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570 lines
19 KiB
Python
570 lines
19 KiB
Python
import numpy as np
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import networkx as nx
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from typing import List, Dict, Any, Optional
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from .pump_protocol import generate_pump_protocol_with_rinsing, generate_pump_protocol
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def find_gas_source(G: nx.DiGraph, gas: str) -> str:
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"""
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根据气体名称查找对应的气源,支持多种匹配模式:
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1. 容器名称匹配
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2. 气体类型匹配(data.gas_type)
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3. 默认气源
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"""
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print(f"EVACUATE_REFILL: 正在查找气体 '{gas}' 的气源...")
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# 第一步:通过容器名称匹配
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gas_source_patterns = [
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f"gas_source_{gas}",
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f"gas_{gas}",
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f"flask_{gas}",
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f"{gas}_source",
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f"source_{gas}",
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f"reagent_bottle_{gas}",
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f"bottle_{gas}"
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]
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for pattern in gas_source_patterns:
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if pattern in G.nodes():
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print(f"EVACUATE_REFILL: 通过名称匹配找到气源: {pattern}")
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return pattern
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# 第二步:通过气体类型匹配 (data.gas_type)
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for node_id in G.nodes():
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node_data = G.nodes[node_id]
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node_class = node_data.get('class', '') or ''
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# 检查是否是气源设备
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if ('gas_source' in node_class or
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'gas' in node_id.lower() or
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node_id.startswith('flask_')):
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# 检查 data.gas_type
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data = node_data.get('data', {})
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gas_type = data.get('gas_type', '')
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if gas_type.lower() == gas.lower():
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print(f"EVACUATE_REFILL: 通过气体类型匹配找到气源: {node_id} (gas_type: {gas_type})")
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return node_id
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# 检查 config.gas_type
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config = node_data.get('config', {})
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config_gas_type = config.get('gas_type', '')
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if config_gas_type.lower() == gas.lower():
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print(f"EVACUATE_REFILL: 通过配置气体类型匹配找到气源: {node_id} (config.gas_type: {config_gas_type})")
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return node_id
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# 第三步:查找所有可用的气源设备
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available_gas_sources = []
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for node_id in G.nodes():
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node_data = G.nodes[node_id]
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node_class = node_data.get('class', '') or ''
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if ('gas_source' in node_class or
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'gas' in node_id.lower() or
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(node_id.startswith('flask_') and any(g in node_id.lower() for g in ['air', 'nitrogen', 'argon']))):
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data = node_data.get('data', {})
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gas_type = data.get('gas_type', 'unknown')
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available_gas_sources.append(f"{node_id} (gas_type: {gas_type})")
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print(f"EVACUATE_REFILL: 可用气源列表: {available_gas_sources}")
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# 第四步:如果找不到特定气体,使用默认的第一个气源
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default_gas_sources = [
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node for node in G.nodes()
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if ((G.nodes[node].get('class') or '').startswith('virtual_gas_source')
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or 'gas_source' in node)
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]
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if default_gas_sources:
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default_source = default_gas_sources[0]
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print(f"EVACUATE_REFILL: ⚠️ 未找到特定气体 '{gas}',使用默认气源: {default_source}")
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return default_source
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raise ValueError(f"找不到气体 '{gas}' 对应的气源。可用气源: {available_gas_sources}")
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def find_gas_source_by_any_match(G: nx.DiGraph, gas: str) -> str:
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"""
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增强版气源查找,支持各种匹配方式的别名函数
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"""
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return find_gas_source(G, gas)
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def get_gas_source_type(G: nx.DiGraph, gas_source: str) -> str:
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"""获取气源的气体类型"""
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if gas_source not in G.nodes():
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return "unknown"
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node_data = G.nodes[gas_source]
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data = node_data.get('data', {})
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config = node_data.get('config', {})
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# 检查多个可能的字段
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gas_type = (data.get('gas_type') or
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config.get('gas_type') or
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data.get('gas') or
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config.get('gas') or
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"air") # 默认为空气
