Files
msm-5.15/arch/arm64/include/asm/kvm_host.h
Greg Kroah-Hartman c4be56dac8 Merge 5.15.63 into android13-5.15-lts
Changes in 5.15.63
	ALSA: info: Fix llseek return value when using callback
	ALSA: hda/realtek: Add quirk for Clevo NS50PU, NS70PU
	KVM: Unconditionally get a ref to /dev/kvm module when creating a VM
	x86/mm: Use proper mask when setting PUD mapping
	rds: add missing barrier to release_refill
	locking/atomic: Make test_and_*_bit() ordered on failure
	drm/nouveau: recognise GA103
	drm/ttm: Fix dummy res NULL ptr deref bug
	drm/amd/display: Check correct bounds for stream encoder instances for DCN303
	ata: libata-eh: Add missing command name
	mmc: pxamci: Fix another error handling path in pxamci_probe()
	mmc: pxamci: Fix an error handling path in pxamci_probe()
	mmc: meson-gx: Fix an error handling path in meson_mmc_probe()
	btrfs: unset reloc control if transaction commit fails in prepare_to_relocate()
	btrfs: reset RO counter on block group if we fail to relocate
	btrfs: fix lost error handling when looking up extended ref on log replay
	cifs: Fix memory leak on the deferred close
	x86/kprobes: Fix JNG/JNLE emulation
	tracing/perf: Fix double put of trace event when init fails
	tracing/eprobes: Do not allow eprobes to use $stack, or % for regs
	tracing/eprobes: Do not hardcode $comm as a string
	tracing/eprobes: Have event probes be consistent with kprobes and uprobes
	tracing/probes: Have kprobes and uprobes use $COMM too
	tracing: Have filter accept "common_cpu" to be consistent
	ALSA: usb-audio: More comprehensive mixer map for ASUS ROG Zenith II
	dt-bindings: usb: mtk-xhci: Allow wakeup interrupt-names to be optional
	can: ems_usb: fix clang's -Wunaligned-access warning
	apparmor: fix quiet_denied for file rules
	apparmor: fix absroot causing audited secids to begin with =
	apparmor: Fix failed mount permission check error message
	apparmor: fix aa_label_asxprint return check
	apparmor: fix setting unconfined mode on a loaded profile
	apparmor: fix overlapping attachment computation
	apparmor: fix reference count leak in aa_pivotroot()
	apparmor: Fix memleak in aa_simple_write_to_buffer()
	Documentation: ACPI: EINJ: Fix obsolete example
	NFSv4.1: Don't decrease the value of seq_nr_highest_sent
	NFSv4.1: Handle NFS4ERR_DELAY replies to OP_SEQUENCE correctly
	NFSv4: Fix races in the legacy idmapper upcall
	NFSv4.1: RECLAIM_COMPLETE must handle EACCES
	NFSv4/pnfs: Fix a use-after-free bug in open
	BPF: Fix potential bad pointer dereference in bpf_sys_bpf()
	bpf: Don't reinit map value in prealloc_lru_pop
	bpf: Acquire map uref in .init_seq_private for array map iterator
	bpf: Acquire map uref in .init_seq_private for hash map iterator
	bpf: Acquire map uref in .init_seq_private for sock local storage map iterator
	bpf: Acquire map uref in .init_seq_private for sock{map,hash} iterator
	bpf: Check the validity of max_rdwr_access for sock local storage map iterator
	can: mcp251x: Fix race condition on receive interrupt
	can: j1939: j1939_session_destroy(): fix memory leak of skbs
	net: atlantic: fix aq_vec index out of range error
	m68k: coldfire/device.c: protect FLEXCAN blocks
	sunrpc: fix expiry of auth creds
	SUNRPC: Fix xdr_encode_bool()
	SUNRPC: Reinitialise the backchannel request buffers before reuse
	virtio_net: fix memory leak inside XPD_TX with mergeable
	devlink: Fix use-after-free after a failed reload
	net: phy: Warn about incorrect mdio_bus_phy_resume() state
	net: bcmgenet: Indicate MAC is in charge of PHY PM
	net: bgmac: Fix a BUG triggered by wrong bytes_compl
	selftests: forwarding: Fix failing tests with old libnet
	dt-bindings: arm: qcom: fix Alcatel OneTouch Idol 3 compatibles
	pinctrl: nomadik: Fix refcount leak in nmk_pinctrl_dt_subnode_to_map
	pinctrl: qcom: msm8916: Allow CAMSS GP clocks to be muxed
	pinctrl: amd: Don't save/restore interrupt status and wake status bits
	pinctrl: sunxi: Add I/O bias setting for H6 R-PIO
	pinctrl: qcom: sm8250: Fix PDC map
	Input: exc3000 - fix return value check of wait_for_completion_timeout
	octeontx2-pf: Fix NIX_AF_TL3_TL2X_LINKX_CFG register configuration
	octeontx2-af: Apply tx nibble fixup always
	octeontx2-af: suppress external profile loading warning
	octeontx2-af: Fix mcam entry resource leak
	octeontx2-af: Fix key checking for source mac
	ACPI: property: Return type of acpi_add_nondev_subnodes() should be bool
	geneve: do not use RT_TOS for IPv6 flowlabel
	mlx5: do not use RT_TOS for IPv6 flowlabel
	ipv6: do not use RT_TOS for IPv6 flowlabel
	plip: avoid rcu debug splat
	vsock: Fix memory leak in vsock_connect()
	vsock: Set socket state back to SS_UNCONNECTED in vsock_connect_timeout()
	dt-bindings: gpio: zynq: Add missing compatible strings
	dt-bindings: arm: qcom: fix Longcheer L8150 compatibles
	dt-bindings: arm: qcom: fix MSM8916 MTP compatibles
	dt-bindings: arm: qcom: fix MSM8994 boards compatibles
	dt-bindings: clock: qcom,gcc-msm8996: add more GCC clock sources
	spi: dt-bindings: cadence: add missing 'required'
	spi: dt-bindings: zynqmp-qspi: add missing 'required'
	ceph: use correct index when encoding client supported features
	tools/vm/slabinfo: use alphabetic order when two values are equal
	ceph: don't leak snap_rwsem in handle_cap_grant
	kbuild: dummy-tools: avoid tmpdir leak in dummy gcc
	tools build: Switch to new openssl API for test-libcrypto
	NTB: ntb_tool: uninitialized heap data in tool_fn_write()
	nfp: ethtool: fix the display error of `ethtool -m DEVNAME`
	xen/xenbus: fix return type in xenbus_file_read()
	atm: idt77252: fix use-after-free bugs caused by tst_timer
	geneve: fix TOS inheriting for ipv4
	perf probe: Fix an error handling path in 'parse_perf_probe_command()'
	perf parse-events: Fix segfault when event parser gets an error
	perf tests: Fix Track with sched_switch test for hybrid case
	dpaa2-eth: trace the allocated address instead of page struct
	fs/ntfs3: Fix using uninitialized value n when calling indx_read
	fs/ntfs3: Fix NULL deref in ntfs_update_mftmirr
	fs/ntfs3: Don't clear upper bits accidentally in log_replay()
	fs/ntfs3: Fix double free on remount
	fs/ntfs3: Do not change mode if ntfs_set_ea failed
	fs/ntfs3: Fix missing i_op in ntfs_read_mft
	nios2: page fault et.al. are *not* restartable syscalls...
