614 lines
27 KiB
Python
614 lines
27 KiB
Python
"""
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Dash Web应用:提供交互式缠论分析界面
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"""
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import dash
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from dash import dcc, html, Input, Output, State, callback_context
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import plotly.graph_objects as go
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import pandas as pd
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import numpy as np
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from datetime import datetime, timedelta
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import logging
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from data.data_fetcher import DataFetcher
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from data.data_processor import DataProcessor
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from core.chan_analyzer import ChanAnalyzer
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from .visualization import ChanVisualizer
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logger = logging.getLogger(__name__)
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def create_app():
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"""创建Dash应用"""
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app = dash.Dash(__name__)
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# 初始化组件
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data_fetcher = DataFetcher()
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data_processor = DataProcessor()
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visualizer = ChanVisualizer()
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# 应用布局
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app.layout = html.Div([
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# 标题
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html.H1("缠论分析系统", className="text-center mb-4"),
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# 控制面板
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html.Div([
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html.Div([
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html.Label("交易对:"),
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dcc.Dropdown(
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id='symbol-dropdown',
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options=[
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{'label': 'BTC/USDT', 'value': 'BTC/USDT'},
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{'label': 'ETH/USDT', 'value': 'ETH/USDT'},
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{'label': 'BNB/USDT', 'value': 'BNB/USDT'},
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{'label': 'ADA/USDT', 'value': 'ADA/USDT'},
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{'label': 'SOL/USDT', 'value': 'SOL/USDT'}
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],
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value='BTC/USDT',
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className="mb-3"
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)
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], className="col-md-2"),
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html.Div([
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html.Label("时间周期:"),
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dcc.Dropdown(
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id='timeframe-dropdown',
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options=[
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{'label': '1分钟', 'value': '1m'},
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{'label': '5分钟', 'value': '5m'},
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{'label': '15分钟', 'value': '15m'},
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{'label': '30分钟', 'value': '30m'},
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{'label': '1小时', 'value': '1h'},
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{'label': '4小时', 'value': '4h'},
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{'label': '1天', 'value': '1d'}
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],
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value='1h',
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className="form-select"
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)
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], className="col-md-2"),
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html.Div([
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html.Label("数据数量:"),
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dcc.Slider(
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id='limit-slider',
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min=100,
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max=1000,
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step=50,
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value=500,
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marks={i: str(i) for i in range(100, 1001, 200)},
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className="mb-3"
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)
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], className="col-md-2"),
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html.Div([
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html.Label("基础分型强度:"),
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dcc.Slider(
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id='fractal-strength-slider',
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min=1,
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max=5,
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step=1,
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value=1,
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marks={i: str(i) for i in range(1, 6)},
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className="mb-3"
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)
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], className="col-md-2"),
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html.Div([
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html.Label("增强强度过滤:"),
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dcc.Slider(
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id='enhanced-strength-filter',
