tccgen.c: Give error if statement expression found when const wanted.
[tinycc.git] / tccgen.c
blobb085c650394225da97ce651a7a2b011590b3e6b6
1 /*
2 * TCC - Tiny C Compiler
3 *
4 * Copyright (c) 2001-2004 Fabrice Bellard
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2 of the License, or (at your option) any later version.
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
21 #include "tcc.h"
23 /********************************************************/
24 /* global variables */
26 /* loc : local variable index
27 ind : output code index
28 rsym: return symbol
29 anon_sym: anonymous symbol index
31 ST_DATA int rsym, anon_sym, ind, loc;
33 ST_DATA Section *text_section, *data_section, *bss_section; /* predefined sections */
34 ST_DATA Section *cur_text_section; /* current section where function code is generated */
35 #ifdef CONFIG_TCC_ASM
36 ST_DATA Section *last_text_section; /* to handle .previous asm directive */
37 #endif
38 #ifdef CONFIG_TCC_BCHECK
39 /* bound check related sections */
40 ST_DATA Section *bounds_section; /* contains global data bound description */
41 ST_DATA Section *lbounds_section; /* contains local data bound description */
42 #endif
43 /* symbol sections */
44 ST_DATA Section *symtab_section, *strtab_section;
45 /* debug sections */
46 ST_DATA Section *stab_section, *stabstr_section;
47 ST_DATA Sym *sym_free_first;
48 ST_DATA void **sym_pools;
49 ST_DATA int nb_sym_pools;
51 ST_DATA Sym *global_stack;
52 ST_DATA Sym *local_stack;
53 ST_DATA Sym *scope_stack_bottom;
54 ST_DATA Sym *define_stack;
55 ST_DATA Sym *global_label_stack;
56 ST_DATA Sym *local_label_stack;
58 ST_DATA int vlas_in_scope; /* number of VLAs that are currently in scope */
59 ST_DATA int vla_sp_root_loc; /* vla_sp_loc for SP before any VLAs were pushed */
60 ST_DATA int vla_sp_loc; /* Pointer to variable holding location to store stack pointer on the stack when modifying stack pointer */
62 ST_DATA SValue __vstack[1+VSTACK_SIZE], *vtop, *pvtop;
64 ST_DATA int const_wanted; /* true if constant wanted */
65 ST_DATA int nocode_wanted; /* true if no code generation wanted for an expression */
66 ST_DATA int global_expr; /* true if compound literals must be allocated globally (used during initializers parsing */
67 ST_DATA CType func_vt; /* current function return type (used by return instruction) */
68 ST_DATA int func_var; /* true if current function is variadic (used by return instruction) */
69 ST_DATA int func_vc;
70 ST_DATA int last_line_num, last_ind, func_ind; /* debug last line number and pc */
71 ST_DATA const char *funcname;
73 ST_DATA CType char_pointer_type, func_old_type, int_type, size_type;
75 /* ------------------------------------------------------------------------- */
76 static void gen_cast(CType *type);
77 static inline CType *pointed_type(CType *type);
78 static int is_compatible_types(CType *type1, CType *type2);
79 static int parse_btype(CType *type, AttributeDef *ad);
80 static void type_decl(CType *type, AttributeDef *ad, int *v, int td);
81 static void parse_expr_type(CType *type);
82 static void decl_initializer(CType *type, Section *sec, unsigned long c, int first, int size_only);
83 static void block(int *bsym, int *csym, int *case_sym, int *def_sym, int case_reg, int is_expr);
84 static void decl_initializer_alloc(CType *type, AttributeDef *ad, int r, int has_init, int v, int scope);
85 static int decl0(int l, int is_for_loop_init);
86 static void expr_eq(void);
87 static void unary_type(CType *type);
88 static void vla_runtime_type_size(CType *type, int *a);
89 static void vla_sp_restore(void);
90 static void vla_sp_restore_root(void);
91 static int is_compatible_parameter_types(CType *type1, CType *type2);
92 static void expr_type(CType *type);
93 ST_FUNC void vpush64(int ty, unsigned long long v);
94 ST_FUNC void vpush(CType *type);
95 ST_FUNC int gvtst(int inv, int t);
96 ST_FUNC int is_btype_size(int bt);
98 ST_INLN int is_float(int t)
100 int bt;
101 bt = t & VT_BTYPE;
102 return bt == VT_LDOUBLE || bt == VT_DOUBLE || bt == VT_FLOAT || bt == VT_QFLOAT;
105 /* we use our own 'finite' function to avoid potential problems with
106 non standard math libs */
107 /* XXX: endianness dependent */
108 ST_FUNC int ieee_finite(double d)
110 int p[4];
111 memcpy(p, &d, sizeof(double));
112 return ((unsigned)((p[1] | 0x800fffff) + 1)) >> 31;
115 ST_FUNC void test_lvalue(void)
117 if (!(vtop->r & VT_LVAL))
118 expect("lvalue");
121 ST_FUNC void check_vstack(void)
123 if (pvtop != vtop)
124 tcc_error("internal compiler error: vstack leak (%d)", vtop - pvtop);
127 /* ------------------------------------------------------------------------- */
128 /* symbol allocator */
129 static Sym *__sym_malloc(void)
131 Sym *sym_pool, *sym, *last_sym;
132 int i;
134 sym_pool = tcc_malloc(SYM_POOL_NB * sizeof(Sym));
135 dynarray_add(&sym_pools, &nb_sym_pools, sym_pool);
137 last_sym = sym_free_first;
138 sym = sym_pool;
139 for(i = 0; i < SYM_POOL_NB; i++) {
140 sym->next = last_sym;
141 last_sym = sym;
142 sym++;
144 sym_free_first = last_sym;
145 return last_sym;
148 static inline Sym *sym_malloc(void)
150 Sym *sym;
151 sym = sym_free_first;
152 if (!sym)
153 sym = __sym_malloc();
154 sym_free_first = sym->next;
155 return sym;
158 ST_INLN void sym_free(Sym *sym)
160 sym->next = sym_free_first;
161 sym_free_first = sym;
164 /* push, without hashing */
165 ST_FUNC Sym *sym_push2(Sym **ps, int v, int t, long c)
167 Sym *s;
168 if (ps == &local_stack) {
169 for (s = *ps; s && s != scope_stack_bottom; s = s->prev)
170 if (!(v & SYM_FIELD) && (v & ~SYM_STRUCT) < SYM_FIRST_ANOM && s->v == v)
171 tcc_error("incompatible types for redefinition of '%s'",
172 get_tok_str(v, NULL));
174 s = sym_malloc();
175 s->asm_label = 0;
176 s->v = v;
177 s->type.t = t;
178 s->type.ref = NULL;
179 #ifdef _WIN64
180 s->d = NULL;
181 #endif
182 s->c = c;
183 s->next = NULL;
184 /* add in stack */
185 s->prev = *ps;
186 *ps = s;
187 return s;
190 /* find a symbol and return its associated structure. 's' is the top
191 of the symbol stack */
192 ST_FUNC Sym *sym_find2(Sym *s, int v)
194 while (s) {
195 if (s->v == v)
196 return s;
197 else if (s->v == -1)
198 return NULL;
199 s = s->prev;
201 return NULL;
204 /* structure lookup */
205 ST_INLN Sym *struct_find(int v)
207 v -= TOK_IDENT;
208 if ((unsigned)v >= (unsigned)(tok_ident - TOK_IDENT))
209 return NULL;
210 return table_ident[v]->sym_struct;
213 /* find an identifier */
214 ST_INLN Sym *sym_find(int v)
216 v -= TOK_IDENT;
217 if ((unsigned)v >= (unsigned)(tok_ident - TOK_IDENT))
218 return NULL;
219 return table_ident[v]->sym_identifier;
222 /* push a given symbol on the symbol stack */
223 ST_FUNC Sym *sym_push(int v, CType *type, int r, int c)
225 Sym *s, **ps;
226 TokenSym *ts;
228 if (local_stack)
229 ps = &local_stack;
230 else
231 ps = &global_stack;
232 s = sym_push2(ps, v, type->t, c);
233 s->type.ref = type->ref;
234 s->r = r;
235 /* don't record fields or anonymous symbols */
236 /* XXX: simplify */
237 if (!(v & SYM_FIELD) && (v & ~SYM_STRUCT) < SYM_FIRST_ANOM) {
238 /* record symbol in token array */
239 ts = table_ident[(v & ~SYM_STRUCT) - TOK_IDENT];
240 if (v & SYM_STRUCT)
241 ps = &ts->sym_struct;
242 else
243 ps = &ts->sym_identifier;
244 s->prev_tok = *ps;
245 *ps = s;
247 return s;
250 /* push a global identifier */
251 ST_FUNC Sym *global_identifier_push(int v, int t, int c)
253 Sym *s, **ps;
254 s = sym_push2(&global_stack, v, t, c);
255 /* don't record anonymous symbol */
256 if (v < SYM_FIRST_ANOM) {
257 ps = &table_ident[v - TOK_IDENT]->sym_identifier;
258 /* modify the top most local identifier, so that
259 sym_identifier will point to 's' when popped */
260 while (*ps != NULL)
261 ps = &(*ps)->prev_tok;
262 s->prev_tok = NULL;
263 *ps = s;
265 return s;
268 /* pop symbols until top reaches 'b' */
269 ST_FUNC void sym_pop(Sym **ptop, Sym *b)
271 Sym *s, *ss, **ps;
272 TokenSym *ts;
273 int v;
275 s = *ptop;
276 while(s != b) {
277 ss = s->prev;
278 v = s->v;
279 /* remove symbol in token array */
280 /* XXX: simplify */
281 if (!(v & SYM_FIELD) && (v & ~SYM_STRUCT) < SYM_FIRST_ANOM) {
282 ts = table_ident[(v & ~SYM_STRUCT) - TOK_IDENT];
283 if (v & SYM_STRUCT)
284 ps = &ts->sym_struct;
285 else
286 ps = &ts->sym_identifier;
287 *ps = s->prev_tok;
289 sym_free(s);
290 s = ss;
292 *ptop = b;
295 static void weaken_symbol(Sym *sym)
297 sym->type.t |= VT_WEAK;
298 if (sym->c > 0) {
299 int esym_type;
300 ElfW(Sym) *esym;
302 esym = &((ElfW(Sym) *)symtab_section->data)[sym->c];
303 esym_type = ELFW(ST_TYPE)(esym->st_info);
304 esym->st_info = ELFW(ST_INFO)(STB_WEAK, esym_type);
308 static void apply_visibility(Sym *sym, CType *type)
310 int vis = sym->type.t & VT_VIS_MASK;
311 int vis2 = type->t & VT_VIS_MASK;
312 if (vis == (STV_DEFAULT << VT_VIS_SHIFT))
313 vis = vis2;
314 else if (vis2 == (STV_DEFAULT << VT_VIS_SHIFT))
316 else
317 vis = (vis < vis2) ? vis : vis2;
318 sym->type.t &= ~VT_VIS_MASK;
319 sym->type.t |= vis;
321 if (sym->c > 0) {
322 ElfW(Sym) *esym;
324 esym = &((ElfW(Sym) *)symtab_section->data)[sym->c];
325 vis >>= VT_VIS_SHIFT;
326 esym->st_other = (esym->st_other & ~ELFW(ST_VISIBILITY)(-1)) | vis;
330 /* ------------------------------------------------------------------------- */
332 ST_FUNC void swap(int *p, int *q)
334 int t;
335 t = *p;
336 *p = *q;
337 *q = t;
340 static void vsetc(CType *type, int r, CValue *vc)
342 int v;
344 if (vtop >= vstack + (VSTACK_SIZE - 1))
345 tcc_error("memory full (vstack)");
346 /* cannot let cpu flags if other instruction are generated. Also
347 avoid leaving VT_JMP anywhere except on the top of the stack
348 because it would complicate the code generator. */
349 if (vtop >= vstack) {
350 v = vtop->r & VT_VALMASK;
351 if (v == VT_CMP || (v & ~1) == VT_JMP)
352 gv(RC_INT);
354 vtop++;
355 vtop->type = *type;
356 vtop->r = r;
357 vtop->r2 = VT_CONST;
358 vtop->c = *vc;
361 /* push constant of type "type" with useless value */
362 ST_FUNC void vpush(CType *type)
364 CValue cval;
365 vsetc(type, VT_CONST, &cval);
368 /* push integer constant */
369 ST_FUNC void vpushi(int v)
371 CValue cval;
372 cval.i = v;
373 vsetc(&int_type, VT_CONST, &cval);
376 /* push a pointer sized constant */
377 static void vpushs(addr_t v)
379 CValue cval;
380 cval.i = v;
381 vsetc(&size_type, VT_CONST, &cval);
384 /* push arbitrary 64bit constant */
385 ST_FUNC void vpush64(int ty, unsigned long long v)
387 CValue cval;
388 CType ctype;
389 ctype.t = ty;
390 ctype.ref = NULL;
391 cval.i = v;
392 vsetc(&ctype, VT_CONST, &cval);
395 /* push long long constant */
396 static inline void vpushll(long long v)
398 vpush64(VT_LLONG, v);
401 /* push a symbol value of TYPE */
402 static inline void vpushsym(CType *type, Sym *sym)
404 CValue cval;
405 cval.i = 0;
406 vsetc(type, VT_CONST | VT_SYM, &cval);
407 vtop->sym = sym;
410 /* Return a static symbol pointing to a section */
411 ST_FUNC Sym *get_sym_ref(CType *type, Section *sec, unsigned long offset, unsigned long size)
413 int v;
414 Sym *sym;
416 v = anon_sym++;
417 sym = global_identifier_push(v, type->t | VT_STATIC, 0);
418 sym->type.ref = type->ref;
419 sym->r = VT_CONST | VT_SYM;
420 put_extern_sym(sym, sec, offset, size);
421 return sym;
424 /* push a reference to a section offset by adding a dummy symbol */
425 static void vpush_ref(CType *type, Section *sec, unsigned long offset, unsigned long size)
427 vpushsym(type, get_sym_ref(type, sec, offset, size));
430 /* define a new external reference to a symbol 'v' of type 'u' */
431 ST_FUNC Sym *external_global_sym(int v, CType *type, int r)
433 Sym *s;
435 s = sym_find(v);
436 if (!s) {
437 /* push forward reference */
438 s = global_identifier_push(v, type->t | VT_EXTERN, 0);
439 s->type.ref = type->ref;
440 s->r = r | VT_CONST | VT_SYM;
442 return s;
445 /* define a new external reference to a symbol 'v' */
446 static Sym *external_sym(int v, CType *type, int r)
448 Sym *s;
450 s = sym_find(v);
451 if (!s) {
452 /* push forward reference */
453 s = sym_push(v, type, r | VT_CONST | VT_SYM, 0);
454 s->type.t |= VT_EXTERN;
455 } else if (s->type.ref == func_old_type.ref) {
456 s->type.ref = type->ref;
457 s->r = r | VT_CONST | VT_SYM;
458 s->type.t |= VT_EXTERN;
459 } else if (!is_compatible_types(&s->type, type)) {
460 tcc_error("incompatible types for redefinition of '%s'",
461 get_tok_str(v, NULL));
463 /* Merge some storage attributes. */
464 if (type->t & VT_WEAK)
465 weaken_symbol(s);
467 if (type->t & VT_VIS_MASK)
468 apply_visibility(s, type);
470 return s;
473 /* push a reference to global symbol v */
474 ST_FUNC void vpush_global_sym(CType *type, int v)
476 vpushsym(type, external_global_sym(v, type, 0));
479 ST_FUNC void vset(CType *type, int r, int v)
481 CValue cval;
483 cval.i = v;
484 vsetc(type, r, &cval);
487 static void vseti(int r, int v)
489 CType type;
490 type.t = VT_INT;
491 type.ref = 0;
492 vset(&type, r, v);
495 ST_FUNC void vswap(void)
497 SValue tmp;
498 /* cannot let cpu flags if other instruction are generated. Also
499 avoid leaving VT_JMP anywhere except on the top of the stack
500 because it would complicate the code generator. */
501 if (vtop >= vstack) {
502 int v = vtop->r & VT_VALMASK;
503 if (v == VT_CMP || (v & ~1) == VT_JMP)
504 gv(RC_INT);
506 tmp = vtop[0];
507 vtop[0] = vtop[-1];
508 vtop[-1] = tmp;
510 /* XXX: +2% overall speed possible with optimized memswap
512 * memswap(&vtop[0], &vtop[1], sizeof *vtop);
516 ST_FUNC void vpushv(SValue *v)
518 if (vtop >= vstack + (VSTACK_SIZE - 1))
519 tcc_error("memory full (vstack)");
520 vtop++;
521 *vtop = *v;
524 static void vdup(void)
526 vpushv(vtop);
529 /* save r to the memory stack, and mark it as being free */
530 ST_FUNC void save_reg(int r)
532 int l, saved, size, align;
533 SValue *p, sv;
534 CType *type;
536 /* modify all stack values */
537 saved = 0;
538 l = 0;
539 for(p=vstack;p<=vtop;p++) {
540 if ((p->r & VT_VALMASK) == r ||
541 ((p->type.t & VT_BTYPE) == VT_LLONG && (p->r2 & VT_VALMASK) == r)) {
542 /* must save value on stack if not already done */
543 if (!saved) {
544 /* NOTE: must reload 'r' because r might be equal to r2 */
545 r = p->r & VT_VALMASK;
546 /* store register in the stack */
547 type = &p->type;
548 if ((p->r & VT_LVAL) ||
549 (!is_float(type->t) && (type->t & VT_BTYPE) != VT_LLONG))
550 #if defined(TCC_TARGET_ARM64) || defined(TCC_TARGET_X86_64)
551 type = &char_pointer_type;
552 #else
553 type = &int_type;
554 #endif
555 size = type_size(type, &align);
556 loc = (loc - size) & -align;
557 sv.type.t = type->t;
558 sv.r = VT_LOCAL | VT_LVAL;
559 sv.c.i = loc;
560 store(r, &sv);
561 #if defined(TCC_TARGET_I386) || defined(TCC_TARGET_X86_64)
562 /* x86 specific: need to pop fp register ST0 if saved */
563 if (r == TREG_ST0) {
564 o(0xd8dd); /* fstp %st(0) */
566 #endif
567 #if !defined(TCC_TARGET_ARM64) && !defined(TCC_TARGET_X86_64)
568 /* special long long case */
569 if ((type->t & VT_BTYPE) == VT_LLONG) {
570 sv.c.i += 4;
571 store(p->r2, &sv);
573 #endif
574 l = loc;
575 saved = 1;
577 /* mark that stack entry as being saved on the stack */
578 if (p->r & VT_LVAL) {
579 /* also clear the bounded flag because the
580 relocation address of the function was stored in
581 p->c.i */
582 p->r = (p->r & ~(VT_VALMASK | VT_BOUNDED)) | VT_LLOCAL;
583 } else {
584 p->r = lvalue_type(p->type.t) | VT_LOCAL;
586 p->r2 = VT_CONST;
587 p->c.i = l;
592 #ifdef TCC_TARGET_ARM
593 /* find a register of class 'rc2' with at most one reference on stack.
594 * If none, call get_reg(rc) */
595 ST_FUNC int get_reg_ex(int rc, int rc2)
597 int r;
598 SValue *p;
600 for(r=0;r<NB_REGS;r++) {
601 if (reg_classes[r] & rc2) {
602 int n;
603 n=0;
604 for(p = vstack; p <= vtop; p++) {
605 if ((p->r & VT_VALMASK) == r ||
606 (p->r2 & VT_VALMASK) == r)
607 n++;
609 if (n <= 1)
610 return r;
613 return get_reg(rc);
615 #endif
617 /* find a free register of class 'rc'. If none, save one register */
618 ST_FUNC int get_reg(int rc)
620 int r;
621 SValue *p;
623 /* find a free register */
624 for(r=0;r<NB_REGS;r++) {
625 if (reg_classes[r] & rc) {
626 for(p=vstack;p<=vtop;p++) {
627 if ((p->r & VT_VALMASK) == r ||
628 (p->r2 & VT_VALMASK) == r)
629 goto notfound;
631 return r;
633 notfound: ;
636 /* no register left : free the first one on the stack (VERY
637 IMPORTANT to start from the bottom to ensure that we don't
638 spill registers used in gen_opi()) */
639 for(p=vstack;p<=vtop;p++) {
640 /* look at second register (if long long) */
641 r = p->r2 & VT_VALMASK;
642 if (r < VT_CONST && (reg_classes[r] & rc))
643 goto save_found;
644 r = p->r & VT_VALMASK;
645 if (r < VT_CONST && (reg_classes[r] & rc)) {
646 save_found:
647 save_reg(r);
648 return r;
651 /* Should never comes here */
652 return -1;
655 /* save registers up to (vtop - n) stack entry */
656 ST_FUNC void save_regs(int n)
658 int r;
659 SValue *p, *p1;
660 p1 = vtop - n;
661 for(p = vstack;p <= p1; p++) {
662 r = p->r & VT_VALMASK;
663 if (r < VT_CONST) {
664 save_reg(r);
669 /* move register 's' (of type 't') to 'r', and flush previous value of r to memory
670 if needed */
671 static void move_reg(int r, int s, int t)
673 SValue sv;
675 if (r != s) {
676 save_reg(r);
677 sv.type.t = t;
678 sv.type.ref = NULL;
679 sv.r = s;
680 sv.c.i = 0;
681 load(r, &sv);
685 /* get address of vtop (vtop MUST BE an lvalue) */
686 ST_FUNC void gaddrof(void)
688 if (vtop->r & VT_REF && !nocode_wanted)
689 gv(RC_INT);
690 vtop->r &= ~VT_LVAL;
691 /* tricky: if saved lvalue, then we can go back to lvalue */
692 if ((vtop->r & VT_VALMASK) == VT_LLOCAL)
693 vtop->r = (vtop->r & ~(VT_VALMASK | VT_LVAL_TYPE)) | VT_LOCAL | VT_LVAL;
698 #ifdef CONFIG_TCC_BCHECK
699 /* generate lvalue bound code */
700 static void gbound(void)
702 int lval_type;
703 CType type1;
705 vtop->r &= ~VT_MUSTBOUND;
706 /* if lvalue, then use checking code before dereferencing */
707 if (vtop->r & VT_LVAL) {
708 /* if not VT_BOUNDED value, then make one */
709 if (!(vtop->r & VT_BOUNDED)) {
710 lval_type = vtop->r & (VT_LVAL_TYPE | VT_LVAL);
711 /* must save type because we must set it to int to get pointer */
712 type1 = vtop->type;
713 vtop->type.t = VT_PTR;
714 gaddrof();
715 vpushi(0);
716 gen_bounded_ptr_add();
717 vtop->r |= lval_type;
718 vtop->type = type1;
720 /* then check for dereferencing */
721 gen_bounded_ptr_deref();
724 #endif
726 /* store vtop a register belonging to class 'rc'. lvalues are
727 converted to values. Cannot be used if cannot be converted to
728 register value (such as structures). */
729 ST_FUNC int gv(int rc)
731 int r, bit_pos, bit_size, size, align, i;
732 int rc2;
734 /* NOTE: get_reg can modify vstack[] */
735 if (vtop->type.t & VT_BITFIELD) {
736 CType type;
737 int bits = 32;
738 bit_pos = (vtop->type.t >> VT_STRUCT_SHIFT) & 0x3f;
739 bit_size = (vtop->type.t >> (VT_STRUCT_SHIFT + 6)) & 0x3f;
740 /* remove bit field info to avoid loops */
741 vtop->type.t &= ~VT_BITFIELD & ((1 << VT_STRUCT_SHIFT) - 1);
742 /* cast to int to propagate signedness in following ops */
743 if ((vtop->type.t & VT_BTYPE) == VT_LLONG) {
744 type.t = VT_LLONG;
745 bits = 64;
746 } else
747 type.t = VT_INT;
748 if((vtop->type.t & VT_UNSIGNED) ||
749 (vtop->type.t & VT_BTYPE) == VT_BOOL)
750 type.t |= VT_UNSIGNED;
751 gen_cast(&type);
752 /* generate shifts */
753 vpushi(bits - (bit_pos + bit_size));
754 gen_op(TOK_SHL);
755 vpushi(bits - bit_size);
756 /* NOTE: transformed to SHR if unsigned */
757 gen_op(TOK_SAR);
758 r = gv(rc);
759 } else {
760 if (is_float(vtop->type.t) &&
761 (vtop->r & (VT_VALMASK | VT_LVAL)) == VT_CONST) {
762 Sym *sym;
763 int *ptr;
764 unsigned long offset;
765 #if defined(TCC_TARGET_ARM) && !defined(TCC_ARM_VFP)
766 CValue check;
767 #endif
769 /* XXX: unify with initializers handling ? */
770 /* CPUs usually cannot use float constants, so we store them
771 generically in data segment */
772 size = type_size(&vtop->type, &align);
773 offset = (data_section->data_offset + align - 1) & -align;
774 data_section->data_offset = offset;
775 /* XXX: not portable yet */
776 #if defined(__i386__) || defined(__x86_64__)
777 /* Zero pad x87 tenbyte long doubles */
778 if (size == LDOUBLE_SIZE) {
