resonance_tester: Fixed multi-point resonance testing
Signed-off-by: Dmitry Butyugin <dmbutyugin@google.com>
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@ -178,7 +178,10 @@ class ResonanceTester:
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"%s-axis accelerometer measured no data" % (
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chip_axis,))
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new_data = helper.process_accelerometer_data(chip_values)
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data = data.join(new_data) if data else new_data
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if data is None:
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data = new_data
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else:
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data.add_data(new_data)
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if csv_output:
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csv_name = self.save_calibration_data('resonances', name_suffix,
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helper, axis, data)
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@ -251,7 +254,7 @@ class ResonanceTester:
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if calibration_data[axis] is None:
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calibration_data[axis] = new_data
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else:
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calibration_data[axis].join(new_data)
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calibration_data[axis].add_data(new_data)
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configfile = self.printer.lookup_object('configfile')
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@ -142,7 +142,7 @@ class CalibrationData:
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self._psd_map = {'x': self.psd_x, 'y': self.psd_y, 'z': self.psd_z,
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'all': self.psd_sum}
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self.data_sets = 1
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def join(self, other):
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def add_data(self, other):
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np = self.numpy
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joined_data_sets = self.data_sets + other.data_sets
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for psd, other_psd in zip(self._psd_list, other._psd_list):
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@ -45,12 +45,12 @@ def calibrate_shaper(datas, csv_output, max_smoothing):
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if isinstance(datas[0], CalibrationData):
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calibration_data = datas[0]
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for data in datas[1:]:
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calibration_data.join(data)
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calibration_data.add_data(data)
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else:
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# Process accelerometer data
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calibration_data = helper.process_accelerometer_data(datas[0])
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for data in datas[1:]:
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calibration_data.join(helper.process_accelerometer_data(data))
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calibration_data.add_data(helper.process_accelerometer_data(data))
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calibration_data.normalize_to_frequencies()
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shaper, all_shapers = helper.find_best_shaper(
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calibration_data, max_smoothing, print)
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@ -82,7 +82,7 @@ def calc_specgram(data, axis):
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def plot_frequency(datas, lognames, max_freq):
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calibration_data = calc_freq_response(datas[0], max_freq)
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for data in datas[1:]:
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calibration_data.join(calc_freq_response(data, max_freq))
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calibration_data.add_data(calc_freq_response(data, max_freq))
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freqs = calibration_data.freq_bins
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psd = calibration_data.psd_sum[freqs <= max_freq]
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px = calibration_data.psd_x[freqs <= max_freq]
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@ -158,7 +158,7 @@ def write_frequency_response(datas, output):
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helper = ShaperCalibrate(printer=None)
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calibration_data = helper.process_accelerometer_data(datas[0])
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for data in datas[1:]:
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calibration_data.join(helper.process_accelerometer_data(data))
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calibration_data.add_data(helper.process_accelerometer_data(data))
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helper.save_calibration_data(output, calibration_data)
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def write_specgram(psd, freq_bins, time, output):
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