16607310bSBenjamin Close /*- 26607310bSBenjamin Close * Copyright (c) 2006,2007 36607310bSBenjamin Close * Damien Bergamini <damien.bergamini@free.fr> 46607310bSBenjamin Close * Benjamin Close <Benjamin.Close@clearchain.com> 56607310bSBenjamin Close * 66607310bSBenjamin Close * Permission to use, copy, modify, and distribute this software for any 76607310bSBenjamin Close * purpose with or without fee is hereby granted, provided that the above 86607310bSBenjamin Close * copyright notice and this permission notice appear in all copies. 96607310bSBenjamin Close * 106607310bSBenjamin Close * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES 116607310bSBenjamin Close * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF 126607310bSBenjamin Close * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR 136607310bSBenjamin Close * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES 146607310bSBenjamin Close * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN 156607310bSBenjamin Close * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF 166607310bSBenjamin Close * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. 176607310bSBenjamin Close */ 186607310bSBenjamin Close 196607310bSBenjamin Close #include <sys/cdefs.h> 206607310bSBenjamin Close __FBSDID("$FreeBSD$"); 216607310bSBenjamin Close 226607310bSBenjamin Close /* 236607310bSBenjamin Close * Driver for Intel PRO/Wireless 3945ABG 802.11 network adapters. 246607310bSBenjamin Close * 256607310bSBenjamin Close * The 3945ABG network adapter doesn't use traditional hardware as 266607310bSBenjamin Close * many other adaptors do. Instead at run time the eeprom is set into a known 276607310bSBenjamin Close * state and told to load boot firmware. The boot firmware loads an init and a 286607310bSBenjamin Close * main binary firmware image into SRAM on the card via DMA. 296607310bSBenjamin Close * Once the firmware is loaded, the driver/hw then 306bccea7cSRebecca Cran * communicate by way of circular dma rings via the SRAM to the firmware. 316607310bSBenjamin Close * 326607310bSBenjamin Close * There is 6 memory rings. 1 command ring, 1 rx data ring & 4 tx data rings. 336607310bSBenjamin Close * The 4 tx data rings allow for prioritization QoS. 346607310bSBenjamin Close * 356607310bSBenjamin Close * The rx data ring consists of 32 dma buffers. Two registers are used to 366607310bSBenjamin Close * indicate where in the ring the driver and the firmware are up to. The 376607310bSBenjamin Close * driver sets the initial read index (reg1) and the initial write index (reg2), 386607310bSBenjamin Close * the firmware updates the read index (reg1) on rx of a packet and fires an 396607310bSBenjamin Close * interrupt. The driver then processes the buffers starting at reg1 indicating 406607310bSBenjamin Close * to the firmware which buffers have been accessed by updating reg2. At the 416607310bSBenjamin Close * same time allocating new memory for the processed buffer. 426607310bSBenjamin Close * 436607310bSBenjamin Close * A similar thing happens with the tx rings. The difference is the firmware 446607310bSBenjamin Close * stop processing buffers once the queue is full and until confirmation 45*fae61c69SAdrian Chadd * of a successful transmition (tx_done) has occurred. 466607310bSBenjamin Close * 476607310bSBenjamin Close * The command ring operates in the same manner as the tx queues. 486607310bSBenjamin Close * 496607310bSBenjamin Close * All communication direct to the card (ie eeprom) is classed as Stage1 506607310bSBenjamin Close * communication 516607310bSBenjamin Close * 526607310bSBenjamin Close * All communication via the firmware to the card is classed as State2. 536607310bSBenjamin Close * The firmware consists of 2 parts. A bootstrap firmware and a runtime 546607310bSBenjamin Close * firmware. The bootstrap firmware and runtime firmware are loaded 556607310bSBenjamin Close * from host memory via dma to the card then told to execute. From this point 566607310bSBenjamin Close * on the majority of communications between the driver and the card goes 576607310bSBenjamin Close * via the firmware. 586607310bSBenjamin Close */ 596607310bSBenjamin Close 6081c2214dSAdrian Chadd #include "opt_wlan.h" 61692ad7caSAdrian Chadd #include "opt_wpi.h" 6281c2214dSAdrian Chadd 636607310bSBenjamin Close #include <sys/param.h> 646607310bSBenjamin Close #include <sys/sysctl.h> 656607310bSBenjamin Close #include <sys/sockio.h> 666607310bSBenjamin Close #include <sys/mbuf.h> 676607310bSBenjamin Close #include <sys/kernel.h> 686607310bSBenjamin Close #include <sys/socket.h> 696607310bSBenjamin Close #include <sys/systm.h> 706607310bSBenjamin Close #include <sys/malloc.h> 716607310bSBenjamin Close #include <sys/queue.h> 726607310bSBenjamin Close #include <sys/taskqueue.h> 736607310bSBenjamin Close #include <sys/module.h> 746607310bSBenjamin Close #include <sys/bus.h> 756607310bSBenjamin Close #include <sys/endian.h> 766607310bSBenjamin Close #include <sys/linker.h> 776607310bSBenjamin Close #include <sys/firmware.h> 786607310bSBenjamin Close 796607310bSBenjamin Close #include <machine/bus.h> 806607310bSBenjamin Close #include <machine/resource.h> 816607310bSBenjamin Close #include <sys/rman.h> 826607310bSBenjamin Close 836607310bSBenjamin Close #include <dev/pci/pcireg.h> 846607310bSBenjamin Close #include <dev/pci/pcivar.h> 856607310bSBenjamin Close 866607310bSBenjamin Close #include <net/bpf.h> 876607310bSBenjamin Close #include <net/if.h> 8876039bc8SGleb Smirnoff #include <net/if_var.h> 896607310bSBenjamin Close #include <net/if_arp.h> 906607310bSBenjamin Close #include <net/ethernet.h> 916607310bSBenjamin Close #include <net/if_dl.h> 926607310bSBenjamin Close #include <net/if_media.h> 936607310bSBenjamin Close #include <net/if_types.h> 946607310bSBenjamin Close 95692ad7caSAdrian Chadd #include <netinet/in.h> 96692ad7caSAdrian Chadd #include <netinet/in_systm.h> 97692ad7caSAdrian Chadd #include <netinet/in_var.h> 98692ad7caSAdrian Chadd #include <netinet/if_ether.h> 99692ad7caSAdrian Chadd #include <netinet/ip.h> 100692ad7caSAdrian Chadd 1016607310bSBenjamin Close #include <net80211/ieee80211_var.h> 1026607310bSBenjamin Close #include <net80211/ieee80211_radiotap.h> 1036607310bSBenjamin Close #include <net80211/ieee80211_regdomain.h> 104b6108616SRui Paulo #include <net80211/ieee80211_ratectl.h> 1056607310bSBenjamin Close 1066607310bSBenjamin Close #include <dev/wpi/if_wpireg.h> 1076607310bSBenjamin Close #include <dev/wpi/if_wpivar.h> 108692ad7caSAdrian Chadd #include <dev/wpi/if_wpi_debug.h> 1096607310bSBenjamin Close 1106607310bSBenjamin Close struct wpi_ident { 1116607310bSBenjamin Close uint16_t vendor; 1126607310bSBenjamin Close uint16_t device; 1136607310bSBenjamin Close uint16_t subdevice; 1146607310bSBenjamin Close const char *name; 1156607310bSBenjamin Close }; 1166607310bSBenjamin Close 1176607310bSBenjamin Close static const struct wpi_ident wpi_ident_table[] = { 1186607310bSBenjamin Close /* The below entries support ABG regardless of the subid */ 1196607310bSBenjamin Close { 0x8086, 0x4222, 0x0, "Intel(R) PRO/Wireless 3945ABG" }, 1206607310bSBenjamin Close { 0x8086, 0x4227, 0x0, "Intel(R) PRO/Wireless 3945ABG" }, 1216607310bSBenjamin Close /* The below entries only support BG */ 12234f004ceSBenjamin Close { 0x8086, 0x4222, 0x1005, "Intel(R) PRO/Wireless 3945BG" }, 12334f004ceSBenjamin Close { 0x8086, 0x4222, 0x1034, "Intel(R) PRO/Wireless 3945BG" }, 12434f004ceSBenjamin Close { 0x8086, 0x4227, 0x1014, "Intel(R) PRO/Wireless 3945BG" }, 12534f004ceSBenjamin Close { 0x8086, 0x4222, 0x1044, "Intel(R) PRO/Wireless 3945BG" }, 1266607310bSBenjamin Close { 0, 0, 0, NULL } 1276607310bSBenjamin Close }; 1286607310bSBenjamin Close 129692ad7caSAdrian Chadd static int wpi_probe(device_t); 130692ad7caSAdrian Chadd static int wpi_attach(device_t); 131692ad7caSAdrian Chadd static void wpi_radiotap_attach(struct wpi_softc *); 132692ad7caSAdrian Chadd static void wpi_sysctlattach(struct wpi_softc *); 133b032f27cSSam Leffler static struct ieee80211vap *wpi_vap_create(struct ieee80211com *, 134fcd9500fSBernhard Schmidt const char [IFNAMSIZ], int, enum ieee80211_opmode, int, 135fcd9500fSBernhard Schmidt const uint8_t [IEEE80211_ADDR_LEN], 136fcd9500fSBernhard Schmidt const uint8_t [IEEE80211_ADDR_LEN]); 137b032f27cSSam Leffler static void wpi_vap_delete(struct ieee80211vap *); 138692ad7caSAdrian Chadd static int wpi_detach(device_t); 139692ad7caSAdrian Chadd static int wpi_shutdown(device_t); 140692ad7caSAdrian Chadd static int wpi_suspend(device_t); 141692ad7caSAdrian Chadd static int wpi_resume(device_t); 142692ad7caSAdrian Chadd static int wpi_nic_lock(struct wpi_softc *); 143692ad7caSAdrian Chadd static int wpi_read_prom_data(struct wpi_softc *, uint32_t, void *, int); 1446607310bSBenjamin Close static void wpi_dma_map_addr(void *, bus_dma_segment_t *, int, int); 145692ad7caSAdrian Chadd static int wpi_dma_contig_alloc(struct wpi_softc *, struct wpi_dma_info *, 146692ad7caSAdrian Chadd void **, bus_size_t, bus_size_t); 147692ad7caSAdrian Chadd static void wpi_dma_contig_free(struct wpi_dma_info *); 1486607310bSBenjamin Close static int wpi_alloc_shared(struct wpi_softc *); 1496607310bSBenjamin Close static void wpi_free_shared(struct wpi_softc *); 1506607310bSBenjamin Close static int wpi_alloc_fwmem(struct wpi_softc *); 1516607310bSBenjamin Close static void wpi_free_fwmem(struct wpi_softc *); 152692ad7caSAdrian Chadd static int wpi_alloc_rx_ring(struct wpi_softc *); 153692ad7caSAdrian Chadd static void wpi_update_rx_ring(struct wpi_softc *); 154692ad7caSAdrian Chadd static void wpi_reset_rx_ring(struct wpi_softc *); 155692ad7caSAdrian Chadd static void wpi_free_rx_ring(struct wpi_softc *); 156692ad7caSAdrian Chadd static int wpi_alloc_tx_ring(struct wpi_softc *, struct wpi_tx_ring *, 157692ad7caSAdrian Chadd int); 158692ad7caSAdrian Chadd static void wpi_update_tx_ring(struct wpi_softc *, struct wpi_tx_ring *); 159692ad7caSAdrian Chadd static void wpi_reset_tx_ring(struct wpi_softc *, struct wpi_tx_ring *); 160692ad7caSAdrian Chadd static void wpi_free_tx_ring(struct wpi_softc *, struct wpi_tx_ring *); 161692ad7caSAdrian Chadd static int wpi_read_eeprom(struct wpi_softc *, 162692ad7caSAdrian Chadd uint8_t macaddr[IEEE80211_ADDR_LEN]); 163692ad7caSAdrian Chadd static uint32_t wpi_eeprom_channel_flags(struct wpi_eeprom_chan *); 164692ad7caSAdrian Chadd static void wpi_read_eeprom_band(struct wpi_softc *, int); 165692ad7caSAdrian Chadd static int wpi_read_eeprom_channels(struct wpi_softc *, int); 166692ad7caSAdrian Chadd static struct wpi_eeprom_chan *wpi_find_eeprom_channel(struct wpi_softc *, 167692ad7caSAdrian Chadd struct ieee80211_channel *); 168692ad7caSAdrian Chadd static int wpi_setregdomain(struct ieee80211com *, 169692ad7caSAdrian Chadd struct ieee80211_regdomain *, int, 170692ad7caSAdrian Chadd struct ieee80211_channel[]); 171692ad7caSAdrian Chadd static int wpi_read_eeprom_group(struct wpi_softc *, int); 172692ad7caSAdrian Chadd static void wpi_node_free(struct ieee80211_node *); 173692ad7caSAdrian Chadd static struct ieee80211_node *wpi_node_alloc(struct ieee80211vap *, 174692ad7caSAdrian Chadd const uint8_t mac[IEEE80211_ADDR_LEN]); 175692ad7caSAdrian Chadd static int wpi_newstate(struct ieee80211vap *, enum ieee80211_state, int); 176692ad7caSAdrian Chadd static void wpi_calib_timeout(void *); 177692ad7caSAdrian Chadd static void wpi_rx_done(struct wpi_softc *, struct wpi_rx_desc *, 1786607310bSBenjamin Close struct wpi_rx_data *); 179692ad7caSAdrian Chadd static void wpi_rx_statistics(struct wpi_softc *, struct wpi_rx_desc *, 180692ad7caSAdrian Chadd struct wpi_rx_data *); 181692ad7caSAdrian Chadd static void wpi_tx_done(struct wpi_softc *, struct wpi_rx_desc *); 182692ad7caSAdrian Chadd static void wpi_cmd_done(struct wpi_softc *, struct wpi_rx_desc *); 1836607310bSBenjamin Close static void wpi_notif_intr(struct wpi_softc *); 184692ad7caSAdrian Chadd static void wpi_wakeup_intr(struct wpi_softc *); 185692ad7caSAdrian Chadd static void wpi_fatal_intr(struct wpi_softc *); 1866607310bSBenjamin Close static void wpi_intr(void *); 187692ad7caSAdrian Chadd static int wpi_cmd2(struct wpi_softc *, struct wpi_buf *); 1886607310bSBenjamin Close static int wpi_tx_data(struct wpi_softc *, struct mbuf *, 189692ad7caSAdrian Chadd struct ieee80211_node *); 190692ad7caSAdrian Chadd static int wpi_tx_data_raw(struct wpi_softc *, struct mbuf *, 191692ad7caSAdrian Chadd struct ieee80211_node *, 192692ad7caSAdrian Chadd const struct ieee80211_bpf_params *); 193b032f27cSSam Leffler static int wpi_raw_xmit(struct ieee80211_node *, struct mbuf *, 194b032f27cSSam Leffler const struct ieee80211_bpf_params *); 195692ad7caSAdrian Chadd static void wpi_start(struct ifnet *); 196692ad7caSAdrian Chadd static void wpi_start_locked(struct ifnet *); 197692ad7caSAdrian Chadd static void wpi_watchdog_rfkill(void *); 198692ad7caSAdrian Chadd static void wpi_watchdog(void *); 199692ad7caSAdrian Chadd static int wpi_ioctl(struct ifnet *, u_long, caddr_t); 200692ad7caSAdrian Chadd static int wpi_cmd(struct wpi_softc *, int, const void *, size_t, int); 201692ad7caSAdrian Chadd static int wpi_mrr_setup(struct wpi_softc *); 202692ad7caSAdrian Chadd static int wpi_add_node(struct wpi_softc *, struct ieee80211_node *); 203692ad7caSAdrian Chadd static int wpi_add_broadcast_node(struct wpi_softc *, int); 204692ad7caSAdrian Chadd static int wpi_add_ibss_node(struct wpi_softc *, struct ieee80211_node *); 205692ad7caSAdrian Chadd static void wpi_del_node(struct wpi_softc *, struct ieee80211_node *); 206692ad7caSAdrian Chadd static int wpi_updateedca(struct ieee80211com *); 207692ad7caSAdrian Chadd static void wpi_set_promisc(struct wpi_softc *); 208692ad7caSAdrian Chadd static void wpi_update_promisc(struct ifnet *); 209692ad7caSAdrian Chadd static void wpi_update_mcast(struct ifnet *); 210692ad7caSAdrian Chadd static void wpi_set_led(struct wpi_softc *, uint8_t, uint8_t, uint8_t); 211692ad7caSAdrian Chadd static int wpi_set_timing(struct wpi_softc *, struct ieee80211_node *); 212692ad7caSAdrian Chadd static void wpi_power_calibration(struct wpi_softc *); 213692ad7caSAdrian Chadd static int wpi_set_txpower(struct wpi_softc *, int); 214692ad7caSAdrian Chadd static int wpi_get_power_index(struct wpi_softc *, 215692ad7caSAdrian Chadd struct wpi_power_group *, struct ieee80211_channel *, int); 216692ad7caSAdrian Chadd static int wpi_set_pslevel(struct wpi_softc *, uint8_t, int, int); 217692ad7caSAdrian Chadd static int wpi_send_btcoex(struct wpi_softc *); 218692ad7caSAdrian Chadd static int wpi_send_rxon(struct wpi_softc *, int, int); 219692ad7caSAdrian Chadd static int wpi_config(struct wpi_softc *); 220692ad7caSAdrian Chadd static uint16_t wpi_get_active_dwell_time(struct wpi_softc *, 221692ad7caSAdrian Chadd struct ieee80211_channel *, uint8_t); 222692ad7caSAdrian Chadd static uint16_t wpi_limit_dwell(struct wpi_softc *, uint16_t); 223692ad7caSAdrian Chadd static uint16_t wpi_get_passive_dwell_time(struct wpi_softc *, 224692ad7caSAdrian Chadd struct ieee80211_channel *); 225692ad7caSAdrian Chadd static int wpi_scan(struct wpi_softc *, struct ieee80211_channel *); 226692ad7caSAdrian Chadd static int wpi_auth(struct wpi_softc *, struct ieee80211vap *); 227692ad7caSAdrian Chadd static void wpi_update_beacon(struct ieee80211vap *, int); 228692ad7caSAdrian Chadd static int wpi_setup_beacon(struct wpi_softc *, struct ieee80211_node *); 229692ad7caSAdrian Chadd static int wpi_run(struct wpi_softc *, struct ieee80211vap *); 230692ad7caSAdrian Chadd static int wpi_key_alloc(struct ieee80211vap *, struct ieee80211_key *, 231692ad7caSAdrian Chadd ieee80211_keyix *, ieee80211_keyix *); 232692ad7caSAdrian Chadd static int wpi_key_set(struct ieee80211vap *, 233692ad7caSAdrian Chadd const struct ieee80211_key *, 234692ad7caSAdrian Chadd const uint8_t mac[IEEE80211_ADDR_LEN]); 235692ad7caSAdrian Chadd static int wpi_key_delete(struct ieee80211vap *, 236692ad7caSAdrian Chadd const struct ieee80211_key *); 237692ad7caSAdrian Chadd static int wpi_post_alive(struct wpi_softc *); 238692ad7caSAdrian Chadd static int wpi_load_bootcode(struct wpi_softc *, const uint8_t *, int); 239692ad7caSAdrian Chadd static int wpi_load_firmware(struct wpi_softc *); 240692ad7caSAdrian Chadd static int wpi_read_firmware(struct wpi_softc *); 241692ad7caSAdrian Chadd static void wpi_unload_firmware(struct wpi_softc *); 242692ad7caSAdrian Chadd static int wpi_clock_wait(struct wpi_softc *); 243692ad7caSAdrian Chadd static int wpi_apm_init(struct wpi_softc *); 244692ad7caSAdrian Chadd static void wpi_apm_stop_master(struct wpi_softc *); 245692ad7caSAdrian Chadd static void wpi_apm_stop(struct wpi_softc *); 246692ad7caSAdrian Chadd static void wpi_nic_config(struct wpi_softc *); 247692ad7caSAdrian Chadd static int wpi_hw_init(struct wpi_softc *); 248692ad7caSAdrian Chadd static void wpi_hw_stop(struct wpi_softc *); 249692ad7caSAdrian Chadd static void wpi_radio_on(void *, int); 250692ad7caSAdrian Chadd static void wpi_radio_off(void *, int); 251692ad7caSAdrian Chadd static void wpi_init_locked(struct wpi_softc *); 252692ad7caSAdrian Chadd static void wpi_init(void *); 253692ad7caSAdrian Chadd static void wpi_stop_locked(struct wpi_softc *); 254692ad7caSAdrian Chadd static void wpi_stop(struct wpi_softc *); 2556607310bSBenjamin Close static void wpi_scan_start(struct ieee80211com *); 2566607310bSBenjamin Close static void wpi_scan_end(struct ieee80211com *); 2576607310bSBenjamin Close static void wpi_set_channel(struct ieee80211com *); 258b032f27cSSam Leffler static void wpi_scan_curchan(struct ieee80211_scan_state *, unsigned long); 259b032f27cSSam Leffler static void wpi_scan_mindwell(struct ieee80211_scan_state *); 260692ad7caSAdrian Chadd static void wpi_hw_reset(void *, int); 2616607310bSBenjamin Close 2626607310bSBenjamin Close static device_method_t wpi_methods[] = { 2636607310bSBenjamin Close /* Device interface */ 2646607310bSBenjamin Close DEVMETHOD(device_probe, wpi_probe), 2656607310bSBenjamin Close DEVMETHOD(device_attach, wpi_attach), 2666607310bSBenjamin Close DEVMETHOD(device_detach, wpi_detach), 2676607310bSBenjamin Close DEVMETHOD(device_shutdown, wpi_shutdown), 2686607310bSBenjamin Close DEVMETHOD(device_suspend, wpi_suspend), 2696607310bSBenjamin Close DEVMETHOD(device_resume, wpi_resume), 2706607310bSBenjamin Close 271da67681dSMarius Strobl DEVMETHOD_END 2726607310bSBenjamin Close }; 2736607310bSBenjamin Close 2746607310bSBenjamin Close static driver_t wpi_driver = { 2756607310bSBenjamin Close "wpi", 2766607310bSBenjamin Close wpi_methods, 2776607310bSBenjamin Close sizeof (struct wpi_softc) 2786607310bSBenjamin Close }; 2796607310bSBenjamin Close static devclass_t wpi_devclass; 2806607310bSBenjamin Close 281da67681dSMarius Strobl DRIVER_MODULE(wpi, pci, wpi_driver, wpi_devclass, NULL, NULL); 2826607310bSBenjamin Close 283129145a4SBernhard Schmidt MODULE_VERSION(wpi, 1); 284129145a4SBernhard Schmidt 285692ad7caSAdrian Chadd MODULE_DEPEND(wpi, pci, 1, 1, 1); 286692ad7caSAdrian Chadd MODULE_DEPEND(wpi, wlan, 1, 1, 1); 287692ad7caSAdrian Chadd MODULE_DEPEND(wpi, firmware, 1, 1, 1); 2886607310bSBenjamin Close 2896607310bSBenjamin Close static int 2906607310bSBenjamin Close wpi_probe(device_t dev) 2916607310bSBenjamin Close { 2926607310bSBenjamin Close const struct wpi_ident *ident; 2936607310bSBenjamin Close 2946607310bSBenjamin Close for (ident = wpi_ident_table; ident->name != NULL; ident++) { 2956607310bSBenjamin Close if (pci_get_vendor(dev) == ident->vendor && 2966607310bSBenjamin Close pci_get_device(dev) == ident->device) { 2976607310bSBenjamin Close device_set_desc(dev, ident->name); 298da67681dSMarius Strobl return (BUS_PROBE_DEFAULT); 2996607310bSBenjamin Close } 3006607310bSBenjamin Close } 3016607310bSBenjamin Close return ENXIO; 3026607310bSBenjamin Close } 3036607310bSBenjamin Close 3046607310bSBenjamin Close static int 3056607310bSBenjamin Close wpi_attach(device_t dev) 3066607310bSBenjamin Close { 307692ad7caSAdrian Chadd struct wpi_softc *sc = (struct wpi_softc *)device_get_softc(dev); 308b032f27cSSam Leffler struct ieee80211com *ic; 309692ad7caSAdrian Chadd struct ifnet *ifp; 310692ad7caSAdrian Chadd int i, error, rid, supportsa = 1; 3116607310bSBenjamin Close const struct wpi_ident *ident; 31229aca940SSam Leffler uint8_t macaddr[IEEE80211_ADDR_LEN]; 3136607310bSBenjamin Close 3146607310bSBenjamin Close sc->sc_dev = dev; 3156607310bSBenjamin Close 316692ad7caSAdrian Chadd #ifdef WPI_DEBUG 317692ad7caSAdrian Chadd error = resource_int_value(device_get_name(sc->sc_dev), 318692ad7caSAdrian Chadd device_get_unit(sc->sc_dev), "debug", &(sc->sc_debug)); 319692ad7caSAdrian Chadd if (error != 0) 320692ad7caSAdrian Chadd sc->sc_debug = 0; 321692ad7caSAdrian Chadd #else 322692ad7caSAdrian Chadd sc->sc_debug = 0; 323692ad7caSAdrian Chadd #endif 324692ad7caSAdrian Chadd 325692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 326692ad7caSAdrian Chadd 327692ad7caSAdrian Chadd /* 328692ad7caSAdrian Chadd * Get the offset of the PCI Express Capability Structure in PCI 329692ad7caSAdrian Chadd * Configuration Space. 330692ad7caSAdrian Chadd */ 331692ad7caSAdrian Chadd error = pci_find_cap(dev, PCIY_EXPRESS, &sc->sc_cap_off); 332692ad7caSAdrian Chadd if (error != 0) { 333692ad7caSAdrian Chadd device_printf(dev, "PCIe capability structure not found!\n"); 334692ad7caSAdrian Chadd return error; 335692ad7caSAdrian Chadd } 3366607310bSBenjamin Close 3376607310bSBenjamin Close /* 3386607310bSBenjamin Close * Some card's only support 802.11b/g not a, check to see if 3396607310bSBenjamin Close * this is one such card. A 0x0 in the subdevice table indicates 3406607310bSBenjamin Close * the entire subdevice range is to be ignored. 3416607310bSBenjamin Close */ 3426607310bSBenjamin Close for (ident = wpi_ident_table; ident->name != NULL; ident++) { 3436607310bSBenjamin Close if (ident->subdevice && 3446607310bSBenjamin Close pci_get_subdevice(dev) == ident->subdevice) { 3456607310bSBenjamin Close supportsa = 0; 3466607310bSBenjamin Close break; 3476607310bSBenjamin Close } 3486607310bSBenjamin Close } 3496607310bSBenjamin Close 350692ad7caSAdrian Chadd /* Clear device-specific "PCI retry timeout" register (41h). */ 3516607310bSBenjamin Close pci_write_config(dev, 0x41, 0, 1); 3526607310bSBenjamin Close 353692ad7caSAdrian Chadd /* Enable bus-mastering. */ 3546607310bSBenjamin Close pci_enable_busmaster(dev); 3556607310bSBenjamin Close 356da67681dSMarius Strobl rid = PCIR_BAR(0); 357da67681dSMarius Strobl sc->mem = bus_alloc_resource_any(dev, SYS_RES_MEMORY, &rid, 3586607310bSBenjamin Close RF_ACTIVE); 3596607310bSBenjamin Close if (sc->mem == NULL) { 360692ad7caSAdrian Chadd device_printf(dev, "can't map mem space\n"); 3616607310bSBenjamin Close error = ENOMEM; 362692ad7caSAdrian Chadd return error; 3636607310bSBenjamin Close } 3646607310bSBenjamin Close sc->sc_st = rman_get_bustag(sc->mem); 3656607310bSBenjamin Close sc->sc_sh = rman_get_bushandle(sc->mem); 3666607310bSBenjamin Close 367692ad7caSAdrian Chadd i = 1; 368da67681dSMarius Strobl rid = 0; 369692ad7caSAdrian Chadd if (pci_alloc_msi(dev, &i) == 0) 370692ad7caSAdrian Chadd rid = 1; 371692ad7caSAdrian Chadd /* Install interrupt handler. */ 372692ad7caSAdrian Chadd sc->irq = bus_alloc_resource_any(dev, SYS_RES_IRQ, &rid, RF_ACTIVE | 373692ad7caSAdrian Chadd (rid != 0 ? 0 : RF_SHAREABLE)); 3746607310bSBenjamin Close if (sc->irq == NULL) { 375692ad7caSAdrian Chadd device_printf(dev, "can't map interrupt\n"); 3766607310bSBenjamin Close error = ENOMEM; 3776607310bSBenjamin Close goto fail; 3786607310bSBenjamin Close } 3796607310bSBenjamin Close 380692ad7caSAdrian Chadd WPI_LOCK_INIT(sc); 381692ad7caSAdrian Chadd 382692ad7caSAdrian Chadd sc->sc_unr = new_unrhdr(WPI_ID_IBSS_MIN, WPI_ID_IBSS_MAX, &sc->sc_mtx); 383692ad7caSAdrian Chadd 384692ad7caSAdrian Chadd /* Allocate DMA memory for firmware transfers. */ 3856607310bSBenjamin Close if ((error = wpi_alloc_fwmem(sc)) != 0) { 386692ad7caSAdrian Chadd device_printf(dev, 387692ad7caSAdrian Chadd "could not allocate memory for firmware, error %d\n", 388692ad7caSAdrian Chadd error); 3896607310bSBenjamin Close goto fail; 3906607310bSBenjamin Close } 3916607310bSBenjamin Close 392692ad7caSAdrian Chadd /* Allocate shared page. */ 3936607310bSBenjamin Close if ((error = wpi_alloc_shared(sc)) != 0) { 3946607310bSBenjamin Close device_printf(dev, "could not allocate shared page\n"); 3956607310bSBenjamin Close goto fail; 3966607310bSBenjamin Close } 3976607310bSBenjamin Close 398692ad7caSAdrian Chadd /* Allocate TX rings - 4 for QoS purposes, 1 for commands. */ 399692ad7caSAdrian Chadd for (i = 0; i < WPI_NTXQUEUES; i++) { 400692ad7caSAdrian Chadd if ((error = wpi_alloc_tx_ring(sc, &sc->txq[i], i)) != 0) { 401692ad7caSAdrian Chadd device_printf(dev, 402692ad7caSAdrian Chadd "could not allocate TX ring %d, error %d\n", i, 403692ad7caSAdrian Chadd error); 4046607310bSBenjamin Close goto fail; 4056607310bSBenjamin Close } 4066607310bSBenjamin Close } 4076607310bSBenjamin Close 408692ad7caSAdrian Chadd /* Allocate RX ring. */ 409692ad7caSAdrian Chadd if ((error = wpi_alloc_rx_ring(sc)) != 0) { 410692ad7caSAdrian Chadd device_printf(dev, "could not allocate RX ring, error %d\n", 411692ad7caSAdrian Chadd error); 4126607310bSBenjamin Close goto fail; 4136607310bSBenjamin Close } 4146607310bSBenjamin Close 415692ad7caSAdrian Chadd /* Clear pending interrupts. */ 416692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_INT, 0xffffffff); 4176607310bSBenjamin Close 418b032f27cSSam Leffler ifp = sc->sc_ifp = if_alloc(IFT_IEEE80211); 4196607310bSBenjamin Close if (ifp == NULL) { 420692ad7caSAdrian Chadd device_printf(dev, "can not allocate ifnet structure\n"); 4216607310bSBenjamin Close goto fail; 4226607310bSBenjamin Close } 4236607310bSBenjamin Close 424692ad7caSAdrian Chadd ic = ifp->if_l2com; 4256607310bSBenjamin Close ic->ic_ifp = ifp; 4266607310bSBenjamin Close ic->ic_phytype = IEEE80211_T_OFDM; /* not only, but not used */ 4276607310bSBenjamin Close ic->ic_opmode = IEEE80211_M_STA; /* default to BSS mode */ 4286607310bSBenjamin Close 429692ad7caSAdrian Chadd /* Set device capabilities. */ 4306607310bSBenjamin Close ic->ic_caps = 431c43feedeSSam Leffler IEEE80211_C_STA /* station mode supported */ 432692ad7caSAdrian Chadd | IEEE80211_C_IBSS /* IBSS mode supported */ 433c43feedeSSam Leffler | IEEE80211_C_MONITOR /* monitor mode supported */ 434692ad7caSAdrian Chadd | IEEE80211_C_AHDEMO /* adhoc demo mode */ 435692ad7caSAdrian Chadd | IEEE80211_C_BGSCAN /* capable of bg scanning */ 4366607310bSBenjamin Close | IEEE80211_C_TXPMGT /* tx power management */ 4376607310bSBenjamin Close | IEEE80211_C_SHSLOT /* short slot time supported */ 4386607310bSBenjamin Close | IEEE80211_C_WPA /* 802.11i */ 439692ad7caSAdrian Chadd | IEEE80211_C_SHPREAMBLE /* short preamble supported */ 4406607310bSBenjamin Close #if 0 4416607310bSBenjamin Close | IEEE80211_C_HOSTAP /* Host access point mode */ 4426607310bSBenjamin Close #endif 443692ad7caSAdrian Chadd | IEEE80211_C_WME /* 802.11e */ 444692ad7caSAdrian Chadd | IEEE80211_C_PMGT /* Station-side power mgmt */ 4456607310bSBenjamin Close ; 4466607310bSBenjamin Close 447692ad7caSAdrian Chadd ic->ic_cryptocaps = 448692ad7caSAdrian Chadd IEEE80211_CRYPTO_AES_CCM; 449692ad7caSAdrian Chadd 450*fae61c69SAdrian Chadd ic->ic_flags |= IEEE80211_F_DATAPAD; 451*fae61c69SAdrian Chadd 4526607310bSBenjamin Close /* 4536607310bSBenjamin Close * Read in the eeprom and also setup the channels for 4546607310bSBenjamin Close * net80211. We don't set the rates as net80211 does this for us 4556607310bSBenjamin Close */ 456692ad7caSAdrian Chadd if ((error = wpi_read_eeprom(sc, macaddr)) != 0) { 457692ad7caSAdrian Chadd device_printf(dev, "could not read EEPROM, error %d\n", 458692ad7caSAdrian Chadd error); 459692ad7caSAdrian Chadd goto fail; 460692ad7caSAdrian Chadd } 4616607310bSBenjamin Close 462692ad7caSAdrian Chadd #ifdef WPI_DEBUG 463692ad7caSAdrian Chadd if (bootverbose) { 4646607310bSBenjamin Close device_printf(sc->sc_dev, "Regulatory Domain: %.4s\n", sc->domain); 4656607310bSBenjamin Close device_printf(sc->sc_dev, "Hardware Type: %c\n", 4666607310bSBenjamin Close sc->type > 1 ? 'B': '?'); 4676607310bSBenjamin Close device_printf(sc->sc_dev, "Hardware Revision: %c\n", 4686607310bSBenjamin Close ((le16toh(sc->rev) & 0xf0) == 0xd0) ? 'D': '?'); 4696607310bSBenjamin Close device_printf(sc->sc_dev, "SKU %s support 802.11a\n", 4706607310bSBenjamin Close supportsa ? "does" : "does not"); 4716607310bSBenjamin Close 4726607310bSBenjamin Close /* XXX hw_config uses the PCIDEV for the Hardware rev. Must check 4736607310bSBenjamin Close what sc->rev really represents - benjsc 20070615 */ 4746607310bSBenjamin Close } 475692ad7caSAdrian Chadd #endif 4766607310bSBenjamin Close 4776607310bSBenjamin Close if_initname(ifp, device_get_name(dev), device_get_unit(dev)); 4786607310bSBenjamin Close ifp->if_softc = sc; 4796607310bSBenjamin Close ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST; 4806607310bSBenjamin Close ifp->if_init = wpi_init; 4816607310bSBenjamin Close ifp->if_ioctl = wpi_ioctl; 4826607310bSBenjamin Close ifp->if_start = wpi_start; 483e50d35e6SMaxim Sobolev IFQ_SET_MAXLEN(&ifp->if_snd, ifqmaxlen); 484e50d35e6SMaxim Sobolev ifp->if_snd.ifq_drv_maxlen = ifqmaxlen; 4856607310bSBenjamin Close IFQ_SET_READY(&ifp->if_snd); 4866607310bSBenjamin Close 48729aca940SSam Leffler ieee80211_ifattach(ic, macaddr); 488692ad7caSAdrian Chadd ic->ic_vap_create = wpi_vap_create; 489692ad7caSAdrian Chadd ic->ic_vap_delete = wpi_vap_delete; 490b032f27cSSam Leffler ic->ic_raw_xmit = wpi_raw_xmit; 491692ad7caSAdrian Chadd ic->ic_node_alloc = wpi_node_alloc; 492692ad7caSAdrian Chadd sc->sc_node_free = ic->ic_node_free; 493692ad7caSAdrian Chadd ic->ic_node_free = wpi_node_free; 494692ad7caSAdrian Chadd ic->ic_wme.wme_update = wpi_updateedca; 495692ad7caSAdrian Chadd ic->ic_update_promisc = wpi_update_promisc; 496692ad7caSAdrian Chadd ic->ic_update_mcast = wpi_update_mcast; 4976607310bSBenjamin Close ic->ic_scan_start = wpi_scan_start; 4986607310bSBenjamin Close ic->ic_scan_end = wpi_scan_end; 4996607310bSBenjamin Close ic->ic_set_channel = wpi_set_channel; 500692ad7caSAdrian Chadd sc->sc_scan_curchan = ic->ic_scan_curchan; 5016607310bSBenjamin Close ic->ic_scan_curchan = wpi_scan_curchan; 5026607310bSBenjamin Close ic->ic_scan_mindwell = wpi_scan_mindwell; 503692ad7caSAdrian Chadd ic->ic_setregdomain = wpi_setregdomain; 5046607310bSBenjamin Close 505692ad7caSAdrian Chadd wpi_radiotap_attach(sc); 5066607310bSBenjamin Close 507692ad7caSAdrian Chadd callout_init_mtx(&sc->calib_to, &sc->sc_mtx, 0); 508692ad7caSAdrian Chadd callout_init_mtx(&sc->watchdog_to, &sc->sc_mtx, 0); 509692ad7caSAdrian Chadd callout_init_mtx(&sc->watchdog_rfkill, &sc->sc_mtx, 0); 510692ad7caSAdrian Chadd TASK_INIT(&sc->sc_reinittask, 0, wpi_hw_reset, sc); 511692ad7caSAdrian Chadd TASK_INIT(&sc->sc_radiooff_task, 0, wpi_radio_off, sc); 512692ad7caSAdrian Chadd TASK_INIT(&sc->sc_radioon_task, 0, wpi_radio_on, sc); 513692ad7caSAdrian Chadd 514692ad7caSAdrian Chadd wpi_sysctlattach(sc); 5156607310bSBenjamin Close 5166607310bSBenjamin Close /* 5176607310bSBenjamin Close * Hook our interrupt after all initialization is complete. 