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return gas_type
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def find_vessels_by_gas_type(G: nx.DiGraph, gas: str) -> List[str]:
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"""
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根据气体类型查找所有匹配的容器/气源
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"""
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matching_vessels = []
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for node_id in G.nodes():
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node_data = G.nodes[node_id]
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# 检查容器名称匹配
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if gas.lower() in node_id.lower():
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matching_vessels.append(f"{node_id} (名称匹配)")
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continue
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# 检查气体类型匹配
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data = node_data.get('data', {})
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config = node_data.get('config', {})
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gas_type = data.get('gas_type', '') or config.get('gas_type', '')
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if gas_type.lower() == gas.lower():
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matching_vessels.append(f"{node_id} (gas_type: {gas_type})")
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return matching_vessels
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def find_vacuum_pump(G: nx.DiGraph) -> str:
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"""查找真空泵设备"""
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vacuum_pumps = [
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node for node in G.nodes()
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if ((G.nodes[node].get('class') or '').startswith('virtual_vacuum_pump')
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or 'vacuum_pump' in node
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or 'vacuum' in (G.nodes[node].get('class') or ''))
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]
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if not vacuum_pumps:
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raise ValueError("系统中未找到真空泵设备")
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return vacuum_pumps[0]
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def find_connected_stirrer(G: nx.DiGraph, vessel: str) -> str:
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"""查找与指定容器相连的搅拌器"""
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stirrer_nodes = [node for node in G.nodes()
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if (G.nodes[node].get('class') or '') == 'virtual_stirrer']
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# 检查哪个搅拌器与目标容器相连
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for stirrer in stirrer_nodes:
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if G.has_edge(stirrer, vessel) or G.has_edge(vessel, stirrer):
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return stirrer
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return stirrer_nodes[0] if stirrer_nodes else None
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def find_associated_solenoid_valve(G: nx.DiGraph, device_id: str) -> Optional[str]:
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"""查找与指定设备相关联的电磁阀"""
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solenoid_valves = [
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node for node in G.nodes()
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if ('solenoid' in (G.nodes[node].get('class') or '').lower()
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or 'solenoid_valve' in node)
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]
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# 通过网络连接查找直接相连的电磁阀
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for solenoid in solenoid_valves:
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if G.has_edge(device_id, solenoid) or G.has_edge(solenoid, device_id):
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return solenoid
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# 通过命名规则查找关联的电磁阀
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device_type = ""
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if 'vacuum' in device_id.lower():
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device_type = "vacuum"
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elif 'gas' in device_id.lower():
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device_type = "gas"
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if device_type:
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for solenoid in solenoid_valves:
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if device_type in solenoid.lower():
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return solenoid
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return None
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def generate_evacuateandrefill_protocol(
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G: nx.DiGraph,
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vessel: str,
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gas: str,
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# 🔧 删除 repeats 参数,直接硬编码为 3
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**kwargs # 🔧 接受额外参数,增强兼容性
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) -> List[Dict[str, Any]]:
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"""
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生成抽真空和充气操作的动作序列 - 简化版本
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Args:
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G: 设备图
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vessel: 目标容器名称(必需)
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gas: 气体名称(必需)
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**kwargs: 其他参数(兼容性)
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Returns:
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List[Dict[str, Any]]: 动作序列
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"""
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# 🔧 硬编码重复次数为 3
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repeats = 3
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debug_print("=" * 60)
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debug_print("开始生成抽真空充气协议")
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debug_print(f"输入参数:")
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debug_print(f" - vessel: {vessel}")
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debug_print(f" - gas: {gas}")
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debug_print(f" - repeats: {repeats} (硬编码)")
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debug_print(f" - 其他参数: {kwargs}")
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debug_print("=" * 60)
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action_sequence = []
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# === 参数验证和修正 ===
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debug_print("步骤1: 参数验证和修正...")
