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Staging: hv: vmbus: Change the signature of struct hv_driver probe function
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1 /*
2 * Copyright (c) 2009, Microsoft Corporation.
3 *
4 * This program is free software; you can redistribute it and/or modify it
5 * under the terms and conditions of the GNU General Public License,
6 * version 2, as published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope it will be useful, but WITHOUT
9 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
11 * more details.
12 *
13 * You should have received a copy of the GNU General Public License along with
14 * this program; if not, write to the Free Software Foundation, Inc., 59 Temple
15 * Place - Suite 330, Boston, MA 02111-1307 USA.
16 *
17 * Authors:
18 * Haiyang Zhang <haiyangz@microsoft.com>
19 * Hank Janssen <hjanssen@microsoft.com>
20 * K. Y. Srinivasan <kys@microsoft.com>
21 *
22 */
23 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
24
25 #include <linux/init.h>
26 #include <linux/module.h>
27 #include <linux/device.h>
28 #include <linux/irq.h>
29 #include <linux/interrupt.h>
30 #include <linux/sysctl.h>
31 #include <linux/slab.h>
32 #include <linux/acpi.h>
33 #include <acpi/acpi_bus.h>
34 #include <linux/completion.h>
35
36 #include "hyperv.h"
37 #include "hyperv_vmbus.h"
38
39
40 static struct acpi_device *hv_acpi_dev;
41
42 static struct tasklet_struct msg_dpc;
43 static struct tasklet_struct event_dpc;
44
45 unsigned int vmbus_loglevel = (ALL_MODULES << 16 | INFO_LVL);
46 EXPORT_SYMBOL(vmbus_loglevel);
47
48 static struct completion probe_event;
49 static int irq;
50
51 static void get_channel_info(struct hv_device *device,
52 struct hv_device_info *info)
53 {
54 struct vmbus_channel_debug_info debug_info;
55
56 if (!device->channel)
57 return;
58
59 vmbus_get_debug_info(device->channel, &debug_info);
60
61 info->chn_id = debug_info.relid;
62 info->chn_state = debug_info.state;
63 memcpy(&info->chn_type, &debug_info.interfacetype,
64 sizeof(uuid_le));
65 memcpy(&info->chn_instance, &debug_info.interface_instance,
66 sizeof(uuid_le));
67
68 info->monitor_id = debug_info.monitorid;
69
70 info->server_monitor_pending = debug_info.servermonitor_pending;
71 info->server_monitor_latency = debug_info.servermonitor_latency;
72 info->server_monitor_conn_id = debug_info.servermonitor_connectionid;
73
74 info->client_monitor_pending = debug_info.clientmonitor_pending;
75 info->client_monitor_latency = debug_info.clientmonitor_latency;
76 info->client_monitor_conn_id = debug_info.clientmonitor_connectionid;
77
78 info->inbound.int_mask = debug_info.inbound.current_interrupt_mask;
79 info->inbound.read_idx = debug_info.inbound.current_read_index;
80 info->inbound.write_idx = debug_info.inbound.current_write_index;
81 info->inbound.bytes_avail_toread =
82 debug_info.inbound.bytes_avail_toread;
83 info->inbound.bytes_avail_towrite =
84 debug_info.inbound.bytes_avail_towrite;
85
86 info->outbound.int_mask =
87 debug_info.outbound.current_interrupt_mask;
88 info->outbound.read_idx = debug_info.outbound.current_read_index;
89 info->outbound.write_idx = debug_info.outbound.current_write_index;
90 info->outbound.bytes_avail_toread =
91 debug_info.outbound.bytes_avail_toread;
92 info->outbound.bytes_avail_towrite =
93 debug_info.outbound.bytes_avail_towrite;
94 }
95
96 #define VMBUS_ALIAS_LEN ((sizeof((struct hv_vmbus_device_id *)0)->guid) * 2)
97 static void print_alias_name(struct hv_device *hv_dev, char *alias_name)
98 {
99 int i;
100 for (i = 0; i < VMBUS_ALIAS_LEN; i += 2)
101 sprintf(&alias_name[i], "%02x", hv_dev->dev_type.b[i/2]);
102 }
103
104 /*
105 * vmbus_show_device_attr - Show the device attribute in sysfs.