5186607310bSBenjamin Close */ 5196607310bSBenjamin Close error = bus_setup_intr(dev, sc->irq, INTR_TYPE_NET | INTR_MPSAFE, 52082f1b132SAndrew Thompson NULL, wpi_intr, sc, &sc->sc_ih); 5216607310bSBenjamin Close if (error != 0) { 522692ad7caSAdrian Chadd device_printf(dev, "can't establish interrupt, error %d\n", 523692ad7caSAdrian Chadd error); 5246607310bSBenjamin Close goto fail; 5256607310bSBenjamin Close } 5266607310bSBenjamin Close 52782f1b132SAndrew Thompson if (bootverbose) 5286607310bSBenjamin Close ieee80211_announce(ic); 529692ad7caSAdrian Chadd 530692ad7caSAdrian Chadd #ifdef WPI_DEBUG 531692ad7caSAdrian Chadd if (sc->sc_debug & WPI_DEBUG_HW) 5326607310bSBenjamin Close ieee80211_announce_channels(ic); 5336607310bSBenjamin Close #endif 534692ad7caSAdrian Chadd 535692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 5366607310bSBenjamin Close return 0; 5376607310bSBenjamin Close 5386607310bSBenjamin Close fail: wpi_detach(dev); 539692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END_ERR, __func__); 540692ad7caSAdrian Chadd return error; 5416607310bSBenjamin Close } 5426607310bSBenjamin Close 543692ad7caSAdrian Chadd /* 544692ad7caSAdrian Chadd * Attach the interface to 802.11 radiotap. 545692ad7caSAdrian Chadd */ 546692ad7caSAdrian Chadd static void 547692ad7caSAdrian Chadd wpi_radiotap_attach(struct wpi_softc *sc) 5486607310bSBenjamin Close { 549b032f27cSSam Leffler struct ifnet *ifp = sc->sc_ifp; 550692ad7caSAdrian Chadd struct ieee80211com *ic = ifp->if_l2com; 551692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 552692ad7caSAdrian Chadd ieee80211_radiotap_attach(ic, 553692ad7caSAdrian Chadd &sc->sc_txtap.wt_ihdr, sizeof(sc->sc_txtap), 554692ad7caSAdrian Chadd WPI_TX_RADIOTAP_PRESENT, 555692ad7caSAdrian Chadd &sc->sc_rxtap.wr_ihdr, sizeof(sc->sc_rxtap), 556692ad7caSAdrian Chadd WPI_RX_RADIOTAP_PRESENT); 557692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 5586607310bSBenjamin Close } 5596607310bSBenjamin Close 560692ad7caSAdrian Chadd static void 561692ad7caSAdrian Chadd wpi_sysctlattach(struct wpi_softc *sc) 562692ad7caSAdrian Chadd { 563692ad7caSAdrian Chadd #ifdef WPI_DEBUG 564692ad7caSAdrian Chadd struct sysctl_ctx_list *ctx = device_get_sysctl_ctx(sc->sc_dev); 565692ad7caSAdrian Chadd struct sysctl_oid *tree = device_get_sysctl_tree(sc->sc_dev); 5666607310bSBenjamin Close 567692ad7caSAdrian Chadd SYSCTL_ADD_INT(ctx, SYSCTL_CHILDREN(tree), OID_AUTO, 568692ad7caSAdrian Chadd "debug", CTLFLAG_RW, &sc->sc_debug, sc->sc_debug, 569692ad7caSAdrian Chadd "control debugging printfs"); 570692ad7caSAdrian Chadd #endif 5716607310bSBenjamin Close } 5726607310bSBenjamin Close 573b032f27cSSam Leffler static struct ieee80211vap * 574fcd9500fSBernhard Schmidt wpi_vap_create(struct ieee80211com *ic, const char name[IFNAMSIZ], int unit, 575fcd9500fSBernhard Schmidt enum ieee80211_opmode opmode, int flags, 576b032f27cSSam Leffler const uint8_t bssid[IEEE80211_ADDR_LEN], 577b032f27cSSam Leffler const uint8_t mac[IEEE80211_ADDR_LEN]) 578b032f27cSSam Leffler { 579b032f27cSSam Leffler struct wpi_vap *wvp; 580692ad7caSAdrian Chadd struct wpi_buf *bcn; 581b032f27cSSam Leffler struct ieee80211vap *vap; 582b032f27cSSam Leffler 583b032f27cSSam Leffler if (!TAILQ_EMPTY(&ic->ic_vaps)) /* only one at a time */ 584b032f27cSSam Leffler return NULL; 585692ad7caSAdrian Chadd 586b032f27cSSam Leffler wvp = (struct wpi_vap *) malloc(sizeof(struct wpi_vap), 587b032f27cSSam Leffler M_80211_VAP, M_NOWAIT | M_ZERO); 588b032f27cSSam Leffler if (wvp == NULL) 589b032f27cSSam Leffler return NULL; 590b032f27cSSam Leffler vap = &wvp->vap; 591b032f27cSSam Leffler ieee80211_vap_setup(ic, vap, name, unit, opmode, flags, bssid, mac); 592692ad7caSAdrian Chadd 593692ad7caSAdrian Chadd bcn = &wvp->wv_bcbuf; 594692ad7caSAdrian Chadd bcn->data = NULL; 595692ad7caSAdrian Chadd 596692ad7caSAdrian Chadd /* Override with driver methods. */ 597b032f27cSSam Leffler wvp->newstate = vap->iv_newstate; 598692ad7caSAdrian Chadd vap->iv_key_alloc = wpi_key_alloc; 599692ad7caSAdrian Chadd vap->iv_key_set = wpi_key_set; 600692ad7caSAdrian Chadd vap->iv_key_delete = wpi_key_delete; 601b032f27cSSam Leffler vap->iv_newstate = wpi_newstate; 602692ad7caSAdrian Chadd vap->iv_update_beacon = wpi_update_beacon; 603b032f27cSSam Leffler 604b6108616SRui Paulo ieee80211_ratectl_init(vap); 605692ad7caSAdrian Chadd /* Complete setup. */ 606b032f27cSSam Leffler ieee80211_vap_attach(vap, ieee80211_media_change, ieee80211_media_status); 607b032f27cSSam Leffler ic->ic_opmode = opmode; 608b032f27cSSam Leffler return vap; 609b032f27cSSam Leffler } 610b032f27cSSam Leffler 611b032f27cSSam Leffler static void 612b032f27cSSam Leffler wpi_vap_delete(struct ieee80211vap *vap) 613b032f27cSSam Leffler { 614b032f27cSSam Leffler struct wpi_vap *wvp = WPI_VAP(vap); 615692ad7caSAdrian Chadd struct wpi_buf *bcn = &wvp->wv_bcbuf; 616b032f27cSSam Leffler 617b6108616SRui Paulo ieee80211_ratectl_deinit(vap); 618b032f27cSSam Leffler ieee80211_vap_detach(vap); 619692ad7caSAdrian Chadd 620692ad7caSAdrian Chadd if (bcn->data != NULL) 621692ad7caSAdrian Chadd free(bcn->data, M_DEVBUF); 622b032f27cSSam Leffler free(wvp, M_80211_VAP); 623b032f27cSSam Leffler } 624b032f27cSSam Leffler 6256607310bSBenjamin Close static int 626692ad7caSAdrian Chadd wpi_detach(device_t dev) 6276607310bSBenjamin Close { 628692ad7caSAdrian Chadd struct wpi_softc *sc = device_get_softc(dev); 629692ad7caSAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 630692ad7caSAdrian Chadd struct ieee80211com *ic; 631692ad7caSAdrian Chadd int qid; 6326607310bSBenjamin Close 633692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 6346607310bSBenjamin Close 635692ad7caSAdrian Chadd if (ifp != NULL) { 636692ad7caSAdrian Chadd ic = ifp->if_l2com; 6376607310bSBenjamin Close 638692ad7caSAdrian Chadd ieee80211_draintask(ic, &sc->sc_reinittask); 639692ad7caSAdrian Chadd ieee80211_draintask(ic, &sc->sc_radiooff_task); 640692ad7caSAdrian Chadd 641692ad7caSAdrian Chadd wpi_stop(sc); 642692ad7caSAdrian Chadd 643692ad7caSAdrian Chadd callout_drain(&sc->watchdog_to); 644692ad7caSAdrian Chadd callout_drain(&sc->watchdog_rfkill); 645692ad7caSAdrian Chadd callout_drain(&sc->calib_to); 646692ad7caSAdrian Chadd ieee80211_ifdetach(ic); 6476607310bSBenjamin Close } 6486607310bSBenjamin Close 649692ad7caSAdrian Chadd /* Uninstall interrupt handler. */ 650692ad7caSAdrian Chadd if (sc->irq != NULL) { 651692ad7caSAdrian Chadd bus_teardown_intr(dev, sc->irq, sc->sc_ih); 652692ad7caSAdrian Chadd bus_release_resource(dev, SYS_RES_IRQ, rman_get_rid(sc->irq), 653692ad7caSAdrian Chadd sc->irq); 654692ad7caSAdrian Chadd pci_release_msi(dev); 65582f1b132SAndrew Thompson } 6566607310bSBenjamin Close 657692ad7caSAdrian Chadd if (sc->txq[0].data_dmat) { 658692ad7caSAdrian Chadd /* Free DMA resources. */ 659692ad7caSAdrian Chadd for (qid = 0; qid < WPI_NTXQUEUES; qid++) 660692ad7caSAdrian Chadd wpi_free_tx_ring(sc, &sc->txq[qid]); 661692ad7caSAdrian Chadd 662692ad7caSAdrian Chadd wpi_free_rx_ring(sc); 663692ad7caSAdrian Chadd wpi_free_shared(sc); 6646607310bSBenjamin Close } 6656607310bSBenjamin Close 666692ad7caSAdrian Chadd if (sc->fw_dma.tag) 667692ad7caSAdrian Chadd wpi_free_fwmem(sc); 6686607310bSBenjamin Close 669692ad7caSAdrian Chadd if (sc->mem != NULL) 670692ad7caSAdrian Chadd bus_release_resource(dev, SYS_RES_MEMORY, 671692ad7caSAdrian Chadd rman_get_rid(sc->mem), sc->mem); 672692ad7caSAdrian Chadd 673692ad7caSAdrian Chadd if (ifp != NULL) 674692ad7caSAdrian Chadd if_free(ifp); 675692ad7caSAdrian Chadd 676692ad7caSAdrian Chadd delete_unrhdr(sc->sc_unr); 677692ad7caSAdrian Chadd 678692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 679692ad7caSAdrian Chadd WPI_LOCK_DESTROY(sc); 6806607310bSBenjamin Close return 0; 6816607310bSBenjamin Close } 6826607310bSBenjamin Close 6836607310bSBenjamin Close static int 6846607310bSBenjamin Close wpi_shutdown(device_t dev) 6856607310bSBenjamin Close { 6866607310bSBenjamin Close struct wpi_softc *sc = device_get_softc(dev); 6876607310bSBenjamin Close 688692ad7caSAdrian Chadd wpi_stop(sc); 6896607310bSBenjamin Close return 0; 6906607310bSBenjamin Close } 6916607310bSBenjamin Close 6926607310bSBenjamin Close static int 6936607310bSBenjamin Close wpi_suspend(device_t dev) 6946607310bSBenjamin Close { 6956607310bSBenjamin Close struct wpi_softc *sc = device_get_softc(dev); 696ada977b1SBernhard Schmidt struct ieee80211com *ic = sc->sc_ifp->if_l2com; 6976607310bSBenjamin Close 698ada977b1SBernhard Schmidt ieee80211_suspend_all(ic); 6996607310bSBenjamin Close return 0; 7006607310bSBenjamin Close } 7016607310bSBenjamin Close 7026607310bSBenjamin Close static int 7036607310bSBenjamin Close wpi_resume(device_t dev) 7046607310bSBenjamin Close { 7056607310bSBenjamin Close struct wpi_softc *sc = device_get_softc(dev); 706ada977b1SBernhard Schmidt struct ieee80211com *ic = sc->sc_ifp->if_l2com; 7076607310bSBenjamin Close 708692ad7caSAdrian Chadd /* Clear device-specific "PCI retry timeout" register (41h). */ 7096607310bSBenjamin Close pci_write_config(dev, 0x41, 0, 1); 7106607310bSBenjamin Close 711ada977b1SBernhard Schmidt ieee80211_resume_all(ic); 7126607310bSBenjamin Close return 0; 7136607310bSBenjamin Close } 7146607310bSBenjamin Close 715692ad7caSAdrian Chadd /* 716692ad7caSAdrian Chadd * Grab exclusive access to NIC memory. 717692ad7caSAdrian Chadd */ 718692ad7caSAdrian Chadd static int 719692ad7caSAdrian Chadd wpi_nic_lock(struct wpi_softc *sc) 720692ad7caSAdrian Chadd { 721692ad7caSAdrian Chadd int ntries; 722692ad7caSAdrian Chadd 723692ad7caSAdrian Chadd /* Request exclusive access to NIC. */ 724692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_GP_CNTRL, WPI_GP_CNTRL_MAC_ACCESS_REQ); 725692ad7caSAdrian Chadd 726692ad7caSAdrian Chadd /* Spin until we actually get the lock. */ 727692ad7caSAdrian Chadd for (ntries = 0; ntries < 1000; ntries++) { 728692ad7caSAdrian Chadd if ((WPI_READ(sc, WPI_GP_CNTRL) & 729692ad7caSAdrian Chadd (WPI_GP_CNTRL_MAC_ACCESS_ENA | WPI_GP_CNTRL_SLEEP)) == 730692ad7caSAdrian Chadd WPI_GP_CNTRL_MAC_ACCESS_ENA) 731692ad7caSAdrian Chadd return 0; 732692ad7caSAdrian Chadd DELAY(10); 733692ad7caSAdrian Chadd } 734692ad7caSAdrian Chadd 735692ad7caSAdrian Chadd device_printf(sc->sc_dev, "could not lock memory\n"); 736692ad7caSAdrian Chadd 737692ad7caSAdrian Chadd return ETIMEDOUT; 738692ad7caSAdrian Chadd } 739692ad7caSAdrian Chadd 740692ad7caSAdrian Chadd /* 741692ad7caSAdrian Chadd * Release lock on NIC memory. 742692ad7caSAdrian Chadd */ 743692ad7caSAdrian Chadd static __inline void 744692ad7caSAdrian Chadd wpi_nic_unlock(struct wpi_softc *sc) 745692ad7caSAdrian Chadd { 746692ad7caSAdrian Chadd WPI_CLRBITS(sc, WPI_GP_CNTRL, WPI_GP_CNTRL_MAC_ACCESS_REQ); 747692ad7caSAdrian Chadd } 748692ad7caSAdrian Chadd 749692ad7caSAdrian Chadd static __inline uint32_t 750692ad7caSAdrian Chadd wpi_prph_read(struct wpi_softc *sc, uint32_t addr) 751692ad7caSAdrian Chadd { 752692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_PRPH_RADDR, WPI_PRPH_DWORD | addr); 753692ad7caSAdrian Chadd WPI_BARRIER_READ_WRITE(sc); 754692ad7caSAdrian Chadd return WPI_READ(sc, WPI_PRPH_RDATA); 755692ad7caSAdrian Chadd } 756692ad7caSAdrian Chadd 757692ad7caSAdrian Chadd static __inline void 758692ad7caSAdrian Chadd wpi_prph_write(struct wpi_softc *sc, uint32_t addr, uint32_t data) 759692ad7caSAdrian Chadd { 760692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_PRPH_WADDR, WPI_PRPH_DWORD | addr); 761692ad7caSAdrian Chadd WPI_BARRIER_WRITE(sc); 762692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_PRPH_WDATA, data); 763692ad7caSAdrian Chadd } 764692ad7caSAdrian Chadd 765692ad7caSAdrian Chadd static __inline void 766692ad7caSAdrian Chadd wpi_prph_setbits(struct wpi_softc *sc, uint32_t addr, uint32_t mask) 767692ad7caSAdrian Chadd { 768692ad7caSAdrian Chadd wpi_prph_write(sc, addr, wpi_prph_read(sc, addr) | mask); 769692ad7caSAdrian Chadd } 770692ad7caSAdrian Chadd 771692ad7caSAdrian Chadd static __inline void 772692ad7caSAdrian Chadd wpi_prph_clrbits(struct wpi_softc *sc, uint32_t addr, uint32_t mask) 773692ad7caSAdrian Chadd { 774692ad7caSAdrian Chadd wpi_prph_write(sc, addr, wpi_prph_read(sc, addr) & ~mask); 775692ad7caSAdrian Chadd } 776692ad7caSAdrian Chadd 777692ad7caSAdrian Chadd static __inline void 778692ad7caSAdrian Chadd wpi_prph_write_region_4(struct wpi_softc *sc, uint32_t addr, 779692ad7caSAdrian Chadd const uint32_t *data, int count) 780692ad7caSAdrian Chadd { 781692ad7caSAdrian Chadd for (; count > 0; count--, data++, addr += 4) 782692ad7caSAdrian Chadd wpi_prph_write(sc, addr, *data); 783692ad7caSAdrian Chadd } 784692ad7caSAdrian Chadd 785692ad7caSAdrian Chadd static __inline uint32_t 786692ad7caSAdrian Chadd wpi_mem_read(struct wpi_softc *sc, uint32_t addr) 787692ad7caSAdrian Chadd { 788692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_MEM_RADDR, addr); 789692ad7caSAdrian Chadd WPI_BARRIER_READ_WRITE(sc); 790692ad7caSAdrian Chadd return WPI_READ(sc, WPI_MEM_RDATA); 791692ad7caSAdrian Chadd } 792692ad7caSAdrian Chadd 793692ad7caSAdrian Chadd static __inline void 794692ad7caSAdrian Chadd wpi_mem_read_region_4(struct wpi_softc *sc, uint32_t addr, uint32_t *data, 795692ad7caSAdrian Chadd int count) 796692ad7caSAdrian Chadd { 797692ad7caSAdrian Chadd for (; count > 0; count--, addr += 4) 798692ad7caSAdrian Chadd *data++ = wpi_mem_read(sc, addr); 799692ad7caSAdrian Chadd } 800692ad7caSAdrian Chadd 801692ad7caSAdrian Chadd static int 802692ad7caSAdrian Chadd wpi_read_prom_data(struct wpi_softc *sc, uint32_t addr, void *data, int count) 803692ad7caSAdrian Chadd { 804692ad7caSAdrian Chadd uint8_t *out = data; 805692ad7caSAdrian Chadd uint32_t val; 806692ad7caSAdrian Chadd int error, ntries; 807692ad7caSAdrian Chadd 808692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 809692ad7caSAdrian Chadd 810692ad7caSAdrian Chadd if ((error = wpi_nic_lock(sc)) != 0) 811692ad7caSAdrian Chadd return error; 812692ad7caSAdrian Chadd 813692ad7caSAdrian Chadd for (; count > 0; count -= 2, addr++) { 814692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_EEPROM, addr << 2); 815692ad7caSAdrian Chadd for (ntries = 0; ntries < 10; ntries++) { 816692ad7caSAdrian Chadd val = WPI_READ(sc, WPI_EEPROM); 817692ad7caSAdrian Chadd if (val & WPI_EEPROM_READ_VALID) 818692ad7caSAdrian Chadd break; 819692ad7caSAdrian Chadd DELAY(5); 820692ad7caSAdrian Chadd } 821692ad7caSAdrian Chadd if (ntries == 10) { 822692ad7caSAdrian Chadd device_printf(sc->sc_dev, 823692ad7caSAdrian Chadd "timeout reading ROM at 0x%x\n", addr); 824692ad7caSAdrian Chadd return ETIMEDOUT; 825692ad7caSAdrian Chadd } 826692ad7caSAdrian Chadd *out++= val >> 16; 827692ad7caSAdrian Chadd if (count > 1) 828692ad7caSAdrian Chadd *out ++= val >> 24; 829692ad7caSAdrian Chadd } 830692ad7caSAdrian Chadd 831692ad7caSAdrian Chadd wpi_nic_unlock(sc); 832692ad7caSAdrian Chadd 833692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 834692ad7caSAdrian Chadd 835692ad7caSAdrian Chadd return 0; 836692ad7caSAdrian Chadd } 837692ad7caSAdrian Chadd 838692ad7caSAdrian Chadd static void 839692ad7caSAdrian Chadd wpi_dma_map_addr(void *arg, bus_dma_segment_t *segs, int nsegs, int error) 840692ad7caSAdrian Chadd { 841692ad7caSAdrian Chadd if (error != 0) 842692ad7caSAdrian Chadd return; 843692ad7caSAdrian Chadd KASSERT(nsegs == 1, ("too many DMA segments, %d should be 1", nsegs)); 844692ad7caSAdrian Chadd *(bus_addr_t *)arg = segs[0].ds_addr; 845692ad7caSAdrian Chadd } 846692ad7caSAdrian Chadd 847692ad7caSAdrian Chadd /* 848692ad7caSAdrian Chadd * Allocates a contiguous block of dma memory of the requested size and 849692ad7caSAdrian Chadd * alignment. 850692ad7caSAdrian Chadd */ 851692ad7caSAdrian Chadd static int 852692ad7caSAdrian Chadd wpi_dma_contig_alloc(struct wpi_softc *sc, struct wpi_dma_info *dma, 853692ad7caSAdrian Chadd void **kvap, bus_size_t size, bus_size_t alignment) 854692ad7caSAdrian Chadd { 855692ad7caSAdrian Chadd int error; 856692ad7caSAdrian Chadd 857692ad7caSAdrian Chadd dma->tag = NULL; 858692ad7caSAdrian Chadd dma->size = size; 859692ad7caSAdrian Chadd 860692ad7caSAdrian Chadd error = bus_dma_tag_create(bus_get_dma_tag(sc->sc_dev), alignment, 861692ad7caSAdrian Chadd 0, BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, NULL, NULL, size, 862692ad7caSAdrian Chadd 1, size, BUS_DMA_NOWAIT, NULL, NULL, &dma->tag); 863692ad7caSAdrian Chadd if (error != 0) 864692ad7caSAdrian Chadd goto fail; 865692ad7caSAdrian Chadd 866692ad7caSAdrian Chadd error = bus_dmamem_alloc(dma->tag, (void **)&dma->vaddr, 867692ad7caSAdrian Chadd BUS_DMA_NOWAIT | BUS_DMA_ZERO | BUS_DMA_COHERENT, &dma->map); 868692ad7caSAdrian Chadd if (error != 0) 869692ad7caSAdrian Chadd goto fail; 870692ad7caSAdrian Chadd 871692ad7caSAdrian Chadd error = bus_dmamap_load(dma->tag, dma->map, dma->vaddr, size, 872692ad7caSAdrian Chadd wpi_dma_map_addr, &dma->paddr, BUS_DMA_NOWAIT); 873692ad7caSAdrian Chadd if (error != 0) 874692ad7caSAdrian Chadd goto fail; 875692ad7caSAdrian Chadd 876692ad7caSAdrian Chadd bus_dmamap_sync(dma->tag, dma->map, BUS_DMASYNC_PREWRITE); 877692ad7caSAdrian Chadd 878692ad7caSAdrian Chadd if (kvap != NULL) 879692ad7caSAdrian Chadd *kvap = dma->vaddr; 880692ad7caSAdrian Chadd 881692ad7caSAdrian Chadd return 0; 882692ad7caSAdrian Chadd 883692ad7caSAdrian Chadd fail: wpi_dma_contig_free(dma); 884692ad7caSAdrian Chadd return error; 885692ad7caSAdrian Chadd } 886692ad7caSAdrian Chadd 887692ad7caSAdrian Chadd static void 888692ad7caSAdrian Chadd wpi_dma_contig_free(struct wpi_dma_info *dma) 889692ad7caSAdrian Chadd { 890692ad7caSAdrian Chadd if (dma->vaddr != NULL) { 891692ad7caSAdrian Chadd bus_dmamap_sync(dma->tag, dma->map, 892692ad7caSAdrian Chadd BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE); 893692ad7caSAdrian Chadd bus_dmamap_unload(dma->tag, dma->map); 894692ad7caSAdrian Chadd bus_dmamem_free(dma->tag, dma->vaddr, dma->map); 895692ad7caSAdrian Chadd dma->vaddr = NULL; 896692ad7caSAdrian Chadd } 897692ad7caSAdrian Chadd if (dma->tag != NULL) { 898692ad7caSAdrian Chadd bus_dma_tag_destroy(dma->tag); 899692ad7caSAdrian Chadd dma->tag = NULL; 900692ad7caSAdrian Chadd } 901692ad7caSAdrian Chadd } 902692ad7caSAdrian Chadd 903692ad7caSAdrian Chadd /* 904692ad7caSAdrian Chadd * Allocate a shared page between host and NIC. 905692ad7caSAdrian Chadd */ 906692ad7caSAdrian Chadd static int 907692ad7caSAdrian Chadd wpi_alloc_shared(struct wpi_softc *sc) 908692ad7caSAdrian Chadd { 909692ad7caSAdrian Chadd /* Shared buffer must be aligned on a 4KB boundary. */ 910692ad7caSAdrian Chadd return wpi_dma_contig_alloc(sc, &sc->shared_dma, 911692ad7caSAdrian Chadd (void **)&sc->shared, sizeof (struct wpi_shared), 4096); 912692ad7caSAdrian Chadd } 913692ad7caSAdrian Chadd 914692ad7caSAdrian Chadd static void 915692ad7caSAdrian Chadd wpi_free_shared(struct wpi_softc *sc) 916692ad7caSAdrian Chadd { 917692ad7caSAdrian Chadd wpi_dma_contig_free(&sc->shared_dma); 918692ad7caSAdrian Chadd } 919692ad7caSAdrian Chadd 920692ad7caSAdrian Chadd /* 921692ad7caSAdrian Chadd * Allocate DMA-safe memory for firmware transfer. 922692ad7caSAdrian Chadd */ 923692ad7caSAdrian Chadd static int 924692ad7caSAdrian Chadd wpi_alloc_fwmem(struct wpi_softc *sc) 925692ad7caSAdrian Chadd { 926692ad7caSAdrian Chadd /* Must be aligned on a 16-byte boundary. */ 927692ad7caSAdrian Chadd return wpi_dma_contig_alloc(sc, &sc->fw_dma, NULL, 928692ad7caSAdrian Chadd WPI_FW_TEXT_MAXSZ + WPI_FW_DATA_MAXSZ, 16); 929692ad7caSAdrian Chadd } 930692ad7caSAdrian Chadd 931692ad7caSAdrian Chadd static void 932692ad7caSAdrian Chadd wpi_free_fwmem(struct wpi_softc *sc) 933692ad7caSAdrian Chadd { 934692ad7caSAdrian Chadd wpi_dma_contig_free(&sc->fw_dma); 935692ad7caSAdrian Chadd } 936692ad7caSAdrian Chadd 937692ad7caSAdrian Chadd static int 938692ad7caSAdrian Chadd wpi_alloc_rx_ring(struct wpi_softc *sc) 939692ad7caSAdrian Chadd { 940692ad7caSAdrian Chadd struct wpi_rx_ring *ring = &sc->rxq; 941692ad7caSAdrian Chadd bus_size_t size; 942692ad7caSAdrian Chadd int i, error; 943692ad7caSAdrian Chadd 944692ad7caSAdrian Chadd ring->cur = 0; 945692ad7caSAdrian Chadd ring->update = 0; 946692ad7caSAdrian Chadd 947692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 948692ad7caSAdrian Chadd 949692ad7caSAdrian Chadd /* Allocate RX descriptors (16KB aligned.) */ 950692ad7caSAdrian Chadd size = WPI_RX_RING_COUNT * sizeof (uint32_t); 951692ad7caSAdrian Chadd error = wpi_dma_contig_alloc(sc, &ring->desc_dma, 952692ad7caSAdrian Chadd (void **)&ring->desc, size, WPI_RING_DMA_ALIGN); 953692ad7caSAdrian Chadd if (error != 0) { 954692ad7caSAdrian Chadd device_printf(sc->sc_dev, 955692ad7caSAdrian Chadd "%s: could not allocate RX ring DMA memory, error %d\n", 956692ad7caSAdrian Chadd __func__, error); 957692ad7caSAdrian Chadd goto fail; 958692ad7caSAdrian Chadd } 959692ad7caSAdrian Chadd 960692ad7caSAdrian Chadd /* Create RX buffer DMA tag. */ 961692ad7caSAdrian Chadd error = bus_dma_tag_create(bus_get_dma_tag(sc->sc_dev), 1, 0, 962692ad7caSAdrian Chadd BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, NULL, NULL, 963692ad7caSAdrian Chadd MJUMPAGESIZE, 1, MJUMPAGESIZE, BUS_DMA_NOWAIT, NULL, NULL, 964692ad7caSAdrian Chadd &ring->data_dmat); 965692ad7caSAdrian Chadd if (error != 0) { 966692ad7caSAdrian Chadd device_printf(sc->sc_dev, 967692ad7caSAdrian Chadd "%s: could not create RX buf DMA tag, error %d\n", 968692ad7caSAdrian Chadd __func__, error); 969692ad7caSAdrian Chadd goto fail; 970692ad7caSAdrian Chadd } 971692ad7caSAdrian Chadd 972692ad7caSAdrian Chadd /* 973692ad7caSAdrian Chadd * Allocate and map RX buffers. 974692ad7caSAdrian Chadd */ 975692ad7caSAdrian Chadd for (i = 0; i < WPI_RX_RING_COUNT; i++) { 976692ad7caSAdrian Chadd struct wpi_rx_data *data = &ring->data[i]; 977692ad7caSAdrian Chadd bus_addr_t paddr; 978692ad7caSAdrian Chadd 979692ad7caSAdrian Chadd error = bus_dmamap_create(ring->data_dmat, 0, &data->map); 980692ad7caSAdrian Chadd if (error != 0) { 981692ad7caSAdrian Chadd device_printf(sc->sc_dev, 982692ad7caSAdrian Chadd "%s: could not create RX buf DMA map, error %d\n", 983692ad7caSAdrian Chadd __func__, error); 984692ad7caSAdrian Chadd goto fail; 985692ad7caSAdrian Chadd } 986692ad7caSAdrian Chadd 987692ad7caSAdrian Chadd data->m = m_getjcl(M_NOWAIT, MT_DATA, M_PKTHDR, MJUMPAGESIZE); 988692ad7caSAdrian Chadd if (data->m == NULL) { 989692ad7caSAdrian Chadd device_printf(sc->sc_dev, 990692ad7caSAdrian Chadd "%s: could not allocate RX mbuf\n", __func__); 991692ad7caSAdrian Chadd error = ENOBUFS; 992692ad7caSAdrian Chadd goto fail; 993692ad7caSAdrian Chadd } 994692ad7caSAdrian Chadd 995692ad7caSAdrian Chadd error = bus_dmamap_load(ring->data_dmat, data->map, 996692ad7caSAdrian Chadd mtod(data->m, void *), MJUMPAGESIZE, wpi_dma_map_addr, 997692ad7caSAdrian Chadd &paddr, BUS_DMA_NOWAIT); 998692ad7caSAdrian Chadd if (error != 0 && error != EFBIG) { 999692ad7caSAdrian Chadd device_printf(sc->sc_dev, 1000692ad7caSAdrian Chadd "%s: can't map mbuf (error %d)\n", __func__, 1001692ad7caSAdrian Chadd error); 1002692ad7caSAdrian Chadd goto fail; 1003692ad7caSAdrian Chadd } 1004692ad7caSAdrian Chadd 1005692ad7caSAdrian Chadd /* Set physical address of RX buffer. */ 1006692ad7caSAdrian Chadd ring->desc[i] = htole32(paddr); 1007692ad7caSAdrian Chadd } 1008692ad7caSAdrian Chadd 1009692ad7caSAdrian Chadd bus_dmamap_sync(ring->desc_dma.tag, ring->desc_dma.map, 1010692ad7caSAdrian Chadd BUS_DMASYNC_PREWRITE); 1011692ad7caSAdrian Chadd 1012692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 1013692ad7caSAdrian Chadd 1014692ad7caSAdrian Chadd return 0; 1015692ad7caSAdrian Chadd 1016692ad7caSAdrian Chadd fail: wpi_free_rx_ring(sc); 1017692ad7caSAdrian Chadd 1018692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END_ERR, __func__); 1019692ad7caSAdrian Chadd 1020692ad7caSAdrian Chadd return error; 1021692ad7caSAdrian Chadd } 1022692ad7caSAdrian Chadd 1023692ad7caSAdrian Chadd static void 1024692ad7caSAdrian Chadd wpi_update_rx_ring(struct wpi_softc *sc) 1025692ad7caSAdrian Chadd { 1026692ad7caSAdrian Chadd struct wpi_rx_ring *ring = &sc->rxq; 1027692ad7caSAdrian Chadd 1028692ad7caSAdrian Chadd if (WPI_READ(sc, WPI_UCODE_GP1) & WPI_UCODE_GP1_MAC_SLEEP) { 1029692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_PWRSAVE, "%s: wakeup request\n", 1030692ad7caSAdrian Chadd __func__); 1031692ad7caSAdrian Chadd 1032692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_GP_CNTRL, WPI_GP_CNTRL_MAC_ACCESS_REQ); 1033692ad7caSAdrian Chadd ring->update = 1; 1034692ad7caSAdrian Chadd } else 1035692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_FH_RX_WPTR, ring->cur & ~7); 1036692ad7caSAdrian Chadd } 1037692ad7caSAdrian Chadd 1038692ad7caSAdrian Chadd static void 1039692ad7caSAdrian Chadd wpi_reset_rx_ring(struct wpi_softc *sc) 1040692ad7caSAdrian Chadd { 1041692ad7caSAdrian Chadd struct wpi_rx_ring *ring = &sc->rxq; 1042692ad7caSAdrian Chadd int ntries; 1043692ad7caSAdrian Chadd 1044692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 1045692ad7caSAdrian Chadd 1046692ad7caSAdrian Chadd if (wpi_nic_lock(sc) == 0) { 1047692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_FH_RX_CONFIG, 0); 1048692ad7caSAdrian Chadd for (ntries = 0; ntries < 1000; ntries++) { 1049692ad7caSAdrian Chadd if (WPI_READ(sc, WPI_FH_RX_STATUS) & 1050692ad7caSAdrian Chadd WPI_FH_RX_STATUS_IDLE) 1051692ad7caSAdrian Chadd break; 1052692ad7caSAdrian Chadd DELAY(10); 1053692ad7caSAdrian Chadd } 1054692ad7caSAdrian Chadd #ifdef WPI_DEBUG 1055692ad7caSAdrian Chadd if (ntries == 1000) { 1056692ad7caSAdrian Chadd device_printf(sc->sc_dev, 1057692ad7caSAdrian Chadd "timeout resetting Rx ring\n"); 1058692ad7caSAdrian Chadd } 1059692ad7caSAdrian Chadd #endif 1060692ad7caSAdrian Chadd wpi_nic_unlock(sc); 1061692ad7caSAdrian Chadd } 1062692ad7caSAdrian Chadd 1063692ad7caSAdrian Chadd ring->cur = 0; 1064692ad7caSAdrian Chadd ring->update = 0; 1065692ad7caSAdrian Chadd } 1066692ad7caSAdrian Chadd 1067692ad7caSAdrian Chadd static void 1068692ad7caSAdrian Chadd wpi_free_rx_ring(struct wpi_softc *sc) 1069692ad7caSAdrian Chadd { 1070692ad7caSAdrian Chadd struct wpi_rx_ring *ring = &sc->rxq; 1071692ad7caSAdrian Chadd int i; 1072692ad7caSAdrian Chadd 1073692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 1074692ad7caSAdrian Chadd 1075692ad7caSAdrian Chadd wpi_dma_contig_free(&ring->desc_dma); 1076692ad7caSAdrian Chadd 1077692ad7caSAdrian Chadd for (i = 0; i < WPI_RX_RING_COUNT; i++) { 1078692ad7caSAdrian Chadd struct wpi_rx_data *data = &ring->data[i]; 1079692ad7caSAdrian Chadd 1080692ad7caSAdrian Chadd if (data->m != NULL) { 1081692ad7caSAdrian Chadd bus_dmamap_sync(ring->data_dmat, data->map, 1082692ad7caSAdrian Chadd BUS_DMASYNC_POSTREAD); 1083692ad7caSAdrian Chadd bus_dmamap_unload(ring->data_dmat, data->map); 1084692ad7caSAdrian Chadd m_freem(data->m); 1085692ad7caSAdrian Chadd data->m = NULL; 1086692ad7caSAdrian Chadd } 1087692ad7caSAdrian Chadd if (data->map != NULL) 1088692ad7caSAdrian Chadd bus_dmamap_destroy(ring->data_dmat, data->map); 1089692ad7caSAdrian Chadd } 1090692ad7caSAdrian Chadd if (ring->data_dmat != NULL) { 1091692ad7caSAdrian Chadd bus_dma_tag_destroy(ring->data_dmat); 1092692ad7caSAdrian Chadd ring->data_dmat = NULL; 1093692ad7caSAdrian Chadd } 1094692ad7caSAdrian Chadd } 1095692ad7caSAdrian Chadd 1096692ad7caSAdrian Chadd static int 1097692ad7caSAdrian Chadd wpi_alloc_tx_ring(struct wpi_softc *sc, struct wpi_tx_ring *ring, int qid) 1098692ad7caSAdrian Chadd { 1099692ad7caSAdrian Chadd bus_addr_t paddr; 1100692ad7caSAdrian Chadd bus_size_t size; 1101692ad7caSAdrian Chadd int i, error; 1102692ad7caSAdrian Chadd 1103692ad7caSAdrian Chadd ring->qid = qid; 1104692ad7caSAdrian Chadd ring->queued = 0; 1105692ad7caSAdrian Chadd ring->cur = 0; 1106692ad7caSAdrian Chadd ring->update = 0; 1107692ad7caSAdrian Chadd 1108692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 1109692ad7caSAdrian Chadd 1110692ad7caSAdrian Chadd /* Allocate TX descriptors (16KB aligned.) */ 1111692ad7caSAdrian Chadd size = WPI_TX_RING_COUNT * sizeof (struct wpi_tx_desc); 1112692ad7caSAdrian Chadd error = wpi_dma_contig_alloc(sc, &ring->desc_dma, (void **)&ring->desc, 1113692ad7caSAdrian Chadd size, WPI_RING_DMA_ALIGN); 1114692ad7caSAdrian Chadd if (error != 0) { 1115692ad7caSAdrian Chadd device_printf(sc->sc_dev, 1116692ad7caSAdrian Chadd "%s: could not allocate TX ring DMA memory, error %d\n", 1117692ad7caSAdrian Chadd __func__, error); 1118692ad7caSAdrian Chadd goto fail; 1119692ad7caSAdrian Chadd } 1120692ad7caSAdrian Chadd 1121692ad7caSAdrian Chadd /* Update shared area with ring physical address. */ 1122692ad7caSAdrian Chadd sc->shared->txbase[qid] = htole32(ring->desc_dma.paddr); 1123692ad7caSAdrian Chadd bus_dmamap_sync(sc->shared_dma.tag, sc->shared_dma.map, 1124692ad7caSAdrian Chadd BUS_DMASYNC_PREWRITE); 1125692ad7caSAdrian Chadd 1126692ad7caSAdrian Chadd /* 1127692ad7caSAdrian Chadd * We only use rings 0 through 4 (4 EDCA + cmd) so there is no need 1128692ad7caSAdrian Chadd * to allocate commands space for other rings. 1129692ad7caSAdrian Chadd * XXX Do we really need to allocate descriptors for other rings? 1130692ad7caSAdrian Chadd */ 1131692ad7caSAdrian Chadd if (qid > 4) 1132692ad7caSAdrian Chadd return 0; 1133692ad7caSAdrian Chadd 1134692ad7caSAdrian Chadd size = WPI_TX_RING_COUNT * sizeof (struct wpi_tx_cmd); 1135692ad7caSAdrian Chadd error = wpi_dma_contig_alloc(sc, &ring->cmd_dma, (void **)&ring->cmd, 1136692ad7caSAdrian Chadd size, 4); 1137692ad7caSAdrian Chadd if (error != 0) { 1138692ad7caSAdrian Chadd device_printf(sc->sc_dev, 1139692ad7caSAdrian Chadd "%s: could not allocate TX cmd DMA memory, error %d\n", 1140692ad7caSAdrian Chadd __func__, error); 1141692ad7caSAdrian Chadd goto fail; 1142692ad7caSAdrian Chadd } 1143692ad7caSAdrian Chadd 1144692ad7caSAdrian Chadd error = bus_dma_tag_create(bus_get_dma_tag(sc->sc_dev), 1, 0, 1145692ad7caSAdrian Chadd BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, NULL, NULL, MCLBYTES, 1146692ad7caSAdrian Chadd WPI_MAX_SCATTER - 1, MCLBYTES, BUS_DMA_NOWAIT, NULL, NULL, 1147692ad7caSAdrian Chadd &ring->data_dmat); 1148692ad7caSAdrian Chadd if (error != 0) { 1149692ad7caSAdrian Chadd device_printf(sc->sc_dev, 1150692ad7caSAdrian Chadd "%s: could not create TX buf DMA tag, error %d\n", 1151692ad7caSAdrian Chadd __func__, error); 1152692ad7caSAdrian Chadd goto fail; 1153692ad7caSAdrian Chadd } 1154692ad7caSAdrian Chadd 1155692ad7caSAdrian Chadd paddr = ring->cmd_dma.paddr; 1156692ad7caSAdrian Chadd for (i = 0; i < WPI_TX_RING_COUNT; i++) { 1157692ad7caSAdrian Chadd struct wpi_tx_data *data = &ring->data[i]; 1158692ad7caSAdrian Chadd 1159692ad7caSAdrian Chadd data->cmd_paddr = paddr; 1160692ad7caSAdrian Chadd paddr += sizeof (struct wpi_tx_cmd); 1161692ad7caSAdrian Chadd 1162692ad7caSAdrian Chadd error = bus_dmamap_create(ring->data_dmat, 0, &data->map); 1163692ad7caSAdrian Chadd if (error != 0) { 1164692ad7caSAdrian Chadd device_printf(sc->sc_dev, 1165692ad7caSAdrian Chadd "%s: could not create TX buf DMA map, error %d\n", 1166692ad7caSAdrian Chadd __func__, error); 1167692ad7caSAdrian Chadd goto fail; 1168692ad7caSAdrian Chadd } 1169692ad7caSAdrian Chadd } 1170692ad7caSAdrian Chadd 1171692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 1172692ad7caSAdrian Chadd 1173692ad7caSAdrian Chadd return 0; 1174692ad7caSAdrian Chadd 1175692ad7caSAdrian Chadd fail: wpi_free_tx_ring(sc, ring); 1176692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END_ERR, __func__); 1177692ad7caSAdrian Chadd return error; 1178692ad7caSAdrian Chadd } 1179692ad7caSAdrian Chadd 1180692ad7caSAdrian Chadd static void 1181692ad7caSAdrian Chadd wpi_update_tx_ring(struct wpi_softc *sc, struct wpi_tx_ring *ring) 1182692ad7caSAdrian Chadd { 1183692ad7caSAdrian Chadd if (WPI_READ(sc, WPI_UCODE_GP1) & WPI_UCODE_GP1_MAC_SLEEP) { 1184692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_PWRSAVE, "%s (%d): requesting wakeup\n", 1185692ad7caSAdrian Chadd __func__, ring->qid); 1186692ad7caSAdrian Chadd 1187692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_GP_CNTRL, WPI_GP_CNTRL_MAC_ACCESS_REQ); 1188692ad7caSAdrian Chadd ring->update = 1; 1189692ad7caSAdrian Chadd } else 1190692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_HBUS_TARG_WRPTR, ring->qid << 8 | ring->cur); 1191692ad7caSAdrian Chadd } 1192692ad7caSAdrian Chadd 1193692ad7caSAdrian Chadd static void 1194692ad7caSAdrian Chadd wpi_reset_tx_ring(struct wpi_softc *sc, struct wpi_tx_ring *ring) 1195692ad7caSAdrian Chadd { 1196692ad7caSAdrian Chadd int i; 1197692ad7caSAdrian Chadd 1198692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 1199692ad7caSAdrian Chadd 1200692ad7caSAdrian Chadd for (i = 0; i < WPI_TX_RING_COUNT; i++) { 1201692ad7caSAdrian Chadd struct wpi_tx_data *data = &ring->data[i]; 1202692ad7caSAdrian Chadd 1203692ad7caSAdrian Chadd if (data->m != NULL) { 1204692ad7caSAdrian Chadd bus_dmamap_sync(ring->data_dmat, data->map, 1205692ad7caSAdrian Chadd BUS_DMASYNC_POSTWRITE); 1206692ad7caSAdrian Chadd bus_dmamap_unload(ring->data_dmat, data->map); 1207692ad7caSAdrian Chadd m_freem(data->m); 1208692ad7caSAdrian Chadd data->m = NULL; 1209692ad7caSAdrian Chadd } 1210692ad7caSAdrian Chadd } 1211692ad7caSAdrian Chadd /* Clear TX descriptors. */ 1212692ad7caSAdrian Chadd memset(ring->desc, 0, ring->desc_dma.size); 1213692ad7caSAdrian Chadd bus_dmamap_sync(ring->desc_dma.tag, ring->desc_dma.map, 1214692ad7caSAdrian Chadd BUS_DMASYNC_PREWRITE); 1215692ad7caSAdrian Chadd sc->qfullmsk &= ~(1 << ring->qid); 1216692ad7caSAdrian Chadd ring->queued = 0; 1217692ad7caSAdrian Chadd ring->cur = 0; 1218692ad7caSAdrian Chadd ring->update = 0; 1219692ad7caSAdrian Chadd } 1220692ad7caSAdrian Chadd 1221692ad7caSAdrian Chadd static void 1222692ad7caSAdrian Chadd wpi_free_tx_ring(struct wpi_softc *sc, struct wpi_tx_ring *ring) 1223692ad7caSAdrian Chadd { 1224692ad7caSAdrian Chadd int i; 1225692ad7caSAdrian Chadd 1226692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 1227692ad7caSAdrian Chadd 1228692ad7caSAdrian Chadd wpi_dma_contig_free(&ring->desc_dma); 1229692ad7caSAdrian Chadd wpi_dma_contig_free(&ring->cmd_dma); 1230692ad7caSAdrian Chadd 1231692ad7caSAdrian Chadd for (i = 0; i < WPI_TX_RING_COUNT; i++) { 1232692ad7caSAdrian Chadd struct wpi_tx_data *data = &ring->data[i]; 1233692ad7caSAdrian Chadd 1234692ad7caSAdrian Chadd if (data->m != NULL) { 1235692ad7caSAdrian Chadd bus_dmamap_sync(ring->data_dmat, data->map, 1236692ad7caSAdrian Chadd BUS_DMASYNC_POSTWRITE); 1237692ad7caSAdrian Chadd bus_dmamap_unload(ring->data_dmat, data->map); 1238692ad7caSAdrian Chadd m_freem(data->m); 1239692ad7caSAdrian Chadd } 1240692ad7caSAdrian Chadd if (data->map != NULL) 1241692ad7caSAdrian Chadd bus_dmamap_destroy(ring->data_dmat, data->map); 1242692ad7caSAdrian Chadd } 1243692ad7caSAdrian Chadd if (ring->data_dmat != NULL) { 1244692ad7caSAdrian Chadd bus_dma_tag_destroy(ring->data_dmat); 1245692ad7caSAdrian Chadd ring->data_dmat = NULL; 1246692ad7caSAdrian Chadd } 1247692ad7caSAdrian Chadd } 1248692ad7caSAdrian Chadd 1249692ad7caSAdrian Chadd /* 1250692ad7caSAdrian Chadd * Extract various information from EEPROM. 