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@@ -3,17 +3,19 @@ import os
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from argparse import ArgumentParser
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from datetime import datetime
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import matplotlib
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import pandas as pd
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import matplotlib.pyplot as plt
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matplotlib.use('TkAgg')
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def plot_packet_arrivals(csv_file):
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def plot_single_transmission(csv_file):
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global direction
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if direction is None:
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direction = "uplink" if "uplink" in csv_file else "downlink"
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bitrate = csv_file.split("bitrate")[1].split("_")[0]
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transmission_df = pd.read_csv(csv_file)
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if len(transmission_df) == 0:
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print("Empty csv.")
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return
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transmission_df["departure_time"] = transmission_df["departure_time"] - transmission_df["departure_time"].iloc[0]
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transmission_df["arrival_time"] = transmission_df["arrival_time"] - transmission_df["arrival_time"].iloc[0]
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@@ -28,10 +30,6 @@ def plot_packet_arrivals(csv_file):
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print("Packetloss: {}%".format((len(lossed_packets.departure_time) / len(transmission_df.departure_time)) * 100 ))
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#axes = transmission_df.plot(x="arrival_time", y="data.len_received_cum")
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fig, all_axes = plt.subplots(2, 1)
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fig.suptitle("CBR {} {}".format(bitrate, direction))
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fig.subplots_adjust(hspace=0.3)
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@@ -41,7 +39,6 @@ def plot_packet_arrivals(csv_file):
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transmission_df.plot(ax=axes, x="departure_time", y="data.len_send_cum")
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transmission_df.plot(ax=axes, x="arrival_time", y="data.len_received_cum")
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lossed_packets.plot.scatter(ax=axes, x="departure_time", y="data.len_send_cum", color="y", marker="X")
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#axes = transmission_df.boxplot(column="delay")
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axes.legend(["D(t)", "A(t)"])
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axes.set_ylabel("Byte")
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@@ -49,15 +46,19 @@ def plot_packet_arrivals(csv_file):
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delay_axes = axes.twinx()
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delay_axes.set_ylabel("delay [s]")
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delay_axes.set_ylim([0, 0.4])
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transmission_df.plot(ax=delay_axes, x="arrival_time", y="delay", color="g", linestyle="dotted")
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transmission_df.boxplot(ax=axes_boxplot, column="delay", vert=False)
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axes_boxplot.set_xlabel("[s]")
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#fig = axes.get_figure()
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#fig.suptitle("CBR {} {}".format(bitrate, direction))
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#fig.show()
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fig.savefig(csv_file.replace(".csv", ".pdf"))
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plt.close("all")
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global all_delays_dict
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if bitrate not in all_delays_dict:
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all_delays_dict[bitrate] = list()
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all_delays_dict[bitrate] += transmission_df["delay"].tolist()
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if __name__ == "__main__":
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@@ -82,6 +83,8 @@ if __name__ == "__main__":
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args = parser.parse_args()
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csv_list = list()
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all_delays_dict = dict()
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direction = None
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if args.use_subdirs:
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sub_dirs = os.listdir(args.folder)
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@@ -96,5 +99,29 @@ if __name__ == "__main__":
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if filename.endswith(".csv") and args.name_contains in filename:
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csv_list.append(filename)
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csv_list.sort()
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for csv in csv_list:
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plot_packet_arrivals("{}/{}".format(args.folder, csv))
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print(csv)
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plot_single_transmission("{}/{}".format(args.folder, csv))
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if len(all_delays_dict) > 0:
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fig, axes = plt.subplots()
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label_list = list()
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unit = None
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datas = list()
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for bitrate, l in all_delays_dict.items():
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if unit is None:
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if "K" in bitrate:
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unit = "Kbit/s"
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elif "M" in bitrate:
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unit = "Mbit/s"
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else:
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unit = "Gbit/s"
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label_list.append(bitrate.replace("K", "").replace("M", "").replace("G", ""))
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datas.append(l)
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axes.boxplot(datas)
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#axes.set_xticklabels(label_list)
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axes.set_xlabel("cbr bitrate [{}]".format(unit))
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axes.set_ylabel("delay [s]")
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fig.suptitle("CBR {}".format(direction))
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fig.savefig("{}/all_delays_{}_boxplot.pdf".format(args.folder, direction))
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