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<pre id='vimCodeElement'>
<span id="L1" class="LineNr">  1 </span><span class="Comment">//: You guessed right: the '000' prefix means you should start reading here.</span>
<span id="L2" class="LineNr">  2 </span><span class="Comment">//:</span>
<span id="L3" class="LineNr">  3 </span><span class="Comment">//: This project is set up to load all files with a numeric prefix. Just</span>
<span id="L4" class="LineNr">  4 </span><span class="Comment">//: create a new file and start hacking.</span>
<span id="L5" class="LineNr">  5 </span><span class="Comment">//:</span>
<span id="L6" class="LineNr">  6 </span><span class="Comment">//: The first few files (00*) are independent of what this program does, an</span>
<span id="L7" class="LineNr">  7 </span><span class="Comment">//: experimental skeleton that will hopefully make it both easier for others to</span>
<span id="L8" class="LineNr">  8 </span><span class="Comment">//: understand and more malleable, easier to rewrite and remould into radically</span>
<span id="L9" class="LineNr">  9 </span><span class="Comment">//: different shapes without breaking in subtle corner cases. The premise is</span>
<span id="L10" class="LineNr"> 10 </span><span class="Comment">//: that understandability and rewrite-friendliness are related in a virtuous</span>
<span id="L11" class="LineNr"> 11 </span><span class="Comment">//: cycle. Doing one well makes it easier to do the other.</span>
<span id="L12" class="LineNr"> 12 </span><span class="Comment">//:</span>
<span id="L13" class="LineNr"> 13 </span><span class="Comment">//: Lower down, this file contains a legal, bare-bones C++ program. It doesn't</span>
<span id="L14" class="LineNr"> 14 </span><span class="Comment">//: do anything yet; subsequent files will contain :(...) directives to insert</span>
<span id="L15" class="LineNr"> 15 </span><span class="Comment">//: lines into it. For example:</span>
<span id="L16" class="LineNr"> 16 </span><span class="Comment">//:   :(after &quot;more events&quot;)</span>
<span id="L17" class="LineNr"> 17 </span><span class="Comment">//: This directive means: insert the following lines after a line in the</span>
<span id="L18" class="LineNr"> 18 </span><span class="Comment">//: program containing the words &quot;more events&quot;.</span>
<span id="L19" class="LineNr"> 19 </span><span class="Comment">//:</span>
<span id="L20" class="LineNr"> 20 </span><span class="Comment">//: A simple tool is included to 'tangle' all the files together in sequence</span>
<span id="L21" class="LineNr"> 21 </span><span class="Comment">//: according to their directives into a single source file containing all the</span>
<span id="L22" class="LineNr"> 22 </span><span class="Comment">//: code for the project, and then feed the source file to the compiler.</span>
<span id="L23" class="LineNr"> 23 </span><span class="Comment">//: (It'll drop these comments starting with a '//:' prefix that only make</span>
<span id="L24" class="LineNr"> 24 </span><span class="Comment">//: sense before tangling.)</span>
<span id="L25" class="LineNr"> 25 </span><span class="Comment">//:</span>
<span id="L26" class="LineNr"> 26 </span><span class="Comment">//: Directives free up the programmer to order code for others to read rather</span>
<span id="L27" class="LineNr"> 27 </span><span class="Comment">//: than as forced by the computer or compiler. Each individual feature can be</span>
<span id="L28" class="LineNr"> 28 </span><span class="Comment">//: organized in a self-contained 'layer' that adds code to many different data</span>
<span id="L29" class="LineNr"> 29 </span><span class="Comment">//: structures and functions all over the program. The right decomposition into</span>
<span id="L30" class="LineNr"> 30 </span><span class="Comment">//: layers will let each layer make sense in isolation.</span>
<span id="L31" class="LineNr"> 31 </span><span class="Comment">//:</span>
<span id="L32" class="LineNr"> 32 </span><span class="Comment">//:   &quot;If I look at any small part of it, I can see what is going on -- I don't</span>
<span id="L33" class="LineNr"> 33 </span><span class="Comment">//:   need to refer to other parts to understand what something is doing.</span>
<span id="L34" class="LineNr"> 34 </span><span class="Comment">//:</span>
<span id="L35" class="LineNr"> 35 </span><span class="Comment">//:   If I look at any large part in overview, I can see what is going on -- I</span>
<span id="L36" class="LineNr"> 36 </span><span class="Comment">//:   don't need to know all the details to get it.</span>
<span id="L37" class="LineNr"> 37 </span><span class="Comment">//:</span>
<span id="L38" class="LineNr"> 38 </span><span class="Comment">//:   Every level of detail is as locally coherent and as well thought-out as</span>
<span id="L39" class="LineNr"> 39 </span><span class="Comment">//:   any other level.&quot;</span>
<span id="L40" class="LineNr"> 40 </span><span class="Comment">//:</span>
<span id="L41" class="LineNr"> 41 </span><span class="Comment">//:       -- Richard Gabriel, &quot;The Quality Without A Name&quot;</span>
<span id="L42" class="LineNr"> 42 </span><span class="Comment">//:          (<a href="http://dreamsongs.com/Files/PatternsOfSoftware.pdf">http://dreamsongs.com/Files/PatternsOfSoftware.pdf</a>, page 42)</span>
<span id="L43" class="LineNr"> 43 </span><span class="Comment">//:</span>
