vmbus_chan.c revision 307463
11573Srgrimes/*-
21573Srgrimes * Copyright (c) 2009-2012,2016 Microsoft Corp.
31573Srgrimes * Copyright (c) 2012 NetApp Inc.
41573Srgrimes * Copyright (c) 2012 Citrix Inc.
51573Srgrimes * All rights reserved.
61573Srgrimes *
71573Srgrimes * Redistribution and use in source and binary forms, with or without
81573Srgrimes * modification, are permitted provided that the following conditions
91573Srgrimes * are met:
101573Srgrimes * 1. Redistributions of source code must retain the above copyright
111573Srgrimes *    notice unmodified, this list of conditions, and the following
121573Srgrimes *    disclaimer.
131573Srgrimes * 2. Redistributions in binary form must reproduce the above copyright
141573Srgrimes *    notice, this list of conditions and the following disclaimer in the
151573Srgrimes *    documentation and/or other materials provided with the distribution.
161573Srgrimes *
171573Srgrimes * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
181573Srgrimes * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
191573Srgrimes * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
201573Srgrimes * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
211573Srgrimes * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
221573Srgrimes * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
231573Srgrimes * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
241573Srgrimes * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
251573Srgrimes * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
261573Srgrimes * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
271573Srgrimes */
281573Srgrimes
291573Srgrimes#include <sys/cdefs.h>
301573Srgrimes__FBSDID("$FreeBSD: stable/11/sys/dev/hyperv/vmbus/vmbus_chan.c 307463 2016-10-17 03:29:31Z sephe $");
311573Srgrimes
3255837Sjasone#include <sys/param.h>
3355837Sjasone#include <sys/kernel.h>
341573Srgrimes#include <sys/malloc.h>
351573Srgrimes#include <sys/systm.h>
361573Srgrimes#include <sys/mbuf.h>
371573Srgrimes#include <sys/lock.h>
381573Srgrimes#include <sys/mutex.h>
391573Srgrimes#include <sys/sysctl.h>
401573Srgrimes
411573Srgrimes#include <machine/atomic.h>
421573Srgrimes#include <machine/bus.h>
431573Srgrimes
441573Srgrimes#include <vm/vm.h>
451573Srgrimes#include <vm/vm_param.h>
461573Srgrimes#include <vm/pmap.h>
4755837Sjasone
481573Srgrimes#include <dev/hyperv/include/hyperv_busdma.h>
4955837Sjasone#include <dev/hyperv/vmbus/hyperv_var.h>
501573Srgrimes#include <dev/hyperv/vmbus/vmbus_reg.h>
511573Srgrimes#include <dev/hyperv/vmbus/vmbus_var.h>
521573Srgrimes#include <dev/hyperv/vmbus/vmbus_brvar.h>
531573Srgrimes#include <dev/hyperv/vmbus/vmbus_chanvar.h>
541573Srgrimes
551573Srgrimesstatic void	vmbus_chan_update_evtflagcnt(struct vmbus_softc *,
561573Srgrimes		    const struct vmbus_channel *);
5755837Sjasone
5855837Sjasonestatic void	vmbus_chan_task(void *, int);
5955837Sjasonestatic void	vmbus_chan_task_nobatch(void *, int);
60static void	vmbus_chan_detach_task(void *, int);
61
62static void	vmbus_chan_msgproc_choffer(struct vmbus_softc *,
63		    const struct vmbus_message *);
64static void	vmbus_chan_msgproc_chrescind(struct vmbus_softc *,
65		    const struct vmbus_message *);
66
67/*
68 * Vmbus channel message processing.
69 */
70static const vmbus_chanmsg_proc_t
71vmbus_chan_msgprocs[VMBUS_CHANMSG_TYPE_MAX] = {
72	VMBUS_CHANMSG_PROC(CHOFFER,	vmbus_chan_msgproc_choffer),
73	VMBUS_CHANMSG_PROC(CHRESCIND,	vmbus_chan_msgproc_chrescind),
74
75	VMBUS_CHANMSG_PROC_WAKEUP(CHOPEN_RESP),
76	VMBUS_CHANMSG_PROC_WAKEUP(GPADL_CONNRESP),
77	VMBUS_CHANMSG_PROC_WAKEUP(GPADL_DISCONNRESP)
78};
79
80/*
81 * Notify host that there are data pending on our TX bufring.
82 */
83static __inline void
84vmbus_chan_signal_tx(const struct vmbus_channel *chan)
85{
86	atomic_set_long(chan->ch_evtflag, chan->ch_evtflag_mask);
87	if (chan->ch_txflags & VMBUS_CHAN_TXF_HASMNF)
88		atomic_set_int(chan->ch_montrig, chan->ch_montrig_mask);
89	else
90		hypercall_signal_event(chan->ch_monprm_dma.hv_paddr);
91}
92
93static int
94vmbus_chan_sysctl_mnf(SYSCTL_HANDLER_ARGS)
95{
96	struct vmbus_channel *chan = arg1;
97	int mnf = 0;
98
99	if (chan->ch_txflags & VMBUS_CHAN_TXF_HASMNF)
100		mnf = 1;
101	return sysctl_handle_int(oidp, &mnf, 0, req);
102}
103
104static void
105vmbus_chan_sysctl_create(struct vmbus_channel *chan)
106{
107	struct sysctl_oid *ch_tree, *chid_tree, *br_tree;
108	struct sysctl_ctx_list *ctx;
109	uint32_t ch_id;
110	char name[16];
111
112	/*
113	 * Add sysctl nodes related to this channel to this
114	 * channel's sysctl ctx, so that they can be destroyed
115	 * independently upon close of this channel, which can
116	 * happen even if the device is not detached.
117	 */
118	ctx = &chan->ch_sysctl_ctx;
119	sysctl_ctx_init(ctx);
120
121	/*
122	 * Create dev.NAME.UNIT.channel tree.
123	 */
124	ch_tree = SYSCTL_ADD_NODE(ctx,
125	    SYSCTL_CHILDREN(device_get_sysctl_tree(chan->ch_dev)),
126	    OID_AUTO, "channel", CTLFLAG_RD | CTLFLAG_MPSAFE, 0, "");
127	if (ch_tree == NULL)
128		return;
129
130	/*
131	 * Create dev.NAME.UNIT.channel.CHANID tree.
132	 */
133	if (VMBUS_CHAN_ISPRIMARY(chan))
134		ch_id = chan->ch_id;
135	else
136		ch_id = chan->ch_prichan->ch_id;
137	snprintf(name, sizeof(name), "%d", ch_id);
138	chid_tree = SYSCTL_ADD_NODE(ctx, SYSCTL_CHILDREN(ch_tree),
139	    OID_AUTO, name, CTLFLAG_RD | CTLFLAG_MPSAFE, 0, "");
140	if (chid_tree == NULL)
141		return;
142
143	if (!VMBUS_CHAN_ISPRIMARY(chan)) {
144		/*
145		 * Create dev.NAME.UNIT.channel.CHANID.sub tree.
146		 */
147		ch_tree = SYSCTL_ADD_NODE(ctx, SYSCTL_CHILDREN(chid_tree),
148		    OID_AUTO, "sub", CTLFLAG_RD | CTLFLAG_MPSAFE, 0, "");
149		if (ch_tree == NULL)
150			return;
151
152		/*
153		 * Create dev.NAME.UNIT.channel.CHANID.sub.SUBIDX tree.
