1 | #!/usr/bin/env python3 |
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2 | #-*- mode: Python;-*- |
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3 | |
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4 | import sys |
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5 | import os |
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6 | import time |
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7 | import random |
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8 | import tempfile |
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9 | import argparse |
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10 | import socket |
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11 | import json |
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12 | try: |
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13 | import requests |
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14 | except: |
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15 | sys.stderr.write('ERROR: Could not import requests module. Ensure it is installed.\n') |
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16 | sys.stderr.write(' Under Debian, the package name is "python3-requests"\n.') |
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17 | sys.exit(1) |
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18 | |
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19 | VERSION = "{DEVELOPMENT}" |
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20 | if VERSION == "{DEVELOPMENT}": |
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21 | script_dir = '.' |
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22 | try: |
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23 | script_dir = os.path.dirname(os.path.realpath(__file__)) |
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24 | except: |
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25 | try: |
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26 | script_dir = os.path.dirname(os.path.abspath(sys.argv[0])) |
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27 | except: |
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28 | pass |
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29 | sys.path.append("%s/../lib" % script_dir) |
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30 | |
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31 | from nanownlib import * |
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32 | import nanownlib.storage |
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33 | |
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34 | parser = argparse.ArgumentParser( |
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35 | description="") |
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36 | parser.add_argument('-c', dest='cases', type=str, default='{"short":10000,"long":13000}', |
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37 | help='JSON representation of echo timing cases.') |
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38 | parser.add_argument('--no-tcpts', action='store_true', help='Disbale TCP timestamp profiling') |
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39 | parser.add_argument('session_name', default=None, |
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40 | help='Name for the sampler session (used in output filenames)') |
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41 | parser.add_argument('sample_count', type=int, default=None, |
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42 | help='Number of samples to collect') |
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43 | parser.add_argument('host', default=None, |
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44 | help='IP address or host name of server') |
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45 | parser.add_argument('port', nargs='?', type=int, default=80, |
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46 | help='TCP port number of HTTP service (default: 80)') |
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47 | options = parser.parse_args() |
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48 | |
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49 | |
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50 | session_name = options.session_name |
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51 | num_samples=options.sample_count |
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52 | hostname = options.host |
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53 | port = options.port |
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54 | protocol = 'http' |
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55 | |
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56 | cases = json.loads(options.cases) |
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57 | |
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58 | def extractReportedRuntime(headers, body): |
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59 | if body.startswith("waited: "): |
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60 | return int(body.split("waited: ")[1], 10) |
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61 | |
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62 | |
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63 | def sendRequest(data=None): |
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64 | method = 'GET' |
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65 | path = '/data/clamav-audit-results.txt?t=' + data |
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66 | url = "%s://%s:%d%s" % (protocol,hostname,port,path) |
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67 | headers = {} |
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68 | body = (b'') |
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69 | req = requests.Request('GET', url).prepare() |
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70 | |
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71 | retry = True |
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72 | while retry: |
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73 | try: |
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74 | session = requests.Session() |
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75 | response = session.send(req) |
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76 | #print(repr(response.raw._original_response.local_address)) |
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77 | reported = extractReportedRuntime(response.headers, response.text) |
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78 | retry = False |
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79 | except Exception as e: |
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80 | sys.stderr.write("ERROR: HTTP request problem: %s\n" % repr(e)) |
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81 | time.sleep(1.0) |
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82 | sys.stderr.write("ERROR: retrying...\n") |
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83 | |
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84 | return {'userspace_rtt':response.elapsed.microseconds*1000, |
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85 | 'reported':reported, |
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86 | 'local_port':response.raw._original_response.local_address[1]} |
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87 | |
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88 | |
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89 | def fetch(probedata, data): |
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90 | # http://docs.python-requests.org/en/latest/api/#requests.Response |
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91 | result = sendRequest("%d" % data) |
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92 | result.update(probedata) |
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93 | |
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94 | return result |
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95 | |
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96 | |
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97 | setCPUAffinity() |
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98 | setTCPTimestamps() |
