xref: /illumos-gate/usr/src/uts/common/io/ib/clients/rds/rdsddi.c (revision 04e56356520b98d5a93c496b10f02530bb6647e0)
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 #include <sys/types.h>
27 #include <sys/conf.h>
28 #include <sys/modctl.h>
29 #include <sys/stat.h>
30 #include <sys/stream.h>
31 #include <sys/strsun.h>
32 #include <sys/ddi.h>
33 #include <sys/sunddi.h>
34 #include <sys/priv_names.h>
35 #include <inet/common.h>
36 
37 #define	_SUN_TPI_VERSION 2
38 #include <sys/tihdr.h>
39 #include <sys/timod.h>
40 #include <sys/tiuser.h>
41 #include <sys/suntpi.h>
42 #include <inet/common.h>
43 #include <inet/ip.h>
44 #include <inet/mi.h>
45 #include <inet/proto_set.h>
46 #include <sys/ib/clients/rds/rds.h>
47 #include <sys/policy.h>
48 #include <inet/ipclassifier.h>
49 #include <sys/ib/clients/rds/rds_kstat.h>
50 #include "sys/random.h"
51 #include <sys/ib/clients/rds/rds_transport.h>
52 #include <sys/ib/ibtl/ibti.h>
53 
54 
55 #define	RDS_NAME	"rds"
56 #define	RDS_STRTAB	rdsinfo
57 #define	RDS_DEVDESC	"RDS STREAMS driver"
58 #define	RDS_DEVMINOR	0
59 #define	RDS_DEVMTFLAGS D_MP | D_SYNCSTR
60 #define	RDS_DEFAULT_PRIV_MODE	0666
61 
62 #define	rds_smallest_port	1
63 #define	rds_largest_port	65535
64 
65 #define	RDS_RECV_HIWATER	(56 * 1024)
66 #define	RDS_RECV_LOWATER	128
67 #define	RDS_XMIT_HIWATER	(56 * 1024)
68 #define	RDS_XMIT_LOWATER	1024
69 
70 #define	RDS_DPRINTF2	0 &&
71 #define	LABEL	"RDS"
72 
73 typedef struct rdsahdr_s {
74 	in_port_t	uha_src_port;	/* Source port */
75 	in_port_t	uha_dst_port;	/* Destination port */
76 } rdsha_t;
77 
78 #define	RDSH_SIZE	4
79 
80 int rds_recv_hiwat = RDS_RECV_HIWATER;
81 int rds_recv_lowat = RDS_RECV_LOWATER;
82 int rds_xmit_hiwat = RDS_XMIT_HIWATER;
83 int rds_xmit_lowat = RDS_XMIT_LOWATER;
84 
85 int rdsdebug;
86 
87 static dev_info_t *rds_dev_info;
88 
89 /* Hint not protected by any lock */
90 static	in_port_t	rds_next_port_to_try;
91 
92 ldi_ident_t rds_li;
93 static int loopmax = rds_largest_port - rds_smallest_port + 1;
94 
95 /* global configuration variables */
96 uint_t  UserBufferSize;
97 uint_t  rds_rx_pkts_pending_hwm;
98 
99 extern void rds_ioctl(queue_t *, mblk_t *);
100 extern void rds_ioctl_copyin_done(queue_t *q, mblk_t *mp);
101 
102 int rds_open_transport_driver();
103 int rds_close_transport_driver();
104 
105 #define	RDS_CURRENT_PORT_QUOTA()					\
106 	(rds_rx_pkts_pending_hwm/RDS_GET_NPORT())
107 
108 krwlock_t	rds_transport_lock;
109 ldi_handle_t	rds_transport_handle = NULL;
110 rds_transport_ops_t *rds_transport_ops = NULL;
111 
112 static int
113 rds_attach(dev_info_t *devi, ddi_attach_cmd_t cmd)
114 {
115 	int	ret;
116 
117 	if (cmd != DDI_ATTACH)
118 		return (DDI_FAILURE);
119 
120 	rds_dev_info = devi;
121 
122 	ret = ddi_create_minor_node(devi, RDS_NAME, S_IFCHR,
123 	    RDS_DEVMINOR, DDI_PSEUDO, 0);
124 	if (ret != DDI_SUCCESS) {
125 		return (ret);
126 	}
127 
128 	return (DDI_SUCCESS);
129 }
130 
131 static int
132 rds_detach(dev_info_t *devi, ddi_detach_cmd_t cmd)
133 {
134 	if (cmd != DDI_DETACH)
135 		return (DDI_FAILURE);
136 
137 	ASSERT(devi == rds_dev_info);