154		 *
155		 * NOTE:
156		 * chid_tree is changed to this new sysctl tree.
157		 */
158		snprintf(name, sizeof(name), "%d", chan->ch_subidx);
159		chid_tree = SYSCTL_ADD_NODE(ctx, SYSCTL_CHILDREN(ch_tree),
160		    OID_AUTO, name, CTLFLAG_RD | CTLFLAG_MPSAFE, 0, "");
161		if (chid_tree == NULL)
162			return;
163
164		SYSCTL_ADD_UINT(ctx, SYSCTL_CHILDREN(chid_tree), OID_AUTO,
165		    "chanid", CTLFLAG_RD, &chan->ch_id, 0, "channel id");
166	}
167
168	SYSCTL_ADD_UINT(ctx, SYSCTL_CHILDREN(chid_tree), OID_AUTO,
169	    "cpu", CTLFLAG_RD, &chan->ch_cpuid, 0, "owner CPU id");
170	SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(chid_tree), OID_AUTO,
171	    "mnf", CTLTYPE_INT | CTLFLAG_RD | CTLFLAG_MPSAFE,
172	    chan, 0, vmbus_chan_sysctl_mnf, "I",
173	    "has monitor notification facilities");
174
175	br_tree = SYSCTL_ADD_NODE(ctx, SYSCTL_CHILDREN(chid_tree), OID_AUTO,
176	    "br", CTLFLAG_RD | CTLFLAG_MPSAFE, 0, "");
177	if (br_tree != NULL) {
178		/*
179		 * Create sysctl tree for RX bufring.
180		 */
181		vmbus_br_sysctl_create(ctx, br_tree, &chan->ch_rxbr, "rx");
182		/*
183		 * Create sysctl tree for TX bufring.
184		 */
185		vmbus_br_sysctl_create(ctx, br_tree, &chan->ch_txbr, "tx");
186	}
187}
188
189int
190vmbus_chan_open(struct vmbus_channel *chan, int txbr_size, int rxbr_size,
191    const void *udata, int udlen, vmbus_chan_callback_t cb, void *cbarg)
192{
193	struct vmbus_softc *sc = chan->ch_vmbus;
194	const struct vmbus_chanmsg_chopen_resp *resp;
195	const struct vmbus_message *msg;
196	struct vmbus_chanmsg_chopen *req;
197	struct vmbus_msghc *mh;
198	uint32_t status;
199	int error;
200	uint8_t *br;
201
202	if (udlen > VMBUS_CHANMSG_CHOPEN_UDATA_SIZE) {
203		device_printf(sc->vmbus_dev,
204		    "invalid udata len %d for chan%u\n", udlen, chan->ch_id);
205		return EINVAL;
206	}
207	KASSERT((txbr_size & PAGE_MASK) == 0,
208	    ("send bufring size is not multiple page"));
209	KASSERT((rxbr_size & PAGE_MASK) == 0,
210	    ("recv bufring size is not multiple page"));
211
212	if (atomic_testandset_int(&chan->ch_stflags,
213	    VMBUS_CHAN_ST_OPENED_SHIFT))
214		panic("double-open chan%u", chan->ch_id);
215
216	chan->ch_cb = cb;
217	chan->ch_cbarg = cbarg;
218
219	vmbus_chan_update_evtflagcnt(sc, chan);
220
221	chan->ch_tq = VMBUS_PCPU_GET(chan->ch_vmbus, event_tq, chan->ch_cpuid);
222	if (chan->ch_flags & VMBUS_CHAN_FLAG_BATCHREAD)
223		TASK_INIT(&chan->ch_task, 0, vmbus_chan_task, chan);
224	else
225		TASK_INIT(&chan->ch_task, 0, vmbus_chan_task_nobatch, chan);
226
227	/*
228	 * Allocate the TX+RX bufrings.
229	 * XXX should use ch_dev dtag
230	 */
231	br = hyperv_dmamem_alloc(bus_get_dma_tag(sc->vmbus_dev),
232	    PAGE_SIZE, 0, txbr_size + rxbr_size, &chan->ch_bufring_dma,
233	    BUS_DMA_WAITOK | BUS_DMA_ZERO);
234	if (br == NULL) {
235		device_printf(sc->vmbus_dev, "bufring allocation failed\n");
236		error = ENOMEM;
237		goto failed;
238	}
239	chan->ch_bufring = br;
240
241	/* TX bufring comes first */
242	hv_vmbus_ring_buffer_init(&chan->ch_txbr, br, txbr_size);
243	/* RX bufring immediately follows TX bufring */
244	hv_vmbus_ring_buffer_init(&chan->ch_rxbr, br + txbr_size, rxbr_size);
245
246	/* Create sysctl tree for this channel */
247	vmbus_chan_sysctl_create(chan);
248
249	/*
250	 * Connect the bufrings, both RX and TX, to this channel.
251	 */
252	error = vmbus_chan_gpadl_connect(chan, chan->ch_bufring_dma.hv_paddr,
253	    txbr_size + rxbr_size, &chan->ch_bufring_gpadl);
254	if (error) {
255		device_printf(sc->vmbus_dev,
256		    "failed to connect bufring GPADL to chan%u\n", chan->ch_id);
257		goto failed;
258	}
259
260	/*
261	 * Open channel w/ the bufring GPADL on the target CPU.
262	 */
263	mh = vmbus_msghc_get(sc, sizeof(*req));
264	if (mh == NULL) {
265		device_printf(sc->vmbus_dev,
266		    "can not get msg hypercall for chopen(chan%u)\n",
267		    chan->ch_id);
268		error = ENXIO;
269		goto failed;
270	}
271
272	req = vmbus_msghc_dataptr(mh);
273	req->chm_hdr.chm_type = VMBUS_CHANMSG_TYPE_CHOPEN;
274	req->chm_chanid = chan->ch_id;
275	req->chm_openid = chan->ch_id;
276	req->chm_gpadl = chan->ch_bufring_gpadl;
277	req->chm_vcpuid = chan->ch_vcpuid;
278	req->chm_txbr_pgcnt = txbr_size >> PAGE_SHIFT;
279	if (udlen > 0)
280		memcpy(req->chm_udata, udata, udlen);
281
282	error = vmbus_msghc_exec(sc, mh);
283	if (error) {
284		device_printf(sc->vmbus_dev,
285		    "chopen(chan%u) msg hypercall exec failed: %d\n",
286		    chan->ch_id, error);
287		vmbus_msghc_put(sc, mh);
288		goto failed;
289	}
290
291	msg = vmbus_msghc_wait_result(sc, mh);
292	resp = (const struct vmbus_chanmsg_chopen_resp *)msg->msg_data;
293	status = resp->chm_status;
294
295	vmbus_msghc_put(sc, mh);
296
297	if (status == 0) {
298		if (bootverbose) {
299			device_printf(sc->vmbus_dev, "chan%u opened\n",
300			    chan->ch_id);
301		}
302		return 0;
303	}
304
305	device_printf(sc->vmbus_dev, "failed to open chan%u\n", chan->ch_id);
306	error = ENXIO;
307
308failed:
309	if (chan->ch_bufring_gpadl) {
310		vmbus_chan_gpadl_disconnect(chan, chan->ch_bufring_gpadl);
311		chan->ch_bufring_gpadl = 0;
312	}
313	if (chan->ch_bufring != NULL) {
314		hyperv_dmamem_free(&chan->ch_bufring_dma, chan->ch_bufring);
315		chan->ch_bufring = NULL;
316	}
317	atomic_clear_int(&chan->ch_stflags, VMBUS_CHAN_ST_OPENED);
318	return error;
319}
320
321int
322vmbus_chan_gpadl_connect(struct vmbus_channel *chan, bus_addr_t paddr,
323    int size, uint32_t *gpadl0)
324{
325	struct vmbus_softc *sc = chan->ch_vmbus;
326	struct vmbus_msghc *mh;
327	struct vmbus_chanmsg_gpadl_conn *req;
328	const struct vmbus_message *msg;
329	size_t reqsz;
330	uint32_t gpadl, status;
331	int page_count, range_len, i, cnt, error;
332	uint64_t page_id;
333
334	/*
335	 * Preliminary checks.