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min=0,
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max=100,
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step=10,
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value=0,
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marks={i: str(i) for i in range(0, 101, 20)},
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className="mb-3"
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)
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], className="col-md-2"),
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html.Div([
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html.Label("显示级别:"),
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dcc.Dropdown(
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id='display-level-dropdown',
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options=[
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{'label': '全部分型', 'value': 'all'},
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{'label': '仅强势(≥70分)', 'value': 'strong'},
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{'label': '中等以上(≥40分)', 'value': 'medium_plus'},
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{'label': '自定义过滤', 'value': 'custom'}
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],
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value='all',
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className="form-select"
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)
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], className="col-md-2")
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], className="row mb-4"),
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# 按钮组
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html.Div([
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html.Button("获取数据并分析", id="analyze-btn",
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className="btn btn-primary me-2"),
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html.Button("刷新数据", id="refresh-btn",
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className="btn btn-secondary me-2"),
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html.Button("导出结果", id="export-btn",
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className="btn btn-success"),
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], className="text-center mb-4"),
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# 加载状态
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dcc.Loading(
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id="loading",
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children=[
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# 主图表
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html.Div([
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dcc.Graph(id='main-chart', style={'height': '800px'})
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], className="mb-4"),
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# 统计信息
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html.Div([
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html.H3("分析统计", className="mb-3"),
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html.Div(id='statistics-content')
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], className="mb-4"),
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# 市场结构
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html.Div([
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html.H3("当前市场结构", className="mb-3"),
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html.Div(id='market-structure-content')
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], className="mb-4"),
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# 最新信号
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html.Div([
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html.H3("最新买卖点信号", className="mb-3"),
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html.Div(id='latest-signals-content')
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])
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]
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),
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# 存储数据
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dcc.Store(id='analysis-data'),
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dcc.Store(id='market-structure-data')
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], className="container-fluid p-4")
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# 回调函数
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@app.callback(
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[Output('analysis-data', 'data'),
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Output('market-structure-data', 'data')],
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[Input('analyze-btn', 'n_clicks'),
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Input('refresh-btn', 'n_clicks')],
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[State('symbol-dropdown', 'value'),
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State('timeframe-dropdown', 'value'),
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State('limit-slider', 'value'),
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State('fractal-strength-slider', 'value'),
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State('enhanced-strength-filter', 'value'),
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State('display-level-dropdown', 'value')]
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)
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def analyze_data(analyze_clicks, refresh_clicks, symbol, timeframe, limit, fractal_strength, enhanced_strength_filter, display_level):
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if not analyze_clicks and not refresh_clicks:
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return None, None
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try:
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# 获取数据
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fetcher = DataFetcher()
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df = fetcher.fetch_klines(symbol=symbol, timeframe=timeframe, limit=limit)
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if df.empty:
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return None, None
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# 进行缠论分析 - 使用正确的初始化方式