1251692ad7caSAdrian Chadd */ 1252692ad7caSAdrian Chadd static int 1253692ad7caSAdrian Chadd wpi_read_eeprom(struct wpi_softc *sc, uint8_t macaddr[IEEE80211_ADDR_LEN]) 1254692ad7caSAdrian Chadd { 1255692ad7caSAdrian Chadd #define WPI_CHK(res) do { \ 1256692ad7caSAdrian Chadd if ((error = res) != 0) \ 1257692ad7caSAdrian Chadd goto fail; \ 1258692ad7caSAdrian Chadd } while (0) 1259692ad7caSAdrian Chadd int error, i; 1260692ad7caSAdrian Chadd 1261692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 1262692ad7caSAdrian Chadd 1263692ad7caSAdrian Chadd /* Adapter has to be powered on for EEPROM access to work. */ 1264692ad7caSAdrian Chadd if ((error = wpi_apm_init(sc)) != 0) { 1265692ad7caSAdrian Chadd device_printf(sc->sc_dev, 1266692ad7caSAdrian Chadd "%s: could not power ON adapter, error %d\n", __func__, 1267692ad7caSAdrian Chadd error); 1268692ad7caSAdrian Chadd return error; 1269692ad7caSAdrian Chadd } 1270692ad7caSAdrian Chadd 1271692ad7caSAdrian Chadd if ((WPI_READ(sc, WPI_EEPROM_GP) & 0x6) == 0) { 1272692ad7caSAdrian Chadd device_printf(sc->sc_dev, "bad EEPROM signature\n"); 1273692ad7caSAdrian Chadd error = EIO; 1274692ad7caSAdrian Chadd goto fail; 1275692ad7caSAdrian Chadd } 1276692ad7caSAdrian Chadd /* Clear HW ownership of EEPROM. */ 1277692ad7caSAdrian Chadd WPI_CLRBITS(sc, WPI_EEPROM_GP, WPI_EEPROM_GP_IF_OWNER); 1278692ad7caSAdrian Chadd 1279692ad7caSAdrian Chadd /* Read the hardware capabilities, revision and SKU type. */ 1280692ad7caSAdrian Chadd WPI_CHK(wpi_read_prom_data(sc, WPI_EEPROM_SKU_CAP, &sc->cap, 1281692ad7caSAdrian Chadd sizeof(sc->cap))); 1282692ad7caSAdrian Chadd WPI_CHK(wpi_read_prom_data(sc, WPI_EEPROM_REVISION, &sc->rev, 1283692ad7caSAdrian Chadd sizeof(sc->rev))); 1284692ad7caSAdrian Chadd WPI_CHK(wpi_read_prom_data(sc, WPI_EEPROM_TYPE, &sc->type, 1285692ad7caSAdrian Chadd sizeof(sc->type))); 1286692ad7caSAdrian Chadd 1287692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_EEPROM, "cap=%x rev=%x type=%x\n", sc->cap, le16toh(sc->rev), 1288692ad7caSAdrian Chadd sc->type); 1289692ad7caSAdrian Chadd 1290692ad7caSAdrian Chadd /* Read the regulatory domain (4 ASCII characters.) */ 1291692ad7caSAdrian Chadd WPI_CHK(wpi_read_prom_data(sc, WPI_EEPROM_DOMAIN, sc->domain, 1292692ad7caSAdrian Chadd sizeof(sc->domain))); 1293692ad7caSAdrian Chadd 1294692ad7caSAdrian Chadd /* Read MAC address. */ 1295692ad7caSAdrian Chadd WPI_CHK(wpi_read_prom_data(sc, WPI_EEPROM_MAC, macaddr, 1296692ad7caSAdrian Chadd IEEE80211_ADDR_LEN)); 1297692ad7caSAdrian Chadd 1298692ad7caSAdrian Chadd /* Read the list of authorized channels. */ 1299692ad7caSAdrian Chadd for (i = 0; i < WPI_CHAN_BANDS_COUNT; i++) 1300692ad7caSAdrian Chadd WPI_CHK(wpi_read_eeprom_channels(sc, i)); 1301692ad7caSAdrian Chadd 1302692ad7caSAdrian Chadd /* Read the list of TX power groups. */ 1303692ad7caSAdrian Chadd for (i = 0; i < WPI_POWER_GROUPS_COUNT; i++) 1304692ad7caSAdrian Chadd WPI_CHK(wpi_read_eeprom_group(sc, i)); 1305692ad7caSAdrian Chadd 1306692ad7caSAdrian Chadd fail: wpi_apm_stop(sc); /* Power OFF adapter. */ 1307692ad7caSAdrian Chadd 1308692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, error ? TRACE_STR_END_ERR : TRACE_STR_END, 1309692ad7caSAdrian Chadd __func__); 1310692ad7caSAdrian Chadd 1311692ad7caSAdrian Chadd return error; 1312692ad7caSAdrian Chadd #undef WPI_CHK 1313692ad7caSAdrian Chadd } 1314692ad7caSAdrian Chadd 1315692ad7caSAdrian Chadd /* 1316692ad7caSAdrian Chadd * Translate EEPROM flags to net80211. 1317692ad7caSAdrian Chadd */ 1318692ad7caSAdrian Chadd static uint32_t 1319692ad7caSAdrian Chadd wpi_eeprom_channel_flags(struct wpi_eeprom_chan *channel) 1320692ad7caSAdrian Chadd { 1321692ad7caSAdrian Chadd uint32_t nflags; 1322692ad7caSAdrian Chadd 1323692ad7caSAdrian Chadd nflags = 0; 1324692ad7caSAdrian Chadd if ((channel->flags & WPI_EEPROM_CHAN_ACTIVE) == 0) 1325692ad7caSAdrian Chadd nflags |= IEEE80211_CHAN_PASSIVE; 1326692ad7caSAdrian Chadd if ((channel->flags & WPI_EEPROM_CHAN_IBSS) == 0) 1327692ad7caSAdrian Chadd nflags |= IEEE80211_CHAN_NOADHOC; 1328692ad7caSAdrian Chadd if (channel->flags & WPI_EEPROM_CHAN_RADAR) { 1329692ad7caSAdrian Chadd nflags |= IEEE80211_CHAN_DFS; 1330692ad7caSAdrian Chadd /* XXX apparently IBSS may still be marked */ 1331692ad7caSAdrian Chadd nflags |= IEEE80211_CHAN_NOADHOC; 1332692ad7caSAdrian Chadd } 1333692ad7caSAdrian Chadd 1334692ad7caSAdrian Chadd return nflags; 1335692ad7caSAdrian Chadd } 1336692ad7caSAdrian Chadd 1337692ad7caSAdrian Chadd static void 1338692ad7caSAdrian Chadd wpi_read_eeprom_band(struct wpi_softc *sc, int n) 1339692ad7caSAdrian Chadd { 1340692ad7caSAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 1341692ad7caSAdrian Chadd struct ieee80211com *ic = ifp->if_l2com; 1342692ad7caSAdrian Chadd struct wpi_eeprom_chan *channels = sc->eeprom_channels[n]; 1343692ad7caSAdrian Chadd const struct wpi_chan_band *band = &wpi_bands[n]; 1344692ad7caSAdrian Chadd struct ieee80211_channel *c; 1345692ad7caSAdrian Chadd uint8_t chan; 1346692ad7caSAdrian Chadd int i, nflags; 1347692ad7caSAdrian Chadd 1348692ad7caSAdrian Chadd for (i = 0; i < band->nchan; i++) { 1349692ad7caSAdrian Chadd if (!(channels[i].flags & WPI_EEPROM_CHAN_VALID)) { 1350692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_HW, 1351692ad7caSAdrian Chadd "Channel Not Valid: %d, band %d\n", 1352692ad7caSAdrian Chadd band->chan[i],n); 1353692ad7caSAdrian Chadd continue; 1354692ad7caSAdrian Chadd } 1355692ad7caSAdrian Chadd 1356692ad7caSAdrian Chadd chan = band->chan[i]; 1357692ad7caSAdrian Chadd nflags = wpi_eeprom_channel_flags(&channels[i]); 1358692ad7caSAdrian Chadd 1359692ad7caSAdrian Chadd c = &ic->ic_channels[ic->ic_nchans++]; 1360692ad7caSAdrian Chadd c->ic_ieee = chan; 1361692ad7caSAdrian Chadd c->ic_maxregpower = channels[i].maxpwr; 1362692ad7caSAdrian Chadd c->ic_maxpower = 2*c->ic_maxregpower; 1363692ad7caSAdrian Chadd 1364692ad7caSAdrian Chadd if (n == 0) { /* 2GHz band */ 1365692ad7caSAdrian Chadd c->ic_freq = ieee80211_ieee2mhz(chan, IEEE80211_CHAN_G); 1366692ad7caSAdrian Chadd /* G =>'s B is supported */ 1367692ad7caSAdrian Chadd c->ic_flags = IEEE80211_CHAN_B | nflags; 1368692ad7caSAdrian Chadd c = &ic->ic_channels[ic->ic_nchans++]; 1369692ad7caSAdrian Chadd c[0] = c[-1]; 1370692ad7caSAdrian Chadd c->ic_flags = IEEE80211_CHAN_G | nflags; 1371692ad7caSAdrian Chadd } else { /* 5GHz band */ 1372692ad7caSAdrian Chadd c->ic_freq = ieee80211_ieee2mhz(chan, IEEE80211_CHAN_A); 1373692ad7caSAdrian Chadd c->ic_flags = IEEE80211_CHAN_A | nflags; 1374692ad7caSAdrian Chadd } 1375692ad7caSAdrian Chadd 1376692ad7caSAdrian Chadd /* Save maximum allowed TX power for this channel. */ 1377692ad7caSAdrian Chadd sc->maxpwr[chan] = channels[i].maxpwr; 1378692ad7caSAdrian Chadd 1379692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_EEPROM, 1380692ad7caSAdrian Chadd "adding chan %d (%dMHz) flags=0x%x maxpwr=%d passive=%d," 1381692ad7caSAdrian Chadd " offset %d\n", chan, c->ic_freq, 1382692ad7caSAdrian Chadd channels[i].flags, sc->maxpwr[chan], 1383*fae61c69SAdrian Chadd IEEE80211_IS_CHAN_PASSIVE(c), ic->ic_nchans); 1384692ad7caSAdrian Chadd } 1385692ad7caSAdrian Chadd } 1386692ad7caSAdrian Chadd 1387692ad7caSAdrian Chadd /** 1388692ad7caSAdrian Chadd * Read the eeprom to find out what channels are valid for the given 1389692ad7caSAdrian Chadd * band and update net80211 with what we find. 1390692ad7caSAdrian Chadd */ 1391692ad7caSAdrian Chadd static int 1392692ad7caSAdrian Chadd wpi_read_eeprom_channels(struct wpi_softc *sc, int n) 1393692ad7caSAdrian Chadd { 1394692ad7caSAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 1395692ad7caSAdrian Chadd struct ieee80211com *ic = ifp->if_l2com; 1396692ad7caSAdrian Chadd const struct wpi_chan_band *band = &wpi_bands[n]; 1397692ad7caSAdrian Chadd int error; 1398692ad7caSAdrian Chadd 1399692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 1400692ad7caSAdrian Chadd 1401692ad7caSAdrian Chadd error = wpi_read_prom_data(sc, band->addr, &sc->eeprom_channels[n], 1402692ad7caSAdrian Chadd band->nchan * sizeof (struct wpi_eeprom_chan)); 1403692ad7caSAdrian Chadd if (error != 0) { 1404692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END_ERR, __func__); 1405692ad7caSAdrian Chadd return error; 1406692ad7caSAdrian Chadd } 1407692ad7caSAdrian Chadd 1408692ad7caSAdrian Chadd wpi_read_eeprom_band(sc, n); 1409692ad7caSAdrian Chadd 1410692ad7caSAdrian Chadd ieee80211_sort_channels(ic->ic_channels, ic->ic_nchans); 1411692ad7caSAdrian Chadd 1412692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 1413692ad7caSAdrian Chadd 1414692ad7caSAdrian Chadd return 0; 1415692ad7caSAdrian Chadd } 1416692ad7caSAdrian Chadd 1417692ad7caSAdrian Chadd static struct wpi_eeprom_chan * 1418692ad7caSAdrian Chadd wpi_find_eeprom_channel(struct wpi_softc *sc, struct ieee80211_channel *c) 1419692ad7caSAdrian Chadd { 1420692ad7caSAdrian Chadd int i, j; 1421692ad7caSAdrian Chadd 1422692ad7caSAdrian Chadd for (j = 0; j < WPI_CHAN_BANDS_COUNT; j++) 1423692ad7caSAdrian Chadd for (i = 0; i < wpi_bands[j].nchan; i++) 1424692ad7caSAdrian Chadd if (wpi_bands[j].chan[i] == c->ic_ieee) 1425692ad7caSAdrian Chadd return &sc->eeprom_channels[j][i]; 1426692ad7caSAdrian Chadd 1427692ad7caSAdrian Chadd return NULL; 1428692ad7caSAdrian Chadd } 1429692ad7caSAdrian Chadd 1430692ad7caSAdrian Chadd /* 1431692ad7caSAdrian Chadd * Enforce flags read from EEPROM. 1432692ad7caSAdrian Chadd */ 1433692ad7caSAdrian Chadd static int 1434692ad7caSAdrian Chadd wpi_setregdomain(struct ieee80211com *ic, struct ieee80211_regdomain *rd, 1435692ad7caSAdrian Chadd int nchan, struct ieee80211_channel chans[]) 1436692ad7caSAdrian Chadd { 1437692ad7caSAdrian Chadd struct ifnet *ifp = ic->ic_ifp; 1438692ad7caSAdrian Chadd struct wpi_softc *sc = ifp->if_softc; 1439692ad7caSAdrian Chadd int i; 1440692ad7caSAdrian Chadd 1441692ad7caSAdrian Chadd for (i = 0; i < nchan; i++) { 1442692ad7caSAdrian Chadd struct ieee80211_channel *c = &chans[i]; 1443692ad7caSAdrian Chadd struct wpi_eeprom_chan *channel; 1444692ad7caSAdrian Chadd 1445692ad7caSAdrian Chadd channel = wpi_find_eeprom_channel(sc, c); 1446692ad7caSAdrian Chadd if (channel == NULL) { 1447692ad7caSAdrian Chadd if_printf(ic->ic_ifp, 1448692ad7caSAdrian Chadd "%s: invalid channel %u freq %u/0x%x\n", 1449692ad7caSAdrian Chadd __func__, c->ic_ieee, c->ic_freq, c->ic_flags); 1450692ad7caSAdrian Chadd return EINVAL; 1451692ad7caSAdrian Chadd } 1452692ad7caSAdrian Chadd c->ic_flags |= wpi_eeprom_channel_flags(channel); 1453692ad7caSAdrian Chadd } 1454692ad7caSAdrian Chadd 1455692ad7caSAdrian Chadd return 0; 1456692ad7caSAdrian Chadd } 1457692ad7caSAdrian Chadd 1458692ad7caSAdrian Chadd static int 1459692ad7caSAdrian Chadd wpi_read_eeprom_group(struct wpi_softc *sc, int n) 1460692ad7caSAdrian Chadd { 1461692ad7caSAdrian Chadd struct wpi_power_group *group = &sc->groups[n]; 1462692ad7caSAdrian Chadd struct wpi_eeprom_group rgroup; 1463692ad7caSAdrian Chadd int i, error; 1464692ad7caSAdrian Chadd 1465692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 1466692ad7caSAdrian Chadd 1467692ad7caSAdrian Chadd if ((error = wpi_read_prom_data(sc, WPI_EEPROM_POWER_GRP + n * 32, 1468692ad7caSAdrian Chadd &rgroup, sizeof rgroup)) != 0) { 1469692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END_ERR, __func__); 1470692ad7caSAdrian Chadd return error; 1471692ad7caSAdrian Chadd } 1472692ad7caSAdrian Chadd 1473692ad7caSAdrian Chadd /* Save TX power group information. */ 1474692ad7caSAdrian Chadd group->chan = rgroup.chan; 1475692ad7caSAdrian Chadd group->maxpwr = rgroup.maxpwr; 1476692ad7caSAdrian Chadd /* Retrieve temperature at which the samples were taken. */ 1477692ad7caSAdrian Chadd group->temp = (int16_t)le16toh(rgroup.temp); 1478692ad7caSAdrian Chadd 1479692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_EEPROM, 1480692ad7caSAdrian Chadd "power group %d: chan=%d maxpwr=%d temp=%d\n", n, group->chan, 1481692ad7caSAdrian Chadd group->maxpwr, group->temp); 1482692ad7caSAdrian Chadd 1483692ad7caSAdrian Chadd for (i = 0; i < WPI_SAMPLES_COUNT; i++) { 1484692ad7caSAdrian Chadd group->samples[i].index = rgroup.samples[i].index; 1485692ad7caSAdrian Chadd group->samples[i].power = rgroup.samples[i].power; 1486692ad7caSAdrian Chadd 1487692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_EEPROM, 1488692ad7caSAdrian Chadd "\tsample %d: index=%d power=%d\n", i, 1489692ad7caSAdrian Chadd group->samples[i].index, group->samples[i].power); 1490692ad7caSAdrian Chadd } 1491692ad7caSAdrian Chadd 1492692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 1493692ad7caSAdrian Chadd 1494692ad7caSAdrian Chadd return 0; 1495692ad7caSAdrian Chadd } 1496692ad7caSAdrian Chadd 1497692ad7caSAdrian Chadd static struct ieee80211_node * 1498692ad7caSAdrian Chadd wpi_node_alloc(struct ieee80211vap *vap, const uint8_t mac[IEEE80211_ADDR_LEN]) 1499692ad7caSAdrian Chadd { 1500692ad7caSAdrian Chadd struct wpi_node *wn; 1501692ad7caSAdrian Chadd 1502692ad7caSAdrian Chadd wn = malloc(sizeof (struct wpi_node), M_80211_NODE, 1503692ad7caSAdrian Chadd M_NOWAIT | M_ZERO); 1504692ad7caSAdrian Chadd 1505692ad7caSAdrian Chadd if (wn == NULL) 1506692ad7caSAdrian Chadd return NULL; 1507692ad7caSAdrian Chadd 1508692ad7caSAdrian Chadd wn->id = WPI_ID_UNDEFINED; 1509692ad7caSAdrian Chadd 1510692ad7caSAdrian Chadd return &wn->ni; 1511692ad7caSAdrian Chadd } 1512692ad7caSAdrian Chadd 1513692ad7caSAdrian Chadd static void 1514692ad7caSAdrian Chadd wpi_node_free(struct ieee80211_node *ni) 1515692ad7caSAdrian Chadd { 1516692ad7caSAdrian Chadd struct ieee80211com *ic = ni->ni_ic; 1517692ad7caSAdrian Chadd struct wpi_softc *sc = ic->ic_ifp->if_softc; 1518692ad7caSAdrian Chadd struct wpi_node *wn = (struct wpi_node *)ni; 1519692ad7caSAdrian Chadd 1520692ad7caSAdrian Chadd if (wn->id >= WPI_ID_IBSS_MIN && wn->id <= WPI_ID_IBSS_MAX) { 1521692ad7caSAdrian Chadd free_unr(sc->sc_unr, wn->id); 1522692ad7caSAdrian Chadd 1523692ad7caSAdrian Chadd WPI_LOCK(sc); 1524692ad7caSAdrian Chadd if (sc->rxon.filter & htole32(WPI_FILTER_BSS)) 1525692ad7caSAdrian Chadd wpi_del_node(sc, ni); 1526692ad7caSAdrian Chadd WPI_UNLOCK(sc); 1527692ad7caSAdrian Chadd } 1528692ad7caSAdrian Chadd 1529692ad7caSAdrian Chadd sc->sc_node_free(ni); 1530692ad7caSAdrian Chadd } 1531692ad7caSAdrian Chadd 15326607310bSBenjamin Close /** 15336607310bSBenjamin Close * Called by net80211 when ever there is a change to 80211 state machine 15346607310bSBenjamin Close */ 15356607310bSBenjamin Close static int 1536b032f27cSSam Leffler wpi_newstate(struct ieee80211vap *vap, enum ieee80211_state nstate, int arg) 15376607310bSBenjamin Close { 1538b032f27cSSam Leffler struct wpi_vap *wvp = WPI_VAP(vap); 1539b032f27cSSam Leffler struct ieee80211com *ic = vap->iv_ic; 15406607310bSBenjamin Close struct ifnet *ifp = ic->ic_ifp; 15416607310bSBenjamin Close struct wpi_softc *sc = ifp->if_softc; 1542692ad7caSAdrian Chadd int error = 0; 15436607310bSBenjamin Close 1544692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 1545692ad7caSAdrian Chadd 1546692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_STATE, "%s: %s -> %s\n", __func__, 1547b032f27cSSam Leffler ieee80211_state_name[vap->iv_state], 1548692ad7caSAdrian Chadd ieee80211_state_name[nstate]); 15496607310bSBenjamin Close 15505efea30fSAndrew Thompson IEEE80211_UNLOCK(ic); 15515efea30fSAndrew Thompson WPI_LOCK(sc); 1552692ad7caSAdrian Chadd switch (nstate) { 1553692ad7caSAdrian Chadd case IEEE80211_S_SCAN: 1554692ad7caSAdrian Chadd if ((vap->iv_opmode == IEEE80211_M_IBSS || 1555692ad7caSAdrian Chadd vap->iv_opmode == IEEE80211_M_AHDEMO) && 1556692ad7caSAdrian Chadd (sc->rxon.filter & htole32(WPI_FILTER_BSS))) { 1557692ad7caSAdrian Chadd sc->rxon.filter &= ~htole32(WPI_FILTER_BSS); 1558692ad7caSAdrian Chadd if ((error = wpi_send_rxon(sc, 0, 1)) != 0) { 15593934c8a5SBernhard Schmidt device_printf(sc->sc_dev, 1560692ad7caSAdrian Chadd "%s: could not send RXON\n", __func__); 15613934c8a5SBernhard Schmidt } 15623934c8a5SBernhard Schmidt } 1563692ad7caSAdrian Chadd break; 1564692ad7caSAdrian Chadd 1565692ad7caSAdrian Chadd case IEEE80211_S_ASSOC: 1566692ad7caSAdrian Chadd if (vap->iv_state != IEEE80211_S_RUN) 1567692ad7caSAdrian Chadd break; 1568692ad7caSAdrian Chadd /* FALLTHROUGH */ 1569692ad7caSAdrian Chadd case IEEE80211_S_AUTH: 15703934c8a5SBernhard Schmidt /* 15713934c8a5SBernhard Schmidt * The node must be registered in the firmware before auth. 15723934c8a5SBernhard Schmidt * Also the associd must be cleared on RUN -> ASSOC 15733934c8a5SBernhard Schmidt * transitions. 15743934c8a5SBernhard Schmidt */ 1575692ad7caSAdrian Chadd if ((error = wpi_auth(sc, vap)) != 0) { 15765efea30fSAndrew Thompson device_printf(sc->sc_dev, 1577692ad7caSAdrian Chadd "%s: could not move to AUTH state, error %d\n", 15785efea30fSAndrew Thompson __func__, error); 15795efea30fSAndrew Thompson } 1580692ad7caSAdrian Chadd break; 1581692ad7caSAdrian Chadd 1582692ad7caSAdrian Chadd case IEEE80211_S_RUN: 1583692ad7caSAdrian Chadd /* 1584692ad7caSAdrian Chadd * RUN -> RUN transition; Just restart the timers. 1585692ad7caSAdrian Chadd */ 1586692ad7caSAdrian Chadd if (vap->iv_state == IEEE80211_S_RUN) { 1587b032f27cSSam Leffler wpi_calib_timeout(sc); 1588692ad7caSAdrian Chadd break; 1589692ad7caSAdrian Chadd } 1590692ad7caSAdrian Chadd 1591692ad7caSAdrian Chadd /* 1592692ad7caSAdrian Chadd * !RUN -> RUN requires setting the association id 1593692ad7caSAdrian Chadd * which is done with a firmware cmd. We also defer 1594692ad7caSAdrian Chadd * starting the timers until that work is done. 1595692ad7caSAdrian Chadd */ 1596692ad7caSAdrian Chadd if ((error = wpi_run(sc, vap)) != 0) { 1597692ad7caSAdrian Chadd device_printf(sc->sc_dev, 1598692ad7caSAdrian Chadd "%s: could not move to RUN state\n", __func__); 1599692ad7caSAdrian Chadd } 1600692ad7caSAdrian Chadd break; 1601692ad7caSAdrian Chadd 1602692ad7caSAdrian Chadd default: 1603692ad7caSAdrian Chadd break; 1604b032f27cSSam Leffler } 16055efea30fSAndrew Thompson WPI_UNLOCK(sc); 16065efea30fSAndrew Thompson IEEE80211_LOCK(ic); 1607692ad7caSAdrian Chadd if (error != 0) { 1608692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END_ERR, __func__); 1609692ad7caSAdrian Chadd return error; 1610692ad7caSAdrian Chadd } 1611692ad7caSAdrian Chadd 1612692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 1613692ad7caSAdrian Chadd 1614b032f27cSSam Leffler return wvp->newstate(vap, nstate, arg); 16156607310bSBenjamin Close } 16166607310bSBenjamin Close 16176607310bSBenjamin Close static void 1618692ad7caSAdrian Chadd wpi_calib_timeout(void *arg) 16196607310bSBenjamin Close { 1620692ad7caSAdrian Chadd struct wpi_softc *sc = arg; 1621692ad7caSAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 1622692ad7caSAdrian Chadd struct ieee80211com *ic = ifp->if_l2com; 1623692ad7caSAdrian Chadd struct ieee80211vap *vap = TAILQ_FIRST(&ic->ic_vaps); 16246607310bSBenjamin Close 1625692ad7caSAdrian Chadd if (vap->iv_state != IEEE80211_S_RUN) 1626692ad7caSAdrian Chadd return; 16276607310bSBenjamin Close 1628692ad7caSAdrian Chadd wpi_power_calibration(sc); 1629692ad7caSAdrian Chadd 1630692ad7caSAdrian Chadd callout_reset(&sc->calib_to, 60*hz, wpi_calib_timeout, sc); 16316607310bSBenjamin Close } 16326607310bSBenjamin Close 1633692ad7caSAdrian Chadd static __inline uint8_t 1634692ad7caSAdrian Chadd rate2plcp(const uint8_t rate) 16356607310bSBenjamin Close { 1636692ad7caSAdrian Chadd switch (rate) { 1637692ad7caSAdrian Chadd case 12: return 0xd; 1638692ad7caSAdrian Chadd case 18: return 0xf; 1639692ad7caSAdrian Chadd case 24: return 0x5; 1640692ad7caSAdrian Chadd case 36: return 0x7; 1641692ad7caSAdrian Chadd case 48: return 0x9; 1642692ad7caSAdrian Chadd case 72: return 0xb; 1643692ad7caSAdrian Chadd case 96: return 0x1; 1644692ad7caSAdrian Chadd case 108: return 0x3; 1645692ad7caSAdrian Chadd case 2: return 10; 1646692ad7caSAdrian Chadd case 4: return 20; 1647692ad7caSAdrian Chadd case 11: return 55; 1648692ad7caSAdrian Chadd case 22: return 110; 1649692ad7caSAdrian Chadd default: return 0; 1650692ad7caSAdrian Chadd } 16516607310bSBenjamin Close } 16526607310bSBenjamin Close 1653692ad7caSAdrian Chadd static __inline uint8_t 1654692ad7caSAdrian Chadd plcp2rate(const uint8_t plcp) 16556607310bSBenjamin Close { 1656692ad7caSAdrian Chadd switch (plcp) { 1657692ad7caSAdrian Chadd case 0xd: return 12; 1658692ad7caSAdrian Chadd case 0xf: return 18; 1659692ad7caSAdrian Chadd case 0x5: return 24; 1660692ad7caSAdrian Chadd case 0x7: return 36; 1661692ad7caSAdrian Chadd case 0x9: return 48; 1662692ad7caSAdrian Chadd case 0xb: return 72; 1663692ad7caSAdrian Chadd case 0x1: return 96; 1664692ad7caSAdrian Chadd case 0x3: return 108; 1665692ad7caSAdrian Chadd case 10: return 2; 1666692ad7caSAdrian Chadd case 20: return 4; 1667692ad7caSAdrian Chadd case 55: return 11; 1668692ad7caSAdrian Chadd case 110: return 22; 1669692ad7caSAdrian Chadd default: return 0; 16706607310bSBenjamin Close } 1671692ad7caSAdrian Chadd } 1672692ad7caSAdrian Chadd 1673692ad7caSAdrian Chadd /* Quickly determine if a given rate is CCK or OFDM. */ 1674692ad7caSAdrian Chadd #define WPI_RATE_IS_OFDM(rate) ((rate) >= 12 && (rate) != 22) 16756607310bSBenjamin Close 16766607310bSBenjamin Close static void 1677692ad7caSAdrian Chadd wpi_rx_done(struct wpi_softc *sc, struct wpi_rx_desc *desc, 16786607310bSBenjamin Close struct wpi_rx_data *data) 16796607310bSBenjamin Close { 1680b032f27cSSam Leffler struct ifnet *ifp = sc->sc_ifp; 1681692ad7caSAdrian Chadd const struct ieee80211_cipher *cip = NULL; 1682b032f27cSSam Leffler struct ieee80211com *ic = ifp->if_l2com; 16836607310bSBenjamin Close struct wpi_rx_ring *ring = &sc->rxq; 16846607310bSBenjamin Close struct wpi_rx_stat *stat; 16856607310bSBenjamin Close struct wpi_rx_head *head; 16866607310bSBenjamin Close struct wpi_rx_tail *tail; 1687692ad7caSAdrian Chadd struct ieee80211_frame *wh; 16886607310bSBenjamin Close struct ieee80211_node *ni; 1689692ad7caSAdrian Chadd struct mbuf *m, *m1; 169082f1b132SAndrew Thompson bus_addr_t paddr; 1691692ad7caSAdrian Chadd uint32_t flags; 1692692ad7caSAdrian Chadd uint16_t len; 169382f1b132SAndrew Thompson int error; 16946607310bSBenjamin Close 16956607310bSBenjamin Close stat = (struct wpi_rx_stat *)(desc + 1); 16966607310bSBenjamin Close 16976607310bSBenjamin Close if (stat->len > WPI_STAT_MAXLEN) { 1698692ad7caSAdrian Chadd device_printf(sc->sc_dev, "invalid RX statistic header\n"); 1699*fae61c69SAdrian Chadd goto fail1; 17006607310bSBenjamin Close } 17016607310bSBenjamin Close 1702a71ad787SBernhard Schmidt bus_dmamap_sync(ring->data_dmat, data->map, BUS_DMASYNC_POSTREAD); 17036607310bSBenjamin Close head = (struct wpi_rx_head *)((caddr_t)(stat + 1) + stat->len); 1704692ad7caSAdrian Chadd len = le16toh(head->len); 1705692ad7caSAdrian Chadd tail = (struct wpi_rx_tail *)((caddr_t)(head + 1) + len); 1706692ad7caSAdrian Chadd flags = le32toh(tail->flags); 17076607310bSBenjamin Close 1708692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_RECV, "%s: idx %d len %d stat len %u rssi %d" 1709692ad7caSAdrian Chadd " rate %x chan %d tstamp %ju\n", __func__, ring->cur, 1710692ad7caSAdrian Chadd le32toh(desc->len), len, (int8_t)stat->rssi, 1711692ad7caSAdrian Chadd head->plcp, head->chan, (uintmax_t)le64toh(tail->tstamp)); 17126607310bSBenjamin Close 1713692ad7caSAdrian Chadd /* Discard frames with a bad FCS early. */ 1714692ad7caSAdrian Chadd if ((flags & WPI_RX_NOERROR) != WPI_RX_NOERROR) { 1715692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_RECV, "%s: RX flags error %x\n", 1716692ad7caSAdrian Chadd __func__, flags); 1717*fae61c69SAdrian Chadd goto fail1; 1718fcec677dSJuli Mallett } 1719692ad7caSAdrian Chadd /* Discard frames that are too short. */ 1720692ad7caSAdrian Chadd if (len < sizeof (*wh)) { 1721692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_RECV, "%s: frame too short: %d\n", 1722692ad7caSAdrian Chadd __func__, len); 1723*fae61c69SAdrian Chadd goto fail1; 1724fcec677dSJuli Mallett } 1725fcec677dSJuli Mallett 1726692ad7caSAdrian Chadd m1 = m_getjcl(M_NOWAIT, MT_DATA, M_PKTHDR, MJUMPAGESIZE); 1727692ad7caSAdrian Chadd if (m1 == NULL) { 1728692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_ANY, "%s: no mbuf to restock ring\n", 1729692ad7caSAdrian Chadd __func__); 1730*fae61c69SAdrian Chadd goto fail1; 173182f1b132SAndrew Thompson } 1732a71ad787SBernhard Schmidt bus_dmamap_unload(ring->data_dmat, data->map); 1733a71ad787SBernhard Schmidt 1734692ad7caSAdrian Chadd error = bus_dmamap_load(ring->data_dmat, data->map, mtod(m1, void *), 1735692ad7caSAdrian Chadd MJUMPAGESIZE, wpi_dma_map_addr, &paddr, BUS_DMA_NOWAIT); 173682f1b132SAndrew Thompson if (error != 0 && error != EFBIG) { 173782f1b132SAndrew Thompson device_printf(sc->sc_dev, 173882f1b132SAndrew Thompson "%s: bus_dmamap_load failed, error %d\n", __func__, error); 1739692ad7caSAdrian Chadd m_freem(m1); 1740692ad7caSAdrian Chadd 1741692ad7caSAdrian Chadd /* Try to reload the old mbuf. */ 1742692ad7caSAdrian Chadd error = bus_dmamap_load(ring->data_dmat, data->map, 1743692ad7caSAdrian Chadd mtod(data->m, void *), MJUMPAGESIZE, wpi_dma_map_addr, 1744692ad7caSAdrian Chadd &paddr, BUS_DMA_NOWAIT); 1745692ad7caSAdrian Chadd if (error != 0 && error != EFBIG) { 1746692ad7caSAdrian Chadd panic("%s: could not load old RX mbuf", __func__); 1747692ad7caSAdrian Chadd } 1748692ad7caSAdrian Chadd /* Physical address may have changed. */ 1749692ad7caSAdrian Chadd ring->desc[ring->cur] = htole32(paddr); 1750692ad7caSAdrian Chadd bus_dmamap_sync(ring->data_dmat, ring->desc_dma.map, 1751692ad7caSAdrian Chadd BUS_DMASYNC_PREWRITE); 1752*fae61c69SAdrian Chadd goto fail1; 175382f1b132SAndrew Thompson } 17546607310bSBenjamin Close 175582f1b132SAndrew Thompson m = data->m; 1756692ad7caSAdrian Chadd data->m = m1; 1757692ad7caSAdrian Chadd /* Update RX descriptor. */ 1758692ad7caSAdrian Chadd ring->desc[ring->cur] = htole32(paddr); 1759692ad7caSAdrian Chadd bus_dmamap_sync(ring->desc_dma.tag, ring->desc_dma.map, 1760692ad7caSAdrian Chadd BUS_DMASYNC_PREWRITE); 1761692ad7caSAdrian Chadd 1762692ad7caSAdrian Chadd /* Finalize mbuf. */ 17636607310bSBenjamin Close m->m_pkthdr.rcvif = ifp; 17646607310bSBenjamin Close m->m_data = (caddr_t)(head + 1); 1765692ad7caSAdrian Chadd m->m_pkthdr.len = m->m_len = len; 17666607310bSBenjamin Close 1767692ad7caSAdrian Chadd /* Grab a reference to the source node. */ 1768692ad7caSAdrian Chadd wh = mtod(m, struct ieee80211_frame *); 1769692ad7caSAdrian Chadd ni = ieee80211_find_rxnode(ic, (struct ieee80211_frame_min *)wh); 1770692ad7caSAdrian Chadd 1771692ad7caSAdrian Chadd if (ni != NULL) 1772692ad7caSAdrian Chadd cip = ni->ni_ucastkey.wk_cipher; 1773692ad7caSAdrian Chadd if ((wh->i_fc[1] & IEEE80211_FC1_PROTECTED) && 1774692ad7caSAdrian Chadd !IEEE80211_IS_MULTICAST(wh->i_addr1) && 1775692ad7caSAdrian Chadd cip != NULL && cip->ic_cipher == IEEE80211_CIPHER_AES_CCM) { 1776*fae61c69SAdrian Chadd if ((flags & WPI_RX_CIPHER_MASK) != WPI_RX_CIPHER_CCMP) 1777*fae61c69SAdrian Chadd goto fail2; 1778*fae61c69SAdrian Chadd 1779692ad7caSAdrian Chadd /* Check whether decryption was successful or not. */ 1780692ad7caSAdrian Chadd if ((flags & WPI_RX_DECRYPT_MASK) != WPI_RX_DECRYPT_OK) { 1781692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_RECV, 1782692ad7caSAdrian Chadd "CCMP decryption failed 0x%x\n", flags); 1783*fae61c69SAdrian Chadd goto fail2; 1784692ad7caSAdrian Chadd } 1785692ad7caSAdrian Chadd m->m_flags |= M_WEP; 1786692ad7caSAdrian Chadd } 17876607310bSBenjamin Close 17885463c4a4SSam Leffler if (ieee80211_radiotap_active(ic)) { 17896607310bSBenjamin Close struct wpi_rx_radiotap_header *tap = &sc->sc_rxtap; 17906607310bSBenjamin Close 17916607310bSBenjamin Close tap->wr_flags = 0; 1792692ad7caSAdrian Chadd if (head->flags & htole16(WPI_STAT_FLAG_SHPREAMBLE)) 1793692ad7caSAdrian Chadd tap->wr_flags |= IEEE80211_RADIOTAP_F_SHORTPRE; 17946607310bSBenjamin Close tap->wr_dbm_antsignal = (int8_t)(stat->rssi - WPI_RSSI_OFFSET); 17956607310bSBenjamin Close tap->wr_dbm_antnoise = (int8_t)le16toh(stat->noise); 17966607310bSBenjamin Close tap->wr_tsft = tail->tstamp; 17976607310bSBenjamin Close tap->wr_antenna = (le16toh(head->flags) >> 4) & 0xf; 1798692ad7caSAdrian Chadd tap->wr_rate = plcp2rate(head->plcp); 17996607310bSBenjamin Close } 18006607310bSBenjamin Close 18016607310bSBenjamin Close WPI_UNLOCK(sc); 18026607310bSBenjamin Close 1803692ad7caSAdrian Chadd /* Send the frame to the 802.11 layer. */ 1804b032f27cSSam Leffler if (ni != NULL) { 1805692ad7caSAdrian Chadd (void)ieee80211_input(ni, m, stat->rssi, -WPI_RSSI_OFFSET); 1806692ad7caSAdrian Chadd /* Node is no longer needed. */ 18076607310bSBenjamin Close ieee80211_free_node(ni); 1808b032f27cSSam Leffler } else 1809692ad7caSAdrian Chadd (void)ieee80211_input_all(ic, m, stat->rssi, -WPI_RSSI_OFFSET); 1810b032f27cSSam Leffler 18116607310bSBenjamin Close WPI_LOCK(sc); 1812*fae61c69SAdrian Chadd 1813*fae61c69SAdrian Chadd return; 1814*fae61c69SAdrian Chadd 1815*fae61c69SAdrian Chadd fail2: ieee80211_free_node(ni); 1816*fae61c69SAdrian Chadd m_freem(m); 1817*fae61c69SAdrian Chadd 1818*fae61c69SAdrian Chadd fail1: if_inc_counter(ifp, IFCOUNTER_IERRORS, 1); 18196607310bSBenjamin Close } 18206607310bSBenjamin Close 18216607310bSBenjamin Close static void 1822692ad7caSAdrian Chadd wpi_rx_statistics(struct wpi_softc *sc, struct wpi_rx_desc *desc, 1823692ad7caSAdrian Chadd struct wpi_rx_data *data) 18246607310bSBenjamin Close { 1825692ad7caSAdrian Chadd /* Ignore */ 18266607310bSBenjamin Close } 18276607310bSBenjamin Close 18286607310bSBenjamin Close static void 1829692ad7caSAdrian Chadd wpi_tx_done(struct wpi_softc *sc, struct wpi_rx_desc *desc) 18306607310bSBenjamin Close { 1831692ad7caSAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 1832692ad7caSAdrian Chadd struct wpi_tx_ring *ring = &sc->txq[desc->qid & 0x3]; 1833692ad7caSAdrian Chadd struct wpi_tx_data *data = &ring->data[desc->idx]; 1834692ad7caSAdrian Chadd struct wpi_tx_stat *stat = (struct wpi_tx_stat *)(desc + 1); 1835692ad7caSAdrian Chadd struct mbuf *m; 1836692ad7caSAdrian Chadd struct ieee80211_node *ni; 1837692ad7caSAdrian Chadd struct ieee80211vap *vap; 1838*fae61c69SAdrian Chadd int ackfailcnt = stat->ackfailcnt; 1839692ad7caSAdrian Chadd int status = le32toh(stat->status); 1840692ad7caSAdrian Chadd 1841692ad7caSAdrian Chadd KASSERT(data->ni != NULL, ("no node")); 1842692ad7caSAdrian Chadd 1843692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 1844692ad7caSAdrian Chadd 1845692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_XMIT, "%s: " 1846692ad7caSAdrian Chadd "qid %d idx %d retries %d btkillcnt %d rate %x duration %d " 1847*fae61c69SAdrian Chadd "status %x\n", __func__, desc->qid, desc->idx, ackfailcnt, 1848692ad7caSAdrian Chadd stat->btkillcnt, stat->rate, le32toh(stat->duration), status); 1849692ad7caSAdrian Chadd 1850692ad7caSAdrian Chadd /* Unmap and free mbuf. */ 1851692ad7caSAdrian Chadd bus_dmamap_sync(ring->data_dmat, data->map, BUS_DMASYNC_POSTWRITE); 1852692ad7caSAdrian Chadd bus_dmamap_unload(ring->data_dmat, data->map); 1853692ad7caSAdrian Chadd m = data->m, data->m = NULL; 1854692ad7caSAdrian Chadd ni = data->ni, data->ni = NULL; 1855692ad7caSAdrian Chadd vap = ni->ni_vap; 1856692ad7caSAdrian Chadd 1857692ad7caSAdrian Chadd /* 1858692ad7caSAdrian Chadd * Update rate control statistics for the node. 1859692ad7caSAdrian Chadd */ 1860692ad7caSAdrian Chadd WPI_UNLOCK(sc); 1861692ad7caSAdrian Chadd if ((status & 0xff) != 1) { 1862692ad7caSAdrian Chadd if_inc_counter(ifp, IFCOUNTER_OERRORS, 1); 1863692ad7caSAdrian Chadd ieee80211_ratectl_tx_complete(vap, ni, 1864*fae61c69SAdrian Chadd IEEE80211_RATECTL_TX_FAILURE, &ackfailcnt, NULL); 1865692ad7caSAdrian Chadd } else { 1866692ad7caSAdrian Chadd if_inc_counter(ifp, IFCOUNTER_OPACKETS, 1); 1867692ad7caSAdrian Chadd ieee80211_ratectl_tx_complete(vap, ni, 1868*fae61c69SAdrian Chadd IEEE80211_RATECTL_TX_SUCCESS, &ackfailcnt, NULL); 1869692ad7caSAdrian Chadd } 1870692ad7caSAdrian Chadd 1871692ad7caSAdrian Chadd ieee80211_tx_complete(ni, m, (status & 0xff) != 1); 1872692ad7caSAdrian Chadd WPI_LOCK(sc); 1873692ad7caSAdrian Chadd 1874692ad7caSAdrian Chadd sc->sc_tx_timer = 0; 1875692ad7caSAdrian Chadd if (--ring->queued < WPI_TX_RING_LOMARK) { 1876692ad7caSAdrian Chadd sc->qfullmsk &= ~(1 << ring->qid); 1877692ad7caSAdrian Chadd if (sc->qfullmsk == 0 && 1878692ad7caSAdrian Chadd (ifp->if_drv_flags & IFF_DRV_OACTIVE)) { 1879692ad7caSAdrian Chadd ifp->if_drv_flags &= ~IFF_DRV_OACTIVE; 1880692ad7caSAdrian Chadd wpi_start_locked(ifp); 1881692ad7caSAdrian Chadd } 1882692ad7caSAdrian Chadd } 1883692ad7caSAdrian Chadd 1884692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 1885692ad7caSAdrian Chadd } 1886692ad7caSAdrian Chadd 1887692ad7caSAdrian Chadd /* 1888692ad7caSAdrian Chadd * Process a "command done" firmware notification. This is where we wakeup 1889692ad7caSAdrian Chadd * processes waiting for a synchronous command completion. 