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Posted to commits@tika.apache.org by ta...@apache.org on 2016/02/19 21:24:53 UTC
[14/52] [partial] tika git commit: move test files to parser-modules
http://git-wip-us.apache.org/repos/asf/tika/blob/38916f89/tika-test-resources/src/test/resources/test-documents/testKML.kml
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diff --git a/tika-test-resources/src/test/resources/test-documents/testKML.kml b/tika-test-resources/src/test/resources/test-documents/testKML.kml
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--- a/tika-test-resources/src/test/resources/test-documents/testKML.kml
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@@ -1,917 +0,0 @@
-<?xml version="1.0" encoding="UTF-8"?>
-<kml xmlns="http://www.opengis.net/kml/2.2">
- <!-- Provided by Google as part of their KML Documentation -->
- <!-- Available at https://developers.google.com/kml/documentation/KML_Samples.kml -->
- <Document>
- <name>KML Samples</name>
- <open>1</open>
- <description>Unleash your creativity with the help of these examples!</description>
- <Style id="downArrowIcon">
- <IconStyle>
- <Icon>
- <href>http://maps.google.com/mapfiles/kml/pal4/icon28.png</href>
- </Icon>
- </IconStyle>
- </Style>
- <Style id="globeIcon">
- <IconStyle>
- <Icon>
- <href>http://maps.google.com/mapfiles/kml/pal3/icon19.png</href>
- </Icon>
- </IconStyle>
- <LineStyle>
- <width>2</width>
- </LineStyle>
- </Style>
- <Style id="transPurpleLineGreenPoly">
- <LineStyle>
- <color>7fff00ff</color>
- <width>4</width>
- </LineStyle>
- <PolyStyle>
- <color>7f00ff00</color>
- </PolyStyle>
- </Style>
- <Style id="yellowLineGreenPoly">
- <LineStyle>
- <color>7f00ffff</color>
- <width>4</width>
- </LineStyle>
- <PolyStyle>
- <color>7f00ff00</color>
- </PolyStyle>
- </Style>
- <Style id="thickBlackLine">
- <LineStyle>
- <color>87000000</color>
- <width>10</width>
- </LineStyle>
- </Style>
- <Style id="redLineBluePoly">
- <LineStyle>
- <color>ff0000ff</color>
- </LineStyle>
- <PolyStyle>
- <color>ffff0000</color>
- </PolyStyle>
- </Style>
- <Style id="blueLineRedPoly">
- <LineStyle>
- <color>ffff0000</color>
- </LineStyle>
- <PolyStyle>
- <color>ff0000ff</color>
- </PolyStyle>
- </Style>
- <Style id="transRedPoly">
- <LineStyle>
- <width>1.5</width>
- </LineStyle>
- <PolyStyle>
- <color>7d0000ff</color>
- </PolyStyle>
- </Style>
- <Style id="transBluePoly">
- <LineStyle>
- <width>1.5</width>
- </LineStyle>
- <PolyStyle>
- <color>7dff0000</color>
- </PolyStyle>
- </Style>
- <Style id="transGreenPoly">
- <LineStyle>
- <width>1.5</width>
- </LineStyle>
- <PolyStyle>
- <color>7d00ff00</color>
- </PolyStyle>
- </Style>
- <Style id="transYellowPoly">
- <LineStyle>
- <width>1.5</width>
- </LineStyle>
- <PolyStyle>
- <color>7d00ffff</color>
- </PolyStyle>
- </Style>
- <Style id="noDrivingDirections">
- <BalloonStyle>
- <text><![CDATA[
- <b>$[name]</b>
- <br /><br />
- $[description]
- ]]></text>
- </BalloonStyle>
- </Style>
- <Folder>
- <name>Placemarks</name>
- <description>These are just some of the different kinds of placemarks with
- which you can mark your favorite places</description>
- <LookAt>
- <longitude>-122.0839597145766</longitude>
- <latitude>37.42222904525232</latitude>
- <altitude>0</altitude>
- <heading>-148.4122922628044</heading>
- <tilt>40.5575073395506</tilt>
- <range>500.6566641072245</range>
- </LookAt>
- <Placemark>
- <name>Simple placemark</name>
- <description>Attached to the ground. Intelligently places itself at the
- height of the underlying terrain.</description>
- <Point>
- <coordinates>-122.0822035425683,37.42228990140251,0</coordinates>
- </Point>
- </Placemark>
- <Placemark>
- <name>Floating placemark</name>
- <visibility>0</visibility>
- <description>Floats a defined distance above the ground.</description>
- <LookAt>
- <longitude>-122.0839597145766</longitude>
- <latitude>37.42222904525232</latitude>
- <altitude>0</altitude>
- <heading>-148.4122922628044</heading>
- <tilt>40.5575073395506</tilt>
- <range>500.6566641072245</range>
- </LookAt>
- <styleUrl>#downArrowIcon</styleUrl>
- <Point>
- <altitudeMode>relativeToGround</altitudeMode>
- <coordinates>-122.084075,37.4220033612141,50</coordinates>
- </Point>
- </Placemark>
- <Placemark>
- <name>Extruded placemark</name>
- <visibility>0</visibility>
- <description>Tethered to the ground by a customizable
- "tail"</description>
- <LookAt>
- <longitude>-122.0845787421525</longitude>
- <latitude>37.42215078737763</latitude>
- <altitude>0</altitude>
- <heading>-148.4126684946234</heading>
- <tilt>40.55750733918048</tilt>
- <range>365.2646606980322</range>
- </LookAt>
- <styleUrl>#globeIcon</styleUrl>
- <Point>
- <extrude>1</extrude>
- <altitudeMode>relativeToGround</altitudeMode>
- <coordinates>-122.0857667006183,37.42156927867553,50</coordinates>
- </Point>
- </Placemark>
- </Folder>
- <Folder>
- <name>Styles and Markup</name>
- <visibility>0</visibility>
- <description>With KML it is easy to create rich, descriptive markup to
- annotate and enrich your placemarks</description>
- <LookAt>
- <longitude>-122.0845787422371</longitude>
- <latitude>37.42215078726837</latitude>
- <altitude>0</altitude>
- <heading>-148.4126777488172</heading>
- <tilt>40.55750733930874</tilt>
- <range>365.2646826292919</range>
- </LookAt>
- <styleUrl>#noDrivingDirections</styleUrl>
- <Document>
- <name>Highlighted Icon</name>
- <visibility>0</visibility>
- <description>Place your mouse over the icon to see it display the new
- icon</description>
- <LookAt>
- <longitude>-122.0856552124024</longitude>
- <latitude>37.4224281311035</latitude>
- <altitude>0</altitude>
