if_iwi.c revision 1.40 1 1.40 skrll /* $NetBSD: if_iwi.c,v 1.40 2005/11/23 20:35:54 skrll Exp $ */
2 1.1 skrll
3 1.1 skrll /*-
4 1.1 skrll * Copyright (c) 2004, 2005
5 1.1 skrll * Damien Bergamini <damien.bergamini (at) free.fr>. All rights reserved.
6 1.1 skrll *
7 1.1 skrll * Redistribution and use in source and binary forms, with or without
8 1.1 skrll * modification, are permitted provided that the following conditions
9 1.1 skrll * are met:
10 1.1 skrll * 1. Redistributions of source code must retain the above copyright
11 1.1 skrll * notice unmodified, this list of conditions, and the following
12 1.1 skrll * disclaimer.
13 1.1 skrll * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 skrll * notice, this list of conditions and the following disclaimer in the
15 1.1 skrll * documentation and/or other materials provided with the distribution.
16 1.1 skrll *
17 1.1 skrll * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
18 1.1 skrll * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19 1.1 skrll * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20 1.1 skrll * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
21 1.1 skrll * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
22 1.1 skrll * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
23 1.1 skrll * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
24 1.1 skrll * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
25 1.1 skrll * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
26 1.1 skrll * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
27 1.1 skrll * SUCH DAMAGE.
28 1.1 skrll */
29 1.1 skrll
30 1.1 skrll #include <sys/cdefs.h>
31 1.40 skrll __KERNEL_RCSID(0, "$NetBSD: if_iwi.c,v 1.40 2005/11/23 20:35:54 skrll Exp $");
32 1.1 skrll
33 1.1 skrll /*-
34 1.13 skrll * Intel(R) PRO/Wireless 2200BG/2225BG/2915ABG driver
35 1.1 skrll * http://www.intel.com/network/connectivity/products/wireless/prowireless_mobile.htm
36 1.1 skrll */
37 1.1 skrll
38 1.1 skrll #include "bpfilter.h"
39 1.1 skrll
40 1.1 skrll #include <sys/param.h>
41 1.1 skrll #include <sys/sockio.h>
42 1.1 skrll #include <sys/sysctl.h>
43 1.1 skrll #include <sys/mbuf.h>
44 1.1 skrll #include <sys/kernel.h>
45 1.1 skrll #include <sys/socket.h>
46 1.1 skrll #include <sys/systm.h>
47 1.1 skrll #include <sys/malloc.h>
48 1.1 skrll #include <sys/conf.h>
49 1.1 skrll
50 1.1 skrll #include <machine/bus.h>
51 1.1 skrll #include <machine/endian.h>
52 1.1 skrll #include <machine/intr.h>
53 1.1 skrll
54 1.1 skrll #include <dev/pci/pcireg.h>
55 1.1 skrll #include <dev/pci/pcivar.h>
56 1.1 skrll #include <dev/pci/pcidevs.h>
57 1.1 skrll
58 1.1 skrll #if NBPFILTER > 0
59 1.1 skrll #include <net/bpf.h>
60 1.1 skrll #endif
61 1.1 skrll #include <net/if.h>
62 1.1 skrll #include <net/if_arp.h>
63 1.1 skrll #include <net/if_dl.h>
64 1.1 skrll #include <net/if_ether.h>
65 1.1 skrll #include <net/if_media.h>
66 1.1 skrll #include <net/if_types.h>
67 1.1 skrll
68 1.1 skrll #include <net80211/ieee80211_var.h>
69 1.1 skrll #include <net80211/ieee80211_radiotap.h>
70 1.1 skrll
71 1.1 skrll #include <netinet/in.h>
72 1.1 skrll #include <netinet/in_systm.h>
73 1.1 skrll #include <netinet/in_var.h>
74 1.1 skrll #include <netinet/ip.h>
75 1.1 skrll
76 1.1 skrll #include <crypto/arc4/arc4.h>
77 1.1 skrll
78 1.1 skrll #include <dev/pci/if_iwireg.h>
79 1.1 skrll #include <dev/pci/if_iwivar.h>
80 1.1 skrll
81 1.20 skrll #ifdef IWI_DEBUG
82 1.20 skrll #define DPRINTF(x) if (iwi_debug > 0) printf x
83 1.20 skrll #define DPRINTFN(n, x) if (iwi_debug >= (n)) printf x
84 1.20 skrll int iwi_debug = 4;
85 1.20 skrll #else
86 1.20 skrll #define DPRINTF(x)
87 1.20 skrll #define DPRINTFN(n, x)
88 1.20 skrll #endif
89 1.1 skrll
90 1.25 skrll static int iwi_match(struct device *, struct cfdata *, void *);
91 1.25 skrll static void iwi_attach(struct device *, struct device *, void *);
92 1.25 skrll static int iwi_detach(struct device *, int);
93 1.25 skrll
94 1.25 skrll static void iwi_shutdown(void *);
95 1.25 skrll static int iwi_suspend(struct iwi_softc *);
96 1.25 skrll static int iwi_resume(struct iwi_softc *);
97 1.25 skrll static void iwi_powerhook(int, void *);
98 1.15 skrll
99 1.25 skrll static int iwi_alloc_cmd_ring(struct iwi_softc *, struct iwi_cmd_ring *,
100 1.14 skrll int);
101 1.25 skrll static void iwi_reset_cmd_ring(struct iwi_softc *, struct iwi_cmd_ring *);
102 1.25 skrll static void iwi_free_cmd_ring(struct iwi_softc *, struct iwi_cmd_ring *);
103 1.25 skrll static int iwi_alloc_tx_ring(struct iwi_softc *, struct iwi_tx_ring *,
104 1.38 skrll int, bus_addr_t, bus_addr_t);
105 1.25 skrll static void iwi_reset_tx_ring(struct iwi_softc *, struct iwi_tx_ring *);
106 1.25 skrll static void iwi_free_tx_ring(struct iwi_softc *, struct iwi_tx_ring *);
107 1.31 joerg static struct mbuf *
108 1.31 joerg iwi_alloc_rx_buf(struct iwi_softc *sc);
109 1.25 skrll static int iwi_alloc_rx_ring(struct iwi_softc *, struct iwi_rx_ring *,
110 1.14 skrll int);
111 1.25 skrll static void iwi_reset_rx_ring(struct iwi_softc *, struct iwi_rx_ring *);
112 1.25 skrll static void iwi_free_rx_ring(struct iwi_softc *, struct iwi_rx_ring *);
113 1.14 skrll
114 1.38 skrll static struct ieee80211_node *iwi_node_alloc(struct ieee80211_node_table *);
115 1.38 skrll static void iwi_node_free(struct ieee80211_node *);
116 1.38 skrll
117 1.25 skrll static int iwi_media_change(struct ifnet *);
118 1.25 skrll static void iwi_media_status(struct ifnet *, struct ifmediareq *);
119 1.38 skrll static int iwi_wme_update(struct ieee80211com *);
120 1.25 skrll static uint16_t iwi_read_prom_word(struct iwi_softc *, uint8_t);
121 1.25 skrll static int iwi_newstate(struct ieee80211com *, enum ieee80211_state, int);
122 1.25 skrll static void iwi_fix_channel(struct ieee80211com *, struct mbuf *);
123 1.25 skrll static void iwi_frame_intr(struct iwi_softc *, struct iwi_rx_data *, int,
124 1.1 skrll struct iwi_frame *);
125 1.25 skrll static void iwi_notification_intr(struct iwi_softc *, struct iwi_notif *);
126 1.25 skrll static void iwi_rx_intr(struct iwi_softc *);
127 1.38 skrll static void iwi_tx_intr(struct iwi_softc *, struct iwi_tx_ring *);
128 1.25 skrll static int iwi_intr(void *);
129 1.25 skrll static int iwi_cmd(struct iwi_softc *, uint8_t, void *, uint8_t, int);
130 1.38 skrll static void iwi_write_ibssnode(struct iwi_softc *, const struct iwi_node *);
131 1.38 skrll static int iwi_tx_start(struct ifnet *, struct mbuf *, struct ieee80211_node *,
132 1.38 skrll int);
133 1.25 skrll static void iwi_start(struct ifnet *);
134 1.25 skrll static void iwi_watchdog(struct ifnet *);
135 1.38 skrll
136 1.38 skrll static int iwi_alloc_unr(struct iwi_softc *);
137 1.38 skrll static void iwi_free_unr(struct iwi_softc *, int);
138 1.38 skrll
139 1.25 skrll static int iwi_get_table0(struct iwi_softc *, uint32_t *);
140 1.25 skrll static int iwi_get_radio(struct iwi_softc *, int *);
141 1.38 skrll
142 1.25 skrll static int iwi_ioctl(struct ifnet *, u_long, caddr_t);
143 1.25 skrll static void iwi_stop_master(struct iwi_softc *);
144 1.25 skrll static int iwi_reset(struct iwi_softc *);
145 1.25 skrll static int iwi_load_ucode(struct iwi_softc *, void *, int);
146 1.25 skrll static int iwi_load_firmware(struct iwi_softc *, void *, int);
147 1.25 skrll static int iwi_cache_firmware(struct iwi_softc *, void *);
148 1.25 skrll static void iwi_free_firmware(struct iwi_softc *);
149 1.25 skrll static int iwi_config(struct iwi_softc *);
150 1.25 skrll static int iwi_set_chan(struct iwi_softc *, struct ieee80211_channel *);
151 1.25 skrll static int iwi_scan(struct iwi_softc *);
152 1.25 skrll static int iwi_auth_and_assoc(struct iwi_softc *);
153 1.25 skrll static int iwi_init(struct ifnet *);
154 1.25 skrll static void iwi_stop(struct ifnet *, int);
155 1.36 skrll static void iwi_error_log(struct iwi_softc *);
156 1.1 skrll
157 1.20 skrll /*
158 1.20 skrll * Supported rates for 802.11a/b/g modes (in 500Kbps unit).
159 1.20 skrll */
160 1.20 skrll static const struct ieee80211_rateset iwi_rateset_11a =
161 1.20 skrll { 8, { 12, 18, 24, 36, 48, 72, 96, 108 } };
162 1.20 skrll
163 1.20 skrll static const struct ieee80211_rateset iwi_rateset_11b =
164 1.20 skrll { 4, { 2, 4, 11, 22 } };
165 1.20 skrll
166 1.20 skrll static const struct ieee80211_rateset iwi_rateset_11g =
167 1.20 skrll { 12, { 2, 4, 11, 22, 12, 18, 24, 36, 48, 72, 96, 108 } };
168 1.20 skrll
169 1.24 skrll static __inline uint8_t
170 1.24 skrll MEM_READ_1(struct iwi_softc *sc, uint32_t addr)
171 1.1 skrll {
172 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_INDIRECT_ADDR, addr);
173 1.1 skrll return CSR_READ_1(sc, IWI_CSR_INDIRECT_DATA);
174 1.1 skrll }
175 1.1 skrll
176 1.24 skrll static __inline uint32_t
177 1.24 skrll MEM_READ_4(struct iwi_softc *sc, uint32_t addr)
178 1.1 skrll {
179 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_INDIRECT_ADDR, addr);
180 1.1 skrll return CSR_READ_4(sc, IWI_CSR_INDIRECT_DATA);
181 1.1 skrll }
182 1.1 skrll
183 1.36 skrll static void
184 1.36 skrll MEM_CPY(struct iwi_softc *sc, void *dst, uint32_t base, size_t sz)
185 1.36 skrll {
186 1.36 skrll KASSERT(sz % 4 == 0);
187 1.36 skrll int j;
188 1.36 skrll
189 1.36 skrll uint32_t *p = dst;
190 1.36 skrll
191 1.36 skrll for (j = 0; j < sz / 4; j++)
192 1.36 skrll p[j] = MEM_READ_4(sc, base + j * sizeof(uint32_t));
193 1.36 skrll }
194 1.36 skrll
195 1.1 skrll CFATTACH_DECL(iwi, sizeof (struct iwi_softc), iwi_match, iwi_attach,
196 1.1 skrll iwi_detach, NULL);
197 1.1 skrll
198 1.1 skrll static int
199 1.1 skrll iwi_match(struct device *parent, struct cfdata *match, void *aux)
200 1.1 skrll {
201 1.1 skrll struct pci_attach_args *pa = aux;
202 1.5 perry
203 1.1 skrll if (PCI_VENDOR(pa->pa_id) != PCI_VENDOR_INTEL)
204 1.1 skrll return 0;
205 1.1 skrll
206 1.1 skrll if (PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_INTEL_PRO_WL_2200BG ||
207 1.13 skrll PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_INTEL_PRO_WL_2225BG ||
208 1.13 skrll PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_INTEL_PRO_WL_2915ABG_1 ||
209 1.13 skrll PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_INTEL_PRO_WL_2915ABG_2)
210 1.1 skrll return 1;
211 1.5 perry
212 1.1 skrll return 0;
213 1.1 skrll }
214 1.1 skrll
215 1.1 skrll /* Base Address Register */
216 1.1 skrll #define IWI_PCI_BAR0 0x10
217 1.1 skrll
218 1.1 skrll static void
219 1.1 skrll iwi_attach(struct device *parent, struct device *self, void *aux)
220 1.1 skrll {
221 1.1 skrll struct iwi_softc *sc = (struct iwi_softc *)self;
222 1.1 skrll struct ieee80211com *ic = &sc->sc_ic;
223 1.9 dyoung struct ifnet *ifp = &sc->sc_if;
224 1.1 skrll struct pci_attach_args *pa = aux;
225 1.1 skrll const char *intrstr;
226 1.1 skrll char devinfo[256];
227 1.1 skrll bus_space_tag_t memt;
228 1.1 skrll bus_space_handle_t memh;
229 1.1 skrll bus_addr_t base;
230 1.1 skrll pci_intr_handle_t ih;
231 1.1 skrll pcireg_t data;
232 1.24 skrll uint16_t val;
233 1.1 skrll int error, revision, i;
234 1.1 skrll
235 1.1 skrll sc->sc_pct = pa->pa_pc;
236 1.1 skrll sc->sc_pcitag = pa->pa_tag;
237 1.1 skrll
238 1.1 skrll pci_devinfo(pa->pa_id, pa->pa_class, 0, devinfo, sizeof devinfo);
239 1.1 skrll revision = PCI_REVISION(pa->pa_class);
240 1.1 skrll aprint_normal(": %s (rev. 0x%02x)\n", devinfo, revision);
241 1.1 skrll
242 1.1 skrll /* clear device specific PCI configuration register 0x41 */
243 1.1 skrll data = pci_conf_read(sc->sc_pct, sc->sc_pcitag, 0x40);
244 1.1 skrll data &= ~0x0000ff00;
245 1.1 skrll pci_conf_write(sc->sc_pct, sc->sc_pcitag, 0x40, data);
246 1.1 skrll
247 1.38 skrll /* clear unit numbers allocated to IBSS */
248 1.38 skrll sc->sc_unr = 0;
249 1.38 skrll
250 1.1 skrll /* enable bus-mastering */
251 1.1 skrll data = pci_conf_read(sc->sc_pct, sc->sc_pcitag, PCI_COMMAND_STATUS_REG);
252 1.1 skrll data |= PCI_COMMAND_MASTER_ENABLE;
253 1.1 skrll pci_conf_write(sc->sc_pct, sc->sc_pcitag, PCI_COMMAND_STATUS_REG, data);
254 1.1 skrll
255 1.1 skrll /* map the register window */
256 1.1 skrll error = pci_mapreg_map(pa, IWI_PCI_BAR0, PCI_MAPREG_TYPE_MEM |
257 1.1 skrll PCI_MAPREG_MEM_TYPE_32BIT, 0, &memt, &memh, &base, &sc->sc_sz);
258 1.1 skrll if (error != 0) {
259 1.1 skrll aprint_error("%s: could not map memory space\n",
260 1.1 skrll sc->sc_dev.dv_xname);
261 1.1 skrll return;
262 1.1 skrll }
263 1.1 skrll
264 1.1 skrll sc->sc_st = memt;
265 1.1 skrll sc->sc_sh = memh;
266 1.1 skrll sc->sc_dmat = pa->pa_dmat;
267 1.1 skrll
268 1.1 skrll /* disable interrupts */
269 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_INTR_MASK, 0);
270 1.1 skrll
271 1.1 skrll if (pci_intr_map(pa, &ih) != 0) {
272 1.1 skrll aprint_error("%s: could not map interrupt\n",
273 1.1 skrll sc->sc_dev.dv_xname);
274 1.1 skrll return;
275 1.1 skrll }
276 1.1 skrll
277 1.1 skrll intrstr = pci_intr_string(sc->sc_pct, ih);
278 1.1 skrll sc->sc_ih = pci_intr_establish(sc->sc_pct, ih, IPL_NET, iwi_intr, sc);
279 1.1 skrll if (sc->sc_ih == NULL) {
280 1.1 skrll aprint_error("%s: could not establish interrupt",
281 1.1 skrll sc->sc_dev.dv_xname);
282 1.1 skrll if (intrstr != NULL)
283 1.1 skrll aprint_error(" at %s", intrstr);
284 1.1 skrll aprint_error("\n");
285 1.1 skrll return;
286 1.1 skrll }
287 1.1 skrll aprint_normal("%s: interrupting at %s\n", sc->sc_dev.dv_xname, intrstr);
288 1.1 skrll
289 1.1 skrll if (iwi_reset(sc) != 0) {
290 1.1 skrll aprint_error("%s: could not reset adapter\n",
291 1.1 skrll sc->sc_dev.dv_xname);
292 1.1 skrll return;
293 1.1 skrll }
294 1.1 skrll
295 1.14 skrll /*
296 1.14 skrll * Allocate rings.
