Coverage Report

Created: 2025-10-27 06:39

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/testdir/build/lua-master/source/lvm.c
Line
Count
Source
1
/*
2
** $Id: lvm.c $
3
** Lua virtual machine
4
** See Copyright Notice in lua.h
5
*/
6
7
#define lvm_c
8
#define LUA_CORE
9
10
#include "lprefix.h"
11
12
#include <float.h>
13
#include <limits.h>
14
#include <math.h>
15
#include <stdio.h>
16
#include <stdlib.h>
17
#include <string.h>
18
19
#include "lua.h"
20
21
#include "lapi.h"
22
#include "ldebug.h"
23
#include "ldo.h"
24
#include "lfunc.h"
25
#include "lgc.h"
26
#include "lobject.h"
27
#include "lopcodes.h"
28
#include "lstate.h"
29
#include "lstring.h"
30
#include "ltable.h"
31
#include "ltm.h"
32
#include "lvm.h"
33
34
35
/*
36
** By default, use jump tables in the main interpreter loop on gcc
37
** and compatible compilers.
38
*/
39
#if !defined(LUA_USE_JUMPTABLE)
40
#if defined(__GNUC__)
41
#define LUA_USE_JUMPTABLE 1
42
#else
43
#define LUA_USE_JUMPTABLE 0
44
#endif
45
#endif
46
47
48
49
/* limit for table tag-method chains (to avoid infinite loops) */
50
299M
#define MAXTAGLOOP  2000
51
52
53
/*
54
** 'l_intfitsf' checks whether a given integer is in the range that
55
** can be converted to a float without rounding. Used in comparisons.
56
*/
57
58
/* number of bits in the mantissa of a float */
59
11.3M
#define NBM   (l_floatatt(MANT_DIG))
60
61
/*
62
** Check whether some integers may not fit in a float, testing whether
63
** (maxinteger >> NBM) > 0. (That implies (1 << NBM) <= maxinteger.)
64
** (The shifts are done in parts, to avoid shifting by more than the size
65
** of an integer. In a worst case, NBM == 113 for long double and
66
** sizeof(long) == 32.)
67
*/
68
#if ((((LUA_MAXINTEGER >> (NBM / 4)) >> (NBM / 4)) >> (NBM / 4)) \
69
  >> (NBM - (3 * (NBM / 4))))  >  0
70
71
/* limit for integers that fit in a float */
72
11.3M
#define MAXINTFITSF ((lua_Unsigned)1 << NBM)
73
74
/* check whether 'i' is in the interval [-MAXINTFITSF, MAXINTFITSF] */
75
5.65M
#define l_intfitsf(i) ((MAXINTFITSF + l_castS2U(i)) <= (2 * MAXINTFITSF))
76
77
#else  /* all integers fit in a float precisely */
78
79
#define l_intfitsf(i) 1
80
81
#endif
82
83
84
/*
85
** Try to convert a value from string to a number value.
86
** If the value is not a string or is a string not representing
87
** a valid numeral (or if coercions from strings to numbers
88
** are disabled via macro 'cvt2num'), do not modify 'result'
89
** and return 0.
90
*/
91
3.58M
static int l_strton (const TValue *obj, TValue *result) {
92
3.58M
  lua_assert(obj != result);
93
3.58M
  if (!cvt2num(obj))  /* is object not a string? */
94
2.40M
    return 0;
95
1.18M
  else {
96
1.18M
    TString *st = tsvalue(obj);
97
1.18M
    size_t stlen;
98
1.18M
    const char *s = getlstr(st, stlen);
99
1.18M
    return (luaO_str2num(s, result) == stlen + 1);
100
1.18M
  }
101
3.58M
}
102
103
104
/*
105
** Try to convert a value to a float. The float case is already handled
106
** by the macro 'tonumber'.
107
*/
108
1.16M
int luaV_tonumber_ (const TValue *obj, lua_Number *n) {
109
1.16M
  TValue v;
110
1.16M
  if (ttisinteger(obj)) {
111
520k
    *n = cast_num(ivalue(obj));
112
520k
    return 1;
113
520k
  }
114
646k
  else if (l_strton(obj, &v)) {  /* string coercible to number? */
115
409k
    *n = nvalue(&v);  /* convert result of 'luaO_str2num' to a float */
116
409k
    return 1;
117
409k
  }
118
237k
  else
119
237k
    return 0;  /* conversion failed */
120
1.16M
}
121
122
123
/*
124
** try to convert a float to an integer, rounding according to 'mode'.
125
*/
126
151M
int luaV_flttointeger (lua_Number n, lua_Integer *p, F2Imod mode) {
127
151M
  lua_Number f = l_floor(n);
128
151M
  if (n != f) {  /* not an integral value? */
129
12.1M
    if (mode == F2Ieq) return 0;  /* fails if mode demands integral value */
130
383k
    else if (mode == F2Iceil)  /* needs ceiling? */
131
125k
      f += 1;  /* convert floor to ceiling (remember: n != f) */
132
12.1M
  }
133
140M
  return lua_numbertointeger(f, p);
134
151M
}
135
136
137
/*
138
** try to convert a value to an integer, rounding according to 'mode',
139
** without string coercion.
140
** ("Fast track" handled by macro 'tointegerns'.)
141
*/
142
21.6M
int luaV_tointegerns (const TValue *obj, lua_Integer *p, F2Imod mode) {
143
21.6M
  if (ttisfloat(obj))
144
14.7M
    return luaV_flttointeger(fltvalue(obj), p, mode);
145
6.86M
  else if (ttisinteger(obj)) {
146
5.77M
    *p = ivalue(obj);
147
5.77M
    return 1;
148
5.77M
  }
149
1.09M
  else
150
1.09M
    return 0;
151
21.6M
}
152
153
154
/*
155
** try to convert a value to an integer.
156
*/
157
2.93M
int luaV_tointeger (const TValue *obj, lua_Integer *p, F2Imod mode) {
158
2.93M
  TValue v;
159
2.93M
  if (l_strton(obj, &v))  /* does 'obj' point to a numerical string? */
160
349k
    obj = &v;  /* change it to point to its corresponding number */
161
2.93M
  return luaV_tointegerns(obj, p, mode);
162
2.93M
}
163
164
165
/*
166
** Try to convert a 'for' limit to an integer, preserving the semantics
167
** of the loop. Return true if the loop must not run; otherwise, '*p'
168
** gets the integer limit.
169
** (The following explanation assumes a positive step; it is valid for
170
** negative steps mutatis mutandis.)
171
** If the limit is an integer or can be converted to an integer,
172
** rounding down, that is the limit.
173
** Otherwise, check whether the limit can be converted to a float. If
174
** the float is too large, clip it to LUA_MAXINTEGER.  If the float
175
** is too negative, the loop should not run, because any initial
176
** integer value is greater than such limit; so, the function returns
177
** true to signal that. (For this latter case, no integer limit would be
178
** correct; even a limit of LUA_MININTEGER would run the loop once for
179
** an initial value equal to LUA_MININTEGER.)
180
*/
181
static int forlimit (lua_State *L, lua_Integer init, const TValue *lim,
182
2.31M
                                   lua_Integer *p, lua_Integer step) {
183
2.31M
  if (!luaV_tointeger(lim, p, (step < 0 ? F2Iceil : F2Ifloor))) {
184
    /* not coercible to in integer */
185
20.7k
    lua_Number flim;  /* try to convert to float */
186
20.7k
    if (!tonumber(lim, &flim)) /* cannot convert to float? */
187
2.48k
      luaG_forerror(L, lim, "limit");
188
    /* else 'flim' is a float out of integer bounds */
189
18.3k
    if (luai_numlt(0, flim)) {  /* if it is positive, it is too large */
190
8.75k
      if (step < 0) return 1;  /* initial value must be less than it */
191
6.87k
      *p = LUA_MAXINTEGER;  /* truncate */
192
6.87k
    }
193
9.55k
    else {  /* it is less than min integer */
194
9.55k
      if (step > 0) return 1;  /* initial value must be greater than it */
195
4.76k
      *p = LUA_MININTEGER;  /* truncate */
196
4.76k
    }
197
18.3k
  }
198
2.30M
  return (step > 0 ? init > *p : init < *p);  /* not to run? */
199
2.31M
}
200
201
202
/*
203
** Prepare a numerical for loop (opcode OP_FORPREP).
204
** Before execution, stack is as follows:
205
**   ra     : initial value
206
**   ra + 1 : limit
207
**   ra + 2 : step
208
** Return true to skip the loop. Otherwise,
209
** after preparation, stack will be as follows:
210
**   ra     : loop counter (integer loops) or limit (float loops)
211
**   ra + 1 : step
212
**   ra + 2 : control variable
213
*/
214
2.73M
static int forprep (lua_State *L, StkId ra) {
215
2.73M
  TValue *pinit = s2v(ra);
216
2.73M
  TValue *plimit = s2v(ra + 1);
217
2.73M
  TValue *pstep = s2v(ra + 2);
218
2.73M
  if (ttisinteger(pinit) && ttisinteger(pstep)) { /* integer loop? */
219
2.31M
    lua_Integer init = ivalue(pinit);
220
2.31M
    lua_Integer step = ivalue(pstep);
221
2.31M
    lua_Integer limit;
222
2.31M
    if (step == 0)
223
103
      luaG_runerror(L, "'for' step is zero");
224
2.31M
    if (forlimit(L, init, plimit, &limit, step))
225
1.39M
      return 1;  /* skip the loop */
226
922k
    else {  /* prepare loop counter */
227
922k
      lua_Unsigned count;
228
922k
      if (step > 0) {  /* ascending loop? */
229
912k
        count = l_castS2U(limit) - l_castS2U(init);
230
912k
        if (step != 1)  /* avoid division in the too common case */
231
6.42k
          count /= l_castS2U(step);
232
912k
      }
233
9.99k
      else {  /* step < 0; descending loop */
234
9.99k
        count = l_castS2U(init) - l_castS2U(limit);
235
        /* 'step+1' avoids negating 'mininteger' */
236
9.99k
        count /= l_castS2U(-(step + 1)) + 1u;
237
9.99k
      }
238
      /* use 'chgivalue' for places that for sure had integers */
239
922k
      chgivalue(s2v(ra), l_castU2S(count));  /* change init to count */
240
920k
      setivalue(s2v(ra + 1), step);  /* change limit to step */
241
920k
      chgivalue(s2v(ra + 2), init);  /* change step to init */
242
920k
    }
243
2.31M
  }
244
415k
  else {  /* try making all values floats */
245
415k
    lua_Number init; lua_Number limit; lua_Number step;
246
415k
    if (l_unlikely(!tonumber(plimit, &limit)))
247
1.73k
      luaG_forerror(L, plimit, "limit");
248
413k
    if (l_unlikely(!tonumber(pstep, &step)))
249
104
      luaG_forerror(L, pstep, "step");
250
413k
    if (l_unlikely(!tonumber(pinit, &init)))
251
2.47k
      luaG_forerror(L, pinit, "initial value");
252
410k
    if (step == 0)
253
1.19k
      luaG_runerror(L, "'for' step is zero");
254
409k
    if (luai_numlt(0, step) ? luai_numlt(limit, init)
255
409k
                            : luai_numlt(init, limit))
256
7.25k
      return 1;  /* skip the loop */
257
402k
    else {
258
      /* make sure all values are floats */
259
402k
      setfltvalue(s2v(ra), limit);
260
402k
      setfltvalue(s2v(ra + 1), step);
261
402k
      setfltvalue(s2v(ra + 2), init);  /* control variable */
262
402k
    }
263
409k
  }
264
1.32M
  return 0;
265
2.73M
}
266
267
268
/*
269
** Execute a step of a float numerical for loop, returning
270
** true iff the loop must continue. (The integer case is
271
** written online with opcode OP_FORLOOP, for performance.)
272
*/
273
7.39M
static int floatforloop (StkId ra) {
274
7.39M
  lua_Number step = fltvalue(s2v(ra + 1));
275
7.39M
  lua_Number limit = fltvalue(s2v(ra));
276
7.39M
  lua_Number idx = fltvalue(s2v(ra + 2));  /* control variable */
277
7.39M
  idx = luai_numadd(L, idx, step);  /* increment index */
278
7.39M
  if (luai_numlt(0, step) ? luai_numle(idx, limit)
