xref: /qemu/target/arm/kvm.c (revision bbb22d58)
1fcf5ef2aSThomas Huth /*
2fcf5ef2aSThomas Huth  * ARM implementation of KVM hooks
3fcf5ef2aSThomas Huth  *
4fcf5ef2aSThomas Huth  * Copyright Christoffer Dall 2009-2010
5de3c9601SRichard Henderson  * Copyright Mian-M. Hamayun 2013, Virtual Open Systems
6de3c9601SRichard Henderson  * Copyright Alex Bennée 2014, Linaro
7fcf5ef2aSThomas Huth  *
8fcf5ef2aSThomas Huth  * This work is licensed under the terms of the GNU GPL, version 2 or later.
9fcf5ef2aSThomas Huth  * See the COPYING file in the top-level directory.
10fcf5ef2aSThomas Huth  *
11fcf5ef2aSThomas Huth  */
12fcf5ef2aSThomas Huth 
13fcf5ef2aSThomas Huth #include "qemu/osdep.h"
14fcf5ef2aSThomas Huth #include <sys/ioctl.h>
15fcf5ef2aSThomas Huth 
16fcf5ef2aSThomas Huth #include <linux/kvm.h>
17fcf5ef2aSThomas Huth 
18fcf5ef2aSThomas Huth #include "qemu/timer.h"
19fcf5ef2aSThomas Huth #include "qemu/error-report.h"
20db725815SMarkus Armbruster #include "qemu/main-loop.h"
21dea101a1SAndrew Jones #include "qom/object.h"
22dea101a1SAndrew Jones #include "qapi/error.h"
23fcf5ef2aSThomas Huth #include "sysemu/sysemu.h"
24de3c9601SRichard Henderson #include "sysemu/runstate.h"
25fcf5ef2aSThomas Huth #include "sysemu/kvm.h"
26a27382e2SEric Auger #include "sysemu/kvm_int.h"
27fcf5ef2aSThomas Huth #include "kvm_arm.h"
28fcf5ef2aSThomas Huth #include "cpu.h"
29b05c81d2SEric Auger #include "trace.h"
30fcf5ef2aSThomas Huth #include "internals.h"
31b05c81d2SEric Auger #include "hw/pci/pci.h"
32fcf5ef2aSThomas Huth #include "exec/memattrs.h"
33fcf5ef2aSThomas Huth #include "exec/address-spaces.h"
34de3c9601SRichard Henderson #include "exec/gdbstub.h"
35fcf5ef2aSThomas Huth #include "hw/boards.h"
3664552b6bSMarkus Armbruster #include "hw/irq.h"
37c8f2eb5dSShameer Kolothum #include "qapi/visitor.h"
38fcf5ef2aSThomas Huth #include "qemu/log.h"
39de3c9601SRichard Henderson #include "hw/acpi/acpi.h"
40de3c9601SRichard Henderson #include "hw/acpi/ghes.h"
41fcf5ef2aSThomas Huth 
42fcf5ef2aSThomas Huth const KVMCapabilityInfo kvm_arch_required_capabilities[] = {
43fcf5ef2aSThomas Huth     KVM_CAP_LAST_INFO
44fcf5ef2aSThomas Huth };
45fcf5ef2aSThomas Huth 
46fcf5ef2aSThomas Huth static bool cap_has_mp_state;
47202ccb6bSDongjiu Geng static bool cap_has_inject_serror_esr;
48694bcaa8SBeata Michalska static bool cap_has_inject_ext_dabt;
49fcf5ef2aSThomas Huth 
50dc40d45eSRichard Henderson /**
51dc40d45eSRichard Henderson  * ARMHostCPUFeatures: information about the host CPU (identified
52dc40d45eSRichard Henderson  * by asking the host kernel)
53dc40d45eSRichard Henderson  */
54dc40d45eSRichard Henderson typedef struct ARMHostCPUFeatures {
55dc40d45eSRichard Henderson     ARMISARegisters isar;
56dc40d45eSRichard Henderson     uint64_t features;
57dc40d45eSRichard Henderson     uint32_t target;
58dc40d45eSRichard Henderson     const char *dtb_compatible;
59dc40d45eSRichard Henderson } ARMHostCPUFeatures;
60dc40d45eSRichard Henderson 
61c4487d76SPeter Maydell static ARMHostCPUFeatures arm_host_cpu_features;
62c4487d76SPeter Maydell 
635a8a6013SRichard Henderson /**
645a8a6013SRichard Henderson  * kvm_arm_vcpu_init:
65*bbb22d58SPhilippe Mathieu-Daudé  * @cpu: ARMCPU
665a8a6013SRichard Henderson  *
675a8a6013SRichard Henderson  * Initialize (or reinitialize) the VCPU by invoking the
685a8a6013SRichard Henderson  * KVM_ARM_VCPU_INIT ioctl with the CPU type and feature
695a8a6013SRichard Henderson  * bitmask specified in the CPUState.
705a8a6013SRichard Henderson  *
715a8a6013SRichard Henderson  * Returns: 0 if success else < 0 error code
725a8a6013SRichard Henderson  */
73*bbb22d58SPhilippe Mathieu-Daudé static int kvm_arm_vcpu_init(ARMCPU *cpu)
74fcf5ef2aSThomas Huth {
75fcf5ef2aSThomas Huth     struct kvm_vcpu_init init;
76fcf5ef2aSThomas Huth 
77fcf5ef2aSThomas Huth     init.target = cpu->kvm_target;
78fcf5ef2aSThomas Huth     memcpy(init.features, cpu->kvm_init_features, sizeof(init.features));
79fcf5ef2aSThomas Huth 
80*bbb22d58SPhilippe Mathieu-Daudé     return kvm_vcpu_ioctl(CPU(cpu), KVM_ARM_VCPU_INIT, &init);
81fcf5ef2aSThomas Huth }
82fcf5ef2aSThomas Huth 
83c223c67aSRichard Henderson /**
84c223c67aSRichard Henderson  * kvm_arm_vcpu_finalize:
85c223c67aSRichard Henderson  * @cs: CPUState
86c223c67aSRichard Henderson  * @feature: feature to finalize
87c223c67aSRichard Henderson  *
88c223c67aSRichard Henderson  * Finalizes the configuration of the specified VCPU feature by
89c223c67aSRichard Henderson  * invoking the KVM_ARM_VCPU_FINALIZE ioctl. Features requiring
90c223c67aSRichard Henderson  * this are documented in the "KVM_ARM_VCPU_FINALIZE" section of
91c223c67aSRichard Henderson  * KVM's API documentation.
92c223c67aSRichard Henderson  *
93c223c67aSRichard Henderson  * Returns: 0 if success else < 0 error code
94c223c67aSRichard Henderson  */
95c223c67aSRichard Henderson static int kvm_arm_vcpu_finalize(CPUState *cs, int feature)
9614e99e0fSAndrew Jones {
9714e99e0fSAndrew Jones     return kvm_vcpu_ioctl(cs, KVM_ARM_VCPU_FINALIZE, &feature);
9814e99e0fSAndrew Jones }
9914e99e0fSAndrew Jones 
100fcf5ef2aSThomas Huth bool kvm_arm_create_scratch_host_vcpu(const uint32_t *cpus_to_try,
101fcf5ef2aSThomas Huth                                       int *fdarray,
102fcf5ef2aSThomas Huth                                       struct kvm_vcpu_init *init)
103fcf5ef2aSThomas Huth {
1040cdb4020SAndrew Jones     int ret = 0, kvmfd = -1, vmfd = -1, cpufd = -1;
105d26f2f93SMarc Zyngier     int max_vm_pa_size;
106fcf5ef2aSThomas Huth 
107448058aaSDaniel P. Berrangé     kvmfd = qemu_open_old("/dev/kvm", O_RDWR);
108fcf5ef2aSThomas Huth     if (kvmfd < 0) {
109fcf5ef2aSThomas Huth         goto err;
110fcf5ef2aSThomas Huth     }
111d26f2f93SMarc Zyngier     max_vm_pa_size = ioctl(kvmfd, KVM_CHECK_EXTENSION, KVM_CAP_ARM_VM_IPA_SIZE);
112d26f2f93SMarc Zyngier     if (max_vm_pa_size < 0) {
113d26f2f93SMarc Zyngier         max_vm_pa_size = 0;
114d26f2f93SMarc Zyngier     }
115bbde13cdSPeter Maydell     do {
116d26f2f93SMarc Zyngier         vmfd = ioctl(kvmfd, KVM_CREATE_VM, max_vm_pa_size);
117bbde13cdSPeter Maydell     } while (vmfd == -1 && errno == EINTR);
118fcf5ef2aSThomas Huth     if (vmfd < 0) {
119fcf5ef2aSThomas Huth         goto err;
120fcf5ef2aSThomas Huth     }
121fcf5ef2aSThomas Huth     cpufd = ioctl(vmfd, KVM_CREATE_VCPU, 0);
122fcf5ef2aSThomas Huth     if (cpufd < 0) {
123fcf5ef2aSThomas Huth         goto err;
124fcf5ef2aSThomas Huth     }
125fcf5ef2aSThomas Huth 
126fcf5ef2aSThomas Huth     if (!init) {
127fcf5ef2aSThomas Huth         /* Caller doesn't want the VCPU to be initialized, so skip it */
128fcf5ef2aSThomas Huth         goto finish;
129fcf5ef2aSThomas Huth     }
130fcf5ef2aSThomas Huth 
1310cdb4020SAndrew Jones     if (init->target == -1) {
1320cdb4020SAndrew Jones         struct kvm_vcpu_init preferred;
1330cdb4020SAndrew Jones 
1340cdb4020SAndrew Jones         ret = ioctl(vmfd, KVM_ARM_PREFERRED_TARGET, &preferred);
1350cdb4020SAndrew Jones         if (!ret) {
1360cdb4020SAndrew Jones             init->target = preferred.target;
1370cdb4020SAndrew Jones         }
1380cdb4020SAndrew Jones     }
139fcf5ef2aSThomas Huth     if (ret >= 0) {
140fcf5ef2aSThomas Huth         ret = ioctl(cpufd, KVM_ARM_VCPU_INIT, init);
141fcf5ef2aSThomas Huth         if (ret < 0) {
142fcf5ef2aSThomas Huth             goto err;
143fcf5ef2aSThomas Huth         }
144fcf5ef2aSThomas Huth     } else if (cpus_to_try) {
145fcf5ef2aSThomas Huth         /* Old kernel which doesn't know about the
146fcf5ef2aSThomas Huth          * PREFERRED_TARGET ioctl: we know it will only support
147fcf5ef2aSThomas Huth          * creating one kind of guest CPU which is its preferred
148fcf5ef2aSThomas Huth          * CPU type.
149fcf5ef2aSThomas Huth          */
1500cdb4020SAndrew Jones         struct kvm_vcpu_init try;
1510cdb4020SAndrew Jones 
152fcf5ef2aSThomas Huth         while (*cpus_to_try != QEMU_KVM_ARM_TARGET_NONE) {
1530cdb4020SAndrew Jones             try.target = *cpus_to_try++;
1540cdb4020SAndrew Jones             memcpy(try.features, init->features, sizeof(init->features));
1550cdb4020SAndrew Jones             ret = ioctl(cpufd, KVM_ARM_VCPU_INIT, &try);
156fcf5ef2aSThomas Huth             if (ret >= 0) {
157fcf5ef2aSThomas Huth                 break;
158fcf5ef2aSThomas Huth             }
159fcf5ef2aSThomas Huth         }
160fcf5ef2aSThomas Huth         if (ret < 0) {
161fcf5ef2aSThomas Huth             goto err;
162fcf5ef2aSThomas Huth         }
1630cdb4020SAndrew Jones         init->target = try.target;
164fcf5ef2aSThomas Huth     } else {
165fcf5ef2aSThomas Huth         /* Treat a NULL cpus_to_try argument the same as an empty
166fcf5ef2aSThomas Huth          * list, which means we will fail the call since this must
167fcf5ef2aSThomas Huth          * be an old kernel which doesn't support PREFERRED_TARGET.
168fcf5ef2aSThomas Huth          */
169fcf5ef2aSThomas Huth         goto err;
170fcf5ef2aSThomas Huth     }
171fcf5ef2aSThomas Huth 
172fcf5ef2aSThomas Huth finish:
173fcf5ef2aSThomas Huth     fdarray[0] = kvmfd;
174fcf5ef2aSThomas Huth     fdarray[1] = vmfd;
175fcf5ef2aSThomas Huth     fdarray[2] = cpufd;
176fcf5ef2aSThomas Huth 
177fcf5ef2aSThomas Huth     return true;
178fcf5ef2aSThomas Huth 
179fcf5ef2aSThomas Huth err:
180fcf5ef2aSThomas Huth     if (cpufd >= 0) {
181fcf5ef2aSThomas Huth         close(cpufd);
182fcf5ef2aSThomas Huth     }
183fcf5ef2aSThomas Huth     if (vmfd >= 0) {
184fcf5ef2aSThomas Huth         close(vmfd);
185fcf5ef2aSThomas Huth     }
186fcf5ef2aSThomas Huth     if (kvmfd >= 0) {
187fcf5ef2aSThomas Huth         close(kvmfd);
188fcf5ef2aSThomas Huth     }
189fcf5ef2aSThomas Huth 
190fcf5ef2aSThomas Huth     return false;
191fcf5ef2aSThomas Huth }
192fcf5ef2aSThomas Huth 
193fcf5ef2aSThomas Huth void kvm_arm_destroy_scratch_host_vcpu(int *fdarray)
194fcf5ef2aSThomas Huth {
195fcf5ef2aSThomas Huth     int i;
196fcf5ef2aSThomas Huth 
197fcf5ef2aSThomas Huth     for (i = 2; i >= 0; i--) {
198fcf5ef2aSThomas Huth         close(fdarray[i]);
199fcf5ef2aSThomas Huth     }
200fcf5ef2aSThomas Huth }
201fcf5ef2aSThomas Huth 
202dc40d45eSRichard Henderson static int read_sys_reg32(int fd, uint32_t *pret, uint64_t id)
203dc40d45eSRichard Henderson {
204dc40d45eSRichard Henderson     uint64_t ret;
205dc40d45eSRichard Henderson     struct kvm_one_reg idreg = { .id = id, .addr = (uintptr_t)&ret };
206dc40d45eSRichard Henderson     int err;
207dc40d45eSRichard Henderson 
208dc40d45eSRichard Henderson     assert((id & KVM_REG_SIZE_MASK) == KVM_REG_SIZE_U64);
209dc40d45eSRichard Henderson     err = ioctl(fd, KVM_GET_ONE_REG, &idreg);
210dc40d45eSRichard Henderson     if (err < 0) {
211dc40d45eSRichard Henderson         return -1;
212dc40d45eSRichard Henderson     }
213dc40d45eSRichard Henderson     *pret = ret;
214dc40d45eSRichard Henderson     return 0;
215dc40d45eSRichard Henderson }
216dc40d45eSRichard Henderson 
217dc40d45eSRichard Henderson static int read_sys_reg64(int fd, uint64_t *pret, uint64_t id)
218dc40d45eSRichard Henderson {
219dc40d45eSRichard Henderson     struct kvm_one_reg idreg = { .id = id, .addr = (uintptr_t)pret };
220dc40d45eSRichard Henderson 
221dc40d45eSRichard Henderson     assert((id & KVM_REG_SIZE_MASK) == KVM_REG_SIZE_U64);
222dc40d45eSRichard Henderson     return ioctl(fd, KVM_GET_ONE_REG, &idreg);
223dc40d45eSRichard Henderson }
224dc40d45eSRichard Henderson 
225dc40d45eSRichard Henderson static bool kvm_arm_pauth_supported(void)
226dc40d45eSRichard Henderson {
227dc40d45eSRichard Henderson     return (kvm_check_extension(kvm_state, KVM_CAP_ARM_PTRAUTH_ADDRESS) &&
228dc40d45eSRichard Henderson             kvm_check_extension(kvm_state, KVM_CAP_ARM_PTRAUTH_GENERIC));
229dc40d45eSRichard Henderson }
230dc40d45eSRichard Henderson 
231dc40d45eSRichard Henderson static bool kvm_arm_get_host_cpu_features(ARMHostCPUFeatures *ahcf)
232dc40d45eSRichard Henderson {
233dc40d45eSRichard Henderson     /* Identify the feature bits corresponding to the host CPU, and
234dc40d45eSRichard Henderson      * fill out the ARMHostCPUClass fields accordingly. To do this
235dc40d45eSRichard Henderson      * we have to create a scratch VM, create a single CPU inside it,
236dc40d45eSRichard Henderson      * and then query that CPU for the relevant ID registers.
237dc40d45eSRichard Henderson      */
238dc40d45eSRichard Henderson     int fdarray[3];
239dc40d45eSRichard Henderson     bool sve_supported;
240dc40d45eSRichard Henderson     bool pmu_supported = false;
241dc40d45eSRichard Henderson     uint64_t features = 0;
242dc40d45eSRichard Henderson     int err;
243dc40d45eSRichard Henderson 
244dc40d45eSRichard Henderson     /* Old kernels may not know about the PREFERRED_TARGET ioctl: however
245dc40d45eSRichard Henderson      * we know these will only support creating one kind of guest CPU,
246dc40d45eSRichard Henderson      * which is its preferred CPU type. Fortunately these old kernels
247dc40d45eSRichard Henderson      * support only a very limited number of CPUs.
248dc40d45eSRichard Henderson      */
249dc40d45eSRichard Henderson     static const uint32_t cpus_to_try[] = {
250dc40d45eSRichard Henderson         KVM_ARM_TARGET_AEM_V8,
251dc40d45eSRichard Henderson         KVM_ARM_TARGET_FOUNDATION_V8,
252dc40d45eSRichard Henderson         KVM_ARM_TARGET_CORTEX_A57,
253dc40d45eSRichard Henderson         QEMU_KVM_ARM_TARGET_NONE
254dc40d45eSRichard Henderson     };
255dc40d45eSRichard Henderson     /*
256dc40d45eSRichard Henderson      * target = -1 informs kvm_arm_create_scratch_host_vcpu()
257dc40d45eSRichard Henderson      * to use the preferred target
258dc40d45eSRichard Henderson      */
259dc40d45eSRichard Henderson     struct kvm_vcpu_init init = { .target = -1, };
260dc40d45eSRichard Henderson 
261dc40d45eSRichard Henderson     /*
262dc40d45eSRichard Henderson      * Ask for SVE if supported, so that we can query ID_AA64ZFR0,
263dc40d45eSRichard Henderson      * which is otherwise RAZ.
264dc40d45eSRichard Henderson      */
265dc40d45eSRichard Henderson     sve_supported = kvm_arm_sve_supported();
266dc40d45eSRichard Henderson     if (sve_supported) {
267dc40d45eSRichard Henderson         init.features[0] |= 1 << KVM_ARM_VCPU_SVE;
268dc40d45eSRichard Henderson     }
269dc40d45eSRichard Henderson 
270dc40d45eSRichard Henderson     /*
271dc40d45eSRichard Henderson      * Ask for Pointer Authentication if supported, so that we get
272dc40d45eSRichard Henderson      * the unsanitized field values for AA64ISAR1_EL1.
273dc40d45eSRichard Henderson      */
274dc40d45eSRichard Henderson     if (kvm_arm_pauth_supported()) {
275dc40d45eSRichard Henderson         init.features[0] |= (1 << KVM_ARM_VCPU_PTRAUTH_ADDRESS |
276dc40d45eSRichard Henderson                              1 << KVM_ARM_VCPU_PTRAUTH_GENERIC);
277dc40d45eSRichard Henderson     }
278dc40d45eSRichard Henderson 
279dc40d45eSRichard Henderson     if (kvm_arm_pmu_supported()) {
280dc40d45eSRichard Henderson         init.features[0] |= 1 << KVM_ARM_VCPU_PMU_V3;
281dc40d45eSRichard Henderson         pmu_supported = true;
282dc40d45eSRichard Henderson     }
283dc40d45eSRichard Henderson 
284dc40d45eSRichard Henderson     if (!kvm_arm_create_scratch_host_vcpu(cpus_to_try, fdarray, &init)) {
285dc40d45eSRichard Henderson         return false;
286dc40d45eSRichard Henderson     }
287dc40d45eSRichard Henderson 
288dc40d45eSRichard Henderson     ahcf->target = init.target;
289dc40d45eSRichard Henderson     ahcf->dtb_compatible = "arm,arm-v8";
290dc40d45eSRichard Henderson 
291dc40d45eSRichard Henderson     err = read_sys_reg64(fdarray[2], &ahcf->isar.id_aa64pfr0,
292dc40d45eSRichard Henderson                          ARM64_SYS_REG(3, 0, 0, 4, 0));
293dc40d45eSRichard Henderson     if (unlikely(err < 0)) {
294dc40d45eSRichard Henderson         /*
295dc40d45eSRichard Henderson          * Before v4.15, the kernel only exposed a limited number of system
296dc40d45eSRichard Henderson          * registers, not including any of the interesting AArch64 ID regs.
297dc40d45eSRichard Henderson          * For the most part we could leave these fields as zero with minimal
298dc40d45eSRichard Henderson          * effect, since this does not affect the values seen by the guest.
299dc40d45eSRichard Henderson          *
300dc40d45eSRichard Henderson          * However, it could cause problems down the line for QEMU,
301dc40d45eSRichard Henderson          * so provide a minimal v8.0 default.
302dc40d45eSRichard Henderson          *
303dc40d45eSRichard Henderson          * ??? Could read MIDR and use knowledge from cpu64.c.
304dc40d45eSRichard Henderson          * ??? Could map a page of memory into our temp guest and
305dc40d45eSRichard Henderson          *     run the tiniest of hand-crafted kernels to extract
306dc40d45eSRichard Henderson          *     the values seen by the guest.
