~bernanet84/bordergateway/test

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<?xml version="1.0" encoding="ISO-8859-1" ?>

<!-- This program is free software; you can redistribute it and/or      -->
<!-- modify it under the terms of the GNU General Public License as     -->
<!-- published by the Free Software Foundation; either version 2 of the -->
<!-- License, or (at your option) any later version.                    -->
<!--                                                                    -->
<!-- This program is distributed in the hope that it will be useful,    -->
<!-- but WITHOUT ANY WARRANTY; without even the implied warranty of     -->
<!-- MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the      -->
<!-- GNU General Public License for more details.                       -->
<!--                                                                    -->
<!-- You should have received a copy of the GNU General Public License  -->
<!-- along with this program; if not, write to the                      -->
<!-- Free Software Foundation, Inc.,                                    -->
<!-- 59 Temple Place, Suite 330, Boston, MA  02111-1307 USA             -->
<!--                                                                    -->
<!-- Author : David Verbeiren from Intel Corporation - July 2007        -->
<!--          Xavier Simonart from Intel Corporation - July 2007        -->
<!--          Philippe Lecluse from Intel Corporation - July 2007       -->
<!--                                                                    -->

<config>
  <DisplayFailureStep>1</DisplayFailureStep>
  <DisplayFailureStepHistograms>0</DisplayFailureStepHistograms>
  <DisplayConstantHistograms>0</DisplayConstantHistograms>
  <DisplayRatio>1</DisplayRatio>
  <Percentile>
    <Value>50</Value>
    <Value>90</Value>
    <Value>95</Value>
    <Value>99</Value>
  </Percentile>
  <size>
    <x>1200</x>
    <y>400</y>
  </size>

  <report_intro>  <!-- Default - Can be overwritten by file specified through doReport.pl command line -->
    <![CDATA[
      <p>This report shows the result of a benchmark run performed by &quot;IMS Bench SIPp&quot;, an
      implementation of the <b>IMS/NGN Performance Benchmark</b> suite, <b>ETSI TS 186.008</b>.</p>
    ]]>
  </report_intro>

  <summary_table_intro>
    <![CDATA[
      <p>The following table shows the average of the key measurements for each step of the test.
      Each steps is characterized by the requested load, the effective load, the global IHS (total of
      all Inadequately handled scenarios for this step divided by number of Session Attempts for this step) 
      the scenario IHS (number of inadequately handled scenarios for this step divided by the number of 
      scenario attempts for this step), the CPU utilization and the available Memory on the SUT.
      The available Memory is expressed in MegaBytes, and the requested and effective loads in Scenarios 
      Attempts Per Seconds (SAPS).</p>
      <p>Note that the IHS percentages represented in this table are the number of failures for a step divided
      by the number of scenario attempts for this step, and so is not the average of (IHS per seconds)</p>
    ]]>
  </summary_table_intro>

  <measurements_intro>
    <![CDATA[
      <br><p>The following chapters show details on different measurement, like delay between two messages,
      response time or number of messages per seconds.
      <br>Each measurement can be represented in one of the four following forms.</p>
      <ol>
        <li>Evolution in function of the time. On such graphs, the raw information is plotted, like number
        of messages per seconds, or response time of each scenario. This graph is useful in giving for
        instance a good idea on the distribution of response times, and it's evolution over the time.</li>
        <li>Evolution (mean) in function of the time. While previous graph gives a good indication, it may
        sometimes be easier to see the evolution of the mean of the measurement over a second in function
        of the time.</li>
        <li>Histogram. This graph shows the histogram of the measurement, so how many times each value of
        the measurement occured.</li>
        <li>Probability. This graph gives the probability of the measurement to be higher than a certain value.
        This graph can be used to determine percentile for instances.</li>
      </ol>
      <p>For some graphs, a cubic Bezier curve is plotted as well.</p>
    ]]>
  </measurements_intro>

