xref: /freebsd/sys/dev/usb/wlan/if_zyd.c (revision 760bc48e7ee4471fe04fa5fee89d00bf7d698ddb)
102ac6454SAndrew Thompson /*	$OpenBSD: if_zyd.c,v 1.52 2007/02/11 00:08:04 jsg Exp $	*/
202ac6454SAndrew Thompson /*	$NetBSD: if_zyd.c,v 1.7 2007/06/21 04:04:29 kiyohara Exp $	*/
302ac6454SAndrew Thompson /*	$FreeBSD$	*/
402ac6454SAndrew Thompson 
502ac6454SAndrew Thompson /*-
602ac6454SAndrew Thompson  * Copyright (c) 2006 by Damien Bergamini <damien.bergamini@free.fr>
702ac6454SAndrew Thompson  * Copyright (c) 2006 by Florian Stoehr <ich@florian-stoehr.de>
802ac6454SAndrew Thompson  *
902ac6454SAndrew Thompson  * Permission to use, copy, modify, and distribute this software for any
1002ac6454SAndrew Thompson  * purpose with or without fee is hereby granted, provided that the above
1102ac6454SAndrew Thompson  * copyright notice and this permission notice appear in all copies.
1202ac6454SAndrew Thompson  *
1302ac6454SAndrew Thompson  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
1402ac6454SAndrew Thompson  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
1502ac6454SAndrew Thompson  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
1602ac6454SAndrew Thompson  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
1702ac6454SAndrew Thompson  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
1802ac6454SAndrew Thompson  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
1902ac6454SAndrew Thompson  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
2002ac6454SAndrew Thompson  */
2102ac6454SAndrew Thompson 
2202ac6454SAndrew Thompson #include <sys/cdefs.h>
2302ac6454SAndrew Thompson __FBSDID("$FreeBSD$");
2402ac6454SAndrew Thompson 
2502ac6454SAndrew Thompson /*
2602ac6454SAndrew Thompson  * ZyDAS ZD1211/ZD1211B USB WLAN driver.
2702ac6454SAndrew Thompson  */
2802ac6454SAndrew Thompson 
295efea30fSAndrew Thompson #include <sys/param.h>
305efea30fSAndrew Thompson #include <sys/sockio.h>
315efea30fSAndrew Thompson #include <sys/sysctl.h>
325efea30fSAndrew Thompson #include <sys/lock.h>
335efea30fSAndrew Thompson #include <sys/mutex.h>
345efea30fSAndrew Thompson #include <sys/mbuf.h>
355efea30fSAndrew Thompson #include <sys/kernel.h>
365efea30fSAndrew Thompson #include <sys/socket.h>
375efea30fSAndrew Thompson #include <sys/systm.h>
385efea30fSAndrew Thompson #include <sys/malloc.h>
395efea30fSAndrew Thompson #include <sys/module.h>
405efea30fSAndrew Thompson #include <sys/bus.h>
415efea30fSAndrew Thompson #include <sys/endian.h>
425efea30fSAndrew Thompson #include <sys/kdb.h>
4302ac6454SAndrew Thompson 
445efea30fSAndrew Thompson #include <machine/bus.h>
455efea30fSAndrew Thompson #include <machine/resource.h>
465efea30fSAndrew Thompson #include <sys/rman.h>
475efea30fSAndrew Thompson 
485efea30fSAndrew Thompson #include <net/bpf.h>
495efea30fSAndrew Thompson #include <net/if.h>
505efea30fSAndrew Thompson #include <net/if_arp.h>
515efea30fSAndrew Thompson #include <net/ethernet.h>
525efea30fSAndrew Thompson #include <net/if_dl.h>
535efea30fSAndrew Thompson #include <net/if_media.h>
545efea30fSAndrew Thompson #include <net/if_types.h>
555efea30fSAndrew Thompson 
565efea30fSAndrew Thompson #ifdef INET
575efea30fSAndrew Thompson #include <netinet/in.h>
585efea30fSAndrew Thompson #include <netinet/in_systm.h>
595efea30fSAndrew Thompson #include <netinet/in_var.h>
605efea30fSAndrew Thompson #include <netinet/if_ether.h>
615efea30fSAndrew Thompson #include <netinet/ip.h>
625efea30fSAndrew Thompson #endif
635efea30fSAndrew Thompson 
645efea30fSAndrew Thompson #include <net80211/ieee80211_var.h>
655efea30fSAndrew Thompson #include <net80211/ieee80211_regdomain.h>
665efea30fSAndrew Thompson #include <net80211/ieee80211_radiotap.h>
675efea30fSAndrew Thompson #include <net80211/ieee80211_amrr.h>
685efea30fSAndrew Thompson 
695efea30fSAndrew Thompson #include <dev/usb/usb.h>
705efea30fSAndrew Thompson #include <dev/usb/usb_error.h>
7102ac6454SAndrew Thompson #include <dev/usb/usb_core.h>
7202ac6454SAndrew Thompson #include <dev/usb/usb_lookup.h>
7302ac6454SAndrew Thompson #include <dev/usb/usb_debug.h>
7402ac6454SAndrew Thompson #include <dev/usb/usb_request.h>
7502ac6454SAndrew Thompson #include <dev/usb/usb_busdma.h>
7602ac6454SAndrew Thompson #include <dev/usb/usb_util.h>
775efea30fSAndrew Thompson #include "usbdevs.h"
7802ac6454SAndrew Thompson 
7902ac6454SAndrew Thompson #include <dev/usb/wlan/if_zydreg.h>
8002ac6454SAndrew Thompson #include <dev/usb/wlan/if_zydfw.h>
8102ac6454SAndrew Thompson 
8202ac6454SAndrew Thompson #if USB_DEBUG
8302ac6454SAndrew Thompson static int zyd_debug = 0;
8402ac6454SAndrew Thompson 
859360ae40SAndrew Thompson SYSCTL_NODE(_hw_usb, OID_AUTO, zyd, CTLFLAG_RW, 0, "USB zyd");
869360ae40SAndrew Thompson SYSCTL_INT(_hw_usb_zyd, OID_AUTO, debug, CTLFLAG_RW, &zyd_debug, 0,
8702ac6454SAndrew Thompson     "zyd debug level");
8802ac6454SAndrew Thompson 
8902ac6454SAndrew Thompson enum {
9002ac6454SAndrew Thompson 	ZYD_DEBUG_XMIT		= 0x00000001,	/* basic xmit operation */
9102ac6454SAndrew Thompson 	ZYD_DEBUG_RECV		= 0x00000002,	/* basic recv operation */
9202ac6454SAndrew Thompson 	ZYD_DEBUG_RESET		= 0x00000004,	/* reset processing */
9302ac6454SAndrew Thompson 	ZYD_DEBUG_INIT		= 0x00000008,	/* device init */
9402ac6454SAndrew Thompson 	ZYD_DEBUG_TX_PROC	= 0x00000010,	/* tx ISR proc */
9502ac6454SAndrew Thompson 	ZYD_DEBUG_RX_PROC	= 0x00000020,	/* rx ISR proc */
9602ac6454SAndrew Thompson 	ZYD_DEBUG_STATE		= 0x00000040,	/* 802.11 state transitions */
9702ac6454SAndrew Thompson 	ZYD_DEBUG_STAT		= 0x00000080,	/* statistic */
9802ac6454SAndrew Thompson 	ZYD_DEBUG_FW		= 0x00000100,	/* firmware */
9902ac6454SAndrew Thompson 	ZYD_DEBUG_CMD		= 0x00000200,	/* fw commands */
10002ac6454SAndrew Thompson 	ZYD_DEBUG_ANY		= 0xffffffff
10102ac6454SAndrew Thompson };
10202ac6454SAndrew Thompson #define	DPRINTF(sc, m, fmt, ...) do {				\
10302ac6454SAndrew Thompson 	if (zyd_debug & (m))					\
10402ac6454SAndrew Thompson 		printf("%s: " fmt, __func__, ## __VA_ARGS__);	\
10502ac6454SAndrew Thompson } while (0)
10602ac6454SAndrew Thompson #else
10702ac6454SAndrew Thompson #define	DPRINTF(sc, m, fmt, ...) do {				\
10802ac6454SAndrew Thompson 	(void) sc;						\
10902ac6454SAndrew Thompson } while (0)
11002ac6454SAndrew Thompson #endif
11102ac6454SAndrew Thompson 
11202ac6454SAndrew Thompson #define	zyd_do_request(sc,req,data) \
1135efea30fSAndrew Thompson     usb2_do_request_flags((sc)->sc_udev, &(sc)->sc_mtx, req, data, 0, NULL, 5000)
11402ac6454SAndrew Thompson 
11502ac6454SAndrew Thompson static device_probe_t zyd_match;
11602ac6454SAndrew Thompson static device_attach_t zyd_attach;
11702ac6454SAndrew Thompson static device_detach_t zyd_detach;
11802ac6454SAndrew Thompson 
11902ac6454SAndrew Thompson static usb2_callback_t zyd_intr_read_callback;
12002ac6454SAndrew Thompson static usb2_callback_t zyd_intr_write_callback;
12102ac6454SAndrew Thompson static usb2_callback_t zyd_bulk_read_callback;
12202ac6454SAndrew Thompson static usb2_callback_t zyd_bulk_write_callback;
12302ac6454SAndrew Thompson 
12402ac6454SAndrew Thompson static struct ieee80211vap *zyd_vap_create(struct ieee80211com *,
12502ac6454SAndrew Thompson 		    const char name[IFNAMSIZ], int unit, int opmode,
12602ac6454SAndrew Thompson 		    int flags, const uint8_t bssid[IEEE80211_ADDR_LEN],
12702ac6454SAndrew Thompson 		    const uint8_t mac[IEEE80211_ADDR_LEN]);
12802ac6454SAndrew Thompson static void	zyd_vap_delete(struct ieee80211vap *);
12902ac6454SAndrew Thompson static void	zyd_tx_free(struct zyd_tx_data *, int);
13002ac6454SAndrew Thompson static void	zyd_setup_tx_list(struct zyd_softc *);
13102ac6454SAndrew Thompson static void	zyd_unsetup_tx_list(struct zyd_softc *);
13202ac6454SAndrew Thompson static struct ieee80211_node *zyd_node_alloc(struct ieee80211vap *,
13302ac6454SAndrew Thompson 			    const uint8_t mac[IEEE80211_ADDR_LEN]);
13402ac6454SAndrew Thompson static int	zyd_newstate(struct ieee80211vap *, enum ieee80211_state, int);
13502ac6454SAndrew Thompson static int	zyd_cmd(struct zyd_softc *, uint16_t, const void *, int,
13602ac6454SAndrew Thompson 		    void *, int, int);
13702ac6454SAndrew Thompson static int	zyd_read16(struct zyd_softc *, uint16_t, uint16_t *);
13802ac6454SAndrew Thompson static int	zyd_read32(struct zyd_softc *, uint16_t, uint32_t *);
13902ac6454SAndrew Thompson static int	zyd_write16(struct zyd_softc *, uint16_t, uint16_t);
14002ac6454SAndrew Thompson static int	zyd_write32(struct zyd_softc *, uint16_t, uint32_t);
14102ac6454SAndrew Thompson static int	zyd_rfwrite(struct zyd_softc *, uint32_t);
14202ac6454SAndrew Thompson static int	zyd_lock_phy(struct zyd_softc *);
14302ac6454SAndrew Thompson static int	zyd_unlock_phy(struct zyd_softc *);
14402ac6454SAndrew Thompson static int	zyd_rf_attach(struct zyd_softc *, uint8_t);
14502ac6454SAndrew Thompson static const char *zyd_rf_name(uint8_t);
14602ac6454SAndrew Thompson static int	zyd_hw_init(struct zyd_softc *);
14702ac6454SAndrew Thompson static int	zyd_read_pod(struct zyd_softc *);
14802ac6454SAndrew Thompson static int	zyd_read_eeprom(struct zyd_softc *);
14902ac6454SAndrew Thompson static int	zyd_get_macaddr(struct zyd_softc *);
15002ac6454SAndrew Thompson static int	zyd_set_macaddr(struct zyd_softc *, const uint8_t *);
15102ac6454SAndrew Thompson static int	zyd_set_bssid(struct zyd_softc *, const uint8_t *);
15202ac6454SAndrew Thompson static int	zyd_switch_radio(struct zyd_softc *, int);
15302ac6454SAndrew Thompson static int	zyd_set_led(struct zyd_softc *, int, int);
15402ac6454SAndrew Thompson static void	zyd_set_multi(struct zyd_softc *);
15502ac6454SAndrew Thompson static void	zyd_update_mcast(struct ifnet *);
15602ac6454SAndrew Thompson static int	zyd_set_rxfilter(struct zyd_softc *);
15702ac6454SAndrew Thompson static void	zyd_set_chan(struct zyd_softc *, struct ieee80211_channel *);
15802ac6454SAndrew Thompson static int	zyd_set_beacon_interval(struct zyd_softc *, int);
159760bc48eSAndrew Thompson static void	zyd_rx_data(struct usb_xfer *, int, uint16_t);
16002ac6454SAndrew Thompson static int	zyd_tx_mgt(struct zyd_softc *, struct mbuf *,
16102ac6454SAndrew Thompson 		    struct ieee80211_node *);
16202ac6454SAndrew Thompson static int	zyd_tx_data(struct zyd_softc *, struct mbuf *,
16302ac6454SAndrew Thompson 		    struct ieee80211_node *);
16402ac6454SAndrew Thompson static void	zyd_start(struct ifnet *);
16502ac6454SAndrew Thompson static int	zyd_raw_xmit(struct ieee80211_node *, struct mbuf *,
16602ac6454SAndrew Thompson 		    const struct ieee80211_bpf_params *);
16702ac6454SAndrew Thompson static int	zyd_ioctl(struct ifnet *, u_long, caddr_t);
1685efea30fSAndrew Thompson static void	zyd_init_locked(struct zyd_softc *);
16902ac6454SAndrew Thompson static void	zyd_init(void *);
1705efea30fSAndrew Thompson static void	zyd_stop(struct zyd_softc *);
17102ac6454SAndrew Thompson static int	zyd_loadfirmware(struct zyd_softc *);
17202ac6454SAndrew Thompson static void	zyd_newassoc(struct ieee80211_node *, int);
17302ac6454SAndrew Thompson static void	zyd_scan_start(struct ieee80211com *);
17402ac6454SAndrew Thompson static void	zyd_scan_end(struct ieee80211com *);
17502ac6454SAndrew Thompson static void	zyd_set_channel(struct ieee80211com *);
17602ac6454SAndrew Thompson static int	zyd_rfmd_init(struct zyd_rf *);
17702ac6454SAndrew Thompson static int	zyd_rfmd_switch_radio(struct zyd_rf *, int);
17802ac6454SAndrew Thompson static int	zyd_rfmd_set_channel(struct zyd_rf *, uint8_t);
17902ac6454SAndrew Thompson static int	zyd_al2230_init(struct zyd_rf *);
18002ac6454SAndrew Thompson static int	zyd_al2230_switch_radio(struct zyd_rf *, int);
18102ac6454SAndrew Thompson static int	zyd_al2230_set_channel(struct zyd_rf *, uint8_t);
18202ac6454SAndrew Thompson static int	zyd_al2230_set_channel_b(struct zyd_rf *, uint8_t);
18302ac6454SAndrew Thompson static int	zyd_al2230_init_b(struct zyd_rf *);
18402ac6454SAndrew Thompson static int	zyd_al7230B_init(struct zyd_rf *);
18502ac6454SAndrew Thompson static int	zyd_al7230B_switch_radio(struct zyd_rf *, int);
18602ac6454SAndrew Thompson static int	zyd_al7230B_set_channel(struct zyd_rf *, uint8_t);
18702ac6454SAndrew Thompson static int	zyd_al2210_init(struct zyd_rf *);
18802ac6454SAndrew Thompson static int	zyd_al2210_switch_radio(struct zyd_rf *, int);
18902ac6454SAndrew Thompson static int	zyd_al2210_set_channel(struct zyd_rf *, uint8_t);
19002ac6454SAndrew Thompson static int	zyd_gct_init(struct zyd_rf *);
19102ac6454SAndrew Thompson static int	zyd_gct_switch_radio(struct zyd_rf *, int);
19202ac6454SAndrew Thompson static int	zyd_gct_set_channel(struct zyd_rf *, uint8_t);
19302ac6454SAndrew Thompson static int	zyd_maxim_init(struct zyd_rf *);
19402ac6454SAndrew Thompson static int	zyd_maxim_switch_radio(struct zyd_rf *, int);
19502ac6454SAndrew Thompson static int	zyd_maxim_set_channel(struct zyd_rf *, uint8_t);
19602ac6454SAndrew Thompson static int	zyd_maxim2_init(struct zyd_rf *);
19702ac6454SAndrew Thompson static int	zyd_maxim2_switch_radio(struct zyd_rf *, int);
19802ac6454SAndrew Thompson static int	zyd_maxim2_set_channel(struct zyd_rf *, uint8_t);
19902ac6454SAndrew Thompson 
20002ac6454SAndrew Thompson static const struct zyd_phy_pair zyd_def_phy[] = ZYD_DEF_PHY;
20102ac6454SAndrew Thompson static const struct zyd_phy_pair zyd_def_phyB[] = ZYD_DEF_PHYB;
20202ac6454SAndrew Thompson 
20302ac6454SAndrew Thompson /* various supported device vendors/products */
20402ac6454SAndrew Thompson #define ZYD_ZD1211	0
20502ac6454SAndrew Thompson #define ZYD_ZD1211B	1
20602ac6454SAndrew Thompson 
207760bc48eSAndrew Thompson static const struct usb_device_id zyd_devs[] = {
20802ac6454SAndrew Thompson     /* ZYD_ZD1211 */
20902ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_3COM2, USB_PRODUCT_3COM2_3CRUSB10075, ZYD_ZD1211)},
21002ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_ABOCOM, USB_PRODUCT_ABOCOM_WL54, ZYD_ZD1211)},
21102ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_ASUS, USB_PRODUCT_ASUS_WL159G, ZYD_ZD1211)},
21202ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_CYBERTAN, USB_PRODUCT_CYBERTAN_TG54USB, ZYD_ZD1211)},
21302ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_DRAYTEK, USB_PRODUCT_DRAYTEK_VIGOR550, ZYD_ZD1211)},
21402ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_PLANEX2, USB_PRODUCT_PLANEX2_GWUS54GD, ZYD_ZD1211)},
21502ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_PLANEX2, USB_PRODUCT_PLANEX2_GWUS54GZL, ZYD_ZD1211)},
21602ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_PLANEX3, USB_PRODUCT_PLANEX3_GWUS54GZ, ZYD_ZD1211)},
21702ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_PLANEX3, USB_PRODUCT_PLANEX3_GWUS54MINI, ZYD_ZD1211)},
21802ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_SAGEM, USB_PRODUCT_SAGEM_XG760A, ZYD_ZD1211)},
21902ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_SENAO, USB_PRODUCT_SENAO_NUB8301, ZYD_ZD1211)},
22002ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_SITECOMEU, USB_PRODUCT_SITECOMEU_WL113, ZYD_ZD1211)},
22102ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_SWEEX, USB_PRODUCT_SWEEX_ZD1211, ZYD_ZD1211)},
22202ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_TEKRAM, USB_PRODUCT_TEKRAM_QUICKWLAN, ZYD_ZD1211)},
22302ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_TEKRAM, USB_PRODUCT_TEKRAM_ZD1211_1, ZYD_ZD1211)},
22402ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_TEKRAM, USB_PRODUCT_TEKRAM_ZD1211_2, ZYD_ZD1211)},
22502ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_TWINMOS, USB_PRODUCT_TWINMOS_G240, ZYD_ZD1211)},
22602ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_UMEDIA, USB_PRODUCT_UMEDIA_ALL0298V2, ZYD_ZD1211)},
22702ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_UMEDIA, USB_PRODUCT_UMEDIA_TEW429UB_A, ZYD_ZD1211)},
22802ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_UMEDIA, USB_PRODUCT_UMEDIA_TEW429UB, ZYD_ZD1211)},
22902ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_WISTRONNEWEB, USB_PRODUCT_WISTRONNEWEB_UR055G, ZYD_ZD1211)},
23002ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_ZCOM, USB_PRODUCT_ZCOM_ZD1211, ZYD_ZD1211)},
23102ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_ZYDAS, USB_PRODUCT_ZYDAS_ZD1211, ZYD_ZD1211)},
23202ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_ZYXEL, USB_PRODUCT_ZYXEL_AG225H, ZYD_ZD1211)},
23302ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_ZYXEL, USB_PRODUCT_ZYXEL_ZYAIRG220, ZYD_ZD1211)},
23402ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_ZYXEL, USB_PRODUCT_ZYXEL_G200V2, ZYD_ZD1211)},
23502ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_ZYXEL, USB_PRODUCT_ZYXEL_G202, ZYD_ZD1211)},
23602ac6454SAndrew Thompson     /* ZYD_ZD1211B */
23702ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_ACCTON, USB_PRODUCT_ACCTON_SMCWUSBG, ZYD_ZD1211B)},
23802ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_ACCTON, USB_PRODUCT_ACCTON_ZD1211B, ZYD_ZD1211B)},
23902ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_ASUS, USB_PRODUCT_ASUS_A9T_WIFI, ZYD_ZD1211B)},
24002ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_BELKIN, USB_PRODUCT_BELKIN_F5D7050_V4000, ZYD_ZD1211B)},
24102ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_BELKIN, USB_PRODUCT_BELKIN_ZD1211B, ZYD_ZD1211B)},
24202ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_CISCOLINKSYS, USB_PRODUCT_CISCOLINKSYS_WUSBF54G, ZYD_ZD1211B)},
24302ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_FIBERLINE, USB_PRODUCT_FIBERLINE_WL430U, ZYD_ZD1211B)},
24402ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_MELCO, USB_PRODUCT_MELCO_KG54L, ZYD_ZD1211B)},
24502ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_PHILIPS, USB_PRODUCT_PHILIPS_SNU5600, ZYD_ZD1211B)},
24602ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_PLANEX2, USB_PRODUCT_PLANEX2_GW_US54GXS, ZYD_ZD1211B)},
24702ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_SAGEM, USB_PRODUCT_SAGEM_XG76NA, ZYD_ZD1211B)},
24802ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_SITECOMEU, USB_PRODUCT_SITECOMEU_ZD1211B, ZYD_ZD1211B)},
24902ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_UMEDIA, USB_PRODUCT_UMEDIA_TEW429UBC1, ZYD_ZD1211B)},
25002ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_USR, USB_PRODUCT_USR_USR5423, ZYD_ZD1211B)},
25102ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_VTECH, USB_PRODUCT_VTECH_ZD1211B, ZYD_ZD1211B)},
25202ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_ZCOM, USB_PRODUCT_ZCOM_ZD1211B, ZYD_ZD1211B)},
25302ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_ZYDAS, USB_PRODUCT_ZYDAS_ZD1211B, ZYD_ZD1211B)},
25402ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_ZYXEL, USB_PRODUCT_ZYXEL_M202, ZYD_ZD1211B)},
25502ac6454SAndrew Thompson     {USB_VPI(USB_VENDOR_ZYXEL, USB_PRODUCT_ZYXEL_G220V2, ZYD_ZD1211B)},
25602ac6454SAndrew Thompson };
25702ac6454SAndrew Thompson 
258760bc48eSAndrew Thompson static const struct usb_config zyd_config[ZYD_N_TRANSFER] = {
25902ac6454SAndrew Thompson 	[ZYD_BULK_WR] = {
26002ac6454SAndrew Thompson 		.type = UE_BULK,
26102ac6454SAndrew Thompson 		.endpoint = UE_ADDR_ANY,
26202ac6454SAndrew Thompson 		.direction = UE_DIR_OUT,
2634eae601eSAndrew Thompson 		.bufsize = ZYD_MAX_TXBUFSZ,
2644eae601eSAndrew Thompson 		.flags = {.pipe_bof = 1,.force_short_xfer = 1,},
2654eae601eSAndrew Thompson 		.callback = zyd_bulk_write_callback,
26602ac6454SAndrew Thompson 		.ep_index = 0,
2674eae601eSAndrew Thompson 		.timeout = 10000,	/* 10 seconds */
26802ac6454SAndrew Thompson 	},
26902ac6454SAndrew Thompson 	[ZYD_BULK_RD] = {
27002ac6454SAndrew Thompson 		.type = UE_BULK,
27102ac6454SAndrew Thompson 		.endpoint = UE_ADDR_ANY,
27202ac6454SAndrew Thompson 		.direction = UE_DIR_IN,
2734eae601eSAndrew Thompson 		.bufsize = ZYX_MAX_RXBUFSZ,
2744eae601eSAndrew Thompson 		.flags = {.pipe_bof = 1,.short_xfer_ok = 1,},
2754eae601eSAndrew Thompson 		.callback = zyd_bulk_read_callback,
27602ac6454SAndrew Thompson 		.ep_index = 0,
27702ac6454SAndrew Thompson 	},
27802ac6454SAndrew Thompson 	[ZYD_INTR_WR] = {
27902ac6454SAndrew Thompson 		.type = UE_BULK_INTR,