779 vtop->c.tab[2] &= 0xffff;
780 #if LDOUBLE_SIZE == 16
781 vtop->c.tab[3] = 0;
782 #endif
784 #endif
785 ptr = section_ptr_add(data_section, size);
786 size = size >> 2;
787 #if defined(TCC_TARGET_ARM) && !defined(TCC_ARM_VFP)
788 check.d = 1;
789 if(check.tab[0])
790 for(i=0;i<size;i++)
791 ptr[i] = vtop->c.tab[size-1-i];
792 else
793 #endif
794 for(i=0;i<size;i++)
795 ptr[i] = vtop->c.tab[i];
796 sym = get_sym_ref(&vtop->type, data_section, offset, size << 2);
797 vtop->r |= VT_LVAL | VT_SYM;
798 vtop->sym = sym;
799 vtop->c.i = 0;
801 #ifdef CONFIG_TCC_BCHECK
802 if (vtop->r & VT_MUSTBOUND)
803 gbound();
804 #endif
806 r = vtop->r & VT_VALMASK;
807 rc2 = (rc & RC_FLOAT) ? RC_FLOAT : RC_INT;
808 #ifndef TCC_TARGET_ARM64
809 if (rc == RC_IRET)
810 rc2 = RC_LRET;
811 #ifdef TCC_TARGET_X86_64
812 else if (rc == RC_FRET)
813 rc2 = RC_QRET;
814 #endif
815 #endif
817 /* need to reload if:
818 - constant
819 - lvalue (need to dereference pointer)
820 - already a register, but not in the right class */
821 if (r >= VT_CONST
822 || (vtop->r & VT_LVAL)
823 || !(reg_classes[r] & rc)
824 #if defined(TCC_TARGET_ARM64) || defined(TCC_TARGET_X86_64)
825 || ((vtop->type.t & VT_BTYPE) == VT_QLONG && !(reg_classes[vtop->r2] & rc2))
826 || ((vtop->type.t & VT_BTYPE) == VT_QFLOAT && !(reg_classes[vtop->r2] & rc2))
827 #else
828 || ((vtop->type.t & VT_BTYPE) == VT_LLONG && !(reg_classes[vtop->r2] & rc2))
829 #endif
832 r = get_reg(rc);
833 #if defined(TCC_TARGET_ARM64) || defined(TCC_TARGET_X86_64)
834 if (((vtop->type.t & VT_BTYPE) == VT_QLONG) || ((vtop->type.t & VT_BTYPE) == VT_QFLOAT)) {
835 int addr_type = VT_LLONG, load_size = 8, load_type = ((vtop->type.t & VT_BTYPE) == VT_QLONG) ? VT_LLONG : VT_DOUBLE;
836 #else
837 if ((vtop->type.t & VT_BTYPE) == VT_LLONG) {
838 int addr_type = VT_INT, load_size = 4, load_type = VT_INT;
839 unsigned long long ll;
840 #endif
841 int r2, original_type;
842 original_type = vtop->type.t;
843 /* two register type load : expand to two words
844 temporarily */
845 #if !defined(TCC_TARGET_ARM64) && !defined(TCC_TARGET_X86_64)
846 if ((vtop->r & (VT_VALMASK | VT_LVAL)) == VT_CONST) {
847 /* load constant */
848 ll = vtop->c.i;
849 vtop->c.i = ll; /* first word */
850 load(r, vtop);
851 vtop->r = r; /* save register value */
852 vpushi(ll >> 32); /* second word */
853 } else
854 #endif
855 if (r >= VT_CONST || /* XXX: test to VT_CONST incorrect ? */
856 (vtop->r & VT_LVAL)) {
857 /* We do not want to modifier the long long
858 pointer here, so the safest (and less
859 efficient) is to save all the other registers
860 in the stack. XXX: totally inefficient. */
861 save_regs(1);
862 /* load from memory */
863 vtop->type.t = load_type;
864 load(r, vtop);
865 vdup();
866 vtop[-1].r = r; /* save register value */
867 /* increment pointer to get second word */
868 vtop->type.t = addr_type;
869 gaddrof();
870 vpushi(load_size);
871 gen_op('+');
872 vtop->r |= VT_LVAL;
873 vtop->type.t = load_type;
874 } else {
875 /* move registers */
876 load(r, vtop);
877 vdup();
878 vtop[-1].r = r; /* save register value */
879 vtop->r = vtop[-1].r2;
881 /* Allocate second register. Here we rely on the fact that
882 get_reg() tries first to free r2 of an SValue. */
883 r2 = get_reg(rc2);
884 load(r2, vtop);
885 vpop();
886 /* write second register */
887 vtop->r2 = r2;
888 vtop->type.t = original_type;
889 } else if ((vtop->r & VT_LVAL) && !is_float(vtop->type.t)) {
890 int t1, t;
891 /* lvalue of scalar type : need to use lvalue type
892 because of possible cast */
893 t = vtop->type.t;
894 t1 = t;
895 /* compute memory access type */
896 if (vtop->r & VT_REF)
897 #if defined(TCC_TARGET_ARM64) || defined(TCC_TARGET_X86_64)
898 t = VT_PTR;
899 #else
900 t = VT_INT;
901 #endif
902 else if (vtop->r & VT_LVAL_BYTE)
903 t = VT_BYTE;
904 else if (vtop->r & VT_LVAL_SHORT)
905 t = VT_SHORT;
906 if (vtop->r & VT_LVAL_UNSIGNED)
907 t |= VT_UNSIGNED;
908 vtop->type.t = t;
909 load(r, vtop);
910 /* restore wanted type */
911 vtop->type.t = t1;
912 } else {
913 /* one register type load */
914 load(r, vtop);
917 vtop->r = r;
918 #ifdef TCC_TARGET_C67
919 /* uses register pairs for doubles */
920 if ((vtop->type.t & VT_BTYPE) == VT_DOUBLE)
921 vtop->r2 = r+1;
922 #endif
924 return r;
927 /* generate vtop[-1] and vtop[0] in resp. classes rc1 and rc2 */
928 ST_FUNC void gv2(int rc1, int rc2)
930 int v;
932 /* generate more generic register first. But VT_JMP or VT_CMP
933 values must be generated first in all cases to avoid possible
934 reload errors */
935 v = vtop[0].r & VT_VALMASK;
936 if (v != VT_CMP && (v & ~1) != VT_JMP && rc1 <= rc2) {
937 vswap();
938 gv(rc1);
939 vswap();
940 gv(rc2);
941 /* test if reload is needed for first register */
942 if ((vtop[-1].r & VT_VALMASK) >= VT_CONST) {
943 vswap();
944 gv(rc1);
945 vswap();
947 } else {
948 gv(rc2);
949 vswap();
950 gv(rc1);
951 vswap();
952 /* test if reload is needed for first register */
953 if ((vtop[0].r & VT_VALMASK) >= VT_CONST) {
954 gv(rc2);
959 #ifndef TCC_TARGET_ARM64
960 /* wrapper around RC_FRET to return a register by type */
961 static int rc_fret(int t)
963 #ifdef TCC_TARGET_X86_64
964 if (t == VT_LDOUBLE) {
965 return RC_ST0;
967 #endif
968 return RC_FRET;
970 #endif
972 /* wrapper around REG_FRET to return a register by type */
973 static int reg_fret(int t)
975 #ifdef TCC_TARGET_X86_64
976 if (t == VT_LDOUBLE) {
977 return TREG_ST0;
979 #endif
980 return REG_FRET;
983 /* expand long long on stack in two int registers */
984 static void lexpand(void)
986 int u;
988 u = vtop->type.t & (VT_DEFSIGN | VT_UNSIGNED);
989 gv(RC_INT);
990 vdup();
991 vtop[0].r = vtop[-1].r2;
992 vtop[0].r2 = VT_CONST;
993 vtop[-1].r2 = VT_CONST;
994 vtop[0].type.t = VT_INT | u;
995 vtop[-1].type.t = VT_INT | u;
998 #ifdef TCC_TARGET_ARM
999 /* expand long long on stack */
1000 ST_FUNC void lexpand_nr(void)
1002 int u,v;
1004 u = vtop->type.t & (VT_DEFSIGN | VT_UNSIGNED);
1005 vdup();
1006 vtop->r2 = VT_CONST;
1007 vtop->type.t = VT_INT | u;
1008 v=vtop[-1].r & (VT_VALMASK | VT_LVAL);
1009 if (v == VT_CONST) {
1010 vtop[-1].c.i = vtop->c.i;
1011 vtop->c.i = vtop->c.i >> 32;
1012 vtop->r = VT_CONST;
1013 } else if (v == (VT_LVAL|VT_CONST) || v == (VT_LVAL|VT_LOCAL)) {
1014 vtop->c.i += 4;
1015 vtop->r = vtop[-1].r;
1016 } else if (v > VT_CONST) {
1017 vtop--;
1018 lexpand();
1019 } else
1020 vtop->r = vtop[-1].r2;
1021 vtop[-1].r2 = VT_CONST;
1022 vtop[-1].type.t = VT_INT | u;
1024 #endif
1026 /* build a long long from two ints */
1027 static void lbuild(int t)
1029 gv2(RC_INT, RC_INT);
1030 vtop[-1].r2 = vtop[0].r;
1031 vtop[-1].type.t = t;
1032 vpop();
1035 /* rotate n first stack elements to the bottom
1036 I1 ... In -> I2 ... In I1 [top is right]
1038 ST_FUNC void vrotb(int n)
1040 int i;
1041 SValue tmp;
1043 tmp = vtop[-n + 1];
1044 for(i=-n+1;i!=0;i++)
1045 vtop[i] = vtop[i+1];
1046 vtop[0] = tmp;
1049 /* rotate the n elements before entry e towards the top
1050 I1 ... In ... -> In I1 ... I(n-1) ... [top is right]
1052 ST_FUNC void vrote(SValue *e, int n)
1054 int i;
1055 SValue tmp;
1057 tmp = *e;
1058 for(i = 0;i < n - 1; i++)
1059 e[-i] = e[-i - 1];
1060 e[-n + 1] = tmp;
1063 /* rotate n first stack elements to the top
1064 I1 ... In -> In I1 ... I(n-1) [top is right]
1066 ST_FUNC void vrott(int n)
1068 vrote(vtop, n);
1071 /* pop stack value */
1072 ST_FUNC void vpop(void)
1074 int v;
1075 v = vtop->r & VT_VALMASK;
1076 #if defined(TCC_TARGET_I386) || defined(TCC_TARGET_X86_64)
1077 /* for x86, we need to pop the FP stack */
1078 if (v == TREG_ST0 && !nocode_wanted) {
1079 o(0xd8dd); /* fstp %st(0) */
1080 } else
1081 #endif
1082 if (v == VT_JMP || v == VT_JMPI) {
1083 /* need to put correct jump if && or || without test */
1084 gsym(vtop->c.i);
1086 vtop--;
1089 /* convert stack entry to register and duplicate its value in another
1090 register */
1091 static void gv_dup(void)
1093 int rc, t, r, r1;
1094 SValue sv;
1096 t = vtop->type.t;
1097 if ((t & VT_BTYPE) == VT_LLONG) {
1098 lexpand();
1099 gv_dup();
1100 vswap();
1101 vrotb(3);
1102 gv_dup();
1103 vrotb(4);
1104 /* stack: H L L1 H1 */
1105 lbuild(t);
1106 vrotb(3);
1107 vrotb(3);
1108 vswap();
1109 lbuild(t);
1110 vswap();
1111 } else {
1112 /* duplicate value */
1113 rc = RC_INT;
1114 sv.type.t = VT_INT;
1115 if (is_float(t)) {
1116 rc = RC_FLOAT;
1117 #ifdef TCC_TARGET_X86_64
1118 if ((t & VT_BTYPE) == VT_LDOUBLE) {
1119 rc = RC_ST0;
1121 #endif
1122 sv.type.t = t;
1124 r = gv(rc);
1125 r1 = get_reg(rc);
1126 sv.r = r;
1127 sv.c.i = 0;
1128 load(r1, &sv); /* move r to r1 */
1129 vdup();
1130 /* duplicates value */
1131 if (r != r1)
1132 vtop->r = r1;
1136 /* Generate value test
1138 * Generate a test for any value (jump, comparison and integers) */
1139 ST_FUNC int gvtst(int inv, int t)
1141 int v = vtop->r & VT_VALMASK;
1142 if (v != VT_CMP && v != VT_JMP && v != VT_JMPI) {
1143 vpushi(0);
1144 gen_op(TOK_NE);
1146 if ((vtop->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == VT_CONST) {
1147 /* constant jmp optimization */
1148 if ((vtop->c.i != 0) != inv)
1149 t = gjmp(t);
1150 vtop--;
1151 return t;
1153 return gtst(inv, t);
1156 #if !defined(TCC_TARGET_ARM64) && !defined(TCC_TARGET_X86_64)
1157 /* generate CPU independent (unsigned) long long operations */
1158 static void gen_opl(int op)
1160 int t, a, b, op1, c, i;
1161 int func;
1162 unsigned short reg_iret = REG_IRET;
1163 unsigned short reg_lret = REG_LRET;
1164 SValue tmp;
1166 switch(op) {
1167 case '/':
1168 case TOK_PDIV:
1169 func = TOK___divdi3;
1170 goto gen_func;
1171 case TOK_UDIV:
1172 func = TOK___udivdi3;
1173 goto gen_func;
1174 case '%':
1175 func = TOK___moddi3;
1176 goto gen_mod_func;
1177 case TOK_UMOD:
1178 func = TOK___umoddi3;
1179 gen_mod_func:
1180 #ifdef TCC_ARM_EABI
1181 reg_iret = TREG_R2;
1182 reg_lret = TREG_R3;
1183 #endif
1184 gen_func:
1185 /* call generic long long function */
1186 vpush_global_sym(&func_old_type, func);
1187 vrott(3);
1188 gfunc_call(2);
1189 vpushi(0);
1190 vtop->r = reg_iret;
1191 vtop->r2 = reg_lret;
1192 break;
1193 case '^':
1194 case '&':
1195 case '|':
1196 case '*':
1197 case '+':
1198 case '-':
1199 t = vtop->type.t;
1200 vswap();
1201 lexpand();
1202 vrotb(3);
1203 lexpand();
1204 /* stack: L1 H1 L2 H2 */
1205 tmp = vtop[0];
1206 vtop[0] = vtop[-3];
1207 vtop[-3] = tmp;
1208 tmp = vtop[-2];
1209 vtop[-2] = vtop[-3];
1210 vtop[-3] = tmp;
1211 vswap();
1212 /* stack: H1 H2 L1 L2 */
1213 if (op == '*') {
1214 vpushv(vtop - 1);
1215 vpushv(vtop - 1);
1216 gen_op(TOK_UMULL);
1217 lexpand();
1218 /* stack: H1 H2 L1 L2 ML MH */
1219 for(i=0;i<4;i++)
1220 vrotb(6);
1221 /* stack: ML MH H1 H2 L1 L2 */
1222 tmp = vtop[0];
1223 vtop[0] = vtop[-2];
1224 vtop[-2] = tmp;
1225 /* stack: ML MH H1 L2 H2 L1 */
1226 gen_op('*');
1227 vrotb(3);
1228 vrotb(3);
1229 gen_op('*');
1230 /* stack: ML MH M1 M2 */
1231 gen_op('+');
1232 gen_op('+');
1233 } else if (op == '+' || op == '-') {
1234 /* XXX: add non carry method too (for MIPS or alpha) */
1235 if (op == '+')
1236 op1 = TOK_ADDC1;
1237 else
1238 op1 = TOK_SUBC1;
1239 gen_op(op1);
1240 /* stack: H1 H2 (L1 op L2) */
1241 vrotb(3);
1242 vrotb(3);
1243 gen_op(op1 + 1); /* TOK_xxxC2 */
1244 } else {
1245 gen_op(op);
1246 /* stack: H1 H2 (L1 op L2) */
1247 vrotb(3);
1248 vrotb(3);
1249 /* stack: (L1 op L2) H1 H2 */
1250 gen_op(op);
1251 /* stack: (L1 op L2) (H1 op H2) */
1253 /* stack: L H */
1254 lbuild(t);
1255 break;
1256 case TOK_SAR:
1257 case TOK_SHR:
1258 case TOK_SHL:
1259 if ((vtop->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == VT_CONST) {
1260 t = vtop[-1].type.t;
1261 vswap();
1262 lexpand();
1263 vrotb(3);
1264 /* stack: L H shift */
1265 c = (int)vtop->c.i;
1266 /* constant: simpler */
1267 /* NOTE: all comments are for SHL. the other cases are
1268 done by swaping words */
1269 vpop();
1270 if (op != TOK_SHL)
1271 vswap();
1272 if (c >= 32) {
1273 /* stack: L H */
1274 vpop();
1275 if (c > 32) {
1276 vpushi(c - 32);
1277 gen_op(op);
1279 if (op != TOK_SAR) {
1280 vpushi(0);
1281 } else {
1282 gv_dup();
1283 vpushi(31);
1284 gen_op(TOK_SAR);
1286 vswap();
1287 } else {
1288 vswap();
1289 gv_dup();
1290 /* stack: H L L */
1291 vpushi(c);
1292 gen_op(op);
1293 vswap();
1294 vpushi(32 - c);
1295 if (op == TOK_SHL)
1296 gen_op(TOK_SHR);
1297 else
1298 gen_op(TOK_SHL);
1299 vrotb(3);
1300 /* stack: L L H */
1301 vpushi(c);
1302 if (op == TOK_SHL)
1303 gen_op(TOK_SHL);
1304 else
1305 gen_op(TOK_SHR);
1306 gen_op('|');
1308 if (op != TOK_SHL)
1309 vswap();
1310 lbuild(t);
1311 } else {
1312 /* XXX: should provide a faster fallback on x86 ? */
1313 switch(op) {
1314 case TOK_SAR:
1315 func = TOK___ashrdi3;
1316 goto gen_func;
1317 case TOK_SHR:
1318 func = TOK___lshrdi3;
1319 goto gen_func;
1320 case TOK_SHL:
1321 func = TOK___ashldi3;
1322 goto gen_func;
1325 break;
1326 default:
1327 /* compare operations */
1328 t = vtop->type.t;
1329 vswap();
1330 lexpand();
1331 vrotb(3);
1332 lexpand();
1333 /* stack: L1 H1 L2 H2 */
1334 tmp = vtop[-1];
1335 vtop[-1] = vtop[-2];
1336 vtop[-2] = tmp;
1337 /* stack: L1 L2 H1 H2 */
1338 /* compare high */
1339 op1 = op;
1340 /* when values are equal, we need to compare low words. since
1341 the jump is inverted, we invert the test too. */
1342 if (op1 == TOK_LT)
1343 op1 = TOK_LE;
1344 else if (op1 == TOK_GT)
1345 op1 = TOK_GE;
1346 else if (op1 == TOK_ULT)
1347 op1 = TOK_ULE;
1348 else if (op1 == TOK_UGT)
1349 op1 = TOK_UGE;
1350 a = 0;
1351 b = 0;
1352 gen_op(op1);
1353 if (op1 != TOK_NE) {
1354 a = gvtst(1, 0);
1356 if (op != TOK_EQ) {
1357 /* generate non equal test */
1358 /* XXX: NOT PORTABLE yet */
1359 if (a == 0) {
1360 b = gvtst(0, 0);
1361 } else {
1362 #if defined(TCC_TARGET_I386)
1363 b = psym(0x850f, 0);
1364 #elif defined(TCC_TARGET_ARM)
1365 b = ind;
1366 o(0x1A000000 | encbranch(ind, 0, 1));
1367 #elif defined(TCC_TARGET_C67) || defined(TCC_TARGET_ARM64)
1368 tcc_error("not implemented");
1369 #else
1370 #error not supported
1371 #endif
1374 /* compare low. Always unsigned */
1375 op1 = op;
1376 if (op1 == TOK_LT)
1377 op1 = TOK_ULT;
1378 else if (op1 == TOK_LE)
1379 op1 = TOK_ULE;
1380 else if (op1 == TOK_GT)
1381 op1 = TOK_UGT;
1382 else if (op1 == TOK_GE)
1383 op1 = TOK_UGE;
1384 gen_op(op1);
1385 a = gvtst(1, a);
1386 gsym(b);
1387 vseti(VT_JMPI, a);
1388 break;
1391 #endif
1393 static uint64_t gen_opic_sdiv(uint64_t a, uint64_t b)
1395 uint64_t x = (a >> 63 ? -a : a) / (b >> 63 ? -b : b);
1396 return (a ^ b) >> 63 ? -x : x;
1399 static int gen_opic_lt(uint64_t a, uint64_t b)
1401 return (a ^ (uint64_t)1 << 63) < (b ^ (uint64_t)1 << 63);
1404 /* handle integer constant optimizations and various machine
1405 independent opt */
1406 static void gen_opic(int op)
1408 SValue *v1 = vtop - 1;
1409 SValue *v2 = vtop;
1410 int t1 = v1->type.t & VT_BTYPE;
1411 int t2 = v2->type.t & VT_BTYPE;
1412 int c1 = (v1->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == VT_CONST;
1413 int c2 = (v2->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == VT_CONST;
1414 uint64_t l1 = c1 ? v1->c.i : 0;
1415 uint64_t l2 = c2 ? v2->c.i : 0;
1416 int shm = (t1 == VT_LLONG) ? 63 : 31;
1418 if (t1 != VT_LLONG)
1419 l1 = ((uint32_t)l1 |
1420 (v1->type.t & VT_UNSIGNED ? 0 : -(l1 & 0x80000000)));
1421 if (t2 != VT_LLONG)
1422 l2 = ((uint32_t)l2 |
1423 (v2->type.t & VT_UNSIGNED ? 0 : -(l2 & 0x80000000)));
1425 if (c1 && c2) {
1426 switch(op) {
1427 case '+': l1 += l2; break;
1428 case '-': l1 -= l2; break;
1429 case '&': l1 &= l2; break;
1430 case '^': l1 ^= l2; break;
1431 case '|': l1 |= l2; break;
1432 case '*': l1 *= l2; break;
1434 case TOK_PDIV:
1435 case '/':
1436 case '%':
1437 case TOK_UDIV:
1438 case TOK_UMOD:
1439 /* if division by zero, generate explicit division */
1440 if (l2 == 0) {
1441 if (const_wanted)
1442 tcc_error("division by zero in constant");
1443 goto general_case;
1445 switch(op) {
1446 default: l1 = gen_opic_sdiv(l1, l2); break;
1447 case '%': l1 = l1 - l2 * gen_opic_sdiv(l1, l2); break;
1448 case TOK_UDIV: l1 = l1 / l2; break;
1449 case TOK_UMOD: l1 = l1 % l2; break;
1451 break;
1452 case TOK_SHL: l1 <<= (l2 & shm); break;
1453 case TOK_SHR: l1 >>= (l2 & shm); break;
1454 case TOK_SAR:
1455 l1 = (l1 >> 63) ? ~(~l1 >> (l2 & shm)) : l1 >> (l2 & shm);
1456 break;
1457 /* tests */
1458 case TOK_ULT: l1 = l1 < l2; break;
1459 case TOK_UGE: l1 = l1 >= l2; break;
1460 case TOK_EQ: l1 = l1 == l2; break;
1461 case TOK_NE: l1 = l1 != l2; break;
1462 case TOK_ULE: l1 = l1 <= l2; break;
1463 case TOK_UGT: l1 = l1 > l2; break;
1464 case TOK_LT: l1 = gen_opic_lt(l1, l2); break;
1465 case TOK_GE: l1 = !gen_opic_lt(l1, l2); break;
1466 case TOK_LE: l1 = !gen_opic_lt(l2, l1); break;
1467 case TOK_GT: l1 = gen_opic_lt(l2, l1); break;
1468 /* logical */
1469 case TOK_LAND: l1 = l1 && l2; break;
1470 case TOK_LOR: l1 = l1 || l2; break;
1471 default:
1472 goto general_case;
1474 v1->c.i = l1;
1475 vtop--;
1476 } else {
1477 /* if commutative ops, put c2 as constant */
1478 if (c1 && (op == '+' || op == '&' || op == '^' ||
1479 op == '|' || op == '*')) {
1480 vswap();
1481 c2 = c1; //c = c1, c1 = c2, c2 = c;
1482 l2 = l1; //l = l1, l1 = l2, l2 = l;
1484 if (!const_wanted &&
1485 c1 && ((l1 == 0 &&
1486 (op == TOK_SHL || op == TOK_SHR || op == TOK_SAR)) ||
1487 (l1 == -1 && op == TOK_SAR))) {
1488 /* treat (0 << x), (0 >> x) and (-1 >> x) as constant */
1489 vtop--;
1490 } else if (!const_wanted &&
1491 c2 && ((l2 == 0 && (op == '&' || op == '*')) ||
1492 (l2 == -1 && op == '|') ||
1493 (l2 == 0xffffffff && t2 != VT_LLONG && op == '|') ||
1494 (l2 == 1 && (op == '%' || op == TOK_UMOD)))) {
1495 /* treat (x & 0), (x * 0), (x | -1) and (x % 1) as constant */
1496 if (l2 == 1)
1497 vtop->c.i = 0;
1498 vswap();
1499 vtop--;
1500 } else if (c2 && (((op == '*' || op == '/' || op == TOK_UDIV ||
1501 op == TOK_PDIV) &&
1502 l2 == 1) ||
1503 ((op == '+' || op == '-' || op == '|' || op == '^' ||
1504 op == TOK_SHL || op == TOK_SHR || op == TOK_SAR) &&
1505 l2 == 0) ||
1506 (op == '&' &&
1507 l2 == -1))) {
1508 /* filter out NOP operations like x*1, x-0, x&-1... */
1509 vtop--;
1510 } else if (c2 && (op == '*' || op == TOK_PDIV || op == TOK_UDIV)) {
1511 /* try to use shifts instead of muls or divs */
1512 if (l2 > 0 && (l2 & (l2 - 1)) == 0) {
1513 int n = -1;
1514 while (l2) {
1515 l2 >>= 1;
1516 n++;
1518 vtop->c.i = n;
1519 if (op == '*')
1520 op = TOK_SHL;
1521 else if (op == TOK_PDIV)
1522 op = TOK_SAR;
1523 else
1524 op = TOK_SHR;
1526 goto general_case;
1527 } else if (c2 && (op == '+' || op == '-') &&
1528 (((vtop[-1].r & (VT_VALMASK | VT_LVAL | VT_SYM)) == (VT_CONST | VT_SYM))
1529 || (vtop[-1].r & (VT_VALMASK | VT_LVAL)) == VT_LOCAL)) {
1530 /* symbol + constant case */
1531 if (op == '-')
1532 l2 = -l2;
1533 vtop--;
1534 vtop->c.i += l2;
1535 } else {
1536 general_case:
1537 if (!nocode_wanted) {
1538 /* call low level op generator */
1539 if (t1 == VT_LLONG || t2 == VT_LLONG ||
1540 (PTR_SIZE == 8 && (t1 == VT_PTR || t2 == VT_PTR)))
1541 gen_opl(op);
1542 else
1543 gen_opi(op);
1544 } else {
1545 vtop--;
1551 /* generate a floating point operation with constant propagation */
1552 static void gen_opif(int op)
1554 int c1, c2;
1555 SValue *v1, *v2;
1556 long double f1, f2;
1558 v1 = vtop - 1;
1559 v2 = vtop;
1560 /* currently, we cannot do computations with forward symbols */
1561 c1 = (v1->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == VT_CONST;
1562 c2 = (v2->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == VT_CONST;
1563 if (c1 && c2) {
1564 if (v1->type.t == VT_FLOAT) {
1565 f1 = v1->c.f;
1566 f2 = v2->c.f;
1567 } else if (v1->type.t == VT_DOUBLE) {
1568 f1 = v1->c.d;
1569 f2 = v2->c.d;
1570 } else {
1571 f1 = v1->c.ld;
1572 f2 = v2->c.ld;
1575 /* NOTE: we only do constant propagation if finite number (not
1576 NaN or infinity) (ANSI spec) */
1577 if (!ieee_finite(f1) || !ieee_finite(f2))
1578 goto general_case;
1580 switch(op) {
1581 case '+': f1 += f2; break;
1582 case '-': f1 -= f2; break;
1583 case '*': f1 *= f2; break;
1584 case '/':
1585 if (f2 == 0.0) {
1586 if (const_wanted)
1587 tcc_error("division by zero in constant");
1588 goto general_case;
1590 f1 /= f2;
