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authorLarry Finger <Larry.Finger@lwfinger.net>2007-10-13 00:04:51 -0400
committerDavid S. Miller <davem@davemloft.net>2008-01-28 18:03:26 -0500
commitba48f7bb8062982ec916868cc8c90360aad82e53 (patch)
tree9f19ae7146c895d09b01ef7d1bbec0d44666c0bf /drivers/net/wireless/b43legacy/leds.c
parentc8b0e6e19c0bcd30689cb6c6f64eb140f5d61894 (diff)
b43legacy: LED triggers support
Drive the LEDs through the generic LED triggers. The patch to b43 by Michael Buesch <mb@bu3sch.de> has been ported to b43legacy. Signed-off-by: Larry Finger <larry.finger@lwfinger.net> Signed-off-by: John W. Linville <linville@tuxdriver.com>
Diffstat (limited to 'drivers/net/wireless/b43legacy/leds.c')
-rw-r--r--drivers/net/wireless/b43legacy/leds.c409
1 files changed, 172 insertions, 237 deletions
diff --git a/drivers/net/wireless/b43legacy/leds.c b/drivers/net/wireless/b43legacy/leds.c
index a584ea810502..1e30919582c5 100644
--- a/drivers/net/wireless/b43legacy/leds.c
+++ b/drivers/net/wireless/b43legacy/leds.c
@@ -1,13 +1,13 @@
1/* 1/*
2 2
3 Broadcom B43legacy wireless driver 3 Broadcom B43 wireless driver
4 LED control
4 5
5 Copyright (c) 2005 Martin Langer <martin-langer@gmx.de>, 6 Copyright (c) 2005 Martin Langer <martin-langer@gmx.de>,
6 Stefano Brivio <st3@riseup.net> 7 Copyright (c) 2005 Stefano Brivio <st3@riseup.net>
7 Michael Buesch <mb@bu3sch.de> 8 Copyright (c) 2005-2007 Michael Buesch <mb@bu3sch.de>
8 Danny van Dyk <kugelfang@gentoo.org> 9 Copyright (c) 2005 Danny van Dyk <kugelfang@gentoo.org>
9 Andreas Jaggi <andreas.jaggi@waterwave.ch> 10 Copyright (c) 2005 Andreas Jaggi <andreas.jaggi@waterwave.ch>
10 Copyright (c) 2007 Larry Finger <Larry.Finger@lwfinger.net>
11 11
12 This program is free software; you can redistribute it and/or modify 12 This program is free software; you can redistribute it and/or modify
13 it under the terms of the GNU General Public License as published by 13 it under the terms of the GNU General Public License as published by
@@ -26,273 +26,208 @@
26 26
27*/ 27*/
28 28
29#include "leds.h"
30#include "b43legacy.h" 29#include "b43legacy.h"
31#include "main.h" 30#include "leds.h"
32
33static void b43legacy_led_changestate(struct b43legacy_led *led)
34{
35 struct b43legacy_wldev *dev = led->dev;
36 const int index = led->index;
37 u16 ledctl;
38 31
39 B43legacy_WARN_ON(!(index >= 0 && index < B43legacy_NR_LEDS));
40 B43legacy_WARN_ON(!led->blink_interval);
41 ledctl = b43legacy_read16(dev, B43legacy_MMIO_GPIO_CONTROL);
42 ledctl ^= (1 << index);
43 b43legacy_write16(dev, B43legacy_MMIO_GPIO_CONTROL, ledctl);
44}
45 32
46static void b43legacy_led_blink(unsigned long d) 33static void b43legacy_led_turn_on(struct b43legacy_wldev *dev, u8 led_index,
34 bool activelow)
47{ 35{
48 struct b43legacy_led *led = (struct b43legacy_led *)d; 36 struct b43legacy_wl *wl = dev->wl;
49 struct b43legacy_wldev *dev = led->dev;
50 unsigned long flags; 37 unsigned long flags;
38 u16 ctl;
51 39
