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@@ -1,13 +1,16 @@
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-#!/usr/bin/python2
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+#!/usr/bin/python
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import sys
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+import os
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import subprocess
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import numpy as np
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from numpy import genfromtxt
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-import matplotlib.pyplot as plt
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import numpy.polynomial.polynomial as poly
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-from scipy.optimize import curve_fit
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from operator import add
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import operator
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+#import matplotlib as mpl
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+#if os.environ.get('DISPLAY','') == '':
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+# mpl.use('Agg')
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+import matplotlib.pyplot as plt
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def quadratic_function(x, a, b, c):
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return a*x*x + b*x + c
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@@ -16,8 +19,16 @@ def linear_function(x, a, b):
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return a*x + b
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PLOT_PATHORAM = False
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-PLOT_CIRCUITORAM = True
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PLOT_LSIPRM = False
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+PLOT_CIRCUITORAM = False
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+PLOT_ZEROTRACE = False
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+
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+if(len(sys.argv)>1):
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+ if(int(sys.argv[1])==1):
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+ PLOT_ZEROTRACE = True
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+
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+if(PLOT_ZEROTRACE):
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+ PLOT_CIRCUITORAM = True
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#List of plot files
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LF_PATHORAM='log_ZTPATHORAM'
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@@ -29,6 +40,13 @@ LF_SEALPIR='log_SEALPIR'
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LF_SEALPIR_D1='log_SEALPIR_D1'
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DESC_SIZE=16384
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+n= 10
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+n_stop = 12000
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+N = []
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+while(n < n_stop):
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+ N.append(n)
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+ n = int(n * 8 / 5)
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+print(N)
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plt.rc('font', size=18) # controls default text sizes
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plt.rc('axes', titlesize=18) # fontsize of the axes title
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@@ -39,7 +57,6 @@ plt.rc('legend', fontsize=14) # legend fontsize
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plt.rc('figure', titlesize=18) # fontsize of the figure title
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########################
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-N = []
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LSIPRM_gtime=[]
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LSIPRM_ptime=[]
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@@ -131,7 +148,6 @@ if(PLOT_CIRCUITORAM):
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with open(LF_CIRCUITORAM, 'r') as lfile:
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for line in lfile:
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values=line.split(',')
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- N.append(int(values[0]))
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CircuitORAM_gtime.append(float(values[1]))
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CircuitORAM_gtime_err.append(float(values[2]))
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CircuitORAM_ptime.append(float(values[3]))
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@@ -154,17 +170,18 @@ if(PLOT_LSIPRM):
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#LSIPRM_query_size = int(values[7])
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#LSIPRM_response_size = int(values[8])
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-with open(LF_LSOPRM, 'r') as lfile:
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- for line in lfile:
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- values=line.split(',')
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- LSOPRM_gtime.append(float(values[1]))
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- LSOPRM_gtime_err.append(float(values[2]))
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- LSOPRM_ptime.append(float(values[3]))
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- LSOPRM_ptime_err.append(float(values[4]))