336	 */
337
338	KASSERT((size & PAGE_MASK) == 0,
339	    ("invalid GPA size %d, not multiple page size", size));
340	page_count = size >> PAGE_SHIFT;
341
342	KASSERT((paddr & PAGE_MASK) == 0,
343	    ("GPA is not page aligned %jx", (uintmax_t)paddr));
344	page_id = paddr >> PAGE_SHIFT;
345
346	range_len = __offsetof(struct vmbus_gpa_range, gpa_page[page_count]);
347	/*
348	 * We don't support multiple GPA ranges.
349	 */
350	if (range_len > UINT16_MAX) {
351		device_printf(sc->vmbus_dev, "GPA too large, %d pages\n",
352		    page_count);
353		return EOPNOTSUPP;
354	}
355
356	/*
357	 * Allocate GPADL id.
358	 */
359	gpadl = vmbus_gpadl_alloc(sc);
360	*gpadl0 = gpadl;
361
362	/*
363	 * Connect this GPADL to the target channel.
364	 *
365	 * NOTE:
366	 * Since each message can only hold small set of page
367	 * addresses, several messages may be required to
368	 * complete the connection.
369	 */
370	if (page_count > VMBUS_CHANMSG_GPADL_CONN_PGMAX)
371		cnt = VMBUS_CHANMSG_GPADL_CONN_PGMAX;
372	else
373		cnt = page_count;
374	page_count -= cnt;
375
376	reqsz = __offsetof(struct vmbus_chanmsg_gpadl_conn,
377	    chm_range.gpa_page[cnt]);
378	mh = vmbus_msghc_get(sc, reqsz);
379	if (mh == NULL) {
380		device_printf(sc->vmbus_dev,
381		    "can not get msg hypercall for gpadl->chan%u\n",
382		    chan->ch_id);
383		return EIO;
384	}
385
386	req = vmbus_msghc_dataptr(mh);
387	req->chm_hdr.chm_type = VMBUS_CHANMSG_TYPE_GPADL_CONN;
388	req->chm_chanid = chan->ch_id;
389	req->chm_gpadl = gpadl;
390	req->chm_range_len = range_len;
391	req->chm_range_cnt = 1;
392	req->chm_range.gpa_len = size;
393	req->chm_range.gpa_ofs = 0;
394	for (i = 0; i < cnt; ++i)
395		req->chm_range.gpa_page[i] = page_id++;
396
397	error = vmbus_msghc_exec(sc, mh);
398	if (error) {
399		device_printf(sc->vmbus_dev,
400		    "gpadl->chan%u msg hypercall exec failed: %d\n",
401		    chan->ch_id, error);
402		vmbus_msghc_put(sc, mh);
403		return error;
404	}
405
406	while (page_count > 0) {
407		struct vmbus_chanmsg_gpadl_subconn *subreq;
408
409		if (page_count > VMBUS_CHANMSG_GPADL_SUBCONN_PGMAX)
410			cnt = VMBUS_CHANMSG_GPADL_SUBCONN_PGMAX;
411		else
412			cnt = page_count;
413		page_count -= cnt;
414
415		reqsz = __offsetof(struct vmbus_chanmsg_gpadl_subconn,
416		    chm_gpa_page[cnt]);
417		vmbus_msghc_reset(mh, reqsz);
418
419		subreq = vmbus_msghc_dataptr(mh);
420		subreq->chm_hdr.chm_type = VMBUS_CHANMSG_TYPE_GPADL_SUBCONN;
421		subreq->chm_gpadl = gpadl;
422		for (i = 0; i < cnt; ++i)
423			subreq->chm_gpa_page[i] = page_id++;
424
425		vmbus_msghc_exec_noresult(mh);
426	}
427	KASSERT(page_count == 0, ("invalid page count %d", page_count));
428
429	msg = vmbus_msghc_wait_result(sc, mh);
430	status = ((const struct vmbus_chanmsg_gpadl_connresp *)
431	    msg->msg_data)->chm_status;
432
433	vmbus_msghc_put(sc, mh);
434
435	if (status != 0) {
436		device_printf(sc->vmbus_dev, "gpadl->chan%u failed: "
437		    "status %u\n", chan->ch_id, status);
438		return EIO;
439	} else {
440		if (bootverbose) {
441			device_printf(sc->vmbus_dev, "gpadl->chan%u "
442			    "succeeded\n", chan->ch_id);
443		}
444	}
445	return 0;
446}
447
448/*
449 * Disconnect the GPA from the target channel
450 */
451int
452vmbus_chan_gpadl_disconnect(struct vmbus_channel *chan, uint32_t gpadl)
453{
454	struct vmbus_softc *sc = chan->ch_vmbus;
455	struct vmbus_msghc *mh;
456	struct vmbus_chanmsg_gpadl_disconn *req;
457	int error;
458
459	mh = vmbus_msghc_get(sc, sizeof(*req));
460	if (mh == NULL) {
461		device_printf(sc->vmbus_dev,
462		    "can not get msg hypercall for gpa x->chan%u\n",
463		    chan->ch_id);
464		return EBUSY;
465	}
466
467	req = vmbus_msghc_dataptr(mh);
468	req->chm_hdr.chm_type = VMBUS_CHANMSG_TYPE_GPADL_DISCONN;
469	req->chm_chanid = chan->ch_id;
470	req->chm_gpadl = gpadl;
471
472	error = vmbus_msghc_exec(sc, mh);
473	if (error) {
474		device_printf(sc->vmbus_dev,
475		    "gpa x->chan%u msg hypercall exec failed: %d\n",
476		    chan->ch_id, error);
477		vmbus_msghc_put(sc, mh);
478		return error;
479	}
480
481	vmbus_msghc_wait_result(sc, mh);
482	/* Discard result; no useful information */
483	vmbus_msghc_put(sc, mh);
484
485	return 0;
486}
487
488static void
489vmbus_chan_close_internal(struct vmbus_channel *chan)
490{
491	struct vmbus_softc *sc = chan->ch_vmbus;
492	struct vmbus_msghc *mh;
493	struct vmbus_chanmsg_chclose *req;
494	struct taskqueue *tq = chan->ch_tq;
495	int error;
496
497	/* TODO: stringent check */
498	atomic_clear_int(&chan->ch_stflags, VMBUS_CHAN_ST_OPENED);
499
500	/*
501	 * Free this channel's sysctl tree attached to its device's
502	 * sysctl tree.
