led_state
unsigned long led_state;
emp->led_state = state;
unsigned long led_message = emp->led_state;
emp->led_state = state;
rc += sprintf(buf, "%lx\n", emp->led_state);
u32 port_led_state = emp->led_state;
emp->led_state,
emp->led_state = state;
u8 led_state; /* LED1 = 1 .. LED4 = 8 */
report_field->value[2] = bigben->led_state;
work = (bigben->led_state & BIT(n));
bigben->led_state &= ~BIT(n);
work = !(bigben->led_state & BIT(n));
bigben->led_state |= BIT(n);
return (bigben->led_state & BIT(n)) ? LED_ON : LED_OFF;
bigben->led_state = BIT(0);
u8 led_state;
led_state = !!value;
dmabuf[2] = led_state;
drvdata->mute_led_state = led_state;
report->field[0]->value[0] = (data_pointer->led_state >> 0) & 1;
report->field[0]->value[1] = (data_pointer->led_state >> 1) & 1;
data_pointer->led_state &= ~(1 << led_nr);
data_pointer->led_state |= 1 << led_nr;
int led_state;
state = (entry->wdata.led_state >> i) & 1;
entry->wdata.led_state &= ~(1 << i);
lg4ff_set_leds(hid, entry->wdata.led_state);
entry->wdata.led_state |= 1 << i;
lg4ff_set_leds(hid, entry->wdata.led_state);
value = (entry->wdata.led_state >> i) & 1;
entry->wdata.led_state = 0;
u8 led_state;
enum thunderstrike_led_state led_state;
u8 led_state : 1;
return ts->led_state;
enum thunderstrike_led_state led_state)
switch (led_state) {
ts->led_state = 0;
ts->led_state = 1;
hid_dbg(shield_dev->hdev, "Thunderstrike led HOSTCMD response, 0x%02X\n", led_state);
thunderstrike_parse_led_payload(shield_dev, hostcmd_resp_report->led_state);
u8 led_state;
hid_set_field(report->field[0], 0, data->led_state);
state = (data->led_state >> i) & 1;
data->led_state &= ~(1 << i);
data->led_state |= 1 << i;
value = (data->led_state >> i) & 1;
memcpy(sc->led_state, sixaxis_leds[id], sizeof(sixaxis_leds[id]));
value[1] = sc->led_state[0] ? 0xff : 0x00;
value[2] = sc->led_state[1] ? 0xff : 0x00;
value[3] = sc->led_state[2] ? 0xff : 0x00;
value[4] = sc->led_state[3] ? 0xff : 0x00;
(value != drv_data->led_state[n] ||
drv_data->led_state[n] = value;
return drv_data->led_state[n];
memcpy(sc->led_state, navigation_leds, sizeof(navigation_leds));
led->brightness = sc->led_state[n];
report->leds_bitmap |= sc->led_state[0] << 1;
report->leds_bitmap |= sc->led_state[1] << 2;
report->leds_bitmap |= sc->led_state[2] << 3;
report->leds_bitmap |= sc->led_state[3] << 4;
report->r = sc->led_state[0];
report->g = sc->led_state[1];
report->b = sc->led_state[2];
u8 led_state[MAX_LEDS];
drv_data->led_state = 0;
drv_data->led_state = (1 << (SRWS1_NUMBER_LEDS + 1)) - 1;
steelseries_srws1_set_leds(hid, drv_data->led_state);
return (drv_data->led_state >> SRWS1_NUMBER_LEDS) ? LED_FULL : LED_OFF;
state = (drv_data->led_state >> i) & 1;
drv_data->led_state &= ~(1 << i);
steelseries_srws1_set_leds(hid, drv_data->led_state);
drv_data->led_state |= 1 << i;
steelseries_srws1_set_leds(hid, drv_data->led_state);
value = (drv_data->led_state >> i) & 1;
drv_data->led_state = 0;
__u16 led_state;
if (psu->led_state != CFFPS_LED_BLINK)
psu->led_state = next_led_state;
psu->led_state = CFFPS_LED_BLINK;
u8 led_state;
struct led_state led[2];
core->led_state = led;
return core->led_state;
int led_state;
if (state->led_state)
if (state->led_state != led) {
state->led_state = led;
if ((state->led_state) &&
unsigned int led_state;
unsigned char led_state)
radio->usb_buf[2] = led_state;
int led_state;
if (st->led_state != temp) {
st->led_state = temp;
u8 led_state;
led_state = PORT_LED_CFG_REQ_LED0_STATE_BLINKALT;
led_state = PORT_LED_CFG_REQ_LED1_STATE_DEFAULT;
led_cfg->led_state = led_state;
u8 led_state;
u8 led_state = 0;
led_state = QED_LED_MODE_ON;
led_state = QED_LED_MODE_OFF;
led_state = QED_LED_MODE_RESTORE;
edev->ops->common->set_led(edev->cdev, led_state);
u32 led_state; /* LED state */
u_short led_state ;
led_state = 0 ;
led_state |= LED_MY_ON ;
led_state |= LED_MY_OFF ;
led_state |= LED_GA_ON ;
led_state |= LED_GA_OFF ;
led_state |= LED_GB_ON ;
led_state |= LED_GB_OFF ;
outp(ADDR(B0_LED), led_state) ;
set_bit(bit_netdev, &priv->led_state);
clear_bit(bit_netdev, &priv->led_state);
set_bit(bit_on, &priv->led_state);
clear_bit(bit_on, &priv->led_state);
set_bit(bit_blink, &priv->led_state);
clear_bit(bit_blink, &priv->led_state);
set_bit(bit_netdev, &priv->led_state);
clear_bit(bit_netdev, &priv->led_state);
changed = !test_and_set_bit(bit_on, &priv->led_state);
changed = !!test_and_clear_bit(bit_on, &priv->led_state);
(index ? 16 : 0), &priv->led_state);
changed = !test_and_set_bit(bit_blink, &priv->led_state);
changed = !!test_and_clear_bit(bit_blink, &priv->led_state);
(index ? 16 : 0), &priv->led_state);
unsigned long led_state;
int carl9170_led_set_state(struct ar9170 *ar, const u32 led_state);
int carl9170_led_set_state(struct ar9170 *ar, const u32 led_state)
return carl9170_write_reg(ar, AR9170_GPIO_REG_PORT_DATA, led_state);
data->led_state = value == LED_OFF ? data->hswc_params->off :
int led_state;
data->led_state, &ret);
unsigned int led_state = *(unsigned int *)data;
kbd_propagate_led_state(~led_state, led_state);