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-rw-r--r--src/lj_ctype.c583
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diff --git a/src/lj_ctype.c b/src/lj_ctype.c
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1/*
2** C type management.
3** Copyright (C) 2005-2010 Mike Pall. See Copyright Notice in luajit.h
4*/
5
6#include "lj_obj.h"
7
8#if LJ_HASFFI
9
10#include "lj_gc.h"
11#include "lj_err.h"
12#include "lj_str.h"
13#include "lj_tab.h"
14#include "lj_ctype.h"
15
16/* -- C type definitions -------------------------------------------------- */
17
18/* Predefined typedefs. */
19#define CTTDDEF(_) \
20 /* Vararg handling. */ \
21 _("va_list", P_VOID) \
22 _("__builtin_va_list", P_VOID) \
23 _("__gnuc_va_list", P_VOID) \
24 /* From stddef.h. */ \
25 _("ptrdiff_t", INT_PSZ) \
26 _("size_t", UINT_PSZ) \
27 _("wchar_t", WCHAR) \
28 /* Subset of stdint.h. */ \
29 _("int8_t", INT8) \
30 _("int16_t", INT16) \
31 _("int32_t", INT32) \
32 _("int64_t", INT64) \
33 _("uint8_t", UINT8) \
34 _("uint16_t", UINT16) \
35 _("uint32_t", UINT32) \
36 _("uint64_t", UINT64) \
37 _("intptr_t", INT_PSZ) \
38 _("uintptr_t", UINT_PSZ) \
39 /* End of typedef list. */
40
41/* Keywords (only the ones we actually care for). */
42#define CTKWDEF(_) \
43 /* Type specifiers. */ \
44 _("void", -1, CTOK_VOID) \
45 _("_Bool", 1, CTOK_BOOL) \
46 _("bool", 1, CTOK_BOOL) \
47 _("char", 1, CTOK_CHAR) \
48 _("int", 4, CTOK_INT) \
49 _("__int8", 1, CTOK_INT) \
50 _("__int16", 2, CTOK_INT) \
51 _("__int32", 4, CTOK_INT) \
52 _("__int64", 8, CTOK_INT) \
53 _("float", 4, CTOK_FP) \
54 _("double", 8, CTOK_FP) \
55 _("long", 0, CTOK_LONG) \
56 _("short", 0, CTOK_SHORT) \
57 _("_Complex", 0, CTOK_COMPLEX) \
58 _("complex", 0, CTOK_COMPLEX) \
59 _("__complex", 0, CTOK_COMPLEX) \
60 _("__complex__", 0, CTOK_COMPLEX) \
61 _("signed", 0, CTOK_SIGNED) \
62 _("__signed", 0, CTOK_SIGNED) \
63 _("__signed__", 0, CTOK_SIGNED) \
64 _("unsigned", 0, CTOK_UNSIGNED) \
65 /* Type qualifiers. */ \
66 _("const", 0, CTOK_CONST) \
67 _("__const", 0, CTOK_CONST) \
68 _("__const__", 0, CTOK_CONST) \
69 _("volatile", 0, CTOK_VOLATILE) \
70 _("__volatile", 0, CTOK_VOLATILE) \
71 _("__volatile__", 0, CTOK_VOLATILE) \
72 _("restrict", 0, CTOK_RESTRICT) \
73 _("__restrict", 0, CTOK_RESTRICT) \
74 _("__restrict__", 0, CTOK_RESTRICT) \
75 _("inline", 0, CTOK_INLINE) \
76 _("__inline", 0, CTOK_INLINE) \
77 _("__inline__", 0, CTOK_INLINE) \
78 /* Storage class specifiers. */ \
79 _("typedef", 0, CTOK_TYPEDEF) \
80 _("extern", 0, CTOK_EXTERN) \
81 _("static", 0, CTOK_STATIC) \
82 _("auto", 0, CTOK_AUTO) \
83 _("register", 0, CTOK_REGISTER) \
84 /* GCC Attributes. */ \
85 _("__extension__", 0, CTOK_EXTENSION) \
86 _("__attribute", 0, CTOK_ATTRIBUTE) \
87 _("__attribute__", 0, CTOK_ATTRIBUTE) \
88 _("asm", 0, CTOK_ASM) \
89 _("__asm", 0, CTOK_ASM) \
90 _("__asm__", 0, CTOK_ASM) \
91 /* MSVC Attributes. */ \
92 _("__declspec", 0, CTOK_DECLSPEC) \
