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bwfm.c revision 1.32
      1  1.32   mlelstv /* $NetBSD: bwfm.c,v 1.32 2022/03/14 06:40:12 mlelstv Exp $ */
      2   1.1  jmcneill /* $OpenBSD: bwfm.c,v 1.5 2017/10/16 22:27:16 patrick Exp $ */
      3   1.1  jmcneill /*
      4   1.1  jmcneill  * Copyright (c) 2010-2016 Broadcom Corporation
      5   1.1  jmcneill  * Copyright (c) 2016,2017 Patrick Wildt <patrick (at) blueri.se>
      6   1.1  jmcneill  *
      7   1.1  jmcneill  * Permission to use, copy, modify, and/or distribute this software for any
      8   1.1  jmcneill  * purpose with or without fee is hereby granted, provided that the above
      9   1.1  jmcneill  * copyright notice and this permission notice appear in all copies.
     10   1.1  jmcneill  *
     11   1.1  jmcneill  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
     12   1.1  jmcneill  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
     13   1.1  jmcneill  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
     14   1.1  jmcneill  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
     15   1.1  jmcneill  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
     16   1.1  jmcneill  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
     17   1.1  jmcneill  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
     18   1.1  jmcneill  */
     19   1.1  jmcneill 
     20   1.1  jmcneill #include <sys/param.h>
     21  1.27  riastrad #include <sys/types.h>
     22  1.27  riastrad 
     23   1.1  jmcneill #include <sys/buf.h>
     24  1.27  riastrad #include <sys/device.h>
     25   1.1  jmcneill #include <sys/kernel.h>
     26  1.27  riastrad #include <sys/kmem.h>
     27  1.29  riastrad #include <sys/pool.h>
     28   1.1  jmcneill #include <sys/queue.h>
     29   1.1  jmcneill #include <sys/socket.h>
     30  1.27  riastrad #include <sys/systm.h>
     31   1.1  jmcneill #include <sys/workqueue.h>
     32   1.1  jmcneill 
     33   1.1  jmcneill #include <net/bpf.h>
     34   1.1  jmcneill #include <net/if.h>
     35   1.1  jmcneill #include <net/if_dl.h>
     36  1.27  riastrad #include <net/if_ether.h>
     37   1.1  jmcneill #include <net/if_media.h>
     38   1.1  jmcneill 
     39   1.1  jmcneill #include <netinet/in.h>
     40   1.1  jmcneill 
     41   1.1  jmcneill #include <net80211/ieee80211_var.h>
     42   1.1  jmcneill 
     43  1.28  riastrad #include <dev/firmload.h>
     44  1.28  riastrad 
     45  1.25  jdolecek #include <dev/ic/bwfmreg.h>
     46   1.1  jmcneill #include <dev/ic/bwfmvar.h>
     47   1.1  jmcneill 
     48   1.1  jmcneill /* #define BWFM_DEBUG */
     49   1.1  jmcneill #ifdef BWFM_DEBUG
     50   1.1  jmcneill #define DPRINTF(x)	do { if (bwfm_debug > 0) printf x; } while (0)
     51   1.1  jmcneill #define DPRINTFN(n, x)	do { if (bwfm_debug >= (n)) printf x; } while (0)
     52   1.1  jmcneill static int bwfm_debug = 1;
     53   1.1  jmcneill #else
     54   1.1  jmcneill #define DPRINTF(x)	do { ; } while (0)
     55   1.1  jmcneill #define DPRINTFN(n, x)	do { ; } while (0)
     56   1.1  jmcneill #endif
     57   1.1  jmcneill 
     58   1.1  jmcneill #define DEVNAME(sc)	device_xname((sc)->sc_dev)
     59   1.1  jmcneill 
     60   1.1  jmcneill void	 bwfm_start(struct ifnet *);
     61   1.1  jmcneill int	 bwfm_init(struct ifnet *);
     62   1.1  jmcneill void	 bwfm_stop(struct ifnet *, int);
     63   1.1  jmcneill void	 bwfm_watchdog(struct ifnet *);
     64   1.1  jmcneill int	 bwfm_ioctl(struct ifnet *, u_long, void *);
     65   1.1  jmcneill int	 bwfm_media_change(struct ifnet *);
     66   1.1  jmcneill 
     67   1.1  jmcneill int	 bwfm_send_mgmt(struct ieee80211com *, struct ieee80211_node *,
     68   1.1  jmcneill 	     int, int);
     69   1.1  jmcneill void	 bwfm_recv_mgmt(struct ieee80211com *, struct mbuf *,
     70   1.1  jmcneill 	     struct ieee80211_node *, int, int, uint32_t);
     71   1.1  jmcneill int	 bwfm_key_set(struct ieee80211com *, const struct ieee80211_key *,
     72   1.1  jmcneill 	     const uint8_t *);
     73   1.1  jmcneill int	 bwfm_key_delete(struct ieee80211com *, const struct ieee80211_key *);
     74   1.1  jmcneill int	 bwfm_newstate(struct ieee80211com *, enum ieee80211_state, int);
     75   1.1  jmcneill void	 bwfm_newstate_cb(struct bwfm_softc *, struct bwfm_cmd_newstate *);
     76   1.4  jmcneill void	 bwfm_newassoc(struct ieee80211_node *, int);
     77   1.1  jmcneill void	 bwfm_task(struct work *, void *);
     78   1.1  jmcneill 
     79   1.1  jmcneill int	 bwfm_chip_attach(struct bwfm_softc *);
     80   1.1  jmcneill int	 bwfm_chip_detach(struct bwfm_softc *, int);
     81   1.1  jmcneill struct bwfm_core *bwfm_chip_get_core(struct bwfm_softc *, int);
     82   1.1  jmcneill struct bwfm_core *bwfm_chip_get_pmu(struct bwfm_softc *);
     83   1.1  jmcneill int	 bwfm_chip_ai_isup(struct bwfm_softc *, struct bwfm_core *);
     84   1.1  jmcneill void	 bwfm_chip_ai_disable(struct bwfm_softc *, struct bwfm_core *,
     85   1.1  jmcneill 	     uint32_t, uint32_t);
     86   1.1  jmcneill void	 bwfm_chip_ai_reset(struct bwfm_softc *, struct bwfm_core *,
     87   1.1  jmcneill 	     uint32_t, uint32_t, uint32_t);
     88   1.1  jmcneill void	 bwfm_chip_dmp_erom_scan(struct bwfm_softc *);
     89   1.1  jmcneill int	 bwfm_chip_dmp_get_regaddr(struct bwfm_softc *, uint32_t *,
     90   1.1  jmcneill 	     uint32_t *, uint32_t *);
     91  1.11      maya int	 bwfm_chip_cr4_set_active(struct bwfm_softc *, const uint32_t);
     92   1.1  jmcneill void	 bwfm_chip_cr4_set_passive(struct bwfm_softc *);
     93  1.11      maya int	 bwfm_chip_ca7_set_active(struct bwfm_softc *, const uint32_t);
     94   1.1  jmcneill void	 bwfm_chip_ca7_set_passive(struct bwfm_softc *);
     95  1.11      maya int	 bwfm_chip_cm3_set_active(struct bwfm_softc *);
     96   1.1  jmcneill void	 bwfm_chip_cm3_set_passive(struct bwfm_softc *);
     97  1.11      maya void	 bwfm_chip_socram_ramsize(struct bwfm_softc *, struct bwfm_core *);
     98  1.11      maya void	 bwfm_chip_sysmem_ramsize(struct bwfm_softc *, struct bwfm_core *);
     99  1.11      maya void	 bwfm_chip_tcm_ramsize(struct bwfm_softc *, struct bwfm_core *);
    100  1.11      maya void	 bwfm_chip_tcm_rambase(struct bwfm_softc *);
    101   1.1  jmcneill 
    102  1.32   mlelstv void     bwfm_process_blob(struct bwfm_softc *, const char *, uint8_t **,
    103  1.32   mlelstv 	     size_t *);
    104   1.1  jmcneill int	 bwfm_proto_bcdc_query_dcmd(struct bwfm_softc *, int,
    105   1.1  jmcneill 	     int, char *, size_t *);
    106   1.1  jmcneill int	 bwfm_proto_bcdc_set_dcmd(struct bwfm_softc *, int,
    107   1.1  jmcneill 	     int, char *, size_t);
    108   1.1  jmcneill 
    109   1.1  jmcneill int	 bwfm_fwvar_cmd_get_data(struct bwfm_softc *, int, void *, size_t);
    110   1.1  jmcneill int	 bwfm_fwvar_cmd_set_data(struct bwfm_softc *, int, void *, size_t);
    111   1.1  jmcneill int	 bwfm_fwvar_cmd_get_int(struct bwfm_softc *, int, uint32_t *);
    112   1.1  jmcneill int	 bwfm_fwvar_cmd_set_int(struct bwfm_softc *, int, uint32_t);
    113   1.1  jmcneill int	 bwfm_fwvar_var_get_data(struct bwfm_softc *, const char *, void *, size_t);
    114   1.1  jmcneill int	 bwfm_fwvar_var_set_data(struct bwfm_softc *, const char *, void *, size_t);
    115   1.1  jmcneill int	 bwfm_fwvar_var_get_int(struct bwfm_softc *, const char *, uint32_t *);
    116   1.1  jmcneill int	 bwfm_fwvar_var_set_int(struct bwfm_softc *, const char *, uint32_t);
    117   1.1  jmcneill 
    118   1.1  jmcneill struct ieee80211_channel *bwfm_bss2chan(struct bwfm_softc *, struct bwfm_bss_info *);
    119   1.1  jmcneill void	 bwfm_scan(struct bwfm_softc *);
    120   1.1  jmcneill void	 bwfm_connect(struct bwfm_softc *);
    121  1.17  jmcneill void	 bwfm_get_sta_info(struct bwfm_softc *, struct ifmediareq *);
    122   1.1  jmcneill 
    123  1.11      maya void	 bwfm_rx(struct bwfm_softc *, struct mbuf *);
    124  1.15   mlelstv void	 bwfm_rx_event(struct bwfm_softc *, struct mbuf *);
    125  1.15   mlelstv void	 bwfm_rx_event_cb(struct bwfm_softc *, struct mbuf *);
    126   1.1  jmcneill void	 bwfm_scan_node(struct bwfm_softc *, struct bwfm_bss_info *, size_t);
    127   1.1  jmcneill 
    128  1.23  jdolecek static const uint8_t bwfm_2ghz_channels[] = {
    129   1.1  jmcneill 	1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13,
    130   1.1  jmcneill };
    131  1.23  jdolecek static const uint8_t bwfm_5ghz_channels[] = {
    132   1.1  jmcneill 	34, 36, 38, 40, 42, 44, 46, 48, 52, 56, 60, 64, 100, 104, 108, 112,
    133   1.1  jmcneill 	116, 120, 124, 128, 132, 136, 140, 144, 149, 153, 157, 161, 165,
    134   1.1  jmcneill };
    135   1.1  jmcneill 
    136  1.23  jdolecek const struct bwfm_proto_ops bwfm_proto_bcdc_ops = {
    137   1.1  jmcneill 	.proto_query_dcmd = bwfm_proto_bcdc_query_dcmd,
    138   1.1  jmcneill 	.proto_set_dcmd = bwfm_proto_bcdc_set_dcmd,
    139   1.1  jmcneill };
    140   1.1  jmcneill 
    141  1.21   thorpej static const struct {
    142  1.21   thorpej 	const char *suffix;
    143  1.21   thorpej 	const char *description;
    144  1.21   thorpej } bwfm_firmware_filetypes[] = {
    145  1.21   thorpej 	[BWFM_FILETYPE_UCODE] = {
    146  1.21   thorpej 		.suffix = "bin",
    147  1.21   thorpej 		.description = "Firmware",
    148  1.21   thorpej 	},
    149  1.21   thorpej 	[BWFM_FILETYPE_NVRAM] = {
    150  1.21   thorpej 		.suffix = "txt",
    151  1.21   thorpej 		.description = "NVRAM",
    152  1.21   thorpej 	},
    153  1.22   thorpej 	[BWFM_FILETYPE_CLM] = {
    154  1.22   thorpej 		.suffix = "clm_blob",
    155  1.22   thorpej 		.description = "CLM",
    156  1.22   thorpej 	},
    157  1.32   mlelstv 	[BWFM_FILETYPE_TXCAP] = {
    158  1.32   mlelstv 		.suffix = "txcap_blob",
    159  1.32   mlelstv 		.description = "TXCAP",
    160  1.32   mlelstv 	},
    161  1.32   mlelstv 	[BWFM_FILETYPE_CAL] = {
    162  1.32   mlelstv 		.suffix = "cal_blob",
    163  1.32   mlelstv 		.description = "CAL",
    164  1.32   mlelstv 	},
    165  1.21   thorpej };
    166  1.21   thorpej 
    167  1.21   thorpej static void
    168  1.21   thorpej bwfm_firmware_read_file(struct bwfm_softc * const sc,
    169  1.21   thorpej     const struct bwfm_firmware_selector * const fwp,
    170  1.21   thorpej     struct bwfm_firmware_context * const ctx,
    171  1.21   thorpej     unsigned int const which)
    172  1.21   thorpej {
    173  1.21   thorpej 	firmware_handle_t fwh;
    174  1.21   thorpej 	char *names[2];
    175  1.21   thorpej 	int i, error;
    176  1.21   thorpej 
    177  1.21   thorpej 	names[1] = kmem_asprintf("%s.%s", fwp->fwsel_basename,
    178  1.21   thorpej 	    bwfm_firmware_filetypes[which].suffix);
    179  1.21   thorpej 	names[0] = ctx->ctx_model ? kmem_asprintf("%s.%s.%s",
    180  1.21   thorpej 	    fwp->fwsel_basename, ctx->ctx_model,
    181  1.21   thorpej 	    bwfm_firmware_filetypes[which].suffix) : NULL;
    182  1.21   thorpej 
    183  1.21   thorpej 	aprint_verbose_dev(sc->sc_dev, "%s file default:    %s\n",
    184  1.21   thorpej 	    bwfm_firmware_filetypes[which].description, names[1]);
    185  1.21   thorpej 	if (names[0]) {
    186  1.21   thorpej 		aprint_verbose_dev(sc->sc_dev, "%s file model-spec: %s\n",
    187  1.21   thorpej 		    bwfm_firmware_filetypes[which].description, names[0]);
    188  1.21   thorpej 	}
    189  1.21   thorpej 
    190  1.21   thorpej 	for (i = 0; i < 2; i++) {
    191  1.21   thorpej 		if (names[i] == NULL)
    192  1.21   thorpej 			continue;
    193  1.21   thorpej 		error = firmware_open("if_bwfm", names[i], &fwh);
    194  1.21   thorpej 		if (error == 0)
    195  1.21   thorpej 			break;
    196  1.21   thorpej 	}
    197  1.21   thorpej 	if (i == 2)
    198  1.21   thorpej 		goto out;
    199  1.21   thorpej 
    200  1.21   thorpej 	aprint_verbose_dev(sc->sc_dev, "Found %s file: %s\n",
    201  1.21   thorpej 	    bwfm_firmware_filetypes[which].description, names[i]);
    202  1.21   thorpej 
    203  1.21   thorpej 	size_t size = firmware_get_size(fwh);
    204  1.21   thorpej 	void *data = firmware_malloc(size);
    205  1.21   thorpej 	if (data == NULL) {
    206  1.21   thorpej 		aprint_error_dev(sc->sc_dev,
    207  1.21   thorpej 		    "unable to allocate %zu bytes for %s image\n", size,
    208  1.21   thorpej 		    bwfm_firmware_filetypes[which].description);
    209  1.21   thorpej 		firmware_close(fwh);
    210  1.21   thorpej 		goto out;
    211  1.21   thorpej 	}
    212  1.21   thorpej 	error = firmware_read(fwh, 0, data, size);
    213  1.21   thorpej 	firmware_close(fwh);
    214  1.21   thorpej 	if (error) {
    215  1.21   thorpej 		aprint_error_dev(sc->sc_dev,
    216  1.21   thorpej 		    "failed to read %s file, error %d\n",
    217  1.21   thorpej 		    bwfm_firmware_filetypes[which].description,
    218  1.21   thorpej 		    error);
    219  1.21   thorpej 		firmware_free(data, size);
    220  1.21   thorpej 		goto out;
    221  1.21   thorpej 	}
    222  1.21   thorpej 
    223  1.21   thorpej 	ctx->ctx_file[which].ctx_f_data = data;
    224  1.21   thorpej 	ctx->ctx_file[which].ctx_f_size = size;
    225  1.21   thorpej  out:
    226  1.21   thorpej 	for (i = 0; i < 2; i++) {
    227  1.21   thorpej 		if (names[i])
    228  1.21   thorpej 			kmem_free(names[i], strlen(names[i])+1);
    229  1.21   thorpej 	}
    230  1.21   thorpej }
    231  1.21   thorpej 
    232  1.21   thorpej void
    233  1.21   thorpej bwfm_firmware_context_init(struct bwfm_firmware_context * const ctx,
    234  1.21   thorpej     uint32_t const chip, uint32_t const chiprev, const char * const model,
    235  1.21   thorpej     uint32_t req)
    236  1.21   thorpej {
    237  1.21   thorpej 	memset(ctx, 0, sizeof(*ctx));
    238  1.21   thorpej 	ctx->ctx_chip = chip;
    239  1.21   thorpej 	ctx->ctx_chiprev = chiprev;
    240  1.21   thorpej 	ctx->ctx_model = model;
    241  1.21   thorpej 
    242  1.21   thorpej 	/* all devices require ucode */
    243  1.21   thorpej 	ctx->ctx_req = req | BWFM_FWREQ(BWFM_FILETYPE_UCODE);
    244  1.21   thorpej }
    245  1.21   thorpej 
    246  1.21   thorpej bool
    247  1.21   thorpej bwfm_firmware_open(struct bwfm_softc * const sc,
    248  1.21   thorpej     const struct bwfm_firmware_selector * const fwtab,
    249  1.21   thorpej     struct bwfm_firmware_context * const ctx)
    250  1.21   thorpej {
    251  1.21   thorpej 	const struct bwfm_firmware_selector *fwp;
    252  1.21   thorpej 	unsigned int i;
    253  1.21   thorpej 
    254  1.21   thorpej 	KASSERT(fwtab != NULL);
    255  1.21   thorpej 	KASSERT(ctx != NULL);
    256  1.21   thorpej 
    257  1.21   thorpej 	/* First locate the appropriate entry for this chip / rev. */
    258  1.21   thorpej 	for (fwp = fwtab; fwp->fwsel_basename != NULL; fwp++) {
    259  1.21   thorpej 		if (fwp->fwsel_chip == ctx->ctx_chip &&
    260  1.21   thorpej 		    fwp->fwsel_revmask & __BIT(ctx->ctx_chiprev))
    261  1.21   thorpej 		    	break;
    262  1.21   thorpej 	}
    263  1.21   thorpej 	if (fwp->fwsel_basename == NULL) {
    264  1.21   thorpej 		aprint_error_dev(sc->sc_dev,
    265  1.21   thorpej 		    "No firmware entry for chip 0x%x/%u rev %u model %s\n",
    266  1.21   thorpej 		    ctx->ctx_chip, ctx->ctx_chip, ctx->ctx_chiprev,
    267  1.21   thorpej 		    ctx->ctx_model);
    268  1.21   thorpej 		return false;
    269  1.21   thorpej 	}
    270  1.21   thorpej 
    271  1.21   thorpej 	bool rv = true;
    272  1.21   thorpej 
    273  1.21   thorpej 	/*
    274  1.21   thorpej 	 * Read in each file that the front-end has requested as
    275  1.21   thorpej 	 * either required or optional.
