feat: 完成基本的Jpeg控制

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SikongJueluo 2025-08-08 18:38:16 +08:00
parent 58378851bb
commit bbde060d11
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14 changed files with 929 additions and 1680 deletions

View File

@ -1,77 +1,22 @@
using System.ComponentModel.DataAnnotations; using System.ComponentModel.DataAnnotations;
using System.Threading.Tasks;
using Microsoft.AspNetCore.Cors; using Microsoft.AspNetCore.Cors;
using Microsoft.AspNetCore.Mvc; using Microsoft.AspNetCore.Mvc;
using Microsoft.AspNetCore.Authorization;
using System.Security.Claims;
using Database;
using DotNext;
/// <summary> /// <summary>
/// 视频流控制器,支持动态配置摄像头连接 /// 视频流控制器,支持动态配置摄像头连接
/// </summary> /// </summary>
[ApiController] [ApiController]
[Authorize]
[Route("api/[controller]")] [Route("api/[controller]")]
public class VideoStreamController : ControllerBase public class VideoStreamController : ControllerBase
{ {
private static NLog.Logger logger = NLog.LogManager.GetCurrentClassLogger(); private static NLog.Logger logger = NLog.LogManager.GetCurrentClassLogger();
private readonly server.Services.HttpVideoStreamService _videoStreamService; private readonly server.Services.HttpVideoStreamService _videoStreamService;
/// <summary>
/// 视频流信息结构体
/// </summary>
public class StreamInfoResult
{
/// <summary>
/// TODO:
/// </summary>
public int FrameRate { get; set; }
/// <summary>
/// TODO:
/// </summary>
public int FrameWidth { get; set; }
/// <summary>
/// TODO:
/// </summary>
public int FrameHeight { get; set; }
/// <summary>
/// TODO:
/// </summary>
public string Format { get; set; } = "MJPEG";
/// <summary>
/// TODO:
/// </summary>
public string HtmlUrl { get; set; } = "";
/// <summary>
/// TODO:
/// </summary>
public string MjpegUrl { get; set; } = "";
/// <summary>
/// TODO:
/// </summary>
public string SnapshotUrl { get; set; } = "";
/// <summary>
/// TODO:
/// </summary>
public string UsbCameraUrl { get; set; } = "";
}
/// <summary>
/// 摄像头配置请求模型
/// </summary>
public class CameraConfigRequest
{
/// <summary>
/// 摄像头地址
/// </summary>
[Required]
[RegularExpression(@"^(?:(?:25[0-5]|2[0-4][0-9]|[01]?[0-9][0-9]?)\.){3}(?:25[0-5]|2[0-4][0-9]|[01]?[0-9][0-9]?)$", ErrorMessage = "IP地址")]
public string Address { get; set; } = "";
/// <summary>
/// 摄像头端口
/// </summary>
[Required]
[Range(1, 65535, ErrorMessage = "端口必须在1-65535范围内")]
public int Port { get; set; }
}
/// <summary> /// <summary>
/// 分辨率配置请求模型 /// 分辨率配置请求模型
/// </summary> /// </summary>
@ -92,6 +37,14 @@ public class VideoStreamController : ControllerBase
public int Height { get; set; } public int Height { get; set; }
} }
public class AvailableResolutionsResponse
{
public int Width { get; set; }
public int Height { get; set; }
public string Name { get; set; } = string.Empty;
public string Value => $"{Width}x{Height}";
}
/// <summary> /// <summary>
/// 初始化HTTP视频流控制器 /// 初始化HTTP视频流控制器
/// </summary> /// </summary>
@ -102,6 +55,40 @@ public class VideoStreamController : ControllerBase
_videoStreamService = videoStreamService; _videoStreamService = videoStreamService;
} }
private Optional<string> TryGetBoardId()
{
var userName = User.FindFirstValue(ClaimTypes.Name);
if (string.IsNullOrEmpty(userName))
{
logger.Error("User name not found in claims.");
return Optional<string>.None;
}
var db = new AppDataConnection();
if (db == null)
{
logger.Error("Database connection failed.");
return Optional<string>.None;
}
var userRet = db.GetUserByName(userName);
if (!userRet.IsSuccessful || !userRet.Value.HasValue)
{
logger.Error("User not found.");
return Optional<string>.None;
}
var user = userRet.Value.Value;
var boardId = user.BoardID;
if (boardId == Guid.Empty)
{
logger.Error("No board bound to this user.");
return Optional<string>.None;
}
return boardId.ToString();
}
/// <summary> /// <summary>
/// 获取 HTTP 视频流服务状态 /// 获取 HTTP 视频流服务状态
/// </summary> /// </summary>
@ -114,8 +101,6 @@ public class VideoStreamController : ControllerBase
{ {
try try
{ {
logger.Info("GetStatus方法被调用控制器{Controller}路径api/VideoStream/Status", this.GetType().Name);
// 使用HttpVideoStreamService提供的状态信息 // 使用HttpVideoStreamService提供的状态信息
var status = _videoStreamService.GetServiceStatus(); var status = _videoStreamService.GetServiceStatus();
@ -129,101 +114,18 @@ public class VideoStreamController : ControllerBase
} }
} }
/// <summary> [HttpGet("MyEndpoint")]
/// 获取 HTTP 视频流信息
/// </summary>
/// <returns>流信息</returns>
[HttpGet("StreamInfo")]
[EnableCors("Users")]
[ProducesResponseType(typeof(StreamInfoResult), StatusCodes.Status200OK)]
[ProducesResponseType(typeof(Exception), StatusCodes.Status500InternalServerError)]
public IResult GetStreamInfo()
{
try
{
logger.Info("获取 HTTP 视频流信息");
var result = new StreamInfoResult
{
FrameRate = _videoStreamService.FrameRate,
FrameWidth = _videoStreamService.FrameWidth,
FrameHeight = _videoStreamService.FrameHeight,
Format = "MJPEG",
HtmlUrl = $"http://{Global.localhost}:{_videoStreamService.ServerPort}/video-feed.html",
MjpegUrl = $"http://{Global.localhost}:{_videoStreamService.ServerPort}/video-stream",
SnapshotUrl = $"http://{Global.localhost}:{_videoStreamService.ServerPort}/snapshot",
UsbCameraUrl = $"http://{Global.localhost}:{_videoStreamService.ServerPort}/usb-camera"
};
return TypedResults.Ok(result);
}
catch (Exception ex)
{
logger.Error(ex, "获取 HTTP 视频流信息失败");
return TypedResults.InternalServerError(ex.Message);
}
}
/// <summary>
/// 配置摄像头连接参数
/// </summary>
/// <param name="config">摄像头配置</param>
/// <returns>配置结果</returns>
[HttpPost("ConfigureCamera")]
[EnableCors("Users")]
[ProducesResponseType(typeof(object), StatusCodes.Status200OK)]
[ProducesResponseType(typeof(object), StatusCodes.Status400BadRequest)]
[ProducesResponseType(typeof(Exception), StatusCodes.Status500InternalServerError)]
public async Task<IResult> ConfigureCamera([FromBody] CameraConfigRequest config)
{
try
{
logger.Info("配置摄像头连接: {Address}:{Port}", config.Address, config.Port);
var success = await _videoStreamService.ConfigureCameraAsync(config.Address, config.Port);
if (success)
{
return TypedResults.Ok(new
{
success = true,
message = "摄像头配置成功",
cameraAddress = config.Address,
cameraPort = config.Port
});
}
else
{
return TypedResults.BadRequest(new
{
success = false,
message = "摄像头配置失败",
cameraAddress = config.Address,
cameraPort = config.Port
});
}
}
catch (Exception ex)
{
logger.Error(ex, "配置摄像头连接失败");
return TypedResults.InternalServerError(ex.Message);
}
}
/// <summary>
/// 获取当前摄像头配置
/// </summary>
/// <returns>摄像头配置信息</returns>
[HttpGet("CameraConfig")]
[EnableCors("Users")] [EnableCors("Users")]
[ProducesResponseType(typeof(object), StatusCodes.Status200OK)] [ProducesResponseType(typeof(object), StatusCodes.Status200OK)]
[ProducesResponseType(typeof(Exception), StatusCodes.Status500InternalServerError)] [ProducesResponseType(typeof(Exception), StatusCodes.Status500InternalServerError)]
public IResult GetCameraConfig() public IResult MyEndpoint()
{ {
try try
{ {
logger.Info("获取摄像头配置"); var boardId = TryGetBoardId().OrThrow(() => new Exception("Board ID not found"));
var cameraStatus = _videoStreamService.GetCameraStatus(); var endpoint = _videoStreamService.GetVideoEndpoint(boardId);
return TypedResults.Ok(cameraStatus); return TypedResults.Ok(endpoint);
} }
catch (Exception ex) catch (Exception ex)
{ {
@ -232,22 +134,6 @@ public class VideoStreamController : ControllerBase
} }
} }
/// <summary>
/// 控制 HTTP 视频流服务开关
/// </summary>
/// <param name="enabled">是否启用服务</param>
/// <returns>操作结果</returns>
[HttpPost("SetEnabled")]
[EnableCors("Users")]
[ProducesResponseType(typeof(object), StatusCodes.Status200OK)]
[ProducesResponseType(typeof(Exception), StatusCodes.Status500InternalServerError)]
public async Task<IResult> SetEnabled([FromQuery] bool enabled)
{
logger.Info("设置视频流服务开关: {Enabled}", enabled);
await _videoStreamService.SetEnable(enabled);
return TypedResults.Ok();
}
/// <summary> /// <summary>
/// 测试 HTTP 视频流连接 /// 测试 HTTP 视频流连接
/// </summary> /// </summary>
@ -260,32 +146,23 @@ public class VideoStreamController : ControllerBase
{ {
try try
{ {
logger.Info("测试 HTTP 视频流连接"); var boardId = TryGetBoardId().OrThrow(() => new Exception("Board ID not found"));
var endpoint = _videoStreamService.GetVideoEndpoint(boardId);
// 尝试通过HTTP请求检查视频流服务是否可访问 // 尝试通过HTTP请求检查视频流服务是否可访问
bool isConnected = false; bool isConnected = false;
using (var httpClient = new HttpClient()) using (var httpClient = new HttpClient())
{ {
httpClient.Timeout = TimeSpan.FromSeconds(2); // 设置较短的超时时间 httpClient.Timeout = TimeSpan.FromSeconds(2); // 设置较短的超时时间
var response = await httpClient.GetAsync($"http://{Global.localhost}:{_videoStreamService.ServerPort}/"); var response = await httpClient.GetAsync(endpoint.MjpegUrl);
// 只要能连接上就认为成功,不管返回状态 // 只要能连接上就认为成功,不管返回状态
isConnected = response.IsSuccessStatusCode; isConnected = response.IsSuccessStatusCode;
} }
logger.Info("测试摄像头连接"); var ret = await _videoStreamService.TestCameraConnection(boardId);
var (isSuccess, message) = await _videoStreamService.TestCameraConnectionAsync(); return TypedResults.Ok(ret);
return TypedResults.Ok(new
{
isConnected = isConnected,
success = isSuccess,
message = message,
cameraAddress = _videoStreamService.CameraAddress,
cameraPort = _videoStreamService.CameraPort,
timestamp = DateTime.Now
});
} }
catch (Exception ex) catch (Exception ex)
{ {
@ -295,6 +172,23 @@ public class VideoStreamController : ControllerBase
} }
} }
[HttpPost("DisableTransmission")]
public async Task<IActionResult> DisableHdmiTransmission()
{
try
{
var boardId = TryGetBoardId().OrThrow(() => new ArgumentException("Board ID is required"));
await _videoStreamService.DisableHdmiTransmissionAsync(boardId.ToString());
return Ok($"HDMI transmission for board {boardId} disabled.");
}
catch (Exception ex)
{
logger.Error(ex, $"Failed to disable HDMI transmission for board");
return StatusCode(500, $"Error disabling HDMI transmission: {ex.Message}");
}
}
/// <summary> /// <summary>
/// 设置视频流分辨率 /// 设置视频流分辨率
/// </summary> /// </summary>
@ -309,16 +203,16 @@ public class VideoStreamController : ControllerBase
{ {
try try
{ {
logger.Info($"设置视频流分辨率为 {request.Width}x{request.Height}"); var boardId = TryGetBoardId().OrThrow(() => new Exception("Board ID not found"));
var (isSuccess, message) = await _videoStreamService.SetResolutionAsync(request.Width, request.Height); var ret = await _videoStreamService.SetResolutionAsync(boardId, request.Width, request.Height);
if (isSuccess) if (ret.IsSuccessful && ret.Value)
{ {
return TypedResults.Ok(new return TypedResults.Ok(new
{ {
success = true, success = true,
message = message, message = $"成功设置分辨率为 {request.Width}x{request.Height}",
width = request.Width, width = request.Width,
height = request.Height, height = request.Height,
timestamp = DateTime.Now timestamp = DateTime.Now
@ -329,7 +223,7 @@ public class VideoStreamController : ControllerBase
return TypedResults.BadRequest(new return TypedResults.BadRequest(new
{ {
success = false, success = false,
message = message, message = ret.Error?.ToString() ?? "未知错误",
timestamp = DateTime.Now timestamp = DateTime.Now
}); });
} }
@ -341,37 +235,6 @@ public class VideoStreamController : ControllerBase
} }
} }
/// <summary>
/// 获取当前分辨率
/// </summary>
/// <returns>当前分辨率信息</returns>
[HttpGet("Resolution")]
[EnableCors("Users")]
[ProducesResponseType(typeof(object), StatusCodes.Status200OK)]
[ProducesResponseType(typeof(string), StatusCodes.Status500InternalServerError)]
public IResult GetCurrentResolution()
{
try
{
logger.Info("获取当前视频流分辨率");
var (width, height) = _videoStreamService.GetCurrentResolution();
return TypedResults.Ok(new
{
width = width,
height = height,
resolution = $"{width}x{height}",
timestamp = DateTime.Now
});
}
catch (Exception ex)
{
logger.Error(ex, "获取当前分辨率失败");
return TypedResults.InternalServerError($"获取当前分辨率失败: {ex.Message}");
}
}
/// <summary> /// <summary>
/// 获取支持的分辨率列表 /// 获取支持的分辨率列表
/// </summary> /// </summary>
@ -382,29 +245,19 @@ public class VideoStreamController : ControllerBase
[ProducesResponseType(typeof(string), StatusCodes.Status500InternalServerError)] [ProducesResponseType(typeof(string), StatusCodes.Status500InternalServerError)]
public IResult GetSupportedResolutions() public IResult GetSupportedResolutions()
{ {
try // (640, 480, "640x480 (VGA)"),
// (960, 540, "960x540 (qHD)"),
// (1280, 720, "1280x720 (HD)"),
// (1280, 960, "1280x960 (SXGA)"),
// (1920, 1080, "1920x1080 (Full HD)")
return TypedResults.Ok(new AvailableResolutionsResponse[]
{ {
logger.Info("获取支持的分辨率列表"); new AvailableResolutionsResponse { Width = 640, Height = 480, Name = "640x480(VGA)" },
new AvailableResolutionsResponse { Width = 960, Height = 480, Name = "960x480(qHD)" },
var resolutions = _videoStreamService.GetSupportedResolutions(); new AvailableResolutionsResponse { Width = 1280, Height = 720, Name = "1280x720(HD)" },
new AvailableResolutionsResponse { Width = 1280, Height = 960, Name = "1280x960(SXGA)" },
return TypedResults.Ok(new new AvailableResolutionsResponse { Width = 1920, Height = 1080, Name = "1920x1080(Full HD)" }
{ });
resolutions = resolutions.Select(r => new
{
width = r.Width,
height = r.Height,
name = r.Name,
value = $"{r.Width}x{r.Height}"
}),
timestamp = DateTime.Now
});
}
catch (Exception ex)
{
logger.Error(ex, "获取支持的分辨率列表失败");
return TypedResults.InternalServerError($"获取支持的分辨率列表失败: {ex.Message}");
}
} }
/// <summary> /// <summary>
@ -420,9 +273,9 @@ public class VideoStreamController : ControllerBase
{ {
try try
{ {
logger.Info("收到初始化自动对焦请求"); var boardId = TryGetBoardId().OrThrow(() => new Exception("Board ID not found"));
var result = await _videoStreamService.InitAutoFocusAsync(); var result = await _videoStreamService.InitAutoFocusAsync(boardId);
if (result) if (result)
{ {
@ -465,9 +318,9 @@ public class VideoStreamController : ControllerBase
{ {
try try
{ {
logger.Info("收到执行自动对焦请求"); var boardId = TryGetBoardId().OrThrow(() => new Exception("Board ID not found"));
var result = await _videoStreamService.PerformAutoFocusAsync(); var result = await _videoStreamService.PerformAutoFocusAsync(boardId);
if (result) if (result)
{ {
@ -496,61 +349,4 @@ public class VideoStreamController : ControllerBase
return TypedResults.InternalServerError($"执行自动对焦失败: {ex.Message}"); return TypedResults.InternalServerError($"执行自动对焦失败: {ex.Message}");
} }
} }
/// <summary>
/// 执行一次自动对焦 (GET方式)
/// </summary>
/// <returns>对焦结果</returns>
[HttpGet("Focus")]
[EnableCors("Users")]
[ProducesResponseType(typeof(object), StatusCodes.Status200OK)]
[ProducesResponseType(typeof(object), StatusCodes.Status400BadRequest)]
[ProducesResponseType(typeof(string), StatusCodes.Status500InternalServerError)]
public async Task<IResult> Focus()
{
try
{
logger.Info("收到执行一次对焦请求 (GET)");
// 检查摄像头是否已配置
if (!_videoStreamService.IsCameraConfigured())
{
logger.Warn("摄像头未配置,无法执行对焦");
return TypedResults.BadRequest(new
{
success = false,
message = "摄像头未配置,请先配置摄像头连接",
timestamp = DateTime.Now
});
}
var result = await _videoStreamService.PerformAutoFocusAsync();
if (result)
{
logger.Info("对焦执行成功");
return TypedResults.Ok(new
{
success = true,
message = "对焦执行成功",
timestamp = DateTime.Now
});
}
else
{
logger.Warn("对焦执行失败");
return TypedResults.BadRequest(new
{
success = false,
message = "对焦执行失败",
timestamp = DateTime.Now
});
}
}
catch (Exception ex)
{
logger.Error(ex, "执行对焦时发生异常");
return TypedResults.InternalServerError($"执行对焦失败: {ex.Message}");
}
}
} }