28002ac6454SAndrew Thompson 		.endpoint = UE_ADDR_ANY,
28102ac6454SAndrew Thompson 		.direction = UE_DIR_OUT,
2824eae601eSAndrew Thompson 		.bufsize = sizeof(struct zyd_cmd),
2834eae601eSAndrew Thompson 		.flags = {.pipe_bof = 1,.force_short_xfer = 1,},
2844eae601eSAndrew Thompson 		.callback = zyd_intr_write_callback,
2854eae601eSAndrew Thompson 		.timeout = 1000,	/* 1 second */
28602ac6454SAndrew Thompson 		.ep_index = 1,
28702ac6454SAndrew Thompson 	},
28802ac6454SAndrew Thompson 	[ZYD_INTR_RD] = {
28902ac6454SAndrew Thompson 		.type = UE_INTERRUPT,
29002ac6454SAndrew Thompson 		.endpoint = UE_ADDR_ANY,
29102ac6454SAndrew Thompson 		.direction = UE_DIR_IN,
2924eae601eSAndrew Thompson 		.bufsize = sizeof(struct zyd_cmd),
2934eae601eSAndrew Thompson 		.flags = {.pipe_bof = 1,.short_xfer_ok = 1,},
2944eae601eSAndrew Thompson 		.callback = zyd_intr_read_callback,
29502ac6454SAndrew Thompson 	},
29602ac6454SAndrew Thompson };
29702ac6454SAndrew Thompson #define zyd_read16_m(sc, val, data)	do {				\
29802ac6454SAndrew Thompson 	error = zyd_read16(sc, val, data);				\
29902ac6454SAndrew Thompson 	if (error != 0)							\
30002ac6454SAndrew Thompson 		goto fail;						\
30102ac6454SAndrew Thompson } while (0)
30202ac6454SAndrew Thompson #define zyd_write16_m(sc, val, data)	do {				\
30302ac6454SAndrew Thompson 	error = zyd_write16(sc, val, data);				\
30402ac6454SAndrew Thompson 	if (error != 0)							\
30502ac6454SAndrew Thompson 		goto fail;						\
30602ac6454SAndrew Thompson } while (0)
30702ac6454SAndrew Thompson #define zyd_read32_m(sc, val, data)	do {				\
30802ac6454SAndrew Thompson 	error = zyd_read32(sc, val, data);				\
30902ac6454SAndrew Thompson 	if (error != 0)							\
31002ac6454SAndrew Thompson 		goto fail;						\
31102ac6454SAndrew Thompson } while (0)
31202ac6454SAndrew Thompson #define zyd_write32_m(sc, val, data)	do {				\
31302ac6454SAndrew Thompson 	error = zyd_write32(sc, val, data);				\
31402ac6454SAndrew Thompson 	if (error != 0)							\
31502ac6454SAndrew Thompson 		goto fail;						\
31602ac6454SAndrew Thompson } while (0)
31702ac6454SAndrew Thompson 
31802ac6454SAndrew Thompson static int
31902ac6454SAndrew Thompson zyd_match(device_t dev)
32002ac6454SAndrew Thompson {
321760bc48eSAndrew Thompson 	struct usb_attach_arg *uaa = device_get_ivars(dev);
32202ac6454SAndrew Thompson 
323f29a0724SAndrew Thompson 	if (uaa->usb_mode != USB_MODE_HOST)
32402ac6454SAndrew Thompson 		return (ENXIO);
32502ac6454SAndrew Thompson 	if (uaa->info.bConfigIndex != ZYD_CONFIG_INDEX)
32602ac6454SAndrew Thompson 		return (ENXIO);
32702ac6454SAndrew Thompson 	if (uaa->info.bIfaceIndex != ZYD_IFACE_INDEX)
32802ac6454SAndrew Thompson 		return (ENXIO);
32902ac6454SAndrew Thompson 
33002ac6454SAndrew Thompson 	return (usb2_lookup_id_by_uaa(zyd_devs, sizeof(zyd_devs), uaa));
33102ac6454SAndrew Thompson }
33202ac6454SAndrew Thompson 
33302ac6454SAndrew Thompson static int
33402ac6454SAndrew Thompson zyd_attach(device_t dev)
33502ac6454SAndrew Thompson {
336760bc48eSAndrew Thompson 	struct usb_attach_arg *uaa = device_get_ivars(dev);
33702ac6454SAndrew Thompson 	struct zyd_softc *sc = device_get_softc(dev);
3385efea30fSAndrew Thompson 	struct ifnet *ifp;
3395efea30fSAndrew Thompson 	struct ieee80211com *ic;
3405efea30fSAndrew Thompson 	uint8_t iface_index, bands;
34102ac6454SAndrew Thompson 	int error;
34202ac6454SAndrew Thompson 
34302ac6454SAndrew Thompson 	if (uaa->info.bcdDevice < 0x4330) {
34402ac6454SAndrew Thompson 		device_printf(dev, "device version mismatch: 0x%X "
34502ac6454SAndrew Thompson 		    "(only >= 43.30 supported)\n",
34602ac6454SAndrew Thompson 		    uaa->info.bcdDevice);
34702ac6454SAndrew Thompson 		return (EINVAL);
34802ac6454SAndrew Thompson 	}
34902ac6454SAndrew Thompson 
35002ac6454SAndrew Thompson 	device_set_usb2_desc(dev);
35102ac6454SAndrew Thompson 	sc->sc_dev = dev;
35202ac6454SAndrew Thompson 	sc->sc_udev = uaa->device;
35302ac6454SAndrew Thompson 	sc->sc_macrev = USB_GET_DRIVER_INFO(uaa);
35402ac6454SAndrew Thompson 
35502ac6454SAndrew Thompson 	mtx_init(&sc->sc_mtx, device_get_nameunit(sc->sc_dev),
35602ac6454SAndrew Thompson 	    MTX_NETWORK_LOCK, MTX_DEF);
35702ac6454SAndrew Thompson 	STAILQ_INIT(&sc->sc_rqh);
35802ac6454SAndrew Thompson 
35902ac6454SAndrew Thompson 	iface_index = ZYD_IFACE_INDEX;
36002ac6454SAndrew Thompson 	error = usb2_transfer_setup(uaa->device,
36102ac6454SAndrew Thompson 	    &iface_index, sc->sc_xfer, zyd_config,
36202ac6454SAndrew Thompson 	    ZYD_N_TRANSFER, sc, &sc->sc_mtx);
36302ac6454SAndrew Thompson 	if (error) {
36402ac6454SAndrew Thompson 		device_printf(dev, "could not allocate USB transfers, "
36502ac6454SAndrew Thompson 		    "err=%s\n", usb2_errstr(error));
36602ac6454SAndrew Thompson 		goto detach;
36702ac6454SAndrew Thompson 	}
36802ac6454SAndrew Thompson 
36902ac6454SAndrew Thompson 	ZYD_LOCK(sc);
37002ac6454SAndrew Thompson 	if ((error = zyd_get_macaddr(sc)) != 0) {
37102ac6454SAndrew Thompson 		device_printf(sc->sc_dev, "could not read EEPROM\n");
3725efea30fSAndrew Thompson 		ZYD_UNLOCK(sc);
3735efea30fSAndrew Thompson 		goto detach;
37402ac6454SAndrew Thompson 	}
37502ac6454SAndrew Thompson 	ZYD_UNLOCK(sc);
37602ac6454SAndrew Thompson 
37702ac6454SAndrew Thompson 	ifp = sc->sc_ifp = if_alloc(IFT_IEEE80211);
37802ac6454SAndrew Thompson 	if (ifp == NULL) {
37902ac6454SAndrew Thompson 		device_printf(sc->sc_dev, "can not if_alloc()\n");
3805efea30fSAndrew Thompson 		goto detach;
38102ac6454SAndrew Thompson 	}
38202ac6454SAndrew Thompson 	ifp->if_softc = sc;
38302ac6454SAndrew Thompson 	if_initname(ifp, "zyd", device_get_unit(sc->sc_dev));
38402ac6454SAndrew Thompson 	ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
38502ac6454SAndrew Thompson 	ifp->if_init = zyd_init;
38602ac6454SAndrew Thompson 	ifp->if_ioctl = zyd_ioctl;
38702ac6454SAndrew Thompson 	ifp->if_start = zyd_start;
38802ac6454SAndrew Thompson 	IFQ_SET_MAXLEN(&ifp->if_snd, IFQ_MAXLEN);
38902ac6454SAndrew Thompson 	IFQ_SET_READY(&ifp->if_snd);
39002ac6454SAndrew Thompson 
39102ac6454SAndrew Thompson 	ic = ifp->if_l2com;
39202ac6454SAndrew Thompson 	ic->ic_ifp = ifp;
39302ac6454SAndrew Thompson 	ic->ic_phytype = IEEE80211_T_OFDM;	/* not only, but not used */
39402ac6454SAndrew Thompson 	ic->ic_opmode = IEEE80211_M_STA;
39502ac6454SAndrew Thompson 
39602ac6454SAndrew Thompson 	/* set device capabilities */
39702ac6454SAndrew Thompson 	ic->ic_caps =
39802ac6454SAndrew Thompson 		  IEEE80211_C_STA		/* station mode */
39902ac6454SAndrew Thompson 		| IEEE80211_C_MONITOR		/* monitor mode */
40002ac6454SAndrew Thompson 		| IEEE80211_C_SHPREAMBLE	/* short preamble supported */
40102ac6454SAndrew Thompson 	        | IEEE80211_C_SHSLOT		/* short slot time supported */
40202ac6454SAndrew Thompson 		| IEEE80211_C_BGSCAN		/* capable of bg scanning */
40302ac6454SAndrew Thompson 	        | IEEE80211_C_WPA		/* 802.11i */
40402ac6454SAndrew Thompson 		;
40502ac6454SAndrew Thompson 
40602ac6454SAndrew Thompson 	bands = 0;
40702ac6454SAndrew Thompson 	setbit(&bands, IEEE80211_MODE_11B);
40802ac6454SAndrew Thompson 	setbit(&bands, IEEE80211_MODE_11G);
40902ac6454SAndrew Thompson 	ieee80211_init_channels(ic, NULL, &bands);
41002ac6454SAndrew Thompson 
41129aca940SSam Leffler 	ieee80211_ifattach(ic, sc->sc_bssid);
41202ac6454SAndrew Thompson 	ic->ic_newassoc = zyd_newassoc;
41302ac6454SAndrew Thompson 	ic->ic_raw_xmit = zyd_raw_xmit;
41402ac6454SAndrew Thompson 	ic->ic_node_alloc = zyd_node_alloc;
41502ac6454SAndrew Thompson 	ic->ic_scan_start = zyd_scan_start;
41602ac6454SAndrew Thompson 	ic->ic_scan_end = zyd_scan_end;
41702ac6454SAndrew Thompson 	ic->ic_set_channel = zyd_set_channel;
41802ac6454SAndrew Thompson 
41902ac6454SAndrew Thompson 	ic->ic_vap_create = zyd_vap_create;
42002ac6454SAndrew Thompson 	ic->ic_vap_delete = zyd_vap_delete;
42102ac6454SAndrew Thompson 	ic->ic_update_mcast = zyd_update_mcast;
42202ac6454SAndrew Thompson 	ic->ic_update_promisc = zyd_update_mcast;
42302ac6454SAndrew Thompson 
4245463c4a4SSam Leffler 	ieee80211_radiotap_attach(ic,
4255463c4a4SSam Leffler 	    &sc->sc_txtap.wt_ihdr, sizeof(sc->sc_txtap),
4265463c4a4SSam Leffler 		ZYD_TX_RADIOTAP_PRESENT,
4275463c4a4SSam Leffler 	    &sc->sc_rxtap.wr_ihdr, sizeof(sc->sc_rxtap),
4285463c4a4SSam Leffler 		ZYD_RX_RADIOTAP_PRESENT);
42902ac6454SAndrew Thompson 
43002ac6454SAndrew Thompson 	if (bootverbose)
43102ac6454SAndrew Thompson 		ieee80211_announce(ic);
43202ac6454SAndrew Thompson 
4335efea30fSAndrew Thompson 	return (0);
4345efea30fSAndrew Thompson 
4355efea30fSAndrew Thompson detach:
4365efea30fSAndrew Thompson 	zyd_detach(dev);
4375efea30fSAndrew Thompson 	return (ENXIO);			/* failure */
43802ac6454SAndrew Thompson }
43902ac6454SAndrew Thompson 
44002ac6454SAndrew Thompson static int
44102ac6454SAndrew Thompson zyd_detach(device_t dev)
44202ac6454SAndrew Thompson {
44302ac6454SAndrew Thompson 	struct zyd_softc *sc = device_get_softc(dev);
44402ac6454SAndrew Thompson 	struct ifnet *ifp = sc->sc_ifp;
44502ac6454SAndrew Thompson 	struct ieee80211com *ic;
44602ac6454SAndrew Thompson 
44702ac6454SAndrew Thompson 	/* stop all USB transfers */
44802ac6454SAndrew Thompson 	usb2_transfer_unsetup(sc->sc_xfer, ZYD_N_TRANSFER);
44902ac6454SAndrew Thompson 
45002ac6454SAndrew Thompson 	/* free TX list, if any */
45102ac6454SAndrew Thompson 	zyd_unsetup_tx_list(sc);
45202ac6454SAndrew Thompson 
45302ac6454SAndrew Thompson 	if (ifp) {
45402ac6454SAndrew Thompson 		ic = ifp->if_l2com;
45502ac6454SAndrew Thompson 		ieee80211_ifdetach(ic);
45602ac6454SAndrew Thompson 		if_free(ifp);
45702ac6454SAndrew Thompson 	}
45802ac6454SAndrew Thompson 	mtx_destroy(&sc->sc_mtx);
45902ac6454SAndrew Thompson 
46002ac6454SAndrew Thompson 	return (0);
46102ac6454SAndrew Thompson }
46202ac6454SAndrew Thompson 
46302ac6454SAndrew Thompson static struct ieee80211vap *
46402ac6454SAndrew Thompson zyd_vap_create(struct ieee80211com *ic,
46502ac6454SAndrew Thompson 	const char name[IFNAMSIZ], int unit, int opmode, int flags,
46602ac6454SAndrew Thompson 	const uint8_t bssid[IEEE80211_ADDR_LEN],
46702ac6454SAndrew Thompson 	const uint8_t mac[IEEE80211_ADDR_LEN])
46802ac6454SAndrew Thompson {
46902ac6454SAndrew Thompson 	struct zyd_vap *zvp;
47002ac6454SAndrew Thompson 	struct ieee80211vap *vap;
47102ac6454SAndrew Thompson 
47202ac6454SAndrew Thompson 	if (!TAILQ_EMPTY(&ic->ic_vaps))		/* only one at a time */
47302ac6454SAndrew Thompson 		return (NULL);
47402ac6454SAndrew Thompson 	zvp = (struct zyd_vap *) malloc(sizeof(struct zyd_vap),
47502ac6454SAndrew Thompson 	    M_80211_VAP, M_NOWAIT | M_ZERO);
47602ac6454SAndrew Thompson 	if (zvp == NULL)
47702ac6454SAndrew Thompson 		return (NULL);
47802ac6454SAndrew Thompson 	vap = &zvp->vap;
47902ac6454SAndrew Thompson 	/* enable s/w bmiss handling for sta mode */
48002ac6454SAndrew Thompson 	ieee80211_vap_setup(ic, vap, name, unit, opmode,
48102ac6454SAndrew Thompson 	    flags | IEEE80211_CLONE_NOBEACONS, bssid, mac);
48202ac6454SAndrew Thompson 
48302ac6454SAndrew Thompson 	/* override state transition machine */
48402ac6454SAndrew Thompson 	zvp->newstate = vap->iv_newstate;
48502ac6454SAndrew Thompson 	vap->iv_newstate = zyd_newstate;
48602ac6454SAndrew Thompson 
48702ac6454SAndrew Thompson 	ieee80211_amrr_init(&zvp->amrr, vap,
48802ac6454SAndrew Thompson 	    IEEE80211_AMRR_MIN_SUCCESS_THRESHOLD,
48902ac6454SAndrew Thompson 	    IEEE80211_AMRR_MAX_SUCCESS_THRESHOLD,
49002ac6454SAndrew Thompson 	    1000 /* 1 sec */);
49102ac6454SAndrew Thompson 
49202ac6454SAndrew Thompson 	/* complete setup */
49302ac6454SAndrew Thompson 	ieee80211_vap_attach(vap, ieee80211_media_change,
49402ac6454SAndrew Thompson 	    ieee80211_media_status);
49502ac6454SAndrew Thompson 	ic->ic_opmode = opmode;
49602ac6454SAndrew Thompson 	return (vap);
49702ac6454SAndrew Thompson }
49802ac6454SAndrew Thompson 
49902ac6454SAndrew Thompson static void
50002ac6454SAndrew Thompson zyd_vap_delete(struct ieee80211vap *vap)
50102ac6454SAndrew Thompson {
50202ac6454SAndrew Thompson 	struct zyd_vap *zvp = ZYD_VAP(vap);
50302ac6454SAndrew Thompson 
50402ac6454SAndrew Thompson 	ieee80211_amrr_cleanup(&zvp->amrr);
50502ac6454SAndrew Thompson 	ieee80211_vap_detach(vap);
50602ac6454SAndrew Thompson 	free(zvp, M_80211_VAP);
50702ac6454SAndrew Thompson }
50802ac6454SAndrew Thompson 
50902ac6454SAndrew Thompson static void
51002ac6454SAndrew Thompson zyd_tx_free(struct zyd_tx_data *data, int txerr)
51102ac6454SAndrew Thompson {
51202ac6454SAndrew Thompson 	struct zyd_softc *sc = data->sc;
51302ac6454SAndrew Thompson 
51402ac6454SAndrew Thompson 	if (data->m != NULL) {
51502ac6454SAndrew Thompson 		if (data->m->m_flags & M_TXCB)
51602ac6454SAndrew Thompson 			ieee80211_process_callback(data->ni, data->m,
51702ac6454SAndrew Thompson 			    txerr ? ETIMEDOUT : 0);
51802ac6454SAndrew Thompson 		m_freem(data->m);
51902ac6454SAndrew Thompson 		data->m = NULL;
52002ac6454SAndrew Thompson 
52102ac6454SAndrew Thompson 		ieee80211_free_node(data->ni);
52202ac6454SAndrew Thompson 		data->ni = NULL;
52302ac6454SAndrew Thompson 	}
52402ac6454SAndrew Thompson 	STAILQ_INSERT_TAIL(&sc->tx_free, data, next);
52502ac6454SAndrew Thompson 	sc->tx_nfree++;
52602ac6454SAndrew Thompson }
52702ac6454SAndrew Thompson 
52802ac6454SAndrew Thompson static void
52902ac6454SAndrew Thompson zyd_setup_tx_list(struct zyd_softc *sc)
53002ac6454SAndrew Thompson {
53102ac6454SAndrew Thompson 	struct zyd_tx_data *data;
53202ac6454SAndrew Thompson 	int i;
53302ac6454SAndrew Thompson 
53402ac6454SAndrew Thompson 	sc->tx_nfree = 0;
53502ac6454SAndrew Thompson 	STAILQ_INIT(&sc->tx_q);
53602ac6454SAndrew Thompson 	STAILQ_INIT(&sc->tx_free);
53702ac6454SAndrew Thompson 
53802ac6454SAndrew Thompson 	for (i = 0; i < ZYD_TX_LIST_CNT; i++) {
53902ac6454SAndrew Thompson 		data = &sc->tx_data[i];
54002ac6454SAndrew Thompson 
54102ac6454SAndrew Thompson 		data->sc = sc;
54202ac6454SAndrew Thompson 		STAILQ_INSERT_TAIL(&sc->tx_free, data, next);
54302ac6454SAndrew Thompson 		sc->tx_nfree++;
54402ac6454SAndrew Thompson 	}
54502ac6454SAndrew Thompson }
54602ac6454SAndrew Thompson 
54702ac6454SAndrew Thompson static void
54802ac6454SAndrew Thompson zyd_unsetup_tx_list(struct zyd_softc *sc)
54902ac6454SAndrew Thompson {
55002ac6454SAndrew Thompson 	struct zyd_tx_data *data;
55102ac6454SAndrew Thompson 	int i;
55202ac6454SAndrew Thompson 
55302ac6454SAndrew Thompson 	/* make sure any subsequent use of the queues will fail */
55402ac6454SAndrew Thompson 	sc->tx_nfree = 0;
55502ac6454SAndrew Thompson 	STAILQ_INIT(&sc->tx_q);
55602ac6454SAndrew Thompson 	STAILQ_INIT(&sc->tx_free);
55702ac6454SAndrew Thompson 
55802ac6454SAndrew Thompson 	/* free up all node references and mbufs */
55902ac6454SAndrew Thompson 	for (i = 0; i < ZYD_TX_LIST_CNT; i++) {
56002ac6454SAndrew Thompson 		data = &sc->tx_data[i];
56102ac6454SAndrew Thompson 
56202ac6454SAndrew Thompson 		if (data->m != NULL) {
56302ac6454SAndrew Thompson 			m_freem(data->m);
56402ac6454SAndrew Thompson 			data->m = NULL;
56502ac6454SAndrew Thompson 		}
56602ac6454SAndrew Thompson 		if (data->ni != NULL) {
56702ac6454SAndrew Thompson 			ieee80211_free_node(data->ni);
56802ac6454SAndrew Thompson 			data->ni = NULL;
56902ac6454SAndrew Thompson 		}
57002ac6454SAndrew Thompson 	}
57102ac6454SAndrew Thompson }
57202ac6454SAndrew Thompson 
57302ac6454SAndrew Thompson /* ARGUSED */
57402ac6454SAndrew Thompson static struct ieee80211_node *
57502ac6454SAndrew Thompson zyd_node_alloc(struct ieee80211vap *vap __unused,
57602ac6454SAndrew Thompson 	const uint8_t mac[IEEE80211_ADDR_LEN] __unused)
57702ac6454SAndrew Thompson {
57802ac6454SAndrew Thompson 	struct zyd_node *zn;
57902ac6454SAndrew Thompson 
58002ac6454SAndrew Thompson 	zn = malloc(sizeof(struct zyd_node), M_80211_NODE, M_NOWAIT | M_ZERO);
58102ac6454SAndrew Thompson 	return (zn != NULL) ? (&zn->ni) : (NULL);
58202ac6454SAndrew Thompson }
58302ac6454SAndrew Thompson 
5845efea30fSAndrew Thompson static int
5855efea30fSAndrew Thompson zyd_newstate(struct ieee80211vap *vap, enum ieee80211_state nstate, int arg)
58602ac6454SAndrew Thompson {
58702ac6454SAndrew Thompson 	struct zyd_vap *zvp = ZYD_VAP(vap);
5885efea30fSAndrew Thompson 	struct ieee80211com *ic = vap->iv_ic;
5895efea30fSAndrew Thompson 	struct zyd_softc *sc = ic->ic_ifp->if_softc;
5905efea30fSAndrew Thompson 	struct ieee80211_node *ni;
59102ac6454SAndrew Thompson 	int error;
59202ac6454SAndrew Thompson 
5935efea30fSAndrew Thompson 	DPRINTF(sc, ZYD_DEBUG_STATE, "%s: %s -> %s\n", __func__,
5945efea30fSAndrew Thompson 	    ieee80211_state_name[vap->iv_state],
5955efea30fSAndrew Thompson 	    ieee80211_state_name[nstate]);
5965efea30fSAndrew Thompson 
5975efea30fSAndrew Thompson 	IEEE80211_UNLOCK(ic);
5985efea30fSAndrew Thompson 	ZYD_LOCK(sc);
5995efea30fSAndrew Thompson 	switch (nstate) {
60002ac6454SAndrew Thompson 	case IEEE80211_S_AUTH:
60102ac6454SAndrew Thompson 		zyd_set_chan(sc, ic->ic_curchan);
60202ac6454SAndrew Thompson 		break;
60302ac6454SAndrew Thompson 	case IEEE80211_S_RUN:
6045efea30fSAndrew Thompson 		ni = vap->iv_bss;
60502ac6454SAndrew Thompson 		if (vap->iv_opmode == IEEE80211_M_MONITOR)
60602ac6454SAndrew Thompson 			break;
60702ac6454SAndrew Thompson 
60802ac6454SAndrew Thompson 		/* turn link LED on */
60902ac6454SAndrew Thompson 		error = zyd_set_led(sc, ZYD_LED1, 1);
61002ac6454SAndrew Thompson 		if (error != 0)
6115efea30fSAndrew Thompson 			break;
61202ac6454SAndrew Thompson 
61302ac6454SAndrew Thompson 		/* make data LED blink upon Tx */
61402ac6454SAndrew Thompson 		zyd_write32_m(sc, sc->sc_fwbase + ZYD_FW_LINK_STATUS, 1);
61502ac6454SAndrew Thompson 
61602ac6454SAndrew Thompson 		IEEE80211_ADDR_COPY(sc->sc_bssid, ni->ni_bssid);
61702ac6454SAndrew Thompson 		zyd_set_bssid(sc, sc->sc_bssid);
61802ac6454SAndrew Thompson 		break;
61902ac6454SAndrew Thompson 	default:
62002ac6454SAndrew Thompson 		break;
62102ac6454SAndrew Thompson 	}
62202ac6454SAndrew Thompson fail:
62302ac6454SAndrew Thompson 	ZYD_UNLOCK(sc);
62402ac6454SAndrew Thompson 	IEEE80211_LOCK(ic);
6255efea30fSAndrew Thompson 	return (zvp->newstate(vap, nstate, arg));
62602ac6454SAndrew Thompson }
62702ac6454SAndrew Thompson 
62802ac6454SAndrew Thompson /*
62902ac6454SAndrew Thompson  * Callback handler for interrupt transfer
63002ac6454SAndrew Thompson  */
63102ac6454SAndrew Thompson static void
632760bc48eSAndrew Thompson zyd_intr_read_callback(struct usb_xfer *xfer)
63302ac6454SAndrew Thompson {
63402ac6454SAndrew Thompson 	struct zyd_softc *sc = xfer->priv_sc;
63502ac6454SAndrew Thompson 	struct ifnet *ifp = sc->sc_ifp;
63602ac6454SAndrew Thompson 	struct ieee80211com *ic = ifp->if_l2com;
63702ac6454SAndrew Thompson 	struct ieee80211vap *vap = TAILQ_FIRST(&ic->ic_vaps);
63802ac6454SAndrew Thompson 	struct ieee80211_node *ni;
63902ac6454SAndrew Thompson 	struct zyd_cmd *cmd = &sc->sc_ibuf;
64002ac6454SAndrew Thompson 	int datalen;
64102ac6454SAndrew Thompson 
64202ac6454SAndrew Thompson 	switch (USB_GET_STATE(xfer)) {
64302ac6454SAndrew Thompson 	case USB_ST_TRANSFERRED:
64402ac6454SAndrew Thompson 		usb2_copy_out(xfer->frbuffers, 0, cmd, sizeof(*cmd));
64502ac6454SAndrew Thompson 
64602ac6454SAndrew Thompson 		switch (le16toh(cmd->code)) {
64702ac6454SAndrew Thompson 		case ZYD_NOTIF_RETRYSTATUS:
64802ac6454SAndrew Thompson 		{
64902ac6454SAndrew Thompson 			struct zyd_notif_retry *retry =
65002ac6454SAndrew Thompson 			    (struct zyd_notif_retry *)cmd->data;
65102ac6454SAndrew Thompson 
65202ac6454SAndrew Thompson 			DPRINTF(sc, ZYD_DEBUG_TX_PROC,
65302ac6454SAndrew Thompson 			    "retry intr: rate=0x%x addr=%s count=%d (0x%x)\n",
65402ac6454SAndrew Thompson 			    le16toh(retry->rate), ether_sprintf(retry->macaddr),
65502ac6454SAndrew Thompson 			    le16toh(retry->count)&0xff, le16toh(retry->count));
65602ac6454SAndrew Thompson 
65702ac6454SAndrew Thompson 			/*
65802ac6454SAndrew Thompson 			 * Find the node to which the packet was sent and
65902ac6454SAndrew Thompson 			 * update its retry statistics.  In BSS mode, this node
66002ac6454SAndrew Thompson 			 * is the AP we're associated to so no lookup is
66102ac6454SAndrew Thompson 			 * actually needed.