279
7.39M
                          : luai_numle(limit, idx)) {
280
6.99M
    chgfltvalue(s2v(ra + 2), idx);  /* update control variable */
281
6.99M
    return 1;  /* jump back */
282
6.99M
  }
283
401k
  else
284
401k
    return 0;  /* finish the loop */
285
7.39M
}
286
287
288
/*
289
** Finish the table access 'val = t[key]' and return the tag of the result.
290
*/
291
lu_byte luaV_finishget (lua_State *L, const TValue *t, TValue *key,
292
215M
                                      StkId val, lu_byte tag) {
293
215M
  int loop;  /* counter to avoid infinite loops */
294
215M
  const TValue *tm;  /* metamethod */
295
231M
  for (loop = 0; loop < MAXTAGLOOP; loop++) {
296
231M
    if (tag == LUA_VNOTABLE) {  /* 't' is not a table? */
297
115M
      lua_assert(!ttistable(t));
298
115M
      tm = luaT_gettmbyobj(L, t, TM_INDEX);
299
115M
      if (l_unlikely(notm(tm)))
300
41.1k
        luaG_typeerror(L, t, "index");  /* no metamethod */
301
      /* else will try the metamethod */
302
115M
    }
303
116M
    else {  /* 't' is a table */
304
116M
      tm = fasttm(L, hvalue(t)->metatable, TM_INDEX);  /* table's metamethod */
305
116M
      if (tm == NULL) {  /* no metamethod? */
306
115M
        setnilvalue(s2v(val));  /* result is nil */
307
115M
        return LUA_VNIL;
308
115M
      }
309
      /* else will try the metamethod */
310
116M
    }
311
115M
    if (ttisfunction(tm)) {  /* is metamethod a function? */
312
96.5M
      tag = luaT_callTMres(L, tm, t, key, val);  /* call it */
313
96.5M
      return tag;  /* return tag of the result */
314
96.5M
    }
315
19.2M
    t = tm;  /* else try to access 'tm[key]' */
316
19.2M
    luaV_fastget(t, key, s2v(val), luaH_get, tag);
317
19.2M
    if (!tagisempty(tag))
318
3.59M
      return tag;  /* done */
319
    /* else repeat (tail call 'luaV_finishget') */
320
19.2M
  }
321
0
  luaG_runerror(L, "'__index' chain too long; possible loop");
322
0
  return 0;  /* to avoid warnings */
323
215M
}
324
325
326
/*
327
** Finish a table assignment 't[key] = val'.
328
** About anchoring the table before the call to 'luaH_finishset':
329
** This call may trigger an emergency collection. When loop>0,
330
** the table being accessed is a field in some metatable. If this
331
** metatable is weak and the table is not anchored, this collection
332
** could collect that table while it is being updated.
333
*/
334
void luaV_finishset (lua_State *L, const TValue *t, TValue *key,
335
67.7M
                      TValue *val, int hres) {
336
67.7M
  int loop;  /* counter to avoid infinite loops */
337
67.7M
  for (loop = 0; loop < MAXTAGLOOP; loop++) {
338
67.7M
    const TValue *tm;  /* '__newindex' metamethod */
339
67.7M
    if (hres != HNOTATABLE) {  /* is 't' a table? */
340
57.1M
      Table *h = hvalue(t);  /* save 't' table */
341
57.1M
      tm = fasttm(L, h->metatable, TM_NEWINDEX);  /* get metamethod */
342
57.1M
      if (tm == NULL) {  /* no metamethod? */
343
27.2M
        sethvalue2s(L, L->top.p, h);  /* anchor 't' */
344
27.2M
        L->top.p++;  /* assume EXTRA_STACK */
345
27.2M
        luaH_finishset(L, h, key, val, hres);  /* set new value */
346
27.2M
        L->top.p--;
347
27.2M
        invalidateTMcache(h);
348
27.2M
        luaC_barrierback(L, obj2gco(h), val);
349
27.2M
        return;
350
27.2M
      }
351
      /* else will try the metamethod */
352
57.1M
    }
353
39.1M
    else {  /* not a table; check metamethod */
354
39.1M
      tm = luaT_gettmbyobj(L, t, TM_NEWINDEX);
355
39.1M
      if (l_unlikely(notm(tm)))
356
6.67k
        luaG_typeerror(L, t, "index");
357
39.1M
    }
358
    /* try the metamethod */
359
40.4M
    if (ttisfunction(tm)) {
360
40.4M
      luaT_callTM(L, tm, t, key, val);
361
40.4M
      return;
362
40.4M
    }
363
27
    t = tm;  /* else repeat assignment over 'tm' */
364
27
    luaV_fastset(t, key, val, hres, luaH_pset);
365
27
    if (hres == HOK) {
366
20
      luaV_finishfastset(L, t, val);
367
20
      return;  /* done */
368
20
    }
369
    /* else 'return luaV_finishset(L, t, key, val, slot)' (loop) */
370
27
  }
371
0
  luaG_runerror(L, "'__newindex' chain too long; possible loop");
372
67.7M
}
373
374
375
/*
376
** Compare two strings 'ts1' x 'ts2', returning an integer less-equal-
377
** -greater than zero if 'ts1' is less-equal-greater than 'ts2'.
378
** The code is a little tricky because it allows '\0' in the strings
379
** and it uses 'strcoll' (to respect locales) for each segment
380
** of the strings. Note that segments can compare equal but still
381
** have different lengths.
382
*/
383
524k
static int l_strcmp (const TString *ts1, const TString *ts2) {
384
524k
  size_t rl1;  /* real length */
385
524k
  const char *s1 = getlstr(ts1, rl1);
386
524k
  size_t rl2;
387
524k
  const char *s2 = getlstr(ts2, rl2);
388
293M
  for (;;) {  /* for each segment */
389
293M
    int temp = strcoll(s1, s2);
390
293M
    if (temp != 0)  /* not equal? */
391
439k
      return temp;  /* done */
392
292M
    else {  /* strings are equal up to a '\0' */
393
292M
      size_t zl1 = strlen(s1);  /* index of first '\0' in 's1' */
394
292M
      size_t zl2 = strlen(s2);  /* index of first '\0' in 's2' */
395
292M
      if (zl2 == rl2)  /* 's2' is finished? */
396
71.4k
        return (zl1 == rl1) ? 0 : 1;  /* check 's1' */
397
292M
      else if (zl1 == rl1)  /* 's1' is finished? */
398
12.8k
        return -1;  /* 's1' is less than 's2' ('s2' is not finished) */
399
      /* both strings longer than 'zl'; go on comparing after the '\0' */
400
292M
      zl1++; zl2++;
401
292M
      s1 += zl1; rl1 -= zl1; s2 += zl2; rl2 -= zl2;
402
292M
    }
403
293M
  }
404
524k
}
405
406
407
/*
408
** Check whether integer 'i' is less than float 'f'. If 'i' has an
409
** exact representation as a float ('l_intfitsf'), compare numbers as
410
** floats. Otherwise, use the equivalence 'i < f <=> i < ceil(f)'.
411
** If 'ceil(f)' is out of integer range, either 'f' is greater than
412
** all integers or less than all integers.
413
** (The test with 'l_intfitsf' is only for performance; the else
414
** case is correct for all values, but it is slow due to the conversion
415
** from float to int.)
416
** When 'f' is NaN, comparisons must result in false.
417
*/
418
1.45M
l_sinline int LTintfloat (lua_Integer i, lua_Number f) {
419
1.45M
  if (l_intfitsf(i))
420
440k
    return luai_numlt(cast_num(i), f);  /* compare them as floats */
421
1.01M
  else {  /* i < f <=> i < ceil(f) */
422
1.01M
    lua_Integer fi;
423
1.01M
    if (luaV_flttointeger(f, &fi, F2Iceil))  /* fi = ceil(f) */
424
825k
      return i < fi;   /* compare them as integers */
425
191k
    else  /* 'f' is either greater or less than all integers */
426
191k
      return f > 0;  /* greater? */
427
1.01M
  }
428
1.45M
}
429
430
431
/*
432
** Check whether integer 'i' is less than or equal to float 'f'.
433
** See comments on previous function.
434
*/
435
264k
l_sinline int LEintfloat (lua_Integer i, lua_Number f) {
436
264k
  if (l_intfitsf(i))
437
251k
    return luai_numle(cast_num(i), f);  /* compare them as floats */
438
13.1k
  else {  /* i <= f <=> i <= floor(f) */
439
13.1k
    lua_Integer fi;
440
13.1k
    if (luaV_flttointeger(f, &fi, F2Ifloor))  /* fi = floor(f) */
441
12.1k
      return i <= fi;   /* compare them as integers */
442
913
    else  /* 'f' is either greater or less than all integers */
443
913
      return f > 0;  /* greater? */
444
13.1k
  }
445
264k
}
446
447
448
/*
449
** Check whether float 'f' is less than integer 'i'.
450
** See comments on previous function.
451
*/
452
3.68M
l_sinline int LTfloatint (lua_Number f, lua_Integer i) {
453
3.68M
  if (l_intfitsf(i))
454
3.68M
    return luai_numlt(f, cast_num(i));  /* compare them as floats */
455
6.73k
  else {  /* f < i <=> floor(f) < i */
456
6.73k
    lua_Integer fi;
457
6.73k
    if (luaV_flttointeger(f, &fi, F2Ifloor))  /* fi = floor(f) */
458
4.36k
      return fi < i;   /* compare them as integers */
459
2.36k
    else  /* 'f' is either greater or less than all integers */
460
2.36k
      return f < 0;  /* less? */
461
6.73k
  }
462
3.68M
}
463
464
465
/*
466
** Check whether float 'f' is less than or equal to integer 'i'.
467
** See comments on previous function.
468
*/
469
240k
l_sinline int LEfloatint (lua_Number f, lua_Integer i) {
470
240k
  if (l_intfitsf(i))
471
147k
    return luai_numle(f, cast_num(i));  /* compare them as floats */
472
92.5k
  else {  /* f <= i <=> ceil(f) <= i */
473
92.5k
    lua_Integer fi;
474
92.5k
    if (luaV_flttointeger(f, &fi, F2Iceil))  /* fi = ceil(f) */
475
90.1k
      return fi <= i;   /* compare them as integers */
476
2.35k
    else  /* 'f' is either greater or less than all integers */
477
2.35k
      return f < 0;  /* less? */
478
92.5k
  }
479
240k
}
480
481
482
/*
483
** Return 'l < r', for numbers.
484
*/
485
5.79M
l_sinline int LTnum (const TValue *l, const TValue *r) {
486
5.79M
  lua_assert(ttisnumber(l) && ttisnumber(r));
487
5.79M
  if (ttisinteger(l)) {
488
1.45M
    lua_Integer li = ivalue(l);
489
1.45M
    if (ttisinteger(r))
490
1.45M
      return li < ivalue(r);  /* both are integers */
491
1.45M
    else  /* 'l' is int and 'r' is float */
492
1.45M
      return LTintfloat(li, fltvalue(r));  /* l < r ? */
493
1.45M
  }
494
4.33M
  else {
495
4.33M
    lua_Number lf = fltvalue(l);  /* 'l' must be float */
496
4.33M
    if (ttisfloat(r))
497
4.33M
      return luai_numlt(lf, fltvalue(r));  /* both are float */
498
3.68M
    else  /* 'l' is float and 'r' is int */
499
3.68M
      return LTfloatint(lf, ivalue(r));
500
4.33M
  }
501
5.79M
}
502
503
504
/*
505
** Return 'l <= r', for numbers.
506
*/
507
538k
l_sinline int LEnum (const TValue *l, const TValue *r) {
508
538k
  lua_assert(ttisnumber(l) && ttisnumber(r));
509
538k
  if (ttisinteger(l)) {
510
265k
    lua_Integer li = ivalue(l);
511
265k
    if (ttisinteger(r))
512
265k
      return li <= ivalue(r);  /* both are integers */
513
264k
    else  /* 'l' is int and 'r' is float */
514
264k
      return LEintfloat(li, fltvalue(r));  /* l <= r ? */
515
265k
  }
516
273k
  else {
517
273k
    lua_Number lf = fltvalue(l);  /* 'l' must be float */
518
273k
    if (ttisfloat(r))
519
273k
      return luai_numle(lf, fltvalue(r));  /* both are float */
520
240k
    else  /* 'l' is float and 'r' is int */
521
240k
      return LEfloatint(lf, ivalue(r));
