xref: /qemu/target/arm/kvm.c (revision 9e6f8d8a)
1fcf5ef2aSThomas Huth /*
2fcf5ef2aSThomas Huth  * ARM implementation of KVM hooks
3fcf5ef2aSThomas Huth  *
4fcf5ef2aSThomas Huth  * Copyright Christoffer Dall 2009-2010
5fcf5ef2aSThomas Huth  *
6fcf5ef2aSThomas Huth  * This work is licensed under the terms of the GNU GPL, version 2 or later.
7fcf5ef2aSThomas Huth  * See the COPYING file in the top-level directory.
8fcf5ef2aSThomas Huth  *
9fcf5ef2aSThomas Huth  */
10fcf5ef2aSThomas Huth 
11fcf5ef2aSThomas Huth #include "qemu/osdep.h"
12fcf5ef2aSThomas Huth #include <sys/ioctl.h>
13fcf5ef2aSThomas Huth 
14fcf5ef2aSThomas Huth #include <linux/kvm.h>
15fcf5ef2aSThomas Huth 
16fcf5ef2aSThomas Huth #include "qemu-common.h"
17fcf5ef2aSThomas Huth #include "qemu/timer.h"
18fcf5ef2aSThomas Huth #include "qemu/error-report.h"
19db725815SMarkus Armbruster #include "qemu/main-loop.h"
20dea101a1SAndrew Jones #include "qom/object.h"
21dea101a1SAndrew Jones #include "qapi/error.h"
22fcf5ef2aSThomas Huth #include "sysemu/sysemu.h"
23fcf5ef2aSThomas Huth #include "sysemu/kvm.h"
24a27382e2SEric Auger #include "sysemu/kvm_int.h"
25fcf5ef2aSThomas Huth #include "kvm_arm.h"
26fcf5ef2aSThomas Huth #include "cpu.h"
27b05c81d2SEric Auger #include "trace.h"
28fcf5ef2aSThomas Huth #include "internals.h"
29b05c81d2SEric Auger #include "hw/pci/pci.h"
30fcf5ef2aSThomas Huth #include "exec/memattrs.h"
31fcf5ef2aSThomas Huth #include "exec/address-spaces.h"
32fcf5ef2aSThomas Huth #include "hw/boards.h"
3364552b6bSMarkus Armbruster #include "hw/irq.h"
34fcf5ef2aSThomas Huth #include "qemu/log.h"
35fcf5ef2aSThomas Huth 
36fcf5ef2aSThomas Huth const KVMCapabilityInfo kvm_arch_required_capabilities[] = {
37fcf5ef2aSThomas Huth     KVM_CAP_LAST_INFO
38fcf5ef2aSThomas Huth };
39fcf5ef2aSThomas Huth 
40fcf5ef2aSThomas Huth static bool cap_has_mp_state;
41202ccb6bSDongjiu Geng static bool cap_has_inject_serror_esr;
42fcf5ef2aSThomas Huth 
43c4487d76SPeter Maydell static ARMHostCPUFeatures arm_host_cpu_features;
44c4487d76SPeter Maydell 
45fcf5ef2aSThomas Huth int kvm_arm_vcpu_init(CPUState *cs)
46fcf5ef2aSThomas Huth {
47fcf5ef2aSThomas Huth     ARMCPU *cpu = ARM_CPU(cs);
48fcf5ef2aSThomas Huth     struct kvm_vcpu_init init;
49fcf5ef2aSThomas Huth 
50fcf5ef2aSThomas Huth     init.target = cpu->kvm_target;
51fcf5ef2aSThomas Huth     memcpy(init.features, cpu->kvm_init_features, sizeof(init.features));
52fcf5ef2aSThomas Huth 
53fcf5ef2aSThomas Huth     return kvm_vcpu_ioctl(cs, KVM_ARM_VCPU_INIT, &init);
54fcf5ef2aSThomas Huth }
55fcf5ef2aSThomas Huth 
5614e99e0fSAndrew Jones int kvm_arm_vcpu_finalize(CPUState *cs, int feature)
5714e99e0fSAndrew Jones {
5814e99e0fSAndrew Jones     return kvm_vcpu_ioctl(cs, KVM_ARM_VCPU_FINALIZE, &feature);
5914e99e0fSAndrew Jones }
6014e99e0fSAndrew Jones 
61202ccb6bSDongjiu Geng void kvm_arm_init_serror_injection(CPUState *cs)
62202ccb6bSDongjiu Geng {
63202ccb6bSDongjiu Geng     cap_has_inject_serror_esr = kvm_check_extension(cs->kvm_state,
64202ccb6bSDongjiu Geng                                     KVM_CAP_ARM_INJECT_SERROR_ESR);
65202ccb6bSDongjiu Geng }
66202ccb6bSDongjiu Geng 
67fcf5ef2aSThomas Huth bool kvm_arm_create_scratch_host_vcpu(const uint32_t *cpus_to_try,
68fcf5ef2aSThomas Huth                                       int *fdarray,
69fcf5ef2aSThomas Huth                                       struct kvm_vcpu_init *init)
70fcf5ef2aSThomas Huth {
710cdb4020SAndrew Jones     int ret = 0, kvmfd = -1, vmfd = -1, cpufd = -1;
72fcf5ef2aSThomas Huth 
73fcf5ef2aSThomas Huth     kvmfd = qemu_open("/dev/kvm", O_RDWR);
74fcf5ef2aSThomas Huth     if (kvmfd < 0) {
75fcf5ef2aSThomas Huth         goto err;
76fcf5ef2aSThomas Huth     }
77fcf5ef2aSThomas Huth     vmfd = ioctl(kvmfd, KVM_CREATE_VM, 0);
78fcf5ef2aSThomas Huth     if (vmfd < 0) {
79fcf5ef2aSThomas Huth         goto err;
80fcf5ef2aSThomas Huth     }
81fcf5ef2aSThomas Huth     cpufd = ioctl(vmfd, KVM_CREATE_VCPU, 0);
82fcf5ef2aSThomas Huth     if (cpufd < 0) {
83fcf5ef2aSThomas Huth         goto err;
84fcf5ef2aSThomas Huth     }
85fcf5ef2aSThomas Huth 
86fcf5ef2aSThomas Huth     if (!init) {
87fcf5ef2aSThomas Huth         /* Caller doesn't want the VCPU to be initialized, so skip it */
88fcf5ef2aSThomas Huth         goto finish;
89fcf5ef2aSThomas Huth     }
90fcf5ef2aSThomas Huth 
910cdb4020SAndrew Jones     if (init->target == -1) {
920cdb4020SAndrew Jones         struct kvm_vcpu_init preferred;
930cdb4020SAndrew Jones 
940cdb4020SAndrew Jones         ret = ioctl(vmfd, KVM_ARM_PREFERRED_TARGET, &preferred);
950cdb4020SAndrew Jones         if (!ret) {
960cdb4020SAndrew Jones             init->target = preferred.target;
970cdb4020SAndrew Jones         }
980cdb4020SAndrew Jones     }
99fcf5ef2aSThomas Huth     if (ret >= 0) {
100fcf5ef2aSThomas Huth         ret = ioctl(cpufd, KVM_ARM_VCPU_INIT, init);
101fcf5ef2aSThomas Huth         if (ret < 0) {
102fcf5ef2aSThomas Huth             goto err;
103fcf5ef2aSThomas Huth         }
104fcf5ef2aSThomas Huth     } else if (cpus_to_try) {
105fcf5ef2aSThomas Huth         /* Old kernel which doesn't know about the
106fcf5ef2aSThomas Huth          * PREFERRED_TARGET ioctl: we know it will only support
107fcf5ef2aSThomas Huth          * creating one kind of guest CPU which is its preferred
108fcf5ef2aSThomas Huth          * CPU type.
109fcf5ef2aSThomas Huth          */
1100cdb4020SAndrew Jones         struct kvm_vcpu_init try;
1110cdb4020SAndrew Jones 
112fcf5ef2aSThomas Huth         while (*cpus_to_try != QEMU_KVM_ARM_TARGET_NONE) {
1130cdb4020SAndrew Jones             try.target = *cpus_to_try++;
1140cdb4020SAndrew Jones             memcpy(try.features, init->features, sizeof(init->features));
1150cdb4020SAndrew Jones             ret = ioctl(cpufd, KVM_ARM_VCPU_INIT, &try);
116fcf5ef2aSThomas Huth             if (ret >= 0) {
117fcf5ef2aSThomas Huth                 break;
118fcf5ef2aSThomas Huth             }
119fcf5ef2aSThomas Huth         }
120fcf5ef2aSThomas Huth         if (ret < 0) {
121fcf5ef2aSThomas Huth             goto err;
122fcf5ef2aSThomas Huth         }
1230cdb4020SAndrew Jones         init->target = try.target;
124fcf5ef2aSThomas Huth     } else {
125fcf5ef2aSThomas Huth         /* Treat a NULL cpus_to_try argument the same as an empty
126fcf5ef2aSThomas Huth          * list, which means we will fail the call since this must
127fcf5ef2aSThomas Huth          * be an old kernel which doesn't support PREFERRED_TARGET.
