xref: /netbsd-src/external/mit/lua/dist/src/lstrlib.c (revision 946379e7b37692fc43f68eb0d1c10daa0a7f3b6c)
1 /*	$NetBSD: lstrlib.c,v 1.10 2015/10/11 01:01:45 christos Exp $	*/
2 
3 /*
4 ** Id: lstrlib.c,v 1.229 2015/05/20 17:39:23 roberto Exp
5 ** Standard library for string operations and pattern-matching
6 ** See Copyright Notice in lua.h
7 */
8 
9 #define lstrlib_c
10 #define LUA_LIB
11 
12 #include "lprefix.h"
13 
14 
15 #ifndef _KERNEL
16 #include <ctype.h>
17 #include <float.h>
18 #include <limits.h>
19 #include <stddef.h>
20 #include <stdio.h>
21 #include <stdlib.h>
22 #include <string.h>
23 #endif
24 
25 #include "lua.h"
26 
27 #include "lauxlib.h"
28 #include "lualib.h"
29 
30 
31 /*
32 ** maximum number of captures that a pattern can do during
33 ** pattern-matching. This limit is arbitrary.
34 */
35 #if !defined(LUA_MAXCAPTURES)
36 #define LUA_MAXCAPTURES		32
37 #endif
38 
39 
40 /* macro to 'unsign' a character */
41 #define uchar(c)	((unsigned char)(c))
42 
43 
44 /*
45 ** Some sizes are better limited to fit in 'int', but must also fit in
46 ** 'size_t'. (We assume that 'lua_Integer' cannot be smaller than 'int'.)
47 */
48 #define MAXSIZE  \
49 	(sizeof(size_t) < sizeof(int) ? (~(size_t)0) : (size_t)(INT_MAX))
50 
51 
52 
53 
54 static int str_len (lua_State *L) {
55   size_t l;
56   luaL_checklstring(L, 1, &l);
57   lua_pushinteger(L, (lua_Integer)l);
58   return 1;
59 }
60 
61 
62 /* translate a relative string position: negative means back from end */
63 static lua_Integer posrelat (lua_Integer pos, size_t len) {
64   if (pos >= 0) return pos;
65   else if (0u - (size_t)pos > len) return 0;
66   else return (lua_Integer)len + pos + 1;
67 }
68 
69 
70 static int str_sub (lua_State *L) {
71   size_t l;
72   const char *s = luaL_checklstring(L, 1, &l);
73   lua_Integer start = posrelat(luaL_checkinteger(L, 2), l);
74   lua_Integer end = posrelat(luaL_optinteger(L, 3, -1), l);
75   if (start < 1) start = 1;
76   if (end > (lua_Integer)l) end = l;
77   if (start <= end)
78     lua_pushlstring(L, s + start - 1, (size_t)(end - start) + 1);
79   else lua_pushliteral(L, "");
80   return 1;
81 }
82 
83 
84 static int str_reverse (lua_State *L) {
85   size_t l, i;
86   luaL_Buffer b;
87   const char *s = luaL_checklstring(L, 1, &l);
88   char *p = luaL_buffinitsize(L, &b, l);
89   for (i = 0; i < l; i++)
90     p[i] = s[l - i - 1];
91   luaL_pushresultsize(&b, l);
92   return 1;
93 }
94 
95 
96 static int str_lower (lua_State *L) {
97   size_t l;
98   size_t i;
99   luaL_Buffer b;
100   const char *s = luaL_checklstring(L, 1, &l);
101   char *p = luaL_buffinitsize(L, &b, l);
102   for (i=0; i<l; i++)
103     p[i] = tolower(uchar(s[i]));
104   luaL_pushresultsize(&b, l);
105   return 1;
106 }
107 
108 
109 static int str_upper (lua_State *L) {
110   size_t l;
111   size_t i;
112   luaL_Buffer b;
113   const char *s = luaL_checklstring(L, 1, &l);
114   char *p = luaL_buffinitsize(L, &b, l);
115   for (i=0; i<l; i++)
116     p[i] = toupper(uchar(s[i]));
117   luaL_pushresultsize(&b, l);
118   return 1;
119 }
120 
121 
122 static int str_rep (lua_State *L) {
123   size_t l, lsep;
124   const char *s = luaL_checklstring(L, 1, &l);
125   lua_Integer n = luaL_checkinteger(L, 2);
126   const char *sep = luaL_optlstring(L, 3, "", &lsep);
127   if (n <= 0) lua_pushliteral(L, "");
128   else if (l + lsep < l || l + lsep > MAXSIZE / n)  /* may overflow? */
129     return luaL_error(L, "resulting string too large");
130   else {
131     size_t totallen = (size_t)n * l + (size_t)(n - 1) * lsep;
132     luaL_Buffer b;
133     char *p = luaL_buffinitsize(L, &b, totallen);
134     while (n-- > 1) {  /* first n-1 copies (followed by separator) */
135       memcpy(p, s, l * sizeof(char)); p += l;
136       if (lsep > 0) {  /* empty 'memcpy' is not that cheap */
137         memcpy(p, sep, lsep * sizeof(char));
138         p += lsep;
139       }
140     }
141     memcpy(p, s, l * sizeof(char));  /* last copy (not followed by separator) */
142     luaL_pushresultsize(&b, totallen);
143   }
144   return 1;
145 }
146 
147 
148 static int str_byte (lua_State *L) {
149   size_t l;
150   const char *s = luaL_checklstring(L, 1, &l);
151   lua_Integer posi = posrelat(luaL_optinteger(L, 2, 1), l);
152   lua_Integer pose = posrelat(luaL_optinteger(L, 3, posi), l);
153   int n, i;
154   if (posi < 1) posi = 1;
155   if (pose > (lua_Integer)l) pose = l;
156   if (posi > pose) return 0;  /* empty interval; return no values */
157   if (pose - posi >= INT_MAX)  /* arithmetic overflow? */
158     return luaL_error(L, "string slice too long");
159   n = (int)(pose -  posi) + 1;
160   luaL_checkstack(L, n, "string slice too long");
161   for (i=0; i<n; i++)
162     lua_pushinteger(L, uchar(s[posi+i-1]));
163   return n;
164 }
165 
166 
167 static int str_char (lua_State *L) {
168   int n = lua_gettop(L);  /* number of arguments */
169   int i;
170   luaL_Buffer b;
171   char *p = luaL_buffinitsize(L, &b, n);
172   for (i=1; i<=n; i++) {
173     lua_Integer c = luaL_checkinteger(L, i);
174     luaL_argcheck(L, uchar(c) == c, i, "value out of range");
175     p[i - 1] = uchar(c);
176   }
177   luaL_pushresultsize(&b, n);
178   return 1;
179 }
180 
181 
182 static int writer (lua_State *L, const void *b, size_t size, void *B) {
183   (void)L;
184   luaL_addlstring((luaL_Buffer *) B, (const char *)b, size);
185   return 0;
186 }
187 
188 
189 static int str_dump (lua_State *L) {
190   luaL_Buffer b;
191   int strip = lua_toboolean(L, 2);
192   luaL_checktype(L, 1, LUA_TFUNCTION);
193   lua_settop(L, 1);
194   luaL_buffinit(L,&b);
195   if (lua_dump(L, writer, &b, strip) != 0)
196     return luaL_error(L, "unable to dump given function");
197   luaL_pushresult(&b);
198   return 1;
199 }
200 
201 
202 
203 /*
204 ** {======================================================
205 ** PATTERN MATCHING
206 ** =======================================================
207 */
208 
209 
210 #define CAP_UNFINISHED	(-1)
211 #define CAP_POSITION	(-2)
212 
213 
214 typedef struct MatchState {
215   int matchdepth;  /* control for recursive depth (to avoid C stack overflow) */
216   const char *src_init;  /* init of source string */
217   const char *src_end;  /* end ('\0') of source string */
218   const char *p_end;  /* end ('\0') of pattern */
219   lua_State *L;
220   int level;  /* total number of captures (finished or unfinished) */
221   struct {
222     const char *init;
223     ptrdiff_t len;
224   } capture[LUA_MAXCAPTURES];
