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/*
** $Id: lobject.h,v 2.20.1.2 2008/08/06 13:29:48 roberto Exp $
** Type definitions for Lua objects
** See Copyright Notice in lua.h
*/


#ifndef lobject_h
#define lobject_h


#include <stdarg.h>


#include "llimits.h"
#include "lua.h"


/* tags for values visible from Lua */
#define LAST_TAG	LUA_TTHREAD

#define NUM_TAGS	(LAST_TAG+1)


/*
** Extra tags for non-values
*/
#define LUA_TPROTO	(LAST_TAG+1)
#define LUA_TUPVAL	(LAST_TAG+2)
#define LUA_TDEADKEY	(LAST_TAG+3)


/*
** Union of all collectable objects
*/
typedef union GCObject GCObject;


/*
** Common Header for all collectable objects (in macro form, to be
** included in other objects)
*/
#define CommonHeader	GCObject *next; lu_byte tt; lu_byte marked


/*
** Common header in struct form
*/
typedef struct GCheader {
  CommonHeader;
} GCheader;




/*
** Union of all Lua values
*/
typedef union {
  GCObject *gc;
  void *p;
  lua_Number n;
  int b;
} Value;


/*
** Tagged Values
*/

#define TValuefields	Value value; int tt

typedef struct lua_TValue {
  TValuefields;
} TValue;


/* Macros to test type */
#define ttisnil(o)	(ttype(o) == LUA_TNIL)
#define ttisnumber(o)	(ttype(o) == LUA_TNUMBER)
#define ttisstring(o)	(ttype(o) == LUA_TSTRING)
#define ttistable(o)	(ttype(o) == LUA_TTABLE)
#define ttisfunction(o)	(ttype(o) == LUA_TFUNCTION)
#define ttisboolean(o)	(ttype(o) == LUA_TBOOLEAN)
#define ttisuserdata(o)	(ttype(o) == LUA_TUSERDATA)
#define ttisthread(o)	(ttype(o) == LUA_TTHREAD)
#define ttislightuserdata(o)	(ttype(o) == LUA_TLIGHTUSERDATA)

/* Macros to access values */
#define ttype(o)	((o)->tt)
#define gcvalue(o)	check_exp(iscollectable(o), (o)->value.gc)
#define pvalue(o)	check_exp(ttislightuserdata(o), (o)->value.p)
#define nvalue(o)	check_exp(ttisnumber(o), (o)->value.n)
#define rawtsvalue(o)	check_exp(ttisstring(o), &(o)->value.gc->ts)
#define tsvalue(o)	(&rawtsvalue(o)->tsv)
#define rawuvalue(o)	check_exp(ttisuserdata(o), &(o)->value.gc->u)
#define uvalue(o)	(&rawuvalue(o)->uv)
#define clvalue(o)	check_exp(ttisfunction(o), &(o)->value.gc->cl)
#define hvalue(o)	check_exp(ttistable(o), &(o)->value.gc->h)
#define bvalue(o)	check_exp(ttisboolean(o), (o)->value.b)
#define thvalue(o)	check_exp(ttisthread(o), &(o)->value.gc->th)

#define l_isfalse(o)	(ttisnil(o) || (ttisboolean(o) && bvalue(o) == 0))

/*
** for internal debug only
*/
#define checkconsistency(obj) \
  lua_assert(!iscollectable(obj) || (ttype(obj) == (obj)->value.gc->gch.tt))

#define checkliveness(g,obj) \
  lua_assert(!iscollectable(obj) || \
  ((ttype(obj) == (obj)->value.gc->gch.tt) && !isdead(g, (obj)->value.gc)))


/* Macros to set values */
#define setnilvalue(obj) ((obj)->tt=LUA_TNIL)

#define setnvalue(obj,x) \
  { TValue *i_o=(obj); i_o->value.n=(x); i_o->tt=LUA_TNUMBER; }

#define setpvalue(obj,x) \
  { TValue *i_o=(obj); i_o->value.p=(x); i_o->tt=LUA_TLIGHTUSERDATA; }

#define setbvalue(obj,x) \
  { TValue *i_o=(obj); i_o->value.b=(x); i_o->tt=LUA_TBOOLEAN; }

