Staging: hv: remove DPRINT_EXIT macro
[deliverable/linux.git] / drivers / staging / hv / vmbus_drv.c
CommitLineData
3e7ee490 1/*
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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>
3e7ee490 20 */
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21#include <linux/init.h>
22#include <linux/module.h>
23#include <linux/device.h>
24#include <linux/irq.h>
25#include <linux/interrupt.h>
26#include <linux/sysctl.h>
9a775dbd 27#include <linux/pci.h>
c22090fa 28#include <linux/dmi.h>
5a0e3ad6 29#include <linux/slab.h>
2d82f6c7 30#include "version_info.h"
4983b39a 31#include "osd.h"
645954c5 32#include "logging.h"
870cde80 33#include "vmbus.h"
3e7ee490 34
3e7ee490 35
454f18a9 36/* FIXME! We need to do this dynamically for PIC and APIC system */
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37#define VMBUS_IRQ 0x5
38#define VMBUS_IRQ_VECTOR IRQ5_VECTOR
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39
40/* Main vmbus driver data structure */
3e7ee490 41struct vmbus_driver_context {
454f18a9 42 /* !! These must be the first 2 fields !! */
90c9960e 43 /* FIXME, this is a bug */
454f18a9
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44 /* The driver field is not used in here. Instead, the bus field is */
45 /* used to represent the driver */
90c9960e 46 struct driver_context drv_ctx;
ee3d7ddf 47 struct vmbus_driver drv_obj;
3e7ee490 48
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49 struct bus_type bus;
50 struct tasklet_struct msg_dpc;
51 struct tasklet_struct event_dpc;
3e7ee490 52
454f18a9 53 /* The bus root device */
f916a34d 54 struct vm_device device_ctx;
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55};
56
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57static int vmbus_match(struct device *device, struct device_driver *driver);
58static int vmbus_probe(struct device *device);
59static int vmbus_remove(struct device *device);
60static void vmbus_shutdown(struct device *device);
3e7ee490 61static int vmbus_uevent(struct device *device, struct kobj_uevent_env *env);
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62static void vmbus_msg_dpc(unsigned long data);
63static void vmbus_event_dpc(unsigned long data);
64
90c9960e 65static irqreturn_t vmbus_isr(int irq, void *dev_id);
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66
67static void vmbus_device_release(struct device *device);
68static void vmbus_bus_release(struct device *device);
69
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70static struct hv_device *vmbus_child_device_create(struct hv_guid *type,
71 struct hv_guid *instance,
72 void *context);
3d3b5518 73static void vmbus_child_device_destroy(struct hv_device *device_obj);
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74static int vmbus_child_device_register(struct hv_device *root_device_obj,
75 struct hv_device *child_device_obj);
3d3b5518 76static void vmbus_child_device_unregister(struct hv_device *child_device_obj);
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77static void vmbus_child_device_get_info(struct hv_device *device_obj,
78 struct hv_device_info *device_info);
79static ssize_t vmbus_show_device_attr(struct device *dev,
80 struct device_attribute *dev_attr,
81 char *buf);
3e7ee490 82
3e7ee490 83
90c9960e 84unsigned int vmbus_loglevel = (ALL_MODULES << 16 | INFO_LVL);
3e7ee490 85EXPORT_SYMBOL(vmbus_loglevel);
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86 /* (ALL_MODULES << 16 | DEBUG_LVL_ENTEREXIT); */
87 /* (((VMBUS | VMBUS_DRV)<<16) | DEBUG_LVL_ENTEREXIT); */
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88
89static int vmbus_irq = VMBUS_IRQ;
90
454f18a9 91/* Set up per device attributes in /sys/bus/vmbus/devices/<bus device> */