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@ -1,6 +1,5 @@
using System.Net; using System.Net;
using DotNext; using DotNext;
using Peripherals.PowerClient;
using WebProtocol; using WebProtocol;
namespace Peripherals.CameraClient; namespace Peripherals.CameraClient;
@ -16,7 +15,7 @@ static class CameraAddr
public const UInt32 CAMERA_POWER = BASE + 0x10; //[0]: rstn, 0 is reset. [8]: power down, 1 is down. public const UInt32 CAMERA_POWER = BASE + 0x10; //[0]: rstn, 0 is reset. [8]: power down, 1 is down.
} }
class Camera public class Camera
{ {
private static readonly NLog.Logger logger = NLog.LogManager.GetCurrentClassLogger(); private static readonly NLog.Logger logger = NLog.LogManager.GetCurrentClassLogger();
@ -276,7 +275,7 @@ class Camera
{ {
var currentAddress = (UInt16)(baseAddress + i - 1); var currentAddress = (UInt16)(baseAddress + i - 1);
var data = (byte)cmd[i]; var data = (byte)cmd[i];
logger.Debug($"ConfigureRegisters: 写入地址=0x{currentAddress:X4}, 数据=0x{data:X2}"); logger.Debug($"ConfigureRegisters: 写入地址=0x{currentAddress:X4}, 数据=0x{data:X2}");
// 准备I2C数据16位地址 + 8位数据 // 准备I2C数据16位地址 + 8位数据
@ -322,14 +321,14 @@ class Camera
public async ValueTask<Result<byte>> ReadRegister(UInt16 register) public async ValueTask<Result<byte>> ReadRegister(UInt16 register)
{ {
var i2c = new Peripherals.I2cClient.I2c(this.address, this.port, this.taskID, this.timeout); var i2c = new Peripherals.I2cClient.I2c(this.address, this.port, this.taskID, this.timeout);
// Convert 16-bit register address to byte array // Convert 16-bit register address to byte array
var registerBytes = new byte[] { (byte)(register >> 8), (byte)(register & 0xFF) }; var registerBytes = new byte[] { (byte)(register >> 8), (byte)(register & 0xFF) };
var ret = await i2c.ReadData(CAM_I2C_ADDR, registerBytes, 1, CAM_PROTO); var ret = await i2c.ReadData(CAM_I2C_ADDR, registerBytes, 1, CAM_PROTO);
if (!ret.IsSuccessful) if (!ret.IsSuccessful)
return new(ret.Error); return new(ret.Error);
return new Result<byte>(ret.Value[0]); return new Result<byte>(ret.Value[0]);
} }
@ -412,25 +411,25 @@ class Camera
[0x3801, unchecked((byte)(hStart & 0xFF))], [0x3801, unchecked((byte)(hStart & 0xFF))],
[0x3802, unchecked((byte)((vStart >> 8) & 0xFF))], [0x3802, unchecked((byte)((vStart >> 8) & 0xFF))],
[0x3803, unchecked((byte)(vStart & 0xFF))], [0x3803, unchecked((byte)(vStart & 0xFF))],
// H_END/V_END // H_END/V_END
[0x3804, unchecked((byte)((hEnd >> 8) & 0xFF))], [0x3804, unchecked((byte)((hEnd >> 8) & 0xFF))],
[0x3805, unchecked((byte)(hEnd & 0xFF))], [0x3805, unchecked((byte)(hEnd & 0xFF))],
[0x3806, unchecked((byte)((vEnd >> 8) & 0xFF))], [0x3806, unchecked((byte)((vEnd >> 8) & 0xFF))],
[0x3807, unchecked((byte)(vEnd & 0xFF))], [0x3807, unchecked((byte)(vEnd & 0xFF))],
// 输出像素个数 // 输出像素个数
[0x3808, unchecked((byte)((dvpHo >> 8) & 0xFF))], [0x3808, unchecked((byte)((dvpHo >> 8) & 0xFF))],
[0x3809, unchecked((byte)(dvpHo & 0xFF))], [0x3809, unchecked((byte)(dvpHo & 0xFF))],
[0x380A, unchecked((byte)((dvpVo >> 8) & 0xFF))], [0x380A, unchecked((byte)((dvpVo >> 8) & 0xFF))],
[0x380B, unchecked((byte)(dvpVo & 0xFF))], [0x380B, unchecked((byte)(dvpVo & 0xFF))],
// 总像素 // 总像素
[0x380C, unchecked((byte)((hts >> 8) & 0xFF))], [0x380C, unchecked((byte)((hts >> 8) & 0xFF))],
[0x380D, unchecked((byte)(hts & 0xFF))], [0x380D, unchecked((byte)(hts & 0xFF))],
[0x380E, unchecked((byte)((vts >> 8) & 0xFF))], [0x380E, unchecked((byte)((vts >> 8) & 0xFF))],
[0x380F, unchecked((byte)(vts & 0xFF))], [0x380F, unchecked((byte)(vts & 0xFF))],
// H_OFFSET/V_OFFSET // H_OFFSET/V_OFFSET
[0x3810, unchecked((byte)((hOffset >> 8) & 0xFF))], [0x3810, unchecked((byte)((hOffset >> 8) & 0xFF))],
[0x3811, unchecked((byte)(hOffset & 0xFF))], [0x3811, unchecked((byte)(hOffset & 0xFF))],
@ -521,7 +520,7 @@ class Camera
hOffset: 16, vOffset: 4, hOffset: 16, vOffset: 4,
hWindow: 2624, vWindow: 1456 hWindow: 2624, vWindow: 1456
); );
} }
/// <summary> /// <summary>
@ -537,7 +536,7 @@ class Camera
hOffset: 16, vOffset: 4, hOffset: 16, vOffset: 4,
hWindow: 2624, vWindow: 1456 hWindow: 2624, vWindow: 1456
); );
} }
/// <summary> /// <summary>
@ -637,7 +636,7 @@ class Camera
[0x3008, 0x42] // 休眠命令 [0x3008, 0x42] // 休眠命令
}; };
return await ConfigureRegisters(sleepRegisters, customDelayMs: 50); return await ConfigureRegisters(sleepRegisters, customDelayMs: 50);
} }
/// <summary> /// <summary>
@ -1305,7 +1304,7 @@ class Camera
UInt16 firmwareAddr = 0x8000; UInt16 firmwareAddr = 0x8000;
var firmwareCommand = new UInt16[1 + OV5640_AF_FIRMWARE.Length]; var firmwareCommand = new UInt16[1 + OV5640_AF_FIRMWARE.Length];
firmwareCommand[0] = firmwareAddr; firmwareCommand[0] = firmwareAddr;
// 将固件数据复制到命令数组中 // 将固件数据复制到命令数组中
for (int i = 0; i < OV5640_AF_FIRMWARE.Length; i++) for (int i = 0; i < OV5640_AF_FIRMWARE.Length; i++)
{ {
@ -1425,7 +1424,7 @@ class Camera
logger.Error($"自动对焦超时,状态: 0x{readResult.Value:X2}"); logger.Error($"自动对焦超时,状态: 0x{readResult.Value:X2}");
return new(new Exception($"自动对焦超时,状态: 0x{readResult.Value:X2}")); return new(new Exception($"自动对焦超时,状态: 0x{readResult.Value:X2}"));
} }
await Task.Delay(100); await Task.Delay(100);
} }

