riscv: asm: implement `j offset`
[tinycc.git] / i386-gen.c
blob7aebc5cd8c320b2f978de5839402fa763c1510d4
1 /*
2 * X86 code generator for TCC
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 #ifdef TARGET_DEFS_ONLY
23 /* number of available registers */
24 #define NB_REGS 5
25 #define NB_ASM_REGS 8
26 #define CONFIG_TCC_ASM
28 /* a register can belong to several classes. The classes must be
29 sorted from more general to more precise (see gv2() code which does
30 assumptions on it). */
31 #define RC_INT 0x0001 /* generic integer register */
32 #define RC_FLOAT 0x0002 /* generic float register */
33 #define RC_EAX 0x0004
34 #define RC_EDX 0x0008
35 #define RC_ECX 0x0010
36 #define RC_EBX 0x0020
37 #define RC_ST0 0x0040
39 #define RC_IRET RC_EAX /* function return: integer register */
40 #define RC_IRE2 RC_EDX /* function return: second integer register */
41 #define RC_FRET RC_ST0 /* function return: float register */
43 /* pretty names for the registers */
44 enum {
45 TREG_EAX = 0,
46 TREG_ECX,
47 TREG_EDX,
48 TREG_EBX,
49 TREG_ST0,
50 TREG_ESP = 4
53 /* return registers for function */
54 #define REG_IRET TREG_EAX /* single word int return register */
55 #define REG_IRE2 TREG_EDX /* second word return register (for long long) */
56 #define REG_FRET TREG_ST0 /* float return register */
58 /* defined if function parameters must be evaluated in reverse order */
59 #define INVERT_FUNC_PARAMS
61 /* defined if structures are passed as pointers. Otherwise structures
62 are directly pushed on stack. */
63 /* #define FUNC_STRUCT_PARAM_AS_PTR */
65 /* pointer size, in bytes */
66 #define PTR_SIZE 4
68 /* long double size and alignment, in bytes */
69 #define LDOUBLE_SIZE 12
70 #define LDOUBLE_ALIGN 4
71 /* maximum alignment (for aligned attribute support) */
72 #define MAX_ALIGN 8
74 /* define if return values need to be extended explicitely
75 at caller side (for interfacing with non-TCC compilers) */
76 #define PROMOTE_RET
78 /******************************************************/
79 #else /* ! TARGET_DEFS_ONLY */
80 /******************************************************/
81 #define USING_GLOBALS
82 #include "tcc.h"
84 ST_DATA const char * const target_machine_defs =
85 "__i386__\0"
86 "__i386\0"
89 /* define to 1/0 to [not] have EBX as 4th register */
90 #define USE_EBX 0
92 ST_DATA const int reg_classes[NB_REGS] = {
93 /* eax */ RC_INT | RC_EAX,
94 /* ecx */ RC_INT | RC_ECX,
95 /* edx */ RC_INT | RC_EDX,
96 /* ebx */ (RC_INT | RC_EBX) * USE_EBX,
97 /* st0 */ RC_FLOAT | RC_ST0,
100 static unsigned long func_sub_sp_offset;
101 static int func_ret_sub;
102 #ifdef CONFIG_TCC_BCHECK
103 static addr_t func_bound_offset;
104 static unsigned long func_bound_ind;
105 ST_DATA int func_bound_add_epilog;
106 static void gen_bounds_prolog(void);
107 static void gen_bounds_epilog(void);
108 #endif
110 /* XXX: make it faster ? */
111 ST_FUNC void g(int c)
113 int ind1;
114 if (nocode_wanted)
115 return;
116 ind1 = ind + 1;
117 if (ind1 > cur_text_section->data_allocated)
118 section_realloc(cur_text_section, ind1);
119 cur_text_section->data[ind] = c;
120 ind = ind1;
123 ST_FUNC void o(unsigned int c)
125 while (c) {
126 g(c);
127 c = c >> 8;
131 ST_FUNC void gen_le16(int v)
133 g(v);
134 g(v >> 8);
137 ST_FUNC void gen_le32(int c)
139 g(c);
140 g(c >> 8);
141 g(c >> 16);
142 g(c >> 24);
145 /* output a symbol and patch all calls to it */
146 ST_FUNC void gsym_addr(int t, int a)
