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Add PPC KVM ioctl to report vulnerability and workaround status to userspace.
-----BEGIN PGP SIGNATURE----- Version: GnuPG v1 iQEcBAABAgAGBQJaYXNEAAoJEJ2a6ncsY3Gf3FoH/0kAN3QcgYRN/0qgOmHpVBmL CtcrOEnw2vp2HwRXsCdww7PcGjsXg3S2vlZT0SDJiX2GJKBsV01Uh4xKZ0ENqdCM qq4EzP8g5ceHfp8gtpKdYQHM3STTBlU9XvHmbaCp5tRLQiI2cL/68cDNvRibJKOd WrXx404MNJiHJ3/WMJ/8kJqzFnySdLba5icuA26xfJA8Ur+NN8ScfxOULJLBjZ64 c+9kTtBvhqUU4cl1ofVa9c8CoEU7UbGh5U8osTzwKcDkJ2vjmKHEoHiF+lESOejk Bs2E7hj4I+S2ihnthy94gYnxGX9TIVlbnbVl3Mj4uDRrbjR9MrF42VJjwZjPlxk= =FPrd -----END PGP SIGNATURE----- Merge tag 'kvm-ppc-cve-4.15-2' of git://git.kernel.org/pub/scm/linux/kernel/git/paulus/powerpc Add PPC KVM ioctl to report vulnerability and workaround status to userspace.
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29d24e3f3d
@ -3403,6 +3403,52 @@ invalid, if invalid pages are written to (e.g. after the end of memory)
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or if no page table is present for the addresses (e.g. when using
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hugepages).
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4.108 KVM_PPC_GET_CPU_CHAR
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Capability: KVM_CAP_PPC_GET_CPU_CHAR
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Architectures: powerpc
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Type: vm ioctl
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Parameters: struct kvm_ppc_cpu_char (out)
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Returns: 0 on successful completion
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-EFAULT if struct kvm_ppc_cpu_char cannot be written
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This ioctl gives userspace information about certain characteristics
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of the CPU relating to speculative execution of instructions and
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possible information leakage resulting from speculative execution (see
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CVE-2017-5715, CVE-2017-5753 and CVE-2017-5754). The information is
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returned in struct kvm_ppc_cpu_char, which looks like this:
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struct kvm_ppc_cpu_char {
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__u64 character; /* characteristics of the CPU */
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__u64 behaviour; /* recommended software behaviour */
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__u64 character_mask; /* valid bits in character */
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__u64 behaviour_mask; /* valid bits in behaviour */
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};
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For extensibility, the character_mask and behaviour_mask fields
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indicate which bits of character and behaviour have been filled in by
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the kernel. If the set of defined bits is extended in future then
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userspace will be able to tell whether it is running on a kernel that
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knows about the new bits.
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The character field describes attributes of the CPU which can help
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with preventing inadvertent information disclosure - specifically,
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whether there is an instruction to flash-invalidate the L1 data cache
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(ori 30,30,0 or mtspr SPRN_TRIG2,rN), whether the L1 data cache is set
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to a mode where entries can only be used by the thread that created
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them, whether the bcctr[l] instruction prevents speculation, and
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whether a speculation barrier instruction (ori 31,31,0) is provided.
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The behaviour field describes actions that software should take to
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prevent inadvertent information disclosure, and thus describes which
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vulnerabilities the hardware is subject to; specifically whether the
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L1 data cache should be flushed when returning to user mode from the
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kernel, and whether a speculation barrier should be placed between an
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array bounds check and the array access.
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These fields use the same bit definitions as the new
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H_GET_CPU_CHARACTERISTICS hypercall.
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5. The kvm_run structure
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------------------------
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@ -443,6 +443,31 @@ struct kvm_ppc_rmmu_info {
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__u32 ap_encodings[8];
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};
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/* For KVM_PPC_GET_CPU_CHAR */
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struct kvm_ppc_cpu_char {
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__u64 character; /* characteristics of the CPU */
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__u64 behaviour; /* recommended software behaviour */
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__u64 character_mask; /* valid bits in character */
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__u64 behaviour_mask; /* valid bits in behaviour */
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};
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/*
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* Values for character and character_mask.
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* These are identical to the values used by H_GET_CPU_CHARACTERISTICS.