  <measure>
    <Title>Scenario Attempts Per Second</Title>
    <Description>This graph represents the number of scenario per seconds generated by the test system. For each step, the generation was based on a Poisson.</Description>
    <Source>SAPS</Source>
    <AxeX>Test Execution Time [sec]</AxeX>
    <AxeY>Scenarios per second</AxeY>
    <UnitX>1000</UnitX>
    <LegendY>SCENARIO/sec</LegendY>
    <InSummary>Effective Load</InSummary>
    <MeanBasedGraph>
      <bezier>1</bezier>
    </MeanBasedGraph>
    <DistrBasedGraph>
      <Description>This graph shows the Histogram of the SAPS for each step. It should follow Poisson distributions.
      </Description>
      <Theoritical>Poisson</Theoritical>
    </DistrBasedGraph>
    <ProbaBasedGraph>
      <Description>This graph shows the probability distribution of the SAPS for each step. It shows the probability that the effective load is higher than x.
      </Description>
      <Theoritical>Poisson</Theoritical>
    </ProbaBasedGraph>
  </measure>
  <measure>
    <Title>SUT CPU %</Title>
    <Description>This graph represents the CPU of the system under test (SUT).</Description>
    <AxeX>Test Execution Time [sec]</AxeX>
    <UnitX>1000</UnitX>
    <Source>CPU</Source>
    <AxeY>CPU %</AxeY>
    <LegendY>CPU %</LegendY>
    <InSummary>CPU %</InSummary>
    <TimeBasedGraph>
      <bezier>1</bezier>
      <Source>SAPS</Source>
      <AxeY>SAPS</AxeY>
      <LegendY>SAPS</LegendY>
    </TimeBasedGraph>
  </measure>
  <measure>
    <Title>SUT Available Memory [MB]</Title>
    <Description>This graph represents the Available memory on the system under test, in MBytes (SUT).</Description>
    <AxeX>Test Execution Time [sec]</AxeX>
    <UnitX>1000</UnitX>
    <UnitY>1000</UnitY>
    <Source>MEM</Source>
    <AxeY>SUT Memory [MB]</AxeY>
    <LegendY>SUT Available Memory</LegendY>
    <InSummary>MEM</InSummary>
    <TimeBasedGraph>
      <bezier>1</bezier>
      <Source>SAPS</Source>
      <AxeY>SAPS</AxeY>
      <LegendY>SAPS</LegendY>
    </TimeBasedGraph>
  </measure>
  <measure>
    <Title>ALL SIPP CPU %</Title>
    <Description>This graph represents the CPU of SIPP on ALL Test Machines</Description>
    <AxeX>Test Execution Time [sec]</AxeX>
    <UnitX>1000</UnitX>
    <Source>ALL-SIPP-CPU</Source>
    <AxeY>SIPP CPU %</AxeY>
    <LegendY>ALL SIPP CPU %</LegendY>
    <InSummary>ALL SIPP CPU %</InSummary>
    <TimeBasedGraph>
      <bezier>1</bezier>
      <Source>SAPS</Source>
      <AxeY>SAPS</AxeY>
      <LegendY>SAPS</LegendY>
    </TimeBasedGraph>
  </measure>
  <measure>
    <Title>ALL SIPP Free Memory [MB] </Title>
    <Description>This graph represents the free memory of SIPP on ALL Test Machines, in MBytes</Description>
    <AxeX>Test Execution Time [sec]</AxeX>
    <UnitX>1000</UnitX>
    <Source>ALL-SIPP-MEM</Source>
    <AxeY>SIPP Memory [MB]</AxeY>
    <UnitY>1000</UnitY>
    <LegendY>SIPP available Memory </LegendY>
    <InSummary>SIPP MEM </InSummary>
    <TimeBasedGraph>
      <bezier>1</bezier>
      <Source>SAPS</Source>
      <AxeY>SAPS</AxeY>
      <LegendY>SAPS</LegendY>
    </TimeBasedGraph>
  </measure>
  <measure>
    <Title>Inadequately handled scenario Percentage</Title>
    <Description>This graph represents the percentage of inadequately handled scenarios.</Description>
    <AxeX>Test Execution Time [sec]</AxeX>
    <UnitX>1000</UnitX>
    <Source>IHS</Source>
    <AxeY>global IHS%</AxeY>
    <LegendY>global IHS %</LegendY>
    <InSummary>global IHS %</InSummary>
    <TimeBasedGraph>
      <Source>SAPS</Source>
      <AxeY>SAPS</AxeY>
      <bezier>1</bezier>
      <LegendY>SAPS</LegendY>
    </TimeBasedGraph>
  </measure>
  <measure>
    <Ignore></Ignore>
    <Title>Delay Between Consecutive Scenarios</Title>
    <Description>This graph represents the delay of Consecutive Scenarios (all scenarios included) sent by the Test system.</Description>
    <Source>DELAY-SAPS</Source>
    <AxeX>Test Execution Time [sec]</AxeX>
    <AxeY>Delay [milliseconds]</AxeY>
    <UnitX>1000</UnitX>
    <LegendY>Delay</LegendY>
    <TimeBasedGraph>
      <Source>SAPS</Source>
      <AxeY>SAPS</AxeY>
      <LegendY>SAPS</LegendY>
      <bezier>1</bezier>
    </TimeBasedGraph>
    <MeanBasedGraph>
      <Source>SAPS</Source>
      <AxeY>SAPS</AxeY>
      <LegendY>SAPS</LegendY>
      <bezier>1</bezier>
    </MeanBasedGraph>
    <DistrBasedGraph>
      <Description>This graph shows the Histogram of the delays between two scenarios for each step. It should follow a negative exponential.
      </Description>
      <Theoritical>Expo</Theoritical>
    </DistrBasedGraph>
  </measure>
  <measure>
    <Title>Scenario retransmissions - all scenarios</Title>
    <Description>This graph represents the number of retransmissions per seconds for all scenarios.</Description>
    <Source>RETRANSMIT</Source>
    <AxeX>Test Execution Time [sec]</AxeX>
    <AxeY>Number of ReTransmit []</AxeY>
    <UnitX>1000</UnitX>
    <LegendY>Nb of Retransmit</LegendY>
    <TimeBasedGraph>
      <Source>SAPS</Source>
      <AxeY>SAPS</AxeY>
      <LegendY>SAPS</LegendY>
      <bezier>1</bezier>
    </TimeBasedGraph>
  </measure>