138 
139 	ddi_remove_minor_node(devi, NULL);
140 
141 	return (DDI_SUCCESS);
142 }
143 
144 /* ARGSUSED */
145 static int
146 rds_info(dev_info_t *dip, ddi_info_cmd_t cmd, void *arg, void **result)
147 {
148 	int error = DDI_FAILURE;
149 
150 	switch (cmd) {
151 	case DDI_INFO_DEVT2DEVINFO:
152 		if (rds_dev_info != NULL) {
153 			*result = (void *)rds_dev_info;
154 			error = DDI_SUCCESS;
155 		}
156 		break;
157 
158 	case DDI_INFO_DEVT2INSTANCE:
159 		*result = NULL;
160 		error = DDI_SUCCESS;
161 		break;
162 
163 	default:
164 		break;
165 	}
166 
167 	return (error);
168 }
169 
170 
171 /*ARGSUSED*/
172 static int
173 rds_open(queue_t *q, dev_t *devp, int flag, int sflag, cred_t *credp)
174 {
175 	rds_t	*rds;
176 	int	ret;
177 
178 	if (is_system_labeled()) {
179 		/*
180 		 * RDS socket is not supported on labeled systems
181 		 */
182 		return (ESOCKTNOSUPPORT);
183 	}
184 
185 	/* Open the transport driver if IB HW is present */
186 	rw_enter(&rds_transport_lock, RW_READER);
187 	if (rds_transport_handle == NULL) {
188 		rw_exit(&rds_transport_lock);
189 		ret = rds_open_transport_driver();
190 		rw_enter(&rds_transport_lock, RW_READER);
191 
192 		if (ret != 0) {
193 			/* Transport driver failed to load */
194 			rw_exit(&rds_transport_lock);
195 			return (ret);
196 		}
197 	}
198 	rw_exit(&rds_transport_lock);
199 
200 	if (sflag == MODOPEN) {
201 		return (EINVAL);
202 	}
203 
204 	/* Reopen not supported */
205 	if (q->q_ptr != NULL) {
206 		dprint(2, ("%s: Reopen is not supported: %p", LABEL, q->q_ptr));
207 		return (0);
208 	}
209 
210 	rds = rds_create(q, credp);
211 	if (rds == NULL) {
212 		dprint(2, ("%s: rds_create failed", LABEL));
213 		return (0);
214 	}
215 
216 	q->q_ptr = WR(q)->q_ptr = rds;
217 	rds->rds_state = TS_UNBND;
218 	rds->rds_family = AF_INET_OFFLOAD;
219 
220 	q->q_hiwat = rds_recv_hiwat;
221 	q->q_lowat = rds_recv_lowat;
222 
223 	qprocson(q);
224 
225 	WR(q)->q_hiwat = rds_xmit_hiwat;
226 	WR(q)->q_lowat = rds_xmit_lowat;
227 
228 	/* Set the Stream head watermarks */
229 	(void) proto_set_rx_hiwat(q, NULL, rds_recv_hiwat);
230 	(void) proto_set_rx_lowat(q, NULL, rds_recv_lowat);
231 
232 	return (0);
233 }
234 
235 /* ARGSUSED */
236 static int
237 rds_close(queue_t *q, int flags __unused, cred_t *credp __unused)
238 {
239 	rds_t *rdsp = (rds_t *)q->q_ptr;
240 
241 	qprocsoff(q);
242 
243 	/*
244 	 * NPORT should be decremented only if this socket was previously
245 	 * bound to an RDS port.
246 	 */
247 	if (rdsp->rds_state >= TS_IDLE) {
248 		RDS_DECR_NPORT();
249 		RDS_SET_PORT_QUOTA(RDS_CURRENT_PORT_QUOTA());
250 		rds_transport_ops->
251 		    rds_transport_resume_port(ntohs(rdsp->rds_port));
252 	}
253 
254 	/* close the transport driver if this is the last socket */
255 	if (RDS_GET_NPORT() == 1) {
256 		(void) rds_close_transport_driver();
257 	}
258 
259 	/*
260 	 * We set the flags without holding a lock as this is
261 	 * just a hint for the fanout lookup to skip this rds.
262 	 * We dont free the struct until it's out of the hash and
263 	 * the ref count goes down.