	nios2: don't leave NULLs in sys_call_table[]
	nios2: traced syscall does need to check the syscall number
	nios2: fix syscall restart checks
	nios2: restarts apply only to the first sigframe we build...
	nios2: add force_successful_syscall_return()
	iavf: Fix adminq error handling
	iavf: Fix reset error handling
	ASoC: SOF: debug: Fix potential buffer overflow by snprintf()
	ASoC: tas2770: Set correct FSYNC polarity
	ASoC: tas2770: Allow mono streams
	ASoC: tas2770: Drop conflicting set_bias_level power setting
	ASoC: tas2770: Fix handling of mute/unmute
	ASoC: codec: tlv320aic32x4: fix mono playback via I2S
	netfilter: nf_tables: use READ_ONCE and WRITE_ONCE for shared generation id access
	fs/ntfs3: uninitialized variable in ntfs_set_acl_ex()
	netfilter: nf_tables: disallow NFTA_SET_ELEM_KEY_END with NFT_SET_ELEM_INTERVAL_END flag
	netfilter: nf_tables: possible module reference underflow in error path
	netfilter: nf_tables: really skip inactive sets when allocating name
	netfilter: nf_tables: validate NFTA_SET_ELEM_OBJREF based on NFT_SET_OBJECT flag
	netfilter: nf_tables: NFTA_SET_ELEM_KEY_END requires concat and interval flags
	netfilter: nf_tables: disallow NFT_SET_ELEM_CATCHALL and NFT_SET_ELEM_INTERVAL_END
	netfilter: nf_tables: check NFT_SET_CONCAT flag if field_count is specified
	powerpc/pci: Fix get_phb_number() locking
	spi: meson-spicc: add local pow2 clock ops to preserve rate between messages
	net/sunrpc: fix potential memory leaks in rpc_sysfs_xprt_state_change()
	net: dsa: mv88e6060: prevent crash on an unused port
	mlxsw: spectrum: Clear PTP configuration after unregistering the netdevice
	net: moxa: pass pdev instead of ndev to DMA functions
	net: fix potential refcount leak in ndisc_router_discovery()
	net: dsa: microchip: ksz9477: fix fdb_dump last invalid entry
	net: dsa: felix: fix ethtool 256-511 and 512-1023 TX packet counters
	net: genl: fix error path memory leak in policy dumping
	net: dsa: don't warn in dsa_port_set_state_now() when driver doesn't support it
	net: dsa: sja1105: fix buffer overflow in sja1105_setup_devlink_regions()
	ice: Ignore EEXIST when setting promisc mode
	i2c: imx: Make sure to unregister adapter on remove()
	regulator: pca9450: Remove restrictions for regulator-name
	i40e: Fix to stop tx_timeout recovery if GLOBR fails
	fec: Fix timer capture timing in `fec_ptp_enable_pps()`
	stmmac: intel: Add a missing clk_disable_unprepare() call in intel_eth_pci_remove()
	igb: Add lock to avoid data race
	kbuild: fix the modules order between drivers and libs
	gcc-plugins: Undefine LATENT_ENTROPY_PLUGIN when plugin disabled for a file
	tracing/eprobes: Fix reading of string fields
	drm/imx/dcss: get rid of HPD warning message
	ASoC: SOF: Intel: hda: Define rom_status_reg in sof_intel_dsp_desc
	ASoC: SOF: Intel: hda: Fix potential buffer overflow by snprintf()
	drm/meson: Fix refcount bugs in meson_vpu_has_available_connectors()
	drm/sun4i: dsi: Prevent underflow when computing packet sizes
	net: qrtr: start MHI channel after endpoit creation
	KVM: arm64: Treat PMCR_EL1.LC as RES1 on asymmetric systems
	KVM: arm64: Reject 32bit user PSTATE on asymmetric systems
	HID: multitouch: new device class fix Lenovo X12 trackpad sticky
	PCI: Add ACS quirk for Broadcom BCM5750x NICs
	platform/chrome: cros_ec_proto: don't show MKBP version if unsupported
	usb: cdns3 fix use-after-free at workaround 2
	usb: cdns3: fix random warning message when driver load
	usb: gadget: uvc: calculate the number of request depending on framesize
	usb: gadget: uvc: call uvc uvcg_warn on completed status instead of uvcg_info
	PCI: aardvark: Fix reporting Slot capabilities on emulated bridge
	irqchip/tegra: Fix overflow implicit truncation warnings
	drm/meson: Fix overflow implicit truncation warnings
	clk: ti: Stop using legacy clkctrl names for omap4 and 5
	scsi: ufs: ufs-mediatek: Fix the timing of configuring device regulators
	usb: host: ohci-ppc-of: Fix refcount leak bug
	usb: renesas: Fix refcount leak bug
	usb: dwc2: gadget: remove D+ pull-up while no vbus with usb-role-switch
	vboxguest: Do not use devm for irq
	clk: qcom: ipq8074: dont disable gcc_sleep_clk_src
	uacce: Handle parent device removal or parent driver module rmmod
	zram: do not lookup algorithm in backends table
	clk: qcom: clk-alpha-pll: fix clk_trion_pll_configure description
	scsi: lpfc: Prevent buffer overflow crashes in debugfs with malformed user input
	scsi: lpfc: Fix possible memory leak when failing to issue CMF WQE
	gadgetfs: ep_io - wait until IRQ finishes
	coresight: etm4x: avoid build failure with unrolled loops
	habanalabs/gaudi: fix shift out of bounds
	habanalabs/gaudi: mask constant value before cast
	mmc: tmio: avoid glitches when resetting
	pinctrl: intel: Check against matching data instead of ACPI companion
	cxl: Fix a memory leak in an error handling path
	PCI/ACPI: Guard ARM64-specific mcfg_quirks
	um: add "noreboot" command line option for PANIC_TIMEOUT=-1 setups
	dmaengine: dw-axi-dmac: do not print NULL LLI during error
	dmaengine: dw-axi-dmac: ignore interrupt if no descriptor
	RDMA/rxe: Limit the number of calls to each tasklet
	csky/kprobe: reclaim insn_slot on kprobe unregistration
	selftests/kprobe: Do not test for GRP/ without event failures
	dmaengine: sprd: Cleanup in .remove() after pm_runtime_get_sync() failed
	openrisc: io: Define iounmap argument as volatile
	phy: samsung: phy-exynos-pcie: sanitize init/power_on callbacks
	md: Notify sysfs sync_completed in md_reap_sync_thread()
	nvmet-tcp: fix lockdep complaint on nvmet_tcp_wq flush during queue teardown
	drivers:md:fix a potential use-after-free bug
	ext4: avoid remove directory when directory is corrupted
	ext4: avoid resizing to a partial cluster size
	lib/list_debug.c: Detect uninitialized lists