128fcf5ef2aSThomas Huth          */
129fcf5ef2aSThomas Huth         goto err;
130fcf5ef2aSThomas Huth     }
131fcf5ef2aSThomas Huth 
132fcf5ef2aSThomas Huth finish:
133fcf5ef2aSThomas Huth     fdarray[0] = kvmfd;
134fcf5ef2aSThomas Huth     fdarray[1] = vmfd;
135fcf5ef2aSThomas Huth     fdarray[2] = cpufd;
136fcf5ef2aSThomas Huth 
137fcf5ef2aSThomas Huth     return true;
138fcf5ef2aSThomas Huth 
139fcf5ef2aSThomas Huth err:
140fcf5ef2aSThomas Huth     if (cpufd >= 0) {
141fcf5ef2aSThomas Huth         close(cpufd);
142fcf5ef2aSThomas Huth     }
143fcf5ef2aSThomas Huth     if (vmfd >= 0) {
144fcf5ef2aSThomas Huth         close(vmfd);
145fcf5ef2aSThomas Huth     }
146fcf5ef2aSThomas Huth     if (kvmfd >= 0) {
147fcf5ef2aSThomas Huth         close(kvmfd);
148fcf5ef2aSThomas Huth     }
149fcf5ef2aSThomas Huth 
150fcf5ef2aSThomas Huth     return false;
151fcf5ef2aSThomas Huth }
152fcf5ef2aSThomas Huth 
153fcf5ef2aSThomas Huth void kvm_arm_destroy_scratch_host_vcpu(int *fdarray)
154fcf5ef2aSThomas Huth {
155fcf5ef2aSThomas Huth     int i;
156fcf5ef2aSThomas Huth 
157fcf5ef2aSThomas Huth     for (i = 2; i >= 0; i--) {
158fcf5ef2aSThomas Huth         close(fdarray[i]);
159fcf5ef2aSThomas Huth     }
160fcf5ef2aSThomas Huth }
161fcf5ef2aSThomas Huth 
162c4487d76SPeter Maydell void kvm_arm_set_cpu_features_from_host(ARMCPU *cpu)
163fcf5ef2aSThomas Huth {
164c4487d76SPeter Maydell     CPUARMState *env = &cpu->env;
165fcf5ef2aSThomas Huth 
166c4487d76SPeter Maydell     if (!arm_host_cpu_features.dtb_compatible) {
167c4487d76SPeter Maydell         if (!kvm_enabled() ||
168c4487d76SPeter Maydell             !kvm_arm_get_host_cpu_features(&arm_host_cpu_features)) {
169c4487d76SPeter Maydell             /* We can't report this error yet, so flag that we need to
170c4487d76SPeter Maydell              * in arm_cpu_realizefn().
171fcf5ef2aSThomas Huth              */
172c4487d76SPeter Maydell             cpu->kvm_target = QEMU_KVM_ARM_TARGET_NONE;
173c4487d76SPeter Maydell             cpu->host_cpu_probe_failed = true;
174c4487d76SPeter Maydell             return;
175fcf5ef2aSThomas Huth         }
176fcf5ef2aSThomas Huth     }
177fcf5ef2aSThomas Huth 
178c4487d76SPeter Maydell     cpu->kvm_target = arm_host_cpu_features.target;
179c4487d76SPeter Maydell     cpu->dtb_compatible = arm_host_cpu_features.dtb_compatible;
1804674097cSRichard Henderson     cpu->isar = arm_host_cpu_features.isar;
181c4487d76SPeter Maydell     env->features = arm_host_cpu_features.features;
182c4487d76SPeter Maydell }
183c4487d76SPeter Maydell 
184dea101a1SAndrew Jones static bool kvm_no_adjvtime_get(Object *obj, Error **errp)
185dea101a1SAndrew Jones {
186dea101a1SAndrew Jones     return !ARM_CPU(obj)->kvm_adjvtime;
187dea101a1SAndrew Jones }
188dea101a1SAndrew Jones 
189dea101a1SAndrew Jones static void kvm_no_adjvtime_set(Object *obj, bool value, Error **errp)
190dea101a1SAndrew Jones {
191dea101a1SAndrew Jones     ARM_CPU(obj)->kvm_adjvtime = !value;
192dea101a1SAndrew Jones }
193dea101a1SAndrew Jones 
194dea101a1SAndrew Jones /* KVM VCPU properties should be prefixed with "kvm-". */
195dea101a1SAndrew Jones void kvm_arm_add_vcpu_properties(Object *obj)
196dea101a1SAndrew Jones {
197*9e6f8d8aSfangying     ARMCPU *cpu = ARM_CPU(obj);
198*9e6f8d8aSfangying     CPUARMState *env = &cpu->env;
199dea101a1SAndrew Jones 
200*9e6f8d8aSfangying     if (arm_feature(env, ARM_FEATURE_GENERIC_TIMER)) {
201*9e6f8d8aSfangying         cpu->kvm_adjvtime = true;
202dea101a1SAndrew Jones         object_property_add_bool(obj, "kvm-no-adjvtime", kvm_no_adjvtime_get,
203d2623129SMarkus Armbruster                                  kvm_no_adjvtime_set);
204dea101a1SAndrew Jones         object_property_set_description(obj, "kvm-no-adjvtime",
205dea101a1SAndrew Jones                                         "Set on to disable the adjustment of "
206dea101a1SAndrew Jones                                         "the virtual counter. VM stopped time "
2077eecec7dSMarkus Armbruster                                         "will be counted.");
208dea101a1SAndrew Jones     }
209*9e6f8d8aSfangying }
210dea101a1SAndrew Jones 
211ae502508SAndrew Jones bool kvm_arm_pmu_supported(CPUState *cpu)
212ae502508SAndrew Jones {
213d70c996dSPhilippe Mathieu-Daudé     return kvm_check_extension(cpu->kvm_state, KVM_CAP_ARM_PMU_V3);
214ae502508SAndrew Jones }
215ae502508SAndrew Jones 
216a27382e2SEric Auger int kvm_arm_get_max_vm_ipa_size(MachineState *ms)
217a27382e2SEric Auger {
218a27382e2SEric Auger     KVMState *s = KVM_STATE(ms->accelerator);
219a27382e2SEric Auger     int ret;
220a27382e2SEric Auger 
221a27382e2SEric Auger     ret = kvm_check_extension(s, KVM_CAP_ARM_VM_IPA_SIZE);
222a27382e2SEric Auger     return ret > 0 ? ret : 40;
223a27382e2SEric Auger }
224a27382e2SEric Auger 
225fcf5ef2aSThomas Huth int kvm_arch_init(MachineState *ms, KVMState *s)
226fcf5ef2aSThomas Huth {
227fff9f555SEric Auger     int ret = 0;
228fcf5ef2aSThomas Huth     /* For ARM interrupt delivery is always asynchronous,
229fcf5ef2aSThomas Huth      * whether we are using an in-kernel VGIC or not.
230fcf5ef2aSThomas Huth      */
231fcf5ef2aSThomas Huth     kvm_async_interrupts_allowed = true;
232fcf5ef2aSThomas Huth 
2335d721b78SAlexander Graf     /*
2345d721b78SAlexander Graf      * PSCI wakes up secondary cores, so we always need to
2355d721b78SAlexander Graf      * have vCPUs waiting in kernel space
2365d721b78SAlexander Graf      */
2375d721b78SAlexander Graf     kvm_halt_in_kernel_allowed = true;
2385d721b78SAlexander Graf 
239fcf5ef2aSThomas Huth     cap_has_mp_state = kvm_check_extension(s, KVM_CAP_MP_STATE);
240fcf5ef2aSThomas Huth 
241fff9f555SEric Auger     if (ms->smp.cpus > 256 &&
242fff9f555SEric Auger         !kvm_check_extension(s, KVM_CAP_ARM_IRQ_LINE_LAYOUT_2)) {
243fff9f555SEric Auger         error_report("Using more than 256 vcpus requires a host kernel "
244fff9f555SEric Auger                      "with KVM_CAP_ARM_IRQ_LINE_LAYOUT_2");
245fff9f555SEric Auger         ret = -EINVAL;
246fff9f555SEric Auger     }
247fff9f555SEric Auger 
248fff9f555SEric Auger     return ret;
249fcf5ef2aSThomas Huth }
250fcf5ef2aSThomas Huth 
251fcf5ef2aSThomas Huth unsigned long kvm_arch_vcpu_id(CPUState *cpu)
252fcf5ef2aSThomas Huth {
253fcf5ef2aSThomas Huth     return cpu->cpu_index;
254fcf5ef2aSThomas Huth }
255fcf5ef2aSThomas Huth 
256fcf5ef2aSThomas Huth /* We track all the KVM devices which need their memory addresses
257fcf5ef2aSThomas Huth  * passing to the kernel in a list of these structures.