307dc40d45eSRichard Henderson          * ??? Either of these sounds like too much effort just
308dc40d45eSRichard Henderson          *     to work around running a modern host kernel.
309dc40d45eSRichard Henderson          */
310dc40d45eSRichard Henderson         ahcf->isar.id_aa64pfr0 = 0x00000011; /* EL1&0, AArch64 only */
311dc40d45eSRichard Henderson         err = 0;
312dc40d45eSRichard Henderson     } else {
313dc40d45eSRichard Henderson         err |= read_sys_reg64(fdarray[2], &ahcf->isar.id_aa64pfr1,
314dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 4, 1));
315dc40d45eSRichard Henderson         err |= read_sys_reg64(fdarray[2], &ahcf->isar.id_aa64smfr0,
316dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 4, 5));
317dc40d45eSRichard Henderson         err |= read_sys_reg64(fdarray[2], &ahcf->isar.id_aa64dfr0,
318dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 5, 0));
319dc40d45eSRichard Henderson         err |= read_sys_reg64(fdarray[2], &ahcf->isar.id_aa64dfr1,
320dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 5, 1));
321dc40d45eSRichard Henderson         err |= read_sys_reg64(fdarray[2], &ahcf->isar.id_aa64isar0,
322dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 6, 0));
323dc40d45eSRichard Henderson         err |= read_sys_reg64(fdarray[2], &ahcf->isar.id_aa64isar1,
324dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 6, 1));
325dc40d45eSRichard Henderson         err |= read_sys_reg64(fdarray[2], &ahcf->isar.id_aa64isar2,
326dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 6, 2));
327dc40d45eSRichard Henderson         err |= read_sys_reg64(fdarray[2], &ahcf->isar.id_aa64mmfr0,
328dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 7, 0));
329dc40d45eSRichard Henderson         err |= read_sys_reg64(fdarray[2], &ahcf->isar.id_aa64mmfr1,
330dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 7, 1));
331dc40d45eSRichard Henderson         err |= read_sys_reg64(fdarray[2], &ahcf->isar.id_aa64mmfr2,
332dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 7, 2));
333dc40d45eSRichard Henderson 
334dc40d45eSRichard Henderson         /*
335dc40d45eSRichard Henderson          * Note that if AArch32 support is not present in the host,
336dc40d45eSRichard Henderson          * the AArch32 sysregs are present to be read, but will
337dc40d45eSRichard Henderson          * return UNKNOWN values.  This is neither better nor worse
338dc40d45eSRichard Henderson          * than skipping the reads and leaving 0, as we must avoid
339dc40d45eSRichard Henderson          * considering the values in every case.
340dc40d45eSRichard Henderson          */
341dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_pfr0,
342dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 1, 0));
343dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_pfr1,
344dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 1, 1));
345dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_dfr0,
346dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 1, 2));
347dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_mmfr0,
348dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 1, 4));
349dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_mmfr1,
350dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 1, 5));
351dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_mmfr2,
352dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 1, 6));
353dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_mmfr3,
354dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 1, 7));
355dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_isar0,
356dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 2, 0));
357dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_isar1,
358dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 2, 1));
359dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_isar2,
360dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 2, 2));
361dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_isar3,
362dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 2, 3));
363dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_isar4,
364dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 2, 4));
365dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_isar5,
366dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 2, 5));
367dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_mmfr4,
368dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 2, 6));
369dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_isar6,
370dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 2, 7));
371dc40d45eSRichard Henderson 
372dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.mvfr0,
373dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 3, 0));
374dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.mvfr1,
375dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 3, 1));
376dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.mvfr2,
377dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 3, 2));
378dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_pfr2,
379dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 3, 4));
380dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_dfr1,
381dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 3, 5));
382dc40d45eSRichard Henderson         err |= read_sys_reg32(fdarray[2], &ahcf->isar.id_mmfr5,
383dc40d45eSRichard Henderson                               ARM64_SYS_REG(3, 0, 0, 3, 6));
384dc40d45eSRichard Henderson 
385dc40d45eSRichard Henderson         /*
386dc40d45eSRichard Henderson          * DBGDIDR is a bit complicated because the kernel doesn't
387dc40d45eSRichard Henderson          * provide an accessor for it in 64-bit mode, which is what this
388dc40d45eSRichard Henderson          * scratch VM is in, and there's no architected "64-bit sysreg
389dc40d45eSRichard Henderson          * which reads the same as the 32-bit register" the way there is
390dc40d45eSRichard Henderson          * for other ID registers. Instead we synthesize a value from the
391dc40d45eSRichard Henderson          * AArch64 ID_AA64DFR0, the same way the kernel code in
392dc40d45eSRichard Henderson          * arch/arm64/kvm/sys_regs.c:trap_dbgidr() does.
393dc40d45eSRichard Henderson          * We only do this if the CPU supports AArch32 at EL1.
394dc40d45eSRichard Henderson          */
395dc40d45eSRichard Henderson         if (FIELD_EX32(ahcf->isar.id_aa64pfr0, ID_AA64PFR0, EL1) >= 2) {
396dc40d45eSRichard Henderson             int wrps = FIELD_EX64(ahcf->isar.id_aa64dfr0, ID_AA64DFR0, WRPS);
397dc40d45eSRichard Henderson             int brps = FIELD_EX64(ahcf->isar.id_aa64dfr0, ID_AA64DFR0, BRPS);
398dc40d45eSRichard Henderson             int ctx_cmps =
399dc40d45eSRichard Henderson                 FIELD_EX64(ahcf->isar.id_aa64dfr0, ID_AA64DFR0, CTX_CMPS);
400dc40d45eSRichard Henderson             int version = 6; /* ARMv8 debug architecture */
401dc40d45eSRichard Henderson             bool has_el3 =
402dc40d45eSRichard Henderson                 !!FIELD_EX32(ahcf->isar.id_aa64pfr0, ID_AA64PFR0, EL3);
403dc40d45eSRichard Henderson             uint32_t dbgdidr = 0;
404dc40d45eSRichard Henderson 
405dc40d45eSRichard Henderson             dbgdidr = FIELD_DP32(dbgdidr, DBGDIDR, WRPS, wrps);
406dc40d45eSRichard Henderson             dbgdidr = FIELD_DP32(dbgdidr, DBGDIDR, BRPS, brps);
407dc40d45eSRichard Henderson             dbgdidr = FIELD_DP32(dbgdidr, DBGDIDR, CTX_CMPS, ctx_cmps);
408dc40d45eSRichard Henderson             dbgdidr = FIELD_DP32(dbgdidr, DBGDIDR, VERSION, version);
409dc40d45eSRichard Henderson             dbgdidr = FIELD_DP32(dbgdidr, DBGDIDR, NSUHD_IMP, has_el3);
410dc40d45eSRichard Henderson             dbgdidr = FIELD_DP32(dbgdidr, DBGDIDR, SE_IMP, has_el3);
411dc40d45eSRichard Henderson             dbgdidr |= (1 << 15); /* RES1 bit */
412dc40d45eSRichard Henderson             ahcf->isar.dbgdidr = dbgdidr;
413dc40d45eSRichard Henderson         }
414dc40d45eSRichard Henderson 
415dc40d45eSRichard Henderson         if (pmu_supported) {
416dc40d45eSRichard Henderson             /* PMCR_EL0 is only accessible if the vCPU has feature PMU_V3 */
417dc40d45eSRichard Henderson             err |= read_sys_reg64(fdarray[2], &ahcf->isar.reset_pmcr_el0,
418dc40d45eSRichard Henderson                                   ARM64_SYS_REG(3, 3, 9, 12, 0));
419dc40d45eSRichard Henderson         }
420dc40d45eSRichard Henderson 
421dc40d45eSRichard Henderson         if (sve_supported) {
422dc40d45eSRichard Henderson             /*
423dc40d45eSRichard Henderson              * There is a range of kernels between kernel commit 73433762fcae
424dc40d45eSRichard Henderson              * and f81cb2c3ad41 which have a bug where the kernel doesn't
425dc40d45eSRichard Henderson              * expose SYS_ID_AA64ZFR0_EL1 via the ONE_REG API unless the VM has
426dc40d45eSRichard Henderson              * enabled SVE support, which resulted in an error rather than RAZ.
427dc40d45eSRichard Henderson              * So only read the register if we set KVM_ARM_VCPU_SVE above.
428dc40d45eSRichard Henderson              */
429dc40d45eSRichard Henderson             err |= read_sys_reg64(fdarray[2], &ahcf->isar.id_aa64zfr0,
430dc40d45eSRichard Henderson                                   ARM64_SYS_REG(3, 0, 0, 4, 4));
431dc40d45eSRichard Henderson         }
432dc40d45eSRichard Henderson     }
433dc40d45eSRichard Henderson 
434dc40d45eSRichard Henderson     kvm_arm_destroy_scratch_host_vcpu(fdarray);
435dc40d45eSRichard Henderson 
436dc40d45eSRichard Henderson     if (err < 0) {
437dc40d45eSRichard Henderson         return false;
438dc40d45eSRichard Henderson     }
439dc40d45eSRichard Henderson 
440dc40d45eSRichard Henderson     /*
441dc40d45eSRichard Henderson      * We can assume any KVM supporting CPU is at least a v8
442dc40d45eSRichard Henderson      * with VFPv4+Neon; this in turn implies most of the other
443dc40d45eSRichard Henderson      * feature bits.
444dc40d45eSRichard Henderson      */
445dc40d45eSRichard Henderson     features |= 1ULL << ARM_FEATURE_V8;
446dc40d45eSRichard Henderson     features |= 1ULL << ARM_FEATURE_NEON;
447dc40d45eSRichard Henderson     features |= 1ULL << ARM_FEATURE_AARCH64;
448dc40d45eSRichard Henderson     features |= 1ULL << ARM_FEATURE_PMU;
449dc40d45eSRichard Henderson     features |= 1ULL << ARM_FEATURE_GENERIC_TIMER;
450dc40d45eSRichard Henderson 
451dc40d45eSRichard Henderson     ahcf->features = features;
452dc40d45eSRichard Henderson 
453dc40d45eSRichard Henderson     return true;
454dc40d45eSRichard Henderson }
455dc40d45eSRichard Henderson 
456c4487d76SPeter Maydell void kvm_arm_set_cpu_features_from_host(ARMCPU *cpu)
457fcf5ef2aSThomas Huth {
458c4487d76SPeter Maydell     CPUARMState *env = &cpu->env;
459fcf5ef2aSThomas Huth 
460c4487d76SPeter Maydell     if (!arm_host_cpu_features.dtb_compatible) {
461c4487d76SPeter Maydell         if (!kvm_enabled() ||
462c4487d76SPeter Maydell             !kvm_arm_get_host_cpu_features(&arm_host_cpu_features)) {
463c4487d76SPeter Maydell             /* We can't report this error yet, so flag that we need to
464c4487d76SPeter Maydell              * in arm_cpu_realizefn().
465fcf5ef2aSThomas Huth              */
466c4487d76SPeter Maydell             cpu->kvm_target = QEMU_KVM_ARM_TARGET_NONE;
467c4487d76SPeter Maydell             cpu->host_cpu_probe_failed = true;
468c4487d76SPeter Maydell             return;
469fcf5ef2aSThomas Huth         }
470fcf5ef2aSThomas Huth     }
471fcf5ef2aSThomas Huth 
472c4487d76SPeter Maydell     cpu->kvm_target = arm_host_cpu_features.target;
473c4487d76SPeter Maydell     cpu->dtb_compatible = arm_host_cpu_features.dtb_compatible;
4744674097cSRichard Henderson     cpu->isar = arm_host_cpu_features.isar;
475c4487d76SPeter Maydell     env->features = arm_host_cpu_features.features;
476c4487d76SPeter Maydell }
477c4487d76SPeter Maydell 
478dea101a1SAndrew Jones static bool kvm_no_adjvtime_get(Object *obj, Error **errp)
479dea101a1SAndrew Jones {
480dea101a1SAndrew Jones     return !ARM_CPU(obj)->kvm_adjvtime;
481dea101a1SAndrew Jones }
482dea101a1SAndrew Jones 
483dea101a1SAndrew Jones static void kvm_no_adjvtime_set(Object *obj, bool value, Error **errp)
484dea101a1SAndrew Jones {
485dea101a1SAndrew Jones     ARM_CPU(obj)->kvm_adjvtime = !value;
486dea101a1SAndrew Jones }
487dea101a1SAndrew Jones 
48868970d1eSAndrew Jones static bool kvm_steal_time_get(Object *obj, Error **errp)
48968970d1eSAndrew Jones {
49068970d1eSAndrew Jones     return ARM_CPU(obj)->kvm_steal_time != ON_OFF_AUTO_OFF;
49168970d1eSAndrew Jones }
49268970d1eSAndrew Jones 
49368970d1eSAndrew Jones static void kvm_steal_time_set(Object *obj, bool value, Error **errp)
49468970d1eSAndrew Jones {
49568970d1eSAndrew Jones     ARM_CPU(obj)->kvm_steal_time = value ? ON_OFF_AUTO_ON : ON_OFF_AUTO_OFF;
49668970d1eSAndrew Jones }
49768970d1eSAndrew Jones 
498dea101a1SAndrew Jones /* KVM VCPU properties should be prefixed with "kvm-". */
499cac675b5SPhilippe Mathieu-Daudé void kvm_arm_add_vcpu_properties(ARMCPU *cpu)
500dea101a1SAndrew Jones {
5019e6f8d8aSfangying     CPUARMState *env = &cpu->env;
502cac675b5SPhilippe Mathieu-Daudé     Object *obj = OBJECT(cpu);
503dea101a1SAndrew Jones 
5049e6f8d8aSfangying     if (arm_feature(env, ARM_FEATURE_GENERIC_TIMER)) {
5059e6f8d8aSfangying         cpu->kvm_adjvtime = true;
506dea101a1SAndrew Jones         object_property_add_bool(obj, "kvm-no-adjvtime", kvm_no_adjvtime_get,
507d2623129SMarkus Armbruster                                  kvm_no_adjvtime_set);
508dea101a1SAndrew Jones         object_property_set_description(obj, "kvm-no-adjvtime",
509dea101a1SAndrew Jones                                         "Set on to disable the adjustment of "
510dea101a1SAndrew Jones                                         "the virtual counter. VM stopped time "
5117eecec7dSMarkus Armbruster                                         "will be counted.");
512dea101a1SAndrew Jones     }
51368970d1eSAndrew Jones 
51468970d1eSAndrew Jones     cpu->kvm_steal_time = ON_OFF_AUTO_AUTO;
51568970d1eSAndrew Jones     object_property_add_bool(obj, "kvm-steal-time", kvm_steal_time_get,
51668970d1eSAndrew Jones                              kvm_steal_time_set);
51768970d1eSAndrew Jones     object_property_set_description(obj, "kvm-steal-time",
51868970d1eSAndrew Jones                                     "Set off to disable KVM steal time.");
5199e6f8d8aSfangying }
520dea101a1SAndrew Jones 
5217d20e681SPhilippe Mathieu-Daudé bool kvm_arm_pmu_supported(void)
522ae502508SAndrew Jones {
5237d20e681SPhilippe Mathieu-Daudé     return kvm_check_extension(kvm_state, KVM_CAP_ARM_PMU_V3);
524ae502508SAndrew Jones }
525ae502508SAndrew Jones 
526bcb902a1SAndrew Jones int kvm_arm_get_max_vm_ipa_size(MachineState *ms, bool *fixed_ipa)
527a27382e2SEric Auger {
528a27382e2SEric Auger     KVMState *s = KVM_STATE(ms->accelerator);
529a27382e2SEric Auger     int ret;
530a27382e2SEric Auger 
531a27382e2SEric Auger     ret = kvm_check_extension(s, KVM_CAP_ARM_VM_IPA_SIZE);
532bcb902a1SAndrew Jones     *fixed_ipa = ret <= 0;
533bcb902a1SAndrew Jones 
534a27382e2SEric Auger     return ret > 0 ? ret : 40;
535a27382e2SEric Auger }
536a27382e2SEric Auger 
5375e0d6590SAkihiko Odaki int kvm_arch_get_default_type(MachineState *ms)
5385e0d6590SAkihiko Odaki {
5391ab445afSAkihiko Odaki     bool fixed_ipa;
5401ab445afSAkihiko Odaki     int size = kvm_arm_get_max_vm_ipa_size(ms, &fixed_ipa);
5411ab445afSAkihiko Odaki     return fixed_ipa ? 0 : size;
5425e0d6590SAkihiko Odaki }
5435e0d6590SAkihiko Odaki 
544fcf5ef2aSThomas Huth int kvm_arch_init(MachineState *ms, KVMState *s)
545fcf5ef2aSThomas Huth {
546fff9f555SEric Auger     int ret = 0;
547fcf5ef2aSThomas Huth     /* For ARM interrupt delivery is always asynchronous,
548fcf5ef2aSThomas Huth      * whether we are using an in-kernel VGIC or not.
549fcf5ef2aSThomas Huth      */
550fcf5ef2aSThomas Huth     kvm_async_interrupts_allowed = true;
551fcf5ef2aSThomas Huth 
5525d721b78SAlexander Graf     /*
5535d721b78SAlexander Graf      * PSCI wakes up secondary cores, so we always need to
5545d721b78SAlexander Graf      * have vCPUs waiting in kernel space
5555d721b78SAlexander Graf      */
5565d721b78SAlexander Graf     kvm_halt_in_kernel_allowed = true;
5575d721b78SAlexander Graf 
558fcf5ef2aSThomas Huth     cap_has_mp_state = kvm_check_extension(s, KVM_CAP_MP_STATE);
559fcf5ef2aSThomas Huth 
56051641de4SRichard Henderson     /* Check whether user space can specify guest syndrome value */
56151641de4SRichard Henderson     cap_has_inject_serror_esr =
56251641de4SRichard Henderson         kvm_check_extension(s, KVM_CAP_ARM_INJECT_SERROR_ESR);
56351641de4SRichard Henderson 
564fff9f555SEric Auger     if (ms->smp.cpus > 256 &&
565fff9f555SEric Auger         !kvm_check_extension(s, KVM_CAP_ARM_IRQ_LINE_LAYOUT_2)) {
566fff9f555SEric Auger         error_report("Using more than 256 vcpus requires a host kernel "
567fff9f555SEric Auger                      "with KVM_CAP_ARM_IRQ_LINE_LAYOUT_2");
568fff9f555SEric Auger         ret = -EINVAL;
569fff9f555SEric Auger     }
570fff9f555SEric Auger 
571694bcaa8SBeata Michalska     if (kvm_check_extension(s, KVM_CAP_ARM_NISV_TO_USER)) {
572694bcaa8SBeata Michalska         if (kvm_vm_enable_cap(s, KVM_CAP_ARM_NISV_TO_USER, 0)) {
573694bcaa8SBeata Michalska             error_report("Failed to enable KVM_CAP_ARM_NISV_TO_USER cap");
574694bcaa8SBeata Michalska         } else {
575694bcaa8SBeata Michalska             /* Set status for supporting the external dabt injection */
576694bcaa8SBeata Michalska             cap_has_inject_ext_dabt = kvm_check_extension(s,
577694bcaa8SBeata Michalska                                     KVM_CAP_ARM_INJECT_EXT_DABT);
578694bcaa8SBeata Michalska         }
579694bcaa8SBeata Michalska     }
580694bcaa8SBeata Michalska 
581c8f2eb5dSShameer Kolothum     if (s->kvm_eager_split_size) {
582c8f2eb5dSShameer Kolothum         uint32_t sizes;
583c8f2eb5dSShameer Kolothum 
584c8f2eb5dSShameer Kolothum         sizes = kvm_vm_check_extension(s, KVM_CAP_ARM_SUPPORTED_BLOCK_SIZES);
585c8f2eb5dSShameer Kolothum         if (!sizes) {
586c8f2eb5dSShameer Kolothum             s->kvm_eager_split_size = 0;
587c8f2eb5dSShameer Kolothum             warn_report("Eager Page Split support not available");
588c8f2eb5dSShameer Kolothum         } else if (!(s->kvm_eager_split_size & sizes)) {
589c8f2eb5dSShameer Kolothum             error_report("Eager Page Split requested chunk size not valid");
590c8f2eb5dSShameer Kolothum             ret = -EINVAL;
591c8f2eb5dSShameer Kolothum         } else {
592c8f2eb5dSShameer Kolothum             ret = kvm_vm_enable_cap(s, KVM_CAP_ARM_EAGER_SPLIT_CHUNK_SIZE, 0,
593c8f2eb5dSShameer Kolothum                                     s->kvm_eager_split_size);
594c8f2eb5dSShameer Kolothum             if (ret < 0) {
595c8f2eb5dSShameer Kolothum                 error_report("Enabling of Eager Page Split failed: %s",
596c8f2eb5dSShameer Kolothum                              strerror(-ret));
597c8f2eb5dSShameer Kolothum             }
598c8f2eb5dSShameer Kolothum         }
599c8f2eb5dSShameer Kolothum     }
600c8f2eb5dSShameer Kolothum 
601dd2157d2SRichard Henderson     max_hw_wps = kvm_check_extension(s, KVM_CAP_GUEST_DEBUG_HW_WPS);
602dd2157d2SRichard Henderson     hw_watchpoints = g_array_sized_new(true, true,
603dd2157d2SRichard Henderson                                        sizeof(HWWatchpoint), max_hw_wps);
604dd2157d2SRichard Henderson 
605dd2157d2SRichard Henderson     max_hw_bps = kvm_check_extension(s, KVM_CAP_GUEST_DEBUG_HW_BPS);
606dd2157d2SRichard Henderson     hw_breakpoints = g_array_sized_new(true, true,
607dd2157d2SRichard Henderson                                        sizeof(HWBreakpoint), max_hw_bps);
608ad5c6ddeSAkihiko Odaki 
609fff9f555SEric Auger     return ret;
610fcf5ef2aSThomas Huth }
611fcf5ef2aSThomas Huth 
612fcf5ef2aSThomas Huth unsigned long kvm_arch_vcpu_id(CPUState *cpu)
613fcf5ef2aSThomas Huth {
614fcf5ef2aSThomas Huth     return cpu->cpu_index;
615fcf5ef2aSThomas Huth }
616fcf5ef2aSThomas Huth 
617fcf5ef2aSThomas Huth /* We track all the KVM devices which need their memory addresses
618fcf5ef2aSThomas Huth  * passing to the kernel in a list of these structures.
