staging: brcm80211: added __iomem qualifier to softmac phy
[linux-2.6/linux-acpi-2.6/ibm-acpi-2.6.git] / drivers / staging / brcm80211 / brcmsmac / phy / phy_hal.h
blob44818af3047e23eb560411f5090879d9fdf7cd6e
1 /*
2 * Copyright (c) 2010 Broadcom Corporation
4 * Permission to use, copy, modify, and/or distribute this software for any
5 * purpose with or without fee is hereby granted, provided that the above
6 * copyright notice and this permission notice appear in all copies.
8 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
9 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
10 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
11 * SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
12 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION
13 * OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
14 * CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
18 * phy_hal.h: functionality exported from the phy to higher layers
21 #ifndef _BRCM_PHY_HAL_H_
22 #define _BRCM_PHY_HAL_H_
24 #include <brcmu_utils.h>
25 #include <brcmu_wifi.h>
26 #include <phy_shim.h>
28 #define IDCODE_VER_MASK 0x0000000f
29 #define IDCODE_VER_SHIFT 0
30 #define IDCODE_MFG_MASK 0x00000fff
31 #define IDCODE_MFG_SHIFT 0
32 #define IDCODE_ID_MASK 0x0ffff000
33 #define IDCODE_ID_SHIFT 12
34 #define IDCODE_REV_MASK 0xf0000000
35 #define IDCODE_REV_SHIFT 28
37 #define NORADIO_ID 0xe4f5
38 #define NORADIO_IDCODE 0x4e4f5246
40 #define BCM2055_ID 0x2055
41 #define BCM2055_IDCODE 0x02055000
42 #define BCM2055A0_IDCODE 0x1205517f
44 #define BCM2056_ID 0x2056
45 #define BCM2056_IDCODE 0x02056000
46 #define BCM2056A0_IDCODE 0x1205617f
48 #define BCM2057_ID 0x2057
49 #define BCM2057_IDCODE 0x02057000
50 #define BCM2057A0_IDCODE 0x1205717f
52 #define BCM2064_ID 0x2064
53 #define BCM2064_IDCODE 0x02064000
54 #define BCM2064A0_IDCODE 0x0206417f
56 #define PHY_TPC_HW_OFF false
57 #define PHY_TPC_HW_ON true
59 #define PHY_PERICAL_DRIVERUP 1
60 #define PHY_PERICAL_WATCHDOG 2
61 #define PHY_PERICAL_PHYINIT 3
62 #define PHY_PERICAL_JOIN_BSS 4
63 #define PHY_PERICAL_START_IBSS 5
64 #define PHY_PERICAL_UP_BSS 6
65 #define PHY_PERICAL_CHAN 7
66 #define PHY_FULLCAL 8
68 #define PHY_PERICAL_DISABLE 0
69 #define PHY_PERICAL_SPHASE 1
70 #define PHY_PERICAL_MPHASE 2
71 #define PHY_PERICAL_MANUAL 3
73 #define PHY_HOLD_FOR_ASSOC 1
74 #define PHY_HOLD_FOR_SCAN 2
75 #define PHY_HOLD_FOR_RM 4
76 #define PHY_HOLD_FOR_PLT 8
77 #define PHY_HOLD_FOR_MUTE 16
78 #define PHY_HOLD_FOR_NOT_ASSOC 0x20
80 #define PHY_MUTE_FOR_PREISM 1
81 #define PHY_MUTE_ALL 0xffffffff
83 #define PHY_NOISE_FIXED_VAL (-95)
84 #define PHY_NOISE_FIXED_VAL_NPHY (-92)
85 #define PHY_NOISE_FIXED_VAL_LCNPHY (-92)
87 #define PHY_MODE_CAL 0x0002
88 #define PHY_MODE_NOISEM 0x0004
90 #define BRCMS_TXPWR_DB_FACTOR 4
92 /* a large TX Power as an init value to factor out of min() calculations,
