]> www.pilppa.org Git - linux-2.6-omap-h63xx.git/blob - drivers/net/wireless/zd1211rw/zd_rf.c
[PATCH] zd1211rw: Add UW2453 RF support
[linux-2.6-omap-h63xx.git] / drivers / net / wireless / zd1211rw / zd_rf.c
1 /* zd_rf.c
2  *
3  * This program is free software; you can redistribute it and/or modify
4  * it under the terms of the GNU General Public License as published by
5  * the Free Software Foundation; either version 2 of the License, or
6  * (at your option) any later version.
7  *
8  * This program is distributed in the hope that it will be useful,
9  * but WITHOUT ANY WARRANTY; without even the implied warranty of
10  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
11  * GNU General Public License for more details.
12  *
13  * You should have received a copy of the GNU General Public License
14  * along with this program; if not, write to the Free Software
15  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
16  */
17
18 #include <linux/errno.h>
19 #include <linux/string.h>
20
21 #include "zd_def.h"
22 #include "zd_rf.h"
23 #include "zd_ieee80211.h"
24 #include "zd_chip.h"
25
26 static const char * const rfs[] = {
27         [0]             = "unknown RF0",
28         [1]             = "unknown RF1",
29         [UW2451_RF]     = "UW2451_RF",
30         [UCHIP_RF]      = "UCHIP_RF",
31         [AL2230_RF]     = "AL2230_RF",
32         [AL7230B_RF]    = "AL7230B_RF",
33         [THETA_RF]      = "THETA_RF",
34         [AL2210_RF]     = "AL2210_RF",
35         [MAXIM_NEW_RF]  = "MAXIM_NEW_RF",
36         [UW2453_RF]     = "UW2453_RF",
37         [UNKNOWN_A_RF]  = "UNKNOWN_A_RF",
38         [RALINK_RF]     = "RALINK_RF",
39         [INTERSIL_RF]   = "INTERSIL_RF",
40         [RF2959_RF]     = "RF2959_RF",
41         [MAXIM_NEW2_RF] = "MAXIM_NEW2_RF",
42         [PHILIPS_RF]    = "PHILIPS_RF",
43 };
44
45 const char *zd_rf_name(u8 type)
46 {
47         if (type & 0xf0)
48                 type = 0;
49         return rfs[type];
50 }
51
52 void zd_rf_init(struct zd_rf *rf)
53 {
54         memset(rf, 0, sizeof(*rf));
55
56         /* default to update channel integration, as almost all RF's do want
57          * this */
58         rf->update_channel_int = 1;
59 }
60
61 void zd_rf_clear(struct zd_rf *rf)
62 {
63         if (rf->clear)
64                 rf->clear(rf);
65         ZD_MEMCLEAR(rf, sizeof(*rf));
66 }
67
68 int zd_rf_init_hw(struct zd_rf *rf, u8 type)
69 {
70         int r = 0;
71         int t;
72         struct zd_chip *chip = zd_rf_to_chip(rf);
73
74         ZD_ASSERT(mutex_is_locked(&chip->mutex));
75         switch (type) {
76         case RF2959_RF:
77                 r = zd_rf_init_rf2959(rf);
78                 break;
79         case AL2230_RF:
80                 r = zd_rf_init_al2230(rf);
81                 break;
82         case AL7230B_RF:
83                 r = zd_rf_init_al7230b(rf);
84                 break;
85         case UW2453_RF:
86                 r = zd_rf_init_uw2453(rf);
87                 break;
88         default:
89                 dev_err(zd_chip_dev(chip),
90                         "RF %s %#x is not supported\n", zd_rf_name(type), type);
91                 rf->type = 0;
92                 return -ENODEV;
93         }
94
95         if (r)
96                 return r;
97
98         rf->type = type;
99
100         r = zd_chip_lock_phy_regs(chip);
101         if (r)
102                 return r;
103         t = rf->init_hw(rf);
104         r = zd_chip_unlock_phy_regs(chip);
105         if (t)
106                 r = t;
107         return r;
108 }
109
110 int zd_rf_scnprint_id(struct zd_rf *rf, char *buffer, size_t size)
111 {
112         return scnprintf(buffer, size, "%s", zd_rf_name(rf->type));
113 }
114
115 int zd_rf_set_channel(struct zd_rf *rf, u8 channel)
116 {
117         int r;
118
119         ZD_ASSERT(mutex_is_locked(&zd_rf_to_chip(rf)->mutex));
120         if (channel < MIN_CHANNEL24)
121                 return -EINVAL;
122         if (channel > MAX_CHANNEL24)
123                 return -EINVAL;
124         dev_dbg_f(zd_chip_dev(zd_rf_to_chip(rf)), "channel: %d\n", channel);
125
126         r = rf->set_channel(rf, channel);
127         if (r >= 0)
128                 rf->channel = channel;
129         return r;
130 }
131
132 int zd_switch_radio_on(struct zd_rf *rf)
133 {
134         int r, t;
135         struct zd_chip *chip = zd_rf_to_chip(rf);
136
137         ZD_ASSERT(mutex_is_locked(&chip->mutex));
138         r = zd_chip_lock_phy_regs(chip);
139         if (r)
140                 return r;
141         t = rf->switch_radio_on(rf);
142         r = zd_chip_unlock_phy_regs(chip);
143         if (t)
144                 r = t;
145         return r;
146 }
147
148 int zd_switch_radio_off(struct zd_rf *rf)
149 {
150         int r, t;
151         struct zd_chip *chip = zd_rf_to_chip(rf);
152
153         /* TODO: move phy regs handling to zd_chip */
154         ZD_ASSERT(mutex_is_locked(&chip->mutex));
155         r = zd_chip_lock_phy_regs(chip);
156         if (r)
157                 return r;
158         t = rf->switch_radio_off(rf);
159         r = zd_chip_unlock_phy_regs(chip);
160         if (t)
161                 r = t;
162         return r;
163 }
164
165 int zd_rf_patch_6m_band_edge(struct zd_rf *rf, u8 channel)
166 {
167         if (!rf->patch_6m_band_edge)
168                 return 0;
169
170         return rf->patch_6m_band_edge(rf, channel);
171 }
172
173 int zd_rf_generic_patch_6m(struct zd_rf *rf, u8 channel)
174 {
175         return zd_chip_generic_patch_6m_band(zd_rf_to_chip(rf), channel);
176 }
177