619fcf5ef2aSThomas Huth  * When board init is complete we run through the list and
620fcf5ef2aSThomas Huth  * tell the kernel the base addresses of the memory regions.
621fcf5ef2aSThomas Huth  * We use a MemoryListener to track mapping and unmapping of
622fcf5ef2aSThomas Huth  * the regions during board creation, so the board models don't
623fcf5ef2aSThomas Huth  * need to do anything special for the KVM case.
62419d1bd0bSEric Auger  *
62519d1bd0bSEric Auger  * Sometimes the address must be OR'ed with some other fields
62619d1bd0bSEric Auger  * (for example for KVM_VGIC_V3_ADDR_TYPE_REDIST_REGION).
62719d1bd0bSEric Auger  * @kda_addr_ormask aims at storing the value of those fields.
628fcf5ef2aSThomas Huth  */
629fcf5ef2aSThomas Huth typedef struct KVMDevice {
630fcf5ef2aSThomas Huth     struct kvm_arm_device_addr kda;
631fcf5ef2aSThomas Huth     struct kvm_device_attr kdattr;
63219d1bd0bSEric Auger     uint64_t kda_addr_ormask;
633fcf5ef2aSThomas Huth     MemoryRegion *mr;
634fcf5ef2aSThomas Huth     QSLIST_ENTRY(KVMDevice) entries;
635fcf5ef2aSThomas Huth     int dev_fd;
636fcf5ef2aSThomas Huth } KVMDevice;
637fcf5ef2aSThomas Huth 
638b58deb34SPaolo Bonzini static QSLIST_HEAD(, KVMDevice) kvm_devices_head;
639fcf5ef2aSThomas Huth 
640fcf5ef2aSThomas Huth static void kvm_arm_devlistener_add(MemoryListener *listener,
641fcf5ef2aSThomas Huth                                     MemoryRegionSection *section)
642fcf5ef2aSThomas Huth {
643fcf5ef2aSThomas Huth     KVMDevice *kd;
644fcf5ef2aSThomas Huth 
645fcf5ef2aSThomas Huth     QSLIST_FOREACH(kd, &kvm_devices_head, entries) {
646fcf5ef2aSThomas Huth         if (section->mr == kd->mr) {
647fcf5ef2aSThomas Huth             kd->kda.addr = section->offset_within_address_space;
648fcf5ef2aSThomas Huth         }
649fcf5ef2aSThomas Huth     }
650fcf5ef2aSThomas Huth }
651fcf5ef2aSThomas Huth 
652fcf5ef2aSThomas Huth static void kvm_arm_devlistener_del(MemoryListener *listener,
653fcf5ef2aSThomas Huth                                     MemoryRegionSection *section)
654fcf5ef2aSThomas Huth {
655fcf5ef2aSThomas Huth     KVMDevice *kd;
656fcf5ef2aSThomas Huth 
657fcf5ef2aSThomas Huth     QSLIST_FOREACH(kd, &kvm_devices_head, entries) {
658fcf5ef2aSThomas Huth         if (section->mr == kd->mr) {
659fcf5ef2aSThomas Huth             kd->kda.addr = -1;
660fcf5ef2aSThomas Huth         }
661fcf5ef2aSThomas Huth     }
662fcf5ef2aSThomas Huth }
663fcf5ef2aSThomas Huth 
664fcf5ef2aSThomas Huth static MemoryListener devlistener = {
665142518bdSPeter Xu     .name = "kvm-arm",
666fcf5ef2aSThomas Huth     .region_add = kvm_arm_devlistener_add,
667fcf5ef2aSThomas Huth     .region_del = kvm_arm_devlistener_del,
66814a868c6SIsaku Yamahata     .priority = MEMORY_LISTENER_PRIORITY_MIN,
669fcf5ef2aSThomas Huth };
670fcf5ef2aSThomas Huth 
671fcf5ef2aSThomas Huth static void kvm_arm_set_device_addr(KVMDevice *kd)
672fcf5ef2aSThomas Huth {
673fcf5ef2aSThomas Huth     struct kvm_device_attr *attr = &kd->kdattr;
674fcf5ef2aSThomas Huth     int ret;
675fcf5ef2aSThomas Huth 
676fcf5ef2aSThomas Huth     /* If the device control API is available and we have a device fd on the
677fcf5ef2aSThomas Huth      * KVMDevice struct, let's use the newer API
678fcf5ef2aSThomas Huth      */
679fcf5ef2aSThomas Huth     if (kd->dev_fd >= 0) {
680fcf5ef2aSThomas Huth         uint64_t addr = kd->kda.addr;
68119d1bd0bSEric Auger 
68219d1bd0bSEric Auger         addr |= kd->kda_addr_ormask;
683fcf5ef2aSThomas Huth         attr->addr = (uintptr_t)&addr;
684fcf5ef2aSThomas Huth         ret = kvm_device_ioctl(kd->dev_fd, KVM_SET_DEVICE_ATTR, attr);
685fcf5ef2aSThomas Huth     } else {
686fcf5ef2aSThomas Huth         ret = kvm_vm_ioctl(kvm_state, KVM_ARM_SET_DEVICE_ADDR, &kd->kda);
687fcf5ef2aSThomas Huth     }
688fcf5ef2aSThomas Huth 
689fcf5ef2aSThomas Huth     if (ret < 0) {
690fcf5ef2aSThomas Huth         fprintf(stderr, "Failed to set device address: %s\n",
691fcf5ef2aSThomas Huth                 strerror(-ret));
692fcf5ef2aSThomas Huth         abort();
693fcf5ef2aSThomas Huth     }
694fcf5ef2aSThomas Huth }
695fcf5ef2aSThomas Huth 
696fcf5ef2aSThomas Huth static void kvm_arm_machine_init_done(Notifier *notifier, void *data)
697fcf5ef2aSThomas Huth {
698fcf5ef2aSThomas Huth     KVMDevice *kd, *tkd;
699fcf5ef2aSThomas Huth 
700fcf5ef2aSThomas Huth     QSLIST_FOREACH_SAFE(kd, &kvm_devices_head, entries, tkd) {
701fcf5ef2aSThomas Huth         if (kd->kda.addr != -1) {
702fcf5ef2aSThomas Huth             kvm_arm_set_device_addr(kd);
703fcf5ef2aSThomas Huth         }
704fcf5ef2aSThomas Huth         memory_region_unref(kd->mr);
7055ff9aaabSZheng Xiang         QSLIST_REMOVE_HEAD(&kvm_devices_head, entries);
706fcf5ef2aSThomas Huth         g_free(kd);
707fcf5ef2aSThomas Huth     }
7080bbe4354SPeter Xu     memory_listener_unregister(&devlistener);
709fcf5ef2aSThomas Huth }
710fcf5ef2aSThomas Huth 
711fcf5ef2aSThomas Huth static Notifier notify = {
712fcf5ef2aSThomas Huth     .notify = kvm_arm_machine_init_done,
713fcf5ef2aSThomas Huth };
714fcf5ef2aSThomas Huth 
715fcf5ef2aSThomas Huth void kvm_arm_register_device(MemoryRegion *mr, uint64_t devid, uint64_t group,
71619d1bd0bSEric Auger                              uint64_t attr, int dev_fd, uint64_t addr_ormask)
717fcf5ef2aSThomas Huth {
718fcf5ef2aSThomas Huth     KVMDevice *kd;
719fcf5ef2aSThomas Huth 
720fcf5ef2aSThomas Huth     if (!kvm_irqchip_in_kernel()) {
721fcf5ef2aSThomas Huth         return;
722fcf5ef2aSThomas Huth     }
723fcf5ef2aSThomas Huth 
724fcf5ef2aSThomas Huth     if (QSLIST_EMPTY(&kvm_devices_head)) {
725fcf5ef2aSThomas Huth         memory_listener_register(&devlistener, &address_space_memory);
726fcf5ef2aSThomas Huth         qemu_add_machine_init_done_notifier(&notify);
727fcf5ef2aSThomas Huth     }
728fcf5ef2aSThomas Huth     kd = g_new0(KVMDevice, 1);
729fcf5ef2aSThomas Huth     kd->mr = mr;
730fcf5ef2aSThomas Huth     kd->kda.id = devid;
731fcf5ef2aSThomas Huth     kd->kda.addr = -1;
732fcf5ef2aSThomas Huth     kd->kdattr.flags = 0;
733fcf5ef2aSThomas Huth     kd->kdattr.group = group;
734fcf5ef2aSThomas Huth     kd->kdattr.attr = attr;
735fcf5ef2aSThomas Huth     kd->dev_fd = dev_fd;
73619d1bd0bSEric Auger     kd->kda_addr_ormask = addr_ormask;
737fcf5ef2aSThomas Huth     QSLIST_INSERT_HEAD(&kvm_devices_head, kd, entries);
738fcf5ef2aSThomas Huth     memory_region_ref(kd->mr);
739fcf5ef2aSThomas Huth }
740fcf5ef2aSThomas Huth 
741fcf5ef2aSThomas Huth static int compare_u64(const void *a, const void *b)
742fcf5ef2aSThomas Huth {
743fcf5ef2aSThomas Huth     if (*(uint64_t *)a > *(uint64_t *)b) {
744fcf5ef2aSThomas Huth         return 1;
745fcf5ef2aSThomas Huth     }
746fcf5ef2aSThomas Huth     if (*(uint64_t *)a < *(uint64_t *)b) {
747fcf5ef2aSThomas Huth         return -1;
748fcf5ef2aSThomas Huth     }
749fcf5ef2aSThomas Huth     return 0;
750fcf5ef2aSThomas Huth }
751fcf5ef2aSThomas Huth 
752e5ac4200SAndrew Jones /*
753e5ac4200SAndrew Jones  * cpreg_values are sorted in ascending order by KVM register ID
754e5ac4200SAndrew Jones  * (see kvm_arm_init_cpreg_list). This allows us to cheaply find
755e5ac4200SAndrew Jones  * the storage for a KVM register by ID with a binary search.
756e5ac4200SAndrew Jones  */
757e5ac4200SAndrew Jones static uint64_t *kvm_arm_get_cpreg_ptr(ARMCPU *cpu, uint64_t regidx)
758e5ac4200SAndrew Jones {
759e5ac4200SAndrew Jones     uint64_t *res;
760e5ac4200SAndrew Jones 
761e5ac4200SAndrew Jones     res = bsearch(&regidx, cpu->cpreg_indexes, cpu->cpreg_array_len,
762e5ac4200SAndrew Jones                   sizeof(uint64_t), compare_u64);
763e5ac4200SAndrew Jones     assert(res);
764e5ac4200SAndrew Jones 
765e5ac4200SAndrew Jones     return &cpu->cpreg_values[res - cpu->cpreg_indexes];
766e5ac4200SAndrew Jones }
767e5ac4200SAndrew Jones 
768f38ce925SRichard Henderson /**
769f38ce925SRichard Henderson  * kvm_arm_reg_syncs_via_cpreg_list:
770f38ce925SRichard Henderson  * @regidx: KVM register index
771f38ce925SRichard Henderson  *
772f38ce925SRichard Henderson  * Return true if this KVM register should be synchronized via the
773f38ce925SRichard Henderson  * cpreg list of arbitrary system registers, false if it is synchronized
774f38ce925SRichard Henderson  * by hand using code in kvm_arch_get/put_registers().
775f38ce925SRichard Henderson  */
776f38ce925SRichard Henderson static bool kvm_arm_reg_syncs_via_cpreg_list(uint64_t regidx)
777f38ce925SRichard Henderson {
778f38ce925SRichard Henderson     switch (regidx & KVM_REG_ARM_COPROC_MASK) {
779f38ce925SRichard Henderson     case KVM_REG_ARM_CORE:
780f38ce925SRichard Henderson     case KVM_REG_ARM64_SVE:
781f38ce925SRichard Henderson         return false;
782f38ce925SRichard Henderson     default:
783f38ce925SRichard Henderson         return true;
784f38ce925SRichard Henderson     }
785f38ce925SRichard Henderson }
786f38ce925SRichard Henderson 
78709ddc012SRichard Henderson /**
78809ddc012SRichard Henderson  * kvm_arm_init_cpreg_list:
78909ddc012SRichard Henderson  * @cpu: ARMCPU
79009ddc012SRichard Henderson  *
79109ddc012SRichard Henderson  * Initialize the ARMCPU cpreg list according to the kernel's
792fcf5ef2aSThomas Huth  * definition of what CPU registers it knows about (and throw away
793fcf5ef2aSThomas Huth  * the previous TCG-created cpreg list).
79409ddc012SRichard Henderson  *
79509ddc012SRichard Henderson  * Returns: 0 if success, else < 0 error code
796fcf5ef2aSThomas Huth  */
79709ddc012SRichard Henderson static int kvm_arm_init_cpreg_list(ARMCPU *cpu)
798fcf5ef2aSThomas Huth {
799fcf5ef2aSThomas Huth     struct kvm_reg_list rl;
800fcf5ef2aSThomas Huth     struct kvm_reg_list *rlp;
801fcf5ef2aSThomas Huth     int i, ret, arraylen;
802fcf5ef2aSThomas Huth     CPUState *cs = CPU(cpu);
803fcf5ef2aSThomas Huth 
804fcf5ef2aSThomas Huth     rl.n = 0;
805fcf5ef2aSThomas Huth     ret = kvm_vcpu_ioctl(cs, KVM_GET_REG_LIST, &rl);
806fcf5ef2aSThomas Huth     if (ret != -E2BIG) {
807fcf5ef2aSThomas Huth         return ret;
808fcf5ef2aSThomas Huth     }
809fcf5ef2aSThomas Huth     rlp = g_malloc(sizeof(struct kvm_reg_list) + rl.n * sizeof(uint64_t));
810fcf5ef2aSThomas Huth     rlp->n = rl.n;
811fcf5ef2aSThomas Huth     ret = kvm_vcpu_ioctl(cs, KVM_GET_REG_LIST, rlp);
812fcf5ef2aSThomas Huth     if (ret) {
813fcf5ef2aSThomas Huth         goto out;
814fcf5ef2aSThomas Huth     }
815fcf5ef2aSThomas Huth     /* Sort the list we get back from the kernel, since cpreg_tuples
816fcf5ef2aSThomas Huth      * must be in strictly ascending order.
817fcf5ef2aSThomas Huth      */
818fcf5ef2aSThomas Huth     qsort(&rlp->reg, rlp->n, sizeof(rlp->reg[0]), compare_u64);
819fcf5ef2aSThomas Huth 
820fcf5ef2aSThomas Huth     for (i = 0, arraylen = 0; i < rlp->n; i++) {
821fcf5ef2aSThomas Huth         if (!kvm_arm_reg_syncs_via_cpreg_list(rlp->reg[i])) {
822fcf5ef2aSThomas Huth             continue;
823fcf5ef2aSThomas Huth         }
824fcf5ef2aSThomas Huth         switch (rlp->reg[i] & KVM_REG_SIZE_MASK) {
825fcf5ef2aSThomas Huth         case KVM_REG_SIZE_U32:
826fcf5ef2aSThomas Huth         case KVM_REG_SIZE_U64:
827fcf5ef2aSThomas Huth             break;
828fcf5ef2aSThomas Huth         default:
829fcf5ef2aSThomas Huth             fprintf(stderr, "Can't handle size of register in kernel list\n");
830fcf5ef2aSThomas Huth             ret = -EINVAL;
831fcf5ef2aSThomas Huth             goto out;
832fcf5ef2aSThomas Huth         }
833fcf5ef2aSThomas Huth 
834fcf5ef2aSThomas Huth         arraylen++;
835fcf5ef2aSThomas Huth     }
836fcf5ef2aSThomas Huth 
837fcf5ef2aSThomas Huth     cpu->cpreg_indexes = g_renew(uint64_t, cpu->cpreg_indexes, arraylen);
838fcf5ef2aSThomas Huth     cpu->cpreg_values = g_renew(uint64_t, cpu->cpreg_values, arraylen);
839fcf5ef2aSThomas Huth     cpu->cpreg_vmstate_indexes = g_renew(uint64_t, cpu->cpreg_vmstate_indexes,
840fcf5ef2aSThomas Huth                                          arraylen);
841fcf5ef2aSThomas Huth     cpu->cpreg_vmstate_values = g_renew(uint64_t, cpu->cpreg_vmstate_values,
842fcf5ef2aSThomas Huth                                         arraylen);
843fcf5ef2aSThomas Huth     cpu->cpreg_array_len = arraylen;
844fcf5ef2aSThomas Huth     cpu->cpreg_vmstate_array_len = arraylen;
845fcf5ef2aSThomas Huth 
846fcf5ef2aSThomas Huth     for (i = 0, arraylen = 0; i < rlp->n; i++) {
847fcf5ef2aSThomas Huth         uint64_t regidx = rlp->reg[i];
848fcf5ef2aSThomas Huth         if (!kvm_arm_reg_syncs_via_cpreg_list(regidx)) {
849fcf5ef2aSThomas Huth             continue;
850fcf5ef2aSThomas Huth         }
851fcf5ef2aSThomas Huth         cpu->cpreg_indexes[arraylen] = regidx;
852fcf5ef2aSThomas Huth         arraylen++;
853fcf5ef2aSThomas Huth     }
854fcf5ef2aSThomas Huth     assert(cpu->cpreg_array_len == arraylen);
855fcf5ef2aSThomas Huth 
856fcf5ef2aSThomas Huth     if (!write_kvmstate_to_list(cpu)) {
857fcf5ef2aSThomas Huth         /* Shouldn't happen unless kernel is inconsistent about
858fcf5ef2aSThomas Huth          * what registers exist.
859fcf5ef2aSThomas Huth          */
860fcf5ef2aSThomas Huth         fprintf(stderr, "Initial read of kernel register state failed\n");
861fcf5ef2aSThomas Huth         ret = -EINVAL;
862fcf5ef2aSThomas Huth         goto out;
863fcf5ef2aSThomas Huth     }
864fcf5ef2aSThomas Huth 
865fcf5ef2aSThomas Huth out:
866fcf5ef2aSThomas Huth     g_free(rlp);
867fcf5ef2aSThomas Huth     return ret;
868fcf5ef2aSThomas Huth }
869fcf5ef2aSThomas Huth 
870676fe684SRichard Henderson /**
871676fe684SRichard Henderson  * kvm_arm_cpreg_level:
872676fe684SRichard Henderson  * @regidx: KVM register index
873676fe684SRichard Henderson  *
874676fe684SRichard Henderson  * Return the level of this coprocessor/system register.  Return value is
875676fe684SRichard Henderson  * either KVM_PUT_RUNTIME_STATE, KVM_PUT_RESET_STATE, or KVM_PUT_FULL_STATE.
876676fe684SRichard Henderson  */
877676fe684SRichard Henderson static int kvm_arm_cpreg_level(uint64_t regidx)
878676fe684SRichard Henderson {
879676fe684SRichard Henderson     /*
880676fe684SRichard Henderson      * All system registers are assumed to be level KVM_PUT_RUNTIME_STATE.
881676fe684SRichard Henderson      * If a register should be written less often, you must add it here
882676fe684SRichard Henderson      * with a state of either KVM_PUT_RESET_STATE or KVM_PUT_FULL_STATE.