106 *
107 * This is invoked when user does a
108 * "cat /sys/bus/vmbus/devices/<busdevice>/<attr name>"
109 */
110 static ssize_t vmbus_show_device_attr(struct device *dev,
111 struct device_attribute *dev_attr,
112 char *buf)
113 {
114 struct hv_device *hv_dev = device_to_hv_device(dev);
115 struct hv_device_info device_info;
116 char alias_name[VMBUS_ALIAS_LEN + 1];
117
118 memset(&device_info, 0, sizeof(struct hv_device_info));
119
120 get_channel_info(hv_dev, &device_info);
121
122 if (!strcmp(dev_attr->attr.name, "class_id")) {
123 return sprintf(buf, "{%02x%02x%02x%02x-%02x%02x-%02x%02x-"
124 "%02x%02x%02x%02x%02x%02x%02x%02x}\n",
125 device_info.chn_type.b[3],
126 device_info.chn_type.b[2],
127 device_info.chn_type.b[1],
128 device_info.chn_type.b[0],
129 device_info.chn_type.b[5],
130 device_info.chn_type.b[4],
131 device_info.chn_type.b[7],
132 device_info.chn_type.b[6],
133 device_info.chn_type.b[8],
134 device_info.chn_type.b[9],
135 device_info.chn_type.b[10],
136 device_info.chn_type.b[11],
137 device_info.chn_type.b[12],
138 device_info.chn_type.b[13],
139 device_info.chn_type.b[14],
140 device_info.chn_type.b[15]);
141 } else if (!strcmp(dev_attr->attr.name, "device_id")) {
142 return sprintf(buf, "{%02x%02x%02x%02x-%02x%02x-%02x%02x-"
143 "%02x%02x%02x%02x%02x%02x%02x%02x}\n",
144 device_info.chn_instance.b[3],
145 device_info.chn_instance.b[2],
146 device_info.chn_instance.b[1],
147 device_info.chn_instance.b[0],
148 device_info.chn_instance.b[5],
149 device_info.chn_instance.b[4],
150 device_info.chn_instance.b[7],
151 device_info.chn_instance.b[6],
152 device_info.chn_instance.b[8],
153 device_info.chn_instance.b[9],
154 device_info.chn_instance.b[10],
155 device_info.chn_instance.b[11],
156 device_info.chn_instance.b[12],
157 device_info.chn_instance.b[13],
158 device_info.chn_instance.b[14],
159 device_info.chn_instance.b[15]);
160 } else if (!strcmp(dev_attr->attr.name, "modalias")) {
161 print_alias_name(hv_dev, alias_name);
162 return sprintf(buf, "vmbus:%s\n", alias_name);
163 } else if (!strcmp(dev_attr->attr.name, "state")) {
164 return sprintf(buf, "%d\n", device_info.chn_state);
165 } else if (!strcmp(dev_attr->attr.name, "id")) {
166 return sprintf(buf, "%d\n", device_info.chn_id);
167 } else if (!strcmp(dev_attr->attr.name, "out_intr_mask")) {
168 return sprintf(buf, "%d\n", device_info.outbound.int_mask);
169 } else if (!strcmp(dev_attr->attr.name, "out_read_index")) {
170 return sprintf(buf, "%d\n", device_info.outbound.read_idx);
171 } else if (!strcmp(dev_attr->attr.name, "out_write_index")) {
172 return sprintf(buf, "%d\n", device_info.outbound.write_idx);
173 } else if (!strcmp(dev_attr->attr.name, "out_read_bytes_avail")) {
174 return sprintf(buf, "%d\n",
175 device_info.outbound.bytes_avail_toread);
176 } else if (!strcmp(dev_attr->attr.name, "out_write_bytes_avail")) {
177 return sprintf(buf, "%d\n",
178 device_info.outbound.bytes_avail_towrite);
179 } else if (!strcmp(dev_attr->attr.name, "in_intr_mask")) {
180 return sprintf(buf, "%d\n", device_info.inbound.int_mask);
181 } else if (!strcmp(dev_attr->attr.name, "in_read_index")) {
182 return sprintf(buf, "%d\n", device_info.inbound.read_idx);
183 } else if (!strcmp(dev_attr->attr.name, "in_write_index")) {
184 return sprintf(buf, "%d\n", device_info.inbound.write_idx);
185 } else if (!strcmp(dev_attr->attr.name, "in_read_bytes_avail")) {
186 return sprintf(buf, "%d\n",