#define setsvalue(L,obj,x) \
  { TValue *i_o=(obj); \
    i_o->value.gc=cast(GCObject *, (x)); i_o->tt=LUA_TSTRING; \
    checkliveness(G(L),i_o); }

#define setuvalue(L,obj,x) \
  { TValue *i_o=(obj); \
    i_o->value.gc=cast(GCObject *, (x)); i_o->tt=LUA_TUSERDATA; \
    checkliveness(G(L),i_o); }

#define setthvalue(L,obj,x) \
  { TValue *i_o=(obj); \
    i_o->value.gc=cast(GCObject *, (x)); i_o->tt=LUA_TTHREAD; \
    checkliveness(G(L),i_o); }

#define setclvalue(L,obj,x) \
  { TValue *i_o=(obj); \
    i_o->value.gc=cast(GCObject *, (x)); i_o->tt=LUA_TFUNCTION; \
    checkliveness(G(L),i_o); }

#define sethvalue(L,obj,x) \
  { TValue *i_o=(obj); \
    i_o->value.gc=cast(GCObject *, (x)); i_o->tt=LUA_TTABLE; \
    checkliveness(G(L),i_o); }

#define setptvalue(L,obj,x) \
  { TValue *i_o=(obj); \
    i_o->value.gc=cast(GCObject *, (x)); i_o->tt=LUA_TPROTO; \
    checkliveness(G(L),i_o); }




#define setobj(L,obj1,obj2) \
  { const TValue *o2=(obj2); TValue *o1=(obj1); \
    o1->value = o2->value; o1->tt=o2->tt; \
    checkliveness(G(L),o1); }


/*
** different types of sets, according to destination
*/

/* from stack to (same) stack */
#define setobjs2s	setobj
/* to stack (not from same stack) */
#define setobj2s	setobj
#define setsvalue2s	setsvalue
#define sethvalue2s	sethvalue
#define setptvalue2s	setptvalue
/* from table to same table */
#define setobjt2t	setobj
/* to table */
#define setobj2t	setobj
/* to new object */
#define setobj2n	setobj
#define setsvalue2n	setsvalue

#define setttype(obj, tt) (ttype(obj) = (tt))


#define iscollectable(o)	(ttype(o) >= LUA_TSTRING)



typedef TValue *StkId;  /* index to stack elements */


/*
** String headers for string table
*/
typedef union TString {
  L_Umaxalign dummy;  /* ensures maximum alignment for strings */
  struct {
    CommonHeader;
    lu_byte reserved;
    unsigned int hash;
    size_t len;
  } tsv;
} TString;


#define getstr(ts)	cast(const char *, (ts) + 1)
#define svalue(o)       getstr(rawtsvalue(o))



typedef union Udata {
  L_Umaxalign dummy;  /* ensures maximum alignment for `local' udata */
  struct {
    CommonHeader;
    struct Table *metatable;
    struct Table *env;
    size_t len;
  } uv;
} Udata;




/*
** Function Prototypes
*/
typedef struct Proto {
  CommonHeader;
  TValue *k;  /* constants used by the function */
  Instruction *code;
  struct Proto **p;  /* functions defined inside the function */
  int *lineinfo;  /* map from opcodes to source lines */
  struct LocVar *locvars;  /* information about local variables */
  TString **upvalues;  /* upvalue names */
  TString  *source;
  int sizeupvalues;
  int sizek;  /* size of `k' */
  int sizecode;
  int sizelineinfo;
  int sizep;  /* size of `p' */
  int sizelocvars;
  int linedefined;
  int lastlinedefined;
  GCObject *gclist;
  lu_byte nups;  /* number of upvalues */
  lu_byte numparams;
  lu_byte is_vararg;
  lu_byte maxstacksize;
} Proto;


/* masks for new-style vararg */
#define VARARG_HASARG		1
#define VARARG_ISVARARG		2
#define VARARG_NEEDSARG		4


typedef struct LocVar {
  TString *varname;
  int startpc;  /* first point where variable is active */
  int endpc;    /* first point where variable is dead */
} LocVar;