883676fe684SRichard Henderson      */
884676fe684SRichard Henderson     switch (regidx) {
885676fe684SRichard Henderson     case KVM_REG_ARM_TIMER_CNT:
886676fe684SRichard Henderson     case KVM_REG_ARM_PTIMER_CNT:
887676fe684SRichard Henderson         return KVM_PUT_FULL_STATE;
888676fe684SRichard Henderson     }
889676fe684SRichard Henderson     return KVM_PUT_RUNTIME_STATE;
890676fe684SRichard Henderson }
891676fe684SRichard Henderson 
892fcf5ef2aSThomas Huth bool write_kvmstate_to_list(ARMCPU *cpu)
893fcf5ef2aSThomas Huth {
894fcf5ef2aSThomas Huth     CPUState *cs = CPU(cpu);
895fcf5ef2aSThomas Huth     int i;
896fcf5ef2aSThomas Huth     bool ok = true;
897fcf5ef2aSThomas Huth 
898fcf5ef2aSThomas Huth     for (i = 0; i < cpu->cpreg_array_len; i++) {
899fcf5ef2aSThomas Huth         uint64_t regidx = cpu->cpreg_indexes[i];
900fcf5ef2aSThomas Huth         uint32_t v32;
901fcf5ef2aSThomas Huth         int ret;
902fcf5ef2aSThomas Huth 
903fcf5ef2aSThomas Huth         switch (regidx & KVM_REG_SIZE_MASK) {
904fcf5ef2aSThomas Huth         case KVM_REG_SIZE_U32:
90540d45b85SCornelia Huck             ret = kvm_get_one_reg(cs, regidx, &v32);
906fcf5ef2aSThomas Huth             if (!ret) {
907fcf5ef2aSThomas Huth                 cpu->cpreg_values[i] = v32;
908fcf5ef2aSThomas Huth             }
909fcf5ef2aSThomas Huth             break;
910fcf5ef2aSThomas Huth         case KVM_REG_SIZE_U64:
91140d45b85SCornelia Huck             ret = kvm_get_one_reg(cs, regidx, cpu->cpreg_values + i);
912fcf5ef2aSThomas Huth             break;
913fcf5ef2aSThomas Huth         default:
914d385a605SRichard Henderson             g_assert_not_reached();
915fcf5ef2aSThomas Huth         }
916fcf5ef2aSThomas Huth         if (ret) {
917fcf5ef2aSThomas Huth             ok = false;
918fcf5ef2aSThomas Huth         }
919fcf5ef2aSThomas Huth     }
920fcf5ef2aSThomas Huth     return ok;
921fcf5ef2aSThomas Huth }
922fcf5ef2aSThomas Huth 
923fcf5ef2aSThomas Huth bool write_list_to_kvmstate(ARMCPU *cpu, int level)
924fcf5ef2aSThomas Huth {
925fcf5ef2aSThomas Huth     CPUState *cs = CPU(cpu);
926fcf5ef2aSThomas Huth     int i;
927fcf5ef2aSThomas Huth     bool ok = true;
928fcf5ef2aSThomas Huth 
929fcf5ef2aSThomas Huth     for (i = 0; i < cpu->cpreg_array_len; i++) {
930fcf5ef2aSThomas Huth         uint64_t regidx = cpu->cpreg_indexes[i];
931fcf5ef2aSThomas Huth         uint32_t v32;
932fcf5ef2aSThomas Huth         int ret;
933fcf5ef2aSThomas Huth 
934fcf5ef2aSThomas Huth         if (kvm_arm_cpreg_level(regidx) > level) {
935fcf5ef2aSThomas Huth             continue;
936fcf5ef2aSThomas Huth         }
937fcf5ef2aSThomas Huth 
938fcf5ef2aSThomas Huth         switch (regidx & KVM_REG_SIZE_MASK) {
939fcf5ef2aSThomas Huth         case KVM_REG_SIZE_U32:
940fcf5ef2aSThomas Huth             v32 = cpu->cpreg_values[i];
9416c8b9a74SCornelia Huck             ret = kvm_set_one_reg(cs, regidx, &v32);
942fcf5ef2aSThomas Huth             break;
943fcf5ef2aSThomas Huth         case KVM_REG_SIZE_U64:
9446c8b9a74SCornelia Huck             ret = kvm_set_one_reg(cs, regidx, cpu->cpreg_values + i);
945fcf5ef2aSThomas Huth             break;
946fcf5ef2aSThomas Huth         default:
947d385a605SRichard Henderson             g_assert_not_reached();
948fcf5ef2aSThomas Huth         }
949fcf5ef2aSThomas Huth         if (ret) {
950fcf5ef2aSThomas Huth             /* We might fail for "unknown register" and also for
951fcf5ef2aSThomas Huth              * "you tried to set a register which is constant with
952fcf5ef2aSThomas Huth              * a different value from what it actually contains".
953fcf5ef2aSThomas Huth              */
954fcf5ef2aSThomas Huth             ok = false;
955fcf5ef2aSThomas Huth         }
956fcf5ef2aSThomas Huth     }
957fcf5ef2aSThomas Huth     return ok;
958fcf5ef2aSThomas Huth }
959fcf5ef2aSThomas Huth 
960e5ac4200SAndrew Jones void kvm_arm_cpu_pre_save(ARMCPU *cpu)
961e5ac4200SAndrew Jones {
962e5ac4200SAndrew Jones     /* KVM virtual time adjustment */
963e5ac4200SAndrew Jones     if (cpu->kvm_vtime_dirty) {
964e5ac4200SAndrew Jones         *kvm_arm_get_cpreg_ptr(cpu, KVM_REG_ARM_TIMER_CNT) = cpu->kvm_vtime;
965e5ac4200SAndrew Jones     }
966e5ac4200SAndrew Jones }
967e5ac4200SAndrew Jones 
968e5ac4200SAndrew Jones void kvm_arm_cpu_post_load(ARMCPU *cpu)
969e5ac4200SAndrew Jones {
970e5ac4200SAndrew Jones     /* KVM virtual time adjustment */
971e5ac4200SAndrew Jones     if (cpu->kvm_adjvtime) {
972e5ac4200SAndrew Jones         cpu->kvm_vtime = *kvm_arm_get_cpreg_ptr(cpu, KVM_REG_ARM_TIMER_CNT);
973e5ac4200SAndrew Jones         cpu->kvm_vtime_dirty = true;
974e5ac4200SAndrew Jones     }
975e5ac4200SAndrew Jones }
976e5ac4200SAndrew Jones 
977fcf5ef2aSThomas Huth void kvm_arm_reset_vcpu(ARMCPU *cpu)
978fcf5ef2aSThomas Huth {
979fcf5ef2aSThomas Huth     int ret;
980fcf5ef2aSThomas Huth 
981fcf5ef2aSThomas Huth     /* Re-init VCPU so that all registers are set to
982fcf5ef2aSThomas Huth      * their respective reset values.
983fcf5ef2aSThomas Huth      */
984*bbb22d58SPhilippe Mathieu-Daudé     ret = kvm_arm_vcpu_init(cpu);
985fcf5ef2aSThomas Huth     if (ret < 0) {
986fcf5ef2aSThomas Huth         fprintf(stderr, "kvm_arm_vcpu_init failed: %s\n", strerror(-ret));
987fcf5ef2aSThomas Huth         abort();
988fcf5ef2aSThomas Huth     }
989fcf5ef2aSThomas Huth     if (!write_kvmstate_to_list(cpu)) {
990fcf5ef2aSThomas Huth         fprintf(stderr, "write_kvmstate_to_list failed\n");
991fcf5ef2aSThomas Huth         abort();
992fcf5ef2aSThomas Huth     }
993b698e4eeSPeter Maydell     /*
994b698e4eeSPeter Maydell      * Sync the reset values also into the CPUState. This is necessary
995b698e4eeSPeter Maydell      * because the next thing we do will be a kvm_arch_put_registers()
996b698e4eeSPeter Maydell      * which will update the list values from the CPUState before copying
997b698e4eeSPeter Maydell      * the list values back to KVM. It's OK to ignore failure returns here
998b698e4eeSPeter Maydell      * for the same reason we do so in kvm_arch_get_registers().
999b698e4eeSPeter Maydell      */
1000b698e4eeSPeter Maydell     write_list_to_cpustate(cpu);
1001fcf5ef2aSThomas Huth }
1002fcf5ef2aSThomas Huth 
1003fcf5ef2aSThomas Huth /*
1004fcf5ef2aSThomas Huth  * Update KVM's MP_STATE based on what QEMU thinks it is
1005fcf5ef2aSThomas Huth  */
100671c34911SRichard Henderson static int kvm_arm_sync_mpstate_to_kvm(ARMCPU *cpu)
1007fcf5ef2aSThomas Huth {
1008fcf5ef2aSThomas Huth     if (cap_has_mp_state) {
1009fcf5ef2aSThomas Huth         struct kvm_mp_state mp_state = {
1010062ba099SAlex Bennée             .mp_state = (cpu->power_state == PSCI_OFF) ?
1011062ba099SAlex Bennée             KVM_MP_STATE_STOPPED : KVM_MP_STATE_RUNNABLE
1012fcf5ef2aSThomas Huth         };
101371c34911SRichard Henderson         return kvm_vcpu_ioctl(CPU(cpu), KVM_SET_MP_STATE, &mp_state);
1014fcf5ef2aSThomas Huth     }
1015fcf5ef2aSThomas Huth     return 0;
1016fcf5ef2aSThomas Huth }
1017fcf5ef2aSThomas Huth 
1018fcf5ef2aSThomas Huth /*
1019fcf5ef2aSThomas Huth  * Sync the KVM MP_STATE into QEMU
1020fcf5ef2aSThomas Huth  */
102171c34911SRichard Henderson static int kvm_arm_sync_mpstate_to_qemu(ARMCPU *cpu)
1022fcf5ef2aSThomas Huth {
1023fcf5ef2aSThomas Huth     if (cap_has_mp_state) {
1024fcf5ef2aSThomas Huth         struct kvm_mp_state mp_state;
1025fcf5ef2aSThomas Huth         int ret = kvm_vcpu_ioctl(CPU(cpu), KVM_GET_MP_STATE, &mp_state);
1026fcf5ef2aSThomas Huth         if (ret) {
102771c34911SRichard Henderson             return ret;
1028fcf5ef2aSThomas Huth         }
1029062ba099SAlex Bennée         cpu->power_state = (mp_state.mp_state == KVM_MP_STATE_STOPPED) ?
1030062ba099SAlex Bennée             PSCI_OFF : PSCI_ON;
1031fcf5ef2aSThomas Huth     }
1032fcf5ef2aSThomas Huth     return 0;
1033fcf5ef2aSThomas Huth }
1034fcf5ef2aSThomas Huth 
103546512471SRichard Henderson /**
103646512471SRichard Henderson  * kvm_arm_get_virtual_time:
103746512471SRichard Henderson  * @cs: CPUState
103846512471SRichard Henderson  *
103946512471SRichard Henderson  * Gets the VCPU's virtual counter and stores it in the KVM CPU state.
104046512471SRichard Henderson  */
104146512471SRichard Henderson static void kvm_arm_get_virtual_time(CPUState *cs)
1042e5ac4200SAndrew Jones {
1043e5ac4200SAndrew Jones     ARMCPU *cpu = ARM_CPU(cs);
1044e5ac4200SAndrew Jones     int ret;
1045e5ac4200SAndrew Jones 
1046e5ac4200SAndrew Jones     if (cpu->kvm_vtime_dirty) {
1047e5ac4200SAndrew Jones         return;
1048e5ac4200SAndrew Jones     }
1049e5ac4200SAndrew Jones 
105040d45b85SCornelia Huck     ret = kvm_get_one_reg(cs, KVM_REG_ARM_TIMER_CNT, &cpu->kvm_vtime);
1051e5ac4200SAndrew Jones     if (ret) {
1052e5ac4200SAndrew Jones         error_report("Failed to get KVM_REG_ARM_TIMER_CNT");
1053e5ac4200SAndrew Jones         abort();
1054e5ac4200SAndrew Jones     }
1055e5ac4200SAndrew Jones 
1056e5ac4200SAndrew Jones     cpu->kvm_vtime_dirty = true;
1057e5ac4200SAndrew Jones }
1058e5ac4200SAndrew Jones 
105946512471SRichard Henderson /**
106046512471SRichard Henderson  * kvm_arm_put_virtual_time:
106146512471SRichard Henderson  * @cs: CPUState
106246512471SRichard Henderson  *
106346512471SRichard Henderson  * Sets the VCPU's virtual counter to the value stored in the KVM CPU state.
106446512471SRichard Henderson  */
106546512471SRichard Henderson static void kvm_arm_put_virtual_time(CPUState *cs)
1066e5ac4200SAndrew Jones {
1067e5ac4200SAndrew Jones     ARMCPU *cpu = ARM_CPU(cs);
1068e5ac4200SAndrew Jones     int ret;
1069e5ac4200SAndrew Jones 
1070e5ac4200SAndrew Jones     if (!cpu->kvm_vtime_dirty) {
1071e5ac4200SAndrew Jones         return;
1072e5ac4200SAndrew Jones     }
1073e5ac4200SAndrew Jones 
10746c8b9a74SCornelia Huck     ret = kvm_set_one_reg(cs, KVM_REG_ARM_TIMER_CNT, &cpu->kvm_vtime);
1075e5ac4200SAndrew Jones     if (ret) {
1076e5ac4200SAndrew Jones         error_report("Failed to set KVM_REG_ARM_TIMER_CNT");
1077e5ac4200SAndrew Jones         abort();
1078e5ac4200SAndrew Jones     }
1079e5ac4200SAndrew Jones 
1080e5ac4200SAndrew Jones     cpu->kvm_vtime_dirty = false;
1081e5ac4200SAndrew Jones }
1082e5ac4200SAndrew Jones 
1083353e03cdSRichard Henderson /**
1084353e03cdSRichard Henderson  * kvm_put_vcpu_events:
1085353e03cdSRichard Henderson  * @cpu: ARMCPU
1086353e03cdSRichard Henderson  *
1087353e03cdSRichard Henderson  * Put VCPU related state to kvm.
1088353e03cdSRichard Henderson  *
1089353e03cdSRichard Henderson  * Returns: 0 if success else < 0 error code
1090353e03cdSRichard Henderson  */
1091353e03cdSRichard Henderson static int kvm_put_vcpu_events(ARMCPU *cpu)
1092202ccb6bSDongjiu Geng {
1093202ccb6bSDongjiu Geng     CPUARMState *env = &cpu->env;
1094202ccb6bSDongjiu Geng     struct kvm_vcpu_events events;
1095202ccb6bSDongjiu Geng     int ret;
1096202ccb6bSDongjiu Geng 
1097202ccb6bSDongjiu Geng     if (!kvm_has_vcpu_events()) {
1098202ccb6bSDongjiu Geng         return 0;
1099202ccb6bSDongjiu Geng     }
1100202ccb6bSDongjiu Geng 
1101202ccb6bSDongjiu Geng     memset(&events, 0, sizeof(events));
1102202ccb6bSDongjiu Geng     events.exception.serror_pending = env->serror.pending;
1103202ccb6bSDongjiu Geng 
1104202ccb6bSDongjiu Geng     /* Inject SError to guest with specified syndrome if host kernel
1105202ccb6bSDongjiu Geng      * supports it, otherwise inject SError without syndrome.
1106202ccb6bSDongjiu Geng      */
1107202ccb6bSDongjiu Geng     if (cap_has_inject_serror_esr) {
1108202ccb6bSDongjiu Geng         events.exception.serror_has_esr = env->serror.has_esr;
1109202ccb6bSDongjiu Geng         events.exception.serror_esr = env->serror.esr;
1110202ccb6bSDongjiu Geng     }
1111202ccb6bSDongjiu Geng 
1112202ccb6bSDongjiu Geng     ret = kvm_vcpu_ioctl(CPU(cpu), KVM_SET_VCPU_EVENTS, &events);
1113202ccb6bSDongjiu Geng     if (ret) {
1114202ccb6bSDongjiu Geng         error_report("failed to put vcpu events");
1115202ccb6bSDongjiu Geng     }
1116202ccb6bSDongjiu Geng 
1117202ccb6bSDongjiu Geng     return ret;
1118202ccb6bSDongjiu Geng }
1119202ccb6bSDongjiu Geng 
1120353e03cdSRichard Henderson /**
1121353e03cdSRichard Henderson  * kvm_get_vcpu_events:
1122353e03cdSRichard Henderson  * @cpu: ARMCPU
1123353e03cdSRichard Henderson  *
1124353e03cdSRichard Henderson  * Get VCPU related state from kvm.
1125353e03cdSRichard Henderson  *
1126353e03cdSRichard Henderson  * Returns: 0 if success else < 0 error code
1127353e03cdSRichard Henderson  */
1128353e03cdSRichard Henderson static int kvm_get_vcpu_events(ARMCPU *cpu)
1129202ccb6bSDongjiu Geng {
1130202ccb6bSDongjiu Geng     CPUARMState *env = &cpu->env;
1131202ccb6bSDongjiu Geng     struct kvm_vcpu_events events;
1132202ccb6bSDongjiu Geng     int ret;
1133202ccb6bSDongjiu Geng 
1134202ccb6bSDongjiu Geng     if (!kvm_has_vcpu_events()) {
1135202ccb6bSDongjiu Geng         return 0;
1136202ccb6bSDongjiu Geng     }
1137202ccb6bSDongjiu Geng 
1138202ccb6bSDongjiu Geng     memset(&events, 0, sizeof(events));
1139202ccb6bSDongjiu Geng     ret = kvm_vcpu_ioctl(CPU(cpu), KVM_GET_VCPU_EVENTS, &events);
1140202ccb6bSDongjiu Geng     if (ret) {
1141202ccb6bSDongjiu Geng         error_report("failed to get vcpu events");
1142202ccb6bSDongjiu Geng         return ret;
1143202ccb6bSDongjiu Geng     }
1144202ccb6bSDongjiu Geng 
1145202ccb6bSDongjiu Geng     env->serror.pending = events.exception.serror_pending;
1146202ccb6bSDongjiu Geng     env->serror.has_esr = events.exception.serror_has_esr;
1147202ccb6bSDongjiu Geng     env->serror.esr = events.exception.serror_esr;
1148202ccb6bSDongjiu Geng 
1149202ccb6bSDongjiu Geng     return 0;
1150202ccb6bSDongjiu Geng }
1151202ccb6bSDongjiu Geng 
115220c83dc9SRichard Henderson #define ARM64_REG_ESR_EL1 ARM64_SYS_REG(3, 0, 5, 2, 0)
115320c83dc9SRichard Henderson #define ARM64_REG_TCR_EL1 ARM64_SYS_REG(3, 0, 2, 0, 2)
115420c83dc9SRichard Henderson 
115520c83dc9SRichard Henderson /*
115620c83dc9SRichard Henderson  * ESR_EL1
115720c83dc9SRichard Henderson  * ISS encoding
115820c83dc9SRichard Henderson  * AARCH64: DFSC,   bits [5:0]
115920c83dc9SRichard Henderson  * AARCH32:
116020c83dc9SRichard Henderson  *      TTBCR.EAE == 0
116120c83dc9SRichard Henderson  *          FS[4]   - DFSR[10]
116220c83dc9SRichard Henderson  *          FS[3:0] - DFSR[3:0]
116320c83dc9SRichard Henderson  *      TTBCR.EAE == 1
116420c83dc9SRichard Henderson  *          FS, bits [5:0]
116520c83dc9SRichard Henderson  */
116620c83dc9SRichard Henderson #define ESR_DFSC(aarch64, lpae, v)        \
116720c83dc9SRichard Henderson     ((aarch64 || (lpae)) ? ((v) & 0x3F)   \
116820c83dc9SRichard Henderson                : (((v) >> 6) | ((v) & 0x1F)))
116920c83dc9SRichard Henderson 
117020c83dc9SRichard Henderson #define ESR_DFSC_EXTABT(aarch64, lpae) \
117120c83dc9SRichard Henderson     ((aarch64) ? 0x10 : (lpae) ? 0x10 : 0x8)
117220c83dc9SRichard Henderson 
117320c83dc9SRichard Henderson /**
117420c83dc9SRichard Henderson  * kvm_arm_verify_ext_dabt_pending:
117520c83dc9SRichard Henderson  * @cs: CPUState
117620c83dc9SRichard Henderson  *
117720c83dc9SRichard Henderson  * Verify the fault status code wrt the Ext DABT injection
117820c83dc9SRichard Henderson  *
117920c83dc9SRichard Henderson  * Returns: true if the fault status code is as expected, false otherwise
118020c83dc9SRichard Henderson  */
118120c83dc9SRichard Henderson static bool kvm_arm_verify_ext_dabt_pending(CPUState *cs)
118220c83dc9SRichard Henderson {
118320c83dc9SRichard Henderson     uint64_t dfsr_val;
118420c83dc9SRichard Henderson 
118520c83dc9SRichard Henderson     if (!kvm_get_one_reg(cs, ARM64_REG_ESR_EL1, &dfsr_val)) {
118620c83dc9SRichard Henderson         ARMCPU *cpu = ARM_CPU(cs);
118720c83dc9SRichard Henderson         CPUARMState *env = &cpu->env;
118820c83dc9SRichard Henderson         int aarch64_mode = arm_feature(env, ARM_FEATURE_AARCH64);
118920c83dc9SRichard Henderson         int lpae = 0;
119020c83dc9SRichard Henderson 
119120c83dc9SRichard Henderson         if (!aarch64_mode) {
119220c83dc9SRichard Henderson             uint64_t ttbcr;
119320c83dc9SRichard Henderson 
119420c83dc9SRichard Henderson             if (!kvm_get_one_reg(cs, ARM64_REG_TCR_EL1, &ttbcr)) {
119520c83dc9SRichard Henderson                 lpae = arm_feature(env, ARM_FEATURE_LPAE)
119620c83dc9SRichard Henderson                         && (ttbcr & TTBCR_EAE);
119720c83dc9SRichard Henderson             }
119820c83dc9SRichard Henderson         }
119920c83dc9SRichard Henderson         /*
120020c83dc9SRichard Henderson          * The verification here is based on the DFSC bits
120120c83dc9SRichard Henderson          * of the ESR_EL1 reg only
120220c83dc9SRichard Henderson          */
120320c83dc9SRichard Henderson          return (ESR_DFSC(aarch64_mode, lpae, dfsr_val) ==
120420c83dc9SRichard Henderson                 ESR_DFSC_EXTABT(aarch64_mode, lpae));
120520c83dc9SRichard Henderson     }
120620c83dc9SRichard Henderson     return false;
120720c83dc9SRichard Henderson }
120820c83dc9SRichard Henderson 
1209fcf5ef2aSThomas Huth void kvm_arch_pre_run(CPUState *cs, struct kvm_run *run)
1210fcf5ef2aSThomas Huth {
12111711bfa5SBeata Michalska     ARMCPU *cpu = ARM_CPU(cs);
12121711bfa5SBeata Michalska     CPUARMState *env = &cpu->env;
12131711bfa5SBeata Michalska 
12141711bfa5SBeata Michalska     if (unlikely(env->ext_dabt_raised)) {
12151711bfa5SBeata Michalska         /*
12161711bfa5SBeata Michalska          * Verifying that the ext DABT has been properly injected,
12171711bfa5SBeata Michalska          * otherwise risking indefinitely re-running the faulting instruction
12181711bfa5SBeata Michalska          * Covering a very narrow case for kernels 5.5..5.5.4
12191711bfa5SBeata Michalska          * when injected abort was misconfigured to be
12201711bfa5SBeata Michalska          * an IMPLEMENTATION DEFINED exception (for 32-bit EL1)
12211711bfa5SBeata Michalska          */
12221711bfa5SBeata Michalska         if (!arm_feature(env, ARM_FEATURE_AARCH64) &&
12231711bfa5SBeata Michalska             unlikely(!kvm_arm_verify_ext_dabt_pending(cs))) {
12241711bfa5SBeata Michalska 
12251711bfa5SBeata Michalska             error_report("Data abort exception with no valid ISS generated by "
12261711bfa5SBeata Michalska                    "guest memory access. KVM unable to emulate faulting "
12271711bfa5SBeata Michalska                    "instruction. Failed to inject an external data abort "
12281711bfa5SBeata Michalska                    "into the guest.");
12291711bfa5SBeata Michalska             abort();
12301711bfa5SBeata Michalska        }
12311711bfa5SBeata Michalska        /* Clear the status */
12321711bfa5SBeata Michalska        env->ext_dabt_raised = 0;
12331711bfa5SBeata Michalska     }
1234fcf5ef2aSThomas Huth }
1235fcf5ef2aSThomas Huth 
1236fcf5ef2aSThomas Huth MemTxAttrs kvm_arch_post_run(CPUState *cs, struct kvm_run *run)
1237fcf5ef2aSThomas Huth {
12385d721b78SAlexander Graf     ARMCPU *cpu;
12395d721b78SAlexander Graf     uint32_t switched_level;
12405d721b78SAlexander Graf 
12415d721b78SAlexander Graf     if (kvm_irqchip_in_kernel()) {
12425d721b78SAlexander Graf         /*
12435d721b78SAlexander Graf          * We only need to sync timer states with user-space interrupt
12445d721b78SAlexander Graf          * controllers, so return early and save cycles if we don't.