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- LSOPRM_etime.append(float(values[5]))
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- LSOPRM_etime_err.append(float(values[6]))
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- LSOPRM_query_size.append(int(values[7]))
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- LSOPRM_response_size.append(int(values[8]))
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+if(PLOT_ZEROTRACE):
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+ with open(LF_LSOPRM, 'r') as lfile:
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+ for line in lfile:
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+ values=line.split(',')
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+ LSOPRM_gtime.append(float(values[1]))
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+ LSOPRM_gtime_err.append(float(values[2]))
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+ LSOPRM_ptime.append(float(values[3]))
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+ LSOPRM_ptime_err.append(float(values[4]))
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+ LSOPRM_etime.append(float(values[5]))
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+ LSOPRM_etime_err.append(float(values[6]))
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+ LSOPRM_query_size.append(int(values[7]))
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+ LSOPRM_response_size.append(int(values[8]))
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#SealPIR logs don't contain N
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with open(LF_SEALPIR, 'r') as lfile:
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@@ -279,7 +296,8 @@ if(PLOT_CIRCUITORAM):
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points2 = plt.plot(N, CircuitORAM_ptime, POINT_STYLES[c_ctr+1], label='CircuitORAM', color = str("C")+str(c_ctr+1))
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if(PLOT_LSIPRM):
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points3 = plt.plot(N, LSIPRM_ptime, POINT_STYLES[c_ctr+2], label='Linear Scan (inside PRM)', color = str("C")+str(c_ctr+2))
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-points4 = plt.plot(N, LSOPRM_ptime, POINT_STYLES[c_ctr+3], label='Linear Scan (outside PRM)', color = str("C")+str(c_ctr+3))
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+if(PLOT_ZEROTRACE):
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+ points4 = plt.plot(N, LSOPRM_ptime, POINT_STYLES[c_ctr+3], label='Linear Scan (outside PRM)', color = str("C")+str(c_ctr+3))
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points5 = plt.plot(N, XPIR_PQ_TIME, POINT_STYLES[c_ctr+4], label='XPIR', color = str("C")+str(c_ctr+4))
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points6 = plt.plot(N, SealPIR_ptime, POINT_STYLES[c_ctr+5], label='SealPIR', color = str("C")+str(c_ctr+5))
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points7 = plt.plot(N, SealPIR_ptime, POINT_STYLES[c_ctr+6], label='Trivial PIR', color = str("C")+str(c_ctr+6))
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@@ -291,7 +309,8 @@ if(PLOT_CIRCUITORAM):
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errbar2 = plt.errorbar(N, CircuitORAM_ptime, CircuitORAM_ptime_err, None, 'r', ls='none', mew=3)
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if(PLOT_LSIPRM):
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errbar3 = plt.errorbar(N, LSIPRM_ptime, LSIPRM_ptime_err, None, 'r', ls='none', mew=3)
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-errbar4 = plt.errorbar(N, LSOPRM_ptime, LSOPRM_ptime_err, None, 'r', ls='none', mew=3)
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+if(PLOT_ZEROTRACE):
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+ errbar4 = plt.errorbar(N, LSOPRM_ptime, LSOPRM_ptime_err, None, 'r', ls='none', mew=3)
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errbar5 = plt.errorbar(N, XPIR_PQ_TIME, XPIR_PQ_STD, None, 'r', ls='none', mew=3)
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errbar6 = plt.errorbar(N, SealPIR_ptime, SealPIR_ptime_err , None, 'r', ls='none', mew=3)
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@@ -302,7 +321,8 @@ if(PLOT_CIRCUITORAM):
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plt.setp(points2, 'mew', '3.0')
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if(PLOT_LSIPRM):
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plt.setp(points3, 'mew', '3.0')
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-plt.setp(points4, 'mew', '3.0')
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+if(PLOT_ZEROTRACE):
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+ plt.setp(points4, 'mew', '3.0')
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plt.setp(points5, 'mew', '3.0')
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plt.setp(points6, 'mew', '3.0')
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plt.setp(points7, 'mew', '0.0')
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@@ -338,7 +358,8 @@ if(PLOT_CIRCUITORAM):
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points2 = plt.plot(N, CircuitORAM_ctime, POINT_STYLES[c_ctr+1], label='CircuitORAM', color = str("C")+str(c_ctr+1))
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if(PLOT_LSIPRM):
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points3 = plt.plot(N, LSIPRM_ctime, POINT_STYLES[c_ctr+2], label='Linear Scan (inside PRM)', color = str("C")+str(c_ctr+2))
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-points4 = plt.plot(N, LSOPRM_gtime, POINT_STYLES[c_ctr+3], label='ZeroTrace', color = str("C")+str(c_ctr+3))
