4 * Copyright (c) 2012-2014 SUSE LINUX Products GmbH
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * as published by the Free Software Foundation; either version 2
9 * of the License, or (at your option) any later version.
11 * This program 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
14 * GNU General Public License for more details.
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, see
18 * <http://www.gnu.org/licenses/gpl-2.0.html>
21 #include "qemu/osdep.h"
22 #include "qapi/error.h"
23 #include "qemu-common.h"
25 #include "sysemu/hw_accel.h"
26 #include "qemu/notify.h"
29 #include "exec/cpu-common.h"
30 #include "qemu/error-report.h"
31 #include "sysemu/sysemu.h"
32 #include "hw/qdev-properties.h"
33 #include "trace-root.h"
35 CPUInterruptHandler cpu_interrupt_handler
;
37 bool cpu_exists(int64_t id
)
42 CPUClass
*cc
= CPU_GET_CLASS(cpu
);
44 if (cc
->get_arch_id(cpu
) == id
) {
51 CPUState
*cpu_generic_init(const char *typename
, const char *cpu_model
)
53 char *str
, *name
, *featurestr
;
59 str
= g_strdup(cpu_model
);
60 name
= strtok(str
, ",");
62 oc
= cpu_class_by_name(typename
, name
);
69 featurestr
= strtok(NULL
, ",");
70 /* TODO: all callers of cpu_generic_init() need to be converted to
71 * call parse_features() only once, before calling cpu_generic_init().
73 cc
->parse_features(object_class_get_name(oc
), featurestr
, &err
);
79 cpu
= CPU(object_new(object_class_get_name(oc
)));
80 object_property_set_bool(OBJECT(cpu
), true, "realized", &err
);
84 error_report_err(err
);
85 object_unref(OBJECT(cpu
));
92 bool cpu_paging_enabled(const CPUState
*cpu
)
94 CPUClass
*cc
= CPU_GET_CLASS(cpu
);
96 return cc
->get_paging_enabled(cpu
);
99 static bool cpu_common_get_paging_enabled(const CPUState
*cpu
)
104 void cpu_get_memory_mapping(CPUState
*cpu
, MemoryMappingList
*list
,
107 CPUClass
*cc
= CPU_GET_CLASS(cpu
);
109 cc
->get_memory_mapping(cpu
, list
, errp
);
112 static void cpu_common_get_memory_mapping(CPUState
*cpu
,
113 MemoryMappingList
*list
,
116 error_setg(errp
, "Obtaining memory mappings is unsupported on this CPU.");
119 /* Resetting the IRQ comes from across the code base so we take the
120 * BQL here if we need to. cpu_interrupt assumes it is held.*/
121 void cpu_reset_interrupt(CPUState
*cpu
, int mask
)
123 bool need_lock
= !qemu_mutex_iothread_locked();
126 qemu_mutex_lock_iothread();
128 cpu
->interrupt_request
&= ~mask
;
130 qemu_mutex_unlock_iothread();
134 void cpu_exit(CPUState
*cpu
)
136 atomic_set(&cpu
->exit_request
, 1);
137 /* Ensure cpu_exec will see the exit request after TCG has exited. */
139 atomic_set(&cpu
->icount_decr
.u16
.high
, -1);
142 int cpu_write_elf32_qemunote(WriteCoreDumpFunction f
, CPUState
*cpu
,
145 CPUClass
*cc
= CPU_GET_CLASS(cpu
);
147 return (*cc
->write_elf32_qemunote
)(f
, cpu
, opaque
);
150 static int cpu_common_write_elf32_qemunote(WriteCoreDumpFunction f
,
151 CPUState
*cpu
, void *opaque
)
156 int cpu_write_elf32_note(WriteCoreDumpFunction f
, CPUState
*cpu
,
157 int cpuid
, void *opaque
)
159 CPUClass
*cc
= CPU_GET_CLASS(cpu
);
161 return (*cc
->write_elf32_note
)(f
, cpu
, cpuid
, opaque
);
164 static int cpu_common_write_elf32_note(WriteCoreDumpFunction f
,
165 CPUState
*cpu
, int cpuid
,
171 int cpu_write_elf64_qemunote(WriteCoreDumpFunction f
, CPUState
*cpu
,
174 CPUClass
*cc
= CPU_GET_CLASS(cpu
);
176 return (*cc
->write_elf64_qemunote
)(f
, cpu
, opaque
);
179 static int cpu_common_write_elf64_qemunote(WriteCoreDumpFunction f
,
180 CPUState
*cpu
, void *opaque
)
185 int cpu_write_elf64_note(WriteCoreDumpFunction f
, CPUState
*cpu
,
186 int cpuid
, void *opaque
)
188 CPUClass
*cc
= CPU_GET_CLASS(cpu
);
190 return (*cc
->write_elf64_note
)(f
, cpu
, cpuid
, opaque
);
193 static int cpu_common_write_elf64_note(WriteCoreDumpFunction f
,
194 CPUState
*cpu
, int cpuid
,
201 static int cpu_common_gdb_read_register(CPUState
*cpu
, uint8_t *buf
, int reg
)
206 static int cpu_common_gdb_write_register(CPUState
*cpu
, uint8_t *buf
, int reg
)
211 static bool cpu_common_debug_check_watchpoint(CPUState
*cpu
, CPUWatchpoint
*wp
)
213 /* If no extra check is required, QEMU watchpoint match can be considered
214 * as an architectural match.
