xref: /illumos-gate/usr/src/uts/common/io/dld/dld_proto.c (revision f83ffe1aa13dc057aa65c36bacc83297b35f9be2)
1 /*
2  * CDDL HEADER START
3  *
4  * The contents of this file are subject to the terms of the
5  * Common Development and Distribution License (the "License").
6  * You may not use this file except in compliance with the License.
7  *
8  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9  * or http://www.opensolaris.org/os/licensing.
10  * See the License for the specific language governing permissions
11  * and limitations under the License.
12  *
13  * When distributing Covered Code, include this CDDL HEADER in each
14  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15  * If applicable, add the following below this CDDL HEADER, with the
16  * fields enclosed by brackets "[]" replaced with your own identifying
17  * information: Portions Copyright [yyyy] [name of copyright owner]
18  *
19  * CDDL HEADER END
20  */
21 /*
22  * Copyright 2009 Sun Microsystems, Inc.  All rights reserved.
23  * Use is subject to license terms.
24  */
25 
26 /*
27  * Data-Link Driver
28  */
29 #include <sys/sysmacros.h>
30 #include <sys/strsubr.h>
31 #include <sys/strsun.h>
32 #include <sys/vlan.h>
33 #include <sys/dld_impl.h>
34 #include <sys/mac_client.h>
35 #include <sys/mac_client_impl.h>
36 #include <sys/mac_client_priv.h>
37 
38 typedef void proto_reqfunc_t(dld_str_t *, mblk_t *);
39 
40 static proto_reqfunc_t proto_info_req, proto_attach_req, proto_detach_req,
41     proto_bind_req, proto_unbind_req, proto_promiscon_req, proto_promiscoff_req,
42     proto_enabmulti_req, proto_disabmulti_req, proto_physaddr_req,
43     proto_setphysaddr_req, proto_udqos_req, proto_req, proto_capability_req,
44     proto_notify_req, proto_passive_req;
45 
46 static void proto_capability_advertise(dld_str_t *, mblk_t *);
47 static int dld_capab_poll_disable(dld_str_t *, dld_capab_poll_t *);
48 
49 #define	DL_ACK_PENDING(state) \
50 	((state) == DL_ATTACH_PENDING || \
51 	(state) == DL_DETACH_PENDING || \
52 	(state) == DL_BIND_PENDING || \
53 	(state) == DL_UNBIND_PENDING)
54 
55 /*
56  * Process a DLPI protocol message.
57  * The primitives DL_BIND_REQ, DL_ENABMULTI_REQ, DL_PROMISCON_REQ,
58  * DL_SET_PHYS_ADDR_REQ put the data link below our dld_str_t into an
59  * 'active' state. The primitive DL_PASSIVE_REQ marks our dld_str_t
60  * as 'passive' and forbids it from being subsequently made 'active'
61  * by the above primitives.
62  */
63 void
64 dld_proto(dld_str_t *dsp, mblk_t *mp)
65 {
66 	t_uscalar_t		prim;
67 
68 	if (MBLKL(mp) < sizeof (t_uscalar_t)) {
69 		freemsg(mp);
70 		return;
71 	}
72 	prim = ((union DL_primitives *)mp->b_rptr)->dl_primitive;
73 
74 	switch (prim) {
75 	case DL_INFO_REQ:
76 		proto_info_req(dsp, mp);
77 		break;
78 	case DL_BIND_REQ:
79 		proto_bind_req(dsp, mp);
80 		break;
81 	case DL_UNBIND_REQ:
82 		proto_unbind_req(dsp, mp);
83 		break;
84 	case DL_UNITDATA_REQ:
85 		proto_unitdata_req(dsp, mp);
86 		break;
87 	case DL_UDQOS_REQ:
88 		proto_udqos_req(dsp, mp);
89 		break;
90 	case DL_ATTACH_REQ:
91 		proto_attach_req(dsp, mp);
92 		break;
93 	case DL_DETACH_REQ:
94 		proto_detach_req(dsp, mp);
95 		break;
96 	case DL_ENABMULTI_REQ:
97 		proto_enabmulti_req(dsp, mp);
98 		break;
99 	case DL_DISABMULTI_REQ:
100 		proto_disabmulti_req(dsp, mp);
101 		break;
102 	case DL_PROMISCON_REQ:
103 		proto_promiscon_req(dsp, mp);
104 		break;
105 	case DL_PROMISCOFF_REQ:
106 		proto_promiscoff_req(dsp, mp);
107 		break;
108 	case DL_PHYS_ADDR_REQ:
109 		proto_physaddr_req(dsp, mp);
110 		break;
111 	case DL_SET_PHYS_ADDR_REQ:
112 		proto_setphysaddr_req(dsp, mp);
113 		break;
114 	case DL_NOTIFY_REQ:
115 		proto_notify_req(dsp, mp);
116 		break;
117 	case DL_CAPABILITY_REQ:
118 		proto_capability_req(dsp, mp);
119 		break;
120 	case DL_PASSIVE_REQ:
121 		proto_passive_req(dsp, mp);
122 		break;
123 	default:
124 		proto_req(dsp, mp);
125 		break;
126 	}
127 }
128 
129 #define	NEG(x)	-(x)
130 typedef struct dl_info_ack_wrapper {
131 	dl_info_ack_t		dl_info;
132 	uint8_t			dl_addr[MAXMACADDRLEN + sizeof (uint16_t)];
133 	uint8_t			dl_brdcst_addr[MAXMACADDRLEN];
134 	dl_qos_cl_range1_t	dl_qos_range1;
135 	dl_qos_cl_sel1_t	dl_qos_sel1;
136 } dl_info_ack_wrapper_t;
137 
138 /*
139  * DL_INFO_REQ
140  */
141 static void
142 proto_info_req(dld_str_t *dsp, mblk_t *mp)
143 {
144 	dl_info_ack_wrapper_t	*dlwp;
145 	dl_info_ack_t		*dlp;
146 	dl_qos_cl_sel1_t	*selp;
147 	dl_qos_cl_range1_t	*rangep;
148 	uint8_t			*addr;
149 	uint8_t			*brdcst_addr;
150 	uint_t			addr_length;
151 	uint_t			sap_length;
152 	mac_info_t		minfo;
153 	mac_info_t		*minfop;
154 	queue_t			*q = dsp->ds_wq;
155 
156 	/*
157 	 * Swap the request message for one large enough to contain the
158 	 * wrapper structure defined above.
159 	 */
160 	if ((mp = mexchange(q, mp, sizeof (dl_info_ack_wrapper_t),
161 	    M_PCPROTO, 0)) == NULL)
162 		return;
163 
164 	bzero(mp->b_rptr, sizeof (dl_info_ack_wrapper_t));
165 	dlwp = (dl_info_ack_wrapper_t *)mp->b_rptr;
166 
167 	dlp = &(dlwp->dl_info);
168 	ASSERT(dlp == (dl_info_ack_t *)mp->b_rptr);
169 
170 	dlp->dl_primitive = DL_INFO_ACK;
171 
172 	/*
173 	 * Set up the sub-structure pointers.
174 	 */
175 	addr = dlwp->dl_addr;
176 	brdcst_addr = dlwp->dl_brdcst_addr;
177 	rangep = &(dlwp->dl_qos_range1);
178 	selp = &(dlwp->dl_qos_sel1);
179 
180 	/*
181 	 * This driver supports only version 2 connectionless DLPI provider
182 	 * nodes.
183 	 */
184 	dlp->dl_service_mode = DL_CLDLS;
185 	dlp->dl_version = DL_VERSION_2;
186 
187 	/*
188 	 * Set the style of the provider
189 	 */
190 	dlp->dl_provider_style = dsp->ds_style;
191 	ASSERT(dlp->dl_provider_style == DL_STYLE1 ||
192 	    dlp->dl_provider_style == DL_STYLE2);
193 
194 	/*
195 	 * Set the current DLPI state.
196 	 */
197 	dlp->dl_current_state = dsp->ds_dlstate;
198 
199 	/*
200 	 * Gratuitously set the media type. This is to deal with modules
201 	 * that assume the media type is known prior to DL_ATTACH_REQ
202 	 * being completed.
203 	 */
204 	dlp->dl_mac_type = DL_ETHER;
205 
206 	/*
207 	 * If the stream is not at least attached we try to retrieve the
208 	 * mac_info using mac_info_get()
209 	 */
210 	if (dsp->ds_dlstate == DL_UNATTACHED ||
211 	    dsp->ds_dlstate == DL_ATTACH_PENDING ||
212 	    dsp->ds_dlstate == DL_DETACH_PENDING) {
213 		if (!mac_info_get(ddi_major_to_name(dsp->ds_major), &minfo)) {
214 			/*
215 			 * Cannot find mac_info. giving up.