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analyzer = ChanAnalyzer(df) # 传入原始DataFrame
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result = analyzer.run_full_analysis(fractal_strength=fractal_strength)
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# 重置索引,确保timestamp列存在,避免列名重复
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df_reset = df.reset_index()
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if 'timestamp' in df_reset.columns:
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df_reset = df_reset.drop(columns=['timestamp']) # 删除可能重复的timestamp列
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df_reset.rename(columns={'datetime': 'timestamp'}, inplace=True)
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# 获取缠论分析的详细结果
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fractals_data = []
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if hasattr(analyzer, 'fractals') and analyzer.fractals:
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for f in analyzer.fractals:
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fractals_data.append({
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'timestamp': f.timestamp.isoformat() if hasattr(f.timestamp, 'isoformat') else str(f.timestamp),
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'price': float(f.price),
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'type': f.fractal_type,
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'strength': f.strength,
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'enhanced_strength': getattr(f, 'enhanced_strength', 0),
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'price_dominance': getattr(f, 'price_dominance', 0),
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'volume_strength': getattr(f, 'volume_strength', 0),
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'trend_position': getattr(f, 'trend_position', 0)
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})
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strokes_data = []
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if hasattr(analyzer, 'strokes') and analyzer.strokes:
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for s in analyzer.strokes:
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strokes_data.append({
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'start_time': s.start_fractal.timestamp.isoformat() if hasattr(s.start_fractal.timestamp, 'isoformat') else str(s.start_fractal.timestamp),
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'end_time': s.end_fractal.timestamp.isoformat() if hasattr(s.end_fractal.timestamp, 'isoformat') else str(s.end_fractal.timestamp),
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'start_price': float(s.start_fractal.price),
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'end_price': float(s.end_fractal.price),
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'direction': s.direction
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})
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central_banks_data = []
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if hasattr(analyzer, 'central_banks') and analyzer.central_banks:
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for cb in analyzer.central_banks:
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central_banks_data.append({
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'start_time': cb.start_time.isoformat() if hasattr(cb.start_time, 'isoformat') else str(cb.start_time),
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'end_time': cb.end_time.isoformat() if hasattr(cb.end_time, 'isoformat') else str(cb.end_time),
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'high_price': float(cb.high_price),
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'low_price': float(cb.low_price),
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'center_price': float(cb.center_price)
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})
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trading_points_data = []
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if hasattr(analyzer, 'trading_points') and analyzer.trading_points:
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for tp in analyzer.trading_points:
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trading_points_data.append({
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'timestamp': tp.timestamp.isoformat() if hasattr(tp.timestamp, 'isoformat') else str(tp.timestamp),
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'price': float(tp.price),
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'signal_type': tp.signal_type,
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'point_class': tp.point_class,
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'description': tp.description
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})
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# 序列化分析结果为简单的字典格式
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analysis_data = {
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'df': df_reset.to_dict('records'),
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'fractals': fractals_data,
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'strokes': strokes_data,
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'central_banks': central_banks_data,
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'trading_points': trading_points_data,
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'processed_klines_count': result['data_info']['processed_klines'],
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'fractals_count': result['fractal_info']['total'],
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'strokes_count': result['stroke_info']['total'],
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'segments_count': result['segment_info']['total'],
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'central_banks_count': result['central_bank_info']['total'],
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'trading_points_count': result['trading_signal_info']['total'],
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'symbol': symbol,
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'timeframe': timeframe
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}
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# 市场结构数据
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market_data = {
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'latest_price': float(df['close'].iloc[-1]) if not df.empty else 0,
