mirror of https://github.com/xemu-project/xemu.git
KVM: Rework VCPU state writeback API
This grand cleanup drops all reset and vmsave/load related synchronization points in favor of four(!) generic hooks: - cpu_synchronize_all_states in qemu_savevm_state_complete (initial sync from kernel before vmsave) - cpu_synchronize_all_post_init in qemu_loadvm_state (writeback after vmload) - cpu_synchronize_all_post_init in main after machine init - cpu_synchronize_all_post_reset in qemu_system_reset (writeback after system reset) These writeback points + the existing one of VCPU exec after cpu_synchronize_state map on three levels of writeback: - KVM_PUT_RUNTIME_STATE (during runtime, other VCPUs continue to run) - KVM_PUT_RESET_STATE (on synchronous system reset, all VCPUs stopped) - KVM_PUT_FULL_STATE (on init or vmload, all VCPUs stopped as well) This level is passed to the arch-specific VCPU state writing function that will decide which concrete substates need to be written. That way, no writer of load, save or reset functions that interact with in-kernel KVM states will ever have to worry about synchronization again. That also means that a lot of reasons for races, segfaults and deadlocks are eliminated. cpu_synchronize_state remains untouched, just as Anthony suggested. We continue to need it before reading or writing of VCPU states that are also tracked by in-kernel KVM subsystems. Consequently, this patch removes many cpu_synchronize_state calls that are now redundant, just like remaining explicit register syncs. Signed-off-by: Jan Kiszka <jan.kiszka@siemens.com> Signed-off-by: Marcelo Tosatti <mtosatti@redhat.com>
This commit is contained in:
parent
b0b1d69079
commit
ea375f9ab8
17
exec.c
17
exec.c
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@ -512,21 +512,6 @@ void cpu_exec_init_all(unsigned long tb_size)
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#if defined(CPU_SAVE_VERSION) && !defined(CONFIG_USER_ONLY)
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static void cpu_common_pre_save(void *opaque)
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{
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CPUState *env = opaque;
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cpu_synchronize_state(env);
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}
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static int cpu_common_pre_load(void *opaque)
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{
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CPUState *env = opaque;
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cpu_synchronize_state(env);
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return 0;
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}
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static int cpu_common_post_load(void *opaque, int version_id)
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{
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CPUState *env = opaque;
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@ -544,8 +529,6 @@ static const VMStateDescription vmstate_cpu_common = {
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.version_id = 1,
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.minimum_version_id = 1,
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.minimum_version_id_old = 1,
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.pre_save = cpu_common_pre_save,
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.pre_load = cpu_common_pre_load,
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.post_load = cpu_common_post_load,
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.fields = (VMStateField []) {
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VMSTATE_UINT32(halted, CPUState),
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@ -938,8 +938,6 @@ static void apic_reset(void *opaque)
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APICState *s = opaque;
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int bsp;
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cpu_synchronize_state(s->cpu_env);
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bsp = cpu_is_bsp(s->cpu_env);
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s->apicbase = 0xfee00000 |
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(bsp ? MSR_IA32_APICBASE_BSP : 0) | MSR_IA32_APICBASE_ENABLE;
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@ -167,9 +167,6 @@ static void ppc_core99_init (ram_addr_t ram_size,
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envs[i] = env;
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}
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/* Make sure all register sets take effect */
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cpu_synchronize_state(env);
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/* allocate RAM */
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ram_offset = qemu_ram_alloc(ram_size);
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cpu_register_physical_memory(0, ram_size, ram_offset);
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@ -165,9 +165,6 @@ static void ppc_heathrow_init (ram_addr_t ram_size,
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envs[i] = env;
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}
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/* Make sure all register sets take effect */
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cpu_synchronize_state(env);
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/* allocate RAM */
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if (ram_size > (2047 << 20)) {
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fprintf(stderr,
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@ -185,7 +185,6 @@ static void s390_init(ram_addr_t ram_size,
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exit(1);
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}
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cpu_synchronize_state(env);
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env->psw.addr = KERN_IMAGE_START;
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env->psw.mask = 0x0000000180000000ULL;
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}
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19
kvm-all.c
19
kvm-all.c
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@ -156,10 +156,6 @@ static void kvm_reset_vcpu(void *opaque)
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CPUState *env = opaque;
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kvm_arch_reset_vcpu(env);
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if (kvm_arch_put_registers(env)) {
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fprintf(stderr, "Fatal: kvm vcpu reset failed\n");
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abort();
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}
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}
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int kvm_irqchip_in_kernel(void)
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@ -214,7 +210,6 @@ int kvm_init_vcpu(CPUState *env)
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if (ret == 0) {
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qemu_register_reset(kvm_reset_vcpu, env);
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kvm_arch_reset_vcpu(env);
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ret = kvm_arch_put_registers(env);
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}
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err:
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return ret;
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@ -753,6 +748,18 @@ void kvm_cpu_synchronize_state(CPUState *env)
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}
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}
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void kvm_cpu_synchronize_post_reset(CPUState *env)
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{
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kvm_arch_put_registers(env, KVM_PUT_RESET_STATE);
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env->kvm_vcpu_dirty = 0;
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}
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void kvm_cpu_synchronize_post_init(CPUState *env)
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{
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kvm_arch_put_registers(env, KVM_PUT_FULL_STATE);
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env->kvm_vcpu_dirty = 0;
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}
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int kvm_cpu_exec(CPUState *env)
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{
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struct kvm_run *run = env->kvm_run;
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@ -770,7 +777,7 @@ int kvm_cpu_exec(CPUState *env)
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#endif
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if (env->kvm_vcpu_dirty) {
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kvm_arch_put_registers(env);
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kvm_arch_put_registers(env, KVM_PUT_RUNTIME_STATE);
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env->kvm_vcpu_dirty = 0;
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}
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25
kvm.h
25
kvm.h
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@ -82,7 +82,14 @@ int kvm_arch_pre_run(CPUState *env, struct kvm_run *run);
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int kvm_arch_get_registers(CPUState *env);
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int kvm_arch_put_registers(CPUState *env);
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/* state subset only touched by the VCPU itself during runtime */
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#define KVM_PUT_RUNTIME_STATE 1
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/* state subset modified during VCPU reset */
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#define KVM_PUT_RESET_STATE 2
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/* full state set, modified during initialization or on vmload */
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#define KVM_PUT_FULL_STATE 3
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int kvm_arch_put_registers(CPUState *env, int level);
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int kvm_arch_init(KVMState *s, int smp_cpus);
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@ -126,6 +133,8 @@ int kvm_check_extension(KVMState *s, unsigned int extension);
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uint32_t kvm_arch_get_supported_cpuid(CPUState *env, uint32_t function,
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int reg);
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void kvm_cpu_synchronize_state(CPUState *env);
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void kvm_cpu_synchronize_post_reset(CPUState *env);
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void kvm_cpu_synchronize_post_init(CPUState *env);
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/* generic hooks - to be moved/refactored once there are more users */
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@ -136,4 +145,18 @@ static inline void cpu_synchronize_state(CPUState *env)
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}
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}
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static inline void cpu_synchronize_post_reset(CPUState *env)
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{
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if (kvm_enabled()) {
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kvm_cpu_synchronize_post_reset(env);
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}
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}
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static inline void cpu_synchronize_post_init(CPUState *env)
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{
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if (kvm_enabled()) {
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kvm_cpu_synchronize_post_init(env);
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}
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}
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#endif
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4
savevm.c
4
savevm.c
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@ -1345,6 +1345,8 @@ int qemu_savevm_state_complete(Monitor *mon, QEMUFile *f)
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{
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SaveStateEntry *se;
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cpu_synchronize_all_states();
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QTAILQ_FOREACH(se, &savevm_handlers, entry) {
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if (se->save_live_state == NULL)
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continue;
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@ -1545,6 +1547,8 @@ int qemu_loadvm_state(QEMUFile *f)
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}
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}
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cpu_synchronize_all_post_init();
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ret = 0;
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out:
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4
sysemu.h
4
sysemu.h
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@ -58,6 +58,10 @@ int load_vmstate(Monitor *mon, const char *name);
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void do_delvm(Monitor *mon, const QDict *qdict);
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void do_info_snapshots(Monitor *mon);
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void cpu_synchronize_all_states(void);
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void cpu_synchronize_all_post_reset(void);
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void cpu_synchronize_all_post_init(void);
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void qemu_announce_self(void);
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void main_loop_wait(int timeout);
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@ -883,7 +883,7 @@ static int kvm_guest_debug_workarounds(CPUState *env)
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return ret;
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}
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int kvm_arch_put_registers(CPUState *env)
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int kvm_arch_put_registers(CPUState *env, int level)
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{
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int ret;
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@ -321,8 +321,6 @@ static void cpu_pre_save(void *opaque)
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CPUState *env = opaque;
