KVM: PPC: Book3S HV: Make HPT reading code notice R/C bit changes
At present, the code that determines whether a HPT entry has changed, and thus needs to be sent to userspace when it is copying the HPT, doesn't consider a hardware update to the reference and change bits (R and C) in the HPT entries to constitute a change that needs to be sent to userspace. This adds code to check for changes in R and C when we are scanning the HPT to find changed entries, and adds code to set the changed flag for the HPTE when we update the R and C bits in the guest view of the HPTE. Since we now need to set the HPTE changed flag in book3s_64_mmu_hv.c as well as book3s_hv_rm_mmu.c, we move the note_hpte_modification() function into kvm_book3s_64.h. Current Linux guest kernels don't use the hardware updates of R and C in the HPT, so this change won't affect them. Linux (or other) kernels might in future want to use the R and C bits and have them correctly transferred across when a guest is migrated, so it is better to correct this deficiency. Signed-off-by: Paul Mackerras <paulus@samba.org> Signed-off-by: Alexander Graf <agraf@suse.de>
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d9ce6041b3
Коммит
a1b4a0f606
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@ -268,4 +268,17 @@ static inline int is_vrma_hpte(unsigned long hpte_v)
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(HPTE_V_1TB_SEG | (VRMA_VSID << (40 - 16)));
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}
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#ifdef CONFIG_KVM_BOOK3S_64_HV
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/*
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* Note modification of an HPTE; set the HPTE modified bit
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* if anyone is interested.
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*/
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static inline void note_hpte_modification(struct kvm *kvm,
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struct revmap_entry *rev)
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{
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if (atomic_read(&kvm->arch.hpte_mod_interest))
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rev->guest_rpte |= HPTE_GR_MODIFIED;
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}
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#endif /* CONFIG_KVM_BOOK3S_64_HV */
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#endif /* __ASM_KVM_BOOK3S_64_H__ */
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@ -893,7 +893,10 @@ static int kvm_unmap_rmapp(struct kvm *kvm, unsigned long *rmapp,
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/* Harvest R and C */
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rcbits = hptep[1] & (HPTE_R_R | HPTE_R_C);
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*rmapp |= rcbits << KVMPPC_RMAP_RC_SHIFT;
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rev[i].guest_rpte = ptel | rcbits;
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if (rcbits & ~rev[i].guest_rpte) {
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rev[i].guest_rpte = ptel | rcbits;
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note_hpte_modification(kvm, &rev[i]);
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}
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}
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unlock_rmap(rmapp);
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hptep[0] &= ~HPTE_V_HVLOCK;
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@ -976,7 +979,10 @@ static int kvm_age_rmapp(struct kvm *kvm, unsigned long *rmapp,
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/* Now check and modify the HPTE */
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if ((hptep[0] & HPTE_V_VALID) && (hptep[1] & HPTE_R_R)) {
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kvmppc_clear_ref_hpte(kvm, hptep, i);
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rev[i].guest_rpte |= HPTE_R_R;
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if (!(rev[i].guest_rpte & HPTE_R_R)) {
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rev[i].guest_rpte |= HPTE_R_R;
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note_hpte_modification(kvm, &rev[i]);
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}
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ret = 1;
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}
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hptep[0] &= ~HPTE_V_HVLOCK;
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@ -1080,7 +1086,10 @@ static int kvm_test_clear_dirty(struct kvm *kvm, unsigned long *rmapp)
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hptep[1] &= ~HPTE_R_C;
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eieio();
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hptep[0] = (hptep[0] & ~HPTE_V_ABSENT) | HPTE_V_VALID;
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rev[i].guest_rpte |= HPTE_R_C;
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if (!(rev[i].guest_rpte & HPTE_R_C)) {
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rev[i].guest_rpte |= HPTE_R_C;
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note_hpte_modification(kvm, &rev[i]);
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}
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ret = 1;
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}
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hptep[0] &= ~HPTE_V_HVLOCK;
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@ -1193,16 +1202,36 @@ struct kvm_htab_ctx {
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#define HPTE_SIZE (2 * sizeof(unsigned long))
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/*
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* Returns 1 if this HPT entry has been modified or has pending
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* R/C bit changes.