225 } MatchState;
226 
227 
228 /* recursive function */
229 static const char *match (MatchState *ms, const char *s, const char *p);
230 
231 
232 /* maximum recursion depth for 'match' */
233 #if !defined(MAXCCALLS)
234 #define MAXCCALLS	200
235 #endif
236 
237 
238 #define L_ESC		'%'
239 #define SPECIALS	"^$*+?.([%-"
240 
241 
242 static int check_capture (MatchState *ms, int l) {
243   l -= '1';
244   if (l < 0 || l >= ms->level || ms->capture[l].len == CAP_UNFINISHED)
245     return luaL_error(ms->L, "invalid capture index %%%d", l + 1);
246   return l;
247 }
248 
249 
250 static int capture_to_close (MatchState *ms) {
251   int level = ms->level;
252   for (level--; level>=0; level--)
253     if (ms->capture[level].len == CAP_UNFINISHED) return level;
254   return luaL_error(ms->L, "invalid pattern capture");
255 }
256 
257 
258 static const char *classend (MatchState *ms, const char *p) {
259   switch (*p++) {
260     case L_ESC: {
261       if (p == ms->p_end)
262         luaL_error(ms->L, "malformed pattern (ends with '%%')");
263       return p+1;
264     }
265     case '[': {
266       if (*p == '^') p++;
267       do {  /* look for a ']' */
268         if (p == ms->p_end)
269           luaL_error(ms->L, "malformed pattern (missing ']')");
270         if (*(p++) == L_ESC && p < ms->p_end)
271           p++;  /* skip escapes (e.g. '%]') */
272       } while (*p != ']');
273       return p+1;
274     }
275     default: {
276       return p;
277     }
278   }
279 }
280 
281 
282 static int match_class (int c, int cl) {
283   int res;
284   switch (tolower(cl)) {
285     case 'a' : res = isalpha(c); break;
286     case 'c' : res = iscntrl(c); break;
287     case 'd' : res = isdigit(c); break;
288     case 'g' : res = isgraph(c); break;
289     case 'l' : res = islower(c); break;
290     case 'p' : res = ispunct(c); break;
291     case 's' : res = isspace(c); break;
292     case 'u' : res = isupper(c); break;
293     case 'w' : res = isalnum(c); break;
294     case 'x' : res = isxdigit(c); break;
295     case 'z' : res = (c == 0); break;  /* deprecated option */
296     default: return (cl == c);
297   }
298   return (islower(cl) ? res : !res);
299 }
300 
301 
302 static int matchbracketclass (int c, const char *p, const char *ec) {
303   int sig = 1;
304   if (*(p+1) == '^') {
305     sig = 0;
306     p++;  /* skip the '^' */
307   }
308   while (++p < ec) {
309     if (*p == L_ESC) {
310       p++;
311       if (match_class(c, uchar(*p)))
312         return sig;
313     }
314     else if ((*(p+1) == '-') && (p+2 < ec)) {
315       p+=2;
316       if (uchar(*(p-2)) <= c && c <= uchar(*p))
317         return sig;
318     }
319     else if (uchar(*p) == c) return sig;
320   }
321   return !sig;
322 }
323 
324 
325 static int singlematch (MatchState *ms, const char *s, const char *p,
326                         const char *ep) {
327   if (s >= ms->src_end)
328     return 0;
329   else {
330     int c = uchar(*s);
331     switch (*p) {
332       case '.': return 1;  /* matches any char */
333       case L_ESC: return match_class(c, uchar(*(p+1)));
334       case '[': return matchbracketclass(c, p, ep-1);
335       default:  return (uchar(*p) == c);
336     }
337   }
338 }
339 
340 
341 static const char *matchbalance (MatchState *ms, const char *s,
342                                    const char *p) {
343   if (p >= ms->p_end - 1)
344     luaL_error(ms->L, "malformed pattern (missing arguments to '%%b')");
345   if (*s != *p) return NULL;
346   else {
347     int b = *p;
348     int e = *(p+1);
349     int cont = 1;
350     while (++s < ms->src_end) {
351       if (*s == e) {
352         if (--cont == 0) return s+1;
353       }
354       else if (*s == b) cont++;
355     }
356   }
357   return NULL;  /* string ends out of balance */
358 }
359 
360 
361 static const char *max_expand (MatchState *ms, const char *s,
362                                  const char *p, const char *ep) {
363   ptrdiff_t i = 0;  /* counts maximum expand for item */
364   while (singlematch(ms, s + i, p, ep))
365     i++;
366   /* keeps trying to match with the maximum repetitions */
367   while (i>=0) {
368     const char *res = match(ms, (s+i), ep+1);
369     if (res) return res;
370     i--;  /* else didn't match; reduce 1 repetition to try again */
371   }
372   return NULL;
373 }
374 
375 
376 static const char *min_expand (MatchState *ms, const char *s,
377                                  const char *p, const char *ep) {
378   for (;;) {
379     const char *res = match(ms, s, ep+1);
380     if (res != NULL)
381       return res;
382     else if (singlematch(ms, s, p, ep))
383       s++;  /* try with one more repetition */
384     else return NULL;
385   }
386 }
387 
388 
389 static const char *start_capture (MatchState *ms, const char *s,
390                                     const char *p, int what) {
391   const char *res;
392   int level = ms->level;
393   if (level >= LUA_MAXCAPTURES) luaL_error(ms->L, "too many captures");
394   ms->capture[level].init = s;
395   ms->capture[level].len = what;
396   ms->level = level+1;
397   if ((res=match(ms, s, p)) == NULL)  /* match failed? */
398     ms->level--;  /* undo capture */
399   return res;
400 }
401 
402 
403 static const char *end_capture (MatchState *ms, const char *s,
404                                   const char *p) {
405   int l = capture_to_close(ms);
406   const char *res;
407   ms->capture[l].len = s - ms->capture[l].init;  /* close capture */
408   if ((res = match(ms, s, p)) == NULL)  /* match failed? */
409     ms->capture[l].len = CAP_UNFINISHED;  /* undo capture */
410   return res;
411 }
412 
413 
414 static const char *match_capture (MatchState *ms, const char *s, int l) {
415   size_t len;
416   l = check_capture(ms, l);
417   len = ms->capture[l].len;
418   if ((size_t)(ms->src_end-s) >= len &&
419       memcmp(ms->capture[l].init, s, len) == 0)
420     return s+len;
421   else return NULL;
422 }
423 
424 
425 static const char *match (MatchState *ms, const char *s, const char *p) {
426   if (ms->matchdepth-- == 0)
427     luaL_error(ms->L, "pattern too complex");
428   init: /* using goto's to optimize tail recursion */
429   if (p != ms->p_end) {  /* end of pattern? */
430     switch (*p) {
431       case '(': {  /* start capture */
432         if (*(p + 1) == ')')  /* position capture? */
433           s = start_capture(ms, s, p + 2, CAP_POSITION);
434         else
435           s = start_capture(ms, s, p + 1, CAP_UNFINISHED);
