coriolis/oroshi/doc/html/graph_legend.html

89 lines
5.2 KiB
HTML
Raw Normal View History

Analog integration part II. Analog place & route (slicing tree). * Change: In Hurricane::CellWidget, set the minimal size to 350 pixels to fit my normal DPI secondary screen... * Change: In Hurricane::Error(), reactivate the backtrace generation by default. Seriously slow down the program each time an Error is to be constructed. * Bug: In Analog::Device::preCreate(), check for NULL Technology before attempting to use it. * Change: In Hurricane/Analog, remove all '*Arguments*' classes and their Python interface. It was an obsoleted way of passing devices parameters to the Python layout generators (located in Oroshi). Now we just get them straight from the Device with the getParamter() method. * Change: In CRL::System CTOR, add Python pathes for Oroshi & Karakaze. * Change: In Oroshi/Python/WIP_*.py layout generator scripts, remove all uses of the "Arguments". Directly access the parameters through the device itself. Make the checkCoherency() with identical arguments as of layout(). * New: Bora tool that performs analog place & route. Based on a slicing tree representation. It is the thesis work of Eric Lao. Code beautyfication and some programming cleanup. * New: Karakaze tool, provide the Python base class AnalogDesign used to build an analog design. Create/configure devices and assemble them in a slicing tree. * Change: In Unicorn/cgt.py, display the stack trace in case of an ImportError exception as well as for other exceptions. Add Bora to the set for included tool engines.
2018-10-18 11:10:01 -05:00
<!DOCTYPE HTML PUBLIC '-//W3C//DTD HTML 4.0//EN'>
<html>
<head>
<meta http-equiv="Content-Type" content="text/html;charset=iso-8859-1">
<title>Oroshi Documentation</title>
<script type="text/javascript" src="jquery.js"></script>
<script type="text/javascript" src="dynsections.js"></script>
<link href="SoC.css" rel="stylesheet" type="text/css">
<link href="tabs.css" rel="stylesheet" type="text/css">
</head>
<h1 id="pagetop" class="header">Oroshi - Analog Devices Layouts</h1>
<!--
<center class="header">
<table class="header">
<tr>
<td><a href="customSummary.html">Summary</a></td>
<td><a href="namespaces.html">Namespaces</a></td>
<td><a href="customHierarchy.html">Class Hierarchy</a></td>
<td><a href="annotated.html">Classes</a></td>
<td><a href="functions.html">Member Index</a></td>
</tr>
</table>
</center>
-->
<br>
<body onload="javascript:toggleLevel(1)">
<!-- Generated by Doxygen 1.8.14 -->
<script type="text/javascript" src="menudata.js"></script>
<script type="text/javascript" src="menu.js"></script>
<script type="text/javascript">
/* @license magnet:?xt=urn:btih:cf05388f2679ee054f2beb29a391d25f4e673ac3&amp;dn=gpl-2.0.txt GPL-v2 */
$(function() {
initMenu('',false,false,'search.php','Search');
});
/* @license-end */</script>
<div id="main-nav"></div>
</div><!-- top -->
<div class="header">
<div class="headertitle">
<div class="title">Graph Legend</div> </div>
</div><!--header-->
<div class="contents">
<p>This page explains how to interpret the graphs that are generated by doxygen.</p>
<p>Consider the following example: </p><div class="fragment"><div class="line">/*! Invisible class because of truncation */</div><div class="line">class Invisible { };</div><div class="line"></div><div class="line">/*! Truncated class, inheritance relation is hidden */</div><div class="line">class Truncated : public Invisible { };</div><div class="line"></div><div class="line">/* Class not documented with doxygen comments */</div><div class="line">class Undocumented { };</div><div class="line"></div><div class="line">/*! Class that is inherited using public inheritance */</div><div class="line">class PublicBase : public Truncated { };</div><div class="line"></div><div class="line">/*! A template class */</div><div class="line">template&lt;class T&gt; class Templ { };</div><div class="line"></div><div class="line">/*! Class that is inherited using protected inheritance */</div><div class="line">class ProtectedBase { };</div><div class="line"></div><div class="line">/*! Class that is inherited using private inheritance */</div><div class="line">class PrivateBase { };</div><div class="line"></div><div class="line">/*! Class that is used by the Inherited class */</div><div class="line">class Used { };</div><div class="line"></div><div class="line">/*! Super class that inherits a number of other classes */</div><div class="line">class Inherited : public PublicBase,</div><div class="line"> protected ProtectedBase,</div><div class="line"> private PrivateBase,</div><div class="line"> public Undocumented,</div><div class="line"> public Templ&lt;int&gt;</div><div class="line">{</div><div class="line"> private:</div><div class="line"> Used *m_usedClass;</div><div class="line">};</div></div><!-- fragment --><p> This will result in the following graph:</p>
