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1 /*
2 * Tiny Code Generator for QEMU
3 *
4 * Copyright (c) 2008 Fabrice Bellard
5 *
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to deal
8 * in the Software without restriction, including without limitation the rights
9 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10 * copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
12 *
13 * The above copyright notice and this permission notice shall be included in
14 * all copies or substantial portions of the Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
22 * THE SOFTWARE.
23 */
24
25 #ifndef TCG_H
26 #define TCG_H
27
28 #include "qemu-common.h"
29
30 #include "tcg-target.h"
31
32 /* Default target word size to pointer size. */
33 #ifndef TCG_TARGET_REG_BITS
34 # if UINTPTR_MAX == UINT32_MAX
35 # define TCG_TARGET_REG_BITS 32
36 # elif UINTPTR_MAX == UINT64_MAX
37 # define TCG_TARGET_REG_BITS 64
38 # else
39 # error Unknown pointer size for tcg target
40 # endif
41 #endif
42
43 #if TCG_TARGET_REG_BITS == 32
44 typedef int32_t tcg_target_long;
45 typedef uint32_t tcg_target_ulong;
46 #define TCG_PRIlx PRIx32
47 #define TCG_PRIld PRId32
48 #elif TCG_TARGET_REG_BITS == 64
49 typedef int64_t tcg_target_long;
50 typedef uint64_t tcg_target_ulong;
51 #define TCG_PRIlx PRIx64
52 #define TCG_PRIld PRId64
53 #else
54 #error unsupported
55 #endif
56
57 #include "tcg-runtime.h"
58
59 #if TCG_TARGET_NB_REGS <= 32
60 typedef uint32_t TCGRegSet;
61 #elif TCG_TARGET_NB_REGS <= 64
62 typedef uint64_t TCGRegSet;
63 #else
64 #error unsupported
65 #endif
66
67 #if TCG_TARGET_REG_BITS == 32
68 /* Turn some undef macros into false macros. */
69 #define TCG_TARGET_HAS_div_i64 0
70 #define TCG_TARGET_HAS_rem_i64 0
71 #define TCG_TARGET_HAS_div2_i64 0
72 #define TCG_TARGET_HAS_rot_i64 0
73 #define TCG_TARGET_HAS_ext8s_i64 0
74 #define TCG_TARGET_HAS_ext16s_i64 0
75 #define TCG_TARGET_HAS_ext32s_i64 0
76 #define TCG_TARGET_HAS_ext8u_i64 0
77 #define TCG_TARGET_HAS_ext16u_i64 0
78 #define TCG_TARGET_HAS_ext32u_i64 0
79 #define TCG_TARGET_HAS_bswap16_i64 0
80 #define TCG_TARGET_HAS_bswap32_i64 0
81 #define TCG_TARGET_HAS_bswap64_i64 0
82 #define TCG_TARGET_HAS_neg_i64 0
83 #define TCG_TARGET_HAS_not_i64 0
84 #define TCG_TARGET_HAS_andc_i64 0
85 #define TCG_TARGET_HAS_orc_i64 0
86 #define TCG_TARGET_HAS_eqv_i64 0
87 #define TCG_TARGET_HAS_nand_i64 0
88 #define TCG_TARGET_HAS_nor_i64 0
89 #define TCG_TARGET_HAS_deposit_i64 0
90 #define TCG_TARGET_HAS_movcond_i64 0
91 #define TCG_TARGET_HAS_add2_i64 0
92 #define TCG_TARGET_HAS_sub2_i64 0
93 #define TCG_TARGET_HAS_mulu2_i64 0
94 #define TCG_TARGET_HAS_muls2_i64 0
95 #define TCG_TARGET_HAS_muluh_i64 0
96 #define TCG_TARGET_HAS_mulsh_i64 0
97 /* Turn some undef macros into true macros. */
98 #define TCG_TARGET_HAS_add2_i32 1
99 #define TCG_TARGET_HAS_sub2_i32 1
100 #define TCG_TARGET_HAS_mulu2_i32 1
101 #endif
102
103 #ifndef TCG_TARGET_deposit_i32_valid
104 #define TCG_TARGET_deposit_i32_valid(ofs, len) 1
105 #endif
106 #ifndef TCG_TARGET_deposit_i64_valid
107 #define TCG_TARGET_deposit_i64_valid(ofs, len) 1
108 #endif
109
110 /* Only one of DIV or DIV2 should be defined. */
111 #if defined(TCG_TARGET_HAS_div_i32)