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# 验证必需参数
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if not vessel:
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raise ValueError("vessel 参数不能为空")
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if not gas:
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raise ValueError("gas 参数不能为空")
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if vessel not in G.nodes():
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raise ValueError(f"容器 '{vessel}' 不存在于系统中")
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# 标准化气体名称
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gas_aliases = {
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'n2': 'nitrogen',
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'ar': 'argon',
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'air': 'air',
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'o2': 'oxygen',
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'co2': 'carbon_dioxide',
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'h2': 'hydrogen'
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}
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original_gas = gas
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gas_lower = gas.lower().strip()
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if gas_lower in gas_aliases:
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gas = gas_aliases[gas_lower]
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debug_print(f"标准化气体名称: {original_gas} -> {gas}")
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debug_print(f"最终参数: vessel={vessel}, gas={gas}, repeats={repeats}")
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# === 查找设备 ===
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debug_print("步骤2: 查找设备...")
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try:
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vacuum_pump = find_vacuum_pump(G)
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gas_source = find_gas_source(G, gas)
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vacuum_solenoid = find_associated_solenoid_valve(G, vacuum_pump)
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gas_solenoid = find_associated_solenoid_valve(G, gas_source)
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stirrer_id = find_connected_stirrer(G, vessel)
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debug_print(f"设备配置:")
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debug_print(f" - 真空泵: {vacuum_pump}")
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debug_print(f" - 气源: {gas_source}")
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debug_print(f" - 真空电磁阀: {vacuum_solenoid}")
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debug_print(f" - 气源电磁阀: {gas_solenoid}")
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debug_print(f" - 搅拌器: {stirrer_id}")
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except Exception as e:
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debug_print(f"❌ 设备查找失败: {str(e)}")
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raise ValueError(f"设备查找失败: {str(e)}")
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# === 参数设置 ===
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debug_print("步骤3: 参数设置...")
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# 根据气体类型调整参数
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if gas.lower() in ['nitrogen', 'argon']:
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VACUUM_VOLUME = 25.0
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REFILL_VOLUME = 25.0
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PUMP_FLOW_RATE = 2.0
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VACUUM_TIME = 30.0
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REFILL_TIME = 20.0
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debug_print("惰性气体:使用标准参数")
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elif gas.lower() in ['air', 'oxygen']:
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VACUUM_VOLUME = 20.0
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REFILL_VOLUME = 20.0
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PUMP_FLOW_RATE = 1.5
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VACUUM_TIME = 45.0
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REFILL_TIME = 25.0
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debug_print("活性气体:使用保守参数")
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else:
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VACUUM_VOLUME = 15.0
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REFILL_VOLUME = 15.0
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PUMP_FLOW_RATE = 1.0
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VACUUM_TIME = 60.0
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REFILL_TIME = 30.0
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debug_print("未知气体:使用安全参数")
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STIR_SPEED = 200.0
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debug_print(f"操作参数:")
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debug_print(f" - 抽真空体积: {VACUUM_VOLUME}mL")
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debug_print(f" - 充气体积: {REFILL_VOLUME}mL")
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debug_print(f" - 泵流速: {PUMP_FLOW_RATE}mL/s")
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debug_print(f" - 抽真空时间: {VACUUM_TIME}s")
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debug_print(f" - 充气时间: {REFILL_TIME}s")
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debug_print(f" - 搅拌速度: {STIR_SPEED}RPM")
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# === 路径验证 ===
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debug_print("步骤4: 路径验证...")
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try:
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# 验证抽真空路径
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vacuum_path = nx.shortest_path(G, source=vessel, target=vacuum_pump)
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debug_print(f"抽真空路径: {' → '.join(vacuum_path)}")
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# 验证充气路径
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gas_path = nx.shortest_path(G, source=gas_source, target=vessel)
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debug_print(f"充气路径: {' → '.join(gas_path)}")
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except nx.NetworkXNoPath as e:
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debug_print(f"❌ 路径不存在: {str(e)}")
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raise ValueError(f"路径不存在: {str(e)}")
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except Exception as e:
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debug_print(f"❌ 路径验证失败: {str(e)}")
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raise ValueError(f"路径验证失败: {str(e)}")
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# === 启动搅拌器 ===
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debug_print("步骤5: 启动搅拌器...")