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*/
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static int hpte_dirty(struct revmap_entry *revp, unsigned long *hptp)
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{
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unsigned long rcbits_unset;
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if (revp->guest_rpte & HPTE_GR_MODIFIED)
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return 1;
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/* Also need to consider changes in reference and changed bits */
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rcbits_unset = ~revp->guest_rpte & (HPTE_R_R | HPTE_R_C);
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if ((hptp[0] & HPTE_V_VALID) && (hptp[1] & rcbits_unset))
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return 1;
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return 0;
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}
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static long record_hpte(unsigned long flags, unsigned long *hptp,
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unsigned long *hpte, struct revmap_entry *revp,
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int want_valid, int first_pass)
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{
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unsigned long v, r;
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unsigned long rcbits_unset;
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int ok = 1;
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int valid, dirty;
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/* Unmodified entries are uninteresting except on the first pass */
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dirty = !!(revp->guest_rpte & HPTE_GR_MODIFIED);
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dirty = hpte_dirty(revp, hptp);
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if (!first_pass && !dirty)
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return 0;
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@ -1223,16 +1252,28 @@ static long record_hpte(unsigned long flags, unsigned long *hptp,
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while (!try_lock_hpte(hptp, HPTE_V_HVLOCK))
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cpu_relax();
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v = hptp[0];
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/* re-evaluate valid and dirty from synchronized HPTE value */
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valid = !!(v & HPTE_V_VALID);
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dirty = !!(revp->guest_rpte & HPTE_GR_MODIFIED);
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/* Harvest R and C into guest view if necessary */
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rcbits_unset = ~revp->guest_rpte & (HPTE_R_R | HPTE_R_C);
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if (valid && (rcbits_unset & hptp[1])) {
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revp->guest_rpte |= (hptp[1] & (HPTE_R_R | HPTE_R_C)) |
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HPTE_GR_MODIFIED;
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dirty = 1;
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}
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if (v & HPTE_V_ABSENT) {
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v &= ~HPTE_V_ABSENT;
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v |= HPTE_V_VALID;
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valid = 1;
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}
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/* re-evaluate valid and dirty from synchronized HPTE value */
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valid = !!(v & HPTE_V_VALID);
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if ((flags & KVM_GET_HTAB_BOLTED_ONLY) && !(v & HPTE_V_BOLTED))
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valid = 0;
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r = revp->guest_rpte | (hptp[1] & (HPTE_R_R | HPTE_R_C));
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dirty = !!(revp->guest_rpte & HPTE_GR_MODIFIED);
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r = revp->guest_rpte;
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/* only clear modified if this is the right sort of entry */
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if (valid == want_valid && dirty) {
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r &= ~HPTE_GR_MODIFIED;
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@ -1288,7 +1329,7 @@ static ssize_t kvm_htab_read(struct file *file, char __user *buf,
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/* Skip uninteresting entries, i.e. clean on not-first pass */
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if (!first_pass) {
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while (i < kvm->arch.hpt_npte &&
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!(revp->guest_rpte & HPTE_GR_MODIFIED)) {
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!hpte_dirty(revp, hptp)) {
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++i;
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hptp += 2;
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++revp;
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@ -97,17 +97,6 @@ void kvmppc_add_revmap_chain(struct kvm *kvm, struct revmap_entry *rev,
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}
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EXPORT_SYMBOL_GPL(kvmppc_add_revmap_chain);
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/*
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* Note modification of an HPTE; set the HPTE modified bit
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* if anyone is interested.
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*/
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static inline void note_hpte_modification(struct kvm *kvm,
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struct revmap_entry *rev)
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{
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if (atomic_read(&kvm->arch.hpte_mod_interest))
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rev->guest_rpte |= HPTE_GR_MODIFIED;
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}
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/* Remove this HPTE from the chain for a real page */
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static void remove_revmap_chain(struct kvm *kvm, long pte_index,
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struct revmap_entry *rev,
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