forked from M-Labs/artiq
coredevice: adf5356: add some tests
Signed-off-by: Etienne Wodey <wodey@iqo.uni-hannover.de>
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import unittest
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from artiq.experiment import *
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from artiq.test.hardware_testbench import ExperimentCase
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from artiq.coredevice.adf5356 import (
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calculate_pll,
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split_msb_lsb_28b,
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ADF5356_MODULUS1,
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ADF5356_MAX_MODULUS2,
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)
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class ADF5356Exp(EnvExperiment):
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def build(self, runner):
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self.setattr_device("core")
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self.dev = self.get_device("mirny0_ch0")
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self.runner = runner
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def run(self):
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getattr(self, self.runner)()
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@kernel
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def instantiate(self):
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pass
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@kernel
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def init(self):
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self.core.break_realtime()
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self.dev.cpld.init()
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self.dev.init()
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@kernel
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def set_get_simple(self):
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self.core.break_realtime()
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self.dev.cpld.init()
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self.dev.init()
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self.dev.set_att_mu(0)
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f = 300.123456 * MHz
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self.dev.set_frequency(f)
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self.set_dataset("freq_set", round(f / Hz))
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self.set_dataset(
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"freq_get", round(self.dev.f_vco() / self.dev.output_divider() / Hz)
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)
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@kernel
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def set_too_high_frequency(self):
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self.dev.set_frequency(10 * GHz)
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@kernel
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def set_too_low_frequency(self):
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self.dev.set_frequency(1 * MHz)
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@kernel
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def muxout_lock_detect(self):
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self.core.break_realtime()
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self.dev.cpld.init()
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self.dev.init()
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self.dev.set_att_mu(0)
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f = 300.123 * MHz
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self.dev.set_frequency(f)
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delay(5 * ms)
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self.set_dataset("muxout", self.dev.read_muxout())
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class TestCalculateParameters(unittest.TestCase):
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def setUp(self):
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self.f_pfd = 50 * MHz
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self.mod1 = ADF5356_MODULUS1
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def test_split_msb_lsb(self):
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a = (0x123 << 14) | 0x3456
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msb, lsb = split_msb_lsb_28b(a)
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self.assertEqual(msb, 0x123)
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self.assertEqual(lsb, 0x3456)
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def test_integer_pll(self):
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p_n = 30
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n, frac1, frac2, mod2 = calculate_pll(p_n * self.f_pfd, self.f_pfd)
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self.assertEqual(p_n, n)
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self.assertEqual(frac1, 0)
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self.assertEqual(frac2, (0, 0))
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self.assertNotEqual(mod2, (0, 0))
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def test_frac1_pll(self):
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p_n = 30
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p_frac1 = 1 << 22
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n, frac1, frac2, mod2 = calculate_pll(
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(p_n + p_frac1 / self.mod1) * self.f_pfd, self.f_pfd
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)
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self.assertEqual(p_n, n)
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self.assertEqual(p_frac1, frac1)
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self.assertEqual(frac2, (0, 0))
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self.assertNotEqual(mod2, (0, 0))
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def test_frac_pll(self):
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p_n = 30
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p_frac1 = 1 << 14
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p_frac2 = 1 << 24
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p_mod2 = 1 << 25
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n, frac1, frac2, mod2 = calculate_pll(
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(p_n + (p_frac1 + p_frac2 / p_mod2) / self.mod1) * self.f_pfd, self.f_pfd
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)
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self.assertEqual(p_n, n)
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self.assertEqual(p_frac1, frac1)
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frac2 = (frac2[0] << 14) | frac2[1]
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mod2 = (mod2[0] << 14) | mod2[1]
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self.assertNotEqual(frac2, 0)
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self.assertNotEqual(mod2, 0)
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self.assertLessEqual(mod2, ADF5356_MAX_MODULUS2)
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self.assertEqual(
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self.mod1 // (p_frac1 + p_frac2 // p_mod2),
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self.mod1 // (frac1 + frac2 // mod2),
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)
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class ADF5356Test(ExperimentCase):
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def test_instantiate(self):
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self.execute(ADF5356Exp, "instantiate")
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def test_init(self):
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self.execute(ADF5356Exp, "init")
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def test_set_get_simple(self):
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self.execute(ADF5356Exp, "set_get_simple")
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f_set = self.dataset_mgr.get("freq_set")
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f_get = self.dataset_mgr.get("freq_get")
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self.assertEqual(f_set, f_get)
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def test_muxout_lock_detect(self):
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self.execute(ADF5356Exp, "muxout_lock_detect")
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muxout = self.dataset_mgr.get("muxout")
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self.assertTrue(muxout)
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def test_set_too_high_frequency(self):
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with self.assertRaises(ValueError):
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self.execute(ADF5356Exp, "set_too_high_frequency")
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def test_set_too_low_frequency(self):
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with self.assertRaises(ValueError):
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self.execute(ADF5356Exp, "set_too_low_frequency")
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