有图,但不能因为图挂了就让画像更新失败。
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4. **只投影"已确认"的事实**:与画像同源(`user_facts`),不直接读原始记忆,
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保证图里的偏好标签与画像口径一致;否则同一件事在画像和图里会有两种说法。
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"""
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from dataclasses import dataclass
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from typing import Any
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from sqlalchemy import select, text
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from sqlalchemy.ext.asyncio import AsyncSession
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from app.model.profile import UserFact
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from app.service.graph_model import merge_node_clause, node_spec, relation_allowed
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from app.service.relationship_service import RelationshipService
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# 事实键 → (关系类型, 目标节点类型)
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FACT_PROJECTION: dict[str, tuple[str, str]] = {
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"preference:risk_level": ("PREFERS", "tag"),
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"preference:asset_class": ("PREFERS", "tag"),
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"preference:horizon": ("HAS_GOAL", "tag"),
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"profile:family": ("PREFERS", "tag"),
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}
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MAX_EDGES_PER_CUSTOMER = 200
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@dataclass(frozen=True)
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class ProjectionOutcome:
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relations: int = 0
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degraded: bool = False
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reason: str = ""
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2026-09-10 21:55:03 +08:00
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@dataclass(frozen=True)
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class ReconciliationOutcome:
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"""一次对账的结果:图里的边与权威画像应有的边是否一致。
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`missing` = 画像里有、图里没有(投影漏了或落后);`orphaned` = 图里有、画像已无
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(记忆失效后没清理)。两者都为空才算一致。
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"""
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customer_id: int
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expected: tuple[tuple[str, str, str], ...] = ()
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actual: tuple[tuple[str, str, str], ...] = ()
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missing: tuple[tuple[str, str, str], ...] = ()
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orphaned: tuple[tuple[str, str, str], ...] = ()
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repaired: bool = False
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degraded: bool = False
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reason: str = ""
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@property
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def consistent(self) -> bool:
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return not self.missing and not self.orphaned
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2026-09-10 21:43:39 +08:00
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class ProfileGraphProjectionService:
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def __init__(
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self, session: AsyncSession, relationships: RelationshipService | None
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) -> None:
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self.session = session
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self.relationships = relationships
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async def project_customer(self, customer_id: int) -> ProjectionOutcome:
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"""把该客户的画像事实投影到图中。"""
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if self.relationships is None:
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return ProjectionOutcome(degraded=True, reason="graph_client_unavailable")
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edges = await self._edges(customer_id)
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written = 0
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try:
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for relation, target_type, target_id in edges[:MAX_EDGES_PER_CUSTOMER]:
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await self._merge_edge(customer_id, relation, target_type, target_id)
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written += 1
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except Exception as exc:
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# 图库故障:如实标记降级,不伪装成功(与 Milvus/Neo4j 投影清理同一取向)
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return ProjectionOutcome(relations=written, degraded=True,
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reason=f"graph_write_failed:{type(exc).__name__}")
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return ProjectionOutcome(relations=written)
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async def delete_customer(self, customer_id: int) -> ProjectionOutcome:
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"""删除该客户在图中的节点及其全部关系。
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这是此前缺失的**投影删除客户端**:记忆失效或客户销户后,若图里仍留着旧关系,
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投顾会拿过期偏好做推荐、风控会看到已不存在的关系网络。
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`DETACH DELETE` 同时清理关系,避免留下悬挂边。
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"""
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if self.relationships is None:
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return ProjectionOutcome(degraded=True, reason="graph_client_unavailable")
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try:
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await self.relationships.driver.execute_query(
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"MATCH (c:Customer {customer_id: $customer_id}) DETACH DELETE c",
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customer_id=int(customer_id),
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)
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except Exception as exc:
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return ProjectionOutcome(degraded=True,
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reason=f"graph_delete_failed:{type(exc).__name__}")
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return ProjectionOutcome()
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# ---------- 内部 ----------
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async def _edges(self, customer_id: int) -> list[tuple[str, str, str]]:
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"""收集要投影的边:(关系, 目标节点类型, 目标节点标识)。"""
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edges: list[tuple[str, str, str]] = []
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facts = list(await self.session.scalars(
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select(UserFact).where(UserFact.customer_id == customer_id)
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))
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for fact in facts:
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key = str(fact.fact_key)
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projection = FACT_PROJECTION.get(key)
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if projection is None:
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continue
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relation, target_type = projection
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edges.append((relation, target_type, f"{key}={self._text(fact.fact_value)}"))
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for product_code in await self._holdings(customer_id):
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edges.append(("HOLDS", "product", product_code))
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return edges
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async def _holdings(self, customer_id: int) -> list[str]:
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"""客户当前持仓的产品代码。
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交易模块尚未产生数据,或表结构与预期不符时返回空列表——持仓投影自动跳过,
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而不是让整次投影失败。等交易侧就绪后无需改这里的代码。
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"""
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try:
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rows = await self.session.execute(text(
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"SELECT p.product_code FROM fin_holding h "
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"JOIN fin_product p ON p.id = h.product_id "
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"WHERE h.customer_id = :customer_id LIMIT 50"
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), {"customer_id": customer_id})
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except Exception:
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return []
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return [str(row[0]) for row in rows if row[0]]
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async def _merge_edge(
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self, customer_id: int, relation: str, target_type: str, target_id: str
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) -> None:
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if not relation_allowed(relation, "customer", target_type):
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raise ValueError(f"relationship {relation} cannot connect customer -> {target_type}")
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source = node_spec("customer")