1591 break;
1592 /* XXX: also handles tests ? */
1593 default:
1594 goto general_case;
1596 /* XXX: overflow test ? */
1597 if (v1->type.t == VT_FLOAT) {
1598 v1->c.f = f1;
1599 } else if (v1->type.t == VT_DOUBLE) {
1600 v1->c.d = f1;
1601 } else {
1602 v1->c.ld = f1;
1604 vtop--;
1605 } else {
1606 general_case:
1607 if (!nocode_wanted) {
1608 gen_opf(op);
1609 } else {
1610 vtop--;
1615 static int pointed_size(CType *type)
1617 int align;
1618 return type_size(pointed_type(type), &align);
1621 static void vla_runtime_pointed_size(CType *type)
1623 int align;
1624 vla_runtime_type_size(pointed_type(type), &align);
1627 static inline int is_null_pointer(SValue *p)
1629 if ((p->r & (VT_VALMASK | VT_LVAL | VT_SYM)) != VT_CONST)
1630 return 0;
1631 return ((p->type.t & VT_BTYPE) == VT_INT && (uint32_t)p->c.i == 0) ||
1632 ((p->type.t & VT_BTYPE) == VT_LLONG && p->c.i == 0) ||
1633 ((p->type.t & VT_BTYPE) == VT_PTR &&
1634 (PTR_SIZE == 4 ? (uint32_t)p->c.i == 0 : p->c.i == 0));
1637 static inline int is_integer_btype(int bt)
1639 return (bt == VT_BYTE || bt == VT_SHORT ||
1640 bt == VT_INT || bt == VT_LLONG);
1643 /* check types for comparison or subtraction of pointers */
1644 static void check_comparison_pointer_types(SValue *p1, SValue *p2, int op)
1646 CType *type1, *type2, tmp_type1, tmp_type2;
1647 int bt1, bt2;
1649 /* null pointers are accepted for all comparisons as gcc */
1650 if (is_null_pointer(p1) || is_null_pointer(p2))
1651 return;
1652 type1 = &p1->type;
1653 type2 = &p2->type;
1654 bt1 = type1->t & VT_BTYPE;
1655 bt2 = type2->t & VT_BTYPE;
1656 /* accept comparison between pointer and integer with a warning */
1657 if ((is_integer_btype(bt1) || is_integer_btype(bt2)) && op != '-') {
1658 if (op != TOK_LOR && op != TOK_LAND )
1659 tcc_warning("comparison between pointer and integer");
1660 return;
1663 /* both must be pointers or implicit function pointers */
1664 if (bt1 == VT_PTR) {
1665 type1 = pointed_type(type1);
1666 } else if (bt1 != VT_FUNC)
1667 goto invalid_operands;
1669 if (bt2 == VT_PTR) {
1670 type2 = pointed_type(type2);
1671 } else if (bt2 != VT_FUNC) {
1672 invalid_operands:
1673 tcc_error("invalid operands to binary %s", get_tok_str(op, NULL));
1675 if ((type1->t & VT_BTYPE) == VT_VOID ||
1676 (type2->t & VT_BTYPE) == VT_VOID)
1677 return;
1678 tmp_type1 = *type1;
1679 tmp_type2 = *type2;
1680 tmp_type1.t &= ~(VT_DEFSIGN | VT_UNSIGNED | VT_CONSTANT | VT_VOLATILE);
1681 tmp_type2.t &= ~(VT_DEFSIGN | VT_UNSIGNED | VT_CONSTANT | VT_VOLATILE);
1682 if (!is_compatible_types(&tmp_type1, &tmp_type2)) {
1683 /* gcc-like error if '-' is used */
1684 if (op == '-')
1685 goto invalid_operands;
1686 else
1687 tcc_warning("comparison of distinct pointer types lacks a cast");
1691 /* generic gen_op: handles types problems */
1692 ST_FUNC void gen_op(int op)
1694 int u, t1, t2, bt1, bt2, t;
1695 CType type1;
1697 t1 = vtop[-1].type.t;
1698 t2 = vtop[0].type.t;
1699 bt1 = t1 & VT_BTYPE;
1700 bt2 = t2 & VT_BTYPE;
1702 if (bt1 == VT_PTR || bt2 == VT_PTR) {
1703 /* at least one operand is a pointer */
1704 /* relationnal op: must be both pointers */
1705 if (op >= TOK_ULT && op <= TOK_LOR) {
1706 check_comparison_pointer_types(vtop - 1, vtop, op);
1707 /* pointers are handled are unsigned */
1708 #if defined(TCC_TARGET_ARM64) || defined(TCC_TARGET_X86_64)
1709 t = VT_LLONG | VT_UNSIGNED;
1710 #else
1711 t = VT_INT | VT_UNSIGNED;
1712 #endif
1713 goto std_op;
1715 /* if both pointers, then it must be the '-' op */
1716 if (bt1 == VT_PTR && bt2 == VT_PTR) {
1717 if (op != '-')
1718 tcc_error("cannot use pointers here");
1719 check_comparison_pointer_types(vtop - 1, vtop, op);
1720 /* XXX: check that types are compatible */
1721 if (vtop[-1].type.t & VT_VLA) {
1722 vla_runtime_pointed_size(&vtop[-1].type);
1723 } else {
1724 vpushi(pointed_size(&vtop[-1].type));
1726 vrott(3);
1727 gen_opic(op);
1728 /* set to integer type */
1729 #if defined(TCC_TARGET_ARM64) || defined(TCC_TARGET_X86_64)
1730 vtop->type.t = VT_LLONG;
1731 #else
1732 vtop->type.t = VT_INT;
1733 #endif
1734 vswap();
1735 gen_op(TOK_PDIV);
1736 } else {
1737 /* exactly one pointer : must be '+' or '-'. */
1738 if (op != '-' && op != '+')
1739 tcc_error("cannot use pointers here");
1740 /* Put pointer as first operand */
1741 if (bt2 == VT_PTR) {
1742 vswap();
1743 swap(&t1, &t2);
1745 type1 = vtop[-1].type;
1746 type1.t &= ~VT_ARRAY;
1747 if (vtop[-1].type.t & VT_VLA)
1748 vla_runtime_pointed_size(&vtop[-1].type);
1749 else {
1750 u = pointed_size(&vtop[-1].type);
1751 if (u < 0)
1752 tcc_error("unknown array element size");
1753 #if defined(TCC_TARGET_ARM64) || defined(TCC_TARGET_X86_64)
1754 vpushll(u);
1755 #else
1756 /* XXX: cast to int ? (long long case) */
1757 vpushi(u);
1758 #endif
1760 gen_op('*');
1761 #if 0
1762 /* #ifdef CONFIG_TCC_BCHECK
1763 The main reason to removing this code:
1764 #include <stdio.h>
1765 int main ()
1767 int v[10];
1768 int i = 10;
1769 int j = 9;
1770 fprintf(stderr, "v+i-j = %p\n", v+i-j);
1771 fprintf(stderr, "v+(i-j) = %p\n", v+(i-j));
1773 When this code is on. then the output looks like
1774 v+i-j = 0xfffffffe
1775 v+(i-j) = 0xbff84000
1777 /* if evaluating constant expression, no code should be
1778 generated, so no bound check */
1779 if (tcc_state->do_bounds_check && !const_wanted) {
1780 /* if bounded pointers, we generate a special code to
1781 test bounds */
1782 if (op == '-') {
1783 vpushi(0);
1784 vswap();
1785 gen_op('-');
1787 gen_bounded_ptr_add();
1788 } else
1789 #endif
1791 gen_opic(op);
1793 /* put again type if gen_opic() swaped operands */
1794 vtop->type = type1;
1796 } else if (is_float(bt1) || is_float(bt2)) {
1797 /* compute bigger type and do implicit casts */
1798 if (bt1 == VT_LDOUBLE || bt2 == VT_LDOUBLE) {
1799 t = VT_LDOUBLE;
1800 } else if (bt1 == VT_DOUBLE || bt2 == VT_DOUBLE) {
1801 t = VT_DOUBLE;
1802 } else {
1803 t = VT_FLOAT;
1805 /* floats can only be used for a few operations */
1806 if (op != '+' && op != '-' && op != '*' && op != '/' &&
1807 (op < TOK_ULT || op > TOK_GT))
1808 tcc_error("invalid operands for binary operation");
1809 goto std_op;
1810 } else if (op == TOK_SHR || op == TOK_SAR || op == TOK_SHL) {
1811 t = bt1 == VT_LLONG ? VT_LLONG : VT_INT;
1812 if ((t1 & (VT_BTYPE | VT_UNSIGNED)) == (t | VT_UNSIGNED))
1813 t |= VT_UNSIGNED;
1814 goto std_op;
1815 } else if (bt1 == VT_LLONG || bt2 == VT_LLONG) {
1816 /* cast to biggest op */
1817 t = VT_LLONG;
1818 /* convert to unsigned if it does not fit in a long long */
1819 if ((t1 & (VT_BTYPE | VT_UNSIGNED)) == (VT_LLONG | VT_UNSIGNED) ||
1820 (t2 & (VT_BTYPE | VT_UNSIGNED)) == (VT_LLONG | VT_UNSIGNED))
1821 t |= VT_UNSIGNED;
1822 goto std_op;
1823 } else if (bt1 == VT_STRUCT || bt2 == VT_STRUCT) {
1824 tcc_error("comparison of struct");
1825 } else {
1826 /* integer operations */
1827 t = VT_INT;
1828 /* convert to unsigned if it does not fit in an integer */
1829 if ((t1 & (VT_BTYPE | VT_UNSIGNED)) == (VT_INT | VT_UNSIGNED) ||
1830 (t2 & (VT_BTYPE | VT_UNSIGNED)) == (VT_INT | VT_UNSIGNED))
1831 t |= VT_UNSIGNED;
1832 std_op:
1833 /* XXX: currently, some unsigned operations are explicit, so
1834 we modify them here */
1835 if (t & VT_UNSIGNED) {
1836 if (op == TOK_SAR)
1837 op = TOK_SHR;
1838 else if (op == '/')
1839 op = TOK_UDIV;
1840 else if (op == '%')
1841 op = TOK_UMOD;
1842 else if (op == TOK_LT)
1843 op = TOK_ULT;
1844 else if (op == TOK_GT)
1845 op = TOK_UGT;
1846 else if (op == TOK_LE)
1847 op = TOK_ULE;
1848 else if (op == TOK_GE)
1849 op = TOK_UGE;
1851 vswap();
1852 type1.t = t;
1853 gen_cast(&type1);
1854 vswap();
1855 /* special case for shifts and long long: we keep the shift as
1856 an integer */
1857 if (op == TOK_SHR || op == TOK_SAR || op == TOK_SHL)
1858 type1.t = VT_INT;
1859 gen_cast(&type1);
1860 if (is_float(t))
1861 gen_opif(op);
1862 else
1863 gen_opic(op);
1864 if (op >= TOK_ULT && op <= TOK_GT) {
1865 /* relationnal op: the result is an int */
1866 vtop->type.t = VT_INT;
1867 } else {
1868 vtop->type.t = t;
1871 // Make sure that we have converted to an rvalue:
1872 if (vtop->r & VT_LVAL && !nocode_wanted)
1873 gv(is_float(vtop->type.t & VT_BTYPE) ? RC_FLOAT : RC_INT);
1876 #ifndef TCC_TARGET_ARM
1877 /* generic itof for unsigned long long case */
1878 static void gen_cvt_itof1(int t)
1880 #ifdef TCC_TARGET_ARM64
1881 gen_cvt_itof(t);
1882 #else
1883 if ((vtop->type.t & (VT_BTYPE | VT_UNSIGNED)) ==
1884 (VT_LLONG | VT_UNSIGNED)) {
1886 if (t == VT_FLOAT)
1887 vpush_global_sym(&func_old_type, TOK___floatundisf);
1888 #if LDOUBLE_SIZE != 8
1889 else if (t == VT_LDOUBLE)
1890 vpush_global_sym(&func_old_type, TOK___floatundixf);
1891 #endif
1892 else
1893 vpush_global_sym(&func_old_type, TOK___floatundidf);
1894 vrott(2);
1895 gfunc_call(1);
1896 vpushi(0);
1897 vtop->r = reg_fret(t);
1898 } else {
1899 gen_cvt_itof(t);
1901 #endif
1903 #endif
1905 /* generic ftoi for unsigned long long case */
1906 static void gen_cvt_ftoi1(int t)
1908 #ifdef TCC_TARGET_ARM64
1909 gen_cvt_ftoi(t);
1910 #else
1911 int st;
1913 if (t == (VT_LLONG | VT_UNSIGNED)) {
1914 /* not handled natively */
1915 st = vtop->type.t & VT_BTYPE;
1916 if (st == VT_FLOAT)
1917 vpush_global_sym(&func_old_type, TOK___fixunssfdi);
1918 #if LDOUBLE_SIZE != 8
1919 else if (st == VT_LDOUBLE)
1920 vpush_global_sym(&func_old_type, TOK___fixunsxfdi);
1921 #endif
1922 else
1923 vpush_global_sym(&func_old_type, TOK___fixunsdfdi);
1924 vrott(2);
1925 gfunc_call(1);
1926 vpushi(0);
1927 vtop->r = REG_IRET;
1928 vtop->r2 = REG_LRET;
1929 } else {
1930 gen_cvt_ftoi(t);
1932 #endif
1935 /* force char or short cast */
1936 static void force_charshort_cast(int t)
1938 int bits, dbt;
1939 dbt = t & VT_BTYPE;
1940 /* XXX: add optimization if lvalue : just change type and offset */
1941 if (dbt == VT_BYTE)
1942 bits = 8;
1943 else
1944 bits = 16;
1945 if (t & VT_UNSIGNED) {
1946 vpushi((1 << bits) - 1);
1947 gen_op('&');
1948 } else {
1949 bits = 32 - bits;
1950 vpushi(bits);
1951 gen_op(TOK_SHL);
1952 /* result must be signed or the SAR is converted to an SHL
1953 This was not the case when "t" was a signed short
1954 and the last value on the stack was an unsigned int */
1955 vtop->type.t &= ~VT_UNSIGNED;
1956 vpushi(bits);
1957 gen_op(TOK_SAR);
1961 /* cast 'vtop' to 'type'. Casting to bitfields is forbidden. */
1962 static void gen_cast(CType *type)
1964 int sbt, dbt, sf, df, c, p;
1966 /* special delayed cast for char/short */
1967 /* XXX: in some cases (multiple cascaded casts), it may still
1968 be incorrect */
1969 if (vtop->r & VT_MUSTCAST) {
1970 vtop->r &= ~VT_MUSTCAST;
1971 force_charshort_cast(vtop->type.t);
1974 /* bitfields first get cast to ints */
1975 if (vtop->type.t & VT_BITFIELD && !nocode_wanted) {
1976 gv(RC_INT);
1979 dbt = type->t & (VT_BTYPE | VT_UNSIGNED);
1980 sbt = vtop->type.t & (VT_BTYPE | VT_UNSIGNED);
1982 if (sbt != dbt) {
1983 sf = is_float(sbt);
1984 df = is_float(dbt);
1985 c = (vtop->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == VT_CONST;
1986 p = (vtop->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == (VT_CONST | VT_SYM);
1987 if (c) {
1988 /* constant case: we can do it now */
1989 /* XXX: in ISOC, cannot do it if error in convert */
1990 if (sbt == VT_FLOAT)
1991 vtop->c.ld = vtop->c.f;
1992 else if (sbt == VT_DOUBLE)
1993 vtop->c.ld = vtop->c.d;
1995 if (df) {
1996 if ((sbt & VT_BTYPE) == VT_LLONG) {
1997 if ((sbt & VT_UNSIGNED) || !(vtop->c.i >> 63))
1998 vtop->c.ld = vtop->c.i;
1999 else
2000 vtop->c.ld = -(long double)-vtop->c.i;
2001 } else if(!sf) {
2002 if ((sbt & VT_UNSIGNED) || !(vtop->c.i >> 31))
2003 vtop->c.ld = (uint32_t)vtop->c.i;
2004 else
2005 vtop->c.ld = -(long double)-(uint32_t)vtop->c.i;
2008 if (dbt == VT_FLOAT)
2009 vtop->c.f = (float)vtop->c.ld;
2010 else if (dbt == VT_DOUBLE)
2011 vtop->c.d = (double)vtop->c.ld;
2012 } else if (sf && dbt == (VT_LLONG|VT_UNSIGNED)) {
2013 vtop->c.i = vtop->c.ld;
2014 } else if (sf && dbt == VT_BOOL) {
2015 vtop->c.i = (vtop->c.ld != 0);
2016 } else {
2017 if(sf)
2018 vtop->c.i = vtop->c.ld;
2019 else if (sbt == (VT_LLONG|VT_UNSIGNED))
2021 else if (sbt & VT_UNSIGNED)
2022 vtop->c.i = (uint32_t)vtop->c.i;
2023 #if defined(TCC_TARGET_ARM64) || defined(TCC_TARGET_X86_64)
2024 else if (sbt == VT_PTR)
2026 #endif
2027 else if (sbt != VT_LLONG)
2028 vtop->c.i = ((uint32_t)vtop->c.i |
2029 -(vtop->c.i & 0x80000000));
2031 if (dbt == (VT_LLONG|VT_UNSIGNED))
2033 else if (dbt == VT_BOOL)
2034 vtop->c.i = (vtop->c.i != 0);
2035 #if defined(TCC_TARGET_ARM64) || defined(TCC_TARGET_X86_64)
2036 else if (dbt == VT_PTR)
2038 #endif
2039 else if (dbt != VT_LLONG) {
2040 uint32_t m = ((dbt & VT_BTYPE) == VT_BYTE ? 0xff :
2041 (dbt & VT_BTYPE) == VT_SHORT ? 0xffff :
2042 0xffffffff);
2043 vtop->c.i &= m;
2044 if (!(dbt & VT_UNSIGNED))
2045 vtop->c.i |= -(vtop->c.i & ((m >> 1) + 1));
2048 } else if (p && dbt == VT_BOOL) {
2049 vtop->r = VT_CONST;
2050 vtop->c.i = 1;
2051 } else if (!nocode_wanted) {
2052 /* non constant case: generate code */
2053 if (sf && df) {
2054 /* convert from fp to fp */
2055 gen_cvt_ftof(dbt);
2056 } else if (df) {
2057 /* convert int to fp */
2058 gen_cvt_itof1(dbt);
2059 } else if (sf) {
2060 /* convert fp to int */
2061 if (dbt == VT_BOOL) {
2062 vpushi(0);
2063 gen_op(TOK_NE);
2064 } else {
2065 /* we handle char/short/etc... with generic code */
2066 if (dbt != (VT_INT | VT_UNSIGNED) &&
2067 dbt != (VT_LLONG | VT_UNSIGNED) &&
2068 dbt != VT_LLONG)
2069 dbt = VT_INT;
2070 gen_cvt_ftoi1(dbt);
2071 if (dbt == VT_INT && (type->t & (VT_BTYPE | VT_UNSIGNED)) != dbt) {
2072 /* additional cast for char/short... */
2073 vtop->type.t = dbt;
2074 gen_cast(type);
2077 #if !defined(TCC_TARGET_ARM64) && !defined(TCC_TARGET_X86_64)
2078 } else if ((dbt & VT_BTYPE) == VT_LLONG) {
2079 if ((sbt & VT_BTYPE) != VT_LLONG && !nocode_wanted) {
2080 /* scalar to long long */
2081 /* machine independent conversion */
2082 gv(RC_INT);
2083 /* generate high word */
2084 if (sbt == (VT_INT | VT_UNSIGNED)) {
2085 vpushi(0);
2086 gv(RC_INT);
2087 } else {
2088 if (sbt == VT_PTR) {
2089 /* cast from pointer to int before we apply
2090 shift operation, which pointers don't support*/
2091 gen_cast(&int_type);
2093 gv_dup();
2094 vpushi(31);
2095 gen_op(TOK_SAR);
2097 /* patch second register */
2098 vtop[-1].r2 = vtop->r;
2099 vpop();
2101 #else
2102 } else if ((dbt & VT_BTYPE) == VT_LLONG ||
2103 (dbt & VT_BTYPE) == VT_PTR ||
2104 (dbt & VT_BTYPE) == VT_FUNC) {
2105 if ((sbt & VT_BTYPE) != VT_LLONG &&
2106 (sbt & VT_BTYPE) != VT_PTR &&
2107 (sbt & VT_BTYPE) != VT_FUNC && !nocode_wanted) {
2108 /* need to convert from 32bit to 64bit */
2109 gv(RC_INT);
2110 if (sbt != (VT_INT | VT_UNSIGNED)) {
2111 #if defined(TCC_TARGET_ARM64)
2112 gen_cvt_sxtw();
2113 #elif defined(TCC_TARGET_X86_64)
2114 int r = gv(RC_INT);
2115 /* x86_64 specific: movslq */
2116 o(0x6348);
2117 o(0xc0 + (REG_VALUE(r) << 3) + REG_VALUE(r));
2118 #else
2119 #error
2120 #endif
2123 #endif
2124 } else if (dbt == VT_BOOL) {
2125 /* scalar to bool */
2126 vpushi(0);
2127 gen_op(TOK_NE);
2128 } else if ((dbt & VT_BTYPE) == VT_BYTE ||
2129 (dbt & VT_BTYPE) == VT_SHORT) {
2130 if (sbt == VT_PTR) {
2131 vtop->type.t = VT_INT;
2132 tcc_warning("nonportable conversion from pointer to char/short");
2134 force_charshort_cast(dbt);
2135 } else if ((dbt & VT_BTYPE) == VT_INT) {
2136 /* scalar to int */
2137 if (sbt == VT_LLONG && !nocode_wanted) {
2138 /* from long long: just take low order word */
2139 lexpand();
2140 vpop();
2142 /* if lvalue and single word type, nothing to do because
2143 the lvalue already contains the real type size (see
2144 VT_LVAL_xxx constants) */
2147 } else if ((dbt & VT_BTYPE) == VT_PTR && !(vtop->r & VT_LVAL)) {
2148 /* if we are casting between pointer types,
2149 we must update the VT_LVAL_xxx size */
2150 vtop->r = (vtop->r & ~VT_LVAL_TYPE)
2151 | (lvalue_type(type->ref->type.t) & VT_LVAL_TYPE);
2153 vtop->type = *type;
2156 /* return type size as known at compile time. Put alignment at 'a' */
2157 ST_FUNC int type_size(CType *type, int *a)
2159 Sym *s;
2160 int bt;
2162 bt = type->t & VT_BTYPE;
2163 if (bt == VT_STRUCT) {
2164 /* struct/union */
2165 s = type->ref;
2166 *a = s->r;
2167 return s->c;
2168 } else if (bt == VT_PTR) {
2169 if (type->t & VT_ARRAY) {
2170 int ts;
2172 s = type->ref;
2173 ts = type_size(&s->type, a);
2175 if (ts < 0 && s->c < 0)
2176 ts = -ts;
2178 return ts * s->c;
2179 } else {
2180 *a = PTR_SIZE;
2181 return PTR_SIZE;
2183 } else if (bt == VT_LDOUBLE) {
2184 *a = LDOUBLE_ALIGN;
2185 return LDOUBLE_SIZE;
2186 } else if (bt == VT_DOUBLE || bt == VT_LLONG) {
2187 #ifdef TCC_TARGET_I386
2188 #ifdef TCC_TARGET_PE
2189 *a = 8;
2190 #else
2191 *a = 4;
2192 #endif
2193 #elif defined(TCC_TARGET_ARM)
2194 #ifdef TCC_ARM_EABI
2195 *a = 8;
2196 #else
2197 *a = 4;
2198 #endif
2199 #else
2200 *a = 8;
2201 #endif
2202 return 8;
2203 } else if (bt == VT_INT || bt == VT_ENUM || bt == VT_FLOAT) {
2204 *a = 4;
2205 return 4;
2206 } else if (bt == VT_SHORT) {
2207 *a = 2;
2208 return 2;
2209 } else if (bt == VT_QLONG || bt == VT_QFLOAT) {
2210 *a = 8;
2211 return 16;
2212 } else {
2213 /* char, void, function, _Bool */
2214 *a = 1;
2215 return 1;
2219 /* push type size as known at runtime time on top of value stack. Put
2220 alignment at 'a' */
2221 ST_FUNC void vla_runtime_type_size(CType *type, int *a)
2223 if (type->t & VT_VLA) {
2224 vset(&int_type, VT_LOCAL|VT_LVAL, type->ref->c);
2225 } else {
2226 vpushi(type_size(type, a));
2230 static void vla_sp_restore(void) {
2231 if (vlas_in_scope) {
2232 gen_vla_sp_restore(vla_sp_loc);
2236 static void vla_sp_restore_root(void) {
2237 if (vlas_in_scope) {
2238 gen_vla_sp_restore(vla_sp_root_loc);
2242 /* return the pointed type of t */
2243 static inline CType *pointed_type(CType *type)
2245 return &type->ref->type;
2248 /* modify type so that its it is a pointer to type. */
2249 ST_FUNC void mk_pointer(CType *type)
2251 Sym *s;
2252 s = sym_push(SYM_FIELD, type, 0, -1);
2253 type->t = VT_PTR | (type->t & ~VT_TYPE);
2254 type->ref = s;
2257 /* compare function types. OLD functions match any new functions */
2258 static int is_compatible_func(CType *type1, CType *type2)
2260 Sym *s1, *s2;
2262 s1 = type1->ref;
2263 s2 = type2->ref;
2264 if (!is_compatible_types(&s1->type, &s2->type))
2265 return 0;
2266 /* check func_call */
2267 if (s1->a.func_call != s2->a.func_call)
2268 return 0;
2269 /* XXX: not complete */
2270 if (s1->c == FUNC_OLD || s2->c == FUNC_OLD)
2271 return 1;
2272 if (s1->c != s2->c)
2273 return 0;
2274 while (s1 != NULL) {
2275 if (s2 == NULL)
2276 return 0;
2277 if (!is_compatible_parameter_types(&s1->type, &s2->type))
2278 return 0;
2279 s1 = s1->next;
2280 s2 = s2->next;
2282 if (s2)
2283 return 0;
2284 return 1;
2287 /* return true if type1 and type2 are the same. If unqualified is
2288 true, qualifiers on the types are ignored.
2290 - enums are not checked as gcc __builtin_types_compatible_p ()
2292 static int compare_types(CType *type1, CType *type2, int unqualified)
2294 int bt1, t1, t2;
2296 t1 = type1->t & VT_TYPE;
2297 t2 = type2->t & VT_TYPE;
2298 if (unqualified) {
2299 /* strip qualifiers before comparing */
2300 t1 &= ~(VT_CONSTANT | VT_VOLATILE);
2301 t2 &= ~(VT_CONSTANT | VT_VOLATILE);
2303 /* Default Vs explicit signedness only matters for char */
2304 if ((t1 & VT_BTYPE) != VT_BYTE) {
2305 t1 &= ~VT_DEFSIGN;
2306 t2 &= ~VT_DEFSIGN;
2308 /* XXX: bitfields ? */
2309 if (t1 != t2)
2310 return 0;
2311 /* test more complicated cases */
2312 bt1 = t1 & VT_BTYPE;
2313 if (bt1 == VT_PTR) {
2314 type1 = pointed_type(type1);
2315 type2 = pointed_type(type2);
2316 return is_compatible_types(type1, type2);
2317 } else if (bt1 == VT_STRUCT) {
2318 return (type1->ref == type2->ref);
2319 } else if (bt1 == VT_FUNC) {
2320 return is_compatible_func(type1, type2);
2321 } else {
2322 return 1;
2326 /* return true if type1 and type2 are exactly the same (including
2327 qualifiers).
2329 static int is_compatible_types(CType *type1, CType *type2)
2331 return compare_types(type1,type2,0);
2334 /* return true if type1 and type2 are the same (ignoring qualifiers).
