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6 Commits

Author SHA1 Message Date
“hsc”
21cc593d3f Merge branch 'master' of https://git.kaiyili-lab.com/huangsucan/ACP 2026-08-03 13:44:01 +08:00
“hsc”
63af886f26 串口连接修复 2026-08-03 13:07:48 +08:00
“hsc”
2e74627b31 设备类优化 2026-08-03 11:05:26 +08:00
“hsc”
5cfb8af9e4 添加环境箱驱动 2026-08-03 09:18:08 +08:00
“hsc”
ceae6e3421 chroma61800设备添加 2026-07-31 17:28:47 +08:00
“hsc”
e90dc805fc 回读图像功能优化 2026-07-31 09:03:09 +08:00
24 changed files with 525 additions and 1381 deletions

View File

@@ -9,7 +9,6 @@
<ItemGroup> <ItemGroup>
<PackageReference Include="ncalc" Version="1.3.8" /> <PackageReference Include="ncalc" Version="1.3.8" />
<PackageReference Include="Newtonsoft.Json" Version="13.0.5-beta1" /> <PackageReference Include="Newtonsoft.Json" Version="13.0.5-beta1" />
<PackageReference Include="System.IO.Ports" Version="11.0.0-preview.4.26230.115" />
</ItemGroup> </ItemGroup>
</Project> </Project>

View File

@@ -1,5 +1,6 @@
using CurveModule.Views; using CurveModule.Views;
using CurveModule.Views.Dialogs;
using System.Reflection; using System.Reflection;
namespace CurveModule namespace CurveModule
@@ -14,6 +15,7 @@ namespace CurveModule
public void RegisterTypes(IContainerRegistry containerRegistry) public void RegisterTypes(IContainerRegistry containerRegistry)
{ {
containerRegistry.RegisterForNavigation<CurveRecallView>("CurveRecallView"); containerRegistry.RegisterForNavigation<CurveRecallView>("CurveRecallView");
containerRegistry.RegisterForNavigation<CurveStatisticsView>("CurveStatistics");
} }
} }

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@@ -0,0 +1,169 @@
using Common.Attributes;
using DeviceCommand.Base;
using Model.Models;
using System;
using System.Diagnostics;
using System.Globalization;
using System.Linq;
using System.Threading;
using System.Threading.Tasks;
namespace DeviceCommand.Devices
{
/// <summary>
/// 交流源 一拖三
/// </summary>
[ACPCommand]
public class Chroma61800 : Tcp
{
// Chroma SCPI 默认使用 \n 作为结束符
private const string ScpiDelimiter = "\n";
public Chroma61800(TcpConfig config) : base(config)
{
}
#region 1.
public virtual async Task (CancellationToken ct = default)
{
await SendAsync($"*CLS{ScpiDelimiter}", ct);
}
#endregion
#region 2. LIST
/// <summary>
/// 初始化 LIST 模式的三相独立编辑环境
/// </summary>
/// <param name="loopCount">循环次数0代表无限循环</param>
public virtual async Task List模式(int loopCount = 0, CancellationToken ct = default)
{
await SendAsync($"INST:PHAS THRE{ScpiDelimiter}", ct); // 选择三相模式
await SendAsync($"INST:EDIT EACH{ScpiDelimiter}", ct); // 选择编辑电压方式为分别编辑
await SendAsync($"LIST:COUN {loopCount}{ScpiDelimiter}", ct); // 循环次数设定
await SendAsync($"LIST:TRIG AUTO{ScpiDelimiter}", ct); // 设定触发方式
await SendAsync($"LIST:BASE TIME{ScpiDelimiter}", ct); // 选择执行时间类别
}
#endregion
#region 3. LIST
/// <summary>
/// 配置单相的 LIST 序列参数
/// 传入的数组长度必须保持一致,代表 LIST 的每个 StepSEQ
/// </summary>
/// <param name="phase">相位 (1: L1, 2: L2, 3: L3)</param>
/// <param name="degrees">各步起始角度 (如 [0, 0, 0])</param>
/// <param name="vacStart">各步交流起始电压 (如 [230, 11.5, 230])</param>
/// <param name="vacEnd">各步交流结束电压 (如 [230, 11.5, 230])</param>
/// <param name="vdcStart">各步直流起始电压</param>
/// <param name="vdcEnd">各步直流结束电压</param>
/// <param name="freqStart">各步起始频率</param>
/// <param name="freqEnd">各步结束频率</param>
/// <param name="dwellTimeMs">各步执行时间(单位: 毫秒)</param>
public virtual async Task List序列(
int phase,
double[] degrees,
double[] vacStart, double[] vacEnd,
double[] vdcStart, double[] vdcEnd,
double[] freqStart, double[] freqEnd,
double[] dwellTimeMs,
CancellationToken ct = default)
{
if (phase < 1 || phase > 3) throw new ArgumentOutOfRangeException(nameof(phase), "相位必须为 1, 2, 或 3");
// 选择相位并设置为正弦波
await SendAsync($"INST:NSEL {phase}{ScpiDelimiter}", ct);
await SendAsync($"FUNC:SHAP:A SINE{ScpiDelimiter}", ct);
// 转换数组为 SCPI 需要的逗号分隔字符串
string strDegrees = JoinParameters(degrees);
string strVacStart = JoinParameters(vacStart);
string strVacEnd = JoinParameters(vacEnd);
string strVdcStart = JoinParameters(vdcStart);
string strVdcEnd = JoinParameters(vdcEnd);
string strFreqStart = JoinParameters(freqStart);
string strFreqEnd = JoinParameters(freqEnd);
string strDwell = JoinParameters(dwellTimeMs);
// 下发序列参数
// 注意 Chroma 部分指令是 DEGR部分固件版本是 DEGRee这里统一使用简写 DEGR兼容性最好
await SendAsync($"LIST:DEGR {strDegrees}{ScpiDelimiter}", ct);
await SendAsync($"LIST:VOLT:AC:STAR {strVacStart}{ScpiDelimiter}", ct);
await SendAsync($"LIST:VOLT:AC:END {strVacEnd}{ScpiDelimiter}", ct);
await SendAsync($"LIST:VOLT:DC:STAR {strVdcStart}{ScpiDelimiter}", ct);
await SendAsync($"LIST:VOLT:DC:END {strVdcEnd}{ScpiDelimiter}", ct);
await SendAsync($"LIST:FREQ:STAR {strFreqStart}{ScpiDelimiter}", ct);
await SendAsync($"LIST:FREQ:END {strFreqEnd}{ScpiDelimiter}", ct);
await SendAsync($"LIST:DWEL {strDwell}{ScpiDelimiter}", ct);
}
/// <summary>
/// 辅助方法:将 double 数组转换为逗号分隔的字符串,确保小数点格式正确
/// </summary>
private string JoinParameters(double[] values)
{
return string.Join(",", values.Select(v => v.ToString("0.###", CultureInfo.InvariantCulture)));
}
#endregion
#region 4. LIST
/// <summary>
/// 切换到 LIST 模式并触发输出
/// </summary>
public virtual async Task List输出(CancellationToken ct = default)
{
await SendAsync($"OUTP:MODE LIST{ScpiDelimiter}", ct);
await SendAsync($"TRIG ON{ScpiDelimiter}", ct);
}
/// <summary>
/// 查询 LIST 序列是否正在运行
/// </summary>
public virtual async Task<bool> List是否运行中(CancellationToken ct = default)
{
string state = await WriteReadAsync($"TRIG:STATE?{ScpiDelimiter}", ScpiDelimiter, ct);
state = state?.Trim().ToUpper();
return state == "ON" || state == "1";
}
/// <summary>
/// 阻塞异步等待直到 LIST 序列执行完毕 (带安全超时保护)
/// </summary>
/// <param name="timeoutMs">最大等待超时时间建议比实际LIST总时长多5-10秒</param>
public virtual async Task List执行结束(int timeoutMs = 60000, CancellationToken ct = default)
{
// 给仪器留出响应触发的时间
await Task.Delay(500, ct);
Stopwatch sw = Stopwatch.StartNew();
bool isRunning = true;
while (isRunning)
{
ct.ThrowIfCancellationRequested();
if (sw.ElapsedMilliseconds > timeoutMs)
{
throw new TimeoutException($"等待 LIST 执行结束超时 ({timeoutMs} ms)。");
}
// 读取当前状态
isRunning = await List是否运行中(ct);
if (isRunning)
{
// 还在运行,适当休眠后继续轮询,避免总线阻塞
await Task.Delay(500, ct);
}
}
}
#endregion
}
}

View File

@@ -8,6 +8,9 @@ using System.Threading.Tasks;
namespace DeviceCommand.Devices namespace DeviceCommand.Devices
{ {
/// <summary>
/// 信号源 一拖三
/// </summary>
#region #region
/// <summary> /// <summary>

