s390: fix various typos
Fix various typos found with codespell. Signed-off-by: Heiko Carstens <hca@linux.ibm.com> Signed-off-by: Alexander Gordeev <agordeev@linux.ibm.com>
This commit is contained in:
parent
2b70a11955
commit
cada938a01
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@ -67,7 +67,7 @@ ipl_start:
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jz .Lagain1 # skip dataset header
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larl %r13,.L_eof
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clc 0(3,%r4),0(%r13) # if it is EOFx
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jz .Lagain1 # skip dateset trailer
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jz .Lagain1 # skip data set trailer
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lgr %r5,%r2
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la %r6,COMMAND_LINE-PARMAREA(%r12)
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lgr %r7,%r2
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@ -48,7 +48,7 @@
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*
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* Note that the constant definitions below are extended in order to compute
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* intermediate results with a single VECTOR GALOIS FIELD MULTIPLY instruction.
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* The righmost doubleword can be 0 to prevent contribution to the result or
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* The rightmost doubleword can be 0 to prevent contribution to the result or
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* can be multiplied by 1 to perform an XOR without the need for a separate
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* VECTOR EXCLUSIVE OR instruction.
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*
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@ -333,7 +333,7 @@ union ap_qact_ap_info {
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};
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/**
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* ap_qact(): Query AP combatibility type.
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* ap_qact(): Query AP compatibility type.
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* @qid: The AP queue number
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* @apinfo: On input the info about the AP queue. On output the
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* alternate AP queue info provided by the qact function
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@ -31,7 +31,7 @@
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struct cmbdata {
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__u64 size;
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__u64 elapsed_time;
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/* basic and exended format: */
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/* basic and extended format: */
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__u64 ssch_rsch_count;
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__u64 sample_count;
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__u64 device_connect_time;
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@ -24,7 +24,7 @@
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/*
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* struct dasd_information2_t
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* represents any data about the device, which is visible to userspace.
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* including foramt and featueres.
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* including format and featueres.
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*/
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typedef struct dasd_information2_t {
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unsigned int devno; /* S/390 devno */
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@ -353,7 +353,7 @@ struct pkey_kblob2pkey2 {
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* Is able to find out which type of secure key is given (CCA AES secure
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* key, CCA AES cipher key, CCA ECC private key, EP11 AES key, EP11 ECC private
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* key) and tries to find all matching crypto cards based on the MKVP and maybe
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* other criterias (like CCA AES cipher keys need a CEX5C or higher, EP11 keys
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* other criteria (like CCA AES cipher keys need a CEX5C or higher, EP11 keys
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* with BLOB_PKEY_EXTRACTABLE need a CEX7 and EP11 api version 4). The list of
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* APQNs is further filtered by the key's mkvp which needs to match to either
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* the current mkvp (CCA and EP11) or the alternate mkvp (old mkvp, CCA adapters
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@ -370,7 +370,7 @@ struct pkey_kblob2pkey2 {
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* is empty (apqn_entries is 0) the apqn_entries field is updated to the number
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* of apqn targets found and the ioctl returns with 0. If apqn_entries is > 0
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* but the number of apqn targets does not fit into the list, the apqn_targets
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* field is updatedd with the number of reqired entries but there are no apqn
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* field is updated with the number of required entries but there are no apqn
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* values stored in the list and the ioctl returns with ENOSPC. If no matching
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* APQN is found, the ioctl returns with 0 but the apqn_entries value is 0.
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*/
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@ -408,7 +408,7 @@ struct pkey_apqns4key {
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* is empty (apqn_entries is 0) the apqn_entries field is updated to the number
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* of apqn targets found and the ioctl returns with 0. If apqn_entries is > 0
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* but the number of apqn targets does not fit into the list, the apqn_targets
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* field is updatedd with the number of reqired entries but there are no apqn
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* field is updated with the number of required entries but there are no apqn
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* values stored in the list and the ioctl returns with ENOSPC. If no matching
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* APQN is found, the ioctl returns with 0 but the apqn_entries value is 0.