<span id="L44" class="LineNr"> 44 </span><span class="Comment">//: Directives are powerful; they permit inserting or modifying any point in</span>
<span id="L45" class="LineNr"> 45 </span><span class="Comment">//: the program. Using them tastefully requires mapping out specific lines as</span>
<span id="L46" class="LineNr"> 46 </span><span class="Comment">//: waypoints for future layers to hook into. Often such waypoints will be in</span>
<span id="L47" class="LineNr"> 47 </span><span class="Comment">//: comments, capitalized to hint that other layers rely on their presence.</span>
<span id="L48" class="LineNr"> 48 </span><span class="Comment">//:</span>
<span id="L49" class="LineNr"> 49 </span><span class="Comment">//: A single waypoint might have many different code fragments hooking into</span>
<span id="L50" class="LineNr"> 50 </span><span class="Comment">//: it from all over the codebase. Use 'before' directives to insert</span>
<span id="L51" class="LineNr"> 51 </span><span class="Comment">//: code at a location in order, top to bottom, and 'after' directives to</span>
<span id="L52" class="LineNr"> 52 </span><span class="Comment">//: insert code in reverse order. By convention waypoints intended for insertion</span>
<span id="L53" class="LineNr"> 53 </span><span class="Comment">//: before begin with 'End'. Notice below how the layers line up above the &quot;End</span>
<span id="L54" class="LineNr"> 54 </span><span class="Comment">//: Foo&quot; waypoint.</span>
<span id="L55" class="LineNr"> 55 </span><span class="Comment">//:</span>
<span id="L56" class="LineNr"> 56 </span><span class="Comment">//:   File 001          File 002                File 003</span>
<span id="L57" class="LineNr"> 57 </span><span class="Comment">//:   ============      ===================     ===================</span>
<span id="L58" class="LineNr"> 58 </span><span class="Comment">//:   // Foo</span>
<span id="L59" class="LineNr"> 59 </span><span class="Comment">//:   ------------</span>
<span id="L60" class="LineNr"> 60 </span><span class="Comment">//:              &lt;----  :(before &quot;End Foo&quot;)</span>
<span id="L61" class="LineNr"> 61 </span><span class="Comment">//:                     ....</span>
<span id="L62" class="LineNr"> 62 </span><span class="Comment">//:                     ...</span>
<span id="L63" class="LineNr"> 63 </span><span class="Comment">//:   ------------</span>
<span id="L64" class="LineNr"> 64 </span><span class="Comment">//:              &lt;----------------------------  :(before &quot;End Foo&quot;)</span>
<span id="L65" class="LineNr"> 65 </span><span class="Comment">//:                                             ....</span>
<span id="L66" class="LineNr"> 66 </span><span class="Comment">//:                                             ...</span>
<span id="L67" class="LineNr"> 67 </span><span class="Comment">//:   // End Foo</span>
<span id="L68" class="LineNr"> 68 </span><span class="Comment">//:   ============</span>
<span id="L69" class="LineNr"> 69 </span><span class="Comment">//:</span>
<span id="L70" class="LineNr"> 70 </span><span class="Comment">//: Here's part of a layer in color: <a href="http://i.imgur.com/0eONnyX.png">http://i.imgur.com/0eONnyX.png</a>. Directives</span>
<span id="L71" class="LineNr"> 71 </span><span class="Comment">//: are shaded dark.</span>
<span id="L72" class="LineNr"> 72 </span><span class="Comment">//:</span>
<span id="L73" class="LineNr"> 73 </span><span class="Comment">//: Layers do more than just shuffle code around. In a well-organized codebase</span>
<span id="L74" class="LineNr"> 74 </span><span class="Comment">//: it should be possible to stop loading after any file/layer, build and run</span>
<span id="L75" class="LineNr"> 75 </span><span class="Comment">//: the program, and pass all tests for loaded features. (Relevant is</span>
<span id="L76" class="LineNr"> 76 </span><span class="Comment">//: <a href="http://youtube.com/watch?v=c8N72t7aScY">http://youtube.com/watch?v=c8N72t7aScY</a>, a scene from &quot;2001: A Space</span>
<span id="L77" class="LineNr"> 77 </span><span class="Comment">//: Odyssey&quot;.) Get into the habit of running the included script called</span>
<span id="L78" class="LineNr"> 78 </span><span class="Comment">//: 'test_layers' before you commit any changes.</span>
<span id="L79" class="LineNr"> 79 </span><span class="Comment">//:</span>
<span id="L80" class="LineNr"> 80 </span><span class="Comment">//: This 'subsetting guarantee' ensures that this directory contains a</span>
<span id="L81" class="LineNr"> 81 </span><span class="Comment">//: cleaned-up narrative of the evolution of this codebase. Organizing</span>
<span id="L82" class="LineNr"> 82 </span><span class="Comment">//: autobiographically allows newcomers to rapidly orient themselves, reading</span>
<span id="L83" class="LineNr"> 83 </span><span class="Comment">//: the first few files to understand a simple gestalt of a program's core</span>
<span id="L84" class="LineNr"> 84 </span><span class="Comment">//: purpose and features, and later gradually working their way through other</span>
<span id="L85" class="LineNr"> 85 </span><span class="Comment">//: features as the need arises.</span>
<span id="L86" class="LineNr"> 86 </span><span class="Comment">//:</span>
<span id="L87" class="LineNr"> 87 </span><span class="Comment">//: Programmers shouldn't need to understand everything about a program to</span>
