Mengajar anda untuk menulis fungsi sintesis K-garis dalam versi Python

Penulis:Lydia, Dicipta: 2022-12-26 09:28:58, Dikemas kini: 2023-09-20 09:48:46

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Mengajar anda untuk menulis fungsi sintesis K-garis dalam versi Python

Apabila menulis dan menggunakan strategi, kita sering menggunakan beberapa data tempoh K-line yang jarang digunakan. Walau bagaimanapun, pertukaran dan sumber data tidak memberikan data mengenai tempoh ini. Ia hanya boleh disintesis dengan menggunakan data dengan tempoh yang ada. Algoritma yang disintesis sudah mempunyai versi JavaScript (pautanSebenarnya, mudah untuk memindahkan sekeping kod JavaScript ke Python. Seterusnya, mari kita tulis versi Python algoritma sintesis K-line.

Versi JavaScript

  function GetNewCycleRecords (sourceRecords, targetCycle) {    // K-line synthesis function
      var ret = []
      
      // Obtain the period of the source K-line data first
      if (!sourceRecords || sourceRecords.length < 2) {
          return null
      }
      var sourceLen = sourceRecords.length
      var sourceCycle = sourceRecords[sourceLen - 1].Time - sourceRecords[sourceLen - 2].Time

      if (targetCycle % sourceCycle != 0) {
          Log("targetCycle:", targetCycle)
          Log("sourceCycle:", sourceCycle)
          throw "targetCycle is not an integral multiple of sourceCycle."
      }

      if ((1000 * 60 * 60) % targetCycle != 0 && (1000 * 60 * 60 * 24) % targetCycle != 0) {
          Log("targetCycle:", targetCycle)
          Log("sourceCycle:", sourceCycle)
          Log((1000 * 60 * 60) % targetCycle, (1000 * 60 * 60 * 24) % targetCycle)
          throw "targetCycle cannot complete the cycle."
      }

      var multiple = targetCycle / sourceCycle


      var isBegin = false 
      var count = 0
      var high = 0 
      var low = 0 
      var open = 0
      var close = 0 
      var time = 0
      var vol = 0
      for (var i = 0 ; i < sourceLen ; i++) {
          // Get the time zone offset value
          var d = new Date()
          var n = d.getTimezoneOffset()

          if (((1000 * 60 * 60 * 24) - sourceRecords[i].Time % (1000 * 60 * 60 * 24) + (n * 1000 * 60)) % targetCycle == 0) {
              isBegin = true
          }

          if (isBegin) {
              if (count == 0) {
                  high = sourceRecords[i].High
                  low = sourceRecords[i].Low
                  open = sourceRecords[i].Open
                  close = sourceRecords[i].Close
                  time = sourceRecords[i].Time
                  vol = sourceRecords[i].Volume

                  count++
              } else if (count < multiple) {
                  high = Math.max(high, sourceRecords[i].High)
                  low = Math.min(low, sourceRecords[i].Low)
                  close = sourceRecords[i].Close
                  vol += sourceRecords[i].Volume

                  count++
              }

              if (count == multiple || i == sourceLen - 1) {
                  ret.push({
                      High : high,
                      Low : low,
                      Open : open,
                      Close : close,
                      Time : time,
                      Volume : vol,
                  })
                  count = 0
              }
          }
      }

      return ret 
  }

Terdapat algoritma JavaScript. Python boleh diterjemahkan dan dipindahkan baris demi baris. Jika anda menemui fungsi terbina dalam JavaScript atau kaedah yang melekat, anda boleh pergi ke Python untuk mencari kaedah yang sesuai. Oleh itu, migrasi mudah. Logik algoritma adalah sama, kecuali bahawa panggilan fungsi JavaScriptvar n=d.getTimezoneOffset()Apabila berpindah ke Python,n=time.altzonePerbezaan lain hanya dari segi tatabahasa bahasa (seperti penggunaan untuk gelung, nilai Boolean, logical AND, logical NOT, logical OR, dll.).

Kod Python yang dipindahkan:

import time

def GetNewCycleRecords(sourceRecords, targetCycle):
    ret = []

    # Obtain the period of the source K-line data first
    if not sourceRecords or len(sourceRecords) < 2 : 
        return None

    sourceLen = len(sourceRecords)
    sourceCycle = sourceRecords[-1]["Time"] - sourceRecords[-2]["Time"]

    if targetCycle % sourceCycle != 0 :
        Log("targetCycle:", targetCycle)
        Log("sourceCycle:", sourceCycle)
        raise "targetCycle is not an integral multiple of sourceCycle."

    if (1000 * 60 * 60) % targetCycle != 0 and (1000 * 60 * 60 * 24) % targetCycle != 0 : 
        Log("targetCycle:", targetCycle)
        Log("sourceCycle:", sourceCycle)
        Log((1000 * 60 * 60) % targetCycle, (1000 * 60 * 60 * 24) % targetCycle)
        raise "targetCycle cannot complete the cycle."
    
    multiple = targetCycle / sourceCycle

    isBegin = False
    count = 0 
    barHigh = 0 
    barLow = 0 
    barOpen = 0
    barClose = 0 
    barTime = 0 
    barVol = 0 

    for i in range(sourceLen) : 
        # Get the time zone offset value
        n = time.altzone        

        if ((1000 * 60 * 60 * 24) - (sourceRecords[i]["Time"] * 1000) % (1000 * 60 * 60 * 24) + (n * 1000)) % targetCycle == 0 :
            isBegin = True

        if isBegin : 
            if count == 0 : 
                barHigh = sourceRecords[i]["High"]
                barLow = sourceRecords[i]["Low"]
                barOpen = sourceRecords[i]["Open"]
                barClose = sourceRecords[i]["Close"]
                barTime = sourceRecords[i]["Time"]
                barVol = sourceRecords[i]["Volume"]
                count += 1
            elif count < multiple : 
                barHigh = max(barHigh, sourceRecords[i]["High"])
                barLow = min(barLow, sourceRecords[i]["Low"])
                barClose = sourceRecords[i]["Close"]
                barVol += sourceRecords[i]["Volume"]
                count += 1

            if count == multiple or i == sourceLen - 1 :
                ret.append({
                    "High" : barHigh,
                    "Low" : barLow,
                    "Open" : barOpen,
                    "Close" : barClose,
                    "Time" : barTime,
                    "Volume" : barVol,
                })
                count = 0
    
    return ret 

# Test
def main():
    while True:
        r = exchange.GetRecords()
        r2 = GetNewCycleRecords(r, 1000 * 60 * 60 * 4)      

        ext.PlotRecords(r2, "r2")                                 
        Sleep(1000)

Ujian

Carta pasaran Huobi

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carta 4 jam sintesis backtest

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Kod di atas adalah untuk rujukan sahaja. Jika ia digunakan dalam strategi khusus, sila ubah dan uji mengikut keperluan khusus. Jika ada bug atau cadangan penambahbaikan, sila tinggalkan mesej.


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