112 #define TCG_TARGET_HAS_div2_i32 0
113 #elif defined(TCG_TARGET_HAS_div2_i32)
114 #define TCG_TARGET_HAS_div_i32 0
115 #define TCG_TARGET_HAS_rem_i32 0
116 #endif
117 #if defined(TCG_TARGET_HAS_div_i64)
118 #define TCG_TARGET_HAS_div2_i64 0
119 #elif defined(TCG_TARGET_HAS_div2_i64)
120 #define TCG_TARGET_HAS_div_i64 0
121 #define TCG_TARGET_HAS_rem_i64 0
122 #endif
123
124 typedef enum TCGOpcode {
125 #define DEF(name, oargs, iargs, cargs, flags) INDEX_op_ ## name,
126 #include "tcg-opc.h"
127 #undef DEF
128 NB_OPS,
129 } TCGOpcode;
130
131 #define tcg_regset_clear(d) (d) = 0
132 #define tcg_regset_set(d, s) (d) = (s)
133 #define tcg_regset_set32(d, reg, val32) (d) |= (val32) << (reg)
134 #define tcg_regset_set_reg(d, r) (d) |= 1L << (r)
135 #define tcg_regset_reset_reg(d, r) (d) &= ~(1L << (r))
136 #define tcg_regset_test_reg(d, r) (((d) >> (r)) & 1)
137 #define tcg_regset_or(d, a, b) (d) = (a) | (b)
138 #define tcg_regset_and(d, a, b) (d) = (a) & (b)
139 #define tcg_regset_andnot(d, a, b) (d) = (a) & ~(b)
140 #define tcg_regset_not(d, a) (d) = ~(a)
141
142 typedef struct TCGRelocation {
143 struct TCGRelocation *next;
144 int type;
145 uint8_t *ptr;
146 intptr_t addend;
147 } TCGRelocation;
148
149 typedef struct TCGLabel {
150 int has_value;
151 union {
152 uintptr_t value;
153 TCGRelocation *first_reloc;
154 } u;
155 } TCGLabel;
156
157 typedef struct TCGPool {
158 struct TCGPool *next;
159 int size;
160 uint8_t data[0] __attribute__ ((aligned));
161 } TCGPool;
162
163 #define TCG_POOL_CHUNK_SIZE 32768
164
165 #define TCG_MAX_LABELS 512
166
167 #define TCG_MAX_TEMPS 512
168
169 /* when the size of the arguments of a called function is smaller than
170 this value, they are statically allocated in the TB stack frame */
171 #define TCG_STATIC_CALL_ARGS_SIZE 128
172
173 typedef enum TCGType {
174 TCG_TYPE_I32,
175 TCG_TYPE_I64,
176 TCG_TYPE_COUNT, /* number of different types */
177
178 /* An alias for the size of the host register. */
179 #if TCG_TARGET_REG_BITS == 32
180 TCG_TYPE_REG = TCG_TYPE_I32,
181 #else
182 TCG_TYPE_REG = TCG_TYPE_I64,
183 #endif
184
185 /* An alias for the size of the native pointer. */
186 #if UINTPTR_MAX == UINT32_MAX
187 TCG_TYPE_PTR = TCG_TYPE_I32,
188 #else
189 TCG_TYPE_PTR = TCG_TYPE_I64,
190 #endif
191
192 /* An alias for the size of the target "long", aka register. */
193 #if TARGET_LONG_BITS == 64
194 TCG_TYPE_TL = TCG_TYPE_I64,
195 #else
196 TCG_TYPE_TL = TCG_TYPE_I32,
197 #endif
198 } TCGType;
199
200 typedef tcg_target_ulong TCGArg;
201
202 /* Define a type and accessor macros for variables. Using a struct is
203 nice because it gives some level of type safely. Ideally the compiler
204 be able to see through all this. However in practice this is not true,
205 especially on targets with braindamaged ABIs (e.g. i386).
206 We use plain int by default to avoid this runtime overhead.
207 Users of tcg_gen_* don't need to know about any of this, and should
208 treat TCGv as an opaque type.
209 In addition we do typechecking for different types of variables. TCGv_i32
210 and TCGv_i64 are 32/64-bit variables respectively. TCGv and TCGv_ptr
211 are aliases for target_ulong and host pointer sized values respectively.