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92static struct device_attribute vmbus_device_attrs[] = {
93 __ATTR(id, S_IRUGO, vmbus_show_device_attr, NULL),
94 __ATTR(state, S_IRUGO, vmbus_show_device_attr, NULL),
95 __ATTR(class_id, S_IRUGO, vmbus_show_device_attr, NULL),
96 __ATTR(device_id, S_IRUGO, vmbus_show_device_attr, NULL),
97 __ATTR(monitor_id, S_IRUGO, vmbus_show_device_attr, NULL),
98
99 __ATTR(server_monitor_pending, S_IRUGO, vmbus_show_device_attr, NULL),
100 __ATTR(server_monitor_latency, S_IRUGO, vmbus_show_device_attr, NULL),
101 __ATTR(server_monitor_conn_id, S_IRUGO, vmbus_show_device_attr, NULL),
102
103 __ATTR(client_monitor_pending, S_IRUGO, vmbus_show_device_attr, NULL),
104 __ATTR(client_monitor_latency, S_IRUGO, vmbus_show_device_attr, NULL),
105 __ATTR(client_monitor_conn_id, S_IRUGO, vmbus_show_device_attr, NULL),
106
107 __ATTR(out_intr_mask, S_IRUGO, vmbus_show_device_attr, NULL),
108 __ATTR(out_read_index, S_IRUGO, vmbus_show_device_attr, NULL),
109 __ATTR(out_write_index, S_IRUGO, vmbus_show_device_attr, NULL),
110 __ATTR(out_read_bytes_avail, S_IRUGO, vmbus_show_device_attr, NULL),
111 __ATTR(out_write_bytes_avail, S_IRUGO, vmbus_show_device_attr, NULL),
112
113 __ATTR(in_intr_mask, S_IRUGO, vmbus_show_device_attr, NULL),
114 __ATTR(in_read_index, S_IRUGO, vmbus_show_device_attr, NULL),
115 __ATTR(in_write_index, S_IRUGO, vmbus_show_device_attr, NULL),
116 __ATTR(in_read_bytes_avail, S_IRUGO, vmbus_show_device_attr, NULL),
117 __ATTR(in_write_bytes_avail, S_IRUGO, vmbus_show_device_attr, NULL),
118 __ATTR_NULL
119};
3e7ee490 120
454f18a9 121/* The one and only one */
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122static struct vmbus_driver_context g_vmbus_drv = {
123 .bus.name = "vmbus",
124 .bus.match = vmbus_match,
125 .bus.shutdown = vmbus_shutdown,
126 .bus.remove = vmbus_remove,
127 .bus.probe = vmbus_probe,
128 .bus.uevent = vmbus_uevent,
129 .bus.dev_attrs = vmbus_device_attrs,
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130};
131
3e189519 132/*
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133 * vmbus_show_device_attr - Show the device attribute in sysfs.
134 *
135 * This is invoked when user does a
136 * "cat /sys/bus/vmbus/devices/<busdevice>/<attr name>"
137 */
138static ssize_t vmbus_show_device_attr(struct device *dev,
139 struct device_attribute *dev_attr,
140 char *buf)
3e7ee490 141{
f916a34d 142 struct vm_device *device_ctx = device_to_vm_device(dev);
ee3d7ddf 143 struct hv_device_info device_info;
3e7ee490 144
ee3d7ddf 145 memset(&device_info, 0, sizeof(struct hv_device_info));
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146
147 vmbus_child_device_get_info(&device_ctx->device_obj, &device_info);
148
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149 if (!strcmp(dev_attr->attr.name, "class_id")) {
150 return sprintf(buf, "{%02x%02x%02x%02x-%02x%02x-%02x%02x-"
151 "%02x%02x%02x%02x%02x%02x%02x%02x}\n",
152 device_info.ChannelType.data[3],
153 device_info.ChannelType.data[2],
154 device_info.ChannelType.data[1],
155 device_info.ChannelType.data[0],
156 device_info.ChannelType.data[5],
157 device_info.ChannelType.data[4],
158 device_info.ChannelType.data[7],
159 device_info.ChannelType.data[6],
160 device_info.ChannelType.data[8],
161 device_info.ChannelType.data[9],
162 device_info.ChannelType.data[10],
163 device_info.ChannelType.data[11],
164 device_info.ChannelType.data[12],
165 device_info.ChannelType.data[13],
166 device_info.ChannelType.data[14],
167 device_info.ChannelType.data[15]);
168 } else if (!strcmp(dev_attr->attr.name, "device_id")) {
169 return sprintf(buf, "{%02x%02x%02x%02x-%02x%02x-%02x%02x-"
170 "%02x%02x%02x%02x%02x%02x%02x%02x}\n",
171 device_info.ChannelInstance.data[3],
172 device_info.ChannelInstance.data[2],
