bwfm.c revision 1.20 1 1.20 thorpej /* $NetBSD: bwfm.c,v 1.20 2020/01/29 14:14:55 thorpej Exp $ */
2 1.1 jmcneill /* $OpenBSD: bwfm.c,v 1.5 2017/10/16 22:27:16 patrick Exp $ */
3 1.1 jmcneill /*
4 1.1 jmcneill * Copyright (c) 2010-2016 Broadcom Corporation
5 1.1 jmcneill * Copyright (c) 2016,2017 Patrick Wildt <patrick (at) blueri.se>
6 1.1 jmcneill *
7 1.1 jmcneill * Permission to use, copy, modify, and/or distribute this software for any
8 1.1 jmcneill * purpose with or without fee is hereby granted, provided that the above
9 1.1 jmcneill * copyright notice and this permission notice appear in all copies.
10 1.1 jmcneill *
11 1.1 jmcneill * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
12 1.1 jmcneill * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
13 1.1 jmcneill * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
14 1.1 jmcneill * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
15 1.1 jmcneill * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
16 1.1 jmcneill * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
17 1.1 jmcneill * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
18 1.1 jmcneill */
19 1.1 jmcneill
20 1.1 jmcneill #include <sys/param.h>
21 1.1 jmcneill #include <sys/systm.h>
22 1.1 jmcneill #include <sys/buf.h>
23 1.1 jmcneill #include <sys/kernel.h>
24 1.1 jmcneill #include <sys/device.h>
25 1.1 jmcneill #include <sys/queue.h>
26 1.1 jmcneill #include <sys/socket.h>
27 1.1 jmcneill #include <sys/kmem.h>
28 1.1 jmcneill #include <sys/workqueue.h>
29 1.1 jmcneill #include <sys/pcq.h>
30 1.1 jmcneill
31 1.1 jmcneill #include <net/bpf.h>
32 1.1 jmcneill #include <net/if.h>
33 1.1 jmcneill #include <net/if_dl.h>
34 1.1 jmcneill #include <net/if_media.h>
35 1.1 jmcneill #include <net/if_ether.h>
36 1.1 jmcneill
37 1.1 jmcneill #include <netinet/in.h>
38 1.1 jmcneill
39 1.1 jmcneill #include <net80211/ieee80211_var.h>
40 1.1 jmcneill
41 1.1 jmcneill #include <dev/ic/bwfmvar.h>
42 1.1 jmcneill #include <dev/ic/bwfmreg.h>
43 1.1 jmcneill
44 1.1 jmcneill /* #define BWFM_DEBUG */
45 1.1 jmcneill #ifdef BWFM_DEBUG
46 1.1 jmcneill #define DPRINTF(x) do { if (bwfm_debug > 0) printf x; } while (0)
47 1.1 jmcneill #define DPRINTFN(n, x) do { if (bwfm_debug >= (n)) printf x; } while (0)
48 1.1 jmcneill static int bwfm_debug = 1;
49 1.1 jmcneill #else
50 1.1 jmcneill #define DPRINTF(x) do { ; } while (0)
51 1.1 jmcneill #define DPRINTFN(n, x) do { ; } while (0)
52 1.1 jmcneill #endif
53 1.1 jmcneill
54 1.1 jmcneill #define DEVNAME(sc) device_xname((sc)->sc_dev)
55 1.1 jmcneill
56 1.1 jmcneill void bwfm_start(struct ifnet *);
57 1.1 jmcneill int bwfm_init(struct ifnet *);
58 1.1 jmcneill void bwfm_stop(struct ifnet *, int);
59 1.1 jmcneill void bwfm_watchdog(struct ifnet *);
60 1.1 jmcneill int bwfm_ioctl(struct ifnet *, u_long, void *);
61 1.1 jmcneill int bwfm_media_change(struct ifnet *);
62 1.1 jmcneill
63 1.1 jmcneill int bwfm_send_mgmt(struct ieee80211com *, struct ieee80211_node *,
64 1.1 jmcneill int, int);
65 1.1 jmcneill void bwfm_recv_mgmt(struct ieee80211com *, struct mbuf *,
66 1.1 jmcneill struct ieee80211_node *, int, int, uint32_t);
67 1.1 jmcneill int bwfm_key_set(struct ieee80211com *, const struct ieee80211_key *,
68 1.1 jmcneill const uint8_t *);
69 1.1 jmcneill int bwfm_key_delete(struct ieee80211com *, const struct ieee80211_key *);
70 1.1 jmcneill int bwfm_newstate(struct ieee80211com *, enum ieee80211_state, int);
71 1.1 jmcneill void bwfm_newstate_cb(struct bwfm_softc *, struct bwfm_cmd_newstate *);
72 1.4 jmcneill void bwfm_newassoc(struct ieee80211_node *, int);
73 1.1 jmcneill void bwfm_task(struct work *, void *);
74 1.1 jmcneill
75 1.1 jmcneill int bwfm_chip_attach(struct bwfm_softc *);
76 1.1 jmcneill int bwfm_chip_detach(struct bwfm_softc *, int);
77 1.1 jmcneill struct bwfm_core *bwfm_chip_get_core(struct bwfm_softc *, int);
78 1.1 jmcneill struct bwfm_core *bwfm_chip_get_pmu(struct bwfm_softc *);
79 1.1 jmcneill int bwfm_chip_ai_isup(struct bwfm_softc *, struct bwfm_core *);
80 1.1 jmcneill void bwfm_chip_ai_disable(struct bwfm_softc *, struct bwfm_core *,
81 1.1 jmcneill uint32_t, uint32_t);
82 1.1 jmcneill void bwfm_chip_ai_reset(struct bwfm_softc *, struct bwfm_core *,
83 1.1 jmcneill uint32_t, uint32_t, uint32_t);
84 1.1 jmcneill void bwfm_chip_dmp_erom_scan(struct bwfm_softc *);
85 1.1 jmcneill int bwfm_chip_dmp_get_regaddr(struct bwfm_softc *, uint32_t *,
86 1.1 jmcneill uint32_t *, uint32_t *);
87 1.11 maya int bwfm_chip_cr4_set_active(struct bwfm_softc *, const uint32_t);
88 1.1 jmcneill void bwfm_chip_cr4_set_passive(struct bwfm_softc *);
89 1.11 maya int bwfm_chip_ca7_set_active(struct bwfm_softc *, const uint32_t);
90 1.1 jmcneill void bwfm_chip_ca7_set_passive(struct bwfm_softc *);
91 1.11 maya int bwfm_chip_cm3_set_active(struct bwfm_softc *);
92 1.1 jmcneill void bwfm_chip_cm3_set_passive(struct bwfm_softc *);
93 1.11 maya void bwfm_chip_socram_ramsize(struct bwfm_softc *, struct bwfm_core *);
94 1.11 maya void bwfm_chip_sysmem_ramsize(struct bwfm_softc *, struct bwfm_core *);
95 1.11 maya void bwfm_chip_tcm_ramsize(struct bwfm_softc *, struct bwfm_core *);
96 1.11 maya void bwfm_chip_tcm_rambase(struct bwfm_softc *);
97 1.1 jmcneill
98 1.1 jmcneill int bwfm_proto_bcdc_query_dcmd(struct bwfm_softc *, int,
99 1.1 jmcneill int, char *, size_t *);
100 1.1 jmcneill int bwfm_proto_bcdc_set_dcmd(struct bwfm_softc *, int,
101 1.1 jmcneill int, char *, size_t);
102 1.1 jmcneill
103 1.1 jmcneill int bwfm_fwvar_cmd_get_data(struct bwfm_softc *, int, void *, size_t);
104 1.1 jmcneill int bwfm_fwvar_cmd_set_data(struct bwfm_softc *, int, void *, size_t);
105 1.1 jmcneill int bwfm_fwvar_cmd_get_int(struct bwfm_softc *, int, uint32_t *);
106 1.1 jmcneill int bwfm_fwvar_cmd_set_int(struct bwfm_softc *, int, uint32_t);
107 1.1 jmcneill int bwfm_fwvar_var_get_data(struct bwfm_softc *, const char *, void *, size_t);
108 1.1 jmcneill int bwfm_fwvar_var_set_data(struct bwfm_softc *, const char *, void *, size_t);
109 1.1 jmcneill int bwfm_fwvar_var_get_int(struct bwfm_softc *, const char *, uint32_t *);
110 1.1 jmcneill int bwfm_fwvar_var_set_int(struct bwfm_softc *, const char *, uint32_t);
111 1.1 jmcneill
112 1.1 jmcneill struct ieee80211_channel *bwfm_bss2chan(struct bwfm_softc *, struct bwfm_bss_info *);
113 1.1 jmcneill void bwfm_scan(struct bwfm_softc *);
114 1.1 jmcneill void bwfm_connect(struct bwfm_softc *);
115 1.17 jmcneill void bwfm_get_sta_info(struct bwfm_softc *, struct ifmediareq *);
116 1.1 jmcneill
117 1.11 maya void bwfm_rx(struct bwfm_softc *, struct mbuf *);
118 1.15 mlelstv void bwfm_rx_event(struct bwfm_softc *, struct mbuf *);
119 1.15 mlelstv void bwfm_rx_event_cb(struct bwfm_softc *, struct mbuf *);
120 1.1 jmcneill void bwfm_scan_node(struct bwfm_softc *, struct bwfm_bss_info *, size_t);
121 1.1 jmcneill
122 1.1 jmcneill uint8_t bwfm_2ghz_channels[] = {
123 1.1 jmcneill 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13,
124 1.1 jmcneill };
125 1.1 jmcneill uint8_t bwfm_5ghz_channels[] = {
126 1.1 jmcneill 34, 36, 38, 40, 42, 44, 46, 48, 52, 56, 60, 64, 100, 104, 108, 112,
127 1.1 jmcneill 116, 120, 124, 128, 132, 136, 140, 144, 149, 153, 157, 161, 165,
128 1.1 jmcneill };
129 1.1 jmcneill
130 1.1 jmcneill struct bwfm_proto_ops bwfm_proto_bcdc_ops = {
131 1.1 jmcneill .proto_query_dcmd = bwfm_proto_bcdc_query_dcmd,
132 1.1 jmcneill .proto_set_dcmd = bwfm_proto_bcdc_set_dcmd,
133 1.1 jmcneill };
134 1.1 jmcneill
135 1.1 jmcneill void
136 1.1 jmcneill bwfm_attach(struct bwfm_softc *sc)
137 1.1 jmcneill {
138 1.1 jmcneill struct ieee80211com *ic = &sc->sc_ic;
139 1.1 jmcneill struct ifnet *ifp = &sc->sc_if;
140 1.1 jmcneill struct bwfm_task *t;
141 1.1 jmcneill char fw_version[BWFM_DCMD_SMLEN];
142 1.1 jmcneill uint32_t bandlist[3];
143 1.1 jmcneill uint32_t tmp;
144 1.11 maya int i, j, error;
145 1.1 jmcneill
146 1.1 jmcneill error = workqueue_create(&sc->sc_taskq, DEVNAME(sc),
147 1.16 mlelstv bwfm_task, sc, PRI_NONE, IPL_NET, 0);
148 1.1 jmcneill if (error != 0) {
149 1.1 jmcneill printf("%s: could not create workqueue\n", DEVNAME(sc));
150 1.1 jmcneill return;
151 1.1 jmcneill }
152 1.1 jmcneill sc->sc_freetask = pcq_create(BWFM_TASK_COUNT, KM_SLEEP);
153 1.1 jmcneill for (i = 0; i < BWFM_TASK_COUNT; i++) {
154 1.1 jmcneill t = &sc->sc_task[i];
155 1.1 jmcneill t->t_sc = sc;
156 1.1 jmcneill pcq_put(sc->sc_freetask, t);
157 1.1 jmcneill }
158 1.1 jmcneill
159 1.5 jmcneill /* Stop the device in case it was previously initialized */
160 1.5 jmcneill bwfm_fwvar_cmd_set_int(sc, BWFM_C_DOWN, 1);
161 1.5 jmcneill
162 1.1 jmcneill if (bwfm_fwvar_cmd_get_int(sc, BWFM_C_GET_VERSION, &tmp)) {
163 1.1 jmcneill printf("%s: could not read io type\n", DEVNAME(sc));
164 1.1 jmcneill return;
165 1.1 jmcneill } else
166 1.1 jmcneill sc->sc_io_type = tmp;
167 1.1 jmcneill if (bwfm_fwvar_var_get_data(sc, "cur_etheraddr", ic->ic_myaddr,
168 1.1 jmcneill sizeof(ic->ic_myaddr))) {
169 1.1 jmcneill printf("%s: could not read mac address\n", DEVNAME(sc));
170 1.1 jmcneill return;
171 1.1 jmcneill }
172 1.1 jmcneill
173 1.1 jmcneill memset(fw_version, 0, sizeof(fw_version));
174 1.1 jmcneill if (bwfm_fwvar_var_get_data(sc, "ver", fw_version, sizeof(fw_version)) == 0)
175 1.1 jmcneill printf("%s: %s", DEVNAME(sc), fw_version);
176 1.1 jmcneill printf("%s: address %s\n", DEVNAME(sc), ether_sprintf(ic->ic_myaddr));
177 1.1 jmcneill
178 1.1 jmcneill ic->ic_ifp = ifp;
179 1.1 jmcneill ic->ic_phytype = IEEE80211_T_OFDM;
180 1.1 jmcneill ic->ic_opmode = IEEE80211_M_STA;
181 1.1 jmcneill ic->ic_state = IEEE80211_S_INIT;
182 1.1 jmcneill
183 1.1 jmcneill ic->ic_caps =
184 1.1 jmcneill IEEE80211_C_WEP |
185 1.1 jmcneill IEEE80211_C_TKIP |
186 1.1 jmcneill IEEE80211_C_AES |
187 1.1 jmcneill IEEE80211_C_AES_CCM |
188 1.1 jmcneill #if notyet
189 1.19 msaitoh IEEE80211_C_MONITOR | /* monitor mode supported */
190 1.1 jmcneill IEEE80211_C_IBSS |
191 1.1 jmcneill IEEE80211_C_TXPMGT |
192 1.1 jmcneill IEEE80211_C_WME |
193 1.1 jmcneill #endif
194 1.1 jmcneill IEEE80211_C_SHSLOT | /* short slot time supported */
195 1.1 jmcneill IEEE80211_C_SHPREAMBLE | /* short preamble supported */
196 1.1 jmcneill IEEE80211_C_WPA | /* 802.11i */
197 1.1 jmcneill /* IEEE80211_C_WPA_4WAY */0; /* WPA 4-way handshake in hw */
198 1.1 jmcneill
199 1.1 jmcneill /* IBSS channel undefined for now. */
200 1.1 jmcneill ic->ic_ibss_chan = &ic->ic_channels[0];
201 1.1 jmcneill
202 1.1 jmcneill if (bwfm_fwvar_cmd_get_data(sc, BWFM_C_GET_BANDLIST, bandlist,
203 1.1 jmcneill sizeof(bandlist))) {
204 1.1 jmcneill printf("%s: couldn't get supported band list\n", DEVNAME(sc));
205 1.1 jmcneill return;
206 1.1 jmcneill }
