]> git.proxmox.com Git - mirror_qemu.git/blame - cpu-exec.c
cpu-exec: unify icount_decr and tcg_exit_req
[mirror_qemu.git] / cpu-exec.c
CommitLineData
7d13299d 1/*
e965fc38 2 * emulator main execution loop
5fafdf24 3 *
66321a11 4 * Copyright (c) 2003-2005 Fabrice Bellard
7d13299d 5 *
3ef693a0
FB
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.
7d13299d 10 *
3ef693a0
FB
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.
7d13299d 15 *
3ef693a0 16 * You should have received a copy of the GNU Lesser General Public
8167ee88 17 * License along with this library; if not, see <http://www.gnu.org/licenses/>.
7d13299d 18 */
7b31bbc2 19#include "qemu/osdep.h"
cea5f9a2 20#include "cpu.h"
0ab8ed18 21#include "trace-root.h"
76cad711 22#include "disas/disas.h"
63c91552 23#include "exec/exec-all.h"
7cb69cae 24#include "tcg.h"
1de7afc9 25#include "qemu/atomic.h"
9c17d615 26#include "sysemu/qtest.h"
c2aa5f81 27#include "qemu/timer.h"
9d82b5a7 28#include "exec/address-spaces.h"
79e2b9ae 29#include "qemu/rcu.h"
e1b89321 30#include "exec/tb-hash.h"
508127e2 31#include "exec/log.h"
6220e900
PD
32#if defined(TARGET_I386) && !defined(CONFIG_USER_ONLY)
33#include "hw/i386/apic.h"
34#endif
6f060969 35#include "sysemu/replay.h"
c2aa5f81
ST
36
37/* -icount align implementation. */
38
39typedef struct SyncClocks {
40 int64_t diff_clk;
41 int64_t last_cpu_icount;
7f7bc144 42 int64_t realtime_clock;
c2aa5f81
ST
43} SyncClocks;
44
45#if !defined(CONFIG_USER_ONLY)
46/* Allow the guest to have a max 3ms advance.
47 * The difference between the 2 clocks could therefore
48 * oscillate around 0.
49 */
50#define VM_CLOCK_ADVANCE 3000000
7f7bc144
ST
51#define THRESHOLD_REDUCE 1.5
52#define MAX_DELAY_PRINT_RATE 2000000000LL
53#define MAX_NB_PRINTS 100
c2aa5f81
ST
54
55static void align_clocks(SyncClocks *sc, const CPUState *cpu)
56{
57 int64_t cpu_icount;
58
59 if (!icount_align_option) {
60 return;
61 }
62
63 cpu_icount = cpu->icount_extra + cpu->icount_decr.u16.low;
64 sc->diff_clk += cpu_icount_to_ns(sc->last_cpu_icount - cpu_icount);
65 sc->last_cpu_icount = cpu_icount;
66
67 if (sc->diff_clk > VM_CLOCK_ADVANCE) {
68#ifndef _WIN32
69 struct timespec sleep_delay, rem_delay;
70 sleep_delay.tv_sec = sc->diff_clk / 1000000000LL;
71 sleep_delay.tv_nsec = sc->diff_clk % 1000000000LL;
72 if (nanosleep(&sleep_delay, &rem_delay) < 0) {
a498d0ef 73 sc->diff_clk = rem_delay.tv_sec * 1000000000LL + rem_delay.tv_nsec;
c2aa5f81
ST
74 } else {
75 sc->diff_clk = 0;
76 }
77#else
78 Sleep(sc->diff_clk / SCALE_MS);
79 sc->diff_clk = 0;
80#endif
81 }
82}
83
7f7bc144
ST
84static void print_delay(const SyncClocks *sc)
85{
86 static float threshold_delay;
87 static int64_t last_realtime_clock;
88 static int nb_prints;
89
90 if (icount_align_option &&
91 sc->realtime_clock - last_realtime_clock >= MAX_DELAY_PRINT_RATE &&