173 device_info.ChannelInstance.data[1],
174 device_info.ChannelInstance.data[0],
175 device_info.ChannelInstance.data[5],
176 device_info.ChannelInstance.data[4],
177 device_info.ChannelInstance.data[7],
178 device_info.ChannelInstance.data[6],
179 device_info.ChannelInstance.data[8],
180 device_info.ChannelInstance.data[9],
181 device_info.ChannelInstance.data[10],
182 device_info.ChannelInstance.data[11],
183 device_info.ChannelInstance.data[12],
184 device_info.ChannelInstance.data[13],
185 device_info.ChannelInstance.data[14],
186 device_info.ChannelInstance.data[15]);
187 } else if (!strcmp(dev_attr->attr.name, "state")) {
3e7ee490 188 return sprintf(buf, "%d\n", device_info.ChannelState);
90c9960e 189 } else if (!strcmp(dev_attr->attr.name, "id")) {
3e7ee490 190 return sprintf(buf, "%d\n", device_info.ChannelId);
90c9960e 191 } else if (!strcmp(dev_attr->attr.name, "out_intr_mask")) {
3e7ee490 192 return sprintf(buf, "%d\n", device_info.Outbound.InterruptMask);
90c9960e 193 } else if (!strcmp(dev_attr->attr.name, "out_read_index")) {
3e7ee490 194 return sprintf(buf, "%d\n", device_info.Outbound.ReadIndex);
90c9960e 195 } else if (!strcmp(dev_attr->attr.name, "out_write_index")) {
3e7ee490 196 return sprintf(buf, "%d\n", device_info.Outbound.WriteIndex);
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197 } else if (!strcmp(dev_attr->attr.name, "out_read_bytes_avail")) {
198 return sprintf(buf, "%d\n",
199 device_info.Outbound.BytesAvailToRead);
200 } else if (!strcmp(dev_attr->attr.name, "out_write_bytes_avail")) {
201 return sprintf(buf, "%d\n",
202 device_info.Outbound.BytesAvailToWrite);
203 } else if (!strcmp(dev_attr->attr.name, "in_intr_mask")) {
3e7ee490 204 return sprintf(buf, "%d\n", device_info.Inbound.InterruptMask);
90c9960e 205 } else if (!strcmp(dev_attr->attr.name, "in_read_index")) {
3e7ee490 206 return sprintf(buf, "%d\n", device_info.Inbound.ReadIndex);
90c9960e 207 } else if (!strcmp(dev_attr->attr.name, "in_write_index")) {
3e7ee490 208 return sprintf(buf, "%d\n", device_info.Inbound.WriteIndex);
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209 } else if (!strcmp(dev_attr->attr.name, "in_read_bytes_avail")) {
210 return sprintf(buf, "%d\n",
211 device_info.Inbound.BytesAvailToRead);
212 } else if (!strcmp(dev_attr->attr.name, "in_write_bytes_avail")) {
213 return sprintf(buf, "%d\n",
214 device_info.Inbound.BytesAvailToWrite);
215 } else if (!strcmp(dev_attr->attr.name, "monitor_id")) {
3e7ee490 216 return sprintf(buf, "%d\n", device_info.MonitorId);
90c9960e 217 } else if (!strcmp(dev_attr->attr.name, "server_monitor_pending")) {
3e7ee490 218 return sprintf(buf, "%d\n", device_info.ServerMonitorPending);
90c9960e 219 } else if (!strcmp(dev_attr->attr.name, "server_monitor_latency")) {
3e7ee490 220 return sprintf(buf, "%d\n", device_info.ServerMonitorLatency);
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221 } else if (!strcmp(dev_attr->attr.name, "server_monitor_conn_id")) {
222 return sprintf(buf, "%d\n",
223 device_info.ServerMonitorConnectionId);
224 } else if (!strcmp(dev_attr->attr.name, "client_monitor_pending")) {
3e7ee490 225 return sprintf(buf, "%d\n", device_info.ClientMonitorPending);
90c9960e 226 } else if (!strcmp(dev_attr->attr.name, "client_monitor_latency")) {
3e7ee490 227 return sprintf(buf, "%d\n", device_info.ClientMonitorLatency);
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228 } else if (!strcmp(dev_attr->attr.name, "client_monitor_conn_id")) {
229 return sprintf(buf, "%d\n",
230 device_info.ClientMonitorConnectionId);
231 } else {
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232 return 0;
233 }
234}
235
3e189519 236/*
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237 * vmbus_bus_init -Main vmbus driver initialization routine.