297 1.14 skrll */
298 1.14 skrll if (iwi_alloc_cmd_ring(sc, &sc->cmdq, IWI_CMD_RING_COUNT) != 0) {
299 1.14 skrll aprint_error("%s: could not allocate command ring\n",
300 1.1 skrll sc->sc_dev.dv_xname);
301 1.14 skrll goto fail;
302 1.14 skrll }
303 1.14 skrll
304 1.38 skrll error = iwi_alloc_tx_ring(sc, &sc->txq[0], IWI_TX_RING_COUNT,
305 1.38 skrll IWI_CSR_TX1_RIDX, IWI_CSR_TX1_WIDX);
306 1.38 skrll if (error != 0) {
307 1.38 skrll aprint_error("%s: could not allocate Tx ring 1\n",
308 1.38 skrll sc->sc_dev.dv_xname);
309 1.38 skrll goto fail;
310 1.38 skrll }
311 1.38 skrll
312 1.38 skrll error = iwi_alloc_tx_ring(sc, &sc->txq[1], IWI_TX_RING_COUNT,
313 1.38 skrll IWI_CSR_TX2_RIDX, IWI_CSR_TX2_WIDX);
314 1.38 skrll if (error != 0) {
315 1.38 skrll aprint_error("%s: could not allocate Tx ring 2\n",
316 1.38 skrll sc->sc_dev.dv_xname);
317 1.38 skrll goto fail;
318 1.38 skrll }
319 1.38 skrll
320 1.38 skrll error = iwi_alloc_tx_ring(sc, &sc->txq[2], IWI_TX_RING_COUNT,
321 1.38 skrll IWI_CSR_TX3_RIDX, IWI_CSR_TX3_WIDX);
322 1.38 skrll if (error != 0) {
323 1.38 skrll aprint_error("%s: could not allocate Tx ring 3\n",
324 1.38 skrll sc->sc_dev.dv_xname);
325 1.38 skrll goto fail;
326 1.38 skrll }
327 1.38 skrll
328 1.38 skrll error = iwi_alloc_tx_ring(sc, &sc->txq[3], IWI_TX_RING_COUNT,
329 1.38 skrll IWI_CSR_TX4_RIDX, IWI_CSR_TX4_WIDX);
330 1.38 skrll if (error != 0) {
331 1.38 skrll aprint_error("%s: could not allocate Tx ring 4\n",
332 1.14 skrll sc->sc_dev.dv_xname);
333 1.14 skrll goto fail;
334 1.14 skrll }
335 1.14 skrll
336 1.14 skrll if (iwi_alloc_rx_ring(sc, &sc->rxq, IWI_RX_RING_COUNT) != 0) {
337 1.14 skrll aprint_error("%s: could not allocate Rx ring\n",
338 1.14 skrll sc->sc_dev.dv_xname);
339 1.14 skrll goto fail;
340 1.1 skrll }
341 1.1 skrll
342 1.9 dyoung ic->ic_ifp = ifp;
343 1.38 skrll ic->ic_wme.wme_update = iwi_wme_update;
344 1.12 christos ic->ic_phytype = IEEE80211_T_OFDM; /* not only, but not used */
345 1.12 christos ic->ic_opmode = IEEE80211_M_STA; /* default to BSS mode */
346 1.13 skrll ic->ic_state = IEEE80211_S_INIT;
347 1.1 skrll
348 1.1 skrll /* set device capabilities */
349 1.38 skrll ic->ic_caps =
350 1.38 skrll IEEE80211_C_IBSS | /* IBSS mode supported */
351 1.38 skrll IEEE80211_C_MONITOR | /* monitor mode supported */
352 1.38 skrll IEEE80211_C_TXPMGT | /* tx power management */
353 1.38 skrll IEEE80211_C_SHPREAMBLE | /* short preamble supported */
354 1.38 skrll IEEE80211_C_WPA | /* 802.11i */
355 1.38 skrll IEEE80211_C_WME; /* 802.11e */
356 1.1 skrll
357 1.1 skrll /* read MAC address from EEPROM */
358 1.1 skrll val = iwi_read_prom_word(sc, IWI_EEPROM_MAC + 0);
359 1.33 skrll ic->ic_myaddr[0] = val & 0xff;
360 1.33 skrll ic->ic_myaddr[1] = val >> 8;
361 1.1 skrll val = iwi_read_prom_word(sc, IWI_EEPROM_MAC + 1);
362 1.33 skrll ic->ic_myaddr[2] = val & 0xff;
363 1.33 skrll ic->ic_myaddr[3] = val >> 8;
364 1.1 skrll val = iwi_read_prom_word(sc, IWI_EEPROM_MAC + 2);
365 1.33 skrll ic->ic_myaddr[4] = val & 0xff;
366 1.33 skrll ic->ic_myaddr[5] = val >> 8;
367 1.1 skrll
368 1.1 skrll aprint_normal("%s: 802.11 address %s\n", sc->sc_dev.dv_xname,
369 1.1 skrll ether_sprintf(ic->ic_myaddr));
370 1.1 skrll
371 1.13 skrll
372 1.16 skrll if (PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_INTEL_PRO_WL_2915ABG_1 ||
373 1.16 skrll PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_INTEL_PRO_WL_2915ABG_2) {
374 1.13 skrll /* set supported .11a rates (2915ABG only) */
375 1.1 skrll ic->ic_sup_rates[IEEE80211_MODE_11A] = iwi_rateset_11a;
376 1.1 skrll
377 1.1 skrll /* set supported .11a channels */
378 1.1 skrll for (i = 36; i <= 64; i += 4) {
379 1.1 skrll ic->ic_channels[i].ic_freq =
380 1.1 skrll ieee80211_ieee2mhz(i, IEEE80211_CHAN_5GHZ);
381 1.1 skrll ic->ic_channels[i].ic_flags = IEEE80211_CHAN_A;
382 1.1 skrll }
383 1.12 christos for (i = 149; i <= 165; i += 4) {
384 1.1 skrll ic->ic_channels[i].ic_freq =
385 1.1 skrll ieee80211_ieee2mhz(i, IEEE80211_CHAN_5GHZ);
386 1.1 skrll ic->ic_channels[i].ic_flags = IEEE80211_CHAN_A;
387 1.1 skrll }
388 1.1 skrll }
389 1.1 skrll
390 1.1 skrll /* set supported .11b and .11g rates */
391 1.1 skrll ic->ic_sup_rates[IEEE80211_MODE_11B] = iwi_rateset_11b;
392 1.1 skrll ic->ic_sup_rates[IEEE80211_MODE_11G] = iwi_rateset_11g;
393 1.1 skrll
394 1.1 skrll /* set supported .11b and .11g channels (1 through 14) */
395 1.1 skrll for (i = 1; i <= 14; i++) {
396 1.1 skrll ic->ic_channels[i].ic_freq =
397 1.1 skrll ieee80211_ieee2mhz(i, IEEE80211_CHAN_2GHZ);
398 1.1 skrll ic->ic_channels[i].ic_flags =
399 1.1 skrll IEEE80211_CHAN_CCK | IEEE80211_CHAN_OFDM |
400 1.1 skrll IEEE80211_CHAN_DYN | IEEE80211_CHAN_2GHZ;
401 1.1 skrll }
402 1.1 skrll
403 1.1 skrll ifp->if_softc = sc;
404 1.1 skrll ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
405 1.1 skrll ifp->if_init = iwi_init;
406 1.1 skrll ifp->if_stop = iwi_stop;
407 1.1 skrll ifp->if_ioctl = iwi_ioctl;
408 1.1 skrll ifp->if_start = iwi_start;
409 1.1 skrll ifp->if_watchdog = iwi_watchdog;
410 1.1 skrll IFQ_SET_READY(&ifp->if_snd);
411 1.1 skrll memcpy(ifp->if_xname, sc->sc_dev.dv_xname, IFNAMSIZ);
412 1.1 skrll
413 1.1 skrll if_attach(ifp);
414 1.9 dyoung ieee80211_ifattach(ic);
415 1.38 skrll /* override default methods */
416 1.38 skrll ic->ic_node_alloc = iwi_node_alloc;
417 1.38 skrll sc->sc_node_free = ic->ic_node_free;
418 1.38 skrll ic->ic_node_free = iwi_node_free;
419 1.1 skrll /* override state transition machine */
420 1.1 skrll sc->sc_newstate = ic->ic_newstate;
421 1.1 skrll ic->ic_newstate = iwi_newstate;
422 1.9 dyoung ieee80211_media_init(ic, iwi_media_change, iwi_media_status);
423 1.1 skrll
424 1.1 skrll #if NBPFILTER > 0
425 1.1 skrll bpfattach2(ifp, DLT_IEEE802_11_RADIO,
426 1.1 skrll sizeof (struct ieee80211_frame) + 64, &sc->sc_drvbpf);
427 1.1 skrll
428 1.1 skrll sc->sc_rxtap_len = sizeof sc->sc_rxtapu;
429 1.1 skrll sc->sc_rxtap.wr_ihdr.it_len = htole16(sc->sc_rxtap_len);
430 1.1 skrll sc->sc_rxtap.wr_ihdr.it_present = htole32(IWI_RX_RADIOTAP_PRESENT);
431 1.1 skrll
432 1.1 skrll sc->sc_txtap_len = sizeof sc->sc_txtapu;
433 1.1 skrll sc->sc_txtap.wt_ihdr.it_len = htole16(sc->sc_txtap_len);
434 1.1 skrll sc->sc_txtap.wt_ihdr.it_present = htole32(IWI_TX_RADIOTAP_PRESENT);
435 1.1 skrll #endif
436 1.15 skrll
437 1.15 skrll /*
438 1.15 skrll * Make sure the interface is shutdown during reboot.
439 1.15 skrll */
440 1.15 skrll sc->sc_sdhook = shutdownhook_establish(iwi_shutdown, sc);
441 1.15 skrll if (sc->sc_sdhook == NULL)
442 1.15 skrll aprint_error("%s: WARNING: unable to establish shutdown hook\n",
443 1.15 skrll sc->sc_dev.dv_xname);
444 1.15 skrll sc->sc_powerhook = powerhook_establish(iwi_powerhook, sc);
445 1.15 skrll if (sc->sc_powerhook == NULL)
446 1.15 skrll printf("%s: WARNING: unable to establish power hook\n",
447 1.15 skrll sc->sc_dev.dv_xname);
448 1.15 skrll
449 1.13 skrll ieee80211_announce(ic);
450 1.12 christos /*
451 1.12 christos * Add a few sysctl knobs.
452 1.12 christos * XXX: Not yet.
453 1.12 christos */
454 1.12 christos sc->dwelltime = 100;
455 1.12 christos sc->bluetooth = 1;
456 1.12 christos sc->antenna = 0;
457 1.14 skrll
458 1.14 skrll return;
459 1.14 skrll
460 1.14 skrll fail: iwi_detach(self, 0);
461 1.1 skrll }
462 1.1 skrll
463 1.1 skrll static int
464 1.1 skrll iwi_detach(struct device* self, int flags)
465 1.1 skrll {
466 1.1 skrll struct iwi_softc *sc = (struct iwi_softc *)self;
467 1.9 dyoung struct ifnet *ifp = &sc->sc_if;
468 1.1 skrll
469 1.1 skrll iwi_stop(ifp, 1);
470 1.1 skrll iwi_free_firmware(sc);
471 1.1 skrll
472 1.1 skrll #if NBPFILTER > 0
473 1.25 skrll if (ifp != NULL)
474 1.25 skrll bpfdetach(ifp);
475 1.1 skrll #endif
476 1.9 dyoung ieee80211_ifdetach(&sc->sc_ic);
477 1.25 skrll if (ifp != NULL)
478 1.25 skrll if_detach(ifp);
479 1.1 skrll
480 1.14 skrll iwi_free_cmd_ring(sc, &sc->cmdq);
481 1.38 skrll iwi_free_tx_ring(sc, &sc->txq[0]);
482 1.38 skrll iwi_free_tx_ring(sc, &sc->txq[1]);
483 1.38 skrll iwi_free_tx_ring(sc, &sc->txq[2]);
484 1.38 skrll iwi_free_tx_ring(sc, &sc->txq[3]);
485 1.14 skrll iwi_free_rx_ring(sc, &sc->rxq);
486 1.1 skrll
487 1.1 skrll if (sc->sc_ih != NULL) {
488 1.1 skrll pci_intr_disestablish(sc->sc_pct, sc->sc_ih);
489 1.1 skrll sc->sc_ih = NULL;
490 1.1 skrll }
491 1.1 skrll
492 1.1 skrll bus_space_unmap(sc->sc_st, sc->sc_sh, sc->sc_sz);
493 1.1 skrll
494 1.18 skrll powerhook_disestablish(sc->sc_powerhook);
495 1.18 skrll shutdownhook_disestablish(sc->sc_sdhook);
496 1.18 skrll
497 1.1 skrll return 0;
498 1.1 skrll }
499 1.1 skrll
500 1.1 skrll static int
501 1.14 skrll iwi_alloc_cmd_ring(struct iwi_softc *sc, struct iwi_cmd_ring *ring,
502 1.14 skrll int count)
503 1.1 skrll {
504 1.14 skrll int error, nsegs;
505 1.14 skrll
506 1.14 skrll ring->count = count;
507 1.14 skrll ring->queued = 0;
508 1.14 skrll ring->cur = ring->next = 0;
509 1.1 skrll
510 1.1 skrll /*
511 1.14 skrll * Allocate and map command ring
512 1.1 skrll */
513 1.1 skrll error = bus_dmamap_create(sc->sc_dmat,
514 1.25 skrll IWI_CMD_DESC_SIZE * count, 1,
515 1.25 skrll IWI_CMD_DESC_SIZE * count, 0,
516 1.14 skrll BUS_DMA_NOWAIT, &ring->desc_map);
517 1.1 skrll if (error != 0) {
518 1.14 skrll aprint_error("%s: could not create command ring DMA map\n",
519 1.1 skrll sc->sc_dev.dv_xname);
520 1.1 skrll goto fail;
521 1.1 skrll }
522 1.1 skrll
523 1.1 skrll error = bus_dmamem_alloc(sc->sc_dmat,
524 1.25 skrll IWI_CMD_DESC_SIZE * count, PAGE_SIZE, 0,
525 1.14 skrll &sc->cmdq.desc_seg, 1, &nsegs, BUS_DMA_NOWAIT);
526 1.1 skrll if (error != 0) {
527 1.14 skrll aprint_error("%s: could not allocate command ring DMA memory\n",
528 1.1 skrll sc->sc_dev.dv_xname);
529 1.1 skrll goto fail;
530 1.1 skrll }
531 1.1 skrll
532 1.14 skrll error = bus_dmamem_map(sc->sc_dmat, &sc->cmdq.desc_seg, nsegs,
533 1.25 skrll IWI_CMD_DESC_SIZE * count,
534 1.14 skrll (caddr_t *)&sc->cmdq.desc, BUS_DMA_NOWAIT);
535 1.1 skrll if (error != 0) {
536 1.14 skrll aprint_error("%s: could not map command ring DMA memory\n",
537 1.1 skrll sc->sc_dev.dv_xname);
538 1.1 skrll goto fail;
539 1.1 skrll }
540 1.1 skrll
541 1.14 skrll error = bus_dmamap_load(sc->sc_dmat, sc->cmdq.desc_map, sc->cmdq.desc,
542 1.25 skrll IWI_CMD_DESC_SIZE * count, NULL,
543 1.1 skrll BUS_DMA_NOWAIT);
544 1.1 skrll if (error != 0) {
545 1.14 skrll aprint_error("%s: could not load command ring DMA map\n",
546 1.1 skrll sc->sc_dev.dv_xname);
547 1.1 skrll goto fail;
548 1.1 skrll }
549 1.1 skrll
550 1.14 skrll memset(sc->cmdq.desc, 0,
551 1.25 skrll IWI_CMD_DESC_SIZE * count);
552 1.14 skrll
553 1.14 skrll return 0;
554 1.14 skrll
555 1.14 skrll fail: iwi_free_cmd_ring(sc, ring);
556 1.14 skrll return error;
557 1.14 skrll }
558 1.14 skrll
559 1.14 skrll static void
560 1.14 skrll iwi_reset_cmd_ring(struct iwi_softc *sc, struct iwi_cmd_ring *ring)
561 1.14 skrll {
562 1.14 skrll ring->queued = 0;
563 1.14 skrll ring->cur = ring->next = 0;
564 1.14 skrll }
565 1.14 skrll
566 1.14 skrll static void
567 1.14 skrll iwi_free_cmd_ring(struct iwi_softc *sc, struct iwi_cmd_ring *ring)
568 1.14 skrll {
569 1.14 skrll if (ring->desc_map != NULL) {
570 1.14 skrll if (ring->desc != NULL) {
571 1.14 skrll bus_dmamap_unload(sc->sc_dmat, ring->desc_map);
572 1.14 skrll bus_dmamem_unmap(sc->sc_dmat, (caddr_t)ring->desc,
573 1.25 skrll IWI_CMD_DESC_SIZE * ring->count);
574 1.14 skrll bus_dmamem_free(sc->sc_dmat, &ring->desc_seg, 1);
575 1.14 skrll }
576 1.14 skrll bus_dmamap_destroy(sc->sc_dmat, ring->desc_map);
577 1.14 skrll }
578 1.14 skrll }
579 1.14 skrll
580 1.14 skrll static int
581 1.14 skrll iwi_alloc_tx_ring(struct iwi_softc *sc, struct iwi_tx_ring *ring,
582 1.38 skrll int count, bus_addr_t csr_ridx, bus_addr_t csr_widx)
583 1.14 skrll {
584 1.14 skrll int i, error, nsegs;
585 1.14 skrll
586 1.14 skrll ring->count = count;
587 1.14 skrll ring->queued = 0;
588 1.14 skrll ring->cur = ring->next = 0;
589 1.38 skrll ring->csr_ridx = csr_ridx;
590 1.38 skrll ring->csr_widx = csr_widx;
591 1.1 skrll
592 1.1 skrll /*
593 1.14 skrll * Allocate and map Tx ring
594 1.1 skrll */
595 1.1 skrll error = bus_dmamap_create(sc->sc_dmat,
596 1.25 skrll IWI_TX_DESC_SIZE * count, 1,
597 1.25 skrll IWI_TX_DESC_SIZE * count, 0, BUS_DMA_NOWAIT,
598 1.14 skrll &ring->desc_map);
599 1.1 skrll if (error != 0) {
600 1.14 skrll aprint_error("%s: could not create tx ring DMA map\n",
601 1.1 skrll sc->sc_dev.dv_xname);
602 1.1 skrll goto fail;
603 1.1 skrll }
604 1.1 skrll
605 1.1 skrll error = bus_dmamem_alloc(sc->sc_dmat,
606 1.25 skrll IWI_TX_DESC_SIZE * count, PAGE_SIZE, 0,
607 1.14 skrll &ring->desc_seg, 1, &nsegs, BUS_DMA_NOWAIT);
608 1.1 skrll if (error != 0) {
609 1.14 skrll aprint_error("%s: could not allocate tx ring DMA memory\n",
610 1.1 skrll sc->sc_dev.dv_xname);
611 1.1 skrll goto fail;
612 1.1 skrll }
613 1.1 skrll
614 1.14 skrll error = bus_dmamem_map(sc->sc_dmat, &ring->desc_seg, nsegs,
615 1.25 skrll IWI_TX_DESC_SIZE * count,
616 1.14 skrll (caddr_t *)&ring->desc, BUS_DMA_NOWAIT);
617 1.1 skrll if (error != 0) {
618 1.14 skrll aprint_error("%s: could not map tx ring DMA memory\n",
619 1.1 skrll sc->sc_dev.dv_xname);
620 1.1 skrll goto fail;
621 1.1 skrll }
622 1.1 skrll
623 1.14 skrll error = bus_dmamap_load(sc->sc_dmat, ring->desc_map, ring->desc,
624 1.25 skrll IWI_TX_DESC_SIZE * count, NULL,
625 1.1 skrll BUS_DMA_NOWAIT);
626 1.1 skrll if (error != 0) {
627 1.14 skrll aprint_error("%s: could not load tx ring DMA map\n",
628 1.1 skrll sc->sc_dev.dv_xname);
629 1.1 skrll goto fail;
630 1.1 skrll }
631 1.1 skrll
632 1.25 skrll memset(ring->desc, 0, IWI_TX_DESC_SIZE * count);
633 1.14 skrll
634 1.14 skrll ring->data = malloc(count * sizeof (struct iwi_tx_data), M_DEVBUF,
635 1.14 skrll M_NOWAIT | M_ZERO);
636 1.14 skrll if (ring->data == NULL) {
637 1.14 skrll aprint_error("%s: could not allocate soft data\n",
638 1.14 skrll sc->sc_dev.dv_xname);
639 1.14 skrll error = ENOMEM;
640 1.14 skrll goto fail;
641 1.14 skrll }
642 1.1 skrll