436         break;
437       }
438       case ')': {  /* end capture */
439         s = end_capture(ms, s, p + 1);
440         break;
441       }
442       case '$': {
443         if ((p + 1) != ms->p_end)  /* is the '$' the last char in pattern? */
444           goto dflt;  /* no; go to default */
445         s = (s == ms->src_end) ? s : NULL;  /* check end of string */
446         break;
447       }
448       case L_ESC: {  /* escaped sequences not in the format class[*+?-]? */
449         switch (*(p + 1)) {
450           case 'b': {  /* balanced string? */
451             s = matchbalance(ms, s, p + 2);
452             if (s != NULL) {
453               p += 4; goto init;  /* return match(ms, s, p + 4); */
454             }  /* else fail (s == NULL) */
455             break;
456           }
457           case 'f': {  /* frontier? */
458             const char *ep; char previous;
459             p += 2;
460             if (*p != '[')
461               luaL_error(ms->L, "missing '[' after '%%f' in pattern");
462             ep = classend(ms, p);  /* points to what is next */
463             previous = (s == ms->src_init) ? '\0' : *(s - 1);
464             if (!matchbracketclass(uchar(previous), p, ep - 1) &&
465                matchbracketclass(uchar(*s), p, ep - 1)) {
466               p = ep; goto init;  /* return match(ms, s, ep); */
467             }
468             s = NULL;  /* match failed */
469             break;
470           }
471           case '0': case '1': case '2': case '3':
472           case '4': case '5': case '6': case '7':
473           case '8': case '9': {  /* capture results (%0-%9)? */
474             s = match_capture(ms, s, uchar(*(p + 1)));
475             if (s != NULL) {
476               p += 2; goto init;  /* return match(ms, s, p + 2) */
477             }
478             break;
479           }
480           default: goto dflt;
481         }
482         break;
483       }
484       default: dflt: {  /* pattern class plus optional suffix */
485         const char *ep = classend(ms, p);  /* points to optional suffix */
486         /* does not match at least once? */
487         if (!singlematch(ms, s, p, ep)) {
488           if (*ep == '*' || *ep == '?' || *ep == '-') {  /* accept empty? */
489             p = ep + 1; goto init;  /* return match(ms, s, ep + 1); */
490           }
491           else  /* '+' or no suffix */
492             s = NULL;  /* fail */
493         }
494         else {  /* matched once */
495           switch (*ep) {  /* handle optional suffix */
496             case '?': {  /* optional */
497               const char *res;
498               if ((res = match(ms, s + 1, ep + 1)) != NULL)
499                 s = res;
500               else {
501                 p = ep + 1; goto init;  /* else return match(ms, s, ep + 1); */
502               }
503               break;
504             }
505             case '+':  /* 1 or more repetitions */
506               s++;  /* 1 match already done */
507               /* FALLTHROUGH */
508             case '*':  /* 0 or more repetitions */
509               s = max_expand(ms, s, p, ep);
510               break;
511             case '-':  /* 0 or more repetitions (minimum) */
512               s = min_expand(ms, s, p, ep);
513               break;
514             default:  /* no suffix */
515               s++; p = ep; goto init;  /* return match(ms, s + 1, ep); */
516           }
517         }
518         break;
519       }
520     }
521   }
522   ms->matchdepth++;
523   return s;
524 }
525 
526 
527 
528 static const char *lmemfind (const char *s1, size_t l1,
529                                const char *s2, size_t l2) {
530   if (l2 == 0) return s1;  /* empty strings are everywhere */
531   else if (l2 > l1) return NULL;  /* avoids a negative 'l1' */
532   else {
533     const char *init;  /* to search for a '*s2' inside 's1' */
534     l2--;  /* 1st char will be checked by 'memchr' */
535     l1 = l1-l2;  /* 's2' cannot be found after that */
536     while (l1 > 0 && (init = (const char *)memchr(s1, *s2, l1)) != NULL) {
537       init++;   /* 1st char is already checked */
538       if (memcmp(init, s2+1, l2) == 0)
539         return init-1;
540       else {  /* correct 'l1' and 's1' to try again */
541         l1 -= init-s1;
542         s1 = init;
543       }
544     }
545     return NULL;  /* not found */
546   }
547 }
548 
549 
550 static void push_onecapture (MatchState *ms, int i, const char *s,
551                                                     const char *e) {
552   if (i >= ms->level) {
553     if (i == 0)  /* ms->level == 0, too */
554       lua_pushlstring(ms->L, s, e - s);  /* add whole match */
555     else
556       luaL_error(ms->L, "invalid capture index %%%d", i + 1);
557   }
558   else {
559     ptrdiff_t l = ms->capture[i].len;
560     if (l == CAP_UNFINISHED) luaL_error(ms->L, "unfinished capture");
561     if (l == CAP_POSITION)
562       lua_pushinteger(ms->L, (ms->capture[i].init - ms->src_init) + 1);
563     else
564       lua_pushlstring(ms->L, ms->capture[i].init, l);
565   }
566 }
567 
568 
569 static int push_captures (MatchState *ms, const char *s, const char *e) {
570   int i;
571   int nlevels = (ms->level == 0 && s) ? 1 : ms->level;
572   luaL_checkstack(ms->L, nlevels, "too many captures");
573   for (i = 0; i < nlevels; i++)
574     push_onecapture(ms, i, s, e);
575   return nlevels;  /* number of strings pushed */
576 }
577 
578 
579 /* check whether pattern has no special characters */
580 static int nospecials (const char *p, size_t l) {
581   size_t upto = 0;
582   do {
583     if (strpbrk(p + upto, SPECIALS))
584       return 0;  /* pattern has a special character */
585     upto += strlen(p + upto) + 1;  /* may have more after \0 */
586   } while (upto <= l);
587   return 1;  /* no special chars found */
588 }
589 
590 
591 static int str_find_aux (lua_State *L, int find) {
592   size_t ls, lp;
593   const char *s = luaL_checklstring(L, 1, &ls);
594   const char *p = luaL_checklstring(L, 2, &lp);
595   lua_Integer init = posrelat(luaL_optinteger(L, 3, 1), ls);
596   if (init < 1) init = 1;
597   else if (init > (lua_Integer)ls + 1) {  /* start after string's end? */
598     lua_pushnil(L);  /* cannot find anything */
599     return 1;
600   }
601   /* explicit request or no special characters? */
602   if (find && (lua_toboolean(L, 4) || nospecials(p, lp))) {
603     /* do a plain search */
604     const char *s2 = lmemfind(s + init - 1, ls - (size_t)init + 1, p, lp);