207 1.1 jmcneill const u_int nbands = le32toh(bandlist[0]);
208 1.1 jmcneill for (i = 1; i <= MIN(nbands, __arraycount(bandlist) - 1); i++) {
209 1.1 jmcneill switch (le32toh(bandlist[i])) {
210 1.1 jmcneill case BWFM_BAND_2G:
211 1.1 jmcneill ic->ic_sup_rates[IEEE80211_MODE_11B] = ieee80211_std_rateset_11b;
212 1.1 jmcneill ic->ic_sup_rates[IEEE80211_MODE_11G] = ieee80211_std_rateset_11g;
213 1.1 jmcneill
214 1.11 maya for (j = 0; j < __arraycount(bwfm_2ghz_channels); j++) {
215 1.11 maya uint8_t chan = bwfm_2ghz_channels[j];
216 1.1 jmcneill ic->ic_channels[chan].ic_freq =
217 1.1 jmcneill ieee80211_ieee2mhz(chan, IEEE80211_CHAN_2GHZ);
218 1.1 jmcneill ic->ic_channels[chan].ic_flags =
219 1.1 jmcneill IEEE80211_CHAN_CCK | IEEE80211_CHAN_OFDM |
220 1.1 jmcneill IEEE80211_CHAN_DYN | IEEE80211_CHAN_2GHZ;
221 1.1 jmcneill }
222 1.1 jmcneill break;
223 1.1 jmcneill case BWFM_BAND_5G:
224 1.1 jmcneill ic->ic_sup_rates[IEEE80211_MODE_11A] = ieee80211_std_rateset_11a;
225 1.1 jmcneill
226 1.11 maya for (j = 0; j < __arraycount(bwfm_5ghz_channels); j++) {
227 1.11 maya uint8_t chan = bwfm_5ghz_channels[j];
228 1.1 jmcneill ic->ic_channels[chan].ic_freq =
229 1.1 jmcneill ieee80211_ieee2mhz(chan, IEEE80211_CHAN_5GHZ);
230 1.1 jmcneill ic->ic_channels[chan].ic_flags =
231 1.1 jmcneill IEEE80211_CHAN_A;
232 1.1 jmcneill }
233 1.1 jmcneill break;
234 1.1 jmcneill }
235 1.1 jmcneill }
236 1.1 jmcneill
237 1.1 jmcneill ifp->if_softc = sc;
238 1.1 jmcneill ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
239 1.1 jmcneill ifp->if_init = bwfm_init;
240 1.1 jmcneill ifp->if_ioctl = bwfm_ioctl;
241 1.1 jmcneill ifp->if_start = bwfm_start;
242 1.14 maya ifp->if_stop = bwfm_stop;
243 1.1 jmcneill ifp->if_watchdog = bwfm_watchdog;
244 1.1 jmcneill IFQ_SET_READY(&ifp->if_snd);
245 1.1 jmcneill memcpy(ifp->if_xname, DEVNAME(sc), IFNAMSIZ);
246 1.1 jmcneill
247 1.3 msaitoh error = if_initialize(ifp);
248 1.3 msaitoh if (error != 0) {
249 1.3 msaitoh printf("%s: if_initialize failed(%d)\n", DEVNAME(sc), error);
250 1.3 msaitoh pcq_destroy(sc->sc_freetask);
251 1.3 msaitoh workqueue_destroy(sc->sc_taskq);
252 1.3 msaitoh
253 1.3 msaitoh return; /* Error */
254 1.3 msaitoh }
255 1.3 msaitoh
256 1.1 jmcneill ieee80211_ifattach(ic);
257 1.1 jmcneill ifp->if_percpuq = if_percpuq_create(ifp);
258 1.1 jmcneill if_deferred_start_init(ifp, NULL);
259 1.1 jmcneill if_register(ifp);
260 1.1 jmcneill
261 1.1 jmcneill sc->sc_newstate = ic->ic_newstate;
262 1.1 jmcneill ic->ic_newstate = bwfm_newstate;
263 1.4 jmcneill ic->ic_newassoc = bwfm_newassoc;
264 1.1 jmcneill ic->ic_send_mgmt = bwfm_send_mgmt;
265 1.1 jmcneill ic->ic_recv_mgmt = bwfm_recv_mgmt;
266 1.1 jmcneill ic->ic_crypto.cs_key_set = bwfm_key_set;
267 1.1 jmcneill ic->ic_crypto.cs_key_delete = bwfm_key_delete;
268 1.6 jmcneill ieee80211_media_init(ic, bwfm_media_change, ieee80211_media_status);
269 1.1 jmcneill
270 1.1 jmcneill ieee80211_announce(ic);
271 1.1 jmcneill
272 1.1 jmcneill sc->sc_if_attached = true;
273 1.1 jmcneill }
274 1.1 jmcneill
275 1.1 jmcneill int
276 1.1 jmcneill bwfm_detach(struct bwfm_softc *sc, int flags)
277 1.1 jmcneill {
278 1.1 jmcneill struct ieee80211com *ic = &sc->sc_ic;
279 1.1 jmcneill struct ifnet *ifp = ic->ic_ifp;
280 1.1 jmcneill
281 1.1 jmcneill if (sc->sc_if_attached) {
282 1.1 jmcneill bpf_detach(ifp);
283 1.1 jmcneill ieee80211_ifdetach(ic);
284 1.1 jmcneill if_detach(ifp);
285 1.1 jmcneill }
286 1.1 jmcneill
287 1.1 jmcneill if (sc->sc_taskq)
288 1.1 jmcneill workqueue_destroy(sc->sc_taskq);
289 1.1 jmcneill if (sc->sc_freetask)
290 1.1 jmcneill pcq_destroy(sc->sc_freetask);
291 1.1 jmcneill
292 1.1 jmcneill return 0;
293 1.1 jmcneill }
294 1.1 jmcneill
295 1.1 jmcneill void
296 1.1 jmcneill bwfm_start(struct ifnet *ifp)
297 1.1 jmcneill {
298 1.1 jmcneill struct bwfm_softc *sc = ifp->if_softc;
299 1.1 jmcneill struct ieee80211com *ic = &sc->sc_ic;
300 1.1 jmcneill struct mbuf *m;
301 1.1 jmcneill int error;
302 1.1 jmcneill
303 1.1 jmcneill if ((ifp->if_flags & (IFF_RUNNING | IFF_OACTIVE)) != IFF_RUNNING)
304 1.1 jmcneill return;
305 1.1 jmcneill
306 1.1 jmcneill /* TODO: return if no link? */
307 1.1 jmcneill
308 1.1 jmcneill for (;;) {
309 1.1 jmcneill /* Discard management packets (fw handles this for us) */
310 1.1 jmcneill IF_DEQUEUE(&ic->ic_mgtq, m);
311 1.1 jmcneill if (m != NULL) {
312 1.1 jmcneill m_freem(m);
313 1.1 jmcneill continue;
314 1.1 jmcneill }
315 1.1 jmcneill
316 1.11 maya if (sc->sc_bus_ops->bs_txcheck(sc)) {
317 1.11 maya ifp->if_flags |= IFF_OACTIVE;
318 1.11 maya break;
319 1.11 maya }
320 1.11 maya
321 1.1 jmcneill IFQ_DEQUEUE(&ifp->if_snd, m);
322 1.1 jmcneill if (m == NULL)
323 1.1 jmcneill break;
324 1.1 jmcneill
325 1.13 riastrad error = sc->sc_bus_ops->bs_txdata(sc, &m);
326 1.1 jmcneill if (error == ENOBUFS) {
327 1.1 jmcneill IF_PREPEND(&ifp->if_snd, m);
328 1.1 jmcneill ifp->if_flags |= IFF_OACTIVE;
329 1.1 jmcneill break;
330 1.1 jmcneill }
331 1.1 jmcneill if (error != 0) {
332 1.20 thorpej if_statinc(ifp, if_oerrors);
333 1.1 jmcneill m_freem(m);
334 1.15 mlelstv continue;
335 1.1 jmcneill }
336 1.15 mlelstv
337 1.15 mlelstv bpf_mtap(ifp, m, BPF_D_OUT);
338 1.1 jmcneill }
339 1.1 jmcneill }
340 1.1 jmcneill
341 1.1 jmcneill int
342 1.1 jmcneill bwfm_init(struct ifnet *ifp)
343 1.1 jmcneill {
344 1.1 jmcneill struct bwfm_softc *sc = ifp->if_softc;
345 1.1 jmcneill struct ieee80211com *ic = &sc->sc_ic;
346 1.1 jmcneill uint8_t evmask[BWFM_EVENT_MASK_LEN];
347 1.1 jmcneill struct bwfm_join_pref_params join_pref[2];
348 1.18 mlelstv int pm;
349 1.1 jmcneill
350 1.1 jmcneill if (bwfm_fwvar_var_set_int(sc, "mpc", 1)) {
351 1.1 jmcneill printf("%s: could not set mpc\n", DEVNAME(sc));
352 1.1 jmcneill return EIO;
353 1.1 jmcneill }
354 1.1 jmcneill
355 1.1 jmcneill /* Select target by RSSI (boost on 5GHz) */
356 1.1 jmcneill join_pref[0].type = BWFM_JOIN_PREF_RSSI_DELTA;
357 1.1 jmcneill join_pref[0].len = 2;
358 1.1 jmcneill join_pref[0].rssi_gain = BWFM_JOIN_PREF_RSSI_BOOST;
359 1.1 jmcneill join_pref[0].band = BWFM_JOIN_PREF_BAND_5G;
360 1.1 jmcneill join_pref[1].type = BWFM_JOIN_PREF_RSSI;
361 1.1 jmcneill join_pref[1].len = 2;
362 1.1 jmcneill join_pref[1].rssi_gain = 0;
363 1.1 jmcneill join_pref[1].band = 0;
364 1.1 jmcneill if (bwfm_fwvar_var_set_data(sc, "join_pref", join_pref,
365 1.1 jmcneill sizeof(join_pref))) {
366 1.1 jmcneill printf("%s: could not set join pref\n", DEVNAME(sc));
367 1.1 jmcneill return EIO;
368 1.1 jmcneill }
369 1.1 jmcneill
370 1.1 jmcneill memset(evmask, 0, sizeof(evmask));
371 1.1 jmcneill
372 1.1 jmcneill #define ENABLE_EVENT(e) evmask[(e) / 8] |= 1 << ((e) % 8)
373 1.1 jmcneill /* Events used to drive the state machine */
374 1.18 mlelstv switch (ic->ic_opmode) {
375 1.18 mlelstv case IEEE80211_M_STA:
376 1.18 mlelstv ENABLE_EVENT(BWFM_E_IF);
377 1.18 mlelstv ENABLE_EVENT(BWFM_E_LINK);
378 1.18 mlelstv ENABLE_EVENT(BWFM_E_AUTH);
379 1.18 mlelstv ENABLE_EVENT(BWFM_E_ASSOC);
380 1.18 mlelstv ENABLE_EVENT(BWFM_E_DEAUTH);
381 1.18 mlelstv ENABLE_EVENT(BWFM_E_DISASSOC);
382 1.18 mlelstv ENABLE_EVENT(BWFM_E_SET_SSID);
383 1.18 mlelstv ENABLE_EVENT(BWFM_E_ESCAN_RESULT);
384 1.18 mlelstv break;
385 1.18 mlelstv #ifndef IEEE80211_STA_ONLY
386 1.18 mlelstv case IEEE80211_M_HOSTAP:
387 1.18 mlelstv ENABLE_EVENT(BWFM_E_AUTH_IND);
388 1.18 mlelstv ENABLE_EVENT(BWFM_E_ASSOC_IND);
389 1.18 mlelstv ENABLE_EVENT(BWFM_E_REASSOC_IND);
390 1.18 mlelstv ENABLE_EVENT(BWFM_E_DEAUTH_IND);
391 1.18 mlelstv ENABLE_EVENT(BWFM_E_DISASSOC_IND);
392 1.18 mlelstv ENABLE_EVENT(BWFM_E_ESCAN_RESULT);
393 1.18 mlelstv ENABLE_EVENT(BWFM_E_ESCAN_RESULT);
394 1.18 mlelstv break;
395 1.18 mlelstv #endif
396 1.18 mlelstv default:
397 1.18 mlelstv break;
398 1.18 mlelstv }
399 1.1 jmcneill #undef ENABLE_EVENT
400 1.1 jmcneill
401 1.1 jmcneill #ifdef BWFM_DEBUG
402 1.1 jmcneill memset(evmask, 0xff, sizeof(evmask));
403 1.1 jmcneill #endif
404 1.1 jmcneill
405 1.1 jmcneill if (bwfm_fwvar_var_set_data(sc, "event_msgs", evmask, sizeof(evmask))) {
406 1.1 jmcneill printf("%s: could not set event mask\n", DEVNAME(sc));
407 1.1 jmcneill return EIO;
408 1.1 jmcneill }
409 1.1 jmcneill
410 1.1 jmcneill if (bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_SCAN_CHANNEL_TIME,
411 1.1 jmcneill BWFM_DEFAULT_SCAN_CHANNEL_TIME)) {
412 1.1 jmcneill printf("%s: could not set scan channel time\n", DEVNAME(sc));
413 1.1 jmcneill return EIO;
414 1.1 jmcneill }
415 1.1 jmcneill if (bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_SCAN_UNASSOC_TIME,
416 1.1 jmcneill BWFM_DEFAULT_SCAN_UNASSOC_TIME)) {
417 1.1 jmcneill printf("%s: could not set scan unassoc time\n", DEVNAME(sc));
418 1.1 jmcneill return EIO;
419 1.1 jmcneill }
420 1.1 jmcneill if (bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_SCAN_PASSIVE_TIME,
421 1.1 jmcneill BWFM_DEFAULT_SCAN_PASSIVE_TIME)) {
422 1.1 jmcneill printf("%s: could not set scan passive time\n", DEVNAME(sc));
423 1.1 jmcneill return EIO;
424 1.1 jmcneill }
425 1.1 jmcneill
426 1.18 mlelstv /*
427 1.18 mlelstv * Use CAM (constantly awake) when we are running as AP
428 1.18 mlelstv * otherwise use fast power saving.
429 1.18 mlelstv */
430 1.18 mlelstv pm = BWFM_PM_FAST_PS;
431 1.18 mlelstv #ifndef IEEE80211_STA_ONLY
432 1.18 mlelstv if (ic->ic_opmode == IEEE80211_M_HOSTAP)
433 1.18 mlelstv pm = BWFM_PM_CAM;
434 1.18 mlelstv #endif
435 1.18 mlelstv if (bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_PM, pm)) {
436 1.1 jmcneill printf("%s: could not set power\n", DEVNAME(sc));
437 1.1 jmcneill return EIO;
438 1.1 jmcneill }
439 1.1 jmcneill
440 1.1 jmcneill bwfm_fwvar_var_set_int(sc, "txbf", 1);
441 1.1 jmcneill bwfm_fwvar_cmd_set_int(sc, BWFM_C_UP, 0);
442 1.1 jmcneill bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_INFRA, 1);
443 1.1 jmcneill bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_AP, 0);
444 1.1 jmcneill
445 1.1 jmcneill /* Disable all offloading (ARP, NDP, TCP/UDP cksum). */
446 1.1 jmcneill bwfm_fwvar_var_set_int(sc, "arp_ol", 0);
447 1.1 jmcneill bwfm_fwvar_var_set_int(sc, "arpoe", 0);
448 1.1 jmcneill bwfm_fwvar_var_set_int(sc, "ndoe", 0);
449 1.1 jmcneill bwfm_fwvar_var_set_int(sc, "toe", 0);
450 1.1 jmcneill
451 1.7 jmcneill /* Accept all multicast frames. */
452 1.7 jmcneill bwfm_fwvar_var_set_int(sc, "allmulti", 1);
453 1.7 jmcneill
454 1.7 jmcneill /* Setup promiscuous mode */
455 1.7 jmcneill bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_PROMISC,
456 1.7 jmcneill (ifp->if_flags & IFF_PROMISC) ? 1 : 0);
457 1.7 jmcneill
458 1.1 jmcneill /*
459 1.1 jmcneill * Tell the firmware supplicant that we are going to handle the
460 1.1 jmcneill * WPA handshake ourselves.