643 1.1 skrll /*
644 1.1 skrll * Allocate Tx buffers DMA maps
645 1.1 skrll */
646 1.14 skrll for (i = 0; i < count; i++) {
647 1.1 skrll error = bus_dmamap_create(sc->sc_dmat, MCLBYTES, IWI_MAX_NSEG,
648 1.14 skrll MCLBYTES, 0, BUS_DMA_NOWAIT, &ring->data[i].map);
649 1.1 skrll if (error != 0) {
650 1.1 skrll aprint_error("%s: could not create tx buf DMA map",
651 1.1 skrll sc->sc_dev.dv_xname);
652 1.1 skrll goto fail;
653 1.1 skrll }
654 1.1 skrll }
655 1.14 skrll return 0;
656 1.14 skrll
657 1.14 skrll fail: iwi_free_tx_ring(sc, ring);
658 1.14 skrll return error;
659 1.14 skrll }
660 1.14 skrll
661 1.14 skrll static void
662 1.14 skrll iwi_reset_tx_ring(struct iwi_softc *sc, struct iwi_tx_ring *ring)
663 1.14 skrll {
664 1.14 skrll struct iwi_tx_data *data;
665 1.14 skrll int i;
666 1.14 skrll
667 1.14 skrll for (i = 0; i < ring->count; i++) {
668 1.14 skrll data = &ring->data[i];
669 1.14 skrll
670 1.14 skrll if (data->m != NULL) {
671 1.14 skrll bus_dmamap_sync(sc->sc_dmat, data->map, 0,
672 1.34 scw data->map->dm_mapsize, BUS_DMASYNC_POSTWRITE);
673 1.14 skrll bus_dmamap_unload(sc->sc_dmat, data->map);
674 1.14 skrll m_freem(data->m);
675 1.14 skrll data->m = NULL;
676 1.14 skrll }
677 1.14 skrll
678 1.14 skrll if (data->ni != NULL) {
679 1.14 skrll ieee80211_free_node(data->ni);
680 1.14 skrll data->ni = NULL;
681 1.14 skrll }
682 1.14 skrll }
683 1.14 skrll
684 1.14 skrll ring->queued = 0;
685 1.14 skrll ring->cur = ring->next = 0;
686 1.14 skrll }
687 1.14 skrll
688 1.14 skrll static void
689 1.14 skrll iwi_free_tx_ring(struct iwi_softc *sc, struct iwi_tx_ring *ring)
690 1.14 skrll {
691 1.14 skrll int i;
692 1.14 skrll
693 1.14 skrll if (ring->desc_map != NULL) {
694 1.14 skrll if (ring->desc != NULL) {
695 1.14 skrll bus_dmamap_unload(sc->sc_dmat, ring->desc_map);
696 1.14 skrll bus_dmamem_unmap(sc->sc_dmat, (caddr_t)ring->desc,
697 1.25 skrll IWI_TX_DESC_SIZE * ring->count);
698 1.14 skrll bus_dmamem_free(sc->sc_dmat, &ring->desc_seg, 1);
699 1.14 skrll }
700 1.14 skrll bus_dmamap_destroy(sc->sc_dmat, ring->desc_map);
701 1.14 skrll }
702 1.14 skrll
703 1.14 skrll for (i = 0; i < ring->count; i++) {
704 1.14 skrll if (ring->data[i].m != NULL) {
705 1.14 skrll bus_dmamap_unload(sc->sc_dmat, ring->data[i].map);
706 1.14 skrll m_freem(ring->data[i].m);
707 1.14 skrll }
708 1.14 skrll bus_dmamap_destroy(sc->sc_dmat, ring->data[i].map);
709 1.14 skrll }
710 1.14 skrll }
711 1.14 skrll
712 1.14 skrll static int
713 1.14 skrll iwi_alloc_rx_ring(struct iwi_softc *sc, struct iwi_rx_ring *ring,
714 1.14 skrll int count)
715 1.14 skrll {
716 1.14 skrll int i, error;
717 1.14 skrll
718 1.14 skrll ring->count = count;
719 1.14 skrll ring->cur = 0;
720 1.14 skrll
721 1.14 skrll ring->data = malloc(count * sizeof (struct iwi_rx_data), M_DEVBUF,
722 1.14 skrll M_NOWAIT | M_ZERO);
723 1.14 skrll if (ring->data == NULL) {
724 1.14 skrll aprint_error("%s: could not allocate soft data\n",
725 1.14 skrll sc->sc_dev.dv_xname);
726 1.14 skrll error = ENOMEM;
727 1.14 skrll goto fail;
728 1.14 skrll }
729 1.1 skrll
730 1.1 skrll /*
731 1.1 skrll * Allocate and map Rx buffers
732 1.1 skrll */
733 1.14 skrll for (i = 0; i < count; i++) {
734 1.1 skrll
735 1.1 skrll error = bus_dmamap_create(sc->sc_dmat, MCLBYTES, 1, MCLBYTES,
736 1.31 joerg 0, BUS_DMA_WAITOK | BUS_DMA_ALLOCNOW, &ring->data[i].map);
737 1.1 skrll if (error != 0) {
738 1.1 skrll aprint_error("%s: could not create rx buf DMA map",
739 1.1 skrll sc->sc_dev.dv_xname);
740 1.1 skrll goto fail;
741 1.1 skrll }
742 1.1 skrll
743 1.31 joerg if ((ring->data[i].m = iwi_alloc_rx_buf(sc)) == NULL) {
744 1.1 skrll error = ENOMEM;
745 1.1 skrll goto fail;
746 1.1 skrll }
747 1.1 skrll
748 1.34 scw error = bus_dmamap_load_mbuf(sc->sc_dmat, ring->data[i].map,
749 1.34 scw ring->data[i].m, BUS_DMA_READ | BUS_DMA_NOWAIT);
750 1.1 skrll if (error != 0) {
751 1.1 skrll aprint_error("%s: could not load rx buffer DMA map\n",
752 1.1 skrll sc->sc_dev.dv_xname);
753 1.1 skrll goto fail;
754 1.1 skrll }
755 1.1 skrll }
756 1.1 skrll
757 1.1 skrll return 0;
758 1.1 skrll
759 1.14 skrll fail: iwi_free_rx_ring(sc, ring);
760 1.1 skrll return error;
761 1.1 skrll }
762 1.1 skrll
763 1.1 skrll static void
764 1.14 skrll iwi_reset_rx_ring(struct iwi_softc *sc, struct iwi_rx_ring *ring)
765 1.14 skrll {
766 1.14 skrll ring->cur = 0;
767 1.14 skrll }
768 1.14 skrll
769 1.14 skrll static void
770 1.14 skrll iwi_free_rx_ring(struct iwi_softc *sc, struct iwi_rx_ring *ring)
771 1.1 skrll {
772 1.1 skrll int i;
773 1.1 skrll
774 1.14 skrll for (i = 0; i < ring->count; i++) {
775 1.14 skrll if (ring->data[i].m != NULL) {
776 1.14 skrll bus_dmamap_unload(sc->sc_dmat, ring->data[i].map);
777 1.14 skrll m_freem(ring->data[i].m);
778 1.1 skrll }
779 1.14 skrll bus_dmamap_destroy(sc->sc_dmat, ring->data[i].map);
780 1.1 skrll }
781 1.1 skrll }
782 1.1 skrll
783 1.15 skrll static void
784 1.15 skrll iwi_shutdown(void *arg)
785 1.15 skrll {
786 1.15 skrll struct iwi_softc *sc = (struct iwi_softc *)arg;
787 1.15 skrll struct ifnet *ifp = sc->sc_ic.ic_ifp;
788 1.15 skrll
789 1.15 skrll iwi_stop(ifp, 1);
790 1.15 skrll }
791 1.15 skrll
792 1.15 skrll static int
793 1.15 skrll iwi_suspend(struct iwi_softc *sc)
794 1.15 skrll {
795 1.15 skrll struct ifnet *ifp = sc->sc_ic.ic_ifp;
796 1.15 skrll
797 1.15 skrll iwi_stop(ifp, 1);
798 1.15 skrll
799 1.15 skrll return 0;
800 1.15 skrll }
801 1.15 skrll
802 1.15 skrll static int
803 1.15 skrll iwi_resume(struct iwi_softc *sc)
804 1.15 skrll {
805 1.15 skrll struct ifnet *ifp = sc->sc_ic.ic_ifp;
806 1.15 skrll pcireg_t data;
807 1.15 skrll
808 1.15 skrll /* clear device specific PCI configuration register 0x41 */
809 1.15 skrll data = pci_conf_read(sc->sc_pct, sc->sc_pcitag, 0x40);
810 1.15 skrll data &= ~0x0000ff00;
811 1.15 skrll pci_conf_write(sc->sc_pct, sc->sc_pcitag, 0x40, data);
812 1.15 skrll
813 1.15 skrll if (ifp->if_flags & IFF_UP) {
814 1.15 skrll iwi_init(ifp);
815 1.15 skrll if (ifp->if_flags & IFF_RUNNING)
816 1.15 skrll iwi_start(ifp);
817 1.15 skrll }
818 1.15 skrll
819 1.15 skrll return 0;
820 1.15 skrll }
821 1.15 skrll
822 1.15 skrll static void
823 1.15 skrll iwi_powerhook(int why, void *arg)
824 1.15 skrll {
825 1.15 skrll struct iwi_softc *sc = arg;
826 1.15 skrll int s;
827 1.15 skrll
828 1.15 skrll s = splnet();
829 1.15 skrll switch (why) {
830 1.15 skrll case PWR_SUSPEND:
831 1.15 skrll case PWR_STANDBY:
832 1.15 skrll iwi_suspend(sc);
833 1.15 skrll break;
834 1.15 skrll case PWR_RESUME:
835 1.15 skrll iwi_resume(sc);
836 1.15 skrll break;
837 1.15 skrll case PWR_SOFTSUSPEND:
838 1.15 skrll case PWR_SOFTSTANDBY:
839 1.15 skrll case PWR_SOFTRESUME:
840 1.15 skrll break;
841 1.15 skrll }
842 1.15 skrll splx(s);
843 1.15 skrll }
844 1.15 skrll
845 1.38 skrll static struct ieee80211_node *
846 1.38 skrll iwi_node_alloc(struct ieee80211_node_table *nt)
847 1.38 skrll {
848 1.38 skrll struct iwi_node *in;
849 1.38 skrll
850 1.38 skrll in = malloc(sizeof (struct iwi_node), M_80211_NODE, M_NOWAIT | M_ZERO);
851 1.38 skrll if (in == NULL)
852 1.38 skrll return NULL;
853 1.38 skrll
854 1.38 skrll in->in_station = -1;
855 1.38 skrll
856 1.38 skrll return &in->in_node;
857 1.38 skrll }
858 1.38 skrll
859 1.38 skrll static int
860 1.38 skrll iwi_alloc_unr(struct iwi_softc *sc)
861 1.38 skrll {
862 1.38 skrll int i;
863 1.38 skrll
864 1.38 skrll for (i = 0; i < IWI_MAX_IBSSNODE - 1; i++)
865 1.38 skrll if ((sc->sc_unr & (1 << i)) == 0) {
866 1.38 skrll sc->sc_unr |= 1 << i;
867 1.38 skrll return i;
868 1.38 skrll }
869 1.38 skrll
870 1.38 skrll return -1;
871 1.38 skrll }
872 1.38 skrll
873 1.38 skrll static void
874 1.38 skrll iwi_free_unr(struct iwi_softc *sc, int r)
875 1.38 skrll {
876 1.38 skrll
877 1.38 skrll sc->sc_unr &= 1 << r;
878 1.38 skrll }
879 1.38 skrll
880 1.38 skrll static void
881 1.38 skrll iwi_node_free(struct ieee80211_node *ni)
882 1.38 skrll {
883 1.38 skrll struct ieee80211com *ic = ni->ni_ic;
884 1.38 skrll struct iwi_softc *sc = ic->ic_ifp->if_softc;
885 1.38 skrll struct iwi_node *in = (struct iwi_node *)ni;
886 1.38 skrll
887 1.38 skrll if (in->in_station != -1)
888 1.38 skrll iwi_free_unr(sc, in->in_station);
889 1.38 skrll
890 1.38 skrll sc->sc_node_free(ni);
891 1.38 skrll }
892 1.38 skrll
893 1.1 skrll static int
894 1.1 skrll iwi_media_change(struct ifnet *ifp)
895 1.1 skrll {
896 1.1 skrll int error;
897 1.1 skrll
898 1.1 skrll error = ieee80211_media_change(ifp);
899 1.1 skrll if (error != ENETRESET)
900 1.1 skrll return error;
901 1.1 skrll
902 1.1 skrll if ((ifp->if_flags & (IFF_UP | IFF_RUNNING)) == (IFF_UP | IFF_RUNNING))
903 1.1 skrll iwi_init(ifp);
904 1.1 skrll
905 1.1 skrll return 0;
906 1.1 skrll }
907 1.1 skrll
908 1.20 skrll /*
909 1.38 skrll * The firmware automatically adapts the transmit speed. We report its current
910 1.38 skrll * value here.
911 1.20 skrll */
912 1.1 skrll static void
913 1.1 skrll iwi_media_status(struct ifnet *ifp, struct ifmediareq *imr)
914 1.1 skrll {
915 1.1 skrll struct iwi_softc *sc = ifp->if_softc;
916 1.1 skrll struct ieee80211com *ic = &sc->sc_ic;
917 1.1 skrll #define N(a) (sizeof (a) / sizeof (a[0]))
918 1.1 skrll static const struct {
919 1.24 skrll uint32_t val;
920 1.1 skrll int rate;
921 1.1 skrll } rates[] = {
922 1.1 skrll { IWI_RATE_DS1, 2 },
923 1.1 skrll { IWI_RATE_DS2, 4 },
924 1.1 skrll { IWI_RATE_DS5, 11 },
925 1.1 skrll { IWI_RATE_DS11, 22 },
926 1.1 skrll { IWI_RATE_OFDM6, 12 },
927 1.1 skrll { IWI_RATE_OFDM9, 18 },
928 1.1 skrll { IWI_RATE_OFDM12, 24 },
929 1.1 skrll { IWI_RATE_OFDM18, 36 },
930 1.1 skrll { IWI_RATE_OFDM24, 48 },
931 1.1 skrll { IWI_RATE_OFDM36, 72 },
932 1.1 skrll { IWI_RATE_OFDM48, 96 },
933 1.1 skrll { IWI_RATE_OFDM54, 108 },
934 1.1 skrll };
935 1.24 skrll uint32_t val;
936 1.1 skrll int rate, i;
937 1.1 skrll
938 1.1 skrll imr->ifm_status = IFM_AVALID;
939 1.1 skrll imr->ifm_active = IFM_IEEE80211;
940 1.1 skrll if (ic->ic_state == IEEE80211_S_RUN)
941 1.1 skrll imr->ifm_status |= IFM_ACTIVE;
942 1.1 skrll
943 1.1 skrll /* read current transmission rate from adapter */
944 1.1 skrll val = CSR_READ_4(sc, IWI_CSR_CURRENT_TX_RATE);
945 1.1 skrll
946 1.1 skrll /* convert rate to 802.11 rate */
947 1.1 skrll for (i = 0; i < N(rates) && rates[i].val != val; i++);
948 1.1 skrll rate = (i < N(rates)) ? rates[i].rate : 0;
949 1.1 skrll
950 1.1 skrll imr->ifm_active |= ieee80211_rate2media(ic, rate, ic->ic_curmode);
951 1.1 skrll switch (ic->ic_opmode) {
952 1.1 skrll case IEEE80211_M_STA:
953 1.1 skrll break;
954 1.1 skrll
955 1.1 skrll case IEEE80211_M_IBSS:
956 1.1 skrll imr->ifm_active |= IFM_IEEE80211_ADHOC;
957 1.1 skrll break;
958 1.1 skrll
959 1.1 skrll case IEEE80211_M_MONITOR:
960 1.1 skrll imr->ifm_active |= IFM_IEEE80211_MONITOR;
961 1.1 skrll break;
962 1.1 skrll
963 1.1 skrll case IEEE80211_M_AHDEMO:
964 1.1 skrll case IEEE80211_M_HOSTAP:
965 1.1 skrll /* should not get there */
966 1.1 skrll break;
967 1.1 skrll }
968 1.1 skrll #undef N
969 1.1 skrll }
970 1.1 skrll
971 1.1 skrll static int
972 1.1 skrll iwi_newstate(struct ieee80211com *ic, enum ieee80211_state nstate, int arg)
973 1.1 skrll {
974 1.9 dyoung struct iwi_softc *sc = ic->ic_ifp->if_softc;
975 1.1 skrll
976 1.1 skrll switch (nstate) {
977 1.1 skrll case IEEE80211_S_SCAN:
978 1.12 christos if (sc->flags & IWI_FLAG_SCANNING)
979 1.12 christos break;
980 1.12 christos
981 1.12 christos ieee80211_node_table_reset(&ic->ic_scan);
982 1.12 christos ic->ic_flags |= IEEE80211_F_SCAN | IEEE80211_F_ASCAN;
983 1.12 christos sc->flags |= IWI_FLAG_SCANNING;
984 1.1 skrll iwi_scan(sc);
985 1.1 skrll break;
986 1.1 skrll
987 1.1 skrll case IEEE80211_S_AUTH:
988 1.1 skrll iwi_auth_and_assoc(sc);
989 1.1 skrll break;
990 1.1 skrll
991 1.1 skrll case IEEE80211_S_RUN:
992 1.1 skrll if (ic->ic_opmode == IEEE80211_M_IBSS)
993 1.1 skrll ieee80211_new_state(ic, IEEE80211_S_AUTH, -1);
994 1.8 sekiya else if (ic->ic_opmode == IEEE80211_M_MONITOR)
995 1.8 sekiya iwi_set_chan(sc, ic->ic_ibss_chan);
996 1.12 christos
997 1.12 christos return (*sc->sc_newstate)(ic, nstate,
998 1.12 christos IEEE80211_FC0_SUBTYPE_ASSOC_RESP);
999 1.1 skrll
1000 1.1 skrll case IEEE80211_S_ASSOC:
1001 1.12 christos break;
1002 1.12 christos
1003 1.1 skrll case IEEE80211_S_INIT:
1004 1.12 christos sc->flags &= ~IWI_FLAG_SCANNING;
1005 1.19 skrll return (*sc->sc_newstate)(ic, nstate, arg);
1006 1.1 skrll }
1007 1.1 skrll
1008 1.1 skrll ic->ic_state = nstate;
1009 1.1 skrll return 0;
1010 1.1 skrll }
1011 1.1 skrll
1012 1.1 skrll /*
1013 1.38 skrll * WME parameters coming from IEEE 802.11e specification. These values are
1014 1.38 skrll * already declared in ieee80211_proto.c, but they are static so they can't
1015 1.38 skrll * be reused here.
1016 1.38 skrll */
1017 1.38 skrll static const struct wmeParams iwi_wme_cck_params[WME_NUM_AC] = {
1018 1.38 skrll { 0, 3, 5, 7, 0 }, /* WME_AC_BE */
1019 1.38 skrll { 0, 3, 5, 10, 0 }, /* WME_AC_BK */
1020 1.38 skrll { 0, 2, 4, 5, 188 }, /* WME_AC_VI */
1021 1.38 skrll { 0, 2, 3, 4, 102 } /* WME_AC_VO */
1022 1.38 skrll };
1023 1.38 skrll
1024 1.38 skrll static const struct wmeParams iwi_wme_ofdm_params[WME_NUM_AC] = {
1025 1.38 skrll { 0, 3, 4, 6, 0 }, /* WME_AC_BE */
1026 1.38 skrll { 0, 3, 4, 10, 0 }, /* WME_AC_BK */
1027 1.38 skrll { 0, 2, 3, 4, 94 }, /* WME_AC_VI */
1028 1.38 skrll { 0, 2, 2, 3, 47 } /* WME_AC_VO */
1029 1.38 skrll };
1030 1.38 skrll
1031 1.38 skrll static int
1032 1.38 skrll iwi_wme_update(struct ieee80211com *ic)
1033 1.38 skrll {
1034 1.38 skrll #define IWI_EXP2(v) htole16((1 << (v)) - 1)
1035 1.38 skrll #define IWI_USEC(v) htole16(IEEE80211_TXOP_TO_US(v))
1036 1.38 skrll struct iwi_softc *sc = ic->ic_ifp->if_softc;
1037 1.38 skrll struct iwi_wme_params wme[3];
1038 1.38 skrll const struct wmeParams *wmep;
1039 1.38 skrll int ac;
1040 1.38 skrll
1041 1.38 skrll /*
1042 1.38 skrll * We shall not override firmware default WME values if WME is not
1043 1.38 skrll * actually enabled.