605     if (s2) {
606       lua_pushinteger(L, (s2 - s) + 1);
607       lua_pushinteger(L, (s2 - s) + lp);
608       return 2;
609     }
610   }
611   else {
612     MatchState ms;
613     const char *s1 = s + init - 1;
614     int anchor = (*p == '^');
615     if (anchor) {
616       p++; lp--;  /* skip anchor character */
617     }
618     ms.L = L;
619     ms.matchdepth = MAXCCALLS;
620     ms.src_init = s;
621     ms.src_end = s + ls;
622     ms.p_end = p + lp;
623     do {
624       const char *res;
625       ms.level = 0;
626       lua_assert(ms.matchdepth == MAXCCALLS);
627       if ((res=match(&ms, s1, p)) != NULL) {
628         if (find) {
629           lua_pushinteger(L, (s1 - s) + 1);  /* start */
630           lua_pushinteger(L, res - s);   /* end */
631           return push_captures(&ms, NULL, 0) + 2;
632         }
633         else
634           return push_captures(&ms, s1, res);
635       }
636     } while (s1++ < ms.src_end && !anchor);
637   }
638   lua_pushnil(L);  /* not found */
639   return 1;
640 }
641 
642 
643 static int str_find (lua_State *L) {
644   return str_find_aux(L, 1);
645 }
646 
647 
648 static int str_match (lua_State *L) {
649   return str_find_aux(L, 0);
650 }
651 
652 
653 static int gmatch_aux (lua_State *L) {
654   MatchState ms;
655   size_t ls, lp;
656   const char *s = lua_tolstring(L, lua_upvalueindex(1), &ls);
657   const char *p = lua_tolstring(L, lua_upvalueindex(2), &lp);
658   const char *src;
659   ms.L = L;
660   ms.matchdepth = MAXCCALLS;
661   ms.src_init = s;
662   ms.src_end = s+ls;
663   ms.p_end = p + lp;
664   for (src = s + (size_t)lua_tointeger(L, lua_upvalueindex(3));
665        src <= ms.src_end;
666        src++) {
667     const char *e;
668     ms.level = 0;
669     lua_assert(ms.matchdepth == MAXCCALLS);
670     if ((e = match(&ms, src, p)) != NULL) {
671       lua_Integer newstart = e-s;
672       if (e == src) newstart++;  /* empty match? go at least one position */
673       lua_pushinteger(L, newstart);
674       lua_replace(L, lua_upvalueindex(3));
675       return push_captures(&ms, src, e);
676     }
677   }
678   return 0;  /* not found */
679 }
680 
681 
682 static int gmatch (lua_State *L) {
683   luaL_checkstring(L, 1);
684   luaL_checkstring(L, 2);
685   lua_settop(L, 2);
686   lua_pushinteger(L, 0);
687   lua_pushcclosure(L, gmatch_aux, 3);
688   return 1;
689 }
690 
691 
692 static void add_s (MatchState *ms, luaL_Buffer *b, const char *s,
693                                                    const char *e) {
694   size_t l, i;
695   lua_State *L = ms->L;
696   const char *news = lua_tolstring(L, 3, &l);
697   for (i = 0; i < l; i++) {
698     if (news[i] != L_ESC)
699       luaL_addchar(b, news[i]);
700     else {
701       i++;  /* skip ESC */
702       if (!isdigit(uchar(news[i]))) {
703         if (news[i] != L_ESC)
704           luaL_error(L, "invalid use of '%c' in replacement string", L_ESC);
705         luaL_addchar(b, news[i]);
706       }
707       else if (news[i] == '0')
708           luaL_addlstring(b, s, e - s);
709       else {
710         push_onecapture(ms, news[i] - '1', s, e);
711         luaL_tolstring(L, -1, NULL);  /* if number, convert it to string */
712         lua_remove(L, -2);  /* remove original value */
713         luaL_addvalue(b);  /* add capture to accumulated result */
714       }
715     }
716   }
717 }
718 
719 
720 static void add_value (MatchState *ms, luaL_Buffer *b, const char *s,
721                                        const char *e, int tr) {
722   lua_State *L = ms->L;
723   switch (tr) {
724     case LUA_TFUNCTION: {
725       int n;
726       lua_pushvalue(L, 3);
727       n = push_captures(ms, s, e);
728       lua_call(L, n, 1);
729       break;
730     }
731     case LUA_TTABLE: {
732       push_onecapture(ms, 0, s, e);
733       lua_gettable(L, 3);
734       break;
735     }
736     default: {  /* LUA_TNUMBER or LUA_TSTRING */
737       add_s(ms, b, s, e);
738       return;
739     }
740   }
741   if (!lua_toboolean(L, -1)) {  /* nil or false? */
742     lua_pop(L, 1);
743     lua_pushlstring(L, s, e - s);  /* keep original text */
744   }
745   else if (!lua_isstring(L, -1))
746     luaL_error(L, "invalid replacement value (a %s)", luaL_typename(L, -1));
747   luaL_addvalue(b);  /* add result to accumulator */
748 }
749 
750 
751 static int str_gsub (lua_State *L) {
752   size_t srcl, lp;
753   const char *src = luaL_checklstring(L, 1, &srcl);
754   const char *p = luaL_checklstring(L, 2, &lp);
755   int tr = lua_type(L, 3);
756   lua_Integer max_s = luaL_optinteger(L, 4, srcl + 1);
757   int anchor = (*p == '^');
758   lua_Integer n = 0;
759   MatchState ms;
760   luaL_Buffer b;
761   luaL_argcheck(L, tr == LUA_TNUMBER || tr == LUA_TSTRING ||
762                    tr == LUA_TFUNCTION || tr == LUA_TTABLE, 3,
763                       "string/function/table expected");
764   luaL_buffinit(L, &b);
765   if (anchor) {
766     p++; lp--;  /* skip anchor character */
767   }
768   ms.L = L;
769   ms.matchdepth = MAXCCALLS;
770   ms.src_init = src;
771   ms.src_end = src+srcl;
772   ms.p_end = p + lp;
773   while (n < max_s) {
774     const char *e;
775     ms.level = 0;
776     lua_assert(ms.matchdepth == MAXCCALLS);
777     e = match(&ms, src, p);
778     if (e) {
779       n++;
780       add_value(&ms, &b, src, e, tr);
781     }
782     if (e && e>src) /* non empty match? */
783       src = e;  /* skip it */
784     else if (src < ms.src_end)
785       luaL_addchar(&b, *src++);
786     else break;
787     if (anchor) break;
788   }
789   luaL_addlstring(&b, src, ms.src_end-src);
790   luaL_pushresult(&b);
791   lua_pushinteger(L, n);  /* number of substitutions */
792   return 2;
793 }
794 
795 /* }====================================================== */
796 
797 
798 
799 /*
800 ** {======================================================
801 ** STRING FORMAT
802 ** =======================================================
803 */
804 
805 #if !defined(lua_number2strx)	/* { */
806 
807 /*
808 ** Hexadecimal floating-point formatter
809 */
810 
811 #include <locale.h>
812 #include <math.h>
813 
814 #define SIZELENMOD	(sizeof(LUA_NUMBER_FRMLEN)/sizeof(char))
815 
816 
817 /*
818 ** Number of bits that goes into the first digit. It can be any value
819 ** between 1 and 4; the following definition tries to align the number
820 ** to nibble boundaries by making what is left after that first digit a
821 ** multiple of 4.