2336 static int is_compatible_parameter_types(CType *type1, CType *type2)
2338 return compare_types(type1,type2,1);
2341 /* print a type. If 'varstr' is not NULL, then the variable is also
2342 printed in the type */
2343 /* XXX: union */
2344 /* XXX: add array and function pointers */
2345 static void type_to_str(char *buf, int buf_size,
2346 CType *type, const char *varstr)
2348 int bt, v, t;
2349 Sym *s, *sa;
2350 char buf1[256];
2351 const char *tstr;
2353 t = type->t & VT_TYPE;
2354 bt = t & VT_BTYPE;
2355 buf[0] = '\0';
2356 if (t & VT_CONSTANT)
2357 pstrcat(buf, buf_size, "const ");
2358 if (t & VT_VOLATILE)
2359 pstrcat(buf, buf_size, "volatile ");
2360 if ((t & (VT_DEFSIGN | VT_UNSIGNED)) == (VT_DEFSIGN | VT_UNSIGNED))
2361 pstrcat(buf, buf_size, "unsigned ");
2362 else if (t & VT_DEFSIGN)
2363 pstrcat(buf, buf_size, "signed ");
2364 switch(bt) {
2365 case VT_VOID:
2366 tstr = "void";
2367 goto add_tstr;
2368 case VT_BOOL:
2369 tstr = "_Bool";
2370 goto add_tstr;
2371 case VT_BYTE:
2372 tstr = "char";
2373 goto add_tstr;
2374 case VT_SHORT:
2375 tstr = "short";
2376 goto add_tstr;
2377 case VT_INT:
2378 tstr = "int";
2379 goto add_tstr;
2380 case VT_LONG:
2381 tstr = "long";
2382 goto add_tstr;
2383 case VT_LLONG:
2384 tstr = "long long";
2385 goto add_tstr;
2386 case VT_FLOAT:
2387 tstr = "float";
2388 goto add_tstr;
2389 case VT_DOUBLE:
2390 tstr = "double";
2391 goto add_tstr;
2392 case VT_LDOUBLE:
2393 tstr = "long double";
2394 add_tstr:
2395 pstrcat(buf, buf_size, tstr);
2396 break;
2397 case VT_ENUM:
2398 case VT_STRUCT:
2399 if (bt == VT_STRUCT)
2400 tstr = "struct ";
2401 else
2402 tstr = "enum ";
2403 pstrcat(buf, buf_size, tstr);
2404 v = type->ref->v & ~SYM_STRUCT;
2405 if (v >= SYM_FIRST_ANOM)
2406 pstrcat(buf, buf_size, "<anonymous>");
2407 else
2408 pstrcat(buf, buf_size, get_tok_str(v, NULL));
2409 break;
2410 case VT_FUNC:
2411 s = type->ref;
2412 type_to_str(buf, buf_size, &s->type, varstr);
2413 pstrcat(buf, buf_size, "(");
2414 sa = s->next;
2415 while (sa != NULL) {
2416 type_to_str(buf1, sizeof(buf1), &sa->type, NULL);
2417 pstrcat(buf, buf_size, buf1);
2418 sa = sa->next;
2419 if (sa)
2420 pstrcat(buf, buf_size, ", ");
2422 pstrcat(buf, buf_size, ")");
2423 goto no_var;
2424 case VT_PTR:
2425 s = type->ref;
2426 if (t & VT_ARRAY) {
2427 snprintf(buf1, sizeof(buf1), "%s[%ld]", varstr ? varstr : "", s->c);
2428 type_to_str(buf, buf_size, &s->type, buf1);
2429 goto no_var;
2431 pstrcpy(buf1, sizeof(buf1), "*");
2432 if (t & VT_CONSTANT)
2433 pstrcat(buf1, buf_size, "const ");
2434 if (t & VT_VOLATILE)
2435 pstrcat(buf1, buf_size, "volatile ");
2436 if (varstr)
2437 pstrcat(buf1, sizeof(buf1), varstr);
2438 type_to_str(buf, buf_size, &s->type, buf1);
2439 goto no_var;
2441 if (varstr) {
2442 pstrcat(buf, buf_size, " ");
2443 pstrcat(buf, buf_size, varstr);
2445 no_var: ;
2448 /* verify type compatibility to store vtop in 'dt' type, and generate
2449 casts if needed. */
2450 static void gen_assign_cast(CType *dt)
2452 CType *st, *type1, *type2, tmp_type1, tmp_type2;
2453 char buf1[256], buf2[256];
2454 int dbt, sbt;
2456 st = &vtop->type; /* source type */
2457 dbt = dt->t & VT_BTYPE;
2458 sbt = st->t & VT_BTYPE;
2459 if (sbt == VT_VOID || dbt == VT_VOID) {
2460 if (sbt == VT_VOID && dbt == VT_VOID)
2461 ; /*
2462 It is Ok if both are void
2463 A test program:
2464 void func1() {}
2465 void func2() {
2466 return func1();
2468 gcc accepts this program
2470 else
2471 tcc_error("cannot cast from/to void");
2473 if (dt->t & VT_CONSTANT)
2474 tcc_warning("assignment of read-only location");
2475 switch(dbt) {
2476 case VT_PTR:
2477 /* special cases for pointers */
2478 /* '0' can also be a pointer */
2479 if (is_null_pointer(vtop))
2480 goto type_ok;
2481 /* accept implicit pointer to integer cast with warning */
2482 if (is_integer_btype(sbt)) {
2483 tcc_warning("assignment makes pointer from integer without a cast");
2484 goto type_ok;
2486 type1 = pointed_type(dt);
2487 /* a function is implicitely a function pointer */
2488 if (sbt == VT_FUNC) {
2489 if ((type1->t & VT_BTYPE) != VT_VOID &&
2490 !is_compatible_types(pointed_type(dt), st))
2491 tcc_warning("assignment from incompatible pointer type");
2492 goto type_ok;
2494 if (sbt != VT_PTR)
2495 goto error;
2496 type2 = pointed_type(st);
2497 if ((type1->t & VT_BTYPE) == VT_VOID ||
2498 (type2->t & VT_BTYPE) == VT_VOID) {
2499 /* void * can match anything */
2500 } else {
2501 /* exact type match, except for unsigned */
2502 tmp_type1 = *type1;
2503 tmp_type2 = *type2;
2504 tmp_type1.t &= ~(VT_DEFSIGN | VT_UNSIGNED | VT_CONSTANT |
2505 VT_VOLATILE);
2506 tmp_type2.t &= ~(VT_DEFSIGN | VT_UNSIGNED | VT_CONSTANT |
2507 VT_VOLATILE);
2508 if (!is_compatible_types(&tmp_type1, &tmp_type2))
2509 tcc_warning("assignment from incompatible pointer type");
2511 /* check const and volatile */
2512 if ((!(type1->t & VT_CONSTANT) && (type2->t & VT_CONSTANT)) ||
2513 (!(type1->t & VT_VOLATILE) && (type2->t & VT_VOLATILE)))
2514 tcc_warning("assignment discards qualifiers from pointer target type");
2515 break;
2516 case VT_BYTE:
2517 case VT_SHORT:
2518 case VT_INT:
2519 case VT_LLONG:
2520 if (sbt == VT_PTR || sbt == VT_FUNC) {
2521 tcc_warning("assignment makes integer from pointer without a cast");
2523 /* XXX: more tests */
2524 break;
2525 case VT_STRUCT:
2526 tmp_type1 = *dt;
2527 tmp_type2 = *st;
2528 tmp_type1.t &= ~(VT_CONSTANT | VT_VOLATILE);
2529 tmp_type2.t &= ~(VT_CONSTANT | VT_VOLATILE);
2530 if (!is_compatible_types(&tmp_type1, &tmp_type2)) {
2531 error:
2532 type_to_str(buf1, sizeof(buf1), st, NULL);
2533 type_to_str(buf2, sizeof(buf2), dt, NULL);
2534 tcc_error("cannot cast '%s' to '%s'", buf1, buf2);
2536 break;
2538 type_ok:
2539 gen_cast(dt);
2542 /* store vtop in lvalue pushed on stack */
2543 ST_FUNC void vstore(void)
2545 int sbt, dbt, ft, r, t, size, align, bit_size, bit_pos, rc, delayed_cast;
2547 ft = vtop[-1].type.t;
2548 sbt = vtop->type.t & VT_BTYPE;
2549 dbt = ft & VT_BTYPE;
2550 if ((((sbt == VT_INT || sbt == VT_SHORT) && dbt == VT_BYTE) ||
2551 (sbt == VT_INT && dbt == VT_SHORT))
2552 && !(vtop->type.t & VT_BITFIELD)) {
2553 /* optimize char/short casts */
2554 delayed_cast = VT_MUSTCAST;
2555 vtop->type.t = (ft & VT_TYPE & ~VT_BITFIELD &
2556 ((1 << VT_STRUCT_SHIFT) - 1));
2557 /* XXX: factorize */
2558 if (ft & VT_CONSTANT)
2559 tcc_warning("assignment of read-only location");
2560 } else {
2561 delayed_cast = 0;
2562 if (!(ft & VT_BITFIELD))
2563 gen_assign_cast(&vtop[-1].type);
2566 if (sbt == VT_STRUCT) {
2567 /* if structure, only generate pointer */
2568 /* structure assignment : generate memcpy */
2569 /* XXX: optimize if small size */
2570 if (!nocode_wanted) {
2571 size = type_size(&vtop->type, &align);
2573 /* destination */
2574 vswap();
2575 vtop->type.t = VT_PTR;
2576 gaddrof();
2578 /* address of memcpy() */
2579 #ifdef TCC_ARM_EABI
2580 if(!(align & 7))
2581 vpush_global_sym(&func_old_type, TOK_memcpy8);
2582 else if(!(align & 3))
2583 vpush_global_sym(&func_old_type, TOK_memcpy4);
2584 else
2585 #endif
2586 /* Use memmove, rather than memcpy, as dest and src may be same: */
2587 vpush_global_sym(&func_old_type, TOK_memmove);
2589 vswap();
2590 /* source */
2591 vpushv(vtop - 2);
2592 vtop->type.t = VT_PTR;
2593 gaddrof();
2594 /* type size */
2595 vpushi(size);
2596 gfunc_call(3);
2597 } else {
2598 vswap();
2599 vpop();
2601 /* leave source on stack */
2602 } else if (ft & VT_BITFIELD) {
2603 /* bitfield store handling */
2605 /* save lvalue as expression result (example: s.b = s.a = n;) */
2606 vdup(), vtop[-1] = vtop[-2];
2608 bit_pos = (ft >> VT_STRUCT_SHIFT) & 0x3f;
2609 bit_size = (ft >> (VT_STRUCT_SHIFT + 6)) & 0x3f;
2610 /* remove bit field info to avoid loops */
2611 vtop[-1].type.t = ft & ~VT_BITFIELD & ((1 << VT_STRUCT_SHIFT) - 1);
2613 if((ft & VT_BTYPE) == VT_BOOL) {
2614 gen_cast(&vtop[-1].type);
2615 vtop[-1].type.t = (vtop[-1].type.t & ~VT_BTYPE) | (VT_BYTE | VT_UNSIGNED);
2618 /* duplicate destination */
2619 vdup();
2620 vtop[-1] = vtop[-2];
2622 /* mask and shift source */
2623 if((ft & VT_BTYPE) != VT_BOOL) {
2624 if((ft & VT_BTYPE) == VT_LLONG) {
2625 vpushll((1ULL << bit_size) - 1ULL);
2626 } else {
2627 vpushi((1 << bit_size) - 1);
2629 gen_op('&');
2631 vpushi(bit_pos);
2632 gen_op(TOK_SHL);
2633 /* load destination, mask and or with source */
2634 vswap();
2635 if((ft & VT_BTYPE) == VT_LLONG) {
2636 vpushll(~(((1ULL << bit_size) - 1ULL) << bit_pos));
2637 } else {
2638 vpushi(~(((1 << bit_size) - 1) << bit_pos));
2640 gen_op('&');
2641 gen_op('|');
2642 /* store result */
2643 vstore();
2644 /* ... and discard */
2645 vpop();
2647 } else {
2648 if (!nocode_wanted) {
2649 #ifdef CONFIG_TCC_BCHECK
2650 /* bound check case */
2651 if (vtop[-1].r & VT_MUSTBOUND) {
2652 vswap();
2653 gbound();
2654 vswap();
2656 #endif
2657 rc = RC_INT;
2658 if (is_float(ft)) {
2659 rc = RC_FLOAT;
2660 #ifdef TCC_TARGET_X86_64
2661 if ((ft & VT_BTYPE) == VT_LDOUBLE) {
2662 rc = RC_ST0;
2663 } else if ((ft & VT_BTYPE) == VT_QFLOAT) {
2664 rc = RC_FRET;
2666 #endif
2668 r = gv(rc); /* generate value */
2669 /* if lvalue was saved on stack, must read it */
2670 if ((vtop[-1].r & VT_VALMASK) == VT_LLOCAL) {
2671 SValue sv;
2672 t = get_reg(RC_INT);
2673 #if defined(TCC_TARGET_ARM64) || defined(TCC_TARGET_X86_64)
2674 sv.type.t = VT_PTR;
2675 #else
2676 sv.type.t = VT_INT;
2677 #endif
2678 sv.r = VT_LOCAL | VT_LVAL;
2679 sv.c.i = vtop[-1].c.i;
2680 load(t, &sv);
2681 vtop[-1].r = t | VT_LVAL;
2683 /* two word case handling : store second register at word + 4 (or +8 for x86-64) */
2684 #if defined(TCC_TARGET_ARM64) || defined(TCC_TARGET_X86_64)
2685 if (((ft & VT_BTYPE) == VT_QLONG) || ((ft & VT_BTYPE) == VT_QFLOAT)) {
2686 int addr_type = VT_LLONG, load_size = 8, load_type = ((vtop->type.t & VT_BTYPE) == VT_QLONG) ? VT_LLONG : VT_DOUBLE;
2687 #else
2688 if ((ft & VT_BTYPE) == VT_LLONG) {
2689 int addr_type = VT_INT, load_size = 4, load_type = VT_INT;
2690 #endif
2691 vtop[-1].type.t = load_type;
2692 store(r, vtop - 1);
2693 vswap();
2694 /* convert to int to increment easily */
2695 vtop->type.t = addr_type;
2696 gaddrof();
2697 vpushi(load_size);
2698 gen_op('+');
2699 vtop->r |= VT_LVAL;
2700 vswap();
2701 vtop[-1].type.t = load_type;
2702 /* XXX: it works because r2 is spilled last ! */
2703 store(vtop->r2, vtop - 1);
2704 } else {
2705 store(r, vtop - 1);
2708 vswap();
2709 vtop--; /* NOT vpop() because on x86 it would flush the fp stack */
2710 vtop->r |= delayed_cast;
2714 /* post defines POST/PRE add. c is the token ++ or -- */
2715 ST_FUNC void inc(int post, int c)
2717 test_lvalue();
2718 vdup(); /* save lvalue */
2719 if (post) {
2720 if (!nocode_wanted)
2721 gv_dup(); /* duplicate value */
2722 else
2723 vdup(); /* duplicate value */
2724 vrotb(3);
2725 vrotb(3);
2727 /* add constant */
2728 vpushi(c - TOK_MID);
2729 gen_op('+');
2730 vstore(); /* store value */
2731 if (post)
2732 vpop(); /* if post op, return saved value */
2735 /* Parse GNUC __attribute__ extension. Currently, the following
2736 extensions are recognized:
2737 - aligned(n) : set data/function alignment.
2738 - packed : force data alignment to 1
2739 - section(x) : generate data/code in this section.
2740 - unused : currently ignored, but may be used someday.
2741 - regparm(n) : pass function parameters in registers (i386 only)
2743 static void parse_attribute(AttributeDef *ad)
2745 int t, n;
2747 while (tok == TOK_ATTRIBUTE1 || tok == TOK_ATTRIBUTE2) {
2748 next();
2749 skip('(');
2750 skip('(');
2751 while (tok != ')') {
2752 if (tok < TOK_IDENT)
2753 expect("attribute name");
2754 t = tok;
2755 next();
2756 switch(t) {
2757 case TOK_SECTION1:
2758 case TOK_SECTION2:
2759 skip('(');
2760 if (tok != TOK_STR)
2761 expect("section name");
2762 ad->section = find_section(tcc_state, (char *)tokc.cstr->data);
2763 next();
2764 skip(')');
2765 break;
2766 case TOK_ALIAS1:
2767 case TOK_ALIAS2:
2768 skip('(');
2769 if (tok != TOK_STR)
2770 expect("alias(\"target\")");
2771 ad->alias_target = /* save string as token, for later */
2772 tok_alloc((char*)tokc.cstr->data, tokc.cstr->size-1)->tok;
2773 next();
2774 skip(')');
2775 break;
2776 case TOK_VISIBILITY1:
2777 case TOK_VISIBILITY2:
2778 skip('(');
2779 if (tok != TOK_STR)
2780 expect("visibility(\"default|hidden|internal|protected\")");
2781 if (!strcmp (tokc.cstr->data, "default"))
2782 ad->a.visibility = STV_DEFAULT;
2783 else if (!strcmp (tokc.cstr->data, "hidden"))
2784 ad->a.visibility = STV_HIDDEN;
2785 else if (!strcmp (tokc.cstr->data, "internal"))
2786 ad->a.visibility = STV_INTERNAL;
2787 else if (!strcmp (tokc.cstr->data, "protected"))
2788 ad->a.visibility = STV_PROTECTED;
2789 else
2790 expect("visibility(\"default|hidden|internal|protected\")");
2791 next();
2792 skip(')');
2793 break;
2794 case TOK_ALIGNED1:
2795 case TOK_ALIGNED2:
2796 if (tok == '(') {
2797 next();
2798 n = expr_const();
2799 if (n <= 0 || (n & (n - 1)) != 0)
2800 tcc_error("alignment must be a positive power of two");
2801 skip(')');
2802 } else {
2803 n = MAX_ALIGN;
2805 ad->a.aligned = n;
2806 break;
2807 case TOK_PACKED1:
2808 case TOK_PACKED2:
2809 ad->a.packed = 1;
2810 break;
2811 case TOK_WEAK1:
2812 case TOK_WEAK2:
2813 ad->a.weak = 1;
2814 break;
2815 case TOK_UNUSED1:
2816 case TOK_UNUSED2:
2817 /* currently, no need to handle it because tcc does not
2818 track unused objects */
2819 break;
2820 case TOK_NORETURN1:
2821 case TOK_NORETURN2:
2822 /* currently, no need to handle it because tcc does not
2823 track unused objects */
2824 break;
2825 case TOK_CDECL1:
2826 case TOK_CDECL2:
2827 case TOK_CDECL3:
2828 ad->a.func_call = FUNC_CDECL;
2829 break;
2830 case TOK_STDCALL1:
2831 case TOK_STDCALL2:
2832 case TOK_STDCALL3:
2833 ad->a.func_call = FUNC_STDCALL;
2834 break;
2835 #ifdef TCC_TARGET_I386
2836 case TOK_REGPARM1:
2837 case TOK_REGPARM2:
2838 skip('(');
2839 n = expr_const();
2840 if (n > 3)
2841 n = 3;
2842 else if (n < 0)
2843 n = 0;
2844 if (n > 0)
2845 ad->a.func_call = FUNC_FASTCALL1 + n - 1;
2846 skip(')');
2847 break;
2848 case TOK_FASTCALL1:
2849 case TOK_FASTCALL2:
2850 case TOK_FASTCALL3:
2851 ad->a.func_call = FUNC_FASTCALLW;
2852 break;
2853 #endif
2854 case TOK_MODE:
2855 skip('(');
2856 switch(tok) {
2857 case TOK_MODE_DI:
2858 ad->a.mode = VT_LLONG + 1;
2859 break;
2860 case TOK_MODE_HI:
2861 ad->a.mode = VT_SHORT + 1;
2862 break;
2863 case TOK_MODE_SI:
2864 ad->a.mode = VT_INT + 1;
2865 break;
2866 default:
2867 tcc_warning("__mode__(%s) not supported\n", get_tok_str(tok, NULL));
2868 break;
2870 next();
2871 skip(')');
2872 break;
2873 case TOK_DLLEXPORT:
2874 ad->a.func_export = 1;
2875 break;
2876 case TOK_DLLIMPORT:
2877 ad->a.func_import = 1;
2878 break;
2879 default:
2880 if (tcc_state->warn_unsupported)
2881 tcc_warning("'%s' attribute ignored", get_tok_str(t, NULL));
2882 /* skip parameters */
2883 if (tok == '(') {
2884 int parenthesis = 0;
2885 do {
2886 if (tok == '(')
2887 parenthesis++;
2888 else if (tok == ')')
2889 parenthesis--;
2890 next();
2891 } while (parenthesis && tok != -1);
2893 break;
2895 if (tok != ',')
2896 break;
2897 next();
2899 skip(')');
2900 skip(')');
2904 /* enum/struct/union declaration. u is either VT_ENUM or VT_STRUCT */
2905 static void struct_decl(CType *type, int u, int tdef)
2907 int a, v, size, align, maxalign, c, offset, flexible;
2908 int bit_size, bit_pos, bsize, bt, lbit_pos, prevbt;
2909 Sym *s, *ss, *ass, **ps;
2910 AttributeDef ad;
2911 CType type1, btype;
2913 a = tok; /* save decl type */
2914 next();
2915 if (tok != '{') {
2916 v = tok;
2917 next();
2918 /* struct already defined ? return it */
2919 if (v < TOK_IDENT)
2920 expect("struct/union/enum name");
2921 s = struct_find(v);
2922 if (s) {
2923 if (s->type.t != a)
2924 tcc_error("invalid type");
2925 goto do_decl;
2926 } else if (tok >= TOK_IDENT && !tdef)
2927 tcc_error("unknown struct/union/enum");
2928 } else {
2929 v = anon_sym++;
2931 type1.t = a;
2932 type1.ref = NULL;
2933 /* we put an undefined size for struct/union */
2934 s = sym_push(v | SYM_STRUCT, &type1, 0, -1);
2935 s->r = 0; /* default alignment is zero as gcc */
2936 /* put struct/union/enum name in type */
2937 do_decl:
2938 type->t = u;
2939 type->ref = s;
2941 if (tok == '{') {
2942 next();
2943 if (s->c != -1)
2944 tcc_error("struct/union/enum already defined");
2945 /* cannot be empty */
2946 c = 0;
2947 /* non empty enums are not allowed */
2948 if (a == TOK_ENUM) {
2949 for(;;) {
2950 v = tok;
2951 if (v < TOK_UIDENT)
2952 expect("identifier");
2953 ss = sym_find(v);
2954 if (ss && !local_stack)
2955 tcc_error("redefinition of enumerator '%s'",
2956 get_tok_str(v, NULL));
2957 next();
2958 if (tok == '=') {
2959 next();
2960 c = expr_const();
2962 /* enum symbols have static storage */
2963 ss = sym_push(v, &int_type, VT_CONST, c);
2964 ss->type.t |= VT_STATIC;
2965 if (tok != ',')
2966 break;
2967 next();
2968 c++;
2969 /* NOTE: we accept a trailing comma */
2970 if (tok == '}')
2971 break;
2973 s->c = type_size(&int_type, &align);
2974 skip('}');
2975 } else {
2976 maxalign = 1;
2977 ps = &s->next;
2978 prevbt = VT_INT;
2979 bit_pos = 0;
2980 offset = 0;
2981 flexible = 0;
2982 while (tok != '}') {
2983 parse_btype(&btype, &ad);
2984 while (1) {
2985 if (flexible)
2986 tcc_error("flexible array member '%s' not at the end of struct",
2987 get_tok_str(v, NULL));
2988 bit_size = -1;
2989 v = 0;
2990 type1 = btype;
2991 if (tok != ':') {
2992 type_decl(&type1, &ad, &v, TYPE_DIRECT | TYPE_ABSTRACT);
2993 if (v == 0) {
2994 if ((type1.t & VT_BTYPE) != VT_STRUCT)
2995 expect("identifier");
2996 else {
2997 int v = btype.ref->v;
2998 if (!(v & SYM_FIELD) && (v & ~SYM_STRUCT) < SYM_FIRST_ANOM) {
2999 if (tcc_state->ms_extensions == 0)
3000 expect("identifier");
3004 if (type_size(&type1, &align) < 0) {
3005 if ((a == TOK_STRUCT) && (type1.t & VT_ARRAY) && c)
3006 flexible = 1;
3007 else
3008 tcc_error("field '%s' has incomplete type",
3009 get_tok_str(v, NULL));
3011 if ((type1.t & VT_BTYPE) == VT_FUNC ||
3012 (type1.t & (VT_TYPEDEF | VT_STATIC | VT_EXTERN | VT_INLINE)))
3013 tcc_error("invalid type for '%s'",
3014 get_tok_str(v, NULL));
3016 if (tok == ':') {
3017 next();
3018 bit_size = expr_const();
3019 /* XXX: handle v = 0 case for messages */
3020 if (bit_size < 0)
3021 tcc_error("negative width in bit-field '%s'",
3022 get_tok_str(v, NULL));
3023 if (v && bit_size == 0)
3024 tcc_error("zero width for bit-field '%s'",
3025 get_tok_str(v, NULL));
3027 size = type_size(&type1, &align);
3028 if (ad.a.aligned) {
3029 if (align < ad.a.aligned)
3030 align = ad.a.aligned;
3031 } else if (ad.a.packed) {
3032 align = 1;
3033 } else if (*tcc_state->pack_stack_ptr) {
3034 if (align > *tcc_state->pack_stack_ptr)
3035 align = *tcc_state->pack_stack_ptr;
3037 lbit_pos = 0;
3038 if (bit_size >= 0) {
3039 bt = type1.t & VT_BTYPE;
3040 if (bt != VT_INT &&
3041 bt != VT_BYTE &&
3042 bt != VT_SHORT &&
3043 bt != VT_BOOL &&
3044 bt != VT_ENUM &&
3045 bt != VT_LLONG)
3046 tcc_error("bitfields must have scalar type");
3047 bsize = size * 8;
3048 if (bit_size > bsize) {
3049 tcc_error("width of '%s' exceeds its type",
3050 get_tok_str(v, NULL));
3051 } else if (bit_size == bsize) {
3052 /* no need for bit fields */
3053 bit_pos = 0;
3054 } else if (bit_size == 0) {
3055 /* XXX: what to do if only padding in a
3056 structure ? */
3057 /* zero size: means to pad */
3058 bit_pos = 0;
3059 } else {
3060 /* we do not have enough room ?
3061 did the type change?