1044 1.38 skrll */
1045 1.38 skrll if (!(ic->ic_flags & IEEE80211_F_WME))
1046 1.38 skrll return 0;
1047 1.38 skrll
1048 1.38 skrll for (ac = 0; ac < WME_NUM_AC; ac++) {
1049 1.38 skrll /* set WME values for current operating mode */
1050 1.38 skrll wmep = &ic->ic_wme.wme_chanParams.cap_wmeParams[ac];
1051 1.38 skrll wme[0].aifsn[ac] = wmep->wmep_aifsn;
1052 1.38 skrll wme[0].cwmin[ac] = IWI_EXP2(wmep->wmep_logcwmin);
1053 1.38 skrll wme[0].cwmax[ac] = IWI_EXP2(wmep->wmep_logcwmax);
1054 1.38 skrll wme[0].burst[ac] = IWI_USEC(wmep->wmep_txopLimit);
1055 1.38 skrll wme[0].acm[ac] = wmep->wmep_acm;
1056 1.38 skrll
1057 1.38 skrll /* set WME values for CCK modulation */
1058 1.38 skrll wmep = &iwi_wme_cck_params[ac];
1059 1.38 skrll wme[1].aifsn[ac] = wmep->wmep_aifsn;
1060 1.38 skrll wme[1].cwmin[ac] = IWI_EXP2(wmep->wmep_logcwmin);
1061 1.38 skrll wme[1].cwmax[ac] = IWI_EXP2(wmep->wmep_logcwmax);
1062 1.38 skrll wme[1].burst[ac] = IWI_USEC(wmep->wmep_txopLimit);
1063 1.38 skrll wme[1].acm[ac] = wmep->wmep_acm;
1064 1.38 skrll
1065 1.38 skrll /* set WME values for OFDM modulation */
1066 1.38 skrll wmep = &iwi_wme_ofdm_params[ac];
1067 1.38 skrll wme[2].aifsn[ac] = wmep->wmep_aifsn;
1068 1.38 skrll wme[2].cwmin[ac] = IWI_EXP2(wmep->wmep_logcwmin);
1069 1.38 skrll wme[2].cwmax[ac] = IWI_EXP2(wmep->wmep_logcwmax);
1070 1.38 skrll wme[2].burst[ac] = IWI_USEC(wmep->wmep_txopLimit);
1071 1.38 skrll wme[2].acm[ac] = wmep->wmep_acm;
1072 1.38 skrll }
1073 1.38 skrll
1074 1.38 skrll DPRINTF(("Setting WME parameters\n"));
1075 1.38 skrll return iwi_cmd(sc, IWI_CMD_SET_WME_PARAMS, wme, sizeof wme, 1);
1076 1.38 skrll #undef IWI_USEC
1077 1.38 skrll #undef IWI_EXP2
1078 1.38 skrll }
1079 1.38 skrll
1080 1.38 skrll /*
1081 1.1 skrll * Read 16 bits at address 'addr' from the serial EEPROM.
1082 1.1 skrll */
1083 1.24 skrll static uint16_t
1084 1.24 skrll iwi_read_prom_word(struct iwi_softc *sc, uint8_t addr)
1085 1.1 skrll {
1086 1.24 skrll uint32_t tmp;
1087 1.24 skrll uint16_t val;
1088 1.1 skrll int n;
1089 1.1 skrll
1090 1.1 skrll /* Clock C once before the first command */
1091 1.1 skrll IWI_EEPROM_CTL(sc, 0);
1092 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_S);
1093 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_S | IWI_EEPROM_C);
1094 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_S);
1095 1.1 skrll
1096 1.1 skrll /* Write start bit (1) */
1097 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_S | IWI_EEPROM_D);
1098 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_S | IWI_EEPROM_D | IWI_EEPROM_C);
1099 1.1 skrll
1100 1.1 skrll /* Write READ opcode (10) */
1101 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_S | IWI_EEPROM_D);
1102 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_S | IWI_EEPROM_D | IWI_EEPROM_C);
1103 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_S);
1104 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_S | IWI_EEPROM_C);
1105 1.1 skrll
1106 1.1 skrll /* Write address A7-A0 */
1107 1.1 skrll for (n = 7; n >= 0; n--) {
1108 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_S |
1109 1.1 skrll (((addr >> n) & 1) << IWI_EEPROM_SHIFT_D));
1110 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_S |
1111 1.1 skrll (((addr >> n) & 1) << IWI_EEPROM_SHIFT_D) | IWI_EEPROM_C);
1112 1.1 skrll }
1113 1.1 skrll
1114 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_S);
1115 1.1 skrll
1116 1.1 skrll /* Read data Q15-Q0 */
1117 1.1 skrll val = 0;
1118 1.1 skrll for (n = 15; n >= 0; n--) {
1119 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_S | IWI_EEPROM_C);
1120 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_S);
1121 1.1 skrll tmp = MEM_READ_4(sc, IWI_MEM_EEPROM_CTL);
1122 1.1 skrll val |= ((tmp & IWI_EEPROM_Q) >> IWI_EEPROM_SHIFT_Q) << n;
1123 1.1 skrll }
1124 1.1 skrll
1125 1.1 skrll IWI_EEPROM_CTL(sc, 0);
1126 1.1 skrll
1127 1.1 skrll /* Clear Chip Select and clock C */
1128 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_S);
1129 1.1 skrll IWI_EEPROM_CTL(sc, 0);
1130 1.1 skrll IWI_EEPROM_CTL(sc, IWI_EEPROM_C);
1131 1.1 skrll
1132 1.33 skrll return val;
1133 1.1 skrll }
1134 1.1 skrll
1135 1.1 skrll /*
1136 1.1 skrll * XXX: Hack to set the current channel to the value advertised in beacons or
1137 1.1 skrll * probe responses. Only used during AP detection.
1138 1.1 skrll */
1139 1.1 skrll static void
1140 1.1 skrll iwi_fix_channel(struct ieee80211com *ic, struct mbuf *m)
1141 1.1 skrll {
1142 1.1 skrll struct ieee80211_frame *wh;
1143 1.24 skrll uint8_t subtype;
1144 1.24 skrll uint8_t *frm, *efrm;
1145 1.1 skrll
1146 1.1 skrll wh = mtod(m, struct ieee80211_frame *);
1147 1.1 skrll
1148 1.1 skrll if ((wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK) != IEEE80211_FC0_TYPE_MGT)
1149 1.1 skrll return;
1150 1.1 skrll
1151 1.1 skrll subtype = wh->i_fc[0] & IEEE80211_FC0_SUBTYPE_MASK;
1152 1.1 skrll
1153 1.1 skrll if (subtype != IEEE80211_FC0_SUBTYPE_BEACON &&
1154 1.1 skrll subtype != IEEE80211_FC0_SUBTYPE_PROBE_RESP)
1155 1.1 skrll return;
1156 1.1 skrll
1157 1.24 skrll frm = (uint8_t *)(wh + 1);
1158 1.24 skrll efrm = mtod(m, uint8_t *) + m->m_len;
1159 1.1 skrll
1160 1.1 skrll frm += 12; /* skip tstamp, bintval and capinfo fields */
1161 1.1 skrll while (frm < efrm) {
1162 1.1 skrll if (*frm == IEEE80211_ELEMID_DSPARMS)
1163 1.1 skrll #if IEEE80211_CHAN_MAX < 255
1164 1.1 skrll if (frm[2] <= IEEE80211_CHAN_MAX)
1165 1.1 skrll #endif
1166 1.38 skrll ic->ic_curchan = &ic->ic_channels[frm[2]];
1167 1.1 skrll
1168 1.1 skrll frm += frm[1] + 2;
1169 1.1 skrll }
1170 1.1 skrll }
1171 1.1 skrll
1172 1.31 joerg static struct mbuf *
1173 1.31 joerg iwi_alloc_rx_buf(struct iwi_softc *sc)
1174 1.31 joerg {
1175 1.31 joerg struct mbuf *m;
1176 1.31 joerg
1177 1.31 joerg MGETHDR(m, M_DONTWAIT, MT_DATA);
1178 1.31 joerg if (m == NULL) {
1179 1.31 joerg aprint_error("%s: could not allocate rx mbuf\n",
1180 1.31 joerg sc->sc_dev.dv_xname);
1181 1.31 joerg return NULL;
1182 1.31 joerg }
1183 1.31 joerg
1184 1.31 joerg MCLGET(m, M_DONTWAIT);
1185 1.31 joerg if (!(m->m_flags & M_EXT)) {
1186 1.31 joerg aprint_error("%s: could not allocate rx mbuf cluster\n",
1187 1.31 joerg sc->sc_dev.dv_xname);
1188 1.31 joerg m_freem(m);
1189 1.31 joerg return NULL;
1190 1.31 joerg }
1191 1.31 joerg
1192 1.34 scw m->m_pkthdr.len = m->m_len = m->m_ext.ext_size;
1193 1.31 joerg return m;
1194 1.31 joerg }
1195 1.31 joerg
1196 1.1 skrll static void
1197 1.14 skrll iwi_frame_intr(struct iwi_softc *sc, struct iwi_rx_data *data, int i,
1198 1.1 skrll struct iwi_frame *frame)
1199 1.1 skrll {
1200 1.1 skrll struct ieee80211com *ic = &sc->sc_ic;
1201 1.12 christos struct ifnet *ifp = ic->ic_ifp;
1202 1.31 joerg struct mbuf *m, *m_new;
1203 1.12 christos struct ieee80211_frame *wh;
1204 1.1 skrll struct ieee80211_node *ni;
1205 1.1 skrll int error;
1206 1.1 skrll
1207 1.14 skrll DPRINTFN(5, ("received frame len=%u chan=%u rssi=%u\n",
1208 1.14 skrll le16toh(frame->len), frame->chan, frame->rssi_dbm));
1209 1.1 skrll
1210 1.12 christos if (le16toh(frame->len) < sizeof (struct ieee80211_frame) ||
1211 1.1 skrll le16toh(frame->len) > MCLBYTES) {
1212 1.14 skrll DPRINTF(("%s: bad frame length\n", sc->sc_dev.dv_xname));
1213 1.14 skrll ifp->if_ierrors++;
1214 1.14 skrll return;
1215 1.1 skrll }
1216 1.1 skrll
1217 1.31 joerg /*
1218 1.31 joerg * Try to allocate a new mbuf for this ring element and
1219 1.31 joerg * load it before processing the current mbuf. If the ring
1220 1.31 joerg * element cannot be reloaded, drop the received packet
1221 1.31 joerg * and reuse the old mbuf. In the unlikely case that
1222 1.31 joerg * the old mbuf can't be reloaded either, explicitly panic.
1223 1.31 joerg *
1224 1.31 joerg * XXX Reorganize buffer by moving elements from the logical
1225 1.31 joerg * end of the ring to the front instead of dropping.
1226 1.31 joerg */
1227 1.31 joerg if ((m_new = iwi_alloc_rx_buf(sc)) == NULL) {
1228 1.31 joerg ifp->if_ierrors++;
1229 1.31 joerg return;
1230 1.31 joerg }
1231 1.31 joerg
1232 1.14 skrll bus_dmamap_unload(sc->sc_dmat, data->map);
1233 1.1 skrll
1234 1.34 scw error = bus_dmamap_load_mbuf(sc->sc_dmat, data->map, m_new,
1235 1.34 scw BUS_DMA_READ | BUS_DMA_NOWAIT);
1236 1.31 joerg if (error != 0) {
1237 1.31 joerg aprint_error("%s: could not load rx buf DMA map\n",
1238 1.31 joerg sc->sc_dev.dv_xname);
1239 1.31 joerg m_freem(m_new);
1240 1.31 joerg ifp->if_ierrors++;
1241 1.34 scw error = bus_dmamap_load_mbuf(sc->sc_dmat, data->map,
1242 1.34 scw data->m, BUS_DMA_READ | BUS_DMA_NOWAIT);
1243 1.31 joerg if (error)
1244 1.31 joerg panic("%s: unable to remap rx buf",
1245 1.31 joerg sc->sc_dev.dv_xname);
1246 1.31 joerg return;
1247 1.31 joerg }
1248 1.31 joerg
1249 1.31 joerg /*
1250 1.31 joerg * New mbuf successfully loaded, update RX ring and continue
1251 1.31 joerg * processing.
1252 1.31 joerg */
1253 1.31 joerg m = data->m;
1254 1.31 joerg data->m = m_new;
1255 1.31 joerg CSR_WRITE_4(sc, IWI_CSR_RX_BASE + i * 4, data->map->dm_segs[0].ds_addr);
1256 1.31 joerg
1257 1.1 skrll /* Finalize mbuf */
1258 1.1 skrll m->m_pkthdr.rcvif = ifp;
1259 1.1 skrll m->m_pkthdr.len = m->m_len = sizeof (struct iwi_hdr) +
1260 1.1 skrll sizeof (struct iwi_frame) + le16toh(frame->len);
1261 1.1 skrll
1262 1.1 skrll m_adj(m, sizeof (struct iwi_hdr) + sizeof (struct iwi_frame));
1263 1.1 skrll
1264 1.12 christos if (ic->ic_state == IEEE80211_S_SCAN)
1265 1.12 christos iwi_fix_channel(ic, m);
1266 1.1 skrll
1267 1.1 skrll #if NBPFILTER > 0
1268 1.1 skrll if (sc->sc_drvbpf != NULL) {
1269 1.1 skrll struct iwi_rx_radiotap_header *tap = &sc->sc_rxtap;
1270 1.14 skrll
1271 1.12 christos tap->wr_flags = 0;
1272 1.12 christos tap->wr_rate = frame->rate;
1273 1.12 christos tap->wr_chan_freq =
1274 1.12 christos htole16(ic->ic_channels[frame->chan].ic_freq);
1275 1.12 christos tap->wr_chan_flags =
1276 1.12 christos htole16(ic->ic_channels[frame->chan].ic_flags);
1277 1.12 christos tap->wr_antsignal = frame->signal;
1278 1.12 christos tap->wr_antenna = frame->antenna;
1279 1.1 skrll
1280 1.21 skrll bpf_mtap2(sc->sc_drvbpf, tap, sc->sc_rxtap_len, m);
1281 1.1 skrll }
1282 1.1 skrll #endif
1283 1.1 skrll
1284 1.12 christos wh = mtod(m, struct ieee80211_frame *);
1285 1.12 christos ni = ieee80211_find_rxnode(ic, (struct ieee80211_frame_min *)wh);
1286 1.5 perry
1287 1.1 skrll /* Send the frame to the upper layer */
1288 1.12 christos ieee80211_input(ic, m, ni, frame->rssi_dbm, 0);
1289 1.1 skrll
1290 1.12 christos /* node is no longer needed */
1291 1.9 dyoung ieee80211_free_node(ni);
1292 1.1 skrll }
1293 1.1 skrll
1294 1.1 skrll static void
1295 1.25 skrll iwi_notification_intr(struct iwi_softc *sc, struct iwi_notif *notif)
1296 1.1 skrll {
1297 1.1 skrll struct ieee80211com *ic = &sc->sc_ic;
1298 1.1 skrll struct iwi_notif_scan_channel *chan;
1299 1.1 skrll struct iwi_notif_scan_complete *scan;
1300 1.1 skrll struct iwi_notif_authentication *auth;
1301 1.1 skrll struct iwi_notif_association *assoc;
1302 1.1 skrll
1303 1.1 skrll switch (notif->type) {
1304 1.1 skrll case IWI_NOTIF_TYPE_SCAN_CHANNEL:
1305 1.1 skrll chan = (struct iwi_notif_scan_channel *)(notif + 1);
1306 1.1 skrll
1307 1.23 skrll DPRINTFN(2, ("Finished scanning channel (%u)\n", chan->nchan));
1308 1.1 skrll break;
1309 1.1 skrll
1310 1.1 skrll case IWI_NOTIF_TYPE_SCAN_COMPLETE:
1311 1.1 skrll scan = (struct iwi_notif_scan_complete *)(notif + 1);
1312 1.1 skrll
1313 1.1 skrll DPRINTFN(2, ("Scan completed (%u, %u)\n", scan->nchan,
1314 1.1 skrll scan->status));
1315 1.1 skrll
1316 1.8 sekiya /* monitor mode uses scan to set the channel ... */
1317 1.12 christos if (ic->ic_opmode != IEEE80211_M_MONITOR) {
1318 1.12 christos sc->flags &= ~IWI_FLAG_SCANNING;
1319 1.8 sekiya ieee80211_end_scan(ic);
1320 1.12 christos } else
1321 1.8 sekiya iwi_set_chan(sc, ic->ic_ibss_chan);
1322 1.1 skrll break;
1323 1.1 skrll
1324 1.1 skrll case IWI_NOTIF_TYPE_AUTHENTICATION:
1325 1.1 skrll auth = (struct iwi_notif_authentication *)(notif + 1);
1326 1.1 skrll
1327 1.1 skrll DPRINTFN(2, ("Authentication (%u)\n", auth->state));
1328 1.1 skrll
1329 1.1 skrll switch (auth->state) {
1330 1.1 skrll case IWI_AUTHENTICATED:
1331 1.38 skrll ieee80211_node_authorize(ic->ic_bss);
1332 1.1 skrll ieee80211_new_state(ic, IEEE80211_S_ASSOC, -1);
1333 1.1 skrll break;
1334 1.1 skrll
1335 1.1 skrll case IWI_DEAUTHENTICATED:
1336 1.1 skrll break;
1337 1.1 skrll
1338 1.1 skrll default:
1339 1.1 skrll aprint_error("%s: unknown authentication state %u\n",
1340 1.1 skrll sc->sc_dev.dv_xname, auth->state);
1341 1.1 skrll }
1342 1.1 skrll break;
1343 1.1 skrll
1344 1.1 skrll case IWI_NOTIF_TYPE_ASSOCIATION:
1345 1.1 skrll assoc = (struct iwi_notif_association *)(notif + 1);
1346 1.1 skrll
1347 1.1 skrll DPRINTFN(2, ("Association (%u, %u)\n", assoc->state,
1348 1.1 skrll assoc->status));
1349 1.1 skrll
1350 1.1 skrll switch (assoc->state) {
1351 1.12 christos case IWI_AUTHENTICATED:
1352 1.12 christos /* re-association, do nothing */
1353 1.12 christos break;
1354 1.12 christos
1355 1.1 skrll case IWI_ASSOCIATED:
1356 1.1 skrll ieee80211_new_state(ic, IEEE80211_S_RUN, -1);
1357 1.1 skrll break;
1358 1.1 skrll
1359 1.1 skrll case IWI_DEASSOCIATED:
1360 1.12 christos ieee80211_begin_scan(ic, 1);
1361 1.1 skrll break;
1362 1.1 skrll
1363 1.1 skrll default:
1364 1.1 skrll aprint_error("%s: unknown association state %u\n",
1365 1.1 skrll sc->sc_dev.dv_xname, assoc->state);
1366 1.1 skrll }
1367 1.1 skrll break;
1368 1.1 skrll
1369 1.1 skrll case IWI_NOTIF_TYPE_CALIBRATION:
1370 1.1 skrll case IWI_NOTIF_TYPE_BEACON:
1371 1.1 skrll case IWI_NOTIF_TYPE_NOISE:
1372 1.1 skrll DPRINTFN(5, ("Notification (%u)\n", notif->type));
1373 1.1 skrll break;
1374 1.1 skrll
1375 1.1 skrll default:
1376 1.1 skrll aprint_error("%s: unknown notification type %u\n",
1377 1.1 skrll sc->sc_dev.dv_xname, notif->type);
1378 1.1 skrll }
1379 1.1 skrll }
1380 1.1 skrll
1381 1.1 skrll static void
1382 1.1 skrll iwi_rx_intr(struct iwi_softc *sc)
1383 1.1 skrll {
1384 1.14 skrll struct iwi_rx_data *data;
1385 1.1 skrll struct iwi_hdr *hdr;
1386 1.14 skrll uint32_t hw;
1387 1.1 skrll
1388 1.14 skrll hw = CSR_READ_4(sc, IWI_CSR_RX_RIDX);
1389 1.1 skrll
1390 1.14 skrll for (; sc->rxq.cur != hw;) {