View File

@@ -11,6 +11,9 @@ using System.Threading.Tasks;
namespace DeviceCommand.Devices namespace DeviceCommand.Devices
{ {
/// <summary>
/// IO板卡 一对一由于板卡映射不完全一样采用IOGroup
/// </summary>
//[ACPCommand] //[ACPCommand]
public class IOBoard : ModbusTcp public class IOBoard : ModbusTcp
{ {

View File

@@ -8,7 +8,9 @@ using System.Threading.Tasks;
namespace DeviceCommand.Devices namespace DeviceCommand.Devices
{ {
/// <summary>
/// 低压直流源载一体机 一对一
/// </summary>
[ACPCommand] [ACPCommand]
public class IT6015C : Tcp public class IT6015C : Tcp
{ {

View File

@@ -8,6 +8,9 @@ using System.Threading.Tasks;
namespace DeviceCommand.Devices namespace DeviceCommand.Devices
{ {
/// <summary>
///高压直流源载一体机 一对一
/// </summary>
#region #region
/// <summary> /// <summary>

View File

@@ -9,17 +9,19 @@ using System.Threading.Tasks;
namespace DeviceCommand.Devices namespace DeviceCommand.Devices
{ {
/// <summary>
/// 低压电源 一拖三
/// </summary>
[ACPCommand] [ACPCommand]
public class IT6720: Serial_Port // 直接继承您提供的 Serial_Port 基类 public class IT6720: Serial_Port // 直接继承您提供的 Serial_Port 基类
{ {
// 帧格式:同步头 AA + 地址 + 命令字 + 数据[4-25] + 校验和,共 26 字节 // 帧格式:同步头 AA + 地址 + 命令字 + 数据[4-25] + 校验和,共 26 字节
private const byte FrameSyncByte = 0xAA; private const byte FrameSyncByte = 0xAA;
private const int FrameLength = 26; private const int FrameLength = 26;
private readonly byte _deviceAddress; // 电源地址 private readonly byte _deviceAddress = 0x00; // 电源地址
public IT6720(SerialPortConfig config, byte address = 0x00) : base(config) public IT6720(SerialPortConfig config) : base(config)
{ {
_deviceAddress = address;
} }
#region #region

View File

@@ -1,263 +0,0 @@
using Common.Attributes;
using DeviceCommand.Base;
using Model.Models;
using System;
using System.Globalization;
using System.Threading;
using System.Threading.Tasks;
namespace DeviceCommand.Devices
{
#region
/// <summary>
/// 电源电气/耦合模式
/// </summary>
public enum PowerCouplingMode
{
/// <summary> 纯交流模式 </summary>
AC,
/// <summary> 纯直流模式 </summary>
DC,
/// <summary> 交直流混合模式 </summary>
ACDC,
/// <summary> 直交流混合模式 </summary>
DCAC
}
/// <summary>
/// 设备操作运行角色/模式
/// </summary>
public enum DeviceOperationMode
{
/// <summary> 电压源模式(常规源) </summary>
VOLTage,
/// <summary> 电子负载模式(放电拉载) </summary>
LOAD,
/// <summary> 电流源模式 </summary>
CURRent
}
#endregion
[ACPCommand]
public class IT7800E : Tcp
{
// 八台产品共用一个,使用换行符 \n (ASCII 0x0A) 作为 SCPI 结束符[cite: 1]
private const string ScpiDelimiter = "\n";
public IT7800E(TcpConfig config) : base(config)
{
}
#region 1. IEEE 488.2
public virtual async Task (CancellationToken ct = default)
{
await SendAsync($"*CLS{ScpiDelimiter}", ct); //[cite: 1]
}
public virtual async Task<string> (CancellationToken ct = default)
{
return await WriteReadAsync($"*IDN?{ScpiDelimiter}", ScpiDelimiter, ct); //[cite: 1]
}
public virtual async Task (CancellationToken ct = default)
{
await SendAsync($"*RST{ScpiDelimiter}", ct); //[cite: 1]
}
public virtual async Task<string> (CancellationToken ct = default)
{
return await WriteReadAsync($"*STB?{ScpiDelimiter}", ScpiDelimiter, ct); //[cite: 1]
}
#endregion
#region 2.
/// <summary>
/// 设置电源输出源的电气模式/工作耦合模式 (AC, DC, ACDC, DCAC)[cite: 1]
/// </summary>
public virtual async Task (PowerCouplingMode , CancellationToken ct = default)
{
await SendAsync($":SOURce:FUNCtion {模式}{ScpiDelimiter}", ct); //[cite: 1]
}
/// <summary>
/// 查询电源当前的工作电气模式[cite: 1]
/// </summary>
public virtual async Task<string> (CancellationToken ct = default)
{
return await WriteReadAsync($":SOURce:FUNCtion?{ScpiDelimiter}", ScpiDelimiter, ct); //[cite: 1]
}
public virtual async Task DC输出(bool , CancellationToken ct = default)
{
string = ? "ON" : "OFF"; //[cite: 1]
await SendAsync($":OUTPut {参数}{ScpiDelimiter}", ct); //[cite: 1]
}
public virtual async Task<string> DC输出状态(CancellationToken ct = default)
{
return await WriteReadAsync($":OUTPut?{ScpiDelimiter}", ScpiDelimiter, ct); //[cite: 1]
}
#endregion
#region 3. (AC //DC )
public virtual async Task (double , CancellationToken ct = default)
{
string cmd = string.Format(CultureInfo.InvariantCulture, ":SOURce:VOLTage {0:F2}{1}", , ScpiDelimiter); //[cite: 1]
await SendAsync(cmd, ct);
}
public virtual async Task (double , CancellationToken ct = default)
{
string cmd = string.Format(CultureInfo.InvariantCulture, ":SOURce:VOLTage:DC {0:F2}{1}", , ScpiDelimiter); //[cite: 1]
await SendAsync(cmd, ct);
}
public virtual async Task (double , CancellationToken ct = default)
{
string cmd = string.Format(CultureInfo.InvariantCulture, ":SOURce:FREQuency {0:F2}{1}", , ScpiDelimiter); //[cite: 1]
await SendAsync(cmd, ct);
}
public virtual async Task (double , CancellationToken ct = default)
{
string cmd = string.Format(CultureInfo.InvariantCulture, ":SOURce:CURRent {0:F3}{1}", , ScpiDelimiter); //[cite: 1]
await SendAsync(cmd, ct);
}
#endregion
#region 4.
[Monitorable("交流电源电压")]
public virtual async Task<string> (CancellationToken ct = default)
{
return await WriteReadAsync($":MEASure:VOLTage?{ScpiDelimiter}", ScpiDelimiter, ct); //[cite: 1]
}
[Monitorable("交流电源电流")]
public virtual async Task<string> (CancellationToken ct = default)
{
return await WriteReadAsync($":MEASure:CURRent?{ScpiDelimiter}", ScpiDelimiter, ct); //[cite: 1]
}
[Monitorable("交流电源功率")]
public virtual async Task<string> (CancellationToken ct = default)
{
return await WriteReadAsync($":MEASure:POWer?{ScpiDelimiter}", ScpiDelimiter, ct); //[cite: 1]
}
public virtual async Task<string> (CancellationToken ct = default)
{
return await WriteReadAsync($":MEASure:POWer:APParent?{ScpiDelimiter}", ScpiDelimiter, ct); //[cite: 1]
}
public virtual async Task<string> (CancellationToken ct = default)
{
return await WriteReadAsync($":MEASure:FREQuency?{ScpiDelimiter}", ScpiDelimiter, ct); //[cite: 1]
}
public virtual async Task<string> (CancellationToken ct = default)
{
return await WriteReadAsync($":MEASure:POWer:PFACtor?{ScpiDelimiter}", ScpiDelimiter, ct); //[cite: 1]
}
#endregion
#region 5.
public virtual async Task _OCP(double , CancellationToken ct = default)
{
string cmd = string.Format(CultureInfo.InvariantCulture, ":SOURce:CURRent:PROTection:RMS {0:F3}{1}", , ScpiDelimiter); //[cite: 1]
await SendAsync(cmd, ct);
}
public virtual async Task _OVP(double , CancellationToken ct = default)
{
string cmd = string.Format(CultureInfo.InvariantCulture, ":SOURce:VOLTage:PROTection:PEAK {0:F2}{1}", , ScpiDelimiter); //[cite: 1]
await SendAsync(cmd, ct);
}
public virtual async Task<string> (CancellationToken ct = default)
{
return await WriteReadAsync($":SYSTem:ERRor?{ScpiDelimiter}", ScpiDelimiter, ct); //[cite: 1]
}
public virtual async Task (CancellationToken ct = default)
{
await SendAsync($":SYSTem:REMote{ScpiDelimiter}", ct); //[cite: 1]
}
public virtual async Task (CancellationToken ct = default)
{
await SendAsync($":SYSTem:LOCal{ScpiDelimiter}", ct); //[cite: 1]
}
public virtual async Task (CancellationToken ct = default)
{
await SendAsync($":OUTPut:PROTection:CLEar{ScpiDelimiter}", ct); //[cite: 1]
}
#endregion
#region 6.
/// <summary>
/// 清除最近的安时Ah与瓦时Wh统计数据[cite: 1]
/// </summary>
public virtual async Task (CancellationToken ct = default)
{
await SendAsync($"SENSe:AHOur:RESet{ScpiDelimiter}", ct); //[cite: 1]
await SendAsync($"SENSe:WHOur:RESet{ScpiDelimiter}", ct); //[cite: 1]
}
/// <summary>
/// 读取当前充放电累计的安时值 (单位: Ah)[cite: 1]
/// </summary>
public virtual async Task<string> _Ah(CancellationToken ct = default)
{
return await WriteReadAsync($"FETCh:AHOur?{ScpiDelimiter}", ScpiDelimiter, ct); //[cite: 1]
}
/// <summary>
/// 读取当前充放电累计的瓦时值 (单位: Wh)[cite: 1]
/// </summary>
public virtual async Task<string> _Wh(CancellationToken ct = default)
{
return await WriteReadAsync($"FETCh:WHOur?{ScpiDelimiter}", ScpiDelimiter, ct); //[cite: 1]
}
/// <summary>
/// 读取充放电积分持续时间 (单位: 秒)[cite: 1]
/// </summary>
public virtual async Task<string> (CancellationToken ct = default)
{
return await WriteReadAsync($"FETCh:ENERgy:TIME?{ScpiDelimiter}", ScpiDelimiter, ct); //[cite: 1]
}
/// <summary>
/// 切换设备的操作模式 (VOLTage: 电源模式, LOAD: 负载模式/放电, CURRent: 电流源)[cite: 1]
/// </summary>
public virtual async Task (DeviceOperationMode , CancellationToken ct = default)
{
await SendAsync($"SYSTem:OPERation:MODE {模式}{ScpiDelimiter}", ct); //[cite: 1]
}
/// <summary>
/// 设置放电截止电压/电压下限 (单位: V用于防止电池过放)[cite: 1]
/// </summary>
public virtual async Task (double , CancellationToken ct = default)
{
string cmd = string.Format(CultureInfo.InvariantCulture, ":SOURce:VOLTage:LIMit:LOW {0:F2}{1}", , ScpiDelimiter); //[cite: 1]
await SendAsync(cmd, ct);
}
#endregion
}
}

