CpuCgController.cs 9.5 KB

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  1. using System;
  2. using System.Collections.Generic;
  3. using System.Diagnostics;
  4. using System.IO;
  5. using System.Linq;
  6. using System.Threading.Tasks;
  7. using System.Web.Http;
  8. using XdCxRhDW.Dto;
  9. using XdCxRhDW.WebApi;
  10. namespace CpuCgServer.Controllers
  11. {
  12. /// <summary>
  13. /// Cpu参估接口
  14. /// </summary>
  15. public class CpuCgController : BaseController
  16. {
  17. /// <summary>
  18. /// CPU参估计算(需要先上传文件)
  19. /// </summary>
  20. /// <param name="dto">CPU参估参数</param>
  21. /// <returns></returns>
  22. [HttpPost]
  23. public async Task<AjaxResult<CpuCgResDto>> Calc(CpuCgDto dto)
  24. {
  25. dto.file1 = GetLocalFile(dto.file1);
  26. dto.file2 = GetLocalFile(dto.file2);
  27. XcorrStruct xItem = new XcorrStruct
  28. {
  29. file1 = dto.file1,
  30. file2 = dto.file2,
  31. samplingRate = dto.samplingRate,
  32. dtCenter = dto.dtCenter,
  33. dtRange = dto.dtRange,
  34. dfRange = dto.dfRange,
  35. TimeoutSeconds = dto.TimeoutSeconds,
  36. snrThreshold = dto.snrThreshold,
  37. };
  38. FileInfo file1 = new FileInfo(dto.file1);
  39. FileInfo file2 = new FileInfo(dto.file2);
  40. long totalsamp = file1.Length < file2.Length ? file1.Length / 4 : file2.Length / 4;
  41. //样点数为0时计算所有样本
  42. if (dto.smpCount == 0)
  43. {
  44. xItem.smpCount = (int)totalsamp - dto.smpStart;
  45. }
  46. else if (dto.smpCount > 0 && dto.smpCount < 1)
  47. {
  48. xItem.smpCount = (int)(totalsamp * dto.smpCount);
  49. }
  50. else
  51. {
  52. xItem.smpCount = dto.smpCount;
  53. }
  54. xItem.smpStart = dto.smpStart;
  55. CpuCgResDto resDto = new CpuCgResDto();
  56. try
  57. {
  58. XcorrUtils xcorr = new XcorrUtils();
  59. var result = await xcorr.Calc(xItem);
  60. //开始计算
  61. if (result.flag == -2)
  62. {
  63. Serilog.Log.Error("参估计算内部错误!");
  64. return Error<CpuCgResDto>("参估计算内部错误!");
  65. }
  66. else if (result.flag == -1)
  67. {
  68. Serilog.Log.Error("参估计算所需数据超出文件范围!");
  69. return Error<CpuCgResDto>("参估计算所需数据超出文件范围!");
  70. }
  71. resDto.TimeMs = result.tm;
  72. resDto.Smpstart = result.smpstart;
  73. resDto.Smplen = result.smplen;
  74. if (result.flag == 1)
  75. {
  76. resDto.Dt = result.dt.Value;
  77. resDto.Df = result.df.Value;
  78. resDto.Snr = result.snr.Value;
  79. }
  80. }
  81. catch (Exception ex)
  82. {
  83. Serilog.Log.Error(ex, "执行CPU参估异常");
  84. return Error<CpuCgResDto>($"执行CPU参估异常");
  85. }
  86. return Success(resDto);
  87. }
  88. /// <summary>
  89. /// CPU参估多个时隙的参估计算(需要先上传文件)
  90. /// </summary>
  91. /// <param name="dto">CPU多时隙参估参数模型</param>
  92. /// <returns>返回结果个数始终和传入的时隙个数相同</returns>
  93. [HttpPost]
  94. public async Task<AjaxResult<List<CpuCgResDto>>> MultiCalc(CpuCgMultiDto dto)
  95. {
  96. dto.file1 = GetLocalFile(dto.file1);
  97. dto.file2 = GetLocalFile(dto.file2);
  98. MultiXcorrStruct xItem = new MultiXcorrStruct();
  99. xItem.file1 = dto.file1;
  100. xItem.file2 = dto.file2;
  101. xItem.samplingRate = dto.samplingRate;
  102. xItem.dtCenter = dto.dtCenter;
  103. xItem.dtRange = dto.dtRange;
  104. xItem.dfRange = dto.dfRange;
  105. xItem.snrThreshold = dto.snrThreshold;
  106. xItem.TimeoutSeconds = dto.TimeoutSeconds;
  107. xItem.xcorrSmps = dto.smpPositions.Select(m => new XcorrSmp(m.smpStart, m.smpCount) { TimeSeconds = m.TimeSeconds }).ToList();
  108. List<CpuCgResDto> resDtos = new List<CpuCgResDto>();
  109. XcorrUtils xcorr = new XcorrUtils();
  110. try
  111. {
  112. var result = await xcorr.MultiCalc(xItem);
  113. int idx = 0;
  114. foreach (var item in result)
  115. {
  116. CpuCgResDto resDto = new CpuCgResDto
  117. {
  118. Smpstart = item.smpstart,
  119. Smplen = item.smplen,
  120. TimeMs = item.tm,
