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[net-next-2.6.git] / drivers / net / wireless / b43 / xmit.h
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1#ifndef B43_XMIT_H_
2#define B43_XMIT_H_
3
4#include "main.h"
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5#include <net/mac80211.h>
6
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7
8#define _b43_declare_plcp_hdr(size) \
9 struct b43_plcp_hdr##size { \
10 union { \
11 __le32 data; \
12 __u8 raw[size]; \
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13 } __packed; \
14 } __packed
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15
16/* struct b43_plcp_hdr4 */
17_b43_declare_plcp_hdr(4);
18/* struct b43_plcp_hdr6 */
19_b43_declare_plcp_hdr(6);
20
21#undef _b43_declare_plcp_hdr
22
23/* TX header for v4 firmware */
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24struct b43_txhdr {
25 __le32 mac_ctl; /* MAC TX control */
26 __le16 mac_frame_ctl; /* Copy of the FrameControl field */
e4d6b795 27 __le16 tx_fes_time_norm; /* TX FES Time Normal */
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28 __le16 phy_ctl; /* PHY TX control */
29 __le16 phy_ctl1; /* PHY TX control word 1 */
30 __le16 phy_ctl1_fb; /* PHY TX control word 1 for fallback rates */
31 __le16 phy_ctl1_rts; /* PHY TX control word 1 RTS */
32 __le16 phy_ctl1_rts_fb; /* PHY TX control word 1 RTS for fallback rates */
33 __u8 phy_rate; /* PHY rate */
34 __u8 phy_rate_rts; /* PHY rate for RTS/CTS */
35 __u8 extra_ft; /* Extra Frame Types */
36 __u8 chan_radio_code; /* Channel Radio Code */
37 __u8 iv[16]; /* Encryption IV */
38 __u8 tx_receiver[6]; /* TX Frame Receiver address */
39 __le16 tx_fes_time_fb; /* TX FES Time Fallback */
40 struct b43_plcp_hdr6 rts_plcp_fb; /* RTS fallback PLCP header */
41 __le16 rts_dur_fb; /* RTS fallback duration */
42 struct b43_plcp_hdr6 plcp_fb; /* Fallback PLCP header */
43 __le16 dur_fb; /* Fallback duration */
44 __le16 mimo_modelen; /* MIMO mode length */
45 __le16 mimo_ratelen_fb; /* MIMO fallback rate length */
46 __le32 timeout; /* Timeout */
47
48 union {
49 /* The new r410 format. */
50 struct {
51 __le16 mimo_antenna; /* MIMO antenna select */
52 __le16 preload_size; /* Preload size */
53 PAD_BYTES(2);
54 __le16 cookie; /* TX frame cookie */
55 __le16 tx_status; /* TX status */
56 struct b43_plcp_hdr6 rts_plcp; /* RTS PLCP header */
57 __u8 rts_frame[16]; /* The RTS frame (if used) */
58 PAD_BYTES(2);
59 struct b43_plcp_hdr6 plcp; /* Main PLCP header */
ba2d3587 60 } new_format __packed;
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61
62 /* The old r351 format. */
63 struct {
64 PAD_BYTES(2);
65 __le16 cookie; /* TX frame cookie */
66 __le16 tx_status; /* TX status */
67 struct b43_plcp_hdr6 rts_plcp; /* RTS PLCP header */
68 __u8 rts_frame[16]; /* The RTS frame (if used) */
69 PAD_BYTES(2);
70 struct b43_plcp_hdr6 plcp; /* Main PLCP header */
ba2d3587 71 } old_format __packed;
eb189d8b 72
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73 } __packed;
74} __packed;
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75
76/* MAC TX control */
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77#define B43_TXH_MAC_USEFBR 0x10000000 /* Use fallback rate for this AMPDU */