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@@ -0,0 +1,20 @@
using DeviceCommand.Base;
using Model.Models;
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using System.Threading.Tasks;
namespace DeviceCommand.Devices
{
/// <summary>
/// 水冷机 一拖三
/// </summary>
public class MCc06U:ModbusTcp
{
public MCc06U(TcpConfig config) : base(config)
{
}
}
}

View File

@@ -1,13 +1,14 @@
using Common; using Common;
using Common.Attributes; using Common.Attributes;
using DeviceCommand.Base; using DeviceCommand.Base;
using Model.Models;
using System.Threading; using System.Threading;
using System.Threading.Tasks; using System.Threading.Tasks;
namespace DeviceCommand.Device namespace DeviceCommand.Device
{ {
/// <summary> /// <summary>
/// 功率分析仪型号HIOKI PW8001 /// 功率分析仪型号HIOKI PW8001 一拖三
/// </summary> /// </summary>
public class PW8001 : Tcp public class PW8001 : Tcp
@@ -15,9 +16,8 @@ namespace DeviceCommand.Device
/// <summary> /// <summary>
/// 构造函数SCPI 通信使用端口 23 /// 构造函数SCPI 通信使用端口 23
/// </summary> /// </summary>
public PW8001() public PW8001(TcpConfig config) : base(config)
{ {
Port = 23;
} }
/// <summary> /// <summary>

View File

@@ -0,0 +1,206 @@
using Common.Attributes;
using DeviceCommand.Base;
using Model.Models;
using System;
using System.Threading;
using System.Threading.Tasks;
namespace DeviceCommand.Devices
{
/// <summary>
/// 环境箱型号RLT1000 一拖三
/// </summary>
[ACPCommand]
public class RLT1000 : ModbusTcp
{
public RLT1000(TcpConfig config) : base(config)
{
}
private const byte SlaveId = 1;
#region
public async Task<ushort> (CancellationToken ct = default)
{
ushort[] re = await ReadHoldingRegistersAsync(SlaveId, 5, 1, ct);
return re[0];
}
public async Task<float> (CancellationToken ct = default)
{
try
{
ushort[] re = await ReadHoldingRegistersAsync(SlaveId, 10, 2, ct);
return ConvertToFloat(re);
}
catch (Exception)
{
return 0;
}
}
public async Task<float> 湿(CancellationToken ct = default)
{
ushort[] re = await ReadHoldingRegistersAsync(SlaveId, 16, 2, ct);
return ConvertToFloat(re);
}
public async Task<float> (CancellationToken ct = default)
{
try
{
ushort[] re = await ReadHoldingRegistersAsync(SlaveId, 22, 2, ct);
return ConvertToFloat(re);
}
catch (Exception)
{
return 0;
}
}
public async Task<float> 1(CancellationToken ct = default)
{
ushort[] re = await ReadHoldingRegistersAsync(SlaveId, 28, 2, ct);
return ConvertToFloat(re);
}
public async Task<float> 2(CancellationToken ct = default)
{
ushort[] re = await ReadHoldingRegistersAsync(SlaveId, 34, 2, ct);
return ConvertToFloat(re);
}
public async Task<float> 3(CancellationToken ct = default)
{
ushort[] re = await ReadHoldingRegistersAsync(SlaveId, 40, 2, ct);
return ConvertToFloat(re);
}
#endregion
#region
public async Task (CancellationToken ct = default)
{
await WriteSingleRegisterAsync(SlaveId, 147, 0, ct);
}
public async Task (CancellationToken ct = default)
{
await WriteSingleRegisterAsync(SlaveId, 147, 1, ct);
}
public async Task (CancellationToken ct = default)
{
await WriteSingleRegisterAsync(SlaveId, 148, 0, ct);
}
public async Task (CancellationToken ct = default)
{
await WriteSingleRegisterAsync(SlaveId, 148, 1, ct);
}
public async Task (CancellationToken ct = default)
{
await WriteSingleRegisterAsync(SlaveId, 149, 0, ct);
}
public async Task (CancellationToken ct = default)
{
await WriteSingleRegisterAsync(SlaveId, 149, 1, ct);
}
public async Task (CancellationToken ct = default)
{
await WriteSingleRegisterAsync(SlaveId, 153, 0, ct);
}
public async Task (CancellationToken ct = default)
{
await WriteSingleRegisterAsync(SlaveId, 153, 1, ct);
}
public async Task (float , CancellationToken ct = default)
{
var tmp = ConvertFromFloat();
await WriteMultipleRegistersAsync(SlaveId, 154, tmp, ct);
}
public async Task 湿(float 湿, CancellationToken ct = default)
{
var tmp = ConvertFromFloat(湿);
await WriteMultipleRegistersAsync(SlaveId, 158, tmp, ct);
}
public async Task (float , CancellationToken ct = default)
{
var tmp = ConvertFromFloat();
await WriteMultipleRegistersAsync(SlaveId, 162, tmp, ct);
}
public async Task 1(float , CancellationToken ct = default)
{
var tmp = ConvertFromFloat();
await WriteMultipleRegistersAsync(SlaveId, 164, tmp, ct);
}
public async Task 2(float , CancellationToken ct = default)
{
var tmp = ConvertFromFloat();
await WriteMultipleRegistersAsync(SlaveId, 166, tmp, ct);
}
public async Task 3(float , CancellationToken ct = default)
{
var tmp = ConvertFromFloat();
await WriteMultipleRegistersAsync(SlaveId, 168, tmp, ct);
}
public async Task 使(CancellationToken ct = default)
{
await WriteSingleRegisterAsync(SlaveId, 1181, 0, ct);
}
public async Task 使(CancellationToken ct = default)
{
await WriteSingleRegisterAsync(SlaveId, 1181, 1, ct);
}
public async Task 使(CancellationToken ct = default)
{
await WriteSingleRegisterAsync(SlaveId, 1182, 0, ct);
}
public async Task 使(CancellationToken ct = default)
{
await WriteSingleRegisterAsync(SlaveId, 1182, 1, ct);
}
#endregion
#region
private float ConvertToFloat(ushort[] values)
{
if (values == null || values.Length < 2) return 0f;
byte[] bytes = new byte[4];
bytes[3] = (byte)(values[0] >> 8);
bytes[2] = (byte)(values[0] & 0xFF);
bytes[1] = (byte)(values[1] >> 8);
bytes[0] = (byte)(values[1] & 0xFF);
return BitConverter.ToSingle(bytes, 0);
}
private ushort[] ConvertFromFloat(float value)
{
byte[] bytes = BitConverter.GetBytes(value);
ushort[] result = new ushort[2];
result[0] = (ushort)((bytes[3] << 8) | bytes[2]);
result[1] = (ushort)((bytes[1] << 8) | bytes[0]);
return result;
}
#endregion
}
}