258fcf5ef2aSThomas Huth  * When board init is complete we run through the list and
259fcf5ef2aSThomas Huth  * tell the kernel the base addresses of the memory regions.
260fcf5ef2aSThomas Huth  * We use a MemoryListener to track mapping and unmapping of
261fcf5ef2aSThomas Huth  * the regions during board creation, so the board models don't
262fcf5ef2aSThomas Huth  * need to do anything special for the KVM case.
26319d1bd0bSEric Auger  *
26419d1bd0bSEric Auger  * Sometimes the address must be OR'ed with some other fields
26519d1bd0bSEric Auger  * (for example for KVM_VGIC_V3_ADDR_TYPE_REDIST_REGION).
26619d1bd0bSEric Auger  * @kda_addr_ormask aims at storing the value of those fields.
267fcf5ef2aSThomas Huth  */
268fcf5ef2aSThomas Huth typedef struct KVMDevice {
269fcf5ef2aSThomas Huth     struct kvm_arm_device_addr kda;
270fcf5ef2aSThomas Huth     struct kvm_device_attr kdattr;
27119d1bd0bSEric Auger     uint64_t kda_addr_ormask;
272fcf5ef2aSThomas Huth     MemoryRegion *mr;
273fcf5ef2aSThomas Huth     QSLIST_ENTRY(KVMDevice) entries;
274fcf5ef2aSThomas Huth     int dev_fd;
275fcf5ef2aSThomas Huth } KVMDevice;
276fcf5ef2aSThomas Huth 
277b58deb34SPaolo Bonzini static QSLIST_HEAD(, KVMDevice) kvm_devices_head;
278fcf5ef2aSThomas Huth 
279fcf5ef2aSThomas Huth static void kvm_arm_devlistener_add(MemoryListener *listener,
280fcf5ef2aSThomas Huth                                     MemoryRegionSection *section)
281fcf5ef2aSThomas Huth {
282fcf5ef2aSThomas Huth     KVMDevice *kd;
283fcf5ef2aSThomas Huth 
284fcf5ef2aSThomas Huth     QSLIST_FOREACH(kd, &kvm_devices_head, entries) {
285fcf5ef2aSThomas Huth         if (section->mr == kd->mr) {
286fcf5ef2aSThomas Huth             kd->kda.addr = section->offset_within_address_space;
287fcf5ef2aSThomas Huth         }
288fcf5ef2aSThomas Huth     }
289fcf5ef2aSThomas Huth }
290fcf5ef2aSThomas Huth 
291fcf5ef2aSThomas Huth static void kvm_arm_devlistener_del(MemoryListener *listener,
292fcf5ef2aSThomas Huth                                     MemoryRegionSection *section)
293fcf5ef2aSThomas Huth {
294fcf5ef2aSThomas Huth     KVMDevice *kd;
295fcf5ef2aSThomas Huth 
296fcf5ef2aSThomas Huth     QSLIST_FOREACH(kd, &kvm_devices_head, entries) {
297fcf5ef2aSThomas Huth         if (section->mr == kd->mr) {
298fcf5ef2aSThomas Huth             kd->kda.addr = -1;
299fcf5ef2aSThomas Huth         }
300fcf5ef2aSThomas Huth     }
301fcf5ef2aSThomas Huth }
302fcf5ef2aSThomas Huth 
303fcf5ef2aSThomas Huth static MemoryListener devlistener = {
304fcf5ef2aSThomas Huth     .region_add = kvm_arm_devlistener_add,
305fcf5ef2aSThomas Huth     .region_del = kvm_arm_devlistener_del,
306fcf5ef2aSThomas Huth };
307fcf5ef2aSThomas Huth 
308fcf5ef2aSThomas Huth static void kvm_arm_set_device_addr(KVMDevice *kd)
309fcf5ef2aSThomas Huth {
310fcf5ef2aSThomas Huth     struct kvm_device_attr *attr = &kd->kdattr;
311fcf5ef2aSThomas Huth     int ret;
312fcf5ef2aSThomas Huth 
313fcf5ef2aSThomas Huth     /* If the device control API is available and we have a device fd on the
314fcf5ef2aSThomas Huth      * KVMDevice struct, let's use the newer API
315fcf5ef2aSThomas Huth      */
316fcf5ef2aSThomas Huth     if (kd->dev_fd >= 0) {
317fcf5ef2aSThomas Huth         uint64_t addr = kd->kda.addr;
31819d1bd0bSEric Auger 
31919d1bd0bSEric Auger         addr |= kd->kda_addr_ormask;
320fcf5ef2aSThomas Huth         attr->addr = (uintptr_t)&addr;
321fcf5ef2aSThomas Huth         ret = kvm_device_ioctl(kd->dev_fd, KVM_SET_DEVICE_ATTR, attr);
322fcf5ef2aSThomas Huth     } else {
323fcf5ef2aSThomas Huth         ret = kvm_vm_ioctl(kvm_state, KVM_ARM_SET_DEVICE_ADDR, &kd->kda);
324fcf5ef2aSThomas Huth     }
325fcf5ef2aSThomas Huth 
326fcf5ef2aSThomas Huth     if (ret < 0) {
327fcf5ef2aSThomas Huth         fprintf(stderr, "Failed to set device address: %s\n",
328fcf5ef2aSThomas Huth                 strerror(-ret));
329fcf5ef2aSThomas Huth         abort();
330fcf5ef2aSThomas Huth     }
331fcf5ef2aSThomas Huth }
332fcf5ef2aSThomas Huth 
333fcf5ef2aSThomas Huth static void kvm_arm_machine_init_done(Notifier *notifier, void *data)
334fcf5ef2aSThomas Huth {
335fcf5ef2aSThomas Huth     KVMDevice *kd, *tkd;
336fcf5ef2aSThomas Huth 
337fcf5ef2aSThomas Huth     QSLIST_FOREACH_SAFE(kd, &kvm_devices_head, entries, tkd) {
338fcf5ef2aSThomas Huth         if (kd->kda.addr != -1) {
339fcf5ef2aSThomas Huth             kvm_arm_set_device_addr(kd);
340fcf5ef2aSThomas Huth         }
341fcf5ef2aSThomas Huth         memory_region_unref(kd->mr);
3425ff9aaabSZheng Xiang         QSLIST_REMOVE_HEAD(&kvm_devices_head, entries);
343fcf5ef2aSThomas Huth         g_free(kd);
344fcf5ef2aSThomas Huth     }
3450bbe4354SPeter Xu     memory_listener_unregister(&devlistener);
346fcf5ef2aSThomas Huth }
347fcf5ef2aSThomas Huth 
348fcf5ef2aSThomas Huth static Notifier notify = {
349fcf5ef2aSThomas Huth     .notify = kvm_arm_machine_init_done,
350fcf5ef2aSThomas Huth };
351fcf5ef2aSThomas Huth 
352fcf5ef2aSThomas Huth void kvm_arm_register_device(MemoryRegion *mr, uint64_t devid, uint64_t group,
35319d1bd0bSEric Auger                              uint64_t attr, int dev_fd, uint64_t addr_ormask)
354fcf5ef2aSThomas Huth {
355fcf5ef2aSThomas Huth     KVMDevice *kd;
356fcf5ef2aSThomas Huth 
357fcf5ef2aSThomas Huth     if (!kvm_irqchip_in_kernel()) {
358fcf5ef2aSThomas Huth         return;
359fcf5ef2aSThomas Huth     }
360fcf5ef2aSThomas Huth 
361fcf5ef2aSThomas Huth     if (QSLIST_EMPTY(&kvm_devices_head)) {
362fcf5ef2aSThomas Huth         memory_listener_register(&devlistener, &address_space_memory);
363fcf5ef2aSThomas Huth         qemu_add_machine_init_done_notifier(&notify);
364fcf5ef2aSThomas Huth     }
365fcf5ef2aSThomas Huth     kd = g_new0(KVMDevice, 1);
366fcf5ef2aSThomas Huth     kd->mr = mr;
367fcf5ef2aSThomas Huth     kd->kda.id = devid;
368fcf5ef2aSThomas Huth     kd->kda.addr = -1;
369fcf5ef2aSThomas Huth     kd->kdattr.flags = 0;
370fcf5ef2aSThomas Huth     kd->kdattr.group = group;
371fcf5ef2aSThomas Huth     kd->kdattr.attr = attr;
372fcf5ef2aSThomas Huth     kd->dev_fd = dev_fd;
37319d1bd0bSEric Auger     kd->kda_addr_ormask = addr_ormask;
374fcf5ef2aSThomas Huth     QSLIST_INSERT_HEAD(&kvm_devices_head, kd, entries);
375fcf5ef2aSThomas Huth     memory_region_ref(kd->mr);
376fcf5ef2aSThomas Huth }
377fcf5ef2aSThomas Huth 
378fcf5ef2aSThomas Huth static int compare_u64(const void *a, const void *b)
379fcf5ef2aSThomas Huth {
380fcf5ef2aSThomas Huth     if (*(uint64_t *)a > *(uint64_t *)b) {
381fcf5ef2aSThomas Huth         return 1;
382fcf5ef2aSThomas Huth     }
383fcf5ef2aSThomas Huth     if (*(uint64_t *)a < *(uint64_t *)b) {
384fcf5ef2aSThomas Huth         return -1;
385fcf5ef2aSThomas Huth     }
386fcf5ef2aSThomas Huth     return 0;
387fcf5ef2aSThomas Huth }
388fcf5ef2aSThomas Huth 
389e5ac4200SAndrew Jones /*
390e5ac4200SAndrew Jones  * cpreg_values are sorted in ascending order by KVM register ID
391e5ac4200SAndrew Jones  * (see kvm_arm_init_cpreg_list). This allows us to cheaply find
392e5ac4200SAndrew Jones  * the storage for a KVM register by ID with a binary search.