522
273k
  }
523
538k
}
524
525
526
/*
527
** return 'l < r' for non-numbers.
528
*/
529
2.23M
static int lessthanothers (lua_State *L, const TValue *l, const TValue *r) {
530
2.23M
  lua_assert(!ttisnumber(l) || !ttisnumber(r));
531
2.23M
  if (ttisstring(l) && ttisstring(r))  /* both are strings? */
532
859k
    return l_strcmp(tsvalue(l), tsvalue(r)) < 0;
533
1.80M
  else
534
1.80M
    return luaT_callorderTM(L, l, r, TM_LT);
535
2.23M
}
536
537
538
/*
539
** Main operation less than; return 'l < r'.
540
*/
541
379k
int luaV_lessthan (lua_State *L, const TValue *l, const TValue *r) {
542
379k
  if (ttisnumber(l) && ttisnumber(r))  /* both operands are numbers? */
543
1.80k
    return LTnum(l, r);
544
378k
  else return lessthanothers(L, l, r);
545
379k
}
546
547
548
/*
549
** return 'l <= r' for non-numbers.
550
*/
551
105k
static int lessequalothers (lua_State *L, const TValue *l, const TValue *r) {
552
105k
  lua_assert(!ttisnumber(l) || !ttisnumber(r));
553
105k
  if (ttisstring(l) && ttisstring(r))  /* both are strings? */
554
188k
    return l_strcmp(tsvalue(l), tsvalue(r)) <= 0;
555
11.2k
  else
556
11.2k
    return luaT_callorderTM(L, l, r, TM_LE);
557
105k
}
558
559
560
/*
561
** Main operation less than or equal to; return 'l <= r'.
562
*/
563
26
int luaV_lessequal (lua_State *L, const TValue *l, const TValue *r) {
564
26
  if (ttisnumber(l) && ttisnumber(r))  /* both operands are numbers? */
565
26
    return LEnum(l, r);
566
0
  else return lessequalothers(L, l, r);
567
26
}
568
569
570
/*
571
** Main operation for equality of Lua values; return 't1 == t2'.
572
** L == NULL means raw equality (no metamethods)
573
*/
574
517M
int luaV_equalobj (lua_State *L, const TValue *t1, const TValue *t2) {
575
517M
  const TValue *tm;
576
517M
  if (ttype(t1) != ttype(t2))  /* not the same type? */
577
52.6M
    return 0;
578
464M
  else if (ttypetag(t1) != ttypetag(t2)) {
579
56.6M
    switch (ttypetag(t1)) {
580
4.01M
      case LUA_VNUMINT: {  /* integer == float? */
581
        /* integer and float can only be equal if float has an integer
582
           value equal to the integer */
583
4.01M
        lua_Integer i2;
584
4.01M
        return (luaV_flttointeger(fltvalue(t2), &i2, F2Ieq) &&
585
57.0k
                ivalue(t1) == i2);
586
0
      }
587
26.2k
      case LUA_VNUMFLT: {  /* float == integer? */
588
26.2k
        lua_Integer i1;  /* see comment in previous case */
589
26.2k
        return (luaV_flttointeger(fltvalue(t1), &i1, F2Ieq) &&
590
9.39k
                i1 == ivalue(t2));
591
0
      }
592
15.5k
      case LUA_VSHRSTR: case LUA_VLNGSTR: {
593
        /* compare two strings with different variants: they can be
594
           equal when one string is a short string and the other is
595
           an external string  */
596
31.1k
        return luaS_eqstr(tsvalue(t1), tsvalue(t2));
597
15.5k
      }
598
52.5M
      default:
599
        /* only numbers (integer/float) and strings (long/short) can have
600
           equal values with different variants */
601
52.5M
        return 0;
602
56.6M
    }
603
56.6M
  }
604
407M
  else {  /* equal variants */
605
407M
    switch (ttypetag(t1)) {
606
1.65M
      case LUA_VNIL: case LUA_VFALSE: case LUA_VTRUE:
607
1.65M
        return 1;
608
3.98M
      case LUA_VNUMINT:
609
3.98M
        return (ivalue(t1) == ivalue(t2));
610
5.32M
      case LUA_VNUMFLT:
611
5.32M
        return (fltvalue(t1) == fltvalue(t2));
612
0
      case LUA_VLIGHTUSERDATA: return pvalue(t1) == pvalue(t2);
613
305M
      case LUA_VSHRSTR:
614
1.22G
        return eqshrstr(tsvalue(t1), tsvalue(t2));
615
1.52M
      case LUA_VLNGSTR:
616
3.05M
        return luaS_eqstr(tsvalue(t1), tsvalue(t2));
617
32.8k
      case LUA_VUSERDATA: {
618
98.6k
        if (uvalue(t1) == uvalue(t2)) return 1;
619
2.73k
        else if (L == NULL) return 0;
620
2.73k
        tm = fasttm(L, uvalue(t1)->metatable, TM_EQ);
621
2.73k
        if (tm == NULL)
622
2.73k
          tm = fasttm(L, uvalue(t2)->metatable, TM_EQ);
623
2.73k
        break;  /* will try TM */
624
2.73k
      }
625
3.95M
      case LUA_VTABLE: {
626
11.8M
        if (hvalue(t1) == hvalue(t2)) return 1;
627
199k
        else if (L == NULL) return 0;
628
196k
        tm = fasttm(L, hvalue(t1)->metatable, TM_EQ);
629
196k
        if (tm == NULL)
630
191k
          tm = fasttm(L, hvalue(t2)->metatable, TM_EQ);
631
196k
        break;  /* will try TM */
632
196k
      }
633
85.8M
      case LUA_VLCF:
634
85.8M
        return (fvalue(t1) == fvalue(t2));
635
294k
      default:  /* functions and threads */
636
294k
        return (gcvalue(t1) == gcvalue(t2));
637
407M
    }
638
199k
    if (tm == NULL)  /* no TM? */
639
192k
      return 0;  /* objects are different */
640
7.17k
    else {
641
7.17k
      int tag = luaT_callTMres(L, tm, t1, t2, L->top.p);  /* call TM */
642
7.17k
      return !tagisfalse(tag);
643
7.17k
    }
644
199k
  }
645
517M
}
646
647
648
/* macro used by 'luaV_concat' to ensure that element at 'o' is a string */
649
#define tostring(L,o)  \
650
27.7M
  (ttisstring(o) || (cvt2str(o) && (luaO_tostring(L, o), 1)))
651
652
53.0M
#define isemptystr(o) (ttisshrstring(o) && tsvalue(o)->shrlen == 0)
653
654
/* copy strings in stack from top - n up to top - 1 to buffer */
655
11.9M
static void copy2buff (StkId top, int n, char *buff) {
656
11.9M
  size_t tl = 0;  /* size already copied */
657
25.5M
  do {
658
51.0M
    TString *st = tsvalue(s2v(top - n));
659
51.0M
    size_t l;  /* length of string being copied */
660
51.0M
    const char *s = getlstr(st, l);
661
51.0M
    memcpy(buff + tl, s, l * sizeof(char));
662
51.0M
    tl += l;
663
51.0M
  } while (--n > 0);
664
11.9M
}
665
666
667
/*
668
** Main operation for concatenation: concat 'total' values in the stack,
669
** from 'L->top.p - total' up to 'L->top.p - 1'.
670
*/
671
15.5M
void luaV_concat (lua_State *L, int total) {
672
15.5M
  if (total == 1)
673
6
    return;  /* "all" values already concatenated */
674
15.7M
  do {
675
15.7M
    StkId top = L->top.p;
676
15.7M
    int n = 2;  /* number of elements handled in this pass (at least 2) */
677
15.7M
    if (!(ttisstring(s2v(top - 2)) || cvt2str(s2v(top - 2))) ||
678
14.1M
        !tostring(L, s2v(top - 1)))
679
2.18M
      luaT_tryconcatTM(L);  /* may invalidate 'top' */
680
13.5M
    else if (isemptystr(s2v(top - 1)))  /* second operand is empty? */
681
13.5M
      cast_void(tostring(L, s2v(top - 2)));  /* result is first operand */
682
13.5M
    else if (isemptystr(s2v(top - 2))) {  /* first operand is empty string? */
683
1.54M
      setobjs2s(L, top - 2, top - 1);  /* result is second op. */
684
1.54M
    }
685
11.9M
    else {
686
      /* at least two non-empty string values; get as many as possible */
687
11.9M
      size_t tl = tsslen(tsvalue(s2v(top - 1)));
688
11.9M
      TString *ts;
689
      /* collect total length and number of strings */
690
25.5M
      for (n = 1; n < total && tostring(L, s2v(top - n - 1)); n++) {
691
13.5M
        size_t l = tsslen(tsvalue(s2v(top - n - 1)));
692
13.5M
        if (l_unlikely(l >= MAX_SIZE - sizeof(TString) - tl)) {
693
0
          L->top.p = top - total;  /* pop strings to avoid wasting stack */
694
0
          luaG_runerror(L, "string length overflow");
695
0
        }
696
13.5M
        tl += l;
697
13.5M
      }
698
11.9M
      if (tl <= LUAI_MAXSHORTLEN) {  /* is result a short string? */
699
8.61M
        char buff[LUAI_MAXSHORTLEN];
700
8.61M
        copy2buff(top, n, buff);  /* copy strings to buffer */
701
8.61M
        ts = luaS_newlstr(L, buff, tl);
702
8.61M
      }
703
3.37M
      else {  /* long string; copy strings directly to final result */
704
3.37M
        ts = luaS_createlngstrobj(L, tl);
705
3.37M
        copy2buff(top, n, getlngstr(ts));
706
3.37M
      }
707
23.9M
      setsvalue2s(L, top - n, ts);  /* create result */
708
11.9M
    }
709
15.7M
    total -= n - 1;  /* got 'n' strings to create one new */
710
15.7M
    L->top.p -= n - 1;  /* popped 'n' strings and pushed one */
711
15.7M
  } while (total > 1);  /* repeat until only 1 result left */
712
15.5M
}
713
714
715
/*
716
** Main operation 'ra = #rb'.
717
*/
718
12.0M
void luaV_objlen (lua_State *L, StkId ra, const TValue *rb) {
719
12.0M
  const TValue *tm;
720
12.0M
  switch (ttypetag(rb)) {
721
9.94M
    case LUA_VTABLE: {
722
19.8M
      Table *h = hvalue(rb);
723
19.8M
      tm = fasttm(L, h->metatable, TM_LEN);
724
19.8M
      if (tm) break;  /* metamethod? break switch to call it */
725
9.94M
      setivalue(s2v(ra), l_castU2S(luaH_getn(L, h)));  /* else primitive len */
726
9.94M
      return;
727
19.8M
    }
728
1.82M
    case LUA_VSHRSTR: {
729
1.82M
      setivalue(s2v(ra), tsvalue(rb)->shrlen);
730
1.82M
      return;
731
1.82M
    }
732
252k
    case LUA_VLNGSTR: {
733
252k
      setivalue(s2v(ra), cast_st2S(tsvalue(rb)->u.lnglen));
734
252k
      return;
735
252k
    }
736
62.5k
    default: {  /* try metamethod */
737
62.5k
      tm = luaT_gettmbyobj(L, rb, TM_LEN);
738
62.5k
      if (l_unlikely(notm(tm)))  /* no metamethod? */
739
2.92k
        luaG_typeerror(L, rb, "get length of");
740
59.5k
      break;
741
62.5k
    }
742
12.0M
  }
743
60.6k
  luaT_callTMres(L, tm, rb, rb, ra);