66202ac6454SAndrew Thompson 			 */
66302ac6454SAndrew Thompson 			ni = ieee80211_find_txnode(vap, retry->macaddr);
66402ac6454SAndrew Thompson 			if (ni != NULL) {
66502ac6454SAndrew Thompson 				ieee80211_amrr_tx_complete(&ZYD_NODE(ni)->amn,
66602ac6454SAndrew Thompson 				    IEEE80211_AMRR_FAILURE, 1);
66702ac6454SAndrew Thompson 				ieee80211_free_node(ni);
66802ac6454SAndrew Thompson 			}
66902ac6454SAndrew Thompson 			if (le16toh(retry->count) & 0x100)
67002ac6454SAndrew Thompson 				ifp->if_oerrors++;	/* too many retries */
67102ac6454SAndrew Thompson 			break;
67202ac6454SAndrew Thompson 		}
67302ac6454SAndrew Thompson 		case ZYD_NOTIF_IORD:
67402ac6454SAndrew Thompson 		{
67502ac6454SAndrew Thompson 			struct zyd_rq *rqp;
67602ac6454SAndrew Thompson 
67702ac6454SAndrew Thompson 			if (le16toh(*(uint16_t *)cmd->data) == ZYD_CR_INTERRUPT)
67802ac6454SAndrew Thompson 				break;	/* HMAC interrupt */
67902ac6454SAndrew Thompson 
68002ac6454SAndrew Thompson 			datalen = xfer->actlen - sizeof(cmd->code);
68102ac6454SAndrew Thompson 			datalen -= 2;	/* XXX: padding? */
68202ac6454SAndrew Thompson 
68302ac6454SAndrew Thompson 			STAILQ_FOREACH(rqp, &sc->sc_rqh, rq) {
68402ac6454SAndrew Thompson 				int i, cnt;
68502ac6454SAndrew Thompson 
68602ac6454SAndrew Thompson 				if (rqp->olen != datalen)
68702ac6454SAndrew Thompson 					continue;
68802ac6454SAndrew Thompson 				cnt = rqp->olen / sizeof(struct zyd_pair);
68902ac6454SAndrew Thompson 				for (i = 0; i < cnt; i++) {
69002ac6454SAndrew Thompson 					if (*(((const uint16_t *)rqp->idata) + i) !=
69102ac6454SAndrew Thompson 					    (((struct zyd_pair *)cmd->data) + i)->reg)
69202ac6454SAndrew Thompson 						break;
69302ac6454SAndrew Thompson 				}
69402ac6454SAndrew Thompson 				if (i != cnt)
69502ac6454SAndrew Thompson 					continue;
69602ac6454SAndrew Thompson 				/* copy answer into caller-supplied buffer */
69702ac6454SAndrew Thompson 				bcopy(cmd->data, rqp->odata, rqp->olen);
69802ac6454SAndrew Thompson 				DPRINTF(sc, ZYD_DEBUG_CMD,
69902ac6454SAndrew Thompson 				    "command %p complete, data = %*D \n",
70002ac6454SAndrew Thompson 				    rqp, rqp->olen, rqp->odata, ":");
70102ac6454SAndrew Thompson 				wakeup(rqp);	/* wakeup caller */
70202ac6454SAndrew Thompson 				break;
70302ac6454SAndrew Thompson 			}
70402ac6454SAndrew Thompson 			if (rqp == NULL) {
70502ac6454SAndrew Thompson 				device_printf(sc->sc_dev,
70602ac6454SAndrew Thompson 				    "unexpected IORD notification %*D\n",
70702ac6454SAndrew Thompson 				    datalen, cmd->data, ":");
70802ac6454SAndrew Thompson 			}
70902ac6454SAndrew Thompson 			break;
71002ac6454SAndrew Thompson 		}
71102ac6454SAndrew Thompson 		default:
71202ac6454SAndrew Thompson 			device_printf(sc->sc_dev, "unknown notification %x\n",
71302ac6454SAndrew Thompson 			    le16toh(cmd->code));
71402ac6454SAndrew Thompson 		}
71502ac6454SAndrew Thompson 
71602ac6454SAndrew Thompson 		/* FALLTHROUGH */
71702ac6454SAndrew Thompson 	case USB_ST_SETUP:
71802ac6454SAndrew Thompson tr_setup:
71902ac6454SAndrew Thompson 		xfer->frlengths[0] = xfer->max_data_length;
72002ac6454SAndrew Thompson 		usb2_start_hardware(xfer);
72102ac6454SAndrew Thompson 		break;
72202ac6454SAndrew Thompson 
72302ac6454SAndrew Thompson 	default:			/* Error */
72402ac6454SAndrew Thompson 		DPRINTF(sc, ZYD_DEBUG_CMD, "error = %s\n",
72502ac6454SAndrew Thompson 		    usb2_errstr(xfer->error));
72602ac6454SAndrew Thompson 
72702ac6454SAndrew Thompson 		if (xfer->error != USB_ERR_CANCELLED) {
72802ac6454SAndrew Thompson 			/* try to clear stall first */
72902ac6454SAndrew Thompson 			xfer->flags.stall_pipe = 1;
73002ac6454SAndrew Thompson 			goto tr_setup;
73102ac6454SAndrew Thompson 		}
73202ac6454SAndrew Thompson 		break;
73302ac6454SAndrew Thompson 	}
73402ac6454SAndrew Thompson }
73502ac6454SAndrew Thompson 
73602ac6454SAndrew Thompson static void
737760bc48eSAndrew Thompson zyd_intr_write_callback(struct usb_xfer *xfer)
73802ac6454SAndrew Thompson {
73902ac6454SAndrew Thompson 	struct zyd_softc *sc = xfer->priv_sc;
74002ac6454SAndrew Thompson 	struct zyd_rq *rqp;
74102ac6454SAndrew Thompson 
74202ac6454SAndrew Thompson 	switch (USB_GET_STATE(xfer)) {
74302ac6454SAndrew Thompson 	case USB_ST_TRANSFERRED:
744d953f720SAndrew Thompson 		DPRINTF(sc, ZYD_DEBUG_CMD, "command %p transferred\n",
745d953f720SAndrew Thompson 		    xfer->priv_fifo);
746d953f720SAndrew Thompson 		STAILQ_FOREACH(rqp, &sc->sc_rqh, rq) {
747d953f720SAndrew Thompson 			/* Ensure the cached rq pointer is still valid */
748d953f720SAndrew Thompson 			if (rqp == xfer->priv_fifo &&
749d953f720SAndrew Thompson 			    (rqp->flags & ZYD_CMD_FLAG_READ) == 0)
75002ac6454SAndrew Thompson 				wakeup(rqp);	/* wakeup caller */
751d953f720SAndrew Thompson 		}
75202ac6454SAndrew Thompson 
75302ac6454SAndrew Thompson 		/* FALLTHROUGH */
75402ac6454SAndrew Thompson 	case USB_ST_SETUP:
75502ac6454SAndrew Thompson tr_setup:
75602ac6454SAndrew Thompson 		STAILQ_FOREACH(rqp, &sc->sc_rqh, rq) {
75702ac6454SAndrew Thompson 			if (rqp->flags & ZYD_CMD_FLAG_SENT)
75802ac6454SAndrew Thompson 				continue;
75902ac6454SAndrew Thompson 
76002ac6454SAndrew Thompson 			usb2_copy_in(xfer->frbuffers, 0, rqp->cmd, rqp->ilen);
76102ac6454SAndrew Thompson 
76202ac6454SAndrew Thompson 			xfer->frlengths[0] = rqp->ilen;
76302ac6454SAndrew Thompson 			xfer->priv_fifo = rqp;
76402ac6454SAndrew Thompson 			rqp->flags |= ZYD_CMD_FLAG_SENT;
76502ac6454SAndrew Thompson 			usb2_start_hardware(xfer);
76602ac6454SAndrew Thompson 			break;
76702ac6454SAndrew Thompson 		}
76802ac6454SAndrew Thompson 		break;
76902ac6454SAndrew Thompson 
77002ac6454SAndrew Thompson 	default:			/* Error */
77102ac6454SAndrew Thompson 		DPRINTF(sc, ZYD_DEBUG_ANY, "error = %s\n",
77202ac6454SAndrew Thompson 		    usb2_errstr(xfer->error));
77302ac6454SAndrew Thompson 
77402ac6454SAndrew Thompson 		if (xfer->error != USB_ERR_CANCELLED) {
77502ac6454SAndrew Thompson 			/* try to clear stall first */
77602ac6454SAndrew Thompson 			xfer->flags.stall_pipe = 1;
77702ac6454SAndrew Thompson 			goto tr_setup;
77802ac6454SAndrew Thompson 		}
77902ac6454SAndrew Thompson 		break;
78002ac6454SAndrew Thompson 	}
78102ac6454SAndrew Thompson }
78202ac6454SAndrew Thompson 
78302ac6454SAndrew Thompson static int
78402ac6454SAndrew Thompson zyd_cmd(struct zyd_softc *sc, uint16_t code, const void *idata, int ilen,
78502ac6454SAndrew Thompson     void *odata, int olen, int flags)
78602ac6454SAndrew Thompson {
78702ac6454SAndrew Thompson 	struct zyd_cmd cmd;
78802ac6454SAndrew Thompson 	struct zyd_rq rq;
78902ac6454SAndrew Thompson 	int error;
79002ac6454SAndrew Thompson 
79102ac6454SAndrew Thompson 	if (ilen > sizeof(cmd.data))
79202ac6454SAndrew Thompson 		return (EINVAL);
79302ac6454SAndrew Thompson 
79402ac6454SAndrew Thompson 	cmd.code = htole16(code);
79502ac6454SAndrew Thompson 	bcopy(idata, cmd.data, ilen);
79602ac6454SAndrew Thompson 	DPRINTF(sc, ZYD_DEBUG_CMD, "sending cmd %p = %*D\n",
79702ac6454SAndrew Thompson 	    &rq, ilen, idata, ":");
79802ac6454SAndrew Thompson 
79902ac6454SAndrew Thompson 	rq.cmd = &cmd;
80002ac6454SAndrew Thompson 	rq.idata = idata;
80102ac6454SAndrew Thompson 	rq.odata = odata;
80202ac6454SAndrew Thompson 	rq.ilen = sizeof(uint16_t) + ilen;
80302ac6454SAndrew Thompson 	rq.olen = olen;
80402ac6454SAndrew Thompson 	rq.flags = flags;
80502ac6454SAndrew Thompson 	STAILQ_INSERT_TAIL(&sc->sc_rqh, &rq, rq);
80602ac6454SAndrew Thompson 	usb2_transfer_start(sc->sc_xfer[ZYD_INTR_RD]);
80702ac6454SAndrew Thompson 	usb2_transfer_start(sc->sc_xfer[ZYD_INTR_WR]);
80802ac6454SAndrew Thompson 
80902ac6454SAndrew Thompson 	/* wait at most one second for command reply */
81002ac6454SAndrew Thompson 	error = mtx_sleep(&rq, &sc->sc_mtx, 0 , "zydcmd", hz);
81102ac6454SAndrew Thompson 	if (error)
81202ac6454SAndrew Thompson 		device_printf(sc->sc_dev, "command timeout\n");
81302ac6454SAndrew Thompson 	STAILQ_REMOVE(&sc->sc_rqh, &rq, zyd_rq, rq);
81402ac6454SAndrew Thompson 	DPRINTF(sc, ZYD_DEBUG_CMD, "finsihed cmd %p, error = %d \n",
81502ac6454SAndrew Thompson 	    &rq, error);
81602ac6454SAndrew Thompson 
81702ac6454SAndrew Thompson 	return (error);
81802ac6454SAndrew Thompson }
81902ac6454SAndrew Thompson 
82002ac6454SAndrew Thompson static int
82102ac6454SAndrew Thompson zyd_read16(struct zyd_softc *sc, uint16_t reg, uint16_t *val)
82202ac6454SAndrew Thompson {
82302ac6454SAndrew Thompson 	struct zyd_pair tmp;
82402ac6454SAndrew Thompson 	int error;
82502ac6454SAndrew Thompson 
82602ac6454SAndrew Thompson 	reg = htole16(reg);
82702ac6454SAndrew Thompson 	error = zyd_cmd(sc, ZYD_CMD_IORD, &reg, sizeof(reg), &tmp, sizeof(tmp),
82802ac6454SAndrew Thompson 	    ZYD_CMD_FLAG_READ);
82902ac6454SAndrew Thompson 	if (error == 0)
83002ac6454SAndrew Thompson 		*val = le16toh(tmp.val);
83102ac6454SAndrew Thompson 	return (error);
83202ac6454SAndrew Thompson }
83302ac6454SAndrew Thompson 
83402ac6454SAndrew Thompson static int
83502ac6454SAndrew Thompson zyd_read32(struct zyd_softc *sc, uint16_t reg, uint32_t *val)
83602ac6454SAndrew Thompson {
83702ac6454SAndrew Thompson 	struct zyd_pair tmp[2];
83802ac6454SAndrew Thompson 	uint16_t regs[2];
83902ac6454SAndrew Thompson 	int error;
84002ac6454SAndrew Thompson 
84102ac6454SAndrew Thompson 	regs[0] = htole16(ZYD_REG32_HI(reg));
84202ac6454SAndrew Thompson 	regs[1] = htole16(ZYD_REG32_LO(reg));
84302ac6454SAndrew Thompson 	error = zyd_cmd(sc, ZYD_CMD_IORD, regs, sizeof(regs), tmp, sizeof(tmp),
84402ac6454SAndrew Thompson 	    ZYD_CMD_FLAG_READ);
84502ac6454SAndrew Thompson 	if (error == 0)
84602ac6454SAndrew Thompson 		*val = le16toh(tmp[0].val) << 16 | le16toh(tmp[1].val);
84702ac6454SAndrew Thompson 	return (error);
84802ac6454SAndrew Thompson }
84902ac6454SAndrew Thompson 
85002ac6454SAndrew Thompson static int
85102ac6454SAndrew Thompson zyd_write16(struct zyd_softc *sc, uint16_t reg, uint16_t val)
85202ac6454SAndrew Thompson {
85302ac6454SAndrew Thompson 	struct zyd_pair pair;
85402ac6454SAndrew Thompson 
85502ac6454SAndrew Thompson 	pair.reg = htole16(reg);
85602ac6454SAndrew Thompson 	pair.val = htole16(val);
85702ac6454SAndrew Thompson 
85802ac6454SAndrew Thompson 	return zyd_cmd(sc, ZYD_CMD_IOWR, &pair, sizeof(pair), NULL, 0, 0);
85902ac6454SAndrew Thompson }
86002ac6454SAndrew Thompson 
86102ac6454SAndrew Thompson static int
86202ac6454SAndrew Thompson zyd_write32(struct zyd_softc *sc, uint16_t reg, uint32_t val)
86302ac6454SAndrew Thompson {
86402ac6454SAndrew Thompson 	struct zyd_pair pair[2];
86502ac6454SAndrew Thompson 
86602ac6454SAndrew Thompson 	pair[0].reg = htole16(ZYD_REG32_HI(reg));
86702ac6454SAndrew Thompson 	pair[0].val = htole16(val >> 16);
86802ac6454SAndrew Thompson 	pair[1].reg = htole16(ZYD_REG32_LO(reg));
86902ac6454SAndrew Thompson 	pair[1].val = htole16(val & 0xffff);
87002ac6454SAndrew Thompson 
87102ac6454SAndrew Thompson 	return zyd_cmd(sc, ZYD_CMD_IOWR, pair, sizeof(pair), NULL, 0, 0);
87202ac6454SAndrew Thompson }
87302ac6454SAndrew Thompson 
87402ac6454SAndrew Thompson static int
87502ac6454SAndrew Thompson zyd_rfwrite(struct zyd_softc *sc, uint32_t val)
87602ac6454SAndrew Thompson {
87702ac6454SAndrew Thompson 	struct zyd_rf *rf = &sc->sc_rf;
87802ac6454SAndrew Thompson 	struct zyd_rfwrite_cmd req;
87902ac6454SAndrew Thompson 	uint16_t cr203;
88002ac6454SAndrew Thompson 	int error, i;
88102ac6454SAndrew Thompson 
88202ac6454SAndrew Thompson 	zyd_read16_m(sc, ZYD_CR203, &cr203);
88302ac6454SAndrew Thompson 	cr203 &= ~(ZYD_RF_IF_LE | ZYD_RF_CLK | ZYD_RF_DATA);
88402ac6454SAndrew Thompson 
88502ac6454SAndrew Thompson 	req.code  = htole16(2);
88602ac6454SAndrew Thompson 	req.width = htole16(rf->width);
88702ac6454SAndrew Thompson 	for (i = 0; i < rf->width; i++) {
88802ac6454SAndrew Thompson 		req.bit[i] = htole16(cr203);
88902ac6454SAndrew Thompson 		if (val & (1 << (rf->width - 1 - i)))
89002ac6454SAndrew Thompson 			req.bit[i] |= htole16(ZYD_RF_DATA);
89102ac6454SAndrew Thompson 	}
89202ac6454SAndrew Thompson 	error = zyd_cmd(sc, ZYD_CMD_RFCFG, &req, 4 + 2 * rf->width, NULL, 0, 0);
89302ac6454SAndrew Thompson fail:
89402ac6454SAndrew Thompson 	return (error);
89502ac6454SAndrew Thompson }
89602ac6454SAndrew Thompson 
89702ac6454SAndrew Thompson static int
89802ac6454SAndrew Thompson zyd_rfwrite_cr(struct zyd_softc *sc, uint32_t val)
89902ac6454SAndrew Thompson {
90002ac6454SAndrew Thompson 	int error;
90102ac6454SAndrew Thompson 
90202ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR244, (val >> 16) & 0xff);
90302ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR243, (val >>  8) & 0xff);
90402ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR242, (val >>  0) & 0xff);
90502ac6454SAndrew Thompson fail:
90602ac6454SAndrew Thompson 	return (error);
90702ac6454SAndrew Thompson }
90802ac6454SAndrew Thompson 
90902ac6454SAndrew Thompson static int
91002ac6454SAndrew Thompson zyd_lock_phy(struct zyd_softc *sc)
91102ac6454SAndrew Thompson {
91202ac6454SAndrew Thompson 	int error;
91302ac6454SAndrew Thompson 	uint32_t tmp;
91402ac6454SAndrew Thompson 
91502ac6454SAndrew Thompson 	zyd_read32_m(sc, ZYD_MAC_MISC, &tmp);
91602ac6454SAndrew Thompson 	tmp &= ~ZYD_UNLOCK_PHY_REGS;
91702ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_MISC, tmp);
91802ac6454SAndrew Thompson fail:
91902ac6454SAndrew Thompson 	return (error);
92002ac6454SAndrew Thompson }
92102ac6454SAndrew Thompson 
92202ac6454SAndrew Thompson static int
92302ac6454SAndrew Thompson zyd_unlock_phy(struct zyd_softc *sc)
92402ac6454SAndrew Thompson {
92502ac6454SAndrew Thompson 	int error;
92602ac6454SAndrew Thompson 	uint32_t tmp;
92702ac6454SAndrew Thompson 
92802ac6454SAndrew Thompson 	zyd_read32_m(sc, ZYD_MAC_MISC, &tmp);
92902ac6454SAndrew Thompson 	tmp |= ZYD_UNLOCK_PHY_REGS;
93002ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_MISC, tmp);
93102ac6454SAndrew Thompson fail:
93202ac6454SAndrew Thompson 	return (error);
93302ac6454SAndrew Thompson }
93402ac6454SAndrew Thompson 
93502ac6454SAndrew Thompson /*
93602ac6454SAndrew Thompson  * RFMD RF methods.
93702ac6454SAndrew Thompson  */
93802ac6454SAndrew Thompson static int
93902ac6454SAndrew Thompson zyd_rfmd_init(struct zyd_rf *rf)
94002ac6454SAndrew Thompson {
94102ac6454SAndrew Thompson #define N(a)	(sizeof(a) / sizeof((a)[0]))
94202ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
94302ac6454SAndrew Thompson 	static const struct zyd_phy_pair phyini[] = ZYD_RFMD_PHY;
94402ac6454SAndrew Thompson 	static const uint32_t rfini[] = ZYD_RFMD_RF;
94502ac6454SAndrew Thompson 	int i, error;
94602ac6454SAndrew Thompson 
94702ac6454SAndrew Thompson 	/* init RF-dependent PHY registers */
94802ac6454SAndrew Thompson 	for (i = 0; i < N(phyini); i++) {
94902ac6454SAndrew Thompson 		zyd_write16_m(sc, phyini[i].reg, phyini[i].val);
95002ac6454SAndrew Thompson 	}
95102ac6454SAndrew Thompson 
95202ac6454SAndrew Thompson 	/* init RFMD radio */
95302ac6454SAndrew Thompson 	for (i = 0; i < N(rfini); i++) {
95402ac6454SAndrew Thompson 		if ((error = zyd_rfwrite(sc, rfini[i])) != 0)
95502ac6454SAndrew Thompson 			return (error);
95602ac6454SAndrew Thompson 	}
95702ac6454SAndrew Thompson fail:
95802ac6454SAndrew Thompson 	return (error);
95902ac6454SAndrew Thompson #undef N
96002ac6454SAndrew Thompson }
96102ac6454SAndrew Thompson 
96202ac6454SAndrew Thompson static int
96302ac6454SAndrew Thompson zyd_rfmd_switch_radio(struct zyd_rf *rf, int on)
96402ac6454SAndrew Thompson {
96502ac6454SAndrew Thompson 	int error;
96602ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
96702ac6454SAndrew Thompson 
96802ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR10, on ? 0x89 : 0x15);
96902ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR11, on ? 0x00 : 0x81);
97002ac6454SAndrew Thompson fail:
97102ac6454SAndrew Thompson 	return (error);
97202ac6454SAndrew Thompson }
97302ac6454SAndrew Thompson 
97402ac6454SAndrew Thompson static int
97502ac6454SAndrew Thompson zyd_rfmd_set_channel(struct zyd_rf *rf, uint8_t chan)
97602ac6454SAndrew Thompson {
97702ac6454SAndrew Thompson 	int error;
97802ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
97902ac6454SAndrew Thompson 	static const struct {
98002ac6454SAndrew Thompson 		uint32_t	r1, r2;
98102ac6454SAndrew Thompson 	} rfprog[] = ZYD_RFMD_CHANTABLE;
98202ac6454SAndrew Thompson 
98302ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, rfprog[chan - 1].r1);
98402ac6454SAndrew Thompson 	if (error != 0)
98502ac6454SAndrew Thompson 		goto fail;
98602ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, rfprog[chan - 1].r2);
98702ac6454SAndrew Thompson 	if (error != 0)
98802ac6454SAndrew Thompson 		goto fail;
98902ac6454SAndrew Thompson 
99002ac6454SAndrew Thompson fail:
99102ac6454SAndrew Thompson 	return (error);
99202ac6454SAndrew Thompson }
99302ac6454SAndrew Thompson 
99402ac6454SAndrew Thompson /*
99502ac6454SAndrew Thompson  * AL2230 RF methods.
