if_wpi.c revision 1.6.4.7 1 1.6.4.7 yamt /* $NetBSD: if_wpi.c,v 1.6.4.7 2007/12/07 17:30:25 yamt Exp $ */
2 1.6.4.2 yamt
3 1.6.4.2 yamt /*-
4 1.6.4.4 yamt * Copyright (c) 2006, 2007
5 1.6.4.2 yamt * Damien Bergamini <damien.bergamini (at) free.fr>
6 1.6.4.2 yamt *
7 1.6.4.2 yamt * Permission to use, copy, modify, and distribute this software for any
8 1.6.4.2 yamt * purpose with or without fee is hereby granted, provided that the above
9 1.6.4.2 yamt * copyright notice and this permission notice appear in all copies.
10 1.6.4.2 yamt *
11 1.6.4.2 yamt * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
12 1.6.4.2 yamt * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
13 1.6.4.2 yamt * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
14 1.6.4.2 yamt * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
15 1.6.4.2 yamt * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
16 1.6.4.2 yamt * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
17 1.6.4.2 yamt * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
18 1.6.4.2 yamt */
19 1.6.4.2 yamt
20 1.6.4.2 yamt #include <sys/cdefs.h>
21 1.6.4.7 yamt __KERNEL_RCSID(0, "$NetBSD: if_wpi.c,v 1.6.4.7 2007/12/07 17:30:25 yamt Exp $");
22 1.6.4.2 yamt
23 1.6.4.2 yamt /*
24 1.6.4.2 yamt * Driver for Intel PRO/Wireless 3945ABG 802.11 network adapters.
25 1.6.4.2 yamt */
26 1.6.4.2 yamt
27 1.6.4.2 yamt #include "bpfilter.h"
28 1.6.4.2 yamt
29 1.6.4.2 yamt #include <sys/param.h>
30 1.6.4.2 yamt #include <sys/sockio.h>
31 1.6.4.2 yamt #include <sys/sysctl.h>
32 1.6.4.2 yamt #include <sys/mbuf.h>
33 1.6.4.2 yamt #include <sys/kernel.h>
34 1.6.4.2 yamt #include <sys/socket.h>
35 1.6.4.2 yamt #include <sys/systm.h>
36 1.6.4.2 yamt #include <sys/malloc.h>
37 1.6.4.2 yamt #include <sys/conf.h>
38 1.6.4.2 yamt #include <sys/kauth.h>
39 1.6.4.3 yamt #include <sys/callout.h>
40 1.6.4.2 yamt
41 1.6.4.5 yamt #include <sys/bus.h>
42 1.6.4.2 yamt #include <machine/endian.h>
43 1.6.4.5 yamt #include <sys/intr.h>
44 1.6.4.2 yamt
45 1.6.4.2 yamt #include <dev/pci/pcireg.h>
46 1.6.4.2 yamt #include <dev/pci/pcivar.h>
47 1.6.4.2 yamt #include <dev/pci/pcidevs.h>
48 1.6.4.2 yamt
49 1.6.4.2 yamt #if NBPFILTER > 0
50 1.6.4.2 yamt #include <net/bpf.h>
51 1.6.4.2 yamt #endif
52 1.6.4.2 yamt #include <net/if.h>
53 1.6.4.2 yamt #include <net/if_arp.h>
54 1.6.4.2 yamt #include <net/if_dl.h>
55 1.6.4.2 yamt #include <net/if_ether.h>
56 1.6.4.2 yamt #include <net/if_media.h>
57 1.6.4.2 yamt #include <net/if_types.h>
58 1.6.4.2 yamt
59 1.6.4.2 yamt #include <net80211/ieee80211_var.h>
60 1.6.4.2 yamt #include <net80211/ieee80211_amrr.h>
61 1.6.4.2 yamt #include <net80211/ieee80211_radiotap.h>
62 1.6.4.2 yamt
63 1.6.4.2 yamt #include <netinet/in.h>
64 1.6.4.2 yamt #include <netinet/in_systm.h>
65 1.6.4.2 yamt #include <netinet/in_var.h>
66 1.6.4.2 yamt #include <netinet/ip.h>
67 1.6.4.2 yamt
68 1.6.4.2 yamt #include <dev/firmload.h>
69 1.6.4.2 yamt
70 1.6.4.2 yamt #include <dev/pci/if_wpireg.h>
71 1.6.4.2 yamt #include <dev/pci/if_wpivar.h>
72 1.6.4.2 yamt
73 1.6.4.2 yamt #ifdef WPI_DEBUG
74 1.6.4.2 yamt #define DPRINTF(x) if (wpi_debug > 0) printf x
75 1.6.4.2 yamt #define DPRINTFN(n, x) if (wpi_debug >= (n)) printf x
76 1.6.4.2 yamt int wpi_debug = 1;
77 1.6.4.2 yamt #else
78 1.6.4.2 yamt #define DPRINTF(x)
79 1.6.4.2 yamt #define DPRINTFN(n, x)
80 1.6.4.2 yamt #endif
81 1.6.4.2 yamt
82 1.6.4.2 yamt /*
83 1.6.4.2 yamt * Supported rates for 802.11a/b/g modes (in 500Kbps unit).
84 1.6.4.2 yamt */
85 1.6.4.2 yamt static const struct ieee80211_rateset wpi_rateset_11a =
86 1.6.4.2 yamt { 8, { 12, 18, 24, 36, 48, 72, 96, 108 } };
87 1.6.4.2 yamt
88 1.6.4.2 yamt static const struct ieee80211_rateset wpi_rateset_11b =
89 1.6.4.2 yamt { 4, { 2, 4, 11, 22 } };
90 1.6.4.2 yamt
91 1.6.4.2 yamt static const struct ieee80211_rateset wpi_rateset_11g =
92 1.6.4.2 yamt { 12, { 2, 4, 11, 22, 12, 18, 24, 36, 48, 72, 96, 108 } };
93 1.6.4.2 yamt
94 1.6.4.7 yamt static int wpi_match(device_t, struct cfdata *, void *);
95 1.6.4.7 yamt static void wpi_attach(device_t, device_t, void *);
96 1.6.4.7 yamt static int wpi_detach(device_t , int);
97 1.6.4.2 yamt static void wpi_power(int, void *);
98 1.6.4.3 yamt static int wpi_dma_contig_alloc(bus_dma_tag_t, struct wpi_dma_info *,
99 1.6.4.2 yamt void **, bus_size_t, bus_size_t, int);
100 1.6.4.3 yamt static void wpi_dma_contig_free(struct wpi_dma_info *);
101 1.6.4.2 yamt static int wpi_alloc_shared(struct wpi_softc *);
102 1.6.4.2 yamt static void wpi_free_shared(struct wpi_softc *);
103 1.6.4.4 yamt static int wpi_alloc_fwmem(struct wpi_softc *);
104 1.6.4.4 yamt static void wpi_free_fwmem(struct wpi_softc *);
105 1.6.4.3 yamt static struct wpi_rbuf *wpi_alloc_rbuf(struct wpi_softc *);
106 1.6.4.4 yamt static void wpi_free_rbuf(struct mbuf *, void *, size_t, void *);
107 1.6.4.3 yamt static int wpi_alloc_rpool(struct wpi_softc *);
108 1.6.4.3 yamt static void wpi_free_rpool(struct wpi_softc *);
109 1.6.4.2 yamt static int wpi_alloc_rx_ring(struct wpi_softc *, struct wpi_rx_ring *);
110 1.6.4.2 yamt static void wpi_reset_rx_ring(struct wpi_softc *, struct wpi_rx_ring *);
111 1.6.4.2 yamt static void wpi_free_rx_ring(struct wpi_softc *, struct wpi_rx_ring *);
112 1.6.4.2 yamt static int wpi_alloc_tx_ring(struct wpi_softc *, struct wpi_tx_ring *, int,
113 1.6.4.2 yamt int);
114 1.6.4.2 yamt static void wpi_reset_tx_ring(struct wpi_softc *, struct wpi_tx_ring *);
115 1.6.4.2 yamt static void wpi_free_tx_ring(struct wpi_softc *, struct wpi_tx_ring *);
116 1.6.4.2 yamt static struct ieee80211_node * wpi_node_alloc(struct ieee80211_node_table *);
117 1.6.4.4 yamt static void wpi_newassoc(struct ieee80211_node *, int);
118 1.6.4.2 yamt static int wpi_media_change(struct ifnet *);
119 1.6.4.2 yamt static int wpi_newstate(struct ieee80211com *, enum ieee80211_state, int);
120 1.6.4.4 yamt static void wpi_fix_channel(struct ieee80211com *, struct mbuf *);
121 1.6.4.2 yamt static void wpi_mem_lock(struct wpi_softc *);
122 1.6.4.2 yamt static void wpi_mem_unlock(struct wpi_softc *);
123 1.6.4.2 yamt static uint32_t wpi_mem_read(struct wpi_softc *, uint16_t);
124 1.6.4.2 yamt static void wpi_mem_write(struct wpi_softc *, uint16_t, uint32_t);
125 1.6.4.4 yamt static void wpi_mem_write_region_4(struct wpi_softc *, uint16_t,
126 1.6.4.4 yamt const uint32_t *, int);
127 1.6.4.4 yamt static int wpi_read_prom_data(struct wpi_softc *, uint32_t, void *, int);
128 1.6.4.4 yamt static int wpi_load_microcode(struct wpi_softc *, const uint8_t *, int);
129 1.6.4.4 yamt static int wpi_load_firmware(struct wpi_softc *);
130 1.6.4.4 yamt static void wpi_calib_timeout(void *);
131 1.6.4.4 yamt static void wpi_iter_func(void *, struct ieee80211_node *);
132 1.6.4.4 yamt static void wpi_power_calibration(struct wpi_softc *, int);
133 1.6.4.2 yamt static void wpi_rx_intr(struct wpi_softc *, struct wpi_rx_desc *,
134 1.6.4.2 yamt struct wpi_rx_data *);
135 1.6.4.2 yamt static void wpi_tx_intr(struct wpi_softc *, struct wpi_rx_desc *);
136 1.6.4.2 yamt static void wpi_cmd_intr(struct wpi_softc *, struct wpi_rx_desc *);
137 1.6.4.2 yamt static void wpi_notif_intr(struct wpi_softc *);
138 1.6.4.2 yamt static int wpi_intr(void *);
139 1.6.4.4 yamt static void wpi_read_eeprom(struct wpi_softc *);
140 1.6.4.4 yamt static void wpi_read_eeprom_channels(struct wpi_softc *, int);
141 1.6.4.4 yamt static void wpi_read_eeprom_group(struct wpi_softc *, int);
142 1.6.4.2 yamt static uint8_t wpi_plcp_signal(int);
143 1.6.4.2 yamt static int wpi_tx_data(struct wpi_softc *, struct mbuf *,
144 1.6.4.2 yamt struct ieee80211_node *, int);
145 1.6.4.2 yamt static void wpi_start(struct ifnet *);
146 1.6.4.2 yamt static void wpi_watchdog(struct ifnet *);
147 1.6.4.4 yamt static int wpi_ioctl(struct ifnet *, u_long, void *);
148 1.6.4.2 yamt static int wpi_cmd(struct wpi_softc *, int, const void *, int, int);
149 1.6.4.2 yamt static int wpi_wme_update(struct ieee80211com *);
150 1.6.4.2 yamt static int wpi_mrr_setup(struct wpi_softc *);
151 1.6.4.2 yamt static void wpi_set_led(struct wpi_softc *, uint8_t, uint8_t, uint8_t);
152 1.6.4.2 yamt static void wpi_enable_tsf(struct wpi_softc *, struct ieee80211_node *);
153 1.6.4.4 yamt static int wpi_set_txpower(struct wpi_softc *,
154 1.6.4.4 yamt struct ieee80211_channel *, int);
155 1.6.4.4 yamt static int wpi_get_power_index(struct wpi_softc *,
156 1.6.4.4 yamt struct wpi_power_group *, struct ieee80211_channel *, int);
157 1.6.4.2 yamt static int wpi_setup_beacon(struct wpi_softc *, struct ieee80211_node *);
158 1.6.4.2 yamt static int wpi_auth(struct wpi_softc *);
159 1.6.4.2 yamt static int wpi_scan(struct wpi_softc *, uint16_t);
160 1.6.4.2 yamt static int wpi_config(struct wpi_softc *);
161 1.6.4.2 yamt static void wpi_stop_master(struct wpi_softc *);
162 1.6.4.2 yamt static int wpi_power_up(struct wpi_softc *);
163 1.6.4.2 yamt static int wpi_reset(struct wpi_softc *);
164 1.6.4.2 yamt static void wpi_hw_config(struct wpi_softc *);
165 1.6.4.2 yamt static int wpi_init(struct ifnet *);
166 1.6.4.2 yamt static void wpi_stop(struct ifnet *, int);
167 1.6.4.2 yamt
168 1.6.4.7 yamt CFATTACH_DECL_NEW(wpi, sizeof (struct wpi_softc), wpi_match, wpi_attach,
169 1.6.4.2 yamt wpi_detach, NULL);
170 1.6.4.2 yamt
171 1.6.4.2 yamt static int
172 1.6.4.7 yamt wpi_match(device_t parent, struct cfdata *match __unused, void *aux)
173 1.6.4.2 yamt {
174 1.6.4.2 yamt struct pci_attach_args *pa = aux;
175 1.6.4.2 yamt
176 1.6.4.2 yamt if (PCI_VENDOR(pa->pa_id) != PCI_VENDOR_INTEL)
177 1.6.4.2 yamt return 0;
178 1.6.4.2 yamt
179 1.6.4.2 yamt if (PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_INTEL_PRO_WL_3945ABG_1 ||
180 1.6.4.3 yamt PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_INTEL_PRO_WL_3945ABG_2)
181 1.6.4.2 yamt return 1;
182 1.6.4.2 yamt
183 1.6.4.2 yamt return 0;
184 1.6.4.2 yamt }
185 1.6.4.2 yamt
186 1.6.4.2 yamt /* Base Address Register */
187 1.6.4.2 yamt #define WPI_PCI_BAR0 0x10
188 1.6.4.2 yamt
189 1.6.4.2 yamt static void
190 1.6.4.7 yamt wpi_attach(device_t parent __unused, device_t self, void *aux)
191 1.6.4.2 yamt {
192 1.6.4.7 yamt struct wpi_softc *sc = device_private(self);
193 1.6.4.2 yamt struct ieee80211com *ic = &sc->sc_ic;
194 1.6.4.2 yamt struct ifnet *ifp = &sc->sc_ec.ec_if;
195 1.6.4.2 yamt struct pci_attach_args *pa = aux;
196 1.6.4.2 yamt const char *intrstr;
197 1.6.4.2 yamt char devinfo[256];
198 1.6.4.2 yamt bus_space_tag_t memt;
199 1.6.4.2 yamt bus_space_handle_t memh;
200 1.6.4.2 yamt pci_intr_handle_t ih;
201 1.6.4.2 yamt pcireg_t data;
202 1.6.4.4 yamt int error, ac, revision;
203 1.6.4.2 yamt
204 1.6.4.7 yamt sc->sc_dev = self;
205 1.6.4.2 yamt sc->sc_pct = pa->pa_pc;
206 1.6.4.2 yamt sc->sc_pcitag = pa->pa_tag;
207 1.6.4.2 yamt
208 1.6.4.4 yamt callout_init(&sc->calib_to, 0);
209 1.6.4.7 yamt callout_setfunc(&sc->calib_to, wpi_calib_timeout, sc);
210 1.6.4.2 yamt
211 1.6.4.2 yamt pci_devinfo(pa->pa_id, pa->pa_class, 0, devinfo, sizeof devinfo);
212 1.6.4.2 yamt revision = PCI_REVISION(pa->pa_class);
213 1.6.4.2 yamt aprint_normal(": %s (rev. 0x%02x)\n", devinfo, revision);
214 1.6.4.2 yamt
215 1.6.4.2 yamt /* clear device specific PCI configuration register 0x41 */
216 1.6.4.2 yamt data = pci_conf_read(sc->sc_pct, sc->sc_pcitag, 0x40);
217 1.6.4.2 yamt data &= ~0x0000ff00;
218 1.6.4.2 yamt pci_conf_write(sc->sc_pct, sc->sc_pcitag, 0x40, data);
219 1.6.4.2 yamt
220 1.6.4.2 yamt /* enable bus-mastering */
221 1.6.4.2 yamt data = pci_conf_read(sc->sc_pct, sc->sc_pcitag, PCI_COMMAND_STATUS_REG);
222 1.6.4.2 yamt data |= PCI_COMMAND_MASTER_ENABLE;
223 1.6.4.2 yamt pci_conf_write(sc->sc_pct, sc->sc_pcitag, PCI_COMMAND_STATUS_REG, data);
224 1.6.4.2 yamt
225 1.6.4.2 yamt /* map the register window */
226 1.6.4.2 yamt error = pci_mapreg_map(pa, WPI_PCI_BAR0, PCI_MAPREG_TYPE_MEM |
227 1.6.4.3 yamt PCI_MAPREG_MEM_TYPE_32BIT, 0, &memt, &memh, NULL, &sc->sc_sz);
228 1.6.4.2 yamt if (error != 0) {
229 1.6.4.7 yamt aprint_error_dev(self, "could not map memory space\n");
230 1.6.4.2 yamt return;
231 1.6.4.2 yamt }
232 1.6.4.2 yamt
233 1.6.4.2 yamt sc->sc_st = memt;
234 1.6.4.2 yamt sc->sc_sh = memh;
235 1.6.4.2 yamt sc->sc_dmat = pa->pa_dmat;
236 1.6.4.2 yamt
237 1.6.4.2 yamt if (pci_intr_map(pa, &ih) != 0) {
238 1.6.4.7 yamt aprint_error_dev(self, "could not map interrupt\n");
239 1.6.4.2 yamt return;
240 1.6.4.2 yamt }
241 1.6.4.2 yamt
242 1.6.4.2 yamt intrstr = pci_intr_string(sc->sc_pct, ih);
243 1.6.4.2 yamt sc->sc_ih = pci_intr_establish(sc->sc_pct, ih, IPL_NET, wpi_intr, sc);
244 1.6.4.2 yamt if (sc->sc_ih == NULL) {
245 1.6.4.7 yamt aprint_error_dev(self, "could not establish interrupt");
246 1.6.4.2 yamt if (intrstr != NULL)
247 1.6.4.2 yamt aprint_error(" at %s", intrstr);
248 1.6.4.2 yamt aprint_error("\n");
249 1.6.4.2 yamt return;
250 1.6.4.2 yamt }
251 1.6.4.7 yamt aprint_normal_dev(self, "interrupting at %s\n", intrstr);
252 1.6.4.2 yamt
253 1.6.4.2 yamt if (wpi_reset(sc) != 0) {
254 1.6.4.7 yamt aprint_error_dev(self, "could not reset adapter\n");
255 1.6.4.2 yamt return;
256 1.6.4.2 yamt }
257 1.6.4.2 yamt
258 1.6.4.4 yamt /*
259 1.6.4.4 yamt * Allocate DMA memory for firmware transfers.
260 1.6.4.4 yamt */
261 1.6.4.7 yamt if ((error = wpi_alloc_fwmem(sc)) != 0)
262 1.6.4.4 yamt return;
263 1.6.4.4 yamt
264 1.6.4.2 yamt /*
265 1.6.4.2 yamt * Allocate shared page and Tx/Rx rings.