78#define B43_TXH_MAC_KEYIDX 0x0FF00000 /* Security key index */
79#define B43_TXH_MAC_KEYIDX_SHIFT 20
80#define B43_TXH_MAC_KEYALG 0x00070000 /* Security key algorithm */
81#define B43_TXH_MAC_KEYALG_SHIFT 16
82#define B43_TXH_MAC_AMIC 0x00008000 /* AMIC */
83#define B43_TXH_MAC_RIFS 0x00004000 /* Use RIFS */
84#define B43_TXH_MAC_LIFETIME 0x00002000 /* Lifetime */
85#define B43_TXH_MAC_FRAMEBURST 0x00001000 /* Frameburst */
86#define B43_TXH_MAC_SENDCTS 0x00000800 /* Send CTS-to-self */
87#define B43_TXH_MAC_AMPDU 0x00000600 /* AMPDU status */
88#define B43_TXH_MAC_AMPDU_MPDU 0x00000000 /* Regular MPDU, not an AMPDU */
89#define B43_TXH_MAC_AMPDU_FIRST 0x00000200 /* First MPDU or AMPDU */
90#define B43_TXH_MAC_AMPDU_INTER 0x00000400 /* Intermediate MPDU or AMPDU */
91#define B43_TXH_MAC_AMPDU_LAST 0x00000600 /* Last (or only) MPDU of AMPDU */
92#define B43_TXH_MAC_40MHZ 0x00000100 /* Use 40 MHz bandwidth */
93#define B43_TXH_MAC_5GHZ 0x00000080 /* 5GHz band */
94#define B43_TXH_MAC_DFCS 0x00000040 /* DFCS */
95#define B43_TXH_MAC_IGNPMQ 0x00000020 /* Ignore PMQ */
96#define B43_TXH_MAC_HWSEQ 0x00000010 /* Use Hardware Sequence Number */
97#define B43_TXH_MAC_STMSDU 0x00000008 /* Start MSDU */
98#define B43_TXH_MAC_SENDRTS 0x00000004 /* Send RTS */
99#define B43_TXH_MAC_LONGFRAME 0x00000002 /* Long frame */
100#define B43_TXH_MAC_ACK 0x00000001 /* Immediate ACK */
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101
102/* Extra Frame Types */
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103#define B43_TXH_EFT_FB 0x03 /* Data frame fallback encoding */
104#define B43_TXH_EFT_FB_CCK 0x00 /* CCK */
105#define B43_TXH_EFT_FB_OFDM 0x01 /* OFDM */
106#define B43_TXH_EFT_FB_EWC 0x02 /* EWC */
107#define B43_TXH_EFT_FB_N 0x03 /* N */
108#define B43_TXH_EFT_RTS 0x0C /* RTS/CTS encoding */
109#define B43_TXH_EFT_RTS_CCK 0x00 /* CCK */
110#define B43_TXH_EFT_RTS_OFDM 0x04 /* OFDM */
111#define B43_TXH_EFT_RTS_EWC 0x08 /* EWC */
112#define B43_TXH_EFT_RTS_N 0x0C /* N */
113#define B43_TXH_EFT_RTSFB 0x30 /* RTS/CTS fallback encoding */
114#define B43_TXH_EFT_RTSFB_CCK 0x00 /* CCK */
115#define B43_TXH_EFT_RTSFB_OFDM 0x10 /* OFDM */
116#define B43_TXH_EFT_RTSFB_EWC 0x20 /* EWC */
117#define B43_TXH_EFT_RTSFB_N 0x30 /* N */
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118
119/* PHY TX control word */
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120#define B43_TXH_PHY_ENC 0x0003 /* Data frame encoding */
121#define B43_TXH_PHY_ENC_CCK 0x0000 /* CCK */
122#define B43_TXH_PHY_ENC_OFDM 0x0001 /* OFDM */
123#define B43_TXH_PHY_ENC_EWC 0x0002 /* EWC */
124#define B43_TXH_PHY_ENC_N 0x0003 /* N */
125#define B43_TXH_PHY_SHORTPRMBL 0x0010 /* Use short preamble */
126#define B43_TXH_PHY_ANT 0x03C0 /* Antenna selection */
127#define B43_TXH_PHY_ANT0 0x0000 /* Use antenna 0 */
128#define B43_TXH_PHY_ANT1 0x0040 /* Use antenna 1 */
129#define B43_TXH_PHY_ANT01AUTO 0x00C0 /* Use antenna 0/1 auto */
130#define B43_TXH_PHY_ANT2 0x0100 /* Use antenna 2 */
131#define B43_TXH_PHY_ANT3 0x0200 /* Use antenna 3 */
132#define B43_TXH_PHY_TXPWR 0xFC00 /* TX power */