92 nb_prints < MAX_NB_PRINTS) {
93 if ((-sc->diff_clk / (float)1000000000LL > threshold_delay) ||
94 (-sc->diff_clk / (float)1000000000LL <
95 (threshold_delay - THRESHOLD_REDUCE))) {
96 threshold_delay = (-sc->diff_clk / 1000000000LL) + 1;
97 printf("Warning: The guest is now late by %.1f to %.1f seconds\n",
98 threshold_delay - 1,
99 threshold_delay);
100 nb_prints++;
101 last_realtime_clock = sc->realtime_clock;
102 }
103 }
104}
105
c2aa5f81
ST
106static void init_delay_params(SyncClocks *sc,
107 const CPUState *cpu)
108{
109 if (!icount_align_option) {
110 return;
111 }
2e91cc62
PB
112 sc->realtime_clock = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL_RT);
113 sc->diff_clk = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) - sc->realtime_clock;
c2aa5f81 114 sc->last_cpu_icount = cpu->icount_extra + cpu->icount_decr.u16.low;
27498bef
ST
115 if (sc->diff_clk < max_delay) {
116 max_delay = sc->diff_clk;
117 }
118 if (sc->diff_clk > max_advance) {
119 max_advance = sc->diff_clk;
120 }
7f7bc144
ST
121
122 /* Print every 2s max if the guest is late. We limit the number
123 of printed messages to NB_PRINT_MAX(currently 100) */
124 print_delay(sc);
c2aa5f81
ST
125}
126#else
127static void align_clocks(SyncClocks *sc, const CPUState *cpu)
128{
129}
130
131static void init_delay_params(SyncClocks *sc, const CPUState *cpu)
132{
133}
134#endif /* CONFIG USER ONLY */
7d13299d 135
77211379 136/* Execute a TB, and fix up the CPU state afterwards if necessary */
1a830635 137static inline tcg_target_ulong cpu_tb_exec(CPUState *cpu, TranslationBlock *itb)
77211379
PM
138{
139 CPUArchState *env = cpu->env_ptr;
819af24b
SF
140 uintptr_t ret;
141 TranslationBlock *last_tb;
142 int tb_exit;
1a830635
PM
143 uint8_t *tb_ptr = itb->tc_ptr;
144
d977e1c2 145 qemu_log_mask_and_addr(CPU_LOG_EXEC, itb->pc,
4426f83a
AB
146 "Trace %p [%d: " TARGET_FMT_lx "] %s\n",
147 itb->tc_ptr, cpu->cpu_index, itb->pc,
148 lookup_symbol(itb->pc));
03afa5f8
RH
149
150#if defined(DEBUG_DISAS)
be2208e2
RH
151 if (qemu_loglevel_mask(CPU_LOG_TB_CPU)
152 && qemu_log_in_addr_range(itb->pc)) {
1ee73216 153 qemu_log_lock();
03afa5f8
RH
154#if defined(TARGET_I386)
155 log_cpu_state(cpu, CPU_DUMP_CCOP);
03afa5f8
RH
156#else
157 log_cpu_state(cpu, 0);
158#endif
1ee73216 159 qemu_log_unlock();
03afa5f8
RH
160 }
161#endif /* DEBUG_DISAS */
162
414b15c9 163 cpu->can_do_io = !use_icount;
819af24b 164 ret = tcg_qemu_tb_exec(env, tb_ptr);
626cf8f4 165 cpu->can_do_io = 1;
819af24b
SF
166 last_tb = (TranslationBlock *)(ret & ~TB_EXIT_MASK);
167 tb_exit = ret & TB_EXIT_MASK;
168 trace_exec_tb_exit(last_tb, tb_exit);
6db8b538 169
819af24b 170 if (tb_exit > TB_EXIT_IDX1) {
77211379
PM
171 /* We didn't start executing this TB (eg because the instruction
172 * counter hit zero); we must restore the guest PC to the address
173 * of the start of the TB.