93 _("__cdecl", CTCC_CDECL, CTOK_CCDECL) \
94 _("__thiscall", CTCC_THISCALL, CTOK_CCDECL) \
95 _("__fastcall", CTCC_FASTCALL, CTOK_CCDECL) \
96 _("__stdcall", CTCC_STDCALL, CTOK_CCDECL) \
97 _("__ptr32", 4, CTOK_PTRSZ) \
98 _("__ptr64", 8, CTOK_PTRSZ) \
99 /* Other type specifiers. */ \
100 _("struct", 0, CTOK_STRUCT) \
101 _("union", 0, CTOK_UNION) \
102 _("enum", 0, CTOK_ENUM) \
103 /* Operators. */ \
104 _("sizeof", 0, CTOK_SIZEOF) \
105 _("__alignof", 0, CTOK_ALIGNOF) \
106 _("__alignof__", 0, CTOK_ALIGNOF) \
107 /* End of keyword list. */
108
109/* Type info for predefined types. Size merged in. */
110static CTInfo lj_ctype_typeinfo[] = {
111#define CTTYINFODEF(id, sz, ct, info) CTINFO((ct),(((sz)&0x3fu)<<10)+(info)),
112#define CTTDINFODEF(name, id) CTINFO(CT_TYPEDEF, CTID_##id),
113#define CTKWINFODEF(name, sz, kw) CTINFO(CT_KW,(((sz)&0x3fu)<<10)+(kw)),
114CTTYDEF(CTTYINFODEF)
115CTTDDEF(CTTDINFODEF)
116CTKWDEF(CTKWINFODEF)
117#undef CTTYINFODEF
118#undef CTTDINFODEF
119#undef CTKWINFODEF
120 0
121};
122
123/* Predefined type names collected in a single string. */
124static const char * const lj_ctype_typenames =
125#define CTTDNAMEDEF(name, id) name "\0"
126#define CTKWNAMEDEF(name, sz, cds) name "\0"
127CTTDDEF(CTTDNAMEDEF)
128CTKWDEF(CTKWNAMEDEF)
129#undef CTTDNAMEDEF
130#undef CTKWNAMEDEF
131;
132
133#define CTTYPEINFO_NUM (sizeof(lj_ctype_typeinfo)/sizeof(CTInfo)-1)
134#define CTTYPETAB_MIN 128
135
136/* -- C type interning ---------------------------------------------------- */
137
138#define ct_hashtype(info, size) (hashrot(info, size) & CTHASH_MASK)
139#define ct_hashname(name) \
140 (hashrot(u32ptr(name), u32ptr(name) + HASH_BIAS) & CTHASH_MASK)
141
142/* Create new type element. */
143CTypeID lj_ctype_new(CTState *cts, CType **ctp)
144{
145 CTypeID id = cts->top;
146 CType *ct;
147 lua_assert(cts->L);
148 if (LJ_UNLIKELY(id >= cts->sizetab)) {
149 if (id >= CTID_MAX) lj_err_msg(cts->L, LJ_ERR_TABOV);
150 lj_mem_growvec(cts->L, cts->tab, cts->sizetab, CTID_MAX, CType);
151 }
152 cts->top = id+1;
153 *ctp = ct = &cts->tab[id];
154 ct->info = 0;
155 ct->size = 0;
156 ct->sib = 0;
157 ct->next = 0;
158 setgcrefnull(ct->name);
159 return id;
160}
161
162/* Intern a type element. */
163CTypeID lj_ctype_intern(CTState *cts, CTInfo info, CTSize size)
164{
165 uint32_t h = ct_hashtype(info, size);
166 CTypeID id = cts->hash[h];
167 lua_assert(cts->L);
168 while (id) {
169 CType *ct = ctype_get(cts, id);
170 if (ct->info == info && ct->size == size)
171 return id;
172 id = ct->next;
173 }
174 id = cts->top;
175 if (LJ_UNLIKELY(id >= cts->sizetab)) {
176 if (id >= CTID_MAX) lj_err_msg(cts->L, LJ_ERR_TABOV);
177 lj_mem_growvec(cts->L, cts->tab, cts->sizetab, CTID_MAX, CType);
178 }
179 cts->top = id+1;
180 cts->tab[id].info = info;
181 cts->tab[id].size = size;
182 cts->tab[id].sib = 0;
183 cts->tab[id].next = cts->hash[h];
184 setgcrefnull(cts->tab[id].name);
185 cts->hash[h] = (CTypeID1)id;
186 return id;
187}