52 spin_lock_irqsave(&dev->wl->leds_lock, flags); 40 spin_lock_irqsave(&wl->leds_lock, flags);
53 if (led->blink_interval) { 41 ctl = b43legacy_read16(dev, B43legacy_MMIO_GPIO_CONTROL);
54 b43legacy_led_changestate(led); 42 if (activelow)
55 mod_timer(&led->blink_timer, jiffies + led->blink_interval); 43 ctl &= ~(1 << led_index);
56 } 44 else
57 spin_unlock_irqrestore(&dev->wl->leds_lock, flags); 45 ctl |= (1 << led_index);
46 b43legacy_write16(dev, B43legacy_MMIO_GPIO_CONTROL, ctl);
47 spin_unlock_irqrestore(&wl->leds_lock, flags);
58} 48}
59 49
60static void b43legacy_led_blink_start(struct b43legacy_led *led, 50static void b43legacy_led_turn_off(struct b43legacy_wldev *dev, u8 led_index,
61 unsigned long interval) 51 bool activelow)
62{ 52{
63 if (led->blink_interval) 53 struct b43legacy_wl *wl = dev->wl;
64 return; 54 unsigned long flags;
65 led->blink_interval = interval; 55 u16 ctl;
66 b43legacy_led_changestate(led); 56
67 led->blink_timer.expires = jiffies + interval; 57 spin_lock_irqsave(&wl->leds_lock, flags);
68 add_timer(&led->blink_timer); 58 ctl = b43legacy_read16(dev, B43legacy_MMIO_GPIO_CONTROL);
59 if (activelow)
60 ctl |= (1 << led_index);
61 else
62 ctl &= ~(1 << led_index);
63 b43legacy_write16(dev, B43legacy_MMIO_GPIO_CONTROL, ctl);
64 spin_unlock_irqrestore(&wl->leds_lock, flags);
69} 65}
70 66
71static void b43legacy_led_blink_stop(struct b43legacy_led *led, int sync) 67/* Callback from the LED subsystem. */
68static void b43legacy_led_brightness_set(struct led_classdev *led_dev,
69 enum led_brightness brightness)
72{ 70{
71 struct b43legacy_led *led = container_of(led_dev, struct b43legacy_led,
72 led_dev);
73 struct b43legacy_wldev *dev = led->dev; 73 struct b43legacy_wldev *dev = led->dev;
74 const int index = led->index; 74 bool radio_enabled;
75 u16 ledctl;
76 75
77 if (!led->blink_interval) 76 /* Checking the radio-enabled status here is slightly racy,
78 return; 77 * but we want to avoid the locking overhead and we don't care
79 if (unlikely(sync)) 78 * whether the LED has the wrong state for a second. */
80 del_timer_sync(&led->blink_timer); 79 radio_enabled = (dev->phy.radio_on && dev->radio_hw_enable);
81 else
82 del_timer(&led->blink_timer);
83 led->blink_interval = 0;
84 80
85 /* Make sure the LED is turned off. */ 81 if (brightness == LED_OFF || !radio_enabled)
86 B43legacy_WARN_ON(!(index >= 0 && index < B43legacy_NR_LEDS)); 82 b43legacy_led_turn_off(dev, led->index, led->activelow);
87 ledctl = b43legacy_read16(dev, B43legacy_MMIO_GPIO_CONTROL);
88 if (led->activelow)
89 ledctl |= (1 << index);
90 else 83 else
91 ledctl &= ~(1 << index); 84 b43legacy_led_turn_on(dev, led->index, led->activelow);
92 b43legacy_write16(dev, B43legacy_MMIO_GPIO_CONTROL, ledctl);
93} 85}
94 86
95static void b43legacy_led_init_hardcoded(struct b43legacy_wldev *dev, 87static int b43legacy_register_led(struct b43legacy_wldev *dev,
96 struct b43legacy_led *led, 88 struct b43legacy_led *led,