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'price_change': float(df['close'].iloc[-1] - df['close'].iloc[0]) if len(df) > 1 else 0,
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'volume_avg': float(df['volume'].mean()) if not df.empty else 0,
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'high_24h': float(df['high'].max()) if not df.empty else 0,
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'low_24h': float(df['low'].min()) if not df.empty else 0
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}
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return analysis_data, market_data
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except Exception as e:
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print(f"分析数据时出错: {str(e)}")
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return None, None
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@app.callback(
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Output('main-chart', 'figure'),
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[Input('analysis-data', 'data'),
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Input('enhanced-strength-filter', 'value'),
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Input('display-level-dropdown', 'value')]
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)
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def update_main_chart(analysis_data, enhanced_strength_filter, display_level):
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if not analysis_data or not analysis_data.get('df'):
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return go.Figure()
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# 从数据创建基本K线图
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df_records = analysis_data['df']
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df = pd.DataFrame(df_records)
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df['timestamp'] = pd.to_datetime(df['timestamp'])
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fig = go.Figure()
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# 添加K线图
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fig.add_trace(go.Candlestick(
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x=df['timestamp'],
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open=df['open'],
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high=df['high'],
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low=df['low'],
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close=df['close'],
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name="K线"
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))
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# 添加分型点(带过滤功能)
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if analysis_data.get('fractals'):
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fractals = analysis_data['fractals']
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# 根据显示级别和增强强度过滤分型
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filtered_fractals = []
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for f in fractals:
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enhanced_strength = f.get('enhanced_strength', 0)
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# 应用显示级别过滤
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if display_level == 'strong' and enhanced_strength < 70:
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continue
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elif display_level == 'medium_plus' and enhanced_strength < 40:
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continue
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elif display_level == 'custom' and enhanced_strength < enhanced_strength_filter:
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continue
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filtered_fractals.append(f)
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top_fractals = [f for f in filtered_fractals if f['type'] == 'top']
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bottom_fractals = [f for f in filtered_fractals if f['type'] == 'bottom']
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if top_fractals:
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# 根据增强强度确定大小和颜色
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sizes = [max(8, min(f.get('enhanced_strength', 30) / 5, 20)) for f in top_fractals]
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colors = [f'rgba(255, {max(0, 255 - int(f.get("enhanced_strength", 30) * 2))}, 0, 0.8)' for f in top_fractals]
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fig.add_trace(go.Scatter(
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x=[pd.to_datetime(f['timestamp']) for f in top_fractals],
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y=[f['price'] for f in top_fractals],
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mode='markers',
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marker=dict(
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symbol='triangle-down',
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size=sizes,
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color=colors,
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line=dict(color='darkred', width=1)
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),
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name=f'顶分型({len(top_fractals)}个)',
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hovertemplate=('顶分型<br>'
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'时间: %{x}<br>'
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'价格: %{y:.2f}<br>'
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'基础强度: %{customdata[0]}<br>'
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'增强强度: %{customdata[1]:.1f}<br>'
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'价格优势: %{customdata[2]:.1f}<br>'
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'成交量强度: %{customdata[3]:.1f}<br>'
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'趋势位置: %{customdata[4]:.1f}<extra></extra>'),
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customdata=[[f['strength'],
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f.get('enhanced_strength', 0),
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f.get('price_dominance', 0),
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f.get('volume_strength', 0),