238 *
239 * Here, we
0686e4f4
LL
240 * - initialize the vmbus driver context
241 * - setup various driver entry points
242 * - invoke the vmbus hv main init routine
243 * - get the irq resource
244 * - invoke the vmbus to add the vmbus root device
245 * - setup the vmbus root device
246 * - retrieve the channel offers
90c9960e 247 */
21707bed 248static int vmbus_bus_init(int (*drv_init)(struct hv_driver *drv))
3e7ee490 249{
90c9960e 250 struct vmbus_driver_context *vmbus_drv_ctx = &g_vmbus_drv;
ee3d7ddf 251 struct vmbus_driver *vmbus_drv_obj = &g_vmbus_drv.drv_obj;
f916a34d 252 struct vm_device *dev_ctx = &g_vmbus_drv.device_ctx;
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253 int ret;
254 unsigned int vector;
3e7ee490 255
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256 /*
257 * Set this up to allow lower layer to callback to add/remove child
258 * devices on the bus
259 */
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260 vmbus_drv_obj->OnChildDeviceCreate = vmbus_child_device_create;
261 vmbus_drv_obj->OnChildDeviceDestroy = vmbus_child_device_destroy;
262 vmbus_drv_obj->OnChildDeviceAdd = vmbus_child_device_register;
263 vmbus_drv_obj->OnChildDeviceRemove = vmbus_child_device_unregister;
264
454f18a9 265 /* Call to bus driver to initialize */
21707bed 266 ret = drv_init(&vmbus_drv_obj->Base);
90c9960e 267 if (ret != 0) {
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268 DPRINT_ERR(VMBUS_DRV, "Unable to initialize vmbus (%d)", ret);
269 goto cleanup;
270 }
271
454f18a9 272 /* Sanity checks */
90c9960e 273 if (!vmbus_drv_obj->Base.OnDeviceAdd) {
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274 DPRINT_ERR(VMBUS_DRV, "OnDeviceAdd() routine not set");
275 ret = -1;
276 goto cleanup;
277 }
278
279 vmbus_drv_ctx->bus.name = vmbus_drv_obj->Base.name;
280
454f18a9 281 /* Initialize the bus context */
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282 tasklet_init(&vmbus_drv_ctx->msg_dpc, vmbus_msg_dpc,
283 (unsigned long)vmbus_drv_obj);
284 tasklet_init(&vmbus_drv_ctx->event_dpc, vmbus_event_dpc,
285 (unsigned long)vmbus_drv_obj);
3e7ee490 286
454f18a9 287 /* Now, register the bus driver with LDM */
c19fbca3 288 ret = bus_register(&vmbus_drv_ctx->bus);
90c9960e 289 if (ret) {
c19fbca3
BP
290 ret = -1;
291 goto cleanup;
292 }
3e7ee490 293
454f18a9 294 /* Get the interrupt resource */
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GKH
295 ret = request_irq(vmbus_irq, vmbus_isr, IRQF_SAMPLE_RANDOM,
296 vmbus_drv_obj->Base.name, NULL);
3e7ee490 297
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298 if (ret != 0) {
299 DPRINT_ERR(VMBUS_DRV, "ERROR - Unable to request IRQ %d",
300 vmbus_irq);
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301
302 bus_unregister(&vmbus_drv_ctx->bus);
303
304 ret = -1;
305 goto cleanup;
306 }
3e7ee490 307 vector = VMBUS_IRQ_VECTOR;
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308
309 DPRINT_INFO(VMBUS_DRV, "irq 0x%x vector 0x%x", vmbus_irq, vector);
310
454f18a9 311 /* Call to bus driver to add the root device */
f916a34d 312 memset(dev_ctx, 0, sizeof(struct vm_device));
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313
314 ret = vmbus_drv_obj->Base.OnDeviceAdd(&dev_ctx->device_obj, &vector);
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315 if (ret != 0) {