148 while (t) {
149 unsigned char *ptr = cur_text_section->data + t;
150 uint32_t n = read32le(ptr); /* next value */
151 write32le(ptr, a - t - 4);
152 t = n;
156 /* instruction + 4 bytes data. Return the address of the data */
157 static int oad(int c, int s)
159 int t;
160 if (nocode_wanted)
161 return s;
162 o(c);
163 t = ind;
164 gen_le32(s);
165 return t;
168 ST_FUNC void gen_fill_nops(int bytes)
170 while (bytes--)
171 g(0x90);
174 /* generate jmp to a label */
175 #define gjmp2(instr,lbl) oad(instr,lbl)
177 /* output constant with relocation if 'r & VT_SYM' is true */
178 ST_FUNC void gen_addr32(int r, Sym *sym, int c)
180 if (r & VT_SYM)
181 greloc(cur_text_section, sym, ind, R_386_32);
182 gen_le32(c);
185 ST_FUNC void gen_addrpc32(int r, Sym *sym, int c)
187 if (r & VT_SYM)
188 greloc(cur_text_section, sym, ind, R_386_PC32);
189 gen_le32(c - 4);
192 /* generate a modrm reference. 'op_reg' contains the additional 3
193 opcode bits */
194 static void gen_modrm(int op_reg, int r, Sym *sym, int c)
196 op_reg = op_reg << 3;
197 if ((r & VT_VALMASK) == VT_CONST) {
198 /* constant memory reference */
199 o(0x05 | op_reg);
200 gen_addr32(r, sym, c);
201 } else if ((r & VT_VALMASK) == VT_LOCAL) {
202 /* currently, we use only ebp as base */
203 if (c == (char)c) {
204 /* short reference */
205 o(0x45 | op_reg);
206 g(c);
207 } else {
208 oad(0x85 | op_reg, c);
210 } else {
211 g(0x00 | op_reg | (r & VT_VALMASK));
215 /* load 'r' from value 'sv' */
216 ST_FUNC void load(int r, SValue *sv)
218 int v, t, ft, fc, fr;
219 SValue v1;
221 #ifdef TCC_TARGET_PE
222 SValue v2;
223 sv = pe_getimport(sv, &v2);
224 #endif
226 fr = sv->r;
227 ft = sv->type.t & ~VT_DEFSIGN;
228 fc = sv->c.i;
230 ft &= ~(VT_VOLATILE | VT_CONSTANT);
232 v = fr & VT_VALMASK;
233 if (fr & VT_LVAL) {
234 if (v == VT_LLOCAL) {
235 v1.type.t = VT_INT;
236 v1.r = VT_LOCAL | VT_LVAL;
237 v1.c.i = fc;
238 v1.sym = NULL;
239 fr = r;
240 if (!(reg_classes[fr] & RC_INT))
241 fr = get_reg(RC_INT);
242 load(fr, &v1);
244 if ((ft & VT_BTYPE) == VT_FLOAT) {
245 o(0xd9); /* flds */
246 r = 0;
247 } else if ((ft & VT_BTYPE) == VT_DOUBLE) {
248 o(0xdd); /* fldl */
249 r = 0;
250 } else if ((ft & VT_BTYPE) == VT_LDOUBLE) {
251 o(0xdb); /* fldt */
252 r = 5;
253 } else if ((ft & VT_TYPE) == VT_BYTE || (ft & VT_TYPE) == VT_BOOL) {
254 o(0xbe0f); /* movsbl */
255 } else if ((ft & VT_TYPE) == (VT_BYTE | VT_UNSIGNED)) {
256 o(0xb60f); /* movzbl */
257 } else if ((ft & VT_TYPE) == VT_SHORT) {
258 o(0xbf0f); /* movswl */
259 } else if ((ft & VT_TYPE) == (VT_SHORT | VT_UNSIGNED)) {
260 o(0xb70f); /* movzwl */
261 } else {
262 o(0x8b); /* movl */
264 gen_modrm(r, fr, sv->sym, fc);
265 } else {
266 if (v == VT_CONST) {
267 o(0xb8 + r); /* mov $xx, r */
268 gen_addr32(fr, sv->sym, fc);
269 } else if (v == VT_LOCAL) {
270 if (fc) {
271 o(0x8d); /* lea xxx(%ebp), r */
272 gen_modrm(r, VT_LOCAL, sv->sym, fc);
273 } else {
274 o(0x89);
275 o(0xe8 + r); /* mov %ebp, r */
277 } else if (v == VT_CMP) {
278 o(0x0f); /* setxx %br */
279 o(fc);
280 o(0xc0 + r);
281 o(0xc0b60f + r * 0x90000); /* movzbl %al, %eax */
282 } else if (v == VT_JMP || v == VT_JMPI) {
283 t = v & 1;
284 oad(0xb8 + r, t); /* mov $1, r */
285 o(0x05eb); /* jmp after */
286 gsym(fc);
287 oad(0xb8 + r, t ^ 1); /* mov $0, r */
288 } else if (v != r) {
289 o(0x89);
290 o(0xc0 + r + v * 8); /* mov v, r */
295 /* store register 'r' in lvalue 'v' */
296 ST_FUNC void store(int r, SValue *v)