133#define B43_TXH_PHY_TXPWR_SHIFT 10
134
135/* PHY TX control word 1 */
136#define B43_TXH_PHY1_BW 0x0007 /* Bandwidth */
137#define B43_TXH_PHY1_BW_10 0x0000 /* 10 MHz */
138#define B43_TXH_PHY1_BW_10U 0x0001 /* 10 MHz upper */
139#define B43_TXH_PHY1_BW_20 0x0002 /* 20 MHz */
140#define B43_TXH_PHY1_BW_20U 0x0003 /* 20 MHz upper */
141#define B43_TXH_PHY1_BW_40 0x0004 /* 40 MHz */
142#define B43_TXH_PHY1_BW_40DUP 0x0005 /* 50 MHz duplicate */
143#define B43_TXH_PHY1_MODE 0x0038 /* Mode */
144#define B43_TXH_PHY1_MODE_SISO 0x0000 /* SISO */
145#define B43_TXH_PHY1_MODE_CDD 0x0008 /* CDD */
146#define B43_TXH_PHY1_MODE_STBC 0x0010 /* STBC */
147#define B43_TXH_PHY1_MODE_SDM 0x0018 /* SDM */
148#define B43_TXH_PHY1_CRATE 0x0700 /* Coding rate */
149#define B43_TXH_PHY1_CRATE_1_2 0x0000 /* 1/2 */
150#define B43_TXH_PHY1_CRATE_2_3 0x0100 /* 2/3 */
151#define B43_TXH_PHY1_CRATE_3_4 0x0200 /* 3/4 */
152#define B43_TXH_PHY1_CRATE_4_5 0x0300 /* 4/5 */
153#define B43_TXH_PHY1_CRATE_5_6 0x0400 /* 5/6 */
154#define B43_TXH_PHY1_CRATE_7_8 0x0600 /* 7/8 */
155#define B43_TXH_PHY1_MODUL 0x3800 /* Modulation scheme */
156#define B43_TXH_PHY1_MODUL_BPSK 0x0000 /* BPSK */
157#define B43_TXH_PHY1_MODUL_QPSK 0x0800 /* QPSK */
158#define B43_TXH_PHY1_MODUL_QAM16 0x1000 /* QAM16 */
159#define B43_TXH_PHY1_MODUL_QAM64 0x1800 /* QAM64 */
160#define B43_TXH_PHY1_MODUL_QAM256 0x2000 /* QAM256 */
161
162
163/* r351 firmware compatibility stuff. */
164static inline
165bool b43_is_old_txhdr_format(struct b43_wldev *dev)
166{
167 return (dev->fw.rev <= 351);
168}
169
170static inline
171size_t b43_txhdr_size(struct b43_wldev *dev)
172{
173 if (b43_is_old_txhdr_format(dev))
174 return 100 + sizeof(struct b43_plcp_hdr6);
175 return 104 + sizeof(struct b43_plcp_hdr6);
176}
177
e4d6b795 178
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179int b43_generate_txhdr(struct b43_wldev *dev,
180 u8 * txhdr,
035d0243 181 struct sk_buff *skb_frag,
e6a9854b 182 struct ieee80211_tx_info *txctl, u16 cookie);
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183
184/* Transmit Status */
185struct b43_txstatus {
186 u16 cookie; /* The cookie from the txhdr */
187 u16 seq; /* Sequence number */
188 u8 phy_stat; /* PHY TX status */
189 u8 frame_count; /* Frame transmit count */
190 u8 rts_count; /* RTS transmit count */
191 u8 supp_reason; /* Suppression reason */
192 /* flags */
193 u8 pm_indicated; /* PM mode indicated to AP */
194 u8 intermediate; /* Intermediate status notification (not final) */
195 u8 for_ampdu; /* Status is for an AMPDU (afterburner) */
196 u8 acked; /* Wireless ACK received */
197};
198
199/* txstatus supp_reason values */
200enum {
201 B43_TXST_SUPP_NONE, /* Not suppressed */
202 B43_TXST_SUPP_PMQ, /* Suppressed due to PMQ entry */
203 B43_TXST_SUPP_FLUSH, /* Suppressed due to flush request */
204 B43_TXST_SUPP_PREV, /* Previous fragment failed */
205 B43_TXST_SUPP_CHAN, /* Channel mismatch */
206 B43_TXST_SUPP_LIFE, /* Lifetime expired */
207 B43_TXST_SUPP_UNDER, /* Buffer underflow */
208 B43_TXST_SUPP_ABNACK, /* Afterburner NACK */
209};
210
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211/* Receive header for v4 firmware. */