93 * keep low enough to fit in an s8, units are .25 dBm
95 #define BRCMS_TXPWR_MAX (127) /* ~32 dBm = 1,500 mW */
97 #define BRCMS_NUM_RATES_CCK 4
98 #define BRCMS_NUM_RATES_OFDM 8
99 #define BRCMS_NUM_RATES_MCS_1_STREAM 8
100 #define BRCMS_NUM_RATES_MCS_2_STREAM 8
101 #define BRCMS_NUM_RATES_MCS_3_STREAM 8
102 #define BRCMS_NUM_RATES_MCS_4_STREAM 8
104 #define BRCMS_RSSI_INVALID 0 /* invalid RSSI value */
106 struct d11regs;
107 struct phy_shim_info;
109 struct txpwr_limits {
110 u8 cck[BRCMS_NUM_RATES_CCK];
111 u8 ofdm[BRCMS_NUM_RATES_OFDM];
113 u8 ofdm_cdd[BRCMS_NUM_RATES_OFDM];
115 u8 ofdm_40_siso[BRCMS_NUM_RATES_OFDM];
116 u8 ofdm_40_cdd[BRCMS_NUM_RATES_OFDM];
118 u8 mcs_20_siso[BRCMS_NUM_RATES_MCS_1_STREAM];
119 u8 mcs_20_cdd[BRCMS_NUM_RATES_MCS_1_STREAM];
120 u8 mcs_20_stbc[BRCMS_NUM_RATES_MCS_1_STREAM];
121 u8 mcs_20_mimo[BRCMS_NUM_RATES_MCS_2_STREAM];
123 u8 mcs_40_siso[BRCMS_NUM_RATES_MCS_1_STREAM];
124 u8 mcs_40_cdd[BRCMS_NUM_RATES_MCS_1_STREAM];
125 u8 mcs_40_stbc[BRCMS_NUM_RATES_MCS_1_STREAM];
126 u8 mcs_40_mimo[BRCMS_NUM_RATES_MCS_2_STREAM];
127 u8 mcs32;
130 struct tx_power {
131 u32 flags;
132 u16 chanspec; /* txpwr report for this channel */
133 u16 local_chanspec; /* channel on which we are associated */
134 u8 local_max; /* local max according to the AP */
135 u8 local_constraint; /* local constraint according to the AP */
136 s8 antgain[2]; /* Ant gain for each band - from SROM */
137 u8 rf_cores; /* count of RF Cores being reported */
138 u8 est_Pout[4]; /* Latest tx power out estimate per RF chain */
139 u8 est_Pout_act[4]; /* Latest tx power out estimate per RF chain
140 * without adjustment */
141 u8 est_Pout_cck; /* Latest CCK tx power out estimate */
142 u8 tx_power_max[4]; /* Maximum target power among all rates */
143 /* Index of the rate with the max target power */
144 u8 tx_power_max_rate_ind[4];
145 /* User limit */
146 u8 user_limit[WL_TX_POWER_RATES];
147 /* Regulatory power limit */
148 u8 reg_limit[WL_TX_POWER_RATES];
149 /* Max power board can support (SROM) */
150 u8 board_limit[WL_TX_POWER_RATES];
151 /* Latest target power */
152 u8 target[WL_TX_POWER_RATES];
155 struct tx_inst_power {
156 u8 txpwr_est_Pout[2]; /* Latest estimate for 2.4 and 5 Ghz */
157 u8 txpwr_est_Pout_gofdm; /* Pwr estimate for 2.4 OFDM */
160 struct brcms_chanvec {
161 u8 vec[MAXCHANNEL / NBBY];
164 struct shared_phy_params {
165 struct si_pub *sih;
166 struct phy_shim_info *physhim;
167 uint unit;
168 uint corerev;
169 uint buscorerev;
170 char *vars;
171 u16 vid;
172 u16 did;
173 uint chip;
174 uint chiprev;
175 uint chippkg;
176 uint sromrev;
177 uint boardtype;
178 uint boardrev;
179 uint boardvendor;
180 u32 boardflags;
181 u32 boardflags2;
185 extern struct shared_phy *wlc_phy_shared_attach(struct shared_phy_params *shp);