    276  1.21   thorpej 	 */
    277  1.21   thorpej 	for (i = 0; i < BWFM_NFILETYPES; i++) {
    278  1.21   thorpej 		if (ctx->ctx_req & (BWFM_FWREQ(i) | BWFM_FWOPT(i)))
    279  1.21   thorpej 			bwfm_firmware_read_file(sc, fwp, ctx, i);
    280  1.21   thorpej 		if ((ctx->ctx_req & BWFM_FWREQ(i)) &&
    281  1.21   thorpej 		    ctx->ctx_file[i].ctx_f_data == NULL) {
    282  1.21   thorpej 			aprint_error_dev(sc->sc_dev,
    283  1.21   thorpej 			    "%s file not available\n",
    284  1.21   thorpej 			    bwfm_firmware_filetypes[i].description);
    285  1.21   thorpej 			rv = false;
    286  1.21   thorpej 		}
    287  1.21   thorpej 	}
    288  1.21   thorpej 
    289  1.21   thorpej 	if (rv == false)
    290  1.21   thorpej 		bwfm_firmware_close(ctx);
    291  1.21   thorpej 
    292  1.21   thorpej 	return rv;
    293  1.21   thorpej }
    294  1.21   thorpej 
    295  1.21   thorpej void
    296  1.21   thorpej bwfm_firmware_close(struct bwfm_firmware_context * const ctx)
    297  1.21   thorpej {
    298  1.21   thorpej 	for (int i = 0; i < BWFM_NFILETYPES; i++) {
    299  1.21   thorpej 		if (ctx->ctx_file[i].ctx_f_data == NULL)
    300  1.21   thorpej 			continue;
    301  1.21   thorpej 		firmware_free(ctx->ctx_file[i].ctx_f_data,
    302  1.21   thorpej 			      ctx->ctx_file[i].ctx_f_size);
    303  1.21   thorpej 		ctx->ctx_file[i].ctx_f_data = NULL;
    304  1.21   thorpej 	}
    305  1.21   thorpej }
    306  1.21   thorpej 
    307  1.21   thorpej void *
    308  1.21   thorpej bwfm_firmware_data(struct bwfm_firmware_context * const ctx,
    309  1.21   thorpej     unsigned int const which, size_t *sizep)
    310  1.21   thorpej {
    311  1.21   thorpej 	KASSERT(which < BWFM_NFILETYPES);
    312  1.21   thorpej 	KASSERT(sizep != NULL);
    313  1.21   thorpej 
    314  1.21   thorpej 	*sizep = ctx->ctx_file[which].ctx_f_size;
    315  1.21   thorpej 	return ctx->ctx_file[which].ctx_f_data;
    316  1.21   thorpej }
    317  1.21   thorpej 
    318  1.21   thorpej const char *
    319  1.21   thorpej bwfm_firmware_description(unsigned int const which)
    320  1.21   thorpej {
    321  1.21   thorpej 	KASSERT(which < BWFM_NFILETYPES);
    322  1.21   thorpej 
    323  1.21   thorpej 	return bwfm_firmware_filetypes[which].description;
    324  1.21   thorpej }
    325  1.21   thorpej 
    326   1.1  jmcneill void
    327   1.1  jmcneill bwfm_attach(struct bwfm_softc *sc)
    328   1.1  jmcneill {
    329   1.1  jmcneill 	struct ieee80211com *ic = &sc->sc_ic;
    330   1.1  jmcneill 	struct ifnet *ifp = &sc->sc_if;
    331   1.1  jmcneill 	char fw_version[BWFM_DCMD_SMLEN];
    332   1.1  jmcneill 	uint32_t bandlist[3];
    333  1.32   mlelstv 	int nmode, vhtmode;
    334   1.1  jmcneill 	uint32_t tmp;
    335  1.11      maya 	int i, j, error;
    336   1.1  jmcneill 
    337   1.1  jmcneill 	error = workqueue_create(&sc->sc_taskq, DEVNAME(sc),
    338  1.16   mlelstv 	    bwfm_task, sc, PRI_NONE, IPL_NET, 0);
    339   1.1  jmcneill 	if (error != 0) {
    340   1.1  jmcneill 		printf("%s: could not create workqueue\n", DEVNAME(sc));
    341   1.1  jmcneill 		return;
    342   1.1  jmcneill 	}
    343  1.29  riastrad 	sc->sc_freetask = pool_cache_init(sizeof(struct bwfm_task), 0, 0, 0,
    344  1.29  riastrad 	    "bwfmtask", NULL, IPL_NET /* XXX IPL_SOFTNET? */,
    345  1.29  riastrad 	    NULL, NULL, NULL);
    346  1.29  riastrad 	pool_cache_prime(sc->sc_freetask, BWFM_TASK_COUNT);
    347   1.1  jmcneill 
    348   1.5  jmcneill 	/* Stop the device in case it was previously initialized */
    349   1.5  jmcneill 	bwfm_fwvar_cmd_set_int(sc, BWFM_C_DOWN, 1);
    350   1.5  jmcneill 
    351   1.1  jmcneill 	if (bwfm_fwvar_cmd_get_int(sc, BWFM_C_GET_VERSION, &tmp)) {
    352   1.1  jmcneill 		printf("%s: could not read io type\n", DEVNAME(sc));
    353   1.1  jmcneill 		return;
    354   1.1  jmcneill 	} else
    355   1.1  jmcneill 		sc->sc_io_type = tmp;
    356   1.1  jmcneill 	if (bwfm_fwvar_var_get_data(sc, "cur_etheraddr", ic->ic_myaddr,
    357   1.1  jmcneill 	    sizeof(ic->ic_myaddr))) {
    358   1.1  jmcneill 		printf("%s: could not read mac address\n", DEVNAME(sc));
    359   1.1  jmcneill 		return;
    360   1.1  jmcneill 	}
    361   1.1  jmcneill 
    362  1.32   mlelstv 	printf("%s: address %s\n", DEVNAME(sc), ether_sprintf(ic->ic_myaddr));
    363  1.32   mlelstv 
    364  1.32   mlelstv 	bwfm_process_blob(sc, "clmload", &sc->sc_clm, &sc->sc_clmsize);
    365  1.32   mlelstv 	bwfm_process_blob(sc, "txcapload", &sc->sc_txcap, &sc->sc_txcapsize);
    366  1.32   mlelstv 	bwfm_process_blob(sc, "calload", &sc->sc_cal, &sc->sc_calsize);
    367  1.32   mlelstv 
    368   1.1  jmcneill 	memset(fw_version, 0, sizeof(fw_version));
    369   1.1  jmcneill 	if (bwfm_fwvar_var_get_data(sc, "ver", fw_version, sizeof(fw_version)) == 0)
    370   1.1  jmcneill 		printf("%s: %s", DEVNAME(sc), fw_version);
    371   1.1  jmcneill 
    372   1.1  jmcneill 	ic->ic_ifp = ifp;
    373   1.1  jmcneill 	ic->ic_phytype = IEEE80211_T_OFDM;
    374   1.1  jmcneill 	ic->ic_opmode = IEEE80211_M_STA;
    375   1.1  jmcneill 	ic->ic_state = IEEE80211_S_INIT;
    376   1.1  jmcneill 
    377   1.1  jmcneill 	ic->ic_caps =
    378   1.1  jmcneill 	    IEEE80211_C_WEP |
    379   1.1  jmcneill 	    IEEE80211_C_TKIP |
    380   1.1  jmcneill 	    IEEE80211_C_AES |
    381   1.1  jmcneill 	    IEEE80211_C_AES_CCM |
    382   1.1  jmcneill #if notyet
    383  1.19   msaitoh 	    IEEE80211_C_MONITOR |		/* monitor mode supported */
    384   1.1  jmcneill 	    IEEE80211_C_IBSS |
    385   1.1  jmcneill 	    IEEE80211_C_TXPMGT |
    386   1.1  jmcneill 	    IEEE80211_C_WME |
    387   1.1  jmcneill #endif
    388   1.1  jmcneill 	    IEEE80211_C_SHSLOT |		/* short slot time supported */
    389   1.1  jmcneill 	    IEEE80211_C_SHPREAMBLE |		/* short preamble supported */
    390   1.1  jmcneill 	    IEEE80211_C_WPA |			/* 802.11i */
    391   1.1  jmcneill 	    /* IEEE80211_C_WPA_4WAY */0;		/* WPA 4-way handshake in hw */
    392   1.1  jmcneill 
    393   1.1  jmcneill 	/* IBSS channel undefined for now. */
    394   1.1  jmcneill 	ic->ic_ibss_chan = &ic->ic_channels[0];
    395   1.1  jmcneill 
    396  1.32   mlelstv 	if (bwfm_fwvar_var_get_int(sc, "nmode", &nmode))
    397  1.32   mlelstv 		nmode = 0;
    398  1.32   mlelstv 	if (bwfm_fwvar_var_get_int(sc, "vhtmode", &vhtmode))
    399  1.32   mlelstv 		vhtmode = 0;
    400   1.1  jmcneill 	if (bwfm_fwvar_cmd_get_data(sc, BWFM_C_GET_BANDLIST, bandlist,
    401   1.1  jmcneill 	    sizeof(bandlist))) {
    402   1.1  jmcneill 		printf("%s: couldn't get supported band list\n", DEVNAME(sc));
    403   1.1  jmcneill 		return;
    404  1.27  riastrad 	}
    405   1.1  jmcneill 	const u_int nbands = le32toh(bandlist[0]);
    406   1.1  jmcneill 	for (i = 1; i <= MIN(nbands, __arraycount(bandlist) - 1); i++) {
    407   1.1  jmcneill 		switch (le32toh(bandlist[i])) {
    408   1.1  jmcneill 		case BWFM_BAND_2G:
    409   1.1  jmcneill 			ic->ic_sup_rates[IEEE80211_MODE_11B] = ieee80211_std_rateset_11b;
    410   1.1  jmcneill 			ic->ic_sup_rates[IEEE80211_MODE_11G] = ieee80211_std_rateset_11g;
    411   1.1  jmcneill 
    412  1.11      maya 			for (j = 0; j < __arraycount(bwfm_2ghz_channels); j++) {
    413  1.11      maya 				uint8_t chan = bwfm_2ghz_channels[j];
    414   1.1  jmcneill 				ic->ic_channels[chan].ic_freq =
    415   1.1  jmcneill 				    ieee80211_ieee2mhz(chan, IEEE80211_CHAN_2GHZ);
    416   1.1  jmcneill 				ic->ic_channels[chan].ic_flags =
    417   1.1  jmcneill 				    IEEE80211_CHAN_CCK | IEEE80211_CHAN_OFDM |
    418   1.1  jmcneill 				    IEEE80211_CHAN_DYN | IEEE80211_CHAN_2GHZ;
    419  1.32   mlelstv 				if (nmode)
    420  1.32   mlelstv 					ic->ic_channels[chan].ic_flags |=
    421  1.32   mlelstv 					    IEEE80211_CHAN_HT;
    422   1.1  jmcneill 			}
    423   1.1  jmcneill 			break;
    424   1.1  jmcneill 		case BWFM_BAND_5G:
    425   1.1  jmcneill 			ic->ic_sup_rates[IEEE80211_MODE_11A] = ieee80211_std_rateset_11a;
    426   1.1  jmcneill 
    427  1.11      maya 			for (j = 0; j < __arraycount(bwfm_5ghz_channels); j++) {
    428  1.11      maya 				uint8_t chan = bwfm_5ghz_channels[j];
    429   1.1  jmcneill 				ic->ic_channels[chan].ic_freq =
    430   1.1  jmcneill 				    ieee80211_ieee2mhz(chan, IEEE80211_CHAN_5GHZ);
    431   1.1  jmcneill 				ic->ic_channels[chan].ic_flags =
    432   1.1  jmcneill 				    IEEE80211_CHAN_A;
    433  1.32   mlelstv 				if (nmode)
    434  1.32   mlelstv 					ic->ic_channels[chan].ic_flags |=
    435  1.32   mlelstv 					    IEEE80211_CHAN_HT;
    436  1.32   mlelstv 				if (vhtmode)
    437  1.32   mlelstv 					ic->ic_channels[chan].ic_flags |=
    438  1.32   mlelstv 					    IEEE80211_CHAN_VHT;
    439   1.1  jmcneill 			}
    440   1.1  jmcneill 			break;
    441  1.32   mlelstv 		default:
    442  1.32   mlelstv 			printf("%s: unsupported band 0x%x\n", DEVNAME(sc),
    443  1.32   mlelstv 			    le32toh(bandlist[i]));
    444  1.32   mlelstv 			break;
    445   1.1  jmcneill 		}
    446   1.1  jmcneill 	}
    447   1.1  jmcneill 
    448   1.1  jmcneill 	ifp->if_softc = sc;
    449   1.1  jmcneill 	ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
    450   1.1  jmcneill 	ifp->if_init = bwfm_init;
    451   1.1  jmcneill 	ifp->if_ioctl = bwfm_ioctl;
    452   1.1  jmcneill 	ifp->if_start = bwfm_start;
    453  1.14      maya 	ifp->if_stop = bwfm_stop;
    454   1.1  jmcneill 	ifp->if_watchdog = bwfm_watchdog;
    455   1.1  jmcneill 	IFQ_SET_READY(&ifp->if_snd);
    456   1.1  jmcneill 	memcpy(ifp->if_xname, DEVNAME(sc), IFNAMSIZ);
    457   1.1  jmcneill 
    458  1.31  riastrad 	if_initialize(ifp);
    459   1.1  jmcneill 	ieee80211_ifattach(ic);
    460   1.1  jmcneill 	sc->sc_newstate = ic->ic_newstate;
    461   1.1  jmcneill 	ic->ic_newstate = bwfm_newstate;
    462   1.4  jmcneill 	ic->ic_newassoc = bwfm_newassoc;
    463   1.1  jmcneill 	ic->ic_send_mgmt = bwfm_send_mgmt;
    464   1.1  jmcneill 	ic->ic_recv_mgmt = bwfm_recv_mgmt;
    465   1.1  jmcneill 	ic->ic_crypto.cs_key_set = bwfm_key_set;
    466   1.1  jmcneill 	ic->ic_crypto.cs_key_delete = bwfm_key_delete;
    467  1.26       mrg 
    468  1.26       mrg 	ifp->if_percpuq = if_percpuq_create(ifp);
    469  1.26       mrg 	if_deferred_start_init(ifp, NULL);
    470  1.26       mrg 	if_register(ifp);
    471   1.6  jmcneill 	ieee80211_media_init(ic, bwfm_media_change, ieee80211_media_status);
    472   1.1  jmcneill 
    473   1.1  jmcneill 	ieee80211_announce(ic);
    474   1.1  jmcneill 
    475   1.1  jmcneill 	sc->sc_if_attached = true;
    476   1.1  jmcneill }
    477   1.1  jmcneill 
    478   1.1  jmcneill int
    479   1.1  jmcneill bwfm_detach(struct bwfm_softc *sc, int flags)
    480   1.1  jmcneill {
    481   1.1  jmcneill 	struct ieee80211com *ic = &sc->sc_ic;
    482   1.1  jmcneill 	struct ifnet *ifp = ic->ic_ifp;
    483   1.1  jmcneill 
    484   1.1  jmcneill 	if (sc->sc_if_attached) {
    485   1.1  jmcneill 		bpf_detach(ifp);
    486   1.1  jmcneill 		ieee80211_ifdetach(ic);
    487   1.1  jmcneill 		if_detach(ifp);
    488   1.1  jmcneill 	}
    489   1.1  jmcneill 
    490   1.1  jmcneill 	if (sc->sc_taskq)
    491   1.1  jmcneill 		workqueue_destroy(sc->sc_taskq);
    492   1.1  jmcneill 	if (sc->sc_freetask)
    493  1.29  riastrad 		pool_cache_destroy(sc->sc_freetask);
    494   1.1  jmcneill 
    495   1.1  jmcneill 	return 0;
    496   1.1  jmcneill }
    497   1.1  jmcneill 
    498   1.1  jmcneill void
    499   1.1  jmcneill bwfm_start(struct ifnet *ifp)
    500   1.1  jmcneill {
    501   1.1  jmcneill 	struct bwfm_softc *sc = ifp->if_softc;
    502   1.1  jmcneill 	struct ieee80211com *ic = &sc->sc_ic;
    503   1.1  jmcneill 	struct mbuf *m;
    504   1.1  jmcneill 	int error;
    505   1.1  jmcneill 
    506   1.1  jmcneill 	if ((ifp->if_flags & (IFF_RUNNING | IFF_OACTIVE)) != IFF_RUNNING)
    507   1.1  jmcneill 		return;
    508   1.1  jmcneill 
    509   1.1  jmcneill 	/* TODO: return if no link? */
    510   1.1  jmcneill 
    511   1.1  jmcneill 	for (;;) {
    512   1.1  jmcneill 		/* Discard management packets (fw handles this for us) */
    513   1.1  jmcneill 		IF_DEQUEUE(&ic->ic_mgtq, m);
    514   1.1  jmcneill 		if (m != NULL) {
    515   1.1  jmcneill 			m_freem(m);
    516   1.1  jmcneill 			continue;
    517   1.1  jmcneill 		}
    518   1.1  jmcneill 
    519  1.11      maya 		if (sc->sc_bus_ops->bs_txcheck(sc)) {
    520  1.11      maya 			ifp->if_flags |= IFF_OACTIVE;
    521  1.11      maya 			break;
    522  1.11      maya 		}
    523  1.11      maya 
    524   1.1  jmcneill 		IFQ_DEQUEUE(&ifp->if_snd, m);
    525   1.1  jmcneill 		if (m == NULL)
    526   1.1  jmcneill 			break;
    527   1.1  jmcneill 
    528  1.13  riastrad 		error = sc->sc_bus_ops->bs_txdata(sc, &m);
    529   1.1  jmcneill 		if (error == ENOBUFS) {
    530   1.1  jmcneill 			IF_PREPEND(&ifp->if_snd, m);
    531   1.1  jmcneill 			ifp->if_flags |= IFF_OACTIVE;
    532   1.1  jmcneill 			break;
    533   1.1  jmcneill 		}
    534   1.1  jmcneill 		if (error != 0) {
    535  1.20   thorpej 			if_statinc(ifp, if_oerrors);
    536   1.1  jmcneill 			m_freem(m);
    537  1.15   mlelstv 			continue;
    538   1.1  jmcneill 		}
    539  1.15   mlelstv 
    540  1.15   mlelstv 		bpf_mtap(ifp, m, BPF_D_OUT);
    541   1.1  jmcneill 	}
    542   1.1  jmcneill }
    543   1.1  jmcneill 
    544   1.1  jmcneill int
    545   1.1  jmcneill bwfm_init(struct ifnet *ifp)
    546   1.1  jmcneill {
    547   1.1  jmcneill 	struct bwfm_softc *sc = ifp->if_softc;
    548   1.1  jmcneill 	struct ieee80211com *ic = &sc->sc_ic;
    549   1.1  jmcneill 	uint8_t evmask[BWFM_EVENT_MASK_LEN];
    550   1.1  jmcneill 	struct bwfm_join_pref_params join_pref[2];
    551  1.18   mlelstv 	int pm;
    552   1.1  jmcneill 
    553   1.1  jmcneill 	if (bwfm_fwvar_var_set_int(sc, "mpc", 1)) {
    554   1.1  jmcneill 		printf("%s: could not set mpc\n", DEVNAME(sc));
    555   1.1  jmcneill 		return EIO;
    556   1.1  jmcneill 	}
    557   1.1  jmcneill 
    558   1.1  jmcneill 	/* Select target by RSSI (boost on 5GHz) */
    559   1.1  jmcneill 	join_pref[0].type = BWFM_JOIN_PREF_RSSI_DELTA;
    560   1.1  jmcneill 	join_pref[0].len = 2;
    561   1.1  jmcneill 	join_pref[0].rssi_gain = BWFM_JOIN_PREF_RSSI_BOOST;
    562   1.1  jmcneill 	join_pref[0].band = BWFM_JOIN_PREF_BAND_5G;
    563   1.1  jmcneill 	join_pref[1].type = BWFM_JOIN_PREF_RSSI;
    564   1.1  jmcneill 	join_pref[1].len = 2;
    565   1.1  jmcneill 	join_pref[1].rssi_gain = 0;
    566   1.1  jmcneill 	join_pref[1].band = 0;
    567   1.1  jmcneill 	if (bwfm_fwvar_var_set_data(sc, "join_pref", join_pref,
    568   1.1  jmcneill 	    sizeof(join_pref))) {
    569   1.1  jmcneill 		printf("%s: could not set join pref\n", DEVNAME(sc));
    570   1.1  jmcneill 		return EIO;
    571   1.1  jmcneill 	}
    572   1.1  jmcneill 
    573   1.1  jmcneill 	memset(evmask, 0, sizeof(evmask));
    574   1.1  jmcneill 
    575   1.1  jmcneill #define	ENABLE_EVENT(e)		evmask[(e) / 8] |= 1 << ((e) % 8)
    576   1.1  jmcneill 	/* Events used to drive the state machine */
    577  1.18   mlelstv 	switch (ic->ic_opmode) {
    578  1.18   mlelstv 	case IEEE80211_M_STA:
    579  1.18   mlelstv 		ENABLE_EVENT(BWFM_E_IF);
    580  1.18   mlelstv 		ENABLE_EVENT(BWFM_E_LINK);
    581  1.18   mlelstv 		ENABLE_EVENT(BWFM_E_AUTH);
    582  1.18   mlelstv 		ENABLE_EVENT(BWFM_E_ASSOC);
    583  1.18   mlelstv 		ENABLE_EVENT(BWFM_E_DEAUTH);
    584  1.18   mlelstv 		ENABLE_EVENT(BWFM_E_DISASSOC);
    585  1.18   mlelstv 		ENABLE_EVENT(BWFM_E_SET_SSID);
    586  1.18   mlelstv 		ENABLE_EVENT(BWFM_E_ESCAN_RESULT);
    587  1.18   mlelstv 		break;
    588  1.18   mlelstv #ifndef IEEE80211_STA_ONLY
    589  1.18   mlelstv 	case IEEE80211_M_HOSTAP:
    590  1.18   mlelstv 		ENABLE_EVENT(BWFM_E_AUTH_IND);
    591  1.18   mlelstv 		ENABLE_EVENT(BWFM_E_ASSOC_IND);
    592  1.18   mlelstv 		ENABLE_EVENT(BWFM_E_REASSOC_IND);
    593  1.18   mlelstv 		ENABLE_EVENT(BWFM_E_DEAUTH_IND);
    594  1.18   mlelstv 		ENABLE_EVENT(BWFM_E_DISASSOC_IND);
    595  1.18   mlelstv 		ENABLE_EVENT(BWFM_E_ESCAN_RESULT);
    596  1.18   mlelstv 		ENABLE_EVENT(BWFM_E_ESCAN_RESULT);
    597  1.18   mlelstv 		break;
    598  1.18   mlelstv #endif
    599  1.18   mlelstv 	default:
    600  1.18   mlelstv 		break;
    601  1.18   mlelstv 	}
    602   1.1  jmcneill #undef	ENABLE_EVENT
    603   1.1  jmcneill 
    604   1.1  jmcneill #ifdef BWFM_DEBUG
    605   1.1  jmcneill 	memset(evmask, 0xff, sizeof(evmask));
    606   1.1  jmcneill #endif
    607  1.27  riastrad 
    608   1.1  jmcneill 	if (bwfm_fwvar_var_set_data(sc, "event_msgs", evmask, sizeof(evmask))) {
    609   1.1  jmcneill 		printf("%s: could not set event mask\n", DEVNAME(sc));
    610   1.1  jmcneill 		return EIO;
    611   1.1  jmcneill 	}
    612   1.1  jmcneill 
    613   1.1  jmcneill 	if (bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_SCAN_CHANNEL_TIME,
    614   1.1  jmcneill 	    BWFM_DEFAULT_SCAN_CHANNEL_TIME)) {
    615   1.1  jmcneill 		printf("%s: could not set scan channel time\n", DEVNAME(sc));
    616   1.1  jmcneill 		return EIO;
    617   1.1  jmcneill 	}
    618   1.1  jmcneill 	if (bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_SCAN_UNASSOC_TIME,
    619   1.1  jmcneill 	    BWFM_DEFAULT_SCAN_UNASSOC_TIME)) {
    620   1.1  jmcneill 		printf("%s: could not set scan unassoc time\n", DEVNAME(sc));
    621   1.1  jmcneill 		return EIO;
    622   1.1  jmcneill 	}
    623   1.1  jmcneill 	if (bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_SCAN_PASSIVE_TIME,
    624   1.1  jmcneill 	    BWFM_DEFAULT_SCAN_PASSIVE_TIME)) {
    625   1.1  jmcneill 		printf("%s: could not set scan passive time\n", DEVNAME(sc));
    626   1.1  jmcneill 		return EIO;
    627   1.1  jmcneill 	}
    628   1.1  jmcneill 
    629  1.18   mlelstv         /*
    630  1.18   mlelstv          * Use CAM (constantly awake) when we are running as AP
    631  1.18   mlelstv          * otherwise use fast power saving.