- <heading>0</heading>
- <tilt>0</tilt>
- <range>265.8520424250024</range>
- </LookAt>
- <Style id="highlightPlacemark">
- <IconStyle>
- <Icon>
- <href>http://maps.google.com/mapfiles/kml/paddle/red-stars.png</href>
- </Icon>
- </IconStyle>
- </Style>
- <Style id="normalPlacemark">
- <IconStyle>
- <Icon>
- <href>http://maps.google.com/mapfiles/kml/paddle/wht-blank.png</href>
- </Icon>
- </IconStyle>
- </Style>
- <StyleMap id="exampleStyleMap">
- <Pair>
- <key>normal</key>
- <styleUrl>#normalPlacemark</styleUrl>
- </Pair>
- <Pair>
- <key>highlight</key>
- <styleUrl>#highlightPlacemark</styleUrl>
- </Pair>
- </StyleMap>
- <Placemark>
- <name>Roll over this icon</name>
- <visibility>0</visibility>
- <styleUrl>#exampleStyleMap</styleUrl>
- <Point>
- <coordinates>-122.0856545755255,37.42243077405461,0</coordinates>
- </Point>
- </Placemark>
- </Document>
- <Placemark>
- <name>Descriptive HTML</name>
- <visibility>0</visibility>
- <description><![CDATA[Click on the blue link!<br><br>
-Placemark descriptions can be enriched by using many standard HTML tags.<br>
-For example:
-<hr>
-Styles:<br>
-<i>Italics</i>,
-<b>Bold</b>,
-<u>Underlined</u>,
-<s>Strike Out</s>,
-subscript<sub>subscript</sub>,
-superscript<sup>superscript</sup>,
-<big>Big</big>,
-<small>Small</small>,
-<tt>Typewriter</tt>,
-<em>Emphasized</em>,
-<strong>Strong</strong>,
-<code>Code</code>
-<hr>
-Fonts:<br>
-<font color="red">red by name</font>,
-<font color="#408010">leaf green by hexadecimal RGB</font>
-<br>
-<font size=1>size 1</font>,
-<font size=2>size 2</font>,
-<font size=3>size 3</font>,
-<font size=4>size 4</font>,
-<font size=5>size 5</font>,
-<font size=6>size 6</font>,
-<font size=7>size 7</font>
-<br>
-<font face=times>Times</font>,
-<font face=verdana>Verdana</font>,
-<font face=arial>Arial</font><br>
-<hr>
-Links:
-<br>
-<a href="http://earth.google.com/">Google Earth!</a>
-<br>
- or: Check out our website at www.google.com
-<hr>
-Alignment:<br>
-<p align=left>left</p>
-<p align=center>center</p>
-<p align=right>right</p>
-<hr>
-Ordered Lists:<br>
-<ol><li>First</li><li>Second</li><li>Third</li></ol>
-<ol type="a"><li>First</li><li>Second</li><li>Third</li></ol>
-<ol type="A"><li>First</li><li>Second</li><li>Third</li></ol>
-<hr>
-Unordered Lists:<br>
-<ul><li>A</li><li>B</li><li>C</li></ul>
-<ul type="circle"><li>A</li><li>B</li><li>C</li></ul>
-<ul type="square"><li>A</li><li>B</li><li>C</li></ul>
-<hr>
-Definitions:<br>
-<dl>
-<dt>Google:</dt><dd>The best thing since sliced bread</dd>
-</dl>
-<hr>
-Centered:<br><center>
-Time present and time past<br>
-Are both perhaps present in time future,<br>
-And time future contained in time past.<br>
-If all time is eternally present<br>
-All time is unredeemable.<br>
-</center>
-<hr>
-Block Quote:
-<br>
-<blockquote>
-We shall not cease from exploration<br>
-And the end of all our exploring<br>
-Will be to arrive where we started<br>
-And know the place for the first time.<br>
-<i>-- T.S. Eliot</i>
-</blockquote>
-<br>
-<hr>
-Headings:<br>
-<h1>Header 1</h1>
-<h2>Header 2</h2>
-<h3>Header 3</h3>
-<h3>Header 4</h4>
-<h3>Header 5</h5>
-<hr>
-Images:<br>
-<i>Remote image</i><br>
-<img src="//developers.google.com/kml/documentation/images/googleSample.png"><br>
-<i>Scaled image</i><br>
-<img src="//developers.google.com/kml/documentation/images/googleSample.png" width=100><br>
-<hr>
-Simple Tables:<br>
-<table border="1" padding="1">
-<tr><td>1</td><td>2</td><td>3</td><td>4</td><td>5</td></tr>
-<tr><td>a</td><td>b</td><td>c</td><td>d</td><td>e</td></tr>
-</table>
-<br>
-[Did you notice that double-clicking on the placemark doesn't cause the viewer to take you anywhere? This is because it is possible to directly author a "placeless placemark". If you look at the code for this example, you will see that it has neither a point coordinate nor a LookAt element.]]]></description>
- </Placemark>
- </Folder>
- <Folder>
- <name>Ground Overlays</name>
- <visibility>0</visibility>
- <description>Examples of ground overlays</description>
- <GroundOverlay>
- <name>Large-scale overlay on terrain</name>
- <visibility>0</visibility>
- <description>Overlay shows Mount Etna erupting on July 13th, 2001.</description>
- <LookAt>
- <longitude>15.02468937557116</longitude>
- <latitude>37.67395167941667</latitude>
- <altitude>0</altitude>
- <heading>-16.5581842842829</heading>
- <tilt>58.31228652890705</tilt>
- <range>30350.36838438907</range>
- </LookAt>
- <Icon>
- <href>http://developers.google.com/kml/documentation/images/etna.jpg</href>
- </Icon>
- <LatLonBox>
- <north>37.91904192681665</north>
- <south>37.46543388598137</south>
- <east>15.35832653742206</east>
- <west>14.60128369746704</west>
- <rotation>-0.1556640799496235</rotation>
- </LatLonBox>
- </GroundOverlay>
- </Folder>
- <Folder>
- <name>Screen Overlays</name>
- <visibility>0</visibility>
- <description>Screen overlays have to be authored directly in KML. These
- examples illustrate absolute and dynamic positioning in screen space.</description>
- <ScreenOverlay>
- <name>Simple crosshairs</name>
- <visibility>0</visibility>
- <description>This screen overlay uses fractional positioning to put the
- image in the exact center of the screen</description>
- <Icon>
- <href>http://developers.google.com/kml/documentation/images/crosshairs.png</href>
- </Icon>
- <overlayXY x="0.5" y="0.5" xunits="fraction" yunits="fraction"/>
- <screenXY x="0.5" y="0.5" xunits="fraction" yunits="fraction"/>
- <rotationXY x="0.5" y="0.5" xunits="fraction" yunits="fraction"/>
- <size x="0" y="0" xunits="pixels" yunits="pixels"/>
- </ScreenOverlay>
- <ScreenOverlay>