188
189/* Add type element to hash table. */
190static void ctype_addtype(CTState *cts, CType *ct, CTypeID id)
191{
192 uint32_t h = ct_hashtype(ct->info, ct->size);
193 ct->next = cts->hash[h];
194 cts->hash[h] = (CTypeID1)id;
195}
196
197/* Add named element to hash table. */
198void lj_ctype_addname(CTState *cts, CType *ct, CTypeID id)
199{
200 uint32_t h = ct_hashname(gcref(ct->name));
201 ct->next = cts->hash[h];
202 cts->hash[h] = (CTypeID1)id;
203}
204
205/* Get a C type by name, matching the type mask. */
206CTypeID lj_ctype_getname(CTState *cts, CType **ctp, GCstr *name, uint32_t tmask)
207{
208 CTypeID id = cts->hash[ct_hashname(name)];
209 while (id) {
210 CType *ct = ctype_get(cts, id);
211 if (gcref(ct->name) == obj2gco(name) &&
212 ((tmask >> ctype_type(ct->info)) & 1)) {
213 *ctp = ct;
214 return id;
215 }
216 id = ct->next;
217 }
218 *ctp = &cts->tab[0]; /* Simplify caller logic. ctype_get() would assert. */
219 return 0;
220}
221
222/* Get a struct/union/enum/function field by name. */
223CType *lj_ctype_getfield(CTState *cts, CType *ct, GCstr *name, CTSize *ofs)
224{
225 while (ct->sib) {
226 ct = ctype_get(cts, ct->sib);
227 if (gcref(ct->name) == obj2gco(name)) {
228 *ofs = ct->size;
229 return ct;
230 }
231 if (ctype_isxattrib(ct->info, CTA_SUBTYPE)) {
232 CType *fct = lj_ctype_getfield(cts, ctype_child(cts, ct), name, ofs);
233 if (fct) {
234 *ofs += ct->size;
235 return fct;
236 }
237 }
238 }
239 return NULL; /* Not found. */
240}
241
242/* -- C type information -------------------------------------------------- */
243
244/* Follow references and get raw type for a C type ID. */
245CType *lj_ctype_rawref(CTState *cts, CTypeID id)
246{
247 CType *ct = ctype_get(cts, id);
248 while (ctype_isattrib(ct->info) || ctype_isref(ct->info))
249 ct = ctype_child(cts, ct);
250 return ct;
251}
252
253/* Get size for a C type ID. Does NOT support VLA/VLS. */
254CTSize lj_ctype_size(CTState *cts, CTypeID id)
255{
256 CType *ct = ctype_raw(cts, id);
257 return ctype_hassize(ct->info) ? ct->size : CTSIZE_INVALID;
258}
259
260/* Get size for a variable-length C type. Does NOT support other C types. */
261CTSize lj_ctype_vlsize(CTState *cts, CType *ct, CTSize nelem)
262{
263 uint64_t xsz = 0;
264 if (ctype_isstruct(ct->info)) {
265 CTypeID arrid = 0, fid = ct->sib;
266 xsz = ct->size; /* Add the struct size. */
267 while (fid) {
268 CType *ctf = ctype_get(cts, fid);
269 if (ctype_type(ctf->info) == CT_FIELD)
270 arrid = ctype_cid(ctf->info); /* Remember last field of VLS. */
271 fid = ctf->sib;
272 }
273 ct = ctype_raw(cts, arrid);
274 }
275 lua_assert(ctype_isvlarray(ct->info)); /* Must be a VLA. */
276 ct = ctype_rawchild(cts, ct); /* Get array element. */
277 lua_assert(ctype_hassize(ct->info));
278 /* Calculate actual size of VLA and check for overflow. */
279 xsz += (uint64_t)ct->size * nelem;
280 return xsz < 0x80000000u ? (CTSize)xsz : CTSIZE_INVALID;
281}
282