1890692ad7caSAdrian Chadd */ 1891692ad7caSAdrian Chadd static void 1892692ad7caSAdrian Chadd wpi_cmd_done(struct wpi_softc *sc, struct wpi_rx_desc *desc) 1893692ad7caSAdrian Chadd { 1894692ad7caSAdrian Chadd struct wpi_tx_ring *ring = &sc->txq[4]; 18956607310bSBenjamin Close struct wpi_tx_data *data; 18966607310bSBenjamin Close 1897692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_CMD, "cmd notification qid=%x idx=%d flags=%x " 18986607310bSBenjamin Close "type=%s len=%d\n", desc->qid, desc->idx, 18996607310bSBenjamin Close desc->flags, wpi_cmd_str(desc->type), 1900692ad7caSAdrian Chadd le32toh(desc->len)); 19016607310bSBenjamin Close 19026607310bSBenjamin Close if ((desc->qid & 7) != 4) 1903692ad7caSAdrian Chadd return; /* Not a command ack. */ 19046607310bSBenjamin Close 19056607310bSBenjamin Close data = &ring->data[desc->idx]; 19066607310bSBenjamin Close 1907692ad7caSAdrian Chadd /* If the command was mapped in an mbuf, free it. */ 19086607310bSBenjamin Close if (data->m != NULL) { 1909692ad7caSAdrian Chadd bus_dmamap_sync(ring->data_dmat, data->map, 1910692ad7caSAdrian Chadd BUS_DMASYNC_POSTWRITE); 19116607310bSBenjamin Close bus_dmamap_unload(ring->data_dmat, data->map); 19126607310bSBenjamin Close m_freem(data->m); 19136607310bSBenjamin Close data->m = NULL; 19146607310bSBenjamin Close } 19156607310bSBenjamin Close 19166607310bSBenjamin Close sc->flags &= ~WPI_FLAG_BUSY; 19176607310bSBenjamin Close wakeup(&ring->cmd[desc->idx]); 19186607310bSBenjamin Close } 19196607310bSBenjamin Close 19206607310bSBenjamin Close static void 19216607310bSBenjamin Close wpi_notif_intr(struct wpi_softc *sc) 19226607310bSBenjamin Close { 1923b032f27cSSam Leffler struct ifnet *ifp = sc->sc_ifp; 1924b032f27cSSam Leffler struct ieee80211com *ic = ifp->if_l2com; 1925692ad7caSAdrian Chadd struct ieee80211vap *vap = TAILQ_FIRST(&ic->ic_vaps); 1926692ad7caSAdrian Chadd int hw; 19276607310bSBenjamin Close 1928f015cb78SBernhard Schmidt bus_dmamap_sync(sc->shared_dma.tag, sc->shared_dma.map, 1929f015cb78SBernhard Schmidt BUS_DMASYNC_POSTREAD); 1930f015cb78SBernhard Schmidt 19316607310bSBenjamin Close hw = le32toh(sc->shared->next); 1932692ad7caSAdrian Chadd hw = (hw == 0) ? WPI_RX_RING_COUNT - 1 : hw - 1; 1933692ad7caSAdrian Chadd 1934*fae61c69SAdrian Chadd while (sc->rxq.cur != hw) { 1935692ad7caSAdrian Chadd sc->rxq.cur = (sc->rxq.cur + 1) % WPI_RX_RING_COUNT; 1936692ad7caSAdrian Chadd 1937692ad7caSAdrian Chadd struct wpi_rx_data *data = &sc->rxq.data[sc->rxq.cur]; 1938692ad7caSAdrian Chadd struct wpi_rx_desc *desc; 1939f015cb78SBernhard Schmidt 1940f015cb78SBernhard Schmidt bus_dmamap_sync(sc->rxq.data_dmat, data->map, 1941f015cb78SBernhard Schmidt BUS_DMASYNC_POSTREAD); 1942692ad7caSAdrian Chadd desc = mtod(data->m, struct wpi_rx_desc *); 19436607310bSBenjamin Close 1944692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_NOTIFY, 1945692ad7caSAdrian Chadd "%s: cur=%d; qid %x idx %d flags %x type %d(%s) len %d\n", 1946692ad7caSAdrian Chadd __func__, sc->rxq.cur, desc->qid, desc->idx, desc->flags, 1947692ad7caSAdrian Chadd desc->type, wpi_cmd_str(desc->type), le32toh(desc->len)); 19486607310bSBenjamin Close 1949692ad7caSAdrian Chadd if (!(desc->qid & 0x80)) /* Reply to a command. */ 1950692ad7caSAdrian Chadd wpi_cmd_done(sc, desc); 19516607310bSBenjamin Close 19526607310bSBenjamin Close switch (desc->type) { 19536607310bSBenjamin Close case WPI_RX_DONE: 1954692ad7caSAdrian Chadd /* An 802.11 frame has been received. */ 1955692ad7caSAdrian Chadd wpi_rx_done(sc, desc, data); 19566607310bSBenjamin Close break; 19576607310bSBenjamin Close 19586607310bSBenjamin Close case WPI_TX_DONE: 1959692ad7caSAdrian Chadd /* An 802.11 frame has been transmitted. */ 1960692ad7caSAdrian Chadd wpi_tx_done(sc, desc); 19616607310bSBenjamin Close break; 19626607310bSBenjamin Close 1963692ad7caSAdrian Chadd case WPI_RX_STATISTICS: 1964692ad7caSAdrian Chadd case WPI_BEACON_STATISTICS: 1965692ad7caSAdrian Chadd wpi_rx_statistics(sc, desc, data); 1966692ad7caSAdrian Chadd break; 1967692ad7caSAdrian Chadd 1968692ad7caSAdrian Chadd case WPI_BEACON_MISSED: 1969692ad7caSAdrian Chadd { 1970692ad7caSAdrian Chadd struct wpi_beacon_missed *miss = 1971692ad7caSAdrian Chadd (struct wpi_beacon_missed *)(desc + 1); 1972692ad7caSAdrian Chadd int misses; 1973692ad7caSAdrian Chadd 1974692ad7caSAdrian Chadd bus_dmamap_sync(sc->rxq.data_dmat, data->map, 1975692ad7caSAdrian Chadd BUS_DMASYNC_POSTREAD); 1976692ad7caSAdrian Chadd misses = le32toh(miss->consecutive); 1977692ad7caSAdrian Chadd 1978692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_STATE, 1979692ad7caSAdrian Chadd "%s: beacons missed %d/%d\n", __func__, misses, 1980692ad7caSAdrian Chadd le32toh(miss->total)); 1981692ad7caSAdrian Chadd 1982692ad7caSAdrian Chadd if (vap->iv_state == IEEE80211_S_RUN && 1983692ad7caSAdrian Chadd (ic->ic_flags & IEEE80211_S_SCAN) == 0) { 1984692ad7caSAdrian Chadd if (misses >= vap->iv_bmissthreshold) { 1985692ad7caSAdrian Chadd WPI_UNLOCK(sc); 1986692ad7caSAdrian Chadd ieee80211_beacon_miss(ic); 1987692ad7caSAdrian Chadd WPI_LOCK(sc); 1988692ad7caSAdrian Chadd } 1989692ad7caSAdrian Chadd } 1990692ad7caSAdrian Chadd break; 1991692ad7caSAdrian Chadd } 19926607310bSBenjamin Close case WPI_UC_READY: 19936607310bSBenjamin Close { 19946607310bSBenjamin Close struct wpi_ucode_info *uc = 19956607310bSBenjamin Close (struct wpi_ucode_info *)(desc + 1); 19966607310bSBenjamin Close 1997692ad7caSAdrian Chadd /* The microcontroller is ready. */ 1998692ad7caSAdrian Chadd bus_dmamap_sync(sc->rxq.data_dmat, data->map, 1999692ad7caSAdrian Chadd BUS_DMASYNC_POSTREAD); 2000692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_RESET, 2001692ad7caSAdrian Chadd "microcode alive notification version=%d.%d " 2002692ad7caSAdrian Chadd "subtype=%x alive=%x\n", uc->major, uc->minor, 2003692ad7caSAdrian Chadd uc->subtype, le32toh(uc->valid)); 20046607310bSBenjamin Close 20056607310bSBenjamin Close if (le32toh(uc->valid) != 1) { 20066607310bSBenjamin Close device_printf(sc->sc_dev, 20076607310bSBenjamin Close "microcontroller initialization failed\n"); 20086607310bSBenjamin Close wpi_stop_locked(sc); 20096607310bSBenjamin Close } 2010692ad7caSAdrian Chadd /* Save the address of the error log in SRAM. */ 2011692ad7caSAdrian Chadd sc->errptr = le32toh(uc->errptr); 20126607310bSBenjamin Close break; 20136607310bSBenjamin Close } 20146607310bSBenjamin Close case WPI_STATE_CHANGED: 20156607310bSBenjamin Close { 2016692ad7caSAdrian Chadd bus_dmamap_sync(sc->rxq.data_dmat, data->map, 2017692ad7caSAdrian Chadd BUS_DMASYNC_POSTREAD); 2018692ad7caSAdrian Chadd 20196607310bSBenjamin Close uint32_t *status = (uint32_t *)(desc + 1); 2020*fae61c69SAdrian Chadd 2021692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_STATE, "state changed to %x\n", 2022692ad7caSAdrian Chadd le32toh(*status)); 2023*fae61c69SAdrian Chadd 20246607310bSBenjamin Close if (le32toh(*status) & 1) { 2025692ad7caSAdrian Chadd ieee80211_runtask(ic, &sc->sc_radiooff_task); 2026692ad7caSAdrian Chadd return; 20276607310bSBenjamin Close } 20286607310bSBenjamin Close break; 20296607310bSBenjamin Close } 20306607310bSBenjamin Close case WPI_START_SCAN: 20316607310bSBenjamin Close { 2032692ad7caSAdrian Chadd bus_dmamap_sync(sc->rxq.data_dmat, data->map, 2033692ad7caSAdrian Chadd BUS_DMASYNC_POSTREAD); 20346845408dSAndrew Thompson #ifdef WPI_DEBUG 20356607310bSBenjamin Close struct wpi_start_scan *scan = 20366607310bSBenjamin Close (struct wpi_start_scan *)(desc + 1); 2037692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_SCAN, 2038692ad7caSAdrian Chadd "%s: scanning channel %d status %x\n", 2039692ad7caSAdrian Chadd __func__, scan->chan, le32toh(scan->status)); 20406845408dSAndrew Thompson #endif 20416607310bSBenjamin Close break; 20426607310bSBenjamin Close } 20436607310bSBenjamin Close case WPI_STOP_SCAN: 20446607310bSBenjamin Close { 2045692ad7caSAdrian Chadd bus_dmamap_sync(sc->rxq.data_dmat, data->map, 2046692ad7caSAdrian Chadd BUS_DMASYNC_POSTREAD); 20476845408dSAndrew Thompson #ifdef WPI_DEBUG 20486607310bSBenjamin Close struct wpi_stop_scan *scan = 20496607310bSBenjamin Close (struct wpi_stop_scan *)(desc + 1); 2050692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_SCAN, 2051692ad7caSAdrian Chadd "scan finished nchan=%d status=%d chan=%d\n", 2052692ad7caSAdrian Chadd scan->nchan, scan->status, scan->chan); 20536845408dSAndrew Thompson #endif 205482f1b132SAndrew Thompson sc->sc_scan_timer = 0; 2055692ad7caSAdrian Chadd WPI_UNLOCK(sc); 2056b032f27cSSam Leffler ieee80211_scan_next(vap); 2057692ad7caSAdrian Chadd WPI_LOCK(sc); 20586607310bSBenjamin Close break; 20596607310bSBenjamin Close } 2060692ad7caSAdrian Chadd } 2061*fae61c69SAdrian Chadd } 2062692ad7caSAdrian Chadd 2063692ad7caSAdrian Chadd /* Tell the firmware what we have processed. */ 2064692ad7caSAdrian Chadd wpi_update_rx_ring(sc); 2065692ad7caSAdrian Chadd } 2066692ad7caSAdrian Chadd 2067692ad7caSAdrian Chadd /* 2068692ad7caSAdrian Chadd * Process an INT_WAKEUP interrupt raised when the microcontroller wakes up 2069692ad7caSAdrian Chadd * from power-down sleep mode. 2070692ad7caSAdrian Chadd */ 2071692ad7caSAdrian Chadd static void 2072692ad7caSAdrian Chadd wpi_wakeup_intr(struct wpi_softc *sc) 2073a7099588SBenjamin Close { 2074692ad7caSAdrian Chadd int qid; 2075a7099588SBenjamin Close 2076692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_PWRSAVE, 2077692ad7caSAdrian Chadd "%s: ucode wakeup from power-down sleep\n", __func__); 2078692ad7caSAdrian Chadd 2079692ad7caSAdrian Chadd /* Wakeup RX and TX rings. */ 2080692ad7caSAdrian Chadd if (sc->rxq.update) { 2081692ad7caSAdrian Chadd sc->rxq.update = 0; 2082*fae61c69SAdrian Chadd wpi_update_rx_ring(sc); 2083a7099588SBenjamin Close } 2084692ad7caSAdrian Chadd for (qid = 0; qid < WPI_NTXQUEUES; qid++) { 2085692ad7caSAdrian Chadd struct wpi_tx_ring *ring = &sc->txq[qid]; 2086692ad7caSAdrian Chadd 2087692ad7caSAdrian Chadd if (ring->update) { 2088692ad7caSAdrian Chadd ring->update = 0; 2089*fae61c69SAdrian Chadd wpi_update_tx_ring(sc, ring); 2090a7099588SBenjamin Close } 20916607310bSBenjamin Close } 20926607310bSBenjamin Close 2093692ad7caSAdrian Chadd WPI_CLRBITS(sc, WPI_GP_CNTRL, WPI_GP_CNTRL_MAC_ACCESS_REQ); 20946607310bSBenjamin Close } 20956607310bSBenjamin Close 2096692ad7caSAdrian Chadd /* 2097692ad7caSAdrian Chadd * Dump the error log of the firmware when a firmware panic occurs. Although 2098692ad7caSAdrian Chadd * we can't debug the firmware because it is neither open source nor free, it 2099692ad7caSAdrian Chadd * can help us to identify certain classes of problems. 2100692ad7caSAdrian Chadd */ 2101692ad7caSAdrian Chadd static void 2102692ad7caSAdrian Chadd wpi_fatal_intr(struct wpi_softc *sc) 2103692ad7caSAdrian Chadd { 2104692ad7caSAdrian Chadd struct wpi_fw_dump dump; 2105692ad7caSAdrian Chadd uint32_t i, offset, count; 2106692ad7caSAdrian Chadd const uint32_t size_errmsg = 2107692ad7caSAdrian Chadd (sizeof (wpi_fw_errmsg) / sizeof ((wpi_fw_errmsg)[0])); 2108692ad7caSAdrian Chadd 2109692ad7caSAdrian Chadd /* Check that the error log address is valid. */ 2110692ad7caSAdrian Chadd if (sc->errptr < WPI_FW_DATA_BASE || 2111692ad7caSAdrian Chadd sc->errptr + sizeof (dump) > 2112692ad7caSAdrian Chadd WPI_FW_DATA_BASE + WPI_FW_DATA_MAXSZ) { 2113692ad7caSAdrian Chadd printf("%s: bad firmware error log address 0x%08x\n", __func__, 2114692ad7caSAdrian Chadd sc->errptr); 2115692ad7caSAdrian Chadd return; 2116692ad7caSAdrian Chadd } 2117692ad7caSAdrian Chadd if (wpi_nic_lock(sc) != 0) { 2118692ad7caSAdrian Chadd printf("%s: could not read firmware error log\n", __func__); 2119692ad7caSAdrian Chadd return; 2120692ad7caSAdrian Chadd } 2121692ad7caSAdrian Chadd /* Read number of entries in the log. */ 2122692ad7caSAdrian Chadd count = wpi_mem_read(sc, sc->errptr); 2123692ad7caSAdrian Chadd if (count == 0 || count * sizeof (dump) > WPI_FW_DATA_MAXSZ) { 2124692ad7caSAdrian Chadd printf("%s: invalid count field (count = %u)\n", __func__, 2125692ad7caSAdrian Chadd count); 2126692ad7caSAdrian Chadd wpi_nic_unlock(sc); 2127692ad7caSAdrian Chadd return; 2128692ad7caSAdrian Chadd } 2129692ad7caSAdrian Chadd /* Skip "count" field. */ 2130692ad7caSAdrian Chadd offset = sc->errptr + sizeof (uint32_t); 2131692ad7caSAdrian Chadd printf("firmware error log (count = %u):\n", count); 2132692ad7caSAdrian Chadd for (i = 0; i < count; i++) { 2133692ad7caSAdrian Chadd wpi_mem_read_region_4(sc, offset, (uint32_t *)&dump, 2134692ad7caSAdrian Chadd sizeof (dump) / sizeof (uint32_t)); 2135692ad7caSAdrian Chadd 2136692ad7caSAdrian Chadd printf(" error type = \"%s\" (0x%08X)\n", 2137692ad7caSAdrian Chadd (dump.desc < size_errmsg) ? 2138692ad7caSAdrian Chadd wpi_fw_errmsg[dump.desc] : "UNKNOWN", 2139692ad7caSAdrian Chadd dump.desc); 2140692ad7caSAdrian Chadd printf(" error data = 0x%08X\n", 2141692ad7caSAdrian Chadd dump.data); 2142692ad7caSAdrian Chadd printf(" branch link = 0x%08X%08X\n", 2143692ad7caSAdrian Chadd dump.blink[0], dump.blink[1]); 2144692ad7caSAdrian Chadd printf(" interrupt link = 0x%08X%08X\n", 2145692ad7caSAdrian Chadd dump.ilink[0], dump.ilink[1]); 2146692ad7caSAdrian Chadd printf(" time = %u\n", dump.time); 2147692ad7caSAdrian Chadd 2148692ad7caSAdrian Chadd offset += sizeof (dump); 2149692ad7caSAdrian Chadd } 2150692ad7caSAdrian Chadd wpi_nic_unlock(sc); 2151692ad7caSAdrian Chadd /* Dump driver status (TX and RX rings) while we're here. */ 2152692ad7caSAdrian Chadd printf("driver status:\n"); 2153692ad7caSAdrian Chadd for (i = 0; i < WPI_NTXQUEUES; i++) { 2154692ad7caSAdrian Chadd struct wpi_tx_ring *ring = &sc->txq[i]; 2155692ad7caSAdrian Chadd printf(" tx ring %2d: qid=%-2d cur=%-3d queued=%-3d\n", 2156692ad7caSAdrian Chadd i, ring->qid, ring->cur, ring->queued); 2157692ad7caSAdrian Chadd } 2158692ad7caSAdrian Chadd printf(" rx ring: cur=%d\n", sc->rxq.cur); 21596607310bSBenjamin Close } 21606607310bSBenjamin Close 21616607310bSBenjamin Close static void 21626607310bSBenjamin Close wpi_intr(void *arg) 21636607310bSBenjamin Close { 21646607310bSBenjamin Close struct wpi_softc *sc = arg; 2165692ad7caSAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 2166692ad7caSAdrian Chadd uint32_t r1, r2; 21676607310bSBenjamin Close 21686607310bSBenjamin Close WPI_LOCK(sc); 21696607310bSBenjamin Close 2170692ad7caSAdrian Chadd /* Disable interrupts. */ 2171692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_INT_MASK, 0); 2172692ad7caSAdrian Chadd 2173692ad7caSAdrian Chadd r1 = WPI_READ(sc, WPI_INT); 2174692ad7caSAdrian Chadd 2175692ad7caSAdrian Chadd if (r1 == 0xffffffff || (r1 & 0xfffffff0) == 0xa5a5a5a0) { 21766607310bSBenjamin Close WPI_UNLOCK(sc); 2177692ad7caSAdrian Chadd return; /* Hardware gone! */ 21786607310bSBenjamin Close } 21796607310bSBenjamin Close 2180692ad7caSAdrian Chadd r2 = WPI_READ(sc, WPI_FH_INT); 21816607310bSBenjamin Close 2182692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_INTR, "%s: reg1=0x%08x reg2=0x%08x\n", __func__, 2183692ad7caSAdrian Chadd r1, r2); 2184692ad7caSAdrian Chadd 2185692ad7caSAdrian Chadd if (r1 == 0 && r2 == 0) 2186692ad7caSAdrian Chadd goto done; /* Interrupt not for us. */ 2187692ad7caSAdrian Chadd 2188692ad7caSAdrian Chadd /* Acknowledge interrupts. */ 2189692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_INT, r1); 2190692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_FH_INT, r2); 2191692ad7caSAdrian Chadd 2192692ad7caSAdrian Chadd if (r1 & (WPI_INT_SW_ERR | WPI_INT_HW_ERR)) { 21935efea30fSAndrew Thompson struct ieee80211com *ic = ifp->if_l2com; 21945efea30fSAndrew Thompson 21956607310bSBenjamin Close device_printf(sc->sc_dev, "fatal firmware error\n"); 2196692ad7caSAdrian Chadd wpi_fatal_intr(sc); 2197692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_HW, 2198692ad7caSAdrian Chadd "(%s)\n", (r1 & WPI_INT_SW_ERR) ? "(Software Error)" : 2199692ad7caSAdrian Chadd "(Hardware Error)"); 2200692ad7caSAdrian Chadd ieee80211_runtask(ic, &sc->sc_reinittask); 22016607310bSBenjamin Close sc->flags &= ~WPI_FLAG_BUSY; 22026607310bSBenjamin Close WPI_UNLOCK(sc); 22036607310bSBenjamin Close return; 22046607310bSBenjamin Close } 22056607310bSBenjamin Close 2206692ad7caSAdrian Chadd if ((r1 & (WPI_INT_FH_RX | WPI_INT_SW_RX)) || 2207692ad7caSAdrian Chadd (r2 & WPI_FH_INT_RX)) 22086607310bSBenjamin Close wpi_notif_intr(sc); 22096607310bSBenjamin Close 2210692ad7caSAdrian Chadd if (r1 & WPI_INT_ALIVE) 2211692ad7caSAdrian Chadd wakeup(sc); /* Firmware is alive. */ 22126607310bSBenjamin Close 2213692ad7caSAdrian Chadd if (r1 & WPI_INT_WAKEUP) 2214692ad7caSAdrian Chadd wpi_wakeup_intr(sc); 2215692ad7caSAdrian Chadd 2216692ad7caSAdrian Chadd done: 2217692ad7caSAdrian Chadd /* Re-enable interrupts. */ 2218692ad7caSAdrian Chadd if (ifp->if_flags & IFF_UP) 2219692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_INT_MASK, WPI_INT_MASK_DEF); 22206607310bSBenjamin Close 22216607310bSBenjamin Close WPI_UNLOCK(sc); 22226607310bSBenjamin Close } 22236607310bSBenjamin Close 22246607310bSBenjamin Close static int 2225692ad7caSAdrian Chadd wpi_cmd2(struct wpi_softc *sc, struct wpi_buf *buf) 22266607310bSBenjamin Close { 2227*fae61c69SAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 2228*fae61c69SAdrian Chadd struct ieee80211com *ic = ifp->if_l2com; 22296607310bSBenjamin Close struct ieee80211_frame *wh; 2230692ad7caSAdrian Chadd struct wpi_tx_cmd *cmd; 2231692ad7caSAdrian Chadd struct wpi_tx_data *data; 2232692ad7caSAdrian Chadd struct wpi_tx_desc *desc; 2233692ad7caSAdrian Chadd struct wpi_tx_ring *ring; 2234692ad7caSAdrian Chadd struct mbuf *m1; 2235692ad7caSAdrian Chadd bus_dma_segment_t *seg, segs[WPI_MAX_SCATTER]; 2236*fae61c69SAdrian Chadd int error, i, hdrspace, nsegs, totlen; 22376607310bSBenjamin Close 2238692ad7caSAdrian Chadd WPI_LOCK_ASSERT(sc); 2239692ad7caSAdrian Chadd 2240692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 2241692ad7caSAdrian Chadd 2242692ad7caSAdrian Chadd wh = mtod(buf->m, struct ieee80211_frame *); 2243*fae61c69SAdrian Chadd hdrspace = ieee80211_anyhdrspace(ic, wh); 2244692ad7caSAdrian Chadd totlen = buf->m->m_pkthdr.len; 2245692ad7caSAdrian Chadd 2246692ad7caSAdrian Chadd ring = &sc->txq[buf->ac]; 22476607310bSBenjamin Close desc = &ring->desc[ring->cur]; 22486607310bSBenjamin Close data = &ring->data[ring->cur]; 22496607310bSBenjamin Close 2250692ad7caSAdrian Chadd /* Prepare TX firmware command. */ 22516607310bSBenjamin Close cmd = &ring->cmd[ring->cur]; 2252692ad7caSAdrian Chadd cmd->code = buf->code; 22536607310bSBenjamin Close cmd->flags = 0; 22546607310bSBenjamin Close cmd->qid = ring->qid; 22556607310bSBenjamin Close cmd->idx = ring->cur; 22566607310bSBenjamin Close 2257692ad7caSAdrian Chadd memcpy(cmd->data, buf->data, buf->size); 22586607310bSBenjamin Close 2259692ad7caSAdrian Chadd /* Save and trim IEEE802.11 header. */ 2260*fae61c69SAdrian Chadd memcpy((uint8_t *)(cmd->data + buf->size), wh, hdrspace); 2261*fae61c69SAdrian Chadd m_adj(buf->m, hdrspace); 22626607310bSBenjamin Close 2263692ad7caSAdrian Chadd error = bus_dmamap_load_mbuf_sg(ring->data_dmat, data->map, buf->m, 2264692ad7caSAdrian Chadd segs, &nsegs, BUS_DMA_NOWAIT); 22656607310bSBenjamin Close if (error != 0 && error != EFBIG) { 2266692ad7caSAdrian Chadd device_printf(sc->sc_dev, 2267692ad7caSAdrian Chadd "%s: can't map mbuf (error %d)\n", __func__, error); 2268692ad7caSAdrian Chadd m_freem(buf->m); 22696607310bSBenjamin Close return error; 22706607310bSBenjamin Close } 22716607310bSBenjamin Close if (error != 0) { 2272692ad7caSAdrian Chadd /* Too many DMA segments, linearize mbuf. */ 2273692ad7caSAdrian Chadd m1 = m_collapse(buf->m, M_NOWAIT, WPI_MAX_SCATTER); 2274692ad7caSAdrian Chadd if (m1 == NULL) { 22756607310bSBenjamin Close device_printf(sc->sc_dev, 2276692ad7caSAdrian Chadd "%s: could not defrag mbuf\n", __func__); 2277692ad7caSAdrian Chadd m_freem(buf->m); 22786607310bSBenjamin Close return ENOBUFS; 22796607310bSBenjamin Close } 2280692ad7caSAdrian Chadd buf->m = m1; 22816607310bSBenjamin Close 22826607310bSBenjamin Close error = bus_dmamap_load_mbuf_sg(ring->data_dmat, data->map, 2283692ad7caSAdrian Chadd buf->m, segs, &nsegs, BUS_DMA_NOWAIT); 22846607310bSBenjamin Close if (error != 0) { 22856607310bSBenjamin Close device_printf(sc->sc_dev, 2286692ad7caSAdrian Chadd "%s: can't map mbuf (error %d)\n", __func__, error); 2287692ad7caSAdrian Chadd m_freem(buf->m); 22886607310bSBenjamin Close return error; 22896607310bSBenjamin Close } 22906607310bSBenjamin Close } 22916607310bSBenjamin Close 2292692ad7caSAdrian Chadd data->m = buf->m; 2293692ad7caSAdrian Chadd data->ni = buf->ni; 22946607310bSBenjamin Close 2295692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_XMIT, "%s: qid %d idx %d len %d nsegs %d\n", 2296692ad7caSAdrian Chadd __func__, ring->qid, ring->cur, totlen, nsegs); 22976607310bSBenjamin Close 2298692ad7caSAdrian Chadd /* Fill TX descriptor. */ 2299*fae61c69SAdrian Chadd desc->nsegs = WPI_PAD32(totlen) << 4 | (1 + nsegs); 2300692ad7caSAdrian Chadd /* First DMA segment is used by the TX command. */ 2301692ad7caSAdrian Chadd desc->segs[0].addr = htole32(data->cmd_paddr); 2302*fae61c69SAdrian Chadd desc->segs[0].len = htole32(4 + buf->size + hdrspace); 2303692ad7caSAdrian Chadd /* Other DMA segments are for data payload. */ 2304692ad7caSAdrian Chadd seg = &segs[0]; 23056607310bSBenjamin Close for (i = 1; i <= nsegs; i++) { 2306692ad7caSAdrian Chadd desc->segs[i].addr = htole32(seg->ds_addr); 2307692ad7caSAdrian Chadd desc->segs[i].len = htole32(seg->ds_len); 2308692ad7caSAdrian Chadd seg++; 23096607310bSBenjamin Close } 23106607310bSBenjamin Close 23116607310bSBenjamin Close bus_dmamap_sync(ring->data_dmat, data->map, BUS_DMASYNC_PREWRITE); 2312692ad7caSAdrian Chadd bus_dmamap_sync(ring->data_dmat, ring->cmd_dma.map, 2313692ad7caSAdrian Chadd BUS_DMASYNC_PREWRITE); 23146607310bSBenjamin Close bus_dmamap_sync(ring->desc_dma.tag, ring->desc_dma.map, 23156607310bSBenjamin Close BUS_DMASYNC_PREWRITE); 23166607310bSBenjamin Close 2317692ad7caSAdrian Chadd /* Kick TX ring. */ 23186607310bSBenjamin Close ring->cur = (ring->cur + 1) % WPI_TX_RING_COUNT; 2319692ad7caSAdrian Chadd wpi_update_tx_ring(sc, ring); 2320692ad7caSAdrian Chadd 2321692ad7caSAdrian Chadd /* Mark TX ring as full if we reach a certain threshold. */ 2322692ad7caSAdrian Chadd if (++ring->queued > WPI_TX_RING_HIMARK) 2323692ad7caSAdrian Chadd sc->qfullmsk |= 1 << ring->qid; 2324692ad7caSAdrian Chadd 2325692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 2326692ad7caSAdrian Chadd 2327692ad7caSAdrian Chadd return 0; 2328692ad7caSAdrian Chadd } 2329692ad7caSAdrian Chadd 2330692ad7caSAdrian Chadd /* 2331692ad7caSAdrian Chadd * Construct the data packet for a transmit buffer. 2332692ad7caSAdrian Chadd */ 2333692ad7caSAdrian Chadd static int 2334692ad7caSAdrian Chadd wpi_tx_data(struct wpi_softc *sc, struct mbuf *m, struct ieee80211_node *ni) 2335692ad7caSAdrian Chadd { 2336692ad7caSAdrian Chadd const struct ieee80211_txparam *tp; 2337692ad7caSAdrian Chadd struct ieee80211vap *vap = ni->ni_vap; 2338692ad7caSAdrian Chadd struct ieee80211com *ic = ni->ni_ic; 2339692ad7caSAdrian Chadd struct wpi_node *wn = (void *)ni; 2340692ad7caSAdrian Chadd struct ieee80211_channel *chan; 2341692ad7caSAdrian Chadd struct ieee80211_frame *wh; 2342692ad7caSAdrian Chadd struct ieee80211_key *k = NULL; 2343692ad7caSAdrian Chadd struct wpi_cmd_data tx; 2344692ad7caSAdrian Chadd struct wpi_buf tx_data; 2345692ad7caSAdrian Chadd uint32_t flags; 2346692ad7caSAdrian Chadd uint16_t qos; 2347692ad7caSAdrian Chadd uint8_t tid, type; 2348*fae61c69SAdrian Chadd int ac, error, rate, ismcast, hdrlen, totlen; 2349692ad7caSAdrian Chadd 2350692ad7caSAdrian Chadd wh = mtod(m, struct ieee80211_frame *); 2351*fae61c69SAdrian Chadd hdrlen = ieee80211_anyhdrsize(wh); 2352692ad7caSAdrian Chadd type = wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK; 2353692ad7caSAdrian Chadd ismcast = IEEE80211_IS_MULTICAST(wh->i_addr1); 2354692ad7caSAdrian Chadd 2355692ad7caSAdrian Chadd /* Select EDCA Access Category and TX ring for this frame. */ 2356692ad7caSAdrian Chadd if (IEEE80211_QOS_HAS_SEQ(wh)) { 2357692ad7caSAdrian Chadd qos = ((const struct ieee80211_qosframe *)wh)->i_qos[0]; 2358692ad7caSAdrian Chadd tid = qos & IEEE80211_QOS_TID; 2359692ad7caSAdrian Chadd } else { 2360692ad7caSAdrian Chadd qos = 0; 2361692ad7caSAdrian Chadd tid = 0; 2362692ad7caSAdrian Chadd } 2363692ad7caSAdrian Chadd ac = M_WME_GETAC(m); 2364692ad7caSAdrian Chadd 2365692ad7caSAdrian Chadd chan = (ni->ni_chan != IEEE80211_CHAN_ANYC) ? 2366692ad7caSAdrian Chadd ni->ni_chan : ic->ic_curchan; 2367692ad7caSAdrian Chadd tp = &vap->iv_txparms[ieee80211_chan2mode(chan)]; 2368692ad7caSAdrian Chadd 2369692ad7caSAdrian Chadd /* Choose a TX rate index. */ 2370692ad7caSAdrian Chadd if (type == IEEE80211_FC0_TYPE_MGT) 2371692ad7caSAdrian Chadd rate = tp->mgmtrate; 2372692ad7caSAdrian Chadd else if (ismcast) 2373692ad7caSAdrian Chadd rate = tp->mcastrate; 2374692ad7caSAdrian Chadd else if (tp->ucastrate != IEEE80211_FIXED_RATE_NONE) 2375692ad7caSAdrian Chadd rate = tp->ucastrate; 2376692ad7caSAdrian Chadd else if (m->m_flags & M_EAPOL) 2377692ad7caSAdrian Chadd rate = tp->mgmtrate; 2378692ad7caSAdrian Chadd else { 2379692ad7caSAdrian Chadd /* XXX pass pktlen */ 2380692ad7caSAdrian Chadd (void) ieee80211_ratectl_rate(ni, NULL, 0); 2381692ad7caSAdrian Chadd rate = ni->ni_txrate; 2382692ad7caSAdrian Chadd } 2383692ad7caSAdrian Chadd 2384692ad7caSAdrian Chadd /* Encrypt the frame if need be. */ 2385692ad7caSAdrian Chadd if (wh->i_fc[1] & IEEE80211_FC1_PROTECTED) { 2386692ad7caSAdrian Chadd /* Retrieve key for TX. */ 2387692ad7caSAdrian Chadd k = ieee80211_crypto_encap(ni, m); 2388692ad7caSAdrian Chadd if (k == NULL) { 2389692ad7caSAdrian Chadd error = ENOBUFS; 2390692ad7caSAdrian Chadd goto fail; 2391692ad7caSAdrian Chadd } 2392692ad7caSAdrian Chadd /* 802.11 header may have moved. */ 2393692ad7caSAdrian Chadd wh = mtod(m, struct ieee80211_frame *); 2394692ad7caSAdrian Chadd } 2395*fae61c69SAdrian Chadd totlen = m->m_pkthdr.len - (hdrlen & 3); 2396692ad7caSAdrian Chadd 2397692ad7caSAdrian Chadd if (ieee80211_radiotap_active_vap(vap)) { 2398692ad7caSAdrian Chadd struct wpi_tx_radiotap_header *tap = &sc->sc_txtap; 2399692ad7caSAdrian Chadd 2400*fae61c69SAdrian Chadd tap->wt_flags = IEEE80211_RADIOTAP_F_DATAPAD; 2401692ad7caSAdrian Chadd tap->wt_rate = rate; 2402692ad7caSAdrian Chadd if (k != NULL) 2403692ad7caSAdrian Chadd tap->wt_flags |= IEEE80211_RADIOTAP_F_WEP; 2404692ad7caSAdrian Chadd 2405692ad7caSAdrian Chadd ieee80211_radiotap_tx(vap, m); 2406692ad7caSAdrian Chadd } 2407692ad7caSAdrian Chadd 2408692ad7caSAdrian Chadd flags = 0; 2409692ad7caSAdrian Chadd if (!ismcast) { 2410692ad7caSAdrian Chadd /* Unicast frame, check if an ACK is expected. */ 2411692ad7caSAdrian Chadd if (!qos || (qos & IEEE80211_QOS_ACKPOLICY) != 2412692ad7caSAdrian Chadd IEEE80211_QOS_ACKPOLICY_NOACK) 2413692ad7caSAdrian Chadd flags |= WPI_TX_NEED_ACK; 2414692ad7caSAdrian Chadd } 2415692ad7caSAdrian Chadd 2416*fae61c69SAdrian Chadd if (wh->i_fc[1] & IEEE80211_FC1_MORE_FRAG) 2417*fae61c69SAdrian Chadd flags |= WPI_TX_MORE_FRAG; /* Cannot happen yet. */ 2418*fae61c69SAdrian Chadd 2419692ad7caSAdrian Chadd /* Check if frame must be protected using RTS/CTS or CTS-to-self. */ 2420692ad7caSAdrian Chadd if (!ismcast) { 2421692ad7caSAdrian Chadd /* NB: Group frames are sent using CCK in 802.11b/g. */ 2422692ad7caSAdrian Chadd if (totlen + IEEE80211_CRC_LEN > vap->iv_rtsthreshold) { 2423692ad7caSAdrian Chadd flags |= WPI_TX_NEED_RTS; 2424692ad7caSAdrian Chadd } else if ((ic->ic_flags & IEEE80211_F_USEPROT) && 2425692ad7caSAdrian Chadd WPI_RATE_IS_OFDM(rate)) { 2426692ad7caSAdrian Chadd if (ic->ic_protmode == IEEE80211_PROT_CTSONLY) 2427692ad7caSAdrian Chadd flags |= WPI_TX_NEED_CTS; 2428692ad7caSAdrian Chadd else if (ic->ic_protmode == IEEE80211_PROT_RTSCTS) 2429692ad7caSAdrian Chadd flags |= WPI_TX_NEED_RTS; 2430692ad7caSAdrian Chadd } 2431692ad7caSAdrian Chadd 2432692ad7caSAdrian Chadd if (flags & (WPI_TX_NEED_RTS | WPI_TX_NEED_CTS)) 2433692ad7caSAdrian Chadd flags |= WPI_TX_FULL_TXOP; 2434692ad7caSAdrian Chadd } 2435692ad7caSAdrian Chadd 2436692ad7caSAdrian Chadd memset(&tx, 0, sizeof (struct wpi_cmd_data)); 2437692ad7caSAdrian Chadd if (type == IEEE80211_FC0_TYPE_MGT) { 2438692ad7caSAdrian Chadd uint8_t subtype = wh->i_fc[0] & IEEE80211_FC0_SUBTYPE_MASK; 2439692ad7caSAdrian Chadd 2440692ad7caSAdrian Chadd /* Tell HW to set timestamp in probe responses. */ 2441692ad7caSAdrian Chadd if (subtype == IEEE80211_FC0_SUBTYPE_PROBE_RESP) 2442692ad7caSAdrian Chadd flags |= WPI_TX_INSERT_TSTAMP; 2443692ad7caSAdrian Chadd if (subtype == IEEE80211_FC0_SUBTYPE_ASSOC_REQ || 2444692ad7caSAdrian Chadd subtype == IEEE80211_FC0_SUBTYPE_REASSOC_REQ) 2445692ad7caSAdrian Chadd tx.timeout = htole16(3); 2446692ad7caSAdrian Chadd else 2447692ad7caSAdrian Chadd tx.timeout = htole16(2); 2448692ad7caSAdrian Chadd } 2449692ad7caSAdrian Chadd 2450692ad7caSAdrian Chadd if (ismcast || type != IEEE80211_FC0_TYPE_DATA) 2451692ad7caSAdrian Chadd tx.id = WPI_ID_BROADCAST; 2452692ad7caSAdrian Chadd else { 2453692ad7caSAdrian Chadd if (wn->id == WPI_ID_UNDEFINED && 2454692ad7caSAdrian Chadd (vap->iv_opmode == IEEE80211_M_IBSS || 2455692ad7caSAdrian Chadd vap->iv_opmode == IEEE80211_M_AHDEMO)) { 2456692ad7caSAdrian Chadd error = wpi_add_ibss_node(sc, ni); 2457692ad7caSAdrian Chadd if (error != 0) { 2458692ad7caSAdrian Chadd device_printf(sc->sc_dev, 2459692ad7caSAdrian Chadd "%s: could not add IBSS node, error %d\n", 2460692ad7caSAdrian Chadd __func__, error); 2461692ad7caSAdrian Chadd goto fail; 2462692ad7caSAdrian Chadd } 2463692ad7caSAdrian Chadd } 2464692ad7caSAdrian Chadd 2465692ad7caSAdrian Chadd if (wn->id == WPI_ID_UNDEFINED) { 2466692ad7caSAdrian Chadd device_printf(sc->sc_dev, 2467692ad7caSAdrian Chadd "%s: undefined node id\n", __func__); 2468692ad7caSAdrian Chadd error = EINVAL; 2469692ad7caSAdrian Chadd goto fail; 2470692ad7caSAdrian Chadd } 2471692ad7caSAdrian Chadd 2472692ad7caSAdrian Chadd tx.id = wn->id; 2473692ad7caSAdrian Chadd } 2474692ad7caSAdrian Chadd 2475692ad7caSAdrian Chadd if (type != IEEE80211_FC0_TYPE_MGT) 2476692ad7caSAdrian Chadd tx.data_ntries = tp->maxretry; 2477692ad7caSAdrian Chadd 2478692ad7caSAdrian Chadd tx.len = htole16(totlen); 2479692ad7caSAdrian Chadd tx.flags = htole32(flags); 2480692ad7caSAdrian Chadd tx.plcp = rate2plcp(rate); 2481692ad7caSAdrian Chadd tx.tid = tid; 2482692ad7caSAdrian Chadd tx.lifetime = htole32(WPI_LIFETIME_INFINITE); 2483692ad7caSAdrian Chadd tx.ofdm_mask = 0xff; 2484692ad7caSAdrian Chadd tx.cck_mask = 0x0f; 2485692ad7caSAdrian Chadd tx.rts_ntries = 7; 2486692ad7caSAdrian Chadd 2487692ad7caSAdrian Chadd if (k != NULL && k->wk_cipher->ic_cipher == IEEE80211_CIPHER_AES_CCM) { 2488692ad7caSAdrian Chadd if (!