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+if(PLOT_ZEROTRACE):
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+ points4 = plt.plot(N, LSOPRM_gtime, POINT_STYLES[c_ctr+3], label='ZeroTrace', color = str("C")+str(c_ctr+3))
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points5 = plt.plot(N, XPIR_QE_TIME, POINT_STYLES[c_ctr+4], label='XPIR', color = str("C")+str(c_ctr+4))
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points6 = plt.plot(N, SealPIR_gtime, POINT_STYLES[c_ctr+5], label='SealPIR', color = str("C")+str(c_ctr+5))
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@@ -348,7 +369,8 @@ if(PLOT_CIRCUITORAM):
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errbar2 = plt.errorbar(N, CircuitORAM_ctime, CircuitORAM_ctime_err, None, 'r', ls='none', mew=3)
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if(PLOT_LSIPRM):
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errbar3 = plt.errorbar(N, LSIPRM_ctime, LSIPRM_ctime_err, None, 'r', ls='none', mew=3)
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-errbar4 = plt.errorbar(N, LSOPRM_gtime, LSOPRM_gtime_err, None, 'r', ls='none', mew=3)
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+if(PLOT_ZEROTRACE):
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+ errbar4 = plt.errorbar(N, LSOPRM_gtime, LSOPRM_gtime_err, None, 'r', ls='none', mew=3)
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errbar5 = plt.errorbar(N, XPIR_QE_TIME, XPIR_QE_STD, None, 'r', ls='none', mew=3)
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errbar6 = plt.errorbar(N, SealPIR_gtime, SealPIR_gtime_err , None, 'r', ls='none', mew=3)
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@@ -358,7 +380,8 @@ if(PLOT_CIRCUITORAM):
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plt.setp(points2, 'mew', '3.0')
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if(PLOT_LSIPRM):
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plt.setp(points3, 'mew', '3.0')
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-plt.setp(points4, 'mew', '3.0')
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+if(PLOT_ZEROTRACE):
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+ plt.setp(points4, 'mew', '3.0')
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plt.setp(points5, 'mew', '3.0')
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plt.setp(points6, 'mew', '3.0')
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#plt.setp(line1, 'linewidth', '2.0')
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@@ -394,7 +417,8 @@ if(PLOT_CIRCUITORAM):
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points2 = plt.plot(N, CircuitORAM_ctime, POINT_STYLES[c_ctr+1], label='CircuitORAM', color = str("C")+str(c_ctr+1))
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if(PLOT_LSIPRM):
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points3 = plt.plot(N, LSIPRM_ctime, POINT_STYLES[c_ctr+2], label='Linear Scan (inside PRM)', color = str("C")+str(c_ctr+2))
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-points4 = plt.plot(N, LSOPRM_etime, POINT_STYLES[c_ctr+3], label='ZeroTrace', color = str("C")+str(c_ctr+3))
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+if(PLOT_ZEROTRACE):
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+ points4 = plt.plot(N, LSOPRM_etime, POINT_STYLES[c_ctr+3], label='ZeroTrace', color = str("C")+str(c_ctr+3))
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points5 = plt.plot(N, XPIR_RE_TIME, POINT_STYLES[c_ctr+4], label='XPIR', color = str("C")+str(c_ctr+4))
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points6 = plt.plot(N, SealPIR_etime, POINT_STYLES[c_ctr+5], label='SealPIR', color = str("C")+str(c_ctr+5))
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@@ -404,7 +428,8 @@ if(PLOT_CIRCUITORAM):
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errbar2 = plt.errorbar(N, CircuitORAM_ctime, CircuitORAM_ctime_err, None, 'r', ls='none', mew=3)
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if(PLOT_LSIPRM):
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errbar3 = plt.errorbar(N, LSIPRM_ctime, LSIPRM_ctime_err, None, 'r', ls='none', mew=3)
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-errbar4 = plt.errorbar(N, LSOPRM_etime, LSOPRM_etime_err, None, 'r', ls='none', mew=3)
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+if(PLOT_ZEROTRACE):
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+ errbar4 = plt.errorbar(N, LSOPRM_etime, LSOPRM_etime_err, None, 'r', ls='none', mew=3)
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errbar5 = plt.errorbar(N, XPIR_RE_TIME, XPIR_RE_STD, None, 'r', ls='none', mew=3)
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errbar6 = plt.errorbar(N, SealPIR_etime, SealPIR_etime_err , None, 'r', ls='none', mew=3)
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@@ -414,7 +439,8 @@ if(PLOT_CIRCUITORAM):
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plt.setp(points2, 'mew', '3.0')
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if(PLOT_LSIPRM):
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plt.setp(points3, 'mew', '3.0')
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-plt.setp(points4, 'mew', '3.0')
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+if(PLOT_ZEROTRACE):
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+ plt.setp(points4, 'mew', '3.0')
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plt.setp(points5, 'mew', '3.0')
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plt.setp(points6, 'mew', '3.0')
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#plt.setp(line1, 'linewidth', '2.0')
