<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.01//EN" "http://www.w3.org/TR/html4/strict.dtd"> <html> <head> <meta http-equiv="content-type" content="text/html; charset=UTF-8"> <title>Mu - 043new.cc</title> <meta name="Generator" content="Vim/7.4"> <meta name="plugin-version" content="vim7.4_v1"> <meta name="syntax" content="cpp"> <meta name="settings" content="use_css,pre_wrap,no_foldcolumn,expand_tabs,prevent_copy="> <meta name="colorscheme" content="minimal"> <style type="text/css"> <!-- pre { white-space: pre-wrap; font-family: monospace; color: #eeeeee; background-color: #080808; } body { font-family: monospace; color: #eeeeee; background-color: #080808; } * { font-size: 1.05em; } .cSpecial { color: #008000; } .SalientComment { color: #00ffff; } .traceContains { color: #008000; } .CommentedCode { color: #6c6c6c; } .Comment { color: #9090ff; } .Delimiter { color: #a04060; } .Special { color: #ff6060; } .Identifier { color: #804000; } .Constant { color: #00a0a0; } --> </style> <script type='text/javascript'> <!-- --> </script> </head> <body> <pre id='vimCodeElement'> <span class="Comment">//: A simple memory allocator to create space for new variables at runtime.</span> <span class="Delimiter">:(scenarios run)</span> <span class="Delimiter">:(scenario new)</span> <span class="Comment"># call new two times with identical arguments; you should get back different results</span> recipe main [ <span class="Constant">1</span>:address:number/<span class="Special">raw <- </span>new number:type <span class="Constant">2</span>:address:number/<span class="Special">raw <- </span>new number:type <span class="Constant">3</span>:boolean/<span class="Special">raw <- </span>equal <span class="Constant">1</span>:address:number/<span class="Special">raw</span><span class="Delimiter">,</span> <span class="Constant">2</span>:address:number/<span class="Special">raw</span> ] <span class="traceContains">+mem: storing 0 in location 3</span> <span class="Delimiter">:(before "End Globals")</span> long long int Memory_allocated_until = Reserved_for_tests<span class="Delimiter">;</span> long long int Initial_memory_per_routine = <span class="Constant">100000</span><span class="Delimiter">;</span> <span class="Delimiter">:(before "End Setup")</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 "End routine Fields")</span> long long int alloc<span class="Delimiter">,</span> alloc_max<span class="Delimiter">;</span> <span class="Delimiter">:(before "End routine Constructor")</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>Primitive_recipe_depth<span class="Delimiter">,</span> <span class="Constant">"new"</span><span class="Delimiter">)</span> << <span class="Constant">"routine allocated memory from "</span> << alloc << <span class="Constant">" to "</span> << alloc_max << end<span class="Delimiter">();</span> <span class="SalientComment">//:: First handle 'type' operands.</span> <span class="Delimiter">:(before "End Mu Types Initialization")</span> Type_ordinal[<span class="Constant">"type"</span>] = <span class="Constant">0</span><span class="Delimiter">;</span> <span class="Delimiter">:(after "Per-recipe Transforms")</span> <span class="Comment">// replace type names with type_ordinals</span> if <span class="Delimiter">(</span>inst<span class="Delimiter">.</span>operation == Recipe_ordinal[<span class="Constant">"new"</span>]<span class="Delimiter">)</span> <span class="Delimiter">{</span> <span class="Comment">// End NEW Transform Special-cases</span> <span class="Comment">// first arg must be of type 'type'</span> if <span class="Delimiter">(</span>inst<span class="Delimiter">.</span>ingredients<span class="Delimiter">.</span>empty<span class="Delimiter">())</span> raise << Recipe[r]<span class="Delimiter">.</span>name << <span class="Constant">": 'new' expects one or two ingredients</span><span class="cSpecial">\n</span><span class="Constant">"</span> << end<span class="Delimiter">();</span> if <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>properties<span class="Delimiter">.</span>empty<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>properties<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>second<span class="Delimiter">.</span>empty<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>properties<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>second<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">)</span> != <span class="Constant">"type"</span><span class="Delimiter">)</span> raise << Recipe[r]<span class="Delimiter">.