1391 1.14 skrll data = &sc->rxq.data[sc->rxq.cur];
1392 1.1 skrll
1393 1.14 skrll bus_dmamap_sync(sc->sc_dmat, data->map, 0,
1394 1.34 scw data->map->dm_mapsize, BUS_DMASYNC_POSTREAD);
1395 1.1 skrll
1396 1.14 skrll hdr = mtod(data->m, struct iwi_hdr *);
1397 1.1 skrll
1398 1.1 skrll switch (hdr->type) {
1399 1.1 skrll case IWI_HDR_TYPE_FRAME:
1400 1.14 skrll iwi_frame_intr(sc, data, sc->rxq.cur,
1401 1.1 skrll (struct iwi_frame *)(hdr + 1));
1402 1.1 skrll break;
1403 1.1 skrll
1404 1.1 skrll case IWI_HDR_TYPE_NOTIF:
1405 1.25 skrll iwi_notification_intr(sc,
1406 1.1 skrll (struct iwi_notif *)(hdr + 1));
1407 1.1 skrll break;
1408 1.1 skrll
1409 1.1 skrll default:
1410 1.1 skrll aprint_error("%s: unknown hdr type %u\n",
1411 1.1 skrll sc->sc_dev.dv_xname, hdr->type);
1412 1.1 skrll }
1413 1.14 skrll
1414 1.14 skrll DPRINTFN(15, ("rx done idx=%u\n", sc->rxq.cur));
1415 1.14 skrll
1416 1.14 skrll sc->rxq.cur = (sc->rxq.cur + 1) % sc->rxq.count;
1417 1.1 skrll }
1418 1.1 skrll
1419 1.14 skrll
1420 1.1 skrll /* Tell the firmware what we have processed */
1421 1.14 skrll hw = (hw == 0) ? sc->rxq.count - 1 : hw - 1;
1422 1.14 skrll CSR_WRITE_4(sc, IWI_CSR_RX_WIDX, hw);
1423 1.1 skrll }
1424 1.1 skrll
1425 1.1 skrll static void
1426 1.38 skrll iwi_tx_intr(struct iwi_softc *sc, struct iwi_tx_ring *txq)
1427 1.1 skrll {
1428 1.9 dyoung struct ifnet *ifp = &sc->sc_if;
1429 1.14 skrll struct iwi_tx_data *data;
1430 1.24 skrll uint32_t hw;
1431 1.1 skrll
1432 1.38 skrll hw = CSR_READ_4(sc, txq->csr_ridx);
1433 1.1 skrll
1434 1.38 skrll for (; txq->next != hw;) {
1435 1.38 skrll data = &txq->data[txq->next];
1436 1.1 skrll
1437 1.14 skrll bus_dmamap_sync(sc->sc_dmat, data->map, 0,
1438 1.34 scw data->map->dm_mapsize, BUS_DMASYNC_POSTWRITE);
1439 1.14 skrll bus_dmamap_unload(sc->sc_dmat, data->map);
1440 1.14 skrll m_freem(data->m);
1441 1.14 skrll data->m = NULL;
1442 1.14 skrll ieee80211_free_node(data->ni);
1443 1.14 skrll data->ni = NULL;
1444 1.1 skrll
1445 1.38 skrll DPRINTFN(15, ("tx done idx=%u\n", txq->next));
1446 1.1 skrll
1447 1.12 christos ifp->if_opackets++;
1448 1.1 skrll
1449 1.38 skrll txq->queued--;
1450 1.38 skrll txq->next = (txq->next + 1) % txq->count;
1451 1.1 skrll }
1452 1.1 skrll
1453 1.14 skrll sc->sc_tx_timer = 0;
1454 1.14 skrll ifp->if_flags &= ~IFF_OACTIVE;
1455 1.1 skrll
1456 1.1 skrll /* Call start() since some buffer descriptors have been released */
1457 1.1 skrll (*ifp->if_start)(ifp);
1458 1.1 skrll }
1459 1.1 skrll
1460 1.1 skrll static int
1461 1.1 skrll iwi_intr(void *arg)
1462 1.1 skrll {
1463 1.1 skrll struct iwi_softc *sc = arg;
1464 1.24 skrll uint32_t r;
1465 1.1 skrll
1466 1.1 skrll if ((r = CSR_READ_4(sc, IWI_CSR_INTR)) == 0 || r == 0xffffffff)
1467 1.1 skrll return 0;
1468 1.1 skrll
1469 1.29 skrll /* Acknowledge interrupts */
1470 1.29 skrll CSR_WRITE_4(sc, IWI_CSR_INTR, r);
1471 1.1 skrll
1472 1.1 skrll if (r & (IWI_INTR_FATAL_ERROR | IWI_INTR_PARITY_ERROR)) {
1473 1.1 skrll aprint_error("%s: fatal error\n", sc->sc_dev.dv_xname);
1474 1.36 skrll if (r & IWI_INTR_FATAL_ERROR)
1475 1.36 skrll iwi_error_log(sc);
1476 1.13 skrll sc->sc_ic.ic_ifp->if_flags &= ~IFF_UP;
1477 1.9 dyoung iwi_stop(&sc->sc_if, 1);
1478 1.1 skrll }
1479 1.1 skrll
1480 1.1 skrll if (r & IWI_INTR_FW_INITED) {
1481 1.1 skrll if (!(r & (IWI_INTR_FATAL_ERROR | IWI_INTR_PARITY_ERROR)))
1482 1.1 skrll wakeup(sc);
1483 1.1 skrll }
1484 1.1 skrll
1485 1.1 skrll if (r & IWI_INTR_RADIO_OFF) {
1486 1.1 skrll DPRINTF(("radio transmitter off\n"));
1487 1.13 skrll sc->sc_ic.ic_ifp->if_flags &= ~IFF_UP;
1488 1.9 dyoung iwi_stop(&sc->sc_if, 1);
1489 1.1 skrll }
1490 1.1 skrll
1491 1.14 skrll if (r & IWI_INTR_CMD_DONE)
1492 1.1 skrll wakeup(sc);
1493 1.1 skrll
1494 1.14 skrll if (r & IWI_INTR_TX1_DONE)
1495 1.38 skrll iwi_tx_intr(sc, &sc->txq[0]);
1496 1.38 skrll
1497 1.38 skrll if (r & IWI_INTR_TX2_DONE)
1498 1.38 skrll iwi_tx_intr(sc, &sc->txq[1]);
1499 1.38 skrll
1500 1.38 skrll if (r & IWI_INTR_TX3_DONE)
1501 1.38 skrll iwi_tx_intr(sc, &sc->txq[2]);
1502 1.38 skrll
1503 1.38 skrll if (r & IWI_INTR_TX4_DONE)
1504 1.38 skrll iwi_tx_intr(sc, &sc->txq[3]);
1505 1.38 skrll
1506 1.38 skrll if (r & IWI_INTR_RX_DONE)
1507 1.38 skrll iwi_rx_intr(sc);
1508 1.1 skrll
1509 1.1 skrll return 1;
1510 1.1 skrll }
1511 1.1 skrll
1512 1.1 skrll static int
1513 1.24 skrll iwi_cmd(struct iwi_softc *sc, uint8_t type, void *data, uint8_t len,
1514 1.1 skrll int async)
1515 1.1 skrll {
1516 1.1 skrll struct iwi_cmd_desc *desc;
1517 1.1 skrll
1518 1.14 skrll desc = &sc->cmdq.desc[sc->cmdq.cur];
1519 1.1 skrll
1520 1.1 skrll desc->hdr.type = IWI_HDR_TYPE_COMMAND;
1521 1.1 skrll desc->hdr.flags = IWI_HDR_FLAG_IRQ;
1522 1.1 skrll desc->type = type;
1523 1.1 skrll desc->len = len;
1524 1.1 skrll memcpy(desc->data, data, len);
1525 1.1 skrll
1526 1.14 skrll bus_dmamap_sync(sc->sc_dmat, sc->cmdq.desc_map,
1527 1.25 skrll sc->cmdq.cur * IWI_CMD_DESC_SIZE,
1528 1.25 skrll IWI_CMD_DESC_SIZE, BUS_DMASYNC_PREWRITE);
1529 1.1 skrll
1530 1.25 skrll DPRINTFN(2, ("sending command idx=%u type=%u len=%u\n", sc->cmdq.cur,
1531 1.14 skrll type, len));
1532 1.14 skrll
1533 1.14 skrll sc->cmdq.cur = (sc->cmdq.cur + 1) % sc->cmdq.count;
1534 1.14 skrll CSR_WRITE_4(sc, IWI_CSR_CMD_WIDX, sc->cmdq.cur);
1535 1.1 skrll
1536 1.1 skrll return async ? 0 : tsleep(sc, 0, "iwicmd", hz);
1537 1.1 skrll }
1538 1.1 skrll
1539 1.38 skrll static void
1540 1.38 skrll iwi_write_ibssnode(struct iwi_softc *sc, const struct iwi_node *in)
1541 1.38 skrll {
1542 1.38 skrll struct iwi_ibssnode node;
1543 1.38 skrll
1544 1.38 skrll /* write node information into NIC memory */
1545 1.38 skrll memset(&node, 0, sizeof node);
1546 1.38 skrll IEEE80211_ADDR_COPY(node.bssid, in->in_node.ni_macaddr);
1547 1.38 skrll
1548 1.38 skrll CSR_WRITE_REGION_1(sc,
1549 1.38 skrll IWI_CSR_NODE_BASE + in->in_station * sizeof node,
1550 1.38 skrll (uint8_t *)&node, sizeof node);
1551 1.38 skrll }
1552 1.38 skrll
1553 1.1 skrll static int
1554 1.38 skrll iwi_tx_start(struct ifnet *ifp, struct mbuf *m0, struct ieee80211_node *ni,
1555 1.38 skrll int ac)
1556 1.1 skrll {
1557 1.1 skrll struct iwi_softc *sc = ifp->if_softc;
1558 1.1 skrll struct ieee80211com *ic = &sc->sc_ic;
1559 1.38 skrll struct iwi_node *in = (struct iwi_node *)ni;
1560 1.38 skrll struct ieee80211_frame *wh;
1561 1.12 christos struct ieee80211_key *k;
1562 1.38 skrll const struct chanAccParams *cap;
1563 1.38 skrll struct iwi_tx_ring *txq = &sc->txq[ac];
1564 1.14 skrll struct iwi_tx_data *data;
1565 1.1 skrll struct iwi_tx_desc *desc;
1566 1.1 skrll struct mbuf *mnew;
1567 1.38 skrll int error, hdrlen, i, noack = 0;
1568 1.38 skrll
1569 1.38 skrll wh = mtod(m0, struct ieee80211_frame *);
1570 1.38 skrll
1571 1.38 skrll if (wh->i_fc[0] & IEEE80211_FC0_SUBTYPE_QOS) {
1572 1.38 skrll hdrlen = sizeof (struct ieee80211_qosframe);
1573 1.38 skrll cap = &ic->ic_wme.wme_chanParams;
1574 1.38 skrll noack = cap->cap_wmeParams[ac].wmep_noackPolicy;
1575 1.38 skrll } else
1576 1.38 skrll hdrlen = sizeof (struct ieee80211_frame);
1577 1.38 skrll
1578 1.38 skrll /*
1579 1.38 skrll * This is only used in IBSS mode where the firmware expect an index
1580 1.38 skrll * in a h/w table instead of a destination address.
1581 1.38 skrll */
1582 1.38 skrll if (ic->ic_opmode == IEEE80211_M_IBSS && in->in_station == -1) {
1583 1.38 skrll in->in_station = iwi_alloc_unr(sc);
1584 1.38 skrll
1585 1.38 skrll if (in->in_station == -1) { /* h/w table is full */
1586 1.38 skrll m_freem(m0);
1587 1.38 skrll ieee80211_free_node(ni);
1588 1.38 skrll ifp->if_oerrors++;
1589 1.38 skrll return 0;
1590 1.38 skrll }
1591 1.38 skrll iwi_write_ibssnode(sc, in);
1592 1.38 skrll }
1593 1.1 skrll
1594 1.38 skrll if (wh->i_fc[1] & IEEE80211_FC1_WEP) {
1595 1.12 christos k = ieee80211_crypto_encap(ic, ni, m0);
1596 1.12 christos if (k == NULL) {
1597 1.12 christos m_freem(m0);
1598 1.12 christos return ENOBUFS;
1599 1.12 christos }
1600 1.38 skrll
1601 1.38 skrll /* packet header may have moved, reset our local pointer */
1602 1.38 skrll wh = mtod(m0, struct ieee80211_frame *);
1603 1.12 christos }
1604 1.12 christos
1605 1.1 skrll #if NBPFILTER > 0
1606 1.1 skrll if (sc->sc_drvbpf != NULL) {
1607 1.1 skrll struct iwi_tx_radiotap_header *tap = &sc->sc_txtap;
1608 1.1 skrll
1609 1.1 skrll tap->wt_flags = 0;
1610 1.12 christos tap->wt_chan_freq = htole16(ic->ic_ibss_chan->ic_freq);
1611 1.12 christos tap->wt_chan_flags = htole16(ic->ic_ibss_chan->ic_flags);
1612 1.1 skrll
1613 1.1 skrll bpf_mtap2(sc->sc_drvbpf, tap, sc->sc_txtap_len, m0);
1614 1.1 skrll }
1615 1.1 skrll #endif
1616 1.1 skrll
1617 1.38 skrll data = &txq->data[txq->cur];
1618 1.38 skrll desc = &txq->desc[txq->cur];
1619 1.1 skrll
1620 1.38 skrll /* save and trim IEEE802.11 header */
1621 1.38 skrll m_copydata(m0, 0, hdrlen, (caddr_t)&desc->wh);
1622 1.38 skrll m_adj(m0, hdrlen);
1623 1.1 skrll
1624 1.34 scw error = bus_dmamap_load_mbuf(sc->sc_dmat, data->map, m0,
1625 1.34 scw BUS_DMA_WRITE | BUS_DMA_NOWAIT);
1626 1.1 skrll if (error != 0 && error != EFBIG) {
1627 1.1 skrll aprint_error("%s: could not map mbuf (error %d)\n",
1628 1.1 skrll sc->sc_dev.dv_xname, error);
1629 1.1 skrll m_freem(m0);
1630 1.1 skrll return error;
1631 1.1 skrll }
1632 1.1 skrll if (error != 0) {
1633 1.1 skrll /* too many fragments, linearize */
1634 1.1 skrll
1635 1.1 skrll MGETHDR(mnew, M_DONTWAIT, MT_DATA);
1636 1.1 skrll if (mnew == NULL) {
1637 1.1 skrll m_freem(m0);
1638 1.1 skrll return ENOMEM;
1639 1.1 skrll }
1640 1.1 skrll
1641 1.1 skrll M_COPY_PKTHDR(mnew, m0);
1642 1.34 scw
1643 1.34 scw /* If the data won't fit in the header, get a cluster */
1644 1.34 scw if (m0->m_pkthdr.len > MHLEN) {
1645 1.34 scw MCLGET(mnew, M_DONTWAIT);
1646 1.34 scw if (!(mnew->m_flags & M_EXT)) {
1647 1.34 scw m_freem(m0);
1648 1.34 scw m_freem(mnew);
1649 1.34 scw return ENOMEM;
1650 1.34 scw }
1651 1.1 skrll }
1652 1.1 skrll m_copydata(m0, 0, m0->m_pkthdr.len, mtod(mnew, caddr_t));
1653 1.1 skrll m_freem(m0);
1654 1.1 skrll mnew->m_len = mnew->m_pkthdr.len;
1655 1.1 skrll m0 = mnew;
1656 1.1 skrll
1657 1.14 skrll error = bus_dmamap_load_mbuf(sc->sc_dmat, data->map, m0,
1658 1.34 scw BUS_DMA_WRITE | BUS_DMA_NOWAIT);
1659 1.1 skrll if (error != 0) {
1660 1.1 skrll aprint_error("%s: could not map mbuf (error %d)\n",
1661 1.1 skrll sc->sc_dev.dv_xname, error);
1662 1.1 skrll m_freem(m0);
1663 1.1 skrll return error;
1664 1.1 skrll }
1665 1.1 skrll }
1666 1.1 skrll
1667 1.14 skrll data->m = m0;
1668 1.14 skrll data->ni = ni;
1669 1.1 skrll
1670 1.1 skrll desc->hdr.type = IWI_HDR_TYPE_DATA;
1671 1.1 skrll desc->hdr.flags = IWI_HDR_FLAG_IRQ;
1672 1.38 skrll desc->station =
1673 1.38 skrll (ic->ic_opmode == IEEE80211_M_IBSS) ? in->in_station : 0;
1674 1.1 skrll desc->cmd = IWI_DATA_CMD_TX;
1675 1.1 skrll desc->len = htole16(m0->m_pkthdr.len);
1676 1.1 skrll desc->flags = 0;
1677 1.38 skrll desc->xflags = 0;
1678 1.38 skrll
1679 1.38 skrll if (!noack && !IEEE80211_IS_MULTICAST(desc->wh.i_addr1))
1680 1.1 skrll desc->flags |= IWI_DATA_FLAG_NEED_ACK;
1681 1.1 skrll
1682 1.12 christos #if 0
1683 1.1 skrll if (ic->ic_flags & IEEE80211_F_PRIVACY) {
1684 1.38 skrll desc->wh.i_fc[1] |= IEEE80211_FC1_WEP;
1685 1.12 christos desc->wep_txkey = ic->ic_crypto.cs_def_txkey;
1686 1.1 skrll } else
1687 1.12 christos #endif
1688 1.1 skrll desc->flags |= IWI_DATA_FLAG_NO_WEP;
1689 1.1 skrll
1690 1.1 skrll if (ic->ic_flags & IEEE80211_F_SHPREAMBLE)
1691 1.1 skrll desc->flags |= IWI_DATA_FLAG_SHPREAMBLE;
1692 1.1 skrll
1693 1.38 skrll if (desc->wh.i_fc[0] & IEEE80211_FC0_SUBTYPE_QOS)
1694 1.38 skrll desc->xflags |= IWI_DATA_XFLAG_QOS;
1695 1.38 skrll
1696 1.14 skrll desc->nseg = htole32(data->map->dm_nsegs);
1697 1.14 skrll for (i = 0; i < data->map->dm_nsegs; i++) {
1698 1.14 skrll desc->seg_addr[i] = htole32(data->map->dm_segs[i].ds_addr);
1699 1.32 scw desc->seg_len[i] = htole16(data->map->dm_segs[i].ds_len);
1700 1.1 skrll }
1701 1.1 skrll
1702 1.38 skrll bus_dmamap_sync(sc->sc_dmat, txq->desc_map,
1703 1.38 skrll txq->cur * IWI_TX_DESC_SIZE,
1704 1.25 skrll IWI_TX_DESC_SIZE, BUS_DMASYNC_PREWRITE);
1705 1.1 skrll
1706 1.32 scw bus_dmamap_sync(sc->sc_dmat, data->map, 0, data->map->dm_mapsize,
1707 1.1 skrll BUS_DMASYNC_PREWRITE);
1708 1.1 skrll
1709 1.38 skrll DPRINTFN(5, ("sending data frame txq=%u idx=%u len=%u nseg=%u\n",
1710 1.38 skrll ac, txq->cur, le16toh(desc->len), le32toh(desc->nseg)));
1711 1.1 skrll
1712 1.1 skrll /* Inform firmware about this new packet */
1713 1.38 skrll txq->queued++;
1714 1.38 skrll txq->cur = (txq->cur + 1) % txq->count;
1715 1.38 skrll CSR_WRITE_4(sc, txq->csr_widx, txq->cur);
1716 1.1 skrll
1717 1.1 skrll return 0;
1718 1.1 skrll }
1719 1.1 skrll
1720 1.1 skrll static void
1721 1.1 skrll iwi_start(struct ifnet *ifp)
1722 1.1 skrll {
1723 1.1 skrll struct iwi_softc *sc = ifp->if_softc;
1724 1.1 skrll struct ieee80211com *ic = &sc->sc_ic;
1725 1.1 skrll struct mbuf *m0;
1726 1.12 christos struct ether_header *eh;
1727 1.1 skrll struct ieee80211_node *ni;
1728 1.38 skrll int ac;
1729 1.1 skrll
1730 1.1 skrll if (ic->ic_state != IEEE80211_S_RUN)
1731 1.1 skrll return;
1732 1.1 skrll
1733 1.1 skrll for (;;) {
1734 1.1 skrll IF_DEQUEUE(&ifp->if_snd, m0);
1735 1.1 skrll if (m0 == NULL)
1736 1.1 skrll break;
1737 1.1 skrll
1738 1.14 skrll if (m0->m_len < sizeof (struct ether_header) &&
1739 1.38 skrll (m0 = m_pullup(m0, sizeof (struct ether_header))) == NULL) {
1740 1.38 skrll ifp->if_oerrors++;
1741 1.25 skrll continue;
1742 1.38 skrll }
1743 1.14 skrll
1744 1.12 christos eh = mtod(m0, struct ether_header *);
1745 1.12 christos ni = ieee80211_find_txnode(ic, eh->ether_dhost);
1746 1.12 christos if (ni == NULL) {
1747 1.9 dyoung m_freem(m0);
1748 1.38 skrll ifp->if_oerrors++;
1749 1.9 dyoung continue;
1750 1.9 dyoung }
1751 1.1 skrll
1752 1.38 skrll /* classify mbuf so we can find which tx ring to use */
1753 1.38 skrll if (ieee80211_classify(ic, m0, ni) != 0) {
1754 1.38 skrll m_freem(m0);
1755 1.38 skrll ieee80211_free_node(ni);
1756 1.38 skrll ifp->if_oerrors++;
1757 1.38 skrll continue;
1758 1.38 skrll }
1759 1.38 skrll
1760 1.38 skrll /* no QoS encapsulation for EAPOL frames */
1761 1.38 skrll ac = (eh->ether_type != htons(ETHERTYPE_PAE)) ?