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f.get('trend_position', 0)] for f in top_fractals]
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))
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if bottom_fractals:
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# 根据增强强度确定大小和颜色
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sizes = [max(8, min(f.get('enhanced_strength', 30) / 5, 20)) for f in bottom_fractals]
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colors = [f'rgba(0, {max(100, 255 - int(f.get("enhanced_strength", 30) * 1.5))}, 0, 0.8)' for f in bottom_fractals]
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fig.add_trace(go.Scatter(
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x=[pd.to_datetime(f['timestamp']) for f in bottom_fractals],
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y=[f['price'] for f in bottom_fractals],
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mode='markers',
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marker=dict(
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symbol='triangle-up',
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size=sizes,
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color=colors,
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line=dict(color='darkgreen', width=1)
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),
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name=f'底分型({len(bottom_fractals)}个)',
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hovertemplate=('底分型<br>'
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'时间: %{x}<br>'
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'价格: %{y:.2f}<br>'
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'基础强度: %{customdata[0]}<br>'
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'增强强度: %{customdata[1]:.1f}<br>'
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'价格优势: %{customdata[2]:.1f}<br>'
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'成交量强度: %{customdata[3]:.1f}<br>'
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'趋势位置: %{customdata[4]:.1f}<extra></extra>'),
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customdata=[[f['strength'],
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f.get('enhanced_strength', 0),
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f.get('price_dominance', 0),
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f.get('volume_strength', 0),
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f.get('trend_position', 0)] for f in bottom_fractals]
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))
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# 添加笔
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if analysis_data.get('strokes'):
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strokes = analysis_data['strokes']
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for i, stroke in enumerate(strokes):
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color = 'blue' if stroke['direction'] == 1 else 'purple'
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fig.add_trace(go.Scatter(
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x=[pd.to_datetime(stroke['start_time']), pd.to_datetime(stroke['end_time'])],
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y=[stroke['start_price'], stroke['end_price']],
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mode='lines',
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line=dict(color=color, width=2),
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name='笔' if i == 0 else None,
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showlegend=(i == 0),
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hovertemplate=f'笔 {"↗" if stroke["direction"] == 1 else "↘"}<br>起点: %{{x[0]}}<br>终点: %{{x[1]}}<br>价格变化: {stroke["end_price"] - stroke["start_price"]:.2f}<extra></extra>'
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))
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# 添加中枢
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if analysis_data.get('central_banks'):
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central_banks = analysis_data['central_banks']
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for i, cb in enumerate(central_banks):
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# 中枢区域用矩形表示
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fig.add_shape(
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type="rect",
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x0=pd.to_datetime(cb['start_time']),
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x1=pd.to_datetime(cb['end_time']),
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y0=cb['low_price'],
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y1=cb['high_price'],
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fillcolor="yellow",
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opacity=0.3,
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line=dict(color="orange", width=2),
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layer="below"
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)
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# 中枢中轴线
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fig.add_trace(go.Scatter(
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x=[pd.to_datetime(cb['start_time']), pd.to_datetime(cb['end_time'])],
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y=[cb['center_price'], cb['center_price']],
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mode='lines',
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line=dict(color='orange', width=2, dash='dash'),
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name='中枢' if i == 0 else None,
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showlegend=(i == 0),
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hovertemplate=f'中枢<br>高点: {cb["high_price"]:.2f}<br>低点: {cb["low_price"]:.2f}<br>中轴: {cb["center_price"]:.2f}<extra></extra>'
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))
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# 添加买卖点
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if analysis_data.get('trading_points'):
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trading_points = analysis_data['trading_points']
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buy_points = [tp for tp in trading_points if tp['signal_type'] == 'buy']
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sell_points = [tp for tp in trading_points if tp['signal_type'] == 'sell']