503	 */
504	sysctl_ctx_free(&chan->ch_sysctl_ctx);
505
506	/*
507	 * Set ch_tq to NULL to avoid more requests be scheduled.
508	 * XXX pretty broken; need rework.
509	 */
510	chan->ch_tq = NULL;
511	taskqueue_drain(tq, &chan->ch_task);
512	chan->ch_cb = NULL;
513
514	/*
515	 * Close this channel.
516	 */
517	mh = vmbus_msghc_get(sc, sizeof(*req));
518	if (mh == NULL) {
519		device_printf(sc->vmbus_dev,
520		    "can not get msg hypercall for chclose(chan%u)\n",
521		    chan->ch_id);
522		return;
523	}
524
525	req = vmbus_msghc_dataptr(mh);
526	req->chm_hdr.chm_type = VMBUS_CHANMSG_TYPE_CHCLOSE;
527	req->chm_chanid = chan->ch_id;
528
529	error = vmbus_msghc_exec_noresult(mh);
530	vmbus_msghc_put(sc, mh);
531
532	if (error) {
533		device_printf(sc->vmbus_dev,
534		    "chclose(chan%u) msg hypercall exec failed: %d\n",
535		    chan->ch_id, error);
536		return;
537	} else if (bootverbose) {
538		device_printf(sc->vmbus_dev, "close chan%u\n", chan->ch_id);
539	}
540
541	/*
542	 * Disconnect the TX+RX bufrings from this channel.
543	 */
544	if (chan->ch_bufring_gpadl) {
545		vmbus_chan_gpadl_disconnect(chan, chan->ch_bufring_gpadl);
546		chan->ch_bufring_gpadl = 0;
547	}
548
549	/*
550	 * Destroy the TX+RX bufrings.
551	 */
552	hv_ring_buffer_cleanup(&chan->ch_txbr);
553	hv_ring_buffer_cleanup(&chan->ch_rxbr);
554	if (chan->ch_bufring != NULL) {
555		hyperv_dmamem_free(&chan->ch_bufring_dma, chan->ch_bufring);
556		chan->ch_bufring = NULL;
557	}
558}
559
560/*
561 * Caller should make sure that all sub-channels have
562 * been added to 'chan' and all to-be-closed channels
563 * are not being opened.
564 */
565void
566vmbus_chan_close(struct vmbus_channel *chan)
567{
568	int subchan_cnt;
569
570	if (!VMBUS_CHAN_ISPRIMARY(chan)) {
571		/*
572		 * Sub-channel is closed when its primary channel
573		 * is closed; done.
574		 */
575		return;
576	}
577
578	/*
579	 * Close all sub-channels, if any.
580	 */
581	subchan_cnt = chan->ch_subchan_cnt;
582	if (subchan_cnt > 0) {
583		struct vmbus_channel **subchan;
584		int i;
585
586		subchan = vmbus_subchan_get(chan, subchan_cnt);
587		for (i = 0; i < subchan_cnt; ++i)
588			vmbus_chan_close_internal(subchan[i]);
589		vmbus_subchan_rel(subchan, subchan_cnt);
590	}
591
592	/* Then close the primary channel. */
593	vmbus_chan_close_internal(chan);
594}
595
596int
597vmbus_chan_send(struct vmbus_channel *chan, uint16_t type, uint16_t flags,
598    void *data, int dlen, uint64_t xactid)
599{
600	struct vmbus_chanpkt pkt;
601	int pktlen, pad_pktlen, hlen, error;
602	uint64_t pad = 0;
603	struct iovec iov[3];
604	boolean_t send_evt;
605
606	hlen = sizeof(pkt);
607	pktlen = hlen + dlen;
608	pad_pktlen = VMBUS_CHANPKT_TOTLEN(pktlen);
609
610	pkt.cp_hdr.cph_type = type;
611	pkt.cp_hdr.cph_flags = flags;
612	VMBUS_CHANPKT_SETLEN(pkt.cp_hdr.cph_hlen, hlen);
613	VMBUS_CHANPKT_SETLEN(pkt.cp_hdr.cph_tlen, pad_pktlen);
614	pkt.cp_hdr.cph_xactid = xactid;
615
616	iov[0].iov_base = &pkt;
617	iov[0].iov_len = hlen;
618	iov[1].iov_base = data;
619	iov[1].iov_len = dlen;
620	iov[2].iov_base = &pad;
621	iov[2].iov_len = pad_pktlen - pktlen;
622
623	error = hv_ring_buffer_write(&chan->ch_txbr, iov, 3, &send_evt);
624	if (!error && send_evt)
625		vmbus_chan_signal_tx(chan);
626	return error;
627}
628
629int
630vmbus_chan_send_sglist(struct vmbus_channel *chan,
631    struct vmbus_gpa sg[], int sglen, void *data, int dlen, uint64_t xactid)
632{
633	struct vmbus_chanpkt_sglist pkt;
634	int pktlen, pad_pktlen, hlen, error;
635	struct iovec iov[4];
636	boolean_t send_evt;
637	uint64_t pad = 0;
638
639	KASSERT(sglen < VMBUS_CHAN_SGLIST_MAX,
640	    ("invalid sglist len %d", sglen));
641
642	hlen = __offsetof(struct vmbus_chanpkt_sglist, cp_gpa[sglen]);
643	pktlen = hlen + dlen;
644	pad_pktlen = VMBUS_CHANPKT_TOTLEN(pktlen);
645
646	pkt.cp_hdr.cph_type = VMBUS_CHANPKT_TYPE_GPA;
647	pkt.cp_hdr.cph_flags = VMBUS_CHANPKT_FLAG_RC;
648	VMBUS_CHANPKT_SETLEN(pkt.cp_hdr.cph_hlen, hlen);
649	VMBUS_CHANPKT_SETLEN(pkt.cp_hdr.cph_tlen, pad_pktlen);
650	pkt.cp_hdr.cph_xactid = xactid;
651	pkt.cp_rsvd = 0;
652	pkt.cp_gpa_cnt = sglen;
653
654	iov[0].iov_base = &pkt;
655	iov[0].iov_len = sizeof(pkt);
656	iov[1].iov_base = sg;
657	iov[1].iov_len = sizeof(struct vmbus_gpa) * sglen;
658	iov[2].iov_base = data;
659	iov[2].iov_len = dlen;
660	iov[3].iov_base = &pad;
661	iov[3].iov_len = pad_pktlen - pktlen;
662
663	error = hv_ring_buffer_write(&chan->ch_txbr, iov, 4, &send_evt);
664	if (!error && send_evt)
665		vmbus_chan_signal_tx(chan);
666	return error;
667}
668
669int
670vmbus_chan_send_prplist(struct vmbus_channel *chan,
671    struct vmbus_gpa_range *prp, int prp_cnt, void *data, int dlen,
672    uint64_t xactid)
673{
674	struct vmbus_chanpkt_prplist pkt;
675	int pktlen, pad_pktlen, hlen, error;
676	struct iovec iov[4];