	tty: serial: Fix refcount leak bug in ucc_uart.c
	KVM: PPC: Book3S HV: Fix "rm_exit" entry in debugfs timings
	vfio: Clear the caps->buf to NULL after free
	mips: cavium-octeon: Fix missing of_node_put() in octeon2_usb_clocks_start
	iommu/io-pgtable-arm-v7s: Add a quirk to allow pgtable PA up to 35bit
	modules: Ensure natural alignment for .altinstructions and __bug_table sections
	ASoC: rsnd: care default case on rsnd_ssiu_busif_err_irq_ctrl()
	riscv: dts: sifive: Add fu740 topology information
	riscv: dts: canaan: Add k210 topology information
	riscv: mmap with PROT_WRITE but no PROT_READ is invalid
	RISC-V: Add fast call path of crash_kexec()
	watchdog: export lockup_detector_reconfigure
	powerpc/32: Set an IBAT covering up to _einittext during init
	powerpc/32: Don't always pass -mcpu=powerpc to the compiler
	ovl: warn if trusted xattr creation fails
	powerpc/ioda/iommu/debugfs: Generate unique debugfs entries
	ALSA: core: Add async signal helpers
	ALSA: timer: Use deferred fasync helper
	ALSA: control: Use deferred fasync helper
	f2fs: fix to avoid use f2fs_bug_on() in f2fs_new_node_page()
	f2fs: fix to do sanity check on segment type in build_sit_entries()
	smb3: check xattr value length earlier
	powerpc/64: Init jump labels before parse_early_param()
	venus: pm_helpers: Fix warning in OPP during probe
	video: fbdev: i740fb: Check the argument of i740_calc_vclk()
	MIPS: tlbex: Explicitly compare _PAGE_NO_EXEC against 0
	can: j1939: j1939_sk_queue_activate_next_locked(): replace WARN_ON_ONCE with netdev_warn_once()
	scsi: ufs: ufs-mediatek: Fix build error and type mismatch
	xfs: flush inodegc workqueue tasks before cancel
	xfs: reserve quota for dir expansion when linking/unlinking files
	xfs: reserve quota for target dir expansion when renaming files
	xfs: remove infinite loop when reserving free block pool
	xfs: always succeed at setting the reserve pool size
	xfs: fix overfilling of reserve pool
	xfs: fix soft lockup via spinning in filestream ag selection loop
	xfs: revert "xfs: actually bump warning counts when we send warnings"
	xfs: reject crazy array sizes being fed to XFS_IOC_GETBMAP*
	Linux 5.15.63

Signed-off-by: Greg Kroah-Hartman <gregkh@google.com>
Change-Id: I7fda993b776ff638dff390f0ae7e3b26c45ca9e4
2022-08-29 16:32:18 +02:00

955 lines
29 KiB
C

/* SPDX-License-Identifier: GPL-2.0-only */
/*
* Copyright (C) 2012,2013 - ARM Ltd
* Author: Marc Zyngier <marc.zyngier@arm.com>
*
* Derived from arch/arm/include/asm/kvm_host.h:
* Copyright (C) 2012 - Virtual Open Systems and Columbia University
* Author: Christoffer Dall <c.dall@virtualopensystems.com>
*/
#ifndef __ARM64_KVM_HOST_H__
#define __ARM64_KVM_HOST_H__
#include <linux/arm-smccc.h>
#include <linux/bitmap.h>
#include <linux/types.h>
#include <linux/jump_label.h>
#include <linux/kvm_types.h>
#include <linux/percpu.h>
#include <linux/psci.h>
#include <asm/arch_gicv3.h>
#include <asm/barrier.h>
#include <asm/cpufeature.h>
#include <asm/cputype.h>
#include <asm/daifflags.h>
#include <asm/fpsimd.h>
#include <asm/kvm.h>
#include <asm/kvm_asm.h>
#define __KVM_HAVE_ARCH_INTC_INITIALIZED
#define KVM_HALT_POLL_NS_DEFAULT 500000
#include <kvm/arm_vgic.h>
#include <kvm/arm_arch_timer.h>
#include <kvm/arm_pmu.h>
#define KVM_MAX_VCPUS VGIC_V3_MAX_CPUS
#define KVM_VCPU_MAX_FEATURES 7
#define KVM_REQ_SLEEP \
KVM_ARCH_REQ_FLAGS(0, KVM_REQUEST_WAIT | KVM_REQUEST_NO_WAKEUP)
#define KVM_REQ_IRQ_PENDING KVM_ARCH_REQ(1)
#define KVM_REQ_VCPU_RESET KVM_ARCH_REQ(2)
#define KVM_REQ_RECORD_STEAL KVM_ARCH_REQ(3)
#define KVM_REQ_RELOAD_GICv4 KVM_ARCH_REQ(4)
#define KVM_REQ_RELOAD_PMU KVM_ARCH_REQ(5)
#define KVM_DIRTY_LOG_MANUAL_CAPS (KVM_DIRTY_LOG_MANUAL_PROTECT_ENABLE | \
KVM_DIRTY_LOG_INITIALLY_SET)
/*
* Mode of operation configurable with kvm-arm.mode early param.
* See Documentation/admin-guide/kernel-parameters.txt for more information.
*/
enum kvm_mode {
KVM_MODE_DEFAULT,
KVM_MODE_PROTECTED,
KVM_MODE_NONE,
};
enum kvm_mode kvm_get_mode(void);
DECLARE_STATIC_KEY_FALSE(userspace_irqchip_in_use);
extern unsigned int kvm_sve_max_vl;
int kvm_arm_init_sve(void);
u32 __attribute_const__ kvm_target_cpu(void);
int kvm_reset_vcpu(struct kvm_vcpu *vcpu);
void kvm_arm_vcpu_destroy(struct kvm_vcpu *vcpu);
struct kvm_hyp_memcache {
phys_addr_t head;
unsigned long nr_pages;
};
static inline void push_hyp_memcache(struct kvm_hyp_memcache *mc,
phys_addr_t *p,
phys_addr_t (*to_pa)(void *virt))
{
*p = mc->head;
mc->head = to_pa(p);
mc->nr_pages++;
}
static inline void *pop_hyp_memcache(struct kvm_hyp_memcache *mc,
void *(*to_va)(phys_addr_t phys))
{
phys_addr_t *p = to_va(mc->head);
if (!mc->nr_pages)
return NULL;
mc->head = *p;
mc->nr_pages--;
return p;
}
static inline int __topup_hyp_memcache(struct kvm_hyp_memcache *mc,
unsigned long min_pages,
void *(*alloc_fn)(void *arg),
phys_addr_t (*to_pa)(void *virt),
void *arg)
{
while (mc->nr_pages < min_pages) {
phys_addr_t *p = alloc_fn(arg);
if (!p)
return -ENOMEM;
push_hyp_memcache(mc, p, to_pa);
}
return 0;
}
static inline void __free_hyp_memcache(struct kvm_hyp_memcache *mc,
void (*free_fn)(void *virt, void *arg),
void *(*to_va)(phys_addr_t phys),
void *arg)
{
while (mc->nr_pages)
free_fn(pop_hyp_memcache(mc, to_va), arg);
}
void free_hyp_memcache(struct kvm_hyp_memcache *mc);
int topup_hyp_memcache(struct kvm_vcpu *vcpu);
struct kvm_vmid {
/* The VMID generation used for the virt. memory system */
u64 vmid_gen;
u32 vmid;
};
struct kvm_s2_mmu {
struct kvm_vmid vmid;
/*
* stage2 entry level table
*
* Two kvm_s2_mmu structures in the same VM can point to the same
* pgd here. This happens when running a guest using a
* translation regime that isn't affected by its own stage-2
* translation, such as a non-VHE hypervisor running at vEL2, or
* for vEL1/EL0 with vHCR_EL2.VM == 0. In that case, we use the
* canonical stage-2 page tables.