</span>name << <span class="Constant">": first ingredient of 'new' should be a type, but got "</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>original_string << <span class="cSpecial">'\n'</span> << end<span class="Delimiter">();</span> if <span class="Delimiter">(</span>Type_ordinal<span class="Delimiter">.</span>find<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_ordinal<span class="Delimiter">.</span>end<span class="Delimiter">())</span> raise << Recipe[r]<span class="Delimiter">.</span>name << <span class="Constant">": unknown type "</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="cSpecial">'\n'</span> << end<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>Type_ordinal[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> trace<span class="Delimiter">(</span>Primitive_recipe_depth<span class="Delimiter">,</span> <span class="Constant">"new"</span><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="Constant">" -> "</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 << end<span class="Delimiter">();</span> end_new_transform:<span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="SalientComment">//:: Now implement the primitive recipe.</span> <span class="Comment">//: todo: build 'new' in mu itself</span> <span class="Delimiter">:(before "End Primitive Recipe Declarations")</span> NEW<span class="Delimiter">,</span> <span class="Delimiter">:(before "End Primitive Recipe Numbers")</span> Recipe_ordinal[<span class="Constant">"new"</span>] = NEW<span class="Delimiter">;</span> <span class="Delimiter">:(before "End Primitive Recipe Implementations")</span> case NEW: <span class="Delimiter">{</span> if <span class="Delimiter">(</span>ingredients<span class="Delimiter">.</span>empty<span class="Delimiter">()</span> || SIZE<span class="Delimiter">(</span>ingredients<span class="Delimiter">)</span> > <span class="Constant">2</span><span class="Delimiter">)</span> <span class="Delimiter">{</span> raise << current_recipe_name<span class="Delimiter">()</span> << <span class="Constant">": 'new' requires one or two ingredients, but got "</span> << current_instruction<span class="Delimiter">().</span>to_string<span class="Delimiter">()</span> << <span class="cSpecial">'\n'</span> << end<span class="Delimiter">();</span> <span class="Identifier">break</span><span class="Delimiter">;</span> <span class="Delimiter">}</span> if <span class="Delimiter">(</span>!scalar<span class="Delimiter">(</span>ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">)))</span> <span class="Delimiter">{</span> raise << current_recipe_name<span class="Delimiter">()</span> << <span class="Constant">": first ingredient of 'new' should be a type, but got "</span> << current_instruction<span class="Delimiter">().</span>ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>original_string << <span class="cSpecial">'\n'</span> << end<span class="Delimiter">();</span> <span class="Identifier">break</span><span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Comment">// compute the space we need</span> long long int size = <span class="Constant">0</span><span class="Delimiter">;</span> long long int array_length = <span class="Constant">0</span><span class="Delimiter">;</span> <span class="Delimiter">{</span> vector<type_ordinal> type<span class="Delimiter">;</span> type<span class="Delimiter">.</span>push_back<span class="Delimiter">(</span>current_instruction<span class="Delimiter">().</span>ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>value<span class="Delimiter">);</span> if <span class="Delimiter">(</span>SIZE<span class="Delimiter">(</span>current_instruction<span class="Delimiter">().</span>ingredients<span class="Delimiter">)</span> > <span class="Constant">1</span><span class="Delimiter">)</span> <span class="Delimiter">{</span> <span class="Comment">// array</span> array_length = 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> trace<span class="Delimiter">(</span>Primitive_recipe_depth<span class="Delimiter">,</span> <span class="Constant">"mem"</span><span class="Delimiter">)</span> << <span class="Constant">"array size is "</span> << array_length << end<span class="Delimiter">();</span> size = array_length*size_of<span class="Delimiter">(</span>type<span class="Delimiter">)</span> + <span class="Comment">/*</span><span class="Comment">space for length</span><span class="Comment">*/</span><span class="Constant">1</span><span