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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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75388acd0c
Signed-off-by: Larry Finger <Larry.Finger@lwfinger.net> Signed-off-by: John W. Linville <linville@tuxdriver.com> Signed-off-by: David S. Miller <davem@davemloft.net>
303 lines
7.9 KiB
C
303 lines
7.9 KiB
C
/*
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Broadcom B43legacy wireless driver
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Copyright (c) 2005 Martin Langer <martin-langer@gmx.de>,
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Stefano Brivio <st3@riseup.net>
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Michael Buesch <mb@bu3sch.de>
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Danny van Dyk <kugelfang@gentoo.org>
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Andreas Jaggi <andreas.jaggi@waterwave.ch>
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Copyright (c) 2007 Larry Finger <Larry.Finger@lwfinger.net>
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; see the file COPYING. If not, write to
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the Free Software Foundation, Inc., 51 Franklin Steet, Fifth Floor,
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Boston, MA 02110-1301, USA.
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*/
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#include "leds.h"
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#include "b43legacy.h"
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#include "main.h"
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static void b43legacy_led_changestate(struct b43legacy_led *led)
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{
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struct b43legacy_wldev *dev = led->dev;
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const int index = led->index;
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u16 ledctl;
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B43legacy_WARN_ON(!(index >= 0 && index < B43legacy_NR_LEDS));
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B43legacy_WARN_ON(!led->blink_interval);
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ledctl = b43legacy_read16(dev, B43legacy_MMIO_GPIO_CONTROL);
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ledctl ^= (1 << index);
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b43legacy_write16(dev, B43legacy_MMIO_GPIO_CONTROL, ledctl);
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}
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static void b43legacy_led_blink(unsigned long d)
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{
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struct b43legacy_led *led = (struct b43legacy_led *)d;
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struct b43legacy_wldev *dev = led->dev;
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unsigned long flags;
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spin_lock_irqsave(&dev->wl->leds_lock, flags);
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if (led->blink_interval) {
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b43legacy_led_changestate(led);
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mod_timer(&led->blink_timer, jiffies + led->blink_interval);
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}
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spin_unlock_irqrestore(&dev->wl->leds_lock, flags);
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}
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static void b43legacy_led_blink_start(struct b43legacy_led *led,
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unsigned long interval)
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{
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if (led->blink_interval)
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return;
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led->blink_interval = interval;
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b43legacy_led_changestate(led);
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led->blink_timer.expires = jiffies + interval;
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add_timer(&led->blink_timer);
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}
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static void b43legacy_led_blink_stop(struct b43legacy_led *led, int sync)
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{
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struct b43legacy_wldev *dev = led->dev;
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const int index = led->index;
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u16 ledctl;
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if (!led->blink_interval)
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return;
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if (unlikely(sync))
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del_timer_sync(&led->blink_timer);
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else
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del_timer(&led->blink_timer);
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led->blink_interval = 0;
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/* Make sure the LED is turned off. */
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B43legacy_WARN_ON(!(index >= 0 && index < B43legacy_NR_LEDS));
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ledctl = b43legacy_read16(dev, B43legacy_MMIO_GPIO_CONTROL);
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if (led->activelow)
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ledctl |= (1 << index);
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else
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ledctl &= ~(1 << index);
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b43legacy_write16(dev, B43legacy_MMIO_GPIO_CONTROL, ledctl);
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}
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static void b43legacy_led_init_hardcoded(struct b43legacy_wldev *dev,
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struct b43legacy_led *led,
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int led_index)
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{
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struct ssb_bus *bus = dev->dev->bus;
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/* This function is called, if the behaviour (and activelow)
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* information for a LED is missing in the SPROM.
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* We hardcode the behaviour values for various devices here.
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* Note that the B43legacy_LED_TEST_XXX behaviour values can
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* be used to figure out which led is mapped to which index.