  <use_case name="Registration">
    <measure>
      <Title>PX_TRT-REG1: Time of the first register transaction</Title>
      <Description>This graph represents the time of the first register transaction in the registration use_cases i.e. the time between the REGISTER and the 401 Unautorized for all scenarios in the Registration use_case.</Description>
      <Source>PX_TRT-REG1</Source>
      <AxeX>Test Execution Time [sec]</AxeX>
      <AxeY>Delay [milliseconds]</AxeY>
      <UnitX>1000</UnitX>
      <UnitY>1000</UnitY>
      <DistAndHistoUnit>100</DistAndHistoUnit>
      <Logscale>0.1:*</Logscale>
      <LegendY>Delay</LegendY>
      <MeanBasedGraph>
        <Source>SAPS</Source>
        <AxeY>SAPS</AxeY>
        <LegendY>SAPS</LegendY>
        <bezier>1</bezier>
      </MeanBasedGraph>
      <DistrBasedGraph>
      </DistrBasedGraph>
    </measure>
    <measure>
      <Title>PX_TRT-REG2: Time of the second register transaction</Title>
      <Description>This graph represents the time of the second register transaction in the registration use_cases, i.e. the delay between the second REGISTER and the 200 OK.</Description>
      <Source>PX_TRT-REG2</Source>
      <AxeX>Test Execution Time [sec]</AxeX>
      <AxeY>Delay [milliseconds]</AxeY>
      <UnitX>1000</UnitX>
      <UnitY>1000</UnitY>       
      <DistAndHistoUnit>100</DistAndHistoUnit>
      <Logscale>0.1:*</Logscale>
      <LegendY>Delay</LegendY>
      <MeanBasedGraph>
        <Source>SAPS</Source>
        <AxeY>SAPS</AxeY>
        <LegendY>SAPS</LegendY>
        <bezier>1</bezier>
      </MeanBasedGraph>
      <DistrBasedGraph></DistrBasedGraph>
    </measure>
    <scenario name="ims_reg">
      <measure>
        <Title>Scenario retransmissions</Title>
        <Description>This graph represents the number of retransmissions per seconds for this scenario.</Description>
        <Source>RETRANSMIT</Source>
        <AxeX>Test Execution Time [sec]</AxeX>
        <AxeY>DNumber of ReTransmit []</AxeY>
        <UnitX>1000</UnitX>
        <LegendY>Nb of Retransmit</LegendY>
        <TimeBasedGraph>
          <Source>SAPS</Source>
          <AxeY>SAPS</AxeY>
          <LegendY>SAPS</LegendY>
          <bezier>1</bezier>
        </TimeBasedGraph>
      </measure>
      <measure>
        <Title>PX_TRT-REG1: Time of the first register transaction</Title>
        <Description>This graph represents the time of the first register transaction i.e. the time between the REGISTER and the 401 Unautorized.</Description>
        <Source>PX_TRT-REG1</Source>
        <AxeX>Test Execution Time [sec]</AxeX>
        <AxeY>Delay [milliseconds]</AxeY>
        <UnitX>1000</UnitX>
        <UnitY>1000</UnitY>
        <DistAndHistoUnit>100</DistAndHistoUnit>
        <Logscale>0.1:*</Logscale>
        <LegendY>Delay</LegendY>
        <MeanBasedGraph>
          <Source>SAPS</Source>
          <AxeY>SAPS</AxeY>
          <LegendY>SAPS</LegendY>
          <bezier>1</bezier>
        </MeanBasedGraph>
        <DistrBasedGraph>
        </DistrBasedGraph>
      </measure>
    </scenario>
    <scenario name="ims_dereg">
      <measure>
        <Title>PX_TRT-REG1: Time of the first register transaction</Title>
        <Description>This graph represents the time of the first register transaction i.e. the time between the REGISTER and the 401 Unautorized.</Description>
        <Source>PX_TRT-REG1</Source>
        <AxeX>Test Execution Time [sec]</AxeX>
        <AxeY>Delay [milliseconds]</AxeY>
        <UnitX>1000</UnitX>
        <UnitY>1000</UnitY>
        <DistAndHistoUnit>100</DistAndHistoUnit>
        <Logscale>0.1:*</Logscale>
        <LegendY>Delay</LegendY>
        <MeanBasedGraph>
          <Source>SAPS</Source>
          <AxeY>SAPS</AxeY>
          <LegendY>SAPS</LegendY>
          <bezier>1</bezier>
        </MeanBasedGraph>
        <DistrBasedGraph>
        </DistrBasedGraph>
      </measure>
    </scenario>
    <scenario name="ims_rereg">
      <measure>
        <Title>Time of the re-register transaction</Title>
        <Description>This graph represents the time of re-register transaction i.e. the time between the REGISTER and the 200 OK.</Description>
        <Source>PX_TRT-REG4</Source>
        <AxeX>Test Execution Time [sec]</AxeX>
        <AxeY>Delay [milliseconds]</AxeY>
        <UnitX>1000</UnitX>
        <UnitY>1000</UnitY>
        <DistAndHistoUnit>100</DistAndHistoUnit>