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*/
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@ -516,7 +516,7 @@ void show_code(struct pt_regs *regs)
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if (copy_from_regs(regs, code + end, (void *)addr, 2))
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break;
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}
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/* Code snapshot useable ? */
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/* Code snapshot usable ? */
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if ((regs->psw.addr & 1) || start >= end) {
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printk("%s Code: Bad PSW.\n", mode);
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return;
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@ -14,7 +14,7 @@ static int __init nobp_setup_early(char *str)
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return rc;
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if (enabled && test_facility(82)) {
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/*
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* The user explicitely requested nobp=1, enable it and
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* The user explicitly requested nobp=1, enable it and
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* disable the expoline support.
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*/
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__set_facility(82, alt_stfle_fac_list);
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@ -1865,7 +1865,7 @@ static void cpumsf_pmu_read(struct perf_event *event)
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/* Nothing to do ... updates are interrupt-driven */
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}
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/* Check if the new sampling period/freqeuncy is appropriate.
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/* Check if the new sampling period/frequency is appropriate.
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*
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* Return non-zero on error and zero on passed checks.
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*/
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@ -84,7 +84,7 @@ static int paiext_root_alloc(void)
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/* The memory is already zeroed. */
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paiext_root.mapptr = alloc_percpu(struct paiext_mapptr);
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if (!paiext_root.mapptr) {
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/* Returing without refcnt adjustment is ok. The
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/* Returning without refcnt adjustment is ok. The
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* error code is handled by paiext_alloc() which
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* decrements refcnt when an event can not be
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* created.
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@ -190,7 +190,7 @@ static int paiext_alloc(struct perf_event_attr *a, struct perf_event *event)
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cpump->mode = a->sample_period ? PAI_MODE_SAMPLING
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: PAI_MODE_COUNTING;
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} else {
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/* Multiple invocation, check whats active.
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/* Multiple invocation, check what is active.
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* Supported are multiple counter events or only one sampling
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* event concurrently at any one time.
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*/
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@ -529,7 +529,7 @@ static void __init setup_resources(void)
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res->start = start;
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/*
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* In memblock, end points to the first byte after the
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* range while in resourses, end points to the last byte in
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* range while in resources, end points to the last byte in
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* the range.
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*/
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res->end = end - 1;
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@ -113,7 +113,7 @@ early_param("smt", early_smt);
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/*
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* The smp_cpu_state_mutex must be held when changing the state or polarization
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* member of a pcpu data structure within the pcpu_devices arreay.
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* member of a pcpu data structure within the pcpu_devices array.
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*/
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DEFINE_MUTEX(smp_cpu_state_mutex);
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@ -702,7 +702,7 @@ static void stp_work_fn(struct work_struct *work)
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if (!check_sync_clock())
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/*
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* There is a usable clock but the synchonization failed.
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* There is a usable clock but the synchronization failed.
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* Retry after a second.
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*/
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mod_timer(&stp_timer, jiffies + msecs_to_jiffies(MSEC_PER_SEC));
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@ -478,7 +478,7 @@ struct trans_exc_code_bits {
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};
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enum {
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FSI_UNKNOWN = 0, /* Unknown wether fetch or store */
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FSI_UNKNOWN = 0, /* Unknown whether fetch or store */
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FSI_STORE = 1, /* Exception was due to store operation */
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FSI_FETCH = 2 /* Exception was due to fetch operation */
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};
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@ -625,7 +625,7 @@ static int deref_table(struct kvm *kvm, unsigned long gpa, unsigned long *val)
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* Returns: - zero on success; @gpa contains the resulting absolute address
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* - a negative value if guest access failed due to e.g. broken
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* guest mapping
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* - a positve value if an access exception happened. In this case
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* - a positive value if an access exception happened. In this case
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* the returned value is the program interruption code as defined
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* by the architecture
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*/
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@ -630,7 +630,7 @@ int kvm_handle_sie_intercept(struct kvm_vcpu *vcpu)
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return -EOPNOTSUPP;
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}
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/* process PER, also if the instrution is processed in user space */
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/* process PER, also if the instruction is processed in user space */
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if (vcpu->arch.sie_block->icptstatus & 0x02 &&
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(!rc || rc == -EOPNOTSUPP))
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per_rc = kvm_s390_handle_per_ifetch_icpt(vcpu);
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@ -4157,7 +4157,7 @@ static void kvm_arch_vcpu_ioctl_initial_reset(struct kvm_vcpu *vcpu)
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vcpu->run->s.regs.fpc = 0;
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/*
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* Do not reset these registers in the protected case, as some of
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* them are overlayed and they are not accessible in this case
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* them are overlaid and they are not accessible in this case
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* anyway.