174 */
bdf7ae5b 175 CPUClass *cc = CPU_GET_CLASS(cpu);
819af24b 176 qemu_log_mask_and_addr(CPU_LOG_EXEC, last_tb->pc,
d977e1c2
AB
177 "Stopped execution of TB chain before %p ["
178 TARGET_FMT_lx "] %s\n",
819af24b
SF
179 last_tb->tc_ptr, last_tb->pc,
180 lookup_symbol(last_tb->pc));
bdf7ae5b 181 if (cc->synchronize_from_tb) {
819af24b 182 cc->synchronize_from_tb(cpu, last_tb);
bdf7ae5b
AF
183 } else {
184 assert(cc->set_pc);
819af24b 185 cc->set_pc(cpu, last_tb->pc);
bdf7ae5b 186 }
77211379 187 }
819af24b 188 return ret;
77211379
PM
189}
190
7687bf52 191#ifndef CONFIG_USER_ONLY
2e70f6ef
PB
192/* Execute the code without caching the generated code. An interpreter
193 could be used if available. */
ea3e9847 194static void cpu_exec_nocache(CPUState *cpu, int max_cycles,
56c0269a 195 TranslationBlock *orig_tb, bool ignore_icount)
2e70f6ef 196{
2e70f6ef
PB
197 TranslationBlock *tb;
198
199 /* Should never happen.
200 We only end up here when an existing TB is too long. */
201 if (max_cycles > CF_COUNT_MASK)
202 max_cycles = CF_COUNT_MASK;
203
a5e99826 204 tb_lock();
02d57ea1 205 tb = tb_gen_code(cpu, orig_tb->pc, orig_tb->cs_base, orig_tb->flags,
56c0269a
PD
206 max_cycles | CF_NOCACHE
207 | (ignore_icount ? CF_IGNORE_ICOUNT : 0));
3359baad 208 tb->orig_tb = orig_tb;
a5e99826
FK
209 tb_unlock();
210
2e70f6ef 211 /* execute the generated code */
6db8b538 212 trace_exec_tb_nocache(tb, tb->pc);
1a830635 213 cpu_tb_exec(cpu, tb);
a5e99826
FK
214
215 tb_lock();
2e70f6ef
PB
216 tb_phys_invalidate(tb, -1);
217 tb_free(tb);
a5e99826 218 tb_unlock();
2e70f6ef 219}
7687bf52 220#endif
2e70f6ef 221
fdbc2b57
RH
222static void cpu_exec_step(CPUState *cpu)
223{
224 CPUArchState *env = (CPUArchState *)cpu->env_ptr;
225 TranslationBlock *tb;
226 target_ulong cs_base, pc;
227 uint32_t flags;
228
229 cpu_get_tb_cpu_state(env, &pc, &cs_base, &flags);
230 tb = tb_gen_code(cpu, pc, cs_base, flags,
231 1 | CF_NOCACHE | CF_IGNORE_ICOUNT);
232 tb->orig_tb = NULL;
233 /* execute the generated code */
234 trace_exec_tb_nocache(tb, pc);
235 cpu_tb_exec(cpu, tb);
236 tb_phys_invalidate(tb, -1);
237 tb_free(tb);
238}
239
240void cpu_exec_step_atomic(CPUState *cpu)
241{
242 start_exclusive();
243
244 /* Since we got here, we know that parallel_cpus must be true. */
245 parallel_cpus = false;
246 cpu_exec_step(cpu);
247 parallel_cpus = true;
248
249 end_exclusive();
250}
251
909eaac9
EC
252struct tb_desc {
253 target_ulong pc;
254 target_ulong cs_base;
255 CPUArchState *env;
256 tb_page_addr_t phys_page1;
257 uint32_t flags;
258};
259
260static bool tb_cmp(const void *p, const void *d)
261{
262 const TranslationBlock *tb = p;
263 const struct tb_desc *desc = d;
264
265 if (tb->pc == desc->pc &&
266 tb->page_addr[0] == desc->phys_page1 &&
267 tb->cs_base == desc->cs_base &&
6d21e420
PB
268 tb->flags == desc->flags &&
269 !atomic_read(&tb->invalid)) {
909eaac9
EC