264 	 */
265 	rdsp->rds_flags |= RDS_CLOSING;
266 	rds_bind_hash_remove(rdsp, B_FALSE);
267 	mutex_enter(&rdsp->rds_lock);
268 	ASSERT(rdsp->rds_refcnt > 0);
269 	if (rdsp->rds_refcnt != 1) {
270 		cv_wait(&rdsp->rds_refcv, &rdsp->rds_lock);
271 	}
272 	mutex_exit(&rdsp->rds_lock);
273 	RDS_DEC_REF_CNT(rdsp);
274 	RD(q)->q_ptr = NULL;
275 	WR(q)->q_ptr = NULL;
276 	return (0);
277 }
278 
279 /*
280  * Add a new message to the socket
281  */
282 int
283 rds_deliver_new_msg(mblk_t *mp, ipaddr_t local_addr, ipaddr_t rem_addr,
284     in_port_t local_port, in_port_t rem_port, zoneid_t zoneid)
285 {
286 	rds_t *rds;
287 	struct  T_unitdata_ind  *tudi;
288 	int	udi_size;	/* Size of T_unitdata_ind */
289 	mblk_t *mp1;
290 	sin_t	*sin;
291 	int error = 0;
292 
293 	local_port = htons(local_port);
294 	rem_port = htons(rem_port);
295 
296 	ASSERT(mp->b_datap->db_type == M_DATA);
297 	rds = rds_fanout(local_addr, rem_addr, local_port, rem_port, zoneid);
298 	if (rds == NULL) {
299 		dprint(2, ("%s: rds_fanout failed: (0x%x 0x%x %d %d)", LABEL,
300 		    local_addr, rem_addr, ntohs(local_port), ntohs(rem_port)));
301 		freemsg(mp);
302 		return (error);
303 	}
304 
305 	udi_size = sizeof (struct T_unitdata_ind) + sizeof (sin_t);
306 
307 	/* Allocate a message block for the T_UNITDATA_IND structure. */
308 	mp1 = allocb(udi_size, BPRI_MED);
309 	if (mp1 == NULL) {
310 		dprint(2, ("%s: allocb failed", LABEL));
311 		freemsg(mp);
312 		return (ENOMEM);
313 	}
314 
315 	mp1->b_cont = mp;
316 	mp = mp1;
317 	mp->b_datap->db_type = M_PROTO;
318 	tudi = (struct T_unitdata_ind *)(uintptr_t)mp->b_rptr;
319 	mp->b_wptr = (uchar_t *)tudi + udi_size;
320 	tudi->PRIM_type = T_UNITDATA_IND;
321 	tudi->SRC_length = sizeof (sin_t);
322 	tudi->SRC_offset = sizeof (struct T_unitdata_ind);
323 	tudi->OPT_offset = sizeof (struct T_unitdata_ind) + sizeof (sin_t);
324 	udi_size -= (sizeof (struct T_unitdata_ind) + sizeof (sin_t));
325 	tudi->OPT_length = udi_size;
326 	sin = (sin_t *)&tudi[1];
327 	sin->sin_addr.s_addr = rem_addr;
328 	sin->sin_port = ntohs(rem_port);
329 	sin->sin_family = rds->rds_family;
330 	*(uint32_t *)(uintptr_t)&sin->sin_zero[0] = 0;
331 	*(uint32_t *)(uintptr_t)&sin->sin_zero[4] = 0;
332 
333 	putnext(rds->rds_ulpd, mp);
334 
335 	/* check port quota */
336 	if (RDS_GET_RXPKTS_PEND() > rds_rx_pkts_pending_hwm) {
337 		ulong_t current_port_quota = RDS_GET_PORT_QUOTA();
338 		if (rds->rds_port_quota > current_port_quota) {
339 			/* this may result in stalling the port */
340 			rds->rds_port_quota = current_port_quota;
341 			(void) proto_set_rx_hiwat(rds->rds_ulpd, NULL,
342 			    rds->rds_port_quota * UserBufferSize);
343 			RDS_INCR_PORT_QUOTA_ADJUSTED();
344 		}
345 	}
346 
347 	/*
348 	 * canputnext() check is done after putnext as the protocol does
349 	 * not allow dropping any received packet.