744
60.6k
}
745
746
747
/*
748
** Integer division; return 'm // n', that is, floor(m/n).
749
** C division truncates its result (rounds towards zero).
750
** 'floor(q) == trunc(q)' when 'q >= 0' or when 'q' is integer,
751
** otherwise 'floor(q) == trunc(q) - 1'.
752
*/
753
802k
lua_Integer luaV_idiv (lua_State *L, lua_Integer m, lua_Integer n) {
754
802k
  if (l_unlikely(l_castS2U(n) + 1u <= 1u)) {  /* special cases: -1 or 0 */
755
99.6k
    if (n == 0)
756
284
      luaG_runerror(L, "attempt to divide by zero");
757
99.3k
    return intop(-, 0, m);   /* n==-1; avoid overflow with 0x80000...//-1 */
758
99.6k
  }
759
702k
  else {
760
702k
    lua_Integer q = m / n;  /* perform C division */
761
702k
    if ((m ^ n) < 0 && m % n != 0)  /* 'm/n' would be negative non-integer? */
762
59.1k
      q -= 1;  /* correct result for different rounding */
763
702k
    return q;
764
702k
  }
765
802k
}
766
767
768
/*
769
** Integer modulus; return 'm % n'. (Assume that C '%' with
770
** negative operands follows C99 behavior. See previous comment
771
** about luaV_idiv.)
772
*/
773
2.02M
lua_Integer luaV_mod (lua_State *L, lua_Integer m, lua_Integer n) {
774
2.02M
  if (l_unlikely(l_castS2U(n) + 1u <= 1u)) {  /* special cases: -1 or 0 */
775
35.4k
    if (n == 0)
776
3.87k
      luaG_runerror(L, "attempt to perform 'n%%0'");
777
31.5k
    return 0;   /* m % -1 == 0; avoid overflow with 0x80000...%-1 */
778
35.4k
  }
779
1.99M
  else {
780
1.99M
    lua_Integer r = m % n;
781
1.99M
    if (r != 0 && (r ^ n) < 0)  /* 'm/n' would be non-integer negative? */
782
167k
      r += n;  /* correct result for different rounding */
783
1.99M
    return r;
784
1.99M
  }
785
2.02M
}
786
787
788
/*
789
** Float modulus
790
*/
791
8.12M
lua_Number luaV_modf (lua_State *L, lua_Number m, lua_Number n) {
792
8.12M
  lua_Number r;
793
8.12M
  luai_nummod(L, m, n, r);
794
8.12M
  return r;
795
8.12M
}
796
797
798
/* number of bits in an integer */
799
5.70M
#define NBITS l_numbits(lua_Integer)
800
801
802
/*
803
** Shift left operation. (Shift right just negates 'y'.)
804
*/
805
5.70M
lua_Integer luaV_shiftl (lua_Integer x, lua_Integer y) {
806
5.70M
  if (y < 0) {  /* shift right? */
807
4.78M
    if (y <= -NBITS) return 0;
808
189k
    else return intop(>>, x, -y);
809
4.78M
  }
810
914k
  else {  /* shift left */
811
914k
    if (y >= NBITS) return 0;
812
718k
    else return intop(<<, x, y);
813
914k
  }
814
5.70M
}
815
816
817
/*
818
** create a new Lua closure, push it in the stack, and initialize
819
** its upvalues.
820
*/
821
static void pushclosure (lua_State *L, Proto *p, UpVal **encup, StkId base,
822
24.1M
                         StkId ra) {
823
24.1M
  int nup = p->sizeupvalues;
824
24.1M
  Upvaldesc *uv = p->upvalues;
825
24.1M
  int i;
826
24.1M
  LClosure *ncl = luaF_newLclosure(L, nup);
827
24.1M
  ncl->p = p;
828
24.1M
  setclLvalue2s(L, ra, ncl);  /* anchor new closure in stack */
829
46.1M
  for (i = 0; i < nup; i++) {  /* fill in its upvalues */
830
21.9M
    if (uv[i].instack)  /* upvalue refers to local variable? */
831
17.2M
      ncl->upvals[i] = luaF_findupval(L, base + uv[i].idx);
832
4.74M
    else  /* get upvalue from enclosing function */
833
4.74M
      ncl->upvals[i] = encup[uv[i].idx];
834
21.9M
    luaC_objbarrier(L, ncl, ncl->upvals[i]);
835
21.9M
  }
836
24.1M
}
837
838
839
/*
840
** finish execution of an opcode interrupted by a yield
841
*/
842
2.56k
void luaV_finishOp (lua_State *L) {
843
2.56k
  CallInfo *ci = L->ci;
844
2.56k
  StkId base = ci->func.p + 1;
845
2.56k
  Instruction inst = *(ci->u.l.savedpc - 1);  /* interrupted instruction */
846
2.56k
  OpCode op = GET_OPCODE(inst);
847
2.56k
  switch (op) {  /* finish its execution */
848
3
    case OP_MMBIN: case OP_MMBINI: case OP_MMBINK: {
849
3
      setobjs2s(L, base + GETARG_A(*(ci->u.l.savedpc - 2)), --L->top.p);
850
3
      break;
851
3
    }
852
0
    case OP_UNM: case OP_BNOT: case OP_LEN:
853
0
    case OP_GETTABUP: case OP_GETTABLE: case OP_GETI:
854
0
    case OP_GETFIELD: case OP_SELF: {
855
0
      setobjs2s(L, base + GETARG_A(inst), --L->top.p);
856
0
      break;
857
0
    }
858
0
    case OP_LT: case OP_LE:
859
0
    case OP_LTI: case OP_LEI:
860
0
    case OP_GTI: case OP_GEI:
861
0
    case OP_EQ: {  /* note that 'OP_EQI'/'OP_EQK' cannot yield */
862
0
      int res = !l_isfalse(s2v(L->top.p - 1));
863
0
      L->top.p--;
864
0
      lua_assert(GET_OPCODE(*ci->u.l.savedpc) == OP_JMP);
865
0
      if (res != GETARG_k(inst))  /* condition failed? */
866
0
        ci->u.l.savedpc++;  /* skip jump instruction */
867
0
      break;
868
0
    }
869
0
    case OP_CONCAT: {
870
0
      StkId top = L->top.p - 1;  /* top when 'luaT_tryconcatTM' was called */
871
0
      int a = GETARG_A(inst);      /* first element to concatenate */
872
0
      int total = cast_int(top - 1 - (base + a));  /* yet to concatenate */
873
0
      setobjs2s(L, top - 2, top);  /* put TM result in proper position */
874
0
      L->top.p = top - 1;  /* top is one after last element (at top-2) */
875
0
      luaV_concat(L, total);  /* concat them (may yield again) */
876
0
      break;
877
0
    }
878
0
    case OP_CLOSE: {  /* yielded closing variables */
879
0
      ci->u.l.savedpc--;  /* repeat instruction to close other vars. */
880
0
      break;
881
0
    }
882
0
    case OP_RETURN: {  /* yielded closing variables */
883
0
      StkId ra = base + GETARG_A(inst);
884
      /* adjust top to signal correct number of returns, in case the
885
         return is "up to top" ('isIT') */
886
0
      L->top.p = ra + ci->u2.nres;
887
      /* repeat instruction to close other vars. and complete the return */
888
0
      ci->u.l.savedpc--;
889
0
      break;
890
0
    }
891
2.56k
    default: {
892
      /* only these other opcodes can yield */
893
2.56k
      lua_assert(op == OP_TFORCALL || op == OP_CALL ||
894
2.56k
           op == OP_TAILCALL || op == OP_SETTABUP || op == OP_SETTABLE ||
895
2.56k
           op == OP_SETI || op == OP_SETFIELD);
896
2.56k
      break;
897
2.56k
    }
898
2.56k
  }
899
2.56k
}
900
901
902
903
904
/*
905
** {==================================================================
906
** Macros for arithmetic/bitwise/comparison opcodes in 'luaV_execute'
907
**
908
** All these macros are to be used exclusively inside the main
909
** iterpreter loop (function luaV_execute) and may access directly
910
** the local variables of that function (L, i, pc, ci, etc.).
911
** ===================================================================
912
*/
913
914
#define l_addi(L,a,b) intop(+, a, b)
915
#define l_subi(L,a,b) intop(-, a, b)
916
#define l_muli(L,a,b) intop(*, a, b)
917
#define l_band(a,b) intop(&, a, b)
918
#define l_bor(a,b)  intop(|, a, b)
919
#define l_bxor(a,b) intop(^, a, b)
920
921
11.3M
#define l_lti(a,b)  (a < b)
922
1.64M
#define l_lei(a,b)  (a <= b)
923
138M
#define l_gti(a,b)  (a > b)
924
900k
#define l_gei(a,b)  (a >= b)