99602ac6454SAndrew Thompson  */
99702ac6454SAndrew Thompson static int
99802ac6454SAndrew Thompson zyd_al2230_init(struct zyd_rf *rf)
99902ac6454SAndrew Thompson {
100002ac6454SAndrew Thompson #define N(a)	(sizeof(a) / sizeof((a)[0]))
100102ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
100202ac6454SAndrew Thompson 	static const struct zyd_phy_pair phyini[] = ZYD_AL2230_PHY;
100302ac6454SAndrew Thompson 	static const struct zyd_phy_pair phy2230s[] = ZYD_AL2230S_PHY_INIT;
100402ac6454SAndrew Thompson 	static const struct zyd_phy_pair phypll[] = {
100502ac6454SAndrew Thompson 		{ ZYD_CR251, 0x2f }, { ZYD_CR251, 0x3f },
100602ac6454SAndrew Thompson 		{ ZYD_CR138, 0x28 }, { ZYD_CR203, 0x06 }
100702ac6454SAndrew Thompson 	};
100802ac6454SAndrew Thompson 	static const uint32_t rfini1[] = ZYD_AL2230_RF_PART1;
100902ac6454SAndrew Thompson 	static const uint32_t rfini2[] = ZYD_AL2230_RF_PART2;
101002ac6454SAndrew Thompson 	static const uint32_t rfini3[] = ZYD_AL2230_RF_PART3;
101102ac6454SAndrew Thompson 	int i, error;
101202ac6454SAndrew Thompson 
101302ac6454SAndrew Thompson 	/* init RF-dependent PHY registers */
101402ac6454SAndrew Thompson 	for (i = 0; i < N(phyini); i++)
101502ac6454SAndrew Thompson 		zyd_write16_m(sc, phyini[i].reg, phyini[i].val);
101602ac6454SAndrew Thompson 
101702ac6454SAndrew Thompson 	if (sc->sc_rfrev == ZYD_RF_AL2230S || sc->sc_al2230s != 0) {
101802ac6454SAndrew Thompson 		for (i = 0; i < N(phy2230s); i++)
101902ac6454SAndrew Thompson 			zyd_write16_m(sc, phy2230s[i].reg, phy2230s[i].val);
102002ac6454SAndrew Thompson 	}
102102ac6454SAndrew Thompson 
102202ac6454SAndrew Thompson 	/* init AL2230 radio */
102302ac6454SAndrew Thompson 	for (i = 0; i < N(rfini1); i++) {
102402ac6454SAndrew Thompson 		error = zyd_rfwrite(sc, rfini1[i]);
102502ac6454SAndrew Thompson 		if (error != 0)
102602ac6454SAndrew Thompson 			goto fail;
102702ac6454SAndrew Thompson 	}
102802ac6454SAndrew Thompson 
102902ac6454SAndrew Thompson 	if (sc->sc_rfrev == ZYD_RF_AL2230S || sc->sc_al2230s != 0)
103002ac6454SAndrew Thompson 		error = zyd_rfwrite(sc, 0x000824);
103102ac6454SAndrew Thompson 	else
103202ac6454SAndrew Thompson 		error = zyd_rfwrite(sc, 0x0005a4);
103302ac6454SAndrew Thompson 	if (error != 0)
103402ac6454SAndrew Thompson 		goto fail;
103502ac6454SAndrew Thompson 
103602ac6454SAndrew Thompson 	for (i = 0; i < N(rfini2); i++) {
103702ac6454SAndrew Thompson 		error = zyd_rfwrite(sc, rfini2[i]);
103802ac6454SAndrew Thompson 		if (error != 0)
103902ac6454SAndrew Thompson 			goto fail;
104002ac6454SAndrew Thompson 	}
104102ac6454SAndrew Thompson 
104202ac6454SAndrew Thompson 	for (i = 0; i < N(phypll); i++)
104302ac6454SAndrew Thompson 		zyd_write16_m(sc, phypll[i].reg, phypll[i].val);
104402ac6454SAndrew Thompson 
104502ac6454SAndrew Thompson 	for (i = 0; i < N(rfini3); i++) {
104602ac6454SAndrew Thompson 		error = zyd_rfwrite(sc, rfini3[i]);
104702ac6454SAndrew Thompson 		if (error != 0)
104802ac6454SAndrew Thompson 			goto fail;
104902ac6454SAndrew Thompson 	}
105002ac6454SAndrew Thompson fail:
105102ac6454SAndrew Thompson 	return (error);
105202ac6454SAndrew Thompson #undef N
105302ac6454SAndrew Thompson }
105402ac6454SAndrew Thompson 
105502ac6454SAndrew Thompson static int
105602ac6454SAndrew Thompson zyd_al2230_fini(struct zyd_rf *rf)
105702ac6454SAndrew Thompson {
105802ac6454SAndrew Thompson #define N(a)	(sizeof(a) / sizeof((a)[0]))
105902ac6454SAndrew Thompson 	int error, i;
106002ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
106102ac6454SAndrew Thompson 	static const struct zyd_phy_pair phy[] = ZYD_AL2230_PHY_FINI_PART1;
106202ac6454SAndrew Thompson 
106302ac6454SAndrew Thompson 	for (i = 0; i < N(phy); i++)
106402ac6454SAndrew Thompson 		zyd_write16_m(sc, phy[i].reg, phy[i].val);
106502ac6454SAndrew Thompson 
106602ac6454SAndrew Thompson 	if (sc->sc_newphy != 0)
106702ac6454SAndrew Thompson 		zyd_write16_m(sc, ZYD_CR9, 0xe1);
106802ac6454SAndrew Thompson 
106902ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR203, 0x6);
107002ac6454SAndrew Thompson fail:
107102ac6454SAndrew Thompson 	return (error);
107202ac6454SAndrew Thompson #undef N
107302ac6454SAndrew Thompson }
107402ac6454SAndrew Thompson 
107502ac6454SAndrew Thompson static int
107602ac6454SAndrew Thompson zyd_al2230_init_b(struct zyd_rf *rf)
107702ac6454SAndrew Thompson {
107802ac6454SAndrew Thompson #define N(a)	(sizeof(a) / sizeof((a)[0]))
107902ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
108002ac6454SAndrew Thompson 	static const struct zyd_phy_pair phy1[] = ZYD_AL2230_PHY_PART1;
108102ac6454SAndrew Thompson 	static const struct zyd_phy_pair phy2[] = ZYD_AL2230_PHY_PART2;
108202ac6454SAndrew Thompson 	static const struct zyd_phy_pair phy3[] = ZYD_AL2230_PHY_PART3;
108302ac6454SAndrew Thompson 	static const struct zyd_phy_pair phy2230s[] = ZYD_AL2230S_PHY_INIT;
108402ac6454SAndrew Thompson 	static const struct zyd_phy_pair phyini[] = ZYD_AL2230_PHY_B;
108502ac6454SAndrew Thompson 	static const uint32_t rfini_part1[] = ZYD_AL2230_RF_B_PART1;
108602ac6454SAndrew Thompson 	static const uint32_t rfini_part2[] = ZYD_AL2230_RF_B_PART2;
108702ac6454SAndrew Thompson 	static const uint32_t rfini_part3[] = ZYD_AL2230_RF_B_PART3;
108802ac6454SAndrew Thompson 	static const uint32_t zyd_al2230_chtable[][3] = ZYD_AL2230_CHANTABLE;
108902ac6454SAndrew Thompson 	int i, error;
109002ac6454SAndrew Thompson 
109102ac6454SAndrew Thompson 	for (i = 0; i < N(phy1); i++)
109202ac6454SAndrew Thompson 		zyd_write16_m(sc, phy1[i].reg, phy1[i].val);
109302ac6454SAndrew Thompson 
109402ac6454SAndrew Thompson 	/* init RF-dependent PHY registers */
109502ac6454SAndrew Thompson 	for (i = 0; i < N(phyini); i++)
109602ac6454SAndrew Thompson 		zyd_write16_m(sc, phyini[i].reg, phyini[i].val);
109702ac6454SAndrew Thompson 
109802ac6454SAndrew Thompson 	if (sc->sc_rfrev == ZYD_RF_AL2230S || sc->sc_al2230s != 0) {
109902ac6454SAndrew Thompson 		for (i = 0; i < N(phy2230s); i++)
110002ac6454SAndrew Thompson 			zyd_write16_m(sc, phy2230s[i].reg, phy2230s[i].val);
110102ac6454SAndrew Thompson 	}
110202ac6454SAndrew Thompson 
110302ac6454SAndrew Thompson 	for (i = 0; i < 3; i++) {
110402ac6454SAndrew Thompson 		error = zyd_rfwrite_cr(sc, zyd_al2230_chtable[0][i]);
110502ac6454SAndrew Thompson 		if (error != 0)
110602ac6454SAndrew Thompson 			return (error);
110702ac6454SAndrew Thompson 	}
110802ac6454SAndrew Thompson 
110902ac6454SAndrew Thompson 	for (i = 0; i < N(rfini_part1); i++) {
111002ac6454SAndrew Thompson 		error = zyd_rfwrite_cr(sc, rfini_part1[i]);
111102ac6454SAndrew Thompson 		if (error != 0)
111202ac6454SAndrew Thompson 			return (error);
111302ac6454SAndrew Thompson 	}
111402ac6454SAndrew Thompson 
111502ac6454SAndrew Thompson 	if (sc->sc_rfrev == ZYD_RF_AL2230S || sc->sc_al2230s != 0)
111602ac6454SAndrew Thompson 		error = zyd_rfwrite(sc, 0x241000);
111702ac6454SAndrew Thompson 	else
111802ac6454SAndrew Thompson 		error = zyd_rfwrite(sc, 0x25a000);
111902ac6454SAndrew Thompson 	if (error != 0)
112002ac6454SAndrew Thompson 		goto fail;
112102ac6454SAndrew Thompson 
112202ac6454SAndrew Thompson 	for (i = 0; i < N(rfini_part2); i++) {
112302ac6454SAndrew Thompson 		error = zyd_rfwrite_cr(sc, rfini_part2[i]);
112402ac6454SAndrew Thompson 		if (error != 0)
112502ac6454SAndrew Thompson 			return (error);
112602ac6454SAndrew Thompson 	}
112702ac6454SAndrew Thompson 
112802ac6454SAndrew Thompson 	for (i = 0; i < N(phy2); i++)
112902ac6454SAndrew Thompson 		zyd_write16_m(sc, phy2[i].reg, phy2[i].val);
113002ac6454SAndrew Thompson 
113102ac6454SAndrew Thompson 	for (i = 0; i < N(rfini_part3); i++) {
113202ac6454SAndrew Thompson 		error = zyd_rfwrite_cr(sc, rfini_part3[i]);
113302ac6454SAndrew Thompson 		if (error != 0)
113402ac6454SAndrew Thompson 			return (error);
113502ac6454SAndrew Thompson 	}
113602ac6454SAndrew Thompson 
113702ac6454SAndrew Thompson 	for (i = 0; i < N(phy3); i++)
113802ac6454SAndrew Thompson 		zyd_write16_m(sc, phy3[i].reg, phy3[i].val);
113902ac6454SAndrew Thompson 
114002ac6454SAndrew Thompson 	error = zyd_al2230_fini(rf);
114102ac6454SAndrew Thompson fail:
114202ac6454SAndrew Thompson 	return (error);
114302ac6454SAndrew Thompson #undef N
114402ac6454SAndrew Thompson }
114502ac6454SAndrew Thompson 
114602ac6454SAndrew Thompson static int
114702ac6454SAndrew Thompson zyd_al2230_switch_radio(struct zyd_rf *rf, int on)
114802ac6454SAndrew Thompson {
114902ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
115002ac6454SAndrew Thompson 	int error, on251 = (sc->sc_macrev == ZYD_ZD1211) ? 0x3f : 0x7f;
115102ac6454SAndrew Thompson 
115202ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR11,  on ? 0x00 : 0x04);
115302ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR251, on ? on251 : 0x2f);
115402ac6454SAndrew Thompson fail:
115502ac6454SAndrew Thompson 	return (error);
115602ac6454SAndrew Thompson }
115702ac6454SAndrew Thompson 
115802ac6454SAndrew Thompson static int
115902ac6454SAndrew Thompson zyd_al2230_set_channel(struct zyd_rf *rf, uint8_t chan)
116002ac6454SAndrew Thompson {
116102ac6454SAndrew Thompson #define N(a)	(sizeof(a) / sizeof((a)[0]))
116202ac6454SAndrew Thompson 	int error, i;
116302ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
116402ac6454SAndrew Thompson 	static const struct zyd_phy_pair phy1[] = {
116502ac6454SAndrew Thompson 		{ ZYD_CR138, 0x28 }, { ZYD_CR203, 0x06 },
116602ac6454SAndrew Thompson 	};
116702ac6454SAndrew Thompson 	static const struct {
116802ac6454SAndrew Thompson 		uint32_t	r1, r2, r3;
116902ac6454SAndrew Thompson 	} rfprog[] = ZYD_AL2230_CHANTABLE;
117002ac6454SAndrew Thompson 
117102ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, rfprog[chan - 1].r1);
117202ac6454SAndrew Thompson 	if (error != 0)
117302ac6454SAndrew Thompson 		goto fail;
117402ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, rfprog[chan - 1].r2);
117502ac6454SAndrew Thompson 	if (error != 0)
117602ac6454SAndrew Thompson 		goto fail;
117702ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, rfprog[chan - 1].r3);
117802ac6454SAndrew Thompson 	if (error != 0)
117902ac6454SAndrew Thompson 		goto fail;
118002ac6454SAndrew Thompson 
118102ac6454SAndrew Thompson 	for (i = 0; i < N(phy1); i++)
118202ac6454SAndrew Thompson 		zyd_write16_m(sc, phy1[i].reg, phy1[i].val);
118302ac6454SAndrew Thompson fail:
118402ac6454SAndrew Thompson 	return (error);
118502ac6454SAndrew Thompson #undef N
118602ac6454SAndrew Thompson }
118702ac6454SAndrew Thompson 
118802ac6454SAndrew Thompson static int
118902ac6454SAndrew Thompson zyd_al2230_set_channel_b(struct zyd_rf *rf, uint8_t chan)
119002ac6454SAndrew Thompson {
119102ac6454SAndrew Thompson #define N(a)	(sizeof(a) / sizeof((a)[0]))
119202ac6454SAndrew Thompson 	int error, i;
119302ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
119402ac6454SAndrew Thompson 	static const struct zyd_phy_pair phy1[] = ZYD_AL2230_PHY_PART1;
119502ac6454SAndrew Thompson 	static const struct {
119602ac6454SAndrew Thompson 		uint32_t	r1, r2, r3;
119702ac6454SAndrew Thompson 	} rfprog[] = ZYD_AL2230_CHANTABLE_B;
119802ac6454SAndrew Thompson 
119902ac6454SAndrew Thompson 	for (i = 0; i < N(phy1); i++)
120002ac6454SAndrew Thompson 		zyd_write16_m(sc, phy1[i].reg, phy1[i].val);
120102ac6454SAndrew Thompson 
120202ac6454SAndrew Thompson 	error = zyd_rfwrite_cr(sc, rfprog[chan - 1].r1);
120302ac6454SAndrew Thompson 	if (error != 0)
120402ac6454SAndrew Thompson 		goto fail;
120502ac6454SAndrew Thompson 	error = zyd_rfwrite_cr(sc, rfprog[chan - 1].r2);
120602ac6454SAndrew Thompson 	if (error != 0)
120702ac6454SAndrew Thompson 		goto fail;
120802ac6454SAndrew Thompson 	error = zyd_rfwrite_cr(sc, rfprog[chan - 1].r3);
120902ac6454SAndrew Thompson 	if (error != 0)
121002ac6454SAndrew Thompson 		goto fail;
121102ac6454SAndrew Thompson 	error = zyd_al2230_fini(rf);
121202ac6454SAndrew Thompson fail:
121302ac6454SAndrew Thompson 	return (error);
121402ac6454SAndrew Thompson #undef N
121502ac6454SAndrew Thompson }
121602ac6454SAndrew Thompson 
121702ac6454SAndrew Thompson #define	ZYD_AL2230_PHY_BANDEDGE6					\
121802ac6454SAndrew Thompson {									\
121902ac6454SAndrew Thompson 	{ ZYD_CR128, 0x14 }, { ZYD_CR129, 0x12 }, { ZYD_CR130, 0x10 },	\
122002ac6454SAndrew Thompson 	{ ZYD_CR47,  0x1e }						\
122102ac6454SAndrew Thompson }
122202ac6454SAndrew Thompson 
122302ac6454SAndrew Thompson static int
122402ac6454SAndrew Thompson zyd_al2230_bandedge6(struct zyd_rf *rf, struct ieee80211_channel *c)
122502ac6454SAndrew Thompson {
122602ac6454SAndrew Thompson #define N(a)	(sizeof(a) / sizeof((a)[0]))
122702ac6454SAndrew Thompson 	int error = 0, i;
122802ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
122902ac6454SAndrew Thompson 	struct ifnet *ifp = sc->sc_ifp;
123002ac6454SAndrew Thompson 	struct ieee80211com *ic = ifp->if_l2com;
123102ac6454SAndrew Thompson 	struct zyd_phy_pair r[] = ZYD_AL2230_PHY_BANDEDGE6;
123202ac6454SAndrew Thompson 	int chan = ieee80211_chan2ieee(ic, c);
123302ac6454SAndrew Thompson 
123402ac6454SAndrew Thompson 	if (chan == 1 || chan == 11)
123502ac6454SAndrew Thompson 		r[0].val = 0x12;
123602ac6454SAndrew Thompson 
123702ac6454SAndrew Thompson 	for (i = 0; i < N(r); i++)
123802ac6454SAndrew Thompson 		zyd_write16_m(sc, r[i].reg, r[i].val);
123902ac6454SAndrew Thompson fail:
124002ac6454SAndrew Thompson 	return (error);
124102ac6454SAndrew Thompson #undef N
124202ac6454SAndrew Thompson }
124302ac6454SAndrew Thompson 
124402ac6454SAndrew Thompson /*
124502ac6454SAndrew Thompson  * AL7230B RF methods.
124602ac6454SAndrew Thompson  */
124702ac6454SAndrew Thompson static int
124802ac6454SAndrew Thompson zyd_al7230B_init(struct zyd_rf *rf)
124902ac6454SAndrew Thompson {
125002ac6454SAndrew Thompson #define N(a)	(sizeof(a) / sizeof((a)[0]))
125102ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
125202ac6454SAndrew Thompson 	static const struct zyd_phy_pair phyini_1[] = ZYD_AL7230B_PHY_1;
125302ac6454SAndrew Thompson 	static const struct zyd_phy_pair phyini_2[] = ZYD_AL7230B_PHY_2;
125402ac6454SAndrew Thompson 	static const struct zyd_phy_pair phyini_3[] = ZYD_AL7230B_PHY_3;
125502ac6454SAndrew Thompson 	static const uint32_t rfini_1[] = ZYD_AL7230B_RF_1;
125602ac6454SAndrew Thompson 	static const uint32_t rfini_2[] = ZYD_AL7230B_RF_2;
125702ac6454SAndrew Thompson 	int i, error;
125802ac6454SAndrew Thompson 
125902ac6454SAndrew Thompson 	/* for AL7230B, PHY and RF need to be initialized in "phases" */
126002ac6454SAndrew Thompson 
126102ac6454SAndrew Thompson 	/* init RF-dependent PHY registers, part one */
126202ac6454SAndrew Thompson 	for (i = 0; i < N(phyini_1); i++)
126302ac6454SAndrew Thompson 		zyd_write16_m(sc, phyini_1[i].reg, phyini_1[i].val);
126402ac6454SAndrew Thompson 
126502ac6454SAndrew Thompson 	/* init AL7230B radio, part one */
126602ac6454SAndrew Thompson 	for (i = 0; i < N(rfini_1); i++) {
126702ac6454SAndrew Thompson 		if ((error = zyd_rfwrite(sc, rfini_1[i])) != 0)
126802ac6454SAndrew Thompson 			return (error);
126902ac6454SAndrew Thompson 	}
127002ac6454SAndrew Thompson 	/* init RF-dependent PHY registers, part two */
127102ac6454SAndrew Thompson 	for (i = 0; i < N(phyini_2); i++)
127202ac6454SAndrew Thompson 		zyd_write16_m(sc, phyini_2[i].reg, phyini_2[i].val);
127302ac6454SAndrew Thompson 
127402ac6454SAndrew Thompson 	/* init AL7230B radio, part two */
127502ac6454SAndrew Thompson 	for (i = 0; i < N(rfini_2); i++) {
127602ac6454SAndrew Thompson 		if ((error = zyd_rfwrite(sc, rfini_2[i])) != 0)
127702ac6454SAndrew Thompson 			return (error);
127802ac6454SAndrew Thompson 	}
127902ac6454SAndrew Thompson 	/* init RF-dependent PHY registers, part three */
128002ac6454SAndrew Thompson 	for (i = 0; i < N(phyini_3); i++)
128102ac6454SAndrew Thompson 		zyd_write16_m(sc, phyini_3[i].reg, phyini_3[i].val);
128202ac6454SAndrew Thompson fail:
128302ac6454SAndrew Thompson 	return (error);
128402ac6454SAndrew Thompson #undef N
128502ac6454SAndrew Thompson }
128602ac6454SAndrew Thompson 
128702ac6454SAndrew Thompson static int
128802ac6454SAndrew Thompson zyd_al7230B_switch_radio(struct zyd_rf *rf, int on)
128902ac6454SAndrew Thompson {
129002ac6454SAndrew Thompson 	int error;
129102ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
129202ac6454SAndrew Thompson 
129302ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR11,  on ? 0x00 : 0x04);
129402ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR251, on ? 0x3f : 0x2f);
129502ac6454SAndrew Thompson fail:
129602ac6454SAndrew Thompson 	return (error);
129702ac6454SAndrew Thompson }
129802ac6454SAndrew Thompson 
129902ac6454SAndrew Thompson static int
130002ac6454SAndrew Thompson zyd_al7230B_set_channel(struct zyd_rf *rf, uint8_t chan)
130102ac6454SAndrew Thompson {
130202ac6454SAndrew Thompson #define N(a)	(sizeof(a) / sizeof((a)[0]))
130302ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
130402ac6454SAndrew Thompson 	static const struct {
130502ac6454SAndrew Thompson 		uint32_t	r1, r2;
130602ac6454SAndrew Thompson 	} rfprog[] = ZYD_AL7230B_CHANTABLE;
130702ac6454SAndrew Thompson 	static const uint32_t rfsc[] = ZYD_AL7230B_RF_SETCHANNEL;
130802ac6454SAndrew Thompson 	int i, error;
130902ac6454SAndrew Thompson 
131002ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR240, 0x57);
131102ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR251, 0x2f);
131202ac6454SAndrew Thompson 
131302ac6454SAndrew Thompson 	for (i = 0; i < N(rfsc); i++) {
131402ac6454SAndrew Thompson 		if ((error = zyd_rfwrite(sc, rfsc[i])) != 0)
131502ac6454SAndrew Thompson 			return (error);
131602ac6454SAndrew Thompson 	}
131702ac6454SAndrew Thompson 
131802ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR128, 0x14);
131902ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR129, 0x12);
132002ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR130, 0x10);
132102ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR38,  0x38);
132202ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR136, 0xdf);
132302ac6454SAndrew Thompson 
132402ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, rfprog[chan - 1].r1);
132502ac6454SAndrew Thompson 	if (error != 0)
132602ac6454SAndrew Thompson 		goto fail;
132702ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, rfprog[chan - 1].r2);
132802ac6454SAndrew Thompson 	if (error != 0)
132902ac6454SAndrew Thompson 		goto fail;
133002ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, 0x3c9000);
133102ac6454SAndrew Thompson 	if (error != 0)
133202ac6454SAndrew Thompson 		goto fail;
133302ac6454SAndrew Thompson 
133402ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR251, 0x3f);
133502ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR203, 0x06);
133602ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR240, 0x08);
133702ac6454SAndrew Thompson fail:
133802ac6454SAndrew Thompson 	return (error);
133902ac6454SAndrew Thompson #undef N
134002ac6454SAndrew Thompson }
134102ac6454SAndrew Thompson 
134202ac6454SAndrew Thompson /*
134302ac6454SAndrew Thompson  * AL2210 RF methods.
134402ac6454SAndrew Thompson  */
134502ac6454SAndrew Thompson static int
134602ac6454SAndrew Thompson zyd_al2210_init(struct zyd_rf *rf)
134702ac6454SAndrew Thompson {
134802ac6454SAndrew Thompson #define N(a)	(sizeof(a) / sizeof((a)[0]))
134902ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
135002ac6454SAndrew Thompson 	static const struct zyd_phy_pair phyini[] = ZYD_AL2210_PHY;
135102ac6454SAndrew Thompson 	static const uint32_t rfini[] = ZYD_AL2210_RF;
135202ac6454SAndrew Thompson 	uint32_t tmp;
135302ac6454SAndrew Thompson 	int i, error;
135402ac6454SAndrew Thompson 
135502ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR18, 2);
135602ac6454SAndrew Thompson 
135702ac6454SAndrew Thompson 	/* init RF-dependent PHY registers */
135802ac6454SAndrew Thompson 	for (i = 0; i < N(phyini); i++)
135902ac6454SAndrew Thompson 		zyd_write16_m(sc, phyini[i].reg, phyini[i].val);
136002ac6454SAndrew Thompson 
136102ac6454SAndrew Thompson 	/* init AL2210 radio */
136202ac6454SAndrew Thompson 	for (i = 0; i < N(rfini); i++) {
136302ac6454SAndrew Thompson 		if ((error = zyd_rfwrite(sc, rfini[i])) != 0)
136402ac6454SAndrew Thompson 			return (error);
136502ac6454SAndrew Thompson 	}
136602ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR47, 0x1e);
136702ac6454SAndrew Thompson 	zyd_read32_m(sc, ZYD_CR_RADIO_PD, &tmp);
136802ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_RADIO_PD, tmp & ~1);
136902ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_RADIO_PD, tmp | 1);
137002ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_RFCFG, 0x05);
137102ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_RFCFG, 0x00);
137202ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR47, 0x1e);
137302ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR18, 3);
137402ac6454SAndrew Thompson fail:
137502ac6454SAndrew Thompson 	return (error);
137602ac6454SAndrew Thompson #undef N
137702ac6454SAndrew Thompson }
137802ac6454SAndrew Thompson 
137902ac6454SAndrew Thompson static int
138002ac6454SAndrew Thompson zyd_al2210_switch_radio(struct zyd_rf *rf, int on)
138102ac6454SAndrew Thompson {
138202ac6454SAndrew Thompson 	/* vendor driver does nothing for this RF chip */
138302ac6454SAndrew Thompson 
138402ac6454SAndrew Thompson 	return (0);
138502ac6454SAndrew Thompson }
138602ac6454SAndrew Thompson 
138702ac6454SAndrew Thompson static int
138802ac6454SAndrew Thompson zyd_al2210_set_channel(struct zyd_rf *rf, uint8_t chan)
138902ac6454SAndrew Thompson {
139002ac6454SAndrew Thompson 	int error;
139102ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
139202ac6454SAndrew Thompson 	static const uint32_t rfprog[] = ZYD_AL2210_CHANTABLE;
139302ac6454SAndrew Thompson 	uint32_t tmp;
139402ac6454SAndrew Thompson 
139502ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR18, 2);
139602ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR47, 0x1e);
139702ac6454SAndrew Thompson 	zyd_read32_m(sc, ZYD_CR_RADIO_PD, &tmp);
139802ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_RADIO_PD, tmp & ~1);
139902ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_RADIO_PD, tmp | 1);
140002ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_RFCFG, 0x05);
140102ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_RFCFG, 0x00);
140202ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR47, 0x1e);
140302ac6454SAndrew Thompson 
140402ac6454SAndrew Thompson 	/* actually set the channel */
140502ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, rfprog[chan - 1]);
140602ac6454SAndrew Thompson 	if (error != 0)
140702ac6454SAndrew Thompson 		goto fail;
140802ac6454SAndrew Thompson 
140902ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR18, 3);
141002ac6454SAndrew Thompson fail:
141102ac6454SAndrew Thompson 	return (error);
141202ac6454SAndrew Thompson }
141302ac6454SAndrew Thompson 
141402ac6454SAndrew Thompson /*
141502ac6454SAndrew Thompson  * GCT RF methods.
141602ac6454SAndrew Thompson  */
141702ac6454SAndrew Thompson static int
141802ac6454SAndrew Thompson zyd_gct_init(struct zyd_rf *rf)
141902ac6454SAndrew Thompson {
142002ac6454SAndrew Thompson #define N(a)	(sizeof(a) / sizeof((a)[0]))
142102ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
142202ac6454SAndrew Thompson 	static const struct zyd_phy_pair phyini[] = ZYD_GCT_PHY;
142302ac6454SAndrew Thompson 	static const uint32_t rfini[] = ZYD_GCT_RF;
142402ac6454SAndrew Thompson 	int i, error;
142502ac6454SAndrew Thompson 
142602ac6454SAndrew Thompson 	/* init RF-dependent PHY registers */
142702ac6454SAndrew Thompson 	for (i = 0; i < N(phyini); i++)
142802ac6454SAndrew Thompson 		zyd_write16_m(sc, phyini[i].reg, phyini[i].val);
142902ac6454SAndrew Thompson 
143002ac6454SAndrew Thompson 	/* init cgt radio */
143102ac6454SAndrew Thompson 	for (i = 0; i < N(rfini); i++) {
143202ac6454SAndrew Thompson 		if ((error = zyd_rfwrite(sc, rfini[i])) != 0)
143302ac6454SAndrew Thompson 			return (error);
143402ac6454SAndrew Thompson 	}
143502ac6454SAndrew Thompson fail:
143602ac6454SAndrew Thompson 	return (error);
143702ac6454SAndrew Thompson #undef N
143802ac6454SAndrew Thompson }
143902ac6454SAndrew Thompson 
144002ac6454SAndrew Thompson static int
144102ac6454SAndrew Thompson zyd_gct_switch_radio(struct zyd_rf *rf, int on)
144202ac6454SAndrew Thompson {
144302ac6454SAndrew Thompson 	/* vendor driver does nothing for this RF chip */
144402ac6454SAndrew Thompson 
144502ac6454SAndrew Thompson 	return (0);
144602ac6454SAndrew Thompson }
144702ac6454SAndrew Thompson 
144802ac6454SAndrew Thompson static int
144902ac6454SAndrew Thompson zyd_gct_set_channel(struct zyd_rf *rf, uint8_t chan)
145002ac6454SAndrew Thompson {
145102ac6454SAndrew Thompson 	int error;
145202ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
145302ac6454SAndrew Thompson 	static const uint32_t rfprog[] = ZYD_GCT_CHANTABLE;
145402ac6454SAndrew Thompson 
145502ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, 0x1c0000);
145602ac6454SAndrew Thompson 	if (error != 0)
145702ac6454SAndrew Thompson 		goto fail;
145802ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, rfprog[chan - 1]);
145902ac6454SAndrew Thompson 	if (error != 0)
146002ac6454SAndrew Thompson 		goto fail;
146102ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, 0x1c0008);
146202ac6454SAndrew Thompson fail:
146302ac6454SAndrew Thompson 	return (error);
146402ac6454SAndrew Thompson }
146502ac6454SAndrew Thompson 
146602ac6454SAndrew Thompson /*
146702ac6454SAndrew Thompson  * Maxim RF methods.