270 /* check next page if needed */
271 if (tb->page_addr[1] == -1) {
272 return true;
273 } else {
274 tb_page_addr_t phys_page2;
275 target_ulong virt_page2;
276
277 virt_page2 = (desc->pc & TARGET_PAGE_MASK) + TARGET_PAGE_SIZE;
278 phys_page2 = get_page_addr_code(desc->env, virt_page2);
279 if (tb->page_addr[1] == phys_page2) {
280 return true;
281 }
282 }
283 }
284 return false;
285}
286
b34de45f 287static TranslationBlock *tb_htable_lookup(CPUState *cpu,
9fd1a948
PB
288 target_ulong pc,
289 target_ulong cs_base,
89fee74a 290 uint32_t flags)
8a40a180 291{
909eaac9
EC
292 tb_page_addr_t phys_pc;
293 struct tb_desc desc;
42bd3228 294 uint32_t h;
3b46e624 295
909eaac9
EC
296 desc.env = (CPUArchState *)cpu->env_ptr;
297 desc.cs_base = cs_base;
298 desc.flags = flags;
299 desc.pc = pc;
300 phys_pc = get_page_addr_code(desc.env, pc);
301 desc.phys_page1 = phys_pc & TARGET_PAGE_MASK;
42bd3228 302 h = tb_hash_func(phys_pc, pc, flags);
909eaac9 303 return qht_lookup(&tcg_ctx.tb_ctx.htable, tb_cmp, &desc, h);
9fd1a948
PB
304}
305
bd2710d5
SF
306static inline TranslationBlock *tb_find(CPUState *cpu,
307 TranslationBlock *last_tb,
308 int tb_exit)
8a40a180 309{
ea3e9847 310 CPUArchState *env = (CPUArchState *)cpu->env_ptr;
8a40a180
FB
311 TranslationBlock *tb;
312 target_ulong cs_base, pc;
89fee74a 313 uint32_t flags;
74d356dd 314 bool have_tb_lock = false;
8a40a180
FB
315
316 /* we record a subset of the CPU state. It will
317 always be the same before a given translated block
318 is executed. */
6b917547 319 cpu_get_tb_cpu_state(env, &pc, &cs_base, &flags);
89a16b1e 320 tb = atomic_rcu_read(&cpu->tb_jmp_cache[tb_jmp_cache_hash_func(pc)]);
551bd27f
TS
321 if (unlikely(!tb || tb->pc != pc || tb->cs_base != cs_base ||
322 tb->flags != flags)) {
b34de45f 323 tb = tb_htable_lookup(cpu, pc, cs_base, flags);
bd2710d5
SF
324 if (!tb) {
325
326 /* mmap_lock is needed by tb_gen_code, and mmap_lock must be
327 * taken outside tb_lock. As system emulation is currently
328 * single threaded the locks are NOPs.
329 */
330 mmap_lock();
331 tb_lock();
332 have_tb_lock = true;
333
334 /* There's a chance that our desired tb has been translated while
335 * taking the locks so we check again inside the lock.
336 */
b34de45f 337 tb = tb_htable_lookup(cpu, pc, cs_base, flags);
bd2710d5
SF
338 if (!tb) {
339 /* if no translated code available, then translate it now */
340 tb = tb_gen_code(cpu, pc, cs_base, flags, 0);
341 }
342
343 mmap_unlock();
344 }
345
346 /* We add the TB in the virtual pc hash table for the fast lookup */
347 atomic_set(&cpu->tb_jmp_cache[tb_jmp_cache_hash_func(pc)], tb);
8a40a180 348 }
c88c67e5
SF
349#ifndef CONFIG_USER_ONLY
350 /* We don't take care of direct jumps when address mapping changes in
351 * system emulation. So it's not safe to make a direct jump to a TB
352 * spanning two pages because the mapping for the second page can change.