<span id="L88" class="LineNr"> 88 </span><span class="Comment">//: hack on it. But they shouldn't be prevented from a thorough understanding</span>
<span id="L89" class="LineNr"> 89 </span><span class="Comment">//: of each aspect either. The goal of layers is to reward curiosity.</span>
<span id="L90" class="LineNr"> 90 </span><span class="Comment">//:</span>
<span id="L91" class="LineNr"> 91 </span><span class="Comment">//: More information: <a href="http://akkartik.name/post/wart-layers">http://akkartik.name/post/wart-layers</a></span>
<span id="L92" class="LineNr"> 92 </span>
<span id="L93" class="LineNr"> 93 </span><span class="Comment">// Includes</span>
<span id="L94" class="LineNr"> 94 </span><span class="Comment">// End Includes</span>
<span id="L95" class="LineNr"> 95 </span>
<span id="L96" class="LineNr"> 96 </span><span class="Comment">// Types</span>
<span id="L97" class="LineNr"> 97 </span><span class="Comment">// End Types</span>
<span id="L98" class="LineNr"> 98 </span>
<span id="L99" class="LineNr"> 99 </span><span class="Comment">// Function prototypes are auto-generated in the 'build' script; define your</span>
<span id="L100" class="LineNr">100 </span><span class="Comment">// functions in any order. Just be sure to declare each function header all on</span>
<span id="L101" class="LineNr">101 </span><span class="Comment">// one line, ending with the '{'. Our auto-generation scripts are too minimal</span>
<span id="L102" class="LineNr">102 </span><span class="Comment">// and simple-minded to handle anything else.</span>
<span id="L103" class="LineNr">103 </span><span class="PreProc">#include </span><span class="Constant">&quot;function_list&quot;</span>  <span class="Comment">// by convention, files ending with '_list' are auto-generated</span>
<span id="L104" class="LineNr">104 </span>
<span id="L105" class="LineNr">105 </span><span class="Comment">// Globals</span>
<span id="L106" class="LineNr">106 </span><span class="Comment">//</span>
<span id="L107" class="LineNr">107 </span><span class="Comment">// All statements in this section should always define a single variable on a</span>
<span id="L108" class="LineNr">108 </span><span class="Comment">// single line. The 'build' script will simple-mindedly auto-generate extern</span>
<span id="L109" class="LineNr">109 </span><span class="Comment">// declarations for them. Remember to define (not just declare) constants with</span>
<span id="L110" class="LineNr">110 </span><span class="Comment">// extern linkage in this section, since C++ global constants have internal</span>
<span id="L111" class="LineNr">111 </span><span class="Comment">// linkage by default.</span>
<span id="L112" class="LineNr">112 </span><span class="Comment">//</span>
<span id="L113" class="LineNr">113 </span><span class="Comment">// End Globals</span>
<span id="L114" class="LineNr">114 </span>
<span id="L115" class="LineNr">115 </span><span class="Normal">int</span> <a href='000organization.cc.html#L115'>main</a><span class="Delimiter">(</span><span class="Normal">int</span> argc<span class="Delimiter">,</span> <span class="Normal">char</span>* argv[]<span class="Delimiter">)</span> <span class="Delimiter">{</span>
<span id="L116" class="LineNr">116 </span>  atexit<span class="Delimiter">(</span><a href='000organization.cc.html#L150'>reset</a><span class="Delimiter">);</span>
<span id="L117" class="LineNr">117 </span>  <span class="Comment">// we require a 32-bit little-endian system</span>
<span id="L118" class="LineNr">118 </span>  assert<span class="Delimiter">(</span><span class="Normal">sizeof</span><span class="Delimiter">(</span><span class="Normal">int</span><span class="Delimiter">)</span> == <span class="Constant">4</span><span class="Delimiter">);</span>
<span id="L119" class="LineNr">119 </span>  assert<span class="Delimiter">(</span><span class="Normal">sizeof</span><span class="Delimiter">(</span><span class="Normal">float</span><span class="Delimiter">)</span> == <span class="Constant">4</span><span class="Delimiter">);</span>
<span id="L120" class="LineNr">120 </span>  <a href='000organization.cc.html#L154'>assert_little_endian</a><span class="Delimiter">();</span>
<span id="L121" class="LineNr">121 </span>
<span id="L122" class="LineNr">122 </span>  <span class="Comment">// End One-time Setup</span>
<span id="L123" class="LineNr">123 </span>
<span id="L124" class="LineNr">124 </span>  <span class="Comment">// Commandline Parsing</span>
<span id="L125" class="LineNr">125 </span>  <span class="Comment">// End Commandline Parsing</span>
<span id="L126" class="LineNr">126 </span>
<span id="L127" class="LineNr">127 </span>  <span class="Comment">// End Main</span>
<span id="L128" class="LineNr">128 </span>
<span id="L129" class="LineNr">129 </span>  <span class="Identifier">return</span> <span class="Constant">0</span><span class="Delimiter">;</span>
<span id="L130" class="LineNr">130 </span><span class="Delimiter">}</span>
<span id="L131" class="LineNr">131 </span>
<span id="L132" class="LineNr">132 </span><span class="Comment">// Unit Tests</span>
<span id="L133" class="LineNr">133 </span><span class="Comment">// End Unit Tests</span>
<span id="L134" class="LineNr">134 </span>
<span id="L135" class="LineNr">135 </span><span class="Comment">//: our first directive; insert the following headers at the start of the program</span>
