5242876f37
In 60592cfed2
("hw/arm/virt: dt: add kaslr-seed property"), the
kaslr-seed property was added, but the equally as important rng-seed
property was forgotten about, which has identical semantics for a
similar purpose. This commit implements it in exactly the same way as
kaslr-seed. It then changes the name of the disabling option to reflect
that this has more to do with randomness vs determinism, rather than
something particular about kaslr.
Cc: Peter Maydell <peter.maydell@linaro.org>
Signed-off-by: Jason A. Donenfeld <Jason@zx2c4.com>
[PMM: added deprecated.rst section for the deprecation]
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
214 lines
5.7 KiB
C
214 lines
5.7 KiB
C
/*
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*
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* Copyright (c) 2015 Linaro Limited
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms and conditions of the GNU General Public License,
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* version 2 or later, as published by the Free Software Foundation.
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*
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* This program is distributed in the hope it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License along with
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* this program. If not, see <http://www.gnu.org/licenses/>.
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*
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* Emulate a virtual board which works by passing Linux all the information
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* it needs about what devices are present via the device tree.
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* There are some restrictions about what we can do here:
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* + we can only present devices whose Linux drivers will work based
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* purely on the device tree with no platform data at all
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* + we want to present a very stripped-down minimalist platform,
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* both because this reduces the security attack surface from the guest
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* and also because it reduces our exposure to being broken when
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* the kernel updates its device tree bindings and requires further
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* information in a device binding that we aren't providing.
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* This is essentially the same approach kvmtool uses.
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*/
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#ifndef QEMU_ARM_VIRT_H
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#define QEMU_ARM_VIRT_H
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#include "exec/hwaddr.h"
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#include "qemu/notify.h"
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#include "hw/boards.h"
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#include "hw/arm/boot.h"
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#include "hw/block/flash.h"
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#include "sysemu/kvm.h"
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#include "hw/intc/arm_gicv3_common.h"
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#include "qom/object.h"
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#define NUM_GICV2M_SPIS 64
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#define NUM_VIRTIO_TRANSPORTS 32
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#define NUM_SMMU_IRQS 4
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#define ARCH_GIC_MAINT_IRQ 9
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#define ARCH_TIMER_VIRT_IRQ 11
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#define ARCH_TIMER_S_EL1_IRQ 13
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#define ARCH_TIMER_NS_EL1_IRQ 14
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#define ARCH_TIMER_NS_EL2_IRQ 10
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#define VIRTUAL_PMU_IRQ 7
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#define PPI(irq) ((irq) + 16)
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/* See Linux kernel arch/arm64/include/asm/pvclock-abi.h */
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#define PVTIME_SIZE_PER_CPU 64
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enum {
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VIRT_FLASH,
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VIRT_MEM,
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VIRT_CPUPERIPHS,
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VIRT_GIC_DIST,
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VIRT_GIC_CPU,
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VIRT_GIC_V2M,
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VIRT_GIC_HYP,
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VIRT_GIC_VCPU,
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VIRT_GIC_ITS,
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VIRT_GIC_REDIST,
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VIRT_SMMU,
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VIRT_UART,
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VIRT_MMIO,
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VIRT_RTC,
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VIRT_FW_CFG,
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VIRT_PCIE,
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VIRT_PCIE_MMIO,
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VIRT_PCIE_PIO,
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VIRT_PCIE_ECAM,
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VIRT_PLATFORM_BUS,
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VIRT_GPIO,
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VIRT_SECURE_UART,
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VIRT_SECURE_MEM,
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VIRT_SECURE_GPIO,
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VIRT_PCDIMM_ACPI,
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VIRT_ACPI_GED,
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VIRT_NVDIMM_ACPI,
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VIRT_PVTIME,
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VIRT_LOWMEMMAP_LAST,
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};
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/* indices of IO regions located after the RAM */
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enum {
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VIRT_HIGH_GIC_REDIST2 = VIRT_LOWMEMMAP_LAST,
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VIRT_HIGH_PCIE_ECAM,
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VIRT_HIGH_PCIE_MMIO,
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};
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typedef enum VirtIOMMUType {
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VIRT_IOMMU_NONE,
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VIRT_IOMMU_SMMUV3,
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VIRT_IOMMU_VIRTIO,
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} VirtIOMMUType;
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typedef enum VirtMSIControllerType {
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VIRT_MSI_CTRL_NONE,