187 device_info.inbound.bytes_avail_toread);
188 } else if (!strcmp(dev_attr->attr.name, "in_write_bytes_avail")) {
189 return sprintf(buf, "%d\n",
190 device_info.inbound.bytes_avail_towrite);
191 } else if (!strcmp(dev_attr->attr.name, "monitor_id")) {
192 return sprintf(buf, "%d\n", device_info.monitor_id);
193 } else if (!strcmp(dev_attr->attr.name, "server_monitor_pending")) {
194 return sprintf(buf, "%d\n", device_info.server_monitor_pending);
195 } else if (!strcmp(dev_attr->attr.name, "server_monitor_latency")) {
196 return sprintf(buf, "%d\n", device_info.server_monitor_latency);
197 } else if (!strcmp(dev_attr->attr.name, "server_monitor_conn_id")) {
198 return sprintf(buf, "%d\n",
199 device_info.server_monitor_conn_id);
200 } else if (!strcmp(dev_attr->attr.name, "client_monitor_pending")) {
201 return sprintf(buf, "%d\n", device_info.client_monitor_pending);
202 } else if (!strcmp(dev_attr->attr.name, "client_monitor_latency")) {
203 return sprintf(buf, "%d\n", device_info.client_monitor_latency);
204 } else if (!strcmp(dev_attr->attr.name, "client_monitor_conn_id")) {
205 return sprintf(buf, "%d\n",
206 device_info.client_monitor_conn_id);
207 } else {
208 return 0;
209 }
210 }
211
212 /* Set up per device attributes in /sys/bus/vmbus/devices/<bus device> */
213 static struct device_attribute vmbus_device_attrs[] = {
214 __ATTR(id, S_IRUGO, vmbus_show_device_attr, NULL),
215 __ATTR(state, S_IRUGO, vmbus_show_device_attr, NULL),
216 __ATTR(class_id, S_IRUGO, vmbus_show_device_attr, NULL),
217 __ATTR(device_id, S_IRUGO, vmbus_show_device_attr, NULL),
218 __ATTR(monitor_id, S_IRUGO, vmbus_show_device_attr, NULL),
219 __ATTR(modalias, S_IRUGO, vmbus_show_device_attr, NULL),
220
221 __ATTR(server_monitor_pending, S_IRUGO, vmbus_show_device_attr, NULL),
222 __ATTR(server_monitor_latency, S_IRUGO, vmbus_show_device_attr, NULL),
223 __ATTR(server_monitor_conn_id, S_IRUGO, vmbus_show_device_attr, NULL),
224
225 __ATTR(client_monitor_pending, S_IRUGO, vmbus_show_device_attr, NULL),
226 __ATTR(client_monitor_latency, S_IRUGO, vmbus_show_device_attr, NULL),
227 __ATTR(client_monitor_conn_id, S_IRUGO, vmbus_show_device_attr, NULL),
228
229 __ATTR(out_intr_mask, S_IRUGO, vmbus_show_device_attr, NULL),
230 __ATTR(out_read_index, S_IRUGO, vmbus_show_device_attr, NULL),
231 __ATTR(out_write_index, S_IRUGO, vmbus_show_device_attr, NULL),
232 __ATTR(out_read_bytes_avail, S_IRUGO, vmbus_show_device_attr, NULL),
233 __ATTR(out_write_bytes_avail, S_IRUGO, vmbus_show_device_attr, NULL),
234
235 __ATTR(in_intr_mask, S_IRUGO, vmbus_show_device_attr, NULL),
236 __ATTR(in_read_index, S_IRUGO, vmbus_show_device_attr, NULL),
237 __ATTR(in_write_index, S_IRUGO, vmbus_show_device_attr, NULL),
238 __ATTR(in_read_bytes_avail, S_IRUGO, vmbus_show_device_attr, NULL),
239 __ATTR(in_write_bytes_avail, S_IRUGO, vmbus_show_device_attr, NULL),
240 __ATTR_NULL
241 };
242
243
244 /*
245 * vmbus_uevent - add uevent for our device
246 *
247 * This routine is invoked when a device is added or removed on the vmbus to
248 * generate a uevent to udev in the userspace. The udev will then look at its
249 * rule and the uevent generated here to load the appropriate driver
250 *
251 * The alias string will be of the form vmbus:guid where guid is the string
252 * representation of the device guid (each byte of the guid will be
253 * represented with two hex characters.