283/* Get type, qualifiers, size and alignment for a C type ID. */
284CTInfo lj_ctype_info(CTState *cts, CTypeID id, CTSize *szp)
285{
286 CTInfo qual = 0;
287 CType *ct = ctype_get(cts, id);
288 for (;;) {
289 CTInfo info = ct->info;
290 if (ctype_isenum(info)) {
291 /* Follow child. Need to look at its attributes, too. */
292 } else if (ctype_isattrib(info)) {
293 if (ctype_isxattrib(info, CTA_QUAL))
294 qual |= ct->size;
295 else if (ctype_isxattrib(info, CTA_ALIGN) && !(qual & CTFP_ALIGNED))
296 qual |= CTFP_ALIGNED + CTALIGN(ct->size);
297 } else {
298 if (!(qual & CTFP_ALIGNED)) qual |= (info & CTF_ALIGN);
299 qual |= (info & ~(CTF_ALIGN|CTMASK_CID));
300 lua_assert(ctype_hassize(info) || ctype_isfunc(info));
301 *szp = ctype_isfunc(info) ? CTSIZE_INVALID : ct->size;
302 break;
303 }
304 ct = ctype_get(cts, ctype_cid(info));
305 }
306 return qual;
307}
308
309/* -- C type representation ----------------------------------------------- */
310
311/* Fixed max. length of a C type representation. */
312#define CTREPR_MAX 512
313
314typedef struct CTRepr {
315 char *pb, *pe;
316 CTState *cts;
317 lua_State *L;
318 int needsp;
319 int ok;
320 char buf[CTREPR_MAX];
321} CTRepr;
322
323/* Prepend string. */
324static void ctype_prepstr(CTRepr *ctr, const char *str, MSize len)
325{
326 char *p = ctr->pb;
327 if (ctr->buf + len+1 > p) { ctr->ok = 0; return; }
328 if (ctr->needsp) *--p = ' ';
329 ctr->needsp = 1;
330 p -= len;
331 while (len-- > 0) p[len] = str[len];
332 ctr->pb = p;
333}
334
335#define ctype_preplit(ctr, str) ctype_prepstr((ctr), "" str, sizeof(str)-1)
336
337/* Prepend char. */
338static void ctype_prepc(CTRepr *ctr, int c)
339{
340 if (ctr->buf >= ctr->pb) { ctr->ok = 0; return; }
341 *--ctr->pb = c;
342}
343
344/* Prepend number. */
345static void ctype_prepnum(CTRepr *ctr, uint32_t n)
346{
347 char *p = ctr->pb;
348 if (ctr->buf + 10+1 > p) { ctr->ok = 0; return; }
349 do { *--p = (char)('0' + n % 10); } while (n /= 10);
350 ctr->pb = p;
351 ctr->needsp = 0;
352}
353
354/* Append char. */
355static void ctype_appc(CTRepr *ctr, int c)
356{
357 if (ctr->pe >= ctr->buf + CTREPR_MAX) { ctr->ok = 0; return; }
358 *ctr->pe++ = c;
359}
360
361/* Append number. */
362static void ctype_appnum(CTRepr *ctr, uint32_t n)
363{
364 char buf[10];
365 char *p = buf+sizeof(buf);
366 char *q = ctr->pe;
367 if (q > ctr->buf + CTREPR_MAX - 10) { ctr->ok = 0; return; }
368 do { *--p = (char)('0' + n % 10); } while (n /= 10);
369 do { *q++ = *p++; } while (p < buf+sizeof(buf));
370 ctr->pe = q;
371}
372
373/* Prepend qualifiers. */
374static void ctype_prepqual(CTRepr *ctr, CTInfo info)
375{
376 if ((info & CTF_VOLATILE)) ctype_preplit(ctr, "volatile");
377 if ((info & CTF_CONST)) ctype_preplit(ctr, "const");
378}
379
380/* Prepend named type. */
381static void ctype_preptype(CTRepr *ctr, CType *ct, CTInfo qual, const char *t)
382{
383 if (gcref(ct->name)) {
384 GCstr *str = gco2str(gcref(ct->name));
385 ctype_prepstr(ctr, strdata(str), str->len);