216 			 */
217 			goto done;
218 		}
219 		minfop = &minfo;
220 	} else {
221 		minfop = (mac_info_t *)dsp->ds_mip;
222 		/* We can only get the sdu if we're attached. */
223 		mac_sdu_get(dsp->ds_mh, &dlp->dl_min_sdu, &dlp->dl_max_sdu);
224 	}
225 
226 	/*
227 	 * Set the media type (properly this time).
228 	 */
229 	if (dsp->ds_native)
230 		dlp->dl_mac_type = minfop->mi_nativemedia;
231 	else
232 		dlp->dl_mac_type = minfop->mi_media;
233 
234 	/*
235 	 * Set the DLSAP length. We only support 16 bit values and they
236 	 * appear after the MAC address portion of DLSAP addresses.
237 	 */
238 	sap_length = sizeof (uint16_t);
239 	dlp->dl_sap_length = NEG(sap_length);
240 
241 	addr_length = minfop->mi_addr_length;
242 
243 	/*
244 	 * Copy in the media broadcast address.
245 	 */
246 	if (minfop->mi_brdcst_addr != NULL) {
247 		dlp->dl_brdcst_addr_offset =
248 		    (uintptr_t)brdcst_addr - (uintptr_t)dlp;
249 		bcopy(minfop->mi_brdcst_addr, brdcst_addr, addr_length);
250 		dlp->dl_brdcst_addr_length = addr_length;
251 	}
252 
253 	/* Only VLAN links and links that have a normal tag mode support QOS. */
254 	if ((dsp->ds_mch != NULL &&
255 	    mac_client_vid(dsp->ds_mch) != VLAN_ID_NONE) ||
256 	    (dsp->ds_dlp != NULL &&
257 	    dsp->ds_dlp->dl_tagmode == LINK_TAGMODE_NORMAL)) {
258 		dlp->dl_qos_range_offset = (uintptr_t)rangep - (uintptr_t)dlp;
259 		dlp->dl_qos_range_length = sizeof (dl_qos_cl_range1_t);
260 
261 		rangep->dl_qos_type = DL_QOS_CL_RANGE1;
262 		rangep->dl_trans_delay.dl_target_value = DL_UNKNOWN;
263 		rangep->dl_trans_delay.dl_accept_value = DL_UNKNOWN;
264 		rangep->dl_protection.dl_min = DL_UNKNOWN;
265 		rangep->dl_protection.dl_max = DL_UNKNOWN;
266 		rangep->dl_residual_error = DL_UNKNOWN;
267 
268 		/*
269 		 * Specify the supported range of priorities.
270 		 */
271 		rangep->dl_priority.dl_min = 0;
272 		rangep->dl_priority.dl_max = (1 << VLAN_PRI_SIZE) - 1;
273 
274 		dlp->dl_qos_offset = (uintptr_t)selp - (uintptr_t)dlp;
275 		dlp->dl_qos_length = sizeof (dl_qos_cl_sel1_t);
276 
277 		selp->dl_qos_type = DL_QOS_CL_SEL1;
278 		selp->dl_trans_delay = DL_UNKNOWN;
279 		selp->dl_protection = DL_UNKNOWN;
280 		selp->dl_residual_error = DL_UNKNOWN;
281 
282 		/*
283 		 * Specify the current priority (which can be changed by
284 		 * the DL_UDQOS_REQ primitive).
285 		 */
286 		selp->dl_priority = dsp->ds_pri;
287 	}
288 
289 	dlp->dl_addr_length = addr_length + sizeof (uint16_t);
290 	if (dsp->ds_dlstate == DL_IDLE) {
291 		/*
292 		 * The stream is bound. Therefore we can formulate a valid
293 		 * DLSAP address.
294 		 */
295 		dlp->dl_addr_offset = (uintptr_t)addr - (uintptr_t)dlp;
296 		if (addr_length > 0)
297 			mac_unicast_primary_get(dsp->ds_mh, addr);
298 
299 		*(uint16_t *)(addr + addr_length) = dsp->ds_sap;
300 	}
301 
302 done:
303 	ASSERT(IMPLY(dlp->dl_qos_offset != 0, dlp->dl_qos_length != 0));
304 	ASSERT(IMPLY(dlp->dl_qos_range_offset != 0,
305 	    dlp->dl_qos_range_length != 0));
306 	ASSERT(IMPLY(dlp->dl_addr_offset != 0, dlp->dl_addr_length != 0));
307 	ASSERT(IMPLY(dlp->dl_brdcst_addr_offset != 0,
308 	    dlp->dl_brdcst_addr_length != 0));
309 
310 	qreply(q, mp);
311 }
312 
313 /*
314  * DL_ATTACH_REQ
315  */
316 static void
317 proto_attach_req(dld_str_t *dsp, mblk_t *mp)
318 {
319 	dl_attach_req_t	*dlp = (dl_attach_req_t *)mp->b_rptr;
320 	int		err = 0;
321 	t_uscalar_t	dl_err;
322 	queue_t		*q = dsp->ds_wq;
323 
324 	if (MBLKL(mp) < sizeof (dl_attach_req_t) ||
325 	    dlp->dl_ppa < 0 || dsp->ds_style == DL_STYLE1) {
326 		dl_err = DL_BADPRIM;
327 		goto failed;
328 	}
329 
330 	if (dsp->ds_dlstate != DL_UNATTACHED) {
331 		dl_err = DL_OUTSTATE;
332 		goto failed;
333 	}
334 
335 	dsp->ds_dlstate = DL_ATTACH_PENDING;
336 
337 	err = dld_str_attach(dsp, dlp->dl_ppa);
338 	if (err != 0) {
339 		switch (err) {
340 		case ENOENT:
341 			dl_err = DL_BADPPA;
342 			err = 0;
343 			break;
344 		default:
345 			dl_err = DL_SYSERR;
346 			break;
347 		}
348 		dsp->ds_dlstate = DL_UNATTACHED;
349 		goto failed;
350 	}
351 	ASSERT(dsp->ds_dlstate == DL_UNBOUND);
352 	dlokack(q, mp, DL_ATTACH_REQ);
353 	return;
354 
355 failed:
356 	dlerrorack(q, mp, DL_ATTACH_REQ, dl_err, (t_uscalar_t)err);
357 }
358 
359 /*
360  * DL_DETACH_REQ
361  */
362 static void
363 proto_detach_req(dld_str_t *dsp, mblk_t *mp)
364 {
365 	queue_t		*q = dsp->ds_wq;
366 	t_uscalar_t	dl_err;
367 
368 	if (MBLKL(mp) < sizeof (dl_detach_req_t)) {
369 		dl_err = DL_BADPRIM;
370 		goto failed;
371 	}
372 
373 	if (dsp->ds_dlstate != DL_UNBOUND) {
374 		dl_err = DL_OUTSTATE;
375 		goto failed;
376 	}
377 
378 	if (dsp->ds_style == DL_STYLE1) {
379 		dl_err = DL_BADPRIM;
380 		goto failed;
381 	}
382 
383 	ASSERT(dsp->ds_datathr_cnt == 0);
384 	dsp->ds_dlstate = DL_DETACH_PENDING;
385 
386 	dld_str_detach(dsp);
387 	dlokack(dsp->ds_wq, mp, DL_DETACH_REQ);
388 	return;
389 
390 failed:
391 	dlerrorack(q, mp, DL_DETACH_REQ, dl_err, 0);
392 }
393 
394 /*
395  * DL_BIND_REQ
396  */
397 static void
398 proto_bind_req(dld_str_t *dsp, mblk_t *mp)
399 {
400 	dl_bind_req_t	*dlp = (dl_bind_req_t *)mp->b_rptr;
401 	int		err = 0;
402 	uint8_t		dlsap_addr[MAXMACADDRLEN + sizeof (uint16_t)];
403 	uint_t		dlsap_addr_length;
404 	t_uscalar_t	dl_err;
405 	t_scalar_t	sap;
406 	queue_t		*q = dsp->ds_wq;
407 	mac_perim_handle_t	mph;
408 	void		*mdip;
409 	int32_t		intr_cpu;
410 
411 	if (MBLKL(mp) < sizeof (dl_bind_req_t)) {
412 		dl_err = DL_BADPRIM;
413 		goto failed;
414 	}
415 
416 	if (dlp->dl_xidtest_flg != 0) {
417 		dl_err = DL_NOAUTO;
418 		goto failed;
419 	}
420 
421 	if (dlp->dl_service_mode != DL_CLDLS) {
422 		dl_err = DL_UNSUPPORTED;
423 		goto failed;
424 	}
425 
426 	if (dsp->ds_dlstate != DL_UNBOUND) {
427 		dl_err = DL_OUTSTATE;
428 		goto failed;
429 	}
430 
431 	mac_perim_enter_by_mh(dsp->ds_mh, &mph);
432 
433 	if (dsp->ds_passivestate == DLD_UNINITIALIZED &&
434 	    ((err = dls_active_set(dsp)) != 0)) {
435 		dl_err = DL_SYSERR;
436 		goto failed2;
437 	}
438 
439 	dsp->ds_dlstate = DL_BIND_PENDING;
440 	/*
441 	 * Set the receive callback.