219 bool target_words_bigendian(void);
220 static bool cpu_common_virtio_is_big_endian(CPUState
*cpu
)
222 return target_words_bigendian();
225 static void cpu_common_noop(CPUState
*cpu
)
229 static bool cpu_common_exec_interrupt(CPUState
*cpu
, int int_req
)
234 GuestPanicInformation
*cpu_get_crash_info(CPUState
*cpu
)
236 CPUClass
*cc
= CPU_GET_CLASS(cpu
);
237 GuestPanicInformation
*res
= NULL
;
239 if (cc
->get_crash_info
) {
240 res
= cc
->get_crash_info(cpu
);
245 void cpu_dump_state(CPUState
*cpu
, FILE *f
, fprintf_function cpu_fprintf
,
248 CPUClass
*cc
= CPU_GET_CLASS(cpu
);
250 if (cc
->dump_state
) {
251 cpu_synchronize_state(cpu
);
252 cc
->dump_state(cpu
, f
, cpu_fprintf
, flags
);
256 void cpu_dump_statistics(CPUState
*cpu
, FILE *f
, fprintf_function cpu_fprintf
,
259 CPUClass
*cc
= CPU_GET_CLASS(cpu
);
261 if (cc
->dump_statistics
) {
262 cc
->dump_statistics(cpu
, f
, cpu_fprintf
, flags
);
266 void cpu_reset(CPUState
*cpu
)
268 CPUClass
*klass
= CPU_GET_CLASS(cpu
);
270 if (klass
->reset
!= NULL
) {
271 (*klass
->reset
)(cpu
);
274 trace_guest_cpu_reset(cpu
);
277 static void cpu_common_reset(CPUState
*cpu
)
279 CPUClass
*cc
= CPU_GET_CLASS(cpu
);
281 if (qemu_loglevel_mask(CPU_LOG_RESET
)) {
282 qemu_log("CPU Reset (CPU %d)\n", cpu
->cpu_index
);
283 log_cpu_state(cpu
, cc
->reset_dump_flags
);
286 cpu
->interrupt_request
= 0;
289 cpu
->mem_io_vaddr
= 0;
290 cpu
->icount_extra
= 0;
291 cpu
->icount_decr
.u32
= 0;
293 cpu
->exception_index
= -1;
294 cpu
->crash_occurred
= false;
297 cpu_tb_jmp_cache_clear(cpu
);
299 tcg_flush_softmmu_tlb(cpu
);
303 static bool cpu_common_has_work(CPUState
*cs
)
308 ObjectClass
*cpu_class_by_name(const char *typename
, const char *cpu_model
)
310 CPUClass
*cc
= CPU_CLASS(object_class_by_name(typename
));
312 return cc
->class_by_name(cpu_model
);
315 static ObjectClass
*cpu_common_class_by_name(const char *cpu_model
)
320 static void cpu_common_parse_features(const char *typename
, char *features
,
323 char *featurestr
; /* Single "key=value" string being parsed */
325 static bool cpu_globals_initialized
;
327 /* TODO: all callers of ->parse_features() need to be changed to
328 * call it only once, so we can remove this check (or change it
329 * to assert(!cpu_globals_initialized).