<span id="L136" class="LineNr">136 </span><span class="Delimiter">:(before &quot;End Includes&quot;)</span>
<span id="L137" class="LineNr">137 </span><span class="PreProc">#include </span><span class="Constant">&lt;assert.h&gt;</span>
<span id="L138" class="LineNr">138 </span><span class="PreProc">#include </span><span class="Constant">&lt;stdlib.h&gt;</span>
<span id="L139" class="LineNr">139 </span>
<span id="L140" class="LineNr">140 </span><span class="Comment">//: Without directives or with the :(code) directive, lines get added at the</span>
<span id="L141" class="LineNr">141 </span><span class="Comment">//: end.</span>
<span id="L142" class="LineNr">142 </span><span class="Comment">//:</span>
<span id="L143" class="LineNr">143 </span><span class="Comment">//: Regardless of where functions are defined, we can call them anywhere we</span>
<span id="L144" class="LineNr">144 </span><span class="Comment">//: like as long as we format the function header in a specific way: put it</span>
<span id="L145" class="LineNr">145 </span><span class="Comment">//: all on a single line without indent, end the line with ') {' and no</span>
<span id="L146" class="LineNr">146 </span><span class="Comment">//: trailing whitespace. As long as functions uniformly start this way, our</span>
<span id="L147" class="LineNr">147 </span><span class="Comment">//: 'build' script contains a little command to automatically generate</span>
<span id="L148" class="LineNr">148 </span><span class="Comment">//: declarations for them.</span>
<span id="L149" class="LineNr">149 </span><span class="Delimiter">:(code)</span>
<span id="L150" class="LineNr">150 </span><span class="Normal">void</span> <a href='000organization.cc.html#L150'>reset</a><span class="Delimiter">()</span> <span class="Delimiter">{</span>
<span id="L151" class="LineNr">151 </span>  <span class="Comment">// End Reset</span>
<span id="L152" class="LineNr">152 </span><span class="Delimiter">}</span>
<span id="L153" class="LineNr">153 </span>
<span id="L154" class="LineNr">154 </span><span class="Normal">void</span> <a href='000organization.cc.html#L154'>assert_little_endian</a><span class="Delimiter">()</span> <span class="Delimiter">{</span>
<span id="L155" class="LineNr">155 </span>  <span class="Normal">const</span> <span class="Normal">int</span> x = <span class="Constant">1</span><span class="Delimiter">;</span>
<span id="L156" class="LineNr">156 </span>  <span class="Normal">const</span> <span class="Normal">char</span>* y = <span class="Normal">reinterpret_cast</span>&lt;<span class="Normal">const</span> <span class="Normal">char</span>*&gt;<span class="Delimiter">(</span>&amp;x<span class="Delimiter">);</span>
<span id="L157" class="LineNr">157 </span>  <span class="Normal">if</span> <span class="Delimiter">(</span>*y != <span class="Constant">1</span><span class="Delimiter">)</span> <span class="Delimiter">{</span>
<span id="L158" class="LineNr">158 </span>    cerr &lt;&lt; <span class="Constant">&quot;SubX requires a little-endian processor. Do you have Intel (or AMD or Atom) inside?\n&quot;</span><span class="Delimiter">;</span>
<span id="L159" class="LineNr">159 </span>    exit<span class="Delimiter">(</span><span class="Constant">1</span><span class="Delimiter">);</span>
<span id="L160" class="LineNr">160 </span>  <span class="Delimiter">}</span>
<span id="L161" class="LineNr">161 </span><span class="Delimiter">}</span>
<span id="L162" class="LineNr">162 </span><span class="Delimiter">:(before &quot;End Includes&quot;)</span>
<span id="L163" class="LineNr">163 </span><span class="PreProc">#include</span><span class="Constant">&lt;iostream&gt;</span>
<span id="L164" class="LineNr">164 </span><span class="Normal">using</span> std::cerr<span class="Delimiter">;</span>
</pre>
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an>type<span class="Delimiter">-&gt;</span>atom || product<span class="Delimiter">.</span>type<span class="Delimiter">-&gt;</span>left<span class="Delimiter">-&gt;</span>value != get<span class="Delimiter">(</span>Type_ordinal<span class="Delimiter">,</span> <span class="Constant">&quot;array&quot;</span><span class="Delimiter">))</span> <span class="Identifier">return</span> <span class="Constant">false</span><span class="Delimiter">;</span> drop_from_type<span class="Delimiter">(</span>product<span class="Delimiter">,</span> <span class="Constant">&quot;array&quot;</span><span class="Delimiter">);</span> <span class="Delimiter">}</span> reagent<span class="Comment">/*</span><span class="Comment">copy</span><span class="Comment">*/</span> expected_product<span class="Delimiter">(</span><span class="Constant">&quot;x:&quot;</span>+inst<span class="Delimiter">.</span>ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>name<span class="Delimiter">);</span> <span class="Delimiter">{</span> string_tree* tmp_type_names = parse_string_tree<span class="Delimiter">(</span>expected_product<span class="Delimiter">.</span>type<span class="Delimiter">-&gt;</span>name<span class="Delimiter">);</span> <span class="Normal">delete</span> expected_product<span class="Delimiter">.</span>type<span class="Delimiter">;</span> expected_product<span class="Delimiter">.