212struct b43_rxhdr_fw4 {
213 __le16 frame_len; /* Frame length */
214 PAD_BYTES(2);
215 __le16 phy_status0; /* PHY RX Status 0 */
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216 union {
217 /* RSSI for A/B/G-PHYs */
218 struct {
219 __u8 jssi; /* PHY RX Status 1: JSSI */
220 __u8 sig_qual; /* PHY RX Status 1: Signal Quality */
ba2d3587 221 } __packed;
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222
223 /* RSSI for N-PHYs */
224 struct {
225 __s8 power0; /* PHY RX Status 1: Power 0 */
226 __s8 power1; /* PHY RX Status 1: Power 1 */
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227 } __packed;
228 } __packed;
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229 __le16 phy_status2; /* PHY RX Status 2 */
230 __le16 phy_status3; /* PHY RX Status 3 */
231 __le32 mac_status; /* MAC RX status */
232 __le16 mac_time;
233 __le16 channel;
ba2d3587 234} __packed;
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235
236/* PHY RX Status 0 */
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237#define B43_RX_PHYST0_GAINCTL 0x4000 /* Gain Control */
238#define B43_RX_PHYST0_PLCPHCF 0x0200
239#define B43_RX_PHYST0_PLCPFV 0x0100
240#define B43_RX_PHYST0_SHORTPRMBL 0x0080 /* Received with Short Preamble */
e4d6b795 241#define B43_RX_PHYST0_LCRS 0x0040
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242#define B43_RX_PHYST0_ANT 0x0020 /* Antenna */
243#define B43_RX_PHYST0_UNSRATE 0x0010
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244#define B43_RX_PHYST0_CLIP 0x000C
245#define B43_RX_PHYST0_CLIP_SHIFT 2
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246#define B43_RX_PHYST0_FTYPE 0x0003 /* Frame type */
247#define B43_RX_PHYST0_CCK 0x0000 /* Frame type: CCK */
248#define B43_RX_PHYST0_OFDM 0x0001 /* Frame type: OFDM */
249#define B43_RX_PHYST0_PRE_N 0x0002 /* Pre-standard N-PHY frame */
250#define B43_RX_PHYST0_STD_N 0x0003 /* Standard N-PHY frame */
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251
252/* PHY RX Status 2 */
d987160b 253#define B43_RX_PHYST2_LNAG 0xC000 /* LNA Gain */
e4d6b795 254#define B43_RX_PHYST2_LNAG_SHIFT 14
d987160b 255#define B43_RX_PHYST2_PNAG 0x3C00 /* PNA Gain */
e4d6b795 256#define B43_RX_PHYST2_PNAG_SHIFT 10
d987160b 257#define B43_RX_PHYST2_FOFF 0x03FF /* F offset */
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258
259/* PHY RX Status 3 */
d987160b 260#define B43_RX_PHYST3_DIGG 0x1800 /* DIG Gain */
e4d6b795 261#define B43_RX_PHYST3_DIGG_SHIFT 11
d987160b 262#define B43_RX_PHYST3_TRSTATE 0x0400 /* TR state */
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263
264/* MAC RX Status */
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265#define B43_RX_MAC_RXST_VALID 0x01000000 /* PHY RXST valid */
266#define B43_RX_MAC_TKIP_MICERR 0x00100000 /* TKIP MIC error */
267#define B43_RX_MAC_TKIP_MICATT 0x00080000 /* TKIP MIC attempted */
268#define B43_RX_MAC_AGGTYPE 0x00060000 /* Aggregation type */
269#define B43_RX_MAC_AGGTYPE_SHIFT 17
270#define B43_RX_MAC_AMSDU 0x00010000 /* A-MSDU mask */
271#define B43_RX_MAC_BEACONSENT 0x00008000 /* Beacon sent flag */
272#define B43_RX_MAC_KEYIDX 0x000007E0 /* Key index */
273#define B43_RX_MAC_KEYIDX_SHIFT 5