- <name>Absolute Positioning: Top left</name>
- <visibility>0</visibility>
- <Icon>
- <href>http://developers.google.com/kml/documentation/images/top_left.jpg</href>
- </Icon>
- <overlayXY x="0" y="1" xunits="fraction" yunits="fraction"/>
- <screenXY x="0" y="1" xunits="fraction" yunits="fraction"/>
- <rotationXY x="0" y="0" xunits="fraction" yunits="fraction"/>
- <size x="0" y="0" xunits="fraction" yunits="fraction"/>
- </ScreenOverlay>
- <ScreenOverlay>
- <name>Absolute Positioning: Top right</name>
- <visibility>0</visibility>
- <Icon>
- <href>http://developers.google.com/kml/documentation/images/top_right.jpg</href>
- </Icon>
- <overlayXY x="1" y="1" xunits="fraction" yunits="fraction"/>
- <screenXY x="1" y="1" xunits="fraction" yunits="fraction"/>
- <rotationXY x="0" y="0" xunits="fraction" yunits="fraction"/>
- <size x="0" y="0" xunits="fraction" yunits="fraction"/>
- </ScreenOverlay>
- <ScreenOverlay>
- <name>Absolute Positioning: Bottom left</name>
- <visibility>0</visibility>
- <Icon>
- <href>http://developers.google.com/kml/documentation/images/bottom_left.jpg</href>
- </Icon>
- <overlayXY x="0" y="-1" xunits="fraction" yunits="fraction"/>
- <screenXY x="0" y="0" xunits="fraction" yunits="fraction"/>
- <rotationXY x="0" y="0" xunits="fraction" yunits="fraction"/>
- <size x="0" y="0" xunits="fraction" yunits="fraction"/>
- </ScreenOverlay>
- <ScreenOverlay>
- <name>Absolute Positioning: Bottom right</name>
- <visibility>0</visibility>
- <Icon>
- <href>http://developers.google.com/kml/documentation/images/bottom_right.jpg</href>
- </Icon>
- <overlayXY x="1" y="-1" xunits="fraction" yunits="fraction"/>
- <screenXY x="1" y="0" xunits="fraction" yunits="fraction"/>
- <rotationXY x="0" y="0" xunits="fraction" yunits="fraction"/>
- <size x="0" y="0" xunits="fraction" yunits="fraction"/>
- </ScreenOverlay>
- <ScreenOverlay>
- <name>Dynamic Positioning: Top of screen</name>
- <visibility>0</visibility>
- <Icon>
- <href>http://developers.google.com/kml/documentation/images/dynamic_screenoverlay.jpg</href>
- </Icon>
- <overlayXY x="0" y="1" xunits="fraction" yunits="fraction"/>
- <screenXY x="0" y="1" xunits="fraction" yunits="fraction"/>
- <rotationXY x="0" y="0" xunits="fraction" yunits="fraction"/>
- <size x="1" y="0.2" xunits="fraction" yunits="fraction"/>
- </ScreenOverlay>
- <ScreenOverlay>
- <name>Dynamic Positioning: Right of screen</name>
- <visibility>0</visibility>
- <Icon>
- <href>http://developers.google.com/kml/documentation/images/dynamic_right.jpg</href>
- </Icon>
- <overlayXY x="1" y="1" xunits="fraction" yunits="fraction"/>
- <screenXY x="1" y="1" xunits="fraction" yunits="fraction"/>
- <rotationXY x="0" y="0" xunits="fraction" yunits="fraction"/>
- <size x="0" y="1" xunits="fraction" yunits="fraction"/>
- </ScreenOverlay>
- </Folder>
- <Folder>
- <name>Paths</name>
- <visibility>0</visibility>
- <description>Examples of paths. Note that the tessellate tag is by default
- set to 0. If you want to create tessellated lines, they must be authored
- (or edited) directly in KML.</description>
- <Placemark>
- <name>Tessellated</name>
- <visibility>0</visibility>
- <description><![CDATA[If the <tessellate> tag has a value of 1, the line will contour to the underlying terrain]]></description>
- <LookAt>
- <longitude>-112.0822680013139</longitude>
- <latitude>36.09825589333556</latitude>
- <altitude>0</altitude>
- <heading>103.8120432044965</heading>
- <tilt>62.04855796276328</tilt>
- <range>2889.145007690472</range>
- </LookAt>
- <LineString>
- <tessellate>1</tessellate>
- <coordinates> -112.0814237830345,36.10677870477137,0
- -112.0870267752693,36.0905099328766,0 </coordinates>
- </LineString>
- </Placemark>
- <Placemark>
- <name>Untessellated</name>
- <visibility>0</visibility>
- <description><![CDATA[If the <tessellate> tag has a value of 0, the line follow a simple straight-line path from point to point]]></description>
- <LookAt>
- <longitude>-112.0822680013139</longitude>
- <latitude>36.09825589333556</latitude>
- <altitude>0</altitude>
- <heading>103.8120432044965</heading>
- <tilt>62.04855796276328</tilt>
- <range>2889.145007690472</range>
- </LookAt>
- <LineString>
- <tessellate>0</tessellate>
- <coordinates> -112.080622229595,36.10673460007995,0
- -112.085242575315,36.09049598612422,0 </coordinates>
- </LineString>
- </Placemark>
- <Placemark>
- <name>Absolute</name>
- <visibility>0</visibility>
- <description>Transparent purple line</description>
- <LookAt>
- <longitude>-112.2719329043177</longitude>
- <latitude>36.08890633450894</latitude>
- <altitude>0</altitude>
- <heading>-106.8161545998597</heading>
- <tilt>44.60763714063257</tilt>
- <range>2569.386744398339</range>
- </LookAt>
- <styleUrl>#transPurpleLineGreenPoly</styleUrl>
- <LineString>
- <tessellate>1</tessellate>
- <altitudeMode>absolute</altitudeMode>
- <coordinates> -112.265654928602,36.09447672602546,2357
- -112.2660384528238,36.09342608838671,2357
- -112.2668139013453,36.09251058776881,2357
- -112.2677826834445,36.09189827357996,2357
- -112.2688557510952,36.0913137941187,2357
- -112.2694810717219,36.0903677207521,2357
- -112.2695268555611,36.08932171487285,2357
- -112.2690144567276,36.08850916060472,2357
- -112.2681528815339,36.08753813597956,2357
- -112.2670588176031,36.08682685262568,2357
- -112.2657374587321,36.08646312301303,2357 </coordinates>
- </LineString>
- </Placemark>
- <Placemark>
- <name>Absolute Extruded</name>
- <visibility>0</visibility>
- <description>Transparent green wall with yellow outlines</description>
- <LookAt>
- <longitude>-112.2643334742529</longitude>
- <latitude>36.08563154742419</latitude>
- <altitude>0</altitude>