    632  1.18   mlelstv          */
    633  1.18   mlelstv 	pm = BWFM_PM_FAST_PS;
    634  1.18   mlelstv #ifndef IEEE80211_STA_ONLY
    635  1.18   mlelstv 	if (ic->ic_opmode == IEEE80211_M_HOSTAP)
    636  1.18   mlelstv 		pm = BWFM_PM_CAM;
    637  1.18   mlelstv #endif
    638  1.18   mlelstv 	if (bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_PM, pm)) {
    639   1.1  jmcneill 		printf("%s: could not set power\n", DEVNAME(sc));
    640   1.1  jmcneill 		return EIO;
    641   1.1  jmcneill 	}
    642   1.1  jmcneill 
    643   1.1  jmcneill 	bwfm_fwvar_var_set_int(sc, "txbf", 1);
    644   1.1  jmcneill 	bwfm_fwvar_cmd_set_int(sc, BWFM_C_UP, 0);
    645   1.1  jmcneill 	bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_INFRA, 1);
    646   1.1  jmcneill 	bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_AP, 0);
    647   1.1  jmcneill 
    648   1.1  jmcneill 	/* Disable all offloading (ARP, NDP, TCP/UDP cksum). */
    649   1.1  jmcneill 	bwfm_fwvar_var_set_int(sc, "arp_ol", 0);
    650   1.1  jmcneill 	bwfm_fwvar_var_set_int(sc, "arpoe", 0);
    651   1.1  jmcneill 	bwfm_fwvar_var_set_int(sc, "ndoe", 0);
    652   1.1  jmcneill 	bwfm_fwvar_var_set_int(sc, "toe", 0);
    653   1.1  jmcneill 
    654   1.7  jmcneill 	/* Accept all multicast frames. */
    655   1.7  jmcneill 	bwfm_fwvar_var_set_int(sc, "allmulti", 1);
    656   1.7  jmcneill 
    657   1.7  jmcneill 	/* Setup promiscuous mode */
    658   1.7  jmcneill 	bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_PROMISC,
    659   1.7  jmcneill 	    (ifp->if_flags & IFF_PROMISC) ? 1 : 0);
    660   1.7  jmcneill 
    661   1.1  jmcneill 	/*
    662   1.1  jmcneill 	 * Tell the firmware supplicant that we are going to handle the
    663   1.1  jmcneill 	 * WPA handshake ourselves.
    664   1.1  jmcneill 	 */
    665   1.1  jmcneill 	bwfm_fwvar_var_set_int(sc, "sup_wpa", 0);
    666   1.1  jmcneill 
    667   1.1  jmcneill 	ifp->if_flags |= IFF_RUNNING;
    668   1.1  jmcneill 	ifp->if_flags &= ~IFF_OACTIVE;
    669   1.1  jmcneill 
    670   1.1  jmcneill 	if (ic->ic_opmode != IEEE80211_M_MONITOR) {
    671   1.1  jmcneill 		if (ic->ic_roaming != IEEE80211_ROAMING_MANUAL)
    672   1.1  jmcneill 			ieee80211_new_state(ic, IEEE80211_S_SCAN, -1);
    673   1.1  jmcneill 	} else {
    674   1.1  jmcneill 		ieee80211_new_state(ic, IEEE80211_S_RUN, -1);
    675   1.1  jmcneill 	}
    676   1.1  jmcneill 
    677   1.1  jmcneill 	return 0;
    678   1.1  jmcneill }
    679   1.1  jmcneill 
    680   1.1  jmcneill void
    681   1.1  jmcneill bwfm_stop(struct ifnet *ifp, int disable)
    682   1.1  jmcneill {
    683   1.1  jmcneill 	struct bwfm_softc *sc = ifp->if_softc;
    684   1.1  jmcneill 	struct ieee80211com *ic = &sc->sc_ic;
    685  1.18   mlelstv 	struct bwfm_join_params join;
    686   1.1  jmcneill 
    687   1.1  jmcneill 	sc->sc_tx_timer = 0;
    688   1.1  jmcneill 	ifp->if_timer = 0;
    689   1.1  jmcneill 	ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
    690   1.1  jmcneill 
    691  1.32   mlelstv 	ieee80211_new_state(ic, IEEE80211_S_INIT, -1);
    692  1.32   mlelstv 
    693  1.18   mlelstv 	memset(&join, 0, sizeof(join));
    694  1.18   mlelstv 	bwfm_fwvar_cmd_set_data(sc, BWFM_C_SET_SSID, &join, sizeof(join));
    695   1.1  jmcneill 	bwfm_fwvar_cmd_set_int(sc, BWFM_C_DOWN, 1);
    696   1.1  jmcneill 	bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_PM, 0);
    697  1.18   mlelstv 	bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_AP, 0);
    698  1.18   mlelstv 	bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_INFRA, 0);
    699  1.18   mlelstv 	bwfm_fwvar_cmd_set_int(sc, BWFM_C_UP, 1);
    700  1.18   mlelstv 	bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_PM, BWFM_PM_FAST_PS);
    701  1.32   mlelstv 	bwfm_fwvar_var_set_int(sc, "mpc", 1);
    702  1.18   mlelstv 
    703  1.18   mlelstv 	if (sc->sc_bus_ops->bs_stop)
    704  1.18   mlelstv 		sc->sc_bus_ops->bs_stop(sc);
    705   1.1  jmcneill }
    706   1.1  jmcneill 
    707   1.1  jmcneill void
    708   1.1  jmcneill bwfm_watchdog(struct ifnet *ifp)
    709   1.1  jmcneill {
    710   1.1  jmcneill 	struct bwfm_softc *sc = ifp->if_softc;
    711   1.1  jmcneill 	struct ieee80211com *ic = &sc->sc_ic;
    712   1.1  jmcneill 
    713   1.1  jmcneill 	ifp->if_timer = 0;
    714   1.1  jmcneill 
    715   1.1  jmcneill 	if (sc->sc_tx_timer > 0) {
    716   1.1  jmcneill 		if (--sc->sc_tx_timer == 0) {
    717   1.1  jmcneill 			printf("%s: device timeout\n", DEVNAME(sc));
    718  1.20   thorpej 			if_statinc(ifp, if_oerrors);
    719   1.1  jmcneill 			return;
    720   1.1  jmcneill 		}
    721   1.1  jmcneill 		ifp->if_timer = 1;
    722   1.1  jmcneill 	}
    723   1.1  jmcneill 	ieee80211_watchdog(ic);
    724   1.1  jmcneill }
    725   1.1  jmcneill 
    726   1.1  jmcneill int
    727   1.1  jmcneill bwfm_ioctl(struct ifnet *ifp, u_long cmd, void *data)
    728   1.1  jmcneill {
    729   1.1  jmcneill 	struct bwfm_softc *sc = ifp->if_softc;
    730   1.1  jmcneill 	struct ieee80211com *ic = &sc->sc_ic;
    731   1.1  jmcneill 	int s, error = 0;
    732   1.1  jmcneill 
    733   1.1  jmcneill 	s = splnet();
    734   1.1  jmcneill 
    735   1.1  jmcneill 	switch (cmd) {
    736   1.1  jmcneill 	case SIOCSIFFLAGS:
    737   1.1  jmcneill 		if ((error = ifioctl_common(ifp, cmd, data)) != 0)
    738   1.1  jmcneill 			break;
    739   1.1  jmcneill 		switch (ifp->if_flags & (IFF_UP | IFF_RUNNING)) {
    740   1.1  jmcneill 		case IFF_UP | IFF_RUNNING:
    741   1.1  jmcneill 			break;
    742   1.1  jmcneill 		case IFF_UP:
    743   1.1  jmcneill 			bwfm_init(ifp);
    744   1.1  jmcneill 			break;
    745   1.1  jmcneill 		case IFF_RUNNING:
    746   1.1  jmcneill 			bwfm_stop(ifp, 1);
    747   1.1  jmcneill 			break;
    748   1.1  jmcneill 		case 0:
    749   1.1  jmcneill 			break;
    750   1.1  jmcneill 		}
    751   1.1  jmcneill 		break;
    752   1.1  jmcneill 
    753   1.1  jmcneill 	case SIOCADDMULTI:
    754   1.1  jmcneill 	case SIOCDELMULTI:
    755   1.1  jmcneill 		if ((error = ether_ioctl(ifp, cmd, data)) == ENETRESET) {
    756   1.1  jmcneill 			/* setup multicast filter, etc */
    757   1.1  jmcneill 			error = 0;
    758   1.1  jmcneill 		}
    759   1.1  jmcneill 		break;
    760   1.1  jmcneill 
    761  1.17  jmcneill 	case SIOCGIFMEDIA:
    762  1.17  jmcneill 		error = ieee80211_ioctl(ic, cmd, data);
    763  1.17  jmcneill 		if (error == 0 && ic->ic_state == IEEE80211_S_RUN)
    764  1.17  jmcneill 			bwfm_get_sta_info(sc, (struct ifmediareq *)data);
    765  1.17  jmcneill 		break;
    766  1.17  jmcneill 
    767   1.1  jmcneill 	default:
    768   1.1  jmcneill 		error = ieee80211_ioctl(ic, cmd, data);
    769   1.1  jmcneill 	}
    770   1.1  jmcneill 
    771   1.1  jmcneill 	if (error == ENETRESET) {
    772   1.1  jmcneill 		if ((ifp->if_flags & IFF_UP) != 0 &&
    773   1.1  jmcneill 		    (ifp->if_flags & IFF_RUNNING) != 0 &&
    774   1.1  jmcneill 		    ic->ic_roaming != IEEE80211_ROAMING_MANUAL) {
    775   1.1  jmcneill 			bwfm_init(ifp);
    776   1.1  jmcneill 		}
    777   1.1  jmcneill 		error = 0;
    778   1.1  jmcneill 	}
    779   1.1  jmcneill 
    780   1.1  jmcneill 	splx(s);
    781   1.1  jmcneill 
    782   1.1  jmcneill 	return error;
    783   1.1  jmcneill }
    784   1.1  jmcneill 
    785   1.1  jmcneill int
    786   1.1  jmcneill bwfm_send_mgmt(struct ieee80211com *ic, struct ieee80211_node *ni,
    787   1.1  jmcneill     int type, int arg)
    788   1.1  jmcneill {
    789   1.1  jmcneill 	return 0;
    790   1.1  jmcneill }
    791   1.1  jmcneill 
    792   1.1  jmcneill void
    793   1.1  jmcneill bwfm_recv_mgmt(struct ieee80211com *ic, struct mbuf *m0,
    794   1.1  jmcneill     struct ieee80211_node *ni, int subtype, int rssi, uint32_t rstamp)
    795   1.1  jmcneill {
    796   1.1  jmcneill }
    797   1.1  jmcneill 
    798   1.1  jmcneill int
    799   1.1  jmcneill bwfm_key_set(struct ieee80211com *ic, const struct ieee80211_key *wk,
    800   1.1  jmcneill     const uint8_t mac[IEEE80211_ADDR_LEN])
    801   1.1  jmcneill {
    802   1.1  jmcneill 	struct bwfm_softc *sc = ic->ic_ifp->if_softc;
    803   1.1  jmcneill 	struct bwfm_task *t;
    804   1.1  jmcneill 
    805  1.29  riastrad 	t = pool_cache_get(sc->sc_freetask, PR_NOWAIT);
    806   1.1  jmcneill 	if (t == NULL) {
    807   1.1  jmcneill 		printf("%s: no free tasks\n", DEVNAME(sc));
    808   1.1  jmcneill 		return 0;
    809   1.1  jmcneill 	}
    810   1.1  jmcneill 
    811  1.29  riastrad 	t->t_sc = sc;
    812   1.1  jmcneill 	t->t_cmd = BWFM_TASK_KEY_SET;
    813   1.1  jmcneill 	t->t_key.key = wk;
    814   1.1  jmcneill 	memcpy(t->t_key.mac, mac, sizeof(t->t_key.mac));
    815   1.1  jmcneill 	workqueue_enqueue(sc->sc_taskq, (struct work *)t, NULL);
    816   1.1  jmcneill 	return 1;
    817   1.1  jmcneill }
    818   1.1  jmcneill 
    819   1.1  jmcneill static void
    820   1.1  jmcneill bwfm_key_set_cb(struct bwfm_softc *sc, struct bwfm_cmd_key *ck)
    821   1.1  jmcneill {
    822   1.1  jmcneill 	const struct ieee80211_key *wk = ck->key;
    823   1.1  jmcneill 	const uint8_t *mac = ck->mac;
    824   1.1  jmcneill 	struct bwfm_wsec_key wsec_key;
    825   1.1  jmcneill 	uint32_t wsec_enable, wsec;
    826   1.1  jmcneill 	bool ext_key;
    827   1.1  jmcneill 
    828   1.1  jmcneill #ifdef BWFM_DEBUG
    829   1.1  jmcneill 	printf("key_set: key cipher %s len %d: ", wk->wk_cipher->ic_name, wk->wk_keylen);
    830   1.1  jmcneill 	for (int j = 0; j < sizeof(wk->wk_key); j++)
    831   1.1  jmcneill 		printf("%02x", wk->wk_key[j]);
    832   1.1  jmcneill #endif
    833   1.1  jmcneill 
    834   1.1  jmcneill 	if ((wk->wk_flags & IEEE80211_KEY_GROUP) == 0 &&
    835   1.1  jmcneill 	    wk->wk_cipher->ic_cipher != IEEE80211_CIPHER_WEP) {
    836   1.1  jmcneill 		ext_key = true;
    837   1.1  jmcneill 	} else {
    838   1.1  jmcneill 		ext_key = false;
    839   1.1  jmcneill 	}
    840   1.1  jmcneill 
    841   1.1  jmcneill #ifdef BWFM_DEBUG
    842   1.1  jmcneill 	printf(", ext_key = %d", ext_key);
    843   1.1  jmcneill 	printf(", mac = %02x:%02x:%02x:%02x:%02x:%02x",
    844   1.1  jmcneill 	    mac[0], mac[1], mac[2], mac[3], mac[4], mac[5]);
    845   1.1  jmcneill 	printf("\n");
    846   1.1  jmcneill #endif
    847   1.1  jmcneill 
    848   1.1  jmcneill 	memset(&wsec_key, 0, sizeof(wsec_key));
    849   1.1  jmcneill 	if (ext_key && !IEEE80211_IS_MULTICAST(mac))
    850   1.1  jmcneill 		memcpy(wsec_key.ea, mac, sizeof(wsec_key.ea));
    851   1.1  jmcneill 	wsec_key.index = htole32(wk->wk_keyix);
    852   1.1  jmcneill 	wsec_key.len = htole32(wk->wk_keylen);
    853   1.1  jmcneill 	memcpy(wsec_key.data, wk->wk_key, sizeof(wsec_key.data));
    854   1.1  jmcneill 	if (!ext_key)
    855  1.18   mlelstv 		wsec_key.flags = htole32(BWFM_WSEC_PRIMARY_KEY);
    856   1.1  jmcneill 
    857   1.1  jmcneill 	switch (wk->wk_cipher->ic_cipher) {
    858   1.1  jmcneill 	case IEEE80211_CIPHER_WEP:
    859   1.1  jmcneill 		if (wk->wk_keylen == 5)
    860   1.1  jmcneill 			wsec_key.algo = htole32(BWFM_CRYPTO_ALGO_WEP1);
    861   1.1  jmcneill 		else if (wk->wk_keylen == 13)
    862   1.1  jmcneill 			wsec_key.algo = htole32(BWFM_CRYPTO_ALGO_WEP128);
    863   1.1  jmcneill 		else
    864   1.1  jmcneill 			return;
    865   1.1  jmcneill 		wsec_enable = BWFM_WSEC_WEP;
    866   1.1  jmcneill 		break;
    867   1.1  jmcneill 	case IEEE80211_CIPHER_TKIP:
    868   1.1  jmcneill 		wsec_key.algo = htole32(BWFM_CRYPTO_ALGO_TKIP);
    869   1.1  jmcneill 		wsec_enable = BWFM_WSEC_TKIP;
    870   1.1  jmcneill 		break;
    871   1.1  jmcneill 	case IEEE80211_CIPHER_AES_CCM:
    872   1.1  jmcneill 		wsec_key.algo = htole32(BWFM_CRYPTO_ALGO_AES_CCM);
    873   1.1  jmcneill 		wsec_enable = BWFM_WSEC_AES;
    874   1.1  jmcneill 		break;
    875   1.1  jmcneill 	default:
    876   1.1  jmcneill 		printf("%s: %s: cipher %s not supported\n", DEVNAME(sc),
    877   1.1  jmcneill 		    __func__, wk->wk_cipher->ic_name);
    878   1.1  jmcneill 		return;
    879   1.1  jmcneill 	}
    880   1.1  jmcneill 
    881   1.1  jmcneill 	if (bwfm_fwvar_var_set_data(sc, "wsec_key", &wsec_key, sizeof(wsec_key)))
    882   1.1  jmcneill 		return;
    883   1.1  jmcneill 
    884   1.1  jmcneill 	bwfm_fwvar_var_set_int(sc, "wpa_auth", BWFM_WPA_AUTH_WPA2_PSK);
    885   1.1  jmcneill 
    886   1.1  jmcneill 	bwfm_fwvar_var_get_int(sc, "wsec", &wsec);
    887   1.1  jmcneill 	wsec |= wsec_enable;
    888   1.1  jmcneill 	bwfm_fwvar_var_set_int(sc, "wsec", wsec);
    889   1.1  jmcneill }
    890   1.1  jmcneill 
    891   1.1  jmcneill int
    892   1.1  jmcneill bwfm_key_delete(struct ieee80211com *ic, const struct ieee80211_key *wk)
    893   1.1  jmcneill {
    894   1.1  jmcneill 	struct bwfm_softc *sc = ic->ic_ifp->if_softc;
    895   1.1  jmcneill 	struct bwfm_task *t;
    896   1.1  jmcneill 
    897  1.29  riastrad 	t = pool_cache_get(sc->sc_freetask, PR_NOWAIT);
    898   1.1  jmcneill 	if (t == NULL) {
    899   1.1  jmcneill 		printf("%s: no free tasks\n", DEVNAME(sc));
    900   1.1  jmcneill 		return 0;
    901   1.1  jmcneill 	}
    902   1.1  jmcneill 
    903  1.29  riastrad 	t->t_sc = sc;
    904   1.1  jmcneill 	t->t_cmd = BWFM_TASK_KEY_DELETE;
    905   1.1  jmcneill 	t->t_key.key = wk;
    906   1.1  jmcneill 	memset(t->t_key.mac, 0, sizeof(t->t_key.mac));
    907   1.1  jmcneill 	workqueue_enqueue(sc->sc_taskq, (struct work *)t, NULL);
    908   1.1  jmcneill 
    909   1.1  jmcneill 	return 1;
    910   1.1  jmcneill }
    911   1.1  jmcneill 
    912   1.1  jmcneill static void
    913   1.1  jmcneill bwfm_key_delete_cb(struct bwfm_softc *sc, struct bwfm_cmd_key *ck)
    914   1.1  jmcneill {
    915   1.1  jmcneill 	const struct ieee80211_key *wk = ck->key;
    916   1.1  jmcneill 	struct bwfm_wsec_key wsec_key;
    917   1.1  jmcneill 
    918   1.1  jmcneill 	memset(&wsec_key, 0, sizeof(wsec_key));
    919   1.1  jmcneill 	wsec_key.index = htole32(wk->wk_keyix);
    920  1.18   mlelstv 	wsec_key.flags = htole32(BWFM_WSEC_PRIMARY_KEY);
    921   1.1  jmcneill 
    922   1.1  jmcneill 	if (bwfm_fwvar_var_set_data(sc, "wsec_key", &wsec_key, sizeof(wsec_key)))
    923   1.1  jmcneill 		return;
    924   1.1  jmcneill }
    925   1.1  jmcneill 