274#define B43_RX_MAC_DECERR 0x00000010 /* Decrypt error */
275#define B43_RX_MAC_DEC 0x00000008 /* Decryption attempted */
276#define B43_RX_MAC_PADDING 0x00000004 /* Pad bytes present */
277#define B43_RX_MAC_RESP 0x00000002 /* Response frame transmitted */
278#define B43_RX_MAC_FCSERR 0x00000001 /* FCS error */
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279
280/* RX channel */
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281#define B43_RX_CHAN_40MHZ 0x1000 /* 40 Mhz channel width */
282#define B43_RX_CHAN_5GHZ 0x0800 /* 5 Ghz band */
283#define B43_RX_CHAN_ID 0x07F8 /* Channel ID */
284#define B43_RX_CHAN_ID_SHIFT 3
285#define B43_RX_CHAN_PHYTYPE 0x0007 /* PHY type */
286
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287
288u8 b43_plcp_get_ratecode_cck(const u8 bitrate);
289u8 b43_plcp_get_ratecode_ofdm(const u8 bitrate);
290
291void b43_generate_plcp_hdr(struct b43_plcp_hdr4 *plcp,
292 const u16 octets, const u8 bitrate);
293
294void b43_rx(struct b43_wldev *dev, struct sk_buff *skb, const void *_rxhdr);
295
296void b43_handle_txstatus(struct b43_wldev *dev,
297 const struct b43_txstatus *status);
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298bool b43_fill_txstatus_report(struct b43_wldev *dev,
299 struct ieee80211_tx_info *report,
5100d5ac 300 const struct b43_txstatus *status);
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301
302void b43_tx_suspend(struct b43_wldev *dev);
303void b43_tx_resume(struct b43_wldev *dev);
304
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305
306/* Helper functions for converting the key-table index from "firmware-format"
307 * to "raw-format" and back. The firmware API changed for this at some revision.
308 * We need to account for that here. */
309static inline int b43_new_kidx_api(struct b43_wldev *dev)
310{
311 /* FIXME: Not sure the change was at rev 351 */
312 return (dev->fw.rev >= 351);
313}
314static inline u8 b43_kidx_to_fw(struct b43_wldev *dev, u8 raw_kidx)
315{
316 u8 firmware_kidx;
317 if (b43_new_kidx_api(dev)) {
318 firmware_kidx = raw_kidx;
319 } else {
320 if (raw_kidx >= 4) /* Is per STA key? */
321 firmware_kidx = raw_kidx - 4;
322 else
323 firmware_kidx = raw_kidx; /* TX default key */
324 }
325 return firmware_kidx;
326}
327static inline u8 b43_kidx_to_raw(struct b43_wldev *dev, u8 firmware_kidx)
328{
329 u8 raw_kidx;
330 if (b43_new_kidx_api(dev))
331 raw_kidx = firmware_kidx;
332 else
333 raw_kidx = firmware_kidx + 4; /* RX default keys or per STA keys */
334 return raw_kidx;
335}
336
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337/* struct b43_private_tx_info - TX info private to b43.
338 * The structure is placed in (struct ieee80211_tx_info *)->rate_driver_data
339 *
340 * @bouncebuffer: DMA Bouncebuffer (if used)
341 */
342struct b43_private_tx_info {
343 void *bouncebuffer;
344};
345
346static inline struct b43_private_tx_info *
347b43_get_priv_tx_info(struct ieee80211_tx_info *info)
348{
349 BUILD_BUG_ON(sizeof(struct b43_private_tx_info) >
350 sizeof(info->rate_driver_data));
351 return (struct b43_private_tx_info *)info->rate_driver_data;
352}
353
e4d6b795 354#endif /* B43_XMIT_H_ */