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@ -55,28 +55,28 @@ class DebuggerCmd
public const UInt32 ClearSignal = 0xFFFF_FFFF; public const UInt32 ClearSignal = 0xFFFF_FFFF;
} }
/// <summary> /// <summary>
/// 信号捕获模式枚举 /// 信号捕获模式枚举
/// </summary> /// </summary>
public enum CaptureMode : byte public enum CaptureMode : byte
{ {
/// <summary> /// <summary>
/// 无捕获模式 /// 无捕获模式
/// </summary> /// </summary>
None = 0, None = 0,
/// <summary> /// <summary>
/// 低电平触发模式 /// 低电平触发模式
/// </summary> /// </summary>
Logic0 = 1, Logic0 = 1,
/// <summary> /// <summary>
/// 高电平触发模式 /// 高电平触发模式
/// </summary> /// </summary>
Logic1 = 2, Logic1 = 2,
/// <summary> /// <summary>
/// 上升沿触发模式 /// 上升沿触发模式
/// </summary> /// </summary>
Rise = 3, Rise = 3,
/// <summary> /// <summary>
/// 下降沿触发模式 /// 下降沿触发模式
/// </summary> /// </summary>
Fall = 4, Fall = 4,
@ -170,7 +170,7 @@ public class DebuggerClient
/// <returns>操作结果,成功返回状态标志字节,失败返回错误信息</returns> /// <returns>操作结果,成功返回状态标志字节,失败返回错误信息</returns>
public async ValueTask<Result<byte>> ReadFlag() public async ValueTask<Result<byte>> ReadFlag()
{ {
var ret = await UDPClientPool.ReadAddr(this.ep, this.taskID, DebuggerAddr.Signal, this.timeout); var ret = await UDPClientPool.ReadAddrByte(this.ep, this.taskID, DebuggerAddr.Signal, this.timeout);
if (!ret.IsSuccessful) if (!ret.IsSuccessful)
{ {
logger.Error($"Failed to read flag: {ret.Error}"); logger.Error($"Failed to read flag: {ret.Error}");

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@ -8,8 +8,8 @@ static class I2cAddr
const UInt32 Base = 0x6000_0000; const UInt32 Base = 0x6000_0000;
/// <summary> /// <summary>
/// 0x0000_0000: /// 0x0000_0000:
/// [7:0] 本次传输的i2c地址(最高位总为0); /// [7:0] 本次传输的i2c地址(最高位总为0);
/// [8] 1为读0为写; /// [8] 1为读0为写;
/// [16] 1为SCCB协议0为I2C协议; /// [16] 1为SCCB协议0为I2C协议;
@ -17,45 +17,45 @@ static class I2cAddr
/// </summary> /// </summary>
public const UInt32 BaseConfig = Base + 0x0000_0000; public const UInt32 BaseConfig = Base + 0x0000_0000;
/// <summary> /// <summary>
/// 0x0000_0001: /// 0x0000_0001:
/// [15:0] 本次传输的数据量以字节为单位0为传1个字节; /// [15:0] 本次传输的数据量以字节为单位0为传1个字节;
/// [31:16] 若本次传输为读的DUMMY数据量字节为单位0为传1个字节 /// [31:16] 若本次传输为读的DUMMY数据量字节为单位0为传1个字节
/// </summary> /// </summary>
public const UInt32 TranConfig = Base + 0x0000_0001; public const UInt32 TranConfig = Base + 0x0000_0001;
/// <summary> /// <summary>
/// 0x0000_0002: [0] cmd_done; [8] cmd_error; /// 0x0000_0002: [0] cmd_done; [8] cmd_error;
/// </summary> /// </summary>
public const UInt32 Flag = Base + 0x0000_0002; public const UInt32 Flag = Base + 0x0000_0002;
/// <summary> /// <summary>
/// 0x0000_0003: FIFO写入口仅低8位有效只写 /// 0x0000_0003: FIFO写入口仅低8位有效只写
/// </summary> /// </summary>
public const UInt32 Write = Base + 0x0000_0003; public const UInt32 Write = Base + 0x0000_0003;
/// <summary> /// <summary>
/// 0x0000_0004: FIFO读出口仅低8位有效只读 /// 0x0000_0004: FIFO读出口仅低8位有效只读
/// </summary> /// </summary>
public const UInt32 Read = Base + 0x0000_0004; public const UInt32 Read = Base + 0x0000_0004;
/// <summary> /// <summary>
/// 0x0000_0005: [0] FIFO写入口清空[8] FIFO读出口清空 /// 0x0000_0005: [0] FIFO写入口清空[8] FIFO读出口清空
/// </summary> /// </summary>
public const UInt32 Clear = Base + 0x0000_0005; public const UInt32 Clear = Base + 0x0000_0005;
} }
/// <summary> /// <summary>
/// [TODO:Enum] /// [TODO:Enum]
/// </summary> /// </summary>
public enum I2cProtocol public enum I2cProtocol
{ {
/// <summary> /// <summary>
/// [TODO:Enum] /// [TODO:Enum]
/// </summary> /// </summary>
I2c = 0, I2c = 0,
/// <summary> /// <summary>
/// [TODO:Enum] /// [TODO:Enum]
/// </summary> /// </summary>
SCCB = 1 SCCB = 1
@ -296,7 +296,7 @@ public class I2c
// 读取数据 // 读取数据
{ {
var ret = await UDPClientPool.ReadAddr(this.ep, this.taskID, I2cAddr.Read); var ret = await UDPClientPool.ReadAddrByte(this.ep, this.taskID, I2cAddr.Read);
if (!ret.IsSuccessful) if (!ret.IsSuccessful)
{ {
logger.Error($"Failed to read data from I2C FIFO: {ret.Error}"); logger.Error($"Failed to read data from I2C FIFO: {ret.Error}");