/*
** Upvalues
*/

typedef struct UpVal {
  CommonHeader;
  TValue *v;  /* points to stack or to its own value */
  union {
    TValue value;  /* the value (when closed) */
    struct {  /* double linked list (when open) */
      struct UpVal *prev;
      struct UpVal *next;
    } l;
  } u;
} UpVal;


/*
** Closures
*/

#define ClosureHeader \
	CommonHeader; lu_byte isC; lu_byte nupvalues; GCObject *gclist; \
	struct Table *env

typedef struct CClosure {
  ClosureHeader;
  lua_CFunction f;
  TValue upvalue[1];
} CClosure;


typedef struct LClosure {
  ClosureHeader;
  struct Proto *p;
  UpVal *upvals[1];
} LClosure;


typedef union Closure {
  CClosure c;
  LClosure l;
} Closure;


#define iscfunction(o)	(ttype(o) == LUA_TFUNCTION && clvalue(o)->c.isC)
#define isLfunction(o)	(ttype(o) == LUA_TFUNCTION && !clvalue(o)->c.isC)


/*
** Tables
*/

typedef union TKey {
  struct {
    TValuefields;
    struct Node *next;  /* for chaining */
  } nk;
  TValue tvk;
} TKey;


typedef struct Node {
  TValue i_val;
  TKey i_key;
} Node;


typedef struct Table {
  CommonHeader;
  lu_byte flags;  /* 1<<p means tagmethod(p) is not present */ 
  lu_byte lsizenode;  /* log2 of size of `node' array */
  struct Table *metatable;
  TValue *array;  /* array part */
  Node *node;
  Node *lastfree;  /* any free position is before this position */
  GCObject *gclist;
  int sizearray;  /* size of `array' array */
} Table;



/*
** `module' operation for hashing (size is always a power of 2)
*/
#define lmod(s,size) \
	(check_exp((size&(size-1))==0, (cast(int, (s) & ((size)-1)))))


#define twoto(x)	(1<<(x))
#define sizenode(t)	(twoto((t)->lsizenode))


#define luaO_nilobject		(&luaO_nilobject_)

LUAI_DATA const TValue luaO_nilobject_;

#define ceillog2(x)	(luaO_log2((x)-1) + 1)

LUAI_FUNC int luaO_log2 (unsigned int x);
LUAI_FUNC int luaO_int2fb (unsigned int x);
LUAI_FUNC int luaO_fb2int (int x);
LUAI_FUNC int luaO_rawequalObj (const TValue *t1, const TValue *t2);
LUAI_FUNC int luaO_str2d (const char *s, lua_Number *result);
LUAI_FUNC const char *luaO_pushvfstring (lua_State *L, const char *fmt,
                                                       va_list argp);
LUAI_FUNC const char *luaO_pushfstring (lua_State *L, const char *fmt, ...);
LUAI_FUNC void luaO_chunkid (char *out, const char *source, size_t len);