677	boolean_t send_evt;
678	uint64_t pad = 0;
679
680	KASSERT(prp_cnt < VMBUS_CHAN_PRPLIST_MAX,
681	    ("invalid prplist entry count %d", prp_cnt));
682
683	hlen = __offsetof(struct vmbus_chanpkt_prplist,
684	    cp_range[0].gpa_page[prp_cnt]);
685	pktlen = hlen + dlen;
686	pad_pktlen = VMBUS_CHANPKT_TOTLEN(pktlen);
687
688	pkt.cp_hdr.cph_type = VMBUS_CHANPKT_TYPE_GPA;
689	pkt.cp_hdr.cph_flags = VMBUS_CHANPKT_FLAG_RC;
690	VMBUS_CHANPKT_SETLEN(pkt.cp_hdr.cph_hlen, hlen);
691	VMBUS_CHANPKT_SETLEN(pkt.cp_hdr.cph_tlen, pad_pktlen);
692	pkt.cp_hdr.cph_xactid = xactid;
693	pkt.cp_rsvd = 0;
694	pkt.cp_range_cnt = 1;
695
696	iov[0].iov_base = &pkt;
697	iov[0].iov_len = sizeof(pkt);
698	iov[1].iov_base = prp;
699	iov[1].iov_len = __offsetof(struct vmbus_gpa_range, gpa_page[prp_cnt]);
700	iov[2].iov_base = data;
701	iov[2].iov_len = dlen;
702	iov[3].iov_base = &pad;
703	iov[3].iov_len = pad_pktlen - pktlen;
704
705	error = hv_ring_buffer_write(&chan->ch_txbr, iov, 4, &send_evt);
706	if (!error && send_evt)
707		vmbus_chan_signal_tx(chan);
708	return error;
709}
710
711int
712vmbus_chan_recv(struct vmbus_channel *chan, void *data, int *dlen0,
713    uint64_t *xactid)
714{
715	struct vmbus_chanpkt_hdr pkt;
716	int error, dlen, hlen;
717
718	error = hv_ring_buffer_peek(&chan->ch_rxbr, &pkt, sizeof(pkt));
719	if (error)
720		return error;
721
722	hlen = VMBUS_CHANPKT_GETLEN(pkt.cph_hlen);
723	dlen = VMBUS_CHANPKT_GETLEN(pkt.cph_tlen) - hlen;
724
725	if (*dlen0 < dlen) {
726		/* Return the size of this packet's data. */
727		*dlen0 = dlen;
728		return ENOBUFS;
729	}
730
731	*xactid = pkt.cph_xactid;
732	*dlen0 = dlen;
733
734	/* Skip packet header */
735	error = hv_ring_buffer_read(&chan->ch_rxbr, data, dlen, hlen);
736	KASSERT(!error, ("hv_ring_buffer_read failed"));
737
738	return 0;
739}
740
741int
742vmbus_chan_recv_pkt(struct vmbus_channel *chan,
743    struct vmbus_chanpkt_hdr *pkt0, int *pktlen0)
744{
745	struct vmbus_chanpkt_hdr pkt;
746	int error, pktlen;
747
748	error = hv_ring_buffer_peek(&chan->ch_rxbr, &pkt, sizeof(pkt));
749	if (error)
750		return error;
751
752	pktlen = VMBUS_CHANPKT_GETLEN(pkt.cph_tlen);
753	if (*pktlen0 < pktlen) {
754		/* Return the size of this packet. */
755		*pktlen0 = pktlen;
756		return ENOBUFS;
757	}
758	*pktlen0 = pktlen;
759
760	/* Include packet header */
761	error = hv_ring_buffer_read(&chan->ch_rxbr, pkt0, pktlen, 0);
762	KASSERT(!error, ("hv_ring_buffer_read failed"));
763
764	return 0;
765}
766
767static void
768vmbus_chan_task(void *xchan, int pending __unused)
769{
770	struct vmbus_channel *chan = xchan;
771	vmbus_chan_callback_t cb = chan->ch_cb;
772	void *cbarg = chan->ch_cbarg;
773
774	/*
775	 * Optimize host to guest signaling by ensuring:
776	 * 1. While reading the channel, we disable interrupts from
777	 *    host.
778	 * 2. Ensure that we process all posted messages from the host
779	 *    before returning from this callback.
780	 * 3. Once we return, enable signaling from the host. Once this
781	 *    state is set we check to see if additional packets are
782	 *    available to read. In this case we repeat the process.
783	 *
784	 * NOTE: Interrupt has been disabled in the ISR.
785	 */
786	for (;;) {
787		uint32_t left;
788
789		cb(chan, cbarg);
790
791		left = hv_ring_buffer_read_end(&chan->ch_rxbr);
792		if (left == 0) {
793			/* No more data in RX bufring; done */
794			break;
795		}
796		hv_ring_buffer_read_begin(&chan->ch_rxbr);
797	}
798}
799
800static void
801vmbus_chan_task_nobatch(void *xchan, int pending __unused)
802{
803	struct vmbus_channel *chan = xchan;
804
805	chan->ch_cb(chan, chan->ch_cbarg);
806}
807
808static __inline void
809vmbus_event_flags_proc(struct vmbus_softc *sc, volatile u_long *event_flags,
810    int flag_cnt)
811{
812	int f;
813
814	for (f = 0; f < flag_cnt; ++f) {
815		uint32_t chid_base;
816		u_long flags;
817		int chid_ofs;
818
819		if (event_flags[f] == 0)
820			continue;
821
822		flags = atomic_swap_long(&event_flags[f], 0);
823		chid_base = f << VMBUS_EVTFLAG_SHIFT;
824
825		while ((chid_ofs = ffsl(flags)) != 0) {
826			struct vmbus_channel *chan;
827
828			--chid_ofs; /* NOTE: ffsl is 1-based */
829			flags &= ~(1UL << chid_ofs);
830
831			chan = sc->vmbus_chmap[chid_base + chid_ofs];
832
833			/* if channel is closed or closing */
834			if (chan == NULL || chan->ch_tq == NULL)
835				continue;
836
837			if (chan->ch_flags & VMBUS_CHAN_FLAG_BATCHREAD)
838				hv_ring_buffer_read_begin(&chan->ch_rxbr);
839			taskqueue_enqueue(chan->ch_tq, &chan->ch_task);
840		}
841	}
842}
843
844void
845vmbus_event_proc(struct vmbus_softc *sc, int cpu)
846{
847	struct vmbus_evtflags *eventf;
848
849	/*
850	 * On Host with Win8 or above, the event page can be checked directly
851	 * to get the id of the channel that has the pending interrupt.