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*/
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if (!kvm_s390_pv_cpu_is_protected(vcpu)) {
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@ -427,7 +427,7 @@ static void kvm_s390_pci_dev_release(struct zpci_dev *zdev)
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/*
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* Register device with the specified KVM. If interpetation facilities are
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* Register device with the specified KVM. If interpretation facilities are
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* available, enable them and let userspace indicate whether or not they will
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* be used (specify SHM bit to disable).
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*/
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@ -273,7 +273,7 @@ static int kvm_s390_pv_deinit_vm_fast(struct kvm *kvm, u16 *rc, u16 *rrc)
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uvcb.header.rc, uvcb.header.rrc);
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WARN_ONCE(cc, "protvirt destroy vm fast failed handle %llx rc %x rrc %x",
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kvm_s390_pv_get_handle(kvm), uvcb.header.rc, uvcb.header.rrc);
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/* Inteded memory leak on "impossible" error */
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/* Intended memory leak on "impossible" error */
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if (!cc)
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kvm_s390_pv_dealloc_vm(kvm);
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return cc ? -EIO : 0;
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@ -469,7 +469,7 @@ int kvm_s390_handle_sigp(struct kvm_vcpu *vcpu)
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*
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* This interception will occur at the source cpu when a source cpu sends an
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* external call to a target cpu and the target cpu has the WAIT bit set in
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* its cpuflags. Interception will occurr after the interrupt indicator bits at
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* its cpuflags. Interception will occur after the interrupt indicator bits at
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* the target cpu have been set. All error cases will lead to instruction
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* interception, therefore nothing is to be checked or prepared.
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*/
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@ -502,7 +502,7 @@ static int shadow_scb(struct kvm_vcpu *vcpu, struct vsie_page *vsie_page)
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scb_s->mso = new_mso;
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scb_s->prefix = new_prefix;
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/* We have to definetly flush the tlb if this scb never ran */
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/* We have to definitely flush the tlb if this scb never ran */
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if (scb_s->ihcpu != 0xffffU)
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scb_s->ihcpu = scb_o->ihcpu;
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@ -899,7 +899,7 @@ static int inject_fault(struct kvm_vcpu *vcpu, __u16 code, __u64 vaddr,
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(vaddr & 0xfffffffffffff000UL) |
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/* 52-53: store / fetch */
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(((unsigned int) !write_flag) + 1) << 10,
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/* 62-63: asce id (alway primary == 0) */
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/* 62-63: asce id (always primary == 0) */
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.exc_access_id = 0, /* always primary */
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.op_access_id = 0, /* not MVPG */
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};
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@ -1740,7 +1740,7 @@ EXPORT_SYMBOL_GPL(gmap_shadow);
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* The r2t parameter specifies the address of the source table. The
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* four pages of the source table are made read-only in the parent gmap
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* address space. A write to the source table area @r2t will automatically
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* remove the shadow r2 table and all of its decendents.
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* remove the shadow r2 table and all of its descendants.
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*
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* Returns 0 if successfully shadowed or already shadowed, -EAGAIN if the
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* shadow table structure is incomplete, -ENOMEM if out of memory and
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@ -558,7 +558,7 @@ int vmem_add_mapping(unsigned long start, unsigned long size)
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* to any physical address. If missing, allocate segment- and region-
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* table entries along. Meeting a large segment- or region-table entry
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* while traversing is an error, since the function is expected to be
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* called against virtual regions reserverd for 4KB mappings only.
