addr64
unsigned long prev, tmp, cmp, addr64;
: "=&r" (prev), "=&r" (new), "=&r" (tmp), "=&r" (cmp), "=&r" (addr64)
unsigned long ret, tmp, addr64;
unsigned long prev, tmp, cmp, addr64;
: "=&r" (prev), "=&r" (new), "=&r" (tmp), "=&r" (cmp), "=&r" (addr64)
: "=&r" (ret), "=&r" (val), "=&r" (tmp), "=&r" (addr64)
unsigned long ret, tmp, addr64;
: "=&r" (ret), "=&r" (val), "=&r" (tmp), "=&r" (addr64)
u64 *addr64;
addr64 = buf + PAGE_SIZE * 2;
check(!patch_instructions((u32 *)(addr64 + 1), code, 24, true));
check(addr64[0] == 0);
check(ppc_inst_equal(ppc_inst_read((u32 *)&addr64[1]), inst64));
check(ppc_inst_equal(ppc_inst_read((u32 *)&addr64[2]), inst64));
check(ppc_inst_equal(ppc_inst_read((u32 *)&addr64[3]), inst64));
check(addr64[4] == 0);
addr64 = buf + PAGE_SIZE * 5 - 8;
check(!patch_instructions((u32 *)(addr64 + 1), code, 24, true));
check(addr64[0] == 0);
check(ppc_inst_equal(ppc_inst_read((u32 *)&addr64[1]), inst64));
check(ppc_inst_equal(ppc_inst_read((u32 *)&addr64[2]), inst64));
check(ppc_inst_equal(ppc_inst_read((u32 *)&addr64[3]), inst64));
check(addr64[4] == 0);
addr64 lscsa_ea;
static inline void fetch_regs_from_mem(addr64 lscsa_ea)
static inline void restore_upper_240kb(addr64 lscsa_ea)
static inline void spill_regs_to_mem(addr64 lscsa_ea)
static inline void enqueue_sync(addr64 lscsa_ea)
addr64 lscsa_ea;
static inline void save_upper_240kb(addr64 lscsa_ea)
static inline void build_dma_list(addr64 lscsa_ea)
static inline void enqueue_putllc(addr64 lscsa_ea)
} addr64;
addr64.ull = (u64) csa->lscsa;
out_be32(&prob->signal_notify1, addr64.ui[0]);
} addr64;
addr64.ull = (u64) csa->lscsa;
out_be32(&prob->signal_notify2, addr64.ui[1]);
__be64 addr64;
&addr64, &data);
msg->address_hi = be64_to_cpu(addr64) >> 32;
msg->address_lo = be64_to_cpu(addr64) & 0xfffffffful;
unsigned long addr64 = (unsigned long)addr;
if ((addr64 < CPU_ENTRY_AREA_BASE) ||
(addr64 >= (CPU_ENTRY_AREA_BASE + CPU_ENTRY_AREA_MAP_SIZE)))
cpu = (addr64 - CPU_ENTRY_AREA_BASE) / CPU_ENTRY_AREA_SIZE;
off = addr64 - (unsigned long)get_cpu_entry_area(cpu);
phys_addr_t addr64, tmplow, tmphi;
addr64 = addrl;
tmphi = (addr64 >> 32);
tmplow = (addr64 & 0xFFFFFFFF);
phys_addr_t addr64, tmphi, tmplow;
addr64 = addrl;
tmphi = (addr64 >> 32);
tmplow = (addr64 & 0xFFFFFFFF);
mmc->uhs2_caps.addr64 = (caps_gen & SDHCI_UHS2_CAPS_ADDR_64) ? 1 : 0;
u64 addr64 = 0;
addr64 = RX_DMA_GET_ADDR64(trxd.rxd2);
dma_unmap_single(eth->dma_dev, ((u64)trxd.rxd1 | addr64),
addr64 = FIELD_GET(RX_DMA_ADDR64_MASK,
addr64 = RX_DMA_PREP_ADDR64(dma_addr);
rxd->rxd2 = RX_DMA_PREP_PLEN0(ring->buf_size) | addr64;
u64 addr64 = 0;
addr64 = RX_DMA_GET_ADDR64(rxd->rxd2);
dma_unmap_single(eth->dma_dev, ((u64)rxd->rxd1 | addr64),
unsigned int addr64;
dma_cap->addr64 = (hw_cap & GMAC_HW_ADDR64) >> 14;
switch (dma_cap->addr64) {
dma_cap->addr64 = 32;
dma_cap->addr64 = 40;
dma_cap->addr64 = 48;
dma_cap->addr64 = 32;
dma_cap->addr64 = (hw_cap & XGMAC_HWFEAT_ADDR64) >> 14;
switch (dma_cap->addr64) {
dma_cap->addr64 = 32;
dma_cap->addr64 = 40;
dma_cap->addr64 = 48;
dma_cap->addr64 = 32;
priv->dma_cap.host_dma_width = priv->dma_cap.addr64;
priv->dma_cap.host_dma_width, priv->dma_cap.addr64);
u64 addr64;
addr64 = dma_map_single(&pdev->dev, buf, buflen, data_direction);
if (dma_mapping_error(&pdev->dev, addr64)) {
cp->SG[0].Addr = cpu_to_le64(addr64);
u64 addr64 = (u64) sg_dma_address(sg);
desc->Addr = cpu_to_le64(addr64);
u64 addr64;
addr64 = (u64) sg_dma_address(sg);
curr_sg->Addr = cpu_to_le64(addr64);
u64 addr64;
addr64 = le64_to_cpu(
curr_sg->address = cpu_to_le64(addr64);
addr64 = (u64) sg_dma_address(sg);
curr_sg->address = cpu_to_le64(addr64);
u8 addr64;
unsigned long addr64 = (unsigned long)addr;
PAGE_SIZE - ((addr64 + pos) % PAGE_SIZE));
shadow = kmsan_get_metadata((void *)(addr64 + pos),
origin = kmsan_get_metadata((void *)(addr64 + pos + i),
unsigned long addr64 = (unsigned long)addr, off;
KMSAN_WARN_ON(is_origin && !IS_ALIGNED(addr64, KMSAN_ORIGIN_SIZE));
off = addr64 - VMALLOC_START;
off = addr64 - MODULES_VADDR;