442 	 */
443 	dls_rx_set(dsp, (dsp->ds_mode == DLD_RAW) ?
444 	    dld_str_rx_raw : dld_str_rx_unitdata, dsp);
445 
446 	/*
447 	 * Bind the channel such that it can receive packets.
448 	 */
449 	sap = dlp->dl_sap;
450 	err = dls_bind(dsp, sap);
451 	if (err != 0) {
452 		switch (err) {
453 		case EINVAL:
454 			dl_err = DL_BADADDR;
455 			err = 0;
456 			break;
457 		default:
458 			dl_err = DL_SYSERR;
459 			break;
460 		}
461 
462 		dsp->ds_dlstate = DL_UNBOUND;
463 		if (dsp->ds_passivestate == DLD_UNINITIALIZED)
464 			dls_active_clear(dsp);
465 		goto failed2;
466 	}
467 
468 	intr_cpu = mac_client_intr_cpu(dsp->ds_mch);
469 	mdip = mac_get_devinfo(dsp->ds_mh);
470 	mac_perim_exit(mph);
471 
472 	/*
473 	 * We do this after we get out of the perim to avoid deadlocks
474 	 * etc. since part of mac_client_retarget_intr is to walk the
475 	 * device tree in order to find and retarget the interrupts.
476 	 */
477 	mac_client_set_intr_cpu(mdip, dsp->ds_mch, intr_cpu);
478 
479 	/*
480 	 * Copy in MAC address.
481 	 */
482 	dlsap_addr_length = dsp->ds_mip->mi_addr_length;
483 	mac_unicast_primary_get(dsp->ds_mh, dlsap_addr);
484 
485 	/*
486 	 * Copy in the SAP.
487 	 */
488 	*(uint16_t *)(dlsap_addr + dlsap_addr_length) = sap;
489 	dlsap_addr_length += sizeof (uint16_t);
490 
491 	dsp->ds_dlstate = DL_IDLE;
492 	if (dsp->ds_passivestate == DLD_UNINITIALIZED)
493 		dsp->ds_passivestate = DLD_ACTIVE;
494 
495 	dlbindack(q, mp, sap, dlsap_addr, dlsap_addr_length, 0, 0);
496 	return;
497 
498 failed2:
499 	mac_perim_exit(mph);
500 failed:
501 	dlerrorack(q, mp, DL_BIND_REQ, dl_err, (t_uscalar_t)err);
502 }
503 
504 /*
505  * DL_UNBIND_REQ
506  */
507 static void
508 proto_unbind_req(dld_str_t *dsp, mblk_t *mp)
509 {
510 	queue_t		*q = dsp->ds_wq;
511 	t_uscalar_t	dl_err;
512 	mac_perim_handle_t	mph;
513 
514 	if (MBLKL(mp) < sizeof (dl_unbind_req_t)) {
515 		dl_err = DL_BADPRIM;
516 		goto failed;
517 	}
518 
519 	if (dsp->ds_dlstate != DL_IDLE) {
520 		dl_err = DL_OUTSTATE;
521 		goto failed;
522 	}
523 
524 	mutex_enter(&dsp->ds_lock);
525 	while (dsp->ds_datathr_cnt != 0)
526 		cv_wait(&dsp->ds_datathr_cv, &dsp->ds_lock);
527 
528 	dsp->ds_dlstate = DL_UNBIND_PENDING;
529 	mutex_exit(&dsp->ds_lock);
530 
531 	mac_perim_enter_by_mh(dsp->ds_mh, &mph);
532 	/*
533 	 * Unbind the channel to stop packets being received.
534 	 */
535 	dls_unbind(dsp);
536 
537 	/*
538 	 * Disable polling mode, if it is enabled.
539 	 */
540 	(void) dld_capab_poll_disable(dsp, NULL);
541 
542 	/*
543 	 * Clear LSO flags.
544 	 */
545 	dsp->ds_lso = B_FALSE;
546 	dsp->ds_lso_max = 0;
547 
548 	/*
549 	 * Clear the receive callback.
550 	 */
551 	dls_rx_set(dsp, NULL, NULL);
552 	dsp->ds_direct = B_FALSE;
553 
554 	/*
555 	 * Set the mode back to the default (unitdata).
556 	 */
557 	dsp->ds_mode = DLD_UNITDATA;
558 	dsp->ds_dlstate = DL_UNBOUND;
559 
560 	mac_perim_exit(mph);
561 	dlokack(dsp->ds_wq, mp, DL_UNBIND_REQ);
562 	return;
563 failed:
564 	dlerrorack(q, mp, DL_UNBIND_REQ, dl_err, 0);
565 }
566 
567 /*
568  * DL_PROMISCON_REQ
569  */
570 static void
571 proto_promiscon_req(dld_str_t *dsp, mblk_t *mp)
572 {
573 	dl_promiscon_req_t *dlp = (dl_promiscon_req_t *)mp->b_rptr;
574 	int		err = 0;
575 	t_uscalar_t	dl_err;
576 	uint32_t	promisc_saved;
577 	queue_t		*q = dsp->ds_wq;
578 	mac_perim_handle_t	mph;
579 
580 	if (MBLKL(mp) < sizeof (dl_promiscon_req_t)) {
581 		dl_err = DL_BADPRIM;
582 		goto failed;
583 	}
584 
585 	if (dsp->ds_dlstate == DL_UNATTACHED ||
586 	    DL_ACK_PENDING(dsp->ds_dlstate)) {
587 		dl_err = DL_OUTSTATE;
588 		goto failed;
589 	}
590 
591 	promisc_saved = dsp->ds_promisc;
592 	switch (dlp->dl_level) {
593 	case DL_PROMISC_SAP:
594 		dsp->ds_promisc |= DLS_PROMISC_SAP;
595 		break;
596 
597 	case DL_PROMISC_MULTI:
598 		dsp->ds_promisc |= DLS_PROMISC_MULTI;
599 		break;
600 
601 	case DL_PROMISC_PHYS:
602 		dsp->ds_promisc |= DLS_PROMISC_PHYS;
603 		break;
604 
605 	default:
606 		dl_err = DL_NOTSUPPORTED;
607 		goto failed;
608 	}
609 
610 	mac_perim_enter_by_mh(dsp->ds_mh, &mph);
611 
612 	if (dsp->ds_passivestate == DLD_UNINITIALIZED &&
613 	    ((err = dls_active_set(dsp)) != 0)) {
614 		dsp->ds_promisc = promisc_saved;
615 		dl_err = DL_SYSERR;
616 		goto failed2;
617 	}
618 
619 	/*
620 	 * Adjust channel promiscuity.