461 1.1 jmcneill */
462 1.1 jmcneill bwfm_fwvar_var_set_int(sc, "sup_wpa", 0);
463 1.1 jmcneill
464 1.1 jmcneill ifp->if_flags |= IFF_RUNNING;
465 1.1 jmcneill ifp->if_flags &= ~IFF_OACTIVE;
466 1.1 jmcneill
467 1.1 jmcneill if (ic->ic_opmode != IEEE80211_M_MONITOR) {
468 1.1 jmcneill if (ic->ic_roaming != IEEE80211_ROAMING_MANUAL)
469 1.1 jmcneill ieee80211_new_state(ic, IEEE80211_S_SCAN, -1);
470 1.1 jmcneill } else {
471 1.1 jmcneill ieee80211_new_state(ic, IEEE80211_S_RUN, -1);
472 1.1 jmcneill }
473 1.1 jmcneill
474 1.1 jmcneill return 0;
475 1.1 jmcneill }
476 1.1 jmcneill
477 1.1 jmcneill void
478 1.1 jmcneill bwfm_stop(struct ifnet *ifp, int disable)
479 1.1 jmcneill {
480 1.1 jmcneill struct bwfm_softc *sc = ifp->if_softc;
481 1.1 jmcneill struct ieee80211com *ic = &sc->sc_ic;
482 1.18 mlelstv struct bwfm_join_params join;
483 1.1 jmcneill
484 1.1 jmcneill sc->sc_tx_timer = 0;
485 1.1 jmcneill ifp->if_timer = 0;
486 1.1 jmcneill ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
487 1.1 jmcneill
488 1.18 mlelstv memset(&join, 0, sizeof(join));
489 1.18 mlelstv bwfm_fwvar_cmd_set_data(sc, BWFM_C_SET_SSID, &join, sizeof(join));
490 1.1 jmcneill bwfm_fwvar_cmd_set_int(sc, BWFM_C_DOWN, 1);
491 1.1 jmcneill bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_PM, 0);
492 1.18 mlelstv bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_AP, 0);
493 1.18 mlelstv bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_INFRA, 0);
494 1.18 mlelstv bwfm_fwvar_cmd_set_int(sc, BWFM_C_UP, 1);
495 1.18 mlelstv bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_PM, BWFM_PM_FAST_PS);
496 1.1 jmcneill
497 1.1 jmcneill ieee80211_new_state(ic, IEEE80211_S_INIT, -1);
498 1.18 mlelstv
499 1.18 mlelstv if (sc->sc_bus_ops->bs_stop)
500 1.18 mlelstv sc->sc_bus_ops->bs_stop(sc);
501 1.1 jmcneill }
502 1.1 jmcneill
503 1.1 jmcneill void
504 1.1 jmcneill bwfm_watchdog(struct ifnet *ifp)
505 1.1 jmcneill {
506 1.1 jmcneill struct bwfm_softc *sc = ifp->if_softc;
507 1.1 jmcneill struct ieee80211com *ic = &sc->sc_ic;
508 1.1 jmcneill
509 1.1 jmcneill ifp->if_timer = 0;
510 1.1 jmcneill
511 1.1 jmcneill if (sc->sc_tx_timer > 0) {
512 1.1 jmcneill if (--sc->sc_tx_timer == 0) {
513 1.1 jmcneill printf("%s: device timeout\n", DEVNAME(sc));
514 1.20 thorpej if_statinc(ifp, if_oerrors);
515 1.1 jmcneill return;
516 1.1 jmcneill }
517 1.1 jmcneill ifp->if_timer = 1;
518 1.1 jmcneill }
519 1.1 jmcneill ieee80211_watchdog(ic);
520 1.1 jmcneill }
521 1.1 jmcneill
522 1.1 jmcneill int
523 1.1 jmcneill bwfm_ioctl(struct ifnet *ifp, u_long cmd, void *data)
524 1.1 jmcneill {
525 1.1 jmcneill struct bwfm_softc *sc = ifp->if_softc;
526 1.1 jmcneill struct ieee80211com *ic = &sc->sc_ic;
527 1.1 jmcneill int s, error = 0;
528 1.1 jmcneill
529 1.1 jmcneill s = splnet();
530 1.1 jmcneill
531 1.1 jmcneill switch (cmd) {
532 1.1 jmcneill case SIOCSIFFLAGS:
533 1.1 jmcneill if ((error = ifioctl_common(ifp, cmd, data)) != 0)
534 1.1 jmcneill break;
535 1.1 jmcneill switch (ifp->if_flags & (IFF_UP | IFF_RUNNING)) {
536 1.1 jmcneill case IFF_UP | IFF_RUNNING:
537 1.1 jmcneill break;
538 1.1 jmcneill case IFF_UP:
539 1.1 jmcneill bwfm_init(ifp);
540 1.1 jmcneill break;
541 1.1 jmcneill case IFF_RUNNING:
542 1.1 jmcneill bwfm_stop(ifp, 1);
543 1.1 jmcneill break;
544 1.1 jmcneill case 0:
545 1.1 jmcneill break;
546 1.1 jmcneill }
547 1.1 jmcneill break;
548 1.1 jmcneill
549 1.1 jmcneill case SIOCADDMULTI:
550 1.1 jmcneill case SIOCDELMULTI:
551 1.1 jmcneill if ((error = ether_ioctl(ifp, cmd, data)) == ENETRESET) {
552 1.1 jmcneill /* setup multicast filter, etc */
553 1.1 jmcneill error = 0;
554 1.1 jmcneill }
555 1.1 jmcneill break;
556 1.1 jmcneill
557 1.17 jmcneill case SIOCGIFMEDIA:
558 1.17 jmcneill error = ieee80211_ioctl(ic, cmd, data);
559 1.17 jmcneill if (error == 0 && ic->ic_state == IEEE80211_S_RUN)
560 1.17 jmcneill bwfm_get_sta_info(sc, (struct ifmediareq *)data);
561 1.17 jmcneill break;
562 1.17 jmcneill
563 1.1 jmcneill default:
564 1.1 jmcneill error = ieee80211_ioctl(ic, cmd, data);
565 1.1 jmcneill }
566 1.1 jmcneill
567 1.1 jmcneill if (error == ENETRESET) {
568 1.1 jmcneill if ((ifp->if_flags & IFF_UP) != 0 &&
569 1.1 jmcneill (ifp->if_flags & IFF_RUNNING) != 0 &&
570 1.1 jmcneill ic->ic_roaming != IEEE80211_ROAMING_MANUAL) {
571 1.1 jmcneill bwfm_init(ifp);
572 1.1 jmcneill }
573 1.1 jmcneill error = 0;
574 1.1 jmcneill }
575 1.1 jmcneill
576 1.1 jmcneill splx(s);
577 1.1 jmcneill
578 1.1 jmcneill return error;
579 1.1 jmcneill }
580 1.1 jmcneill
581 1.1 jmcneill int
582 1.1 jmcneill bwfm_send_mgmt(struct ieee80211com *ic, struct ieee80211_node *ni,
583 1.1 jmcneill int type, int arg)
584 1.1 jmcneill {
585 1.1 jmcneill return 0;
586 1.1 jmcneill }
587 1.1 jmcneill
588 1.1 jmcneill void
589 1.1 jmcneill bwfm_recv_mgmt(struct ieee80211com *ic, struct mbuf *m0,
590 1.1 jmcneill struct ieee80211_node *ni, int subtype, int rssi, uint32_t rstamp)
591 1.1 jmcneill {
592 1.1 jmcneill }
593 1.1 jmcneill
594 1.1 jmcneill int
595 1.1 jmcneill bwfm_key_set(struct ieee80211com *ic, const struct ieee80211_key *wk,
596 1.1 jmcneill const uint8_t mac[IEEE80211_ADDR_LEN])
597 1.1 jmcneill {
598 1.1 jmcneill struct bwfm_softc *sc = ic->ic_ifp->if_softc;
599 1.1 jmcneill struct bwfm_task *t;
600 1.1 jmcneill
601 1.1 jmcneill t = pcq_get(sc->sc_freetask);
602 1.1 jmcneill if (t == NULL) {
603 1.1 jmcneill printf("%s: no free tasks\n", DEVNAME(sc));
604 1.1 jmcneill return 0;
605 1.1 jmcneill }
606 1.1 jmcneill
607 1.1 jmcneill t->t_cmd = BWFM_TASK_KEY_SET;
608 1.1 jmcneill t->t_key.key = wk;
609 1.1 jmcneill memcpy(t->t_key.mac, mac, sizeof(t->t_key.mac));
610 1.1 jmcneill workqueue_enqueue(sc->sc_taskq, (struct work *)t, NULL);
611 1.1 jmcneill return 1;
612 1.1 jmcneill }
613 1.1 jmcneill
614 1.1 jmcneill static void
615 1.1 jmcneill bwfm_key_set_cb(struct bwfm_softc *sc, struct bwfm_cmd_key *ck)
616 1.1 jmcneill {
617 1.1 jmcneill const struct ieee80211_key *wk = ck->key;
618 1.1 jmcneill const uint8_t *mac = ck->mac;
619 1.1 jmcneill struct bwfm_wsec_key wsec_key;
620 1.1 jmcneill uint32_t wsec_enable, wsec;
621 1.1 jmcneill bool ext_key;
622 1.1 jmcneill
623 1.1 jmcneill #ifdef BWFM_DEBUG
624 1.1 jmcneill printf("key_set: key cipher %s len %d: ", wk->wk_cipher->ic_name, wk->wk_keylen);
625 1.1 jmcneill for (int j = 0; j < sizeof(wk->wk_key); j++)
626 1.1 jmcneill printf("%02x", wk->wk_key[j]);
627 1.1 jmcneill #endif
628 1.1 jmcneill
629 1.1 jmcneill if ((wk->wk_flags & IEEE80211_KEY_GROUP) == 0 &&
630 1.1 jmcneill wk->wk_cipher->ic_cipher != IEEE80211_CIPHER_WEP) {
631 1.1 jmcneill ext_key = true;
632 1.1 jmcneill } else {
633 1.1 jmcneill ext_key = false;
634 1.1 jmcneill }
635 1.1 jmcneill
636 1.1 jmcneill #ifdef BWFM_DEBUG
637 1.1 jmcneill printf(", ext_key = %d", ext_key);
638 1.1 jmcneill printf(", mac = %02x:%02x:%02x:%02x:%02x:%02x",
639 1.1 jmcneill mac[0], mac[1], mac[2], mac[3], mac[4], mac[5]);
640 1.1 jmcneill printf("\n");
641 1.1 jmcneill #endif
642 1.1 jmcneill
643 1.1 jmcneill memset(&wsec_key, 0, sizeof(wsec_key));
644 1.1 jmcneill if (ext_key && !IEEE80211_IS_MULTICAST(mac))
645 1.1 jmcneill memcpy(wsec_key.ea, mac, sizeof(wsec_key.ea));
646 1.1 jmcneill wsec_key.index = htole32(wk->wk_keyix);
647 1.1 jmcneill wsec_key.len = htole32(wk->wk_keylen);
648 1.1 jmcneill memcpy(wsec_key.data, wk->wk_key, sizeof(wsec_key.data));
649 1.1 jmcneill if (!ext_key)
650 1.18 mlelstv wsec_key.flags = htole32(BWFM_WSEC_PRIMARY_KEY);
651 1.1 jmcneill
652 1.1 jmcneill switch (wk->wk_cipher->ic_cipher) {
653 1.1 jmcneill case IEEE80211_CIPHER_WEP:
654 1.1 jmcneill if (wk->wk_keylen == 5)
655 1.1 jmcneill wsec_key.algo = htole32(BWFM_CRYPTO_ALGO_WEP1);
656 1.1 jmcneill else if (wk->wk_keylen == 13)
657 1.1 jmcneill wsec_key.algo = htole32(BWFM_CRYPTO_ALGO_WEP128);
658 1.1 jmcneill else
659 1.1 jmcneill return;
660 1.1 jmcneill wsec_enable = BWFM_WSEC_WEP;
661 1.1 jmcneill break;
662 1.1 jmcneill case IEEE80211_CIPHER_TKIP:
663 1.1 jmcneill wsec_key.algo = htole32(BWFM_CRYPTO_ALGO_TKIP);
664 1.1 jmcneill wsec_enable = BWFM_WSEC_TKIP;
665 1.1 jmcneill break;
666 1.1 jmcneill case IEEE80211_CIPHER_AES_CCM:
667 1.1 jmcneill wsec_key.algo = htole32(BWFM_CRYPTO_ALGO_AES_CCM);
668 1.1 jmcneill wsec_enable = BWFM_WSEC_AES;
669 1.1 jmcneill break;
670 1.1 jmcneill default:
671 1.1 jmcneill printf("%s: %s: cipher %s not supported\n", DEVNAME(sc),
672 1.1 jmcneill __func__, wk->wk_cipher->ic_name);
673 1.1 jmcneill return;
674 1.1 jmcneill }
675 1.1 jmcneill
676 1.1 jmcneill if (bwfm_fwvar_var_set_data(sc, "wsec_key", &wsec_key, sizeof(wsec_key)))
677 1.1 jmcneill return;
678 1.1 jmcneill
679 1.1 jmcneill bwfm_fwvar_var_set_int(sc, "wpa_auth", BWFM_WPA_AUTH_WPA2_PSK);
680 1.1 jmcneill
681 1.1 jmcneill bwfm_fwvar_var_get_int(sc, "wsec", &wsec);
682 1.1 jmcneill wsec |= wsec_enable;
683 1.1 jmcneill bwfm_fwvar_var_set_int(sc, "wsec", wsec);
684 1.1 jmcneill }
685 1.1 jmcneill
686 1.1 jmcneill int
687 1.1 jmcneill bwfm_key_delete(struct ieee80211com *ic, const struct ieee80211_key *wk)
688 1.1 jmcneill {
689 1.1 jmcneill struct bwfm_softc *sc = ic->ic_ifp->if_softc;
690 1.1 jmcneill struct bwfm_task *t;
691 1.1 jmcneill
692 1.1 jmcneill t = pcq_get(sc->sc_freetask);
693 1.1 jmcneill if (t == NULL) {
694 1.1 jmcneill printf("%s: no free tasks\n", DEVNAME(sc));
695 1.1 jmcneill return 0;
696 1.1 jmcneill }
697 1.1 jmcneill
698 1.1 jmcneill t->t_cmd = BWFM_TASK_KEY_DELETE;
699 1.1 jmcneill t->t_key.key = wk;
700 1.1 jmcneill memset(t->t_key.mac, 0, sizeof(t->t_key.mac));
701 1.1 jmcneill workqueue_enqueue(sc->sc_taskq, (struct work *)t, NULL);
702 1.1 jmcneill
703 1.1 jmcneill return 1;
704 1.1 jmcneill }
705 1.1 jmcneill
706 1.1 jmcneill static void
707 1.1 jmcneill bwfm_key_delete_cb(struct bwfm_softc *sc, struct bwfm_cmd_key *ck)
708 1.1 jmcneill {
709 1.1 jmcneill const struct ieee80211_key *wk = ck->key;
710 1.1 jmcneill struct bwfm_wsec_key wsec_key;
711 1.1 jmcneill
712 1.1 jmcneill memset(&wsec_key, 0, sizeof(wsec_key));
713 1.1 jmcneill wsec_key.index = htole32(wk->wk_keyix);
714 1.18 mlelstv wsec_key.flags = htole32(BWFM_WSEC_PRIMARY_KEY);
715 1.1 jmcneill
716 1.1 jmcneill if (bwfm_fwvar_var_set_data(sc, "wsec_key", &wsec_key, sizeof(wsec_key)))
717 1.1 jmcneill return;
718 1.1 jmcneill }
719 1.1 jmcneill
720 1.1 jmcneill int
721 1.1 jmcneill bwfm_newstate(struct ieee80211com *ic, enum ieee80211_state nstate, int arg)
722 1.1 jmcneill {
723 1.1 jmcneill struct bwfm_softc *sc = ic->ic_ifp->if_softc;
724 1.1 jmcneill struct bwfm_task *t;
725 1.1 jmcneill
726 1.1 jmcneill t = pcq_get(sc->sc_freetask);
727 1.1 jmcneill if (t == NULL) {
728 1.1 jmcneill printf("%s: no free tasks\n", DEVNAME(sc));
729 1.1 jmcneill return EIO;
730 1.1 jmcneill }
731 1.1 jmcneill
732 1.1 jmcneill t->t_cmd = BWFM_TASK_NEWSTATE;
733 1.1 jmcneill t->t_newstate.state = nstate;
734 1.1 jmcneill t->t_newstate.arg = arg;
735 1.1 jmcneill workqueue_enqueue(sc->sc_taskq, (struct work *)t, NULL);
736 1.1 jmcneill
737 1.1 jmcneill return 0;
738 1.1 jmcneill }
739 1.1 jmcneill
740 1.1 jmcneill void
741 1.1 jmcneill bwfm_newstate_cb(struct bwfm_softc *sc, struct bwfm_cmd_newstate *cmd)
742 1.1 jmcneill {
743 1.1 jmcneill struct ieee80211com *ic = &sc->sc_ic;
744 1.1 jmcneill enum ieee80211_state ostate = ic->ic_state;
745 1.1 jmcneill enum ieee80211_state nstate = cmd->state;
746 1.1 jmcneill int s;
747 1.1 jmcneill
