mirror of https://github.com/m-labs/artiq.git
wavesynth: program decoding
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@ -25,7 +25,7 @@ class SplinePhase:
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def set_coefficients(self, c):
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self.c = self.c[0:1] + c[1:]
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self.c0 = self.c[0]
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self.c0 = c[0]
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def clear(self):
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self.c[0] = 0.0
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@ -55,21 +55,136 @@ class Wave:
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return self.bias.next() + self.dds.next()
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if __name__ == "__main__":
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class TriggerError(Exception):
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pass
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class Synthesizer:
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def __init__(self, nchannels, program):
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self.channels = [Wave() for _ in range(nchannels)]
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self.program = program
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# line_iter is None: "wait for segment selection" state
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# otherwise: iterator on the current position in the segment
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self.line_iter = None
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def trigger(self, selection=None):
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if selection is None:
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if self.line_iter is None:
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raise TriggerError
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else:
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if self.line_iter is not None:
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raise TriggerError
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self.line_iter = iter(self.program[selection])
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r = [[] for _ in self.channels]
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while True:
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line = next(self.line_iter)
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if line["dac_divider"] != 1:
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raise NotImplementedError
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for channel, channel_data in zip(self.channels,
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line["channel_data"]):
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if "bias" in channel_data:
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channel.bias.set_coefficients(channel_data["bias"])
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if "dds" in channel_data:
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channel.dds.amplitude.set_coefficients(
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channel_data["dds"]["amplitude"])
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channel.dds.phase.set_coefficients(
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channel_data["dds"]["phase"])
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if channel_data["dds"]["clear"]:
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channel.dds.phase.clear()
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for channel, rc in zip(self.channels, r):
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for i in range(line["duration"]):
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rc.append(channel.next())
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if line["wait_trigger"] and line["jump"]:
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raise ValueError("Line cannot both jump and wait for trigger")
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if line["wait_trigger"]:
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return r
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if line["jump"]:
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self.line_iter = None
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return r
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def main():
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program = [
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[
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# segment 0
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{
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# line 0
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"dac_divider": 1,
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"duration": 100,
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"channel_data": [
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{
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# channel 0
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"dds": {"amplitude": [0.0, 0.0, 0.01],
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"phase": [0.0, 0.0, 0.0005],
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"clear": False}
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}
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],
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"wait_trigger": False,
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"jump": False
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},
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{
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# line 1
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"dac_divider": 1,
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"duration": 100,
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"channel_data": [
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{
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# channel 0
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"dds": {"amplitude": [49.5, 1.0, -0.01],
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"phase": [0.0, 0.05, 0.0005],
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"clear": False}
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}
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],
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"wait_trigger": False,
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"jump": True
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},
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],
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[
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# segment 1
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{
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# line 2
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"dac_divider": 1,
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"duration": 100,
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"channel_data": [
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{
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# channel 0
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"dds": {"amplitude": [100.0, 0.0, -0.01],
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"phase": [0.0, 0.1, -0.0005],
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"clear": False}
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}
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],
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"wait_trigger": False,
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"jump": False
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},
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{
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# line 3
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"dac_divider": 1,
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"duration": 100,
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"channel_data": [
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{
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# channel 0
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"dds": {"amplitude": [50.5, -1.0, 0.01],
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"phase": [0.0, 100.05, -0.0005],
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"clear": False}
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}
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],
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"wait_trigger": False,
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"jump": True
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}
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]
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]
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x = list(range(400))
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w = Wave()
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w.dds.amplitude.set_coefficients([0.0, 0.0, 0.01])
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w.dds.phase.set_coefficients([0.0, 0.0, 0.0005])
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y = [w.next() for i in range(100)]
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w.dds.amplitude.set_coefficients([49.5, 1.0, -0.01])
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y += [w.next() for i in range(100)]
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w.dds.phase.set_coefficients([0.0, 0.1, -0.0005])
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y += [w.next() for i in range(100)]
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w.dds.amplitude.set_coefficients([50.5, -1.0, 0.01])
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y += [w.next() for i in range(100)]
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s = Synthesizer(1, program)
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r = s.trigger(0)
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y = r[0]
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r = s.trigger(1)
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y += r[0]
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cairoplot.scatter_plot("plot.png", [x, y])
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if __name__ == "__main__":
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main()
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