1762 1.38 skrll M_WME_GETAC(m0) : WME_AC_BE;
1763 1.38 skrll
1764 1.38 skrll if (sc->txq[ac].queued > sc->txq[ac].count - 8) {
1765 1.38 skrll /* there is no place left in this ring */
1766 1.38 skrll IF_PREPEND(&ifp->if_snd, m0);
1767 1.38 skrll ifp->if_flags |= IFF_OACTIVE;
1768 1.38 skrll break;
1769 1.38 skrll }
1770 1.39 skrll
1771 1.39 skrll #if NBPFILTER > 0
1772 1.39 skrll if (ifp->if_bpf != NULL)
1773 1.39 skrll bpf_mtap(ifp->if_bpf, m0);
1774 1.38 skrll #endif
1775 1.39 skrll
1776 1.12 christos m0 = ieee80211_encap(ic, m0, ni);
1777 1.12 christos if (m0 == NULL) {
1778 1.12 christos ieee80211_free_node(ni);
1779 1.38 skrll ifp->if_oerrors++;
1780 1.12 christos continue;
1781 1.12 christos }
1782 1.1 skrll
1783 1.25 skrll #if NBPFILTER > 0
1784 1.25 skrll if (ic->ic_rawbpf != NULL)
1785 1.25 skrll bpf_mtap(ic->ic_rawbpf, m0);
1786 1.25 skrll #endif
1787 1.25 skrll
1788 1.38 skrll if (iwi_tx_start(ifp, m0, ni, ac) != 0) {
1789 1.12 christos ieee80211_free_node(ni);
1790 1.12 christos ifp->if_oerrors++;
1791 1.1 skrll break;
1792 1.1 skrll }
1793 1.1 skrll
1794 1.1 skrll /* start watchdog timer */
1795 1.1 skrll sc->sc_tx_timer = 5;
1796 1.1 skrll ifp->if_timer = 1;
1797 1.1 skrll }
1798 1.1 skrll }
1799 1.1 skrll
1800 1.1 skrll static void
1801 1.1 skrll iwi_watchdog(struct ifnet *ifp)
1802 1.1 skrll {
1803 1.1 skrll struct iwi_softc *sc = ifp->if_softc;
1804 1.1 skrll
1805 1.1 skrll ifp->if_timer = 0;
1806 1.1 skrll
1807 1.1 skrll if (sc->sc_tx_timer > 0) {
1808 1.1 skrll if (--sc->sc_tx_timer == 0) {
1809 1.1 skrll aprint_error("%s: device timeout\n",
1810 1.1 skrll sc->sc_dev.dv_xname);
1811 1.12 christos ifp->if_oerrors++;
1812 1.12 christos ifp->if_flags &= ~IFF_UP;
1813 1.1 skrll iwi_stop(ifp, 1);
1814 1.1 skrll return;
1815 1.1 skrll }
1816 1.1 skrll ifp->if_timer = 1;
1817 1.1 skrll }
1818 1.1 skrll
1819 1.9 dyoung ieee80211_watchdog(&sc->sc_ic);
1820 1.1 skrll }
1821 1.1 skrll
1822 1.1 skrll static int
1823 1.24 skrll iwi_get_table0(struct iwi_softc *sc, uint32_t *tbl)
1824 1.1 skrll {
1825 1.24 skrll uint32_t size, buf[128];
1826 1.1 skrll
1827 1.1 skrll if (!(sc->flags & IWI_FLAG_FW_INITED)) {
1828 1.1 skrll memset(buf, 0, sizeof buf);
1829 1.1 skrll return copyout(buf, tbl, sizeof buf);
1830 1.1 skrll }
1831 1.1 skrll
1832 1.1 skrll size = min(CSR_READ_4(sc, IWI_CSR_TABLE0_SIZE), 128 - 1);
1833 1.1 skrll CSR_READ_REGION_4(sc, IWI_CSR_TABLE0_BASE, &buf[1], size);
1834 1.1 skrll
1835 1.1 skrll return copyout(buf, tbl, sizeof buf);
1836 1.1 skrll }
1837 1.1 skrll
1838 1.1 skrll static int
1839 1.1 skrll iwi_get_radio(struct iwi_softc *sc, int *ret)
1840 1.1 skrll {
1841 1.1 skrll int val;
1842 1.1 skrll
1843 1.1 skrll val = (CSR_READ_4(sc, IWI_CSR_IO) & IWI_IO_RADIO_ENABLED) ? 1 : 0;
1844 1.1 skrll return copyout(&val, ret, sizeof val);
1845 1.1 skrll }
1846 1.1 skrll
1847 1.1 skrll static int
1848 1.1 skrll iwi_ioctl(struct ifnet *ifp, u_long cmd, caddr_t data)
1849 1.1 skrll {
1850 1.1 skrll struct iwi_softc *sc = ifp->if_softc;
1851 1.38 skrll struct ieee80211com *ic = &sc->sc_ic;
1852 1.1 skrll struct ifreq *ifr;
1853 1.1 skrll int s, error = 0;
1854 1.1 skrll
1855 1.1 skrll s = splnet();
1856 1.1 skrll
1857 1.1 skrll switch (cmd) {
1858 1.1 skrll case SIOCSIFFLAGS:
1859 1.1 skrll if (ifp->if_flags & IFF_UP) {
1860 1.1 skrll if (!(ifp->if_flags & IFF_RUNNING))
1861 1.1 skrll iwi_init(ifp);
1862 1.1 skrll } else {
1863 1.1 skrll if (ifp->if_flags & IFF_RUNNING)
1864 1.1 skrll iwi_stop(ifp, 1);
1865 1.1 skrll }
1866 1.1 skrll break;
1867 1.1 skrll
1868 1.1 skrll case SIOCGTABLE0:
1869 1.1 skrll ifr = (struct ifreq *)data;
1870 1.24 skrll error = iwi_get_table0(sc, (uint32_t *)ifr->ifr_data);
1871 1.1 skrll break;
1872 1.1 skrll
1873 1.1 skrll case SIOCGRADIO:
1874 1.1 skrll ifr = (struct ifreq *)data;
1875 1.1 skrll error = iwi_get_radio(sc, (int *)ifr->ifr_data);
1876 1.1 skrll break;
1877 1.1 skrll
1878 1.1 skrll case SIOCSLOADFW:
1879 1.1 skrll /* only super-user can do that! */
1880 1.1 skrll if ((error = suser(curproc->p_ucred, &curproc->p_acflag)) != 0)
1881 1.1 skrll break;
1882 1.1 skrll
1883 1.1 skrll ifr = (struct ifreq *)data;
1884 1.1 skrll error = iwi_cache_firmware(sc, ifr->ifr_data);
1885 1.1 skrll break;
1886 1.1 skrll
1887 1.1 skrll case SIOCSKILLFW:
1888 1.1 skrll /* only super-user can do that! */
1889 1.1 skrll if ((error = suser(curproc->p_ucred, &curproc->p_acflag)) != 0)
1890 1.1 skrll break;
1891 1.1 skrll
1892 1.12 christos ifp->if_flags &= ~IFF_UP;
1893 1.1 skrll iwi_stop(ifp, 1);
1894 1.1 skrll iwi_free_firmware(sc);
1895 1.1 skrll break;
1896 1.1 skrll
1897 1.1 skrll default:
1898 1.9 dyoung error = ieee80211_ioctl(&sc->sc_ic, cmd, data);
1899 1.1 skrll }
1900 1.1 skrll
1901 1.40 skrll if (error == ENETRESET) {
1902 1.1 skrll if ((ifp->if_flags & (IFF_UP | IFF_RUNNING)) ==
1903 1.38 skrll (IFF_UP | IFF_RUNNING) &&
1904 1.38 skrll (ic->ic_roaming != IEEE80211_ROAMING_MANUAL))
1905 1.1 skrll iwi_init(ifp);
1906 1.1 skrll error = 0;
1907 1.1 skrll }
1908 1.1 skrll
1909 1.1 skrll splx(s);
1910 1.1 skrll return error;
1911 1.1 skrll }
1912 1.1 skrll
1913 1.1 skrll static void
1914 1.1 skrll iwi_stop_master(struct iwi_softc *sc)
1915 1.1 skrll {
1916 1.1 skrll int ntries;
1917 1.1 skrll
1918 1.1 skrll /* Disable interrupts */
1919 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_INTR_MASK, 0);
1920 1.1 skrll
1921 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_RST, IWI_RST_STOP_MASTER);
1922 1.1 skrll for (ntries = 0; ntries < 5; ntries++) {
1923 1.1 skrll if (CSR_READ_4(sc, IWI_CSR_RST) & IWI_RST_MASTER_DISABLED)
1924 1.1 skrll break;
1925 1.1 skrll DELAY(10);
1926 1.1 skrll }
1927 1.1 skrll if (ntries == 5)
1928 1.1 skrll aprint_error("%s: timeout waiting for master\n",
1929 1.1 skrll sc->sc_dev.dv_xname);
1930 1.1 skrll
1931 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_RST, CSR_READ_4(sc, IWI_CSR_RST) |
1932 1.1 skrll IWI_RST_PRINCETON_RESET);
1933 1.1 skrll
1934 1.1 skrll sc->flags &= ~IWI_FLAG_FW_INITED;
1935 1.1 skrll }
1936 1.1 skrll
1937 1.1 skrll static int
1938 1.1 skrll iwi_reset(struct iwi_softc *sc)
1939 1.1 skrll {
1940 1.1 skrll int i, ntries;
1941 1.1 skrll
1942 1.1 skrll iwi_stop_master(sc);
1943 1.1 skrll
1944 1.1 skrll /* Move adapter to D0 state */
1945 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_CTL, CSR_READ_4(sc, IWI_CSR_CTL) |
1946 1.1 skrll IWI_CTL_INIT);
1947 1.1 skrll
1948 1.1 skrll /* Initialize Phase-Locked Level (PLL) */
1949 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_READ_INT, IWI_READ_INT_INIT_HOST);
1950 1.1 skrll
1951 1.1 skrll /* Wait for clock stabilization */
1952 1.1 skrll for (ntries = 0; ntries < 1000; ntries++) {
1953 1.1 skrll if (CSR_READ_4(sc, IWI_CSR_CTL) & IWI_CTL_CLOCK_READY)
1954 1.1 skrll break;
1955 1.1 skrll DELAY(200);
1956 1.1 skrll }
1957 1.25 skrll if (ntries == 1000) {
1958 1.25 skrll aprint_error("%s: timeout waiting for clock stabilization\n",
1959 1.25 skrll sc->sc_dev.dv_xname);
1960 1.1 skrll return EIO;
1961 1.25 skrll }
1962 1.1 skrll
1963 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_RST, CSR_READ_4(sc, IWI_CSR_RST) |
1964 1.1 skrll IWI_RST_SW_RESET);
1965 1.1 skrll
1966 1.1 skrll DELAY(10);
1967 1.1 skrll
1968 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_CTL, CSR_READ_4(sc, IWI_CSR_CTL) |
1969 1.1 skrll IWI_CTL_INIT);
1970 1.1 skrll
1971 1.1 skrll /* Clear NIC memory */
1972 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_AUTOINC_ADDR, 0);
1973 1.1 skrll for (i = 0; i < 0xc000; i++)
1974 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_AUTOINC_DATA, 0);
1975 1.1 skrll
1976 1.1 skrll return 0;
1977 1.1 skrll }
1978 1.1 skrll
1979 1.1 skrll static int
1980 1.1 skrll iwi_load_ucode(struct iwi_softc *sc, void *uc, int size)
1981 1.1 skrll {
1982 1.24 skrll uint16_t *w;
1983 1.1 skrll int ntries, i;
1984 1.1 skrll
1985 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_RST, CSR_READ_4(sc, IWI_CSR_RST) |
1986 1.1 skrll IWI_RST_STOP_MASTER);
1987 1.1 skrll for (ntries = 0; ntries < 5; ntries++) {
1988 1.1 skrll if (CSR_READ_4(sc, IWI_CSR_RST) & IWI_RST_MASTER_DISABLED)
1989 1.1 skrll break;
1990 1.1 skrll DELAY(10);
1991 1.1 skrll }
1992 1.1 skrll if (ntries == 5) {
1993 1.1 skrll aprint_error("%s: timeout waiting for master\n",
1994 1.1 skrll sc->sc_dev.dv_xname);
1995 1.1 skrll return EIO;
1996 1.1 skrll }
1997 1.1 skrll
1998 1.1 skrll MEM_WRITE_4(sc, 0x3000e0, 0x80000000);
1999 1.1 skrll DELAY(5000);
2000 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_RST, CSR_READ_4(sc, IWI_CSR_RST) &
2001 1.1 skrll ~IWI_RST_PRINCETON_RESET);
2002 1.1 skrll DELAY(5000);
2003 1.1 skrll MEM_WRITE_4(sc, 0x3000e0, 0);
2004 1.1 skrll DELAY(1000);
2005 1.1 skrll MEM_WRITE_4(sc, 0x300004, 1);
2006 1.1 skrll DELAY(1000);
2007 1.1 skrll MEM_WRITE_4(sc, 0x300004, 0);
2008 1.1 skrll DELAY(1000);
2009 1.1 skrll MEM_WRITE_1(sc, 0x200000, 0x00);
2010 1.1 skrll MEM_WRITE_1(sc, 0x200000, 0x40);
2011 1.14 skrll DELAY(1000);
2012 1.1 skrll
2013 1.1 skrll /* Adapter is buggy, we must set the address for each word */
2014 1.1 skrll for (w = uc; size > 0; w++, size -= 2)
2015 1.32 scw MEM_WRITE_2(sc, 0x200010, htole16(*w));
2016 1.1 skrll
2017 1.1 skrll MEM_WRITE_1(sc, 0x200000, 0x00);
2018 1.1 skrll MEM_WRITE_1(sc, 0x200000, 0x80);
2019 1.1 skrll
2020 1.1 skrll /* Wait until we get a response in the uc queue */
2021 1.1 skrll for (ntries = 0; ntries < 100; ntries++) {
2022 1.1 skrll if (MEM_READ_1(sc, 0x200000) & 1)
2023 1.1 skrll break;
2024 1.1 skrll DELAY(100);
2025 1.1 skrll }
2026 1.1 skrll if (ntries == 100) {
2027 1.1 skrll aprint_error("%s: timeout waiting for ucode to initialize\n",
2028 1.1 skrll sc->sc_dev.dv_xname);
2029 1.1 skrll return EIO;
2030 1.1 skrll }
2031 1.1 skrll
2032 1.1 skrll /* Empty the uc queue or the firmware will not initialize properly */
2033 1.1 skrll for (i = 0; i < 7; i++)
2034 1.1 skrll MEM_READ_4(sc, 0x200004);
2035 1.1 skrll
2036 1.1 skrll MEM_WRITE_1(sc, 0x200000, 0x00);
2037 1.1 skrll
2038 1.1 skrll return 0;
2039 1.1 skrll }
2040 1.1 skrll
2041 1.1 skrll /* macro to handle unaligned little endian data in firmware image */
2042 1.1 skrll #define GETLE32(p) ((p)[0] | (p)[1] << 8 | (p)[2] << 16 | (p)[3] << 24)
2043 1.1 skrll static int
2044 1.1 skrll iwi_load_firmware(struct iwi_softc *sc, void *fw, int size)
2045 1.1 skrll {
2046 1.1 skrll bus_dmamap_t map;
2047 1.1 skrll u_char *p, *end;
2048 1.27 skrll uint32_t sentinel, ctl, sum;
2049 1.27 skrll uint32_t cs, sl, cd, cl;
2050 1.1 skrll int ntries, nsegs, error;
2051 1.27 skrll int sn;
2052 1.1 skrll
2053 1.27 skrll nsegs = (size + PAGE_SIZE - 1) / PAGE_SIZE;
2054 1.27 skrll
2055 1.28 skrll /* Create a DMA map for the firmware image */
2056 1.27 skrll error = bus_dmamap_create(sc->sc_dmat, size, nsegs, size, 0,
2057 1.1 skrll BUS_DMA_NOWAIT, &map);
2058 1.1 skrll if (error != 0) {
2059 1.1 skrll aprint_error("%s: could not create firmware DMA map\n",
2060 1.1 skrll sc->sc_dev.dv_xname);
2061 1.1 skrll goto fail1;
2062 1.1 skrll }
2063 1.1 skrll
2064 1.27 skrll error = bus_dmamap_load(sc->sc_dmat, map, fw, size, NULL,
2065 1.27 skrll BUS_DMA_NOWAIT | BUS_DMA_WRITE);
2066 1.1 skrll if (error != 0) {
2067 1.27 skrll aprint_error("%s: could not load fw dma map(%d)\n",
2068 1.27 skrll sc->sc_dev.dv_xname, error);
2069 1.1 skrll goto fail2;
2070 1.1 skrll }
2071 1.1 skrll
2072 1.1 skrll /* Make sure the adapter will get up-to-date values */
2073 1.1 skrll bus_dmamap_sync(sc->sc_dmat, map, 0, size, BUS_DMASYNC_PREWRITE);
2074 1.1 skrll
2075 1.1 skrll /* Tell the adapter where the command blocks are stored */
2076 1.1 skrll MEM_WRITE_4(sc, 0x3000a0, 0x27000);
2077 1.1 skrll
2078 1.1 skrll /*
2079 1.1 skrll * Store command blocks into adapter's internal memory using register
2080 1.1 skrll * indirections. The adapter will read the firmware image through DMA
2081 1.1 skrll * using information stored in command blocks.