621 	 */
622 	err = dls_promisc(dsp, promisc_saved);
623 
624 	if (err != 0) {
625 		dl_err = DL_SYSERR;
626 		dsp->ds_promisc = promisc_saved;
627 		if (dsp->ds_passivestate == DLD_UNINITIALIZED)
628 			dls_active_clear(dsp);
629 		goto failed2;
630 	}
631 
632 	mac_perim_exit(mph);
633 
634 	if (dsp->ds_passivestate == DLD_UNINITIALIZED)
635 		dsp->ds_passivestate = DLD_ACTIVE;
636 	dlokack(q, mp, DL_PROMISCON_REQ);
637 	return;
638 
639 failed2:
640 	mac_perim_exit(mph);
641 failed:
642 	dlerrorack(q, mp, DL_PROMISCON_REQ, dl_err, (t_uscalar_t)err);
643 }
644 
645 /*
646  * DL_PROMISCOFF_REQ
647  */
648 static void
649 proto_promiscoff_req(dld_str_t *dsp, mblk_t *mp)
650 {
651 	dl_promiscoff_req_t *dlp = (dl_promiscoff_req_t *)mp->b_rptr;
652 	int		err = 0;
653 	t_uscalar_t	dl_err;
654 	uint32_t	promisc_saved;
655 	queue_t		*q = dsp->ds_wq;
656 	mac_perim_handle_t	mph;
657 
658 	if (MBLKL(mp) < sizeof (dl_promiscoff_req_t)) {
659 		dl_err = DL_BADPRIM;
660 		goto failed;
661 	}
662 
663 	if (dsp->ds_dlstate == DL_UNATTACHED ||
664 	    DL_ACK_PENDING(dsp->ds_dlstate)) {
665 		dl_err = DL_OUTSTATE;
666 		goto failed;
667 	}
668 
669 	promisc_saved = dsp->ds_promisc;
670 	switch (dlp->dl_level) {
671 	case DL_PROMISC_SAP:
672 		if (!(dsp->ds_promisc & DLS_PROMISC_SAP)) {
673 			dl_err = DL_NOTENAB;
674 			goto failed;
675 		}
676 		dsp->ds_promisc &= ~DLS_PROMISC_SAP;
677 		break;
678 
679 	case DL_PROMISC_MULTI:
680 		if (!(dsp->ds_promisc & DLS_PROMISC_MULTI)) {
681 			dl_err = DL_NOTENAB;
682 			goto failed;
683 		}
684 		dsp->ds_promisc &= ~DLS_PROMISC_MULTI;
685 		break;
686 
687 	case DL_PROMISC_PHYS:
688 		if (!(dsp->ds_promisc & DLS_PROMISC_PHYS)) {
689 			dl_err = DL_NOTENAB;
690 			goto failed;
691 		}
692 		dsp->ds_promisc &= ~DLS_PROMISC_PHYS;
693 		break;
694 
695 	default:
696 		dl_err = DL_NOTSUPPORTED;
697 		goto failed;
698 	}
699 
700 	mac_perim_enter_by_mh(dsp->ds_mh, &mph);
701 	/*
702 	 * Adjust channel promiscuity.
703 	 */
704 	err = dls_promisc(dsp, promisc_saved);
705 	mac_perim_exit(mph);
706 
707 	if (err != 0) {
708 		dl_err = DL_SYSERR;
709 		goto failed;
710 	}
711 	dlokack(q, mp, DL_PROMISCOFF_REQ);
712 	return;
713 failed:
714 	dlerrorack(q, mp, DL_PROMISCOFF_REQ, dl_err, (t_uscalar_t)err);
715 }
716 
717 /*
718  * DL_ENABMULTI_REQ
719  */
720 static void
721 proto_enabmulti_req(dld_str_t *dsp, mblk_t *mp)
722 {
723 	dl_enabmulti_req_t *dlp = (dl_enabmulti_req_t *)mp->b_rptr;
724 	int		err = 0;
725 	t_uscalar_t	dl_err;
726 	queue_t		*q = dsp->ds_wq;
727 	mac_perim_handle_t	mph;
728 
729 	if (dsp->ds_dlstate == DL_UNATTACHED ||
730 	    DL_ACK_PENDING(dsp->ds_dlstate)) {
731 		dl_err = DL_OUTSTATE;
732 		goto failed;
733 	}
734 
735 	if (MBLKL(mp) < sizeof (dl_enabmulti_req_t) ||
736 	    !MBLKIN(mp, dlp->dl_addr_offset, dlp->dl_addr_length) ||
737 	    dlp->dl_addr_length != dsp->ds_mip->mi_addr_length) {
738 		dl_err = DL_BADPRIM;
739 		goto failed;
740 	}
741 
742 	mac_perim_enter_by_mh(dsp->ds_mh, &mph);
743 
744 	if (dsp->ds_passivestate == DLD_UNINITIALIZED &&
745 	    ((err = dls_active_set(dsp)) != 0)) {
746 		dl_err = DL_SYSERR;
747 		goto failed2;
748 	}
749 
750 	err = dls_multicst_add(dsp, mp->b_rptr + dlp->dl_addr_offset);
751 
752 	if (err != 0) {
753 		switch (err) {
754 		case EINVAL:
755 			dl_err = DL_BADADDR;
756 			err = 0;
757 			break;
758 		case ENOSPC:
759 			dl_err = DL_TOOMANY;
760 			err = 0;
761 			break;
762 		default:
763 			dl_err = DL_SYSERR;
764 			break;
765 		}
766 		if (dsp->ds_passivestate == DLD_UNINITIALIZED)
767 			dls_active_clear(dsp);
768 
769 		goto failed2;
770 	}
771 
772 	mac_perim_exit(mph);
773 
774 	if (dsp->ds_passivestate == DLD_UNINITIALIZED)
775 		dsp->ds_passivestate = DLD_ACTIVE;
776 	dlokack(q, mp, DL_ENABMULTI_REQ);
777 	return;
778 
779 failed2:
780 	mac_perim_exit(mph);
781 failed:
782 	dlerrorack(q, mp, DL_ENABMULTI_REQ, dl_err, (t_uscalar_t)err);
783 }
784 
785 /*
786  * DL_DISABMULTI_REQ
787  */
788 static void
789 proto_disabmulti_req(dld_str_t *dsp, mblk_t *mp)
790 {
791 	dl_disabmulti_req_t *dlp = (dl_disabmulti_req_t *)mp->b_rptr;
792 	int		err = 0;
793 	t_uscalar_t	dl_err;
794 	queue_t		*q = dsp->ds_wq;
795 	mac_perim_handle_t	mph;
796 
797 	if (dsp->ds_dlstate == DL_UNATTACHED ||
798 	    DL_ACK_PENDING(dsp->ds_dlstate)) {
799 		dl_err = DL_OUTSTATE;
800 		goto failed;
801 	}
802 
803 	if (MBLKL(mp) < sizeof (dl_disabmulti_req_t) ||
804 	    !MBLKIN(mp, dlp->dl_addr_offset, dlp->dl_addr_length) ||
805 	    dlp->dl_addr_length != dsp->ds_mip->mi_addr_length) {
806 		dl_err = DL_BADPRIM;
807 		goto failed;
808 	}
809 
810 	mac_perim_enter_by_mh(dsp->ds_mh, &mph);
811 	err = dls_multicst_remove(dsp, mp->b_rptr + dlp->dl_addr_offset);
812 	mac_perim_exit(mph);
813 
814 	if (err != 0) {
815 	switch (err) {
816 		case EINVAL:
817 			dl_err = DL_BADADDR;
818 			err = 0;
819 			break;
820 
821 		case ENOENT:
822 			dl_err = DL_NOTENAB;
823 			err = 0;
824 			break;
825 
826 		default:
827 			dl_err = DL_SYSERR;
828 			break;
829 		}
830 		goto failed;
831 	}
832 	dlokack(q, mp, DL_DISABMULTI_REQ);
833 	return;
834 failed:
835 	dlerrorack(q, mp, DL_DISABMULTI_REQ, dl_err, (t_uscalar_t)err);
836 }
837 
838 /*
839  * DL_PHYS_ADDR_REQ
840  */
841 static void
842 proto_physaddr_req(dld_str_t *dsp, mblk_t *mp)
843 {
844 	dl_phys_addr_req_t *dlp = (dl_phys_addr_req_t *)mp->b_rptr;
845 	queue_t		*q = dsp->ds_wq;
846 	t_uscalar_t	dl_err;
847 	char		*addr;
848 	uint_t		addr_length;
849 
850 	if (MBLKL(mp) < sizeof (dl_phys_addr_req_t)) {
851 		dl_err = DL_BADPRIM;
852 		goto failed;
853 	}
854 
855 	if (dsp->ds_dlstate == DL_UNATTACHED ||
856 	    DL_ACK_PENDING(dsp->ds_dlstate)) {
857 		dl_err = DL_OUTSTATE;
858 		goto failed;
859 	}
860 
861 	if (dlp->dl_addr_type != DL_CURR_PHYS_ADDR &&