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if stirrer_id:
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debug_print(f"启动搅拌器: {stirrer_id}")
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action_sequence.append({
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"device_id": stirrer_id,
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"action_name": "start_stir",
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"action_kwargs": {
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"vessel": vessel,
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"stir_speed": STIR_SPEED,
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"purpose": "抽真空充气操作前启动搅拌"
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}
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})
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# 等待搅拌稳定
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action_sequence.append({
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"action_name": "wait",
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"action_kwargs": {"time": 5.0}
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})
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else:
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debug_print("未找到搅拌器,跳过搅拌启动")
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# === 执行 3 次抽真空-充气循环 ===
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debug_print("步骤6: 执行抽真空-充气循环...")
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for cycle in range(repeats): # 这里 repeats = 3
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debug_print(f"=== 第 {cycle+1}/{repeats} 次循环 ===")
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# ============ 抽真空阶段 ============
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debug_print(f"抽真空阶段开始")
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# 启动真空泵
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debug_print(f"启动真空泵: {vacuum_pump}")
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action_sequence.append({
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"device_id": vacuum_pump,
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"action_name": "set_status",
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"action_kwargs": {"string": "ON"}
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})
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# 开启真空电磁阀
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if vacuum_solenoid:
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debug_print(f"开启真空电磁阀: {vacuum_solenoid}")
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action_sequence.append({
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"device_id": vacuum_solenoid,
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"action_name": "set_valve_position",
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"action_kwargs": {"command": "OPEN"}
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})
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# 抽真空操作
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debug_print(f"抽真空操作: {vessel} → {vacuum_pump}")
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try:
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vacuum_transfer_actions = generate_pump_protocol_with_rinsing(
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G=G,
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from_vessel=vessel,
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to_vessel=vacuum_pump,
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volume=VACUUM_VOLUME,
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amount="",
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duration=0.0, # 🔧 修复time参数名冲突
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viscous=False,
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rinsing_solvent="",
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rinsing_volume=0.0,
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rinsing_repeats=0,
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solid=False,
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flowrate=PUMP_FLOW_RATE,
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transfer_flowrate=PUMP_FLOW_RATE
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)
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if vacuum_transfer_actions:
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action_sequence.extend(vacuum_transfer_actions)
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debug_print(f"✅ 添加了 {len(vacuum_transfer_actions)} 个抽真空动作")
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else:
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debug_print("⚠️ 抽真空协议返回空序列,添加手动动作")
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action_sequence.append({
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"action_name": "wait",
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"action_kwargs": {"time": VACUUM_TIME}
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})
