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market_sync/app/tasks/task_sector_features.py
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gao 7a985dddd5 refactor: PG-only 迁移 + 龙虎榜/tick/moneyflow 同步 + stock_code 统一 + mairui 编码修复
## 1. PG-only 重构
- 删 app/core/db/connection.py + schema.py (MySQL 路径)
- 新 app/core/db/{orm,models,pg_bootstrap}.py — SQLAlchemy 2.x ORM 一键建表
- 16 张业务表全在 market_data schema,原生 TIMESTAMPTZ / JSONB / Float / TEXT
- requirements.txt 删 PyMySQL 路径,加 psycopg2

## 2. 同步任务扩展(3 个新 task)
- **tick_trade** (mairui hsrl/zbjy):当天逐笔交易,21:00 发布
- **moneyflow** (mairui hsstock/history/transaction):个股资金流,21:30 发布
- **longhubang** (akshare):龙虎榜聚合层 + 席位层(2 张新表)
  - 长虎榜放宽 akshare 政策:仅"无替代源 + 烟测通过"场景允许
  - data_eastmoney 私有 API 不需要(akshare 烟测通过)
- 3-timer 设计:
  - 15:30 market-sync.service (8 base tasks via runall_once)
  - 21:05 market-sync-tick.service (tick_trade)
  - 21:35 market-sync-moneyflow.service (moneyflow)
  - 22:00 market-sync-lhb.service (longhubang,新加)
- bin/systemd/ 新增 tick / moneyflow / lhb 各 1 对 service+timer
- bin/market_sync_*_run.sh wrapper 脚本(不做法定节假日过滤,fail-open)

## 3. stock_code 统一为带 SH/SZ/BJ 前缀
- 历史 bug:stocks.code 用 SH600519,但 kline/moneyflow/tick_trade/kline_5min
  /stock_sector_map/industry 6 张表用纯 6 位 600519,跨表 JOIN 全部 0 行
- 新增 to_hermes() 工具:6位 / 9位(mairui `000001.SZ` 格式)→ 统一 SH000001
- 5 个 task 改写:用 to_hermes(code6) 写入 stock_code
- 一次性迁移 6 张表存量 154M 行(CASE WHEN 探测 + 去重 + 加前缀)
- ORM: stock_sector_map.stock_code / industry.code String(6)→String(10)

## 4. Bug 修复
- **share table stock_code 格式**:之前写 6 位不带前缀,与 stocks 不一致
  → 修 task_share_snapshot + 一次性 UPDATE 63,417 行加前缀
- **share_snapshot warning 状态错填 last_error**:
  → 加 mark_sync_warning() 走专用路径,不写 last_failure_at / last_error
- **schedule config lastRun 不同步**:
  → 加 update_job_status_for_dataset(),SyncTask.run() 完成后自动镜像
  → cli/runall 触发的 task 也能更新 schedule config

## 5. mairui UTF-8 编码修复
- 历史 bug:mairui.py:_fetch 用 latin-1 兜底解码,把所有 UTF-8 中文名
  double-encoded 写入 stocks.name(如 `歌华有线` 变成 `æ\xad\x8cå\x8d\x8e...`)
- 加 _decode_response():UTF-8 → GBK → latin-1 兜底
- 一次性修复 stocks.name 5,213 行:
  - 4,370 行 (encode('latin-1').decode('utf-8') 反向解码)
  - 616 行 (含 fullwidth A,宽松 printable 检查)
  - 820 行 (mid-character 截断,重新从 mairui 拉)

## 6. 测试
- tests/test_smoke.py: TASKS 10→11, SYNC_DEFINITIONS 10→11
- tests/test_schema_models.py: 16→18 张表,新增 longhubang_daily/seat
- pytest 11/11 passed

## 验证
- 6 张表 0 残留无前缀行
- stocks JOIN kline_stock / kline_5min / moneyflow / tick_trade / stock_sector_map:88-100% 命中
- 5,213 stocks.name 全部正确 UTF-8 中文
- pytest 11/11 passed
2026-07-01 22:00:58 +08:00