212 */
213
214 #ifdef CONFIG_DEBUG_TCG
215 #define DEBUG_TCGV 1
216 #endif
217
218 #ifdef DEBUG_TCGV
219
220 typedef struct
221 {
222 int i32;
223 } TCGv_i32;
224
225 typedef struct
226 {
227 int i64;
228 } TCGv_i64;
229
230 typedef struct {
231 int iptr;
232 } TCGv_ptr;
233
234 #define MAKE_TCGV_I32(i) __extension__ \
235 ({ TCGv_i32 make_tcgv_tmp = {i}; make_tcgv_tmp;})
236 #define MAKE_TCGV_I64(i) __extension__ \
237 ({ TCGv_i64 make_tcgv_tmp = {i}; make_tcgv_tmp;})
238 #define MAKE_TCGV_PTR(i) __extension__ \
239 ({ TCGv_ptr make_tcgv_tmp = {i}; make_tcgv_tmp; })
240 #define GET_TCGV_I32(t) ((t).i32)
241 #define GET_TCGV_I64(t) ((t).i64)
242 #define GET_TCGV_PTR(t) ((t).iptr)
243 #if TCG_TARGET_REG_BITS == 32
244 #define TCGV_LOW(t) MAKE_TCGV_I32(GET_TCGV_I64(t))
245 #define TCGV_HIGH(t) MAKE_TCGV_I32(GET_TCGV_I64(t) + 1)
246 #endif
247
248 #else /* !DEBUG_TCGV */
249
250 typedef int TCGv_i32;
251 typedef int TCGv_i64;
252 #if TCG_TARGET_REG_BITS == 32
253 #define TCGv_ptr TCGv_i32
254 #else
255 #define TCGv_ptr TCGv_i64
256 #endif
257 #define MAKE_TCGV_I32(x) (x)
258 #define MAKE_TCGV_I64(x) (x)
259 #define MAKE_TCGV_PTR(x) (x)
260 #define GET_TCGV_I32(t) (t)
261 #define GET_TCGV_I64(t) (t)
262 #define GET_TCGV_PTR(t) (t)
263
264 #if TCG_TARGET_REG_BITS == 32
265 #define TCGV_LOW(t) (t)
266 #define TCGV_HIGH(t) ((t) + 1)
267 #endif
268
269 #endif /* DEBUG_TCGV */
270
271 #define TCGV_EQUAL_I32(a, b) (GET_TCGV_I32(a) == GET_TCGV_I32(b))
272 #define TCGV_EQUAL_I64(a, b) (GET_TCGV_I64(a) == GET_TCGV_I64(b))
273
274 /* Dummy definition to avoid compiler warnings. */
275 #define TCGV_UNUSED_I32(x) x = MAKE_TCGV_I32(-1)
276 #define TCGV_UNUSED_I64(x) x = MAKE_TCGV_I64(-1)
277
278 #define TCGV_IS_UNUSED_I32(x) (GET_TCGV_I32(x) == -1)
279 #define TCGV_IS_UNUSED_I64(x) (GET_TCGV_I64(x) == -1)
280
281 /* call flags */
282 /* Helper does not read globals (either directly or through an exception). It
283 implies TCG_CALL_NO_WRITE_GLOBALS. */
284 #define TCG_CALL_NO_READ_GLOBALS 0x0010
285 /* Helper does not write globals */
286 #define TCG_CALL_NO_WRITE_GLOBALS 0x0020
287 /* Helper can be safely suppressed if the return value is not used. */
288 #define TCG_CALL_NO_SIDE_EFFECTS 0x0040
289
290 /* convenience version of most used call flags */
291 #define TCG_CALL_NO_RWG TCG_CALL_NO_READ_GLOBALS
292 #define TCG_CALL_NO_WG TCG_CALL_NO_WRITE_GLOBALS
293 #define TCG_CALL_NO_SE TCG_CALL_NO_SIDE_EFFECTS
294 #define TCG_CALL_NO_RWG_SE (TCG_CALL_NO_RWG | TCG_CALL_NO_SE)
295 #define TCG_CALL_NO_WG_SE (TCG_CALL_NO_WG | TCG_CALL_NO_SE)
296
297 /* used to align parameters */
298 #define TCG_CALL_DUMMY_TCGV MAKE_TCGV_I32(-1)
299 #define TCG_CALL_DUMMY_ARG ((TCGArg)(-1))
300
301 /* Conditions. Note that these are laid out for easy manipulation by
302 the functions below:
303 bit 0 is used for inverting;
304 bit 1 is signed,
305 bit 2 is unsigned,
306 bit 3 is used with bit 0 for swapping signed/unsigned. */
307 typedef enum {
308 /* non-signed */
309 TCG_COND_NEVER = 0 | 0 | 0 | 0,
310 TCG_COND_ALWAYS = 0 | 0 | 0 | 1,
311 TCG_COND_EQ = 8 | 0 | 0 | 0,
312 TCG_COND_NE = 8 | 0 | 0 | 1,
313 /* signed */
314 TCG_COND_LT = 0 | 0 | 2 | 0,
315 TCG_COND_GE = 0 | 0 | 2 | 1,
316 TCG_COND_LE = 8 | 0 | 2 | 0,
317 TCG_COND_GT = 8 | 0 | 2 | 1,
318 /* unsigned */
319 TCG_COND_LTU = 0 | 4 | 0 | 0,