12455d721b78SAlexander Graf          */
12465d721b78SAlexander Graf         return MEMTXATTRS_UNSPECIFIED;
12475d721b78SAlexander Graf     }
12485d721b78SAlexander Graf 
12495d721b78SAlexander Graf     cpu = ARM_CPU(cs);
12505d721b78SAlexander Graf 
12515d721b78SAlexander Graf     /* Synchronize our shadowed in-kernel device irq lines with the kvm ones */
12525d721b78SAlexander Graf     if (run->s.regs.device_irq_level != cpu->device_irq_level) {
12535d721b78SAlexander Graf         switched_level = cpu->device_irq_level ^ run->s.regs.device_irq_level;
12545d721b78SAlexander Graf 
12555d721b78SAlexander Graf         qemu_mutex_lock_iothread();
12565d721b78SAlexander Graf 
12575d721b78SAlexander Graf         if (switched_level & KVM_ARM_DEV_EL1_VTIMER) {
12585d721b78SAlexander Graf             qemu_set_irq(cpu->gt_timer_outputs[GTIMER_VIRT],
12595d721b78SAlexander Graf                          !!(run->s.regs.device_irq_level &
12605d721b78SAlexander Graf                             KVM_ARM_DEV_EL1_VTIMER));
12615d721b78SAlexander Graf             switched_level &= ~KVM_ARM_DEV_EL1_VTIMER;
12625d721b78SAlexander Graf         }
12635d721b78SAlexander Graf 
12645d721b78SAlexander Graf         if (switched_level & KVM_ARM_DEV_EL1_PTIMER) {
12655d721b78SAlexander Graf             qemu_set_irq(cpu->gt_timer_outputs[GTIMER_PHYS],
12665d721b78SAlexander Graf                          !!(run->s.regs.device_irq_level &
12675d721b78SAlexander Graf                             KVM_ARM_DEV_EL1_PTIMER));
12685d721b78SAlexander Graf             switched_level &= ~KVM_ARM_DEV_EL1_PTIMER;
12695d721b78SAlexander Graf         }
12705d721b78SAlexander Graf 
1271b1659527SAndrew Jones         if (switched_level & KVM_ARM_DEV_PMU) {
1272b1659527SAndrew Jones             qemu_set_irq(cpu->pmu_interrupt,
1273b1659527SAndrew Jones                          !!(run->s.regs.device_irq_level & KVM_ARM_DEV_PMU));
1274b1659527SAndrew Jones             switched_level &= ~KVM_ARM_DEV_PMU;
1275b1659527SAndrew Jones         }
12765d721b78SAlexander Graf 
12775d721b78SAlexander Graf         if (switched_level) {
12785d721b78SAlexander Graf             qemu_log_mask(LOG_UNIMP, "%s: unhandled in-kernel device IRQ %x\n",
12795d721b78SAlexander Graf                           __func__, switched_level);
12805d721b78SAlexander Graf         }
12815d721b78SAlexander Graf 
12825d721b78SAlexander Graf         /* We also mark unknown levels as processed to not waste cycles */
12835d721b78SAlexander Graf         cpu->device_irq_level = run->s.regs.device_irq_level;
12845d721b78SAlexander Graf         qemu_mutex_unlock_iothread();
12855d721b78SAlexander Graf     }
12865d721b78SAlexander Graf 
1287fcf5ef2aSThomas Huth     return MEMTXATTRS_UNSPECIFIED;
1288fcf5ef2aSThomas Huth }
1289fcf5ef2aSThomas Huth 
1290396b6c50SRichard Henderson static void kvm_arm_vm_state_change(void *opaque, bool running, RunState state)
1291e5ac4200SAndrew Jones {
1292e5ac4200SAndrew Jones     CPUState *cs = opaque;
1293e5ac4200SAndrew Jones     ARMCPU *cpu = ARM_CPU(cs);
1294e5ac4200SAndrew Jones 
1295e5ac4200SAndrew Jones     if (running) {
1296e5ac4200SAndrew Jones         if (cpu->kvm_adjvtime) {
1297e5ac4200SAndrew Jones             kvm_arm_put_virtual_time(cs);
1298e5ac4200SAndrew Jones         }
1299e5ac4200SAndrew Jones     } else {
1300e5ac4200SAndrew Jones         if (cpu->kvm_adjvtime) {
1301e5ac4200SAndrew Jones             kvm_arm_get_virtual_time(cs);
1302e5ac4200SAndrew Jones         }
1303e5ac4200SAndrew Jones     }
1304e5ac4200SAndrew Jones }
1305fcf5ef2aSThomas Huth 
1306694bcaa8SBeata Michalska /**
1307694bcaa8SBeata Michalska  * kvm_arm_handle_dabt_nisv:
1308694bcaa8SBeata Michalska  * @cs: CPUState
1309694bcaa8SBeata Michalska  * @esr_iss: ISS encoding (limited) for the exception from Data Abort
1310694bcaa8SBeata Michalska  *           ISV bit set to '0b0' -> no valid instruction syndrome
1311694bcaa8SBeata Michalska  * @fault_ipa: faulting address for the synchronous data abort
1312694bcaa8SBeata Michalska  *
1313694bcaa8SBeata Michalska  * Returns: 0 if the exception has been handled, < 0 otherwise
1314694bcaa8SBeata Michalska  */
1315694bcaa8SBeata Michalska static int kvm_arm_handle_dabt_nisv(CPUState *cs, uint64_t esr_iss,
1316694bcaa8SBeata Michalska                                     uint64_t fault_ipa)
1317694bcaa8SBeata Michalska {
13181711bfa5SBeata Michalska     ARMCPU *cpu = ARM_CPU(cs);
13191711bfa5SBeata Michalska     CPUARMState *env = &cpu->env;
1320694bcaa8SBeata Michalska     /*
1321694bcaa8SBeata Michalska      * Request KVM to inject the external data abort into the guest
1322694bcaa8SBeata Michalska      */
1323694bcaa8SBeata Michalska     if (cap_has_inject_ext_dabt) {
1324694bcaa8SBeata Michalska         struct kvm_vcpu_events events = { };
1325694bcaa8SBeata Michalska         /*
1326694bcaa8SBeata Michalska          * The external data abort event will be handled immediately by KVM
1327694bcaa8SBeata Michalska          * using the address fault that triggered the exit on given VCPU.
1328694bcaa8SBeata Michalska          * Requesting injection of the external data abort does not rely
1329694bcaa8SBeata Michalska          * on any other VCPU state. Therefore, in this particular case, the VCPU
1330694bcaa8SBeata Michalska          * synchronization can be exceptionally skipped.
1331694bcaa8SBeata Michalska          */
1332694bcaa8SBeata Michalska         events.exception.ext_dabt_pending = 1;
1333694bcaa8SBeata Michalska         /* KVM_CAP_ARM_INJECT_EXT_DABT implies KVM_CAP_VCPU_EVENTS */
13341711bfa5SBeata Michalska         if (!kvm_vcpu_ioctl(cs, KVM_SET_VCPU_EVENTS, &events)) {
13351711bfa5SBeata Michalska             env->ext_dabt_raised = 1;
13361711bfa5SBeata Michalska             return 0;
13371711bfa5SBeata Michalska         }
1338694bcaa8SBeata Michalska     } else {
1339694bcaa8SBeata Michalska         error_report("Data abort exception triggered by guest memory access "
1340694bcaa8SBeata Michalska                      "at physical address: 0x"  TARGET_FMT_lx,
1341694bcaa8SBeata Michalska                      (target_ulong)fault_ipa);
1342694bcaa8SBeata Michalska         error_printf("KVM unable to emulate faulting instruction.\n");
1343694bcaa8SBeata Michalska     }
1344694bcaa8SBeata Michalska     return -1;
1345694bcaa8SBeata Michalska }
1346694bcaa8SBeata Michalska 
13475cba8f26SRichard Henderson /**
13485cba8f26SRichard Henderson  * kvm_arm_handle_debug:
13495cba8f26SRichard Henderson  * @cs: CPUState
13505cba8f26SRichard Henderson  * @debug_exit: debug part of the KVM exit structure
13515cba8f26SRichard Henderson  *
13525cba8f26SRichard Henderson  * Returns: TRUE if the debug exception was handled.
13535cba8f26SRichard Henderson  *
13545cba8f26SRichard Henderson  * See v8 ARM ARM D7.2.27 ESR_ELx, Exception Syndrome Register
13555cba8f26SRichard Henderson  *
13565cba8f26SRichard Henderson  * To minimise translating between kernel and user-space the kernel
13575cba8f26SRichard Henderson  * ABI just provides user-space with the full exception syndrome
13585cba8f26SRichard Henderson  * register value to be decoded in QEMU.
13595cba8f26SRichard Henderson  */
13605cba8f26SRichard Henderson static bool kvm_arm_handle_debug(CPUState *cs,
13615cba8f26SRichard Henderson                                  struct kvm_debug_exit_arch *debug_exit)
13625cba8f26SRichard Henderson {
13635cba8f26SRichard Henderson     int hsr_ec = syn_get_ec(debug_exit->hsr);
13645cba8f26SRichard Henderson     ARMCPU *cpu = ARM_CPU(cs);
13655cba8f26SRichard Henderson     CPUARMState *env = &cpu->env;
13665cba8f26SRichard Henderson 
13675cba8f26SRichard Henderson     /* Ensure PC is synchronised */
13685cba8f26SRichard Henderson     kvm_cpu_synchronize_state(cs);
13695cba8f26SRichard Henderson 
13705cba8f26SRichard Henderson     switch (hsr_ec) {
13715cba8f26SRichard Henderson     case EC_SOFTWARESTEP:
13725cba8f26SRichard Henderson         if (cs->singlestep_enabled) {
13735cba8f26SRichard Henderson             return true;
13745cba8f26SRichard Henderson         } else {
13755cba8f26SRichard Henderson             /*
13765cba8f26SRichard Henderson              * The kernel should have suppressed the guest's ability to
13775cba8f26SRichard Henderson              * single step at this point so something has gone wrong.
13785cba8f26SRichard Henderson              */
13795cba8f26SRichard Henderson             error_report("%s: guest single-step while debugging unsupported"
13805cba8f26SRichard Henderson                          " (%"PRIx64", %"PRIx32")",
13815cba8f26SRichard Henderson                          __func__, env->pc, debug_exit->hsr);
13825cba8f26SRichard Henderson             return false;
13835cba8f26SRichard Henderson         }
13845cba8f26SRichard Henderson         break;
13855cba8f26SRichard Henderson     case EC_AA64_BKPT:
13865cba8f26SRichard Henderson         if (kvm_find_sw_breakpoint(cs, env->pc)) {
13875cba8f26SRichard Henderson             return true;
13885cba8f26SRichard Henderson         }
13895cba8f26SRichard Henderson         break;
13905cba8f26SRichard Henderson     case EC_BREAKPOINT:
13915cba8f26SRichard Henderson         if (find_hw_breakpoint(cs, env->pc)) {
13925cba8f26SRichard Henderson             return true;
13935cba8f26SRichard Henderson         }
13945cba8f26SRichard Henderson         break;
13955cba8f26SRichard Henderson     case EC_WATCHPOINT:
13965cba8f26SRichard Henderson     {
13975cba8f26SRichard Henderson         CPUWatchpoint *wp = find_hw_watchpoint(cs, debug_exit->far);
13985cba8f26SRichard Henderson         if (wp) {
13995cba8f26SRichard Henderson             cs->watchpoint_hit = wp;
14005cba8f26SRichard Henderson             return true;
14015cba8f26SRichard Henderson         }
14025cba8f26SRichard Henderson         break;
14035cba8f26SRichard Henderson     }
14045cba8f26SRichard Henderson     default:
14055cba8f26SRichard Henderson         error_report("%s: unhandled debug exit (%"PRIx32", %"PRIx64")",
14065cba8f26SRichard Henderson                      __func__, debug_exit->hsr, env->pc);
14075cba8f26SRichard Henderson     }
14085cba8f26SRichard Henderson 
14095cba8f26SRichard Henderson     /* If we are not handling the debug exception it must belong to
14105cba8f26SRichard Henderson      * the guest. Let's re-use the existing TCG interrupt code to set
14115cba8f26SRichard Henderson      * everything up properly.
14125cba8f26SRichard Henderson      */
14135cba8f26SRichard Henderson     cs->exception_index = EXCP_BKPT;
14145cba8f26SRichard Henderson     env->exception.syndrome = debug_exit->hsr;
14155cba8f26SRichard Henderson     env->exception.vaddress = debug_exit->far;
14165cba8f26SRichard Henderson     env->exception.target_el = 1;
14175cba8f26SRichard Henderson     qemu_mutex_lock_iothread();
14185cba8f26SRichard Henderson     arm_cpu_do_interrupt(cs);
14195cba8f26SRichard Henderson     qemu_mutex_unlock_iothread();
14205cba8f26SRichard Henderson 
14215cba8f26SRichard Henderson     return false;
14225cba8f26SRichard Henderson }
14235cba8f26SRichard Henderson 
1424fcf5ef2aSThomas Huth int kvm_arch_handle_exit(CPUState *cs, struct kvm_run *run)
1425fcf5ef2aSThomas Huth {
1426fcf5ef2aSThomas Huth     int ret = 0;
1427fcf5ef2aSThomas Huth 
1428fcf5ef2aSThomas Huth     switch (run->exit_reason) {
1429fcf5ef2aSThomas Huth     case KVM_EXIT_DEBUG:
1430fcf5ef2aSThomas Huth         if (kvm_arm_handle_debug(cs, &run->debug.arch)) {
1431fcf5ef2aSThomas Huth             ret = EXCP_DEBUG;
1432fcf5ef2aSThomas Huth         } /* otherwise return to guest */
1433fcf5ef2aSThomas Huth         break;
1434694bcaa8SBeata Michalska     case KVM_EXIT_ARM_NISV:
1435694bcaa8SBeata Michalska         /* External DABT with no valid iss to decode */
1436694bcaa8SBeata Michalska         ret = kvm_arm_handle_dabt_nisv(cs, run->arm_nisv.esr_iss,
1437694bcaa8SBeata Michalska                                        run->arm_nisv.fault_ipa);
1438694bcaa8SBeata Michalska         break;
1439fcf5ef2aSThomas Huth     default:
1440fcf5ef2aSThomas Huth         qemu_log_mask(LOG_UNIMP, "%s: un-handled exit reason %d\n",
1441fcf5ef2aSThomas Huth                       __func__, run->exit_reason);
1442fcf5ef2aSThomas Huth         break;
1443fcf5ef2aSThomas Huth     }
1444fcf5ef2aSThomas Huth     return ret;
1445fcf5ef2aSThomas Huth }
1446fcf5ef2aSThomas Huth 
1447fcf5ef2aSThomas Huth bool kvm_arch_stop_on_emulation_error(CPUState *cs)
1448fcf5ef2aSThomas Huth {
1449fcf5ef2aSThomas Huth     return true;
1450fcf5ef2aSThomas Huth }
1451fcf5ef2aSThomas Huth 
1452fcf5ef2aSThomas Huth int kvm_arch_process_async_events(CPUState *cs)
1453fcf5ef2aSThomas Huth {
1454fcf5ef2aSThomas Huth     return 0;
1455fcf5ef2aSThomas Huth }
1456fcf5ef2aSThomas Huth 
1457ec4145f7SRichard Henderson /**
1458ea79c599SRichard Henderson  * kvm_arm_hw_debug_active:
1459ea79c599SRichard Henderson  * @cs: CPU State
1460ea79c599SRichard Henderson  *
1461ea79c599SRichard Henderson  * Return: TRUE if any hardware breakpoints in use.
1462ea79c599SRichard Henderson  */
1463ea79c599SRichard Henderson static bool kvm_arm_hw_debug_active(CPUState *cs)
1464ea79c599SRichard Henderson {
1465ea79c599SRichard Henderson     return ((cur_hw_wps > 0) || (cur_hw_bps > 0));
1466ea79c599SRichard Henderson }
1467ea79c599SRichard Henderson 
1468ea79c599SRichard Henderson /**
1469ec4145f7SRichard Henderson  * kvm_arm_copy_hw_debug_data:
1470ec4145f7SRichard Henderson  * @ptr: kvm_guest_debug_arch structure
1471ec4145f7SRichard Henderson  *
1472ec4145f7SRichard Henderson  * Copy the architecture specific debug registers into the
1473ec4145f7SRichard Henderson  * kvm_guest_debug ioctl structure.