748 1.1 jmcneill DPRINTF(("%s: newstate %d -> %d\n", DEVNAME(sc), ostate, nstate));
749 1.1 jmcneill
750 1.1 jmcneill s = splnet();
751 1.1 jmcneill
752 1.1 jmcneill switch (nstate) {
753 1.1 jmcneill case IEEE80211_S_INIT:
754 1.1 jmcneill break;
755 1.1 jmcneill
756 1.1 jmcneill case IEEE80211_S_SCAN:
757 1.1 jmcneill if (ostate != IEEE80211_S_SCAN) {
758 1.1 jmcneill /* Start of scanning */
759 1.1 jmcneill bwfm_scan(sc);
760 1.1 jmcneill }
761 1.1 jmcneill break;
762 1.1 jmcneill
763 1.1 jmcneill case IEEE80211_S_AUTH:
764 1.1 jmcneill bwfm_connect(sc);
765 1.1 jmcneill break;
766 1.1 jmcneill
767 1.1 jmcneill case IEEE80211_S_ASSOC:
768 1.1 jmcneill break;
769 1.1 jmcneill
770 1.1 jmcneill case IEEE80211_S_RUN:
771 1.1 jmcneill break;
772 1.1 jmcneill }
773 1.1 jmcneill
774 1.1 jmcneill sc->sc_newstate(ic, nstate, cmd->arg);
775 1.1 jmcneill
776 1.1 jmcneill splx(s);
777 1.1 jmcneill }
778 1.1 jmcneill
779 1.1 jmcneill void
780 1.4 jmcneill bwfm_newassoc(struct ieee80211_node *ni, int isnew)
781 1.4 jmcneill {
782 1.4 jmcneill /* Firmware handles rate adaptation for us */
783 1.4 jmcneill ni->ni_txrate = 0;
784 1.4 jmcneill }
785 1.4 jmcneill
786 1.4 jmcneill void
787 1.1 jmcneill bwfm_task(struct work *wk, void *arg)
788 1.1 jmcneill {
789 1.1 jmcneill struct bwfm_task *t = (struct bwfm_task *)wk;
790 1.1 jmcneill struct bwfm_softc *sc = t->t_sc;
791 1.1 jmcneill
792 1.1 jmcneill switch (t->t_cmd) {
793 1.1 jmcneill case BWFM_TASK_NEWSTATE:
794 1.1 jmcneill bwfm_newstate_cb(sc, &t->t_newstate);
795 1.1 jmcneill break;
796 1.1 jmcneill case BWFM_TASK_KEY_SET:
797 1.1 jmcneill bwfm_key_set_cb(sc, &t->t_key);
798 1.1 jmcneill break;
799 1.1 jmcneill case BWFM_TASK_KEY_DELETE:
800 1.1 jmcneill bwfm_key_delete_cb(sc, &t->t_key);
801 1.1 jmcneill break;
802 1.15 mlelstv case BWFM_TASK_RX_EVENT:
803 1.15 mlelstv bwfm_rx_event_cb(sc, t->t_mbuf);
804 1.15 mlelstv break;
805 1.1 jmcneill default:
806 1.1 jmcneill panic("bwfm: unknown task command %d", t->t_cmd);
807 1.1 jmcneill }
808 1.1 jmcneill
809 1.1 jmcneill pcq_put(sc->sc_freetask, t);
810 1.1 jmcneill }
811 1.1 jmcneill
812 1.1 jmcneill int
813 1.1 jmcneill bwfm_media_change(struct ifnet *ifp)
814 1.1 jmcneill {
815 1.1 jmcneill return 0;
816 1.1 jmcneill }
817 1.1 jmcneill
818 1.1 jmcneill /* Chip initialization (SDIO, PCIe) */
819 1.1 jmcneill int
820 1.1 jmcneill bwfm_chip_attach(struct bwfm_softc *sc)
821 1.1 jmcneill {
822 1.1 jmcneill struct bwfm_core *core;
823 1.1 jmcneill int need_socram = 0;
824 1.1 jmcneill int has_socram = 0;
825 1.1 jmcneill int cpu_found = 0;
826 1.1 jmcneill uint32_t val;
827 1.1 jmcneill
828 1.1 jmcneill LIST_INIT(&sc->sc_chip.ch_list);
829 1.1 jmcneill
830 1.1 jmcneill if (sc->sc_buscore_ops->bc_prepare(sc) != 0) {
831 1.1 jmcneill printf("%s: failed buscore prepare\n", DEVNAME(sc));
832 1.1 jmcneill return 1;
833 1.1 jmcneill }
834 1.1 jmcneill
835 1.1 jmcneill val = sc->sc_buscore_ops->bc_read(sc,
836 1.1 jmcneill BWFM_CHIP_BASE + BWFM_CHIP_REG_CHIPID);
837 1.1 jmcneill sc->sc_chip.ch_chip = BWFM_CHIP_CHIPID_ID(val);
838 1.1 jmcneill sc->sc_chip.ch_chiprev = BWFM_CHIP_CHIPID_REV(val);
839 1.1 jmcneill
840 1.1 jmcneill if ((sc->sc_chip.ch_chip > 0xa000) || (sc->sc_chip.ch_chip < 0x4000))
841 1.1 jmcneill snprintf(sc->sc_chip.ch_name, sizeof(sc->sc_chip.ch_name),
842 1.1 jmcneill "%d", sc->sc_chip.ch_chip);
843 1.1 jmcneill else
844 1.1 jmcneill snprintf(sc->sc_chip.ch_name, sizeof(sc->sc_chip.ch_name),
845 1.1 jmcneill "%x", sc->sc_chip.ch_chip);
846 1.1 jmcneill
847 1.1 jmcneill switch (BWFM_CHIP_CHIPID_TYPE(val))
848 1.1 jmcneill {
849 1.1 jmcneill case BWFM_CHIP_CHIPID_TYPE_SOCI_SB:
850 1.1 jmcneill printf("%s: SoC interconnect SB not implemented\n",
851 1.1 jmcneill DEVNAME(sc));
852 1.1 jmcneill return 1;
853 1.1 jmcneill case BWFM_CHIP_CHIPID_TYPE_SOCI_AI:
854 1.1 jmcneill sc->sc_chip.ch_core_isup = bwfm_chip_ai_isup;
855 1.1 jmcneill sc->sc_chip.ch_core_disable = bwfm_chip_ai_disable;
856 1.1 jmcneill sc->sc_chip.ch_core_reset = bwfm_chip_ai_reset;
857 1.1 jmcneill bwfm_chip_dmp_erom_scan(sc);
858 1.1 jmcneill break;
859 1.1 jmcneill default:
860 1.1 jmcneill printf("%s: SoC interconnect %d unknown\n",
861 1.1 jmcneill DEVNAME(sc), BWFM_CHIP_CHIPID_TYPE(val));
862 1.1 jmcneill return 1;
863 1.1 jmcneill }
864 1.1 jmcneill
865 1.1 jmcneill LIST_FOREACH(core, &sc->sc_chip.ch_list, co_link) {
866 1.1 jmcneill DPRINTF(("%s: 0x%x:%-2d base 0x%08x wrap 0x%08x\n",
867 1.1 jmcneill DEVNAME(sc), core->co_id, core->co_rev,
868 1.1 jmcneill core->co_base, core->co_wrapbase));
869 1.1 jmcneill
870 1.1 jmcneill switch (core->co_id) {
871 1.1 jmcneill case BWFM_AGENT_CORE_ARM_CM3:
872 1.1 jmcneill need_socram = true;
873 1.1 jmcneill /* FALLTHROUGH */
874 1.1 jmcneill case BWFM_AGENT_CORE_ARM_CR4:
875 1.1 jmcneill case BWFM_AGENT_CORE_ARM_CA7:
876 1.1 jmcneill cpu_found = true;
877 1.1 jmcneill break;
878 1.1 jmcneill case BWFM_AGENT_INTERNAL_MEM:
879 1.1 jmcneill has_socram = true;
880 1.1 jmcneill break;
881 1.1 jmcneill default:
882 1.1 jmcneill break;
883 1.1 jmcneill }
884 1.1 jmcneill }
885 1.1 jmcneill
886 1.1 jmcneill if (!cpu_found) {
887 1.1 jmcneill printf("%s: CPU core not detected\n", DEVNAME(sc));
888 1.1 jmcneill return 1;
889 1.1 jmcneill }
890 1.1 jmcneill if (need_socram && !has_socram) {
891 1.1 jmcneill printf("%s: RAM core not provided\n", DEVNAME(sc));
892 1.1 jmcneill return 1;
893 1.1 jmcneill }
894 1.1 jmcneill
895 1.11 maya bwfm_chip_set_passive(sc);
896 1.1 jmcneill
897 1.1 jmcneill if (sc->sc_buscore_ops->bc_reset) {
898 1.1 jmcneill sc->sc_buscore_ops->bc_reset(sc);
899 1.11 maya bwfm_chip_set_passive(sc);
900 1.1 jmcneill }
901 1.1 jmcneill
902 1.11 maya if ((core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CR4)) != NULL) {
903 1.11 maya bwfm_chip_tcm_ramsize(sc, core);
904 1.11 maya bwfm_chip_tcm_rambase(sc);
905 1.11 maya } else if ((core = bwfm_chip_get_core(sc, BWFM_AGENT_SYS_MEM)) != NULL) {
906 1.11 maya bwfm_chip_sysmem_ramsize(sc, core);
907 1.11 maya bwfm_chip_tcm_rambase(sc);
908 1.11 maya } else if ((core = bwfm_chip_get_core(sc, BWFM_AGENT_INTERNAL_MEM)) != NULL) {
909 1.11 maya bwfm_chip_socram_ramsize(sc, core);
910 1.11 maya }
911 1.1 jmcneill
912 1.1 jmcneill core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_CHIPCOMMON);
913 1.1 jmcneill sc->sc_chip.ch_cc_caps = sc->sc_buscore_ops->bc_read(sc,
914 1.1 jmcneill core->co_base + BWFM_CHIP_REG_CAPABILITIES);
915 1.1 jmcneill sc->sc_chip.ch_cc_caps_ext = sc->sc_buscore_ops->bc_read(sc,
916 1.1 jmcneill core->co_base + BWFM_CHIP_REG_CAPABILITIES_EXT);
917 1.1 jmcneill
918 1.1 jmcneill core = bwfm_chip_get_pmu(sc);
919 1.1 jmcneill if (sc->sc_chip.ch_cc_caps & BWFM_CHIP_REG_CAPABILITIES_PMU) {
920 1.1 jmcneill sc->sc_chip.ch_pmucaps = sc->sc_buscore_ops->bc_read(sc,
921 1.1 jmcneill core->co_base + BWFM_CHIP_REG_PMUCAPABILITIES);
922 1.1 jmcneill sc->sc_chip.ch_pmurev = sc->sc_chip.ch_pmucaps &
923 1.1 jmcneill BWFM_CHIP_REG_PMUCAPABILITIES_REV_MASK;
924 1.1 jmcneill }
925 1.1 jmcneill
926 1.1 jmcneill if (sc->sc_buscore_ops->bc_setup)
927 1.1 jmcneill sc->sc_buscore_ops->bc_setup(sc);
928 1.1 jmcneill
929 1.1 jmcneill return 0;
930 1.1 jmcneill }
931 1.1 jmcneill
932 1.1 jmcneill struct bwfm_core *
933 1.1 jmcneill bwfm_chip_get_core(struct bwfm_softc *sc, int id)
934 1.1 jmcneill {
935 1.1 jmcneill struct bwfm_core *core;
936 1.1 jmcneill
937 1.1 jmcneill LIST_FOREACH(core, &sc->sc_chip.ch_list, co_link) {
938 1.1 jmcneill if (core->co_id == id)
939 1.1 jmcneill return core;
940 1.1 jmcneill }
941 1.1 jmcneill
942 1.1 jmcneill return NULL;
943 1.1 jmcneill }
944 1.1 jmcneill
945 1.1 jmcneill struct bwfm_core *
946 1.1 jmcneill bwfm_chip_get_pmu(struct bwfm_softc *sc)
947 1.1 jmcneill {
948 1.1 jmcneill struct bwfm_core *cc, *pmu;
949 1.1 jmcneill
950 1.1 jmcneill cc = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_CHIPCOMMON);
951 1.1 jmcneill if (cc->co_rev >= 35 && sc->sc_chip.ch_cc_caps_ext &
952 1.1 jmcneill BWFM_CHIP_REG_CAPABILITIES_EXT_AOB_PRESENT) {
953 1.1 jmcneill pmu = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_PMU);
954 1.1 jmcneill if (pmu)
955 1.1 jmcneill return pmu;
956 1.1 jmcneill }
957 1.1 jmcneill
958 1.1 jmcneill return cc;
959 1.1 jmcneill }
960 1.1 jmcneill
961 1.1 jmcneill /* Functions for the AI interconnect */
962 1.1 jmcneill int
963 1.1 jmcneill bwfm_chip_ai_isup(struct bwfm_softc *sc, struct bwfm_core *core)
964 1.1 jmcneill {
965 1.1 jmcneill uint32_t ioctl, reset;
966 1.1 jmcneill
967 1.1 jmcneill ioctl = sc->sc_buscore_ops->bc_read(sc,
968 1.1 jmcneill core->co_wrapbase + BWFM_AGENT_IOCTL);
969 1.1 jmcneill reset = sc->sc_buscore_ops->bc_read(sc,
970 1.1 jmcneill core->co_wrapbase + BWFM_AGENT_RESET_CTL);
971 1.1 jmcneill
972 1.1 jmcneill if (((ioctl & (BWFM_AGENT_IOCTL_FGC | BWFM_AGENT_IOCTL_CLK)) ==
973 1.1 jmcneill BWFM_AGENT_IOCTL_CLK) &&
974 1.1 jmcneill ((reset & BWFM_AGENT_RESET_CTL_RESET) == 0))
975 1.1 jmcneill return 1;
976 1.1 jmcneill
977 1.1 jmcneill return 0;
978 1.1 jmcneill }
979 1.1 jmcneill
980 1.1 jmcneill void
981 1.1 jmcneill bwfm_chip_ai_disable(struct bwfm_softc *sc, struct bwfm_core *core,
982 1.1 jmcneill uint32_t prereset, uint32_t reset)
983 1.1 jmcneill {
984 1.1 jmcneill uint32_t val;
985 1.1 jmcneill int i;
986 1.1 jmcneill
987 1.1 jmcneill val = sc->sc_buscore_ops->bc_read(sc,
988 1.1 jmcneill core->co_wrapbase + BWFM_AGENT_RESET_CTL);
989 1.1 jmcneill if ((val & BWFM_AGENT_RESET_CTL_RESET) == 0) {
990 1.1 jmcneill
991 1.1 jmcneill sc->sc_buscore_ops->bc_write(sc,
992 1.1 jmcneill core->co_wrapbase + BWFM_AGENT_IOCTL,
993 1.1 jmcneill prereset | BWFM_AGENT_IOCTL_FGC | BWFM_AGENT_IOCTL_CLK);
994 1.1 jmcneill sc->sc_buscore_ops->bc_read(sc,
995 1.1 jmcneill core->co_wrapbase + BWFM_AGENT_IOCTL);
996 1.1 jmcneill
997 1.1 jmcneill sc->sc_buscore_ops->bc_write(sc,
998 1.1 jmcneill core->co_wrapbase + BWFM_AGENT_RESET_CTL,
999 1.1 jmcneill BWFM_AGENT_RESET_CTL_RESET);
1000 1.1 jmcneill delay(20);
1001 1.1 jmcneill
1002 1.1 jmcneill for (i = 300; i > 0; i--) {
1003 1.1 jmcneill if (sc->sc_buscore_ops->bc_read(sc,
1004 1.1 jmcneill core->co_wrapbase + BWFM_AGENT_RESET_CTL) ==
1005 1.1 jmcneill BWFM_AGENT_RESET_CTL_RESET)
1006 1.1 jmcneill break;
1007 1.1 jmcneill }
1008 1.1 jmcneill if (i == 0)
1009 1.1 jmcneill printf("%s: timeout on core reset\n", DEVNAME(sc));
1010 1.1 jmcneill }
1011 1.1 jmcneill
1012 1.1 jmcneill sc->sc_buscore_ops->bc_write(sc,
1013 1.1 jmcneill core->co_wrapbase + BWFM_AGENT_IOCTL,
1014 1.1 jmcneill reset | BWFM_AGENT_IOCTL_FGC | BWFM_AGENT_IOCTL_CLK);
1015 1.1 jmcneill sc->sc_buscore_ops->bc_read(sc,
1016 1.1 jmcneill core->co_wrapbase + BWFM_AGENT_IOCTL);
1017 1.1 jmcneill }
1018 1.1 jmcneill
1019 1.1 jmcneill void
1020 1.1 jmcneill bwfm_chip_ai_reset(struct bwfm_softc *sc, struct bwfm_core *core,
1021 1.1 jmcneill uint32_t prereset, uint32_t reset, uint32_t postreset)
1022 1.1 jmcneill {
1023 1.1 jmcneill int i;
1024 1.1 jmcneill
1025 1.1 jmcneill bwfm_chip_ai_disable(sc, core, prereset, reset);
1026 1.1 jmcneill
1027 1.1 jmcneill for (i = 50; i > 0; i--) {
1028 1.1 jmcneill if ((sc->sc_buscore_ops->bc_read(sc,
1029 1.1 jmcneill core->co_wrapbase + BWFM_AGENT_RESET_CTL) &
1030 1.1 jmcneill BWFM_AGENT_RESET_CTL_RESET) == 0)
1031 1.1 jmcneill break;
1032 1.1 jmcneill sc->sc_buscore_ops->bc_write(sc,
1033 1.1 jmcneill core->co_wrapbase + BWFM_AGENT_RESET_CTL, 0);
1034 1.1 jmcneill delay(60);