393e5ac4200SAndrew Jones  */
394e5ac4200SAndrew Jones static uint64_t *kvm_arm_get_cpreg_ptr(ARMCPU *cpu, uint64_t regidx)
395e5ac4200SAndrew Jones {
396e5ac4200SAndrew Jones     uint64_t *res;
397e5ac4200SAndrew Jones 
398e5ac4200SAndrew Jones     res = bsearch(&regidx, cpu->cpreg_indexes, cpu->cpreg_array_len,
399e5ac4200SAndrew Jones                   sizeof(uint64_t), compare_u64);
400e5ac4200SAndrew Jones     assert(res);
401e5ac4200SAndrew Jones 
402e5ac4200SAndrew Jones     return &cpu->cpreg_values[res - cpu->cpreg_indexes];
403e5ac4200SAndrew Jones }
404e5ac4200SAndrew Jones 
405c8a44709SDongjiu Geng /* Initialize the ARMCPU cpreg list according to the kernel's
406fcf5ef2aSThomas Huth  * definition of what CPU registers it knows about (and throw away
407fcf5ef2aSThomas Huth  * the previous TCG-created cpreg list).
408fcf5ef2aSThomas Huth  */
409fcf5ef2aSThomas Huth int kvm_arm_init_cpreg_list(ARMCPU *cpu)
410fcf5ef2aSThomas Huth {
411fcf5ef2aSThomas Huth     struct kvm_reg_list rl;
412fcf5ef2aSThomas Huth     struct kvm_reg_list *rlp;
413fcf5ef2aSThomas Huth     int i, ret, arraylen;
414fcf5ef2aSThomas Huth     CPUState *cs = CPU(cpu);
415fcf5ef2aSThomas Huth 
416fcf5ef2aSThomas Huth     rl.n = 0;
417fcf5ef2aSThomas Huth     ret = kvm_vcpu_ioctl(cs, KVM_GET_REG_LIST, &rl);
418fcf5ef2aSThomas Huth     if (ret != -E2BIG) {
419fcf5ef2aSThomas Huth         return ret;
420fcf5ef2aSThomas Huth     }
421fcf5ef2aSThomas Huth     rlp = g_malloc(sizeof(struct kvm_reg_list) + rl.n * sizeof(uint64_t));
422fcf5ef2aSThomas Huth     rlp->n = rl.n;
423fcf5ef2aSThomas Huth     ret = kvm_vcpu_ioctl(cs, KVM_GET_REG_LIST, rlp);
424fcf5ef2aSThomas Huth     if (ret) {
425fcf5ef2aSThomas Huth         goto out;
426fcf5ef2aSThomas Huth     }
427fcf5ef2aSThomas Huth     /* Sort the list we get back from the kernel, since cpreg_tuples
428fcf5ef2aSThomas Huth      * must be in strictly ascending order.
429fcf5ef2aSThomas Huth      */
430fcf5ef2aSThomas Huth     qsort(&rlp->reg, rlp->n, sizeof(rlp->reg[0]), compare_u64);
431fcf5ef2aSThomas Huth 
432fcf5ef2aSThomas Huth     for (i = 0, arraylen = 0; i < rlp->n; i++) {
433fcf5ef2aSThomas Huth         if (!kvm_arm_reg_syncs_via_cpreg_list(rlp->reg[i])) {
434fcf5ef2aSThomas Huth             continue;
435fcf5ef2aSThomas Huth         }
436fcf5ef2aSThomas Huth         switch (rlp->reg[i] & KVM_REG_SIZE_MASK) {
437fcf5ef2aSThomas Huth         case KVM_REG_SIZE_U32:
438fcf5ef2aSThomas Huth         case KVM_REG_SIZE_U64:
439fcf5ef2aSThomas Huth             break;
440fcf5ef2aSThomas Huth         default:
441fcf5ef2aSThomas Huth             fprintf(stderr, "Can't handle size of register in kernel list\n");
442fcf5ef2aSThomas Huth             ret = -EINVAL;
443fcf5ef2aSThomas Huth             goto out;
444fcf5ef2aSThomas Huth         }
445fcf5ef2aSThomas Huth 
446fcf5ef2aSThomas Huth         arraylen++;
447fcf5ef2aSThomas Huth     }
448fcf5ef2aSThomas Huth 
449fcf5ef2aSThomas Huth     cpu->cpreg_indexes = g_renew(uint64_t, cpu->cpreg_indexes, arraylen);
450fcf5ef2aSThomas Huth     cpu->cpreg_values = g_renew(uint64_t, cpu->cpreg_values, arraylen);
451fcf5ef2aSThomas Huth     cpu->cpreg_vmstate_indexes = g_renew(uint64_t, cpu->cpreg_vmstate_indexes,
452fcf5ef2aSThomas Huth                                          arraylen);
453fcf5ef2aSThomas Huth     cpu->cpreg_vmstate_values = g_renew(uint64_t, cpu->cpreg_vmstate_values,
454fcf5ef2aSThomas Huth                                         arraylen);
455fcf5ef2aSThomas Huth     cpu->cpreg_array_len = arraylen;
456fcf5ef2aSThomas Huth     cpu->cpreg_vmstate_array_len = arraylen;
457fcf5ef2aSThomas Huth 
458fcf5ef2aSThomas Huth     for (i = 0, arraylen = 0; i < rlp->n; i++) {
459fcf5ef2aSThomas Huth         uint64_t regidx = rlp->reg[i];
460fcf5ef2aSThomas Huth         if (!kvm_arm_reg_syncs_via_cpreg_list(regidx)) {
461fcf5ef2aSThomas Huth             continue;
462fcf5ef2aSThomas Huth         }
463fcf5ef2aSThomas Huth         cpu->cpreg_indexes[arraylen] = regidx;
464fcf5ef2aSThomas Huth         arraylen++;
465fcf5ef2aSThomas Huth     }
466fcf5ef2aSThomas Huth     assert(cpu->cpreg_array_len == arraylen);
467fcf5ef2aSThomas Huth 
468fcf5ef2aSThomas Huth     if (!write_kvmstate_to_list(cpu)) {
469fcf5ef2aSThomas Huth         /* Shouldn't happen unless kernel is inconsistent about
470fcf5ef2aSThomas Huth          * what registers exist.