1474ec4145f7SRichard Henderson  */
1475ec4145f7SRichard Henderson static void kvm_arm_copy_hw_debug_data(struct kvm_guest_debug_arch *ptr)
1476ec4145f7SRichard Henderson {
1477ec4145f7SRichard Henderson     int i;
1478ec4145f7SRichard Henderson     memset(ptr, 0, sizeof(struct kvm_guest_debug_arch));
1479ec4145f7SRichard Henderson 
1480ec4145f7SRichard Henderson     for (i = 0; i < max_hw_wps; i++) {
1481ec4145f7SRichard Henderson         HWWatchpoint *wp = get_hw_wp(i);
1482ec4145f7SRichard Henderson         ptr->dbg_wcr[i] = wp->wcr;
1483ec4145f7SRichard Henderson         ptr->dbg_wvr[i] = wp->wvr;
1484ec4145f7SRichard Henderson     }
1485ec4145f7SRichard Henderson     for (i = 0; i < max_hw_bps; i++) {
1486ec4145f7SRichard Henderson         HWBreakpoint *bp = get_hw_bp(i);
1487ec4145f7SRichard Henderson         ptr->dbg_bcr[i] = bp->bcr;
1488ec4145f7SRichard Henderson         ptr->dbg_bvr[i] = bp->bvr;
1489ec4145f7SRichard Henderson     }
1490ec4145f7SRichard Henderson }
1491ec4145f7SRichard Henderson 
1492fcf5ef2aSThomas Huth void kvm_arch_update_guest_debug(CPUState *cs, struct kvm_guest_debug *dbg)
1493fcf5ef2aSThomas Huth {
1494fcf5ef2aSThomas Huth     if (kvm_sw_breakpoints_active(cs)) {
1495fcf5ef2aSThomas Huth         dbg->control |= KVM_GUESTDBG_ENABLE | KVM_GUESTDBG_USE_SW_BP;
1496fcf5ef2aSThomas Huth     }
1497fcf5ef2aSThomas Huth     if (kvm_arm_hw_debug_active(cs)) {
1498fcf5ef2aSThomas Huth         dbg->control |= KVM_GUESTDBG_ENABLE | KVM_GUESTDBG_USE_HW;
1499fcf5ef2aSThomas Huth         kvm_arm_copy_hw_debug_data(&dbg->arch);
1500fcf5ef2aSThomas Huth     }
1501fcf5ef2aSThomas Huth }
1502fcf5ef2aSThomas Huth 
1503fcf5ef2aSThomas Huth void kvm_arch_init_irq_routing(KVMState *s)
1504fcf5ef2aSThomas Huth {
1505fcf5ef2aSThomas Huth }
1506fcf5ef2aSThomas Huth 
15074376c40dSPaolo Bonzini int kvm_arch_irqchip_create(KVMState *s)
1508fcf5ef2aSThomas Huth {
15094376c40dSPaolo Bonzini     if (kvm_kernel_irqchip_split()) {
151047c182feSCornelia Huck         error_report("-machine kernel_irqchip=split is not supported on ARM.");
1511fcf5ef2aSThomas Huth         exit(1);
1512fcf5ef2aSThomas Huth     }
1513fcf5ef2aSThomas Huth 
1514fcf5ef2aSThomas Huth     /* If we can create the VGIC using the newer device control API, we
1515fcf5ef2aSThomas Huth      * let the device do this when it initializes itself, otherwise we
1516fcf5ef2aSThomas Huth      * fall back to the old API */
1517fcf5ef2aSThomas Huth     return kvm_check_extension(s, KVM_CAP_DEVICE_CTRL);
1518fcf5ef2aSThomas Huth }
1519fcf5ef2aSThomas Huth 
1520fcf5ef2aSThomas Huth int kvm_arm_vgic_probe(void)
1521fcf5ef2aSThomas Huth {
1522d45efe47SEric Auger     int val = 0;
1523d45efe47SEric Auger 
1524fcf5ef2aSThomas Huth     if (kvm_create_device(kvm_state,
1525fcf5ef2aSThomas Huth                           KVM_DEV_TYPE_ARM_VGIC_V3, true) == 0) {
1526d45efe47SEric Auger         val |= KVM_ARM_VGIC_V3;
1527fcf5ef2aSThomas Huth     }
1528d45efe47SEric Auger     if (kvm_create_device(kvm_state,
1529d45efe47SEric Auger                           KVM_DEV_TYPE_ARM_VGIC_V2, true) == 0) {
1530d45efe47SEric Auger         val |= KVM_ARM_VGIC_V2;
1531d45efe47SEric Auger     }
1532d45efe47SEric Auger     return val;
1533fcf5ef2aSThomas Huth }
1534fcf5ef2aSThomas Huth 
1535f6530926SEric Auger int kvm_arm_set_irq(int cpu, int irqtype, int irq, int level)
1536f6530926SEric Auger {
1537f6530926SEric Auger     int kvm_irq = (irqtype << KVM_ARM_IRQ_TYPE_SHIFT) | irq;
1538f6530926SEric Auger     int cpu_idx1 = cpu % 256;
1539f6530926SEric Auger     int cpu_idx2 = cpu / 256;
1540f6530926SEric Auger 
1541f6530926SEric Auger     kvm_irq |= (cpu_idx1 << KVM_ARM_IRQ_VCPU_SHIFT) |
1542f6530926SEric Auger                (cpu_idx2 << KVM_ARM_IRQ_VCPU2_SHIFT);
1543f6530926SEric Auger 
1544f6530926SEric Auger     return kvm_set_irq(kvm_state, kvm_irq, !!level);
1545f6530926SEric Auger }
1546f6530926SEric Auger 
1547fcf5ef2aSThomas Huth int kvm_arch_fixup_msi_route(struct kvm_irq_routing_entry *route,
1548fcf5ef2aSThomas Huth                              uint64_t address, uint32_t data, PCIDevice *dev)
1549fcf5ef2aSThomas Huth {
1550b05c81d2SEric Auger     AddressSpace *as = pci_device_iommu_address_space(dev);
1551b05c81d2SEric Auger     hwaddr xlat, len, doorbell_gpa;
1552b05c81d2SEric Auger     MemoryRegionSection mrs;
1553b05c81d2SEric Auger     MemoryRegion *mr;
1554b05c81d2SEric Auger 
1555b05c81d2SEric Auger     if (as == &address_space_memory) {
1556fcf5ef2aSThomas Huth         return 0;
1557fcf5ef2aSThomas Huth     }
1558fcf5ef2aSThomas Huth 
1559b05c81d2SEric Auger     /* MSI doorbell address is translated by an IOMMU */
1560b05c81d2SEric Auger 
1561dfa0d9b8SHamza Mahfooz     RCU_READ_LOCK_GUARD();
1562dfa0d9b8SHamza Mahfooz 
1563bc6b1cecSPeter Maydell     mr = address_space_translate(as, address, &xlat, &len, true,
1564bc6b1cecSPeter Maydell                                  MEMTXATTRS_UNSPECIFIED);
1565dfa0d9b8SHamza Mahfooz 
1566b05c81d2SEric Auger     if (!mr) {
1567dfa0d9b8SHamza Mahfooz         return 1;
1568b05c81d2SEric Auger     }
1569dfa0d9b8SHamza Mahfooz 
1570b05c81d2SEric Auger     mrs = memory_region_find(mr, xlat, 1);
1571dfa0d9b8SHamza Mahfooz 
1572b05c81d2SEric Auger     if (!mrs.mr) {
1573dfa0d9b8SHamza Mahfooz         return 1;
1574b05c81d2SEric Auger     }
1575b05c81d2SEric Auger 
1576b05c81d2SEric Auger     doorbell_gpa = mrs.offset_within_address_space;
1577b05c81d2SEric Auger     memory_region_unref(mrs.mr);
1578b05c81d2SEric Auger 
1579b05c81d2SEric Auger     route->u.msi.address_lo = doorbell_gpa;
1580b05c81d2SEric Auger     route->u.msi.address_hi = doorbell_gpa >> 32;
1581b05c81d2SEric Auger 
1582b05c81d2SEric Auger     trace_kvm_arm_fixup_msi_route(address, doorbell_gpa);
1583b05c81d2SEric Auger 
1584dfa0d9b8SHamza Mahfooz     return 0;
1585b05c81d2SEric Auger }
1586b05c81d2SEric Auger 
1587fcf5ef2aSThomas Huth int kvm_arch_add_msi_route_post(struct kvm_irq_routing_entry *route,
1588fcf5ef2aSThomas Huth                                 int vector, PCIDevice *dev)
1589fcf5ef2aSThomas Huth {
1590fcf5ef2aSThomas Huth     return 0;
1591fcf5ef2aSThomas Huth }
1592fcf5ef2aSThomas Huth 
1593fcf5ef2aSThomas Huth int kvm_arch_release_virq_post(int virq)
1594fcf5ef2aSThomas Huth {
1595fcf5ef2aSThomas Huth     return 0;
1596fcf5ef2aSThomas Huth }
1597fcf5ef2aSThomas Huth 
1598fcf5ef2aSThomas Huth int kvm_arch_msi_data_to_gsi(uint32_t data)
1599fcf5ef2aSThomas Huth {
1600fcf5ef2aSThomas Huth     return (data - 32) & 0xffff;
1601fcf5ef2aSThomas Huth }
160292a5199bSTom Lendacky 
160392a5199bSTom Lendacky bool kvm_arch_cpu_check_are_resettable(void)
160492a5199bSTom Lendacky {
160592a5199bSTom Lendacky     return true;
160692a5199bSTom Lendacky }
16073dba0a33SPaolo Bonzini 
1608c8f2eb5dSShameer Kolothum static void kvm_arch_get_eager_split_size(Object *obj, Visitor *v,
1609c8f2eb5dSShameer Kolothum                                           const char *name, void *opaque,
1610c8f2eb5dSShameer Kolothum                                           Error **errp)
1611c8f2eb5dSShameer Kolothum {
1612c8f2eb5dSShameer Kolothum     KVMState *s = KVM_STATE(obj);
1613c8f2eb5dSShameer Kolothum     uint64_t value = s->kvm_eager_split_size;
1614c8f2eb5dSShameer Kolothum 
1615c8f2eb5dSShameer Kolothum     visit_type_size(v, name, &value, errp);
1616c8f2eb5dSShameer Kolothum }
1617c8f2eb5dSShameer Kolothum 
1618c8f2eb5dSShameer Kolothum static void kvm_arch_set_eager_split_size(Object *obj, Visitor *v,
1619c8f2eb5dSShameer Kolothum                                           const char *name, void *opaque,
1620c8f2eb5dSShameer Kolothum                                           Error **errp)
1621c8f2eb5dSShameer Kolothum {
1622c8f2eb5dSShameer Kolothum     KVMState *s = KVM_STATE(obj);
1623c8f2eb5dSShameer Kolothum     uint64_t value;
1624c8f2eb5dSShameer Kolothum 
1625c8f2eb5dSShameer Kolothum     if (s->fd != -1) {
1626c8f2eb5dSShameer Kolothum         error_setg(errp, "Unable to set early-split-size after KVM has been initialized");
1627c8f2eb5dSShameer Kolothum         return;
1628c8f2eb5dSShameer Kolothum     }
1629c8f2eb5dSShameer Kolothum 
1630c8f2eb5dSShameer Kolothum     if (!visit_type_size(v, name, &value, errp)) {
1631c8f2eb5dSShameer Kolothum         return;
1632c8f2eb5dSShameer Kolothum     }
1633c8f2eb5dSShameer Kolothum 
1634c8f2eb5dSShameer Kolothum     if (value && !is_power_of_2(value)) {
1635c8f2eb5dSShameer Kolothum         error_setg(errp, "early-split-size must be a power of two");
1636c8f2eb5dSShameer Kolothum         return;
1637c8f2eb5dSShameer Kolothum     }
1638c8f2eb5dSShameer Kolothum 
1639c8f2eb5dSShameer Kolothum     s->kvm_eager_split_size = value;
1640c8f2eb5dSShameer Kolothum }
1641c8f2eb5dSShameer Kolothum 
16423dba0a33SPaolo Bonzini void kvm_arch_accel_class_init(ObjectClass *oc)
16433dba0a33SPaolo Bonzini {
1644c8f2eb5dSShameer Kolothum     object_class_property_add(oc, "eager-split-size", "size",
1645c8f2eb5dSShameer Kolothum                               kvm_arch_get_eager_split_size,
1646c8f2eb5dSShameer Kolothum                               kvm_arch_set_eager_split_size, NULL, NULL);
1647c8f2eb5dSShameer Kolothum 
1648c8f2eb5dSShameer Kolothum     object_class_property_set_description(oc, "eager-split-size",
1649c8f2eb5dSShameer Kolothum         "Eager Page Split chunk size for hugepages. (default: 0, disabled)");
16503dba0a33SPaolo Bonzini }
1651de3c9601SRichard Henderson 
1652de3c9601SRichard Henderson int kvm_arch_insert_hw_breakpoint(vaddr addr, vaddr len, int type)
1653de3c9601SRichard Henderson {
1654de3c9601SRichard Henderson     switch (type) {
1655de3c9601SRichard Henderson     case GDB_BREAKPOINT_HW:
1656de3c9601SRichard Henderson         return insert_hw_breakpoint(addr);
1657de3c9601SRichard Henderson         break;
1658de3c9601SRichard Henderson     case GDB_WATCHPOINT_READ:
1659de3c9601SRichard Henderson     case GDB_WATCHPOINT_WRITE:
1660de3c9601SRichard Henderson     case GDB_WATCHPOINT_ACCESS:
1661de3c9601SRichard Henderson         return insert_hw_watchpoint(addr, len, type);
1662de3c9601SRichard Henderson     default:
1663de3c9601SRichard Henderson         return -ENOSYS;
1664de3c9601SRichard Henderson     }
1665de3c9601SRichard Henderson }
1666de3c9601SRichard Henderson 
1667de3c9601SRichard Henderson int kvm_arch_remove_hw_breakpoint(vaddr addr, vaddr len, int type)
1668de3c9601SRichard Henderson {
1669de3c9601SRichard Henderson     switch (type) {
1670de3c9601SRichard Henderson     case GDB_BREAKPOINT_HW:
1671de3c9601SRichard Henderson         return delete_hw_breakpoint(addr);
1672de3c9601SRichard Henderson     case GDB_WATCHPOINT_READ:
1673de3c9601SRichard Henderson     case GDB_WATCHPOINT_WRITE:
1674de3c9601SRichard Henderson     case GDB_WATCHPOINT_ACCESS:
1675de3c9601SRichard Henderson         return delete_hw_watchpoint(addr, len, type);
1676de3c9601SRichard Henderson     default:
1677de3c9601SRichard Henderson         return -ENOSYS;
1678de3c9601SRichard Henderson     }
1679de3c9601SRichard Henderson }
1680de3c9601SRichard Henderson 
1681de3c9601SRichard Henderson void kvm_arch_remove_all_hw_breakpoints(void)
1682de3c9601SRichard Henderson {
1683de3c9601SRichard Henderson     if (cur_hw_wps > 0) {
1684de3c9601SRichard Henderson         g_array_remove_range(hw_watchpoints, 0, cur_hw_wps);
1685de3c9601SRichard Henderson     }
1686de3c9601SRichard Henderson     if (cur_hw_bps > 0) {
1687de3c9601SRichard Henderson         g_array_remove_range(hw_breakpoints, 0, cur_hw_bps);
1688de3c9601SRichard Henderson     }
1689de3c9601SRichard Henderson }
1690de3c9601SRichard Henderson 
1691e77034f7SPhilippe Mathieu-Daudé static bool kvm_arm_set_device_attr(ARMCPU *cpu, struct kvm_device_attr *attr,
1692de3c9601SRichard Henderson                                     const char *name)
1693de3c9601SRichard Henderson {
1694de3c9601SRichard Henderson     int err;
1695de3c9601SRichard Henderson 
1696e77034f7SPhilippe Mathieu-Daudé     err = kvm_vcpu_ioctl(CPU(cpu), KVM_HAS_DEVICE_ATTR, attr);
1697de3c9601SRichard Henderson     if (err != 0) {
1698de3c9601SRichard Henderson         error_report("%s: KVM_HAS_DEVICE_ATTR: %s", name, strerror(-err));
1699de3c9601SRichard Henderson         return false;
1700de3c9601SRichard Henderson     }
1701de3c9601SRichard Henderson 
1702e77034f7SPhilippe Mathieu-Daudé     err = kvm_vcpu_ioctl(CPU(cpu), KVM_SET_DEVICE_ATTR, attr);
1703de3c9601SRichard Henderson     if (err != 0) {
1704de3c9601SRichard Henderson         error_report("%s: KVM_SET_DEVICE_ATTR: %s", name, strerror(-err));
1705de3c9601SRichard Henderson         return false;
1706de3c9601SRichard Henderson     }
1707de3c9601SRichard Henderson 
1708de3c9601SRichard Henderson     return true;
1709de3c9601SRichard Henderson }
1710de3c9601SRichard Henderson 
1711d344f5baSPhilippe Mathieu-Daudé void kvm_arm_pmu_init(ARMCPU *cpu)
1712de3c9601SRichard Henderson {
1713de3c9601SRichard Henderson     struct kvm_device_attr attr = {
1714de3c9601SRichard Henderson         .group = KVM_ARM_VCPU_PMU_V3_CTRL,
1715de3c9601SRichard Henderson         .attr = KVM_ARM_VCPU_PMU_V3_INIT,
1716de3c9601SRichard Henderson     };
1717de3c9601SRichard Henderson 
1718d344f5baSPhilippe Mathieu-Daudé     if (!cpu->has_pmu) {
1719de3c9601SRichard Henderson         return;
1720de3c9601SRichard Henderson     }
1721d344f5baSPhilippe Mathieu-Daudé     if (!kvm_arm_set_device_attr(cpu, &attr, "PMU")) {
1722de3c9601SRichard Henderson         error_report("failed to init PMU");
1723de3c9601SRichard Henderson         abort();
1724de3c9601SRichard Henderson     }
1725de3c9601SRichard Henderson }
1726de3c9601SRichard Henderson 
17275ed84f3bSPhilippe Mathieu-Daudé void kvm_arm_pmu_set_irq(ARMCPU *cpu, int irq)
1728de3c9601SRichard Henderson {
1729de3c9601SRichard Henderson     struct kvm_device_attr attr = {
1730de3c9601SRichard Henderson         .group = KVM_ARM_VCPU_PMU_V3_CTRL,
1731de3c9601SRichard Henderson         .addr = (intptr_t)&irq,
1732de3c9601SRichard Henderson         .attr = KVM_ARM_VCPU_PMU_V3_IRQ,
1733de3c9601SRichard Henderson     };
1734de3c9601SRichard Henderson 
17355ed84f3bSPhilippe Mathieu-Daudé     if (!cpu->has_pmu) {
1736de3c9601SRichard Henderson         return;
1737de3c9601SRichard Henderson     }
17385ed84f3bSPhilippe Mathieu-Daudé     if (!kvm_arm_set_device_attr(cpu, &attr, "PMU")) {
1739de3c9601SRichard Henderson         error_report("failed to set irq for PMU");
1740de3c9601SRichard Henderson         abort();
1741de3c9601SRichard Henderson     }
1742de3c9601SRichard Henderson }
1743de3c9601SRichard Henderson 
174455503372SPhilippe Mathieu-Daudé void kvm_arm_pvtime_init(ARMCPU *cpu, uint64_t ipa)
1745de3c9601SRichard Henderson {
1746de3c9601SRichard Henderson     struct kvm_device_attr attr = {
1747de3c9601SRichard Henderson         .group = KVM_ARM_VCPU_PVTIME_CTRL,
1748de3c9601SRichard Henderson         .attr = KVM_ARM_VCPU_PVTIME_IPA,
1749de3c9601SRichard Henderson         .addr = (uint64_t)&ipa,
1750de3c9601SRichard Henderson     };
1751de3c9601SRichard Henderson 
175255503372SPhilippe Mathieu-Daudé     if (cpu->kvm_steal_time == ON_OFF_AUTO_OFF) {
1753de3c9601SRichard Henderson         return;
1754de3c9601SRichard Henderson     }
175555503372SPhilippe Mathieu-Daudé     if (!kvm_arm_set_device_attr(cpu, &attr, "PVTIME IPA")) {
1756de3c9601SRichard Henderson         error_report("failed to init PVTIME IPA");
1757de3c9601SRichard Henderson         abort();
1758de3c9601SRichard Henderson     }
1759de3c9601SRichard Henderson }
1760de3c9601SRichard Henderson 
1761de3c9601SRichard Henderson void kvm_arm_steal_time_finalize(ARMCPU *cpu, Error **errp)
1762de3c9601SRichard Henderson {
1763de3c9601SRichard Henderson     bool has_steal_time = kvm_check_extension(kvm_state, KVM_CAP_STEAL_TIME);
1764de3c9601SRichard Henderson 
1765de3c9601SRichard Henderson     if (cpu->kvm_steal_time == ON_OFF_AUTO_AUTO) {
1766de3c9601SRichard Henderson         if (!has_steal_time || !arm_feature(&cpu->env, ARM_FEATURE_AARCH64)) {
1767de3c9601SRichard Henderson             cpu->kvm_steal_time = ON_OFF_AUTO_OFF;
1768de3c9601SRichard Henderson         } else {
1769de3c9601SRichard Henderson             cpu->kvm_steal_time = ON_OFF_AUTO_ON;
1770de3c9601SRichard Henderson         }
1771de3c9601SRichard Henderson     } else if (cpu->kvm_steal_time == ON_OFF_AUTO_ON) {
1772de3c9601SRichard Henderson         if (!has_steal_time) {
1773de3c9601SRichard Henderson             error_setg(errp, "'kvm-steal-time' cannot be enabled "
1774de3c9601SRichard Henderson                              "on this host");
1775de3c9601SRichard Henderson             return;
1776de3c9601SRichard Henderson         } else if (!arm_feature(&cpu->env, ARM_FEATURE_AARCH64)) {
1777de3c9601SRichard Henderson             /*
1778de3c9601SRichard Henderson              * DEN0057A chapter 2 says "This specification only covers
1779de3c9601SRichard Henderson              * systems in which the Execution state of the hypervisor
1780de3c9601SRichard Henderson              * as well as EL1 of virtual machines is AArch64.". And,
1781de3c9601SRichard Henderson              * to ensure that, the smc/hvc calls are only specified as
1782de3c9601SRichard Henderson              * smc64/hvc64.
1783de3c9601SRichard Henderson              */
1784de3c9601SRichard Henderson             error_setg(errp, "'kvm-steal-time' cannot be enabled "
1785de3c9601SRichard Henderson                              "for AArch32 guests");
1786de3c9601SRichard Henderson             return;
1787de3c9601SRichard Henderson         }
1788de3c9601SRichard Henderson     }
1789de3c9601SRichard Henderson }
1790de3c9601SRichard Henderson 
1791de3c9601SRichard Henderson bool kvm_arm_aarch32_supported(void)
1792de3c9601SRichard Henderson {
1793de3c9601SRichard Henderson     return kvm_check_extension(kvm_state, KVM_CAP_ARM_EL1_32BIT);
1794de3c9601SRichard Henderson }
1795de3c9601SRichard Henderson 
1796de3c9601SRichard Henderson bool kvm_arm_sve_supported(void)
1797de3c9601SRichard Henderson {
1798de3c9601SRichard Henderson     return kvm_check_extension(kvm_state, KVM_CAP_ARM_SVE);
1799de3c9601SRichard Henderson }
1800de3c9601SRichard Henderson 
1801de3c9601SRichard Henderson QEMU_BUILD_BUG_ON(KVM_ARM64_SVE_VQ_MIN != 1);
1802de3c9601SRichard Henderson 
1803d6339282SPhilippe Mathieu-Daudé uint32_t kvm_arm_sve_get_vls(ARMCPU *cpu)
1804de3c9601SRichard Henderson {
1805de3c9601SRichard Henderson     /* Only call this function if kvm_arm_sve_supported() returns true. */
1806de3c9601SRichard Henderson     static uint64_t vls[KVM_ARM64_SVE_VLS_WORDS];
1807de3c9601SRichard Henderson     static bool probed;
1808de3c9601SRichard Henderson     uint32_t vq = 0;
1809de3c9601SRichard Henderson     int i;
1810de3c9601SRichard Henderson 
1811de3c9601SRichard Henderson     /*
1812de3c9601SRichard Henderson      * KVM ensures all host CPUs support the same set of vector lengths.
1813de3c9601SRichard Henderson      * So we only need to create the scratch VCPUs once and then cache
1814de3c9601SRichard Henderson      * the results.