    926   1.1  jmcneill int
    927   1.1  jmcneill bwfm_newstate(struct ieee80211com *ic, enum ieee80211_state nstate, int arg)
    928   1.1  jmcneill {
    929   1.1  jmcneill 	struct bwfm_softc *sc = ic->ic_ifp->if_softc;
    930   1.1  jmcneill 	struct bwfm_task *t;
    931   1.1  jmcneill 
    932  1.29  riastrad 	t = pool_cache_get(sc->sc_freetask, PR_NOWAIT);
    933   1.1  jmcneill 	if (t == NULL) {
    934   1.1  jmcneill 		printf("%s: no free tasks\n", DEVNAME(sc));
    935   1.1  jmcneill 		return EIO;
    936   1.1  jmcneill 	}
    937   1.1  jmcneill 
    938  1.29  riastrad 	t->t_sc = sc;
    939   1.1  jmcneill 	t->t_cmd = BWFM_TASK_NEWSTATE;
    940   1.1  jmcneill 	t->t_newstate.state = nstate;
    941   1.1  jmcneill 	t->t_newstate.arg = arg;
    942   1.1  jmcneill 	workqueue_enqueue(sc->sc_taskq, (struct work *)t, NULL);
    943   1.1  jmcneill 
    944   1.1  jmcneill 	return 0;
    945   1.1  jmcneill }
    946   1.1  jmcneill 
    947   1.1  jmcneill void
    948   1.1  jmcneill bwfm_newstate_cb(struct bwfm_softc *sc, struct bwfm_cmd_newstate *cmd)
    949   1.1  jmcneill {
    950   1.1  jmcneill 	struct ieee80211com *ic = &sc->sc_ic;
    951   1.1  jmcneill 	enum ieee80211_state ostate = ic->ic_state;
    952   1.1  jmcneill 	enum ieee80211_state nstate = cmd->state;
    953   1.1  jmcneill 	int s;
    954   1.1  jmcneill 
    955   1.1  jmcneill 	DPRINTF(("%s: newstate %d -> %d\n", DEVNAME(sc), ostate, nstate));
    956   1.1  jmcneill 
    957   1.1  jmcneill 	s = splnet();
    958   1.1  jmcneill 
    959   1.1  jmcneill 	switch (nstate) {
    960   1.1  jmcneill 	case IEEE80211_S_INIT:
    961   1.1  jmcneill 		break;
    962   1.1  jmcneill 
    963   1.1  jmcneill 	case IEEE80211_S_SCAN:
    964   1.1  jmcneill 		if (ostate != IEEE80211_S_SCAN) {
    965   1.1  jmcneill 			/* Start of scanning */
    966   1.1  jmcneill 			bwfm_scan(sc);
    967   1.1  jmcneill 		}
    968   1.1  jmcneill 		break;
    969   1.1  jmcneill 
    970   1.1  jmcneill 	case IEEE80211_S_AUTH:
    971   1.1  jmcneill 		bwfm_connect(sc);
    972   1.1  jmcneill 		break;
    973   1.1  jmcneill 
    974   1.1  jmcneill 	case IEEE80211_S_ASSOC:
    975   1.1  jmcneill 		break;
    976   1.1  jmcneill 
    977   1.1  jmcneill 	case IEEE80211_S_RUN:
    978   1.1  jmcneill 		break;
    979   1.1  jmcneill 	}
    980   1.1  jmcneill 
    981   1.1  jmcneill 	sc->sc_newstate(ic, nstate, cmd->arg);
    982   1.1  jmcneill 
    983   1.1  jmcneill 	splx(s);
    984   1.1  jmcneill }
    985   1.1  jmcneill 
    986   1.1  jmcneill void
    987   1.4  jmcneill bwfm_newassoc(struct ieee80211_node *ni, int isnew)
    988   1.4  jmcneill {
    989   1.4  jmcneill 	/* Firmware handles rate adaptation for us */
    990   1.4  jmcneill 	ni->ni_txrate = 0;
    991   1.4  jmcneill }
    992   1.4  jmcneill 
    993   1.4  jmcneill void
    994   1.1  jmcneill bwfm_task(struct work *wk, void *arg)
    995   1.1  jmcneill {
    996   1.1  jmcneill 	struct bwfm_task *t = (struct bwfm_task *)wk;
    997   1.1  jmcneill 	struct bwfm_softc *sc = t->t_sc;
    998   1.1  jmcneill 
    999   1.1  jmcneill 	switch (t->t_cmd) {
   1000   1.1  jmcneill 	case BWFM_TASK_NEWSTATE:
   1001   1.1  jmcneill 		bwfm_newstate_cb(sc, &t->t_newstate);
   1002   1.1  jmcneill 		break;
   1003   1.1  jmcneill 	case BWFM_TASK_KEY_SET:
   1004   1.1  jmcneill 		bwfm_key_set_cb(sc, &t->t_key);
   1005   1.1  jmcneill 		break;
   1006   1.1  jmcneill 	case BWFM_TASK_KEY_DELETE:
   1007   1.1  jmcneill 		bwfm_key_delete_cb(sc, &t->t_key);
   1008   1.1  jmcneill 		break;
   1009  1.15   mlelstv 	case BWFM_TASK_RX_EVENT:
   1010  1.15   mlelstv 		bwfm_rx_event_cb(sc, t->t_mbuf);
   1011  1.15   mlelstv 		break;
   1012   1.1  jmcneill 	default:
   1013   1.1  jmcneill 		panic("bwfm: unknown task command %d", t->t_cmd);
   1014   1.1  jmcneill 	}
   1015   1.1  jmcneill 
   1016  1.29  riastrad 	pool_cache_put(sc->sc_freetask, t);
   1017   1.1  jmcneill }
   1018   1.1  jmcneill 
   1019   1.1  jmcneill int
   1020   1.1  jmcneill bwfm_media_change(struct ifnet *ifp)
   1021   1.1  jmcneill {
   1022   1.1  jmcneill 	return 0;
   1023   1.1  jmcneill }
   1024   1.1  jmcneill 
   1025   1.1  jmcneill /* Chip initialization (SDIO, PCIe) */
   1026   1.1  jmcneill int
   1027   1.1  jmcneill bwfm_chip_attach(struct bwfm_softc *sc)
   1028   1.1  jmcneill {
   1029   1.1  jmcneill 	struct bwfm_core *core;
   1030   1.1  jmcneill 	int need_socram = 0;
   1031   1.1  jmcneill 	int has_socram = 0;
   1032   1.1  jmcneill 	int cpu_found = 0;
   1033   1.1  jmcneill 	uint32_t val;
   1034   1.1  jmcneill 
   1035   1.1  jmcneill 	LIST_INIT(&sc->sc_chip.ch_list);
   1036   1.1  jmcneill 
   1037   1.1  jmcneill 	if (sc->sc_buscore_ops->bc_prepare(sc) != 0) {
   1038   1.1  jmcneill 		printf("%s: failed buscore prepare\n", DEVNAME(sc));
   1039   1.1  jmcneill 		return 1;
   1040   1.1  jmcneill 	}
   1041   1.1  jmcneill 
   1042   1.1  jmcneill 	val = sc->sc_buscore_ops->bc_read(sc,
   1043   1.1  jmcneill 	    BWFM_CHIP_BASE + BWFM_CHIP_REG_CHIPID);
   1044   1.1  jmcneill 	sc->sc_chip.ch_chip = BWFM_CHIP_CHIPID_ID(val);
   1045   1.1  jmcneill 	sc->sc_chip.ch_chiprev = BWFM_CHIP_CHIPID_REV(val);
   1046   1.1  jmcneill 
   1047   1.1  jmcneill 	if ((sc->sc_chip.ch_chip > 0xa000) || (sc->sc_chip.ch_chip < 0x4000))
   1048   1.1  jmcneill 		snprintf(sc->sc_chip.ch_name, sizeof(sc->sc_chip.ch_name),
   1049   1.1  jmcneill 		    "%d", sc->sc_chip.ch_chip);
   1050   1.1  jmcneill 	else
   1051   1.1  jmcneill 		snprintf(sc->sc_chip.ch_name, sizeof(sc->sc_chip.ch_name),
   1052   1.1  jmcneill 		    "%x", sc->sc_chip.ch_chip);
   1053   1.1  jmcneill 
   1054   1.1  jmcneill 	switch (BWFM_CHIP_CHIPID_TYPE(val))
   1055   1.1  jmcneill 	{
   1056   1.1  jmcneill 	case BWFM_CHIP_CHIPID_TYPE_SOCI_SB:
   1057   1.1  jmcneill 		printf("%s: SoC interconnect SB not implemented\n",
   1058   1.1  jmcneill 		    DEVNAME(sc));
   1059   1.1  jmcneill 		return 1;
   1060   1.1  jmcneill 	case BWFM_CHIP_CHIPID_TYPE_SOCI_AI:
   1061   1.1  jmcneill 		sc->sc_chip.ch_core_isup = bwfm_chip_ai_isup;
   1062   1.1  jmcneill 		sc->sc_chip.ch_core_disable = bwfm_chip_ai_disable;
   1063   1.1  jmcneill 		sc->sc_chip.ch_core_reset = bwfm_chip_ai_reset;
   1064   1.1  jmcneill 		bwfm_chip_dmp_erom_scan(sc);
   1065   1.1  jmcneill 		break;
   1066   1.1  jmcneill 	default:
   1067   1.1  jmcneill 		printf("%s: SoC interconnect %d unknown\n",
   1068   1.1  jmcneill 		    DEVNAME(sc), BWFM_CHIP_CHIPID_TYPE(val));
   1069   1.1  jmcneill 		return 1;
   1070   1.1  jmcneill 	}
   1071   1.1  jmcneill 
   1072   1.1  jmcneill 	LIST_FOREACH(core, &sc->sc_chip.ch_list, co_link) {
   1073   1.1  jmcneill 		DPRINTF(("%s: 0x%x:%-2d base 0x%08x wrap 0x%08x\n",
   1074   1.1  jmcneill 		    DEVNAME(sc), core->co_id, core->co_rev,
   1075   1.1  jmcneill 		    core->co_base, core->co_wrapbase));
   1076   1.1  jmcneill 
   1077   1.1  jmcneill 		switch (core->co_id) {
   1078   1.1  jmcneill 		case BWFM_AGENT_CORE_ARM_CM3:
   1079   1.1  jmcneill 			need_socram = true;
   1080   1.1  jmcneill 			/* FALLTHROUGH */
   1081   1.1  jmcneill 		case BWFM_AGENT_CORE_ARM_CR4:
   1082   1.1  jmcneill 		case BWFM_AGENT_CORE_ARM_CA7:
   1083   1.1  jmcneill 			cpu_found = true;
   1084   1.1  jmcneill 			break;
   1085   1.1  jmcneill 		case BWFM_AGENT_INTERNAL_MEM:
   1086   1.1  jmcneill 			has_socram = true;
   1087   1.1  jmcneill 			break;
   1088   1.1  jmcneill 		default:
   1089   1.1  jmcneill 			break;
   1090   1.1  jmcneill 		}
   1091   1.1  jmcneill 	}
   1092   1.1  jmcneill 
   1093   1.1  jmcneill 	if (!cpu_found) {
   1094   1.1  jmcneill 		printf("%s: CPU core not detected\n", DEVNAME(sc));
   1095   1.1  jmcneill 		return 1;
   1096   1.1  jmcneill 	}
   1097   1.1  jmcneill 	if (need_socram && !has_socram) {
   1098   1.1  jmcneill 		printf("%s: RAM core not provided\n", DEVNAME(sc));
   1099   1.1  jmcneill 		return 1;
   1100   1.1  jmcneill 	}
   1101   1.1  jmcneill 
   1102  1.11      maya 	bwfm_chip_set_passive(sc);
   1103   1.1  jmcneill 
   1104   1.1  jmcneill 	if (sc->sc_buscore_ops->bc_reset) {
   1105   1.1  jmcneill 		sc->sc_buscore_ops->bc_reset(sc);
   1106  1.11      maya 		bwfm_chip_set_passive(sc);
   1107   1.1  jmcneill 	}
   1108   1.1  jmcneill 
   1109  1.11      maya 	if ((core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CR4)) != NULL) {
   1110  1.11      maya 		bwfm_chip_tcm_ramsize(sc, core);
   1111  1.11      maya 		bwfm_chip_tcm_rambase(sc);
   1112  1.11      maya 	} else if ((core = bwfm_chip_get_core(sc, BWFM_AGENT_SYS_MEM)) != NULL) {
   1113  1.11      maya 		bwfm_chip_sysmem_ramsize(sc, core);
   1114  1.11      maya 		bwfm_chip_tcm_rambase(sc);
   1115  1.11      maya 	} else if ((core = bwfm_chip_get_core(sc, BWFM_AGENT_INTERNAL_MEM)) != NULL) {
   1116  1.11      maya 		bwfm_chip_socram_ramsize(sc, core);
   1117  1.11      maya 	}
   1118   1.1  jmcneill 
   1119   1.1  jmcneill 	core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_CHIPCOMMON);
   1120   1.1  jmcneill 	sc->sc_chip.ch_cc_caps = sc->sc_buscore_ops->bc_read(sc,
   1121   1.1  jmcneill 	    core->co_base + BWFM_CHIP_REG_CAPABILITIES);
   1122   1.1  jmcneill 	sc->sc_chip.ch_cc_caps_ext = sc->sc_buscore_ops->bc_read(sc,
   1123   1.1  jmcneill 	    core->co_base + BWFM_CHIP_REG_CAPABILITIES_EXT);
   1124   1.1  jmcneill 
   1125   1.1  jmcneill 	core = bwfm_chip_get_pmu(sc);
   1126   1.1  jmcneill 	if (sc->sc_chip.ch_cc_caps & BWFM_CHIP_REG_CAPABILITIES_PMU) {
   1127   1.1  jmcneill 		sc->sc_chip.ch_pmucaps = sc->sc_buscore_ops->bc_read(sc,
   1128   1.1  jmcneill 		    core->co_base + BWFM_CHIP_REG_PMUCAPABILITIES);
   1129   1.1  jmcneill 		sc->sc_chip.ch_pmurev = sc->sc_chip.ch_pmucaps &
   1130   1.1  jmcneill 		    BWFM_CHIP_REG_PMUCAPABILITIES_REV_MASK;
   1131   1.1  jmcneill 	}
   1132   1.1  jmcneill 
   1133   1.1  jmcneill 	if (sc->sc_buscore_ops->bc_setup)
   1134   1.1  jmcneill 		sc->sc_buscore_ops->bc_setup(sc);
   1135   1.1  jmcneill 
   1136   1.1  jmcneill 	return 0;
   1137   1.1  jmcneill }
   1138   1.1  jmcneill 
   1139   1.1  jmcneill struct bwfm_core *
   1140   1.1  jmcneill bwfm_chip_get_core(struct bwfm_softc *sc, int id)
   1141   1.1  jmcneill {
   1142   1.1  jmcneill 	struct bwfm_core *core;
   1143   1.1  jmcneill 
   1144   1.1  jmcneill 	LIST_FOREACH(core, &sc->sc_chip.ch_list, co_link) {
   1145   1.1  jmcneill 		if (core->co_id == id)
   1146   1.1  jmcneill 			return core;
   1147   1.1  jmcneill 	}
   1148   1.1  jmcneill 
   1149   1.1  jmcneill 	return NULL;
   1150   1.1  jmcneill }
   1151   1.1  jmcneill 
   1152   1.1  jmcneill struct bwfm_core *
   1153   1.1  jmcneill bwfm_chip_get_pmu(struct bwfm_softc *sc)
   1154   1.1  jmcneill {
   1155   1.1  jmcneill 	struct bwfm_core *cc, *pmu;
   1156   1.1  jmcneill 
   1157   1.1  jmcneill 	cc = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_CHIPCOMMON);
   1158   1.1  jmcneill 	if (cc->co_rev >= 35 && sc->sc_chip.ch_cc_caps_ext &
   1159   1.1  jmcneill 	    BWFM_CHIP_REG_CAPABILITIES_EXT_AOB_PRESENT) {
   1160   1.1  jmcneill 		pmu = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_PMU);
   1161   1.1  jmcneill 		if (pmu)
   1162   1.1  jmcneill 			return pmu;
   1163   1.1  jmcneill 	}
   1164   1.1  jmcneill 
   1165   1.1  jmcneill 	return cc;
   1166   1.1  jmcneill }
   1167   1.1  jmcneill 
   1168   1.1  jmcneill /* Functions for the AI interconnect */
   1169   1.1  jmcneill int
   1170   1.1  jmcneill bwfm_chip_ai_isup(struct bwfm_softc *sc, struct bwfm_core *core)
   1171   1.1  jmcneill {
   1172   1.1  jmcneill 	uint32_t ioctl, reset;
   1173   1.1  jmcneill 
   1174   1.1  jmcneill 	ioctl = sc->sc_buscore_ops->bc_read(sc,
   1175   1.1  jmcneill 	    core->co_wrapbase + BWFM_AGENT_IOCTL);
   1176   1.1  jmcneill 	reset = sc->sc_buscore_ops->bc_read(sc,
   1177   1.1  jmcneill 	    core->co_wrapbase + BWFM_AGENT_RESET_CTL);
   1178   1.1  jmcneill 
   1179   1.1  jmcneill 	if (((ioctl & (BWFM_AGENT_IOCTL_FGC | BWFM_AGENT_IOCTL_CLK)) ==
   1180   1.1  jmcneill 	    BWFM_AGENT_IOCTL_CLK) &&
   1181   1.1  jmcneill 	    ((reset & BWFM_AGENT_RESET_CTL_RESET) == 0))
   1182   1.1  jmcneill 		return 1;
   1183   1.1  jmcneill 
   1184   1.1  jmcneill 	return 0;
   1185   1.1  jmcneill }
   1186   1.1  jmcneill 
   1187   1.1  jmcneill void
   1188   1.1  jmcneill bwfm_chip_ai_disable(struct bwfm_softc *sc, struct bwfm_core *core,
   1189   1.1  jmcneill     uint32_t prereset, uint32_t reset)
   1190   1.1  jmcneill {
   1191   1.1  jmcneill 	uint32_t val;
   1192   1.1  jmcneill 	int i;
   1193   1.1  jmcneill 
   1194   1.1  jmcneill 	val = sc->sc_buscore_ops->bc_read(sc,
   1195   1.1  jmcneill 	    core->co_wrapbase + BWFM_AGENT_RESET_CTL);
   1196   1.1  jmcneill 	if ((val & BWFM_AGENT_RESET_CTL_RESET) == 0) {
   1197   1.1  jmcneill 
   1198   1.1  jmcneill 		sc->sc_buscore_ops->bc_write(sc,
   1199   1.1  jmcneill 		    core->co_wrapbase + BWFM_AGENT_IOCTL,
   1200   1.1  jmcneill 		    prereset | BWFM_AGENT_IOCTL_FGC | BWFM_AGENT_IOCTL_CLK);
   1201   1.1  jmcneill 		sc->sc_buscore_ops->bc_read(sc,
   1202   1.1  jmcneill 		    core->co_wrapbase + BWFM_AGENT_IOCTL);
   1203   1.1  jmcneill 
   1204   1.1  jmcneill 		sc->sc_buscore_ops->bc_write(sc,
   1205   1.1  jmcneill 		    core->co_wrapbase + BWFM_AGENT_RESET_CTL,
   1206   1.1  jmcneill 		    BWFM_AGENT_RESET_CTL_RESET);
   1207   1.1  jmcneill 		delay(20);
   1208   1.1  jmcneill 
   1209   1.1  jmcneill 		for (i = 300; i > 0; i--) {
   1210   1.1  jmcneill 			if (sc->sc_buscore_ops->bc_read(sc,
   1211   1.1  jmcneill 			    core->co_wrapbase + BWFM_AGENT_RESET_CTL) ==
   1212   1.1  jmcneill 			    BWFM_AGENT_RESET_CTL_RESET)
   1213   1.1  jmcneill 				break;
   1214   1.1  jmcneill 		}
   1215   1.1  jmcneill 		if (i == 0)
   1216   1.1  jmcneill 			printf("%s: timeout on core reset\n", DEVNAME(sc));
   1217   1.1  jmcneill 	}
   1218   1.1  jmcneill 
   1219   1.1  jmcneill 	sc->sc_buscore_ops->bc_write(sc,
   1220   1.1  jmcneill 	    core->co_wrapbase + BWFM_AGENT_IOCTL,
   1221   1.1  jmcneill 	    reset | BWFM_AGENT_IOCTL_FGC | BWFM_AGENT_IOCTL_CLK);
   1222   1.1  jmcneill 	sc->sc_buscore_ops->bc_read(sc,
   1223   1.1  jmcneill 	    core->co_wrapbase + BWFM_AGENT_IOCTL);