146802ac6454SAndrew Thompson  */
146902ac6454SAndrew Thompson static int
147002ac6454SAndrew Thompson zyd_maxim_init(struct zyd_rf *rf)
147102ac6454SAndrew Thompson {
147202ac6454SAndrew Thompson #define N(a)	(sizeof(a) / sizeof((a)[0]))
147302ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
147402ac6454SAndrew Thompson 	static const struct zyd_phy_pair phyini[] = ZYD_MAXIM_PHY;
147502ac6454SAndrew Thompson 	static const uint32_t rfini[] = ZYD_MAXIM_RF;
147602ac6454SAndrew Thompson 	uint16_t tmp;
147702ac6454SAndrew Thompson 	int i, error;
147802ac6454SAndrew Thompson 
147902ac6454SAndrew Thompson 	/* init RF-dependent PHY registers */
148002ac6454SAndrew Thompson 	for (i = 0; i < N(phyini); i++)
148102ac6454SAndrew Thompson 		zyd_write16_m(sc, phyini[i].reg, phyini[i].val);
148202ac6454SAndrew Thompson 
148302ac6454SAndrew Thompson 	zyd_read16_m(sc, ZYD_CR203, &tmp);
148402ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR203, tmp & ~(1 << 4));
148502ac6454SAndrew Thompson 
148602ac6454SAndrew Thompson 	/* init maxim radio */
148702ac6454SAndrew Thompson 	for (i = 0; i < N(rfini); i++) {
148802ac6454SAndrew Thompson 		if ((error = zyd_rfwrite(sc, rfini[i])) != 0)
148902ac6454SAndrew Thompson 			return (error);
149002ac6454SAndrew Thompson 	}
149102ac6454SAndrew Thompson 	zyd_read16_m(sc, ZYD_CR203, &tmp);
149202ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR203, tmp | (1 << 4));
149302ac6454SAndrew Thompson fail:
149402ac6454SAndrew Thompson 	return (error);
149502ac6454SAndrew Thompson #undef N
149602ac6454SAndrew Thompson }
149702ac6454SAndrew Thompson 
149802ac6454SAndrew Thompson static int
149902ac6454SAndrew Thompson zyd_maxim_switch_radio(struct zyd_rf *rf, int on)
150002ac6454SAndrew Thompson {
150102ac6454SAndrew Thompson 
150202ac6454SAndrew Thompson 	/* vendor driver does nothing for this RF chip */
150302ac6454SAndrew Thompson 	return (0);
150402ac6454SAndrew Thompson }
150502ac6454SAndrew Thompson 
150602ac6454SAndrew Thompson static int
150702ac6454SAndrew Thompson zyd_maxim_set_channel(struct zyd_rf *rf, uint8_t chan)
150802ac6454SAndrew Thompson {
150902ac6454SAndrew Thompson #define N(a)	(sizeof(a) / sizeof((a)[0]))
151002ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
151102ac6454SAndrew Thompson 	static const struct zyd_phy_pair phyini[] = ZYD_MAXIM_PHY;
151202ac6454SAndrew Thompson 	static const uint32_t rfini[] = ZYD_MAXIM_RF;
151302ac6454SAndrew Thompson 	static const struct {
151402ac6454SAndrew Thompson 		uint32_t	r1, r2;
151502ac6454SAndrew Thompson 	} rfprog[] = ZYD_MAXIM_CHANTABLE;
151602ac6454SAndrew Thompson 	uint16_t tmp;
151702ac6454SAndrew Thompson 	int i, error;
151802ac6454SAndrew Thompson 
151902ac6454SAndrew Thompson 	/*
152002ac6454SAndrew Thompson 	 * Do the same as we do when initializing it, except for the channel
152102ac6454SAndrew Thompson 	 * values coming from the two channel tables.
152202ac6454SAndrew Thompson 	 */
152302ac6454SAndrew Thompson 
152402ac6454SAndrew Thompson 	/* init RF-dependent PHY registers */
152502ac6454SAndrew Thompson 	for (i = 0; i < N(phyini); i++)
152602ac6454SAndrew Thompson 		zyd_write16_m(sc, phyini[i].reg, phyini[i].val);
152702ac6454SAndrew Thompson 
152802ac6454SAndrew Thompson 	zyd_read16_m(sc, ZYD_CR203, &tmp);
152902ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR203, tmp & ~(1 << 4));
153002ac6454SAndrew Thompson 
153102ac6454SAndrew Thompson 	/* first two values taken from the chantables */
153202ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, rfprog[chan - 1].r1);
153302ac6454SAndrew Thompson 	if (error != 0)
153402ac6454SAndrew Thompson 		goto fail;
153502ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, rfprog[chan - 1].r2);
153602ac6454SAndrew Thompson 	if (error != 0)
153702ac6454SAndrew Thompson 		goto fail;
153802ac6454SAndrew Thompson 
153902ac6454SAndrew Thompson 	/* init maxim radio - skipping the two first values */
154002ac6454SAndrew Thompson 	for (i = 2; i < N(rfini); i++) {
154102ac6454SAndrew Thompson 		if ((error = zyd_rfwrite(sc, rfini[i])) != 0)
154202ac6454SAndrew Thompson 			return (error);
154302ac6454SAndrew Thompson 	}
154402ac6454SAndrew Thompson 	zyd_read16_m(sc, ZYD_CR203, &tmp);
154502ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR203, tmp | (1 << 4));
154602ac6454SAndrew Thompson fail:
154702ac6454SAndrew Thompson 	return (error);
154802ac6454SAndrew Thompson #undef N
154902ac6454SAndrew Thompson }
155002ac6454SAndrew Thompson 
155102ac6454SAndrew Thompson /*
155202ac6454SAndrew Thompson  * Maxim2 RF methods.
155302ac6454SAndrew Thompson  */
155402ac6454SAndrew Thompson static int
155502ac6454SAndrew Thompson zyd_maxim2_init(struct zyd_rf *rf)
155602ac6454SAndrew Thompson {
155702ac6454SAndrew Thompson #define N(a)	(sizeof(a) / sizeof((a)[0]))
155802ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
155902ac6454SAndrew Thompson 	static const struct zyd_phy_pair phyini[] = ZYD_MAXIM2_PHY;
156002ac6454SAndrew Thompson 	static const uint32_t rfini[] = ZYD_MAXIM2_RF;
156102ac6454SAndrew Thompson 	uint16_t tmp;
156202ac6454SAndrew Thompson 	int i, error;
156302ac6454SAndrew Thompson 
156402ac6454SAndrew Thompson 	/* init RF-dependent PHY registers */
156502ac6454SAndrew Thompson 	for (i = 0; i < N(phyini); i++)
156602ac6454SAndrew Thompson 		zyd_write16_m(sc, phyini[i].reg, phyini[i].val);
156702ac6454SAndrew Thompson 
156802ac6454SAndrew Thompson 	zyd_read16_m(sc, ZYD_CR203, &tmp);
156902ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR203, tmp & ~(1 << 4));
157002ac6454SAndrew Thompson 
157102ac6454SAndrew Thompson 	/* init maxim2 radio */
157202ac6454SAndrew Thompson 	for (i = 0; i < N(rfini); i++) {
157302ac6454SAndrew Thompson 		if ((error = zyd_rfwrite(sc, rfini[i])) != 0)
157402ac6454SAndrew Thompson 			return (error);
157502ac6454SAndrew Thompson 	}
157602ac6454SAndrew Thompson 	zyd_read16_m(sc, ZYD_CR203, &tmp);
157702ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR203, tmp | (1 << 4));
157802ac6454SAndrew Thompson fail:
157902ac6454SAndrew Thompson 	return (error);
158002ac6454SAndrew Thompson #undef N
158102ac6454SAndrew Thompson }
158202ac6454SAndrew Thompson 
158302ac6454SAndrew Thompson static int
158402ac6454SAndrew Thompson zyd_maxim2_switch_radio(struct zyd_rf *rf, int on)
158502ac6454SAndrew Thompson {
158602ac6454SAndrew Thompson 
158702ac6454SAndrew Thompson 	/* vendor driver does nothing for this RF chip */
158802ac6454SAndrew Thompson 	return (0);
158902ac6454SAndrew Thompson }
159002ac6454SAndrew Thompson 
159102ac6454SAndrew Thompson static int
159202ac6454SAndrew Thompson zyd_maxim2_set_channel(struct zyd_rf *rf, uint8_t chan)
159302ac6454SAndrew Thompson {
159402ac6454SAndrew Thompson #define N(a)	(sizeof(a) / sizeof((a)[0]))
159502ac6454SAndrew Thompson 	struct zyd_softc *sc = rf->rf_sc;
159602ac6454SAndrew Thompson 	static const struct zyd_phy_pair phyini[] = ZYD_MAXIM2_PHY;
159702ac6454SAndrew Thompson 	static const uint32_t rfini[] = ZYD_MAXIM2_RF;
159802ac6454SAndrew Thompson 	static const struct {
159902ac6454SAndrew Thompson 		uint32_t	r1, r2;
160002ac6454SAndrew Thompson 	} rfprog[] = ZYD_MAXIM2_CHANTABLE;
160102ac6454SAndrew Thompson 	uint16_t tmp;
160202ac6454SAndrew Thompson 	int i, error;
160302ac6454SAndrew Thompson 
160402ac6454SAndrew Thompson 	/*
160502ac6454SAndrew Thompson 	 * Do the same as we do when initializing it, except for the channel
160602ac6454SAndrew Thompson 	 * values coming from the two channel tables.
160702ac6454SAndrew Thompson 	 */
160802ac6454SAndrew Thompson 
160902ac6454SAndrew Thompson 	/* init RF-dependent PHY registers */
161002ac6454SAndrew Thompson 	for (i = 0; i < N(phyini); i++)
161102ac6454SAndrew Thompson 		zyd_write16_m(sc, phyini[i].reg, phyini[i].val);
161202ac6454SAndrew Thompson 
161302ac6454SAndrew Thompson 	zyd_read16_m(sc, ZYD_CR203, &tmp);
161402ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR203, tmp & ~(1 << 4));
161502ac6454SAndrew Thompson 
161602ac6454SAndrew Thompson 	/* first two values taken from the chantables */
161702ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, rfprog[chan - 1].r1);
161802ac6454SAndrew Thompson 	if (error != 0)
161902ac6454SAndrew Thompson 		goto fail;
162002ac6454SAndrew Thompson 	error = zyd_rfwrite(sc, rfprog[chan - 1].r2);
162102ac6454SAndrew Thompson 	if (error != 0)
162202ac6454SAndrew Thompson 		goto fail;
162302ac6454SAndrew Thompson 
162402ac6454SAndrew Thompson 	/* init maxim2 radio - skipping the two first values */
162502ac6454SAndrew Thompson 	for (i = 2; i < N(rfini); i++) {
162602ac6454SAndrew Thompson 		if ((error = zyd_rfwrite(sc, rfini[i])) != 0)
162702ac6454SAndrew Thompson 			return (error);
162802ac6454SAndrew Thompson 	}
162902ac6454SAndrew Thompson 	zyd_read16_m(sc, ZYD_CR203, &tmp);
163002ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR203, tmp | (1 << 4));
163102ac6454SAndrew Thompson fail:
163202ac6454SAndrew Thompson 	return (error);
163302ac6454SAndrew Thompson #undef N
163402ac6454SAndrew Thompson }
163502ac6454SAndrew Thompson 
163602ac6454SAndrew Thompson static int
163702ac6454SAndrew Thompson zyd_rf_attach(struct zyd_softc *sc, uint8_t type)
163802ac6454SAndrew Thompson {
163902ac6454SAndrew Thompson 	struct zyd_rf *rf = &sc->sc_rf;
164002ac6454SAndrew Thompson 
164102ac6454SAndrew Thompson 	rf->rf_sc = sc;
164202ac6454SAndrew Thompson 
164302ac6454SAndrew Thompson 	switch (type) {
164402ac6454SAndrew Thompson 	case ZYD_RF_RFMD:
164502ac6454SAndrew Thompson 		rf->init         = zyd_rfmd_init;
164602ac6454SAndrew Thompson 		rf->switch_radio = zyd_rfmd_switch_radio;
164702ac6454SAndrew Thompson 		rf->set_channel  = zyd_rfmd_set_channel;
164802ac6454SAndrew Thompson 		rf->width        = 24;	/* 24-bit RF values */
164902ac6454SAndrew Thompson 		break;
165002ac6454SAndrew Thompson 	case ZYD_RF_AL2230:
165102ac6454SAndrew Thompson 	case ZYD_RF_AL2230S:
165202ac6454SAndrew Thompson 		if (sc->sc_macrev == ZYD_ZD1211B) {
165302ac6454SAndrew Thompson 			rf->init = zyd_al2230_init_b;
165402ac6454SAndrew Thompson 			rf->set_channel = zyd_al2230_set_channel_b;
165502ac6454SAndrew Thompson 		} else {
165602ac6454SAndrew Thompson 			rf->init = zyd_al2230_init;
165702ac6454SAndrew Thompson 			rf->set_channel = zyd_al2230_set_channel;
165802ac6454SAndrew Thompson 		}
165902ac6454SAndrew Thompson 		rf->switch_radio = zyd_al2230_switch_radio;
166002ac6454SAndrew Thompson 		rf->bandedge6	 = zyd_al2230_bandedge6;
166102ac6454SAndrew Thompson 		rf->width        = 24;	/* 24-bit RF values */
166202ac6454SAndrew Thompson 		break;
166302ac6454SAndrew Thompson 	case ZYD_RF_AL7230B:
166402ac6454SAndrew Thompson 		rf->init         = zyd_al7230B_init;
166502ac6454SAndrew Thompson 		rf->switch_radio = zyd_al7230B_switch_radio;
166602ac6454SAndrew Thompson 		rf->set_channel  = zyd_al7230B_set_channel;
166702ac6454SAndrew Thompson 		rf->width        = 24;	/* 24-bit RF values */
166802ac6454SAndrew Thompson 		break;
166902ac6454SAndrew Thompson 	case ZYD_RF_AL2210:
167002ac6454SAndrew Thompson 		rf->init         = zyd_al2210_init;
167102ac6454SAndrew Thompson 		rf->switch_radio = zyd_al2210_switch_radio;
167202ac6454SAndrew Thompson 		rf->set_channel  = zyd_al2210_set_channel;
167302ac6454SAndrew Thompson 		rf->width        = 24;	/* 24-bit RF values */
167402ac6454SAndrew Thompson 		break;
167502ac6454SAndrew Thompson 	case ZYD_RF_GCT:
167602ac6454SAndrew Thompson 		rf->init         = zyd_gct_init;
167702ac6454SAndrew Thompson 		rf->switch_radio = zyd_gct_switch_radio;
167802ac6454SAndrew Thompson 		rf->set_channel  = zyd_gct_set_channel;
167902ac6454SAndrew Thompson 		rf->width        = 21;	/* 21-bit RF values */
168002ac6454SAndrew Thompson 		break;
168102ac6454SAndrew Thompson 	case ZYD_RF_MAXIM_NEW:
168202ac6454SAndrew Thompson 		rf->init         = zyd_maxim_init;
168302ac6454SAndrew Thompson 		rf->switch_radio = zyd_maxim_switch_radio;
168402ac6454SAndrew Thompson 		rf->set_channel  = zyd_maxim_set_channel;
168502ac6454SAndrew Thompson 		rf->width        = 18;	/* 18-bit RF values */
168602ac6454SAndrew Thompson 		break;
168702ac6454SAndrew Thompson 	case ZYD_RF_MAXIM_NEW2:
168802ac6454SAndrew Thompson 		rf->init         = zyd_maxim2_init;
168902ac6454SAndrew Thompson 		rf->switch_radio = zyd_maxim2_switch_radio;
169002ac6454SAndrew Thompson 		rf->set_channel  = zyd_maxim2_set_channel;
169102ac6454SAndrew Thompson 		rf->width        = 18;	/* 18-bit RF values */
169202ac6454SAndrew Thompson 		break;
169302ac6454SAndrew Thompson 	default:
169402ac6454SAndrew Thompson 		device_printf(sc->sc_dev,
169502ac6454SAndrew Thompson 		    "sorry, radio \"%s\" is not supported yet\n",
169602ac6454SAndrew Thompson 		    zyd_rf_name(type));
169702ac6454SAndrew Thompson 		return (EINVAL);
169802ac6454SAndrew Thompson 	}
169902ac6454SAndrew Thompson 	return (0);
170002ac6454SAndrew Thompson }
170102ac6454SAndrew Thompson 
170202ac6454SAndrew Thompson static const char *
170302ac6454SAndrew Thompson zyd_rf_name(uint8_t type)
170402ac6454SAndrew Thompson {
170502ac6454SAndrew Thompson 	static const char * const zyd_rfs[] = {
170602ac6454SAndrew Thompson 		"unknown", "unknown", "UW2451",   "UCHIP",     "AL2230",
170702ac6454SAndrew Thompson 		"AL7230B", "THETA",   "AL2210",   "MAXIM_NEW", "GCT",
170802ac6454SAndrew Thompson 		"AL2230S",  "RALINK",  "INTERSIL", "RFMD",      "MAXIM_NEW2",
170902ac6454SAndrew Thompson 		"PHILIPS"
171002ac6454SAndrew Thompson 	};
171102ac6454SAndrew Thompson 
171202ac6454SAndrew Thompson 	return zyd_rfs[(type > 15) ? 0 : type];
171302ac6454SAndrew Thompson }
171402ac6454SAndrew Thompson 
171502ac6454SAndrew Thompson static int
171602ac6454SAndrew Thompson zyd_hw_init(struct zyd_softc *sc)
171702ac6454SAndrew Thompson {
171802ac6454SAndrew Thompson 	int error;
171902ac6454SAndrew Thompson 	const struct zyd_phy_pair *phyp;
172002ac6454SAndrew Thompson 	struct zyd_rf *rf = &sc->sc_rf;
172102ac6454SAndrew Thompson 	uint16_t val;
172202ac6454SAndrew Thompson 
172302ac6454SAndrew Thompson 	/* specify that the plug and play is finished */
172402ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_AFTER_PNP, 1);
172502ac6454SAndrew Thompson 	zyd_read16_m(sc, ZYD_FIRMWARE_BASE_ADDR, &sc->sc_fwbase);
172602ac6454SAndrew Thompson 	DPRINTF(sc, ZYD_DEBUG_FW, "firmware base address=0x%04x\n",
172702ac6454SAndrew Thompson 	    sc->sc_fwbase);
172802ac6454SAndrew Thompson 
172902ac6454SAndrew Thompson 	/* retrieve firmware revision number */
173002ac6454SAndrew Thompson 	zyd_read16_m(sc, sc->sc_fwbase + ZYD_FW_FIRMWARE_REV, &sc->sc_fwrev);
173102ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_GPI_EN, 0);
173202ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_CONT_WIN_LIMIT, 0x7f043f);
173302ac6454SAndrew Thompson 	/* set mandatory rates - XXX assumes 802.11b/g */
173402ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_MAN_RATE, 0x150f);
173502ac6454SAndrew Thompson 
173602ac6454SAndrew Thompson 	/* disable interrupts */
173702ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_INTERRUPT, 0);
173802ac6454SAndrew Thompson 
173902ac6454SAndrew Thompson 	if ((error = zyd_read_pod(sc)) != 0) {
174002ac6454SAndrew Thompson 		device_printf(sc->sc_dev, "could not read EEPROM\n");
174102ac6454SAndrew Thompson 		goto fail;
174202ac6454SAndrew Thompson 	}
174302ac6454SAndrew Thompson 
174402ac6454SAndrew Thompson 	/* PHY init (resetting) */
174502ac6454SAndrew Thompson 	error = zyd_lock_phy(sc);
174602ac6454SAndrew Thompson 	if (error != 0)
174702ac6454SAndrew Thompson 		goto fail;
174802ac6454SAndrew Thompson 	phyp = (sc->sc_macrev == ZYD_ZD1211B) ? zyd_def_phyB : zyd_def_phy;
174902ac6454SAndrew Thompson 	for (; phyp->reg != 0; phyp++)
175002ac6454SAndrew Thompson 		zyd_write16_m(sc, phyp->reg, phyp->val);
175102ac6454SAndrew Thompson 	if (sc->sc_macrev == ZYD_ZD1211 && sc->sc_fix_cr157 != 0) {
175202ac6454SAndrew Thompson 		zyd_read16_m(sc, ZYD_EEPROM_PHY_REG, &val);
175302ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_CR157, val >> 8);
175402ac6454SAndrew Thompson 	}
175502ac6454SAndrew Thompson 	error = zyd_unlock_phy(sc);
175602ac6454SAndrew Thompson 	if (error != 0)
175702ac6454SAndrew Thompson 		goto fail;
175802ac6454SAndrew Thompson 
175902ac6454SAndrew Thompson 	/* HMAC init */
176002ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_ACK_EXT, 0x00000020);
176102ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_ADDA_MBIAS_WT, 0x30000808);
176202ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_SNIFFER, 0x00000000);
176302ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_RXFILTER, 0x00000000);
176402ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_GHTBL, 0x00000000);
176502ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_GHTBH, 0x80000000);
176602ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_MISC, 0x000000a4);
176702ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_ADDA_PWR_DWN, 0x0000007f);
176802ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_BCNCFG, 0x00f00401);
176902ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_PHY_DELAY2, 0x00000000);
177002ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_ACK_EXT, 0x00000080);
177102ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_ADDA_PWR_DWN, 0x00000000);
177202ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_SIFS_ACK_TIME, 0x00000100);
177302ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_RX_PE_DELAY, 0x00000070);
177402ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_PS_CTRL, 0x10000000);
177502ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_RTSCTSRATE, 0x02030203);
177602ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_AFTER_PNP, 1);
177702ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_BACKOFF_PROTECT, 0x00000114);
177802ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_DIFS_EIFS_SIFS, 0x0a47c032);
177902ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_CAM_MODE, 0x3);
178002ac6454SAndrew Thompson 
178102ac6454SAndrew Thompson 	if (sc->sc_macrev == ZYD_ZD1211) {
178202ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_MAC_RETRY, 0x00000002);
178302ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_MAC_RX_THRESHOLD, 0x000c0640);
178402ac6454SAndrew Thompson 	} else {
178502ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_MACB_MAX_RETRY, 0x02020202);
178602ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_MACB_TXPWR_CTL4, 0x007f003f);
178702ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_MACB_TXPWR_CTL3, 0x007f003f);
178802ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_MACB_TXPWR_CTL2, 0x003f001f);
178902ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_MACB_TXPWR_CTL1, 0x001f000f);
179002ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_MACB_AIFS_CTL1, 0x00280028);
179102ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_MACB_AIFS_CTL2, 0x008C003C);
179202ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_MACB_TXOP, 0x01800824);
179302ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_MAC_RX_THRESHOLD, 0x000c0eff);
179402ac6454SAndrew Thompson 	}
179502ac6454SAndrew Thompson 
179602ac6454SAndrew Thompson 	/* init beacon interval to 100ms */
179702ac6454SAndrew Thompson 	if ((error = zyd_set_beacon_interval(sc, 100)) != 0)
179802ac6454SAndrew Thompson 		goto fail;
179902ac6454SAndrew Thompson 
180002ac6454SAndrew Thompson 	if ((error = zyd_rf_attach(sc, sc->sc_rfrev)) != 0) {
180102ac6454SAndrew Thompson 		device_printf(sc->sc_dev, "could not attach RF, rev 0x%x\n",
180202ac6454SAndrew Thompson 		    sc->sc_rfrev);
180302ac6454SAndrew Thompson 		goto fail;
180402ac6454SAndrew Thompson 	}
180502ac6454SAndrew Thompson 
180602ac6454SAndrew Thompson 	/* RF chip init */
180702ac6454SAndrew Thompson 	error = zyd_lock_phy(sc);
180802ac6454SAndrew Thompson 	if (error != 0)
180902ac6454SAndrew Thompson 		goto fail;
181002ac6454SAndrew Thompson 	error = (*rf->init)(rf);
181102ac6454SAndrew Thompson 	if (error != 0) {
181202ac6454SAndrew Thompson 		device_printf(sc->sc_dev,
181302ac6454SAndrew Thompson 		    "radio initialization failed, error %d\n", error);
181402ac6454SAndrew Thompson 		goto fail;
181502ac6454SAndrew Thompson 	}
181602ac6454SAndrew Thompson 	error = zyd_unlock_phy(sc);
181702ac6454SAndrew Thompson 	if (error != 0)
181802ac6454SAndrew Thompson 		goto fail;
181902ac6454SAndrew Thompson 
182002ac6454SAndrew Thompson 	if ((error = zyd_read_eeprom(sc)) != 0) {
182102ac6454SAndrew Thompson 		device_printf(sc->sc_dev, "could not read EEPROM\n");
182202ac6454SAndrew Thompson 		goto fail;
182302ac6454SAndrew Thompson 	}
182402ac6454SAndrew Thompson 
182502ac6454SAndrew Thompson fail:	return (error);
182602ac6454SAndrew Thompson }
182702ac6454SAndrew Thompson 
182802ac6454SAndrew Thompson static int
182902ac6454SAndrew Thompson zyd_read_pod(struct zyd_softc *sc)
183002ac6454SAndrew Thompson {
183102ac6454SAndrew Thompson 	int error;
183202ac6454SAndrew Thompson 	uint32_t tmp;
183302ac6454SAndrew Thompson 
183402ac6454SAndrew Thompson 	zyd_read32_m(sc, ZYD_EEPROM_POD, &tmp);
183502ac6454SAndrew Thompson 	sc->sc_rfrev     = tmp & 0x0f;
183602ac6454SAndrew Thompson 	sc->sc_ledtype   = (tmp >>  4) & 0x01;
183702ac6454SAndrew Thompson 	sc->sc_al2230s   = (tmp >>  7) & 0x01;
183802ac6454SAndrew Thompson 	sc->sc_cckgain   = (tmp >>  8) & 0x01;
183902ac6454SAndrew Thompson 	sc->sc_fix_cr157 = (tmp >> 13) & 0x01;
184002ac6454SAndrew Thompson 	sc->sc_parev     = (tmp >> 16) & 0x0f;
184102ac6454SAndrew Thompson 	sc->sc_bandedge6 = (tmp >> 21) & 0x01;
184202ac6454SAndrew Thompson 	sc->sc_newphy    = (tmp >> 31) & 0x01;
184302ac6454SAndrew Thompson 	sc->sc_txled     = ((tmp & (1 << 24)) && (tmp & (1 << 29))) ? 0 : 1;
184402ac6454SAndrew Thompson fail:
184502ac6454SAndrew Thompson 	return (error);
184602ac6454SAndrew Thompson }
184702ac6454SAndrew Thompson 
184802ac6454SAndrew Thompson static int
184902ac6454SAndrew Thompson zyd_read_eeprom(struct zyd_softc *sc)
185002ac6454SAndrew Thompson {