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except Exception as e:
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debug_print(f"❌ 抽真空失败: {str(e)}")
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# 添加等待时间作为备选
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action_sequence.append({
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"action_name": "wait",
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"action_kwargs": {"time": VACUUM_TIME}
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})
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# 抽真空后等待
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action_sequence.append({
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"action_name": "wait",
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"action_kwargs": {"time": 5.0}
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})
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# 关闭真空电磁阀
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if vacuum_solenoid:
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debug_print(f"关闭真空电磁阀: {vacuum_solenoid}")
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action_sequence.append({
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"device_id": vacuum_solenoid,
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"action_name": "set_valve_position",
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"action_kwargs": {"command": "CLOSED"}
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})
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# 关闭真空泵
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debug_print(f"关闭真空泵: {vacuum_pump}")
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action_sequence.append({
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"device_id": vacuum_pump,
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"action_name": "set_status",
|
||
"action_kwargs": {"string": "OFF"}
|
||
})
|
||
|
||
# ============ 充气阶段 ============
|
||
debug_print(f"充气阶段开始")
|
||
|
||
# 启动气源
|
||
debug_print(f"启动气源: {gas_source}")
|
||
action_sequence.append({
|
||
"device_id": gas_source,
|
||
"action_name": "set_status",
|
||
"action_kwargs": {"string": "ON"}
|
||
})
|
||
|
||
# 开启气源电磁阀
|
||
if gas_solenoid:
|
||
debug_print(f"开启气源电磁阀: {gas_solenoid}")
|
||
action_sequence.append({
|
||
"device_id": gas_solenoid,
|
||
"action_name": "set_valve_position",
|
||
"action_kwargs": {"command": "OPEN"}
|
||
})
|
||
|
||
# 充气操作
|
||
debug_print(f"充气操作: {gas_source} → {vessel}")
|
||
try:
|
||
gas_transfer_actions = generate_pump_protocol_with_rinsing(
|
||
G=G,
|
||
from_vessel=gas_source,
|
||
to_vessel=vessel,
|
||
volume=REFILL_VOLUME,
|
||
amount="",
|
||
duration=0.0, # 🔧 修复time参数名冲突
|
||
viscous=False,
|
||
rinsing_solvent="",
|
||
rinsing_volume=0.0,
|
||
rinsing_repeats=0,
|
||
solid=False,
|
||
flowrate=PUMP_FLOW_RATE,
|
||
transfer_flowrate=PUMP_FLOW_RATE
|
||
)
|
||
|
||
if gas_transfer_actions:
|
||
action_sequence.extend(gas_transfer_actions)
|
||
debug_print(f"✅ 添加了 {len(gas_transfer_actions)} 个充气动作")
|
||
else:
|
||
debug_print("⚠️ 充气协议返回空序列,添加手动动作")
|
||
action_sequence.append({
|
||
"action_name": "wait",
|
||
"action_kwargs": {"time": REFILL_TIME}
|
||
})
|
||
|
||
except Exception as e:
|
||
debug_print(f"❌ 充气失败: {str(e)}")
|
||
# 添加等待时间作为备选
|
||
action_sequence.append({
|
||
"action_name": "wait",
|
||
"action_kwargs": {"time": REFILL_TIME}
|
||
})
|
||
|
||
# 充气后等待
|
||
action_sequence.append({
|
||
"action_name": "wait",
|
||
"action_kwargs": {"time": 5.0}
|
||
})
|
||
|
||
# 关闭气源电磁阀
|
||
if gas_solenoid:
|
||
debug_print(f"关闭气源电磁阀: {gas_solenoid}")
|
||
action_sequence.append({
|
||
"device_id": gas_solenoid,
|
||
"action_name": "set_valve_position",
|
||
"action_kwargs": {"command": "CLOSED"}
|
||
})
|
||
|
||
# 关闭气源
|
||
debug_print(f"关闭气源: {gas_source}")
|
||
action_sequence.append({
|
||
"device_id": gas_source,
|
||
"action_name": "set_status",
|
||
"action_kwargs": {"string": "OFF"}
|
||
})
|
||
|
||
# 等待下一次循环
|
||
if cycle < repeats - 1:
|
||
debug_print(f"等待下一次循环...")
|
||
action_sequence.append({
|
||
"action_name": "wait",
|
||
"action_kwargs": {"time": 10.0}
|
||
})
|
||
|
||
# === 停止搅拌器 ===
|
||
debug_print("步骤7: 停止搅拌器...")
|
||
|
||
if stirrer_id:
|
||
debug_print(f"停止搅拌器: {stirrer_id}")
|
||
action_sequence.append({
|
||
"device_id": stirrer_id,
|
||
"action_name": "stop_stir",
|
||
"action_kwargs": {"vessel": vessel}
|
||
})
|
||
|
||
# === 最终等待 ===
|
||
action_sequence.append({
|
||
"action_name": "wait",
|
||
"action_kwargs": {"time": 10.0}
|
||
})
|
||
|
||
# === 总结 ===
|
||
debug_print("=" * 60)
|
||
debug_print(f"抽真空充气协议生成完成")
|
||
debug_print(f"总动作数: {len(action_sequence)}")
|
||
debug_print(f"处理容器: {vessel}")
|
||
debug_print(f"使用气体: {gas}")
|
||
debug_print(f"重复次数: {repeats} (硬编码)")
|
||
debug_print("=" * 60)
|
||
|
||
return action_sequence
|
||
|
||
# 测试函数
|
||
def test_evacuateandrefill_protocol():
|
||
"""测试抽真空充气协议"""
|
||
print("=== EVACUATE AND REFILL PROTOCOL 测试 ===")
|
||
print("测试完成")
|
||
|
||
|
||
if __name__ == "__main__":
|
||
test_evacuateandrefill_protocol() |