   1224   1.1  jmcneill }
   1225   1.1  jmcneill 
   1226   1.1  jmcneill void
   1227   1.1  jmcneill bwfm_chip_ai_reset(struct bwfm_softc *sc, struct bwfm_core *core,
   1228   1.1  jmcneill     uint32_t prereset, uint32_t reset, uint32_t postreset)
   1229   1.1  jmcneill {
   1230   1.1  jmcneill 	int i;
   1231   1.1  jmcneill 
   1232   1.1  jmcneill 	bwfm_chip_ai_disable(sc, core, prereset, reset);
   1233   1.1  jmcneill 
   1234   1.1  jmcneill 	for (i = 50; i > 0; i--) {
   1235   1.1  jmcneill 		if ((sc->sc_buscore_ops->bc_read(sc,
   1236   1.1  jmcneill 		    core->co_wrapbase + BWFM_AGENT_RESET_CTL) &
   1237   1.1  jmcneill 		    BWFM_AGENT_RESET_CTL_RESET) == 0)
   1238   1.1  jmcneill 			break;
   1239   1.1  jmcneill 		sc->sc_buscore_ops->bc_write(sc,
   1240   1.1  jmcneill 		    core->co_wrapbase + BWFM_AGENT_RESET_CTL, 0);
   1241   1.1  jmcneill 		delay(60);
   1242   1.1  jmcneill 	}
   1243   1.1  jmcneill 	if (i == 0)
   1244   1.1  jmcneill 		printf("%s: timeout on core reset\n", DEVNAME(sc));
   1245   1.1  jmcneill 
   1246   1.1  jmcneill 	sc->sc_buscore_ops->bc_write(sc,
   1247   1.1  jmcneill 	    core->co_wrapbase + BWFM_AGENT_IOCTL,
   1248   1.1  jmcneill 	    postreset | BWFM_AGENT_IOCTL_CLK);
   1249   1.1  jmcneill 	sc->sc_buscore_ops->bc_read(sc,
   1250   1.1  jmcneill 	    core->co_wrapbase + BWFM_AGENT_IOCTL);
   1251   1.1  jmcneill }
   1252   1.1  jmcneill 
   1253   1.1  jmcneill void
   1254   1.1  jmcneill bwfm_chip_dmp_erom_scan(struct bwfm_softc *sc)
   1255   1.1  jmcneill {
   1256   1.1  jmcneill 	uint32_t erom, val, base, wrap;
   1257   1.1  jmcneill 	uint8_t type = 0;
   1258   1.1  jmcneill 	uint16_t id;
   1259   1.1  jmcneill 	uint8_t nmw, nsw, rev;
   1260   1.1  jmcneill 	struct bwfm_core *core;
   1261   1.1  jmcneill 
   1262   1.1  jmcneill 	erom = sc->sc_buscore_ops->bc_read(sc,
   1263   1.1  jmcneill 	    BWFM_CHIP_BASE + BWFM_CHIP_REG_EROMPTR);
   1264   1.1  jmcneill 	while (type != BWFM_DMP_DESC_EOT) {
   1265   1.1  jmcneill 		val = sc->sc_buscore_ops->bc_read(sc, erom);
   1266   1.1  jmcneill 		type = val & BWFM_DMP_DESC_MASK;
   1267   1.1  jmcneill 		erom += 4;
   1268   1.1  jmcneill 
   1269   1.1  jmcneill 		if (type != BWFM_DMP_DESC_COMPONENT)
   1270   1.1  jmcneill 			continue;
   1271   1.1  jmcneill 
   1272   1.1  jmcneill 		id = (val & BWFM_DMP_COMP_PARTNUM)
   1273   1.1  jmcneill 		    >> BWFM_DMP_COMP_PARTNUM_S;
   1274   1.1  jmcneill 
   1275   1.1  jmcneill 		val = sc->sc_buscore_ops->bc_read(sc, erom);
   1276   1.1  jmcneill 		type = val & BWFM_DMP_DESC_MASK;
   1277   1.1  jmcneill 		erom += 4;
   1278   1.1  jmcneill 
   1279   1.1  jmcneill 		if (type != BWFM_DMP_DESC_COMPONENT) {
   1280   1.1  jmcneill 			printf("%s: not component descriptor\n", DEVNAME(sc));
   1281   1.1  jmcneill 			return;
   1282   1.1  jmcneill 		}
   1283   1.1  jmcneill 
   1284   1.1  jmcneill 		nmw = (val & BWFM_DMP_COMP_NUM_MWRAP)
   1285   1.1  jmcneill 		    >> BWFM_DMP_COMP_NUM_MWRAP_S;
   1286   1.1  jmcneill 		nsw = (val & BWFM_DMP_COMP_NUM_SWRAP)
   1287   1.1  jmcneill 		    >> BWFM_DMP_COMP_NUM_SWRAP_S;
   1288   1.1  jmcneill 		rev = (val & BWFM_DMP_COMP_REVISION)
   1289   1.1  jmcneill 		    >> BWFM_DMP_COMP_REVISION_S;
   1290   1.1  jmcneill 
   1291   1.1  jmcneill 		if (nmw + nsw == 0 && id != BWFM_AGENT_CORE_PMU)
   1292   1.1  jmcneill 			continue;
   1293   1.1  jmcneill 
   1294   1.1  jmcneill 		if (bwfm_chip_dmp_get_regaddr(sc, &erom, &base, &wrap))
   1295   1.1  jmcneill 			continue;
   1296   1.1  jmcneill 
   1297   1.1  jmcneill 		core = kmem_alloc(sizeof(*core), KM_SLEEP);
   1298   1.1  jmcneill 		core->co_id = id;
   1299   1.1  jmcneill 		core->co_base = base;
   1300   1.1  jmcneill 		core->co_wrapbase = wrap;
   1301   1.1  jmcneill 		core->co_rev = rev;
   1302   1.1  jmcneill 		LIST_INSERT_HEAD(&sc->sc_chip.ch_list, core, co_link);
   1303   1.1  jmcneill 	}
   1304   1.1  jmcneill }
   1305   1.1  jmcneill 
   1306   1.1  jmcneill int
   1307   1.1  jmcneill bwfm_chip_dmp_get_regaddr(struct bwfm_softc *sc, uint32_t *erom,
   1308   1.1  jmcneill     uint32_t *base, uint32_t *wrap)
   1309   1.1  jmcneill {
   1310   1.1  jmcneill 	uint8_t type = 0, mpnum __unused = 0;
   1311   1.1  jmcneill 	uint8_t stype, sztype, wraptype;
   1312   1.1  jmcneill 	uint32_t val;
   1313   1.1  jmcneill 
   1314   1.1  jmcneill 	*base = 0;
   1315   1.1  jmcneill 	*wrap = 0;
   1316   1.1  jmcneill 
   1317   1.1  jmcneill 	val = sc->sc_buscore_ops->bc_read(sc, *erom);
   1318   1.1  jmcneill 	type = val & BWFM_DMP_DESC_MASK;
   1319   1.1  jmcneill 	if (type == BWFM_DMP_DESC_MASTER_PORT) {
   1320   1.1  jmcneill 		mpnum = (val & BWFM_DMP_MASTER_PORT_NUM)
   1321   1.1  jmcneill 		    >> BWFM_DMP_MASTER_PORT_NUM_S;
   1322   1.1  jmcneill 		wraptype = BWFM_DMP_SLAVE_TYPE_MWRAP;
   1323   1.1  jmcneill 		*erom += 4;
   1324   1.1  jmcneill 	} else if ((type & ~BWFM_DMP_DESC_ADDRSIZE_GT32) ==
   1325   1.1  jmcneill 	    BWFM_DMP_DESC_ADDRESS)
   1326   1.1  jmcneill 		wraptype = BWFM_DMP_SLAVE_TYPE_SWRAP;
   1327   1.1  jmcneill 	else
   1328   1.1  jmcneill 		return 1;
   1329   1.1  jmcneill 
   1330   1.1  jmcneill 	do {
   1331   1.1  jmcneill 		do {
   1332   1.1  jmcneill 			val = sc->sc_buscore_ops->bc_read(sc, *erom);
   1333   1.1  jmcneill 			type = val & BWFM_DMP_DESC_MASK;
   1334   1.1  jmcneill 			if (type == BWFM_DMP_DESC_COMPONENT)
   1335   1.1  jmcneill 				return 0;
   1336   1.1  jmcneill 			if (type == BWFM_DMP_DESC_EOT)
   1337   1.1  jmcneill 				return 1;
   1338   1.1  jmcneill 			*erom += 4;
   1339   1.1  jmcneill 		} while ((type & ~BWFM_DMP_DESC_ADDRSIZE_GT32) !=
   1340   1.1  jmcneill 		     BWFM_DMP_DESC_ADDRESS);
   1341   1.1  jmcneill 
   1342   1.1  jmcneill 		if (type & BWFM_DMP_DESC_ADDRSIZE_GT32)
   1343   1.1  jmcneill 			*erom += 4;
   1344   1.1  jmcneill 
   1345   1.1  jmcneill 		sztype = (val & BWFM_DMP_SLAVE_SIZE_TYPE)
   1346   1.1  jmcneill 		    >> BWFM_DMP_SLAVE_SIZE_TYPE_S;
   1347   1.1  jmcneill 		if (sztype == BWFM_DMP_SLAVE_SIZE_DESC) {
   1348   1.1  jmcneill 			val = sc->sc_buscore_ops->bc_read(sc, *erom);
   1349   1.1  jmcneill 			type = val & BWFM_DMP_DESC_MASK;
   1350   1.1  jmcneill 			if (type & BWFM_DMP_DESC_ADDRSIZE_GT32)
   1351   1.1  jmcneill 				*erom += 8;
   1352   1.1  jmcneill 			else
   1353   1.1  jmcneill 				*erom += 4;
   1354   1.1  jmcneill 		}
   1355   1.1  jmcneill 		if (sztype != BWFM_DMP_SLAVE_SIZE_4K)
   1356   1.1  jmcneill 			continue;
   1357   1.1  jmcneill 
   1358   1.1  jmcneill 		stype = (val & BWFM_DMP_SLAVE_TYPE) >> BWFM_DMP_SLAVE_TYPE_S;
   1359   1.1  jmcneill 		if (*base == 0 && stype == BWFM_DMP_SLAVE_TYPE_SLAVE)
   1360   1.1  jmcneill 			*base = val & BWFM_DMP_SLAVE_ADDR_BASE;
   1361   1.1  jmcneill 		if (*wrap == 0 && stype == wraptype)
   1362   1.1  jmcneill 			*wrap = val & BWFM_DMP_SLAVE_ADDR_BASE;
   1363   1.1  jmcneill 	} while (*base == 0 || *wrap == 0);
   1364   1.1  jmcneill 
   1365   1.1  jmcneill 	return 0;
   1366   1.1  jmcneill }
   1367   1.1  jmcneill 
   1368   1.1  jmcneill /* Core configuration */
   1369  1.11      maya int
   1370  1.11      maya bwfm_chip_set_active(struct bwfm_softc *sc, const uint32_t rstvec)
   1371  1.11      maya {
   1372  1.11      maya 	if (bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CR4) != NULL)
   1373  1.11      maya 		return bwfm_chip_cr4_set_active(sc, rstvec);
   1374  1.11      maya 	if (bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CA7) != NULL)
   1375  1.11      maya 		return bwfm_chip_ca7_set_active(sc, rstvec);
   1376  1.11      maya 	if (bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CM3) != NULL)
   1377  1.11      maya 		return bwfm_chip_cm3_set_active(sc);
   1378  1.11      maya 	return 1;
   1379  1.11      maya }
   1380  1.11      maya 
   1381  1.11      maya void
   1382  1.11      maya bwfm_chip_set_passive(struct bwfm_softc *sc)
   1383  1.11      maya {
   1384  1.11      maya 	if (bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CR4) != NULL) {
   1385  1.11      maya 		bwfm_chip_cr4_set_passive(sc);
   1386  1.11      maya 		return;
   1387  1.11      maya 	}
   1388  1.11      maya 	if (bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CA7) != NULL) {
   1389  1.11      maya 		bwfm_chip_ca7_set_passive(sc);
   1390  1.11      maya 		return;
   1391  1.11      maya 	}
   1392  1.11      maya 	if (bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CM3) != NULL) {
   1393  1.11      maya 		bwfm_chip_cm3_set_passive(sc);
   1394  1.11      maya 		return;
   1395  1.11      maya 	}
   1396  1.11      maya }
   1397  1.11      maya 
   1398  1.11      maya int
   1399  1.11      maya bwfm_chip_cr4_set_active(struct bwfm_softc *sc, const uint32_t rstvec)
   1400  1.11      maya {
   1401  1.11      maya 	struct bwfm_core *core;
   1402  1.11      maya 
   1403  1.11      maya 	sc->sc_buscore_ops->bc_activate(sc, rstvec);
   1404  1.11      maya 	core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CR4);
   1405  1.11      maya 	sc->sc_chip.ch_core_reset(sc, core,
   1406  1.11      maya 	    BWFM_AGENT_IOCTL_ARMCR4_CPUHALT, 0, 0);
   1407  1.11      maya 
   1408  1.11      maya 	return 0;
   1409  1.11      maya }
   1410  1.11      maya 
   1411   1.1  jmcneill void
   1412   1.1  jmcneill bwfm_chip_cr4_set_passive(struct bwfm_softc *sc)
   1413   1.1  jmcneill {
   1414  1.11      maya 	struct bwfm_core *core;
   1415  1.11      maya 	uint32_t val;
   1416  1.11      maya 
   1417  1.11      maya 	core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CR4);
   1418  1.11      maya 	val = sc->sc_buscore_ops->bc_read(sc,
   1419  1.11      maya 	    core->co_wrapbase + BWFM_AGENT_IOCTL);
   1420  1.11      maya 	sc->sc_chip.ch_core_reset(sc, core,
   1421  1.11      maya 	    val & BWFM_AGENT_IOCTL_ARMCR4_CPUHALT,
   1422  1.11      maya 	    BWFM_AGENT_IOCTL_ARMCR4_CPUHALT,
   1423  1.11      maya 	    BWFM_AGENT_IOCTL_ARMCR4_CPUHALT);
   1424  1.11      maya 
   1425  1.11      maya 	core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_80211);
   1426  1.11      maya 	sc->sc_chip.ch_core_reset(sc, core, BWFM_AGENT_D11_IOCTL_PHYRESET |
   1427  1.11      maya 	    BWFM_AGENT_D11_IOCTL_PHYCLOCKEN, BWFM_AGENT_D11_IOCTL_PHYCLOCKEN,
   1428  1.11      maya 	    BWFM_AGENT_D11_IOCTL_PHYCLOCKEN);
   1429  1.11      maya }
   1430  1.11      maya 
   1431  1.11      maya int
   1432  1.11      maya bwfm_chip_ca7_set_active(struct bwfm_softc *sc, const uint32_t rstvec)
   1433  1.11      maya {
   1434  1.11      maya 	struct bwfm_core *core;
   1435  1.11      maya 
   1436  1.11      maya 	sc->sc_buscore_ops->bc_activate(sc, rstvec);
   1437  1.11      maya 	core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CA7);
   1438  1.11      maya 	sc->sc_chip.ch_core_reset(sc, core,
   1439  1.11      maya 	    BWFM_AGENT_IOCTL_ARMCR4_CPUHALT, 0, 0);
   1440  1.11      maya 
   1441  1.11      maya 	return 0;
   1442   1.1  jmcneill }
   1443   1.1  jmcneill 
   1444   1.1  jmcneill void
   1445   1.1  jmcneill bwfm_chip_ca7_set_passive(struct bwfm_softc *sc)
   1446   1.1  jmcneill {
   1447  1.11      maya 	struct bwfm_core *core;
   1448  1.11      maya 	uint32_t val;
   1449  1.11      maya 
   1450  1.11      maya 	core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CA7);
   1451  1.11      maya 	val = sc->sc_buscore_ops->bc_read(sc,
   1452  1.11      maya 	    core->co_wrapbase + BWFM_AGENT_IOCTL);
   1453  1.11      maya 	sc->sc_chip.ch_core_reset(sc, core,
   1454  1.11      maya 	    val & BWFM_AGENT_IOCTL_ARMCR4_CPUHALT,
   1455  1.11      maya 	    BWFM_AGENT_IOCTL_ARMCR4_CPUHALT,
   1456  1.11      maya 	    BWFM_AGENT_IOCTL_ARMCR4_CPUHALT);
   1457  1.11      maya 
   1458  1.11      maya 	core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_80211);
   1459  1.11      maya 	sc->sc_chip.ch_core_reset(sc, core, BWFM_AGENT_D11_IOCTL_PHYRESET |
   1460  1.11      maya 	    BWFM_AGENT_D11_IOCTL_PHYCLOCKEN, BWFM_AGENT_D11_IOCTL_PHYCLOCKEN,
   1461  1.11      maya 	    BWFM_AGENT_D11_IOCTL_PHYCLOCKEN);
   1462  1.11      maya }
   1463  1.11      maya 
   1464  1.11      maya int
   1465  1.11      maya bwfm_chip_cm3_set_active(struct bwfm_softc *sc)
   1466  1.11      maya {
   1467  1.11      maya 	struct bwfm_core *core;
   1468  1.11      maya 
   1469  1.11      maya 	core = bwfm_chip_get_core(sc, BWFM_AGENT_INTERNAL_MEM);
   1470  1.11      maya 	if (!sc->sc_chip.ch_core_isup(sc, core))
   1471  1.11      maya 		return 1;
   1472  1.11      maya 
   1473  1.11      maya 	sc->sc_buscore_ops->bc_activate(sc, 0);
   1474  1.11      maya 
   1475  1.11      maya 	core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CM3);
   1476  1.11      maya 	sc->sc_chip.ch_core_reset(sc, core, 0, 0, 0);
   1477  1.11      maya 
   1478  1.11      maya 	return 0;
   1479   1.1  jmcneill }
   1480   1.1  jmcneill 
   1481   1.1  jmcneill void
   1482   1.1  jmcneill bwfm_chip_cm3_set_passive(struct bwfm_softc *sc)
   1483   1.1  jmcneill {
   1484   1.1  jmcneill 	struct bwfm_core *core;
   1485   1.1  jmcneill 
   1486   1.1  jmcneill 	core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_ARM_CM3);
   1487   1.1  jmcneill 	sc->sc_chip.ch_core_disable(sc, core, 0, 0);
   1488   1.1  jmcneill 	core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_80211);
   1489   1.1  jmcneill 	sc->sc_chip.ch_core_reset(sc, core, BWFM_AGENT_D11_IOCTL_PHYRESET |
   1490   1.1  jmcneill 	    BWFM_AGENT_D11_IOCTL_PHYCLOCKEN, BWFM_AGENT_D11_IOCTL_PHYCLOCKEN,
   1491   1.1  jmcneill 	    BWFM_AGENT_D11_IOCTL_PHYCLOCKEN);
   1492   1.1  jmcneill 	core = bwfm_chip_get_core(sc, BWFM_AGENT_INTERNAL_MEM);
   1493   1.1  jmcneill 	sc->sc_chip.ch_core_reset(sc, core, 0, 0, 0);
   1494   1.1  jmcneill 
   1495   1.1  jmcneill 	if (sc->sc_chip.ch_chip == BRCM_CC_43430_CHIP_ID) {
   1496   1.1  jmcneill 		sc->sc_buscore_ops->bc_write(sc,
   1497   1.1  jmcneill 		    core->co_base + BWFM_SOCRAM_BANKIDX, 3);
   1498   1.1  jmcneill 		sc->sc_buscore_ops->bc_write(sc,
   1499   1.1  jmcneill 		    core->co_base + BWFM_SOCRAM_BANKPDA, 0);
   1500   1.1  jmcneill 	}
   1501   1.1  jmcneill }
   1502   1.1  jmcneill 
   1503  1.15   mlelstv int
   1504  1.15   mlelstv bwfm_chip_sr_capable(struct bwfm_softc *sc)
