xref: /openbmc/linux/arch/arm64/include/asm/kvm_host.h (revision e87abb73)
1caab277bSThomas Gleixner /* SPDX-License-Identifier: GPL-2.0-only */
24f8d6632SMarc Zyngier /*
34f8d6632SMarc Zyngier  * Copyright (C) 2012,2013 - ARM Ltd
44f8d6632SMarc Zyngier  * Author: Marc Zyngier <marc.zyngier@arm.com>
54f8d6632SMarc Zyngier  *
64f8d6632SMarc Zyngier  * Derived from arch/arm/include/asm/kvm_host.h:
74f8d6632SMarc Zyngier  * Copyright (C) 2012 - Virtual Open Systems and Columbia University
84f8d6632SMarc Zyngier  * Author: Christoffer Dall <c.dall@virtualopensystems.com>
94f8d6632SMarc Zyngier  */
104f8d6632SMarc Zyngier 
114f8d6632SMarc Zyngier #ifndef __ARM64_KVM_HOST_H__
124f8d6632SMarc Zyngier #define __ARM64_KVM_HOST_H__
134f8d6632SMarc Zyngier 
1405469831SAndrew Scull #include <linux/arm-smccc.h>
153f61f409SDave Martin #include <linux/bitmap.h>
1665647300SPaolo Bonzini #include <linux/types.h>
173f61f409SDave Martin #include <linux/jump_label.h>
1865647300SPaolo Bonzini #include <linux/kvm_types.h>
193f61f409SDave Martin #include <linux/percpu.h>
20ff367fe4SDavid Brazdil #include <linux/psci.h>
2185738e05SJulien Thierry #include <asm/arch_gicv3.h>
223f61f409SDave Martin #include <asm/barrier.h>
2363a1e1c9SMark Rutland #include <asm/cpufeature.h>
241e0cf16cSMarc Zyngier #include <asm/cputype.h>
254f5abad9SJames Morse #include <asm/daifflags.h>
2617eed27bSDave Martin #include <asm/fpsimd.h>
274f8d6632SMarc Zyngier #include <asm/kvm.h>
283a3604bcSMarc Zyngier #include <asm/kvm_asm.h>
294f8d6632SMarc Zyngier 
30c1426e4cSEric Auger #define __KVM_HAVE_ARCH_INTC_INITIALIZED
31c1426e4cSEric Auger 
32920552b2SDavid Hildenbrand #define KVM_HALT_POLL_NS_DEFAULT 500000
334f8d6632SMarc Zyngier 
344f8d6632SMarc Zyngier #include <kvm/arm_vgic.h>
354f8d6632SMarc Zyngier #include <kvm/arm_arch_timer.h>
3604fe4726SShannon Zhao #include <kvm/arm_pmu.h>
374f8d6632SMarc Zyngier 
38ef748917SMing Lei #define KVM_MAX_VCPUS VGIC_V3_MAX_CPUS
39ef748917SMing Lei 
40a22fa321SAmit Daniel Kachhap #define KVM_VCPU_MAX_FEATURES 7
414f8d6632SMarc Zyngier 
427b244e2bSAndrew Jones #define KVM_REQ_SLEEP \
432387149eSAndrew Jones 	KVM_ARCH_REQ_FLAGS(0, KVM_REQUEST_WAIT | KVM_REQUEST_NO_WAKEUP)
44325f9c64SAndrew Jones #define KVM_REQ_IRQ_PENDING	KVM_ARCH_REQ(1)
45358b28f0SMarc Zyngier #define KVM_REQ_VCPU_RESET	KVM_ARCH_REQ(2)
468564d637SSteven Price #define KVM_REQ_RECORD_STEAL	KVM_ARCH_REQ(3)
47d9c3872cSMarc Zyngier #define KVM_REQ_RELOAD_GICv4	KVM_ARCH_REQ(4)
48d0c94c49SMarc Zyngier #define KVM_REQ_RELOAD_PMU	KVM_ARCH_REQ(5)
497b33a09dSOliver Upton #define KVM_REQ_SUSPEND		KVM_ARCH_REQ(6)
50b13216cfSChristoffer Dall 
51c862626eSKeqian Zhu #define KVM_DIRTY_LOG_MANUAL_CAPS   (KVM_DIRTY_LOG_MANUAL_PROTECT_ENABLE | \
52c862626eSKeqian Zhu 				     KVM_DIRTY_LOG_INITIALLY_SET)
53c862626eSKeqian Zhu 
54fcc5bf89SJing Zhang #define KVM_HAVE_MMU_RWLOCK
55fcc5bf89SJing Zhang 
56d8b369c4SDavid Brazdil /*
57d8b369c4SDavid Brazdil  * Mode of operation configurable with kvm-arm.mode early param.
58d8b369c4SDavid Brazdil  * See Documentation/admin-guide/kernel-parameters.txt for more information.
59d8b369c4SDavid Brazdil  */
60d8b369c4SDavid Brazdil enum kvm_mode {
61d8b369c4SDavid Brazdil 	KVM_MODE_DEFAULT,
62d8b369c4SDavid Brazdil 	KVM_MODE_PROTECTED,
63b6a68b97SMarc Zyngier 	KVM_MODE_NONE,
64d8b369c4SDavid Brazdil };
653eb681fbSDavid Brazdil enum kvm_mode kvm_get_mode(void);
66d8b369c4SDavid Brazdil 
6761bbe380SChristoffer Dall DECLARE_STATIC_KEY_FALSE(userspace_irqchip_in_use);
6861bbe380SChristoffer Dall 
699033bba4SDave Martin extern unsigned int kvm_sve_max_vl;
70a3be836dSDave Martin int kvm_arm_init_sve(void);
710f062bfeSDave Martin 
726b7982feSAnshuman Khandual u32 __attribute_const__ kvm_target_cpu(void);
734f8d6632SMarc Zyngier int kvm_reset_vcpu(struct kvm_vcpu *vcpu);
7419bcc89eSSean Christopherson void kvm_arm_vcpu_destroy(struct kvm_vcpu *vcpu);
754f8d6632SMarc Zyngier 
76e329fb75SChristoffer Dall struct kvm_vmid {
773248136bSJulien Grall 	atomic64_t id;
78e329fb75SChristoffer Dall };
79e329fb75SChristoffer Dall 
80a0e50aa3SChristoffer Dall struct kvm_s2_mmu {
81e329fb75SChristoffer Dall 	struct kvm_vmid vmid;
824f8d6632SMarc Zyngier 
83a0e50aa3SChristoffer Dall 	/*
84a0e50aa3SChristoffer Dall 	 * stage2 entry level table
85a0e50aa3SChristoffer Dall 	 *
86a0e50aa3SChristoffer Dall 	 * Two kvm_s2_mmu structures in the same VM can point to the same
87a0e50aa3SChristoffer Dall 	 * pgd here.  This happens when running a guest using a
88a0e50aa3SChristoffer Dall 	 * translation regime that isn't affected by its own stage-2
89a0e50aa3SChristoffer Dall 	 * translation, such as a non-VHE hypervisor running at vEL2, or
90a0e50aa3SChristoffer Dall 	 * for vEL1/EL0 with vHCR_EL2.VM == 0.  In that case, we use the
91a0e50aa3SChristoffer Dall 	 * canonical stage-2 page tables.
92a0e50aa3SChristoffer Dall 	 */
93e329fb75SChristoffer Dall 	phys_addr_t	pgd_phys;
9471233d05SWill Deacon 	struct kvm_pgtable *pgt;
954f8d6632SMarc Zyngier 
9694d0e598SMarc Zyngier 	/* The last vcpu id that ran on each physical CPU */
9794d0e598SMarc Zyngier 	int __percpu *last_vcpu_ran;
9894d0e598SMarc Zyngier 
99cfb1a98dSQuentin Perret 	struct kvm_arch *arch;
100a0e50aa3SChristoffer Dall };
101a0e50aa3SChristoffer Dall 
1028d14797bSWill Deacon struct kvm_arch_memory_slot {
1038d14797bSWill Deacon };
1048d14797bSWill Deacon 
10505714cabSRaghavendra Rao Ananta /**
10605714cabSRaghavendra Rao Ananta  * struct kvm_smccc_features: Descriptor of the hypercall services exposed to the guests
10705714cabSRaghavendra Rao Ananta  *
10805714cabSRaghavendra Rao Ananta  * @std_bmap: Bitmap of standard secure service calls
109428fd678SRaghavendra Rao Ananta  * @std_hyp_bmap: Bitmap of standard hypervisor service calls
110b22216e1SRaghavendra Rao Ananta  * @vendor_hyp_bmap: Bitmap of vendor specific hypervisor service calls
11105714cabSRaghavendra Rao Ananta  */
11205714cabSRaghavendra Rao Ananta struct kvm_smccc_features {
11305714cabSRaghavendra Rao Ananta 	unsigned long std_bmap;
114428fd678SRaghavendra Rao Ananta 	unsigned long std_hyp_bmap;
115b22216e1SRaghavendra Rao Ananta 	unsigned long vendor_hyp_bmap;
11605714cabSRaghavendra Rao Ananta };
11705714cabSRaghavendra Rao Ananta 
118a0e50aa3SChristoffer Dall struct kvm_arch {
119a0e50aa3SChristoffer Dall 	struct kvm_s2_mmu mmu;
120a0e50aa3SChristoffer Dall 
121a0e50aa3SChristoffer Dall 	/* VTCR_EL2 value for this VM */
122a0e50aa3SChristoffer Dall 	u64    vtcr;
123a0e50aa3SChristoffer Dall 
1244f8d6632SMarc Zyngier 	/* Interrupt controller */
1254f8d6632SMarc Zyngier 	struct vgic_dist	vgic;
12685bd0ba1SMarc Zyngier 
12785bd0ba1SMarc Zyngier 	/* Mandated version of PSCI */
12885bd0ba1SMarc Zyngier 	u32 psci_version;
129c726200dSChristoffer Dall 
130c726200dSChristoffer Dall 	/*
131c726200dSChristoffer Dall 	 * If we encounter a data abort without valid instruction syndrome
132c726200dSChristoffer Dall 	 * information, report this to user space.  User space can (and
133c726200dSChristoffer Dall 	 * should) opt in to this feature if KVM_CAP_ARM_NISV_TO_USER is
134c726200dSChristoffer Dall 	 * supported.