320 TCG_COND_GEU = 0 | 4 | 0 | 1,
321 TCG_COND_LEU = 8 | 4 | 0 | 0,
322 TCG_COND_GTU = 8 | 4 | 0 | 1,
323 } TCGCond;
324
325 /* Invert the sense of the comparison. */
326 static inline TCGCond tcg_invert_cond(TCGCond c)
327 {
328 return (TCGCond)(c ^ 1);
329 }
330
331 /* Swap the operands in a comparison. */
332 static inline TCGCond tcg_swap_cond(TCGCond c)
333 {
334 return c & 6 ? (TCGCond)(c ^ 9) : c;
335 }
336
337 /* Create an "unsigned" version of a "signed" comparison. */
338 static inline TCGCond tcg_unsigned_cond(TCGCond c)
339 {
340 return c & 2 ? (TCGCond)(c ^ 6) : c;
341 }
342
343 /* Must a comparison be considered unsigned? */
344 static inline bool is_unsigned_cond(TCGCond c)
345 {
346 return (c & 4) != 0;
347 }
348
349 /* Create a "high" version of a double-word comparison.
350 This removes equality from a LTE or GTE comparison. */
351 static inline TCGCond tcg_high_cond(TCGCond c)
352 {
353 switch (c) {
354 case TCG_COND_GE:
355 case TCG_COND_LE:
356 case TCG_COND_GEU:
357 case TCG_COND_LEU:
358 return (TCGCond)(c ^ 8);
359 default:
360 return c;
361 }
362 }
363
364 #define TEMP_VAL_DEAD 0
365 #define TEMP_VAL_REG 1
366 #define TEMP_VAL_MEM 2
367 #define TEMP_VAL_CONST 3
368
369 /* XXX: optimize memory layout */
370 typedef struct TCGTemp {
371 TCGType base_type;
372 TCGType type;
373 int val_type;
374 int reg;
375 tcg_target_long val;
376 int mem_reg;
377 intptr_t mem_offset;
378 unsigned int fixed_reg:1;
379 unsigned int mem_coherent:1;
380 unsigned int mem_allocated:1;
381 unsigned int temp_local:1; /* If true, the temp is saved across
382 basic blocks. Otherwise, it is not
383 preserved across basic blocks. */
384 unsigned int temp_allocated:1; /* never used for code gen */
385 /* index of next free temp of same base type, -1 if end */
386 int next_free_temp;
387 const char *name;
388 } TCGTemp;
389
390 typedef struct TCGContext TCGContext;
391
392 struct TCGContext {
393 uint8_t *pool_cur, *pool_end;
394 TCGPool *pool_first, *pool_current, *pool_first_large;
395 TCGLabel *labels;
396 int nb_labels;
397 int nb_globals;
398 int nb_temps;
399 /* index of free temps, -1 if none */
400 int first_free_temp[TCG_TYPE_COUNT * 2];
401
402 /* goto_tb support */
403 uint8_t *code_buf;
404 uintptr_t *tb_next;
405 uint16_t *tb_next_offset;
406 uint16_t *tb_jmp_offset; /* != NULL if USE_DIRECT_JUMP */
407
408 /* liveness analysis */
409 uint16_t *op_dead_args; /* for each operation, each bit tells if the
410 corresponding argument is dead */
411 uint8_t *op_sync_args; /* for each operation, each bit tells if the
412 corresponding output argument needs to be
413 sync to memory. */
414
415 /* tells in which temporary a given register is. It does not take
416 into account fixed registers */
417 int reg_to_temp[TCG_TARGET_NB_REGS];
418 TCGRegSet reserved_regs;
419 intptr_t current_frame_offset;
420 intptr_t frame_start;
421 intptr_t frame_end;
422 int frame_reg;
423
424 uint8_t *code_ptr;
425 TCGTemp temps[TCG_MAX_TEMPS]; /* globals first, temps after */
426
427 GHashTable *helpers;
428
429 #ifdef CONFIG_PROFILER
430 /* profiling info */
431 int64_t tb_count1;
432 int64_t tb_count;
433 int64_t op_count; /* total insn count */
434 int op_count_max; /* max insn per TB */
435 int64_t temp_count;
436 int temp_count_max;
437 int64_t del_op_count;
438 int64_t code_in_len;