316 DPRINT_ERR(VMBUS_DRV,
317 "ERROR - Unable to add vmbus root device");
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HJ
318
319 free_irq(vmbus_irq, NULL);
320
321 bus_unregister(&vmbus_drv_ctx->bus);
322
323 ret = -1;
324 goto cleanup;
325 }
454f18a9 326 /* strcpy(dev_ctx->device.bus_id, dev_ctx->device_obj.name); */
09d50ff8 327 dev_set_name(&dev_ctx->device, "vmbus_0_0");
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328 memcpy(&dev_ctx->class_id, &dev_ctx->device_obj.deviceType,
329 sizeof(struct hv_guid));
330 memcpy(&dev_ctx->device_id, &dev_ctx->device_obj.deviceInstance,
331 sizeof(struct hv_guid));
3e7ee490 332
454f18a9 333 /* No need to bind a driver to the root device. */
3e7ee490 334 dev_ctx->device.parent = NULL;
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335 /* NULL; vmbus_remove() does not get invoked */
336 dev_ctx->device.bus = &vmbus_drv_ctx->bus;
3e7ee490 337
454f18a9 338 /* Setup the device dispatch table */
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339 dev_ctx->device.release = vmbus_bus_release;
340
454f18a9 341 /* Setup the bus as root device */
5d48a1c2 342 ret = device_register(&dev_ctx->device);
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343 if (ret) {
344 DPRINT_ERR(VMBUS_DRV,
345 "ERROR - Unable to register vmbus root device");
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BP
346
347 free_irq(vmbus_irq, NULL);
348 bus_unregister(&vmbus_drv_ctx->bus);
349
350 ret = -1;
351 goto cleanup;
352 }
353
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354
355 vmbus_drv_obj->GetChannelOffers();
356
357cleanup:
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358 return ret;
359}
360
3e189519 361/*
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362 * vmbus_bus_exit - Terminate the vmbus driver.
363 *
364 * This routine is opposite of vmbus_bus_init()
365 */
bd1de709 366static void vmbus_bus_exit(void)
3e7ee490 367{
ee3d7ddf 368 struct vmbus_driver *vmbus_drv_obj = &g_vmbus_drv.drv_obj;
90c9960e 369 struct vmbus_driver_context *vmbus_drv_ctx = &g_vmbus_drv;
3e7ee490 370
f916a34d 371 struct vm_device *dev_ctx = &g_vmbus_drv.device_ctx;
3e7ee490 372
454f18a9 373 /* Remove the root device */
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374 if (vmbus_drv_obj->Base.OnDeviceRemove)
375 vmbus_drv_obj->Base.OnDeviceRemove(&dev_ctx->device_obj);
376
377 if (vmbus_drv_obj->Base.OnCleanup)
378 vmbus_drv_obj->Base.OnCleanup(&vmbus_drv_obj->Base);
379
454f18a9 380 /* Unregister the root bus device */
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381 device_unregister(&dev_ctx->device);
382
383 bus_unregister(&vmbus_drv_ctx->bus);
384
385 free_irq(vmbus_irq, NULL);
386
387 tasklet_kill(&vmbus_drv_ctx->msg_dpc);
388 tasklet_kill(&vmbus_drv_ctx->event_dpc);
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389}
390
3e189519 391
90c9960e 392/**
3e189519
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393 * vmbus_child_driver_register() - Register a vmbus's child driver
394 * @driver_ctx: Pointer to driver structure you want to register
395 *
396 * @driver_ctx is of type &struct driver_context
397 *
398 * Registers the given driver with Linux through the 'driver_register()' call
399 * And sets up the hyper-v vmbus handling for this driver.