135c726200dSChristoffer Dall 	 */
13606394531SMarc Zyngier #define KVM_ARCH_FLAG_RETURN_NISV_IO_ABORT_TO_USER	0
13706394531SMarc Zyngier 	/* Memory Tagging Extension enabled for the guest */
13806394531SMarc Zyngier #define KVM_ARCH_FLAG_MTE_ENABLED			1
13906394531SMarc Zyngier 	/* At least one vCPU has ran in the VM */
14006394531SMarc Zyngier #define KVM_ARCH_FLAG_HAS_RAN_ONCE			2
14126bf74bdSReiji Watanabe 	/*
14226bf74bdSReiji Watanabe 	 * The following two bits are used to indicate the guest's EL1
14326bf74bdSReiji Watanabe 	 * register width configuration. A value of KVM_ARCH_FLAG_EL1_32BIT
14426bf74bdSReiji Watanabe 	 * bit is valid only when KVM_ARCH_FLAG_REG_WIDTH_CONFIGURED is set.
14526bf74bdSReiji Watanabe 	 * Otherwise, the guest's EL1 register width has not yet been
14626bf74bdSReiji Watanabe 	 * determined yet.
14726bf74bdSReiji Watanabe 	 */
14826bf74bdSReiji Watanabe #define KVM_ARCH_FLAG_REG_WIDTH_CONFIGURED		3
14926bf74bdSReiji Watanabe #define KVM_ARCH_FLAG_EL1_32BIT				4
150bfbab445SOliver Upton 	/* PSCI SYSTEM_SUSPEND enabled for the guest */
151bfbab445SOliver Upton #define KVM_ARCH_FLAG_SYSTEM_SUSPEND_ENABLED		5
15226bf74bdSReiji Watanabe 
15306394531SMarc Zyngier 	unsigned long flags;
154fd65a3b5SMarc Zyngier 
155d7eec236SMarc Zyngier 	/*
156d7eec236SMarc Zyngier 	 * VM-wide PMU filter, implemented as a bitmap and big enough for
157d7eec236SMarc Zyngier 	 * up to 2^10 events (ARMv8.0) or 2^16 events (ARMv8.1+).
158d7eec236SMarc Zyngier 	 */
159d7eec236SMarc Zyngier 	unsigned long *pmu_filter;
16046b18782SMarc Zyngier 	struct arm_pmu *arm_pmu;
16123711a5eSMarc Zyngier 
162583cda1bSAlexandru Elisei 	cpumask_var_t supported_cpus;
16323711a5eSMarc Zyngier 
16423711a5eSMarc Zyngier 	u8 pfr0_csv2;
1654f1df628SMarc Zyngier 	u8 pfr0_csv3;
16605714cabSRaghavendra Rao Ananta 
16705714cabSRaghavendra Rao Ananta 	/* Hypercall features firmware registers' descriptor */
16805714cabSRaghavendra Rao Ananta 	struct kvm_smccc_features smccc_feat;
1694f8d6632SMarc Zyngier };
1704f8d6632SMarc Zyngier 
1714f8d6632SMarc Zyngier struct kvm_vcpu_fault_info {
1720b12620fSAlexandru Elisei 	u64 esr_el2;		/* Hyp Syndrom Register */
1734f8d6632SMarc Zyngier 	u64 far_el2;		/* Hyp Fault Address Register */
1744f8d6632SMarc Zyngier 	u64 hpfar_el2;		/* Hyp IPA Fault Address Register */
1750067df41SJames Morse 	u64 disr_el1;		/* Deferred [SError] Status Register */
1764f8d6632SMarc Zyngier };
1774f8d6632SMarc Zyngier 
1789d8415d6SMarc Zyngier enum vcpu_sysreg {
1798f7f4fe7SMarc Zyngier 	__INVALID_SYSREG__,   /* 0 is reserved as an invalid value */
1809d8415d6SMarc Zyngier 	MPIDR_EL1,	/* MultiProcessor Affinity Register */
1819d8415d6SMarc Zyngier 	CSSELR_EL1,	/* Cache Size Selection Register */
1829d8415d6SMarc Zyngier 	SCTLR_EL1,	/* System Control Register */
1839d8415d6SMarc Zyngier 	ACTLR_EL1,	/* Auxiliary Control Register */
1849d8415d6SMarc Zyngier 	CPACR_EL1,	/* Coprocessor Access Control */
18573433762SDave Martin 	ZCR_EL1,	/* SVE Control */
1869d8415d6SMarc Zyngier 	TTBR0_EL1,	/* Translation Table Base Register 0 */
1879d8415d6SMarc Zyngier 	TTBR1_EL1,	/* Translation Table Base Register 1 */
1889d8415d6SMarc Zyngier 	TCR_EL1,	/* Translation Control Register */
1899d8415d6SMarc Zyngier 	ESR_EL1,	/* Exception Syndrome Register */
190ef769e32SAdam Buchbinder 	AFSR0_EL1,	/* Auxiliary Fault Status Register 0 */
191ef769e32SAdam Buchbinder 	AFSR1_EL1,	/* Auxiliary Fault Status Register 1 */
1929d8415d6SMarc Zyngier 	FAR_EL1,	/* Fault Address Register */
1939d8415d6SMarc Zyngier 	MAIR_EL1,	/* Memory Attribute Indirection Register */
1949d8415d6SMarc Zyngier 	VBAR_EL1,	/* Vector Base Address Register */
1959d8415d6SMarc Zyngier 	CONTEXTIDR_EL1,	/* Context ID Register */
1969d8415d6SMarc Zyngier 	TPIDR_EL0,	/* Thread ID, User R/W */
1979d8415d6SMarc Zyngier 	TPIDRRO_EL0,	/* Thread ID, User R/O */
1989d8415d6SMarc Zyngier 	TPIDR_EL1,	/* Thread ID, Privileged */
1999d8415d6SMarc Zyngier 	AMAIR_EL1,	/* Aux Memory Attribute Indirection Register */
2009d8415d6SMarc Zyngier 	CNTKCTL_EL1,	/* Timer Control Register (EL1) */
2019d8415d6SMarc Zyngier 	PAR_EL1,	/* Physical Address Register */
2029d8415d6SMarc Zyngier 	MDSCR_EL1,	/* Monitor Debug System Control Register */
2039d8415d6SMarc Zyngier 	MDCCINT_EL1,	/* Monitor Debug Comms Channel Interrupt Enable Reg */
204d42e2671SOliver Upton 	OSLSR_EL1,	/* OS Lock Status Register */
205c773ae2bSJames Morse 	DISR_EL1,	/* Deferred Interrupt Status Register */
2069d8415d6SMarc Zyngier 
207ab946834SShannon Zhao 	/* Performance Monitors Registers */
208ab946834SShannon Zhao 	PMCR_EL0,	/* Control Register */
2093965c3ceSShannon Zhao 	PMSELR_EL0,	/* Event Counter Selection Register */
210051ff581SShannon Zhao 	PMEVCNTR0_EL0,	/* Event Counter Register (0-30) */
211051ff581SShannon Zhao 	PMEVCNTR30_EL0 = PMEVCNTR0_EL0 + 30,
212051ff581SShannon Zhao 	PMCCNTR_EL0,	/* Cycle Counter Register */
2139feb21acSShannon Zhao 	PMEVTYPER0_EL0,	/* Event Type Register (0-30) */
2149feb21acSShannon Zhao 	PMEVTYPER30_EL0 = PMEVTYPER0_EL0 + 30,
2159feb21acSShannon Zhao 	PMCCFILTR_EL0,	/* Cycle Count Filter Register */
21696b0eebcSShannon Zhao 	PMCNTENSET_EL0,	/* Count Enable Set Register */
2179db52c78SShannon Zhao 	PMINTENSET_EL1,	/* Interrupt Enable Set Register */
21876d883c4SShannon Zhao 	PMOVSSET_EL0,	/* Overflow Flag Status Set Register */
219d692b8adSShannon Zhao 	PMUSERENR_EL0,	/* User Enable Register */
220ab946834SShannon Zhao 
221384b40caSMark Rutland 	/* Pointer Authentication Registers in a strict increasing order. */
222384b40caSMark Rutland 	APIAKEYLO_EL1,
223384b40caSMark Rutland 	APIAKEYHI_EL1,
224384b40caSMark Rutland 	APIBKEYLO_EL1,
225384b40caSMark Rutland 	APIBKEYHI_EL1,
226384b40caSMark Rutland 	APDAKEYLO_EL1,
227384b40caSMark Rutland 	APDAKEYHI_EL1,
228384b40caSMark Rutland 	APDBKEYLO_EL1,
229384b40caSMark Rutland 	APDBKEYHI_EL1,
230384b40caSMark Rutland 	APGAKEYLO_EL1,
231384b40caSMark Rutland 	APGAKEYHI_EL1,
232384b40caSMark Rutland 