822 */
823 #define L_NBFD		((l_mathlim(MANT_DIG) - 1)%4 + 1)
824 
825 
826 /*
827 ** Add integer part of 'x' to buffer and return new 'x'
828 */
829 static lua_Number adddigit (char *buff, int n, lua_Number x) {
830   lua_Number dd = l_mathop(floor)(x);  /* get integer part from 'x' */
831   int d = (int)dd;
832   buff[n] = (d < 10 ? d + '0' : d - 10 + 'a');  /* add to buffer */
833   return x - dd;  /* return what is left */
834 }
835 
836 
837 static int num2straux (char *buff, size_t len, lua_Number x) {
838   if (x != x || x == HUGE_VAL || x == -HUGE_VAL)  /* inf or NaN? */
839     return snprintf(buff, len, LUA_NUMBER_FMT, x);  /* equal to '%g' */
840   else if (x == 0) {  /* can be -0... */
841     snprintf(buff, len, LUA_NUMBER_FMT, x);
842     strlcat(buff, "x0p+0", len);  /* reuses '0/-0' from 'snprintf'... */
843     return strlen(buff);
844   }
845   else {
846     int e;
847     lua_Number m = l_mathop(frexp)(x, &e);  /* 'x' fraction and exponent */
848     int n = 0;  /* character count */
849     if (m < 0) {  /* is number negative? */
850       buff[n++] = '-';  /* add signal */
851       m = -m;  /* make it positive */
852     }
853     buff[n++] = '0'; buff[n++] = 'x';  /* add "0x" */
854     m = adddigit(buff, n++, m * (1 << L_NBFD));  /* add first digit */
855     e -= L_NBFD;  /* this digit goes before the radix point */
856     if (m > 0) {  /* more digits? */
857       buff[n++] = lua_getlocaledecpoint();  /* add radix point */
858       do {  /* add as many digits as needed */
859         m = adddigit(buff, n++, m * 16);
860       } while (m > 0);
861     }
862     if (len > (size_t)n)
863 	    n += snprintf(buff + n, len - n, "p%+d", e);  /* add exponent */
864     return n;
865   }
866 }
867 
868 
869 static int lua_number2strx (lua_State *L, char *buff, const char *fmt,
870                             lua_Number x) {
871   int n = num2straux(buff, x);
872   if (fmt[SIZELENMOD] == 'A') {
873     int i;
874     for (i = 0; i < n; i++)
875       buff[i] = toupper(uchar(buff[i]));
876   }
877   else if (fmt[SIZELENMOD] != 'a')
878     luaL_error(L, "modifiers for format '%%a'/'%%A' not implemented");
879   return n;
880 }
881 
882 #endif				/* } */
883 
884 
885 /*
886 ** Maximum size of each formatted item. This maximum size is produced
887 ** by format('%.99f', minfloat), and is equal to 99 + 2 ('-' and '.') +
888 ** number of decimal digits to represent minfloat.
889 */
890 #ifndef _KERNEL
891 #define MAX_ITEM	(120 + l_mathlim(MAX_10_EXP))
892 #else
893 #define MAX_ITEM	(120)
894 #endif
895 
896 /* valid flags in a format specification */
897 #define FLAGS	"-+ #0"
898 
899 /*
900 ** maximum size of each format specification (such as "%-099.99d")
901 */
902 #define MAX_FORMAT	32
903 
904 
905 static void addquoted (lua_State *L, luaL_Buffer *b, int arg) {
906   size_t l;
907   const char *s = luaL_checklstring(L, arg, &l);
908   luaL_addchar(b, '"');
909   while (l--) {
910     if (*s == '"' || *s == '\\' || *s == '\n') {
911       luaL_addchar(b, '\\');
912       luaL_addchar(b, *s);
913     }
914     else if (*s == '\0' || iscntrl(uchar(*s))) {
915       char buff[10];
916       if (!isdigit(uchar(*(s+1))))
917         snprintf(buff, sizeof(buff), "\\%d", (int)uchar(*s));
918       else
919         snprintf(buff, sizeof(buff), "\\%03d", (int)uchar(*s));
920       luaL_addstring(b, buff);
921     }
922     else
923       luaL_addchar(b, *s);
924     s++;
925   }
926   luaL_addchar(b, '"');
927 }
928 
929 static const char *scanformat (lua_State *L, const char *strfrmt, char *form) {
930   const char *p = strfrmt;
931   while (*p != '\0' && strchr(FLAGS, *p) != NULL) p++;  /* skip flags */
932   if ((size_t)(p - strfrmt) >= sizeof(FLAGS)/sizeof(char))
933     luaL_error(L, "invalid format (repeated flags)");
934   if (isdigit(uchar(*p))) p++;  /* skip width */
935   if (isdigit(uchar(*p))) p++;  /* (2 digits at most) */
936   if (*p == '.') {
937     p++;
938     if (isdigit(uchar(*p))) p++;  /* skip precision */
939     if (isdigit(uchar(*p))) p++;  /* (2 digits at most) */
940   }
941   if (isdigit(uchar(*p)))
942     luaL_error(L, "invalid format (width or precision too long)");
943   *(form++) = '%';
944   memcpy(form, strfrmt, ((p - strfrmt) + 1) * sizeof(char));
945   form += (p - strfrmt) + 1;
946   *form = '\0';
947   return p;
948 }
949 
950 
951 /*
952 ** add length modifier into formats
953 */
954 static void addlenmod (char *form, const char *lenmod) {
955   size_t l = strlen(form);
956   size_t lm = strlen(lenmod);
957   char spec = form[l - 1];
958   strcpy(form + l - 1, lenmod);
959   form[l + lm - 1] = spec;
960   form[l + lm] = '\0';
961 }
962 
963 
964 static int str_format (lua_State *L) {
965   int top = lua_gettop(L);
966   int arg = 1;
967   size_t sfl;
968   const char *strfrmt = luaL_checklstring(L, arg, &sfl);
969   const char *strfrmt_end = strfrmt+sfl;
970   luaL_Buffer b;
971   luaL_buffinit(L, &b);
972   while (strfrmt < strfrmt_end) {
973     if (*strfrmt != L_ESC)
974       luaL_addchar(&b, *strfrmt++);
975     else if (*++strfrmt == L_ESC)
976       luaL_addchar(&b, *strfrmt++);  /* %% */
977     else { /* format item */
978       char form[MAX_FORMAT];  /* to store the format ('%...') */
979       char *buff = luaL_prepbuffsize(&b, MAX_ITEM);  /* to put formatted item */
980       int nb = 0;  /* number of bytes in added item */
981       if (++arg > top)
982         luaL_argerror(L, arg, "no value");
983       strfrmt = scanformat(L, strfrmt, form);
984       switch (*strfrmt++) {
985         case 'c': {
986           nb = snprintf(buff, MAX_ITEM, form, (int)luaL_checkinteger(L, arg));
987           break;
988         }
989         case 'd': case 'i':
990         case 'o': case 'u': case 'x': case 'X': {
991           lua_Integer n = luaL_checkinteger(L, arg);
992           addlenmod(form, LUA_INTEGER_FRMLEN);
993           nb = snprintf(buff, MAX_ITEM, form, n);
994           break;
995         }
996 #ifndef _KERNEL
997         case 'a': case 'A':
998           addlenmod(form, LUA_NUMBER_FRMLEN);
999           nb = lua_number2strx(L, buff, MAX_ITEM, form, luaL_checknumber(L, arg));
1000           break;
1001         case 'e': case 'E': case 'f':
1002         case 'g': case 'G': {
1003           addlenmod(form, LUA_NUMBER_FRMLEN);
1004           nb = snprintf(buff, MAX_ITEM, form, luaL_checknumber(L, arg));
