data_size = get_datasize(mc_saved_header);
date = mc_saved_header->date;
- pr_debug("mc_saved[%d]: sig=0x%x, pf=0x%x, rev=0x%x, toal size=0x%x, date = %04x-%02x-%02x\n",
+ pr_debug("mc_saved[%d]: sig=0x%x, pf=0x%x, rev=0x%x, total size=0x%x, date = %04x-%02x-%02x\n",
i, sig, pf, rev, total_size,
date & 0xffff,
date >> 24,
!iommu_capable(&pci_bus_type, IOMMU_CAP_INTR_REMAP)) {
printk(KERN_WARNING "%s: No interrupt remapping support,"
" disallowing device assignment."
- " Re-enble with \"allow_unsafe_assigned_interrupts=1\""
+ " Re-enable with \"allow_unsafe_assigned_interrupts=1\""
" module option.\n", __func__);
iommu_domain_free(kvm->arch.iommu_domain);
kvm->arch.iommu_domain = NULL;
}
/* Check that sizeof_partition_entry has the correct value */
if (le32_to_cpu((*gpt)->sizeof_partition_entry) != sizeof(gpt_entry)) {
- pr_debug("GUID Partitition Entry Size check failed.\n");
+ pr_debug("GUID Partition Entry Size check failed.\n");
goto fail;
}
le32_to_cpu((*gpt)->sizeof_partition_entry));
if (crc != le32_to_cpu((*gpt)->partition_entry_array_crc32)) {
- pr_debug("GUID Partitition Entry Array CRC check failed.\n");
+ pr_debug("GUID Partition Entry Array CRC check failed.\n");
goto fail_ptes;
}
input_addr =
dram_addr_to_input_addr(mci, sys_addr_to_dram_addr(mci, sys_addr));
- edac_dbg(2, "SysAdddr 0x%lx translates to InputAddr 0x%lx\n",
+ edac_dbg(2, "SysAddr 0x%lx translates to InputAddr 0x%lx\n",
(unsigned long)sys_addr, (unsigned long)input_addr);
return input_addr;
if (test_bit(boffset / SM_SECTOR_SIZE, &invalid_bitmap)) {
sm_printk("sector %d of block at LBA %d of zone %d"
- " coudn't be read, marking it as invalid",
+ " couldn't be read, marking it as invalid",
boffset / SM_SECTOR_SIZE, lba, zone);
oob.data_status = 0;
struct mlx5_core_sriov *sriov = &dev->priv.sriov;
int err;
- mlx5_core_dbg(dev, "requsted num_vfs %d\n", num_vfs);
+ mlx5_core_dbg(dev, "requested num_vfs %d\n", num_vfs);
if (!mlx5_core_is_pf(dev))
return -EPERM;
pci_read_config_byte(rtlpci->pdev, 0x34, &cap_pointer);
RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD,
- "PCI configration 0x34 = 0x%2x\n", cap_pointer);
+ "PCI configuration 0x34 = 0x%2x\n", cap_pointer);
do {
pci_read_config_word(rtlpci->pdev, cap_pointer, &cap_hdr);
cap_id = cap_hdr & 0xFF;
RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD,
- "in pci configration, cap_pointer%x = %x\n",
+ "in pci configuration, cap_pointer%x = %x\n",
cap_pointer, cap_id);
if (cap_id == 0x01) {
err = asd_start_seqs(asd_ha);
if (err) {
- asd_printk("coudln't start seqs for %s\n",
+ asd_printk("couldn't start seqs for %s\n",
pci_name(asd_ha->pcidev));
goto out;
}
for_each_sequencer(lseq_mask, lseq_mask, lseq) {
err = asd_seq_start_lseq(asd_ha, lseq);
if (err) {
- asd_printk("coudln't start LSEQ %d for %s\n", lseq,
+ asd_printk("couldn't start LSEQ %d for %s\n", lseq,
pci_name(asd_ha->pcidev));
return err;
}
* case stay in the stopped state.
*/
dev_err(sciport_to_dev(iport),
- "%s: SCIC Port 0x%p failed to stop before tiemout.\n",
+ "%s: SCIC Port 0x%p failed to stop before timeout.\n",
__func__,
iport);
} else if (current_state == SCI_PORT_STOPPING) {
if (match_int(&args[0], &option))
return -EINVAL;
if (option <= 0) {
- EXOFS_ERR("Timout must be > 0");
+ EXOFS_ERR("Timeout must be > 0");
return -EINVAL;
}
opts->timeout = option * HZ;
sock->state = state;
sock_init_data(sock, sk);
if (tipc_sk_insert(tsk)) {
- pr_warn("Socket create failed; port numbrer exhausted\n");
+ pr_warn("Socket create failed; port number exhausted\n");
return -EINVAL;
}
msg_set_origport(msg, tsk->portid);