471fcf5ef2aSThomas Huth          */
472fcf5ef2aSThomas Huth         fprintf(stderr, "Initial read of kernel register state failed\n");
473fcf5ef2aSThomas Huth         ret = -EINVAL;
474fcf5ef2aSThomas Huth         goto out;
475fcf5ef2aSThomas Huth     }
476fcf5ef2aSThomas Huth 
477fcf5ef2aSThomas Huth out:
478fcf5ef2aSThomas Huth     g_free(rlp);
479fcf5ef2aSThomas Huth     return ret;
480fcf5ef2aSThomas Huth }
481fcf5ef2aSThomas Huth 
482fcf5ef2aSThomas Huth bool write_kvmstate_to_list(ARMCPU *cpu)
483fcf5ef2aSThomas Huth {
484fcf5ef2aSThomas Huth     CPUState *cs = CPU(cpu);
485fcf5ef2aSThomas Huth     int i;
486fcf5ef2aSThomas Huth     bool ok = true;
487fcf5ef2aSThomas Huth 
488fcf5ef2aSThomas Huth     for (i = 0; i < cpu->cpreg_array_len; i++) {
489fcf5ef2aSThomas Huth         struct kvm_one_reg r;
490fcf5ef2aSThomas Huth         uint64_t regidx = cpu->cpreg_indexes[i];
491fcf5ef2aSThomas Huth         uint32_t v32;
492fcf5ef2aSThomas Huth         int ret;
493fcf5ef2aSThomas Huth 
494fcf5ef2aSThomas Huth         r.id = regidx;
495fcf5ef2aSThomas Huth 
496fcf5ef2aSThomas Huth         switch (regidx & KVM_REG_SIZE_MASK) {
497fcf5ef2aSThomas Huth         case KVM_REG_SIZE_U32:
498fcf5ef2aSThomas Huth             r.addr = (uintptr_t)&v32;
499fcf5ef2aSThomas Huth             ret = kvm_vcpu_ioctl(cs, KVM_GET_ONE_REG, &r);
500fcf5ef2aSThomas Huth             if (!ret) {
501fcf5ef2aSThomas Huth                 cpu->cpreg_values[i] = v32;
502fcf5ef2aSThomas Huth             }
503fcf5ef2aSThomas Huth             break;
504fcf5ef2aSThomas Huth         case KVM_REG_SIZE_U64:
505fcf5ef2aSThomas Huth             r.addr = (uintptr_t)(cpu->cpreg_values + i);
506fcf5ef2aSThomas Huth             ret = kvm_vcpu_ioctl(cs, KVM_GET_ONE_REG, &r);
507fcf5ef2aSThomas Huth             break;
508fcf5ef2aSThomas Huth         default:
509fcf5ef2aSThomas Huth             abort();
510fcf5ef2aSThomas Huth         }
511fcf5ef2aSThomas Huth         if (ret) {
512fcf5ef2aSThomas Huth             ok = false;
513fcf5ef2aSThomas Huth         }
514fcf5ef2aSThomas Huth     }
515fcf5ef2aSThomas Huth     return ok;
516fcf5ef2aSThomas Huth }
517fcf5ef2aSThomas Huth 
518fcf5ef2aSThomas Huth bool write_list_to_kvmstate(ARMCPU *cpu, int level)
519fcf5ef2aSThomas Huth {
520fcf5ef2aSThomas Huth     CPUState *cs = CPU(cpu);
521fcf5ef2aSThomas Huth     int i;
522fcf5ef2aSThomas Huth     bool ok = true;
523fcf5ef2aSThomas Huth 
524fcf5ef2aSThomas Huth     for (i = 0; i < cpu->cpreg_array_len; i++) {
525fcf5ef2aSThomas Huth         struct kvm_one_reg r;
526fcf5ef2aSThomas Huth         uint64_t regidx = cpu->cpreg_indexes[i];
527fcf5ef2aSThomas Huth         uint32_t v32;
528fcf5ef2aSThomas Huth         int ret;
529fcf5ef2aSThomas Huth 
530fcf5ef2aSThomas Huth         if (kvm_arm_cpreg_level(regidx) > level) {
531fcf5ef2aSThomas Huth             continue;
532fcf5ef2aSThomas Huth         }
533fcf5ef2aSThomas Huth 
534fcf5ef2aSThomas Huth         r.id = regidx;
535fcf5ef2aSThomas Huth         switch (regidx & KVM_REG_SIZE_MASK) {
536fcf5ef2aSThomas Huth         case KVM_REG_SIZE_U32:
537fcf5ef2aSThomas Huth             v32 = cpu->cpreg_values[i];
538fcf5ef2aSThomas Huth             r.addr = (uintptr_t)&v32;
539fcf5ef2aSThomas Huth             break;
540fcf5ef2aSThomas Huth         case KVM_REG_SIZE_U64:
541fcf5ef2aSThomas Huth             r.addr = (uintptr_t)(cpu->cpreg_values + i);
542fcf5ef2aSThomas Huth             break;
543fcf5ef2aSThomas Huth         default:
544fcf5ef2aSThomas Huth             abort();
545fcf5ef2aSThomas Huth         }
546fcf5ef2aSThomas Huth         ret = kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, &r);
547fcf5ef2aSThomas Huth         if (ret) {
548fcf5ef2aSThomas Huth             /* We might fail for "unknown register" and also for
549fcf5ef2aSThomas Huth              * "you tried to set a register which is constant with
550fcf5ef2aSThomas Huth              * a different value from what it actually contains".
551fcf5ef2aSThomas Huth              */
552fcf5ef2aSThomas Huth             ok = false;
553fcf5ef2aSThomas Huth         }
554fcf5ef2aSThomas Huth     }
555fcf5ef2aSThomas Huth     return ok;
556fcf5ef2aSThomas Huth }
557fcf5ef2aSThomas Huth 
558e5ac4200SAndrew Jones void kvm_arm_cpu_pre_save(ARMCPU *cpu)
559e5ac4200SAndrew Jones {
560e5ac4200SAndrew Jones     /* KVM virtual time adjustment */
561e5ac4200SAndrew Jones     if (cpu->kvm_vtime_dirty) {
562e5ac4200SAndrew Jones         *kvm_arm_get_cpreg_ptr(cpu, KVM_REG_ARM_TIMER_CNT) = cpu->kvm_vtime;
563e5ac4200SAndrew Jones     }
564e5ac4200SAndrew Jones }
565e5ac4200SAndrew Jones 
566e5ac4200SAndrew Jones void kvm_arm_cpu_post_load(ARMCPU *cpu)
567e5ac4200SAndrew Jones {
568e5ac4200SAndrew Jones     /* KVM virtual time adjustment */
569e5ac4200SAndrew Jones     if (cpu->kvm_adjvtime) {
570e5ac4200SAndrew Jones         cpu->kvm_vtime = *kvm_arm_get_cpreg_ptr(cpu, KVM_REG_ARM_TIMER_CNT);
571e5ac4200SAndrew Jones         cpu->kvm_vtime_dirty = true;
572e5ac4200SAndrew Jones     }
573e5ac4200SAndrew Jones }
574e5ac4200SAndrew Jones 
575fcf5ef2aSThomas Huth void kvm_arm_reset_vcpu(ARMCPU *cpu)
576fcf5ef2aSThomas Huth {
577fcf5ef2aSThomas Huth     int ret;
578fcf5ef2aSThomas Huth 
579fcf5ef2aSThomas Huth     /* Re-init VCPU so that all registers are set to
580fcf5ef2aSThomas Huth      * their respective reset values.
581fcf5ef2aSThomas Huth      */
582fcf5ef2aSThomas Huth     ret = kvm_arm_vcpu_init(CPU(cpu));
583fcf5ef2aSThomas Huth     if (ret < 0) {
584fcf5ef2aSThomas Huth         fprintf(stderr, "kvm_arm_vcpu_init failed: %s\n", strerror(-ret));
585fcf5ef2aSThomas Huth         abort();
586fcf5ef2aSThomas Huth     }
587fcf5ef2aSThomas Huth     if (!write_kvmstate_to_list(cpu)) {
588fcf5ef2aSThomas Huth         fprintf(stderr, "write_kvmstate_to_list failed\n");
589fcf5ef2aSThomas Huth         abort();
590fcf5ef2aSThomas Huth     }
591b698e4eeSPeter Maydell     /*
592b698e4eeSPeter Maydell      * Sync the reset values also into the CPUState. This is necessary
593b698e4eeSPeter Maydell      * because the next thing we do will be a kvm_arch_put_registers()
594b698e4eeSPeter Maydell      * which will update the list values from the CPUState before copying
595b698e4eeSPeter Maydell      * the list values back to KVM. It's OK to ignore failure returns here
596b698e4eeSPeter Maydell      * for the same reason we do so in kvm_arch_get_registers().
