forked from M-Labs/artiq
dds: support batches in driver
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b22b8b661b
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5c08423b29
@ -10,10 +10,30 @@ PHASE_MODE_ABSOLUTE = 1
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PHASE_MODE_TRACKING = 2
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PHASE_MODE_TRACKING = 2
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class DDSBus(AutoDB):
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"""Core device Direct Digital Synthesis (DDS) bus batching driver.
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Manages batching of DDS commands on a DDS shared bus."""
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class DBKeys:
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core = Device()
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@kernel
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def batch_enter(self):
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"""Starts a DDS command batch. All DDS commands are buffered
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after this call, until ``batch_exit`` is called."""
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syscall("dds_batch_enter", time_to_cycles(now()))
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@kernel
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def batch_exit(self):
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"""Ends a DDS command batch. All buffered DDS commands are issued
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on the bus, and FUD is pulsed at the time the batch started."""
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syscall("dds_batch_exit")
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class DDS(AutoDB):
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class DDS(AutoDB):
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"""Core device Direct Digital Synthesis (DDS) driver.
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"""Core device Direct Digital Synthesis (DDS) driver.
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Controls DDS devices managed directly by the core device's runtime.
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Controls one DDS channel managed directly by the core device's runtime.
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:param dds_sysclk: DDS system frequency, used for computing the frequency
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:param dds_sysclk: DDS system frequency, used for computing the frequency
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tuning words.
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tuning words.
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@ -43,7 +63,7 @@ class DDS(AutoDB):
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@kernel
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@kernel
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def init(self):
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def init(self):
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"""Resets and initializes the DDS."""
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"""Resets and initializes the DDS channel."""
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syscall("dds_init", time_to_cycles(now()), self.channel)
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syscall("dds_init", time_to_cycles(now()), self.channel)
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@kernel
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@kernel
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@ -50,6 +50,12 @@
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"arguments": {"channel": 18}
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"arguments": {"channel": 18}
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},
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},
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"dds_bus": {
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"type": "local",
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"module": "artiq.coredevice.dds",
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"class": "DDSBus",
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"arguments": {}
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},
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"dds0": {
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"dds0": {
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"type": "local",
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"type": "local",
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"module": "artiq.coredevice.dds",
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"module": "artiq.coredevice.dds",
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@ -123,6 +129,8 @@
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},
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},
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"pmt": "pmt0",
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"pmt": "pmt0",
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"bd": "dds0",
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"bd_dds": "dds0",
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"bdd": "dds1"
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"bd_sw": "ttl0",
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"bdd_dds": "dds1",
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"bdd_sw": "ttl1"
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}
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}
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@ -6,6 +6,7 @@ class DDSTest(Experiment, AutoDB):
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class DBKeys:
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class DBKeys:
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core = Device()
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core = Device()
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dds_bus = Device()
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dds0 = Device()
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dds0 = Device()
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dds1 = Device()
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dds1 = Device()
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dds2 = Device()
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dds2 = Device()
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@ -16,9 +17,10 @@ class DDSTest(Experiment, AutoDB):
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@kernel
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@kernel
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def run(self):
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def run(self):
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# with dds_batch:
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self.dds_bus.batch_enter()
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# self.dds1.set(120*MHz)
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self.dds1.set(120*MHz)
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# self.dds2.set(200*MHz)
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self.dds2.set(200*MHz)
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self.dds_bus.batch_exit()
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for i in range(10000):
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for i in range(10000):
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if i & 0x200:
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if i & 0x200:
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@ -6,8 +6,11 @@ class PhotonHistogram(Experiment, AutoDB):
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class DBKeys:
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class DBKeys:
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core = Device()
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core = Device()
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bd = Device()
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dds_bus = Device()
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bdd = Device()
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bd_dds = Device()
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bd_sw = Device()
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bdd_dds = Device()
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bdd_sw = Device()
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pmt = Device()
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pmt = Device()
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nbins = Argument(100)
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nbins = Argument(100)
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@ -22,21 +25,37 @@ class PhotonHistogram(Experiment, AutoDB):
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hist = Result()
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hist = Result()
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total = Result()
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total = Result()
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@kernel
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def program_cooling(self):
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self.dds_bus.batch_enter()
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self.bd_dds.set(200*MHz)
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self.bdd_dds.set(300*MHz)
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self.dds_bus.batch_exit()
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@kernel
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@kernel
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def cool_detect(self):
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def cool_detect(self):
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with parallel:
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with parallel:
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self.bd.pulse(200*MHz, 1*ms)
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self.bd_sw.pulse(1*ms)
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self.bdd.pulse(300*MHz, 1*ms)
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self.bdd_sw.pulse(1*ms)
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self.bd.pulse(self.cool_f, 100*us)
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self.bd_dds.set(self.cool_f)
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self.bd_sw.pulse(100*us)
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self.bd_dds.set(self.detect_f)
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with parallel:
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with parallel:
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self.bd.pulse(self.detect_f, self.detect_t)
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self.bd_sw.pulse(self.detect_t)
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self.pmt.gate_rising(self.detect_t)
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self.pmt.gate_rising(self.detect_t)
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self.bd.on(200*MHz)
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self.bdd.on(300*MHz)
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self.program_cooling()
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self.bd_sw.on()
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self.bdd_sw.on()
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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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def run(self):
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def run(self):
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self.program_cooling()
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hist = [0 for _ in range(self.nbins)]
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hist = [0 for _ in range(self.nbins)]
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total = 0
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total = 0
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