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99 | host_ip = socket.gethostbyname(hostname) #XXX: what about multiple A records? |
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100 | |
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101 | meta = {'tcpts_mean':None,'tcpts_stddev':None,'tcpts_slopes':None} |
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102 | if not options.no_tcpts: |
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103 | sys.stderr.write("INFO: Probing target for TCP timestamp precision...\n") |
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104 | sniffer_fp = tempfile.NamedTemporaryFile('w+t') |
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105 | sniffer = startSniffer(host_ip, port, sniffer_fp.name) |
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106 | time.sleep(1.0) |
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107 | ports = runTimestampProbes(host_ip, port, hostname, 12) |
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108 | time.sleep(1.0) |
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109 | stopSniffer(sniffer) |
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110 | sniffer_fp.seek(0) |
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111 | mean,stddev,slopes = computeTimestampPrecision(sniffer_fp, ports) |
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112 | meta = {'tcpts_mean':mean,'tcpts_stddev':stddev,'tcpts_slopes':json.dumps(slopes)} |
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113 | |
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114 | if meta['tcpts_mean'] == None: |
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115 | sys.stderr.write("INFO: TCP timestamps not supported.\n") |
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116 | elif meta['tcpts_stddev'] == None: |
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117 | sys.stderr.write("INFO: Not enough TCP timestamp samples.\n") |
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118 | elif meta['tcpts_stddev']/meta['tcpts_mean'] > 0.05: |
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119 | sys.stderr.write("INFO: TCP timestamp precision is inconsistent.\n") |
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120 | sys.stderr.write("INFO: mean=%(tcpts_mean)f,stddev=%(tcpts_stddev)f,samples=%(tcpts_slopes)s\n" |
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121 | % meta) |
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122 | else: |
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123 | sys.stderr.write("INFO: Estimated TCP timestamp precision: %f (stddev: %f, %f%%)\n" |
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124 | % (meta['tcpts_mean'], meta['tcpts_stddev'], 100*meta['tcpts_stddev']/meta['tcpts_mean'])) |
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125 | |
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126 | |
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127 | sniffer_fp = tempfile.NamedTemporaryFile('w+t') |
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128 | db_file = "%s.db" % session_name |
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129 | |
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130 | sniffer = startSniffer(host_ip, port, sniffer_fp.name) |
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131 | db = nanownlib.storage.db(db_file) |
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132 | db.addMeta(meta) |
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133 | time.sleep(0.5) # ensure sniffer is fully ready and our process is migrated |
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134 | |
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135 | sid = 0 |
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136 | sample_types = [('train',int(num_samples*1/5)), |
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137 | ('train_null',int(num_samples*2/5)), |
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138 | ('test',int(num_samples*2/5)), |
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139 | ('test_null',0)] |
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140 | report_interval = 20 |
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141 | start = time.time() |
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142 | next_report = start+report_interval |
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143 | for st,count in sample_types: |
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144 | if sniffer.poll() != None: |
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145 | sys.stderr.write('ERROR: Sniffer quit, sender exiting...\n') |
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146 | break |
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147 | |
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148 | for k in range(0,count): |
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149 | sample_order = list(cases.items()) |
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150 | random.shuffle(sample_order) |
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151 | if st.endswith('null'): |
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152 | for i in range(1,len(sample_order)): |
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153 | sample_order[i] = (sample_order[i][0],sample_order[0][1]) |
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154 | random.shuffle(sample_order) |
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155 | #print('after', sample_order) |
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156 | |
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157 | results = [] |
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158 | now = int(time.time()*1000000000) |
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159 | for i in range(len(sample_order)): |
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160 | results.append(fetch({'sample':sid, 'test_case':sample_order[i][0], |
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161 | 'type':st, 'tc_order':i, 'time_of_day':now}, |
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162 | sample_order[i][1])) |
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163 | |
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164 | #print(results) |
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165 | db.addProbes(results) |
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166 | db.conn.commit() |
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167 | sid += 1 |
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168 | |
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169 | if (time.time() > next_report): |
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170 | #s = time.time() |
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171 | reportProgress(db, sample_types, start) |
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172 | #print("reportProgress time:", time.time()-s) |
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173 | next_report += report_interval |
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174 | |
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175 | print("probes complete in %f" % (time.time()-start)) |
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176 | time.sleep(2.0) # Give sniffer a chance to collect remaining packets |
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177 | stopSniffer(sniffer) |
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178 | |
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179 | start = time.time() |
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180 | associatePackets(sniffer_fp, db) |
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181 | sniffer_fp.close() |
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182 | end = time.time() |
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183 | print("associate time:", end-start) |
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184 | |
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185 | start = time.time() |
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186 | num_probes = analyzeProbes(db) |
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187 | end = time.time() |
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188 | print("analyzed %d probes' packets in: %f" % (num_probes, end-start)) |
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