blob: 1ac1dd31db68c4ea6ddb3f5594e700ae196b0494 [file] [log] [blame]
Larry Finger7f8a0fb2013-08-21 22:34:12 -05001/******************************************************************************
2 *
3 * Copyright(c) 2007 - 2011 Realtek Corporation. All rights reserved.
4 *
5 * This program is free software; you can redistribute it and/or modify it
6 * under the terms of version 2 of the GNU General Public License as
7 * published by the Free Software Foundation.
8 *
9 * This program is distributed in the hope that it will be useful, but WITHOUT
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
12 * more details.
13 *
14 * You should have received a copy of the GNU General Public License along with
15 * this program; if not, write to the Free Software Foundation, Inc.,
16 * 51 Franklin Street, Fifth Floor, Boston, MA 02110, USA
17 *
18 *
19 ******************************************************************************/
20#ifndef _RTW_XMIT_H_
21#define _RTW_XMIT_H_
22
23#include <osdep_service.h>
24#include <drv_types.h>
25
26#define MAX_XMITBUF_SZ (20480) /* 20k */
27#define NR_XMITBUFF (4)
28
29#define XMITBUF_ALIGN_SZ 4
30
31/* xmit extension buff defination */
32#define MAX_XMIT_EXTBUF_SZ (1536)
33#define NR_XMIT_EXTBUFF (32)
34
35#define MAX_NUMBLKS (1)
36
37#define XMIT_VO_QUEUE (0)
38#define XMIT_VI_QUEUE (1)
39#define XMIT_BE_QUEUE (2)
40#define XMIT_BK_QUEUE (3)
41
42#define VO_QUEUE_INX 0
43#define VI_QUEUE_INX 1
44#define BE_QUEUE_INX 2
45#define BK_QUEUE_INX 3
46#define BCN_QUEUE_INX 4
47#define MGT_QUEUE_INX 5
48#define HIGH_QUEUE_INX 6
49#define TXCMD_QUEUE_INX 7
50
51#define HW_QUEUE_ENTRY 8
52
53#define WEP_IV(pattrib_iv, dot11txpn, keyidx)\
54do {\
55 pattrib_iv[0] = dot11txpn._byte_.TSC0;\
56 pattrib_iv[1] = dot11txpn._byte_.TSC1;\
57 pattrib_iv[2] = dot11txpn._byte_.TSC2;\
58 pattrib_iv[3] = ((keyidx & 0x3)<<6);\
59 dot11txpn.val = (dot11txpn.val == 0xffffff) ? 0 : (dot11txpn.val+1);\
60} while (0)
61
62
63#define TKIP_IV(pattrib_iv, dot11txpn, keyidx)\
64do {\
65 pattrib_iv[0] = dot11txpn._byte_.TSC1;\
66 pattrib_iv[1] = (dot11txpn._byte_.TSC1 | 0x20) & 0x7f;\
67 pattrib_iv[2] = dot11txpn._byte_.TSC0;\
68 pattrib_iv[3] = BIT(5) | ((keyidx & 0x3)<<6);\
69 pattrib_iv[4] = dot11txpn._byte_.TSC2;\
70 pattrib_iv[5] = dot11txpn._byte_.TSC3;\
71 pattrib_iv[6] = dot11txpn._byte_.TSC4;\
72 pattrib_iv[7] = dot11txpn._byte_.TSC5;\
73 dot11txpn.val = dot11txpn.val == 0xffffffffffffULL ? 0 : (dot11txpn.val+1);\
74} while (0)
75
76#define AES_IV(pattrib_iv, dot11txpn, keyidx)\
77do { \
78 pattrib_iv[0] = dot11txpn._byte_.TSC0; \
79 pattrib_iv[1] = dot11txpn._byte_.TSC1; \
80 pattrib_iv[2] = 0; \
81 pattrib_iv[3] = BIT(5) | ((keyidx & 0x3)<<6); \
82 pattrib_iv[4] = dot11txpn._byte_.TSC2; \
83 pattrib_iv[5] = dot11txpn._byte_.TSC3; \
84 pattrib_iv[6] = dot11txpn._byte_.TSC4; \
85 pattrib_iv[7] = dot11txpn._byte_.TSC5; \
86 dot11txpn.val = dot11txpn.val == 0xffffffffffffULL ? 0 : (dot11txpn.val+1);\