925
926
927
/*
928
** Arithmetic operations with immediate operands. 'iop' is the integer
929
** operation, 'fop' is the float operation.
930
*/
931
62.0M
#define op_arithI(L,iop,fop) {  \
932
62.0M
  TValue *ra = vRA(i); \
933
62.0M
  TValue *v1 = vRB(i);  \
934
62.0M
  int imm = GETARG_sC(i);  \
935
62.0M
  if (ttisinteger(v1)) {  \
936
49.7M
    lua_Integer iv1 = ivalue(v1);  \
937
49.7M
    pc++; setivalue(ra, iop(L, iv1, imm));  \
938
49.7M
  }  \
939
62.0M
  else if (ttisfloat(v1)) {  \
940
9.56M
    lua_Number nb = fltvalue(v1);  \
941
9.56M
    lua_Number fimm = cast_num(imm);  \
942
9.56M
    pc++; setfltvalue(ra, fop(L, nb, fimm)); \
943
9.56M
  }}
944
945
946
/*
947
** Auxiliary function for arithmetic operations over floats and others
948
** with two operands.
949
*/
950
66.4M
#define op_arithf_aux(L,v1,v2,fop) {  \
951
66.4M
  lua_Number n1; lua_Number n2;  \
952
66.4M
  if (tonumberns(v1, n1) && tonumberns(v2, n2)) {  \
953
58.6M
    StkId ra = RA(i);  \
954
58.6M
    pc++; setfltvalue(s2v(ra), fop(L, n1, n2));  \
955
58.6M
  }}
956
957
958
/*
959
** Arithmetic operations over floats and others with register operands.
960
*/
961
12.2M
#define op_arithf(L,fop) {  \
962
12.2M
  TValue *v1 = vRB(i);  \
963
12.2M
  TValue *v2 = vRC(i);  \
964
12.2M
  op_arithf_aux(L, v1, v2, fop); }
965
966
967
/*
968
** Arithmetic operations with K operands for floats.
969
*/
970
21.9M
#define op_arithfK(L,fop) {  \
971
21.9M
  TValue *v1 = vRB(i);  \
972
21.9M
  TValue *v2 = KC(i); lua_assert(ttisnumber(v2));  \
973
21.9M
  op_arithf_aux(L, v1, v2, fop); }
974
975
976
/*
977
** Arithmetic operations over integers and floats.
978
*/
979
42.4M
#define op_arith_aux(L,v1,v2,iop,fop) {  \
980
42.4M
  if (ttisinteger(v1) && ttisinteger(v2)) {  \
981
10.0M
    StkId ra = RA(i); \
982
10.0M
    lua_Integer i1 = ivalue(v1); lua_Integer i2 = ivalue(v2);  \
983
10.0M
    pc++; setivalue(s2v(ra), iop(L, i1, i2));  \
984
10.0M
  }  \
985
42.4M
  else op_arithf_aux(L, v1, v2, fop); }
986
987
988
/*
989
** Arithmetic operations with register operands.
990
*/
991
20.9M
#define op_arith(L,iop,fop) {  \
992
20.9M
  TValue *v1 = vRB(i);  \
993
20.9M
  TValue *v2 = vRC(i);  \
994
20.9M
  op_arith_aux(L, v1, v2, iop, fop); }
995
996
997
/*
998
** Arithmetic operations with K operands.
999
*/
1000
21.4M
#define op_arithK(L,iop,fop) {  \
1001
21.4M
  TValue *v1 = vRB(i);  \
1002
21.4M
  TValue *v2 = KC(i); lua_assert(ttisnumber(v2));  \
1003
21.4M
  op_arith_aux(L, v1, v2, iop, fop); }
1004
1005
1006
/*
1007
** Bitwise operations with constant operand.
1008
*/
1009
11.0M
#define op_bitwiseK(L,op) {  \
1010
11.0M
  TValue *v1 = vRB(i);  \
1011
11.0M
  TValue *v2 = KC(i);  \
1012
11.0M
  lua_Integer i1;  \
1013
11.0M
  lua_Integer i2 = ivalue(v2);  \
1014
11.0M
  if (tointegerns(v1, &i1)) {  \
1015
10.9M
    StkId ra = RA(i); \
1016
10.9M
    pc++; setivalue(s2v(ra), op(i1, i2));  \
1017
10.9M
  }}
1018
1019
1020
/*
1021
** Bitwise operations with register operands.
1022
*/
1023
8.34M
#define op_bitwise(L,op) {  \
1024
8.34M
  TValue *v1 = vRB(i);  \
1025
8.34M
  TValue *v2 = vRC(i);  \
1026
8.34M
  lua_Integer i1; lua_Integer i2;  \
1027
8.34M
  if (tointegerns(v1, &i1) && tointegerns(v2, &i2)) {  \
1028
7.49M
    StkId ra = RA(i); \
1029
7.49M
    pc++; setivalue(s2v(ra), op(i1, i2));  \
1030
7.49M
  }}
1031
1032
1033
/*
1034
** Order operations with register operands. 'opn' actually works
1035
** for all numbers, but the fast track improves performance for
1036
** integers.
1037
*/
1038
13.7M
#define op_order(L,opi,opn,other) {  \
1039
13.7M
  TValue *ra = vRA(i); \
1040
13.7M
  int cond;  \
1041
13.7M
  TValue *rb = vRB(i);  \
1042
13.7M
  if (ttisinteger(ra) && ttisinteger(rb)) {  \
1043
5.46M
    lua_Integer ia = ivalue(ra);  \
1044
5.46M
    lua_Integer ib = ivalue(rb);  \
1045
5.46M
    cond = opi(ia, ib);  \
1046
5.46M
  }  \
1047
13.7M
  else if (ttisnumber(ra) && ttisnumber(rb))  \
1048
8.28M
    cond = opn(ra, rb);  \
1049
8.28M
  else  \
1050
8.28M
    Protect(cond = other(L, ra, rb));  \
1051
13.7M
  docondjump(); }
1052
1053
1054
/*
1055
** Order operations with immediate operand. (Immediate operand is
1056
** always small enough to have an exact representation as a float.)
1057
*/
1058
44.1M
#define op_orderI(L,opi,opf,inv,tm) {  \
1059
44.1M
  TValue *ra = vRA(i); \
1060
44.1M
  int cond;  \
1061
44.1M
  int im = GETARG_sB(i);  \
1062
44.1M
  if (ttisinteger(ra))  \
1063
44.1M
    cond = opi(ivalue(ra), im);  \
1064
44.1M
  else if (ttisfloat(ra)) {  \
1065
3.51M
    lua_Number fa = fltvalue(ra);  \
1066
3.51M
    lua_Number fim = cast_num(im);  \
1067
3.51M
    cond = opf(fa, fim);  \
1068
3.51M
  }  \
1069
6.18M
  else {  \
1070
2.67M
    int isf = GETARG_C(i);  \
1071
2.67M
    Protect(cond = luaT_callorderiTM(L, ra, im, inv, isf, tm));  \
1072
2.67M
  }  \
1073
44.1M
  docondjump(); }
1074
1075
/* }================================================================== */
1076
1077
1078
/*
1079
** {==================================================================
1080
** Function 'luaV_execute': main interpreter loop
1081
** ===================================================================
1082
*/
1083
1084
/*
1085
** some macros for common tasks in 'luaV_execute'
1086
*/
1087
1088
1089
3.10G
#define RA(i) (base+GETARG_A(i))
1090
119M
#define vRA(i)  s2v(RA(i))
1091
#define RB(i) (base+GETARG_B(i))
1092
361M
#define vRB(i)  s2v(RB(i))
1093
307M
#define KB(i) (k+GETARG_B(i))
1094
#define RC(i) (base+GETARG_C(i))
1095
47.0M
#define vRC(i)  s2v(RC(i))
1096
659M
#define KC(i) (k+GETARG_C(i))
1097
162M
#define RKC(i)  ((TESTARG_k(i)) ? k + GETARG_C(i) : s2v(base + GETARG_C(i)))
1098
1099
1100
1101
943M
#define updatetrap(ci)  (trap = ci->u.l.trap)
1102
1103
108M
#define updatebase(ci)  (base = ci->func.p + 1)
1104
1105
1106
#define updatestack(ci)  \
1107
7.63M
  { if (l_unlikely(trap)) { updatebase(ci); ra = RA(i); } }
1108
1109
1110
/*
1111
** Execute a jump instruction. The 'updatetrap' allows signals to stop
1112
** tight loops. (Without it, the local copy of 'trap' could never change.)
1113
*/
1114
229M
#define dojump(ci,i,e)  { pc += GETARG_sJ(i) + e; updatetrap(ci); }
1115
1116
1117
/* for test instructions, execute the jump instruction that follows it */
1118
226M
#define donextjump(ci)  { Instruction ni = *pc; dojump(ci, ni, 1); }
1119
1120
/*
1121
** do a conditional jump: skip next instruction if 'cond' is not what
1122
** was expected (parameter 'k'), else do next instruction, which must
1123
** be a jump.
1124
*/
1125
366M
#define docondjump()  if (cond != GETARG_k(i)) pc++; else donextjump(ci);
1126
1127
1128
/*
1129
** Correct global 'pc'.
1130
*/
1131
955M
#define savepc(ci)  (ci->u.l.savedpc = pc)
1132
1133
1134
/*
1135
** Whenever code can raise errors, the global 'pc' and the global
1136
** 'top' must be correct to report occasional errors.
1137
*/
1138
343M
#define savestate(L,ci)   (savepc(ci), L->top.p = ci->top.p)
1139
1140
1141
/*
1142
** Protect code that, in general, can raise errors, reallocate the
1143
** stack, and change the hooks.
1144
*/
1145
298M
#define Protect(exp)  (savestate(L,ci), (exp), updatetrap(ci))
1146
1147
/* special version that does not change the top */
1148
39.0M
#define ProtectNT(exp)  (savepc(ci), (exp), updatetrap(ci))
1149
1150
/*
1151
** Protect code that can only raise errors. (That is, it cannot change
1152
** the stack or hooks.)
1153
*/
1154
27.0M
#define halfProtect(exp)  (savestate(L,ci), (exp))
1155
1156
/*
1157
** macro executed during Lua functions at points where the
1158
** function can yield.
1159
*/
1160
#if !defined(luai_threadyield)
1161
64.8M
#define luai_threadyield(L) {lua_unlock(L); lua_lock(L);}
1162
#endif
1163
1164
/* 'c' is the limit of live values in the stack */
1165
#define checkGC(L,c)  \
1166
64.8M
  { luaC_condGC(L, (savepc(ci), L->top.p = (c)), \
1167
64.8M
                         updatetrap(ci)); \
1168
64.8M
           luai_threadyield(L); }
1169
1170
1171
/* fetch an instruction and prepare its execution */
1172
3.35G
#define vmfetch() { \
1173
3.35G
  if (l_unlikely(trap)) {  /* stack reallocation or hooks? */ \
1174
88.8M
    trap = luaG_traceexec(L, pc);  /* handle hooks */ \
1175
88.8M
    updatebase(ci);  /* correct stack */ \
1176
88.8M
  } \
1177
3.35G
  i = *(pc++); \
1178
3.35G
}
1179
1180
#define vmdispatch(o) switch(o)
1181
#define vmcase(l) case l:
1182
#define vmbreak   break
1183
1184
1185
168M
void luaV_execute (lua_State *L, CallInfo *ci) {
1186
168M
  LClosure *cl;
1187
168M
  TValue *k;
1188
168M
  StkId base;
1189
168M
  const Instruction *pc;
1190
168M
  int trap;
1191
168M
#if LUA_USE_JUMPTABLE
1192
168M
#include "ljumptab.h"
1193
168M
#endif
1194
396M
 startfunc:
1195
396M
  trap = L->hookmask;
1196
465M
 returning:  /* trap already set */
1197
930M
  cl = ci_func(ci);
1198
930M
  k = cl->p->k;
1199
930M
  pc = ci->u.l.savedpc;
1200
930M
  if (l_unlikely(trap))
1201
5.41M
    trap = luaG_tracecall(L);
1202
930M
  base = ci->func.p + 1;
1203
  /* main loop of interpreter */
1204
930M
  for (;;) {
1205
465M
    Instruction i;  /* instruction being executed */
1206
465M
    vmfetch();
1207
    #if 0
1208
    { /* low-level line tracing for debugging Lua */
1209
      #include "lopnames.h"
1210
      int pcrel = pcRel(pc, cl->p);
1211
      printf("line: %d; %s (%d)\n", luaG_getfuncline(cl->p, pcrel),
1212
             opnames[GET_OPCODE(i)], pcrel);
1213
    }
1214
    #endif
1215
465M
    lua_assert(base == ci->func.p + 1);
1216
465M
    lua_assert(base <= L->top.p && L->top.p <= L->stack_last.p);
1217
    /* for tests, invalidate top for instructions not expecting it */
1218
465M
    lua_assert(luaP_isIT(i) || (cast_void(L->top.p = base), 1));
1219
465M
    vmdispatch (GET_OPCODE(i)) {
1220
512M
      vmcase(OP_MOVE) {
1221
512M
        StkId ra = RA(i);
1222
1.02G
        setobjs2s(L, ra, RB(i));
1223
512M
        vmbreak;
1224
512M
      }
1225
512M
      vmcase(OP_LOADI) {
1226
53.4M
        StkId ra = RA(i);
1227
53.4M
        lua_Integer b = GETARG_sBx(i);
1228
53.4M
        setivalue(s2v(ra), b);
1229
53.4M
        vmbreak;
1230
53.4M
      }
1231
53.4M
      vmcase(OP_LOADF) {
