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<h1 class="header-title text-uppercase">Stratus : Simulation Patterns</h1>
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<!-- -*- mode: rst; explicit-buffer-name: "Patterns_HTML.rst<pelican>" -*- -->
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<div class="section" id="printable-version-of-this-document">
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<h2><a class="toc-backref" href="#id8">Printable version of this Document</a></h2>
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<p class="topic-title first">Contents</p>
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<li><a class="reference internal" href="#printable-version-of-this-document" id="id8">Printable version of this Document</a></li>
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<li><a class="reference internal" href="#description" id="id9">Description</a></li>
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<li><a class="reference internal" href="#syntax" id="id10">Syntax</a></li>
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<li><a class="reference internal" href="#methods" id="id11">Methods</a></li>
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<li><a class="reference internal" href="#example" id="id12">Example</a></li>
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<div class="section" id="description">
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<h2><a class="toc-backref" href="#id9">Description</a></h2>
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<p>The patterns module of <em>Stratus</em> is a set of <em>Python</em> classes and
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methods that allows a procedural description of input pattern file for
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the logic simulator. The <em>Stratus</em> <tt class="docutils literal">Pattern</tt> method produces a pattern
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description file as output. The file generated by <tt class="docutils literal">Pattern</tt> method is
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in pat format, so IT IS STRONGLY RECOMMENDED TO SEE pat(5) manual BEFORE
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TO USE IT.</p>
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</div>
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<div class="section" id="syntax">
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<h2><a class="toc-backref" href="#id10">Syntax</a></h2>
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<p>From a user point of view, <tt class="docutils literal">Pattern</tt> method is a pattern description
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language using all standard <em>Python</em> facilities. Here follows the
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description of the <tt class="docutils literal">Pattern</tt> method.
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A pat format file can be divided in two parts : declaration and
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description part.
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The declaration part is the list of inputs, outputs, internal signals
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and registers. Inputs are to be forced to a certain value and all the
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others are to be observed during simulation.
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The description part is a set of patterns, where each pattern defines
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the value of inputs and outputs. The pattern number represents actually
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the absolute time for the simulator.
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Similarly, a <tt class="docutils literal">Pattern</tt> method can be divided in two parts :
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declaration and description part. Methods related to the declaration
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must be called before any function related to the description part.</p>
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<div class="section" id="declaration-part">
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<h3>Declaration part</h3>
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<p>The first thing you should do in this part is to instantiate the class
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<tt class="docutils literal">Patwrite</tt> to have access to all patterns declaration and description
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methods. The constructor of this class take as parameters the name of
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pattern output file and the <em>Stratus</em> cell that is described (see
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<tt class="docutils literal">PatWrite</tt> [patwrite]).
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Then, this part allows you to declare the inputs, the outputs, and
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internal observing points (see <tt class="docutils literal">declar</tt>[declar] and
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<tt class="docutils literal">declar_interface</tt> [declar:sub:<cite>i</cite>nterface]).</p>
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</div>
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<div class="section" id="description-part">
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<h3>Description part</h3>
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<p>After all signals are declared, you can begin the description part (see
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<tt class="docutils literal">pattern_begin</tt> [pattern:sub:<cite>b</cite>egin]). In this part you have to
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define input values which are to be applied to the inputs of the circuit
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or output values which are to be compare with the values produced during
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the simulation. (see <tt class="docutils literal">affect</tt> [affect], <tt class="docutils literal">affect_any</tt>
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[affect:sub:<cite>a</cite>ny], <tt class="docutils literal">affect_int</tt> [affect:sub:<cite>i</cite>nt] and
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<tt class="docutils literal">affect_fix</tt> [affect:sub:<cite>f</cite>ix]). <tt class="docutils literal">Pattern</tt> method describes the
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stimulus by event : only signal transitions are described. After each
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event there is a new input in the pattern file (see <tt class="docutils literal">addpat</tt>
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[addpat]). Last thing you should do in this part is to generate the
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output file (see <tt class="docutils literal">pattern_end</tt> [pattern:sub:<cite>e</cite>nd]).</p>
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</div>
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</div>
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<div class="section" id="methods">
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<h2><a class="toc-backref" href="#id11">Methods</a></h2>
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<div class="section" id="patwrite">
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<h3>PatWrite</h3>
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<p>This class is used to create patterns for <em>Stratus</em> models. Currently it
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only supports Alliance “.pat” pattern format. Patterns time stamps are
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in the “absolute date” format, “relative date” isn’t allowed. Legal time
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unit are ps (default), ns, us and ms. The constructor takes as
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parameters the pattern output filename and an optional reference to
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Stratus cell.</p>
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</div>
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<div class="section" id="declar">
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<h3>declar</h3>
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<p>Adds a connector from a Stratus model to the pattern interface. Writes
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the corresponding connector declaration in the pattern file with name,
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arity and direction automatically extracted from the connector
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properties.