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target = node_spec(target_type)
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query = (
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f"{merge_node_clause('a', source, 'source_id')} "
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f"{merge_node_clause('b', target, 'target_id')} "
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f"MERGE (a)-[r:{relation}]->(b) "
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"SET r.source = $source, r.updated_at = $updated_at"
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)
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await self.relationships.driver.execute_query( # type: ignore[union-attr]
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query,
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source_id=node_spec("customer").cast(customer_id),
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target_id=target_id,
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source="user_facts",
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updated_at=_now_iso(),
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)
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2026-09-10 21:55:03 +08:00
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# ---------- 对账 ----------
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async def reconcile_customer(
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self, customer_id: int, *, repair: bool = False
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) -> ReconciliationOutcome:
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"""比对图里的边与权威画像应有的边,可选自动修复。
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与 `ProjectionReconciliationService` 的分工:那个服务做**事件层**对账(哪些投影
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事件还没投递、需要重放),本方法做**数据层**对账(投递完成之后,图里的内容与权威
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源是否一致)。两者互补——事件层保证"该投的都投了",数据层保证"投进去的是对的、
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不该留的没留"。
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图是投影、MySQL 是唯一真相,因此差异一律**以画像为准**:`missing` 补写、
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`orphaned` 删除,而不是反过来去改画像。
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"""
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if self.relationships is None:
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return ReconciliationOutcome(
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customer_id, degraded=True, reason="graph_client_unavailable"
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)
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expected = set(await self._edges(customer_id))
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try:
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actual = await self._actual_edges(customer_id)
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except Exception as exc:
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return ReconciliationOutcome(
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customer_id, expected=tuple(sorted(expected)), degraded=True,
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reason=f"graph_read_failed:{type(exc).__name__}",
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)
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missing = expected - actual
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orphaned = actual - expected
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repaired = False
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if repair and (missing or orphaned):
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try:
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for relation, target_type, target_id in sorted(missing):
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await self._merge_edge(customer_id, relation, target_type, target_id)
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for relation, target_type, target_id in sorted(orphaned):
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await self._delete_edge(customer_id, relation, target_type, target_id)
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repaired = True
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except Exception as exc:
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return ReconciliationOutcome(
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customer_id, expected=tuple(sorted(expected)), actual=tuple(sorted(actual)),
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missing=tuple(sorted(missing)), orphaned=tuple(sorted(orphaned)),
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degraded=True, reason=f"graph_repair_failed:{type(exc).__name__}",
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)
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# 修复后重新核对:不凭"操作没报错"就宣布修好了
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actual = await self._actual_edges(customer_id)
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missing = expected - actual
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orphaned = actual - expected
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return ReconciliationOutcome(
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customer_id,
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expected=tuple(sorted(expected)),
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actual=tuple(sorted(actual)),
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missing=tuple(sorted(missing)),
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orphaned=tuple(sorted(orphaned)),
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repaired=repaired,
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)
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async def _actual_edges(self, customer_id: int) -> set[tuple[str, str, str]]:
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"""读出该客户在图中现有的边:(关系, 目标类型, 目标标识)。"""
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# 用 properties(t) 而不是 coalesce(t.tag_key, ...):后者会引用当前图中尚不存在的
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# 属性名,Neo4j 每次执行都抛出 UnknownPropertyKeyWarning,把日志刷成噪音。
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rows = await self.relationships.driver.execute_query( # type: ignore[union-attr]
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"MATCH (c:Customer {customer_id: $customer_id})-[r]->(t) "
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"RETURN type(r) AS rel, labels(t) AS labels, properties(t) AS props",
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customer_id=int(customer_id),
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)
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edges: set[tuple[str, str, str]] = set()
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for row in rows:
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labels = row.get("labels") or []
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# 节点标签转回 payload 用的小写类型名(Tag -> tag),与 NODE_SPECS 对齐
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target_type = str(labels[0]).lower() if labels else ""
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if not target_type:
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continue
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props = row.get("props") or {}
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target_id = next(
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(props[key] for key in ("tag_key", "product_code", "category", "event_id")
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if props.get(key) is not None),
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None,
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)
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if target_id is None:
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continue
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edges.add((str(row.get("rel")), target_type, str(target_id)))
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return edges
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async def _delete_edge(
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self, customer_id: int, relation: str, target_type: str, target_id: str
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) -> None:
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"""删除一条边;节点本身保留——它可能被其他客户或产品共享。"""
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if relation not in RelationshipService.ALLOWED_RELATIONSHIPS:
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# 关系名取自图中的既有边,属于外部数据,必须过白名单再拼进 Cypher
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raise ValueError(f"relationship is not allowed: {relation!r}")
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target = node_spec(target_type)
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query = (
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f"MATCH (c:Customer {{customer_id: $customer_id}})-[r:{relation}]->"
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f"(t:{target.label} {{{target.property}: $target_id}}) DELETE r"
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)
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await self.relationships.driver.execute_query( # type: ignore[union-attr]
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query, customer_id=int(customer_id), target_id=target_id
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)
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2026-09-10 21:43:39 +08:00
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@staticmethod
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def _text(value: Any) -> str:
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if isinstance(value, str):
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return value.strip().strip('"')
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return str(value)
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def _now_iso() -> str:
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from datetime import UTC, datetime
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return datetime.now(UTC).replace(tzinfo=None).isoformat()
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