class="Delimiter">;</span> <span class="Delimiter">}</span> else <span class="Delimiter">{</span> <span class="Comment">// scalar</span> size = size_of<span class="Delimiter">(</span>type<span class="Delimiter">);</span> <span class="Delimiter">}</span> <span class="Delimiter">}</span> <span class="CommentedCode">//? Total_alloc += size;</span> <span class="CommentedCode">//? Num_alloc++;</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> const long long int result = Current_routine<span class="Delimiter">-></span>alloc<span class="Delimiter">;</span> trace<span class="Delimiter">(</span>Primitive_recipe_depth<span class="Delimiter">,</span> <span class="Constant">"mem"</span><span class="Delimiter">)</span> << <span class="Constant">"new alloc: "</span> << result << end<span class="Delimiter">();</span> <span class="Comment">// save result</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="Comment">// initialize allocated space</span> for <span class="Delimiter">(</span>long long int address = result<span class="Delimiter">;</span> address < result+size<span class="Delimiter">;</span> ++address<span class="Delimiter">)</span> <span class="Delimiter">{</span> Memory[address] = <span class="Constant">0</span><span class="Delimiter">;</span> <span class="Delimiter">}</span> if <span class="Delimiter">(</span>SIZE<span class="Delimiter">(</span>current_instruction<span class="Delimiter">().</span>ingredients<span class="Delimiter">)</span> > <span class="Constant">1</span><span class="Delimiter">)</span> <span class="Delimiter">{</span> Memory[result] = array_length<span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Comment">// bump</span> Current_routine<span class="Delimiter">-></span>alloc += size<span class="Delimiter">;</span> <span class="Comment">// no support for reclaiming memory</span> assert<span class="Delimiter">(</span>Current_routine<span class="Delimiter">-></span>alloc <= Current_routine<span class="Delimiter">-></span>alloc_max<span class="Delimiter">);</span> <span class="Identifier">break</span><span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="CommentedCode">//? :(before "End Globals")</span> <span class="CommentedCode">//? long long int Total_alloc = 0;</span> <span class="CommentedCode">//? long long int Num_alloc = 0;</span> <span class="CommentedCode">//? long long int Total_free = 0;</span> <span class="CommentedCode">//? long long int Num_free = 0;</span> <span class="CommentedCode">//? :(before "End Setup")</span> <span class="CommentedCode">//? Total_alloc = Num_alloc = Total_free = Num_free = 0;</span> <span class="CommentedCode">//? :(before "End Teardown")</span> <span class="CommentedCode">//? cerr << Total_alloc << "/" << Num_alloc</span> <span class="CommentedCode">//? << " vs " << Total_free << "/" << Num_free << '\n';</span> <span class="CommentedCode">//? cerr << SIZE(Memory) << '\n';</span> <span class="Delimiter">:(code)</span> void ensure_space<span class="Delimiter">(</span>long long int size<span class="Delimiter">)</span> <span class="Delimiter">{</span> if <span class="Delimiter">(</span>size > Initial_memory_per_routine<span class="Delimiter">)</span> <span class="Delimiter">{</span> tb_shutdown<span class="Delimiter">();</span> cerr << <span class="Constant">"can't allocate "</span> << size << <span class="Constant">" locations, that's too much.</span><span class="cSpecial">\n</span><span class="Constant">"</span><span class="Delimiter">;</span> exit<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">);</span> <span class="Delimiter">}</span> if <span class="Delimiter">(</span>Current_routine<span class="Delimiter">-></span>alloc + size > Current_routine<span class="Delimiter">-></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">-></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">-></span>alloc_max = Memory_allocated_until<span class="Delimiter">;</span> trace<span class="Delimiter">(</span>Primitive_recipe_depth<span class="Delimiter">,</span> <span class="Constant">"new"</span><span class="Delimiter">)</span> << <span class="Constant">"routine allocated memory from "</span> << Current_routine<span class="Delimiter">-></span>alloc << <span class="Constant">" to "</span> << Current_routine<span class="Delimiter">-></span>alloc_max << 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">% Memory[Memory_allocated_until] = 1;</span> recipe main [ <span class="Constant">1</span>:address:number<span