400 * It will return the state of the 'driver_register()' call.
401 *
402 * Mainly used by Hyper-V drivers.
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403 */
404int vmbus_child_driver_register(struct driver_context *driver_ctx)
3e7ee490 405{
ee3d7ddf 406 struct vmbus_driver *vmbus_drv_obj = &g_vmbus_drv.drv_obj;
5d48a1c2 407 int ret;
3e7ee490 408
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409 DPRINT_INFO(VMBUS_DRV, "child driver (%p) registering - name %s",
410 driver_ctx, driver_ctx->driver.name);
3e7ee490 411
454f18a9 412 /* The child driver on this vmbus */
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413 driver_ctx->driver.bus = &g_vmbus_drv.bus;
414
5d48a1c2 415 ret = driver_register(&driver_ctx->driver);
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416
417 vmbus_drv_obj->GetChannelOffers();
418
5d48a1c2 419 return ret;
3e7ee490 420}
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421EXPORT_SYMBOL(vmbus_child_driver_register);
422
90c9960e 423/**
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424 * vmbus_child_driver_unregister() - Unregister a vmbus's child driver
425 * @driver_ctx: Pointer to driver structure you want to un-register
426 *
427 * @driver_ctx is of type &struct driver_context
428 *
429 * Un-register the given driver with Linux through the 'driver_unregister()'
430 * call. And ungegisters the driver from the Hyper-V vmbus handler.
431 *
432 * Mainly used by Hyper-V drivers.
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433 */
434void vmbus_child_driver_unregister(struct driver_context *driver_ctx)
3e7ee490 435{
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436 DPRINT_INFO(VMBUS_DRV, "child driver (%p) unregistering - name %s",
437 driver_ctx, driver_ctx->driver.name);
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438
439 driver_unregister(&driver_ctx->driver);
440
441 driver_ctx->driver.bus = NULL;
3e7ee490 442}
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443EXPORT_SYMBOL(vmbus_child_driver_unregister);
444
90c9960e 445/**
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446 * vmbus_get_interface() - Get the vmbus channel interface.
447 * @interface: Pointer to channel interface structure
448 *
449 * Get the Hyper-V channel used for the driver.
450 *
451 * @interface is of type &struct vmbus_channel_interface
452 * This is invoked by child/client driver that sits above vmbus.
90c9960e 453 *
3e189519 454 * Mainly used by Hyper-V drivers.
90c9960e 455 */
ee3d7ddf 456void vmbus_get_interface(struct vmbus_channel_interface *interface)
3e7ee490 457{
ee3d7ddf 458 struct vmbus_driver *vmbus_drv_obj = &g_vmbus_drv.drv_obj;
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459
460 vmbus_drv_obj->GetChannelInterface(interface);
461}
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462EXPORT_SYMBOL(vmbus_get_interface);
463
3e189519 464/*
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465 * vmbus_child_device_get_info - Get the vmbus child device info.
466 *
467 * This is invoked to display various device attributes in sysfs.
468 */
469static void vmbus_child_device_get_info(struct hv_device *device_obj,
470 struct hv_device_info *device_info)
3e7ee490 471{
ee3d7ddf 472 struct vmbus_driver *vmbus_drv_obj = &g_vmbus_drv.drv_obj;
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HJ
473
474 vmbus_drv_obj->GetChannelInfo(device_obj, device_info);
475}
476
3e189519
HJ
477/*
478 * vmbus_child_device_create - Creates and registers a new child device
479 * on the vmbus.
