forked from M-Labs/artiq
pdq2: wire up more of the pipeline
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e42fd9ca31
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@ -193,6 +193,8 @@ class Pdq2:
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def program_frame(self, frame_data):
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def program_frame(self, frame_data):
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segments = [c.new_segment() for c in self.channels]
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segments = [c.new_segment() for c in self.channels]
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for segment in segments:
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segment.line(typ=3, data=b"", trigger=True, duration=10, aux=1)
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for i, line in enumerate(frame_data): # segments are concatenated
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for i, line in enumerate(frame_data): # segments are concatenated
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dac_divider = line.get("dac_divider", 1)
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dac_divider = line.get("dac_divider", 1)
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shift = int(log(dac_divider, 2))
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shift = int(log(dac_divider, 2))
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@ -209,9 +211,11 @@ class Pdq2:
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shift=shift, duration=duration, trigger=trigger,
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shift=shift, duration=duration, trigger=trigger,
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**target_data)
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**target_data)
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# append an empty line to stall the memory reader before jumping
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# append an empty line to stall the memory reader before jumping
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# through the frame table
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# through the frame table (`wait` does not prevent reading
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# the next line)
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for segment in segments:
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for segment in segments:
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segment.line(typ=3, data=b"", trigger=True, duration=10)
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segment.line(typ=3, data=b"", trigger=True, duration=1,
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jump=True, aux=1)
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return segments
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return segments
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def program(self, program):
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def program(self, program):
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@ -111,6 +111,7 @@ class _Frame:
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"dac_divider": dac_divider,
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"dac_divider": dac_divider,
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"duration": duration,
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"duration": duration,
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"channel_data": channel_data,
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"channel_data": channel_data,
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"trigger": False,
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} for dac_divider, duration, channel_data in segment.lines]
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} for dac_divider, duration, channel_data in segment.lines]
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segment_program[0]["trigger"] = True
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segment_program[0]["trigger"] = True
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r += segment_program
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r += segment_program
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@ -156,7 +157,7 @@ class _Frame:
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class CompoundPDQ2:
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class CompoundPDQ2:
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def __init__(self, dmgr, pdq2_devices, trigger_device, frame_devices):
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def __init__(self, dmgr, pdq2_devices, trigger_device, frame_devices):
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self.core = dmgr.get("core")
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self.core = dmgr.get("core")
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self.pdq2s = [dmgr.get(d) for d in self.pdq2_devices]
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self.pdq2s = [dmgr.get(d) for d in pdq2_devices]
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self.trigger = dmgr.get(trigger_device)
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self.trigger = dmgr.get(trigger_device)
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self.frame0 = dmgr.get(frame_devices[0])
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self.frame0 = dmgr.get(frame_devices[0])
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self.frame1 = dmgr.get(frame_devices[1])
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self.frame1 = dmgr.get(frame_devices[1])
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@ -143,14 +143,12 @@ class CoefficientSource:
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return build_segment(durations, coefficients, target=target,
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return build_segment(durations, coefficients, target=target,
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variable=variable)
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variable=variable)
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def extend_segment(self, segment, trigger=True, *args, **kwargs):
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def extend_segment(self, segment, *args, **kwargs):
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"""Extend a wavesynth segment.
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"""Extend a wavesynth segment.
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See `get_segment()` for arguments.
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See `get_segment()` for arguments.