185102ac6454SAndrew Thompson 	uint16_t val;
185202ac6454SAndrew Thompson 	int error, i;
185302ac6454SAndrew Thompson 
185402ac6454SAndrew Thompson 	/* read Tx power calibration tables */
185502ac6454SAndrew Thompson 	for (i = 0; i < 7; i++) {
185602ac6454SAndrew Thompson 		zyd_read16_m(sc, ZYD_EEPROM_PWR_CAL + i, &val);
185702ac6454SAndrew Thompson 		sc->sc_pwrcal[i * 2] = val >> 8;
185802ac6454SAndrew Thompson 		sc->sc_pwrcal[i * 2 + 1] = val & 0xff;
185902ac6454SAndrew Thompson 		zyd_read16_m(sc, ZYD_EEPROM_PWR_INT + i, &val);
186002ac6454SAndrew Thompson 		sc->sc_pwrint[i * 2] = val >> 8;
186102ac6454SAndrew Thompson 		sc->sc_pwrint[i * 2 + 1] = val & 0xff;
186202ac6454SAndrew Thompson 		zyd_read16_m(sc, ZYD_EEPROM_36M_CAL + i, &val);
186302ac6454SAndrew Thompson 		sc->sc_ofdm36_cal[i * 2] = val >> 8;
186402ac6454SAndrew Thompson 		sc->sc_ofdm36_cal[i * 2 + 1] = val & 0xff;
186502ac6454SAndrew Thompson 		zyd_read16_m(sc, ZYD_EEPROM_48M_CAL + i, &val);
186602ac6454SAndrew Thompson 		sc->sc_ofdm48_cal[i * 2] = val >> 8;
186702ac6454SAndrew Thompson 		sc->sc_ofdm48_cal[i * 2 + 1] = val & 0xff;
186802ac6454SAndrew Thompson 		zyd_read16_m(sc, ZYD_EEPROM_54M_CAL + i, &val);
186902ac6454SAndrew Thompson 		sc->sc_ofdm54_cal[i * 2] = val >> 8;
187002ac6454SAndrew Thompson 		sc->sc_ofdm54_cal[i * 2 + 1] = val & 0xff;
187102ac6454SAndrew Thompson 	}
187202ac6454SAndrew Thompson fail:
187302ac6454SAndrew Thompson 	return (error);
187402ac6454SAndrew Thompson }
187502ac6454SAndrew Thompson 
187602ac6454SAndrew Thompson static int
187702ac6454SAndrew Thompson zyd_get_macaddr(struct zyd_softc *sc)
187802ac6454SAndrew Thompson {
1879760bc48eSAndrew Thompson 	struct usb_device_request req;
188002ac6454SAndrew Thompson 	usb2_error_t error;
188102ac6454SAndrew Thompson 
188202ac6454SAndrew Thompson 	req.bmRequestType = UT_READ_VENDOR_DEVICE;
188302ac6454SAndrew Thompson 	req.bRequest = ZYD_READFWDATAREQ;
188402ac6454SAndrew Thompson 	USETW(req.wValue, ZYD_EEPROM_MAC_ADDR_P1);
188502ac6454SAndrew Thompson 	USETW(req.wIndex, 0);
188602ac6454SAndrew Thompson 	USETW(req.wLength, IEEE80211_ADDR_LEN);
188702ac6454SAndrew Thompson 
188802ac6454SAndrew Thompson 	error = zyd_do_request(sc, &req, sc->sc_bssid);
188902ac6454SAndrew Thompson 	if (error != 0) {
189002ac6454SAndrew Thompson 		device_printf(sc->sc_dev, "could not read EEPROM: %s\n",
189102ac6454SAndrew Thompson 		    usb2_errstr(error));
189202ac6454SAndrew Thompson 	}
189302ac6454SAndrew Thompson 
189402ac6454SAndrew Thompson 	return (error);
189502ac6454SAndrew Thompson }
189602ac6454SAndrew Thompson 
189702ac6454SAndrew Thompson static int
189802ac6454SAndrew Thompson zyd_set_macaddr(struct zyd_softc *sc, const uint8_t *addr)
189902ac6454SAndrew Thompson {
190002ac6454SAndrew Thompson 	int error;
190102ac6454SAndrew Thompson 	uint32_t tmp;
190202ac6454SAndrew Thompson 
190302ac6454SAndrew Thompson 	tmp = addr[3] << 24 | addr[2] << 16 | addr[1] << 8 | addr[0];
190402ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_MACADRL, tmp);
190502ac6454SAndrew Thompson 	tmp = addr[5] << 8 | addr[4];
190602ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_MACADRH, tmp);
190702ac6454SAndrew Thompson fail:
190802ac6454SAndrew Thompson 	return (error);
190902ac6454SAndrew Thompson }
191002ac6454SAndrew Thompson 
191102ac6454SAndrew Thompson static int
191202ac6454SAndrew Thompson zyd_set_bssid(struct zyd_softc *sc, const uint8_t *addr)
191302ac6454SAndrew Thompson {
191402ac6454SAndrew Thompson 	int error;
191502ac6454SAndrew Thompson 	uint32_t tmp;
191602ac6454SAndrew Thompson 
191702ac6454SAndrew Thompson 	tmp = addr[3] << 24 | addr[2] << 16 | addr[1] << 8 | addr[0];
191802ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_BSSADRL, tmp);
191902ac6454SAndrew Thompson 	tmp = addr[5] << 8 | addr[4];
192002ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_BSSADRH, tmp);
192102ac6454SAndrew Thompson fail:
192202ac6454SAndrew Thompson 	return (error);
192302ac6454SAndrew Thompson }
192402ac6454SAndrew Thompson 
192502ac6454SAndrew Thompson static int
192602ac6454SAndrew Thompson zyd_switch_radio(struct zyd_softc *sc, int on)
192702ac6454SAndrew Thompson {
192802ac6454SAndrew Thompson 	struct zyd_rf *rf = &sc->sc_rf;
192902ac6454SAndrew Thompson 	int error;
193002ac6454SAndrew Thompson 
193102ac6454SAndrew Thompson 	error = zyd_lock_phy(sc);
193202ac6454SAndrew Thompson 	if (error != 0)
193302ac6454SAndrew Thompson 		goto fail;
193402ac6454SAndrew Thompson 	error = (*rf->switch_radio)(rf, on);
193502ac6454SAndrew Thompson 	if (error != 0)
193602ac6454SAndrew Thompson 		goto fail;
193702ac6454SAndrew Thompson 	error = zyd_unlock_phy(sc);
193802ac6454SAndrew Thompson fail:
193902ac6454SAndrew Thompson 	return (error);
194002ac6454SAndrew Thompson }
194102ac6454SAndrew Thompson 
194202ac6454SAndrew Thompson static int
194302ac6454SAndrew Thompson zyd_set_led(struct zyd_softc *sc, int which, int on)
194402ac6454SAndrew Thompson {
194502ac6454SAndrew Thompson 	int error;
194602ac6454SAndrew Thompson 	uint32_t tmp;
194702ac6454SAndrew Thompson 
194802ac6454SAndrew Thompson 	zyd_read32_m(sc, ZYD_MAC_TX_PE_CONTROL, &tmp);
194902ac6454SAndrew Thompson 	tmp &= ~which;
195002ac6454SAndrew Thompson 	if (on)
195102ac6454SAndrew Thompson 		tmp |= which;
195202ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_TX_PE_CONTROL, tmp);
195302ac6454SAndrew Thompson fail:
195402ac6454SAndrew Thompson 	return (error);
195502ac6454SAndrew Thompson }
195602ac6454SAndrew Thompson 
195702ac6454SAndrew Thompson static void
195802ac6454SAndrew Thompson zyd_set_multi(struct zyd_softc *sc)
195902ac6454SAndrew Thompson {
196002ac6454SAndrew Thompson 	int error;
196102ac6454SAndrew Thompson 	struct ifnet *ifp = sc->sc_ifp;
196202ac6454SAndrew Thompson 	struct ieee80211com *ic = ifp->if_l2com;
196302ac6454SAndrew Thompson 	struct ifmultiaddr *ifma;
196402ac6454SAndrew Thompson 	uint32_t low, high;
196502ac6454SAndrew Thompson 	uint8_t v;
196602ac6454SAndrew Thompson 
196702ac6454SAndrew Thompson 	if ((ifp->if_drv_flags & IFF_DRV_RUNNING) == 0)
196802ac6454SAndrew Thompson 		return;
196902ac6454SAndrew Thompson 
197002ac6454SAndrew Thompson 	low = 0x00000000;
197102ac6454SAndrew Thompson 	high = 0x80000000;
197202ac6454SAndrew Thompson 
197302ac6454SAndrew Thompson 	if (ic->ic_opmode == IEEE80211_M_MONITOR ||
197402ac6454SAndrew Thompson 	    (ifp->if_flags & (IFF_ALLMULTI | IFF_PROMISC))) {
197502ac6454SAndrew Thompson 		low = 0xffffffff;
197602ac6454SAndrew Thompson 		high = 0xffffffff;
197702ac6454SAndrew Thompson 	} else {
197802ac6454SAndrew Thompson 		IF_ADDR_LOCK(ifp);
197902ac6454SAndrew Thompson 		TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) {
198002ac6454SAndrew Thompson 			if (ifma->ifma_addr->sa_family != AF_LINK)
198102ac6454SAndrew Thompson 				continue;
198202ac6454SAndrew Thompson 			v = ((uint8_t *)LLADDR((struct sockaddr_dl *)
198302ac6454SAndrew Thompson 			    ifma->ifma_addr))[5] >> 2;
198402ac6454SAndrew Thompson 			if (v < 32)
198502ac6454SAndrew Thompson 				low |= 1 << v;
198602ac6454SAndrew Thompson 			else
198702ac6454SAndrew Thompson 				high |= 1 << (v - 32);
198802ac6454SAndrew Thompson 		}
198902ac6454SAndrew Thompson 		IF_ADDR_UNLOCK(ifp);
199002ac6454SAndrew Thompson 	}
199102ac6454SAndrew Thompson 
199202ac6454SAndrew Thompson 	/* reprogram multicast global hash table */
199302ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_GHTBL, low);
199402ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_GHTBH, high);
199502ac6454SAndrew Thompson fail:
199602ac6454SAndrew Thompson 	if (error != 0)
199702ac6454SAndrew Thompson 		device_printf(sc->sc_dev,
199802ac6454SAndrew Thompson 		    "could not set multicast hash table\n");
199902ac6454SAndrew Thompson }
200002ac6454SAndrew Thompson 
200102ac6454SAndrew Thompson static void
200202ac6454SAndrew Thompson zyd_update_mcast(struct ifnet *ifp)
200302ac6454SAndrew Thompson {
200402ac6454SAndrew Thompson 	struct zyd_softc *sc = ifp->if_softc;
200502ac6454SAndrew Thompson 
200602ac6454SAndrew Thompson 	if ((ifp->if_drv_flags & IFF_DRV_RUNNING) == 0)
200702ac6454SAndrew Thompson 		return;
200802ac6454SAndrew Thompson 
200902ac6454SAndrew Thompson 	ZYD_LOCK(sc);
20105efea30fSAndrew Thompson 	zyd_set_multi(sc);
201102ac6454SAndrew Thompson 	ZYD_UNLOCK(sc);
201202ac6454SAndrew Thompson }
201302ac6454SAndrew Thompson 
201402ac6454SAndrew Thompson static int
201502ac6454SAndrew Thompson zyd_set_rxfilter(struct zyd_softc *sc)
201602ac6454SAndrew Thompson {
201702ac6454SAndrew Thompson 	struct ifnet *ifp = sc->sc_ifp;
201802ac6454SAndrew Thompson 	struct ieee80211com *ic = ifp->if_l2com;
201902ac6454SAndrew Thompson 	uint32_t rxfilter;
202002ac6454SAndrew Thompson 
202102ac6454SAndrew Thompson 	switch (ic->ic_opmode) {
202202ac6454SAndrew Thompson 	case IEEE80211_M_STA:
202302ac6454SAndrew Thompson 		rxfilter = ZYD_FILTER_BSS;
202402ac6454SAndrew Thompson 		break;
202502ac6454SAndrew Thompson 	case IEEE80211_M_IBSS:
202602ac6454SAndrew Thompson 	case IEEE80211_M_HOSTAP:
202702ac6454SAndrew Thompson 		rxfilter = ZYD_FILTER_HOSTAP;
202802ac6454SAndrew Thompson 		break;
202902ac6454SAndrew Thompson 	case IEEE80211_M_MONITOR:
203002ac6454SAndrew Thompson 		rxfilter = ZYD_FILTER_MONITOR;
203102ac6454SAndrew Thompson 		break;
203202ac6454SAndrew Thompson 	default:
203302ac6454SAndrew Thompson 		/* should not get there */
203402ac6454SAndrew Thompson 		return (EINVAL);
203502ac6454SAndrew Thompson 	}
203602ac6454SAndrew Thompson 	return zyd_write32(sc, ZYD_MAC_RXFILTER, rxfilter);
203702ac6454SAndrew Thompson }
203802ac6454SAndrew Thompson 
203902ac6454SAndrew Thompson static void
204002ac6454SAndrew Thompson zyd_set_chan(struct zyd_softc *sc, struct ieee80211_channel *c)
204102ac6454SAndrew Thompson {
204202ac6454SAndrew Thompson 	int error;
204302ac6454SAndrew Thompson 	struct ifnet *ifp = sc->sc_ifp;
204402ac6454SAndrew Thompson 	struct ieee80211com *ic = ifp->if_l2com;
204502ac6454SAndrew Thompson 	struct zyd_rf *rf = &sc->sc_rf;
204602ac6454SAndrew Thompson 	uint32_t tmp;
204702ac6454SAndrew Thompson 	int chan;
204802ac6454SAndrew Thompson 
204902ac6454SAndrew Thompson 	chan = ieee80211_chan2ieee(ic, c);
205002ac6454SAndrew Thompson 	if (chan == 0 || chan == IEEE80211_CHAN_ANY) {
205102ac6454SAndrew Thompson 		/* XXX should NEVER happen */
205202ac6454SAndrew Thompson 		device_printf(sc->sc_dev,
205302ac6454SAndrew Thompson 		    "%s: invalid channel %x\n", __func__, chan);
205402ac6454SAndrew Thompson 		return;
205502ac6454SAndrew Thompson 	}
205602ac6454SAndrew Thompson 
205702ac6454SAndrew Thompson 	error = zyd_lock_phy(sc);
205802ac6454SAndrew Thompson 	if (error != 0)
205902ac6454SAndrew Thompson 		goto fail;
206002ac6454SAndrew Thompson 
206102ac6454SAndrew Thompson 	error = (*rf->set_channel)(rf, chan);
206202ac6454SAndrew Thompson 	if (error != 0)
206302ac6454SAndrew Thompson 		goto fail;
206402ac6454SAndrew Thompson 
206502ac6454SAndrew Thompson 	/* update Tx power */
206602ac6454SAndrew Thompson 	zyd_write16_m(sc, ZYD_CR31, sc->sc_pwrint[chan - 1]);
206702ac6454SAndrew Thompson 
206802ac6454SAndrew Thompson 	if (sc->sc_macrev == ZYD_ZD1211B) {
206902ac6454SAndrew Thompson 		zyd_write16_m(sc, ZYD_CR67, sc->sc_ofdm36_cal[chan - 1]);
207002ac6454SAndrew Thompson 		zyd_write16_m(sc, ZYD_CR66, sc->sc_ofdm48_cal[chan - 1]);
207102ac6454SAndrew Thompson 		zyd_write16_m(sc, ZYD_CR65, sc->sc_ofdm54_cal[chan - 1]);
207202ac6454SAndrew Thompson 		zyd_write16_m(sc, ZYD_CR68, sc->sc_pwrcal[chan - 1]);
207302ac6454SAndrew Thompson 		zyd_write16_m(sc, ZYD_CR69, 0x28);
207402ac6454SAndrew Thompson 		zyd_write16_m(sc, ZYD_CR69, 0x2a);
207502ac6454SAndrew Thompson 	}
207602ac6454SAndrew Thompson 	if (sc->sc_cckgain) {
207702ac6454SAndrew Thompson 		/* set CCK baseband gain from EEPROM */
207802ac6454SAndrew Thompson 		if (zyd_read32(sc, ZYD_EEPROM_PHY_REG, &tmp) == 0)
207902ac6454SAndrew Thompson 			zyd_write16_m(sc, ZYD_CR47, tmp & 0xff);
208002ac6454SAndrew Thompson 	}
208102ac6454SAndrew Thompson 	if (sc->sc_bandedge6 && rf->bandedge6 != NULL) {
208202ac6454SAndrew Thompson 		error = (*rf->bandedge6)(rf, c);
208302ac6454SAndrew Thompson 		if (error != 0)
208402ac6454SAndrew Thompson 			goto fail;
208502ac6454SAndrew Thompson 	}
208602ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_CONFIG_PHILIPS, 0);
208702ac6454SAndrew Thompson 
208802ac6454SAndrew Thompson 	error = zyd_unlock_phy(sc);
208902ac6454SAndrew Thompson 	if (error != 0)
209002ac6454SAndrew Thompson 		goto fail;
209102ac6454SAndrew Thompson 
209202ac6454SAndrew Thompson 	sc->sc_rxtap.wr_chan_freq = sc->sc_txtap.wt_chan_freq =
209302ac6454SAndrew Thompson 	    htole16(c->ic_freq);
209402ac6454SAndrew Thompson 	sc->sc_rxtap.wr_chan_flags = sc->sc_txtap.wt_chan_flags =
209502ac6454SAndrew Thompson 	    htole16(c->ic_flags);
209602ac6454SAndrew Thompson fail:
209702ac6454SAndrew Thompson 	return;
209802ac6454SAndrew Thompson }
209902ac6454SAndrew Thompson 
210002ac6454SAndrew Thompson static int
210102ac6454SAndrew Thompson zyd_set_beacon_interval(struct zyd_softc *sc, int bintval)
210202ac6454SAndrew Thompson {
210302ac6454SAndrew Thompson 	int error;
210402ac6454SAndrew Thompson 	uint32_t val;
210502ac6454SAndrew Thompson 
210602ac6454SAndrew Thompson 	zyd_read32_m(sc, ZYD_CR_ATIM_WND_PERIOD, &val);
210702ac6454SAndrew Thompson 	sc->sc_atim_wnd = val;
210802ac6454SAndrew Thompson 	zyd_read32_m(sc, ZYD_CR_PRE_TBTT, &val);
210902ac6454SAndrew Thompson 	sc->sc_pre_tbtt = val;
211002ac6454SAndrew Thompson 	sc->sc_bcn_int = bintval;
211102ac6454SAndrew Thompson 
211202ac6454SAndrew Thompson 	if (sc->sc_bcn_int <= 5)
211302ac6454SAndrew Thompson 		sc->sc_bcn_int = 5;
211402ac6454SAndrew Thompson 	if (sc->sc_pre_tbtt < 4 || sc->sc_pre_tbtt >= sc->sc_bcn_int)
211502ac6454SAndrew Thompson 		sc->sc_pre_tbtt = sc->sc_bcn_int - 1;
211602ac6454SAndrew Thompson 	if (sc->sc_atim_wnd >= sc->sc_pre_tbtt)
211702ac6454SAndrew Thompson 		sc->sc_atim_wnd = sc->sc_pre_tbtt - 1;
211802ac6454SAndrew Thompson 
211902ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_ATIM_WND_PERIOD, sc->sc_atim_wnd);
212002ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_PRE_TBTT, sc->sc_pre_tbtt);
212102ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_BCN_INTERVAL, sc->sc_bcn_int);
212202ac6454SAndrew Thompson fail:
212302ac6454SAndrew Thompson 	return (error);
212402ac6454SAndrew Thompson }
212502ac6454SAndrew Thompson 
212602ac6454SAndrew Thompson static void
2127760bc48eSAndrew Thompson zyd_rx_data(struct usb_xfer *xfer, int offset, uint16_t len)
212802ac6454SAndrew Thompson {
212902ac6454SAndrew Thompson 	struct zyd_softc *sc = xfer->priv_sc;
213002ac6454SAndrew Thompson 	struct ifnet *ifp = sc->sc_ifp;
21315463c4a4SSam Leffler 	struct ieee80211com *ic = ifp->if_l2com;
213202ac6454SAndrew Thompson 	struct zyd_plcphdr plcp;
213302ac6454SAndrew Thompson 	struct zyd_rx_stat stat;
213402ac6454SAndrew Thompson 	struct mbuf *m;
213502ac6454SAndrew Thompson 	int rlen, rssi;
213602ac6454SAndrew Thompson 
213702ac6454SAndrew Thompson 	if (len < ZYD_MIN_FRAGSZ) {
213802ac6454SAndrew Thompson 		DPRINTF(sc, ZYD_DEBUG_RECV, "%s: frame too short (length=%d)\n",
213902ac6454SAndrew Thompson 		    device_get_nameunit(sc->sc_dev), len);
214002ac6454SAndrew Thompson 		ifp->if_ierrors++;
214102ac6454SAndrew Thompson 		return;
214202ac6454SAndrew Thompson 	}
214302ac6454SAndrew Thompson 	usb2_copy_out(xfer->frbuffers, offset, &plcp, sizeof(plcp));
214402ac6454SAndrew Thompson 	usb2_copy_out(xfer->frbuffers, offset + len - sizeof(stat),
214502ac6454SAndrew Thompson 	    &stat, sizeof(stat));
214602ac6454SAndrew Thompson 
214702ac6454SAndrew Thompson 	if (stat.flags & ZYD_RX_ERROR) {
214802ac6454SAndrew Thompson 		DPRINTF(sc, ZYD_DEBUG_RECV,
214902ac6454SAndrew Thompson 		    "%s: RX status indicated error (%x)\n",
215002ac6454SAndrew Thompson 		    device_get_nameunit(sc->sc_dev), stat.flags);
215102ac6454SAndrew Thompson 		ifp->if_ierrors++;
215202ac6454SAndrew Thompson 		return;
215302ac6454SAndrew Thompson 	}
215402ac6454SAndrew Thompson 
215502ac6454SAndrew Thompson 	/* compute actual frame length */
215602ac6454SAndrew Thompson 	rlen = len - sizeof(struct zyd_plcphdr) -
215702ac6454SAndrew Thompson 	    sizeof(struct zyd_rx_stat) - IEEE80211_CRC_LEN;
215802ac6454SAndrew Thompson 
215902ac6454SAndrew Thompson 	/* allocate a mbuf to store the frame */
216002ac6454SAndrew Thompson 	if (rlen > MCLBYTES) {
216102ac6454SAndrew Thompson 		DPRINTF(sc, ZYD_DEBUG_RECV, "%s: frame too long (length=%d)\n",
216202ac6454SAndrew Thompson 		    device_get_nameunit(sc->sc_dev), rlen);
216302ac6454SAndrew Thompson 		ifp->if_ierrors++;
216402ac6454SAndrew Thompson 		return;
216502ac6454SAndrew Thompson 	} else if (rlen > MHLEN)
216602ac6454SAndrew Thompson 		m = m_getcl(M_DONTWAIT, MT_DATA, M_PKTHDR);
216702ac6454SAndrew Thompson 	else
216802ac6454SAndrew Thompson 		m = m_gethdr(M_DONTWAIT, MT_DATA);
216902ac6454SAndrew Thompson 	if (m == NULL) {
217002ac6454SAndrew Thompson 		DPRINTF(sc, ZYD_DEBUG_RECV, "%s: could not allocate rx mbuf\n",
217102ac6454SAndrew Thompson 		    device_get_nameunit(sc->sc_dev));
217202ac6454SAndrew Thompson 		ifp->if_ierrors++;
217302ac6454SAndrew Thompson 		return;
217402ac6454SAndrew Thompson 	}
217502ac6454SAndrew Thompson 	m->m_pkthdr.rcvif = ifp;
217602ac6454SAndrew Thompson 	m->m_pkthdr.len = m->m_len = rlen;
217702ac6454SAndrew Thompson 	usb2_copy_out(xfer->frbuffers, offset + sizeof(plcp),
217802ac6454SAndrew Thompson 	    mtod(m, uint8_t *), rlen);
217902ac6454SAndrew Thompson 
21805463c4a4SSam Leffler 	if (ieee80211_radiotap_active(ic)) {
218102ac6454SAndrew Thompson 		struct zyd_rx_radiotap_header *tap = &sc->sc_rxtap;
218202ac6454SAndrew Thompson 
218302ac6454SAndrew Thompson 		tap->wr_flags = 0;
218402ac6454SAndrew Thompson 		if (stat.flags & (ZYD_RX_BADCRC16 | ZYD_RX_BADCRC32))
218502ac6454SAndrew Thompson 			tap->wr_flags |= IEEE80211_RADIOTAP_F_BADFCS;
218602ac6454SAndrew Thompson 		/* XXX toss, no way to express errors */
218702ac6454SAndrew Thompson 		if (stat.flags & ZYD_RX_DECRYPTERR)
218802ac6454SAndrew Thompson 			tap->wr_flags |= IEEE80211_RADIOTAP_F_BADFCS;
218902ac6454SAndrew Thompson 		tap->wr_rate = ieee80211_plcp2rate(plcp.signal,
219002ac6454SAndrew Thompson 		    (stat.flags & ZYD_RX_OFDM) ?
219102ac6454SAndrew Thompson 			IEEE80211_T_OFDM : IEEE80211_T_CCK);
219202ac6454SAndrew Thompson 		tap->wr_antsignal = stat.rssi + -95;
219302ac6454SAndrew Thompson 		tap->wr_antnoise = -95;	/* XXX */
219402ac6454SAndrew Thompson 	}
219502ac6454SAndrew Thompson 	rssi = (stat.rssi > 63) ? 127 : 2 * stat.rssi;
219602ac6454SAndrew Thompson 
219702ac6454SAndrew Thompson 	sc->sc_rx_data[sc->sc_rx_count].rssi = rssi;
219802ac6454SAndrew Thompson 	sc->sc_rx_data[sc->sc_rx_count].m = m;
219902ac6454SAndrew Thompson 	sc->sc_rx_count++;
220002ac6454SAndrew Thompson }
220102ac6454SAndrew Thompson 
220202ac6454SAndrew Thompson static void
2203760bc48eSAndrew Thompson zyd_bulk_read_callback(struct usb_xfer *xfer)
220402ac6454SAndrew Thompson {
220502ac6454SAndrew Thompson 	struct zyd_softc *sc = xfer->priv_sc;
220602ac6454SAndrew Thompson 	struct ifnet *ifp = sc->sc_ifp;
220702ac6454SAndrew Thompson 	struct ieee80211com *ic = ifp->if_l2com;
220802ac6454SAndrew Thompson 	struct ieee80211_node *ni;
220902ac6454SAndrew Thompson 	struct zyd_rx_desc desc;
221002ac6454SAndrew Thompson 	struct mbuf *m;
221102ac6454SAndrew Thompson 	uint32_t offset;
221202ac6454SAndrew Thompson 	uint8_t rssi;
221302ac6454SAndrew Thompson 	int8_t nf;
221402ac6454SAndrew Thompson 	int i;
221502ac6454SAndrew Thompson 
221602ac6454SAndrew Thompson 	sc->sc_rx_count = 0;
221702ac6454SAndrew Thompson 	switch (USB_GET_STATE(xfer)) {
221802ac6454SAndrew Thompson 	case USB_ST_TRANSFERRED:
221902ac6454SAndrew Thompson 		usb2_copy_out(xfer->frbuffers, xfer->actlen - sizeof(desc),
222002ac6454SAndrew Thompson 		    &desc, sizeof(desc));
222102ac6454SAndrew Thompson 
222202ac6454SAndrew Thompson 		offset = 0;
222302ac6454SAndrew Thompson 		if (UGETW(desc.tag) == ZYD_TAG_MULTIFRAME) {
222402ac6454SAndrew Thompson 			DPRINTF(sc, ZYD_DEBUG_RECV,
222502ac6454SAndrew Thompson 			    "%s: received multi-frame transfer\n", __func__);
222602ac6454SAndrew Thompson 
222702ac6454SAndrew Thompson 			for (i = 0; i < ZYD_MAX_RXFRAMECNT; i++) {
222802ac6454SAndrew Thompson 				uint16_t len16 = UGETW(desc.len[i]);
222902ac6454SAndrew Thompson 
223002ac6454SAndrew Thompson 				if (len16 == 0 || len16 > xfer->actlen)
223102ac6454SAndrew Thompson 					break;
223202ac6454SAndrew Thompson 
223302ac6454SAndrew Thompson 				zyd_rx_data(xfer, offset, len16);
223402ac6454SAndrew Thompson 
223502ac6454SAndrew Thompson 				/* next frame is aligned on a 32-bit boundary */
223602ac6454SAndrew Thompson 				len16 = (len16 + 3) & ~3;
223702ac6454SAndrew Thompson 				offset += len16;
223802ac6454SAndrew Thompson 				if (len16 > xfer->actlen)
223902ac6454SAndrew Thompson 					break;
224002ac6454SAndrew Thompson 				xfer->actlen -= len16;
224102ac6454SAndrew Thompson 			}
224202ac6454SAndrew Thompson 		} else {
224302ac6454SAndrew Thompson 			DPRINTF(sc, ZYD_DEBUG_RECV,
224402ac6454SAndrew Thompson 			    "%s: received single-frame transfer\n", __func__);
224502ac6454SAndrew Thompson 
224602ac6454SAndrew Thompson 			zyd_rx_data(xfer, 0, xfer->actlen);
224702ac6454SAndrew Thompson 		}
224802ac6454SAndrew Thompson 		/* FALLTHROUGH */
224902ac6454SAndrew Thompson 	case USB_ST_SETUP:
225002ac6454SAndrew Thompson tr_setup:
225102ac6454SAndrew Thompson 		xfer->frlengths[0] = xfer->max_data_length;
225202ac6454SAndrew Thompson 		usb2_start_hardware(xfer);
225302ac6454SAndrew Thompson 
225402ac6454SAndrew Thompson 		/*
225502ac6454SAndrew Thompson 		 * At the end of a USB callback it is always safe to unlock
225602ac6454SAndrew Thompson 		 * the private mutex of a device! That is why we do the
225702ac6454SAndrew Thompson 		 * "ieee80211_input" here, and not some lines up!