3062 is it a union? */
3063 if ((bit_pos + bit_size) > bsize ||
3064 bt != prevbt || a == TOK_UNION)
3065 bit_pos = 0;
3066 lbit_pos = bit_pos;
3067 /* XXX: handle LSB first */
3068 type1.t |= VT_BITFIELD |
3069 (bit_pos << VT_STRUCT_SHIFT) |
3070 (bit_size << (VT_STRUCT_SHIFT + 6));
3071 bit_pos += bit_size;
3073 prevbt = bt;
3074 } else {
3075 bit_pos = 0;
3077 if (v != 0 || (type1.t & VT_BTYPE) == VT_STRUCT) {
3078 /* add new memory data only if starting
3079 bit field */
3080 if (lbit_pos == 0) {
3081 if (a == TOK_STRUCT) {
3082 c = (c + align - 1) & -align;
3083 offset = c;
3084 if (size > 0)
3085 c += size;
3086 } else {
3087 offset = 0;
3088 if (size > c)
3089 c = size;
3091 if (align > maxalign)
3092 maxalign = align;
3094 #if 0
3095 printf("add field %s offset=%d",
3096 get_tok_str(v, NULL), offset);
3097 if (type1.t & VT_BITFIELD) {
3098 printf(" pos=%d size=%d",
3099 (type1.t >> VT_STRUCT_SHIFT) & 0x3f,
3100 (type1.t >> (VT_STRUCT_SHIFT + 6)) & 0x3f);
3102 printf("\n");
3103 #endif
3105 if (v == 0 && (type1.t & VT_BTYPE) == VT_STRUCT) {
3106 ass = type1.ref;
3107 while ((ass = ass->next) != NULL) {
3108 ss = sym_push(ass->v, &ass->type, 0, offset + ass->c);
3109 *ps = ss;
3110 ps = &ss->next;
3112 } else if (v) {
3113 ss = sym_push(v | SYM_FIELD, &type1, 0, offset);
3114 *ps = ss;
3115 ps = &ss->next;
3117 if (tok == ';' || tok == TOK_EOF)
3118 break;
3119 skip(',');
3121 skip(';');
3123 skip('}');
3124 /* store size and alignment */
3125 s->c = (c + maxalign - 1) & -maxalign;
3126 s->r = maxalign;
3131 /* return 1 if basic type is a type size (short, long, long long) */
3132 ST_FUNC int is_btype_size(int bt)
3134 return bt == VT_SHORT || bt == VT_LONG || bt == VT_LLONG;
3137 /* return 0 if no type declaration. otherwise, return the basic type
3138 and skip it.
3140 static int parse_btype(CType *type, AttributeDef *ad)
3142 int t, u, bt_size, complete, type_found, typespec_found;
3143 Sym *s;
3144 CType type1;
3146 memset(ad, 0, sizeof(AttributeDef));
3147 complete = 0;
3148 type_found = 0;
3149 typespec_found = 0;
3150 t = 0;
3151 while(1) {
3152 switch(tok) {
3153 case TOK_EXTENSION:
3154 /* currently, we really ignore extension */
3155 next();
3156 continue;
3158 /* basic types */
3159 case TOK_CHAR:
3160 u = VT_BYTE;
3161 basic_type:
3162 next();
3163 basic_type1:
3164 if (complete)
3165 tcc_error("too many basic types");
3166 t |= u;
3167 bt_size = is_btype_size (u & VT_BTYPE);
3168 if (u == VT_INT || (!bt_size && !(t & VT_TYPEDEF)))
3169 complete = 1;
3170 typespec_found = 1;
3171 break;
3172 case TOK_VOID:
3173 u = VT_VOID;
3174 goto basic_type;
3175 case TOK_SHORT:
3176 u = VT_SHORT;
3177 goto basic_type;
3178 case TOK_INT:
3179 u = VT_INT;
3180 goto basic_type;
3181 case TOK_LONG:
3182 next();
3183 if ((t & VT_BTYPE) == VT_DOUBLE) {
3184 #ifndef TCC_TARGET_PE
3185 t = (t & ~VT_BTYPE) | VT_LDOUBLE;
3186 #endif
3187 } else if ((t & VT_BTYPE) == VT_LONG) {
3188 t = (t & ~VT_BTYPE) | VT_LLONG;
3189 } else {
3190 u = VT_LONG;
3191 goto basic_type1;
3193 break;
3194 #ifdef TCC_TARGET_ARM64
3195 case TOK_UINT128:
3196 /* GCC's __uint128_t appears in some Linux header files. Make it a
3197 synonym for long double to get the size and alignment right. */
3198 u = VT_LDOUBLE;
3199 goto basic_type;
3200 #endif
3201 case TOK_BOOL:
3202 u = VT_BOOL;
3203 goto basic_type;
3204 case TOK_FLOAT:
3205 u = VT_FLOAT;
3206 goto basic_type;
3207 case TOK_DOUBLE:
3208 next();
3209 if ((t & VT_BTYPE) == VT_LONG) {
3210 #ifdef TCC_TARGET_PE
3211 t = (t & ~VT_BTYPE) | VT_DOUBLE;
3212 #else
3213 t = (t & ~VT_BTYPE) | VT_LDOUBLE;
3214 #endif
3215 } else {
3216 u = VT_DOUBLE;
3217 goto basic_type1;
3219 break;
3220 case TOK_ENUM:
3221 struct_decl(&type1, VT_ENUM, t & (VT_TYPEDEF | VT_EXTERN));
3222 basic_type2:
3223 u = type1.t;
3224 type->ref = type1.ref;
3225 goto basic_type1;
3226 case TOK_STRUCT:
3227 case TOK_UNION:
3228 struct_decl(&type1, VT_STRUCT, t & (VT_TYPEDEF | VT_EXTERN));
3229 goto basic_type2;
3231 /* type modifiers */
3232 case TOK_CONST1:
3233 case TOK_CONST2:
3234 case TOK_CONST3:
3235 t |= VT_CONSTANT;
3236 next();
3237 break;
3238 case TOK_VOLATILE1:
3239 case TOK_VOLATILE2:
3240 case TOK_VOLATILE3:
3241 t |= VT_VOLATILE;
3242 next();
3243 break;
3244 case TOK_SIGNED1:
3245 case TOK_SIGNED2:
3246 case TOK_SIGNED3:
3247 if ((t & (VT_DEFSIGN|VT_UNSIGNED)) == (VT_DEFSIGN|VT_UNSIGNED))
3248 tcc_error("signed and unsigned modifier");
3249 typespec_found = 1;
3250 t |= VT_DEFSIGN;
3251 next();
3252 break;
3253 case TOK_REGISTER:
3254 case TOK_AUTO:
3255 case TOK_RESTRICT1:
3256 case TOK_RESTRICT2:
3257 case TOK_RESTRICT3:
3258 next();
3259 break;
3260 case TOK_UNSIGNED:
3261 if ((t & (VT_DEFSIGN|VT_UNSIGNED)) == VT_DEFSIGN)
3262 tcc_error("signed and unsigned modifier");
3263 t |= VT_DEFSIGN | VT_UNSIGNED;
3264 next();
3265 typespec_found = 1;
3266 break;
3268 /* storage */
3269 case TOK_EXTERN:
3270 t |= VT_EXTERN;
3271 next();
3272 break;
3273 case TOK_STATIC:
3274 t |= VT_STATIC;
3275 next();
3276 break;
3277 case TOK_TYPEDEF:
3278 t |= VT_TYPEDEF;
3279 next();
3280 break;
3281 case TOK_INLINE1:
3282 case TOK_INLINE2:
3283 case TOK_INLINE3:
3284 t |= VT_INLINE;
3285 next();
3286 break;
3288 /* GNUC attribute */
3289 case TOK_ATTRIBUTE1:
3290 case TOK_ATTRIBUTE2:
3291 parse_attribute(ad);
3292 if (ad->a.mode) {
3293 u = ad->a.mode -1;
3294 t = (t & ~VT_BTYPE) | u;
3296 break;
3297 /* GNUC typeof */
3298 case TOK_TYPEOF1:
3299 case TOK_TYPEOF2:
3300 case TOK_TYPEOF3:
3301 next();
3302 parse_expr_type(&type1);
3303 /* remove all storage modifiers except typedef */
3304 type1.t &= ~(VT_STORAGE&~VT_TYPEDEF);
3305 goto basic_type2;
3306 default:
3307 if (typespec_found)
3308 goto the_end;
3309 s = sym_find(tok);
3310 if (!s || !(s->type.t & VT_TYPEDEF))
3311 goto the_end;
3312 t |= (s->type.t & ~VT_TYPEDEF);
3313 if ((t & VT_ARRAY) &&
3314 t & (VT_CONSTANT | VT_VOLATILE) & ~s->type.ref->type.t) {
3315 /* This is a case like "typedef int T[1]; const T x;"
3316 in which which we must make a copy of the typedef
3317 type so that we can add the type qualifiers to it. */
3318 type->ref = sym_push(SYM_FIELD, &s->type.ref->type,
3319 0, s->type.ref->c);
3320 type->ref->type.t |= t & (VT_CONSTANT | VT_VOLATILE);
3322 else
3323 type->ref = s->type.ref;
3324 if (s->r) {
3325 /* get attributes from typedef */
3326 if (0 == ad->a.aligned)
3327 ad->a.aligned = s->a.aligned;
3328 if (0 == ad->a.func_call)
3329 ad->a.func_call = s->a.func_call;
3330 ad->a.packed |= s->a.packed;
3332 next();
3333 typespec_found = 1;
3334 break;
3336 type_found = 1;
3338 the_end:
3339 if (tcc_state->char_is_unsigned) {
3340 if ((t & (VT_DEFSIGN|VT_BTYPE)) == VT_BYTE)
3341 t |= VT_UNSIGNED;
3344 /* long is never used as type */
3345 if ((t & VT_BTYPE) == VT_LONG)
3346 #if (!defined TCC_TARGET_X86_64 && !defined TCC_TARGET_ARM64) || \
3347 defined TCC_TARGET_PE
3348 t = (t & ~VT_BTYPE) | VT_INT;
3349 #else
3350 t = (t & ~VT_BTYPE) | VT_LLONG;
3351 #endif
3352 type->t = t;
3353 return type_found;
3356 /* convert a function parameter type (array to pointer and function to
3357 function pointer) */
3358 static inline void convert_parameter_type(CType *pt)
3360 /* remove const and volatile qualifiers (XXX: const could be used
3361 to indicate a const function parameter */
3362 pt->t &= ~(VT_CONSTANT | VT_VOLATILE);
3363 /* array must be transformed to pointer according to ANSI C */
3364 pt->t &= ~VT_ARRAY;
3365 if ((pt->t & VT_BTYPE) == VT_FUNC) {
3366 mk_pointer(pt);
3370 ST_FUNC void parse_asm_str(CString *astr)
3372 skip('(');
3373 /* read the string */
3374 if (tok != TOK_STR)
3375 expect("string constant");
3376 cstr_new(astr);
3377 while (tok == TOK_STR) {
3378 /* XXX: add \0 handling too ? */
3379 cstr_cat(astr, tokc.cstr->data);
3380 next();
3382 cstr_ccat(astr, '\0');
3385 /* Parse an asm label and return the token */
3386 static int asm_label_instr(void)
3388 int v;
3389 CString astr;
3391 next();
3392 parse_asm_str(&astr);
3393 skip(')');
3394 #ifdef ASM_DEBUG
3395 printf("asm_alias: \"%s\"\n", (char *)astr.data);
3396 #endif
3397 v = tok_alloc(astr.data, astr.size - 1)->tok;
3398 cstr_free(&astr);
3399 return v;
3402 static void post_type(CType *type, AttributeDef *ad)
3404 int n, l, t1, arg_size, align;
3405 Sym **plast, *s, *first;
3406 AttributeDef ad1;
3407 CType pt;
3409 if (tok == '(') {
3410 /* function declaration */
3411 next();
3412 l = 0;
3413 first = NULL;
3414 plast = &first;
3415 arg_size = 0;
3416 if (tok != ')') {
3417 for(;;) {
3418 /* read param name and compute offset */
3419 if (l != FUNC_OLD) {
3420 if (!parse_btype(&pt, &ad1)) {
3421 if (l) {
3422 tcc_error("invalid type");
3423 } else {
3424 l = FUNC_OLD;
3425 goto old_proto;
3428 l = FUNC_NEW;
3429 if ((pt.t & VT_BTYPE) == VT_VOID && tok == ')')
3430 break;
3431 type_decl(&pt, &ad1, &n, TYPE_DIRECT | TYPE_ABSTRACT);
3432 if ((pt.t & VT_BTYPE) == VT_VOID)
3433 tcc_error("parameter declared as void");
3434 arg_size += (type_size(&pt, &align) + PTR_SIZE - 1) / PTR_SIZE;
3435 } else {
3436 old_proto:
3437 n = tok;
3438 if (n < TOK_UIDENT)
3439 expect("identifier");
3440 pt.t = VT_INT;
3441 next();
3443 convert_parameter_type(&pt);
3444 s = sym_push(n | SYM_FIELD, &pt, 0, 0);
3445 *plast = s;
3446 plast = &s->next;
3447 if (tok == ')')
3448 break;
3449 skip(',');
3450 if (l == FUNC_NEW && tok == TOK_DOTS) {
3451 l = FUNC_ELLIPSIS;
3452 next();
3453 break;
3457 /* if no parameters, then old type prototype */
3458 if (l == 0)
3459 l = FUNC_OLD;
3460 skip(')');
3461 /* NOTE: const is ignored in returned type as it has a special
3462 meaning in gcc / C++ */
3463 type->t &= ~VT_CONSTANT;
3464 /* some ancient pre-K&R C allows a function to return an array
3465 and the array brackets to be put after the arguments, such
3466 that "int c()[]" means something like "int[] c()" */
3467 if (tok == '[') {
3468 next();
3469 skip(']'); /* only handle simple "[]" */
3470 type->t |= VT_PTR;
3472 /* we push a anonymous symbol which will contain the function prototype */
3473 ad->a.func_args = arg_size;
3474 s = sym_push(SYM_FIELD, type, 0, l);
3475 s->a = ad->a;
3476 s->next = first;
3477 type->t = VT_FUNC;
3478 type->ref = s;
3479 } else if (tok == '[') {
3480 /* array definition */
3481 next();
3482 if (tok == TOK_RESTRICT1)
3483 next();
3484 n = -1;
3485 t1 = 0;
3486 if (tok != ']') {
3487 if (!local_stack || nocode_wanted)
3488 vpushi(expr_const());
3489 else gexpr();
3490 if ((vtop->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == VT_CONST) {
3491 n = vtop->c.i;
3492 if (n < 0)
3493 tcc_error("invalid array size");
3494 } else {
3495 if (!is_integer_btype(vtop->type.t & VT_BTYPE))
3496 tcc_error("size of variable length array should be an integer");
3497 t1 = VT_VLA;
3500 skip(']');
3501 /* parse next post type */
3502 post_type(type, ad);
3503 if (type->t == VT_FUNC)
3504 tcc_error("declaration of an array of functions");
3505 t1 |= type->t & VT_VLA;
3507 if (t1 & VT_VLA) {
3508 loc -= type_size(&int_type, &align);
3509 loc &= -align;
3510 n = loc;
3512 vla_runtime_type_size(type, &align);
3513 gen_op('*');
3514 vset(&int_type, VT_LOCAL|VT_LVAL, n);
3515 vswap();
3516 vstore();
3518 if (n != -1)
3519 vpop();
3521 /* we push an anonymous symbol which will contain the array
3522 element type */
3523 s = sym_push(SYM_FIELD, type, 0, n);
3524 type->t = (t1 ? VT_VLA : VT_ARRAY) | VT_PTR;
3525 type->ref = s;
3529 /* Parse a type declaration (except basic type), and return the type
3530 in 'type'. 'td' is a bitmask indicating which kind of type decl is
3531 expected. 'type' should contain the basic type. 'ad' is the
3532 attribute definition of the basic type. It can be modified by
3533 type_decl().
3535 static void type_decl(CType *type, AttributeDef *ad, int *v, int td)
3537 Sym *s;
3538 CType type1, *type2;
3539 int qualifiers, storage;
3541 while (tok == '*') {
3542 qualifiers = 0;
3543 redo:
3544 next();
3545 switch(tok) {
3546 case TOK_CONST1:
3547 case TOK_CONST2:
3548 case TOK_CONST3:
3549 qualifiers |= VT_CONSTANT;
3550 goto redo;
3551 case TOK_VOLATILE1:
3552 case TOK_VOLATILE2:
3553 case TOK_VOLATILE3:
3554 qualifiers |= VT_VOLATILE;
3555 goto redo;
3556 case TOK_RESTRICT1:
3557 case TOK_RESTRICT2:
3558 case TOK_RESTRICT3:
3559 goto redo;
3561 mk_pointer(type);
3562 type->t |= qualifiers;
3565 /* XXX: clarify attribute handling */
3566 if (tok == TOK_ATTRIBUTE1 || tok == TOK_ATTRIBUTE2)
3567 parse_attribute(ad);
3569 /* recursive type */
3570 /* XXX: incorrect if abstract type for functions (e.g. 'int ()') */
3571 type1.t = 0; /* XXX: same as int */
3572 if (tok == '(') {
3573 next();
3574 /* XXX: this is not correct to modify 'ad' at this point, but
3575 the syntax is not clear */
3576 if (tok == TOK_ATTRIBUTE1 || tok == TOK_ATTRIBUTE2)
3577 parse_attribute(ad);
3578 type_decl(&type1, ad, v, td);
3579 skip(')');
3580 } else {
3581 /* type identifier */
3582 if (tok >= TOK_IDENT && (td & TYPE_DIRECT)) {
3583 *v = tok;
3584 next();
3585 } else {
3586 if (!(td & TYPE_ABSTRACT))
3587 expect("identifier");
3588 *v = 0;
3591 storage = type->t & VT_STORAGE;
3592 type->t &= ~VT_STORAGE;
3593 if (storage & VT_STATIC) {
3594 int saved_nocode_wanted = nocode_wanted;
3595 nocode_wanted = 1;
3596 post_type(type, ad);
3597 nocode_wanted = saved_nocode_wanted;
3598 } else
3599 post_type(type, ad);
3600 type->t |= storage;
3601 if (tok == TOK_ATTRIBUTE1 || tok == TOK_ATTRIBUTE2)
3602 parse_attribute(ad);
3604 if (!type1.t)
3605 return;
3606 /* append type at the end of type1 */
3607 type2 = &type1;
3608 for(;;) {
3609 s = type2->ref;
3610 type2 = &s->type;
3611 if (!type2->t) {
3612 *type2 = *type;
3613 break;
3616 *type = type1;
3619 /* compute the lvalue VT_LVAL_xxx needed to match type t. */
3620 ST_FUNC int lvalue_type(int t)
3622 int bt, r;
3623 r = VT_LVAL;
3624 bt = t & VT_BTYPE;
3625 if (bt == VT_BYTE || bt == VT_BOOL)
3626 r |= VT_LVAL_BYTE;
3627 else if (bt == VT_SHORT)
3628 r |= VT_LVAL_SHORT;
3629 else
3630 return r;
3631 if (t & VT_UNSIGNED)
3632 r |= VT_LVAL_UNSIGNED;
3633 return r;
3636 /* indirection with full error checking and bound check */
3637 ST_FUNC void indir(void)
3639 if ((vtop->type.t & VT_BTYPE) != VT_PTR) {
3640 if ((vtop->type.t & VT_BTYPE) == VT_FUNC)
3641 return;
3642 expect("pointer");
3644 if ((vtop->r & VT_LVAL) && !nocode_wanted)
3645 gv(RC_INT);
3646 vtop->type = *pointed_type(&vtop->type);
3647 /* Arrays and functions are never lvalues */
3648 if (!(vtop->type.t & VT_ARRAY) && !(vtop->type.t & VT_VLA)
3649 && (vtop->type.t & VT_BTYPE) != VT_FUNC) {
3650 vtop->r |= lvalue_type(vtop->type.t);
3651 /* if bound checking, the referenced pointer must be checked */
3652 #ifdef CONFIG_TCC_BCHECK
3653 if (tcc_state->do_bounds_check)
3654 vtop->r |= VT_MUSTBOUND;
3655 #endif
3659 /* pass a parameter to a function and do type checking and casting */
3660 static void gfunc_param_typed(Sym *func, Sym *arg)
3662 int func_type;
3663 CType type;
3665 func_type = func->c;
3666 if (func_type == FUNC_OLD ||
3667 (func_type == FUNC_ELLIPSIS && arg == NULL)) {
3668 /* default casting : only need to convert float to double */
3669 if ((vtop->type.t & VT_BTYPE) == VT_FLOAT) {
3670 type.t = VT_DOUBLE;
3671 gen_cast(&type);
3672 } else if (vtop->type.t & VT_BITFIELD) {
3673 type.t = vtop->type.t & (VT_BTYPE | VT_UNSIGNED);
3674 gen_cast(&type);
3676 } else if (arg == NULL) {
3677 tcc_error("too many arguments to function");
3678 } else {
3679 type = arg->type;
3680 type.t &= ~VT_CONSTANT; /* need to do that to avoid false warning */
3681 gen_assign_cast(&type);
3685 /* parse an expression of the form '(type)' or '(expr)' and return its
3686 type */
3687 static void parse_expr_type(CType *type)
3689 int n;
3690 AttributeDef ad;
3692 skip('(');
3693 if (parse_btype(type, &ad)) {
3694 type_decl(type, &ad, &n, TYPE_ABSTRACT);
3695 } else {
3696 expr_type(type);
3698 skip(')');
3701 static void parse_type(CType *type)
3703 AttributeDef ad;
3704 int n;
3706 if (!parse_btype(type, &ad)) {
3707 expect("type");
3709 type_decl(type, &ad, &n, TYPE_ABSTRACT);
3712 static void vpush_tokc(int t)
3714 CType type;
3715 type.t = t;
3716 type.ref = 0;
3717 vsetc(&type, VT_CONST, &tokc);
3720 ST_FUNC void unary(void)
3722 int n, t, align, size, r, sizeof_caller;
3723 CType type;
3724 Sym *s;
3725 AttributeDef ad;
3726 static int in_sizeof = 0;
3728 sizeof_caller = in_sizeof;
3729 in_sizeof = 0;
3730 /* XXX: GCC 2.95.3 does not generate a table although it should be
3731 better here */
3732 tok_next:
3733 switch(tok) {
3734 case TOK_EXTENSION:
3735 next();
3736 goto tok_next;
3737 case TOK_CINT:
3738 case TOK_CCHAR:
3739 case TOK_LCHAR:
3740 vpushi(tokc.i);
3741 next();
3742 break;
3743 case TOK_CUINT:
3744 vpush_tokc(VT_INT | VT_UNSIGNED);
3745 next();
3746 break;
3747 case TOK_CLLONG:
3748 vpush_tokc(VT_LLONG);
3749 next();
3750 break;
3751 case TOK_CULLONG:
3752 vpush_tokc(VT_LLONG | VT_UNSIGNED);
3753 next();
3754 break;
3755 case TOK_CFLOAT:
3756 vpush_tokc(VT_FLOAT);
3757 next();
3758 break;
3759 case TOK_CDOUBLE:
3760 vpush_tokc(VT_DOUBLE);
3761 next();
3762 break;
3763 case TOK_CLDOUBLE:
3764 vpush_tokc(VT_LDOUBLE);
3765 next();
3766 break;
3767 case TOK___FUNCTION__:
3768 if (!gnu_ext)
3769 goto tok_identifier;
3770 /* fall thru */
3771 case TOK___FUNC__:
3773 void *ptr;
3774 int len;
3775 /* special function name identifier */
3776 len = strlen(funcname) + 1;
3777 /* generate char[len] type */
3778 type.t = VT_BYTE;
3779 mk_pointer(&type);
3780 type.t |= VT_ARRAY;
3781 type.ref->c = len;
3782 vpush_ref(&type, data_section, data_section->data_offset, len);
3783 ptr = section_ptr_add(data_section, len);
3784 memcpy(ptr, funcname, len);
3785 next();
3787 break;
3788 case TOK_LSTR:
3789 #ifdef TCC_TARGET_PE
3790 t = VT_SHORT | VT_UNSIGNED;
3791 #else
3792 t = VT_INT;
3793 #endif
3794 goto str_init;
3795 case TOK_STR:
3796 /* string parsing */
3797 t = VT_BYTE;
3798 str_init:
3799 if (tcc_state->warn_write_strings)
3800 t |= VT_CONSTANT;
3801 type.t = t;
3802 mk_pointer(&type);
3803 type.t |= VT_ARRAY;
3804 memset(&ad, 0, sizeof(AttributeDef));
3805 decl_initializer_alloc(&type, &ad, VT_CONST, 2, 0, 0);
3806 break;
3807 case '(':
3808 next();
3809 /* cast ? */
3810 if (parse_btype(&type, &ad)) {
3811 type_decl(&type, &ad, &n, TYPE_ABSTRACT);
3812 skip(')');
3813 /* check ISOC99 compound literal */
3814 if (tok == '{') {
3815 /* data is allocated locally by default */
3816 if (global_expr)
3817 r = VT_CONST;
3818 else
3819 r = VT_LOCAL;
3820 /* all except arrays are lvalues */
3821 if (!(type.t & VT_ARRAY))
3822 r |= lvalue_type(type.t);
3823 memset(&ad, 0, sizeof(AttributeDef));
3824 decl_initializer_alloc(&type, &ad, r, 1, 0, 0);
3825 } else {
3826 if (sizeof_caller) {
3827 vpush(&type);
3828 return;
3830 unary();
3831 gen_cast(&type);
3833 } else if (tok == '{') {
3834 if (const_wanted)
3835 tcc_error("expected constant");
3836 /* save all registers */
3837 save_regs(0);
3838 /* statement expression : we do not accept break/continue
3839 inside as GCC does */
3840 block(NULL, NULL, NULL, NULL, 0, 1);
3841 skip(')');
3842 } else {
3843 gexpr();
3844 skip(')');
3846 break;
3847 case '*':
3848 next();
3849 unary();
3850 indir();
3851 break;
3852 case '&':
3853 next();
3854 unary();
3855 /* functions names must be treated as function pointers,
3856 except for unary '&' and sizeof. Since we consider that
3857 functions are not lvalues, we only have to handle it
3858 there and in function calls. */
3859 /* arrays can also be used although they are not lvalues */
3860 if ((vtop->type.t & VT_BTYPE) != VT_FUNC &&
3861 !(vtop->type.t & VT_ARRAY) && !(vtop->type.t & VT_LLOCAL))
3862 test_lvalue();
3863 mk_pointer(&vtop->type);
3864 gaddrof();
3865 break;
3866 case '!':
3867 next();
3868 unary();
3869 if ((vtop->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == VT_CONST) {
3870 CType boolean;
3871 boolean.t = VT_BOOL;
3872 gen_cast(&boolean);
3873 vtop->c.i = !vtop->c.i;
3874 } else if ((vtop->r & VT_VALMASK) == VT_CMP)
3875 vtop->c.i ^= 1;
3876 else {
3877 save_regs(1);
3878 vseti(VT_JMP, gvtst(1, 0));
3880 break;
3881 case '~':
3882 next();
3883 unary();
3884 vpushi(-1);
3885 gen_op('^');
3886 break;
3887 case '+':
3888 next();
3889 unary();
3890 if ((vtop->type.t & VT_BTYPE) == VT_PTR)
3891 tcc_error("pointer not accepted for unary plus");
3892 /* In order to force cast, we add zero, except for floating point
3893 where we really need an noop (otherwise -0.0 will be transformed
3894 into +0.0). */
3895 if (!is_float(vtop->type.t)) {
3896 vpushi(0);
3897 gen_op('+');
3899 break;
3900 case TOK_SIZEOF:
3901 case TOK_ALIGNOF1:
3902 case TOK_ALIGNOF2:
3903 t = tok;
3904 next();
3905 in_sizeof++;
3906 unary_type(&type); // Perform a in_sizeof = 0;
3907 size = type_size(&type, &align);
3908 if (t == TOK_SIZEOF) {
3909 if (!(type.t & VT_VLA)) {
3910 if (size < 0)
3911 tcc_error("sizeof applied to an incomplete type");
3912 vpushs(size);
3913 } else {
3914 vla_runtime_type_size(&type, &align);
3916 } else {
3917 vpushs(align);
3919 vtop->type.t |= VT_UNSIGNED;
3920 break;
3922 case TOK_builtin_types_compatible_p:
3924 CType type1, type2;
3925 next();
3926 skip('(');
3927 parse_type(&type1);
3928 skip(',');
3929 parse_type(&type2);
3930 skip(')');
3931 type1.t &= ~(VT_CONSTANT | VT_VOLATILE);
3932 type2.t &= ~(VT_CONSTANT | VT_VOLATILE);
3933 vpushi(is_compatible_types(&type1, &type2));
3935 break;
3936 case TOK_builtin_constant_p:
3938 int saved_nocode_wanted, res;
3939 next();
3940 skip('(');
3941 saved_nocode_wanted = nocode_wanted;
3942 nocode_wanted = 1;
3943 gexpr();
3944 res = (vtop->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == VT_CONST;
3945 vpop();
3946 nocode_wanted = saved_nocode_wanted;
3947 skip(')');
3948 vpushi(res);
3950 break;
3951 case TOK_builtin_frame_address:
3952 case TOK_builtin_return_address:
3954 int tok1 = tok;
3955 int level;
3956 CType type;
3957 next();
3958 skip('(');
3959 if (tok != TOK_CINT) {
3960 tcc_error("%s only takes positive integers",
3961 tok1 == TOK_builtin_return_address ?
