Added chopp and trigger signals on raw channel 15
Signed-off-by: Bernardo Carvalho <bernardo.carvalho@tecnico.ulisboa.pt>
This commit is contained in:
@@ -7,8 +7,9 @@ import mdsthin
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from mdsthin.exceptions import TreeNNF, TreeFOPENR
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import argparse
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ADC_CHANNELS = 14 # channels stored in ISTTOK MDSplus trees
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ADC_CHANNELS = 16 # channels stored in ISTTOK MDSplus trees
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ADC_DECIM_RATE = 200 # FPGA decimation
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ADC_BIT_LSHIFT = 2**14
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MDSTREENAME = 'isttokmarte'
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@@ -29,22 +30,22 @@ class ClientMdsThin():
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Models an MDS Thin Client connection to ISTTOK ATCA2 server
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"""
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def __init__(self, url=MDS_URL, num_channels=12):
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def __init__(self, num_channels=ADC_CHANNELS, url=MDS_URL):
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"""
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Initializes the connection to the High-Precision-AD-HAT
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"""
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try:
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# self.client = mdsClient(MDSPLUS_HOST, user='oper')
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self.client = mdsthin.Connection('ssh://' + url)
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#self.client.openTree(MDSTREENAME, shot)
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except TreeFOPENR:
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print(f"Tree {MDSTREENAME} / Shot {shot} Not found")
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raise ValueError
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self.num_channels = num_channels
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self.adcRawData = []
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self.choppTrigg = []
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self.adcIntegData = []
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def getTreeData(self, shot=5240):
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def getTreeData(self, shot=52740):
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try:
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self.client.openTree(MDSTREENAME, shot)
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except TreeFOPENR:
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@@ -58,11 +59,18 @@ class ClientMdsThin():
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node0 = ADC_INTEG.format(0)
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dim = "dim_of({})".format(node0)
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self.timeI = self.client.get(dim).data()
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for i in range(ADC_CHANNELS):
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for i in range(self.num_channels):
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data = self.client.get(ADC_RAW.format(i)).data()
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self.adcRawData.append(data[:, 0])
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adc_raw = data[:, 0].astype(int)
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adc_raw = adc_raw // ADC_BIT_LSHIFT
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self.adcRawData.append(adc_raw)
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data = self.client.get(ADC_INTEG.format(i)).data()
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self.adcIntegData.append(data[:, 0])
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data = self.client.get(ADC_RAW.format(15)).data()
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adc_bits = data[:, 0].astype(int)
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adc_bits &= 0x3
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# breakpoint()
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self.choppTrigg = adc_bits
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def calcEoWo(self):
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if not self.adcRawData:
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@@ -71,14 +79,13 @@ class ClientMdsThin():
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print(f"Samples {totalSamples:d}, time {totalSamples/2e3:.3f} ms")
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Eoffset = np.zeros(ADC_CHANNELS, dtype=int)
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Woffset = np.zeros(ADC_CHANNELS)
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for i in range(ADC_CHANNELS):
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for i in range(self.num_channels):
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Eoffset[i] = np.mean(self.adcRawData[i]).astype(int)
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intData = self.adcIntegData[i]
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Woffset[i] = (intData[-1] - intData[0]) / totalSamples
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return Eoffset, Woffset
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if __name__ == '__main__':
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parser = argparse.ArgumentParser(
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description='Script to get data from remote MDS server')
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@@ -32,12 +32,16 @@ class MainWindow(QtWidgets.QMainWindow):
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parser.add_argument('-s', '--shot', type=int,
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help='Mds+ pulse Number ([1, ...])', default=100)
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parser.add_argument('-c', '--crange', nargs='+', type=int,
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help='Channel plots (1 16)', default=[1, 12])
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#parser.add_argument('-n', '--nchannels', type=int,
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# help='Number of channels)', default=ADC_CHANNELS)
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parser.add_argument('-m', '--maxpoints', type=int,
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help='Max points to plot', default=50000)
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parser.add_argument('-a', '--averages', action='store_true',
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help='calc Averages')
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parser.add_argument('-d', '--decimated', action='store_true',
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help='Use decimated data')
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# parser.add_argument('-d', '--decimated', action='store_true',
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# help='Use decimated data')
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# parser.add_argument('-w', '--drift', action='store_true', help='Calc drifts')
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parser.add_argument('-z', '--zero', action='store_true',
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help='Zero integral Lines')
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@@ -47,7 +51,7 @@ class MainWindow(QtWidgets.QMainWindow):
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args = parser.parse_args()