862 	    dlp->dl_addr_type != DL_FACT_PHYS_ADDR) {
863 		dl_err = DL_UNSUPPORTED;
864 		goto failed;
865 	}
866 
867 	addr_length = dsp->ds_mip->mi_addr_length;
868 	if (addr_length > 0) {
869 		addr = kmem_alloc(addr_length, KM_SLEEP);
870 		if (dlp->dl_addr_type == DL_CURR_PHYS_ADDR)
871 			mac_unicast_primary_get(dsp->ds_mh, (uint8_t *)addr);
872 		else
873 			bcopy(dsp->ds_mip->mi_unicst_addr, addr, addr_length);
874 
875 		dlphysaddrack(q, mp, addr, (t_uscalar_t)addr_length);
876 		kmem_free(addr, addr_length);
877 	} else {
878 		dlphysaddrack(q, mp, NULL, 0);
879 	}
880 	return;
881 failed:
882 	dlerrorack(q, mp, DL_PHYS_ADDR_REQ, dl_err, 0);
883 }
884 
885 /*
886  * DL_SET_PHYS_ADDR_REQ
887  */
888 static void
889 proto_setphysaddr_req(dld_str_t *dsp, mblk_t *mp)
890 {
891 	dl_set_phys_addr_req_t *dlp = (dl_set_phys_addr_req_t *)mp->b_rptr;
892 	int		err = 0;
893 	t_uscalar_t	dl_err;
894 	queue_t		*q = dsp->ds_wq;
895 	mac_perim_handle_t	mph;
896 
897 	if (dsp->ds_dlstate == DL_UNATTACHED ||
898 	    DL_ACK_PENDING(dsp->ds_dlstate)) {
899 		dl_err = DL_OUTSTATE;
900 		goto failed;
901 	}
902 
903 	if (MBLKL(mp) < sizeof (dl_set_phys_addr_req_t) ||
904 	    !MBLKIN(mp, dlp->dl_addr_offset, dlp->dl_addr_length) ||
905 	    dlp->dl_addr_length != dsp->ds_mip->mi_addr_length) {
906 		dl_err = DL_BADPRIM;
907 		goto failed;
908 	}
909 
910 	mac_perim_enter_by_mh(dsp->ds_mh, &mph);
911 
912 	if (dsp->ds_passivestate == DLD_UNINITIALIZED &&
913 	    ((err = dls_active_set(dsp)) != 0)) {
914 		dl_err = DL_SYSERR;
915 		goto failed2;
916 	}
917 
918 	err = mac_unicast_primary_set(dsp->ds_mh,
919 	    mp->b_rptr + dlp->dl_addr_offset);
920 	if (err != 0) {
921 		switch (err) {
922 		case EINVAL:
923 			dl_err = DL_BADADDR;
924 			err = 0;
925 			break;
926 
927 		default:
928 			dl_err = DL_SYSERR;
929 			break;
930 		}
931 		if (dsp->ds_passivestate == DLD_UNINITIALIZED)
932 			dls_active_clear(dsp);
933 
934 		goto failed2;
935 
936 	}
937 
938 	mac_perim_exit(mph);
939 
940 	if (dsp->ds_passivestate == DLD_UNINITIALIZED)
941 		dsp->ds_passivestate = DLD_ACTIVE;
942 	dlokack(q, mp, DL_SET_PHYS_ADDR_REQ);
943 	return;
944 
945 failed2:
946 	mac_perim_exit(mph);
947 failed:
948 	dlerrorack(q, mp, DL_SET_PHYS_ADDR_REQ, dl_err, (t_uscalar_t)err);
949 }
950 
951 /*
952  * DL_UDQOS_REQ
953  */
954 static void
955 proto_udqos_req(dld_str_t *dsp, mblk_t *mp)
956 {
957 	dl_udqos_req_t *dlp = (dl_udqos_req_t *)mp->b_rptr;
958 	dl_qos_cl_sel1_t *selp;
959 	int		off, len;
960 	t_uscalar_t	dl_err;
961 	queue_t		*q = dsp->ds_wq;
962 
963 	off = dlp->dl_qos_offset;
964 	len = dlp->dl_qos_length;
965 
966 	if (MBLKL(mp) < sizeof (dl_udqos_req_t) || !MBLKIN(mp, off, len)) {
967 		dl_err = DL_BADPRIM;
968 		goto failed;
969 	}
970 
971 	selp = (dl_qos_cl_sel1_t *)(mp->b_rptr + off);
972 	if (selp->dl_qos_type != DL_QOS_CL_SEL1) {
973 		dl_err = DL_BADQOSTYPE;
974 		goto failed;
975 	}
976 
977 	if (selp->dl_priority > (1 << VLAN_PRI_SIZE) - 1 ||
978 	    selp->dl_priority < 0) {
979 		dl_err = DL_BADQOSPARAM;
980 		goto failed;
981 	}
982 
983 	dsp->ds_pri = selp->dl_priority;
984 	dlokack(q, mp, DL_UDQOS_REQ);
985 	return;
986 failed:
987 	dlerrorack(q, mp, DL_UDQOS_REQ, dl_err, 0);
988 }
989 
990 static boolean_t
991 check_ip_above(queue_t *q)
992 {
993 	queue_t		*next_q;
994 	boolean_t	ret = B_TRUE;
995 
996 	claimstr(q);
997 	next_q = q->q_next;
998 	if (strcmp(next_q->q_qinfo->qi_minfo->mi_idname, "ip") != 0)
999 		ret = B_FALSE;
1000 	releasestr(q);
1001 	return (ret);
1002 }
1003 
1004 /*
1005  * DL_CAPABILITY_REQ
1006  */
1007 static void
1008 proto_capability_req(dld_str_t *dsp, mblk_t *mp)
1009 {
1010 	dl_capability_req_t *dlp = (dl_capability_req_t *)mp->b_rptr;
1011 	dl_capability_sub_t *sp;
1012 	size_t		size, len;
1013 	offset_t	off, end;
1014 	t_uscalar_t	dl_err;
1015 	queue_t		*q = dsp->ds_wq;
1016 
1017 	if (MBLKL(mp) < sizeof (dl_capability_req_t)) {
1018 		dl_err = DL_BADPRIM;
1019 		goto failed;
1020 	}
1021 
1022 	if (dsp->ds_dlstate == DL_UNATTACHED ||
1023 	    DL_ACK_PENDING(dsp->ds_dlstate)) {
1024 		dl_err = DL_OUTSTATE;
1025 		goto failed;
1026 	}
1027 
1028 	/*
1029 	 * This request is overloaded. If there are no requested capabilities
1030 	 * then we just want to acknowledge with all the capabilities we
1031 	 * support. Otherwise we enable the set of capabilities requested.
1032 	 */
1033 	if (dlp->dl_sub_length == 0) {
1034 		proto_capability_advertise(dsp, mp);
1035 		return;
1036 	}
1037 
1038 	if (!MBLKIN(mp, dlp->dl_sub_offset, dlp->dl_sub_length)) {
1039 		dl_err = DL_BADPRIM;
1040 		goto failed;
1041 	}
1042 
1043 	dlp->dl_primitive = DL_CAPABILITY_ACK;
1044 
1045 	off = dlp->dl_sub_offset;
1046 	len = dlp->dl_sub_length;
1047 
1048 	/*
1049 	 * Walk the list of capabilities to be enabled.
1050 	 */
1051 	for (end = off + len; off < end; ) {
1052 		sp = (dl_capability_sub_t *)(mp->b_rptr + off);
1053 		size = sizeof (dl_capability_sub_t) + sp->dl_length;
1054 
1055 		if (off + size > end ||
1056 		    !IS_P2ALIGNED(off, sizeof (uint32_t))) {
1057 			dl_err = DL_BADPRIM;
1058 			goto failed;
1059 		}
1060 
1061 		switch (sp->dl_cap) {
1062 		/*
1063 		 * TCP/IP checksum offload to hardware.
1064 		 */
1065 		case DL_CAPAB_HCKSUM: {
1066 			dl_capab_hcksum_t *hcksump;
1067 			dl_capab_hcksum_t hcksum;
1068 
1069 			hcksump = (dl_capab_hcksum_t *)&sp[1];
1070 			/*
1071 			 * Copy for alignment.
1072 			 */
1073 			bcopy(hcksump, &hcksum, sizeof (dl_capab_hcksum_t));
1074 			dlcapabsetqid(&(hcksum.hcksum_mid), dsp->ds_rq);
1075 			bcopy(&hcksum, hcksump, sizeof (dl_capab_hcksum_t));
1076 			break;
1077 		}
1078 
1079 		case DL_CAPAB_DLD: {
1080 			dl_capab_dld_t	*dldp;
1081 			dl_capab_dld_t	dld;
1082 
1083 			dldp = (dl_capab_dld_t *)&sp[1];
1084 			/*
1085 			 * Copy for alignment.