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* called against virtual regions reserved for 4KB mappings only.
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*/
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pte_t *vmem_get_alloc_pte(unsigned long addr, bool alloc)
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{
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@ -163,7 +163,7 @@ static void zpci_handle_cpu_local_irq(bool rescan)
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if (!rescan || irqs_on++)
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/* End of second scan with interrupts on. */
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break;
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/* First scan complete, reenable interrupts. */
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/* First scan complete, re-enable interrupts. */
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if (zpci_set_irq_ctrl(SIC_IRQ_MODE_D_SINGLE, PCI_ISC, &iib))
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break;
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bit = 0;
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@ -202,7 +202,7 @@ static void zpci_handle_fallback_irq(void)
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if (irqs_on++)
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/* End of second scan with interrupts on. */
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break;
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/* First scan complete, reenable interrupts. */
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/* First scan complete, re-enable interrupts. */
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if (zpci_set_irq_ctrl(SIC_IRQ_MODE_SINGLE, PCI_ISC, &iib))
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break;
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cpu = 0;
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@ -247,7 +247,7 @@ static void zpci_floating_irq_handler(struct airq_struct *airq,
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if (irqs_on++)
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/* End of second scan with interrupts on. */
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break;
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/* First scan complete, reenable interrupts. */
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/* First scan complete, re-enable interrupts. */
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if (zpci_set_irq_ctrl(SIC_IRQ_MODE_SINGLE, PCI_ISC, &iib))
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break;
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si = 0;
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@ -100,7 +100,7 @@ SYM_CODE_START(purgatory_start)
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* checksum verification only (%r2 = 0 -> verification only).
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*
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* Check now and preserve over C function call by storing in
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* %r10 whith
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* %r10 with
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* 1 -> checksum verification only
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* 0 -> load new kernel
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*/
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@ -152,7 +152,7 @@ static ssize_t ccwgroup_online_show(struct device *dev,
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/*
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* Provide an 'ungroup' attribute so the user can remove group devices no
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* longer needed or accidentially created. Saves memory :)
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* longer needed or accidentally created. Saves memory :)
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*/
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static void ccwgroup_ungroup(struct ccwgroup_device *gdev)
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{
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@ -943,7 +943,7 @@ static int ccw_device_move_to_sch(struct ccw_device *cdev,
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cdev->private->dev_id.devno, sch->schid.ssid,
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sch->schib.pmcw.dev, rc);
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if (old_enabled) {
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/* Try to reenable the old subchannel. */
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/* Try to re-enable the old subchannel. */
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spin_lock_irq(old_sch->lock);
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cio_enable_subchannel(old_sch, (u32)virt_to_phys(old_sch));
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spin_unlock_irq(old_sch->lock);
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@ -310,7 +310,7 @@ static void ccw_device_oper_notify(struct ccw_device *cdev)
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struct subchannel *sch = to_subchannel(cdev->dev.parent);
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if (ccw_device_notify(cdev, CIO_OPER) == NOTIFY_OK) {
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/* Reenable channel measurements, if needed. */
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/* Re-enable channel measurements, if needed. */
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ccw_device_sched_todo(cdev, CDEV_TODO_ENABLE_CMF);
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/* Save indication for new paths. */
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cdev->private->path_new_mask = sch->vpm;
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@ -947,7 +947,7 @@ void ccw_device_trigger_reprobe(struct ccw_device *cdev)
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*/
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sch->lpm = sch->schib.pmcw.pam & sch->opm;
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/*
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* Use the initial configuration since we can't be shure that the old
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* Use the initial configuration since we can't be sure that the old
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* paths are valid.
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*/
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io_subchannel_init_config(sch);
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@ -672,7 +672,7 @@ out_init:
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/*
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* Fetch one ccw.
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* To reduce memory copy, we'll pin the cda page in memory,
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* and to get rid of the cda 2G limitiaion of ccw1, we'll translate
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* and to get rid of the cda 2G limitation of ccw1, we'll translate
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* direct ccws to idal ccws.