class="Special"> <- </span>new number:type <span class="Constant">2</span>:number<span class="Special"> <- </span>copy *<span class="Constant">1</span>:address:number ] <span class="traceContains">+mem: storing 0 in location 2</span> <span class="Delimiter">:(scenario new_array)</span> recipe main [ <span class="Constant">1</span>:address:array:number/<span class="Special">raw <- </span>new number:type<span class="Delimiter">,</span> <span class="Constant">5</span> <span class="Constant">2</span>:address:number/<span class="Special">raw <- </span>new number:type <span class="Constant">3</span>:number/<span class="Special">raw <- </span>subtract <span class="Constant">2</span>:address:number/<span class="Special">raw</span><span class="Delimiter">,</span> <span class="Constant">1</span>:address:array:number/<span class="Special">raw</span> ] <span class="traceContains">+run: 1:address:array:number/raw <- new number:type, 5</span> <span class="traceContains">+mem: array size is 5</span> <span class="Comment"># don't forget the extra location for array size</span> <span class="traceContains">+mem: storing 6 in location 3</span> <span class="Delimiter">:(scenario new_empty_array)</span> recipe main [ <span class="Constant">1</span>:address:array:number/<span class="Special">raw <- </span>new number:type<span class="Delimiter">,</span> <span class="Constant">0</span> <span class="Constant">2</span>:address:number/<span class="Special">raw <- </span>new number:type <span class="Constant">3</span>:number/<span class="Special">raw <- </span>subtract <span class="Constant">2</span>:address:number/<span class="Special">raw</span><span class="Delimiter">,</span> <span class="Constant">1</span>:address:array:number/<span class="Special">raw</span> ] <span class="traceContains">+run: 1:address:array:number/raw <- new number:type, 0</span> <span class="traceContains">+mem: array size is 0</span> <span class="traceContains">+mem: storing 1 in location 3</span> <span class="Comment">//: Make sure that each routine gets a different alloc to start.</span> <span class="Delimiter">:(scenario new_concurrent)</span> recipe f1 [ start-running f2:recipe <span class="Constant">1</span>:address:number/<span class="Special">raw <- </span>new number:type <span class="Comment"># wait for f2 to complete</span> <span class="Delimiter">{</span> loop-unless <span class="Constant">4</span>:number/<span class="Special">raw</span> <span class="Delimiter">}</span> ] recipe f2 [ <span class="Constant">2</span>:address:number/<span class="Special">raw <- </span>new number:type <span class="Comment"># hack: assumes scheduler implementation</span> <span class="Constant">3</span>:boolean/<span class="Special">raw <- </span>equal <span class="Constant">1</span>:address:number/<span class="Special">raw</span><span class="Delimiter">,</span> <span class="Constant">2</span>:address:number/<span class="Special">raw</span> <span class="Comment"># signal f2 complete</span> <span class="Constant">4</span>:number/<span class="Special">raw <- </span>copy <span class="Constant">1</span> ] <span class="traceContains">+mem: storing 0 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 = 2;</span> recipe main [ <span class="Constant">1</span>:address:number/<span class="Special">raw <- </span>new number:type <span class="Constant">2</span>:address:point/<span class="Special">raw <- </span>new point:type <span class="Comment"># not enough room in initial page</span> ] <span class="traceContains">+new: routine allocated memory from 1000 to 1002</span> <span class="traceContains">+new: routine allocated memory from 1002 to 1004</span> <span class="Comment">//: We also provide a way to return memory, and to reuse reclaimed memory.</span> <span class="Comment">//: todo: custodians, etc. Following malloc/free is a temporary hack.</span> <span class="Delimiter">:(scenario new_reclaim)</span> recipe main [ <span class="Constant">1</span>:address:number<span class="Special"> <- </span>new number:type abandon <span class="Constant">1</span>:address:number <span class="Constant">2</span>:address:number<span class="Special"> <- </span>new number:type <span class="Comment"># must be same size as abandoned memory to reuse</span> <span class="Constant">3</span>:boolean<span class="Special"> <- </span>equal <span class="Constant">1</span>:address:number<span class="Delimiter">,</span> <span class="Constant">2</span>:address:number ] <span class="Comment"># both allocations should have returned the same address</span> <span class="traceContains">+mem: storing 1 in location 3</span> <span class="Delimiter">:(before "End Globals")</span> map<long long int<span class="Delimiter">,</span> long long int> Free_list<span class="Delimiter">;</span> <span class="Delimiter">:(before "End Setup")</span> Free_list<span class="Delimiter">.