254 */
255 static int vmbus_uevent(struct device *device, struct kobj_uevent_env *env)
256 {
257 struct hv_device *dev = device_to_hv_device(device);
258 int ret;
259 char alias_name[VMBUS_ALIAS_LEN + 1];
260
261 print_alias_name(dev, alias_name);
262 ret = add_uevent_var(env, "MODALIAS=vmbus:%s", alias_name);
263 return ret;
264 }
265
266 static uuid_le null_guid;
267
268 static inline bool is_null_guid(const __u8 *guid)
269 {
270 if (memcmp(guid, &null_guid, sizeof(uuid_le)))
271 return false;
272 return true;
273 }
274
275 /*
276 * Return a matching hv_vmbus_device_id pointer.
277 * If there is no match, return NULL.
278 */
279 static const struct hv_vmbus_device_id *hv_vmbus_get_id(
280 const struct hv_vmbus_device_id *id,
281 __u8 *guid)
282 {
283 for (; !is_null_guid(id->guid); id++)
284 if (!memcmp(&id->guid, guid, sizeof(uuid_le)))
285 return id;
286
287 return NULL;
288 }
289
290
291
292 /*
293 * vmbus_match - Attempt to match the specified device to the specified driver
294 */
295 static int vmbus_match(struct device *device, struct device_driver *driver)
296 {
297 struct hv_driver *drv = drv_to_hv_drv(driver);
298 struct hv_device *hv_dev = device_to_hv_device(device);
299
300 if (hv_vmbus_get_id(drv->id_table, hv_dev->dev_type.b))
301 return 1;
302
303 return 0;
304 }
305
306 /*
307 * vmbus_probe - Add the new vmbus's child device
308 */
309 static int vmbus_probe(struct device *child_device)
310 {
311 int ret = 0;
312 struct hv_driver *drv =
313 drv_to_hv_drv(child_device->driver);
314 struct hv_device *dev = device_to_hv_device(child_device);
315 const struct hv_vmbus_device_id *dev_id;
316
317 dev_id = hv_vmbus_get_id(drv->id_table, dev->dev_type.b);
318 if (drv->probe) {
319 ret = drv->probe(dev, dev_id);
320 if (ret != 0)
321 pr_err("probe failed for device %s (%d)\n",
322 dev_name(child_device), ret);
323
324 } else {
325 pr_err("probe not set for driver %s\n",
326 dev_name(child_device));
327 ret = -ENODEV;
328 }
329 return ret;
330 }
331
332 /*
333 * vmbus_remove - Remove a vmbus device
334 */
335 static int vmbus_remove(struct device *child_device)
336 {
337 int ret;
338 struct hv_driver *drv;
339
340 struct hv_device *dev = device_to_hv_device(child_device);
341
342 if (child_device->driver) {
343 drv = drv_to_hv_drv(child_device->driver);
344
345 if (drv->remove) {
346 ret = drv->remove(dev);
347 } else {
348 pr_err("remove not set for driver %s\n",
349 dev_name(child_device));
350 ret = -ENODEV;
351 }
352 }
353
354 return 0;
355 }
356
357
358 /*
359 * vmbus_shutdown - Shutdown a vmbus device
360 */
361 static void vmbus_shutdown(struct device *child_device)
362 {
363 struct hv_driver *drv;
364 struct hv_device *dev = device_to_hv_device(child_device);
365
366
367 /* The device may not be attached yet */
368 if (!child_device->driver)
369 return;
370
371 drv = drv_to_hv_drv(child_device->driver);
372
373 if (drv->shutdown)
374 drv->shutdown(dev);
375
376 return;
377 }
378
379
380 /*
381 * vmbus_device_release - Final callback release of the vmbus child device
382 */
383 static void vmbus_device_release(struct device *device)
384 {
