phys_addr
u_int8_t phys_addr[3];
u_int8_t phys_addr[3];
u_int8_t phys_addr[3];
u_int8_t phys_addr[3];
phys_addr_t phys_addr;
phys_addr = pci_resource_start(pdev, 0) + pci_resource_len(pdev, 0) / 2;
ggtt->gsm = ioremap_nocache(phys_addr, size);
ggtt->gsm = ioremap_wc(phys_addr, size);
__ioremap_common(unsigned long phys_addr, unsigned long size, int cache_mode);
ioremap_nocache(resource_size_t phys_addr, unsigned long size)
return __ioremap_common(phys_addr, size, PAT_UNCACHEABLE);
ioremap_wc(resource_size_t phys_addr, unsigned long size)
return __ioremap_common(phys_addr, size, PAT_WRITE_COMBINING);
ioremap_wt(resource_size_t phys_addr, unsigned long size)
return __ioremap_common(phys_addr, size, PAT_WRITE_THROUGH);
return ((struct vm_page *)sg_page(sg))->phys_addr + sg->offset;
__ioremap_common(unsigned long phys_addr, unsigned long size, int cache_mode)
BUG_ON(phys_addr & PAGE_MASK);
imp->paddr = phys_addr;
imp->pmap_addr = pmap_mapdev_attr(phys_addr, size, cache_mode);
struct phys_addr pages[8];
struct phys_addr pages[4];
struct phys_addr pages[8];
struct phys_addr pages[8];
struct phys_addr pages[8];
struct phys_addr pages[2];
uint32_t oce_page_list(oce_ring_buffer_t *ring, struct phys_addr *pa_list);
struct phys_addr *paddrs;
oce_page_list(oce_ring_buffer_t *ring, struct phys_addr *pa_list)
kern_sge[i].phys_addr = sc->mfi_kbuff_arr_busaddr[i];
kern_sge[i].phys_addr;
kern_sge[i].phys_addr;
bus_addr_t phys_addr;
bus_addr_t phys_addr;
phys_addr = (bus_addr_t)sc->ioc_init_phys_mem + 1024;
init_frame->queue_info_new_phys_addr_lo = phys_addr;
dcmd->sgl.sge32[0].phys_addr = sc->ctlr_info_phys_addr;
dcmd->sgl.sge32[0].phys_addr = map_phys_addr;
dcmd->sgl.sge32[0].phys_addr = map_phys_addr;
dcmd->sgl.sge32[0].phys_addr = pd_list_phys_addr;
dcmd->sgl.sge32[0].phys_addr = ld_list_phys_addr;
dcmd->sgl.sge32[0].phys_addr = sc->el_info_phys_addr;
dcmd->sgl.sge32[0].phys_addr = (u_int32_t) sc->evt_detail_phys_addr;
u_int32_t phys_addr;
u_int64_t phys_addr;
kern_sge32[i].phys_addr = (u_int32_t)ioctl_data_phys_addr[i];
i, dcmd->sgl.sge32[i].phys_addr);
i, (unsigned long long) dcmd->sgl.sge64[i].phys_addr);
uint32_t phys_addr, flag;
phys_addr = sndbuf_getbufaddr(ch->buffer);
ch->sgd_table[i].ptr = phys_addr + (i * ch->blksz);
u_int32_t phys_addr, flag;
phys_addr = sndbuf_getbufaddr(ch->buffer);
ch->sgd_table[i].ptr = phys_addr + (i * seg_size);
io_sq->desc_addr.phys_addr);
io_cq->cdesc_addr.phys_addr);
dma_addr_t phys_addr;
virt_addr, phys_addr, mem_handle);
phys_addr);
ENA_MEM_FREE_COHERENT(ena_dev->dmadev, len, virt_addr, phys_addr,
io_sq->desc_addr.phys_addr,
io_sq->desc_addr.phys_addr,
io_cq->cdesc_addr.phys_addr,
io_cq->cdesc_addr.phys_addr,
io_cq->cdesc_addr.phys_addr,
io_sq->desc_addr.phys_addr,
dma_addr_t phys_addr;
fake->phys_addr = ptoa(fake->pindex);
fake->phys_addr = vtophys(ptoa(fake->pindex));
fake->phys_addr = result;
m->phys_addr = paddr;
obj, efi_obj, offset, m->pindex, m->phys_addr);
if (m->phys_addr != (ipte & PG_FRAME)) \
KKASSERT(opa == oldm->phys_addr);
ptep = (void *)PHYS_TO_DMAP(pm->phys_addr);
ptep = (void *)PHYS_TO_DMAP(pm->phys_addr);
pte = (void *)PHYS_TO_DMAP(mpte->phys_addr);
pmap_kenter_quick(va, m->phys_addr);
pmap_kenter_quick(va, m->phys_addr);
m->phys_addr = paddr;
page->phys_addr = paddr;
fs.mary[0] = PHYS_TO_VM_PAGE(fakem.phys_addr);
m->phys_addr = paddr;
m->phys_addr = pa;
(intmax_t)m->phys_addr,
m->phys_addr = pa;
vm_paddr_t phys_addr; /* physical address of page */
((entry)->phys_addr)
pg.pindex * 4096L, (intmax_t)pg.phys_addr);
lseek(memfds, pg.phys_addr, 0);