bsp_monitor: 支持全部20个币对 + 数据源切换至data_provider + Python 3.9兼容
- fetcher.py: 数据源从CCXT改为data_provider HTTP API,新增get_symbols()自动获取所有币对 - main.py: 重构为多币对架构,每个币对独立SymbolState(pivot_monitor/BSP去重/首轮抑制) - engine.py: format_bsp_detail()支持动态币对名 - ChanPivotMonitor/Classifier: 修复Python 3.9类型注解兼容(X|None → Optional[X]) - 首轮初始化时不推送中枢和BSP,避免启动时20条消息轰炸 Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
This commit is contained in:
co-authored by
Claude Opus 4.7
parent
b1cbdca707
commit
881c9d5eac
+119
-104
@@ -3,21 +3,22 @@
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main.py - 缠论买卖点监控主程序。
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每整分钟:
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1. 从 Binance 拉取最新 1m K 线
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2. 跑完整缠论管线
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3. 检测新出现的买卖点(BSP)
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4. 推送到 Telegram(同一 BSP 只推一次)
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1. 从 data_provider 拉取所有币对最新 1m K 线
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2. 每个币对独立跑缠论管线
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3. 检测新出现的买卖点(BSP)+ 中枢特征变化
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4. 推送到 Telegram
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"""
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import asyncio
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import logging
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import sys
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import os
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import time
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from dataclasses import dataclass, field
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from datetime import datetime, timezone, timedelta
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sys.path.insert(0, os.path.dirname(os.path.abspath(__file__)))
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from fetcher import fetch_ohlcv
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from fetcher import fetch_ohlcv, get_symbols
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from engine import ChanEngine
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from notify import send_bsp_alert, send_telegram_message, BOT_TOKEN, CHAT_ID
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@@ -33,149 +34,148 @@ logging.basicConfig(
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logger = logging.getLogger("bsp_monitor")
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def _bsp_stable_key(bsp) -> str:
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"""生成 BSP 的稳定唯一键(不依赖笔边界的微小变化)。"""
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return f"{bsp.type}_{bsp.klc.end_time}"
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def _short(symbol: str) -> str:
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"""BTC/USDT:USDT → BTCUSDT"""
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return symbol.split(":")[0].replace("/", "")
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@dataclass
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class SymbolState:
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symbol: str
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pivot_monitor: ChanPivotMonitor = field(default_factory=ChanPivotMonitor)
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known_bsp_keys: set = field(default_factory=set)
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last_df_ts: object = None
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first_run: bool = True
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class BSPMonitor:
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def __init__(self):
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self._first_run = True
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self._last_df_ts = None
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self._known_bsp_keys: set = set() # 已见过的 BSP 键(含已推送和历史的)
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self.pivot_monitor = ChanPivotMonitor(window_size=10)
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symbols = get_symbols()
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self._states: dict[str, SymbolState] = {
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s: SymbolState(symbol=s) for s in symbols
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}
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logger.info(f"监控 {len(symbols)} 个币对: {', '.join(_short(s) for s in symbols)}")
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async def tick(self):
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"""单次 tick。"""
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tick_start = time.monotonic()
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logger.info("── tick 开始 ──")
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for symbol, st in self._states.items():
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await self._tick_symbol(symbol, st)
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elapsed = (time.monotonic() - tick_start) * 1000
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logger.info(f"── tick 结束 ({elapsed:.0f}ms) ──")
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async def _tick_symbol(self, symbol: str, st: SymbolState):
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name = _short(symbol)
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# 1. 拉取 K 线
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try:
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df = fetch_ohlcv()
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df = fetch_ohlcv(symbol)
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except Exception as e:
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logger.error(f"拉取 K 线失败: {e}")
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logger.error(f"[{name}] 拉取失败: {e}")
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return
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if df.empty:
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logger.warning("DataFrame 为空,跳过")
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logger.warning(f"[{name}] DataFrame 为空")
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return
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latest_ts = df.iloc[-1]["timestamp"]
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if self._last_df_ts and latest_ts <= self._last_df_ts:
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logger.info("无新 K 线,跳过")
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return
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self._last_df_ts = latest_ts
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if st.last_df_ts and latest_ts <= st.last_df_ts:
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return # 无新K线
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st.last_df_ts = latest_ts
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# 2. 运行缠论管线
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try:
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engine = ChanEngine(df)
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except Exception as e:
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logger.error(f"缠论计算失败: {e}", exc_info=True)
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logger.error(f"[{name}] 缠论计算失败: {e}", exc_info=True)
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return
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# 2.5 更新中枢特征监控 + 推送
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pivot_state = self.pivot_monitor.update(engine.bi_zs_list)
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if pivot_state:
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logger.info(
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f"中枢特征更新: bi_count={pivot_state['bi_count']} "
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f"is_sure={pivot_state['is_sure']} "
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f"contraction={pivot_state['contraction']:.4f} "
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f"shift_norm={pivot_state['shift_norm']:+.4f} "
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f"duration_norm={pivot_state['duration_norm']:.4f}"
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)
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# Telegram 推送
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if pivot_state["is_sure"]:
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phase = "✅ 已确认"
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elif pivot_state["bi_count"] > 3:
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phase = "🔄 延伸中"
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else:
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phase = "🆕 刚形成"
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zs_dir = pivot_state["zs_dir"]
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dir_label = "⬆️ 向上" if "UP" in zs_dir else "⬇️ 向下"
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# 3. 中枢特征监控 + 推送
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pivot_state = st.pivot_monitor.update(engine.bi_zs_list)
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# 白话解释
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c = pivot_state["contraction"]
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if c < 0.85:
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contraction_note = "收敛(振幅缩小,可能快出方向)"
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elif c > 1.15:
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contraction_note = "扩张(振幅放大,波动加剧)"
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else:
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contraction_note = "稳定"
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s = pivot_state["shift_norm"]
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if s > 0.3:
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shift_note = "重心上移(偏多)"
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elif s < -0.3:
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shift_note = "重心下移(偏空)"
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else:
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shift_note = "重心居中"
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msg = (
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f"🏠 <b>中枢更新</b> — BTC/USDT 1m\n"
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f"\n"
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f"📐 笔数: <b>{pivot_state['bi_count']}</b> {dir_label} {phase}\n"
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f"📏 收敛率: <b>{pivot_state['contraction']:.4f}</b> → {contraction_note}\n"
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f"⚖️ 重心漂移: <b>{pivot_state['shift_norm']:+.4f}</b> → {shift_note}\n"
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f"⏱️ 持续: {pivot_state['duration_raw']}K "
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f"(norm: {pivot_state['duration_norm']:.2f})\n"
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f"📦 区间: {pivot_state['zd']:.2f} – {pivot_state['zg']:.2f} "
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f"(gg/dd: {pivot_state['gg']:.2f}/{pivot_state['dd']:.2f})"
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)
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send_telegram_message(msg)
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# 3. 检测新 BSP(用 stable key 去重)
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# 4. BSP 检测 + 推送
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current_bsps = engine.bsp_list
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current_keys = {_bsp_stable_key(b) for b in current_bsps}
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current_keys = {_bsp_stable_key(b, symbol) for b in current_bsps}
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if self._first_run:
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self._first_run = False
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self._known_bsp_keys = current_keys
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if st.first_run:
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st.first_run = False
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st.known_bsp_keys = current_keys
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confirmed = [b for b in engine.bi_list if b.is_sure]
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logger.info(
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f"首次运行完成 — {len(confirmed)} 笔已确认, "
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f"{len(current_bsps)} 个买卖点 (不推送历史)"
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f"[{name}] 首次完成 — {len(confirmed)} 笔, "
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f"{len(current_bsps)} BSP (不推送)"
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)
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elapsed = (time.monotonic() - tick_start) * 1000
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logger.info(f"── tick 结束 ({elapsed:.0f}ms) ──")
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return
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new_keys = current_keys - self._known_bsp_keys
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self._known_bsp_keys |= current_keys # 永增,BSP 一旦见过就不会再"新"
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if pivot_state:
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logger.info(
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f"[{name}] 中枢更新: bi_count={pivot_state['bi_count']} "
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f"contraction={pivot_state['contraction']:.4f} "
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f"shift={pivot_state['shift_norm']:+.4f}"
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)
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self._push_pivot(pivot_state, name)
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new_keys = current_keys - st.known_bsp_keys
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st.known_bsp_keys |= current_keys
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if not new_keys:
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logger.debug("无新买卖点")
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elapsed = (time.monotonic() - tick_start) * 1000
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logger.info(f"── tick 结束 ({elapsed:.0f}ms) ──")
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return