*/
phys_addr_t pgd_phys;
struct kvm_pgtable *pgt;
/* The last vcpu id that ran on each physical CPU */
int __percpu *last_vcpu_ran;
struct kvm_arch *arch;
};
struct kvm_arch_memory_slot {
};
struct kvm_pinned_page {
struct list_head link;
struct page *page;
};
struct kvm_protected_vm {
bool enabled;
int shadow_handle;
struct mutex shadow_lock;
struct kvm_hyp_memcache teardown_mc;
struct list_head pinned_pages;
gpa_t pvmfw_load_addr;
};
struct kvm_arch {
struct kvm_s2_mmu mmu;
/* VTCR_EL2 value for this VM */
u64 vtcr;
/* The maximum number of vCPUs depends on the used GIC model */
int max_vcpus;
/* Interrupt controller */
struct vgic_dist vgic;
/* Mandated version of PSCI */
u32 psci_version;
/*
* If we encounter a data abort without valid instruction syndrome
* information, report this to user space. User space can (and
* should) opt in to this feature if KVM_CAP_ARM_NISV_TO_USER is
* supported.
*/
#define KVM_ARCH_FLAG_RETURN_NISV_IO_ABORT_TO_USER 0
/* Memory Tagging Extension enabled for the guest */
#define KVM_ARCH_FLAG_MTE_ENABLED 1
/* Guest has bought into the MMIO guard extension */
#define KVM_ARCH_FLAG_MMIO_GUARD 2
unsigned long flags;
/*
* VM-wide PMU filter, implemented as a bitmap and big enough for
* up to 2^10 events (ARMv8.0) or 2^16 events (ARMv8.1+).
*/
unsigned long *pmu_filter;
unsigned int pmuver;
u8 pfr0_csv2;
u8 pfr0_csv3;
struct kvm_protected_vm pkvm;
};
struct kvm_protected_vcpu {
/* A pointer to the host's vcpu. */
struct kvm_vcpu *host_vcpu;
/* A pointer to the shadow vm. */
struct kvm_shadow_vm *shadow_vm;
/* Tracks exit code for the protected guest. */
int exit_code;
/*
* Track the power state transition of a protected vcpu.
* Can be in one of three states:
* PSCI_0_2_AFFINITY_LEVEL_ON
* PSCI_0_2_AFFINITY_LEVEL_OFF
* PSCI_0_2_AFFINITY_LEVEL_PENDING
*/
int power_state;
/* True if this vcpu is currently loaded on a cpu. */
bool loaded_on_cpu;
};
struct kvm_vcpu_fault_info {
u32 esr_el2; /* Hyp Syndrom Register */
u64 far_el2; /* Hyp Fault Address Register */
u64 hpfar_el2; /* Hyp IPA Fault Address Register */
u64 disr_el1; /* Deferred [SError] Status Register */
};
enum vcpu_sysreg {
__INVALID_SYSREG__, /* 0 is reserved as an invalid value */
MPIDR_EL1, /* MultiProcessor Affinity Register */
CSSELR_EL1, /* Cache Size Selection Register */
SCTLR_EL1, /* System Control Register */
ACTLR_EL1, /* Auxiliary Control Register */
CPACR_EL1, /* Coprocessor Access Control */
ZCR_EL1, /* SVE Control */
TTBR0_EL1, /* Translation Table Base Register 0 */
TTBR1_EL1, /* Translation Table Base Register 1 */
TCR_EL1, /* Translation Control Register */
ESR_EL1, /* Exception Syndrome Register */
AFSR0_EL1, /* Auxiliary Fault Status Register 0 */
AFSR1_EL1, /* Auxiliary Fault Status Register 1 */
FAR_EL1, /* Fault Address Register */
MAIR_EL1, /* Memory Attribute Indirection Register */
VBAR_EL1, /* Vector Base Address Register */
CONTEXTIDR_EL1, /* Context ID Register */
TPIDR_EL0, /* Thread ID, User R/W */
TPIDRRO_EL0, /* Thread ID, User R/O */
TPIDR_EL1, /* Thread ID, Privileged */
AMAIR_EL1, /* Aux Memory Attribute Indirection Register */
CNTKCTL_EL1, /* Timer Control Register (EL1) */
PAR_EL1, /* Physical Address Register */
MDSCR_EL1, /* Monitor Debug System Control Register */
MDCCINT_EL1, /* Monitor Debug Comms Channel Interrupt Enable Reg */
DISR_EL1, /* Deferred Interrupt Status Register */
/* Performance Monitors Registers */
PMCR_EL0, /* Control Register */
PMSELR_EL0, /* Event Counter Selection Register */
PMEVCNTR0_EL0, /* Event Counter Register (0-30) */
PMEVCNTR30_EL0 = PMEVCNTR0_EL0 + 30,
PMCCNTR_EL0, /* Cycle Counter Register */
PMEVTYPER0_EL0, /* Event Type Register (0-30) */
PMEVTYPER30_EL0 = PMEVTYPER0_EL0 + 30,
PMCCFILTR_EL0, /* Cycle Count Filter Register */
PMCNTENSET_EL0, /* Count Enable Set Register */
PMINTENSET_EL1, /* Interrupt Enable Set Register */
PMOVSSET_EL0, /* Overflow Flag Status Set Register */
PMUSERENR_EL0, /* User Enable Register */
/* Pointer Authentication Registers in a strict increasing order. */
APIAKEYLO_EL1,
APIAKEYHI_EL1,
APIBKEYLO_EL1,
APIBKEYHI_EL1,
APDAKEYLO_EL1,
APDAKEYHI_EL1,
APDBKEYLO_EL1,
APDBKEYHI_EL1,
APGAKEYLO_EL1,
APGAKEYHI_EL1,
ELR_EL1,
SP_EL1,
SPSR_EL1,
CNTVOFF_EL2,
CNTV_CVAL_EL0,
CNTV_CTL_EL0,
CNTP_CVAL_EL0,
CNTP_CTL_EL0,
/* Memory Tagging Extension registers */
RGSR_EL1, /* Random Allocation Tag Seed Register */
GCR_EL1, /* Tag Control Register */
TFSR_EL1, /* Tag Fault Status Register (EL1) */
TFSRE0_EL1, /* Tag Fault Status Register (EL0) */
/* 32bit specific registers. Keep them at the end of the range */
DACR32_EL2, /* Domain Access Control Register */
IFSR32_EL2, /* Instruction Fault Status Register */
FPEXC32_EL2, /* Floating-Point Exception Control Register */
DBGVCR32_EL2, /* Debug Vector Catch Register */
NR_SYS_REGS /* Nothing after this line! */
};
struct kvm_cpu_context {
struct user_pt_regs regs; /* sp = sp_el0 */
u64 spsr_abt;
u64 spsr_und;
u64 spsr_irq;
u64 spsr_fiq;
struct user_fpsimd_state fp_regs;
u64 sys_regs[NR_SYS_REGS];
struct kvm_vcpu *__hyp_running_vcpu;
};
struct kvm_pmu_events {
u32 events_host;
u32 events_guest;
};
struct kvm_host_data {
struct kvm_cpu_context host_ctxt;
struct kvm_pmu_events pmu_events;
};
struct kvm_host_psci_config {
/* PSCI version used by host. */
u32 version;
u32 smccc_version;
/* Function IDs used by host if version is v0.1. */