2082 1.1 skrll */
2083 1.27 skrll p = fw;
2084 1.1 skrll end = p + size;
2085 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_AUTOINC_ADDR, 0x27000);
2086 1.1 skrll
2087 1.27 skrll sn = 0;
2088 1.27 skrll sl = cl = 0;
2089 1.27 skrll cs = cd = 0;
2090 1.1 skrll while (p < end) {
2091 1.27 skrll if (sl == 0) {
2092 1.27 skrll cs = map->dm_segs[sn].ds_addr;
2093 1.27 skrll sl = map->dm_segs[sn].ds_len;
2094 1.27 skrll sn++;
2095 1.27 skrll }
2096 1.27 skrll if (cl == 0) {
2097 1.27 skrll cd = GETLE32(p); p += 4; cs += 4; sl -= 4;
2098 1.27 skrll cl = GETLE32(p); p += 4; cs += 4; sl -= 4;
2099 1.27 skrll }
2100 1.27 skrll while (sl > 0 && cl > 0) {
2101 1.27 skrll int len = min(cl, sl);
2102 1.27 skrll
2103 1.27 skrll sl -= len;
2104 1.27 skrll cl -= len;
2105 1.27 skrll p += len;
2106 1.27 skrll
2107 1.27 skrll while (len > 0) {
2108 1.27 skrll int mlen = min(len, IWI_CB_MAXDATALEN);
2109 1.27 skrll
2110 1.27 skrll ctl = IWI_CB_DEFAULT_CTL | mlen;
2111 1.27 skrll sum = ctl ^ cs ^ cd;
2112 1.27 skrll
2113 1.27 skrll /* Write a command block */
2114 1.27 skrll CSR_WRITE_4(sc, IWI_CSR_AUTOINC_DATA, ctl);
2115 1.27 skrll CSR_WRITE_4(sc, IWI_CSR_AUTOINC_DATA, cs);
2116 1.27 skrll CSR_WRITE_4(sc, IWI_CSR_AUTOINC_DATA, cd);
2117 1.27 skrll CSR_WRITE_4(sc, IWI_CSR_AUTOINC_DATA, sum);
2118 1.27 skrll
2119 1.27 skrll cs += mlen;
2120 1.27 skrll cd += mlen;
2121 1.27 skrll len -= mlen;
2122 1.27 skrll }
2123 1.1 skrll }
2124 1.1 skrll }
2125 1.1 skrll
2126 1.1 skrll /* Write a fictive final command block (sentinel) */
2127 1.1 skrll sentinel = CSR_READ_4(sc, IWI_CSR_AUTOINC_ADDR);
2128 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_AUTOINC_DATA, 0);
2129 1.1 skrll
2130 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_RST, CSR_READ_4(sc, IWI_CSR_RST) &
2131 1.1 skrll ~(IWI_RST_MASTER_DISABLED | IWI_RST_STOP_MASTER));
2132 1.1 skrll
2133 1.1 skrll /* Tell the adapter to start processing command blocks */
2134 1.1 skrll MEM_WRITE_4(sc, 0x3000a4, 0x540100);
2135 1.1 skrll
2136 1.1 skrll /* Wait until the adapter has processed all command blocks */
2137 1.1 skrll for (ntries = 0; ntries < 400; ntries++) {
2138 1.1 skrll if (MEM_READ_4(sc, 0x3000d0) >= sentinel)
2139 1.1 skrll break;
2140 1.1 skrll DELAY(100);
2141 1.1 skrll }
2142 1.1 skrll if (ntries == 400) {
2143 1.1 skrll aprint_error("%s: timeout processing cb\n",
2144 1.1 skrll sc->sc_dev.dv_xname);
2145 1.1 skrll error = EIO;
2146 1.27 skrll goto fail2;
2147 1.1 skrll }
2148 1.1 skrll
2149 1.1 skrll /* We're done with command blocks processing */
2150 1.1 skrll MEM_WRITE_4(sc, 0x3000a4, 0x540c00);
2151 1.1 skrll
2152 1.1 skrll /* Allow interrupts so we know when the firmware is inited */
2153 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_INTR_MASK, IWI_INTR_MASK);
2154 1.1 skrll
2155 1.1 skrll /* Tell the adapter to initialize the firmware */
2156 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_RST, 0);
2157 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_CTL, CSR_READ_4(sc, IWI_CSR_CTL) |
2158 1.1 skrll IWI_CTL_ALLOW_STANDBY);
2159 1.1 skrll
2160 1.1 skrll /* Wait at most one second for firmware initialization to complete */
2161 1.1 skrll if ((error = tsleep(sc, 0, "iwiinit", hz)) != 0) {
2162 1.1 skrll aprint_error("%s: timeout waiting for firmware initialization "
2163 1.1 skrll "to complete\n", sc->sc_dev.dv_xname);
2164 1.27 skrll goto fail3;
2165 1.1 skrll }
2166 1.1 skrll
2167 1.27 skrll fail3:
2168 1.27 skrll bus_dmamap_sync(sc->sc_dmat, map, 0, size, BUS_DMASYNC_POSTWRITE);
2169 1.1 skrll bus_dmamap_unload(sc->sc_dmat, map);
2170 1.27 skrll fail2:
2171 1.27 skrll bus_dmamap_destroy(sc->sc_dmat, map);
2172 1.5 perry
2173 1.27 skrll fail1:
2174 1.27 skrll return error;
2175 1.1 skrll }
2176 1.1 skrll
2177 1.1 skrll /*
2178 1.1 skrll * Store firmware into kernel memory so we can download it when we need to,
2179 1.1 skrll * e.g when the adapter wakes up from suspend mode.
2180 1.1 skrll */
2181 1.1 skrll static int
2182 1.1 skrll iwi_cache_firmware(struct iwi_softc *sc, void *data)
2183 1.1 skrll {
2184 1.1 skrll struct iwi_firmware *kfw = &sc->fw;
2185 1.1 skrll struct iwi_firmware ufw;
2186 1.1 skrll int error;
2187 1.1 skrll
2188 1.1 skrll iwi_free_firmware(sc);
2189 1.1 skrll
2190 1.1 skrll if ((error = copyin(data, &ufw, sizeof ufw)) != 0)
2191 1.1 skrll goto fail1;
2192 1.1 skrll
2193 1.1 skrll kfw->boot_size = ufw.boot_size;
2194 1.1 skrll kfw->ucode_size = ufw.ucode_size;
2195 1.1 skrll kfw->main_size = ufw.main_size;
2196 1.1 skrll
2197 1.1 skrll kfw->boot = malloc(kfw->boot_size, M_DEVBUF, M_NOWAIT);
2198 1.1 skrll if (kfw->boot == NULL) {
2199 1.1 skrll error = ENOMEM;
2200 1.1 skrll goto fail1;
2201 1.1 skrll }
2202 1.1 skrll
2203 1.1 skrll kfw->ucode = malloc(kfw->ucode_size, M_DEVBUF, M_NOWAIT);
2204 1.1 skrll if (kfw->ucode == NULL) {
2205 1.1 skrll error = ENOMEM;
2206 1.1 skrll goto fail2;
2207 1.1 skrll }
2208 1.1 skrll
2209 1.1 skrll kfw->main = malloc(kfw->main_size, M_DEVBUF, M_NOWAIT);
2210 1.1 skrll if (kfw->main == NULL) {
2211 1.1 skrll error = ENOMEM;
2212 1.1 skrll goto fail3;
2213 1.1 skrll }
2214 1.1 skrll
2215 1.1 skrll if ((error = copyin(ufw.boot, kfw->boot, kfw->boot_size)) != 0)
2216 1.1 skrll goto fail4;
2217 1.1 skrll
2218 1.1 skrll if ((error = copyin(ufw.ucode, kfw->ucode, kfw->ucode_size)) != 0)
2219 1.1 skrll goto fail4;
2220 1.1 skrll
2221 1.1 skrll if ((error = copyin(ufw.main, kfw->main, kfw->main_size)) != 0)
2222 1.1 skrll goto fail4;
2223 1.1 skrll
2224 1.1 skrll DPRINTF(("Firmware cached: boot %u, ucode %u, main %u\n",
2225 1.1 skrll kfw->boot_size, kfw->ucode_size, kfw->main_size));
2226 1.1 skrll
2227 1.1 skrll sc->flags |= IWI_FLAG_FW_CACHED;
2228 1.1 skrll
2229 1.1 skrll return 0;
2230 1.1 skrll
2231 1.1 skrll fail4: free(kfw->boot, M_DEVBUF);
2232 1.1 skrll fail3: free(kfw->ucode, M_DEVBUF);
2233 1.1 skrll fail2: free(kfw->main, M_DEVBUF);
2234 1.1 skrll fail1:
2235 1.1 skrll return error;
2236 1.1 skrll }
2237 1.1 skrll
2238 1.1 skrll static void
2239 1.1 skrll iwi_free_firmware(struct iwi_softc *sc)
2240 1.1 skrll {
2241 1.1 skrll if (!(sc->flags & IWI_FLAG_FW_CACHED))
2242 1.1 skrll return;
2243 1.5 perry
2244 1.1 skrll free(sc->fw.boot, M_DEVBUF);
2245 1.1 skrll free(sc->fw.ucode, M_DEVBUF);
2246 1.1 skrll free(sc->fw.main, M_DEVBUF);
2247 1.1 skrll
2248 1.1 skrll sc->flags &= ~IWI_FLAG_FW_CACHED;
2249 1.1 skrll }
2250 1.1 skrll
2251 1.1 skrll static int
2252 1.1 skrll iwi_config(struct iwi_softc *sc)
2253 1.1 skrll {
2254 1.1 skrll struct ieee80211com *ic = &sc->sc_ic;
2255 1.9 dyoung struct ifnet *ifp = &sc->sc_if;
2256 1.1 skrll struct iwi_configuration config;
2257 1.1 skrll struct iwi_rateset rs;
2258 1.1 skrll struct iwi_txpower power;
2259 1.12 christos struct ieee80211_key *wk;
2260 1.1 skrll struct iwi_wep_key wepkey;
2261 1.24 skrll uint32_t data;
2262 1.1 skrll int error, i;
2263 1.1 skrll
2264 1.1 skrll IEEE80211_ADDR_COPY(ic->ic_myaddr, LLADDR(ifp->if_sadl));
2265 1.1 skrll DPRINTF(("Setting MAC address to %s\n", ether_sprintf(ic->ic_myaddr)));
2266 1.1 skrll error = iwi_cmd(sc, IWI_CMD_SET_MAC_ADDRESS, ic->ic_myaddr,
2267 1.1 skrll IEEE80211_ADDR_LEN, 0);
2268 1.1 skrll if (error != 0)
2269 1.1 skrll return error;
2270 1.1 skrll
2271 1.1 skrll memset(&config, 0, sizeof config);
2272 1.12 christos config.bluetooth_coexistence = sc->bluetooth;
2273 1.12 christos config.antenna = sc->antenna;
2274 1.1 skrll config.multicast_enabled = 1;
2275 1.12 christos config.answer_pbreq = (ic->ic_opmode == IEEE80211_M_IBSS) ? 1 : 0;
2276 1.12 christos config.disable_unicast_decryption = 1;
2277 1.12 christos config.disable_multicast_decryption = 1;
2278 1.1 skrll DPRINTF(("Configuring adapter\n"));
2279 1.1 skrll error = iwi_cmd(sc, IWI_CMD_SET_CONFIGURATION, &config, sizeof config,
2280 1.1 skrll 0);
2281 1.1 skrll if (error != 0)
2282 1.1 skrll return error;
2283 1.1 skrll
2284 1.1 skrll data = htole32(IWI_POWER_MODE_CAM);
2285 1.1 skrll DPRINTF(("Setting power mode to %u\n", le32toh(data)));
2286 1.1 skrll error = iwi_cmd(sc, IWI_CMD_SET_POWER_MODE, &data, sizeof data, 0);
2287 1.1 skrll if (error != 0)
2288 1.1 skrll return error;
2289 1.1 skrll
2290 1.1 skrll data = htole32(ic->ic_rtsthreshold);
2291 1.1 skrll DPRINTF(("Setting RTS threshold to %u\n", le32toh(data)));
2292 1.1 skrll error = iwi_cmd(sc, IWI_CMD_SET_RTS_THRESHOLD, &data, sizeof data, 0);
2293 1.1 skrll if (error != 0)
2294 1.1 skrll return error;
2295 1.1 skrll
2296 1.12 christos data = htole32(ic->ic_fragthreshold);
2297 1.12 christos DPRINTF(("Setting fragmentation threshold to %u\n", le32toh(data)));
2298 1.12 christos error = iwi_cmd(sc, IWI_CMD_SET_FRAG_THRESHOLD, &data, sizeof data, 0);
2299 1.12 christos if (error != 0)
2300 1.12 christos return error;
2301 1.12 christos
2302 1.1 skrll if (ic->ic_opmode == IEEE80211_M_IBSS) {
2303 1.1 skrll power.mode = IWI_MODE_11B;
2304 1.1 skrll power.nchan = 11;
2305 1.1 skrll for (i = 0; i < 11; i++) {
2306 1.1 skrll power.chan[i].chan = i + 1;
2307 1.1 skrll power.chan[i].power = IWI_TXPOWER_MAX;
2308 1.1 skrll }
2309 1.1 skrll DPRINTF(("Setting .11b channels tx power\n"));
2310 1.1 skrll error = iwi_cmd(sc, IWI_CMD_SET_TX_POWER, &power, sizeof power,
2311 1.1 skrll 0);
2312 1.1 skrll if (error != 0)
2313 1.1 skrll return error;
2314 1.1 skrll
2315 1.1 skrll power.mode = IWI_MODE_11G;
2316 1.1 skrll DPRINTF(("Setting .11g channels tx power\n"));
2317 1.1 skrll error = iwi_cmd(sc, IWI_CMD_SET_TX_POWER, &power, sizeof power,
2318 1.1 skrll 0);
2319 1.1 skrll if (error != 0)
2320 1.1 skrll return error;
2321 1.1 skrll }
2322 1.1 skrll
2323 1.1 skrll rs.mode = IWI_MODE_11G;
2324 1.1 skrll rs.type = IWI_RATESET_TYPE_SUPPORTED;
2325 1.1 skrll rs.nrates = ic->ic_sup_rates[IEEE80211_MODE_11G].rs_nrates;
2326 1.1 skrll memcpy(rs.rates, ic->ic_sup_rates[IEEE80211_MODE_11G].rs_rates,
2327 1.1 skrll rs.nrates);
2328 1.1 skrll DPRINTF(("Setting .11bg supported rates (%u)\n", rs.nrates));
2329 1.1 skrll error = iwi_cmd(sc, IWI_CMD_SET_RATES, &rs, sizeof rs, 0);
2330 1.1 skrll if (error != 0)
2331 1.1 skrll return error;
2332 1.1 skrll
2333 1.1 skrll rs.mode = IWI_MODE_11A;
2334 1.1 skrll rs.type = IWI_RATESET_TYPE_SUPPORTED;
2335 1.1 skrll rs.nrates = ic->ic_sup_rates[IEEE80211_MODE_11A].rs_nrates;
2336 1.1 skrll memcpy(rs.rates, ic->ic_sup_rates[IEEE80211_MODE_11A].rs_rates,
2337 1.1 skrll rs.nrates);
2338 1.1 skrll DPRINTF(("Setting .11a supported rates (%u)\n", rs.nrates));
2339 1.1 skrll error = iwi_cmd(sc, IWI_CMD_SET_RATES, &rs, sizeof rs, 0);
2340 1.1 skrll if (error != 0)
2341 1.1 skrll return error;
2342 1.1 skrll
2343 1.38 skrll /* if we have a desired ESSID, set it now */
2344 1.38 skrll if (ic->ic_des_esslen != 0) {
2345 1.38 skrll #ifdef IWI_DEBUG
2346 1.38 skrll if (iwi_debug > 0) {
2347 1.38 skrll printf("Setting desired ESSID to ");
2348 1.38 skrll ieee80211_print_essid(ic->ic_des_essid,
2349 1.38 skrll ic->ic_des_esslen);
2350 1.38 skrll printf("\n");
2351 1.38 skrll }
2352 1.38 skrll #endif
2353 1.38 skrll error = iwi_cmd(sc, IWI_CMD_SET_ESSID, ic->ic_des_essid,
2354 1.38 skrll ic->ic_des_esslen, 0);
2355 1.38 skrll if (error != 0)
2356 1.38 skrll return error;
2357 1.38 skrll }
2358 1.38 skrll
2359 1.1 skrll data = htole32(arc4random());
2360 1.1 skrll DPRINTF(("Setting initialization vector to %u\n", le32toh(data)));
2361 1.1 skrll error = iwi_cmd(sc, IWI_CMD_SET_IV, &data, sizeof data, 0);
2362 1.1 skrll if (error != 0)
2363 1.1 skrll return error;
2364 1.1 skrll
2365 1.12 christos for (i = 0; i < IEEE80211_WEP_NKID; i++) {
2366 1.12 christos wk = &ic->ic_crypto.cs_nw_keys[i];
2367 1.12 christos
2368 1.12 christos wepkey.cmd = IWI_WEP_KEY_CMD_SETKEY;
2369 1.12 christos wepkey.idx = i;
2370 1.12 christos wepkey.len = wk->wk_keylen;
2371 1.12 christos memset(wepkey.key, 0, sizeof wepkey.key);
2372 1.12 christos memcpy(wepkey.key, wk->wk_key, wk->wk_keylen);
2373 1.12 christos DPRINTF(("Setting wep key index %u len %u\n",
2374 1.12 christos wepkey.idx, wepkey.len));
2375 1.12 christos error = iwi_cmd(sc, IWI_CMD_SET_WEP_KEY, &wepkey,
2376 1.12 christos sizeof wepkey, 0);
2377 1.12 christos if (error != 0)
2378 1.12 christos return error;
2379 1.1 skrll }
2380 1.1 skrll
2381 1.1 skrll /* Enable adapter */
2382 1.1 skrll DPRINTF(("Enabling adapter\n"));
2383 1.1 skrll return iwi_cmd(sc, IWI_CMD_ENABLE, NULL, 0, 0);
2384 1.1 skrll }
2385 1.1 skrll
2386 1.1 skrll static int
2387 1.8 sekiya iwi_set_chan(struct iwi_softc *sc, struct ieee80211_channel *chan)
2388 1.8 sekiya {
2389 1.8 sekiya struct ieee80211com *ic = &sc->sc_ic;
2390 1.30 skrll struct iwi_scan_v2 scan;
2391 1.8 sekiya
2392 1.12 christos (void)memset(&scan, 0, sizeof scan);
2393 1.30 skrll
2394 1.30 skrll scan.dwelltime[IWI_SCAN_TYPE_PASSIVE] = htole16(2000);
2395 1.30 skrll scan.channels[0] = 1 |
2396 1.30 skrll (IEEE80211_IS_CHAN_5GHZ(chan) ? IWI_CHAN_5GHZ : IWI_CHAN_2GHZ);
2397 1.8 sekiya scan.channels[1] = ieee80211_chan2ieee(ic, chan);
2398 1.30 skrll iwi_scan_type_set(scan, 1, IWI_SCAN_TYPE_PASSIVE);
2399 1.8 sekiya
2400 1.8 sekiya DPRINTF(("Setting channel to %u\n", ieee80211_chan2ieee(ic, chan)));
2401 1.30 skrll return iwi_cmd(sc, IWI_CMD_SCAN_V2, &scan, sizeof scan, 1);
2402 1.8 sekiya }
2403 1.8 sekiya
2404 1.8 sekiya static int
2405 1.1 skrll iwi_scan(struct iwi_softc *sc)
2406 1.1 skrll {
2407 1.1 skrll struct ieee80211com *ic = &sc->sc_ic;
2408 1.26 skrll struct iwi_scan_v2 scan;
2409 1.26 skrll uint32_t type;
2410 1.24 skrll uint8_t *p;
2411 1.26 skrll int i, count, idx;
2412 1.1 skrll
2413 1.12 christos (void)memset(&scan, 0, sizeof scan);
2414 1.26 skrll scan.dwelltime[IWI_SCAN_TYPE_ACTIVE_BROADCAST] =
2415 1.26 skrll htole16(sc->dwelltime);
2416 1.26 skrll scan.dwelltime[IWI_SCAN_TYPE_ACTIVE_BDIRECT] =
2417 1.26 skrll htole16(sc->dwelltime);