View File

@@ -8,6 +8,9 @@ using System.Threading.Tasks;
namespace DeviceCommand.Devices namespace DeviceCommand.Devices
{ {
/// <summary>
/// 示波器 一拖三
/// </summary>
#region #region
/// <summary> /// <summary>

View File

@@ -1,310 +0,0 @@
using DeviceCommand.Devices;
using Prism.Commands;
using Prism.Ioc;
using System;
using System.Threading;
using System.Windows.Input;
using UIShare.GlobalVariable;
using UIShare.ViewModelBase;
namespace DeviceEditModule.ViewModels
{
/// <summary>
/// IT7800E 交直流电源控制面板 ViewModel。
/// <para>
/// 注册为 Navigation View既可由 Region 导航进入,
/// 也可由外部直接实例化后作为 Tab 内容塞入 DialogMangerView
/// <code>
/// var view = container.Resolve&lt;IT7800EView&gt;();
/// (view.DataContext as IT7800EViewModel)?.Initialize("IT7800E");
/// _eventAggregator.GetEvent&lt;AddDialogTabEvent&gt;().Publish(
/// new DialogTabInfo { Title = "IT7800E", Content = view });
/// </code>
/// </para>
/// </summary>
public class IT7800EViewModel : NavigateViewModelBase, IDisposable
{
#region
private readonly DeviceManager _deviceManager;
private IT7800E? _device;
private CancellationTokenSource? _cts;
#endregion
#region
private string _deviceName = "IT7800E";
public string DeviceName
{
get => _deviceName;
set => SetProperty(ref _deviceName, value);
}
private bool _isConnected;
public bool IsConnected
{
get => _isConnected;
set => SetProperty(ref _isConnected, value);
}
private bool _isBusy;
/// <summary>正在执行设备命令时为 true用于 UI 忙碌状态指示。</summary>
public bool IsBusy
{
get => _isBusy;
set => SetProperty(ref _isBusy, value);
}
#endregion
#region
private double _acVoltage = 220.0;
/// <summary>待设置的交流电压值V。</summary>
public double AcVoltage
{
get => _acVoltage;
set => SetProperty(ref _acVoltage, value);
}
private double _dcVoltage = 0.0;
/// <summary>待设置的直流偏置电压值V。</summary>
public double DcVoltage
{
get => _dcVoltage;
set => SetProperty(ref _dcVoltage, value);
}
private double _frequency = 50.0;
/// <summary>待设置的交流频率Hz。</summary>
public double Frequency
{
get => _frequency;
set => SetProperty(ref _frequency, value);
}
private double _currentLimit = 10.0;
/// <summary>待设置的限流值A。</summary>
public double CurrentLimit
{
get => _currentLimit;
set => SetProperty(ref _currentLimit, value);
}
private PowerCouplingMode _selectedMode = PowerCouplingMode.AC;
/// <summary>待设置的电源工作模式AC / DC / ACDC。</summary>
public PowerCouplingMode SelectedMode
{
get => _selectedMode;
set => SetProperty(ref _selectedMode, value);
}
private double _ovpValue = 260.0;
/// <summary>过压保护值V。</summary>
public double OvpValue
{
get => _ovpValue;
set => SetProperty(ref _ovpValue, value);
}
private double _ocpValue = 15.0;
/// <summary>过流保护值A。</summary>
public double OcpValue
{
get => _ocpValue;
set => SetProperty(ref _ocpValue, value);
}
#endregion
#region
private string _measuredVoltage = "—";
public string MeasuredVoltage
{
get => _measuredVoltage;
set => SetProperty(ref _measuredVoltage, value);
}
private string _measuredCurrent = "—";
public string MeasuredCurrent
{
get => _measuredCurrent;
set => SetProperty(ref _measuredCurrent, value);
}
private string _measuredPower = "—";
public string MeasuredPower
{
get => _measuredPower;
set => SetProperty(ref _measuredPower, value);
}
private string _measuredFrequency = "—";
public string MeasuredFrequency
{
get => _measuredFrequency;
set => SetProperty(ref _measuredFrequency, value);
}
private string _responseLog = string.Empty;
/// <summary>命令响应日志(最新消息在顶部)。</summary>
public string ResponseLog
{
get => _responseLog;
set => SetProperty(ref _responseLog, value);
}
#endregion
#region
public ICommand QueryIdentityCommand { get; }
public ICommand ResetDeviceCommand { get; }
public ICommand OutputOnCommand { get; }
public ICommand OutputOffCommand { get; }
public ICommand SetModeCommand { get; }
public ICommand SetAcVoltageCommand { get; }
public ICommand SetDcVoltageCommand { get; }
public ICommand SetFrequencyCommand { get; }
public ICommand SetCurrentCommand { get; }
public ICommand QueryAllMeasureCommand { get; }
public ICommand SetRemoteModeCommand { get; }
public ICommand SetLocalModeCommand { get; }
public ICommand SetOvpCommand { get; }
public ICommand SetOcpCommand { get; }
public ICommand ClearAlarmCommand { get; }
public ICommand ClearErrorCommand { get; }
#endregion
public IT7800EViewModel(IContainerProvider containerProvider) : base(containerProvider)
{
_deviceManager = containerProvider.Resolve<DeviceManager>();
QueryIdentityCommand = new DelegateCommand(async () => await Exec(async () => AppendLog("IDN: " + await _device!.(Ct()))));
ResetDeviceCommand = new DelegateCommand(async () => await Exec(async () => { await _device!.(Ct()); AppendLog("设备已重置"); }));
OutputOnCommand = new DelegateCommand(async () => await Exec(async () => { await _device!.DC输出(true, Ct()); AppendLog("输出已开启"); }));
OutputOffCommand = new DelegateCommand(async () => await Exec(async () => { await _device!.DC输出(false, Ct()); AppendLog("输出已关闭"); }));
SetModeCommand = new DelegateCommand(async () => await Exec(async () => { await _device!.(SelectedMode, Ct()); AppendLog($"模式已设为 {SelectedMode}"); }));
SetAcVoltageCommand = new DelegateCommand(async () => await Exec(async () => { await _device!.(AcVoltage, Ct()); AppendLog($"AC电压已设为 {AcVoltage} V"); }));
SetDcVoltageCommand = new DelegateCommand(async () => await Exec(async () => { await _device!.(DcVoltage, Ct()); AppendLog($"DC偏置已设为 {DcVoltage} V"); }));
SetFrequencyCommand = new DelegateCommand(async () => await Exec(async () => { await _device!.(Frequency, Ct()); AppendLog($"频率已设为 {Frequency} Hz"); }));
SetCurrentCommand = new DelegateCommand(async () => await Exec(async () => { await _device!.(CurrentLimit, Ct()); AppendLog($"限流已设为 {CurrentLimit} A"); }));
SetOvpCommand = new DelegateCommand(async () => await Exec(async () => { await _device!._OVP(OvpValue, Ct()); AppendLog($"OVP已设为 {OvpValue} V"); }));
SetOcpCommand = new DelegateCommand(async () => await Exec(async () => { await _device!._OCP(OcpValue, Ct()); AppendLog($"OCP已设为 {OcpValue} A"); }));
SetRemoteModeCommand = new DelegateCommand(async () => await Exec(async () => { await _device!.(Ct()); AppendLog("已切换到远程控制模式"); }));
SetLocalModeCommand = new DelegateCommand(async () => await Exec(async () => { await _device!.(Ct()); AppendLog("已切换到本地控制模式"); }));
ClearAlarmCommand = new DelegateCommand(async () => await Exec(async () => { await _device!.(Ct()); AppendLog("保护告警已清除"); }));
ClearErrorCommand = new DelegateCommand(async () => await Exec(async () => { await _device!.(Ct()); AppendLog("错误队列已清除"); }));
QueryAllMeasureCommand = new DelegateCommand(async () => await Exec(async () =>
{
MeasuredVoltage = await _device!.(Ct());
MeasuredCurrent = await _device!.(Ct());
MeasuredPower = await _device!.(Ct());
MeasuredFrequency = await _device!.(Ct());
AppendLog($"测量 → 电压:{MeasuredVoltage}V 电流:{MeasuredCurrent}A 功率:{MeasuredPower}W 频率:{MeasuredFrequency}Hz");
}));
Initialize();
}
#region / Navigation
/// <summary>
/// 从 DeviceManager 中查找 IT7800E 设备实例。
/// 优先按 <paramref name="deviceName"/> 查找,否则取第一个匹配类型的设备。
/// </summary>
public void Initialize(string? deviceName = null)
{
IT7800E? found = null;
string? foundName = null;
if (deviceName != null &&
_deviceManager.DeviceMap.TryGetValue(deviceName, out var d) &&
d is IT7800E e)
{
found = e;
foundName = deviceName;
}
else
{
foreach (var kv in _deviceManager.DeviceMap)
{
if (kv.Value is IT7800E it)
{
found = it;
foundName = kv.Key;
break;
}
}
}
_device = found;
DeviceName = foundName ?? "IT7800E (未找到)";
IsConnected = _device?.IsConnected ?? false;
AppendLog(found != null
? $"已关联设备 [{DeviceName}],连接状态:{(IsConnected ? "" : "")}"
: "未在 DeviceManager 中找到 IT7800E 设备,请先初始化设备配置。");
}
public override void OnNavigatedTo(NavigationContext context)
{
var name = context.Parameters.GetValue<string?>("DeviceName");
Initialize(name);
}
#endregion
#region
private CancellationToken Ct() => (_cts = new CancellationTokenSource(TimeSpan.FromSeconds(10))).Token;
private async Task Exec(Func<Task> action)
{
if (_device == null)
{
AppendLog("错误:未关联到设备实例,请检查设备配置。");
return;
}
if (IsBusy) return;
IsBusy = true;
try
{
await action();
IsConnected = _device.IsConnected;
}
catch (OperationCanceledException)
{
AppendLog("命令超时或已取消。");
}
catch (Exception ex)
{
AppendLog($"错误:{ex.Message}");
}
finally
{
IsBusy = false;
}
}
private void AppendLog(string message)
{
var line = $"[{DateTime.Now:HH:mm:ss}] {message}";
ResponseLog = ResponseLog.Length > 4000
? line + "\n" + ResponseLog[..3000]
: line + "\n" + ResponseLog;
}
#endregion
public void Dispose()
{
_cts?.Cancel();
_cts?.Dispose();
}
}
}