        <Logscale>0.1:*</Logscale>
        <LegendY>Delay</LegendY>
        <MeanBasedGraph>
          <Source>SAPS</Source>
          <AxeY>SAPS</AxeY>
          <LegendY>SAPS</LegendY>
          <bezier>1</bezier>
        </MeanBasedGraph>
        <DistrBasedGraph>
        </DistrBasedGraph>
      </measure>
    </scenario>
  </use_case>
  <use_case name="Calling">
    <measure>
      <Title>PX_TRT-SES1: Session Setup Time</Title>
      <Description>This graph represents the delay between the Caller sending INVITE and callee receiving ACK.</Description>
      <Source>PX_TRT-SES1</Source>
      <AxeX>Test Execution Time [sec]</AxeX>
      <AxeY>Delay [milliseconds]</AxeY>
      <UnitX>1000</UnitX>
      <UnitY>1000</UnitY>
      <DistAndHistoUnit>100</DistAndHistoUnit>
      <Logscale>0.1:*</Logscale>
      <LegendY>Delay</LegendY>
      <MeanBasedGraph>
        <Source>SAPS</Source>
        <AxeY>SAPS</AxeY>
        <LegendY>SAPS</LegendY>
        <bezier>1</bezier>
      </MeanBasedGraph>
      <DistrBasedGraph>
      </DistrBasedGraph>
    </measure>
    <measure>
      <Title>PX_TRT-SES2: Session Initiation transversal time</Title>
      <Description>This graph represents the delay between the caller sending INVITE and the callee receiving INVITE.</Description>
      <Source>PX_TRT-SES2</Source>
      <AxeX>Test Execution Time [sec]</AxeX>
      <AxeY>Delay [milliseconds]</AxeY>
      <UnitX>1000</UnitX>
      <UnitY>1000</UnitY>
      <DistAndHistoUnit>100</DistAndHistoUnit>
      <Logscale>0.01:*</Logscale>
      <LegendY>Delay</LegendY>
      <MeanBasedGraph>
        <Source>SAPS</Source>
        <AxeY>SAPS</AxeY>
        <LegendY>SAPS</LegendY>
        <bezier>1</bezier>
      </MeanBasedGraph>
      <DistrBasedGraph>
      </DistrBasedGraph>
    </measure>
    <measure>
      <Title>PX_TRT-REL1: Delay Between BYE and 200 OK </Title>
      <Description>This graph represents the delay between the first BYE and the corresponding 200 OK.</Description>
      <Source>PX_TRT-REL1</Source>
      <AxeX>Test Execution Time [sec]</AxeX>
      <AxeY>Delay [milliseconds]</AxeY>
      <UnitX>1000</UnitX>
      <UnitY>1000</UnitY>
      <DistAndHistoUnit>100</DistAndHistoUnit>
      <Logscale>0.1:*</Logscale>
      <LegendY>Delay</LegendY>
      <MeanBasedGraph>
        <Source>SAPS</Source>
        <AxeY>SAPS</AxeY>
        <LegendY>SAPS</LegendY>
        <bezier>1</bezier>
      </MeanBasedGraph>
      <DistrBasedGraph>
      </DistrBasedGraph>
    </measure>
    <measure>
      <Title>PX_TRT-SES3: INVITE and re-INVITE cost</Title>
      <Description>This graph represents the caller sending first INVITE and callee receiving second ACK.</Description>
      <Source>PX_TRT-SES3</Source>
      <AxeX>Test Execution Time [sec]</AxeX>
      <AxeY>Delay [milliseconds]</AxeY>
      <UnitX>1000</UnitX>
      <UnitY>1000</UnitY>
      <DistAndHistoUnit>100</DistAndHistoUnit>
      <Logscale>0.1:*</Logscale>
      <LegendY>Delay</LegendY>
      <MeanBasedGraph>
        <Source>SAPS</Source>
        <AxeY>SAPS</AxeY>
        <LegendY>SAPS</LegendY>
        <bezier>1</bezier>
      </MeanBasedGraph>
      <DistrBasedGraph>
      </DistrBasedGraph>
    </measure>
    <scenario name="ims_uac">
      <measure>
        <Title>Scenario retransmissions</Title>
        <Description>This graph represents the number of retransmissions per seconds for this scenario.</Description>
        <Source>RETRANSMIT</Source>
        <AxeX>Test Execution Time [sec]</AxeX>
        <AxeY>Number of ReTransmit []</AxeY>
        <UnitX>1000</UnitX>
        <LegendY>Nb of Retransmit</LegendY>
        <TimeBasedGraph>
          <Source>SAPS</Source>
          <AxeY>SAPS</AxeY>
          <LegendY>SAPS</LegendY>
          <bezier>1</bezier>
        </TimeBasedGraph>
      </measure>
      <measure>
        <Title>Inadequately handled scenario Percentage</Title>
        <Description>This graph represents the percentage of Inadequately handled scenarios for the uac.</Description>
        <AxeX>Test Execution Time [sec]</AxeX>
        <UnitX>1000</UnitX>
        <Source>IHS</Source>
        <AxeY>uac IHS%</AxeY>
        <LegendY>uac IHS %</LegendY>
        <TimeBasedGraph>
          <Source>SAPS</Source>
          <AxeY>SAPS</AxeY>
          <bezier>1</bezier>
          <LegendY>SAPS</LegendY>
        </TimeBasedGraph>
      </measure>
      