1005           break;
1006         }
1007 #endif
1008         case 'q': {
1009           addquoted(L, &b, arg);
1010           break;
1011         }
1012         case 's': {
1013           size_t l;
1014           const char *s = luaL_tolstring(L, arg, &l);
1015           if (!strchr(form, '.') && l >= 100) {
1016             /* no precision and string is too long to be formatted;
1017                keep original string */
1018             luaL_addvalue(&b);
1019           }
1020           else {
1021             nb = snprintf(buff, MAX_ITEM, form, s);
1022             lua_pop(L, 1);  /* remove result from 'luaL_tolstring' */
1023           }
1024           break;
1025         }
1026         default: {  /* also treat cases 'pnLlh' */
1027           return luaL_error(L, "invalid option '%%%c' to 'format'",
1028                                *(strfrmt - 1));
1029         }
1030       }
1031       luaL_addsize(&b, nb);
1032     }
1033   }
1034   luaL_pushresult(&b);
1035   return 1;
1036 }
1037 
1038 /* }====================================================== */
1039 
1040 
1041 /*
1042 ** {======================================================
1043 ** PACK/UNPACK
1044 ** =======================================================
1045 */
1046 
1047 
1048 /* value used for padding */
1049 #if !defined(LUA_PACKPADBYTE)
1050 #define LUA_PACKPADBYTE		0x00
1051 #endif
1052 
1053 /* maximum size for the binary representation of an integer */
1054 #define MAXINTSIZE	16
1055 
1056 /* number of bits in a character */
1057 #define NB	CHAR_BIT
1058 
1059 /* mask for one character (NB 1's) */
1060 #define MC	((1 << NB) - 1)
1061 
1062 /* size of a lua_Integer */
1063 #define SZINT	((int)sizeof(lua_Integer))
1064 
1065 
1066 /* dummy union to get native endianness */
1067 static const union {
1068   int dummy;
1069   char little;  /* true iff machine is little endian */
1070 } nativeendian = {1};
1071 
1072 
1073 /* dummy structure to get native alignment requirements */
1074 struct cD {
1075   char c;
1076 #ifndef _KERNEL
1077   union { double d; void *p; lua_Integer i; lua_Number n; } u;
1078 #else /* _KERNEL */
1079   union { void *p; lua_Integer i; lua_Number n; } u;
1080 #endif
1081 };
1082 
1083 #define MAXALIGN	(offsetof(struct cD, u))
1084 
1085 
1086 #ifndef _KERNEL
1087 /*
1088 ** Union for serializing floats
1089 */
1090 typedef union Ftypes {
1091   float f;
1092   double d;
1093   lua_Number n;
1094   char buff[5 * sizeof(lua_Number)];  /* enough for any float type */
1095 } Ftypes;
1096 #endif
1097 
1098 
1099 /*
1100 ** information to pack/unpack stuff
1101 */
1102 typedef struct Header {
1103   lua_State *L;
1104   int islittle;
1105   int maxalign;
1106 } Header;
1107 
1108 
1109 /*
1110 ** options for pack/unpack
1111 */
1112 typedef enum KOption {
1113   Kint,		/* signed integers */
1114   Kuint,	/* unsigned integers */
1115 #ifndef _KERNEL
1116   Kfloat,	/* floating-point numbers */
1117 #endif
1118   Kchar,	/* fixed-length strings */
1119   Kstring,	/* strings with prefixed length */
1120   Kzstr,	/* zero-terminated strings */
1121   Kpadding,	/* padding */
1122   Kpaddalign,	/* padding for alignment */
1123   Knop		/* no-op (configuration or spaces) */
1124 } KOption;
1125 
1126 
1127 /*
1128 ** Read an integer numeral from string 'fmt' or return 'df' if
1129 ** there is no numeral
1130 */
1131 static int digit (int c) { return '0' <= c && c <= '9'; }
1132 
1133 static int getnum (const char **fmt, int df) {
1134   if (!digit(**fmt))  /* no number? */
1135     return df;  /* return default value */
1136   else {
1137     int a = 0;
1138     do {
1139       a = a*10 + (*((*fmt)++) - '0');
1140     } while (digit(**fmt) && a <= ((int)MAXSIZE - 9)/10);
1141     return a;
1142   }
1143 }
1144 
1145 
1146 /*
1147 ** Read an integer numeral and raises an error if it is larger
1148 ** than the maximum size for integers.
1149 */
1150 static int getnumlimit (Header *h, const char **fmt, int df) {
1151   int sz = getnum(fmt, df);
1152   if (sz > MAXINTSIZE || sz <= 0)
1153     luaL_error(h->L, "integral size (%d) out of limits [1,%d]",
1154                      sz, MAXINTSIZE);
1155   return sz;
1156 }
1157 
1158 
1159 /*
1160 ** Initialize Header
1161 */
1162 static void initheader (lua_State *L, Header *h) {
1163   h->L = L;
1164   h->islittle = nativeendian.little;
1165   h->maxalign = 1;
1166 }
1167 
1168 
1169 /*
1170 ** Read and classify next option. 'size' is filled with option's size.
1171 */
1172 static KOption getoption (Header *h, const char **fmt, int *size) {
1173   int opt = *((*fmt)++);
1174   *size = 0;  /* default */
1175   switch (opt) {
1176     case 'b': *size = sizeof(char); return Kint;
1177     case 'B': *size = sizeof(char); return Kuint;
1178     case 'h': *size = sizeof(short); return Kint;
1179     case 'H': *size = sizeof(short); return Kuint;
1180     case 'l': *size = sizeof(long); return Kint;
1181     case 'L': *size = sizeof(long); return Kuint;
1182     case 'j': *size = sizeof(lua_Integer); return Kint;
1183     case 'J': *size = sizeof(lua_Integer); return Kuint;
1184     case 'T': *size = sizeof(size_t); return Kuint;
1185 #ifndef _KERNEL
1186     case 'f': *size = sizeof(float); return Kfloat;
1187     case 'd': *size = sizeof(double); return Kfloat;
1188     case 'n': *size = sizeof(lua_Number); return Kfloat;
1189 #else /* _KERNEL */
1190     case 'n': *size = sizeof(lua_Number); return Kint;
1191 #endif
1192     case 'i': *size = getnumlimit(h, fmt, sizeof(int)); return Kint;
1193     case 'I': *size = getnumlimit(h, fmt, sizeof(int)); return Kuint;
1194     case 's': *size = getnumlimit(h, fmt, sizeof(size_t)); return Kstring;
1195     case 'c':
1196       *size = getnum(fmt, -1);
1197       if (*size == -1)
1198         luaL_error(h->L, "missing size for format option 'c'");
1199       return Kchar;
1200     case 'z': return Kzstr;
1201     case 'x': *size = 1; return Kpadding;
1202     case 'X': return Kpaddalign;
1203     case ' ': break;
1204     case '<': h->islittle = 1; break;
1205     case '>': h->islittle = 0; break;
1206     case '=': h->islittle = nativeendian.little; break;
1207     case '!': h->maxalign = getnumlimit(h, fmt, MAXALIGN); break;
1208     default: luaL_error(h->L, "invalid format option '%c'", opt);
1209   }
1210   return Knop;
1211 }
1212 
1213 
1214 /*
1215 ** Read, classify, and fill other details about the next option.