#endif
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<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.01//EN" "http://www.w3.org/TR/html4/strict.dtd">
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<title>Mu - apps/factorial.subx</title>
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<a href='https://github.com/akkartik/mu/blob/master/apps/factorial.subx'>https://github.com/akkartik/mu/blob/master/apps/factorial.subx</a>
<pre id='vimCodeElement'>
<span id="L1" class="LineNr">  1 </span><span class="subxComment">## compute the factorial of 5, and return the result in the exit code</span>
<span id="L2" class="LineNr">  2 </span><span class="subxComment">#</span>
<span id="L3" class="LineNr">  3 </span><span class="subxComment"># To run:</span>
<span id="L4" class="LineNr">  4 </span><span class="subxComment">#   $ ./subx translate init.linux 0*.subx apps/factorial.subx -o apps/factorial</span>
<span id="L5" class="LineNr">  5 </span><span class="subxComment">#   $ ./subx run apps/factorial</span>
<span id="L6" class="LineNr">  6 </span><span class="subxComment"># Expected result:</span>
<span id="L7" class="LineNr">  7 </span><span class="subxComment">#   $ echo $?</span>
<span id="L8" class="LineNr">  8 </span><span class="subxComment">#   120</span>
<span id="L9" class="LineNr">  9 </span><span class="subxComment">#</span>
<span id="L10" class="LineNr"> 10 </span><span class="subxComment"># You can also run the automated test suite:</span>
<span id="L11" class="LineNr"> 11 </span><span class="subxComment">#   $ ./subx run apps/factorial test</span>
<span id="L12" class="LineNr"> 12 </span><span class="subxComment"># Expected output:</span>
<span id="L13" class="LineNr"> 13 </span><span class="subxComment">#   ........</span>
<span id="L14" class="LineNr"> 14 </span><span class="subxComment"># Every '.' indicates a passing test. Failing tests get a 'F'.</span>
<span id="L15" class="LineNr"> 15 </span>
<span id="L16" class="LineNr"> 16 </span>== code
<span id="L17" class="LineNr"> 17 </span><span class="subxComment">#   instruction                     effective address                                                   register    displacement    immediate</span>
<span id="L18" class="LineNr"> 18 </span><span class="subxS1Comment"># . op          subop               mod             rm32          base        index         scale       r32</span>
<span id="L19" class="LineNr"> 19 </span><span class="subxS1Comment"># . 1-3 bytes   3 bits              2 bits          3 bits        3 bits      3 bits        2 bits      2 bits      0/1/2/4 bytes   0/1/2/4 bytes</span>
<span id="L20" class="LineNr"> 20 </span>
<span id="L21" class="LineNr"> 21 </span><span class="SpecialChar">Entry</span>:  <span class="subxComment"># run tests if necessary, compute `factorial(5)` if not</span>
<span id="L22" class="LineNr"> 22 </span>    <span class="subxS1Comment"># . prologue</span>
<span id="L23" class="LineNr"> 23 </span>    89/copy                         3/mod/direct    5/rm32/ebp   <span class="Normal"> . </span>         <span class="Normal"> . </span>           <span class="Normal"> . </span>          4/r32/esp  <span class="Normal"> . </span>             <span class="Normal"> . </span>                <span class="subxComment"># copy esp to ebp</span>
<span id="L24" class="LineNr"> 24 </span>
<span id="L25" class="LineNr"> 25 </span>    <span class="subxComment"># initialize heap</span>
<span id="L26" class="LineNr"> 26 </span>    <span class="subxS1Comment"># . Heap = new-segment(Heap-size)</span>
<span id="L27" class="LineNr"> 27 </span>    <span class="subxS2Comment"># . . push args</span>
<span id="L28" class="LineNr"> 28 </span>    68/push  <span class="SpecialChar"><a href='../069allocate.subx.html#L22'>Heap</a></span>/imm32
<span id="L29" class="LineNr"> 29 </span>    ff          6/subop/push        0/mod/indirect  5/rm32/.disp32           <span class="Normal"> . </span>           <span class="Normal"> . </span>         <span class="Normal"> . </span>          <span class="SpecialChar"><a href='../069allocate.subx.html#L29'>Heap-size</a></span>/disp32                  <span class="subxComment"># push *Heap-size</span>