23398909e6dSMarc Zyngier 	ELR_EL1,
2341bded23eSMarc Zyngier 	SP_EL1,
235710f1982SMarc Zyngier 	SPSR_EL1,
23698909e6dSMarc Zyngier 
23741ce82f6SMarc Zyngier 	CNTVOFF_EL2,
23841ce82f6SMarc Zyngier 	CNTV_CVAL_EL0,
23941ce82f6SMarc Zyngier 	CNTV_CTL_EL0,
24041ce82f6SMarc Zyngier 	CNTP_CVAL_EL0,
24141ce82f6SMarc Zyngier 	CNTP_CTL_EL0,
24241ce82f6SMarc Zyngier 
243e1f358b5SSteven Price 	/* Memory Tagging Extension registers */
244e1f358b5SSteven Price 	RGSR_EL1,	/* Random Allocation Tag Seed Register */
245e1f358b5SSteven Price 	GCR_EL1,	/* Tag Control Register */
246e1f358b5SSteven Price 	TFSR_EL1,	/* Tag Fault Status Register (EL1) */
247e1f358b5SSteven Price 	TFSRE0_EL1,	/* Tag Fault Status Register (EL0) */
248e1f358b5SSteven Price 
2499d8415d6SMarc Zyngier 	/* 32bit specific registers. Keep them at the end of the range */
2509d8415d6SMarc Zyngier 	DACR32_EL2,	/* Domain Access Control Register */
2519d8415d6SMarc Zyngier 	IFSR32_EL2,	/* Instruction Fault Status Register */
2529d8415d6SMarc Zyngier 	FPEXC32_EL2,	/* Floating-Point Exception Control Register */
2539d8415d6SMarc Zyngier 	DBGVCR32_EL2,	/* Debug Vector Catch Register */
2549d8415d6SMarc Zyngier 
2559d8415d6SMarc Zyngier 	NR_SYS_REGS	/* Nothing after this line! */
2569d8415d6SMarc Zyngier };
2579d8415d6SMarc Zyngier 
2584f8d6632SMarc Zyngier struct kvm_cpu_context {
259e47c2055SMarc Zyngier 	struct user_pt_regs regs;	/* sp = sp_el0 */
260e47c2055SMarc Zyngier 
261fd85b667SMarc Zyngier 	u64	spsr_abt;
262fd85b667SMarc Zyngier 	u64	spsr_und;
263fd85b667SMarc Zyngier 	u64	spsr_irq;
264fd85b667SMarc Zyngier 	u64	spsr_fiq;
265e47c2055SMarc Zyngier 
266e47c2055SMarc Zyngier 	struct user_fpsimd_state fp_regs;
267e47c2055SMarc Zyngier 
2684f8d6632SMarc Zyngier 	u64 sys_regs[NR_SYS_REGS];
269c97e166eSJames Morse 
270c97e166eSJames Morse 	struct kvm_vcpu *__hyp_running_vcpu;
2714f8d6632SMarc Zyngier };
2724f8d6632SMarc Zyngier 
273630a1685SAndrew Murray struct kvm_host_data {
274630a1685SAndrew Murray 	struct kvm_cpu_context host_ctxt;
275630a1685SAndrew Murray };
276630a1685SAndrew Murray 
277ff367fe4SDavid Brazdil struct kvm_host_psci_config {
278ff367fe4SDavid Brazdil 	/* PSCI version used by host. */
279ff367fe4SDavid Brazdil 	u32 version;
280ff367fe4SDavid Brazdil 
281ff367fe4SDavid Brazdil 	/* Function IDs used by host if version is v0.1. */
282ff367fe4SDavid Brazdil 	struct psci_0_1_function_ids function_ids_0_1;
283ff367fe4SDavid Brazdil 
284767c973fSMarc Zyngier 	bool psci_0_1_cpu_suspend_implemented;
285767c973fSMarc Zyngier 	bool psci_0_1_cpu_on_implemented;
286767c973fSMarc Zyngier 	bool psci_0_1_cpu_off_implemented;
287767c973fSMarc Zyngier 	bool psci_0_1_migrate_implemented;
288ff367fe4SDavid Brazdil };
289ff367fe4SDavid Brazdil 
290ff367fe4SDavid Brazdil extern struct kvm_host_psci_config kvm_nvhe_sym(kvm_host_psci_config);
291ff367fe4SDavid Brazdil #define kvm_host_psci_config CHOOSE_NVHE_SYM(kvm_host_psci_config)
292ff367fe4SDavid Brazdil 
29361fe0c37SDavid Brazdil extern s64 kvm_nvhe_sym(hyp_physvirt_offset);
29461fe0c37SDavid Brazdil #define hyp_physvirt_offset CHOOSE_NVHE_SYM(hyp_physvirt_offset)
29561fe0c37SDavid Brazdil 
29661fe0c37SDavid Brazdil extern u64 kvm_nvhe_sym(hyp_cpu_logical_map)[NR_CPUS];
29761fe0c37SDavid Brazdil #define hyp_cpu_logical_map CHOOSE_NVHE_SYM(hyp_cpu_logical_map)
29861fe0c37SDavid Brazdil 
299358b28f0SMarc Zyngier struct vcpu_reset_state {
300358b28f0SMarc Zyngier 	unsigned long	pc;
301358b28f0SMarc Zyngier 	unsigned long	r0;
302358b28f0SMarc Zyngier 	bool		be;
303358b28f0SMarc Zyngier 	bool		reset;
304358b28f0SMarc Zyngier };
305358b28f0SMarc Zyngier 
3064f8d6632SMarc Zyngier struct kvm_vcpu_arch {
3074f8d6632SMarc Zyngier 	struct kvm_cpu_context ctxt;
3080033cd93SMark Brown 
3090033cd93SMark Brown 	/* Guest floating point state */
310b43b5dd9SDave Martin 	void *sve_state;
311b43b5dd9SDave Martin 	unsigned int sve_max_vl;
3120033cd93SMark Brown 	u64 svcr;
3134f8d6632SMarc Zyngier 
314a0e50aa3SChristoffer Dall 	/* Stage 2 paging state used by the hardware on next switch */
315a0e50aa3SChristoffer Dall 	struct kvm_s2_mmu *hw_mmu;
316a0e50aa3SChristoffer Dall 
3171460b4b2SFuad Tabba 	/* Values of trap registers for the guest. */
3184f8d6632SMarc Zyngier 	u64 hcr_el2;
319d6c850ddSFuad Tabba 	u64 mdcr_el2;
320cd496228SFuad Tabba 	u64 cptr_el2;
3214f8d6632SMarc Zyngier 
3221460b4b2SFuad Tabba 	/* Values of trap registers for the host before guest entry. */
3231460b4b2SFuad Tabba 	u64 mdcr_el2_host;
3244f8d6632SMarc Zyngier 
3254f8d6632SMarc Zyngier 	/* Exception Information */
3264f8d6632SMarc Zyngier 	struct kvm_vcpu_fault_info fault;
3274f8d6632SMarc Zyngier 
328f8077b0dSMarc Zyngier 	/* Ownership of the FP regs */
329f8077b0dSMarc Zyngier 	enum {
330f8077b0dSMarc Zyngier 		FP_STATE_FREE,
331f8077b0dSMarc Zyngier 		FP_STATE_HOST_OWNED,
332f8077b0dSMarc Zyngier 		FP_STATE_GUEST_OWNED,
333f8077b0dSMarc Zyngier 	} fp_state;
334f8077b0dSMarc Zyngier 
335fa89d31cSDave Martin 	/* Miscellaneous vcpu state flags */
336fa89d31cSDave Martin 	u64 flags;
3370c557ed4SMarc Zyngier 
33884e690bfSAlex Bennée 	/*
33984e690bfSAlex Bennée 	 * We maintain more than a single set of debug registers to support
34084e690bfSAlex Bennée 	 * debugging the guest from the host and to maintain separate host and
34184e690bfSAlex Bennée 	 * guest state during world switches. vcpu_debug_state are the debug
34284e690bfSAlex Bennée 	 * registers of the vcpu as the guest sees them.  host_debug_state are
343834bf887SAlex Bennée 	 * the host registers which are saved and restored during
344834bf887SAlex Bennée 	 * world switches. external_debug_state contains the debug
345834bf887SAlex Bennée 	 * values we want to debug the guest. This is set via the
346834bf887SAlex Bennée 	 * KVM_SET_GUEST_DEBUG ioctl.
34784e690bfSAlex Bennée 	 *
34884e690bfSAlex Bennée 	 * debug_ptr points to the set of debug registers that should be loaded
34984e690bfSAlex Bennée 	 * onto the hardware when running the guest.