330 * Current callers of ->parse_features() are:
331 * - cpu_generic_init()
333 if (cpu_globals_initialized
) {
336 cpu_globals_initialized
= true;
338 featurestr
= features
? strtok(features
, ",") : NULL
;
341 val
= strchr(featurestr
, '=');
343 GlobalProperty
*prop
= g_new0(typeof(*prop
), 1);
346 prop
->driver
= typename
;
347 prop
->property
= g_strdup(featurestr
);
348 prop
->value
= g_strdup(val
);
349 prop
->errp
= &error_fatal
;
350 qdev_prop_register_global(prop
);
352 error_setg(errp
, "Expected key=value format, found %s.",
356 featurestr
= strtok(NULL
, ",");
360 static void cpu_common_realizefn(DeviceState
*dev
, Error
**errp
)
362 CPUState
*cpu
= CPU(dev
);
364 if (dev
->hotplugged
) {
365 cpu_synchronize_post_init(cpu
);
369 /* NOTE: latest generic point where the cpu is fully realized */
370 trace_init_vcpu(cpu
);
373 static void cpu_common_unrealizefn(DeviceState
*dev
, Error
**errp
)
375 CPUState
*cpu
= CPU(dev
);
376 /* NOTE: latest generic point before the cpu is fully unrealized */
377 trace_fini_vcpu(cpu
);
378 cpu_exec_unrealizefn(cpu
);
381 static void cpu_common_initfn(Object
*obj
)
383 CPUState
*cpu
= CPU(obj
);
384 CPUClass
*cc
= CPU_GET_CLASS(obj
);
386 cpu
->cpu_index
= UNASSIGNED_CPU_INDEX
;
387 cpu
->gdb_num_regs
= cpu
->gdb_num_g_regs
= cc
->gdb_num_core_regs
;
388 /* *-user doesn't have configurable SMP topology */
389 /* the default value is changed by qemu_init_vcpu() for softmmu */
393 qemu_mutex_init(&cpu
->work_mutex
);
394 QTAILQ_INIT(&cpu
->breakpoints
);
395 QTAILQ_INIT(&cpu
->watchpoints
);
397 cpu_exec_initfn(cpu
);
400 static void cpu_common_finalize(Object
*obj
)
404 static int64_t cpu_common_get_arch_id(CPUState
*cpu
)
406 return cpu
->cpu_index
;
409 static vaddr
cpu_adjust_watchpoint_address(CPUState
*cpu
, vaddr addr
, int len
)
414 static void generic_handle_interrupt(CPUState
*cpu
, int mask
)
416 cpu
->interrupt_request
|= mask
;
418 if (!qemu_cpu_is_self(cpu
)) {
423 CPUInterruptHandler cpu_interrupt_handler
= generic_handle_interrupt
;
425 static void cpu_class_init(ObjectClass
*klass
, void *data
)
427 DeviceClass
*dc
= DEVICE_CLASS(klass
);
428 CPUClass
*k
= CPU_CLASS(klass
);
430 k
->class_by_name
= cpu_common_class_by_name
;
431 k
->parse_features
= cpu_common_parse_features
;
432 k
->reset
= cpu_common_reset
;
433 k
->get_arch_id
= cpu_common_get_arch_id
;
434 k
->has_work
= cpu_common_has_work
;
435 k
->get_paging_enabled
= cpu_common_get_paging_enabled
;
436 k
->get_memory_mapping
= cpu_common_get_memory_mapping
;
437 k
->write_elf32_qemunote
= cpu_common_write_elf32_qemunote
;
438 k
->write_elf32_note
= cpu_common_write_elf32_note
;
439 k
->write_elf64_qemunote
= cpu_common_write_elf64_qemunote
;
440 k
->write_elf64_note
= cpu_common_write_elf64_note
;
441 k
->gdb_read_register
= cpu_common_gdb_read_register
;
442 k
->gdb_write_register
= cpu_common_gdb_write_register
;
443 k
->virtio_is_big_endian
= cpu_common_virtio_is_big_endian
;
444 k
->debug_excp_handler
= cpu_common_noop
;
445 k
->debug_check_watchpoint
= cpu_common_debug_check_watchpoint
;
446 k
->cpu_exec_enter
= cpu_common_noop
;
447 k
->cpu_exec_exit
= cpu_common_noop
;
448 k
->cpu_exec_interrupt
= cpu_common_exec_interrupt
;
449 k
->adjust_watchpoint_address
= cpu_adjust_watchpoint_address
;
450 set_bit(DEVICE_CATEGORY_CPU
, dc
->categories
);
451 dc
->realize
= cpu_common_realizefn
;
452 dc
->unrealize
= cpu_common_unrealizefn
;
453 dc
->props
= cpu_common_props
;
455 * Reason: CPUs still need special care by board code: wiring up
456 * IRQs, adding reset handlers, halting non-first CPUs, ...
458 dc
->user_creatable
= false;
461 static const TypeInfo cpu_type_info
= {
463 .parent
= TYPE_DEVICE
,
464 .instance_size
= sizeof(CPUState
),
465 .instance_init
= cpu_common_initfn
,
466 .instance_finalize
= cpu_common_finalize
,
468 .class_size
= sizeof(CPUClass
),
469 .class_init
= cpu_class_init
,
472 static void cpu_register_types(void)
474 type_register_static(&cpu_type_info
);
477 type_init(cpu_register_types
)