1815de3c9601SRichard Henderson      */
1816de3c9601SRichard Henderson     if (!probed) {
1817de3c9601SRichard Henderson         struct kvm_vcpu_init init = {
1818de3c9601SRichard Henderson             .target = -1,
1819de3c9601SRichard Henderson             .features[0] = (1 << KVM_ARM_VCPU_SVE),
1820de3c9601SRichard Henderson         };
1821de3c9601SRichard Henderson         struct kvm_one_reg reg = {
1822de3c9601SRichard Henderson             .id = KVM_REG_ARM64_SVE_VLS,
1823de3c9601SRichard Henderson             .addr = (uint64_t)&vls[0],
1824de3c9601SRichard Henderson         };
1825de3c9601SRichard Henderson         int fdarray[3], ret;
1826de3c9601SRichard Henderson 
1827de3c9601SRichard Henderson         probed = true;
1828de3c9601SRichard Henderson 
1829de3c9601SRichard Henderson         if (!kvm_arm_create_scratch_host_vcpu(NULL, fdarray, &init)) {
1830de3c9601SRichard Henderson             error_report("failed to create scratch VCPU with SVE enabled");
1831de3c9601SRichard Henderson             abort();
1832de3c9601SRichard Henderson         }
1833de3c9601SRichard Henderson         ret = ioctl(fdarray[2], KVM_GET_ONE_REG, &reg);
1834de3c9601SRichard Henderson         kvm_arm_destroy_scratch_host_vcpu(fdarray);
1835de3c9601SRichard Henderson         if (ret) {
1836de3c9601SRichard Henderson             error_report("failed to get KVM_REG_ARM64_SVE_VLS: %s",
1837de3c9601SRichard Henderson                          strerror(errno));
1838de3c9601SRichard Henderson             abort();
1839de3c9601SRichard Henderson         }
1840de3c9601SRichard Henderson 
1841de3c9601SRichard Henderson         for (i = KVM_ARM64_SVE_VLS_WORDS - 1; i >= 0; --i) {
1842de3c9601SRichard Henderson             if (vls[i]) {
1843de3c9601SRichard Henderson                 vq = 64 - clz64(vls[i]) + i * 64;
1844de3c9601SRichard Henderson                 break;
1845de3c9601SRichard Henderson             }
1846de3c9601SRichard Henderson         }
1847de3c9601SRichard Henderson         if (vq > ARM_MAX_VQ) {
1848de3c9601SRichard Henderson             warn_report("KVM supports vector lengths larger than "
1849de3c9601SRichard Henderson                         "QEMU can enable");
1850de3c9601SRichard Henderson             vls[0] &= MAKE_64BIT_MASK(0, ARM_MAX_VQ);
1851de3c9601SRichard Henderson         }
1852de3c9601SRichard Henderson     }
1853de3c9601SRichard Henderson 
1854de3c9601SRichard Henderson     return vls[0];
1855de3c9601SRichard Henderson }
1856de3c9601SRichard Henderson 
1857bc1b09b3SPhilippe Mathieu-Daudé static int kvm_arm_sve_set_vls(ARMCPU *cpu)
1858de3c9601SRichard Henderson {
1859de3c9601SRichard Henderson     uint64_t vls[KVM_ARM64_SVE_VLS_WORDS] = { cpu->sve_vq.map };
1860de3c9601SRichard Henderson 
1861de3c9601SRichard Henderson     assert(cpu->sve_max_vq <= KVM_ARM64_SVE_VQ_MAX);
1862de3c9601SRichard Henderson 
1863bc1b09b3SPhilippe Mathieu-Daudé     return kvm_set_one_reg(CPU(cpu), KVM_REG_ARM64_SVE_VLS, &vls[0]);
1864de3c9601SRichard Henderson }
1865de3c9601SRichard Henderson 
1866de3c9601SRichard Henderson #define ARM_CPU_ID_MPIDR       3, 0, 0, 0, 5
1867de3c9601SRichard Henderson 
1868de3c9601SRichard Henderson int kvm_arch_init_vcpu(CPUState *cs)
1869de3c9601SRichard Henderson {
1870de3c9601SRichard Henderson     int ret;
1871de3c9601SRichard Henderson     uint64_t mpidr;
1872de3c9601SRichard Henderson     ARMCPU *cpu = ARM_CPU(cs);
1873de3c9601SRichard Henderson     CPUARMState *env = &cpu->env;
1874de3c9601SRichard Henderson     uint64_t psciver;
1875de3c9601SRichard Henderson 
1876de3c9601SRichard Henderson     if (cpu->kvm_target == QEMU_KVM_ARM_TARGET_NONE ||
1877de3c9601SRichard Henderson         !object_dynamic_cast(OBJECT(cpu), TYPE_AARCH64_CPU)) {
1878de3c9601SRichard Henderson         error_report("KVM is not supported for this guest CPU type");
1879de3c9601SRichard Henderson         return -EINVAL;
1880de3c9601SRichard Henderson     }
1881de3c9601SRichard Henderson 
1882de3c9601SRichard Henderson     qemu_add_vm_change_state_handler(kvm_arm_vm_state_change, cs);
1883de3c9601SRichard Henderson 
1884de3c9601SRichard Henderson     /* Determine init features for this CPU */
1885de3c9601SRichard Henderson     memset(cpu->kvm_init_features, 0, sizeof(cpu->kvm_init_features));
1886de3c9601SRichard Henderson     if (cs->start_powered_off) {
1887de3c9601SRichard Henderson         cpu->kvm_init_features[0] |= 1 << KVM_ARM_VCPU_POWER_OFF;
1888de3c9601SRichard Henderson     }
1889de3c9601SRichard Henderson     if (kvm_check_extension(cs->kvm_state, KVM_CAP_ARM_PSCI_0_2)) {
1890de3c9601SRichard Henderson         cpu->psci_version = QEMU_PSCI_VERSION_0_2;
1891de3c9601SRichard Henderson         cpu->kvm_init_features[0] |= 1 << KVM_ARM_VCPU_PSCI_0_2;
1892de3c9601SRichard Henderson     }
1893de3c9601SRichard Henderson     if (!arm_feature(&cpu->env, ARM_FEATURE_AARCH64)) {
1894de3c9601SRichard Henderson         cpu->kvm_init_features[0] |= 1 << KVM_ARM_VCPU_EL1_32BIT;
1895de3c9601SRichard Henderson     }
1896de3c9601SRichard Henderson     if (!kvm_check_extension(cs->kvm_state, KVM_CAP_ARM_PMU_V3)) {
1897de3c9601SRichard Henderson         cpu->has_pmu = false;
1898de3c9601SRichard Henderson     }
1899de3c9601SRichard Henderson     if (cpu->has_pmu) {
1900de3c9601SRichard Henderson         cpu->kvm_init_features[0] |= 1 << KVM_ARM_VCPU_PMU_V3;
1901de3c9601SRichard Henderson     } else {
1902de3c9601SRichard Henderson         env->features &= ~(1ULL << ARM_FEATURE_PMU);
1903de3c9601SRichard Henderson     }
1904de3c9601SRichard Henderson     if (cpu_isar_feature(aa64_sve, cpu)) {
1905de3c9601SRichard Henderson         assert(kvm_arm_sve_supported());
1906de3c9601SRichard Henderson         cpu->kvm_init_features[0] |= 1 << KVM_ARM_VCPU_SVE;
1907de3c9601SRichard Henderson     }
1908de3c9601SRichard Henderson     if (cpu_isar_feature(aa64_pauth, cpu)) {
1909de3c9601SRichard Henderson         cpu->kvm_init_features[0] |= (1 << KVM_ARM_VCPU_PTRAUTH_ADDRESS |
1910de3c9601SRichard Henderson                                       1 << KVM_ARM_VCPU_PTRAUTH_GENERIC);
1911de3c9601SRichard Henderson     }
1912de3c9601SRichard Henderson 
1913de3c9601SRichard Henderson     /* Do KVM_ARM_VCPU_INIT ioctl */
1914*bbb22d58SPhilippe Mathieu-Daudé     ret = kvm_arm_vcpu_init(cpu);
1915de3c9601SRichard Henderson     if (ret) {
1916de3c9601SRichard Henderson         return ret;
1917de3c9601SRichard Henderson     }
1918de3c9601SRichard Henderson 
1919de3c9601SRichard Henderson     if (cpu_isar_feature(aa64_sve, cpu)) {
1920bc1b09b3SPhilippe Mathieu-Daudé         ret = kvm_arm_sve_set_vls(cpu);
1921de3c9601SRichard Henderson         if (ret) {
1922de3c9601SRichard Henderson             return ret;
1923de3c9601SRichard Henderson         }
1924de3c9601SRichard Henderson         ret = kvm_arm_vcpu_finalize(cs, KVM_ARM_VCPU_SVE);
1925de3c9601SRichard Henderson         if (ret) {
1926de3c9601SRichard Henderson             return ret;
1927de3c9601SRichard Henderson         }
1928de3c9601SRichard Henderson     }
1929de3c9601SRichard Henderson 
1930de3c9601SRichard Henderson     /*
1931de3c9601SRichard Henderson      * KVM reports the exact PSCI version it is implementing via a
1932de3c9601SRichard Henderson      * special sysreg. If it is present, use its contents to determine
1933de3c9601SRichard Henderson      * what to report to the guest in the dtb (it is the PSCI version,
1934de3c9601SRichard Henderson      * in the same 15-bits major 16-bits minor format that PSCI_VERSION
1935de3c9601SRichard Henderson      * returns).
1936de3c9601SRichard Henderson      */
1937de3c9601SRichard Henderson     if (!kvm_get_one_reg(cs, KVM_REG_ARM_PSCI_VERSION, &psciver)) {
1938de3c9601SRichard Henderson         cpu->psci_version = psciver;
1939de3c9601SRichard Henderson     }
1940de3c9601SRichard Henderson 
1941de3c9601SRichard Henderson     /*
1942de3c9601SRichard Henderson      * When KVM is in use, PSCI is emulated in-kernel and not by qemu.
1943de3c9601SRichard Henderson      * Currently KVM has its own idea about MPIDR assignment, so we
1944de3c9601SRichard Henderson      * override our defaults with what we get from KVM.
1945de3c9601SRichard Henderson      */
1946de3c9601SRichard Henderson     ret = kvm_get_one_reg(cs, ARM64_SYS_REG(ARM_CPU_ID_MPIDR), &mpidr);
1947de3c9601SRichard Henderson     if (ret) {
1948de3c9601SRichard Henderson         return ret;
1949de3c9601SRichard Henderson     }
1950de3c9601SRichard Henderson     cpu->mp_affinity = mpidr & ARM64_AFFINITY_MASK;
1951de3c9601SRichard Henderson 
1952de3c9601SRichard Henderson     return kvm_arm_init_cpreg_list(cpu);
1953de3c9601SRichard Henderson }
1954de3c9601SRichard Henderson 
1955de3c9601SRichard Henderson int kvm_arch_destroy_vcpu(CPUState *cs)
1956de3c9601SRichard Henderson {
1957de3c9601SRichard Henderson     return 0;
1958de3c9601SRichard Henderson }
1959de3c9601SRichard Henderson 
1960de3c9601SRichard Henderson /* Callers must hold the iothread mutex lock */
1961de3c9601SRichard Henderson static void kvm_inject_arm_sea(CPUState *c)
1962de3c9601SRichard Henderson {
1963de3c9601SRichard Henderson     ARMCPU *cpu = ARM_CPU(c);
1964de3c9601SRichard Henderson     CPUARMState *env = &cpu->env;
1965de3c9601SRichard Henderson     uint32_t esr;
1966de3c9601SRichard Henderson     bool same_el;
1967de3c9601SRichard Henderson 
1968de3c9601SRichard Henderson     c->exception_index = EXCP_DATA_ABORT;
1969de3c9601SRichard Henderson     env->exception.target_el = 1;
1970de3c9601SRichard Henderson 
1971de3c9601SRichard Henderson     /*
1972de3c9601SRichard Henderson      * Set the DFSC to synchronous external abort and set FnV to not valid,
1973de3c9601SRichard Henderson      * this will tell guest the FAR_ELx is UNKNOWN for this abort.
1974de3c9601SRichard Henderson      */
1975de3c9601SRichard Henderson     same_el = arm_current_el(env) == env->exception.target_el;
1976de3c9601SRichard Henderson     esr = syn_data_abort_no_iss(same_el, 1, 0, 0, 0, 0, 0x10);
1977de3c9601SRichard Henderson 
1978de3c9601SRichard Henderson     env->exception.syndrome = esr;
1979de3c9601SRichard Henderson 
1980de3c9601SRichard Henderson     arm_cpu_do_interrupt(c);
1981de3c9601SRichard Henderson }
1982de3c9601SRichard Henderson 
1983de3c9601SRichard Henderson #define AARCH64_CORE_REG(x)   (KVM_REG_ARM64 | KVM_REG_SIZE_U64 | \
1984de3c9601SRichard Henderson                  KVM_REG_ARM_CORE | KVM_REG_ARM_CORE_REG(x))
1985de3c9601SRichard Henderson 
1986de3c9601SRichard Henderson #define AARCH64_SIMD_CORE_REG(x)   (KVM_REG_ARM64 | KVM_REG_SIZE_U128 | \
1987de3c9601SRichard Henderson                  KVM_REG_ARM_CORE | KVM_REG_ARM_CORE_REG(x))
1988de3c9601SRichard Henderson 
1989de3c9601SRichard Henderson #define AARCH64_SIMD_CTRL_REG(x)   (KVM_REG_ARM64 | KVM_REG_SIZE_U32 | \
1990de3c9601SRichard Henderson                  KVM_REG_ARM_CORE | KVM_REG_ARM_CORE_REG(x))
1991de3c9601SRichard Henderson 
1992de3c9601SRichard Henderson static int kvm_arch_put_fpsimd(CPUState *cs)
1993de3c9601SRichard Henderson {
1994de3c9601SRichard Henderson     CPUARMState *env = &ARM_CPU(cs)->env;
1995de3c9601SRichard Henderson     int i, ret;
1996de3c9601SRichard Henderson 
1997de3c9601SRichard Henderson     for (i = 0; i < 32; i++) {
1998de3c9601SRichard Henderson         uint64_t *q = aa64_vfp_qreg(env, i);
1999de3c9601SRichard Henderson #if HOST_BIG_ENDIAN
2000de3c9601SRichard Henderson         uint64_t fp_val[2] = { q[1], q[0] };
2001de3c9601SRichard Henderson         ret = kvm_set_one_reg(cs, AARCH64_SIMD_CORE_REG(fp_regs.vregs[i]),
2002de3c9601SRichard Henderson                                                         fp_val);
2003de3c9601SRichard Henderson #else
2004de3c9601SRichard Henderson         ret = kvm_set_one_reg(cs, AARCH64_SIMD_CORE_REG(fp_regs.vregs[i]), q);
2005de3c9601SRichard Henderson #endif
2006de3c9601SRichard Henderson         if (ret) {
2007de3c9601SRichard Henderson             return ret;
2008de3c9601SRichard Henderson         }
2009de3c9601SRichard Henderson     }
2010de3c9601SRichard Henderson 
2011de3c9601SRichard Henderson     return 0;
2012de3c9601SRichard Henderson }
2013de3c9601SRichard Henderson 
2014de3c9601SRichard Henderson /*
2015de3c9601SRichard Henderson  * KVM SVE registers come in slices where ZREGs have a slice size of 2048 bits
2016de3c9601SRichard Henderson  * and PREGS and the FFR have a slice size of 256 bits. However we simply hard
2017de3c9601SRichard Henderson  * code the slice index to zero for now as it's unlikely we'll need more than
2018de3c9601SRichard Henderson  * one slice for quite some time.
2019de3c9601SRichard Henderson  */
2020de3c9601SRichard Henderson static int kvm_arch_put_sve(CPUState *cs)
2021de3c9601SRichard Henderson {
2022de3c9601SRichard Henderson     ARMCPU *cpu = ARM_CPU(cs);
2023de3c9601SRichard Henderson     CPUARMState *env = &cpu->env;
2024de3c9601SRichard Henderson     uint64_t tmp[ARM_MAX_VQ * 2];
2025de3c9601SRichard Henderson     uint64_t *r;
2026de3c9601SRichard Henderson     int n, ret;
2027de3c9601SRichard Henderson 
2028de3c9601SRichard Henderson     for (n = 0; n < KVM_ARM64_SVE_NUM_ZREGS; ++n) {
2029de3c9601SRichard Henderson         r = sve_bswap64(tmp, &env->vfp.zregs[n].d[0], cpu->sve_max_vq * 2);
2030de3c9601SRichard Henderson         ret = kvm_set_one_reg(cs, KVM_REG_ARM64_SVE_ZREG(n, 0), r);
2031de3c9601SRichard Henderson         if (ret) {
2032de3c9601SRichard Henderson             return ret;
2033de3c9601SRichard Henderson         }
2034de3c9601SRichard Henderson     }
2035de3c9601SRichard Henderson 
2036de3c9601SRichard Henderson     for (n = 0; n < KVM_ARM64_SVE_NUM_PREGS; ++n) {
2037de3c9601SRichard Henderson         r = sve_bswap64(tmp, r = &env->vfp.pregs[n].p[0],
2038de3c9601SRichard Henderson                         DIV_ROUND_UP(cpu->sve_max_vq * 2, 8));
2039de3c9601SRichard Henderson         ret = kvm_set_one_reg(cs, KVM_REG_ARM64_SVE_PREG(n, 0), r);
2040de3c9601SRichard Henderson         if (ret) {
2041de3c9601SRichard Henderson             return ret;
2042de3c9601SRichard Henderson         }
2043de3c9601SRichard Henderson     }
2044de3c9601SRichard Henderson 
2045de3c9601SRichard Henderson     r = sve_bswap64(tmp, &env->vfp.pregs[FFR_PRED_NUM].p[0],
2046de3c9601SRichard Henderson                     DIV_ROUND_UP(cpu->sve_max_vq * 2, 8));
2047de3c9601SRichard Henderson     ret = kvm_set_one_reg(cs, KVM_REG_ARM64_SVE_FFR(0), r);
2048de3c9601SRichard Henderson     if (ret) {
2049de3c9601SRichard Henderson         return ret;
2050de3c9601SRichard Henderson     }
2051de3c9601SRichard Henderson 
2052de3c9601SRichard Henderson     return 0;
2053de3c9601SRichard Henderson }
2054de3c9601SRichard Henderson 
2055de3c9601SRichard Henderson int kvm_arch_put_registers(CPUState *cs, int level)
2056de3c9601SRichard Henderson {
2057de3c9601SRichard Henderson     uint64_t val;
2058de3c9601SRichard Henderson     uint32_t fpr;
2059de3c9601SRichard Henderson     int i, ret;
2060de3c9601SRichard Henderson     unsigned int el;
2061de3c9601SRichard Henderson 
2062de3c9601SRichard Henderson     ARMCPU *cpu = ARM_CPU(cs);
2063de3c9601SRichard Henderson     CPUARMState *env = &cpu->env;
2064de3c9601SRichard Henderson 
2065de3c9601SRichard Henderson     /* If we are in AArch32 mode then we need to copy the AArch32 regs to the
2066de3c9601SRichard Henderson      * AArch64 registers before pushing them out to 64-bit KVM.
2067de3c9601SRichard Henderson      */
2068de3c9601SRichard Henderson     if (!is_a64(env)) {
2069de3c9601SRichard Henderson         aarch64_sync_32_to_64(env);
2070de3c9601SRichard Henderson     }
2071de3c9601SRichard Henderson 
2072de3c9601SRichard Henderson     for (i = 0; i < 31; i++) {
2073de3c9601SRichard Henderson         ret = kvm_set_one_reg(cs, AARCH64_CORE_REG(regs.regs[i]),
2074de3c9601SRichard Henderson                               &env->xregs[i]);
2075de3c9601SRichard Henderson         if (ret) {
2076de3c9601SRichard Henderson             return ret;
2077de3c9601SRichard Henderson         }
2078de3c9601SRichard Henderson     }
2079de3c9601SRichard Henderson 
2080de3c9601SRichard Henderson     /* KVM puts SP_EL0 in regs.sp and SP_EL1 in regs.sp_el1. On the
2081de3c9601SRichard Henderson      * QEMU side we keep the current SP in xregs[31] as well.
2082de3c9601SRichard Henderson      */
2083de3c9601SRichard Henderson     aarch64_save_sp(env, 1);
2084de3c9601SRichard Henderson 
2085de3c9601SRichard Henderson     ret = kvm_set_one_reg(cs, AARCH64_CORE_REG(regs.sp), &env->sp_el[0]);
2086de3c9601SRichard Henderson     if (ret) {
2087de3c9601SRichard Henderson         return ret;
2088de3c9601SRichard Henderson     }
2089de3c9601SRichard Henderson 
2090de3c9601SRichard Henderson     ret = kvm_set_one_reg(cs, AARCH64_CORE_REG(sp_el1), &env->sp_el[1]);
2091de3c9601SRichard Henderson     if (ret) {
2092de3c9601SRichard Henderson         return ret;
2093de3c9601SRichard Henderson     }
2094de3c9601SRichard Henderson 
2095de3c9601SRichard Henderson     /* Note that KVM thinks pstate is 64 bit but we use a uint32_t */
2096de3c9601SRichard Henderson     if (is_a64(env)) {
2097de3c9601SRichard Henderson         val = pstate_read(env);
2098de3c9601SRichard Henderson     } else {
2099de3c9601SRichard Henderson         val = cpsr_read(env);
2100de3c9601SRichard Henderson     }
2101de3c9601SRichard Henderson     ret = kvm_set_one_reg(cs, AARCH64_CORE_REG(regs.pstate), &val);
2102de3c9601SRichard Henderson     if (ret) {
2103de3c9601SRichard Henderson         return ret;
2104de3c9601SRichard Henderson     }
2105de3c9601SRichard Henderson 
2106de3c9601SRichard Henderson     ret = kvm_set_one_reg(cs, AARCH64_CORE_REG(regs.pc), &env->pc);
2107de3c9601SRichard Henderson     if (ret) {
2108de3c9601SRichard Henderson         return ret;
2109de3c9601SRichard Henderson     }
2110de3c9601SRichard Henderson 
2111de3c9601SRichard Henderson     ret = kvm_set_one_reg(cs, AARCH64_CORE_REG(elr_el1), &env->elr_el[1]);
2112de3c9601SRichard Henderson     if (ret) {
2113de3c9601SRichard Henderson         return ret;
2114de3c9601SRichard Henderson     }
2115de3c9601SRichard Henderson 
2116de3c9601SRichard Henderson     /* Saved Program State Registers
2117de3c9601SRichard Henderson      *
2118de3c9601SRichard Henderson      * Before we restore from the banked_spsr[] array we need to
2119de3c9601SRichard Henderson      * ensure that any modifications to env->spsr are correctly
2120de3c9601SRichard Henderson      * reflected in the banks.
