if_urtwn.c revision 1.71.2.3 1 1.71.2.3 martin /* $NetBSD: if_urtwn.c,v 1.71.2.3 2020/04/24 17:28:21 martin Exp $ */
2 1.37 christos /* $OpenBSD: if_urtwn.c,v 1.42 2015/02/10 23:25:46 mpi Exp $ */
3 1.1 nonaka
4 1.1 nonaka /*-
5 1.1 nonaka * Copyright (c) 2010 Damien Bergamini <damien.bergamini (at) free.fr>
6 1.32 nonaka * Copyright (c) 2014 Kevin Lo <kevlo (at) FreeBSD.org>
7 1.49 nat * Copyright (c) 2016 Nathanial Sloss <nathanialsloss (at) yahoo.com.au>
8 1.1 nonaka *
9 1.1 nonaka * Permission to use, copy, modify, and distribute this software for any
10 1.1 nonaka * purpose with or without fee is hereby granted, provided that the above
11 1.1 nonaka * copyright notice and this permission notice appear in all copies.
12 1.1 nonaka *
13 1.1 nonaka * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
14 1.1 nonaka * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
15 1.1 nonaka * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
16 1.1 nonaka * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
17 1.1 nonaka * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
18 1.1 nonaka * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
19 1.1 nonaka * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
20 1.1 nonaka */
21 1.1 nonaka
22 1.8 christos /*-
23 1.49 nat * Driver for Realtek RTL8188CE-VAU/RTL8188CUS/RTL8188EU/RTL8188RU/RTL8192CU
24 1.49 nat * RTL8192EU.
25 1.1 nonaka */
26 1.1 nonaka
27 1.1 nonaka #include <sys/cdefs.h>
28 1.71.2.3 martin __KERNEL_RCSID(0, "$NetBSD: if_urtwn.c,v 1.71.2.3 2020/04/24 17:28:21 martin Exp $");
29 1.11 jmcneill
30 1.11 jmcneill #ifdef _KERNEL_OPT
31 1.11 jmcneill #include "opt_inet.h"
32 1.51 skrll #include "opt_usb.h"
33 1.11 jmcneill #endif
34 1.1 nonaka
35 1.1 nonaka #include <sys/param.h>
36 1.1 nonaka #include <sys/sockio.h>
37 1.1 nonaka #include <sys/sysctl.h>
38 1.1 nonaka #include <sys/mbuf.h>
39 1.1 nonaka #include <sys/kernel.h>
40 1.1 nonaka #include <sys/socket.h>
41 1.1 nonaka #include <sys/systm.h>
42 1.1 nonaka #include <sys/module.h>
43 1.1 nonaka #include <sys/conf.h>
44 1.1 nonaka #include <sys/device.h>
45 1.70 msaitoh #include <sys/rndsource.h>
46 1.1 nonaka
47 1.1 nonaka #include <sys/bus.h>
48 1.1 nonaka #include <machine/endian.h>
49 1.1 nonaka #include <sys/intr.h>
50 1.1 nonaka
51 1.1 nonaka #include <net/bpf.h>
52 1.1 nonaka #include <net/if.h>
53 1.1 nonaka #include <net/if_arp.h>
54 1.1 nonaka #include <net/if_dl.h>
55 1.1 nonaka #include <net/if_ether.h>
56 1.1 nonaka #include <net/if_media.h>
57 1.1 nonaka #include <net/if_types.h>
58 1.1 nonaka
59 1.1 nonaka #include <netinet/in.h>
60 1.1 nonaka #include <netinet/in_systm.h>
61 1.1 nonaka #include <netinet/in_var.h>
62 1.1 nonaka #include <netinet/ip.h>
63 1.11 jmcneill #include <netinet/if_inarp.h>
64 1.1 nonaka
65 1.1 nonaka #include <net80211/ieee80211_netbsd.h>
66 1.1 nonaka #include <net80211/ieee80211_var.h>
67 1.1 nonaka #include <net80211/ieee80211_radiotap.h>
68 1.1 nonaka
69 1.1 nonaka #include <dev/firmload.h>
70 1.1 nonaka
71 1.1 nonaka #include <dev/usb/usb.h>
72 1.1 nonaka #include <dev/usb/usbdi.h>
73 1.1 nonaka #include <dev/usb/usbdivar.h>
74 1.1 nonaka #include <dev/usb/usbdi_util.h>
75 1.1 nonaka #include <dev/usb/usbdevs.h>
76 1.1 nonaka
77 1.60 thorpej #include <dev/ic/rtwnreg.h>
78 1.60 thorpej #include <dev/ic/rtwn_data.h>
79 1.1 nonaka #include <dev/usb/if_urtwnreg.h>
80 1.1 nonaka #include <dev/usb/if_urtwnvar.h>
81 1.1 nonaka
82 1.12 christos /*
83 1.12 christos * The sc_write_mtx locking is to prevent sequences of writes from
84 1.12 christos * being intermingled with each other. I don't know if this is really
85 1.12 christos * needed. I have added it just to be on the safe side.
86 1.12 christos */
87 1.12 christos
88 1.1 nonaka #ifdef URTWN_DEBUG
89 1.1 nonaka #define DBG_INIT __BIT(0)
90 1.1 nonaka #define DBG_FN __BIT(1)
91 1.1 nonaka #define DBG_TX __BIT(2)
92 1.1 nonaka #define DBG_RX __BIT(3)
93 1.1 nonaka #define DBG_STM __BIT(4)
94 1.1 nonaka #define DBG_RF __BIT(5)
95 1.1 nonaka #define DBG_REG __BIT(6)
96 1.1 nonaka #define DBG_ALL 0xffffffffU
97 1.10 jmcneill u_int urtwn_debug = 0;
98 1.1 nonaka #define DPRINTFN(n, s) \
99 1.1 nonaka do { if (urtwn_debug & (n)) printf s; } while (/*CONSTCOND*/0)
100 1.1 nonaka #else
101 1.1 nonaka #define DPRINTFN(n, s)
102 1.1 nonaka #endif
103 1.1 nonaka
104 1.38 christos #define URTWN_DEV(v,p) { { USB_VENDOR_##v, USB_PRODUCT_##v##_##p }, 0 }
105 1.32 nonaka #define URTWN_RTL8188E_DEV(v,p) \
106 1.38 christos { { USB_VENDOR_##v, USB_PRODUCT_##v##_##p }, FLAG_RTL8188E }
107 1.49 nat #define URTWN_RTL8192EU_DEV(v,p) \
108 1.49 nat { { USB_VENDOR_##v, USB_PRODUCT_##v##_##p }, FLAG_RTL8192E }
109 1.32 nonaka static const struct urtwn_dev {
110 1.32 nonaka struct usb_devno dev;
111 1.32 nonaka uint32_t flags;
112 1.32 nonaka #define FLAG_RTL8188E __BIT(0)
113 1.49 nat #define FLAG_RTL8192E __BIT(1)
114 1.32 nonaka } urtwn_devs[] = {
115 1.32 nonaka URTWN_DEV(ABOCOM, RTL8188CU_1),
116 1.32 nonaka URTWN_DEV(ABOCOM, RTL8188CU_2),
117 1.32 nonaka URTWN_DEV(ABOCOM, RTL8192CU),
118 1.32 nonaka URTWN_DEV(ASUSTEK, RTL8192CU),
119 1.37 christos URTWN_DEV(ASUSTEK, RTL8192CU_3),
120 1.33 nonaka URTWN_DEV(ASUSTEK, USBN10NANO),
121 1.37 christos URTWN_DEV(ASUSTEK, RTL8192CU_3),
122 1.32 nonaka URTWN_DEV(AZUREWAVE, RTL8188CE_1),
123 1.32 nonaka URTWN_DEV(AZUREWAVE, RTL8188CE_2),
124 1.32 nonaka URTWN_DEV(AZUREWAVE, RTL8188CU),
125 1.37 christos URTWN_DEV(BELKIN, F7D2102),
126 1.32 nonaka URTWN_DEV(BELKIN, RTL8188CU),
127 1.37 christos URTWN_DEV(BELKIN, RTL8188CUS),
128 1.32 nonaka URTWN_DEV(BELKIN, RTL8192CU),
129 1.37 christos URTWN_DEV(BELKIN, RTL8192CU_1),
130 1.37 christos URTWN_DEV(BELKIN, RTL8192CU_2),
131 1.32 nonaka URTWN_DEV(CHICONY, RTL8188CUS_1),
132 1.32 nonaka URTWN_DEV(CHICONY, RTL8188CUS_2),
133 1.32 nonaka URTWN_DEV(CHICONY, RTL8188CUS_3),
134 1.32 nonaka URTWN_DEV(CHICONY, RTL8188CUS_4),
135 1.32 nonaka URTWN_DEV(CHICONY, RTL8188CUS_5),
136 1.37 christos URTWN_DEV(CHICONY, RTL8188CUS_6),
137 1.37 christos URTWN_DEV(COMPARE, RTL8192CU),
138 1.32 nonaka URTWN_DEV(COREGA, RTL8192CU),
139 1.37 christos URTWN_DEV(DLINK, DWA131B),
140 1.32 nonaka URTWN_DEV(DLINK, RTL8188CU),
141 1.32 nonaka URTWN_DEV(DLINK, RTL8192CU_1),
142 1.32 nonaka URTWN_DEV(DLINK, RTL8192CU_2),
143 1.32 nonaka URTWN_DEV(DLINK, RTL8192CU_3),
144 1.37 christos URTWN_DEV(DLINK, RTL8192CU_4),
145 1.32 nonaka URTWN_DEV(EDIMAX, RTL8188CU),
146 1.32 nonaka URTWN_DEV(EDIMAX, RTL8192CU),
147 1.32 nonaka URTWN_DEV(FEIXUN, RTL8188CU),
148 1.32 nonaka URTWN_DEV(FEIXUN, RTL8192CU),
149 1.32 nonaka URTWN_DEV(GUILLEMOT, HWNUP150),
150 1.37 christos URTWN_DEV(GUILLEMOT, RTL8192CU),
151 1.32 nonaka URTWN_DEV(HAWKING, RTL8192CU),
152 1.37 christos URTWN_DEV(HAWKING, RTL8192CU_2),
153 1.32 nonaka URTWN_DEV(HP3, RTL8188CU),
154 1.37 christos URTWN_DEV(IODATA, WNG150UM),
155 1.37 christos URTWN_DEV(IODATA, RTL8192CU),
156 1.32 nonaka URTWN_DEV(NETGEAR, WNA1000M),
157 1.32 nonaka URTWN_DEV(NETGEAR, RTL8192CU),
158 1.32 nonaka URTWN_DEV(NETGEAR4, RTL8188CU),
159 1.32 nonaka URTWN_DEV(NOVATECH, RTL8188CU),
160 1.32 nonaka URTWN_DEV(PLANEX2, RTL8188CU_1),
161 1.32 nonaka URTWN_DEV(PLANEX2, RTL8188CU_2),
162 1.32 nonaka URTWN_DEV(PLANEX2, RTL8192CU),
163 1.32 nonaka URTWN_DEV(PLANEX2, RTL8188CU_3),
164 1.32 nonaka URTWN_DEV(PLANEX2, RTL8188CU_4),
165 1.32 nonaka URTWN_DEV(PLANEX2, RTL8188CUS),
166 1.32 nonaka URTWN_DEV(REALTEK, RTL8188CE_0),
167 1.32 nonaka URTWN_DEV(REALTEK, RTL8188CE_1),
168 1.32 nonaka URTWN_DEV(REALTEK, RTL8188CTV),
169 1.32 nonaka URTWN_DEV(REALTEK, RTL8188CU_0),
170 1.32 nonaka URTWN_DEV(REALTEK, RTL8188CU_1),
171 1.32 nonaka URTWN_DEV(REALTEK, RTL8188CU_2),
172 1.39 leot URTWN_DEV(REALTEK, RTL8188CU_3),
173 1.32 nonaka URTWN_DEV(REALTEK, RTL8188CU_COMBO),
174 1.32 nonaka URTWN_DEV(REALTEK, RTL8188CUS),
175 1.32 nonaka URTWN_DEV(REALTEK, RTL8188RU),
176 1.32 nonaka URTWN_DEV(REALTEK, RTL8188RU_2),
177 1.37 christos URTWN_DEV(REALTEK, RTL8188RU_3),
178 1.32 nonaka URTWN_DEV(REALTEK, RTL8191CU),
179 1.32 nonaka URTWN_DEV(REALTEK, RTL8192CE),
180 1.32 nonaka URTWN_DEV(REALTEK, RTL8192CU),
181 1.32 nonaka URTWN_DEV(SITECOMEU, RTL8188CU),
182 1.32 nonaka URTWN_DEV(SITECOMEU, RTL8188CU_2),
183 1.32 nonaka URTWN_DEV(SITECOMEU, RTL8192CU),
184 1.32 nonaka URTWN_DEV(SITECOMEU, RTL8192CUR2),
185 1.37 christos URTWN_DEV(TPLINK, RTL8192CU),
186 1.32 nonaka URTWN_DEV(TRENDNET, RTL8188CU),
187 1.32 nonaka URTWN_DEV(TRENDNET, RTL8192CU),
188 1.32 nonaka URTWN_DEV(ZYXEL, RTL8192CU),
189 1.32 nonaka
190 1.32 nonaka /* URTWN_RTL8188E */
191 1.46 christos URTWN_RTL8188E_DEV(DLINK, DWA125D1),
192 1.34 nonaka URTWN_RTL8188E_DEV(ELECOM, WDC150SU2M),
193 1.32 nonaka URTWN_RTL8188E_DEV(REALTEK, RTL8188ETV),
194 1.32 nonaka URTWN_RTL8188E_DEV(REALTEK, RTL8188EU),
195 1.50 mlelstv URTWN_RTL8188E_DEV(ABOCOM, RTL8188EU),
196 1.53 jnemeth URTWN_RTL8188E_DEV(TPLINK, RTL8188EU),
197 1.71.2.3 martin URTWN_RTL8188E_DEV(DLINK, DWA121B1),
198 1.52 skrll
199 1.49 nat /* URTWN_RTL8192EU */
200 1.67 tih URTWN_RTL8192EU_DEV(DLINK, DWA131E),
201 1.49 nat URTWN_RTL8192EU_DEV(REALTEK, RTL8192EU),
202 1.54 khorben URTWN_RTL8192EU_DEV(TPLINK, RTL8192EU),
203 1.1 nonaka };
204 1.32 nonaka #undef URTWN_DEV
205 1.32 nonaka #undef URTWN_RTL8188E_DEV
206 1.49 nat #undef URTWN_RTL8192EU_DEV
207 1.1 nonaka
208 1.1 nonaka static int urtwn_match(device_t, cfdata_t, void *);
209 1.1 nonaka static void urtwn_attach(device_t, device_t, void *);
210 1.1 nonaka static int urtwn_detach(device_t, int);
211 1.1 nonaka static int urtwn_activate(device_t, enum devact);
212 1.1 nonaka
213 1.1 nonaka CFATTACH_DECL_NEW(urtwn, sizeof(struct urtwn_softc), urtwn_match,
214 1.1 nonaka urtwn_attach, urtwn_detach, urtwn_activate);
215 1.1 nonaka
216 1.1 nonaka static int urtwn_open_pipes(struct urtwn_softc *);
217 1.1 nonaka static void urtwn_close_pipes(struct urtwn_softc *);
218 1.1 nonaka static int urtwn_alloc_rx_list(struct urtwn_softc *);
219 1.1 nonaka static void urtwn_free_rx_list(struct urtwn_softc *);
220 1.1 nonaka static int urtwn_alloc_tx_list(struct urtwn_softc *);
221 1.1 nonaka static void urtwn_free_tx_list(struct urtwn_softc *);
222 1.1 nonaka static void urtwn_task(void *);
223 1.1 nonaka static void urtwn_do_async(struct urtwn_softc *,
224 1.1 nonaka void (*)(struct urtwn_softc *, void *), void *, int);
225 1.1 nonaka static void urtwn_wait_async(struct urtwn_softc *);
226 1.1 nonaka static int urtwn_write_region_1(struct urtwn_softc *, uint16_t, uint8_t *,
227 1.1 nonaka int);
228 1.12 christos static void urtwn_write_1(struct urtwn_softc *, uint16_t, uint8_t);
229 1.12 christos static void urtwn_write_2(struct urtwn_softc *, uint16_t, uint16_t);
230 1.12 christos static void urtwn_write_4(struct urtwn_softc *, uint16_t, uint32_t);
231 1.12 christos static int urtwn_write_region(struct urtwn_softc *, uint16_t, uint8_t *,
232 1.12 christos int);
233 1.1 nonaka static int urtwn_read_region_1(struct urtwn_softc *, uint16_t, uint8_t *,
234 1.1 nonaka int);
235 1.12 christos static uint8_t urtwn_read_1(struct urtwn_softc *, uint16_t);
236 1.12 christos static uint16_t urtwn_read_2(struct urtwn_softc *, uint16_t);
237 1.12 christos static uint32_t urtwn_read_4(struct urtwn_softc *, uint16_t);
238 1.1 nonaka static int urtwn_fw_cmd(struct urtwn_softc *, uint8_t, const void *, int);
239 1.32 nonaka static void urtwn_r92c_rf_write(struct urtwn_softc *, int, uint8_t,
240 1.32 nonaka uint32_t);
241 1.32 nonaka static void urtwn_r88e_rf_write(struct urtwn_softc *, int, uint8_t,
242 1.32 nonaka uint32_t);
243 1.49 nat static void urtwn_r92e_rf_write(struct urtwn_softc *, int, uint8_t,
244 1.49 nat uint32_t);
245 1.1 nonaka static uint32_t urtwn_rf_read(struct urtwn_softc *, int, uint8_t);
246 1.1 nonaka static int urtwn_llt_write(struct urtwn_softc *, uint32_t, uint32_t);
247 1.1 nonaka static uint8_t urtwn_efuse_read_1(struct urtwn_softc *, uint16_t);
248 1.1 nonaka static void urtwn_efuse_read(struct urtwn_softc *);
249 1.32 nonaka static void urtwn_efuse_switch_power(struct urtwn_softc *);
250 1.1 nonaka static int urtwn_read_chipid(struct urtwn_softc *);
251 1.12 christos #ifdef URTWN_DEBUG
252 1.12 christos static void urtwn_dump_rom(struct urtwn_softc *, struct r92c_rom *);
253 1.12 christos #endif
254 1.1 nonaka static void urtwn_read_rom(struct urtwn_softc *);
255 1.32 nonaka static void urtwn_r88e_read_rom(struct urtwn_softc *);
256 1.1 nonaka static int urtwn_media_change(struct ifnet *);
257 1.1 nonaka static int urtwn_ra_init(struct urtwn_softc *);
258 1.12 christos static int urtwn_get_nettype(struct urtwn_softc *);
259 1.12 christos static void urtwn_set_nettype0_msr(struct urtwn_softc *, uint8_t);
260 1.1 nonaka static void urtwn_tsf_sync_enable(struct urtwn_softc *);
261 1.1 nonaka static void urtwn_set_led(struct urtwn_softc *, int, int);
262 1.1 nonaka static void urtwn_calib_to(void *);
263 1.1 nonaka static void urtwn_calib_to_cb(struct urtwn_softc *, void *);
264 1.1 nonaka static void urtwn_next_scan(void *);
265 1.1 nonaka static int urtwn_newstate(struct ieee80211com *, enum ieee80211_state,
266 1.1 nonaka int);
267 1.1 nonaka static void urtwn_newstate_cb(struct urtwn_softc *, void *);
268 1.1 nonaka static int urtwn_wme_update(struct ieee80211com *);
269 1.1 nonaka static void urtwn_wme_update_cb(struct urtwn_softc *, void *);
270 1.1 nonaka static void urtwn_update_avgrssi(struct urtwn_softc *, int, int8_t);
271 1.1 nonaka static int8_t urtwn_get_rssi(struct urtwn_softc *, int, void *);
272 1.32 nonaka static int8_t urtwn_r88e_get_rssi(struct urtwn_softc *, int, void *);
273 1.1 nonaka static void urtwn_rx_frame(struct urtwn_softc *, uint8_t *, int);
274 1.42 skrll static void urtwn_rxeof(struct usbd_xfer *, void *, usbd_status);
275 1.42 skrll static void urtwn_txeof(struct usbd_xfer *, void *, usbd_status);
276 1.1 nonaka static int urtwn_tx(struct urtwn_softc *, struct mbuf *,
277 1.12 christos struct ieee80211_node *, struct urtwn_tx_data *);
278 1.42 skrll static struct urtwn_tx_data *
279 1.42 skrll urtwn_get_tx_data(struct urtwn_softc *, size_t);
280 1.1 nonaka static void urtwn_start(struct ifnet *);
281 1.1 nonaka static void urtwn_watchdog(struct ifnet *);
282 1.1 nonaka static int urtwn_ioctl(struct ifnet *, u_long, void *);
283 1.32 nonaka static int urtwn_r92c_power_on(struct urtwn_softc *);
284 1.49 nat static int urtwn_r92e_power_on(struct urtwn_softc *);
285 1.32 nonaka static int urtwn_r88e_power_on(struct urtwn_softc *);
286 1.1 nonaka static int urtwn_llt_init(struct urtwn_softc *);
287 1.1 nonaka static void urtwn_fw_reset(struct urtwn_softc *);
288 1.32 nonaka static void urtwn_r88e_fw_reset(struct urtwn_softc *);
289 1.1 nonaka static int urtwn_fw_loadpage(struct urtwn_softc *, int, uint8_t *, int);
290 1.1 nonaka static int urtwn_load_firmware(struct urtwn_softc *);
291 1.32 nonaka static int urtwn_r92c_dma_init(struct urtwn_softc *);
292 1.32 nonaka static int urtwn_r88e_dma_init(struct urtwn_softc *);
293 1.1 nonaka static void urtwn_mac_init(struct urtwn_softc *);
294 1.1 nonaka static void urtwn_bb_init(struct urtwn_softc *);
295 1.1 nonaka static void urtwn_rf_init(struct urtwn_softc *);
296 1.1 nonaka static void urtwn_cam_init(struct urtwn_softc *);
297 1.1 nonaka static void urtwn_pa_bias_init(struct urtwn_softc *);
298 1.1 nonaka static void urtwn_rxfilter_init(struct urtwn_softc *);
299 1.1 nonaka static void urtwn_edca_init(struct urtwn_softc *);
300 1.1 nonaka static void urtwn_write_txpower(struct urtwn_softc *, int, uint16_t[]);
301 1.22 christos static void urtwn_get_txpower(struct urtwn_softc *, size_t, u_int, u_int,
302 1.1 nonaka uint16_t[]);
303 1.32 nonaka static void urtwn_r88e_get_txpower(struct urtwn_softc *, size_t, u_int,
304 1.32 nonaka u_int, uint16_t[]);
305 1.1 nonaka static void urtwn_set_txpower(struct urtwn_softc *, u_int, u_int);
306 1.1 nonaka static void urtwn_set_chan(struct urtwn_softc *, struct ieee80211_channel *,
307 1.1 nonaka u_int);
308 1.1 nonaka static void urtwn_iq_calib(struct urtwn_softc *, bool);
309 1.1 nonaka static void urtwn_lc_calib(struct urtwn_softc *);
310 1.1 nonaka static void urtwn_temp_calib(struct urtwn_softc *);
311 1.1 nonaka static int urtwn_init(struct ifnet *);
312 1.1 nonaka static void urtwn_stop(struct ifnet *, int);
313 1.16 jmcneill static int urtwn_reset(struct ifnet *);
314 1.1 nonaka static void urtwn_chip_stop(struct urtwn_softc *);
315 1.26 christos static void urtwn_newassoc(struct ieee80211_node *, int);
316 1.49 nat static void urtwn_delay_ms(struct urtwn_softc *, int ms);
317 1.1 nonaka
318 1.1 nonaka /* Aliases. */
319 1.1 nonaka #define urtwn_bb_write urtwn_write_4
320 1.1 nonaka #define urtwn_bb_read urtwn_read_4
321 1.1 nonaka
322 1.32 nonaka #define urtwn_lookup(d,v,p) ((const struct urtwn_dev *)usb_lookup(d,v,p))
323 1.32 nonaka
324 1.48 nat static const uint16_t addaReg[] = {
325 1.48 nat R92C_FPGA0_XCD_SWITCHCTL, R92C_BLUETOOTH, R92C_RX_WAIT_CCA,
326 1.48 nat R92C_TX_CCK_RFON, R92C_TX_CCK_BBON, R92C_TX_OFDM_RFON,
327 1.48 nat R92C_TX_OFDM_BBON, R92C_TX_TO_RX, R92C_TX_TO_TX, R92C_RX_CCK,
328 1.48 nat R92C_RX_OFDM, R92C_RX_WAIT_RIFS, R92C_RX_TO_RX,
329 1.48 nat R92C_STANDBY, R92C_SLEEP, R92C_PMPD_ANAEN
330 1.48 nat };
331 1.48 nat
332 1.1 nonaka static int
333 1.1 nonaka urtwn_match(device_t parent, cfdata_t match, void *aux)
334 1.1 nonaka {
335 1.1 nonaka struct usb_attach_arg *uaa = aux;
336 1.1 nonaka
337 1.49 nat return urtwn_lookup(urtwn_devs, uaa->uaa_vendor, uaa->uaa_product) !=
338 1.49 nat NULL ? UMATCH_VENDOR_PRODUCT : UMATCH_NONE;
339 1.1 nonaka }
340 1.1 nonaka
341 1.1 nonaka static void
342 1.1 nonaka urtwn_attach(device_t parent, device_t self, void *aux)
343 1.1 nonaka {
344 1.1 nonaka struct urtwn_softc *sc = device_private(self);
345 1.1 nonaka struct ieee80211com *ic = &sc->sc_ic;
346 1.1 nonaka struct ifnet *ifp = &sc->sc_if;
347 1.1 nonaka struct usb_attach_arg *uaa = aux;
348 1.1 nonaka char *devinfop;
349 1.32 nonaka const struct urtwn_dev *dev;
350 1.47 nat usb_device_request_t req;
351 1.22 christos size_t i;
352 1.22 christos int error;
353 1.1 nonaka
354 1.1 nonaka sc->sc_dev = self;
355 1.42 skrll sc->sc_udev = uaa->uaa_device;
356 1.1 nonaka
357 1.32 nonaka sc->chip = 0;
358 1.42 skrll dev = urtwn_lookup(urtwn_devs, uaa->uaa_vendor, uaa->uaa_product);
359 1.32 nonaka if (dev != NULL && ISSET(dev->flags, FLAG_RTL8188E))
360 1.32 nonaka SET(sc->chip, URTWN_CHIP_88E);
361 1.49 nat if (dev != NULL && ISSET(dev->flags, FLAG_RTL8192E))
362 1.49 nat SET(sc->chip, URTWN_CHIP_92EU);
363 1.32 nonaka
364 1.1 nonaka aprint_naive("\n");
365 1.1 nonaka aprint_normal("\n");
366 1.1 nonaka
367 1.12 christos DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
368 1.12 christos
369 1.1 nonaka devinfop = usbd_devinfo_alloc(sc->sc_udev, 0);
370 1.1 nonaka aprint_normal_dev(self, "%s\n", devinfop);
371 1.1 nonaka usbd_devinfo_free(devinfop);
372 1.1 nonaka
373 1.47 nat req.bmRequestType = UT_WRITE_DEVICE;
374 1.47 nat req.bRequest = UR_SET_FEATURE;
375 1.47 nat USETW(req.wValue, UF_DEVICE_REMOTE_WAKEUP);
376 1.47 nat USETW(req.wIndex, UHF_PORT_SUSPEND);
377 1.47 nat USETW(req.wLength, 0);
378 1.47 nat
379 1.47 nat (void) usbd_do_request(sc->sc_udev, &req, 0);
380 1.47 nat
381 1.1 nonaka mutex_init(&sc->sc_task_mtx, MUTEX_DEFAULT, IPL_NET);
382 1.12 christos mutex_init(&sc->sc_tx_mtx, MUTEX_DEFAULT, IPL_NONE);
383 1.49 nat mutex_init(&sc->sc_rx_mtx, MUTEX_DEFAULT, IPL_NONE);
384 1.1 nonaka mutex_init(&sc->sc_fwcmd_mtx, MUTEX_DEFAULT, IPL_NONE);
385 1.12 christos mutex_init(&sc->sc_write_mtx, MUTEX_DEFAULT, IPL_NONE);
386 1.1 nonaka
387 1.18 jmcneill usb_init_task(&sc->sc_task, urtwn_task, sc, 0);
388 1.1 nonaka
389 1.1 nonaka callout_init(&sc->sc_scan_to, 0);
390 1.1 nonaka callout_setfunc(&sc->sc_scan_to, urtwn_next_scan, sc);
391 1.1 nonaka callout_init(&sc->sc_calib_to, 0);
392 1.1 nonaka callout_setfunc(&sc->sc_calib_to, urtwn_calib_to, sc);
393 1.1 nonaka
394 1.71.2.1 martin rnd_attach_source(&sc->rnd_source, device_xname(sc->sc_dev),
395 1.71.2.1 martin RND_TYPE_NET, RND_FLAG_DEFAULT);
396 1.71.2.1 martin
397 1.6 skrll error = usbd_set_config_no(sc->sc_udev, 1, 0);
398 1.6 skrll if (error != 0) {
399 1.6 skrll aprint_error_dev(self, "failed to set configuration"
400 1.6 skrll ", err=%s\n", usbd_errstr(error));
401 1.1 nonaka goto fail;
402 1.1 nonaka }
403 1.1 nonaka
404 1.1 nonaka /* Get the first interface handle. */
405 1.1 nonaka error = usbd_device2interface_handle(sc->sc_udev, 0, &sc->sc_iface);
406 1.1 nonaka if (error != 0) {
407 1.1 nonaka aprint_error_dev(self, "could not get interface handle\n");
408 1.1 nonaka goto fail;
409 1.1 nonaka }
410 1.1 nonaka
411 1.1 nonaka error = urtwn_read_chipid(sc);
412 1.1 nonaka if (error != 0) {
413 1.1 nonaka aprint_error_dev(self, "unsupported test chip\n");
414 1.1 nonaka goto fail;
415 1.1 nonaka }
416 1.1 nonaka
417 1.1 nonaka /* Determine number of Tx/Rx chains. */
418 1.1 nonaka if (sc->chip & URTWN_CHIP_92C) {
419 1.1 nonaka sc->ntxchains = (sc->chip & URTWN_CHIP_92C_1T2R) ? 1 : 2;
420 1.1 nonaka sc->nrxchains = 2;
421 1.49 nat } else if (sc->chip & URTWN_CHIP_92EU) {
422 1.49 nat sc->ntxchains = 2;
423 1.49 nat sc->nrxchains = 2;
424 1.1 nonaka } else {
425 1.1 nonaka sc->ntxchains = 1;
426 1.1 nonaka sc->nrxchains = 1;
427 1.1 nonaka }
428 1.32 nonaka
429 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_88E) ||
430 1.49 nat ISSET(sc->chip, URTWN_CHIP_92EU))
431 1.32 nonaka urtwn_r88e_read_rom(sc);
432 1.32 nonaka else
433 1.32 nonaka urtwn_read_rom(sc);
434 1.1 nonaka
435 1.22 christos aprint_normal_dev(self, "MAC/BB RTL%s, RF 6052 %zdT%zdR, address %s\n",
436 1.49 nat (sc->chip & URTWN_CHIP_92EU) ? "8192EU" :
437 1.1 nonaka (sc->chip & URTWN_CHIP_92C) ? "8192CU" :
438 1.32 nonaka (sc->chip & URTWN_CHIP_88E) ? "8188EU" :
439 1.1 nonaka (sc->board_type == R92C_BOARD_TYPE_HIGHPA) ? "8188RU" :
440 1.1 nonaka (sc->board_type == R92C_BOARD_TYPE_MINICARD) ? "8188CE-VAU" :
441 1.1 nonaka "8188CUS", sc->ntxchains, sc->nrxchains,
442 1.1 nonaka ether_sprintf(ic->ic_myaddr));
443 1.1 nonaka
444 1.1 nonaka error = urtwn_open_pipes(sc);
445 1.1 nonaka if (error != 0) {
446 1.1 nonaka aprint_error_dev(sc->sc_dev, "could not open pipes\n");
447 1.1 nonaka goto fail;
448 1.1 nonaka }
449 1.1 nonaka aprint_normal_dev(self, "%d rx pipe%s, %d tx pipe%s\n",
450 1.1 nonaka sc->rx_npipe, sc->rx_npipe > 1 ? "s" : "",
451 1.1 nonaka sc->tx_npipe, sc->tx_npipe > 1 ? "s" : "");
452 1.1 nonaka
453 1.1 nonaka /*
454 1.1 nonaka * Setup the 802.11 device.