- <heading>-125.7518698668815</heading>
- <tilt>44.61038665812578</tilt>
- <range>4451.842204068102</range>
- </LookAt>
- <styleUrl>#yellowLineGreenPoly</styleUrl>
- <LineString>
- <extrude>1</extrude>
- <tessellate>1</tessellate>
- <altitudeMode>absolute</altitudeMode>
- <coordinates> -112.2550785337791,36.07954952145647,2357
- -112.2549277039738,36.08117083492122,2357
- -112.2552505069063,36.08260761307279,2357
- -112.2564540158376,36.08395660588506,2357
- -112.2580238976449,36.08511401044813,2357
- -112.2595218489022,36.08584355239394,2357
- -112.2608216347552,36.08612634548589,2357
- -112.262073428656,36.08626019085147,2357
- -112.2633204928495,36.08621519860091,2357
- -112.2644963846444,36.08627897945274,2357
- -112.2656969554589,36.08649599090644,2357 </coordinates>
- </LineString>
- </Placemark>
- <Placemark>
- <name>Relative</name>
- <visibility>0</visibility>
- <description>Black line (10 pixels wide), height tracks terrain</description>
- <LookAt>
- <longitude>-112.2580438551384</longitude>
- <latitude>36.1072674824385</latitude>
- <altitude>0</altitude>
- <heading>4.947421249553717</heading>
- <tilt>44.61324882043339</tilt>
- <range>2927.61105910266</range>
- </LookAt>
- <styleUrl>#thickBlackLine</styleUrl>
- <LineString>
- <tessellate>1</tessellate>
- <altitudeMode>relativeToGround</altitudeMode>
- <coordinates> -112.2532845153347,36.09886943729116,645
- -112.2540466121145,36.09919570465255,645
- -112.254734666947,36.09984998366178,645
- -112.255493345654,36.10051310621746,645
- -112.2563157098468,36.10108441943419,645
- -112.2568033076439,36.10159722088088,645
- -112.257494011321,36.10204323542867,645
- -112.2584106072308,36.10229131995655,645
- -112.2596588987972,36.10240001286358,645
- -112.2610581199487,36.10213176873407,645
- -112.2626285262793,36.10157011437219,645 </coordinates>
- </LineString>
- </Placemark>
- <Placemark>
- <name>Relative Extruded</name>
- <visibility>0</visibility>
- <description>Opaque blue walls with red outline, height tracks terrain</description>
- <LookAt>
- <longitude>-112.2683594333433</longitude>
- <latitude>36.09884362144909</latitude>
- <altitude>0</altitude>
- <heading>-72.24271551768405</heading>
- <tilt>44.60855445139561</tilt>
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--- a/tika-test-resources/src/test/resources/test-documents/testMATLAB_barcast.m
+++ /dev/null
@@ -1,383 +0,0 @@
-%% CONTROL CODE FOR FULLY BAYESIAN SPATIO-TEMPORAL TEMPERATURE RECONSTRUCTION
-%EVERYTHING IS MODULAR TO ALLOW FOR EASY DEBUGGING AND ADAPTATION
-% _vNewModel_Oct08: change the formalism to reflect new model (Beta_1 now
-% normal). Allows for multiple proxies
-clear all; close all;
-%SET MATLAB'S CURRENT DIRECTORY TO HERE.
-% set the priors and the inital values for the MCMC sampler
-Prior_pars_vNewModel
-Initial_par_vals_vNewModel
-%% Set the seed of the random number generators
-randn('state', sum((1000+600)*clock))
-rand('state', sum((1000+800)*clock))
-
-%% load the data
-cd TestData
-load BARCAST_INPUT_vNewMeth1
-%break it apart
-Locs=BARCAST_INPUT.Master_Locs;
-N_Locs=length(Locs(:,1)); %Number of locations:
-timeline=[BARCAST_INPUT.Data_timeline(1)-1, BARCAST_INPUT.Data_timeline];
-N_Times=length(timeline)-1; %Number of DATA times
-loc_areas=BARCAST_INPUT.Areas;
-Inds_GridLocs_Central=BARCAST_INPUT.Inds_Central;
-
-%get the number of proxy types:
-N_PT=length(fieldnames(BARCAST_INPUT))-5;
-
-%stack the three data matrices, one on top of the other
-%the first N_Locs ROWS are the Inst, the next N_Locs ROWS the first proxy
-%type, the next the third. . . . .. Each column a year. The first
-%corresponds to the SECOND entry in timeline.
-Data_ALL=BARCAST_INPUT.Inst_Data;
-for kk=1:1:N_PT
- tp=eval(['BARCAST_INPUT.Prox_Data', num2str(kk)]);
- Data_ALL=[Data_ALL; tp];
-end
-
-% % % % All_locs_wInd=BARCAST_INPUT.All_locs_wInd;
-% % % % lon_lat_area=BARCAST_INPUT.lon_lat_area;
-% % % % DATA_Mat=BARCAST_INPUT.DATA_Mat;
-% % % % DATA_Mat_locs=BARCAST_INPUT.DATA_Mat_locs;
-% % % % Inds_GridLocs_Central=BARCAST_INPUT.Inds_GridLocs_Central;
-% % % % timeline=BARCAST_INPUT.timeline;
-% % % % clear BARCAST_INPUT
-
-%Priors and MH jumping parameters, from Prior_pars_vNewModel
-load PRIORS_vNewMeth1
-load MHpars_vNewMeth1
-%Initial values from Initial_par_vals_vNewModel
-load INITIAL_VALS_vNewMeth1
-
-%The Order of THE SCALAR parameters WILL ALWAYS thus:
-%1 = alpha, the AR(1) coefficient
-%2 = mu, the constant par in the linear mean of the AR(1) process
-%3 = sigma2, the partial sill in the spatial covariance matrix
-%4 = phi, the range parameter in the spatial covariance matrix
-%5 = tau2_I, the Inst measurement error
-%6 = tau2_P, the measurement error, first PROX type
-%7 = Beta_1, the scaling par in the first P observation equation
-%8 = Beta_0, the additive par in the first P observation equation
-%and, if there is second proxy type
-%9 = tau2_P_2, the measurement error, second PROX type
-%10 = Beta_1, the scaling par in the second P observation equation
-%11 = Beta_0, the additive par in the second P observation equation
-%and, if there is third proxy type . . . .
-
-%A NOTE ON GAMMA NOTATION. WE USE THE NOTATION OF Gelman et al, "Bayesian
-%Data Analysis", WHERE GAMMA PARAMETERS ALPHA, BETA)==(SHAPE, INVERSE SCALE).
-%THE RANDRAW.M CODE USES (A,B)==(SHAPE, SCALE), AND THE CALL IS RANDRAW('GAMMA', [M,B,A], SAMPLESIZE),
-%WHERE M IS THE LOCATION (NOT NEEDED). SO IN THE NOTATION OF GELMAN ET AT, THE CALL IS
-%RANDRAW('GAMMA', [0,1/BETA,ALPHA], SAMPLESIZE).
-%For example,
-%RANDRAW('GAMMA', [0,1/PRIORS.sigma2(2),PRIORS.sigma2(1)], 1), AND ETC.
-
-%switch back tot he main directory
-cd ..