87} while (0)
88
89#define HWXMIT_ENTRY 4
90
91#define TXDESC_SIZE 32
92
93#define PACKET_OFFSET_SZ (8)
94#define TXDESC_OFFSET (TXDESC_SIZE + PACKET_OFFSET_SZ)
95
96struct tx_desc {
97 /* DWORD 0 */
98 __le32 txdw0;
99 __le32 txdw1;
100 __le32 txdw2;
101 __le32 txdw3;
102 __le32 txdw4;
103 __le32 txdw5;
104 __le32 txdw6;
105 __le32 txdw7;
106};
107
108union txdesc {
109 struct tx_desc txdesc;
110 unsigned int value[TXDESC_SIZE>>2];
111};
112
113struct hw_xmit {
114 struct __queue *sta_queue;
115 int accnt;
116};
117
118/* reduce size */
119struct pkt_attrib {
120 u8 type;
121 u8 subtype;
122 u8 bswenc;
123 u8 dhcp_pkt;
124 u16 ether_type;
125 u16 seqnum;
126 u16 pkt_hdrlen; /* the original 802.3 pkt header len */
127 u16 hdrlen; /* the WLAN Header Len */
128 u32 pktlen; /* the original 802.3 pkt raw_data len (not include
129 * ether_hdr data) */
130 u32 last_txcmdsz;
131 u8 nr_frags;
132 u8 encrypt; /* when 0 indicate no encrypt. when non-zero,
133 * indicate the encrypt algorith */
134 u8 iv_len;
135 u8 icv_len;
136 u8 iv[18];
137 u8 icv[16];
138 u8 priority;
139 u8 ack_policy;
140 u8 mac_id;
141 u8 vcs_mode; /* virtual carrier sense method */
142 u8 dst[ETH_ALEN];
143 u8 src[ETH_ALEN];
144 u8 ta[ETH_ALEN];
145 u8 ra[ETH_ALEN];
146 u8 key_idx;
147 u8 qos_en;
148 u8 ht_en;
149 u8 raid;/* rate adpative id */
150 u8 bwmode;
151 u8 ch_offset;/* PRIME_CHNL_OFFSET */
152 u8 sgi;/* short GI */
153 u8 ampdu_en;/* tx ampdu enable */
154 u8 mdata;/* more data bit */
155 u8 pctrl;/* per packet txdesc control enable */
156 u8 triggered;/* for ap mode handling Power Saving sta */
157 u8 qsel;
158 u8 eosp;
159 u8 rate;
160 u8 intel_proxim;
161 u8 retry_ctrl;
162 struct sta_info *psta;
163};
164
165#define WLANHDR_OFFSET 64
166
167#define NULL_FRAMETAG (0x0)
168#define DATA_FRAMETAG 0x01
169#define L2_FRAMETAG 0x02
170#define MGNT_FRAMETAG 0x03
171#define AMSDU_FRAMETAG 0x04
172
173#define EII_FRAMETAG 0x05
174#define IEEE8023_FRAMETAG 0x06
175
176#define MP_FRAMETAG 0x07
177
178#define TXAGG_FRAMETAG 0x08
179
180struct submit_ctx {
181 u32 submit_time; /* */
182 u32 timeout_ms; /* <0: not synchronous, 0: wait forever, >0: up to ms waiting */
183 int status; /* status for operation */
184 struct completion done;
185};
186
187enum {
188 RTW_SCTX_SUBMITTED = -1,
189 RTW_SCTX_DONE_SUCCESS = 0,
190 RTW_SCTX_DONE_UNKNOWN,
191 RTW_SCTX_DONE_TIMEOUT,
192 RTW_SCTX_DONE_BUF_ALLOC,
193 RTW_SCTX_DONE_BUF_FREE,
194 RTW_SCTX_DONE_WRITE_PORT_ERR,
195 RTW_SCTX_DONE_TX_DESC_NA,
196 RTW_SCTX_DONE_TX_DENY,
197 RTW_SCTX_DONE_CCX_PKT_FAIL,
198 RTW_SCTX_DONE_DRV_STOP,
199 RTW_SCTX_DONE_DEV_REMOVE,
200};
201
202void rtw_sctx_init(struct submit_ctx *sctx, int timeout_ms);
203int rtw_sctx_wait(struct submit_ctx *sctx);
204void rtw_sctx_done_err(struct submit_ctx **sctx, int status);
205void rtw_sctx_done(struct submit_ctx **sctx);
206
207struct xmit_buf {
208 struct list_head list;
209 struct adapter *padapter;