View File

@ -0,0 +1,281 @@
using System.Net;
using DotNext;
using Common;
namespace Peripherals.JpegClient;
static class JpegAddr
{
const UInt32 BASE = 0x0000_0000;
public const UInt32 ENABLE = BASE + 0x0;
public const UInt32 FRAME_NUM = BASE + 0x1;
public const UInt32 FRAME_INFO = BASE + 0x2;
public const UInt32 FRAME_SAMPLE_RATE = BASE + 0x3;
public const UInt32 FRAME_DATA_MAX_POINTER = BASE + 0x4;
public const UInt32 DDR_FRAME_DATA_ADDR = 0x0000_0000;
public const UInt32 DDR_FRAME_DATA_MAX_ADDR = 0x8000_0000;
}
public class JpegInfo
{
public UInt32 Width { get; set; }
public UInt32 Height { get; set; }
public UInt32 Size { get; set; }
public JpegInfo(UInt32 width, UInt32 height, UInt32 size)
{
Width = width;
Height = height;
Size = size;
}
public JpegInfo(byte[] data)
{
if (data.Length < 8)
throw new ArgumentException("Invalid data length", nameof(data));
Width = ((UInt32)(data[5] << 8 + data[6] & 0xF0));
Height = ((UInt32)((data[6] & 0x0F) << 4 + data[7]));
Size = Number.BytesToUInt32(data, 0, 4).Value;
}
}
public enum JpegSampleRate : UInt32
{
RATE_1_1 = 0b1111_1111_1111_1111_1111_1111_1111_1111,
RATE_1_2 = 0b1010_1010_1010_1010_1010_1010_1010_1010,
RATE_1_4 = 0b1000_1000_1000_1000_1000_1000_1000_1000,
RATE_3_4 = 0b1110_1110_1110_1110_1110_1110_1110_1110,
RATE_1_8 = 0b1000_0000_1000_0000_1000_0000_1000_0000,
RATE_3_8 = 0b1001_0010_0100_1001_1001_0010_0100_1001,
RATE_7_8 = 0b1111_1110_1111_1110_1111_1110_1111_1110,
RATE_1_16 = 0b1000_0000_0000_0000_1000_0000_0000_0000,
RATE_3_16 = 0b1000_0100_0010_0000_1000_0100_0010_0000,
RATE_5_16 = 0b1001_0001_0010_0010_0100_0100_1000_1001,
RATE_15_16 = 0b1111_1111_1111_1110_1111_1111_1111_1110,
RATE_1_32 = 0b1000_0000_0000_0000_0000_0000_0000_0000,
RATE_31_32 = 0b1111_1111_1111_1111_1111_1111_1111_1110,
}
public class Jpeg
{
private static readonly NLog.Logger logger = NLog.LogManager.GetCurrentClassLogger();
readonly int timeout = 2000;
readonly int taskID;
readonly int port;
readonly string address;
private IPEndPoint ep;
public Jpeg(string address, int port, int taskID, int timeout = 2000)
{
if (timeout < 0)
throw new ArgumentException("Timeout couldn't be negative", nameof(timeout));
this.address = address;
this.taskID = taskID;
this.port = port;
this.ep = new IPEndPoint(IPAddress.Parse(address), port);
this.timeout = timeout;
}
public async ValueTask<bool> SetEnable(bool enable)
{
var ret = await UDPClientPool.WriteAddr(
this.ep, this.taskID, JpegAddr.ENABLE, Convert.ToUInt32(enable), this.timeout);
if (!ret.IsSuccessful)
{
logger.Error($"Failed to set JPEG enable: {ret.Error}");
return false;
}
return ret.Value;
}
public async ValueTask<bool> SetSampleRate(uint rate)
{
var ret = await UDPClientPool.WriteAddr(
this.ep, this.taskID, JpegAddr.FRAME_SAMPLE_RATE, rate, this.timeout);
if (!ret.IsSuccessful)
{
logger.Error($"Failed to set JPEG sample rate: {ret.Error}");
return false;
}
return ret.Value;
}
public async ValueTask<bool> SetSampleRate(JpegSampleRate rate)
{
return await SetSampleRate((uint)rate);
}
public async ValueTask<uint> GetFrameNumber()
{
var ret = await UDPClientPool.ReadAddrByte(
this.ep, this.taskID, JpegAddr.FRAME_NUM, this.timeout);
if (!ret.IsSuccessful)
{
logger.Error($"Failed to get JPEG frame number: {ret.Error}");
return 0;
}
return Number.BytesToUInt32(ret.Value.Options.Data ?? Array.Empty<byte>()).Value;
}
public async ValueTask<Optional<List<JpegInfo>>> GetFrameInfo(int num)
{
var ret = await UDPClientPool.ReadAddr(this.ep, this.taskID, JpegAddr.FRAME_INFO, num, this.timeout);
if (!ret.IsSuccessful)
{
logger.Error($"Failed to get JPEG frame info: {ret.Error}");
return new(null);
}
var data = ret.Value.Options.Data;
if (data == null || data.Length == 0)
{
logger.Error($"Data is null or empty");
return new(null);
}
if (data.Length != num * 2)
{
logger.Error(
$"Data length should be {num * 2} bytes, instead of {data.Length} bytes");
return new(null);
}
var infos = new List<JpegInfo>();
for (int i = 0; i < num; i++)
{
infos.Add(new JpegInfo(data[i..(i + 1)]));
}
return new(infos);
}
public async ValueTask<bool> UpdatePointer(uint cnt)
{
var ret = await UDPClientPool.WriteAddr(
this.ep, this.taskID, JpegAddr.FRAME_DATA_MAX_POINTER, cnt, this.timeout);
if (!ret.IsSuccessful)
{
logger.Error($"Failed to update pointer: {ret.Error}");
return false;
}
return ret.Value;
}
public async ValueTask<Result<byte[]?>> GetFrame(uint offset, uint length)
{
if (!MsgBus.IsRunning)
{
logger.Error("Message bus is not running");
return new(new Exception("Message bus is not running"));
}
MsgBus.UDPServer.ClearUDPData(this.ep.Address.ToString(), this.ep.Port);
var firstReadLength = (int)(Math.Min(length, JpegAddr.DDR_FRAME_DATA_MAX_ADDR - offset));
var secondReadLength = (int)(length - firstReadLength);
var dataBytes = new byte[length];
{
var ret = await UDPClientPool.ReadAddr4Bytes(
this.ep, this.taskID, JpegAddr.DDR_FRAME_DATA_ADDR + offset, firstReadLength, this.timeout);
if (!ret.IsSuccessful)
{
logger.Error($"Failed to get JPEG frame data: {ret.Error}");
return null;
}
if (ret.Value.Length != firstReadLength)
{
logger.Error($"Data length should be {firstReadLength} bytes, instead of {ret.Value.Length} bytes");
return null;
}
Buffer.BlockCopy(ret.Value, 0, dataBytes, 0, firstReadLength);
}
if (secondReadLength > 0)
{
var ret = await UDPClientPool.ReadAddr4Bytes(
this.ep, this.taskID, JpegAddr.DDR_FRAME_DATA_ADDR, secondReadLength, this.timeout);
if (!ret.IsSuccessful)
{
logger.Error($"Failed to get JPEG frame data: {ret.Error}");
return null;
}
if (ret.Value.Length != secondReadLength)
{
logger.Error($"Data length should be {secondReadLength} bytes, instead of {ret.Value.Length} bytes");
return null;
}
Buffer.BlockCopy(ret.Value, 0, dataBytes, firstReadLength, secondReadLength);
}
return dataBytes;
}
public async ValueTask<List<byte[]>> GetMultiFrames(uint offset, uint[] sizes)
{
var frames = new List<byte[]>();
for (int i = 0; i < sizes.Length; i++)
{
var ret = await GetFrame(offset, sizes[i]);
if (!ret.IsSuccessful)
{
logger.Error($"Failed to get JPEG frame {i} data: {ret.Error}");
continue;
}
if (ret.Value == null)
{
logger.Error($"Frame {i} data is null");
continue;
}
if (ret.Value.Length != sizes[i])
{
logger.Error(
$"Frame {i} data length should be {sizes[i]} bytes, instead of {ret.Value.Length} bytes");
continue;
}
frames.Add(ret.Value);
offset += sizes[i];
}
{
var ret = await UpdatePointer((uint)sizes.Length);
if (!ret) logger.Error($"Failed to update pointer");
}
return frames;
}
public async ValueTask<Result<List<byte[]>?>> GetMultiFrames(uint offset)
{
if (!MsgBus.IsRunning)
{
logger.Error("Message bus is not running");
return new(new Exception("Message bus is not running"));
}
MsgBus.UDPServer.ClearUDPData(this.ep.Address.ToString(), this.ep.Port);
var frameNum = await GetFrameNumber();
if (frameNum == 0) return null;
List<uint>? frameSizes = null;
{
var ret = await GetFrameInfo((int)frameNum);
if (!ret.HasValue || ret.Value.Count == 0)
{
logger.Error($"Failed to get frame info");
return null;
}
frameSizes = ret.Value.Select(x => x.Size).ToList();
}
var frames = await GetMultiFrames(offset, frameSizes.ToArray());
if (frames.Count == 0)
{
logger.Error($"Failed to get frames");
return null;
}
return frames;
}
}