  121. Dt = item.dt.Value,
  122. Df = item.df.Value,
  123. Snr = item.snr.Value,
  124. TimeSeconds = xItem.xcorrSmps[idx++].TimeSeconds,
  125. };
  126. resDtos.Add(resDto);
  127. }
  128. return Success(resDtos);
  129. }
  130. catch (Exception ex)
  131. {
  132. Serilog.Log.Error(ex, "CPU多时隙参估异常");
  133. return Error<List<CpuCgResDto>>("CPU多时隙参估异常");
  134. }
  135. }
  136. /// <summary>
  137. /// 参估画图
  138. /// </summary>
  139. /// <returns></returns>
  140. [HttpPost]
  141. public async Task<AjaxResult<List<ImageResultDto>>> DrawImage(CpuCgDto dto)
  142. {
  143. var cafp = new Process();
  144. List<ImageResultDto> list = new List<ImageResultDto>();
  145. dto.file1 = GetLocalFile(dto.file1);
  146. dto.file2 = GetLocalFile(dto.file2);
  147. await Task.Run(() =>
  148. {
  149. FileInfo file1 = new FileInfo(dto.file1);
  150. FileInfo file2 = new FileInfo(dto.file2);
  151. long totalsamp = file1.Length < file2.Length ? file1.Length / 4 : file2.Length / 4;
  152. //样点数为0时计算所有样本
  153. if (dto.smpCount == 0)
  154. {
  155. dto.smpCount = (int)totalsamp - dto.smpStart;
  156. }
  157. else if (dto.smpCount > 0 && dto.smpCount < 1)
  158. {
  159. dto.smpCount = (int)(totalsamp * dto.smpCount);
  160. }
  161. string outFile = Path.Combine(AppDomain.CurrentDomain.BaseDirectory, "CgImag.txt");
  162. int flag = 1;
  163. if (dto.smpStart == 0)
  164. {
  165. flag = 3;//文件画图,避免滑动时溢出
  166. cafp.StartInfo.Arguments = $"{flag} \"{dto.file1}\" \"{dto.file2}\" {(long)dto.samplingRate} {dto.dtCenter} {dto.dtRange} {dto.dfRange} {dto.smpCount} {dto.snrThreshold} {outFile}";
  167. }
  168. else
  169. {
  170. var minStart = dto.dtRange / 2 / 1e6 * dto.samplingRate;
  171. if (dto.smpStart < minStart)//滑动计算起时值必须要大于等于此数
  172. {
  173. dto.smpStart = (long)minStart;
  174. }
  175. cafp.StartInfo.Arguments = $"{flag} \"{dto.file1}\" \"{dto.file2}\" {(long)(dto.samplingRate)} {dto.dtCenter} {dto.dtRange} {dto.dfRange} {dto.smpStart} {dto.smpCount} {dto.snrThreshold} {outFile}";
  176. }
  177. cafp.StartInfo.FileName = Path.Combine(cafp.StartInfo.WorkingDirectory, "AddIns\\XcorrCpu.exe");
  178. //cafp.StartInfo.Arguments = $"1 \"{xs.file1}\" \"{xs.file2}\" {(long)(xs.samplingRate)} {xs.dtCenter} {xs.dtRange} {xs.dfRange} {xs.smpStart} {xs.smpCount} {xs.snrThreshold} {outFile}";
  179. cafp.StartInfo.CreateNoWindow = true;
  180. cafp.StartInfo.RedirectStandardError = true;
  181. cafp.StartInfo.RedirectStandardOutput = true;
  182. cafp.StartInfo.UseShellExecute = false;
  183. cafp.Start();
  184. Stopwatch stopWatch = new Stopwatch();
  185. stopWatch.Start();
  186. cafp.WaitForExit();
  187. stopWatch.Stop();
  188. TimeSpan ts = stopWatch.Elapsed;
  189. var str = cafp.StandardOutput.ReadToEnd();
  190. if (str.StartsWith("1:") && File.Exists(outFile))
  191. {
  192. var lines = File.ReadAllLines(outFile);
  193. if (lines.Length > 1)
  194. {
  195. var lineFirstArr = lines[0].Split(",".ToCharArray(), StringSplitOptions.RemoveEmptyEntries);
  196. int fsHz = Convert.ToInt32(lineFirstArr[0]);
  197. int xFlag = Convert.ToInt32(lineFirstArr[1]);
  198. int xMax = Convert.ToInt32(lineFirstArr[2]);
  199. float yMax = Convert.ToSingle(lineFirstArr[3]);
  200. for (int i = 1; i < lines.Length; i++)
  201. {
  202. var lineArr = lines[i].Split(",".ToCharArray(), StringSplitOptions.RemoveEmptyEntries);
  203. ImageResultDto ir = new ImageResultDto()
  204. {
  205. FsHz = fsHz,
  206. XFlag = xFlag,
  207. XMax = xMax,
  208. YMax = yMax,
  209. XValue = Convert.ToInt32(lineArr[0]),
  210. YValue = Convert.ToSingle(lineArr[1]),
  211. Snr = Convert.ToSingle(lineArr[2]),
  212. };
  213. list.Add(ir);
  214. }
  215. }
  216. File.Delete(outFile);
  217. }
  218. });
  219. return Success(list);
  220. }
  221. }
  222. }