(k->wk_flags & IEEE80211_KEY_SWCRYPT)) { 2489692ad7caSAdrian Chadd tx.security = WPI_CIPHER_CCMP; 2490692ad7caSAdrian Chadd memcpy(tx.key, k->wk_key, k->wk_keylen); 2491692ad7caSAdrian Chadd } 2492692ad7caSAdrian Chadd } 2493692ad7caSAdrian Chadd 2494692ad7caSAdrian Chadd tx_data.data = &tx; 2495692ad7caSAdrian Chadd tx_data.ni = ni; 2496692ad7caSAdrian Chadd tx_data.m = m; 2497692ad7caSAdrian Chadd tx_data.size = sizeof(tx); 2498692ad7caSAdrian Chadd tx_data.code = WPI_CMD_TX_DATA; 2499692ad7caSAdrian Chadd tx_data.ac = ac; 2500692ad7caSAdrian Chadd 2501692ad7caSAdrian Chadd return wpi_cmd2(sc, &tx_data); 2502692ad7caSAdrian Chadd 2503692ad7caSAdrian Chadd fail: m_freem(m); 2504692ad7caSAdrian Chadd return error; 2505692ad7caSAdrian Chadd } 2506692ad7caSAdrian Chadd 2507692ad7caSAdrian Chadd static int 2508692ad7caSAdrian Chadd wpi_tx_data_raw(struct wpi_softc *sc, struct mbuf *m, struct ieee80211_node *ni, 2509692ad7caSAdrian Chadd const struct ieee80211_bpf_params *params) 2510692ad7caSAdrian Chadd { 2511692ad7caSAdrian Chadd struct ieee80211vap *vap = ni->ni_vap; 2512692ad7caSAdrian Chadd struct ieee80211_frame *wh; 2513692ad7caSAdrian Chadd struct wpi_cmd_data tx; 2514692ad7caSAdrian Chadd struct wpi_buf tx_data; 2515692ad7caSAdrian Chadd uint32_t flags; 2516692ad7caSAdrian Chadd uint8_t type; 2517*fae61c69SAdrian Chadd int ac, rate, hdrlen, totlen; 2518692ad7caSAdrian Chadd 2519692ad7caSAdrian Chadd wh = mtod(m, struct ieee80211_frame *); 2520*fae61c69SAdrian Chadd hdrlen = ieee80211_anyhdrsize(wh); 2521692ad7caSAdrian Chadd type = wh->i_fc[0] & IEEE80211_FC0_TYPE_MASK; 2522*fae61c69SAdrian Chadd totlen = m->m_pkthdr.len - (hdrlen & 3); 2523692ad7caSAdrian Chadd 2524692ad7caSAdrian Chadd ac = params->ibp_pri & 3; 2525692ad7caSAdrian Chadd 2526692ad7caSAdrian Chadd /* Choose a TX rate index. */ 2527692ad7caSAdrian Chadd rate = params->ibp_rate0; 2528692ad7caSAdrian Chadd 2529692ad7caSAdrian Chadd flags = 0; 2530692ad7caSAdrian Chadd if ((params->ibp_flags & IEEE80211_BPF_NOACK) == 0) 2531692ad7caSAdrian Chadd flags |= WPI_TX_NEED_ACK; 2532692ad7caSAdrian Chadd if (params->ibp_flags & IEEE80211_BPF_RTS) 2533692ad7caSAdrian Chadd flags |= WPI_TX_NEED_RTS; 2534692ad7caSAdrian Chadd if (params->ibp_flags & IEEE80211_BPF_CTS) 2535692ad7caSAdrian Chadd flags |= WPI_TX_NEED_CTS; 2536692ad7caSAdrian Chadd if (flags & (WPI_TX_NEED_RTS | WPI_TX_NEED_CTS)) 2537692ad7caSAdrian Chadd flags |= WPI_TX_FULL_TXOP; 2538692ad7caSAdrian Chadd 2539692ad7caSAdrian Chadd if (ieee80211_radiotap_active_vap(vap)) { 2540692ad7caSAdrian Chadd struct wpi_tx_radiotap_header *tap = &sc->sc_txtap; 2541692ad7caSAdrian Chadd 2542692ad7caSAdrian Chadd tap->wt_flags = 0; 2543692ad7caSAdrian Chadd tap->wt_rate = rate; 2544*fae61c69SAdrian Chadd if (params->ibp_flags & IEEE80211_BPF_DATAPAD) 2545*fae61c69SAdrian Chadd tap->wt_flags |= IEEE80211_RADIOTAP_F_DATAPAD; 2546692ad7caSAdrian Chadd 2547692ad7caSAdrian Chadd ieee80211_radiotap_tx(vap, m); 2548692ad7caSAdrian Chadd } 2549692ad7caSAdrian Chadd 2550692ad7caSAdrian Chadd memset(&tx, 0, sizeof (struct wpi_cmd_data)); 2551692ad7caSAdrian Chadd if (type == IEEE80211_FC0_TYPE_MGT) { 2552692ad7caSAdrian Chadd uint8_t subtype = wh->i_fc[0] & IEEE80211_FC0_SUBTYPE_MASK; 2553692ad7caSAdrian Chadd 2554692ad7caSAdrian Chadd /* Tell HW to set timestamp in probe responses. */ 2555692ad7caSAdrian Chadd if (subtype == IEEE80211_FC0_SUBTYPE_PROBE_RESP) 2556692ad7caSAdrian Chadd flags |= WPI_TX_INSERT_TSTAMP; 2557692ad7caSAdrian Chadd if (subtype == IEEE80211_FC0_SUBTYPE_ASSOC_REQ || 2558692ad7caSAdrian Chadd subtype == IEEE80211_FC0_SUBTYPE_REASSOC_REQ) 2559692ad7caSAdrian Chadd tx.timeout = htole16(3); 2560692ad7caSAdrian Chadd else 2561692ad7caSAdrian Chadd tx.timeout = htole16(2); 2562692ad7caSAdrian Chadd } 2563692ad7caSAdrian Chadd 2564692ad7caSAdrian Chadd tx.len = htole16(totlen); 2565692ad7caSAdrian Chadd tx.flags = htole32(flags); 2566692ad7caSAdrian Chadd tx.plcp = rate2plcp(rate); 2567692ad7caSAdrian Chadd tx.id = WPI_ID_BROADCAST; 2568692ad7caSAdrian Chadd tx.lifetime = htole32(WPI_LIFETIME_INFINITE); 2569692ad7caSAdrian Chadd tx.rts_ntries = params->ibp_try1; 2570692ad7caSAdrian Chadd tx.data_ntries = params->ibp_try0; 2571692ad7caSAdrian Chadd 2572692ad7caSAdrian Chadd tx_data.data = &tx; 2573692ad7caSAdrian Chadd tx_data.ni = ni; 2574692ad7caSAdrian Chadd tx_data.m = m; 2575692ad7caSAdrian Chadd tx_data.size = sizeof(tx); 2576692ad7caSAdrian Chadd tx_data.code = WPI_CMD_TX_DATA; 2577692ad7caSAdrian Chadd tx_data.ac = ac; 2578692ad7caSAdrian Chadd 2579692ad7caSAdrian Chadd return wpi_cmd2(sc, &tx_data); 2580692ad7caSAdrian Chadd } 2581692ad7caSAdrian Chadd 2582692ad7caSAdrian Chadd static int 2583692ad7caSAdrian Chadd wpi_raw_xmit(struct ieee80211_node *ni, struct mbuf *m, 2584692ad7caSAdrian Chadd const struct ieee80211_bpf_params *params) 2585692ad7caSAdrian Chadd { 2586692ad7caSAdrian Chadd struct ieee80211com *ic = ni->ni_ic; 2587692ad7caSAdrian Chadd struct ifnet *ifp = ic->ic_ifp; 2588692ad7caSAdrian Chadd struct wpi_softc *sc = ifp->if_softc; 2589692ad7caSAdrian Chadd int error = 0; 2590692ad7caSAdrian Chadd 2591692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 2592692ad7caSAdrian Chadd 2593692ad7caSAdrian Chadd if ((ifp->if_drv_flags & IFF_DRV_RUNNING) == 0) { 2594692ad7caSAdrian Chadd ieee80211_free_node(ni); 2595692ad7caSAdrian Chadd m_freem(m); 2596692ad7caSAdrian Chadd return ENETDOWN; 2597692ad7caSAdrian Chadd } 2598692ad7caSAdrian Chadd 2599692ad7caSAdrian Chadd WPI_LOCK(sc); 2600692ad7caSAdrian Chadd if (params == NULL) { 2601692ad7caSAdrian Chadd /* 2602692ad7caSAdrian Chadd * Legacy path; interpret frame contents to decide 2603692ad7caSAdrian Chadd * precisely how to send the frame. 2604692ad7caSAdrian Chadd */ 2605692ad7caSAdrian Chadd error = wpi_tx_data(sc, m, ni); 2606692ad7caSAdrian Chadd } else { 2607692ad7caSAdrian Chadd /* 2608692ad7caSAdrian Chadd * Caller supplied explicit parameters to use in 2609692ad7caSAdrian Chadd * sending the frame. 2610692ad7caSAdrian Chadd */ 2611692ad7caSAdrian Chadd error = wpi_tx_data_raw(sc, m, ni, params); 2612692ad7caSAdrian Chadd } 2613692ad7caSAdrian Chadd WPI_UNLOCK(sc); 2614692ad7caSAdrian Chadd 2615692ad7caSAdrian Chadd if (error != 0) { 2616692ad7caSAdrian Chadd /* NB: m is reclaimed on tx failure */ 2617692ad7caSAdrian Chadd ieee80211_free_node(ni); 2618692ad7caSAdrian Chadd if_inc_counter(ifp, IFCOUNTER_OERRORS, 1); 2619692ad7caSAdrian Chadd 2620692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END_ERR, __func__); 2621692ad7caSAdrian Chadd 2622692ad7caSAdrian Chadd return error; 2623692ad7caSAdrian Chadd } 2624692ad7caSAdrian Chadd 2625692ad7caSAdrian Chadd sc->sc_tx_timer = 5; 2626692ad7caSAdrian Chadd 2627692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 26286607310bSBenjamin Close 26296607310bSBenjamin Close return 0; 26306607310bSBenjamin Close } 26316607310bSBenjamin Close 26326607310bSBenjamin Close /** 26336607310bSBenjamin Close * Process data waiting to be sent on the IFNET output queue 26346607310bSBenjamin Close */ 26356607310bSBenjamin Close static void 26366607310bSBenjamin Close wpi_start(struct ifnet *ifp) 26376607310bSBenjamin Close { 26386607310bSBenjamin Close struct wpi_softc *sc = ifp->if_softc; 2639b032f27cSSam Leffler 2640b032f27cSSam Leffler WPI_LOCK(sc); 2641b032f27cSSam Leffler wpi_start_locked(ifp); 2642b032f27cSSam Leffler WPI_UNLOCK(sc); 2643b032f27cSSam Leffler } 2644b032f27cSSam Leffler 2645b032f27cSSam Leffler static void 2646b032f27cSSam Leffler wpi_start_locked(struct ifnet *ifp) 2647b032f27cSSam Leffler { 2648b032f27cSSam Leffler struct wpi_softc *sc = ifp->if_softc; 26496607310bSBenjamin Close struct ieee80211_node *ni; 2650b032f27cSSam Leffler struct mbuf *m; 2651b032f27cSSam Leffler 2652b032f27cSSam Leffler WPI_LOCK_ASSERT(sc); 26536607310bSBenjamin Close 2654692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_XMIT, "%s: called\n", __func__); 2655692ad7caSAdrian Chadd 2656692ad7caSAdrian Chadd if ((ifp->if_drv_flags & IFF_DRV_RUNNING) == 0 || 2657692ad7caSAdrian Chadd (ifp->if_drv_flags & IFF_DRV_OACTIVE)) 265882f1b132SAndrew Thompson return; 265982f1b132SAndrew Thompson 26606607310bSBenjamin Close for (;;) { 2661692ad7caSAdrian Chadd if (sc->qfullmsk != 0) { 2662692ad7caSAdrian Chadd ifp->if_drv_flags |= IFF_DRV_OACTIVE; 2663692ad7caSAdrian Chadd break; 2664692ad7caSAdrian Chadd } 2665fcec677dSJuli Mallett IFQ_DRV_DEQUEUE(&ifp->if_snd, m); 2666b032f27cSSam Leffler if (m == NULL) 26676607310bSBenjamin Close break; 2668b032f27cSSam Leffler ni = (struct ieee80211_node *)m->m_pkthdr.rcvif; 2669692ad7caSAdrian Chadd if (wpi_tx_data(sc, m, ni) != 0) { 2670692ad7caSAdrian Chadd WPI_UNLOCK(sc); 26716607310bSBenjamin Close ieee80211_free_node(ni); 2672b032f27cSSam Leffler WPI_LOCK(sc); 2673692ad7caSAdrian Chadd if_inc_counter(ifp, IFCOUNTER_OERRORS, 1); 2674692ad7caSAdrian Chadd } else 2675692ad7caSAdrian Chadd sc->sc_tx_timer = 5; 2676b032f27cSSam Leffler } 2677b032f27cSSam Leffler 2678692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_XMIT, "%s: done\n", __func__); 2679692ad7caSAdrian Chadd } 2680b032f27cSSam Leffler 2681692ad7caSAdrian Chadd static void 2682692ad7caSAdrian Chadd wpi_watchdog_rfkill(void *arg) 2683692ad7caSAdrian Chadd { 2684692ad7caSAdrian Chadd struct wpi_softc *sc = arg; 2685692ad7caSAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 2686692ad7caSAdrian Chadd struct ieee80211com *ic = ifp->if_l2com; 2687692ad7caSAdrian Chadd 2688692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_WATCHDOG, "RFkill Watchdog: tick\n"); 2689692ad7caSAdrian Chadd 2690692ad7caSAdrian Chadd /* No need to lock firmware memory. */ 2691692ad7caSAdrian Chadd if ((wpi_prph_read(sc, WPI_APMG_RFKILL) & 0x1) == 0) { 2692692ad7caSAdrian Chadd /* Radio kill switch is still off. */ 2693692ad7caSAdrian Chadd callout_reset(&sc->watchdog_rfkill, hz, wpi_watchdog_rfkill, 2694692ad7caSAdrian Chadd sc); 2695692ad7caSAdrian Chadd } else 2696692ad7caSAdrian Chadd ieee80211_runtask(ic, &sc->sc_radioon_task); 2697692ad7caSAdrian Chadd } 2698692ad7caSAdrian Chadd 2699692ad7caSAdrian Chadd /** 2700692ad7caSAdrian Chadd * Called every second, wpi_watchdog used by the watch dog timer 2701692ad7caSAdrian Chadd * to check that the card is still alive 2702692ad7caSAdrian Chadd */ 2703692ad7caSAdrian Chadd static void 2704692ad7caSAdrian Chadd wpi_watchdog(void *arg) 2705692ad7caSAdrian Chadd { 2706692ad7caSAdrian Chadd struct wpi_softc *sc = arg; 2707692ad7caSAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 2708692ad7caSAdrian Chadd struct ieee80211com *ic = ifp->if_l2com; 2709692ad7caSAdrian Chadd 2710692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_WATCHDOG, "Watchdog: tick\n"); 2711692ad7caSAdrian Chadd 2712692ad7caSAdrian Chadd if (sc->sc_tx_timer > 0) { 2713692ad7caSAdrian Chadd if (--sc->sc_tx_timer == 0) { 2714692ad7caSAdrian Chadd if_printf(ifp, "device timeout\n"); 2715c8dfaf38SGleb Smirnoff if_inc_counter(ifp, IFCOUNTER_OERRORS, 1); 2716692ad7caSAdrian Chadd ieee80211_runtask(ic, &sc->sc_reinittask); 2717692ad7caSAdrian Chadd } 2718692ad7caSAdrian Chadd } 2719692ad7caSAdrian Chadd 2720692ad7caSAdrian Chadd if (sc->sc_scan_timer > 0) { 2721692ad7caSAdrian Chadd struct ieee80211vap *vap = TAILQ_FIRST(&ic->ic_vaps); 2722692ad7caSAdrian Chadd if (--sc->sc_scan_timer == 0 && vap != NULL) { 2723692ad7caSAdrian Chadd if_printf(ifp, "scan timeout\n"); 2724692ad7caSAdrian Chadd ieee80211_cancel_scan(vap); 2725692ad7caSAdrian Chadd ieee80211_runtask(ic, &sc->sc_reinittask); 2726692ad7caSAdrian Chadd } 2727692ad7caSAdrian Chadd } 2728692ad7caSAdrian Chadd 2729692ad7caSAdrian Chadd if (ifp->if_drv_flags & IFF_DRV_RUNNING) 2730692ad7caSAdrian Chadd callout_reset(&sc->watchdog_to, hz, wpi_watchdog, sc); 27316607310bSBenjamin Close } 27326607310bSBenjamin Close 27336607310bSBenjamin Close static int 27346607310bSBenjamin Close wpi_ioctl(struct ifnet *ifp, u_long cmd, caddr_t data) 27356607310bSBenjamin Close { 27366607310bSBenjamin Close struct wpi_softc *sc = ifp->if_softc; 2737b032f27cSSam Leffler struct ieee80211com *ic = ifp->if_l2com; 2738692ad7caSAdrian Chadd struct ieee80211vap *vap = TAILQ_FIRST(&ic->ic_vaps); 2739b032f27cSSam Leffler struct ifreq *ifr = (struct ifreq *) data; 2740692ad7caSAdrian Chadd int error = 0, startall = 0, stop = 0; 27416607310bSBenjamin Close 27426607310bSBenjamin Close switch (cmd) { 2743692ad7caSAdrian Chadd case SIOCGIFADDR: 2744692ad7caSAdrian Chadd error = ether_ioctl(ifp, cmd, data); 2745692ad7caSAdrian Chadd break; 27466607310bSBenjamin Close case SIOCSIFFLAGS: 274731a8c1edSAndrew Thompson WPI_LOCK(sc); 2748692ad7caSAdrian Chadd if (ifp->if_flags & IFF_UP) { 2749b032f27cSSam Leffler if (!(ifp->if_drv_flags & IFF_DRV_RUNNING)) { 2750692ad7caSAdrian Chadd wpi_init_locked(sc); 2751692ad7caSAdrian Chadd if (WPI_READ(sc, WPI_GP_CNTRL) & 2752692ad7caSAdrian Chadd WPI_GP_CNTRL_RFKILL) 2753b032f27cSSam Leffler startall = 1; 2754692ad7caSAdrian Chadd else 2755692ad7caSAdrian Chadd stop = 1; 2756b032f27cSSam Leffler } 2757692ad7caSAdrian Chadd } else if (ifp->if_drv_flags & IFF_DRV_RUNNING) 27586607310bSBenjamin Close wpi_stop_locked(sc); 27596607310bSBenjamin Close WPI_UNLOCK(sc); 2760b032f27cSSam Leffler if (startall) 2761b032f27cSSam Leffler ieee80211_start_all(ic); 2762692ad7caSAdrian Chadd else if (vap != NULL && stop) 2763692ad7caSAdrian Chadd ieee80211_stop(vap); 276431a8c1edSAndrew Thompson break; 276531a8c1edSAndrew Thompson case SIOCGIFMEDIA: 276631a8c1edSAndrew Thompson error = ifmedia_ioctl(ifp, ifr, &ic->ic_media, cmd); 276731a8c1edSAndrew Thompson break; 276831a8c1edSAndrew Thompson default: 276931a8c1edSAndrew Thompson error = EINVAL; 277031a8c1edSAndrew Thompson break; 277131a8c1edSAndrew Thompson } 27726607310bSBenjamin Close return error; 27736607310bSBenjamin Close } 27746607310bSBenjamin Close 27756607310bSBenjamin Close /* 27766607310bSBenjamin Close * Send a command to the firmware. 27776607310bSBenjamin Close */ 27786607310bSBenjamin Close static int 2779692ad7caSAdrian Chadd wpi_cmd(struct wpi_softc *sc, int code, const void *buf, size_t size, 2780692ad7caSAdrian Chadd int async) 27816607310bSBenjamin Close { 2782692ad7caSAdrian Chadd struct wpi_tx_ring *ring = &sc->txq[4]; 27836607310bSBenjamin Close struct wpi_tx_desc *desc; 2784692ad7caSAdrian Chadd struct wpi_tx_data *data; 27856607310bSBenjamin Close struct wpi_tx_cmd *cmd; 2786692ad7caSAdrian Chadd struct mbuf *m; 2787692ad7caSAdrian Chadd bus_addr_t paddr; 2788692ad7caSAdrian Chadd int totlen, error; 27896607310bSBenjamin Close 2790692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 2791692ad7caSAdrian Chadd 2792692ad7caSAdrian Chadd if (async == 0) 27936607310bSBenjamin Close WPI_LOCK_ASSERT(sc); 27946607310bSBenjamin Close 2795692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_CMD, "wpi_cmd %s size %zu async %d\n", 2796692ad7caSAdrian Chadd wpi_cmd_str(code), size, async); 27976607310bSBenjamin Close 27986607310bSBenjamin Close if (sc->flags & WPI_FLAG_BUSY) { 27996607310bSBenjamin Close device_printf(sc->sc_dev, "%s: cmd %d not sent, busy\n", 28006607310bSBenjamin Close __func__, code); 28016607310bSBenjamin Close return EAGAIN; 28026607310bSBenjamin Close } 28036607310bSBenjamin Close sc->flags |= WPI_FLAG_BUSY; 28046607310bSBenjamin Close 28056607310bSBenjamin Close desc = &ring->desc[ring->cur]; 2806692ad7caSAdrian Chadd data = &ring->data[ring->cur]; 2807692ad7caSAdrian Chadd totlen = 4 + size; 2808692ad7caSAdrian Chadd 2809692ad7caSAdrian Chadd if (size > sizeof cmd->data) { 2810692ad7caSAdrian Chadd /* Command is too large to fit in a descriptor. */ 2811692ad7caSAdrian Chadd if (totlen > MCLBYTES) 2812692ad7caSAdrian Chadd return EINVAL; 2813692ad7caSAdrian Chadd m = m_getjcl(M_NOWAIT, MT_DATA, M_PKTHDR, MJUMPAGESIZE); 2814692ad7caSAdrian Chadd if (m == NULL) 2815692ad7caSAdrian Chadd return ENOMEM; 2816692ad7caSAdrian Chadd cmd = mtod(m, struct wpi_tx_cmd *); 2817692ad7caSAdrian Chadd error = bus_dmamap_load(ring->data_dmat, data->map, cmd, 2818692ad7caSAdrian Chadd totlen, wpi_dma_map_addr, &paddr, BUS_DMA_NOWAIT); 2819692ad7caSAdrian Chadd if (error != 0) { 2820692ad7caSAdrian Chadd m_freem(m); 2821692ad7caSAdrian Chadd return error; 2822692ad7caSAdrian Chadd } 2823692ad7caSAdrian Chadd data->m = m; 2824692ad7caSAdrian Chadd } else { 28256607310bSBenjamin Close cmd = &ring->cmd[ring->cur]; 2826692ad7caSAdrian Chadd paddr = data->cmd_paddr; 2827692ad7caSAdrian Chadd } 28286607310bSBenjamin Close 28296607310bSBenjamin Close cmd->code = code; 28306607310bSBenjamin Close cmd->flags = 0; 28316607310bSBenjamin Close cmd->qid = ring->qid; 28326607310bSBenjamin Close cmd->idx = ring->cur; 28336607310bSBenjamin Close memcpy(cmd->data, buf, size); 28346607310bSBenjamin Close 2835692ad7caSAdrian Chadd desc->nsegs = 1 + (WPI_PAD32(size) << 4); 2836692ad7caSAdrian Chadd desc->segs[0].addr = htole32(paddr); 2837692ad7caSAdrian Chadd desc->segs[0].len = htole32(totlen); 28386607310bSBenjamin Close 2839692ad7caSAdrian Chadd if (size > sizeof cmd->data) { 2840692ad7caSAdrian Chadd bus_dmamap_sync(ring->data_dmat, data->map, 2841692ad7caSAdrian Chadd BUS_DMASYNC_PREWRITE); 2842692ad7caSAdrian Chadd } else { 2843692ad7caSAdrian Chadd bus_dmamap_sync(ring->data_dmat, ring->cmd_dma.map, 2844692ad7caSAdrian Chadd BUS_DMASYNC_PREWRITE); 2845692ad7caSAdrian Chadd } 2846692ad7caSAdrian Chadd bus_dmamap_sync(ring->desc_dma.tag, ring->desc_dma.map, 2847692ad7caSAdrian Chadd BUS_DMASYNC_PREWRITE); 2848692ad7caSAdrian Chadd 2849692ad7caSAdrian Chadd /* Kick command ring. */ 2850692ad7caSAdrian Chadd ring->cur = (ring->cur + 1) % WPI_TX_RING_COUNT; 2851692ad7caSAdrian Chadd wpi_update_tx_ring(sc, ring); 2852692ad7caSAdrian Chadd 2853692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 28546607310bSBenjamin Close 28556607310bSBenjamin Close if (async) { 28566607310bSBenjamin Close sc->flags &= ~WPI_FLAG_BUSY; 28576607310bSBenjamin Close return 0; 28586607310bSBenjamin Close } 28596607310bSBenjamin Close 28606607310bSBenjamin Close return msleep(cmd, &sc->sc_mtx, PCATCH, "wpicmd", hz); 28616607310bSBenjamin Close } 28626607310bSBenjamin Close 28636607310bSBenjamin Close /* 2864692ad7caSAdrian Chadd * Configure HW multi-rate retries. 28656607310bSBenjamin Close */ 28666607310bSBenjamin Close static int 28676607310bSBenjamin Close wpi_mrr_setup(struct wpi_softc *sc) 28686607310bSBenjamin Close { 2869b032f27cSSam Leffler struct ifnet *ifp = sc->sc_ifp; 2870b032f27cSSam Leffler struct ieee80211com *ic = ifp->if_l2com; 28716607310bSBenjamin Close struct wpi_mrr_setup mrr; 28726607310bSBenjamin Close int i, error; 28736607310bSBenjamin Close 2874692ad7caSAdrian Chadd /* CCK rates (not used with 802.11a). */ 2875692ad7caSAdrian Chadd for (i = WPI_RIDX_CCK1; i <= WPI_RIDX_CCK11; i++) { 28766607310bSBenjamin Close mrr.rates[i].flags = 0; 2877692ad7caSAdrian Chadd mrr.rates[i].plcp = wpi_ridx_to_plcp[i]; 2878692ad7caSAdrian Chadd /* Fallback to the immediate lower CCK rate (if any.) */ 2879692ad7caSAdrian Chadd mrr.rates[i].next = 2880692ad7caSAdrian Chadd (i == WPI_RIDX_CCK1) ? WPI_RIDX_CCK1 : i - 1; 2881692ad7caSAdrian Chadd /* Try one time at this rate before falling back to "next". */ 28826607310bSBenjamin Close mrr.rates[i].ntries = 1; 28836607310bSBenjamin Close } 2884692ad7caSAdrian Chadd /* OFDM rates (not used with 802.11b). */ 2885692ad7caSAdrian Chadd for (i = WPI_RIDX_OFDM6; i <= WPI_RIDX_OFDM54; i++) { 28866607310bSBenjamin Close mrr.rates[i].flags = 0; 2887692ad7caSAdrian Chadd mrr.rates[i].plcp = wpi_ridx_to_plcp[i]; 2888692ad7caSAdrian Chadd /* Fallback to the immediate lower rate (if any.) */ 2889692ad7caSAdrian Chadd /* We allow fallback from OFDM/6 to CCK/2 in 11b/g mode. */ 2890692ad7caSAdrian Chadd mrr.rates[i].next = (i == WPI_RIDX_OFDM6) ? 28916607310bSBenjamin Close ((ic->ic_curmode == IEEE80211_MODE_11A) ? 2892692ad7caSAdrian Chadd WPI_RIDX_OFDM6 : WPI_RIDX_CCK2) : 28936607310bSBenjamin Close i - 1; 2894692ad7caSAdrian Chadd /* Try one time at this rate before falling back to "next". */ 28956607310bSBenjamin Close mrr.rates[i].ntries = 1; 28966607310bSBenjamin Close } 2897692ad7caSAdrian Chadd /* Setup MRR for control frames. */ 2898692ad7caSAdrian Chadd mrr.which = htole32(WPI_MRR_CTL); 28996607310bSBenjamin Close error = wpi_cmd(sc, WPI_CMD_MRR_SETUP, &mrr, sizeof mrr, 0); 29006607310bSBenjamin Close if (error != 0) { 29016607310bSBenjamin Close device_printf(sc->sc_dev, 29026607310bSBenjamin Close "could not setup MRR for control frames\n"); 29036607310bSBenjamin Close return error; 29046607310bSBenjamin Close } 2905692ad7caSAdrian Chadd /* Setup MRR for data frames. */ 2906692ad7caSAdrian Chadd mrr.which = htole32(WPI_MRR_DATA); 29076607310bSBenjamin Close error = wpi_cmd(sc, WPI_CMD_MRR_SETUP, &mrr, sizeof mrr, 0); 29086607310bSBenjamin Close if (error != 0) { 29096607310bSBenjamin Close device_printf(sc->sc_dev, 29106607310bSBenjamin Close "could not setup MRR for data frames\n"); 29116607310bSBenjamin Close return error; 29126607310bSBenjamin Close } 29136607310bSBenjamin Close return 0; 29146607310bSBenjamin Close } 29156607310bSBenjamin Close 2916692ad7caSAdrian Chadd static int 2917692ad7caSAdrian Chadd wpi_add_node(struct wpi_softc *sc, struct ieee80211_node *ni) 2918692ad7caSAdrian Chadd { 2919692ad7caSAdrian Chadd struct ieee80211com *ic = ni->ni_ic; 2920692ad7caSAdrian Chadd struct wpi_node *wn = (void *)ni; 2921692ad7caSAdrian Chadd struct wpi_node_info node; 2922692ad7caSAdrian Chadd 2923692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 2924692ad7caSAdrian Chadd 2925692ad7caSAdrian Chadd if (wn->id == WPI_ID_UNDEFINED) 2926692ad7caSAdrian Chadd return EINVAL; 2927692ad7caSAdrian Chadd 2928692ad7caSAdrian Chadd memset(&node, 0, sizeof node); 2929692ad7caSAdrian Chadd IEEE80211_ADDR_COPY(node.macaddr, ni->ni_bssid); 2930692ad7caSAdrian Chadd node.id = wn->id; 2931692ad7caSAdrian Chadd node.plcp = (ic->ic_curmode == IEEE80211_MODE_11A) ? 2932692ad7caSAdrian Chadd wpi_ridx_to_plcp[WPI_RIDX_OFDM6] : wpi_ridx_to_plcp[WPI_RIDX_CCK1]; 2933692ad7caSAdrian Chadd node.action = htole32(WPI_ACTION_SET_RATE); 2934692ad7caSAdrian Chadd node.antenna = WPI_ANTENNA_BOTH; 2935692ad7caSAdrian Chadd 2936692ad7caSAdrian Chadd return wpi_cmd(sc, WPI_CMD_ADD_NODE, &node, sizeof node, 1); 2937692ad7caSAdrian Chadd } 2938692ad7caSAdrian Chadd 2939692ad7caSAdrian Chadd /* 2940692ad7caSAdrian Chadd * Broadcast node is used to send group-addressed and management frames. 2941692ad7caSAdrian Chadd */ 2942692ad7caSAdrian Chadd static int 2943692ad7caSAdrian Chadd wpi_add_broadcast_node(struct wpi_softc *sc, int async) 2944692ad7caSAdrian Chadd { 2945692ad7caSAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 2946692ad7caSAdrian Chadd struct ieee80211com *ic = ifp->if_l2com; 2947692ad7caSAdrian Chadd struct wpi_node_info node; 2948692ad7caSAdrian Chadd 2949692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 2950692ad7caSAdrian Chadd 2951692ad7caSAdrian Chadd memset(&node, 0, sizeof node); 2952692ad7caSAdrian Chadd IEEE80211_ADDR_COPY(node.macaddr, ifp->if_broadcastaddr); 2953692ad7caSAdrian Chadd node.id = WPI_ID_BROADCAST; 2954692ad7caSAdrian Chadd node.plcp = (ic->ic_curmode == IEEE80211_MODE_11A) ? 2955692ad7caSAdrian Chadd wpi_ridx_to_plcp[WPI_RIDX_OFDM6] : wpi_ridx_to_plcp[WPI_RIDX_CCK1]; 2956692ad7caSAdrian Chadd node.action = htole32(WPI_ACTION_SET_RATE); 2957692ad7caSAdrian Chadd node.antenna = WPI_ANTENNA_BOTH; 2958692ad7caSAdrian Chadd 2959692ad7caSAdrian Chadd return wpi_cmd(sc, WPI_CMD_ADD_NODE, &node, sizeof node, async); 2960692ad7caSAdrian Chadd } 2961692ad7caSAdrian Chadd 2962692ad7caSAdrian Chadd static int 2963692ad7caSAdrian Chadd wpi_add_ibss_node(struct wpi_softc *sc, struct ieee80211_node *ni) 2964692ad7caSAdrian Chadd { 2965692ad7caSAdrian Chadd struct wpi_node *wn = (void *)ni; 2966692ad7caSAdrian Chadd 2967692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 2968692ad7caSAdrian Chadd 2969692ad7caSAdrian Chadd if (wn->id != WPI_ID_UNDEFINED) 2970692ad7caSAdrian Chadd return EINVAL; 2971692ad7caSAdrian Chadd 2972692ad7caSAdrian Chadd wn->id = alloc_unrl(sc->sc_unr); 2973692ad7caSAdrian Chadd 2974692ad7caSAdrian Chadd if (wn->id == (uint8_t)-1) 2975692ad7caSAdrian Chadd return ENOBUFS; 2976692ad7caSAdrian Chadd 2977692ad7caSAdrian Chadd return wpi_add_node(sc, ni); 2978692ad7caSAdrian Chadd } 2979692ad7caSAdrian Chadd 2980692ad7caSAdrian Chadd static void 2981692ad7caSAdrian Chadd wpi_del_node(struct wpi_softc *sc, struct ieee80211_node *ni) 2982692ad7caSAdrian Chadd { 2983692ad7caSAdrian Chadd struct wpi_node *wn = (void *)ni; 2984692ad7caSAdrian Chadd struct wpi_cmd_del_node node; 2985692ad7caSAdrian Chadd int error; 2986692ad7caSAdrian Chadd 2987692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 2988692ad7caSAdrian Chadd 2989692ad7caSAdrian Chadd if (wn->id == WPI_ID_UNDEFINED) { 2990692ad7caSAdrian Chadd device_printf(sc->sc_dev, "%s: undefined node id passed\n", 2991692ad7caSAdrian Chadd __func__); 2992692ad7caSAdrian Chadd return; 2993692ad7caSAdrian Chadd } 2994692ad7caSAdrian Chadd 2995692ad7caSAdrian Chadd memset(&node, 0, sizeof node); 2996692ad7caSAdrian Chadd IEEE80211_ADDR_COPY(node.macaddr, ni->ni_bssid); 2997692ad7caSAdrian Chadd node.count = 1; 2998692ad7caSAdrian Chadd 2999692ad7caSAdrian Chadd error = wpi_cmd(sc, WPI_CMD_DEL_NODE, &node, sizeof node, 1); 3000692ad7caSAdrian Chadd if (error != 0) { 3001692ad7caSAdrian Chadd device_printf(sc->sc_dev, 3002692ad7caSAdrian Chadd "%s: could not delete node %u, error %d\n", __func__, 3003692ad7caSAdrian Chadd wn->id, error); 3004692ad7caSAdrian Chadd } 3005692ad7caSAdrian Chadd } 3006692ad7caSAdrian Chadd 3007692ad7caSAdrian Chadd static int 3008692ad7caSAdrian Chadd wpi_updateedca(struct ieee80211com *ic) 3009692ad7caSAdrian Chadd { 3010692ad7caSAdrian Chadd #define WPI_EXP2(x) ((1 << (x)) - 1) /* CWmin = 2^ECWmin - 1 */ 3011692ad7caSAdrian Chadd struct wpi_softc *sc = ic->ic_ifp->if_softc; 3012692ad7caSAdrian Chadd struct wpi_edca_params cmd; 3013692ad7caSAdrian Chadd int aci, error; 3014692ad7caSAdrian Chadd 3015692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 3016692ad7caSAdrian Chadd 3017692ad7caSAdrian Chadd memset(&cmd, 0, sizeof cmd); 3018692ad7caSAdrian Chadd cmd.flags = htole32(WPI_EDCA_UPDATE); 3019692ad7caSAdrian Chadd for (aci = 0; aci < WME_NUM_AC; aci++) { 3020692ad7caSAdrian Chadd const struct wmeParams *ac = 3021692ad7caSAdrian Chadd &ic->ic_wme.wme_chanParams.cap_wmeParams[aci]; 3022692ad7caSAdrian Chadd cmd.ac[aci].aifsn = ac->wmep_aifsn; 3023692ad7caSAdrian Chadd cmd.ac[aci].cwmin = htole16(WPI_EXP2(ac->wmep_logcwmin)); 3024692ad7caSAdrian Chadd cmd.ac[aci].cwmax = htole16(WPI_EXP2(ac->wmep_logcwmax)); 3025692ad7caSAdrian Chadd cmd.ac[aci].txoplimit = 3026692ad7caSAdrian Chadd htole16(IEEE80211_TXOP_TO_US(ac->wmep_txopLimit)); 3027692ad7caSAdrian Chadd 3028692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_EDCA, 3029692ad7caSAdrian Chadd "setting WME for queue %d aifsn=%d cwmin=%d cwmax=%d " 3030692ad7caSAdrian Chadd "txoplimit=%d\n", aci, cmd.ac[aci].aifsn, 3031692ad7caSAdrian Chadd cmd.ac[aci].cwmin, cmd.ac[aci].cwmax, 3032692ad7caSAdrian Chadd cmd.ac[aci].txoplimit); 3033692ad7caSAdrian Chadd } 3034692ad7caSAdrian Chadd IEEE80211_UNLOCK(ic); 3035692ad7caSAdrian Chadd WPI_LOCK(sc); 3036692ad7caSAdrian Chadd error = wpi_cmd(sc, WPI_CMD_EDCA_PARAMS, &cmd, sizeof cmd, 1); 3037692ad7caSAdrian Chadd WPI_UNLOCK(sc); 3038692ad7caSAdrian Chadd IEEE80211_LOCK(ic); 3039692ad7caSAdrian Chadd 3040692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 3041692ad7caSAdrian Chadd 3042692ad7caSAdrian Chadd return error; 3043692ad7caSAdrian Chadd #undef WPI_EXP2 3044692ad7caSAdrian Chadd } 3045692ad7caSAdrian Chadd 3046692ad7caSAdrian Chadd static void 3047692ad7caSAdrian Chadd wpi_set_promisc(struct wpi_softc *sc) 3048692ad7caSAdrian Chadd { 3049692ad7caSAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 3050692ad7caSAdrian Chadd uint32_t promisc_filter; 3051692ad7caSAdrian Chadd 3052692ad7caSAdrian Chadd promisc_filter = WPI_FILTER_PROMISC | WPI_FILTER_CTL; 3053692ad7caSAdrian Chadd 3054692ad7caSAdrian Chadd if (ifp->if_flags & IFF_PROMISC) 3055692ad7caSAdrian Chadd sc->rxon.filter |= htole32(promisc_filter); 3056692ad7caSAdrian Chadd else 3057692ad7caSAdrian Chadd sc->rxon.filter &= ~htole32(promisc_filter); 3058692ad7caSAdrian Chadd } 3059692ad7caSAdrian Chadd 3060692ad7caSAdrian Chadd static void 3061692ad7caSAdrian Chadd wpi_update_promisc(struct ifnet *ifp) 3062692ad7caSAdrian Chadd { 3063692ad7caSAdrian Chadd struct wpi_softc *sc = ifp->if_softc; 3064692ad7caSAdrian Chadd 3065692ad7caSAdrian Chadd wpi_set_promisc(sc); 3066692ad7caSAdrian Chadd 3067692ad7caSAdrian Chadd WPI_LOCK(sc); 3068692ad7caSAdrian Chadd if (wpi_send_rxon(sc, 1, 1) != 0) { 3069692ad7caSAdrian Chadd device_printf(sc->sc_dev, "%s: could not send RXON\n", 3070692ad7caSAdrian Chadd __func__); 3071692ad7caSAdrian Chadd } 3072692ad7caSAdrian Chadd WPI_UNLOCK(sc); 3073692ad7caSAdrian Chadd } 3074692ad7caSAdrian Chadd 3075692ad7caSAdrian Chadd static void 3076692ad7caSAdrian Chadd wpi_update_mcast(struct ifnet *ifp) 3077692ad7caSAdrian Chadd { 3078692ad7caSAdrian Chadd /* Ignore */ 3079692ad7caSAdrian Chadd } 3080692ad7caSAdrian Chadd 30816607310bSBenjamin Close static void 30826607310bSBenjamin Close wpi_set_led(struct wpi_softc *sc, uint8_t which, uint8_t off, uint8_t on) 30836607310bSBenjamin Close { 30846607310bSBenjamin Close struct wpi_cmd_led led; 30856607310bSBenjamin Close 3086692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 3087692ad7caSAdrian Chadd 30886607310bSBenjamin Close led.which = which; 30896607310bSBenjamin Close led.unit = htole32(100000); /* on/off in unit of 100ms */ 30906607310bSBenjamin Close led.off = off; 30916607310bSBenjamin Close led.on = on; 30926607310bSBenjamin Close (void)wpi_cmd(sc, WPI_CMD_SET_LED, &led, sizeof led, 1); 30936607310bSBenjamin Close } 30946607310bSBenjamin Close 3095692ad7caSAdrian Chadd static int 3096692ad7caSAdrian Chadd wpi_set_timing(struct wpi_softc *sc, struct ieee80211_node *ni) 30976607310bSBenjamin Close { 3098692ad7caSAdrian Chadd struct wpi_cmd_timing cmd; 30996607310bSBenjamin Close uint64_t val, mod; 31006607310bSBenjamin Close 3101692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 31026607310bSBenjamin Close 3103692ad7caSAdrian Chadd memset(&cmd, 0, sizeof cmd); 3104692ad7caSAdrian Chadd memcpy(&cmd.tstamp, ni->ni_tstamp.data, sizeof (uint64_t)); 3105692ad7caSAdrian Chadd cmd.bintval = htole16(ni->ni_intval); 3106692ad7caSAdrian Chadd cmd.lintval = htole16(10); 31076607310bSBenjamin Close 3108692ad7caSAdrian Chadd /* Compute remaining time until next beacon. */ 3109692ad7caSAdrian Chadd val = (uint64_t)ni->ni_intval * IEEE80211_DUR_TU; 3110692ad7caSAdrian Chadd mod = le64toh(cmd.tstamp) % val; 3111692ad7caSAdrian Chadd cmd.binitval = htole32((uint32_t)(val - mod)); 31126607310bSBenjamin Close 3113692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_RESET, "timing bintval=%u tstamp=%ju, init=%u\n", 3114692ad7caSAdrian Chadd ni->ni_intval, le64toh(cmd.tstamp), (uint32_t)(val - mod)); 31156607310bSBenjamin Close 3116692ad7caSAdrian Chadd return wpi_cmd(sc, WPI_CMD_TIMING, &cmd, sizeof cmd, 1); 31176607310bSBenjamin Close } 31186607310bSBenjamin Close 31196607310bSBenjamin Close /* 3120692ad7caSAdrian Chadd * This function is called periodically (every 60 seconds) to adjust output 3121692ad7caSAdrian Chadd * power to temperature changes. 