1232
11.2M
        StkId ra = RA(i);
1233
11.2M
        int b = GETARG_sBx(i);
1234
11.2M
        setfltvalue(s2v(ra), cast_num(b));
1235
11.2M
        vmbreak;
1236
11.2M
      }
1237
96.4M
      vmcase(OP_LOADK) {
1238
96.4M
        StkId ra = RA(i);
1239
96.4M
        TValue *rb = k + GETARG_Bx(i);
1240
96.4M
        setobj2s(L, ra, rb);
1241
96.4M
        vmbreak;
1242
96.4M
      }
1243
96.4M
      vmcase(OP_LOADKX) {
1244
0
        StkId ra = RA(i);
1245
0
        TValue *rb;
1246
0
        rb = k + GETARG_Ax(*pc); pc++;
1247
0
        setobj2s(L, ra, rb);
1248
0
        vmbreak;
1249
0
      }
1250
4.02M
      vmcase(OP_LOADFALSE) {
1251
4.02M
        StkId ra = RA(i);
1252
4.02M
        setbfvalue(s2v(ra));
1253
4.02M
        vmbreak;
1254
4.02M
      }
1255
11.5M
      vmcase(OP_LFALSESKIP) {
1256
11.5M
        StkId ra = RA(i);
1257
11.5M
        setbfvalue(s2v(ra));
1258
11.5M
        pc++;  /* skip next instruction */
1259
11.5M
        vmbreak;
1260
11.5M
      }
1261
16.6M
      vmcase(OP_LOADTRUE) {
1262
16.6M
        StkId ra = RA(i);
1263
16.6M
        setbtvalue(s2v(ra));
1264
16.6M
        vmbreak;
1265
16.6M
      }
1266
16.6M
      vmcase(OP_LOADNIL) {
1267
8.60M
        StkId ra = RA(i);
1268
8.60M
        int b = GETARG_B(i);
1269
41.8M
        do {
1270
41.8M
          setnilvalue(s2v(ra++));
1271
41.8M
        } while (b--);
1272
8.60M
        vmbreak;
1273
8.60M
      }
1274
342M
      vmcase(OP_GETUPVAL) {
1275
342M
        StkId ra = RA(i);
1276
342M
        int b = GETARG_B(i);
1277
342M
        setobj2s(L, ra, cl->upvals[b]->v.p);
1278
342M
        vmbreak;
1279
342M
      }
1280
342M
      vmcase(OP_SETUPVAL) {
1281
6.96M
        StkId ra = RA(i);
1282
6.96M
        UpVal *uv = cl->upvals[GETARG_B(i)];
1283
6.96M
        setobj(L, uv->v.p, s2v(ra));
1284
6.96M
        luaC_barrier(L, uv, s2v(ra));
1285
6.96M
        vmbreak;
1286
6.96M
      }
1287
474M
      vmcase(OP_GETTABUP) {
1288
474M
        StkId ra = RA(i);
1289
474M
        TValue *upval = cl->upvals[GETARG_B(i)]->v.p;
1290
474M
        TValue *rc = KC(i);
1291
949M
        TString *key = tsvalue(rc);  /* key must be a short string */
1292
949M
        lu_byte tag;
1293
949M
        luaV_fastget(upval, key, s2v(ra), luaH_getshortstr, tag);
1294
949M
        if (tagisempty(tag))
1295
94.6M
          Protect(luaV_finishget(L, upval, rc, ra, tag));
1296
474M
        vmbreak;
1297
474M
      }
1298
474M
      vmcase(OP_GETTABLE) {
1299
5.49M
        StkId ra = RA(i);
1300
5.49M
        TValue *rb = vRB(i);
1301
5.49M
        TValue *rc = vRC(i);
1302
5.49M
        lu_byte tag;
1303
5.49M
        if (ttisinteger(rc)) {  /* fast track for integers? */
1304
3.30M
          luaV_fastgeti(rb, ivalue(rc), s2v(ra), tag);
1305
3.30M
        }
1306
2.18M
        else
1307
2.18M
          luaV_fastget(rb, rc, s2v(ra), luaH_get, tag);
1308
5.49M
        if (tagisempty(tag))
1309
1.92M
          Protect(luaV_finishget(L, rb, rc, ra, tag));
1310
5.49M
        vmbreak;
1311
5.49M
      }
1312
5.49M
      vmcase(OP_GETI) {
1313
1.17M
        StkId ra = RA(i);
1314
1.17M
        TValue *rb = vRB(i);
1315
1.17M
        int c = GETARG_C(i);
1316
1.17M
        lu_byte tag;
1317
1.17M
        luaV_fastgeti(rb, c, s2v(ra), tag);
1318
1.17M
        if (tagisempty(tag)) {
1319
140k
          TValue key;
1320
140k
          setivalue(&key, c);
1321
140k
          Protect(luaV_finishget(L, rb, &key, ra, tag));
1322
140k
        }
1323
1.17M
        vmbreak;
1324
1.17M
      }
1325
120M
      vmcase(OP_GETFIELD) {
1326
120M
        StkId ra = RA(i);
1327
120M
        TValue *rb = vRB(i);
1328
120M
        TValue *rc = KC(i);
1329
241M
        TString *key = tsvalue(rc);  /* key must be a short string */
1330
241M
        lu_byte tag;
1331
241M
        luaV_fastget(rb, key, s2v(ra), luaH_getshortstr, tag);
1332
241M
        if (tagisempty(tag))
1333
93.1M
          Protect(luaV_finishget(L, rb, rc, ra, tag));
1334
120M
        vmbreak;
1335
120M
      }
1336
120M
      vmcase(OP_SETTABUP) {
1337
75.2M
        int hres;
1338
75.2M
        TValue *upval = cl->upvals[GETARG_A(i)]->v.p;
1339
75.2M
        TValue *rb = KB(i);
1340
75.2M
        TValue *rc = RKC(i);
1341
150M
        TString *key = tsvalue(rb);  /* key must be a short string */
1342
150M
        luaV_fastset(upval, key, rc, hres, luaH_psetshortstr);
1343
150M
        if (hres == HOK)
1344
75.2M
          luaV_finishfastset(L, upval, rc);
1345
4.14M
        else
1346
4.14M
          Protect(luaV_finishset(L, upval, rb, rc, hres));
1347
75.2M
        vmbreak;
1348
75.2M
      }
1349
75.2M
      vmcase(OP_SETTABLE) {
1350
24.0M
        StkId ra = RA(i);
1351
24.0M
        int hres;
1352
24.0M
        TValue *rb = vRB(i);  /* key (table is in 'ra') */
1353
24.0M
        TValue *rc = RKC(i);  /* value */
1354
24.0M
        if (ttisinteger(rb)) {  /* fast track for integers? */
1355
18.3M
          luaV_fastseti(s2v(ra), ivalue(rb), rc, hres);
1356
18.3M
        }
1357
5.73M
        else {
1358
5.73M
          luaV_fastset(s2v(ra), rb, rc, hres, luaH_pset);
1359
5.73M
        }
1360
24.0M
        if (hres == HOK)
1361
24.0M
          luaV_finishfastset(L, s2v(ra), rc);
1362
8.58M
        else
1363
8.58M
          Protect(luaV_finishset(L, s2v(ra), rb, rc, hres));
1364
24.0M
        vmbreak;
1365
24.0M
      }
1366
24.0M
      vmcase(OP_SETI) {
1367
1.70M
        StkId ra = RA(i);
1368
1.70M
        int hres;
1369
1.70M
        int b = GETARG_B(i);
1370
1.70M
        TValue *rc = RKC(i);
1371
1.70M
        luaV_fastseti(s2v(ra), b, rc, hres);
1372
1.70M
        if (hres == HOK)
1373
1.70M
          luaV_finishfastset(L, s2v(ra), rc);
1374
242k
        else {
1375
242k
          TValue key;
1376
242k
          setivalue(&key, b);
1377
242k
          Protect(luaV_finishset(L, s2v(ra), &key, rc, hres));
1378
242k
        }
1379
1.70M
        vmbreak;
1380
1.70M
      }
1381
61.2M
      vmcase(OP_SETFIELD) {
1382
61.2M
        StkId ra = RA(i);
1383
61.2M
        int hres;
1384
61.2M
        TValue *rb = KB(i);
1385
61.2M
        TValue *rc = RKC(i);
1386
122M
        TString *key = tsvalue(rb);  /* key must be a short string */
1387
122M
        luaV_fastset(s2v(ra), key, rc, hres, luaH_psetshortstr);
1388
122M
        if (hres == HOK)
1389
61.2M
          luaV_finishfastset(L, s2v(ra), rc);
1390
38.8M
        else
1391
38.8M
          Protect(luaV_finishset(L, s2v(ra), rb, rc, hres));
1392
61.2M
        vmbreak;
1393
61.2M
      }
1394
61.2M
      vmcase(OP_NEWTABLE) {
1395
28.6M
        StkId ra = RA(i);
1396
28.6M
        unsigned b = cast_uint(GETARG_vB(i));  /* log2(hash size) + 1 */
1397
28.6M
        unsigned c = cast_uint(GETARG_vC(i));  /* array size */
1398
28.6M
        Table *t;
1399
28.6M
        if (b > 0)
1400
8.40M
          b = 1u << (b - 1);  /* hash size is 2^(b - 1) */
1401
28.6M
        if (TESTARG_k(i)) {  /* non-zero extra argument? */
1402
26.4k
          lua_assert(GETARG_Ax(*pc) != 0);
1403
          /* add it to array size */
1404
26.4k
          c += cast_uint(GETARG_Ax(*pc)) * (MAXARG_vC + 1);
1405
26.4k
        }
1406
28.6M
        pc++;  /* skip extra argument */
1407
28.6M
        L->top.p = ra + 1;  /* correct top in case of emergency GC */
1408
28.6M
        t = luaH_new(L);  /* memory allocation */
1409
28.6M
        sethvalue2s(L, ra, t);
1410
28.6M
        if (b != 0 || c != 0)
1411
11.0M
          luaH_resize(L, t, c, b);  /* idem */
1412
28.6M
        checkGC(L, ra + 1);
1413
28.6M
        vmbreak;
1414
28.6M
      }
1415
28.6M
      vmcase(OP_SELF) {
1416
10.1M
        StkId ra = RA(i);
1417
10.1M
        lu_byte tag;
1418
10.1M
        TValue *rb = vRB(i);
1419
10.1M
        TValue *rc = KC(i);
1420
20.2M
        TString *key = tsvalue(rc);  /* key must be a short string */
1421
20.2M
        setobj2s(L, ra + 1, rb);
1422
10.1M
        luaV_fastget(rb, key, s2v(ra), luaH_getshortstr, tag);
1423
10.1M
        if (tagisempty(tag))
1424
9.78M
          Protect(luaV_finishget(L, rb, rc, ra, tag));
1425
10.1M
        vmbreak;
1426
10.1M
      }
1427
62.0M
      vmcase(OP_ADDI) {
1428
124M
        op_arithI(L, l_addi, luai_numadd);
1429
62.0M
        vmbreak;
1430
62.0M
      }
1431
62.0M
      vmcase(OP_ADDK) {
1432
25.4M
        op_arithK(L, l_addi, luai_numadd);
1433
25.4M
        vmbreak;
1434
25.4M
      }
1435
25.4M
      vmcase(OP_SUBK) {
1436
11.0M
        op_arithK(L, l_subi, luai_numsub);
1437
11.0M
        vmbreak;
1438
11.0M
      }
1439
11.0M
      vmcase(OP_MULK) {
1440
1.94M
        op_arithK(L, l_muli, luai_nummul);
1441
1.94M
        vmbreak;
1442
1.94M
      }
1443
8.16M
      vmcase(OP_MODK) {
1444
8.16M
        savestate(L, ci);  /* in case of division by 0 */
1445
32.6M
        op_arithK(L, luaV_mod, luaV_modf);
1446
32.6M
        vmbreak;
1447
32.6M
      }
1448
32.6M
      vmcase(OP_POWK) {
1449
25.4M
        op_arithfK(L, luai_numpow);
1450
25.4M
        vmbreak;
1451
25.4M
      }
1452
25.4M
      vmcase(OP_DIVK) {
1453
40.2M
        op_arithfK(L, luai_numdiv);
1454
40.2M
        vmbreak;
1455
40.2M
      }
1456
40.2M
      vmcase(OP_IDIVK) {
1457
3.65M
        savestate(L, ci);  /* in case of division by 0 */
1458
14.6M
        op_arithK(L, luaV_idiv, luai_numidiv);
1459
14.6M
        vmbreak;
1460
14.6M
      }
1461
14.6M
      vmcase(OP_BANDK) {
1462
744k
        op_bitwiseK(L, l_band);
1463
744k
        vmbreak;
1464
744k
      }
1465
744k
      vmcase(OP_BORK) {
1466
1.25M
        op_bitwiseK(L, l_bor);
1467
1.25M
        vmbreak;
1468
1.25M
      }
1469
10.3M
      vmcase(OP_BXORK) {
1470
31.0M
        op_bitwiseK(L, l_bxor);
1471
31.0M
        vmbreak;
1472
31.0M
      }
1473
31.0M
      vmcase(OP_SHLI) {
1474
130k
        StkId ra = RA(i);
1475
130k
        TValue *rb = vRB(i);
1476
130k
        int ic = GETARG_sC(i);
1477
130k
        lua_Integer ib;
1478
130k
        if (tointegerns(rb, &ib)) {
1479
116k
          pc++; setivalue(s2v(ra), luaV_shiftl(ic, ib));
1480
116k
        }
1481
130k
        vmbreak;
1482
130k
      }
1483
130k
      vmcase(OP_SHRI) {
1484
74.3k
        StkId ra = RA(i);
1485
74.3k
        TValue *rb = vRB(i);
1486
74.3k
        int ic = GETARG_sC(i);