View File

@@ -1,272 +0,0 @@
<UserControl x:Class="DeviceEditModule.Views.IT7800EView"
xmlns="http://schemas.microsoft.com/winfx/2006/xaml/presentation"
xmlns:x="http://schemas.microsoft.com/winfx/2006/xaml"
xmlns:mc="http://schemas.openxmlformats.org/markup-compatibility/2006"
xmlns:d="http://schemas.microsoft.com/expression/blend/2008"
xmlns:prism="http://prismlibrary.com/"
xmlns:materialDesign="http://materialdesigninxaml.net/winfx/xaml/themes"
xmlns:converters="clr-namespace:UIShare.Converters;assembly=UIShare"
mc:Ignorable="d"
prism:ViewModelLocator.AutoWireViewModel="False"
d:DesignHeight="760" d:DesignWidth="860">
<UserControl.Resources>
<converters:BooleanToVisibilityConverter x:Key="BoolToVis"/>
</UserControl.Resources>
<ScrollViewer VerticalScrollBarVisibility="Auto" HorizontalScrollBarVisibility="Disabled">
<StackPanel Margin="12">
<!-- ═══ 设备信息头 ═══ -->
<materialDesign:Card Margin="0,0,0,8" Padding="12,8">
<Grid>
<Grid.ColumnDefinitions>
<ColumnDefinition Width="Auto"/>
<ColumnDefinition Width="*"/>
<ColumnDefinition Width="Auto"/>
</Grid.ColumnDefinitions>
<StackPanel Orientation="Horizontal" VerticalAlignment="Center">
<materialDesign:PackIcon Kind="Flash" Width="22" Height="22"
Foreground="#1565C0" Margin="0,0,8,0"
VerticalAlignment="Center"/>
<TextBlock Text="IT7800E 交直流可编程电源"
FontSize="15" FontWeight="Bold"
VerticalAlignment="Center"/>
<TextBlock Text="{Binding DeviceName, StringFormat=' [{0}]'}"
FontSize="13" Foreground="#757575"
VerticalAlignment="Center" Margin="4,0,0,0"/>
</StackPanel>
<!-- 连接状态指示 -->
<StackPanel Grid.Column="2" Orientation="Horizontal" VerticalAlignment="Center">
<Border Width="10" Height="10" CornerRadius="5" Margin="0,0,6,0">
<Border.Style>
<Style TargetType="Border">
<Setter Property="Background" Value="#F44336"/>
<Style.Triggers>
<DataTrigger Binding="{Binding IsConnected}" Value="True">
<Setter Property="Background" Value="#4CAF50"/>
</DataTrigger>
</Style.Triggers>
</Style>
</Border.Style>
</Border>
<TextBlock VerticalAlignment="Center" FontSize="12">
<TextBlock.Style>
<Style TargetType="TextBlock">
<Setter Property="Text" Value="未连接"/>
<Setter Property="Foreground" Value="#F44336"/>
<Style.Triggers>
<DataTrigger Binding="{Binding IsConnected}" Value="True">
<Setter Property="Text" Value="已连接"/>
<Setter Property="Foreground" Value="#4CAF50"/>
</DataTrigger>
</Style.Triggers>
</Style>
</TextBlock.Style>
</TextBlock>
<!-- 忙碌指示 -->
<ProgressBar IsIndeterminate="True" Width="80" Height="4"
Margin="12,0,0,0"
Visibility="{Binding IsBusy, Converter={StaticResource BoolToVis}}"/>
</StackPanel>
</Grid>
</materialDesign:Card>
<!-- ═══ 主体 2 列 ═══ -->
<Grid>
<Grid.ColumnDefinitions>
<ColumnDefinition Width="*"/>
<ColumnDefinition Width="*"/>
</Grid.ColumnDefinitions>
<!-- ─── 左列 ─── -->
<StackPanel Grid.Column="0" Margin="0,0,4,0">
<!-- 输出控制 -->
<GroupBox Header="输出控制" Margin="0,0,0,8"
materialDesign:ColorZoneAssist.Mode="PrimaryLight">
<StackPanel Margin="4,4,4,4">
<!-- 开关输出 -->
<StackPanel Orientation="Horizontal" Margin="0,4">
<TextBlock Text="主输出" Style="{StaticResource ParamLabel}"/>
<Button Content="开启输出" Command="{Binding OutputOnCommand}"
Style="{StaticResource MaterialDesignRaisedButton}"
Background="#388E3C" Foreground="White"
Height="32" Padding="12,0" FontSize="12" Margin="4,0"/>
<Button Content="关闭输出" Command="{Binding OutputOffCommand}"
Style="{StaticResource WarnBtn}"/>
</StackPanel>
<!-- 工作模式 -->
<StackPanel Orientation="Horizontal" Margin="0,4">
<TextBlock Text="工作模式" Style="{StaticResource ParamLabel}"/>
<ComboBox Width="90" Height="32" Margin="4,0"
materialDesign:HintAssist.Hint=""
SelectedItem="{Binding SelectedMode}"
VerticalContentAlignment="Center" FontSize="12">
<ComboBoxItem Content="AC"/>
<ComboBoxItem Content="DC"/>
<ComboBoxItem Content="ACDC"/>
</ComboBox>
<Button Content="设置模式" Command="{Binding SetModeCommand}"
Style="{StaticResource CmdBtn}"/>
</StackPanel>
<!-- 远程/本地 -->
<StackPanel Orientation="Horizontal" Margin="0,4">
<TextBlock Text="控制模式" Style="{StaticResource ParamLabel}"/>
<Button Content="远程控制" Command="{Binding SetRemoteModeCommand}"
Style="{StaticResource CmdBtn}"/>
<Button Content="本地控制" Command="{Binding SetLocalModeCommand}"
Style="{StaticResource CmdBtn}"/>
</StackPanel>
<!-- 清除 / 重置 -->
<StackPanel Orientation="Horizontal" Margin="0,4">
<TextBlock Text="系统操作" Style="{StaticResource ParamLabel}"/>
<Button Content="清除告警" Command="{Binding ClearAlarmCommand}"
Style="{StaticResource WarnBtn}"/>
<Button Content="清除错误" Command="{Binding ClearErrorCommand}"
Style="{StaticResource WarnBtn}"/>
<Button Content="重置设备" Command="{Binding ResetDeviceCommand}"
Style="{StaticResource WarnBtn}"/>
</StackPanel>
</StackPanel>
</GroupBox>
<!-- 参数设置 -->
<GroupBox Header="参数设置" Margin="0,0,0,8"
materialDesign:ColorZoneAssist.Mode="PrimaryLight">
<StackPanel Margin="4,4,4,4">
<!-- AC 电压 -->
<StackPanel Orientation="Horizontal" Margin="0,4">
<TextBlock Text="AC电压 (V)" Style="{StaticResource ParamLabel}"/>
<TextBox Style="{StaticResource NumInput}"
materialDesign:HintAssist.Hint=""
Text="{Binding AcVoltage, UpdateSourceTrigger=PropertyChanged}"/>
<Button Content="设置" Command="{Binding SetAcVoltageCommand}"
Style="{StaticResource CmdBtn}"/>
</StackPanel>
<!-- DC 偏置 -->
<StackPanel Orientation="Horizontal" Margin="0,4">
<TextBlock Text="DC偏置 (V)" Style="{StaticResource ParamLabel}"/>
<TextBox Style="{StaticResource NumInput}"
materialDesign:HintAssist.Hint=""
Text="{Binding DcVoltage, UpdateSourceTrigger=PropertyChanged}"/>
<Button Content="设置" Command="{Binding SetDcVoltageCommand}"
Style="{StaticResource CmdBtn}"/>
</StackPanel>
<!-- 频率 -->
<StackPanel Orientation="Horizontal" Margin="0,4">
<TextBlock Text="频率 (Hz)" Style="{StaticResource ParamLabel}"/>
<TextBox Style="{StaticResource NumInput}"
materialDesign:HintAssist.Hint=""
Text="{Binding Frequency, UpdateSourceTrigger=PropertyChanged}"/>
<Button Content="设置" Command="{Binding SetFrequencyCommand}"
Style="{StaticResource CmdBtn}"/>
</StackPanel>
<!-- 限流 -->
<StackPanel Orientation="Horizontal" Margin="0,4">
<TextBlock Text="限流 (A)" Style="{StaticResource ParamLabel}"/>
<TextBox Style="{StaticResource NumInput}"
materialDesign:HintAssist.Hint=""
Text="{Binding CurrentLimit, UpdateSourceTrigger=PropertyChanged}"/>
<Button Content="设置" Command="{Binding SetCurrentCommand}"
Style="{StaticResource CmdBtn}"/>
</StackPanel>
</StackPanel>
</GroupBox>
<!-- 保护设置 -->
<GroupBox Header="保护设置" Margin="0,0,0,8"
materialDesign:ColorZoneAssist.Mode="PrimaryLight">
<StackPanel Margin="4,4,4,4">
<StackPanel Orientation="Horizontal" Margin="0,4">
<TextBlock Text="OVP (V)" Style="{StaticResource ParamLabel}"/>
<TextBox Style="{StaticResource NumInput}"
materialDesign:HintAssist.Hint=""
Text="{Binding OvpValue, UpdateSourceTrigger=PropertyChanged}"/>
<Button Content="设置 OVP" Command="{Binding SetOvpCommand}"
Style="{StaticResource CmdBtn}"/>
</StackPanel>
<StackPanel Orientation="Horizontal" Margin="0,4">
<TextBlock Text="OCP (A)" Style="{StaticResource ParamLabel}"/>
<TextBox Style="{StaticResource NumInput}"
materialDesign:HintAssist.Hint=""
Text="{Binding OcpValue, UpdateSourceTrigger=PropertyChanged}"/>
<Button Content="设置 OCP" Command="{Binding SetOcpCommand}"
Style="{StaticResource CmdBtn}"/>
</StackPanel>
</StackPanel>
</GroupBox>
</StackPanel>
<!-- ─── 右列 ─── -->
<StackPanel Grid.Column="1" Margin="4,0,0,0">
<!-- 实时测量 -->
<GroupBox Header="实时测量" Margin="0,0,0,8"
materialDesign:ColorZoneAssist.Mode="PrimaryLight">
<StackPanel Margin="4,4,4,4">
<StackPanel Orientation="Horizontal" Margin="0,4">
<TextBlock Text="实际电压" Style="{StaticResource ParamLabel}"/>
<TextBox Style="{StaticResource MeasureBox}"
materialDesign:HintAssist.Hint=""
Text="{Binding MeasuredVoltage, Mode=OneWay}"/>
<TextBlock Text="V" VerticalAlignment="Center" Margin="2,0,8,0"/>
</StackPanel>
<StackPanel Orientation="Horizontal" Margin="0,4">
<TextBlock Text="实际电流" Style="{StaticResource ParamLabel}"/>
<TextBox Style="{StaticResource MeasureBox}"
materialDesign:HintAssist.Hint=""
Text="{Binding MeasuredCurrent, Mode=OneWay}"/>
<TextBlock Text="A" VerticalAlignment="Center" Margin="2,0,8,0"/>
</StackPanel>
<StackPanel Orientation="Horizontal" Margin="0,4">
<TextBlock Text="实际功率" Style="{StaticResource ParamLabel}"/>
<TextBox Style="{StaticResource MeasureBox}"
materialDesign:HintAssist.Hint=""
Text="{Binding MeasuredPower, Mode=OneWay}"/>
<TextBlock Text="W" VerticalAlignment="Center" Margin="2,0,8,0"/>
</StackPanel>
<StackPanel Orientation="Horizontal" Margin="0,4">
<TextBlock Text="输出频率" Style="{StaticResource ParamLabel}"/>
<TextBox Style="{StaticResource MeasureBox}"
materialDesign:HintAssist.Hint=""
Text="{Binding MeasuredFrequency, Mode=OneWay}"/>
<TextBlock Text="Hz" VerticalAlignment="Center" Margin="2,0,8,0"/>
</StackPanel>
<Button Content="刷新全部测量" Command="{Binding QueryAllMeasureCommand}"
Style="{StaticResource CmdBtn}"
HorizontalAlignment="Left" Margin="0,4,0,0"/>
</StackPanel>
</GroupBox>
<!-- 设备信息 -->
<GroupBox Header="设备信息" Margin="0,0,0,8"
materialDesign:ColorZoneAssist.Mode="PrimaryLight">
<StackPanel Orientation="Horizontal" Margin="4,8">
<Button Content="查询 IDN" Command="{Binding QueryIdentityCommand}"
Style="{StaticResource CmdBtn}"/>
</StackPanel>
</GroupBox>
<!-- 响应日志 -->
<GroupBox Header="响应日志" Margin="0,0,0,8"
materialDesign:ColorZoneAssist.Mode="PrimaryLight">
<ScrollViewer Height="260" VerticalScrollBarVisibility="Auto">
<TextBox Text="{Binding ResponseLog, Mode=OneWay}"
materialDesign:HintAssist.Hint=""
IsReadOnly="True"
TextWrapping="Wrap"
FontSize="11"
FontFamily="Consolas"
Background="#FAFAFA"
BorderThickness="0"
VerticalAlignment="Top"/>
</ScrollViewer>
</GroupBox>
</StackPanel>
</Grid>
</StackPanel>
</ScrollViewer>
</UserControl>