597b698e4eeSPeter Maydell      */
598b698e4eeSPeter Maydell     write_list_to_cpustate(cpu);
599fcf5ef2aSThomas Huth }
600fcf5ef2aSThomas Huth 
601fcf5ef2aSThomas Huth /*
602fcf5ef2aSThomas Huth  * Update KVM's MP_STATE based on what QEMU thinks it is
603fcf5ef2aSThomas Huth  */
604fcf5ef2aSThomas Huth int kvm_arm_sync_mpstate_to_kvm(ARMCPU *cpu)
605fcf5ef2aSThomas Huth {
606fcf5ef2aSThomas Huth     if (cap_has_mp_state) {
607fcf5ef2aSThomas Huth         struct kvm_mp_state mp_state = {
608062ba099SAlex Bennée             .mp_state = (cpu->power_state == PSCI_OFF) ?
609062ba099SAlex Bennée             KVM_MP_STATE_STOPPED : KVM_MP_STATE_RUNNABLE
610fcf5ef2aSThomas Huth         };
611fcf5ef2aSThomas Huth         int ret = kvm_vcpu_ioctl(CPU(cpu), KVM_SET_MP_STATE, &mp_state);
612fcf5ef2aSThomas Huth         if (ret) {
613fcf5ef2aSThomas Huth             fprintf(stderr, "%s: failed to set MP_STATE %d/%s\n",
614fcf5ef2aSThomas Huth                     __func__, ret, strerror(-ret));
615fcf5ef2aSThomas Huth             return -1;
616fcf5ef2aSThomas Huth         }
617fcf5ef2aSThomas Huth     }
618fcf5ef2aSThomas Huth 
619fcf5ef2aSThomas Huth     return 0;
620fcf5ef2aSThomas Huth }
621fcf5ef2aSThomas Huth 
622fcf5ef2aSThomas Huth /*
623fcf5ef2aSThomas Huth  * Sync the KVM MP_STATE into QEMU
624fcf5ef2aSThomas Huth  */
625fcf5ef2aSThomas Huth int kvm_arm_sync_mpstate_to_qemu(ARMCPU *cpu)
626fcf5ef2aSThomas Huth {
627fcf5ef2aSThomas Huth     if (cap_has_mp_state) {
628fcf5ef2aSThomas Huth         struct kvm_mp_state mp_state;
629fcf5ef2aSThomas Huth         int ret = kvm_vcpu_ioctl(CPU(cpu), KVM_GET_MP_STATE, &mp_state);
630fcf5ef2aSThomas Huth         if (ret) {
631fcf5ef2aSThomas Huth             fprintf(stderr, "%s: failed to get MP_STATE %d/%s\n",
632fcf5ef2aSThomas Huth                     __func__, ret, strerror(-ret));
633fcf5ef2aSThomas Huth             abort();
634fcf5ef2aSThomas Huth         }
635062ba099SAlex Bennée         cpu->power_state = (mp_state.mp_state == KVM_MP_STATE_STOPPED) ?
636062ba099SAlex Bennée             PSCI_OFF : PSCI_ON;
637fcf5ef2aSThomas Huth     }
638fcf5ef2aSThomas Huth 
639fcf5ef2aSThomas Huth     return 0;
640fcf5ef2aSThomas Huth }
641fcf5ef2aSThomas Huth 
642e5ac4200SAndrew Jones void kvm_arm_get_virtual_time(CPUState *cs)
643e5ac4200SAndrew Jones {
644e5ac4200SAndrew Jones     ARMCPU *cpu = ARM_CPU(cs);
645e5ac4200SAndrew Jones     struct kvm_one_reg reg = {
646e5ac4200SAndrew Jones         .id = KVM_REG_ARM_TIMER_CNT,
647e5ac4200SAndrew Jones         .addr = (uintptr_t)&cpu->kvm_vtime,
648e5ac4200SAndrew Jones     };
649e5ac4200SAndrew Jones     int ret;
650e5ac4200SAndrew Jones 
651e5ac4200SAndrew Jones     if (cpu->kvm_vtime_dirty) {
652e5ac4200SAndrew Jones         return;
653e5ac4200SAndrew Jones     }
654e5ac4200SAndrew Jones 
655e5ac4200SAndrew Jones     ret = kvm_vcpu_ioctl(cs, KVM_GET_ONE_REG, &reg);
656e5ac4200SAndrew Jones     if (ret) {
657e5ac4200SAndrew Jones         error_report("Failed to get KVM_REG_ARM_TIMER_CNT");
658e5ac4200SAndrew Jones         abort();
659e5ac4200SAndrew Jones     }
660e5ac4200SAndrew Jones 
661e5ac4200SAndrew Jones     cpu->kvm_vtime_dirty = true;
662e5ac4200SAndrew Jones }
663e5ac4200SAndrew Jones 
664e5ac4200SAndrew Jones void kvm_arm_put_virtual_time(CPUState *cs)
665e5ac4200SAndrew Jones {
666e5ac4200SAndrew Jones     ARMCPU *cpu = ARM_CPU(cs);
667e5ac4200SAndrew Jones     struct kvm_one_reg reg = {
668e5ac4200SAndrew Jones         .id = KVM_REG_ARM_TIMER_CNT,
669e5ac4200SAndrew Jones         .addr = (uintptr_t)&cpu->kvm_vtime,
670e5ac4200SAndrew Jones     };
671e5ac4200SAndrew Jones     int ret;
672e5ac4200SAndrew Jones 
673e5ac4200SAndrew Jones     if (!cpu->kvm_vtime_dirty) {
674e5ac4200SAndrew Jones         return;
675e5ac4200SAndrew Jones     }
676e5ac4200SAndrew Jones 
677e5ac4200SAndrew Jones     ret = kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, &reg);
678e5ac4200SAndrew Jones     if (ret) {
679e5ac4200SAndrew Jones         error_report("Failed to set KVM_REG_ARM_TIMER_CNT");
680e5ac4200SAndrew Jones         abort();
681e5ac4200SAndrew Jones     }
682e5ac4200SAndrew Jones 
683e5ac4200SAndrew Jones     cpu->kvm_vtime_dirty = false;
684e5ac4200SAndrew Jones }
685e5ac4200SAndrew Jones 
686202ccb6bSDongjiu Geng int kvm_put_vcpu_events(ARMCPU *cpu)
687202ccb6bSDongjiu Geng {
688202ccb6bSDongjiu Geng     CPUARMState *env = &cpu->env;
689202ccb6bSDongjiu Geng     struct kvm_vcpu_events events;
690202ccb6bSDongjiu Geng     int ret;
691202ccb6bSDongjiu Geng 
692202ccb6bSDongjiu Geng     if (!kvm_has_vcpu_events()) {
693202ccb6bSDongjiu Geng         return 0;
694202ccb6bSDongjiu Geng     }
695202ccb6bSDongjiu Geng 
696202ccb6bSDongjiu Geng     memset(&events, 0, sizeof(events));
697202ccb6bSDongjiu Geng     events.exception.serror_pending = env->serror.pending;
698202ccb6bSDongjiu Geng 
699202ccb6bSDongjiu Geng     /* Inject SError to guest with specified syndrome if host kernel
700202ccb6bSDongjiu Geng      * supports it, otherwise inject SError without syndrome.