struct psci_0_1_function_ids function_ids_0_1;
bool psci_0_1_cpu_suspend_implemented;
bool psci_0_1_cpu_on_implemented;
bool psci_0_1_cpu_off_implemented;
bool psci_0_1_migrate_implemented;
};
extern struct kvm_host_psci_config kvm_nvhe_sym(kvm_host_psci_config);
#define kvm_host_psci_config CHOOSE_NVHE_SYM(kvm_host_psci_config)
extern s64 kvm_nvhe_sym(hyp_physvirt_offset);
#define hyp_physvirt_offset CHOOSE_NVHE_SYM(hyp_physvirt_offset)
extern u64 kvm_nvhe_sym(hyp_cpu_logical_map)[NR_CPUS];
#define hyp_cpu_logical_map CHOOSE_NVHE_SYM(hyp_cpu_logical_map)
enum pkvm_iommu_driver_id {
PKVM_IOMMU_DRIVER_S2MPU,
PKVM_IOMMU_DRIVER_SYSMMU_SYNC,
PKVM_IOMMU_NR_DRIVERS,
};
enum pkvm_iommu_pm_event {
PKVM_IOMMU_PM_SUSPEND,
PKVM_IOMMU_PM_RESUME,
};
int pkvm_iommu_driver_init(enum pkvm_iommu_driver_id drv_id, void *data, size_t size);
int pkvm_iommu_register(struct device *dev, enum pkvm_iommu_driver_id drv_id,
phys_addr_t pa, size_t size, struct device *parent);
int pkvm_iommu_suspend(struct device *dev);
int pkvm_iommu_resume(struct device *dev);
int pkvm_iommu_s2mpu_register(struct device *dev, phys_addr_t pa);
int pkvm_iommu_sysmmu_sync_register(struct device *dev, phys_addr_t pa,
struct device *parent);
/* Reject future calls to pkvm_iommu_driver_init() and pkvm_iommu_register(). */
int pkvm_iommu_finalize(void);
struct vcpu_reset_state {
unsigned long pc;
unsigned long r0;
bool be;
bool reset;
};
struct kvm_vcpu_arch {
struct kvm_cpu_context ctxt;
void *sve_state;
unsigned int sve_max_vl;
/* Stage 2 paging state used by the hardware on next switch */
struct kvm_s2_mmu *hw_mmu;
/* Values of trap registers for the guest. */
u64 hcr_el2;
u64 mdcr_el2;
u64 cptr_el2;
/* Values of trap registers for the host before guest entry. */
u64 mdcr_el2_host;
/* Exception Information */
struct kvm_vcpu_fault_info fault;
/* Miscellaneous vcpu state flags */
u64 flags;
/*
* We maintain more than a single set of debug registers to support
* debugging the guest from the host and to maintain separate host and
* guest state during world switches. vcpu_debug_state are the debug
* registers of the vcpu as the guest sees them. host_debug_state are
* the host registers which are saved and restored during
* world switches. external_debug_state contains the debug
* values we want to debug the guest. This is set via the
* KVM_SET_GUEST_DEBUG ioctl.
*
* debug_ptr points to the set of debug registers that should be loaded
* onto the hardware when running the guest.
*/
struct kvm_guest_debug_arch *debug_ptr;
struct kvm_guest_debug_arch vcpu_debug_state;
struct kvm_guest_debug_arch external_debug_state;
struct user_fpsimd_state *host_fpsimd_state; /* hyp VA */
struct task_struct *parent_task;
struct {
/* {Break,watch}point registers */
struct kvm_guest_debug_arch regs;
/* Statistical profiling extension */
u64 pmscr_el1;
/* Self-hosted trace */
u64 trfcr_el1;
} host_debug_state;
/* VGIC state */
struct vgic_cpu vgic_cpu;
struct arch_timer_cpu timer_cpu;
struct kvm_pmu pmu;
/*
* Anything that is not used directly from assembly code goes
* here.
*/
/*
* Guest registers we preserve during guest debugging.
*
* These shadow registers are updated by the kvm_handle_sys_reg
* trap handler if the guest accesses or updates them while we
* are using guest debug.
*/
struct {
u32 mdscr_el1;
} guest_debug_preserved;
/* vcpu power-off state */
bool power_off;
/* Don't run the guest (internal implementation need) */
bool pause;
union {
/* Cache some mmu pages needed inside spinlock regions */
struct kvm_mmu_memory_cache mmu_page_cache;
/* Pages to be donated to pkvm/EL2e if it runs out */
struct kvm_hyp_memcache pkvm_memcache;
};
/* Target CPU and feature flags */
int target;
DECLARE_BITMAP(features, KVM_VCPU_MAX_FEATURES);
/* Virtual SError ESR to restore when HCR_EL2.VSE is set */
u64 vsesr_el2;
/* Additional reset state */
struct vcpu_reset_state reset_state;
/* True when deferrable sysregs are loaded on the physical CPU,
* see kvm_vcpu_load_sysregs_vhe and kvm_vcpu_put_sysregs_vhe. */
bool sysregs_loaded_on_cpu;
/* Guest PV state */
struct {
u64 last_steal;
gpa_t base;
} steal;
struct kvm_protected_vcpu pkvm;
};
/* Pointer to the vcpu's SVE FFR for sve_{save,load}_state() */
#define vcpu_sve_pffr(vcpu) (kern_hyp_va((vcpu)->arch.sve_state) + \
sve_ffr_offset((vcpu)->arch.sve_max_vl))
#define vcpu_sve_max_vq(vcpu) sve_vq_from_vl((vcpu)->arch.sve_max_vl)
#define vcpu_sve_state_size(vcpu) ({ \
size_t __size_ret; \
unsigned int __vcpu_vq; \
\
if (WARN_ON(!sve_vl_valid((vcpu)->arch.sve_max_vl))) { \
__size_ret = 0; \
} else { \
__vcpu_vq = vcpu_sve_max_vq(vcpu); \
__size_ret = SVE_SIG_REGS_SIZE(__vcpu_vq); \
} \
\
__size_ret; \
})
/* vcpu_arch flags field values: */
#define KVM_ARM64_DEBUG_DIRTY (1 << 0)
#define KVM_ARM64_FP_ENABLED (1 << 1) /* guest FP regs loaded */
#define KVM_ARM64_FP_HOST (1 << 2) /* host FP regs loaded */
#define KVM_ARM64_HOST_SVE_ENABLED (1 << 4) /* SVE enabled for EL0 */
#define KVM_ARM64_GUEST_HAS_SVE (1 << 5) /* SVE exposed to guest */
#define KVM_ARM64_VCPU_SVE_FINALIZED (1 << 6) /* SVE config completed */
#define KVM_ARM64_GUEST_HAS_PTRAUTH (1 << 7) /* PTRAUTH exposed to guest */
#define KVM_ARM64_PENDING_EXCEPTION (1 << 8) /* Exception pending */
/*
* Overlaps with KVM_ARM64_EXCEPT_MASK on purpose so that it can't be
* set together with an exception...