386 } else {
387 if (ctr->needsp) ctype_prepc(ctr, ' ');
388 ctype_prepnum(ctr, ctype_typeid(ctr->cts, ct));
389 ctr->needsp = 1;
390 }
391 ctype_prepstr(ctr, t, (MSize)strlen(t));
392 ctype_prepqual(ctr, qual);
393}
394
395void ctype_repr(CTRepr *ctr, CTypeID id)
396{
397 CType *ct = ctype_get(ctr->cts, id);
398 CTInfo qual = 0;
399 int ptrto = 0;
400 for (;;) {
401 CTInfo info = ct->info;
402 CTSize size = ct->size;
403 switch (ctype_type(info)) {
404 case CT_NUM:
405 if ((info & CTF_BOOL)) {
406 ctype_preplit(ctr, "bool");
407 } else if ((info & CTF_FP)) {
408 if (size == sizeof(double)) ctype_preplit(ctr, "double");
409 else if (size == sizeof(float)) ctype_preplit(ctr, "float");
410 else ctype_preplit(ctr, "long double");
411 } else if (size == 1) {
412 if (!((info ^ CTF_UCHAR) & CTF_UNSIGNED)) ctype_preplit(ctr, "char");
413 else if (CTF_UCHAR) ctype_preplit(ctr, "signed char");
414 else ctype_preplit(ctr, "unsigned char");
415 } else if (size < 8) {
416 if (size == 4) ctype_preplit(ctr, "int");
417 else ctype_preplit(ctr, "short");
418 if ((info & CTF_UNSIGNED)) ctype_preplit(ctr, "unsigned");
419 } else {
420 ctype_preplit(ctr, "_t");
421 ctype_prepnum(ctr, size*8);
422 ctype_preplit(ctr, "int");
423 if ((info & CTF_UNSIGNED)) ctype_prepc(ctr, 'u');
424 }
425 ctype_prepqual(ctr, (qual|info));
426 return;
427 case CT_VOID:
428 ctype_preplit(ctr, "void");
429 ctype_prepqual(ctr, (qual|info));
430 return;
431 case CT_STRUCT:
432 ctype_preptype(ctr, ct, qual, (info & CTF_UNION) ? "union" : "struct");
433 return;
434 case CT_ENUM:
435 ctype_preptype(ctr, ct, qual, "enum");
436 return;
437 case CT_ATTRIB:
438 if (ctype_attrib(info) == CTA_QUAL) qual |= size;
439 break;
440 case CT_PTR:
441 if ((info & CTF_REF)) {
442 ctype_prepc(ctr, '&');
443 } else {
444 ctype_prepqual(ctr, (qual|info));
445 if (LJ_64 && size == 4) ctype_preplit(ctr, "__ptr32");
446 ctype_prepc(ctr, '*');
447 }
448 qual = 0;
449 ptrto = 1;
450 ctr->needsp = 1;
451 break;
452 case CT_ARRAY:
453 ctr->needsp = 1;
454 if (ctype_isrefarray(info)) {
455 if (ptrto) { ptrto = 0; ctype_prepc(ctr, '('); ctype_appc(ctr, ')'); }
456 ctype_appc(ctr, '[');
457 if (size != CTSIZE_INVALID) {
458 CTSize csize = ctype_child(ctr->cts, ct)->size;
459 ctype_appnum(ctr, csize ? size/csize : 0);
460 } else if ((info & CTF_VLA)) {
461 ctype_appc(ctr, '?');
462 }
463 ctype_appc(ctr, ']');
464 } else if ((info & CTF_COMPLEX)) {
465 if (size == 2*sizeof(float)) ctype_preplit(ctr, "float");
466 ctype_preplit(ctr, "complex");
467 return;
468 } else {
469 ctype_preplit(ctr, ")))");
470 ctype_prepnum(ctr, size);
471 ctype_preplit(ctr, "__attribute__((vector_size(");
472 }
473 break;
474 case CT_FUNC:
475 ctr->needsp = 1;
476 if (ptrto) { ptrto = 0; ctype_prepc(ctr, '('); ctype_appc(ctr, ')'); }
477 ctype_appc(ctr, '(');
478 ctype_appc(ctr, ')');
479 break;
480 default:
481 lua_assert(0);
482 break;
483 }
484 ct = ctype_get(ctr->cts, ctype_cid(info));