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int i;
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cpu_synchronize_state(env);
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/* FPU */
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env->fpus_vmstate = (env->fpus & ~0x3800) | (env->fpstt & 0x7) << 11;
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env->fptag_vmstate = 0;
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#endif
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}
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static int cpu_pre_load(void *opaque)
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{
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CPUState *env = opaque;
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cpu_synchronize_state(env);
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return 0;
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}
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static int cpu_post_load(void *opaque, int version_id)
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{
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CPUState *env = opaque;
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.minimum_version_id = 3,
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.minimum_version_id_old = 3,
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.pre_save = cpu_pre_save,
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.pre_load = cpu_pre_load,
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.post_load = cpu_post_load,
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.fields = (VMStateField []) {
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VMSTATE_UINTTL_ARRAY(regs, CPUState, CPU_NB_REGS),
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@ -73,7 +73,7 @@ void kvm_arch_reset_vcpu(CPUState *env)
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{
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}
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int kvm_arch_put_registers(CPUState *env)
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int kvm_arch_put_registers(CPUState *env, int level)
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{
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struct kvm_regs regs;
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int ret;
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@ -7,8 +7,6 @@ void cpu_save(QEMUFile *f, void *opaque)
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CPUState *env = (CPUState *)opaque;
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unsigned int i, j;
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cpu_synchronize_state(env);
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for (i = 0; i < 32; i++)
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qemu_put_betls(f, &env->gpr[i]);
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#if !defined(TARGET_PPC64)
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CPUState *env = (CPUState *)opaque;
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unsigned int i, j;
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cpu_synchronize_state(env);
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for (i = 0; i < 32; i++)
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qemu_get_betls(f, &env->gpr[i]);
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#if !defined(TARGET_PPC64)
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@ -91,7 +91,7 @@ void kvm_arch_reset_vcpu(CPUState *env)
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/* FIXME: add code to reset vcpu. */
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}
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int kvm_arch_put_registers(CPUState *env)
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int kvm_arch_put_registers(CPUState *env, int level)
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{
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struct kvm_regs regs;
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int ret;
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cpu_synchronize_state(env);
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r = s390_virtio_hypercall(env);
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kvm_arch_put_registers(env);
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return r;
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}
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29
vl.c
29
vl.c
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@ -3002,6 +3002,33 @@ static void nographic_update(void *opaque)
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qemu_mod_timer(nographic_timer, interval + qemu_get_clock(rt_clock));
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}
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void cpu_synchronize_all_states(void)
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{
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CPUState *cpu;
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for (cpu = first_cpu; cpu; cpu = cpu->next_cpu) {
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cpu_synchronize_state(cpu);
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}
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}
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void cpu_synchronize_all_post_reset(void)
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{
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CPUState *cpu;
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for (cpu = first_cpu; cpu; cpu = cpu->next_cpu) {
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cpu_synchronize_post_reset(cpu);
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}
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}
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void cpu_synchronize_all_post_init(void)
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{
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CPUState *cpu;
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for (cpu = first_cpu; cpu; cpu = cpu->next_cpu) {
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cpu_synchronize_post_init(cpu);
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}
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}
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struct vm_change_state_entry {
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VMChangeStateHandler *cb;
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void *opaque;
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QTAILQ_FOREACH_SAFE(re, &reset_handlers, entry, nre) {
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re->func(re->opaque);
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}
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cpu_synchronize_all_post_reset();
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}
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void qemu_system_reset_request(void)
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machine->init(ram_size, boot_devices,
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kernel_filename, kernel_cmdline, initrd_filename, cpu_model);
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cpu_synchronize_all_post_init();
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#ifndef _WIN32
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/* must be after terminal init, SDL library changes signal handlers */
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