View File

@ -12,7 +12,7 @@ static class AnalyzerAddr
const UInt32 DMA1_BASE = 0x7000_0000; const UInt32 DMA1_BASE = 0x7000_0000;
const UInt32 DDR_BASE = 0x0000_0000; const UInt32 DDR_BASE = 0x0000_0000;
/// <summary> /// <summary>
/// 0x0000_0000 R/W [ 0] capture on: 置1开始等待捕获0停止捕获。捕获到信号后该位自动清零。 <br/> /// 0x0000_0000 R/W [ 0] capture on: 置1开始等待捕获0停止捕获。捕获到信号后该位自动清零。 <br/>
/// [ 8] capture force: 置1则强制捕获信号自动置0。 <br/> /// [ 8] capture force: 置1则强制捕获信号自动置0。 <br/>
/// [16] capture busy: 1为逻辑分析仪正在捕获信号。 <br/> /// [16] capture busy: 1为逻辑分析仪正在捕获信号。 <br/>
@ -21,7 +21,7 @@ static class AnalyzerAddr
/// </summary> /// </summary>
public const UInt32 CAPTURE_MODE = BASE + 0x0000_0000; public const UInt32 CAPTURE_MODE = BASE + 0x0000_0000;
/// <summary> /// <summary>
/// 0x0000_0001 R/W [1:0] global trig mode: 00: 全局与 (&amp;) <br/> /// 0x0000_0001 R/W [1:0] global trig mode: 00: 全局与 (&amp;) <br/>
/// 01: 全局或 (&#124;) <br/> /// 01: 全局或 (&#124;) <br/>
/// 10: 全局非与(~&amp;) <br/> /// 10: 全局非与(~&amp;) <br/>
@ -29,7 +29,7 @@ static class AnalyzerAddr
/// </summary> /// </summary>
public const UInt32 GLOBAL_TRIG_MODE = BASE + 0x0000_0001; public const UInt32 GLOBAL_TRIG_MODE = BASE + 0x0000_0001;
/// <summary> /// <summary>
/// 0x0000_0010 - 0x0000_0017 R/W [5:0] 信号M的触发操作符共8路 <br/> /// 0x0000_0010 - 0x0000_0017 R/W [5:0] 信号M的触发操作符共8路 <br/>
/// [5:3] M's Operator: 000 == <br/> /// [5:3] M's Operator: 000 == <br/>
/// 001 != <br/> /// 001 != <br/>
@ -73,7 +73,7 @@ static class AnalyzerAddr
public const UInt32 DMA1_CAPTURE_CTRL_ADDR = DMA1_BASE + 0x0000_0014; public const UInt32 DMA1_CAPTURE_CTRL_ADDR = DMA1_BASE + 0x0000_0014;
public const UInt32 STORE_OFFSET_ADDR = DDR_BASE + 0x0100_0000; public const UInt32 STORE_OFFSET_ADDR = DDR_BASE + 0x0100_0000;
/// <summary> /// <summary>
/// 0x0100_0000 - 0x0100_03FF 只读 32位波形存储得到的32位数据中低八位最先捕获高八位最后捕获。<br/> /// 0x0100_0000 - 0x0100_03FF 只读 32位波形存储得到的32位数据中低八位最先捕获高八位最后捕获。<br/>
/// 共1024个地址每个地址存储4组深度为4096。<br/> /// 共1024个地址每个地址存储4组深度为4096。<br/>
/// </summary> /// </summary>
@ -87,53 +87,53 @@ static class AnalyzerAddr
[Flags] [Flags]
public enum CaptureStatus public enum CaptureStatus
{ {
/// <summary> /// <summary>
/// 无状态标志 /// 无状态标志
/// </summary> /// </summary>
None = 0, None = 0,
/// <summary> /// <summary>
/// 捕获使能位置1开始等待捕获0停止捕获。捕获到信号后该位自动清零 /// 捕获使能位置1开始等待捕获0停止捕获。捕获到信号后该位自动清零
/// </summary> /// </summary>
CaptureOn = 1 << 0, // [0] 捕获使能 CaptureOn = 1 << 0, // [0] 捕获使能
/// <summary> /// <summary>
/// 强制捕获位置1则强制捕获信号自动置0 /// 强制捕获位置1则强制捕获信号自动置0
/// </summary> /// </summary>
CaptureForce = 1 << 8, // [8] 强制捕获 CaptureForce = 1 << 8, // [8] 强制捕获
/// <summary> /// <summary>
/// 捕获忙碌位1为逻辑分析仪正在捕获信号 /// 捕获忙碌位1为逻辑分析仪正在捕获信号
/// </summary> /// </summary>
CaptureBusy = 1 << 16, // [16] 捕获进行中 CaptureBusy = 1 << 16, // [16] 捕获进行中
/// <summary> /// <summary>
/// 捕获完成位1为逻辑分析仪内存完整存储了此次捕获的信号 /// 捕获完成位1为逻辑分析仪内存完整存储了此次捕获的信号
/// </summary> /// </summary>
CaptureDone = 1 << 24 // [24] 捕获完成 CaptureDone = 1 << 24 // [24] 捕获完成
} }
/// <summary> /// <summary>
/// 全局触发模式枚举,定义多路信号触发条件的逻辑组合方式 /// 全局触发模式枚举,定义多路信号触发条件的逻辑组合方式
/// </summary> /// </summary>
public enum GlobalCaptureMode public enum GlobalCaptureMode
{ {
/// <summary> /// <summary>
/// 全局与模式,所有触发条件都必须满足 /// 全局与模式,所有触发条件都必须满足
/// </summary> /// </summary>
AND = 0b00, AND = 0b00,
/// <summary> /// <summary>
/// 全局或模式,任一触发条件满足即可 /// 全局或模式,任一触发条件满足即可
/// </summary> /// </summary>
OR = 0b01, OR = 0b01,
/// <summary> /// <summary>
/// 全局非与模式,不是所有触发条件都满足 /// 全局非与模式,不是所有触发条件都满足
/// </summary> /// </summary>
NAND = 0b10, NAND = 0b10,
/// <summary> /// <summary>
/// 全局非或模式,所有触发条件都不满足 /// 全局非或模式,所有触发条件都不满足
/// </summary> /// </summary>
NOR = 0b11 NOR = 0b11
@ -144,32 +144,32 @@ public enum GlobalCaptureMode
/// </summary> /// </summary>
public enum AnalyzerClockDiv public enum AnalyzerClockDiv
{ {
/// <summary> /// <summary>
/// 1分频 /// 1分频
/// </summary> /// </summary>
DIV1 = 0x0000_0000, DIV1 = 0x0000_0000,
/// <summary> /// <summary>
/// 2分频 /// 2分频
/// </summary> /// </summary>
DIV2 = 0x0000_0001, DIV2 = 0x0000_0001,
/// <summary> /// <summary>
/// 4分频 /// 4分频
/// </summary> /// </summary>
DIV4 = 0x0000_0002, DIV4 = 0x0000_0002,
/// <summary> /// <summary>
/// 8分频 /// 8分频
/// </summary> /// </summary>
DIV8 = 0x0000_0003, DIV8 = 0x0000_0003,
/// <summary> /// <summary>
/// 16分频 /// 16分频
/// </summary> /// </summary>
DIV16 = 0x0000_0004, DIV16 = 0x0000_0004,
/// <summary> /// <summary>
/// 32分频 /// 32分频
/// </summary> /// </summary>
DIV32 = 0x0000_0005, DIV32 = 0x0000_0005,
@ -190,27 +190,27 @@ public enum AnalyzerClockDiv
/// </summary> /// </summary>
public enum SignalOperator : byte public enum SignalOperator : byte
{ {
/// <summary> /// <summary>
/// 等于操作符 /// 等于操作符
/// </summary> /// </summary>
Equal = 0b000, // == Equal = 0b000, // ==
/// <summary> /// <summary>
/// 不等于操作符 /// 不等于操作符
/// </summary> /// </summary>
NotEqual = 0b001, // != NotEqual = 0b001, // !=
/// <summary> /// <summary>
/// 小于操作符 /// 小于操作符
/// </summary> /// </summary>
LessThan = 0b010, // < LessThan = 0b010, // <
/// <summary> /// <summary>
/// 小于等于操作符 /// 小于等于操作符
/// </summary> /// </summary>
LessThanOrEqual = 0b011, // <= LessThanOrEqual = 0b011, // <=
/// <summary> /// <summary>
/// 大于操作符 /// 大于操作符
/// </summary> /// </summary>
GreaterThan = 0b100, // > GreaterThan = 0b100, // >
/// <summary> /// <summary>
/// 大于等于操作符 /// 大于等于操作符
/// </summary> /// </summary>
GreaterThanOrEqual = 0b101 // >= GreaterThanOrEqual = 0b101 // >=
@ -221,35 +221,35 @@ public enum SignalOperator : byte
/// </summary> /// </summary>
public enum SignalValue : byte public enum SignalValue : byte
{ {
/// <summary> /// <summary>
/// 逻辑0电平 /// 逻辑0电平
/// </summary> /// </summary>
Logic0 = 0b000, // LOGIC 0 Logic0 = 0b000, // LOGIC 0
/// <summary> /// <summary>
/// 逻辑1电平 /// 逻辑1电平
/// </summary> /// </summary>
Logic1 = 0b001, // LOGIC 1 Logic1 = 0b001, // LOGIC 1
/// <summary> /// <summary>
/// 不关心该信号状态 /// 不关心该信号状态
/// </summary> /// </summary>
NotCare = 0b010, // X(not care) NotCare = 0b010, // X(not care)
/// <summary> /// <summary>
/// 上升沿触发 /// 上升沿触发
/// </summary> /// </summary>
Rise = 0b011, // RISE Rise = 0b011, // RISE
/// <summary> /// <summary>
/// 下降沿触发 /// 下降沿触发
/// </summary> /// </summary>
Fall = 0b100, // FALL Fall = 0b100, // FALL
/// <summary> /// <summary>
/// 上升沿或下降沿触发 /// 上升沿或下降沿触发
/// </summary> /// </summary>
RiseOrFall = 0b101, // RISE OR FALL RiseOrFall = 0b101, // RISE OR FALL
/// <summary> /// <summary>
/// 信号无变化 /// 信号无变化
/// </summary> /// </summary>
NoChange = 0b110, // NOCHANGE NoChange = 0b110, // NOCHANGE
/// <summary> /// <summary>
/// 特定数值 /// 特定数值
/// </summary> /// </summary>
SomeNumber = 0b111 // SOME NUMBER SomeNumber = 0b111 // SOME NUMBER
@ -260,11 +260,11 @@ public enum SignalValue : byte
/// </summary> /// </summary>
public enum AnalyzerChannelDiv public enum AnalyzerChannelDiv
{ {
/// <summary> /// <summary>
/// 1路 /// 1路
/// </summary> /// </summary>
ONE = 0x0000_0000, ONE = 0x0000_0000,
/// <summary> /// <summary>
/// 2路 /// 2路
/// </summary> /// </summary>
TWO = 0x0000_0001, TWO = 0x0000_0001,
@ -366,7 +366,7 @@ public class Analyzer
/// <returns>操作结果,成功返回寄存器值,否则返回异常信息</returns> /// <returns>操作结果,成功返回寄存器值,否则返回异常信息</returns>
public async ValueTask<Result<CaptureStatus>> ReadCaptureStatus() public async ValueTask<Result<CaptureStatus>> ReadCaptureStatus()
{ {
var ret = await UDPClientPool.ReadAddr(this.ep, this.taskID, AnalyzerAddr.CAPTURE_MODE, this.timeout); var ret = await UDPClientPool.ReadAddrByte(this.ep, this.taskID, AnalyzerAddr.CAPTURE_MODE, this.timeout);
if (!ret.IsSuccessful) if (!ret.IsSuccessful)
{ {
logger.Error($"Failed to read capture status: {ret.Error}"); logger.Error($"Failed to read capture status: {ret.Error}");

View File

@ -9,57 +9,57 @@ static class OscilloscopeAddr
{ {
const UInt32 BASE = 0x8000_0000; const UInt32 BASE = 0x8000_0000;
/// <summary> /// <summary>
/// 0x0000_0000:R/W[0] wave_run 启动捕获/关闭 /// 0x0000_0000:R/W[0] wave_run 启动捕获/关闭
/// </summary> /// </summary>
public const UInt32 START_CAPTURE = BASE + 0x0000_0000; public const UInt32 START_CAPTURE = BASE + 0x0000_0000;
/// <summary> /// <summary>
/// 0x0000_0001: R/W[7:0] trig_level 触发电平 /// 0x0000_0001: R/W[7:0] trig_level 触发电平
/// </summary> /// </summary>
public const UInt32 TRIG_LEVEL = BASE + 0x0000_0001; public const UInt32 TRIG_LEVEL = BASE + 0x0000_0001;
/// <summary> /// <summary>
/// 0x0000_0002:R/W[0] trig_edge 触发边沿0-下降沿1-上升沿 /// 0x0000_0002:R/W[0] trig_edge 触发边沿0-下降沿1-上升沿
/// </summary> /// </summary>
public const UInt32 TRIG_EDGE = BASE + 0x0000_0002; public const UInt32 TRIG_EDGE = BASE + 0x0000_0002;
/// <summary> /// <summary>
/// 0x0000_0003: R/W[9:0] h shift 水平偏移量 /// 0x0000_0003: R/W[9:0] h shift 水平偏移量
/// </summary> /// </summary>
public const UInt32 H_SHIFT = BASE + 0x0000_0003; public const UInt32 H_SHIFT = BASE + 0x0000_0003;
/// <summary> /// <summary>
/// 0x0000_0004: R/W[9:0] deci rate 抽样率0—1023 /// 0x0000_0004: R/W[9:0] deci rate 抽样率0—1023
/// </summary> /// </summary>
public const UInt32 DECI_RATE = BASE + 0x0000_0004; public const UInt32 DECI_RATE = BASE + 0x0000_0004;
/// <summary> /// <summary>
/// 0x0000_0005:R/W[0] ram refresh RAM刷新 /// 0x0000_0005:R/W[0] ram refresh RAM刷新
/// </summary> /// </summary>
public const UInt32 RAM_FRESH = BASE + 0x0000_0005; public const UInt32 RAM_FRESH = BASE + 0x0000_0005;
/// <summary> /// <summary>
/// 0x0000 0006:R[19: 0] ad_freq AD采样频率 /// 0x0000 0006:R[19: 0] ad_freq AD采样频率
/// </summary> /// </summary>
public const UInt32 AD_FREQ = BASE + 0x0000_0006; public const UInt32 AD_FREQ = BASE + 0x0000_0006;
/// <summary> /// <summary>
/// Ox0000_0007: R[7:0] ad_vpp AD采样幅度 /// Ox0000_0007: R[7:0] ad_vpp AD采样幅度
/// </summary> /// </summary>
public const UInt32 AD_VPP = BASE + 0x0000_0007; public const UInt32 AD_VPP = BASE + 0x0000_0007;
/// <summary> /// <summary>
/// 0x0000_0008: R[7:0] ad max AD采样最大值 /// 0x0000_0008: R[7:0] ad max AD采样最大值
/// </summary> /// </summary>
public const UInt32 AD_MAX = BASE + 0x0000_0008; public const UInt32 AD_MAX = BASE + 0x0000_0008;
/// <summary> /// <summary>
/// 0x0000_0009: R[7:0] ad_min AD采样最小值 /// 0x0000_0009: R[7:0] ad_min AD采样最小值
/// </summary> /// </summary>
public const UInt32 AD_MIN = BASE + 0x0000_0009; public const UInt32 AD_MIN = BASE + 0x0000_0009;
/// <summary> /// <summary>
/// 0x0000_1000-0x0000_13FF:R[7:0] wave_rd_data 共1024个字节 /// 0x0000_1000-0x0000_13FF:R[7:0] wave_rd_data 共1024个字节
/// </summary> /// </summary>
public const UInt32 RD_DATA_ADDR = BASE + 0x0000_1000; public const UInt32 RD_DATA_ADDR = BASE + 0x0000_1000;
@ -232,7 +232,7 @@ class Oscilloscope
/// <returns>操作结果,成功返回采样频率值,否则返回异常信息</returns> /// <returns>操作结果,成功返回采样频率值,否则返回异常信息</returns>
public async ValueTask<Result<UInt32>> GetADFrequency() public async ValueTask<Result<UInt32>> GetADFrequency()
{ {
var ret = await UDPClientPool.ReadAddr(this.ep, this.taskID, OscilloscopeAddr.AD_FREQ, this.timeout); var ret = await UDPClientPool.ReadAddrByte(this.ep, this.taskID, OscilloscopeAddr.AD_FREQ, this.timeout);
if (!ret.IsSuccessful) if (!ret.IsSuccessful)
{ {
logger.Error($"Failed to read AD frequency: {ret.Error}"); logger.Error($"Failed to read AD frequency: {ret.Error}");
@ -255,7 +255,7 @@ class Oscilloscope
/// <returns>操作结果,成功返回采样幅度值,否则返回异常信息</returns> /// <returns>操作结果,成功返回采样幅度值,否则返回异常信息</returns>
public async ValueTask<Result<byte>> GetADVpp() public async ValueTask<Result<byte>> GetADVpp()
{ {
var ret = await UDPClientPool.ReadAddr(this.ep, this.taskID, OscilloscopeAddr.AD_VPP, this.timeout); var ret = await UDPClientPool.ReadAddrByte(this.ep, this.taskID, OscilloscopeAddr.AD_VPP, this.timeout);
if (!ret.IsSuccessful) if (!ret.IsSuccessful)
{ {
logger.Error($"Failed to read AD VPP: {ret.Error}"); logger.Error($"Failed to read AD VPP: {ret.Error}");
@ -275,7 +275,7 @@ class Oscilloscope
/// <returns>操作结果,成功返回采样最大值,否则返回异常信息</returns> /// <returns>操作结果,成功返回采样最大值,否则返回异常信息</returns>
public async ValueTask<Result<byte>> GetADMax() public async ValueTask<Result<byte>> GetADMax()
{ {
var ret = await UDPClientPool.ReadAddr(this.ep, this.taskID, OscilloscopeAddr.AD_MAX, this.timeout); var ret = await UDPClientPool.ReadAddrByte(this.ep, this.taskID, OscilloscopeAddr.AD_MAX, this.timeout);
if (!ret.IsSuccessful) if (!ret.IsSuccessful)
{ {
logger.Error($"Failed to read AD max: {ret.Error}"); logger.Error($"Failed to read AD max: {ret.Error}");
@ -295,7 +295,7 @@ class Oscilloscope
/// <returns>操作结果,成功返回采样最小值,否则返回异常信息</returns> /// <returns>操作结果,成功返回采样最小值,否则返回异常信息</returns>
public async ValueTask<Result<byte>> GetADMin() public async ValueTask<Result<byte>> GetADMin()
{ {
var ret = await UDPClientPool.ReadAddr(this.ep, this.taskID, OscilloscopeAddr.AD_MIN, this.timeout); var ret = await UDPClientPool.ReadAddrByte(this.ep, this.taskID, OscilloscopeAddr.AD_MIN, this.timeout);
if (!ret.IsSuccessful) if (!ret.IsSuccessful)
{ {
logger.Error($"Failed to read AD min: {ret.Error}"); logger.Error($"Failed to read AD min: {ret.Error}");