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"""同步任务:行业聚合特征(衍生计算)。
输入:kline_stock(日 K 线)+ industry(股票→行业映射)
输出:
- sector_indices :行业日线(trade_date × sector_name × close × sector_amplitude
- sector_features_daily :行业特征(+ sector_ret + ema10/20/200 + score
算法(参考 dashboard/api/services/sync/sector.py 重写,持久层改为 PG):
1) 每只股票日涨跌幅 pct_chg = (close/prev_close - 1) * 100
2) 按行业聚合 sector_ret = 该行业所有股票当日 pct_chg 的均值
3) 行业指数 close = 100 × ∏(1 + sector_ret/100) (基点 100,复合收益)
4) 行业振幅 sector_amplitude = 该行业所有股票当日 (high-low)/close 的均值
5) EMA10/20/200 = close 的指数移动平均(adjust=False
6) score: 0/1/2 — close>ema200 + 1ema10>ema20 + 1
无外部 API 调用,纯本地计算;增量逻辑以"全量重算"实现(数据量小 ~75K 行)。
"""
from __future__ import annotations
import time
from datetime import datetime, timedelta
from typing import Any
import pandas as pd
from sqlalchemy import create_engine
from app.core.config import settings
from app.core.db import ops as db_ops
from app.core.sync.base import SyncTask
from app.core.utils.logging import get_logger
logger = get_logger("sync.sector_features")
# 起算点:DB 里 kline_stock 最早一天 往前 5 年,或固定一个默认起点
# (不用写死 2021-04-24,让数据自己决定;下面自动算)
DEFAULT_START_YEARS_BACK = 5
# 输出基点(行业指数 close 从多少开始)
INDEX_BASE = 100.0
class SyncSectorFeatures(SyncTask):
dataset_id = "sector_features"
def _run(
self,
*,
trigger_source: str = "manual",
codes: list[str] | None = None,
max_workers: int = 1, # 本任务纯本地计算,单线程足够
**kwargs,
) -> dict[str, Any]:
t0 = time.time()
logger.info("[sector] 启动行业聚合特征计算")
# ── 1) 拉 kline_stock(日线)只取需要的列 ──
# 走 SQLAlchemy engine + PG URLpd.read_sql 一次性读 1.1kw 行 → pandas DataFrame
engine = create_engine(settings.pg_sqlalchemy_url())
df_kline = pd.read_sql(
'SELECT stock_code, trade_date, open, high, low, "close", volume '
'FROM market_data.kline_stock ORDER BY stock_code, trade_date',
engine,
)
if df_kline.empty:
return {"status": "error", "message": "kline_stock 为空"}
df_kline["stock_code"] = df_kline["stock_code"].astype(str).str.zfill(6)
df_kline["trade_date"] = pd.to_datetime(df_kline["trade_date"], errors="coerce")
logger.info(f"[sector] kline_stock: {len(df_kline):,} 行, {df_kline['stock_code'].nunique()} 只, "
f"{df_kline['trade_date'].min().date()} ~ {df_kline['trade_date'].max().date()}")
# ── 2) 拉 industry(股票→行业映射)──
df_ind = pd.read_sql(
"SELECT code, industry_name FROM market_data.industry WHERE industry_name IS NOT NULL",
engine,
)
if df_ind.empty:
return {"status": "error", "message": "industry 表为空"}
df_ind["code"] = df_ind["code"].astype(str).str.zfill(6)
df_ind = df_ind.drop_duplicates(subset=["code"], keep="first")
logger.info(f"[sector] industry 映射: {len(df_ind):,} 行, {df_ind['industry_name'].nunique()} 个行业")
# ── 3) 算每只股票日涨跌幅 + 振幅 ──
df = df_kline.merge(df_ind, left_on="stock_code", right_on="code", how="inner")
df = df.sort_values(["stock_code", "trade_date"])
df["prev_close"] = df.groupby("stock_code")["close"].shift(1)
df["stock_amplitude"] = (df["high"] - df["low"]) / df["close"]
df = df.dropna(subset=["prev_close", "industry_name"])
df["pct_chg"] = (df["close"] / df["prev_close"] - 1.0) * 100.0