210 u8 *pallocated_buf;
211 u8 *pbuf;
212 void *priv_data;
213 u16 ext_tag; /* 0: Normal xmitbuf, 1: extension xmitbuf. */
214 u16 flags;
215 u32 alloc_sz;
216 u32 len;
217 struct submit_ctx *sctx;
218 u32 ff_hwaddr;
219 struct urb *pxmit_urb[8];
220 dma_addr_t dma_transfer_addr; /* (in) dma addr for transfer_buffer */
221 u8 bpending[8];
222 int last[8];
223};
224
225struct xmit_frame {
226 struct list_head list;
227 struct pkt_attrib attrib;
228 struct sk_buff *pkt;
229 int frame_tag;
230 struct adapter *padapter;
231 u8 *buf_addr;
232 struct xmit_buf *pxmitbuf;
233
234 u8 agg_num;
235 s8 pkt_offset;
236 u8 ack_report;
237};
238
239struct tx_servq {
240 struct list_head tx_pending;
241 struct __queue sta_pending;
242 int qcnt;
243};
244
245struct sta_xmit_priv {
246 spinlock_t lock;
247 int option;
248 int apsd_setting; /* When bit mask is on, the associated edca
249 * queue supports APSD. */
250 struct tx_servq be_q; /* priority == 0,3 */
251 struct tx_servq bk_q; /* priority == 1,2 */
252 struct tx_servq vi_q; /* priority == 4,5 */
253 struct tx_servq vo_q; /* priority == 6,7 */
254 struct list_head legacy_dz;
255 struct list_head apsd;
256 u16 txseq_tid[16];
257};
258
259struct hw_txqueue {
260 volatile int head;
261 volatile int tail;
262 volatile int free_sz; /* in units of 64 bytes */
263 volatile int free_cmdsz;
264 volatile int txsz[8];
265 uint ff_hwaddr;
266 uint cmd_hwaddr;
267 int ac_tag;
268};
269
270struct agg_pkt_info {
271 u16 offset;
272 u16 pkt_len;
273};
274
275struct xmit_priv {
276 spinlock_t lock;
277 struct semaphore xmit_sema;
278 struct semaphore terminate_xmitthread_sema;
279 struct __queue be_pending;
280 struct __queue bk_pending;
281 struct __queue vi_pending;
282 struct __queue vo_pending;
283 struct __queue bm_pending;
284 u8 *pallocated_frame_buf;
285 u8 *pxmit_frame_buf;
286 uint free_xmitframe_cnt;
287 struct __queue free_xmit_queue;
288 uint frag_len;
289 struct adapter *adapter;
290 u8 vcs_setting;
291 u8 vcs;
292 u8 vcs_type;
293 u64 tx_bytes;
294 u64 tx_pkts;
295 u64 tx_drop;
296 u64 last_tx_bytes;
297 u64 last_tx_pkts;
298 struct hw_xmit *hwxmits;
299 u8 hwxmit_entry;
300 u8 wmm_para_seq[4];/* sequence for wmm ac parameter strength
301 * from large to small. it's value is 0->vo,
302 * 1->vi, 2->be, 3->bk. */
303 struct semaphore tx_retevt;/* all tx return event; */
304 u8 txirp_cnt;/* */
305 struct tasklet_struct xmit_tasklet;
306 /* per AC pending irp */
307 int beq_cnt;
308 int bkq_cnt;
309 int viq_cnt;
310 int voq_cnt;
311 struct __queue free_xmitbuf_queue;
312 struct __queue pending_xmitbuf_queue;
313 u8 *pallocated_xmitbuf;
314 u8 *pxmitbuf;
315 uint free_xmitbuf_cnt;
316 struct __queue free_xmit_extbuf_queue;
317 u8 *pallocated_xmit_extbuf;
318 u8 *pxmit_extbuf;
319 uint free_xmit_extbuf_cnt;
320 u16 nqos_ssn;
321 int ack_tx;
322 struct mutex ack_tx_mutex;
323 struct submit_ctx ack_tx_ops;
324};
325
326struct xmit_buf *rtw_alloc_xmitbuf_ext(struct xmit_priv *pxmitpriv);