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@@ -451,7 +477,8 @@ if(PLOT_CIRCUITORAM):
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points2 = plt.plot(N, CircuitORAM_ctime, POINT_STYLES[c_ctr+1], label='CircuitORAM', color = str("C")+str(c_ctr+1))
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if(PLOT_LSIPRM):
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points3 = plt.plot(N, LSIPRM_ctime, POINT_STYLES[c_ctr+2], label='Linear Scan (inside PRM)', color = str("C")+str(c_ctr+2))
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-points4 = plt.plot(N, LSOPRM_ctime, POINT_STYLES[c_ctr+3], label='ZeroTrace', color = str("C")+str(c_ctr+3))
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+if(PLOT_ZEROTRACE):
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+ points4 = plt.plot(N, LSOPRM_ctime, POINT_STYLES[c_ctr+3], label='ZeroTrace', color = str("C")+str(c_ctr+3))
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points5 = plt.plot(N, XPIR_ctime, POINT_STYLES[c_ctr+4], label='XPIR', color = str("C")+str(c_ctr+4))
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points6 = plt.plot(N, SealPIR_ctime, POINT_STYLES[c_ctr+5], label='SealPIR', color = str("C")+str(c_ctr+5))
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@@ -461,7 +488,8 @@ if(PLOT_CIRCUITORAM):
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errbar2 = plt.errorbar(N, CircuitORAM_ctime, CircuitORAM_ctime_err, None, 'r', ls='none', mew=3)
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if(PLOT_LSIPRM):
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errbar3 = plt.errorbar(N, LSIPRM_ctime, LSIPRM_ctime_err, None, 'r', ls='none', mew=3)
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-errbar4 = plt.errorbar(N, LSOPRM_ctime, LSOPRM_ctime_err, None, 'r', ls='none', mew=3)
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+if(PLOT_ZEROTRACE):
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+ errbar4 = plt.errorbar(N, LSOPRM_ctime, LSOPRM_ctime_err, None, 'r', ls='none', mew=3)
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errbar5 = plt.errorbar(N, XPIR_ctime, XPIR_ctime_err, None, 'r', ls='none', mew=3)
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errbar6 = plt.errorbar(N, SealPIR_ctime, SealPIR_ctime_err , None, 'r', ls='none', mew=3)
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@@ -471,7 +499,8 @@ if(PLOT_CIRCUITORAM):
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plt.setp(points2, 'mew', '3.0')
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if(PLOT_LSIPRM):
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plt.setp(points3, 'mew', '3.0')
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-plt.setp(points4, 'mew', '3.0')
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+if(PLOT_ZEROTRACE):
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+ plt.setp(points4, 'mew', '3.0')
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plt.setp(points5, 'mew', '3.0')
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plt.setp(points6, 'mew', '3.0')
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#plt.setp(line1, 'linewidth', '2.0')
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@@ -507,7 +536,8 @@ if(PLOT_CIRCUITORAM):
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points2 = plt.plot(N, CircuitORAM_time, POINT_STYLES[c_ctr+1], label='CircuitORAM', color = str("C")+str(c_ctr+1))
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if(PLOT_LSIPRM):
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points3 = plt.plot(N, LSIPRM_time, POINT_STYLES[c_ctr+2], label='Linear Scan (inside PRM)', color = str("C")+str(c_ctr+2))
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-points4 = plt.plot(N, LSOPRM_time, POINT_STYLES[c_ctr+3], label='Linear Scan (outside PRM)', color = str("C")+str(c_ctr+3))
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+if(PLOT_ZEROTRACE):
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+ points4 = plt.plot(N, LSOPRM_time, POINT_STYLES[c_ctr+3], label='Linear Scan (outside PRM)', color = str("C")+str(c_ctr+3))
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points5 = plt.plot(N, XPIR_time, POINT_STYLES[c_ctr+4], label='XPIR', color = str("C")+str(c_ctr+4))
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points6 = plt.plot(N, SealPIR_time, POINT_STYLES[c_ctr+5], label='SealPIR', color = str("C")+str(c_ctr+5))
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#points7 = plt.plot(N, SealPIR_D1_time, POINT_STYLES[c_ctr+6], label='SealPIR D=1', color = str("C")+str(c_ctr+5))
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@@ -518,7 +548,8 @@ if(PLOT_CIRCUITORAM):
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errbar2 = plt.errorbar(N, CircuitORAM_time, CircuitORAM_time_err, None, 'r', ls='none', mew=3)
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if(PLOT_LSIPRM):
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errbar3 = plt.errorbar(N, LSIPRM_time, LSIPRM_time_err, None, 'r', ls='none', mew=3)
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-errbar4 = plt.errorbar(N, LSOPRM_time, LSOPRM_time_err, None, 'r', ls='none', mew=3)
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+if(PLOT_ZEROTRACE):
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+ errbar4 = plt.errorbar(N, LSOPRM_time, LSOPRM_time_err, None, 'r', ls='none', mew=3)
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errbar5 = plt.errorbar(N, XPIR_time, XPIR_time_err, None, 'r', ls='none', mew=3)
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errbar6 = plt.errorbar(N, SealPIR_time, SealPIR_time_err , None, 'r', ls='none', mew=3)
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@@ -528,7 +559,8 @@ if(PLOT_CIRCUITORAM):