439 int64_t code_out_len;
440 int64_t interm_time;
441 int64_t code_time;
442 int64_t la_time;
443 int64_t opt_time;
444 int64_t restore_count;
445 int64_t restore_time;
446 #endif
447
448 #ifdef CONFIG_DEBUG_TCG
449 int temps_in_use;
450 int goto_tb_issue_mask;
451 #endif
452
453 uint16_t gen_opc_buf[OPC_BUF_SIZE];
454 TCGArg gen_opparam_buf[OPPARAM_BUF_SIZE];
455
456 uint16_t *gen_opc_ptr;
457 TCGArg *gen_opparam_ptr;
458 target_ulong gen_opc_pc[OPC_BUF_SIZE];
459 uint16_t gen_opc_icount[OPC_BUF_SIZE];
460 uint8_t gen_opc_instr_start[OPC_BUF_SIZE];
461
462 /* Code generation */
463 int code_gen_max_blocks;
464 uint8_t *code_gen_prologue;
465 uint8_t *code_gen_buffer;
466 size_t code_gen_buffer_size;
467 /* threshold to flush the translated code buffer */
468 size_t code_gen_buffer_max_size;
469 uint8_t *code_gen_ptr;
470
471 TBContext tb_ctx;
472
473 /* The TCGBackendData structure is private to tcg-target.c. */
474 struct TCGBackendData *be;
475 };
476
477 extern TCGContext tcg_ctx;
478
479 /* pool based memory allocation */
480
481 void *tcg_malloc_internal(TCGContext *s, int size);
482 void tcg_pool_reset(TCGContext *s);
483 void tcg_pool_delete(TCGContext *s);
484
485 static inline void *tcg_malloc(int size)
486 {
487 TCGContext *s = &tcg_ctx;
488 uint8_t *ptr, *ptr_end;
489 size = (size + sizeof(long) - 1) & ~(sizeof(long) - 1);
490 ptr = s->pool_cur;
491 ptr_end = ptr + size;
492 if (unlikely(ptr_end > s->pool_end)) {
493 return tcg_malloc_internal(&tcg_ctx, size);
494 } else {
495 s->pool_cur = ptr_end;
496 return ptr;
497 }
498 }
499
500 void tcg_context_init(TCGContext *s);
501 void tcg_prologue_init(TCGContext *s);
502 void tcg_func_start(TCGContext *s);
503
504 int tcg_gen_code(TCGContext *s, uint8_t *gen_code_buf);
505 int tcg_gen_code_search_pc(TCGContext *s, uint8_t *gen_code_buf, long offset);
506
507 void tcg_set_frame(TCGContext *s, int reg, intptr_t start, intptr_t size);
508
509 TCGv_i32 tcg_global_reg_new_i32(int reg, const char *name);
510 TCGv_i32 tcg_global_mem_new_i32(int reg, intptr_t offset, const char *name);
511 TCGv_i32 tcg_temp_new_internal_i32(int temp_local);
512 static inline TCGv_i32 tcg_temp_new_i32(void)
513 {
514 return tcg_temp_new_internal_i32(0);
515 }
516 static inline TCGv_i32 tcg_temp_local_new_i32(void)
517 {
518 return tcg_temp_new_internal_i32(1);
519 }
520 void tcg_temp_free_i32(TCGv_i32 arg);
521 char *tcg_get_arg_str_i32(TCGContext *s, char *buf, int buf_size, TCGv_i32 arg);
522
523 TCGv_i64 tcg_global_reg_new_i64(int reg, const char *name);
524 TCGv_i64 tcg_global_mem_new_i64(int reg, intptr_t offset, const char *name);
525 TCGv_i64 tcg_temp_new_internal_i64(int temp_local);
526 static inline TCGv_i64 tcg_temp_new_i64(void)
527 {
528 return tcg_temp_new_internal_i64(0);
529 }
530 static inline TCGv_i64 tcg_temp_local_new_i64(void)
531 {
532 return tcg_temp_new_internal_i64(1);
533 }
534 void tcg_temp_free_i64(TCGv_i64 arg);
535 char *tcg_get_arg_str_i64(TCGContext *s, char *buf, int buf_size, TCGv_i64 arg);
536
537 #if defined(CONFIG_DEBUG_TCG)
538 /* If you call tcg_clear_temp_count() at the start of a section of
539 * code which is not supposed to leak any TCG temporaries, then
540 * calling tcg_check_temp_count() at the end of the section will
541 * return 1 if the section did in fact leak a temporary.