*/
#define KVM_ARM64_INCREMENT_PC (1 << 9) /* Increment PC */
#define KVM_ARM64_EXCEPT_MASK (7 << 9) /* Target EL/MODE */
/*
* When KVM_ARM64_PENDING_EXCEPTION is set, KVM_ARM64_EXCEPT_MASK can
* take the following values:
*
* For AArch32 EL1:
*/
#define KVM_ARM64_EXCEPT_AA32_UND (0 << 9)
#define KVM_ARM64_EXCEPT_AA32_IABT (1 << 9)
#define KVM_ARM64_EXCEPT_AA32_DABT (2 << 9)
/* For AArch64: */
#define KVM_ARM64_EXCEPT_AA64_ELx_SYNC (0 << 9)
#define KVM_ARM64_EXCEPT_AA64_ELx_IRQ (1 << 9)
#define KVM_ARM64_EXCEPT_AA64_ELx_FIQ (2 << 9)
#define KVM_ARM64_EXCEPT_AA64_ELx_SERR (3 << 9)
#define KVM_ARM64_EXCEPT_AA64_EL1 (0 << 11)
#define KVM_ARM64_EXCEPT_AA64_EL2 (1 << 11)
#define KVM_ARM64_DEBUG_STATE_SAVE_SPE (1 << 12) /* Save SPE context if active */
#define KVM_ARM64_DEBUG_STATE_SAVE_TRBE (1 << 13) /* Save TRBE context if active */
#define KVM_ARM64_FP_FOREIGN_FPSTATE (1 << 14)
#define KVM_ARM64_PKVM_STATE_DIRTY (1 << 15)
#define KVM_GUESTDBG_VALID_MASK (KVM_GUESTDBG_ENABLE | \
KVM_GUESTDBG_USE_SW_BP | \
KVM_GUESTDBG_USE_HW | \
KVM_GUESTDBG_SINGLESTEP)
#define vcpu_has_sve(vcpu) (system_supports_sve() && \
((vcpu)->arch.flags & KVM_ARM64_GUEST_HAS_SVE))
#ifdef CONFIG_ARM64_PTR_AUTH
#define vcpu_has_ptrauth(vcpu) \
((cpus_have_final_cap(ARM64_HAS_ADDRESS_AUTH) || \
cpus_have_final_cap(ARM64_HAS_GENERIC_AUTH)) && \
(vcpu)->arch.flags & KVM_ARM64_GUEST_HAS_PTRAUTH)
#else
#define vcpu_has_ptrauth(vcpu) false
#endif
#define vcpu_gp_regs(v) (&(v)->arch.ctxt.regs)
/*
* Only use __vcpu_sys_reg/ctxt_sys_reg if you know you want the
* memory backed version of a register, and not the one most recently
* accessed by a running VCPU. For example, for userspace access or
* for system registers that are never context switched, but only
* emulated.
*/
#define __ctxt_sys_reg(c,r) (&(c)->sys_regs[(r)])
#define ctxt_sys_reg(c,r) (*__ctxt_sys_reg(c,r))
#define __vcpu_sys_reg(v,r) (ctxt_sys_reg(&(v)->arch.ctxt, (r)))
static inline bool __vcpu_read_sys_reg_from_cpu(int reg, u64 *val)
{
/*
* *** VHE ONLY ***
*
* System registers listed in the switch are not saved on every
* exit from the guest but are only saved on vcpu_put.
*
* Note that MPIDR_EL1 for the guest is set by KVM via VMPIDR_EL2 but
* should never be listed below, because the guest cannot modify its
* own MPIDR_EL1 and MPIDR_EL1 is accessed for VCPU A from VCPU B's
* thread when emulating cross-VCPU communication.
*/
if (!has_vhe())
return false;
switch (reg) {
case CSSELR_EL1: *val = read_sysreg_s(SYS_CSSELR_EL1); break;
case SCTLR_EL1: *val = read_sysreg_s(SYS_SCTLR_EL12); break;
case CPACR_EL1: *val = read_sysreg_s(SYS_CPACR_EL12); break;
case TTBR0_EL1: *val = read_sysreg_s(SYS_TTBR0_EL12); break;
case TTBR1_EL1: *val = read_sysreg_s(SYS_TTBR1_EL12); break;
case TCR_EL1: *val = read_sysreg_s(SYS_TCR_EL12); break;
case ESR_EL1: *val = read_sysreg_s(SYS_ESR_EL12); break;
case AFSR0_EL1: *val = read_sysreg_s(SYS_AFSR0_EL12); break;
case AFSR1_EL1: *val = read_sysreg_s(SYS_AFSR1_EL12); break;
case FAR_EL1: *val = read_sysreg_s(SYS_FAR_EL12); break;
case MAIR_EL1: *val = read_sysreg_s(SYS_MAIR_EL12); break;
case VBAR_EL1: *val = read_sysreg_s(SYS_VBAR_EL12); break;
case CONTEXTIDR_EL1: *val = read_sysreg_s(SYS_CONTEXTIDR_EL12);break;
case TPIDR_EL0: *val = read_sysreg_s(SYS_TPIDR_EL0); break;
case TPIDRRO_EL0: *val = read_sysreg_s(SYS_TPIDRRO_EL0); break;
case TPIDR_EL1: *val = read_sysreg_s(SYS_TPIDR_EL1); break;
case AMAIR_EL1: *val = read_sysreg_s(SYS_AMAIR_EL12); break;
case CNTKCTL_EL1: *val = read_sysreg_s(SYS_CNTKCTL_EL12); break;
case ELR_EL1: *val = read_sysreg_s(SYS_ELR_EL12); break;
case PAR_EL1: *val = read_sysreg_par(); break;
case DACR32_EL2: *val = read_sysreg_s(SYS_DACR32_EL2); break;
case IFSR32_EL2: *val = read_sysreg_s(SYS_IFSR32_EL2); break;
case DBGVCR32_EL2: *val = read_sysreg_s(SYS_DBGVCR32_EL2); break;
default: return false;
}
return true;
}
static inline bool __vcpu_write_sys_reg_to_cpu(u64 val, int reg)
{
/*
* *** VHE ONLY ***
*
* System registers listed in the switch are not restored on every
* entry to the guest but are only restored on vcpu_load.
*
* Note that MPIDR_EL1 for the guest is set by KVM via VMPIDR_EL2 but
* should never be listed below, because the MPIDR should only be set
* once, before running the VCPU, and never changed later.