701202ccb6bSDongjiu Geng      */
702202ccb6bSDongjiu Geng     if (cap_has_inject_serror_esr) {
703202ccb6bSDongjiu Geng         events.exception.serror_has_esr = env->serror.has_esr;
704202ccb6bSDongjiu Geng         events.exception.serror_esr = env->serror.esr;
705202ccb6bSDongjiu Geng     }
706202ccb6bSDongjiu Geng 
707202ccb6bSDongjiu Geng     ret = kvm_vcpu_ioctl(CPU(cpu), KVM_SET_VCPU_EVENTS, &events);
708202ccb6bSDongjiu Geng     if (ret) {
709202ccb6bSDongjiu Geng         error_report("failed to put vcpu events");
710202ccb6bSDongjiu Geng     }
711202ccb6bSDongjiu Geng 
712202ccb6bSDongjiu Geng     return ret;
713202ccb6bSDongjiu Geng }
714202ccb6bSDongjiu Geng 
715202ccb6bSDongjiu Geng int kvm_get_vcpu_events(ARMCPU *cpu)
716202ccb6bSDongjiu Geng {
717202ccb6bSDongjiu Geng     CPUARMState *env = &cpu->env;
718202ccb6bSDongjiu Geng     struct kvm_vcpu_events events;
719202ccb6bSDongjiu Geng     int ret;
720202ccb6bSDongjiu Geng 
721202ccb6bSDongjiu Geng     if (!kvm_has_vcpu_events()) {
722202ccb6bSDongjiu Geng         return 0;
723202ccb6bSDongjiu Geng     }
724202ccb6bSDongjiu Geng 
725202ccb6bSDongjiu Geng     memset(&events, 0, sizeof(events));
726202ccb6bSDongjiu Geng     ret = kvm_vcpu_ioctl(CPU(cpu), KVM_GET_VCPU_EVENTS, &events);
727202ccb6bSDongjiu Geng     if (ret) {
728202ccb6bSDongjiu Geng         error_report("failed to get vcpu events");
729202ccb6bSDongjiu Geng         return ret;
730202ccb6bSDongjiu Geng     }
731202ccb6bSDongjiu Geng 
732202ccb6bSDongjiu Geng     env->serror.pending = events.exception.serror_pending;
733202ccb6bSDongjiu Geng     env->serror.has_esr = events.exception.serror_has_esr;
734202ccb6bSDongjiu Geng     env->serror.esr = events.exception.serror_esr;
735202ccb6bSDongjiu Geng 
736202ccb6bSDongjiu Geng     return 0;
737202ccb6bSDongjiu Geng }
738202ccb6bSDongjiu Geng 
739fcf5ef2aSThomas Huth void kvm_arch_pre_run(CPUState *cs, struct kvm_run *run)
740fcf5ef2aSThomas Huth {
741fcf5ef2aSThomas Huth }
742fcf5ef2aSThomas Huth 
743fcf5ef2aSThomas Huth MemTxAttrs kvm_arch_post_run(CPUState *cs, struct kvm_run *run)
744fcf5ef2aSThomas Huth {
7455d721b78SAlexander Graf     ARMCPU *cpu;
7465d721b78SAlexander Graf     uint32_t switched_level;
7475d721b78SAlexander Graf 
7485d721b78SAlexander Graf     if (kvm_irqchip_in_kernel()) {
7495d721b78SAlexander Graf         /*
7505d721b78SAlexander Graf          * We only need to sync timer states with user-space interrupt
7515d721b78SAlexander Graf          * controllers, so return early and save cycles if we don't.
7525d721b78SAlexander Graf          */
7535d721b78SAlexander Graf         return MEMTXATTRS_UNSPECIFIED;
7545d721b78SAlexander Graf     }
7555d721b78SAlexander Graf 
7565d721b78SAlexander Graf     cpu = ARM_CPU(cs);
7575d721b78SAlexander Graf 
7585d721b78SAlexander Graf     /* Synchronize our shadowed in-kernel device irq lines with the kvm ones */
7595d721b78SAlexander Graf     if (run->s.regs.device_irq_level != cpu->device_irq_level) {
7605d721b78SAlexander Graf         switched_level = cpu->device_irq_level ^ run->s.regs.device_irq_level;
7615d721b78SAlexander Graf 
7625d721b78SAlexander Graf         qemu_mutex_lock_iothread();
7635d721b78SAlexander Graf 
7645d721b78SAlexander Graf         if (switched_level & KVM_ARM_DEV_EL1_VTIMER) {
7655d721b78SAlexander Graf             qemu_set_irq(cpu->gt_timer_outputs[GTIMER_VIRT],
7665d721b78SAlexander Graf                          !!(run->s.regs.device_irq_level &
7675d721b78SAlexander Graf                             KVM_ARM_DEV_EL1_VTIMER));
7685d721b78SAlexander Graf             switched_level &= ~KVM_ARM_DEV_EL1_VTIMER;
7695d721b78SAlexander Graf         }
7705d721b78SAlexander Graf 
7715d721b78SAlexander Graf         if (switched_level & KVM_ARM_DEV_EL1_PTIMER) {
7725d721b78SAlexander Graf             qemu_set_irq(cpu->gt_timer_outputs[GTIMER_PHYS],
7735d721b78SAlexander Graf                          !!(run->s.regs.device_irq_level &
7745d721b78SAlexander Graf                             KVM_ARM_DEV_EL1_PTIMER));
7755d721b78SAlexander Graf             switched_level &= ~KVM_ARM_DEV_EL1_PTIMER;
7765d721b78SAlexander Graf         }
7775d721b78SAlexander Graf 
778b1659527SAndrew Jones         if (switched_level & KVM_ARM_DEV_PMU) {
779b1659527SAndrew Jones             qemu_set_irq(cpu->pmu_interrupt,
780b1659527SAndrew Jones                          !!(run->s.regs.device_irq_level & KVM_ARM_DEV_PMU));
781b1659527SAndrew Jones             switched_level &= ~KVM_ARM_DEV_PMU;
782b1659527SAndrew Jones         }
7835d721b78SAlexander Graf 
7845d721b78SAlexander Graf         if (switched_level) {
7855d721b78SAlexander Graf             qemu_log_mask(LOG_UNIMP, "%s: unhandled in-kernel device IRQ %x\n",
7865d721b78SAlexander Graf                           __func__, switched_level);
7875d721b78SAlexander Graf         }
7885d721b78SAlexander Graf 
7895d721b78SAlexander Graf         /* We also mark unknown levels as processed to not waste cycles */
7905d721b78SAlexander Graf         cpu->device_irq_level = run->s.regs.device_irq_level;
7915d721b78SAlexander Graf         qemu_mutex_unlock_iothread();
7925d721b78SAlexander Graf     }
7935d721b78SAlexander Graf 
794fcf5ef2aSThomas Huth     return MEMTXATTRS_UNSPECIFIED;
795fcf5ef2aSThomas Huth }
796fcf5ef2aSThomas Huth 
797e5ac4200SAndrew Jones void kvm_arm_vm_state_change(void *opaque, int running, RunState state)
798e5ac4200SAndrew Jones {
799e5ac4200SAndrew Jones     CPUState *cs = opaque;
800e5ac4200SAndrew Jones     ARMCPU *cpu = ARM_CPU(cs);
801e5ac4200SAndrew Jones 
802e5ac4200SAndrew Jones     if (running) {
803e5ac4200SAndrew Jones         if (cpu->kvm_adjvtime) {
804e5ac4200SAndrew Jones             kvm_arm_put_virtual_time(cs);
805e5ac4200SAndrew Jones         }
806e5ac4200SAndrew Jones     } else {
807e5ac4200SAndrew Jones         if (cpu->kvm_adjvtime) {
808e5ac4200SAndrew Jones             kvm_arm_get_virtual_time(cs);
809e5ac4200SAndrew Jones         }
810e5ac4200SAndrew Jones     }
811e5ac4200SAndrew Jones }
812fcf5ef2aSThomas Huth 
813fcf5ef2aSThomas Huth int kvm_arch_handle_exit(CPUState *cs, struct kvm_run *run)
814fcf5ef2aSThomas Huth {
815fcf5ef2aSThomas Huth     int ret = 0;
816fcf5ef2aSThomas Huth 
817fcf5ef2aSThomas Huth     switch (run->exit_reason) {
818fcf5ef2aSThomas Huth     case KVM_EXIT_DEBUG:
819fcf5ef2aSThomas Huth         if (kvm_arm_handle_debug(cs, &run->debug.arch)) {
820fcf5ef2aSThomas Huth             ret = EXCP_DEBUG;
821fcf5ef2aSThomas Huth         } /* otherwise return to guest */
822fcf5ef2aSThomas Huth         break;
823fcf5ef2aSThomas Huth     default:
824fcf5ef2aSThomas Huth         qemu_log_mask(LOG_UNIMP, "%s: un-handled exit reason %d\n",
825fcf5ef2aSThomas Huth                       __func__, run->exit_reason);
826fcf5ef2aSThomas Huth         break;
827fcf5ef2aSThomas Huth     }
828fcf5ef2aSThomas Huth     return ret;
829fcf5ef2aSThomas Huth }
830fcf5ef2aSThomas Huth 
831fcf5ef2aSThomas Huth bool kvm_arch_stop_on_emulation_error(CPUState *cs)
832fcf5ef2aSThomas Huth {
833fcf5ef2aSThomas Huth     return true;
834fcf5ef2aSThomas Huth }
835fcf5ef2aSThomas Huth 
836fcf5ef2aSThomas Huth int kvm_arch_process_async_events(CPUState *cs)
837fcf5ef2aSThomas Huth {
838fcf5ef2aSThomas Huth     return 0;
839fcf5ef2aSThomas Huth }
840fcf5ef2aSThomas Huth 
841fcf5ef2aSThomas Huth /* The #ifdef protections are until 32bit headers are imported and can
842fcf5ef2aSThomas Huth  * be removed once both 32 and 64 bit reach feature parity.