3122692ad7caSAdrian Chadd */ 3123692ad7caSAdrian Chadd static void 3124692ad7caSAdrian Chadd wpi_power_calibration(struct wpi_softc *sc) 3125692ad7caSAdrian Chadd { 3126692ad7caSAdrian Chadd int temp; 3127692ad7caSAdrian Chadd 3128692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 3129692ad7caSAdrian Chadd 3130692ad7caSAdrian Chadd /* Update sensor data. */ 3131692ad7caSAdrian Chadd temp = (int)WPI_READ(sc, WPI_UCODE_GP2); 3132692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TEMP, "Temp in calibration is: %d\n", temp); 3133692ad7caSAdrian Chadd 3134692ad7caSAdrian Chadd /* Sanity-check read value. */ 3135692ad7caSAdrian Chadd if (temp < -260 || temp > 25) { 3136692ad7caSAdrian Chadd /* This can't be correct, ignore. */ 3137692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TEMP, 3138692ad7caSAdrian Chadd "out-of-range temperature reported: %d\n", temp); 3139692ad7caSAdrian Chadd return; 3140692ad7caSAdrian Chadd } 3141692ad7caSAdrian Chadd 3142692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TEMP, "temperature %d->%d\n", sc->temp, temp); 3143692ad7caSAdrian Chadd 3144692ad7caSAdrian Chadd /* Adjust Tx power if need be. */ 3145692ad7caSAdrian Chadd if (abs(temp - sc->temp) <= 6) 3146692ad7caSAdrian Chadd return; 3147692ad7caSAdrian Chadd 3148692ad7caSAdrian Chadd sc->temp = temp; 3149692ad7caSAdrian Chadd 3150692ad7caSAdrian Chadd if (wpi_set_txpower(sc, 1) != 0) { 3151692ad7caSAdrian Chadd /* just warn, too bad for the automatic calibration... */ 3152692ad7caSAdrian Chadd device_printf(sc->sc_dev,"could not adjust Tx power\n"); 3153692ad7caSAdrian Chadd } 3154692ad7caSAdrian Chadd } 3155692ad7caSAdrian Chadd 3156692ad7caSAdrian Chadd /* 3157692ad7caSAdrian Chadd * Set TX power for current channel. 31586607310bSBenjamin Close */ 31596607310bSBenjamin Close static int 3160692ad7caSAdrian Chadd wpi_set_txpower(struct wpi_softc *sc, int async) 31616607310bSBenjamin Close { 3162b032f27cSSam Leffler struct ifnet *ifp = sc->sc_ifp; 3163b032f27cSSam Leffler struct ieee80211com *ic = ifp->if_l2com; 3164692ad7caSAdrian Chadd struct ieee80211_channel *ch; 3165692ad7caSAdrian Chadd struct wpi_power_group *group; 3166692ad7caSAdrian Chadd struct wpi_cmd_txpower cmd; 3167692ad7caSAdrian Chadd uint8_t chan; 3168692ad7caSAdrian Chadd int idx, i; 31696607310bSBenjamin Close 3170692ad7caSAdrian Chadd /* Retrieve current channel from last RXON. */ 3171692ad7caSAdrian Chadd chan = sc->rxon.chan; 3172692ad7caSAdrian Chadd ch = &ic->ic_channels[chan]; 31736607310bSBenjamin Close 3174692ad7caSAdrian Chadd /* Find the TX power group to which this channel belongs. */ 3175692ad7caSAdrian Chadd if (IEEE80211_IS_CHAN_5GHZ(ch)) { 3176692ad7caSAdrian Chadd for (group = &sc->groups[1]; group < &sc->groups[4]; group++) 3177692ad7caSAdrian Chadd if (chan <= group->chan) 3178692ad7caSAdrian Chadd break; 3179692ad7caSAdrian Chadd } else 3180692ad7caSAdrian Chadd group = &sc->groups[0]; 3181692ad7caSAdrian Chadd 3182692ad7caSAdrian Chadd memset(&cmd, 0, sizeof cmd); 3183692ad7caSAdrian Chadd cmd.band = IEEE80211_IS_CHAN_5GHZ(ch) ? 0 : 1; 3184692ad7caSAdrian Chadd cmd.chan = htole16(chan); 3185692ad7caSAdrian Chadd 3186692ad7caSAdrian Chadd /* Set TX power for all OFDM and CCK rates. */ 3187692ad7caSAdrian Chadd for (i = 0; i <= WPI_RIDX_MAX ; i++) { 3188692ad7caSAdrian Chadd /* Retrieve TX power for this channel/rate. */ 3189692ad7caSAdrian Chadd idx = wpi_get_power_index(sc, group, ch, i); 3190692ad7caSAdrian Chadd 3191692ad7caSAdrian Chadd cmd.rates[i].plcp = wpi_ridx_to_plcp[i]; 3192692ad7caSAdrian Chadd 3193692ad7caSAdrian Chadd if (IEEE80211_IS_CHAN_5GHZ(ch)) { 3194692ad7caSAdrian Chadd cmd.rates[i].rf_gain = wpi_rf_gain_5ghz[idx]; 3195692ad7caSAdrian Chadd cmd.rates[i].dsp_gain = wpi_dsp_gain_5ghz[idx]; 3196692ad7caSAdrian Chadd } else { 3197692ad7caSAdrian Chadd cmd.rates[i].rf_gain = wpi_rf_gain_2ghz[idx]; 3198692ad7caSAdrian Chadd cmd.rates[i].dsp_gain = wpi_dsp_gain_2ghz[idx]; 3199692ad7caSAdrian Chadd } 3200692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TEMP, 3201692ad7caSAdrian Chadd "chan %d/ridx %d: power index %d\n", chan, i, idx); 3202692ad7caSAdrian Chadd } 3203692ad7caSAdrian Chadd 3204692ad7caSAdrian Chadd return wpi_cmd(sc, WPI_CMD_TXPOWER, &cmd, sizeof cmd, async); 3205692ad7caSAdrian Chadd } 3206692ad7caSAdrian Chadd 3207692ad7caSAdrian Chadd /* 3208692ad7caSAdrian Chadd * Determine Tx power index for a given channel/rate combination. 3209692ad7caSAdrian Chadd * This takes into account the regulatory information from EEPROM and the 3210692ad7caSAdrian Chadd * current temperature. 3211692ad7caSAdrian Chadd */ 3212692ad7caSAdrian Chadd static int 3213692ad7caSAdrian Chadd wpi_get_power_index(struct wpi_softc *sc, struct wpi_power_group *group, 3214692ad7caSAdrian Chadd struct ieee80211_channel *c, int ridx) 3215692ad7caSAdrian Chadd { 3216692ad7caSAdrian Chadd /* Fixed-point arithmetic division using a n-bit fractional part. */ 3217692ad7caSAdrian Chadd #define fdivround(a, b, n) \ 3218692ad7caSAdrian Chadd ((((1 << n) * (a)) / (b) + (1 << n) / 2) / (1 << n)) 3219692ad7caSAdrian Chadd 3220692ad7caSAdrian Chadd /* Linear interpolation. */ 3221692ad7caSAdrian Chadd #define interpolate(x, x1, y1, x2, y2, n) \ 3222692ad7caSAdrian Chadd ((y1) + fdivround(((x) - (x1)) * ((y2) - (y1)), (x2) - (x1), n)) 3223692ad7caSAdrian Chadd 3224692ad7caSAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 3225692ad7caSAdrian Chadd struct ieee80211com *ic = ifp->if_l2com; 3226692ad7caSAdrian Chadd struct wpi_power_sample *sample; 3227692ad7caSAdrian Chadd int pwr, idx; 3228692ad7caSAdrian Chadd u_int chan; 3229692ad7caSAdrian Chadd 3230692ad7caSAdrian Chadd /* Get channel number. */ 3231692ad7caSAdrian Chadd chan = ieee80211_chan2ieee(ic, c); 3232692ad7caSAdrian Chadd 3233692ad7caSAdrian Chadd /* Default TX power is group maximum TX power minus 3dB. */ 3234692ad7caSAdrian Chadd pwr = group->maxpwr / 2; 3235692ad7caSAdrian Chadd 3236692ad7caSAdrian Chadd /* Decrease TX power for highest OFDM rates to reduce distortion. */ 3237692ad7caSAdrian Chadd switch (ridx) { 3238692ad7caSAdrian Chadd case WPI_RIDX_OFDM36: 3239692ad7caSAdrian Chadd pwr -= IEEE80211_IS_CHAN_2GHZ(c) ? 0 : 5; 3240692ad7caSAdrian Chadd break; 3241692ad7caSAdrian Chadd case WPI_RIDX_OFDM48: 3242692ad7caSAdrian Chadd pwr -= IEEE80211_IS_CHAN_2GHZ(c) ? 7 : 10; 3243692ad7caSAdrian Chadd break; 3244692ad7caSAdrian Chadd case WPI_RIDX_OFDM54: 3245692ad7caSAdrian Chadd pwr -= IEEE80211_IS_CHAN_2GHZ(c) ? 9 : 12; 3246692ad7caSAdrian Chadd break; 3247692ad7caSAdrian Chadd } 3248692ad7caSAdrian Chadd 3249692ad7caSAdrian Chadd /* Never exceed the channel maximum allowed TX power. */ 3250692ad7caSAdrian Chadd pwr = min(pwr, sc->maxpwr[chan]); 3251692ad7caSAdrian Chadd 3252692ad7caSAdrian Chadd /* Retrieve TX power index into gain tables from samples. */ 3253692ad7caSAdrian Chadd for (sample = group->samples; sample < &group->samples[3]; sample++) 3254692ad7caSAdrian Chadd if (pwr > sample[1].power) 3255692ad7caSAdrian Chadd break; 3256692ad7caSAdrian Chadd /* Fixed-point linear interpolation using a 19-bit fractional part. */ 3257692ad7caSAdrian Chadd idx = interpolate(pwr, sample[0].power, sample[0].index, 3258692ad7caSAdrian Chadd sample[1].power, sample[1].index, 19); 3259692ad7caSAdrian Chadd 3260692ad7caSAdrian Chadd /*- 3261692ad7caSAdrian Chadd * Adjust power index based on current temperature: 3262692ad7caSAdrian Chadd * - if cooler than factory-calibrated: decrease output power 3263692ad7caSAdrian Chadd * - if warmer than factory-calibrated: increase output power 3264692ad7caSAdrian Chadd */ 3265692ad7caSAdrian Chadd idx -= (sc->temp - group->temp) * 11 / 100; 3266692ad7caSAdrian Chadd 3267692ad7caSAdrian Chadd /* Decrease TX power for CCK rates (-5dB). */ 3268692ad7caSAdrian Chadd if (ridx >= WPI_RIDX_CCK1) 3269692ad7caSAdrian Chadd idx += 10; 3270692ad7caSAdrian Chadd 3271692ad7caSAdrian Chadd /* Make sure idx stays in a valid range. */ 3272692ad7caSAdrian Chadd if (idx < 0) 3273692ad7caSAdrian Chadd return 0; 3274692ad7caSAdrian Chadd if (idx > WPI_MAX_PWR_INDEX) 3275692ad7caSAdrian Chadd return WPI_MAX_PWR_INDEX; 3276692ad7caSAdrian Chadd return idx; 3277692ad7caSAdrian Chadd 3278692ad7caSAdrian Chadd #undef interpolate 3279692ad7caSAdrian Chadd #undef fdivround 3280692ad7caSAdrian Chadd } 3281692ad7caSAdrian Chadd 3282692ad7caSAdrian Chadd /* 3283692ad7caSAdrian Chadd * Set STA mode power saving level (between 0 and 5). 3284692ad7caSAdrian Chadd * Level 0 is CAM (Continuously Aware Mode), 5 is for maximum power saving. 3285692ad7caSAdrian Chadd */ 3286692ad7caSAdrian Chadd static int 3287692ad7caSAdrian Chadd wpi_set_pslevel(struct wpi_softc *sc, uint8_t dtim, int level, int async) 3288692ad7caSAdrian Chadd { 3289692ad7caSAdrian Chadd struct wpi_pmgt_cmd cmd; 3290692ad7caSAdrian Chadd const struct wpi_pmgt *pmgt; 3291692ad7caSAdrian Chadd uint32_t max, skip_dtim; 3292692ad7caSAdrian Chadd uint32_t reg; 3293692ad7caSAdrian Chadd int i; 3294692ad7caSAdrian Chadd 3295692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_PWRSAVE, 3296692ad7caSAdrian Chadd "%s: dtim=%d, level=%d, async=%d\n", 3297692ad7caSAdrian Chadd __func__, dtim, level, async); 3298692ad7caSAdrian Chadd 3299692ad7caSAdrian Chadd /* Select which PS parameters to use. */ 3300692ad7caSAdrian Chadd if (dtim <= 10) 3301692ad7caSAdrian Chadd pmgt = &wpi_pmgt[0][level]; 3302692ad7caSAdrian Chadd else 3303692ad7caSAdrian Chadd pmgt = &wpi_pmgt[1][level]; 3304692ad7caSAdrian Chadd 3305692ad7caSAdrian Chadd memset(&cmd, 0, sizeof cmd); 3306692ad7caSAdrian Chadd if (level != 0) /* not CAM */ 3307692ad7caSAdrian Chadd cmd.flags |= htole16(WPI_PS_ALLOW_SLEEP); 3308692ad7caSAdrian Chadd /* Retrieve PCIe Active State Power Management (ASPM). */ 3309692ad7caSAdrian Chadd reg = pci_read_config(sc->sc_dev, sc->sc_cap_off + 0x10, 1); 3310692ad7caSAdrian Chadd if (!(reg & 0x1)) /* L0s Entry disabled. */ 3311692ad7caSAdrian Chadd cmd.flags |= htole16(WPI_PS_PCI_PMGT); 3312692ad7caSAdrian Chadd 3313692ad7caSAdrian Chadd cmd.rxtimeout = htole32(pmgt->rxtimeout * IEEE80211_DUR_TU); 3314692ad7caSAdrian Chadd cmd.txtimeout = htole32(pmgt->txtimeout * IEEE80211_DUR_TU); 3315692ad7caSAdrian Chadd 3316692ad7caSAdrian Chadd if (dtim == 0) { 3317692ad7caSAdrian Chadd dtim = 1; 3318692ad7caSAdrian Chadd skip_dtim = 0; 3319692ad7caSAdrian Chadd } else 3320692ad7caSAdrian Chadd skip_dtim = pmgt->skip_dtim; 3321692ad7caSAdrian Chadd 3322692ad7caSAdrian Chadd if (skip_dtim != 0) { 3323692ad7caSAdrian Chadd cmd.flags |= htole16(WPI_PS_SLEEP_OVER_DTIM); 3324692ad7caSAdrian Chadd max = pmgt->intval[4]; 3325692ad7caSAdrian Chadd if (max == (uint32_t)-1) 3326692ad7caSAdrian Chadd max = dtim * (skip_dtim + 1); 3327692ad7caSAdrian Chadd else if (max > dtim) 3328692ad7caSAdrian Chadd max = (max / dtim) * dtim; 3329692ad7caSAdrian Chadd } else 3330692ad7caSAdrian Chadd max = dtim; 3331692ad7caSAdrian Chadd 3332692ad7caSAdrian Chadd for (i = 0; i < 5; i++) 3333692ad7caSAdrian Chadd cmd.intval[i] = htole32(MIN(max, pmgt->intval[i])); 3334692ad7caSAdrian Chadd 3335692ad7caSAdrian Chadd return wpi_cmd(sc, WPI_CMD_SET_POWER_MODE, &cmd, sizeof cmd, async); 3336692ad7caSAdrian Chadd } 3337692ad7caSAdrian Chadd 3338692ad7caSAdrian Chadd static int 3339692ad7caSAdrian Chadd wpi_send_btcoex(struct wpi_softc *sc) 3340692ad7caSAdrian Chadd { 3341692ad7caSAdrian Chadd struct wpi_bluetooth cmd; 3342692ad7caSAdrian Chadd 3343692ad7caSAdrian Chadd memset(&cmd, 0, sizeof cmd); 3344692ad7caSAdrian Chadd cmd.flags = WPI_BT_COEX_MODE_4WIRE; 3345692ad7caSAdrian Chadd cmd.lead_time = WPI_BT_LEAD_TIME_DEF; 3346692ad7caSAdrian Chadd cmd.max_kill = WPI_BT_MAX_KILL_DEF; 3347692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_RESET, "%s: configuring bluetooth coexistence\n", 3348692ad7caSAdrian Chadd __func__); 3349692ad7caSAdrian Chadd return wpi_cmd(sc, WPI_CMD_BT_COEX, &cmd, sizeof(cmd), 0); 3350692ad7caSAdrian Chadd } 3351692ad7caSAdrian Chadd 3352692ad7caSAdrian Chadd static int 3353692ad7caSAdrian Chadd wpi_send_rxon(struct wpi_softc *sc, int assoc, int async) 3354692ad7caSAdrian Chadd { 3355692ad7caSAdrian Chadd int error; 3356692ad7caSAdrian Chadd 3357692ad7caSAdrian Chadd if (assoc && (sc->rxon.filter & htole32(WPI_FILTER_BSS))) { 3358692ad7caSAdrian Chadd struct wpi_assoc rxon_assoc; 3359692ad7caSAdrian Chadd 3360692ad7caSAdrian Chadd rxon_assoc.flags = sc->rxon.flags; 3361692ad7caSAdrian Chadd rxon_assoc.filter = sc->rxon.filter; 3362692ad7caSAdrian Chadd rxon_assoc.ofdm_mask = sc->rxon.ofdm_mask; 3363692ad7caSAdrian Chadd rxon_assoc.cck_mask = sc->rxon.cck_mask; 3364692ad7caSAdrian Chadd rxon_assoc.reserved = 0; 3365692ad7caSAdrian Chadd 3366692ad7caSAdrian Chadd error = wpi_cmd(sc, WPI_CMD_RXON_ASSOC, &rxon_assoc, 3367692ad7caSAdrian Chadd sizeof (struct wpi_assoc), async); 3368692ad7caSAdrian Chadd } else { 3369692ad7caSAdrian Chadd error = wpi_cmd(sc, WPI_CMD_RXON, &sc->rxon, 3370692ad7caSAdrian Chadd sizeof (struct wpi_rxon), async); 3371692ad7caSAdrian Chadd } 3372692ad7caSAdrian Chadd if (error != 0) { 3373692ad7caSAdrian Chadd device_printf(sc->sc_dev, "RXON command failed, error %d\n", 3374692ad7caSAdrian Chadd error); 3375692ad7caSAdrian Chadd return error; 3376692ad7caSAdrian Chadd } 3377692ad7caSAdrian Chadd 3378692ad7caSAdrian Chadd /* Configuration has changed, set Tx power accordingly. */ 3379692ad7caSAdrian Chadd if ((error = wpi_set_txpower(sc, async)) != 0) { 33806607310bSBenjamin Close device_printf(sc->sc_dev, 3381692ad7caSAdrian Chadd "%s: could not set TX power, error %d\n", __func__, error); 33826607310bSBenjamin Close return error; 33836607310bSBenjamin Close } 33846607310bSBenjamin Close 3385692ad7caSAdrian Chadd if (!(sc->rxon.filter & htole32(WPI_FILTER_BSS))) { 3386692ad7caSAdrian Chadd /* Add broadcast node. */ 3387692ad7caSAdrian Chadd error = wpi_add_broadcast_node(sc, async); 3388692ad7caSAdrian Chadd if (error != 0) { 3389692ad7caSAdrian Chadd device_printf(sc->sc_dev, 3390692ad7caSAdrian Chadd "could not add broadcast node, error %d\n", error); 3391692ad7caSAdrian Chadd return error; 3392692ad7caSAdrian Chadd } 3393692ad7caSAdrian Chadd } 33946607310bSBenjamin Close 3395692ad7caSAdrian Chadd return 0; 33966607310bSBenjamin Close } 33976607310bSBenjamin Close 33986607310bSBenjamin Close /** 33996607310bSBenjamin Close * Configure the card to listen to a particular channel, this transisions the 34006607310bSBenjamin Close * card in to being able to receive frames from remote devices. 34016607310bSBenjamin Close */ 34026607310bSBenjamin Close static int 34036607310bSBenjamin Close wpi_config(struct wpi_softc *sc) 34046607310bSBenjamin Close { 3405b032f27cSSam Leffler struct ifnet *ifp = sc->sc_ifp; 3406b032f27cSSam Leffler struct ieee80211com *ic = ifp->if_l2com; 3407692ad7caSAdrian Chadd uint32_t flags; 34086607310bSBenjamin Close int error; 34096607310bSBenjamin Close 3410692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 3411692ad7caSAdrian Chadd 3412692ad7caSAdrian Chadd /* Set power saving level to CAM during initialization. */ 3413692ad7caSAdrian Chadd if ((error = wpi_set_pslevel(sc, 0, 0, 0)) != 0) { 3414692ad7caSAdrian Chadd device_printf(sc->sc_dev, 3415692ad7caSAdrian Chadd "%s: could not set power saving level\n", __func__); 34166607310bSBenjamin Close return error; 34176607310bSBenjamin Close } 34186607310bSBenjamin Close 3419692ad7caSAdrian Chadd /* Configure bluetooth coexistence. */ 3420692ad7caSAdrian Chadd if ((error = wpi_send_btcoex(sc)) != 0) { 34216607310bSBenjamin Close device_printf(sc->sc_dev, 34226607310bSBenjamin Close "could not configure bluetooth coexistence\n"); 34236607310bSBenjamin Close return error; 34246607310bSBenjamin Close } 34256607310bSBenjamin Close 3426692ad7caSAdrian Chadd /* Configure adapter. */ 3427692ad7caSAdrian Chadd memset(&sc->rxon, 0, sizeof (struct wpi_rxon)); 3428692ad7caSAdrian Chadd IEEE80211_ADDR_COPY(sc->rxon.myaddr, IF_LLADDR(ifp)); 3429692ad7caSAdrian Chadd 3430692ad7caSAdrian Chadd /* Set default channel. */ 3431692ad7caSAdrian Chadd sc->rxon.chan = ieee80211_chan2ieee(ic, ic->ic_curchan); 3432692ad7caSAdrian Chadd sc->rxon.flags = htole32(WPI_RXON_TSF | WPI_RXON_CTS_TO_SELF); 3433692ad7caSAdrian Chadd if (IEEE80211_IS_CHAN_2GHZ(ic->ic_curchan)) 3434692ad7caSAdrian Chadd sc->rxon.flags |= htole32(WPI_RXON_AUTO | WPI_RXON_24GHZ); 3435692ad7caSAdrian Chadd 3436*fae61c69SAdrian Chadd sc->rxon.filter = WPI_FILTER_MULTICAST; 34376607310bSBenjamin Close switch (ic->ic_opmode) { 34386607310bSBenjamin Close case IEEE80211_M_STA: 3439692ad7caSAdrian Chadd sc->rxon.mode = WPI_MODE_STA; 34406607310bSBenjamin Close break; 34416607310bSBenjamin Close case IEEE80211_M_IBSS: 3442692ad7caSAdrian Chadd sc->rxon.mode = WPI_MODE_IBSS; 3443*fae61c69SAdrian Chadd sc->rxon.filter |= WPI_FILTER_BEACON; 34446607310bSBenjamin Close break; 3445692ad7caSAdrian Chadd /* XXX workaround for passive channels selection */ 3446692ad7caSAdrian Chadd case IEEE80211_M_AHDEMO: 34476607310bSBenjamin Close case IEEE80211_M_HOSTAP: 3448692ad7caSAdrian Chadd sc->rxon.mode = WPI_MODE_HOSTAP; 34496607310bSBenjamin Close break; 34506607310bSBenjamin Close case IEEE80211_M_MONITOR: 3451692ad7caSAdrian Chadd sc->rxon.mode = WPI_MODE_MONITOR; 34526607310bSBenjamin Close break; 3453820e6a1fSRui Paulo default: 3454820e6a1fSRui Paulo device_printf(sc->sc_dev, "unknown opmode %d\n", ic->ic_opmode); 3455820e6a1fSRui Paulo return EINVAL; 34566607310bSBenjamin Close } 3457*fae61c69SAdrian Chadd sc->rxon.filter = htole32(sc->rxon.filter); 3458692ad7caSAdrian Chadd wpi_set_promisc(sc); 3459692ad7caSAdrian Chadd sc->rxon.cck_mask = 0x0f; /* not yet negotiated */ 3460692ad7caSAdrian Chadd sc->rxon.ofdm_mask = 0xff; /* not yet negotiated */ 3461692ad7caSAdrian Chadd 3462692ad7caSAdrian Chadd if ((error = wpi_send_rxon(sc, 0, 0)) != 0) { 3463692ad7caSAdrian Chadd device_printf(sc->sc_dev, "%s: could not send RXON\n", 3464692ad7caSAdrian Chadd __func__); 3465692ad7caSAdrian Chadd return error; 3466692ad7caSAdrian Chadd } 3467692ad7caSAdrian Chadd 3468692ad7caSAdrian Chadd /* Setup rate scalling. */ 3469692ad7caSAdrian Chadd if ((error = wpi_mrr_setup(sc)) != 0) { 3470692ad7caSAdrian Chadd device_printf(sc->sc_dev, "could not setup MRR, error %d\n", 3471692ad7caSAdrian Chadd error); 3472692ad7caSAdrian Chadd return error; 3473692ad7caSAdrian Chadd } 3474692ad7caSAdrian Chadd 3475692ad7caSAdrian Chadd /* Disable beacon notifications (unused). */ 3476692ad7caSAdrian Chadd flags = WPI_STATISTICS_BEACON_DISABLE; 3477692ad7caSAdrian Chadd error = wpi_cmd(sc, WPI_CMD_GET_STATISTICS, &flags, sizeof flags, 1); 34786607310bSBenjamin Close if (error != 0) { 3479692ad7caSAdrian Chadd device_printf(sc->sc_dev, 3480692ad7caSAdrian Chadd "could not disable beacon statistics, error %d\n", error); 34816607310bSBenjamin Close return error; 34826607310bSBenjamin Close } 34836607310bSBenjamin Close 3484692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 3485692ad7caSAdrian Chadd 3486692ad7caSAdrian Chadd return 0; 3487692ad7caSAdrian Chadd } 3488692ad7caSAdrian Chadd 3489692ad7caSAdrian Chadd static uint16_t 3490692ad7caSAdrian Chadd wpi_get_active_dwell_time(struct wpi_softc *sc, 3491692ad7caSAdrian Chadd struct ieee80211_channel *c, uint8_t n_probes) 3492692ad7caSAdrian Chadd { 3493692ad7caSAdrian Chadd /* No channel? Default to 2GHz settings. */ 3494692ad7caSAdrian Chadd if (c == NULL || IEEE80211_IS_CHAN_2GHZ(c)) { 3495692ad7caSAdrian Chadd return (WPI_ACTIVE_DWELL_TIME_2GHZ + 3496692ad7caSAdrian Chadd WPI_ACTIVE_DWELL_FACTOR_2GHZ * (n_probes + 1)); 3497692ad7caSAdrian Chadd } 3498692ad7caSAdrian Chadd 3499692ad7caSAdrian Chadd /* 5GHz dwell time. */ 3500692ad7caSAdrian Chadd return (WPI_ACTIVE_DWELL_TIME_5GHZ + 3501692ad7caSAdrian Chadd WPI_ACTIVE_DWELL_FACTOR_5GHZ * (n_probes + 1)); 3502692ad7caSAdrian Chadd } 3503692ad7caSAdrian Chadd 3504692ad7caSAdrian Chadd /* 3505692ad7caSAdrian Chadd * Limit the total dwell time to 85% of the beacon interval. 3506692ad7caSAdrian Chadd * 3507692ad7caSAdrian Chadd * Returns the dwell time in milliseconds. 3508692ad7caSAdrian Chadd */ 3509692ad7caSAdrian Chadd static uint16_t 3510692ad7caSAdrian Chadd wpi_limit_dwell(struct wpi_softc *sc, uint16_t dwell_time) 3511692ad7caSAdrian Chadd { 3512692ad7caSAdrian Chadd struct ieee80211com *ic = sc->sc_ifp->if_l2com; 3513692ad7caSAdrian Chadd struct ieee80211vap *vap = NULL; 3514692ad7caSAdrian Chadd int bintval = 0; 3515692ad7caSAdrian Chadd 3516692ad7caSAdrian Chadd /* bintval is in TU (1.024mS) */ 3517692ad7caSAdrian Chadd if (! TAILQ_EMPTY(&ic->ic_vaps)) { 3518692ad7caSAdrian Chadd vap = TAILQ_FIRST(&ic->ic_vaps); 3519692ad7caSAdrian Chadd bintval = vap->iv_bss->ni_intval; 3520692ad7caSAdrian Chadd } 3521692ad7caSAdrian Chadd 3522692ad7caSAdrian Chadd /* 3523692ad7caSAdrian Chadd * If it's non-zero, we should calculate the minimum of 3524692ad7caSAdrian Chadd * it and the DWELL_BASE. 3525692ad7caSAdrian Chadd * 3526692ad7caSAdrian Chadd * XXX Yes, the math should take into account that bintval 3527692ad7caSAdrian Chadd * is 1.024mS, not 1mS.. 3528692ad7caSAdrian Chadd */ 3529692ad7caSAdrian Chadd if (bintval > 0) { 3530692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_SCAN, "%s: bintval=%d\n", __func__, 3531692ad7caSAdrian Chadd bintval); 3532692ad7caSAdrian Chadd return (MIN(WPI_PASSIVE_DWELL_BASE, ((bintval * 85) / 100))); 3533692ad7caSAdrian Chadd } 3534692ad7caSAdrian Chadd 3535692ad7caSAdrian Chadd /* No association context? Default. */ 3536692ad7caSAdrian Chadd return (WPI_PASSIVE_DWELL_BASE); 3537692ad7caSAdrian Chadd } 3538692ad7caSAdrian Chadd 3539692ad7caSAdrian Chadd static uint16_t 3540692ad7caSAdrian Chadd wpi_get_passive_dwell_time(struct wpi_softc *sc, struct ieee80211_channel *c) 3541692ad7caSAdrian Chadd { 3542692ad7caSAdrian Chadd uint16_t passive; 3543692ad7caSAdrian Chadd 3544692ad7caSAdrian Chadd if (c == NULL || IEEE80211_IS_CHAN_2GHZ(c)) 3545692ad7caSAdrian Chadd passive = WPI_PASSIVE_DWELL_BASE + WPI_PASSIVE_DWELL_TIME_2GHZ; 3546692ad7caSAdrian Chadd else 3547692ad7caSAdrian Chadd passive = WPI_PASSIVE_DWELL_BASE + WPI_PASSIVE_DWELL_TIME_5GHZ; 3548692ad7caSAdrian Chadd 3549692ad7caSAdrian Chadd /* Clamp to the beacon interval if we're associated. */ 3550692ad7caSAdrian Chadd return (wpi_limit_dwell(sc, passive)); 3551692ad7caSAdrian Chadd } 3552692ad7caSAdrian Chadd 3553692ad7caSAdrian Chadd /* 3554692ad7caSAdrian Chadd * Send a scan request to the firmware. 3555692ad7caSAdrian Chadd */ 3556692ad7caSAdrian Chadd static int 3557692ad7caSAdrian Chadd wpi_scan(struct wpi_softc *sc, struct ieee80211_channel *c) 3558692ad7caSAdrian Chadd { 3559692ad7caSAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 3560692ad7caSAdrian Chadd struct ieee80211com *ic = ifp->if_l2com; 3561692ad7caSAdrian Chadd struct ieee80211_scan_state *ss = ic->ic_scan; 3562692ad7caSAdrian Chadd struct wpi_scan_hdr *hdr; 3563692ad7caSAdrian Chadd struct wpi_cmd_data *tx; 3564692ad7caSAdrian Chadd struct wpi_scan_essid *essids; 3565692ad7caSAdrian Chadd struct wpi_scan_chan *chan; 3566692ad7caSAdrian Chadd struct ieee80211_frame *wh; 3567692ad7caSAdrian Chadd struct ieee80211_rateset *rs; 3568692ad7caSAdrian Chadd uint16_t dwell_active, dwell_passive; 3569692ad7caSAdrian Chadd uint8_t *buf, *frm; 3570692ad7caSAdrian Chadd int buflen, error, i, nssid; 3571692ad7caSAdrian Chadd 3572692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 3573692ad7caSAdrian Chadd 3574692ad7caSAdrian Chadd /* 3575692ad7caSAdrian Chadd * We are absolutely not allowed to send a scan command when another 3576692ad7caSAdrian Chadd * scan command is pending. 3577692ad7caSAdrian Chadd */ 3578692ad7caSAdrian Chadd if (sc->sc_scan_timer) { 3579692ad7caSAdrian Chadd device_printf(sc->sc_dev, "%s: called whilst scanning!\n", 3580692ad7caSAdrian Chadd __func__); 3581692ad7caSAdrian Chadd return (EAGAIN); 3582692ad7caSAdrian Chadd } 3583692ad7caSAdrian Chadd 3584692ad7caSAdrian Chadd buf = malloc(WPI_SCAN_MAXSZ, M_DEVBUF, M_NOWAIT | M_ZERO); 3585692ad7caSAdrian Chadd if (buf == NULL) { 3586692ad7caSAdrian Chadd device_printf(sc->sc_dev, 3587692ad7caSAdrian Chadd "%s: could not allocate buffer for scan command\n", 3588692ad7caSAdrian Chadd __func__); 3589692ad7caSAdrian Chadd return ENOMEM; 3590692ad7caSAdrian Chadd } 3591692ad7caSAdrian Chadd hdr = (struct wpi_scan_hdr *)buf; 3592692ad7caSAdrian Chadd 3593692ad7caSAdrian Chadd /* 3594692ad7caSAdrian Chadd * Move to the next channel if no packets are received within 10 msecs 3595692ad7caSAdrian Chadd * after sending the probe request. 3596692ad7caSAdrian Chadd */ 3597692ad7caSAdrian Chadd hdr->quiet_time = htole16(10); /* timeout in milliseconds */ 3598692ad7caSAdrian Chadd hdr->quiet_threshold = htole16(1); /* min # of packets */ 3599692ad7caSAdrian Chadd /* 3600692ad7caSAdrian Chadd * Max needs to be greater than active and passive and quiet! 3601692ad7caSAdrian Chadd * It's also in microseconds! 3602692ad7caSAdrian Chadd */ 3603692ad7caSAdrian Chadd hdr->max_svc = htole32(250 * IEEE80211_DUR_TU); 3604692ad7caSAdrian Chadd hdr->pause_svc = htole32((4 << 24) | 3605692ad7caSAdrian Chadd (100 * IEEE80211_DUR_TU)); /* Hardcode for now */ 3606692ad7caSAdrian Chadd hdr->filter = htole32(WPI_FILTER_MULTICAST | WPI_FILTER_BEACON); 3607692ad7caSAdrian Chadd 3608692ad7caSAdrian Chadd tx = (struct wpi_cmd_data *)(hdr + 1); 3609692ad7caSAdrian Chadd tx->flags = htole32(WPI_TX_AUTO_SEQ); 3610692ad7caSAdrian Chadd tx->id = WPI_ID_BROADCAST; 3611692ad7caSAdrian Chadd tx->lifetime = htole32(WPI_LIFETIME_INFINITE); 3612692ad7caSAdrian Chadd 3613692ad7caSAdrian Chadd if (IEEE80211_IS_CHAN_5GHZ(c)) { 3614692ad7caSAdrian Chadd /* Send probe requests at 6Mbps. */ 3615692ad7caSAdrian Chadd tx->plcp = wpi_ridx_to_plcp[WPI_RIDX_OFDM6]; 3616692ad7caSAdrian Chadd rs = &ic->ic_sup_rates[IEEE80211_MODE_11A]; 3617692ad7caSAdrian Chadd } else { 3618692ad7caSAdrian Chadd hdr->flags = htole32(WPI_RXON_24GHZ | WPI_RXON_AUTO); 3619692ad7caSAdrian Chadd /* Send probe requests at 1Mbps. */ 3620692ad7caSAdrian Chadd tx->plcp = wpi_ridx_to_plcp[WPI_RIDX_CCK1]; 3621692ad7caSAdrian Chadd rs = &ic->ic_sup_rates[IEEE80211_MODE_11G]; 3622692ad7caSAdrian Chadd } 3623692ad7caSAdrian Chadd 3624692ad7caSAdrian Chadd essids = (struct wpi_scan_essid *)(tx + 1); 3625692ad7caSAdrian Chadd nssid = MIN(ss->ss_nssid, WPI_SCAN_MAX_ESSIDS); 3626692ad7caSAdrian Chadd for (i = 0; i < nssid; i++) { 3627692ad7caSAdrian Chadd essids[i].id = IEEE80211_ELEMID_SSID; 3628692ad7caSAdrian Chadd essids[i].len = MIN(ss->ss_ssid[i].len, IEEE80211_NWID_LEN); 3629692ad7caSAdrian Chadd memcpy(essids[i].data, ss->ss_ssid[i].ssid, essids[i].len); 3630692ad7caSAdrian Chadd #ifdef WPI_DEBUG 3631692ad7caSAdrian Chadd if (sc->sc_debug & WPI_DEBUG_SCAN) { 3632692ad7caSAdrian Chadd printf("Scanning Essid: "); 3633692ad7caSAdrian Chadd ieee80211_print_essid(essids[i].data, essids[i].len); 3634692ad7caSAdrian Chadd printf("\n"); 3635692ad7caSAdrian Chadd } 3636692ad7caSAdrian Chadd #endif 3637692ad7caSAdrian Chadd } 3638692ad7caSAdrian Chadd 3639692ad7caSAdrian Chadd /* 3640692ad7caSAdrian Chadd * Build a probe request frame. Most of the following code is a 3641692ad7caSAdrian Chadd * copy & paste of what is done in net80211. 3642692ad7caSAdrian Chadd */ 3643692ad7caSAdrian Chadd wh = (struct ieee80211_frame *)(essids + WPI_SCAN_MAX_ESSIDS); 3644692ad7caSAdrian Chadd wh->i_fc[0] = IEEE80211_FC0_VERSION_0 | IEEE80211_FC0_TYPE_MGT | 3645692ad7caSAdrian Chadd IEEE80211_FC0_SUBTYPE_PROBE_REQ; 3646692ad7caSAdrian Chadd wh->i_fc[1] = IEEE80211_FC1_DIR_NODS; 3647692ad7caSAdrian Chadd IEEE80211_ADDR_COPY(wh->i_addr1, ifp->if_broadcastaddr); 3648692ad7caSAdrian Chadd IEEE80211_ADDR_COPY(wh->i_addr2, IF_LLADDR(ifp)); 3649692ad7caSAdrian Chadd IEEE80211_ADDR_COPY(wh->i_addr3, ifp->if_broadcastaddr); 3650692ad7caSAdrian Chadd *(uint16_t *)&wh->i_dur[0] = 0; /* filled by h/w */ 3651692ad7caSAdrian Chadd *(uint16_t *)&wh->i_seq[0] = 0; /* filled by h/w */ 3652692ad7caSAdrian Chadd 3653692ad7caSAdrian Chadd frm = (uint8_t *)(wh + 1); 3654692ad7caSAdrian Chadd frm = ieee80211_add_ssid(frm, NULL, 0); 3655692ad7caSAdrian Chadd frm = ieee80211_add_rates(frm, rs); 3656692ad7caSAdrian Chadd if (rs->rs_nrates > IEEE80211_RATE_SIZE) 3657692ad7caSAdrian Chadd frm = ieee80211_add_xrates(frm, rs); 3658692ad7caSAdrian Chadd 3659692ad7caSAdrian Chadd /* Set length of probe request. */ 3660692ad7caSAdrian Chadd tx->len = htole16(frm - (uint8_t *)wh); 3661692ad7caSAdrian Chadd 3662692ad7caSAdrian Chadd /* 3663692ad7caSAdrian Chadd * Construct information about the channel that we 3664692ad7caSAdrian Chadd * want to scan. The firmware expects this to be directly 3665692ad7caSAdrian Chadd * after the scan probe request 3666692ad7caSAdrian Chadd */ 3667692ad7caSAdrian Chadd chan = (struct wpi_scan_chan *)frm; 3668692ad7caSAdrian Chadd chan->chan = htole16(ieee80211_chan2ieee(ic, c)); 3669692ad7caSAdrian Chadd chan->flags = 0; 3670692ad7caSAdrian Chadd if (nssid) { 3671692ad7caSAdrian Chadd hdr->crc_threshold = WPI_SCAN_CRC_TH_DEFAULT; 3672692ad7caSAdrian Chadd chan->flags |= WPI_CHAN_NPBREQS(nssid); 3673692ad7caSAdrian Chadd } else 3674692ad7caSAdrian Chadd hdr->crc_threshold = WPI_SCAN_CRC_TH_NEVER; 3675692ad7caSAdrian Chadd 3676*fae61c69SAdrian Chadd if (!IEEE80211_IS_CHAN_PASSIVE(c)) 3677692ad7caSAdrian Chadd chan->flags |= WPI_CHAN_ACTIVE; 3678692ad7caSAdrian Chadd 3679692ad7caSAdrian Chadd /* 3680692ad7caSAdrian Chadd * Calculate the active/passive dwell times. 