*/
if (!has_vhe())
return false;
switch (reg) {
case CSSELR_EL1: write_sysreg_s(val, SYS_CSSELR_EL1); break;
case SCTLR_EL1: write_sysreg_s(val, SYS_SCTLR_EL12); break;
case CPACR_EL1: write_sysreg_s(val, SYS_CPACR_EL12); break;
case TTBR0_EL1: write_sysreg_s(val, SYS_TTBR0_EL12); break;
case TTBR1_EL1: write_sysreg_s(val, SYS_TTBR1_EL12); break;
case TCR_EL1: write_sysreg_s(val, SYS_TCR_EL12); break;
case ESR_EL1: write_sysreg_s(val, SYS_ESR_EL12); break;
case AFSR0_EL1: write_sysreg_s(val, SYS_AFSR0_EL12); break;
case AFSR1_EL1: write_sysreg_s(val, SYS_AFSR1_EL12); break;
case FAR_EL1: write_sysreg_s(val, SYS_FAR_EL12); break;
case MAIR_EL1: write_sysreg_s(val, SYS_MAIR_EL12); break;
case VBAR_EL1: write_sysreg_s(val, SYS_VBAR_EL12); break;
case CONTEXTIDR_EL1: write_sysreg_s(val, SYS_CONTEXTIDR_EL12);break;
case TPIDR_EL0: write_sysreg_s(val, SYS_TPIDR_EL0); break;
case TPIDRRO_EL0: write_sysreg_s(val, SYS_TPIDRRO_EL0); break;
case TPIDR_EL1: write_sysreg_s(val, SYS_TPIDR_EL1); break;
case AMAIR_EL1: write_sysreg_s(val, SYS_AMAIR_EL12); break;
case CNTKCTL_EL1: write_sysreg_s(val, SYS_CNTKCTL_EL12); break;
case ELR_EL1: write_sysreg_s(val, SYS_ELR_EL12); break;
case PAR_EL1: write_sysreg_s(val, SYS_PAR_EL1); break;
case DACR32_EL2: write_sysreg_s(val, SYS_DACR32_EL2); break;
case IFSR32_EL2: write_sysreg_s(val, SYS_IFSR32_EL2); break;
case DBGVCR32_EL2: write_sysreg_s(val, SYS_DBGVCR32_EL2); break;
default: return false;
}
return true;
}
static inline u64 vcpu_arch_read_sys_reg(const struct kvm_vcpu_arch *vcpu_arch, int reg)
{
u64 val = 0x8badf00d8badf00d;
/* sysregs_loaded_on_cpu is only used in VHE */
if (!is_nvhe_hyp_code() && vcpu_arch->sysregs_loaded_on_cpu &&
__vcpu_read_sys_reg_from_cpu(reg, &val))
return val;
return ctxt_sys_reg(&vcpu_arch->ctxt, reg);
}
static inline void vcpu_arch_write_sys_reg(struct kvm_vcpu_arch *vcpu_arch, u64 val, int reg)
{
/* sysregs_loaded_on_cpu is only used in VHE */
if (!is_nvhe_hyp_code() && vcpu_arch->sysregs_loaded_on_cpu &&
__vcpu_write_sys_reg_to_cpu(val, reg))
return;
ctxt_sys_reg(&vcpu_arch->ctxt, reg) = val;
}
#define vcpu_read_sys_reg(vcpu, reg) vcpu_arch_read_sys_reg(&((vcpu)->arch), reg)
#define vcpu_write_sys_reg(vcpu, val, reg) vcpu_arch_write_sys_reg(&((vcpu)->arch), val, reg)
struct kvm_vm_stat {
struct kvm_vm_stat_generic generic;
};
struct kvm_vcpu_stat {
struct kvm_vcpu_stat_generic generic;
u64 hvc_exit_stat;
u64 wfe_exit_stat;
u64 wfi_exit_stat;
u64 mmio_exit_user;
u64 mmio_exit_kernel;
u64 signal_exits;
u64 exits;
};
void kvm_vcpu_preferred_target(struct kvm_vcpu_init *init);
unsigned long kvm_arm_num_regs(struct kvm_vcpu *vcpu);
int kvm_arm_copy_reg_indices(struct kvm_vcpu *vcpu, u64 __user *indices);
int kvm_arm_get_reg(struct kvm_vcpu *vcpu, const struct kvm_one_reg *reg);
int kvm_arm_set_reg(struct kvm_vcpu *vcpu, const struct kvm_one_reg *reg);
unsigned long kvm_arm_num_sys_reg_descs(struct kvm_vcpu *vcpu);
int kvm_arm_copy_sys_reg_indices(struct kvm_vcpu *vcpu, u64 __user *uindices);
int kvm_arm_sys_reg_get_reg(struct kvm_vcpu *vcpu, const struct kvm_one_reg *);
int kvm_arm_sys_reg_set_reg(struct kvm_vcpu *vcpu, const struct kvm_one_reg *);
int __kvm_arm_vcpu_get_events(struct kvm_vcpu *vcpu,
struct kvm_vcpu_events *events);
int __kvm_arm_vcpu_set_events(struct kvm_vcpu *vcpu,
struct kvm_vcpu_events *events);
#define KVM_ARCH_WANT_MMU_NOTIFIER
void kvm_arm_halt_guest(struct kvm *kvm);
void kvm_arm_resume_guest(struct kvm *kvm);
#define vcpu_has_run_once(vcpu) !!rcu_access_pointer((vcpu)->pid)
#ifndef __KVM_NVHE_HYPERVISOR__
#define kvm_call_hyp_nvhe(f, ...) \
({ \
struct arm_smccc_res res; \
\
arm_smccc_1_1_hvc(KVM_HOST_SMCCC_FUNC(f), \
##__VA_ARGS__, &res); \
WARN_ON(res.a0 != SMCCC_RET_SUCCESS); \
\
res.a1; \
})
/*
* The couple of isb() below are there to guarantee the same behaviour
* on VHE as on !VHE, where the eret to EL1 acts as a context
* synchronization event.