385 struct hv_device *hv_dev = device_to_hv_device(device);
386
387 kfree(hv_dev);
388
389 }
390
391 /* The one and only one */
392 static struct bus_type hv_bus = {
393 .name = "vmbus",
394 .match = vmbus_match,
395 .shutdown = vmbus_shutdown,
396 .remove = vmbus_remove,
397 .probe = vmbus_probe,
398 .uevent = vmbus_uevent,
399 .dev_attrs = vmbus_device_attrs,
400 };
401
402 static const char *driver_name = "hyperv";
403
404
405 struct onmessage_work_context {
406 struct work_struct work;
407 struct hv_message msg;
408 };
409
410 static void vmbus_onmessage_work(struct work_struct *work)
411 {
412 struct onmessage_work_context *ctx;
413
414 ctx = container_of(work, struct onmessage_work_context,
415 work);
416 vmbus_onmessage(&ctx->msg);
417 kfree(ctx);
418 }
419
420 static void vmbus_on_msg_dpc(unsigned long data)
421 {
422 int cpu = smp_processor_id();
423 void *page_addr = hv_context.synic_message_page[cpu];
424 struct hv_message *msg = (struct hv_message *)page_addr +
425 VMBUS_MESSAGE_SINT;
426 struct onmessage_work_context *ctx;
427
428 while (1) {
429 if (msg->header.message_type == HVMSG_NONE) {
430 /* no msg */
431 break;
432 } else {
433 ctx = kmalloc(sizeof(*ctx), GFP_ATOMIC);
434 if (ctx == NULL)
435 continue;
436 INIT_WORK(&ctx->work, vmbus_onmessage_work);
437 memcpy(&ctx->msg, msg, sizeof(*msg));
438 queue_work(vmbus_connection.work_queue, &ctx->work);
439 }
440
441 msg->header.message_type = HVMSG_NONE;
442
443 /*
444 * Make sure the write to MessageType (ie set to
445 * HVMSG_NONE) happens before we read the
446 * MessagePending and EOMing. Otherwise, the EOMing
447 * will not deliver any more messages since there is
448 * no empty slot
449 */
450 smp_mb();
451
452 if (msg->header.message_flags.msg_pending) {
453 /*
454 * This will cause message queue rescan to
455 * possibly deliver another msg from the
456 * hypervisor
457 */
458 wrmsrl(HV_X64_MSR_EOM, 0);
459 }
460 }
461 }
462
463 static irqreturn_t vmbus_isr(int irq, void *dev_id)
464 {
465 int cpu = smp_processor_id();
466 void *page_addr;
467 struct hv_message *msg;
468 union hv_synic_event_flags *event;
469 bool handled = false;
470
471 /*
472 * Check for events before checking for messages. This is the order
473 * in which events and messages are checked in Windows guests on
474 * Hyper-V, and the Windows team suggested we do the same.
475 */
476
477 page_addr = hv_context.synic_event_page[cpu];
478 event = (union hv_synic_event_flags *)page_addr + VMBUS_MESSAGE_SINT;
479
480 /* Since we are a child, we only need to check bit 0 */
481 if (sync_test_and_clear_bit(0, (unsigned long *) &event->flags32[0])) {
482 handled = true;
483 tasklet_schedule(&event_dpc);
484 }
485
486 page_addr = hv_context.synic_message_page[cpu];
487 msg = (struct hv_message *)page_addr + VMBUS_MESSAGE_SINT;
488
489 /* Check if there are actual msgs to be processed */
490 if (msg->header.message_type != HVMSG_NONE) {
491 handled = true;
492 tasklet_schedule(&msg_dpc);
493 }
494
495 if (handled)
496 return IRQ_HANDLED;
497 else
498 return IRQ_NONE;
499 }
500
501 /*
502 * vmbus_bus_init -Main vmbus driver initialization routine.