455 1.1 nonaka */
456 1.1 nonaka ic->ic_ifp = ifp;
457 1.1 nonaka ic->ic_phytype = IEEE80211_T_OFDM; /* Not only, but not used. */
458 1.1 nonaka ic->ic_opmode = IEEE80211_M_STA; /* Default to BSS mode. */
459 1.1 nonaka ic->ic_state = IEEE80211_S_INIT;
460 1.1 nonaka
461 1.1 nonaka /* Set device capabilities. */
462 1.1 nonaka ic->ic_caps =
463 1.1 nonaka IEEE80211_C_MONITOR | /* Monitor mode supported. */
464 1.26 christos IEEE80211_C_IBSS | /* IBSS mode supported */
465 1.26 christos IEEE80211_C_HOSTAP | /* HostAp mode supported */
466 1.1 nonaka IEEE80211_C_SHPREAMBLE | /* Short preamble supported. */
467 1.1 nonaka IEEE80211_C_SHSLOT | /* Short slot time supported. */
468 1.1 nonaka IEEE80211_C_WME | /* 802.11e */
469 1.1 nonaka IEEE80211_C_WPA; /* 802.11i */
470 1.1 nonaka
471 1.1 nonaka /* Set supported .11b and .11g rates. */
472 1.1 nonaka ic->ic_sup_rates[IEEE80211_MODE_11B] = ieee80211_std_rateset_11b;
473 1.1 nonaka ic->ic_sup_rates[IEEE80211_MODE_11G] = ieee80211_std_rateset_11g;
474 1.1 nonaka
475 1.1 nonaka /* Set supported .11b and .11g channels (1 through 14). */
476 1.1 nonaka for (i = 1; i <= 14; i++) {
477 1.1 nonaka ic->ic_channels[i].ic_freq =
478 1.1 nonaka ieee80211_ieee2mhz(i, IEEE80211_CHAN_2GHZ);
479 1.1 nonaka ic->ic_channels[i].ic_flags =
480 1.1 nonaka IEEE80211_CHAN_CCK | IEEE80211_CHAN_OFDM |
481 1.1 nonaka IEEE80211_CHAN_DYN | IEEE80211_CHAN_2GHZ;
482 1.1 nonaka }
483 1.1 nonaka
484 1.1 nonaka ifp->if_softc = sc;
485 1.1 nonaka ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
486 1.1 nonaka ifp->if_init = urtwn_init;
487 1.1 nonaka ifp->if_ioctl = urtwn_ioctl;
488 1.1 nonaka ifp->if_start = urtwn_start;
489 1.1 nonaka ifp->if_watchdog = urtwn_watchdog;
490 1.1 nonaka IFQ_SET_READY(&ifp->if_snd);
491 1.1 nonaka memcpy(ifp->if_xname, device_xname(sc->sc_dev), IFNAMSIZ);
492 1.1 nonaka
493 1.65 mlelstv if_initialize(ifp);
494 1.1 nonaka ieee80211_ifattach(ic);
495 1.16 jmcneill
496 1.1 nonaka /* override default methods */
497 1.26 christos ic->ic_newassoc = urtwn_newassoc;
498 1.16 jmcneill ic->ic_reset = urtwn_reset;
499 1.1 nonaka ic->ic_wme.wme_update = urtwn_wme_update;
500 1.1 nonaka
501 1.1 nonaka /* Override state transition machine. */
502 1.1 nonaka sc->sc_newstate = ic->ic_newstate;
503 1.1 nonaka ic->ic_newstate = urtwn_newstate;
504 1.1 nonaka ieee80211_media_init(ic, urtwn_media_change, ieee80211_media_status);
505 1.1 nonaka
506 1.1 nonaka bpf_attach2(ifp, DLT_IEEE802_11_RADIO,
507 1.1 nonaka sizeof(struct ieee80211_frame) + IEEE80211_RADIOTAP_HDRLEN,
508 1.1 nonaka &sc->sc_drvbpf);
509 1.1 nonaka
510 1.1 nonaka sc->sc_rxtap_len = sizeof(sc->sc_rxtapu);
511 1.1 nonaka sc->sc_rxtap.wr_ihdr.it_len = htole16(sc->sc_rxtap_len);
512 1.1 nonaka sc->sc_rxtap.wr_ihdr.it_present = htole32(URTWN_RX_RADIOTAP_PRESENT);
513 1.1 nonaka
514 1.1 nonaka sc->sc_txtap_len = sizeof(sc->sc_txtapu);
515 1.1 nonaka sc->sc_txtap.wt_ihdr.it_len = htole16(sc->sc_txtap_len);
516 1.1 nonaka sc->sc_txtap.wt_ihdr.it_present = htole32(URTWN_TX_RADIOTAP_PRESENT);
517 1.1 nonaka
518 1.65 mlelstv ifp->if_percpuq = if_percpuq_create(ifp);
519 1.65 mlelstv if_register(ifp);
520 1.65 mlelstv
521 1.1 nonaka ieee80211_announce(ic);
522 1.1 nonaka
523 1.1 nonaka usbd_add_drv_event(USB_EVENT_DRIVER_ATTACH, sc->sc_udev, sc->sc_dev);
524 1.1 nonaka
525 1.30 mrg if (!pmf_device_register(self, NULL, NULL))
526 1.30 mrg aprint_error_dev(self, "couldn't establish power handler\n");
527 1.30 mrg
528 1.1 nonaka SET(sc->sc_flags, URTWN_FLAG_ATTACHED);
529 1.1 nonaka return;
530 1.1 nonaka
531 1.1 nonaka fail:
532 1.1 nonaka sc->sc_dying = 1;
533 1.1 nonaka aprint_error_dev(self, "attach failed\n");
534 1.1 nonaka }
535 1.1 nonaka
536 1.1 nonaka static int
537 1.1 nonaka urtwn_detach(device_t self, int flags)
538 1.1 nonaka {
539 1.1 nonaka struct urtwn_softc *sc = device_private(self);
540 1.1 nonaka struct ifnet *ifp = &sc->sc_if;
541 1.1 nonaka int s;
542 1.1 nonaka
543 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
544 1.1 nonaka
545 1.31 christos pmf_device_deregister(self);
546 1.31 christos
547 1.1 nonaka s = splusb();
548 1.1 nonaka
549 1.1 nonaka sc->sc_dying = 1;
550 1.1 nonaka
551 1.61 riastrad callout_halt(&sc->sc_scan_to, NULL);
552 1.61 riastrad callout_halt(&sc->sc_calib_to, NULL);
553 1.1 nonaka
554 1.1 nonaka if (ISSET(sc->sc_flags, URTWN_FLAG_ATTACHED)) {
555 1.1 nonaka urtwn_stop(ifp, 0);
556 1.63 riastrad usb_rem_task_wait(sc->sc_udev, &sc->sc_task, USB_TASKQ_DRIVER,
557 1.63 riastrad NULL);
558 1.1 nonaka
559 1.1 nonaka ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
560 1.1 nonaka bpf_detach(ifp);
561 1.1 nonaka ieee80211_ifdetach(&sc->sc_ic);
562 1.1 nonaka if_detach(ifp);
563 1.1 nonaka
564 1.42 skrll /* Close Tx/Rx pipes. Abort done by urtwn_stop. */
565 1.1 nonaka urtwn_close_pipes(sc);
566 1.1 nonaka }
567 1.1 nonaka
568 1.1 nonaka splx(s);
569 1.1 nonaka
570 1.1 nonaka usbd_add_drv_event(USB_EVENT_DRIVER_DETACH, sc->sc_udev, sc->sc_dev);
571 1.1 nonaka
572 1.71.2.1 martin rnd_detach_source(&sc->rnd_source);
573 1.71.2.1 martin
574 1.1 nonaka callout_destroy(&sc->sc_scan_to);
575 1.1 nonaka callout_destroy(&sc->sc_calib_to);
576 1.12 christos
577 1.12 christos mutex_destroy(&sc->sc_write_mtx);
578 1.1 nonaka mutex_destroy(&sc->sc_fwcmd_mtx);
579 1.1 nonaka mutex_destroy(&sc->sc_tx_mtx);
580 1.49 nat mutex_destroy(&sc->sc_rx_mtx);
581 1.1 nonaka mutex_destroy(&sc->sc_task_mtx);
582 1.1 nonaka
583 1.42 skrll return 0;
584 1.1 nonaka }
585 1.1 nonaka
586 1.1 nonaka static int
587 1.1 nonaka urtwn_activate(device_t self, enum devact act)
588 1.1 nonaka {
589 1.1 nonaka struct urtwn_softc *sc = device_private(self);
590 1.1 nonaka
591 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
592 1.1 nonaka
593 1.1 nonaka switch (act) {
594 1.1 nonaka case DVACT_DEACTIVATE:
595 1.1 nonaka if_deactivate(sc->sc_ic.ic_ifp);
596 1.42 skrll return 0;
597 1.1 nonaka default:
598 1.42 skrll return EOPNOTSUPP;
599 1.1 nonaka }
600 1.1 nonaka }
601 1.1 nonaka
602 1.1 nonaka static int
603 1.1 nonaka urtwn_open_pipes(struct urtwn_softc *sc)
604 1.1 nonaka {
605 1.1 nonaka /* Bulk-out endpoints addresses (from highest to lowest prio). */
606 1.55 skrll static uint8_t epaddr[R92C_MAX_EPOUT];
607 1.55 skrll static uint8_t rxepaddr[R92C_MAX_EPIN];
608 1.1 nonaka usb_interface_descriptor_t *id;
609 1.1 nonaka usb_endpoint_descriptor_t *ed;
610 1.49 nat size_t i, ntx = 0, nrx = 0;
611 1.22 christos int error;
612 1.1 nonaka
613 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
614 1.1 nonaka
615 1.1 nonaka /* Determine the number of bulk-out pipes. */
616 1.1 nonaka id = usbd_get_interface_descriptor(sc->sc_iface);
617 1.1 nonaka for (i = 0; i < id->bNumEndpoints; i++) {
618 1.1 nonaka ed = usbd_interface2endpoint_descriptor(sc->sc_iface, i);
619 1.55 skrll if (ed == NULL || UE_GET_XFERTYPE(ed->bmAttributes) != UE_BULK) {
620 1.55 skrll continue;
621 1.55 skrll }
622 1.55 skrll if (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_OUT) {
623 1.55 skrll if (ntx < sizeof(epaddr))
624 1.55 skrll epaddr[ntx] = ed->bEndpointAddress;
625 1.1 nonaka ntx++;
626 1.49 nat }
627 1.55 skrll if (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_IN) {
628 1.55 skrll if (nrx < sizeof(rxepaddr))
629 1.55 skrll rxepaddr[nrx] = ed->bEndpointAddress;
630 1.49 nat nrx++;
631 1.49 nat }
632 1.1 nonaka }
633 1.55 skrll if (nrx == 0 || nrx > R92C_MAX_EPIN) {
634 1.55 skrll aprint_error_dev(sc->sc_dev,
635 1.55 skrll "%zd: invalid number of Rx bulk pipes\n", nrx);
636 1.55 skrll return EIO;
637 1.55 skrll }
638 1.1 nonaka if (ntx == 0 || ntx > R92C_MAX_EPOUT) {
639 1.1 nonaka aprint_error_dev(sc->sc_dev,
640 1.22 christos "%zd: invalid number of Tx bulk pipes\n", ntx);
641 1.42 skrll return EIO;
642 1.1 nonaka }
643 1.55 skrll DPRINTFN(DBG_INIT, ("%s: %s: found %zd/%zd bulk-in/out pipes\n",
644 1.55 skrll device_xname(sc->sc_dev), __func__, nrx, ntx));
645 1.49 nat sc->rx_npipe = nrx;
646 1.1 nonaka sc->tx_npipe = ntx;
647 1.1 nonaka
648 1.1 nonaka /* Open bulk-in pipe at address 0x81. */
649 1.49 nat for (i = 0; i < nrx; i++) {
650 1.49 nat error = usbd_open_pipe(sc->sc_iface, rxepaddr[i],
651 1.49 nat USBD_EXCLUSIVE_USE, &sc->rx_pipe[i]);
652 1.49 nat if (error != 0) {
653 1.49 nat aprint_error_dev(sc->sc_dev,
654 1.49 nat "could not open Rx bulk pipe 0x%02x: %d\n",
655 1.49 nat rxepaddr[i], error);
656 1.49 nat goto fail;
657 1.49 nat }
658 1.1 nonaka }
659 1.1 nonaka
660 1.1 nonaka /* Open bulk-out pipes (up to 3). */
661 1.1 nonaka for (i = 0; i < ntx; i++) {
662 1.1 nonaka error = usbd_open_pipe(sc->sc_iface, epaddr[i],
663 1.1 nonaka USBD_EXCLUSIVE_USE, &sc->tx_pipe[i]);
664 1.1 nonaka if (error != 0) {
665 1.1 nonaka aprint_error_dev(sc->sc_dev,
666 1.12 christos "could not open Tx bulk pipe 0x%02x: %d\n",
667 1.12 christos epaddr[i], error);
668 1.1 nonaka goto fail;
669 1.1 nonaka }
670 1.1 nonaka }
671 1.1 nonaka
672 1.1 nonaka /* Map 802.11 access categories to USB pipes. */
673 1.1 nonaka sc->ac2idx[WME_AC_BK] =
674 1.1 nonaka sc->ac2idx[WME_AC_BE] = (ntx == 3) ? 2 : ((ntx == 2) ? 1 : 0);
675 1.1 nonaka sc->ac2idx[WME_AC_VI] = (ntx == 3) ? 1 : 0;
676 1.1 nonaka sc->ac2idx[WME_AC_VO] = 0; /* Always use highest prio. */
677 1.1 nonaka
678 1.1 nonaka fail:
679 1.1 nonaka if (error != 0)
680 1.1 nonaka urtwn_close_pipes(sc);
681 1.42 skrll return error;
682 1.1 nonaka }
683 1.1 nonaka
684 1.1 nonaka static void
685 1.1 nonaka urtwn_close_pipes(struct urtwn_softc *sc)
686 1.1 nonaka {
687 1.42 skrll struct usbd_pipe *pipe;
688 1.22 christos size_t i;
689 1.1 nonaka
690 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
691 1.1 nonaka
692 1.49 nat /* Close Rx pipes. */
693 1.22 christos CTASSERT(sizeof(pipe) == sizeof(void *));
694 1.49 nat for (i = 0; i < sc->rx_npipe; i++) {
695 1.49 nat pipe = atomic_swap_ptr(&sc->rx_pipe[i], NULL);
696 1.49 nat if (pipe != NULL) {
697 1.49 nat usbd_close_pipe(pipe);
698 1.49 nat }
699 1.1 nonaka }
700 1.49 nat
701 1.1 nonaka /* Close Tx pipes. */
702 1.49 nat for (i = 0; i < sc->tx_npipe; i++) {
703 1.22 christos pipe = atomic_swap_ptr(&sc->tx_pipe[i], NULL);
704 1.22 christos if (pipe != NULL) {
705 1.22 christos usbd_close_pipe(pipe);
706 1.22 christos }
707 1.1 nonaka }
708 1.1 nonaka }
709 1.1 nonaka
710 1.1 nonaka static int
711 1.1 nonaka urtwn_alloc_rx_list(struct urtwn_softc *sc)
712 1.1 nonaka {
713 1.1 nonaka struct urtwn_rx_data *data;
714 1.22 christos size_t i;
715 1.22 christos int error = 0;
716 1.1 nonaka
717 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
718 1.1 nonaka
719 1.49 nat for (size_t j = 0; j < sc->rx_npipe; j++) {
720 1.49 nat TAILQ_INIT(&sc->rx_free_list[j]);
721 1.49 nat for (i = 0; i < URTWN_RX_LIST_COUNT; i++) {
722 1.49 nat data = &sc->rx_data[j][i];
723 1.1 nonaka
724 1.49 nat data->sc = sc; /* Backpointer for callbacks. */
725 1.1 nonaka
726 1.49 nat error = usbd_create_xfer(sc->rx_pipe[j], URTWN_RXBUFSZ,
727 1.56 skrll 0, 0, &data->xfer);
728 1.49 nat if (error) {
729 1.49 nat aprint_error_dev(sc->sc_dev,
730 1.49 nat "could not allocate xfer\n");
731 1.49 nat break;
732 1.49 nat }
733 1.49 nat
734 1.49 nat data->buf = usbd_get_buffer(data->xfer);
735 1.49 nat TAILQ_INSERT_TAIL(&sc->rx_free_list[j], data, next);
736 1.1 nonaka }
737 1.1 nonaka }
738 1.1 nonaka if (error != 0)
739 1.1 nonaka urtwn_free_rx_list(sc);
740 1.42 skrll return error;
741 1.1 nonaka }
742 1.1 nonaka
743 1.1 nonaka static void
744 1.1 nonaka urtwn_free_rx_list(struct urtwn_softc *sc)
745 1.1 nonaka {
746 1.42 skrll struct usbd_xfer *xfer;
747 1.22 christos size_t i;
748 1.1 nonaka
749 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
750 1.1 nonaka
751 1.1 nonaka /* NB: Caller must abort pipe first. */
752 1.49 nat for (size_t j = 0; j < sc->rx_npipe; j++) {
753 1.49 nat for (i = 0; i < URTWN_RX_LIST_COUNT; i++) {
754 1.49 nat CTASSERT(sizeof(xfer) == sizeof(void *));
755 1.49 nat xfer = atomic_swap_ptr(&sc->rx_data[j][i].xfer, NULL);
756 1.49 nat if (xfer != NULL)
757 1.49 nat usbd_destroy_xfer(xfer);
758 1.49 nat }
759 1.1 nonaka }
760 1.1 nonaka }
761 1.1 nonaka
762 1.1 nonaka static int
763 1.1 nonaka urtwn_alloc_tx_list(struct urtwn_softc *sc)
764 1.1 nonaka {
765 1.1 nonaka struct urtwn_tx_data *data;
766 1.22 christos size_t i;
767 1.22 christos int error = 0;
768 1.1 nonaka
769 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
770 1.1 nonaka
771 1.12 christos mutex_enter(&sc->sc_tx_mtx);
772 1.42 skrll for (size_t j = 0; j < sc->tx_npipe; j++) {
773 1.42 skrll TAILQ_INIT(&sc->tx_free_list[j]);
774 1.42 skrll for (i = 0; i < URTWN_TX_LIST_COUNT; i++) {
775 1.42 skrll data = &sc->tx_data[j][i];
776 1.42 skrll
777 1.42 skrll data->sc = sc; /* Backpointer for callbacks. */
778 1.42 skrll data->pidx = j;
779 1.42 skrll
780 1.42 skrll error = usbd_create_xfer(sc->tx_pipe[j],
781 1.42 skrll URTWN_TXBUFSZ, USBD_FORCE_SHORT_XFER, 0,
782 1.42 skrll &data->xfer);
783 1.42 skrll if (error) {
784 1.42 skrll aprint_error_dev(sc->sc_dev,
785 1.42 skrll "could not allocate xfer\n");
786 1.42 skrll goto fail;
787 1.42 skrll }
788 1.1 nonaka
789 1.42 skrll data->buf = usbd_get_buffer(data->xfer);
790 1.1 nonaka
791 1.42 skrll /* Append this Tx buffer to our free list. */
792 1.42 skrll TAILQ_INSERT_TAIL(&sc->tx_free_list[j], data, next);
793 1.1 nonaka }
794 1.1 nonaka }
795 1.12 christos mutex_exit(&sc->sc_tx_mtx);
796 1.42 skrll return 0;
797 1.1 nonaka
798 1.1 nonaka fail:
799 1.1 nonaka urtwn_free_tx_list(sc);
800 1.12 christos mutex_exit(&sc->sc_tx_mtx);
801 1.42 skrll return error;
802 1.1 nonaka }
803 1.1 nonaka
804 1.1 nonaka static void
805 1.1 nonaka urtwn_free_tx_list(struct urtwn_softc *sc)
806 1.1 nonaka {
807 1.42 skrll struct usbd_xfer *xfer;
808 1.22 christos size_t i;
809 1.1 nonaka
810 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
811 1.1 nonaka
812 1.1 nonaka /* NB: Caller must abort pipe first. */
813 1.42 skrll for (size_t j = 0; j < sc->tx_npipe; j++) {
814 1.42 skrll for (i = 0; i < URTWN_TX_LIST_COUNT; i++) {
815 1.42 skrll CTASSERT(sizeof(xfer) == sizeof(void *));
816 1.42 skrll xfer = atomic_swap_ptr(&sc->tx_data[j][i].xfer, NULL);
817 1.42 skrll if (xfer != NULL)
818 1.42 skrll usbd_destroy_xfer(xfer);
819 1.42 skrll }
820 1.1 nonaka }
821 1.1 nonaka }
822 1.1 nonaka
823 1.68 christos static int
824 1.68 christos urtwn_tx_beacon(struct urtwn_softc *sc, struct mbuf *m,
825 1.68 christos struct ieee80211_node *ni)
826 1.68 christos {
827 1.68 christos struct urtwn_tx_data *data =
828 1.68 christos urtwn_get_tx_data(sc, sc->ac2idx[WME_AC_VO]);
829 1.68 christos return urtwn_tx(sc, m, ni, data);
830 1.68 christos }
831 1.68 christos
832 1.1 nonaka static void
833 1.1 nonaka urtwn_task(void *arg)
834 1.1 nonaka {
835 1.1 nonaka struct urtwn_softc *sc = arg;
836 1.68 christos struct ieee80211com *ic = &sc->sc_ic;
837 1.1 nonaka struct urtwn_host_cmd_ring *ring = &sc->cmdq;
838 1.1 nonaka struct urtwn_host_cmd *cmd;
839 1.1 nonaka int s;
840 1.1 nonaka
841 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
842 1.68 christos if (ic->ic_state == IEEE80211_S_RUN &&
843 1.68 christos (ic->ic_opmode == IEEE80211_M_HOSTAP ||
844 1.68 christos ic->ic_opmode == IEEE80211_M_IBSS)) {
845 1.68 christos
846 1.68 christos struct mbuf *m = ieee80211_beacon_alloc(ic, ic->ic_bss,
847 1.68 christos &sc->sc_bo);
848 1.68 christos if (m == NULL) {
849 1.68 christos aprint_error_dev(sc->sc_dev,
850 1.68 christos "could not allocate beacon");
851 1.68 christos }
852 1.68 christos
853 1.68 christos if (urtwn_tx_beacon(sc, m, ic->ic_bss) != 0) {
854 1.68 christos m_freem(m);
855 1.68 christos aprint_error_dev(sc->sc_dev, "could not send beacon");
856 1.68 christos }
857 1.68 christos
858 1.68 christos /* beacon is no longer needed */
859 1.68 christos m_freem(m);
860 1.68 christos }
861 1.1 nonaka
862 1.1 nonaka /* Process host commands. */
863 1.1 nonaka s = splusb();
864 1.1 nonaka mutex_spin_enter(&sc->sc_task_mtx);
865 1.1 nonaka while (ring->next != ring->cur) {
866 1.1 nonaka cmd = &ring->cmd[ring->next];
867 1.1 nonaka mutex_spin_exit(&sc->sc_task_mtx);
868 1.1 nonaka splx(s);
869 1.16 jmcneill /* Invoke callback with kernel lock held. */
870 1.1 nonaka cmd->cb(sc, cmd->data);
871 1.1 nonaka s = splusb();
872 1.1 nonaka mutex_spin_enter(&sc->sc_task_mtx);
873 1.1 nonaka ring->queued--;
874 1.1 nonaka ring->next = (ring->next + 1) % URTWN_HOST_CMD_RING_COUNT;
875 1.1 nonaka }
876 1.1 nonaka mutex_spin_exit(&sc->sc_task_mtx);
877 1.1 nonaka wakeup(&sc->cmdq);
878 1.1 nonaka splx(s);
879 1.1 nonaka }
880 1.1 nonaka
881 1.1 nonaka static void
882 1.1 nonaka urtwn_do_async(struct urtwn_softc *sc, void (*cb)(struct urtwn_softc *, void *),
883 1.1 nonaka void *arg, int len)
884 1.1 nonaka {
885 1.1 nonaka struct urtwn_host_cmd_ring *ring = &sc->cmdq;
886 1.1 nonaka struct urtwn_host_cmd *cmd;
887 1.1 nonaka int s;
888 1.1 nonaka
889 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s: cb=%p, arg=%p, len=%d\n",
890 1.1 nonaka device_xname(sc->sc_dev), __func__, cb, arg, len));
891 1.1 nonaka
892 1.1 nonaka s = splusb();
893 1.1 nonaka mutex_spin_enter(&sc->sc_task_mtx);
894 1.1 nonaka cmd = &ring->cmd[ring->cur];
895 1.1 nonaka cmd->cb = cb;
896 1.1 nonaka KASSERT(len <= sizeof(cmd->data));
897 1.1 nonaka memcpy(cmd->data, arg, len);
898 1.1 nonaka ring->cur = (ring->cur + 1) % URTWN_HOST_CMD_RING_COUNT;
899 1.1 nonaka
900 1.1 nonaka /* If there is no pending command already, schedule a task. */
901 1.1 nonaka if (!sc->sc_dying && ++ring->queued == 1) {
902 1.1 nonaka mutex_spin_exit(&sc->sc_task_mtx);
903 1.1 nonaka usb_add_task(sc->sc_udev, &sc->sc_task, USB_TASKQ_DRIVER);
904 1.1 nonaka } else
905 1.1 nonaka mutex_spin_exit(&sc->sc_task_mtx);
906 1.1 nonaka splx(s);
907 1.1 nonaka }
908 1.1 nonaka
909 1.1 nonaka static void
910 1.1 nonaka urtwn_wait_async(struct urtwn_softc *sc)
911 1.1 nonaka {
912 1.1 nonaka
913 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
914 1.1 nonaka
915 1.1 nonaka /* Wait for all queued asynchronous commands to complete. */
916 1.1 nonaka while (sc->cmdq.queued > 0)
917 1.1 nonaka tsleep(&sc->cmdq, 0, "endtask", 0);
918 1.1 nonaka }
919 1.1 nonaka
920 1.1 nonaka static int
921 1.1 nonaka urtwn_write_region_1(struct urtwn_softc *sc, uint16_t addr, uint8_t *buf,
922 1.1 nonaka int len)
923 1.1 nonaka {
924 1.1 nonaka usb_device_request_t req;
925 1.1 nonaka usbd_status error;
926 1.1 nonaka
927 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
928 1.12 christos
929 1.1 nonaka req.bmRequestType = UT_WRITE_VENDOR_DEVICE;
930 1.1 nonaka req.bRequest = R92C_REQ_REGS;
931 1.1 nonaka USETW(req.wValue, addr);
932 1.1 nonaka USETW(req.wIndex, 0);
933 1.1 nonaka USETW(req.wLength, len);
934 1.1 nonaka error = usbd_do_request(sc->sc_udev, &req, buf);
935 1.1 nonaka if (error != USBD_NORMAL_COMPLETION) {
936 1.1 nonaka DPRINTFN(DBG_REG, ("%s: %s: error=%d: addr=0x%x, len=%d\n",
937 1.1 nonaka device_xname(sc->sc_dev), __func__, error, addr, len));
938 1.1 nonaka }
939 1.42 skrll return error;
940 1.1 nonaka }
941 1.1 nonaka
942 1.1 nonaka static void
943 1.1 nonaka urtwn_write_1(struct urtwn_softc *sc, uint16_t addr, uint8_t val)
944 1.1 nonaka {
945 1.1 nonaka
946 1.1 nonaka DPRINTFN(DBG_REG, ("%s: %s: addr=0x%x, val=0x%x\n",
947 1.1 nonaka device_xname(sc->sc_dev), __func__, addr, val));
948 1.1 nonaka
949 1.1 nonaka urtwn_write_region_1(sc, addr, &val, 1);
950 1.1 nonaka }
951 1.1 nonaka
952 1.1 nonaka static void
953 1.1 nonaka urtwn_write_2(struct urtwn_softc *sc, uint16_t addr, uint16_t val)
954 1.1 nonaka {
955 1.1 nonaka uint8_t buf[2];
956 1.1 nonaka
957 1.1 nonaka DPRINTFN(DBG_REG, ("%s: %s: addr=0x%x, val=0x%x\n",
958 1.1 nonaka device_xname(sc->sc_dev), __func__, addr, val));
959 1.1 nonaka
960 1.1 nonaka buf[0] = (uint8_t)val;
961 1.1 nonaka buf[1] = (uint8_t)(val >> 8);
962 1.1 nonaka urtwn_write_region_1(sc, addr, buf, 2);
963 1.1 nonaka }
964 1.1 nonaka
965 1.1 nonaka static void
966 1.1 nonaka urtwn_write_4(struct urtwn_softc *sc, uint16_t addr, uint32_t val)
967 1.1 nonaka {
968 1.1 nonaka uint8_t buf[4];
969 1.1 nonaka
970 1.1 nonaka DPRINTFN(DBG_REG, ("%s: %s: addr=0x%x, val=0x%x\n",
971 1.1 nonaka device_xname(sc->sc_dev), __func__, addr, val));
972 1.1 nonaka
973 1.1 nonaka buf[0] = (uint8_t)val;
974 1.1 nonaka buf[1] = (uint8_t)(val >> 8);
975 1.1 nonaka buf[2] = (uint8_t)(val >> 16);
976 1.1 nonaka buf[3] = (uint8_t)(val >> 24);
977 1.1 nonaka urtwn_write_region_1(sc, addr, buf, 4);
978 1.1 nonaka }
979 1.1 nonaka
980 1.1 nonaka static int
981 1.1 nonaka urtwn_write_region(struct urtwn_softc *sc, uint16_t addr, uint8_t *buf, int len)
982 1.1 nonaka {
983 1.1 nonaka
984 1.1 nonaka DPRINTFN(DBG_REG, ("%s: %s: addr=0x%x, len=0x%x\n",
985 1.1 nonaka device_xname(sc->sc_dev), __func__, addr, len));
986 1.1 nonaka
987 1.1 nonaka return urtwn_write_region_1(sc, addr, buf, len);
988 1.1 nonaka }
989 1.1 nonaka
990 1.1 nonaka static int
991 1.1 nonaka urtwn_read_region_1(struct urtwn_softc *sc, uint16_t addr, uint8_t *buf,
992 1.1 nonaka int len)
993 1.1 nonaka {
994 1.1 nonaka usb_device_request_t req;
995 1.1 nonaka usbd_status error;
996 1.1 nonaka
997 1.1 nonaka req.bmRequestType = UT_READ_VENDOR_DEVICE;
998 1.1 nonaka req.bRequest = R92C_REQ_REGS;
999 1.1 nonaka USETW(req.wValue, addr);
1000 1.1 nonaka USETW(req.wIndex, 0);
1001 1.1 nonaka USETW(req.wLength, len);
1002 1.1 nonaka error = usbd_do_request(sc->sc_udev, &req, buf);
1003 1.1 nonaka if (error != USBD_NORMAL_COMPLETION) {
1004 1.1 nonaka DPRINTFN(DBG_REG, ("%s: %s: error=%d: addr=0x%x, len=%d\n",
1005 1.1 nonaka device_xname(sc->sc_dev), __func__, error, addr, len));
1006 1.1 nonaka }
1007 1.42 skrll return error;
1008 1.1 nonaka }
1009 1.1 nonaka
1010 1.1 nonaka static uint8_t
1011 1.1 nonaka urtwn_read_1(struct urtwn_softc *sc, uint16_t addr)
1012 1.1 nonaka {
1013 1.1 nonaka uint8_t val;
1014 1.1 nonaka
1015 1.1 nonaka if (urtwn_read_region_1(sc, addr, &val, 1) != USBD_NORMAL_COMPLETION)
1016 1.42 skrll return 0xff;
1017 1.1 nonaka
1018 1.1 nonaka DPRINTFN(DBG_REG, ("%s: %s: addr=0x%x, val=0x%x\n",
1019 1.1 nonaka device_xname(sc->sc_dev), __func__, addr, val));
1020 1.42 skrll return val;
1021 1.1 nonaka }
1022 1.1 nonaka
1023 1.1 nonaka static uint16_t
1024 1.1 nonaka urtwn_read_2(struct urtwn_softc *sc, uint16_t addr)
1025 1.1 nonaka {
1026 1.1 nonaka uint8_t buf[2];
1027 1.1 nonaka uint16_t val;
1028 1.1 nonaka
1029 1.1 nonaka if (urtwn_read_region_1(sc, addr, buf, 2) != USBD_NORMAL_COMPLETION)
1030 1.42 skrll return 0xffff;
1031 1.1 nonaka
1032 1.1 nonaka val = LE_READ_2(&buf[0]);
1033 1.1 nonaka DPRINTFN(DBG_REG, ("%s: %s: addr=0x%x, val=0x%x\n",
1034 1.1 nonaka device_xname(sc->sc_dev), __func__, addr, val));
1035 1.42 skrll return val;
1036 1.1 nonaka }
1037 1.1 nonaka
1038 1.1 nonaka static uint32_t
1039 1.1 nonaka urtwn_read_4(struct urtwn_softc *sc, uint16_t addr)
1040 1.1 nonaka {
1041 1.1 nonaka uint8_t buf[4];
1042 1.1 nonaka uint32_t val;
1043 1.1 nonaka
1044 1.1 nonaka if (urtwn_read_region_1(sc, addr, buf, 4) != USBD_NORMAL_COMPLETION)
1045 1.42 skrll return 0xffffffff;
1046 1.1 nonaka
1047 1.1 nonaka val = LE_READ_4(&buf[0]);
1048 1.1 nonaka DPRINTFN(DBG_REG, ("%s: %s: addr=0x%x, val=0x%x\n",
1049 1.1 nonaka device_xname(sc->sc_dev), __func__, addr, val));
1050 1.42 skrll return val;
1051 1.1 nonaka }
1052 1.1 nonaka
1053 1.1 nonaka static int
1054 1.1 nonaka urtwn_fw_cmd(struct urtwn_softc *sc, uint8_t id, const void *buf, int len)
1055 1.1 nonaka {
1056 1.1 nonaka struct r92c_fw_cmd cmd;
1057 1.1 nonaka uint8_t *cp;
1058 1.1 nonaka int fwcur;
1059 1.1 nonaka int ntries;
1060 1.1 nonaka
1061 1.1 nonaka DPRINTFN(DBG_REG, ("%s: %s: id=%d, buf=%p, len=%d\n",
1062 1.1 nonaka device_xname(sc->sc_dev), __func__, id, buf, len));
1063 1.1 nonaka
1064 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
1065 1.12 christos
1066 1.1 nonaka mutex_enter(&sc->sc_fwcmd_mtx);
1067 1.1 nonaka fwcur = sc->fwcur;
1068 1.1 nonaka sc->fwcur = (sc->fwcur + 1) % R92C_H2C_NBOX;
1069 1.1 nonaka mutex_exit(&sc->sc_fwcmd_mtx);
1070 1.1 nonaka
1071 1.1 nonaka /* Wait for current FW box to be empty. */
1072 1.1 nonaka for (ntries = 0; ntries < 100; ntries++) {
1073 1.1 nonaka if (!(urtwn_read_1(sc, R92C_HMETFR) & (1 << fwcur)))
1074 1.1 nonaka break;
1075 1.66 msaitoh DELAY(2000);
1076 1.1 nonaka }
1077 1.1 nonaka if (ntries == 100) {
1078 1.1 nonaka aprint_error_dev(sc->sc_dev,
1079 1.1 nonaka "could not send firmware command %d\n", id);
1080 1.42 skrll return ETIMEDOUT;
1081 1.1 nonaka }
1082 1.1 nonaka
1083 1.1 nonaka memset(&cmd, 0, sizeof(cmd));
1084 1.1 nonaka KASSERT(len <= sizeof(cmd.msg));
1085 1.1 nonaka memcpy(cmd.msg, buf, len);
1086 1.1 nonaka
1087 1.1 nonaka /* Write the first word last since that will trigger the FW. */
1088 1.1 nonaka cp = (uint8_t *)&cmd;
1089 1.49 nat cmd.id = id;
1090 1.1 nonaka if (len >= 4) {
1091 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_92EU)) {
1092 1.49 nat cmd.id |= R92C_CMD_FLAG_EXT;
1093 1.49 nat urtwn_write_region(sc, R92C_HMEBOX_EXT(fwcur),
1094 1.49 nat &cp[1], 2);
1095 1.49 nat urtwn_write_4(sc, R92C_HMEBOX(fwcur),
1096 1.49 nat cp[0] + (cp[3] << 8) + (cp[4] << 16) +
1097 1.71 msaitoh ((uint32_t)cp[5] << 24));
1098 1.49 nat } else {
1099 1.49 nat urtwn_write_region(sc, R92E_HMEBOX_EXT(fwcur),
1100 1.49 nat &cp[4], 2);
1101 1.49 nat urtwn_write_4(sc, R92C_HMEBOX(fwcur),
1102 1.49 nat cp[0] + (cp[1] << 8) + (cp[2] << 16) +
1103 1.71 msaitoh ((uint32_t)cp[3] << 24));
1104 1.49 nat }
1105 1.1 nonaka } else {
1106 1.1 nonaka urtwn_write_region(sc, R92C_HMEBOX(fwcur), cp, len);
1107 1.1 nonaka }
1108 1.1 nonaka
1109 1.42 skrll return 0;
1110 1.1 nonaka }
1111 1.1 nonaka
1112 1.32 nonaka static __inline void
1113 1.32 nonaka urtwn_rf_write(struct urtwn_softc *sc, int chain, uint8_t addr, uint32_t val)
1114 1.32 nonaka {
1115 1.32 nonaka
1116 1.32 nonaka sc->sc_rf_write(sc, chain, addr, val);
1117 1.32 nonaka }
1118 1.32 nonaka
1119 1.1 nonaka static void
1120 1.32 nonaka urtwn_r92c_rf_write(struct urtwn_softc *sc, int chain, uint8_t addr,
1121 1.32 nonaka uint32_t val)
1122 1.1 nonaka {
1123 1.1 nonaka
1124 1.1 nonaka urtwn_bb_write(sc, R92C_LSSI_PARAM(chain),
1125 1.1 nonaka SM(R92C_LSSI_PARAM_ADDR, addr) | SM(R92C_LSSI_PARAM_DATA, val));
1126 1.1 nonaka }
1127 1.1 nonaka
1128 1.32 nonaka static void
1129 1.32 nonaka urtwn_r88e_rf_write(struct urtwn_softc *sc, int chain, uint8_t addr,
1130 1.32 nonaka uint32_t val)
1131 1.32 nonaka {
1132 1.32 nonaka
1133 1.32 nonaka urtwn_bb_write(sc, R92C_LSSI_PARAM(chain),
1134 1.32 nonaka SM(R88E_LSSI_PARAM_ADDR, addr) | SM(R92C_LSSI_PARAM_DATA, val));
1135 1.32 nonaka }
1136 1.32 nonaka
1137 1.49 nat static void
1138 1.49 nat urtwn_r92e_rf_write(struct urtwn_softc *sc, int chain, uint8_t addr,
1139 1.49 nat uint32_t val)
1140 1.49 nat {
1141 1.49 nat
1142 1.49 nat urtwn_bb_write(sc, R92C_LSSI_PARAM(chain),
1143 1.49 nat SM(R88E_LSSI_PARAM_ADDR, addr) | SM(R92C_LSSI_PARAM_DATA, val));
1144 1.49 nat }
1145 1.49 nat
1146 1.1 nonaka static uint32_t
1147 1.1 nonaka urtwn_rf_read(struct urtwn_softc *sc, int chain, uint8_t addr)
1148 1.1 nonaka {
1149 1.1 nonaka uint32_t reg[R92C_MAX_CHAINS], val;
1150 1.1 nonaka
1151 1.1 nonaka reg[0] = urtwn_bb_read(sc, R92C_HSSI_PARAM2(0));
1152 1.1 nonaka if (chain != 0) {
1153 1.1 nonaka reg[chain] = urtwn_bb_read(sc, R92C_HSSI_PARAM2(chain));
1154 1.1 nonaka }
1155 1.1 nonaka
1156 1.1 nonaka urtwn_bb_write(sc, R92C_HSSI_PARAM2(0),
1157 1.1 nonaka reg[0] & ~R92C_HSSI_PARAM2_READ_EDGE);
1158 1.1 nonaka DELAY(1000);
1159 1.1 nonaka
1160 1.1 nonaka urtwn_bb_write(sc, R92C_HSSI_PARAM2(chain),
1161 1.1 nonaka RW(reg[chain], R92C_HSSI_PARAM2_READ_ADDR, addr) |
1162 1.1 nonaka R92C_HSSI_PARAM2_READ_EDGE);
1163 1.1 nonaka DELAY(1000);
1164 1.1 nonaka
1165 1.1 nonaka urtwn_bb_write(sc, R92C_HSSI_PARAM2(0),
1166 1.1 nonaka reg[0] | R92C_HSSI_PARAM2_READ_EDGE);
1167 1.1 nonaka DELAY(1000);
1168 1.1 nonaka
1169 1.1 nonaka if (urtwn_bb_read(sc, R92C_HSSI_PARAM1(chain)) & R92C_HSSI_PARAM1_PI) {
1170 1.1 nonaka val = urtwn_bb_read(sc, R92C_HSPI_READBACK(chain));
1171 1.1 nonaka } else {
1172 1.1 nonaka val = urtwn_bb_read(sc, R92C_LSSI_READBACK(chain));
1173 1.1 nonaka }
1174 1.42 skrll return MS(val, R92C_LSSI_READBACK_DATA);
1175 1.1 nonaka }
1176 1.1 nonaka
1177 1.1 nonaka static int
1178 1.1 nonaka urtwn_llt_write(struct urtwn_softc *sc, uint32_t addr, uint32_t data)
1179 1.1 nonaka {
1180 1.1 nonaka int ntries;
1181 1.1 nonaka
1182 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
1183 1.12 christos
1184 1.1 nonaka urtwn_write_4(sc, R92C_LLT_INIT,
1185 1.1 nonaka SM(R92C_LLT_INIT_OP, R92C_LLT_INIT_OP_WRITE) |
1186 1.1 nonaka SM(R92C_LLT_INIT_ADDR, addr) |