266 1.6.4.2 yamt */
267 1.6.4.2 yamt if ((error = wpi_alloc_shared(sc)) != 0) {
268 1.6.4.7 yamt aprint_error_dev(self, "could not allocate shared area\n");
269 1.6.4.4 yamt goto fail1;
270 1.6.4.2 yamt }
271 1.6.4.2 yamt
272 1.6.4.3 yamt if ((error = wpi_alloc_rpool(sc)) != 0) {
273 1.6.4.7 yamt aprint_error_dev(self, "could not allocate Rx buffers\n");
274 1.6.4.4 yamt goto fail2;
275 1.6.4.3 yamt }
276 1.6.4.3 yamt
277 1.6.4.2 yamt for (ac = 0; ac < 4; ac++) {
278 1.6.4.2 yamt error = wpi_alloc_tx_ring(sc, &sc->txq[ac], WPI_TX_RING_COUNT, ac);
279 1.6.4.2 yamt if (error != 0) {
280 1.6.4.7 yamt aprint_error_dev(self, "could not allocate Tx ring %d\n", ac);
281 1.6.4.4 yamt goto fail3;
282 1.6.4.2 yamt }
283 1.6.4.2 yamt }
284 1.6.4.2 yamt
285 1.6.4.2 yamt error = wpi_alloc_tx_ring(sc, &sc->cmdq, WPI_CMD_RING_COUNT, 4);
286 1.6.4.2 yamt if (error != 0) {
287 1.6.4.7 yamt aprint_error_dev(self, "could not allocate command ring\n");
288 1.6.4.3 yamt goto fail3;
289 1.6.4.2 yamt }
290 1.6.4.2 yamt
291 1.6.4.2 yamt if (wpi_alloc_rx_ring(sc, &sc->rxq) != 0) {
292 1.6.4.7 yamt aprint_error_dev(self, "could not allocate Rx ring\n");
293 1.6.4.3 yamt goto fail4;
294 1.6.4.2 yamt }
295 1.6.4.2 yamt
296 1.6.4.2 yamt ic->ic_ifp = ifp;
297 1.6.4.2 yamt ic->ic_phytype = IEEE80211_T_OFDM; /* not only, but not used */
298 1.6.4.2 yamt ic->ic_opmode = IEEE80211_M_STA; /* default to BSS mode */
299 1.6.4.2 yamt ic->ic_state = IEEE80211_S_INIT;
300 1.6.4.2 yamt
301 1.6.4.2 yamt /* set device capabilities */
302 1.6.4.2 yamt ic->ic_caps =
303 1.6.4.2 yamt IEEE80211_C_IBSS | /* IBSS mode support */
304 1.6.4.2 yamt IEEE80211_C_WPA | /* 802.11i */
305 1.6.4.2 yamt IEEE80211_C_MONITOR | /* monitor mode supported */
306 1.6.4.2 yamt IEEE80211_C_TXPMGT | /* tx power management */
307 1.6.4.2 yamt IEEE80211_C_SHSLOT | /* short slot time supported */
308 1.6.4.2 yamt IEEE80211_C_SHPREAMBLE | /* short preamble supported */
309 1.6.4.2 yamt IEEE80211_C_WME; /* 802.11e */
310 1.6.4.2 yamt
311 1.6.4.4 yamt /* read supported channels and MAC address from EEPROM */
312 1.6.4.2 yamt wpi_read_eeprom(sc);
313 1.6.4.2 yamt
314 1.6.4.4 yamt /* set supported .11a, .11b, .11g rates */
315 1.6.4.3 yamt ic->ic_sup_rates[IEEE80211_MODE_11A] = wpi_rateset_11a;
316 1.6.4.2 yamt ic->ic_sup_rates[IEEE80211_MODE_11B] = wpi_rateset_11b;
317 1.6.4.2 yamt ic->ic_sup_rates[IEEE80211_MODE_11G] = wpi_rateset_11g;
318 1.6.4.2 yamt
319 1.6.4.2 yamt ic->ic_ibss_chan = &ic->ic_channels[0];
320 1.6.4.2 yamt
321 1.6.4.2 yamt ifp->if_softc = sc;
322 1.6.4.2 yamt ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
323 1.6.4.2 yamt ifp->if_init = wpi_init;
324 1.6.4.2 yamt ifp->if_stop = wpi_stop;
325 1.6.4.2 yamt ifp->if_ioctl = wpi_ioctl;
326 1.6.4.2 yamt ifp->if_start = wpi_start;
327 1.6.4.2 yamt ifp->if_watchdog = wpi_watchdog;
328 1.6.4.2 yamt IFQ_SET_READY(&ifp->if_snd);
329 1.6.4.7 yamt memcpy(ifp->if_xname, device_xname(self), IFNAMSIZ);
330 1.6.4.2 yamt
331 1.6.4.2 yamt if_attach(ifp);
332 1.6.4.2 yamt ieee80211_ifattach(ic);
333 1.6.4.2 yamt /* override default methods */
334 1.6.4.2 yamt ic->ic_node_alloc = wpi_node_alloc;
335 1.6.4.2 yamt ic->ic_newassoc = wpi_newassoc;
336 1.6.4.2 yamt ic->ic_wme.wme_update = wpi_wme_update;
337 1.6.4.2 yamt
338 1.6.4.2 yamt /* override state transition machine */
339 1.6.4.2 yamt sc->sc_newstate = ic->ic_newstate;
340 1.6.4.2 yamt ic->ic_newstate = wpi_newstate;
341 1.6.4.2 yamt ieee80211_media_init(ic, wpi_media_change, ieee80211_media_status);
342 1.6.4.2 yamt
343 1.6.4.2 yamt sc->amrr.amrr_min_success_threshold = 1;
344 1.6.4.2 yamt sc->amrr.amrr_max_success_threshold = 15;
345 1.6.4.2 yamt
346 1.6.4.2 yamt /* set powerhook */
347 1.6.4.7 yamt sc->powerhook = powerhook_establish(device_xname(self), wpi_power, sc);
348 1.6.4.2 yamt
349 1.6.4.2 yamt #if NBPFILTER > 0
350 1.6.4.2 yamt bpfattach2(ifp, DLT_IEEE802_11_RADIO,
351 1.6.4.2 yamt sizeof (struct ieee80211_frame) + IEEE80211_RADIOTAP_HDRLEN,
352 1.6.4.2 yamt &sc->sc_drvbpf);
353 1.6.4.2 yamt
354 1.6.4.2 yamt sc->sc_rxtap_len = sizeof sc->sc_rxtapu;
355 1.6.4.2 yamt sc->sc_rxtap.wr_ihdr.it_len = htole16(sc->sc_rxtap_len);
356 1.6.4.2 yamt sc->sc_rxtap.wr_ihdr.it_present = htole32(WPI_RX_RADIOTAP_PRESENT);
357 1.6.4.2 yamt
358 1.6.4.2 yamt sc->sc_txtap_len = sizeof sc->sc_txtapu;
359 1.6.4.2 yamt sc->sc_txtap.wt_ihdr.it_len = htole16(sc->sc_txtap_len);
360 1.6.4.2 yamt sc->sc_txtap.wt_ihdr.it_present = htole32(WPI_TX_RADIOTAP_PRESENT);
361 1.6.4.2 yamt #endif
362 1.6.4.2 yamt
363 1.6.4.2 yamt ieee80211_announce(ic);
364 1.6.4.2 yamt
365 1.6.4.2 yamt return;
366 1.6.4.2 yamt
367 1.6.4.4 yamt fail4: wpi_free_tx_ring(sc, &sc->cmdq);
368 1.6.4.4 yamt fail3: while (--ac >= 0)
369 1.6.4.2 yamt wpi_free_tx_ring(sc, &sc->txq[ac]);
370 1.6.4.3 yamt wpi_free_rpool(sc);
371 1.6.4.4 yamt fail2: wpi_free_shared(sc);
372 1.6.4.4 yamt fail1: wpi_free_fwmem(sc);
373 1.6.4.2 yamt }
374 1.6.4.2 yamt
375 1.6.4.2 yamt static int
376 1.6.4.7 yamt wpi_detach(device_t self, int flags __unused)
377 1.6.4.2 yamt {
378 1.6.4.7 yamt struct wpi_softc *sc = device_private(self);
379 1.6.4.3 yamt struct ifnet *ifp = sc->sc_ic.ic_ifp;
380 1.6.4.2 yamt int ac;
381 1.6.4.2 yamt
382 1.6.4.2 yamt wpi_stop(ifp, 1);
383 1.6.4.2 yamt
384 1.6.4.2 yamt #if NBPFILTER > 0
385 1.6.4.2 yamt if (ifp != NULL)
386 1.6.4.2 yamt bpfdetach(ifp);
387 1.6.4.2 yamt #endif
388 1.6.4.2 yamt ieee80211_ifdetach(&sc->sc_ic);
389 1.6.4.2 yamt if (ifp != NULL)
390 1.6.4.2 yamt if_detach(ifp);
391 1.6.4.2 yamt
392 1.6.4.2 yamt for (ac = 0; ac < 4; ac++)
393 1.6.4.2 yamt wpi_free_tx_ring(sc, &sc->txq[ac]);
394 1.6.4.2 yamt wpi_free_tx_ring(sc, &sc->cmdq);
395 1.6.4.2 yamt wpi_free_rx_ring(sc, &sc->rxq);
396 1.6.4.3 yamt wpi_free_rpool(sc);
397 1.6.4.2 yamt wpi_free_shared(sc);
398 1.6.4.2 yamt
399 1.6.4.2 yamt if (sc->sc_ih != NULL) {
400 1.6.4.2 yamt pci_intr_disestablish(sc->sc_pct, sc->sc_ih);
401 1.6.4.2 yamt sc->sc_ih = NULL;
402 1.6.4.2 yamt }
403 1.6.4.2 yamt
404 1.6.4.2 yamt bus_space_unmap(sc->sc_st, sc->sc_sh, sc->sc_sz);
405 1.6.4.2 yamt
406 1.6.4.2 yamt return 0;
407 1.6.4.2 yamt }
408 1.6.4.2 yamt
409 1.6.4.2 yamt static void
410 1.6.4.2 yamt wpi_power(int why, void *arg)
411 1.6.4.2 yamt {
412 1.6.4.2 yamt struct wpi_softc *sc = arg;
413 1.6.4.2 yamt struct ifnet *ifp;
414 1.6.4.2 yamt pcireg_t data;
415 1.6.4.2 yamt int s;
416 1.6.4.2 yamt
417 1.6.4.2 yamt if (why != PWR_RESUME)
418 1.6.4.2 yamt return;
419 1.6.4.2 yamt
420 1.6.4.2 yamt /* clear device specific PCI configuration register 0x41 */
421 1.6.4.2 yamt data = pci_conf_read(sc->sc_pct, sc->sc_pcitag, 0x40);
422 1.6.4.2 yamt data &= ~0x0000ff00;
423 1.6.4.2 yamt pci_conf_write(sc->sc_pct, sc->sc_pcitag, 0x40, data);
424 1.6.4.2 yamt
425 1.6.4.2 yamt s = splnet();
426 1.6.4.2 yamt ifp = sc->sc_ic.ic_ifp;
427 1.6.4.2 yamt if (ifp->if_flags & IFF_UP) {
428 1.6.4.2 yamt ifp->if_init(ifp);
429 1.6.4.2 yamt if (ifp->if_flags & IFF_RUNNING)
430 1.6.4.2 yamt ifp->if_start(ifp);
431 1.6.4.2 yamt }
432 1.6.4.2 yamt splx(s);
433 1.6.4.2 yamt }
434 1.6.4.2 yamt
435 1.6.4.2 yamt static int
436 1.6.4.3 yamt wpi_dma_contig_alloc(bus_dma_tag_t tag, struct wpi_dma_info *dma,
437 1.6.4.2 yamt void **kvap, bus_size_t size, bus_size_t alignment, int flags)
438 1.6.4.2 yamt {
439 1.6.4.2 yamt int nsegs, error;
440 1.6.4.2 yamt
441 1.6.4.3 yamt dma->tag = tag;
442 1.6.4.2 yamt dma->size = size;
443 1.6.4.2 yamt
444 1.6.4.3 yamt error = bus_dmamap_create(tag, size, 1, size, 0, flags, &dma->map);
445 1.6.4.3 yamt if (error != 0)
446 1.6.4.2 yamt goto fail;
447 1.6.4.2 yamt
448 1.6.4.3 yamt error = bus_dmamem_alloc(tag, size, alignment, 0, &dma->seg, 1, &nsegs,
449 1.6.4.3 yamt flags);
450 1.6.4.3 yamt if (error != 0)
451 1.6.4.2 yamt goto fail;
452 1.6.4.2 yamt
453 1.6.4.3 yamt error = bus_dmamem_map(tag, &dma->seg, 1, size, &dma->vaddr, flags);
454 1.6.4.3 yamt if (error != 0)
455 1.6.4.2 yamt goto fail;
456 1.6.4.2 yamt
457 1.6.4.3 yamt error = bus_dmamap_load(tag, dma->map, dma->vaddr, size, NULL, flags);
458 1.6.4.3 yamt if (error != 0)
459 1.6.4.2 yamt goto fail;
460 1.6.4.2 yamt
461 1.6.4.2 yamt memset(dma->vaddr, 0, size);
462 1.6.4.2 yamt
463 1.6.4.2 yamt dma->paddr = dma->map->dm_segs[0].ds_addr;
464 1.6.4.3 yamt if (kvap != NULL)
465 1.6.4.3 yamt *kvap = dma->vaddr;
466 1.6.4.2 yamt
467 1.6.4.2 yamt return 0;
468 1.6.4.2 yamt
469 1.6.4.3 yamt fail: wpi_dma_contig_free(dma);
470 1.6.4.2 yamt return error;
471 1.6.4.2 yamt }
472 1.6.4.2 yamt
473 1.6.4.2 yamt static void
474 1.6.4.3 yamt wpi_dma_contig_free(struct wpi_dma_info *dma)
475 1.6.4.2 yamt {
476 1.6.4.2 yamt if (dma->map != NULL) {
477 1.6.4.2 yamt if (dma->vaddr != NULL) {
478 1.6.4.3 yamt bus_dmamap_unload(dma->tag, dma->map);
479 1.6.4.3 yamt bus_dmamem_unmap(dma->tag, dma->vaddr, dma->size);
480 1.6.4.3 yamt bus_dmamem_free(dma->tag, &dma->seg, 1);
481 1.6.4.2 yamt dma->vaddr = NULL;
482 1.6.4.2 yamt }
483 1.6.4.3 yamt bus_dmamap_destroy(dma->tag, dma->map);
484 1.6.4.2 yamt dma->map = NULL;
485 1.6.4.2 yamt }
486 1.6.4.2 yamt }
487 1.6.4.2 yamt
488 1.6.4.2 yamt /*
489 1.6.4.2 yamt * Allocate a shared page between host and NIC.
490 1.6.4.2 yamt */
491 1.6.4.2 yamt static int
492 1.6.4.2 yamt wpi_alloc_shared(struct wpi_softc *sc)
493 1.6.4.2 yamt {
494 1.6.4.2 yamt int error;
495 1.6.4.2 yamt /* must be aligned on a 4K-page boundary */
496 1.6.4.3 yamt error = wpi_dma_contig_alloc(sc->sc_dmat, &sc->shared_dma,
497 1.6.4.4 yamt (void **)&sc->shared, sizeof (struct wpi_shared),
498 1.6.4.4 yamt WPI_BUF_ALIGN,BUS_DMA_NOWAIT);
499 1.6.4.2 yamt if (error != 0)
500 1.6.4.7 yamt aprint_error_dev(sc->sc_dev,
501 1.6.4.7 yamt "could not allocate shared area DMA memory\n");
502 1.6.4.2 yamt
503 1.6.4.2 yamt return error;
504 1.6.4.2 yamt }
505 1.6.4.2 yamt
506 1.6.4.2 yamt static void
507 1.6.4.2 yamt wpi_free_shared(struct wpi_softc *sc)
508 1.6.4.2 yamt {
509 1.6.4.3 yamt wpi_dma_contig_free(&sc->shared_dma);
510 1.6.4.3 yamt }
511 1.6.4.3 yamt
512 1.6.4.4 yamt /*
513 1.6.4.4 yamt * Allocate DMA-safe memory for firmware transfer.
514 1.6.4.4 yamt */
515 1.6.4.4 yamt static int
516 1.6.4.4 yamt wpi_alloc_fwmem(struct wpi_softc *sc)
517 1.6.4.4 yamt {
518 1.6.4.4 yamt int error;
519 1.6.4.4 yamt /* allocate enough contiguous space to store text and data */
520 1.6.4.4 yamt error = wpi_dma_contig_alloc(sc->sc_dmat, &sc->fw_dma, NULL,
521 1.6.4.4 yamt WPI_FW_MAIN_TEXT_MAXSZ + WPI_FW_MAIN_DATA_MAXSZ, 0,
522 1.6.4.4 yamt BUS_DMA_NOWAIT);
523 1.6.4.4 yamt
524 1.6.4.4 yamt if (error != 0)
525 1.6.4.7 yamt aprint_error_dev(sc->sc_dev,
526 1.6.4.7 yamt "could not allocate firmware transfer area"
527 1.6.4.7 yamt "DMA memory\n");
528 1.6.4.4 yamt return error;
529 1.6.4.4 yamt }
530 1.6.4.4 yamt
531 1.6.4.4 yamt static void
532 1.6.4.4 yamt wpi_free_fwmem(struct wpi_softc *sc)
533 1.6.4.4 yamt {
534 1.6.4.4 yamt wpi_dma_contig_free(&sc->fw_dma);
535 1.6.4.4 yamt }
536 1.6.4.4 yamt
537 1.6.4.4 yamt
538 1.6.4.3 yamt static struct wpi_rbuf *
539 1.6.4.3 yamt wpi_alloc_rbuf(struct wpi_softc *sc)
540 1.6.4.3 yamt {
541 1.6.4.3 yamt struct wpi_rbuf *rbuf;
542 1.6.4.3 yamt
543 1.6.4.3 yamt rbuf = SLIST_FIRST(&sc->rxq.freelist);
544 1.6.4.3 yamt if (rbuf == NULL)
545 1.6.4.3 yamt return NULL;
546 1.6.4.3 yamt SLIST_REMOVE_HEAD(&sc->rxq.freelist, next);
547 1.6.4.4 yamt sc->rxq.nb_free_entries --;
548 1.6.4.4 yamt
549 1.6.4.3 yamt return rbuf;
550 1.6.4.3 yamt }
551 1.6.4.3 yamt
552 1.6.4.3 yamt /*
553 1.6.4.3 yamt * This is called automatically by the network stack when the mbuf to which our
554 1.6.4.3 yamt * Rx buffer is attached is freed.
555 1.6.4.3 yamt */
556 1.6.4.3 yamt static void
557 1.6.4.4 yamt wpi_free_rbuf(struct mbuf* m, void *buf, size_t size, void *arg)
558 1.6.4.3 yamt {
559 1.6.4.3 yamt struct wpi_rbuf *rbuf = arg;
560 1.6.4.3 yamt struct wpi_softc *sc = rbuf->sc;
561 1.6.4.3 yamt
562 1.6.4.3 yamt /* put the buffer back in the free list */
563 1.6.4.4 yamt
564 1.6.4.3 yamt SLIST_INSERT_HEAD(&sc->rxq.freelist, rbuf, next);
565 1.6.4.4 yamt sc->rxq.nb_free_entries ++;
566 1.6.4.3 yamt
567 1.6.4.6 yamt if (__predict_true(m != NULL))
568 1.6.4.6 yamt pool_cache_put(mb_cache, m);
569 1.6.4.3 yamt }
570 1.6.4.3 yamt
571 1.6.4.3 yamt static int
572 1.6.4.3 yamt wpi_alloc_rpool(struct wpi_softc *sc)
573 1.6.4.3 yamt {
574 1.6.4.3 yamt struct wpi_rx_ring *ring = &sc->rxq;
575 1.6.4.3 yamt struct wpi_rbuf *rbuf;
576 1.6.4.3 yamt int i, error;
577 1.6.4.3 yamt
578 1.6.4.3 yamt /* allocate a big chunk of DMA'able memory.. */
579 1.6.4.3 yamt error = wpi_dma_contig_alloc(sc->sc_dmat, &ring->buf_dma, NULL,
580 1.6.4.3 yamt WPI_RBUF_COUNT * WPI_RBUF_SIZE, WPI_BUF_ALIGN, BUS_DMA_NOWAIT);
581 1.6.4.3 yamt if (error != 0) {
582 1.6.4.7 yamt aprint_normal_dev(sc->sc_dev,
583 1.6.4.7 yamt "could not allocate Rx buffers DMA memory\n");
584 1.6.4.7 yamt return error;
585 1.6.4.3 yamt }
586 1.6.4.3 yamt
587 1.6.4.3 yamt /* ..and split it into 3KB chunks */
588 1.6.4.3 yamt SLIST_INIT(&ring->freelist);
589 1.6.4.3 yamt for (i = 0; i < WPI_RBUF_COUNT; i++) {
590 1.6.4.3 yamt rbuf = &ring->rbuf[i];
591 1.6.4.3 yamt rbuf->sc = sc; /* backpointer for callbacks */
592 1.6.4.4 yamt rbuf->vaddr = (char *)ring->buf_dma.vaddr + i * WPI_RBUF_SIZE;
593 1.6.4.3 yamt rbuf->paddr = ring->buf_dma.paddr + i * WPI_RBUF_SIZE;
594 1.6.4.3 yamt
595 1.6.4.3 yamt SLIST_INSERT_HEAD(&ring->freelist, rbuf, next);
596 1.6.4.3 yamt }
597 1.6.4.4 yamt
598 1.6.4.4 yamt ring->nb_free_entries = WPI_RBUF_COUNT;
599 1.6.4.3 yamt return 0;
600 1.6.4.3 yamt }
601 1.6.4.3 yamt
602 1.6.4.3 yamt static void
603 1.6.4.3 yamt wpi_free_rpool(struct wpi_softc *sc)
604 1.6.4.3 yamt {
605 1.6.4.3 yamt wpi_dma_contig_free(&sc->rxq.buf_dma);
606 1.6.4.2 yamt }
607 1.6.4.2 yamt
608 1.6.4.2 yamt static int
609 1.6.4.2 yamt wpi_alloc_rx_ring(struct wpi_softc *sc, struct wpi_rx_ring *ring)
610 1.6.4.2 yamt {
611 1.6.4.2 yamt struct wpi_rx_data *data;
612 1.6.4.3 yamt struct wpi_rbuf *rbuf;
613 1.6.4.2 yamt int i, error;
614 1.6.4.2 yamt
615 1.6.4.2 yamt ring->cur = 0;
616 1.6.4.2 yamt
617 1.6.4.3 yamt error = wpi_dma_contig_alloc(sc->sc_dmat, &ring->desc_dma,
618 1.6.4.2 yamt (void **)&ring->desc,
619 1.6.4.2 yamt WPI_RX_RING_COUNT * sizeof (struct wpi_rx_desc),
620 1.6.4.2 yamt WPI_RING_DMA_ALIGN, BUS_DMA_NOWAIT);
621 1.6.4.2 yamt if (error != 0) {
622 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not allocate rx ring DMA memory\n");
623 1.6.4.2 yamt goto fail;
624 1.6.4.2 yamt }
625 1.6.4.2 yamt
626 1.6.4.2 yamt /*
627 1.6.4.3 yamt * Setup Rx buffers.
628 1.6.4.2 yamt */
629 1.6.4.2 yamt for (i = 0; i < WPI_RX_RING_COUNT; i++) {
630 1.6.4.2 yamt data = &ring->data[i];
631 1.6.4.2 yamt
632 1.6.4.2 yamt MGETHDR(data->m, M_DONTWAIT, MT_DATA);
633 1.6.4.2 yamt if (data->m == NULL) {
634 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not allocate rx mbuf\n");
635 1.6.4.2 yamt error = ENOMEM;
636 1.6.4.2 yamt goto fail;
637 1.6.4.2 yamt }
638 1.6.4.3 yamt if ((rbuf = wpi_alloc_rbuf(sc)) == NULL) {
639 1.6.4.2 yamt m_freem(data->m);
640 1.6.4.2 yamt data->m = NULL;
641 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not allocate rx cluster\n");
642 1.6.4.2 yamt error = ENOMEM;
643 1.6.4.2 yamt goto fail;
644 1.6.4.2 yamt }
645 1.6.4.3 yamt /* attach Rx buffer to mbuf */
646 1.6.4.3 yamt MEXTADD(data->m, rbuf->vaddr, WPI_RBUF_SIZE, 0, wpi_free_rbuf,
647 1.6.4.3 yamt rbuf);
648 1.6.4.3 yamt data->m->m_flags |= M_EXT_RW;
649 1.6.4.2 yamt
650 1.6.4.3 yamt ring->desc[i] = htole32(rbuf->paddr);
651 1.6.4.2 yamt }
652 1.6.4.2 yamt
653 1.6.4.2 yamt return 0;
654 1.6.4.2 yamt
655 1.6.4.2 yamt fail: wpi_free_rx_ring(sc, ring);
656 1.6.4.2 yamt return error;
657 1.6.4.2 yamt }
658 1.6.4.2 yamt
659 1.6.4.2 yamt static void
660 1.6.4.2 yamt wpi_reset_rx_ring(struct wpi_softc *sc, struct wpi_rx_ring *ring)
661 1.6.4.2 yamt {
662 1.6.4.2 yamt int ntries;
663 1.6.4.2 yamt
664 1.6.4.2 yamt wpi_mem_lock(sc);
665 1.6.4.2 yamt
666 1.6.4.2 yamt WPI_WRITE(sc, WPI_RX_CONFIG, 0);
667 1.6.4.2 yamt for (ntries = 0; ntries < 100; ntries++) {
668 1.6.4.2 yamt if (WPI_READ(sc, WPI_RX_STATUS) & WPI_RX_IDLE)
669 1.6.4.2 yamt break;
670 1.6.4.2 yamt DELAY(10);
671 1.6.4.2 yamt }
672 1.6.4.2 yamt #ifdef WPI_DEBUG
673 1.6.4.2 yamt if (ntries == 100 && wpi_debug > 0)
674 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "timeout resetting Rx ring\n");
675 1.6.4.2 yamt #endif
676 1.6.4.2 yamt wpi_mem_unlock(sc);
677 1.6.4.2 yamt
678 1.6.4.2 yamt ring->cur = 0;
679 1.6.4.2 yamt }
680 1.6.4.2 yamt
681 1.6.4.2 yamt static void
682 1.6.4.2 yamt wpi_free_rx_ring(struct wpi_softc *sc, struct wpi_rx_ring *ring)
683 1.6.4.2 yamt {
684 1.6.4.2 yamt int i;
685 1.6.4.2 yamt
686 1.6.4.3 yamt wpi_dma_contig_free(&ring->desc_dma);
687 1.6.4.2 yamt
688 1.6.4.2 yamt for (i = 0; i < WPI_RX_RING_COUNT; i++) {
689 1.6.4.3 yamt if (ring->data[i].m != NULL)
690 1.6.4.3 yamt m_freem(ring->data[i].m);
691 1.6.4.2 yamt }
692 1.6.4.2 yamt }
693 1.6.4.2 yamt
694 1.6.4.2 yamt static int
695 1.6.4.2 yamt wpi_alloc_tx_ring(struct wpi_softc *sc, struct wpi_tx_ring *ring, int count,
696 1.6.4.2 yamt int qid)
697 1.6.4.2 yamt {
698 1.6.4.2 yamt struct wpi_tx_data *data;
699 1.6.4.2 yamt int i, error;
700 1.6.4.2 yamt
701 1.6.4.2 yamt ring->qid = qid;
702 1.6.4.2 yamt ring->count = count;
703 1.6.4.2 yamt ring->queued = 0;
704 1.6.4.2 yamt ring->cur = 0;
705 1.6.4.2 yamt
706 1.6.4.3 yamt error = wpi_dma_contig_alloc(sc->sc_dmat, &ring->desc_dma,
707 1.6.4.2 yamt (void **)&ring->desc, count * sizeof (struct wpi_tx_desc),
708 1.6.4.2 yamt WPI_RING_DMA_ALIGN, BUS_DMA_NOWAIT);
709 1.6.4.2 yamt if (error != 0) {
710 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not allocate tx ring DMA memory\n");
711 1.6.4.2 yamt goto fail;
712 1.6.4.2 yamt }
713 1.6.4.2 yamt
714 1.6.4.2 yamt /* update shared page with ring's base address */
715 1.6.4.2 yamt sc->shared->txbase[qid] = htole32(ring->desc_dma.paddr);
716 1.6.4.2 yamt
717 1.6.4.3 yamt error = wpi_dma_contig_alloc(sc->sc_dmat, &ring->cmd_dma,
718 1.6.4.3 yamt (void **)&ring->cmd,
719 1.6.4.2 yamt count * sizeof (struct wpi_tx_cmd), 4, BUS_DMA_NOWAIT);
720 1.6.4.2 yamt if (error != 0) {
721 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not allocate tx cmd DMA memory\n");
722 1.6.4.2 yamt goto fail;
723 1.6.4.2 yamt }
724 1.6.4.2 yamt
725 1.6.4.2 yamt ring->data = malloc(count * sizeof (struct wpi_tx_data), M_DEVBUF,
726 1.6.4.2 yamt M_NOWAIT);
727 1.6.4.2 yamt if (ring->data == NULL) {
728 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not allocate tx data slots\n");
729 1.6.4.2 yamt goto fail;
730 1.6.4.2 yamt }
731 1.6.4.2 yamt
732 1.6.4.2 yamt memset(ring->data, 0, count * sizeof (struct wpi_tx_data));
733 1.6.4.2 yamt
734 1.6.4.2 yamt for (i = 0; i < count; i++) {
735 1.6.4.2 yamt data = &ring->data[i];
736 1.6.4.2 yamt
737 1.6.4.2 yamt error = bus_dmamap_create(sc->sc_dmat, MCLBYTES,
738 1.6.4.2 yamt WPI_MAX_SCATTER - 1, MCLBYTES, 0, BUS_DMA_NOWAIT,
739 1.6.4.2 yamt &data->map);
740 1.6.4.2 yamt if (error != 0) {
741 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not create tx buf DMA map\n");
742 1.6.4.2 yamt goto fail;
743 1.6.4.2 yamt }
744 1.6.4.2 yamt }
745 1.6.4.2 yamt
746 1.6.4.2 yamt return 0;
747 1.6.4.2 yamt
748 1.6.4.2 yamt fail: wpi_free_tx_ring(sc, ring);
749 1.6.4.2 yamt return error;
750 1.6.4.2 yamt }
751 1.6.4.2 yamt
752 1.6.4.2 yamt static void
753 1.6.4.2 yamt wpi_reset_tx_ring(struct wpi_softc *sc, struct wpi_tx_ring *ring)
754 1.6.4.2 yamt {
755 1.6.4.2 yamt struct wpi_tx_data *data;
756 1.6.4.2 yamt int i, ntries;
757 1.6.4.2 yamt
758 1.6.4.2 yamt wpi_mem_lock(sc);
759 1.6.4.2 yamt
760 1.6.4.2 yamt WPI_WRITE(sc, WPI_TX_CONFIG(ring->qid), 0);
761 1.6.4.2 yamt for (ntries = 0; ntries < 100; ntries++) {
762 1.6.4.2 yamt if (WPI_READ(sc, WPI_TX_STATUS) & WPI_TX_IDLE(ring->qid))
763 1.6.4.2 yamt break;
764 1.6.4.2 yamt DELAY(10);
765 1.6.4.2 yamt }
766 1.6.4.2 yamt #ifdef WPI_DEBUG
767 1.6.4.2 yamt if (ntries == 100 && wpi_debug > 0) {
768 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "timeout resetting Tx ring %d\n",
769 1.6.4.7 yamt ring->qid);
770 1.6.4.2 yamt }
771 1.6.4.2 yamt #endif
772 1.6.4.2 yamt wpi_mem_unlock(sc);
773 1.6.4.2 yamt
774 1.6.4.2 yamt for (i = 0; i < ring->count; i++) {
775 1.6.4.2 yamt data = &ring->data[i];
776 1.6.4.2 yamt
777 1.6.4.2 yamt if (data->m != NULL) {
778 1.6.4.2 yamt bus_dmamap_unload(sc->sc_dmat, data->map);
779 1.6.4.2 yamt m_freem(data->m);
780 1.6.4.2 yamt data->m = NULL;
781 1.6.4.2 yamt }
782 1.6.4.2 yamt }
783 1.6.4.2 yamt
784 1.6.4.2 yamt ring->queued = 0;
785 1.6.4.2 yamt ring->cur = 0;
786 1.6.4.2 yamt }
787 1.6.4.2 yamt
788 1.6.4.2 yamt static void
789 1.6.4.2 yamt wpi_free_tx_ring(struct wpi_softc *sc, struct wpi_tx_ring *ring)
790 1.6.4.2 yamt {
791 1.6.4.2 yamt struct wpi_tx_data *data;
792 1.6.4.2 yamt int i;
793 1.6.4.2 yamt
794 1.6.4.3 yamt wpi_dma_contig_free(&ring->desc_dma);
795 1.6.4.3 yamt wpi_dma_contig_free(&ring->cmd_dma);
796 1.6.4.2 yamt
797 1.6.4.2 yamt if (ring->data != NULL) {
798 1.6.4.2 yamt for (i = 0; i < ring->count; i++) {
799 1.6.4.2 yamt data = &ring->data[i];
800 1.6.4.2 yamt
801 1.6.4.2 yamt if (data->m != NULL) {
802 1.6.4.2 yamt bus_dmamap_unload(sc->sc_dmat, data->map);
803 1.6.4.2 yamt m_freem(data->m);
804 1.6.4.2 yamt }
805 1.6.4.2 yamt }
806 1.6.4.2 yamt free(ring->data, M_DEVBUF);
807 1.6.4.2 yamt }
808 1.6.4.2 yamt }
809 1.6.4.2 yamt
810 1.6.4.2 yamt /*ARGUSED*/