353 */
354 if (tb->page_addr[1] != -1) {
4b7e6950 355 last_tb = NULL;
c88c67e5
SF
356 }
357#endif
a0522c7a 358 /* See if we can patch the calling TB. */
4b7e6950 359 if (last_tb && !qemu_loglevel_mask(CPU_LOG_TB_NOCHAIN)) {
74d356dd
SF
360 if (!have_tb_lock) {
361 tb_lock();
362 have_tb_lock = true;
363 }
3359baad 364 if (!tb->invalid) {
118b0730
SF
365 tb_add_jump(last_tb, tb_exit, tb);
366 }
74d356dd
SF
367 }
368 if (have_tb_lock) {
518615c6 369 tb_unlock();
a0522c7a 370 }
8a40a180
FB
371 return tb;
372}
373
8b2d34e9
SF
374static inline bool cpu_handle_halt(CPUState *cpu)
375{
376 if (cpu->halted) {
377#if defined(TARGET_I386) && !defined(CONFIG_USER_ONLY)
378 if ((cpu->interrupt_request & CPU_INTERRUPT_POLL)
379 && replay_interrupt()) {
380 X86CPU *x86_cpu = X86_CPU(cpu);
381 apic_poll_irq(x86_cpu->apic_state);
382 cpu_reset_interrupt(cpu, CPU_INTERRUPT_POLL);
383 }
384#endif
385 if (!cpu_has_work(cpu)) {
386 current_cpu = NULL;
387 return true;
388 }
389
390 cpu->halted = 0;
391 }
392
393 return false;
394}
395
ea284766 396static inline void cpu_handle_debug_exception(CPUState *cpu)
1009d2ed 397{
86025ee4 398 CPUClass *cc = CPU_GET_CLASS(cpu);
1009d2ed
JK
399 CPUWatchpoint *wp;
400
ff4700b0
AF
401 if (!cpu->watchpoint_hit) {
402 QTAILQ_FOREACH(wp, &cpu->watchpoints, entry) {
1009d2ed
JK
403 wp->flags &= ~BP_WATCHPOINT_HIT;
404 }
405 }
86025ee4
PM
406
407 cc->debug_excp_handler(cpu);
1009d2ed
JK
408}
409
ea284766
SF
410static inline bool cpu_handle_exception(CPUState *cpu, int *ret)
411{
412 if (cpu->exception_index >= 0) {
413 if (cpu->exception_index >= EXCP_INTERRUPT) {
414 /* exit request from the cpu execution loop */
415 *ret = cpu->exception_index;
416 if (*ret == EXCP_DEBUG) {
417 cpu_handle_debug_exception(cpu);
418 }
419 cpu->exception_index = -1;
420 return true;
421 } else {
422#if defined(CONFIG_USER_ONLY)
423 /* if user mode only, we simulate a fake exception
424 which will be handled outside the cpu execution
425 loop */
426#if defined(TARGET_I386)
427 CPUClass *cc = CPU_GET_CLASS(cpu);
428 cc->do_interrupt(cpu);
429#endif
430 *ret = cpu->exception_index;
431 cpu->exception_index = -1;
432 return true;
433#else
434 if (replay_exception()) {
435 CPUClass *cc = CPU_GET_CLASS(cpu);
436 cc->do_interrupt(cpu);
437 cpu->exception_index = -1;
438 } else if (!replay_has_interrupt()) {
439 /* give a chance to iothread in replay mode */
440 *ret = EXCP_INTERRUPT;
441 return true;
442 }
443#endif
444 }
445#ifndef CONFIG_USER_ONLY
446 } else if (replay_has_exception()
447 && cpu->icount_decr.u16.low + cpu->icount_extra == 0) {
448 /* try to cause an exception pending in the log */
bd2710d5 449 cpu_exec_nocache(cpu, 1, tb_find(cpu, NULL, 0), true);
ea284766
SF
450 *ret = -1;
451 return true;
452#endif
453 }
454
455 return false;
456}
457
209b71b6 458static inline bool cpu_handle_interrupt(CPUState *cpu,
c385e6e4
SF
459 TranslationBlock **last_tb)
460{
461 CPUClass *cc = CPU_GET_CLASS(cpu);
462 int interrupt_request = cpu->interrupt_request;
463
464 if (unlikely(interrupt_request)) {
465 if (unlikely(cpu->singlestep_enabled & SSTEP_NOIRQ)) {
466 /* Mask out external interrupts for this step. */
467 interrupt_request &= ~CPU_INTERRUPT_SSTEP_MASK;
468 }
469 if (interrupt_request & CPU_INTERRUPT_DEBUG) {