View File

@@ -1,28 +0,0 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using System.Threading.Tasks;
using System.Windows;
using System.Windows.Controls;
using System.Windows.Data;
using System.Windows.Documents;
using System.Windows.Input;
using System.Windows.Media;
using System.Windows.Media.Imaging;
using System.Windows.Navigation;
using System.Windows.Shapes;
namespace DeviceEditModule.Views
{
/// <summary>
/// IT7800EView.xaml 的交互逻辑
/// </summary>
public partial class IT7800EView : UserControl
{
public IT7800EView()
{
InitializeComponent();
}
}
}

View File

@@ -8,7 +8,7 @@
<ItemGroup> <ItemGroup>
<PackageReference Include="SqlSugarCore" Version="5.1.4.215-preview13" /> <PackageReference Include="SqlSugarCore" Version="5.1.4.215-preview13" />
<PackageReference Include="System.IO.Ports" Version="11.0.0-preview.4.26230.115" /> <PackageReference Include="System.IO.Ports" Version="8.0.0" />
</ItemGroup> </ItemGroup>
</Project> </Project>

View File

@@ -53,22 +53,6 @@ namespace UIShare.GlobalVariable
IsEditable=false IsEditable=false
}, },
new ParameterVM new ParameterVM
{
Category = ParameterCategory.Input,
Type = typeof(int),
Name = "直流负载通道",
Value = 1,
IsEditable=false
},
new ParameterVM
{
Category = ParameterCategory.Input,
Type = typeof(int),
Name = "交流电源通道",
Value = 1,
IsEditable=false
},
new ParameterVM
{ {
Category = ParameterCategory.Input, Category = ParameterCategory.Input,
Type = typeof(int), Type = typeof(int),
@@ -113,62 +97,111 @@ namespace UIShare.GlobalVariable
//{ //{
// new DeviceInfoVM // new DeviceInfoVM
// { // {
// DeviceName = "IT7800E", // DeviceName = "Chroma61800",
// DeviceType = "IT7800E", // DeviceType = "Chroma61800",
// Remark = "交流可编程电源供应器", // Remark = "可编程交流电源",
// ConnectionType = "Tcp", // ConnectionType = "Tcp",
// IsEnabled = true, // IsEnabled = true,
// IsConnected = false // IsConnected = false
// }, // },
// new DeviceInfoVM // new DeviceInfoVM
// { // {
// DeviceName = "N36200", // DeviceName = "DG1000Z",
// DeviceType = "N36200", // DeviceType = "DG1000Z",
// Remark = "宽范围可编程直流电源", // Remark = "信号发生器",
// ConnectionType = "Tcp", // ConnectionType = "Tcp",
// IsEnabled = true, // IsEnabled = true,
// IsConnected = false // IsConnected = false
// }, // },
// new DeviceInfoVM // new DeviceInfoVM
// { // {
// DeviceName = "N36600", // DeviceName = "IT6015C",
// DeviceType = "N36600", // DeviceType = "IT6015C",
// Remark = "便携式宽范围可编程直流电源", // Remark = "低压直流源载一体机",
// ConnectionType = "Tcp",
// IsEnabled = false,
// IsConnected = false
// },
// new DeviceInfoVM
// {
// DeviceName = "N69200",
// DeviceType = "N69200",
// Remark = "可编程直流电子负载",
// ConnectionType = "Tcp", // ConnectionType = "Tcp",
// IsEnabled = true, // IsEnabled = true,
// IsConnected = false // IsConnected = false
// }, // },
// new DeviceInfoVM // new DeviceInfoVM
// { // {
// DeviceName = "SDS2000X_HD", // DeviceName = "IT6036C",
// DeviceType = "SDS2000X_HD", // DeviceType = "IT6036C",
// Remark = "数字存储示波器", // Remark = "高压直流源载一体机",
// ConnectionType = "Tcp", // ConnectionType = "Tcp",
// IsEnabled = true, // IsEnabled = true,
// IsConnected = false // IsConnected = false
// }, // },
// new DeviceInfoVM // new DeviceInfoVM
// { // {
// DeviceName = "SPAW7000", // DeviceName = "IT6720",
// DeviceType = "SPAW7000", // DeviceType = "IT6720",
// Remark = "低压电源",
// ConnectionType = "Tcp",
// IsEnabled = true,
// IsConnected = false
// },
// new DeviceInfoVM
// {
// DeviceName = "MCc06U",
// DeviceType = "MCc06U",
// Remark = "水冷机",
// ConnectionType = "Tcp",
// IsEnabled = true,
// IsConnected = false
// },
// new DeviceInfoVM
// {
// DeviceName = "PW8001",
// DeviceType = "PW8001",
// Remark = "功率分析记录仪", // Remark = "功率分析记录仪",
// ConnectionType = "Tcp", // ConnectionType = "Tcp",
// IsEnabled = true, // IsEnabled = true,
// IsConnected = false // IsConnected = false
// },
// new DeviceInfoVM
// {
// DeviceName = "RLT1000",
// DeviceType = "RLT1000",
// Remark = "环境箱",
// ConnectionType = "Tcp",
// IsEnabled = true,
// IsConnected = false
// },
// new DeviceInfoVM
// {
// DeviceName = "TektronixMSO",
// DeviceType = "TektronixMSO",
// Remark = "示波器",
// ConnectionType = "Tcp",
// IsEnabled = true,
// IsConnected = false
// },
// new DeviceInfoVM
// {
// DeviceName = "IOBoard1",
// DeviceType = "IOBoard",
// Remark = "IO板卡1",
// ConnectionType = "Tcp",
// IsEnabled = true,
// IsConnected = false
// },
// new DeviceInfoVM
// {
// DeviceName = "IOBoard2",
// DeviceType = "IOBoard",
// Remark = "IO板卡2",
// ConnectionType = "Tcp",
// IsEnabled = true,
// IsConnected = false
// },
// new DeviceInfoVM
// {
// DeviceName = "IOBoard3",
// DeviceType = "IOBoard",
// Remark = "IO板卡3",
// ConnectionType = "Tcp",
// IsEnabled = true,
// IsConnected = false
// } // }
//}; //};
} }

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@@ -1,16 +0,0 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<TargetFramework>net8.0</TargetFramework>
<ImplicitUsings>enable</ImplicitUsings>
<Nullable>enable</Nullable>
</PropertyGroup>
<ItemGroup>
<!-- 配置 ViKey.dll 复制到输出目录 -->
<None Include="ViKey.dll">
<CopyToOutputDirectory>Always</CopyToOutputDirectory>
</None>
</ItemGroup>
</Project>

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@@ -1,252 +0,0 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Runtime.InteropServices;
using System.Text;
using System.Threading.Tasks;
namespace
{
public enum VikeyType
{
ViKeyAPP = 0, //实用型加密狗
ViKeySTD = 1, //标准型加密狗
ViKeyNET = 2, //网络型加密狗
ViKeyPRO = 3, //专业型加密狗
ViKeyWEB = 4, //身份认证型加密狗
ViKeyTIME = 5, //时钟型加密狗,内部独立时钟
ViKeyMultiFunctional = 0x0A, //多功能加密狗 支持软件加密 支持文档加密
ViKeyMultiFunctionalTime = 0x0B, //多功能时钟加密狗
ViKeyInvalid //无效类型
};
public enum : uint
{
/// <summary>
/// 成功
/// </summary>
VIKEY_SUCCESS = 0x00000000,
/// <summary>
/// 没有找到ViKey加密锁
/// </summary>
VIKEY_ERROR_NO_VIKEY = 0x80000001,
/// <summary>
/// 密码错误
/// </summary>
VIKEY_ERROR_INVALID_PASSWORD = 0x80000002,
/// <summary>
/// 请先查找加密锁
/// </summary>
VIKEY_ERROR_NEED_FIND = 0x80000003,
/// <summary>
/// 无效的句柄
/// </summary>