811 1.6.4.2 yamt static struct ieee80211_node *
812 1.6.4.3 yamt wpi_node_alloc(struct ieee80211_node_table *nt __unused)
813 1.6.4.2 yamt {
814 1.6.4.2 yamt struct wpi_node *wn;
815 1.6.4.2 yamt
816 1.6.4.2 yamt wn = malloc(sizeof (struct wpi_node), M_DEVBUF, M_NOWAIT);
817 1.6.4.2 yamt
818 1.6.4.2 yamt if (wn != NULL)
819 1.6.4.2 yamt memset(wn, 0, sizeof (struct wpi_node));
820 1.6.4.2 yamt return (struct ieee80211_node *)wn;
821 1.6.4.2 yamt }
822 1.6.4.2 yamt
823 1.6.4.4 yamt static void
824 1.6.4.4 yamt wpi_newassoc(struct ieee80211_node *ni, int isnew)
825 1.6.4.4 yamt {
826 1.6.4.4 yamt struct wpi_softc *sc = ni->ni_ic->ic_ifp->if_softc;
827 1.6.4.4 yamt int i;
828 1.6.4.4 yamt
829 1.6.4.4 yamt ieee80211_amrr_node_init(&sc->amrr, &((struct wpi_node *)ni)->amn);
830 1.6.4.4 yamt
831 1.6.4.4 yamt /* set rate to some reasonable initial value */
832 1.6.4.4 yamt for (i = ni->ni_rates.rs_nrates - 1;
833 1.6.4.4 yamt i > 0 && (ni->ni_rates.rs_rates[i] & IEEE80211_RATE_VAL) > 72;
834 1.6.4.4 yamt i--);
835 1.6.4.4 yamt ni->ni_txrate = i;
836 1.6.4.4 yamt }
837 1.6.4.4 yamt
838 1.6.4.2 yamt static int
839 1.6.4.2 yamt wpi_media_change(struct ifnet *ifp)
840 1.6.4.2 yamt {
841 1.6.4.2 yamt int error;
842 1.6.4.2 yamt
843 1.6.4.2 yamt error = ieee80211_media_change(ifp);
844 1.6.4.2 yamt if (error != ENETRESET)
845 1.6.4.2 yamt return error;
846 1.6.4.2 yamt
847 1.6.4.2 yamt if ((ifp->if_flags & (IFF_UP | IFF_RUNNING)) == (IFF_UP | IFF_RUNNING))
848 1.6.4.2 yamt wpi_init(ifp);
849 1.6.4.2 yamt
850 1.6.4.2 yamt return 0;
851 1.6.4.2 yamt }
852 1.6.4.2 yamt
853 1.6.4.2 yamt static int
854 1.6.4.2 yamt wpi_newstate(struct ieee80211com *ic, enum ieee80211_state nstate, int arg)
855 1.6.4.2 yamt {
856 1.6.4.2 yamt struct ifnet *ifp = ic->ic_ifp;
857 1.6.4.2 yamt struct wpi_softc *sc = ifp->if_softc;
858 1.6.4.4 yamt struct ieee80211_node *ni;
859 1.6.4.2 yamt int error;
860 1.6.4.2 yamt
861 1.6.4.4 yamt callout_stop(&sc->calib_to);
862 1.6.4.2 yamt
863 1.6.4.2 yamt switch (nstate) {
864 1.6.4.2 yamt case IEEE80211_S_SCAN:
865 1.6.4.4 yamt
866 1.6.4.4 yamt if (sc->is_scanning)
867 1.6.4.4 yamt break;
868 1.6.4.4 yamt
869 1.6.4.4 yamt sc->is_scanning = true;
870 1.6.4.2 yamt ieee80211_node_table_reset(&ic->ic_scan);
871 1.6.4.2 yamt ic->ic_flags |= IEEE80211_F_SCAN | IEEE80211_F_ASCAN;
872 1.6.4.2 yamt
873 1.6.4.2 yamt /* make the link LED blink while we're scanning */
874 1.6.4.2 yamt wpi_set_led(sc, WPI_LED_LINK, 20, 2);
875 1.6.4.2 yamt
876 1.6.4.2 yamt if ((error = wpi_scan(sc, IEEE80211_CHAN_G)) != 0) {
877 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not initiate scan\n");
878 1.6.4.2 yamt ic->ic_flags &= ~(IEEE80211_F_SCAN | IEEE80211_F_ASCAN);
879 1.6.4.2 yamt return error;
880 1.6.4.2 yamt }
881 1.6.4.2 yamt
882 1.6.4.2 yamt ic->ic_state = nstate;
883 1.6.4.2 yamt return 0;
884 1.6.4.2 yamt
885 1.6.4.3 yamt case IEEE80211_S_ASSOC:
886 1.6.4.3 yamt if (ic->ic_state != IEEE80211_S_RUN)
887 1.6.4.3 yamt break;
888 1.6.4.3 yamt /* FALLTHROUGH */
889 1.6.4.2 yamt case IEEE80211_S_AUTH:
890 1.6.4.4 yamt sc->config.associd = 0;
891 1.6.4.2 yamt sc->config.filter &= ~htole32(WPI_FILTER_BSS);
892 1.6.4.2 yamt if ((error = wpi_auth(sc)) != 0) {
893 1.6.4.7 yamt aprint_error_dev(sc->sc_dev,
894 1.6.4.7 yamt "could not send authentication request\n");
895 1.6.4.2 yamt return error;
896 1.6.4.2 yamt }
897 1.6.4.2 yamt break;
898 1.6.4.2 yamt
899 1.6.4.2 yamt case IEEE80211_S_RUN:
900 1.6.4.2 yamt if (ic->ic_opmode == IEEE80211_M_MONITOR) {
901 1.6.4.2 yamt /* link LED blinks while monitoring */
902 1.6.4.2 yamt wpi_set_led(sc, WPI_LED_LINK, 5, 5);
903 1.6.4.2 yamt break;
904 1.6.4.2 yamt }
905 1.6.4.4 yamt
906 1.6.4.4 yamt ni = ic->ic_bss;
907 1.6.4.2 yamt
908 1.6.4.2 yamt if (ic->ic_opmode != IEEE80211_M_STA) {
909 1.6.4.2 yamt (void) wpi_auth(sc); /* XXX */
910 1.6.4.4 yamt wpi_setup_beacon(sc, ni);
911 1.6.4.2 yamt }
912 1.6.4.2 yamt
913 1.6.4.4 yamt wpi_enable_tsf(sc, ni);
914 1.6.4.2 yamt
915 1.6.4.2 yamt /* update adapter's configuration */
916 1.6.4.4 yamt sc->config.associd = htole16(ni->ni_associd & ~0xc000);
917 1.6.4.2 yamt /* short preamble/slot time are negotiated when associating */
918 1.6.4.2 yamt sc->config.flags &= ~htole32(WPI_CONFIG_SHPREAMBLE |
919 1.6.4.2 yamt WPI_CONFIG_SHSLOT);
920 1.6.4.2 yamt if (ic->ic_flags & IEEE80211_F_SHSLOT)
921 1.6.4.2 yamt sc->config.flags |= htole32(WPI_CONFIG_SHSLOT);
922 1.6.4.2 yamt if (ic->ic_flags & IEEE80211_F_SHPREAMBLE)
923 1.6.4.2 yamt sc->config.flags |= htole32(WPI_CONFIG_SHPREAMBLE);
924 1.6.4.2 yamt sc->config.filter |= htole32(WPI_FILTER_BSS);
925 1.6.4.2 yamt if (ic->ic_opmode != IEEE80211_M_STA)
926 1.6.4.2 yamt sc->config.filter |= htole32(WPI_FILTER_BEACON);
927 1.6.4.2 yamt
928 1.6.4.2 yamt /* XXX put somewhere HC_QOS_SUPPORT_ASSOC + HC_IBSS_START */
929 1.6.4.2 yamt
930 1.6.4.2 yamt DPRINTF(("config chan %d flags %x\n", sc->config.chan,
931 1.6.4.2 yamt sc->config.flags));
932 1.6.4.2 yamt error = wpi_cmd(sc, WPI_CMD_CONFIGURE, &sc->config,
933 1.6.4.2 yamt sizeof (struct wpi_config), 1);
934 1.6.4.2 yamt if (error != 0) {
935 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not update configuration\n");
936 1.6.4.2 yamt return error;
937 1.6.4.2 yamt }
938 1.6.4.2 yamt
939 1.6.4.4 yamt /* configuration has changed, set Tx power accordingly */
940 1.6.4.4 yamt if ((error = wpi_set_txpower(sc, ni->ni_chan, 1)) != 0) {
941 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not set Tx power\n");
942 1.6.4.4 yamt return error;
943 1.6.4.4 yamt }
944 1.6.4.4 yamt
945 1.6.4.2 yamt if (ic->ic_opmode == IEEE80211_M_STA) {
946 1.6.4.2 yamt /* fake a join to init the tx rate */
947 1.6.4.4 yamt wpi_newassoc(ni, 1);
948 1.6.4.2 yamt }
949 1.6.4.2 yamt
950 1.6.4.4 yamt /* start periodic calibration timer */
951 1.6.4.4 yamt sc->calib_cnt = 0;
952 1.6.4.7 yamt callout_schedule(&sc->calib_to, hz/2);
953 1.6.4.2 yamt
954 1.6.4.2 yamt /* link LED always on while associated */
955 1.6.4.2 yamt wpi_set_led(sc, WPI_LED_LINK, 0, 1);
956 1.6.4.2 yamt break;
957 1.6.4.2 yamt
958 1.6.4.2 yamt case IEEE80211_S_INIT:
959 1.6.4.4 yamt sc->is_scanning = false;
960 1.6.4.2 yamt break;
961 1.6.4.2 yamt }
962 1.6.4.2 yamt
963 1.6.4.2 yamt return sc->sc_newstate(ic, nstate, arg);
964 1.6.4.2 yamt }
965 1.6.4.2 yamt
966 1.6.4.2 yamt /*
967 1.6.4.4 yamt * XXX: Hack to set the current channel to the value advertised in beacons or
968 1.6.4.4 yamt * probe responses. Only used during AP detection.
969 1.6.4.4 yamt * XXX: Duplicated from if_iwi.c
970 1.6.4.4 yamt */
971 1.6.4.4 yamt static void
972 1.6.4.4 yamt wpi_fix_channel(struct ieee80211com *ic, struct mbuf *m)
973 1.6.4.4 yamt {
974 1.6.4.4 yamt struct ieee80211_frame *wh;
975 1.6.4.4 yamt uint8_t subtype;
976 1.6.4.4 yamt uint8_t *frm, *efrm;
977 1.6.4.4 yamt
978 1.6.4.4 yamt wh = mtod(m, struct ieee80211_frame *);
979 1.6.4.4 yamt
980 1.6.4.4 yamt if ((wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK) != IEEE80211_FC0_TYPE_MGT)
981 1.6.4.4 yamt return;
982 1.6.4.4 yamt
983 1.6.4.4 yamt subtype = wh->i_fc[0] & IEEE80211_FC0_SUBTYPE_MASK;
984 1.6.4.4 yamt
985 1.6.4.4 yamt if (subtype != IEEE80211_FC0_SUBTYPE_BEACON &&
986 1.6.4.4 yamt subtype != IEEE80211_FC0_SUBTYPE_PROBE_RESP)
987 1.6.4.4 yamt return;
988 1.6.4.4 yamt
989 1.6.4.4 yamt frm = (uint8_t *)(wh + 1);
990 1.6.4.4 yamt efrm = mtod(m, uint8_t *) + m->m_len;
991 1.6.4.4 yamt
992 1.6.4.4 yamt frm += 12; /* skip tstamp, bintval and capinfo fields */
993 1.6.4.4 yamt while (frm < efrm) {
994 1.6.4.4 yamt if (*frm == IEEE80211_ELEMID_DSPARMS)
995 1.6.4.4 yamt #if IEEE80211_CHAN_MAX < 255
996 1.6.4.4 yamt if (frm[2] <= IEEE80211_CHAN_MAX)
997 1.6.4.4 yamt #endif
998 1.6.4.4 yamt ic->ic_curchan = &ic->ic_channels[frm[2]];
999 1.6.4.4 yamt
1000 1.6.4.4 yamt frm += frm[1] + 2;
1001 1.6.4.4 yamt }
1002 1.6.4.4 yamt }
1003 1.6.4.4 yamt
1004 1.6.4.4 yamt /*
1005 1.6.4.2 yamt * Grab exclusive access to NIC memory.
1006 1.6.4.2 yamt */
1007 1.6.4.2 yamt static void
1008 1.6.4.2 yamt wpi_mem_lock(struct wpi_softc *sc)
1009 1.6.4.2 yamt {
1010 1.6.4.2 yamt uint32_t tmp;
1011 1.6.4.2 yamt int ntries;
1012 1.6.4.2 yamt
1013 1.6.4.2 yamt tmp = WPI_READ(sc, WPI_GPIO_CTL);
1014 1.6.4.2 yamt WPI_WRITE(sc, WPI_GPIO_CTL, tmp | WPI_GPIO_MAC);
1015 1.6.4.2 yamt
1016 1.6.4.2 yamt /* spin until we actually get the lock */
1017 1.6.4.2 yamt for (ntries = 0; ntries < 1000; ntries++) {
1018 1.6.4.2 yamt if ((WPI_READ(sc, WPI_GPIO_CTL) &
1019 1.6.4.2 yamt (WPI_GPIO_CLOCK | WPI_GPIO_SLEEP)) == WPI_GPIO_CLOCK)
1020 1.6.4.2 yamt break;
1021 1.6.4.2 yamt DELAY(10);
1022 1.6.4.2 yamt }
1023 1.6.4.2 yamt if (ntries == 1000)
1024 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not lock memory\n");
1025 1.6.4.2 yamt }
1026 1.6.4.2 yamt
1027 1.6.4.2 yamt /*
1028 1.6.4.2 yamt * Release lock on NIC memory.
1029 1.6.4.2 yamt */
1030 1.6.4.2 yamt static void
1031 1.6.4.2 yamt wpi_mem_unlock(struct wpi_softc *sc)
1032 1.6.4.2 yamt {
1033 1.6.4.2 yamt uint32_t tmp = WPI_READ(sc, WPI_GPIO_CTL);
1034 1.6.4.2 yamt WPI_WRITE(sc, WPI_GPIO_CTL, tmp & ~WPI_GPIO_MAC);
1035 1.6.4.2 yamt }
1036 1.6.4.2 yamt
1037 1.6.4.2 yamt static uint32_t
1038 1.6.4.2 yamt wpi_mem_read(struct wpi_softc *sc, uint16_t addr)
1039 1.6.4.2 yamt {
1040 1.6.4.2 yamt WPI_WRITE(sc, WPI_READ_MEM_ADDR, WPI_MEM_4 | addr);
1041 1.6.4.2 yamt return WPI_READ(sc, WPI_READ_MEM_DATA);
1042 1.6.4.2 yamt }
1043 1.6.4.2 yamt
1044 1.6.4.2 yamt static void
1045 1.6.4.2 yamt wpi_mem_write(struct wpi_softc *sc, uint16_t addr, uint32_t data)
1046 1.6.4.2 yamt {
1047 1.6.4.2 yamt WPI_WRITE(sc, WPI_WRITE_MEM_ADDR, WPI_MEM_4 | addr);
1048 1.6.4.2 yamt WPI_WRITE(sc, WPI_WRITE_MEM_DATA, data);
1049 1.6.4.2 yamt }
1050 1.6.4.2 yamt
1051 1.6.4.2 yamt static void
1052 1.6.4.2 yamt wpi_mem_write_region_4(struct wpi_softc *sc, uint16_t addr,
1053 1.6.4.4 yamt const uint32_t *data, int wlen)
1054 1.6.4.2 yamt {
1055 1.6.4.2 yamt for (; wlen > 0; wlen--, data++, addr += 4)
1056 1.6.4.2 yamt wpi_mem_write(sc, addr, *data);
1057 1.6.4.2 yamt }
1058 1.6.4.4 yamt
1059 1.6.4.2 yamt
1060 1.6.4.2 yamt /*
1061 1.6.4.4 yamt * Read `len' bytes from the EEPROM. We access the EEPROM through the MAC
1062 1.6.4.4 yamt * instead of using the traditional bit-bang method.
1063 1.6.4.2 yamt */
1064 1.6.4.4 yamt static int
1065 1.6.4.4 yamt wpi_read_prom_data(struct wpi_softc *sc, uint32_t addr, void *data, int len)
1066 1.6.4.2 yamt {
1067 1.6.4.4 yamt uint8_t *out = data;
1068 1.6.4.2 yamt uint32_t val;
1069 1.6.4.4 yamt int ntries;
1070 1.6.4.2 yamt
1071 1.6.4.2 yamt wpi_mem_lock(sc);
1072 1.6.4.4 yamt for (; len > 0; len -= 2, addr++) {
1073 1.6.4.4 yamt WPI_WRITE(sc, WPI_EEPROM_CTL, addr << 2);
1074 1.6.4.4 yamt
1075 1.6.4.4 yamt for (ntries = 0; ntries < 10; ntries++) {
1076 1.6.4.4 yamt if ((val = WPI_READ(sc, WPI_EEPROM_CTL)) &
1077 1.6.4.4 yamt WPI_EEPROM_READY)
1078 1.6.4.4 yamt break;
1079 1.6.4.4 yamt DELAY(5);
1080 1.6.4.4 yamt }
1081 1.6.4.4 yamt if (ntries == 10) {
1082 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not read EEPROM\n");
1083 1.6.4.4 yamt return ETIMEDOUT;
1084 1.6.4.4 yamt }
1085 1.6.4.4 yamt *out++ = val >> 16;
1086 1.6.4.4 yamt if (len > 1)
1087 1.6.4.4 yamt *out++ = val >> 24;
1088 1.6.4.2 yamt }
1089 1.6.4.2 yamt wpi_mem_unlock(sc);
1090 1.6.4.2 yamt
1091 1.6.4.4 yamt return 0;
1092 1.6.4.2 yamt }
1093 1.6.4.2 yamt
1094 1.6.4.2 yamt /*
1095 1.6.4.2 yamt * The firmware boot code is small and is intended to be copied directly into
1096 1.6.4.2 yamt * the NIC internal memory.
1097 1.6.4.2 yamt */
1098 1.6.4.4 yamt int
1099 1.6.4.4 yamt wpi_load_microcode(struct wpi_softc *sc, const uint8_t *ucode, int size)
1100 1.6.4.2 yamt {
1101 1.6.4.4 yamt int ntries;
1102 1.6.4.2 yamt
1103 1.6.4.2 yamt size /= sizeof (uint32_t);
1104 1.6.4.2 yamt
1105 1.6.4.2 yamt wpi_mem_lock(sc);
1106 1.6.4.2 yamt
1107 1.6.4.2 yamt /* copy microcode image into NIC memory */
1108 1.6.4.4 yamt wpi_mem_write_region_4(sc, WPI_MEM_UCODE_BASE,
1109 1.6.4.4 yamt (const uint32_t *)ucode, size);
1110 1.6.4.2 yamt
1111 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_UCODE_SRC, 0);
1112 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_UCODE_DST, WPI_FW_TEXT);
1113 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_UCODE_SIZE, size);
1114 1.6.4.2 yamt
1115 1.6.4.2 yamt /* run microcode */
1116 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_UCODE_CTL, WPI_UC_RUN);
1117 1.6.4.2 yamt
1118 1.6.4.4 yamt /* wait for transfer to complete */
1119 1.6.4.4 yamt for (ntries = 0; ntries < 1000; ntries++) {
1120 1.6.4.4 yamt if (!(wpi_mem_read(sc, WPI_MEM_UCODE_CTL) & WPI_UC_RUN))
1121 1.6.4.4 yamt break;
1122 1.6.4.4 yamt DELAY(10);
1123 1.6.4.4 yamt }
1124 1.6.4.4 yamt if (ntries == 1000) {
1125 1.6.4.4 yamt wpi_mem_unlock(sc);
1126 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not load boot firmware\n");
1127 1.6.4.4 yamt return ETIMEDOUT;
1128 1.6.4.4 yamt }
1129 1.6.4.4 yamt wpi_mem_write(sc, WPI_MEM_UCODE_CTL, WPI_UC_ENABLE);
1130 1.6.4.4 yamt
1131 1.6.4.2 yamt wpi_mem_unlock(sc);
1132 1.6.4.2 yamt
1133 1.6.4.2 yamt return 0;
1134 1.6.4.2 yamt }
1135 1.6.4.2 yamt
1136 1.6.4.2 yamt static int
1137 1.6.4.4 yamt wpi_load_firmware(struct wpi_softc *sc)
1138 1.6.4.2 yamt {
1139 1.6.4.4 yamt struct wpi_dma_info *dma = &sc->fw_dma;
1140 1.6.4.4 yamt struct wpi_firmware_hdr hdr;
1141 1.6.4.4 yamt const uint8_t *init_text, *init_data, *main_text, *main_data;
1142 1.6.4.4 yamt const uint8_t *boot_text;
1143 1.6.4.4 yamt uint32_t init_textsz, init_datasz, main_textsz, main_datasz;
1144 1.6.4.4 yamt uint32_t boot_textsz;
1145 1.6.4.4 yamt firmware_handle_t fw;
1146 1.6.4.4 yamt u_char *dfw;
1147 1.6.4.4 yamt size_t size;
1148 1.6.4.4 yamt int error;
1149 1.6.4.2 yamt
1150 1.6.4.4 yamt /* load firmware image from disk */
1151 1.6.4.4 yamt if ((error = firmware_open("if_wpi","iwlwifi-3945.ucode", &fw) != 0)) {
1152 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not read firmware file\n");
1153 1.6.4.2 yamt goto fail1;
1154 1.6.4.2 yamt }
1155 1.6.4.4 yamt
1156 1.6.4.4 yamt size = firmware_get_size(fw);
1157 1.6.4.2 yamt
1158 1.6.4.4 yamt /* extract firmware header information */
1159 1.6.4.4 yamt if (size < sizeof (struct wpi_firmware_hdr)) {
1160 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "truncated firmware header: %zu bytes\n",
1161 1.6.4.7 yamt size);
1162 1.6.4.4 yamt error = EINVAL;
1163 1.6.4.4 yamt goto fail2;
1164 1.6.4.4 yamt }
1165 1.6.4.4 yamt
1166 1.6.4.4 yamt if ((error = firmware_read(fw, 0, &hdr,
1167 1.6.4.4 yamt sizeof (struct wpi_firmware_hdr))) != 0) {
1168 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "can't get firmware header\n");
1169 1.6.4.2 yamt goto fail2;
1170 1.6.4.2 yamt }
1171 1.6.4.2 yamt
1172 1.6.4.4 yamt main_textsz = le32toh(hdr.main_textsz);
1173 1.6.4.4 yamt main_datasz = le32toh(hdr.main_datasz);
1174 1.6.4.4 yamt init_textsz = le32toh(hdr.init_textsz);
1175 1.6.4.4 yamt init_datasz = le32toh(hdr.init_datasz);
1176 1.6.4.4 yamt boot_textsz = le32toh(hdr.boot_textsz);
1177 1.6.4.4 yamt
1178 1.6.4.4 yamt /* sanity-check firmware segments sizes */
1179 1.6.4.4 yamt if (main_textsz > WPI_FW_MAIN_TEXT_MAXSZ ||
1180 1.6.4.4 yamt main_datasz > WPI_FW_MAIN_DATA_MAXSZ ||
1181 1.6.4.4 yamt init_textsz > WPI_FW_INIT_TEXT_MAXSZ ||
1182 1.6.4.4 yamt init_datasz > WPI_FW_INIT_DATA_MAXSZ ||
1183 1.6.4.4 yamt boot_textsz > WPI_FW_BOOT_TEXT_MAXSZ ||
1184 1.6.4.4 yamt (boot_textsz & 3) != 0) {
1185 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "invalid firmware header\n");
1186 1.6.4.4 yamt error = EINVAL;
1187 1.6.4.4 yamt goto fail2;
1188 1.6.4.4 yamt }
1189 1.6.4.4 yamt
1190 1.6.4.4 yamt /* check that all firmware segments are present */
1191 1.6.4.4 yamt if (size < sizeof (struct wpi_firmware_hdr) + main_textsz +
1192 1.6.4.4 yamt main_datasz + init_textsz + init_datasz + boot_textsz) {
1193 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "firmware file too short: %zu bytes\n",
1194 1.6.4.7 yamt size);
1195 1.6.4.4 yamt error = EINVAL;
1196 1.6.4.4 yamt goto fail2;
1197 1.6.4.4 yamt }
1198 1.6.4.4 yamt
1199 1.6.4.4 yamt dfw = firmware_malloc(size);
1200 1.6.4.4 yamt if (dfw == NULL) {
1201 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "not enough memory to stock firmware\n");
1202 1.6.4.4 yamt error = ENOMEM;
1203 1.6.4.4 yamt goto fail2;
1204 1.6.4.2 yamt }
1205 1.6.4.2 yamt
1206 1.6.4.4 yamt if ((error = firmware_read(fw, 0, dfw, size)) != 0) {
1207 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "can't get firmware\n");
1208 1.6.4.4 yamt goto fail2;
1209 1.6.4.2 yamt }
1210 1.6.4.2 yamt
1211 1.6.4.4 yamt /* get pointers to firmware segments */
1212 1.6.4.4 yamt main_text = dfw + sizeof (struct wpi_firmware_hdr);
1213 1.6.4.4 yamt main_data = main_text + main_textsz;
1214 1.6.4.4 yamt init_text = main_data + main_datasz;
1215 1.6.4.4 yamt init_data = init_text + init_textsz;
1216 1.6.4.4 yamt boot_text = init_data + init_datasz;
1217 1.6.4.4 yamt
1218 1.6.4.4 yamt /* copy initialization images into pre-allocated DMA-safe memory */
1219 1.6.4.4 yamt memcpy(dma->vaddr, init_data, init_datasz);
1220 1.6.4.4 yamt memcpy((char*)dma->vaddr + WPI_FW_INIT_DATA_MAXSZ, init_text, init_textsz);
1221 1.6.4.2 yamt
1222 1.6.4.4 yamt /* tell adapter where to find initialization images */
1223 1.6.4.4 yamt wpi_mem_lock(sc);
1224 1.6.4.4 yamt wpi_mem_write(sc, WPI_MEM_DATA_BASE, dma->paddr);
1225 1.6.4.4 yamt wpi_mem_write(sc, WPI_MEM_DATA_SIZE, init_datasz);
1226 1.6.4.4 yamt wpi_mem_write(sc, WPI_MEM_TEXT_BASE,
1227 1.6.4.4 yamt dma->paddr + WPI_FW_INIT_DATA_MAXSZ);
1228 1.6.4.4 yamt wpi_mem_write(sc, WPI_MEM_TEXT_SIZE, init_textsz);
1229 1.6.4.4 yamt wpi_mem_unlock(sc);
1230 1.6.4.2 yamt
1231 1.6.4.4 yamt /* load firmware boot code */
1232 1.6.4.4 yamt if ((error = wpi_load_microcode(sc, boot_text, boot_textsz)) != 0) {
1233 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not load boot firmware\n");
1234 1.6.4.4 yamt goto fail3;
1235 1.6.4.2 yamt }
1236 1.6.4.2 yamt
1237 1.6.4.4 yamt /* now press "execute" ;-) */
1238 1.6.4.4 yamt WPI_WRITE(sc, WPI_RESET, 0);
1239 1.6.4.4 yamt
1240 1.6.4.4 yamt /* ..and wait at most one second for adapter to initialize */
1241 1.6.4.4 yamt if ((error = tsleep(sc, PCATCH, "wpiinit", hz)) != 0) {
1242 1.6.4.4 yamt /* this isn't what was supposed to happen.. */
1243 1.6.4.7 yamt aprint_error_dev(sc->sc_dev,
1244 1.6.4.7 yamt "timeout waiting for adapter to initialize\n");
1245 1.6.4.4 yamt }
1246 1.6.4.4 yamt
1247 1.6.4.4 yamt /* copy runtime images into pre-allocated DMA-safe memory */
1248 1.6.4.4 yamt memcpy(dma->vaddr, main_data, main_datasz);
1249 1.6.4.4 yamt memcpy((char*)dma->vaddr + WPI_FW_MAIN_DATA_MAXSZ, main_text, main_textsz);
1250 1.6.4.4 yamt
1251 1.6.4.4 yamt /* tell adapter where to find runtime images */
1252 1.6.4.2 yamt wpi_mem_lock(sc);
1253 1.6.4.4 yamt wpi_mem_write(sc, WPI_MEM_DATA_BASE, dma->paddr);
1254 1.6.4.4 yamt wpi_mem_write(sc, WPI_MEM_DATA_SIZE, main_datasz);
1255 1.6.4.4 yamt wpi_mem_write(sc, WPI_MEM_TEXT_BASE,
1256 1.6.4.4 yamt dma->paddr + WPI_FW_MAIN_DATA_MAXSZ);
1257 1.6.4.4 yamt wpi_mem_write(sc, WPI_MEM_TEXT_SIZE, WPI_FW_UPDATED | main_textsz);
1258 1.6.4.4 yamt wpi_mem_unlock(sc);
1259 1.6.4.2 yamt
1260 1.6.4.4 yamt /* wait at most one second for second alive notification */
1261 1.6.4.4 yamt if ((error = tsleep(sc, PCATCH, "wpiinit", hz)) != 0) {
1262 1.6.4.4 yamt /* this isn't what was supposed to happen.. */
1263 1.6.4.7 yamt aprint_error_dev(sc->sc_dev,
1264 1.6.4.7 yamt "timeout waiting for adapter to initialize\n");
1265 1.6.4.4 yamt }
1266 1.6.4.2 yamt
1267 1.6.4.2 yamt
1268 1.6.4.4 yamt fail3: firmware_free(dfw,size);
1269 1.6.4.4 yamt fail2: firmware_close(fw);
1270 1.6.4.4 yamt fail1: return error;
1271 1.6.4.4 yamt }
1272 1.6.4.2 yamt
1273 1.6.4.4 yamt static void
1274 1.6.4.4 yamt wpi_calib_timeout(void *arg)
1275 1.6.4.4 yamt {
1276 1.6.4.4 yamt struct wpi_softc *sc = arg;
1277 1.6.4.4 yamt struct ieee80211com *ic = &sc->sc_ic;
1278 1.6.4.4 yamt int temp, s;
1279 1.6.4.2 yamt
1280 1.6.4.4 yamt /* automatic rate control triggered every 500ms */
1281 1.6.4.4 yamt if (ic->ic_fixed_rate == -1) {
1282 1.6.4.4 yamt s = splnet();
1283 1.6.4.4 yamt if (ic->ic_opmode == IEEE80211_M_STA)
1284 1.6.4.4 yamt wpi_iter_func(sc, ic->ic_bss);
1285 1.6.4.4 yamt else
1286 1.6.4.4 yamt ieee80211_iterate_nodes(&ic->ic_sta, wpi_iter_func, sc);
1287 1.6.4.4 yamt splx(s);
1288 1.6.4.2 yamt }
1289 1.6.4.4 yamt
1290 1.6.4.4 yamt /* update sensor data */
1291 1.6.4.4 yamt temp = (int)WPI_READ(sc, WPI_TEMPERATURE);
1292 1.6.4.4 yamt
1293 1.6.4.4 yamt /* automatic power calibration every 60s */
1294 1.6.4.4 yamt if (++sc->calib_cnt >= 120) {
1295 1.6.4.4 yamt wpi_power_calibration(sc, temp);
1296 1.6.4.4 yamt sc->calib_cnt = 0;
1297 1.6.4.2 yamt }
1298 1.6.4.2 yamt
1299 1.6.4.7 yamt callout_schedule(&sc->calib_to, hz/2);
1300 1.6.4.4 yamt }
1301 1.6.4.2 yamt
1302 1.6.4.4 yamt static void
1303 1.6.4.4 yamt wpi_iter_func(void *arg, struct ieee80211_node *ni)
1304 1.6.4.4 yamt {
1305 1.6.4.4 yamt struct wpi_softc *sc = arg;
1306 1.6.4.4 yamt struct wpi_node *wn = (struct wpi_node *)ni;
1307 1.6.4.2 yamt
1308 1.6.4.4 yamt ieee80211_amrr_choose(&sc->amrr, ni, &wn->amn);
1309 1.6.4.4 yamt }
1310 1.6.4.4 yamt
1311 1.6.4.4 yamt /*
1312 1.6.4.4 yamt * This function is called periodically (every 60 seconds) to adjust output
1313 1.6.4.4 yamt * power to temperature changes.