</span>type = new_type_tree<span class="Delimiter">(</span>tmp_type_names<span class="Delimiter">);</span> <span class="Normal">delete</span> tmp_type_names<span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Identifier">return</span> types_strictly_match<span class="Delimiter">(</span>product<span class="Delimiter">,</span> expected_product<span class="Delimiter">);</span> <span class="Delimiter">}</span> <span class="Normal">void</span> drop_from_type<span class="Delimiter">(</span>reagent&amp; r<span class="Delimiter">,</span> string expected_type<span class="Delimiter">)</span> <span class="Delimiter">{</span> assert<span class="Delimiter">(</span>!r<span class="Delimiter">.</span>type<span class="Delimiter">-&gt;</span>atom<span class="Delimiter">);</span> <span class="Normal">if</span> <span class="Delimiter">(</span>r<span class="Delimiter">.</span>type<span class="Delimiter">-&gt;</span>left<span class="Delimiter">-&gt;</span>name != expected_type<span class="Delimiter">)</span> <span class="Delimiter">{</span> raise &lt;&lt; <span class="Constant">&quot;can't drop2 &quot;</span> &lt;&lt; expected_type &lt;&lt; <span class="Constant">&quot; from '&quot;</span> &lt;&lt; to_string<span class="Delimiter">(</span>r<span class="Delimiter">)</span> &lt;&lt; <span class="Constant">&quot;'</span><span class="cSpecial">\n</span><span class="Constant">&quot;</span> &lt;&lt; end<span class="Delimiter">();</span> <span class="Identifier">return</span><span class="Delimiter">;</span> <span class="Delimiter">}</span> type_tree* tmp = r<span class="Delimiter">.</span>type<span class="Delimiter">;</span> r<span class="Delimiter">.</span>type = tmp<span class="Delimiter">-&gt;</span>right<span class="Delimiter">;</span> tmp<span class="Delimiter">-&gt;</span>right = <span class="Constant">NULL</span><span class="Delimiter">;</span> <span class="Normal">delete</span> tmp<span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Comment">//: To implement 'new', a Mu transform turns all 'new' instructions into</span> <span class="Comment">//: 'allocate' instructions that precompute the amount of memory they want to</span> <span class="Comment">//: allocate.</span> <span class="Comment">//: Ensure that we never call 'allocate' directly, and that there's no 'new'</span> <span class="Comment">//: instructions left after the transforms have run.</span> <span class="Delimiter">:(before &quot;End Primitive Recipe Checks&quot;)</span> <span class="Normal">case</span> ALLOCATE: <span class="Delimiter">{</span> raise &lt;&lt; <span class="Constant">&quot;never call 'allocate' directly'; always use 'new'</span><span class="cSpecial">\n</span><span class="Constant">&quot;</span> &lt;&lt; end<span class="Delimiter">();</span> <span class="Identifier">break</span><span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Delimiter">:(before &quot;End Primitive Recipe Implementations&quot;)</span> <span class="Normal">case</span> NEW: <span class="Delimiter">{</span> raise &lt;&lt; <span class="Constant">&quot;no implementation for 'new'; why wasn't it translated to 'allocate'? Please save a copy of your program and send it to Kartik.</span><span class="cSpecial">\n</span><span class="Constant">&quot;</span> &lt;&lt; end<span class="Delimiter">();</span> <span class="Identifier">break</span><span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Delimiter">:(after &quot;Transform.push_back(check_instruction)&quot;)</span> <span class="Comment">// check_instruction will guard against direct 'allocate' instructions below</span> Transform<span class="Delimiter">.</span>push_back<span class="Delimiter">(</span>transform_new_to_allocate<span class="Delimiter">);</span> <span class="Comment">// idempotent</span> <span class="Delimiter">:(code)</span> <span class="Normal">void</span> transform_new_to_allocate<span class="Delimiter">(</span><span class="Normal">const</span> recipe_ordinal r<span class="Delimiter">)</span> <span class="Delimiter">{</span> trace<span class="Delimiter">(</span><span class="Constant">9991</span><span class="Delimiter">,</span> <span class="Constant">&quot;transform&quot;</span><span class="Delimiter">)</span> &lt;&lt; <span class="Constant">&quot;--- convert 'new' to 'allocate' for recipe &quot;</span> &lt;&lt; get<span class="Delimiter">(</span>Recipe<span class="Delimiter">,</span> r<span class="Delimiter">).</span>name &lt;&lt; end<span class="Delimiter">();</span> <span class="Normal">for</span> <span class="Delimiter">(</span><span class="Normal">int</span> i = <span class="Constant">0</span><span class="Delimiter">;</span> i &lt; SIZE<span class="Delimiter">(</span>get<span class="Delimiter">(</span>Recipe<span class="Delimiter">,</span> r<span class="Delimiter">).</span>steps<span class="Delimiter">);</span> ++i<span class="Delimiter">)</span> <span class="Delimiter">{</span> instruction&amp; inst = get<span class="Delimiter">(</span>Recipe<span class="Delimiter">,</span> r<span class="Delimiter">).</span>steps<span class="Delimiter">.</span>at<span class="Delimiter">(</span>i<span class="Delimiter">);</span> <span class="Comment">// Convert 'new' To 'allocate'</span> <span class="Normal">if</span> <span class="Delimiter">(</span>inst<span class="Delimiter">.</span>name == <span class="Constant">&quot;new&quot;</span><span class="Delimiter">)</span> <span class="Delimiter">{</span> inst<span class="Delimiter">.</span>operation = ALLOCATE<span class="Delimiter">;</span> string_tree* type_name = <span class="Normal">new</span> string_tree<span class="Delimiter">(</span>inst<span class="Delimiter">.