298 int fr, bt, ft, fc;
300 #ifdef TCC_TARGET_PE
301 SValue v2;
302 v = pe_getimport(v, &v2);
303 #endif
305 ft = v->type.t;
306 fc = v->c.i;
307 fr = v->r & VT_VALMASK;
308 ft &= ~(VT_VOLATILE | VT_CONSTANT);
309 bt = ft & VT_BTYPE;
310 /* XXX: incorrect if float reg to reg */
311 if (bt == VT_FLOAT) {
312 o(0xd9); /* fsts */
313 r = 2;
314 } else if (bt == VT_DOUBLE) {
315 o(0xdd); /* fstpl */
316 r = 2;
317 } else if (bt == VT_LDOUBLE) {
318 o(0xc0d9); /* fld %st(0) */
319 o(0xdb); /* fstpt */
320 r = 7;
321 } else {
322 if (bt == VT_SHORT)
323 o(0x66);
324 if (bt == VT_BYTE || bt == VT_BOOL)
325 o(0x88);
326 else
327 o(0x89);
329 if (fr == VT_CONST ||
330 fr == VT_LOCAL ||
331 (v->r & VT_LVAL)) {
332 gen_modrm(r, v->r, v->sym, fc);
333 } else if (fr != r) {
334 o(0xc0 + fr + r * 8); /* mov r, fr */
338 static void gadd_sp(int val)
340 if (val == (char)val) {
341 o(0xc483);
342 g(val);
343 } else {
344 oad(0xc481, val); /* add $xxx, %esp */
348 #if defined CONFIG_TCC_BCHECK || defined TCC_TARGET_PE
349 static void gen_static_call(int v)
351 Sym *sym;
353 sym = external_helper_sym(v);
354 oad(0xe8, -4);
355 greloc(cur_text_section, sym, ind-4, R_386_PC32);
357 #endif
359 /* 'is_jmp' is '1' if it is a jump */
360 static void gcall_or_jmp(int is_jmp)
362 int r;
363 if ((vtop->r & (VT_VALMASK | VT_LVAL)) == VT_CONST && (vtop->r & VT_SYM)) {
364 /* constant and relocation case */
365 greloc(cur_text_section, vtop->sym, ind + 1, R_386_PC32);
366 oad(0xe8 + is_jmp, vtop->c.i - 4); /* call/jmp im */
367 } else {
368 /* otherwise, indirect call */
369 r = gv(RC_INT);
370 o(0xff); /* call/jmp *r */
371 o(0xd0 + r + (is_jmp << 4));
375 static const uint8_t fastcall_regs[3] = { TREG_EAX, TREG_EDX, TREG_ECX };
376 static const uint8_t fastcallw_regs[2] = { TREG_ECX, TREG_EDX };
378 /* Return the number of registers needed to return the struct, or 0 if
379 returning via struct pointer. */
380 ST_FUNC int gfunc_sret(CType *vt, int variadic, CType *ret, int *ret_align, int *regsize)
382 #if defined(TCC_TARGET_PE) || TARGETOS_FreeBSD || TARGETOS_OpenBSD
383 int size, align, nregs;
384 *ret_align = 1; // Never have to re-align return values for x86
385 *regsize = 4;
386 size = type_size(vt, &align);
387 if (size > 8 || (size & (size - 1)))
388 return 0;
389 nregs = 1;
390 if (size == 8)
391 ret->t = VT_INT, nregs = 2;
392 else if (size == 4)
393 ret->t = VT_INT;
394 else if (size == 2)
395 ret->t = VT_SHORT;
396 else
397 ret->t = VT_BYTE;
398 ret->ref = NULL;
399 return nregs;
400 #else
401 *ret_align = 1; // Never have to re-align return values for x86
402 return 0;
403 #endif
406 /* Generate function call. The function address is pushed first, then
407 all the parameters in call order. This functions pops all the
408 parameters and the function address. */
409 ST_FUNC void gfunc_call(int nb_args)
411 int size, align, r, args_size, i, func_call;
412 Sym *func_sym;
414 #ifdef CONFIG_TCC_BCHECK
415 if (tcc_state->do_bounds_check)
416 gbound_args(nb_args);
417 #endif
419 args_size = 0;
420 for(i = 0;i < nb_args; i++) {
421 if ((vtop->type.t & VT_BTYPE) == VT_STRUCT) {
422 size = type_size(&vtop->type, &align);
423 /* align to stack align size */
424 size = (size + 3) & ~3;
425 /* allocate the necessary size on stack */
426 #ifdef TCC_TARGET_PE
427 if (size >= 4096) {
428 r = get_reg(RC_EAX);
429 oad(0x68, size); // push size
430 /* cannot call normal 'alloca' with bound checking */