852	 */
853	eventf = VMBUS_PCPU_GET(sc, event_flags, cpu) + VMBUS_SINT_MESSAGE;
854	vmbus_event_flags_proc(sc, eventf->evt_flags,
855	    VMBUS_PCPU_GET(sc, event_flags_cnt, cpu));
856}
857
858void
859vmbus_event_proc_compat(struct vmbus_softc *sc, int cpu)
860{
861	struct vmbus_evtflags *eventf;
862
863	eventf = VMBUS_PCPU_GET(sc, event_flags, cpu) + VMBUS_SINT_MESSAGE;
864	if (atomic_testandclear_long(&eventf->evt_flags[0], 0)) {
865		vmbus_event_flags_proc(sc, sc->vmbus_rx_evtflags,
866		    VMBUS_CHAN_MAX_COMPAT >> VMBUS_EVTFLAG_SHIFT);
867	}
868}
869
870static void
871vmbus_chan_update_evtflagcnt(struct vmbus_softc *sc,
872    const struct vmbus_channel *chan)
873{
874	volatile int *flag_cnt_ptr;
875	int flag_cnt;
876
877	flag_cnt = (chan->ch_id / VMBUS_EVTFLAG_LEN) + 1;
878	flag_cnt_ptr = VMBUS_PCPU_PTR(sc, event_flags_cnt, chan->ch_cpuid);
879
880	for (;;) {
881		int old_flag_cnt;
882
883		old_flag_cnt = *flag_cnt_ptr;
884		if (old_flag_cnt >= flag_cnt)
885			break;
886		if (atomic_cmpset_int(flag_cnt_ptr, old_flag_cnt, flag_cnt)) {
887			if (bootverbose) {
888				device_printf(sc->vmbus_dev,
889				    "channel%u update cpu%d flag_cnt to %d\n",
890				    chan->ch_id, chan->ch_cpuid, flag_cnt);
891			}
892			break;
893		}
894	}
895}
896
897static struct vmbus_channel *
898vmbus_chan_alloc(struct vmbus_softc *sc)
899{
900	struct vmbus_channel *chan;
901
902	chan = malloc(sizeof(*chan), M_DEVBUF, M_WAITOK | M_ZERO);
903
904	chan->ch_monprm = hyperv_dmamem_alloc(bus_get_dma_tag(sc->vmbus_dev),
905	    HYPERCALL_PARAM_ALIGN, 0, sizeof(struct hyperv_mon_param),
906	    &chan->ch_monprm_dma, BUS_DMA_WAITOK | BUS_DMA_ZERO);
907	if (chan->ch_monprm == NULL) {
908		device_printf(sc->vmbus_dev, "monprm alloc failed\n");
909		free(chan, M_DEVBUF);
910		return NULL;
911	}
912
913	chan->ch_vmbus = sc;
914	mtx_init(&chan->ch_subchan_lock, "vmbus subchan", NULL, MTX_DEF);
915	TAILQ_INIT(&chan->ch_subchans);
916	TASK_INIT(&chan->ch_detach_task, 0, vmbus_chan_detach_task, chan);
917
918	return chan;
919}
920
921static void
922vmbus_chan_free(struct vmbus_channel *chan)
923{
924	/* TODO: assert sub-channel list is empty */
925	/* TODO: asset no longer on the primary channel's sub-channel list */
926	/* TODO: asset no longer on the vmbus channel list */
927	hyperv_dmamem_free(&chan->ch_monprm_dma, chan->ch_monprm);
928	mtx_destroy(&chan->ch_subchan_lock);
929	free(chan, M_DEVBUF);
930}
931
932static int
933vmbus_chan_add(struct vmbus_channel *newchan)
934{
935	struct vmbus_softc *sc = newchan->ch_vmbus;
936	struct vmbus_channel *prichan;
937
938	if (newchan->ch_id == 0) {
939		/*
940		 * XXX
941		 * Chan0 will neither be processed nor should be offered;
942		 * skip it.
943		 */
944		device_printf(sc->vmbus_dev, "got chan0 offer, discard\n");
945		return EINVAL;
946	} else if (newchan->ch_id >= VMBUS_CHAN_MAX) {
947		device_printf(sc->vmbus_dev, "invalid chan%u offer\n",
948		    newchan->ch_id);
949		return EINVAL;
950	}
951	sc->vmbus_chmap[newchan->ch_id] = newchan;
952
953	if (bootverbose) {
954		device_printf(sc->vmbus_dev, "chan%u subidx%u offer\n",
955		    newchan->ch_id, newchan->ch_subidx);
956	}
957
958	mtx_lock(&sc->vmbus_prichan_lock);
959	TAILQ_FOREACH(prichan, &sc->vmbus_prichans, ch_prilink) {
960		/*
961		 * Sub-channel will have the same type GUID and instance
962		 * GUID as its primary channel.
963		 */
964		if (memcmp(&prichan->ch_guid_type, &newchan->ch_guid_type,
965		    sizeof(struct hyperv_guid)) == 0 &&
966		    memcmp(&prichan->ch_guid_inst, &newchan->ch_guid_inst,
967		    sizeof(struct hyperv_guid)) == 0)
968			break;
969	}
970	if (VMBUS_CHAN_ISPRIMARY(newchan)) {
971		if (prichan == NULL) {
972			/* Install the new primary channel */
973			TAILQ_INSERT_TAIL(&sc->vmbus_prichans, newchan,
974			    ch_prilink);
975			mtx_unlock(&sc->vmbus_prichan_lock);
976			return 0;
977		} else {
978			mtx_unlock(&sc->vmbus_prichan_lock);
979			device_printf(sc->vmbus_dev, "duplicated primary "
980			    "chan%u\n", newchan->ch_id);
981			return EINVAL;
982		}
983	} else { /* Sub-channel */
984		if (prichan == NULL) {
985			mtx_unlock(&sc->vmbus_prichan_lock);
986			device_printf(sc->vmbus_dev, "no primary chan for "
987			    "chan%u\n", newchan->ch_id);
988			return EINVAL;
989		}
990		/*
991		 * Found the primary channel for this sub-channel and
992		 * move on.
993		 *
994		 * XXX refcnt prichan
995		 */
996	}
997	mtx_unlock(&sc->vmbus_prichan_lock);
998
999	/*
1000	 * This is a sub-channel; link it with the primary channel.
1001	 */
1002	KASSERT(!VMBUS_CHAN_ISPRIMARY(newchan),
1003	    ("new channel is not sub-channel"));
1004	KASSERT(prichan != NULL, ("no primary channel"));
1005
1006	newchan->ch_prichan = prichan;
1007	newchan->ch_dev = prichan->ch_dev;
1008
1009	mtx_lock(&prichan->ch_subchan_lock);
1010	TAILQ_INSERT_TAIL(&prichan->ch_subchans, newchan, ch_sublink);
1011	/*
1012	 * Bump up sub-channel count and notify anyone that is
1013	 * interested in this sub-channel, after this sub-channel
1014	 * is setup.
1015	 */
1016	prichan->ch_subchan_cnt++;
1017	mtx_unlock(&prichan->ch_subchan_lock);
1018	wakeup(prichan);
1019
1020	return 0;
1021}
1022
1023void
1024vmbus_chan_cpu_set(struct vmbus_channel *chan, int cpu)
1025{
1026	KASSERT(cpu >= 0 && cpu < mp_ncpus, ("invalid cpu %d", cpu));
1027
1028	if (chan->ch_vmbus->vmbus_version == VMBUS_VERSION_WS2008 ||
1029	    chan->ch_vmbus->vmbus_version == VMBUS_VERSION_WIN7) {
1030		/* Only cpu0 is supported */
1031		cpu = 0;
1032	}
1033
1034	chan->ch_cpuid = cpu;
1035	chan->ch_vcpuid = VMBUS_PCPU_GET(chan->ch_vmbus, vcpuid, cpu);
1036
1037	if (bootverbose) {
1038		printf("vmbus_chan%u: assigned to cpu%u [vcpu%u]\n",
1039		    chan->ch_id, chan->ch_cpuid, chan->ch_vcpuid);
1040	}
1041}
1042
1043void
1044vmbus_chan_cpu_rr(struct vmbus_channel *chan)
1045{
1046	static uint32_t vmbus_chan_nextcpu;
1047	int cpu;
1048
1049	cpu = atomic_fetchadd_int(&vmbus_chan_nextcpu, 1) % mp_ncpus;
1050	vmbus_chan_cpu_set(chan, cpu);
1051}
1052
1053static void
1054vmbus_chan_cpu_default(struct vmbus_channel *chan)
1055{
1056	/*
1057	 * By default, pin the channel to cpu0.  Devices having
1058	 * special channel-cpu mapping requirement should call
1059	 * vmbus_chan_cpu_{set,rr}().