327s32 rtw_free_xmitbuf_ext(struct xmit_priv *pxmitpriv,
328 struct xmit_buf *pxmitbuf);
329struct xmit_buf *rtw_alloc_xmitbuf(struct xmit_priv *pxmitpriv);
330s32 rtw_free_xmitbuf(struct xmit_priv *pxmitpriv,
331 struct xmit_buf *pxmitbuf);
332void rtw_count_tx_stats(struct adapter *padapter,
333 struct xmit_frame *pxmitframe, int sz);
334void rtw_update_protection(struct adapter *padapter, u8 *ie, uint ie_len);
335s32 rtw_make_wlanhdr(struct adapter *padapter, u8 *hdr,
336 struct pkt_attrib *pattrib);
337s32 rtw_put_snap(u8 *data, u16 h_proto);
338
339struct xmit_frame *rtw_alloc_xmitframe(struct xmit_priv *pxmitpriv);
340s32 rtw_free_xmitframe(struct xmit_priv *pxmitpriv,
341 struct xmit_frame *pxmitframe);
342void rtw_free_xmitframe_queue(struct xmit_priv *pxmitpriv,
343 struct __queue *pframequeue);
344struct tx_servq *rtw_get_sta_pending(struct adapter *padapter,
345 struct sta_info *psta, int up, u8 *ac);
346s32 rtw_xmitframe_enqueue(struct adapter *padapter,
347 struct xmit_frame *pxmitframe);
348struct xmit_frame *rtw_dequeue_xframe(struct xmit_priv *pxmitpriv,
349 struct hw_xmit *phwxmit_i, int entry);
350
351s32 rtw_xmit_classifier(struct adapter *padapter,
352 struct xmit_frame *pxmitframe);
353u32 rtw_calculate_wlan_pkt_size_by_attribue(struct pkt_attrib *pattrib);
354#define rtw_wlan_pkt_size(f) rtw_calculate_wlan_pkt_size_by_attribue(&f->attrib)
355s32 rtw_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt,
356 struct xmit_frame *pxmitframe);
357s32 _rtw_init_hw_txqueue(struct hw_txqueue *phw_txqueue, u8 ac_tag);
358void _rtw_init_sta_xmit_priv(struct sta_xmit_priv *psta_xmitpriv);
359s32 rtw_txframes_pending(struct adapter *padapter);
360s32 rtw_txframes_sta_ac_pending(struct adapter *padapter,
361 struct pkt_attrib *pattrib);
362void rtw_init_hwxmits(struct hw_xmit *phwxmit, int entry);
363s32 _rtw_init_xmit_priv(struct xmit_priv *pxmitpriv, struct adapter *padapter);
364void _rtw_free_xmit_priv(struct xmit_priv *pxmitpriv);
365void rtw_alloc_hwxmits(struct adapter *padapter);
366void rtw_free_hwxmits(struct adapter *padapter);
367s32 rtw_xmit(struct adapter *padapter, struct sk_buff **pkt);
368
369#if defined(CONFIG_88EU_AP_MODE)
370int xmitframe_enqueue_for_sleeping_sta(struct adapter *padapter, struct xmit_frame *pxmitframe);
371void stop_sta_xmit(struct adapter *padapter, struct sta_info *psta);
372void wakeup_sta_to_xmit(struct adapter *padapter, struct sta_info *psta);
373void xmit_delivery_enabled_frames(struct adapter *padapter, struct sta_info *psta);
374#endif
375
376u8 qos_acm(u8 acm_mask, u8 priority);
377u32 rtw_get_ff_hwaddr(struct xmit_frame *pxmitframe);
378int rtw_ack_tx_wait(struct xmit_priv *pxmitpriv, u32 timeout_ms);
379void rtw_ack_tx_done(struct xmit_priv *pxmitpriv, int status);
380
381/* include after declaring struct xmit_buf, in order to avoid warning */
382#include <xmit_osdep.h>
383
384#endif /* _RTL871X_XMIT_H_ */