View File

@ -7,20 +7,20 @@ static class RemoteUpdaterAddr
{ {
public const UInt32 Base = 0x20_00_00_00; public const UInt32 Base = 0x20_00_00_00;
/// <summary> /// <summary>
/// ADDR: 0X00: 写Flash-读写地址——控制位 <br/> /// ADDR: 0X00: 写Flash-读写地址——控制位 <br/>
/// [31:16]: wr_sector_num <br/> /// [31:16]: wr_sector_num <br/>
/// [15: 0]: {flash_wr_en,-,-,-, start_wr_sector} <br/> /// [15: 0]: {flash_wr_en,-,-,-, start_wr_sector} <br/>
/// </summary> /// </summary>
public const UInt32 WriteCtrl = Base + 0x00; public const UInt32 WriteCtrl = Base + 0x00;
/// <summary> /// <summary>
/// ADDR: 0X01: 写Flash-只写地址——FIFO入口 <br/> /// ADDR: 0X01: 写Flash-只写地址——FIFO入口 <br/>
/// [31:0]: 写比特流数据入口 <br/> /// [31:0]: 写比特流数据入口 <br/>
/// </summary> /// </summary>
public const UInt32 WriteFIFO = Base + 0x01; public const UInt32 WriteFIFO = Base + 0x01;
/// <summary> /// <summary>
/// ADDR: 0X02: 写Flash-只读地址——标志位 <br/> /// ADDR: 0X02: 写Flash-只读地址——标志位 <br/>
/// [31:24]: {-, -, -, -, -, -, -, wr_fifo_full} <br/> /// [31:24]: {-, -, -, -, -, -, -, wr_fifo_full} <br/>
/// [23:16]: {-, -, -, -, -, -, -, wr_fifo_empty} <br/> /// [23:16]: {-, -, -, -, -, -, -, wr_fifo_empty} <br/>
@ -29,14 +29,14 @@ static class RemoteUpdaterAddr
/// </summary> /// </summary>
public const UInt32 WriteSign = Base + 0x02; public const UInt32 WriteSign = Base + 0x02;
/// <summary> /// <summary>
/// ADDR: 0X03: 读Flash-读写地址——控制位1 <br/> /// ADDR: 0X03: 读Flash-读写地址——控制位1 <br/>
/// [31:16]: rd_sector_num <br/> /// [31:16]: rd_sector_num <br/>
/// [15: 0]: {flash_rd_en,-,-,-, start_rd_sub_sector} <br/> /// [15: 0]: {flash_rd_en,-,-,-, start_rd_sub_sector} <br/>
/// </summary> /// </summary>
public const UInt32 ReadCtrl1 = Base + 0x03; public const UInt32 ReadCtrl1 = Base + 0x03;
/// <summary> /// <summary>
/// ADDR: 0X04: 读Flash-读写地址——控制位2 <br/> /// ADDR: 0X04: 读Flash-读写地址——控制位2 <br/>
/// [31:24]: { } <br/> /// [31:24]: { } <br/>
/// [23:16]: {-, -, -, -, -, -,{ bs_crc32_ok }} <br/> /// [23:16]: {-, -, -, -, -, -,{ bs_crc32_ok }} <br/>
@ -45,19 +45,19 @@ static class RemoteUpdaterAddr
/// </summary> /// </summary>
public const UInt32 ReadCtrl2 = Base + 0x04; public const UInt32 ReadCtrl2 = Base + 0x04;
/// <summary> /// <summary>
/// ADDR: 0X05: 读Flash-只读地址——FIFO出口 <br/> /// ADDR: 0X05: 读Flash-只读地址——FIFO出口 <br/>
/// [31:0]: 读比特流数据出口 <br/> /// [31:0]: 读比特流数据出口 <br/>
/// </summary> /// </summary>
public const UInt32 ReadFIFO = Base + 0x05; public const UInt32 ReadFIFO = Base + 0x05;
/// <summary> /// <summary>
/// ADDR: 0X06: 读Flash-只读地址——CRC校验值 <br/> /// ADDR: 0X06: 读Flash-只读地址——CRC校验值 <br/>
/// [31:0]: CRC校验值 bs_readback_crc <br/> /// [31:0]: CRC校验值 bs_readback_crc <br/>
/// </summary> /// </summary>
public const UInt32 ReadCRC = Base + 0x06; public const UInt32 ReadCRC = Base + 0x06;
/// <summary> /// <summary>
/// ADDR: 0X07: 读Flash-只读地址——标志位 <br/> /// ADDR: 0X07: 读Flash-只读地址——标志位 <br/>
/// [31:24]: {-, -, -, -, -, -, -, rd_fifo_afull} <br/> /// [31:24]: {-, -, -, -, -, -, -, rd_fifo_afull} <br/>
/// [23:16]: {-, -, -, -, -, -, -, rd_fifo_empty} <br/> /// [23:16]: {-, -, -, -, -, -, -, rd_fifo_empty} <br/>
@ -66,14 +66,14 @@ static class RemoteUpdaterAddr
/// </summary> /// </summary>
public const UInt32 ReadSign = Base + 0x07; public const UInt32 ReadSign = Base + 0x07;
/// <summary> /// <summary>
/// ADDR: 0X08: 热启动开关-读写地址——控制位 <br/> /// ADDR: 0X08: 热启动开关-读写地址——控制位 <br/>
/// [31: 8]: hotreset_addr <br/> /// [31: 8]: hotreset_addr <br/>
/// [ 7: 0]: {-, -, -, -, -, -, -, hotreset_en} <br/> /// [ 7: 0]: {-, -, -, -, -, -, -, hotreset_en} <br/>
/// </summary> /// </summary>
public const UInt32 HotResetCtrl = Base + 0x08; public const UInt32 HotResetCtrl = Base + 0x08;
/// <summary> /// <summary>
/// ADDR: 0X09: 只读地址 版本号 <br/> /// ADDR: 0X09: 只读地址 版本号 <br/>
/// [31: 0]: FPGA_VERSION[31:0] <br/> /// [31: 0]: FPGA_VERSION[31:0] <br/>
/// </summary> /// </summary>
@ -339,7 +339,7 @@ public class RemoteUpdater
} }
{ {
var ret = await UDPClientPool.ReadAddr(this.ep, 0, RemoteUpdaterAddr.ReadCRC, this.timeout); var ret = await UDPClientPool.ReadAddrByte(this.ep, 0, RemoteUpdaterAddr.ReadCRC, this.timeout);
if (!ret.IsSuccessful) return new(ret.Error); if (!ret.IsSuccessful) return new(ret.Error);
var bytes = ret.Value.Options.Data; var bytes = ret.Value.Options.Data;
@ -543,7 +543,7 @@ public class RemoteUpdater
logger.Trace("Clear udp data finished"); logger.Trace("Clear udp data finished");
{ {
var ret = await UDPClientPool.ReadAddr(this.ep, 0, RemoteUpdaterAddr.Version, this.timeout); var ret = await UDPClientPool.ReadAddrByte(this.ep, 0, RemoteUpdaterAddr.Version, this.timeout);
if (!ret.IsSuccessful) return new(ret.Error); if (!ret.IsSuccessful) return new(ret.Error);
var retData = ret.Value.Options.Data; var retData = ret.Value.Options.Data;

View File

@ -23,7 +23,7 @@ public class HttpHdmiVideoStreamService : BackgroundService
public override async Task StartAsync(CancellationToken cancellationToken) public override async Task StartAsync(CancellationToken cancellationToken)
{ {
_httpListener = new HttpListener(); _httpListener = new HttpListener();
_httpListener.Prefixes.Add($"http://*:{_serverPort}/"); _httpListener.Prefixes.Add($"http://{Global.localhost}:{_serverPort}/");
_httpListener.Start(); _httpListener.Start();
logger.Info($"HDMI Video Stream Service started on port {_serverPort}"); logger.Info($"HDMI Video Stream Service started on port {_serverPort}");