470 cpu->interrupt_request &= ~CPU_INTERRUPT_DEBUG;
471 cpu->exception_index = EXCP_DEBUG;
209b71b6 472 return true;
c385e6e4
SF
473 }
474 if (replay_mode == REPLAY_MODE_PLAY && !replay_has_interrupt()) {
475 /* Do nothing */
476 } else if (interrupt_request & CPU_INTERRUPT_HALT) {
477 replay_interrupt();
478 cpu->interrupt_request &= ~CPU_INTERRUPT_HALT;
479 cpu->halted = 1;
480 cpu->exception_index = EXCP_HLT;
209b71b6 481 return true;
c385e6e4
SF
482 }
483#if defined(TARGET_I386)
484 else if (interrupt_request & CPU_INTERRUPT_INIT) {
485 X86CPU *x86_cpu = X86_CPU(cpu);
486 CPUArchState *env = &x86_cpu->env;
487 replay_interrupt();
65c9d60a 488 cpu_svm_check_intercept_param(env, SVM_EXIT_INIT, 0, 0);
c385e6e4
SF
489 do_cpu_init(x86_cpu);
490 cpu->exception_index = EXCP_HALTED;
209b71b6 491 return true;
c385e6e4
SF
492 }
493#else
494 else if (interrupt_request & CPU_INTERRUPT_RESET) {
495 replay_interrupt();
496 cpu_reset(cpu);
209b71b6 497 return true;
c385e6e4
SF
498 }
499#endif
500 /* The target hook has 3 exit conditions:
501 False when the interrupt isn't processed,
502 True when it is, and we should restart on a new TB,
503 and via longjmp via cpu_loop_exit. */
504 else {
c385e6e4 505 if (cc->cpu_exec_interrupt(cpu, interrupt_request)) {
d718b14b 506 replay_interrupt();
c385e6e4
SF
507 *last_tb = NULL;
508 }
8b1fe3f4
SF
509 /* The target hook may have updated the 'cpu->interrupt_request';
510 * reload the 'interrupt_request' value */
511 interrupt_request = cpu->interrupt_request;
c385e6e4 512 }
8b1fe3f4 513 if (interrupt_request & CPU_INTERRUPT_EXITTB) {
c385e6e4
SF
514 cpu->interrupt_request &= ~CPU_INTERRUPT_EXITTB;
515 /* ensure that no TB jump will be modified as
516 the program flow was changed */
517 *last_tb = NULL;
518 }
519 }
027d9a7d
AB
520 if (unlikely(atomic_read(&cpu->exit_request) || replay_has_interrupt())) {
521 atomic_set(&cpu->exit_request, 0);
c385e6e4 522 cpu->exception_index = EXCP_INTERRUPT;
209b71b6 523 return true;
c385e6e4 524 }
209b71b6
PB
525
526 return false;
c385e6e4
SF
527}
528
928de9ee
SF
529static inline void cpu_loop_exec_tb(CPUState *cpu, TranslationBlock *tb,
530 TranslationBlock **last_tb, int *tb_exit,
531 SyncClocks *sc)
532{
533 uintptr_t ret;
1aab16c2 534 int32_t insns_left;
928de9ee 535
027d9a7d 536 if (unlikely(atomic_read(&cpu->exit_request))) {
928de9ee
SF
537 return;
538 }
539
540 trace_exec_tb(tb, tb->pc);
541 ret = cpu_tb_exec(cpu, tb);
43d70ddf 542 tb = (TranslationBlock *)(ret & ~TB_EXIT_MASK);
928de9ee 543 *tb_exit = ret & TB_EXIT_MASK;
1aab16c2
PB
544 if (*tb_exit != TB_EXIT_REQUESTED) {
545 *last_tb = tb;
546 return;
547 }
548
549 *last_tb = NULL;
550 insns_left = atomic_read(&cpu->icount_decr.u32);
551 atomic_set(&cpu->icount_decr.u16.high, 0);
552 if (insns_left < 0) {
928de9ee
SF
553 /* Something asked us to stop executing
554 * chained TBs; just continue round the main
555 * loop. Whatever requested the exit will also
556 * have set something else (eg exit_request or
557 * interrupt_request) which we will handle
558 * next time around the loop. But we need to
a70fe14b 559 * ensure the zeroing of tcg_exit_req (see cpu_tb_exec)
928de9ee
SF
560 * comes before the next read of cpu->exit_request
561 * or cpu->interrupt_request.