1314 1.6.4.4 yamt */
1315 1.6.4.4 yamt void
1316 1.6.4.4 yamt wpi_power_calibration(struct wpi_softc *sc, int temp)
1317 1.6.4.4 yamt {
1318 1.6.4.4 yamt /* sanity-check read value */
1319 1.6.4.4 yamt if (temp < -260 || temp > 25) {
1320 1.6.4.4 yamt /* this can't be correct, ignore */
1321 1.6.4.4 yamt DPRINTF(("out-of-range temperature reported: %d\n", temp));
1322 1.6.4.4 yamt return;
1323 1.6.4.4 yamt }
1324 1.6.4.4 yamt
1325 1.6.4.4 yamt DPRINTF(("temperature %d->%d\n", sc->temp, temp));
1326 1.6.4.4 yamt
1327 1.6.4.4 yamt /* adjust Tx power if need be */
1328 1.6.4.4 yamt if (abs(temp - sc->temp) <= 6)
1329 1.6.4.4 yamt return;
1330 1.6.4.4 yamt
1331 1.6.4.4 yamt sc->temp = temp;
1332 1.6.4.4 yamt
1333 1.6.4.4 yamt if (wpi_set_txpower(sc, sc->sc_ic.ic_bss->ni_chan, 1) != 0) {
1334 1.6.4.4 yamt /* just warn, too bad for the automatic calibration... */
1335 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not adjust Tx power\n");
1336 1.6.4.4 yamt }
1337 1.6.4.2 yamt }
1338 1.6.4.2 yamt
1339 1.6.4.2 yamt static void
1340 1.6.4.2 yamt wpi_rx_intr(struct wpi_softc *sc, struct wpi_rx_desc *desc,
1341 1.6.4.2 yamt struct wpi_rx_data *data)
1342 1.6.4.2 yamt {
1343 1.6.4.2 yamt struct ieee80211com *ic = &sc->sc_ic;
1344 1.6.4.2 yamt struct ifnet *ifp = ic->ic_ifp;
1345 1.6.4.2 yamt struct wpi_rx_ring *ring = &sc->rxq;
1346 1.6.4.2 yamt struct wpi_rx_stat *stat;
1347 1.6.4.2 yamt struct wpi_rx_head *head;
1348 1.6.4.2 yamt struct wpi_rx_tail *tail;
1349 1.6.4.3 yamt struct wpi_rbuf *rbuf;
1350 1.6.4.2 yamt struct ieee80211_frame *wh;
1351 1.6.4.2 yamt struct ieee80211_node *ni;
1352 1.6.4.2 yamt struct mbuf *m, *mnew;
1353 1.6.4.4 yamt int data_off ;
1354 1.6.4.2 yamt
1355 1.6.4.2 yamt stat = (struct wpi_rx_stat *)(desc + 1);
1356 1.6.4.2 yamt
1357 1.6.4.2 yamt if (stat->len > WPI_STAT_MAXLEN) {
1358 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "invalid rx statistic header\n");
1359 1.6.4.2 yamt ifp->if_ierrors++;
1360 1.6.4.2 yamt return;
1361 1.6.4.2 yamt }
1362 1.6.4.2 yamt
1363 1.6.4.4 yamt head = (struct wpi_rx_head *)((char *)(stat + 1) + stat->len);
1364 1.6.4.4 yamt tail = (struct wpi_rx_tail *)((char *)(head + 1) + le16toh(head->len));
1365 1.6.4.2 yamt
1366 1.6.4.2 yamt DPRINTFN(4, ("rx intr: idx=%d len=%d stat len=%d rssi=%d rate=%x "
1367 1.6.4.4 yamt "chan=%d tstamp=%" PRId64 "\n", ring->cur, le32toh(desc->len),
1368 1.6.4.2 yamt le16toh(head->len), (int8_t)stat->rssi, head->rate, head->chan,
1369 1.6.4.2 yamt le64toh(tail->tstamp)));
1370 1.6.4.2 yamt
1371 1.6.4.2 yamt /*
1372 1.6.4.2 yamt * Discard Rx frames with bad CRC early (XXX we may want to pass them
1373 1.6.4.2 yamt * to radiotap in monitor mode).
1374 1.6.4.2 yamt */
1375 1.6.4.2 yamt if ((le32toh(tail->flags) & WPI_RX_NOERROR) != WPI_RX_NOERROR) {
1376 1.6.4.2 yamt DPRINTF(("rx tail flags error %x\n", le32toh(tail->flags)));
1377 1.6.4.2 yamt ifp->if_ierrors++;
1378 1.6.4.2 yamt return;
1379 1.6.4.2 yamt }
1380 1.6.4.2 yamt
1381 1.6.4.4 yamt /* Compute where are the useful datas */
1382 1.6.4.4 yamt data_off = (char*)(head + 1) - mtod(data->m, char*);
1383 1.6.4.4 yamt
1384 1.6.4.4 yamt /*
1385 1.6.4.4 yamt * If the number of free entry is too low
1386 1.6.4.4 yamt * just dup the data->m socket and reuse the same rbuf entry
1387 1.6.4.4 yamt */
1388 1.6.4.4 yamt if (sc->rxq.nb_free_entries <= WPI_RBUF_LOW_LIMIT) {
1389 1.6.4.4 yamt
1390 1.6.4.4 yamt /* Prepare the mbuf for the m_dup */
1391 1.6.4.4 yamt data->m->m_pkthdr.len = data->m->m_len = le16toh(head->len);
1392 1.6.4.4 yamt data->m->m_data = (char*) data->m->m_data + data_off;
1393 1.6.4.2 yamt
1394 1.6.4.4 yamt m = m_dup(data->m,0,M_COPYALL,M_DONTWAIT);
1395 1.6.4.2 yamt
1396 1.6.4.4 yamt /* Restore the m_data pointer for future use */
1397 1.6.4.4 yamt data->m->m_data = (char*) data->m->m_data - data_off;
1398 1.6.4.2 yamt
1399 1.6.4.4 yamt if (m == NULL) {
1400 1.6.4.4 yamt ifp->if_ierrors++;
1401 1.6.4.4 yamt return;
1402 1.6.4.4 yamt }
1403 1.6.4.4 yamt } else {
1404 1.6.4.2 yamt
1405 1.6.4.4 yamt MGETHDR(mnew, M_DONTWAIT, MT_DATA);
1406 1.6.4.4 yamt if (mnew == NULL) {
1407 1.6.4.4 yamt ifp->if_ierrors++;
1408 1.6.4.4 yamt return;
1409 1.6.4.4 yamt }
1410 1.6.4.4 yamt
1411 1.6.4.4 yamt rbuf = wpi_alloc_rbuf(sc);
1412 1.6.4.4 yamt KASSERT(rbuf != NULL);
1413 1.6.4.4 yamt
1414 1.6.4.4 yamt /* attach Rx buffer to mbuf */
1415 1.6.4.4 yamt MEXTADD(mnew, rbuf->vaddr, WPI_RBUF_SIZE, 0, wpi_free_rbuf,
1416 1.6.4.4 yamt rbuf);
1417 1.6.4.4 yamt mnew->m_flags |= M_EXT_RW;
1418 1.6.4.4 yamt
1419 1.6.4.4 yamt m = data->m;
1420 1.6.4.4 yamt data->m = mnew;
1421 1.6.4.2 yamt
1422 1.6.4.4 yamt /* update Rx descriptor */
1423 1.6.4.4 yamt ring->desc[ring->cur] = htole32(rbuf->paddr);
1424 1.6.4.4 yamt
1425 1.6.4.4 yamt m->m_data = (char*)m->m_data + data_off;
1426 1.6.4.4 yamt m->m_pkthdr.len = m->m_len = le16toh(head->len);
1427 1.6.4.4 yamt }
1428 1.6.4.2 yamt
1429 1.6.4.2 yamt /* finalize mbuf */
1430 1.6.4.2 yamt m->m_pkthdr.rcvif = ifp;
1431 1.6.4.2 yamt
1432 1.6.4.4 yamt if (ic->ic_state == IEEE80211_S_SCAN)
1433 1.6.4.4 yamt wpi_fix_channel(ic, m);
1434 1.6.4.4 yamt
1435 1.6.4.2 yamt #if NBPFILTER > 0
1436 1.6.4.2 yamt if (sc->sc_drvbpf != NULL) {
1437 1.6.4.2 yamt struct wpi_rx_radiotap_header *tap = &sc->sc_rxtap;
1438 1.6.4.2 yamt
1439 1.6.4.2 yamt tap->wr_flags = 0;
1440 1.6.4.2 yamt tap->wr_chan_freq =
1441 1.6.4.2 yamt htole16(ic->ic_channels[head->chan].ic_freq);
1442 1.6.4.2 yamt tap->wr_chan_flags =
1443 1.6.4.2 yamt htole16(ic->ic_channels[head->chan].ic_flags);
1444 1.6.4.2 yamt tap->wr_dbm_antsignal = (int8_t)(stat->rssi - WPI_RSSI_OFFSET);
1445 1.6.4.2 yamt tap->wr_dbm_antnoise = (int8_t)le16toh(stat->noise);
1446 1.6.4.2 yamt tap->wr_tsft = tail->tstamp;
1447 1.6.4.2 yamt tap->wr_antenna = (le16toh(head->flags) >> 4) & 0xf;
1448 1.6.4.2 yamt switch (head->rate) {
1449 1.6.4.2 yamt /* CCK rates */
1450 1.6.4.2 yamt case 10: tap->wr_rate = 2; break;
1451 1.6.4.2 yamt case 20: tap->wr_rate = 4; break;
1452 1.6.4.2 yamt case 55: tap->wr_rate = 11; break;
1453 1.6.4.2 yamt case 110: tap->wr_rate = 22; break;
1454 1.6.4.2 yamt /* OFDM rates */
1455 1.6.4.2 yamt case 0xd: tap->wr_rate = 12; break;
1456 1.6.4.2 yamt case 0xf: tap->wr_rate = 18; break;
1457 1.6.4.2 yamt case 0x5: tap->wr_rate = 24; break;
1458 1.6.4.2 yamt case 0x7: tap->wr_rate = 36; break;
1459 1.6.4.2 yamt case 0x9: tap->wr_rate = 48; break;
1460 1.6.4.2 yamt case 0xb: tap->wr_rate = 72; break;
1461 1.6.4.2 yamt case 0x1: tap->wr_rate = 96; break;
1462 1.6.4.2 yamt case 0x3: tap->wr_rate = 108; break;
1463 1.6.4.2 yamt /* unknown rate: should not happen */
1464 1.6.4.2 yamt default: tap->wr_rate = 0;
1465 1.6.4.2 yamt }
1466 1.6.4.2 yamt if (le16toh(head->flags) & 0x4)
1467 1.6.4.2 yamt tap->wr_flags |= IEEE80211_RADIOTAP_F_SHORTPRE;
1468 1.6.4.2 yamt
1469 1.6.4.2 yamt bpf_mtap2(sc->sc_drvbpf, tap, sc->sc_rxtap_len, m);
1470 1.6.4.2 yamt }
1471 1.6.4.2 yamt #endif
1472 1.6.4.2 yamt
1473 1.6.4.2 yamt /* grab a reference to the source node */
1474 1.6.4.2 yamt wh = mtod(m, struct ieee80211_frame *);
1475 1.6.4.2 yamt ni = ieee80211_find_rxnode(ic, (struct ieee80211_frame_min *)wh);
1476 1.6.4.2 yamt
1477 1.6.4.2 yamt /* send the frame to the 802.11 layer */
1478 1.6.4.2 yamt ieee80211_input(ic, m, ni, stat->rssi, 0);
1479 1.6.4.2 yamt
1480 1.6.4.2 yamt /* release node reference */
1481 1.6.4.2 yamt ieee80211_free_node(ni);
1482 1.6.4.2 yamt }
1483 1.6.4.2 yamt
1484 1.6.4.2 yamt static void
1485 1.6.4.2 yamt wpi_tx_intr(struct wpi_softc *sc, struct wpi_rx_desc *desc)
1486 1.6.4.2 yamt {
1487 1.6.4.2 yamt struct ifnet *ifp = sc->sc_ic.ic_ifp;
1488 1.6.4.2 yamt struct wpi_tx_ring *ring = &sc->txq[desc->qid & 0x3];
1489 1.6.4.2 yamt struct wpi_tx_data *txdata = &ring->data[desc->idx];
1490 1.6.4.2 yamt struct wpi_tx_stat *stat = (struct wpi_tx_stat *)(desc + 1);
1491 1.6.4.2 yamt struct wpi_node *wn = (struct wpi_node *)txdata->ni;
1492 1.6.4.2 yamt
1493 1.6.4.2 yamt DPRINTFN(4, ("tx done: qid=%d idx=%d retries=%d nkill=%d rate=%x "
1494 1.6.4.2 yamt "duration=%d status=%x\n", desc->qid, desc->idx, stat->ntries,
1495 1.6.4.2 yamt stat->nkill, stat->rate, le32toh(stat->duration),
1496 1.6.4.2 yamt le32toh(stat->status)));
1497 1.6.4.2 yamt
1498 1.6.4.2 yamt /*
1499 1.6.4.2 yamt * Update rate control statistics for the node.
1500 1.6.4.2 yamt * XXX we should not count mgmt frames since they're always sent at
1501 1.6.4.2 yamt * the lowest available bit-rate.
1502 1.6.4.2 yamt */
1503 1.6.4.2 yamt wn->amn.amn_txcnt++;
1504 1.6.4.2 yamt if (stat->ntries > 0) {
1505 1.6.4.2 yamt DPRINTFN(3, ("tx intr ntries %d\n", stat->ntries));
1506 1.6.4.2 yamt wn->amn.amn_retrycnt++;
1507 1.6.4.2 yamt }
1508 1.6.4.2 yamt
1509 1.6.4.2 yamt if ((le32toh(stat->status) & 0xff) != 1)
1510 1.6.4.2 yamt ifp->if_oerrors++;
1511 1.6.4.2 yamt else
1512 1.6.4.2 yamt ifp->if_opackets++;
1513 1.6.4.2 yamt
1514 1.6.4.2 yamt bus_dmamap_unload(sc->sc_dmat, txdata->map);
1515 1.6.4.2 yamt m_freem(txdata->m);
1516 1.6.4.2 yamt txdata->m = NULL;
1517 1.6.4.2 yamt ieee80211_free_node(txdata->ni);
1518 1.6.4.2 yamt txdata->ni = NULL;
1519 1.6.4.2 yamt
1520 1.6.4.2 yamt ring->queued--;
1521 1.6.4.2 yamt
1522 1.6.4.2 yamt sc->sc_tx_timer = 0;
1523 1.6.4.2 yamt ifp->if_flags &= ~IFF_OACTIVE;
1524 1.6.4.2 yamt wpi_start(ifp);
1525 1.6.4.2 yamt }
1526 1.6.4.2 yamt
1527 1.6.4.2 yamt static void
1528 1.6.4.2 yamt wpi_cmd_intr(struct wpi_softc *sc, struct wpi_rx_desc *desc)
1529 1.6.4.2 yamt {
1530 1.6.4.2 yamt struct wpi_tx_ring *ring = &sc->cmdq;
1531 1.6.4.2 yamt struct wpi_tx_data *data;
1532 1.6.4.2 yamt
1533 1.6.4.2 yamt if ((desc->qid & 7) != 4)
1534 1.6.4.2 yamt return; /* not a command ack */
1535 1.6.4.2 yamt
1536 1.6.4.2 yamt data = &ring->data[desc->idx];
1537 1.6.4.2 yamt
1538 1.6.4.2 yamt /* if the command was mapped in a mbuf, free it */
1539 1.6.4.2 yamt if (data->m != NULL) {
1540 1.6.4.2 yamt bus_dmamap_unload(sc->sc_dmat, data->map);
1541 1.6.4.2 yamt m_freem(data->m);
1542 1.6.4.2 yamt data->m = NULL;
1543 1.6.4.2 yamt }
1544 1.6.4.2 yamt
1545 1.6.4.2 yamt wakeup(&ring->cmd[desc->idx]);
1546 1.6.4.2 yamt }
1547 1.6.4.2 yamt
1548 1.6.4.2 yamt static void
1549 1.6.4.2 yamt wpi_notif_intr(struct wpi_softc *sc)
1550 1.6.4.2 yamt {
1551 1.6.4.2 yamt struct ieee80211com *ic = &sc->sc_ic;
1552 1.6.4.3 yamt struct ifnet *ifp = ic->ic_ifp;
1553 1.6.4.2 yamt struct wpi_rx_desc *desc;
1554 1.6.4.2 yamt struct wpi_rx_data *data;
1555 1.6.4.2 yamt uint32_t hw;
1556 1.6.4.2 yamt
1557 1.6.4.2 yamt hw = le32toh(sc->shared->next);
1558 1.6.4.2 yamt while (sc->rxq.cur != hw) {
1559 1.6.4.2 yamt data = &sc->rxq.data[sc->rxq.cur];
1560 1.6.4.2 yamt
1561 1.6.4.2 yamt desc = mtod(data->m, struct wpi_rx_desc *);
1562 1.6.4.2 yamt
1563 1.6.4.2 yamt DPRINTFN(4, ("rx notification qid=%x idx=%d flags=%x type=%d "
1564 1.6.4.2 yamt "len=%d\n", desc->qid, desc->idx, desc->flags,
1565 1.6.4.2 yamt desc->type, le32toh(desc->len)));
1566 1.6.4.2 yamt
1567 1.6.4.2 yamt if (!(desc->qid & 0x80)) /* reply to a command */
1568 1.6.4.2 yamt wpi_cmd_intr(sc, desc);
1569 1.6.4.2 yamt
1570 1.6.4.2 yamt switch (desc->type) {
1571 1.6.4.2 yamt case WPI_RX_DONE:
1572 1.6.4.2 yamt /* a 802.11 frame was received */
1573 1.6.4.2 yamt wpi_rx_intr(sc, desc, data);
1574 1.6.4.2 yamt break;
1575 1.6.4.2 yamt
1576 1.6.4.2 yamt case WPI_TX_DONE:
1577 1.6.4.2 yamt /* a 802.11 frame has been transmitted */
1578 1.6.4.2 yamt wpi_tx_intr(sc, desc);
1579 1.6.4.2 yamt break;
1580 1.6.4.2 yamt
1581 1.6.4.2 yamt case WPI_UC_READY:
1582 1.6.4.2 yamt {
1583 1.6.4.2 yamt struct wpi_ucode_info *uc =
1584 1.6.4.2 yamt (struct wpi_ucode_info *)(desc + 1);
1585 1.6.4.2 yamt
1586 1.6.4.2 yamt /* the microcontroller is ready */
1587 1.6.4.2 yamt DPRINTF(("microcode alive notification version %x "
1588 1.6.4.2 yamt "alive %x\n", le32toh(uc->version),
1589 1.6.4.2 yamt le32toh(uc->valid)));
1590 1.6.4.2 yamt
1591 1.6.4.2 yamt if (le32toh(uc->valid) != 1) {
1592 1.6.4.7 yamt aprint_error_dev(sc->sc_dev,
1593 1.6.4.7 yamt "microcontroller initialization failed\n");
1594 1.6.4.2 yamt }
1595 1.6.4.2 yamt break;
1596 1.6.4.2 yamt }
1597 1.6.4.2 yamt case WPI_STATE_CHANGED:
1598 1.6.4.2 yamt {
1599 1.6.4.2 yamt uint32_t *status = (uint32_t *)(desc + 1);
1600 1.6.4.2 yamt
1601 1.6.4.2 yamt /* enabled/disabled notification */
1602 1.6.4.2 yamt DPRINTF(("state changed to %x\n", le32toh(*status)));
1603 1.6.4.2 yamt
1604 1.6.4.2 yamt if (le32toh(*status) & 1) {
1605 1.6.4.2 yamt /* the radio button has to be pushed */
1606 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "Radio transmitter is off\n");
1607 1.6.4.3 yamt /* turn the interface down */
1608 1.6.4.3 yamt ifp->if_flags &= ~IFF_UP;
1609 1.6.4.3 yamt wpi_stop(ifp, 1);
1610 1.6.4.3 yamt return; /* no further processing */
1611 1.6.4.2 yamt }
1612 1.6.4.2 yamt break;
1613 1.6.4.2 yamt }
1614 1.6.4.2 yamt case WPI_START_SCAN:
1615 1.6.4.2 yamt {
1616 1.6.4.2 yamt struct wpi_start_scan *scan =
1617 1.6.4.2 yamt (struct wpi_start_scan *)(desc + 1);
1618 1.6.4.2 yamt
1619 1.6.4.2 yamt DPRINTFN(2, ("scanning channel %d status %x\n",
1620 1.6.4.2 yamt scan->chan, le32toh(scan->status)));
1621 1.6.4.2 yamt
1622 1.6.4.2 yamt /* fix current channel */
1623 1.6.4.2 yamt ic->ic_bss->ni_chan = &ic->ic_channels[scan->chan];
1624 1.6.4.2 yamt break;
1625 1.6.4.2 yamt }
1626 1.6.4.2 yamt case WPI_STOP_SCAN:
1627 1.6.4.2 yamt {
1628 1.6.4.2 yamt struct wpi_stop_scan *scan =
1629 1.6.4.2 yamt (struct wpi_stop_scan *)(desc + 1);
1630 1.6.4.2 yamt
1631 1.6.4.2 yamt DPRINTF(("scan finished nchan=%d status=%d chan=%d\n",
1632 1.6.4.2 yamt scan->nchan, scan->status, scan->chan));
1633 1.6.4.2 yamt
1634 1.6.4.2 yamt if (scan->status == 1 && scan->chan <= 14) {
1635 1.6.4.2 yamt /*
1636 1.6.4.2 yamt * We just finished scanning 802.11g channels,
1637 1.6.4.2 yamt * start scanning 802.11a ones.