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"""
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"""
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for i, line in enumerate(self.get_segment_data(*args, **kwargs)):
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for i, line in enumerate(self.get_segment_data(*args, **kwargs)):
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if i == 0:
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line["trigger"] = trigger
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segment.add_line(**line)
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segment.add_line(**line)
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@ -4,11 +4,11 @@ import numpy as np
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from artiq import *
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from artiq import *
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from artiq.wavesynth.coefficients import SplineSource
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# data is usually precomputed offline
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transport = SplineSource(
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transport_data = dict(
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x=np.linspace(0, 10, 101), # waveform time
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t=np.linspace(0, 10, 101), # waveform time
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y=np.random.rand(4*3*3, 101)*1e-6, # waveform data,
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u=np.random.randn(101, 4*3*3), # waveform data,
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# 4 devices, 3 board each, 3 dacs each
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# 4 devices, 3 board each, 3 dacs each
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)
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)
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@ -16,37 +16,33 @@ class Transport(EnvExperiment):
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"""Transport"""
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"""Transport"""
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def build(self):
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def build(self):
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self.setattr_device("core")
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self.core = self.get_device("core")
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self.setattr_device("bd")
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self.bd_sw = self.get_device("bd_sw")
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self.setattr_device("bdd")
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self.pmt = self.get_device("pmt")
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self.setattr_device("pmt")
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self.electrodes = self.get_device("electrodes")
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self.setattr_device("electrodes")
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self.setattr_argument("wait_at_stop", NumberValue(100*us))
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self.wait_at_stop = self.get_argument("wait_at_stop",
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self.setattr_argument("speed", NumberValue(1.5))
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NumberValue(100*us))
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self.setattr_argument("repeats", NumberValue(100))
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self.speed = self.get_argument("speed", NumberValue(1.5))
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self.setattr_argument("nbins", NumberValue(100))
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self.repeats = self.get_argument("repeats", NumberValue(100))
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self.nbins = self.get_argument("nbins", NumberValue(100))
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def calc_waveforms(self, stop):
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def calc_waveforms(self, stop):
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t = transport_data["t"][:stop]*self.speed
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u = transport_data["u"][:stop]
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self.electrodes.disarm()
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self.electrodes.disarm()
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self.tf = self.electrodes.create_frame()
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self.tf = self.electrodes.create_frame()
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self.tf.create_segment(t, u, name="to_stop")
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to_stop = self.tf.create_segment("to_stop")
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from_stop = self.tf.create_segment("from_stop")
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transport.extend_segment(to_stop, 0, stop, scale=self.speed)
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# append the reverse transport (from stop to 0)
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# append the reverse transport (from stop to 0)
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# both durations are the same in this case
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# both durations are the same in this case
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self.tf.create_segment(t[-1] - t[::-1], u[::-1], name="from_stop")
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transport.extend_segment(from_stop, 0, stop, scale=self.speed)
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# distributes frames to the sub-devices in CompoundPDQ2
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# distributes frames to the sub-devices in CompoundPDQ2
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# and uploads them
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# and uploads them
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self.electrodes.arm()
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self.electrodes.arm()
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@kernel
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@kernel
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def cool(self):
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def cool(self):
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with parallel:
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self.bd_sw.pulse(1*ms)
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self.bd.pulse(200*MHz, 1*ms)
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self.bdd.pulse(300*MHz, 1*ms)
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self.bd.pulse(210*MHz, 100*us)
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@kernel
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@kernel
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def transport(self):
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def transport(self):
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@ -65,10 +61,9 @@ class Transport(EnvExperiment):
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@kernel
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@kernel
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def detect(self):
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def detect(self):
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with parallel:
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with parallel:
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self.bd.pulse(220*MHz, 100*us)
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self.bd_sw.pulse(100*us)
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self.pmt.gate_rising(100*us)
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self.pmt.gate_rising(100*us)
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self.bd.on(200*MHz)
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self.bd_sw.on()
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self.bdd.on(300*MHz)
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return self.pmt.count()
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return self.pmt.count()
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@kernel
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@kernel
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@ -79,7 +74,7 @@ class Transport(EnvExperiment):
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@kernel
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@kernel
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def repeat(self):
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def repeat(self):
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self.histogram = [0 for _ in range(self.nbins)]
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self.histogram[:] = [0 for _ in range(self.nbins)]
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for i in range(self.repeats):
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for i in range(self.repeats):
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n = self.one()
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n = self.one()
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@ -100,5 +95,5 @@ class Transport(EnvExperiment):
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def run(self):
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def run(self):
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# scan transport endpoint
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# scan transport endpoint
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stops = range(10, len(transport_data["t"]), 10)
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stops = range(10, len(transport.x), 10)
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self.scan(stops)
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self.scan(stops)
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