1187 1.1 nonaka SM(R92C_LLT_INIT_DATA, data));
1188 1.1 nonaka /* Wait for write operation to complete. */
1189 1.1 nonaka for (ntries = 0; ntries < 20; ntries++) {
1190 1.1 nonaka if (MS(urtwn_read_4(sc, R92C_LLT_INIT), R92C_LLT_INIT_OP) ==
1191 1.1 nonaka R92C_LLT_INIT_OP_NO_ACTIVE) {
1192 1.1 nonaka /* Done */
1193 1.42 skrll return 0;
1194 1.1 nonaka }
1195 1.1 nonaka DELAY(5);
1196 1.1 nonaka }
1197 1.42 skrll return ETIMEDOUT;
1198 1.1 nonaka }
1199 1.1 nonaka
1200 1.1 nonaka static uint8_t
1201 1.1 nonaka urtwn_efuse_read_1(struct urtwn_softc *sc, uint16_t addr)
1202 1.1 nonaka {
1203 1.1 nonaka uint32_t reg;
1204 1.1 nonaka int ntries;
1205 1.1 nonaka
1206 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
1207 1.12 christos
1208 1.1 nonaka reg = urtwn_read_4(sc, R92C_EFUSE_CTRL);
1209 1.1 nonaka reg = RW(reg, R92C_EFUSE_CTRL_ADDR, addr);
1210 1.1 nonaka reg &= ~R92C_EFUSE_CTRL_VALID;
1211 1.1 nonaka urtwn_write_4(sc, R92C_EFUSE_CTRL, reg);
1212 1.1 nonaka
1213 1.1 nonaka /* Wait for read operation to complete. */
1214 1.1 nonaka for (ntries = 0; ntries < 100; ntries++) {
1215 1.1 nonaka reg = urtwn_read_4(sc, R92C_EFUSE_CTRL);
1216 1.1 nonaka if (reg & R92C_EFUSE_CTRL_VALID) {
1217 1.1 nonaka /* Done */
1218 1.42 skrll return MS(reg, R92C_EFUSE_CTRL_DATA);
1219 1.1 nonaka }
1220 1.1 nonaka DELAY(5);
1221 1.1 nonaka }
1222 1.1 nonaka aprint_error_dev(sc->sc_dev,
1223 1.1 nonaka "could not read efuse byte at address 0x%04x\n", addr);
1224 1.42 skrll return 0xff;
1225 1.1 nonaka }
1226 1.1 nonaka
1227 1.1 nonaka static void
1228 1.1 nonaka urtwn_efuse_read(struct urtwn_softc *sc)
1229 1.1 nonaka {
1230 1.1 nonaka uint8_t *rom = (uint8_t *)&sc->rom;
1231 1.1 nonaka uint32_t reg;
1232 1.1 nonaka uint16_t addr = 0;
1233 1.1 nonaka uint8_t off, msk;
1234 1.22 christos size_t i;
1235 1.1 nonaka
1236 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
1237 1.1 nonaka
1238 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
1239 1.12 christos
1240 1.32 nonaka urtwn_efuse_switch_power(sc);
1241 1.32 nonaka
1242 1.1 nonaka memset(&sc->rom, 0xff, sizeof(sc->rom));
1243 1.1 nonaka while (addr < 512) {
1244 1.1 nonaka reg = urtwn_efuse_read_1(sc, addr);
1245 1.1 nonaka if (reg == 0xff)
1246 1.1 nonaka break;
1247 1.1 nonaka addr++;
1248 1.1 nonaka off = reg >> 4;
1249 1.1 nonaka msk = reg & 0xf;
1250 1.1 nonaka for (i = 0; i < 4; i++) {
1251 1.1 nonaka if (msk & (1U << i))
1252 1.1 nonaka continue;
1253 1.1 nonaka
1254 1.1 nonaka rom[off * 8 + i * 2 + 0] = urtwn_efuse_read_1(sc, addr);
1255 1.1 nonaka addr++;
1256 1.1 nonaka rom[off * 8 + i * 2 + 1] = urtwn_efuse_read_1(sc, addr);
1257 1.1 nonaka addr++;
1258 1.1 nonaka }
1259 1.1 nonaka }
1260 1.1 nonaka #ifdef URTWN_DEBUG
1261 1.1 nonaka if (urtwn_debug & DBG_INIT) {
1262 1.1 nonaka /* Dump ROM content. */
1263 1.1 nonaka printf("%s: %s", device_xname(sc->sc_dev), __func__);
1264 1.1 nonaka for (i = 0; i < (int)sizeof(sc->rom); i++)
1265 1.1 nonaka printf(":%02x", rom[i]);
1266 1.1 nonaka printf("\n");
1267 1.1 nonaka }
1268 1.1 nonaka #endif
1269 1.1 nonaka }
1270 1.1 nonaka
1271 1.32 nonaka static void
1272 1.32 nonaka urtwn_efuse_switch_power(struct urtwn_softc *sc)
1273 1.32 nonaka {
1274 1.32 nonaka uint32_t reg;
1275 1.32 nonaka
1276 1.32 nonaka reg = urtwn_read_2(sc, R92C_SYS_ISO_CTRL);
1277 1.32 nonaka if (!(reg & R92C_SYS_ISO_CTRL_PWC_EV12V)) {
1278 1.32 nonaka urtwn_write_2(sc, R92C_SYS_ISO_CTRL,
1279 1.32 nonaka reg | R92C_SYS_ISO_CTRL_PWC_EV12V);
1280 1.32 nonaka }
1281 1.32 nonaka reg = urtwn_read_2(sc, R92C_SYS_FUNC_EN);
1282 1.32 nonaka if (!(reg & R92C_SYS_FUNC_EN_ELDR)) {
1283 1.32 nonaka urtwn_write_2(sc, R92C_SYS_FUNC_EN,
1284 1.32 nonaka reg | R92C_SYS_FUNC_EN_ELDR);
1285 1.32 nonaka }
1286 1.32 nonaka reg = urtwn_read_2(sc, R92C_SYS_CLKR);
1287 1.32 nonaka if ((reg & (R92C_SYS_CLKR_LOADER_EN | R92C_SYS_CLKR_ANA8M)) !=
1288 1.32 nonaka (R92C_SYS_CLKR_LOADER_EN | R92C_SYS_CLKR_ANA8M)) {
1289 1.32 nonaka urtwn_write_2(sc, R92C_SYS_CLKR,
1290 1.32 nonaka reg | R92C_SYS_CLKR_LOADER_EN | R92C_SYS_CLKR_ANA8M);
1291 1.32 nonaka }
1292 1.32 nonaka }
1293 1.32 nonaka
1294 1.1 nonaka static int
1295 1.1 nonaka urtwn_read_chipid(struct urtwn_softc *sc)
1296 1.1 nonaka {
1297 1.1 nonaka uint32_t reg;
1298 1.1 nonaka
1299 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
1300 1.1 nonaka
1301 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_88E) ||
1302 1.49 nat ISSET(sc->chip, URTWN_CHIP_92EU))
1303 1.42 skrll return 0;
1304 1.32 nonaka
1305 1.1 nonaka reg = urtwn_read_4(sc, R92C_SYS_CFG);
1306 1.1 nonaka if (reg & R92C_SYS_CFG_TRP_VAUX_EN) {
1307 1.1 nonaka /* test chip, not supported */
1308 1.42 skrll return EIO;
1309 1.1 nonaka }
1310 1.1 nonaka if (reg & R92C_SYS_CFG_TYPE_92C) {
1311 1.1 nonaka sc->chip |= URTWN_CHIP_92C;
1312 1.1 nonaka /* Check if it is a castrated 8192C. */
1313 1.1 nonaka if (MS(urtwn_read_4(sc, R92C_HPON_FSM),
1314 1.1 nonaka R92C_HPON_FSM_CHIP_BONDING_ID) ==
1315 1.1 nonaka R92C_HPON_FSM_CHIP_BONDING_ID_92C_1T2R) {
1316 1.1 nonaka sc->chip |= URTWN_CHIP_92C_1T2R;
1317 1.1 nonaka }
1318 1.1 nonaka }
1319 1.1 nonaka if (reg & R92C_SYS_CFG_VENDOR_UMC) {
1320 1.1 nonaka sc->chip |= URTWN_CHIP_UMC;
1321 1.1 nonaka if (MS(reg, R92C_SYS_CFG_CHIP_VER_RTL) == 0) {
1322 1.1 nonaka sc->chip |= URTWN_CHIP_UMC_A_CUT;
1323 1.1 nonaka }
1324 1.1 nonaka }
1325 1.42 skrll return 0;
1326 1.1 nonaka }
1327 1.1 nonaka
1328 1.1 nonaka #ifdef URTWN_DEBUG
1329 1.1 nonaka static void
1330 1.1 nonaka urtwn_dump_rom(struct urtwn_softc *sc, struct r92c_rom *rp)
1331 1.1 nonaka {
1332 1.1 nonaka
1333 1.1 nonaka aprint_normal_dev(sc->sc_dev,
1334 1.1 nonaka "id 0x%04x, dbg_sel 0x%x, vid 0x%x, pid 0x%x\n",
1335 1.1 nonaka rp->id, rp->dbg_sel, rp->vid, rp->pid);
1336 1.1 nonaka
1337 1.1 nonaka aprint_normal_dev(sc->sc_dev,
1338 1.1 nonaka "usb_opt 0x%x, ep_setting 0x%x, usb_phy 0x%x\n",
1339 1.1 nonaka rp->usb_opt, rp->ep_setting, rp->usb_phy);
1340 1.1 nonaka
1341 1.1 nonaka aprint_normal_dev(sc->sc_dev,
1342 1.1 nonaka "macaddr %02x:%02x:%02x:%02x:%02x:%02x\n",
1343 1.1 nonaka rp->macaddr[0], rp->macaddr[1],
1344 1.1 nonaka rp->macaddr[2], rp->macaddr[3],
1345 1.1 nonaka rp->macaddr[4], rp->macaddr[5]);
1346 1.1 nonaka
1347 1.1 nonaka aprint_normal_dev(sc->sc_dev,
1348 1.1 nonaka "string %s, subcustomer_id 0x%x\n",
1349 1.1 nonaka rp->string, rp->subcustomer_id);
1350 1.1 nonaka
1351 1.1 nonaka aprint_normal_dev(sc->sc_dev,
1352 1.1 nonaka "cck_tx_pwr c0: %d %d %d, c1: %d %d %d\n",
1353 1.1 nonaka rp->cck_tx_pwr[0][0], rp->cck_tx_pwr[0][1], rp->cck_tx_pwr[0][2],
1354 1.1 nonaka rp->cck_tx_pwr[1][0], rp->cck_tx_pwr[1][1], rp->cck_tx_pwr[1][2]);
1355 1.1 nonaka
1356 1.1 nonaka aprint_normal_dev(sc->sc_dev,
1357 1.1 nonaka "ht40_1s_tx_pwr c0 %d %d %d, c1 %d %d %d\n",
1358 1.1 nonaka rp->ht40_1s_tx_pwr[0][0], rp->ht40_1s_tx_pwr[0][1],
1359 1.1 nonaka rp->ht40_1s_tx_pwr[0][2],
1360 1.1 nonaka rp->ht40_1s_tx_pwr[1][0], rp->ht40_1s_tx_pwr[1][1],
1361 1.1 nonaka rp->ht40_1s_tx_pwr[1][2]);
1362 1.1 nonaka
1363 1.1 nonaka aprint_normal_dev(sc->sc_dev,
1364 1.1 nonaka "ht40_2s_tx_pwr_diff c0: %d %d %d, c1: %d %d %d\n",
1365 1.1 nonaka rp->ht40_2s_tx_pwr_diff[0] & 0xf, rp->ht40_2s_tx_pwr_diff[1] & 0xf,
1366 1.1 nonaka rp->ht40_2s_tx_pwr_diff[2] & 0xf,
1367 1.1 nonaka rp->ht40_2s_tx_pwr_diff[0] >> 4, rp->ht40_2s_tx_pwr_diff[1] & 0xf,
1368 1.1 nonaka rp->ht40_2s_tx_pwr_diff[2] >> 4);
1369 1.1 nonaka
1370 1.1 nonaka aprint_normal_dev(sc->sc_dev,
1371 1.1 nonaka "ht20_tx_pwr_diff c0: %d %d %d, c1: %d %d %d\n",
1372 1.1 nonaka rp->ht20_tx_pwr_diff[0] & 0xf, rp->ht20_tx_pwr_diff[1] & 0xf,
1373 1.1 nonaka rp->ht20_tx_pwr_diff[2] & 0xf,
1374 1.1 nonaka rp->ht20_tx_pwr_diff[0] >> 4, rp->ht20_tx_pwr_diff[1] >> 4,
1375 1.1 nonaka rp->ht20_tx_pwr_diff[2] >> 4);
1376 1.1 nonaka
1377 1.1 nonaka aprint_normal_dev(sc->sc_dev,
1378 1.1 nonaka "ofdm_tx_pwr_diff c0: %d %d %d, c1: %d %d %d\n",
1379 1.1 nonaka rp->ofdm_tx_pwr_diff[0] & 0xf, rp->ofdm_tx_pwr_diff[1] & 0xf,
1380 1.1 nonaka rp->ofdm_tx_pwr_diff[2] & 0xf,
1381 1.1 nonaka rp->ofdm_tx_pwr_diff[0] >> 4, rp->ofdm_tx_pwr_diff[1] >> 4,
1382 1.1 nonaka rp->ofdm_tx_pwr_diff[2] >> 4);
1383 1.1 nonaka
1384 1.1 nonaka aprint_normal_dev(sc->sc_dev,
1385 1.1 nonaka "ht40_max_pwr_offset c0: %d %d %d, c1: %d %d %d\n",
1386 1.1 nonaka rp->ht40_max_pwr[0] & 0xf, rp->ht40_max_pwr[1] & 0xf,
1387 1.1 nonaka rp->ht40_max_pwr[2] & 0xf,
1388 1.1 nonaka rp->ht40_max_pwr[0] >> 4, rp->ht40_max_pwr[1] >> 4,
1389 1.1 nonaka rp->ht40_max_pwr[2] >> 4);
1390 1.1 nonaka
1391 1.1 nonaka aprint_normal_dev(sc->sc_dev,
1392 1.1 nonaka "ht20_max_pwr_offset c0: %d %d %d, c1: %d %d %d\n",
1393 1.1 nonaka rp->ht20_max_pwr[0] & 0xf, rp->ht20_max_pwr[1] & 0xf,
1394 1.1 nonaka rp->ht20_max_pwr[2] & 0xf,
1395 1.1 nonaka rp->ht20_max_pwr[0] >> 4, rp->ht20_max_pwr[1] >> 4,
1396 1.1 nonaka rp->ht20_max_pwr[2] >> 4);
1397 1.1 nonaka
1398 1.1 nonaka aprint_normal_dev(sc->sc_dev,
1399 1.1 nonaka "xtal_calib %d, tssi %d %d, thermal %d\n",
1400 1.1 nonaka rp->xtal_calib, rp->tssi[0], rp->tssi[1], rp->thermal_meter);
1401 1.1 nonaka
1402 1.1 nonaka aprint_normal_dev(sc->sc_dev,
1403 1.1 nonaka "rf_opt1 0x%x, rf_opt2 0x%x, rf_opt3 0x%x, rf_opt4 0x%x\n",
1404 1.1 nonaka rp->rf_opt1, rp->rf_opt2, rp->rf_opt3, rp->rf_opt4);
1405 1.1 nonaka
1406 1.1 nonaka aprint_normal_dev(sc->sc_dev,
1407 1.1 nonaka "channnel_plan %d, version %d customer_id 0x%x\n",
1408 1.1 nonaka rp->channel_plan, rp->version, rp->curstomer_id);
1409 1.1 nonaka }
1410 1.1 nonaka #endif
1411 1.1 nonaka
1412 1.1 nonaka static void
1413 1.1 nonaka urtwn_read_rom(struct urtwn_softc *sc)
1414 1.1 nonaka {
1415 1.1 nonaka struct ieee80211com *ic = &sc->sc_ic;
1416 1.1 nonaka struct r92c_rom *rom = &sc->rom;
1417 1.1 nonaka
1418 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
1419 1.1 nonaka
1420 1.12 christos mutex_enter(&sc->sc_write_mtx);
1421 1.12 christos
1422 1.1 nonaka /* Read full ROM image. */
1423 1.1 nonaka urtwn_efuse_read(sc);
1424 1.1 nonaka #ifdef URTWN_DEBUG
1425 1.1 nonaka if (urtwn_debug & DBG_REG)
1426 1.1 nonaka urtwn_dump_rom(sc, rom);
1427 1.1 nonaka #endif
1428 1.1 nonaka
1429 1.1 nonaka /* XXX Weird but this is what the vendor driver does. */
1430 1.1 nonaka sc->pa_setting = urtwn_efuse_read_1(sc, 0x1fa);
1431 1.1 nonaka sc->board_type = MS(rom->rf_opt1, R92C_ROM_RF1_BOARD_TYPE);
1432 1.1 nonaka sc->regulatory = MS(rom->rf_opt1, R92C_ROM_RF1_REGULATORY);
1433 1.1 nonaka
1434 1.1 nonaka DPRINTFN(DBG_INIT,
1435 1.1 nonaka ("%s: %s: PA setting=0x%x, board=0x%x, regulatory=%d\n",
1436 1.1 nonaka device_xname(sc->sc_dev), __func__, sc->pa_setting,
1437 1.1 nonaka sc->board_type, sc->regulatory));
1438 1.1 nonaka
1439 1.1 nonaka IEEE80211_ADDR_COPY(ic->ic_myaddr, rom->macaddr);
1440 1.12 christos
1441 1.32 nonaka sc->sc_rf_write = urtwn_r92c_rf_write;
1442 1.32 nonaka sc->sc_power_on = urtwn_r92c_power_on;
1443 1.32 nonaka sc->sc_dma_init = urtwn_r92c_dma_init;
1444 1.32 nonaka
1445 1.32 nonaka mutex_exit(&sc->sc_write_mtx);
1446 1.32 nonaka }
1447 1.32 nonaka
1448 1.32 nonaka static void
1449 1.32 nonaka urtwn_r88e_read_rom(struct urtwn_softc *sc)
1450 1.32 nonaka {
1451 1.32 nonaka struct ieee80211com *ic = &sc->sc_ic;
1452 1.32 nonaka uint8_t *rom = sc->r88e_rom;
1453 1.32 nonaka uint32_t reg;
1454 1.32 nonaka uint16_t addr = 0;
1455 1.32 nonaka uint8_t off, msk, tmp;
1456 1.32 nonaka int i;
1457 1.32 nonaka
1458 1.32 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
1459 1.32 nonaka
1460 1.32 nonaka mutex_enter(&sc->sc_write_mtx);
1461 1.32 nonaka
1462 1.32 nonaka off = 0;
1463 1.32 nonaka urtwn_efuse_switch_power(sc);
1464 1.32 nonaka
1465 1.32 nonaka /* Read full ROM image. */
1466 1.32 nonaka memset(&sc->r88e_rom, 0xff, sizeof(sc->r88e_rom));
1467 1.49 nat while (addr < 4096) {
1468 1.32 nonaka reg = urtwn_efuse_read_1(sc, addr);
1469 1.32 nonaka if (reg == 0xff)
1470 1.32 nonaka break;
1471 1.32 nonaka addr++;
1472 1.32 nonaka if ((reg & 0x1f) == 0x0f) {
1473 1.32 nonaka tmp = (reg & 0xe0) >> 5;
1474 1.32 nonaka reg = urtwn_efuse_read_1(sc, addr);
1475 1.32 nonaka if ((reg & 0x0f) != 0x0f)
1476 1.32 nonaka off = ((reg & 0xf0) >> 1) | tmp;
1477 1.32 nonaka addr++;
1478 1.32 nonaka } else
1479 1.32 nonaka off = reg >> 4;
1480 1.32 nonaka msk = reg & 0xf;
1481 1.32 nonaka for (i = 0; i < 4; i++) {
1482 1.32 nonaka if (msk & (1 << i))
1483 1.32 nonaka continue;
1484 1.32 nonaka rom[off * 8 + i * 2 + 0] = urtwn_efuse_read_1(sc, addr);
1485 1.32 nonaka addr++;
1486 1.32 nonaka rom[off * 8 + i * 2 + 1] = urtwn_efuse_read_1(sc, addr);
1487 1.32 nonaka addr++;
1488 1.32 nonaka }
1489 1.32 nonaka }
1490 1.32 nonaka #ifdef URTWN_DEBUG
1491 1.32 nonaka if (urtwn_debug & DBG_REG) {
1492 1.32 nonaka }
1493 1.32 nonaka #endif
1494 1.32 nonaka
1495 1.32 nonaka addr = 0x10;
1496 1.32 nonaka for (i = 0; i < 6; i++)
1497 1.32 nonaka sc->cck_tx_pwr[i] = sc->r88e_rom[addr++];
1498 1.32 nonaka for (i = 0; i < 5; i++)
1499 1.32 nonaka sc->ht40_tx_pwr[i] = sc->r88e_rom[addr++];
1500 1.32 nonaka sc->bw20_tx_pwr_diff = (sc->r88e_rom[addr] & 0xf0) >> 4;
1501 1.32 nonaka if (sc->bw20_tx_pwr_diff & 0x08)
1502 1.32 nonaka sc->bw20_tx_pwr_diff |= 0xf0;
1503 1.32 nonaka sc->ofdm_tx_pwr_diff = (sc->r88e_rom[addr] & 0xf);
1504 1.32 nonaka if (sc->ofdm_tx_pwr_diff & 0x08)
1505 1.32 nonaka sc->ofdm_tx_pwr_diff |= 0xf0;
1506 1.32 nonaka sc->regulatory = MS(sc->r88e_rom[0xc1], R92C_ROM_RF1_REGULATORY);
1507 1.32 nonaka
1508 1.32 nonaka IEEE80211_ADDR_COPY(ic->ic_myaddr, &sc->r88e_rom[0xd7]);
1509 1.32 nonaka
1510 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_92EU)) {
1511 1.49 nat sc->sc_power_on = urtwn_r92e_power_on;
1512 1.49 nat sc->sc_rf_write = urtwn_r92e_rf_write;
1513 1.49 nat } else {
1514 1.49 nat sc->sc_power_on = urtwn_r88e_power_on;
1515 1.49 nat sc->sc_rf_write = urtwn_r88e_rf_write;
1516 1.49 nat }
1517 1.32 nonaka sc->sc_dma_init = urtwn_r88e_dma_init;
1518 1.32 nonaka
1519 1.12 christos mutex_exit(&sc->sc_write_mtx);
1520 1.1 nonaka }
1521 1.1 nonaka
1522 1.1 nonaka static int
1523 1.1 nonaka urtwn_media_change(struct ifnet *ifp)
1524 1.1 nonaka {
1525 1.1 nonaka #ifdef URTWN_DEBUG
1526 1.1 nonaka struct urtwn_softc *sc = ifp->if_softc;
1527 1.1 nonaka #endif
1528 1.1 nonaka int error;
1529 1.1 nonaka
1530 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
1531 1.1 nonaka
1532 1.1 nonaka if ((error = ieee80211_media_change(ifp)) != ENETRESET)
1533 1.42 skrll return error;
1534 1.1 nonaka
1535 1.1 nonaka if ((ifp->if_flags & (IFF_UP | IFF_RUNNING)) ==
1536 1.1 nonaka (IFF_UP | IFF_RUNNING)) {
1537 1.1 nonaka urtwn_init(ifp);
1538 1.1 nonaka }
1539 1.42 skrll return 0;
1540 1.1 nonaka }
1541 1.1 nonaka
1542 1.1 nonaka /*
1543 1.1 nonaka * Initialize rate adaptation in firmware.
1544 1.1 nonaka */
1545 1.1 nonaka static int
1546 1.1 nonaka urtwn_ra_init(struct urtwn_softc *sc)
1547 1.1 nonaka {
1548 1.1 nonaka static const uint8_t map[] = {
1549 1.1 nonaka 2, 4, 11, 22, 12, 18, 24, 36, 48, 72, 96, 108
1550 1.1 nonaka };
1551 1.1 nonaka struct ieee80211com *ic = &sc->sc_ic;
1552 1.1 nonaka struct ieee80211_node *ni = ic->ic_bss;
1553 1.1 nonaka struct ieee80211_rateset *rs = &ni->ni_rates;
1554 1.1 nonaka struct r92c_fw_cmd_macid_cfg cmd;
1555 1.1 nonaka uint32_t rates, basicrates;
1556 1.60 thorpej uint32_t rrsr_mask, rrsr_rate;
1557 1.1 nonaka uint8_t mode;
1558 1.22 christos size_t maxrate, maxbasicrate, i, j;
1559 1.22 christos int error;
1560 1.1 nonaka
1561 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
1562 1.1 nonaka
1563 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
1564 1.12 christos
1565 1.1 nonaka /* Get normal and basic rates mask. */
1566 1.49 nat rates = basicrates = 1;
1567 1.1 nonaka maxrate = maxbasicrate = 0;
1568 1.1 nonaka for (i = 0; i < rs->rs_nrates; i++) {
1569 1.1 nonaka /* Convert 802.11 rate to HW rate index. */
1570 1.22 christos for (j = 0; j < __arraycount(map); j++) {
1571 1.1 nonaka if ((rs->rs_rates[i] & IEEE80211_RATE_VAL) == map[j]) {
1572 1.1 nonaka break;
1573 1.1 nonaka }
1574 1.1 nonaka }
1575 1.1 nonaka if (j == __arraycount(map)) {
1576 1.1 nonaka /* Unknown rate, skip. */
1577 1.1 nonaka continue;
1578 1.1 nonaka }
1579 1.1 nonaka
1580 1.1 nonaka rates |= 1U << j;
1581 1.1 nonaka if (j > maxrate) {
1582 1.1 nonaka maxrate = j;
1583 1.1 nonaka }
1584 1.1 nonaka
1585 1.1 nonaka if (rs->rs_rates[i] & IEEE80211_RATE_BASIC) {
1586 1.1 nonaka basicrates |= 1U << j;
1587 1.1 nonaka if (j > maxbasicrate) {
1588 1.1 nonaka maxbasicrate = j;
1589 1.1 nonaka }
1590 1.1 nonaka }
1591 1.1 nonaka }
1592 1.1 nonaka if (ic->ic_curmode == IEEE80211_MODE_11B) {
1593 1.1 nonaka mode = R92C_RAID_11B;
1594 1.1 nonaka } else {
1595 1.1 nonaka mode = R92C_RAID_11BG;
1596 1.1 nonaka }
1597 1.1 nonaka DPRINTFN(DBG_INIT, ("%s: %s: mode=0x%x rates=0x%x, basicrates=0x%x, "
1598 1.22 christos "maxrate=%zx, maxbasicrate=%zx\n",
1599 1.1 nonaka device_xname(sc->sc_dev), __func__, mode, rates, basicrates,
1600 1.1 nonaka maxrate, maxbasicrate));
1601 1.49 nat
1602 1.49 nat if (ni->ni_capinfo & IEEE80211_CAPINFO_SHORT_PREAMBLE) {
1603 1.49 nat maxbasicrate |= R92C_RATE_SHORTGI;
1604 1.49 nat maxrate |= R92C_RATE_SHORTGI;
1605 1.1 nonaka }
1606 1.1 nonaka
1607 1.1 nonaka /* Set rates mask for group addressed frames. */
1608 1.60 thorpej cmd.macid = RTWN_MACID_BC | RTWN_MACID_VALID;
1609 1.49 nat if (ni->ni_capinfo & IEEE80211_CAPINFO_SHORT_PREAMBLE)
1610 1.60 thorpej cmd.macid |= RTWN_MACID_SHORTGI;
1611 1.60 thorpej cmd.mask = htole32((mode << 28) | basicrates);
1612 1.1 nonaka error = urtwn_fw_cmd(sc, R92C_CMD_MACID_CONFIG, &cmd, sizeof(cmd));
1613 1.1 nonaka if (error != 0) {
1614 1.1 nonaka aprint_error_dev(sc->sc_dev,
1615 1.1 nonaka "could not add broadcast station\n");
1616 1.42 skrll return error;
1617 1.1 nonaka }
1618 1.1 nonaka /* Set initial MRR rate. */
1619 1.22 christos DPRINTFN(DBG_INIT, ("%s: %s: maxbasicrate=%zd\n",
1620 1.1 nonaka device_xname(sc->sc_dev), __func__, maxbasicrate));
1621 1.60 thorpej urtwn_write_1(sc, R92C_INIDATA_RATE_SEL(RTWN_MACID_BC), maxbasicrate);
1622 1.1 nonaka
1623 1.1 nonaka /* Set rates mask for unicast frames. */
1624 1.60 thorpej cmd.macid = RTWN_MACID_BSS | RTWN_MACID_VALID;
1625 1.49 nat if (ni->ni_capinfo & IEEE80211_CAPINFO_SHORT_PREAMBLE)
1626 1.60 thorpej cmd.macid |= RTWN_MACID_SHORTGI;
1627 1.60 thorpej cmd.mask = htole32((mode << 28) | rates);
1628 1.1 nonaka error = urtwn_fw_cmd(sc, R92C_CMD_MACID_CONFIG, &cmd, sizeof(cmd));
1629 1.1 nonaka if (error != 0) {
1630 1.1 nonaka aprint_error_dev(sc->sc_dev, "could not add BSS station\n");
1631 1.42 skrll return error;
1632 1.1 nonaka }
1633 1.1 nonaka /* Set initial MRR rate. */
1634 1.22 christos DPRINTFN(DBG_INIT, ("%s: %s: maxrate=%zd\n", device_xname(sc->sc_dev),
1635 1.1 nonaka __func__, maxrate));
1636 1.60 thorpej urtwn_write_1(sc, R92C_INIDATA_RATE_SEL(RTWN_MACID_BSS), maxrate);
1637 1.1 nonaka
1638 1.49 nat rrsr_rate = ic->ic_fixed_rate;
1639 1.49 nat if (rrsr_rate == -1)
1640 1.49 nat rrsr_rate = 11;
1641 1.49 nat
1642 1.49 nat rrsr_mask = 0xffff >> (15 - rrsr_rate);
1643 1.49 nat urtwn_write_2(sc, R92C_RRSR, rrsr_mask);
1644 1.49 nat
1645 1.1 nonaka /* Indicate highest supported rate. */
1646 1.1 nonaka ni->ni_txrate = rs->rs_nrates - 1;
1647 1.1 nonaka
1648 1.42 skrll return 0;
1649 1.1 nonaka }
1650 1.1 nonaka
1651 1.1 nonaka static int
1652 1.1 nonaka urtwn_get_nettype(struct urtwn_softc *sc)
1653 1.1 nonaka {
1654 1.1 nonaka struct ieee80211com *ic = &sc->sc_ic;
1655 1.1 nonaka int type;
1656 1.1 nonaka
1657 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
1658 1.1 nonaka
1659 1.1 nonaka switch (ic->ic_opmode) {
1660 1.1 nonaka case IEEE80211_M_STA:
1661 1.1 nonaka type = R92C_CR_NETTYPE_INFRA;
1662 1.1 nonaka break;
1663 1.1 nonaka
1664 1.1 nonaka case IEEE80211_M_IBSS:
1665 1.1 nonaka type = R92C_CR_NETTYPE_ADHOC;
1666 1.1 nonaka break;
1667 1.1 nonaka
1668 1.1 nonaka default:
1669 1.1 nonaka type = R92C_CR_NETTYPE_NOLINK;
1670 1.1 nonaka break;
1671 1.1 nonaka }
1672 1.1 nonaka
1673 1.42 skrll return type;
1674 1.1 nonaka }
1675 1.1 nonaka
1676 1.1 nonaka static void
1677 1.1 nonaka urtwn_set_nettype0_msr(struct urtwn_softc *sc, uint8_t type)
1678 1.1 nonaka {
1679 1.1 nonaka uint8_t reg;
1680 1.1 nonaka
1681 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s: type=%d\n", device_xname(sc->sc_dev),
1682 1.1 nonaka __func__, type));
1683 1.1 nonaka
1684 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
1685 1.12 christos
1686 1.1 nonaka reg = urtwn_read_1(sc, R92C_CR + 2) & 0x0c;
1687 1.1 nonaka urtwn_write_1(sc, R92C_CR + 2, reg | type);
1688 1.1 nonaka }
1689 1.1 nonaka
1690 1.1 nonaka static void
1691 1.1 nonaka urtwn_tsf_sync_enable(struct urtwn_softc *sc)
1692 1.1 nonaka {
1693 1.1 nonaka struct ieee80211_node *ni = sc->sc_ic.ic_bss;
1694 1.1 nonaka uint64_t tsf;
1695 1.1 nonaka
1696 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
1697 1.1 nonaka
1698 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
1699 1.12 christos
1700 1.1 nonaka /* Enable TSF synchronization. */
1701 1.1 nonaka urtwn_write_1(sc, R92C_BCN_CTRL,
1702 1.1 nonaka urtwn_read_1(sc, R92C_BCN_CTRL) & ~R92C_BCN_CTRL_DIS_TSF_UDT0);
1703 1.1 nonaka
1704 1.1 nonaka /* Correct TSF */
1705 1.1 nonaka urtwn_write_1(sc, R92C_BCN_CTRL,
1706 1.1 nonaka urtwn_read_1(sc, R92C_BCN_CTRL) & ~R92C_BCN_CTRL_EN_BCN);
1707 1.1 nonaka
1708 1.1 nonaka /* Set initial TSF. */
1709 1.1 nonaka tsf = ni->ni_tstamp.tsf;
1710 1.1 nonaka tsf = le64toh(tsf);
1711 1.1 nonaka tsf = tsf - (tsf % (ni->ni_intval * IEEE80211_DUR_TU));
1712 1.1 nonaka tsf -= IEEE80211_DUR_TU;
1713 1.1 nonaka urtwn_write_4(sc, R92C_TSFTR + 0, (uint32_t)tsf);
1714 1.1 nonaka urtwn_write_4(sc, R92C_TSFTR + 4, (uint32_t)(tsf >> 32));
1715 1.1 nonaka
1716 1.1 nonaka urtwn_write_1(sc, R92C_BCN_CTRL,
1717 1.1 nonaka urtwn_read_1(sc, R92C_BCN_CTRL) | R92C_BCN_CTRL_EN_BCN);
1718 1.1 nonaka }
1719 1.1 nonaka
1720 1.1 nonaka static void
1721 1.1 nonaka urtwn_set_led(struct urtwn_softc *sc, int led, int on)
1722 1.1 nonaka {
1723 1.1 nonaka uint8_t reg;
1724 1.1 nonaka
1725 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s: led=%d, on=%d\n", device_xname(sc->sc_dev),
1726 1.1 nonaka __func__, led, on));
1727 1.1 nonaka
1728 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
1729 1.12 christos
1730 1.1 nonaka if (led == URTWN_LED_LINK) {
1731 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_92EU)) {
1732 1.49 nat urtwn_write_1(sc, 0x64, urtwn_read_1(sc, 0x64) & 0xfe);
1733 1.49 nat reg = urtwn_read_1(sc, R92C_LEDCFG1) & R92E_LEDSON;
1734 1.49 nat urtwn_write_1(sc, R92C_LEDCFG1, reg |
1735 1.49 nat (R92C_LEDCFG0_DIS << 1));
1736 1.49 nat if (on) {
1737 1.49 nat reg = urtwn_read_1(sc, R92C_LEDCFG1) &
1738 1.49 nat R92E_LEDSON;
1739 1.49 nat urtwn_write_1(sc, R92C_LEDCFG1, reg);
1740 1.49 nat }
1741 1.49 nat } else if (ISSET(sc->chip, URTWN_CHIP_88E)) {
1742 1.32 nonaka reg = urtwn_read_1(sc, R92C_LEDCFG2) & 0xf0;
1743 1.32 nonaka urtwn_write_1(sc, R92C_LEDCFG2, reg | 0x60);
1744 1.32 nonaka if (!on) {
1745 1.32 nonaka reg = urtwn_read_1(sc, R92C_LEDCFG2) & 0x90;
1746 1.32 nonaka urtwn_write_1(sc, R92C_LEDCFG2,
1747 1.32 nonaka reg | R92C_LEDCFG0_DIS);
1748 1.32 nonaka reg = urtwn_read_1(sc, R92C_MAC_PINMUX_CFG);
1749 1.32 nonaka urtwn_write_1(sc, R92C_MAC_PINMUX_CFG,
1750 1.32 nonaka reg & 0xfe);
1751 1.32 nonaka }
1752 1.32 nonaka } else {
1753 1.32 nonaka reg = urtwn_read_1(sc, R92C_LEDCFG0) & 0x70;
1754 1.32 nonaka if (!on) {
1755 1.32 nonaka reg |= R92C_LEDCFG0_DIS;
1756 1.32 nonaka }
1757 1.32 nonaka urtwn_write_1(sc, R92C_LEDCFG0, reg);
1758 1.1 nonaka }
1759 1.1 nonaka sc->ledlink = on; /* Save LED state. */
1760 1.1 nonaka }
1761 1.1 nonaka }
1762 1.1 nonaka
1763 1.1 nonaka static void
1764 1.1 nonaka urtwn_calib_to(void *arg)
1765 1.1 nonaka {
1766 1.1 nonaka struct urtwn_softc *sc = arg;
1767 1.1 nonaka
1768 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
1769 1.1 nonaka
1770 1.1 nonaka if (sc->sc_dying)
1771 1.1 nonaka return;
1772 1.1 nonaka
1773 1.1 nonaka /* Do it in a process context. */
1774 1.1 nonaka urtwn_do_async(sc, urtwn_calib_to_cb, NULL, 0);
1775 1.1 nonaka }
1776 1.1 nonaka
1777 1.1 nonaka /* ARGSUSED */
1778 1.1 nonaka static void
1779 1.1 nonaka urtwn_calib_to_cb(struct urtwn_softc *sc, void *arg)
1780 1.1 nonaka {
1781 1.1 nonaka struct r92c_fw_cmd_rssi cmd;
1782 1.49 nat struct r92e_fw_cmd_rssi cmde;
1783 1.1 nonaka
1784 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
1785 1.1 nonaka
1786 1.1 nonaka if (sc->sc_ic.ic_state != IEEE80211_S_RUN)
1787 1.1 nonaka goto restart_timer;
1788 1.1 nonaka
1789 1.12 christos mutex_enter(&sc->sc_write_mtx);
1790 1.1 nonaka if (sc->avg_pwdb != -1) {
1791 1.1 nonaka /* Indicate Rx signal strength to FW for rate adaptation. */
1792 1.1 nonaka memset(&cmd, 0, sizeof(cmd));
1793 1.49 nat memset(&cmde, 0, sizeof(cmde));
1794 1.1 nonaka cmd.macid = 0; /* BSS. */
1795 1.49 nat cmde.macid = 0; /* BSS. */
1796 1.1 nonaka cmd.pwdb = sc->avg_pwdb;
1797 1.49 nat cmde.pwdb = sc->avg_pwdb;
1798 1.1 nonaka DPRINTFN(DBG_RF, ("%s: %s: sending RSSI command avg=%d\n",
1799 1.1 nonaka device_xname(sc->sc_dev), __func__, sc->avg_pwdb));
1800 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_92EU)) {
1801 1.49 nat urtwn_fw_cmd(sc, R92C_CMD_RSSI_SETTING, &cmd,
1802 1.49 nat sizeof(cmd));
1803 1.49 nat } else {
1804 1.49 nat urtwn_fw_cmd(sc, R92E_CMD_RSSI_REPORT, &cmde,
1805 1.49 nat sizeof(cmde));
1806 1.49 nat }
1807 1.1 nonaka }
1808 1.1 nonaka
1809 1.1 nonaka /* Do temperature compensation. */
1810 1.1 nonaka urtwn_temp_calib(sc);
1811 1.12 christos mutex_exit(&sc->sc_write_mtx);
1812 1.1 nonaka
1813 1.1 nonaka restart_timer:
1814 1.1 nonaka if (!sc->sc_dying) {
1815 1.1 nonaka /* Restart calibration timer. */
1816 1.1 nonaka callout_schedule(&sc->sc_calib_to, hz);
1817 1.1 nonaka }
1818 1.1 nonaka }
1819 1.1 nonaka
1820 1.1 nonaka static void
1821 1.1 nonaka urtwn_next_scan(void *arg)
1822 1.1 nonaka {
1823 1.1 nonaka struct urtwn_softc *sc = arg;
1824 1.16 jmcneill int s;
1825 1.1 nonaka
1826 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
1827 1.1 nonaka
1828 1.1 nonaka if (sc->sc_dying)
1829 1.1 nonaka return;
1830 1.1 nonaka
1831 1.16 jmcneill s = splnet();
1832 1.1 nonaka if (sc->sc_ic.ic_state == IEEE80211_S_SCAN)
1833 1.1 nonaka ieee80211_next_scan(&sc->sc_ic);
1834 1.16 jmcneill splx(s);
1835 1.1 nonaka }
1836 1.1 nonaka
1837 1.26 christos static void
1838 1.26 christos urtwn_newassoc(struct ieee80211_node *ni, int isnew)
1839 1.26 christos {
1840 1.26 christos DPRINTFN(DBG_FN, ("%s: new node %s\n", __func__,
1841 1.26 christos ether_sprintf(ni->ni_macaddr)));
1842 1.26 christos /* start with lowest Tx rate */
1843 1.26 christos ni->ni_txrate = 0;
1844 1.26 christos }
1845 1.26 christos
1846 1.1 nonaka static int
1847 1.1 nonaka urtwn_newstate(struct ieee80211com *ic, enum ieee80211_state nstate, int arg)
1848 1.1 nonaka {
1849 1.1 nonaka struct urtwn_softc *sc = ic->ic_ifp->if_softc;
1850 1.1 nonaka struct urtwn_cmd_newstate cmd;
1851 1.1 nonaka
1852 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s: nstate=%s(%d), arg=%d\n",
1853 1.1 nonaka device_xname(sc->sc_dev), __func__,
1854 1.1 nonaka ieee80211_state_name[nstate], nstate, arg));
1855 1.1 nonaka
1856 1.1 nonaka callout_stop(&sc->sc_scan_to);
1857 1.1 nonaka callout_stop(&sc->sc_calib_to);
1858 1.1 nonaka
1859 1.1 nonaka /* Do it in a process context. */
1860 1.1 nonaka cmd.state = nstate;
1861 1.1 nonaka cmd.arg = arg;
1862 1.1 nonaka urtwn_do_async(sc, urtwn_newstate_cb, &cmd, sizeof(cmd));
1863 1.42 skrll return 0;
1864 1.1 nonaka }
1865 1.1 nonaka
1866 1.1 nonaka static void
1867 1.1 nonaka urtwn_newstate_cb(struct urtwn_softc *sc, void *arg)
1868 1.1 nonaka {
1869 1.1 nonaka struct urtwn_cmd_newstate *cmd = arg;
1870 1.1 nonaka struct ieee80211com *ic = &sc->sc_ic;
1871 1.1 nonaka struct ieee80211_node *ni;
1872 1.1 nonaka enum ieee80211_state ostate = ic->ic_state;
1873 1.1 nonaka enum ieee80211_state nstate = cmd->state;
1874 1.1 nonaka uint32_t reg;
1875 1.26 christos uint8_t sifs_time, msr;
1876 1.1 nonaka int s;
1877 1.1 nonaka
1878 1.1 nonaka DPRINTFN(DBG_FN|DBG_STM, ("%s: %s: %s(%d)->%s(%d)\n",
1879 1.1 nonaka device_xname(sc->sc_dev), __func__,
1880 1.1 nonaka ieee80211_state_name[ostate], ostate,
1881 1.1 nonaka ieee80211_state_name[nstate], nstate));
1882 1.1 nonaka
1883 1.1 nonaka s = splnet();
1884 1.12 christos mutex_enter(&sc->sc_write_mtx);
1885 1.12 christos
1886 1.12 christos callout_stop(&sc->sc_scan_to);
1887 1.12 christos callout_stop(&sc->sc_calib_to);
1888 1.1 nonaka
1889 1.1 nonaka switch (ostate) {
1890 1.1 nonaka case IEEE80211_S_INIT:
1891 1.1 nonaka break;