1638 1.6.4.2 yamt */
1639 1.6.4.2 yamt if (wpi_scan(sc, IEEE80211_CHAN_A) == 0)
1640 1.6.4.2 yamt break;
1641 1.6.4.2 yamt }
1642 1.6.4.4 yamt sc->is_scanning = false;
1643 1.6.4.2 yamt ieee80211_end_scan(ic);
1644 1.6.4.2 yamt break;
1645 1.6.4.2 yamt }
1646 1.6.4.2 yamt }
1647 1.6.4.2 yamt
1648 1.6.4.2 yamt sc->rxq.cur = (sc->rxq.cur + 1) % WPI_RX_RING_COUNT;
1649 1.6.4.2 yamt }
1650 1.6.4.2 yamt
1651 1.6.4.2 yamt /* tell the firmware what we have processed */
1652 1.6.4.2 yamt hw = (hw == 0) ? WPI_RX_RING_COUNT - 1 : hw - 1;
1653 1.6.4.2 yamt WPI_WRITE(sc, WPI_RX_WIDX, hw & ~7);
1654 1.6.4.2 yamt }
1655 1.6.4.2 yamt
1656 1.6.4.2 yamt static int
1657 1.6.4.2 yamt wpi_intr(void *arg)
1658 1.6.4.2 yamt {
1659 1.6.4.2 yamt struct wpi_softc *sc = arg;
1660 1.6.4.3 yamt struct ifnet *ifp = sc->sc_ic.ic_ifp;
1661 1.6.4.2 yamt uint32_t r;
1662 1.6.4.2 yamt
1663 1.6.4.2 yamt r = WPI_READ(sc, WPI_INTR);
1664 1.6.4.2 yamt if (r == 0 || r == 0xffffffff)
1665 1.6.4.2 yamt return 0; /* not for us */
1666 1.6.4.2 yamt
1667 1.6.4.2 yamt DPRINTFN(5, ("interrupt reg %x\n", r));
1668 1.6.4.2 yamt
1669 1.6.4.2 yamt /* disable interrupts */
1670 1.6.4.2 yamt WPI_WRITE(sc, WPI_MASK, 0);
1671 1.6.4.2 yamt /* ack interrupts */
1672 1.6.4.2 yamt WPI_WRITE(sc, WPI_INTR, r);
1673 1.6.4.2 yamt
1674 1.6.4.2 yamt if (r & (WPI_SW_ERROR | WPI_HW_ERROR)) {
1675 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "fatal firmware error\n");
1676 1.6.4.2 yamt sc->sc_ic.ic_ifp->if_flags &= ~IFF_UP;
1677 1.6.4.3 yamt wpi_stop(sc->sc_ic.ic_ifp, 1);
1678 1.6.4.2 yamt return 1;
1679 1.6.4.2 yamt }
1680 1.6.4.2 yamt
1681 1.6.4.2 yamt if (r & WPI_RX_INTR)
1682 1.6.4.2 yamt wpi_notif_intr(sc);
1683 1.6.4.2 yamt
1684 1.6.4.2 yamt if (r & WPI_ALIVE_INTR) /* firmware initialized */
1685 1.6.4.2 yamt wakeup(sc);
1686 1.6.4.2 yamt
1687 1.6.4.2 yamt /* re-enable interrupts */
1688 1.6.4.3 yamt if (ifp->if_flags & IFF_UP)
1689 1.6.4.3 yamt WPI_WRITE(sc, WPI_MASK, WPI_INTR_MASK);
1690 1.6.4.2 yamt
1691 1.6.4.2 yamt return 1;
1692 1.6.4.2 yamt }
1693 1.6.4.2 yamt
1694 1.6.4.2 yamt static uint8_t
1695 1.6.4.2 yamt wpi_plcp_signal(int rate)
1696 1.6.4.2 yamt {
1697 1.6.4.2 yamt switch (rate) {
1698 1.6.4.2 yamt /* CCK rates (returned values are device-dependent) */
1699 1.6.4.2 yamt case 2: return 10;
1700 1.6.4.2 yamt case 4: return 20;
1701 1.6.4.2 yamt case 11: return 55;
1702 1.6.4.2 yamt case 22: return 110;
1703 1.6.4.2 yamt
1704 1.6.4.2 yamt /* OFDM rates (cf IEEE Std 802.11a-1999, pp. 14 Table 80) */
1705 1.6.4.2 yamt /* R1-R4, (u)ral is R4-R1 */
1706 1.6.4.2 yamt case 12: return 0xd;
1707 1.6.4.2 yamt case 18: return 0xf;
1708 1.6.4.2 yamt case 24: return 0x5;
1709 1.6.4.2 yamt case 36: return 0x7;
1710 1.6.4.2 yamt case 48: return 0x9;
1711 1.6.4.2 yamt case 72: return 0xb;
1712 1.6.4.2 yamt case 96: return 0x1;
1713 1.6.4.2 yamt case 108: return 0x3;
1714 1.6.4.2 yamt
1715 1.6.4.2 yamt /* unsupported rates (should not get there) */
1716 1.6.4.2 yamt default: return 0;
1717 1.6.4.2 yamt }
1718 1.6.4.2 yamt }
1719 1.6.4.2 yamt
1720 1.6.4.2 yamt /* quickly determine if a given rate is CCK or OFDM */
1721 1.6.4.2 yamt #define WPI_RATE_IS_OFDM(rate) ((rate) >= 12 && (rate) != 22)
1722 1.6.4.2 yamt
1723 1.6.4.2 yamt static int
1724 1.6.4.2 yamt wpi_tx_data(struct wpi_softc *sc, struct mbuf *m0, struct ieee80211_node *ni,
1725 1.6.4.2 yamt int ac)
1726 1.6.4.2 yamt {
1727 1.6.4.2 yamt struct ieee80211com *ic = &sc->sc_ic;
1728 1.6.4.2 yamt struct wpi_tx_ring *ring = &sc->txq[ac];
1729 1.6.4.2 yamt struct wpi_tx_desc *desc;
1730 1.6.4.2 yamt struct wpi_tx_data *data;
1731 1.6.4.2 yamt struct wpi_tx_cmd *cmd;
1732 1.6.4.2 yamt struct wpi_cmd_data *tx;
1733 1.6.4.2 yamt struct ieee80211_frame *wh;
1734 1.6.4.2 yamt struct ieee80211_key *k;
1735 1.6.4.2 yamt const struct chanAccParams *cap;
1736 1.6.4.2 yamt struct mbuf *mnew;
1737 1.6.4.2 yamt int i, error, rate, hdrlen, noack = 0;
1738 1.6.4.2 yamt
1739 1.6.4.2 yamt desc = &ring->desc[ring->cur];
1740 1.6.4.2 yamt data = &ring->data[ring->cur];
1741 1.6.4.2 yamt
1742 1.6.4.2 yamt wh = mtod(m0, struct ieee80211_frame *);
1743 1.6.4.2 yamt
1744 1.6.4.2 yamt if (IEEE80211_QOS_HAS_SEQ(wh)) {
1745 1.6.4.2 yamt cap = &ic->ic_wme.wme_chanParams;
1746 1.6.4.2 yamt noack = cap->cap_wmeParams[ac].wmep_noackPolicy;
1747 1.6.4.5 yamt }
1748 1.6.4.2 yamt
1749 1.6.4.2 yamt if (wh->i_fc[1] & IEEE80211_FC1_WEP) {
1750 1.6.4.2 yamt k = ieee80211_crypto_encap(ic, ni, m0);
1751 1.6.4.2 yamt if (k == NULL) {
1752 1.6.4.2 yamt m_freem(m0);
1753 1.6.4.2 yamt return ENOBUFS;
1754 1.6.4.2 yamt }
1755 1.6.4.2 yamt
1756 1.6.4.2 yamt /* packet header may have moved, reset our local pointer */
1757 1.6.4.2 yamt wh = mtod(m0, struct ieee80211_frame *);
1758 1.6.4.2 yamt }
1759 1.6.4.2 yamt
1760 1.6.4.5 yamt hdrlen = ieee80211_anyhdrsize(wh);
1761 1.6.4.5 yamt
1762 1.6.4.2 yamt /* pickup a rate */
1763 1.6.4.2 yamt if ((wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK) ==
1764 1.6.4.2 yamt IEEE80211_FC0_TYPE_MGT) {
1765 1.6.4.2 yamt /* mgmt frames are sent at the lowest available bit-rate */
1766 1.6.4.2 yamt rate = ni->ni_rates.rs_rates[0];
1767 1.6.4.2 yamt } else {
1768 1.6.4.2 yamt if (ic->ic_fixed_rate != -1) {
1769 1.6.4.2 yamt rate = ic->ic_sup_rates[ic->ic_curmode].
1770 1.6.4.2 yamt rs_rates[ic->ic_fixed_rate];
1771 1.6.4.2 yamt } else
1772 1.6.4.2 yamt rate = ni->ni_rates.rs_rates[ni->ni_txrate];
1773 1.6.4.2 yamt }
1774 1.6.4.2 yamt rate &= IEEE80211_RATE_VAL;
1775 1.6.4.2 yamt
1776 1.6.4.2 yamt
1777 1.6.4.2 yamt #if NBPFILTER > 0
1778 1.6.4.2 yamt if (sc->sc_drvbpf != NULL) {
1779 1.6.4.2 yamt struct wpi_tx_radiotap_header *tap = &sc->sc_txtap;
1780 1.6.4.2 yamt
1781 1.6.4.2 yamt tap->wt_flags = 0;
1782 1.6.4.2 yamt tap->wt_chan_freq = htole16(ni->ni_chan->ic_freq);
1783 1.6.4.2 yamt tap->wt_chan_flags = htole16(ni->ni_chan->ic_flags);
1784 1.6.4.2 yamt tap->wt_rate = rate;
1785 1.6.4.2 yamt tap->wt_hwqueue = ac;
1786 1.6.4.2 yamt if (wh->i_fc[1] & IEEE80211_FC1_WEP)
1787 1.6.4.2 yamt tap->wt_flags |= IEEE80211_RADIOTAP_F_WEP;
1788 1.6.4.2 yamt
1789 1.6.4.2 yamt bpf_mtap2(sc->sc_drvbpf, tap, sc->sc_txtap_len, m0);
1790 1.6.4.2 yamt }
1791 1.6.4.2 yamt #endif
1792 1.6.4.2 yamt
1793 1.6.4.2 yamt cmd = &ring->cmd[ring->cur];
1794 1.6.4.2 yamt cmd->code = WPI_CMD_TX_DATA;
1795 1.6.4.2 yamt cmd->flags = 0;
1796 1.6.4.2 yamt cmd->qid = ring->qid;
1797 1.6.4.2 yamt cmd->idx = ring->cur;
1798 1.6.4.2 yamt
1799 1.6.4.2 yamt tx = (struct wpi_cmd_data *)cmd->data;
1800 1.6.4.2 yamt tx->flags = 0;
1801 1.6.4.2 yamt
1802 1.6.4.2 yamt if (!noack && !IEEE80211_IS_MULTICAST(wh->i_addr1)) {
1803 1.6.4.2 yamt tx->flags |= htole32(WPI_TX_NEED_ACK);
1804 1.6.4.3 yamt } else if (m0->m_pkthdr.len + IEEE80211_CRC_LEN > ic->ic_rtsthreshold)
1805 1.6.4.3 yamt tx->flags |= htole32(WPI_TX_NEED_RTS | WPI_TX_FULL_TXOP);
1806 1.6.4.2 yamt
1807 1.6.4.2 yamt tx->flags |= htole32(WPI_TX_AUTO_SEQ);
1808 1.6.4.2 yamt
1809 1.6.4.3 yamt /* retrieve destination node's id */
1810 1.6.4.3 yamt tx->id = IEEE80211_IS_MULTICAST(wh->i_addr1) ? WPI_ID_BROADCAST :
1811 1.6.4.3 yamt WPI_ID_BSS;
1812 1.6.4.3 yamt
1813 1.6.4.2 yamt if ((wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK) ==
1814 1.6.4.2 yamt IEEE80211_FC0_TYPE_MGT) {
1815 1.6.4.2 yamt /* tell h/w to set timestamp in probe responses */
1816 1.6.4.2 yamt if ((wh->i_fc[0] &
1817 1.6.4.2 yamt (IEEE80211_FC0_TYPE_MASK | IEEE80211_FC0_SUBTYPE_MASK)) ==
1818 1.6.4.2 yamt (IEEE80211_FC0_TYPE_MGT | IEEE80211_FC0_SUBTYPE_PROBE_RESP))
1819 1.6.4.2 yamt tx->flags |= htole32(WPI_TX_INSERT_TSTAMP);
1820 1.6.4.2 yamt
1821 1.6.4.2 yamt if (((wh->i_fc[0] & IEEE80211_FC0_SUBTYPE_MASK) ==
1822 1.6.4.2 yamt IEEE80211_FC0_SUBTYPE_ASSOC_REQ) ||
1823 1.6.4.2 yamt ((wh->i_fc[0] & IEEE80211_FC0_SUBTYPE_MASK) ==
1824 1.6.4.2 yamt IEEE80211_FC0_SUBTYPE_REASSOC_REQ))
1825 1.6.4.2 yamt tx->timeout = htole16(3);
1826 1.6.4.2 yamt else
1827 1.6.4.2 yamt tx->timeout = htole16(2);
1828 1.6.4.2 yamt } else
1829 1.6.4.2 yamt tx->timeout = htole16(0);
1830 1.6.4.2 yamt
1831 1.6.4.2 yamt tx->rate = wpi_plcp_signal(rate);
1832 1.6.4.2 yamt
1833 1.6.4.2 yamt /* be very persistant at sending frames out */
1834 1.6.4.2 yamt tx->rts_ntries = 7;
1835 1.6.4.2 yamt tx->data_ntries = 15;
1836 1.6.4.2 yamt
1837 1.6.4.2 yamt tx->ofdm_mask = 0xff;
1838 1.6.4.2 yamt tx->cck_mask = 0xf;
1839 1.6.4.4 yamt tx->lifetime = htole32(WPI_LIFETIME_INFINITE);
1840 1.6.4.2 yamt
1841 1.6.4.2 yamt tx->len = htole16(m0->m_pkthdr.len);
1842 1.6.4.2 yamt
1843 1.6.4.2 yamt /* save and trim IEEE802.11 header */
1844 1.6.4.5 yamt memcpy((uint8_t *)(tx + 1), wh, hdrlen);
1845 1.6.4.2 yamt m_adj(m0, hdrlen);
1846 1.6.4.2 yamt
1847 1.6.4.2 yamt error = bus_dmamap_load_mbuf(sc->sc_dmat, data->map, m0,
1848 1.6.4.2 yamt BUS_DMA_WRITE | BUS_DMA_NOWAIT);
1849 1.6.4.2 yamt if (error != 0 && error != EFBIG) {
1850 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not map mbuf (error %d)\n", error);
1851 1.6.4.2 yamt m_freem(m0);
1852 1.6.4.2 yamt return error;
1853 1.6.4.2 yamt }
1854 1.6.4.2 yamt if (error != 0) {
1855 1.6.4.2 yamt /* too many fragments, linearize */
1856 1.6.4.2 yamt MGETHDR(mnew, M_DONTWAIT, MT_DATA);
1857 1.6.4.2 yamt if (mnew == NULL) {
1858 1.6.4.2 yamt m_freem(m0);
1859 1.6.4.2 yamt return ENOMEM;
1860 1.6.4.2 yamt }
1861 1.6.4.2 yamt
1862 1.6.4.2 yamt M_COPY_PKTHDR(mnew, m0);
1863 1.6.4.2 yamt if (m0->m_pkthdr.len > MHLEN) {
1864 1.6.4.2 yamt MCLGET(mnew, M_DONTWAIT);
1865 1.6.4.2 yamt if (!(mnew->m_flags & M_EXT)) {
1866 1.6.4.2 yamt m_freem(m0);
1867 1.6.4.2 yamt m_freem(mnew);
1868 1.6.4.2 yamt return ENOMEM;
1869 1.6.4.2 yamt }
1870 1.6.4.2 yamt }
1871 1.6.4.2 yamt
1872 1.6.4.4 yamt m_copydata(m0, 0, m0->m_pkthdr.len, mtod(mnew, void *));
1873 1.6.4.2 yamt m_freem(m0);
1874 1.6.4.2 yamt mnew->m_len = mnew->m_pkthdr.len;
1875 1.6.4.2 yamt m0 = mnew;
1876 1.6.4.2 yamt
1877 1.6.4.2 yamt error = bus_dmamap_load_mbuf(sc->sc_dmat, data->map, m0,
1878 1.6.4.2 yamt BUS_DMA_WRITE | BUS_DMA_NOWAIT);
1879 1.6.4.2 yamt if (error != 0) {
1880 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not map mbuf (error %d)\n",
1881 1.6.4.7 yamt error);
1882 1.6.4.2 yamt m_freem(m0);
1883 1.6.4.2 yamt return error;
1884 1.6.4.2 yamt }
1885 1.6.4.2 yamt }
1886 1.6.4.2 yamt
1887 1.6.4.2 yamt data->m = m0;
1888 1.6.4.2 yamt data->ni = ni;
1889 1.6.4.2 yamt
1890 1.6.4.2 yamt DPRINTFN(4, ("sending data: qid=%d idx=%d len=%d nsegs=%d\n",
1891 1.6.4.2 yamt ring->qid, ring->cur, m0->m_pkthdr.len, data->map->dm_nsegs));
1892 1.6.4.2 yamt
1893 1.6.4.2 yamt /* first scatter/gather segment is used by the tx data command */
1894 1.6.4.2 yamt desc->flags = htole32(WPI_PAD32(m0->m_pkthdr.len) << 28 |
1895 1.6.4.2 yamt (1 + data->map->dm_nsegs) << 24);
1896 1.6.4.2 yamt desc->segs[0].addr = htole32(ring->cmd_dma.paddr +
1897 1.6.4.2 yamt ring->cur * sizeof (struct wpi_tx_cmd));
1898 1.6.4.5 yamt desc->segs[0].len = htole32(4 + sizeof (struct wpi_cmd_data) +
1899 1.6.4.5 yamt ((hdrlen + 3) & ~3));
1900 1.6.4.2 yamt
1901 1.6.4.2 yamt for (i = 1; i <= data->map->dm_nsegs; i++) {
1902 1.6.4.2 yamt desc->segs[i].addr =
1903 1.6.4.2 yamt htole32(data->map->dm_segs[i - 1].ds_addr);
1904 1.6.4.2 yamt desc->segs[i].len =
1905 1.6.4.2 yamt htole32(data->map->dm_segs[i - 1].ds_len);
1906 1.6.4.2 yamt }
1907 1.6.4.2 yamt
1908 1.6.4.2 yamt ring->queued++;
1909 1.6.4.2 yamt
1910 1.6.4.2 yamt /* kick ring */
1911 1.6.4.2 yamt ring->cur = (ring->cur + 1) % WPI_TX_RING_COUNT;
1912 1.6.4.2 yamt WPI_WRITE(sc, WPI_TX_WIDX, ring->qid << 8 | ring->cur);
1913 1.6.4.2 yamt
1914 1.6.4.2 yamt return 0;
1915 1.6.4.2 yamt }
1916 1.6.4.2 yamt
1917 1.6.4.2 yamt static void
1918 1.6.4.2 yamt wpi_start(struct ifnet *ifp)
1919 1.6.4.2 yamt {
1920 1.6.4.2 yamt struct wpi_softc *sc = ifp->if_softc;
1921 1.6.4.2 yamt struct ieee80211com *ic = &sc->sc_ic;
1922 1.6.4.2 yamt struct ieee80211_node *ni;
1923 1.6.4.2 yamt struct ether_header *eh;
1924 1.6.4.2 yamt struct mbuf *m0;
1925 1.6.4.2 yamt int ac;
1926 1.6.4.2 yamt
1927 1.6.4.2 yamt /*
1928 1.6.4.2 yamt * net80211 may still try to send management frames even if the
1929 1.6.4.2 yamt * IFF_RUNNING flag is not set...
1930 1.6.4.2 yamt */
1931 1.6.4.2 yamt if ((ifp->if_flags & (IFF_RUNNING | IFF_OACTIVE)) != IFF_RUNNING)
1932 1.6.4.2 yamt return;
1933 1.6.4.2 yamt
1934 1.6.4.2 yamt for (;;) {
1935 1.6.4.4 yamt IF_DEQUEUE(&ic->ic_mgtq, m0);
1936 1.6.4.2 yamt if (m0 != NULL) {
1937 1.6.4.2 yamt
1938 1.6.4.2 yamt ni = (struct ieee80211_node *)m0->m_pkthdr.rcvif;
1939 1.6.4.2 yamt m0->m_pkthdr.rcvif = NULL;
1940 1.6.4.2 yamt
1941 1.6.4.2 yamt /* management frames go into ring 0 */
1942 1.6.4.2 yamt if (sc->txq[0].queued > sc->txq[0].count - 8) {
1943 1.6.4.2 yamt ifp->if_oerrors++;
1944 1.6.4.2 yamt continue;
1945 1.6.4.2 yamt }
1946 1.6.4.2 yamt #if NBPFILTER > 0
1947 1.6.4.2 yamt if (ic->ic_rawbpf != NULL)
1948 1.6.4.2 yamt bpf_mtap(ic->ic_rawbpf, m0);
1949 1.6.4.2 yamt #endif
1950 1.6.4.2 yamt if (wpi_tx_data(sc, m0, ni, 0) != 0) {
1951 1.6.4.2 yamt ifp->if_oerrors++;
1952 1.6.4.2 yamt break;
1953 1.6.4.2 yamt }
1954 1.6.4.2 yamt } else {
1955 1.6.4.2 yamt if (ic->ic_state != IEEE80211_S_RUN)
1956 1.6.4.2 yamt break;
1957 1.6.4.3 yamt IFQ_POLL(&ifp->if_snd, m0);
1958 1.6.4.2 yamt if (m0 == NULL)
1959 1.6.4.2 yamt break;
1960 1.6.4.2 yamt
1961 1.6.4.2 yamt if (m0->m_len < sizeof (*eh) &&
1962 1.6.4.2 yamt (m0 = m_pullup(m0, sizeof (*eh))) != NULL) {
1963 1.6.4.2 yamt ifp->if_oerrors++;
1964 1.6.4.2 yamt continue;
1965 1.6.4.2 yamt }
1966 1.6.4.2 yamt eh = mtod(m0, struct ether_header *);
1967 1.6.4.2 yamt ni = ieee80211_find_txnode(ic, eh->ether_dhost);
1968 1.6.4.2 yamt if (ni == NULL) {
1969 1.6.4.2 yamt m_freem(m0);
1970 1.6.4.2 yamt ifp->if_oerrors++;
1971 1.6.4.2 yamt continue;
1972 1.6.4.2 yamt }
1973 1.6.4.2 yamt
1974 1.6.4.2 yamt /* classify mbuf so we can find which tx ring to use */
1975 1.6.4.2 yamt if (ieee80211_classify(ic, m0, ni) != 0) {
1976 1.6.4.2 yamt m_freem(m0);
1977 1.6.4.2 yamt ieee80211_free_node(ni);
1978 1.6.4.2 yamt ifp->if_oerrors++;
1979 1.6.4.2 yamt continue;
1980 1.6.4.2 yamt }
1981 1.6.4.2 yamt
1982 1.6.4.2 yamt /* no QoS encapsulation for EAPOL frames */
1983 1.6.4.2 yamt ac = (eh->ether_type != htons(ETHERTYPE_PAE)) ?