97 int led_index) 89 const char *name, char *default_trigger,
90 u8 led_index, bool activelow)
98{ 91{
99 struct ssb_bus *bus = dev->dev->bus; 92 int err;
93
94 b43legacy_led_turn_off(dev, led_index, activelow);
95 if (led->dev)
96 return -EEXIST;
97 if (!default_trigger)
98 return -EINVAL;
99 led->dev = dev;
100 led->index = led_index;
101 led->activelow = activelow;
102 strncpy(led->name, name, sizeof(led->name));
103
104 led->led_dev.name = led->name;
105 led->led_dev.default_trigger = default_trigger;
106 led->led_dev.brightness_set = b43legacy_led_brightness_set;
107
108 err = led_classdev_register(dev->dev->dev, &led->led_dev);
109 if (err) {
110 b43legacywarn(dev->wl, "LEDs: Failed to register %s\n", name);
111 led->dev = NULL;
112 return err;
113 }
114 return 0;
115}
100 116
101 /* This function is called, if the behaviour (and activelow) 117static void b43legacy_unregister_led(struct b43legacy_led *led)
102 * information for a LED is missing in the SPROM. 118{
103 * We hardcode the behaviour values for various devices here. 119 if (!led->dev)
104 * Note that the B43legacy_LED_TEST_XXX behaviour values can 120 return;
105 * be used to figure out which led is mapped to which index. 121 led_classdev_unregister(&led->led_dev);
106 */ 122 b43legacy_led_turn_off(led->dev, led->index, led->activelow);
123 led->dev = NULL;
124}
125
126static void b43legacy_map_led(struct b43legacy_wldev *dev,
127 u8 led_index,
128 enum b43legacy_led_behaviour behaviour,
129 bool activelow)
130{
131 struct ieee80211_hw *hw = dev->wl->hw;
132 char name[B43legacy_LED_MAX_NAME_LEN + 1];
107 133
108 switch (led_index) { 134 /* Map the b43 specific LED behaviour value to the
109 case 0: 135 * generic LED triggers. */
110 led->behaviour = B43legacy_LED_ACTIVITY; 136 switch (behaviour) {
111 led->activelow = 1; 137 case B43legacy_LED_INACTIVE:
112 if (bus->boardinfo.vendor == PCI_VENDOR_ID_COMPAQ)
113 led->behaviour = B43legacy_LED_RADIO_ALL;
114 break; 138 break;
115 case 1: 139 case B43legacy_LED_OFF:
116 led->behaviour = B43legacy_LED_RADIO_B; 140 b43legacy_led_turn_off(dev, led_index, activelow);
117 if (bus->boardinfo.vendor == PCI_VENDOR_ID_ASUSTEK)
118 led->behaviour = B43legacy_LED_ASSOC;
119 break; 141 break;
120 case 2: 142 case B43legacy_LED_ON:
121 led->behaviour = B43legacy_LED_RADIO_A; 143 b43legacy_led_turn_on(dev, led_index, activelow);
122 break; 144 break;
123 case 3: 145 case B43legacy_LED_ACTIVITY:
124 led->behaviour = B43legacy_LED_OFF; 146 case B43legacy_LED_TRANSFER:
147 case B43legacy_LED_APTRANSFER:
148 snprintf(name, sizeof(name),
149 "b43legacy-%s:tx", wiphy_name(hw->wiphy));
150 b43legacy_register_led(dev, &dev->led_tx, name,
151 ieee80211_get_tx_led_name(hw),
152 led_index, activelow);
153 snprintf(name, sizeof(name),
154 "b43legacy-%s:rx", wiphy_name(hw->wiphy));
155 b43legacy_register_led(dev, &dev->led_rx, name,
156 ieee80211_get_rx_led_name(hw),
157 led_index, activelow);
158 break;
159 /*FIXME: We need another trigger for the "radio-on" LEDs below.