1060	 */
1061	vmbus_chan_cpu_set(chan, 0);
1062}
1063
1064static void
1065vmbus_chan_msgproc_choffer(struct vmbus_softc *sc,
1066    const struct vmbus_message *msg)
1067{
1068	const struct vmbus_chanmsg_choffer *offer;
1069	struct vmbus_channel *chan;
1070	int error;
1071
1072	offer = (const struct vmbus_chanmsg_choffer *)msg->msg_data;
1073
1074	chan = vmbus_chan_alloc(sc);
1075	if (chan == NULL) {
1076		device_printf(sc->vmbus_dev, "allocate chan%u failed\n",
1077		    offer->chm_chanid);
1078		return;
1079	}
1080
1081	chan->ch_id = offer->chm_chanid;
1082	chan->ch_subidx = offer->chm_subidx;
1083	chan->ch_guid_type = offer->chm_chtype;
1084	chan->ch_guid_inst = offer->chm_chinst;
1085
1086	/* Batch reading is on by default */
1087	chan->ch_flags |= VMBUS_CHAN_FLAG_BATCHREAD;
1088
1089	chan->ch_monprm->mp_connid = VMBUS_CONNID_EVENT;
1090	if (sc->vmbus_version != VMBUS_VERSION_WS2008)
1091		chan->ch_monprm->mp_connid = offer->chm_connid;
1092
1093	if (offer->chm_flags1 & VMBUS_CHOFFER_FLAG1_HASMNF) {
1094		int trig_idx;
1095
1096		/*
1097		 * Setup MNF stuffs.
1098		 */
1099		chan->ch_txflags |= VMBUS_CHAN_TXF_HASMNF;
1100
1101		trig_idx = offer->chm_montrig / VMBUS_MONTRIG_LEN;
1102		if (trig_idx >= VMBUS_MONTRIGS_MAX)
1103			panic("invalid monitor trigger %u", offer->chm_montrig);
1104		chan->ch_montrig =
1105		    &sc->vmbus_mnf2->mnf_trigs[trig_idx].mt_pending;
1106
1107		chan->ch_montrig_mask =
1108		    1 << (offer->chm_montrig % VMBUS_MONTRIG_LEN);
1109	}
1110
1111	/*
1112	 * Setup event flag.
1113	 */
1114	chan->ch_evtflag =
1115	    &sc->vmbus_tx_evtflags[chan->ch_id >> VMBUS_EVTFLAG_SHIFT];
1116	chan->ch_evtflag_mask = 1UL << (chan->ch_id & VMBUS_EVTFLAG_MASK);
1117
1118	/* Select default cpu for this channel. */
1119	vmbus_chan_cpu_default(chan);
1120
1121	error = vmbus_chan_add(chan);
1122	if (error) {
1123		device_printf(sc->vmbus_dev, "add chan%u failed: %d\n",
1124		    chan->ch_id, error);
1125		vmbus_chan_free(chan);
1126		return;
1127	}
1128
1129	if (VMBUS_CHAN_ISPRIMARY(chan)) {
1130		/*
1131		 * Add device for this primary channel.
1132		 *
1133		 * NOTE:
1134		 * Error is ignored here; don't have much to do if error
1135		 * really happens.
1136		 */
1137		vmbus_add_child(chan);
1138	}
1139}
1140
1141/*
1142 * XXX pretty broken; need rework.
1143 */
1144static void
1145vmbus_chan_msgproc_chrescind(struct vmbus_softc *sc,
1146    const struct vmbus_message *msg)
1147{
1148	const struct vmbus_chanmsg_chrescind *note;
1149	struct vmbus_channel *chan;
1150
1151	note = (const struct vmbus_chanmsg_chrescind *)msg->msg_data;
1152	if (note->chm_chanid > VMBUS_CHAN_MAX) {
1153		device_printf(sc->vmbus_dev, "invalid rescinded chan%u\n",
1154		    note->chm_chanid);
1155		return;
1156	}
1157
1158	if (bootverbose) {
1159		device_printf(sc->vmbus_dev, "chan%u rescinded\n",
1160		    note->chm_chanid);
1161	}
1162
1163	chan = sc->vmbus_chmap[note->chm_chanid];
1164	if (chan == NULL)
1165		return;
1166	sc->vmbus_chmap[note->chm_chanid] = NULL;
1167
1168	taskqueue_enqueue(taskqueue_thread, &chan->ch_detach_task);
1169}
1170
1171static void
1172vmbus_chan_detach_task(void *xchan, int pending __unused)
1173{
1174	struct vmbus_channel *chan = xchan;
1175
1176	if (VMBUS_CHAN_ISPRIMARY(chan)) {
1177		/* Only primary channel owns the device */
1178		vmbus_delete_child(chan);
1179		/* NOTE: DO NOT free primary channel for now */
1180	} else {
1181		struct vmbus_softc *sc = chan->ch_vmbus;
1182		struct vmbus_channel *pri_chan = chan->ch_prichan;
1183		struct vmbus_chanmsg_chfree *req;
1184		struct vmbus_msghc *mh;
1185		int error;
1186
1187		mh = vmbus_msghc_get(sc, sizeof(*req));
1188		if (mh == NULL) {
1189			device_printf(sc->vmbus_dev,
1190			    "can not get msg hypercall for chfree(chan%u)\n",
1191			    chan->ch_id);
1192			goto remove;
1193		}
1194
1195		req = vmbus_msghc_dataptr(mh);
1196		req->chm_hdr.chm_type = VMBUS_CHANMSG_TYPE_CHFREE;
1197		req->chm_chanid = chan->ch_id;
1198
1199		error = vmbus_msghc_exec_noresult(mh);
1200		vmbus_msghc_put(sc, mh);
1201
1202		if (error) {
1203			device_printf(sc->vmbus_dev,
1204			    "chfree(chan%u) failed: %d",
1205			    chan->ch_id, error);
1206			/* NOTE: Move on! */
1207		} else {
1208			if (bootverbose) {
1209				device_printf(sc->vmbus_dev, "chan%u freed\n",
1210				    chan->ch_id);
1211			}
1212		}
1213remove:
1214		mtx_lock(&pri_chan->ch_subchan_lock);
1215		TAILQ_REMOVE(&pri_chan->ch_subchans, chan, ch_sublink);
1216		KASSERT(pri_chan->ch_subchan_cnt > 0,
1217		    ("invalid subchan_cnt %d", pri_chan->ch_subchan_cnt));
1218		pri_chan->ch_subchan_cnt--;
1219		mtx_unlock(&pri_chan->ch_subchan_lock);
1220		wakeup(pri_chan);
1221
1222		vmbus_chan_free(chan);
1223	}
1224}
1225
1226/*
1227 * Detach all devices and destroy the corresponding primary channels.