35084e690bfSAlex Bennée 	 */
35184e690bfSAlex Bennée 	struct kvm_guest_debug_arch *debug_ptr;
35284e690bfSAlex Bennée 	struct kvm_guest_debug_arch vcpu_debug_state;
353834bf887SAlex Bennée 	struct kvm_guest_debug_arch external_debug_state;
35484e690bfSAlex Bennée 
355e6b673b7SDave Martin 	struct user_fpsimd_state *host_fpsimd_state;	/* hyp VA */
35652b28657SQuentin Perret 	struct task_struct *parent_task;
357e6b673b7SDave Martin 
358f85279b4SWill Deacon 	struct {
359f85279b4SWill Deacon 		/* {Break,watch}point registers */
360f85279b4SWill Deacon 		struct kvm_guest_debug_arch regs;
361f85279b4SWill Deacon 		/* Statistical profiling extension */
362f85279b4SWill Deacon 		u64 pmscr_el1;
363a1319260SSuzuki K Poulose 		/* Self-hosted trace */
364a1319260SSuzuki K Poulose 		u64 trfcr_el1;
365f85279b4SWill Deacon 	} host_debug_state;
3664f8d6632SMarc Zyngier 
3674f8d6632SMarc Zyngier 	/* VGIC state */
3684f8d6632SMarc Zyngier 	struct vgic_cpu vgic_cpu;
3694f8d6632SMarc Zyngier 	struct arch_timer_cpu timer_cpu;
37004fe4726SShannon Zhao 	struct kvm_pmu pmu;
3714f8d6632SMarc Zyngier 
3724f8d6632SMarc Zyngier 	/*
3734f8d6632SMarc Zyngier 	 * Anything that is not used directly from assembly code goes
3744f8d6632SMarc Zyngier 	 * here.
3754f8d6632SMarc Zyngier 	 */
3764f8d6632SMarc Zyngier 
377337b99bfSAlex Bennée 	/*
378337b99bfSAlex Bennée 	 * Guest registers we preserve during guest debugging.
379337b99bfSAlex Bennée 	 *
380337b99bfSAlex Bennée 	 * These shadow registers are updated by the kvm_handle_sys_reg
381337b99bfSAlex Bennée 	 * trap handler if the guest accesses or updates them while we
382337b99bfSAlex Bennée 	 * are using guest debug.
383337b99bfSAlex Bennée 	 */
384337b99bfSAlex Bennée 	struct {
385337b99bfSAlex Bennée 		u32	mdscr_el1;
386337b99bfSAlex Bennée 	} guest_debug_preserved;
387337b99bfSAlex Bennée 
388b171f9bbSOliver Upton 	/* vcpu power state */
389b171f9bbSOliver Upton 	struct kvm_mp_state mp_state;
3904f8d6632SMarc Zyngier 
3913b92830aSEric Auger 	/* Don't run the guest (internal implementation need) */
3923b92830aSEric Auger 	bool pause;
3933b92830aSEric Auger 
3944f8d6632SMarc Zyngier 	/* Cache some mmu pages needed inside spinlock regions */
3954f8d6632SMarc Zyngier 	struct kvm_mmu_memory_cache mmu_page_cache;
3964f8d6632SMarc Zyngier 
3974f8d6632SMarc Zyngier 	/* Target CPU and feature flags */
3986c8c0c4dSChen Gang 	int target;
3994f8d6632SMarc Zyngier 	DECLARE_BITMAP(features, KVM_VCPU_MAX_FEATURES);
4004f8d6632SMarc Zyngier 
4014715c14bSJames Morse 	/* Virtual SError ESR to restore when HCR_EL2.VSE is set */
4024715c14bSJames Morse 	u64 vsesr_el2;
403d47533daSChristoffer Dall 
404358b28f0SMarc Zyngier 	/* Additional reset state */
405358b28f0SMarc Zyngier 	struct vcpu_reset_state	reset_state;
406358b28f0SMarc Zyngier 
407d47533daSChristoffer Dall 	/* True when deferrable sysregs are loaded on the physical CPU,
40813aeb9b4SDavid Brazdil 	 * see kvm_vcpu_load_sysregs_vhe and kvm_vcpu_put_sysregs_vhe. */
409d47533daSChristoffer Dall 	bool sysregs_loaded_on_cpu;
4108564d637SSteven Price 
4118564d637SSteven Price 	/* Guest PV state */
4128564d637SSteven Price 	struct {
4138564d637SSteven Price 		u64 last_steal;
4148564d637SSteven Price 		gpa_t base;
4158564d637SSteven Price 	} steal;
4164f8d6632SMarc Zyngier };
4174f8d6632SMarc Zyngier 
418*e87abb73SMarc Zyngier /*
419*e87abb73SMarc Zyngier  * Each 'flag' is composed of a comma-separated triplet:
420*e87abb73SMarc Zyngier  *
421*e87abb73SMarc Zyngier  * - the flag-set it belongs to in the vcpu->arch structure
422*e87abb73SMarc Zyngier  * - the value for that flag
423*e87abb73SMarc Zyngier  * - the mask for that flag
424*e87abb73SMarc Zyngier  *
425*e87abb73SMarc Zyngier  *  __vcpu_single_flag() builds such a triplet for a single-bit flag.
426*e87abb73SMarc Zyngier  * unpack_vcpu_flag() extract the flag value from the triplet for
427*e87abb73SMarc Zyngier  * direct use outside of the flag accessors.
428*e87abb73SMarc Zyngier  */
429*e87abb73SMarc Zyngier #define __vcpu_single_flag(_set, _f)	_set, (_f), (_f)
430*e87abb73SMarc Zyngier 
431*e87abb73SMarc Zyngier #define __unpack_flag(_set, _f, _m)	_f
432*e87abb73SMarc Zyngier #define unpack_vcpu_flag(...)		__unpack_flag(__VA_ARGS__)
433*e87abb73SMarc Zyngier 
434*e87abb73SMarc Zyngier #define __vcpu_get_flag(v, flagset, f, m)			\
435*e87abb73SMarc Zyngier 	({							\
436*e87abb73SMarc Zyngier 		v->arch.flagset & (m);				\
437*e87abb73SMarc Zyngier 	})
438*e87abb73SMarc Zyngier 
439*e87abb73SMarc Zyngier #define __vcpu_set_flag(v, flagset, f, m)			\
440*e87abb73SMarc Zyngier 	do {							\
441*e87abb73SMarc Zyngier 		typeof(v->arch.flagset) *fset;			\
442*e87abb73SMarc Zyngier 								\
443*e87abb73SMarc Zyngier 		fset = &v->arch.flagset;			\
444*e87abb73SMarc Zyngier 		if (HWEIGHT(m) > 1)				\
445*e87abb73SMarc Zyngier 			*fset &= ~(m);				\
446*e87abb73SMarc Zyngier 		*fset |= (f);					\
447*e87abb73SMarc Zyngier 	} while (0)
448*e87abb73SMarc Zyngier 
449*e87abb73SMarc Zyngier #define __vcpu_clear_flag(v, flagset, f, m)			\
450*e87abb73SMarc Zyngier 	do {							\
451*e87abb73SMarc Zyngier 		typeof(v->arch.flagset) *fset;			\
452*e87abb73SMarc Zyngier 								\
453*e87abb73SMarc Zyngier 		fset = &v->arch.flagset;			\
454*e87abb73SMarc Zyngier 		*fset &= ~(m);					\
455*e87abb73SMarc Zyngier 	} while (0)
456*e87abb73SMarc Zyngier 
457*e87abb73SMarc Zyngier #define vcpu_get_flag(v, ...)	__vcpu_get_flag((v), __VA_ARGS__)
458*e87abb73SMarc Zyngier #define vcpu_set_flag(v, ...)	__vcpu_set_flag((v), __VA_ARGS__)
459*e87abb73SMarc Zyngier #define vcpu_clear_flag(v, ...)	__vcpu_clear_flag((v), __VA_ARGS__)
460*e87abb73SMarc Zyngier 
461*e87abb73SMarc Zyngier 
462b43b5dd9SDave Martin /* Pointer to the vcpu's SVE FFR for sve_{save,load}_state() */
463985d3a1bSMarc Zyngier #define vcpu_sve_pffr(vcpu) (kern_hyp_va((vcpu)->arch.sve_state) +	\
464985d3a1bSMarc Zyngier 			     sve_ffr_offset((vcpu)->arch.sve_max_vl))
465b43b5dd9SDave Martin 
466468f3477SMarc Zyngier #define vcpu_sve_max_vq(vcpu)	sve_vq_from_vl((vcpu)->arch.sve_max_vl)
467b3eb56b6SDave Martin 
468e1c9c983SDave Martin #define vcpu_sve_state_size(vcpu) ({					\
469e1c9c983SDave Martin 	size_t __size_ret;						\
470e1c9c983SDave Martin 	unsigned int __vcpu_vq;						\
471e1c9c983SDave Martin 									\
472e1c9c983SDave Martin 	if (WARN_ON(!sve_vl_valid((vcpu)->arch.sve_max_vl))) {		\
473e1c9c983SDave Martin 		__size_ret = 0;						\
474e1c9c983SDave Martin 	} else {							\
475468f3477SMarc Zyngier 		__vcpu_vq = vcpu_sve_max_vq(vcpu);			\
476e1c9c983SDave Martin 		__size_ret = SVE_SIG_REGS_SIZE(__vcpu_vq);		\
477e1c9c983SDave Martin 	}								\
478e1c9c983SDave Martin 									\
479e1c9c983SDave Martin 	__size_ret;							\
480e1c9c983SDave Martin })
481e1c9c983SDave Martin 
482fa89d31cSDave Martin /* vcpu_arch flags field values: */
483fa89d31cSDave Martin #define KVM_ARM64_DEBUG_DIRTY		(1 << 0)
484fa89d31cSDave Martin #define KVM_ARM64_HOST_SVE_ENABLED	(1 << 4) /* SVE enabled for EL0 */
4851765edbaSDave Martin #define KVM_ARM64_GUEST_HAS_SVE		(1 << 5) /* SVE exposed to guest */
4869033bba4SDave Martin #define KVM_ARM64_VCPU_SVE_FINALIZED	(1 << 6) /* SVE config completed */
487b890d75cSAmit Daniel Kachhap #define KVM_ARM64_GUEST_HAS_PTRAUTH	(1 << 7) /* PTRAUTH exposed to guest */
488e650b64fSMarc Zyngier #define KVM_ARM64_PENDING_EXCEPTION	(1 << 8) /* Exception pending */
489892fd259SMarc Zyngier /*
490892fd259SMarc Zyngier  * Overlaps with KVM_ARM64_EXCEPT_MASK on purpose so that it can't be
491892fd259SMarc Zyngier  * set together with an exception...
