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Michael Buesch53a6e232008-01-13 21:23:44 +01001#ifndef B43_TABLES_NPHY_H_
2#define B43_TABLES_NPHY_H_
3
4#include <linux/types.h>
5
6
Michael Bueschd1591312008-01-14 00:05:57 +01007struct b43_nphy_channeltab_entry {
8 /* The channel number */
9 u8 channel;
10 /* Radio register values on channelswitch */
11 u8 radio_pll_ref;
12 u8 radio_rf_pllmod0;
13 u8 radio_rf_pllmod1;
14 u8 radio_vco_captail;
15 u8 radio_vco_cal1;
16 u8 radio_vco_cal2;
17 u8 radio_pll_lfc1;
18 u8 radio_pll_lfr1;
19 u8 radio_pll_lfc2;
20 u8 radio_lgbuf_cenbuf;
21 u8 radio_lgen_tune1;
22 u8 radio_lgen_tune2;
23 u8 radio_c1_lgbuf_atune;
24 u8 radio_c1_lgbuf_gtune;
25 u8 radio_c1_rx_rfr1;
26 u8 radio_c1_tx_pgapadtn;
27 u8 radio_c1_tx_mxbgtrim;
28 u8 radio_c2_lgbuf_atune;
29 u8 radio_c2_lgbuf_gtune;
30 u8 radio_c2_rx_rfr1;
31 u8 radio_c2_tx_pgapadtn;
32 u8 radio_c2_tx_mxbgtrim;
33 /* PHY register values on channelswitch */
34 u16 phy_bw1a;
35 u16 phy_bw2;
36 u16 phy_bw3;
37 u16 phy_bw4;
38 u16 phy_bw5;
39 u16 phy_bw6;
40 /* The channel frequency in MHz */
41 u16 freq;
42 /* An unknown value */
43 u16 unk2;
44};
45
46
Michael Buesch53a6e232008-01-13 21:23:44 +010047struct b43_wldev;
48
Rafał Miłeckif8187b52010-01-15 12:34:21 +010049struct nphy_txiqcal_ladder {
50 u8 percent;
51 u8 g_env;
52};
53
Michael Buesch53a6e232008-01-13 21:23:44 +010054/* Upload the default register value table.
55 * If "ghz5" is true, we upload the 5Ghz table. Otherwise the 2.4Ghz
56 * table is uploaded. If "ignore_uploadflag" is true, we upload any value
57 * and ignore the "UPLOAD" flag. */
58void b2055_upload_inittab(struct b43_wldev *dev,
59 bool ghz5, bool ignore_uploadflag);
60
61
Michael Bueschd1591312008-01-14 00:05:57 +010062/* Get the NPHY Channel Switch Table entry for a channel number.
63 * Returns NULL on failure to find an entry. */
64const struct b43_nphy_channeltab_entry *
65b43_nphy_get_chantabent(struct b43_wldev *dev, u8 channel);
66
67
Michael Buesch8ac919b2008-01-16 02:14:23 +010068/* The N-PHY tables. */
69
70#define B43_NTAB_TYPEMASK 0xF0000000
71#define B43_NTAB_8BIT 0x10000000
72#define B43_NTAB_16BIT 0x20000000
73#define B43_NTAB_32BIT 0x30000000
74#define B43_NTAB8(table, offset) (((table) << 10) | (offset) | B43_NTAB_8BIT)
75#define B43_NTAB16(table, offset) (((table) << 10) | (offset) | B43_NTAB_16BIT)
76#define B43_NTAB32(table, offset) (((table) << 10) | (offset) | B43_NTAB_32BIT)
77
78/* Static N-PHY tables */
79#define B43_NTAB_FRAMESTRUCT B43_NTAB32(0x0A, 0x000) /* Frame Struct Table */
80#define B43_NTAB_FRAMESTRUCT_SIZE 832
81#define B43_NTAB_FRAMELT B43_NTAB8 (0x18, 0x000) /* Frame Lookup Table */
82#define B43_NTAB_FRAMELT_SIZE 32
83#define B43_NTAB_TMAP B43_NTAB32(0x0C, 0x000) /* T Map Table */
84#define B43_NTAB_TMAP_SIZE 448
85#define B43_NTAB_TDTRN B43_NTAB32(0x0E, 0x000) /* TDTRN Table */
86#define B43_NTAB_TDTRN_SIZE 704
87#define B43_NTAB_INTLEVEL B43_NTAB32(0x0D, 0x000) /* Int Level Table */