*/
#define kvm_call_hyp(f, ...) \
do { \
if (has_vhe()) { \
f(__VA_ARGS__); \
isb(); \
} else { \
kvm_call_hyp_nvhe(f, ##__VA_ARGS__); \
} \
} while(0)
#define kvm_call_hyp_ret(f, ...) \
({ \
typeof(f(__VA_ARGS__)) ret; \
\
if (has_vhe()) { \
ret = f(__VA_ARGS__); \
isb(); \
} else { \
ret = kvm_call_hyp_nvhe(f, ##__VA_ARGS__); \
} \
\
ret; \
})
#else /* __KVM_NVHE_HYPERVISOR__ */
#define kvm_call_hyp(f, ...) f(__VA_ARGS__)
#define kvm_call_hyp_ret(f, ...) f(__VA_ARGS__)
#define kvm_call_hyp_nvhe(f, ...) f(__VA_ARGS__)
#endif /* __KVM_NVHE_HYPERVISOR__ */
void force_vm_exit(const cpumask_t *mask);
int handle_exit(struct kvm_vcpu *vcpu, int exception_index);
void handle_exit_early(struct kvm_vcpu *vcpu, int exception_index);
int kvm_handle_cp14_load_store(struct kvm_vcpu *vcpu);
int kvm_handle_cp14_32(struct kvm_vcpu *vcpu);
int kvm_handle_cp14_64(struct kvm_vcpu *vcpu);
int kvm_handle_cp15_32(struct kvm_vcpu *vcpu);
int kvm_handle_cp15_64(struct kvm_vcpu *vcpu);
int kvm_handle_sys_reg(struct kvm_vcpu *vcpu);
void kvm_reset_sys_regs(struct kvm_vcpu *vcpu);
void kvm_sys_reg_table_init(void);
/* MMIO helpers */
void kvm_mmio_write_buf(void *buf, unsigned int len, unsigned long data);
unsigned long kvm_mmio_read_buf(const void *buf, unsigned int len);
int kvm_handle_mmio_return(struct kvm_vcpu *vcpu);
int io_mem_abort(struct kvm_vcpu *vcpu, phys_addr_t fault_ipa);
int kvm_perf_init(void);
int kvm_perf_teardown(void);
long kvm_hypercall_pv_features(struct kvm_vcpu *vcpu);
gpa_t kvm_init_stolen_time(struct kvm_vcpu *vcpu);
void kvm_update_stolen_time(struct kvm_vcpu *vcpu);
bool kvm_arm_pvtime_supported(void);
int kvm_arm_pvtime_set_attr(struct kvm_vcpu *vcpu,
struct kvm_device_attr *attr);
int kvm_arm_pvtime_get_attr(struct kvm_vcpu *vcpu,
struct kvm_device_attr *attr);
int kvm_arm_pvtime_has_attr(struct kvm_vcpu *vcpu,
struct kvm_device_attr *attr);
static inline void kvm_arm_pvtime_vcpu_init(struct kvm_vcpu_arch *vcpu_arch)
{
vcpu_arch->steal.base = GPA_INVALID;
}
static inline bool kvm_arm_is_pvtime_enabled(struct kvm_vcpu_arch *vcpu_arch)
{
return (vcpu_arch->steal.base != GPA_INVALID);
}
void kvm_set_sei_esr(struct kvm_vcpu *vcpu, u64 syndrome);
struct kvm_vcpu *kvm_mpidr_to_vcpu(struct kvm *kvm, unsigned long mpidr);
DECLARE_KVM_HYP_PER_CPU(struct kvm_host_data, kvm_host_data);
static inline void kvm_init_host_cpu_context(struct kvm_cpu_context *cpu_ctxt)
{
/* The host's MPIDR is immutable, so let's set it up at boot time */
ctxt_sys_reg(cpu_ctxt, MPIDR_EL1) = read_cpuid_mpidr();
}
static inline bool kvm_system_needs_idmapped_vectors(void)
{
return cpus_have_const_cap(ARM64_SPECTRE_V3A);
}
void kvm_arm_vcpu_ptrauth_trap(struct kvm_vcpu *vcpu);
static inline void kvm_arch_hardware_unsetup(void) {}
static inline void kvm_arch_sync_events(struct kvm *kvm) {}
static inline void kvm_arch_sched_in(struct kvm_vcpu *vcpu, int cpu) {}
static inline void kvm_arch_vcpu_block_finish(struct kvm_vcpu *vcpu) {}
void kvm_arm_init_debug(void);
void kvm_arm_vcpu_init_debug(struct kvm_vcpu *vcpu);
void kvm_arm_setup_debug(struct kvm_vcpu *vcpu);
void kvm_arm_clear_debug(struct kvm_vcpu *vcpu);
void kvm_arm_reset_debug_ptr(struct kvm_vcpu *vcpu);
int kvm_arm_vcpu_arch_set_attr(struct kvm_vcpu *vcpu,
struct kvm_device_attr *attr);
int kvm_arm_vcpu_arch_get_attr(struct kvm_vcpu *vcpu,
struct kvm_device_attr *attr);
int kvm_arm_vcpu_arch_has_attr(struct kvm_vcpu *vcpu,
struct kvm_device_attr *attr);
long kvm_vm_ioctl_mte_copy_tags(struct kvm *kvm,
struct kvm_arm_copy_mte_tags *copy_tags);
/* Guest/host FPSIMD coordination helpers */
int kvm_arch_vcpu_run_map_fp(struct kvm_vcpu *vcpu);
void kvm_arch_vcpu_load_fp(struct kvm_vcpu *vcpu);
void kvm_arch_vcpu_ctxflush_fp(struct kvm_vcpu *vcpu);
void kvm_arch_vcpu_ctxsync_fp(struct kvm_vcpu *vcpu);
void kvm_arch_vcpu_put_fp(struct kvm_vcpu *vcpu);
void kvm_vcpu_unshare_task_fp(struct kvm_vcpu *vcpu);
static inline bool kvm_pmu_counter_deferred(struct perf_event_attr *attr)
{
return (!has_vhe() && attr->exclude_host);
}
/* Flags for host debug state */
void kvm_arch_vcpu_load_debug_state_flags(struct kvm_vcpu *vcpu);
void kvm_arch_vcpu_put_debug_state_flags(struct kvm_vcpu *vcpu);
#ifdef CONFIG_KVM
void kvm_set_pmu_events(u32 set, struct perf_event_attr *attr);
void kvm_clr_pmu_events(u32 clr);
void kvm_vcpu_pmu_restore_guest(struct kvm_vcpu *vcpu);
void kvm_vcpu_pmu_restore_host(struct kvm_vcpu *vcpu);
#else
static inline void kvm_set_pmu_events(u32 set, struct perf_event_attr *attr) {}
static inline void kvm_clr_pmu_events(u32 clr) {}
#endif
void kvm_vcpu_load_sysregs_vhe(struct kvm_vcpu *vcpu);
void kvm_vcpu_put_sysregs_vhe(struct kvm_vcpu *vcpu);
int kvm_set_ipa_limit(void);
#define __KVM_HAVE_ARCH_VM_ALLOC
struct kvm *kvm_arch_alloc_vm(void);
void kvm_arch_free_vm(struct kvm *kvm);
#define kvm_vm_is_protected(kvm) ((kvm)->arch.pkvm.enabled)
void kvm_init_protected_traps(struct kvm_vcpu *vcpu);
int kvm_arm_vcpu_finalize(struct kvm_vcpu *vcpu, int feature);
bool kvm_arm_vcpu_is_finalized(struct kvm_vcpu *vcpu);
#define kvm_arm_vcpu_sve_finalized(vcpu) \
((vcpu)->arch.flags & KVM_ARM64_VCPU_SVE_FINALIZED)
#define kvm_has_mte(kvm) \
(system_supports_mte() && \
test_bit(KVM_ARCH_FLAG_MTE_ENABLED, &(kvm)->arch.flags))
#define kvm_vcpu_has_pmu(vcpu) \
(test_bit(KVM_ARM_VCPU_PMU_V3, (vcpu)->arch.features))
#define kvm_supports_32bit_el0() \
(system_supports_32bit_el0() && \
!static_branch_unlikely(&arm64_mismatched_32bit_el0))
int kvm_trng_call(struct kvm_vcpu *vcpu);
#ifdef CONFIG_KVM
extern phys_addr_t hyp_mem_base;
extern phys_addr_t hyp_mem_size;
void __init kvm_hyp_reserve(void);
#else
static inline void kvm_hyp_reserve(void) { }
#endif
#endif /* __ARM64_KVM_HOST_H__ */