</span>ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>name<span class="Delimiter">);</span> type_name = parse_string_tree<span class="Delimiter">(</span>type_name<span class="Delimiter">);</span> type_tree* type = new_type_tree<span class="Delimiter">(</span>type_name<span class="Delimiter">);</span> inst<span class="Delimiter">.</span>ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>set_value<span class="Delimiter">(</span>size_of<span class="Delimiter">(</span>type<span class="Delimiter">));</span> trace<span class="Delimiter">(</span><span class="Constant">9992</span><span class="Delimiter">,</span> <span class="Constant">&quot;new&quot;</span><span class="Delimiter">)</span> &lt;&lt; <span class="Constant">&quot;size of &quot;</span> &lt;&lt; to_string<span class="Delimiter">(</span>type_name<span class="Delimiter">)</span> &lt;&lt; <span class="Constant">&quot; is &quot;</span> &lt;&lt; inst<span class="Delimiter">.</span>ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>value &lt;&lt; end<span class="Delimiter">();</span> <span class="Normal">delete</span> type<span class="Delimiter">;</span> <span class="Normal">delete</span> type_name<span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Delimiter">}</span> <span class="Delimiter">}</span> <span class="Comment">//: implement 'allocate' based on size</span> <span class="Delimiter">:(before &quot;End Globals&quot;)</span> <span class="Normal">extern</span> <span class="Normal">const</span> <span class="Normal">int</span> Reserved_for_tests = <span class="Constant">1000</span><span class="Delimiter">;</span> <span class="Normal">int</span> Memory_allocated_until = Reserved_for_tests<span class="Delimiter">;</span> <span class="Normal">int</span> Initial_memory_per_routine = <span class="Constant">100000</span><span class="Delimiter">;</span> <span class="Delimiter">:(before &quot;End Setup&quot;)</span> Memory_allocated_until = Reserved_for_tests<span class="Delimiter">;</span> Initial_memory_per_routine = <span class="Constant">100000</span><span class="Delimiter">;</span> <span class="Delimiter">:(before &quot;End routine Fields&quot;)</span> <span class="Normal">int</span> alloc<span class="Delimiter">,</span> alloc_max<span class="Delimiter">;</span> <span class="Delimiter">:(before &quot;End routine Constructor&quot;)</span> alloc = Memory_allocated_until<span class="Delimiter">;</span> Memory_allocated_until += Initial_memory_per_routine<span class="Delimiter">;</span> alloc_max = Memory_allocated_until<span class="Delimiter">;</span> trace<span class="Delimiter">(</span><span class="Constant">9999</span><span class="Delimiter">,</span> <span class="Constant">&quot;new&quot;</span><span class="Delimiter">)</span> &lt;&lt; <span class="Constant">&quot;routine allocated memory from &quot;</span> &lt;&lt; alloc &lt;&lt; <span class="Constant">&quot; to &quot;</span> &lt;&lt; alloc_max &lt;&lt; end<span class="Delimiter">();</span> <span class="Delimiter">:(before &quot;End Primitive Recipe Declarations&quot;)</span> ALLOCATE<span class="Delimiter">,</span> <span class="Delimiter">:(before &quot;End Primitive Recipe Numbers&quot;)</span> put<span class="Delimiter">(</span>Recipe_ordinal<span class="Delimiter">,</span> <span class="Constant">&quot;allocate&quot;</span><span class="Delimiter">,</span> ALLOCATE<span class="Delimiter">);</span> <span class="Delimiter">:(before &quot;End Primitive Recipe Implementations&quot;)</span> <span class="Normal">case</span> ALLOCATE: <span class="Delimiter">{</span> <span class="Comment">// compute the space we need</span> <span class="Normal">int</span> size = ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">);</span> <span class="Normal">if</span> <span class="Delimiter">(</span>SIZE<span class="Delimiter">(</span>ingredients<span class="Delimiter">)</span> &gt; <span class="Constant">1</span><span class="Delimiter">)</span> <span class="Delimiter">{</span> <span class="Comment">// array allocation</span> trace<span class="Delimiter">(</span><span class="Constant">9999</span><span class="Delimiter">,</span> <span class="Constant">&quot;mem&quot;</span><span class="Delimiter">)</span> &lt;&lt; <span class="Constant">&quot;array length is &quot;</span> &lt;&lt; ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">1</span><span class="Delimiter">).</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">)</span> &lt;&lt; end<span class="Delimiter">();</span> size = <span class="Comment">/*</span><span class="Comment">space for length</span><span class="Comment">*/</span><span class="Constant">1</span> + size*ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">1</span><span class="Delimiter">).</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">);</span> <span class="Delimiter">}</span> <span class="Normal">int</span> result = allocate<span class="Delimiter">(</span>size<span class="Delimiter">);</span> <span class="Normal">if</span> <span class="Delimiter">(</span>SIZE<span class="Delimiter">(</span>current_instruction<span class="Delimiter">().</span>ingredients<span class="Delimiter">)</span> &gt; <span class="Constant">1</span><span class="Delimiter">)</span> <span class="Delimiter">{</span> <span class="Comment">// initialize array length</span> trace<span class="Delimiter">(</span><span class="Constant">9999</span><span class="Delimiter">,</span> <span class="Constant">&quot;mem&quot;</span><span class="Delimiter">)</span> &lt;&lt; <span class="Constant">&quot;storing &quot;</span> &lt;&lt; ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">1</span><span class="Delimiter">).