1892 1.1 nonaka
1893 1.1 nonaka case IEEE80211_S_SCAN:
1894 1.1 nonaka if (nstate != IEEE80211_S_SCAN) {
1895 1.1 nonaka /*
1896 1.1 nonaka * End of scanning
1897 1.1 nonaka */
1898 1.1 nonaka /* flush 4-AC Queue after site_survey */
1899 1.1 nonaka urtwn_write_1(sc, R92C_TXPAUSE, 0x0);
1900 1.1 nonaka
1901 1.1 nonaka /* Allow Rx from our BSSID only. */
1902 1.1 nonaka urtwn_write_4(sc, R92C_RCR,
1903 1.1 nonaka urtwn_read_4(sc, R92C_RCR) |
1904 1.1 nonaka R92C_RCR_CBSSID_DATA | R92C_RCR_CBSSID_BCN);
1905 1.1 nonaka }
1906 1.1 nonaka break;
1907 1.7 christos
1908 1.1 nonaka case IEEE80211_S_AUTH:
1909 1.1 nonaka case IEEE80211_S_ASSOC:
1910 1.1 nonaka break;
1911 1.1 nonaka
1912 1.1 nonaka case IEEE80211_S_RUN:
1913 1.1 nonaka /* Turn link LED off. */
1914 1.1 nonaka urtwn_set_led(sc, URTWN_LED_LINK, 0);
1915 1.1 nonaka
1916 1.1 nonaka /* Set media status to 'No Link'. */
1917 1.1 nonaka urtwn_set_nettype0_msr(sc, R92C_CR_NETTYPE_NOLINK);
1918 1.1 nonaka
1919 1.1 nonaka /* Stop Rx of data frames. */
1920 1.1 nonaka urtwn_write_2(sc, R92C_RXFLTMAP2, 0);
1921 1.1 nonaka
1922 1.1 nonaka /* Reset TSF. */
1923 1.1 nonaka urtwn_write_1(sc, R92C_DUAL_TSF_RST, 0x03);
1924 1.1 nonaka
1925 1.1 nonaka /* Disable TSF synchronization. */
1926 1.1 nonaka urtwn_write_1(sc, R92C_BCN_CTRL,
1927 1.1 nonaka urtwn_read_1(sc, R92C_BCN_CTRL) |
1928 1.1 nonaka R92C_BCN_CTRL_DIS_TSF_UDT0);
1929 1.1 nonaka
1930 1.1 nonaka /* Back to 20MHz mode */
1931 1.14 jmcneill urtwn_set_chan(sc, ic->ic_curchan,
1932 1.1 nonaka IEEE80211_HTINFO_2NDCHAN_NONE);
1933 1.1 nonaka
1934 1.1 nonaka if (ic->ic_opmode == IEEE80211_M_IBSS ||
1935 1.1 nonaka ic->ic_opmode == IEEE80211_M_HOSTAP) {
1936 1.1 nonaka /* Stop BCN */
1937 1.1 nonaka urtwn_write_1(sc, R92C_BCN_CTRL,
1938 1.1 nonaka urtwn_read_1(sc, R92C_BCN_CTRL) &
1939 1.1 nonaka ~(R92C_BCN_CTRL_EN_BCN | R92C_BCN_CTRL_TXBCN_RPT));
1940 1.1 nonaka }
1941 1.1 nonaka
1942 1.1 nonaka /* Reset EDCA parameters. */
1943 1.1 nonaka urtwn_write_4(sc, R92C_EDCA_VO_PARAM, 0x002f3217);
1944 1.1 nonaka urtwn_write_4(sc, R92C_EDCA_VI_PARAM, 0x005e4317);
1945 1.1 nonaka urtwn_write_4(sc, R92C_EDCA_BE_PARAM, 0x00105320);
1946 1.1 nonaka urtwn_write_4(sc, R92C_EDCA_BK_PARAM, 0x0000a444);
1947 1.1 nonaka
1948 1.1 nonaka /* flush all cam entries */
1949 1.1 nonaka urtwn_cam_init(sc);
1950 1.1 nonaka break;
1951 1.1 nonaka }
1952 1.1 nonaka
1953 1.1 nonaka switch (nstate) {
1954 1.1 nonaka case IEEE80211_S_INIT:
1955 1.1 nonaka /* Turn link LED off. */
1956 1.1 nonaka urtwn_set_led(sc, URTWN_LED_LINK, 0);
1957 1.1 nonaka break;
1958 1.1 nonaka
1959 1.1 nonaka case IEEE80211_S_SCAN:
1960 1.1 nonaka if (ostate != IEEE80211_S_SCAN) {
1961 1.1 nonaka /*
1962 1.1 nonaka * Begin of scanning
1963 1.1 nonaka */
1964 1.1 nonaka
1965 1.1 nonaka /* Set gain for scanning. */
1966 1.1 nonaka reg = urtwn_bb_read(sc, R92C_OFDM0_AGCCORE1(0));
1967 1.1 nonaka reg = RW(reg, R92C_OFDM0_AGCCORE1_GAIN, 0x20);
1968 1.1 nonaka urtwn_bb_write(sc, R92C_OFDM0_AGCCORE1(0), reg);
1969 1.1 nonaka
1970 1.32 nonaka if (!ISSET(sc->chip, URTWN_CHIP_88E)) {
1971 1.32 nonaka reg = urtwn_bb_read(sc, R92C_OFDM0_AGCCORE1(1));
1972 1.32 nonaka reg = RW(reg, R92C_OFDM0_AGCCORE1_GAIN, 0x20);
1973 1.32 nonaka urtwn_bb_write(sc, R92C_OFDM0_AGCCORE1(1), reg);
1974 1.32 nonaka }
1975 1.1 nonaka
1976 1.1 nonaka /* Set media status to 'No Link'. */
1977 1.1 nonaka urtwn_set_nettype0_msr(sc, R92C_CR_NETTYPE_NOLINK);
1978 1.1 nonaka
1979 1.1 nonaka /* Allow Rx from any BSSID. */
1980 1.1 nonaka urtwn_write_4(sc, R92C_RCR,
1981 1.1 nonaka urtwn_read_4(sc, R92C_RCR) &
1982 1.1 nonaka ~(R92C_RCR_CBSSID_DATA | R92C_RCR_CBSSID_BCN));
1983 1.1 nonaka
1984 1.1 nonaka /* Stop Rx of data frames. */
1985 1.1 nonaka urtwn_write_2(sc, R92C_RXFLTMAP2, 0);
1986 1.1 nonaka
1987 1.1 nonaka /* Disable update TSF */
1988 1.1 nonaka urtwn_write_1(sc, R92C_BCN_CTRL,
1989 1.1 nonaka urtwn_read_1(sc, R92C_BCN_CTRL) |
1990 1.1 nonaka R92C_BCN_CTRL_DIS_TSF_UDT0);
1991 1.1 nonaka }
1992 1.1 nonaka
1993 1.1 nonaka /* Make link LED blink during scan. */
1994 1.1 nonaka urtwn_set_led(sc, URTWN_LED_LINK, !sc->ledlink);
1995 1.1 nonaka
1996 1.1 nonaka /* Pause AC Tx queues. */
1997 1.1 nonaka urtwn_write_1(sc, R92C_TXPAUSE,
1998 1.1 nonaka urtwn_read_1(sc, R92C_TXPAUSE) | 0x0f);
1999 1.1 nonaka
2000 1.1 nonaka urtwn_set_chan(sc, ic->ic_curchan,
2001 1.1 nonaka IEEE80211_HTINFO_2NDCHAN_NONE);
2002 1.1 nonaka
2003 1.1 nonaka /* Start periodic scan. */
2004 1.1 nonaka if (!sc->sc_dying)
2005 1.1 nonaka callout_schedule(&sc->sc_scan_to, hz / 5);
2006 1.1 nonaka break;
2007 1.1 nonaka
2008 1.1 nonaka case IEEE80211_S_AUTH:
2009 1.1 nonaka /* Set initial gain under link. */
2010 1.1 nonaka reg = urtwn_bb_read(sc, R92C_OFDM0_AGCCORE1(0));
2011 1.1 nonaka reg = RW(reg, R92C_OFDM0_AGCCORE1_GAIN, 0x32);
2012 1.1 nonaka urtwn_bb_write(sc, R92C_OFDM0_AGCCORE1(0), reg);
2013 1.1 nonaka
2014 1.32 nonaka if (!ISSET(sc->chip, URTWN_CHIP_88E)) {
2015 1.32 nonaka reg = urtwn_bb_read(sc, R92C_OFDM0_AGCCORE1(1));
2016 1.32 nonaka reg = RW(reg, R92C_OFDM0_AGCCORE1_GAIN, 0x32);
2017 1.32 nonaka urtwn_bb_write(sc, R92C_OFDM0_AGCCORE1(1), reg);
2018 1.32 nonaka }
2019 1.1 nonaka
2020 1.1 nonaka /* Set media status to 'No Link'. */
2021 1.1 nonaka urtwn_set_nettype0_msr(sc, R92C_CR_NETTYPE_NOLINK);
2022 1.1 nonaka
2023 1.1 nonaka /* Allow Rx from any BSSID. */
2024 1.1 nonaka urtwn_write_4(sc, R92C_RCR,
2025 1.1 nonaka urtwn_read_4(sc, R92C_RCR) &
2026 1.1 nonaka ~(R92C_RCR_CBSSID_DATA | R92C_RCR_CBSSID_BCN));
2027 1.1 nonaka
2028 1.1 nonaka urtwn_set_chan(sc, ic->ic_curchan,
2029 1.1 nonaka IEEE80211_HTINFO_2NDCHAN_NONE);
2030 1.1 nonaka break;
2031 1.1 nonaka
2032 1.1 nonaka case IEEE80211_S_ASSOC:
2033 1.1 nonaka break;
2034 1.1 nonaka
2035 1.1 nonaka case IEEE80211_S_RUN:
2036 1.1 nonaka ni = ic->ic_bss;
2037 1.1 nonaka
2038 1.1 nonaka /* XXX: Set 20MHz mode */
2039 1.1 nonaka urtwn_set_chan(sc, ic->ic_curchan,
2040 1.1 nonaka IEEE80211_HTINFO_2NDCHAN_NONE);
2041 1.1 nonaka
2042 1.1 nonaka if (ic->ic_opmode == IEEE80211_M_MONITOR) {
2043 1.1 nonaka /* Back to 20MHz mode */
2044 1.13 jmcneill urtwn_set_chan(sc, ic->ic_curchan,
2045 1.1 nonaka IEEE80211_HTINFO_2NDCHAN_NONE);
2046 1.1 nonaka
2047 1.19 christos /* Set media status to 'No Link'. */
2048 1.19 christos urtwn_set_nettype0_msr(sc, R92C_CR_NETTYPE_NOLINK);
2049 1.19 christos
2050 1.1 nonaka /* Enable Rx of data frames. */
2051 1.1 nonaka urtwn_write_2(sc, R92C_RXFLTMAP2, 0xffff);
2052 1.1 nonaka
2053 1.19 christos /* Allow Rx from any BSSID. */
2054 1.19 christos urtwn_write_4(sc, R92C_RCR,
2055 1.19 christos urtwn_read_4(sc, R92C_RCR) &
2056 1.19 christos ~(R92C_RCR_CBSSID_DATA | R92C_RCR_CBSSID_BCN));
2057 1.19 christos
2058 1.19 christos /* Accept Rx data/control/management frames */
2059 1.19 christos urtwn_write_4(sc, R92C_RCR,
2060 1.19 christos urtwn_read_4(sc, R92C_RCR) |
2061 1.19 christos R92C_RCR_ADF | R92C_RCR_ACF | R92C_RCR_AMF);
2062 1.19 christos
2063 1.1 nonaka /* Turn link LED on. */
2064 1.1 nonaka urtwn_set_led(sc, URTWN_LED_LINK, 1);
2065 1.1 nonaka break;
2066 1.1 nonaka }
2067 1.1 nonaka
2068 1.1 nonaka /* Set media status to 'Associated'. */
2069 1.1 nonaka urtwn_set_nettype0_msr(sc, urtwn_get_nettype(sc));
2070 1.1 nonaka
2071 1.1 nonaka /* Set BSSID. */
2072 1.1 nonaka urtwn_write_4(sc, R92C_BSSID + 0, LE_READ_4(&ni->ni_bssid[0]));
2073 1.1 nonaka urtwn_write_4(sc, R92C_BSSID + 4, LE_READ_2(&ni->ni_bssid[4]));
2074 1.1 nonaka
2075 1.1 nonaka if (ic->ic_curmode == IEEE80211_MODE_11B) {
2076 1.1 nonaka urtwn_write_1(sc, R92C_INIRTS_RATE_SEL, 0);
2077 1.1 nonaka } else {
2078 1.1 nonaka /* 802.11b/g */
2079 1.1 nonaka urtwn_write_1(sc, R92C_INIRTS_RATE_SEL, 3);
2080 1.1 nonaka }
2081 1.1 nonaka
2082 1.1 nonaka /* Enable Rx of data frames. */
2083 1.1 nonaka urtwn_write_2(sc, R92C_RXFLTMAP2, 0xffff);
2084 1.1 nonaka
2085 1.1 nonaka /* Set beacon interval. */
2086 1.1 nonaka urtwn_write_2(sc, R92C_BCN_INTERVAL, ni->ni_intval);
2087 1.1 nonaka
2088 1.28 christos msr = urtwn_read_1(sc, R92C_MSR);
2089 1.29 christos msr &= R92C_MSR_MASK;
2090 1.26 christos switch (ic->ic_opmode) {
2091 1.26 christos case IEEE80211_M_STA:
2092 1.1 nonaka /* Allow Rx from our BSSID only. */
2093 1.1 nonaka urtwn_write_4(sc, R92C_RCR,
2094 1.1 nonaka urtwn_read_4(sc, R92C_RCR) |
2095 1.1 nonaka R92C_RCR_CBSSID_DATA | R92C_RCR_CBSSID_BCN);
2096 1.1 nonaka
2097 1.1 nonaka /* Enable TSF synchronization. */
2098 1.1 nonaka urtwn_tsf_sync_enable(sc);
2099 1.27 nonaka
2100 1.28 christos msr |= R92C_MSR_INFRA;
2101 1.27 nonaka break;
2102 1.26 christos case IEEE80211_M_HOSTAP:
2103 1.28 christos urtwn_write_2(sc, R92C_BCNTCFG, 0x000f);
2104 1.26 christos
2105 1.28 christos /* Allow Rx from any BSSID. */
2106 1.28 christos urtwn_write_4(sc, R92C_RCR,
2107 1.28 christos urtwn_read_4(sc, R92C_RCR) &
2108 1.28 christos ~(R92C_RCR_CBSSID_DATA | R92C_RCR_CBSSID_BCN));
2109 1.28 christos
2110 1.28 christos /* Reset TSF timer to zero. */
2111 1.28 christos reg = urtwn_read_4(sc, R92C_TCR);
2112 1.28 christos reg &= ~0x01;
2113 1.28 christos urtwn_write_4(sc, R92C_TCR, reg);
2114 1.28 christos reg |= 0x01;
2115 1.28 christos urtwn_write_4(sc, R92C_TCR, reg);
2116 1.27 nonaka
2117 1.28 christos msr |= R92C_MSR_AP;
2118 1.26 christos break;
2119 1.29 christos default:
2120 1.29 christos msr |= R92C_MSR_ADHOC;
2121 1.29 christos break;
2122 1.28 christos }
2123 1.28 christos urtwn_write_1(sc, R92C_MSR, msr);
2124 1.1 nonaka
2125 1.1 nonaka sifs_time = 10;
2126 1.1 nonaka urtwn_write_1(sc, R92C_SIFS_CCK + 1, sifs_time);
2127 1.1 nonaka urtwn_write_1(sc, R92C_SIFS_OFDM + 1, sifs_time);
2128 1.1 nonaka urtwn_write_1(sc, R92C_SPEC_SIFS + 1, sifs_time);
2129 1.1 nonaka urtwn_write_1(sc, R92C_MAC_SPEC_SIFS + 1, sifs_time);
2130 1.1 nonaka urtwn_write_1(sc, R92C_R2T_SIFS + 1, sifs_time);
2131 1.1 nonaka urtwn_write_1(sc, R92C_T2T_SIFS + 1, sifs_time);
2132 1.1 nonaka
2133 1.57 dholland /* Initialize rate adaptation. */
2134 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_88E) ||
2135 1.49 nat ISSET(sc->chip, URTWN_CHIP_92EU))
2136 1.32 nonaka ni->ni_txrate = ni->ni_rates.rs_nrates - 1;
2137 1.32 nonaka else
2138 1.32 nonaka urtwn_ra_init(sc);
2139 1.1 nonaka
2140 1.1 nonaka /* Turn link LED on. */
2141 1.1 nonaka urtwn_set_led(sc, URTWN_LED_LINK, 1);
2142 1.1 nonaka
2143 1.1 nonaka /* Reset average RSSI. */
2144 1.1 nonaka sc->avg_pwdb = -1;
2145 1.1 nonaka
2146 1.1 nonaka /* Reset temperature calibration state machine. */
2147 1.1 nonaka sc->thcal_state = 0;
2148 1.1 nonaka sc->thcal_lctemp = 0;
2149 1.1 nonaka
2150 1.1 nonaka /* Start periodic calibration. */
2151 1.1 nonaka if (!sc->sc_dying)
2152 1.1 nonaka callout_schedule(&sc->sc_calib_to, hz);
2153 1.1 nonaka break;
2154 1.1 nonaka }
2155 1.1 nonaka
2156 1.1 nonaka (*sc->sc_newstate)(ic, nstate, cmd->arg);
2157 1.1 nonaka
2158 1.12 christos mutex_exit(&sc->sc_write_mtx);
2159 1.1 nonaka splx(s);
2160 1.1 nonaka }
2161 1.1 nonaka
2162 1.1 nonaka static int
2163 1.1 nonaka urtwn_wme_update(struct ieee80211com *ic)
2164 1.1 nonaka {
2165 1.1 nonaka struct urtwn_softc *sc = ic->ic_ifp->if_softc;
2166 1.1 nonaka
2167 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
2168 1.1 nonaka
2169 1.1 nonaka /* don't override default WME values if WME is not actually enabled */
2170 1.1 nonaka if (!(ic->ic_flags & IEEE80211_F_WME))
2171 1.42 skrll return 0;
2172 1.1 nonaka
2173 1.1 nonaka /* Do it in a process context. */
2174 1.1 nonaka urtwn_do_async(sc, urtwn_wme_update_cb, NULL, 0);
2175 1.42 skrll return 0;
2176 1.1 nonaka }
2177 1.1 nonaka
2178 1.1 nonaka static void
2179 1.1 nonaka urtwn_wme_update_cb(struct urtwn_softc *sc, void *arg)
2180 1.1 nonaka {
2181 1.1 nonaka static const uint16_t ac2reg[WME_NUM_AC] = {
2182 1.1 nonaka R92C_EDCA_BE_PARAM,
2183 1.1 nonaka R92C_EDCA_BK_PARAM,
2184 1.1 nonaka R92C_EDCA_VI_PARAM,
2185 1.1 nonaka R92C_EDCA_VO_PARAM
2186 1.1 nonaka };
2187 1.1 nonaka struct ieee80211com *ic = &sc->sc_ic;
2188 1.1 nonaka const struct wmeParams *wmep;
2189 1.1 nonaka int ac, aifs, slottime;
2190 1.1 nonaka int s;
2191 1.1 nonaka
2192 1.1 nonaka DPRINTFN(DBG_FN|DBG_STM, ("%s: %s\n", device_xname(sc->sc_dev),
2193 1.1 nonaka __func__));
2194 1.1 nonaka
2195 1.1 nonaka s = splnet();
2196 1.12 christos mutex_enter(&sc->sc_write_mtx);
2197 1.1 nonaka slottime = (ic->ic_flags & IEEE80211_F_SHSLOT) ? 9 : 20;
2198 1.1 nonaka for (ac = 0; ac < WME_NUM_AC; ac++) {
2199 1.1 nonaka wmep = &ic->ic_wme.wme_chanParams.cap_wmeParams[ac];
2200 1.1 nonaka /* AIFS[AC] = AIFSN[AC] * aSlotTime + aSIFSTime. */
2201 1.1 nonaka aifs = wmep->wmep_aifsn * slottime + 10;
2202 1.1 nonaka urtwn_write_4(sc, ac2reg[ac],
2203 1.1 nonaka SM(R92C_EDCA_PARAM_TXOP, wmep->wmep_txopLimit) |
2204 1.1 nonaka SM(R92C_EDCA_PARAM_ECWMIN, wmep->wmep_logcwmin) |
2205 1.1 nonaka SM(R92C_EDCA_PARAM_ECWMAX, wmep->wmep_logcwmax) |
2206 1.1 nonaka SM(R92C_EDCA_PARAM_AIFS, aifs));
2207 1.1 nonaka }
2208 1.12 christos mutex_exit(&sc->sc_write_mtx);
2209 1.1 nonaka splx(s);
2210 1.1 nonaka }
2211 1.1 nonaka
2212 1.1 nonaka static void
2213 1.1 nonaka urtwn_update_avgrssi(struct urtwn_softc *sc, int rate, int8_t rssi)
2214 1.1 nonaka {
2215 1.1 nonaka int pwdb;
2216 1.1 nonaka
2217 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s: rate=%d, rsst=%d\n",
2218 1.1 nonaka device_xname(sc->sc_dev), __func__, rate, rssi));
2219 1.1 nonaka
2220 1.1 nonaka /* Convert antenna signal to percentage. */
2221 1.1 nonaka if (rssi <= -100 || rssi >= 20)
2222 1.1 nonaka pwdb = 0;
2223 1.1 nonaka else if (rssi >= 0)
2224 1.1 nonaka pwdb = 100;
2225 1.1 nonaka else
2226 1.1 nonaka pwdb = 100 + rssi;
2227 1.32 nonaka if (!ISSET(sc->chip, URTWN_CHIP_88E)) {
2228 1.32 nonaka if (rate <= 3) {
2229 1.32 nonaka /* CCK gain is smaller than OFDM/MCS gain. */
2230 1.32 nonaka pwdb += 6;
2231 1.32 nonaka if (pwdb > 100)
2232 1.32 nonaka pwdb = 100;
2233 1.32 nonaka if (pwdb <= 14)
2234 1.32 nonaka pwdb -= 4;
2235 1.32 nonaka else if (pwdb <= 26)
2236 1.32 nonaka pwdb -= 8;
2237 1.32 nonaka else if (pwdb <= 34)
2238 1.32 nonaka pwdb -= 6;
2239 1.32 nonaka else if (pwdb <= 42)
2240 1.32 nonaka pwdb -= 2;
2241 1.32 nonaka }
2242 1.1 nonaka }
2243 1.1 nonaka if (sc->avg_pwdb == -1) /* Init. */
2244 1.1 nonaka sc->avg_pwdb = pwdb;
2245 1.1 nonaka else if (sc->avg_pwdb < pwdb)
2246 1.1 nonaka sc->avg_pwdb = ((sc->avg_pwdb * 19 + pwdb) / 20) + 1;
2247 1.1 nonaka else
2248 1.1 nonaka sc->avg_pwdb = ((sc->avg_pwdb * 19 + pwdb) / 20);
2249 1.1 nonaka
2250 1.12 christos DPRINTFN(DBG_RF, ("%s: %s: rate=%d rssi=%d PWDB=%d EMA=%d\n",
2251 1.12 christos device_xname(sc->sc_dev), __func__,
2252 1.12 christos rate, rssi, pwdb, sc->avg_pwdb));
2253 1.1 nonaka }
2254 1.1 nonaka
2255 1.1 nonaka static int8_t
2256 1.1 nonaka urtwn_get_rssi(struct urtwn_softc *sc, int rate, void *physt)
2257 1.1 nonaka {
2258 1.1 nonaka static const int8_t cckoff[] = { 16, -12, -26, -46 };
2259 1.1 nonaka struct r92c_rx_phystat *phy;
2260 1.1 nonaka struct r92c_rx_cck *cck;
2261 1.1 nonaka uint8_t rpt;
2262 1.1 nonaka int8_t rssi;
2263 1.1 nonaka
2264 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s: rate=%d\n", device_xname(sc->sc_dev),
2265 1.1 nonaka __func__, rate));
2266 1.1 nonaka
2267 1.1 nonaka if (rate <= 3) {
2268 1.1 nonaka cck = (struct r92c_rx_cck *)physt;
2269 1.1 nonaka if (ISSET(sc->sc_flags, URTWN_FLAG_CCK_HIPWR)) {
2270 1.1 nonaka rpt = (cck->agc_rpt >> 5) & 0x3;
2271 1.1 nonaka rssi = (cck->agc_rpt & 0x1f) << 1;
2272 1.1 nonaka } else {
2273 1.1 nonaka rpt = (cck->agc_rpt >> 6) & 0x3;
2274 1.1 nonaka rssi = cck->agc_rpt & 0x3e;
2275 1.1 nonaka }
2276 1.1 nonaka rssi = cckoff[rpt] - rssi;
2277 1.1 nonaka } else { /* OFDM/HT. */
2278 1.1 nonaka phy = (struct r92c_rx_phystat *)physt;
2279 1.1 nonaka rssi = ((le32toh(phy->phydw1) >> 1) & 0x7f) - 110;
2280 1.1 nonaka }
2281 1.42 skrll return rssi;
2282 1.1 nonaka }
2283 1.1 nonaka
2284 1.32 nonaka static int8_t
2285 1.32 nonaka urtwn_r88e_get_rssi(struct urtwn_softc *sc, int rate, void *physt)
2286 1.32 nonaka {
2287 1.32 nonaka struct r92c_rx_phystat *phy;
2288 1.32 nonaka struct r88e_rx_cck *cck;
2289 1.32 nonaka uint8_t cck_agc_rpt, lna_idx, vga_idx;
2290 1.32 nonaka int8_t rssi;
2291 1.32 nonaka
2292 1.32 nonaka DPRINTFN(DBG_FN, ("%s: %s: rate=%d\n", device_xname(sc->sc_dev),
2293 1.32 nonaka __func__, rate));
2294 1.32 nonaka
2295 1.32 nonaka rssi = 0;
2296 1.32 nonaka if (rate <= 3) {
2297 1.32 nonaka cck = (struct r88e_rx_cck *)physt;
2298 1.32 nonaka cck_agc_rpt = cck->agc_rpt;
2299 1.32 nonaka lna_idx = (cck_agc_rpt & 0xe0) >> 5;
2300 1.32 nonaka vga_idx = cck_agc_rpt & 0x1f;
2301 1.32 nonaka switch (lna_idx) {
2302 1.32 nonaka case 7:
2303 1.32 nonaka if (vga_idx <= 27)
2304 1.32 nonaka rssi = -100 + 2* (27 - vga_idx);
2305 1.32 nonaka else
2306 1.32 nonaka rssi = -100;
2307 1.32 nonaka break;
2308 1.32 nonaka case 6:
2309 1.32 nonaka rssi = -48 + 2 * (2 - vga_idx);
2310 1.32 nonaka break;
2311 1.32 nonaka case 5:
2312 1.32 nonaka rssi = -42 + 2 * (7 - vga_idx);
2313 1.32 nonaka break;
2314 1.32 nonaka case 4:
2315 1.32 nonaka rssi = -36 + 2 * (7 - vga_idx);
2316 1.32 nonaka break;
2317 1.32 nonaka case 3:
2318 1.32 nonaka rssi = -24 + 2 * (7 - vga_idx);
2319 1.32 nonaka break;
2320 1.32 nonaka case 2:
2321 1.32 nonaka rssi = -12 + 2 * (5 - vga_idx);
2322 1.32 nonaka break;
2323 1.32 nonaka case 1:
2324 1.32 nonaka rssi = 8 - (2 * vga_idx);
2325 1.32 nonaka break;
2326 1.32 nonaka case 0:
2327 1.32 nonaka rssi = 14 - (2 * vga_idx);
2328 1.32 nonaka break;
2329 1.32 nonaka }
2330 1.32 nonaka rssi += 6;
2331 1.32 nonaka } else { /* OFDM/HT. */
2332 1.32 nonaka phy = (struct r92c_rx_phystat *)physt;
2333 1.32 nonaka rssi = ((le32toh(phy->phydw1) >> 1) & 0x7f) - 110;
2334 1.32 nonaka }
2335 1.42 skrll return rssi;
2336 1.32 nonaka }
2337 1.32 nonaka
2338 1.1 nonaka static void
2339 1.1 nonaka urtwn_rx_frame(struct urtwn_softc *sc, uint8_t *buf, int pktlen)
2340 1.1 nonaka {
2341 1.1 nonaka struct ieee80211com *ic = &sc->sc_ic;
2342 1.1 nonaka struct ifnet *ifp = ic->ic_ifp;
2343 1.1 nonaka struct ieee80211_frame *wh;
2344 1.1 nonaka struct ieee80211_node *ni;
2345 1.60 thorpej struct r92c_rx_desc_usb *stat;
2346 1.1 nonaka uint32_t rxdw0, rxdw3;
2347 1.1 nonaka struct mbuf *m;
2348 1.1 nonaka uint8_t rate;
2349 1.1 nonaka int8_t rssi = 0;
2350 1.1 nonaka int s, infosz;
2351 1.1 nonaka
2352 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s: buf=%p, pktlen=%d\n",
2353 1.1 nonaka device_xname(sc->sc_dev), __func__, buf, pktlen));
2354 1.1 nonaka
2355 1.60 thorpej stat = (struct r92c_rx_desc_usb *)buf;
2356 1.1 nonaka rxdw0 = le32toh(stat->rxdw0);
2357 1.1 nonaka rxdw3 = le32toh(stat->rxdw3);
2358 1.1 nonaka
2359 1.1 nonaka if (__predict_false(rxdw0 & (R92C_RXDW0_CRCERR | R92C_RXDW0_ICVERR))) {
2360 1.1 nonaka /*
2361 1.1 nonaka * This should not happen since we setup our Rx filter
2362 1.1 nonaka * to not receive these frames.
2363 1.1 nonaka */
2364 1.1 nonaka DPRINTFN(DBG_RX, ("%s: %s: CRC error\n",
2365 1.1 nonaka device_xname(sc->sc_dev), __func__));
2366 1.1 nonaka ifp->if_ierrors++;
2367 1.1 nonaka return;
2368 1.1 nonaka }
2369 1.19 christos /*
2370 1.19 christos * XXX: This will drop most control packets. Do we really
2371 1.19 christos * want this in IEEE80211_M_MONITOR mode?
2372 1.19 christos */
2373 1.22 christos // if (__predict_false(pktlen < (int)sizeof(*wh))) {
2374 1.22 christos if (__predict_false(pktlen < (int)sizeof(struct ieee80211_frame_ack))) {
2375 1.1 nonaka DPRINTFN(DBG_RX, ("%s: %s: packet too short %d\n",
2376 1.1 nonaka device_xname(sc->sc_dev), __func__, pktlen));
2377 1.1 nonaka ic->ic_stats.is_rx_tooshort++;
2378 1.1 nonaka ifp->if_ierrors++;
2379 1.1 nonaka return;
2380 1.1 nonaka }
2381 1.1 nonaka if (__predict_false(pktlen > MCLBYTES)) {
2382 1.1 nonaka DPRINTFN(DBG_RX, ("%s: %s: packet too big %d\n",
2383 1.1 nonaka device_xname(sc->sc_dev), __func__, pktlen));
2384 1.1 nonaka ifp->if_ierrors++;
2385 1.1 nonaka return;
2386 1.1 nonaka }
2387 1.1 nonaka
2388 1.1 nonaka rate = MS(rxdw3, R92C_RXDW3_RATE);
2389 1.1 nonaka infosz = MS(rxdw0, R92C_RXDW0_INFOSZ) * 8;
2390 1.1 nonaka
2391 1.1 nonaka /* Get RSSI from PHY status descriptor if present. */
2392 1.1 nonaka if (infosz != 0 && (rxdw0 & R92C_RXDW0_PHYST)) {
2393 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_92C))
2394 1.32 nonaka rssi = urtwn_r88e_get_rssi(sc, rate, &stat[1]);
2395 1.32 nonaka else
2396 1.32 nonaka rssi = urtwn_get_rssi(sc, rate, &stat[1]);
2397 1.1 nonaka /* Update our average RSSI. */
2398 1.1 nonaka urtwn_update_avgrssi(sc, rate, rssi);
2399 1.1 nonaka }
2400 1.1 nonaka
2401 1.1 nonaka DPRINTFN(DBG_RX, ("%s: %s: Rx frame len=%d rate=%d infosz=%d rssi=%d\n",
2402 1.1 nonaka device_xname(sc->sc_dev), __func__, pktlen, rate, infosz, rssi));
2403 1.1 nonaka
2404 1.1 nonaka MGETHDR(m, M_DONTWAIT, MT_DATA);
2405 1.1 nonaka if (__predict_false(m == NULL)) {
2406 1.1 nonaka aprint_error_dev(sc->sc_dev, "couldn't allocate rx mbuf\n");
2407 1.1 nonaka ic->ic_stats.is_rx_nobuf++;
2408 1.1 nonaka ifp->if_ierrors++;
2409 1.1 nonaka return;
2410 1.1 nonaka }
2411 1.1 nonaka if (pktlen > (int)MHLEN) {
2412 1.1 nonaka MCLGET(m, M_DONTWAIT);
2413 1.1 nonaka if (__predict_false(!(m->m_flags & M_EXT))) {
2414 1.1 nonaka aprint_error_dev(sc->sc_dev,
2415 1.1 nonaka "couldn't allocate rx mbuf cluster\n");
2416 1.1 nonaka m_freem(m);
2417 1.1 nonaka ic->ic_stats.is_rx_nobuf++;
2418 1.1 nonaka ifp->if_ierrors++;
2419 1.1 nonaka return;
2420 1.1 nonaka }
2421 1.1 nonaka }
2422 1.1 nonaka
2423 1.1 nonaka /* Finalize mbuf. */
2424 1.45 ozaki m_set_rcvif(m, ifp);
2425 1.1 nonaka wh = (struct ieee80211_frame *)((uint8_t *)&stat[1] + infosz);
2426 1.1 nonaka memcpy(mtod(m, uint8_t *), wh, pktlen);
2427 1.1 nonaka m->m_pkthdr.len = m->m_len = pktlen;
2428 1.1 nonaka
2429 1.1 nonaka s = splnet();
2430 1.1 nonaka if (__predict_false(sc->sc_drvbpf != NULL)) {
2431 1.1 nonaka struct urtwn_rx_radiotap_header *tap = &sc->sc_rxtap;
2432 1.1 nonaka
2433 1.19 christos tap->wr_flags = 0;
2434 1.1 nonaka if (!(rxdw3 & R92C_RXDW3_HT)) {
2435 1.1 nonaka switch (rate) {
2436 1.1 nonaka /* CCK. */
2437 1.1 nonaka case 0: tap->wr_rate = 2; break;
2438 1.1 nonaka case 1: tap->wr_rate = 4; break;
2439 1.1 nonaka case 2: tap->wr_rate = 11; break;
2440 1.1 nonaka case 3: tap->wr_rate = 22; break;
2441 1.1 nonaka /* OFDM. */
2442 1.1 nonaka case 4: tap->wr_rate = 12; break;
2443 1.1 nonaka case 5: tap->wr_rate = 18; break;
2444 1.1 nonaka case 6: tap->wr_rate = 24; break;
2445 1.1 nonaka case 7: tap->wr_rate = 36; break;
2446 1.1 nonaka case 8: tap->wr_rate = 48; break;
2447 1.1 nonaka case 9: tap->wr_rate = 72; break;
2448 1.1 nonaka case 10: tap->wr_rate = 96; break;
2449 1.1 nonaka case 11: tap->wr_rate = 108; break;
2450 1.1 nonaka }
2451 1.1 nonaka } else if (rate >= 12) { /* MCS0~15. */
2452 1.1 nonaka /* Bit 7 set means HT MCS instead of rate. */
2453 1.1 nonaka tap->wr_rate = 0x80 | (rate - 12);
2454 1.1 nonaka }
2455 1.1 nonaka tap->wr_dbm_antsignal = rssi;
2456 1.13 jmcneill tap->wr_chan_freq = htole16(ic->ic_curchan->ic_freq);
2457 1.13 jmcneill tap->wr_chan_flags = htole16(ic->ic_curchan->ic_flags);
2458 1.1 nonaka
2459 1.59 msaitoh bpf_mtap2(sc->sc_drvbpf, tap, sc->sc_rxtap_len, m, BPF_D_IN);
2460 1.1 nonaka }
2461 1.1 nonaka
2462 1.1 nonaka ni = ieee80211_find_rxnode(ic, (struct ieee80211_frame_min *)wh);
2463 1.1 nonaka
2464 1.1 nonaka /* push the frame up to the 802.11 stack */
2465 1.1 nonaka ieee80211_input(ic, m, ni, rssi, 0);
2466 1.1 nonaka
2467 1.1 nonaka /* Node is no longer needed. */
2468 1.1 nonaka ieee80211_free_node(ni);
2469 1.1 nonaka
2470 1.1 nonaka splx(s);
2471 1.1 nonaka }
2472 1.1 nonaka
2473 1.1 nonaka static void
2474 1.42 skrll urtwn_rxeof(struct usbd_xfer *xfer, void *priv, usbd_status status)
2475 1.1 nonaka {
2476 1.1 nonaka struct urtwn_rx_data *data = priv;
2477 1.1 nonaka struct urtwn_softc *sc = data->sc;
2478 1.60 thorpej struct r92c_rx_desc_usb *stat;
2479 1.49 nat size_t pidx = data->pidx;
2480 1.1 nonaka uint32_t rxdw0;
2481 1.1 nonaka uint8_t *buf;
2482 1.1 nonaka int len, totlen, pktlen, infosz, npkts;
2483 1.1 nonaka
2484 1.1 nonaka DPRINTFN(DBG_FN|DBG_RX, ("%s: %s: status=%d\n",
2485 1.1 nonaka device_xname(sc->sc_dev), __func__, status));
2486 1.1 nonaka
2487 1.49 nat mutex_enter(&sc->sc_rx_mtx);
2488 1.49 nat TAILQ_REMOVE(&sc->rx_free_list[pidx], data, next);
2489 1.49 nat TAILQ_INSERT_TAIL(&sc->rx_free_list[pidx], data, next);
2490 1.49 nat /* Put this Rx buffer back to our free list. */
2491 1.49 nat mutex_exit(&sc->sc_rx_mtx);
2492 1.49 nat
2493 1.1 nonaka if (__predict_false(status != USBD_NORMAL_COMPLETION)) {
2494 1.1 nonaka if (status == USBD_STALLED)
2495 1.49 nat usbd_clear_endpoint_stall_async(sc->rx_pipe[pidx]);
2496 1.1 nonaka else if (status != USBD_CANCELLED)
2497 1.1 nonaka goto resubmit;
2498 1.1 nonaka return;
2499 1.1 nonaka }
2500 1.1 nonaka usbd_get_xfer_status(xfer, NULL, NULL, &len, NULL);
2501 1.1 nonaka
2502 1.1 nonaka if (__predict_false(len < (int)sizeof(*stat))) {
2503 1.1 nonaka DPRINTFN(DBG_RX, ("%s: %s: xfer too short %d\n",
2504 1.1 nonaka device_xname(sc->sc_dev), __func__, len));
2505 1.1 nonaka goto resubmit;
2506 1.1 nonaka }
2507 1.1 nonaka buf = data->buf;
2508 1.1 nonaka
2509 1.1 nonaka /* Get the number of encapsulated frames. */
2510 1.60 thorpej stat = (struct r92c_rx_desc_usb *)buf;
2511 1.1 nonaka npkts = MS(le32toh(stat->rxdw2), R92C_RXDW2_PKTCNT);
2512 1.1 nonaka DPRINTFN(DBG_RX, ("%s: %s: Rx %d frames in one chunk\n",
2513 1.1 nonaka device_xname(sc->sc_dev), __func__, npkts));
2514 1.1 nonaka
2515 1.70 msaitoh if (npkts != 0)
2516 1.70 msaitoh rnd_add_uint32(&sc->rnd_source, npkts);
2517 1.70 msaitoh
2518 1.1 nonaka /* Process all of them. */
2519 1.1 nonaka while (npkts-- > 0) {
2520 1.1 nonaka if (__predict_false(len < (int)sizeof(*stat))) {
2521 1.1 nonaka DPRINTFN(DBG_RX,
2522 1.1 nonaka ("%s: %s: len(%d) is short than header\n",
2523 1.1 nonaka device_xname(sc->sc_dev), __func__, len));
2524 1.1 nonaka break;
2525 1.1 nonaka }
2526 1.60 thorpej stat = (struct r92c_rx_desc_usb *)buf;
2527 1.1 nonaka rxdw0 = le32toh(stat->rxdw0);
2528 1.1 nonaka
2529 1.1 nonaka pktlen = MS(rxdw0, R92C_RXDW0_PKTLEN);
2530 1.1 nonaka if (__predict_false(pktlen == 0)) {
2531 1.1 nonaka DPRINTFN(DBG_RX, ("%s: %s: pktlen is 0 byte\n",
2532 1.1 nonaka device_xname(sc->sc_dev), __func__));
2533 1.19 christos break;
2534 1.1 nonaka }
2535 1.1 nonaka
2536 1.1 nonaka infosz = MS(rxdw0, R92C_RXDW0_INFOSZ) * 8;
2537 1.1 nonaka
2538 1.1 nonaka /* Make sure everything fits in xfer. */
2539 1.1 nonaka totlen = sizeof(*stat) + infosz + pktlen;
2540 1.1 nonaka if (__predict_false(totlen > len)) {
2541 1.1 nonaka DPRINTFN(DBG_RX, ("%s: %s: pktlen %d(%d+%d+%d) > %d\n",
2542 1.1 nonaka device_xname(sc->sc_dev), __func__, totlen,
2543 1.1 nonaka (int)sizeof(*stat), infosz, pktlen, len));
2544 1.1 nonaka break;
2545 1.1 nonaka }
2546 1.1 nonaka
2547 1.1 nonaka /* Process 802.11 frame. */
2548 1.1 nonaka urtwn_rx_frame(sc, buf, pktlen);
2549 1.1 nonaka
2550 1.1 nonaka /* Next chunk is 128-byte aligned. */
2551 1.1 nonaka totlen = roundup2(totlen, 128);
2552 1.1 nonaka buf += totlen;
2553 1.1 nonaka len -= totlen;
2554 1.1 nonaka }
2555 1.1 nonaka
2556 1.1 nonaka resubmit:
2557 1.1 nonaka /* Setup a new transfer. */
2558 1.42 skrll usbd_setup_xfer(xfer, data, data->buf, URTWN_RXBUFSZ,
2559 1.42 skrll USBD_SHORT_XFER_OK, USBD_NO_TIMEOUT, urtwn_rxeof);
2560 1.1 nonaka (void)usbd_transfer(xfer);
2561 1.1 nonaka }
2562 1.1 nonaka
2563 1.1 nonaka static void
2564 1.42 skrll urtwn_txeof(struct usbd_xfer *xfer, void *priv, usbd_status status)
2565 1.1 nonaka {
2566 1.1 nonaka struct urtwn_tx_data *data = priv;
2567 1.1 nonaka struct urtwn_softc *sc = data->sc;
2568 1.1 nonaka struct ifnet *ifp = &sc->sc_if;
2569 1.42 skrll size_t pidx = data->pidx;
2570 1.1 nonaka int s;
2571 1.1 nonaka
2572 1.1 nonaka DPRINTFN(DBG_FN|DBG_TX, ("%s: %s: status=%d\n",
2573 1.1 nonaka device_xname(sc->sc_dev), __func__, status));
2574 1.1 nonaka
2575 1.1 nonaka mutex_enter(&sc->sc_tx_mtx);
2576 1.1 nonaka /* Put this Tx buffer back to our free list. */
2577 1.42 skrll TAILQ_INSERT_TAIL(&sc->tx_free_list[pidx], data, next);
2578 1.1 nonaka mutex_exit(&sc->sc_tx_mtx);
2579 1.1 nonaka
2580 1.16 jmcneill s = splnet();
2581 1.16 jmcneill sc->tx_timer = 0;
2582 1.16 jmcneill ifp->if_flags &= ~IFF_OACTIVE;
2583 1.16 jmcneill
2584 1.1 nonaka if (__predict_false(status != USBD_NORMAL_COMPLETION)) {
2585 1.1 nonaka if (status != USBD_NOT_STARTED && status != USBD_CANCELLED) {
2586 1.42 skrll if (status == USBD_STALLED) {
2587 1.42 skrll struct usbd_pipe *pipe = sc->tx_pipe[pidx];