-%% SET a few parameters
-%Number of iterations of the complete sampler
-Sampler_Its=2000;
-
-%Number of times to update only the temperature array before beginning to
-%update the other parameters
-pre_Sampler_Its=500;
-
-
-%% Areal weights vector for averaging the temperatures at each year
-%note that some of the elments of the temeprature are given 0 weight -
-%outside the prediction bounds. This is based on an input of the area of
-%each gridbox
-SpaceWeight=loc_areas/sum(loc_areas);
-%and for the central region/region of interest
-Areas_Central=zeros(1,N_Locs);
-Areas_Central(Inds_GridLocs_Central)=loc_areas(Inds_GridLocs_Central);
-SpaceWeight_Central=Areas_Central/sum(Areas_Central);
-
-%(In some applications, the goal might be to estimate the block average
-%over a subset of the locations in the reconstruction. For example, the
-%goal might be to reconstruct temperatures in Maine, but proxy records from
-%NH are incldued in the analysis, as they help to constrain temperatures in
-%Maine. SO some of the weights are, in this case, set to zero).
-
-
-%% CALCULATE FIXED QUANTITIES (DO NOT DEPEND ON UNKOWN PARAMETERS)
-
-%The matrix of distances between every possible pair of points, (I,P,R)
-All_DistMat=EarthDistances(Locs);
-
-%The H(t) selection matrix.
-%Basically, H(t) tells us which Inst and prox
-%locations have measurements for a given year. So: define H(t) for each
-%year as an indicator vector, and thus HH a matrix such that each column is
-%the indicator vector for that year. In other words, this is the complete
-%indicator matrix for the presence of data::
-%1=YES Measurement;
-%0=NO Measurement
-%Simply a ZERO wherever there is a NaN in Data_ALL, and a ONE whereever
-%this is a value
-HH_SelectMat=ones(size(Data_ALL))-isnan(Data_ALL);
-
-%The total number of Inst/Prox Observations are needed for several
-%conditional posteriors, and can be calculated from the HH_SelectMat:
-M_InstProx=NaN(1+N_PT,1);
-%vectot: first the total number of inst obsm then the total number of each
-%prox type, in order.
-%Inst:
-M_InstProx(1)=sum(sum(HH_SelectMat(1:1:N_Locs, :)));
-%Prox:
-for kk=1:1:N_PT
- M_InstProx(kk+1)=sum(sum(HH_SelectMat(kk*N_Locs+1:1:(kk+1)*N_Locs, :)));
-end
-
-%% Set the initial values of the Field matrix and Current Parameter Vector
-% These will be updated and then saved at each iteration of the sampler.
-% They are initially filled with the values from INITIAL_VALS.
-% Paramter/field values at each step of the gibbs sampler are taken from
-% these objects, and new draws override the current entries. This ensures
-% that each step of the Gibbs sampler is ALWAYS using the most recent set of ALL
-% parameters, without having to deal with +/-1 indices.
-
-%Array of the estimated true temperature values, set to the initial values:
-Temperature_MCMC_Sampler=INITIAL_VALS.Temperature;
-%Order: All I, P with locs common to I, Rest of the P, R.
-%In other words, ordered the same as InstProx_locs, then with Rand_locs
-%added on
-%note that
-%[Inst_locs; Prox_locs] = InstProx_locs([Inst_inds,Prox_inds],:)
-%SO: Temperature_MCMC_Sampler([Inst_inds,Prox_inds], KK) extracts the
-%elements that can be compared to the corresponding time of DATA_Mat
-
-% Current values of the scalar parameters
-INITIAL_SCALAR_VALS=rmfield(INITIAL_VALS, 'Temperature');
-CURRENT_PARS=cell2mat(struct2cell(INITIAL_SCALAR_VALS));
-
-% OR LOAD TRUE VALUES - FOR TESTING
-% load TestData\Pars_TRUE
-% CURRENT_PARS=Pars_TRUE';
-%
-% load TestData\TrueTemps_v1
-% Temperature_MCMC_Sampler=Temperature_Matrix;
-
-%% DEFINE EMPTY MATRICES that will be filled with the sampler
-%DEFINE the empty parameter matrix:
-N_Pars=length(CURRENT_PARS);
-Paramters_MCMC_Samples=NaN(N_Pars, Sampler_Its);
-%The empty matrix of the samples of the blockaverage timeseries:
-BlockAve_MCMC_Samples=NaN(N_Times+1, pre_Sampler_Its+Sampler_Its);
-%and the central/target portion
-BlockAve_Central_MCMC_Samples=NaN(N_Times+1, pre_Sampler_Its+Sampler_Its);
-%NOTE the initial values of the parameters, field, and block averages will
-%NOT be saved. So the first item in all matrices/arrays are the results
-%after the first iteration of the sampler
-
-%IN this case, as the amount of data is small, we are able to deal
-%with the whole array of space time draws. In applications with larger
-%data, this is not possible (memory overflow).
-Temperature_ARRAY=NaN(N_Locs, N_Times+1, pre_Sampler_Its+Sampler_Its);
-
-
-%% CALCULATE PARAMETER DEPENDENT QUANTITIES
-%that are used several times in the sampler
-%
-%The idea: calculate the quantities with the initial parameter values, then
-%update as soon as possible, leaving the variablle name the same
-%
-%calculate the initial spatial correlation matrix, and its inverse
-%these are needed several times.
-%AS SOON as phi is updated, this is updated, ensuring that the
-%correlation matrix and its inverse are always up to date, regardless of
-%the order of the sampling below.
-CURRENT_spatial_corr_mat=exp(-CURRENT_PARS(4)*All_DistMat);
-CURRENT_inv_spatial_corr_mat=inv(CURRENT_spatial_corr_mat);
-
-%% To speed up the code
-%1. Find the UNIQUE missing data patterns, number them.
-%2. Index each year by the missing data pattern.
-%3. For each missing data pattern, calculate the inverse and square root of
-%the conditional posterior covariance of a T_k, and stack them
-%4. Rewrite the T_k_Updater to simply call these matrices.
-%This reduces the number of matrix inversions for each FULL iteration of
-%the sampler to the number of UNIQUE data patterns, and reduces the number
-%for the pre iterations to 2.
-
-U_Patterns=unique(HH_SelectMat', 'rows');
-%create an index vector that gices, for each year, the number of the
-%corresponding pattern in U_Patterns
-%Basically - HH_SelectMat can be represented by U_Patterns and this index vector:
-Pattern_by_Year=NaN(N_Times,1);
-for kk=1:1:length(U_Patterns(:,1));
- dummy=ismember(HH_SelectMat', U_Patterns(kk,:), 'rows');
- Pattern_by_Year(find(dummy==1))=kk;
-end
-
-%Input the CURRENT_PARS vector and etc into Covariance_Patterns, which returns two 3d
-%arrays: the covariance amtrix for each missing data patter (for
-%the mean calculation) and the squre root of the covariance matrix (to make
-%the draw).
-[CURRENT_COV_ARRAY, CURRENT_SQRT_COV_ARRAY]=Covariance_Patterns(U_Patterns, CURRENT_PARS, CURRENT_inv_spatial_corr_mat, N_Locs, N_PT);
-
-
-
-%% In an attempt to speed convergence of the variance paramters
-% we will uptate only the true temperature array for a number of
-% iterations, and then add the updating of the other parameters. This is to
-% prevent the model from requiring large variances to fit the observations
-% to the data.