562 */
a70fe14b 563 smp_mb();
1aab16c2 564 return;
928de9ee 565 }
1aab16c2
PB
566
567 /* Instruction counter expired. */
568 assert(use_icount);
569#ifndef CONFIG_USER_ONLY
570 if (cpu->icount_extra) {
571 /* Refill decrementer and continue execution. */
572 cpu->icount_extra += insns_left;
573 insns_left = MIN(0xffff, cpu->icount_extra);
574 cpu->icount_extra -= insns_left;
575 cpu->icount_decr.u16.low = insns_left;
576 } else {
577 /* Execute any remaining instructions, then let the main loop
578 * handle the next event.
579 */
580 if (insns_left > 0) {
581 cpu_exec_nocache(cpu, insns_left, tb, false);
582 align_clocks(sc, cpu);
583 }
584 cpu->exception_index = EXCP_INTERRUPT;
585 cpu_loop_exit(cpu);
928de9ee 586 }
1aab16c2 587#endif
928de9ee
SF
588}
589
7d13299d
FB
590/* main execution loop */
591
ea3e9847 592int cpu_exec(CPUState *cpu)
7d13299d 593{
97a8ea5a 594 CPUClass *cc = CPU_GET_CLASS(cpu);
c385e6e4 595 int ret;
c2aa5f81
ST
596 SyncClocks sc;
597
6f060969
PD
598 /* replay_interrupt may need current_cpu */
599 current_cpu = cpu;
600
8b2d34e9
SF
601 if (cpu_handle_halt(cpu)) {
602 return EXCP_HALTED;
eda48c34 603 }
5a1e3cfc 604
9373e632 605 atomic_mb_set(&tcg_current_cpu, cpu);
79e2b9ae
PB
606 rcu_read_lock();
607
aed807c8 608 if (unlikely(atomic_mb_read(&exit_request))) {
fcd7d003 609 cpu->exit_request = 1;
1a28cac3
MT
610 }
611
cffe7b32 612 cc->cpu_exec_enter(cpu);
9d27abd9 613
c2aa5f81
ST
614 /* Calculate difference between guest clock and host clock.
615 * This delay includes the delay of the last cycle, so
616 * what we have to do is sleep until it is 0. As for the
617 * advance/delay we gain here, we try to fix it next time.
618 */
619 init_delay_params(&sc, cpu);
620
4515e58d
PB
621 /* prepare setjmp context for exception handling */
622 if (sigsetjmp(cpu->jmp_env, 0) != 0) {
0448f5f8 623#if defined(__clang__) || !QEMU_GNUC_PREREQ(4, 6)
4515e58d
PB
624 /* Some compilers wrongly smash all local variables after
625 * siglongjmp. There were bug reports for gcc 4.5.0 and clang.
626 * Reload essential local variables here for those compilers.
627 * Newer versions of gcc would complain about this code (-Wclobbered). */
628 cpu = current_cpu;
629 cc = CPU_GET_CLASS(cpu);
0448f5f8 630#else /* buggy compiler */
4515e58d
PB
631 /* Assert that the compiler does not smash local variables. */
632 g_assert(cpu == current_cpu);
633 g_assert(cc == CPU_GET_CLASS(cpu));
0448f5f8 634#endif /* buggy compiler */
4515e58d
PB
635 cpu->can_do_io = 1;
636 tb_lock_reset();
637 }
638
639 /* if an exception is pending, we execute it here */
640 while (!cpu_handle_exception(cpu, &ret)) {
641 TranslationBlock *last_tb = NULL;
642 int tb_exit = 0;
643
644 while (!cpu_handle_interrupt(cpu, &last_tb)) {
645 TranslationBlock *tb = tb_find(cpu, last_tb, tb_exit);
646 cpu_loop_exec_tb(cpu, tb, &last_tb, &tb_exit, &sc);
647 /* Try to align the host and virtual clocks
648 if the guest is in advance */
649 align_clocks(&sc, cpu);
7d13299d 650 }
4515e58d 651 }
3fb2ded1 652
cffe7b32 653 cc->cpu_exec_exit(cpu);
79e2b9ae 654 rcu_read_unlock();
1057eaa7 655
4917cf44
AF
656 /* fail safe : never use current_cpu outside cpu_exec() */
657 current_cpu = NULL;
9373e632
PB
658
659 /* Does not need atomic_mb_set because a spurious wakeup is okay. */
660 atomic_set(&tcg_current_cpu, NULL);
7d13299d
FB
661 return ret;
662}