542 */
543 void tcg_clear_temp_count(void);
544 int tcg_check_temp_count(void);
545 #else
546 #define tcg_clear_temp_count() do { } while (0)
547 #define tcg_check_temp_count() 0
548 #endif
549
550 void tcg_dump_info(FILE *f, fprintf_function cpu_fprintf);
551
552 #define TCG_CT_ALIAS 0x80
553 #define TCG_CT_IALIAS 0x40
554 #define TCG_CT_REG 0x01
555 #define TCG_CT_CONST 0x02 /* any constant of register size */
556
557 typedef struct TCGArgConstraint {
558 uint16_t ct;
559 uint8_t alias_index;
560 union {
561 TCGRegSet regs;
562 } u;
563 } TCGArgConstraint;
564
565 #define TCG_MAX_OP_ARGS 16
566
567 /* Bits for TCGOpDef->flags, 8 bits available. */
568 enum {
569 /* Instruction defines the end of a basic block. */
570 TCG_OPF_BB_END = 0x01,
571 /* Instruction clobbers call registers and potentially update globals. */
572 TCG_OPF_CALL_CLOBBER = 0x02,
573 /* Instruction has side effects: it cannot be removed if its outputs
574 are not used, and might trigger exceptions. */
575 TCG_OPF_SIDE_EFFECTS = 0x04,
576 /* Instruction operands are 64-bits (otherwise 32-bits). */
577 TCG_OPF_64BIT = 0x08,
578 /* Instruction is optional and not implemented by the host, or insn
579 is generic and should not be implemened by the host. */
580 TCG_OPF_NOT_PRESENT = 0x10,
581 };
582
583 typedef struct TCGOpDef {
584 const char *name;
585 uint8_t nb_oargs, nb_iargs, nb_cargs, nb_args;
586 uint8_t flags;
587 TCGArgConstraint *args_ct;
588 int *sorted_args;
589 #if defined(CONFIG_DEBUG_TCG)
590 int used;
591 #endif
592 } TCGOpDef;
593
594 extern TCGOpDef tcg_op_defs[];
595 extern const size_t tcg_op_defs_max;
596
597 typedef struct TCGTargetOpDef {
598 TCGOpcode op;
599 const char *args_ct_str[TCG_MAX_OP_ARGS];
600 } TCGTargetOpDef;
601
602 #define tcg_abort() \
603 do {\
604 fprintf(stderr, "%s:%d: tcg fatal error\n", __FILE__, __LINE__);\
605 abort();\
606 } while (0)
607
608 #ifdef CONFIG_DEBUG_TCG
609 # define tcg_debug_assert(X) do { assert(X); } while (0)
610 #elif QEMU_GNUC_PREREQ(4, 5)
611 # define tcg_debug_assert(X) \
612 do { if (!(X)) { __builtin_unreachable(); } } while (0)
613 #else
614 # define tcg_debug_assert(X) do { (void)(X); } while (0)
615 #endif
616
617 void tcg_add_target_add_op_defs(const TCGTargetOpDef *tdefs);
618
619 #if UINTPTR_MAX == UINT32_MAX
620 #define TCGV_NAT_TO_PTR(n) MAKE_TCGV_PTR(GET_TCGV_I32(n))
621 #define TCGV_PTR_TO_NAT(n) MAKE_TCGV_I32(GET_TCGV_PTR(n))
622
623 #define tcg_const_ptr(V) TCGV_NAT_TO_PTR(tcg_const_i32((intptr_t)(V)))
624 #define tcg_global_reg_new_ptr(R, N) \
625 TCGV_NAT_TO_PTR(tcg_global_reg_new_i32((R), (N)))
626 #define tcg_global_mem_new_ptr(R, O, N) \
627 TCGV_NAT_TO_PTR(tcg_global_mem_new_i32((R), (O), (N)))
628 #define tcg_temp_new_ptr() TCGV_NAT_TO_PTR(tcg_temp_new_i32())
629 #define tcg_temp_free_ptr(T) tcg_temp_free_i32(TCGV_PTR_TO_NAT(T))
630 #else