350 	 */
351 	if (!canputnext(rds->rds_ulpd)) {
352 		error = ENOSPC;
353 	}
354 
355 	RDS_DEC_REF_CNT(rds);
356 	return (error);
357 }
358 
359 
360 /* Default structure copied into T_INFO_ACK messages */
361 static struct T_info_ack rds_g_t_info_ack_ipv4 = {
362 	T_INFO_ACK,
363 	65535,	/* TSDU_size. Excl. headers */
364 	T_INVALID,	/* ETSU_size.  rds does not support expedited data. */
365 	T_INVALID,	/* CDATA_size. rds does not support connect data. */
366 	T_INVALID,	/* DDATA_size. rds does not support disconnect data. */
367 	sizeof (sin_t),	/* ADDR_size. */
368 	0,		/* OPT_size - not initialized here */
369 	65535,		/* TIDU_size.  Excl. headers */
370 	T_CLTS,		/* SERV_type.  rds supports connection-less. */
371 	TS_UNBND,	/* CURRENT_state.  This is set from rds_state. */
372 	(XPG4_1|SENDZERO) /* PROVIDER_flag */
373 };
374 
375 static in_port_t
376 rds_update_next_port(in_port_t port)
377 {
378 	(void) random_get_pseudo_bytes((uint8_t *)&port, sizeof (in_port_t));
379 	if (port < rds_smallest_port)
380 		port = rds_smallest_port;
381 	return (port);
382 }
383 
384 /* This routine creates a T_ERROR_ACK message and passes it upstream. */
385 static void
386 rds_err_ack(queue_t *q, mblk_t *mp, t_scalar_t t_error, int sys_error)
387 {
388 	if ((mp = mi_tpi_err_ack_alloc(mp, t_error, sys_error)) != NULL)
389 		qreply(q, mp);
390 }
391 
392 static void
393 rds_capability_req(queue_t *q, mblk_t *mp)
394 {
395 	t_uscalar_t	cap_bits1;
396 	struct T_capability_ack *tcap;
397 
398 	cap_bits1 =
399 	    ((struct T_capability_req *)(uintptr_t)mp->b_rptr)->CAP_bits1;
400 
401 	mp = tpi_ack_alloc(mp, sizeof (struct T_capability_ack),
402 	    mp->b_datap->db_type, T_CAPABILITY_ACK);
403 	if (mp == NULL)
404 		return;
405 	tcap = (struct T_capability_ack *)(uintptr_t)mp->b_rptr;
406 	tcap->CAP_bits1 = 0;
407 
408 	if (cap_bits1 & TC1_INFO) {
409 		tcap->CAP_bits1 |= TC1_INFO;
410 		*(&tcap->INFO_ack) = rds_g_t_info_ack_ipv4;
411 	}
412 
413 	qreply(q, mp);
414 }
415 
416 static void
417 rds_info_req(queue_t *q, mblk_t *omp)
418 {
419 	rds_t *rds = (rds_t *)q->q_ptr;
420 	struct T_info_ack *tap;
421 	mblk_t *mp;
422 
423 	/* Create a T_INFO_ACK message. */
424 	mp = tpi_ack_alloc(omp, sizeof (struct T_info_ack), M_PCPROTO,
425 	    T_INFO_ACK);
426 	if (mp == NULL)
427 		return;
428 	tap = (struct T_info_ack *)(uintptr_t)mp->b_rptr;
429 	*tap = rds_g_t_info_ack_ipv4;
430 	tap->CURRENT_state = rds->rds_state;
431 	tap->OPT_size = 128;
432 	qreply(q, mp);
433 }
434 
435 /*
436  * NO locking protection here as sockfs will only send down
437  * one bind operation at a time.
438  */
439 static void
440 rds_bind(queue_t *q, mblk_t *mp)
441 {
442 	sin_t		*sin;
443 	rds_t *rds;
444 	struct T_bind_req *tbr;
445 	in_port_t	port;	/* Host byte order */
446 	in_port_t	requested_port; /* Host byte order */
447 	struct T_bind_ack *tba;
448 	int		count;
449 	rds_bf_t	*rdsbf;
450 	in_port_t	lport;	/* Network byte order */
451 
452 	rds = (rds_t *)q->q_ptr;
453 	if (((uintptr_t)mp->b_wptr - (uintptr_t)mp->b_rptr) < sizeof (*tbr)) {
454 		rds_err_ack(q, mp, TPROTO, 0);
455 		return;
456 	}
457 
458 	/*
459 	 * We don't allow multiple binds
460 	 */
461 	if (rds->rds_state != TS_UNBND) {
462 		rds_err_ack(q, mp, TOUTSTATE, 0);
463 		return;
464 	}
465 
466 	tbr = (struct T_bind_req *)(uintptr_t)mp->b_rptr;
467 	switch (tbr->ADDR_length) {
468 	case sizeof (sin_t):    /* Complete IPv4 address */
469 		sin = (sin_t *)(uintptr_t)mi_offset_param(mp, tbr->ADDR_offset,
470 		    sizeof (sin_t));
471 		if (sin == NULL || !OK_32PTR((char *)sin)) {
472 			rds_err_ack(q, mp, TSYSERR, EINVAL);
473 			return;
474 		}
475 		if (rds->rds_family != AF_INET_OFFLOAD ||
476 		    sin->sin_family != AF_INET_OFFLOAD) {
477 			rds_err_ack(q, mp, TSYSERR, EAFNOSUPPORT);
478 			return;
479 		}
480 		if (sin->sin_addr.s_addr == INADDR_ANY) {
481 			rds_err_ack(q, mp, TBADADDR, 0);
482 			return;
483 		}
484 
485 		/*
486 		 * verify that the address is hosted on IB
487 		 * only exception is the loopback address.