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logger.info(f"检测到 {len(new_keys)} 个新买卖点")
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# 4. 推送新 BSP
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logger.info(f"[{name}] {len(new_keys)} 个新 BSP")
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for bsp in current_bsps:
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key = _bsp_stable_key(bsp)
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key = _bsp_stable_key(bsp, symbol)
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if key not in new_keys:
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continue
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msg = engine.format_bsp_detail(bsp)
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# HTML 转义(Telegram parse_mode=HTML 要求)
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msg = msg.replace("&", "&")
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msg = msg.replace("<b>", "\x00B\x00").replace("</b>", "\x00/B\x00")
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msg = msg.replace("<code>", "\x00C\x00").replace("</code>", "\x00/C\x00")
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msg = msg.replace("<", "<").replace(">", ">")
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msg = msg.replace("\x00B\x00", "<b>").replace("\x00/B\x00", "</b>")
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msg = msg.replace("\x00C\x00", "<code>").replace("\x00/C\x00", "</code>")
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ok = send_bsp_alert(msg, bsp_key=key)
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if ok:
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logger.info(f"✅ 推送: {key}")
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else:
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logger.warning(f"❌ 推送失败: {key}")
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msg = engine.format_bsp_detail(bsp, symbol)
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msg = _escape_html(msg)
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if send_bsp_alert(msg, bsp_key=key):
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logger.info(f"[{name}] ✅ BSP: {key}")
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elapsed = (time.monotonic() - tick_start) * 1000
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logger.info(f"── tick 结束 ({elapsed:.0f}ms) ──")
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def _push_pivot(self, state: dict, name: str):
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if state["is_sure"]:
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phase = "✅ 已确认"
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elif state["bi_count"] > 3:
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phase = "🔄 延伸中"
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else:
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phase = "🆕 刚形成"
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zs_dir = state["zs_dir"]
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dir_label = "⬆️ 向上" if "UP" in zs_dir else "⬇️ 向下"
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c = state["contraction"]
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if c < 0.85:
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contraction_note = "收敛(振幅缩小,可能快出方向)"
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elif c > 1.15:
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contraction_note = "扩张(振幅放大,波动加剧)"
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else:
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contraction_note = "稳定"
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s = state["shift_norm"]
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if s > 0.3:
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shift_note = "重心上移(偏多)"
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elif s < -0.3:
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shift_note = "重心下移(偏空)"
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else:
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shift_note = "重心居中"
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msg = (
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f"🏠 <b>中枢更新</b> — {name} 1m\n"
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f"\n"
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f"📐 笔数: <b>{state['bi_count']}</b> {dir_label} {phase}\n"
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f"📏 收敛率: <b>{state['contraction']:.4f}</b> → {contraction_note}\n"
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f"⚖️ 重心漂移: <b>{state['shift_norm']:+.4f}</b> → {shift_note}\n"
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f"⏱️ 持续: {state['duration_raw']}K "
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f"(norm: {state['duration_norm']:.2f})\n"
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f"📦 区间: {state['zd']:.2f} – {state['zg']:.2f} "
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f"(gg/dd: {state['gg']:.2f}/{state['dd']:.2f})"
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)
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send_telegram_message(msg)
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async def run(self):
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logger.info("=" * 50)
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logger.info("bsp_monitor 启动 — BTC/USDT 1m 缠论买卖点监控")
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logger.info(f"bsp_monitor 启动 — {len(self._states)} 币对 1m 缠论监控")
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logger.info(f"Telegram: {'已配置' if BOT_TOKEN and CHAT_ID else '⚠️ 未配置'}")
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logger.info("=" * 50)
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@@ -197,6 +197,21 @@ class BSPMonitor:
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await asyncio.sleep(5)
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def _bsp_stable_key(bsp, symbol: str) -> str:
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return f"{symbol}_{bsp.type}_{bsp.klc.end_time}"
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def _escape_html(msg: str) -> str:
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"""HTML 转义,保留已有的 <b>/<code> 标签。"""
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msg = msg.replace("&", "&")
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msg = msg.replace("<b>", "\x00B\x00").replace("</b>", "\x00/B\x00")
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msg = msg.replace("<code>", "\x00C\x00").replace("</code>", "\x00/C\x00")
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msg = msg.replace("<", "<").replace(">", ">")
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msg = msg.replace("\x00B\x00", "<b>").replace("\x00/B\x00", "</b>")
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msg = msg.replace("\x00C\x00", "<code>").replace("\x00/C\x00", "</code>")
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return msg
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if __name__ == "__main__":
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monitor = BSPMonitor()
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try:
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