492892fd259SMarc Zyngier  */
493892fd259SMarc Zyngier #define KVM_ARM64_INCREMENT_PC		(1 << 9) /* Increment PC */
494e650b64fSMarc Zyngier #define KVM_ARM64_EXCEPT_MASK		(7 << 9) /* Target EL/MODE */
495e650b64fSMarc Zyngier /*
496e650b64fSMarc Zyngier  * When KVM_ARM64_PENDING_EXCEPTION is set, KVM_ARM64_EXCEPT_MASK can
497e650b64fSMarc Zyngier  * take the following values:
498e650b64fSMarc Zyngier  *
499e650b64fSMarc Zyngier  * For AArch32 EL1:
500e650b64fSMarc Zyngier  */
501e650b64fSMarc Zyngier #define KVM_ARM64_EXCEPT_AA32_UND	(0 << 9)
502e650b64fSMarc Zyngier #define KVM_ARM64_EXCEPT_AA32_IABT	(1 << 9)
503e650b64fSMarc Zyngier #define KVM_ARM64_EXCEPT_AA32_DABT	(2 << 9)
504e650b64fSMarc Zyngier /* For AArch64: */
505e650b64fSMarc Zyngier #define KVM_ARM64_EXCEPT_AA64_ELx_SYNC	(0 << 9)
506e650b64fSMarc Zyngier #define KVM_ARM64_EXCEPT_AA64_ELx_IRQ	(1 << 9)
507e650b64fSMarc Zyngier #define KVM_ARM64_EXCEPT_AA64_ELx_FIQ	(2 << 9)
508e650b64fSMarc Zyngier #define KVM_ARM64_EXCEPT_AA64_ELx_SERR	(3 << 9)
509e650b64fSMarc Zyngier #define KVM_ARM64_EXCEPT_AA64_EL1	(0 << 11)
510e650b64fSMarc Zyngier #define KVM_ARM64_EXCEPT_AA64_EL2	(1 << 11)
511e650b64fSMarc Zyngier 
512892fd259SMarc Zyngier #define KVM_ARM64_DEBUG_STATE_SAVE_SPE	(1 << 12) /* Save SPE context if active  */
513892fd259SMarc Zyngier #define KVM_ARM64_DEBUG_STATE_SAVE_TRBE	(1 << 13) /* Save TRBE context if active  */
514583cda1bSAlexandru Elisei #define KVM_ARM64_ON_UNSUPPORTED_CPU	(1 << 15) /* Physical CPU not in supported_cpus */
515861262abSMark Brown #define KVM_ARM64_HOST_SME_ENABLED	(1 << 16) /* SME enabled for EL0 */
516b2c4caf3SMarc Zyngier #define KVM_ARM64_WFIT			(1 << 17) /* WFIT instruction trapped */
517892fd259SMarc Zyngier 
518892fd259SMarc Zyngier #define KVM_GUESTDBG_VALID_MASK (KVM_GUESTDBG_ENABLE | \
519892fd259SMarc Zyngier 				 KVM_GUESTDBG_USE_SW_BP | \
520892fd259SMarc Zyngier 				 KVM_GUESTDBG_USE_HW | \
521892fd259SMarc Zyngier 				 KVM_GUESTDBG_SINGLESTEP)
5221765edbaSDave Martin 
5231765edbaSDave Martin #define vcpu_has_sve(vcpu) (system_supports_sve() &&			\
5241765edbaSDave Martin 			    ((vcpu)->arch.flags & KVM_ARM64_GUEST_HAS_SVE))
5254f8d6632SMarc Zyngier 
526bf4086b1SMarc Zyngier #ifdef CONFIG_ARM64_PTR_AUTH
527bf4086b1SMarc Zyngier #define vcpu_has_ptrauth(vcpu)						\
528bf4086b1SMarc Zyngier 	((cpus_have_final_cap(ARM64_HAS_ADDRESS_AUTH) ||		\
529bf4086b1SMarc Zyngier 	  cpus_have_final_cap(ARM64_HAS_GENERIC_AUTH)) &&		\
530bf4086b1SMarc Zyngier 	 (vcpu)->arch.flags & KVM_ARM64_GUEST_HAS_PTRAUTH)
531bf4086b1SMarc Zyngier #else
532bf4086b1SMarc Zyngier #define vcpu_has_ptrauth(vcpu)		false
533bf4086b1SMarc Zyngier #endif
534b890d75cSAmit Daniel Kachhap 
535583cda1bSAlexandru Elisei #define vcpu_on_unsupported_cpu(vcpu)					\
536583cda1bSAlexandru Elisei 	((vcpu)->arch.flags & KVM_ARM64_ON_UNSUPPORTED_CPU)
537583cda1bSAlexandru Elisei 
538583cda1bSAlexandru Elisei #define vcpu_set_on_unsupported_cpu(vcpu)				\
539583cda1bSAlexandru Elisei 	((vcpu)->arch.flags |= KVM_ARM64_ON_UNSUPPORTED_CPU)
540583cda1bSAlexandru Elisei 
541583cda1bSAlexandru Elisei #define vcpu_clear_on_unsupported_cpu(vcpu)				\
542583cda1bSAlexandru Elisei 	((vcpu)->arch.flags &= ~KVM_ARM64_ON_UNSUPPORTED_CPU)
543583cda1bSAlexandru Elisei 
544e47c2055SMarc Zyngier #define vcpu_gp_regs(v)		(&(v)->arch.ctxt.regs)
5458d404c4cSChristoffer Dall 
5468d404c4cSChristoffer Dall /*
5471b422dd7SMarc Zyngier  * Only use __vcpu_sys_reg/ctxt_sys_reg if you know you want the
5481b422dd7SMarc Zyngier  * memory backed version of a register, and not the one most recently
5491b422dd7SMarc Zyngier  * accessed by a running VCPU.  For example, for userspace access or
5501b422dd7SMarc Zyngier  * for system registers that are never context switched, but only
5511b422dd7SMarc Zyngier  * emulated.
5528d404c4cSChristoffer Dall  */
5531b422dd7SMarc Zyngier #define __ctxt_sys_reg(c,r)	(&(c)->sys_regs[(r)])
5541b422dd7SMarc Zyngier 
5551b422dd7SMarc Zyngier #define ctxt_sys_reg(c,r)	(*__ctxt_sys_reg(c,r))
5561b422dd7SMarc Zyngier 
5571b422dd7SMarc Zyngier #define __vcpu_sys_reg(v,r)	(ctxt_sys_reg(&(v)->arch.ctxt, (r)))
5588d404c4cSChristoffer Dall 
559da6f1666SChristoffer Dall u64 vcpu_read_sys_reg(const struct kvm_vcpu *vcpu, int reg);
560d47533daSChristoffer Dall void vcpu_write_sys_reg(struct kvm_vcpu *vcpu, u64 val, int reg);
5618d404c4cSChristoffer Dall 
56221c81001SMarc Zyngier static inline bool __vcpu_read_sys_reg_from_cpu(int reg, u64 *val)
56321c81001SMarc Zyngier {
56421c81001SMarc Zyngier 	/*
56521c81001SMarc Zyngier 	 * *** VHE ONLY ***
56621c81001SMarc Zyngier 	 *
56721c81001SMarc Zyngier 	 * System registers listed in the switch are not saved on every
56821c81001SMarc Zyngier 	 * exit from the guest but are only saved on vcpu_put.
56921c81001SMarc Zyngier 	 *
57021c81001SMarc Zyngier 	 * Note that MPIDR_EL1 for the guest is set by KVM via VMPIDR_EL2 but
57121c81001SMarc Zyngier 	 * should never be listed below, because the guest cannot modify its
57221c81001SMarc Zyngier 	 * own MPIDR_EL1 and MPIDR_EL1 is accessed for VCPU A from VCPU B's
57321c81001SMarc Zyngier 	 * thread when emulating cross-VCPU communication.