488 		 */
489 		if ((sin->sin_addr.s_addr != INADDR_LOOPBACK) &&
490 		    !rds_verify_bind_address(sin->sin_addr.s_addr)) {
491 			rds_err_ack(q, mp, TBADADDR, 0);
492 			return;
493 		}
494 
495 		port = ntohs(sin->sin_port);
496 		break;
497 	default:	/* Invalid request */
498 		rds_err_ack(q, mp, TBADADDR, 0);
499 		return;
500 	}
501 
502 	requested_port = port;
503 
504 	/*
505 	 * TPI only sends down T_BIND_REQ for AF_INET and AF_INET6
506 	 * since RDS socket is of type AF_INET_OFFLOAD a O_T_BIND_REQ
507 	 * will be sent down. Treat O_T_BIND_REQ as T_BIND_REQ
508 	 */
509 
510 	if (requested_port == 0) {
511 		/*
512 		 * If the application passed in zero for the port number, it
513 		 * doesn't care which port number we bind to. Get one in the
514 		 * valid range.
515 		 */
516 		port = rds_update_next_port(rds_next_port_to_try);
517 	}
518 
519 	ASSERT(port != 0);
520 	count = 0;
521 	for (;;) {
522 		rds_t		*rds1;
523 		ASSERT(sin->sin_addr.s_addr != INADDR_ANY);
524 		/*
525 		 * Walk through the list of rds streams bound to
526 		 * requested port with the same IP address.
527 		 */
528 		lport = htons(port);
529 		rdsbf = &rds_bind_fanout[RDS_BIND_HASH(lport)];
530 		mutex_enter(&rdsbf->rds_bf_lock);
531 		for (rds1 = rdsbf->rds_bf_rds; rds1 != NULL;
532 		    rds1 = rds1->rds_bind_hash) {
533 			if (lport != rds1->rds_port ||
534 			    rds1->rds_src != sin->sin_addr.s_addr ||
535 			    rds1->rds_zoneid != rds->rds_zoneid)
536 
537 				continue;
538 			break;
539 		}
540 
541 		if (rds1 == NULL) {
542 			/*
543 			 * No other stream has this IP address
544 			 * and port number. We can use it.
545 			 */
546 			break;
547 		}
548 		mutex_exit(&rdsbf->rds_bf_lock);
549 		if (requested_port != 0) {
550 			/*
551 			 * We get here only when requested port
552 			 * is bound (and only first  of the for()
553 			 * loop iteration).
554 			 *
555 			 * The semantics of this bind request
556 			 * require it to fail so we return from
557 			 * the routine (and exit the loop).
558 			 *
559 			 */
560 			rds_err_ack(q, mp, TADDRBUSY, 0);
561 			return;
562 		}
563 
564 		port = rds_update_next_port(port + 1);
565 
566 		if (++count >= loopmax) {
567 			/*
568 			 * We've tried every possible port number and
569 			 * there are none available, so send an error
570 			 * to the user.
571 			 */
572 			rds_err_ack(q, mp, TNOADDR, 0);
573 			return;
574 		}
575 	}
576 
577 	/*
578 	 * Copy the source address into our rds structure.
579 	 */
580 	rds->rds_src = sin->sin_addr.s_addr;
581 	rds->rds_port = lport;
582 
583 	/*
584 	 * reset the next port if we choose the port
585 	 */
586 	if (requested_port == 0) {
587 		rds_next_port_to_try = port + 1;
588 	}
589 
590 	rds->rds_state = TS_IDLE;
591 	rds_bind_hash_insert(rdsbf, rds);
592 	mutex_exit(&rdsbf->rds_bf_lock);
593 
594 	/* Reset the message type in preparation for shipping it back. */
595 	mp->b_datap->db_type = M_PCPROTO;
596 	tba = (struct T_bind_ack *)(uintptr_t)mp->b_rptr;
597 	tba->PRIM_type = T_BIND_ACK;
598 
599 	/* Increment the number of ports and set the port quota */
600 	RDS_INCR_NPORT();
601 	rds->rds_port_quota = RDS_CURRENT_PORT_QUOTA();
602 	RDS_SET_PORT_QUOTA(rds->rds_port_quota);
603 	(void) proto_set_rx_hiwat(RD(q), NULL,
604 	    rds->rds_port_quota * UserBufferSize);
605 
606 	qreply(q, mp);
607 }
608 
609 static void
610 rds_wput_other(queue_t *q, mblk_t *mp)
611 {
612 	uchar_t *rptr = mp->b_rptr;
613 	struct datab *db;
614 	cred_t *cr;
615 
616 	db = mp->b_datap;
617 	switch (db->db_type) {
618 	case M_DATA:
619 		/* Not connected */
620 		freemsg(mp);
621 		return;
622 	case M_PROTO:
623 	case M_PCPROTO:
624 		if ((uintptr_t)mp->b_wptr - (uintptr_t)rptr <
625 		    sizeof (t_scalar_t)) {
626 			freemsg(mp);
627 			return;
628 		}
629 		switch (((union T_primitives *)(uintptr_t)rptr)->type) {
630 		case T_CAPABILITY_REQ:
631 			rds_capability_req(q, mp);
632 			return;
633 
634 		case T_INFO_REQ:
635 			rds_info_req(q, mp);
636 			return;
637 		case O_T_BIND_REQ:
638 		case T_BIND_REQ:
639 			rds_bind(q, mp);
640 			return;
641 		case T_SVR4_OPTMGMT_REQ:
642 		case T_OPTMGMT_REQ:
643 			/*
644 			 * All Solaris components should pass a db_credp
645 			 * for this TPI message, hence we ASSERT.
