mirror of https://github.com/m-labs/artiq.git
pdq2/mediator: rewrite, adapt to new PDQ RPC format, support anonymous segments, support uploading to controllers
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@ -6,109 +6,155 @@ from artiq.coredevice import rtio
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frame_setup = 20*ns
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trigger_duration = 50*ns
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frame_wait = 20*ns
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sample_period = 10*us # FIXME: check this
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class SegmentSequenceError(Exception):
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pass
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sample_period = 10*ns
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delay_margin_factor = 1.0001
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channels_per_pdq2 = 9
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class FrameActiveError(Exception):
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"""Raised when a frame is active and playback of a segment from another
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frame is attempted."""
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pass
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class FrameCloseError(Exception):
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class SegmentSequenceError(Exception):
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"""Raised when attempting to play back a named segment which is not the
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next in the sequence."""
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pass
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class InvalidatedError(Exception):
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"""Raised when attemting to use a frame or segment that has been
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invalidated (due to disarming the PDQ)."""
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pass
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class ArmError(Exception):
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"""Raised when attempting to arm an already armed PDQ, to modify the
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program of an armed PDQ, or to play a segment on a disarmed PDQ."""
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pass
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class _Segment:
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def __init__(self, frame, sn, duration, host_data):
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self.core = frame.core
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def __init__(self, frame, segment_number):
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self.frame = frame
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self.sn = sn
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self.duration = duration
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self.host_data = host_data
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self.segment_number = segment_number
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self.lines = []
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# for @kernel
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self.core = frame.pdq.core
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def add_line(self, duration, channel_data, dac_divider=1):
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if self.frame.invalidated:
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raise InvalidatedError
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if self.frame.pdq.armed:
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raise ArmError
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self.lines.append((dac_divider, duration, channel_data))
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def get_duration(self):
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r = 0*s
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for dac_divider, duration, _ in self.lines:
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r += duration*sample_period/dac_divider
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return r
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@kernel
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def advance(self):
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if self.frame.pdq.current_frame != self.frame.fn:
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raise FrameActiveError
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if self.frame.pdq.next_sn != self.sn:
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if self.frame.invalidated:
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raise InvalidatedError
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if not self.frame.pdq.armed:
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raise ArmError
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# If a frame is currently being played, check that we are next.
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if (self.frame.pdq.current_frame >= 0
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and self.frame.pdq.next_segment != self.segment_number):
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raise SegmentSequenceError
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self.frame.pdq.next_sn += 1
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t = time_to_cycles(now())
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self.frame.pdq.trigger.on(t)
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self.frame.pdq.trigger.off(t + time_to_cycles(trigger_duration))
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delay(self.duration)
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self.frame.advance()
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class _Frame:
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def __init__(self, core):
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self.core = core
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def __init__(self, pdq, frame_number):
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self.pdq = pdq
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self.frame_number = frame_number
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self.segments = []
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self.segment_count = 0
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self.closed = False
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def append(self, t, u, trigger=False, name=None):
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if self.closed:
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raise FrameCloseError
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sn = self.segment_count
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duration = (t[-1] - t[0])*sample_period
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segment = _Segment(self, sn, duration, (t, u, trigger))
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if name is None:
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# TODO
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raise NotImplementedError("Anonymous segments are not supported yet")
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else:
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self.invalidated = False
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# for @kernel
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self.core = self.pdq.core
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def create_segment(self, name=None):
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if self.invalidated:
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raise InvalidatedError
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if self.pdq.armed:
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raise ArmError
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segment = _Segment(self, self.segment_count)
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if name is not None:
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if hasattr(self, name):
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raise NameError("Segment name already exists")
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setattr(self, name, segment)
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self.segments.append(segment)
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self.segment_count += 1
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return segment
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def close(self):
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if self.closed:
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raise FrameCloseError
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self.closed = True
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def _arm(self):
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self.segment_delays = [
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time_to_cycles(s.get_duration()*delay_margin_factor, self.core)
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for s in self.segments]
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@kernel
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def begin(self):
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if self.pdq.current_frame >= 0:
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raise FrameActiveError
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self.pdq.current_frame = self.fn
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self.pdq.next_sn = 0
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def _invalidate(self):