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if buy_points:
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colors = {'first': 'lime', 'second': 'lightgreen', 'third': 'lightblue'}
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for point_class in ['first', 'second', 'third']:
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class_points = [tp for tp in buy_points if tp['point_class'] == point_class]
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if class_points:
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fig.add_trace(go.Scatter(
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x=[pd.to_datetime(tp['timestamp']) for tp in class_points],
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y=[tp['price'] for tp in class_points],
|
|
mode='markers',
|
|
marker=dict(
|
|
symbol='arrow-up',
|
|
size=15,
|
|
color=colors.get(point_class, 'lime'),
|
|
line=dict(color='darkgreen', width=2)
|
|
),
|
|
name=f'{point_class[0].upper() + point_class[1:]}类买点',
|
|
hovertemplate='%{fullData.name}<br>时间: %{x}<br>价格: %{y:.2f}<br>描述: %{customdata}<extra></extra>',
|
|
customdata=[tp['description'] for tp in class_points]
|
|
))
|
|
|
|
if sell_points:
|
|
colors = {'first': 'red', 'second': 'lightcoral', 'third': 'pink'}
|
|
for point_class in ['first', 'second', 'third']:
|
|
class_points = [tp for tp in sell_points if tp['point_class'] == point_class]
|
|
if class_points:
|
|
fig.add_trace(go.Scatter(
|
|
x=[pd.to_datetime(tp['timestamp']) for tp in class_points],
|
|
y=[tp['price'] for tp in class_points],
|
|
mode='markers',
|
|
marker=dict(
|
|
symbol='arrow-down',
|
|
size=15,
|
|
color=colors.get(point_class, 'red'),
|
|
line=dict(color='darkred', width=2)
|
|
),
|
|
name=f'{point_class[0].upper() + point_class[1:]}类卖点',
|
|
hovertemplate='%{fullData.name}<br>时间: %{x}<br>价格: %{y:.2f}<br>描述: %{customdata}<extra></extra>',
|
|
customdata=[tp['description'] for tp in class_points]
|
|
))
|
|
|
|
fig.update_layout(
|
|
title=f"{analysis_data['symbol']} {analysis_data['timeframe']} 缠论分析图",
|
|
xaxis_title="时间",
|
|
yaxis_title="价格",
|
|
height=700,
|
|
xaxis_rangeslider_visible=False,
|
|
hovermode='x unified'
|
|
)
|
|
|
|
return fig
|
|
|
|
@app.callback(
|
|
Output('statistics-content', 'children'),
|
|
[Input('analysis-data', 'data'),
|
|
Input('enhanced-strength-filter', 'value'),
|
|
Input('display-level-dropdown', 'value')]
|
|
)
|
|
def update_statistics(analysis_data, enhanced_strength_filter, display_level):
|
|
if not analysis_data:
|
|
return "暂无数据"
|
|
|
|
# 基础统计
|
|
basic_stats = html.Div([
|
|
html.H5("📊 基础统计"),
|
|
html.P(f"交易对: {analysis_data.get('symbol', 'N/A')}"),
|
|
html.P(f"时间周期: {analysis_data.get('timeframe', 'N/A')}"),
|
|
html.P(f"处理后K线数量: {analysis_data.get('processed_klines_count', 0)}"),
|
|
html.P(f"笔数量: {analysis_data.get('strokes_count', 0)}"),
|
|
html.P(f"线段数量: {analysis_data.get('segments_count', 0)}"),
|
|
html.P(f"中枢数量: {analysis_data.get('central_banks_count', 0)}"),
|
|
html.P(f"买卖点数量: {analysis_data.get('trading_points_count', 0)}")
|
|
])
|
|
|
|
# 分型强度统计
|
|
fractals = analysis_data.get('fractals', [])
|
|
if fractals:
|
|
# 计算强度分布
|
|
strong_fractals = [f for f in fractals if f.get('enhanced_strength', 0) >= 70]
|
|
medium_fractals = [f for f in fractals if 40 <= f.get('enhanced_strength', 0) < 70]
|
|
weak_fractals = [f for f in fractals if f.get('enhanced_strength', 0) < 40]
|
|
|
|
# 根据当前过滤条件计算显示的分型
|
|
filtered_fractals = []
|
|
for f in fractals:
|
|
enhanced_strength = f.get('enhanced_strength', 0)
|
|
if display_level == 'strong' and enhanced_strength < 70:
|
|
continue
|
|
elif display_level == 'medium_plus' and enhanced_strength < 40:
|
|
continue
|
|
elif display_level == 'custom' and enhanced_strength < enhanced_strength_filter:
|
|
continue
|
|
filtered_fractals.append(f)
|
|
|
|
# 平均强度
|
|
avg_enhanced = sum(f.get('enhanced_strength', 0) for f in fractals) / len(fractals) if fractals else 0
|
|
avg_price_dom = sum(f.get('price_dominance', 0) for f in fractals) / len(fractals) if fractals else 0
|
|
avg_volume = sum(f.get('volume_strength', 0) for f in fractals) / len(fractals) if fractals else 0
|
|
avg_trend = sum(f.get('trend_position', 0) for f in fractals) / len(fractals) if fractals else 0
|
|
|
|
fractal_stats = html.Div([
|
|
html.H5("🔥 分型强度分析"),
|
|
html.P(f"总分型数: {len(fractals)} 个"),
|
|
html.P(f"强势分型(≥70分): {len(strong_fractals)} 个"),
|
|
html.P(f"中等分型(40-70分): {len(medium_fractals)} 个"),
|
|
html.P(f"弱势分型(<40分): {len(weak_fractals)} 个"),
|
|
html.Hr(),
|
|
html.P(f"平均增强强度: {avg_enhanced:.1f}分"),
|
|
html.P(f"平均价格优势: {avg_price_dom:.1f}分"),
|
|
html.P(f"平均成交量强度: {avg_volume:.1f}分"),
|
|
html.P(f"平均趋势位置: {avg_trend:.1f}分"),
|
|
html.Hr(),
|
|
html.P(f"🎯 当前显示: {len(filtered_fractals)} 个分型"),
|
|
html.P(f"过滤级别: {display_level}", className="text-muted"),
|
|
html.P(f"过滤阈值: {enhanced_strength_filter}分", className="text-muted") if display_level == 'custom' else ""
|
|
])
|
|
|
|
return html.Div([basic_stats, html.Hr(), fractal_stats])
|
|
else:
|
|
return basic_stats
|
|
|
|
@app.callback(
|
|
Output('market-structure-content', 'children'),
|
|
[Input('market-structure-data', 'data')]
|
|
)
|
|
def update_market_structure(market_data):
|
|
if not market_data:
|
|
return "暂无市场数据"
|
|
|
|
latest_price = market_data.get('latest_price', 0)
|
|
price_change = market_data.get('price_change', 0)
|
|
change_percent = (price_change / (latest_price - price_change)) * 100 if (latest_price - price_change) != 0 else 0
|
|
|
|
return html.Div([
|
|
html.H4("市场结构"),
|
|
html.P(f"当前价格: ${latest_price:.2f}"),
|
|
html.P(f"价格变化: ${price_change:.2f} ({change_percent:+.2f}%)"),
|
|
html.P(f"24小时最高: ${market_data.get('high_24h', 0):.2f}"),
|
|
html.P(f"24小时最低: ${market_data.get('low_24h', 0):.2f}"),
|
|
html.P(f"平均成交量: {market_data.get('volume_avg', 0):.2f}")
|
|
])
|
|
|
|
@app.callback(
|
|
Output('latest-signals-content', 'children'),
|
|
[Input('analysis-data', 'data')]
|
|
)
|
|
def update_latest_signals(analysis_data):
|
|
if not analysis_data:
|
|
return "暂无信号数据"
|
|
|
|
trading_points_count = analysis_data.get('trading_points_count', 0)
|
|
|
|
return html.Div([
|
|
html.H4("最新信号"),
|
|
html.P(f"检测到 {trading_points_count} 个买卖点信号"),
|
|
html.P("详细信号分析请查看主图表标记")
|
|
])
|
|
|
|
return app
|
|
|
|
|
|
# 添加CSS样式
|
|
external_stylesheets = [
|
|
'https://cdn.jsdelivr.net/npm/bootstrap@5.1.3/dist/css/bootstrap.min.css'
|
|
]
|
|
|
|
|
|
def run_app(debug=True, port=8050):
|
|
"""运行Web应用"""
|
|
app = create_app()
|
|
app.run(debug=debug, port=port, host='0.0.0.0') |