88#define B43_NTAB_INTLEVEL_SIZE 7
89#define B43_NTAB_PILOT B43_NTAB16(0x0B, 0x000) /* Pilot Table */
90#define B43_NTAB_PILOT_SIZE 88
91#define B43_NTAB_PILOTLT B43_NTAB32(0x14, 0x000) /* Pilot Lookup Table */
92#define B43_NTAB_PILOTLT_SIZE 6
93#define B43_NTAB_TDI20A0 B43_NTAB32(0x13, 0x080) /* TDI Table 20 Antenna 0 */
94#define B43_NTAB_TDI20A0_SIZE 55
95#define B43_NTAB_TDI20A1 B43_NTAB32(0x13, 0x100) /* TDI Table 20 Antenna 1 */
96#define B43_NTAB_TDI20A1_SIZE 55
97#define B43_NTAB_TDI40A0 B43_NTAB32(0x13, 0x280) /* TDI Table 40 Antenna 0 */
98#define B43_NTAB_TDI40A0_SIZE 110
99#define B43_NTAB_TDI40A1 B43_NTAB32(0x13, 0x300) /* TDI Table 40 Antenna 1 */
100#define B43_NTAB_TDI40A1_SIZE 110
101#define B43_NTAB_BDI B43_NTAB16(0x15, 0x000) /* BDI Table */
102#define B43_NTAB_BDI_SIZE 6
103#define B43_NTAB_CHANEST B43_NTAB32(0x16, 0x000) /* Channel Estimate Table */
104#define B43_NTAB_CHANEST_SIZE 96
105#define B43_NTAB_MCS B43_NTAB8 (0x12, 0x000) /* MCS Table */
106#define B43_NTAB_MCS_SIZE 128
107
108/* Volatile N-PHY tables */
109#define B43_NTAB_NOISEVAR10 B43_NTAB32(0x10, 0x000) /* Noise Var Table 10 */
110#define B43_NTAB_NOISEVAR10_SIZE 256
111#define B43_NTAB_NOISEVAR11 B43_NTAB32(0x10, 0x080) /* Noise Var Table 11 */
112#define B43_NTAB_NOISEVAR11_SIZE 256
113#define B43_NTAB_C0_ESTPLT B43_NTAB8 (0x1A, 0x000) /* Estimate Power Lookup Table Core 0 */
114#define B43_NTAB_C0_ESTPLT_SIZE 64
115#define B43_NTAB_C1_ESTPLT B43_NTAB8 (0x1B, 0x000) /* Estimate Power Lookup Table Core 1 */
116#define B43_NTAB_C1_ESTPLT_SIZE 64
117#define B43_NTAB_C0_ADJPLT B43_NTAB8 (0x1A, 0x040) /* Adjust Power Lookup Table Core 0 */
118#define B43_NTAB_C0_ADJPLT_SIZE 128
119#define B43_NTAB_C1_ADJPLT B43_NTAB8 (0x1B, 0x040) /* Adjust Power Lookup Table Core 1 */
120#define B43_NTAB_C1_ADJPLT_SIZE 128
121#define B43_NTAB_C0_GAINCTL B43_NTAB32(0x1A, 0x0C0) /* Gain Control Lookup Table Core 0 */
122#define B43_NTAB_C0_GAINCTL_SIZE 128
123#define B43_NTAB_C1_GAINCTL B43_NTAB32(0x1B, 0x0C0) /* Gain Control Lookup Table Core 1 */
124#define B43_NTAB_C1_GAINCTL_SIZE 128
125#define B43_NTAB_C0_IQLT B43_NTAB32(0x1A, 0x140) /* IQ Lookup Table Core 0 */
126#define B43_NTAB_C0_IQLT_SIZE 128
127#define B43_NTAB_C1_IQLT B43_NTAB32(0x1B, 0x140) /* IQ Lookup Table Core 1 */
128#define B43_NTAB_C1_IQLT_SIZE 128
129#define B43_NTAB_C0_LOFEEDTH B43_NTAB16(0x1A, 0x1C0) /* Local Oscillator Feed Through Lookup Table Core 0 */
130#define B43_NTAB_C0_LOFEEDTH_SIZE 128
131#define B43_NTAB_C1_LOFEEDTH B43_NTAB16(0x1B, 0x1C0) /* Local Oscillator Feed Through Lookup Table Core 1 */
132#define B43_NTAB_C1_LOFEEDTH_SIZE 128
133
134void b43_ntab_write(struct b43_wldev *dev, u32 offset, u32 value);
135
Rafał Miłecki4772ae12010-01-15 12:18:21 +0100136void b43_nphy_rev0_1_2_tables_init(struct b43_wldev *dev);
137void b43_nphy_rev3plus_tables_init(struct b43_wldev *dev);
Michael Buesch8ac919b2008-01-16 02:14:23 +0100138
Michael Buesch53a6e232008-01-13 21:23:44 +0100139#endif /* B43_TABLES_NPHY_H_ */