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self.invalidated = True
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t = (time_to_cycles(now())
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- time_to_cycles(frame_setup + trigger_duration + frame_wait))
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self.pdq.frame0.set_value(t, self.fn & 1)
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self.pdq.frame1.set_value(t, (self.fn & 2) >> 1)
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self.pdq.frame2.set_value(t, (self.fn & 4) >> 2)
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t += time_to_cycles(frame_setup)
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self.pdq.trigger.on(t)
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self.pdq.trigger.off(t + time_to_cycles(trigger_duration))
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def _get_program(self):
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r = []
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for segment in self.segments:
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segment_program = [
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{
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"dac_divider": dac_divider,
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"duration": duration,
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"channel_data": channel_data,
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"wait_trigger": False,
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"jump": False
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} for dac_divider, duration, channel_data in segment.lines]
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segment_program[-1]["wait_trigger"] = True
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r += segment_program
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r[-1]["wait_trigger"] = False
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r[-1]["jump"] = True
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return r
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@kernel
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def advance(self):
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# TODO
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raise NotImplementedError
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if self.invalidated:
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raise InvalidatedError
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if not self.pdq.armed:
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raise ArmError
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@kernel
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def finish(self):
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if self.pdq.current_frame != self.fn:
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raise FrameActiveError
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if self.pdq.next_sn != self.segment_count:
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raise FrameActiveError
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self.pdq.current_frame = -1
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self.pdq.next_sn = -1
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t = time_to_cycles(now()) - time_to_cycles(trigger_duration/2)
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def _prepare(self, pdq, fn):
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if not self.closed:
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raise FrameCloseError
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self.pdq = pdq
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self.fn = fn
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if self.pdq.current_frame >= 0:
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# PDQ is in the middle of a frame. Check it is us.
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if self.frame.pdq.current_frame != self.frame_number:
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raise FrameActiveError
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else:
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# PDQ is in the jump table - set the selection signals
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# to play our first segment.
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self.pdq.current_frame = self.frame_number
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self.pdq.next_segment = 0
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t2 = t - time_to_cycles(frame_setup)
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self.pdq.frame0.set_value(t2, self.frame_number & 1)
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self.pdq.frame1.set_value(t2, (self.frame_number & 2) >> 1)
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self.pdq.frame2.set_value(t2, (self.frame_number & 4) >> 2)
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def _invalidate(self):
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del self.pdq
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del self.fn
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self.pdq.trigger.on(t)
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self.pdq.trigger.off(t + time_to_cycles(trigger_duration))
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delay(cycles_to_time(self.segment_delays[self.pdq.next_segment]))
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self.pdq.next_segment += 1
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# test for end of frame
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if self.pdq.next_segment == self.segment_count:
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self.pdq.current_frame = -1
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self.pdq.next_segment = -1
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class CompoundPDQ2(AutoDB):
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@ -131,19 +177,42 @@ class CompoundPDQ2(AutoDB):
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self.frames = []
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self.current_frame = -1
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self.next_sn = -1
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self.next_segment = -1
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self.armed = False
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def create_frame(self):
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return _Frame(self.core)
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def prepare(self, *frames):
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# prevent previous frames and their segments from
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# being (incorrectly) used again
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def disarm(self):
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for frame in self.frames:
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frame._invalidate()
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self.frames = []
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self.armed = False
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self.frames = list(frames)
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for fn, frame in enumerate(frames):
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frame._prepare(self, fn)
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def arm(self):
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if self.armed:
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raise ArmError
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for frame in self.frames:
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frame._arm()
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# TODO: upload to PDQ2 devices
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full_program = [f._get_program() for f in self.frames]
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for n, pdq2 in enumerate(self.pdq2s):
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program = []
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for full_frame_program in full_program:
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frame_program = []
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for full_line in full_frame_program:
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line = {
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"dac_divider": full_line["dac_divider"],
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"duration": full_line["duration"],
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"channel_data": full_line["channel_data"]
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[n*channels_per_pdq2:(n+1)*channels_per_pdq2],
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"wait_trigger": full_line["wait_trigger"],
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"jump": full_line["jump"]
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}
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frame_program.append(line)
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program.append(frame_program)
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pdq2.program(program)
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def create_frame(self):
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if self.armed:
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raise ArmError
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r = _Frame(self, len(self.frames))
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self.frames.append(r)
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return r
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