mirror of https://github.com/m-labs/artiq.git
frontend: sinara_tester: add mirny test
Signed-off-by: Oi Chee Cheung <dc@m-labs.hk>
This commit is contained in:
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43be383c86
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6a5f5088e2
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@ -53,6 +53,8 @@ class SinaraTester(EnvExperiment):
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self.fastinos = dict()
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self.fastinos = dict()
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self.phasers = dict()
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self.phasers = dict()
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self.grabbers = dict()
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self.grabbers = dict()
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self.mirny_cplds = dict()
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self.mirnies = dict()
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ddb = self.get_device_db()
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ddb = self.get_device_db()
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for name, desc in ddb.items():
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for name, desc in ddb.items():
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@ -82,8 +84,12 @@ class SinaraTester(EnvExperiment):
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self.phasers[name] = self.get_device(name)
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self.phasers[name] = self.get_device(name)
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elif (module, cls) == ("artiq.coredevice.grabber", "Grabber"):
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elif (module, cls) == ("artiq.coredevice.grabber", "Grabber"):
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self.grabbers[name] = self.get_device(name)
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self.grabbers[name] = self.get_device(name)
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elif (module, cls) == ("artiq.coredevice.mirny", "Mirny"):
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self.mirny_cplds[name] = self.get_device(name)
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elif (module, cls) == ("artiq.coredevice.adf5356", "ADF5356"):
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self.mirnies[name] = self.get_device(name)
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# Remove Urukul, Sampler and Zotino control signals
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# Remove Urukul, Sampler, Zotino and Mirny control signals
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# from TTL outs (tested separately)
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# from TTL outs (tested separately)
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ddb = self.get_device_db()
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ddb = self.get_device_db()
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for name, desc in ddb.items():
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for name, desc in ddb.items():
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@ -105,6 +111,9 @@ class SinaraTester(EnvExperiment):
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clr_device = desc["arguments"]["clr_device"]
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clr_device = desc["arguments"]["clr_device"]
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del self.ttl_outs[ldac_device]
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del self.ttl_outs[ldac_device]
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del self.ttl_outs[clr_device]
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del self.ttl_outs[clr_device]
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elif (module, cls) == ("artiq.coredevice.adf5356", "ADF5356"):
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sw_device = desc["arguments"]["sw_device"]
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del self.ttl_outs[sw_device]
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# Sort everything by RTIO channel number
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# Sort everything by RTIO channel number
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self.leds = sorted(self.leds.items(), key=lambda x: x[1].channel)
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self.leds = sorted(self.leds.items(), key=lambda x: x[1].channel)
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@ -116,6 +125,7 @@ class SinaraTester(EnvExperiment):
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self.fastinos = sorted(self.fastinos.items(), key=lambda x: x[1].channel)
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self.fastinos = sorted(self.fastinos.items(), key=lambda x: x[1].channel)
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self.phasers = sorted(self.phasers.items(), key=lambda x: x[1].channel_base)
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self.phasers = sorted(self.phasers.items(), key=lambda x: x[1].channel_base)
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self.grabbers = sorted(self.grabbers.items(), key=lambda x: x[1].channel_base)
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self.grabbers = sorted(self.grabbers.items(), key=lambda x: x[1].channel_base)
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self.mirnies = sorted(self.mirnies.items(), key=lambda x: (x[1].cpld.bus.channel, x[1].channel))
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@kernel
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@kernel
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def test_led(self, led):
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def test_led(self, led):
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@ -278,6 +288,79 @@ class SinaraTester(EnvExperiment):
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self.cfg_sw_off_urukul(swi)
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self.cfg_sw_off_urukul(swi)
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self.rf_switch_wave([swi.sw for swi in sw])
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self.rf_switch_wave([swi.sw for swi in sw])
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@kernel
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def init_mirny(self, cpld):
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self.core.break_realtime()
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# Taken from Mirny.init(), to accomodate Mirny v1.1 without blinding
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reg0 = cpld.read_reg(0)
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if reg0 & 0b11 != 0b10: # Modified part
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raise ValueError("Mirny HW_REV mismatch")
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if (reg0 >> 2) & 0b11 != 0b00:
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raise ValueError("Mirny PROTO_REV mismatch")
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delay(100 * us) # slack
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# select clock source
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cpld.write_reg(1, (cpld.clk_sel << 4))
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delay(1000 * us)
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# End of modified Mirny.init()
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@kernel
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def setup_mirny(self, channel, frequency):
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self.core.break_realtime()
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channel.init()
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channel.set_att_mu(160)
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channel.sw.on()
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self.core.break_realtime()
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channel.set_frequency(frequency*MHz)
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delay(5*ms)
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@kernel
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def sw_off_mirny(self, channel):
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self.core.break_realtime()
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channel.sw.off()
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@kernel
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def mirny_rf_switch_wave(self, channels):
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while not is_enter_pressed():
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self.core.break_realtime()
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# do not fill the FIFOs too much to avoid long response times
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t = now_mu() - self.core.seconds_to_mu(0.2)
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while self.core.get_rtio_counter_mu() < t:
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pass
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for channel in channels:
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channel.pulse(100*ms)
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delay(100*ms)
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def test_mirnies(self):
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print("*** Testing Mirny PLLs.")
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print("Initializing CPLDs...")
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for name, cpld in sorted(self.mirny_cplds.items(), key=lambda x: x[0]):
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print(name + "...")
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self.init_mirny(cpld)
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print("...done")
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print("All mirny channels active.")
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print("Frequencies:")
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for card_n, channels in enumerate(chunker(self.mirnies, 4)):
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for channel_n, (channel_name, channel_dev) in enumerate(channels):
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frequency = 1000*(card_n + 1) + channel_n * 100 + 8 # Extra 8 Hz for easier observation
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print("{}\t{}MHz".format(channel_name, frequency))
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self.setup_mirny(channel_dev, frequency)
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print("{} info: {}".format(channel_name, channel_dev.info()))
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print("Press ENTER when done.")
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input()
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sw = [channel_dev for channel_name, channel_dev in self.mirnies if hasattr(channel_dev, "sw")]
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if sw:
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print("Testing RF switch control. Check LEDs at mirny RF ports.")
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print("Press ENTER when done.")
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for swi in sw:
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self.sw_off_mirny(swi)
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self.mirny_rf_switch_wave([swi.sw for swi in sw])
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@kernel
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@kernel
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def get_sampler_voltages(self, sampler, cb):
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def get_sampler_voltages(self, sampler, cb):
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self.core.break_realtime()
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self.core.break_realtime()
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@ -495,6 +578,8 @@ class SinaraTester(EnvExperiment):
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self.test_ttl_ins()
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self.test_ttl_ins()
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if self.urukuls:
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if self.urukuls:
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self.test_urukuls()
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self.test_urukuls()
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if self.mirnies:
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self.test_mirnies()
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if self.samplers:
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if self.samplers:
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self.test_samplers()
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self.test_samplers()
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if self.zotinos:
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if self.zotinos:
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