3962 "__builtin_return_address" :
3963 "__builtin_frame_address");
3965 level = (uint32_t)tokc.i;
3966 next();
3967 skip(')');
3968 type.t = VT_VOID;
3969 mk_pointer(&type);
3970 vset(&type, VT_LOCAL, 0); /* local frame */
3971 while (level--) {
3972 mk_pointer(&vtop->type);
3973 indir(); /* -> parent frame */
3975 if (tok1 == TOK_builtin_return_address) {
3976 // assume return address is just above frame pointer on stack
3977 vpushi(PTR_SIZE);
3978 gen_op('+');
3979 mk_pointer(&vtop->type);
3980 indir();
3983 break;
3984 #ifdef TCC_TARGET_X86_64
3985 #ifdef TCC_TARGET_PE
3986 case TOK_builtin_va_start:
3988 next();
3989 skip('(');
3990 expr_eq();
3991 skip(',');
3992 expr_eq();
3993 skip(')');
3994 if ((vtop->r & VT_VALMASK) != VT_LOCAL)
3995 tcc_error("__builtin_va_start expects a local variable");
3996 vtop->r &= ~(VT_LVAL | VT_REF);
3997 vtop->type = char_pointer_type;
3998 vstore();
4000 break;
4001 #else
4002 case TOK_builtin_va_arg_types:
4004 CType type;
4005 next();
4006 skip('(');
4007 parse_type(&type);
4008 skip(')');
4009 vpushi(classify_x86_64_va_arg(&type));
4011 break;
4012 #endif
4013 #endif
4015 #ifdef TCC_TARGET_ARM64
4016 case TOK___va_start: {
4017 if (nocode_wanted)
4018 tcc_error("statement in global scope");
4019 next();
4020 skip('(');
4021 expr_eq();
4022 skip(',');
4023 expr_eq();
4024 skip(')');
4025 //xx check types
4026 gen_va_start();
4027 vpushi(0);
4028 vtop->type.t = VT_VOID;
4029 break;
4031 case TOK___va_arg: {
4032 CType type;
4033 if (nocode_wanted)
4034 tcc_error("statement in global scope");
4035 next();
4036 skip('(');
4037 expr_eq();
4038 skip(',');
4039 parse_type(&type);
4040 skip(')');
4041 //xx check types
4042 gen_va_arg(&type);
4043 vtop->type = type;
4044 break;
4046 case TOK___arm64_clear_cache: {
4047 next();
4048 skip('(');
4049 expr_eq();
4050 skip(',');
4051 expr_eq();
4052 skip(')');
4053 gen_clear_cache();
4054 vpushi(0);
4055 vtop->type.t = VT_VOID;
4056 break;
4058 #endif
4059 /* pre operations */
4060 case TOK_INC:
4061 case TOK_DEC:
4062 t = tok;
4063 next();
4064 unary();
4065 inc(0, t);
4066 break;
4067 case '-':
4068 next();
4069 unary();
4070 t = vtop->type.t & VT_BTYPE;
4071 if (is_float(t)) {
4072 /* In IEEE negate(x) isn't subtract(0,x), but rather
4073 subtract(-0, x). */
4074 vpush(&vtop->type);
4075 if (t == VT_FLOAT)
4076 vtop->c.f = -0.0f;
4077 else if (t == VT_DOUBLE)
4078 vtop->c.d = -0.0;
4079 else
4080 vtop->c.ld = -0.0;
4081 } else
4082 vpushi(0);
4083 vswap();
4084 gen_op('-');
4085 break;
4086 case TOK_LAND:
4087 if (!gnu_ext)
4088 goto tok_identifier;
4089 next();
4090 /* allow to take the address of a label */
4091 if (tok < TOK_UIDENT)
4092 expect("label identifier");
4093 s = label_find(tok);
4094 if (!s) {
4095 s = label_push(&global_label_stack, tok, LABEL_FORWARD);
4096 } else {
4097 if (s->r == LABEL_DECLARED)
4098 s->r = LABEL_FORWARD;
4100 if (!s->type.t) {
4101 s->type.t = VT_VOID;
4102 mk_pointer(&s->type);
4103 s->type.t |= VT_STATIC;
4105 vpushsym(&s->type, s);
4106 next();
4107 break;
4109 // special qnan , snan and infinity values
4110 case TOK___NAN__:
4111 vpush64(VT_DOUBLE, 0x7ff8000000000000ULL);
4112 next();
4113 break;
4114 case TOK___SNAN__:
4115 vpush64(VT_DOUBLE, 0x7ff0000000000001ULL);
4116 next();
4117 break;
4118 case TOK___INF__:
4119 vpush64(VT_DOUBLE, 0x7ff0000000000000ULL);
4120 next();
4121 break;
4123 default:
4124 tok_identifier:
4125 t = tok;
4126 next();
4127 if (t < TOK_UIDENT)
4128 expect("identifier");
4129 s = sym_find(t);
4130 if (!s) {
4131 const char *name = get_tok_str(t, NULL);
4132 if (tok != '(')
4133 tcc_error("'%s' undeclared", name);
4134 /* for simple function calls, we tolerate undeclared
4135 external reference to int() function */
4136 if (tcc_state->warn_implicit_function_declaration
4137 #ifdef TCC_TARGET_PE
4138 /* people must be warned about using undeclared WINAPI functions
4139 (which usually start with uppercase letter) */
4140 || (name[0] >= 'A' && name[0] <= 'Z')
4141 #endif
4143 tcc_warning("implicit declaration of function '%s'", name);
4144 s = external_global_sym(t, &func_old_type, 0);
4146 if ((s->type.t & (VT_STATIC | VT_INLINE | VT_BTYPE)) ==
4147 (VT_STATIC | VT_INLINE | VT_FUNC)) {
4148 /* if referencing an inline function, then we generate a
4149 symbol to it if not already done. It will have the
4150 effect to generate code for it at the end of the
4151 compilation unit. Inline function as always
4152 generated in the text section. */
4153 if (!s->c)
4154 put_extern_sym(s, text_section, 0, 0);
4155 r = VT_SYM | VT_CONST;
4156 } else {
4157 r = s->r;
4159 vset(&s->type, r, s->c);
4160 /* if forward reference, we must point to s */
4161 if (vtop->r & VT_SYM) {
4162 vtop->sym = s;
4163 vtop->c.i = 0;
4165 break;
4168 /* post operations */
4169 while (1) {
4170 if (tok == TOK_INC || tok == TOK_DEC) {
4171 inc(1, tok);
4172 next();
4173 } else if (tok == '.' || tok == TOK_ARROW || tok == TOK_CDOUBLE) {
4174 int qualifiers;
4175 /* field */
4176 if (tok == TOK_ARROW)
4177 indir();
4178 qualifiers = vtop->type.t & (VT_CONSTANT | VT_VOLATILE);
4179 test_lvalue();
4180 gaddrof();
4181 /* expect pointer on structure */
4182 if ((vtop->type.t & VT_BTYPE) != VT_STRUCT)
4183 expect("struct or union");
4184 if (tok == TOK_CDOUBLE)
4185 expect("field name");
4186 next();
4187 if (tok == TOK_CINT || tok == TOK_CUINT)
4188 expect("field name");
4189 s = vtop->type.ref;
4190 /* find field */
4191 tok |= SYM_FIELD;
4192 while ((s = s->next) != NULL) {
4193 if (s->v == tok)
4194 break;
4196 if (!s)
4197 tcc_error("field not found: %s", get_tok_str(tok & ~SYM_FIELD, &tokc));
4198 /* add field offset to pointer */
4199 vtop->type = char_pointer_type; /* change type to 'char *' */
4200 vpushi(s->c);
4201 gen_op('+');
4202 /* change type to field type, and set to lvalue */
4203 vtop->type = s->type;
4204 vtop->type.t |= qualifiers;
4205 /* an array is never an lvalue */
4206 if (!(vtop->type.t & VT_ARRAY)) {
4207 vtop->r |= lvalue_type(vtop->type.t);
4208 #ifdef CONFIG_TCC_BCHECK
4209 /* if bound checking, the referenced pointer must be checked */
4210 if (tcc_state->do_bounds_check)
4211 vtop->r |= VT_MUSTBOUND;
4212 #endif
4214 next();
4215 } else if (tok == '[') {
4216 next();
4217 gexpr();
4218 gen_op('+');
4219 indir();
4220 skip(']');
4221 } else if (tok == '(') {
4222 SValue ret;
4223 Sym *sa;
4224 int nb_args, ret_nregs, ret_align, regsize, variadic;
4226 /* function call */
4227 if ((vtop->type.t & VT_BTYPE) != VT_FUNC) {
4228 /* pointer test (no array accepted) */
4229 if ((vtop->type.t & (VT_BTYPE | VT_ARRAY)) == VT_PTR) {
4230 vtop->type = *pointed_type(&vtop->type);
4231 if ((vtop->type.t & VT_BTYPE) != VT_FUNC)
4232 goto error_func;
4233 } else {
4234 error_func:
4235 expect("function pointer");
4237 } else {
4238 vtop->r &= ~VT_LVAL; /* no lvalue */
4240 /* get return type */
4241 s = vtop->type.ref;
4242 next();
4243 sa = s->next; /* first parameter */
4244 nb_args = 0;
4245 ret.r2 = VT_CONST;
4246 /* compute first implicit argument if a structure is returned */
4247 if ((s->type.t & VT_BTYPE) == VT_STRUCT) {
4248 variadic = (s->c == FUNC_ELLIPSIS);
4249 ret_nregs = gfunc_sret(&s->type, variadic, &ret.type,
4250 &ret_align, &regsize);
4251 if (!ret_nregs) {
4252 /* get some space for the returned structure */
4253 size = type_size(&s->type, &align);
4254 #ifdef TCC_TARGET_ARM64
4255 /* On arm64, a small struct is return in registers.
4256 It is much easier to write it to memory if we know
4257 that we are allowed to write some extra bytes, so
4258 round the allocated space up to a power of 2: */
4259 if (size < 16)
4260 while (size & (size - 1))
4261 size = (size | (size - 1)) + 1;
4262 #endif
4263 loc = (loc - size) & -align;
4264 ret.type = s->type;
4265 ret.r = VT_LOCAL | VT_LVAL;
4266 /* pass it as 'int' to avoid structure arg passing
4267 problems */
4268 vseti(VT_LOCAL, loc);
4269 ret.c = vtop->c;
4270 nb_args++;
4272 } else {
4273 ret_nregs = 1;
4274 ret.type = s->type;
4277 if (ret_nregs) {
4278 /* return in register */
4279 if (is_float(ret.type.t)) {
4280 ret.r = reg_fret(ret.type.t);
4281 #ifdef TCC_TARGET_X86_64
4282 if ((ret.type.t & VT_BTYPE) == VT_QFLOAT)
4283 ret.r2 = REG_QRET;
4284 #endif
4285 } else {
4286 #ifndef TCC_TARGET_ARM64
4287 #ifdef TCC_TARGET_X86_64
4288 if ((ret.type.t & VT_BTYPE) == VT_QLONG)
4289 #else
4290 if ((ret.type.t & VT_BTYPE) == VT_LLONG)
4291 #endif
4292 ret.r2 = REG_LRET;
4293 #endif
4294 ret.r = REG_IRET;
4296 ret.c.i = 0;
4298 if (tok != ')') {
4299 for(;;) {
4300 expr_eq();
4301 gfunc_param_typed(s, sa);
4302 nb_args++;
4303 if (sa)
4304 sa = sa->next;
4305 if (tok == ')')
4306 break;
4307 skip(',');
4310 if (sa)
4311 tcc_error("too few arguments to function");
4312 skip(')');
4313 if (!nocode_wanted) {
4314 gfunc_call(nb_args);
4315 } else {
4316 vtop -= (nb_args + 1);
4319 /* return value */
4320 for (r = ret.r + ret_nregs + !ret_nregs; r-- > ret.r;) {
4321 vsetc(&ret.type, r, &ret.c);
4322 vtop->r2 = ret.r2; /* Loop only happens when r2 is VT_CONST */
4325 /* handle packed struct return */
4326 if (((s->type.t & VT_BTYPE) == VT_STRUCT) && ret_nregs) {
4327 int addr, offset;
4329 size = type_size(&s->type, &align);
4330 /* We're writing whole regs often, make sure there's enough
4331 space. Assume register size is power of 2. */
4332 if (regsize > align)
4333 align = regsize;
4334 loc = (loc - size) & -align;
4335 addr = loc;
4336 offset = 0;
4337 for (;;) {
4338 vset(&ret.type, VT_LOCAL | VT_LVAL, addr + offset);
4339 vswap();
4340 vstore();
4341 vtop--;
4342 if (--ret_nregs == 0)
4343 break;
4344 offset += regsize;
4346 vset(&s->type, VT_LOCAL | VT_LVAL, addr);
4348 } else {
4349 break;
4354 ST_FUNC void expr_prod(void)
4356 int t;
4358 unary();
4359 while (tok == '*' || tok == '/' || tok == '%') {
4360 t = tok;
4361 next();
4362 unary();
4363 gen_op(t);
4367 ST_FUNC void expr_sum(void)
4369 int t;
4371 expr_prod();
4372 while (tok == '+' || tok == '-') {
4373 t = tok;
4374 next();
4375 expr_prod();
4376 gen_op(t);
4380 static void expr_shift(void)
4382 int t;
4384 expr_sum();
4385 while (tok == TOK_SHL || tok == TOK_SAR) {
4386 t = tok;
4387 next();
4388 expr_sum();
4389 gen_op(t);
4393 static void expr_cmp(void)
4395 int t;
4397 expr_shift();
4398 while ((tok >= TOK_ULE && tok <= TOK_GT) ||
4399 tok == TOK_ULT || tok == TOK_UGE) {
4400 t = tok;
4401 next();
4402 expr_shift();
4403 gen_op(t);
4407 static void expr_cmpeq(void)
4409 int t;
4411 expr_cmp();
4412 while (tok == TOK_EQ || tok == TOK_NE) {
4413 t = tok;
4414 next();
4415 expr_cmp();
4416 gen_op(t);
4420 static void expr_and(void)
4422 expr_cmpeq();
4423 while (tok == '&') {
4424 next();
4425 expr_cmpeq();
4426 gen_op('&');
4430 static void expr_xor(void)
4432 expr_and();
4433 while (tok == '^') {
4434 next();
4435 expr_and();
4436 gen_op('^');
4440 static void expr_or(void)
4442 expr_xor();
4443 while (tok == '|') {
4444 next();
4445 expr_xor();
4446 gen_op('|');
4450 static void expr_land(void)
4452 expr_or();
4453 if (tok == TOK_LAND) {
4454 if ((vtop->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == VT_CONST) {
4455 CType ctb, cti;
4456 ctb.t = VT_BOOL;
4457 cti.t = VT_INT;
4458 next();
4459 gen_cast(&ctb);
4460 if (vtop->c.i) {
4461 vpop();
4462 expr_land();
4463 gen_cast(&ctb);
4464 } else {
4465 int saved_nocode_wanted = nocode_wanted;
4466 nocode_wanted = 1;
4467 expr_land();
4468 vpop();
4469 nocode_wanted = saved_nocode_wanted;
4471 gen_cast(&cti);
4472 } else {
4473 int t = 0;
4474 save_regs(1);
4475 for(;;) {
4476 t = gvtst(1, t);
4477 if (tok != TOK_LAND) {
4478 vseti(VT_JMPI, t);
4479 break;
4481 next();
4482 expr_or();
4488 static void expr_lor(void)
4490 expr_land();
4491 if (tok == TOK_LOR) {
4492 if ((vtop->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == VT_CONST) {
4493 CType ctb, cti;
4494 ctb.t = VT_BOOL;
4495 cti.t = VT_INT;
4496 next();
4497 gen_cast(&ctb);
4498 if (vtop->c.i) {
4499 int saved_nocode_wanted = nocode_wanted;
4500 nocode_wanted = 1;
4501 expr_lor();
4502 vpop();
4503 nocode_wanted = saved_nocode_wanted;
4504 } else {
4505 vpop();
4506 expr_lor();
4507 gen_cast(&ctb);
4509 gen_cast(&cti);
4510 } else {
4511 int t = 0;
4512 save_regs(1);
4513 for(;;) {
4514 t = gvtst(0, t);
4515 if (tok != TOK_LOR) {
4516 vseti(VT_JMP, t);
4517 break;
4519 next();
4520 expr_land();
4526 static void expr_cond(void)
4528 int tt, u, r1, r2, rc, t1, t2, bt1, bt2;
4529 SValue sv;
4530 CType type, type1, type2;
4532 expr_lor();
4533 if (tok == '?') {
4534 next();
4535 if ((vtop->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == VT_CONST) {
4536 int saved_nocode_wanted = nocode_wanted;
4537 CType boolean;
4538 int c;
4539 boolean.t = VT_BOOL;
4540 vdup();
4541 gen_cast(&boolean);
4542 c = vtop->c.i;
4543 vpop();
4544 if (c) {
4545 if (tok != ':' || !gnu_ext) {
4546 vpop();
4547 gexpr();
4549 skip(':');
4550 nocode_wanted = 1;
4551 expr_cond();
4552 vpop();
4553 nocode_wanted = saved_nocode_wanted;
4554 } else {
4555 vpop();
4556 if (tok != ':' || !gnu_ext) {
4557 nocode_wanted = 1;
4558 gexpr();
4559 vpop();
4560 nocode_wanted = saved_nocode_wanted;
4562 skip(':');
4563 expr_cond();
4566 else {
4567 if (vtop != vstack) {
4568 /* needed to avoid having different registers saved in
4569 each branch */
4570 if (is_float(vtop->type.t)) {
4571 rc = RC_FLOAT;
4572 #ifdef TCC_TARGET_X86_64
4573 if ((vtop->type.t & VT_BTYPE) == VT_LDOUBLE) {
4574 rc = RC_ST0;
4576 #endif
4578 else
4579 rc = RC_INT;
4580 gv(rc);
4581 save_regs(1);
4583 if (tok == ':' && gnu_ext) {
4584 gv_dup();
4585 tt = gvtst(1, 0);
4586 } else {
4587 tt = gvtst(1, 0);
4588 gexpr();
4590 type1 = vtop->type;
4591 sv = *vtop; /* save value to handle it later */
4592 vtop--; /* no vpop so that FP stack is not flushed */
4593 skip(':');
4594 u = gjmp(0);
4595 gsym(tt);
4596 expr_cond();
4597 type2 = vtop->type;
4599 t1 = type1.t;
4600 bt1 = t1 & VT_BTYPE;
4601 t2 = type2.t;
4602 bt2 = t2 & VT_BTYPE;
4603 /* cast operands to correct type according to ISOC rules */
4604 if (is_float(bt1) || is_float(bt2)) {
4605 if (bt1 == VT_LDOUBLE || bt2 == VT_LDOUBLE) {
4606 type.t = VT_LDOUBLE;
4607 } else if (bt1 == VT_DOUBLE || bt2 == VT_DOUBLE) {
4608 type.t = VT_DOUBLE;
4609 } else {
4610 type.t = VT_FLOAT;
4612 } else if (bt1 == VT_LLONG || bt2 == VT_LLONG) {
4613 /* cast to biggest op */
4614 type.t = VT_LLONG;
4615 /* convert to unsigned if it does not fit in a long long */
4616 if ((t1 & (VT_BTYPE | VT_UNSIGNED)) == (VT_LLONG | VT_UNSIGNED) ||
4617 (t2 & (VT_BTYPE | VT_UNSIGNED)) == (VT_LLONG | VT_UNSIGNED))
4618 type.t |= VT_UNSIGNED;
4619 } else if (bt1 == VT_PTR || bt2 == VT_PTR) {
4620 /* If one is a null ptr constant the result type
4621 is the other. */
4622 if (is_null_pointer (vtop))
4623 type = type1;
4624 else if (is_null_pointer (&sv))
4625 type = type2;
4626 /* XXX: test pointer compatibility, C99 has more elaborate
4627 rules here. */
4628 else
4629 type = type1;
4630 } else if (bt1 == VT_FUNC || bt2 == VT_FUNC) {
4631 /* XXX: test function pointer compatibility */
4632 type = bt1 == VT_FUNC ? type1 : type2;
4633 } else if (bt1 == VT_STRUCT || bt2 == VT_STRUCT) {
4634 /* XXX: test structure compatibility */
4635 type = bt1 == VT_STRUCT ? type1 : type2;
4636 } else if (bt1 == VT_VOID || bt2 == VT_VOID) {
4637 /* NOTE: as an extension, we accept void on only one side */
4638 type.t = VT_VOID;
4639 } else {
4640 /* integer operations */
4641 type.t = VT_INT;
4642 /* convert to unsigned if it does not fit in an integer */
4643 if ((t1 & (VT_BTYPE | VT_UNSIGNED)) == (VT_INT | VT_UNSIGNED) ||
4644 (t2 & (VT_BTYPE | VT_UNSIGNED)) == (VT_INT | VT_UNSIGNED))
4645 type.t |= VT_UNSIGNED;
4648 /* now we convert second operand */
4649 gen_cast(&type);
4650 if (VT_STRUCT == (vtop->type.t & VT_BTYPE))
4651 gaddrof();
4652 rc = RC_INT;
4653 if (is_float(type.t)) {
4654 rc = RC_FLOAT;
4655 #ifdef TCC_TARGET_X86_64
4656 if ((type.t & VT_BTYPE) == VT_LDOUBLE) {
4657 rc = RC_ST0;
4659 #endif
4660 } else if ((type.t & VT_BTYPE) == VT_LLONG) {
4661 /* for long longs, we use fixed registers to avoid having
4662 to handle a complicated move */
4663 rc = RC_IRET;
4666 r2 = gv(rc);
4667 /* this is horrible, but we must also convert first
4668 operand */
4669 tt = gjmp(0);
4670 gsym(u);
4671 /* put again first value and cast it */
4672 *vtop = sv;
4673 gen_cast(&type);
4674 if (VT_STRUCT == (vtop->type.t & VT_BTYPE))
4675 gaddrof();
4676 r1 = gv(rc);
4677 move_reg(r2, r1, type.t);
4678 vtop->r = r2;
4679 gsym(tt);
4684 static void expr_eq(void)
4686 int t;
4688 expr_cond();
4689 if (tok == '=' ||
4690 (tok >= TOK_A_MOD && tok <= TOK_A_DIV) ||
4691 tok == TOK_A_XOR || tok == TOK_A_OR ||
4692 tok == TOK_A_SHL || tok == TOK_A_SAR) {
4693 test_lvalue();
4694 t = tok;
4695 next();
4696 if (t == '=') {
4697 expr_eq();
4698 } else {
4699 vdup();
4700 expr_eq();
4701 gen_op(t & 0x7f);
4703 vstore();
4707 ST_FUNC void gexpr(void)
4709 while (1) {
4710 expr_eq();
4711 if (tok != ',')
4712 break;
4713 vpop();
4714 next();
4718 /* parse an expression and return its type without any side effect. */
4719 static void expr_type(CType *type)
4721 int saved_nocode_wanted;
4723 saved_nocode_wanted = nocode_wanted;
4724 nocode_wanted = 1;
4725 gexpr();
4726 *type = vtop->type;
4727 vpop();
4728 nocode_wanted = saved_nocode_wanted;
4731 /* parse a unary expression and return its type without any side
4732 effect. */
4733 static void unary_type(CType *type)
4735 int a;
4737 a = nocode_wanted;
4738 nocode_wanted = 1;
4739 unary();
4740 *type = vtop->type;
4741 vpop();
4742 nocode_wanted = a;
4745 /* parse a constant expression and return value in vtop. */
4746 static void expr_const1(void)
4748 int a;
4749 a = const_wanted;
4750 const_wanted = 1;
4751 expr_cond();
4752 const_wanted = a;
4755 /* parse an integer constant and return its value. */
4756 ST_FUNC int expr_const(void)
4758 int c;
4759 expr_const1();
4760 if ((vtop->r & (VT_VALMASK | VT_LVAL | VT_SYM)) != VT_CONST)
4761 expect("constant expression");
4762 c = vtop->c.i;
4763 vpop();
4764 return c;
4767 /* return the label token if current token is a label, otherwise
4768 return zero */
4769 static int is_label(void)
4771 int last_tok;
4773 /* fast test first */
4774 if (tok < TOK_UIDENT)
4775 return 0;
4776 /* no need to save tokc because tok is an identifier */
4777 last_tok = tok;
4778 next();
4779 if (tok == ':') {
4780 next();
4781 return last_tok;
4782 } else {
4783 unget_tok(last_tok);
4784 return 0;
4788 static void label_or_decl(int l)
4790 int last_tok;
4792 /* fast test first */
4793 if (tok >= TOK_UIDENT)
4795 /* no need to save tokc because tok is an identifier */
4796 last_tok = tok;
4797 next();
4798 if (tok == ':') {
4799 unget_tok(last_tok);
4800 return;
4802 unget_tok(last_tok);
4804 decl(l);
4807 static void block(int *bsym, int *csym, int *case_sym, int *def_sym,
4808 int case_reg, int is_expr)
4810 int a, b, c, d;
4811 Sym *s, *frame_bottom;
4813 /* generate line number info */
4814 if (tcc_state->do_debug &&
4815 (last_line_num != file->line_num || last_ind != ind)) {
4816 put_stabn(N_SLINE, 0, file->line_num, ind - func_ind);
4817 last_ind = ind;
4818 last_line_num = file->line_num;
4821 if (is_expr) {
4822 /* default return value is (void) */
4823 vpushi(0);
4824 vtop->type.t = VT_VOID;
4827 if (tok == TOK_IF) {
4828 /* if test */
4829 next();
4830 skip('(');
4831 gexpr();
4832 skip(')');
4833 a = gvtst(1, 0);
4834 block(bsym, csym, case_sym, def_sym, case_reg, 0);
4835 c = tok;
4836 if (c == TOK_ELSE) {
4837 next();
4838 d = gjmp(0);
4839 gsym(a);
4840 block(bsym, csym, case_sym, def_sym, case_reg, 0);
4841 gsym(d); /* patch else jmp */
4842 } else
4843 gsym(a);
4844 } else if (tok == TOK_WHILE) {
4845 next();
4846 d = ind;
4847 vla_sp_restore();
4848 skip('(');
4849 gexpr();
4850 skip(')');
4851 a = gvtst(1, 0);
4852 b = 0;
4853 block(&a, &b, case_sym, def_sym, case_reg, 0);
4854 gjmp_addr(d);
4855 gsym(a);
4856 gsym_addr(b, d);
4857 } else if (tok == '{') {
4858 Sym *llabel;
4859 int block_vla_sp_loc = vla_sp_loc, saved_vlas_in_scope = vlas_in_scope;
4861 next();
4862 /* record local declaration stack position */
4863 s = local_stack;
4864 frame_bottom = sym_push2(&local_stack, SYM_FIELD, 0, 0);
4865 frame_bottom->next = scope_stack_bottom;
4866 scope_stack_bottom = frame_bottom;
4867 llabel = local_label_stack;
4869 /* handle local labels declarations */
4870 if (tok == TOK_LABEL) {
4871 next();
4872 for(;;) {
4873 if (tok < TOK_UIDENT)
4874 expect("label identifier");
4875 label_push(&local_label_stack, tok, LABEL_DECLARED);
4876 next();
4877 if (tok == ',') {
4878 next();
4879 } else {
4880 skip(';');
4881 break;
4885 while (tok != '}') {
4886 label_or_decl(VT_LOCAL);
4887 if (tok != '}') {
4888 if (is_expr)
4889 vpop();
4890 block(bsym, csym, case_sym, def_sym, case_reg, is_expr);
4893 /* pop locally defined labels */
4894 label_pop(&local_label_stack, llabel);
4895 if(is_expr) {
4896 /* XXX: this solution makes only valgrind happy...