-%timertimer=NaN;
-for samples=1:1:pre_Sampler_Its
- tic;
- %% SAMPLE T(0): True temperature the year before the first measurement.
- Temperature_MCMC_Sampler(:,1)=T_0_Updater_vNM(PRIORS.T_0, Temperature_MCMC_Sampler(:,2), CURRENT_PARS, CURRENT_inv_spatial_corr_mat);
-
- %% SAMPLE T(1), . . ., T(last-1). Recall that the T matrix starts at time=0, while the W matrix starts at time=1
- for Tm=2:1:N_Times
- Temperature_MCMC_Sampler(:,Tm)=T_k_Updater_vFAST(Temperature_MCMC_Sampler(:, Tm-1), Temperature_MCMC_Sampler(:,Tm+1), Data_ALL(:,Tm-1), CURRENT_PARS, U_Patterns(Pattern_by_Year(Tm-1),:),CURRENT_COV_ARRAY(:,:,Pattern_by_Year(Tm-1)),CURRENT_SQRT_COV_ARRAY(:,:,Pattern_by_Year(Tm-1)),CURRENT_inv_spatial_corr_mat, N_Locs, N_PT);
- end
- %This is a SLOW step, because it is actually N_Times-1 steps. . .
-
- %% SAMPLE T(last)
- Temperature_MCMC_Sampler(:,N_Times+1)=T_last_Updater_vNM(Temperature_MCMC_Sampler(:, N_Times), Data_ALL(:,N_Times), HH_SelectMat(:, N_Times), CURRENT_PARS, CURRENT_inv_spatial_corr_mat, N_Locs, N_PT);
-
- %% Fill in the next iteration of the BlockAve_MCMC_Samples matrix:
- BlockAve_MCMC_Samples(:,samples)=(SpaceWeight*Temperature_MCMC_Sampler)';
- BlockAve_Central_MCMC_Samples(:, samples)=(SpaceWeight_Central*Temperature_MCMC_Sampler)';
- %Fill in the next slice of the space-time field draw array
- Temperature_ARRAY(:,:,samples)=Temperature_MCMC_Sampler;
-
- %save the current draw of the space-time temp matrix
- %save(['TestData\FieldDraws\Temp_MCMC_vNM_Test_PreStep' num2str(samples)],'Temperature_MCMC_Sampler');
-
- timertimer=toc;
- disp(['Working on pre-MCMC iteration ', num2str(samples), ' of ', num2str(pre_Sampler_Its), '. Last iteration took ', num2str(timertimer), ' seconds.'])
-
-end
-
-timertimer=NaN;
-%% RUN THE SAMPLER
-for samples=1:1:Sampler_Its
-
- tic
- %% SAMPLE T(0): True temperature the year before the first measurement.
- Temperature_MCMC_Sampler(:,1)=T_0_Updater_vNM(PRIORS.T_0, Temperature_MCMC_Sampler(:,2), CURRENT_PARS, CURRENT_inv_spatial_corr_mat);
-
- %% SAMPLE T(1), . . ., T(last-1). Recall that the T matrix starts at time=0, while the W matrix starts at time=1
- for Tm=2:1:N_Times
- Temperature_MCMC_Sampler(:,Tm)=T_k_Updater_vFAST(Temperature_MCMC_Sampler(:, Tm-1), Temperature_MCMC_Sampler(:,Tm+1), Data_ALL(:,Tm-1), CURRENT_PARS, U_Patterns(Pattern_by_Year(Tm-1),:),CURRENT_COV_ARRAY(:,:,Pattern_by_Year(Tm-1)),CURRENT_SQRT_COV_ARRAY(:,:,Pattern_by_Year(Tm-1)),CURRENT_inv_spatial_corr_mat, N_Locs, N_PT);
- end
- %This is a SLOW step, because it is actually N_Times-1 steps. . .
-
- %% SAMPLE T(last)
- Temperature_MCMC_Sampler(:,N_Times+1)=T_last_Updater_vNM(Temperature_MCMC_Sampler(:, N_Times), Data_ALL(:,N_Times), HH_SelectMat(:, N_Times), CURRENT_PARS, CURRENT_inv_spatial_corr_mat, N_Locs, N_PT);
-
- %% SAMPLE AR(1) coefficient
- New_Alpha=Alpha_Updater_vNM(PRIORS.alpha, Temperature_MCMC_Sampler, CURRENT_PARS, CURRENT_inv_spatial_corr_mat);
- CURRENT_PARS(1)=New_Alpha;
- clear New_Alpha
-
- %% SAMPLE AR(1) mean constant parameter, mu:
- New_mu=Mu_Updater_vNM(PRIORS.mu, Temperature_MCMC_Sampler, CURRENT_PARS, CURRENT_inv_spatial_corr_mat);
- CURRENT_PARS(2)=New_mu;
- clear New_AR_mean_mu
-
- %% SAMPLE Partial Sill of the spatial covaraince martrix
- New_sigma2=Sigma2_Updater_vNM(PRIORS.sigma2, Temperature_MCMC_Sampler, CURRENT_PARS, CURRENT_inv_spatial_corr_mat);
- %ARTIFICIALLY put a cieling at, say, 5.
- %CHECK a posterior that, one the algorithm has converged, ALL draws are
- %lower than this.
- CURRENT_PARS(3)=min(5, New_sigma2);
- clear New_sigma2
-
- %% SAMPLE Range Parameter of the spatial covaraince martrix (METROPOLIS)
- % This also updates the spatial corelation matrix and its inverse
- [New_phi, New_scm, New_iscm]=Phi_Updater_vNM(PRIORS.phi, Temperature_MCMC_Sampler, CURRENT_PARS, CURRENT_spatial_corr_mat, CURRENT_inv_spatial_corr_mat, All_DistMat, MHpars.log_phi);
- CURRENT_PARS(4)=New_phi;
- CURRENT_spatial_corr_mat=New_scm;
- CURRENT_inv_spatial_corr_mat=New_iscm;
- clear New_phi New_iscm New_scm
-
- %% SAMPLE Instrumental measurement error
- New_tau2_I=tau2_I_Updater_vNM(PRIORS.tau2_I, Temperature_MCMC_Sampler, Data_ALL, N_Locs, M_InstProx(1));
- %ARTIFICIALLY put a cieling at, say, 5.
- %CHECK a posterior that, one the algorithm has converged, ALL draws are
- %lower than this.