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*/
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#define KVM_PPC_CPU_CHAR_SPEC_BAR_ORI31 (1ULL << 63)
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#define KVM_PPC_CPU_CHAR_BCCTRL_SERIALISED (1ULL << 62)
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#define KVM_PPC_CPU_CHAR_L1D_FLUSH_ORI30 (1ULL << 61)
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#define KVM_PPC_CPU_CHAR_L1D_FLUSH_TRIG2 (1ULL << 60)
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#define KVM_PPC_CPU_CHAR_L1D_THREAD_PRIV (1ULL << 59)
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#define KVM_PPC_CPU_CHAR_BR_HINT_HONOURED (1ULL << 58)
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#define KVM_PPC_CPU_CHAR_MTTRIG_THR_RECONF (1ULL << 57)
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#define KVM_PPC_CPU_CHAR_COUNT_CACHE_DIS (1ULL << 56)
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#define KVM_PPC_CPU_BEHAV_FAVOUR_SECURITY (1ULL << 63)
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#define KVM_PPC_CPU_BEHAV_L1D_FLUSH_PR (1ULL << 62)
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#define KVM_PPC_CPU_BEHAV_BNDS_CHK_SPEC_BAR (1ULL << 61)
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/* Per-vcpu XICS interrupt controller state */
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#define KVM_REG_PPC_ICP_STATE (KVM_REG_PPC | KVM_REG_SIZE_U64 | 0x8c)
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@ -39,6 +39,10 @@
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#include <asm/iommu.h>
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#include <asm/switch_to.h>
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#include <asm/xive.h>
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#ifdef CONFIG_PPC_PSERIES
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#include <asm/hvcall.h>
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#include <asm/plpar_wrappers.h>
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#endif
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#include "timing.h"
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#include "irq.h"
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@ -548,6 +552,7 @@ int kvm_vm_ioctl_check_extension(struct kvm *kvm, long ext)
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#ifdef CONFIG_KVM_XICS
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case KVM_CAP_IRQ_XICS:
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#endif
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case KVM_CAP_PPC_GET_CPU_CHAR:
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r = 1;
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break;
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@ -1759,6 +1764,124 @@ static int kvm_vm_ioctl_enable_cap(struct kvm *kvm,
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return r;
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}
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#ifdef CONFIG_PPC_BOOK3S_64
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/*
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* These functions check whether the underlying hardware is safe
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* against attacks based on observing the effects of speculatively
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* executed instructions, and whether it supplies instructions for
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* use in workarounds. The information comes from firmware, either
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* via the device tree on powernv platforms or from an hcall on
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* pseries platforms.
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*/
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#ifdef CONFIG_PPC_PSERIES
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static int pseries_get_cpu_char(struct kvm_ppc_cpu_char *cp)
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{
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struct h_cpu_char_result c;
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unsigned long rc;
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if (!machine_is(pseries))
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return -ENOTTY;
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rc = plpar_get_cpu_characteristics(&c);
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if (rc == H_SUCCESS) {
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cp->character = c.character;
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cp->behaviour = c.behaviour;
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cp->character_mask = KVM_PPC_CPU_CHAR_SPEC_BAR_ORI31 |
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KVM_PPC_CPU_CHAR_BCCTRL_SERIALISED |
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KVM_PPC_CPU_CHAR_L1D_FLUSH_ORI30 |
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KVM_PPC_CPU_CHAR_L1D_FLUSH_TRIG2 |
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KVM_PPC_CPU_CHAR_L1D_THREAD_PRIV |
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KVM_PPC_CPU_CHAR_BR_HINT_HONOURED |
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KVM_PPC_CPU_CHAR_MTTRIG_THR_RECONF |
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KVM_PPC_CPU_CHAR_COUNT_CACHE_DIS;
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cp->behaviour_mask = KVM_PPC_CPU_BEHAV_FAVOUR_SECURITY |
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KVM_PPC_CPU_BEHAV_L1D_FLUSH_PR |
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KVM_PPC_CPU_BEHAV_BNDS_CHK_SPEC_BAR;
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}
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return 0;
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}
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#else
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static int pseries_get_cpu_char(struct kvm_ppc_cpu_char *cp)
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{
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return -ENOTTY;
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}
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#endif
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static inline bool have_fw_feat(struct device_node *fw_features,
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const char *state, const char *name)
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{
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struct device_node *np;
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bool r = false;
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np = of_get_child_by_name(fw_features, name);
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if (np) {
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r = of_property_read_bool(np, state);
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of_node_put(np);
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}
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return r;
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}
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static int kvmppc_get_cpu_char(struct kvm_ppc_cpu_char *cp)
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{