1035 1.1 jmcneill }
1036 1.1 jmcneill if (i == 0)
1037 1.1 jmcneill printf("%s: timeout on core reset\n", DEVNAME(sc));
1038 1.1 jmcneill
1039 1.1 jmcneill sc->sc_buscore_ops->bc_write(sc,
1040 1.1 jmcneill core->co_wrapbase + BWFM_AGENT_IOCTL,
1041 1.1 jmcneill postreset | BWFM_AGENT_IOCTL_CLK);
1042 1.1 jmcneill sc->sc_buscore_ops->bc_read(sc,
1043 1.1 jmcneill core->co_wrapbase + BWFM_AGENT_IOCTL);
1044 1.1 jmcneill }
1045 1.1 jmcneill
1046 1.1 jmcneill void
1047 1.1 jmcneill bwfm_chip_dmp_erom_scan(struct bwfm_softc *sc)
1048 1.1 jmcneill {
1049 1.1 jmcneill uint32_t erom, val, base, wrap;
1050 1.1 jmcneill uint8_t type = 0;
1051 1.1 jmcneill uint16_t id;
1052 1.1 jmcneill uint8_t nmw, nsw, rev;
1053 1.1 jmcneill struct bwfm_core *core;
1054 1.1 jmcneill
1055 1.1 jmcneill erom = sc->sc_buscore_ops->bc_read(sc,
1056 1.1 jmcneill BWFM_CHIP_BASE + BWFM_CHIP_REG_EROMPTR);
1057 1.1 jmcneill while (type != BWFM_DMP_DESC_EOT) {
1058 1.1 jmcneill val = sc->sc_buscore_ops->bc_read(sc, erom);
1059 1.1 jmcneill type = val & BWFM_DMP_DESC_MASK;
1060 1.1 jmcneill erom += 4;
1061 1.1 jmcneill
1062 1.1 jmcneill if (type != BWFM_DMP_DESC_COMPONENT)
1063 1.1 jmcneill continue;
1064 1.1 jmcneill
1065 1.1 jmcneill id = (val & BWFM_DMP_COMP_PARTNUM)
1066 1.1 jmcneill >> BWFM_DMP_COMP_PARTNUM_S;
1067 1.1 jmcneill
1068 1.1 jmcneill val = sc->sc_buscore_ops->bc_read(sc, erom);
1069 1.1 jmcneill type = val & BWFM_DMP_DESC_MASK;
1070 1.1 jmcneill erom += 4;
1071 1.1 jmcneill
1072 1.1 jmcneill if (type != BWFM_DMP_DESC_COMPONENT) {
1073 1.1 jmcneill printf("%s: not component descriptor\n", DEVNAME(sc));
1074 1.1 jmcneill return;
1075 1.1 jmcneill }
1076 1.1 jmcneill
1077 1.1 jmcneill nmw = (val & BWFM_DMP_COMP_NUM_MWRAP)
1078 1.1 jmcneill >> BWFM_DMP_COMP_NUM_MWRAP_S;
1079 1.1 jmcneill nsw = (val & BWFM_DMP_COMP_NUM_SWRAP)
1080 1.1 jmcneill >> BWFM_DMP_COMP_NUM_SWRAP_S;
1081 1.1 jmcneill rev = (val & BWFM_DMP_COMP_REVISION)
1082 1.1 jmcneill >> BWFM_DMP_COMP_REVISION_S;
1083 1.1 jmcneill
1084 1.1 jmcneill if (nmw + nsw == 0 && id != BWFM_AGENT_CORE_PMU)
1085 1.1 jmcneill continue;
1086 1.1 jmcneill
1087 1.1 jmcneill if (bwfm_chip_dmp_get_regaddr(sc, &erom, &base, &wrap))
1088 1.1 jmcneill continue;
1089 1.1 jmcneill
1090 1.1 jmcneill core = kmem_alloc(sizeof(*core), KM_SLEEP);
1091 1.1 jmcneill core->co_id = id;
1092 1.1 jmcneill core->co_base = base;
1093 1.1 jmcneill core->co_wrapbase = wrap;
1094 1.1 jmcneill core->co_rev = rev;
1095 1.1 jmcneill LIST_INSERT_HEAD(&sc->sc_chip.ch_list, core, co_link);
1096 1.1 jmcneill }
1097 1.1 jmcneill }
1098 1.1 jmcneill
1099 1.1 jmcneill int
1100 1.1 jmcneill bwfm_chip_dmp_get_regaddr(struct bwfm_softc *sc, uint32_t *erom,
1101 1.1 jmcneill uint32_t *base, uint32_t *wrap)
1102 1.1 jmcneill {
1103 1.1 jmcneill uint8_t type = 0, mpnum __unused = 0;
1104 1.1 jmcneill uint8_t stype, sztype, wraptype;
1105 1.1 jmcneill uint32_t val;
1106 1.1 jmcneill
1107 1.1 jmcneill *base = 0;
1108 1.1 jmcneill *wrap = 0;
1109 1.1 jmcneill
1110 1.1 jmcneill val = sc->sc_buscore_ops->bc_read(sc, *erom);
1111 1.1 jmcneill type = val & BWFM_DMP_DESC_MASK;
1112 1.1 jmcneill if (type == BWFM_DMP_DESC_MASTER_PORT) {
1113 1.1 jmcneill mpnum = (val & BWFM_DMP_MASTER_PORT_NUM)
1114 1.1 jmcneill >> BWFM_DMP_MASTER_PORT_NUM_S;
1115 1.1 jmcneill wraptype = BWFM_DMP_SLAVE_TYPE_MWRAP;
1116 1.1 jmcneill *erom += 4;
1117 1.1 jmcneill } else if ((type & ~BWFM_DMP_DESC_ADDRSIZE_GT32) ==
1118 1.1 jmcneill BWFM_DMP_DESC_ADDRESS)
1119 1.1 jmcneill wraptype = BWFM_DMP_SLAVE_TYPE_SWRAP;
1120 1.1 jmcneill else
1121 1.1 jmcneill return 1;
1122 1.1 jmcneill
1123 1.1 jmcneill do {
1124 1.1 jmcneill do {
1125 1.1 jmcneill val = sc->sc_buscore_ops->bc_read(sc, *erom);
1126 1.1 jmcneill type = val & BWFM_DMP_DESC_MASK;
1127 1.1 jmcneill if (type == BWFM_DMP_DESC_COMPONENT)
1128 1.1 jmcneill return 0;
1129 1.1 jmcneill if (type == BWFM_DMP_DESC_EOT)
1130 1.1 jmcneill return 1;
1131 1.1 jmcneill *erom += 4;
1132 1.1 jmcneill } while ((type & ~BWFM_DMP_DESC_ADDRSIZE_GT32) !=
1133 1.1 jmcneill BWFM_DMP_DESC_ADDRESS);
1134 1.1 jmcneill
1135 1.1 jmcneill if (type & BWFM_DMP_DESC_ADDRSIZE_GT32)
1136 1.1 jmcneill *erom += 4;
1137 1.1 jmcneill
1138 1.1 jmcneill sztype = (val & BWFM_DMP_SLAVE_SIZE_TYPE)
1139 1.1 jmcneill >> BWFM_DMP_SLAVE_SIZE_TYPE_S;
1140 1.1 jmcneill if (sztype == BWFM_DMP_SLAVE_SIZE_DESC) {
1141 1.1 jmcneill val = sc->sc_buscore_ops->bc_read(sc, *erom);
1142 1.1 jmcneill type = val & BWFM_DMP_DESC_MASK;
1143 1.1 jmcneill if (type & BWFM_DMP_DESC_ADDRSIZE_GT32)
1144 1.1 jmcneill *erom += 8;
1145 1.1 jmcneill else
1146 1.1 jmcneill *erom += 4;
1147 1.1 jmcneill }
1148 1.1 jmcneill if (sztype != BWFM_DMP_SLAVE_SIZE_4K)
1149 1.1 jmcneill continue;
1150 1.1 jmcneill
1151 1.1 jmcneill stype = (val & BWFM_DMP_SLAVE_TYPE) >> BWFM_DMP_SLAVE_TYPE_S;
1152 1.1 jmcneill if (*base == 0 && stype == BWFM_DMP_SLAVE_TYPE_SLAVE)
1153 1.1 jmcneill *base = val & BWFM_DMP_SLAVE_ADDR_BASE;
1154 1.1 jmcneill if (*wrap == 0 && stype == wraptype)
1155 1.1 jmcneill *wrap = val & BWFM_DMP_SLAVE_ADDR_BASE;
1156 1.1 jmcneill } while (*base == 0 || *wrap == 0);
1157 1.1 jmcneill
1158 1.1 jmcneill return 0;
1159 1.1 jmcneill }
1160 1.1 jmcneill
1161 1.1 jmcneill /* Core configuration */
1162 1.11 maya int
1163 1.11 maya bwfm_chip_set_active(struct bwfm_softc *sc, const uint32_t rstvec)
1164 1.11 maya {
1165 1.11 maya if (bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CR4) != NULL)
1166 1.11 maya return bwfm_chip_cr4_set_active(sc, rstvec);
1167 1.11 maya if (bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CA7) != NULL)
1168 1.11 maya return bwfm_chip_ca7_set_active(sc, rstvec);
1169 1.11 maya if (bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CM3) != NULL)
1170 1.11 maya return bwfm_chip_cm3_set_active(sc);
1171 1.11 maya return 1;
1172 1.11 maya }
1173 1.11 maya
1174 1.11 maya void
1175 1.11 maya bwfm_chip_set_passive(struct bwfm_softc *sc)
1176 1.11 maya {
1177 1.11 maya if (bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CR4) != NULL) {
1178 1.11 maya bwfm_chip_cr4_set_passive(sc);
1179 1.11 maya return;
1180 1.11 maya }
1181 1.11 maya if (bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CA7) != NULL) {
1182 1.11 maya bwfm_chip_ca7_set_passive(sc);
1183 1.11 maya return;
1184 1.11 maya }
1185 1.11 maya if (bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CM3) != NULL) {
1186 1.11 maya bwfm_chip_cm3_set_passive(sc);
1187 1.11 maya return;
1188 1.11 maya }
1189 1.11 maya }
1190 1.11 maya
1191 1.11 maya int
1192 1.11 maya bwfm_chip_cr4_set_active(struct bwfm_softc *sc, const uint32_t rstvec)
1193 1.11 maya {
1194 1.11 maya struct bwfm_core *core;
1195 1.11 maya
1196 1.11 maya sc->sc_buscore_ops->bc_activate(sc, rstvec);
1197 1.11 maya core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CR4);
1198 1.11 maya sc->sc_chip.ch_core_reset(sc, core,
1199 1.11 maya BWFM_AGENT_IOCTL_ARMCR4_CPUHALT, 0, 0);
1200 1.11 maya
1201 1.11 maya return 0;
1202 1.11 maya }
1203 1.11 maya
1204 1.1 jmcneill void
1205 1.1 jmcneill bwfm_chip_cr4_set_passive(struct bwfm_softc *sc)
1206 1.1 jmcneill {
1207 1.11 maya struct bwfm_core *core;
1208 1.11 maya uint32_t val;
1209 1.11 maya
1210 1.11 maya core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CR4);
1211 1.11 maya val = sc->sc_buscore_ops->bc_read(sc,
1212 1.11 maya core->co_wrapbase + BWFM_AGENT_IOCTL);
1213 1.11 maya sc->sc_chip.ch_core_reset(sc, core,
1214 1.11 maya val & BWFM_AGENT_IOCTL_ARMCR4_CPUHALT,
1215 1.11 maya BWFM_AGENT_IOCTL_ARMCR4_CPUHALT,
1216 1.11 maya BWFM_AGENT_IOCTL_ARMCR4_CPUHALT);
1217 1.11 maya
1218 1.11 maya core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_80211);
1219 1.11 maya sc->sc_chip.ch_core_reset(sc, core, BWFM_AGENT_D11_IOCTL_PHYRESET |
1220 1.11 maya BWFM_AGENT_D11_IOCTL_PHYCLOCKEN, BWFM_AGENT_D11_IOCTL_PHYCLOCKEN,
1221 1.11 maya BWFM_AGENT_D11_IOCTL_PHYCLOCKEN);
1222 1.11 maya }
1223 1.11 maya
1224 1.11 maya int
1225 1.11 maya bwfm_chip_ca7_set_active(struct bwfm_softc *sc, const uint32_t rstvec)
1226 1.11 maya {
1227 1.11 maya struct bwfm_core *core;
1228 1.11 maya
1229 1.11 maya sc->sc_buscore_ops->bc_activate(sc, rstvec);
1230 1.11 maya core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CA7);
1231 1.11 maya sc->sc_chip.ch_core_reset(sc, core,
1232 1.11 maya BWFM_AGENT_IOCTL_ARMCR4_CPUHALT, 0, 0);
1233 1.11 maya
1234 1.11 maya return 0;
1235 1.1 jmcneill }
1236 1.1 jmcneill
1237 1.1 jmcneill void
1238 1.1 jmcneill bwfm_chip_ca7_set_passive(struct bwfm_softc *sc)
1239 1.1 jmcneill {
1240 1.11 maya struct bwfm_core *core;
1241 1.11 maya uint32_t val;
1242 1.11 maya
1243 1.11 maya core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CA7);
1244 1.11 maya val = sc->sc_buscore_ops->bc_read(sc,
1245 1.11 maya core->co_wrapbase + BWFM_AGENT_IOCTL);
1246 1.11 maya sc->sc_chip.ch_core_reset(sc, core,
1247 1.11 maya val & BWFM_AGENT_IOCTL_ARMCR4_CPUHALT,
1248 1.11 maya BWFM_AGENT_IOCTL_ARMCR4_CPUHALT,
1249 1.11 maya BWFM_AGENT_IOCTL_ARMCR4_CPUHALT);
1250 1.11 maya
1251 1.11 maya core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_80211);
1252 1.11 maya sc->sc_chip.ch_core_reset(sc, core, BWFM_AGENT_D11_IOCTL_PHYRESET |
1253 1.11 maya BWFM_AGENT_D11_IOCTL_PHYCLOCKEN, BWFM_AGENT_D11_IOCTL_PHYCLOCKEN,
1254 1.11 maya BWFM_AGENT_D11_IOCTL_PHYCLOCKEN);
1255 1.11 maya }
1256 1.11 maya
1257 1.11 maya int
1258 1.11 maya bwfm_chip_cm3_set_active(struct bwfm_softc *sc)
1259 1.11 maya {
1260 1.11 maya struct bwfm_core *core;
1261 1.11 maya
1262 1.11 maya core = bwfm_chip_get_core(sc, BWFM_AGENT_INTERNAL_MEM);
1263 1.11 maya if (!sc->sc_chip.ch_core_isup(sc, core))
1264 1.11 maya return 1;
1265 1.11 maya
1266 1.11 maya sc->sc_buscore_ops->bc_activate(sc, 0);
1267 1.11 maya
1268 1.11 maya core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CM3);
1269 1.11 maya sc->sc_chip.ch_core_reset(sc, core, 0, 0, 0);
1270 1.11 maya
1271 1.11 maya return 0;
1272 1.1 jmcneill }
1273 1.1 jmcneill
1274 1.1 jmcneill void
1275 1.1 jmcneill bwfm_chip_cm3_set_passive(struct bwfm_softc *sc)
1276 1.1 jmcneill {
1277 1.1 jmcneill struct bwfm_core *core;
1278 1.1 jmcneill
1279 1.1 jmcneill core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CM3);
1280 1.1 jmcneill sc->sc_chip.ch_core_disable(sc, core, 0, 0);
1281 1.1 jmcneill core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_80211);
1282 1.1 jmcneill sc->sc_chip.ch_core_reset(sc, core, BWFM_AGENT_D11_IOCTL_PHYRESET |
1283 1.1 jmcneill BWFM_AGENT_D11_IOCTL_PHYCLOCKEN, BWFM_AGENT_D11_IOCTL_PHYCLOCKEN,
1284 1.1 jmcneill BWFM_AGENT_D11_IOCTL_PHYCLOCKEN);
1285 1.1 jmcneill core = bwfm_chip_get_core(sc, BWFM_AGENT_INTERNAL_MEM);
1286 1.1 jmcneill sc->sc_chip.ch_core_reset(sc, core, 0, 0, 0);
1287 1.1 jmcneill
1288 1.1 jmcneill if (sc->sc_chip.ch_chip == BRCM_CC_43430_CHIP_ID) {
1289 1.1 jmcneill sc->sc_buscore_ops->bc_write(sc,
1290 1.1 jmcneill core->co_base + BWFM_SOCRAM_BANKIDX, 3);
1291 1.1 jmcneill sc->sc_buscore_ops->bc_write(sc,
1292 1.1 jmcneill core->co_base + BWFM_SOCRAM_BANKPDA, 0);
1293 1.1 jmcneill }
1294 1.1 jmcneill }
1295 1.1 jmcneill
1296 1.15 mlelstv int
1297 1.15 mlelstv bwfm_chip_sr_capable(struct bwfm_softc *sc)
1298 1.15 mlelstv {
1299 1.15 mlelstv struct bwfm_core *core;
1300 1.15 mlelstv uint32_t reg;
1301 1.15 mlelstv
1302 1.15 mlelstv if (sc->sc_chip.ch_pmurev < 17)
1303 1.15 mlelstv return 0;
1304 1.15 mlelstv