   1505  1.15   mlelstv {
   1506  1.15   mlelstv 	struct bwfm_core *core;
   1507  1.15   mlelstv 	uint32_t reg;
   1508  1.15   mlelstv 
   1509  1.15   mlelstv 	if (sc->sc_chip.ch_pmurev < 17)
   1510  1.15   mlelstv 		return 0;
   1511  1.15   mlelstv 
   1512  1.15   mlelstv 	switch (sc->sc_chip.ch_chip) {
   1513  1.15   mlelstv 	case BRCM_CC_4345_CHIP_ID:
   1514  1.15   mlelstv 	case BRCM_CC_4354_CHIP_ID:
   1515  1.15   mlelstv 	case BRCM_CC_4356_CHIP_ID:
   1516  1.15   mlelstv 		core = bwfm_chip_get_pmu(sc);
   1517  1.15   mlelstv 		sc->sc_buscore_ops->bc_write(sc, core->co_base +
   1518  1.15   mlelstv 		    BWFM_CHIP_REG_CHIPCONTROL_ADDR, 3);
   1519  1.15   mlelstv 		reg = sc->sc_buscore_ops->bc_read(sc, core->co_base +
   1520  1.15   mlelstv 		    BWFM_CHIP_REG_CHIPCONTROL_DATA);
   1521  1.15   mlelstv 		return (reg & (1 << 2)) != 0;
   1522  1.15   mlelstv 	case BRCM_CC_43241_CHIP_ID:
   1523  1.15   mlelstv 	case BRCM_CC_4335_CHIP_ID:
   1524  1.15   mlelstv 	case BRCM_CC_4339_CHIP_ID:
   1525  1.15   mlelstv 		core = bwfm_chip_get_pmu(sc);
   1526  1.15   mlelstv 		sc->sc_buscore_ops->bc_write(sc, core->co_base +
   1527  1.15   mlelstv 		    BWFM_CHIP_REG_CHIPCONTROL_ADDR, 3);
   1528  1.15   mlelstv 		reg = sc->sc_buscore_ops->bc_read(sc, core->co_base +
   1529  1.15   mlelstv 		    BWFM_CHIP_REG_CHIPCONTROL_DATA);
   1530  1.15   mlelstv 		return reg != 0;
   1531  1.15   mlelstv 	case BRCM_CC_43430_CHIP_ID:
   1532  1.15   mlelstv 		core = bwfm_chip_get_core(sc, BWFM_AGENT_CORE_CHIPCOMMON);
   1533  1.15   mlelstv 		reg = sc->sc_buscore_ops->bc_read(sc, core->co_base +
   1534  1.15   mlelstv 		    BWFM_CHIP_REG_SR_CONTROL1);
   1535  1.15   mlelstv 		return reg != 0;
   1536  1.15   mlelstv 	default:
   1537  1.15   mlelstv 		core = bwfm_chip_get_pmu(sc);
   1538  1.15   mlelstv 		reg = sc->sc_buscore_ops->bc_read(sc, core->co_base +
   1539  1.15   mlelstv 		    BWFM_CHIP_REG_PMUCAPABILITIES_EXT);
   1540  1.15   mlelstv 		if ((reg & BWFM_CHIP_REG_PMUCAPABILITIES_SR_SUPP) == 0)
   1541  1.15   mlelstv 			return 0;
   1542  1.15   mlelstv 		reg = sc->sc_buscore_ops->bc_read(sc, core->co_base +
   1543  1.15   mlelstv 		    BWFM_CHIP_REG_RETENTION_CTL);
   1544  1.15   mlelstv 		return (reg & (BWFM_CHIP_REG_RETENTION_CTL_MACPHY_DIS |
   1545  1.15   mlelstv 		               BWFM_CHIP_REG_RETENTION_CTL_LOGIC_DIS)) == 0;
   1546  1.15   mlelstv 	}
   1547  1.15   mlelstv }
   1548  1.15   mlelstv 
   1549  1.11      maya /* RAM size helpers */
   1550  1.11      maya void
   1551  1.11      maya bwfm_chip_socram_ramsize(struct bwfm_softc *sc, struct bwfm_core *core)
   1552  1.11      maya {
   1553  1.11      maya 	uint32_t coreinfo, nb, lss, banksize, bankinfo;
   1554  1.11      maya 	uint32_t ramsize = 0, srsize = 0;
   1555  1.11      maya 	int i;
   1556  1.11      maya 
   1557  1.11      maya 	if (!sc->sc_chip.ch_core_isup(sc, core))
   1558  1.11      maya 		sc->sc_chip.ch_core_reset(sc, core, 0, 0, 0);
   1559  1.11      maya 
   1560  1.11      maya 	coreinfo = sc->sc_buscore_ops->bc_read(sc,
   1561  1.11      maya 	    core->co_base + BWFM_SOCRAM_COREINFO);
   1562  1.11      maya 	nb = (coreinfo & BWFM_SOCRAM_COREINFO_SRNB_MASK)
   1563  1.11      maya 	    >> BWFM_SOCRAM_COREINFO_SRNB_SHIFT;
   1564  1.11      maya 
   1565  1.11      maya 	if (core->co_rev <= 7 || core->co_rev == 12) {
   1566  1.11      maya 		banksize = coreinfo & BWFM_SOCRAM_COREINFO_SRBSZ_MASK;
   1567  1.11      maya 		lss = (coreinfo & BWFM_SOCRAM_COREINFO_LSS_MASK)
   1568  1.11      maya 		    >> BWFM_SOCRAM_COREINFO_LSS_SHIFT;
   1569  1.11      maya 		if (lss != 0)
   1570  1.11      maya 			nb--;
   1571  1.11      maya 		ramsize = nb * (1 << (banksize + BWFM_SOCRAM_COREINFO_SRBSZ_BASE));
   1572  1.11      maya 		if (lss != 0)
   1573  1.11      maya 			ramsize += (1 << ((lss - 1) + BWFM_SOCRAM_COREINFO_SRBSZ_BASE));
   1574  1.11      maya 	} else {
   1575  1.11      maya 		for (i = 0; i < nb; i++) {
   1576  1.11      maya 			sc->sc_buscore_ops->bc_write(sc,
   1577  1.11      maya 			    core->co_base + BWFM_SOCRAM_BANKIDX,
   1578  1.11      maya 			    (BWFM_SOCRAM_BANKIDX_MEMTYPE_RAM <<
   1579  1.11      maya 			    BWFM_SOCRAM_BANKIDX_MEMTYPE_SHIFT) | i);
   1580  1.11      maya 			bankinfo = sc->sc_buscore_ops->bc_read(sc,
   1581  1.11      maya 			    core->co_base + BWFM_SOCRAM_BANKINFO);
   1582  1.11      maya 			banksize = ((bankinfo & BWFM_SOCRAM_BANKINFO_SZMASK) + 1)
   1583  1.11      maya 			    * BWFM_SOCRAM_BANKINFO_SZBASE;
   1584  1.11      maya 			ramsize += banksize;
   1585  1.11      maya 			if (bankinfo & BWFM_SOCRAM_BANKINFO_RETNTRAM_MASK)
   1586  1.11      maya 				srsize += banksize;
   1587  1.11      maya 		}
   1588  1.11      maya 	}
   1589  1.11      maya 
   1590  1.11      maya 	switch (sc->sc_chip.ch_chip) {
   1591  1.11      maya 	case BRCM_CC_4334_CHIP_ID:
   1592  1.11      maya 		if (sc->sc_chip.ch_chiprev < 2)
   1593  1.11      maya 			srsize = 32 * 1024;
   1594  1.11      maya 		break;
   1595  1.11      maya 	case BRCM_CC_43430_CHIP_ID:
   1596  1.11      maya 		srsize = 64 * 1024;
   1597  1.11      maya 		break;
   1598  1.11      maya 	default:
   1599  1.11      maya 		break;
   1600  1.11      maya 	}
   1601  1.11      maya 
   1602  1.11      maya 	sc->sc_chip.ch_ramsize = ramsize;
   1603  1.11      maya 	sc->sc_chip.ch_srsize = srsize;
   1604  1.11      maya }
   1605  1.11      maya 
   1606  1.11      maya void
   1607  1.11      maya bwfm_chip_sysmem_ramsize(struct bwfm_softc *sc, struct bwfm_core *core)
   1608  1.11      maya {
   1609  1.11      maya 	uint32_t coreinfo, nb, banksize, bankinfo;
   1610  1.11      maya 	uint32_t ramsize = 0;
   1611  1.11      maya 	int i;
   1612  1.11      maya 
   1613  1.11      maya 	if (!sc->sc_chip.ch_core_isup(sc, core))
   1614  1.11      maya 		sc->sc_chip.ch_core_reset(sc, core, 0, 0, 0);
   1615  1.11      maya 
   1616  1.11      maya 	coreinfo = sc->sc_buscore_ops->bc_read(sc,
   1617  1.11      maya 	    core->co_base + BWFM_SOCRAM_COREINFO);
   1618  1.11      maya 	nb = (coreinfo & BWFM_SOCRAM_COREINFO_SRNB_MASK)
   1619  1.11      maya 	    >> BWFM_SOCRAM_COREINFO_SRNB_SHIFT;
   1620  1.11      maya 
   1621  1.11      maya 	for (i = 0; i < nb; i++) {
   1622  1.11      maya 		sc->sc_buscore_ops->bc_write(sc,
   1623  1.11      maya 		    core->co_base + BWFM_SOCRAM_BANKIDX,
   1624  1.11      maya 		    (BWFM_SOCRAM_BANKIDX_MEMTYPE_RAM <<
   1625  1.11      maya 		    BWFM_SOCRAM_BANKIDX_MEMTYPE_SHIFT) | i);
   1626  1.11      maya 		bankinfo = sc->sc_buscore_ops->bc_read(sc,
   1627  1.11      maya 		    core->co_base + BWFM_SOCRAM_BANKINFO);
   1628  1.11      maya 		banksize = ((bankinfo & BWFM_SOCRAM_BANKINFO_SZMASK) + 1)
   1629  1.11      maya 		    * BWFM_SOCRAM_BANKINFO_SZBASE;
   1630  1.11      maya 		ramsize += banksize;
   1631  1.11      maya 	}
   1632  1.11      maya 
   1633  1.11      maya 	sc->sc_chip.ch_ramsize = ramsize;
   1634  1.11      maya }
   1635  1.11      maya 
   1636  1.11      maya void
   1637  1.11      maya bwfm_chip_tcm_ramsize(struct bwfm_softc *sc, struct bwfm_core *core)
   1638  1.11      maya {
   1639  1.11      maya 	uint32_t cap, nab, nbb, totb, bxinfo, ramsize = 0;
   1640  1.11      maya 	int i;
   1641  1.11      maya 
   1642  1.11      maya 	cap = sc->sc_buscore_ops->bc_read(sc, core->co_base + BWFM_ARMCR4_CAP);
   1643  1.11      maya 	nab = (cap & BWFM_ARMCR4_CAP_TCBANB_MASK) >> BWFM_ARMCR4_CAP_TCBANB_SHIFT;
   1644  1.11      maya 	nbb = (cap & BWFM_ARMCR4_CAP_TCBBNB_MASK) >> BWFM_ARMCR4_CAP_TCBBNB_SHIFT;
   1645  1.11      maya 	totb = nab + nbb;
   1646  1.11      maya 
   1647  1.11      maya 	for (i = 0; i < totb; i++) {
   1648  1.11      maya 		sc->sc_buscore_ops->bc_write(sc,
   1649  1.11      maya 		    core->co_base + BWFM_ARMCR4_BANKIDX, i);
   1650  1.11      maya 		bxinfo = sc->sc_buscore_ops->bc_read(sc,
   1651  1.11      maya 		    core->co_base + BWFM_ARMCR4_BANKINFO);
   1652  1.11      maya 		ramsize += ((bxinfo & BWFM_ARMCR4_BANKINFO_BSZ_MASK) + 1) *
   1653  1.11      maya 		    BWFM_ARMCR4_BANKINFO_BSZ_MULT;
   1654  1.11      maya 	}
   1655  1.11      maya 
   1656  1.11      maya 	sc->sc_chip.ch_ramsize = ramsize;
   1657  1.11      maya }
   1658  1.11      maya 
   1659  1.11      maya void
   1660  1.11      maya bwfm_chip_tcm_rambase(struct bwfm_softc *sc)
   1661  1.11      maya {
   1662  1.11      maya 	switch (sc->sc_chip.ch_chip) {
   1663  1.11      maya 	case BRCM_CC_4345_CHIP_ID:
   1664  1.11      maya 		sc->sc_chip.ch_rambase = 0x198000;
   1665  1.11      maya 		break;
   1666  1.11      maya 	case BRCM_CC_4335_CHIP_ID:
   1667  1.11      maya 	case BRCM_CC_4339_CHIP_ID:
   1668  1.11      maya 	case BRCM_CC_4350_CHIP_ID:
   1669  1.11      maya 	case BRCM_CC_4354_CHIP_ID:
   1670  1.11      maya 	case BRCM_CC_4356_CHIP_ID:
   1671  1.11      maya 	case BRCM_CC_43567_CHIP_ID:
   1672  1.11      maya 	case BRCM_CC_43569_CHIP_ID:
   1673  1.11      maya 	case BRCM_CC_43570_CHIP_ID:
   1674  1.11      maya 	case BRCM_CC_4358_CHIP_ID:
   1675  1.11      maya 	case BRCM_CC_4359_CHIP_ID:
   1676  1.11      maya 	case BRCM_CC_43602_CHIP_ID:
   1677  1.11      maya 	case BRCM_CC_4371_CHIP_ID:
   1678  1.11      maya 		sc->sc_chip.ch_rambase = 0x180000;
   1679  1.11      maya 		break;
   1680  1.11      maya 	case BRCM_CC_43465_CHIP_ID:
   1681  1.11      maya 	case BRCM_CC_43525_CHIP_ID:
   1682  1.11      maya 	case BRCM_CC_4365_CHIP_ID:
   1683  1.11      maya 	case BRCM_CC_4366_CHIP_ID:
   1684  1.11      maya 		sc->sc_chip.ch_rambase = 0x200000;
   1685  1.11      maya 		break;
   1686  1.11      maya 	case CY_CC_4373_CHIP_ID:
   1687  1.11      maya 		sc->sc_chip.ch_rambase = 0x160000;
   1688  1.11      maya 		break;
   1689  1.11      maya 	default:
   1690  1.11      maya 		printf("%s: unknown chip: %d\n", DEVNAME(sc),
   1691  1.11      maya 		    sc->sc_chip.ch_chip);
   1692  1.11      maya 		break;
   1693  1.11      maya 	}
   1694  1.11      maya }
   1695  1.11      maya 
   1696   1.1  jmcneill /* BCDC protocol implementation */
   1697   1.1  jmcneill int
   1698   1.1  jmcneill bwfm_proto_bcdc_query_dcmd(struct bwfm_softc *sc, int ifidx,
   1699   1.1  jmcneill     int cmd, char *buf, size_t *len)
   1700   1.1  jmcneill {
   1701   1.1  jmcneill 	struct bwfm_proto_bcdc_dcmd *dcmd;
   1702   1.1  jmcneill 	size_t size = sizeof(dcmd->hdr) + *len;
   1703  1.18   mlelstv 	int reqid;
   1704   1.1  jmcneill 	int ret = 1;
   1705   1.1  jmcneill 
   1706  1.18   mlelstv 	reqid = sc->sc_bcdc_reqid++;
   1707   1.1  jmcneill 
   1708   1.1  jmcneill 	dcmd = kmem_zalloc(sizeof(*dcmd), KM_SLEEP);
   1709   1.1  jmcneill 	if (*len > sizeof(dcmd->buf))
   1710   1.1  jmcneill 		goto err;
   1711   1.1  jmcneill 
   1712   1.1  jmcneill 	dcmd->hdr.cmd = htole32(cmd);
   1713   1.1  jmcneill 	dcmd->hdr.len = htole32(*len);
   1714   1.1  jmcneill 	dcmd->hdr.flags |= BWFM_BCDC_DCMD_GET;
   1715   1.1  jmcneill 	dcmd->hdr.flags |= BWFM_BCDC_DCMD_ID_SET(reqid);
   1716   1.1  jmcneill 	dcmd->hdr.flags |= BWFM_BCDC_DCMD_IF_SET(ifidx);
   1717   1.1  jmcneill 	dcmd->hdr.flags = htole32(dcmd->hdr.flags);
   1718   1.1  jmcneill 	memcpy(&dcmd->buf, buf, *len);
   1719   1.1  jmcneill 
   1720   1.1  jmcneill 	if (sc->sc_bus_ops->bs_txctl(sc, (void *)dcmd,
   1721   1.1  jmcneill 	     sizeof(dcmd->hdr) + *len)) {
   1722   1.1  jmcneill 		DPRINTF(("%s: tx failed\n", DEVNAME(sc)));
   1723   1.1  jmcneill 		goto err;
   1724   1.1  jmcneill 	}
   1725   1.1  jmcneill 
   1726   1.1  jmcneill 	do {
   1727   1.1  jmcneill 		if (sc->sc_bus_ops->bs_rxctl(sc, (void *)dcmd, &size)) {
   1728   1.1  jmcneill 			DPRINTF(("%s: rx failed\n", DEVNAME(sc)));
   1729   1.1  jmcneill 			goto err;
   1730   1.1  jmcneill 		}
   1731   1.1  jmcneill 		dcmd->hdr.cmd = le32toh(dcmd->hdr.cmd);
   1732   1.1  jmcneill 		dcmd->hdr.len = le32toh(dcmd->hdr.len);
   1733   1.1  jmcneill 		dcmd->hdr.flags = le32toh(dcmd->hdr.flags);
   1734   1.1  jmcneill 		dcmd->hdr.status = le32toh(dcmd->hdr.status);
   1735   1.1  jmcneill 	} while (BWFM_BCDC_DCMD_ID_GET(dcmd->hdr.flags) != reqid);
   1736   1.1  jmcneill 
   1737   1.1  jmcneill 	if (BWFM_BCDC_DCMD_ID_GET(dcmd->hdr.flags) != reqid) {
   1738   1.1  jmcneill 		printf("%s: unexpected request id\n", DEVNAME(sc));
   1739   1.1  jmcneill 		goto err;
   1740   1.1  jmcneill 	}
   1741   1.1  jmcneill 
   1742   1.1  jmcneill 	if (buf) {
   1743   1.1  jmcneill 		if (size < *len)
   1744   1.1  jmcneill 			*len = size;
   1745   1.1  jmcneill 		memcpy(buf, dcmd->buf, *len);
   1746   1.1  jmcneill 	}
   1747   1.1  jmcneill 
   1748   1.1  jmcneill 	if (dcmd->hdr.flags & BWFM_BCDC_DCMD_ERROR)
   1749   1.1  jmcneill 		ret = dcmd->hdr.status;
   1750   1.1  jmcneill 	else
   1751   1.1  jmcneill 		ret = 0;
   1752   1.1  jmcneill err:
   1753   1.1  jmcneill 	kmem_free(dcmd, sizeof(*dcmd));
   1754   1.1  jmcneill 	return ret;
   1755   1.1  jmcneill }
   1756   1.1  jmcneill 
   1757   1.1  jmcneill int
   1758   1.1  jmcneill bwfm_proto_bcdc_set_dcmd(struct bwfm_softc *sc, int ifidx,
   1759   1.1  jmcneill     int cmd, char *buf, size_t len)
   1760   1.1  jmcneill {
   1761   1.1  jmcneill 	struct bwfm_proto_bcdc_dcmd *dcmd;
   1762   1.1  jmcneill 	size_t size = sizeof(dcmd->hdr) + len;
   1763  1.18   mlelstv 	int ret = 1, reqid;
   1764   1.1  jmcneill 
   1765  1.18   mlelstv 	reqid = sc->sc_bcdc_reqid++;
   1766   1.1  jmcneill 
   1767   1.1  jmcneill 	dcmd = kmem_zalloc(sizeof(*dcmd), KM_SLEEP);
   1768   1.1  jmcneill 	if (len > sizeof(dcmd->buf))
   1769   1.1  jmcneill 		goto err;
   1770   1.1  jmcneill 
   1771   1.1  jmcneill 	dcmd->hdr.cmd = htole32(cmd);
   1772   1.1  jmcneill 	dcmd->hdr.len = htole32(len);
   1773   1.1  jmcneill 	dcmd->hdr.flags |= BWFM_BCDC_DCMD_SET;
   1774   1.1  jmcneill 	dcmd->hdr.flags |= BWFM_BCDC_DCMD_ID_SET(reqid);
   1775   1.1  jmcneill 	dcmd->hdr.flags |= BWFM_BCDC_DCMD_IF_SET(ifidx);
   1776   1.1  jmcneill 	dcmd->hdr.flags = htole32(dcmd->hdr.flags);
   1777   1.1  jmcneill 	memcpy(&dcmd->buf, buf, len);
   1778   1.1  jmcneill 
   1779   1.1  jmcneill 	if (sc->sc_bus_ops->bs_txctl(sc, (void *)dcmd, size)) {
   1780   1.1  jmcneill 		DPRINTF(("%s: tx failed\n", DEVNAME(sc)));