186 extern struct brcms_phy_pub *wlc_phy_attach(struct shared_phy *sh,
187 struct d11regs __iomem *regs,
188 int bandtype, char *vars,
189 struct wiphy *wiphy);
190 extern void wlc_phy_detach(struct brcms_phy_pub *ppi);
192 extern bool wlc_phy_get_phyversion(struct brcms_phy_pub *pih, u16 *phytype,
193 u16 *phyrev, u16 *radioid,
194 u16 *radiover);
195 extern bool wlc_phy_get_encore(struct brcms_phy_pub *pih);
196 extern u32 wlc_phy_get_coreflags(struct brcms_phy_pub *pih);
198 extern void wlc_phy_hw_clk_state_upd(struct brcms_phy_pub *ppi, bool newstate);
199 extern void wlc_phy_hw_state_upd(struct brcms_phy_pub *ppi, bool newstate);
200 extern void wlc_phy_init(struct brcms_phy_pub *ppi, u16 chanspec);
201 extern void wlc_phy_watchdog(struct brcms_phy_pub *ppi);
202 extern int wlc_phy_down(struct brcms_phy_pub *ppi);
203 extern u32 wlc_phy_clk_bwbits(struct brcms_phy_pub *pih);
204 extern void wlc_phy_cal_init(struct brcms_phy_pub *ppi);
205 extern void wlc_phy_antsel_init(struct brcms_phy_pub *ppi, bool lut_init);
207 extern void wlc_phy_chanspec_set(struct brcms_phy_pub *ppi,
208 u16 chanspec);
209 extern u16 wlc_phy_chanspec_get(struct brcms_phy_pub *ppi);
210 extern void wlc_phy_chanspec_radio_set(struct brcms_phy_pub *ppi,
211 u16 newch);
212 extern u16 wlc_phy_bw_state_get(struct brcms_phy_pub *ppi);
213 extern void wlc_phy_bw_state_set(struct brcms_phy_pub *ppi, u16 bw);
215 extern int wlc_phy_rssi_compute(struct brcms_phy_pub *pih,
216 struct d11rxhdr *rxh);
217 extern void wlc_phy_por_inform(struct brcms_phy_pub *ppi);
218 extern void wlc_phy_noise_sample_intr(struct brcms_phy_pub *ppi);
219 extern bool wlc_phy_bist_check_phy(struct brcms_phy_pub *ppi);
221 extern void wlc_phy_set_deaf(struct brcms_phy_pub *ppi, bool user_flag);
223 extern void wlc_phy_switch_radio(struct brcms_phy_pub *ppi, bool on);
224 extern void wlc_phy_anacore(struct brcms_phy_pub *ppi, bool on);
227 extern void wlc_phy_BSSinit(struct brcms_phy_pub *ppi, bool bonlyap, int rssi);
229 extern void wlc_phy_chanspec_ch14_widefilter_set(struct brcms_phy_pub *ppi,
230 bool wide_filter);
231 extern void wlc_phy_chanspec_band_validch(struct brcms_phy_pub *ppi, uint band,
232 struct brcms_chanvec *channels);
233 extern u16 wlc_phy_chanspec_band_firstch(struct brcms_phy_pub *ppi,
234 uint band);
236 extern void wlc_phy_txpower_sromlimit(struct brcms_phy_pub *ppi, uint chan,
237 u8 *_min_, u8 *_max_, int rate);
238 extern void wlc_phy_txpower_sromlimit_max_get(struct brcms_phy_pub *ppi,
239 uint chan, u8 *_max_, u8 *_min_);
240 extern void wlc_phy_txpower_boardlimit_band(struct brcms_phy_pub *ppi,
241 uint band, s32 *, s32 *, u32 *);
242 extern void wlc_phy_txpower_limit_set(struct brcms_phy_pub *ppi,
243 struct txpwr_limits *,
244 u16 chanspec);
245 extern int wlc_phy_txpower_get(struct brcms_phy_pub *ppi, uint *qdbm,
246 bool *override);