646 			 * But in case there is some other M_PROTO that looks
647 			 * like a TPI message sent by some other kernel
648 			 * component, we check and return an error.
649 			 */
650 			cr = msg_getcred(mp, NULL);
651 			ASSERT(cr != NULL);
652 			if (cr == NULL) {
653 				rds_err_ack(q, mp, TSYSERR, EINVAL);
654 				return;
655 			}
656 			if (((union T_primitives *)(uintptr_t)rptr)->type ==
657 			    T_SVR4_OPTMGMT_REQ) {
658 				svr4_optcom_req(q, mp, cr, &rds_opt_obj);
659 			} else {
660 				tpi_optcom_req(q, mp, cr, &rds_opt_obj);
661 			}
662 			return;
663 		case T_CONN_REQ:
664 			/*
665 			 * We should not receive T_CONN_REQ as sockfs only
666 			 * sends down T_CONN_REQ if family == AF_INET/AF_INET6
667 			 * and type == SOCK_DGRAM/SOCK_RAW. For all others
668 			 * it simply calls soisconnected. see sotpi_connect()
669 			 * for details.
670 			 */
671 		/* FALLTHRU */
672 		default:
673 			cmn_err(CE_PANIC, "type %d \n",
674 			    ((union T_primitives *)(uintptr_t)rptr)->type);
675 		}
676 		break;
677 	case M_FLUSH:
678 		if (*rptr & FLUSHW)
679 			flushq(q, FLUSHDATA);
680 		break;
681 	case M_IOCTL:
682 		rds_ioctl(q, mp);
683 		break;
684 	case M_IOCDATA:
685 		/* IOCTL continuation following copyin or copyout. */
686 		if (mi_copy_state(q, mp, NULL) == -1) {
687 			/*
688 			 * The copy operation failed.  mi_copy_state already
689 			 * cleaned up, so we're out of here.
690 			 */
691 			return;
692 		}
693 		/*
694 		 * If we just completed a copy in, continue processing
695 		 * in rds_ioctl_copyin_done. If it was a copy out, we call
696 		 * mi_copyout again.  If there is nothing more to copy out,
697 		 * it will complete the IOCTL.
698 		 */
699 
700 		if (MI_COPY_DIRECTION(mp) == MI_COPY_IN)
701 			rds_ioctl_copyin_done(q, mp);
702 		else
703 			mi_copyout(q, mp);
704 		return;
705 
706 	default:
707 		cmn_err(CE_PANIC, "types %d \n", db->db_type);
708 	}
709 }
710 
711 static int
712 rds_wput(queue_t *q, mblk_t *mp)
713 {
714 	struct	datab	*db;
715 	uchar_t	*rptr = mp->b_rptr;
716 
717 	db = mp->b_datap;
718 	switch (db->db_type) {
719 	case M_PROTO:
720 	case M_PCPROTO:
721 		ASSERT(((uintptr_t)mp->b_wptr - (uintptr_t)rptr) <=
722 		    (uintptr_t)INT_MAX);
723 		if ((uintptr_t)mp->b_wptr - (uintptr_t)rptr >=
724 		    sizeof (struct T_unitdata_req)) {
725 			if (((union T_primitives *)(uintptr_t)rptr)->type
726 			    == T_UNITDATA_REQ) {
727 				/*
728 				 *  We should never come here for T_UNITDATA_REQ
729 				 */
730 				cmn_err(CE_PANIC, "rds_wput T_UNITDATA_REQ \n");
731 			}
732 		}
733 		/* FALLTHRU */
734 	default:
735 		rds_wput_other(q, mp);
736 		return (0);
737 	}
738 }
739 
740 static int
741 rds_wput_data(queue_t *q, mblk_t *mp, uio_t *uiop)
742 {
743 	uchar_t	*rptr = mp->b_rptr;
744 	rds_t	*rds;
745 	mblk_t	*mp1;