1984 1.6.4.2 yamt M_WME_GETAC(m0) : WME_AC_BE;
1985 1.6.4.2 yamt
1986 1.6.4.2 yamt if (sc->txq[ac].queued > sc->txq[ac].count - 8) {
1987 1.6.4.2 yamt /* there is no place left in this ring */
1988 1.6.4.2 yamt ifp->if_flags |= IFF_OACTIVE;
1989 1.6.4.2 yamt break;
1990 1.6.4.2 yamt }
1991 1.6.4.3 yamt IFQ_DEQUEUE(&ifp->if_snd, m0);
1992 1.6.4.2 yamt #if NBPFILTER > 0
1993 1.6.4.2 yamt if (ifp->if_bpf != NULL)
1994 1.6.4.2 yamt bpf_mtap(ifp->if_bpf, m0);
1995 1.6.4.2 yamt #endif
1996 1.6.4.2 yamt m0 = ieee80211_encap(ic, m0, ni);
1997 1.6.4.2 yamt if (m0 == NULL) {
1998 1.6.4.2 yamt ieee80211_free_node(ni);
1999 1.6.4.2 yamt ifp->if_oerrors++;
2000 1.6.4.2 yamt continue;
2001 1.6.4.2 yamt }
2002 1.6.4.2 yamt #if NBPFILTER > 0
2003 1.6.4.2 yamt if (ic->ic_rawbpf != NULL)
2004 1.6.4.2 yamt bpf_mtap(ic->ic_rawbpf, m0);
2005 1.6.4.2 yamt #endif
2006 1.6.4.2 yamt if (wpi_tx_data(sc, m0, ni, ac) != 0) {
2007 1.6.4.2 yamt ieee80211_free_node(ni);
2008 1.6.4.2 yamt ifp->if_oerrors++;
2009 1.6.4.2 yamt break;
2010 1.6.4.2 yamt }
2011 1.6.4.2 yamt }
2012 1.6.4.2 yamt
2013 1.6.4.2 yamt sc->sc_tx_timer = 5;
2014 1.6.4.2 yamt ifp->if_timer = 1;
2015 1.6.4.2 yamt }
2016 1.6.4.2 yamt }
2017 1.6.4.2 yamt
2018 1.6.4.2 yamt static void
2019 1.6.4.2 yamt wpi_watchdog(struct ifnet *ifp)
2020 1.6.4.2 yamt {
2021 1.6.4.2 yamt struct wpi_softc *sc = ifp->if_softc;
2022 1.6.4.2 yamt
2023 1.6.4.2 yamt ifp->if_timer = 0;
2024 1.6.4.2 yamt
2025 1.6.4.2 yamt if (sc->sc_tx_timer > 0) {
2026 1.6.4.2 yamt if (--sc->sc_tx_timer == 0) {
2027 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "device timeout\n");
2028 1.6.4.2 yamt ifp->if_oerrors++;
2029 1.6.4.2 yamt ifp->if_flags &= ~IFF_UP;
2030 1.6.4.2 yamt wpi_stop(ifp, 1);
2031 1.6.4.2 yamt return;
2032 1.6.4.2 yamt }
2033 1.6.4.2 yamt ifp->if_timer = 1;
2034 1.6.4.2 yamt }
2035 1.6.4.2 yamt
2036 1.6.4.2 yamt ieee80211_watchdog(&sc->sc_ic);
2037 1.6.4.2 yamt }
2038 1.6.4.2 yamt
2039 1.6.4.2 yamt static int
2040 1.6.4.4 yamt wpi_ioctl(struct ifnet *ifp, u_long cmd, void *data)
2041 1.6.4.2 yamt {
2042 1.6.4.2 yamt #define IS_RUNNING(ifp) \
2043 1.6.4.2 yamt ((ifp->if_flags & IFF_UP) && (ifp->if_flags & IFF_RUNNING))
2044 1.6.4.2 yamt
2045 1.6.4.2 yamt struct wpi_softc *sc = ifp->if_softc;
2046 1.6.4.2 yamt struct ieee80211com *ic = &sc->sc_ic;
2047 1.6.4.2 yamt int s, error = 0;
2048 1.6.4.2 yamt
2049 1.6.4.2 yamt s = splnet();
2050 1.6.4.2 yamt
2051 1.6.4.2 yamt switch (cmd) {
2052 1.6.4.2 yamt case SIOCSIFFLAGS:
2053 1.6.4.2 yamt if (ifp->if_flags & IFF_UP) {
2054 1.6.4.2 yamt if (!(ifp->if_flags & IFF_RUNNING))
2055 1.6.4.2 yamt wpi_init(ifp);
2056 1.6.4.2 yamt } else {
2057 1.6.4.2 yamt if (ifp->if_flags & IFF_RUNNING)
2058 1.6.4.2 yamt wpi_stop(ifp, 1);
2059 1.6.4.2 yamt }
2060 1.6.4.2 yamt break;
2061 1.6.4.2 yamt
2062 1.6.4.2 yamt case SIOCADDMULTI:
2063 1.6.4.2 yamt case SIOCDELMULTI:
2064 1.6.4.4 yamt /* XXX no h/w multicast filter? --dyoung */
2065 1.6.4.4 yamt if ((error = ether_ioctl(ifp, cmd, data)) == ENETRESET) {
2066 1.6.4.2 yamt /* setup multicast filter, etc */
2067 1.6.4.2 yamt error = 0;
2068 1.6.4.2 yamt }
2069 1.6.4.2 yamt break;
2070 1.6.4.2 yamt
2071 1.6.4.2 yamt default:
2072 1.6.4.3 yamt error = ieee80211_ioctl(ic, cmd, data);
2073 1.6.4.2 yamt }
2074 1.6.4.2 yamt
2075 1.6.4.2 yamt if (error == ENETRESET) {
2076 1.6.4.2 yamt if (IS_RUNNING(ifp) &&
2077 1.6.4.2 yamt (ic->ic_roaming != IEEE80211_ROAMING_MANUAL))
2078 1.6.4.2 yamt wpi_init(ifp);
2079 1.6.4.2 yamt error = 0;
2080 1.6.4.2 yamt }
2081 1.6.4.2 yamt
2082 1.6.4.2 yamt splx(s);
2083 1.6.4.2 yamt return error;
2084 1.6.4.2 yamt
2085 1.6.4.2 yamt #undef IS_RUNNING
2086 1.6.4.2 yamt }
2087 1.6.4.2 yamt
2088 1.6.4.2 yamt /*
2089 1.6.4.2 yamt * Extract various information from EEPROM.
2090 1.6.4.2 yamt */
2091 1.6.4.2 yamt static void
2092 1.6.4.2 yamt wpi_read_eeprom(struct wpi_softc *sc)
2093 1.6.4.2 yamt {
2094 1.6.4.2 yamt struct ieee80211com *ic = &sc->sc_ic;
2095 1.6.4.4 yamt char domain[4];
2096 1.6.4.2 yamt int i;
2097 1.6.4.2 yamt
2098 1.6.4.4 yamt wpi_read_prom_data(sc, WPI_EEPROM_CAPABILITIES, &sc->cap, 1);
2099 1.6.4.4 yamt wpi_read_prom_data(sc, WPI_EEPROM_REVISION, &sc->rev, 2);
2100 1.6.4.4 yamt wpi_read_prom_data(sc, WPI_EEPROM_TYPE, &sc->type, 1);
2101 1.6.4.4 yamt
2102 1.6.4.4 yamt DPRINTF(("cap=%x rev=%x type=%x\n", sc->cap, le16toh(sc->rev),
2103 1.6.4.4 yamt sc->type));
2104 1.6.4.4 yamt
2105 1.6.4.4 yamt /* read and print regulatory domain */
2106 1.6.4.4 yamt wpi_read_prom_data(sc, WPI_EEPROM_DOMAIN, domain, 4);
2107 1.6.4.7 yamt aprint_normal_dev(sc->sc_dev, "%.4s", domain);
2108 1.6.4.4 yamt
2109 1.6.4.4 yamt /* read and print MAC address */
2110 1.6.4.4 yamt wpi_read_prom_data(sc, WPI_EEPROM_MAC, ic->ic_myaddr, 6);
2111 1.6.4.4 yamt aprint_normal(", address %s\n", ether_sprintf(ic->ic_myaddr));
2112 1.6.4.4 yamt
2113 1.6.4.4 yamt /* read the list of authorized channels */
2114 1.6.4.4 yamt for (i = 0; i < WPI_CHAN_BANDS_COUNT; i++)
2115 1.6.4.4 yamt wpi_read_eeprom_channels(sc, i);
2116 1.6.4.4 yamt
2117 1.6.4.4 yamt /* read the list of power groups */
2118 1.6.4.4 yamt for (i = 0; i < WPI_POWER_GROUPS_COUNT; i++)
2119 1.6.4.4 yamt wpi_read_eeprom_group(sc, i);
2120 1.6.4.4 yamt }
2121 1.6.4.4 yamt
2122 1.6.4.4 yamt static void
2123 1.6.4.4 yamt wpi_read_eeprom_channels(struct wpi_softc *sc, int n)
2124 1.6.4.4 yamt {
2125 1.6.4.4 yamt struct ieee80211com *ic = &sc->sc_ic;
2126 1.6.4.4 yamt const struct wpi_chan_band *band = &wpi_bands[n];
2127 1.6.4.4 yamt struct wpi_eeprom_chan channels[WPI_MAX_CHAN_PER_BAND];
2128 1.6.4.4 yamt int chan, i;
2129 1.6.4.4 yamt
2130 1.6.4.4 yamt wpi_read_prom_data(sc, band->addr, channels,
2131 1.6.4.4 yamt band->nchan * sizeof (struct wpi_eeprom_chan));
2132 1.6.4.4 yamt
2133 1.6.4.4 yamt for (i = 0; i < band->nchan; i++) {
2134 1.6.4.4 yamt if (!(channels[i].flags & WPI_EEPROM_CHAN_VALID))
2135 1.6.4.4 yamt continue;
2136 1.6.4.4 yamt
2137 1.6.4.4 yamt chan = band->chan[i];
2138 1.6.4.4 yamt
2139 1.6.4.4 yamt if (n == 0) { /* 2GHz band */
2140 1.6.4.4 yamt ic->ic_channels[chan].ic_freq =
2141 1.6.4.4 yamt ieee80211_ieee2mhz(chan, IEEE80211_CHAN_2GHZ);
2142 1.6.4.4 yamt ic->ic_channels[chan].ic_flags =
2143 1.6.4.4 yamt IEEE80211_CHAN_CCK | IEEE80211_CHAN_OFDM |
2144 1.6.4.4 yamt IEEE80211_CHAN_DYN | IEEE80211_CHAN_2GHZ;
2145 1.6.4.4 yamt
2146 1.6.4.4 yamt } else { /* 5GHz band */
2147 1.6.4.4 yamt /*
2148 1.6.4.4 yamt * Some 3945abg adapters support channels 7, 8, 11
2149 1.6.4.4 yamt * and 12 in the 2GHz *and* 5GHz bands.
2150 1.6.4.4 yamt * Because of limitations in our net80211(9) stack,
2151 1.6.4.4 yamt * we can't support these channels in 5GHz band.
2152 1.6.4.4 yamt */
2153 1.6.4.4 yamt if (chan <= 14)
2154 1.6.4.4 yamt continue;
2155 1.6.4.4 yamt
2156 1.6.4.4 yamt ic->ic_channels[chan].ic_freq =
2157 1.6.4.4 yamt ieee80211_ieee2mhz(chan, IEEE80211_CHAN_5GHZ);
2158 1.6.4.4 yamt ic->ic_channels[chan].ic_flags = IEEE80211_CHAN_A;
2159 1.6.4.4 yamt }
2160 1.6.4.4 yamt
2161 1.6.4.4 yamt /* is active scan allowed on this channel? */
2162 1.6.4.4 yamt if (!(channels[i].flags & WPI_EEPROM_CHAN_ACTIVE)) {
2163 1.6.4.4 yamt ic->ic_channels[chan].ic_flags |=
2164 1.6.4.4 yamt IEEE80211_CHAN_PASSIVE;
2165 1.6.4.4 yamt }
2166 1.6.4.4 yamt
2167 1.6.4.4 yamt /* save maximum allowed power for this channel */
2168 1.6.4.4 yamt sc->maxpwr[chan] = channels[i].maxpwr;
2169 1.6.4.4 yamt
2170 1.6.4.4 yamt DPRINTF(("adding chan %d flags=0x%x maxpwr=%d\n",
2171 1.6.4.4 yamt chan, channels[i].flags, sc->maxpwr[chan]));
2172 1.6.4.4 yamt }
2173 1.6.4.4 yamt }
2174 1.6.4.4 yamt
2175 1.6.4.4 yamt static void
2176 1.6.4.4 yamt wpi_read_eeprom_group(struct wpi_softc *sc, int n)
2177 1.6.4.4 yamt {
2178 1.6.4.4 yamt struct wpi_power_group *group = &sc->groups[n];
2179 1.6.4.4 yamt struct wpi_eeprom_group rgroup;
2180 1.6.4.4 yamt int i;
2181 1.6.4.4 yamt
2182 1.6.4.4 yamt wpi_read_prom_data(sc, WPI_EEPROM_POWER_GRP + n * 32, &rgroup,
2183 1.6.4.4 yamt sizeof rgroup);
2184 1.6.4.4 yamt
2185 1.6.4.4 yamt /* save power group information */
2186 1.6.4.4 yamt group->chan = rgroup.chan;
2187 1.6.4.4 yamt group->maxpwr = rgroup.maxpwr;
2188 1.6.4.4 yamt /* temperature at which the samples were taken */
2189 1.6.4.4 yamt group->temp = (int16_t)le16toh(rgroup.temp);
2190 1.6.4.4 yamt
2191 1.6.4.4 yamt DPRINTF(("power group %d: chan=%d maxpwr=%d temp=%d\n", n,
2192 1.6.4.4 yamt group->chan, group->maxpwr, group->temp));
2193 1.6.4.4 yamt
2194 1.6.4.4 yamt for (i = 0; i < WPI_SAMPLES_COUNT; i++) {
2195 1.6.4.4 yamt group->samples[i].index = rgroup.samples[i].index;
2196 1.6.4.4 yamt group->samples[i].power = rgroup.samples[i].power;
2197 1.6.4.4 yamt
2198 1.6.4.4 yamt DPRINTF(("\tsample %d: index=%d power=%d\n", i,
2199 1.6.4.4 yamt group->samples[i].index, group->samples[i].power));
2200 1.6.4.2 yamt }
2201 1.6.4.2 yamt }
2202 1.6.4.2 yamt
2203 1.6.4.2 yamt /*
2204 1.6.4.2 yamt * Send a command to the firmware.
2205 1.6.4.2 yamt */
2206 1.6.4.2 yamt static int
2207 1.6.4.2 yamt wpi_cmd(struct wpi_softc *sc, int code, const void *buf, int size, int async)
2208 1.6.4.2 yamt {
2209 1.6.4.2 yamt struct wpi_tx_ring *ring = &sc->cmdq;
2210 1.6.4.2 yamt struct wpi_tx_desc *desc;
2211 1.6.4.2 yamt struct wpi_tx_cmd *cmd;
2212 1.6.4.2 yamt
2213 1.6.4.2 yamt KASSERT(size <= sizeof cmd->data);
2214 1.6.4.2 yamt
2215 1.6.4.2 yamt desc = &ring->desc[ring->cur];
2216 1.6.4.2 yamt cmd = &ring->cmd[ring->cur];
2217 1.6.4.2 yamt
2218 1.6.4.2 yamt cmd->code = code;
2219 1.6.4.2 yamt cmd->flags = 0;
2220 1.6.4.2 yamt cmd->qid = ring->qid;
2221 1.6.4.2 yamt cmd->idx = ring->cur;
2222 1.6.4.2 yamt memcpy(cmd->data, buf, size);
2223 1.6.4.2 yamt
2224 1.6.4.2 yamt desc->flags = htole32(WPI_PAD32(size) << 28 | 1 << 24);
2225 1.6.4.2 yamt desc->segs[0].addr = htole32(ring->cmd_dma.paddr +
2226 1.6.4.2 yamt ring->cur * sizeof (struct wpi_tx_cmd));
2227 1.6.4.2 yamt desc->segs[0].len = htole32(4 + size);
2228 1.6.4.2 yamt
2229 1.6.4.2 yamt /* kick cmd ring */
2230 1.6.4.2 yamt ring->cur = (ring->cur + 1) % WPI_CMD_RING_COUNT;
2231 1.6.4.2 yamt WPI_WRITE(sc, WPI_TX_WIDX, ring->qid << 8 | ring->cur);
2232 1.6.4.2 yamt
2233 1.6.4.2 yamt return async ? 0 : tsleep(cmd, PCATCH, "wpicmd", hz);
2234 1.6.4.2 yamt }
2235 1.6.4.2 yamt
2236 1.6.4.2 yamt static int
2237 1.6.4.2 yamt wpi_wme_update(struct ieee80211com *ic)
2238 1.6.4.2 yamt {
2239 1.6.4.2 yamt #define WPI_EXP2(v) htole16((1 << (v)) - 1)
2240 1.6.4.2 yamt #define WPI_USEC(v) htole16(IEEE80211_TXOP_TO_US(v))
2241 1.6.4.2 yamt struct wpi_softc *sc = ic->ic_ifp->if_softc;
2242 1.6.4.2 yamt const struct wmeParams *wmep;
2243 1.6.4.2 yamt struct wpi_wme_setup wme;
2244 1.6.4.2 yamt int ac;
2245 1.6.4.2 yamt
2246 1.6.4.2 yamt /* don't override default WME values if WME is not actually enabled */
2247 1.6.4.2 yamt if (!(ic->ic_flags & IEEE80211_F_WME))
2248 1.6.4.2 yamt return 0;
2249 1.6.4.2 yamt
2250 1.6.4.2 yamt wme.flags = 0;
2251 1.6.4.2 yamt for (ac = 0; ac < WME_NUM_AC; ac++) {
2252 1.6.4.2 yamt wmep = &ic->ic_wme.wme_chanParams.cap_wmeParams[ac];
2253 1.6.4.2 yamt wme.ac[ac].aifsn = wmep->wmep_aifsn;
2254 1.6.4.2 yamt wme.ac[ac].cwmin = WPI_EXP2(wmep->wmep_logcwmin);
2255 1.6.4.2 yamt wme.ac[ac].cwmax = WPI_EXP2(wmep->wmep_logcwmax);
2256 1.6.4.2 yamt wme.ac[ac].txop = WPI_USEC(wmep->wmep_txopLimit);
2257 1.6.4.2 yamt
2258 1.6.4.2 yamt DPRINTF(("setting WME for queue %d aifsn=%d cwmin=%d cwmax=%d "
2259 1.6.4.2 yamt "txop=%d\n", ac, wme.ac[ac].aifsn, wme.ac[ac].cwmin,
2260 1.6.4.2 yamt wme.ac[ac].cwmax, wme.ac[ac].txop));
2261 1.6.4.2 yamt }
2262 1.6.4.2 yamt
2263 1.6.4.2 yamt return wpi_cmd(sc, WPI_CMD_SET_WME, &wme, sizeof wme, 1);
2264 1.6.4.2 yamt #undef WPI_USEC
2265 1.6.4.2 yamt #undef WPI_EXP2
2266 1.6.4.2 yamt }
2267 1.6.4.2 yamt
2268 1.6.4.2 yamt /*
2269 1.6.4.2 yamt * Configure h/w multi-rate retries.
2270 1.6.4.2 yamt */
2271 1.6.4.2 yamt static int
2272 1.6.4.2 yamt wpi_mrr_setup(struct wpi_softc *sc)
2273 1.6.4.2 yamt {
2274 1.6.4.2 yamt struct ieee80211com *ic = &sc->sc_ic;
2275 1.6.4.2 yamt struct wpi_mrr_setup mrr;
2276 1.6.4.2 yamt int i, error;
2277 1.6.4.2 yamt
2278 1.6.4.2 yamt /* CCK rates (not used with 802.11a) */
2279 1.6.4.2 yamt for (i = WPI_CCK1; i <= WPI_CCK11; i++) {
2280 1.6.4.2 yamt mrr.rates[i].flags = 0;
2281 1.6.4.2 yamt mrr.rates[i].plcp = wpi_ridx_to_plcp[i];
2282 1.6.4.2 yamt /* fallback to the immediate lower CCK rate (if any) */
2283 1.6.4.2 yamt mrr.rates[i].next = (i == WPI_CCK1) ? WPI_CCK1 : i - 1;
2284 1.6.4.2 yamt /* try one time at this rate before falling back to "next" */
2285 1.6.4.2 yamt mrr.rates[i].ntries = 1;
2286 1.6.4.2 yamt }
2287 1.6.4.2 yamt
2288 1.6.4.2 yamt /* OFDM rates (not used with 802.11b) */
2289 1.6.4.2 yamt for (i = WPI_OFDM6; i <= WPI_OFDM54; i++) {
2290 1.6.4.2 yamt mrr.rates[i].flags = 0;
2291 1.6.4.2 yamt mrr.rates[i].plcp = wpi_ridx_to_plcp[i];
2292 1.6.4.2 yamt /* fallback to the immediate lower rate (if any) */
2293 1.6.4.2 yamt /* we allow fallback from OFDM/6 to CCK/2 in 11b/g mode */
2294 1.6.4.2 yamt mrr.rates[i].next = (i == WPI_OFDM6) ?
2295 1.6.4.2 yamt ((ic->ic_curmode == IEEE80211_MODE_11A) ?
2296 1.6.4.2 yamt WPI_OFDM6 : WPI_CCK2) :
2297 1.6.4.2 yamt i - 1;
2298 1.6.4.2 yamt /* try one time at this rate before falling back to "next" */
2299 1.6.4.2 yamt mrr.rates[i].ntries = 1;
2300 1.6.4.2 yamt }
2301 1.6.4.2 yamt
2302 1.6.4.2 yamt /* setup MRR for control frames */
2303 1.6.4.2 yamt mrr.which = htole32(WPI_MRR_CTL);
2304 1.6.4.4 yamt error = wpi_cmd(sc, WPI_CMD_MRR_SETUP, &mrr, sizeof mrr, 0);
2305 1.6.4.2 yamt if (error != 0) {
2306 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not setup MRR for control frames\n");
2307 1.6.4.2 yamt return error;
2308 1.6.4.2 yamt }
2309 1.6.4.2 yamt
2310 1.6.4.2 yamt /* setup MRR for data frames */
2311 1.6.4.2 yamt mrr.which = htole32(WPI_MRR_DATA);
2312 1.6.4.4 yamt error = wpi_cmd(sc, WPI_CMD_MRR_SETUP, &mrr, sizeof mrr, 0);
2313 1.6.4.2 yamt if (error != 0) {
2314 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not setup MRR for data frames\n");
2315 1.6.4.2 yamt return error;
2316 1.6.4.2 yamt }
2317 1.6.4.2 yamt
2318 1.6.4.2 yamt return 0;
2319 1.6.4.2 yamt }
2320 1.6.4.2 yamt
2321 1.6.4.2 yamt static void
2322 1.6.4.2 yamt wpi_set_led(struct wpi_softc *sc, uint8_t which, uint8_t off, uint8_t on)
2323 1.6.4.2 yamt {
2324 1.6.4.2 yamt struct wpi_cmd_led led;
2325 1.6.4.2 yamt
2326 1.6.4.2 yamt led.which = which;
2327 1.6.4.2 yamt led.unit = htole32(100000); /* on/off in unit of 100ms */
2328 1.6.4.2 yamt led.off = off;
2329 1.6.4.2 yamt led.on = on;
2330 1.6.4.2 yamt
2331 1.6.4.2 yamt (void)wpi_cmd(sc, WPI_CMD_SET_LED, &led, sizeof led, 1);
2332 1.6.4.2 yamt }
2333 1.6.4.2 yamt
2334 1.6.4.2 yamt static void
2335 1.6.4.2 yamt wpi_enable_tsf(struct wpi_softc *sc, struct ieee80211_node *ni)
2336 1.6.4.2 yamt {
2337 1.6.4.2 yamt struct wpi_cmd_tsf tsf;
2338 1.6.4.2 yamt uint64_t val, mod;
2339 1.6.4.2 yamt
2340 1.6.4.2 yamt memset(&tsf, 0, sizeof tsf);
2341 1.6.4.2 yamt memcpy(&tsf.tstamp, ni->ni_tstamp.data, 8);
2342 1.6.4.2 yamt tsf.bintval = htole16(ni->ni_intval);
2343 1.6.4.2 yamt tsf.lintval = htole16(10);
2344 1.6.4.2 yamt
2345 1.6.4.2 yamt /* compute remaining time until next beacon */
2346 1.6.4.2 yamt val = (uint64_t)ni->ni_intval * 1024; /* msecs -> usecs */
2347 1.6.4.2 yamt mod = le64toh(tsf.tstamp) % val;
2348 1.6.4.2 yamt tsf.binitval = htole32((uint32_t)(val - mod));
2349 1.6.4.2 yamt
2350 1.6.4.4 yamt DPRINTF(("TSF bintval=%u tstamp=%" PRId64 ", init=%u\n",
2351 1.6.4.2 yamt ni->ni_intval, le64toh(tsf.tstamp), (uint32_t)(val - mod)));
2352 1.6.4.2 yamt
2353 1.6.4.2 yamt if (wpi_cmd(sc, WPI_CMD_TSF, &tsf, sizeof tsf, 1) != 0)
2354 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not enable TSF\n");
2355 1.6.4.2 yamt }
2356 1.6.4.2 yamt
2357 1.6.4.2 yamt /*
2358 1.6.4.4 yamt * Update Tx power to match what is defined for channel `c'.
2359 1.6.4.4 yamt */
2360 1.6.4.4 yamt static int
2361 1.6.4.4 yamt wpi_set_txpower(struct wpi_softc *sc, struct ieee80211_channel *c, int async)
2362 1.6.4.4 yamt {
2363 1.6.4.4 yamt struct ieee80211com *ic = &sc->sc_ic;
2364 1.6.4.4 yamt struct wpi_power_group *group;
2365 1.6.4.4 yamt struct wpi_cmd_txpower txpower;
2366 1.6.4.4 yamt u_int chan;
2367 1.6.4.4 yamt int i;
2368 1.6.4.4 yamt
2369 1.6.4.4 yamt /* get channel number */
2370 1.6.4.4 yamt chan = ieee80211_chan2ieee(ic, c);
2371 1.6.4.4 yamt
2372 1.6.4.4 yamt /* find the power group to which this channel belongs */
2373 1.6.4.4 yamt if (IEEE80211_IS_CHAN_5GHZ(c)) {
2374 1.6.4.4 yamt for (group = &sc->groups[1]; group < &sc->groups[4]; group++)
2375 1.6.4.4 yamt if (chan <= group->chan)
2376 1.6.4.4 yamt break;
2377 1.6.4.4 yamt } else
2378 1.6.4.4 yamt group = &sc->groups[0];
2379 1.6.4.4 yamt
2380 1.6.4.4 yamt memset(&txpower, 0, sizeof txpower);
2381 1.6.4.4 yamt txpower.band = IEEE80211_IS_CHAN_5GHZ(c) ? 0 : 1;
2382 1.6.4.4 yamt txpower.chan = htole16(chan);
2383 1.6.4.4 yamt
2384 1.6.4.4 yamt /* set Tx power for all OFDM and CCK rates */
2385 1.6.4.4 yamt for (i = 0; i <= 11 ; i++) {
2386 1.6.4.4 yamt /* retrieve Tx power for this channel/rate combination */
2387 1.6.4.4 yamt int idx = wpi_get_power_index(sc, group, c,
2388 1.6.4.4 yamt wpi_ridx_to_rate[i]);
2389 1.6.4.4 yamt
2390 1.6.4.4 yamt txpower.rates[i].plcp = wpi_ridx_to_plcp[i];
2391 1.6.4.4 yamt
2392 1.6.4.4 yamt if (IEEE80211_IS_CHAN_5GHZ(c)) {
2393 1.6.4.4 yamt txpower.rates[i].rf_gain = wpi_rf_gain_5ghz[idx];
2394 1.6.4.4 yamt txpower.rates[i].dsp_gain = wpi_dsp_gain_5ghz[idx];
2395 1.6.4.4 yamt } else {
2396 1.6.4.4 yamt txpower.rates[i].rf_gain = wpi_rf_gain_2ghz[idx];
2397 1.6.4.4 yamt txpower.rates[i].dsp_gain = wpi_dsp_gain_2ghz[idx];
2398 1.6.4.4 yamt }
2399 1.6.4.4 yamt DPRINTF(("chan %d/rate %d: power index %d\n", chan,
2400 1.6.4.4 yamt wpi_ridx_to_rate[i], idx));
2401 1.6.4.4 yamt }
2402 1.6.4.4 yamt
2403 1.6.4.4 yamt return wpi_cmd(sc, WPI_CMD_TXPOWER, &txpower, sizeof txpower, async);
2404 1.6.4.4 yamt }
2405 1.6.4.4 yamt
2406 1.6.4.4 yamt /*
2407 1.6.4.4 yamt * Determine Tx power index for a given channel/rate combination.