1487
74.3k
        lua_Integer ib;
1488
74.3k
        if (tointegerns(rb, &ib)) {
1489
60.8k
          pc++; setivalue(s2v(ra), luaV_shiftl(ib, -ic));
1490
60.8k
        }
1491
74.3k
        vmbreak;
1492
74.3k
      }
1493
8.88M
      vmcase(OP_ADD) {
1494
26.6M
        op_arith(L, l_addi, luai_numadd);
1495
26.6M
        vmbreak;
1496
26.6M
      }
1497
26.6M
      vmcase(OP_SUB) {
1498
19.3M
        op_arith(L, l_subi, luai_numsub);
1499
19.3M
        vmbreak;
1500
19.3M
      }
1501
19.3M
      vmcase(OP_MUL) {
1502
5.15M
        op_arith(L, l_muli, luai_nummul);
1503
5.15M
        vmbreak;
1504
5.15M
      }
1505
5.15M
      vmcase(OP_MOD) {
1506
3.45M
        savestate(L, ci);  /* in case of division by 0 */
1507
10.3M
        op_arith(L, luaV_mod, luaV_modf);
1508
10.3M
        vmbreak;
1509
10.3M
      }
1510
10.3M
      vmcase(OP_POW) {
1511
16.4M
        op_arithf(L, luai_numpow);
1512
16.4M
        vmbreak;
1513
16.4M
      }
1514
16.4M
      vmcase(OP_DIV) {  /* float division (always with floats) */
1515
7.97M
        op_arithf(L, luai_numdiv);
1516
7.97M
        vmbreak;
1517
7.97M
      }
1518
7.97M
      vmcase(OP_IDIV) {  /* floor division */
1519
472k
        savestate(L, ci);  /* in case of division by 0 */
1520
1.41M
        op_arith(L, luaV_idiv, luai_numidiv);
1521
1.41M
        vmbreak;
1522
1.41M
      }
1523
1.41M
      vmcase(OP_BAND) {
1524
2.20M
        op_bitwise(L, l_band);
1525
2.20M
        vmbreak;
1526
2.20M
      }
1527
2.20M
      vmcase(OP_BOR) {
1528
2.45M
        op_bitwise(L, l_bor);
1529
2.45M
        vmbreak;
1530
2.45M
      }
1531
2.45M
      vmcase(OP_BXOR) {
1532
1.11M
        op_bitwise(L, l_bxor);
1533
1.11M
        vmbreak;
1534
1.11M
      }
1535
4.57M
      vmcase(OP_SHL) {
1536
9.15M
        op_bitwise(L, luaV_shiftl);
1537
9.15M
        vmbreak;
1538
9.15M
      }
1539
9.15M
      vmcase(OP_SHR) {
1540
1.74M
        op_bitwise(L, luaV_shiftr);
1541
1.74M
        vmbreak;
1542
1.74M
      }
1543
7.70M
      vmcase(OP_MMBIN) {
1544
7.70M
        StkId ra = RA(i);
1545
7.70M
        Instruction pi = *(pc - 2);  /* original arith. expression */
1546
7.70M
        TValue *rb = vRB(i);
1547
7.70M
        TMS tm = (TMS)GETARG_C(i);
1548
7.70M
        StkId result = RA(pi);
1549
7.70M
        lua_assert(OP_ADD <= GET_OPCODE(pi) && GET_OPCODE(pi) <= OP_SHR);
1550
7.70M
        Protect(luaT_trybinTM(L, s2v(ra), rb, result, tm));
1551
7.70M
        vmbreak;
1552
7.70M
      }
1553
7.70M
      vmcase(OP_MMBINI) {
1554
2.76M
        StkId ra = RA(i);
1555
2.76M
        Instruction pi = *(pc - 2);  /* original arith. expression */
1556
2.76M
        int imm = GETARG_sB(i);
1557
2.76M
        TMS tm = (TMS)GETARG_C(i);
1558
2.76M
        int flip = GETARG_k(i);
1559
2.76M
        StkId result = RA(pi);
1560
2.76M
        Protect(luaT_trybiniTM(L, s2v(ra), imm, flip, result, tm));
1561
2.76M
        vmbreak;
1562
2.76M
      }
1563
2.76M
      vmcase(OP_MMBINK) {
1564
914k
        StkId ra = RA(i);
1565
914k
        Instruction pi = *(pc - 2);  /* original arith. expression */
1566
914k
        TValue *imm = KB(i);
1567
914k
        TMS tm = (TMS)GETARG_C(i);
1568
914k
        int flip = GETARG_k(i);
1569
914k
        StkId result = RA(pi);
1570
914k
        Protect(luaT_trybinassocTM(L, s2v(ra), imm, flip, result, tm));
1571
914k
        vmbreak;
1572
914k
      }
1573
3.50M
      vmcase(OP_UNM) {
1574
3.50M
        StkId ra = RA(i);
1575
3.50M
        TValue *rb = vRB(i);
1576
3.50M
        lua_Number nb;
1577
3.50M
        if (ttisinteger(rb)) {
1578
1.30M
          lua_Integer ib = ivalue(rb);
1579
1.30M
          setivalue(s2v(ra), intop(-, 0, ib));
1580
1.30M
        }
1581
2.19M
        else if (tonumberns(rb, nb)) {
1582
1.85M
          setfltvalue(s2v(ra), luai_numunm(L, nb));
1583
1.85M
        }
1584
342k
        else
1585
342k
          Protect(luaT_trybinTM(L, rb, rb, ra, TM_UNM));
1586
3.50M
        vmbreak;
1587
3.50M
      }
1588
9.95M
      vmcase(OP_BNOT) {
1589
9.95M
        StkId ra = RA(i);
1590
9.95M
        TValue *rb = vRB(i);
1591
9.95M
        lua_Integer ib;
1592
9.95M
        if (tointegerns(rb, &ib)) {
1593
9.93M
          setivalue(s2v(ra), intop(^, ~l_castS2U(0), ib));
1594
9.93M
        }
1595
20.7k
        else
1596
20.7k
          Protect(luaT_trybinTM(L, rb, rb, ra, TM_BNOT));
1597
9.95M
        vmbreak;
1598
9.95M
      }
1599
9.95M
      vmcase(OP_NOT) {
1600
508k
        StkId ra = RA(i);
1601
508k
        TValue *rb = vRB(i);
1602
508k
        if (l_isfalse(rb))
1603
508k
          setbtvalue(s2v(ra));
1604
314k
        else
1605
508k
          setbfvalue(s2v(ra));
1606
508k
        vmbreak;
1607
508k
      }
1608
11.9M
      vmcase(OP_LEN) {
1609
11.9M
        StkId ra = RA(i);
1610
11.9M
        Protect(luaV_objlen(L, ra, vRB(i)));
1611
11.9M
        vmbreak;
1612
11.9M
      }
1613
12.0M
      vmcase(OP_CONCAT) {
1614
12.0M
        StkId ra = RA(i);
1615
12.0M
        int n = GETARG_B(i);  /* number of elements to concatenate */
1616
12.0M
        L->top.p = ra + n;  /* mark the end of concat operands */
1617
12.0M
        ProtectNT(luaV_concat(L, n));
1618
12.0M
        checkGC(L, L->top.p); /* 'luaV_concat' ensures correct top */
1619
12.0M
        vmbreak;
1620
12.0M
      }
1621
12.0M
      vmcase(OP_CLOSE) {
1622
8.24M
        StkId ra = RA(i);
1623
8.24M
        lua_assert(!GETARG_B(i));  /* 'close must be alive */
1624
8.24M
        Protect(luaF_close(L, ra, LUA_OK, 1));
1625
8.24M
        vmbreak;
1626
8.24M
      }
1627
8.24M
      vmcase(OP_TBC) {
1628
4.36k
        StkId ra = RA(i);
1629
        /* create new to-be-closed upvalue */
1630
4.36k
        halfProtect(luaF_newtbcupval(L, ra));
1631
4.36k
        vmbreak;
1632
4.36k
      }
1633
2.61M
      vmcase(OP_JMP) {
1634
2.61M
        dojump(ci, i, 0);
1635
2.61M
        vmbreak;
1636
2.61M
      }
1637
5.56M
      vmcase(OP_EQ) {
1638
5.56M
        StkId ra = RA(i);
1639
5.56M
        int cond;
1640
5.56M
        TValue *rb = vRB(i);
1641
5.56M
        Protect(cond = luaV_equalobj(L, s2v(ra), rb));
1642
5.56M
        docondjump();
1643
5.56M
        vmbreak;
1644
5.56M
      }
1645
11.7M
      vmcase(OP_LT) {
1646
35.2M
        op_order(L, l_lti, LTnum, lessthanothers);
1647
35.2M
        vmbreak;
1648
35.2M
      }
1649
35.2M
      vmcase(OP_LE) {
1650
5.94M
        op_order(L, l_lei, LEnum, lessequalothers);
1651
5.94M
        vmbreak;
1652
5.94M
      }
1653
169M
      vmcase(OP_EQK) {
1654
169M
        StkId ra = RA(i);
1655
169M
        TValue *rb = KB(i);
1656
        /* basic types do not use '__eq'; we can use raw equality */
1657
169M
        int cond = luaV_rawequalobj(s2v(ra), rb);
1658
169M
        docondjump();
1659
169M
        vmbreak;
1660
169M
      }
1661
169M
      vmcase(OP_EQI) {
1662
682k
        StkId ra = RA(i);
1663
682k
        int cond;
1664
682k
        int im = GETARG_sB(i);
1665
682k
        if (ttisinteger(s2v(ra)))
1666
631k
          cond = (ivalue(s2v(ra)) == im);
1667
50.9k
        else if (ttisfloat(s2v(ra)))
1668
32.8k
          cond = luai_numeq(fltvalue(s2v(ra)), cast_num(im));
1669
18.1k
        else
1670
18.1k
          cond = 0;  /* other types cannot be equal to a number */
1671
1.36M
        docondjump();
1672
1.36M
        vmbreak;
1673
1.36M
      }
1674
2.92M
      vmcase(OP_LTI) {
1675
8.77M
        op_orderI(L, l_lti, luai_numlt, 0, TM_LT);
1676
8.77M
        vmbreak;
1677
8.77M
      }
1678
8.77M
      vmcase(OP_LEI) {
1679
921k
        op_orderI(L, l_lei, luai_numle, 0, TM_LE);
1680
921k
        vmbreak;
1681
921k
      }
1682
38.8M
      vmcase(OP_GTI) {
1683
116M
        op_orderI(L, l_gti, luai_numgt, 1, TM_LT);
1684
116M
        vmbreak;
1685
116M
      }
1686
116M
      vmcase(OP_GEI) {
1687
6.23M
        op_orderI(L, l_gei, luai_numge, 1, TM_LE);
1688
6.23M
        vmbreak;
1689
6.23M
      }
1690
132M
      vmcase(OP_TEST) {
1691
132M
        StkId ra = RA(i);
1692
132M
        int cond = !l_isfalse(s2v(ra));
1693
132M
        docondjump();
1694
132M
        vmbreak;
1695
132M
      }
1696
132M
      vmcase(OP_TESTSET) {
1697
1.19M
        StkId ra = RA(i);
1698
1.19M
        TValue *rb = vRB(i);
1699
1.19M
        if (l_isfalse(rb) == GETARG_k(i))
1700
447k
          pc++;
1701
750k
        else {
1702
750k
          setobj2s(L, ra, rb);
1703
750k
          donextjump(ci);
1704
750k
        }
1705
1.19M
        vmbreak;
1706
1.19M
      }
1707
467M
      vmcase(OP_CALL) {
1708
467M
        StkId ra = RA(i);
1709
467M
        CallInfo *newci;
1710
467M
        int b = GETARG_B(i);
1711
467M
        int nresults = GETARG_C(i) - 1;
1712
467M
        if (b != 0)  /* fixed number of arguments? */
1713
450M
          L->top.p = ra + b;  /* top signals number of arguments */
1714
        /* else previous instruction set top */
1715
467M
        savepc(ci);  /* in case of errors */
1716
467M
        if ((newci = luaD_precall(L, ra, nresults)) == NULL)
1717
336M
          updatetrap(ci);  /* C call; nothing else to be done */
1718
131M
        else {  /* Lua call: run function in this same C frame */
1719
131M
          ci = newci;
1720
131M
          goto startfunc;
1721
131M
        }
1722
467M
        vmbreak;
1723
336M
      }
1724
97.9M
      vmcase(OP_TAILCALL) {
1725
97.9M
        StkId ra = RA(i);
1726
97.9M
        int b = GETARG_B(i);  /* number of arguments + 1 (function) */
1727
97.9M
        int n;  /* number of results when calling a C function */
1728
97.9M
        int nparams1 = GETARG_C(i);
1729
        /* delta is virtual 'func' - real 'func' (vararg functions) */
1730
97.9M
        int delta = (nparams1) ? ci->u.l.nextraargs + nparams1 : 0;
1731
97.9M
        if (b != 0)
1732
97.9M
          L->top.p = ra + b;
1733
3.46k
        else  /* previous instruction set top */
1734
3.46k
          b = cast_int(L->top.p - ra);
1735
97.9M
        savepc(ci);  /* several calls here can raise errors */
1736
97.9M
        if (TESTARG_k(i)) {
1737
535k
          luaF_closeupval(L, base);  /* close upvalues from current call */
1738
535k
          lua_assert(L->tbclist.p < base);  /* no pending tbc variables */
1739
535k
          lua_assert(base == ci->func.p + 1);