1086 			 */
1087 			bcopy(dldp, &dld, sizeof (dl_capab_dld_t));
1088 			dlcapabsetqid(&(dld.dld_mid), dsp->ds_rq);
1089 			bcopy(&dld, dldp, sizeof (dl_capab_dld_t));
1090 			break;
1091 		}
1092 		default:
1093 			break;
1094 		}
1095 		off += size;
1096 	}
1097 	qreply(q, mp);
1098 	return;
1099 failed:
1100 	dlerrorack(q, mp, DL_CAPABILITY_REQ, dl_err, 0);
1101 }
1102 
1103 /*
1104  * DL_NOTIFY_REQ
1105  */
1106 static void
1107 proto_notify_req(dld_str_t *dsp, mblk_t *mp)
1108 {
1109 	dl_notify_req_t	*dlp = (dl_notify_req_t *)mp->b_rptr;
1110 	t_uscalar_t	dl_err;
1111 	queue_t		*q = dsp->ds_wq;
1112 	uint_t		note =
1113 	    DL_NOTE_PROMISC_ON_PHYS |
1114 	    DL_NOTE_PROMISC_OFF_PHYS |
1115 	    DL_NOTE_PHYS_ADDR |
1116 	    DL_NOTE_LINK_UP |
1117 	    DL_NOTE_LINK_DOWN |
1118 	    DL_NOTE_CAPAB_RENEG |
1119 	    DL_NOTE_FASTPATH_FLUSH |
1120 	    DL_NOTE_SPEED;
1121 
1122 	if (MBLKL(mp) < sizeof (dl_notify_req_t)) {
1123 		dl_err = DL_BADPRIM;
1124 		goto failed;
1125 	}
1126 
1127 	if (dsp->ds_dlstate == DL_UNATTACHED ||
1128 	    DL_ACK_PENDING(dsp->ds_dlstate)) {
1129 		dl_err = DL_OUTSTATE;
1130 		goto failed;
1131 	}
1132 
1133 	note &= ~(mac_no_notification(dsp->ds_mh));
1134 
1135 	/*
1136 	 * Cache the notifications that are being enabled.
1137 	 */
1138 	dsp->ds_notifications = dlp->dl_notifications & note;
1139 	/*
1140 	 * The ACK carries all notifications regardless of which set is
1141 	 * being enabled.
1142 	 */
1143 	dlnotifyack(q, mp, note);
1144 
1145 	/*
1146 	 * Generate DL_NOTIFY_IND messages for each enabled notification.
1147 	 */
1148 	if (dsp->ds_notifications != 0) {
1149 		dld_str_notify_ind(dsp);
1150 	}
1151 	return;
1152 failed:
1153 	dlerrorack(q, mp, DL_NOTIFY_REQ, dl_err, 0);
1154 }
1155 
1156 /*
1157  * DL_UINTDATA_REQ
1158  */
1159 void
1160 proto_unitdata_req(dld_str_t *dsp, mblk_t *mp)
1161 {
1162 	queue_t			*q = dsp->ds_wq;
1163 	dl_unitdata_req_t	*dlp = (dl_unitdata_req_t *)mp->b_rptr;
1164 	off_t			off;
1165 	size_t			len, size;
1166 	const uint8_t		*addr;
1167 	uint16_t		sap;
1168 	uint_t			addr_length;
1169 	mblk_t			*bp, *payload;
1170 	uint32_t		start, stuff, end, value, flags;
1171 	t_uscalar_t		dl_err;
1172 	uint_t			max_sdu;
1173 
1174 	if (MBLKL(mp) < sizeof (dl_unitdata_req_t) || mp->b_cont == NULL) {
1175 		dlerrorack(q, mp, DL_UNITDATA_REQ, DL_BADPRIM, 0);
1176 		return;
1177 	}
1178 
1179 	mutex_enter(&dsp->ds_lock);
1180 	if (dsp->ds_dlstate != DL_IDLE) {
1181 		mutex_exit(&dsp->ds_lock);
1182 		dlerrorack(q, mp, DL_UNITDATA_REQ, DL_OUTSTATE, 0);
1183 		return;
1184 	}
1185 	DLD_DATATHR_INC(dsp);
1186 	mutex_exit(&dsp->ds_lock);
1187 
1188 	addr_length = dsp->ds_mip->mi_addr_length;
1189 
1190 	off = dlp->dl_dest_addr_offset;
1191 	len = dlp->dl_dest_addr_length;
1192 
1193 	if (!MBLKIN(mp, off, len) || !IS_P2ALIGNED(off, sizeof (uint16_t))) {
1194 		dl_err = DL_BADPRIM;
1195 		goto failed;
1196 	}
1197 
1198 	if (len != addr_length + sizeof (uint16_t)) {
1199 		dl_err = DL_BADADDR;
1200 		goto failed;
1201 	}
1202 
1203 	addr = mp->b_rptr + off;
1204 	sap = *(uint16_t *)(mp->b_rptr + off + addr_length);
1205 
1206 	/*
1207 	 * Check the length of the packet and the block types.
1208 	 */
1209 	size = 0;
1210 	payload = mp->b_cont;
1211 	for (bp = payload; bp != NULL; bp = bp->b_cont) {
1212 		if (DB_TYPE(bp) != M_DATA)
1213 			goto baddata;
1214 
1215 		size += MBLKL(bp);
1216 	}
1217 
1218 	mac_sdu_get(dsp->ds_mh, NULL, &max_sdu);
1219 	if (size > max_sdu)
1220 		goto baddata;
1221 
1222 	/*
1223 	 * Build a packet header.
1224 	 */
1225 	if ((bp = dls_header(dsp, addr, sap, dlp->dl_priority.dl_max,
1226 	    &payload)) == NULL) {
1227 		dl_err = DL_BADADDR;
1228 		goto failed;
1229 	}
1230 
1231 	/*
1232 	 * We no longer need the M_PROTO header, so free it.
1233 	 */
1234 	freeb(mp);
1235 
1236 	/*
1237 	 * Transfer the checksum offload information if it is present.
1238 	 */
1239 	hcksum_retrieve(payload, NULL, NULL, &start, &stuff, &end, &value,
1240 	    &flags);
1241 	(void) hcksum_assoc(bp, NULL, NULL, start, stuff, end, value, flags, 0);
1242 
1243 	/*
1244 	 * Link the payload onto the new header.
1245 	 */
1246 	ASSERT(bp->b_cont == NULL);
1247 	bp->b_cont = payload;
1248 
1249 	/*
1250 	 * No lock can be held across modules and putnext()'s,
1251 	 * which can happen here with the call from DLD_TX().
1252 	 */
1253 	if (DLD_TX(dsp, bp, 0, 0) != NULL) {
1254 		/* flow-controlled */
1255 		DLD_SETQFULL(dsp);
1256 	}
1257 	DLD_DATATHR_DCR(dsp);
1258 	return;
1259 
1260 failed:
1261 	dlerrorack(q, mp, DL_UNITDATA_REQ, dl_err, 0);
1262 	DLD_DATATHR_DCR(dsp);
1263 	return;
1264 
1265 baddata:
1266 	dluderrorind(q, mp, (void *)addr, len, DL_BADDATA, 0);
1267 	DLD_DATATHR_DCR(dsp);
1268 }
1269 
1270 /*
1271  * DL_PASSIVE_REQ
1272  */
1273 static void
1274 proto_passive_req(dld_str_t *dsp, mblk_t *mp)
1275 {
1276 	t_uscalar_t dl_err;
1277 
1278 	/*
1279 	 * If we've already become active by issuing an active primitive,
1280 	 * then it's too late to try to become passive.
1281 	 */
1282 	if (dsp->ds_passivestate == DLD_ACTIVE) {
1283 		dl_err = DL_OUTSTATE;
1284 		goto failed;
1285 	}
1286 
1287 	if (MBLKL(mp) < sizeof (dl_passive_req_t)) {
1288 		dl_err = DL_BADPRIM;
1289 		goto failed;
1290 	}
1291 
1292 	dsp->ds_passivestate = DLD_PASSIVE;
1293 	dlokack(dsp->ds_wq, mp, DL_PASSIVE_REQ);
1294 	return;
1295 failed:
1296 	dlerrorack(dsp->ds_wq, mp, DL_PASSIVE_REQ, dl_err, 0);
1297 }
1298 
1299 
1300 /*
1301  * Catch-all handler.