<span id="L30" class="LineNr"> 30 </span>    <span class="subxS2Comment"># . . call</span>
<span id="L31" class="LineNr"> 31 </span>    e8/call  <a href='../053new-segment.subx.html#L41'>new-segment</a>/disp32
<span id="L32" class="LineNr"> 32 </span>    <span class="subxS2Comment"># . . discard args</span>
<span id="L33" class="LineNr"> 33 </span>    81          0/subop/add         3/mod/direct    4/rm32/esp   <span class="Normal"> . </span>         <span class="Normal"> . </span>           <span class="Normal"> . </span>         <span class="Normal"> . </span>         <span class="Normal"> . </span>              8/imm32           <span class="subxComment"># add to esp</span>
<span id="L34" class="LineNr"> 34 </span>
<span id="L35" class="LineNr"> 35 </span>    <span class="subxH1Comment"># - if argc &gt; 1 and argv[1] == &quot;test&quot;, then return run_tests()</span>
<span id="L36" class="LineNr"> 36 </span>    <span class="subxComment"># if (argc &lt;= 1) goto run-main</span>
<span id="L37" class="LineNr"> 37 </span>    81          7/subop/compare     1/mod/*+disp8   5/rm32/ebp   <span class="Normal"> . </span>         <span class="Normal"> . </span>           <span class="Normal"> . </span>         <span class="Normal"> . </span>          0/disp8         1/imm32           <span class="subxComment"># compare *ebp</span>
<span id="L38" class="LineNr"> 38 </span>    7e/jump-if-lesser-or-equal  $run-main/disp8
<span id="L39" class="LineNr"> 39 </span>    <span class="subxComment"># if (!kernel-string-equal?(argv[1], &quot;test&quot;)) goto run-main</span>
<span id="L40" class="LineNr"> 40 </span>    <span class="subxS1Comment"># . eax = kernel-string-equal?(argv[1], &quot;test&quot;)</span>
<span id="L41" class="LineNr"> 41 </span>    <span class="subxS2Comment"># . . push args</span>
<span id="L42" class="LineNr"> 42 </span>    68/push  <span class="Constant">&quot;test&quot;</span>/imm32
<span id="L43" class="LineNr"> 43 </span>    ff          6/subop/push        1/mod/*+disp8   5/rm32/ebp   <span class="Normal"> . </span>         <span class="Normal"> . </span>           <span class="Normal"> . </span>         <span class="Normal"> . </span>          8/disp8        <span class="Normal"> . </span>                <span class="subxComment"># push *(ebp+8)</span>
<span id="L44" class="LineNr"> 44 </span>    <span class="subxS2Comment"># . . call</span>
<span id="L45" class="LineNr"> 45 </span>    e8/call  <a href='../052kernel-string-equal.subx.html#L33'>kernel-string-equal?</a>/disp32
<span id="L46" class="LineNr"> 46 </span>    <span class="subxS2Comment"># . . discard args</span>
<span id="L47" class="LineNr"> 47 </span>    81          0/subop/add         3/mod/direct    4/rm32/esp   <span class="Normal"> . </span>         <span class="Normal"> . </span>           <span class="Normal"> . </span>         <span class="Normal"> . </span>         <span class="Normal"> . </span>              8/imm32           <span class="subxComment"># add to esp</span>
<span id="L48" class="LineNr"> 48 </span>    <span class="subxS1Comment"># . if (eax == false) goto run-main</span>
<span id="L49" class="LineNr"> 49 </span>    3d/compare-eax-and  0/imm32/false
<span id="L50" class="LineNr"> 50 </span>    74/jump-if-equal  $run-main/disp8
<span id="L51" class="LineNr"> 51 </span>    <span class="subxComment"># run-tests()</span>
<span id="L52" class="LineNr"> 52 </span>    e8/call  run-tests/disp32
<span id="L53" class="LineNr"> 53 </span>    <span class="subxComment"># syscall(exit, *Num-test-failures)</span>
<span id="L54" class="LineNr"> 54 </span>    8b/copy                         0/mod/indirect  5/rm32/.disp32           <span class="Normal"> . </span>           <span class="Normal"> . </span>          3/r32/ebx   <span class="SpecialChar"><a href='../051test.subx.html#L90'>Num-test-failures</a></span>/disp32          <span class="subxComment"># copy *Num-test-failures to ebx</span>
<span id="L55" class="LineNr"> 55 </span>    eb/jump  $main:end/disp8
<span id="L56" class="LineNr"> 56 </span><span class="Constant">$run-main</span>:
<span id="L57" class="LineNr"> 57 </span>    <span class="subxH1Comment"># - otherwise return factorial(5)</span>