</span>clear<span class="Delimiter">();</span> <span class="Delimiter">:(before "End Primitive Recipe Declarations")</span> ABANDON<span class="Delimiter">,</span> <span class="Delimiter">:(before "End Primitive Recipe Numbers")</span> Recipe_ordinal[<span class="Constant">"abandon"</span>] = ABANDON<span class="Delimiter">;</span> <span class="Delimiter">:(before "End Primitive Recipe Implementations")</span> case ABANDON: <span class="Delimiter">{</span> if <span class="Delimiter">(</span>SIZE<span class="Delimiter">(</span>ingredients<span class="Delimiter">)</span> != <span class="Constant">1</span><span class="Delimiter">)</span> <span class="Delimiter">{</span> raise << current_recipe_name<span class="Delimiter">()</span> << <span class="Constant">": 'abandon' requires one ingredient, but got '"</span> << current_instruction<span class="Delimiter">().</span>to_string<span class="Delimiter">()</span> << <span class="Constant">"'</span><span class="cSpecial">\n</span><span class="Constant">"</span> << end<span class="Delimiter">();</span> <span class="Identifier">break</span><span class="Delimiter">;</span> <span class="Delimiter">}</span> if <span class="Delimiter">(</span>!scalar<span class="Delimiter">(</span>ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">)))</span> <span class="Delimiter">{</span> raise << current_recipe_name<span class="Delimiter">()</span> << <span class="Constant">": first ingredient of 'abandon' should be an address, but got "</span> << current_instruction<span class="Delimiter">().</span>ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>original_string << <span class="cSpecial">'\n'</span> << end<span class="Delimiter">();</span> <span class="Identifier">break</span><span class="Delimiter">;</span> <span class="Delimiter">}</span> long long int address = 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> reagent types = canonize<span class="Delimiter">(</span>current_instruction<span class="Delimiter">().</span>ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">));</span> if <span class="Delimiter">(</span>types<span class="Delimiter">.</span>types<span class="Delimiter">.</span>empty<span class="Delimiter">()</span> || types<span class="Delimiter">.</span>types<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">)</span> != Type_ordinal[<span class="Constant">"address"</span>]<span class="Delimiter">)</span> <span class="Delimiter">{</span> raise << current_recipe_name<span class="Delimiter">()</span> << <span class="Constant">": first ingredient of 'abandon' should be an address, but got "</span> << current_instruction<span class="Delimiter">().</span>ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>original_string << <span class="cSpecial">'\n'</span> << end<span class="Delimiter">();</span> <span class="Identifier">break</span><span class="Delimiter">;</span> <span class="Delimiter">}</span> reagent target_type = lookup_memory<span class="Delimiter">(</span>types<span class="Delimiter">);</span> abandon<span class="Delimiter">(</span>address<span class="Delimiter">,</span> size_of<span class="Delimiter">(</span>target_type<span class="Delimiter">));</span> <span class="Identifier">break</span><span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Delimiter">:(code)</span> void abandon<span class="Delimiter">(</span>long long int address<span class="Delimiter">,</span> long long int size<span class="Delimiter">)</span> <span class="Delimiter">{</span> <span class="CommentedCode">//? Total_free += size;</span> <span class="CommentedCode">//? Num_free++;</span> <span class="CommentedCode">//? cerr << "abandon: " << size << '\n';</span> <span class="Comment">// clear memory</span> for <span class="Delimiter">(</span>long long int curr = address<span class="Delimiter">;</span> curr < address+size<span class="Delimiter">;</span> ++curr<span class="Delimiter">)</span> Memory[curr] = <span class="Constant">0</span><span class="Delimiter">;</span> <span class="Comment">// append existing free list to address</span> Memory[address] = Free_list[size]<span