225802ac6454SAndrew Thompson 		 */
225902ac6454SAndrew Thompson 		ZYD_UNLOCK(sc);
226002ac6454SAndrew Thompson 		for (i = 0; i < sc->sc_rx_count; i++) {
226102ac6454SAndrew Thompson 			rssi = sc->sc_rx_data[i].rssi;
226202ac6454SAndrew Thompson 			m = sc->sc_rx_data[i].m;
226302ac6454SAndrew Thompson 			sc->sc_rx_data[i].m = NULL;
226402ac6454SAndrew Thompson 
226502ac6454SAndrew Thompson 			nf = -95;	/* XXX */
226602ac6454SAndrew Thompson 
226702ac6454SAndrew Thompson 			ni = ieee80211_find_rxnode(ic,
226802ac6454SAndrew Thompson 			    mtod(m, struct ieee80211_frame_min *));
226902ac6454SAndrew Thompson 			if (ni != NULL) {
22705463c4a4SSam Leffler 				(void)ieee80211_input(ni, m, rssi, nf);
227102ac6454SAndrew Thompson 				ieee80211_free_node(ni);
227202ac6454SAndrew Thompson 			} else
22735463c4a4SSam Leffler 				(void)ieee80211_input_all(ic, m, rssi, nf);
227402ac6454SAndrew Thompson 		}
227502ac6454SAndrew Thompson 		ZYD_LOCK(sc);
227602ac6454SAndrew Thompson 		break;
227702ac6454SAndrew Thompson 
227802ac6454SAndrew Thompson 	default:			/* Error */
227902ac6454SAndrew Thompson 		DPRINTF(sc, ZYD_DEBUG_ANY, "frame error: %s\n", usb2_errstr(xfer->error));
228002ac6454SAndrew Thompson 
228102ac6454SAndrew Thompson 		if (xfer->error != USB_ERR_CANCELLED) {
228202ac6454SAndrew Thompson 			/* try to clear stall first */
228302ac6454SAndrew Thompson 			xfer->flags.stall_pipe = 1;
228402ac6454SAndrew Thompson 			goto tr_setup;
228502ac6454SAndrew Thompson 		}
228602ac6454SAndrew Thompson 		break;
228702ac6454SAndrew Thompson 	}
228802ac6454SAndrew Thompson }
228902ac6454SAndrew Thompson 
229002ac6454SAndrew Thompson static uint8_t
229102ac6454SAndrew Thompson zyd_plcp_signal(int rate)
229202ac6454SAndrew Thompson {
229302ac6454SAndrew Thompson 	switch (rate) {
229402ac6454SAndrew Thompson 	/* OFDM rates (cf IEEE Std 802.11a-1999, pp. 14 Table 80) */
229502ac6454SAndrew Thompson 	case 12:
229602ac6454SAndrew Thompson 		return (0xb);
229702ac6454SAndrew Thompson 	case 18:
229802ac6454SAndrew Thompson 		return (0xf);
229902ac6454SAndrew Thompson 	case 24:
230002ac6454SAndrew Thompson 		return (0xa);
230102ac6454SAndrew Thompson 	case 36:
230202ac6454SAndrew Thompson 		return (0xe);
230302ac6454SAndrew Thompson 	case 48:
230402ac6454SAndrew Thompson 		return (0x9);
230502ac6454SAndrew Thompson 	case 72:
230602ac6454SAndrew Thompson 		return (0xd);
230702ac6454SAndrew Thompson 	case 96:
230802ac6454SAndrew Thompson 		return (0x8);
230902ac6454SAndrew Thompson 	case 108:
231002ac6454SAndrew Thompson 		return (0xc);
231102ac6454SAndrew Thompson 	/* CCK rates (NB: not IEEE std, device-specific) */
231202ac6454SAndrew Thompson 	case 2:
231302ac6454SAndrew Thompson 		return (0x0);
231402ac6454SAndrew Thompson 	case 4:
231502ac6454SAndrew Thompson 		return (0x1);
231602ac6454SAndrew Thompson 	case 11:
231702ac6454SAndrew Thompson 		return (0x2);
231802ac6454SAndrew Thompson 	case 22:
231902ac6454SAndrew Thompson 		return (0x3);
232002ac6454SAndrew Thompson 	}
232102ac6454SAndrew Thompson 	return (0xff);		/* XXX unsupported/unknown rate */
232202ac6454SAndrew Thompson }
232302ac6454SAndrew Thompson 
232402ac6454SAndrew Thompson static int
232502ac6454SAndrew Thompson zyd_tx_mgt(struct zyd_softc *sc, struct mbuf *m0, struct ieee80211_node *ni)
232602ac6454SAndrew Thompson {
232702ac6454SAndrew Thompson 	struct ieee80211vap *vap = ni->ni_vap;
232802ac6454SAndrew Thompson 	struct ieee80211com *ic = ni->ni_ic;
232902ac6454SAndrew Thompson 	struct zyd_tx_desc *desc;
233002ac6454SAndrew Thompson 	struct zyd_tx_data *data;
233102ac6454SAndrew Thompson 	struct ieee80211_frame *wh;
233202ac6454SAndrew Thompson 	struct ieee80211_key *k;
233302ac6454SAndrew Thompson 	int rate, totlen;
233402ac6454SAndrew Thompson 	uint16_t pktlen;
233502ac6454SAndrew Thompson 
233602ac6454SAndrew Thompson 	data = STAILQ_FIRST(&sc->tx_free);
233702ac6454SAndrew Thompson 	STAILQ_REMOVE_HEAD(&sc->tx_free, next);
233802ac6454SAndrew Thompson 	sc->tx_nfree--;
233902ac6454SAndrew Thompson 	desc = &data->desc;
234002ac6454SAndrew Thompson 
234102ac6454SAndrew Thompson 	rate = IEEE80211_IS_CHAN_5GHZ(ic->ic_curchan) ? 12 : 2;
234202ac6454SAndrew Thompson 
234302ac6454SAndrew Thompson 	wh = mtod(m0, struct ieee80211_frame *);
234402ac6454SAndrew Thompson 
234502ac6454SAndrew Thompson 	if (wh->i_fc[1] & IEEE80211_FC1_WEP) {
234602ac6454SAndrew Thompson 		k = ieee80211_crypto_encap(ni, m0);
234702ac6454SAndrew Thompson 		if (k == NULL) {
234802ac6454SAndrew Thompson 			m_freem(m0);
234902ac6454SAndrew Thompson 			return (ENOBUFS);
235002ac6454SAndrew Thompson 		}
235102ac6454SAndrew Thompson 	}
235202ac6454SAndrew Thompson 
235302ac6454SAndrew Thompson 	data->ni = ni;
235402ac6454SAndrew Thompson 	data->m = m0;
235502ac6454SAndrew Thompson 	data->rate = rate;
235602ac6454SAndrew Thompson 
235702ac6454SAndrew Thompson 	wh = mtod(m0, struct ieee80211_frame *);
235802ac6454SAndrew Thompson 
235902ac6454SAndrew Thompson 	totlen = m0->m_pkthdr.len + IEEE80211_CRC_LEN;
236002ac6454SAndrew Thompson 
236102ac6454SAndrew Thompson 	/* fill Tx descriptor */
236202ac6454SAndrew Thompson 	desc->len = htole16(totlen);
236302ac6454SAndrew Thompson 
236402ac6454SAndrew Thompson 	desc->flags = ZYD_TX_FLAG_BACKOFF;
236502ac6454SAndrew Thompson 	if (!IEEE80211_IS_MULTICAST(wh->i_addr1)) {
236602ac6454SAndrew Thompson 		/* multicast frames are not sent at OFDM rates in 802.11b/g */
236702ac6454SAndrew Thompson 		if (totlen > vap->iv_rtsthreshold) {
236802ac6454SAndrew Thompson 			desc->flags |= ZYD_TX_FLAG_RTS;
236902ac6454SAndrew Thompson 		} else if (ZYD_RATE_IS_OFDM(rate) &&
237002ac6454SAndrew Thompson 		    (ic->ic_flags & IEEE80211_F_USEPROT)) {
237102ac6454SAndrew Thompson 			if (ic->ic_protmode == IEEE80211_PROT_CTSONLY)
237202ac6454SAndrew Thompson 				desc->flags |= ZYD_TX_FLAG_CTS_TO_SELF;
237302ac6454SAndrew Thompson 			else if (ic->ic_protmode == IEEE80211_PROT_RTSCTS)
237402ac6454SAndrew Thompson 				desc->flags |= ZYD_TX_FLAG_RTS;
237502ac6454SAndrew Thompson 		}
237602ac6454SAndrew Thompson 	} else
237702ac6454SAndrew Thompson 		desc->flags |= ZYD_TX_FLAG_MULTICAST;
237802ac6454SAndrew Thompson 
237902ac6454SAndrew Thompson 	if ((wh->i_fc[0] &
238002ac6454SAndrew Thompson 	    (IEEE80211_FC0_TYPE_MASK | IEEE80211_FC0_SUBTYPE_MASK)) ==
238102ac6454SAndrew Thompson 	    (IEEE80211_FC0_TYPE_CTL | IEEE80211_FC0_SUBTYPE_PS_POLL))
238202ac6454SAndrew Thompson 		desc->flags |= ZYD_TX_FLAG_TYPE(ZYD_TX_TYPE_PS_POLL);
238302ac6454SAndrew Thompson 
238402ac6454SAndrew Thompson 	desc->phy = zyd_plcp_signal(rate);
238502ac6454SAndrew Thompson 	if (ZYD_RATE_IS_OFDM(rate)) {
238602ac6454SAndrew Thompson 		desc->phy |= ZYD_TX_PHY_OFDM;
238702ac6454SAndrew Thompson 		if (IEEE80211_IS_CHAN_5GHZ(ic->ic_curchan))
238802ac6454SAndrew Thompson 			desc->phy |= ZYD_TX_PHY_5GHZ;
238902ac6454SAndrew Thompson 	} else if (rate != 2 && (ic->ic_flags & IEEE80211_F_SHPREAMBLE))
239002ac6454SAndrew Thompson 		desc->phy |= ZYD_TX_PHY_SHPREAMBLE;
239102ac6454SAndrew Thompson 
239202ac6454SAndrew Thompson 	/* actual transmit length (XXX why +10?) */
239302ac6454SAndrew Thompson 	pktlen = ZYD_TX_DESC_SIZE + 10;
239402ac6454SAndrew Thompson 	if (sc->sc_macrev == ZYD_ZD1211)
239502ac6454SAndrew Thompson 		pktlen += totlen;
239602ac6454SAndrew Thompson 	desc->pktlen = htole16(pktlen);
239702ac6454SAndrew Thompson 
239802ac6454SAndrew Thompson 	desc->plcp_length = (16 * totlen + rate - 1) / rate;
239902ac6454SAndrew Thompson 	desc->plcp_service = 0;
240002ac6454SAndrew Thompson 	if (rate == 22) {
240102ac6454SAndrew Thompson 		const int remainder = (16 * totlen) % 22;
240202ac6454SAndrew Thompson 		if (remainder != 0 && remainder < 7)
240302ac6454SAndrew Thompson 			desc->plcp_service |= ZYD_PLCP_LENGEXT;
240402ac6454SAndrew Thompson 	}
240502ac6454SAndrew Thompson 
24065463c4a4SSam Leffler 	if (ieee80211_radiotap_active_vap(vap)) {
240702ac6454SAndrew Thompson 		struct zyd_tx_radiotap_header *tap = &sc->sc_txtap;
240802ac6454SAndrew Thompson 
240902ac6454SAndrew Thompson 		tap->wt_flags = 0;
241002ac6454SAndrew Thompson 		tap->wt_rate = rate;
241102ac6454SAndrew Thompson 
24125463c4a4SSam Leffler 		ieee80211_radiotap_tx(vap, m0);
241302ac6454SAndrew Thompson 	}
241402ac6454SAndrew Thompson 
241502ac6454SAndrew Thompson 	DPRINTF(sc, ZYD_DEBUG_XMIT,
241602ac6454SAndrew Thompson 	    "%s: sending mgt frame len=%zu rate=%u\n",
241702ac6454SAndrew Thompson 	    device_get_nameunit(sc->sc_dev), (size_t)m0->m_pkthdr.len,
241802ac6454SAndrew Thompson 		rate);
241902ac6454SAndrew Thompson 
242002ac6454SAndrew Thompson 	STAILQ_INSERT_TAIL(&sc->tx_q, data, next);
242102ac6454SAndrew Thompson 	usb2_transfer_start(sc->sc_xfer[ZYD_BULK_WR]);
242202ac6454SAndrew Thompson 
242302ac6454SAndrew Thompson 	return (0);
242402ac6454SAndrew Thompson }
242502ac6454SAndrew Thompson 
242602ac6454SAndrew Thompson static void
2427760bc48eSAndrew Thompson zyd_bulk_write_callback(struct usb_xfer *xfer)
242802ac6454SAndrew Thompson {
242902ac6454SAndrew Thompson 	struct zyd_softc *sc = xfer->priv_sc;
243002ac6454SAndrew Thompson 	struct ifnet *ifp = sc->sc_ifp;
24315463c4a4SSam Leffler 	struct ieee80211vap *vap;
243202ac6454SAndrew Thompson 	struct zyd_tx_data *data;
243302ac6454SAndrew Thompson 	struct mbuf *m;
243402ac6454SAndrew Thompson 
243502ac6454SAndrew Thompson 	switch (USB_GET_STATE(xfer)) {
243602ac6454SAndrew Thompson 	case USB_ST_TRANSFERRED:
243702ac6454SAndrew Thompson 		DPRINTF(sc, ZYD_DEBUG_ANY, "transfer complete, %u bytes\n",
243802ac6454SAndrew Thompson 		    xfer->actlen);
243902ac6454SAndrew Thompson 
244002ac6454SAndrew Thompson 		/* free resources */
244102ac6454SAndrew Thompson 		data = xfer->priv_fifo;
244202ac6454SAndrew Thompson 		zyd_tx_free(data, 0);
244302ac6454SAndrew Thompson 		xfer->priv_fifo = NULL;
244402ac6454SAndrew Thompson 
244502ac6454SAndrew Thompson 		ifp->if_opackets++;
244602ac6454SAndrew Thompson 		ifp->if_drv_flags &= ~IFF_DRV_OACTIVE;
244702ac6454SAndrew Thompson 
244802ac6454SAndrew Thompson 		/* FALLTHROUGH */
244902ac6454SAndrew Thompson 	case USB_ST_SETUP:
245002ac6454SAndrew Thompson tr_setup:
245102ac6454SAndrew Thompson 		data = STAILQ_FIRST(&sc->tx_q);
245202ac6454SAndrew Thompson 		if (data) {
245302ac6454SAndrew Thompson 			STAILQ_REMOVE_HEAD(&sc->tx_q, next);
245402ac6454SAndrew Thompson 			m = data->m;
245502ac6454SAndrew Thompson 
245602ac6454SAndrew Thompson 			if (m->m_pkthdr.len > ZYD_MAX_TXBUFSZ) {
245702ac6454SAndrew Thompson 				DPRINTF(sc, ZYD_DEBUG_ANY, "data overflow, %u bytes\n",
245802ac6454SAndrew Thompson 				    m->m_pkthdr.len);
245902ac6454SAndrew Thompson 				m->m_pkthdr.len = ZYD_MAX_TXBUFSZ;
246002ac6454SAndrew Thompson 			}
246102ac6454SAndrew Thompson 			usb2_copy_in(xfer->frbuffers, 0, &data->desc,
246202ac6454SAndrew Thompson 			    ZYD_TX_DESC_SIZE);
246302ac6454SAndrew Thompson 			usb2_m_copy_in(xfer->frbuffers, ZYD_TX_DESC_SIZE, m, 0,
246402ac6454SAndrew Thompson 			    m->m_pkthdr.len);
246502ac6454SAndrew Thompson 
24665463c4a4SSam Leffler 			vap = data->ni->ni_vap;
24675463c4a4SSam Leffler 			if (ieee80211_radiotap_active_vap(vap)) {
246802ac6454SAndrew Thompson 				struct zyd_tx_radiotap_header *tap = &sc->sc_txtap;
246902ac6454SAndrew Thompson 
247002ac6454SAndrew Thompson 				tap->wt_flags = 0;
247102ac6454SAndrew Thompson 				tap->wt_rate = data->rate;
247202ac6454SAndrew Thompson 
24735463c4a4SSam Leffler 				ieee80211_radiotap_tx(vap, m);
247402ac6454SAndrew Thompson 			}
247502ac6454SAndrew Thompson 
247602ac6454SAndrew Thompson 			xfer->frlengths[0] = ZYD_TX_DESC_SIZE + m->m_pkthdr.len;
247702ac6454SAndrew Thompson 			xfer->priv_fifo = data;
247802ac6454SAndrew Thompson 			usb2_start_hardware(xfer);
247902ac6454SAndrew Thompson 		}
248002ac6454SAndrew Thompson 		break;
248102ac6454SAndrew Thompson 
248202ac6454SAndrew Thompson 	default:			/* Error */
248302ac6454SAndrew Thompson 		DPRINTF(sc, ZYD_DEBUG_ANY, "transfer error, %s\n",
248402ac6454SAndrew Thompson 		    usb2_errstr(xfer->error));
248502ac6454SAndrew Thompson 
248602ac6454SAndrew Thompson 		ifp->if_oerrors++;
248702ac6454SAndrew Thompson 		data = xfer->priv_fifo;
248802ac6454SAndrew Thompson 		xfer->priv_fifo = NULL;
248902ac6454SAndrew Thompson 		if (data != NULL)
249002ac6454SAndrew Thompson 			zyd_tx_free(data, xfer->error);
249102ac6454SAndrew Thompson 
249202ac6454SAndrew Thompson 		if (xfer->error == USB_ERR_STALLED) {
249302ac6454SAndrew Thompson 			/* try to clear stall first */
249402ac6454SAndrew Thompson 			xfer->flags.stall_pipe = 1;
249502ac6454SAndrew Thompson 			goto tr_setup;
249602ac6454SAndrew Thompson 		}
249702ac6454SAndrew Thompson 		if (xfer->error == USB_ERR_TIMEOUT)
249802ac6454SAndrew Thompson 			device_printf(sc->sc_dev, "device timeout\n");
249902ac6454SAndrew Thompson 		break;
250002ac6454SAndrew Thompson 	}
250102ac6454SAndrew Thompson }
250202ac6454SAndrew Thompson 
250302ac6454SAndrew Thompson static int
250402ac6454SAndrew Thompson zyd_tx_data(struct zyd_softc *sc, struct mbuf *m0, struct ieee80211_node *ni)
250502ac6454SAndrew Thompson {
250602ac6454SAndrew Thompson 	struct ieee80211vap *vap = ni->ni_vap;
250702ac6454SAndrew Thompson 	struct ieee80211com *ic = ni->ni_ic;
250802ac6454SAndrew Thompson 	struct zyd_tx_desc *desc;
250902ac6454SAndrew Thompson 	struct zyd_tx_data *data;
251002ac6454SAndrew Thompson 	struct ieee80211_frame *wh;
251102ac6454SAndrew Thompson 	const struct ieee80211_txparam *tp;
251202ac6454SAndrew Thompson 	struct ieee80211_key *k;
251302ac6454SAndrew Thompson 	int rate, totlen;
251402ac6454SAndrew Thompson 	uint16_t pktlen;
251502ac6454SAndrew Thompson 
251602ac6454SAndrew Thompson 	wh = mtod(m0, struct ieee80211_frame *);
251702ac6454SAndrew Thompson 	data = STAILQ_FIRST(&sc->tx_free);
251802ac6454SAndrew Thompson 	STAILQ_REMOVE_HEAD(&sc->tx_free, next);
251902ac6454SAndrew Thompson 	sc->tx_nfree--;
252002ac6454SAndrew Thompson 	desc = &data->desc;
252102ac6454SAndrew Thompson 
252202ac6454SAndrew Thompson 	desc->flags = ZYD_TX_FLAG_BACKOFF;
252302ac6454SAndrew Thompson 	tp = &vap->iv_txparms[ieee80211_chan2mode(ni->ni_chan)];
252402ac6454SAndrew Thompson 	if (IEEE80211_IS_MULTICAST(wh->i_addr1)) {
252502ac6454SAndrew Thompson 		rate = tp->mcastrate;
252602ac6454SAndrew Thompson 		desc->flags |= ZYD_TX_FLAG_MULTICAST;
252702ac6454SAndrew Thompson 	} else if (tp->ucastrate != IEEE80211_FIXED_RATE_NONE) {
252802ac6454SAndrew Thompson 		rate = tp->ucastrate;
252902ac6454SAndrew Thompson 	} else {
253002ac6454SAndrew Thompson 		(void) ieee80211_amrr_choose(ni, &ZYD_NODE(ni)->amn);
253102ac6454SAndrew Thompson 		rate = ni->ni_txrate;
253202ac6454SAndrew Thompson 	}
253302ac6454SAndrew Thompson 
253402ac6454SAndrew Thompson 	if (wh->i_fc[1] & IEEE80211_FC1_WEP) {
253502ac6454SAndrew Thompson 		k = ieee80211_crypto_encap(ni, m0);
253602ac6454SAndrew Thompson 		if (k == NULL) {
253702ac6454SAndrew Thompson 			m_freem(m0);
253802ac6454SAndrew Thompson 			return (ENOBUFS);
253902ac6454SAndrew Thompson 		}
254002ac6454SAndrew Thompson 		/* packet header may have moved, reset our local pointer */
254102ac6454SAndrew Thompson 		wh = mtod(m0, struct ieee80211_frame *);
254202ac6454SAndrew Thompson 	}
254302ac6454SAndrew Thompson 
254402ac6454SAndrew Thompson 	data->ni = ni;
254502ac6454SAndrew Thompson 	data->m = m0;
254602ac6454SAndrew Thompson 
254702ac6454SAndrew Thompson 	totlen = m0->m_pkthdr.len + IEEE80211_CRC_LEN;
254802ac6454SAndrew Thompson 
254902ac6454SAndrew Thompson 	/* fill Tx descriptor */
255002ac6454SAndrew Thompson 	desc->len = htole16(totlen);
255102ac6454SAndrew Thompson 
255202ac6454SAndrew Thompson 	if (!IEEE80211_IS_MULTICAST(wh->i_addr1)) {
255302ac6454SAndrew Thompson 		/* multicast frames are not sent at OFDM rates in 802.11b/g */
255402ac6454SAndrew Thompson 		if (totlen > vap->iv_rtsthreshold) {
255502ac6454SAndrew Thompson 			desc->flags |= ZYD_TX_FLAG_RTS;
255602ac6454SAndrew Thompson 		} else if (ZYD_RATE_IS_OFDM(rate) &&
255702ac6454SAndrew Thompson 		    (ic->ic_flags & IEEE80211_F_USEPROT)) {
255802ac6454SAndrew Thompson 			if (ic->ic_protmode == IEEE80211_PROT_CTSONLY)
255902ac6454SAndrew Thompson 				desc->flags |= ZYD_TX_FLAG_CTS_TO_SELF;
256002ac6454SAndrew Thompson 			else if (ic->ic_protmode == IEEE80211_PROT_RTSCTS)
256102ac6454SAndrew Thompson 				desc->flags |= ZYD_TX_FLAG_RTS;
256202ac6454SAndrew Thompson 		}
256302ac6454SAndrew Thompson 	}
256402ac6454SAndrew Thompson 
256502ac6454SAndrew Thompson 	if ((wh->i_fc[0] &
256602ac6454SAndrew Thompson 	    (IEEE80211_FC0_TYPE_MASK | IEEE80211_FC0_SUBTYPE_MASK)) ==
256702ac6454SAndrew Thompson 	    (IEEE80211_FC0_TYPE_CTL | IEEE80211_FC0_SUBTYPE_PS_POLL))
256802ac6454SAndrew Thompson 		desc->flags |= ZYD_TX_FLAG_TYPE(ZYD_TX_TYPE_PS_POLL);
256902ac6454SAndrew Thompson 
257002ac6454SAndrew Thompson 	desc->phy = zyd_plcp_signal(rate);
257102ac6454SAndrew Thompson 	if (ZYD_RATE_IS_OFDM(rate)) {
257202ac6454SAndrew Thompson 		desc->phy |= ZYD_TX_PHY_OFDM;
257302ac6454SAndrew Thompson 		if (IEEE80211_IS_CHAN_5GHZ(ic->ic_curchan))
257402ac6454SAndrew Thompson 			desc->phy |= ZYD_TX_PHY_5GHZ;
257502ac6454SAndrew Thompson 	} else if (rate != 2 && (ic->ic_flags & IEEE80211_F_SHPREAMBLE))
257602ac6454SAndrew Thompson 		desc->phy |= ZYD_TX_PHY_SHPREAMBLE;
257702ac6454SAndrew Thompson 
257802ac6454SAndrew Thompson 	/* actual transmit length (XXX why +10?) */
257902ac6454SAndrew Thompson 	pktlen = sizeof(struct zyd_tx_desc) + 10;
258002ac6454SAndrew Thompson 	if (sc->sc_macrev == ZYD_ZD1211)
258102ac6454SAndrew Thompson 		pktlen += totlen;
258202ac6454SAndrew Thompson 	desc->pktlen = htole16(pktlen);
258302ac6454SAndrew Thompson 
258402ac6454SAndrew Thompson 	desc->plcp_length = (16 * totlen + rate - 1) / rate;
258502ac6454SAndrew Thompson 	desc->plcp_service = 0;
258602ac6454SAndrew Thompson 	if (rate == 22) {
258702ac6454SAndrew Thompson 		const int remainder = (16 * totlen) % 22;
258802ac6454SAndrew Thompson 		if (remainder != 0 && remainder < 7)
258902ac6454SAndrew Thompson 			desc->plcp_service |= ZYD_PLCP_LENGEXT;
259002ac6454SAndrew Thompson 	}
259102ac6454SAndrew Thompson 
259202ac6454SAndrew Thompson 	DPRINTF(sc, ZYD_DEBUG_XMIT,
259302ac6454SAndrew Thompson 	    "%s: sending data frame len=%zu rate=%u\n",
259402ac6454SAndrew Thompson 	    device_get_nameunit(sc->sc_dev), (size_t)m0->m_pkthdr.len,
259502ac6454SAndrew Thompson 		rate);
259602ac6454SAndrew Thompson 
259702ac6454SAndrew Thompson 	STAILQ_INSERT_TAIL(&sc->tx_q, data, next);
259802ac6454SAndrew Thompson 	usb2_transfer_start(sc->sc_xfer[ZYD_BULK_WR]);
259902ac6454SAndrew Thompson 
260002ac6454SAndrew Thompson 	return (0);
260102ac6454SAndrew Thompson }
260202ac6454SAndrew Thompson 
260302ac6454SAndrew Thompson static void
260402ac6454SAndrew Thompson zyd_start(struct ifnet *ifp)
260502ac6454SAndrew Thompson {
260602ac6454SAndrew Thompson 	struct zyd_softc *sc = ifp->if_softc;
260702ac6454SAndrew Thompson 	struct ieee80211_node *ni;
260802ac6454SAndrew Thompson 	struct mbuf *m;
260902ac6454SAndrew Thompson 
261002ac6454SAndrew Thompson 	ZYD_LOCK(sc);
261102ac6454SAndrew Thompson 	for (;;) {
261202ac6454SAndrew Thompson 		IFQ_DRV_DEQUEUE(&ifp->if_snd, m);
261302ac6454SAndrew Thompson 		if (m == NULL)
261402ac6454SAndrew Thompson 			break;
261502ac6454SAndrew Thompson 		if (sc->tx_nfree == 0) {
261602ac6454SAndrew Thompson 			IFQ_DRV_PREPEND(&ifp->if_snd, m);
261702ac6454SAndrew Thompson 			ifp->if_drv_flags |= IFF_DRV_OACTIVE;
261802ac6454SAndrew Thompson 			break;
261902ac6454SAndrew Thompson 		}
262002ac6454SAndrew Thompson 		ni = (struct ieee80211_node *)m->m_pkthdr.rcvif;
262102ac6454SAndrew Thompson 		if (zyd_tx_data(sc, m, ni) != 0) {
262202ac6454SAndrew Thompson 			ieee80211_free_node(ni);
262302ac6454SAndrew Thompson 			ifp->if_oerrors++;
262402ac6454SAndrew Thompson 			break;
262502ac6454SAndrew Thompson 		}
262602ac6454SAndrew Thompson 	}
262702ac6454SAndrew Thompson 	ZYD_UNLOCK(sc);
262802ac6454SAndrew Thompson }
262902ac6454SAndrew Thompson 
263002ac6454SAndrew Thompson static int
263102ac6454SAndrew Thompson zyd_raw_xmit(struct ieee80211_node *ni, struct mbuf *m,
263202ac6454SAndrew Thompson 	const struct ieee80211_bpf_params *params)
263302ac6454SAndrew Thompson {
263402ac6454SAndrew Thompson 	struct ieee80211com *ic = ni->ni_ic;
263502ac6454SAndrew Thompson 	struct ifnet *ifp = ic->ic_ifp;
263602ac6454SAndrew Thompson 	struct zyd_softc *sc = ifp->if_softc;
263702ac6454SAndrew Thompson 
263802ac6454SAndrew Thompson 	ZYD_LOCK(sc);
263902ac6454SAndrew Thompson 	/* prevent management frames from being sent if we're not ready */
264002ac6454SAndrew Thompson 	if (!(ifp->if_drv_flags & IFF_DRV_RUNNING)) {
264102ac6454SAndrew Thompson 		ZYD_UNLOCK(sc);
264202ac6454SAndrew Thompson 		m_freem(m);
264302ac6454SAndrew Thompson 		ieee80211_free_node(ni);
264402ac6454SAndrew Thompson 		return (ENETDOWN);
264502ac6454SAndrew Thompson 	}
264602ac6454SAndrew Thompson 	if (sc->tx_nfree == 0) {
264702ac6454SAndrew Thompson 		ifp->if_drv_flags |= IFF_DRV_OACTIVE;
264802ac6454SAndrew Thompson 		ZYD_UNLOCK(sc);
264902ac6454SAndrew Thompson 		m_freem(m);
265002ac6454SAndrew Thompson 		ieee80211_free_node(ni);
265102ac6454SAndrew Thompson 		return (ENOBUFS);		/* XXX */
265202ac6454SAndrew Thompson 	}
265302ac6454SAndrew Thompson 
265402ac6454SAndrew Thompson 	/*
265502ac6454SAndrew Thompson 	 * Legacy path; interpret frame contents to decide
265602ac6454SAndrew Thompson 	 * precisely how to send the frame.