<span id="L58" class="LineNr"> 58 </span>    <span class="subxComment"># eax = factorial(5)</span>
<span id="L59" class="LineNr"> 59 </span>    <span class="subxS2Comment"># . . push args</span>
<span id="L60" class="LineNr"> 60 </span>    68/push  5/imm32
<span id="L61" class="LineNr"> 61 </span>    <span class="subxS2Comment"># . . call</span>
<span id="L62" class="LineNr"> 62 </span>    e8/call  <a href='factorial.subx.html#L71'>factorial</a>/disp32
<span id="L63" class="LineNr"> 63 </span>    <span class="subxS2Comment"># . . discard args</span>
<span id="L64" class="LineNr"> 64 </span>    81          0/subop/add         3/mod/direct    4/rm32/esp   <span class="Normal"> . </span>         <span class="Normal"> . </span>           <span class="Normal"> . </span>         <span class="Normal"> . </span>         <span class="Normal"> . </span>              4/imm32           <span class="subxComment"># add to esp</span>
<span id="L65" class="LineNr"> 65 </span>    <span class="subxComment"># syscall(exit, eax)</span>
<span id="L66" class="LineNr"> 66 </span>    89/copy                         3/mod/direct    3/rm32/ebx   <span class="Normal"> . </span>         <span class="Normal"> . </span>           <span class="Normal"> . </span>          0/r32/eax  <span class="Normal"> . </span>             <span class="Normal"> . </span>                <span class="subxComment"># copy eax to ebx</span>
<span id="L67" class="LineNr"> 67 </span><span class="Constant">$main:end</span>:
<span id="L68" class="LineNr"> 68 </span>    b8/copy-to-eax  1/imm32/exit
<span id="L69" class="LineNr"> 69 </span>    cd/syscall  0x80/imm8
<span id="L70" class="LineNr"> 70 </span>
<span id="L71" class="LineNr"> 71 </span><span class="subxFunction">factorial</span>:  <span class="subxComment"># n : int -&gt; int/eax</span>
<span id="L72" class="LineNr"> 72 </span>    <span class="subxS1Comment"># . prologue</span>
<span id="L73" class="LineNr"> 73 </span>    55/push-ebp
<span id="L74" class="LineNr"> 74 </span>    89/copy                         3/mod/direct    5/rm32/ebp   <span class="Normal"> . </span>         <span class="Normal"> . </span>           <span class="Normal"> . </span>          4/r32/esp  <span class="Normal"> . </span>             <span class="Normal"> . </span>                <span class="subxComment"># copy esp to ebp</span>
<span id="L75" class="LineNr"> 75 </span>    53/push-ebx
<span id="L76" class="LineNr"> 76 </span>    <span class="subxComment"># if (n &lt;= 1) return 1</span>
<span id="L77" class="LineNr"> 77 </span>    b8/copy-to-eax  1/imm32
<span id="L78" class="LineNr"> 78 </span>    81          7/subop/compare     1/mod/*+disp8   5/rm32/ebp   <span class="Normal"> . </span>         <span class="Normal"> . </span>           <span class="Normal"> . </span>         <span class="Normal"> . </span>          8/disp8         1/imm32           <span class="subxComment"># compare *(ebp+8)</span>
<span id="L79" class="LineNr"> 79 </span>    7e/jump-if-&lt;=  $factorial:end/disp8
<span id="L80" class="LineNr"> 80 </span>    <span class="subxComment"># var ebx : int = n-1</span>
<span id="L81" class="LineNr"> 81 </span>    8b/copy                         1/mod/*+disp8   5/rm32/ebp   <span class="Normal"> . </span>         <span class="Normal"> . </span>                        3/r32/ebx   8/disp8        <span class="Normal"> . </span>                <span class="subxComment"># copy *(ebp+8) to ebx</span>
<span id="L82" class="LineNr"> 82 </span>    4b/decrement-ebx
<span id="L83" class="LineNr"> 83 </span>    <span class="subxComment"># var eax : int = factorial(n-1)</span>
<span id="L84" class="LineNr"> 84 </span>    <span class="subxS2Comment"># . . push args</span>
<span id="L85" class="LineNr"> 85 </span>    53/push-ebx
<span id="L86" class="LineNr"> 86 </span>    <span class="subxS2Comment"># . . call</span>
<span id="L87" class="LineNr"> 87 </span>    e8/call  <a href='factorial.subx.html#L71'>factorial</a>/disp32
<span id="L88" class="LineNr"> 88 </span>    <span class="subxS2Comment"># . . discard args</span>