2121de3c9601SRichard Henderson      */
2122de3c9601SRichard Henderson     el = arm_current_el(env);
2123de3c9601SRichard Henderson     if (el > 0 && !is_a64(env)) {
2124de3c9601SRichard Henderson         i = bank_number(env->uncached_cpsr & CPSR_M);
2125de3c9601SRichard Henderson         env->banked_spsr[i] = env->spsr;
2126de3c9601SRichard Henderson     }
2127de3c9601SRichard Henderson 
2128de3c9601SRichard Henderson     /* KVM 0-4 map to QEMU banks 1-5 */
2129de3c9601SRichard Henderson     for (i = 0; i < KVM_NR_SPSR; i++) {
2130de3c9601SRichard Henderson         ret = kvm_set_one_reg(cs, AARCH64_CORE_REG(spsr[i]),
2131de3c9601SRichard Henderson                               &env->banked_spsr[i + 1]);
2132de3c9601SRichard Henderson         if (ret) {
2133de3c9601SRichard Henderson             return ret;
2134de3c9601SRichard Henderson         }
2135de3c9601SRichard Henderson     }
2136de3c9601SRichard Henderson 
2137de3c9601SRichard Henderson     if (cpu_isar_feature(aa64_sve, cpu)) {
2138de3c9601SRichard Henderson         ret = kvm_arch_put_sve(cs);
2139de3c9601SRichard Henderson     } else {
2140de3c9601SRichard Henderson         ret = kvm_arch_put_fpsimd(cs);
2141de3c9601SRichard Henderson     }
2142de3c9601SRichard Henderson     if (ret) {
2143de3c9601SRichard Henderson         return ret;
2144de3c9601SRichard Henderson     }
2145de3c9601SRichard Henderson 
2146de3c9601SRichard Henderson     fpr = vfp_get_fpsr(env);
2147de3c9601SRichard Henderson     ret = kvm_set_one_reg(cs, AARCH64_SIMD_CTRL_REG(fp_regs.fpsr), &fpr);
2148de3c9601SRichard Henderson     if (ret) {
2149de3c9601SRichard Henderson         return ret;
2150de3c9601SRichard Henderson     }
2151de3c9601SRichard Henderson 
2152de3c9601SRichard Henderson     fpr = vfp_get_fpcr(env);
2153de3c9601SRichard Henderson     ret = kvm_set_one_reg(cs, AARCH64_SIMD_CTRL_REG(fp_regs.fpcr), &fpr);
2154de3c9601SRichard Henderson     if (ret) {
2155de3c9601SRichard Henderson         return ret;
2156de3c9601SRichard Henderson     }
2157de3c9601SRichard Henderson 
2158de3c9601SRichard Henderson     write_cpustate_to_list(cpu, true);
2159de3c9601SRichard Henderson 
2160de3c9601SRichard Henderson     if (!write_list_to_kvmstate(cpu, level)) {
2161de3c9601SRichard Henderson         return -EINVAL;
2162de3c9601SRichard Henderson     }
2163de3c9601SRichard Henderson 
2164de3c9601SRichard Henderson    /*
2165de3c9601SRichard Henderson     * Setting VCPU events should be triggered after syncing the registers
2166de3c9601SRichard Henderson     * to avoid overwriting potential changes made by KVM upon calling
2167de3c9601SRichard Henderson     * KVM_SET_VCPU_EVENTS ioctl
2168de3c9601SRichard Henderson     */
2169de3c9601SRichard Henderson     ret = kvm_put_vcpu_events(cpu);
2170de3c9601SRichard Henderson     if (ret) {
2171de3c9601SRichard Henderson         return ret;
2172de3c9601SRichard Henderson     }
2173de3c9601SRichard Henderson 
217471c34911SRichard Henderson     return kvm_arm_sync_mpstate_to_kvm(cpu);
2175de3c9601SRichard Henderson }
2176de3c9601SRichard Henderson 
2177de3c9601SRichard Henderson static int kvm_arch_get_fpsimd(CPUState *cs)
2178de3c9601SRichard Henderson {
2179de3c9601SRichard Henderson     CPUARMState *env = &ARM_CPU(cs)->env;
2180de3c9601SRichard Henderson     int i, ret;
2181de3c9601SRichard Henderson 
2182de3c9601SRichard Henderson     for (i = 0; i < 32; i++) {
2183de3c9601SRichard Henderson         uint64_t *q = aa64_vfp_qreg(env, i);
2184de3c9601SRichard Henderson         ret = kvm_get_one_reg(cs, AARCH64_SIMD_CORE_REG(fp_regs.vregs[i]), q);
2185de3c9601SRichard Henderson         if (ret) {
2186de3c9601SRichard Henderson             return ret;
2187de3c9601SRichard Henderson         } else {
2188de3c9601SRichard Henderson #if HOST_BIG_ENDIAN
2189de3c9601SRichard Henderson             uint64_t t;
2190de3c9601SRichard Henderson             t = q[0], q[0] = q[1], q[1] = t;
2191de3c9601SRichard Henderson #endif
2192de3c9601SRichard Henderson         }
2193de3c9601SRichard Henderson     }
2194de3c9601SRichard Henderson 
2195de3c9601SRichard Henderson     return 0;
2196de3c9601SRichard Henderson }
2197de3c9601SRichard Henderson 
2198de3c9601SRichard Henderson /*
2199de3c9601SRichard Henderson  * KVM SVE registers come in slices where ZREGs have a slice size of 2048 bits
2200de3c9601SRichard Henderson  * and PREGS and the FFR have a slice size of 256 bits. However we simply hard
2201de3c9601SRichard Henderson  * code the slice index to zero for now as it's unlikely we'll need more than
2202de3c9601SRichard Henderson  * one slice for quite some time.
2203de3c9601SRichard Henderson  */
2204de3c9601SRichard Henderson static int kvm_arch_get_sve(CPUState *cs)
2205de3c9601SRichard Henderson {
2206de3c9601SRichard Henderson     ARMCPU *cpu = ARM_CPU(cs);
2207de3c9601SRichard Henderson     CPUARMState *env = &cpu->env;
2208de3c9601SRichard Henderson     uint64_t *r;
2209de3c9601SRichard Henderson     int n, ret;
2210de3c9601SRichard Henderson 
2211de3c9601SRichard Henderson     for (n = 0; n < KVM_ARM64_SVE_NUM_ZREGS; ++n) {
2212de3c9601SRichard Henderson         r = &env->vfp.zregs[n].d[0];
2213de3c9601SRichard Henderson         ret = kvm_get_one_reg(cs, KVM_REG_ARM64_SVE_ZREG(n, 0), r);
2214de3c9601SRichard Henderson         if (ret) {
2215de3c9601SRichard Henderson             return ret;
2216de3c9601SRichard Henderson         }
2217de3c9601SRichard Henderson         sve_bswap64(r, r, cpu->sve_max_vq * 2);
2218de3c9601SRichard Henderson     }
2219de3c9601SRichard Henderson 
2220de3c9601SRichard Henderson     for (n = 0; n < KVM_ARM64_SVE_NUM_PREGS; ++n) {
2221de3c9601SRichard Henderson         r = &env->vfp.pregs[n].p[0];
2222de3c9601SRichard Henderson         ret = kvm_get_one_reg(cs, KVM_REG_ARM64_SVE_PREG(n, 0), r);
2223de3c9601SRichard Henderson         if (ret) {
2224de3c9601SRichard Henderson             return ret;
2225de3c9601SRichard Henderson         }
2226de3c9601SRichard Henderson         sve_bswap64(r, r, DIV_ROUND_UP(cpu->sve_max_vq * 2, 8));
2227de3c9601SRichard Henderson     }
2228de3c9601SRichard Henderson 
2229de3c9601SRichard Henderson     r = &env->vfp.pregs[FFR_PRED_NUM].p[0];
2230de3c9601SRichard Henderson     ret = kvm_get_one_reg(cs, KVM_REG_ARM64_SVE_FFR(0), r);
2231de3c9601SRichard Henderson     if (ret) {
2232de3c9601SRichard Henderson         return ret;
2233de3c9601SRichard Henderson     }
2234de3c9601SRichard Henderson     sve_bswap64(r, r, DIV_ROUND_UP(cpu->sve_max_vq * 2, 8));
2235de3c9601SRichard Henderson 
2236de3c9601SRichard Henderson     return 0;
2237de3c9601SRichard Henderson }
2238de3c9601SRichard Henderson 
2239de3c9601SRichard Henderson int kvm_arch_get_registers(CPUState *cs)
2240de3c9601SRichard Henderson {
2241de3c9601SRichard Henderson     uint64_t val;
2242de3c9601SRichard Henderson     unsigned int el;
2243de3c9601SRichard Henderson     uint32_t fpr;
2244de3c9601SRichard Henderson     int i, ret;
2245de3c9601SRichard Henderson 
2246de3c9601SRichard Henderson     ARMCPU *cpu = ARM_CPU(cs);
2247de3c9601SRichard Henderson     CPUARMState *env = &cpu->env;
2248de3c9601SRichard Henderson 
2249de3c9601SRichard Henderson     for (i = 0; i < 31; i++) {
2250de3c9601SRichard Henderson         ret = kvm_get_one_reg(cs, AARCH64_CORE_REG(regs.regs[i]),
2251de3c9601SRichard Henderson                               &env->xregs[i]);
2252de3c9601SRichard Henderson         if (ret) {
2253de3c9601SRichard Henderson             return ret;
2254de3c9601SRichard Henderson         }
2255de3c9601SRichard Henderson     }
2256de3c9601SRichard Henderson 
2257de3c9601SRichard Henderson     ret = kvm_get_one_reg(cs, AARCH64_CORE_REG(regs.sp), &env->sp_el[0]);
2258de3c9601SRichard Henderson     if (ret) {
2259de3c9601SRichard Henderson         return ret;
2260de3c9601SRichard Henderson     }
2261de3c9601SRichard Henderson 
2262de3c9601SRichard Henderson     ret = kvm_get_one_reg(cs, AARCH64_CORE_REG(sp_el1), &env->sp_el[1]);
2263de3c9601SRichard Henderson     if (ret) {
2264de3c9601SRichard Henderson         return ret;
2265de3c9601SRichard Henderson     }
2266de3c9601SRichard Henderson 
2267de3c9601SRichard Henderson     ret = kvm_get_one_reg(cs, AARCH64_CORE_REG(regs.pstate), &val);
2268de3c9601SRichard Henderson     if (ret) {
2269de3c9601SRichard Henderson         return ret;
2270de3c9601SRichard Henderson     }
2271de3c9601SRichard Henderson 
2272de3c9601SRichard Henderson     env->aarch64 = ((val & PSTATE_nRW) == 0);
2273de3c9601SRichard Henderson     if (is_a64(env)) {
2274de3c9601SRichard Henderson         pstate_write(env, val);
2275de3c9601SRichard Henderson     } else {
2276de3c9601SRichard Henderson         cpsr_write(env, val, 0xffffffff, CPSRWriteRaw);
2277de3c9601SRichard Henderson     }
2278de3c9601SRichard Henderson 
2279de3c9601SRichard Henderson     /* KVM puts SP_EL0 in regs.sp and SP_EL1 in regs.sp_el1. On the
2280de3c9601SRichard Henderson      * QEMU side we keep the current SP in xregs[31] as well.
2281de3c9601SRichard Henderson      */
2282de3c9601SRichard Henderson     aarch64_restore_sp(env, 1);
2283de3c9601SRichard Henderson 
2284de3c9601SRichard Henderson     ret = kvm_get_one_reg(cs, AARCH64_CORE_REG(regs.pc), &env->pc);
2285de3c9601SRichard Henderson     if (ret) {
2286de3c9601SRichard Henderson         return ret;
2287de3c9601SRichard Henderson     }
2288de3c9601SRichard Henderson 
2289de3c9601SRichard Henderson     /* If we are in AArch32 mode then we need to sync the AArch32 regs with the
2290de3c9601SRichard Henderson      * incoming AArch64 regs received from 64-bit KVM.
2291de3c9601SRichard Henderson      * We must perform this after all of the registers have been acquired from
2292de3c9601SRichard Henderson      * the kernel.
2293de3c9601SRichard Henderson      */
2294de3c9601SRichard Henderson     if (!is_a64(env)) {
2295de3c9601SRichard Henderson         aarch64_sync_64_to_32(env);
2296de3c9601SRichard Henderson     }
2297de3c9601SRichard Henderson 
2298de3c9601SRichard Henderson     ret = kvm_get_one_reg(cs, AARCH64_CORE_REG(elr_el1), &env->elr_el[1]);
2299de3c9601SRichard Henderson     if (ret) {
2300de3c9601SRichard Henderson         return ret;
2301de3c9601SRichard Henderson     }
2302de3c9601SRichard Henderson 
2303de3c9601SRichard Henderson     /* Fetch the SPSR registers
2304de3c9601SRichard Henderson      *
2305de3c9601SRichard Henderson      * KVM SPSRs 0-4 map to QEMU banks 1-5
2306de3c9601SRichard Henderson      */
2307de3c9601SRichard Henderson     for (i = 0; i < KVM_NR_SPSR; i++) {
2308de3c9601SRichard Henderson         ret = kvm_get_one_reg(cs, AARCH64_CORE_REG(spsr[i]),
2309de3c9601SRichard Henderson                               &env->banked_spsr[i + 1]);
2310de3c9601SRichard Henderson         if (ret) {
2311de3c9601SRichard Henderson             return ret;
2312de3c9601SRichard Henderson         }
2313de3c9601SRichard Henderson     }
2314de3c9601SRichard Henderson 
2315de3c9601SRichard Henderson     el = arm_current_el(env);
2316de3c9601SRichard Henderson     if (el > 0 && !is_a64(env)) {
2317de3c9601SRichard Henderson         i = bank_number(env->uncached_cpsr & CPSR_M);
2318de3c9601SRichard Henderson         env->spsr = env->banked_spsr[i];
2319de3c9601SRichard Henderson     }
2320de3c9601SRichard Henderson 
2321de3c9601SRichard Henderson     if (cpu_isar_feature(aa64_sve, cpu)) {
2322de3c9601SRichard Henderson         ret = kvm_arch_get_sve(cs);
2323de3c9601SRichard Henderson     } else {
2324de3c9601SRichard Henderson         ret = kvm_arch_get_fpsimd(cs);
2325de3c9601SRichard Henderson     }
2326de3c9601SRichard Henderson     if (ret) {
2327de3c9601SRichard Henderson         return ret;
2328de3c9601SRichard Henderson     }
2329de3c9601SRichard Henderson 
2330de3c9601SRichard Henderson     ret = kvm_get_one_reg(cs, AARCH64_SIMD_CTRL_REG(fp_regs.fpsr), &fpr);
2331de3c9601SRichard Henderson     if (ret) {
2332de3c9601SRichard Henderson         return ret;
2333de3c9601SRichard Henderson     }
2334de3c9601SRichard Henderson     vfp_set_fpsr(env, fpr);
2335de3c9601SRichard Henderson 
2336de3c9601SRichard Henderson     ret = kvm_get_one_reg(cs, AARCH64_SIMD_CTRL_REG(fp_regs.fpcr), &fpr);
2337de3c9601SRichard Henderson     if (ret) {
2338de3c9601SRichard Henderson         return ret;
2339de3c9601SRichard Henderson     }
2340de3c9601SRichard Henderson     vfp_set_fpcr(env, fpr);
2341de3c9601SRichard Henderson 
2342de3c9601SRichard Henderson     ret = kvm_get_vcpu_events(cpu);
2343de3c9601SRichard Henderson     if (ret) {
2344de3c9601SRichard Henderson         return ret;
2345de3c9601SRichard Henderson     }
2346de3c9601SRichard Henderson 
2347de3c9601SRichard Henderson     if (!write_kvmstate_to_list(cpu)) {
2348de3c9601SRichard Henderson         return -EINVAL;
2349de3c9601SRichard Henderson     }
2350de3c9601SRichard Henderson     /* Note that it's OK to have registers which aren't in CPUState,
2351de3c9601SRichard Henderson      * so we can ignore a failure return here.
2352de3c9601SRichard Henderson      */
2353de3c9601SRichard Henderson     write_list_to_cpustate(cpu);
2354de3c9601SRichard Henderson 
235571c34911SRichard Henderson     ret = kvm_arm_sync_mpstate_to_qemu(cpu);
2356de3c9601SRichard Henderson 
2357de3c9601SRichard Henderson     /* TODO: other registers */
2358de3c9601SRichard Henderson     return ret;
2359de3c9601SRichard Henderson }
2360de3c9601SRichard Henderson 
2361de3c9601SRichard Henderson void kvm_arch_on_sigbus_vcpu(CPUState *c, int code, void *addr)
2362de3c9601SRichard Henderson {
2363de3c9601SRichard Henderson     ram_addr_t ram_addr;
2364de3c9601SRichard Henderson     hwaddr paddr;
2365de3c9601SRichard Henderson 
2366de3c9601SRichard Henderson     assert(code == BUS_MCEERR_AR || code == BUS_MCEERR_AO);
2367de3c9601SRichard Henderson 
2368de3c9601SRichard Henderson     if (acpi_ghes_present() && addr) {
2369de3c9601SRichard Henderson         ram_addr = qemu_ram_addr_from_host(addr);
2370de3c9601SRichard Henderson         if (ram_addr != RAM_ADDR_INVALID &&
2371de3c9601SRichard Henderson             kvm_physical_memory_addr_from_host(c->kvm_state, addr, &paddr)) {
2372de3c9601SRichard Henderson             kvm_hwpoison_page_add(ram_addr);
2373de3c9601SRichard Henderson             /*
2374de3c9601SRichard Henderson              * If this is a BUS_MCEERR_AR, we know we have been called
2375de3c9601SRichard Henderson              * synchronously from the vCPU thread, so we can easily
2376de3c9601SRichard Henderson              * synchronize the state and inject an error.
2377de3c9601SRichard Henderson              *
2378de3c9601SRichard Henderson              * TODO: we currently don't tell the guest at all about
2379de3c9601SRichard Henderson              * BUS_MCEERR_AO. In that case we might either be being
2380de3c9601SRichard Henderson              * called synchronously from the vCPU thread, or a bit
2381de3c9601SRichard Henderson              * later from the main thread, so doing the injection of
2382de3c9601SRichard Henderson              * the error would be more complicated.
2383de3c9601SRichard Henderson              */
2384de3c9601SRichard Henderson             if (code == BUS_MCEERR_AR) {
2385de3c9601SRichard Henderson                 kvm_cpu_synchronize_state(c);
2386de3c9601SRichard Henderson                 if (!acpi_ghes_record_errors(ACPI_HEST_SRC_ID_SEA, paddr)) {
2387de3c9601SRichard Henderson                     kvm_inject_arm_sea(c);
2388de3c9601SRichard Henderson                 } else {
2389de3c9601SRichard Henderson                     error_report("failed to record the error");
2390de3c9601SRichard Henderson                     abort();
2391de3c9601SRichard Henderson                 }
2392de3c9601SRichard Henderson             }
2393de3c9601SRichard Henderson             return;
2394de3c9601SRichard Henderson         }
2395de3c9601SRichard Henderson         if (code == BUS_MCEERR_AO) {
2396de3c9601SRichard Henderson             error_report("Hardware memory error at addr %p for memory used by "
2397de3c9601SRichard Henderson                 "QEMU itself instead of guest system!", addr);
2398de3c9601SRichard Henderson         }
2399de3c9601SRichard Henderson     }
2400de3c9601SRichard Henderson 
2401de3c9601SRichard Henderson     if (code == BUS_MCEERR_AR) {
2402de3c9601SRichard Henderson         error_report("Hardware memory error!");
2403de3c9601SRichard Henderson         exit(1);
2404de3c9601SRichard Henderson     }
2405de3c9601SRichard Henderson }
2406de3c9601SRichard Henderson 
2407de3c9601SRichard Henderson /* C6.6.29 BRK instruction */
2408de3c9601SRichard Henderson static const uint32_t brk_insn = 0xd4200000;
2409de3c9601SRichard Henderson 
2410de3c9601SRichard Henderson int kvm_arch_insert_sw_breakpoint(CPUState *cs, struct kvm_sw_breakpoint *bp)
2411de3c9601SRichard Henderson {
2412de3c9601SRichard Henderson     if (cpu_memory_rw_debug(cs, bp->pc, (uint8_t *)&bp->saved_insn, 4, 0) ||
2413de3c9601SRichard Henderson         cpu_memory_rw_debug(cs, bp->pc, (uint8_t *)&brk_insn, 4, 1)) {
2414de3c9601SRichard Henderson         return -EINVAL;
2415de3c9601SRichard Henderson     }
2416de3c9601SRichard Henderson     return 0;
2417de3c9601SRichard Henderson }
2418de3c9601SRichard Henderson 
2419de3c9601SRichard Henderson int kvm_arch_remove_sw_breakpoint(CPUState *cs, struct kvm_sw_breakpoint *bp)
2420de3c9601SRichard Henderson {
2421de3c9601SRichard Henderson     static uint32_t brk;
2422de3c9601SRichard Henderson 
2423de3c9601SRichard Henderson     if (cpu_memory_rw_debug(cs, bp->pc, (uint8_t *)&brk, 4, 0) ||
2424de3c9601SRichard Henderson         brk != brk_insn ||
2425de3c9601SRichard Henderson         cpu_memory_rw_debug(cs, bp->pc, (uint8_t *)&bp->saved_insn, 4, 1)) {
2426de3c9601SRichard Henderson         return -EINVAL;
2427de3c9601SRichard Henderson     }
2428de3c9601SRichard Henderson     return 0;
2429de3c9601SRichard Henderson }
2430