4897 triggered by gcc.c-torture/execute/20000917-1.c */
4898 Sym *p;
4899 switch(vtop->type.t & VT_BTYPE) {
4900 /* case VT_PTR: */
4901 /* this breaks a compilation of the linux kernel v2.4.26 */
4902 /* pmd_t *new = ({ __asm__ __volatile__("ud2\n") ; ((pmd_t *)1); }); */
4903 /* Look a commit a80acab: Display error on statement expressions with complex return type */
4904 /* A pointer is not a complex return type */
4905 case VT_STRUCT:
4906 case VT_ENUM:
4907 case VT_FUNC:
4908 for(p=vtop->type.ref;p;p=p->prev)
4909 if(p->prev==s)
4910 tcc_error("unsupported expression type");
4913 /* pop locally defined symbols */
4914 scope_stack_bottom = scope_stack_bottom->next;
4915 sym_pop(&local_stack, s);
4917 /* Pop VLA frames and restore stack pointer if required */
4918 if (vlas_in_scope > saved_vlas_in_scope) {
4919 vla_sp_loc = saved_vlas_in_scope ? block_vla_sp_loc : vla_sp_root_loc;
4920 vla_sp_restore();
4922 vlas_in_scope = saved_vlas_in_scope;
4924 next();
4925 } else if (tok == TOK_RETURN) {
4926 next();
4927 if (tok != ';') {
4928 gexpr();
4929 gen_assign_cast(&func_vt);
4930 #ifdef TCC_TARGET_ARM64
4931 // Perhaps it would be better to use this for all backends:
4932 greturn();
4933 #else
4934 if ((func_vt.t & VT_BTYPE) == VT_STRUCT) {
4935 CType type, ret_type;
4936 int ret_align, ret_nregs, regsize;
4937 ret_nregs = gfunc_sret(&func_vt, func_var, &ret_type,
4938 &ret_align, &regsize);
4939 if (0 == ret_nregs) {
4940 /* if returning structure, must copy it to implicit
4941 first pointer arg location */
4942 type = func_vt;
4943 mk_pointer(&type);
4944 vset(&type, VT_LOCAL | VT_LVAL, func_vc);
4945 indir();
4946 vswap();
4947 /* copy structure value to pointer */
4948 vstore();
4949 } else {
4950 /* returning structure packed into registers */
4951 int r, size, addr, align;
4952 size = type_size(&func_vt,&align);
4953 if ((vtop->r != (VT_LOCAL | VT_LVAL) ||
4954 (vtop->c.i & (ret_align-1)))
4955 && (align & (ret_align-1))) {
4956 loc = (loc - size) & -ret_align;
4957 addr = loc;
4958 type = func_vt;
4959 vset(&type, VT_LOCAL | VT_LVAL, addr);
4960 vswap();
4961 vstore();
4962 vpop();
4963 vset(&ret_type, VT_LOCAL | VT_LVAL, addr);
4965 vtop->type = ret_type;
4966 if (is_float(ret_type.t))
4967 r = rc_fret(ret_type.t);
4968 else
4969 r = RC_IRET;
4971 for (;;) {
4972 gv(r);
4973 if (--ret_nregs == 0)
4974 break;
4975 /* We assume that when a structure is returned in multiple
4976 registers, their classes are consecutive values of the
4977 suite s(n) = 2^n */
4978 r <<= 1;
4979 vtop->c.i += regsize;
4980 vtop->r = VT_LOCAL | VT_LVAL;
4983 } else if (is_float(func_vt.t)) {
4984 gv(rc_fret(func_vt.t));
4985 } else {
4986 gv(RC_IRET);
4988 #endif
4989 vtop--; /* NOT vpop() because on x86 it would flush the fp stack */
4991 skip(';');
4992 rsym = gjmp(rsym); /* jmp */
4993 } else if (tok == TOK_BREAK) {
4994 /* compute jump */
4995 if (!bsym)
4996 tcc_error("cannot break");
4997 *bsym = gjmp(*bsym);
4998 next();
4999 skip(';');
5000 } else if (tok == TOK_CONTINUE) {
5001 /* compute jump */
5002 if (!csym)
5003 tcc_error("cannot continue");
5004 vla_sp_restore_root();
5005 *csym = gjmp(*csym);
5006 next();
5007 skip(';');
5008 } else if (tok == TOK_FOR) {
5009 int e;
5010 next();
5011 skip('(');
5012 s = local_stack;
5013 frame_bottom = sym_push2(&local_stack, SYM_FIELD, 0, 0);
5014 frame_bottom->next = scope_stack_bottom;
5015 scope_stack_bottom = frame_bottom;
5016 if (tok != ';') {
5017 /* c99 for-loop init decl? */
5018 if (!decl0(VT_LOCAL, 1)) {
5019 /* no, regular for-loop init expr */
5020 gexpr();
5021 vpop();
5024 skip(';');
5025 d = ind;
5026 c = ind;
5027 vla_sp_restore();
5028 a = 0;
5029 b = 0;
5030 if (tok != ';') {
5031 gexpr();
5032 a = gvtst(1, 0);
5034 skip(';');
5035 if (tok != ')') {
5036 e = gjmp(0);
5037 c = ind;
5038 vla_sp_restore();
5039 gexpr();
5040 vpop();
5041 gjmp_addr(d);
5042 gsym(e);
5044 skip(')');
5045 block(&a, &b, case_sym, def_sym, case_reg, 0);
5046 gjmp_addr(c);
5047 gsym(a);
5048 gsym_addr(b, c);
5049 scope_stack_bottom = scope_stack_bottom->next;
5050 sym_pop(&local_stack, s);
5051 } else
5052 if (tok == TOK_DO) {
5053 next();
5054 a = 0;
5055 b = 0;
5056 d = ind;
5057 vla_sp_restore();
5058 block(&a, &b, case_sym, def_sym, case_reg, 0);
5059 skip(TOK_WHILE);
5060 skip('(');
5061 gsym(b);
5062 gexpr();
5063 c = gvtst(0, 0);
5064 gsym_addr(c, d);
5065 skip(')');
5066 gsym(a);
5067 skip(';');
5068 } else
5069 if (tok == TOK_SWITCH) {
5070 next();
5071 skip('(');
5072 gexpr();
5073 /* XXX: other types than integer */
5074 case_reg = gv(RC_INT);
5075 vpop();
5076 skip(')');
5077 a = 0;
5078 b = gjmp(0); /* jump to first case */
5079 c = 0;
5080 block(&a, csym, &b, &c, case_reg, 0);
5081 /* if no default, jmp after switch */
5082 if (c == 0)
5083 c = ind;
5084 /* default label */
5085 gsym_addr(b, c);
5086 /* break label */
5087 gsym(a);
5088 } else
5089 if (tok == TOK_CASE) {
5090 int v1, v2;
5091 if (!case_sym)
5092 expect("switch");
5093 next();
5094 v1 = expr_const();
5095 v2 = v1;
5096 if (gnu_ext && tok == TOK_DOTS) {
5097 next();
5098 v2 = expr_const();
5099 if (v2 < v1)
5100 tcc_warning("empty case range");
5102 /* since a case is like a label, we must skip it with a jmp */
5103 b = gjmp(0);
5104 gsym(*case_sym);
5105 vseti(case_reg, 0);
5106 vdup();
5107 vpushi(v1);
5108 if (v1 == v2) {
5109 gen_op(TOK_EQ);
5110 *case_sym = gtst(1, 0);
5111 } else {
5112 gen_op(TOK_GE);
5113 *case_sym = gtst(1, 0);
5114 vseti(case_reg, 0);
5115 vpushi(v2);
5116 gen_op(TOK_LE);
5117 *case_sym = gtst(1, *case_sym);
5119 case_reg = gv(RC_INT);
5120 vpop();
5121 gsym(b);
5122 skip(':');
5123 is_expr = 0;
5124 goto block_after_label;
5125 } else
5126 if (tok == TOK_DEFAULT) {
5127 next();
5128 skip(':');
5129 if (!def_sym)
5130 expect("switch");
5131 if (*def_sym)
5132 tcc_error("too many 'default'");
5133 *def_sym = ind;
5134 is_expr = 0;
5135 goto block_after_label;
5136 } else
5137 if (tok == TOK_GOTO) {
5138 next();
5139 if (tok == '*' && gnu_ext) {
5140 /* computed goto */
5141 next();
5142 gexpr();
5143 if ((vtop->type.t & VT_BTYPE) != VT_PTR)
5144 expect("pointer");
5145 ggoto();
5146 } else if (tok >= TOK_UIDENT) {
5147 s = label_find(tok);
5148 /* put forward definition if needed */
5149 if (!s) {
5150 s = label_push(&global_label_stack, tok, LABEL_FORWARD);
5151 } else {
5152 if (s->r == LABEL_DECLARED)
5153 s->r = LABEL_FORWARD;
5155 vla_sp_restore_root();
5156 if (s->r & LABEL_FORWARD)
5157 s->jnext = gjmp(s->jnext);
5158 else
5159 gjmp_addr(s->jnext);
5160 next();
5161 } else {
5162 expect("label identifier");
5164 skip(';');
5165 } else if (tok == TOK_ASM1 || tok == TOK_ASM2 || tok == TOK_ASM3) {
5166 asm_instr();
5167 } else {
5168 b = is_label();
5169 if (b) {
5170 /* label case */
5171 s = label_find(b);
5172 if (s) {
5173 if (s->r == LABEL_DEFINED)
5174 tcc_error("duplicate label '%s'", get_tok_str(s->v, NULL));
5175 gsym(s->jnext);
5176 s->r = LABEL_DEFINED;
5177 } else {
5178 s = label_push(&global_label_stack, b, LABEL_DEFINED);
5180 s->jnext = ind;
5181 vla_sp_restore();
5182 /* we accept this, but it is a mistake */
5183 block_after_label:
5184 if (tok == '}') {
5185 tcc_warning("deprecated use of label at end of compound statement");
5186 } else {
5187 if (is_expr)
5188 vpop();
5189 block(bsym, csym, case_sym, def_sym, case_reg, is_expr);
5191 } else {
5192 /* expression case */
5193 if (tok != ';') {
5194 if (is_expr) {
5195 vpop();
5196 gexpr();
5197 } else {
5198 gexpr();
5199 vpop();
5202 skip(';');
5207 /* t is the array or struct type. c is the array or struct
5208 address. cur_index/cur_field is the pointer to the current
5209 value. 'size_only' is true if only size info is needed (only used
5210 in arrays) */
5211 static void decl_designator(CType *type, Section *sec, unsigned long c,
5212 int *cur_index, Sym **cur_field,
5213 int size_only)
5215 Sym *s, *f;
5216 int notfirst, index, index_last, align, l, nb_elems, elem_size;
5217 CType type1;
5219 notfirst = 0;
5220 elem_size = 0;
5221 nb_elems = 1;
5222 if (gnu_ext && (l = is_label()) != 0)
5223 goto struct_field;
5224 while (tok == '[' || tok == '.') {
5225 if (tok == '[') {
5226 if (!(type->t & VT_ARRAY))
5227 expect("array type");
5228 s = type->ref;
5229 next();
5230 index = expr_const();
5231 if (index < 0 || (s->c >= 0 && index >= s->c))
5232 expect("invalid index");
5233 if (tok == TOK_DOTS && gnu_ext) {
5234 next();
5235 index_last = expr_const();
5236 if (index_last < 0 ||
5237 (s->c >= 0 && index_last >= s->c) ||
5238 index_last < index)
5239 expect("invalid index");
5240 } else {
5241 index_last = index;
5243 skip(']');
5244 if (!notfirst)
5245 *cur_index = index_last;
5246 type = pointed_type(type);
5247 elem_size = type_size(type, &align);
5248 c += index * elem_size;
5249 /* NOTE: we only support ranges for last designator */
5250 nb_elems = index_last - index + 1;
5251 if (nb_elems != 1) {
5252 notfirst = 1;
5253 break;
5255 } else {
5256 next();
5257 l = tok;
5258 next();
5259 struct_field:
5260 if ((type->t & VT_BTYPE) != VT_STRUCT)
5261 expect("struct/union type");
5262 s = type->ref;
5263 l |= SYM_FIELD;
5264 f = s->next;
5265 while (f) {
5266 if (f->v == l)
5267 break;
5268 f = f->next;
5270 if (!f)
5271 expect("field");
5272 if (!notfirst)
5273 *cur_field = f;
5274 /* XXX: fix this mess by using explicit storage field */
5275 type1 = f->type;
5276 type1.t |= (type->t & ~VT_TYPE);
5277 type = &type1;
5278 c += f->c;
5280 notfirst = 1;
5282 if (notfirst) {
5283 if (tok == '=') {
5284 next();
5285 } else {
5286 if (!gnu_ext)
5287 expect("=");
5289 } else {
5290 if (type->t & VT_ARRAY) {
5291 index = *cur_index;
5292 type = pointed_type(type);
5293 c += index * type_size(type, &align);
5294 } else {
5295 f = *cur_field;
5296 if (!f)
5297 tcc_error("too many field init");
5298 /* XXX: fix this mess by using explicit storage field */
5299 type1 = f->type;
5300 type1.t |= (type->t & ~VT_TYPE);
5301 type = &type1;
5302 c += f->c;
5305 decl_initializer(type, sec, c, 0, size_only);
5307 /* XXX: make it more general */
5308 if (!size_only && nb_elems > 1) {
5309 unsigned long c_end;
5310 uint8_t *src, *dst;
5311 int i;
5313 if (!sec)
5314 tcc_error("range init not supported yet for dynamic storage");
5315 c_end = c + nb_elems * elem_size;
5316 if (c_end > sec->data_allocated)
5317 section_realloc(sec, c_end);
5318 src = sec->data + c;
5319 dst = src;
5320 for(i = 1; i < nb_elems; i++) {
5321 dst += elem_size;
5322 memcpy(dst, src, elem_size);
5327 #define EXPR_VAL 0
5328 #define EXPR_CONST 1
5329 #define EXPR_ANY 2
5331 /* store a value or an expression directly in global data or in local array */
5332 static void init_putv(CType *type, Section *sec, unsigned long c,
5333 int v, int expr_type)
5335 int saved_global_expr, bt, bit_pos, bit_size;
5336 void *ptr;
5337 unsigned long long bit_mask;
5338 CType dtype;
5340 switch(expr_type) {
5341 case EXPR_VAL:
5342 vpushi(v);
5343 break;
5344 case EXPR_CONST:
5345 /* compound literals must be allocated globally in this case */
5346 saved_global_expr = global_expr;
5347 global_expr = 1;
5348 expr_const1();
5349 global_expr = saved_global_expr;
5350 /* NOTE: symbols are accepted */
5351 if ((vtop->r & (VT_VALMASK | VT_LVAL)) != VT_CONST)
5352 tcc_error("initializer element is not constant");
5353 break;
5354 case EXPR_ANY:
5355 expr_eq();
5356 break;
5359 dtype = *type;
5360 dtype.t &= ~VT_CONSTANT; /* need to do that to avoid false warning */
5362 if (sec) {
5363 /* XXX: not portable */
5364 /* XXX: generate error if incorrect relocation */
5365 gen_assign_cast(&dtype);
5366 bt = type->t & VT_BTYPE;
5367 /* we'll write at most 16 bytes */
5368 if (c + 16 > sec->data_allocated) {
5369 section_realloc(sec, c + 16);
5371 ptr = sec->data + c;
5372 /* XXX: make code faster ? */
5373 if (!(type->t & VT_BITFIELD)) {
5374 bit_pos = 0;
5375 bit_size = 32;
5376 bit_mask = -1LL;
5377 } else {
5378 bit_pos = (vtop->type.t >> VT_STRUCT_SHIFT) & 0x3f;
5379 bit_size = (vtop->type.t >> (VT_STRUCT_SHIFT + 6)) & 0x3f;
5380 bit_mask = (1LL << bit_size) - 1;
5382 if ((vtop->r & VT_SYM) &&
5383 (bt == VT_BYTE ||
5384 bt == VT_SHORT ||
5385 bt == VT_DOUBLE ||
5386 bt == VT_LDOUBLE ||
5387 bt == VT_LLONG ||
5388 (bt == VT_INT && bit_size != 32)))
5389 tcc_error("initializer element is not computable at load time");
5390 switch(bt) {
5391 /* XXX: when cross-compiling we assume that each type has the
5392 same representation on host and target, which is likely to
5393 be wrong in the case of long double */
5394 case VT_BOOL:
5395 vtop->c.i = (vtop->c.i != 0);
5396 case VT_BYTE:
5397 *(char *)ptr |= (vtop->c.i & bit_mask) << bit_pos;
5398 break;
5399 case VT_SHORT:
5400 *(short *)ptr |= (vtop->c.i & bit_mask) << bit_pos;
5401 break;
5402 case VT_DOUBLE:
5403 *(double *)ptr = vtop->c.d;
5404 break;
5405 case VT_LDOUBLE:
5406 *(long double *)ptr = vtop->c.ld;
5407 break;
5408 case VT_LLONG:
5409 *(long long *)ptr |= (vtop->c.i & bit_mask) << bit_pos;
5410 break;
5411 case VT_PTR: {
5412 addr_t val = (vtop->c.i & bit_mask) << bit_pos;
5413 #if defined(TCC_TARGET_ARM64) || defined(TCC_TARGET_X86_64)
5414 if (vtop->r & VT_SYM)
5415 greloca(sec, vtop->sym, c, R_DATA_PTR, val);
5416 else
5417 *(addr_t *)ptr |= val;
5418 #else
5419 if (vtop->r & VT_SYM)
5420 greloc(sec, vtop->sym, c, R_DATA_PTR);
5421 *(addr_t *)ptr |= val;
5422 #endif
5423 break;
5425 default: {
5426 int val = (vtop->c.i & bit_mask) << bit_pos;
5427 #if defined(TCC_TARGET_ARM64) || defined(TCC_TARGET_X86_64)
5428 if (vtop->r & VT_SYM)
5429 greloca(sec, vtop->sym, c, R_DATA_PTR, val);
5430 else
5431 *(int *)ptr |= val;
5432 #else
5433 if (vtop->r & VT_SYM)
5434 greloc(sec, vtop->sym, c, R_DATA_PTR);
5435 *(int *)ptr |= val;
5436 #endif
5437 break;
5440 vtop--;
5441 } else {
5442 vset(&dtype, VT_LOCAL|VT_LVAL, c);
5443 vswap();
5444 vstore();
5445 vpop();
5449 /* put zeros for variable based init */
5450 static void init_putz(CType *t, Section *sec, unsigned long c, int size)
5452 if (sec) {
5453 /* nothing to do because globals are already set to zero */
5454 } else {
5455 vpush_global_sym(&func_old_type, TOK_memset);
5456 vseti(VT_LOCAL, c);
5457 #ifdef TCC_TARGET_ARM
5458 vpushs(size);
5459 vpushi(0);
5460 #else
5461 vpushi(0);
5462 vpushs(size);
5463 #endif
5464 gfunc_call(3);
5468 /* 't' contains the type and storage info. 'c' is the offset of the
5469 object in section 'sec'. If 'sec' is NULL, it means stack based
5470 allocation. 'first' is true if array '{' must be read (multi
5471 dimension implicit array init handling). 'size_only' is true if
5472 size only evaluation is wanted (only for arrays). */
5473 static void decl_initializer(CType *type, Section *sec, unsigned long c,
5474 int first, int size_only)
5476 int index, array_length, n, no_oblock, nb, parlevel, parlevel1, i;
5477 int size1, align1, expr_type;
5478 Sym *s, *f;
5479 CType *t1;
5481 if (type->t & VT_VLA) {
5482 int a;
5484 /* save current stack pointer */
5485 if (vlas_in_scope == 0) {
5486 if (vla_sp_root_loc == -1)
5487 vla_sp_root_loc = (loc -= PTR_SIZE);
5488 gen_vla_sp_save(vla_sp_root_loc);
5491 vla_runtime_type_size(type, &a);
5492 gen_vla_alloc(type, a);
5493 gen_vla_sp_save(c);
5494 vla_sp_loc = c;
5495 vlas_in_scope++;
5496 } else if (type->t & VT_ARRAY) {
5497 s = type->ref;
5498 n = s->c;
5499 array_length = 0;
5500 t1 = pointed_type(type);
5501 size1 = type_size(t1, &align1);
5503 no_oblock = 1;
5504 if ((first && tok != TOK_LSTR && tok != TOK_STR) ||
5505 tok == '{') {
5506 if (tok != '{')
5507 tcc_error("character array initializer must be a literal,"
5508 " optionally enclosed in braces");
5509 skip('{');
5510 no_oblock = 0;
5513 /* only parse strings here if correct type (otherwise: handle
5514 them as ((w)char *) expressions */
5515 if ((tok == TOK_LSTR &&
5516 #ifdef TCC_TARGET_PE
5517 (t1->t & VT_BTYPE) == VT_SHORT && (t1->t & VT_UNSIGNED)
5518 #else
5519 (t1->t & VT_BTYPE) == VT_INT
5520 #endif
5521 ) || (tok == TOK_STR && (t1->t & VT_BTYPE) == VT_BYTE)) {
5522 while (tok == TOK_STR || tok == TOK_LSTR) {
5523 int cstr_len, ch;
5524 CString *cstr;
5526 cstr = tokc.cstr;
5527 /* compute maximum number of chars wanted */
5528 if (tok == TOK_STR)
5529 cstr_len = cstr->size;
5530 else
5531 cstr_len = cstr->size / sizeof(nwchar_t);
5532 cstr_len--;
5533 nb = cstr_len;
5534 if (n >= 0 && nb > (n - array_length))
5535 nb = n - array_length;
5536 if (!size_only) {
5537 if (cstr_len > nb)
5538 tcc_warning("initializer-string for array is too long");
5539 /* in order to go faster for common case (char
5540 string in global variable, we handle it
5541 specifically */
5542 if (sec && tok == TOK_STR && size1 == 1) {
5543 memcpy(sec->data + c + array_length, cstr->data, nb);
5544 } else {
5545 for(i=0;i<nb;i++) {
5546 if (tok == TOK_STR)
5547 ch = ((unsigned char *)cstr->data)[i];
5548 else
5549 ch = ((nwchar_t *)cstr->data)[i];
5550 init_putv(t1, sec, c + (array_length + i) * size1,
5551 ch, EXPR_VAL);
5555 array_length += nb;
5556 next();
5558 /* only add trailing zero if enough storage (no
5559 warning in this case since it is standard) */
5560 if (n < 0 || array_length < n) {
5561 if (!size_only) {
5562 init_putv(t1, sec, c + (array_length * size1), 0, EXPR_VAL);
5564 array_length++;
5566 } else {
5567 index = 0;
5568 while (tok != '}') {
5569 decl_designator(type, sec, c, &index, NULL, size_only);
5570 if (n >= 0 && index >= n)
5571 tcc_error("index too large");
5572 /* must put zero in holes (note that doing it that way
5573 ensures that it even works with designators) */
5574 if (!size_only && array_length < index) {
5575 init_putz(t1, sec, c + array_length * size1,
5576 (index - array_length) * size1);
5578 index++;
5579 if (index > array_length)
5580 array_length = index;
5581 /* special test for multi dimensional arrays (may not
5582 be strictly correct if designators are used at the
5583 same time) */
5584 if (index >= n && no_oblock)
5585 break;
5586 if (tok == '}')
5587 break;
5588 skip(',');
5591 if (!no_oblock)
5592 skip('}');
5593 /* put zeros at the end */
5594 if (!size_only && n >= 0 && array_length < n) {
5595 init_putz(t1, sec, c + array_length * size1,
5596 (n - array_length) * size1);
5598 /* patch type size if needed */
5599 if (n < 0)
5600 s->c = array_length;
5601 } else if ((type->t & VT_BTYPE) == VT_STRUCT &&
5602 (sec || !first || tok == '{')) {
5604 /* NOTE: the previous test is a specific case for automatic
5605 struct/union init */
5606 /* XXX: union needs only one init */
5608 int par_count = 0;
5609 if (tok == '(') {
5610 AttributeDef ad1;
5611 CType type1;
5612 next();
5613 if (tcc_state->old_struct_init_code) {
5614 /* an old version of struct initialization.
5615 It have a problems. But with a new version
5616 linux 2.4.26 can't load ramdisk.
