break;
case led_green_on:
- hw_led_state |= D21;;
+ hw_led_state |= D21;
break;
case led_green_off:
break;
case led_amber_on:
- hw_led_state |= D22;;
+ hw_led_state |= D22;
break;
case led_amber_off:
break;
case led_red_on:
- hw_led_state |= D23;;
+ hw_led_state |= D23;
break;
case led_red_off:
board = b;
if (b->clocks_count != 0) {
- struct clk **ptr = b->clocks;;
+ struct clk **ptr = b->clocks;
for (i = b->clocks_count; i > 0; i--, ptr++)
s3c24xx_register_clock(*ptr);
__debug_frame->psr |= PSR_S;
__debug_regs->brr = (__debug_frame->tbr & TBR_TT) << 12;
__debug_regs->brr |= BRR_EB;
- sigval = SIGXCPU;;
+ sigval = SIGXCPU;
}
LEDS(0x5002);
nodepda_t *tmp_nodepda;
if (nasid_to_cnodeid(nasid) == -1)
- return (struct bteinfo_s *)NULL;;
+ return (struct bteinfo_s *)NULL;
tmp_nodepda = NODEPDA(nasid_to_cnodeid(nasid));
return &tmp_nodepda->bte_if[interface];
struct tioca_dmamap *ca_dmamap;
void *map;
unsigned long flags;
- struct pcidev_info *pcidev_info = SN_PCIDEV_INFO(pdev);;
+ struct pcidev_info *pcidev_info = SN_PCIDEV_INFO(pdev);
tioca_common = (struct tioca_common *)pcidev_info->pdi_pcibus_info;
tioca_kern = (struct tioca_kernel *)tioca_common->ca_kernel_private;
BUG();
}
- addr = virt_to_phys(ptr)&RAM_OFFSET_MASK;;
+ addr = virt_to_phys(ptr)&RAM_OFFSET_MASK;
if(dev == NULL)
addr+=CRIME_HI_MEM_BASE;
return (dma_addr_t)addr;
addr = (unsigned long) page_address(sg->page)+sg->offset;
if (addr)
__dma_sync(addr, sg->length, direction);
- addr = __pa(addr)&RAM_OFFSET_MASK;;
+ addr = __pa(addr)&RAM_OFFSET_MASK;
if(dev == NULL)
addr += CRIME_HI_MEM_BASE;
sg->dma_address = (dma_addr_t)addr;
addr = (unsigned long) page_address(page) + offset;
dma_cache_wback_inv(addr, size);
- addr = __pa(addr)&RAM_OFFSET_MASK;;
+ addr = __pa(addr)&RAM_OFFSET_MASK;
if(dev == NULL)
addr += CRIME_HI_MEM_BASE;
(__ilog2(MPC85XX_PCI2_UPPER_MEM - MPC85XX_PCI2_LOWER_MEM + 1) - 1);
/* Setup outbound IO windows @ MPC85XX_PCI2_IO_BASE */
- pci->potar2 = (MPC85XX_PCI2_LOWER_IO >> 12) & 0x000fffff;;
+ pci->potar2 = (MPC85XX_PCI2_LOWER_IO >> 12) & 0x000fffff;
pci->potear2 = 0x00000000;
pci->powbar2 = (MPC85XX_PCI2_IO_BASE >> 12) & 0x000fffff;
/* Enable, IO R/W */
}
#ifdef CONFIG_BLK_DEV_FD
-extern irqreturn_t floppy_interrupt(int, void *, struct pt_regs *);;
+extern irqreturn_t floppy_interrupt(int, void *, struct pt_regs *);
/* XXX No easy way to include asm/floppy.h XXX */
extern unsigned char *pdma_vaddr;
}
info->params.encoding = new_encoding;
- info->params.crc_type = new_crctype;;
+ info->params.crc_type = new_crctype;
/* if network interface up, reprogram hardware */
if (info->netcount)
}
info->params.encoding = new_encoding;
- info->params.crc_type = new_crctype;;
+ info->params.crc_type = new_crctype;
/* if network interface up, reprogram hardware */
if (info->netcount)
}
info->params.encoding = new_encoding;
- info->params.crc_type = new_crctype;;
+ info->params.crc_type = new_crctype;
/* if network interface up, reprogram hardware */
if (info->netcount)
}
info->params.encoding = new_encoding;
- info->params.crc_type = new_crctype;;
+ info->params.crc_type = new_crctype;
/* if network interface up, reprogram hardware */
if (info->netcount)
long v = simple_strtol(buf, NULL, 10);
mutex_lock(&data->update_lock);
- data->temp_max[n - 1] = TEMP_TO_REG(v);;
+ data->temp_max[n - 1] = TEMP_TO_REG(v);
gl520_write_value(client, reg, data->temp_max[n - 1]);
mutex_unlock(&data->update_lock);
return count;
#define CTRL1(c) _rtc8564_ctrl1(c)
#define CTRL2(c) _rtc8564_ctrl2(c)
-static int debug;;
+static int debug;
module_param(debug, int, S_IRUGO | S_IWUSR);
static struct i2c_driver rtc8564_driver;
if (rq->rq_disk) {
ide_driver_t *drv;
- drv = *(ide_driver_t **)rq->rq_disk->private_data;;
+ drv = *(ide_driver_t **)rq->rq_disk->private_data;
drv->end_request(drive, 1, rq->nr_sectors);
} else
ide_end_request(drive, 1, rq->nr_sectors);
pTxd->VDataHigh = (SK_U32) (PhysAddr >> 32);
pTxd->pMBuf = pMessage;
- pTxd->TBControl = Control | BMU_OWN | sk_frag->size;;
+ pTxd->TBControl = Control | BMU_OWN | sk_frag->size;