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*/
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static int ccwchain_fetch_one(struct ccw1 *ccw,
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@ -787,7 +787,7 @@ void cp_free(struct channel_program *cp)
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* program.
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*
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* These APIs will copy the ccws into kernel-space buffers, and update
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* the guest phsical addresses with their corresponding host physical
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* the guest physical addresses with their corresponding host physical
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* addresses. Then channel I/O device drivers could issue the
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* translated channel program to real devices to perform an I/O
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* operation.
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@ -497,7 +497,7 @@ static void ap_tasklet_fn(unsigned long dummy)
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enum ap_sm_wait wait = AP_SM_WAIT_NONE;
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/* Reset the indicator if interrupts are used. Thus new interrupts can
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* be received. Doing it in the beginning of the tasklet is therefor
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* be received. Doing it in the beginning of the tasklet is therefore
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* important that no requests on any AP get lost.
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*/
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if (ap_irq_flag)
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@ -2289,7 +2289,7 @@ static int __init ap_module_init(void)
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timer_setup(&ap_config_timer, ap_config_timeout, 0);
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/*
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* Setup the high resultion poll timer.
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* Setup the high resolution poll timer.
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* If we are running under z/VM adjust polling to z/VM polling rate.
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*/
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if (MACHINE_IS_VM)
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@ -359,7 +359,7 @@ int ap_apqn_in_matrix_owned_by_def_drv(unsigned long *apm,
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* like "+1-16,-32,-0x40,+128" where only single bits or ranges of
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* bits are cleared or set. Distinction is done based on the very
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* first character which may be '+' or '-' for the relative string
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* and othewise assume to be an absolute value string. If parsing fails
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* and otherwise assume to be an absolute value string. If parsing fails
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* a negative errno value is returned. All arguments and bitmaps are
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* big endian order.
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*/
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@ -445,7 +445,7 @@ static struct ap_queue_status vfio_ap_irq_enable(struct vfio_ap_queue *q,
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q->saved_isc = isc;
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break;
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case AP_RESPONSE_OTHERWISE_CHANGED:
|
||||
/* We could not modify IRQ setings: clear new configuration */
|
||||
/* We could not modify IRQ settings: clear new configuration */
|
||||
vfio_unpin_pages(&q->matrix_mdev->vdev, nib, 1);
|
||||
kvm_s390_gisc_unregister(kvm, isc);
|
||||
break;
|
||||
|
@ -524,7 +524,7 @@ static void vfio_ap_le_guid_to_be_uuid(guid_t *guid, unsigned long *uuid)
|
|||
* Response.status may be set to following Response Code:
|
||||
* - AP_RESPONSE_Q_NOT_AVAIL: if the queue is not available
|
||||
* - AP_RESPONSE_DECONFIGURED: if the queue is not configured
|
||||
* - AP_RESPONSE_NORMAL (0) : in case of successs
|
||||
* - AP_RESPONSE_NORMAL (0) : in case of success
|
||||
* Check vfio_ap_setirq() and vfio_ap_clrirq() for other possible RC.
|
||||
* We take the matrix_dev lock to ensure serialization on queues and
|
||||
* mediated device access.