File diff suppressed because it is too large Load Diff

View File

@ -41,7 +41,7 @@ public class ProgressReporter : ProgressInfo, IProgress<int>
private ProgressStatus _status = ProgressStatus.Pending; private ProgressStatus _status = ProgressStatus.Pending;
private string _errorMessage; private string _errorMessage;
public string TaskId { get; set; } = new Guid().ToString(); public string TaskId { get; set; } = Guid.NewGuid().ToString();
public int ProgressPercent => _progress * 100 / MaxProgress; public int ProgressPercent => _progress * 100 / MaxProgress;
public ProgressStatus Status => _status; public ProgressStatus Status => _status;
public string ErrorMessage => _errorMessage; public string ErrorMessage => _errorMessage;

View File

@ -223,22 +223,28 @@ public class UDPClientPool
/// <param name="endPoint">IP端点IP地址与端口</param> /// <param name="endPoint">IP端点IP地址与端口</param>
/// <param name="taskID">任务ID</param> /// <param name="taskID">任务ID</param>
/// <param name="devAddr">设备地址</param> /// <param name="devAddr">设备地址</param>
/// <param name="dataLength">数据长度(0~255)</param>
/// <param name="timeout">超时时间(毫秒)</param> /// <param name="timeout">超时时间(毫秒)</param>
/// <returns>读取结果,包含接收到的数据包</returns> /// <returns>读取结果,包含接收到的数据包</returns>
public static async ValueTask<Result<RecvDataPackage>> ReadAddr( public static async ValueTask<Result<RecvDataPackage>> ReadAddr(
IPEndPoint endPoint, int taskID, uint devAddr, int timeout = 1000) IPEndPoint endPoint, int taskID, uint devAddr, int dataLength, int timeout = 1000)
{ {
if (dataLength <= 0)
return new(new ArgumentException("Data length must be greater than 0"));
if (dataLength > 255)
return new(new ArgumentException("Data length must be less than or equal to 255"));
var ret = false; var ret = false;
var opts = new SendAddrPackOptions() var opts = new SendAddrPackOptions()
{ {
BurstType = BurstType.FixedBurst, BurstType = BurstType.FixedBurst,
BurstLength = 0, BurstLength = ((byte)(dataLength - 1)),
CommandID = Convert.ToByte(taskID), CommandID = Convert.ToByte(taskID),
Address = devAddr, Address = devAddr,
IsWrite = false, IsWrite = false,
}; };
// Read Register // Read Register
ret = await UDPClientPool.SendAddrPackAsync(endPoint, new SendAddrPackage(opts)); ret = await UDPClientPool.SendAddrPackAsync(endPoint, new SendAddrPackage(opts));
if (!ret) return new(new Exception("Send Address Package Failed!")); if (!ret) return new(new Exception("Send Address Package Failed!"));
@ -260,6 +266,20 @@ public class UDPClientPool
return retPack; return retPack;
} }
/// <summary>
/// 读取设备地址数据
/// </summary>
/// <param name="endPoint">IP端点IP地址与端口</param>
/// <param name="taskID">任务ID</param>
/// <param name="devAddr">设备地址</param>
/// <param name="timeout">超时时间(毫秒)</param>
/// <returns>读取结果,包含接收到的数据包</returns>
public static async ValueTask<Result<RecvDataPackage>> ReadAddrByte(
IPEndPoint endPoint, int taskID, uint devAddr, int timeout = 1000)
{
return await ReadAddr(endPoint, taskID, devAddr, 0, timeout);
}
/// <summary> /// <summary>
/// 读取设备地址数据并校验结果 /// 读取设备地址数据并校验结果
/// </summary> /// </summary>
@ -271,11 +291,11 @@ public class UDPClientPool
/// <param name="timeout">超时时间(毫秒)</param> /// <param name="timeout">超时时间(毫秒)</param>
/// <returns>校验结果true表示数据匹配期望值</returns> /// <returns>校验结果true表示数据匹配期望值</returns>
public static async ValueTask<Result<bool>> ReadAddr( public static async ValueTask<Result<bool>> ReadAddr(
IPEndPoint endPoint, int taskID, uint devAddr, UInt32 result, UInt32 resultMask, int timeout = 1000) IPEndPoint endPoint, int taskID, uint devAddr, UInt32 result, UInt32 resultMask, int timeout = 1000)
{ {
var address = endPoint.Address.ToString(); var address = endPoint.Address.ToString();
var ret = await ReadAddr(endPoint, taskID, devAddr, timeout); var ret = await ReadAddrByte(endPoint, taskID, devAddr, timeout);
if (!ret.IsSuccessful) return new(ret.Error); if (!ret.IsSuccessful) return new(ret.Error);
if (!ret.Value.IsSuccessful) if (!ret.Value.IsSuccessful)
return new(new Exception($"Read device {address} address {devAddr} failed")); return new(new Exception($"Read device {address} address {devAddr} failed"));
@ -324,7 +344,7 @@ public class UDPClientPool
await Task.Delay(waittime); await Task.Delay(waittime);
try try
{ {
var ret = await ReadAddr(endPoint, taskID, devAddr, Convert.ToInt32(timeleft.TotalMilliseconds)); var ret = await ReadAddrByte(endPoint, taskID, devAddr, Convert.ToInt32(timeleft.TotalMilliseconds));
if (!ret.IsSuccessful) return new(ret.Error); if (!ret.IsSuccessful) return new(ret.Error);
if (!ret.Value.IsSuccessful) if (!ret.Value.IsSuccessful)
return new(new Exception($"Read device {address} address {devAddr} failed")); return new(new Exception($"Read device {address} address {devAddr} failed"));
@ -555,7 +575,7 @@ public class UDPClientPool
var resultData = new List<byte>(); var resultData = new List<byte>();
for (int i = 0; i < length; i++) for (int i = 0; i < length; i++)
{ {
var ret = await ReadAddr(endPoint, taskID, addr[i], timeout); var ret = await ReadAddrByte(endPoint, taskID, addr[i], timeout);
if (!ret.IsSuccessful) if (!ret.IsSuccessful)
{ {
logger.Error($"ReadAddrSeq failed at index {i}: {ret.Error}"); logger.Error($"ReadAddrSeq failed at index {i}: {ret.Error}");

