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@@ -0,0 +1,33 @@
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+import matplotlib.pyplot as plt
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+import numpy as np
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+
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+LEAD_FILE = "/tmp/lead_history.log"
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+F_FILE = "/tmp/f_history.log"
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+
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+LEAD_PROCESSED_IMG = "/tmp/lead_history_processed.png"
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+F_PROCESSED_IMG = "/tmp/f_history_processed.png"
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+
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+SEP = ","
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+NODES = 5 # nuber of nodes logged
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+
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+with open(LEAD_FILE) as f:
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+ buf = f.read()
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+ nodes = buf.split(SEP)[:-1]
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+ node_log = []
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+ for i in range(0, len(nodes), NODES):
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+ assert (nodes[i]==nodes[i+1]==nodes[i+2]==nodes[i+3]==nodes[i+4])
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+ node_log+=[int(nodes[i])]
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+ freq_single_lead = sum(np.array(node_log)==1)/float(len(node_log))
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+ print("single leader frequency: {}".format(freq_single_lead))
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+ plt.plot(node_log)
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+ plt.savefig(LEAD_PROCESSED_IMG)
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+
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+with open(F_FILE) as f:
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+ buf = f.read()
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+ nodes = buf.split(SEP)[:-1]
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+ node_log = []
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+ for i in range(0, len(nodes), NODES):
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+ assert (nodes[i]==nodes[i+1]==nodes[i+2]==nodes[i+3]==nodes[i+4])
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+ node_log+=[float(nodes[i])]
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+ plt.plot(node_log)
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+ plt.savefig(F_PROCESSED_IMG)
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