1740
535k
        }
1741
97.9M
        if ((n = luaD_pretailcall(L, ci, ra, b, delta)) < 0)  /* Lua function? */
1742
97.9M
          goto startfunc;  /* execute the callee */
1743
21.0k
        else {  /* C function? */
1744
21.0k
          ci->func.p -= delta;  /* restore 'func' (if vararg) */
1745
21.0k
          luaD_poscall(L, ci, n);  /* finish caller */
1746
21.0k
          updatetrap(ci);  /* 'luaD_poscall' can change hooks */
1747
21.0k
          goto ret;  /* caller returns after the tail call */
1748
21.0k
        }
1749
97.9M
      }
1750
3.76M
      vmcase(OP_RETURN) {
1751
3.76M
        StkId ra = RA(i);
1752
3.76M
        int n = GETARG_B(i) - 1;  /* number of results */
1753
3.76M
        int nparams1 = GETARG_C(i);
1754
3.76M
        if (n < 0)  /* not fixed? */
1755
8.64k
          n = cast_int(L->top.p - ra);  /* get what is available */
1756
3.76M
        savepc(ci);
1757
3.76M
        if (TESTARG_k(i)) {  /* may there be open upvalues? */
1758
93.4k
          ci->u2.nres = n;  /* save number of returns */
1759
93.4k
          if (L->top.p < ci->top.p)
1760
24.7k
            L->top.p = ci->top.p;
1761
93.4k
          luaF_close(L, base, CLOSEKTOP, 1);
1762
93.4k
          updatetrap(ci);
1763
93.4k
          updatestack(ci);
1764
93.4k
        }
1765
3.76M
        if (nparams1)  /* vararg function? */
1766
3.66M
          ci->func.p -= ci->u.l.nextraargs + nparams1;
1767
3.76M
        L->top.p = ra + n;  /* set call for 'luaD_poscall' */
1768
3.76M
        luaD_poscall(L, ci, n);
1769
3.76M
        updatetrap(ci);  /* 'luaD_poscall' can change hooks */
1770
3.76M
        goto ret;
1771
3.76M
      }
1772
45.8M
      vmcase(OP_RETURN0) {
1773
45.8M
        if (l_unlikely(L->hookmask)) {
1774
4.27M
          StkId ra = RA(i);
1775
4.27M
          L->top.p = ra;
1776
4.27M
          savepc(ci);
1777
4.27M
          luaD_poscall(L, ci, 0);  /* no hurry... */
1778
4.27M
          trap = 1;
1779
4.27M
        }
1780
41.5M
        else {  /* do the 'poscall' here */
1781
41.5M
          int nres = get_nresults(ci->callstatus);
1782
41.5M
          L->ci = ci->previous;  /* back to caller */
1783
41.5M
          L->top.p = base - 1;
1784
41.5M
          for (; l_unlikely(nres > 0); nres--)
1785
41.5M
            setnilvalue(s2v(L->top.p++));  /* all results are nil */
1786
41.5M
        }
1787
45.8M
        goto ret;
1788
3.76M
      }
1789
186M
      vmcase(OP_RETURN1) {
1790
186M
        if (l_unlikely(L->hookmask)) {
1791
37.2k
          StkId ra = RA(i);
1792
37.2k
          L->top.p = ra + 1;
1793
37.2k
          savepc(ci);
1794
37.2k
          luaD_poscall(L, ci, 1);  /* no hurry... */
1795
37.2k
          trap = 1;
1796
37.2k
        }
1797
186M
        else {  /* do the 'poscall' here */
1798
186M
          int nres = get_nresults(ci->callstatus);
1799
186M
          L->ci = ci->previous;  /* back to caller */
1800
186M
          if (nres == 0)
1801
6.39M
            L->top.p = base - 1;  /* asked for no results */
1802
179M
          else {
1803
179M
            StkId ra = RA(i);
1804
179M
            setobjs2s(L, base - 1, ra);  /* at least this result */
1805
179M
            L->top.p = base;
1806
179M
            for (; l_unlikely(nres > 1); nres--)
1807
179M
              setnilvalue(s2v(L->top.p++));  /* complete missing results */
1808
179M
          }
1809
186M
        }
1810
235M
       ret:  /* return from a Lua function */
1811
235M
        if (ci->callstatus & CIST_FRESH)
1812
167M
          return;  /* end this frame */
1813
68.6M
        else {
1814
68.6M
          ci = ci->previous;
1815
68.6M
          goto returning;  /* continue running caller in this frame */
1816
68.6M
        }
1817
235M
      }
1818
36.7M
      vmcase(OP_FORLOOP) {
1819
36.7M
        StkId ra = RA(i);
1820
36.7M
        if (ttisinteger(s2v(ra + 1))) {  /* integer loop? */
1821
29.4M
          lua_Unsigned count = l_castS2U(ivalue(s2v(ra)));
1822
29.4M
          if (count > 0) {  /* still more iterations? */
1823
28.7M
            lua_Integer step = ivalue(s2v(ra + 1));
1824
28.7M
            lua_Integer idx = ivalue(s2v(ra + 2));  /* control variable */
1825
28.7M
            chgivalue(s2v(ra), l_castU2S(count - 1));  /* update counter */
1826
28.7M
            idx = intop(+, idx, step);  /* add step to index */
1827
28.7M
            chgivalue(s2v(ra + 2), idx);  /* update control variable */
1828
28.7M
            pc -= GETARG_Bx(i);  /* jump back */
1829
28.7M
          }
1830
29.4M
        }
1831
7.39M
        else if (floatforloop(ra))  /* float loop */
1832
6.99M
          pc -= GETARG_Bx(i);  /* jump back */
1833
36.7M
        updatetrap(ci);  /* allows a signal to break the loop */
1834
36.7M
        vmbreak;
1835
36.7M
      }
1836
36.7M
      vmcase(OP_FORPREP) {
1837
2.73M
        StkId ra = RA(i);
1838
2.73M
        savestate(L, ci);  /* in case of errors */
1839
2.73M
        if (forprep(L, ra))
1840
1.40M
          pc += GETARG_Bx(i) + 1;  /* skip the loop */
1841
2.73M
        vmbreak;
1842
2.73M
      }
1843
2.86M
      vmcase(OP_TFORPREP) {
1844
       /* before: 'ra' has the iterator function, 'ra + 1' has the state,
1845
          'ra + 2' has the initial value for the control variable, and
1846
          'ra + 3' has the closing variable. This opcode then swaps the
1847
          control and the closing variables and marks the closing variable
1848
          as to-be-closed.
1849
       */
1850
2.86M
       StkId ra = RA(i);
1851
2.86M
       TValue temp;  /* to swap control and closing variables */
1852
2.86M
       setobj(L, &temp, s2v(ra + 3));
1853
2.86M
       setobjs2s(L, ra + 3, ra + 2);
1854
2.86M
       setobj2s(L, ra + 2, &temp);
1855
        /* create to-be-closed upvalue (if closing var. is not nil) */
1856
2.86M
        halfProtect(luaF_newtbcupval(L, ra + 2));
1857
2.86M
        pc += GETARG_Bx(i);  /* go to end of the loop */
1858
2.86M
        i = *(pc++);  /* fetch next instruction */
1859
2.86M
        lua_assert(GET_OPCODE(i) == OP_TFORCALL && ra == RA(i));
1860
2.86M
        goto l_tforcall;
1861
2.86M
      }
1862
4.68M
      vmcase(OP_TFORCALL) {
1863
7.54M
       l_tforcall: {
1864
        /* 'ra' has the iterator function, 'ra + 1' has the state,
1865
           'ra + 2' has the closing variable, and 'ra + 3' has the control
1866
           variable. The call will use the stack starting at 'ra + 3',
1867
           so that it preserves the first three values, and the first
1868
           return will be the new value for the control variable.
1869
        */
1870
7.54M
        StkId ra = RA(i);
1871
7.54M
        setobjs2s(L, ra + 5, ra + 3);  /* copy the control variable */
1872
7.54M
        setobjs2s(L, ra + 4, ra + 1);  /* copy state */
1873
7.54M
        setobjs2s(L, ra + 3, ra);  /* copy function */
1874
7.54M
        L->top.p = ra + 3 + 3;
1875
7.54M
        ProtectNT(luaD_call(L, ra + 3, GETARG_C(i)));  /* do the call */
1876
7.54M
        updatestack(ci);  /* stack may have changed */
1877
7.54M
        i = *(pc++);  /* go to next instruction */
1878
7.54M
        lua_assert(GET_OPCODE(i) == OP_TFORLOOP && ra == RA(i));
1879
7.54M
        goto l_tforloop;
1880
7.54M
      }}
1881
7.54M
      vmcase(OP_TFORLOOP) {
1882
7.54M
       l_tforloop: {
1883
7.54M
        StkId ra = RA(i);
1884
7.54M
        if (!ttisnil(s2v(ra + 3)))  /* continue loop? */
1885
5.10M
          pc -= GETARG_Bx(i);  /* jump back */
1886
7.54M
        vmbreak;
1887
7.54M
      }}
1888
7.54M
      vmcase(OP_SETLIST) {
1889
5.96M
        StkId ra = RA(i);
1890
5.96M
        unsigned n = cast_uint(GETARG_vB(i));
1891
5.96M
        unsigned last = cast_uint(GETARG_vC(i));
1892
11.9M
        Table *h = hvalue(s2v(ra));
1893
11.9M
        if (n == 0)
1894
226k
          n = cast_uint(L->top.p - ra) - 1;  /* get up to the top */
1895
5.73M
        else
1896
5.73M
          L->top.p = ci->top.p;  /* correct top in case of emergency GC */
1897
11.9M
        last += n;
1898
11.9M
        if (TESTARG_k(i)) {
1899
118k
          last += cast_uint(GETARG_Ax(*pc)) * (MAXARG_vC + 1);
1900
118k
          pc++;
1901
118k
        }
1902
        /* when 'n' is known, table should have proper size */
1903
11.9M
        if (last > h->asize) {  /* needs more space? */
1904
          /* fixed-size sets should have space preallocated */
1905
210k
          lua_assert(GETARG_vB(i) == 0);
1906
210k
          luaH_resizearray(L, h, last);  /* preallocate it at once */
1907
210k
        }
1908
75.6M
        for (; n > 0; n--) {
1909
69.6M
          TValue *val = s2v(ra + n);
1910
69.6M
          obj2arr(h, last - 1, val);
1911
69.6M
          last--;
1912
69.6M
          luaC_barrierback(L, obj2gco(h), val);
1913
69.6M
        }
1914
5.96M
        vmbreak;
1915
5.96M
      }
1916
24.1M
      vmcase(OP_CLOSURE) {
1917
24.1M
        StkId ra = RA(i);
1918
24.1M
        Proto *p = cl->p->p[GETARG_Bx(i)];
1919
24.1M
        halfProtect(pushclosure(L, p, cl->upvals, base, ra));
1920
24.1M
        checkGC(L, ra + 1);
1921
24.1M
        vmbreak;
1922
24.1M
      }
1923
24.1M
      vmcase(OP_VARARG) {
1924
4.50M
        StkId ra = RA(i);
1925
4.50M
        int n = GETARG_C(i) - 1;  /* required results */
1926
4.50M
        Protect(luaT_getvarargs(L, ci, ra, n));
1927
4.50M
        vmbreak;
1928
4.50M
      }
1929
4.50M
      vmcase(OP_GETVARG) {
1930
0
        StkId ra = RA(i);
1931
0
        TValue *rc = vRC(i);
1932
0
        luaT_getvararg(ci, ra, rc);
1933
0
        vmbreak;
1934
0
      }
1935
19.4M
      vmcase(OP_VARARGPREP) {
1936
19.4M
        ProtectNT(luaT_adjustvarargs(L, ci, cl->p));
1937
19.4M
        if (l_unlikely(trap)) {  /* previous "Protect" updated trap */
1938
614k
          luaD_hookcall(L, ci);
1939
614k
          L->oldpc = 1;  /* next opcode will be seen as a "new" line */
1940
614k
        }
1941
19.4M
        updatebase(ci);  /* function has new base after adjustment */
1942
19.4M
        vmbreak;
1943
19.4M
      }
1944
19.4M
      vmcase(OP_EXTRAARG) {
1945
0
        lua_assert(0);
1946
0
        vmbreak;
1947
0
      }
1948
0
    }
1949
0
  }
1950
930M
}
1951
1952
/* }================================================================== */