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plt.setp(points2, 'mew', '3.0')
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if(PLOT_LSIPRM):
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plt.setp(points3, 'mew', '3.0')
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-plt.setp(points4, 'mew', '3.0')
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+if(PLOT_ZEROTRACE):
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+ plt.setp(points4, 'mew', '3.0')
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plt.setp(points5, 'mew', '3.0')
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plt.setp(points6, 'mew', '3.0')
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#plt.setp(points7, 'mew', '3.0')
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@@ -561,11 +593,14 @@ plt.xscale('log')
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c_ctr=0
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-points4 = plt.plot(N, LSOPRM_query_size, POINT_STYLES[c_ctr+3], label='ZeroTrace', color = str("C")+str(c_ctr+3))
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+if(PLOT_ZEROTRACE):
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+ points4 = plt.plot(N, LSOPRM_query_size, POINT_STYLES[c_ctr+3], label='ZeroTrace', color = str("C")+str(c_ctr+3))
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points5 = plt.plot(N, XPIR_REQUEST_SIZE, POINT_STYLES[c_ctr+4], label='XPIR', color = str("C")+str(c_ctr+4))
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points6 = plt.plot(N, SealPIR_query_size, POINT_STYLES[c_ctr+5], label='SealPIR', color = str("C")+str(c_ctr+5))
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-plt.setp(points4, 'mew', '3.0')
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+
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+if(PLOT_ZEROTRACE):
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+ plt.setp(points4, 'mew', '3.0')
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plt.setp(points5, 'mew', '3.0')
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plt.setp(points6, 'mew', '3.0')
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@@ -595,12 +630,15 @@ c_ctr=0
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TrivialPIR_size = np.multiply(N, DESC_SIZE)
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-points4 = plt.plot(N, LSOPRM_response_size, POINT_STYLES[c_ctr+3], label='ZeroTrace', color = str("C")+str(c_ctr+3))
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+if(PLOT_ZEROTRACE):
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+ points4 = plt.plot(N, LSOPRM_response_size, POINT_STYLES[c_ctr+3], label='ZeroTrace', color = str("C")+str(c_ctr+3))
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points5 = plt.plot(N, XPIR_RESPONSE_SIZE, POINT_STYLES[c_ctr+4], label='XPIR', color = str("C")+str(c_ctr+4))
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points6 = plt.plot(N, SealPIR_response_size, POINT_STYLES[c_ctr+5], label='SealPIR', color = str("C")+str(c_ctr+5))
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points7 = plt.plot(N, TrivialPIR_size, POINT_STYLES[c_ctr+6], label='Trivial PIR', color = str("C")+str(c_ctr+6))
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-plt.setp(points4, 'mew', '3.0')
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+
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+if(PLOT_ZEROTRACE):
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+ plt.setp(points4, 'mew', '3.0')
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plt.setp(points5, 'mew', '3.0')
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plt.setp(points6, 'mew', '3.0')
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plt.setp(points7, 'mew', '3.0')
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@@ -633,12 +671,16 @@ LSOPRM_bw = np.add(LSOPRM_query_size, LSOPRM_response_size)
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XPIR_bw = np.add(XPIR_REQUEST_SIZE, XPIR_RESPONSE_SIZE)
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SealPIR_bw = np.add(SealPIR_query_size, SealPIR_response_size)
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-points4 = plt.plot(N, LSOPRM_bw, POINT_STYLES[c_ctr+3], label='ZeroTrace', color = str("C")+str(c_ctr+3))
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+
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+if(PLOT_ZEROTRACE):
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+ points4 = plt.plot(N, LSOPRM_bw, POINT_STYLES[c_ctr+3], label='ZeroTrace', color = str("C")+str(c_ctr+3))
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points5 = plt.plot(N, XPIR_bw, POINT_STYLES[c_ctr+4], label='XPIR', color = str("C")+str(c_ctr+4))
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points6 = plt.plot(N, SealPIR_bw, POINT_STYLES[c_ctr+5], label='SealPIR', color = str("C")+str(c_ctr+5))
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points7 = plt.plot(N, TrivialPIR_size, POINT_STYLES[c_ctr+6], label='Trivial PIR', color = str("C")+str(c_ctr+6))
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-plt.setp(points4, 'mew', '3.0')
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+
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+if(PLOT_ZEROTRACE):
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+ plt.setp(points4, 'mew', '3.0')
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plt.setp(points5, 'mew', '3.0')
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plt.setp(points6, 'mew', '3.0')
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plt.setp(points7, 'mew', '3.0')
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