5618 while (tok == '(') {
5619 par_count++;
5620 next();
5622 if (!parse_btype(&type1, &ad1))
5623 expect("cast");
5624 type_decl(&type1, &ad1, &n, TYPE_ABSTRACT);
5625 #if 0
5626 if (!is_assignable_types(type, &type1))
5627 tcc_error("invalid type for cast");
5628 #endif
5629 skip(')');
5631 else
5633 if (tok != '(') {
5634 if (!parse_btype(&type1, &ad1))
5635 expect("cast");
5636 type_decl(&type1, &ad1, &n, TYPE_ABSTRACT);
5637 #if 0
5638 if (!is_assignable_types(type, &type1))
5639 tcc_error("invalid type for cast");
5640 #endif
5641 skip(')');
5642 } else
5643 unget_tok(tok);
5647 no_oblock = 1;
5648 if (first || tok == '{') {
5649 skip('{');
5650 no_oblock = 0;
5652 s = type->ref;
5653 f = s->next;
5654 array_length = 0;
5655 index = 0;
5656 n = s->c;
5657 while (tok != '}') {
5658 decl_designator(type, sec, c, NULL, &f, size_only);
5659 index = f->c;
5660 if (!size_only && array_length < index) {
5661 init_putz(type, sec, c + array_length,
5662 index - array_length);
5664 index = index + type_size(&f->type, &align1);
5665 if (index > array_length)
5666 array_length = index;
5668 /* gr: skip fields from same union - ugly. */
5669 while (f->next) {
5670 int align = 0;
5671 int f_size = type_size(&f->type, &align);
5672 int f_type = (f->type.t & VT_BTYPE);
5674 ///printf("index: %2d %08x -- %2d %08x\n", f->c, f->type.t, f->next->c, f->next->type.t);
5675 /* test for same offset */
5676 if (f->next->c != f->c)
5677 break;
5678 if ((f_type == VT_STRUCT) && (f_size == 0)) {
5680 Lets assume a structure of size 0 can't be a member of the union.
5681 This allow to compile the following code from a linux kernel v2.4.26
5682 typedef struct { } rwlock_t;
5683 struct fs_struct {
5684 int count;
5685 rwlock_t lock;
5686 int umask;
5688 struct fs_struct init_fs = { { (1) }, (rwlock_t) {}, 0022, };
5689 tcc-0.9.23 can succesfully compile this version of the kernel.
5690 gcc don't have problems with this code too.
5692 break;
5694 /* if yes, test for bitfield shift */
5695 if ((f->type.t & VT_BITFIELD) && (f->next->type.t & VT_BITFIELD)) {
5696 int bit_pos_1 = (f->type.t >> VT_STRUCT_SHIFT) & 0x3f;
5697 int bit_pos_2 = (f->next->type.t >> VT_STRUCT_SHIFT) & 0x3f;
5698 //printf("bitfield %d %d\n", bit_pos_1, bit_pos_2);
5699 if (bit_pos_1 != bit_pos_2)
5700 break;
5702 f = f->next;
5705 f = f->next;
5706 if (no_oblock && f == NULL)
5707 break;
5708 if (tok == '}')
5709 break;
5710 skip(',');
5712 /* put zeros at the end */
5713 if (!size_only && array_length < n) {
5714 init_putz(type, sec, c + array_length,
5715 n - array_length);
5717 if (!no_oblock)
5718 skip('}');
5719 while (par_count) {
5720 skip(')');
5721 par_count--;
5723 } else if (tok == '{') {
5724 next();
5725 decl_initializer(type, sec, c, first, size_only);
5726 skip('}');
5727 } else if (size_only) {
5728 /* just skip expression */
5729 parlevel = parlevel1 = 0;
5730 while ((parlevel > 0 || parlevel1 > 0 ||
5731 (tok != '}' && tok != ',')) && tok != -1) {
5732 if (tok == '(')
5733 parlevel++;
5734 else if (tok == ')') {
5735 if (parlevel == 0 && parlevel1 == 0)
5736 break;
5737 parlevel--;
5739 else if (tok == '{')
5740 parlevel1++;
5741 else if (tok == '}') {
5742 if (parlevel == 0 && parlevel1 == 0)
5743 break;
5744 parlevel1--;
5746 next();
5748 } else {
5749 /* currently, we always use constant expression for globals
5750 (may change for scripting case) */
5751 expr_type = EXPR_CONST;
5752 if (!sec)
5753 expr_type = EXPR_ANY;
5754 init_putv(type, sec, c, 0, expr_type);
5758 /* parse an initializer for type 't' if 'has_init' is non zero, and
5759 allocate space in local or global data space ('r' is either
5760 VT_LOCAL or VT_CONST). If 'v' is non zero, then an associated
5761 variable 'v' of scope 'scope' is declared before initializers
5762 are parsed. If 'v' is zero, then a reference to the new object
5763 is put in the value stack. If 'has_init' is 2, a special parsing
5764 is done to handle string constants. */
5765 static void decl_initializer_alloc(CType *type, AttributeDef *ad, int r,
5766 int has_init, int v, int scope)
5768 int size, align, addr, data_offset;
5769 int level;
5770 ParseState saved_parse_state = {0};
5771 TokenString init_str;
5772 Section *sec;
5773 Sym *flexible_array;
5775 flexible_array = NULL;
5776 if ((type->t & VT_BTYPE) == VT_STRUCT) {
5777 Sym *field = type->ref->next;
5778 if (field) {
5779 while (field->next)
5780 field = field->next;
5781 if (field->type.t & VT_ARRAY && field->type.ref->c < 0)
5782 flexible_array = field;
5786 size = type_size(type, &align);
5787 /* If unknown size, we must evaluate it before
5788 evaluating initializers because
5789 initializers can generate global data too
5790 (e.g. string pointers or ISOC99 compound
5791 literals). It also simplifies local
5792 initializers handling */
5793 tok_str_new(&init_str);
5794 if (size < 0 || (flexible_array && has_init)) {
5795 if (!has_init)
5796 tcc_error("unknown type size");
5797 /* get all init string */
5798 if (has_init == 2) {
5799 /* only get strings */
5800 while (tok == TOK_STR || tok == TOK_LSTR) {
5801 tok_str_add_tok(&init_str);
5802 next();
5804 } else {
5805 level = 0;
5806 while (level > 0 || (tok != ',' && tok != ';')) {
5807 if (tok < 0)
5808 tcc_error("unexpected end of file in initializer");
5809 tok_str_add_tok(&init_str);
5810 if (tok == '{')
5811 level++;
5812 else if (tok == '}') {
5813 level--;
5814 if (level <= 0) {
5815 next();
5816 break;
5819 next();
5822 tok_str_add(&init_str, -1);
5823 tok_str_add(&init_str, 0);
5825 /* compute size */
5826 save_parse_state(&saved_parse_state);
5828 begin_macro(&init_str, 0);
5829 next();
5830 decl_initializer(type, NULL, 0, 1, 1);
5831 /* prepare second initializer parsing */
5832 macro_ptr = init_str.str;
5833 next();
5835 /* if still unknown size, error */
5836 size = type_size(type, &align);
5837 if (size < 0)
5838 tcc_error("unknown type size");
5840 if (flexible_array)
5841 size += flexible_array->type.ref->c * pointed_size(&flexible_array->type);
5842 /* take into account specified alignment if bigger */
5843 if (ad->a.aligned) {
5844 if (ad->a.aligned > align)
5845 align = ad->a.aligned;
5846 } else if (ad->a.packed) {
5847 align = 1;
5849 if ((r & VT_VALMASK) == VT_LOCAL) {
5850 sec = NULL;
5851 #ifdef CONFIG_TCC_BCHECK
5852 if (tcc_state->do_bounds_check && (type->t & VT_ARRAY)) {
5853 loc--;
5855 #endif
5856 loc = (loc - size) & -align;
5857 addr = loc;
5858 #ifdef CONFIG_TCC_BCHECK
5859 /* handles bounds */
5860 /* XXX: currently, since we do only one pass, we cannot track
5861 '&' operators, so we add only arrays */
5862 if (tcc_state->do_bounds_check && (type->t & VT_ARRAY)) {
5863 addr_t *bounds_ptr;
5864 /* add padding between regions */
5865 loc--;
5866 /* then add local bound info */
5867 bounds_ptr = section_ptr_add(lbounds_section, 2 * sizeof(addr_t));
5868 bounds_ptr[0] = addr;
5869 bounds_ptr[1] = size;
5871 #endif
5872 if (v) {
5873 /* local variable */
5874 sym_push(v, type, r, addr);
5875 } else {
5876 /* push local reference */
5877 vset(type, r, addr);
5879 } else {
5880 Sym *sym;
5882 sym = NULL;
5883 if (v && scope == VT_CONST) {
5884 /* see if the symbol was already defined */
5885 sym = sym_find(v);
5886 if (sym) {
5887 if (!is_compatible_types(&sym->type, type))
5888 tcc_error("incompatible types for redefinition of '%s'",
5889 get_tok_str(v, NULL));
5890 if (sym->type.t & VT_EXTERN) {
5891 /* if the variable is extern, it was not allocated */
5892 sym->type.t &= ~VT_EXTERN;
5893 /* set array size if it was omitted in extern
5894 declaration */
5895 if ((sym->type.t & VT_ARRAY) &&
5896 sym->type.ref->c < 0 &&
5897 type->ref->c >= 0)
5898 sym->type.ref->c = type->ref->c;
5899 } else {
5900 /* we accept several definitions of the same
5901 global variable. this is tricky, because we
5902 must play with the SHN_COMMON type of the symbol */
5903 /* XXX: should check if the variable was already
5904 initialized. It is incorrect to initialized it
5905 twice */
5906 /* no init data, we won't add more to the symbol */
5907 if (!has_init)
5908 goto no_alloc;
5913 /* allocate symbol in corresponding section */
5914 sec = ad->section;
5915 if (!sec) {
5916 if (has_init)
5917 sec = data_section;
5918 else if (tcc_state->nocommon)
5919 sec = bss_section;
5921 if (sec) {
5922 data_offset = sec->data_offset;
5923 data_offset = (data_offset + align - 1) & -align;
5924 addr = data_offset;
5925 /* very important to increment global pointer at this time
5926 because initializers themselves can create new initializers */
5927 data_offset += size;
5928 #ifdef CONFIG_TCC_BCHECK
5929 /* add padding if bound check */
5930 if (tcc_state->do_bounds_check)
5931 data_offset++;
5932 #endif
5933 sec->data_offset = data_offset;
5934 /* allocate section space to put the data */
5935 if (sec->sh_type != SHT_NOBITS &&
5936 data_offset > sec->data_allocated)
5937 section_realloc(sec, data_offset);
5938 /* align section if needed */
5939 if (align > sec->sh_addralign)
5940 sec->sh_addralign = align;
5941 } else {
5942 addr = 0; /* avoid warning */
5945 if (v) {
5946 if (scope != VT_CONST || !sym) {
5947 sym = sym_push(v, type, r | VT_SYM, 0);
5948 sym->asm_label = ad->asm_label;
5950 /* update symbol definition */
5951 if (sec) {
5952 put_extern_sym(sym, sec, addr, size);
5953 } else {
5954 ElfW(Sym) *esym;
5955 /* put a common area */
5956 put_extern_sym(sym, NULL, align, size);
5957 /* XXX: find a nicer way */
5958 esym = &((ElfW(Sym) *)symtab_section->data)[sym->c];
5959 esym->st_shndx = SHN_COMMON;
5961 } else {
5962 /* push global reference */
5963 sym = get_sym_ref(type, sec, addr, size);
5964 vpushsym(type, sym);
5966 /* patch symbol weakness */
5967 if (type->t & VT_WEAK)
5968 weaken_symbol(sym);
5969 apply_visibility(sym, type);
5970 #ifdef CONFIG_TCC_BCHECK
5971 /* handles bounds now because the symbol must be defined
5972 before for the relocation */
5973 if (tcc_state->do_bounds_check) {
5974 addr_t *bounds_ptr;
5976 greloc(bounds_section, sym, bounds_section->data_offset, R_DATA_PTR);
5977 /* then add global bound info */
5978 bounds_ptr = section_ptr_add(bounds_section, 2 * sizeof(addr_t));
5979 bounds_ptr[0] = 0; /* relocated */
5980 bounds_ptr[1] = size;
5982 #endif
5984 if (has_init || (type->t & VT_VLA)) {
5985 decl_initializer(type, sec, addr, 1, 0);
5986 /* restore parse state if needed */
5987 if (init_str.str) {
5988 end_macro();
5989 restore_parse_state(&saved_parse_state);
5991 /* patch flexible array member size back to -1, */
5992 /* for possible subsequent similar declarations */
5993 if (flexible_array)
5994 flexible_array->type.ref->c = -1;
5996 no_alloc: ;
5999 static void put_func_debug(Sym *sym)
6001 char buf[512];
6003 /* stabs info */
6004 /* XXX: we put here a dummy type */
6005 snprintf(buf, sizeof(buf), "%s:%c1",
6006 funcname, sym->type.t & VT_STATIC ? 'f' : 'F');
6007 put_stabs_r(buf, N_FUN, 0, file->line_num, 0,
6008 cur_text_section, sym->c);
6009 /* //gr gdb wants a line at the function */
6010 put_stabn(N_SLINE, 0, file->line_num, 0);
6011 last_ind = 0;
6012 last_line_num = 0;
6015 /* parse an old style function declaration list */
6016 /* XXX: check multiple parameter */
6017 static void func_decl_list(Sym *func_sym)
6019 AttributeDef ad;
6020 int v;
6021 Sym *s;
6022 CType btype, type;
6024 /* parse each declaration */
6025 while (tok != '{' && tok != ';' && tok != ',' && tok != TOK_EOF &&
6026 tok != TOK_ASM1 && tok != TOK_ASM2 && tok != TOK_ASM3) {
6027 if (!parse_btype(&btype, &ad))
6028 expect("declaration list");
6029 if (((btype.t & VT_BTYPE) == VT_ENUM ||
6030 (btype.t & VT_BTYPE) == VT_STRUCT) &&
6031 tok == ';') {
6032 /* we accept no variable after */
6033 } else {
6034 for(;;) {
6035 type = btype;
6036 type_decl(&type, &ad, &v, TYPE_DIRECT);
6037 /* find parameter in function parameter list */
6038 s = func_sym->next;
6039 while (s != NULL) {
6040 if ((s->v & ~SYM_FIELD) == v)
6041 goto found;
6042 s = s->next;
6044 tcc_error("declaration for parameter '%s' but no such parameter",
6045 get_tok_str(v, NULL));
6046 found:
6047 /* check that no storage specifier except 'register' was given */
6048 if (type.t & VT_STORAGE)
6049 tcc_error("storage class specified for '%s'", get_tok_str(v, NULL));
6050 convert_parameter_type(&type);
6051 /* we can add the type (NOTE: it could be local to the function) */
6052 s->type = type;
6053 /* accept other parameters */
6054 if (tok == ',')
6055 next();
6056 else
6057 break;
6060 skip(';');
6064 /* parse a function defined by symbol 'sym' and generate its code in
6065 'cur_text_section' */
6066 static void gen_function(Sym *sym)
6068 int saved_nocode_wanted = nocode_wanted;
6070 nocode_wanted = 0;
6071 ind = cur_text_section->data_offset;
6072 /* NOTE: we patch the symbol size later */
6073 put_extern_sym(sym, cur_text_section, ind, 0);
6074 funcname = get_tok_str(sym->v, NULL);
6075 func_ind = ind;
6076 /* Initialize VLA state */
6077 vla_sp_loc = -1;
6078 vla_sp_root_loc = -1;
6079 /* put debug symbol */
6080 if (tcc_state->do_debug)
6081 put_func_debug(sym);
6082 /* push a dummy symbol to enable local sym storage */
6083 sym_push2(&local_stack, SYM_FIELD, 0, 0);
6084 gfunc_prolog(&sym->type);
6085 #ifdef CONFIG_TCC_BCHECK
6086 if (tcc_state->do_bounds_check && !strcmp(funcname, "main")) {
6087 int i;
6088 Sym *sym;
6089 for (i = 0, sym = local_stack; i < 2; i++, sym = sym->prev) {
6090 if (sym->v & SYM_FIELD || sym->prev->v & SYM_FIELD)
6091 break;
6092 vpush_global_sym(&func_old_type, TOK___bound_main_arg);
6093 vset(&sym->type, sym->r, sym->c);
6094 gfunc_call(1);
6097 #endif
6098 rsym = 0;
6099 block(NULL, NULL, NULL, NULL, 0, 0);
6100 gsym(rsym);
6101 gfunc_epilog();
6102 cur_text_section->data_offset = ind;
6103 label_pop(&global_label_stack, NULL);
6104 /* reset local stack */
6105 scope_stack_bottom = NULL;
6106 sym_pop(&local_stack, NULL);
6107 /* end of function */
6108 /* patch symbol size */
6109 ((ElfW(Sym) *)symtab_section->data)[sym->c].st_size =
6110 ind - func_ind;
6111 /* patch symbol weakness (this definition overrules any prototype) */
6112 if (sym->type.t & VT_WEAK)
6113 weaken_symbol(sym);
6114 apply_visibility(sym, &sym->type);
6115 if (tcc_state->do_debug) {
6116 put_stabn(N_FUN, 0, 0, ind - func_ind);
6118 /* It's better to crash than to generate wrong code */
6119 cur_text_section = NULL;
6120 funcname = ""; /* for safety */
6121 func_vt.t = VT_VOID; /* for safety */
6122 func_var = 0; /* for safety */
6123 ind = 0; /* for safety */
6124 nocode_wanted = saved_nocode_wanted;
6125 check_vstack();
6128 ST_FUNC void gen_inline_functions(void)
6130 Sym *sym;
6131 int inline_generated, i, ln;
6132 struct InlineFunc *fn;
6134 ln = file->line_num;
6135 /* iterate while inline function are referenced */
6136 for(;;) {
6137 inline_generated = 0;
6138 for (i = 0; i < tcc_state->nb_inline_fns; ++i) {
6139 fn = tcc_state->inline_fns[i];
6140 sym = fn->sym;
6141 if (sym && sym->c) {
6142 /* the function was used: generate its code and
6143 convert it to a normal function */
6144 fn->sym = NULL;
6145 if (file)
6146 pstrcpy(file->filename, sizeof file->filename, fn->filename);
6147 sym->r = VT_SYM | VT_CONST;
6148 sym->type.t &= ~VT_INLINE;
6150 begin_macro(&fn->func_str, 0);
6151 next();
6152 cur_text_section = text_section;
6153 gen_function(sym);
6154 end_macro();
6156 inline_generated = 1;
6159 if (!inline_generated)
6160 break;
6162 file->line_num = ln;
6163 /* free tokens of unused inline functions */
6164 for (i = 0; i < tcc_state->nb_inline_fns; ++i) {
6165 fn = tcc_state->inline_fns[i];
6166 if (fn->sym)
6167 tok_str_free(fn->func_str.str);
6169 dynarray_reset(&tcc_state->inline_fns, &tcc_state->nb_inline_fns);
6172 /* 'l' is VT_LOCAL or VT_CONST to define default storage type */
6173 static int decl0(int l, int is_for_loop_init)
6175 int v, has_init, r;
6176 CType type, btype;
6177 Sym *sym;
6178 AttributeDef ad;
6180 while (1) {
6181 if (!parse_btype(&btype, &ad)) {
6182 if (is_for_loop_init)
6183 return 0;
6184 /* skip redundant ';' */
6185 /* XXX: find more elegant solution */
6186 if (tok == ';') {
6187 next();
6188 continue;
6190 if (l == VT_CONST &&
6191 (tok == TOK_ASM1 || tok == TOK_ASM2 || tok == TOK_ASM3)) {
6192 /* global asm block */
6193 asm_global_instr();
6194 continue;
6196 /* special test for old K&R protos without explicit int
6197 type. Only accepted when defining global data */
6198 if (l == VT_LOCAL || tok < TOK_DEFINE)
6199 break;
6200 btype.t = VT_INT;
6202 if (((btype.t & VT_BTYPE) == VT_ENUM ||
6203 (btype.t & VT_BTYPE) == VT_STRUCT) &&
6204 tok == ';') {
6205 if ((btype.t & VT_BTYPE) == VT_STRUCT) {
6206 int v = btype.ref->v;
6207 if (!(v & SYM_FIELD) && (v & ~SYM_STRUCT) >= SYM_FIRST_ANOM)
6208 tcc_warning("unnamed struct/union that defines no instances");
6210 next();
6211 continue;
6213 while (1) { /* iterate thru each declaration */
6214 type = btype;
6215 type_decl(&type, &ad, &v, TYPE_DIRECT);
6216 #if 0
6218 char buf[500];
6219 type_to_str(buf, sizeof(buf), t, get_tok_str(v, NULL));
6220 printf("type = '%s'\n", buf);
6222 #endif
6223 if ((type.t & VT_BTYPE) == VT_FUNC) {
6224 if ((type.t & VT_STATIC) && (l == VT_LOCAL)) {
6225 tcc_error("function without file scope cannot be static");
6227 /* if old style function prototype, we accept a
6228 declaration list */
6229 sym = type.ref;
6230 if (sym->c == FUNC_OLD)
6231 func_decl_list(sym);
6234 if (gnu_ext && (tok == TOK_ASM1 || tok == TOK_ASM2 || tok == TOK_ASM3)) {
6235 ad.asm_label = asm_label_instr();
6236 /* parse one last attribute list, after asm label */
6237 parse_attribute(&ad);
6238 if (tok == '{')
6239 expect(";");
6242 if (ad.a.weak)
6243 type.t |= VT_WEAK;
6244 #ifdef TCC_TARGET_PE
6245 if (ad.a.func_import)
6246 type.t |= VT_IMPORT;
6247 if (ad.a.func_export)
6248 type.t |= VT_EXPORT;
6249 #endif
6250 type.t |= ad.a.visibility << VT_VIS_SHIFT;
6252 if (tok == '{') {
6253 if (l == VT_LOCAL)
6254 tcc_error("cannot use local functions");
6255 if ((type.t & VT_BTYPE) != VT_FUNC)
6256 expect("function definition");
6258 /* reject abstract declarators in function definition */
6259 sym = type.ref;
6260 while ((sym = sym->next) != NULL)
6261 if (!(sym->v & ~SYM_FIELD))
6262 expect("identifier");
6264 /* XXX: cannot do better now: convert extern line to static inline */
6265 if ((type.t & (VT_EXTERN | VT_INLINE)) == (VT_EXTERN | VT_INLINE))
6266 type.t = (type.t & ~VT_EXTERN) | VT_STATIC;
6268 sym = sym_find(v);
6269 if (sym) {
6270 Sym *ref;
6271 if ((sym->type.t & VT_BTYPE) != VT_FUNC)
6272 goto func_error1;
6274 ref = sym->type.ref;
6275 if (0 == ref->a.func_proto)
6276 tcc_error("redefinition of '%s'", get_tok_str(v, NULL));
6278 /* use func_call from prototype if not defined */
6279 if (ref->a.func_call != FUNC_CDECL
6280 && type.ref->a.func_call == FUNC_CDECL)
6281 type.ref->a.func_call = ref->a.func_call;
6283 /* use export from prototype */
6284 if (ref->a.func_export)
6285 type.ref->a.func_export = 1;
6287 /* use static from prototype */
6288 if (sym->type.t & VT_STATIC)
6289 type.t = (type.t & ~VT_EXTERN) | VT_STATIC;
6291 /* If the definition has no visibility use the
6292 one from prototype. */
6293 if (! (type.t & VT_VIS_MASK))
6294 type.t |= sym->type.t & VT_VIS_MASK;
6296 if (!is_compatible_types(&sym->type, &type)) {
6297 func_error1:
6298 tcc_error("incompatible types for redefinition of '%s'",
6299 get_tok_str(v, NULL));
6301 type.ref->a.func_proto = 0;
6302 /* if symbol is already defined, then put complete type */
6303 sym->type = type;
6304 } else {
6305 /* put function symbol */
6306 sym = global_identifier_push(v, type.t, 0);
6307 sym->type.ref = type.ref;
6310 /* static inline functions are just recorded as a kind
6311 of macro. Their code will be emitted at the end of
6312 the compilation unit only if they are used */
6313 if ((type.t & (VT_INLINE | VT_STATIC)) ==
6314 (VT_INLINE | VT_STATIC)) {
6315 int block_level;
6316 struct InlineFunc *fn;
6317 const char *filename;
6319 filename = file ? file->filename : "";
6320 fn = tcc_malloc(sizeof *fn + strlen(filename));
6321 strcpy(fn->filename, filename);
6322 fn->sym = sym;
6323 tok_str_new(&fn->func_str);
6325 block_level = 0;
6326 for(;;) {
6327 int t;
6328 if (tok == TOK_EOF)
6329 tcc_error("unexpected end of file");
6330 tok_str_add_tok(&fn->func_str);
6331 t = tok;
6332 next();
6333 if (t == '{') {
6334 block_level++;
6335 } else if (t == '}') {
6336 block_level--;
6337 if (block_level == 0)
6338 break;
6341 tok_str_add(&fn->func_str, -1);
6342 tok_str_add(&fn->func_str, 0);
6343 dynarray_add((void ***)&tcc_state->inline_fns, &tcc_state->nb_inline_fns, fn);
6345 } else {
6346 /* compute text section */
6347 cur_text_section = ad.section;
6348 if (!cur_text_section)
6349 cur_text_section = text_section;
6350 sym->r = VT_SYM | VT_CONST;
6351 gen_function(sym);
6353 break;
6354 } else {
6355 if (btype.t & VT_TYPEDEF) {
6356 /* save typedefed type */
6357 /* XXX: test storage specifiers ? */
6358 sym = sym_push(v, &type, 0, 0);
6359 sym->a = ad.a;
6360 sym->type.t |= VT_TYPEDEF;
6361 } else {
6362 r = 0;
6363 if ((type.t & VT_BTYPE) == VT_FUNC) {
6364 /* external function definition */
6365 /* specific case for func_call attribute */
6366 ad.a.func_proto = 1;
6367 type.ref->a = ad.a;
6368 } else if (!(type.t & VT_ARRAY)) {
6369 /* not lvalue if array */
6370 r |= lvalue_type(type.t);
6372 has_init = (tok == '=');
6373 if (has_init && (type.t & VT_VLA))
6374 tcc_error("Variable length array cannot be initialized");
6375 if ((btype.t & VT_EXTERN) || ((type.t & VT_BTYPE) == VT_FUNC) ||
6376 ((type.t & VT_ARRAY) && (type.t & VT_STATIC) &&
6377 !has_init && l == VT_CONST && type.ref->c < 0)) {
6378 /* external variable or function */
6379 /* NOTE: as GCC, uninitialized global static
6380 arrays of null size are considered as
6381 extern */
6382 sym = external_sym(v, &type, r);
6383 sym->asm_label = ad.asm_label;
6385 if (ad.alias_target) {
6386 Section tsec;
6387 Elf32_Sym *esym;
6388 Sym *alias_target;
6390 alias_target = sym_find(ad.alias_target);
6391 if (!alias_target || !alias_target->c)
6392 tcc_error("unsupported forward __alias__ attribute");
6393 esym = &((Elf32_Sym *)symtab_section->data)[alias_target->c];
6394 tsec.sh_num = esym->st_shndx;
6395 put_extern_sym2(sym, &tsec, esym->st_value, esym->st_size, 0);
6397 } else {
6398 type.t |= (btype.t & VT_STATIC); /* Retain "static". */
6399 if (type.t & VT_STATIC)
6400 r |= VT_CONST;
6401 else
6402 r |= l;
6403 if (has_init)
6404 next();
6405 decl_initializer_alloc(&type, &ad, r, has_init, v, l);
6408 if (tok != ',') {
6409 if (is_for_loop_init)
6410 return 1;
6411 skip(';');
6412 break;
6414 next();
6416 ad.a.aligned = 0;
6419 return 0;
6422 ST_FUNC void decl(int l)
6424 decl0(l, 0);