2588 1.20 christos usbd_clear_endpoint_stall_async(pipe);
2589 1.42 skrll }
2590 1.49 nat printf("ERROR1\n");
2591 1.1 nonaka ifp->if_oerrors++;
2592 1.1 nonaka }
2593 1.16 jmcneill splx(s);
2594 1.1 nonaka return;
2595 1.1 nonaka }
2596 1.1 nonaka
2597 1.21 christos ifp->if_opackets++;
2598 1.16 jmcneill urtwn_start(ifp);
2599 1.49 nat splx(s);
2600 1.1 nonaka
2601 1.1 nonaka }
2602 1.1 nonaka
2603 1.1 nonaka static int
2604 1.12 christos urtwn_tx(struct urtwn_softc *sc, struct mbuf *m, struct ieee80211_node *ni,
2605 1.12 christos struct urtwn_tx_data *data)
2606 1.1 nonaka {
2607 1.1 nonaka struct ieee80211com *ic = &sc->sc_ic;
2608 1.1 nonaka struct ieee80211_frame *wh;
2609 1.1 nonaka struct ieee80211_key *k = NULL;
2610 1.60 thorpej struct r92c_tx_desc_usb *txd;
2611 1.49 nat size_t i, padsize, xferlen, txd_len;
2612 1.1 nonaka uint16_t seq, sum;
2613 1.42 skrll uint8_t raid, type, tid;
2614 1.22 christos int s, hasqos, error;
2615 1.1 nonaka
2616 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
2617 1.1 nonaka
2618 1.1 nonaka wh = mtod(m, struct ieee80211_frame *);
2619 1.1 nonaka type = wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK;
2620 1.49 nat txd_len = sizeof(*txd);
2621 1.49 nat
2622 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_92EU))
2623 1.49 nat txd_len = 32;
2624 1.1 nonaka
2625 1.1 nonaka if (wh->i_fc[1] & IEEE80211_FC1_WEP) {
2626 1.1 nonaka k = ieee80211_crypto_encap(ic, ni, m);
2627 1.12 christos if (k == NULL)
2628 1.12 christos return ENOBUFS;
2629 1.12 christos
2630 1.1 nonaka /* packet header may have moved, reset our local pointer */
2631 1.1 nonaka wh = mtod(m, struct ieee80211_frame *);
2632 1.1 nonaka }
2633 1.1 nonaka
2634 1.1 nonaka if (__predict_false(sc->sc_drvbpf != NULL)) {
2635 1.1 nonaka struct urtwn_tx_radiotap_header *tap = &sc->sc_txtap;
2636 1.1 nonaka
2637 1.1 nonaka tap->wt_flags = 0;
2638 1.14 jmcneill tap->wt_chan_freq = htole16(ic->ic_curchan->ic_freq);
2639 1.14 jmcneill tap->wt_chan_flags = htole16(ic->ic_curchan->ic_flags);
2640 1.1 nonaka if (wh->i_fc[1] & IEEE80211_FC1_WEP)
2641 1.1 nonaka tap->wt_flags |= IEEE80211_RADIOTAP_F_WEP;
2642 1.1 nonaka
2643 1.19 christos /* XXX: set tap->wt_rate? */
2644 1.19 christos
2645 1.59 msaitoh bpf_mtap2(sc->sc_drvbpf, tap, sc->sc_txtap_len, m, BPF_D_OUT);
2646 1.1 nonaka }
2647 1.1 nonaka
2648 1.42 skrll /* non-qos data frames */
2649 1.42 skrll tid = R92C_TXDW1_QSEL_BE;
2650 1.23 christos if ((hasqos = ieee80211_has_qos(wh))) {
2651 1.1 nonaka /* data frames in 11n mode */
2652 1.1 nonaka struct ieee80211_qosframe *qwh = (void *)wh;
2653 1.1 nonaka tid = qwh->i_qos[0] & IEEE80211_QOS_TID;
2654 1.1 nonaka } else if (type != IEEE80211_FC0_TYPE_DATA) {
2655 1.42 skrll tid = R92C_TXDW1_QSEL_MGNT;
2656 1.1 nonaka }
2657 1.1 nonaka
2658 1.49 nat if (((txd_len + m->m_pkthdr.len) % 64) == 0) /* XXX: 64 */
2659 1.1 nonaka padsize = 8;
2660 1.1 nonaka else
2661 1.1 nonaka padsize = 0;
2662 1.1 nonaka
2663 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_92EU))
2664 1.49 nat padsize = 0;
2665 1.49 nat
2666 1.1 nonaka /* Fill Tx descriptor. */
2667 1.60 thorpej txd = (struct r92c_tx_desc_usb *)data->buf;
2668 1.49 nat memset(txd, 0, txd_len + padsize);
2669 1.1 nonaka
2670 1.1 nonaka txd->txdw0 |= htole32(
2671 1.1 nonaka SM(R92C_TXDW0_PKTLEN, m->m_pkthdr.len) |
2672 1.49 nat SM(R92C_TXDW0_OFFSET, txd_len));
2673 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_92EU)) {
2674 1.49 nat txd->txdw0 |= htole32(
2675 1.49 nat R92C_TXDW0_OWN | R92C_TXDW0_FSG | R92C_TXDW0_LSG);
2676 1.49 nat }
2677 1.1 nonaka
2678 1.1 nonaka if (IEEE80211_IS_MULTICAST(wh->i_addr1))
2679 1.1 nonaka txd->txdw0 |= htole32(R92C_TXDW0_BMCAST);
2680 1.1 nonaka
2681 1.1 nonaka /* fix pad field */
2682 1.1 nonaka if (padsize > 0) {
2683 1.22 christos DPRINTFN(DBG_TX, ("%s: %s: padding: size=%zd\n",
2684 1.1 nonaka device_xname(sc->sc_dev), __func__, padsize));
2685 1.1 nonaka txd->txdw1 |= htole32(SM(R92C_TXDW1_PKTOFF, (padsize / 8)));
2686 1.1 nonaka }
2687 1.1 nonaka
2688 1.1 nonaka if (!IEEE80211_IS_MULTICAST(wh->i_addr1) &&
2689 1.1 nonaka type == IEEE80211_FC0_TYPE_DATA) {
2690 1.1 nonaka if (ic->ic_curmode == IEEE80211_MODE_11B)
2691 1.1 nonaka raid = R92C_RAID_11B;
2692 1.1 nonaka else
2693 1.1 nonaka raid = R92C_RAID_11BG;
2694 1.1 nonaka DPRINTFN(DBG_TX,
2695 1.1 nonaka ("%s: %s: data packet: tid=%d, raid=%d\n",
2696 1.1 nonaka device_xname(sc->sc_dev), __func__, tid, raid));
2697 1.1 nonaka
2698 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_92C)) {
2699 1.32 nonaka txd->txdw1 |= htole32(
2700 1.60 thorpej SM(R88E_TXDW1_MACID, RTWN_MACID_BSS) |
2701 1.32 nonaka SM(R92C_TXDW1_QSEL, tid) |
2702 1.32 nonaka SM(R92C_TXDW1_RAID, raid) |
2703 1.32 nonaka R92C_TXDW1_AGGBK);
2704 1.32 nonaka } else
2705 1.32 nonaka txd->txdw1 |= htole32(
2706 1.60 thorpej SM(R92C_TXDW1_MACID, RTWN_MACID_BSS) |
2707 1.32 nonaka SM(R92C_TXDW1_QSEL, tid) |
2708 1.32 nonaka SM(R92C_TXDW1_RAID, raid) |
2709 1.32 nonaka R92C_TXDW1_AGGBK);
2710 1.1 nonaka
2711 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_88E))
2712 1.49 nat txd->txdw2 |= htole32(R88E_TXDW2_AGGBK);
2713 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_92EU))
2714 1.49 nat txd->txdw3 |= htole32(R92E_TXDW3_AGGBK);
2715 1.49 nat
2716 1.1 nonaka if (hasqos) {
2717 1.1 nonaka txd->txdw4 |= htole32(R92C_TXDW4_QOS);
2718 1.1 nonaka }
2719 1.1 nonaka
2720 1.1 nonaka if (ic->ic_flags & IEEE80211_F_USEPROT) {
2721 1.1 nonaka /* for 11g */
2722 1.1 nonaka if (ic->ic_protmode == IEEE80211_PROT_CTSONLY) {
2723 1.1 nonaka txd->txdw4 |= htole32(R92C_TXDW4_CTS2SELF |
2724 1.1 nonaka R92C_TXDW4_HWRTSEN);
2725 1.1 nonaka } else if (ic->ic_protmode == IEEE80211_PROT_RTSCTS) {
2726 1.1 nonaka txd->txdw4 |= htole32(R92C_TXDW4_RTSEN |
2727 1.1 nonaka R92C_TXDW4_HWRTSEN);
2728 1.1 nonaka }
2729 1.1 nonaka }
2730 1.1 nonaka /* Send RTS at OFDM24. */
2731 1.1 nonaka txd->txdw4 |= htole32(SM(R92C_TXDW4_RTSRATE, 8));
2732 1.1 nonaka txd->txdw5 |= htole32(0x0001ff00);
2733 1.1 nonaka /* Send data at OFDM54. */
2734 1.32 nonaka if (ISSET(sc->chip, URTWN_CHIP_88E))
2735 1.32 nonaka txd->txdw5 |= htole32(0x13 & 0x3f);
2736 1.32 nonaka else
2737 1.32 nonaka txd->txdw5 |= htole32(SM(R92C_TXDW5_DATARATE, 11));
2738 1.1 nonaka } else if (type == IEEE80211_FC0_TYPE_MGT) {
2739 1.1 nonaka DPRINTFN(DBG_TX, ("%s: %s: mgmt packet\n",
2740 1.1 nonaka device_xname(sc->sc_dev), __func__));
2741 1.1 nonaka txd->txdw1 |= htole32(
2742 1.60 thorpej SM(R92C_TXDW1_MACID, RTWN_MACID_BSS) |
2743 1.1 nonaka SM(R92C_TXDW1_QSEL, R92C_TXDW1_QSEL_MGNT) |
2744 1.1 nonaka SM(R92C_TXDW1_RAID, R92C_RAID_11B));
2745 1.1 nonaka
2746 1.1 nonaka /* Force CCK1. */
2747 1.1 nonaka txd->txdw4 |= htole32(R92C_TXDW4_DRVRATE);
2748 1.1 nonaka /* Use 1Mbps */
2749 1.1 nonaka txd->txdw5 |= htole32(SM(R92C_TXDW5_DATARATE, 0));
2750 1.1 nonaka } else {
2751 1.1 nonaka /* broadcast or multicast packets */
2752 1.1 nonaka DPRINTFN(DBG_TX, ("%s: %s: bc or mc packet\n",
2753 1.1 nonaka device_xname(sc->sc_dev), __func__));
2754 1.1 nonaka txd->txdw1 |= htole32(
2755 1.60 thorpej SM(R92C_TXDW1_MACID, RTWN_MACID_BC) |
2756 1.1 nonaka SM(R92C_TXDW1_RAID, R92C_RAID_11B));
2757 1.1 nonaka
2758 1.1 nonaka /* Force CCK1. */
2759 1.1 nonaka txd->txdw4 |= htole32(R92C_TXDW4_DRVRATE);
2760 1.1 nonaka /* Use 1Mbps */
2761 1.1 nonaka txd->txdw5 |= htole32(SM(R92C_TXDW5_DATARATE, 0));
2762 1.1 nonaka }
2763 1.1 nonaka /* Set sequence number */
2764 1.1 nonaka seq = LE_READ_2(&wh->i_seq[0]) >> IEEE80211_SEQ_SEQ_SHIFT;
2765 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_92EU)) {
2766 1.49 nat txd->txdseq |= htole16(seq);
2767 1.1 nonaka
2768 1.49 nat if (!hasqos) {
2769 1.49 nat /* Use HW sequence numbering for non-QoS frames. */
2770 1.49 nat txd->txdw4 |= htole32(R92C_TXDW4_HWSEQ);
2771 1.49 nat txd->txdseq |= htole16(R92C_HWSEQ_EN);
2772 1.49 nat }
2773 1.49 nat } else {
2774 1.49 nat txd->txdseq2 |= htole16((seq & R92E_HWSEQ_MASK) <<
2775 1.49 nat R92E_HWSEQ_SHIFT);
2776 1.49 nat if (!hasqos) {
2777 1.49 nat /* Use HW sequence numbering for non-QoS frames. */
2778 1.49 nat txd->txdw4 |= htole32(R92C_TXDW4_HWSEQ);
2779 1.49 nat txd->txdw7 |= htole16(R92C_HWSEQ_EN);
2780 1.49 nat }
2781 1.1 nonaka }
2782 1.1 nonaka
2783 1.1 nonaka /* Compute Tx descriptor checksum. */
2784 1.1 nonaka sum = 0;
2785 1.49 nat for (i = 0; i < R92C_TXDESC_SUMSIZE / 2; i++)
2786 1.1 nonaka sum ^= ((uint16_t *)txd)[i];
2787 1.1 nonaka txd->txdsum = sum; /* NB: already little endian. */
2788 1.1 nonaka
2789 1.49 nat xferlen = txd_len + m->m_pkthdr.len + padsize;
2790 1.49 nat m_copydata(m, 0, m->m_pkthdr.len, (char *)&txd[0] + txd_len + padsize);
2791 1.1 nonaka
2792 1.1 nonaka s = splnet();
2793 1.42 skrll usbd_setup_xfer(data->xfer, data, data->buf, xferlen,
2794 1.42 skrll USBD_FORCE_SHORT_XFER, URTWN_TX_TIMEOUT,
2795 1.1 nonaka urtwn_txeof);
2796 1.1 nonaka error = usbd_transfer(data->xfer);
2797 1.1 nonaka if (__predict_false(error != USBD_NORMAL_COMPLETION &&
2798 1.1 nonaka error != USBD_IN_PROGRESS)) {
2799 1.1 nonaka splx(s);
2800 1.1 nonaka DPRINTFN(DBG_TX, ("%s: %s: transfer failed %d\n",
2801 1.1 nonaka device_xname(sc->sc_dev), __func__, error));
2802 1.12 christos return error;
2803 1.1 nonaka }
2804 1.1 nonaka splx(s);
2805 1.12 christos return 0;
2806 1.1 nonaka }
2807 1.1 nonaka
2808 1.42 skrll struct urtwn_tx_data *
2809 1.42 skrll urtwn_get_tx_data(struct urtwn_softc *sc, size_t pidx)
2810 1.42 skrll {
2811 1.42 skrll struct urtwn_tx_data *data = NULL;
2812 1.42 skrll
2813 1.42 skrll mutex_enter(&sc->sc_tx_mtx);
2814 1.42 skrll if (!TAILQ_EMPTY(&sc->tx_free_list[pidx])) {
2815 1.42 skrll data = TAILQ_FIRST(&sc->tx_free_list[pidx]);
2816 1.42 skrll TAILQ_REMOVE(&sc->tx_free_list[pidx], data, next);
2817 1.42 skrll }
2818 1.42 skrll mutex_exit(&sc->sc_tx_mtx);
2819 1.42 skrll
2820 1.42 skrll return data;
2821 1.42 skrll }
2822 1.42 skrll
2823 1.1 nonaka static void
2824 1.1 nonaka urtwn_start(struct ifnet *ifp)
2825 1.1 nonaka {
2826 1.1 nonaka struct urtwn_softc *sc = ifp->if_softc;
2827 1.1 nonaka struct ieee80211com *ic = &sc->sc_ic;
2828 1.12 christos struct urtwn_tx_data *data;
2829 1.1 nonaka struct ether_header *eh;
2830 1.1 nonaka struct ieee80211_node *ni;
2831 1.1 nonaka struct mbuf *m;
2832 1.1 nonaka
2833 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
2834 1.1 nonaka
2835 1.1 nonaka if ((ifp->if_flags & (IFF_RUNNING | IFF_OACTIVE)) != IFF_RUNNING)
2836 1.1 nonaka return;
2837 1.1 nonaka
2838 1.12 christos data = NULL;
2839 1.1 nonaka for (;;) {
2840 1.42 skrll /* Send pending management frames first. */
2841 1.42 skrll IF_POLL(&ic->ic_mgtq, m);
2842 1.42 skrll if (m != NULL) {
2843 1.42 skrll /* Use AC_VO for management frames. */
2844 1.17 jmcneill
2845 1.42 skrll data = urtwn_get_tx_data(sc, sc->ac2idx[WME_AC_VO]);
2846 1.1 nonaka
2847 1.42 skrll if (data == NULL) {
2848 1.42 skrll ifp->if_flags |= IFF_OACTIVE;
2849 1.42 skrll DPRINTFN(DBG_TX, ("%s: empty tx_free_list\n",
2850 1.42 skrll device_xname(sc->sc_dev)));
2851 1.42 skrll return;
2852 1.42 skrll }
2853 1.42 skrll IF_DEQUEUE(&ic->ic_mgtq, m);
2854 1.43 ozaki ni = M_GETCTX(m, struct ieee80211_node *);
2855 1.44 ozaki M_CLEARCTX(m);
2856 1.1 nonaka goto sendit;
2857 1.1 nonaka }
2858 1.1 nonaka if (ic->ic_state != IEEE80211_S_RUN)
2859 1.1 nonaka break;
2860 1.1 nonaka
2861 1.1 nonaka /* Encapsulate and send data frames. */
2862 1.42 skrll IFQ_POLL(&ifp->if_snd, m);
2863 1.1 nonaka if (m == NULL)
2864 1.1 nonaka break;
2865 1.12 christos
2866 1.42 skrll struct ieee80211_frame *wh = mtod(m, struct ieee80211_frame *);
2867 1.42 skrll uint8_t type = wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK;
2868 1.42 skrll uint8_t qid = WME_AC_BE;
2869 1.42 skrll if (ieee80211_has_qos(wh)) {
2870 1.42 skrll /* data frames in 11n mode */
2871 1.42 skrll struct ieee80211_qosframe *qwh = (void *)wh;
2872 1.42 skrll uint8_t tid = qwh->i_qos[0] & IEEE80211_QOS_TID;
2873 1.42 skrll qid = TID_TO_WME_AC(tid);
2874 1.42 skrll } else if (type != IEEE80211_FC0_TYPE_DATA) {
2875 1.42 skrll qid = WME_AC_VO;
2876 1.42 skrll }
2877 1.42 skrll data = urtwn_get_tx_data(sc, sc->ac2idx[qid]);
2878 1.42 skrll
2879 1.42 skrll if (data == NULL) {
2880 1.42 skrll ifp->if_flags |= IFF_OACTIVE;
2881 1.42 skrll DPRINTFN(DBG_TX, ("%s: empty tx_free_list\n",
2882 1.42 skrll device_xname(sc->sc_dev)));
2883 1.42 skrll return;
2884 1.42 skrll }
2885 1.42 skrll IFQ_DEQUEUE(&ifp->if_snd, m);
2886 1.42 skrll
2887 1.1 nonaka if (m->m_len < (int)sizeof(*eh) &&
2888 1.1 nonaka (m = m_pullup(m, sizeof(*eh))) == NULL) {
2889 1.49 nat printf("ERROR6\n");
2890 1.1 nonaka ifp->if_oerrors++;
2891 1.1 nonaka continue;
2892 1.1 nonaka }
2893 1.1 nonaka eh = mtod(m, struct ether_header *);
2894 1.1 nonaka ni = ieee80211_find_txnode(ic, eh->ether_dhost);
2895 1.1 nonaka if (ni == NULL) {
2896 1.1 nonaka m_freem(m);
2897 1.49 nat printf("ERROR5\n");
2898 1.1 nonaka ifp->if_oerrors++;
2899 1.1 nonaka continue;
2900 1.1 nonaka }
2901 1.1 nonaka
2902 1.59 msaitoh bpf_mtap(ifp, m, BPF_D_OUT);
2903 1.1 nonaka
2904 1.1 nonaka if ((m = ieee80211_encap(ic, m, ni)) == NULL) {
2905 1.1 nonaka ieee80211_free_node(ni);
2906 1.49 nat printf("ERROR4\n");
2907 1.1 nonaka ifp->if_oerrors++;
2908 1.1 nonaka continue;
2909 1.1 nonaka }
2910 1.1 nonaka sendit:
2911 1.59 msaitoh bpf_mtap3(ic->ic_rawbpf, m, BPF_D_OUT);
2912 1.1 nonaka
2913 1.12 christos if (urtwn_tx(sc, m, ni, data) != 0) {
2914 1.12 christos m_freem(m);
2915 1.1 nonaka ieee80211_free_node(ni);
2916 1.49 nat printf("ERROR3\n");
2917 1.1 nonaka ifp->if_oerrors++;
2918 1.1 nonaka continue;
2919 1.1 nonaka }
2920 1.12 christos m_freem(m);
2921 1.12 christos ieee80211_free_node(ni);
2922 1.1 nonaka sc->tx_timer = 5;
2923 1.1 nonaka ifp->if_timer = 1;
2924 1.1 nonaka }
2925 1.1 nonaka }
2926 1.1 nonaka
2927 1.1 nonaka static void
2928 1.1 nonaka urtwn_watchdog(struct ifnet *ifp)
2929 1.1 nonaka {
2930 1.1 nonaka struct urtwn_softc *sc = ifp->if_softc;
2931 1.1 nonaka
2932 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
2933 1.1 nonaka
2934 1.1 nonaka ifp->if_timer = 0;
2935 1.1 nonaka
2936 1.1 nonaka if (sc->tx_timer > 0) {
2937 1.1 nonaka if (--sc->tx_timer == 0) {
2938 1.1 nonaka aprint_error_dev(sc->sc_dev, "device timeout\n");
2939 1.1 nonaka /* urtwn_init(ifp); XXX needs a process context! */
2940 1.49 nat printf("ERROR2\n");
2941 1.1 nonaka ifp->if_oerrors++;
2942 1.1 nonaka return;
2943 1.1 nonaka }
2944 1.1 nonaka ifp->if_timer = 1;
2945 1.1 nonaka }
2946 1.1 nonaka ieee80211_watchdog(&sc->sc_ic);
2947 1.1 nonaka }
2948 1.1 nonaka
2949 1.1 nonaka static int
2950 1.1 nonaka urtwn_ioctl(struct ifnet *ifp, u_long cmd, void *data)
2951 1.1 nonaka {
2952 1.1 nonaka struct urtwn_softc *sc = ifp->if_softc;
2953 1.1 nonaka struct ieee80211com *ic = &sc->sc_ic;
2954 1.1 nonaka int s, error = 0;
2955 1.1 nonaka
2956 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s: cmd=0x%08lx, data=%p\n",
2957 1.1 nonaka device_xname(sc->sc_dev), __func__, cmd, data));
2958 1.1 nonaka
2959 1.1 nonaka s = splnet();
2960 1.1 nonaka
2961 1.1 nonaka switch (cmd) {
2962 1.1 nonaka case SIOCSIFFLAGS:
2963 1.1 nonaka if ((error = ifioctl_common(ifp, cmd, data)) != 0)
2964 1.1 nonaka break;
2965 1.12 christos switch (ifp->if_flags & (IFF_UP | IFF_RUNNING)) {
2966 1.12 christos case IFF_UP | IFF_RUNNING:
2967 1.1 nonaka break;
2968 1.1 nonaka case IFF_UP:
2969 1.1 nonaka urtwn_init(ifp);
2970 1.1 nonaka break;
2971 1.1 nonaka case IFF_RUNNING:
2972 1.1 nonaka urtwn_stop(ifp, 1);
2973 1.1 nonaka break;
2974 1.1 nonaka case 0:
2975 1.1 nonaka break;
2976 1.1 nonaka }
2977 1.1 nonaka break;
2978 1.1 nonaka
2979 1.1 nonaka case SIOCADDMULTI:
2980 1.1 nonaka case SIOCDELMULTI:
2981 1.1 nonaka if ((error = ether_ioctl(ifp, cmd, data)) == ENETRESET) {
2982 1.1 nonaka /* setup multicast filter, etc */
2983 1.1 nonaka error = 0;
2984 1.1 nonaka }
2985 1.1 nonaka break;
2986 1.1 nonaka
2987 1.69 christos case SIOCS80211CHANNEL:
2988 1.69 christos /*
2989 1.69 christos * This allows for fast channel switching in monitor mode
2990 1.69 christos * (used by kismet). In IBSS mode, we must explicitly reset
2991 1.69 christos * the interface to generate a new beacon frame.
2992 1.69 christos */
2993 1.69 christos error = ieee80211_ioctl(ic, cmd, data);
2994 1.69 christos if (error == ENETRESET &&
2995 1.69 christos ic->ic_opmode == IEEE80211_M_MONITOR) {
2996 1.69 christos urtwn_set_chan(sc, ic->ic_curchan,
2997 1.69 christos IEEE80211_HTINFO_2NDCHAN_NONE);
2998 1.69 christos error = 0;
2999 1.69 christos }
3000 1.69 christos break;
3001 1.69 christos
3002 1.1 nonaka default:
3003 1.1 nonaka error = ieee80211_ioctl(ic, cmd, data);
3004 1.1 nonaka break;
3005 1.1 nonaka }
3006 1.1 nonaka if (error == ENETRESET) {
3007 1.1 nonaka if ((ifp->if_flags & (IFF_UP | IFF_RUNNING)) ==
3008 1.16 jmcneill (IFF_UP | IFF_RUNNING) &&
3009 1.16 jmcneill ic->ic_roaming != IEEE80211_ROAMING_MANUAL) {
3010 1.1 nonaka urtwn_init(ifp);
3011 1.1 nonaka }
3012 1.1 nonaka error = 0;
3013 1.1 nonaka }
3014 1.1 nonaka
3015 1.1 nonaka splx(s);
3016 1.1 nonaka
3017 1.42 skrll return error;
3018 1.1 nonaka }
3019 1.1 nonaka
3020 1.32 nonaka static __inline int
3021 1.32 nonaka urtwn_power_on(struct urtwn_softc *sc)
3022 1.32 nonaka {
3023 1.32 nonaka
3024 1.32 nonaka return sc->sc_power_on(sc);
3025 1.32 nonaka }
3026 1.32 nonaka
3027 1.1 nonaka static int
3028 1.32 nonaka urtwn_r92c_power_on(struct urtwn_softc *sc)
3029 1.1 nonaka {
3030 1.1 nonaka uint32_t reg;
3031 1.1 nonaka int ntries;
3032 1.1 nonaka
3033 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
3034 1.1 nonaka
3035 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
3036 1.12 christos
3037 1.1 nonaka /* Wait for autoload done bit. */
3038 1.1 nonaka for (ntries = 0; ntries < 1000; ntries++) {
3039 1.1 nonaka if (urtwn_read_1(sc, R92C_APS_FSMCO) & R92C_APS_FSMCO_PFM_ALDN)
3040 1.1 nonaka break;
3041 1.1 nonaka DELAY(5);
3042 1.1 nonaka }
3043 1.1 nonaka if (ntries == 1000) {
3044 1.1 nonaka aprint_error_dev(sc->sc_dev,
3045 1.1 nonaka "timeout waiting for chip autoload\n");
3046 1.42 skrll return ETIMEDOUT;
3047 1.1 nonaka }
3048 1.1 nonaka
3049 1.1 nonaka /* Unlock ISO/CLK/Power control register. */
3050 1.1 nonaka urtwn_write_1(sc, R92C_RSV_CTRL, 0);
3051 1.1 nonaka /* Move SPS into PWM mode. */
3052 1.1 nonaka urtwn_write_1(sc, R92C_SPS0_CTRL, 0x2b);
3053 1.49 nat DELAY(5);
3054 1.1 nonaka
3055 1.1 nonaka reg = urtwn_read_1(sc, R92C_LDOV12D_CTRL);
3056 1.1 nonaka if (!(reg & R92C_LDOV12D_CTRL_LDV12_EN)) {
3057 1.1 nonaka urtwn_write_1(sc, R92C_LDOV12D_CTRL,
3058 1.1 nonaka reg | R92C_LDOV12D_CTRL_LDV12_EN);
3059 1.1 nonaka DELAY(100);
3060 1.1 nonaka urtwn_write_1(sc, R92C_SYS_ISO_CTRL,
3061 1.1 nonaka urtwn_read_1(sc, R92C_SYS_ISO_CTRL) &
3062 1.1 nonaka ~R92C_SYS_ISO_CTRL_MD2PP);
3063 1.1 nonaka }
3064 1.1 nonaka
3065 1.1 nonaka /* Auto enable WLAN. */
3066 1.1 nonaka urtwn_write_2(sc, R92C_APS_FSMCO,
3067 1.1 nonaka urtwn_read_2(sc, R92C_APS_FSMCO) | R92C_APS_FSMCO_APFM_ONMAC);
3068 1.1 nonaka for (ntries = 0; ntries < 1000; ntries++) {
3069 1.1 nonaka if (!(urtwn_read_2(sc, R92C_APS_FSMCO) &
3070 1.1 nonaka R92C_APS_FSMCO_APFM_ONMAC))
3071 1.1 nonaka break;
3072 1.49 nat DELAY(100);
3073 1.1 nonaka }
3074 1.1 nonaka if (ntries == 1000) {
3075 1.1 nonaka aprint_error_dev(sc->sc_dev,
3076 1.1 nonaka "timeout waiting for MAC auto ON\n");
3077 1.42 skrll return ETIMEDOUT;
3078 1.1 nonaka }
3079 1.1 nonaka
3080 1.1 nonaka /* Enable radio, GPIO and LED functions. */
3081 1.1 nonaka KASSERT((R92C_APS_FSMCO_AFSM_HSUS | R92C_APS_FSMCO_PDN_EN |
3082 1.1 nonaka R92C_APS_FSMCO_PFM_ALDN) == 0x0812);
3083 1.1 nonaka urtwn_write_2(sc, R92C_APS_FSMCO,
3084 1.1 nonaka R92C_APS_FSMCO_AFSM_HSUS |
3085 1.1 nonaka R92C_APS_FSMCO_PDN_EN |
3086 1.1 nonaka R92C_APS_FSMCO_PFM_ALDN);
3087 1.1 nonaka
3088 1.1 nonaka /* Release RF digital isolation. */
3089 1.1 nonaka urtwn_write_2(sc, R92C_SYS_ISO_CTRL,
3090 1.1 nonaka urtwn_read_2(sc, R92C_SYS_ISO_CTRL) & ~R92C_SYS_ISO_CTRL_DIOR);
3091 1.1 nonaka
3092 1.1 nonaka /* Initialize MAC. */
3093 1.1 nonaka urtwn_write_1(sc, R92C_APSD_CTRL,
3094 1.1 nonaka urtwn_read_1(sc, R92C_APSD_CTRL) & ~R92C_APSD_CTRL_OFF);
3095 1.1 nonaka for (ntries = 0; ntries < 200; ntries++) {
3096 1.1 nonaka if (!(urtwn_read_1(sc, R92C_APSD_CTRL) &
3097 1.1 nonaka R92C_APSD_CTRL_OFF_STATUS))
3098 1.1 nonaka break;
3099 1.1 nonaka DELAY(5);
3100 1.1 nonaka }
3101 1.1 nonaka if (ntries == 200) {
3102 1.1 nonaka aprint_error_dev(sc->sc_dev,
3103 1.1 nonaka "timeout waiting for MAC initialization\n");
3104 1.42 skrll return ETIMEDOUT;
3105 1.1 nonaka }
3106 1.1 nonaka
3107 1.1 nonaka /* Enable MAC DMA/WMAC/SCHEDULE/SEC blocks. */
3108 1.1 nonaka reg = urtwn_read_2(sc, R92C_CR);
3109 1.1 nonaka reg |= R92C_CR_HCI_TXDMA_EN | R92C_CR_HCI_RXDMA_EN |
3110 1.1 nonaka R92C_CR_TXDMA_EN | R92C_CR_RXDMA_EN | R92C_CR_PROTOCOL_EN |
3111 1.1 nonaka R92C_CR_SCHEDULE_EN | R92C_CR_MACTXEN | R92C_CR_MACRXEN |
3112 1.1 nonaka R92C_CR_ENSEC;
3113 1.1 nonaka urtwn_write_2(sc, R92C_CR, reg);
3114 1.1 nonaka
3115 1.1 nonaka urtwn_write_1(sc, 0xfe10, 0x19);
3116 1.42 skrll return 0;
3117 1.1 nonaka }
3118 1.1 nonaka
3119 1.1 nonaka static int
3120 1.49 nat urtwn_r92e_power_on(struct urtwn_softc *sc)
3121 1.49 nat {
3122 1.49 nat uint32_t reg;
3123 1.49 nat uint32_t val;
3124 1.49 nat int ntries;
3125 1.49 nat
3126 1.49 nat DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
3127 1.49 nat
3128 1.49 nat KASSERT(mutex_owned(&sc->sc_write_mtx));
3129 1.49 nat
3130 1.49 nat /* Enable radio, GPIO and LED functions. */
3131 1.49 nat KASSERT((R92C_APS_FSMCO_AFSM_HSUS | R92C_APS_FSMCO_PDN_EN |
3132 1.49 nat R92C_APS_FSMCO_PFM_ALDN) == 0x0812);
3133 1.49 nat urtwn_write_2(sc, R92C_APS_FSMCO,
3134 1.49 nat R92C_APS_FSMCO_AFSM_HSUS |
3135 1.49 nat R92C_APS_FSMCO_PDN_EN |
3136 1.49 nat R92C_APS_FSMCO_PFM_ALDN);
3137 1.49 nat
3138 1.49 nat if (urtwn_read_4(sc, R92E_SYS_CFG1_8192E) & R92E_SPSLDO_SEL){
3139 1.49 nat /* LDO. */
3140 1.52 skrll urtwn_write_1(sc, R92E_LDO_SWR_CTRL, 0xc3);
3141 1.49 nat }
3142 1.49 nat else {
3143 1.49 nat urtwn_write_2(sc, R92C_SYS_SWR_CTRL2, urtwn_read_2(sc,
3144 1.49 nat R92C_SYS_SWR_CTRL2) & 0xffff);
3145 1.49 nat urtwn_write_1(sc, R92E_LDO_SWR_CTRL, 0x83);
3146 1.49 nat }
3147 1.49 nat
3148 1.49 nat for (ntries = 0; ntries < 2; ntries++) {
3149 1.49 nat urtwn_write_1(sc, R92C_AFE_PLL_CTRL,
3150 1.49 nat urtwn_read_1(sc, R92C_AFE_PLL_CTRL));
3151 1.49 nat urtwn_write_2(sc, R92C_AFE_CTRL4, urtwn_read_2(sc,
3152 1.49 nat R92C_AFE_CTRL4));
3153 1.49 nat }
3154 1.49 nat
3155 1.49 nat /* Reset BB. */
3156 1.49 nat urtwn_write_1(sc, R92C_SYS_FUNC_EN,
3157 1.49 nat urtwn_read_1(sc, R92C_SYS_FUNC_EN) & ~(R92C_SYS_FUNC_EN_BBRSTB |
3158 1.49 nat R92C_SYS_FUNC_EN_BB_GLB_RST));
3159 1.49 nat
3160 1.49 nat urtwn_write_1(sc, R92C_AFE_XTAL_CTRL + 2, urtwn_read_1(sc,
3161 1.49 nat R92C_AFE_XTAL_CTRL + 2) | 0x80);
3162 1.49 nat
3163 1.49 nat /* Disable HWPDN. */
3164 1.49 nat urtwn_write_2(sc, R92C_APS_FSMCO, urtwn_read_2(sc,
3165 1.49 nat R92C_APS_FSMCO) & ~R92C_APS_FSMCO_APDM_HPDN);
3166 1.49 nat
3167 1.49 nat /* Disable WL suspend. */
3168 1.49 nat urtwn_write_2(sc, R92C_APS_FSMCO, urtwn_read_2(sc,
3169 1.49 nat R92C_APS_FSMCO) & ~(R92C_APS_FSMCO_AFSM_PCIE |
3170 1.49 nat R92C_APS_FSMCO_AFSM_HSUS));
3171 1.49 nat
3172 1.49 nat urtwn_write_4(sc, R92C_APS_FSMCO, urtwn_read_4(sc,
3173 1.49 nat R92C_APS_FSMCO) | R92C_APS_FSMCO_RDY_MACON);
3174 1.49 nat urtwn_write_2(sc, R92C_APS_FSMCO, urtwn_read_2(sc,
3175 1.49 nat R92C_APS_FSMCO) | R92C_APS_FSMCO_APFM_ONMAC);
3176 1.49 nat for (ntries = 0; ntries < 10000; ntries++) {
3177 1.49 nat val = urtwn_read_2(sc, R92C_APS_FSMCO) &
3178 1.49 nat R92C_APS_FSMCO_APFM_ONMAC;
3179 1.49 nat if (val == 0x0)
3180 1.49 nat break;
3181 1.49 nat DELAY(10);
3182 1.49 nat }
3183 1.49 nat if (ntries == 10000) {
3184 1.49 nat aprint_error_dev(sc->sc_dev,
3185 1.49 nat "timeout waiting for chip power up\n");
3186 1.49 nat return ETIMEDOUT;
3187 1.49 nat }
3188 1.52 skrll
3189 1.49 nat urtwn_write_2(sc, R92C_CR, 0x00);
3190 1.49 nat reg = urtwn_read_2(sc, R92C_CR);
3191 1.49 nat reg |= R92C_CR_HCI_TXDMA_EN | R92C_CR_HCI_RXDMA_EN |
3192 1.49 nat R92C_CR_TXDMA_EN | R92C_CR_RXDMA_EN | R92C_CR_PROTOCOL_EN |
3193 1.49 nat R92C_CR_SCHEDULE_EN | R92C_CR_ENSEC;
3194 1.49 nat urtwn_write_2(sc, R92C_CR, reg);
3195 1.49 nat
3196 1.49 nat return 0;
3197 1.49 nat }
3198 1.49 nat
3199 1.49 nat static int
3200 1.32 nonaka urtwn_r88e_power_on(struct urtwn_softc *sc)
3201 1.32 nonaka {
3202 1.32 nonaka uint32_t reg;
3203 1.32 nonaka uint8_t val;
3204 1.32 nonaka int ntries;
3205 1.32 nonaka
3206 1.32 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
3207 1.32 nonaka
3208 1.32 nonaka KASSERT(mutex_owned(&sc->sc_write_mtx));
3209 1.32 nonaka
3210 1.32 nonaka /* Wait for power ready bit. */
3211 1.32 nonaka for (ntries = 0; ntries < 5000; ntries++) {
3212 1.32 nonaka val = urtwn_read_1(sc, 0x6) & 0x2;
3213 1.32 nonaka if (val == 0x2)
3214 1.32 nonaka break;
3215 1.32 nonaka DELAY(10);
3216 1.32 nonaka }
3217 1.32 nonaka if (ntries == 5000) {
3218 1.32 nonaka aprint_error_dev(sc->sc_dev,
3219 1.32 nonaka "timeout waiting for chip power up\n");
3220 1.42 skrll return ETIMEDOUT;
3221 1.32 nonaka }
3222 1.32 nonaka
3223 1.32 nonaka /* Reset BB. */
3224 1.32 nonaka urtwn_write_1(sc, R92C_SYS_FUNC_EN,
3225 1.32 nonaka urtwn_read_1(sc, R92C_SYS_FUNC_EN) & ~(R92C_SYS_FUNC_EN_BBRSTB |
3226 1.32 nonaka R92C_SYS_FUNC_EN_BB_GLB_RST));
3227 1.32 nonaka
3228 1.32 nonaka urtwn_write_1(sc, 0x26, urtwn_read_1(sc, 0x26) | 0x80);
3229 1.32 nonaka
3230 1.32 nonaka /* Disable HWPDN. */
3231 1.32 nonaka urtwn_write_1(sc, 0x5, urtwn_read_1(sc, 0x5) & ~0x80);
3232 1.32 nonaka
3233 1.32 nonaka /* Disable WL suspend. */
3234 1.32 nonaka urtwn_write_1(sc, 0x5, urtwn_read_1(sc, 0x5) & ~0x18);
3235 1.32 nonaka
3236 1.32 nonaka urtwn_write_1(sc, 0x5, urtwn_read_1(sc, 0x5) | 0x1);
3237 1.32 nonaka for (ntries = 0; ntries < 5000; ntries++) {
3238 1.32 nonaka if (!(urtwn_read_1(sc, 0x5) & 0x1))
3239 1.32 nonaka break;
3240 1.32 nonaka DELAY(10);
3241 1.32 nonaka }
3242 1.32 nonaka if (ntries == 5000)
3243 1.42 skrll return ETIMEDOUT;
3244 1.32 nonaka
3245 1.32 nonaka /* Enable LDO normal mode. */
3246 1.32 nonaka urtwn_write_1(sc, 0x23, urtwn_read_1(sc, 0x23) & ~0x10);
3247 1.32 nonaka
3248 1.32 nonaka /* Enable MAC DMA/WMAC/SCHEDULE/SEC blocks. */
3249 1.32 nonaka urtwn_write_2(sc, R92C_CR, 0);
3250 1.32 nonaka reg = urtwn_read_2(sc, R92C_CR);
3251 1.32 nonaka reg |= R92C_CR_HCI_TXDMA_EN | R92C_CR_HCI_RXDMA_EN |
3252 1.32 nonaka R92C_CR_TXDMA_EN | R92C_CR_RXDMA_EN | R92C_CR_PROTOCOL_EN |
3253 1.32 nonaka R92C_CR_SCHEDULE_EN | R92C_CR_ENSEC | R92C_CR_CALTMR_EN;
3254 1.32 nonaka urtwn_write_2(sc, R92C_CR, reg);
3255 1.32 nonaka
3256 1.42 skrll return 0;
3257 1.32 nonaka }
3258 1.32 nonaka
3259 1.32 nonaka static int
3260 1.1 nonaka urtwn_llt_init(struct urtwn_softc *sc)
3261 1.1 nonaka {
3262 1.32 nonaka size_t i, page_count, pktbuf_count;
3263 1.49 nat uint32_t val;
3264 1.22 christos int error;
3265 1.1 nonaka
3266 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
3267 1.1 nonaka
3268 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
3269 1.12 christos
3270 1.52 skrll if (sc->chip & URTWN_CHIP_88E)
3271 1.49 nat page_count = R88E_TX_PAGE_COUNT;
3272 1.52 skrll else if (sc->chip & URTWN_CHIP_92EU)
3273 1.49 nat page_count = R92E_TX_PAGE_COUNT;
3274 1.49 nat else
3275 1.49 nat page_count = R92C_TX_PAGE_COUNT;
3276 1.49 nat if (sc->chip & URTWN_CHIP_88E)
3277 1.49 nat pktbuf_count = R88E_TXPKTBUF_COUNT;
3278 1.49 nat else if (sc->chip & URTWN_CHIP_92EU)
3279 1.49 nat pktbuf_count = R88E_TXPKTBUF_COUNT;
3280 1.49 nat else
3281 1.49 nat pktbuf_count = R92C_TXPKTBUF_COUNT;
3282 1.49 nat
3283 1.49 nat if (sc->chip & URTWN_CHIP_92EU) {
3284 1.49 nat val = urtwn_read_4(sc, R92E_AUTO_LLT) | R92E_AUTO_LLT_EN;
3285 1.49 nat urtwn_write_4(sc, R92E_AUTO_LLT, val);
3286 1.49 nat DELAY(100);
3287 1.49 nat val = urtwn_read_4(sc, R92E_AUTO_LLT);
3288 1.49 nat if (val & R92E_AUTO_LLT_EN)
3289 1.49 nat return EIO;
3290 1.49 nat return 0;
3291 1.49 nat }
3292 1.32 nonaka
3293 1.32 nonaka /* Reserve pages [0; page_count]. */
3294 1.32 nonaka for (i = 0; i < page_count; i++) {
3295 1.1 nonaka if ((error = urtwn_llt_write(sc, i, i + 1)) != 0)
3296 1.42 skrll return error;
3297 1.1 nonaka }
3298 1.1 nonaka /* NB: 0xff indicates end-of-list. */
3299 1.1 nonaka if ((error = urtwn_llt_write(sc, i, 0xff)) != 0)
3300 1.42 skrll return error;
3301 1.1 nonaka /*
3302 1.32 nonaka * Use pages [page_count + 1; pktbuf_count - 1]
3303 1.1 nonaka * as ring buffer.