247 extern int wlc_phy_txpower_set(struct brcms_phy_pub *ppi, uint qdbm,
248 bool override);
249 extern void wlc_phy_txpower_target_set(struct brcms_phy_pub *ppi,
250 struct txpwr_limits *);
251 extern bool wlc_phy_txpower_hw_ctrl_get(struct brcms_phy_pub *ppi);
252 extern void wlc_phy_txpower_hw_ctrl_set(struct brcms_phy_pub *ppi,
253 bool hwpwrctrl);
254 extern u8 wlc_phy_txpower_get_target_min(struct brcms_phy_pub *ppi);
255 extern u8 wlc_phy_txpower_get_target_max(struct brcms_phy_pub *ppi);
256 extern bool wlc_phy_txpower_ipa_ison(struct brcms_phy_pub *pih);
258 extern void wlc_phy_stf_chain_init(struct brcms_phy_pub *pih, u8 txchain,
259 u8 rxchain);
260 extern void wlc_phy_stf_chain_set(struct brcms_phy_pub *pih, u8 txchain,
261 u8 rxchain);
262 extern void wlc_phy_stf_chain_get(struct brcms_phy_pub *pih, u8 *txchain,
263 u8 *rxchain);
264 extern u8 wlc_phy_stf_chain_active_get(struct brcms_phy_pub *pih);
265 extern s8 wlc_phy_stf_ssmode_get(struct brcms_phy_pub *pih,
266 u16 chanspec);
267 extern void wlc_phy_ldpc_override_set(struct brcms_phy_pub *ppi, bool val);
269 extern void wlc_phy_cal_perical(struct brcms_phy_pub *ppi, u8 reason);
270 extern void wlc_phy_noise_sample_request_external(struct brcms_phy_pub *ppi);
271 extern void wlc_phy_edcrs_lock(struct brcms_phy_pub *pih, bool lock);
272 extern void wlc_phy_cal_papd_recal(struct brcms_phy_pub *ppi);
274 extern void wlc_phy_ant_rxdiv_set(struct brcms_phy_pub *ppi, u8 val);
275 extern void wlc_phy_clear_tssi(struct brcms_phy_pub *ppi);
276 extern void wlc_phy_hold_upd(struct brcms_phy_pub *ppi, u32 id, bool val);
277 extern void wlc_phy_mute_upd(struct brcms_phy_pub *ppi, bool val, u32 flags);
279 extern void wlc_phy_antsel_type_set(struct brcms_phy_pub *ppi, u8 antsel_type);
281 extern void wlc_phy_txpower_get_current(struct brcms_phy_pub *ppi,
282 struct tx_power *power, uint channel);
284 extern void wlc_phy_initcal_enable(struct brcms_phy_pub *pih, bool initcal);
285 extern bool wlc_phy_test_ison(struct brcms_phy_pub *ppi);
286 extern void wlc_phy_txpwr_percent_set(struct brcms_phy_pub *ppi,
287 u8 txpwr_percent);
288 extern void wlc_phy_ofdm_rateset_war(struct brcms_phy_pub *pih, bool war);
289 extern void wlc_phy_bf_preempt_enable(struct brcms_phy_pub *pih,
290 bool bf_preempt);
291 extern void wlc_phy_machwcap_set(struct brcms_phy_pub *ppi, u32 machwcap);
293 extern void wlc_phy_runbist_config(struct brcms_phy_pub *ppi, bool start_end);
295 extern void wlc_phy_freqtrack_start(struct brcms_phy_pub *ppi);
296 extern void wlc_phy_freqtrack_end(struct brcms_phy_pub *ppi);
298 extern const u8 *wlc_phy_get_ofdm_rate_lookup(void);
300 extern s8 wlc_phy_get_tx_power_offset_by_mcs(struct brcms_phy_pub *ppi,
301 u8 mcs_offset);
302 extern s8 wlc_phy_get_tx_power_offset(struct brcms_phy_pub *ppi, u8 tbl_offset);
303 #endif /* _BRCM_PHY_HAL_H_ */