503 *
504 * Here, we
505 * - initialize the vmbus driver context
506 * - invoke the vmbus hv main init routine
507 * - get the irq resource
508 * - retrieve the channel offers
509 */
510 static int vmbus_bus_init(int irq)
511 {
512 int ret;
513 unsigned int vector;
514
515 /* Hypervisor initialization...setup hypercall page..etc */
516 ret = hv_init();
517 if (ret != 0) {
518 pr_err("Unable to initialize the hypervisor - 0x%x\n", ret);
519 return ret;
520 }
521
522 tasklet_init(&msg_dpc, vmbus_on_msg_dpc, 0);
523 tasklet_init(&event_dpc, vmbus_on_event, 0);
524
525 ret = bus_register(&hv_bus);
526 if (ret)
527 goto err_cleanup;
528
529 ret = request_irq(irq, vmbus_isr, IRQF_SAMPLE_RANDOM,
530 driver_name, hv_acpi_dev);
531
532 if (ret != 0) {
533 pr_err("Unable to request IRQ %d\n",
534 irq);
535 goto err_unregister;
536 }
537
538 vector = IRQ0_VECTOR + irq;
539
540 /*
541 * Notify the hypervisor of our irq and
542 * connect to the host.
543 */
544 on_each_cpu(hv_synic_init, (void *)&vector, 1);
545 ret = vmbus_connect();
546 if (ret)
547 goto err_irq;
548
549 vmbus_request_offers();
550
551 return 0;
552
553 err_irq:
554 free_irq(irq, hv_acpi_dev);
555
556 err_unregister:
557 bus_unregister(&hv_bus);
558
559 err_cleanup:
560 hv_cleanup();
561
562 return ret;
563 }
564
565 /**
566 * __vmbus_child_driver_register - Register a vmbus's driver
567 * @drv: Pointer to driver structure you want to register
568 * @owner: owner module of the drv
569 * @mod_name: module name string
570 *
571 * Registers the given driver with Linux through the 'driver_register()' call
572 * and sets up the hyper-v vmbus handling for this driver.
573 * It will return the state of the 'driver_register()' call.
574 *
575 */
576 int __vmbus_driver_register(struct hv_driver *hv_driver, struct module *owner, const char *mod_name)
577 {
578 int ret;
579
580 pr_info("registering driver %s\n", hv_driver->name);
581
582 hv_driver->driver.name = hv_driver->name;
583 hv_driver->driver.owner = owner;
584 hv_driver->driver.mod_name = mod_name;
585 hv_driver->driver.bus = &hv_bus;
586
587 ret = driver_register(&hv_driver->driver);
588
589 vmbus_request_offers();
590
591 return ret;
592 }
593 EXPORT_SYMBOL_GPL(__vmbus_driver_register);
594
595 /**
596 * vmbus_driver_unregister() - Unregister a vmbus's driver
597 * @drv: Pointer to driver structure you want to un-register
598 *
599 * Un-register the given driver that was previous registered with a call to
600 * vmbus_driver_register()
601 */
602 void vmbus_driver_unregister(struct hv_driver *hv_driver)
603 {
604 pr_info("unregistering driver %s\n", hv_driver->name);
605
606 driver_unregister(&hv_driver->driver);
607
608 }
609 EXPORT_SYMBOL_GPL(vmbus_driver_unregister);
610
611 /*
612 * vmbus_device_create - Creates and registers a new child device
613 * on the vmbus.