<span id="L89" class="LineNr"> 89 </span>    81          0/subop/add         3/mod/direct    4/rm32/esp   <span class="Normal"> . </span>         <span class="Normal"> . </span>           <span class="Normal"> . </span>         <span class="Normal"> . </span>         <span class="Normal"> . </span>              4/imm32           <span class="subxComment"># add to esp</span>
<span id="L90" class="LineNr"> 90 </span>    <span class="subxComment"># return n * factorial(n-1)</span>
<span id="L91" class="LineNr"> 91 </span>    f7          4/subop/multiply    1/mod/*+disp8   5/rm32/ebp   <span class="Normal"> . </span>         <span class="Normal"> . </span>                                    8/disp8        <span class="Normal"> . </span>                <span class="subxComment"># multiply *(ebp+8) into eax</span>
<span id="L92" class="LineNr"> 92 </span>    <span class="subxComment"># TODO: check for overflow</span>
<span id="L93" class="LineNr"> 93 </span><span class="Constant">$factorial:end</span>:
<span id="L94" class="LineNr"> 94 </span>    <span class="subxS1Comment"># . epilogue</span>
<span id="L95" class="LineNr"> 95 </span>    5b/pop-to-ebx
<span id="L96" class="LineNr"> 96 </span>    89/copy                         3/mod/direct    4/rm32/esp   <span class="Normal"> . </span>         <span class="Normal"> . </span>           <span class="Normal"> . </span>          5/r32/ebp  <span class="Normal"> . </span>             <span class="Normal"> . </span>                <span class="subxComment"># copy ebp to esp</span>
<span id="L97" class="LineNr"> 97 </span>    5d/pop-to-ebp
<span id="L98" class="LineNr"> 98 </span>    c3/return
<span id="L99" class="LineNr"> 99 </span>
<span id="L100" class="LineNr">100 </span><span class="subxTest">test-factorial</span>:
<span id="L101" class="LineNr">101 </span>    <span class="subxComment"># factorial(5)</span>
<span id="L102" class="LineNr">102 </span>    <span class="subxS2Comment"># . . push args</span>
<span id="L103" class="LineNr">103 </span>    68/push  5/imm32
<span id="L104" class="LineNr">104 </span>    <span class="subxS2Comment"># . . call</span>
<span id="L105" class="LineNr">105 </span>    e8/call  <a href='factorial.subx.html#L71'>factorial</a>/disp32
<span id="L106" class="LineNr">106 </span>    <span class="subxS2Comment"># . . discard args</span>
<span id="L107" class="LineNr">107 </span>    81          0/subop/add         3/mod/direct    4/rm32/esp   <span class="Normal"> . </span>         <span class="Normal"> . </span>           <span class="Normal"> . </span>         <span class="Normal"> . </span>         <span class="Normal"> . </span>              4/imm32           <span class="subxComment"># add to esp</span>
<span id="L108" class="LineNr">108 </span>    <span class="subxComment"># check-ints-equal(eax, 120, msg)</span>
<span id="L109" class="LineNr">109 </span>    <span class="subxS2Comment"># . . push args</span>
<span id="L110" class="LineNr">110 </span>    68/push  <span class="Constant">&quot;F - test-factorial&quot;</span>/imm32
<span id="L111" class="LineNr">111 </span>    68/push  0x78/imm32/expected-120
<span id="L112" class="LineNr">112 </span>    50/push-eax
<span id="L113" class="LineNr">113 </span>    <span class="subxS2Comment"># . . call</span>
<span id="L114" class="LineNr">114 </span>    e8/call  <a href='../051test.subx.html#L24'>check-ints-equal</a>/disp32
<span id="L115" class="LineNr">115 </span>    <span class="subxS2Comment"># . . discard args</span>
<span id="L116" class="LineNr">116 </span>    81          0/subop/add         3/mod/direct    4/rm32/esp   <span class="Normal"> . </span>         <span class="Normal"> . </span>           <span class="Normal"> . </span>         <span class="Normal"> . </span>         <span class="Normal"> . </span>              0xc/imm32         <span class="subxComment"># add to esp</span>
<span id="L117" class="LineNr">117 </span>    <span class="subxComment"># end</span>
<span id="L118" class="LineNr">118 </span>    c3/return
<span id="L119" class="LineNr">119 </span>
<span id="L120" class="LineNr">120 </span><span class="subxS2Comment"># . . vim&#0058;nowrap:textwidth=0</span>
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