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VIRT_MSI_CTRL_GICV2M,
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VIRT_MSI_CTRL_ITS,
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} VirtMSIControllerType;
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typedef enum VirtGICType {
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VIRT_GIC_VERSION_MAX,
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VIRT_GIC_VERSION_HOST,
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VIRT_GIC_VERSION_2,
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VIRT_GIC_VERSION_3,
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VIRT_GIC_VERSION_4,
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VIRT_GIC_VERSION_NOSEL,
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} VirtGICType;
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struct VirtMachineClass {
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MachineClass parent;
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bool disallow_affinity_adjustment;
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bool no_its;
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bool no_tcg_its;
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bool no_pmu;
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bool claim_edge_triggered_timers;
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bool smbios_old_sys_ver;
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bool no_highmem_ecam;
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bool no_ged; /* Machines < 4.2 have no support for ACPI GED device */
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bool kvm_no_adjvtime;
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bool no_kvm_steal_time;
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bool acpi_expose_flash;
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bool no_secure_gpio;
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/* Machines < 6.2 have no support for describing cpu topology to guest */
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bool no_cpu_topology;
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bool no_tcg_lpa2;
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};
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struct VirtMachineState {
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MachineState parent;
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Notifier machine_done;
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DeviceState *platform_bus_dev;
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FWCfgState *fw_cfg;
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PFlashCFI01 *flash[2];
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bool secure;
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bool highmem;
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bool highmem_ecam;
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bool highmem_mmio;
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bool highmem_redists;
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bool its;
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bool tcg_its;
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bool virt;
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bool ras;
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bool mte;
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bool dtb_randomness;
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OnOffAuto acpi;
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VirtGICType gic_version;
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VirtIOMMUType iommu;
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bool default_bus_bypass_iommu;
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VirtMSIControllerType msi_controller;
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uint16_t virtio_iommu_bdf;
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struct arm_boot_info bootinfo;
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MemMapEntry *memmap;
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char *pciehb_nodename;
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const int *irqmap;
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int fdt_size;
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uint32_t clock_phandle;
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uint32_t gic_phandle;
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uint32_t msi_phandle;
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uint32_t iommu_phandle;
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int psci_conduit;
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hwaddr highest_gpa;
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DeviceState *gic;
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DeviceState *acpi_dev;
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Notifier powerdown_notifier;
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PCIBus *bus;
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char *oem_id;
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char *oem_table_id;
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};
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#define VIRT_ECAM_ID(high) (high ? VIRT_HIGH_PCIE_ECAM : VIRT_PCIE_ECAM)
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#define TYPE_VIRT_MACHINE MACHINE_TYPE_NAME("virt")
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OBJECT_DECLARE_TYPE(VirtMachineState, VirtMachineClass, VIRT_MACHINE)
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void virt_acpi_setup(VirtMachineState *vms);
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bool virt_is_acpi_enabled(VirtMachineState *vms);
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/* Return number of redistributors that fit in the specified region */
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static uint32_t virt_redist_capacity(VirtMachineState *vms, int region)
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{
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uint32_t redist_size;
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if (vms->gic_version == VIRT_GIC_VERSION_3) {
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redist_size = GICV3_REDIST_SIZE;
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} else {
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redist_size = GICV4_REDIST_SIZE;
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}
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return vms->memmap[region].size / redist_size;
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}
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/* Return the number of used redistributor regions */
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static inline int virt_gicv3_redist_region_count(VirtMachineState *vms)
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{
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uint32_t redist0_capacity = virt_redist_capacity(vms, VIRT_GIC_REDIST);
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assert(vms->gic_version != VIRT_GIC_VERSION_2);
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return (MACHINE(vms)->smp.cpus > redist0_capacity &&
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vms->highmem_redists) ? 2 : 1;
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}
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#endif /* QEMU_ARM_VIRT_H */
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