160 * Wiggle that somehow into the rfkill subsystem. */
161 case B43legacy_LED_RADIO_ALL:
162 case B43legacy_LED_RADIO_A:
163 case B43legacy_LED_RADIO_B:
164 case B43legacy_LED_MODE_BG:
165 case B43legacy_LED_WEIRD:
166 case B43legacy_LED_ASSOC:
167 snprintf(name, sizeof(name),
168 "b43legacy-%s:assoc", wiphy_name(hw->wiphy));
169 b43legacy_register_led(dev, &dev->led_assoc, name,
170 ieee80211_get_assoc_led_name(hw),
171 led_index, activelow);
125 break; 172 break;
126 default: 173 default:
127 B43legacy_BUG_ON(1); 174 b43legacywarn(dev->wl, "LEDs: Unknown behaviour 0x%02X\n",
175 behaviour);
176 break;
128 } 177 }
129} 178}
130 179
131int b43legacy_leds_init(struct b43legacy_wldev *dev) 180void b43legacy_leds_init(struct b43legacy_wldev *dev)
132{ 181{
133 struct b43legacy_led *led; 182 struct ssb_bus *bus = dev->dev->bus;
134 u8 sprom[4]; 183 u8 sprom[4];
135 int i; 184 int i;
136 185 enum b43legacy_led_behaviour behaviour;
137 sprom[0] = dev->dev->bus->sprom.r1.gpio0; 186 bool activelow;
138 sprom[1] = dev->dev->bus->sprom.r1.gpio1; 187
139 sprom[2] = dev->dev->bus->sprom.r1.gpio2; 188 sprom[0] = bus->sprom.r1.gpio0;
140 sprom[3] = dev->dev->bus->sprom.r1.gpio3; 189 sprom[1] = bus->sprom.r1.gpio1;
141 190 sprom[2] = bus->sprom.r1.gpio2;
142 for (i = 0; i < B43legacy_NR_LEDS; i++) { 191 sprom[3] = bus->sprom.r1.gpio3;
143 led = &(dev->leds[i]); 192
144 led->index = i; 193 for (i = 0; i < 4; i++) {
145 led->dev = dev; 194 if (sprom[i] == 0xFF) {
146 setup_timer(&led->blink_timer, 195 /* There is no LED information in the SPROM
147 b43legacy_led_blink, 196 * for this LED. Hardcode it here. */
148 (unsigned long)led); 197 activelow = 0;
149 198 switch (i) {
150 if (sprom[i] == 0xFF) 199 case 0:
151 b43legacy_led_init_hardcoded(dev, led, i); 200 behaviour = B43legacy_LED_ACTIVITY;
152 else { 201 activelow = 1;
153 led->behaviour = sprom[i] & B43legacy_LED_BEHAVIOUR; 202 if (bus->boardinfo.vendor == PCI_VENDOR_ID_COMPAQ)
154 led->activelow = !!(sprom[i] & 203 behaviour = B43legacy_LED_RADIO_ALL;
155 B43legacy_LED_ACTIVELOW); 204 break;
205 case 1:
206 behaviour = B43legacy_LED_RADIO_B;
207 if (bus->boardinfo.vendor == PCI_VENDOR_ID_ASUSTEK)
208 behaviour = B43legacy_LED_ASSOC;
209 break;
210 case 2:
211 behaviour = B43legacy_LED_RADIO_A;
212 break;
213 case 3:
214 behaviour = B43legacy_LED_OFF;
215 break;
216 default:
217 B43legacy_WARN_ON(1);
218 return;
219 }
220 } else {
221 behaviour = sprom[i] & B43legacy_LED_BEHAVIOUR;
222 activelow = !!(sprom[i] & B43legacy_LED_ACTIVELOW);
156 } 223 }
224 b43legacy_map_led(dev, i, behaviour, activelow);
157 } 225 }
158
159 return 0;
160} 226}
161 227
162void b43legacy_leds_exit(struct b43legacy_wldev *dev) 228void b43legacy_leds_exit(struct b43legacy_wldev *dev)
163{ 229{
164 struct b43legacy_led *led; 230 b43legacy_unregister_led(&dev->led_tx);
165 int i; 231 b43legacy_unregister_led(&dev->led_rx);
166 232 b43legacy_unregister_led(&dev->led_assoc);
167 for (i = 0; i < B43legacy_NR_LEDS; i++) {
168 led = &(dev->leds[i]);
169 b43legacy_led_blink_stop(led, 1);
170 }
171 b43legacy_leds_switch_all(dev, 0);
172}
173
174void b43legacy_leds_update(struct b43legacy_wldev *dev, int activity)
175{
176 struct b43legacy_led *led;