431 gen_static_call(tok_alloc_const("__alloca"));
432 gadd_sp(4);
433 } else
434 #endif
436 oad(0xec81, size); /* sub $xxx, %esp */
437 /* generate structure store */
438 r = get_reg(RC_INT);
439 o(0xe089 + (r << 8)); /* mov %esp, r */
441 vset(&vtop->type, r | VT_LVAL, 0);
442 vswap();
443 vstore();
444 args_size += size;
445 } else if (is_float(vtop->type.t)) {
446 gv(RC_FLOAT); /* only one float register */
447 if ((vtop->type.t & VT_BTYPE) == VT_FLOAT)
448 size = 4;
449 else if ((vtop->type.t & VT_BTYPE) == VT_DOUBLE)
450 size = 8;
451 else
452 size = 12;
453 oad(0xec81, size); /* sub $xxx, %esp */
454 if (size == 12)
455 o(0x7cdb);
456 else
457 o(0x5cd9 + size - 4); /* fstp[s|l] 0(%esp) */
458 g(0x24);
459 g(0x00);
460 args_size += size;
461 } else {
462 /* simple type (currently always same size) */
463 /* XXX: implicit cast ? */
464 r = gv(RC_INT);
465 if ((vtop->type.t & VT_BTYPE) == VT_LLONG) {
466 size = 8;
467 o(0x50 + vtop->r2); /* push r */
468 } else {
469 size = 4;
471 o(0x50 + r); /* push r */
472 args_size += size;
474 vtop--;
476 save_regs(0); /* save used temporary registers */
477 func_sym = vtop->type.ref;
478 func_call = func_sym->f.func_call;
479 /* fast call case */
480 if ((func_call >= FUNC_FASTCALL1 && func_call <= FUNC_FASTCALL3) ||
481 func_call == FUNC_FASTCALLW) {
482 int fastcall_nb_regs;
483 const uint8_t *fastcall_regs_ptr;
484 if (func_call == FUNC_FASTCALLW) {
485 fastcall_regs_ptr = fastcallw_regs;
486 fastcall_nb_regs = 2;
487 } else {
488 fastcall_regs_ptr = fastcall_regs;
489 fastcall_nb_regs = func_call - FUNC_FASTCALL1 + 1;
491 for(i = 0;i < fastcall_nb_regs; i++) {
492 if (args_size <= 0)
493 break;
494 o(0x58 + fastcall_regs_ptr[i]); /* pop r */
495 /* XXX: incorrect for struct/floats */
496 args_size -= 4;
499 #if !defined(TCC_TARGET_PE) && !TARGETOS_FreeBSD || TARGETOS_OpenBSD
500 else if ((vtop->type.ref->type.t & VT_BTYPE) == VT_STRUCT)
501 args_size -= 4;
502 #endif
504 gcall_or_jmp(0);
506 if (args_size && func_call != FUNC_STDCALL && func_call != FUNC_FASTCALLW)
507 gadd_sp(args_size);
508 vtop--;
511 #ifdef TCC_TARGET_PE
512 #define FUNC_PROLOG_SIZE (10 + USE_EBX)
513 #else
514 #define FUNC_PROLOG_SIZE (9 + USE_EBX)
515 #endif
517 /* generate function prolog of type 't' */
518 ST_FUNC void gfunc_prolog(Sym *func_sym)
520 CType *func_type = &func_sym->type;
521 int addr, align, size, func_call, fastcall_nb_regs;
522 int param_index, param_addr;
523 const uint8_t *fastcall_regs_ptr;
524 Sym *sym;
525 CType *type;
527 sym = func_type->ref;
528 func_call = sym->f.func_call;
529 addr = 8;
530 loc = 0;
531 func_vc = 0;
533 if (func_call >= FUNC_FASTCALL1 && func_call <= FUNC_FASTCALL3) {
534 fastcall_nb_regs = func_call - FUNC_FASTCALL1 + 1;
535 fastcall_regs_ptr = fastcall_regs;
536 } else if (func_call == FUNC_FASTCALLW) {
537 fastcall_nb_regs = 2;
538 fastcall_regs_ptr = fastcallw_regs;
539 } else {
540 fastcall_nb_regs = 0;
541 fastcall_regs_ptr = NULL;
543 param_index = 0;
545 ind += FUNC_PROLOG_SIZE;
546 func_sub_sp_offset = ind;
547 /* if the function returns a structure, then add an
548 implicit pointer parameter */
549 #if defined(TCC_TARGET_PE) || TARGETOS_FreeBSD || TARGETOS_OpenBSD
550 size = type_size(&func_vt,&align);
551 if (((func_vt.t & VT_BTYPE) == VT_STRUCT)
552 && (size > 8 || (size & (size - 1)))) {
553 #else
554 if ((func_vt.t & VT_BTYPE) == VT_STRUCT) {
555 #endif