|
||||
|
|
|
@ -674,7 +674,7 @@ static long zcrypt_rsa_modexpo(struct ap_perms *perms,
|
|||
pref_zq = NULL;
|
||||
spin_lock(&zcrypt_list_lock);
|
||||
for_each_zcrypt_card(zc) {
|
||||
/* Check for usable accelarator or CCA card */
|
||||
/* Check for usable accelerator or CCA card */
|
||||
if (!zc->online || !zc->card->config || zc->card->chkstop ||
|
||||
!(zc->card->functions & 0x18000000))
|
||||
continue;
|
||||
|
@ -779,7 +779,7 @@ static long zcrypt_rsa_crt(struct ap_perms *perms,
|
|||
pref_zq = NULL;
|
||||
spin_lock(&zcrypt_list_lock);
|
||||
for_each_zcrypt_card(zc) {
|
||||
/* Check for usable accelarator or CCA card */
|
||||
/* Check for usable accelerator or CCA card */
|
||||
if (!zc->online || !zc->card->config || zc->card->chkstop ||
|
||||
!(zc->card->functions & 0x18000000))
|
||||
continue;
|
||||
|
|
|
@ -689,7 +689,7 @@ int cca_sec2protkey(u16 cardnr, u16 domain,
|
|||
goto out;
|
||||
}
|
||||
|
||||
/* copy the tanslated protected key */
|
||||
/* copy the translated protected key */
|
||||
switch (prepparm->lv3.ckb.len) {
|
||||
case 16 + 32:
|
||||
/* AES 128 protected key */
|
||||
|
|
|
@ -115,7 +115,7 @@ struct eccprivkeytoken {
|
|||
u64 mkvp; /* master key verification pattern */
|
||||
u8 opk[48]; /* encrypted object protection key data */
|
||||
u16 adatalen; /* associated data length in bytes */
|
||||
u16 fseclen; /* formated section length in bytes */
|
||||
u16 fseclen; /* formatted section length in bytes */
|
||||
u8 more_data[]; /* more data follows */
|
||||
} __packed;
|
||||
|
||||
|
@ -232,7 +232,7 @@ int cca_findcard(const u8 *key, u16 *pcardnr, u16 *pdomain, int verify);
|
|||
* the number of apqns stored into the list is returned in *nr_apqns. One apqn
|
||||
* entry is simple a 32 bit value with 16 bit cardnr and 16 bit domain nr and
|
||||
* may be casted to struct pkey_apqn. The return value is either 0 for success
|
||||
* or a negative errno value. If no apqn meeting the criterias is found,
|
||||
* or a negative errno value. If no apqn meeting the criteria is found,
|
||||
* -ENODEV is returned.
|
||||
*/
|
||||
int cca_findcard2(u32 **apqns, u32 *nr_apqns, u16 cardnr, u16 domain,
|
||||
|
|
|
@ -1368,7 +1368,7 @@ int ep11_kblob2protkey(u16 card, u16 dom, const u8 *keyblob, size_t keybloblen,
|
|||
goto out;
|
||||
}
|
||||
|
||||
/* copy the tanslated protected key */
|
||||
/* copy the translated protected key */
|
||||
if (wki->pkeysize > *protkeylen) {
|
||||
DEBUG_ERR("%s wk info pkeysize %llu > protkeysize %u\n",
|
||||
__func__, wki->pkeysize, *protkeylen);
|
||||
|
|
|
@ -131,14 +131,14 @@ int ep11_clr2keyblob(u16 cardnr, u16 domain, u32 keybitsize, u32 keygenflags,
|
|||
* - if minapi > 0 only apqns with API_ord_nr >= minapi
|
||||
* - if wkvp != NULL only apqns where the wkvp (EP11_WKVPLEN bytes) matches
|
||||
* to the first EP11_WKVPLEN bytes of the wkvp of the current wrapping
|
||||
* key for this domain. When a wkvp is given there will aways be a re-fetch
|
||||
* key for this domain. When a wkvp is given there will always be a re-fetch
|
||||
* of the domain info for the potential apqn - so this triggers an request
|
||||
* reply to each apqn eligible.
|
||||
* The array of apqn entries is allocated with kmalloc and returned in *apqns;
|
||||
* the number of apqns stored into the list is returned in *nr_apqns. One apqn
|
||||
* entry is simple a 32 bit value with 16 bit cardnr and 16 bit domain nr and
|
||||
* may be casted to struct pkey_apqn. The return value is either 0 for success
|
||||
* or a negative errno value. If no apqn meeting the criterias is found,
|
||||
* or a negative errno value. If no apqn meeting the criteria is found,
|
||||
* -ENODEV is returned.
|
||||
*/
|
||||
int ep11_findcard2(u32 **apqns, u32 *nr_apqns, u16 cardnr, u16 domain,
|
||||
|
|
Loading…
Reference in New Issue