<center><div class="image">
<img src="graph_legend.png"/>
</div>
</center><p>The boxes in the above graph have the following meaning: </p>
<ul>
<li>
A filled gray box represents the struct or class for which the graph is generated. </li>
<li>
A box with a black border denotes a documented struct or class. </li>
<li>
A box with a gray border denotes an undocumented struct or class. </li>
<li>
A box with a red border denotes a documented struct or class forwhich not all inheritance/containment relations are shown. A graph is truncated if it does not fit within the specified boundaries. </li>
</ul>
<p>The arrows have the following meaning: </p>
<ul>
<li>
A dark blue arrow is used to visualize a public inheritance relation between two classes. </li>
<li>
A dark green arrow is used for protected inheritance. </li>
<li>
A dark red arrow is used for private inheritance. </li>
<li>
A purple dashed arrow is used if a class is contained or used by another class. The arrow is labelled with the variable(s) through which the pointed class or struct is accessible. </li>
<li>
A yellow dashed arrow denotes a relation between a template instance and the template class it was instantiated from. The arrow is labelled with the template parameters of the instance. </li>
</ul>
</div><!-- contents -->
<br>
<hr>
<table class="footer1">
<tr>
<td class="LFooter"><small>Generated by doxygen 1.8.14 on Sun Nov 21 2021</small></td>
Analog integration part II. Analog place & route (slicing tree). * Change: In Hurricane::CellWidget, set the minimal size to 350 pixels to fit my normal DPI secondary screen... * Change: In Hurricane::Error(), reactivate the backtrace generation by default. Seriously slow down the program each time an Error is to be constructed. * Bug: In Analog::Device::preCreate(), check for NULL Technology before attempting to use it. * Change: In Hurricane/Analog, remove all '*Arguments*' classes and their Python interface. It was an obsoleted way of passing devices parameters to the Python layout generators (located in Oroshi). Now we just get them straight from the Device with the getParamter() method. * Change: In CRL::System CTOR, add Python pathes for Oroshi & Karakaze. * Change: In Oroshi/Python/WIP_*.py layout generator scripts, remove all uses of the "Arguments". Directly access the parameters through the device itself. Make the checkCoherency() with identical arguments as of layout(). * New: Bora tool that performs analog place & route. Based on a slicing tree representation. It is the thesis work of Eric Lao. Code beautyfication and some programming cleanup. * New: Karakaze tool, provide the Python base class AnalogDesign used to build an analog design. Create/configure devices and assemble them in a slicing tree. * Change: In Unicorn/cgt.py, display the stack trace in case of an ImportError exception as well as for other exceptions. Add Bora to the set for included tool engines.
2018-10-18 11:10:01 -05:00
<td class="RFooter"><a href='#pagetop'><small>Return to top of page</small></a></td>
</tr>
</table>
<table class="footer2">
<tr>
<td class="LFooter">Oroshi - Analog Devices Layouts</td>
<td class="RFooter"><small>Copyright &#169; 2018-2020 Sorbonne Universite, All rights reserved</small></td>
Analog integration part II. Analog place & route (slicing tree). * Change: In Hurricane::CellWidget, set the minimal size to 350 pixels to fit my normal DPI secondary screen... * Change: In Hurricane::Error(), reactivate the backtrace generation by default. Seriously slow down the program each time an Error is to be constructed. * Bug: In Analog::Device::preCreate(), check for NULL Technology before attempting to use it. * Change: In Hurricane/Analog, remove all '*Arguments*' classes and their Python interface. It was an obsoleted way of passing devices parameters to the Python layout generators (located in Oroshi). Now we just get them straight from the Device with the getParamter() method. * Change: In CRL::System CTOR, add Python pathes for Oroshi & Karakaze. * Change: In Oroshi/Python/WIP_*.py layout generator scripts, remove all uses of the "Arguments". Directly access the parameters through the device itself. Make the checkCoherency() with identical arguments as of layout(). * New: Bora tool that performs analog place & route. Based on a slicing tree representation. It is the thesis work of Eric Lao. Code beautyfication and some programming cleanup. * New: Karakaze tool, provide the Python base class AnalogDesign used to build an analog design. Create/configure devices and assemble them in a slicing tree. * Change: In Unicorn/cgt.py, display the stack trace in case of an ImportError exception as well as for other exceptions. Add Bora to the set for included tool engines.
2018-10-18 11:10:01 -05:00
</tr>
</table>
</body>
</html>