3304 1.1 nonaka */
3305 1.32 nonaka for (++i; i < pktbuf_count - 1; i++) {
3306 1.1 nonaka if ((error = urtwn_llt_write(sc, i, i + 1)) != 0)
3307 1.42 skrll return error;
3308 1.1 nonaka }
3309 1.1 nonaka /* Make the last page point to the beginning of the ring buffer. */
3310 1.32 nonaka error = urtwn_llt_write(sc, i, pktbuf_count + 1);
3311 1.42 skrll return error;
3312 1.1 nonaka }
3313 1.1 nonaka
3314 1.1 nonaka static void
3315 1.1 nonaka urtwn_fw_reset(struct urtwn_softc *sc)
3316 1.1 nonaka {
3317 1.1 nonaka uint16_t reg;
3318 1.1 nonaka int ntries;
3319 1.1 nonaka
3320 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
3321 1.1 nonaka
3322 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
3323 1.12 christos
3324 1.1 nonaka /* Tell 8051 to reset itself. */
3325 1.1 nonaka urtwn_write_1(sc, R92C_HMETFR + 3, 0x20);
3326 1.1 nonaka
3327 1.1 nonaka /* Wait until 8051 resets by itself. */
3328 1.1 nonaka for (ntries = 0; ntries < 100; ntries++) {
3329 1.1 nonaka reg = urtwn_read_2(sc, R92C_SYS_FUNC_EN);
3330 1.1 nonaka if (!(reg & R92C_SYS_FUNC_EN_CPUEN))
3331 1.1 nonaka return;
3332 1.1 nonaka DELAY(50);
3333 1.1 nonaka }
3334 1.1 nonaka /* Force 8051 reset. */
3335 1.32 nonaka urtwn_write_2(sc, R92C_SYS_FUNC_EN,
3336 1.32 nonaka urtwn_read_2(sc, R92C_SYS_FUNC_EN) & ~R92C_SYS_FUNC_EN_CPUEN);
3337 1.32 nonaka }
3338 1.32 nonaka
3339 1.32 nonaka static void
3340 1.32 nonaka urtwn_r88e_fw_reset(struct urtwn_softc *sc)
3341 1.32 nonaka {
3342 1.32 nonaka uint16_t reg;
3343 1.32 nonaka
3344 1.32 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
3345 1.32 nonaka
3346 1.32 nonaka KASSERT(mutex_owned(&sc->sc_write_mtx));
3347 1.32 nonaka
3348 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_92EU)) {
3349 1.49 nat reg = urtwn_read_2(sc, R92C_RSV_CTRL) & ~R92E_RSV_MIO_EN;
3350 1.49 nat urtwn_write_2(sc,R92C_RSV_CTRL, reg);
3351 1.49 nat }
3352 1.49 nat DELAY(50);
3353 1.49 nat
3354 1.32 nonaka reg = urtwn_read_2(sc, R92C_SYS_FUNC_EN);
3355 1.1 nonaka urtwn_write_2(sc, R92C_SYS_FUNC_EN, reg & ~R92C_SYS_FUNC_EN_CPUEN);
3356 1.49 nat DELAY(50);
3357 1.49 nat
3358 1.32 nonaka urtwn_write_2(sc, R92C_SYS_FUNC_EN, reg | R92C_SYS_FUNC_EN_CPUEN);
3359 1.49 nat DELAY(50);
3360 1.49 nat
3361 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_92EU)) {
3362 1.49 nat reg = urtwn_read_2(sc, R92C_RSV_CTRL) | R92E_RSV_MIO_EN;
3363 1.49 nat urtwn_write_2(sc,R92C_RSV_CTRL, reg);
3364 1.49 nat }
3365 1.49 nat DELAY(50);
3366 1.49 nat
3367 1.1 nonaka }
3368 1.1 nonaka
3369 1.1 nonaka static int
3370 1.1 nonaka urtwn_fw_loadpage(struct urtwn_softc *sc, int page, uint8_t *buf, int len)
3371 1.1 nonaka {
3372 1.1 nonaka uint32_t reg;
3373 1.1 nonaka int off, mlen, error = 0;
3374 1.1 nonaka
3375 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s: page=%d, buf=%p, len=%d\n",
3376 1.1 nonaka device_xname(sc->sc_dev), __func__, page, buf, len));
3377 1.1 nonaka
3378 1.1 nonaka reg = urtwn_read_4(sc, R92C_MCUFWDL);
3379 1.1 nonaka reg = RW(reg, R92C_MCUFWDL_PAGE, page);
3380 1.1 nonaka urtwn_write_4(sc, R92C_MCUFWDL, reg);
3381 1.1 nonaka
3382 1.1 nonaka off = R92C_FW_START_ADDR;
3383 1.1 nonaka while (len > 0) {
3384 1.1 nonaka if (len > 196)
3385 1.1 nonaka mlen = 196;
3386 1.1 nonaka else if (len > 4)
3387 1.1 nonaka mlen = 4;
3388 1.1 nonaka else
3389 1.1 nonaka mlen = 1;
3390 1.1 nonaka error = urtwn_write_region(sc, off, buf, mlen);
3391 1.1 nonaka if (error != 0)
3392 1.1 nonaka break;
3393 1.1 nonaka off += mlen;
3394 1.1 nonaka buf += mlen;
3395 1.1 nonaka len -= mlen;
3396 1.1 nonaka }
3397 1.42 skrll return error;
3398 1.1 nonaka }
3399 1.1 nonaka
3400 1.1 nonaka static int
3401 1.1 nonaka urtwn_load_firmware(struct urtwn_softc *sc)
3402 1.1 nonaka {
3403 1.1 nonaka firmware_handle_t fwh;
3404 1.1 nonaka const struct r92c_fw_hdr *hdr;
3405 1.1 nonaka const char *name;
3406 1.1 nonaka u_char *fw, *ptr;
3407 1.1 nonaka size_t len;
3408 1.1 nonaka uint32_t reg;
3409 1.1 nonaka int mlen, ntries, page, error;
3410 1.1 nonaka
3411 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
3412 1.1 nonaka
3413 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
3414 1.12 christos
3415 1.1 nonaka /* Read firmware image from the filesystem. */
3416 1.32 nonaka if (ISSET(sc->chip, URTWN_CHIP_88E))
3417 1.32 nonaka name = "rtl8188eufw.bin";
3418 1.49 nat else if (ISSET(sc->chip, URTWN_CHIP_92EU))
3419 1.49 nat name = "rtl8192eefw.bin";
3420 1.32 nonaka else if ((sc->chip & (URTWN_CHIP_UMC_A_CUT | URTWN_CHIP_92C)) ==
3421 1.1 nonaka URTWN_CHIP_UMC_A_CUT)
3422 1.5 riz name = "rtl8192cfwU.bin";
3423 1.1 nonaka else
3424 1.5 riz name = "rtl8192cfw.bin";
3425 1.5 riz if ((error = firmware_open("if_urtwn", name, &fwh)) != 0) {
3426 1.1 nonaka aprint_error_dev(sc->sc_dev,
3427 1.32 nonaka "failed load firmware of file %s (error %d)\n", name,
3428 1.32 nonaka error);
3429 1.42 skrll return error;
3430 1.1 nonaka }
3431 1.36 jmcneill const size_t fwlen = len = firmware_get_size(fwh);
3432 1.1 nonaka fw = firmware_malloc(len);
3433 1.1 nonaka if (fw == NULL) {
3434 1.1 nonaka aprint_error_dev(sc->sc_dev,
3435 1.1 nonaka "failed to allocate firmware memory\n");
3436 1.1 nonaka firmware_close(fwh);
3437 1.42 skrll return ENOMEM;
3438 1.1 nonaka }
3439 1.1 nonaka error = firmware_read(fwh, 0, fw, len);
3440 1.1 nonaka firmware_close(fwh);
3441 1.1 nonaka if (error != 0) {
3442 1.1 nonaka aprint_error_dev(sc->sc_dev,
3443 1.1 nonaka "failed to read firmware (error %d)\n", error);
3444 1.36 jmcneill firmware_free(fw, fwlen);
3445 1.42 skrll return error;
3446 1.1 nonaka }
3447 1.1 nonaka
3448 1.49 nat len = fwlen;
3449 1.1 nonaka ptr = fw;
3450 1.1 nonaka hdr = (const struct r92c_fw_hdr *)ptr;
3451 1.1 nonaka /* Check if there is a valid FW header and skip it. */
3452 1.1 nonaka if ((le16toh(hdr->signature) >> 4) == 0x88c ||
3453 1.32 nonaka (le16toh(hdr->signature) >> 4) == 0x88e ||
3454 1.49 nat (le16toh(hdr->signature) >> 4) == 0x92e ||
3455 1.1 nonaka (le16toh(hdr->signature) >> 4) == 0x92c) {
3456 1.1 nonaka DPRINTFN(DBG_INIT, ("%s: %s: FW V%d.%d %02d-%02d %02d:%02d\n",
3457 1.1 nonaka device_xname(sc->sc_dev), __func__,
3458 1.1 nonaka le16toh(hdr->version), le16toh(hdr->subversion),
3459 1.1 nonaka hdr->month, hdr->date, hdr->hour, hdr->minute));
3460 1.1 nonaka ptr += sizeof(*hdr);
3461 1.1 nonaka len -= sizeof(*hdr);
3462 1.1 nonaka }
3463 1.1 nonaka
3464 1.32 nonaka if (urtwn_read_1(sc, R92C_MCUFWDL) & R92C_MCUFWDL_RAM_DL_SEL) {
3465 1.71.2.2 martin /* Reset MCU ready status */
3466 1.71.2.2 martin urtwn_write_1(sc, R92C_MCUFWDL, 0);
3467 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_88E) ||
3468 1.49 nat ISSET(sc->chip, URTWN_CHIP_92EU))
3469 1.32 nonaka urtwn_r88e_fw_reset(sc);
3470 1.32 nonaka else
3471 1.32 nonaka urtwn_fw_reset(sc);
3472 1.1 nonaka }
3473 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_88E) &&
3474 1.49 nat !ISSET(sc->chip, URTWN_CHIP_92EU)) {
3475 1.32 nonaka urtwn_write_2(sc, R92C_SYS_FUNC_EN,
3476 1.32 nonaka urtwn_read_2(sc, R92C_SYS_FUNC_EN) |
3477 1.32 nonaka R92C_SYS_FUNC_EN_CPUEN);
3478 1.32 nonaka }
3479 1.1 nonaka
3480 1.1 nonaka /* download enabled */
3481 1.1 nonaka urtwn_write_1(sc, R92C_MCUFWDL,
3482 1.1 nonaka urtwn_read_1(sc, R92C_MCUFWDL) | R92C_MCUFWDL_EN);
3483 1.1 nonaka urtwn_write_1(sc, R92C_MCUFWDL + 2,
3484 1.1 nonaka urtwn_read_1(sc, R92C_MCUFWDL + 2) & ~0x08);
3485 1.1 nonaka
3486 1.32 nonaka /* Reset the FWDL checksum. */
3487 1.32 nonaka urtwn_write_1(sc, R92C_MCUFWDL,
3488 1.52 skrll urtwn_read_1(sc, R92C_MCUFWDL) | R92C_MCUFWDL_CHKSUM_RPT);
3489 1.32 nonaka
3490 1.49 nat DELAY(50);
3491 1.1 nonaka /* download firmware */
3492 1.1 nonaka for (page = 0; len > 0; page++) {
3493 1.1 nonaka mlen = MIN(len, R92C_FW_PAGE_SIZE);
3494 1.1 nonaka error = urtwn_fw_loadpage(sc, page, ptr, mlen);
3495 1.1 nonaka if (error != 0) {
3496 1.1 nonaka aprint_error_dev(sc->sc_dev,
3497 1.1 nonaka "could not load firmware page %d\n", page);
3498 1.1 nonaka goto fail;
3499 1.1 nonaka }
3500 1.1 nonaka ptr += mlen;
3501 1.1 nonaka len -= mlen;
3502 1.1 nonaka }
3503 1.1 nonaka
3504 1.1 nonaka /* download disable */
3505 1.1 nonaka urtwn_write_1(sc, R92C_MCUFWDL,
3506 1.1 nonaka urtwn_read_1(sc, R92C_MCUFWDL) & ~R92C_MCUFWDL_EN);
3507 1.1 nonaka urtwn_write_1(sc, R92C_MCUFWDL + 1, 0);
3508 1.1 nonaka
3509 1.1 nonaka /* Wait for checksum report. */
3510 1.1 nonaka for (ntries = 0; ntries < 1000; ntries++) {
3511 1.1 nonaka if (urtwn_read_4(sc, R92C_MCUFWDL) & R92C_MCUFWDL_CHKSUM_RPT)
3512 1.1 nonaka break;
3513 1.1 nonaka DELAY(5);
3514 1.1 nonaka }
3515 1.1 nonaka if (ntries == 1000) {
3516 1.1 nonaka aprint_error_dev(sc->sc_dev,
3517 1.1 nonaka "timeout waiting for checksum report\n");
3518 1.1 nonaka error = ETIMEDOUT;
3519 1.1 nonaka goto fail;
3520 1.1 nonaka }
3521 1.1 nonaka
3522 1.1 nonaka /* Wait for firmware readiness. */
3523 1.1 nonaka reg = urtwn_read_4(sc, R92C_MCUFWDL);
3524 1.1 nonaka reg = (reg & ~R92C_MCUFWDL_WINTINI_RDY) | R92C_MCUFWDL_RDY;
3525 1.1 nonaka urtwn_write_4(sc, R92C_MCUFWDL, reg);
3526 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_88E) ||
3527 1.49 nat ISSET(sc->chip, URTWN_CHIP_92EU))
3528 1.32 nonaka urtwn_r88e_fw_reset(sc);
3529 1.66 msaitoh for (ntries = 0; ntries < 6000; ntries++) {
3530 1.1 nonaka if (urtwn_read_4(sc, R92C_MCUFWDL) & R92C_MCUFWDL_WINTINI_RDY)
3531 1.1 nonaka break;
3532 1.1 nonaka DELAY(5);
3533 1.1 nonaka }
3534 1.66 msaitoh if (ntries == 6000) {
3535 1.1 nonaka aprint_error_dev(sc->sc_dev,
3536 1.1 nonaka "timeout waiting for firmware readiness\n");
3537 1.1 nonaka error = ETIMEDOUT;
3538 1.1 nonaka goto fail;
3539 1.1 nonaka }
3540 1.1 nonaka fail:
3541 1.36 jmcneill firmware_free(fw, fwlen);
3542 1.42 skrll return error;
3543 1.1 nonaka }
3544 1.1 nonaka
3545 1.32 nonaka static __inline int
3546 1.32 nonaka urtwn_dma_init(struct urtwn_softc *sc)
3547 1.32 nonaka {
3548 1.32 nonaka
3549 1.32 nonaka return sc->sc_dma_init(sc);
3550 1.32 nonaka }
3551 1.32 nonaka
3552 1.1 nonaka static int
3553 1.32 nonaka urtwn_r92c_dma_init(struct urtwn_softc *sc)
3554 1.1 nonaka {
3555 1.1 nonaka int hashq, hasnq, haslq, nqueues, nqpages, nrempages;
3556 1.1 nonaka uint32_t reg;
3557 1.1 nonaka int error;
3558 1.1 nonaka
3559 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
3560 1.1 nonaka
3561 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
3562 1.12 christos
3563 1.1 nonaka /* Initialize LLT table. */
3564 1.1 nonaka error = urtwn_llt_init(sc);
3565 1.1 nonaka if (error != 0)
3566 1.42 skrll return error;
3567 1.1 nonaka
3568 1.1 nonaka /* Get Tx queues to USB endpoints mapping. */
3569 1.1 nonaka hashq = hasnq = haslq = 0;
3570 1.1 nonaka reg = urtwn_read_2(sc, R92C_USB_EP + 1);
3571 1.1 nonaka DPRINTFN(DBG_INIT, ("%s: %s: USB endpoints mapping 0x%x\n",
3572 1.1 nonaka device_xname(sc->sc_dev), __func__, reg));
3573 1.1 nonaka if (MS(reg, R92C_USB_EP_HQ) != 0)
3574 1.1 nonaka hashq = 1;
3575 1.1 nonaka if (MS(reg, R92C_USB_EP_NQ) != 0)
3576 1.1 nonaka hasnq = 1;
3577 1.1 nonaka if (MS(reg, R92C_USB_EP_LQ) != 0)
3578 1.1 nonaka haslq = 1;
3579 1.1 nonaka nqueues = hashq + hasnq + haslq;
3580 1.1 nonaka if (nqueues == 0)
3581 1.42 skrll return EIO;
3582 1.1 nonaka /* Get the number of pages for each queue. */
3583 1.1 nonaka nqpages = (R92C_TX_PAGE_COUNT - R92C_PUBQ_NPAGES) / nqueues;
3584 1.1 nonaka /* The remaining pages are assigned to the high priority queue. */
3585 1.1 nonaka nrempages = (R92C_TX_PAGE_COUNT - R92C_PUBQ_NPAGES) % nqueues;
3586 1.1 nonaka
3587 1.1 nonaka /* Set number of pages for normal priority queue. */
3588 1.1 nonaka urtwn_write_1(sc, R92C_RQPN_NPQ, hasnq ? nqpages : 0);
3589 1.1 nonaka urtwn_write_4(sc, R92C_RQPN,
3590 1.1 nonaka /* Set number of pages for public queue. */
3591 1.1 nonaka SM(R92C_RQPN_PUBQ, R92C_PUBQ_NPAGES) |
3592 1.1 nonaka /* Set number of pages for high priority queue. */
3593 1.1 nonaka SM(R92C_RQPN_HPQ, hashq ? nqpages + nrempages : 0) |
3594 1.1 nonaka /* Set number of pages for low priority queue. */
3595 1.1 nonaka SM(R92C_RQPN_LPQ, haslq ? nqpages : 0) |
3596 1.1 nonaka /* Load values. */
3597 1.1 nonaka R92C_RQPN_LD);
3598 1.1 nonaka
3599 1.1 nonaka urtwn_write_1(sc, R92C_TXPKTBUF_BCNQ_BDNY, R92C_TX_PAGE_BOUNDARY);
3600 1.1 nonaka urtwn_write_1(sc, R92C_TXPKTBUF_MGQ_BDNY, R92C_TX_PAGE_BOUNDARY);
3601 1.1 nonaka urtwn_write_1(sc, R92C_TXPKTBUF_WMAC_LBK_BF_HD, R92C_TX_PAGE_BOUNDARY);
3602 1.1 nonaka urtwn_write_1(sc, R92C_TRXFF_BNDY, R92C_TX_PAGE_BOUNDARY);
3603 1.1 nonaka urtwn_write_1(sc, R92C_TDECTRL + 1, R92C_TX_PAGE_BOUNDARY);
3604 1.1 nonaka
3605 1.1 nonaka /* Set queue to USB pipe mapping. */
3606 1.1 nonaka reg = urtwn_read_2(sc, R92C_TRXDMA_CTRL);
3607 1.1 nonaka reg &= ~R92C_TRXDMA_CTRL_QMAP_M;
3608 1.1 nonaka if (nqueues == 1) {
3609 1.1 nonaka if (hashq) {
3610 1.1 nonaka reg |= R92C_TRXDMA_CTRL_QMAP_HQ;
3611 1.1 nonaka } else if (hasnq) {
3612 1.1 nonaka reg |= R92C_TRXDMA_CTRL_QMAP_NQ;
3613 1.1 nonaka } else {
3614 1.1 nonaka reg |= R92C_TRXDMA_CTRL_QMAP_LQ;
3615 1.1 nonaka }
3616 1.1 nonaka } else if (nqueues == 2) {
3617 1.1 nonaka /* All 2-endpoints configs have a high priority queue. */
3618 1.1 nonaka if (!hashq) {
3619 1.42 skrll return EIO;
3620 1.1 nonaka }
3621 1.1 nonaka if (hasnq) {
3622 1.1 nonaka reg |= R92C_TRXDMA_CTRL_QMAP_HQ_NQ;
3623 1.1 nonaka } else {
3624 1.1 nonaka reg |= R92C_TRXDMA_CTRL_QMAP_HQ_LQ;
3625 1.1 nonaka }
3626 1.1 nonaka } else {
3627 1.1 nonaka reg |= R92C_TRXDMA_CTRL_QMAP_3EP;
3628 1.1 nonaka }
3629 1.1 nonaka urtwn_write_2(sc, R92C_TRXDMA_CTRL, reg);
3630 1.1 nonaka
3631 1.1 nonaka /* Set Tx/Rx transfer page boundary. */
3632 1.1 nonaka urtwn_write_2(sc, R92C_TRXFF_BNDY + 2, 0x27ff);
3633 1.1 nonaka
3634 1.1 nonaka /* Set Tx/Rx transfer page size. */
3635 1.1 nonaka urtwn_write_1(sc, R92C_PBP,
3636 1.1 nonaka SM(R92C_PBP_PSRX, R92C_PBP_128) | SM(R92C_PBP_PSTX, R92C_PBP_128));
3637 1.42 skrll return 0;
3638 1.1 nonaka }
3639 1.1 nonaka
3640 1.32 nonaka static int
3641 1.32 nonaka urtwn_r88e_dma_init(struct urtwn_softc *sc)
3642 1.32 nonaka {
3643 1.32 nonaka usb_interface_descriptor_t *id;
3644 1.32 nonaka uint32_t reg;
3645 1.32 nonaka int nqueues;
3646 1.32 nonaka int error;
3647 1.32 nonaka
3648 1.32 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
3649 1.32 nonaka
3650 1.32 nonaka KASSERT(mutex_owned(&sc->sc_write_mtx));
3651 1.32 nonaka
3652 1.32 nonaka /* Initialize LLT table. */
3653 1.32 nonaka error = urtwn_llt_init(sc);
3654 1.32 nonaka if (error != 0)
3655 1.42 skrll return error;
3656 1.32 nonaka
3657 1.32 nonaka /* Get Tx queues to USB endpoints mapping. */
3658 1.32 nonaka id = usbd_get_interface_descriptor(sc->sc_iface);
3659 1.32 nonaka nqueues = id->bNumEndpoints - 1;
3660 1.32 nonaka if (nqueues == 0)
3661 1.42 skrll return EIO;
3662 1.32 nonaka
3663 1.32 nonaka /* Set number of pages for normal priority queue. */
3664 1.32 nonaka urtwn_write_2(sc, R92C_RQPN_NPQ, 0);
3665 1.32 nonaka urtwn_write_2(sc, R92C_RQPN_NPQ, 0x000d);
3666 1.32 nonaka urtwn_write_4(sc, R92C_RQPN, 0x808e000d);
3667 1.32 nonaka
3668 1.32 nonaka urtwn_write_1(sc, R92C_TXPKTBUF_BCNQ_BDNY, R88E_TX_PAGE_BOUNDARY);
3669 1.32 nonaka urtwn_write_1(sc, R92C_TXPKTBUF_MGQ_BDNY, R88E_TX_PAGE_BOUNDARY);
3670 1.32 nonaka urtwn_write_1(sc, R92C_TXPKTBUF_WMAC_LBK_BF_HD, R88E_TX_PAGE_BOUNDARY);
3671 1.32 nonaka urtwn_write_1(sc, R92C_TRXFF_BNDY, R88E_TX_PAGE_BOUNDARY);
3672 1.32 nonaka urtwn_write_1(sc, R92C_TDECTRL + 1, R88E_TX_PAGE_BOUNDARY);
3673 1.32 nonaka
3674 1.32 nonaka /* Set queue to USB pipe mapping. */
3675 1.32 nonaka reg = urtwn_read_2(sc, R92C_TRXDMA_CTRL);
3676 1.32 nonaka reg &= ~R92C_TRXDMA_CTRL_QMAP_M;
3677 1.32 nonaka if (nqueues == 1)
3678 1.32 nonaka reg |= R92C_TRXDMA_CTRL_QMAP_LQ;
3679 1.32 nonaka else if (nqueues == 2)
3680 1.32 nonaka reg |= R92C_TRXDMA_CTRL_QMAP_HQ_NQ;
3681 1.32 nonaka else
3682 1.32 nonaka reg |= R92C_TRXDMA_CTRL_QMAP_3EP;
3683 1.32 nonaka urtwn_write_2(sc, R92C_TRXDMA_CTRL, reg);
3684 1.32 nonaka
3685 1.32 nonaka /* Set Tx/Rx transfer page boundary. */
3686 1.32 nonaka urtwn_write_2(sc, R92C_TRXFF_BNDY + 2, 0x23ff);
3687 1.32 nonaka
3688 1.32 nonaka /* Set Tx/Rx transfer page size. */
3689 1.32 nonaka urtwn_write_1(sc, R92C_PBP,
3690 1.32 nonaka SM(R92C_PBP_PSRX, R92C_PBP_128) | SM(R92C_PBP_PSTX, R92C_PBP_128));
3691 1.32 nonaka
3692 1.42 skrll return 0;
3693 1.32 nonaka }
3694 1.32 nonaka
3695 1.1 nonaka static void
3696 1.1 nonaka urtwn_mac_init(struct urtwn_softc *sc)
3697 1.1 nonaka {
3698 1.22 christos size_t i;
3699 1.1 nonaka
3700 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
3701 1.1 nonaka
3702 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
3703 1.12 christos
3704 1.1 nonaka /* Write MAC initialization values. */
3705 1.32 nonaka if (ISSET(sc->chip, URTWN_CHIP_88E)) {
3706 1.32 nonaka for (i = 0; i < __arraycount(rtl8188eu_mac); i++)
3707 1.32 nonaka urtwn_write_1(sc, rtl8188eu_mac[i].reg,
3708 1.32 nonaka rtl8188eu_mac[i].val);
3709 1.52 skrll } else if (ISSET(sc->chip, URTWN_CHIP_92EU)) {
3710 1.49 nat for (i = 0; i < __arraycount(rtl8192eu_mac); i++)
3711 1.49 nat urtwn_write_1(sc, rtl8192eu_mac[i].reg,
3712 1.49 nat rtl8192eu_mac[i].val);
3713 1.32 nonaka } else {
3714 1.32 nonaka for (i = 0; i < __arraycount(rtl8192cu_mac); i++)
3715 1.32 nonaka urtwn_write_1(sc, rtl8192cu_mac[i].reg,
3716 1.32 nonaka rtl8192cu_mac[i].val);
3717 1.32 nonaka }
3718 1.1 nonaka }
3719 1.1 nonaka
3720 1.1 nonaka static void
3721 1.1 nonaka urtwn_bb_init(struct urtwn_softc *sc)
3722 1.1 nonaka {
3723 1.60 thorpej const struct rtwn_bb_prog *prog;
3724 1.1 nonaka uint32_t reg;
3725 1.32 nonaka uint8_t crystalcap;
3726 1.22 christos size_t i;
3727 1.1 nonaka
3728 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
3729 1.1 nonaka
3730 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
3731 1.12 christos
3732 1.1 nonaka /* Enable BB and RF. */
3733 1.1 nonaka urtwn_write_2(sc, R92C_SYS_FUNC_EN,
3734 1.1 nonaka urtwn_read_2(sc, R92C_SYS_FUNC_EN) |
3735 1.1 nonaka R92C_SYS_FUNC_EN_BBRSTB | R92C_SYS_FUNC_EN_BB_GLB_RST |
3736 1.1 nonaka R92C_SYS_FUNC_EN_DIO_RF);
3737 1.1 nonaka
3738 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_88E) &&
3739 1.49 nat !ISSET(sc->chip, URTWN_CHIP_92EU)) {
3740 1.32 nonaka urtwn_write_1(sc, R92C_AFE_PLL_CTRL, 0x83);
3741 1.32 nonaka urtwn_write_1(sc, R92C_AFE_PLL_CTRL + 1, 0xdb);
3742 1.32 nonaka }
3743 1.1 nonaka
3744 1.1 nonaka urtwn_write_1(sc, R92C_RF_CTRL,
3745 1.1 nonaka R92C_RF_CTRL_EN | R92C_RF_CTRL_RSTB | R92C_RF_CTRL_SDMRSTB);
3746 1.1 nonaka urtwn_write_1(sc, R92C_SYS_FUNC_EN,
3747 1.1 nonaka R92C_SYS_FUNC_EN_USBA | R92C_SYS_FUNC_EN_USBD |
3748 1.1 nonaka R92C_SYS_FUNC_EN_BB_GLB_RST | R92C_SYS_FUNC_EN_BBRSTB);
3749 1.1 nonaka
3750 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_88E) &&
3751 1.49 nat !ISSET(sc->chip, URTWN_CHIP_92EU)) {
3752 1.32 nonaka urtwn_write_1(sc, R92C_LDOHCI12_CTRL, 0x0f);
3753 1.32 nonaka urtwn_write_1(sc, 0x15, 0xe9);
3754 1.32 nonaka urtwn_write_1(sc, R92C_AFE_XTAL_CTRL + 1, 0x80);
3755 1.32 nonaka }
3756 1.1 nonaka
3757 1.1 nonaka /* Select BB programming based on board type. */
3758 1.32 nonaka if (ISSET(sc->chip, URTWN_CHIP_88E))
3759 1.32 nonaka prog = &rtl8188eu_bb_prog;
3760 1.49 nat else if (ISSET(sc->chip, URTWN_CHIP_92EU))
3761 1.49 nat prog = &rtl8192eu_bb_prog;
3762 1.32 nonaka else if (!(sc->chip & URTWN_CHIP_92C)) {
3763 1.1 nonaka if (sc->board_type == R92C_BOARD_TYPE_MINICARD) {
3764 1.1 nonaka prog = &rtl8188ce_bb_prog;
3765 1.1 nonaka } else if (sc->board_type == R92C_BOARD_TYPE_HIGHPA) {
3766 1.1 nonaka prog = &rtl8188ru_bb_prog;
3767 1.1 nonaka } else {
3768 1.1 nonaka prog = &rtl8188cu_bb_prog;
3769 1.1 nonaka }
3770 1.1 nonaka } else {
3771 1.1 nonaka if (sc->board_type == R92C_BOARD_TYPE_MINICARD) {
3772 1.1 nonaka prog = &rtl8192ce_bb_prog;
3773 1.1 nonaka } else {
3774 1.1 nonaka prog = &rtl8192cu_bb_prog;
3775 1.1 nonaka }
3776 1.1 nonaka }
3777 1.1 nonaka /* Write BB initialization values. */
3778 1.1 nonaka for (i = 0; i < prog->count; i++) {
3779 1.1 nonaka /* additional delay depend on registers */
3780 1.1 nonaka switch (prog->regs[i]) {
3781 1.1 nonaka case 0xfe:
3782 1.49 nat urtwn_delay_ms(sc, 50);
3783 1.1 nonaka break;
3784 1.1 nonaka case 0xfd:
3785 1.49 nat urtwn_delay_ms(sc, 5);
3786 1.1 nonaka break;
3787 1.1 nonaka case 0xfc:
3788 1.49 nat urtwn_delay_ms(sc, 1);
3789 1.1 nonaka break;
3790 1.1 nonaka case 0xfb:
3791 1.1 nonaka DELAY(50);
3792 1.1 nonaka break;
3793 1.1 nonaka case 0xfa:
3794 1.1 nonaka DELAY(5);
3795 1.1 nonaka break;
3796 1.1 nonaka case 0xf9:
3797 1.1 nonaka DELAY(1);
3798 1.1 nonaka break;
3799 1.1 nonaka }
3800 1.1 nonaka urtwn_bb_write(sc, prog->regs[i], prog->vals[i]);
3801 1.1 nonaka DELAY(1);
3802 1.1 nonaka }
3803 1.1 nonaka
3804 1.1 nonaka if (sc->chip & URTWN_CHIP_92C_1T2R) {
3805 1.1 nonaka /* 8192C 1T only configuration. */
3806 1.1 nonaka reg = urtwn_bb_read(sc, R92C_FPGA0_TXINFO);
3807 1.1 nonaka reg = (reg & ~0x00000003) | 0x2;
3808 1.1 nonaka urtwn_bb_write(sc, R92C_FPGA0_TXINFO, reg);
3809 1.1 nonaka
3810 1.1 nonaka reg = urtwn_bb_read(sc, R92C_FPGA1_TXINFO);
3811 1.1 nonaka reg = (reg & ~0x00300033) | 0x00200022;
3812 1.1 nonaka urtwn_bb_write(sc, R92C_FPGA1_TXINFO, reg);
3813 1.1 nonaka
3814 1.1 nonaka reg = urtwn_bb_read(sc, R92C_CCK0_AFESETTING);
3815 1.1 nonaka reg = (reg & ~0xff000000) | (0x45 << 24);
3816 1.1 nonaka urtwn_bb_write(sc, R92C_CCK0_AFESETTING, reg);
3817 1.1 nonaka
3818 1.1 nonaka reg = urtwn_bb_read(sc, R92C_OFDM0_TRXPATHENA);
3819 1.1 nonaka reg = (reg & ~0x000000ff) | 0x23;
3820 1.1 nonaka urtwn_bb_write(sc, R92C_OFDM0_TRXPATHENA, reg);
3821 1.1 nonaka
3822 1.1 nonaka reg = urtwn_bb_read(sc, R92C_OFDM0_AGCPARAM1);
3823 1.1 nonaka reg = (reg & ~0x00000030) | (1 << 4);
3824 1.1 nonaka urtwn_bb_write(sc, R92C_OFDM0_AGCPARAM1, reg);
3825 1.1 nonaka
3826 1.1 nonaka reg = urtwn_bb_read(sc, 0xe74);
3827 1.1 nonaka reg = (reg & ~0x0c000000) | (2 << 26);
3828 1.1 nonaka urtwn_bb_write(sc, 0xe74, reg);
3829 1.1 nonaka reg = urtwn_bb_read(sc, 0xe78);
3830 1.1 nonaka reg = (reg & ~0x0c000000) | (2 << 26);
3831 1.1 nonaka urtwn_bb_write(sc, 0xe78, reg);
3832 1.1 nonaka reg = urtwn_bb_read(sc, 0xe7c);
3833 1.1 nonaka reg = (reg & ~0x0c000000) | (2 << 26);
3834 1.1 nonaka urtwn_bb_write(sc, 0xe7c, reg);
3835 1.1 nonaka reg = urtwn_bb_read(sc, 0xe80);
3836 1.1 nonaka reg = (reg & ~0x0c000000) | (2 << 26);
3837 1.1 nonaka urtwn_bb_write(sc, 0xe80, reg);
3838 1.1 nonaka reg = urtwn_bb_read(sc, 0xe88);
3839 1.1 nonaka reg = (reg & ~0x0c000000) | (2 << 26);
3840 1.1 nonaka urtwn_bb_write(sc, 0xe88, reg);
3841 1.1 nonaka }
3842 1.1 nonaka
3843 1.1 nonaka /* Write AGC values. */
3844 1.1 nonaka for (i = 0; i < prog->agccount; i++) {
3845 1.1 nonaka urtwn_bb_write(sc, R92C_OFDM0_AGCRSSITABLE, prog->agcvals[i]);
3846 1.1 nonaka DELAY(1);
3847 1.1 nonaka }
3848 1.1 nonaka
3849 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_88E) ||
3850 1.49 nat ISSET(sc->chip, URTWN_CHIP_92EU)) {
3851 1.32 nonaka urtwn_bb_write(sc, R92C_OFDM0_AGCCORE1(0), 0x69553422);
3852 1.32 nonaka DELAY(1);
3853 1.32 nonaka urtwn_bb_write(sc, R92C_OFDM0_AGCCORE1(0), 0x69553420);
3854 1.32 nonaka DELAY(1);
3855 1.58 nat }
3856 1.32 nonaka
3857 1.58 nat if (ISSET(sc->chip, URTWN_CHIP_92EU)) {
3858 1.58 nat crystalcap = sc->r88e_rom[0xb9];
3859 1.58 nat if (crystalcap == 0x00)
3860 1.58 nat crystalcap = 0x20;
3861 1.58 nat crystalcap &= 0x3f;
3862 1.58 nat reg = urtwn_bb_read(sc, R92C_AFE_CTRL3);
3863 1.58 nat urtwn_bb_write(sc, R92C_AFE_CTRL3,
3864 1.58 nat RW(reg, R92C_AFE_XTAL_CTRL_ADDR,
3865 1.58 nat crystalcap | crystalcap << 6));
3866 1.58 nat urtwn_write_4(sc, R92C_AFE_XTAL_CTRL, 0xf81fb);
3867 1.58 nat } else if (ISSET(sc->chip, URTWN_CHIP_88E)) {
3868 1.32 nonaka crystalcap = sc->r88e_rom[0xb9];
3869 1.32 nonaka if (crystalcap == 0xff)
3870 1.32 nonaka crystalcap = 0x20;
3871 1.32 nonaka crystalcap &= 0x3f;
3872 1.32 nonaka reg = urtwn_bb_read(sc, R92C_AFE_XTAL_CTRL);
3873 1.32 nonaka urtwn_bb_write(sc, R92C_AFE_XTAL_CTRL,
3874 1.32 nonaka RW(reg, R92C_AFE_XTAL_CTRL_ADDR,
3875 1.32 nonaka crystalcap | crystalcap << 6));
3876 1.32 nonaka } else {
3877 1.32 nonaka if (urtwn_bb_read(sc, R92C_HSSI_PARAM2(0)) &
3878 1.32 nonaka R92C_HSSI_PARAM2_CCK_HIPWR) {
3879 1.32 nonaka SET(sc->sc_flags, URTWN_FLAG_CCK_HIPWR);
3880 1.32 nonaka }
3881 1.1 nonaka }
3882 1.1 nonaka }
3883 1.1 nonaka
3884 1.1 nonaka static void
3885 1.1 nonaka urtwn_rf_init(struct urtwn_softc *sc)
3886 1.1 nonaka {
3887 1.60 thorpej const struct rtwn_rf_prog *prog;
3888 1.1 nonaka uint32_t reg, mask, saved;
3889 1.22 christos size_t i, j, idx;
3890 1.1 nonaka
3891 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
3892 1.1 nonaka
3893 1.1 nonaka /* Select RF programming based on board type. */
3894 1.32 nonaka if (ISSET(sc->chip, URTWN_CHIP_88E))
3895 1.32 nonaka prog = rtl8188eu_rf_prog;
3896 1.49 nat else if (ISSET(sc->chip, URTWN_CHIP_92EU))
3897 1.49 nat prog = rtl8192eu_rf_prog;
3898 1.32 nonaka else if (!(sc->chip & URTWN_CHIP_92C)) {
3899 1.1 nonaka if (sc->board_type == R92C_BOARD_TYPE_MINICARD) {
3900 1.1 nonaka prog = rtl8188ce_rf_prog;
3901 1.1 nonaka } else if (sc->board_type == R92C_BOARD_TYPE_HIGHPA) {
3902 1.1 nonaka prog = rtl8188ru_rf_prog;
3903 1.1 nonaka } else {
3904 1.1 nonaka prog = rtl8188cu_rf_prog;
3905 1.1 nonaka }
3906 1.1 nonaka } else {
3907 1.1 nonaka prog = rtl8192ce_rf_prog;
3908 1.1 nonaka }
3909 1.1 nonaka
3910 1.1 nonaka for (i = 0; i < sc->nrxchains; i++) {
3911 1.1 nonaka /* Save RF_ENV control type. */
3912 1.1 nonaka idx = i / 2;
3913 1.1 nonaka mask = 0xffffU << ((i % 2) * 16);
3914 1.1 nonaka saved = urtwn_bb_read(sc, R92C_FPGA0_RFIFACESW(idx)) & mask;
3915 1.1 nonaka
3916 1.1 nonaka /* Set RF_ENV enable. */
3917 1.1 nonaka reg = urtwn_bb_read(sc, R92C_FPGA0_RFIFACEOE(i));
3918 1.1 nonaka reg |= 0x100000;
3919 1.1 nonaka urtwn_bb_write(sc, R92C_FPGA0_RFIFACEOE(i), reg);
3920 1.49 nat DELAY(50);
3921 1.1 nonaka
3922 1.1 nonaka /* Set RF_ENV output high. */
3923 1.1 nonaka reg = urtwn_bb_read(sc, R92C_FPGA0_RFIFACEOE(i));
3924 1.1 nonaka reg |= 0x10;
3925 1.1 nonaka urtwn_bb_write(sc, R92C_FPGA0_RFIFACEOE(i), reg);
3926 1.49 nat DELAY(50);
3927 1.1 nonaka
3928 1.1 nonaka /* Set address and data lengths of RF registers. */
3929 1.1 nonaka reg = urtwn_bb_read(sc, R92C_HSSI_PARAM2(i));
3930 1.1 nonaka reg &= ~R92C_HSSI_PARAM2_ADDR_LENGTH;
3931 1.1 nonaka urtwn_bb_write(sc, R92C_HSSI_PARAM2(i), reg);
3932 1.49 nat DELAY(50);
3933 1.1 nonaka reg = urtwn_bb_read(sc, R92C_HSSI_PARAM2(i));
3934 1.1 nonaka reg &= ~R92C_HSSI_PARAM2_DATA_LENGTH;
3935 1.1 nonaka urtwn_bb_write(sc, R92C_HSSI_PARAM2(i), reg);
3936 1.49 nat DELAY(50);
3937 1.1 nonaka
3938 1.1 nonaka /* Write RF initialization values for this chain. */
3939 1.1 nonaka for (j = 0; j < prog[i].count; j++) {
3940 1.1 nonaka if (prog[i].regs[j] >= 0xf9 &&
3941 1.1 nonaka prog[i].regs[j] <= 0xfe) {
3942 1.1 nonaka /*
3943 1.1 nonaka * These are fake RF registers offsets that
3944 1.1 nonaka * indicate a delay is required.