VIKEY_ERROR_INVALID_INDEX = 0x80000004,
/// <summary>
/// 数值错误
/// </summary>
VIKEY_ERROR_INVALID_VALUE = 0x80000005,
/// <summary>
/// 秘钥无效
/// </summary>
VIKEY_ERROR_INVALID_KEY = 0x80000006,
/// <summary>
/// 读取信息错误
/// </summary>
VIKEY_ERROR_GET_VALUE = 0x80000007,
/// <summary>
/// 设置信息错误
/// </summary>
VIKEY_ERROR_SET_VALUE = 0x80000008,
/// <summary>
/// 没有机会
/// </summary>
VIKEY_ERROR_NO_CHANCE = 0x80000009,
/// <summary>
/// 权限不足
/// </summary>
VIKEY_ERROR_NO_TAUTHORITY = 0x8000000A,
/// <summary>
/// 地址或长度错误
/// </summary>
VIKEY_ERROR_INVALID_ADDR_OR_SIZE = 0x8000000B,
/// <summary>
/// 获取随机数错误
/// </summary>
VIKEY_ERROR_RANDOM = 0x8000000C,
/// <summary>
/// 获取种子错误
/// </summary>
VIKEY_ERROR_SEED = 0x8000000D,
/// <summary>
/// 通信错误
/// </summary>
VIKEY_ERROR_CONNECTION = 0x8000000E,
/// <summary>
/// 算法或计算错误
/// </summary>
VIKEY_ERROR_CALCULATE = 0x8000000F,
/// <summary>
/// 计数器错误
/// </summary>
VIKEY_ERROR_MODULE = 0x80000010,
/// <summary>
/// 产生密码错误
/// </summary>
VIKEY_ERROR_GENERATE_NEW_PASSWORD = 0x80000011,
/// <summary>
/// 加密数据错误
/// </summary>
VIKEY_ERROR_ENCRYPT_FAILED = 0x80000012,
/// <summary>
/// 解密数据错误
/// </summary>
VIKEY_ERROR_DECRYPT_FAILED = 0x80000013,
/// <summary>
/// ViKey加密锁已经被锁定
/// </summary>
VIKEY_ERROR_ALREADY_LOCKED = 0x80000014,
/// <summary>
/// 无效的命令
/// </summary>
VIKEY_ERROR_UNKNOWN_COMMAND = 0x80000015,
/// <summary>
/// 当前ViKey加密锁不支持此功能
/// </summary>
VIKEY_ERROR_NO_SUPPORT = 0x80000016,
/// <summary>
/// 发生异常
/// </summary>
VIKEY_ERROR_CATCH = 0x80000017,
/// <summary>
/// 未知错误
/// </summary>
VIKEY_ERROR_UNKNOWN_ERROR = 0xFFFFFFFF,
}
public class API类
{
/// <summary>
/// 查找加密锁。使用其他API前必须先调用次函数。
/// </summary>
/// <param name="pdwCount">[out] 如果查找到系统中存在加密狗,返回查找到加密狗的个数</param>
/// <returns>0表示系统中存在ViKey加密狗。</returns>
[DllImport("ViKey.dll")]
public static extern uint VikeyFind(ref uint pdwCount);
/// <summary>
/// 获取加密狗的硬件ID,加密狗的硬件ID是加密狗的唯一标识每个加密狗的硬件ID都不一样。
/// </summary>
/// <param name="Index">[in]指定要操作加密狗的序号</param>
/// <param name="pdwHID">[out]返回加密狗的硬件ID</param>
/// <returns></returns>
[DllImport("ViKey.dll")]
public static extern uint VikeyGetHID(ushort Index, out uint pdwHID);
/// <summary>
/// 获取加密狗的当前权限
/// </summary>
/// <param name="Index">指定要操作加密狗的序号</param>
/// <param name="pLevel">返回加密狗的当前权限 0表示加密狗尚未登录 1表示加密狗是用户权限 2表示加密狗是管理员权限</param>
/// <returns></returns>
[DllImport("ViKey.dll", CallingConvention = CallingConvention.StdCall)]
public static extern uint VikeyGetLevel(ushort Index, out byte pLevel);
/// <summary>
/// 以用户权限登录加密狗
/// </summary>
/// <param name="Index"></param>
/// <param name="pUserPassushort"></param>
/// <returns></returns>
[DllImport("ViKey.dll", CallingConvention = CallingConvention.StdCall, CharSet = CharSet.Ansi)]
public static extern uint VikeyUserLogin(ushort Index, Byte[] pUserPassword);
/// <summary>
/// 以管理员权限登录加密狗
/// </summary>
/// <param name="Index"></param>
/// <param name="pAdminPassword"></param>
/// <returns></returns>
[DllImport("ViKey.dll", CallingConvention = CallingConvention.StdCall, CharSet = CharSet.Ansi)]
public static extern uint VikeyAdminLogin(ushort Index, Byte[] pAdminPassword);
/// <summary>
/// 注销登录加密狗 注销后的加密狗权限为0
/// </summary>
/// <param name="Index">[in]指定要操作加密狗的序号</param>
/// <returns></returns>
[DllImport("ViKey.dll", CallingConvention = CallingConvention.StdCall, CharSet = CharSet.Ansi)]
public static extern uint VikeyLogoff(ushort Index);
[StructLayout(LayoutKind.Sequential, Pack = 1)]
public struct SVikeyTime
{
public byte cYear;
public byte cMonth;
public byte cDay;
public byte cHour;
public byte cMinute;
public byte cSecond;
}
/// <summary>
/// 获取时钟型加密狗中的内部独立时间
/// </summary>
/// <param name="Index"></param>
/// <param name="pTime"></param>
/// <returns></returns>
[DllImport("ViKey.dll", CallingConvention = CallingConvention.StdCall)]
public static extern uint VikeyGetTime(ushort Index, out SVikeyTime pTime);
/// <summary>
/// 获取时钟型加密狗中的到期时间
/// </summary>
/// <param name="Index"></param>
/// <param name="pTime"></param>
/// <returns></returns>
[DllImport("ViKey.dll", CallingConvention = CallingConvention.StdCall)]
public static extern uint VikeyGetValidTime(ushort Index, out SVikeyTime pTime);
/// <summary>
/// 检测时钟型加密狗的时钟功能是否到期
/// </summary>
/// <param name="Index">[in]指定要操作加密狗的序号</param>
/// <param name="pIsValid">[out]返回是否到期结果 1表示没有到期 0表示已经到期</param>
/// <returns></returns>
[DllImport("ViKey.dll", CallingConvention = CallingConvention.StdCall)]
public static extern uint VikeyCheckValidTime(ushort Index, out byte pIsValid);
/// <summary>
/// 从加密狗中的获取4个双字的随机数数据
/// </summary>
/// <param name="Index">指定要操作加密狗的序号</param>
/// <param name="pwRandom1"></param>
/// <param name="pwRandom2"></param>
/// <param name="pwRandom3"></param>
/// <param name="pwRandom4"></param>
/// <returns></returns>
[DllImport("ViKey.dll", CallingConvention = CallingConvention.StdCall)]
public static extern uint ViKeyRandom(ushort Index,
out ushort pwRandom1, out ushort pwRandom2, out ushort pwRandom3, out ushort pwRandom4);
[DllImport("ViKey.dll", CallingConvention = CallingConvention.StdCall)]
public static extern uint VikeyReadData(ushort Index, ushort Addr, ushort Length, byte[] buffer);
[DllImport("ViKey.dll", CallingConvention = CallingConvention.StdCall)]
public static extern uint VikeyWriteData(ushort Index, ushort Addr, ushort Length, byte[] buffer);
/// <summary>
/// // 7.4.6版本(含)以后的加密狗必须在查找加密狗前调用VikeySetUserSN并输入正确的UserSN后面才能查找到所属用户的加密狗
// 7.4.6版本以前的加密狗可以忽略此函数 不用调用此函数
// UserSN在ViKey加密管理工具的->帮助中心页面->复制出来
/// </summary>
/// <param name="pUserSN"></param>
/// <returns></returns>
[DllImport("ViKey")]
public static extern uint VikeySetUserSN(Byte[] pUserSN);
/// <summary>
/// //设置加密狗ApiKey 硬件版本为7.4.5(含)以后的加密狗必须要调用此接口才能登录
//ApiKey 是由ViKey加密管理工具的->加密狗管理->密钥设置页面 通过Api密钥种子生成的
/// </summary>
/// <param name="Index"></param>
/// <param name="pApiKey"></param>
/// <returns></returns>
[DllImport("ViKey")]
public static extern uint VikeySetApiKey(ushort Index, Byte[] pApiKey);
[DllImport("ViKey")]
public static extern uint VikeyUninitialization();
}
}