1216 ** 'psize' is filled with option's size, 'notoalign' with its
1217 ** alignment requirements.
1218 ** Local variable 'size' gets the size to be aligned. (Kpadal option
1219 ** always gets its full alignment, other options are limited by
1220 ** the maximum alignment ('maxalign'). Kchar option needs no alignment
1221 ** despite its size.
1222 */
1223 static KOption getdetails (Header *h, size_t totalsize,
1224                            const char **fmt, int *psize, int *ntoalign) {
1225   KOption opt = getoption(h, fmt, psize);
1226   int align = *psize;  /* usually, alignment follows size */
1227   if (opt == Kpaddalign) {  /* 'X' gets alignment from following option */
1228     if (**fmt == '\0' || getoption(h, fmt, &align) == Kchar || align == 0)
1229       luaL_argerror(h->L, 1, "invalid next option for option 'X'");
1230   }
1231   if (align <= 1 || opt == Kchar)  /* need no alignment? */
1232     *ntoalign = 0;
1233   else {
1234     if (align > h->maxalign)  /* enforce maximum alignment */
1235       align = h->maxalign;
1236     if ((align & (align - 1)) != 0)  /* is 'align' not a power of 2? */
1237       luaL_argerror(h->L, 1, "format asks for alignment not power of 2");
1238     *ntoalign = (align - (int)(totalsize & (align - 1))) & (align - 1);
1239   }
1240   return opt;
1241 }
1242 
1243 
1244 /*
1245 ** Pack integer 'n' with 'size' bytes and 'islittle' endianness.
1246 ** The final 'if' handles the case when 'size' is larger than
1247 ** the size of a Lua integer, correcting the extra sign-extension
1248 ** bytes if necessary (by default they would be zeros).
1249 */
1250 static void packint (luaL_Buffer *b, lua_Unsigned n,
1251                      int islittle, int size, int neg) {
1252   char *buff = luaL_prepbuffsize(b, size);
1253   int i;
1254   buff[islittle ? 0 : size - 1] = (char)(n & MC);  /* first byte */
1255   for (i = 1; i < size; i++) {
1256     n >>= NB;
1257     buff[islittle ? i : size - 1 - i] = (char)(n & MC);
1258   }
1259   if (neg && size > SZINT) {  /* negative number need sign extension? */
1260     for (i = SZINT; i < size; i++)  /* correct extra bytes */
1261       buff[islittle ? i : size - 1 - i] = (char)MC;
1262   }
1263   luaL_addsize(b, size);  /* add result to buffer */
1264 }
1265 
1266 
1267 #ifndef _KERNEL
1268 /*
1269 ** Copy 'size' bytes from 'src' to 'dest', correcting endianness if
1270 ** given 'islittle' is different from native endianness.
1271 */
1272 static void copywithendian (volatile char *dest, volatile const char *src,
1273                             int size, int islittle) {
1274   if (islittle == nativeendian.little) {
1275     while (size-- != 0)
1276       *(dest++) = *(src++);
1277   }
1278   else {
1279     dest += size - 1;
1280     while (size-- != 0)
1281       *(dest--) = *(src++);
1282   }
1283 }
1284 #endif
1285 
1286 
1287 static int str_pack (lua_State *L) {
1288   luaL_Buffer b;
1289   Header h;
1290   const char *fmt = luaL_checkstring(L, 1);  /* format string */
1291   int arg = 1;  /* current argument to pack */
1292   size_t totalsize = 0;  /* accumulate total size of result */
1293   initheader(L, &h);
1294   lua_pushnil(L);  /* mark to separate arguments from string buffer */
1295   luaL_buffinit(L, &b);
1296   while (*fmt != '\0') {
1297     int size, ntoalign;
1298     KOption opt = getdetails(&h, totalsize, &fmt, &size, &ntoalign);
1299     totalsize += ntoalign + size;
1300     while (ntoalign-- > 0)
1301      luaL_addchar(&b, LUA_PACKPADBYTE);  /* fill alignment */
1302     arg++;
1303     switch (opt) {
1304       case Kint: {  /* signed integers */
1305         lua_Integer n = luaL_checkinteger(L, arg);
1306         if (size < SZINT) {  /* need overflow check? */
1307           lua_Integer lim = (lua_Integer)1 << ((size * NB) - 1);
1308           luaL_argcheck(L, -lim <= n && n < lim, arg, "integer overflow");
1309         }
1310         packint(&b, (lua_Unsigned)n, h.islittle, size, (n < 0));
1311         break;
1312       }
1313       case Kuint: {  /* unsigned integers */
1314         lua_Integer n = luaL_checkinteger(L, arg);
1315         if (size < SZINT)  /* need overflow check? */
1316           luaL_argcheck(L, (lua_Unsigned)n < ((lua_Unsigned)1 << (size * NB)),
1317                            arg, "unsigned overflow");
1318         packint(&b, (lua_Unsigned)n, h.islittle, size, 0);
1319         break;
1320       }
1321 #ifndef _KERNEL
1322       case Kfloat: {  /* floating-point options */
1323         volatile Ftypes u;
1324         char *buff = luaL_prepbuffsize(&b, size);
1325         lua_Number n = luaL_checknumber(L, arg);  /* get argument */
1326         if (size == sizeof(u.f)) u.f = (float)n;  /* copy it into 'u' */
1327         else if (size == sizeof(u.d)) u.d = (double)n;
1328         else u.n = n;
1329         /* move 'u' to final result, correcting endianness if needed */
1330         copywithendian(buff, u.buff, size, h.islittle);
1331         luaL_addsize(&b, size);
1332         break;
1333       }
1334 #endif
1335       case Kchar: {  /* fixed-size string */
1336         size_t len;
1337         const char *s = luaL_checklstring(L, arg, &len);
1338         luaL_argcheck(L, len == (size_t)size, arg, "wrong length");
1339         luaL_addlstring(&b, s, size);
1340         break;
1341       }
1342       case Kstring: {  /* strings with length count */
1343         size_t len;
1344         const char *s = luaL_checklstring(L, arg, &len);
1345         luaL_argcheck(L, size >= (int)sizeof(size_t) ||
1346                          len < ((size_t)1 << (size * NB)),
1347                          arg, "string length does not fit in given size");
1348         packint(&b, (lua_Unsigned)len, h.islittle, size, 0);  /* pack length */
1349         luaL_addlstring(&b, s, len);
1350         totalsize += len;
1351         break;
1352       }
1353       case Kzstr: {  /* zero-terminated string */
1354         size_t len;
1355         const char *s = luaL_checklstring(L, arg, &len);
1356         luaL_argcheck(L, strlen(s) == len, arg, "string contains zeros");
1357         luaL_addlstring(&b, s, len);
1358         luaL_addchar(&b, '\0');  /* add zero at the end */
1359         totalsize += len + 1;
1360         break;
1361       }
1362       case Kpadding: luaL_addchar(&b, LUA_PACKPADBYTE);  /* FALLTHROUGH */
1363       case Kpaddalign: case Knop:
1364         arg--;  /* undo increment */
1365         break;
1366     }
1367   }
1368   luaL_pushresult(&b);
1369   return 1;
1370 }
1371 
1372 
1373 static int str_packsize (lua_State *L) {
1374   Header h;
1375   const char *fmt = luaL_checkstring(L, 1);  /* format string */
1376   size_t totalsize = 0;  /* accumulate total size of result */
1377   initheader(L, &h);
1378   while (*fmt != '\0') {
1379     int size, ntoalign;
1380     KOption opt = getdetails(&h, totalsize, &fmt, &size, &ntoalign);
1381     size += ntoalign;  /* total space used by option */
1382     luaL_argcheck(L, totalsize <= MAXSIZE - size, 1,
1383                      "format result too large");
1384     totalsize += size;
1385     switch (opt) {
1386       case Kstring:  /* strings with length count */
1387       case Kzstr:    /* zero-terminated string */
1388         luaL_argerror(L, 1, "variable-length format");
1389         break;
1390       default:  break;
1391     }
1392   }
1393   lua_pushinteger(L, (lua_Integer)totalsize);
1394   return 1;
1395 }
1396 
1397 
1398 /*
1399 ** Unpack an integer with 'size' bytes and 'islittle' endianness.