631 #define TCGV_NAT_TO_PTR(n) MAKE_TCGV_PTR(GET_TCGV_I64(n))
632 #define TCGV_PTR_TO_NAT(n) MAKE_TCGV_I64(GET_TCGV_PTR(n))
633
634 #define tcg_const_ptr(V) TCGV_NAT_TO_PTR(tcg_const_i64((intptr_t)(V)))
635 #define tcg_global_reg_new_ptr(R, N) \
636 TCGV_NAT_TO_PTR(tcg_global_reg_new_i64((R), (N)))
637 #define tcg_global_mem_new_ptr(R, O, N) \
638 TCGV_NAT_TO_PTR(tcg_global_mem_new_i64((R), (O), (N)))
639 #define tcg_temp_new_ptr() TCGV_NAT_TO_PTR(tcg_temp_new_i64())
640 #define tcg_temp_free_ptr(T) tcg_temp_free_i64(TCGV_PTR_TO_NAT(T))
641 #endif
642
643 void tcg_gen_callN(TCGContext *s, TCGv_ptr func, unsigned int flags,
644 int sizemask, TCGArg ret, int nargs, TCGArg *args);
645
646 void tcg_gen_shifti_i64(TCGv_i64 ret, TCGv_i64 arg1,
647 int c, int right, int arith);
648
649 TCGArg *tcg_optimize(TCGContext *s, uint16_t *tcg_opc_ptr, TCGArg *args,
650 TCGOpDef *tcg_op_def);
651
652 /* only used for debugging purposes */
653 void tcg_dump_ops(TCGContext *s);
654
655 void dump_ops(const uint16_t *opc_buf, const TCGArg *opparam_buf);
656 TCGv_i32 tcg_const_i32(int32_t val);
657 TCGv_i64 tcg_const_i64(int64_t val);
658 TCGv_i32 tcg_const_local_i32(int32_t val);
659 TCGv_i64 tcg_const_local_i64(int64_t val);
660
661 /**
662 * tcg_qemu_tb_exec:
663 * @env: CPUArchState * for the CPU
664 * @tb_ptr: address of generated code for the TB to execute
665 *
666 * Start executing code from a given translation block.
667 * Where translation blocks have been linked, execution
668 * may proceed from the given TB into successive ones.
669 * Control eventually returns only when some action is needed
670 * from the top-level loop: either control must pass to a TB
671 * which has not yet been directly linked, or an asynchronous
672 * event such as an interrupt needs handling.
673 *
674 * The return value is a pointer to the next TB to execute
675 * (if known; otherwise zero). This pointer is assumed to be
676 * 4-aligned, and the bottom two bits are used to return further
677 * information:
678 * 0, 1: the link between this TB and the next is via the specified
679 * TB index (0 or 1). That is, we left the TB via (the equivalent
680 * of) "goto_tb <index>". The main loop uses this to determine
681 * how to link the TB just executed to the next.
682 * 2: we are using instruction counting code generation, and we
683 * did not start executing this TB because the instruction counter
684 * would hit zero midway through it. In this case the next-TB pointer
685 * returned is the TB we were about to execute, and the caller must
686 * arrange to execute the remaining count of instructions.
687 * 3: we stopped because the CPU's exit_request flag was set
688 * (usually meaning that there is an interrupt that needs to be
689 * handled). The next-TB pointer returned is the TB we were
690 * about to execute when we noticed the pending exit request.