1228 */
1229void
1230vmbus_chan_destroy_all(struct vmbus_softc *sc)
1231{
1232	struct vmbus_channel *chan;
1233
1234	mtx_lock(&sc->vmbus_prichan_lock);
1235	while ((chan = TAILQ_FIRST(&sc->vmbus_prichans)) != NULL) {
1236		KASSERT(VMBUS_CHAN_ISPRIMARY(chan), ("not primary channel"));
1237		TAILQ_REMOVE(&sc->vmbus_prichans, chan, ch_prilink);
1238		mtx_unlock(&sc->vmbus_prichan_lock);
1239
1240		vmbus_delete_child(chan);
1241		vmbus_chan_free(chan);
1242
1243		mtx_lock(&sc->vmbus_prichan_lock);
1244	}
1245	bzero(sc->vmbus_chmap,
1246	    sizeof(struct vmbus_channel *) * VMBUS_CHAN_MAX);
1247	mtx_unlock(&sc->vmbus_prichan_lock);
1248}
1249
1250/*
1251 * The channel whose vcpu binding is closest to the currect vcpu will
1252 * be selected.
1253 * If no multi-channel, always select primary channel.
1254 */
1255struct vmbus_channel *
1256vmbus_chan_cpu2chan(struct vmbus_channel *prichan, int cpu)
1257{
1258	struct vmbus_channel *sel, *chan;
1259	uint32_t vcpu, sel_dist;
1260
1261	KASSERT(cpu >= 0 && cpu < mp_ncpus, ("invalid cpuid %d", cpu));
1262	if (TAILQ_EMPTY(&prichan->ch_subchans))
1263		return prichan;
1264
1265	vcpu = VMBUS_PCPU_GET(prichan->ch_vmbus, vcpuid, cpu);
1266
1267#define CHAN_VCPU_DIST(ch, vcpu)		\
1268	(((ch)->ch_vcpuid > (vcpu)) ?		\
1269	 ((ch)->ch_vcpuid - (vcpu)) : ((vcpu) - (ch)->ch_vcpuid))
1270
1271#define CHAN_SELECT(ch)				\
1272do {						\
1273	sel = ch;				\
1274	sel_dist = CHAN_VCPU_DIST(ch, vcpu);	\
1275} while (0)
1276
1277	CHAN_SELECT(prichan);
1278
1279	mtx_lock(&prichan->ch_subchan_lock);
1280	TAILQ_FOREACH(chan, &prichan->ch_subchans, ch_sublink) {
1281		uint32_t dist;
1282
1283		KASSERT(chan->ch_stflags & VMBUS_CHAN_ST_OPENED,
1284		    ("chan%u is not opened", chan->ch_id));
1285
1286		if (chan->ch_vcpuid == vcpu) {
1287			/* Exact match; done */
1288			CHAN_SELECT(chan);
1289			break;
1290		}
1291
1292		dist = CHAN_VCPU_DIST(chan, vcpu);
1293		if (sel_dist <= dist) {
1294			/* Far or same distance; skip */
1295			continue;
1296		}
1297
1298		/* Select the closer channel. */
1299		CHAN_SELECT(chan);
1300	}
1301	mtx_unlock(&prichan->ch_subchan_lock);
1302
1303#undef CHAN_SELECT
1304#undef CHAN_VCPU_DIST
1305
1306	return sel;
1307}
1308
1309struct vmbus_channel **
1310vmbus_subchan_get(struct vmbus_channel *pri_chan, int subchan_cnt)
1311{
1312	struct vmbus_channel **ret, *chan;
1313	int i;
1314
1315	ret = malloc(subchan_cnt * sizeof(struct vmbus_channel *), M_TEMP,
1316	    M_WAITOK);
1317
1318	mtx_lock(&pri_chan->ch_subchan_lock);
1319
1320	while (pri_chan->ch_subchan_cnt < subchan_cnt)
1321		mtx_sleep(pri_chan, &pri_chan->ch_subchan_lock, 0, "subch", 0);
1322
1323	i = 0;
1324	TAILQ_FOREACH(chan, &pri_chan->ch_subchans, ch_sublink) {
1325		/* TODO: refcnt chan */
1326		ret[i] = chan;
1327
1328		++i;
1329		if (i == subchan_cnt)
1330			break;
1331	}
1332	KASSERT(i == subchan_cnt, ("invalid subchan count %d, should be %d",
1333	    pri_chan->ch_subchan_cnt, subchan_cnt));
1334
1335	mtx_unlock(&pri_chan->ch_subchan_lock);
1336
1337	return ret;
1338}
1339
1340void
1341vmbus_subchan_rel(struct vmbus_channel **subchan, int subchan_cnt __unused)
1342{
1343
1344	free(subchan, M_TEMP);
1345}
1346
1347void
1348vmbus_subchan_drain(struct vmbus_channel *pri_chan)
1349{
1350	mtx_lock(&pri_chan->ch_subchan_lock);
1351	while (pri_chan->ch_subchan_cnt > 0)
1352		mtx_sleep(pri_chan, &pri_chan->ch_subchan_lock, 0, "dsubch", 0);
1353	mtx_unlock(&pri_chan->ch_subchan_lock);
1354}
1355
1356void
1357vmbus_chan_msgproc(struct vmbus_softc *sc, const struct vmbus_message *msg)
1358{
1359	vmbus_chanmsg_proc_t msg_proc;
1360	uint32_t msg_type;
1361
1362	msg_type = ((const struct vmbus_chanmsg_hdr *)msg->msg_data)->chm_type;
1363	KASSERT(msg_type < VMBUS_CHANMSG_TYPE_MAX,
1364	    ("invalid message type %u", msg_type));
1365
1366	msg_proc = vmbus_chan_msgprocs[msg_type];
1367	if (msg_proc != NULL)
1368		msg_proc(sc, msg);
1369}
1370
1371void
1372vmbus_chan_set_readbatch(struct vmbus_channel *chan, bool on)
1373{
1374	if (!on)
1375		chan->ch_flags &= ~VMBUS_CHAN_FLAG_BATCHREAD;
1376	else
1377		chan->ch_flags |= VMBUS_CHAN_FLAG_BATCHREAD;
1378}
1379
1380uint32_t
1381vmbus_chan_id(const struct vmbus_channel *chan)
1382{
1383	return chan->ch_id;
1384}
1385
1386uint32_t
1387vmbus_chan_subidx(const struct vmbus_channel *chan)
1388{
1389	return chan->ch_subidx;
1390}
1391
1392bool
1393vmbus_chan_is_primary(const struct vmbus_channel *chan)
1394{
1395	if (VMBUS_CHAN_ISPRIMARY(chan))
1396		return true;
1397	else
1398		return false;
1399}
1400
1401const struct hyperv_guid *
1402vmbus_chan_guid_inst(const struct vmbus_channel *chan)
1403{
1404	return &chan->ch_guid_inst;
1405}
1406