1302  */
1303 static void
1304 proto_req(dld_str_t *dsp, mblk_t *mp)
1305 {
1306 	union DL_primitives	*dlp = (union DL_primitives *)mp->b_rptr;
1307 
1308 	dlerrorack(dsp->ds_wq, mp, dlp->dl_primitive, DL_UNSUPPORTED, 0);
1309 }
1310 
1311 static int
1312 dld_capab_perim(dld_str_t *dsp, void *data, uint_t flags)
1313 {
1314 	switch (flags) {
1315 	case DLD_ENABLE:
1316 		mac_perim_enter_by_mh(dsp->ds_mh, (mac_perim_handle_t *)data);
1317 		return (0);
1318 
1319 	case DLD_DISABLE:
1320 		mac_perim_exit((mac_perim_handle_t)data);
1321 		return (0);
1322 
1323 	case DLD_QUERY:
1324 		return (mac_perim_held(dsp->ds_mh));
1325 	}
1326 	return (0);
1327 }
1328 
1329 static int
1330 dld_capab_direct(dld_str_t *dsp, void *data, uint_t flags)
1331 {
1332 	dld_capab_direct_t	*direct = data;
1333 
1334 	ASSERT(MAC_PERIM_HELD(dsp->ds_mh));
1335 
1336 	switch (flags) {
1337 	case DLD_ENABLE:
1338 		dls_rx_set(dsp, (dls_rx_t)direct->di_rx_cf,
1339 		    direct->di_rx_ch);
1340 
1341 		direct->di_tx_df = (uintptr_t)str_mdata_fastpath_put;
1342 		direct->di_tx_dh = dsp;
1343 		direct->di_tx_cb_df = (uintptr_t)mac_client_tx_notify;
1344 		direct->di_tx_cb_dh = dsp->ds_mch;
1345 		direct->di_tx_fctl_df = (uintptr_t)mac_tx_is_flow_blocked;
1346 		direct->di_tx_fctl_dh = dsp->ds_mch;
1347 
1348 		dsp->ds_direct = B_TRUE;
1349 
1350 		return (0);
1351 
1352 	case DLD_DISABLE:
1353 		dls_rx_set(dsp, (dsp->ds_mode == DLD_FASTPATH) ?
1354 		    dld_str_rx_fastpath : dld_str_rx_unitdata, (void *)dsp);
1355 		dsp->ds_direct = B_FALSE;
1356 
1357 		return (0);
1358 	}
1359 	return (ENOTSUP);
1360 }
1361 
1362 /*
1363  * dld_capab_poll_enable()
1364  *
1365  * This function is misnamed. All polling  and fanouts are run out of the
1366  * lower mac (in case of VNIC and the only mac in case of NICs). The
1367  * availability of Rx ring and promiscous mode is all taken care between
1368  * the soft ring set (mac_srs), the Rx ring, and S/W classifier. Any
1369  * fanout necessary is done by the soft rings that are part of the
1370  * mac_srs (by default mac_srs sends the packets up via a TCP and
1371  * non TCP soft ring).
1372  *
1373  * The mac_srs (or its associated soft rings) always store the ill_rx_ring
1374  * (the cookie returned when they registered with IP during plumb) as their
1375  * 2nd argument which is passed up as mac_resource_handle_t. The upcall
1376  * function and 1st argument is what the caller registered when they
1377  * called mac_rx_classify_flow_add() to register the flow. For VNIC,
1378  * the function is vnic_rx and argument is vnic_t. For regular NIC
1379  * case, it mac_rx_default and mac_handle_t. As explained above, the
1380  * mac_srs (or its soft ring) will add the ill_rx_ring (mac_resource_handle_t)
1381  * from its stored 2nd argument.
1382  */
1383 static int
1384 dld_capab_poll_enable(dld_str_t *dsp, dld_capab_poll_t *poll)
1385 {
1386 	if (dsp->ds_polling)
1387 		return (EINVAL);
1388 
1389 	if ((dld_opt & DLD_OPT_NO_POLL) != 0 || dsp->ds_mode == DLD_RAW)
1390 		return (ENOTSUP);
1391 
1392 	/*
1393 	 * Enable client polling if and only if DLS bypass is possible.
1394 	 * Special cases like VLANs need DLS processing in the Rx data path.
1395 	 * In such a case we can neither allow the client (IP) to directly
1396 	 * poll the softring (since DLS processing hasn't been done) nor can
1397 	 * we allow DLS bypass.
1398 	 */
1399 	if (!mac_rx_bypass_set(dsp->ds_mch, dsp->ds_rx, dsp->ds_rx_arg))
1400 		return (ENOTSUP);
1401 
1402 	/*
1403 	 * Register soft ring resources. This will come in handy later if
1404 	 * the user decides to modify CPU bindings to use more CPUs for the
1405 	 * device in which case we will switch to fanout using soft rings.
1406 	 */
1407 	mac_resource_set_common(dsp->ds_mch,
1408 	    (mac_resource_add_t)poll->poll_ring_add_cf,
1409 	    (mac_resource_remove_t)poll->poll_ring_remove_cf,
1410 	    (mac_resource_quiesce_t)poll->poll_ring_quiesce_cf,
1411 	    (mac_resource_restart_t)poll->poll_ring_restart_cf,
1412 	    (mac_resource_bind_t)poll->poll_ring_bind_cf,
1413 	    poll->poll_ring_ch);
1414 
1415 	mac_client_poll_enable(dsp->ds_mch);
1416 
1417 	dsp->ds_polling = B_TRUE;
1418 	return (0);
1419 }
1420 
1421 /* ARGSUSED */
1422 static int
1423 dld_capab_poll_disable(dld_str_t *dsp, dld_capab_poll_t *poll)
1424 {
1425 	if (!dsp->ds_polling)
1426 		return (EINVAL);
1427 
1428 	mac_client_poll_disable(dsp->ds_mch);
1429 	mac_resource_set(dsp->ds_mch, NULL, NULL);
1430 
1431 	dsp->ds_polling = B_FALSE;
1432 	return (0);
1433 }
1434 
1435 static int
1436 dld_capab_poll(dld_str_t *dsp, void *data, uint_t flags)
1437 {
1438 	dld_capab_poll_t	*poll = data;
1439 
1440 	ASSERT(MAC_PERIM_HELD(dsp->ds_mh));
1441 
1442 	switch (flags) {
1443 	case DLD_ENABLE:
1444 		return (dld_capab_poll_enable(dsp, poll));
1445 	case DLD_DISABLE:
1446 		return (dld_capab_poll_disable(dsp, poll));
1447 	}
1448 	return (ENOTSUP);
1449 }
1450 
1451 static int
1452 dld_capab_lso(dld_str_t *dsp, void *data, uint_t flags)
1453 {
1454 	dld_capab_lso_t		*lso = data;
1455 
1456 	ASSERT(MAC_PERIM_HELD(dsp->ds_mh));
1457 
1458 	switch (flags) {
1459 	case DLD_ENABLE: {
1460 		mac_capab_lso_t		mac_lso;
1461 
1462 		/*
1463 		 * Check if LSO is supported on this MAC & enable LSO
1464 		 * accordingly.
1465 		 */
1466 		if (mac_capab_get(dsp->ds_mh, MAC_CAPAB_LSO, &mac_lso)) {
1467 			lso->lso_max = mac_lso.lso_basic_tcp_ipv4.lso_max;
1468 			lso->lso_flags = 0;
1469 			/* translate the flag for mac clients */
1470 			if ((mac_lso.lso_flags & LSO_TX_BASIC_TCP_IPV4) != 0)
1471 				lso->lso_flags |= DLD_LSO_TX_BASIC_TCP_IPV4;
1472 			dsp->ds_lso = B_TRUE;
1473 			dsp->ds_lso_max = lso->lso_max;
1474 		} else {
1475 			dsp->ds_lso = B_FALSE;
1476 			dsp->ds_lso_max = 0;
1477 			return (ENOTSUP);
1478 		}
1479 		return (0);
1480 	}
1481 	case DLD_DISABLE: {
1482 		dsp->ds_lso = B_FALSE;
1483 		dsp->ds_lso_max = 0;
1484 		return (0);
1485 	}
1486 	}
1487 	return (ENOTSUP);
1488 }
1489 
1490 static int
1491 dld_capab(dld_str_t *dsp, uint_t type, void *data, uint_t flags)
1492 {
1493 	int	err;
1494 
1495 	/*
1496 	 * Don't enable direct callback capabilities unless the caller is
1497 	 * the IP client. When a module is inserted in a stream (_I_INSERT)
1498 	 * the stack initiates capability disable, but due to races, the
1499 	 * module insertion may complete before the capability disable
1500 	 * completes. So we limit the check to DLD_ENABLE case.