2408 1.6.4.4 yamt * This takes into account the regulatory information from EEPROM and the
2409 1.6.4.4 yamt * current temperature.
2410 1.6.4.4 yamt */
2411 1.6.4.4 yamt static int
2412 1.6.4.4 yamt wpi_get_power_index(struct wpi_softc *sc, struct wpi_power_group *group,
2413 1.6.4.4 yamt struct ieee80211_channel *c, int rate)
2414 1.6.4.4 yamt {
2415 1.6.4.4 yamt /* fixed-point arithmetic division using a n-bit fractional part */
2416 1.6.4.4 yamt #define fdivround(a, b, n) \
2417 1.6.4.4 yamt ((((1 << n) * (a)) / (b) + (1 << n) / 2) / (1 << n))
2418 1.6.4.4 yamt
2419 1.6.4.4 yamt /* linear interpolation */
2420 1.6.4.4 yamt #define interpolate(x, x1, y1, x2, y2, n) \
2421 1.6.4.4 yamt ((y1) + fdivround(((x) - (x1)) * ((y2) - (y1)), (x2) - (x1), n))
2422 1.6.4.4 yamt
2423 1.6.4.4 yamt struct ieee80211com *ic = &sc->sc_ic;
2424 1.6.4.4 yamt struct wpi_power_sample *sample;
2425 1.6.4.4 yamt int pwr, idx;
2426 1.6.4.4 yamt u_int chan;
2427 1.6.4.4 yamt
2428 1.6.4.4 yamt /* get channel number */
2429 1.6.4.4 yamt chan = ieee80211_chan2ieee(ic, c);
2430 1.6.4.4 yamt
2431 1.6.4.4 yamt /* default power is group's maximum power - 3dB */
2432 1.6.4.4 yamt pwr = group->maxpwr / 2;
2433 1.6.4.4 yamt
2434 1.6.4.4 yamt /* decrease power for highest OFDM rates to reduce distortion */
2435 1.6.4.4 yamt switch (rate) {
2436 1.6.4.4 yamt case 72: /* 36Mb/s */
2437 1.6.4.4 yamt pwr -= IEEE80211_IS_CHAN_2GHZ(c) ? 0 : 5;
2438 1.6.4.4 yamt break;
2439 1.6.4.4 yamt case 96: /* 48Mb/s */
2440 1.6.4.4 yamt pwr -= IEEE80211_IS_CHAN_2GHZ(c) ? 7 : 10;
2441 1.6.4.4 yamt break;
2442 1.6.4.4 yamt case 108: /* 54Mb/s */
2443 1.6.4.4 yamt pwr -= IEEE80211_IS_CHAN_2GHZ(c) ? 9 : 12;
2444 1.6.4.4 yamt break;
2445 1.6.4.4 yamt }
2446 1.6.4.4 yamt
2447 1.6.4.4 yamt /* never exceed channel's maximum allowed Tx power */
2448 1.6.4.4 yamt pwr = min(pwr, sc->maxpwr[chan]);
2449 1.6.4.4 yamt
2450 1.6.4.4 yamt /* retrieve power index into gain tables from samples */
2451 1.6.4.4 yamt for (sample = group->samples; sample < &group->samples[3]; sample++)
2452 1.6.4.4 yamt if (pwr > sample[1].power)
2453 1.6.4.4 yamt break;
2454 1.6.4.4 yamt /* fixed-point linear interpolation using a 19-bit fractional part */
2455 1.6.4.4 yamt idx = interpolate(pwr, sample[0].power, sample[0].index,
2456 1.6.4.4 yamt sample[1].power, sample[1].index, 19);
2457 1.6.4.4 yamt
2458 1.6.4.4 yamt /*
2459 1.6.4.4 yamt * Adjust power index based on current temperature:
2460 1.6.4.4 yamt * - if cooler than factory-calibrated: decrease output power
2461 1.6.4.4 yamt * - if warmer than factory-calibrated: increase output power
2462 1.6.4.4 yamt */
2463 1.6.4.4 yamt idx -= (sc->temp - group->temp) * 11 / 100;
2464 1.6.4.4 yamt
2465 1.6.4.4 yamt /* decrease power for CCK rates (-5dB) */
2466 1.6.4.4 yamt if (!WPI_RATE_IS_OFDM(rate))
2467 1.6.4.4 yamt idx += 10;
2468 1.6.4.4 yamt
2469 1.6.4.4 yamt /* keep power index in a valid range */
2470 1.6.4.4 yamt if (idx < 0)
2471 1.6.4.4 yamt return 0;
2472 1.6.4.4 yamt if (idx > WPI_MAX_PWR_INDEX)
2473 1.6.4.4 yamt return WPI_MAX_PWR_INDEX;
2474 1.6.4.4 yamt return idx;
2475 1.6.4.4 yamt
2476 1.6.4.4 yamt #undef interpolate
2477 1.6.4.4 yamt #undef fdivround
2478 1.6.4.4 yamt }
2479 1.6.4.4 yamt
2480 1.6.4.4 yamt /*
2481 1.6.4.2 yamt * Build a beacon frame that the firmware will broadcast periodically in
2482 1.6.4.2 yamt * IBSS or HostAP modes.
2483 1.6.4.2 yamt */
2484 1.6.4.2 yamt static int
2485 1.6.4.2 yamt wpi_setup_beacon(struct wpi_softc *sc, struct ieee80211_node *ni)
2486 1.6.4.2 yamt {
2487 1.6.4.2 yamt struct ieee80211com *ic = &sc->sc_ic;
2488 1.6.4.2 yamt struct wpi_tx_ring *ring = &sc->cmdq;
2489 1.6.4.2 yamt struct wpi_tx_desc *desc;
2490 1.6.4.2 yamt struct wpi_tx_data *data;
2491 1.6.4.2 yamt struct wpi_tx_cmd *cmd;
2492 1.6.4.2 yamt struct wpi_cmd_beacon *bcn;
2493 1.6.4.2 yamt struct ieee80211_beacon_offsets bo;
2494 1.6.4.2 yamt struct mbuf *m0;
2495 1.6.4.2 yamt int error;
2496 1.6.4.2 yamt
2497 1.6.4.2 yamt desc = &ring->desc[ring->cur];
2498 1.6.4.2 yamt data = &ring->data[ring->cur];
2499 1.6.4.2 yamt
2500 1.6.4.2 yamt m0 = ieee80211_beacon_alloc(ic, ni, &bo);
2501 1.6.4.2 yamt if (m0 == NULL) {
2502 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not allocate beacon frame\n");
2503 1.6.4.2 yamt return ENOMEM;
2504 1.6.4.2 yamt }
2505 1.6.4.2 yamt
2506 1.6.4.2 yamt cmd = &ring->cmd[ring->cur];
2507 1.6.4.2 yamt cmd->code = WPI_CMD_SET_BEACON;
2508 1.6.4.2 yamt cmd->flags = 0;
2509 1.6.4.2 yamt cmd->qid = ring->qid;
2510 1.6.4.2 yamt cmd->idx = ring->cur;
2511 1.6.4.2 yamt
2512 1.6.4.2 yamt bcn = (struct wpi_cmd_beacon *)cmd->data;
2513 1.6.4.2 yamt memset(bcn, 0, sizeof (struct wpi_cmd_beacon));
2514 1.6.4.2 yamt bcn->id = WPI_ID_BROADCAST;
2515 1.6.4.2 yamt bcn->ofdm_mask = 0xff;
2516 1.6.4.2 yamt bcn->cck_mask = 0x0f;
2517 1.6.4.4 yamt bcn->lifetime = htole32(WPI_LIFETIME_INFINITE);
2518 1.6.4.2 yamt bcn->len = htole16(m0->m_pkthdr.len);
2519 1.6.4.2 yamt bcn->rate = (ic->ic_curmode == IEEE80211_MODE_11A) ?
2520 1.6.4.2 yamt wpi_plcp_signal(12) : wpi_plcp_signal(2);
2521 1.6.4.2 yamt bcn->flags = htole32(WPI_TX_AUTO_SEQ | WPI_TX_INSERT_TSTAMP);
2522 1.6.4.2 yamt
2523 1.6.4.2 yamt /* save and trim IEEE802.11 header */
2524 1.6.4.4 yamt m_copydata(m0, 0, sizeof (struct ieee80211_frame), (void *)&bcn->wh);
2525 1.6.4.2 yamt m_adj(m0, sizeof (struct ieee80211_frame));
2526 1.6.4.2 yamt
2527 1.6.4.2 yamt /* assume beacon frame is contiguous */
2528 1.6.4.2 yamt error = bus_dmamap_load_mbuf(sc->sc_dmat, data->map, m0,
2529 1.6.4.2 yamt BUS_DMA_READ | BUS_DMA_NOWAIT);
2530 1.6.4.2 yamt if (error) {
2531 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not map beacon\n");
2532 1.6.4.2 yamt m_freem(m0);
2533 1.6.4.2 yamt return error;
2534 1.6.4.2 yamt }
2535 1.6.4.2 yamt
2536 1.6.4.2 yamt data->m = m0;
2537 1.6.4.2 yamt
2538 1.6.4.2 yamt /* first scatter/gather segment is used by the beacon command */
2539 1.6.4.2 yamt desc->flags = htole32(WPI_PAD32(m0->m_pkthdr.len) << 28 | 2 << 24);
2540 1.6.4.2 yamt desc->segs[0].addr = htole32(ring->cmd_dma.paddr +
2541 1.6.4.2 yamt ring->cur * sizeof (struct wpi_tx_cmd));
2542 1.6.4.2 yamt desc->segs[0].len = htole32(4 + sizeof (struct wpi_cmd_beacon));
2543 1.6.4.2 yamt desc->segs[1].addr = htole32(data->map->dm_segs[0].ds_addr);
2544 1.6.4.2 yamt desc->segs[1].len = htole32(data->map->dm_segs[0].ds_len);
2545 1.6.4.2 yamt
2546 1.6.4.2 yamt /* kick cmd ring */
2547 1.6.4.2 yamt ring->cur = (ring->cur + 1) % WPI_CMD_RING_COUNT;
2548 1.6.4.2 yamt WPI_WRITE(sc, WPI_TX_WIDX, ring->qid << 8 | ring->cur);
2549 1.6.4.2 yamt
2550 1.6.4.2 yamt return 0;
2551 1.6.4.2 yamt }
2552 1.6.4.2 yamt
2553 1.6.4.2 yamt static int
2554 1.6.4.2 yamt wpi_auth(struct wpi_softc *sc)
2555 1.6.4.2 yamt {
2556 1.6.4.2 yamt struct ieee80211com *ic = &sc->sc_ic;
2557 1.6.4.2 yamt struct ieee80211_node *ni = ic->ic_bss;
2558 1.6.4.2 yamt struct wpi_node_info node;
2559 1.6.4.2 yamt int error;
2560 1.6.4.2 yamt
2561 1.6.4.2 yamt /* update adapter's configuration */
2562 1.6.4.2 yamt IEEE80211_ADDR_COPY(sc->config.bssid, ni->ni_bssid);
2563 1.6.4.2 yamt sc->config.chan = ieee80211_chan2ieee(ic, ni->ni_chan);
2564 1.6.4.2 yamt sc->config.flags = htole32(WPI_CONFIG_TSF);
2565 1.6.4.2 yamt if (IEEE80211_IS_CHAN_2GHZ(ni->ni_chan)) {
2566 1.6.4.2 yamt sc->config.flags |= htole32(WPI_CONFIG_AUTO |
2567 1.6.4.2 yamt WPI_CONFIG_24GHZ);
2568 1.6.4.2 yamt }
2569 1.6.4.2 yamt switch (ic->ic_curmode) {
2570 1.6.4.2 yamt case IEEE80211_MODE_11A:
2571 1.6.4.2 yamt sc->config.cck_mask = 0;
2572 1.6.4.2 yamt sc->config.ofdm_mask = 0x15;
2573 1.6.4.2 yamt break;
2574 1.6.4.2 yamt case IEEE80211_MODE_11B:
2575 1.6.4.2 yamt sc->config.cck_mask = 0x03;
2576 1.6.4.2 yamt sc->config.ofdm_mask = 0;
2577 1.6.4.2 yamt break;
2578 1.6.4.2 yamt default: /* assume 802.11b/g */
2579 1.6.4.2 yamt sc->config.cck_mask = 0x0f;
2580 1.6.4.2 yamt sc->config.ofdm_mask = 0x15;
2581 1.6.4.2 yamt }
2582 1.6.4.2 yamt
2583 1.6.4.2 yamt DPRINTF(("config chan %d flags %x cck %x ofdm %x\n", sc->config.chan,
2584 1.6.4.2 yamt sc->config.flags, sc->config.cck_mask, sc->config.ofdm_mask));
2585 1.6.4.2 yamt error = wpi_cmd(sc, WPI_CMD_CONFIGURE, &sc->config,
2586 1.6.4.2 yamt sizeof (struct wpi_config), 1);
2587 1.6.4.2 yamt if (error != 0) {
2588 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not configure\n");
2589 1.6.4.2 yamt return error;
2590 1.6.4.2 yamt }
2591 1.6.4.2 yamt
2592 1.6.4.4 yamt /* configuration has changed, set Tx power accordingly */
2593 1.6.4.4 yamt if ((error = wpi_set_txpower(sc, ni->ni_chan, 1)) != 0) {
2594 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not set Tx power\n");
2595 1.6.4.4 yamt return error;
2596 1.6.4.4 yamt }
2597 1.6.4.4 yamt
2598 1.6.4.2 yamt /* add default node */
2599 1.6.4.2 yamt memset(&node, 0, sizeof node);
2600 1.6.4.2 yamt IEEE80211_ADDR_COPY(node.bssid, ni->ni_bssid);
2601 1.6.4.2 yamt node.id = WPI_ID_BSS;
2602 1.6.4.2 yamt node.rate = (ic->ic_curmode == IEEE80211_MODE_11A) ?
2603 1.6.4.2 yamt wpi_plcp_signal(12) : wpi_plcp_signal(2);
2604 1.6.4.4 yamt node.action = htole32(WPI_ACTION_SET_RATE);
2605 1.6.4.4 yamt node.antenna = WPI_ANTENNA_BOTH;
2606 1.6.4.2 yamt error = wpi_cmd(sc, WPI_CMD_ADD_NODE, &node, sizeof node, 1);
2607 1.6.4.2 yamt if (error != 0) {
2608 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not add BSS node\n");
2609 1.6.4.2 yamt return error;
2610 1.6.4.2 yamt }
2611 1.6.4.2 yamt
2612 1.6.4.2 yamt return 0;
2613 1.6.4.2 yamt }
2614 1.6.4.2 yamt
2615 1.6.4.2 yamt /*
2616 1.6.4.2 yamt * Send a scan request to the firmware. Since this command is huge, we map it
2617 1.6.4.2 yamt * into a mbuf instead of using the pre-allocated set of commands.
2618 1.6.4.2 yamt */
2619 1.6.4.2 yamt static int
2620 1.6.4.2 yamt wpi_scan(struct wpi_softc *sc, uint16_t flags)
2621 1.6.4.2 yamt {
2622 1.6.4.2 yamt struct ieee80211com *ic = &sc->sc_ic;
2623 1.6.4.2 yamt struct wpi_tx_ring *ring = &sc->cmdq;
2624 1.6.4.2 yamt struct wpi_tx_desc *desc;
2625 1.6.4.2 yamt struct wpi_tx_data *data;
2626 1.6.4.2 yamt struct wpi_tx_cmd *cmd;
2627 1.6.4.2 yamt struct wpi_scan_hdr *hdr;
2628 1.6.4.2 yamt struct wpi_scan_chan *chan;
2629 1.6.4.2 yamt struct ieee80211_frame *wh;
2630 1.6.4.2 yamt struct ieee80211_rateset *rs;
2631 1.6.4.2 yamt struct ieee80211_channel *c;
2632 1.6.4.2 yamt enum ieee80211_phymode mode;
2633 1.6.4.2 yamt uint8_t *frm;
2634 1.6.4.2 yamt int nrates, pktlen, error;
2635 1.6.4.2 yamt
2636 1.6.4.2 yamt desc = &ring->desc[ring->cur];
2637 1.6.4.2 yamt data = &ring->data[ring->cur];
2638 1.6.4.2 yamt
2639 1.6.4.2 yamt MGETHDR(data->m, M_DONTWAIT, MT_DATA);
2640 1.6.4.2 yamt if (data->m == NULL) {
2641 1.6.4.7 yamt aprint_error_dev(sc->sc_dev,
2642 1.6.4.7 yamt "could not allocate mbuf for scan command\n");
2643 1.6.4.2 yamt return ENOMEM;
2644 1.6.4.2 yamt }
2645 1.6.4.2 yamt
2646 1.6.4.2 yamt MCLGET(data->m, M_DONTWAIT);
2647 1.6.4.2 yamt if (!(data->m->m_flags & M_EXT)) {
2648 1.6.4.2 yamt m_freem(data->m);
2649 1.6.4.2 yamt data->m = NULL;
2650 1.6.4.7 yamt aprint_error_dev(sc->sc_dev,
2651 1.6.4.7 yamt "could not allocate mbuf for scan command\n");
2652 1.6.4.2 yamt return ENOMEM;
2653 1.6.4.2 yamt }
2654 1.6.4.2 yamt
2655 1.6.4.2 yamt cmd = mtod(data->m, struct wpi_tx_cmd *);
2656 1.6.4.2 yamt cmd->code = WPI_CMD_SCAN;
2657 1.6.4.2 yamt cmd->flags = 0;
2658 1.6.4.2 yamt cmd->qid = ring->qid;
2659 1.6.4.2 yamt cmd->idx = ring->cur;
2660 1.6.4.2 yamt
2661 1.6.4.2 yamt hdr = (struct wpi_scan_hdr *)cmd->data;
2662 1.6.4.2 yamt memset(hdr, 0, sizeof (struct wpi_scan_hdr));
2663 1.6.4.4 yamt hdr->txflags = htole32(WPI_TX_AUTO_SEQ);
2664 1.6.4.4 yamt hdr->id = WPI_ID_BROADCAST;
2665 1.6.4.4 yamt hdr->lifetime = htole32(WPI_LIFETIME_INFINITE);
2666 1.6.4.4 yamt
2667 1.6.4.2 yamt /*
2668 1.6.4.2 yamt * Move to the next channel if no packets are received within 5 msecs
2669 1.6.4.2 yamt * after sending the probe request (this helps to reduce the duration
2670 1.6.4.2 yamt * of active scans).
2671 1.6.4.2 yamt */
2672 1.6.4.2 yamt hdr->quiet = htole16(5); /* timeout in milliseconds */
2673 1.6.4.4 yamt hdr->plcp_threshold = htole16(1); /* min # of packets */
2674 1.6.4.2 yamt
2675 1.6.4.2 yamt if (flags & IEEE80211_CHAN_A) {
2676 1.6.4.4 yamt hdr->crc_threshold = htole16(1);
2677 1.6.4.2 yamt /* send probe requests at 6Mbps */
2678 1.6.4.2 yamt hdr->rate = wpi_plcp_signal(12);
2679 1.6.4.2 yamt } else {
2680 1.6.4.2 yamt hdr->flags = htole32(WPI_CONFIG_24GHZ | WPI_CONFIG_AUTO);
2681 1.6.4.2 yamt /* send probe requests at 1Mbps */
2682 1.6.4.2 yamt hdr->rate = wpi_plcp_signal(2);
2683 1.6.4.2 yamt }
2684 1.6.4.2 yamt
2685 1.6.4.4 yamt /* for directed scans, firmware inserts the essid IE itself */
2686 1.6.4.4 yamt hdr->essid[0].id = IEEE80211_ELEMID_SSID;
2687 1.6.4.4 yamt hdr->essid[0].len = ic->ic_des_esslen;
2688 1.6.4.4 yamt memcpy(hdr->essid[0].data, ic->ic_des_essid, ic->ic_des_esslen);
2689 1.6.4.2 yamt
2690 1.6.4.2 yamt /*
2691 1.6.4.2 yamt * Build a probe request frame. Most of the following code is a
2692 1.6.4.2 yamt * copy & paste of what is done in net80211.