   1781   1.1  jmcneill 		goto err;
   1782   1.1  jmcneill 	}
   1783   1.1  jmcneill 
   1784   1.1  jmcneill 	do {
   1785   1.1  jmcneill 		if (sc->sc_bus_ops->bs_rxctl(sc, (void *)dcmd, &size)) {
   1786   1.1  jmcneill 			DPRINTF(("%s: rx failed\n", DEVNAME(sc)));
   1787   1.1  jmcneill 			goto err;
   1788   1.1  jmcneill 		}
   1789   1.1  jmcneill 		dcmd->hdr.cmd = le32toh(dcmd->hdr.cmd);
   1790   1.1  jmcneill 		dcmd->hdr.len = le32toh(dcmd->hdr.len);
   1791   1.1  jmcneill 		dcmd->hdr.flags = le32toh(dcmd->hdr.flags);
   1792   1.1  jmcneill 		dcmd->hdr.status = le32toh(dcmd->hdr.status);
   1793   1.1  jmcneill 	} while (BWFM_BCDC_DCMD_ID_GET(dcmd->hdr.flags) != reqid);
   1794   1.1  jmcneill 
   1795   1.1  jmcneill 	if (BWFM_BCDC_DCMD_ID_GET(dcmd->hdr.flags) != reqid) {
   1796   1.1  jmcneill 		printf("%s: unexpected request id\n", DEVNAME(sc));
   1797   1.1  jmcneill 		goto err;
   1798   1.1  jmcneill 	}
   1799   1.1  jmcneill 
   1800   1.1  jmcneill 	if (dcmd->hdr.flags & BWFM_BCDC_DCMD_ERROR)
   1801   1.1  jmcneill 		return dcmd->hdr.status;
   1802   1.1  jmcneill 
   1803   1.1  jmcneill 	ret = 0;
   1804   1.1  jmcneill err:
   1805   1.1  jmcneill 	kmem_free(dcmd, sizeof(*dcmd));
   1806   1.1  jmcneill 	return ret;
   1807   1.1  jmcneill }
   1808   1.1  jmcneill 
   1809  1.32   mlelstv void
   1810  1.32   mlelstv bwfm_process_blob(struct bwfm_softc *sc, const char *var, uint8_t **blob,
   1811  1.32   mlelstv     size_t *blobsize)
   1812  1.32   mlelstv {
   1813  1.32   mlelstv 	struct bwfm_dload_data *data;
   1814  1.32   mlelstv 	size_t off, remain, len;
   1815  1.32   mlelstv 
   1816  1.32   mlelstv 	if (*blob == NULL || *blobsize == 0)
   1817  1.32   mlelstv 		return;
   1818  1.32   mlelstv 
   1819  1.32   mlelstv 	off = 0;
   1820  1.32   mlelstv 	remain = *blobsize;
   1821  1.32   mlelstv 	data = kmem_alloc(sizeof(*data) + BWFM_DLOAD_MAX_LEN, KM_SLEEP);
   1822  1.32   mlelstv 
   1823  1.32   mlelstv 	while (remain) {
   1824  1.32   mlelstv 		len = uimin(remain, BWFM_DLOAD_MAX_LEN);
   1825  1.32   mlelstv 
   1826  1.32   mlelstv 		data->flag = htole16(BWFM_DLOAD_FLAG_HANDLER_VER_1);
   1827  1.32   mlelstv 		if (off == 0)
   1828  1.32   mlelstv 			data->flag |= htole16(BWFM_DLOAD_FLAG_BEGIN);
   1829  1.32   mlelstv 		if (remain <= BWFM_DLOAD_MAX_LEN)
   1830  1.32   mlelstv 			data->flag |= htole16(BWFM_DLOAD_FLAG_END);
   1831  1.32   mlelstv 		data->type = htole16(BWFM_DLOAD_TYPE_CLM);
   1832  1.32   mlelstv 		data->len = htole32(len);
   1833  1.32   mlelstv 		data->crc = 0;
   1834  1.32   mlelstv 		memcpy(data->data, *blob + off, len);
   1835  1.32   mlelstv 
   1836  1.32   mlelstv 		if (bwfm_fwvar_var_set_data(sc, var, data,
   1837  1.32   mlelstv 		    sizeof(*data) + len)) {
   1838  1.32   mlelstv 			printf("%s: could not load blob (%s)\n", DEVNAME(sc),
   1839  1.32   mlelstv 			    var);
   1840  1.32   mlelstv 			break;
   1841  1.32   mlelstv 		}
   1842  1.32   mlelstv 
   1843  1.32   mlelstv 		off += len;
   1844  1.32   mlelstv 		remain -= len;
   1845  1.32   mlelstv 	}
   1846  1.32   mlelstv 
   1847  1.32   mlelstv 	kmem_free(data, sizeof(*data) + BWFM_DLOAD_MAX_LEN);
   1848  1.32   mlelstv 	// kmem_free(*blob, *blobsize);
   1849  1.32   mlelstv 	*blob = NULL;
   1850  1.32   mlelstv 	*blobsize = 0;
   1851  1.32   mlelstv }
   1852  1.32   mlelstv 
   1853   1.1  jmcneill /* FW Variable code */
   1854   1.1  jmcneill int
   1855   1.1  jmcneill bwfm_fwvar_cmd_get_data(struct bwfm_softc *sc, int cmd, void *data, size_t len)
   1856   1.1  jmcneill {
   1857   1.1  jmcneill 	return sc->sc_proto_ops->proto_query_dcmd(sc, 0, cmd, data, &len);
   1858   1.1  jmcneill }
   1859   1.1  jmcneill 
   1860   1.1  jmcneill int
   1861   1.1  jmcneill bwfm_fwvar_cmd_set_data(struct bwfm_softc *sc, int cmd, void *data, size_t len)
   1862   1.1  jmcneill {
   1863   1.1  jmcneill 	return sc->sc_proto_ops->proto_set_dcmd(sc, 0, cmd, data, len);
   1864   1.1  jmcneill }
   1865   1.1  jmcneill 
   1866   1.1  jmcneill int
   1867   1.1  jmcneill bwfm_fwvar_cmd_get_int(struct bwfm_softc *sc, int cmd, uint32_t *data)
   1868   1.1  jmcneill {
   1869   1.1  jmcneill 	int ret;
   1870   1.1  jmcneill 	ret = bwfm_fwvar_cmd_get_data(sc, cmd, data, sizeof(*data));
   1871   1.1  jmcneill 	*data = le32toh(*data);
   1872   1.1  jmcneill 	return ret;
   1873   1.1  jmcneill }
   1874   1.1  jmcneill 
   1875   1.1  jmcneill int
   1876   1.1  jmcneill bwfm_fwvar_cmd_set_int(struct bwfm_softc *sc, int cmd, uint32_t data)
   1877   1.1  jmcneill {
   1878   1.1  jmcneill 	data = htole32(data);
   1879   1.1  jmcneill 	return bwfm_fwvar_cmd_set_data(sc, cmd, &data, sizeof(data));
   1880   1.1  jmcneill }
   1881   1.1  jmcneill 
   1882   1.1  jmcneill int
   1883   1.1  jmcneill bwfm_fwvar_var_get_data(struct bwfm_softc *sc, const char *name, void *data, size_t len)
   1884   1.1  jmcneill {
   1885   1.1  jmcneill 	char *buf;
   1886   1.1  jmcneill 	int ret;
   1887   1.1  jmcneill 
   1888   1.1  jmcneill 	buf = kmem_alloc(strlen(name) + 1 + len, KM_SLEEP);
   1889   1.1  jmcneill 	memcpy(buf, name, strlen(name) + 1);
   1890   1.1  jmcneill 	memcpy(buf + strlen(name) + 1, data, len);
   1891   1.1  jmcneill 	ret = bwfm_fwvar_cmd_get_data(sc, BWFM_C_GET_VAR,
   1892   1.1  jmcneill 	    buf, strlen(name) + 1 + len);
   1893   1.1  jmcneill 	memcpy(data, buf, len);
   1894   1.1  jmcneill 	kmem_free(buf, strlen(name) + 1 + len);
   1895   1.1  jmcneill 	return ret;
   1896   1.1  jmcneill }
   1897   1.1  jmcneill 
   1898   1.1  jmcneill int
   1899   1.1  jmcneill bwfm_fwvar_var_set_data(struct bwfm_softc *sc, const char *name, void *data, size_t len)
   1900   1.1  jmcneill {
   1901   1.1  jmcneill 	char *buf;
   1902   1.1  jmcneill 	int ret;
   1903   1.1  jmcneill 
   1904   1.1  jmcneill 	buf = kmem_alloc(strlen(name) + 1 + len, KM_SLEEP);
   1905   1.1  jmcneill 	memcpy(buf, name, strlen(name) + 1);
   1906   1.1  jmcneill 	memcpy(buf + strlen(name) + 1, data, len);
   1907   1.1  jmcneill 	ret = bwfm_fwvar_cmd_set_data(sc, BWFM_C_SET_VAR,
   1908   1.1  jmcneill 	    buf, strlen(name) + 1 + len);
   1909   1.1  jmcneill 	kmem_free(buf, strlen(name) + 1 + len);
   1910   1.1  jmcneill 	return ret;
   1911   1.1  jmcneill }
   1912   1.1  jmcneill 
   1913   1.1  jmcneill int
   1914   1.1  jmcneill bwfm_fwvar_var_get_int(struct bwfm_softc *sc, const char *name, uint32_t *data)
   1915   1.1  jmcneill {
   1916   1.1  jmcneill 	int ret;
   1917   1.1  jmcneill 	ret = bwfm_fwvar_var_get_data(sc, name, data, sizeof(*data));
   1918   1.1  jmcneill 	*data = le32toh(*data);
   1919   1.1  jmcneill 	return ret;
   1920   1.1  jmcneill }
   1921   1.1  jmcneill 
   1922   1.1  jmcneill int
   1923   1.1  jmcneill bwfm_fwvar_var_set_int(struct bwfm_softc *sc, const char *name, uint32_t data)
   1924   1.1  jmcneill {
   1925   1.1  jmcneill 	data = htole32(data);
   1926   1.1  jmcneill 	return bwfm_fwvar_var_set_data(sc, name, &data, sizeof(data));
   1927   1.1  jmcneill }
   1928   1.1  jmcneill 
   1929   1.1  jmcneill /* 802.11 code */
   1930   1.1  jmcneill void
   1931   1.1  jmcneill bwfm_scan(struct bwfm_softc *sc)
   1932   1.1  jmcneill {
   1933   1.1  jmcneill 	struct bwfm_escan_params *params;
   1934   1.1  jmcneill 	uint32_t nssid = 0, nchannel = 0;
   1935   1.1  jmcneill 	size_t params_size;
   1936   1.1  jmcneill 
   1937   1.1  jmcneill #if 0
   1938   1.1  jmcneill 	/* Active scan is used for scanning for an SSID */
   1939   1.1  jmcneill 	bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_PASSIVE_SCAN, 0);
   1940   1.1  jmcneill #endif
   1941   1.1  jmcneill 	bwfm_fwvar_cmd_set_int(sc, BWFM_C_SET_PASSIVE_SCAN, 1);
   1942   1.1  jmcneill 
   1943   1.1  jmcneill 	params_size = sizeof(*params);
   1944   1.1  jmcneill 	params_size += sizeof(uint32_t) * ((nchannel + 1) / 2);
   1945   1.1  jmcneill 	params_size += sizeof(struct bwfm_ssid) * nssid;
   1946   1.1  jmcneill 
   1947   1.1  jmcneill 	params = kmem_zalloc(params_size, KM_SLEEP);
   1948   1.1  jmcneill 	memset(params->scan_params.bssid, 0xff,
   1949   1.1  jmcneill 	    sizeof(params->scan_params.bssid));
   1950   1.1  jmcneill 	params->scan_params.bss_type = 2;
   1951   1.1  jmcneill 	params->scan_params.nprobes = htole32(-1);
   1952   1.1  jmcneill 	params->scan_params.active_time = htole32(-1);
   1953   1.1  jmcneill 	params->scan_params.passive_time = htole32(-1);
   1954   1.1  jmcneill 	params->scan_params.home_time = htole32(-1);
   1955   1.1  jmcneill 	params->version = htole32(BWFM_ESCAN_REQ_VERSION);
   1956   1.1  jmcneill 	params->action = htole16(WL_ESCAN_ACTION_START);
   1957   1.1  jmcneill 	params->sync_id = htole16(0x1234);
   1958   1.1  jmcneill 
   1959   1.1  jmcneill #if 0
   1960   1.1  jmcneill 	/* Scan a specific channel */
   1961   1.1  jmcneill 	params->scan_params.channel_list[0] = htole16(
   1962   1.1  jmcneill 	    (1 & 0xff) << 0 |
   1963   1.1  jmcneill 	    (3 & 0x3) << 8 |
   1964   1.1  jmcneill 	    (2 & 0x3) << 10 |
   1965   1.1  jmcneill 	    (2 & 0x3) << 12
   1966   1.1  jmcneill 	    );
   1967   1.1  jmcneill 	params->scan_params.channel_num = htole32(
   1968   1.1  jmcneill 	    (1 & 0xffff) << 0
   1969   1.1  jmcneill 	    );
   1970   1.1  jmcneill #endif
   1971   1.1  jmcneill 
   1972   1.1  jmcneill 	bwfm_fwvar_var_set_data(sc, "escan", params, params_size);
   1973   1.1  jmcneill 	kmem_free(params, params_size);
   1974   1.1  jmcneill }
   1975   1.1  jmcneill 
   1976   1.1  jmcneill static __inline int
   1977   1.1  jmcneill bwfm_iswpaoui(const uint8_t *frm)
   1978   1.1  jmcneill {
   1979   1.1  jmcneill 	return frm[1] > 3 && le32dec(frm+2) == ((WPA_OUI_TYPE<<24)|WPA_OUI);
   1980   1.1  jmcneill }
   1981   1.1  jmcneill 
   1982   1.1  jmcneill /*
   1983   1.1  jmcneill  * Derive wireless security settings from WPA/RSN IE.
   1984   1.1  jmcneill  */
   1985   1.1  jmcneill static uint32_t
   1986   1.1  jmcneill bwfm_get_wsec(struct bwfm_softc *sc)
   1987   1.1  jmcneill {
   1988   1.1  jmcneill 	struct ieee80211com *ic = &sc->sc_ic;
   1989   1.1  jmcneill 	uint8_t *wpa = ic->ic_opt_ie;
   1990   1.1  jmcneill 
   1991   1.1  jmcneill 	KASSERT(ic->ic_opt_ie_len > 0);
   1992   1.1  jmcneill 
   1993   1.1  jmcneill 	if (wpa[0] != IEEE80211_ELEMID_RSN) {
   1994   1.1  jmcneill 		if (ic->ic_opt_ie_len < 12)
   1995   1.1  jmcneill 			return BWFM_WSEC_NONE;
   1996   1.1  jmcneill 
   1997   1.1  jmcneill 		/* non-RSN IE, expect that we are doing WPA1 */
   1998   1.1  jmcneill 		if ((ic->ic_flags & IEEE80211_F_WPA1) == 0)
   1999   1.1  jmcneill 			return BWFM_WSEC_NONE;
   2000   1.1  jmcneill 
   2001   1.1  jmcneill 		/* Must contain WPA OUI */
   2002   1.1  jmcneill 		if (!bwfm_iswpaoui(wpa))
   2003   1.1  jmcneill 			return BWFM_WSEC_NONE;
   2004   1.1  jmcneill 
   2005   1.1  jmcneill 		switch (le32dec(wpa + 8)) {
   2006   1.1  jmcneill 		case ((WPA_CSE_TKIP<<24)|WPA_OUI):
   2007   1.1  jmcneill 			return BWFM_WSEC_TKIP;
   2008   1.1  jmcneill 		case ((WPA_CSE_CCMP<<24)|WPA_OUI):
   2009   1.1  jmcneill 			return BWFM_WSEC_AES;
   2010   1.1  jmcneill 		default:
   2011   1.1  jmcneill 			return BWFM_WSEC_NONE;
   2012   1.1  jmcneill 		}
   2013   1.1  jmcneill 	} else {
   2014   1.1  jmcneill 		if (ic->ic_opt_ie_len < 14)
   2015   1.1  jmcneill 			return BWFM_WSEC_NONE;
   2016   1.1  jmcneill 
   2017   1.1  jmcneill 		/* RSN IE, expect that we are doing WPA2 */
   2018   1.1  jmcneill 		if ((ic->ic_flags & IEEE80211_F_WPA2) == 0)
   2019   1.1  jmcneill 			return BWFM_WSEC_NONE;
   2020   1.1  jmcneill 
   2021   1.1  jmcneill 		switch (le32dec(wpa + 10)) {
   2022   1.1  jmcneill 		case ((RSN_CSE_TKIP<<24)|RSN_OUI):
   2023   1.1  jmcneill 			return BWFM_WSEC_TKIP;
   2024   1.1  jmcneill 		case ((RSN_CSE_CCMP<<24)|RSN_OUI):
   2025   1.1  jmcneill 			return BWFM_WSEC_AES;
   2026   1.1  jmcneill 		default:
   2027   1.1  jmcneill 			return BWFM_WSEC_NONE;
   2028   1.1  jmcneill 		}
   2029   1.1  jmcneill 	}
   2030   1.1  jmcneill }
   2031   1.1  jmcneill 
   2032   1.1  jmcneill void
   2033   1.1  jmcneill bwfm_connect(struct bwfm_softc *sc)
   2034   1.1  jmcneill {
   2035   1.1  jmcneill 	struct ieee80211com *ic = &sc->sc_ic;
   2036   1.1  jmcneill 	struct ieee80211_node *ni = ic->ic_bss;
   2037   1.1  jmcneill 	struct bwfm_ext_join_params *params;
   2038   1.1  jmcneill 
   2039   1.1  jmcneill 	if (ic->ic_flags & IEEE80211_F_WPA) {
   2040   1.1  jmcneill 		uint32_t wsec = 0;
   2041   1.1  jmcneill 		uint32_t wpa = 0;
   2042   1.1  jmcneill 
   2043   1.1  jmcneill 		if (ic->ic_opt_ie_len)
   2044   1.1  jmcneill 			bwfm_fwvar_var_set_data(sc, "wpaie", ic->ic_opt_ie, ic->ic_opt_ie_len);
   2045   1.1  jmcneill 
   2046   1.1  jmcneill 		if (ic->ic_flags & IEEE80211_F_WPA1)
   2047   1.1  jmcneill 			wpa |= BWFM_WPA_AUTH_WPA_PSK;
   2048   1.1  jmcneill 		if (ic->ic_flags & IEEE80211_F_WPA2)
   2049   1.1  jmcneill 			wpa |= BWFM_WPA_AUTH_WPA2_PSK;
   2050   1.1  jmcneill 
   2051   1.1  jmcneill 		wsec |= bwfm_get_wsec(sc);
   2052   1.1  jmcneill 
   2053   1.1  jmcneill 		DPRINTF(("%s: WPA enabled, ic_flags = 0x%x, wpa 0x%x, wsec 0x%x\n",
   2054   1.1  jmcneill 		    DEVNAME(sc), ic->ic_flags, wpa, wsec));
   2055   1.1  jmcneill 
   2056   1.1  jmcneill 		bwfm_fwvar_var_set_int(sc, "wpa_auth", wpa);
   2057   1.1  jmcneill 		bwfm_fwvar_var_set_int(sc, "wsec", wsec);
   2058   1.1  jmcneill 	} else {
   2059   1.1  jmcneill 		bwfm_fwvar_var_set_int(sc, "wpa_auth", BWFM_WPA_AUTH_DISABLED);
   2060   1.1  jmcneill 		bwfm_fwvar_var_set_int(sc, "wsec", BWFM_WSEC_NONE);
   2061   1.1  jmcneill 	}
   2062   1.1  jmcneill 
   2063   1.1  jmcneill 	bwfm_fwvar_var_set_int(sc, "auth", BWFM_AUTH_OPEN);
   2064   1.1  jmcneill 	bwfm_fwvar_var_set_int(sc, "mfp", BWFM_MFP_NONE);
   2065   1.1  jmcneill 
   2066   1.1  jmcneill 	if (ni->ni_esslen && ni->ni_esslen < BWFM_MAX_SSID_LEN) {
   2067   1.1  jmcneill 		params = kmem_zalloc(sizeof(*params), KM_SLEEP);
   2068   1.1  jmcneill 		memcpy(params->ssid.ssid, ni->ni_essid, ni->ni_esslen);
   2069   1.1  jmcneill 		params->ssid.len = htole32(ni->ni_esslen);
   2070   1.1  jmcneill 		memcpy(params->assoc.bssid, ni->ni_bssid, sizeof(params->assoc.bssid));
   2071   1.1  jmcneill 		params->scan.scan_type = -1;