logger.info(f"[sector] 合并后: {len(df):,} 行, 行业 {df['industry_name'].nunique()}")
# ── 4) 按行业 + 日期聚合 ──
sector_daily = (
df.groupby(["industry_name", "trade_date"], as_index=False).agg(
sector_ret=("pct_chg", "mean"),
sector_amplitude=("stock_amplitude", "mean"),
)
.rename(columns={"industry_name": "sector_name"})
.sort_values(["sector_name", "trade_date"])
.reset_index(drop=True)
)
logger.info(f"[sector] 行业日聚合: {len(sector_daily):,}")
# ── 5) 算行业指数 close(基点 100,复合)──
sector_index = self._build_index(sector_daily)
# ── 6) EMA + score ──
sector_index = self._calc_ema(sector_index)
sector_index["score"] = sector_index.apply(
lambda r: self._calc_score(r["close"], r["ema10"], r["ema20"], r["ema200"]),
axis=1,
)
# 整理列名
out_cols = ["trade_date", "sector_name", "sector_ret", "sector_amplitude",
"close", "ema10", "ema20", "ema200", "score"]
sector_index = sector_index[out_cols]
sector_index["trade_date"] = sector_index["trade_date"].dt.strftime("%Y-%m-%d")
# NaN → None(让 MySQL 接受 NULL
sector_index = sector_index.where(pd.notnull(sector_index), None)
# ── 7) 写入两张表 ──
# 7a. sector_indices (4 列)
si_rows = sector_index[["trade_date", "sector_name", "close", "sector_amplitude"]].to_dict("records")
db_ops.replace_all_sector_indices(si_rows)
# 7b. sector_features_daily (9 列)
sf_rows = sector_index.to_dict("records")
db_ops.replace_all_sector_features(sf_rows)
elapsed = round(time.time() - t0, 1)
msg = (
f"行业聚合 {sector_index['sector_name'].nunique()} 个行业 "
f"× {sector_index['trade_date'].nunique()} 天, "
f"{len(sector_index):,} 行, {elapsed}s"
)
logger.info(f"[sector] {msg}")
return {
"status": "ok",
"message": msg,
"sectors": int(sector_index["sector_name"].nunique()),
"days": int(sector_index["trade_date"].nunique()),
"rows": int(len(sector_index)),
"elapsed_sec": elapsed,
}
@staticmethod
def _build_index(sector_daily: pd.DataFrame) -> pd.DataFrame:
"""行业指数 close = INDEX_BASE × ∏(1 + sector_ret/100)"""
out = []
for sector_name, group in sector_daily.groupby("sector_name", sort=False):
g = group.sort_values("trade_date").copy()
close_vals = []
cur_base = INDEX_BASE
for ret in g["sector_ret"].to_numpy(dtype=float):
if pd.isna(ret):
close_vals.append(cur_base)
else:
cur_base = cur_base * (1 + float(ret) / 100.0)
close_vals.append(cur_base)
g["close"] = close_vals
out.append(g)
return pd.concat(out, ignore_index=True)
@staticmethod
def _calc_ema(sector_index: pd.DataFrame) -> pd.DataFrame:
"""每个行业分别算 EMA10/20/200"""
out = []
for sector_name, group in sector_index.groupby("sector_name", sort=False):
g = group.sort_values("trade_date").copy()
g["ema10"] = g["close"].ewm(span=10, adjust=False).mean()
g["ema20"] = g["close"].ewm(span=20, adjust=False).mean()
g["ema200"] = g["close"].ewm(span=200, adjust=False).mean()
out.append(g)
return pd.concat(out, ignore_index=True)
@staticmethod
def _calc_score(close, ema10, ema20, ema200) -> int:
score = 0
if pd.notna(close) and pd.notna(ema200) and close > ema200:
score += 1
if pd.notna(ema10) and pd.notna(ema20) and ema10 > ema20:
score += 1
return int(score)