/*
** Do we have the last fragment?
__le16 length;
u8 ctrl;
u8 opcode;
-} __attribute((packed));;
+} __attribute((packed));
struct sky2_status_le {
__le32 status; /* also checksum */
case OID_TYPE_ATTACH:{
struct obj_attachment *attach = data;
attach->id = le16_to_cpu(attach->id);
- attach->size = le16_to_cpu(attach->size);;
+ attach->size = le16_to_cpu(attach->size);
break;
}
case OID_TYPE_SSID:
case OID_TYPE_ATTACH:{
struct obj_attachment *attach = data;
attach->id = cpu_to_le16(attach->id);
- attach->size = cpu_to_le16(attach->size);;
+ attach->size = cpu_to_le16(attach->size);
break;
}
case OID_TYPE_SSID:
__le16 _len; /* length of ID and data, in words */
__le16 _id; /* record ID */
char data[0]; /* plug data */
-} __attribute__ ((packed));;
+} __attribute__ ((packed));
/* Functions for access to little-endian data */
// available within 1 second, assume FW is initializing and wait
// for an extended amount of time
if (mbox->numstatus == 0xFF) { // status not yet available
- udelay(25);;
+ udelay(25);
for (i = 0; mbox->numstatus == 0xFF && i < 1000; i++) {
rmb();
rc = usb_lock_device_for_reset(desc->usb_dev, desc->usb_intf);
if (rc < 0)
return FAILED;
- result = usb_reset_device(desc->usb_dev);;
+ result = usb_reset_device(desc->usb_dev);
if (rc)
usb_unlock_device(desc->usb_dev);
return result ? FAILED : SUCCESS;
if (hid->outhead != hid->outtail) {
if (hid_submit_out(hid)) {
- clear_bit(HID_OUT_RUNNING, &hid->iofl);;
+ clear_bit(HID_OUT_RUNNING, &hid->iofl);
wake_up(&hid->wait);
}
spin_unlock_irqrestore(&hid->outlock, flags);
OUTREG(0x2ec, 0x6332a3f0);
mdelay(17);
- OUTPLL(pllPPLL_REF_DIV, rinfo->pll.ref_div);;
+ OUTPLL(pllPPLL_REF_DIV, rinfo->pll.ref_div);
OUTPLL(pllPPLL_DIV_0, rinfo->save_regs[92]);
mdelay(40);
parm_data->list_len = cpu_to_le32(count);
parm_data->list[0].EA_flags = 0;
/* we checked above that name len is less than 255 */
- parm_data->list[0].name_len = (__u8)name_len;;
+ parm_data->list[0].name_len = (__u8)name_len;
/* EA names are always ASCII */
if(ea_name)
strncpy(parm_data->list[0].name,ea_name,name_len);
{
struct vfsmount *p_last_src = NULL;
struct vfsmount *p_last_dest = NULL;
- *type = CL_PROPAGATION;;
+ *type = CL_PROPAGATION;
if (IS_MNT_SHARED(dest))
*type |= CL_MAKE_SHARED;
struct acpi_device_wakeup {
acpi_handle gpe_device;
- acpi_integer gpe_number;;
+ acpi_integer gpe_number;
acpi_integer sleep_state;
struct acpi_handle_list resources;
struct acpi_device_wakeup_state state;
/***** BEGIN HACK - temp til old proms no longer supported ********/
if (ret_stuff.status == SALRET_NOT_IMPLEMENTED) {
- int nasid = get_sapicid() & 0xfff;;
+ int nasid = get_sapicid() & 0xfff;
#define SH_SHUB_ID_NODES_PER_BIT_MASK 0x001f000000000000UL
#define SH_SHUB_ID_NODES_PER_BIT_SHFT 48
if (shubtype) *shubtype = 0;
spin_unlock(&head->lock);
if (tw) {
- inet_twsk_deschedule(tw, death_row);;
+ inet_twsk_deschedule(tw, death_row);
inet_twsk_put(tw);
}
ret = nf_register_hook(&ip_nat_local_out_ops);
if (ret < 0) {
printk("ip_nat_init: can't register local out hook.\n");
- goto cleanup_adjustout_ops;;
+ goto cleanup_adjustout_ops;
}
ret = nf_register_hook(&ip_nat_local_in_ops);
if (ret < 0) {
tipc_msg_print(TIPC_CONS, buf_msg(buf), ">RETR>");
info("...Retransmitted %u times\n",
l_ptr->stale_count);
- link_print(l_ptr, TIPC_CONS, "Resetting Link\n");;
+ link_print(l_ptr, TIPC_CONS, "Resetting Link\n");
tipc_link_reset(l_ptr);
break;
}
gp = &mix->amp_mute_gpio;
break;
default:
- return -EINVAL;;
+ return -EINVAL;
}
ucontrol->value.integer.value[0] = !check_audio_gpio(gp);
return 0;
gp = &mix->amp_mute_gpio;
break;
default:
- return -EINVAL;;
+ return -EINVAL;
}
val = ! check_audio_gpio(gp);
if (val != ucontrol->value.integer.value[0]) {