556 /* XXX: fastcall case ? */
557 func_vc = addr;
558 addr += 4;
559 param_index++;
561 /* define parameters */
562 while ((sym = sym->next) != NULL) {
563 type = &sym->type;
564 size = type_size(type, &align);
565 size = (size + 3) & ~3;
566 #ifdef FUNC_STRUCT_PARAM_AS_PTR
567 /* structs are passed as pointer */
568 if ((type->t & VT_BTYPE) == VT_STRUCT) {
569 size = 4;
571 #endif
572 if (param_index < fastcall_nb_regs) {
573 /* save FASTCALL register */
574 loc -= 4;
575 o(0x89); /* movl */
576 gen_modrm(fastcall_regs_ptr[param_index], VT_LOCAL, NULL, loc);
577 param_addr = loc;
578 } else {
579 param_addr = addr;
580 addr += size;
582 sym_push(sym->v & ~SYM_FIELD, type,
583 VT_LOCAL | VT_LVAL, param_addr);
584 param_index++;
586 func_ret_sub = 0;
587 /* pascal type call or fastcall ? */
588 if (func_call == FUNC_STDCALL || func_call == FUNC_FASTCALLW)
589 func_ret_sub = addr - 8;
590 #if !defined(TCC_TARGET_PE) && !TARGETOS_FreeBSD || TARGETOS_OpenBSD
591 else if (func_vc)
592 func_ret_sub = 4;
593 #endif
595 #ifdef CONFIG_TCC_BCHECK
596 if (tcc_state->do_bounds_check)
597 gen_bounds_prolog();
598 #endif
601 /* generate function epilog */
602 ST_FUNC void gfunc_epilog(void)
604 addr_t v, saved_ind;
606 #ifdef CONFIG_TCC_BCHECK
607 if (tcc_state->do_bounds_check)
608 gen_bounds_epilog();
609 #endif
611 /* align local size to word & save local variables */
612 v = (-loc + 3) & -4;
614 #if USE_EBX
615 o(0x8b);
616 gen_modrm(TREG_EBX, VT_LOCAL, NULL, -(v+4));
617 #endif
619 o(0xc9); /* leave */
620 if (func_ret_sub == 0) {
621 o(0xc3); /* ret */
622 } else {
623 o(0xc2); /* ret n */
624 g(func_ret_sub);
625 g(func_ret_sub >> 8);
627 saved_ind = ind;
628 ind = func_sub_sp_offset - FUNC_PROLOG_SIZE;
629 #ifdef TCC_TARGET_PE
630 if (v >= 4096) {
631 oad(0xb8, v); /* mov stacksize, %eax */
632 gen_static_call(TOK___chkstk); /* call __chkstk, (does the stackframe too) */
633 } else
634 #endif
636 o(0xe58955); /* push %ebp, mov %esp, %ebp */
637 o(0xec81); /* sub esp, stacksize */
638 gen_le32(v);
639 #ifdef TCC_TARGET_PE
640 o(0x90); /* adjust to FUNC_PROLOG_SIZE */
641 #endif
643 o(0x53 * USE_EBX); /* push ebx */
644 ind = saved_ind;
647 /* generate a jump to a label */
648 ST_FUNC int gjmp(int t)
650 return gjmp2(0xe9, t);
653 /* generate a jump to a fixed address */
654 ST_FUNC void gjmp_addr(int a)
656 int r;
657 r = a - ind - 2;
658 if (r == (char)r) {
659 g(0xeb);
660 g(r);
661 } else {
662 oad(0xe9, a - ind - 5);
666 #if 0
667 /* generate a jump to a fixed address */
668 ST_FUNC void gjmp_cond_addr(int a, int op)
670 int r = a - ind - 2;
671 if (r == (char)r)
672 g(op - 32), g(r);
673 else
674 g(0x0f), gjmp2(op - 16, r - 4);
676 #endif
678 ST_FUNC int gjmp_append(int n, int t)
680 void *p;
681 /* insert vtop->c jump list in t */
682 if (n) {
683 uint32_t n1 = n, n2;
684 while ((n2 = read32le(p = cur_text_section->data + n1)))
685 n1 = n2;
686 write32le(p, t);
687 t = n;
689 return t;
692 ST_FUNC int gjmp_cond(int op, int t)
694 g(0x0f);
695 t = gjmp2(op - 16, t);
696 return t;
699 ST_FUNC void gen_opi(int op)
701 int r, fr, opc, c;
703 switch(op) {
704 case '+':
705 case TOK_ADDC1: /* add with carry generation */
706 opc = 0;
707 gen_op8:
708 if ((vtop->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == VT_CONST) {
709 /* constant case */
710 vswap();
711 r = gv(RC_INT);
712 vswap();
713 c = vtop->c.i;
714 if (c == (char)c) {
715 /* generate inc and dec for smaller code */