57421c81001SMarc Zyngier 	 */
57521c81001SMarc Zyngier 	if (!has_vhe())
57621c81001SMarc Zyngier 		return false;
57721c81001SMarc Zyngier 
57821c81001SMarc Zyngier 	switch (reg) {
57921c81001SMarc Zyngier 	case CSSELR_EL1:	*val = read_sysreg_s(SYS_CSSELR_EL1);	break;
58021c81001SMarc Zyngier 	case SCTLR_EL1:		*val = read_sysreg_s(SYS_SCTLR_EL12);	break;
58121c81001SMarc Zyngier 	case CPACR_EL1:		*val = read_sysreg_s(SYS_CPACR_EL12);	break;
58221c81001SMarc Zyngier 	case TTBR0_EL1:		*val = read_sysreg_s(SYS_TTBR0_EL12);	break;
58321c81001SMarc Zyngier 	case TTBR1_EL1:		*val = read_sysreg_s(SYS_TTBR1_EL12);	break;
58421c81001SMarc Zyngier 	case TCR_EL1:		*val = read_sysreg_s(SYS_TCR_EL12);	break;
58521c81001SMarc Zyngier 	case ESR_EL1:		*val = read_sysreg_s(SYS_ESR_EL12);	break;
58621c81001SMarc Zyngier 	case AFSR0_EL1:		*val = read_sysreg_s(SYS_AFSR0_EL12);	break;
58721c81001SMarc Zyngier 	case AFSR1_EL1:		*val = read_sysreg_s(SYS_AFSR1_EL12);	break;
58821c81001SMarc Zyngier 	case FAR_EL1:		*val = read_sysreg_s(SYS_FAR_EL12);	break;
58921c81001SMarc Zyngier 	case MAIR_EL1:		*val = read_sysreg_s(SYS_MAIR_EL12);	break;
59021c81001SMarc Zyngier 	case VBAR_EL1:		*val = read_sysreg_s(SYS_VBAR_EL12);	break;
59121c81001SMarc Zyngier 	case CONTEXTIDR_EL1:	*val = read_sysreg_s(SYS_CONTEXTIDR_EL12);break;
59221c81001SMarc Zyngier 	case TPIDR_EL0:		*val = read_sysreg_s(SYS_TPIDR_EL0);	break;
59321c81001SMarc Zyngier 	case TPIDRRO_EL0:	*val = read_sysreg_s(SYS_TPIDRRO_EL0);	break;
59421c81001SMarc Zyngier 	case TPIDR_EL1:		*val = read_sysreg_s(SYS_TPIDR_EL1);	break;
59521c81001SMarc Zyngier 	case AMAIR_EL1:		*val = read_sysreg_s(SYS_AMAIR_EL12);	break;
59621c81001SMarc Zyngier 	case CNTKCTL_EL1:	*val = read_sysreg_s(SYS_CNTKCTL_EL12);	break;
59721c81001SMarc Zyngier 	case ELR_EL1:		*val = read_sysreg_s(SYS_ELR_EL12);	break;
59821c81001SMarc Zyngier 	case PAR_EL1:		*val = read_sysreg_par();		break;
59921c81001SMarc Zyngier 	case DACR32_EL2:	*val = read_sysreg_s(SYS_DACR32_EL2);	break;
60021c81001SMarc Zyngier 	case IFSR32_EL2:	*val = read_sysreg_s(SYS_IFSR32_EL2);	break;
60121c81001SMarc Zyngier 	case DBGVCR32_EL2:	*val = read_sysreg_s(SYS_DBGVCR32_EL2);	break;
60221c81001SMarc Zyngier 	default:		return false;
60321c81001SMarc Zyngier 	}
60421c81001SMarc Zyngier 
60521c81001SMarc Zyngier 	return true;
60621c81001SMarc Zyngier }
60721c81001SMarc Zyngier 
60821c81001SMarc Zyngier static inline bool __vcpu_write_sys_reg_to_cpu(u64 val, int reg)
60921c81001SMarc Zyngier {
61021c81001SMarc Zyngier 	/*
61121c81001SMarc Zyngier 	 * *** VHE ONLY ***
61221c81001SMarc Zyngier 	 *
61321c81001SMarc Zyngier 	 * System registers listed in the switch are not restored on every
61421c81001SMarc Zyngier 	 * entry to the guest but are only restored on vcpu_load.
61521c81001SMarc Zyngier 	 *
61621c81001SMarc Zyngier 	 * Note that MPIDR_EL1 for the guest is set by KVM via VMPIDR_EL2 but
61721c81001SMarc Zyngier 	 * should never be listed below, because the MPIDR should only be set
61821c81001SMarc Zyngier 	 * once, before running the VCPU, and never changed later.
61921c81001SMarc Zyngier 	 */
62021c81001SMarc Zyngier 	if (!has_vhe())
62121c81001SMarc Zyngier 		return false;
62221c81001SMarc Zyngier 
62321c81001SMarc Zyngier 	switch (reg) {
62421c81001SMarc Zyngier 	case CSSELR_EL1:	write_sysreg_s(val, SYS_CSSELR_EL1);	break;
62521c81001SMarc Zyngier 	case SCTLR_EL1:		write_sysreg_s(val, SYS_SCTLR_EL12);	break;
62621c81001SMarc Zyngier 	case CPACR_EL1:		write_sysreg_s(val, SYS_CPACR_EL12);	break;
62721c81001SMarc Zyngier 	case TTBR0_EL1:		write_sysreg_s(val, SYS_TTBR0_EL12);	break;
62821c81001SMarc Zyngier 	case TTBR1_EL1:		write_sysreg_s(val, SYS_TTBR1_EL12);	break;
62921c81001SMarc Zyngier 	case TCR_EL1:		write_sysreg_s(val, SYS_TCR_EL12);	break;
63021c81001SMarc Zyngier 	case ESR_EL1:		write_sysreg_s(val, SYS_ESR_EL12);	break;
63121c81001SMarc Zyngier 	case AFSR0_EL1:		write_sysreg_s(val, SYS_AFSR0_EL12);	break;
63221c81001SMarc Zyngier 	case AFSR1_EL1:		write_sysreg_s(val, SYS_AFSR1_EL12);	break;
63321c81001SMarc Zyngier 	case FAR_EL1:		write_sysreg_s(val, SYS_FAR_EL12);	break;
63421c81001SMarc Zyngier 	case MAIR_EL1:		write_sysreg_s(val, SYS_MAIR_EL12);	break;
63521c81001SMarc Zyngier 	case VBAR_EL1:		write_sysreg_s(val, SYS_VBAR_EL12);	break;
63621c81001SMarc Zyngier 	case CONTEXTIDR_EL1:	write_sysreg_s(val, SYS_CONTEXTIDR_EL12);break;
63721c81001SMarc Zyngier 	case TPIDR_EL0:		write_sysreg_s(val, SYS_TPIDR_EL0);	break;
63821c81001SMarc Zyngier 	case TPIDRRO_EL0:	write_sysreg_s(val, SYS_TPIDRRO_EL0);	break;
63921c81001SMarc Zyngier 	case TPIDR_EL1:		write_sysreg_s(val, SYS_TPIDR_EL1);	break;
64021c81001SMarc Zyngier 	case AMAIR_EL1:		write_sysreg_s(val, SYS_AMAIR_EL12);	break;
64121c81001SMarc Zyngier 	case CNTKCTL_EL1:	write_sysreg_s(val, SYS_CNTKCTL_EL12);	break;
64221c81001SMarc Zyngier 	case ELR_EL1:		write_sysreg_s(val, SYS_ELR_EL12);	break;
64321c81001SMarc Zyngier 	case PAR_EL1:		write_sysreg_s(val, SYS_PAR_EL1);	break;
64421c81001SMarc Zyngier 	case DACR32_EL2:	write_sysreg_s(val, SYS_DACR32_EL2);	break;
64521c81001SMarc Zyngier 	case IFSR32_EL2:	write_sysreg_s(val, SYS_IFSR32_EL2);	break;
64621c81001SMarc Zyngier 	case DBGVCR32_EL2:	write_sysreg_s(val, SYS_DBGVCR32_EL2);	break;
64721c81001SMarc Zyngier 	default:		return false;
64821c81001SMarc Zyngier 	}
64921c81001SMarc Zyngier 
65021c81001SMarc Zyngier 	return true;
65121c81001SMarc Zyngier }
65221c81001SMarc Zyngier 
6534f8d6632SMarc Zyngier struct kvm_vm_stat {
6540193cc90SJing Zhang 	struct kvm_vm_stat_generic generic;
6554f8d6632SMarc Zyngier };
6564f8d6632SMarc Zyngier 
6574f8d6632SMarc Zyngier struct kvm_vcpu_stat {
6580193cc90SJing Zhang 	struct kvm_vcpu_stat_generic generic;
6598a7e75d4SSuraj Jitindar Singh 	u64 hvc_exit_stat;
660b19e6892SAmit Tomar 	u64 wfe_exit_stat;
661b19e6892SAmit Tomar 	u64 wfi_exit_stat;
662b19e6892SAmit Tomar 	u64 mmio_exit_user;
663b19e6892SAmit Tomar 	u64 mmio_exit_kernel;
664fe5161d2SOliver Upton 	u64 signal_exits;
665b19e6892SAmit Tomar 	u64 exits;
6664f8d6632SMarc Zyngier };
6674f8d6632SMarc Zyngier 
66808e873cbSYueHaibing void kvm_vcpu_preferred_target(struct kvm_vcpu_init *init);
6694f8d6632SMarc Zyngier unsigned long kvm_arm_num_regs(struct kvm_vcpu *vcpu);
6704f8d6632SMarc Zyngier int kvm_arm_copy_reg_indices(struct kvm_vcpu *vcpu, u64 __user *indices);
6714f8d6632SMarc Zyngier int kvm_arm_get_reg(struct kvm_vcpu *vcpu, const struct kvm_one_reg *reg);
6724f8d6632SMarc Zyngier int kvm_arm_set_reg(struct kvm_vcpu *vcpu, const struct kvm_one_reg *reg);
6736ac4a5acSMarc Zyngier 
6746ac4a5acSMarc Zyngier unsigned long kvm_arm_num_sys_reg_descs(struct kvm_vcpu *vcpu);
6756ac4a5acSMarc Zyngier int kvm_arm_copy_sys_reg_indices(struct kvm_vcpu *vcpu, u64 __user *uindices);
6766ac4a5acSMarc Zyngier int kvm_arm_sys_reg_get_reg(struct kvm_vcpu *vcpu, const struct kvm_one_reg *);
6776ac4a5acSMarc Zyngier int kvm_arm_sys_reg_set_reg(struct kvm_vcpu *vcpu, const struct kvm_one_reg *);
6786ac4a5acSMarc Zyngier 
679539aee0eSJames Morse int __kvm_arm_vcpu_get_events(struct kvm_vcpu *vcpu,
680b7b27facSDongjiu Geng 			      struct kvm_vcpu_events *events);
681b7b27facSDongjiu Geng 
682539aee0eSJames Morse int __kvm_arm_vcpu_set_events(struct kvm_vcpu *vcpu,
683b7b27facSDongjiu Geng 			      struct kvm_vcpu_events *events);
6844f8d6632SMarc Zyngier 
6854f8d6632SMarc Zyngier #define KVM_ARCH_WANT_MMU_NOTIFIER
6864f8d6632SMarc Zyngier 
687b13216cfSChristoffer Dall void kvm_arm_halt_guest(struct kvm *kvm);
688b13216cfSChristoffer Dall void kvm_arm_resume_guest(struct kvm *kvm);
6894f8d6632SMarc Zyngier 
690cc5705fbSMarc Zyngier #define vcpu_has_run_once(vcpu)	!!rcu_access_pointer((vcpu)->pid)
691cc5705fbSMarc Zyngier 
69240a50853SQuentin Perret #ifndef __KVM_NVHE_HYPERVISOR__
693f50b6f6aSAndrew Scull #define kvm_call_hyp_nvhe(f, ...)						\
694f50b6f6aSAndrew Scull 	({								\
69505469831SAndrew Scull 		struct arm_smccc_res res;				\
69605469831SAndrew Scull 									\
69705469831SAndrew Scull 		arm_smccc_1_1_hvc(KVM_HOST_SMCCC_FUNC(f),		\
69805469831SAndrew Scull 				  ##__VA_ARGS__, &res);			\
69905469831SAndrew Scull 		WARN_ON(res.a0 != SMCCC_RET_SUCCESS);			\
70005469831SAndrew Scull 									\
70105469831SAndrew Scull 		res.a1;							\
702f50b6f6aSAndrew Scull 	})
703f50b6f6aSAndrew Scull 
70418fc7bf8SMarc Zyngier /*
70518fc7bf8SMarc Zyngier  * The couple of isb() below are there to guarantee the same behaviour
70618fc7bf8SMarc Zyngier  * on VHE as on !VHE, where the eret to EL1 acts as a context
70718fc7bf8SMarc Zyngier  * synchronization event.