class="Delimiter">;</span> Free_list[size] = address<span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Delimiter">:(before "ensure_space(size)" following "case NEW")</span> if <span class="Delimiter">(</span>Free_list[size]<span class="Delimiter">)</span> <span class="Delimiter">{</span> long long int result = Free_list[size]<span class="Delimiter">;</span> Free_list[size] = Memory[result]<span class="Delimiter">;</span> for <span class="Delimiter">(</span>long long int curr = result+<span class="Constant">1</span><span class="Delimiter">;</span> curr < result+size<span class="Delimiter">;</span> ++curr<span class="Delimiter">)</span> <span class="Delimiter">{</span> if <span class="Delimiter">(</span>Memory[curr] != <span class="Constant">0</span><span class="Delimiter">)</span> <span class="Delimiter">{</span> raise << current_recipe_name<span class="Delimiter">()</span> << <span class="Constant">": memory in free list was not zeroed out: "</span> << curr << <span class="Constant">'/'</span> << result << <span class="Constant">"; somebody wrote to us after free!!!</span><span class="cSpecial">\n</span><span class="Constant">"</span> << end<span class="Delimiter">();</span> <span class="Identifier">break</span><span class="Delimiter">;</span> <span class="Comment">// always fatal</span> <span class="Delimiter">}</span> <span class="Delimiter">}</span> if <span class="Delimiter">(</span>SIZE<span class="Delimiter">(</span>current_instruction<span class="Delimiter">().</span>ingredients<span class="Delimiter">)</span> > <span class="Constant">1</span><span class="Delimiter">)</span> Memory[result] = array_length<span class="Delimiter">;</span> else Memory[result] = <span class="Constant">0</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">:(scenario new_differing_size_no_reclaim)</span> recipe main [ <span class="Constant">1</span>:address:number<span class="Special"> <- </span>new number:type abandon <span class="Constant">1</span>:address:number <span class="Constant">2</span>:address:number<span class="Special"> <- </span>new number:type<span class="Delimiter">,</span> <span class="Constant">2</span> <span class="Comment"># different size</span> <span class="Constant">3</span>:boolean<span class="Special"> <- </span>equal <span class="Constant">1</span>:address:number<span class="Delimiter">,</span> <span class="Constant">2</span>:address:number ] <span class="Comment"># no reuse</span> <span class="traceContains">+mem: storing 0 in location 3</span> <span class="Delimiter">:(scenario new_reclaim_array)</span> recipe main [ <span class="Constant">1</span>:address:array:number<span class="Special"> <- </span>new number:type<span class="Delimiter">,</span> <span class="Constant">2</span> abandon <span class="Constant">1</span>:address:array:number <span class="Constant">2</span>:address:array:number<span class="Special"> <- </span>new number:type<span class="Delimiter">,</span> <span class="Constant">2</span> <span class="Constant">3</span>:boolean<span class="Special"> <- </span>equal <span class="Constant">1</span>:address:array:number<span class="Delimiter">,</span> <span class="Constant">2</span>:address:array:number ] <span class="Comment"># reuse</span> <span class="traceContains">+mem: storing 1 in location 3</span> <span class="SalientComment">//:: Next, extend 'new' to handle a unicode string literal argument.</span> <span class="Delimiter">:(scenario new_string)</span> recipe main [ <span class="Constant">1</span>:address:array:character<span class="Special"> <- </span>new [abc def] <span class="Constant">2</span>:character<span class="Special"> <- </span>index *<span class="Constant">1</span>:address:array:character<span class="Delimiter">,</span> <span class="Constant">5</span> ] <span class="Comment"># number code for 'e'</span> <span class="traceContains">+mem: storing 101 in location 2</span> <span class="Delimiter">:(scenario new_string_handles_unicode)</span> recipe main [ <span class="Constant">1</span>:address:array:character<span class="Special"> <- </span>new [a«c] <span class="Constant">2</span>:number<span class="Special"> <- </span>length *<span class="Constant">1</span>:address:array:character <span class="Constant">3</span>:character<span class="Special"> <- </span>index *<span class="Constant">1</span>:address:array:character<span class="Delimiter">,</span> <span class="Constant">1</span> ] <span class="traceContains">+mem: storing 3 in location 2</span> <span class="Comment"># unicode for '«'</span> <span class="traceContains">+mem: storing 171 in location 3</span> <span class="Delimiter">:(before "End NEW Transform Special-cases")</span> if <span class="Delimiter">(</span>!inst<span class="Delimiter">.