1501 	 */
1502 	if ((flags == DLD_ENABLE && type != DLD_CAPAB_PERIM) &&
1503 	    (dsp->ds_sap != ETHERTYPE_IP || !check_ip_above(dsp->ds_rq))) {
1504 		return (ENOTSUP);
1505 	}
1506 
1507 	switch (type) {
1508 	case DLD_CAPAB_DIRECT:
1509 		err = dld_capab_direct(dsp, data, flags);
1510 		break;
1511 
1512 	case DLD_CAPAB_POLL:
1513 		err =  dld_capab_poll(dsp, data, flags);
1514 		break;
1515 
1516 	case DLD_CAPAB_PERIM:
1517 		err = dld_capab_perim(dsp, data, flags);
1518 		break;
1519 
1520 	case DLD_CAPAB_LSO:
1521 		err = dld_capab_lso(dsp, data, flags);
1522 		break;
1523 
1524 	default:
1525 		err = ENOTSUP;
1526 		break;
1527 	}
1528 
1529 	return (err);
1530 }
1531 
1532 /*
1533  * DL_CAPABILITY_ACK/DL_ERROR_ACK
1534  */
1535 static void
1536 proto_capability_advertise(dld_str_t *dsp, mblk_t *mp)
1537 {
1538 	dl_capability_ack_t	*dlap;
1539 	dl_capability_sub_t	*dlsp;
1540 	size_t			subsize;
1541 	dl_capab_dld_t		dld;
1542 	dl_capab_hcksum_t	hcksum;
1543 	dl_capab_zerocopy_t	zcopy;
1544 	uint8_t			*ptr;
1545 	queue_t			*q = dsp->ds_wq;
1546 	mblk_t			*mp1;
1547 	boolean_t		is_vlan;
1548 	boolean_t		hcksum_capable = B_FALSE;
1549 	boolean_t		zcopy_capable = B_FALSE;
1550 	boolean_t		dld_capable = B_FALSE;
1551 
1552 	/*
1553 	 * Initially assume no capabilities.
1554 	 */
1555 	subsize = 0;
1556 	is_vlan = (mac_client_vid(dsp->ds_mch) != VLAN_ID_NONE);
1557 
1558 	/*
1559 	 * Check if checksum offload is supported on this MAC.  Don't
1560 	 * advertise DL_CAPAB_HCKSUM if the underlying MAC is VLAN incapable,
1561 	 * since it might not be able to do the hardware checksum offload
1562 	 * with the correct offset.
1563 	 */
1564 	bzero(&hcksum, sizeof (dl_capab_hcksum_t));
1565 	if ((!is_vlan || (!mac_capab_get(dsp->ds_mh, MAC_CAPAB_NO_NATIVEVLAN,
1566 	    NULL))) && mac_capab_get(dsp->ds_mh, MAC_CAPAB_HCKSUM,
1567 	    &hcksum.hcksum_txflags)) {
1568 		if (hcksum.hcksum_txflags != 0) {
1569 			hcksum_capable = B_TRUE;
1570 			subsize += sizeof (dl_capability_sub_t) +
1571 			    sizeof (dl_capab_hcksum_t);
1572 		}
1573 	}
1574 
1575 	/*
1576 	 * Check if zerocopy is supported on this interface.
1577 	 * If advertising DL_CAPAB_ZEROCOPY has not been explicitly disabled
1578 	 * then reserve space for that capability.
1579 	 */
1580 	if (!mac_capab_get(dsp->ds_mh, MAC_CAPAB_NO_ZCOPY, NULL) &&
1581 	    !(dld_opt & DLD_OPT_NO_ZEROCOPY)) {
1582 		zcopy_capable = B_TRUE;
1583 		subsize += sizeof (dl_capability_sub_t) +
1584 		    sizeof (dl_capab_zerocopy_t);
1585 	}
1586 
1587 	/*
1588 	 * Direct capability negotiation interface between IP and DLD
1589 	 */
1590 	if (dsp->ds_sap == ETHERTYPE_IP && check_ip_above(dsp->ds_rq)) {
1591 		dld_capable = B_TRUE;
1592 		subsize += sizeof (dl_capability_sub_t) +
1593 		    sizeof (dl_capab_dld_t);
1594 	}
1595 
1596 	/*
1597 	 * If there are no capabilities to advertise or if we
1598 	 * can't allocate a response, send a DL_ERROR_ACK.
1599 	 */
1600 	if ((mp1 = reallocb(mp,
1601 	    sizeof (dl_capability_ack_t) + subsize, 0)) == NULL) {
1602 		dlerrorack(q, mp, DL_CAPABILITY_REQ, DL_NOTSUPPORTED, 0);
1603 		return;
1604 	}
1605 
1606 	mp = mp1;
1607 	DB_TYPE(mp) = M_PROTO;
1608 	mp->b_wptr = mp->b_rptr + sizeof (dl_capability_ack_t) + subsize;
1609 	bzero(mp->b_rptr, MBLKL(mp));
1610 	dlap = (dl_capability_ack_t *)mp->b_rptr;
1611 	dlap->dl_primitive = DL_CAPABILITY_ACK;
1612 	dlap->dl_sub_offset = sizeof (dl_capability_ack_t);
1613 	dlap->dl_sub_length = subsize;
1614 	ptr = (uint8_t *)&dlap[1];
1615 
1616 	/*
1617 	 * TCP/IP checksum offload.
1618 	 */
1619 	if (hcksum_capable) {
1620 		dlsp = (dl_capability_sub_t *)ptr;
1621 
1622 		dlsp->dl_cap = DL_CAPAB_HCKSUM;
1623 		dlsp->dl_length = sizeof (dl_capab_hcksum_t);
1624 		ptr += sizeof (dl_capability_sub_t);
1625 
1626 		hcksum.hcksum_version = HCKSUM_VERSION_1;
1627 		dlcapabsetqid(&(hcksum.hcksum_mid), dsp->ds_rq);
1628 		bcopy(&hcksum, ptr, sizeof (dl_capab_hcksum_t));
1629 		ptr += sizeof (dl_capab_hcksum_t);
1630 	}
1631 
1632 	/*
1633 	 * Zero copy
1634 	 */
1635 	if (zcopy_capable) {
1636 		dlsp = (dl_capability_sub_t *)ptr;
1637 
1638 		dlsp->dl_cap = DL_CAPAB_ZEROCOPY;
1639 		dlsp->dl_length = sizeof (dl_capab_zerocopy_t);
1640 		ptr += sizeof (dl_capability_sub_t);
1641 
1642 		bzero(&zcopy, sizeof (dl_capab_zerocopy_t));
1643 		zcopy.zerocopy_version = ZEROCOPY_VERSION_1;
1644 		zcopy.zerocopy_flags = DL_CAPAB_VMSAFE_MEM;
1645 
1646 		dlcapabsetqid(&(zcopy.zerocopy_mid), dsp->ds_rq);
1647 		bcopy(&zcopy, ptr, sizeof (dl_capab_zerocopy_t));
1648 		ptr += sizeof (dl_capab_zerocopy_t);
1649 	}
1650 
1651 	/*
1652 	 * Direct capability negotiation interface between IP and DLD.
1653 	 * Refer to dld.h for details.
1654 	 */
1655 	if (dld_capable) {
1656 		dlsp = (dl_capability_sub_t *)ptr;
1657 		dlsp->dl_cap = DL_CAPAB_DLD;
1658 		dlsp->dl_length = sizeof (dl_capab_dld_t);
1659 		ptr += sizeof (dl_capability_sub_t);
1660 
1661 		bzero(&dld, sizeof (dl_capab_dld_t));
1662 		dld.dld_version = DLD_CURRENT_VERSION;
1663 		dld.dld_capab = (uintptr_t)dld_capab;
1664 		dld.dld_capab_handle = (uintptr_t)dsp;
1665 
1666 		dlcapabsetqid(&(dld.dld_mid), dsp->ds_rq);
1667 		bcopy(&dld, ptr, sizeof (dl_capab_dld_t));
1668 		ptr += sizeof (dl_capab_dld_t);
1669 	}
1670 
1671 	ASSERT(ptr == mp->b_rptr + sizeof (dl_capability_ack_t) + subsize);
1672 	qreply(q, mp);
1673 }
1674 
1675 /*
1676  * Disable any enabled capabilities.
1677  */
1678 void
1679 dld_capabilities_disable(dld_str_t *dsp)
1680 {
1681 	if (dsp->ds_polling)
1682 		(void) dld_capab_poll_disable(dsp, NULL);
1683 }
1684