3681692ad7caSAdrian Chadd */ 3682692ad7caSAdrian Chadd 3683692ad7caSAdrian Chadd dwell_active = wpi_get_active_dwell_time(sc, c, nssid); 3684692ad7caSAdrian Chadd dwell_passive = wpi_get_passive_dwell_time(sc, c); 3685692ad7caSAdrian Chadd 3686692ad7caSAdrian Chadd /* Make sure they're valid. */ 3687692ad7caSAdrian Chadd if (dwell_passive <= dwell_active) 3688692ad7caSAdrian Chadd dwell_passive = dwell_active + 1; 3689692ad7caSAdrian Chadd 3690692ad7caSAdrian Chadd chan->active = htole16(dwell_active); 3691692ad7caSAdrian Chadd chan->passive = htole16(dwell_passive); 3692692ad7caSAdrian Chadd 3693692ad7caSAdrian Chadd chan->dsp_gain = 0x6e; /* Default level */ 3694692ad7caSAdrian Chadd 3695692ad7caSAdrian Chadd if (IEEE80211_IS_CHAN_5GHZ(c)) 3696692ad7caSAdrian Chadd chan->rf_gain = 0x3b; 3697692ad7caSAdrian Chadd else 3698692ad7caSAdrian Chadd chan->rf_gain = 0x28; 3699692ad7caSAdrian Chadd 3700692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_SCAN, "Scanning %u Passive: %d\n", 3701*fae61c69SAdrian Chadd chan->chan, IEEE80211_IS_CHAN_PASSIVE(c)); 3702692ad7caSAdrian Chadd 3703692ad7caSAdrian Chadd hdr->nchan++; 3704692ad7caSAdrian Chadd chan++; 3705692ad7caSAdrian Chadd 3706692ad7caSAdrian Chadd buflen = (uint8_t *)chan - buf; 3707692ad7caSAdrian Chadd hdr->len = htole16(buflen); 3708692ad7caSAdrian Chadd 3709692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_CMD, "sending scan command nchan=%d\n", 3710692ad7caSAdrian Chadd hdr->nchan); 3711692ad7caSAdrian Chadd error = wpi_cmd(sc, WPI_CMD_SCAN, buf, buflen, 1); 3712692ad7caSAdrian Chadd free(buf, M_DEVBUF); 3713692ad7caSAdrian Chadd 3714692ad7caSAdrian Chadd sc->sc_scan_timer = 5; 3715692ad7caSAdrian Chadd 3716692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 3717692ad7caSAdrian Chadd 37186607310bSBenjamin Close return error; 37196607310bSBenjamin Close } 37206607310bSBenjamin Close 3721692ad7caSAdrian Chadd static int 3722692ad7caSAdrian Chadd wpi_auth(struct wpi_softc *sc, struct ieee80211vap *vap) 3723692ad7caSAdrian Chadd { 3724692ad7caSAdrian Chadd struct ieee80211com *ic = vap->iv_ic; 3725692ad7caSAdrian Chadd struct ieee80211_node *ni = vap->iv_bss; 3726692ad7caSAdrian Chadd int error; 3727692ad7caSAdrian Chadd 3728692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 3729692ad7caSAdrian Chadd 3730692ad7caSAdrian Chadd /* Update adapter configuration. */ 3731692ad7caSAdrian Chadd sc->rxon.associd = 0; 3732692ad7caSAdrian Chadd sc->rxon.filter &= ~htole32(WPI_FILTER_BSS); 3733692ad7caSAdrian Chadd IEEE80211_ADDR_COPY(sc->rxon.bssid, ni->ni_bssid); 3734692ad7caSAdrian Chadd sc->rxon.chan = ieee80211_chan2ieee(ic, ni->ni_chan); 3735692ad7caSAdrian Chadd sc->rxon.flags = htole32(WPI_RXON_TSF | WPI_RXON_CTS_TO_SELF); 3736692ad7caSAdrian Chadd if (IEEE80211_IS_CHAN_2GHZ(ni->ni_chan)) 3737692ad7caSAdrian Chadd sc->rxon.flags |= htole32(WPI_RXON_AUTO | WPI_RXON_24GHZ); 3738692ad7caSAdrian Chadd if (ic->ic_flags & IEEE80211_F_SHSLOT) 3739692ad7caSAdrian Chadd sc->rxon.flags |= htole32(WPI_RXON_SHSLOT); 3740692ad7caSAdrian Chadd if (ic->ic_flags & IEEE80211_F_SHPREAMBLE) 3741692ad7caSAdrian Chadd sc->rxon.flags |= htole32(WPI_RXON_SHPREAMBLE); 3742692ad7caSAdrian Chadd if (IEEE80211_IS_CHAN_A(ni->ni_chan)) { 3743692ad7caSAdrian Chadd sc->rxon.cck_mask = 0; 3744692ad7caSAdrian Chadd sc->rxon.ofdm_mask = 0x15; 3745692ad7caSAdrian Chadd } else if (IEEE80211_IS_CHAN_B(ni->ni_chan)) { 3746692ad7caSAdrian Chadd sc->rxon.cck_mask = 0x03; 3747692ad7caSAdrian Chadd sc->rxon.ofdm_mask = 0; 3748692ad7caSAdrian Chadd } else { 3749692ad7caSAdrian Chadd /* Assume 802.11b/g. */ 3750692ad7caSAdrian Chadd sc->rxon.cck_mask = 0x0f; 3751692ad7caSAdrian Chadd sc->rxon.ofdm_mask = 0x15; 3752692ad7caSAdrian Chadd } 3753692ad7caSAdrian Chadd 3754692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_STATE, "rxon chan %d flags %x cck %x ofdm %x\n", 3755692ad7caSAdrian Chadd sc->rxon.chan, sc->rxon.flags, sc->rxon.cck_mask, 3756692ad7caSAdrian Chadd sc->rxon.ofdm_mask); 3757692ad7caSAdrian Chadd 3758692ad7caSAdrian Chadd if ((error = wpi_send_rxon(sc, 0, 1)) != 0) { 3759692ad7caSAdrian Chadd device_printf(sc->sc_dev, "%s: could not send RXON\n", 3760692ad7caSAdrian Chadd __func__); 3761692ad7caSAdrian Chadd } 3762692ad7caSAdrian Chadd 3763692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 3764692ad7caSAdrian Chadd 3765692ad7caSAdrian Chadd return error; 3766692ad7caSAdrian Chadd } 3767692ad7caSAdrian Chadd 3768692ad7caSAdrian Chadd static int 3769692ad7caSAdrian Chadd wpi_setup_beacon(struct wpi_softc *sc, struct ieee80211_node *ni) 3770692ad7caSAdrian Chadd { 3771692ad7caSAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 3772692ad7caSAdrian Chadd struct ieee80211com *ic = ifp->if_l2com; 3773692ad7caSAdrian Chadd struct ieee80211vap *vap = ni->ni_vap; 3774692ad7caSAdrian Chadd struct wpi_vap *wvp = WPI_VAP(vap); 3775692ad7caSAdrian Chadd struct wpi_buf *bcn = &wvp->wv_bcbuf; 3776692ad7caSAdrian Chadd struct ieee80211_beacon_offsets bo; 3777692ad7caSAdrian Chadd struct wpi_cmd_beacon *cmd; 3778692ad7caSAdrian Chadd struct mbuf *m; 3779692ad7caSAdrian Chadd int totlen; 3780692ad7caSAdrian Chadd 3781692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 3782692ad7caSAdrian Chadd 3783692ad7caSAdrian Chadd if (ni->ni_chan == IEEE80211_CHAN_ANYC) 3784692ad7caSAdrian Chadd return EINVAL; 3785692ad7caSAdrian Chadd 3786692ad7caSAdrian Chadd m = ieee80211_beacon_alloc(ni, &bo); 3787692ad7caSAdrian Chadd if (m == NULL) { 3788692ad7caSAdrian Chadd device_printf(sc->sc_dev, 3789692ad7caSAdrian Chadd "%s: could not allocate beacon frame\n", __func__); 3790692ad7caSAdrian Chadd return ENOMEM; 3791692ad7caSAdrian Chadd } 3792692ad7caSAdrian Chadd totlen = m->m_pkthdr.len; 3793692ad7caSAdrian Chadd 3794692ad7caSAdrian Chadd if (bcn->data == NULL) { 3795692ad7caSAdrian Chadd cmd = malloc(sizeof(struct wpi_cmd_beacon), M_DEVBUF, 3796692ad7caSAdrian Chadd M_NOWAIT | M_ZERO); 3797692ad7caSAdrian Chadd 3798692ad7caSAdrian Chadd if (cmd == NULL) { 3799692ad7caSAdrian Chadd device_printf(sc->sc_dev, 3800692ad7caSAdrian Chadd "could not allocate buffer for beacon command\n"); 3801692ad7caSAdrian Chadd m_freem(m); 3802692ad7caSAdrian Chadd return ENOMEM; 3803692ad7caSAdrian Chadd } 3804692ad7caSAdrian Chadd 3805692ad7caSAdrian Chadd cmd->id = WPI_ID_BROADCAST; 3806692ad7caSAdrian Chadd cmd->ofdm_mask = 0xff; 3807692ad7caSAdrian Chadd cmd->cck_mask = 0x0f; 3808692ad7caSAdrian Chadd cmd->lifetime = htole32(WPI_LIFETIME_INFINITE); 3809692ad7caSAdrian Chadd cmd->flags = htole32(WPI_TX_AUTO_SEQ | WPI_TX_INSERT_TSTAMP); 3810692ad7caSAdrian Chadd 3811692ad7caSAdrian Chadd bcn->data = cmd; 3812692ad7caSAdrian Chadd bcn->ni = NULL; 3813692ad7caSAdrian Chadd bcn->code = WPI_CMD_SET_BEACON; 3814692ad7caSAdrian Chadd bcn->ac = 4; 3815692ad7caSAdrian Chadd bcn->size = sizeof(struct wpi_cmd_beacon); 3816692ad7caSAdrian Chadd } else 3817692ad7caSAdrian Chadd cmd = bcn->data; 3818692ad7caSAdrian Chadd 3819692ad7caSAdrian Chadd cmd->len = htole16(totlen); 3820692ad7caSAdrian Chadd cmd->plcp = (ic->ic_curmode == IEEE80211_MODE_11A) ? 3821692ad7caSAdrian Chadd wpi_ridx_to_plcp[WPI_RIDX_OFDM6] : wpi_ridx_to_plcp[WPI_RIDX_CCK1]; 3822692ad7caSAdrian Chadd 3823692ad7caSAdrian Chadd /* NB: m will be freed in wpi_cmd_done() */ 3824692ad7caSAdrian Chadd bcn->m = m; 3825692ad7caSAdrian Chadd 3826692ad7caSAdrian Chadd return wpi_cmd2(sc, bcn); 3827692ad7caSAdrian Chadd } 3828692ad7caSAdrian Chadd 3829692ad7caSAdrian Chadd static void 3830692ad7caSAdrian Chadd wpi_update_beacon(struct ieee80211vap *vap, int item) 3831692ad7caSAdrian Chadd { 3832692ad7caSAdrian Chadd struct ieee80211_node *ni = vap->iv_bss; 3833692ad7caSAdrian Chadd struct ifnet *ifp = vap->iv_ifp; 3834692ad7caSAdrian Chadd struct wpi_softc *sc = ifp->if_softc; 3835692ad7caSAdrian Chadd int error; 3836692ad7caSAdrian Chadd 3837*fae61c69SAdrian Chadd WPI_LOCK(sc); 3838692ad7caSAdrian Chadd if ((error = wpi_setup_beacon(sc, ni)) != 0) { 3839692ad7caSAdrian Chadd device_printf(sc->sc_dev, 3840692ad7caSAdrian Chadd "%s: could not update beacon frame, error %d", __func__, 3841692ad7caSAdrian Chadd error); 3842692ad7caSAdrian Chadd } 3843*fae61c69SAdrian Chadd WPI_UNLOCK(sc); 3844692ad7caSAdrian Chadd } 3845692ad7caSAdrian Chadd 3846692ad7caSAdrian Chadd static int 3847692ad7caSAdrian Chadd wpi_run(struct wpi_softc *sc, struct ieee80211vap *vap) 3848692ad7caSAdrian Chadd { 3849692ad7caSAdrian Chadd struct ieee80211com *ic = vap->iv_ic; 3850692ad7caSAdrian Chadd struct ieee80211_node *ni = vap->iv_bss; 3851692ad7caSAdrian Chadd int error; 3852692ad7caSAdrian Chadd 3853692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 3854692ad7caSAdrian Chadd 3855692ad7caSAdrian Chadd if (vap->iv_opmode == IEEE80211_M_MONITOR) { 3856692ad7caSAdrian Chadd /* Link LED blinks while monitoring. */ 3857692ad7caSAdrian Chadd wpi_set_led(sc, WPI_LED_LINK, 5, 5); 3858692ad7caSAdrian Chadd return 0; 3859692ad7caSAdrian Chadd } 3860692ad7caSAdrian Chadd 3861692ad7caSAdrian Chadd /* XXX kernel panic workaround */ 3862692ad7caSAdrian Chadd if (ni->ni_chan == IEEE80211_CHAN_ANYC) { 3863692ad7caSAdrian Chadd device_printf(sc->sc_dev, "%s: incomplete configuration\n", 3864692ad7caSAdrian Chadd __func__); 3865692ad7caSAdrian Chadd return EINVAL; 3866692ad7caSAdrian Chadd } 3867692ad7caSAdrian Chadd 3868692ad7caSAdrian Chadd if ((error = wpi_set_timing(sc, ni)) != 0) { 3869692ad7caSAdrian Chadd device_printf(sc->sc_dev, 3870692ad7caSAdrian Chadd "%s: could not set timing, error %d\n", __func__, error); 3871692ad7caSAdrian Chadd return error; 3872692ad7caSAdrian Chadd } 3873692ad7caSAdrian Chadd 3874692ad7caSAdrian Chadd /* Update adapter configuration. */ 3875692ad7caSAdrian Chadd IEEE80211_ADDR_COPY(sc->rxon.bssid, ni->ni_bssid); 3876692ad7caSAdrian Chadd sc->rxon.associd = htole16(IEEE80211_NODE_AID(ni)); 3877692ad7caSAdrian Chadd sc->rxon.chan = ieee80211_chan2ieee(ic, ni->ni_chan); 3878692ad7caSAdrian Chadd sc->rxon.flags = htole32(WPI_RXON_TSF | WPI_RXON_CTS_TO_SELF); 3879692ad7caSAdrian Chadd if (IEEE80211_IS_CHAN_2GHZ(ni->ni_chan)) 3880692ad7caSAdrian Chadd sc->rxon.flags |= htole32(WPI_RXON_AUTO | WPI_RXON_24GHZ); 3881692ad7caSAdrian Chadd /* Short preamble and slot time are negotiated when associating. */ 3882692ad7caSAdrian Chadd sc->rxon.flags &= ~htole32(WPI_RXON_SHPREAMBLE | WPI_RXON_SHSLOT); 3883692ad7caSAdrian Chadd if (ic->ic_flags & IEEE80211_F_SHSLOT) 3884692ad7caSAdrian Chadd sc->rxon.flags |= htole32(WPI_RXON_SHSLOT); 3885692ad7caSAdrian Chadd if (ic->ic_flags & IEEE80211_F_SHPREAMBLE) 3886692ad7caSAdrian Chadd sc->rxon.flags |= htole32(WPI_RXON_SHPREAMBLE); 3887692ad7caSAdrian Chadd if (IEEE80211_IS_CHAN_A(ni->ni_chan)) { 3888692ad7caSAdrian Chadd sc->rxon.cck_mask = 0; 3889692ad7caSAdrian Chadd sc->rxon.ofdm_mask = 0x15; 3890692ad7caSAdrian Chadd } else if (IEEE80211_IS_CHAN_B(ni->ni_chan)) { 3891692ad7caSAdrian Chadd sc->rxon.cck_mask = 0x03; 3892692ad7caSAdrian Chadd sc->rxon.ofdm_mask = 0; 3893692ad7caSAdrian Chadd } else { 3894692ad7caSAdrian Chadd /* Assume 802.11b/g. */ 3895692ad7caSAdrian Chadd sc->rxon.cck_mask = 0x0f; 3896692ad7caSAdrian Chadd sc->rxon.ofdm_mask = 0x15; 3897692ad7caSAdrian Chadd } 3898692ad7caSAdrian Chadd sc->rxon.filter |= htole32(WPI_FILTER_BSS); 3899692ad7caSAdrian Chadd 3900692ad7caSAdrian Chadd /* XXX put somewhere HC_QOS_SUPPORT_ASSOC + HC_IBSS_START */ 3901692ad7caSAdrian Chadd 3902692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_STATE, "rxon chan %d flags %x\n", 3903692ad7caSAdrian Chadd sc->rxon.chan, sc->rxon.flags); 3904692ad7caSAdrian Chadd 3905692ad7caSAdrian Chadd if ((error = wpi_send_rxon(sc, 0, 1)) != 0) { 3906692ad7caSAdrian Chadd device_printf(sc->sc_dev, "%s: could not send RXON\n", 3907692ad7caSAdrian Chadd __func__); 3908692ad7caSAdrian Chadd return error; 3909692ad7caSAdrian Chadd } 3910692ad7caSAdrian Chadd 3911692ad7caSAdrian Chadd if (vap->iv_opmode == IEEE80211_M_IBSS) { 3912692ad7caSAdrian Chadd if ((error = wpi_setup_beacon(sc, ni)) != 0) { 3913692ad7caSAdrian Chadd device_printf(sc->sc_dev, 3914692ad7caSAdrian Chadd "%s: could not setup beacon, error %d\n", __func__, 3915692ad7caSAdrian Chadd error); 3916692ad7caSAdrian Chadd return error; 3917692ad7caSAdrian Chadd } 3918692ad7caSAdrian Chadd } 3919692ad7caSAdrian Chadd 3920692ad7caSAdrian Chadd if (vap->iv_opmode == IEEE80211_M_STA) { 3921692ad7caSAdrian Chadd /* Add BSS node. */ 3922692ad7caSAdrian Chadd ((struct wpi_node *)ni)->id = WPI_ID_BSS; 3923692ad7caSAdrian Chadd if ((error = wpi_add_node(sc, ni)) != 0) { 3924692ad7caSAdrian Chadd device_printf(sc->sc_dev, 3925692ad7caSAdrian Chadd "%s: could not add BSS node, error %d\n", __func__, 3926692ad7caSAdrian Chadd error); 3927692ad7caSAdrian Chadd return error; 3928692ad7caSAdrian Chadd } 3929692ad7caSAdrian Chadd } 3930692ad7caSAdrian Chadd 3931692ad7caSAdrian Chadd /* Link LED always on while associated. */ 3932692ad7caSAdrian Chadd wpi_set_led(sc, WPI_LED_LINK, 0, 1); 3933692ad7caSAdrian Chadd 3934692ad7caSAdrian Chadd /* Start periodic calibration timer. */ 3935692ad7caSAdrian Chadd callout_reset(&sc->calib_to, 60*hz, wpi_calib_timeout, sc); 3936692ad7caSAdrian Chadd 3937692ad7caSAdrian Chadd /* Enable power-saving mode if requested by user. */ 3938692ad7caSAdrian Chadd if (vap->iv_flags & IEEE80211_F_PMGTON) 3939692ad7caSAdrian Chadd (void)wpi_set_pslevel(sc, 0, 3, 1); 3940*fae61c69SAdrian Chadd else 3941*fae61c69SAdrian Chadd (void)wpi_set_pslevel(sc, 0, 0, 1); 3942692ad7caSAdrian Chadd 3943692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 3944692ad7caSAdrian Chadd 3945692ad7caSAdrian Chadd return 0; 3946692ad7caSAdrian Chadd } 3947692ad7caSAdrian Chadd 3948692ad7caSAdrian Chadd static int 3949692ad7caSAdrian Chadd wpi_key_alloc(struct ieee80211vap *vap, struct ieee80211_key *k, 3950692ad7caSAdrian Chadd ieee80211_keyix *keyix, ieee80211_keyix *rxkeyix) 3951692ad7caSAdrian Chadd { 3952692ad7caSAdrian Chadd struct ifnet *ifp = vap->iv_ifp; 3953692ad7caSAdrian Chadd struct wpi_softc *sc = ifp->if_softc; 3954692ad7caSAdrian Chadd 3955692ad7caSAdrian Chadd if (!(&vap->iv_nw_keys[0] <= k && 3956692ad7caSAdrian Chadd k < &vap->iv_nw_keys[IEEE80211_WEP_NKID])) { 3957692ad7caSAdrian Chadd if (k->wk_flags & IEEE80211_KEY_GROUP) { 3958692ad7caSAdrian Chadd /* should not happen */ 3959692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_KEY, "%s: bogus group key\n", 3960692ad7caSAdrian Chadd __func__); 3961692ad7caSAdrian Chadd return 0; 3962692ad7caSAdrian Chadd } 3963692ad7caSAdrian Chadd *keyix = 0; /* NB: use key index 0 for ucast key */ 3964692ad7caSAdrian Chadd } else { 3965692ad7caSAdrian Chadd *keyix = *rxkeyix = k - vap->iv_nw_keys; 3966692ad7caSAdrian Chadd 3967692ad7caSAdrian Chadd if (k->wk_cipher->ic_cipher == IEEE80211_CIPHER_AES_CCM) 3968692ad7caSAdrian Chadd k->wk_flags |= IEEE80211_KEY_SWCRYPT; 3969692ad7caSAdrian Chadd } 3970692ad7caSAdrian Chadd return 1; 3971692ad7caSAdrian Chadd } 3972692ad7caSAdrian Chadd 3973692ad7caSAdrian Chadd static int 3974692ad7caSAdrian Chadd wpi_key_set(struct ieee80211vap *vap, const struct ieee80211_key *k, 3975692ad7caSAdrian Chadd const uint8_t mac[IEEE80211_ADDR_LEN]) 3976692ad7caSAdrian Chadd { 3977692ad7caSAdrian Chadd const struct ieee80211_cipher *cip = k->wk_cipher; 3978692ad7caSAdrian Chadd struct ieee80211com *ic = vap->iv_ic; 3979692ad7caSAdrian Chadd struct ieee80211_node *ni = vap->iv_bss; 3980692ad7caSAdrian Chadd struct wpi_softc *sc = ic->ic_ifp->if_softc; 3981692ad7caSAdrian Chadd struct wpi_node *wn = (void *)ni; 3982692ad7caSAdrian Chadd struct wpi_node_info node; 3983692ad7caSAdrian Chadd uint16_t kflags; 3984692ad7caSAdrian Chadd int error; 3985692ad7caSAdrian Chadd 3986692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 3987692ad7caSAdrian Chadd 3988692ad7caSAdrian Chadd switch (cip->ic_cipher) { 3989692ad7caSAdrian Chadd case IEEE80211_CIPHER_AES_CCM: 3990692ad7caSAdrian Chadd if (k->wk_flags & IEEE80211_KEY_GROUP) 3991692ad7caSAdrian Chadd return 1; 3992692ad7caSAdrian Chadd 3993692ad7caSAdrian Chadd kflags = WPI_KFLAG_CCMP; 3994692ad7caSAdrian Chadd break; 3995692ad7caSAdrian Chadd default: 3996692ad7caSAdrian Chadd /* null_key_set() */ 3997692ad7caSAdrian Chadd return 1; 3998692ad7caSAdrian Chadd } 3999692ad7caSAdrian Chadd 4000692ad7caSAdrian Chadd if (wn->id == WPI_ID_UNDEFINED) 4001692ad7caSAdrian Chadd return 0; 4002692ad7caSAdrian Chadd 4003692ad7caSAdrian Chadd kflags |= WPI_KFLAG_KID(k->wk_keyix); 4004692ad7caSAdrian Chadd if (k->wk_flags & IEEE80211_KEY_GROUP) 4005692ad7caSAdrian Chadd kflags |= WPI_KFLAG_MULTICAST; 4006692ad7caSAdrian Chadd 40076607310bSBenjamin Close memset(&node, 0, sizeof node); 4008692ad7caSAdrian Chadd node.id = wn->id; 4009692ad7caSAdrian Chadd node.control = WPI_NODE_UPDATE; 4010692ad7caSAdrian Chadd node.flags = WPI_FLAG_KEY_SET; 4011692ad7caSAdrian Chadd node.kflags = htole16(kflags); 4012692ad7caSAdrian Chadd memcpy(node.key, k->wk_key, k->wk_keylen); 4013692ad7caSAdrian Chadd 4014692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_KEY, "set key id=%d for node %d\n", k->wk_keyix, 4015692ad7caSAdrian Chadd node.id); 4016692ad7caSAdrian Chadd 4017692ad7caSAdrian Chadd error = wpi_cmd(sc, WPI_CMD_ADD_NODE, &node, sizeof node, 1); 40186607310bSBenjamin Close if (error != 0) { 4019692ad7caSAdrian Chadd device_printf(sc->sc_dev, "can't update node info, error %d\n", 4020692ad7caSAdrian Chadd error); 4021692ad7caSAdrian Chadd return 0; 4022692ad7caSAdrian Chadd } 4023692ad7caSAdrian Chadd 4024692ad7caSAdrian Chadd return 1; 4025692ad7caSAdrian Chadd } 4026692ad7caSAdrian Chadd 4027692ad7caSAdrian Chadd static int 4028692ad7caSAdrian Chadd wpi_key_delete(struct ieee80211vap *vap, const struct ieee80211_key *k) 4029692ad7caSAdrian Chadd { 4030692ad7caSAdrian Chadd const struct ieee80211_cipher *cip = k->wk_cipher; 4031692ad7caSAdrian Chadd struct ieee80211com *ic = vap->iv_ic; 4032692ad7caSAdrian Chadd struct ieee80211_node *ni = vap->iv_bss; 4033692ad7caSAdrian Chadd struct wpi_softc *sc = ic->ic_ifp->if_softc; 4034692ad7caSAdrian Chadd struct wpi_node *wn = (void *)ni; 4035692ad7caSAdrian Chadd struct wpi_node_info node; 4036692ad7caSAdrian Chadd 4037692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 4038692ad7caSAdrian Chadd 4039692ad7caSAdrian Chadd switch (cip->ic_cipher) { 4040692ad7caSAdrian Chadd case IEEE80211_CIPHER_AES_CCM: 4041692ad7caSAdrian Chadd break; 4042692ad7caSAdrian Chadd default: 4043692ad7caSAdrian Chadd /* null_key_delete() */ 4044692ad7caSAdrian Chadd return 1; 4045692ad7caSAdrian Chadd } 4046692ad7caSAdrian Chadd 4047692ad7caSAdrian Chadd if (vap->iv_state != IEEE80211_S_RUN || 4048692ad7caSAdrian Chadd (k->wk_flags & IEEE80211_KEY_GROUP)) 4049692ad7caSAdrian Chadd return 1; /* Nothing to do. */ 4050692ad7caSAdrian Chadd 4051692ad7caSAdrian Chadd memset(&node, 0, sizeof node); 4052692ad7caSAdrian Chadd node.id = wn->id; 4053692ad7caSAdrian Chadd node.control = WPI_NODE_UPDATE; 4054692ad7caSAdrian Chadd node.flags = WPI_FLAG_KEY_SET; 4055692ad7caSAdrian Chadd 4056692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_KEY, "delete keys for node %d\n", node.id); 4057692ad7caSAdrian Chadd (void)wpi_cmd(sc, WPI_CMD_ADD_NODE, &node, sizeof node, 1); 4058692ad7caSAdrian Chadd 4059692ad7caSAdrian Chadd return 1; 4060692ad7caSAdrian Chadd } 4061692ad7caSAdrian Chadd 4062692ad7caSAdrian Chadd /* 4063692ad7caSAdrian Chadd * This function is called after the runtime firmware notifies us of its 4064692ad7caSAdrian Chadd * readiness (called in a process context). 4065692ad7caSAdrian Chadd */ 4066692ad7caSAdrian Chadd static int 4067692ad7caSAdrian Chadd wpi_post_alive(struct wpi_softc *sc) 4068692ad7caSAdrian Chadd { 4069692ad7caSAdrian Chadd int ntries, error; 4070692ad7caSAdrian Chadd 4071692ad7caSAdrian Chadd /* Check (again) that the radio is not disabled. */ 4072692ad7caSAdrian Chadd if ((error = wpi_nic_lock(sc)) != 0) 4073692ad7caSAdrian Chadd return error; 4074692ad7caSAdrian Chadd 4075692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 4076692ad7caSAdrian Chadd 4077692ad7caSAdrian Chadd /* NB: Runtime firmware must be up and running. */ 4078692ad7caSAdrian Chadd if (!(wpi_prph_read(sc, WPI_APMG_RFKILL) & 1)) { 4079692ad7caSAdrian Chadd device_printf(sc->sc_dev, 4080692ad7caSAdrian Chadd "RF switch: radio disabled (%s)\n", __func__); 4081692ad7caSAdrian Chadd wpi_nic_unlock(sc); 4082692ad7caSAdrian Chadd return EPERM; /* :-) */ 4083692ad7caSAdrian Chadd } 4084692ad7caSAdrian Chadd wpi_nic_unlock(sc); 4085692ad7caSAdrian Chadd 4086692ad7caSAdrian Chadd /* Wait for thermal sensor to calibrate. */ 4087692ad7caSAdrian Chadd for (ntries = 0; ntries < 1000; ntries++) { 4088692ad7caSAdrian Chadd if ((sc->temp = (int)WPI_READ(sc, WPI_UCODE_GP2)) != 0) 4089692ad7caSAdrian Chadd break; 4090692ad7caSAdrian Chadd DELAY(10); 4091692ad7caSAdrian Chadd } 4092692ad7caSAdrian Chadd 4093692ad7caSAdrian Chadd if (ntries == 1000) { 4094692ad7caSAdrian Chadd device_printf(sc->sc_dev, 4095692ad7caSAdrian Chadd "timeout waiting for thermal sensor calibration\n"); 4096692ad7caSAdrian Chadd return ETIMEDOUT; 4097692ad7caSAdrian Chadd } 4098692ad7caSAdrian Chadd 4099692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TEMP, "temperature %d\n", sc->temp); 4100692ad7caSAdrian Chadd return 0; 4101692ad7caSAdrian Chadd } 4102692ad7caSAdrian Chadd 4103692ad7caSAdrian Chadd /* 4104692ad7caSAdrian Chadd * The firmware boot code is small and is intended to be copied directly into 4105692ad7caSAdrian Chadd * the NIC internal memory (no DMA transfer). 4106692ad7caSAdrian Chadd */ 4107692ad7caSAdrian Chadd static int 4108692ad7caSAdrian Chadd wpi_load_bootcode(struct wpi_softc *sc, const uint8_t *ucode, int size) 4109692ad7caSAdrian Chadd { 4110692ad7caSAdrian Chadd int error, ntries; 4111692ad7caSAdrian Chadd 4112692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_HW, "Loading microcode size 0x%x\n", size); 4113692ad7caSAdrian Chadd 4114692ad7caSAdrian Chadd size /= sizeof (uint32_t); 4115692ad7caSAdrian Chadd 4116692ad7caSAdrian Chadd if ((error = wpi_nic_lock(sc)) != 0) 4117692ad7caSAdrian Chadd return error; 4118692ad7caSAdrian Chadd 4119692ad7caSAdrian Chadd /* Copy microcode image into NIC memory. */ 4120692ad7caSAdrian Chadd wpi_prph_write_region_4(sc, WPI_BSM_SRAM_BASE, 4121692ad7caSAdrian Chadd (const uint32_t *)ucode, size); 4122692ad7caSAdrian Chadd 4123692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_BSM_WR_MEM_SRC, 0); 4124692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_BSM_WR_MEM_DST, WPI_FW_TEXT_BASE); 4125692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_BSM_WR_DWCOUNT, size); 4126692ad7caSAdrian Chadd 4127692ad7caSAdrian Chadd /* Start boot load now. */ 4128692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_BSM_WR_CTRL, WPI_BSM_WR_CTRL_START); 4129692ad7caSAdrian Chadd 4130692ad7caSAdrian Chadd /* Wait for transfer to complete. */ 4131692ad7caSAdrian Chadd for (ntries = 0; ntries < 1000; ntries++) { 4132692ad7caSAdrian Chadd uint32_t status = WPI_READ(sc, WPI_FH_TX_STATUS); 4133692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_HW, 4134692ad7caSAdrian Chadd "firmware status=0x%x, val=0x%x, result=0x%x\n", status, 4135692ad7caSAdrian Chadd WPI_FH_TX_STATUS_IDLE(6), 4136692ad7caSAdrian Chadd status & WPI_FH_TX_STATUS_IDLE(6)); 4137692ad7caSAdrian Chadd if (status & WPI_FH_TX_STATUS_IDLE(6)) { 4138692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_HW, 4139692ad7caSAdrian Chadd "Status Match! - ntries = %d\n", ntries); 4140692ad7caSAdrian Chadd break; 4141692ad7caSAdrian Chadd } 4142692ad7caSAdrian Chadd DELAY(10); 4143692ad7caSAdrian Chadd } 4144692ad7caSAdrian Chadd if (ntries == 1000) { 4145692ad7caSAdrian Chadd device_printf(sc->sc_dev, "%s: could not load boot firmware\n", 4146692ad7caSAdrian Chadd __func__); 4147692ad7caSAdrian Chadd wpi_nic_unlock(sc); 4148692ad7caSAdrian Chadd return ETIMEDOUT; 4149692ad7caSAdrian Chadd } 4150692ad7caSAdrian Chadd 4151692ad7caSAdrian Chadd /* Enable boot after power up. */ 4152692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_BSM_WR_CTRL, WPI_BSM_WR_CTRL_START_EN); 4153692ad7caSAdrian Chadd 4154692ad7caSAdrian Chadd wpi_nic_unlock(sc); 4155692ad7caSAdrian Chadd return 0; 4156692ad7caSAdrian Chadd } 4157692ad7caSAdrian Chadd 4158692ad7caSAdrian Chadd static int 4159692ad7caSAdrian Chadd wpi_load_firmware(struct wpi_softc *sc) 4160692ad7caSAdrian Chadd { 4161692ad7caSAdrian Chadd struct wpi_fw_info *fw = &sc->fw; 4162692ad7caSAdrian Chadd struct wpi_dma_info *dma = &sc->fw_dma; 4163692ad7caSAdrian Chadd int error; 4164692ad7caSAdrian Chadd 4165692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 4166692ad7caSAdrian Chadd 4167692ad7caSAdrian Chadd /* Copy initialization sections into pre-allocated DMA-safe memory. */ 4168692ad7caSAdrian Chadd memcpy(dma->vaddr, fw->init.data, fw->init.datasz); 4169692ad7caSAdrian Chadd bus_dmamap_sync(dma->tag, dma->map, BUS_DMASYNC_PREWRITE); 4170692ad7caSAdrian Chadd memcpy(dma->vaddr + WPI_FW_DATA_MAXSZ, fw->init.text, fw->init.textsz); 4171692ad7caSAdrian Chadd bus_dmamap_sync(dma->tag, dma->map, BUS_DMASYNC_PREWRITE); 4172692ad7caSAdrian Chadd 4173692ad7caSAdrian Chadd /* Tell adapter where to find initialization sections. */ 4174692ad7caSAdrian Chadd if ((error = wpi_nic_lock(sc)) != 0) 4175692ad7caSAdrian Chadd return error; 4176692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_BSM_DRAM_DATA_ADDR, dma->paddr); 4177692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_BSM_DRAM_DATA_SIZE, fw->init.datasz); 4178692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_BSM_DRAM_TEXT_ADDR, 4179692ad7caSAdrian Chadd dma->paddr + WPI_FW_DATA_MAXSZ); 4180692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_BSM_DRAM_TEXT_SIZE, fw->init.textsz); 4181692ad7caSAdrian Chadd wpi_nic_unlock(sc); 4182692ad7caSAdrian Chadd 4183692ad7caSAdrian Chadd /* Load firmware boot code. */ 4184692ad7caSAdrian Chadd error = wpi_load_bootcode(sc, fw->boot.text, fw->boot.textsz); 4185692ad7caSAdrian Chadd if (error != 0) { 4186692ad7caSAdrian Chadd device_printf(sc->sc_dev, "%s: could not load boot firmware\n", 4187692ad7caSAdrian Chadd __func__); 41886607310bSBenjamin Close return error; 41896607310bSBenjamin Close } 41906607310bSBenjamin Close 4191692ad7caSAdrian Chadd /* Now press "execute". */ 4192692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_RESET, 0); 4193692ad7caSAdrian Chadd 4194692ad7caSAdrian Chadd /* Wait at most one second for first alive notification. */ 4195692ad7caSAdrian Chadd if ((error = msleep(sc, &sc->sc_mtx, PCATCH, "wpiinit", hz)) != 0) { 4196692ad7caSAdrian Chadd device_printf(sc->sc_dev, 4197692ad7caSAdrian Chadd "%s: timeout waiting for adapter to initialize, error %d\n", 4198692ad7caSAdrian Chadd __func__, error); 41996607310bSBenjamin Close return error; 42006607310bSBenjamin Close } 42016607310bSBenjamin Close 4202692ad7caSAdrian Chadd /* Copy runtime sections into pre-allocated DMA-safe memory. */ 4203692ad7caSAdrian Chadd memcpy(dma->vaddr, fw->main.data, fw->main.datasz); 4204692ad7caSAdrian Chadd bus_dmamap_sync(dma->tag, dma->map, BUS_DMASYNC_PREWRITE); 4205692ad7caSAdrian Chadd memcpy(dma->vaddr + WPI_FW_DATA_MAXSZ, fw->main.text, fw->main.textsz); 4206692ad7caSAdrian Chadd bus_dmamap_sync(dma->tag, dma->map, BUS_DMASYNC_PREWRITE); 4207692ad7caSAdrian Chadd 4208692ad7caSAdrian Chadd /* Tell adapter where to find runtime sections. */ 4209692ad7caSAdrian Chadd if ((error = wpi_nic_lock(sc)) != 0) 4210692ad7caSAdrian Chadd return error; 4211692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_BSM_DRAM_DATA_ADDR, dma->paddr); 4212692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_BSM_DRAM_DATA_SIZE, fw->main.datasz); 4213692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_BSM_DRAM_TEXT_ADDR, 4214692ad7caSAdrian Chadd dma->paddr + WPI_FW_DATA_MAXSZ); 4215692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_BSM_DRAM_TEXT_SIZE, 4216692ad7caSAdrian Chadd WPI_FW_UPDATED | fw->main.textsz); 4217692ad7caSAdrian Chadd wpi_nic_unlock(sc); 4218692ad7caSAdrian Chadd 4219692ad7caSAdrian Chadd return 0; 4220692ad7caSAdrian Chadd } 4221692ad7caSAdrian Chadd 4222692ad7caSAdrian Chadd static int 4223692ad7caSAdrian Chadd wpi_read_firmware(struct wpi_softc *sc) 4224692ad7caSAdrian Chadd { 4225692ad7caSAdrian Chadd const struct firmware *fp; 4226692ad7caSAdrian Chadd struct wpi_fw_info *fw = &sc->fw; 4227692ad7caSAdrian Chadd const struct wpi_firmware_hdr *hdr; 4228692ad7caSAdrian Chadd int error; 4229692ad7caSAdrian Chadd 4230692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 4231692ad7caSAdrian Chadd 4232692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_FIRMWARE, 4233692ad7caSAdrian Chadd "Attempting Loading Firmware from %s module\n", WPI_FW_NAME); 4234692ad7caSAdrian Chadd 4235692ad7caSAdrian Chadd WPI_UNLOCK(sc); 4236692ad7caSAdrian Chadd fp = firmware_get(WPI_FW_NAME); 4237692ad7caSAdrian Chadd WPI_LOCK(sc); 4238692ad7caSAdrian Chadd 4239692ad7caSAdrian Chadd if (fp == NULL) { 4240692ad7caSAdrian Chadd device_printf(sc->sc_dev, 4241692ad7caSAdrian Chadd "could not load firmware image '%s'\n", WPI_FW_NAME); 4242692ad7caSAdrian Chadd return EINVAL; 4243692ad7caSAdrian Chadd } 4244692ad7caSAdrian Chadd 4245692ad7caSAdrian Chadd sc->fw_fp = fp; 4246692ad7caSAdrian Chadd 4247692ad7caSAdrian Chadd if (fp->datasize < sizeof (struct wpi_firmware_hdr)) { 4248692ad7caSAdrian Chadd device_printf(sc->sc_dev, 4249692ad7caSAdrian Chadd "firmware file too short: %zu bytes\n", fp->datasize); 4250692ad7caSAdrian Chadd error = EINVAL; 4251692ad7caSAdrian Chadd goto fail; 4252692ad7caSAdrian Chadd } 4253692ad7caSAdrian Chadd 4254692ad7caSAdrian Chadd fw->size = fp->datasize; 4255692ad7caSAdrian Chadd fw->data = (const uint8_t *)fp->data; 4256692ad7caSAdrian Chadd 4257692ad7caSAdrian Chadd /* Extract firmware header information. */ 4258692ad7caSAdrian Chadd hdr = (const struct wpi_firmware_hdr *)fw->data; 4259692ad7caSAdrian Chadd 4260692ad7caSAdrian Chadd /* | RUNTIME FIRMWARE | INIT FIRMWARE | BOOT FW | 4261692ad7caSAdrian Chadd |HDR|<--TEXT-->|<--DATA-->|<--TEXT-->|<--DATA-->|<--TEXT-->| */ 4262692ad7caSAdrian Chadd 4263692ad7caSAdrian Chadd fw->main.textsz = le32toh(hdr->rtextsz); 4264692ad7caSAdrian Chadd fw->main.datasz = le32toh(hdr->rdatasz); 4265692ad7caSAdrian Chadd fw->init.textsz = le32toh(hdr->itextsz); 4266692ad7caSAdrian Chadd fw->init.datasz = le32toh(hdr->idatasz); 4267692ad7caSAdrian Chadd fw->boot.textsz = le32toh(hdr->btextsz); 4268692ad7caSAdrian Chadd fw->boot.datasz = 0; 4269692ad7caSAdrian Chadd 4270692ad7caSAdrian Chadd /* Sanity-check firmware header. */ 4271692ad7caSAdrian Chadd if (fw->main.textsz > WPI_FW_TEXT_MAXSZ || 4272692ad7caSAdrian Chadd fw->main.datasz > WPI_FW_DATA_MAXSZ || 4273692ad7caSAdrian Chadd fw->init.textsz > WPI_FW_TEXT_MAXSZ || 4274692ad7caSAdrian Chadd fw->init.datasz > WPI_FW_DATA_MAXSZ || 4275692ad7caSAdrian Chadd fw->boot.textsz > WPI_FW_BOOT_TEXT_MAXSZ || 4276692ad7caSAdrian Chadd (fw->boot.textsz & 3) != 0) { 4277692ad7caSAdrian Chadd device_printf(sc->sc_dev, "invalid firmware header\n"); 4278692ad7caSAdrian Chadd error = EINVAL; 4279692ad7caSAdrian Chadd goto fail; 4280692ad7caSAdrian Chadd } 4281692ad7caSAdrian Chadd 4282692ad7caSAdrian Chadd /* Check that all firmware sections fit. */ 4283692ad7caSAdrian Chadd if (fw->size < sizeof (*hdr) + fw->main.textsz + fw->main.datasz + 4284692ad7caSAdrian Chadd fw->init.textsz + fw->init.datasz + fw->boot.textsz) { 4285692ad7caSAdrian Chadd device_printf(sc->sc_dev, 4286692ad7caSAdrian Chadd "firmware file too short: %zu bytes\n", fw->size); 4287692ad7caSAdrian Chadd error = EINVAL; 4288692ad7caSAdrian Chadd goto fail; 4289692ad7caSAdrian Chadd } 4290692ad7caSAdrian Chadd 4291692ad7caSAdrian Chadd /* Get pointers to firmware sections. */ 4292692ad7caSAdrian Chadd fw->main.text = (const uint8_t *)(hdr + 1); 4293692ad7caSAdrian Chadd fw->main.data = fw->main.text + fw->main.textsz; 4294692ad7caSAdrian Chadd fw->init.text = fw->main.data + fw->main.datasz; 4295692ad7caSAdrian Chadd fw->init.data = fw->init.text + fw->init.textsz; 4296692ad7caSAdrian Chadd fw->boot.text = fw->init.data + fw->init.datasz; 4297692ad7caSAdrian Chadd 4298692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_FIRMWARE, 4299692ad7caSAdrian Chadd "Firmware Version: Major %d, Minor %d, Driver %d, \n" 4300692ad7caSAdrian Chadd "runtime (text: %u, data: %u) init (text: %u, data %u) boot (text %u)\n", 4301692ad7caSAdrian Chadd hdr->major, hdr->minor, le32toh(hdr->driver), 4302692ad7caSAdrian Chadd fw->main.textsz, fw->main.datasz, 4303692ad7caSAdrian Chadd fw->init.textsz, fw->init.datasz, fw->boot.textsz); 4304692ad7caSAdrian Chadd 4305692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_FIRMWARE, "fw->main.text %p\n", fw->main.text); 4306692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_FIRMWARE, "fw->main.data %p\n", fw->main.data); 4307692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_FIRMWARE, "fw->init.text %p\n", fw->init.text); 4308692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_FIRMWARE, "fw->init.data %p\n", fw->init.data); 4309692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_FIRMWARE, "fw->boot.text %p\n", fw->boot.text); 4310692ad7caSAdrian Chadd 4311692ad7caSAdrian Chadd return 0; 4312692ad7caSAdrian Chadd 4313692ad7caSAdrian Chadd fail: wpi_unload_firmware(sc); 4314692ad7caSAdrian Chadd return error; 4315692ad7caSAdrian Chadd } 4316692ad7caSAdrian Chadd 4317692ad7caSAdrian Chadd /** 4318692ad7caSAdrian Chadd * Free the referenced firmware image 4319692ad7caSAdrian Chadd */ 4320692ad7caSAdrian Chadd static void 4321692ad7caSAdrian Chadd wpi_unload_firmware(struct wpi_softc *sc) 4322692ad7caSAdrian Chadd { 4323692ad7caSAdrian Chadd if (sc->fw_fp != NULL) { 4324692ad7caSAdrian Chadd firmware_put(sc->fw_fp, FIRMWARE_UNLOAD); 4325692ad7caSAdrian Chadd sc->fw_fp = NULL; 4326692ad7caSAdrian Chadd } 4327692ad7caSAdrian Chadd } 4328692ad7caSAdrian Chadd 4329692ad7caSAdrian Chadd static int 4330692ad7caSAdrian Chadd wpi_clock_wait(struct wpi_softc *sc) 4331692ad7caSAdrian Chadd { 4332692ad7caSAdrian Chadd int ntries; 4333692ad7caSAdrian Chadd 4334692ad7caSAdrian Chadd /* Set "initialization complete" bit. */ 4335692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_GP_CNTRL, WPI_GP_CNTRL_INIT_DONE); 4336692ad7caSAdrian Chadd 4337692ad7caSAdrian Chadd /* Wait for clock stabilization. */ 4338692ad7caSAdrian Chadd for (ntries = 0; ntries < 2500; ntries++) { 4339692ad7caSAdrian Chadd if (WPI_READ(sc, WPI_GP_CNTRL) & WPI_GP_CNTRL_MAC_CLOCK_READY) 4340692ad7caSAdrian Chadd return 0; 4341692ad7caSAdrian Chadd DELAY(100); 4342692ad7caSAdrian Chadd } 4343692ad7caSAdrian Chadd device_printf(sc->sc_dev, 4344692ad7caSAdrian Chadd "%s: timeout waiting for clock stabilization\n", __func__); 4345692ad7caSAdrian Chadd 4346692ad7caSAdrian Chadd return ETIMEDOUT; 4347692ad7caSAdrian Chadd } 4348692ad7caSAdrian Chadd 4349692ad7caSAdrian Chadd static int 4350692ad7caSAdrian Chadd wpi_apm_init(struct wpi_softc *sc) 4351692ad7caSAdrian Chadd { 4352692ad7caSAdrian Chadd uint32_t reg; 4353692ad7caSAdrian Chadd int error; 4354692ad7caSAdrian Chadd 4355692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 4356692ad7caSAdrian Chadd 4357692ad7caSAdrian Chadd /* Disable L0s exit timer (NMI bug workaround). */ 4358692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_GIO_CHICKEN, WPI_GIO_CHICKEN_DIS_L0S_TIMER); 4359692ad7caSAdrian Chadd /* Don't wait for ICH L0s (ICH bug workaround). */ 4360692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_GIO_CHICKEN, WPI_GIO_CHICKEN_L1A_NO_L0S_RX); 4361692ad7caSAdrian Chadd 4362692ad7caSAdrian Chadd /* Set FH wait threshold to max (HW bug under stress workaround). */ 4363692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_DBG_HPET_MEM, 0xffff0000); 4364692ad7caSAdrian Chadd 4365692ad7caSAdrian Chadd /* Retrieve PCIe Active State Power Management (ASPM). */ 4366692ad7caSAdrian Chadd reg = pci_read_config(sc->sc_dev, sc->sc_cap_off + 0x10, 1); 4367692ad7caSAdrian Chadd /* Workaround for HW instability in PCIe L0->L0s->L1 transition. */ 4368692ad7caSAdrian Chadd if (reg & 0x02) /* L1 Entry enabled. */ 4369692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_GIO, WPI_GIO_L0S_ENA); 4370692ad7caSAdrian Chadd else 4371692ad7caSAdrian Chadd WPI_CLRBITS(sc, WPI_GIO, WPI_GIO_L0S_ENA); 4372692ad7caSAdrian Chadd 4373692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_ANA_PLL, WPI_ANA_PLL_INIT); 4374692ad7caSAdrian Chadd 4375692ad7caSAdrian Chadd /* Wait for clock stabilization before accessing prph. */ 4376692ad7caSAdrian Chadd if ((error = wpi_clock_wait(sc)) != 0) 4377692ad7caSAdrian Chadd return error; 4378692ad7caSAdrian Chadd 4379692ad7caSAdrian Chadd if ((error = wpi_nic_lock(sc)) != 0) 4380692ad7caSAdrian Chadd return error; 4381692ad7caSAdrian Chadd /* Enable DMA and BSM (Bootstrap State Machine). */ 4382692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_APMG_CLK_EN, 4383692ad7caSAdrian Chadd WPI_APMG_CLK_CTRL_DMA_CLK_RQT | WPI_APMG_CLK_CTRL_BSM_CLK_RQT); 4384692ad7caSAdrian Chadd DELAY(20); 4385692ad7caSAdrian Chadd /* Disable L1-Active. */ 4386692ad7caSAdrian Chadd wpi_prph_setbits(sc, WPI_APMG_PCI_STT, WPI_APMG_PCI_STT_L1A_DIS); 4387*fae61c69SAdrian Chadd /* ??? */ 4388*fae61c69SAdrian Chadd wpi_prph_clrbits(sc, WPI_APMG_PS, 0x00000E00); 4389692ad7caSAdrian Chadd wpi_nic_unlock(sc); 4390692ad7caSAdrian Chadd 43916607310bSBenjamin Close return 0; 43926607310bSBenjamin Close } 43936607310bSBenjamin Close 43946607310bSBenjamin Close static void 4395692ad7caSAdrian Chadd wpi_apm_stop_master(struct wpi_softc *sc) 43966607310bSBenjamin Close { 43976607310bSBenjamin Close int ntries; 43986607310bSBenjamin Close 4399692ad7caSAdrian Chadd /* Stop busmaster DMA activity. */ 4400692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_RESET, WPI_RESET_STOP_MASTER); 44016607310bSBenjamin Close 4402692ad7caSAdrian Chadd if ((WPI_READ(sc, WPI_GP_CNTRL) & WPI_GP_CNTRL_PS_MASK) == 4403692ad7caSAdrian Chadd WPI_GP_CNTRL_MAC_PS) 4404692ad7caSAdrian Chadd return; /* Already asleep. */ 44056607310bSBenjamin Close 44066607310bSBenjamin Close for (ntries = 0; ntries < 100; ntries++) { 4407692ad7caSAdrian Chadd if (WPI_READ(sc, WPI_RESET) & WPI_RESET_MASTER_DISABLED) 4408692ad7caSAdrian Chadd return; 44096607310bSBenjamin Close DELAY(10); 44106607310bSBenjamin Close } 4411692ad7caSAdrian Chadd device_printf(sc->sc_dev, "%s: timeout waiting for master\n", __func__); 44126607310bSBenjamin Close } 4413692ad7caSAdrian Chadd 4414692ad7caSAdrian Chadd static void 4415692ad7caSAdrian Chadd wpi_apm_stop(struct wpi_softc *sc) 4416692ad7caSAdrian Chadd { 4417692ad7caSAdrian Chadd wpi_apm_stop_master(sc); 4418692ad7caSAdrian Chadd 4419692ad7caSAdrian Chadd /* Reset the entire device. */ 4420692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_RESET, WPI_RESET_SW); 4421692ad7caSAdrian Chadd DELAY(10); 4422692ad7caSAdrian Chadd /* Clear "initialization complete" bit. */ 4423692ad7caSAdrian Chadd WPI_CLRBITS(sc, WPI_GP_CNTRL, WPI_GP_CNTRL_INIT_DONE); 4424692ad7caSAdrian Chadd } 4425692ad7caSAdrian Chadd 4426692ad7caSAdrian Chadd static void 4427692ad7caSAdrian Chadd wpi_nic_config(struct wpi_softc *sc) 4428692ad7caSAdrian Chadd { 4429692ad7caSAdrian Chadd uint32_t rev; 4430692ad7caSAdrian Chadd 4431692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 4432692ad7caSAdrian Chadd 4433692ad7caSAdrian Chadd /* voodoo from the Linux "driver".. */ 4434692ad7caSAdrian Chadd rev = pci_read_config(sc->sc_dev, PCIR_REVID, 1); 4435692ad7caSAdrian Chadd if ((rev & 0xc0) == 0x40) 4436692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_HW_IF_CONFIG, WPI_HW_IF_CONFIG_ALM_MB); 4437692ad7caSAdrian Chadd else if (!(rev & 0x80)) 4438692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_HW_IF_CONFIG, WPI_HW_IF_CONFIG_ALM_MM); 4439692ad7caSAdrian Chadd 4440692ad7caSAdrian Chadd if (sc->cap == 0x80) 4441692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_HW_IF_CONFIG, WPI_HW_IF_CONFIG_SKU_MRC); 4442692ad7caSAdrian Chadd 4443692ad7caSAdrian Chadd if ((le16toh(sc->rev) & 0xf0) == 0xd0) 4444692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_HW_IF_CONFIG, WPI_HW_IF_CONFIG_REV_D); 4445692ad7caSAdrian Chadd else 4446692ad7caSAdrian Chadd WPI_CLRBITS(sc, WPI_HW_IF_CONFIG, WPI_HW_IF_CONFIG_REV_D); 4447692ad7caSAdrian Chadd 4448692ad7caSAdrian Chadd if (sc->type > 1) 4449692ad7caSAdrian Chadd WPI_SETBITS(sc, WPI_HW_IF_CONFIG, WPI_HW_IF_CONFIG_TYPE_B); 44506607310bSBenjamin Close } 44516607310bSBenjamin Close 44526607310bSBenjamin Close static int 4453692ad7caSAdrian Chadd wpi_hw_init(struct wpi_softc *sc) 44546607310bSBenjamin Close { 4455692ad7caSAdrian Chadd int chnl, ntries, error; 44566607310bSBenjamin Close 4457692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 44586607310bSBenjamin Close 4459692ad7caSAdrian Chadd /* Clear pending interrupts. */ 4460692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_INT, 0xffffffff); 4461692ad7caSAdrian Chadd 4462692ad7caSAdrian Chadd if ((error = wpi_apm_init(sc)) != 0) { 4463692ad7caSAdrian Chadd device_printf(sc->sc_dev, 4464692ad7caSAdrian Chadd "%s: could not power ON adapter, error %d\n", __func__, 4465692ad7caSAdrian Chadd error); 4466692ad7caSAdrian Chadd return error; 4467692ad7caSAdrian Chadd } 4468692ad7caSAdrian Chadd 4469692ad7caSAdrian Chadd /* Select VMAIN power source. */ 4470692ad7caSAdrian Chadd if ((error = wpi_nic_lock(sc)) != 0) 4471692ad7caSAdrian Chadd return error; 4472692ad7caSAdrian Chadd wpi_prph_clrbits(sc, WPI_APMG_PS, WPI_APMG_PS_PWR_SRC_MASK); 4473692ad7caSAdrian Chadd wpi_nic_unlock(sc); 4474692ad7caSAdrian Chadd /* Spin until VMAIN gets selected. */ 44756607310bSBenjamin Close for (ntries = 0; ntries < 5000; ntries++) { 4476692ad7caSAdrian Chadd if (WPI_READ(sc, WPI_GPIO_IN) & WPI_GPIO_IN_VMAIN) 44776607310bSBenjamin Close break; 44786607310bSBenjamin Close DELAY(10); 44796607310bSBenjamin Close } 44806607310bSBenjamin Close if (ntries == 5000) { 4481692ad7caSAdrian Chadd device_printf(sc->sc_dev, "timeout selecting power source\n"); 44826607310bSBenjamin Close return ETIMEDOUT; 44836607310bSBenjamin Close } 4484692ad7caSAdrian Chadd 4485692ad7caSAdrian Chadd /* Perform adapter initialization. */ 4486692ad7caSAdrian Chadd wpi_nic_config(sc); 4487692ad7caSAdrian Chadd 4488692ad7caSAdrian Chadd /* Initialize RX ring. */ 4489692ad7caSAdrian Chadd if ((error = wpi_nic_lock(sc)) != 0) 4490692ad7caSAdrian Chadd return error; 4491692ad7caSAdrian Chadd /* Set physical address of RX ring. */ 4492692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_FH_RX_BASE, sc->rxq.desc_dma.paddr); 4493692ad7caSAdrian Chadd /* Set physical address of RX read pointer. */ 4494692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_FH_RX_RPTR_ADDR, sc->shared_dma.paddr + 4495692ad7caSAdrian Chadd offsetof(struct wpi_shared, next)); 4496692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_FH_RX_WPTR, 0); 4497692ad7caSAdrian Chadd /* Enable RX. */ 4498692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_FH_RX_CONFIG, 4499692ad7caSAdrian Chadd WPI_FH_RX_CONFIG_DMA_ENA | 4500692ad7caSAdrian Chadd WPI_FH_RX_CONFIG_RDRBD_ENA | 4501692ad7caSAdrian Chadd WPI_FH_RX_CONFIG_WRSTATUS_ENA | 4502692ad7caSAdrian Chadd WPI_FH_RX_CONFIG_MAXFRAG | 4503692ad7caSAdrian Chadd WPI_FH_RX_CONFIG_NRBD(WPI_RX_RING_COUNT_LOG) | 4504692ad7caSAdrian Chadd WPI_FH_RX_CONFIG_IRQ_DST_HOST | 4505692ad7caSAdrian Chadd WPI_FH_RX_CONFIG_IRQ_TIMEOUT(1)); 4506692ad7caSAdrian Chadd (void)WPI_READ(sc, WPI_FH_RSSR_TBL); /* barrier */ 4507692ad7caSAdrian Chadd wpi_nic_unlock(sc); 4508692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_FH_RX_WPTR, (WPI_RX_RING_COUNT - 1) & ~7); 4509692ad7caSAdrian Chadd 4510692ad7caSAdrian Chadd /* Initialize TX rings. */ 4511692ad7caSAdrian Chadd if ((error = wpi_nic_lock(sc)) != 0) 4512692ad7caSAdrian Chadd return error; 4513692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_ALM_SCHED_MODE, 2); /* bypass mode */ 4514692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_ALM_SCHED_ARASTAT, 1); /* enable RA0 */ 4515692ad7caSAdrian Chadd /* Enable all 6 TX rings. */ 4516692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_ALM_SCHED_TXFACT, 0x3f); 4517692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_ALM_SCHED_SBYPASS_MODE1, 0x10000); 4518692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_ALM_SCHED_SBYPASS_MODE2, 0x30002); 4519692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_ALM_SCHED_TXF4MF, 4); 4520692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_ALM_SCHED_TXF5MF, 5); 4521692ad7caSAdrian Chadd /* Set physical address of TX rings. */ 4522692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_FH_TX_BASE, sc->shared_dma.paddr); 4523692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_FH_MSG_CONFIG, 0xffff05a5); 4524692ad7caSAdrian Chadd 4525692ad7caSAdrian Chadd /* Enable all DMA channels. */ 4526692ad7caSAdrian Chadd for (chnl = 0; chnl < WPI_NDMACHNLS; chnl++) { 4527692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_FH_CBBC_CTRL(chnl), 0); 4528692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_FH_CBBC_BASE(chnl), 0); 4529692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_FH_TX_CONFIG(chnl), 0x80200008); 4530692ad7caSAdrian Chadd } 4531692ad7caSAdrian Chadd wpi_nic_unlock(sc); 4532692ad7caSAdrian Chadd (void)WPI_READ(sc, WPI_FH_TX_BASE); /* barrier */ 4533692ad7caSAdrian Chadd 4534692ad7caSAdrian Chadd /* Clear "radio off" and "commands blocked" bits. */ 4535692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_UCODE_GP1_CLR, WPI_UCODE_GP1_RFKILL); 4536692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_UCODE_GP1_CLR, WPI_UCODE_GP1_CMD_BLOCKED); 4537692ad7caSAdrian Chadd 4538692ad7caSAdrian Chadd /* Clear pending interrupts. */ 4539692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_INT, 0xffffffff); 4540692ad7caSAdrian Chadd /* Enable interrupts. */ 4541692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_INT_MASK, WPI_INT_MASK_DEF); 4542692ad7caSAdrian Chadd 4543692ad7caSAdrian Chadd /* _Really_ make sure "radio off" bit is cleared! */ 4544692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_UCODE_GP1_CLR, WPI_UCODE_GP1_RFKILL); 4545692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_UCODE_GP1_CLR, WPI_UCODE_GP1_RFKILL); 4546692ad7caSAdrian Chadd 4547692ad7caSAdrian Chadd if ((error = wpi_load_firmware(sc)) != 0) { 4548692ad7caSAdrian Chadd device_printf(sc->sc_dev, 4549692ad7caSAdrian Chadd "%s: could not load firmware, error %d\n", __func__, 4550692ad7caSAdrian Chadd error); 4551692ad7caSAdrian Chadd return error; 4552692ad7caSAdrian Chadd } 4553692ad7caSAdrian Chadd /* Wait at most one second for firmware alive notification. */ 4554692ad7caSAdrian Chadd if ((error = msleep(sc, &sc->sc_mtx, PCATCH, "wpiinit", hz)) != 0) { 4555692ad7caSAdrian Chadd device_printf(sc->sc_dev, 4556692ad7caSAdrian Chadd "%s: timeout waiting for adapter to initialize, error %d\n", 4557692ad7caSAdrian Chadd __func__, error); 4558692ad7caSAdrian Chadd return error; 45596607310bSBenjamin Close } 45606607310bSBenjamin Close 4561692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 4562692ad7caSAdrian Chadd 4563692ad7caSAdrian Chadd /* Do post-firmware initialization. */ 4564692ad7caSAdrian Chadd return wpi_post_alive(sc); 4565692ad7caSAdrian Chadd } 4566692ad7caSAdrian Chadd 4567692ad7caSAdrian Chadd static void 4568692ad7caSAdrian Chadd wpi_hw_stop(struct wpi_softc *sc) 45696607310bSBenjamin Close { 4570692ad7caSAdrian Chadd int chnl, qid, ntries; 45716607310bSBenjamin Close 4572692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 45736607310bSBenjamin Close 4574692ad7caSAdrian Chadd if (WPI_READ(sc, WPI_UCODE_GP1) & WPI_UCODE_GP1_MAC_SLEEP) 4575692ad7caSAdrian Chadd wpi_nic_lock(sc); 45766607310bSBenjamin Close 4577692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_RESET, WPI_RESET_NEVO); 45786607310bSBenjamin Close 4579692ad7caSAdrian Chadd /* Disable interrupts. */ 4580692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_INT_MASK, 0); 4581692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_INT, 0xffffffff); 4582692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_FH_INT, 0xffffffff); 45836607310bSBenjamin Close 4584692ad7caSAdrian Chadd /* Make sure we no longer hold the NIC lock. */ 4585692ad7caSAdrian Chadd wpi_nic_unlock(sc); 45866607310bSBenjamin Close 4587692ad7caSAdrian Chadd if (wpi_nic_lock(sc) == 0) { 4588692ad7caSAdrian Chadd /* Stop TX scheduler. */ 4589692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_ALM_SCHED_MODE, 0); 4590692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_ALM_SCHED_TXFACT, 0); 4591692ad7caSAdrian Chadd 4592692ad7caSAdrian Chadd /* Stop all DMA channels. */ 4593692ad7caSAdrian Chadd for (chnl = 0; chnl < WPI_NDMACHNLS; chnl++) { 4594692ad7caSAdrian Chadd WPI_WRITE(sc, WPI_FH_TX_CONFIG(chnl), 0); 4595692ad7caSAdrian Chadd for (ntries = 0; ntries < 200; ntries++) { 4596692ad7caSAdrian Chadd if (WPI_READ(sc, WPI_FH_TX_STATUS) & 4597692ad7caSAdrian Chadd WPI_FH_TX_STATUS_IDLE(chnl)) 45986607310bSBenjamin Close break; 45996607310bSBenjamin Close DELAY(10); 46006607310bSBenjamin Close } 4601692ad7caSAdrian Chadd } 4602692ad7caSAdrian Chadd wpi_nic_unlock(sc); 46036607310bSBenjamin Close } 46046607310bSBenjamin Close 4605692ad7caSAdrian Chadd /* Stop RX ring. */ 4606692ad7caSAdrian Chadd wpi_reset_rx_ring(sc); 46076607310bSBenjamin Close 4608692ad7caSAdrian Chadd /* Reset all TX rings. */ 4609692ad7caSAdrian Chadd for (qid = 0; qid < WPI_NTXQUEUES; qid++) 4610692ad7caSAdrian Chadd wpi_reset_tx_ring(sc, &sc->txq[qid]); 4611692ad7caSAdrian Chadd 4612692ad7caSAdrian Chadd if (wpi_nic_lock(sc) == 0) { 4613692ad7caSAdrian Chadd wpi_prph_write(sc, WPI_APMG_CLK_DIS, 4614692ad7caSAdrian Chadd WPI_APMG_CLK_CTRL_DMA_CLK_RQT); 4615692ad7caSAdrian Chadd wpi_nic_unlock(sc); 46166607310bSBenjamin Close } 4617692ad7caSAdrian Chadd DELAY(5); 4618692ad7caSAdrian Chadd /* Power OFF adapter. */ 4619692ad7caSAdrian Chadd wpi_apm_stop(sc); 46206607310bSBenjamin Close } 46216607310bSBenjamin Close 46226607310bSBenjamin Close static void 4623692ad7caSAdrian Chadd wpi_radio_on(void *arg0, int pending) 46246607310bSBenjamin Close { 4625692ad7caSAdrian Chadd struct wpi_softc *sc = arg0; 462682f1b132SAndrew Thompson struct ifnet *ifp = sc->sc_ifp; 4627b032f27cSSam Leffler struct ieee80211com *ic = ifp->if_l2com; 4628b032f27cSSam Leffler struct ieee80211vap *vap = TAILQ_FIRST(&ic->ic_vaps); 462982f1b132SAndrew Thompson 4630692ad7caSAdrian Chadd device_printf(sc->sc_dev, "RF switch: radio enabled\n"); 463182f1b132SAndrew Thompson 4632b032f27cSSam Leffler if (vap != NULL) { 4633692ad7caSAdrian Chadd wpi_init(sc); 4634692ad7caSAdrian Chadd ieee80211_init(vap); 463582f1b132SAndrew Thompson } 463682f1b132SAndrew Thompson 4637692ad7caSAdrian Chadd if (WPI_READ(sc, WPI_GP_CNTRL) & WPI_GP_CNTRL_RFKILL) { 4638692ad7caSAdrian Chadd WPI_LOCK(sc); 4639692ad7caSAdrian Chadd callout_stop(&sc->watchdog_rfkill); 4640692ad7caSAdrian Chadd WPI_UNLOCK(sc); 4641692ad7caSAdrian Chadd } 464282f1b132SAndrew Thompson } 464382f1b132SAndrew Thompson 464482f1b132SAndrew Thompson static void 4645692ad7caSAdrian Chadd wpi_radio_off(void *arg0, int pending) 4646692ad7caSAdrian Chadd { 4647692ad7caSAdrian Chadd struct wpi_softc *sc = arg0; 4648692ad7caSAdrian Chadd struct ifnet *ifp = sc->sc_ifp; 4649692ad7caSAdrian Chadd struct ieee80211com *ic = ifp->if_l2com; 4650692ad7caSAdrian Chadd struct ieee80211vap *vap = TAILQ_FIRST(&ic->ic_vaps); 4651692ad7caSAdrian Chadd 4652692ad7caSAdrian Chadd device_printf(sc->sc_dev, "RF switch: radio disabled\n"); 4653692ad7caSAdrian Chadd 4654692ad7caSAdrian Chadd wpi_stop(sc); 4655692ad7caSAdrian Chadd if (vap != NULL) 4656692ad7caSAdrian Chadd ieee80211_stop(vap); 4657692ad7caSAdrian Chadd 4658692ad7caSAdrian Chadd callout_reset(&sc->watchdog_rfkill, hz, wpi_watchdog_rfkill, sc); 4659692ad7caSAdrian Chadd } 4660692ad7caSAdrian Chadd 4661692ad7caSAdrian Chadd static void 4662692ad7caSAdrian Chadd wpi_init_locked(struct wpi_softc *sc) 466382f1b132SAndrew Thompson { 4664b032f27cSSam Leffler struct ifnet *ifp = sc->sc_ifp; 4665692ad7caSAdrian Chadd int error; 46666607310bSBenjamin Close 4667692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_BEGIN, __func__); 46686607310bSBenjamin Close 4669692ad7caSAdrian Chadd WPI_LOCK_ASSERT(sc); 46706607310bSBenjamin Close 4671692ad7caSAdrian Chadd /* Check that the radio is not disabled by hardware switch. */ 4672692ad7caSAdrian Chadd if (!(WPI_READ(sc, WPI_GP_CNTRL) & WPI_GP_CNTRL_RFKILL)) { 46736607310bSBenjamin Close device_printf(sc->sc_dev, 4674692ad7caSAdrian Chadd "RF switch: radio disabled (%s)\n", __func__); 4675692ad7caSAdrian Chadd callout_reset(&sc->watchdog_rfkill, hz, wpi_watchdog_rfkill, 4676692ad7caSAdrian Chadd sc); 46776607310bSBenjamin Close return; 46786607310bSBenjamin Close } 46796607310bSBenjamin Close 4680692ad7caSAdrian Chadd /* Read firmware images from the filesystem. */ 4681692ad7caSAdrian Chadd if ((error = wpi_read_firmware(sc)) != 0) { 46826607310bSBenjamin Close device_printf(sc->sc_dev, 4683692ad7caSAdrian Chadd "%s: could not read firmware, error %d\n", __func__, 4684692ad7caSAdrian Chadd error); 4685692ad7caSAdrian Chadd goto fail; 46866607310bSBenjamin Close } 46876607310bSBenjamin Close 4688692ad7caSAdrian Chadd /* Initialize hardware and upload firmware. */ 4689692ad7caSAdrian Chadd error = wpi_hw_init(sc); 4690692ad7caSAdrian Chadd wpi_unload_firmware(sc); 4691692ad7caSAdrian Chadd if (error != 0) { 4692692ad7caSAdrian Chadd device_printf(sc->sc_dev, 4693692ad7caSAdrian Chadd "%s: could not initialize hardware, error %d\n", __func__, 4694692ad7caSAdrian Chadd error); 4695692ad7caSAdrian Chadd goto fail; 4696692ad7caSAdrian Chadd } 4697692ad7caSAdrian Chadd 4698692ad7caSAdrian Chadd /* Configure adapter now that it is ready. */ 4699692ad7caSAdrian Chadd if ((error = wpi_config(sc)) != 0) { 4700692ad7caSAdrian Chadd device_printf(sc->sc_dev, 4701692ad7caSAdrian Chadd "%s: could not configure device, error %d\n", __func__, 4702692ad7caSAdrian Chadd error); 4703692ad7caSAdrian Chadd goto fail; 470482f1b132SAndrew Thompson } 470582f1b132SAndrew Thompson 47066607310bSBenjamin Close ifp->if_drv_flags &= ~IFF_DRV_OACTIVE; 47076607310bSBenjamin Close ifp->if_drv_flags |= IFF_DRV_RUNNING; 4708692ad7caSAdrian Chadd 470982f1b132SAndrew Thompson callout_reset(&sc->watchdog_to, hz, wpi_watchdog, sc); 4710692ad7caSAdrian Chadd 4711692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END, __func__); 4712692ad7caSAdrian Chadd 4713692ad7caSAdrian Chadd return; 4714692ad7caSAdrian Chadd 4715692ad7caSAdrian Chadd fail: wpi_stop_locked(sc); 4716692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_END_ERR, __func__); 47176607310bSBenjamin Close } 47186607310bSBenjamin Close 47196607310bSBenjamin Close static void 4720b032f27cSSam Leffler wpi_init(void *arg) 47216607310bSBenjamin Close { 4722b032f27cSSam Leffler struct wpi_softc *sc = arg; 4723b032f27cSSam Leffler struct ifnet *ifp = sc->sc_ifp; 4724b032f27cSSam Leffler struct ieee80211com *ic = ifp->if_l2com; 47256607310bSBenjamin Close 47266607310bSBenjamin Close WPI_LOCK(sc); 4727692ad7caSAdrian Chadd wpi_init_locked(sc); 47286607310bSBenjamin Close WPI_UNLOCK(sc); 47296607310bSBenjamin Close 4730b032f27cSSam Leffler if (ifp->if_drv_flags & IFF_DRV_RUNNING) 4731692ad7caSAdrian Chadd ieee80211_start_all(ic); 47326607310bSBenjamin Close } 4733b032f27cSSam Leffler 47346607310bSBenjamin Close static void 47356607310bSBenjamin Close wpi_stop_locked(struct wpi_softc *sc) 47366607310bSBenjamin Close { 4737b032f27cSSam Leffler struct ifnet *ifp = sc->sc_ifp; 47386607310bSBenjamin Close 4739692ad7caSAdrian Chadd WPI_LOCK_ASSERT(sc); 4740692ad7caSAdrian Chadd 474182f1b132SAndrew Thompson sc->sc_scan_timer = 0; 4742692ad7caSAdrian Chadd sc->sc_tx_timer = 0; 474382f1b132SAndrew Thompson callout_stop(&sc->watchdog_to); 474482f1b132SAndrew Thompson callout_stop(&sc->calib_to); 4745692ad7caSAdrian Chadd ifp->if_drv_flags &= ~(IFF_DRV_RUNNING | IFF_DRV_OACTIVE); 474682f1b132SAndrew Thompson 4747692ad7caSAdrian Chadd /* Power OFF hardware. */ 4748692ad7caSAdrian Chadd wpi_hw_stop(sc); 47496607310bSBenjamin Close } 47506607310bSBenjamin Close 47516607310bSBenjamin Close static void 4752b032f27cSSam Leffler wpi_stop(struct wpi_softc *sc) 47536607310bSBenjamin Close { 4754b032f27cSSam Leffler WPI_LOCK(sc); 4755b032f27cSSam Leffler wpi_stop_locked(sc); 4756b032f27cSSam Leffler WPI_UNLOCK(sc); 47576607310bSBenjamin Close } 47586607310bSBenjamin Close 47596607310bSBenjamin Close /* 4760692ad7caSAdrian Chadd * Callback from net80211 to start a scan. 47616607310bSBenjamin Close */ 47626607310bSBenjamin Close static void 47636607310bSBenjamin Close wpi_scan_start(struct ieee80211com *ic) 47646607310bSBenjamin Close { 47656607310bSBenjamin Close struct ifnet *ifp = ic->ic_ifp; 47666607310bSBenjamin Close struct wpi_softc *sc = ifp->if_softc; 47676607310bSBenjamin Close 47685efea30fSAndrew Thompson WPI_LOCK(sc); 47695efea30fSAndrew Thompson wpi_set_led(sc, WPI_LED_LINK, 20, 2); 47705efea30fSAndrew Thompson WPI_UNLOCK(sc); 47716607310bSBenjamin Close } 47726607310bSBenjamin Close 4773692ad7caSAdrian Chadd /* 4774692ad7caSAdrian Chadd * Callback from net80211 to terminate a scan. 47756607310bSBenjamin Close */ 47766607310bSBenjamin Close static void 47776607310bSBenjamin Close wpi_scan_end(struct ieee80211com *ic) 47786607310bSBenjamin Close { 4779692ad7caSAdrian Chadd struct ifnet *ifp = ic->ic_ifp; 4780692ad7caSAdrian Chadd struct wpi_softc *sc = ifp->if_softc; 4781692ad7caSAdrian Chadd struct ieee80211vap *vap = TAILQ_FIRST(&ic->ic_vaps); 4782692ad7caSAdrian Chadd 4783692ad7caSAdrian Chadd if (vap->iv_state == IEEE80211_S_RUN) { 4784692ad7caSAdrian Chadd WPI_LOCK(sc); 4785692ad7caSAdrian Chadd wpi_set_led(sc, WPI_LED_LINK, 0, 1); 4786692ad7caSAdrian Chadd WPI_UNLOCK(sc); 4787692ad7caSAdrian Chadd } 47886607310bSBenjamin Close } 47896607310bSBenjamin Close 47906607310bSBenjamin Close /** 47916607310bSBenjamin Close * Called by the net80211 framework to indicate to the driver 47926607310bSBenjamin Close * that the channel should be changed 47936607310bSBenjamin Close */ 47946607310bSBenjamin Close static void 47956607310bSBenjamin Close wpi_set_channel(struct ieee80211com *ic) 47966607310bSBenjamin Close { 4797692ad7caSAdrian Chadd const struct ieee80211_channel *c = ic->ic_curchan; 47986607310bSBenjamin Close struct ifnet *ifp = ic->ic_ifp; 47996607310bSBenjamin Close struct wpi_softc *sc = ifp->if_softc; 48005efea30fSAndrew Thompson int error; 48016607310bSBenjamin Close 4802692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 4803692ad7caSAdrian Chadd 4804692ad7caSAdrian Chadd WPI_LOCK(sc); 4805692ad7caSAdrian Chadd sc->sc_rxtap.wr_chan_freq = htole16(c->ic_freq); 4806692ad7caSAdrian Chadd sc->sc_rxtap.wr_chan_flags = htole16(c->ic_flags); 4807692ad7caSAdrian Chadd sc->sc_txtap.wt_chan_freq = htole16(c->ic_freq); 4808692ad7caSAdrian Chadd sc->sc_txtap.wt_chan_flags = htole16(c->ic_flags); 4809692ad7caSAdrian Chadd 481082f1b132SAndrew Thompson /* 481182f1b132SAndrew Thompson * Only need to set the channel in Monitor mode. AP scanning and auth 481282f1b132SAndrew Thompson * are already taken care of by their respective firmware commands. 481382f1b132SAndrew Thompson */ 48145efea30fSAndrew Thompson if (ic->ic_opmode == IEEE80211_M_MONITOR) { 4815692ad7caSAdrian Chadd sc->rxon.chan = ieee80211_chan2ieee(ic, c); 4816692ad7caSAdrian Chadd if (IEEE80211_IS_CHAN_2GHZ(c)) { 4817692ad7caSAdrian Chadd sc->rxon.flags |= htole32(WPI_RXON_AUTO | 4818692ad7caSAdrian Chadd WPI_RXON_24GHZ); 4819692ad7caSAdrian Chadd } else { 4820692ad7caSAdrian Chadd sc->rxon.flags &= ~htole32(WPI_RXON_AUTO | 4821692ad7caSAdrian Chadd WPI_RXON_24GHZ); 48225efea30fSAndrew Thompson } 4823692ad7caSAdrian Chadd if ((error = wpi_send_rxon(sc, 0, 0)) != 0) 4824692ad7caSAdrian Chadd device_printf(sc->sc_dev, 4825692ad7caSAdrian Chadd "%s: error %d settting channel\n", __func__, 4826692ad7caSAdrian Chadd error); 4827692ad7caSAdrian Chadd } 4828692ad7caSAdrian Chadd WPI_UNLOCK(sc); 48296607310bSBenjamin Close } 48306607310bSBenjamin Close 48316607310bSBenjamin Close /** 48326607310bSBenjamin Close * Called by net80211 to indicate that we need to scan the current 48336607310bSBenjamin Close * channel. The channel is previously be set via the wpi_set_channel 48346607310bSBenjamin Close * callback. 48356607310bSBenjamin Close */ 48366607310bSBenjamin Close static void 4837b032f27cSSam Leffler wpi_scan_curchan(struct ieee80211_scan_state *ss, unsigned long maxdwell) 48386607310bSBenjamin Close { 4839b032f27cSSam Leffler struct ieee80211vap *vap = ss->ss_vap; 4840692ad7caSAdrian Chadd struct ieee80211com *ic = vap->iv_ic; 4841692ad7caSAdrian Chadd struct ifnet *ifp = ic->ic_ifp; 48426607310bSBenjamin Close struct wpi_softc *sc = ifp->if_softc; 4843692ad7caSAdrian Chadd int error; 48446607310bSBenjamin Close 4845692ad7caSAdrian Chadd if (sc->rxon.chan != ieee80211_chan2ieee(ic, ic->ic_curchan)) { 48465efea30fSAndrew Thompson WPI_LOCK(sc); 4847692ad7caSAdrian Chadd error = wpi_scan(sc, ic->ic_curchan); 48485efea30fSAndrew Thompson WPI_UNLOCK(sc); 4849692ad7caSAdrian Chadd if (error != 0) 4850692ad7caSAdrian Chadd ieee80211_cancel_scan(vap); 4851692ad7caSAdrian Chadd } else { 4852692ad7caSAdrian Chadd /* Send probe request when associated. */ 4853692ad7caSAdrian Chadd sc->sc_scan_curchan(ss, maxdwell); 4854692ad7caSAdrian Chadd } 48556607310bSBenjamin Close } 48566607310bSBenjamin Close 48576607310bSBenjamin Close /** 48586607310bSBenjamin Close * Called by the net80211 framework to indicate 48596607310bSBenjamin Close * the minimum dwell time has been met, terminate the scan. 48606607310bSBenjamin Close * We don't actually terminate the scan as the firmware will notify 48616607310bSBenjamin Close * us when it's finished and we have no way to interrupt it. 48626607310bSBenjamin Close */ 48636607310bSBenjamin Close static void 4864b032f27cSSam Leffler wpi_scan_mindwell(struct ieee80211_scan_state *ss) 48656607310bSBenjamin Close { 48666607310bSBenjamin Close /* NB: don't try to abort scan; wait for firmware to finish */ 48676607310bSBenjamin Close } 48686607310bSBenjamin Close 48696607310bSBenjamin Close static void 4870692ad7caSAdrian Chadd wpi_hw_reset(void *arg, int pending) 48716607310bSBenjamin Close { 48726607310bSBenjamin Close struct wpi_softc *sc = arg; 487382f1b132SAndrew Thompson struct ifnet *ifp = sc->sc_ifp; 48745efea30fSAndrew Thompson struct ieee80211com *ic = ifp->if_l2com; 4875b032f27cSSam Leffler struct ieee80211vap *vap = TAILQ_FIRST(&ic->ic_vaps); 487682f1b132SAndrew Thompson 4877692ad7caSAdrian Chadd DPRINTF(sc, WPI_DEBUG_TRACE, TRACE_STR_DOING, __func__); 48786607310bSBenjamin Close 4879692ad7caSAdrian Chadd wpi_stop(sc); 4880692ad7caSAdrian Chadd if (vap != NULL) 4881692ad7caSAdrian Chadd ieee80211_stop(vap); 4882692ad7caSAdrian Chadd wpi_init(sc); 4883692ad7caSAdrian Chadd if (vap != NULL) 4884692ad7caSAdrian Chadd ieee80211_init(vap); 48856607310bSBenjamin Close } 4886