1400 ** If size is smaller than the size of a Lua integer and integer
1401 ** is signed, must do sign extension (propagating the sign to the
1402 ** higher bits); if size is larger than the size of a Lua integer,
1403 ** it must check the unread bytes to see whether they do not cause an
1404 ** overflow.
1405 */
1406 static lua_Integer unpackint (lua_State *L, const char *str,
1407                               int islittle, int size, int issigned) {
1408   lua_Unsigned res = 0;
1409   int i;
1410   int limit = (size  <= SZINT) ? size : SZINT;
1411   for (i = limit - 1; i >= 0; i--) {
1412     res <<= NB;
1413     res |= (lua_Unsigned)(unsigned char)str[islittle ? i : size - 1 - i];
1414   }
1415   if (size < SZINT) {  /* real size smaller than lua_Integer? */
1416     if (issigned) {  /* needs sign extension? */
1417       lua_Unsigned mask = (lua_Unsigned)1 << (size*NB - 1);
1418       res = ((res ^ mask) - mask);  /* do sign extension */
1419     }
1420   }
1421   else if (size > SZINT) {  /* must check unread bytes */
1422     int mask = (!issigned || (lua_Integer)res >= 0) ? 0 : MC;
1423     for (i = limit; i < size; i++) {
1424       if ((unsigned char)str[islittle ? i : size - 1 - i] != mask)
1425         luaL_error(L, "%d-byte integer does not fit into Lua Integer", size);
1426     }
1427   }
1428   return (lua_Integer)res;
1429 }
1430 
1431 
1432 static int str_unpack (lua_State *L) {
1433   Header h;
1434   const char *fmt = luaL_checkstring(L, 1);
1435   size_t ld;
1436   const char *data = luaL_checklstring(L, 2, &ld);
1437   size_t pos = (size_t)posrelat(luaL_optinteger(L, 3, 1), ld) - 1;
1438   int n = 0;  /* number of results */
1439   luaL_argcheck(L, pos <= ld, 3, "initial position out of string");
1440   initheader(L, &h);
1441   while (*fmt != '\0') {
1442     int size, ntoalign;
1443     KOption opt = getdetails(&h, pos, &fmt, &size, &ntoalign);
1444     if ((size_t)ntoalign + size > ~pos || pos + ntoalign + size > ld)
1445       luaL_argerror(L, 2, "data string too short");
1446     pos += ntoalign;  /* skip alignment */
1447     /* stack space for item + next position */
1448     luaL_checkstack(L, 2, "too many results");
1449     n++;
1450     switch (opt) {
1451       case Kint:
1452       case Kuint: {
1453         lua_Integer res = unpackint(L, data + pos, h.islittle, size,
1454                                        (opt == Kint));
1455         lua_pushinteger(L, res);
1456         break;
1457       }
1458 #ifndef _KERNEL
1459       case Kfloat: {
1460         volatile Ftypes u;
1461         lua_Number num;
1462         copywithendian(u.buff, data + pos, size, h.islittle);
1463         if (size == sizeof(u.f)) num = (lua_Number)u.f;
1464         else if (size == sizeof(u.d)) num = (lua_Number)u.d;
1465         else num = u.n;
1466         lua_pushnumber(L, num);
1467         break;
1468       }
1469 #endif
1470       case Kchar: {
1471         lua_pushlstring(L, data + pos, size);
1472         break;
1473       }
1474       case Kstring: {
1475         size_t len = (size_t)unpackint(L, data + pos, h.islittle, size, 0);
1476         luaL_argcheck(L, pos + len + size <= ld, 2, "data string too short");
1477         lua_pushlstring(L, data + pos + size, len);
1478         pos += len;  /* skip string */
1479         break;
1480       }
1481       case Kzstr: {
1482         size_t len = (int)strlen(data + pos);
1483         lua_pushlstring(L, data + pos, len);
1484         pos += len + 1;  /* skip string plus final '\0' */
1485         break;
1486       }
1487       case Kpaddalign: case Kpadding: case Knop:
1488         n--;  /* undo increment */
1489         break;
1490     }
1491     pos += size;
1492   }
1493   lua_pushinteger(L, pos + 1);  /* next position */
1494   return n + 1;
1495 }
1496 
1497 /* }====================================================== */
1498 
1499 
1500 static const luaL_Reg strlib[] = {
1501   {"byte", str_byte},
1502   {"char", str_char},
1503   {"dump", str_dump},
1504   {"find", str_find},
1505   {"format", str_format},
1506   {"gmatch", gmatch},
1507   {"gsub", str_gsub},
1508   {"len", str_len},
1509   {"lower", str_lower},
1510   {"match", str_match},
1511   {"rep", str_rep},
1512   {"reverse", str_reverse},
1513   {"sub", str_sub},
1514   {"upper", str_upper},
1515   {"pack", str_pack},
1516   {"packsize", str_packsize},
1517   {"unpack", str_unpack},
1518   {NULL, NULL}
1519 };
1520 
1521 
1522 static void createmetatable (lua_State *L) {
1523   lua_createtable(L, 0, 1);  /* table to be metatable for strings */
1524   lua_pushliteral(L, "");  /* dummy string */
1525   lua_pushvalue(L, -2);  /* copy table */
1526   lua_setmetatable(L, -2);  /* set table as metatable for strings */
1527   lua_pop(L, 1);  /* pop dummy string */
1528   lua_pushvalue(L, -2);  /* get string library */
1529   lua_setfield(L, -2, "__index");  /* metatable.__index = string */
1530   lua_pop(L, 1);  /* pop metatable */
1531 }
1532 
1533 
1534 /*
1535 ** Open string library
1536 */
1537 LUAMOD_API int luaopen_string (lua_State *L) {
1538   luaL_newlib(L, strlib);
1539   createmetatable(L);
1540   return 1;
1541 }
1542 
1543