716 if ((c == 1 || c == -1) && (op == '+' || op == '-')) {
717 opc = (c == 1) ^ (op == '+');
718 o (0x40 | (opc << 3) | r); // inc,dec
719 } else {
720 o(0x83);
721 o(0xc0 | (opc << 3) | r);
722 g(c);
724 } else {
725 o(0x81);
726 oad(0xc0 | (opc << 3) | r, c);
728 } else {
729 gv2(RC_INT, RC_INT);
730 r = vtop[-1].r;
731 fr = vtop[0].r;
732 o((opc << 3) | 0x01);
733 o(0xc0 + r + fr * 8);
735 vtop--;
736 if (op >= TOK_ULT && op <= TOK_GT)
737 vset_VT_CMP(op);
738 break;
739 case '-':
740 case TOK_SUBC1: /* sub with carry generation */
741 opc = 5;
742 goto gen_op8;
743 case TOK_ADDC2: /* add with carry use */
744 opc = 2;
745 goto gen_op8;
746 case TOK_SUBC2: /* sub with carry use */
747 opc = 3;
748 goto gen_op8;
749 case '&':
750 opc = 4;
751 goto gen_op8;
752 case '^':
753 opc = 6;
754 goto gen_op8;
755 case '|':
756 opc = 1;
757 goto gen_op8;
758 case '*':
759 gv2(RC_INT, RC_INT);
760 r = vtop[-1].r;
761 fr = vtop[0].r;
762 vtop--;
763 o(0xaf0f); /* imul fr, r */
764 o(0xc0 + fr + r * 8);
765 break;
766 case TOK_SHL:
767 opc = 4;
768 goto gen_shift;
769 case TOK_SHR:
770 opc = 5;
771 goto gen_shift;
772 case TOK_SAR:
773 opc = 7;
774 gen_shift:
775 opc = 0xc0 | (opc << 3);
776 if ((vtop->r & (VT_VALMASK | VT_LVAL | VT_SYM)) == VT_CONST) {
777 /* constant case */
778 vswap();
779 r = gv(RC_INT);
780 vswap();
781 c = vtop->c.i & 0x1f;
782 o(0xc1); /* shl/shr/sar $xxx, r */
783 o(opc | r);
784 g(c);
785 } else {
786 /* we generate the shift in ecx */
787 gv2(RC_INT, RC_ECX);
788 r = vtop[-1].r;
789 o(0xd3); /* shl/shr/sar %cl, r */
790 o(opc | r);
792 vtop--;
793 break;
794 case '/':
795 case TOK_UDIV:
796 case TOK_PDIV:
797 case '%':
798 case TOK_UMOD:
799 case TOK_UMULL:
800 /* first operand must be in eax */
801 /* XXX: need better constraint for second operand */
802 gv2(RC_EAX, RC_ECX);
803 r = vtop[-1].r;
804 fr = vtop[0].r;
805 vtop--;
806 save_reg(TREG_EDX);
807 /* save EAX too if used otherwise */
808 save_reg_upstack(TREG_EAX, 1);
809 if (op == TOK_UMULL) {
810 o(0xf7); /* mul fr */
811 o(0xe0 + fr);
812 vtop->r2 = TREG_EDX;
813 r = TREG_EAX;
814 } else {
815 if (op == TOK_UDIV || op == TOK_UMOD) {
816 o(0xf7d231); /* xor %edx, %edx, div fr, %eax */
817 o(0xf0 + fr);
818 } else {
819 o(0xf799); /* cltd, idiv fr, %eax */
820 o(0xf8 + fr);
822 if (op == '%' || op == TOK_UMOD)
823 r = TREG_EDX;
824 else
825 r = TREG_EAX;
827 vtop->r = r;
828 break;
829 default:
830 opc = 7;
831 goto gen_op8;
835 /* generate a floating point operation 'v = t1 op t2' instruction. The
836 two operands are guaranteed to have the same floating point type */
837 /* XXX: need to use ST1 too */
838 ST_FUNC void gen_opf(int op)
840 int a, ft, fc, swapped, r;
842 if (op == TOK_NEG) { /* unary minus */
843 gv(RC_FLOAT);
844 o(0xe0d9); /* fchs */
845 return;
848 /* convert constants to memory references */
849 if ((vtop[-1].r & (VT_VALMASK | VT_LVAL)) == VT_CONST) {
850 vswap();
851 gv(RC_FLOAT);
852 vswap();
854 if ((vtop[0].r & (VT_VALMASK | VT_LVAL)) == VT_CONST)
855 gv(RC_FLOAT);
857 /* must put at least one value in the floating point register */
858 if ((vtop[-1].r & VT_LVAL) &&
859 (vtop[0].r & VT_LVAL)) {
860 vswap();
861 gv(RC_FLOAT);
862 vswap();
864 swapped = 0;
865 /* swap the stack if needed so that t1 is the register and t2 is
866 the memory reference */
867 if (vtop[-1].r & VT_LVAL) {
868 vswap();
869 swapped = 1;
871 if (op >= TOK_ULT && op <= TOK_GT) {