   2072   1.1  jmcneill 		params->scan.nprobes = htole32(-1);
   2073   1.1  jmcneill 		params->scan.active_time = htole32(-1);
   2074   1.1  jmcneill 		params->scan.passive_time = htole32(-1);
   2075   1.1  jmcneill 		params->scan.home_time = htole32(-1);
   2076   1.1  jmcneill 		if (bwfm_fwvar_var_set_data(sc, "join", params, sizeof(*params))) {
   2077   1.1  jmcneill 			struct bwfm_join_params join;
   2078   1.1  jmcneill 			memset(&join, 0, sizeof(join));
   2079   1.1  jmcneill 			memcpy(join.ssid.ssid, ni->ni_essid, ni->ni_esslen);
   2080   1.1  jmcneill 			join.ssid.len = htole32(ni->ni_esslen);
   2081   1.1  jmcneill 			memcpy(join.assoc.bssid, ni->ni_bssid, sizeof(join.assoc.bssid));
   2082   1.1  jmcneill 			bwfm_fwvar_cmd_set_data(sc, BWFM_C_SET_SSID, &join,
   2083   1.1  jmcneill 			    sizeof(join));
   2084   1.1  jmcneill 		}
   2085   1.1  jmcneill 		kmem_free(params, sizeof(*params));
   2086   1.1  jmcneill 	}
   2087   1.1  jmcneill }
   2088   1.1  jmcneill 
   2089   1.1  jmcneill void
   2090  1.17  jmcneill bwfm_get_sta_info(struct bwfm_softc *sc, struct ifmediareq *ifmr)
   2091  1.17  jmcneill {
   2092  1.17  jmcneill 	struct ieee80211com *ic = &sc->sc_ic;
   2093  1.17  jmcneill 	struct ieee80211_node *ni = ic->ic_bss;
   2094  1.17  jmcneill 	struct bwfm_sta_info sta;
   2095  1.17  jmcneill 	uint32_t flags, txrate;
   2096  1.17  jmcneill 
   2097  1.17  jmcneill 	memset(&sta, 0, sizeof(sta));
   2098  1.17  jmcneill 	memcpy(&sta, ni->ni_macaddr, sizeof(ni->ni_macaddr));
   2099  1.17  jmcneill 
   2100  1.17  jmcneill 	if (bwfm_fwvar_var_get_data(sc, "sta_info", &sta, sizeof(sta)))
   2101  1.17  jmcneill 		return;
   2102  1.17  jmcneill 
   2103  1.17  jmcneill 	if (!IEEE80211_ADDR_EQ(ni->ni_macaddr, sta.ea))
   2104  1.17  jmcneill 		return;
   2105  1.17  jmcneill 
   2106  1.17  jmcneill 	if (le16toh(sta.ver) < 4)
   2107  1.17  jmcneill 		return;
   2108  1.17  jmcneill 
   2109  1.17  jmcneill 	flags = le32toh(sta.flags);
   2110  1.17  jmcneill 	if ((flags & BWFM_STA_SCBSTATS) == 0)
   2111  1.17  jmcneill 		return;
   2112  1.17  jmcneill 
   2113  1.17  jmcneill 	txrate = le32toh(sta.tx_rate);
   2114  1.17  jmcneill 	if (txrate == 0xffffffff)
   2115  1.17  jmcneill 		return;
   2116  1.17  jmcneill 
   2117  1.17  jmcneill 	if ((flags & BWFM_STA_VHT_CAP) != 0) {
   2118  1.17  jmcneill 		ifmr->ifm_active &= ~IFM_TMASK;
   2119  1.17  jmcneill 		ifmr->ifm_active |= IFM_IEEE80211_VHT;
   2120  1.17  jmcneill 		ifmr->ifm_active &= ~IFM_MMASK;
   2121  1.17  jmcneill 		ifmr->ifm_active |= IFM_IEEE80211_11AC;
   2122  1.17  jmcneill 	} else if ((flags & BWFM_STA_N_CAP) != 0) {
   2123  1.17  jmcneill 		ifmr->ifm_active &= ~IFM_TMASK;
   2124  1.17  jmcneill 		ifmr->ifm_active |= IFM_IEEE80211_MCS;
   2125  1.17  jmcneill 		ifmr->ifm_active &= ~IFM_MMASK;
   2126  1.17  jmcneill 		if (IEEE80211_IS_CHAN_2GHZ(ic->ic_curchan))
   2127  1.17  jmcneill 			ifmr->ifm_active |= IFM_IEEE80211_11NG;
   2128  1.17  jmcneill 		else
   2129  1.17  jmcneill 			ifmr->ifm_active |= IFM_IEEE80211_11NA;
   2130  1.17  jmcneill 	}
   2131  1.17  jmcneill }
   2132  1.17  jmcneill 
   2133  1.17  jmcneill void
   2134  1.11      maya bwfm_rx(struct bwfm_softc *sc, struct mbuf *m)
   2135   1.1  jmcneill {
   2136   1.1  jmcneill 	struct ieee80211com *ic = &sc->sc_ic;
   2137   1.1  jmcneill 	struct ifnet *ifp = ic->ic_ifp;
   2138  1.11      maya 	struct bwfm_event *e = mtod(m, struct bwfm_event *);
   2139   1.1  jmcneill 
   2140  1.11      maya 	if (m->m_len >= sizeof(e->ehdr) &&
   2141   1.1  jmcneill 	    ntohs(e->ehdr.ether_type) == BWFM_ETHERTYPE_LINK_CTL &&
   2142   1.1  jmcneill 	    memcmp(BWFM_BRCM_OUI, e->hdr.oui, sizeof(e->hdr.oui)) == 0 &&
   2143  1.11      maya 	    ntohs(e->hdr.usr_subtype) == BWFM_BRCM_SUBTYPE_EVENT) {
   2144  1.15   mlelstv 		bwfm_rx_event(sc, m);
   2145  1.15   mlelstv 		// m_freem(m);
   2146   1.1  jmcneill 		return;
   2147   1.1  jmcneill 	}
   2148   1.1  jmcneill 
   2149  1.18   mlelstv 	m_set_rcvif(m, ifp);
   2150  1.18   mlelstv 	if_percpuq_enqueue(ifp->if_percpuq, m);
   2151  1.15   mlelstv }
   2152  1.15   mlelstv 
   2153  1.15   mlelstv void
   2154  1.15   mlelstv bwfm_rx_event(struct bwfm_softc *sc, struct mbuf *m)
   2155  1.15   mlelstv {
   2156  1.15   mlelstv 	struct bwfm_task *t;
   2157  1.15   mlelstv 
   2158  1.29  riastrad 	t = pool_cache_get(sc->sc_freetask, PR_NOWAIT);
   2159  1.15   mlelstv 	if (t == NULL) {
   2160  1.15   mlelstv 		m_freem(m);
   2161  1.15   mlelstv 		printf("%s: no free tasks\n", DEVNAME(sc));
   2162  1.15   mlelstv 		return;
   2163   1.1  jmcneill 	}
   2164   1.1  jmcneill 
   2165  1.29  riastrad 	t->t_sc = sc;
   2166  1.15   mlelstv 	t->t_cmd = BWFM_TASK_RX_EVENT;
   2167  1.15   mlelstv 	t->t_mbuf = m;
   2168  1.15   mlelstv 	workqueue_enqueue(sc->sc_taskq, (struct work*)t, NULL);
   2169   1.1  jmcneill }
   2170   1.1  jmcneill 
   2171   1.1  jmcneill void
   2172  1.15   mlelstv bwfm_rx_event_cb(struct bwfm_softc *sc, struct mbuf *m)
   2173   1.1  jmcneill {
   2174   1.1  jmcneill 	struct ieee80211com *ic = &sc->sc_ic;
   2175  1.15   mlelstv 	struct bwfm_event *e = mtod(m, void *);
   2176  1.15   mlelstv 	size_t len = m->m_len;
   2177   1.1  jmcneill 	int s;
   2178   1.1  jmcneill 
   2179  1.15   mlelstv 	DPRINTF(("%s: event %p len %lu datalen %u code %u status %u"
   2180  1.15   mlelstv 	    " reason %u\n", __func__, e, len, ntohl(e->msg.datalen),
   2181   1.1  jmcneill 	    ntohl(e->msg.event_type), ntohl(e->msg.status),
   2182   1.1  jmcneill 	    ntohl(e->msg.reason)));
   2183   1.1  jmcneill 
   2184  1.15   mlelstv 	if (ntohl(e->msg.event_type) >= BWFM_E_LAST) {
   2185  1.15   mlelstv 		m_freem(m);
   2186   1.1  jmcneill 		return;
   2187  1.15   mlelstv 	}
   2188   1.1  jmcneill 
   2189   1.1  jmcneill 	switch (ntohl(e->msg.event_type)) {
   2190   1.1  jmcneill 	case BWFM_E_ESCAN_RESULT: {
   2191  1.15   mlelstv 		struct bwfm_escan_results *res = (void *)&e[1];
   2192   1.1  jmcneill 		struct bwfm_bss_info *bss;
   2193   1.1  jmcneill 		int i;
   2194   1.1  jmcneill 		if (ntohl(e->msg.status) != BWFM_E_STATUS_PARTIAL) {
   2195   1.1  jmcneill 			/* Scan complete */
   2196   1.1  jmcneill 			s = splnet();
   2197   1.1  jmcneill 			if (ic->ic_opmode != IEEE80211_M_MONITOR)
   2198   1.1  jmcneill 				ieee80211_end_scan(ic);
   2199   1.1  jmcneill 			splx(s);
   2200   1.1  jmcneill 			break;
   2201   1.1  jmcneill 		}
   2202   1.1  jmcneill 		len -= sizeof(*e);
   2203   1.1  jmcneill 		if (len < sizeof(*res) || len < le32toh(res->buflen)) {
   2204  1.15   mlelstv 			m_freem(m);
   2205   1.1  jmcneill 			printf("%s: results too small\n", DEVNAME(sc));
   2206   1.1  jmcneill 			return;
   2207   1.1  jmcneill 		}
   2208   1.1  jmcneill 		len -= sizeof(*res);
   2209   1.1  jmcneill 		if (len < le16toh(res->bss_count) * sizeof(struct bwfm_bss_info)) {
   2210  1.15   mlelstv 			m_freem(m);
   2211   1.1  jmcneill 			printf("%s: results too small\n", DEVNAME(sc));
   2212   1.1  jmcneill 			return;
   2213   1.1  jmcneill 		}
   2214   1.1  jmcneill 		bss = &res->bss_info[0];
   2215   1.1  jmcneill 		for (i = 0; i < le16toh(res->bss_count); i++) {
   2216   1.2  jmcneill 			/* Fix alignment of bss_info */
   2217  1.25  jdolecek 			if (len > sizeof(sc->sc_bss_buf)) {
   2218   1.2  jmcneill 				printf("%s: bss_info buffer too big\n", DEVNAME(sc));
   2219   1.2  jmcneill 			} else {
   2220  1.25  jdolecek 				memcpy(&sc->sc_bss_buf, &res->bss_info[i], len);
   2221  1.25  jdolecek 				bwfm_scan_node(sc, &sc->sc_bss_buf.bss_info,
   2222  1.25  jdolecek 				    len);
   2223   1.2  jmcneill 			}
   2224   1.1  jmcneill 			len -= sizeof(*bss) + le32toh(bss->length);
   2225   1.1  jmcneill 			bss = (void *)(((uintptr_t)bss) + le32toh(bss->length));
   2226   1.1  jmcneill 			if (len <= 0)
   2227   1.1  jmcneill 				break;
   2228   1.1  jmcneill 		}
   2229   1.1  jmcneill 		break;
   2230   1.1  jmcneill 		}
   2231   1.1  jmcneill 
   2232   1.1  jmcneill 	case BWFM_E_SET_SSID:
   2233   1.1  jmcneill 		if (ntohl(e->msg.status) == BWFM_E_STATUS_SUCCESS) {
   2234   1.1  jmcneill 			ieee80211_new_state(ic, IEEE80211_S_RUN, -1);
   2235   1.1  jmcneill 		} else {
   2236   1.1  jmcneill 			ieee80211_new_state(ic, IEEE80211_S_SCAN, -1);
   2237   1.1  jmcneill 		}
   2238   1.1  jmcneill 		break;
   2239   1.1  jmcneill 
   2240   1.1  jmcneill 	case BWFM_E_ASSOC:
   2241   1.1  jmcneill 		if (ntohl(e->msg.status) == BWFM_E_STATUS_SUCCESS) {
   2242   1.1  jmcneill 			ieee80211_new_state(ic, IEEE80211_S_ASSOC, -1);
   2243   1.1  jmcneill 		} else {
   2244   1.1  jmcneill 			ieee80211_new_state(ic, IEEE80211_S_SCAN, -1);
   2245   1.1  jmcneill 		}
   2246   1.1  jmcneill 		break;
   2247   1.1  jmcneill 
   2248   1.1  jmcneill 	case BWFM_E_LINK:
   2249   1.1  jmcneill 		if (ntohl(e->msg.status) == BWFM_E_STATUS_SUCCESS &&
   2250   1.1  jmcneill 		    ntohl(e->msg.reason) == 0)
   2251   1.1  jmcneill 			break;
   2252  1.11      maya 
   2253   1.1  jmcneill 		/* Link status has changed */
   2254   1.1  jmcneill 		ieee80211_new_state(ic, IEEE80211_S_SCAN, -1);
   2255   1.1  jmcneill 		break;
   2256   1.1  jmcneill 
   2257   1.1  jmcneill 	default:
   2258   1.1  jmcneill 		break;
   2259   1.1  jmcneill 	}
   2260  1.15   mlelstv 
   2261  1.15   mlelstv 	m_freem(m);
   2262   1.1  jmcneill }
   2263   1.1  jmcneill 
   2264   1.1  jmcneill void
   2265   1.1  jmcneill bwfm_scan_node(struct bwfm_softc *sc, struct bwfm_bss_info *bss, size_t len)
   2266   1.1  jmcneill {
   2267   1.1  jmcneill 	struct ieee80211com *ic = &sc->sc_ic;
   2268   1.1  jmcneill 	struct ieee80211_frame wh;
   2269   1.1  jmcneill 	struct ieee80211_scanparams scan;
   2270   1.1  jmcneill 	uint8_t rates[sizeof(bss->rates) + 2];
   2271   1.1  jmcneill 	uint8_t ssid[sizeof(bss->ssid) + 2];
   2272   1.1  jmcneill 	uint8_t *frm, *sfrm, *efrm;
   2273   1.1  jmcneill 	uint64_t tsf;
   2274   1.1  jmcneill 
   2275   1.1  jmcneill 	tsf = 0;
   2276   1.1  jmcneill 	sfrm = ((uint8_t *)bss) + le16toh(bss->ie_offset);
   2277   1.1  jmcneill 	efrm = sfrm + le32toh(bss->ie_length);
   2278   1.1  jmcneill 
   2279   1.1  jmcneill 	/* Fake a wireless header with the scan result's BSSID */
   2280   1.1  jmcneill 	memset(&wh, 0, sizeof(wh));
   2281   1.1  jmcneill 	IEEE80211_ADDR_COPY(wh.i_addr2, bss->bssid);
   2282   1.1  jmcneill 	IEEE80211_ADDR_COPY(wh.i_addr3, bss->bssid);
   2283   1.1  jmcneill 
   2284   1.1  jmcneill 	if (efrm - sfrm < 12) {
   2285   1.1  jmcneill 		ic->ic_stats.is_rx_elem_toosmall++;
   2286   1.1  jmcneill 		return;
   2287   1.1  jmcneill 	}
   2288   1.1  jmcneill 
   2289   1.1  jmcneill 	rates[0] = 0;
   2290   1.1  jmcneill 	rates[1] = le32toh(bss->nrates);
   2291   1.1  jmcneill 	memcpy(&rates[2], bss->rates, sizeof(bss->rates));
   2292   1.1  jmcneill 
   2293   1.1  jmcneill 	ssid[0] = 0;
   2294   1.1  jmcneill 	ssid[1] = bss->ssid_len;
   2295   1.1  jmcneill 	memcpy(&ssid[2], bss->ssid, sizeof(bss->ssid));
   2296   1.1  jmcneill 
   2297   1.1  jmcneill 	/* Build scan result */
   2298   1.1  jmcneill 	memset(&scan, 0, sizeof(scan));
   2299  1.10      maxv 	scan.sp_tstamp  = (uint8_t *)&tsf;
   2300  1.10      maxv 	scan.sp_bintval = le16toh(bss->beacon_period);
   2301  1.10      maxv 	scan.sp_capinfo = le16toh(bss->capability);
   2302  1.10      maxv 	scan.sp_bchan   = ieee80211_chan2ieee(ic, ic->ic_curchan);
   2303  1.10      maxv 	scan.sp_chan    = scan.sp_bchan;
   2304  1.10      maxv 	scan.sp_rates   = rates;
   2305  1.10      maxv 	scan.sp_ssid    = ssid;
   2306   1.1  jmcneill 
   2307   1.1  jmcneill 	for (frm = sfrm; frm < efrm; frm += frm[1] + 2) {
   2308   1.1  jmcneill 		switch (frm[0]) {
   2309   1.1  jmcneill 		case IEEE80211_ELEMID_COUNTRY:
   2310  1.10      maxv 			scan.sp_country = frm;
   2311   1.1  jmcneill 			break;
   2312   1.1  jmcneill 		case IEEE80211_ELEMID_FHPARMS:
   2313   1.1  jmcneill 			if (ic->ic_phytype == IEEE80211_T_FH) {
   2314   1.8      maxv 				if (frm + 6 >= efrm)
   2315   1.8      maxv 					break;
   2316  1.10      maxv 				scan.sp_fhdwell = le16dec(&frm[2]);
   2317  1.10      maxv 				scan.sp_chan = IEEE80211_FH_CHAN(frm[4], frm[5]);
   2318  1.10      maxv 				scan.sp_fhindex = frm[6];
   2319   1.1  jmcneill 			}
   2320   1.1  jmcneill 			break;
   2321   1.1  jmcneill 		case IEEE80211_ELEMID_DSPARMS:
   2322   1.8      maxv 			if (ic->ic_phytype != IEEE80211_T_FH) {
   2323   1.8      maxv 				if (frm + 2 >= efrm)
   2324   1.8      maxv 					break;
   2325  1.10      maxv 				scan.sp_chan = frm[2];
   2326   1.8      maxv 			}
   2327   1.1  jmcneill 			break;
   2328   1.1  jmcneill 		case IEEE80211_ELEMID_TIM:
   2329  1.10      maxv 			scan.sp_tim = frm;
   2330  1.10      maxv 			scan.sp_timoff = frm - sfrm;
   2331   1.1  jmcneill 			break;
   2332   1.1  jmcneill 		case IEEE80211_ELEMID_XRATES:
   2333  1.10      maxv 			scan.sp_xrates = frm;
   2334   1.1  jmcneill 			break;
   2335   1.1  jmcneill 		case IEEE80211_ELEMID_ERP:
   2336   1.8      maxv 			if (frm + 1 >= efrm)
   2337   1.8      maxv 				break;
   2338   1.1  jmcneill 			if (frm[1] != 1) {
   2339   1.1  jmcneill 				ic->ic_stats.is_rx_elem_toobig++;
   2340   1.1  jmcneill 				break;
   2341   1.1  jmcneill 			}
   2342  1.10      maxv 			scan.sp_erp = frm[2];
   2343   1.1  jmcneill 			break;
   2344   1.1  jmcneill 		case IEEE80211_ELEMID_RSN:
   2345  1.10      maxv 			scan.sp_wpa = frm;
   2346   1.1  jmcneill 			break;
   2347   1.1  jmcneill 		case IEEE80211_ELEMID_VENDOR:
   2348   1.8      maxv 			if (frm + 1 >= efrm)
   2349   1.8      maxv 				break;
   2350   1.8      maxv 			if (frm + frm[1] + 2 >= efrm)
   2351   1.8      maxv 				break;
   2352   1.1  jmcneill 			if (bwfm_iswpaoui(frm))
   2353  1.10      maxv 				scan.sp_wpa = frm;
   2354   1.1  jmcneill 			break;
   2355   1.1  jmcneill 		}
   2356   1.9      maxv 		if (frm + 1 >= efrm)
   2357   1.9      maxv 			break;
   2358   1.1  jmcneill 	}
   2359   1.1  jmcneill 
   2360   1.1  jmcneill 	if (ic->ic_flags & IEEE80211_F_SCAN)
   2361   1.1  jmcneill 		ieee80211_add_scan(ic, &scan, &wh, IEEE80211_FC0_SUBTYPE_BEACON,
   2362   1.1  jmcneill 		    le32toh(bss->rssi), 0);
   2363   1.1  jmcneill }
   2364