1305 1.15 mlelstv switch (sc->sc_chip.ch_chip) {
1306 1.15 mlelstv case BRCM_CC_4345_CHIP_ID:
1307 1.15 mlelstv case BRCM_CC_4354_CHIP_ID:
1308 1.15 mlelstv case BRCM_CC_4356_CHIP_ID:
1309 1.15 mlelstv core = bwfm_chip_get_pmu(sc);
1310 1.15 mlelstv sc->sc_buscore_ops->bc_write(sc, core->co_base +
1311 1.15 mlelstv BWFM_CHIP_REG_CHIPCONTROL_ADDR, 3);
1312 1.15 mlelstv reg = sc->sc_buscore_ops->bc_read(sc, core->co_base +
1313 1.15 mlelstv BWFM_CHIP_REG_CHIPCONTROL_DATA);
1314 1.15 mlelstv return (reg & (1 << 2)) != 0;
1315 1.15 mlelstv case BRCM_CC_43241_CHIP_ID:
1316 1.15 mlelstv case BRCM_CC_4335_CHIP_ID:
1317 1.15 mlelstv case BRCM_CC_4339_CHIP_ID:
1318 1.15 mlelstv core = bwfm_chip_get_pmu(sc);
1319 1.15 mlelstv sc->sc_buscore_ops->bc_write(sc, core->co_base +
1320 1.15 mlelstv BWFM_CHIP_REG_CHIPCONTROL_ADDR, 3);
1321 1.15 mlelstv reg = sc->sc_buscore_ops->bc_read(sc, core->co_base +
1322 1.15 mlelstv BWFM_CHIP_REG_CHIPCONTROL_DATA);
1323 1.15 mlelstv return reg != 0;
1324 1.15 mlelstv case BRCM_CC_43430_CHIP_ID:
1325 1.15 mlelstv core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_CHIPCOMMON);
1326 1.15 mlelstv reg = sc->sc_buscore_ops->bc_read(sc, core->co_base +
1327 1.15 mlelstv BWFM_CHIP_REG_SR_CONTROL1);
1328 1.15 mlelstv return reg != 0;
1329 1.15 mlelstv default:
1330 1.15 mlelstv core = bwfm_chip_get_pmu(sc);
1331 1.15 mlelstv reg = sc->sc_buscore_ops->bc_read(sc, core->co_base +
1332 1.15 mlelstv BWFM_CHIP_REG_PMUCAPABILITIES_EXT);
1333 1.15 mlelstv if ((reg & BWFM_CHIP_REG_PMUCAPABILITIES_SR_SUPP) == 0)
1334 1.15 mlelstv return 0;
1335 1.15 mlelstv reg = sc->sc_buscore_ops->bc_read(sc, core->co_base +
1336 1.15 mlelstv BWFM_CHIP_REG_RETENTION_CTL);
1337 1.15 mlelstv return (reg & (BWFM_CHIP_REG_RETENTION_CTL_MACPHY_DIS |
1338 1.15 mlelstv BWFM_CHIP_REG_RETENTION_CTL_LOGIC_DIS)) == 0;
1339 1.15 mlelstv }
1340 1.15 mlelstv }
1341 1.15 mlelstv
1342 1.11 maya /* RAM size helpers */
1343 1.11 maya void
1344 1.11 maya bwfm_chip_socram_ramsize(struct bwfm_softc *sc, struct bwfm_core *core)
1345 1.11 maya {
1346 1.11 maya uint32_t coreinfo, nb, lss, banksize, bankinfo;
1347 1.11 maya uint32_t ramsize = 0, srsize = 0;
1348 1.11 maya int i;
1349 1.11 maya
1350 1.11 maya if (!sc->sc_chip.ch_core_isup(sc, core))
1351 1.11 maya sc->sc_chip.ch_core_reset(sc, core, 0, 0, 0);
1352 1.11 maya
1353 1.11 maya coreinfo = sc->sc_buscore_ops->bc_read(sc,
1354 1.11 maya core->co_base + BWFM_SOCRAM_COREINFO);
1355 1.11 maya nb = (coreinfo & BWFM_SOCRAM_COREINFO_SRNB_MASK)
1356 1.11 maya >> BWFM_SOCRAM_COREINFO_SRNB_SHIFT;
1357 1.11 maya
1358 1.11 maya if (core->co_rev <= 7 || core->co_rev == 12) {
1359 1.11 maya banksize = coreinfo & BWFM_SOCRAM_COREINFO_SRBSZ_MASK;
1360 1.11 maya lss = (coreinfo & BWFM_SOCRAM_COREINFO_LSS_MASK)
1361 1.11 maya >> BWFM_SOCRAM_COREINFO_LSS_SHIFT;
1362 1.11 maya if (lss != 0)
1363 1.11 maya nb--;
1364 1.11 maya ramsize = nb * (1 << (banksize + BWFM_SOCRAM_COREINFO_SRBSZ_BASE));
1365 1.11 maya if (lss != 0)
1366 1.11 maya ramsize += (1 << ((lss - 1) + BWFM_SOCRAM_COREINFO_SRBSZ_BASE));
1367 1.11 maya } else {
1368 1.11 maya for (i = 0; i < nb; i++) {
1369 1.11 maya sc->sc_buscore_ops->bc_write(sc,
1370 1.11 maya core->co_base + BWFM_SOCRAM_BANKIDX,
1371 1.11 maya (BWFM_SOCRAM_BANKIDX_MEMTYPE_RAM <<
1372 1.11 maya BWFM_SOCRAM_BANKIDX_MEMTYPE_SHIFT) | i);
1373 1.11 maya bankinfo = sc->sc_buscore_ops->bc_read(sc,
1374 1.11 maya core->co_base + BWFM_SOCRAM_BANKINFO);
1375 1.11 maya banksize = ((bankinfo & BWFM_SOCRAM_BANKINFO_SZMASK) + 1)
1376 1.11 maya * BWFM_SOCRAM_BANKINFO_SZBASE;
1377 1.11 maya ramsize += banksize;
1378 1.11 maya if (bankinfo & BWFM_SOCRAM_BANKINFO_RETNTRAM_MASK)
1379 1.11 maya srsize += banksize;
1380 1.11 maya }
1381 1.11 maya }
1382 1.11 maya
1383 1.11 maya switch (sc->sc_chip.ch_chip) {
1384 1.11 maya case BRCM_CC_4334_CHIP_ID:
1385 1.11 maya if (sc->sc_chip.ch_chiprev < 2)
1386 1.11 maya srsize = 32 * 1024;
1387 1.11 maya break;
1388 1.11 maya case BRCM_CC_43430_CHIP_ID:
1389 1.11 maya srsize = 64 * 1024;
1390 1.11 maya break;
1391 1.11 maya default:
1392 1.11 maya break;
1393 1.11 maya }
1394 1.11 maya
1395 1.11 maya sc->sc_chip.ch_ramsize = ramsize;
1396 1.11 maya sc->sc_chip.ch_srsize = srsize;
1397 1.11 maya }
1398 1.11 maya
1399 1.11 maya void
1400 1.11 maya bwfm_chip_sysmem_ramsize(struct bwfm_softc *sc, struct bwfm_core *core)
1401 1.11 maya {
1402 1.11 maya uint32_t coreinfo, nb, banksize, bankinfo;
1403 1.11 maya uint32_t ramsize = 0;
1404 1.11 maya int i;
1405 1.11 maya
1406 1.11 maya if (!sc->sc_chip.ch_core_isup(sc, core))
1407 1.11 maya sc->sc_chip.ch_core_reset(sc, core, 0, 0, 0);
1408 1.11 maya
1409 1.11 maya coreinfo = sc->sc_buscore_ops->bc_read(sc,
1410 1.11 maya core->co_base + BWFM_SOCRAM_COREINFO);
1411 1.11 maya nb = (coreinfo & BWFM_SOCRAM_COREINFO_SRNB_MASK)
1412 1.11 maya >> BWFM_SOCRAM_COREINFO_SRNB_SHIFT;
1413 1.11 maya
1414 1.11 maya for (i = 0; i < nb; i++) {
1415 1.11 maya sc->sc_buscore_ops->bc_write(sc,
1416 1.11 maya core->co_base + BWFM_SOCRAM_BANKIDX,
1417 1.11 maya (BWFM_SOCRAM_BANKIDX_MEMTYPE_RAM <<
1418 1.11 maya BWFM_SOCRAM_BANKIDX_MEMTYPE_SHIFT) | i);
1419 1.11 maya bankinfo = sc->sc_buscore_ops->bc_read(sc,
1420 1.11 maya core->co_base + BWFM_SOCRAM_BANKINFO);
1421 1.11 maya banksize = ((bankinfo & BWFM_SOCRAM_BANKINFO_SZMASK) + 1)
1422 1.11 maya * BWFM_SOCRAM_BANKINFO_SZBASE;
1423 1.11 maya ramsize += banksize;
1424 1.11 maya }
1425 1.11 maya
1426 1.11 maya sc->sc_chip.ch_ramsize = ramsize;
1427 1.11 maya }
1428 1.11 maya
1429 1.11 maya void
1430 1.11 maya bwfm_chip_tcm_ramsize(struct bwfm_softc *sc, struct bwfm_core *core)
1431 1.11 maya {
1432 1.11 maya uint32_t cap, nab, nbb, totb, bxinfo, ramsize = 0;
1433 1.11 maya int i;
1434 1.11 maya
1435 1.11 maya cap = sc->sc_buscore_ops->bc_read(sc, core->co_base + BWFM_ARMCR4_CAP);
1436 1.11 maya nab = (cap & BWFM_ARMCR4_CAP_TCBANB_MASK) >> BWFM_ARMCR4_CAP_TCBANB_SHIFT;
1437 1.11 maya nbb = (cap & BWFM_ARMCR4_CAP_TCBBNB_MASK) >> BWFM_ARMCR4_CAP_TCBBNB_SHIFT;
1438 1.11 maya totb = nab + nbb;
1439 1.11 maya
1440 1.11 maya for (i = 0; i < totb; i++) {
1441 1.11 maya sc->sc_buscore_ops->bc_write(sc,
1442 1.11 maya core->co_base + BWFM_ARMCR4_BANKIDX, i);
1443 1.11 maya bxinfo = sc->sc_buscore_ops->bc_read(sc,
1444 1.11 maya core->co_base + BWFM_ARMCR4_BANKINFO);
1445 1.11 maya ramsize += ((bxinfo & BWFM_ARMCR4_BANKINFO_BSZ_MASK) + 1) *
1446 1.11 maya BWFM_ARMCR4_BANKINFO_BSZ_MULT;
1447 1.11 maya }
1448 1.11 maya
1449 1.11 maya sc->sc_chip.ch_ramsize = ramsize;
1450 1.11 maya }
1451 1.11 maya
1452 1.11 maya void
1453 1.11 maya bwfm_chip_tcm_rambase(struct bwfm_softc *sc)
1454 1.11 maya {
1455 1.11 maya switch (sc->sc_chip.ch_chip) {
1456 1.11 maya case BRCM_CC_4345_CHIP_ID:
1457 1.11 maya sc->sc_chip.ch_rambase = 0x198000;
1458 1.11 maya break;
1459 1.11 maya case BRCM_CC_4335_CHIP_ID:
1460 1.11 maya case BRCM_CC_4339_CHIP_ID:
1461 1.11 maya case BRCM_CC_4350_CHIP_ID:
1462 1.11 maya case BRCM_CC_4354_CHIP_ID:
1463 1.11 maya case BRCM_CC_4356_CHIP_ID:
1464 1.11 maya case BRCM_CC_43567_CHIP_ID:
1465 1.11 maya case BRCM_CC_43569_CHIP_ID:
1466 1.11 maya case BRCM_CC_43570_CHIP_ID:
1467 1.11 maya case BRCM_CC_4358_CHIP_ID:
1468 1.11 maya case BRCM_CC_4359_CHIP_ID:
1469 1.11 maya case BRCM_CC_43602_CHIP_ID:
1470 1.11 maya case BRCM_CC_4371_CHIP_ID:
1471 1.11 maya sc->sc_chip.ch_rambase = 0x180000;
1472 1.11 maya break;
1473 1.11 maya case BRCM_CC_43465_CHIP_ID:
1474 1.11 maya case BRCM_CC_43525_CHIP_ID:
1475 1.11 maya case BRCM_CC_4365_CHIP_ID:
1476 1.11 maya case BRCM_CC_4366_CHIP_ID:
1477 1.11 maya sc->sc_chip.ch_rambase = 0x200000;
1478 1.11 maya break;
1479 1.11 maya case CY_CC_4373_CHIP_ID:
1480 1.11 maya sc->sc_chip.ch_rambase = 0x160000;
1481 1.11 maya break;
1482 1.11 maya default:
1483 1.11 maya printf("%s: unknown chip: %d\n", DEVNAME(sc),
1484 1.11 maya sc->sc_chip.ch_chip);
1485 1.11 maya break;
1486 1.11 maya }
1487 1.11 maya }
1488 1.11 maya
1489 1.1 jmcneill /* BCDC protocol implementation */
1490 1.1 jmcneill int
1491 1.1 jmcneill bwfm_proto_bcdc_query_dcmd(struct bwfm_softc *sc, int ifidx,
1492 1.1 jmcneill int cmd, char *buf, size_t *len)
1493 1.1 jmcneill {
1494 1.1 jmcneill struct bwfm_proto_bcdc_dcmd *dcmd;
1495 1.1 jmcneill size_t size = sizeof(dcmd->hdr) + *len;
1496 1.18 mlelstv int reqid;
1497 1.1 jmcneill int ret = 1;
1498 1.1 jmcneill
1499 1.18 mlelstv reqid = sc->sc_bcdc_reqid++;
1500 1.1 jmcneill
1501 1.1 jmcneill dcmd = kmem_zalloc(sizeof(*dcmd), KM_SLEEP);
1502 1.1 jmcneill if (*len > sizeof(dcmd->buf))
1503 1.1 jmcneill goto err;
1504 1.1 jmcneill
1505 1.1 jmcneill dcmd->hdr.cmd = htole32(cmd);
1506 1.1 jmcneill dcmd->hdr.len = htole32(*len);
1507 1.1 jmcneill dcmd->hdr.flags |= BWFM_BCDC_DCMD_GET;
1508 1.1 jmcneill dcmd->hdr.flags |= BWFM_BCDC_DCMD_ID_SET(reqid);
1509 1.1 jmcneill dcmd->hdr.flags |= BWFM_BCDC_DCMD_IF_SET(ifidx);
1510 1.1 jmcneill dcmd->hdr.flags = htole32(dcmd->hdr.flags);
1511 1.1 jmcneill memcpy(&dcmd->buf, buf, *len);
1512 1.1 jmcneill
1513 1.1 jmcneill if (sc->sc_bus_ops->bs_txctl(sc, (void *)dcmd,
1514 1.1 jmcneill sizeof(dcmd->hdr) + *len)) {
1515 1.1 jmcneill DPRINTF(("%s: tx failed\n", DEVNAME(sc)));
1516 1.1 jmcneill goto err;
1517 1.1 jmcneill }
1518 1.1 jmcneill
1519 1.1 jmcneill do {
1520 1.1 jmcneill if (sc->sc_bus_ops->bs_rxctl(sc, (void *)dcmd, &size)) {
1521 1.1 jmcneill DPRINTF(("%s: rx failed\n", DEVNAME(sc)));
1522 1.1 jmcneill goto err;
1523 1.1 jmcneill }
1524 1.1 jmcneill dcmd->hdr.cmd = le32toh(dcmd->hdr.cmd);
1525 1.1 jmcneill dcmd->hdr.len = le32toh(dcmd->hdr.len);
1526 1.1 jmcneill dcmd->hdr.flags = le32toh(dcmd->hdr.flags);
1527 1.1 jmcneill dcmd->hdr.status = le32toh(dcmd->hdr.status);
1528 1.1 jmcneill } while (BWFM_BCDC_DCMD_ID_GET(dcmd->hdr.flags) != reqid);
1529 1.1 jmcneill
1530 1.1 jmcneill if (BWFM_BCDC_DCMD_ID_GET(dcmd->hdr.flags) != reqid) {
1531 1.1 jmcneill printf("%s: unexpected request id\n", DEVNAME(sc));
1532 1.1 jmcneill goto err;
1533 1.1 jmcneill }
1534 1.1 jmcneill
1535 1.1 jmcneill if (buf) {
1536 1.1 jmcneill if (size < *len)
1537 1.1 jmcneill *len = size;
1538 1.1 jmcneill memcpy(buf, dcmd->buf, *len);
1539 1.1 jmcneill }
1540 1.1 jmcneill
1541 1.1 jmcneill if (dcmd->hdr.flags & BWFM_BCDC_DCMD_ERROR)
1542 1.1 jmcneill ret = dcmd->hdr.status;
1543 1.1 jmcneill else
1544 1.1 jmcneill ret = 0;
1545 1.1 jmcneill err:
1546 1.1 jmcneill kmem_free(dcmd, sizeof(*dcmd));
1547 1.1 jmcneill return ret;
1548 1.1 jmcneill }
1549 1.1 jmcneill
1550 1.1 jmcneill int
1551 1.1 jmcneill bwfm_proto_bcdc_set_dcmd(struct bwfm_softc *sc, int ifidx,
1552 1.1 jmcneill int cmd, char *buf, size_t len)
1553 1.1 jmcneill {
1554 1.1 jmcneill struct bwfm_proto_bcdc_dcmd *dcmd;
1555 1.1 jmcneill size_t size = sizeof(dcmd->hdr) + len;
1556 1.18 mlelstv int ret = 1, reqid;
1557 1.1 jmcneill
1558 1.18 mlelstv reqid = sc->sc_bcdc_reqid++;
1559 1.1 jmcneill
1560 1.1 jmcneill dcmd = kmem_zalloc(sizeof(*dcmd), KM_SLEEP);
1561 1.1 jmcneill if (len > sizeof(dcmd->buf))
1562 1.1 jmcneill goto err;
1563 1.1 jmcneill
1564 1.1 jmcneill dcmd->hdr.cmd = htole32(cmd);
1565 1.1 jmcneill dcmd->hdr.len = htole32(len);
1566 1.1 jmcneill dcmd->hdr.flags |= BWFM_BCDC_DCMD_SET;
1567 1.1 jmcneill dcmd->hdr.flags |= BWFM_BCDC_DCMD_ID_SET(reqid);
1568 1.1 jmcneill dcmd->hdr.flags |= BWFM_BCDC_DCMD_IF_SET(ifidx);
1569 1.1 jmcneill dcmd->hdr.flags = htole32(dcmd->hdr.flags);
1570 1.1 jmcneill memcpy(&dcmd->buf, buf, len);