265702ac6454SAndrew Thompson 	 * XXX raw path
265802ac6454SAndrew Thompson 	 */
265902ac6454SAndrew Thompson 	if (zyd_tx_mgt(sc, m, ni) != 0) {
266002ac6454SAndrew Thompson 		ZYD_UNLOCK(sc);
266102ac6454SAndrew Thompson 		ifp->if_oerrors++;
266202ac6454SAndrew Thompson 		ieee80211_free_node(ni);
266302ac6454SAndrew Thompson 		return (EIO);
266402ac6454SAndrew Thompson 	}
266502ac6454SAndrew Thompson 	ZYD_UNLOCK(sc);
266602ac6454SAndrew Thompson 	return (0);
266702ac6454SAndrew Thompson }
266802ac6454SAndrew Thompson 
266902ac6454SAndrew Thompson static int
267002ac6454SAndrew Thompson zyd_ioctl(struct ifnet *ifp, u_long cmd, caddr_t data)
267102ac6454SAndrew Thompson {
267202ac6454SAndrew Thompson 	struct zyd_softc *sc = ifp->if_softc;
267302ac6454SAndrew Thompson 	struct ieee80211com *ic = ifp->if_l2com;
267402ac6454SAndrew Thompson 	struct ifreq *ifr = (struct ifreq *) data;
267502ac6454SAndrew Thompson 	int error = 0, startall = 0;
267602ac6454SAndrew Thompson 
267702ac6454SAndrew Thompson 	switch (cmd) {
267802ac6454SAndrew Thompson 	case SIOCSIFFLAGS:
267902ac6454SAndrew Thompson 		ZYD_LOCK(sc);
268002ac6454SAndrew Thompson 		if (ifp->if_flags & IFF_UP) {
26815efea30fSAndrew Thompson 			if ((ifp->if_drv_flags & IFF_DRV_RUNNING) == 0) {
26825efea30fSAndrew Thompson 				zyd_init_locked(sc);
268302ac6454SAndrew Thompson 				startall = 1;
26845efea30fSAndrew Thompson 			} else
26855efea30fSAndrew Thompson 				zyd_set_multi(sc);
268602ac6454SAndrew Thompson 		} else {
26875efea30fSAndrew Thompson 			if (ifp->if_drv_flags & IFF_DRV_RUNNING)
26885efea30fSAndrew Thompson 				zyd_stop(sc);
268902ac6454SAndrew Thompson 		}
269002ac6454SAndrew Thompson 		ZYD_UNLOCK(sc);
269102ac6454SAndrew Thompson 		if (startall)
269202ac6454SAndrew Thompson 			ieee80211_start_all(ic);
269302ac6454SAndrew Thompson 		break;
269402ac6454SAndrew Thompson 	case SIOCGIFMEDIA:
269502ac6454SAndrew Thompson 		error = ifmedia_ioctl(ifp, ifr, &ic->ic_media, cmd);
269602ac6454SAndrew Thompson 		break;
269702ac6454SAndrew Thompson 	case SIOCGIFADDR:
269802ac6454SAndrew Thompson 		error = ether_ioctl(ifp, cmd, data);
269902ac6454SAndrew Thompson 		break;
270002ac6454SAndrew Thompson 	default:
270102ac6454SAndrew Thompson 		error = EINVAL;
270202ac6454SAndrew Thompson 		break;
270302ac6454SAndrew Thompson 	}
270402ac6454SAndrew Thompson 	return (error);
270502ac6454SAndrew Thompson }
270602ac6454SAndrew Thompson 
270702ac6454SAndrew Thompson static void
27085efea30fSAndrew Thompson zyd_init_locked(struct zyd_softc *sc)
270902ac6454SAndrew Thompson {
271002ac6454SAndrew Thompson 	struct ifnet *ifp = sc->sc_ifp;
271102ac6454SAndrew Thompson 	struct ieee80211com *ic = ifp->if_l2com;
2712760bc48eSAndrew Thompson 	struct usb_config_descriptor *cd;
271302ac6454SAndrew Thompson 	int error;
271402ac6454SAndrew Thompson 	uint32_t val;
271502ac6454SAndrew Thompson 
271602ac6454SAndrew Thompson 	ZYD_LOCK_ASSERT(sc, MA_OWNED);
271702ac6454SAndrew Thompson 
271802ac6454SAndrew Thompson 	if (!(sc->sc_flags & ZYD_FLAG_INITONCE)) {
271902ac6454SAndrew Thompson 		error = zyd_loadfirmware(sc);
272002ac6454SAndrew Thompson 		if (error != 0) {
272102ac6454SAndrew Thompson 			device_printf(sc->sc_dev,
272202ac6454SAndrew Thompson 			    "could not load firmware (error=%d)\n", error);
272302ac6454SAndrew Thompson 			goto fail;
272402ac6454SAndrew Thompson 		}
272502ac6454SAndrew Thompson 
272602ac6454SAndrew Thompson 		/* reset device */
272702ac6454SAndrew Thompson 		cd = usb2_get_config_descriptor(sc->sc_udev);
272802ac6454SAndrew Thompson 		error = usb2_req_set_config(sc->sc_udev, &sc->sc_mtx,
272902ac6454SAndrew Thompson 		    cd->bConfigurationValue);
273002ac6454SAndrew Thompson 		if (error)
273102ac6454SAndrew Thompson 			device_printf(sc->sc_dev, "reset failed, continuing\n");
273202ac6454SAndrew Thompson 
273302ac6454SAndrew Thompson 		error = zyd_hw_init(sc);
273402ac6454SAndrew Thompson 		if (error) {
273502ac6454SAndrew Thompson 			device_printf(sc->sc_dev,
273602ac6454SAndrew Thompson 			    "hardware initialization failed\n");
273702ac6454SAndrew Thompson 			goto fail;
273802ac6454SAndrew Thompson 		}
273902ac6454SAndrew Thompson 
274002ac6454SAndrew Thompson 		device_printf(sc->sc_dev,
274102ac6454SAndrew Thompson 		    "HMAC ZD1211%s, FW %02x.%02x, RF %s S%x, PA%x LED %x "
274202ac6454SAndrew Thompson 		    "BE%x NP%x Gain%x F%x\n",
274302ac6454SAndrew Thompson 		    (sc->sc_macrev == ZYD_ZD1211) ? "": "B",
274402ac6454SAndrew Thompson 		    sc->sc_fwrev >> 8, sc->sc_fwrev & 0xff,
274502ac6454SAndrew Thompson 		    zyd_rf_name(sc->sc_rfrev), sc->sc_al2230s, sc->sc_parev,
274602ac6454SAndrew Thompson 		    sc->sc_ledtype, sc->sc_bandedge6, sc->sc_newphy,
274702ac6454SAndrew Thompson 		    sc->sc_cckgain, sc->sc_fix_cr157);
274802ac6454SAndrew Thompson 
274902ac6454SAndrew Thompson 		/* read regulatory domain (currently unused) */
275002ac6454SAndrew Thompson 		zyd_read32_m(sc, ZYD_EEPROM_SUBID, &val);
275102ac6454SAndrew Thompson 		sc->sc_regdomain = val >> 16;
275202ac6454SAndrew Thompson 		DPRINTF(sc, ZYD_DEBUG_INIT, "regulatory domain %x\n",
275302ac6454SAndrew Thompson 		    sc->sc_regdomain);
275402ac6454SAndrew Thompson 
275502ac6454SAndrew Thompson 		/* we'll do software WEP decryption for now */
275602ac6454SAndrew Thompson 		DPRINTF(sc, ZYD_DEBUG_INIT, "%s: setting encryption type\n",
275702ac6454SAndrew Thompson 		    __func__);
275802ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_MAC_ENCRYPTION_TYPE, ZYD_ENC_SNIFFER);
275902ac6454SAndrew Thompson 
276002ac6454SAndrew Thompson 		sc->sc_flags |= ZYD_FLAG_INITONCE;
276102ac6454SAndrew Thompson 	}
276202ac6454SAndrew Thompson 
276302ac6454SAndrew Thompson 	if (ifp->if_drv_flags & IFF_DRV_RUNNING)
27645efea30fSAndrew Thompson 		zyd_stop(sc);
276502ac6454SAndrew Thompson 
276629aca940SSam Leffler 	DPRINTF(sc, ZYD_DEBUG_INIT, "setting MAC address to %6D\n",
276729aca940SSam Leffler 	    IF_LLADDR(ifp), ":");
276829aca940SSam Leffler 	error = zyd_set_macaddr(sc, IF_LLADDR(ifp));
276902ac6454SAndrew Thompson 	if (error != 0)
277002ac6454SAndrew Thompson 		return;
277102ac6454SAndrew Thompson 
277202ac6454SAndrew Thompson 	/* set basic rates */
277302ac6454SAndrew Thompson 	if (ic->ic_curmode == IEEE80211_MODE_11B)
277402ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_MAC_BAS_RATE, 0x0003);
277502ac6454SAndrew Thompson 	else if (ic->ic_curmode == IEEE80211_MODE_11A)
277602ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_MAC_BAS_RATE, 0x1500);
277702ac6454SAndrew Thompson 	else	/* assumes 802.11b/g */
277802ac6454SAndrew Thompson 		zyd_write32_m(sc, ZYD_MAC_BAS_RATE, 0xff0f);
277902ac6454SAndrew Thompson 
278002ac6454SAndrew Thompson 	/* promiscuous mode */
278102ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_SNIFFER, 0);
278202ac6454SAndrew Thompson 	/* multicast setup */
278302ac6454SAndrew Thompson 	zyd_set_multi(sc);
278402ac6454SAndrew Thompson 	/* set RX filter  */
278502ac6454SAndrew Thompson 	error = zyd_set_rxfilter(sc);
278602ac6454SAndrew Thompson 	if (error != 0)
278702ac6454SAndrew Thompson 		goto fail;
278802ac6454SAndrew Thompson 
278902ac6454SAndrew Thompson 	/* switch radio transmitter ON */
279002ac6454SAndrew Thompson 	error = zyd_switch_radio(sc, 1);
279102ac6454SAndrew Thompson 	if (error != 0)
279202ac6454SAndrew Thompson 		goto fail;
279302ac6454SAndrew Thompson 	/* set default BSS channel */
279402ac6454SAndrew Thompson 	zyd_set_chan(sc, ic->ic_curchan);
279502ac6454SAndrew Thompson 
279602ac6454SAndrew Thompson 	/*
279702ac6454SAndrew Thompson 	 * Allocate Tx and Rx xfer queues.
279802ac6454SAndrew Thompson 	 */
279902ac6454SAndrew Thompson 	zyd_setup_tx_list(sc);
280002ac6454SAndrew Thompson 
280102ac6454SAndrew Thompson 	/* enable interrupts */
280202ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_INTERRUPT, ZYD_HWINT_MASK);
280302ac6454SAndrew Thompson 
280402ac6454SAndrew Thompson 	ifp->if_drv_flags &= ~IFF_DRV_OACTIVE;
280502ac6454SAndrew Thompson 	ifp->if_drv_flags |= IFF_DRV_RUNNING;
280677ddf3d3SAndrew Thompson 	usb2_transfer_set_stall(sc->sc_xfer[ZYD_BULK_WR]);
280702ac6454SAndrew Thompson 	usb2_transfer_start(sc->sc_xfer[ZYD_BULK_RD]);
280802ac6454SAndrew Thompson 	usb2_transfer_start(sc->sc_xfer[ZYD_INTR_RD]);
280902ac6454SAndrew Thompson 
281002ac6454SAndrew Thompson 	return;
281102ac6454SAndrew Thompson 
28125efea30fSAndrew Thompson fail:	zyd_stop(sc);
281302ac6454SAndrew Thompson 	return;
281402ac6454SAndrew Thompson }
281502ac6454SAndrew Thompson 
281602ac6454SAndrew Thompson static void
281702ac6454SAndrew Thompson zyd_init(void *priv)
281802ac6454SAndrew Thompson {
281902ac6454SAndrew Thompson 	struct zyd_softc *sc = priv;
282002ac6454SAndrew Thompson 	struct ifnet *ifp = sc->sc_ifp;
282102ac6454SAndrew Thompson 	struct ieee80211com *ic = ifp->if_l2com;
282202ac6454SAndrew Thompson 
282302ac6454SAndrew Thompson 	ZYD_LOCK(sc);
28245efea30fSAndrew Thompson 	zyd_init_locked(sc);
282502ac6454SAndrew Thompson 	ZYD_UNLOCK(sc);
282602ac6454SAndrew Thompson 
282702ac6454SAndrew Thompson 	if (ifp->if_drv_flags & IFF_DRV_RUNNING)
282802ac6454SAndrew Thompson 		ieee80211_start_all(ic);		/* start all vap's */
282902ac6454SAndrew Thompson }
283002ac6454SAndrew Thompson 
283102ac6454SAndrew Thompson static void
28325efea30fSAndrew Thompson zyd_stop(struct zyd_softc *sc)
283302ac6454SAndrew Thompson {
283402ac6454SAndrew Thompson 	struct ifnet *ifp = sc->sc_ifp;
283502ac6454SAndrew Thompson 	int error;
283602ac6454SAndrew Thompson 
283702ac6454SAndrew Thompson 	ZYD_LOCK_ASSERT(sc, MA_OWNED);
283802ac6454SAndrew Thompson 
283902ac6454SAndrew Thompson 	ifp->if_drv_flags &= ~(IFF_DRV_RUNNING | IFF_DRV_OACTIVE);
284002ac6454SAndrew Thompson 
284102ac6454SAndrew Thompson 	/*
284202ac6454SAndrew Thompson 	 * Drain all the transfers, if not already drained:
284302ac6454SAndrew Thompson 	 */
284402ac6454SAndrew Thompson 	ZYD_UNLOCK(sc);
284502ac6454SAndrew Thompson 	usb2_transfer_drain(sc->sc_xfer[ZYD_BULK_WR]);
284602ac6454SAndrew Thompson 	usb2_transfer_drain(sc->sc_xfer[ZYD_BULK_RD]);
284702ac6454SAndrew Thompson 	ZYD_LOCK(sc);
284802ac6454SAndrew Thompson 
284902ac6454SAndrew Thompson 	zyd_unsetup_tx_list(sc);
285002ac6454SAndrew Thompson 
285102ac6454SAndrew Thompson 	/* Stop now if the device was never set up */
285202ac6454SAndrew Thompson 	if (!(sc->sc_flags & ZYD_FLAG_INITONCE))
285302ac6454SAndrew Thompson 		return;
285402ac6454SAndrew Thompson 
285502ac6454SAndrew Thompson 	/* switch radio transmitter OFF */
285602ac6454SAndrew Thompson 	error = zyd_switch_radio(sc, 0);
285702ac6454SAndrew Thompson 	if (error != 0)
285802ac6454SAndrew Thompson 		goto fail;
285902ac6454SAndrew Thompson 	/* disable Rx */
286002ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_MAC_RXFILTER, 0);
286102ac6454SAndrew Thompson 	/* disable interrupts */
286202ac6454SAndrew Thompson 	zyd_write32_m(sc, ZYD_CR_INTERRUPT, 0);
286302ac6454SAndrew Thompson 
286402ac6454SAndrew Thompson fail:
286502ac6454SAndrew Thompson 	return;
286602ac6454SAndrew Thompson }
286702ac6454SAndrew Thompson 
286802ac6454SAndrew Thompson static int
286902ac6454SAndrew Thompson zyd_loadfirmware(struct zyd_softc *sc)
287002ac6454SAndrew Thompson {
2871760bc48eSAndrew Thompson 	struct usb_device_request req;
287202ac6454SAndrew Thompson 	size_t size;
287302ac6454SAndrew Thompson 	u_char *fw;
287402ac6454SAndrew Thompson 	uint8_t stat;
287502ac6454SAndrew Thompson 	uint16_t addr;
287602ac6454SAndrew Thompson 
287702ac6454SAndrew Thompson 	if (sc->sc_flags & ZYD_FLAG_FWLOADED)
287802ac6454SAndrew Thompson 		return (0);
287902ac6454SAndrew Thompson 
288002ac6454SAndrew Thompson 	if (sc->sc_macrev == ZYD_ZD1211) {
288102ac6454SAndrew Thompson 		fw = (u_char *)zd1211_firmware;
288202ac6454SAndrew Thompson 		size = sizeof(zd1211_firmware);
288302ac6454SAndrew Thompson 	} else {
288402ac6454SAndrew Thompson 		fw = (u_char *)zd1211b_firmware;
288502ac6454SAndrew Thompson 		size = sizeof(zd1211b_firmware);
288602ac6454SAndrew Thompson 	}
288702ac6454SAndrew Thompson 
288802ac6454SAndrew Thompson 	req.bmRequestType = UT_WRITE_VENDOR_DEVICE;
288902ac6454SAndrew Thompson 	req.bRequest = ZYD_DOWNLOADREQ;
289002ac6454SAndrew Thompson 	USETW(req.wIndex, 0);
289102ac6454SAndrew Thompson 
289202ac6454SAndrew Thompson 	addr = ZYD_FIRMWARE_START_ADDR;
289302ac6454SAndrew Thompson 	while (size > 0) {
289402ac6454SAndrew Thompson 		/*
289502ac6454SAndrew Thompson 		 * When the transfer size is 4096 bytes, it is not
289602ac6454SAndrew Thompson 		 * likely to be able to transfer it.
289702ac6454SAndrew Thompson 		 * The cause is port or machine or chip?
289802ac6454SAndrew Thompson 		 */
289902ac6454SAndrew Thompson 		const int mlen = min(size, 64);
290002ac6454SAndrew Thompson 
290102ac6454SAndrew Thompson 		DPRINTF(sc, ZYD_DEBUG_FW,
290202ac6454SAndrew Thompson 		    "loading firmware block: len=%d, addr=0x%x\n", mlen, addr);
290302ac6454SAndrew Thompson 
290402ac6454SAndrew Thompson 		USETW(req.wValue, addr);
290502ac6454SAndrew Thompson 		USETW(req.wLength, mlen);
290602ac6454SAndrew Thompson 		if (zyd_do_request(sc, &req, fw) != 0)
290702ac6454SAndrew Thompson 			return (EIO);
290802ac6454SAndrew Thompson 
290902ac6454SAndrew Thompson 		addr += mlen / 2;
291002ac6454SAndrew Thompson 		fw   += mlen;
291102ac6454SAndrew Thompson 		size -= mlen;
291202ac6454SAndrew Thompson 	}
291302ac6454SAndrew Thompson 
291402ac6454SAndrew Thompson 	/* check whether the upload succeeded */
291502ac6454SAndrew Thompson 	req.bmRequestType = UT_READ_VENDOR_DEVICE;
291602ac6454SAndrew Thompson 	req.bRequest = ZYD_DOWNLOADSTS;
291702ac6454SAndrew Thompson 	USETW(req.wValue, 0);
291802ac6454SAndrew Thompson 	USETW(req.wIndex, 0);
291902ac6454SAndrew Thompson 	USETW(req.wLength, sizeof(stat));
292002ac6454SAndrew Thompson 	if (zyd_do_request(sc, &req, &stat) != 0)
292102ac6454SAndrew Thompson 		return (EIO);
292202ac6454SAndrew Thompson 
292302ac6454SAndrew Thompson 	sc->sc_flags |= ZYD_FLAG_FWLOADED;
292402ac6454SAndrew Thompson 
292502ac6454SAndrew Thompson 	return (stat & 0x80) ? (EIO) : (0);
292602ac6454SAndrew Thompson }
292702ac6454SAndrew Thompson 
292802ac6454SAndrew Thompson static void
292902ac6454SAndrew Thompson zyd_newassoc(struct ieee80211_node *ni, int isnew)
293002ac6454SAndrew Thompson {
293102ac6454SAndrew Thompson 	struct ieee80211vap *vap = ni->ni_vap;
293202ac6454SAndrew Thompson 
293302ac6454SAndrew Thompson 	ieee80211_amrr_node_init(&ZYD_VAP(vap)->amrr, &ZYD_NODE(ni)->amn, ni);
293402ac6454SAndrew Thompson }
293502ac6454SAndrew Thompson 
293602ac6454SAndrew Thompson static void
293702ac6454SAndrew Thompson zyd_scan_start(struct ieee80211com *ic)
293802ac6454SAndrew Thompson {
29395efea30fSAndrew Thompson 	struct ifnet *ifp = ic->ic_ifp;
29405efea30fSAndrew Thompson 	struct zyd_softc *sc = ifp->if_softc;
294102ac6454SAndrew Thompson 
294202ac6454SAndrew Thompson 	ZYD_LOCK(sc);
29435efea30fSAndrew Thompson 	/* want broadcast address while scanning */
29445efea30fSAndrew Thompson 	zyd_set_bssid(sc, ifp->if_broadcastaddr);
294502ac6454SAndrew Thompson 	ZYD_UNLOCK(sc);
294602ac6454SAndrew Thompson }
294702ac6454SAndrew Thompson 
294802ac6454SAndrew Thompson static void
294902ac6454SAndrew Thompson zyd_scan_end(struct ieee80211com *ic)
295002ac6454SAndrew Thompson {
295102ac6454SAndrew Thompson 	struct zyd_softc *sc = ic->ic_ifp->if_softc;
295202ac6454SAndrew Thompson 
295302ac6454SAndrew Thompson 	ZYD_LOCK(sc);
29545efea30fSAndrew Thompson 	/* restore previous bssid */
29555efea30fSAndrew Thompson 	zyd_set_bssid(sc, sc->sc_bssid);
295602ac6454SAndrew Thompson 	ZYD_UNLOCK(sc);
295702ac6454SAndrew Thompson }
295802ac6454SAndrew Thompson 
295902ac6454SAndrew Thompson static void
296002ac6454SAndrew Thompson zyd_set_channel(struct ieee80211com *ic)
296102ac6454SAndrew Thompson {
296202ac6454SAndrew Thompson 	struct zyd_softc *sc = ic->ic_ifp->if_softc;
296302ac6454SAndrew Thompson 
296402ac6454SAndrew Thompson 	ZYD_LOCK(sc);
296502ac6454SAndrew Thompson 	zyd_set_chan(sc, ic->ic_curchan);
29665efea30fSAndrew Thompson 	ZYD_UNLOCK(sc);
296702ac6454SAndrew Thompson }
296802ac6454SAndrew Thompson 
296902ac6454SAndrew Thompson static device_method_t zyd_methods[] = {
297002ac6454SAndrew Thompson         /* Device interface */
297102ac6454SAndrew Thompson         DEVMETHOD(device_probe, zyd_match),
297202ac6454SAndrew Thompson         DEVMETHOD(device_attach, zyd_attach),
297302ac6454SAndrew Thompson         DEVMETHOD(device_detach, zyd_detach),
297402ac6454SAndrew Thompson 
297502ac6454SAndrew Thompson 	{ 0, 0 }
297602ac6454SAndrew Thompson };
297702ac6454SAndrew Thompson 
297802ac6454SAndrew Thompson static driver_t zyd_driver = {
297902ac6454SAndrew Thompson         "zyd",
298002ac6454SAndrew Thompson         zyd_methods,
298102ac6454SAndrew Thompson         sizeof(struct zyd_softc)
298202ac6454SAndrew Thompson };
298302ac6454SAndrew Thompson 
298402ac6454SAndrew Thompson static devclass_t zyd_devclass;
298502ac6454SAndrew Thompson 
29869aef556dSAndrew Thompson DRIVER_MODULE(zyd, uhub, zyd_driver, zyd_devclass, NULL, 0);
298702ac6454SAndrew Thompson MODULE_DEPEND(zyd, usb, 1, 1, 1);
298802ac6454SAndrew Thompson MODULE_DEPEND(zyd, wlan, 1, 1, 1);
298902ac6454SAndrew Thompson MODULE_DEPEND(zyd, wlan_amrr, 1, 1, 1);
2990