691 *
692 * If the bottom two bits indicate an exit-via-index then the CPU
693 * state is correctly synchronised and ready for execution of the next
694 * TB (and in particular the guest PC is the address to execute next).
695 * Otherwise, we gave up on execution of this TB before it started, and
696 * the caller must fix up the CPU state by calling cpu_pc_from_tb()
697 * with the next-TB pointer we return.
698 *
699 * Note that TCG targets may use a different definition of tcg_qemu_tb_exec
700 * to this default (which just calls the prologue.code emitted by
701 * tcg_target_qemu_prologue()).
702 */
703 #define TB_EXIT_MASK 3
704 #define TB_EXIT_IDX0 0
705 #define TB_EXIT_IDX1 1
706 #define TB_EXIT_ICOUNT_EXPIRED 2
707 #define TB_EXIT_REQUESTED 3
708
709 #if !defined(tcg_qemu_tb_exec)
710 # define tcg_qemu_tb_exec(env, tb_ptr) \
711 ((uintptr_t (*)(void *, void *))tcg_ctx.code_gen_prologue)(env, tb_ptr)
712 #endif
713
714 void tcg_register_jit(void *buf, size_t buf_size);
715
716 /*
717 * Memory helpers that will be used by TCG generated code.
718 */
719 #ifdef CONFIG_SOFTMMU
720 /* Value zero-extended to tcg register size. */
721 tcg_target_ulong helper_ret_ldub_mmu(CPUArchState *env, target_ulong addr,
722 int mmu_idx, uintptr_t retaddr);
723 tcg_target_ulong helper_ret_lduw_mmu(CPUArchState *env, target_ulong addr,
724 int mmu_idx, uintptr_t retaddr);
725 tcg_target_ulong helper_ret_ldul_mmu(CPUArchState *env, target_ulong addr,
726 int mmu_idx, uintptr_t retaddr);
727 uint64_t helper_ret_ldq_mmu(CPUArchState *env, target_ulong addr,
728 int mmu_idx, uintptr_t retaddr);
729
730 /* Value sign-extended to tcg register size. */
731 tcg_target_ulong helper_ret_ldsb_mmu(CPUArchState *env, target_ulong addr,
732 int mmu_idx, uintptr_t retaddr);
733 tcg_target_ulong helper_ret_ldsw_mmu(CPUArchState *env, target_ulong addr,
734 int mmu_idx, uintptr_t retaddr);
735 tcg_target_ulong helper_ret_ldsl_mmu(CPUArchState *env, target_ulong addr,
736 int mmu_idx, uintptr_t retaddr);
737
738 void helper_ret_stb_mmu(CPUArchState *env, target_ulong addr, uint8_t val,
739 int mmu_idx, uintptr_t retaddr);
740 void helper_ret_stw_mmu(CPUArchState *env, target_ulong addr, uint16_t val,
741 int mmu_idx, uintptr_t retaddr);
742 void helper_ret_stl_mmu(CPUArchState *env, target_ulong addr, uint32_t val,
743 int mmu_idx, uintptr_t retaddr);
744 void helper_ret_stq_mmu(CPUArchState *env, target_ulong addr, uint64_t val,
745 int mmu_idx, uintptr_t retaddr);
746
747 uint8_t helper_ldb_mmu(CPUArchState *env, target_ulong addr, int mmu_idx);
748 uint16_t helper_ldw_mmu(CPUArchState *env, target_ulong addr, int mmu_idx);
749 uint32_t helper_ldl_mmu(CPUArchState *env, target_ulong addr, int mmu_idx);
750 uint64_t helper_ldq_mmu(CPUArchState *env, target_ulong addr, int mmu_idx);
751
752 void helper_stb_mmu(CPUArchState *env, target_ulong addr,
753 uint8_t val, int mmu_idx);
754 void helper_stw_mmu(CPUArchState *env, target_ulong addr,
755 uint16_t val, int mmu_idx);
756 void helper_stl_mmu(CPUArchState *env, target_ulong addr,
757 uint32_t val, int mmu_idx);
758 void helper_stq_mmu(CPUArchState *env, target_ulong addr,
759 uint64_t val, int mmu_idx);
760 #endif /* CONFIG_SOFTMMU */
761
762 #endif /* TCG_H */