843fcf5ef2aSThomas Huth  */
844fcf5ef2aSThomas Huth void kvm_arch_update_guest_debug(CPUState *cs, struct kvm_guest_debug *dbg)
845fcf5ef2aSThomas Huth {
846fcf5ef2aSThomas Huth #ifdef KVM_GUESTDBG_USE_SW_BP
847fcf5ef2aSThomas Huth     if (kvm_sw_breakpoints_active(cs)) {
848fcf5ef2aSThomas Huth         dbg->control |= KVM_GUESTDBG_ENABLE | KVM_GUESTDBG_USE_SW_BP;
849fcf5ef2aSThomas Huth     }
850fcf5ef2aSThomas Huth #endif
851fcf5ef2aSThomas Huth #ifdef KVM_GUESTDBG_USE_HW
852fcf5ef2aSThomas Huth     if (kvm_arm_hw_debug_active(cs)) {
853fcf5ef2aSThomas Huth         dbg->control |= KVM_GUESTDBG_ENABLE | KVM_GUESTDBG_USE_HW;
854fcf5ef2aSThomas Huth         kvm_arm_copy_hw_debug_data(&dbg->arch);
855fcf5ef2aSThomas Huth     }
856fcf5ef2aSThomas Huth #endif
857fcf5ef2aSThomas Huth }
858fcf5ef2aSThomas Huth 
859fcf5ef2aSThomas Huth void kvm_arch_init_irq_routing(KVMState *s)
860fcf5ef2aSThomas Huth {
861fcf5ef2aSThomas Huth }
862fcf5ef2aSThomas Huth 
8634376c40dSPaolo Bonzini int kvm_arch_irqchip_create(KVMState *s)
864fcf5ef2aSThomas Huth {
8654376c40dSPaolo Bonzini     if (kvm_kernel_irqchip_split()) {
866fcf5ef2aSThomas Huth         perror("-machine kernel_irqchip=split is not supported on ARM.");
867fcf5ef2aSThomas Huth         exit(1);
868fcf5ef2aSThomas Huth     }
869fcf5ef2aSThomas Huth 
870fcf5ef2aSThomas Huth     /* If we can create the VGIC using the newer device control API, we
871fcf5ef2aSThomas Huth      * let the device do this when it initializes itself, otherwise we
872fcf5ef2aSThomas Huth      * fall back to the old API */
873fcf5ef2aSThomas Huth     return kvm_check_extension(s, KVM_CAP_DEVICE_CTRL);
874fcf5ef2aSThomas Huth }
875fcf5ef2aSThomas Huth 
876fcf5ef2aSThomas Huth int kvm_arm_vgic_probe(void)
877fcf5ef2aSThomas Huth {
878d45efe47SEric Auger     int val = 0;
879d45efe47SEric Auger 
880fcf5ef2aSThomas Huth     if (kvm_create_device(kvm_state,
881fcf5ef2aSThomas Huth                           KVM_DEV_TYPE_ARM_VGIC_V3, true) == 0) {
882d45efe47SEric Auger         val |= KVM_ARM_VGIC_V3;
883fcf5ef2aSThomas Huth     }
884d45efe47SEric Auger     if (kvm_create_device(kvm_state,
885d45efe47SEric Auger                           KVM_DEV_TYPE_ARM_VGIC_V2, true) == 0) {
886d45efe47SEric Auger         val |= KVM_ARM_VGIC_V2;
887d45efe47SEric Auger     }
888d45efe47SEric Auger     return val;
889fcf5ef2aSThomas Huth }
890fcf5ef2aSThomas Huth 
891f6530926SEric Auger int kvm_arm_set_irq(int cpu, int irqtype, int irq, int level)
892f6530926SEric Auger {
893f6530926SEric Auger     int kvm_irq = (irqtype << KVM_ARM_IRQ_TYPE_SHIFT) | irq;
894f6530926SEric Auger     int cpu_idx1 = cpu % 256;
895f6530926SEric Auger     int cpu_idx2 = cpu / 256;
896f6530926SEric Auger 
897f6530926SEric Auger     kvm_irq |= (cpu_idx1 << KVM_ARM_IRQ_VCPU_SHIFT) |
898f6530926SEric Auger                (cpu_idx2 << KVM_ARM_IRQ_VCPU2_SHIFT);
899f6530926SEric Auger 
900f6530926SEric Auger     return kvm_set_irq(kvm_state, kvm_irq, !!level);
901f6530926SEric Auger }
902f6530926SEric Auger 
903fcf5ef2aSThomas Huth int kvm_arch_fixup_msi_route(struct kvm_irq_routing_entry *route,
904fcf5ef2aSThomas Huth                              uint64_t address, uint32_t data, PCIDevice *dev)
905fcf5ef2aSThomas Huth {
906b05c81d2SEric Auger     AddressSpace *as = pci_device_iommu_address_space(dev);
907b05c81d2SEric Auger     hwaddr xlat, len, doorbell_gpa;
908b05c81d2SEric Auger     MemoryRegionSection mrs;
909b05c81d2SEric Auger     MemoryRegion *mr;
910b05c81d2SEric Auger     int ret = 1;
911b05c81d2SEric Auger 
912b05c81d2SEric Auger     if (as == &address_space_memory) {
913fcf5ef2aSThomas Huth         return 0;
914fcf5ef2aSThomas Huth     }
915fcf5ef2aSThomas Huth 
916b05c81d2SEric Auger     /* MSI doorbell address is translated by an IOMMU */
917b05c81d2SEric Auger 
918b05c81d2SEric Auger     rcu_read_lock();
919bc6b1cecSPeter Maydell     mr = address_space_translate(as, address, &xlat, &len, true,
920bc6b1cecSPeter Maydell                                  MEMTXATTRS_UNSPECIFIED);
921b05c81d2SEric Auger     if (!mr) {
922b05c81d2SEric Auger         goto unlock;
923b05c81d2SEric Auger     }
924b05c81d2SEric Auger     mrs = memory_region_find(mr, xlat, 1);
925b05c81d2SEric Auger     if (!mrs.mr) {
926b05c81d2SEric Auger         goto unlock;
927b05c81d2SEric Auger     }
928b05c81d2SEric Auger 
929b05c81d2SEric Auger     doorbell_gpa = mrs.offset_within_address_space;
930b05c81d2SEric Auger     memory_region_unref(mrs.mr);
931b05c81d2SEric Auger 
932b05c81d2SEric Auger     route->u.msi.address_lo = doorbell_gpa;
933b05c81d2SEric Auger     route->u.msi.address_hi = doorbell_gpa >> 32;
934b05c81d2SEric Auger 
935b05c81d2SEric Auger     trace_kvm_arm_fixup_msi_route(address, doorbell_gpa);
936b05c81d2SEric Auger 
937b05c81d2SEric Auger     ret = 0;
938b05c81d2SEric Auger 
939b05c81d2SEric Auger unlock:
940b05c81d2SEric Auger     rcu_read_unlock();
941b05c81d2SEric Auger     return ret;
942b05c81d2SEric Auger }
943b05c81d2SEric Auger 
944fcf5ef2aSThomas Huth int kvm_arch_add_msi_route_post(struct kvm_irq_routing_entry *route,
945fcf5ef2aSThomas Huth                                 int vector, PCIDevice *dev)
946fcf5ef2aSThomas Huth {
947fcf5ef2aSThomas Huth     return 0;
948fcf5ef2aSThomas Huth }
949fcf5ef2aSThomas Huth 
950fcf5ef2aSThomas Huth int kvm_arch_release_virq_post(int virq)
951fcf5ef2aSThomas Huth {
952fcf5ef2aSThomas Huth     return 0;
953fcf5ef2aSThomas Huth }
954fcf5ef2aSThomas Huth 
955fcf5ef2aSThomas Huth int kvm_arch_msi_data_to_gsi(uint32_t data)
956fcf5ef2aSThomas Huth {
957fcf5ef2aSThomas Huth     return (data - 32) & 0xffff;
958fcf5ef2aSThomas Huth }
959