- CURRENT_PARS(5)=min(5, New_tau2_I);
- clear New_tau2_I
-
-
-
- %% NEED TO LOOP THE SAMPLING OF THESE THREE PARAMETERS
- for Pnum=1:1:N_PT
- %curtail the CURRENT_PARS vector to only include the pars for one
- %proxy type at a time:
- CURRENT_PARS_Brief=[CURRENT_PARS(1:1:5); CURRENT_PARS([6:1:8]+(Pnum-1)*3)];
- %Similarily exract each type of proxy data:
- Prox_Data_Brief=eval(['BARCAST_INPUT.Prox_Data', num2str(Pnum)]);
-
- %% SAMPLE Proxy measurement error
- New_tau2_P=tau2_P_Updater_vNM(eval(['PRIORS.tau2_P_', num2str(Pnum)]), Temperature_MCMC_Sampler, Prox_Data_Brief, CURRENT_PARS_Brief, M_InstProx(Pnum+1));
- %ARTIFICIALLY put a cieling at, say, 50.
- %CHECK a posterior that, one the algorithm has converged, ALL draws are
- %lower than this.
- CURRENT_PARS_Brief(6)=min(10, New_tau2_P);
- clear New_tau2_P
-
- %% SAMPLE Scaling constant in the proxy observation equation
- New_beta_1=Beta_1_Updater_vNM(eval(['PRIORS.Beta_1_', num2str(Pnum)]), Temperature_MCMC_Sampler, Prox_Data_Brief, CURRENT_PARS_Brief);
- CURRENT_PARS_Brief(7)=New_beta_1;
- clear New_beta_1
-
- %% SAMPLE Additive constant in the proxy observation equation
- New_Beta_0=Beta_0_Updater_vNM(eval(['PRIORS.Beta_0_', num2str(Pnum)]), Temperature_MCMC_Sampler, Prox_Data_Brief, CURRENT_PARS_Brief, M_InstProx(Pnum+1));
- CURRENT_PARS_Brief(8)=New_Beta_0;
- clear New_Beta_0
-
- CURRENT_PARS([6:1:8]+(Pnum-1)*3)=CURRENT_PARS_Brief(6:1:8);
-
- end
-
- %% UPDATE the covariance arrays used in the T_k_Updater step
- [CURRENT_COV_ARRAY, CURRENT_SQRT_COV_ARRAY]=Covariance_Patterns(U_Patterns, CURRENT_PARS, CURRENT_inv_spatial_corr_mat, N_Locs, N_PT);
-
-
- %% UPDATE THE VARIOUS MATRICES, SAVE CURRENT TEMPERTAURE MATRIX
- %update the Paramters_MCMC_Samples matrix:
- Paramters_MCMC_Samples(:, samples)=CURRENT_PARS;
- %CURRENT_PARS is not cleared: it is, after all, the current parameter
- %vector.
-
- %Fill in the next iteration of the BlockAve_MCMC_Samples matrix:
- BlockAve_MCMC_Samples(:, pre_Sampler_Its+samples)=(SpaceWeight*Temperature_MCMC_Sampler)';
- BlockAve_Central_MCMC_Samples(:, pre_Sampler_Its+samples)=(SpaceWeight_Central*Temperature_MCMC_Sampler)';
-
- %add the new draw of the space-time temp matrix
- Temperature_ARRAY(:,:,pre_Sampler_Its+samples)=Temperature_MCMC_Sampler;
- %save the current draw of the space-time temp matrix
- %save(['TestData\FieldDraws\Temp_MCMC_vNM_Test_Step' num2str(samples)],'Temperature_MCMC_Sampler');
-
- %SAVE the matrix of parameter vector draws and the matrix of block
- %average vectors. (This way, even if the code is stopped prematurely,
- %we get something)
- %cd TestData
- %cd FieldDraws
- %save TestData\FieldDraws\Paramters_MCMC_Samples_vNM Paramters_MCMC_Samples
- %save TestData\FieldDraws\Temperature_ARRAY_vNM Temperature_ARRAY
- %save TestData\FieldDraws\BlockAve_MCMC_Samples_vNM BlockAve_MCMC_Samples
- %save TestData\FieldDraws\BlockAve_Central_MCMC_Samples_vNM BlockAve_Central_MCMC_Samples
- %and back
- %cd ..
- %cd ..
- timertimer=toc;
- disp(['Finished MCMC iteration ', num2str(samples), ' of ', num2str(Sampler_Its), '. Last iteration took ', num2str(timertimer), ' seconds.'])
-end
-
-%% SAVE the matrix of parameter vector draws and the matrix of block
-%average vectors.
-cd TestData
-cd FieldDraws
- save Paramters_MCMC_Samples_vNM Paramters_MCMC_Samples
- save Temperature_ARRAY_vNM Temperature_ARRAY
- save BlockAve_MCMC_Samples_vNM BlockAve_MCMC_Samples
- save BlockAve_Central_MCMC_Samples_vNM BlockAve_Central_MCMC_Samples
-%and back
-cd ..
-cd ..
http://git-wip-us.apache.org/repos/asf/tika/blob/38916f89/tika-test-resources/src/test/resources/test-documents/testMATLAB_wtsgaus.m
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diff --git a/tika-test-resources/src/test/resources/test-documents/testMATLAB_wtsgaus.m b/tika-test-resources/src/test/resources/test-documents/testMATLAB_wtsgaus.m
deleted file mode 100644
index f7700f7..0000000
--- a/tika-test-resources/src/test/resources/test-documents/testMATLAB_wtsgaus.m
+++ /dev/null
@@ -1,52 +0,0 @@
-function b=wtsgaus(p,N)
-% wtsgaus: weights for gaussian filter with specified frequency response
-% b=wtsgaus(p,N);
-% Last revised 2003-3-14
-%
-% Weights for gaussian filter with specified frequency response
-% Specify te wavelength for the 0.50 respons, and the length of series, get
-% the coefficients, or weights
-%
-%*** INPUT
-%
-% p (1 x 1)i period (years) at which filter is to have amp frequency response of 0.5
-% N (1 x 1)i length of the time series (number of observations)
-%
-%*** OUTPUT
-%
-% b (1 x n)r computed weights
-%
-%
-%*** REFERENCES
-%
-% WMO 1966, p. 47
-%
-%*** UW FUNCTIONS CALLED -- NONE
-%*** TOOLBOXES NEEDED -- stats
-%
-%*** NOTES
-%
-% Amplitude of frequency response drops to 0.50 at a wavelength of
-% about 6 standard deviations of the appropriate guassian curve
-%
-% N is used as an input to restict the possible filter size (number of weights) to no larger than the sample length
-
-if p>N;
- error(['Desired 50% period ' num2str(p) ' is greater than the sample length ' int2str(N)]);
-end;
-
-
-% Check that period of 50% response at least 5 yr
-if p<5;
- error('Period of 50% response must be at least 5 yr');
-end;
-
-sigma=p/6; % Gaussian curve should have this standard deviation
-
-x=-N:N;
-b=normpdf(x/sigma,0,1);
-bmax=max(b);
-bkeep = b>=0.05*bmax; % keep weights at least 5% as big as central weight
-b=b(bkeep);
-b=b/sum(b); % force weights to sum to one
-
http://git-wip-us.apache.org/repos/asf/tika/blob/38916f89/tika-test-resources/src/test/resources/test-documents/testMHTMLFirefox.mhtml
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diff --git a/tika-test-resources/src/test/resources/test-documents/testMHTMLFirefox.mhtml b/tika-test-resources/src/test/resources/test-documents/testMHTMLFirefox.mhtml
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index 8ffbcdb..0000000