2418 1.26 skrll
2419 1.26 skrll /* tell the firmware about the desired essid */
2420 1.26 skrll if (ic->ic_des_esslen) {
2421 1.26 skrll int error;
2422 1.26 skrll
2423 1.26 skrll DPRINTF(("%s: Setting adapter desired ESSID to %s\n",
2424 1.26 skrll __func__, ic->ic_des_essid));
2425 1.26 skrll
2426 1.26 skrll error = iwi_cmd(sc, IWI_CMD_SET_ESSID,
2427 1.26 skrll ic->ic_des_essid, ic->ic_des_esslen, 1);
2428 1.26 skrll if (error)
2429 1.26 skrll return error;
2430 1.26 skrll
2431 1.26 skrll type = IWI_SCAN_TYPE_ACTIVE_BDIRECT;
2432 1.26 skrll } else {
2433 1.26 skrll type = IWI_SCAN_TYPE_ACTIVE_BROADCAST;
2434 1.26 skrll }
2435 1.1 skrll
2436 1.26 skrll p = &scan.channels[0];
2437 1.26 skrll count = idx = 0;
2438 1.1 skrll for (i = 0; i <= IEEE80211_CHAN_MAX; i++) {
2439 1.1 skrll if (IEEE80211_IS_CHAN_5GHZ(&ic->ic_channels[i]) &&
2440 1.1 skrll isset(ic->ic_chan_active, i)) {
2441 1.1 skrll *++p = i;
2442 1.1 skrll count++;
2443 1.26 skrll idx++;
2444 1.26 skrll iwi_scan_type_set(scan, idx, type);
2445 1.1 skrll }
2446 1.1 skrll }
2447 1.26 skrll if (count) {
2448 1.26 skrll *(p - count) = IWI_CHAN_5GHZ | count;
2449 1.26 skrll p++;
2450 1.26 skrll }
2451 1.1 skrll
2452 1.1 skrll count = 0;
2453 1.1 skrll for (i = 0; i <= IEEE80211_CHAN_MAX; i++) {
2454 1.1 skrll if (IEEE80211_IS_CHAN_2GHZ(&ic->ic_channels[i]) &&
2455 1.1 skrll isset(ic->ic_chan_active, i)) {
2456 1.1 skrll *++p = i;
2457 1.1 skrll count++;
2458 1.26 skrll idx++;
2459 1.26 skrll iwi_scan_type_set(scan, idx, type);
2460 1.1 skrll }
2461 1.1 skrll }
2462 1.1 skrll *(p - count) = IWI_CHAN_2GHZ | count;
2463 1.1 skrll
2464 1.1 skrll DPRINTF(("Start scanning\n"));
2465 1.26 skrll return iwi_cmd(sc, IWI_CMD_SCAN_V2, &scan, sizeof scan, 1);
2466 1.1 skrll }
2467 1.1 skrll
2468 1.1 skrll static int
2469 1.1 skrll iwi_auth_and_assoc(struct iwi_softc *sc)
2470 1.1 skrll {
2471 1.1 skrll struct ieee80211com *ic = &sc->sc_ic;
2472 1.1 skrll struct ieee80211_node *ni = ic->ic_bss;
2473 1.12 christos struct ifnet *ifp = &sc->sc_if;
2474 1.38 skrll struct ieee80211_wme_info wme;
2475 1.1 skrll struct iwi_configuration config;
2476 1.1 skrll struct iwi_associate assoc;
2477 1.1 skrll struct iwi_rateset rs;
2478 1.24 skrll uint16_t capinfo;
2479 1.24 skrll uint32_t data;
2480 1.1 skrll int error;
2481 1.1 skrll
2482 1.1 skrll if (IEEE80211_IS_CHAN_2GHZ(ni->ni_chan)) {
2483 1.1 skrll memset(&config, 0, sizeof config);
2484 1.12 christos config.bluetooth_coexistence = sc->bluetooth;
2485 1.12 christos config.antenna = sc->antenna;
2486 1.1 skrll config.multicast_enabled = 1;
2487 1.12 christos config.use_protection = 1;
2488 1.12 christos config.answer_pbreq =
2489 1.12 christos (ic->ic_opmode == IEEE80211_M_IBSS) ? 1 : 0;
2490 1.12 christos config.disable_unicast_decryption = 1;
2491 1.12 christos config.disable_multicast_decryption = 1;
2492 1.1 skrll DPRINTF(("Configuring adapter\n"));
2493 1.1 skrll error = iwi_cmd(sc, IWI_CMD_SET_CONFIGURATION, &config,
2494 1.1 skrll sizeof config, 1);
2495 1.1 skrll if (error != 0)
2496 1.1 skrll return error;
2497 1.1 skrll }
2498 1.1 skrll
2499 1.1 skrll #ifdef IWI_DEBUG
2500 1.1 skrll if (iwi_debug > 0) {
2501 1.1 skrll printf("Setting ESSID to ");
2502 1.1 skrll ieee80211_print_essid(ni->ni_essid, ni->ni_esslen);
2503 1.1 skrll printf("\n");
2504 1.1 skrll }
2505 1.1 skrll #endif
2506 1.1 skrll error = iwi_cmd(sc, IWI_CMD_SET_ESSID, ni->ni_essid, ni->ni_esslen, 1);
2507 1.1 skrll if (error != 0)
2508 1.1 skrll return error;
2509 1.1 skrll
2510 1.22 skrll /* the rate set has already been "negotiated" */
2511 1.1 skrll rs.mode = IEEE80211_IS_CHAN_5GHZ(ni->ni_chan) ? IWI_MODE_11A :
2512 1.1 skrll IWI_MODE_11G;
2513 1.22 skrll rs.type = IWI_RATESET_TYPE_NEGOTIATED;
2514 1.1 skrll rs.nrates = ni->ni_rates.rs_nrates;
2515 1.1 skrll memcpy(rs.rates, ni->ni_rates.rs_rates, rs.nrates);
2516 1.22 skrll DPRINTF(("Setting negotiated rates (%u)\n", rs.nrates));
2517 1.1 skrll error = iwi_cmd(sc, IWI_CMD_SET_RATES, &rs, sizeof rs, 1);
2518 1.1 skrll if (error != 0)
2519 1.1 skrll return error;
2520 1.1 skrll
2521 1.38 skrll if ((ic->ic_flags & IEEE80211_F_WME) && ni->ni_wme_ie != NULL) {
2522 1.38 skrll wme.wme_id = IEEE80211_ELEMID_VENDOR;
2523 1.38 skrll wme.wme_len = sizeof (struct ieee80211_wme_info) - 2;
2524 1.38 skrll wme.wme_oui[0] = 0x00;
2525 1.38 skrll wme.wme_oui[1] = 0x50;
2526 1.38 skrll wme.wme_oui[2] = 0xf2;
2527 1.38 skrll wme.wme_type = WME_OUI_TYPE;
2528 1.38 skrll wme.wme_subtype = WME_INFO_OUI_SUBTYPE;
2529 1.38 skrll wme.wme_version = WME_VERSION;
2530 1.38 skrll wme.wme_info = 0;
2531 1.38 skrll
2532 1.38 skrll DPRINTF(("Setting WME IE (len=%u)\n", wme.wme_len));
2533 1.38 skrll error = iwi_cmd(sc, IWI_CMD_SET_WMEIE, &wme, sizeof wme, 1);
2534 1.38 skrll if (error != 0)
2535 1.38 skrll return error;
2536 1.38 skrll }
2537 1.38 skrll
2538 1.12 christos if (ic->ic_opt_ie != NULL) {
2539 1.12 christos DPRINTF(("Setting optional IE (len=%u)\n", ic->ic_opt_ie_len));
2540 1.12 christos error = iwi_cmd(sc, IWI_CMD_SET_OPTIE, ic->ic_opt_ie,
2541 1.12 christos ic->ic_opt_ie_len, 1);
2542 1.12 christos if (error != 0)
2543 1.12 christos return error;
2544 1.12 christos }
2545 1.1 skrll data = htole32(ni->ni_rssi);
2546 1.1 skrll DPRINTF(("Setting sensitivity to %d\n", (int8_t)ni->ni_rssi));
2547 1.1 skrll error = iwi_cmd(sc, IWI_CMD_SET_SENSITIVITY, &data, sizeof data, 1);
2548 1.1 skrll if (error != 0)
2549 1.1 skrll return error;
2550 1.1 skrll
2551 1.1 skrll memset(&assoc, 0, sizeof assoc);
2552 1.1 skrll assoc.mode = IEEE80211_IS_CHAN_5GHZ(ni->ni_chan) ? IWI_MODE_11A :
2553 1.1 skrll IWI_MODE_11G;
2554 1.1 skrll assoc.chan = ieee80211_chan2ieee(ic, ni->ni_chan);
2555 1.12 christos if (ni->ni_authmode == IEEE80211_AUTH_SHARED)
2556 1.12 christos assoc.auth = (ic->ic_crypto.cs_def_txkey << 4) | IWI_AUTH_SHARED;
2557 1.38 skrll if ((ic->ic_flags & IEEE80211_F_WME) && ni->ni_wme_ie != NULL)
2558 1.38 skrll assoc.policy |= htole16(IWI_POLICY_WME);
2559 1.12 christos if (ic->ic_opt_ie != NULL)
2560 1.38 skrll assoc.policy |= htole16(IWI_POLICY_WPA);
2561 1.9 dyoung memcpy(assoc.tstamp, ni->ni_tstamp.data, 8);
2562 1.12 christos
2563 1.12 christos if (ic->ic_opmode == IEEE80211_M_IBSS)
2564 1.12 christos capinfo = IEEE80211_CAPINFO_IBSS;
2565 1.12 christos else
2566 1.12 christos capinfo = IEEE80211_CAPINFO_ESS;
2567 1.12 christos if (ic->ic_flags & IEEE80211_F_PRIVACY)
2568 1.12 christos capinfo |= IEEE80211_CAPINFO_PRIVACY;
2569 1.12 christos if ((ic->ic_flags & IEEE80211_F_SHPREAMBLE) &&
2570 1.12 christos IEEE80211_IS_CHAN_2GHZ(ni->ni_chan))
2571 1.12 christos capinfo |= IEEE80211_CAPINFO_SHORT_PREAMBLE;
2572 1.12 christos if (ic->ic_flags & IEEE80211_F_SHSLOT)
2573 1.12 christos capinfo |= IEEE80211_CAPINFO_SHORT_SLOTTIME;
2574 1.12 christos assoc.capinfo = htole16(capinfo);
2575 1.12 christos
2576 1.1 skrll assoc.lintval = htole16(ic->ic_lintval);
2577 1.1 skrll assoc.intval = htole16(ni->ni_intval);
2578 1.1 skrll IEEE80211_ADDR_COPY(assoc.bssid, ni->ni_bssid);
2579 1.12 christos if (ic->ic_opmode == IEEE80211_M_IBSS)
2580 1.12 christos IEEE80211_ADDR_COPY(assoc.dst, ifp->if_broadcastaddr);
2581 1.12 christos else
2582 1.12 christos IEEE80211_ADDR_COPY(assoc.dst, ni->ni_bssid);
2583 1.1 skrll DPRINTF(("Trying to associate to %s channel %u auth %u\n",
2584 1.1 skrll ether_sprintf(assoc.bssid), assoc.chan, assoc.auth));
2585 1.1 skrll return iwi_cmd(sc, IWI_CMD_ASSOCIATE, &assoc, sizeof assoc, 1);
2586 1.1 skrll }
2587 1.1 skrll
2588 1.1 skrll static int
2589 1.1 skrll iwi_init(struct ifnet *ifp)
2590 1.1 skrll {
2591 1.1 skrll struct iwi_softc *sc = ifp->if_softc;
2592 1.1 skrll struct ieee80211com *ic = &sc->sc_ic;
2593 1.1 skrll struct iwi_firmware *fw = &sc->fw;
2594 1.1 skrll int i, error;
2595 1.1 skrll
2596 1.1 skrll /* exit immediately if firmware has not been ioctl'd */
2597 1.1 skrll if (!(sc->flags & IWI_FLAG_FW_CACHED)) {
2598 1.12 christos if (!(sc->flags & IWI_FLAG_FW_WARNED))
2599 1.12 christos aprint_error("%s: Firmware not loaded\n",
2600 1.12 christos sc->sc_dev.dv_xname);
2601 1.12 christos sc->flags |= IWI_FLAG_FW_WARNED;
2602 1.1 skrll ifp->if_flags &= ~IFF_UP;
2603 1.1 skrll return EIO;
2604 1.1 skrll }
2605 1.1 skrll
2606 1.12 christos iwi_stop(ifp, 0);
2607 1.12 christos
2608 1.1 skrll if ((error = iwi_reset(sc)) != 0) {
2609 1.1 skrll aprint_error("%s: could not reset adapter\n",
2610 1.1 skrll sc->sc_dev.dv_xname);
2611 1.1 skrll goto fail;
2612 1.1 skrll }
2613 1.1 skrll
2614 1.1 skrll if ((error = iwi_load_firmware(sc, fw->boot, fw->boot_size)) != 0) {
2615 1.1 skrll aprint_error("%s: could not load boot firmware\n",
2616 1.1 skrll sc->sc_dev.dv_xname);
2617 1.1 skrll goto fail;
2618 1.1 skrll }
2619 1.1 skrll
2620 1.1 skrll if ((error = iwi_load_ucode(sc, fw->ucode, fw->ucode_size)) != 0) {
2621 1.1 skrll aprint_error("%s: could not load microcode\n",
2622 1.1 skrll sc->sc_dev.dv_xname);
2623 1.1 skrll goto fail;
2624 1.1 skrll }
2625 1.1 skrll
2626 1.1 skrll iwi_stop_master(sc);
2627 1.1 skrll
2628 1.14 skrll CSR_WRITE_4(sc, IWI_CSR_CMD_BASE, sc->cmdq.desc_map->dm_segs[0].ds_addr);
2629 1.14 skrll CSR_WRITE_4(sc, IWI_CSR_CMD_SIZE, sc->cmdq.count);
2630 1.14 skrll CSR_WRITE_4(sc, IWI_CSR_CMD_WIDX, sc->cmdq.cur);
2631 1.14 skrll
2632 1.38 skrll CSR_WRITE_4(sc, IWI_CSR_TX1_BASE, sc->txq[0].desc_map->dm_segs[0].ds_addr);
2633 1.38 skrll CSR_WRITE_4(sc, IWI_CSR_TX1_SIZE, sc->txq[0].count);
2634 1.38 skrll CSR_WRITE_4(sc, IWI_CSR_TX1_WIDX, sc->txq[0].cur);
2635 1.38 skrll
2636 1.38 skrll CSR_WRITE_4(sc, IWI_CSR_TX2_BASE, sc->txq[1].desc_map->dm_segs[0].ds_addr);
2637 1.38 skrll CSR_WRITE_4(sc, IWI_CSR_TX2_SIZE, sc->txq[1].count);
2638 1.38 skrll CSR_WRITE_4(sc, IWI_CSR_TX2_WIDX, sc->txq[1].cur);
2639 1.38 skrll
2640 1.38 skrll CSR_WRITE_4(sc, IWI_CSR_TX3_BASE, sc->txq[2].desc_map->dm_segs[0].ds_addr);
2641 1.38 skrll CSR_WRITE_4(sc, IWI_CSR_TX3_SIZE, sc->txq[2].count);
2642 1.38 skrll CSR_WRITE_4(sc, IWI_CSR_TX3_WIDX, sc->txq[2].cur);
2643 1.38 skrll
2644 1.38 skrll CSR_WRITE_4(sc, IWI_CSR_TX4_BASE, sc->txq[3].desc_map->dm_segs[0].ds_addr);
2645 1.38 skrll CSR_WRITE_4(sc, IWI_CSR_TX4_SIZE, sc->txq[3].count);
2646 1.38 skrll CSR_WRITE_4(sc, IWI_CSR_TX4_WIDX, sc->txq[3].cur);
2647 1.1 skrll
2648 1.14 skrll for (i = 0; i < sc->rxq.count; i++)
2649 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_RX_BASE + i * 4,
2650 1.14 skrll sc->rxq.data[i].map->dm_segs[0].ds_addr);
2651 1.1 skrll
2652 1.14 skrll CSR_WRITE_4(sc, IWI_CSR_RX_WIDX, sc->rxq.count -1);
2653 1.1 skrll
2654 1.1 skrll if ((error = iwi_load_firmware(sc, fw->main, fw->main_size)) != 0) {
2655 1.1 skrll aprint_error("%s: could not load main firmware\n",
2656 1.1 skrll sc->sc_dev.dv_xname);
2657 1.1 skrll goto fail;
2658 1.1 skrll }
2659 1.1 skrll
2660 1.1 skrll sc->flags |= IWI_FLAG_FW_INITED;
2661 1.1 skrll
2662 1.1 skrll if ((error = iwi_config(sc)) != 0) {
2663 1.1 skrll aprint_error("%s: device configuration failed\n",
2664 1.1 skrll sc->sc_dev.dv_xname);
2665 1.1 skrll goto fail;
2666 1.1 skrll }
2667 1.1 skrll
2668 1.38 skrll if (ic->ic_opmode != IEEE80211_M_MONITOR) {
2669 1.38 skrll if (ic->ic_roaming != IEEE80211_ROAMING_MANUAL)
2670 1.38 skrll ieee80211_new_state(ic, IEEE80211_S_SCAN, -1);
2671 1.38 skrll } else
2672 1.12 christos ieee80211_new_state(ic, IEEE80211_S_RUN, -1);
2673 1.1 skrll
2674 1.1 skrll ifp->if_flags &= ~IFF_OACTIVE;
2675 1.1 skrll ifp->if_flags |= IFF_RUNNING;
2676 1.1 skrll
2677 1.1 skrll return 0;
2678 1.1 skrll
2679 1.14 skrll fail: ifp->if_flags &= ~IFF_UP;
2680 1.14 skrll iwi_stop(ifp, 0);
2681 1.1 skrll
2682 1.1 skrll return error;
2683 1.1 skrll }
2684 1.1 skrll
2685 1.1 skrll static void
2686 1.1 skrll iwi_stop(struct ifnet *ifp, int disable)
2687 1.1 skrll {
2688 1.1 skrll struct iwi_softc *sc = ifp->if_softc;
2689 1.1 skrll struct ieee80211com *ic = &sc->sc_ic;
2690 1.1 skrll
2691 1.1 skrll iwi_stop_master(sc);
2692 1.1 skrll CSR_WRITE_4(sc, IWI_CSR_RST, IWI_RST_SW_RESET);
2693 1.1 skrll
2694 1.14 skrll /* reset rings */
2695 1.14 skrll iwi_reset_cmd_ring(sc, &sc->cmdq);
2696 1.38 skrll iwi_reset_tx_ring(sc, &sc->txq[0]);
2697 1.38 skrll iwi_reset_tx_ring(sc, &sc->txq[1]);
2698 1.38 skrll iwi_reset_tx_ring(sc, &sc->txq[2]);
2699 1.38 skrll iwi_reset_tx_ring(sc, &sc->txq[3]);
2700 1.14 skrll iwi_reset_rx_ring(sc, &sc->rxq);
2701 1.1 skrll
2702 1.1 skrll ifp->if_timer = 0;
2703 1.1 skrll ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
2704 1.1 skrll
2705 1.1 skrll ieee80211_new_state(ic, IEEE80211_S_INIT, -1);
2706 1.1 skrll }
2707 1.36 skrll
2708 1.36 skrll static void
2709 1.36 skrll iwi_error_log(struct iwi_softc *sc)
2710 1.36 skrll {
2711 1.36 skrll uint32_t b, n;
2712 1.36 skrll int i;
2713 1.36 skrll
2714 1.36 skrll static const char *const msg[] = {
2715 1.36 skrll "no error",
2716 1.36 skrll "failed",
2717 1.36 skrll "memory range low",
2718 1.36 skrll "memory range high",
2719 1.36 skrll "bad parameter",
2720 1.36 skrll "checksum",
2721 1.36 skrll "NMI",
2722 1.36 skrll "bad database",
2723 1.36 skrll "allocation failed",
2724 1.36 skrll "DMA underrun",
2725 1.36 skrll "DMA status",
2726 1.36 skrll "DINO",
2727 1.36 skrll "EEPROM",
2728 1.36 skrll "device assert",
2729 1.36 skrll "fatal"
2730 1.36 skrll };
2731 1.36 skrll
2732 1.36 skrll b = CSR_READ_4(sc, IWI_CSR_ERRORLOG);
2733 1.36 skrll n = MEM_READ_4(sc, b);
2734 1.36 skrll
2735 1.36 skrll b += 4;
2736 1.36 skrll
2737 1.36 skrll for (i = 0; i < n ; i++) {
2738 1.36 skrll struct iwi_error fw_error;
2739 1.36 skrll
2740 1.36 skrll MEM_CPY(sc, &fw_error, b, sizeof(fw_error));
2741 1.36 skrll
2742 1.37 skrll printf("%s: %s\n", sc->sc_dev.dv_xname,
2743 1.37 skrll msg[fw_error.type]);
2744 1.36 skrll
2745 1.36 skrll b += sizeof(fw_error);
2746 1.36 skrll }
2747 1.36 skrll }
2748