1571 1.1 jmcneill
1572 1.1 jmcneill if (sc->sc_bus_ops->bs_txctl(sc, (void *)dcmd, size)) {
1573 1.1 jmcneill DPRINTF(("%s: tx failed\n", DEVNAME(sc)));
1574 1.1 jmcneill goto err;
1575 1.1 jmcneill }
1576 1.1 jmcneill
1577 1.1 jmcneill do {
1578 1.1 jmcneill if (sc->sc_bus_ops->bs_rxctl(sc, (void *)dcmd, &size)) {
1579 1.1 jmcneill DPRINTF(("%s: rx failed\n", DEVNAME(sc)));
1580 1.1 jmcneill goto err;
1581 1.1 jmcneill }
1582 1.1 jmcneill dcmd->hdr.cmd = le32toh(dcmd->hdr.cmd);
1583 1.1 jmcneill dcmd->hdr.len = le32toh(dcmd->hdr.len);
1584 1.1 jmcneill dcmd->hdr.flags = le32toh(dcmd->hdr.flags);
1585 1.1 jmcneill dcmd->hdr.status = le32toh(dcmd->hdr.status);
1586 1.1 jmcneill } while (BWFM_BCDC_DCMD_ID_GET(dcmd->hdr.flags) != reqid);
1587 1.1 jmcneill
1588 1.1 jmcneill if (BWFM_BCDC_DCMD_ID_GET(dcmd->hdr.flags) != reqid) {
1589 1.1 jmcneill printf("%s: unexpected request id\n", DEVNAME(sc));
1590 1.1 jmcneill goto err;
1591 1.1 jmcneill }
1592 1.1 jmcneill
1593 1.1 jmcneill if (dcmd->hdr.flags & BWFM_BCDC_DCMD_ERROR)
1594 1.1 jmcneill return dcmd->hdr.status;
1595 1.1 jmcneill
1596 1.1 jmcneill ret = 0;
1597 1.1 jmcneill err:
1598 1.1 jmcneill kmem_free(dcmd, sizeof(*dcmd));
1599 1.1 jmcneill return ret;
1600 1.1 jmcneill }
1601 1.1 jmcneill
1602 1.1 jmcneill /* FW Variable code */
1603 1.1 jmcneill int
1604 1.1 jmcneill bwfm_fwvar_cmd_get_data(struct bwfm_softc *sc, int cmd, void *data, size_t len)
1605 1.1 jmcneill {
1606 1.1 jmcneill return sc->sc_proto_ops->proto_query_dcmd(sc, 0, cmd, data, &len);
1607 1.1 jmcneill }
1608 1.1 jmcneill
1609 1.1 jmcneill int
1610 1.1 jmcneill bwfm_fwvar_cmd_set_data(struct bwfm_softc *sc, int cmd, void *data, size_t len)
1611 1.1 jmcneill {
1612 1.1 jmcneill return sc->sc_proto_ops->proto_set_dcmd(sc, 0, cmd, data, len);
1613 1.1 jmcneill }
1614 1.1 jmcneill
1615 1.1 jmcneill int
1616 1.1 jmcneill bwfm_fwvar_cmd_get_int(struct bwfm_softc *sc, int cmd, uint32_t *data)
1617 1.1 jmcneill {
1618 1.1 jmcneill int ret;
1619 1.1 jmcneill ret = bwfm_fwvar_cmd_get_data(sc, cmd, data, sizeof(*data));
1620 1.1 jmcneill *data = le32toh(*data);
1621 1.1 jmcneill return ret;
1622 1.1 jmcneill }
1623 1.1 jmcneill
1624 1.1 jmcneill int
1625 1.1 jmcneill bwfm_fwvar_cmd_set_int(struct bwfm_softc *sc, int cmd, uint32_t data)
1626 1.1 jmcneill {
1627 1.1 jmcneill data = htole32(data);
1628 1.1 jmcneill return bwfm_fwvar_cmd_set_data(sc, cmd, &data, sizeof(data));
1629 1.1 jmcneill }
1630 1.1 jmcneill
1631 1.1 jmcneill int
1632 1.1 jmcneill bwfm_fwvar_var_get_data(struct bwfm_softc *sc, const char *name, void *data, size_t len)
1633 1.1 jmcneill {
1634 1.1 jmcneill char *buf;
1635 1.1 jmcneill int ret;
1636 1.1 jmcneill
1637 1.1 jmcneill buf = kmem_alloc(strlen(name) + 1 + len, KM_SLEEP);
1638 1.1 jmcneill memcpy(buf, name, strlen(name) + 1);
1639 1.1 jmcneill memcpy(buf + strlen(name) + 1, data, len);
1640 1.1 jmcneill ret = bwfm_fwvar_cmd_get_data(sc, BWFM_C_GET_VAR,
1641 1.1 jmcneill buf, strlen(name) + 1 + len);
1642 1.1 jmcneill memcpy(data, buf, len);
1643 1.1 jmcneill kmem_free(buf, strlen(name) + 1 + len);
1644 1.1 jmcneill return ret;
1645 1.1 jmcneill }
1646 1.1 jmcneill
1647 1.1 jmcneill int
1648 1.1 jmcneill bwfm_fwvar_var_set_data(struct bwfm_softc *sc, const char *name, void *data, size_t len)
1649 1.1 jmcneill {
1650 1.1 jmcneill char *buf;
1651 1.1 jmcneill int ret;
1652 1.1 jmcneill
1653 1.1 jmcneill buf = kmem_alloc(strlen(name) + 1 + len, KM_SLEEP);
1654 1.1 jmcneill memcpy(buf, name, strlen(name) + 1);
1655 1.1 jmcneill memcpy(buf + strlen(name) + 1, data, len);
1656 1.1 jmcneill ret = bwfm_fwvar_cmd_set_data(sc, BWFM_C_SET_VAR,
1657 1.1 jmcneill buf, strlen(name) + 1 + len);
1658 1.1 jmcneill kmem_free(buf, strlen(name) + 1 + len);
1659 1.1 jmcneill return ret;
1660 1.1 jmcneill }
1661 1.1 jmcneill
1662 1.1 jmcneill int
1663 1.1 jmcneill bwfm_fwvar_var_get_int(struct bwfm_softc *sc, const char *name, uint32_t *data)
1664 1.1 jmcneill {
1665 1.1 jmcneill int ret;
1666 1.1 jmcneill ret = bwfm_fwvar_var_get_data(sc, name, data, sizeof(*data));
1667 1.1 jmcneill *data = le32toh(*data);
1668 1.1 jmcneill return ret;
1669 1.1 jmcneill }
1670 1.1 jmcneill
1671 1.1 jmcneill int
1672 1.1 jmcneill bwfm_fwvar_var_set_int(struct bwfm_softc *sc, const char *name, uint32_t data)
1673 1.1 jmcneill {
1674 1.1 jmcneill data = htole32(data);
1675 1.1 jmcneill return bwfm_fwvar_var_set_data(sc, name, &data, sizeof(data));
1676 1.1 jmcneill }
1677 1.1 jmcneill
1678 1.1 jmcneill /* 802.11 code */
1679 1.1 jmcneill void
1680 1.1 jmcneill bwfm_scan(struct bwfm_softc *sc)
1681 1.1 jmcneill {
1682 1.1 jmcneill struct bwfm_escan_params *params;
1683 1.1 jmcneill uint32_t nssid = 0, nchannel = 0;
1684 1.1 jmcneill size_t params_size;
1685 1.1 jmcneill
1686 1.1 jmcneill #if 0
1687 1.1 jmcneill /* Active scan is used for scanning for an SSID */
1688 1.1 jmcneill bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_PASSIVE_SCAN, 0);
1689 1.1 jmcneill #endif
1690 1.1 jmcneill bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_PASSIVE_SCAN, 1);
1691 1.1 jmcneill
1692 1.1 jmcneill params_size = sizeof(*params);
1693 1.1 jmcneill params_size += sizeof(uint32_t) * ((nchannel + 1) / 2);
1694 1.1 jmcneill params_size += sizeof(struct bwfm_ssid) * nssid;
1695 1.1 jmcneill
1696 1.1 jmcneill params = kmem_zalloc(params_size, KM_SLEEP);
1697 1.1 jmcneill memset(params->scan_params.bssid, 0xff,
1698 1.1 jmcneill sizeof(params->scan_params.bssid));
1699 1.1 jmcneill params->scan_params.bss_type = 2;
1700 1.1 jmcneill params->scan_params.nprobes = htole32(-1);
1701 1.1 jmcneill params->scan_params.active_time = htole32(-1);
1702 1.1 jmcneill params->scan_params.passive_time = htole32(-1);
1703 1.1 jmcneill params->scan_params.home_time = htole32(-1);
1704 1.1 jmcneill params->version = htole32(BWFM_ESCAN_REQ_VERSION);
1705 1.1 jmcneill params->action = htole16(WL_ESCAN_ACTION_START);
1706 1.1 jmcneill params->sync_id = htole16(0x1234);
1707 1.1 jmcneill
1708 1.1 jmcneill #if 0
1709 1.1 jmcneill /* Scan a specific channel */
1710 1.1 jmcneill params->scan_params.channel_list[0] = htole16(
1711 1.1 jmcneill (1 & 0xff) << 0 |
1712 1.1 jmcneill (3 & 0x3) << 8 |
1713 1.1 jmcneill (2 & 0x3) << 10 |
1714 1.1 jmcneill (2 & 0x3) << 12
1715 1.1 jmcneill );
1716 1.1 jmcneill params->scan_params.channel_num = htole32(
1717 1.1 jmcneill (1 & 0xffff) << 0
1718 1.1 jmcneill );
1719 1.1 jmcneill #endif
1720 1.1 jmcneill
1721 1.1 jmcneill bwfm_fwvar_var_set_data(sc, "escan", params, params_size);
1722 1.1 jmcneill kmem_free(params, params_size);
1723 1.1 jmcneill }
1724 1.1 jmcneill
1725 1.1 jmcneill static __inline int
1726 1.1 jmcneill bwfm_iswpaoui(const uint8_t *frm)
1727 1.1 jmcneill {
1728 1.1 jmcneill return frm[1] > 3 && le32dec(frm+2) == ((WPA_OUI_TYPE<<24)|WPA_OUI);
1729 1.1 jmcneill }
1730 1.1 jmcneill
1731 1.1 jmcneill /*
1732 1.1 jmcneill * Derive wireless security settings from WPA/RSN IE.
1733 1.1 jmcneill */
1734 1.1 jmcneill static uint32_t
1735 1.1 jmcneill bwfm_get_wsec(struct bwfm_softc *sc)
1736 1.1 jmcneill {
1737 1.1 jmcneill struct ieee80211com *ic = &sc->sc_ic;
1738 1.1 jmcneill uint8_t *wpa = ic->ic_opt_ie;
1739 1.1 jmcneill
1740 1.1 jmcneill KASSERT(ic->ic_opt_ie_len > 0);
1741 1.1 jmcneill
1742 1.1 jmcneill if (wpa[0] != IEEE80211_ELEMID_RSN) {
1743 1.1 jmcneill if (ic->ic_opt_ie_len < 12)
1744 1.1 jmcneill return BWFM_WSEC_NONE;
1745 1.1 jmcneill
1746 1.1 jmcneill /* non-RSN IE, expect that we are doing WPA1 */
1747 1.1 jmcneill if ((ic->ic_flags & IEEE80211_F_WPA1) == 0)
1748 1.1 jmcneill return BWFM_WSEC_NONE;
1749 1.1 jmcneill
1750 1.1 jmcneill /* Must contain WPA OUI */
1751 1.1 jmcneill if (!bwfm_iswpaoui(wpa))
1752 1.1 jmcneill return BWFM_WSEC_NONE;
1753 1.1 jmcneill
1754 1.1 jmcneill switch (le32dec(wpa + 8)) {
1755 1.1 jmcneill case ((WPA_CSE_TKIP<<24)|WPA_OUI):
1756 1.1 jmcneill return BWFM_WSEC_TKIP;
1757 1.1 jmcneill case ((WPA_CSE_CCMP<<24)|WPA_OUI):
1758 1.1 jmcneill return BWFM_WSEC_AES;
1759 1.1 jmcneill default:
1760 1.1 jmcneill return BWFM_WSEC_NONE;
1761 1.1 jmcneill }
1762 1.1 jmcneill } else {
1763 1.1 jmcneill if (ic->ic_opt_ie_len < 14)
1764 1.1 jmcneill return BWFM_WSEC_NONE;
1765 1.1 jmcneill
1766 1.1 jmcneill /* RSN IE, expect that we are doing WPA2 */
1767 1.1 jmcneill if ((ic->ic_flags & IEEE80211_F_WPA2) == 0)
1768 1.1 jmcneill return BWFM_WSEC_NONE;
1769 1.1 jmcneill
1770 1.1 jmcneill switch (le32dec(wpa + 10)) {
1771 1.1 jmcneill case ((RSN_CSE_TKIP<<24)|RSN_OUI):
1772 1.1 jmcneill return BWFM_WSEC_TKIP;
1773 1.1 jmcneill case ((RSN_CSE_CCMP<<24)|RSN_OUI):
1774 1.1 jmcneill return BWFM_WSEC_AES;
1775 1.1 jmcneill default:
1776 1.1 jmcneill return BWFM_WSEC_NONE;
1777 1.1 jmcneill }
1778 1.1 jmcneill }
1779 1.1 jmcneill }
1780 1.1 jmcneill
1781 1.1 jmcneill void
1782 1.1 jmcneill bwfm_connect(struct bwfm_softc *sc)
1783 1.1 jmcneill {
1784 1.1 jmcneill struct ieee80211com *ic = &sc->sc_ic;
1785 1.1 jmcneill struct ieee80211_node *ni = ic->ic_bss;
1786 1.1 jmcneill struct bwfm_ext_join_params *params;
1787 1.1 jmcneill
1788 1.1 jmcneill if (ic->ic_flags & IEEE80211_F_WPA) {
1789 1.1 jmcneill uint32_t wsec = 0;
1790 1.1 jmcneill uint32_t wpa = 0;
1791 1.1 jmcneill
1792 1.1 jmcneill if (ic->ic_opt_ie_len)
1793 1.1 jmcneill bwfm_fwvar_var_set_data(sc, "wpaie", ic->ic_opt_ie, ic->ic_opt_ie_len);
1794 1.1 jmcneill
1795 1.1 jmcneill if (ic->ic_flags & IEEE80211_F_WPA1)
1796 1.1 jmcneill wpa |= BWFM_WPA_AUTH_WPA_PSK;
1797 1.1 jmcneill if (ic->ic_flags & IEEE80211_F_WPA2)
1798 1.1 jmcneill wpa |= BWFM_WPA_AUTH_WPA2_PSK;
1799 1.1 jmcneill
1800 1.1 jmcneill wsec |= bwfm_get_wsec(sc);
1801 1.1 jmcneill
1802 1.1 jmcneill DPRINTF(("%s: WPA enabled, ic_flags = 0x%x, wpa 0x%x, wsec 0x%x\n",
1803 1.1 jmcneill DEVNAME(sc), ic->ic_flags, wpa, wsec));
1804 1.1 jmcneill
1805 1.1 jmcneill bwfm_fwvar_var_set_int(sc, "wpa_auth", wpa);
1806 1.1 jmcneill bwfm_fwvar_var_set_int(sc, "wsec", wsec);
1807 1.1 jmcneill } else {
1808 1.1 jmcneill bwfm_fwvar_var_set_int(sc, "wpa_auth", BWFM_WPA_AUTH_DISABLED);
1809 1.1 jmcneill bwfm_fwvar_var_set_int(sc, "wsec", BWFM_WSEC_NONE);
1810 1.1 jmcneill }
1811 1.1 jmcneill
1812 1.1 jmcneill bwfm_fwvar_var_set_int(sc, "auth", BWFM_AUTH_OPEN);
1813 1.1 jmcneill bwfm_fwvar_var_set_int(sc, "mfp", BWFM_MFP_NONE);
1814 1.1 jmcneill
1815 1.1 jmcneill if (ni->ni_esslen && ni->ni_esslen < BWFM_MAX_SSID_LEN) {
1816 1.1 jmcneill params = kmem_zalloc(sizeof(*params), KM_SLEEP);
1817 1.1 jmcneill memcpy(params->ssid.ssid, ni->ni_essid, ni->ni_esslen);
1818 1.1 jmcneill params->ssid.len = htole32(ni->ni_esslen);
1819 1.1 jmcneill memcpy(params->assoc.bssid, ni->ni_bssid, sizeof(params->assoc.bssid));
1820 1.1 jmcneill params->scan.scan_type = -1;
1821 1.1 jmcneill params->scan.nprobes = htole32(-1);
1822 1.1 jmcneill params->scan.active_time = htole32(-1);
1823 1.1 jmcneill params->scan.passive_time = htole32(-1);
1824 1.1 jmcneill params->scan.home_time = htole32(-1);
1825 1.1 jmcneill if (bwfm_fwvar_var_set_data(sc, "join", params, sizeof(*params))) {
1826 1.1 jmcneill struct bwfm_join_params join;
1827 1.1 jmcneill memset(&join, 0, sizeof(join));
1828 1.1 jmcneill memcpy(join.ssid.ssid, ni->ni_essid, ni->ni_esslen);
1829 1.1 jmcneill join.ssid.len = htole32(ni->ni_esslen);
1830 1.1 jmcneill memcpy(join.assoc.bssid, ni->ni_bssid, sizeof(join.assoc.bssid));