746 	sin_t	*sin;
747 	ipaddr_t dst;
748 	uint16_t port;
749 	int ret = 0;
750 
751 #define	tudr	((struct T_unitdata_req *)(uintptr_t)rptr)
752 
753 	rds = (rds_t *)q->q_ptr;
754 	/* Handle UNITDATA_REQ messages here */
755 	if (rds->rds_state == TS_UNBND) {
756 		/* If a port has not been bound to the stream, fail. */
757 		dprint(2, ("%s: socket is not bound to a port", LABEL));
758 		freemsg(mp);
759 		return (EPROTO);
760 	}
761 
762 	mp1 = mp->b_cont;
763 	mp->b_cont = NULL;
764 	if (mp1 == NULL) {
765 		dprint(2, ("%s: No message to send", LABEL));
766 		freemsg(mp);
767 		return (EPROTO);
768 	}
769 
770 	/*
771 	 * No options allowed
772 	 */
773 	if (tudr->OPT_length != 0) {
774 		ret = EINVAL;
775 		goto done;
776 	}
777 
778 	ASSERT(mp1->b_datap->db_ref == 1);
779 
780 	if ((rptr + tudr->DEST_offset + tudr->DEST_length) >
781 	    mp->b_wptr) {
782 		ret = EDESTADDRREQ;
783 		goto done;
784 	}
785 
786 	sin = (sin_t *)(uintptr_t)&rptr[tudr->DEST_offset];
787 	if (!OK_32PTR((char *)sin) || tudr->DEST_length !=
788 	    sizeof (sin_t) || sin->sin_family != AF_INET_OFFLOAD) {
789 		ret = EDESTADDRREQ;
790 		goto done;
791 	}
792 	/* Extract port and ipaddr */
793 	port = sin->sin_port;
794 	dst = sin->sin_addr.s_addr;
795 
796 	if (port == 0 || dst == INADDR_ANY) {
797 		ret = EDESTADDRREQ;
798 		goto done;
799 	}
800 
801 	ASSERT(rds_transport_ops != NULL);
802 	ret = rds_transport_ops->rds_transport_sendmsg(uiop, rds->rds_src, dst,
803 	    ntohs(rds->rds_port), ntohs(port), rds->rds_zoneid);
804 	if (ret != 0) {
805 		if ((ret != ENOBUFS) && (ret != ENOMEM)) {
806 			/* ENOMEM is actually EWOULDBLOCK */
807 			dprint(2, ("%s: rds_sendmsg returned %d", LABEL, ret));
808 			goto done;
809 		}
810 	}
811 done:
812 	freemsg(mp1);
813 	freemsg(mp);
814 	return (ret);
815 }
816 
817 /*
818  * Make sure we dont return EINVAL and EWOULDBLOCK as it has
819  * special meanings for the synchronous streams (rwnext()).
820  * We should return ENOMEM which is changed to EWOULDBLOCK by kstrputmsg()
821  */
822 static int
823 rds_wrw(queue_t *q, struiod_t *dp)
824 {
825 	mblk_t  *mp = dp->d_mp;
826 	int error = 0;
827 	struct  datab   *db;
828 	uchar_t *rptr;
829 
830 	db = mp->b_datap;
831 	rptr = mp->b_rptr;
832 	switch (db->db_type) {
833 	case M_PROTO:
834 	case M_PCPROTO:
835 		ASSERT(((uintptr_t)mp->b_wptr - (uintptr_t)rptr) <=
836 		    (uintptr_t)INT_MAX);
837 		if ((uintptr_t)mp->b_wptr - (uintptr_t)rptr >=
838 		    sizeof (struct T_unitdata_req)) {
839 			/* Detect valid T_UNITDATA_REQ here */
840 			if (((union T_primitives *)(uintptr_t)rptr)->type
841 			    == T_UNITDATA_REQ)
842 			break;
843 		}
844 		/* FALLTHRU */
845 	default:
846 
847 		if (isuioq(q) && (error = struioget(q, mp, dp, 0))) {
848 		/*
849 		 * Uio error of some sort, so just return the error.