177 struct b43legacy_phy *phy = &dev->phy;
178 const int transferring = (jiffies - dev->stats.last_tx)
179 < B43legacy_LED_XFER_THRES;
180 int i;
181 int turn_on;
182 unsigned long interval = 0;
183 u16 ledctl;
184 unsigned long flags;
185 bool radio_enabled = (phy->radio_on && dev->radio_hw_enable);
186
187 spin_lock_irqsave(&dev->wl->leds_lock, flags);
188 ledctl = b43legacy_read16(dev, B43legacy_MMIO_GPIO_CONTROL);
189 for (i = 0; i < B43legacy_NR_LEDS; i++) {
190 led = &(dev->leds[i]);
191
192 turn_on = 0;
193 switch (led->behaviour) {
194 case B43legacy_LED_INACTIVE:
195 continue;
196 case B43legacy_LED_OFF:
197 break;
198 case B43legacy_LED_ON:
199 turn_on = 1;
200 break;
201 case B43legacy_LED_ACTIVITY:
202 turn_on = activity;
203 break;
204 case B43legacy_LED_RADIO_ALL:
205 turn_on = radio_enabled;
206 break;
207 case B43legacy_LED_RADIO_A:
208 break;
209 case B43legacy_LED_RADIO_B:
210 turn_on = radio_enabled;
211 break;
212 case B43legacy_LED_MODE_BG:
213 if (phy->type == B43legacy_PHYTYPE_G && radio_enabled)
214 turn_on = 1;
215 break;
216 case B43legacy_LED_TRANSFER:
217 if (transferring)
218 b43legacy_led_blink_start(led,
219 B43legacy_LEDBLINK_MEDIUM);
220 else
221 b43legacy_led_blink_stop(led, 0);
222 continue;
223 case B43legacy_LED_APTRANSFER:
224 if (b43legacy_is_mode(dev->wl,
225 IEEE80211_IF_TYPE_AP)) {
226 if (transferring) {
227 interval = B43legacy_LEDBLINK_FAST;
228 turn_on = 1;
229 }
230 } else {
231 turn_on = 1;
232 if (transferring)
233 interval = B43legacy_LEDBLINK_FAST;
234 else
235 turn_on = 0;
236 }
237 if (turn_on)
238 b43legacy_led_blink_start(led, interval);
239 else
240 b43legacy_led_blink_stop(led, 0);
241 continue;
242 case B43legacy_LED_WEIRD:
243 break;
244 case B43legacy_LED_ASSOC:
245 turn_on = 1;
246#ifdef CONFIG_B43LEGACY_DEBUG
247 case B43legacy_LED_TEST_BLINKSLOW:
248 b43legacy_led_blink_start(led, B43legacy_LEDBLINK_SLOW);
249 continue;
250 case B43legacy_LED_TEST_BLINKMEDIUM:
251 b43legacy_led_blink_start(led,
252 B43legacy_LEDBLINK_MEDIUM);
253 continue;
254 case B43legacy_LED_TEST_BLINKFAST:
255 b43legacy_led_blink_start(led, B43legacy_LEDBLINK_FAST);
256 continue;
257#endif /* CONFIG_B43LEGACY_DEBUG */
258 default:
259 B43legacy_BUG_ON(1);
260 };
261
262 if (led->activelow)
263 turn_on = !turn_on;
264 if (turn_on)
265 ledctl |= (1 << i);
266 else
267 ledctl &= ~(1 << i);
268 }
269 b43legacy_write16(dev, B43legacy_MMIO_GPIO_CONTROL, ledctl);
270 spin_unlock_irqrestore(&dev->wl->leds_lock, flags);
271}
272
273void b43legacy_leds_switch_all(struct b43legacy_wldev *dev, int on)
274{
275 struct b43legacy_led *led;
276 u16 ledctl;
277 int i;
278 int bit_on;
279 unsigned long flags;
280
281 spin_lock_irqsave(&dev->wl->leds_lock, flags);
282 ledctl = b43legacy_read16(dev, B43legacy_MMIO_GPIO_CONTROL);
283 for (i = 0; i < B43legacy_NR_LEDS; i++) {
284 led = &(dev->leds[i]);
285 if (led->behaviour == B43legacy_LED_INACTIVE)
286 continue;
287 if (on)
288 bit_on = led->activelow ? 0 : 1;
289 else
290 bit_on = led->activelow ? 1 : 0;
291 if (bit_on)
292 ledctl |= (1 << i);
293 else
294 ledctl &= ~(1 << i);
295 }
296 b43legacy_write16(dev, B43legacy_MMIO_GPIO_CONTROL, ledctl);
297 spin_unlock_irqrestore(&dev->wl->leds_lock, flags);
298} 233}