3945 1.1 nonaka */
3946 1.49 nat urtwn_delay_ms(sc, 50);
3947 1.1 nonaka continue;
3948 1.1 nonaka }
3949 1.1 nonaka urtwn_rf_write(sc, i, prog[i].regs[j], prog[i].vals[j]);
3950 1.49 nat DELAY(5);
3951 1.1 nonaka }
3952 1.1 nonaka
3953 1.1 nonaka /* Restore RF_ENV control type. */
3954 1.1 nonaka reg = urtwn_bb_read(sc, R92C_FPGA0_RFIFACESW(idx)) & ~mask;
3955 1.1 nonaka urtwn_bb_write(sc, R92C_FPGA0_RFIFACESW(idx), reg | saved);
3956 1.1 nonaka }
3957 1.1 nonaka
3958 1.1 nonaka if ((sc->chip & (URTWN_CHIP_UMC_A_CUT | URTWN_CHIP_92C)) ==
3959 1.1 nonaka URTWN_CHIP_UMC_A_CUT) {
3960 1.1 nonaka urtwn_rf_write(sc, 0, R92C_RF_RX_G1, 0x30255);
3961 1.1 nonaka urtwn_rf_write(sc, 0, R92C_RF_RX_G2, 0x50a00);
3962 1.1 nonaka }
3963 1.1 nonaka
3964 1.1 nonaka /* Cache RF register CHNLBW. */
3965 1.1 nonaka for (i = 0; i < 2; i++) {
3966 1.1 nonaka sc->rf_chnlbw[i] = urtwn_rf_read(sc, i, R92C_RF_CHNLBW);
3967 1.1 nonaka }
3968 1.1 nonaka }
3969 1.1 nonaka
3970 1.1 nonaka static void
3971 1.1 nonaka urtwn_cam_init(struct urtwn_softc *sc)
3972 1.1 nonaka {
3973 1.1 nonaka uint32_t content, command;
3974 1.1 nonaka uint8_t idx;
3975 1.22 christos size_t i;
3976 1.1 nonaka
3977 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
3978 1.1 nonaka
3979 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
3980 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_92EU))
3981 1.49 nat return;
3982 1.12 christos
3983 1.1 nonaka for (idx = 0; idx < R92C_CAM_ENTRY_COUNT; idx++) {
3984 1.1 nonaka content = (idx & 3)
3985 1.1 nonaka | (R92C_CAM_ALGO_AES << R92C_CAM_ALGO_S)
3986 1.1 nonaka | R92C_CAM_VALID;
3987 1.1 nonaka
3988 1.1 nonaka command = R92C_CAMCMD_POLLING
3989 1.1 nonaka | R92C_CAMCMD_WRITE
3990 1.1 nonaka | R92C_CAM_CTL0(idx);
3991 1.1 nonaka
3992 1.1 nonaka urtwn_write_4(sc, R92C_CAMWRITE, content);
3993 1.1 nonaka urtwn_write_4(sc, R92C_CAMCMD, command);
3994 1.1 nonaka }
3995 1.1 nonaka
3996 1.1 nonaka for (idx = 0; idx < R92C_CAM_ENTRY_COUNT; idx++) {
3997 1.1 nonaka for (i = 0; i < /* CAM_CONTENT_COUNT */ 8; i++) {
3998 1.1 nonaka if (i == 0) {
3999 1.1 nonaka content = (idx & 3)
4000 1.1 nonaka | (R92C_CAM_ALGO_AES << R92C_CAM_ALGO_S)
4001 1.1 nonaka | R92C_CAM_VALID;
4002 1.1 nonaka } else {
4003 1.1 nonaka content = 0;
4004 1.1 nonaka }
4005 1.1 nonaka
4006 1.1 nonaka command = R92C_CAMCMD_POLLING
4007 1.1 nonaka | R92C_CAMCMD_WRITE
4008 1.1 nonaka | R92C_CAM_CTL0(idx)
4009 1.22 christos | i;
4010 1.1 nonaka
4011 1.1 nonaka urtwn_write_4(sc, R92C_CAMWRITE, content);
4012 1.1 nonaka urtwn_write_4(sc, R92C_CAMCMD, command);
4013 1.1 nonaka }
4014 1.1 nonaka }
4015 1.1 nonaka
4016 1.1 nonaka /* Invalidate all CAM entries. */
4017 1.1 nonaka urtwn_write_4(sc, R92C_CAMCMD, R92C_CAMCMD_POLLING | R92C_CAMCMD_CLR);
4018 1.1 nonaka }
4019 1.1 nonaka
4020 1.1 nonaka static void
4021 1.1 nonaka urtwn_pa_bias_init(struct urtwn_softc *sc)
4022 1.1 nonaka {
4023 1.1 nonaka uint8_t reg;
4024 1.22 christos size_t i;
4025 1.1 nonaka
4026 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
4027 1.1 nonaka
4028 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
4029 1.12 christos
4030 1.1 nonaka for (i = 0; i < sc->nrxchains; i++) {
4031 1.1 nonaka if (sc->pa_setting & (1U << i))
4032 1.1 nonaka continue;
4033 1.1 nonaka
4034 1.1 nonaka urtwn_rf_write(sc, i, R92C_RF_IPA, 0x0f406);
4035 1.1 nonaka urtwn_rf_write(sc, i, R92C_RF_IPA, 0x4f406);
4036 1.1 nonaka urtwn_rf_write(sc, i, R92C_RF_IPA, 0x8f406);
4037 1.1 nonaka urtwn_rf_write(sc, i, R92C_RF_IPA, 0xcf406);
4038 1.1 nonaka }
4039 1.1 nonaka if (!(sc->pa_setting & 0x10)) {
4040 1.1 nonaka reg = urtwn_read_1(sc, 0x16);
4041 1.1 nonaka reg = (reg & ~0xf0) | 0x90;
4042 1.1 nonaka urtwn_write_1(sc, 0x16, reg);
4043 1.1 nonaka }
4044 1.1 nonaka }
4045 1.1 nonaka
4046 1.1 nonaka static void
4047 1.1 nonaka urtwn_rxfilter_init(struct urtwn_softc *sc)
4048 1.1 nonaka {
4049 1.1 nonaka
4050 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
4051 1.1 nonaka
4052 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
4053 1.12 christos
4054 1.1 nonaka /* Initialize Rx filter. */
4055 1.1 nonaka /* TODO: use better filter for monitor mode. */
4056 1.1 nonaka urtwn_write_4(sc, R92C_RCR,
4057 1.1 nonaka R92C_RCR_AAP | R92C_RCR_APM | R92C_RCR_AM | R92C_RCR_AB |
4058 1.1 nonaka R92C_RCR_APP_ICV | R92C_RCR_AMF | R92C_RCR_HTC_LOC_CTRL |
4059 1.1 nonaka R92C_RCR_APP_MIC | R92C_RCR_APP_PHYSTS);
4060 1.1 nonaka /* Accept all multicast frames. */
4061 1.1 nonaka urtwn_write_4(sc, R92C_MAR + 0, 0xffffffff);
4062 1.1 nonaka urtwn_write_4(sc, R92C_MAR + 4, 0xffffffff);
4063 1.1 nonaka /* Accept all management frames. */
4064 1.1 nonaka urtwn_write_2(sc, R92C_RXFLTMAP0, 0xffff);
4065 1.1 nonaka /* Reject all control frames. */
4066 1.1 nonaka urtwn_write_2(sc, R92C_RXFLTMAP1, 0x0000);
4067 1.1 nonaka /* Accept all data frames. */
4068 1.1 nonaka urtwn_write_2(sc, R92C_RXFLTMAP2, 0xffff);
4069 1.1 nonaka }
4070 1.1 nonaka
4071 1.1 nonaka static void
4072 1.1 nonaka urtwn_edca_init(struct urtwn_softc *sc)
4073 1.1 nonaka {
4074 1.1 nonaka
4075 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
4076 1.1 nonaka
4077 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
4078 1.12 christos
4079 1.1 nonaka /* set spec SIFS (used in NAV) */
4080 1.1 nonaka urtwn_write_2(sc, R92C_SPEC_SIFS, 0x100a);
4081 1.1 nonaka urtwn_write_2(sc, R92C_MAC_SPEC_SIFS, 0x100a);
4082 1.1 nonaka
4083 1.1 nonaka /* set SIFS CCK/OFDM */
4084 1.1 nonaka urtwn_write_2(sc, R92C_SIFS_CCK, 0x100a);
4085 1.1 nonaka urtwn_write_2(sc, R92C_SIFS_OFDM, 0x100a);
4086 1.1 nonaka
4087 1.1 nonaka /* TXOP */
4088 1.1 nonaka urtwn_write_4(sc, R92C_EDCA_BE_PARAM, 0x005ea42b);
4089 1.1 nonaka urtwn_write_4(sc, R92C_EDCA_BK_PARAM, 0x0000a44f);
4090 1.1 nonaka urtwn_write_4(sc, R92C_EDCA_VI_PARAM, 0x005ea324);
4091 1.1 nonaka urtwn_write_4(sc, R92C_EDCA_VO_PARAM, 0x002fa226);
4092 1.1 nonaka }
4093 1.1 nonaka
4094 1.1 nonaka static void
4095 1.1 nonaka urtwn_write_txpower(struct urtwn_softc *sc, int chain,
4096 1.1 nonaka uint16_t power[URTWN_RIDX_COUNT])
4097 1.1 nonaka {
4098 1.1 nonaka uint32_t reg;
4099 1.1 nonaka
4100 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s: chain=%d\n", device_xname(sc->sc_dev),
4101 1.1 nonaka __func__, chain));
4102 1.1 nonaka
4103 1.1 nonaka /* Write per-CCK rate Tx power. */
4104 1.1 nonaka if (chain == 0) {
4105 1.1 nonaka reg = urtwn_bb_read(sc, R92C_TXAGC_A_CCK1_MCS32);
4106 1.1 nonaka reg = RW(reg, R92C_TXAGC_A_CCK1, power[0]);
4107 1.1 nonaka urtwn_bb_write(sc, R92C_TXAGC_A_CCK1_MCS32, reg);
4108 1.1 nonaka
4109 1.1 nonaka reg = urtwn_bb_read(sc, R92C_TXAGC_B_CCK11_A_CCK2_11);
4110 1.1 nonaka reg = RW(reg, R92C_TXAGC_A_CCK2, power[1]);
4111 1.1 nonaka reg = RW(reg, R92C_TXAGC_A_CCK55, power[2]);
4112 1.1 nonaka reg = RW(reg, R92C_TXAGC_A_CCK11, power[3]);
4113 1.1 nonaka urtwn_bb_write(sc, R92C_TXAGC_B_CCK11_A_CCK2_11, reg);
4114 1.1 nonaka } else {
4115 1.1 nonaka reg = urtwn_bb_read(sc, R92C_TXAGC_B_CCK1_55_MCS32);
4116 1.1 nonaka reg = RW(reg, R92C_TXAGC_B_CCK1, power[0]);
4117 1.1 nonaka reg = RW(reg, R92C_TXAGC_B_CCK2, power[1]);
4118 1.1 nonaka reg = RW(reg, R92C_TXAGC_B_CCK55, power[2]);
4119 1.1 nonaka urtwn_bb_write(sc, R92C_TXAGC_B_CCK1_55_MCS32, reg);
4120 1.1 nonaka
4121 1.1 nonaka reg = urtwn_bb_read(sc, R92C_TXAGC_B_CCK11_A_CCK2_11);
4122 1.1 nonaka reg = RW(reg, R92C_TXAGC_B_CCK11, power[3]);
4123 1.1 nonaka urtwn_bb_write(sc, R92C_TXAGC_B_CCK11_A_CCK2_11, reg);
4124 1.1 nonaka }
4125 1.1 nonaka /* Write per-OFDM rate Tx power. */
4126 1.1 nonaka urtwn_bb_write(sc, R92C_TXAGC_RATE18_06(chain),
4127 1.1 nonaka SM(R92C_TXAGC_RATE06, power[ 4]) |
4128 1.1 nonaka SM(R92C_TXAGC_RATE09, power[ 5]) |
4129 1.1 nonaka SM(R92C_TXAGC_RATE12, power[ 6]) |
4130 1.1 nonaka SM(R92C_TXAGC_RATE18, power[ 7]));
4131 1.1 nonaka urtwn_bb_write(sc, R92C_TXAGC_RATE54_24(chain),
4132 1.1 nonaka SM(R92C_TXAGC_RATE24, power[ 8]) |
4133 1.1 nonaka SM(R92C_TXAGC_RATE36, power[ 9]) |
4134 1.1 nonaka SM(R92C_TXAGC_RATE48, power[10]) |
4135 1.1 nonaka SM(R92C_TXAGC_RATE54, power[11]));
4136 1.1 nonaka /* Write per-MCS Tx power. */
4137 1.1 nonaka urtwn_bb_write(sc, R92C_TXAGC_MCS03_MCS00(chain),
4138 1.1 nonaka SM(R92C_TXAGC_MCS00, power[12]) |
4139 1.1 nonaka SM(R92C_TXAGC_MCS01, power[13]) |
4140 1.1 nonaka SM(R92C_TXAGC_MCS02, power[14]) |
4141 1.1 nonaka SM(R92C_TXAGC_MCS03, power[15]));
4142 1.1 nonaka urtwn_bb_write(sc, R92C_TXAGC_MCS07_MCS04(chain),
4143 1.1 nonaka SM(R92C_TXAGC_MCS04, power[16]) |
4144 1.1 nonaka SM(R92C_TXAGC_MCS05, power[17]) |
4145 1.1 nonaka SM(R92C_TXAGC_MCS06, power[18]) |
4146 1.1 nonaka SM(R92C_TXAGC_MCS07, power[19]));
4147 1.1 nonaka urtwn_bb_write(sc, R92C_TXAGC_MCS11_MCS08(chain),
4148 1.1 nonaka SM(R92C_TXAGC_MCS08, power[20]) |
4149 1.1 nonaka SM(R92C_TXAGC_MCS09, power[21]) |
4150 1.1 nonaka SM(R92C_TXAGC_MCS10, power[22]) |
4151 1.1 nonaka SM(R92C_TXAGC_MCS11, power[23]));
4152 1.1 nonaka urtwn_bb_write(sc, R92C_TXAGC_MCS15_MCS12(chain),
4153 1.1 nonaka SM(R92C_TXAGC_MCS12, power[24]) |
4154 1.1 nonaka SM(R92C_TXAGC_MCS13, power[25]) |
4155 1.1 nonaka SM(R92C_TXAGC_MCS14, power[26]) |
4156 1.1 nonaka SM(R92C_TXAGC_MCS15, power[27]));
4157 1.1 nonaka }
4158 1.1 nonaka
4159 1.1 nonaka static void
4160 1.22 christos urtwn_get_txpower(struct urtwn_softc *sc, size_t chain, u_int chan, u_int ht40m,
4161 1.1 nonaka uint16_t power[URTWN_RIDX_COUNT])
4162 1.1 nonaka {
4163 1.1 nonaka struct r92c_rom *rom = &sc->rom;
4164 1.1 nonaka uint16_t cckpow, ofdmpow, htpow, diff, maxpow;
4165 1.60 thorpej const struct rtwn_txpwr *base;
4166 1.1 nonaka int ridx, group;
4167 1.1 nonaka
4168 1.22 christos DPRINTFN(DBG_FN, ("%s: %s: chain=%zd, chan=%d\n",
4169 1.1 nonaka device_xname(sc->sc_dev), __func__, chain, chan));
4170 1.1 nonaka
4171 1.1 nonaka /* Determine channel group. */
4172 1.1 nonaka if (chan <= 3) {
4173 1.1 nonaka group = 0;
4174 1.1 nonaka } else if (chan <= 9) {
4175 1.1 nonaka group = 1;
4176 1.1 nonaka } else {
4177 1.1 nonaka group = 2;
4178 1.1 nonaka }
4179 1.1 nonaka
4180 1.1 nonaka /* Get original Tx power based on board type and RF chain. */
4181 1.1 nonaka if (!(sc->chip & URTWN_CHIP_92C)) {
4182 1.1 nonaka if (sc->board_type == R92C_BOARD_TYPE_HIGHPA) {
4183 1.1 nonaka base = &rtl8188ru_txagc[chain];
4184 1.1 nonaka } else {
4185 1.1 nonaka base = &rtl8192cu_txagc[chain];
4186 1.1 nonaka }
4187 1.1 nonaka } else {
4188 1.1 nonaka base = &rtl8192cu_txagc[chain];
4189 1.1 nonaka }
4190 1.1 nonaka
4191 1.1 nonaka memset(power, 0, URTWN_RIDX_COUNT * sizeof(power[0]));
4192 1.1 nonaka if (sc->regulatory == 0) {
4193 1.1 nonaka for (ridx = 0; ridx <= 3; ridx++) {
4194 1.1 nonaka power[ridx] = base->pwr[0][ridx];
4195 1.1 nonaka }
4196 1.1 nonaka }
4197 1.1 nonaka for (ridx = 4; ridx < URTWN_RIDX_COUNT; ridx++) {
4198 1.1 nonaka if (sc->regulatory == 3) {
4199 1.1 nonaka power[ridx] = base->pwr[0][ridx];
4200 1.1 nonaka /* Apply vendor limits. */
4201 1.1 nonaka if (ht40m != IEEE80211_HTINFO_2NDCHAN_NONE) {
4202 1.1 nonaka maxpow = rom->ht40_max_pwr[group];
4203 1.1 nonaka } else {
4204 1.1 nonaka maxpow = rom->ht20_max_pwr[group];
4205 1.1 nonaka }
4206 1.1 nonaka maxpow = (maxpow >> (chain * 4)) & 0xf;
4207 1.1 nonaka if (power[ridx] > maxpow) {
4208 1.1 nonaka power[ridx] = maxpow;
4209 1.1 nonaka }
4210 1.1 nonaka } else if (sc->regulatory == 1) {
4211 1.1 nonaka if (ht40m == IEEE80211_HTINFO_2NDCHAN_NONE) {
4212 1.1 nonaka power[ridx] = base->pwr[group][ridx];
4213 1.1 nonaka }
4214 1.1 nonaka } else if (sc->regulatory != 2) {
4215 1.1 nonaka power[ridx] = base->pwr[0][ridx];
4216 1.1 nonaka }
4217 1.1 nonaka }
4218 1.1 nonaka
4219 1.1 nonaka /* Compute per-CCK rate Tx power. */
4220 1.1 nonaka cckpow = rom->cck_tx_pwr[chain][group];
4221 1.1 nonaka for (ridx = 0; ridx <= 3; ridx++) {
4222 1.1 nonaka power[ridx] += cckpow;
4223 1.1 nonaka if (power[ridx] > R92C_MAX_TX_PWR) {
4224 1.1 nonaka power[ridx] = R92C_MAX_TX_PWR;
4225 1.1 nonaka }
4226 1.1 nonaka }
4227 1.1 nonaka
4228 1.1 nonaka htpow = rom->ht40_1s_tx_pwr[chain][group];
4229 1.1 nonaka if (sc->ntxchains > 1) {
4230 1.1 nonaka /* Apply reduction for 2 spatial streams. */
4231 1.1 nonaka diff = rom->ht40_2s_tx_pwr_diff[group];
4232 1.1 nonaka diff = (diff >> (chain * 4)) & 0xf;
4233 1.1 nonaka htpow = (htpow > diff) ? htpow - diff : 0;
4234 1.1 nonaka }
4235 1.1 nonaka
4236 1.1 nonaka /* Compute per-OFDM rate Tx power. */
4237 1.1 nonaka diff = rom->ofdm_tx_pwr_diff[group];
4238 1.1 nonaka diff = (diff >> (chain * 4)) & 0xf;
4239 1.1 nonaka ofdmpow = htpow + diff; /* HT->OFDM correction. */
4240 1.1 nonaka for (ridx = 4; ridx <= 11; ridx++) {
4241 1.1 nonaka power[ridx] += ofdmpow;
4242 1.1 nonaka if (power[ridx] > R92C_MAX_TX_PWR) {
4243 1.1 nonaka power[ridx] = R92C_MAX_TX_PWR;
4244 1.1 nonaka }
4245 1.1 nonaka }
4246 1.1 nonaka
4247 1.1 nonaka /* Compute per-MCS Tx power. */
4248 1.1 nonaka if (ht40m == IEEE80211_HTINFO_2NDCHAN_NONE) {
4249 1.1 nonaka diff = rom->ht20_tx_pwr_diff[group];
4250 1.1 nonaka diff = (diff >> (chain * 4)) & 0xf;
4251 1.1 nonaka htpow += diff; /* HT40->HT20 correction. */
4252 1.1 nonaka }
4253 1.1 nonaka for (ridx = 12; ridx < URTWN_RIDX_COUNT; ridx++) {
4254 1.1 nonaka power[ridx] += htpow;
4255 1.1 nonaka if (power[ridx] > R92C_MAX_TX_PWR) {
4256 1.1 nonaka power[ridx] = R92C_MAX_TX_PWR;
4257 1.1 nonaka }
4258 1.1 nonaka }
4259 1.1 nonaka #ifdef URTWN_DEBUG
4260 1.1 nonaka if (urtwn_debug & DBG_RF) {
4261 1.1 nonaka /* Dump per-rate Tx power values. */
4262 1.22 christos printf("%s: %s: Tx power for chain %zd:\n",
4263 1.1 nonaka device_xname(sc->sc_dev), __func__, chain);
4264 1.1 nonaka for (ridx = 0; ridx < URTWN_RIDX_COUNT; ridx++) {
4265 1.1 nonaka printf("%s: %s: Rate %d = %u\n",
4266 1.1 nonaka device_xname(sc->sc_dev), __func__, ridx,
4267 1.1 nonaka power[ridx]);
4268 1.1 nonaka }
4269 1.1 nonaka }
4270 1.1 nonaka #endif
4271 1.1 nonaka }
4272 1.1 nonaka
4273 1.32 nonaka void
4274 1.32 nonaka urtwn_r88e_get_txpower(struct urtwn_softc *sc, size_t chain, u_int chan,
4275 1.32 nonaka u_int ht40m, uint16_t power[URTWN_RIDX_COUNT])
4276 1.32 nonaka {
4277 1.32 nonaka uint16_t cckpow, ofdmpow, bw20pow, htpow;
4278 1.60 thorpej const struct rtwn_r88e_txpwr *base;
4279 1.32 nonaka int ridx, group;
4280 1.32 nonaka
4281 1.32 nonaka DPRINTFN(DBG_FN, ("%s: %s: chain=%zd, chan=%d\n",
4282 1.32 nonaka device_xname(sc->sc_dev), __func__, chain, chan));
4283 1.32 nonaka
4284 1.32 nonaka /* Determine channel group. */
4285 1.32 nonaka if (chan <= 2)
4286 1.32 nonaka group = 0;
4287 1.32 nonaka else if (chan <= 5)
4288 1.32 nonaka group = 1;
4289 1.32 nonaka else if (chan <= 8)
4290 1.32 nonaka group = 2;
4291 1.32 nonaka else if (chan <= 11)
4292 1.32 nonaka group = 3;
4293 1.32 nonaka else if (chan <= 13)
4294 1.32 nonaka group = 4;
4295 1.32 nonaka else
4296 1.32 nonaka group = 5;
4297 1.32 nonaka
4298 1.32 nonaka /* Get original Tx power based on board type and RF chain. */
4299 1.32 nonaka base = &rtl8188eu_txagc[chain];
4300 1.32 nonaka
4301 1.32 nonaka memset(power, 0, URTWN_RIDX_COUNT * sizeof(power[0]));
4302 1.32 nonaka if (sc->regulatory == 0) {
4303 1.32 nonaka for (ridx = 0; ridx <= 3; ridx++)
4304 1.32 nonaka power[ridx] = base->pwr[0][ridx];
4305 1.32 nonaka }
4306 1.32 nonaka for (ridx = 4; ridx < URTWN_RIDX_COUNT; ridx++) {
4307 1.32 nonaka if (sc->regulatory == 3)
4308 1.32 nonaka power[ridx] = base->pwr[0][ridx];
4309 1.32 nonaka else if (sc->regulatory == 1) {
4310 1.32 nonaka if (ht40m == IEEE80211_HTINFO_2NDCHAN_NONE)
4311 1.32 nonaka power[ridx] = base->pwr[group][ridx];
4312 1.32 nonaka } else if (sc->regulatory != 2)
4313 1.32 nonaka power[ridx] = base->pwr[0][ridx];
4314 1.32 nonaka }
4315 1.32 nonaka
4316 1.32 nonaka /* Compute per-CCK rate Tx power. */
4317 1.32 nonaka cckpow = sc->cck_tx_pwr[group];
4318 1.32 nonaka for (ridx = 0; ridx <= 3; ridx++) {
4319 1.32 nonaka power[ridx] += cckpow;
4320 1.32 nonaka if (power[ridx] > R92C_MAX_TX_PWR)
4321 1.32 nonaka power[ridx] = R92C_MAX_TX_PWR;
4322 1.32 nonaka }
4323 1.32 nonaka
4324 1.32 nonaka htpow = sc->ht40_tx_pwr[group];
4325 1.32 nonaka
4326 1.32 nonaka /* Compute per-OFDM rate Tx power. */
4327 1.32 nonaka ofdmpow = htpow + sc->ofdm_tx_pwr_diff;
4328 1.32 nonaka for (ridx = 4; ridx <= 11; ridx++) {
4329 1.32 nonaka power[ridx] += ofdmpow;
4330 1.32 nonaka if (power[ridx] > R92C_MAX_TX_PWR)
4331 1.32 nonaka power[ridx] = R92C_MAX_TX_PWR;
4332 1.32 nonaka }
4333 1.32 nonaka
4334 1.32 nonaka bw20pow = htpow + sc->bw20_tx_pwr_diff;
4335 1.32 nonaka for (ridx = 12; ridx <= 27; ridx++) {
4336 1.32 nonaka power[ridx] += bw20pow;
4337 1.32 nonaka if (power[ridx] > R92C_MAX_TX_PWR)
4338 1.32 nonaka power[ridx] = R92C_MAX_TX_PWR;
4339 1.32 nonaka }
4340 1.32 nonaka }
4341 1.32 nonaka
4342 1.1 nonaka static void
4343 1.1 nonaka urtwn_set_txpower(struct urtwn_softc *sc, u_int chan, u_int ht40m)
4344 1.1 nonaka {
4345 1.1 nonaka uint16_t power[URTWN_RIDX_COUNT];
4346 1.22 christos size_t i;
4347 1.1 nonaka
4348 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
4349 1.1 nonaka
4350 1.1 nonaka for (i = 0; i < sc->ntxchains; i++) {
4351 1.1 nonaka /* Compute per-rate Tx power values. */
4352 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_88E) ||
4353 1.49 nat ISSET(sc->chip, URTWN_CHIP_92EU))
4354 1.32 nonaka urtwn_r88e_get_txpower(sc, i, chan, ht40m, power);
4355 1.32 nonaka else
4356 1.32 nonaka urtwn_get_txpower(sc, i, chan, ht40m, power);
4357 1.1 nonaka /* Write per-rate Tx power values to hardware. */
4358 1.1 nonaka urtwn_write_txpower(sc, i, power);
4359 1.1 nonaka }
4360 1.1 nonaka }
4361 1.1 nonaka
4362 1.1 nonaka static void
4363 1.1 nonaka urtwn_set_chan(struct urtwn_softc *sc, struct ieee80211_channel *c, u_int ht40m)
4364 1.1 nonaka {
4365 1.1 nonaka struct ieee80211com *ic = &sc->sc_ic;
4366 1.1 nonaka u_int chan;
4367 1.22 christos size_t i;
4368 1.1 nonaka
4369 1.1 nonaka chan = ieee80211_chan2ieee(ic, c); /* XXX center freq! */
4370 1.1 nonaka
4371 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s: chan=%d\n", device_xname(sc->sc_dev),
4372 1.1 nonaka __func__, chan));
4373 1.1 nonaka
4374 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
4375 1.12 christos
4376 1.1 nonaka if (ht40m == IEEE80211_HTINFO_2NDCHAN_ABOVE) {
4377 1.1 nonaka chan += 2;
4378 1.1 nonaka } else if (ht40m == IEEE80211_HTINFO_2NDCHAN_BELOW){
4379 1.1 nonaka chan -= 2;
4380 1.1 nonaka }
4381 1.1 nonaka
4382 1.1 nonaka /* Set Tx power for this new channel. */
4383 1.1 nonaka urtwn_set_txpower(sc, chan, ht40m);
4384 1.1 nonaka
4385 1.1 nonaka for (i = 0; i < sc->nrxchains; i++) {
4386 1.1 nonaka urtwn_rf_write(sc, i, R92C_RF_CHNLBW,
4387 1.1 nonaka RW(sc->rf_chnlbw[i], R92C_RF_CHNLBW_CHNL, chan));
4388 1.1 nonaka }
4389 1.1 nonaka
4390 1.1 nonaka if (ht40m) {
4391 1.1 nonaka /* Is secondary channel below or above primary? */
4392 1.1 nonaka int prichlo = (ht40m == IEEE80211_HTINFO_2NDCHAN_ABOVE);
4393 1.1 nonaka uint32_t reg;
4394 1.1 nonaka
4395 1.1 nonaka urtwn_write_1(sc, R92C_BWOPMODE,
4396 1.1 nonaka urtwn_read_1(sc, R92C_BWOPMODE) & ~R92C_BWOPMODE_20MHZ);
4397 1.1 nonaka
4398 1.1 nonaka reg = urtwn_read_1(sc, R92C_RRSR + 2);
4399 1.1 nonaka reg = (reg & ~0x6f) | (prichlo ? 1 : 2) << 5;
4400 1.1 nonaka urtwn_write_1(sc, R92C_RRSR + 2, (uint8_t)reg);
4401 1.1 nonaka
4402 1.1 nonaka urtwn_bb_write(sc, R92C_FPGA0_RFMOD,
4403 1.1 nonaka urtwn_bb_read(sc, R92C_FPGA0_RFMOD) | R92C_RFMOD_40MHZ);
4404 1.1 nonaka urtwn_bb_write(sc, R92C_FPGA1_RFMOD,
4405 1.1 nonaka urtwn_bb_read(sc, R92C_FPGA1_RFMOD) | R92C_RFMOD_40MHZ);
4406 1.1 nonaka
4407 1.1 nonaka /* Set CCK side band. */
4408 1.1 nonaka reg = urtwn_bb_read(sc, R92C_CCK0_SYSTEM);
4409 1.1 nonaka reg = (reg & ~0x00000010) | (prichlo ? 0 : 1) << 4;
4410 1.1 nonaka urtwn_bb_write(sc, R92C_CCK0_SYSTEM, reg);
4411 1.1 nonaka
4412 1.1 nonaka reg = urtwn_bb_read(sc, R92C_OFDM1_LSTF);
4413 1.1 nonaka reg = (reg & ~0x00000c00) | (prichlo ? 1 : 2) << 10;
4414 1.1 nonaka urtwn_bb_write(sc, R92C_OFDM1_LSTF, reg);
4415 1.1 nonaka
4416 1.1 nonaka urtwn_bb_write(sc, R92C_FPGA0_ANAPARAM2,
4417 1.1 nonaka urtwn_bb_read(sc, R92C_FPGA0_ANAPARAM2) &
4418 1.1 nonaka ~R92C_FPGA0_ANAPARAM2_CBW20);
4419 1.1 nonaka
4420 1.1 nonaka reg = urtwn_bb_read(sc, 0x818);
4421 1.1 nonaka reg = (reg & ~0x0c000000) | (prichlo ? 2 : 1) << 26;
4422 1.1 nonaka urtwn_bb_write(sc, 0x818, reg);
4423 1.1 nonaka
4424 1.1 nonaka /* Select 40MHz bandwidth. */
4425 1.1 nonaka urtwn_rf_write(sc, 0, R92C_RF_CHNLBW,
4426 1.1 nonaka (sc->rf_chnlbw[0] & ~0xfff) | chan);
4427 1.1 nonaka } else {
4428 1.1 nonaka urtwn_write_1(sc, R92C_BWOPMODE,
4429 1.1 nonaka urtwn_read_1(sc, R92C_BWOPMODE) | R92C_BWOPMODE_20MHZ);
4430 1.1 nonaka
4431 1.1 nonaka urtwn_bb_write(sc, R92C_FPGA0_RFMOD,
4432 1.1 nonaka urtwn_bb_read(sc, R92C_FPGA0_RFMOD) & ~R92C_RFMOD_40MHZ);
4433 1.1 nonaka urtwn_bb_write(sc, R92C_FPGA1_RFMOD,
4434 1.1 nonaka urtwn_bb_read(sc, R92C_FPGA1_RFMOD) & ~R92C_RFMOD_40MHZ);
4435 1.1 nonaka
4436 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_88E) &&
4437 1.49 nat !ISSET(sc->chip, URTWN_CHIP_92EU)) {
4438 1.32 nonaka urtwn_bb_write(sc, R92C_FPGA0_ANAPARAM2,
4439 1.32 nonaka urtwn_bb_read(sc, R92C_FPGA0_ANAPARAM2) |
4440 1.32 nonaka R92C_FPGA0_ANAPARAM2_CBW20);
4441 1.32 nonaka }
4442 1.1 nonaka
4443 1.1 nonaka /* Select 20MHz bandwidth. */
4444 1.1 nonaka urtwn_rf_write(sc, 0, R92C_RF_CHNLBW,
4445 1.32 nonaka (sc->rf_chnlbw[0] & ~0xfff) | chan |
4446 1.49 nat (ISSET(sc->chip, URTWN_CHIP_88E) ||
4447 1.49 nat ISSET(sc->chip, URTWN_CHIP_92EU) ?