</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">)</span> &lt;&lt; <span class="Constant">&quot; in location &quot;</span> &lt;&lt; result+<span class="Comment">/*</span><span class="Comment">skip refcount</span><span class="Comment">*/</span><span class="Constant">1</span> &lt;&lt; end<span class="Delimiter">();</span> put<span class="Delimiter">(</span>Memory<span class="Delimiter">,</span> result+<span class="Comment">/*</span><span class="Comment">skip refcount</span><span class="Comment">*/</span><span class="Constant">1</span><span class="Delimiter">,</span> ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">1</span><span class="Delimiter">).</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">));</span> <span class="Delimiter">}</span> products<span class="Delimiter">.</span>resize<span class="Delimiter">(</span><span class="Constant">1</span><span class="Delimiter">);</span> products<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>push_back<span class="Delimiter">(</span>result<span class="Delimiter">);</span> <span class="Identifier">break</span><span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Delimiter">:(code)</span> <span class="Normal">int</span> allocate<span class="Delimiter">(</span><span class="Normal">int</span> size<span class="Delimiter">)</span> <span class="Delimiter">{</span> <span class="Comment">// include space for refcount</span> ++size<span class="Delimiter">;</span> trace<span class="Delimiter">(</span><span class="Constant">9999</span><span class="Delimiter">,</span> <span class="Constant">&quot;mem&quot;</span><span class="Delimiter">)</span> &lt;&lt; <span class="Constant">&quot;allocating size &quot;</span> &lt;&lt; size &lt;&lt; end<span class="Delimiter">();</span> <span class="CommentedCode">//? Total_alloc += size;</span> <span class="CommentedCode">//? ++Num_alloc;</span> <span class="Comment">// Allocate Special-cases</span> <span class="Comment">// compute the region of memory to return</span> <span class="Comment">// really crappy at the moment</span> ensure_space<span class="Delimiter">(</span>size<span class="Delimiter">);</span> <span class="Normal">const</span> <span class="Normal">int</span> result = Current_routine<span class="Delimiter">-&gt;</span>alloc<span class="Delimiter">;</span> trace<span class="Delimiter">(</span><span class="Constant">9999</span><span class="Delimiter">,</span> <span class="Constant">&quot;mem&quot;</span><span class="Delimiter">)</span> &lt;&lt; <span class="Constant">&quot;new alloc: &quot;</span> &lt;&lt; result &lt;&lt; end<span class="Delimiter">();</span> <span class="Comment">// initialize allocated space</span> <span class="Normal">for</span> <span class="Delimiter">(</span><span class="Normal">int</span> address = result<span class="Delimiter">;</span> address &lt; result+size<span class="Delimiter">;</span> ++address<span class="Delimiter">)</span> <span class="Delimiter">{</span> trace<span class="Delimiter">(</span><span class="Constant">9999</span><span class="Delimiter">,</span> <span class="Constant">&quot;mem&quot;</span><span class="Delimiter">)</span> &lt;&lt; <span class="Constant">&quot;storing 0 in location &quot;</span> &lt;&lt; address &lt;&lt; end<span class="Delimiter">();</span> put<span class="Delimiter">(</span>Memory<span class="Delimiter">,</span> address<span class="Delimiter">,</span> <span class="Constant">0</span><span class="Delimiter">);</span> <span class="Delimiter">}</span> Current_routine<span class="Delimiter">-&gt;</span>alloc += size<span class="Delimiter">;</span> <span class="Comment">// no support yet for reclaiming memory between routines</span> assert<span class="Delimiter">(</span>Current_routine<span class="Delimiter">-&gt;</span>alloc &lt;= Current_routine<span class="Delimiter">-&gt;</span>alloc_max<span class="Delimiter">);</span> <span class="Identifier">return</span> result<span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Comment">//: statistics for debugging</span> <span class="CommentedCode">//? :(before &quot;End Globals&quot;)</span> <span class="CommentedCode">//? int Total_alloc = 0;</span> <span class="CommentedCode">//? int Num_alloc = 0;</span> <span class="CommentedCode">//? int Total_free = 0;</span> <span class="CommentedCode">//? int Num_free = 0;</span> <span class="CommentedCode">//? :(before &quot;End Setup&quot;)</span> <span class="CommentedCode">//? Total_alloc = Num_alloc = Total_free = Num_free = 0;</span> <span class="CommentedCode">//? :(before &quot;End Teardown&quot;)</span> <span class="CommentedCode">//? cerr &lt;&lt; Total_alloc &lt;&lt; &quot;/&quot; &lt;&lt; Num_alloc</span> <span class="CommentedCode">//? &lt;&lt; &quot; vs &quot; &lt;&lt; Total_free &lt;&lt; &quot;/&quot; &lt;&lt; Num_free &lt;&lt; '\n';</span> <span class="CommentedCode">//? cerr &lt;&lt; SIZE(Memory) &lt;&lt; '\n';</span> <span class="Delimiter">:(code)</span> <span class="Normal">void</span> ensure_space<span class="Delimiter">(</span><span class="Normal">int</span> size<span class="Delimiter">)</span> <span class="Delimiter">{</span> <span class="Normal">if</span> <span class="Delimiter">(</span>size &gt; Initial_memory_per_routine<span class="Delimiter">)</span> <span class="Delimiter">{</span> tb_shutdown<span class="Delimiter">();</span> cerr &lt;&lt; <span class="Constant">&quot;can't allocate &quot;</span> &lt;&lt; size &lt;&lt; <span class="Constant">&quot; locations, that's too much compared to &quot;</span> &lt;&lt; Initial_memory_per_routine &lt;&lt; <span class="Constant">&quot;.