70818fc7bf8SMarc Zyngier  */
70918fc7bf8SMarc Zyngier #define kvm_call_hyp(f, ...)						\
71018fc7bf8SMarc Zyngier 	do {								\
71118fc7bf8SMarc Zyngier 		if (has_vhe()) {					\
71218fc7bf8SMarc Zyngier 			f(__VA_ARGS__);					\
71318fc7bf8SMarc Zyngier 			isb();						\
71418fc7bf8SMarc Zyngier 		} else {						\
715f50b6f6aSAndrew Scull 			kvm_call_hyp_nvhe(f, ##__VA_ARGS__);		\
71618fc7bf8SMarc Zyngier 		}							\
71718fc7bf8SMarc Zyngier 	} while(0)
71818fc7bf8SMarc Zyngier 
71918fc7bf8SMarc Zyngier #define kvm_call_hyp_ret(f, ...)					\
72018fc7bf8SMarc Zyngier 	({								\
72118fc7bf8SMarc Zyngier 		typeof(f(__VA_ARGS__)) ret;				\
72218fc7bf8SMarc Zyngier 									\
72318fc7bf8SMarc Zyngier 		if (has_vhe()) {					\
72418fc7bf8SMarc Zyngier 			ret = f(__VA_ARGS__);				\
72518fc7bf8SMarc Zyngier 			isb();						\
72618fc7bf8SMarc Zyngier 		} else {						\
72705469831SAndrew Scull 			ret = kvm_call_hyp_nvhe(f, ##__VA_ARGS__);	\
72818fc7bf8SMarc Zyngier 		}							\
72918fc7bf8SMarc Zyngier 									\
73018fc7bf8SMarc Zyngier 		ret;							\
73118fc7bf8SMarc Zyngier 	})
73240a50853SQuentin Perret #else /* __KVM_NVHE_HYPERVISOR__ */
73340a50853SQuentin Perret #define kvm_call_hyp(f, ...) f(__VA_ARGS__)
73440a50853SQuentin Perret #define kvm_call_hyp_ret(f, ...) f(__VA_ARGS__)
73540a50853SQuentin Perret #define kvm_call_hyp_nvhe(f, ...) f(__VA_ARGS__)
73640a50853SQuentin Perret #endif /* __KVM_NVHE_HYPERVISOR__ */
73722b39ca3SMarc Zyngier 
738cf5d3188SChristoffer Dall void force_vm_exit(const cpumask_t *mask);
7394f8d6632SMarc Zyngier 
74074cc7e0cSTianjia Zhang int handle_exit(struct kvm_vcpu *vcpu, int exception_index);
74174cc7e0cSTianjia Zhang void handle_exit_early(struct kvm_vcpu *vcpu, int exception_index);
7424f8d6632SMarc Zyngier 
7436ac4a5acSMarc Zyngier int kvm_handle_cp14_load_store(struct kvm_vcpu *vcpu);
7446ac4a5acSMarc Zyngier int kvm_handle_cp14_32(struct kvm_vcpu *vcpu);
7456ac4a5acSMarc Zyngier int kvm_handle_cp14_64(struct kvm_vcpu *vcpu);
7466ac4a5acSMarc Zyngier int kvm_handle_cp15_32(struct kvm_vcpu *vcpu);
7476ac4a5acSMarc Zyngier int kvm_handle_cp15_64(struct kvm_vcpu *vcpu);
7486ac4a5acSMarc Zyngier int kvm_handle_sys_reg(struct kvm_vcpu *vcpu);
7499369bc5cSOliver Upton int kvm_handle_cp10_id(struct kvm_vcpu *vcpu);
7506ac4a5acSMarc Zyngier 
7516ac4a5acSMarc Zyngier void kvm_reset_sys_regs(struct kvm_vcpu *vcpu);
7526ac4a5acSMarc Zyngier 
753f1f0c0cfSAlexandru Elisei int kvm_sys_reg_table_init(void);
7546ac4a5acSMarc Zyngier 
7550e20f5e2SMarc Zyngier /* MMIO helpers */
7560e20f5e2SMarc Zyngier void kvm_mmio_write_buf(void *buf, unsigned int len, unsigned long data);
7570e20f5e2SMarc Zyngier unsigned long kvm_mmio_read_buf(const void *buf, unsigned int len);
7580e20f5e2SMarc Zyngier 
75974cc7e0cSTianjia Zhang int kvm_handle_mmio_return(struct kvm_vcpu *vcpu);
76074cc7e0cSTianjia Zhang int io_mem_abort(struct kvm_vcpu *vcpu, phys_addr_t fault_ipa);
7610e20f5e2SMarc Zyngier 
762e1bfc245SSean Christopherson /*
763e1bfc245SSean Christopherson  * Returns true if a Performance Monitoring Interrupt (PMI), a.k.a. perf event,
764e1bfc245SSean Christopherson  * arrived in guest context.  For arm64, any event that arrives while a vCPU is
765e1bfc245SSean Christopherson  * loaded is considered to be "in guest".