872 /* load on stack second operand */
873 load(TREG_ST0, vtop);
874 save_reg(TREG_EAX); /* eax is used by FP comparison code */
875 if (op == TOK_GE || op == TOK_GT)
876 swapped = !swapped;
877 else if (op == TOK_EQ || op == TOK_NE)
878 swapped = 0;
879 if (swapped)
880 o(0xc9d9); /* fxch %st(1) */
881 if (op == TOK_EQ || op == TOK_NE)
882 o(0xe9da); /* fucompp */
883 else
884 o(0xd9de); /* fcompp */
885 o(0xe0df); /* fnstsw %ax */
886 if (op == TOK_EQ) {
887 o(0x45e480); /* and $0x45, %ah */
888 o(0x40fC80); /* cmp $0x40, %ah */
889 } else if (op == TOK_NE) {
890 o(0x45e480); /* and $0x45, %ah */
891 o(0x40f480); /* xor $0x40, %ah */
892 op = TOK_NE;
893 } else if (op == TOK_GE || op == TOK_LE) {
894 o(0x05c4f6); /* test $0x05, %ah */
895 op = TOK_EQ;
896 } else {
897 o(0x45c4f6); /* test $0x45, %ah */
898 op = TOK_EQ;
900 vtop--;
901 vset_VT_CMP(op);
902 } else {
903 /* no memory reference possible for long double operations */
904 if ((vtop->type.t & VT_BTYPE) == VT_LDOUBLE) {
905 load(TREG_ST0, vtop);
906 swapped = !swapped;
909 switch(op) {
910 default:
911 case '+':
912 a = 0;
913 break;
914 case '-':
915 a = 4;
916 if (swapped)
917 a++;
918 break;
919 case '*':
920 a = 1;
921 break;
922 case '/':
923 a = 6;
924 if (swapped)
925 a++;
926 break;
928 ft = vtop->type.t;
929 fc = vtop->c.i;
930 if ((ft & VT_BTYPE) == VT_LDOUBLE) {
931 o(0xde); /* fxxxp %st, %st(1) */
932 o(0xc1 + (a << 3));
933 } else {
934 /* if saved lvalue, then we must reload it */
935 r = vtop->r;
936 if ((r & VT_VALMASK) == VT_LLOCAL) {
937 SValue v1;
938 r = get_reg(RC_INT);
939 v1.type.t = VT_INT;
940 v1.r = VT_LOCAL | VT_LVAL;
941 v1.c.i = fc;
942 v1.sym = NULL;
943 load(r, &v1);
944 fc = 0;
947 if ((ft & VT_BTYPE) == VT_DOUBLE)
948 o(0xdc);
949 else
950 o(0xd8);
951 gen_modrm(a, r, vtop->sym, fc);
953 vtop--;
957 /* convert integers to fp 't' type. Must handle 'int', 'unsigned int'
958 and 'long long' cases. */
959 ST_FUNC void gen_cvt_itof(int t)
961 save_reg(TREG_ST0);
962 gv(RC_INT);
963 if ((vtop->type.t & VT_BTYPE) == VT_LLONG) {
964 /* signed long long to float/double/long double (unsigned case
965 is handled generically) */
966 o(0x50 + vtop->r2); /* push r2 */
967 o(0x50 + (vtop->r & VT_VALMASK)); /* push r */
968 o(0x242cdf); /* fildll (%esp) */
969 o(0x08c483); /* add $8, %esp */
970 vtop->r2 = VT_CONST;
971 } else if ((vtop->type.t & (VT_BTYPE | VT_UNSIGNED)) ==
972 (VT_INT | VT_UNSIGNED)) {
973 /* unsigned int to float/double/long double */
974 o(0x6a); /* push $0 */
975 g(0x00);
976 o(0x50 + (vtop->r & VT_VALMASK)); /* push r */
977 o(0x242cdf); /* fildll (%esp) */
978 o(0x08c483); /* add $8, %esp */
979 } else {
980 /* int to float/double/long double */
981 o(0x50 + (vtop->r & VT_VALMASK)); /* push r */
982 o(0x2404db); /* fildl (%esp) */
983 o(0x04c483); /* add $4, %esp */
985 vtop->r2 = VT_CONST;
986 vtop->r = TREG_ST0;
989 /* convert fp to int 't' type */
990 ST_FUNC void gen_cvt_ftoi(int t)
992 int bt = vtop->type.t & VT_BTYPE;
993 if (bt == VT_FLOAT)
994 vpush_helper_func(TOK___fixsfdi);
995 else if (bt == VT_LDOUBLE)
996 vpush_helper_func(TOK___fixxfdi);
997 else
998 vpush_helper_func(TOK___fixdfdi);
999 vswap();
1000 gfunc_call(1);
1001 vpushi(0);
1002 vtop->r = REG_IRET;
1003 if ((t & VT_BTYPE) == VT_LLONG)
1004 vtop->r2 = REG_IRE2;
1007 /* convert from one floating point type to another */
1008 ST_FUNC void gen_cvt_ftof(int t)
1010 /* all we have to do on i386 is to put the float in a register */