485 }
486}
487
488/* Return a printable representation of a C type. */
489GCstr *lj_ctype_repr(lua_State *L, CTypeID id, GCstr *name)
490{
491 global_State *g = G(L);
492 CTRepr ctr;
493 ctr.pb = ctr.pe = &ctr.buf[CTREPR_MAX/2];
494 ctr.cts = ctype_ctsG(g);
495 ctr.L = L;
496 ctr.ok = 1;
497 ctr.needsp = 0;
498 if (name) ctype_prepstr(&ctr, strdata(name), name->len);
499 ctype_repr(&ctr, id);
500 if (LJ_UNLIKELY(!ctr.ok)) return lj_str_newlit(L, "?");
501 return lj_str_new(L, ctr.pb, ctr.pe - ctr.pb);
502}
503
504/* Convert int64_t/uint64_t to string with 'LL' or 'ULL' suffix. */
505GCstr *lj_ctype_repr_int64(lua_State *L, uint64_t n, int isunsigned)
506{
507 char buf[1+20+3];
508 char *p = buf+sizeof(buf);
509 int sign = 0;
510 *--p = 'L'; *--p = 'L';
511 if (isunsigned) {
512 *--p = 'U';
513 } else if ((int64_t)n < 0) {
514 n = (uint64_t)-(int64_t)n;
515 sign = 1;
516 }
517 do { *--p = (char)('0' + n % 10); } while (n /= 10);
518 if (sign) *--p = '-';
519 return lj_str_new(L, p, (size_t)(buf+sizeof(buf)-p));
520}
521
522/* Convert complex to string with 'i' or 'I' suffix. */
523GCstr *lj_ctype_repr_complex(lua_State *L, void *sp, CTSize size)
524{
525 char buf[2*LUAI_MAXNUMBER2STR+2+1];
526 TValue re, im;
527 size_t len;
528 if (size == 2*sizeof(double)) {
529 re.n = *(double *)sp; im.n = ((double *)sp)[1];
530 } else {
531 re.n = (double)*(float *)sp; im.n = (double)((float *)sp)[1];
532 }
533 len = lj_str_bufnum(buf, &re);
534 if (!(im.u32.hi & 0x80000000u) || im.n != im.n) buf[len++] = '+';
535 len += lj_str_bufnum(buf+len, &im);
536 buf[len] = buf[len-1] >= 'a' ? 'I' : 'i';
537 return lj_str_new(L, buf, len+1);
538}
539
540/* -- C type state -------------------------------------------------------- */
541
542/* Initialize C type table and state. */
543void lj_ctype_init(lua_State *L)
544{
545 CTState *cts = lj_mem_newt(L, sizeof(CTState), CTState);
546 CType *ct = lj_mem_newvec(L, CTTYPETAB_MIN, CType);
547 const char *name = lj_ctype_typenames;
548 CTypeID id;
549 memset(cts, 0, sizeof(CTState));
550 cts->tab = ct;
551 cts->sizetab = CTTYPETAB_MIN;
552 cts->top = CTTYPEINFO_NUM;
553 cts->L = NULL;
554 cts->g = G(L);
555 for (id = 0; id < CTTYPEINFO_NUM; id++, ct++) {
556 CTInfo info = lj_ctype_typeinfo[id];
557 ct->size = (CTSize)((int32_t)(info << 16) >> 26);
558 ct->info = info & 0xffff03ffu;
559 if (ctype_type(info) == CT_KW || ctype_istypedef(info)) {
560 size_t len = strlen(name);
561 GCstr *str = lj_str_new(L, name, len);
562 ctype_setname(ct, str);
563 name += len+1;
564 lj_ctype_addname(cts, ct, id);
565 } else {
566 setgcrefnull(ct->name);
567 if (!ctype_isenum(info)) ctype_addtype(cts, ct, id);
568 }
569 }
570 setmref(G(L)->ctype_state, cts);
571}
572
573/* Free C type table and state. */
574void lj_ctype_freestate(global_State *g)
575{
576 CTState *cts = ctype_ctsG(g);
577 if (cts) {
578 lj_mem_freevec(g, cts->tab, cts->sizetab, CType);
579 lj_mem_freet(g, cts);
580 }
581}
582
583#endif