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struct device_node *np, *fw_features;
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int r;
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memset(cp, 0, sizeof(*cp));
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r = pseries_get_cpu_char(cp);
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if (r != -ENOTTY)
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return r;
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np = of_find_node_by_name(NULL, "ibm,opal");
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if (np) {
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fw_features = of_get_child_by_name(np, "fw-features");
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of_node_put(np);
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if (!fw_features)
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return 0;
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if (have_fw_feat(fw_features, "enabled",
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"inst-spec-barrier-ori31,31,0"))
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cp->character |= KVM_PPC_CPU_CHAR_SPEC_BAR_ORI31;
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if (have_fw_feat(fw_features, "enabled",
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"fw-bcctrl-serialized"))
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cp->character |= KVM_PPC_CPU_CHAR_BCCTRL_SERIALISED;
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if (have_fw_feat(fw_features, "enabled",
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"inst-l1d-flush-ori30,30,0"))
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cp->character |= KVM_PPC_CPU_CHAR_L1D_FLUSH_ORI30;
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if (have_fw_feat(fw_features, "enabled",
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"inst-l1d-flush-trig2"))
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cp->character |= KVM_PPC_CPU_CHAR_L1D_FLUSH_TRIG2;
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if (have_fw_feat(fw_features, "enabled",
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"fw-l1d-thread-split"))
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cp->character |= KVM_PPC_CPU_CHAR_L1D_THREAD_PRIV;
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if (have_fw_feat(fw_features, "enabled",
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"fw-count-cache-disabled"))
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cp->character |= KVM_PPC_CPU_CHAR_COUNT_CACHE_DIS;
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cp->character_mask = KVM_PPC_CPU_CHAR_SPEC_BAR_ORI31 |
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KVM_PPC_CPU_CHAR_BCCTRL_SERIALISED |
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KVM_PPC_CPU_CHAR_L1D_FLUSH_ORI30 |
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KVM_PPC_CPU_CHAR_L1D_FLUSH_TRIG2 |
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KVM_PPC_CPU_CHAR_L1D_THREAD_PRIV |
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KVM_PPC_CPU_CHAR_COUNT_CACHE_DIS;
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if (have_fw_feat(fw_features, "enabled",
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"speculation-policy-favor-security"))
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cp->behaviour |= KVM_PPC_CPU_BEHAV_FAVOUR_SECURITY;
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if (!have_fw_feat(fw_features, "disabled",
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"needs-l1d-flush-msr-pr-0-to-1"))
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cp->behaviour |= KVM_PPC_CPU_BEHAV_L1D_FLUSH_PR;
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if (!have_fw_feat(fw_features, "disabled",
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"needs-spec-barrier-for-bound-checks"))
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cp->behaviour |= KVM_PPC_CPU_BEHAV_BNDS_CHK_SPEC_BAR;
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cp->behaviour_mask = KVM_PPC_CPU_BEHAV_FAVOUR_SECURITY |
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KVM_PPC_CPU_BEHAV_L1D_FLUSH_PR |
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KVM_PPC_CPU_BEHAV_BNDS_CHK_SPEC_BAR;
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of_node_put(fw_features);
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}
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return 0;
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}
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#endif
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long kvm_arch_vm_ioctl(struct file *filp,
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unsigned int ioctl, unsigned long arg)
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{
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@ -1861,6 +1984,14 @@ long kvm_arch_vm_ioctl(struct file *filp,
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r = -EFAULT;
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break;
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}
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case KVM_PPC_GET_CPU_CHAR: {
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struct kvm_ppc_cpu_char cpuchar;
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r = kvmppc_get_cpu_char(&cpuchar);
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if (r >= 0 && copy_to_user(argp, &cpuchar, sizeof(cpuchar)))
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r = -EFAULT;
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break;
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}
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default: {
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struct kvm *kvm = filp->private_data;
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r = kvm->arch.kvm_ops->arch_vm_ioctl(filp, ioctl, arg);
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@ -932,6 +932,7 @@ struct kvm_ppc_resize_hpt {
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#define KVM_CAP_HYPERV_SYNIC2 148
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#define KVM_CAP_HYPERV_VP_INDEX 149
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#define KVM_CAP_S390_AIS_MIGRATION 150
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#define KVM_CAP_PPC_GET_CPU_CHAR 151
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#ifdef KVM_CAP_IRQ_ROUTING
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@ -1261,6 +1262,8 @@ struct kvm_s390_ucas_mapping {
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#define KVM_PPC_CONFIGURE_V3_MMU _IOW(KVMIO, 0xaf, struct kvm_ppc_mmuv3_cfg)
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/* Available with KVM_CAP_PPC_RADIX_MMU */
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#define KVM_PPC_GET_RMMU_INFO _IOW(KVMIO, 0xb0, struct kvm_ppc_rmmu_info)
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/* Available with KVM_CAP_PPC_GET_CPU_CHAR */
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#define KVM_PPC_GET_CPU_CHAR _IOR(KVMIO, 0xb1, struct kvm_ppc_cpu_char)
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/* ioctl for vm fd */
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#define KVM_CREATE_DEVICE _IOWR(KVMIO, 0xe0, struct kvm_create_device)
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