1011 gv(RC_FLOAT);
1014 /* char/short to int conversion */
1015 ST_FUNC void gen_cvt_csti(int t)
1017 int r, sz, xl;
1018 r = gv(RC_INT);
1019 sz = !(t & VT_UNSIGNED);
1020 xl = (t & VT_BTYPE) == VT_SHORT;
1021 o(0xc0b60f /* mov[sz] %a[xl], %eax */
1022 | (sz << 3 | xl) << 8
1023 | (r << 3 | r) << 16
1027 /* increment tcov counter */
1028 ST_FUNC void gen_increment_tcov (SValue *sv)
1030 o(0x0583); /* addl $1, xxx */
1031 greloc(cur_text_section, sv->sym, ind, R_386_32);
1032 gen_le32(0);
1033 o(1);
1034 o(0x1583); /* addcl $0, xxx */
1035 greloc(cur_text_section, sv->sym, ind, R_386_32);
1036 gen_le32(4);
1037 g(0);
1040 /* computed goto support */
1041 ST_FUNC void ggoto(void)
1043 gcall_or_jmp(1);
1044 vtop--;
1047 /* bound check support functions */
1048 #ifdef CONFIG_TCC_BCHECK
1050 static void gen_bounds_prolog(void)
1052 /* leave some room for bound checking code */
1053 func_bound_offset = lbounds_section->data_offset;
1054 func_bound_ind = ind;
1055 func_bound_add_epilog = 0;
1056 oad(0xb8, 0); /* lbound section pointer */
1057 oad(0xb8, 0); /* call to function */
1060 static void gen_bounds_epilog(void)
1062 addr_t saved_ind;
1063 addr_t *bounds_ptr;
1064 Sym *sym_data;
1065 int offset_modified = func_bound_offset != lbounds_section->data_offset;
1067 if (!offset_modified && !func_bound_add_epilog)
1068 return;
1070 /* add end of table info */
1071 bounds_ptr = section_ptr_add(lbounds_section, sizeof(addr_t));
1072 *bounds_ptr = 0;
1074 sym_data = get_sym_ref(&char_pointer_type, lbounds_section,
1075 func_bound_offset, PTR_SIZE);
1077 /* generate bound local allocation */
1078 if (offset_modified) {
1079 saved_ind = ind;
1080 ind = func_bound_ind;
1081 greloc(cur_text_section, sym_data, ind + 1, R_386_32);
1082 ind = ind + 5;
1083 gen_static_call(TOK___bound_local_new);
1084 ind = saved_ind;
1087 /* generate bound check local freeing */
1088 o(0x5250); /* save returned value, if any */
1089 greloc(cur_text_section, sym_data, ind + 1, R_386_32);
1090 oad(0xb8, 0); /* mov %eax, xxx */
1091 gen_static_call(TOK___bound_local_delete);
1092 o(0x585a); /* restore returned value, if any */
1094 #endif
1096 /* Save the stack pointer onto the stack */
1097 ST_FUNC void gen_vla_sp_save(int addr) {
1098 /* mov %esp,addr(%ebp)*/
1099 o(0x89);
1100 gen_modrm(TREG_ESP, VT_LOCAL, NULL, addr);
1103 /* Restore the SP from a location on the stack */
1104 ST_FUNC void gen_vla_sp_restore(int addr) {
1105 o(0x8b);
1106 gen_modrm(TREG_ESP, VT_LOCAL, NULL, addr);
1109 /* Subtract from the stack pointer, and push the resulting value onto the stack */
1110 ST_FUNC void gen_vla_alloc(CType *type, int align) {
1111 int use_call = 0;
1113 #if defined(CONFIG_TCC_BCHECK)
1114 use_call = tcc_state->do_bounds_check;
1115 #endif
1116 #ifdef TCC_TARGET_PE /* alloca does more than just adjust %rsp on Windows */
1117 use_call = 1;
1118 #endif
1119 if (use_call)
1121 vpush_helper_func(TOK_alloca);
1122 vswap(); /* Move alloca ref past allocation size */
1123 gfunc_call(1);
1125 else {
1126 int r;
1127 r = gv(RC_INT); /* allocation size */
1128 /* sub r,%rsp */
1129 o(0x2b);
1130 o(0xe0 | r);
1131 /* We align to 16 bytes rather than align */
1132 /* and ~15, %esp */
1133 o(0xf0e483);
1134 vpop();
1138 /* end of X86 code generator */
1139 /*************************************************************/
1140 #endif
1141 /*************************************************************/