--- a/tika-test-resources/src/test/resources/test-documents/testMHTMLFirefox.mhtml
+++ /dev/null
@@ -1,455 +0,0 @@
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-Date: Fri Mar 10 2006 13:40:00 GMT+0100
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-iles/frontpage.css" media=3D"screen">
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-"index_files/all.css" media=3D"all"></head><body>
-
-<div id=3D"header">
-
-<h1>Aperture</h1>
-<h2>a Java framework for getting data and metadata</h2>
-
-</div> <!-- header -->
-
-<div id=3D"content">
-
-<div id=3D"preamble">
-
-<p>
-<b>Project name</b>
-</p>
-
-<p>
-From <a class=3D"ext-link" title=3D"http://www.webster.com/" href=3D"http://=
-www.webster.com/">Merriam-Webster Online</a>:
-</p>
-
-<p>
-Main Entry: <strong>ap=B7er=B7ture</strong>
-(sounds like <a class=3D"ext-link" title=3D"http://cougar.eb.com/sound/a/ape=
-rtu01.wav" href=3D"http://cougar.eb.com/sound/a/apertu01.wav">this</a>)<br>
-Pronunciation: 'ap-&(r)-"chur, -ch&r, -"tyur, -"tur<br>
-Function: noun<br>
-Etymology: Middle English, from Latin apertura, from apertus, past
-participle of aperire to open<br>
-</p>
-
-<ol>
-<li>an opening or open space : HOLE</li>
-<li>a : the opening in a photographic lens that admits the light<br>
-b : the diameter of the stop in an optical system that determines the diamet=
-er
-of the bundle of rays traversing the instrument<br>
-c : the diameter of the objective lens or mirror of a telescope</li>
-</ol>
-
-</div> <!-- preamble -->
-
-<h2>News</h2>
-
-<p>
-<b>March 6, 2006:</b> <a href=3D"https://sourceforge.net/project/showfiles.p=
-hp?group_id=3D150969">Aperture
-2006.1 alpha 2</a> released!
-</p>
-
-<p>
-This release adds support for crawling file systems, web sites, IMAP and Out=
-look mail boxes.
-Furthermore, the number of supported file formats has increased significantl=
-y.
-</p>
-
-<h2>Features</h2>
-
-<ul>
-<li>Crawl information systems such as file systems, websites, mail boxes and=
- mail servers</li>
-<li>Extract full-text and metadata from many common file formats</li>
-<li>View files in their native applications</li>
-<li>Ease of use: easy to learn, easy to code, easy to deploy in industrial p=
-rojects</li>
-<li>Flexible architecture: can be extended with custom file formats, data so=
-urces, etc.,
- with support for deployment on OSGi platforms</li>
-<li>Data exchange based on Semantic Web standards (e.g. RDF, SPARQL, ...)</l=
-i>
-</ul>
-
-<h2>Supported File Formats</h2>
-
-<ul>
-<li>Plain text</li>
-<li>HTML, XHTML</li>
-<li>XML</li>
-<li>PDF (Portable Document Format)</li>
-<li>RTF (Rich Text Format)</li>
-<li>Microsoft Office: Word, Excel, Powerpoint, Visio, Publisher</li>
-<li>Microsoft Works</li>
-<li>OpenOffice 1.x: Writer, Calc, Impress, Draw</li>
-<li>StarOffice 6.x - 7.x+: Writer, Calc, Impress, Draw</li>
-<li>OpenDocument (OpenOffice 2.x, StarOffice 8.x)</li>
-<li>Corel WordPerfect, Quattro, Presentations</li>
-<li>Emails (.eml files)</li>
-</ul>
-
-<h2>Crawlers</h2>
-
-<p>
-Crawlers support the extraction of information from heterogenous data source=
-s.
-At the moment we support the following source types:</p>
-
-<ul>
-<li>File Systems (local, remote, removeable media)</li>
-<li>Websites and intranets</li>
-<li>IMAP e-mail servers</li>
-<li>Microsoft Outlook (alpha)</li>
-</ul>
-
-<h2><a name=3D"support"></a>Support</h2>
-
-<p>
-At this moment the project is still in alpha stage and we provide only limit=
-ed support.
-If you have any questions about the project, feel free to join the
-<a href=3D"https://sourceforge.net/mail/?group_id=3D150969">development mail=
-inglist</a> and ask us.
-</p>
-
-<h2><a name=3D"development"></a>Development</h2>
-
-<p>
-To use Aperture in your own projects, read the <a href=3D"http://aperture.so=
-urceforge.net/documentation.html">documentation</a>
-for information about requirements and code examples.
-</p>
-
-<p>
-If you are interested in contributing, feel free to contact the project admi=
-ns or join the
-<a href=3D"https://sourceforge.net/mail/?group_id=3D150969">development mail=
-inglist</a>.
-We are very interested in new extractors and other contributions including c=
-rawlers.
-</p>
-
-</div> <!-- content -->
-
-<div id=3D"sideBar">
-
-<p>
-Aperture is a Java framework for extracting and querying full-text
-content and metadata from various information systems (e.g. file systems,
-web sites, mail boxes) and the file formats (e.g. documents, images)
-occurring in these systems.
-</p>
-
-<h2>Contents</h2>
-
-<ul>
-<li><a href=3D"http://aperture.sourceforge.net/index.html">Home</a></li>
-<li><a href=3D"https://sourceforge.net/project/showfiles.php?group_id=3D1509=
-69">Download</a></li>
-<li><a href=3D"http://aperture.sourceforge.net/doc/javadoc/index.html">Javad=
-oc</a></li>
-<li><a href=3D"http://aperture.sourceforge.net/documentation.html">Documenta=
-tion</a></li>
-<li><a href=3D"http://aperture.sourceforge.net/faq.html">FAQ</a></li>
-<li><a href=3D"http://aperture.sourceforge.net/index.html#support">Support</=
-a></li>
-<li><a href=3D"http://aperture.sourceforge.net/index.html#development">Devel=
-opment</a></li>
-<li><a href=3D"http://aperture.sourceforge.net/license.html">License</a></li=
->
-</ul>
-
-<h2>Developed By</h2>
-
-<ul>
-<li><a href=3D"http://aduna.biz/">Aduna</a></li>
-<li><a href=3D"http://www.dfki.de/">DFKI</a></li>
-</ul>
-
-<h2>Site Info</h2>
-
-<p>
-Hosted by <a href=3D"http://sourceforge.net/">SourceForge.net</a>
-</p>
-
-<p>
-<a href=3D"http://sourceforge.net/"><img class=3D"logo" src=3D"index_files/s=
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-
-<p>
-<br>
-Graphical design by <a href=3D"http://www.pixul.net/">Pixul.net</a>. Used wi=
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-</p>
-
-</div> <!-- sideBar -->
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