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*/
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switch (led_index) {
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case 0:
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led->behaviour = B43legacy_LED_ACTIVITY;
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led->activelow = 1;
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if (bus->boardinfo.vendor == PCI_VENDOR_ID_COMPAQ)
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led->behaviour = B43legacy_LED_RADIO_ALL;
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break;
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case 1:
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led->behaviour = B43legacy_LED_RADIO_B;
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if (bus->boardinfo.vendor == PCI_VENDOR_ID_ASUSTEK)
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led->behaviour = B43legacy_LED_ASSOC;
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break;
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case 2:
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led->behaviour = B43legacy_LED_RADIO_A;
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break;
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case 3:
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led->behaviour = B43legacy_LED_OFF;
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break;
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default:
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B43legacy_BUG_ON(1);
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}
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}
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int b43legacy_leds_init(struct b43legacy_wldev *dev)
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{
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struct b43legacy_led *led;
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u8 sprom[4];
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int i;
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sprom[0] = dev->dev->bus->sprom.r1.gpio0;
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sprom[1] = dev->dev->bus->sprom.r1.gpio1;
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sprom[2] = dev->dev->bus->sprom.r1.gpio2;
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sprom[3] = dev->dev->bus->sprom.r1.gpio3;
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for (i = 0; i < B43legacy_NR_LEDS; i++) {
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led = &(dev->leds[i]);
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led->index = i;
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led->dev = dev;
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setup_timer(&led->blink_timer,
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b43legacy_led_blink,
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(unsigned long)led);
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if (sprom[i] == 0xFF)
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b43legacy_led_init_hardcoded(dev, led, i);
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else {
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led->behaviour = sprom[i] & B43legacy_LED_BEHAVIOUR;
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led->activelow = !!(sprom[i] &
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B43legacy_LED_ACTIVELOW);
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}
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}
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return 0;
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}
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void b43legacy_leds_exit(struct b43legacy_wldev *dev)
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{
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struct b43legacy_led *led;
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int i;
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for (i = 0; i < B43legacy_NR_LEDS; i++) {
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led = &(dev->leds[i]);
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b43legacy_led_blink_stop(led, 1);
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}
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b43legacy_leds_switch_all(dev, 0);
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}
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void b43legacy_leds_update(struct b43legacy_wldev *dev, int activity)
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{
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struct b43legacy_led *led;
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struct b43legacy_phy *phy = &dev->phy;
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const int transferring = (jiffies - dev->stats.last_tx)
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< B43legacy_LED_XFER_THRES;
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int i;
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int turn_on;
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unsigned long interval = 0;
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u16 ledctl;
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unsigned long flags;
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spin_lock_irqsave(&dev->wl->leds_lock, flags);
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ledctl = b43legacy_read16(dev, B43legacy_MMIO_GPIO_CONTROL);
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for (i = 0; i < B43legacy_NR_LEDS; i++) {
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led = &(dev->leds[i]);
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turn_on = 0;
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switch (led->behaviour) {
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case B43legacy_LED_INACTIVE:
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continue;
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case B43legacy_LED_OFF:
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break;
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case B43legacy_LED_ON:
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turn_on = 1;
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break;
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case B43legacy_LED_ACTIVITY:
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turn_on = activity;
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break;
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case B43legacy_LED_RADIO_ALL:
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turn_on = phy->radio_on &&
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b43legacy_is_hw_radio_enabled(dev);
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break;
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case B43legacy_LED_RADIO_A:
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break;
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case B43legacy_LED_RADIO_B:
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turn_on = (phy->radio_on &&
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b43legacy_is_hw_radio_enabled(dev) &&
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(phy->type == B43legacy_PHYTYPE_B ||
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phy->type == B43legacy_PHYTYPE_G));
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break;
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case B43legacy_LED_MODE_BG:
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if (phy->type == B43legacy_PHYTYPE_G &&
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b43legacy_is_hw_radio_enabled(dev))
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turn_on = 1;
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break;
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case B43legacy_LED_TRANSFER:
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if (transferring)
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b43legacy_led_blink_start(led,
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B43legacy_LEDBLINK_MEDIUM);
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else
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b43legacy_led_blink_stop(led, 0);
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continue;
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case B43legacy_LED_APTRANSFER:
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if (b43legacy_is_mode(dev->wl,
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IEEE80211_IF_TYPE_AP)) {
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if (transferring) {
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interval = B43legacy_LEDBLINK_FAST;
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turn_on = 1;
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}
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} else {
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turn_on = 1;
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if (transferring)
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interval = B43legacy_LEDBLINK_FAST;
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else
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turn_on = 0;
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}
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if (turn_on)
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b43legacy_led_blink_start(led, interval);
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else
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b43legacy_led_blink_stop(led, 0);
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continue;
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case B43legacy_LED_WEIRD:
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break;
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case B43legacy_LED_ASSOC:
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turn_on = 1;
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#ifdef CONFIG_B43LEGACY_DEBUG
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case B43legacy_LED_TEST_BLINKSLOW:
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b43legacy_led_blink_start(led, B43legacy_LEDBLINK_SLOW);
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continue;
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case B43legacy_LED_TEST_BLINKMEDIUM:
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b43legacy_led_blink_start(led,
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B43legacy_LEDBLINK_MEDIUM);
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continue;
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case B43legacy_LED_TEST_BLINKFAST:
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b43legacy_led_blink_start(led, B43legacy_LEDBLINK_FAST);
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continue;
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#endif /* CONFIG_B43LEGACY_DEBUG */
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default:
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B43legacy_BUG_ON(1);
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};
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if (led->activelow)
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turn_on = !turn_on;
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if (turn_on)
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ledctl |= (1 << i);
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else
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ledctl &= ~(1 << i);
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}
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b43legacy_write16(dev, B43legacy_MMIO_GPIO_CONTROL, ledctl);
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spin_unlock_irqrestore(&dev->wl->leds_lock, flags);
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}
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void b43legacy_leds_switch_all(struct b43legacy_wldev *dev, int on)
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{
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struct b43legacy_led *led;
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u16 ledctl;
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int i;
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int bit_on;
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unsigned long flags;
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spin_lock_irqsave(&dev->wl->leds_lock, flags);
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ledctl = b43legacy_read16(dev, B43legacy_MMIO_GPIO_CONTROL);
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for (i = 0; i < B43legacy_NR_LEDS; i++) {
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led = &(dev->leds[i]);
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if (led->behaviour == B43legacy_LED_INACTIVE)
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continue;
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if (on)
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bit_on = led->activelow ? 0 : 1;
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else
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bit_on = led->activelow ? 1 : 0;
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if (bit_on)
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ledctl |= (1 << i);
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else
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ledctl &= ~(1 << i);
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}
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b43legacy_write16(dev, B43legacy_MMIO_GPIO_CONTROL, ledctl);
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spin_unlock_irqrestore(&dev->wl->leds_lock, flags);
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}
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