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print(f"args.shot {args.shot}")
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self.mclient = cltMds(url=args.url)
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self.mclient = cltMds(url=args.url, num_channels=ADC_CHANNELS)
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self.mclient.getTreeData(shot=args.shot)
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# gr_wid = pg.GraphicsLayoutWidget(show=True)
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cw = QtWidgets.QWidget()
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@@ -58,48 +62,68 @@ class MainWindow(QtWidgets.QMainWindow):
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pw1 = pg.PlotWidget(name='Plot1') ## giving the plots names allows us to link their axes
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pw1.addLegend()
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glay.addWidget(pw1, 0, 0)
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glay.setRowStretch(0, 1)
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glay.setRowStretch(1, 2)
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# self.setCentralWidget(gr_wid)
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self.setCentralWidget(cw)
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self.setWindowTitle('pyqtgraph ISTTOK')
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# p1 = gr_wid.addPlot(0,0, 1,1, title="raw data")
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start_ch = args.crange[0] - 1
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end_ch = args.crange[1]
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if (args.averages):
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Eoffset, Woffset = self.mclient.calcEoWo()
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# nChannels = len(mclient.adcRawData)
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print(f"EO: {ADC_CHANNELS} ", end='')
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for i in range(end_ch):
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print(f"{Eoffset[i]:d} ", end='')
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print(" ")
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print(f"WO: {ADC_CHANNELS} ", end='')
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for i in range(end_ch):
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print(f"{Woffset[i]:0.3f} ", end='')
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print(" ")
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time = self.mclient.timeR
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for i in range(ADC_CHANNELS):
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for i in range(start_ch, end_ch):
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dataAdc = self.mclient.adcRawData[i]
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pw1.plot(dataAdc, pen=pg.mkPen(i, width=1),
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pw1.plot(dataAdc[:args.maxpoints], pen=pg.mkPen(i, width=1),
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name="ch {}".format(i))
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pw2 = pg.PlotWidget(name='integ data') ## giving the plots names allows us to link their axes
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pw2 = pg.PlotWidget(name='Integ data')
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pw2.addLegend()
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pw2.setXLink('Plot1')
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glay.addWidget(pw2, 1, 0)
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# piw2 = gr_wid.addPlot(1,0, 1,1, title="integ data")
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time = self.mclient.timeI
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for i in range(ADC_CHANNELS):
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for i in range(start_ch, end_ch):
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# for i in range(args.nchannels):
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data = self.mclient.adcIntegData[i]
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pw2.plot(data, pen=pg.mkPen(i, width=1),
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if (args.zero):
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data -= data[0] # / 2.0e6 # LSB * sec
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pw2.plot(data[:args.maxpoints], pen=pg.mkPen(i, width=1),
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name="ch {}".format(i))
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#, pen=(255,0,0), name="Red curve")
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# sub1 = gr_wid.addLayout(0,2, 1,2)
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# piw2 = gr_wid.addPlot(1,0, 1,1, title="integ data")
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time = self.mclient.timeI
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for i in range(6):
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data = self.mclient.adcIntegData[i]
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pw2.plot(data, pen=pg.mkPen(i, width=1))
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# time = self.mclient.timeI
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# for i in range(6):
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# data = self.mclient.adcIntegData[i]
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# pw2.plot(data, pen=pg.mkPen(i, width=1))
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#, pen=(255,0,0), name="Red curve")
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# sub1 = gr_wid.addLayout(0,2, 1,2)
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self.resize(800, 700)
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self.show()
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# SLOT: This has default parameters and can be called without a value
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def my_custom_fn(self, a="HELLLO!", b=5):
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print(a, b)
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pw3 = pg.PlotWidget(name='Chop Trigg')
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pw3.setXLink('Plot1')
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data = self.mclient.choppTrigg
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pw3.plot(data[:args.maxpoints], pen=pg.mkPen(i, width=1))
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glay.addWidget(pw3, 2, 0)
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glay.setRowStretch(0, 1)
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glay.setRowStretch(1, 2)
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glay.setRowStretch(2, 1)
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self.resize(900, 800)
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self.show()
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mkQApp("ColorBarItem Example")
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main_window = MainWindow()
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@@ -120,5 +144,9 @@ if __name__ == '__main__':
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l.addWidget(saveBtn)
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# sub1.addItem(saveBtn)
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glay.addLayout(l, 0, 2)
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# SLOT: This has default parameters and can be called without a value
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def my_custom_fn(self, a="HELLLO!", b=5):
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print(a, b)
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"""
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