766e1bfc245SSean Christopherson  */
767e1bfc245SSean Christopherson static inline bool kvm_arch_pmi_in_guest(struct kvm_vcpu *vcpu)
768e1bfc245SSean Christopherson {
769e1bfc245SSean Christopherson 	return IS_ENABLED(CONFIG_GUEST_PERF_EVENTS) && !!vcpu;
770e1bfc245SSean Christopherson }
771e1bfc245SSean Christopherson 
772b48c1a45SSteven Price long kvm_hypercall_pv_features(struct kvm_vcpu *vcpu);
7738564d637SSteven Price gpa_t kvm_init_stolen_time(struct kvm_vcpu *vcpu);
7748564d637SSteven Price void kvm_update_stolen_time(struct kvm_vcpu *vcpu);
7758564d637SSteven Price 
776004a0124SAndrew Jones bool kvm_arm_pvtime_supported(void);
77758772e9aSSteven Price int kvm_arm_pvtime_set_attr(struct kvm_vcpu *vcpu,
77858772e9aSSteven Price 			    struct kvm_device_attr *attr);
77958772e9aSSteven Price int kvm_arm_pvtime_get_attr(struct kvm_vcpu *vcpu,
78058772e9aSSteven Price 			    struct kvm_device_attr *attr);
78158772e9aSSteven Price int kvm_arm_pvtime_has_attr(struct kvm_vcpu *vcpu,
78258772e9aSSteven Price 			    struct kvm_device_attr *attr);
78358772e9aSSteven Price 
784f8051e96SShameer Kolothum extern unsigned int kvm_arm_vmid_bits;
78541783839SShameer Kolothum int kvm_arm_vmid_alloc_init(void);
78641783839SShameer Kolothum void kvm_arm_vmid_alloc_free(void);
78741783839SShameer Kolothum void kvm_arm_vmid_update(struct kvm_vmid *kvm_vmid);
788100b4f09SShameer Kolothum void kvm_arm_vmid_clear_active(void);
78941783839SShameer Kolothum 
7908564d637SSteven Price static inline void kvm_arm_pvtime_vcpu_init(struct kvm_vcpu_arch *vcpu_arch)
7918564d637SSteven Price {
7928564d637SSteven Price 	vcpu_arch->steal.base = GPA_INVALID;
7938564d637SSteven Price }
7948564d637SSteven Price 
7958564d637SSteven Price static inline bool kvm_arm_is_pvtime_enabled(struct kvm_vcpu_arch *vcpu_arch)
7968564d637SSteven Price {
7978564d637SSteven Price 	return (vcpu_arch->steal.base != GPA_INVALID);
7988564d637SSteven Price }
799b48c1a45SSteven Price 
800b7b27facSDongjiu Geng void kvm_set_sei_esr(struct kvm_vcpu *vcpu, u64 syndrome);
801b7b27facSDongjiu Geng 
8024429fc64SAndre Przywara struct kvm_vcpu *kvm_mpidr_to_vcpu(struct kvm *kvm, unsigned long mpidr);
8034429fc64SAndre Przywara 
80414ef9d04SMarc Zyngier DECLARE_KVM_HYP_PER_CPU(struct kvm_host_data, kvm_host_data);
8054464e210SChristoffer Dall 
8061e0cf16cSMarc Zyngier static inline void kvm_init_host_cpu_context(struct kvm_cpu_context *cpu_ctxt)
80732f13955SMarc Zyngier {
80832f13955SMarc Zyngier 	/* The host's MPIDR is immutable, so let's set it up at boot time */
80971071acfSMarc Zyngier 	ctxt_sys_reg(cpu_ctxt, MPIDR_EL1) = read_cpuid_mpidr();
81032f13955SMarc Zyngier }
81132f13955SMarc Zyngier 
8125bdf3437SJames Morse static inline bool kvm_system_needs_idmapped_vectors(void)
8135bdf3437SJames Morse {
8145bdf3437SJames Morse 	return cpus_have_const_cap(ARM64_SPECTRE_V3A);
8155bdf3437SJames Morse }
8165bdf3437SJames Morse 
817384b40caSMark Rutland void kvm_arm_vcpu_ptrauth_trap(struct kvm_vcpu *vcpu);
818384b40caSMark Rutland 
8190865e636SRadim Krčmář static inline void kvm_arch_hardware_unsetup(void) {}
8200865e636SRadim Krčmář static inline void kvm_arch_sync_events(struct kvm *kvm) {}
8210865e636SRadim Krčmář static inline void kvm_arch_sched_in(struct kvm_vcpu *vcpu, int cpu) {}
8220865e636SRadim Krčmář 
82356c7f5e7SAlex Bennée void kvm_arm_init_debug(void);
824263d6287SAlexandru Elisei void kvm_arm_vcpu_init_debug(struct kvm_vcpu *vcpu);
82556c7f5e7SAlex Bennée void kvm_arm_setup_debug(struct kvm_vcpu *vcpu);
82656c7f5e7SAlex Bennée void kvm_arm_clear_debug(struct kvm_vcpu *vcpu);
82784e690bfSAlex Bennée void kvm_arm_reset_debug_ptr(struct kvm_vcpu *vcpu);
8287dabf02fSOliver Upton 
8297dabf02fSOliver Upton #define kvm_vcpu_os_lock_enabled(vcpu)		\
8307dabf02fSOliver Upton 	(!!(__vcpu_sys_reg(vcpu, OSLSR_EL1) & SYS_OSLSR_OSLK))
8317dabf02fSOliver Upton 
832bb0c70bcSShannon Zhao int kvm_arm_vcpu_arch_set_attr(struct kvm_vcpu *vcpu,
833bb0c70bcSShannon Zhao 			       struct kvm_device_attr *attr);
834bb0c70bcSShannon Zhao int kvm_arm_vcpu_arch_get_attr(struct kvm_vcpu *vcpu,
835bb0c70bcSShannon Zhao 			       struct kvm_device_attr *attr);
836bb0c70bcSShannon Zhao int kvm_arm_vcpu_arch_has_attr(struct kvm_vcpu *vcpu,
837bb0c70bcSShannon Zhao 			       struct kvm_device_attr *attr);
83856c7f5e7SAlex Bennée 
839f0376edbSSteven Price long kvm_vm_ioctl_mte_copy_tags(struct kvm *kvm,
840f0376edbSSteven Price 				struct kvm_arm_copy_mte_tags *copy_tags);
841f0376edbSSteven Price 
842e6b673b7SDave Martin /* Guest/host FPSIMD coordination helpers */
843e6b673b7SDave Martin int kvm_arch_vcpu_run_map_fp(struct kvm_vcpu *vcpu);
844e6b673b7SDave Martin void kvm_arch_vcpu_load_fp(struct kvm_vcpu *vcpu);
845af9a0e21SMarc Zyngier void kvm_arch_vcpu_ctxflush_fp(struct kvm_vcpu *vcpu);
846e6b673b7SDave Martin void kvm_arch_vcpu_ctxsync_fp(struct kvm_vcpu *vcpu);
847e6b673b7SDave Martin void kvm_arch_vcpu_put_fp(struct kvm_vcpu *vcpu);
84852b28657SQuentin Perret void kvm_vcpu_unshare_task_fp(struct kvm_vcpu *vcpu);
849e6b673b7SDave Martin 
850eb41238cSAndrew Murray static inline bool kvm_pmu_counter_deferred(struct perf_event_attr *attr)
851eb41238cSAndrew Murray {
852435e53fbSAndrew Murray 	return (!has_vhe() && attr->exclude_host);
853eb41238cSAndrew Murray }
854eb41238cSAndrew Murray 
855d2602bb4SSuzuki K Poulose /* Flags for host debug state */
856d2602bb4SSuzuki K Poulose void kvm_arch_vcpu_load_debug_state_flags(struct kvm_vcpu *vcpu);
857d2602bb4SSuzuki K Poulose void kvm_arch_vcpu_put_debug_state_flags(struct kvm_vcpu *vcpu);
858d2602bb4SSuzuki K Poulose 
859052f064dSMarc Zyngier #ifdef CONFIG_KVM
860eb41238cSAndrew Murray void kvm_set_pmu_events(u32 set, struct perf_event_attr *attr);
861eb41238cSAndrew Murray void kvm_clr_pmu_events(u32 clr);
862eb41238cSAndrew Murray #else
863eb41238cSAndrew Murray static inline void kvm_set_pmu_events(u32 set, struct perf_event_attr *attr) {}
864eb41238cSAndrew Murray static inline void kvm_clr_pmu_events(u32 clr) {}
865e6b673b7SDave Martin #endif
86617eed27bSDave Martin 
86713aeb9b4SDavid Brazdil void kvm_vcpu_load_sysregs_vhe(struct kvm_vcpu *vcpu);
86813aeb9b4SDavid Brazdil void kvm_vcpu_put_sysregs_vhe(struct kvm_vcpu *vcpu);
869bc192ceeSChristoffer Dall 
870b130a8f7SMarc Zyngier int kvm_set_ipa_limit(void);
8710f62f0e9SSuzuki K Poulose 
872d1e5b0e9SMarc Orr #define __KVM_HAVE_ARCH_VM_ALLOC
873d1e5b0e9SMarc Orr struct kvm *kvm_arch_alloc_vm(void);
874d1e5b0e9SMarc Orr 
875bca607ebSMarc Zyngier int kvm_arm_setup_stage2(struct kvm *kvm, unsigned long type);
8765b6c6742SSuzuki K Poulose 
8772ea7f655SFuad Tabba static inline bool kvm_vm_is_protected(struct kvm *kvm)
8782ea7f655SFuad Tabba {
8792ea7f655SFuad Tabba 	return false;
8802ea7f655SFuad Tabba }
8812ea7f655SFuad Tabba 
8822a0c3433SFuad Tabba void kvm_init_protected_traps(struct kvm_vcpu *vcpu);
8832a0c3433SFuad Tabba 
88492e68b2bSDave Martin int kvm_arm_vcpu_finalize(struct kvm_vcpu *vcpu, int feature);
8859033bba4SDave Martin bool kvm_arm_vcpu_is_finalized(struct kvm_vcpu *vcpu);
8869033bba4SDave Martin 
8879033bba4SDave Martin #define kvm_arm_vcpu_sve_finalized(vcpu) \
8889033bba4SDave Martin 	((vcpu)->arch.flags & KVM_ARM64_VCPU_SVE_FINALIZED)
8897dd32a0dSDave Martin 
89006394531SMarc Zyngier #define kvm_has_mte(kvm)					\
89106394531SMarc Zyngier 	(system_supports_mte() &&				\
89206394531SMarc Zyngier 	 test_bit(KVM_ARCH_FLAG_MTE_ENABLED, &(kvm)->arch.flags))
89314bda7a9SMarc Zyngier 
894a8e190cdSArd Biesheuvel int kvm_trng_call(struct kvm_vcpu *vcpu);
895f320bc74SQuentin Perret #ifdef CONFIG_KVM
896f320bc74SQuentin Perret extern phys_addr_t hyp_mem_base;
897f320bc74SQuentin Perret extern phys_addr_t hyp_mem_size;
898f320bc74SQuentin Perret void __init kvm_hyp_reserve(void);
899f320bc74SQuentin Perret #else
900f320bc74SQuentin Perret static inline void kvm_hyp_reserve(void) { }
901f320bc74SQuentin Perret #endif
902a8e190cdSArd Biesheuvel 
9031e579429SOliver Upton void kvm_arm_vcpu_power_off(struct kvm_vcpu *vcpu);
904b171f9bbSOliver Upton bool kvm_arm_vcpu_stopped(struct kvm_vcpu *vcpu);
9051e579429SOliver Upton 
9064f8d6632SMarc Zyngier #endif /* __ARM64_KVM_HOST_H__ */
907