2693 1.6.4.2 yamt */
2694 1.6.4.2 yamt wh = (struct ieee80211_frame *)(hdr + 1);
2695 1.6.4.2 yamt wh->i_fc[0] = IEEE80211_FC0_VERSION_0 | IEEE80211_FC0_TYPE_MGT |
2696 1.6.4.2 yamt IEEE80211_FC0_SUBTYPE_PROBE_REQ;
2697 1.6.4.2 yamt wh->i_fc[1] = IEEE80211_FC1_DIR_NODS;
2698 1.6.4.2 yamt IEEE80211_ADDR_COPY(wh->i_addr1, etherbroadcastaddr);
2699 1.6.4.2 yamt IEEE80211_ADDR_COPY(wh->i_addr2, ic->ic_myaddr);
2700 1.6.4.2 yamt IEEE80211_ADDR_COPY(wh->i_addr3, etherbroadcastaddr);
2701 1.6.4.2 yamt *(u_int16_t *)&wh->i_dur[0] = 0; /* filled by h/w */
2702 1.6.4.2 yamt *(u_int16_t *)&wh->i_seq[0] = 0; /* filled by h/w */
2703 1.6.4.2 yamt
2704 1.6.4.2 yamt frm = (uint8_t *)(wh + 1);
2705 1.6.4.2 yamt
2706 1.6.4.4 yamt /* add empty essid IE (firmware generates it for directed scans) */
2707 1.6.4.2 yamt *frm++ = IEEE80211_ELEMID_SSID;
2708 1.6.4.4 yamt *frm++ = 0;
2709 1.6.4.2 yamt
2710 1.6.4.2 yamt mode = ieee80211_chan2mode(ic, ic->ic_ibss_chan);
2711 1.6.4.2 yamt rs = &ic->ic_sup_rates[mode];
2712 1.6.4.2 yamt
2713 1.6.4.2 yamt /* add supported rates IE */
2714 1.6.4.2 yamt *frm++ = IEEE80211_ELEMID_RATES;
2715 1.6.4.2 yamt nrates = rs->rs_nrates;
2716 1.6.4.2 yamt if (nrates > IEEE80211_RATE_SIZE)
2717 1.6.4.2 yamt nrates = IEEE80211_RATE_SIZE;
2718 1.6.4.2 yamt *frm++ = nrates;
2719 1.6.4.2 yamt memcpy(frm, rs->rs_rates, nrates);
2720 1.6.4.2 yamt frm += nrates;
2721 1.6.4.2 yamt
2722 1.6.4.2 yamt /* add supported xrates IE */
2723 1.6.4.2 yamt if (rs->rs_nrates > IEEE80211_RATE_SIZE) {
2724 1.6.4.2 yamt nrates = rs->rs_nrates - IEEE80211_RATE_SIZE;
2725 1.6.4.2 yamt *frm++ = IEEE80211_ELEMID_XRATES;
2726 1.6.4.2 yamt *frm++ = nrates;
2727 1.6.4.2 yamt memcpy(frm, rs->rs_rates + IEEE80211_RATE_SIZE, nrates);
2728 1.6.4.2 yamt frm += nrates;
2729 1.6.4.2 yamt }
2730 1.6.4.2 yamt
2731 1.6.4.2 yamt /* setup length of probe request */
2732 1.6.4.4 yamt hdr->paylen = htole16(frm - (uint8_t *)wh);
2733 1.6.4.2 yamt
2734 1.6.4.2 yamt chan = (struct wpi_scan_chan *)frm;
2735 1.6.4.2 yamt for (c = &ic->ic_channels[1];
2736 1.6.4.2 yamt c <= &ic->ic_channels[IEEE80211_CHAN_MAX]; c++) {
2737 1.6.4.2 yamt if ((c->ic_flags & flags) != flags)
2738 1.6.4.2 yamt continue;
2739 1.6.4.2 yamt
2740 1.6.4.2 yamt chan->chan = ieee80211_chan2ieee(ic, c);
2741 1.6.4.4 yamt chan->flags = 0;
2742 1.6.4.4 yamt if (!(c->ic_flags & IEEE80211_CHAN_PASSIVE)) {
2743 1.6.4.4 yamt chan->flags |= WPI_CHAN_ACTIVE;
2744 1.6.4.4 yamt if (ic->ic_des_esslen != 0)
2745 1.6.4.4 yamt chan->flags |= WPI_CHAN_DIRECT;
2746 1.6.4.4 yamt }
2747 1.6.4.4 yamt chan->dsp_gain = 0x6e;
2748 1.6.4.2 yamt if (IEEE80211_IS_CHAN_5GHZ(c)) {
2749 1.6.4.4 yamt chan->rf_gain = 0x3b;
2750 1.6.4.2 yamt chan->active = htole16(10);
2751 1.6.4.2 yamt chan->passive = htole16(110);
2752 1.6.4.2 yamt } else {
2753 1.6.4.4 yamt chan->rf_gain = 0x28;
2754 1.6.4.2 yamt chan->active = htole16(20);
2755 1.6.4.2 yamt chan->passive = htole16(120);
2756 1.6.4.2 yamt }
2757 1.6.4.2 yamt hdr->nchan++;
2758 1.6.4.2 yamt chan++;
2759 1.6.4.2 yamt
2760 1.6.4.2 yamt frm += sizeof (struct wpi_scan_chan);
2761 1.6.4.2 yamt }
2762 1.6.4.4 yamt hdr->len = htole16(frm - (uint8_t *)hdr);
2763 1.6.4.4 yamt pktlen = frm - (uint8_t *)cmd;
2764 1.6.4.2 yamt
2765 1.6.4.2 yamt error = bus_dmamap_load(sc->sc_dmat, data->map, cmd, pktlen,
2766 1.6.4.2 yamt NULL, BUS_DMA_NOWAIT);
2767 1.6.4.2 yamt if (error) {
2768 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not map scan command\n");
2769 1.6.4.2 yamt m_freem(data->m);
2770 1.6.4.2 yamt data->m = NULL;
2771 1.6.4.2 yamt return error;
2772 1.6.4.2 yamt }
2773 1.6.4.2 yamt
2774 1.6.4.2 yamt desc->flags = htole32(WPI_PAD32(pktlen) << 28 | 1 << 24);
2775 1.6.4.2 yamt desc->segs[0].addr = htole32(data->map->dm_segs[0].ds_addr);
2776 1.6.4.2 yamt desc->segs[0].len = htole32(data->map->dm_segs[0].ds_len);
2777 1.6.4.2 yamt
2778 1.6.4.2 yamt /* kick cmd ring */
2779 1.6.4.2 yamt ring->cur = (ring->cur + 1) % WPI_CMD_RING_COUNT;
2780 1.6.4.2 yamt WPI_WRITE(sc, WPI_TX_WIDX, ring->qid << 8 | ring->cur);
2781 1.6.4.2 yamt
2782 1.6.4.2 yamt return 0; /* will be notified async. of failure/success */
2783 1.6.4.2 yamt }
2784 1.6.4.2 yamt
2785 1.6.4.2 yamt static int
2786 1.6.4.2 yamt wpi_config(struct wpi_softc *sc)
2787 1.6.4.2 yamt {
2788 1.6.4.2 yamt struct ieee80211com *ic = &sc->sc_ic;
2789 1.6.4.2 yamt struct ifnet *ifp = ic->ic_ifp;
2790 1.6.4.2 yamt struct wpi_power power;
2791 1.6.4.2 yamt struct wpi_bluetooth bluetooth;
2792 1.6.4.2 yamt struct wpi_node_info node;
2793 1.6.4.2 yamt int error;
2794 1.6.4.2 yamt
2795 1.6.4.2 yamt memset(&power, 0, sizeof power);
2796 1.6.4.4 yamt power.flags = htole32(WPI_POWER_CAM | 0x8);
2797 1.6.4.2 yamt error = wpi_cmd(sc, WPI_CMD_SET_POWER_MODE, &power, sizeof power, 0);
2798 1.6.4.2 yamt if (error != 0) {
2799 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not set power mode\n");
2800 1.6.4.2 yamt return error;
2801 1.6.4.2 yamt }
2802 1.6.4.2 yamt
2803 1.6.4.2 yamt /* configure bluetooth coexistence */
2804 1.6.4.2 yamt memset(&bluetooth, 0, sizeof bluetooth);
2805 1.6.4.2 yamt bluetooth.flags = 3;
2806 1.6.4.2 yamt bluetooth.lead = 0xaa;
2807 1.6.4.2 yamt bluetooth.kill = 1;
2808 1.6.4.2 yamt error = wpi_cmd(sc, WPI_CMD_BLUETOOTH, &bluetooth, sizeof bluetooth,
2809 1.6.4.2 yamt 0);
2810 1.6.4.2 yamt if (error != 0) {
2811 1.6.4.7 yamt aprint_error_dev(sc->sc_dev,
2812 1.6.4.7 yamt "could not configure bluetooth coexistence\n");
2813 1.6.4.2 yamt return error;
2814 1.6.4.2 yamt }
2815 1.6.4.2 yamt
2816 1.6.4.2 yamt /* configure adapter */
2817 1.6.4.2 yamt memset(&sc->config, 0, sizeof (struct wpi_config));
2818 1.6.4.4 yamt IEEE80211_ADDR_COPY(ic->ic_myaddr, CLLADDR(ifp->if_sadl));
2819 1.6.4.2 yamt IEEE80211_ADDR_COPY(sc->config.myaddr, ic->ic_myaddr);
2820 1.6.4.2 yamt /*set default channel*/
2821 1.6.4.2 yamt sc->config.chan = ieee80211_chan2ieee(ic, ic->ic_ibss_chan);
2822 1.6.4.2 yamt sc->config.flags = htole32(WPI_CONFIG_TSF);
2823 1.6.4.2 yamt if (IEEE80211_IS_CHAN_2GHZ(ic->ic_ibss_chan)) {
2824 1.6.4.2 yamt sc->config.flags |= htole32(WPI_CONFIG_AUTO |
2825 1.6.4.2 yamt WPI_CONFIG_24GHZ);
2826 1.6.4.2 yamt }
2827 1.6.4.2 yamt sc->config.filter = 0;
2828 1.6.4.2 yamt switch (ic->ic_opmode) {
2829 1.6.4.2 yamt case IEEE80211_M_STA:
2830 1.6.4.2 yamt sc->config.mode = WPI_MODE_STA;
2831 1.6.4.2 yamt sc->config.filter |= htole32(WPI_FILTER_MULTICAST);
2832 1.6.4.2 yamt break;
2833 1.6.4.2 yamt case IEEE80211_M_IBSS:
2834 1.6.4.2 yamt case IEEE80211_M_AHDEMO:
2835 1.6.4.2 yamt sc->config.mode = WPI_MODE_IBSS;
2836 1.6.4.2 yamt break;
2837 1.6.4.2 yamt case IEEE80211_M_HOSTAP:
2838 1.6.4.2 yamt sc->config.mode = WPI_MODE_HOSTAP;
2839 1.6.4.2 yamt break;
2840 1.6.4.2 yamt case IEEE80211_M_MONITOR:
2841 1.6.4.2 yamt sc->config.mode = WPI_MODE_MONITOR;
2842 1.6.4.2 yamt sc->config.filter |= htole32(WPI_FILTER_MULTICAST |
2843 1.6.4.2 yamt WPI_FILTER_CTL | WPI_FILTER_PROMISC);
2844 1.6.4.2 yamt break;
2845 1.6.4.2 yamt }
2846 1.6.4.2 yamt sc->config.cck_mask = 0x0f; /* not yet negotiated */
2847 1.6.4.2 yamt sc->config.ofdm_mask = 0xff; /* not yet negotiated */
2848 1.6.4.2 yamt error = wpi_cmd(sc, WPI_CMD_CONFIGURE, &sc->config,
2849 1.6.4.2 yamt sizeof (struct wpi_config), 0);
2850 1.6.4.2 yamt if (error != 0) {
2851 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "configure command failed\n");
2852 1.6.4.2 yamt return error;
2853 1.6.4.2 yamt }
2854 1.6.4.2 yamt
2855 1.6.4.4 yamt /* configuration has changed, set Tx power accordingly */
2856 1.6.4.4 yamt if ((error = wpi_set_txpower(sc, ic->ic_ibss_chan, 0)) != 0) {
2857 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not set Tx power\n");
2858 1.6.4.4 yamt return error;
2859 1.6.4.4 yamt }
2860 1.6.4.4 yamt
2861 1.6.4.2 yamt /* add broadcast node */
2862 1.6.4.2 yamt memset(&node, 0, sizeof node);
2863 1.6.4.2 yamt IEEE80211_ADDR_COPY(node.bssid, etherbroadcastaddr);
2864 1.6.4.2 yamt node.id = WPI_ID_BROADCAST;
2865 1.6.4.2 yamt node.rate = wpi_plcp_signal(2);
2866 1.6.4.4 yamt node.action = htole32(WPI_ACTION_SET_RATE);
2867 1.6.4.4 yamt node.antenna = WPI_ANTENNA_BOTH;
2868 1.6.4.2 yamt error = wpi_cmd(sc, WPI_CMD_ADD_NODE, &node, sizeof node, 0);
2869 1.6.4.2 yamt if (error != 0) {
2870 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not add broadcast node\n");
2871 1.6.4.2 yamt return error;
2872 1.6.4.2 yamt }
2873 1.6.4.2 yamt
2874 1.6.4.4 yamt if ((error = wpi_mrr_setup(sc)) != 0) {
2875 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not setup MRR\n");
2876 1.6.4.4 yamt return error;
2877 1.6.4.4 yamt }
2878 1.6.4.4 yamt
2879 1.6.4.2 yamt return 0;
2880 1.6.4.2 yamt }
2881 1.6.4.2 yamt
2882 1.6.4.2 yamt static void
2883 1.6.4.2 yamt wpi_stop_master(struct wpi_softc *sc)
2884 1.6.4.2 yamt {
2885 1.6.4.2 yamt uint32_t tmp;
2886 1.6.4.2 yamt int ntries;
2887 1.6.4.2 yamt
2888 1.6.4.2 yamt tmp = WPI_READ(sc, WPI_RESET);
2889 1.6.4.2 yamt WPI_WRITE(sc, WPI_RESET, tmp | WPI_STOP_MASTER);
2890 1.6.4.2 yamt
2891 1.6.4.2 yamt tmp = WPI_READ(sc, WPI_GPIO_CTL);
2892 1.6.4.2 yamt if ((tmp & WPI_GPIO_PWR_STATUS) == WPI_GPIO_PWR_SLEEP)
2893 1.6.4.2 yamt return; /* already asleep */
2894 1.6.4.2 yamt
2895 1.6.4.2 yamt for (ntries = 0; ntries < 100; ntries++) {
2896 1.6.4.2 yamt if (WPI_READ(sc, WPI_RESET) & WPI_MASTER_DISABLED)
2897 1.6.4.2 yamt break;
2898 1.6.4.2 yamt DELAY(10);
2899 1.6.4.2 yamt }
2900 1.6.4.2 yamt if (ntries == 100) {
2901 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "timeout waiting for master\n");
2902 1.6.4.2 yamt }
2903 1.6.4.2 yamt }
2904 1.6.4.2 yamt
2905 1.6.4.2 yamt static int
2906 1.6.4.2 yamt wpi_power_up(struct wpi_softc *sc)
2907 1.6.4.2 yamt {
2908 1.6.4.2 yamt uint32_t tmp;
2909 1.6.4.2 yamt int ntries;
2910 1.6.4.2 yamt
2911 1.6.4.2 yamt wpi_mem_lock(sc);
2912 1.6.4.2 yamt tmp = wpi_mem_read(sc, WPI_MEM_POWER);
2913 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_POWER, tmp & ~0x03000000);
2914 1.6.4.2 yamt wpi_mem_unlock(sc);
2915 1.6.4.2 yamt
2916 1.6.4.2 yamt for (ntries = 0; ntries < 5000; ntries++) {
2917 1.6.4.2 yamt if (WPI_READ(sc, WPI_GPIO_STATUS) & WPI_POWERED)
2918 1.6.4.2 yamt break;
2919 1.6.4.2 yamt DELAY(10);
2920 1.6.4.2 yamt }
2921 1.6.4.2 yamt if (ntries == 5000) {
2922 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "timeout waiting for NIC to power up\n");
2923 1.6.4.2 yamt return ETIMEDOUT;
2924 1.6.4.2 yamt }
2925 1.6.4.2 yamt return 0;
2926 1.6.4.2 yamt }
2927 1.6.4.2 yamt
2928 1.6.4.2 yamt static int
2929 1.6.4.2 yamt wpi_reset(struct wpi_softc *sc)
2930 1.6.4.2 yamt {
2931 1.6.4.2 yamt uint32_t tmp;
2932 1.6.4.2 yamt int ntries;
2933 1.6.4.2 yamt
2934 1.6.4.2 yamt /* clear any pending interrupts */
2935 1.6.4.2 yamt WPI_WRITE(sc, WPI_INTR, 0xffffffff);
2936 1.6.4.2 yamt
2937 1.6.4.2 yamt tmp = WPI_READ(sc, WPI_PLL_CTL);
2938 1.6.4.2 yamt WPI_WRITE(sc, WPI_PLL_CTL, tmp | WPI_PLL_INIT);
2939 1.6.4.2 yamt
2940 1.6.4.2 yamt tmp = WPI_READ(sc, WPI_CHICKEN);
2941 1.6.4.2 yamt WPI_WRITE(sc, WPI_CHICKEN, tmp | WPI_CHICKEN_RXNOLOS);
2942 1.6.4.2 yamt
2943 1.6.4.2 yamt tmp = WPI_READ(sc, WPI_GPIO_CTL);
2944 1.6.4.2 yamt WPI_WRITE(sc, WPI_GPIO_CTL, tmp | WPI_GPIO_INIT);
2945 1.6.4.2 yamt
2946 1.6.4.2 yamt /* wait for clock stabilization */
2947 1.6.4.2 yamt for (ntries = 0; ntries < 1000; ntries++) {
2948 1.6.4.2 yamt if (WPI_READ(sc, WPI_GPIO_CTL) & WPI_GPIO_CLOCK)
2949 1.6.4.2 yamt break;
2950 1.6.4.2 yamt DELAY(10);
2951 1.6.4.2 yamt }
2952 1.6.4.2 yamt if (ntries == 1000) {
2953 1.6.4.7 yamt aprint_error_dev(sc->sc_dev,
2954 1.6.4.7 yamt "timeout waiting for clock stabilization\n");
2955 1.6.4.2 yamt return ETIMEDOUT;
2956 1.6.4.2 yamt }
2957 1.6.4.2 yamt
2958 1.6.4.2 yamt /* initialize EEPROM */
2959 1.6.4.2 yamt tmp = WPI_READ(sc, WPI_EEPROM_STATUS);
2960 1.6.4.2 yamt if ((tmp & WPI_EEPROM_VERSION) == 0) {
2961 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "EEPROM not found\n");
2962 1.6.4.2 yamt return EIO;
2963 1.6.4.2 yamt }
2964 1.6.4.2 yamt WPI_WRITE(sc, WPI_EEPROM_STATUS, tmp & ~WPI_EEPROM_LOCKED);
2965 1.6.4.2 yamt
2966 1.6.4.2 yamt return 0;
2967 1.6.4.2 yamt }
2968 1.6.4.2 yamt
2969 1.6.4.2 yamt static void
2970 1.6.4.2 yamt wpi_hw_config(struct wpi_softc *sc)
2971 1.6.4.2 yamt {
2972 1.6.4.2 yamt uint32_t rev, hw;
2973 1.6.4.2 yamt
2974 1.6.4.4 yamt /* voodoo from the reference driver */
2975 1.6.4.2 yamt hw = WPI_READ(sc, WPI_HWCONFIG);
2976 1.6.4.2 yamt
2977 1.6.4.2 yamt rev = pci_conf_read(sc->sc_pct, sc->sc_pcitag, PCI_CLASS_REG);
2978 1.6.4.2 yamt rev = PCI_REVISION(rev);
2979 1.6.4.2 yamt if ((rev & 0xc0) == 0x40)
2980 1.6.4.2 yamt hw |= WPI_HW_ALM_MB;
2981 1.6.4.2 yamt else if (!(rev & 0x80))
2982 1.6.4.2 yamt hw |= WPI_HW_ALM_MM;
2983 1.6.4.2 yamt
2984 1.6.4.4 yamt if (sc->cap == 0x80)
2985 1.6.4.2 yamt hw |= WPI_HW_SKU_MRC;
2986 1.6.4.2 yamt
2987 1.6.4.2 yamt hw &= ~WPI_HW_REV_D;
2988 1.6.4.4 yamt if ((le16toh(sc->rev) & 0xf0) == 0xd0)
2989 1.6.4.2 yamt hw |= WPI_HW_REV_D;
2990 1.6.4.2 yamt
2991 1.6.4.4 yamt if (sc->type > 1)
2992 1.6.4.2 yamt hw |= WPI_HW_TYPE_B;
2993 1.6.4.2 yamt
2994 1.6.4.2 yamt DPRINTF(("setting h/w config %x\n", hw));
2995 1.6.4.2 yamt WPI_WRITE(sc, WPI_HWCONFIG, hw);
2996 1.6.4.2 yamt }
2997 1.6.4.2 yamt
2998 1.6.4.2 yamt static int
2999 1.6.4.2 yamt wpi_init(struct ifnet *ifp)
3000 1.6.4.2 yamt {
3001 1.6.4.2 yamt struct wpi_softc *sc = ifp->if_softc;
3002 1.6.4.2 yamt struct ieee80211com *ic = &sc->sc_ic;
3003 1.6.4.2 yamt uint32_t tmp;
3004 1.6.4.2 yamt int qid, ntries, error;
3005 1.6.4.2 yamt
3006 1.6.4.4 yamt wpi_stop(ifp,1);
3007 1.6.4.2 yamt (void)wpi_reset(sc);
3008 1.6.4.2 yamt
3009 1.6.4.2 yamt wpi_mem_lock(sc);
3010 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_CLOCK1, 0xa00);
3011 1.6.4.2 yamt DELAY(20);
3012 1.6.4.2 yamt tmp = wpi_mem_read(sc, WPI_MEM_PCIDEV);
3013 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_PCIDEV, tmp | 0x800);
3014 1.6.4.2 yamt wpi_mem_unlock(sc);
3015 1.6.4.2 yamt
3016 1.6.4.2 yamt (void)wpi_power_up(sc);
3017 1.6.4.2 yamt wpi_hw_config(sc);
3018 1.6.4.2 yamt
3019 1.6.4.2 yamt /* init Rx ring */
3020 1.6.4.2 yamt wpi_mem_lock(sc);
3021 1.6.4.2 yamt WPI_WRITE(sc, WPI_RX_BASE, sc->rxq.desc_dma.paddr);
3022 1.6.4.2 yamt WPI_WRITE(sc, WPI_RX_RIDX_PTR, sc->shared_dma.paddr +
3023 1.6.4.2 yamt offsetof(struct wpi_shared, next));
3024 1.6.4.2 yamt WPI_WRITE(sc, WPI_RX_WIDX, (WPI_RX_RING_COUNT - 1) & ~7);
3025 1.6.4.2 yamt WPI_WRITE(sc, WPI_RX_CONFIG, 0xa9601010);
3026 1.6.4.2 yamt wpi_mem_unlock(sc);
3027 1.6.4.2 yamt
3028 1.6.4.2 yamt /* init Tx rings */
3029 1.6.4.2 yamt wpi_mem_lock(sc);
3030 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_MODE, 2); /* bypass mode */
3031 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_RA, 1); /* enable RA0 */
3032 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_TXCFG, 0x3f); /* enable all 6 Tx rings */
3033 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_BYPASS1, 0x10000);
3034 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_BYPASS2, 0x30002);
3035 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_MAGIC4, 4);
3036 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_MAGIC5, 5);
3037 1.6.4.2 yamt
3038 1.6.4.2 yamt WPI_WRITE(sc, WPI_TX_BASE_PTR, sc->shared_dma.paddr);
3039 1.6.4.2 yamt WPI_WRITE(sc, WPI_MSG_CONFIG, 0xffff05a5);
3040 1.6.4.2 yamt
3041 1.6.4.2 yamt for (qid = 0; qid < 6; qid++) {
3042 1.6.4.2 yamt WPI_WRITE(sc, WPI_TX_CTL(qid), 0);
3043 1.6.4.2 yamt WPI_WRITE(sc, WPI_TX_BASE(qid), 0);
3044 1.6.4.2 yamt WPI_WRITE(sc, WPI_TX_CONFIG(qid), 0x80200008);
3045 1.6.4.2 yamt }
3046 1.6.4.2 yamt wpi_mem_unlock(sc);
3047 1.6.4.2 yamt
3048 1.6.4.2 yamt /* clear "radio off" and "disable command" bits (reversed logic) */
3049 1.6.4.2 yamt WPI_WRITE(sc, WPI_UCODE_CLR, WPI_RADIO_OFF);
3050 1.6.4.2 yamt WPI_WRITE(sc, WPI_UCODE_CLR, WPI_DISABLE_CMD);
3051 1.6.4.2 yamt
3052 1.6.4.2 yamt /* clear any pending interrupts */
3053 1.6.4.2 yamt WPI_WRITE(sc, WPI_INTR, 0xffffffff);
3054 1.6.4.2 yamt /* enable interrupts */
3055 1.6.4.2 yamt WPI_WRITE(sc, WPI_MASK, WPI_INTR_MASK);
3056 1.6.4.2 yamt
3057 1.6.4.4 yamt /* not sure why/if this is necessary... */
3058 1.6.4.4 yamt WPI_WRITE(sc, WPI_UCODE_CLR, WPI_RADIO_OFF);
3059 1.6.4.4 yamt WPI_WRITE(sc, WPI_UCODE_CLR, WPI_RADIO_OFF);
3060 1.6.4.2 yamt
3061 1.6.4.4 yamt if ((error = wpi_load_firmware(sc)) != 0) {
3062 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not load firmware\n");
3063 1.6.4.7 yamt goto fail1;
3064 1.6.4.7 yamt }
3065 1.6.4.7 yamt
3066 1.6.4.7 yamt /* Check the status of the radio switch */
3067 1.6.4.7 yamt wpi_mem_lock(sc);
3068 1.6.4.7 yamt tmp = wpi_mem_read(sc, WPI_MEM_RFKILL);
3069 1.6.4.7 yamt wpi_mem_unlock(sc);
3070 1.6.4.7 yamt
3071 1.6.4.7 yamt if (!(tmp & 0x01)) {
3072 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "Radio is disabled by hardware switch\n");
3073 1.6.4.7 yamt error = EPERM; // XXX
3074 1.6.4.2 yamt goto fail1;
3075 1.6.4.2 yamt }
3076 1.6.4.2 yamt
3077 1.6.4.2 yamt /* wait for thermal sensors to calibrate */
3078 1.6.4.2 yamt for (ntries = 0; ntries < 1000; ntries++) {
3079 1.6.4.4 yamt if ((sc->temp = (int)WPI_READ(sc, WPI_TEMPERATURE)) != 0)
3080 1.6.4.2 yamt break;
3081 1.6.4.2 yamt DELAY(10);
3082 1.6.4.2 yamt }
3083 1.6.4.2 yamt if (ntries == 1000) {
3084 1.6.4.7 yamt aprint_error_dev(sc->sc_dev,
3085 1.6.4.7 yamt "timeout waiting for thermal sensors calibration\n");
3086 1.6.4.2 yamt error = ETIMEDOUT;
3087 1.6.4.2 yamt goto fail1;
3088 1.6.4.2 yamt }
3089 1.6.4.4 yamt
3090 1.6.4.4 yamt DPRINTF(("temperature %d\n", sc->temp));
3091 1.6.4.2 yamt
3092 1.6.4.2 yamt if ((error = wpi_config(sc)) != 0) {
3093 1.6.4.7 yamt aprint_error_dev(sc->sc_dev, "could not configure device\n");
3094 1.6.4.2 yamt goto fail1;
3095 1.6.4.2 yamt }
3096 1.6.4.2 yamt
3097 1.6.4.2 yamt ifp->if_flags &= ~IFF_OACTIVE;
3098 1.6.4.2 yamt ifp->if_flags |= IFF_RUNNING;
3099 1.6.4.2 yamt
3100 1.6.4.2 yamt if (ic->ic_opmode != IEEE80211_M_MONITOR) {
3101 1.6.4.2 yamt if (ic->ic_roaming != IEEE80211_ROAMING_MANUAL)
3102 1.6.4.2 yamt ieee80211_new_state(ic, IEEE80211_S_SCAN, -1);
3103 1.6.4.2 yamt }
3104 1.6.4.2 yamt else
3105 1.6.4.2 yamt ieee80211_new_state(ic, IEEE80211_S_RUN, -1);
3106 1.6.4.2 yamt
3107 1.6.4.2 yamt return 0;
3108 1.6.4.2 yamt
3109 1.6.4.2 yamt fail1: wpi_stop(ifp, 1);
3110 1.6.4.2 yamt return error;
3111 1.6.4.2 yamt }
3112 1.6.4.2 yamt
3113 1.6.4.2 yamt
3114 1.6.4.2 yamt static void
3115 1.6.4.2 yamt wpi_stop(struct ifnet *ifp, int disable)
3116 1.6.4.2 yamt {
3117 1.6.4.2 yamt struct wpi_softc *sc = ifp->if_softc;
3118 1.6.4.2 yamt struct ieee80211com *ic = &sc->sc_ic;
3119 1.6.4.2 yamt uint32_t tmp;
3120 1.6.4.2 yamt int ac;
3121 1.6.4.2 yamt
3122 1.6.4.2 yamt ifp->if_timer = sc->sc_tx_timer = 0;
3123 1.6.4.2 yamt ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
3124 1.6.4.2 yamt
3125 1.6.4.2 yamt ieee80211_new_state(ic, IEEE80211_S_INIT, -1);
3126 1.6.4.2 yamt
3127 1.6.4.2 yamt /* disable interrupts */
3128 1.6.4.2 yamt WPI_WRITE(sc, WPI_MASK, 0);
3129 1.6.4.2 yamt WPI_WRITE(sc, WPI_INTR, WPI_INTR_MASK);
3130 1.6.4.2 yamt WPI_WRITE(sc, WPI_INTR_STATUS, 0xff);
3131 1.6.4.2 yamt WPI_WRITE(sc, WPI_INTR_STATUS, 0x00070000);
3132 1.6.4.2 yamt
3133 1.6.4.2 yamt wpi_mem_lock(sc);
3134 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_MODE, 0);
3135 1.6.4.2 yamt wpi_mem_unlock(sc);
3136 1.6.4.2 yamt
3137 1.6.4.2 yamt /* reset all Tx rings */
3138 1.6.4.2 yamt for (ac = 0; ac < 4; ac++)
3139 1.6.4.2 yamt wpi_reset_tx_ring(sc, &sc->txq[ac]);
3140 1.6.4.2 yamt wpi_reset_tx_ring(sc, &sc->cmdq);
3141 1.6.4.2 yamt
3142 1.6.4.2 yamt /* reset Rx ring */
3143 1.6.4.2 yamt wpi_reset_rx_ring(sc, &sc->rxq);
3144 1.6.4.4 yamt
3145 1.6.4.2 yamt wpi_mem_lock(sc);
3146 1.6.4.2 yamt wpi_mem_write(sc, WPI_MEM_CLOCK2, 0x200);
3147 1.6.4.2 yamt wpi_mem_unlock(sc);
3148 1.6.4.2 yamt
3149 1.6.4.2 yamt DELAY(5);
3150 1.6.4.2 yamt
3151 1.6.4.2 yamt wpi_stop_master(sc);
3152 1.6.4.2 yamt
3153 1.6.4.2 yamt tmp = WPI_READ(sc, WPI_RESET);
3154 1.6.4.2 yamt WPI_WRITE(sc, WPI_RESET, tmp | WPI_SW_RESET);
3155 1.6.4.2 yamt }
3156