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Supported Stratus connectors are:</p>
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<ul class="simple">
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<li>SignalIn,</li>
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<li>SignalOut (only supported if used as an output),</li>
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<li>VddIn,</li>
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<li>VssIn,</li>
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<li>CkIn,</li>
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<li>SignalInOut,</li>
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<li>TriState (always an output),</li>
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<li>Signals.</li>
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</ul>
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<div class="section" id="parameters">
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<h4>Parameters</h4>
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<ul class="simple">
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<li>connector : can either be a reference to a stratus net or a string
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containing the name of the stratus net.</li>
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<li>format : optional format for the connectors values into the pattern
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file, accepted values are :<ul>
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<li>’B’: binary (default),</li>
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<li>’X’: hexadecimal,</li>
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<li>’O’: octal.</li>
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</ul>
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</li>
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</ul>
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</div>
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</div>
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<div class="section" id="declar-interface">
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<h3>declar_interface</h3>
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<p>Adds all the connectors from a Stratus model to the pattern interface.
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Write the corresponding connector declaration in the pattern file with
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name, arity and direction directly taken from the connector proprieties.</p>
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<div class="section" id="id2">
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<h4>Parameters</h4>
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<ul class="simple">
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<li>cell : the tested Stratus model reference. Optional if a reference to
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||
the tested Stratus model was given during instanciation[patwrite].</li>
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<li>format : optional format for the connectors values into the pattern
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file, accepted values are :<ul>
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<li>’B’: binary (default),</li>
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<li>’X’: hexadecimal,</li>
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<li>’O’: octal.</li>
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</ul>
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</li>
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</ul>
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</div>
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</div>
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<div class="section" id="id3">
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<h3>declar</h3>
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<p>Affect a string value to a connector.</p>
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<div class="section" id="id4">
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<h4>Parameters</h4>
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<ul class="simple">
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<li>connector : <em>Stratus</em> connector</li>
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<li>value : string to affect to connector</li>
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</ul>
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</div>
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</div>
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<div class="section" id="affect-int">
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<h3>affect_int</h3>
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<p>Affect an integer (CA2) value to a connector. Convert the 2’s complement
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value to the corresponding binary value. The binary size is taken from
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the connector arity. If the connector is an output, the binary value is
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preceded by “?”.</p>
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<div class="section" id="id5">
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||
<h4>Parameters</h4>
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<ul class="simple">
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<li>connector : <em>Stratus</em> connector.</li>
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<li>value : 2’s complement value to affect to the connector.</li>
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</ul>
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</div>
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</div>
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<div class="section" id="affect-fix">
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<h3>affect_fix</h3>
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<p>Affect a fixed point value to a connector. Convert the floating point
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input value to the corresponding fixed point value with
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word_length=connector.arity() and integer_word_length=iwl. If the
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connector is an output, the binary value is preceded by “?”.</p>
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<div class="section" id="id6">
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<h4>Parameters</h4>
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<ul class="simple">
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<li>connector : <em>Stratus</em> connector.</li>
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<li>value : floating point value to convert and asign to connector.</li>
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<li>iwl : integer word length</li>
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</ul>
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</div>
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</div>
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<div class="section" id="affect-any">
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<h3>affect_any</h3>
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<p>Disable comparison between this connector value and the one calculated
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during simulation.</p>
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<div class="section" id="id7">
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<h4>Parameters</h4>
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<ul class="simple">
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<li>connector : <em>Stratus</em> connector.</li>
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</ul>
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</div>
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</div>
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<div class="section" id="addpat">
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<h3>addpat</h3>
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<p>Adds a pattern in the pattern file.</p>
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</div>
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<div class="section" id="pattern-begin">
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<h3>pattern_begin</h3>
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<p>Mark the end of the interface declaration and the beginning of the test
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vectors.</p>
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</div>
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<div class="section" id="pattern-end">
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<h3>pattern_end</h3>
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<p>Mark the end of the test vectors and of the patterns file.</p>
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</div>
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</div>
|
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<div class="section" id="example">
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<h2><a class="toc-backref" href="#id12">Example</a></h2>
|
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<p><tt class="docutils literal">Pattern</tt> method for an addaccu</p>
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<pre class="literal-block">
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def Pattern(self):
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# initialisation
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pat = PatWrite(self._name+'.pat',self)
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# declaration of ports
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pat.declar(self.ck, 'B')
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pat.declar(self.load, 'B')
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pat.declar(self.input, 'X')
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pat.declar(self.output, 'X')
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pat.declar(self.vdd, 'B')
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pat.declar(self.vss, 'B')
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# use of pat.declar_interface(self) has the same effect
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# description beginning
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pat.pattern_begin()
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# affect vdd and vss values
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pat.affect_int(self.vdd,1)
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pat.affect_int(self.vss,0)
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# first pattern : load an initial value
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pat.affect_int(self.input,5)
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pat.affect_int(self.load,1)
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pat.affect_int(self.ck,0)
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# add the pattern in the pattern file
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pat.addpat()
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# compute next event
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pat.affect_int(self.ck,1)
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pat.addpat()
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||
|
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# compute 22 cycle of accumulation
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||
pat.affect_int(self.load,0)
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||
for i in range(1,22):
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||
pat.affect_int(self.ck,0)
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||
pat.addpat()
|
||
pat.affect_int(self.ck,1)
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||
pat.affect_int(self.output,i+5)
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||
pat.addpat()
|
||
|
||
# end of the description
|
||
pat.pattern_end()
|
||
</pre>
|
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