View File

@ -185,12 +185,8 @@ export class VideoStreamClient {
return Promise.resolve<any>(null as any); return Promise.resolve<any>(null as any);
} }
/** myEndpoint( cancelToken?: CancelToken): Promise<any> {
* HTTP let url_ = this.baseUrl + "/api/VideoStream/MyEndpoint";
* @return
*/
getStreamInfo( cancelToken?: CancelToken): Promise<StreamInfoResult> {
let url_ = this.baseUrl + "/api/VideoStream/StreamInfo";
url_ = url_.replace(/[?&]$/, ""); url_ = url_.replace(/[?&]$/, "");
let options_: AxiosRequestConfig = { let options_: AxiosRequestConfig = {
@ -209,208 +205,11 @@ export class VideoStreamClient {
throw _error; throw _error;
} }
}).then((_response: AxiosResponse) => { }).then((_response: AxiosResponse) => {
return this.processGetStreamInfo(_response); return this.processMyEndpoint(_response);
}); });
} }
protected processGetStreamInfo(response: AxiosResponse): Promise<StreamInfoResult> { protected processMyEndpoint(response: AxiosResponse): Promise<any> {
const status = response.status;
let _headers: any = {};
if (response.headers && typeof response.headers === "object") {
for (const k in response.headers) {
if (response.headers.hasOwnProperty(k)) {
_headers[k] = response.headers[k];
}
}
}
if (status === 200) {
const _responseText = response.data;
let result200: any = null;
let resultData200 = _responseText;
result200 = StreamInfoResult.fromJS(resultData200);
return Promise.resolve<StreamInfoResult>(result200);
} else if (status === 500) {
const _responseText = response.data;
let result500: any = null;
let resultData500 = _responseText;
result500 = Exception.fromJS(resultData500);
return throwException("A server side error occurred.", status, _responseText, _headers, result500);
} else if (status !== 200 && status !== 204) {
const _responseText = response.data;
return throwException("An unexpected server error occurred.", status, _responseText, _headers);
}
return Promise.resolve<StreamInfoResult>(null as any);
}
/**
*
* @param config
* @return
*/
configureCamera(config: CameraConfigRequest, cancelToken?: CancelToken): Promise<any> {
let url_ = this.baseUrl + "/api/VideoStream/ConfigureCamera";
url_ = url_.replace(/[?&]$/, "");
const content_ = JSON.stringify(config);
let options_: AxiosRequestConfig = {
data: content_,
method: "POST",
url: url_,
headers: {
"Content-Type": "application/json",
"Accept": "application/json"
},
cancelToken
};
return this.instance.request(options_).catch((_error: any) => {
if (isAxiosError(_error) && _error.response) {
return _error.response;
} else {
throw _error;
}
}).then((_response: AxiosResponse) => {
return this.processConfigureCamera(_response);
});
}
protected processConfigureCamera(response: AxiosResponse): Promise<any> {
const status = response.status;
let _headers: any = {};
if (response.headers && typeof response.headers === "object") {
for (const k in response.headers) {
if (response.headers.hasOwnProperty(k)) {
_headers[k] = response.headers[k];
}
}
}
if (status === 200) {
const _responseText = response.data;
let result200: any = null;
let resultData200 = _responseText;
result200 = resultData200 !== undefined ? resultData200 : <any>null;
return Promise.resolve<any>(result200);
} else if (status === 400) {
const _responseText = response.data;
let result400: any = null;
let resultData400 = _responseText;
result400 = resultData400 !== undefined ? resultData400 : <any>null;
return throwException("A server side error occurred.", status, _responseText, _headers, result400);
} else if (status === 500) {
const _responseText = response.data;
let result500: any = null;
let resultData500 = _responseText;
result500 = Exception.fromJS(resultData500);
return throwException("A server side error occurred.", status, _responseText, _headers, result500);
} else if (status !== 200 && status !== 204) {
const _responseText = response.data;
return throwException("An unexpected server error occurred.", status, _responseText, _headers);
}
return Promise.resolve<any>(null as any);
}
/**
*
* @return
*/
getCameraConfig( cancelToken?: CancelToken): Promise<any> {
let url_ = this.baseUrl + "/api/VideoStream/CameraConfig";
url_ = url_.replace(/[?&]$/, "");
let options_: AxiosRequestConfig = {
method: "GET",
url: url_,
headers: {
"Accept": "application/json"
},
cancelToken
};
return this.instance.request(options_).catch((_error: any) => {
if (isAxiosError(_error) && _error.response) {
return _error.response;
} else {
throw _error;
}
}).then((_response: AxiosResponse) => {
return this.processGetCameraConfig(_response);
});
}
protected processGetCameraConfig(response: AxiosResponse): Promise<any> {
const status = response.status;
let _headers: any = {};
if (response.headers && typeof response.headers === "object") {
for (const k in response.headers) {
if (response.headers.hasOwnProperty(k)) {
_headers[k] = response.headers[k];
}
}
}
if (status === 200) {
const _responseText = response.data;
let result200: any = null;
let resultData200 = _responseText;
result200 = resultData200 !== undefined ? resultData200 : <any>null;
return Promise.resolve<any>(result200);
} else if (status === 500) {
const _responseText = response.data;
let result500: any = null;
let resultData500 = _responseText;
result500 = Exception.fromJS(resultData500);
return throwException("A server side error occurred.", status, _responseText, _headers, result500);
} else if (status !== 200 && status !== 204) {
const _responseText = response.data;
return throwException("An unexpected server error occurred.", status, _responseText, _headers);
}
return Promise.resolve<any>(null as any);
}
/**
* HTTP
* @param enabled (optional)
* @return
*/
setEnabled(enabled: boolean | undefined, cancelToken?: CancelToken): Promise<any> {
let url_ = this.baseUrl + "/api/VideoStream/SetEnabled?";
if (enabled === null)
throw new Error("The parameter 'enabled' cannot be null.");
else if (enabled !== undefined)
url_ += "enabled=" + encodeURIComponent("" + enabled) + "&";
url_ = url_.replace(/[?&]$/, "");
let options_: AxiosRequestConfig = {
method: "POST",
url: url_,
headers: {
"Accept": "application/json"
},
cancelToken
};
return this.instance.request(options_).catch((_error: any) => {
if (isAxiosError(_error) && _error.response) {
return _error.response;
} else {
throw _error;
}
}).then((_response: AxiosResponse) => {
return this.processSetEnabled(_response);
});
}
protected processSetEnabled(response: AxiosResponse): Promise<any> {
const status = response.status; const status = response.status;
let _headers: any = {}; let _headers: any = {};
if (response.headers && typeof response.headers === "object") { if (response.headers && typeof response.headers === "object") {
@ -502,6 +301,59 @@ export class VideoStreamClient {
return Promise.resolve<boolean>(null as any); return Promise.resolve<boolean>(null as any);
} }
disableHdmiTransmission( cancelToken?: CancelToken): Promise<FileResponse | null> {
let url_ = this.baseUrl + "/api/VideoStream/DisableTransmission";
url_ = url_.replace(/[?&]$/, "");
let options_: AxiosRequestConfig = {
responseType: "blob",
method: "POST",
url: url_,
headers: {
"Accept": "application/octet-stream"
},
cancelToken
};
return this.instance.request(options_).catch((_error: any) => {
if (isAxiosError(_error) && _error.response) {
return _error.response;
} else {
throw _error;
}
}).then((_response: AxiosResponse) => {
return this.processDisableHdmiTransmission(_response);
});
}
protected processDisableHdmiTransmission(response: AxiosResponse): Promise<FileResponse | null> {
const status = response.status;
let _headers: any = {};
if (response.headers && typeof response.headers === "object") {
for (const k in response.headers) {
if (response.headers.hasOwnProperty(k)) {
_headers[k] = response.headers[k];
}
}
}
if (status === 200 || status === 206) {
const contentDisposition = response.headers ? response.headers["content-disposition"] : undefined;
let fileNameMatch = contentDisposition ? /filename\*=(?:(\\?['"])(.*?)\1|(?:[^\s]+'.*?')?([^;\n]*))/g.exec(contentDisposition) : undefined;
let fileName = fileNameMatch && fileNameMatch.length > 1 ? fileNameMatch[3] || fileNameMatch[2] : undefined;
if (fileName) {
fileName = decodeURIComponent(fileName);
} else {
fileNameMatch = contentDisposition ? /filename="?([^"]*?)"?(;|$)/g.exec(contentDisposition) : undefined;
fileName = fileNameMatch && fileNameMatch.length > 1 ? fileNameMatch[1] : undefined;
}
return Promise.resolve({ fileName: fileName, status: status, data: new Blob([response.data], { type: response.headers["content-type"] }), headers: _headers });
} else if (status !== 200 && status !== 204) {
const _responseText = response.data;
return throwException("An unexpected server error occurred.", status, _responseText, _headers);
}
return Promise.resolve<FileResponse | null>(null as any);
}
/** /**
* *
* @param request * @param request
@ -576,67 +428,6 @@ export class VideoStreamClient {
return Promise.resolve<any>(null as any); return Promise.resolve<any>(null as any);
} }
/**
*
* @return
*/
getCurrentResolution( cancelToken?: CancelToken): Promise<any> {
let url_ = this.baseUrl + "/api/VideoStream/Resolution";
url_ = url_.replace(/[?&]$/, "");
let options_: AxiosRequestConfig = {
method: "GET",
url: url_,
headers: {
"Accept": "application/json"
},
cancelToken
};
return this.instance.request(options_).catch((_error: any) => {
if (isAxiosError(_error) && _error.response) {
return _error.response;
} else {
throw _error;
}
}).then((_response: AxiosResponse) => {
return this.processGetCurrentResolution(_response);
});
}
protected processGetCurrentResolution(response: AxiosResponse): Promise<any> {
const status = response.status;
let _headers: any = {};
if (response.headers && typeof response.headers === "object") {
for (const k in response.headers) {
if (response.headers.hasOwnProperty(k)) {
_headers[k] = response.headers[k];
}
}
}
if (status === 200) {
const _responseText = response.data;
let result200: any = null;
let resultData200 = _responseText;
result200 = resultData200 !== undefined ? resultData200 : <any>null;
return Promise.resolve<any>(result200);
} else if (status === 500) {
const _responseText = response.data;
let result500: any = null;
let resultData500 = _responseText;
result500 = resultData500 !== undefined ? resultData500 : <any>null;
return throwException("A server side error occurred.", status, _responseText, _headers, result500);
} else if (status !== 200 && status !== 204) {
const _responseText = response.data;
return throwException("An unexpected server error occurred.", status, _responseText, _headers);
}
return Promise.resolve<any>(null as any);
}
/** /**
* *
* @return * @return
@ -835,75 +626,6 @@ export class VideoStreamClient {
} }
return Promise.resolve<any>(null as any); return Promise.resolve<any>(null as any);
} }
/**
* (GET方式)
* @return
*/
focus( cancelToken?: CancelToken): Promise<any> {
let url_ = this.baseUrl + "/api/VideoStream/Focus";
url_ = url_.replace(/[?&]$/, "");
let options_: AxiosRequestConfig = {
method: "GET",
url: url_,
headers: {
"Accept": "application/json"
},
cancelToken
};
return this.instance.request(options_).catch((_error: any) => {
if (isAxiosError(_error) && _error.response) {
return _error.response;
} else {
throw _error;
}
}).then((_response: AxiosResponse) => {
return this.processFocus(_response);
});
}
protected processFocus(response: AxiosResponse): Promise<any> {
const status = response.status;
let _headers: any = {};
if (response.headers && typeof response.headers === "object") {
for (const k in response.headers) {
if (response.headers.hasOwnProperty(k)) {
_headers[k] = response.headers[k];
}
}
}
if (status === 200) {
const _responseText = response.data;
let result200: any = null;
let resultData200 = _responseText;
result200 = resultData200 !== undefined ? resultData200 : <any>null;
return Promise.resolve<any>(result200);
} else if (status === 400) {
const _responseText = response.data;
let result400: any = null;
let resultData400 = _responseText;
result400 = resultData400 !== undefined ? resultData400 : <any>null;
return throwException("A server side error occurred.", status, _responseText, _headers, result400);
} else if (status === 500) {
const _responseText = response.data;
let result500: any = null;
let resultData500 = _responseText;
result500 = resultData500 !== undefined ? resultData500 : <any>null;
return throwException("A server side error occurred.", status, _responseText, _headers, result500);
} else if (status !== 200 && status !== 204) {
const _responseText = response.data;
return throwException("An unexpected server error occurred.", status, _responseText, _headers);
}
return Promise.resolve<any>(null as any);
}
} }
export class BsdlParserClient { export class BsdlParserClient {
@ -7253,134 +6975,6 @@ export interface IException {
stackTrace?: string | undefined; stackTrace?: string | undefined;
} }
/** 视频流信息结构体 */
export class StreamInfoResult implements IStreamInfoResult {
/** TODO: */
frameRate!: number;
/** TODO: */
frameWidth!: number;
/** TODO: */
frameHeight!: number;
/** TODO: */
format!: string;
/** TODO: */
htmlUrl!: string;
/** TODO: */
mjpegUrl!: string;
/** TODO: */
snapshotUrl!: string;
/** TODO: */
usbCameraUrl!: string;
constructor(data?: IStreamInfoResult) {
if (data) {
for (var property in data) {
if (data.hasOwnProperty(property))
(<any>this)[property] = (<any>data)[property];
}
}
}
init(_data?: any) {
if (_data) {
this.frameRate = _data["frameRate"];
this.frameWidth = _data["frameWidth"];
this.frameHeight = _data["frameHeight"];
this.format = _data["format"];
this.htmlUrl = _data["htmlUrl"];
this.mjpegUrl = _data["mjpegUrl"];
this.snapshotUrl = _data["snapshotUrl"];
this.usbCameraUrl = _data["usbCameraUrl"];
}
}
static fromJS(data: any): StreamInfoResult {
data = typeof data === 'object' ? data : {};
let result = new StreamInfoResult();
result.init(data);
return result;
}
toJSON(data?: any) {
data = typeof data === 'object' ? data : {};
data["frameRate"] = this.frameRate;
data["frameWidth"] = this.frameWidth;
data["frameHeight"] = this.frameHeight;
data["format"] = this.format;
data["htmlUrl"] = this.htmlUrl;
data["mjpegUrl"] = this.mjpegUrl;
data["snapshotUrl"] = this.snapshotUrl;
data["usbCameraUrl"] = this.usbCameraUrl;
return data;
}
}
/** 视频流信息结构体 */
export interface IStreamInfoResult {
/** TODO: */
frameRate: number;
/** TODO: */
frameWidth: number;
/** TODO: */
frameHeight: number;
/** TODO: */
format: string;
/** TODO: */
htmlUrl: string;
/** TODO: */
mjpegUrl: string;
/** TODO: */
snapshotUrl: string;
/** TODO: */
usbCameraUrl: string;
}
/** 摄像头配置请求模型 */
export class CameraConfigRequest implements ICameraConfigRequest {
/** 摄像头地址 */
address!: string;
/** 摄像头端口 */
port!: number;
constructor(data?: ICameraConfigRequest) {
if (data) {
for (var property in data) {
if (data.hasOwnProperty(property))
(<any>this)[property] = (<any>data)[property];
}
}
}
init(_data?: any) {
if (_data) {
this.address = _data["address"];
this.port = _data["port"];
}
}
static fromJS(data: any): CameraConfigRequest {
data = typeof data === 'object' ? data : {};
let result = new CameraConfigRequest();
result.init(data);
return result;
}
toJSON(data?: any) {
data = typeof data === 'object' ? data : {};
data["address"] = this.address;
data["port"] = this.port;
return data;
}
}
/** 摄像头配置请求模型 */
export interface ICameraConfigRequest {
/** 摄像头地址 */
address: string;
/** 摄像头端口 */
port: number;
}
/** 分辨率配置请求模型 */ /** 分辨率配置请求模型 */
export class ResolutionConfigRequest implements IResolutionConfigRequest { export class ResolutionConfigRequest implements IResolutionConfigRequest {
/** 宽度 */ /** 宽度 */

View File

@ -1,10 +0,0 @@
import './assets/main.css'
import { createApp } from 'vue'
import { createPinia } from 'pinia'
import App from '@/App.vue'
import router from './router'
const app = createApp(App).use(router).use(createPinia()).mount('#app')