850 		 */
851 			goto done;
852 		}
853 		dp->d_mp = 0;
854 		rds_wput_other(q, mp);
855 		return (0);
856 	}
857 
858 	dp->d_mp = 0;
859 	error = rds_wput_data(q, mp, &dp->d_uio);
860 done:
861 	if (error == EWOULDBLOCK || error == EINVAL)
862 		error = EIO;
863 
864 	return (error);
865 }
866 
867 static void
868 rds_rsrv(queue_t *q)
869 {
870 	rds_t	*rds = (rds_t *)q->q_ptr;
871 	ulong_t current_port_quota;
872 
873 	/* update the port quota to the current level */
874 	current_port_quota = RDS_GET_PORT_QUOTA();
875 	if (rds->rds_port_quota != current_port_quota) {
876 		rds->rds_port_quota = current_port_quota;
877 		(void) proto_set_rx_hiwat(q, NULL,
878 		    rds->rds_port_quota * UserBufferSize);
879 	}
880 
881 	/* No more messages in the q, unstall the socket */
882 	rds_transport_ops->rds_transport_resume_port(ntohs(rds->rds_port));
883 }
884 
885 int
886 rds_close_transport_driver()
887 {
888 	ASSERT(rds_transport_ops != NULL);
889 
890 	rw_enter(&rds_transport_lock, RW_WRITER);
891 	if (rds_transport_handle != NULL) {
892 		rds_transport_ops->rds_transport_close_ib();
893 		(void) ldi_close(rds_transport_handle, FNDELAY, kcred);
894 		rds_transport_handle = NULL;
895 	}
896 	rw_exit(&rds_transport_lock);
897 
898 	return (0);
899 }
900 
901 
902 int
903 rds_open_transport_driver()
904 {
905 	int ret = 0;
906 
907 	rw_enter(&rds_transport_lock, RW_WRITER);
908 	if (rds_transport_handle != NULL) {
909 		/*
910 		 * Someone beat us to it.
911 		 */
912 		goto done;
913 	}
914 
915 	if (ibt_hw_is_present() == 0) {
916 		ret = ENODEV;
917 		goto done;
918 	}
919 
920 	if (rds_li == NULL) {
921 		ret = EPROTONOSUPPORT;
922 		goto done;
923 	}
924 
925 	ret = ldi_open_by_name("/devices/ib/rdsib@0:rdsib",
926 	    FREAD | FWRITE, kcred, &rds_transport_handle, rds_li);
927 	if (ret != 0) {
928 		ret = EPROTONOSUPPORT;
929 		rds_transport_handle = NULL;
930 		goto done;
931 	}
932 
933 	ret = rds_transport_ops->rds_transport_open_ib();
934 	if (ret != 0) {
935 		(void) ldi_close(rds_transport_handle, FNDELAY, kcred);
936 		rds_transport_handle = NULL;
937 	}
938 done:
939 	rw_exit(&rds_transport_lock);
940 	return (ret);
941 }
942 
943 static struct module_info info = {
944 	0, "rds", 1, INFPSZ, 65536, 1024
945 };
946 
947 static struct qinit rinit = {
948 	NULL, (pfi_t)rds_rsrv, rds_open, rds_close, NULL, &info
949 };
950 
951 static struct qinit winit = {
952 	(pfi_t)rds_wput, NULL, rds_open, rds_close, NULL, &info,
953 	NULL, rds_wrw, NULL, STRUIOT_STANDARD
954 };
955 
956 struct streamtab rdsinfo = {
957 	&rinit, &winit, NULL, NULL
958 };
959 
960 DDI_DEFINE_STREAM_OPS(rds_devops, nulldev, nulldev, rds_attach, rds_detach,
961     nulldev, rds_info, RDS_DEVMTFLAGS, &RDS_STRTAB, ddi_quiesce_not_supported);
962 
963 /*
964  * Module linkage information for the kernel.
965  */
966 static struct modldrv modldrv = {
967 	&mod_driverops,
968 	RDS_DEVDESC,
969 	&rds_devops
970 };
971 
972 static struct modlinkage modlinkage = {
973 	MODREV_1,
974 	&modldrv,
975 	NULL
976 };
977 
978 int
979 _init(void)
980 {
981 	int	ret;
982 
983 	rds_init();
984 
985 	ret = mod_install(&modlinkage);
986 	if (ret != 0)
987 		goto done;
988 	ret = ldi_ident_from_mod(&modlinkage, &rds_li);
989 	if (ret != 0)
990 		rds_li = NULL;
991 done:
992 	return (ret);
993 }
994 
995 int
996 _fini(void)
997 {
998 	int	ret;
999 
1000 	ret = mod_remove(&modlinkage);
1001 	if (ret != 0) {
1002 		return (ret);
1003 	}
1004 
1005 	rds_fini();
1006 
1007 	ldi_ident_release(rds_li);
1008 	return (0);
1009 }
1010 
1011 int
1012 _info(struct modinfo *modinfop)
1013 {
1014 	return (mod_info(&modlinkage, modinfop));
1015 }
1016