</span><span class="cSpecial">\n</span><span class="Constant">&quot;</span><span class="Delimiter">;</span> exit<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">);</span> <span class="Delimiter">}</span> <span class="Normal">if</span> <span class="Delimiter">(</span>Current_routine<span class="Delimiter">-&gt;</span>alloc + size &gt; Current_routine<span class="Delimiter">-&gt;</span>alloc_max<span class="Delimiter">)</span> <span class="Delimiter">{</span> <span class="Comment">// waste the remaining space and create a new chunk</span> Current_routine<span class="Delimiter">-&gt;</span>alloc = Memory_allocated_until<span class="Delimiter">;</span> Memory_allocated_until += Initial_memory_per_routine<span class="Delimiter">;</span> Current_routine<span class="Delimiter">-&gt;</span>alloc_max = Memory_allocated_until<span class="Delimiter">;</span> trace<span class="Delimiter">(</span><span class="Constant">9999</span><span class="Delimiter">,</span> <span class="Constant">&quot;new&quot;</span><span class="Delimiter">)</span> &lt;&lt; <span class="Constant">&quot;routine allocated memory from &quot;</span> &lt;&lt; Current_routine<span class="Delimiter">-&gt;</span>alloc &lt;&lt; <span class="Constant">&quot; to &quot;</span> &lt;&lt; Current_routine<span class="Delimiter">-&gt;</span>alloc_max &lt;&lt; end<span class="Delimiter">();</span> <span class="Delimiter">}</span> <span class="Delimiter">}</span> <span class="Delimiter">:(scenario new_initializes)</span> <span class="Special">% Memory_allocated_until = 10;</span> <span class="Special">% put(Memory, Memory_allocated_until, 1);</span> <span class="muRecipe">def</span> main [ <span class="Constant">1</span>:address:num<span class="Special"> &lt;- </span><span class="Normal">new</span> <span class="Constant">number:type</span> ] <span class="traceContains">+mem: storing 0 in location 10</span> <span class="Delimiter">:(scenario new_array)</span> <span class="muRecipe">def</span> main [ <span class="Constant">1</span>:address:array:num/<span class="Special">raw &lt;- </span><span class="Normal">new</span> <span class="Constant">number:type</span><span class="Delimiter">,</span> <span class="Constant">5</span> <span class="Constant">2</span>:address:num/<span class="Special">raw &lt;- </span><span class="Normal">new</span> <span class="Constant">number:type</span> <span class="Constant">3</span>:num/<span class="Special">raw &lt;- </span>subtract <span class="Constant">2</span>:address:num/<span class="Special">raw</span><span class="Delimiter">,</span> <span class="Constant">1</span>:address:array:num/<span class="Special">raw</span> ] <span class="traceContains">+run: {1: (&quot;address&quot; &quot;array&quot; &quot;number&quot;), &quot;raw&quot;: ()} &lt;- new {number: &quot;type&quot;}, {5: &quot;literal&quot;}</span> <span class="traceContains">+mem: array length is 5</span> <span class="Comment"># don't forget the extra location for array length, and the second extra location for the refcount</span> <span class="traceContains">+mem: storing 7 in location 3</span> <span class="Delimiter">:(scenario new_empty_array)</span> <span class="muRecipe">def</span> main [ <span class="Constant">1</span>:address:array:num/<span class="Special">raw &lt;- </span><span class="Normal">new</span> <span class="Constant">number:type</span><span class="Delimiter">,</span> <span class="Constant">0</span> <span class="Constant">2</span>:address:num/<span class="Special">raw &lt;- </span><span class="Normal">new</span> <span class="Constant">number:type</span> <span class="Constant">3</span>:num/<span class="Special">raw &lt;- </span>subtract <span class="Constant">2</span>:address:num/<span class="Special">raw</span><span class="Delimiter">,</span> <span class="Constant">1</span>:address:array:num/<span class="Special">raw</span> ] <span class="traceContains">+run: {1: (&quot;address&quot; &quot;array&quot; &quot;number&quot;), &quot;raw&quot;: ()} &lt;- new {number: &quot;type&quot;}, {0: &quot;literal&quot;}</span> <span class="traceContains">+mem: array length is 0</span> <span class="Comment"># one location for array length, and one for the refcount</span> <span class="traceContains">+mem: storing 2 in location 3</span> <span class="Comment">//: If a routine runs out of its initial allocation, it should allocate more.</span> <span class="Delimiter">:(scenario new_overflow)</span> <span class="Special">% Initial_memory_per_routine = 3; // barely enough room for point allocation below</span> <span class="muRecipe">def</span> main [ <span class="Constant">1</span>:address:num/<span class="Special">raw &lt;- </span><span class="Normal">new</span> <span class="Constant">number:type</span> <span class="Constant">2</span>:address:point/<span class="Special">raw &lt;- </span><span class="Normal">new</span> <span class="Constant">point:type</span> <span class="Comment"># not enough room in initial page</span> ] <span class="traceContains">+new: routine allocated memory from 1000 to 1003</span> <span class="traceContains">+new: routine allocated memory from 1003 to 1006</span> </pre> </body> </html> <!-- vim: set foldmethod=manual : -->