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@@ -1,145 +0,0 @@
using System;
using System.Collections.Generic;
using System.IO;
using System.Linq;
using System.Security.Cryptography;
using System.Text;
using System.Threading.Tasks;
namespace
{
public class
{
public static void Uninitialization()
{
API类.VikeyUninitialization();
}
// 保留原有方法,但添加新方法
public static int (ushort Index, string , string )
{
// 保持不变
uint = 0;
var re = API类.VikeyFind(ref );
if (re != 0) return -1;
API类.VikeyAdminLogin(Index, Encoding.Default.GetBytes());
SHA256 sHA256 = SHA256.Create();
API类.VikeyGetHID(Index, out uint pid);
byte[] HID = BitConverter.GetBytes(pid);
var pswd = Encoding.UTF8.GetBytes();
byte[] = HID.Concat(pswd).ToArray();
var = sHA256.ComputeHash();
API类.VikeyWriteData(Index, 0, 32, );
byte[] randomBytes = new byte[96];
Random random = new Random();
random.NextBytes(randomBytes);
API类.VikeyWriteData(Index, 32, 96, randomBytes);
return 0;
}
/// <summary>
/// 新方法:仅检查加密狗时间,不验证密码和数据
/// </summary>
public static int ()
{
uint = 0;
var re = API类.VikeyFind(ref );
if (re != 0 || == 0) return -1;
// 直接返回第一个找到的加密狗
return 0;
}
/// <summary>
/// 原有方法:寻找加密狗并进行完整验证
/// </summary>
public static int (string ,string )
{
uint = 0;
var re = API类.VikeyFind(ref );
if (re != 0) return -1;
int = -1;
for (ushort i = 0; i < ; i++)
{
re = API类.VikeyUserLogin(i, Encoding.Default.GetBytes());
if ((i, )) return i;
}
return (int);
}
public static bool (ushort Index, string )
{
// 保持不变
SHA256 sHA256 = SHA256.Create();
API类.VikeyGetHID(Index, out uint pid);
byte[] HID = BitConverter.GetBytes(pid);
var pswd = Encoding.UTF8.GetBytes();
byte[] = HID.Concat(pswd).ToArray();
var = sHA256.ComputeHash();
var buffer = new byte[32];
API类.VikeyReadData(Index, 0, 32, buffer);
return buffer.SequenceEqual();
}
public static TimeSpan (int )
{
ushort = (ushort);
try
{
// 读时间前必须先登录(用户权限即可)
uint re = API类.VikeyUserLogin(, Encoding.Default.GetBytes("11111111"));
if (re != 0)
{
Console.WriteLine($"VikeyUserLogin 失败: 0x{re:X}");
return TimeSpan.Zero;
}
re = API类.VikeyGetTime(, out API类.SVikeyTime );
if (re != 0)
{
Console.WriteLine($"VikeyGetTime 失败: 0x{re:X}");
return TimeSpan.Zero;
}
re = API类.VikeyGetValidTime(, out API类.SVikeyTime );
if (re != 0)
{
Console.WriteLine($"VikeyGetValidTime 失败: 0x{re:X}");
return TimeSpan.Zero;
}
re = API类.VikeyCheckValidTime(, out byte isValid);
Console.WriteLine($"VikeyCheckValidTime: ret=0x{re:X}, isValid={isValid}");
// cYear 是 byteViKey 用距 2000 年的偏移量
DateTime _现在时间 = new DateTime(.cYear + 2000, .cMonth, .cDay,
.cHour, .cMinute, .cSecond);
DateTime _到期时间 = new DateTime(.cYear + 2000, .cMonth, .cDay,
.cHour, .cMinute, .cSecond);
Console.WriteLine($"加密狗当前时间: {_现在时间:yyyy-MM-dd HH:mm:ss}");
Console.WriteLine($"加密狗到期时间: {_到期时间:yyyy-MM-dd HH:mm:ss}");
return _到期时间 - _现在时间;
}
catch (Exception ex)
{
Console.WriteLine($"检查剩余时间异常: {ex.Message}");
return TimeSpan.Zero;
}
}
public static uint SN(Byte[] buffer)
{
return API类.VikeySetUserSN(buffer);
}
public static uint APIkey(ushort index, Byte[] buffer)
{
return API类.VikeySetApiKey(index, buffer);
}
}
}

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@@ -1,15 +0,0 @@
using System;
using ;
// ═══════════════════════════════════════════════════════
// 刷入脚本(独立运行,不属于 ACP 主程序流程)
// 使用前请先用 ViKey 管理工具设置好密码和到期时间
// ═══════════════════════════════════════════════════════
public class Program
{
public static void Main(string[] args)
{
//写入加密狗(需管理员密码)
.(0, "00000000", "ACP项目");
}
}