1831 1.1 jmcneill bwfm_fwvar_cmd_set_data(sc, BWFM_C_SET_SSID, &join,
1832 1.1 jmcneill sizeof(join));
1833 1.1 jmcneill }
1834 1.1 jmcneill kmem_free(params, sizeof(*params));
1835 1.1 jmcneill }
1836 1.1 jmcneill }
1837 1.1 jmcneill
1838 1.1 jmcneill void
1839 1.17 jmcneill bwfm_get_sta_info(struct bwfm_softc *sc, struct ifmediareq *ifmr)
1840 1.17 jmcneill {
1841 1.17 jmcneill struct ieee80211com *ic = &sc->sc_ic;
1842 1.17 jmcneill struct ieee80211_node *ni = ic->ic_bss;
1843 1.17 jmcneill struct bwfm_sta_info sta;
1844 1.17 jmcneill uint32_t flags, txrate;
1845 1.17 jmcneill
1846 1.17 jmcneill memset(&sta, 0, sizeof(sta));
1847 1.17 jmcneill memcpy(&sta, ni->ni_macaddr, sizeof(ni->ni_macaddr));
1848 1.17 jmcneill
1849 1.17 jmcneill if (bwfm_fwvar_var_get_data(sc, "sta_info", &sta, sizeof(sta)))
1850 1.17 jmcneill return;
1851 1.17 jmcneill
1852 1.17 jmcneill if (!IEEE80211_ADDR_EQ(ni->ni_macaddr, sta.ea))
1853 1.17 jmcneill return;
1854 1.17 jmcneill
1855 1.17 jmcneill if (le16toh(sta.ver) < 4)
1856 1.17 jmcneill return;
1857 1.17 jmcneill
1858 1.17 jmcneill flags = le32toh(sta.flags);
1859 1.17 jmcneill if ((flags & BWFM_STA_SCBSTATS) == 0)
1860 1.17 jmcneill return;
1861 1.17 jmcneill
1862 1.17 jmcneill txrate = le32toh(sta.tx_rate);
1863 1.17 jmcneill if (txrate == 0xffffffff)
1864 1.17 jmcneill return;
1865 1.17 jmcneill
1866 1.17 jmcneill if ((flags & BWFM_STA_VHT_CAP) != 0) {
1867 1.17 jmcneill ifmr->ifm_active &= ~IFM_TMASK;
1868 1.17 jmcneill ifmr->ifm_active |= IFM_IEEE80211_VHT;
1869 1.17 jmcneill ifmr->ifm_active &= ~IFM_MMASK;
1870 1.17 jmcneill ifmr->ifm_active |= IFM_IEEE80211_11AC;
1871 1.17 jmcneill } else if ((flags & BWFM_STA_N_CAP) != 0) {
1872 1.17 jmcneill ifmr->ifm_active &= ~IFM_TMASK;
1873 1.17 jmcneill ifmr->ifm_active |= IFM_IEEE80211_MCS;
1874 1.17 jmcneill ifmr->ifm_active &= ~IFM_MMASK;
1875 1.17 jmcneill if (IEEE80211_IS_CHAN_2GHZ(ic->ic_curchan))
1876 1.17 jmcneill ifmr->ifm_active |= IFM_IEEE80211_11NG;
1877 1.17 jmcneill else
1878 1.17 jmcneill ifmr->ifm_active |= IFM_IEEE80211_11NA;
1879 1.17 jmcneill }
1880 1.17 jmcneill }
1881 1.17 jmcneill
1882 1.17 jmcneill void
1883 1.11 maya bwfm_rx(struct bwfm_softc *sc, struct mbuf *m)
1884 1.1 jmcneill {
1885 1.1 jmcneill struct ieee80211com *ic = &sc->sc_ic;
1886 1.1 jmcneill struct ifnet *ifp = ic->ic_ifp;
1887 1.11 maya struct bwfm_event *e = mtod(m, struct bwfm_event *);
1888 1.1 jmcneill
1889 1.11 maya if (m->m_len >= sizeof(e->ehdr) &&
1890 1.1 jmcneill ntohs(e->ehdr.ether_type) == BWFM_ETHERTYPE_LINK_CTL &&
1891 1.1 jmcneill memcmp(BWFM_BRCM_OUI, e->hdr.oui, sizeof(e->hdr.oui)) == 0 &&
1892 1.11 maya ntohs(e->hdr.usr_subtype) == BWFM_BRCM_SUBTYPE_EVENT) {
1893 1.15 mlelstv bwfm_rx_event(sc, m);
1894 1.15 mlelstv // m_freem(m);
1895 1.1 jmcneill return;
1896 1.1 jmcneill }
1897 1.1 jmcneill
1898 1.18 mlelstv m_set_rcvif(m, ifp);
1899 1.18 mlelstv if_percpuq_enqueue(ifp->if_percpuq, m);
1900 1.15 mlelstv }
1901 1.15 mlelstv
1902 1.15 mlelstv void
1903 1.15 mlelstv bwfm_rx_event(struct bwfm_softc *sc, struct mbuf *m)
1904 1.15 mlelstv {
1905 1.15 mlelstv struct bwfm_task *t;
1906 1.15 mlelstv
1907 1.15 mlelstv t = pcq_get(sc->sc_freetask);
1908 1.15 mlelstv if (t == NULL) {
1909 1.15 mlelstv m_freem(m);
1910 1.15 mlelstv printf("%s: no free tasks\n", DEVNAME(sc));
1911 1.15 mlelstv return;
1912 1.1 jmcneill }
1913 1.1 jmcneill
1914 1.15 mlelstv t->t_cmd = BWFM_TASK_RX_EVENT;
1915 1.15 mlelstv t->t_mbuf = m;
1916 1.15 mlelstv workqueue_enqueue(sc->sc_taskq, (struct work*)t, NULL);
1917 1.1 jmcneill }
1918 1.1 jmcneill
1919 1.1 jmcneill void
1920 1.15 mlelstv bwfm_rx_event_cb(struct bwfm_softc *sc, struct mbuf *m)
1921 1.1 jmcneill {
1922 1.1 jmcneill struct ieee80211com *ic = &sc->sc_ic;
1923 1.15 mlelstv struct bwfm_event *e = mtod(m, void *);
1924 1.15 mlelstv size_t len = m->m_len;
1925 1.1 jmcneill int s;
1926 1.1 jmcneill
1927 1.15 mlelstv DPRINTF(("%s: event %p len %lu datalen %u code %u status %u"
1928 1.15 mlelstv " reason %u\n", __func__, e, len, ntohl(e->msg.datalen),
1929 1.1 jmcneill ntohl(e->msg.event_type), ntohl(e->msg.status),
1930 1.1 jmcneill ntohl(e->msg.reason)));
1931 1.1 jmcneill
1932 1.15 mlelstv if (ntohl(e->msg.event_type) >= BWFM_E_LAST) {
1933 1.15 mlelstv m_freem(m);
1934 1.1 jmcneill return;
1935 1.15 mlelstv }
1936 1.1 jmcneill
1937 1.1 jmcneill switch (ntohl(e->msg.event_type)) {
1938 1.1 jmcneill case BWFM_E_ESCAN_RESULT: {
1939 1.15 mlelstv struct bwfm_escan_results *res = (void *)&e[1];
1940 1.1 jmcneill struct bwfm_bss_info *bss;
1941 1.1 jmcneill int i;
1942 1.1 jmcneill if (ntohl(e->msg.status) != BWFM_E_STATUS_PARTIAL) {
1943 1.1 jmcneill /* Scan complete */
1944 1.1 jmcneill s = splnet();
1945 1.1 jmcneill if (ic->ic_opmode != IEEE80211_M_MONITOR)
1946 1.1 jmcneill ieee80211_end_scan(ic);
1947 1.1 jmcneill splx(s);
1948 1.1 jmcneill break;
1949 1.1 jmcneill }
1950 1.1 jmcneill len -= sizeof(*e);
1951 1.1 jmcneill if (len < sizeof(*res) || len < le32toh(res->buflen)) {
1952 1.15 mlelstv m_freem(m);
1953 1.1 jmcneill printf("%s: results too small\n", DEVNAME(sc));
1954 1.1 jmcneill return;
1955 1.1 jmcneill }
1956 1.1 jmcneill len -= sizeof(*res);
1957 1.1 jmcneill if (len < le16toh(res->bss_count) * sizeof(struct bwfm_bss_info)) {
1958 1.15 mlelstv m_freem(m);
1959 1.1 jmcneill printf("%s: results too small\n", DEVNAME(sc));
1960 1.1 jmcneill return;
1961 1.1 jmcneill }
1962 1.1 jmcneill bss = &res->bss_info[0];
1963 1.1 jmcneill for (i = 0; i < le16toh(res->bss_count); i++) {
1964 1.2 jmcneill /* Fix alignment of bss_info */
1965 1.2 jmcneill union {
1966 1.2 jmcneill struct bwfm_bss_info bss_info;
1967 1.2 jmcneill uint8_t padding[BWFM_BSS_INFO_BUFLEN];
1968 1.2 jmcneill } bss_buf;
1969 1.2 jmcneill if (len > sizeof(bss_buf)) {
1970 1.2 jmcneill printf("%s: bss_info buffer too big\n", DEVNAME(sc));
1971 1.2 jmcneill } else {
1972 1.2 jmcneill memcpy(&bss_buf, &res->bss_info[i], len);
1973 1.2 jmcneill bwfm_scan_node(sc, &bss_buf.bss_info, len);
1974 1.2 jmcneill }
1975 1.1 jmcneill len -= sizeof(*bss) + le32toh(bss->length);
1976 1.1 jmcneill bss = (void *)(((uintptr_t)bss) + le32toh(bss->length));
1977 1.1 jmcneill if (len <= 0)
1978 1.1 jmcneill break;
1979 1.1 jmcneill }
1980 1.1 jmcneill break;
1981 1.1 jmcneill }
1982 1.1 jmcneill
1983 1.1 jmcneill case BWFM_E_SET_SSID:
1984 1.1 jmcneill if (ntohl(e->msg.status) == BWFM_E_STATUS_SUCCESS) {
1985 1.1 jmcneill ieee80211_new_state(ic, IEEE80211_S_RUN, -1);
1986 1.1 jmcneill } else {
1987 1.1 jmcneill ieee80211_new_state(ic, IEEE80211_S_SCAN, -1);
1988 1.1 jmcneill }
1989 1.1 jmcneill break;
1990 1.1 jmcneill
1991 1.1 jmcneill case BWFM_E_ASSOC:
1992 1.1 jmcneill if (ntohl(e->msg.status) == BWFM_E_STATUS_SUCCESS) {
1993 1.1 jmcneill ieee80211_new_state(ic, IEEE80211_S_ASSOC, -1);
1994 1.1 jmcneill } else {
1995 1.1 jmcneill ieee80211_new_state(ic, IEEE80211_S_SCAN, -1);
1996 1.1 jmcneill }
1997 1.1 jmcneill break;
1998 1.1 jmcneill
1999 1.1 jmcneill case BWFM_E_LINK:
2000 1.1 jmcneill if (ntohl(e->msg.status) == BWFM_E_STATUS_SUCCESS &&
2001 1.1 jmcneill ntohl(e->msg.reason) == 0)
2002 1.1 jmcneill break;
2003 1.11 maya
2004 1.1 jmcneill /* Link status has changed */
2005 1.1 jmcneill ieee80211_new_state(ic, IEEE80211_S_SCAN, -1);
2006 1.1 jmcneill break;
2007 1.1 jmcneill
2008 1.1 jmcneill default:
2009 1.1 jmcneill break;
2010 1.1 jmcneill }
2011 1.15 mlelstv
2012 1.15 mlelstv m_freem(m);
2013 1.1 jmcneill }
2014 1.1 jmcneill
2015 1.1 jmcneill void
2016 1.1 jmcneill bwfm_scan_node(struct bwfm_softc *sc, struct bwfm_bss_info *bss, size_t len)
2017 1.1 jmcneill {
2018 1.1 jmcneill struct ieee80211com *ic = &sc->sc_ic;
2019 1.1 jmcneill struct ieee80211_frame wh;
2020 1.1 jmcneill struct ieee80211_scanparams scan;
2021 1.1 jmcneill uint8_t rates[sizeof(bss->rates) + 2];
2022 1.1 jmcneill uint8_t ssid[sizeof(bss->ssid) + 2];
2023 1.1 jmcneill uint8_t *frm, *sfrm, *efrm;
2024 1.1 jmcneill uint64_t tsf;
2025 1.1 jmcneill
2026 1.1 jmcneill tsf = 0;
2027 1.1 jmcneill sfrm = ((uint8_t *)bss) + le16toh(bss->ie_offset);
2028 1.1 jmcneill efrm = sfrm + le32toh(bss->ie_length);
2029 1.1 jmcneill
2030 1.1 jmcneill /* Fake a wireless header with the scan result's BSSID */
2031 1.1 jmcneill memset(&wh, 0, sizeof(wh));
2032 1.1 jmcneill IEEE80211_ADDR_COPY(wh.i_addr2, bss->bssid);
2033 1.1 jmcneill IEEE80211_ADDR_COPY(wh.i_addr3, bss->bssid);
2034 1.1 jmcneill
2035 1.1 jmcneill if (efrm - sfrm < 12) {
2036 1.1 jmcneill ic->ic_stats.is_rx_elem_toosmall++;
2037 1.1 jmcneill return;
2038 1.1 jmcneill }
2039 1.1 jmcneill
2040 1.1 jmcneill rates[0] = 0;
2041 1.1 jmcneill rates[1] = le32toh(bss->nrates);
2042 1.1 jmcneill memcpy(&rates[2], bss->rates, sizeof(bss->rates));
2043 1.1 jmcneill
2044 1.1 jmcneill ssid[0] = 0;
2045 1.1 jmcneill ssid[1] = bss->ssid_len;
2046 1.1 jmcneill memcpy(&ssid[2], bss->ssid, sizeof(bss->ssid));
2047 1.1 jmcneill
2048 1.1 jmcneill /* Build scan result */
2049 1.1 jmcneill memset(&scan, 0, sizeof(scan));
2050 1.10 maxv scan.sp_tstamp = (uint8_t *)&tsf;
2051 1.10 maxv scan.sp_bintval = le16toh(bss->beacon_period);
2052 1.10 maxv scan.sp_capinfo = le16toh(bss->capability);
2053 1.10 maxv scan.sp_bchan = ieee80211_chan2ieee(ic, ic->ic_curchan);
2054 1.10 maxv scan.sp_chan = scan.sp_bchan;
2055 1.10 maxv scan.sp_rates = rates;
2056 1.10 maxv scan.sp_ssid = ssid;
2057 1.1 jmcneill
2058 1.1 jmcneill for (frm = sfrm; frm < efrm; frm += frm[1] + 2) {
2059 1.1 jmcneill switch (frm[0]) {
2060 1.1 jmcneill case IEEE80211_ELEMID_COUNTRY:
2061 1.10 maxv scan.sp_country = frm;
2062 1.1 jmcneill break;
2063 1.1 jmcneill case IEEE80211_ELEMID_FHPARMS:
2064 1.1 jmcneill if (ic->ic_phytype == IEEE80211_T_FH) {
2065 1.8 maxv if (frm + 6 >= efrm)
2066 1.8 maxv break;
2067 1.10 maxv scan.sp_fhdwell = le16dec(&frm[2]);
2068 1.10 maxv scan.sp_chan = IEEE80211_FH_CHAN(frm[4], frm[5]);
2069 1.10 maxv scan.sp_fhindex = frm[6];
2070 1.1 jmcneill }
2071 1.1 jmcneill break;
2072 1.1 jmcneill case IEEE80211_ELEMID_DSPARMS:
2073 1.8 maxv if (ic->ic_phytype != IEEE80211_T_FH) {
2074 1.8 maxv if (frm + 2 >= efrm)
2075 1.8 maxv break;
2076 1.10 maxv scan.sp_chan = frm[2];
2077 1.8 maxv }
2078 1.1 jmcneill break;
2079 1.1 jmcneill case IEEE80211_ELEMID_TIM:
2080 1.10 maxv scan.sp_tim = frm;
2081 1.10 maxv scan.sp_timoff = frm - sfrm;
2082 1.1 jmcneill break;
2083 1.1 jmcneill case IEEE80211_ELEMID_XRATES:
2084 1.10 maxv scan.sp_xrates = frm;
2085 1.1 jmcneill break;
2086 1.1 jmcneill case IEEE80211_ELEMID_ERP:
2087 1.8 maxv if (frm + 1 >= efrm)
2088 1.8 maxv break;
2089 1.1 jmcneill if (frm[1] != 1) {
2090 1.1 jmcneill ic->ic_stats.is_rx_elem_toobig++;
2091 1.1 jmcneill break;
2092 1.1 jmcneill }
2093 1.10 maxv scan.sp_erp = frm[2];
2094 1.1 jmcneill break;
2095 1.1 jmcneill case IEEE80211_ELEMID_RSN:
2096 1.10 maxv scan.sp_wpa = frm;
2097 1.1 jmcneill break;
2098 1.1 jmcneill case IEEE80211_ELEMID_VENDOR:
2099 1.8 maxv if (frm + 1 >= efrm)
2100 1.8 maxv break;
2101 1.8 maxv if (frm + frm[1] + 2 >= efrm)
2102 1.8 maxv break;
2103 1.1 jmcneill if (bwfm_iswpaoui(frm))
2104 1.10 maxv scan.sp_wpa = frm;
2105 1.1 jmcneill break;
2106 1.1 jmcneill }
2107 1.9 maxv if (frm + 1 >= efrm)
2108 1.9 maxv break;
2109 1.1 jmcneill }
2110 1.1 jmcneill
2111 1.1 jmcneill if (ic->ic_flags & IEEE80211_F_SCAN)
2112 1.1 jmcneill ieee80211_add_scan(ic, &scan, &wh, IEEE80211_FC0_SUBTYPE_BEACON,
2113 1.1 jmcneill le32toh(bss->rssi), 0);
2114 1.1 jmcneill }
2115