</span>ingredients<span class="Delimiter">.</span>empty<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>properties<span class="Delimiter">.</span>empty<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>properties<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>second<span class="Delimiter">.</span>empty<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>properties<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>second<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">)</span> == <span class="Constant">"literal-string"</span><span class="Delimiter">)</span> <span class="Delimiter">{</span> <span class="Comment">// skip transform</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>initialized = <span class="Constant">true</span><span class="Delimiter">;</span> <span class="Identifier">goto</span> end_new_transform<span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Delimiter">:(after "case NEW" following "Primitive Recipe Implementations")</span> if <span class="Delimiter">(</span>is_literal<span class="Delimiter">(</span>current_instruction<span class="Delimiter">().</span>ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">))</span> && current_instruction<span class="Delimiter">().</span>ingredients<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>properties<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">).</span>second<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">)</span> == <span class="Constant">"literal-string"</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>new_mu_string<span class="Delimiter">(</span>current_instruction<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="Identifier">break</span><span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Delimiter">:(code)</span> long long int new_mu_string<span class="Delimiter">(</span>const string& contents<span class="Delimiter">)</span> <span class="Delimiter">{</span> <span class="Comment">// allocate an array just large enough for it</span> long long int string_length = unicode_length<span class="Delimiter">(</span>contents<span class="Delimiter">);</span> <span class="CommentedCode">//? Total_alloc += string_length+1;</span> <span class="CommentedCode">//? Num_alloc++;</span> ensure_space<span class="Delimiter">(</span>string_length+<span class="Constant">1</span><span class="Delimiter">);</span> <span class="Comment">// don't forget the extra location for array size</span> <span class="Comment">// initialize string</span> long long int result = Current_routine<span class="Delimiter">-></span>alloc<span class="Delimiter">;</span> Memory[Current_routine<span class="Delimiter">-></span>alloc++] = string_length<span class="Delimiter">;</span> long long int curr = <span class="Constant">0</span><span class="Delimiter">;</span> const char* raw_contents = contents<span class="Delimiter">.</span>c_str<span class="Delimiter">();</span> for <span class="Delimiter">(</span>long long int i = <span class="Constant">0</span><span class="Delimiter">;</span> i < string_length<span class="Delimiter">;</span> ++i<span class="Delimiter">)</span> <span class="Delimiter">{</span> uint32_t curr_character<span class="Delimiter">;</span> assert<span class="Delimiter">(</span>curr < SIZE<span class="Delimiter">(</span>contents<span class="Delimiter">));</span> tb_utf8_char_to_unicode<span class="Delimiter">(</span>&curr_character<span class="Delimiter">,</span> &raw_contents[curr]<span class="Delimiter">);</span> Memory[Current_routine<span class="Delimiter">-></span>alloc] = curr_character<span class="Delimiter">;</span> curr += tb_utf8_char_length<span class="Delimiter">(</span>raw_contents[curr]<span class="Delimiter">);</span> ++Current_routine<span class="Delimiter">-></span>alloc<span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Comment">// mu strings are not null-terminated in memory</span> <span class="Identifier">return</span> result<span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Comment">//: stash recognizes strings</span> <span class="Delimiter">:(scenario stash_string)</span> recipe main [ x:address:array:character<span class="Special"> <- </span>new [abc] stash [foo:]<span class="Delimiter">,</span> x:address:array:character ] <span class="traceContains">+app: foo: abc</span> <span class="Delimiter">:(before "End print Special-cases(reagent r, data)")</span> if <span class="Delimiter">(</span>is_mu_string<span class="Delimiter">(</span>r<span class="Delimiter">))</span> <span class="Delimiter">{</span> assert<span class="Delimiter">(</span>scalar<span class="Delimiter">(</span>data<span class="Delimiter">));</span> <span class="Identifier">return</span> read_mu_string<span class="Delimiter">(</span>data<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">));</span> <span class="Delimiter">}</span> <span class="Comment">//: Allocate more to routine when initializing a literal string</span> <span class="Delimiter">:(scenario new_string_overflow)</span> <span class="Special">% Initial_memory_per_routine = 2;</span> recipe main [ <span class="Constant">1</span>:address:number/<span class="Special">raw <- </span>new number:type <span class="Constant">2</span>:address:array:character/<span class="Special">raw <- </span>new [a] <span class="Comment"># not enough room in initial page, if you take the array size into account</span> ] <span class="traceContains">+new: routine allocated memory from 1000 to 1002</span> <span class="traceContains">+new: routine allocated memory from 1002 to 1004</span> <span class="Comment">//: helpers</span> <span class="Delimiter">:(code)</span> long long int unicode_length<span class="Delimiter">(</span>const string& s<span class="Delimiter">)</span> <span class="Delimiter">{</span> const char* in = s<span class="Delimiter">.</span>c_str<span class="Delimiter">();</span> long long int result = <span class="Constant">0</span><span class="Delimiter">;</span> long long int curr = <span class="Constant">0</span><span class="Delimiter">;</span> while <span class="Delimiter">(</span>curr < SIZE<span class="Delimiter">(</span>s<span class="Delimiter">))</span> <span class="Delimiter">{</span> <span class="Comment">// carefully bounds-check on the string</span> <span class="Comment">// before accessing its raw pointer</span> ++result<span class="Delimiter">;</span> curr += tb_utf8_char_length<span class="Delimiter">(</span>in[curr]<span class="Delimiter">);</span> <span class="Delimiter">}</span> <span class="Identifier">return</span> result<span class="Delimiter">;</span> <span class="Delimiter">}</span> bool is_mu_string<span class="Delimiter">(</span>const reagent& x<span class="Delimiter">)</span> <span class="Delimiter">{</span> <span class="Identifier">return</span> SIZE<span class="Delimiter">(</span>x<span class="Delimiter">.</span>types<span class="Delimiter">)</span> == <span class="Constant">3</span> && x<span class="Delimiter">.</span>types<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">0</span><span class="Delimiter">)</span> == Type_ordinal[<span class="Constant">"address"</span>] && x<span class="Delimiter">.</span>types<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">1</span><span class="Delimiter">)</span> == Type_ordinal[<span class="Constant">"array"</span>] && x<span class="Delimiter">.</span>types<span class="Delimiter">.</span>at<span class="Delimiter">(</span><span class="Constant">2</span><span class="Delimiter">)</span> == Type_ordinal[<span class="Constant">"character"</span>]<span class="Delimiter">;</span> <span class="Delimiter">}</span> string read_mu_string<span class="Delimiter">(</span>long long int address<span class="Delimiter">)</span> <span class="Delimiter">{</span> long long int size = Memory[address]<span class="Delimiter">;</span> if <span class="Delimiter">(</span>size == <span class="Constant">0</span><span class="Delimiter">)</span> <span class="Identifier">return</span> <span class="Constant">""</span><span class="Delimiter">;</span> ostringstream tmp<span class="Delimiter">;</span> for <span class="Delimiter">(</span>long long int curr = address+<span class="Constant">1</span><span class="Delimiter">;</span> curr <= address+size<span class="Delimiter">;</span> ++curr<span class="Delimiter">)</span> <span class="Delimiter">{</span> <span class="Comment">// todo: unicode</span> tmp << <span class="Delimiter">(</span>char<span class="Delimiter">)(</span>int<span class="Delimiter">)</span>Memory[curr]<span class="Delimiter">;</span> <span class="Delimiter">}</span> <span class="Identifier">return</span> tmp<span class="Delimiter">.</span>str<span class="Delimiter">();</span> <span class="Delimiter">}</span> </pre> </body> </html> <!-- vim: set foldmethod=manual : -->