614 */
615 struct hv_device *vmbus_device_create(uuid_le *type,
616 uuid_le *instance,
617 struct vmbus_channel *channel)
618 {
619 struct hv_device *child_device_obj;
620
621 child_device_obj = kzalloc(sizeof(struct hv_device), GFP_KERNEL);
622 if (!child_device_obj) {
623 pr_err("Unable to allocate device object for child device\n");
624 return NULL;
625 }
626
627 child_device_obj->channel = channel;
628 memcpy(&child_device_obj->dev_type, type, sizeof(uuid_le));
629 memcpy(&child_device_obj->dev_instance, instance,
630 sizeof(uuid_le));
631
632
633 return child_device_obj;
634 }
635
636 /*
637 * vmbus_device_register - Register the child device
638 */
639 int vmbus_device_register(struct hv_device *child_device_obj)
640 {
641 int ret = 0;
642
643 static atomic_t device_num = ATOMIC_INIT(0);
644
645 dev_set_name(&child_device_obj->device, "vmbus_0_%d",
646 atomic_inc_return(&device_num));
647
648 child_device_obj->device.bus = &hv_bus;
649 child_device_obj->device.parent = &hv_acpi_dev->dev;
650 child_device_obj->device.release = vmbus_device_release;
651
652 /*
653 * Register with the LDM. This will kick off the driver/device
654 * binding...which will eventually call vmbus_match() and vmbus_probe()
655 */
656 ret = device_register(&child_device_obj->device);
657
658 if (ret)
659 pr_err("Unable to register child device\n");
660 else
661 pr_info("child device %s registered\n",
662 dev_name(&child_device_obj->device));
663
664 return ret;
665 }
666
667 /*
668 * vmbus_device_unregister - Remove the specified child device
669 * from the vmbus.
670 */
671 void vmbus_device_unregister(struct hv_device *device_obj)
672 {
673 /*
674 * Kick off the process of unregistering the device.
675 * This will call vmbus_remove() and eventually vmbus_device_release()
676 */
677 device_unregister(&device_obj->device);
678
679 pr_info("child device %s unregistered\n",
680 dev_name(&device_obj->device));
681 }
682
683
684 /*
685 * VMBUS is an acpi enumerated device. Get the the IRQ information
686 * from DSDT.
687 */
688
689 static acpi_status vmbus_walk_resources(struct acpi_resource *res, void *irq)
690 {
691
692 if (res->type == ACPI_RESOURCE_TYPE_IRQ) {
693 struct acpi_resource_irq *irqp;
694 irqp = &res->data.irq;
695
696 *((unsigned int *)irq) = irqp->interrupts[0];
697 }
698
699 return AE_OK;
700 }
701
702 static int vmbus_acpi_add(struct acpi_device *device)
703 {
704 acpi_status result;
705
706 hv_acpi_dev = device;
707
708 result = acpi_walk_resources(device->handle, METHOD_NAME__CRS,
709 vmbus_walk_resources, &irq);
710
711 if (ACPI_FAILURE(result)) {
712 complete(&probe_event);
713 return -ENODEV;
714 }
715 complete(&probe_event);
716 return 0;
717 }
718
719 static const struct acpi_device_id vmbus_acpi_device_ids[] = {
720 {"VMBUS", 0},
721 {"VMBus", 0},
722 {"", 0},
723 };
724 MODULE_DEVICE_TABLE(acpi, vmbus_acpi_device_ids);
725
726 static struct acpi_driver vmbus_acpi_driver = {
727 .name = "vmbus",
728 .ids = vmbus_acpi_device_ids,
729 .ops = {
730 .add = vmbus_acpi_add,
731 },
732 };
733
734 static int __init hv_acpi_init(void)
735 {
736 int ret, t;
737
738 init_completion(&probe_event);
739
740 /*
741 * Get irq resources first.
742 */
743
744 ret = acpi_bus_register_driver(&vmbus_acpi_driver);
745
746 if (ret)
747 return ret;
748
749 t = wait_for_completion_timeout(&probe_event, 5*HZ);
750 if (t == 0) {
751 ret = -ETIMEDOUT;
752 goto cleanup;
753 }
754
755 if (irq <= 0) {
756 ret = -ENODEV;
757 goto cleanup;
758 }
759
760 ret = vmbus_bus_init(irq);
761 if (ret)
762 goto cleanup;
763
764 return 0;
765
766 cleanup:
767 acpi_bus_unregister_driver(&vmbus_acpi_driver);
768 return ret;
769 }
770
771
772 MODULE_LICENSE("GPL");
773 MODULE_VERSION(HV_DRV_VERSION);
774 module_param(vmbus_loglevel, int, S_IRUGO|S_IWUSR);
775
776 module_init(hv_acpi_init);