4448 1.32 nonaka R88E_RF_CHNLBW_BW20 : R92C_RF_CHNLBW_BW20));
4449 1.1 nonaka }
4450 1.1 nonaka }
4451 1.1 nonaka
4452 1.1 nonaka static void
4453 1.1 nonaka urtwn_iq_calib(struct urtwn_softc *sc, bool inited)
4454 1.1 nonaka {
4455 1.1 nonaka
4456 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s: inited=%d\n", device_xname(sc->sc_dev),
4457 1.1 nonaka __func__, inited));
4458 1.1 nonaka
4459 1.48 nat uint32_t addaBackup[16], iqkBackup[4], piMode;
4460 1.48 nat
4461 1.48 nat #ifdef notyet
4462 1.48 nat uint32_t odfm0_agccore_regs[3];
4463 1.48 nat uint32_t ant_regs[3];
4464 1.48 nat uint32_t rf_regs[8];
4465 1.48 nat #endif
4466 1.48 nat uint32_t reg0, reg1, reg2;
4467 1.48 nat int i, attempt;
4468 1.48 nat
4469 1.48 nat #ifdef notyet
4470 1.48 nat urtwn_write_1(sc, R92E_STBC_SETTING + 2, urtwn_read_1(sc,
4471 1.48 nat R92E_STBC_SETTING + 2));
4472 1.48 nat urtwn_write_1(sc, R92C_ACLK_MON, 0);
4473 1.48 nat /* Save AGCCORE regs. */
4474 1.48 nat for (i = 0; i < sc->nrxchains; i++) {
4475 1.48 nat odfm0_agccore_regs[i] = urtwn_read_4(sc,
4476 1.48 nat R92C_OFDM0_AGCCORE1(i));
4477 1.48 nat }
4478 1.48 nat #endif
4479 1.48 nat /* Save BB regs. */
4480 1.48 nat reg0 = urtwn_bb_read(sc, R92C_OFDM0_TRXPATHENA);
4481 1.48 nat reg1 = urtwn_bb_read(sc, R92C_OFDM0_TRMUXPAR);
4482 1.48 nat reg2 = urtwn_bb_read(sc, R92C_FPGA0_RFIFACESW(1));
4483 1.52 skrll
4484 1.48 nat /* Save adda regs to be restored when finished. */
4485 1.48 nat for (i = 0; i < __arraycount(addaReg); i++)
4486 1.48 nat addaBackup[i] = urtwn_bb_read(sc, addaReg[i]);
4487 1.48 nat /* Save mac regs. */
4488 1.48 nat iqkBackup[0] = urtwn_read_1(sc, R92C_TXPAUSE);
4489 1.48 nat iqkBackup[1] = urtwn_read_1(sc, R92C_BCN_CTRL);
4490 1.60 thorpej iqkBackup[2] = urtwn_read_1(sc, R92C_BCN_CTRL1);
4491 1.48 nat iqkBackup[3] = urtwn_read_4(sc, R92C_GPIO_MUXCFG);
4492 1.48 nat
4493 1.48 nat #ifdef notyet
4494 1.48 nat ant_regs[0] = urtwn_read_4(sc, R92C_CONFIG_ANT_A);
4495 1.48 nat ant_regs[1] = urtwn_read_4(sc, R92C_CONFIG_ANT_B);
4496 1.48 nat
4497 1.48 nat rf_regs[0] = urtwn_read_4(sc, R92C_FPGA0_RFIFACESW(0));
4498 1.48 nat for (i = 0; i < sc->nrxchains; i++)
4499 1.48 nat rf_regs[i+1] = urtwn_read_4(sc, R92C_FPGA0_RFIFACEOE(i));
4500 1.48 nat reg4 = urtwn_read_4(sc, R92C_CCK0_AFESETTING);
4501 1.48 nat #endif
4502 1.48 nat
4503 1.48 nat piMode = (urtwn_bb_read(sc, R92C_HSSI_PARAM1(0)) &
4504 1.48 nat R92C_HSSI_PARAM1_PI);
4505 1.48 nat if (piMode == 0) {
4506 1.48 nat urtwn_bb_write(sc, R92C_HSSI_PARAM1(0),
4507 1.48 nat urtwn_bb_read(sc, R92C_HSSI_PARAM1(0))|
4508 1.48 nat R92C_HSSI_PARAM1_PI);
4509 1.48 nat urtwn_bb_write(sc, R92C_HSSI_PARAM1(1),
4510 1.48 nat urtwn_bb_read(sc, R92C_HSSI_PARAM1(1))|
4511 1.48 nat R92C_HSSI_PARAM1_PI);
4512 1.48 nat }
4513 1.52 skrll
4514 1.48 nat attempt = 1;
4515 1.48 nat
4516 1.48 nat next_attempt:
4517 1.48 nat
4518 1.48 nat /* Set mac regs for calibration. */
4519 1.48 nat for (i = 0; i < __arraycount(addaReg); i++) {
4520 1.48 nat urtwn_bb_write(sc, addaReg[i],
4521 1.48 nat addaReg[__arraycount(addaReg) - 1]);
4522 1.48 nat }
4523 1.48 nat urtwn_write_2(sc, R92C_CCK0_AFESETTING, urtwn_read_2(sc,
4524 1.48 nat R92C_CCK0_AFESETTING));
4525 1.48 nat urtwn_write_2(sc, R92C_OFDM0_TRXPATHENA, R92C_IQK_TRXPATHENA);
4526 1.48 nat urtwn_write_2(sc, R92C_OFDM0_TRMUXPAR, R92C_IQK_TRMUXPAR);
4527 1.48 nat urtwn_write_2(sc, R92C_FPGA0_RFIFACESW(1), R92C_IQK_RFIFACESW1);
4528 1.48 nat urtwn_write_4(sc, R92C_LSSI_PARAM(0), R92C_IQK_LSSI_PARAM);
4529 1.48 nat
4530 1.48 nat if (sc->ntxchains > 1)
4531 1.48 nat urtwn_bb_write(sc, R92C_LSSI_PARAM(1), R92C_IQK_LSSI_PARAM);
4532 1.52 skrll
4533 1.60 thorpej urtwn_write_1(sc, R92C_TXPAUSE, (~R92C_TXPAUSE_BCN) & R92C_TXPAUSE_ALL);
4534 1.48 nat urtwn_write_1(sc, R92C_BCN_CTRL, (iqkBackup[1] &
4535 1.48 nat ~R92C_BCN_CTRL_EN_BCN));
4536 1.60 thorpej urtwn_write_1(sc, R92C_BCN_CTRL1, (iqkBackup[2] &
4537 1.60 thorpej ~R92C_BCN_CTRL_EN_BCN));
4538 1.48 nat
4539 1.48 nat urtwn_write_1(sc, R92C_GPIO_MUXCFG, (iqkBackup[3] &
4540 1.48 nat ~R92C_GPIO_MUXCFG_ENBT));
4541 1.48 nat
4542 1.48 nat urtwn_bb_write(sc, R92C_CONFIG_ANT_A, R92C_IQK_CONFIG_ANT);
4543 1.48 nat
4544 1.48 nat if (sc->ntxchains > 1)
4545 1.48 nat urtwn_bb_write(sc, R92C_CONFIG_ANT_B, R92C_IQK_CONFIG_ANT);
4546 1.48 nat urtwn_bb_write(sc, R92C_FPGA0_IQK, R92C_FPGA0_IQK_SETTING);
4547 1.48 nat urtwn_bb_write(sc, R92C_TX_IQK, R92C_TX_IQK_SETTING);
4548 1.48 nat urtwn_bb_write(sc, R92C_RX_IQK, R92C_RX_IQK_SETTING);
4549 1.48 nat
4550 1.48 nat /* Restore BB regs. */
4551 1.48 nat urtwn_bb_write(sc, R92C_OFDM0_TRXPATHENA, reg0);
4552 1.48 nat urtwn_bb_write(sc, R92C_FPGA0_RFIFACESW(1), reg2);
4553 1.48 nat urtwn_bb_write(sc, R92C_OFDM0_TRMUXPAR, reg1);
4554 1.48 nat
4555 1.48 nat urtwn_bb_write(sc, R92C_FPGA0_IQK, 0x0);
4556 1.48 nat urtwn_bb_write(sc, R92C_LSSI_PARAM(0), R92C_IQK_LSSI_RESTORE);
4557 1.48 nat if (sc->nrxchains > 1)
4558 1.48 nat urtwn_bb_write(sc, R92C_LSSI_PARAM(1), R92C_IQK_LSSI_RESTORE);
4559 1.48 nat
4560 1.48 nat if (attempt-- > 0)
4561 1.48 nat goto next_attempt;
4562 1.48 nat
4563 1.48 nat /* Restore mode. */
4564 1.48 nat if (piMode == 0) {
4565 1.48 nat urtwn_bb_write(sc, R92C_HSSI_PARAM1(0),
4566 1.48 nat urtwn_bb_read(sc, R92C_HSSI_PARAM1(0)) &
4567 1.48 nat ~R92C_HSSI_PARAM1_PI);
4568 1.48 nat urtwn_bb_write(sc, R92C_HSSI_PARAM1(1),
4569 1.48 nat urtwn_bb_read(sc, R92C_HSSI_PARAM1(1)) &
4570 1.48 nat ~R92C_HSSI_PARAM1_PI);
4571 1.48 nat }
4572 1.48 nat
4573 1.48 nat #ifdef notyet
4574 1.48 nat for (i = 0; i < sc->nrxchains; i++) {
4575 1.48 nat urtwn_write_4(sc, R92C_OFDM0_AGCCORE1(i),
4576 1.48 nat odfm0_agccore_regs[i]);
4577 1.48 nat }
4578 1.48 nat #endif
4579 1.48 nat
4580 1.48 nat /* Restore adda regs. */
4581 1.48 nat for (i = 0; i < __arraycount(addaReg); i++)
4582 1.48 nat urtwn_bb_write(sc, addaReg[i], addaBackup[i]);
4583 1.48 nat /* Restore mac regs. */
4584 1.48 nat urtwn_write_1(sc, R92C_TXPAUSE, iqkBackup[0]);
4585 1.48 nat urtwn_write_1(sc, R92C_BCN_CTRL, iqkBackup[1]);
4586 1.48 nat urtwn_write_1(sc, R92C_USTIME_TSF, iqkBackup[2]);
4587 1.48 nat urtwn_write_4(sc, R92C_GPIO_MUXCFG, iqkBackup[3]);
4588 1.48 nat
4589 1.48 nat #ifdef notyet
4590 1.48 nat urtwn_write_4(sc, R92C_CONFIG_ANT_A, ant_regs[0]);
4591 1.48 nat urtwn_write_4(sc, R92C_CONFIG_ANT_B, ant_regs[1]);
4592 1.48 nat
4593 1.48 nat urtwn_write_4(sc, R92C_FPGA0_RFIFACESW(0), rf_regs[0]);
4594 1.48 nat for (i = 0; i < sc->nrxchains; i++)
4595 1.48 nat urtwn_write_4(sc, R92C_FPGA0_RFIFACEOE(i), rf_regs[i+1]);
4596 1.48 nat urtwn_write_4(sc, R92C_CCK0_AFESETTING, reg4);
4597 1.48 nat #endif
4598 1.1 nonaka }
4599 1.1 nonaka
4600 1.1 nonaka static void
4601 1.1 nonaka urtwn_lc_calib(struct urtwn_softc *sc)
4602 1.1 nonaka {
4603 1.1 nonaka uint32_t rf_ac[2];
4604 1.1 nonaka uint8_t txmode;
4605 1.22 christos size_t i;
4606 1.1 nonaka
4607 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
4608 1.1 nonaka
4609 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
4610 1.12 christos
4611 1.1 nonaka txmode = urtwn_read_1(sc, R92C_OFDM1_LSTF + 3);
4612 1.1 nonaka if ((txmode & 0x70) != 0) {
4613 1.1 nonaka /* Disable all continuous Tx. */
4614 1.1 nonaka urtwn_write_1(sc, R92C_OFDM1_LSTF + 3, txmode & ~0x70);
4615 1.1 nonaka
4616 1.1 nonaka /* Set RF mode to standby mode. */
4617 1.1 nonaka for (i = 0; i < sc->nrxchains; i++) {
4618 1.1 nonaka rf_ac[i] = urtwn_rf_read(sc, i, R92C_RF_AC);
4619 1.1 nonaka urtwn_rf_write(sc, i, R92C_RF_AC,
4620 1.1 nonaka RW(rf_ac[i], R92C_RF_AC_MODE,
4621 1.1 nonaka R92C_RF_AC_MODE_STANDBY));
4622 1.1 nonaka }
4623 1.1 nonaka } else {
4624 1.1 nonaka /* Block all Tx queues. */
4625 1.1 nonaka urtwn_write_1(sc, R92C_TXPAUSE, 0xff);
4626 1.1 nonaka }
4627 1.1 nonaka /* Start calibration. */
4628 1.1 nonaka urtwn_rf_write(sc, 0, R92C_RF_CHNLBW,
4629 1.1 nonaka urtwn_rf_read(sc, 0, R92C_RF_CHNLBW) | R92C_RF_CHNLBW_LCSTART);
4630 1.1 nonaka
4631 1.1 nonaka /* Give calibration the time to complete. */
4632 1.49 nat urtwn_delay_ms(sc, 100);
4633 1.1 nonaka
4634 1.1 nonaka /* Restore configuration. */
4635 1.1 nonaka if ((txmode & 0x70) != 0) {
4636 1.1 nonaka /* Restore Tx mode. */
4637 1.1 nonaka urtwn_write_1(sc, R92C_OFDM1_LSTF + 3, txmode);
4638 1.1 nonaka /* Restore RF mode. */
4639 1.1 nonaka for (i = 0; i < sc->nrxchains; i++) {
4640 1.1 nonaka urtwn_rf_write(sc, i, R92C_RF_AC, rf_ac[i]);
4641 1.1 nonaka }
4642 1.1 nonaka } else {
4643 1.1 nonaka /* Unblock all Tx queues. */
4644 1.1 nonaka urtwn_write_1(sc, R92C_TXPAUSE, 0x00);
4645 1.1 nonaka }
4646 1.1 nonaka }
4647 1.1 nonaka
4648 1.1 nonaka static void
4649 1.1 nonaka urtwn_temp_calib(struct urtwn_softc *sc)
4650 1.1 nonaka {
4651 1.49 nat int temp, t_meter_reg;
4652 1.1 nonaka
4653 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
4654 1.1 nonaka
4655 1.12 christos KASSERT(mutex_owned(&sc->sc_write_mtx));
4656 1.12 christos
4657 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_92EU))
4658 1.49 nat t_meter_reg = R92C_RF_T_METER;
4659 1.49 nat else
4660 1.49 nat t_meter_reg = R92E_RF_T_METER;
4661 1.49 nat
4662 1.1 nonaka if (sc->thcal_state == 0) {
4663 1.1 nonaka /* Start measuring temperature. */
4664 1.1 nonaka DPRINTFN(DBG_RF, ("%s: %s: start measuring temperature\n",
4665 1.1 nonaka device_xname(sc->sc_dev), __func__));
4666 1.49 nat urtwn_rf_write(sc, 0, t_meter_reg, 0x60);
4667 1.1 nonaka sc->thcal_state = 1;
4668 1.1 nonaka return;
4669 1.1 nonaka }
4670 1.1 nonaka sc->thcal_state = 0;
4671 1.1 nonaka
4672 1.1 nonaka /* Read measured temperature. */
4673 1.1 nonaka temp = urtwn_rf_read(sc, 0, R92C_RF_T_METER) & 0x1f;
4674 1.1 nonaka DPRINTFN(DBG_RF, ("%s: %s: temperature=%d\n", device_xname(sc->sc_dev),
4675 1.1 nonaka __func__, temp));
4676 1.49 nat if (temp == 0) /* Read failed, skip. */
4677 1.1 nonaka return;
4678 1.1 nonaka
4679 1.1 nonaka /*
4680 1.1 nonaka * Redo LC calibration if temperature changed significantly since
4681 1.1 nonaka * last calibration.
4682 1.1 nonaka */
4683 1.1 nonaka if (sc->thcal_lctemp == 0) {
4684 1.1 nonaka /* First LC calibration is performed in urtwn_init(). */
4685 1.1 nonaka sc->thcal_lctemp = temp;
4686 1.1 nonaka } else if (abs(temp - sc->thcal_lctemp) > 1) {
4687 1.1 nonaka DPRINTFN(DBG_RF,
4688 1.1 nonaka ("%s: %s: LC calib triggered by temp: %d -> %d\n",
4689 1.1 nonaka device_xname(sc->sc_dev), __func__, sc->thcal_lctemp,
4690 1.1 nonaka temp));
4691 1.1 nonaka urtwn_lc_calib(sc);
4692 1.1 nonaka /* Record temperature of last LC calibration. */
4693 1.1 nonaka sc->thcal_lctemp = temp;
4694 1.1 nonaka }
4695 1.1 nonaka }
4696 1.1 nonaka
4697 1.1 nonaka static int
4698 1.1 nonaka urtwn_init(struct ifnet *ifp)
4699 1.1 nonaka {
4700 1.1 nonaka struct urtwn_softc *sc = ifp->if_softc;
4701 1.1 nonaka struct ieee80211com *ic = &sc->sc_ic;
4702 1.1 nonaka struct urtwn_rx_data *data;
4703 1.1 nonaka uint32_t reg;
4704 1.22 christos size_t i;
4705 1.22 christos int error;
4706 1.1 nonaka
4707 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
4708 1.1 nonaka
4709 1.1 nonaka urtwn_stop(ifp, 0);
4710 1.1 nonaka
4711 1.12 christos mutex_enter(&sc->sc_write_mtx);
4712 1.12 christos
4713 1.1 nonaka mutex_enter(&sc->sc_task_mtx);
4714 1.1 nonaka /* Init host async commands ring. */
4715 1.1 nonaka sc->cmdq.cur = sc->cmdq.next = sc->cmdq.queued = 0;
4716 1.1 nonaka mutex_exit(&sc->sc_task_mtx);
4717 1.1 nonaka
4718 1.1 nonaka mutex_enter(&sc->sc_fwcmd_mtx);
4719 1.1 nonaka /* Init firmware commands ring. */
4720 1.1 nonaka sc->fwcur = 0;
4721 1.1 nonaka mutex_exit(&sc->sc_fwcmd_mtx);
4722 1.1 nonaka
4723 1.12 christos /* Allocate Tx/Rx buffers. */
4724 1.12 christos error = urtwn_alloc_rx_list(sc);
4725 1.12 christos if (error != 0) {
4726 1.12 christos aprint_error_dev(sc->sc_dev,
4727 1.12 christos "could not allocate Rx buffers\n");
4728 1.12 christos goto fail;
4729 1.12 christos }
4730 1.12 christos error = urtwn_alloc_tx_list(sc);
4731 1.12 christos if (error != 0) {
4732 1.12 christos aprint_error_dev(sc->sc_dev,
4733 1.12 christos "could not allocate Tx buffers\n");
4734 1.12 christos goto fail;
4735 1.1 nonaka }
4736 1.1 nonaka
4737 1.1 nonaka /* Power on adapter. */
4738 1.1 nonaka error = urtwn_power_on(sc);
4739 1.1 nonaka if (error != 0)
4740 1.1 nonaka goto fail;
4741 1.1 nonaka
4742 1.1 nonaka /* Initialize DMA. */
4743 1.1 nonaka error = urtwn_dma_init(sc);
4744 1.1 nonaka if (error != 0)
4745 1.1 nonaka goto fail;
4746 1.1 nonaka
4747 1.1 nonaka /* Set info size in Rx descriptors (in 64-bit words). */
4748 1.1 nonaka urtwn_write_1(sc, R92C_RX_DRVINFO_SZ, 4);
4749 1.1 nonaka
4750 1.1 nonaka /* Init interrupts. */
4751 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_88E) ||
4752 1.49 nat ISSET(sc->chip, URTWN_CHIP_92EU)) {
4753 1.32 nonaka urtwn_write_4(sc, R88E_HISR, 0xffffffff);
4754 1.32 nonaka urtwn_write_4(sc, R88E_HIMR, R88E_HIMR_CPWM | R88E_HIMR_CPWM2 |
4755 1.32 nonaka R88E_HIMR_TBDER | R88E_HIMR_PSTIMEOUT);
4756 1.32 nonaka urtwn_write_4(sc, R88E_HIMRE, R88E_HIMRE_RXFOVW |
4757 1.32 nonaka R88E_HIMRE_TXFOVW | R88E_HIMRE_RXERR | R88E_HIMRE_TXERR);
4758 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_88E)) {
4759 1.49 nat urtwn_write_1(sc, R92C_USB_SPECIAL_OPTION,
4760 1.49 nat urtwn_read_1(sc, R92C_USB_SPECIAL_OPTION) |
4761 1.49 nat R92C_USB_SPECIAL_OPTION_INT_BULK_SEL);
4762 1.49 nat }
4763 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_92EU))
4764 1.49 nat urtwn_write_1(sc, R92C_USB_HRPWM, 0);
4765 1.32 nonaka } else {
4766 1.32 nonaka urtwn_write_4(sc, R92C_HISR, 0xffffffff);
4767 1.32 nonaka urtwn_write_4(sc, R92C_HIMR, 0xffffffff);
4768 1.32 nonaka }
4769 1.1 nonaka
4770 1.1 nonaka /* Set MAC address. */
4771 1.1 nonaka IEEE80211_ADDR_COPY(ic->ic_myaddr, CLLADDR(ifp->if_sadl));
4772 1.1 nonaka urtwn_write_region(sc, R92C_MACID, ic->ic_myaddr, IEEE80211_ADDR_LEN);
4773 1.1 nonaka
4774 1.1 nonaka /* Set initial network type. */
4775 1.1 nonaka reg = urtwn_read_4(sc, R92C_CR);
4776 1.1 nonaka switch (ic->ic_opmode) {
4777 1.1 nonaka case IEEE80211_M_STA:
4778 1.1 nonaka default:
4779 1.1 nonaka reg = RW(reg, R92C_CR_NETTYPE, R92C_CR_NETTYPE_INFRA);
4780 1.1 nonaka break;
4781 1.7 christos
4782 1.1 nonaka case IEEE80211_M_IBSS:
4783 1.1 nonaka reg = RW(reg, R92C_CR_NETTYPE, R92C_CR_NETTYPE_ADHOC);
4784 1.1 nonaka break;
4785 1.1 nonaka }
4786 1.1 nonaka urtwn_write_4(sc, R92C_CR, reg);
4787 1.1 nonaka
4788 1.1 nonaka /* Set response rate */
4789 1.1 nonaka reg = urtwn_read_4(sc, R92C_RRSR);
4790 1.1 nonaka reg = RW(reg, R92C_RRSR_RATE_BITMAP, R92C_RRSR_RATE_CCK_ONLY_1M);
4791 1.1 nonaka urtwn_write_4(sc, R92C_RRSR, reg);
4792 1.1 nonaka
4793 1.1 nonaka /* SIFS (used in NAV) */
4794 1.1 nonaka urtwn_write_2(sc, R92C_SPEC_SIFS,
4795 1.1 nonaka SM(R92C_SPEC_SIFS_CCK, 0x10) | SM(R92C_SPEC_SIFS_OFDM, 0x10));
4796 1.1 nonaka
4797 1.1 nonaka /* Set short/long retry limits. */
4798 1.1 nonaka urtwn_write_2(sc, R92C_RL,
4799 1.1 nonaka SM(R92C_RL_SRL, 0x30) | SM(R92C_RL_LRL, 0x30));
4800 1.1 nonaka
4801 1.1 nonaka /* Initialize EDCA parameters. */
4802 1.1 nonaka urtwn_edca_init(sc);
4803 1.1 nonaka
4804 1.1 nonaka /* Setup rate fallback. */
4805 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_88E) &&
4806 1.49 nat !ISSET(sc->chip, URTWN_CHIP_92EU)) {
4807 1.32 nonaka urtwn_write_4(sc, R92C_DARFRC + 0, 0x00000000);
4808 1.32 nonaka urtwn_write_4(sc, R92C_DARFRC + 4, 0x10080404);
4809 1.32 nonaka urtwn_write_4(sc, R92C_RARFRC + 0, 0x04030201);
4810 1.32 nonaka urtwn_write_4(sc, R92C_RARFRC + 4, 0x08070605);
4811 1.32 nonaka }
4812 1.1 nonaka
4813 1.1 nonaka urtwn_write_1(sc, R92C_FWHW_TXQ_CTRL,
4814 1.1 nonaka urtwn_read_1(sc, R92C_FWHW_TXQ_CTRL) |
4815 1.1 nonaka R92C_FWHW_TXQ_CTRL_AMPDU_RTY_NEW);
4816 1.1 nonaka /* Set ACK timeout. */
4817 1.1 nonaka urtwn_write_1(sc, R92C_ACKTO, 0x40);
4818 1.1 nonaka
4819 1.1 nonaka /* Setup USB aggregation. */
4820 1.1 nonaka /* Tx */
4821 1.1 nonaka reg = urtwn_read_4(sc, R92C_TDECTRL);
4822 1.1 nonaka reg = RW(reg, R92C_TDECTRL_BLK_DESC_NUM, 6);
4823 1.1 nonaka urtwn_write_4(sc, R92C_TDECTRL, reg);
4824 1.1 nonaka /* Rx */
4825 1.1 nonaka urtwn_write_1(sc, R92C_TRXDMA_CTRL,
4826 1.1 nonaka urtwn_read_1(sc, R92C_TRXDMA_CTRL) |
4827 1.1 nonaka R92C_TRXDMA_CTRL_RXDMA_AGG_EN);
4828 1.1 nonaka urtwn_write_1(sc, R92C_USB_SPECIAL_OPTION,
4829 1.1 nonaka urtwn_read_1(sc, R92C_USB_SPECIAL_OPTION) &
4830 1.1 nonaka ~R92C_USB_SPECIAL_OPTION_AGG_EN);
4831 1.1 nonaka urtwn_write_1(sc, R92C_RXDMA_AGG_PG_TH, 48);
4832 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_88E) ||
4833 1.49 nat ISSET(sc->chip, URTWN_CHIP_92EU))
4834 1.32 nonaka urtwn_write_1(sc, R92C_RXDMA_AGG_PG_TH + 1, 4);
4835 1.32 nonaka else
4836 1.32 nonaka urtwn_write_1(sc, R92C_USB_DMA_AGG_TO, 4);
4837 1.1 nonaka
4838 1.1 nonaka /* Initialize beacon parameters. */
4839 1.32 nonaka urtwn_write_2(sc, R92C_BCN_CTRL, 0x1010);
4840 1.1 nonaka urtwn_write_2(sc, R92C_TBTT_PROHIBIT, 0x6404);
4841 1.60 thorpej urtwn_write_1(sc, R92C_DRVERLYINT, R92C_DRVERLYINT_INIT_TIME);
4842 1.60 thorpej urtwn_write_1(sc, R92C_BCNDMATIM, R92C_BCNDMATIM_INIT_TIME);
4843 1.1 nonaka urtwn_write_2(sc, R92C_BCNTCFG, 0x660f);
4844 1.1 nonaka
4845 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_88E) &&
4846 1.49 nat !ISSET(sc->chip, URTWN_CHIP_92EU)) {
4847 1.32 nonaka /* Setup AMPDU aggregation. */
4848 1.32 nonaka urtwn_write_4(sc, R92C_AGGLEN_LMT, 0x99997631); /* MCS7~0 */
4849 1.32 nonaka urtwn_write_1(sc, R92C_AGGR_BREAK_TIME, 0x16);
4850 1.32 nonaka urtwn_write_2(sc, 0x4ca, 0x0708);
4851 1.1 nonaka
4852 1.32 nonaka urtwn_write_1(sc, R92C_BCN_MAX_ERR, 0xff);
4853 1.32 nonaka urtwn_write_1(sc, R92C_BCN_CTRL, R92C_BCN_CTRL_DIS_TSF_UDT0);
4854 1.32 nonaka }
4855 1.1 nonaka
4856 1.1 nonaka /* Load 8051 microcode. */
4857 1.1 nonaka error = urtwn_load_firmware(sc);
4858 1.1 nonaka if (error != 0)
4859 1.1 nonaka goto fail;
4860 1.1 nonaka SET(sc->sc_flags, URTWN_FLAG_FWREADY);
4861 1.1 nonaka
4862 1.1 nonaka /* Initialize MAC/BB/RF blocks. */
4863 1.19 christos /*
4864 1.19 christos * XXX: urtwn_mac_init() sets R92C_RCR[0:15] = R92C_RCR_APM |
4865 1.19 christos * R92C_RCR_AM | R92C_RCR_AB | R92C_RCR_AICV | R92C_RCR_AMF.
4866 1.19 christos * XXX: This setting should be removed from rtl8192cu_mac[].
4867 1.19 christos */
4868 1.19 christos urtwn_mac_init(sc); // sets R92C_RCR[0:15]
4869 1.19 christos urtwn_rxfilter_init(sc); // reset R92C_RCR
4870 1.1 nonaka urtwn_bb_init(sc);
4871 1.1 nonaka urtwn_rf_init(sc);
4872 1.1 nonaka
4873 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_88E) ||
4874 1.49 nat ISSET(sc->chip, URTWN_CHIP_92EU)) {
4875 1.32 nonaka urtwn_write_2(sc, R92C_CR,
4876 1.32 nonaka urtwn_read_2(sc, R92C_CR) | R92C_CR_MACTXEN |
4877 1.32 nonaka R92C_CR_MACRXEN);
4878 1.32 nonaka }
4879 1.32 nonaka
4880 1.1 nonaka /* Turn CCK and OFDM blocks on. */
4881 1.1 nonaka reg = urtwn_bb_read(sc, R92C_FPGA0_RFMOD);
4882 1.1 nonaka reg |= R92C_RFMOD_CCK_EN;
4883 1.1 nonaka urtwn_bb_write(sc, R92C_FPGA0_RFMOD, reg);
4884 1.1 nonaka reg = urtwn_bb_read(sc, R92C_FPGA0_RFMOD);
4885 1.1 nonaka reg |= R92C_RFMOD_OFDM_EN;
4886 1.1 nonaka urtwn_bb_write(sc, R92C_FPGA0_RFMOD, reg);
4887 1.1 nonaka
4888 1.1 nonaka /* Clear per-station keys table. */
4889 1.1 nonaka urtwn_cam_init(sc);
4890 1.1 nonaka
4891 1.1 nonaka /* Enable hardware sequence numbering. */
4892 1.1 nonaka urtwn_write_1(sc, R92C_HWSEQ_CTRL, 0xff);
4893 1.1 nonaka
4894 1.1 nonaka /* Perform LO and IQ calibrations. */
4895 1.1 nonaka urtwn_iq_calib(sc, sc->iqk_inited);
4896 1.1 nonaka sc->iqk_inited = true;
4897 1.1 nonaka
4898 1.1 nonaka /* Perform LC calibration. */
4899 1.1 nonaka urtwn_lc_calib(sc);
4900 1.1 nonaka
4901 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_88E) &&
4902 1.49 nat !ISSET(sc->chip, URTWN_CHIP_92EU)) {
4903 1.32 nonaka /* Fix USB interference issue. */
4904 1.32 nonaka urtwn_write_1(sc, 0xfe40, 0xe0);
4905 1.32 nonaka urtwn_write_1(sc, 0xfe41, 0x8d);
4906 1.32 nonaka urtwn_write_1(sc, 0xfe42, 0x80);
4907 1.32 nonaka urtwn_write_4(sc, 0x20c, 0xfd0320);
4908 1.1 nonaka
4909 1.32 nonaka urtwn_pa_bias_init(sc);
4910 1.32 nonaka }
4911 1.1 nonaka
4912 1.49 nat if (!(sc->chip & (URTWN_CHIP_92C | URTWN_CHIP_92C_1T2R)) ||
4913 1.49 nat !(sc->chip & URTWN_CHIP_92EU)) {
4914 1.1 nonaka /* 1T1R */
4915 1.1 nonaka urtwn_bb_write(sc, R92C_FPGA0_RFPARAM(0),
4916 1.1 nonaka urtwn_bb_read(sc, R92C_FPGA0_RFPARAM(0)) | __BIT(13));
4917 1.1 nonaka }
4918 1.1 nonaka
4919 1.1 nonaka /* Initialize GPIO setting. */
4920 1.1 nonaka urtwn_write_1(sc, R92C_GPIO_MUXCFG,
4921 1.1 nonaka urtwn_read_1(sc, R92C_GPIO_MUXCFG) & ~R92C_GPIO_MUXCFG_ENBT);
4922 1.1 nonaka
4923 1.1 nonaka /* Fix for lower temperature. */
4924 1.49 nat if (!ISSET(sc->chip, URTWN_CHIP_88E) &&
4925 1.49 nat !ISSET(sc->chip, URTWN_CHIP_92EU))
4926 1.32 nonaka urtwn_write_1(sc, 0x15, 0xe9);
4927 1.1 nonaka
4928 1.1 nonaka /* Set default channel. */
4929 1.13 jmcneill urtwn_set_chan(sc, ic->ic_curchan, IEEE80211_HTINFO_2NDCHAN_NONE);
4930 1.1 nonaka
4931 1.1 nonaka /* Queue Rx xfers. */
4932 1.49 nat for (size_t j = 0; j < sc->rx_npipe; j++) {
4933 1.49 nat for (i = 0; i < URTWN_RX_LIST_COUNT; i++) {
4934 1.49 nat data = &sc->rx_data[j][i];
4935 1.49 nat usbd_setup_xfer(data->xfer, data, data->buf,
4936 1.49 nat URTWN_RXBUFSZ, USBD_SHORT_XFER_OK, USBD_NO_TIMEOUT,
4937 1.49 nat urtwn_rxeof);
4938 1.49 nat error = usbd_transfer(data->xfer);
4939 1.49 nat if (__predict_false(error != USBD_NORMAL_COMPLETION &&
4940 1.49 nat error != USBD_IN_PROGRESS))
4941 1.49 nat goto fail;
4942 1.49 nat }
4943 1.1 nonaka }
4944 1.1 nonaka
4945 1.1 nonaka /* We're ready to go. */
4946 1.1 nonaka ifp->if_flags &= ~IFF_OACTIVE;
4947 1.1 nonaka ifp->if_flags |= IFF_RUNNING;
4948 1.49 nat sc->sc_running = true;
4949 1.1 nonaka
4950 1.16 jmcneill mutex_exit(&sc->sc_write_mtx);
4951 1.16 jmcneill
4952 1.1 nonaka if (ic->ic_opmode == IEEE80211_M_MONITOR)
4953 1.1 nonaka ieee80211_new_state(ic, IEEE80211_S_RUN, -1);
4954 1.16 jmcneill else if (ic->ic_roaming != IEEE80211_ROAMING_MANUAL)
4955 1.1 nonaka ieee80211_new_state(ic, IEEE80211_S_SCAN, -1);
4956 1.16 jmcneill urtwn_wait_async(sc);
4957 1.12 christos
4958 1.42 skrll return 0;
4959 1.1 nonaka
4960 1.1 nonaka fail:
4961 1.12 christos mutex_exit(&sc->sc_write_mtx);
4962 1.12 christos
4963 1.1 nonaka urtwn_stop(ifp, 1);
4964 1.42 skrll return error;
4965 1.1 nonaka }
4966 1.1 nonaka
4967 1.1 nonaka static void
4968 1.1 nonaka urtwn_stop(struct ifnet *ifp, int disable)
4969 1.1 nonaka {
4970 1.1 nonaka struct urtwn_softc *sc = ifp->if_softc;
4971 1.1 nonaka struct ieee80211com *ic = &sc->sc_ic;
4972 1.22 christos size_t i;
4973 1.22 christos int s;
4974 1.1 nonaka
4975 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
4976 1.1 nonaka
4977 1.1 nonaka s = splusb();
4978 1.1 nonaka ieee80211_new_state(ic, IEEE80211_S_INIT, -1);
4979 1.1 nonaka urtwn_wait_async(sc);
4980 1.1 nonaka splx(s);
4981 1.1 nonaka
4982 1.16 jmcneill sc->tx_timer = 0;
4983 1.16 jmcneill ifp->if_timer = 0;
4984 1.16 jmcneill ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
4985 1.16 jmcneill
4986 1.1 nonaka callout_stop(&sc->sc_scan_to);
4987 1.1 nonaka callout_stop(&sc->sc_calib_to);
4988 1.1 nonaka
4989 1.1 nonaka /* Abort Tx. */
4990 1.49 nat for (i = 0; i < sc->tx_npipe; i++) {
4991 1.1 nonaka if (sc->tx_pipe[i] != NULL)
4992 1.1 nonaka usbd_abort_pipe(sc->tx_pipe[i]);
4993 1.1 nonaka }
4994 1.1 nonaka
4995 1.1 nonaka /* Stop Rx pipe. */
4996 1.49 nat for (i = 0; i < sc->rx_npipe; i++) {
4997 1.49 nat if (sc->rx_pipe[i] != NULL)
4998 1.49 nat usbd_abort_pipe(sc->rx_pipe[i]);
4999 1.49 nat }
5000 1.1 nonaka
5001 1.12 christos /* Free Tx/Rx buffers. */
5002 1.12 christos urtwn_free_tx_list(sc);
5003 1.12 christos urtwn_free_rx_list(sc);
5004 1.12 christos
5005 1.49 nat sc->sc_running = false;
5006 1.1 nonaka if (disable)
5007 1.1 nonaka urtwn_chip_stop(sc);
5008 1.1 nonaka }
5009 1.1 nonaka
5010 1.16 jmcneill static int
5011 1.16 jmcneill urtwn_reset(struct ifnet *ifp)
5012 1.16 jmcneill {
5013 1.16 jmcneill struct urtwn_softc *sc = ifp->if_softc;
5014 1.16 jmcneill struct ieee80211com *ic = &sc->sc_ic;
5015 1.16 jmcneill
5016 1.16 jmcneill if (ic->ic_opmode != IEEE80211_M_MONITOR)
5017 1.16 jmcneill return ENETRESET;
5018 1.16 jmcneill
5019 1.16 jmcneill urtwn_set_chan(sc, ic->ic_curchan, IEEE80211_HTINFO_2NDCHAN_NONE);
5020 1.16 jmcneill
5021 1.16 jmcneill return 0;
5022 1.16 jmcneill }
5023 1.16 jmcneill
5024 1.1 nonaka static void
5025 1.1 nonaka urtwn_chip_stop(struct urtwn_softc *sc)
5026 1.1 nonaka {
5027 1.1 nonaka uint32_t reg;
5028 1.1 nonaka bool disabled = true;
5029 1.1 nonaka
5030 1.1 nonaka DPRINTFN(DBG_FN, ("%s: %s\n", device_xname(sc->sc_dev), __func__));
5031 1.1 nonaka
5032 1.62 jmcneill if (ISSET(sc->chip, URTWN_CHIP_88E) ||
5033 1.62 jmcneill ISSET(sc->chip, URTWN_CHIP_92EU))
5034 1.49 nat return;
5035 1.49 nat
5036 1.12 christos mutex_enter(&sc->sc_write_mtx);
5037 1.12 christos
5038 1.1 nonaka /*
5039 1.1 nonaka * RF Off Sequence
5040 1.1 nonaka */
5041 1.1 nonaka /* Pause MAC TX queue */
5042 1.1 nonaka urtwn_write_1(sc, R92C_TXPAUSE, 0xFF);
5043 1.1 nonaka
5044 1.1 nonaka /* Disable RF */
5045 1.1 nonaka urtwn_rf_write(sc, 0, 0, 0);
5046 1.1 nonaka
5047 1.1 nonaka urtwn_write_1(sc, R92C_APSD_CTRL, R92C_APSD_CTRL_OFF);
5048 1.1 nonaka
5049 1.1 nonaka /* Reset BB state machine */
5050 1.1 nonaka urtwn_write_1(sc, R92C_SYS_FUNC_EN,
5051 1.1 nonaka R92C_SYS_FUNC_EN_USBD |
5052 1.1 nonaka R92C_SYS_FUNC_EN_USBA |
5053 1.1 nonaka R92C_SYS_FUNC_EN_BB_GLB_RST);
5054 1.1 nonaka urtwn_write_1(sc, R92C_SYS_FUNC_EN,
5055 1.1 nonaka R92C_SYS_FUNC_EN_USBD | R92C_SYS_FUNC_EN_USBA);
5056 1.1 nonaka
5057 1.1 nonaka /*
5058 1.1 nonaka * Reset digital sequence
5059 1.1 nonaka */
5060 1.1 nonaka if (urtwn_read_1(sc, R92C_MCUFWDL) & R92C_MCUFWDL_RDY) {
5061 1.1 nonaka /* Reset MCU ready status */
5062 1.1 nonaka urtwn_write_1(sc, R92C_MCUFWDL, 0);
5063 1.1 nonaka /* If firmware in ram code, do reset */
5064 1.1 nonaka if (ISSET(sc->sc_flags, URTWN_FLAG_FWREADY)) {
5065 1.49 nat if (ISSET(sc->chip, URTWN_CHIP_88E) ||
5066 1.49 nat ISSET(sc->chip, URTWN_CHIP_92EU))
5067 1.32 nonaka urtwn_r88e_fw_reset(sc);
5068 1.32 nonaka else
5069 1.32 nonaka urtwn_fw_reset(sc);
5070 1.1 nonaka CLR(sc->sc_flags, URTWN_FLAG_FWREADY);
5071 1.1 nonaka }
5072 1.1 nonaka }
5073 1.1 nonaka
5074 1.1 nonaka /* Reset MAC and Enable 8051 */
5075 1.1 nonaka urtwn_write_1(sc, R92C_SYS_FUNC_EN + 1, 0x54);
5076 1.1 nonaka
5077 1.1 nonaka /* Reset MCU ready status */
5078 1.1 nonaka urtwn_write_1(sc, R92C_MCUFWDL, 0);
5079 1.1 nonaka
5080 1.1 nonaka if (disabled) {
5081 1.1 nonaka /* Disable MAC clock */
5082 1.1 nonaka urtwn_write_2(sc, R92C_SYS_CLKR, 0x70A3);
5083 1.1 nonaka /* Disable AFE PLL */
5084 1.1 nonaka urtwn_write_1(sc, R92C_AFE_PLL_CTRL, 0x80);
5085 1.1 nonaka /* Gated AFE DIG_CLOCK */
5086 1.1 nonaka urtwn_write_2(sc, R92C_AFE_XTAL_CTRL, 0x880F);
5087 1.1 nonaka /* Isolated digital to PON */
5088 1.1 nonaka urtwn_write_1(sc, R92C_SYS_ISO_CTRL, 0xF9);
5089 1.1 nonaka }
5090 1.1 nonaka
5091 1.1 nonaka /*
5092 1.1 nonaka * Pull GPIO PIN to balance level and LED control
5093 1.1 nonaka */
5094 1.1 nonaka /* 1. Disable GPIO[7:0] */
5095 1.1 nonaka urtwn_write_2(sc, R92C_GPIO_PIN_CTRL + 2, 0x0000);
5096 1.1 nonaka
5097 1.1 nonaka reg = urtwn_read_4(sc, R92C_GPIO_PIN_CTRL) & ~0x0000ff00;
5098 1.1 nonaka reg |= ((reg << 8) & 0x0000ff00) | 0x00ff0000;
5099 1.1 nonaka urtwn_write_4(sc, R92C_GPIO_PIN_CTRL, reg);
5100 1.1 nonaka
5101 1.28 christos /* Disable GPIO[10:8] */
5102 1.28 christos urtwn_write_1(sc, R92C_GPIO_MUXCFG + 3, 0x00);
5103 1.1 nonaka
5104 1.1 nonaka reg = urtwn_read_2(sc, R92C_GPIO_MUXCFG + 2) & ~0x00f0;
5105 1.28 christos reg |= (((reg & 0x000f) << 4) | 0x0780);
5106 1.41 nonaka urtwn_write_2(sc, R92C_GPIO_MUXCFG + 2, reg);
5107 1.1 nonaka
5108 1.1 nonaka /* Disable LED0 & 1 */
5109 1.28 christos urtwn_write_2(sc, R92C_LEDCFG0, 0x8080);
5110 1.1 nonaka
5111 1.1 nonaka /*
5112 1.1 nonaka * Reset digital sequence
5113 1.1 nonaka */
5114 1.28 christos if (disabled) {
5115 1.1 nonaka /* Disable ELDR clock */
5116 1.1 nonaka urtwn_write_2(sc, R92C_SYS_CLKR, 0x70A3);
5117 1.1 nonaka /* Isolated ELDR to PON */
5118 1.1 nonaka urtwn_write_1(sc, R92C_SYS_ISO_CTRL + 1, 0x82);
5119 1.1 nonaka }
5120 1.1 nonaka
5121 1.1 nonaka /*
5122 1.1 nonaka * Disable analog sequence
5123 1.1 nonaka */
5124 1.28 christos if (disabled) {
5125 1.1 nonaka /* Disable A15 power */
5126 1.28 christos urtwn_write_1(sc, R92C_LDOA15_CTRL, 0x04);
5127 1.1 nonaka /* Disable digital core power */
5128 1.28 christos urtwn_write_1(sc, R92C_LDOV12D_CTRL,
5129 1.28 christos urtwn_read_1(sc, R92C_LDOV12D_CTRL) &
5130 1.1 nonaka ~R92C_LDOV12D_CTRL_LDV12_EN);
5131 1.28 christos }
5132 1.1 nonaka
5133 1.1 nonaka /* Enter PFM mode */
5134 1.1 nonaka urtwn_write_1(sc, R92C_SPS0_CTRL, 0x23);
5135 1.1 nonaka
5136 1.1 nonaka /* Set USB suspend */
5137 1.1 nonaka urtwn_write_2(sc, R92C_APS_FSMCO,
5138 1.1 nonaka R92C_APS_FSMCO_APDM_HOST |
5139 1.1 nonaka R92C_APS_FSMCO_AFSM_HSUS |
5140 1.1 nonaka R92C_APS_FSMCO_PFM_ALDN);
5141 1.1 nonaka
5142 1.1 nonaka urtwn_write_1(sc, R92C_RSV_CTRL, 0x0E);
5143 1.12 christos
5144 1.12 christos mutex_exit(&sc->sc_write_mtx);
5145 1.1 nonaka }
5146 1.1 nonaka
5147 1.49 nat static void
5148 1.49 nat urtwn_delay_ms(struct urtwn_softc *sc, int ms)
5149 1.49 nat {
5150 1.49 nat if (sc->sc_running == false)
5151 1.49 nat DELAY(ms * 1000);
5152 1.49 nat else
5153 1.49 nat usbd_delay_ms(sc->sc_udev, ms);
5154 1.49 nat }
5155 1.49 nat
5156 1.64 christos MODULE(MODULE_CLASS_DRIVER, if_urtwn, NULL);
5157 1.1 nonaka
5158 1.1 nonaka #ifdef _MODULE
5159 1.1 nonaka #include "ioconf.c"
5160 1.1 nonaka #endif
5161 1.1 nonaka
5162 1.1 nonaka static int
5163 1.1 nonaka if_urtwn_modcmd(modcmd_t cmd, void *aux)
5164 1.1 nonaka {
5165 1.1 nonaka int error = 0;
5166 1.1 nonaka
5167 1.1 nonaka switch (cmd) {
5168 1.1 nonaka case MODULE_CMD_INIT:
5169 1.1 nonaka #ifdef _MODULE
5170 1.1 nonaka error = config_init_component(cfdriver_ioconf_urtwn,
5171 1.1 nonaka cfattach_ioconf_urtwn, cfdata_ioconf_urtwn);
5172 1.1 nonaka #endif
5173 1.42 skrll return error;
5174 1.1 nonaka case MODULE_CMD_FINI:
5175 1.1 nonaka #ifdef _MODULE
5176 1.1 nonaka error = config_fini_component(cfdriver_ioconf_urtwn,
5177 1.1 nonaka cfattach_ioconf_urtwn, cfdata_ioconf_urtwn);
5178 1.1 nonaka #endif
5179 1.42 skrll return error;
5180 1.1 nonaka default:
5181 1.42 skrll return ENOTTY;
5182 1.1 nonaka }
5183 1.1 nonaka }
5184