    </scenario>
  </use_case>
  <use_case name="Messaging">
    <measure>
      <Title>PX_TRT-PMM1: Message Transmission time</Title>
      <Description>This graph represents the delay between the message and the 200 OK.</Description>
      <Source>PX_TRT-PMM1</Source>
      <AxeX>Test Execution Time [sec]</AxeX>
      <AxeY>Delay [milliseconds]</AxeY>
      <UnitX>1000</UnitX>
      <UnitY>1000</UnitY>
      <DistAndHistoUnit>100</DistAndHistoUnit>
      <LegendY>Delay</LegendY>
      <Logscale>0.1:*</Logscale>
      <TimeBasedGraph>
        <Source>SAPS</Source>
        <AxeY>SAPS</AxeY>
        <bezier>1</bezier>
        <LegendY>SAPS</LegendY>
      </TimeBasedGraph>
      <MeanBasedGraph>
        <Source>SAPS</Source>
        <AxeY>SAPS</AxeY>
        <bezier>1</bezier>
        <LegendY>SAPS</LegendY>
      </MeanBasedGraph>
      <DistrBasedGraph>
      </DistrBasedGraph>
    </measure>
    <measure>
      <Title>PX_TRT-PMM2: Message Transmission time (error case)</Title>
      <Description>This graph represents the delay between the message and the 404 Not Found.</Description>
      <Source>PX_TRT-PMM2</Source>
      <AxeX>Test Execution Time [sec]</AxeX>
      <AxeY>Delay [milliseconds]</AxeY>
      <UnitX>1000</UnitX>
      <UnitY>1000</UnitY>
      <DistAndHistoUnit>100</DistAndHistoUnit>
      <Logscale>0.1:*</Logscale>
      <LegendY>Delay</LegendY>
      <TimeBasedGraph>
        <Source>SAPS</Source>
        <AxeY>SAPS</AxeY>
        <bezier>1</bezier>
        <LegendY>SAPS</LegendY>
      </TimeBasedGraph>
      <MeanBasedGraph>
        <Source>SAPS</Source>
        <AxeY>SAPS</AxeY>
        <LegendY>SAPS</LegendY>
      </MeanBasedGraph>
      <DistrBasedGraph>
      </DistrBasedGraph>
    </measure>
  </use_case>

</config>