90c9960e 480 */
daaa8cc3
GKH
481static struct hv_device *vmbus_child_device_create(struct hv_guid *type,
482 struct hv_guid *instance,
483 void *context)
3e7ee490 484{
f916a34d 485 struct vm_device *child_device_ctx;
3d3b5518 486 struct hv_device *child_device_obj;
3e7ee490 487
454f18a9 488 /* Allocate the new child device */
f916a34d 489 child_device_ctx = kzalloc(sizeof(struct vm_device), GFP_KERNEL);
90c9960e
GKH
490 if (!child_device_ctx) {
491 DPRINT_ERR(VMBUS_DRV,
492 "unable to allocate device_context for child device");
3e7ee490
HJ
493 return NULL;
494 }
495
496 DPRINT_DBG(VMBUS_DRV, "child device (%p) allocated - "
90c9960e
GKH
497 "type {%02x%02x%02x%02x-%02x%02x-%02x%02x-"
498 "%02x%02x%02x%02x%02x%02x%02x%02x},"
499 "id {%02x%02x%02x%02x-%02x%02x-%02x%02x-"
500 "%02x%02x%02x%02x%02x%02x%02x%02x}",
3e7ee490 501 &child_device_ctx->device,
daaa8cc3
GKH
502 type->data[3], type->data[2], type->data[1], type->data[0],
503 type->data[5], type->data[4], type->data[7], type->data[6],
504 type->data[8], type->data[9], type->data[10], type->data[11],
505 type->data[12], type->data[13], type->data[14], type->data[15],
90c9960e
GKH
506 instance->data[3], instance->data[2],
507 instance->data[1], instance->data[0],
508 instance->data[5], instance->data[4],
509 instance->data[7], instance->data[6],
510 instance->data[8], instance->data[9],
511 instance->data[10], instance->data[11],
512 instance->data[12], instance->data[13],
513 instance->data[14], instance->data[15]);
3e7ee490
HJ
514
515 child_device_obj = &child_device_ctx->device_obj;
516 child_device_obj->context = context;
9fb5cce4
MD
517 memcpy(&child_device_obj->deviceType, type, sizeof(struct hv_guid));
518 memcpy(&child_device_obj->deviceInstance, instance,
90c9960e 519 sizeof(struct hv_guid));
3e7ee490 520
9fb5cce4
MD
521 memcpy(&child_device_ctx->class_id, type, sizeof(struct hv_guid));
522 memcpy(&child_device_ctx->device_id, instance, sizeof(struct hv_guid));
3e7ee490 523
3e7ee490
HJ
524 return child_device_obj;
525}
526
3e189519 527/*
90c9960e
GKH
528 * vmbus_child_device_register - Register the child device on the specified bus
529 */
530static int vmbus_child_device_register(struct hv_device *root_device_obj,
531 struct hv_device *child_device_obj)
3e7ee490 532{
90c9960e 533 int ret = 0;
f916a34d
HZ
534 struct vm_device *root_device_ctx =
535 to_vm_device(root_device_obj);
536 struct vm_device *child_device_ctx =
537 to_vm_device(child_device_obj);
f4888417 538 static atomic_t device_num = ATOMIC_INIT(0);
3e7ee490 539
90c9960e
GKH
540 DPRINT_DBG(VMBUS_DRV, "child device (%p) registering",
541 child_device_ctx);
454f18a9 542
1bb40a25 543 /* Set the device name. Otherwise, device_register() will fail. */
90c9960e
GKH
544 dev_set_name(&child_device_ctx->device, "vmbus_0_%d",
545 atomic_inc_return(&device_num));
3e7ee490 546
454f18a9
BP
547 /* The new device belongs to this bus */
548 child_device_ctx->device.bus = &g_vmbus_drv.bus; /* device->dev.bus; */
3e7ee490
HJ
549 child_device_ctx->device.parent = &root_device_ctx->device;
550 child_device_ctx->device.release = vmbus_device_release;
551
90c9960e
GKH
552 /*
553 * Register with the LDM. This will kick off the driver/device
554 * binding...which will eventually call vmbus_match() and vmbus_probe()
555 */
3e7ee490
HJ
556 ret = device_register(&child_device_ctx->device);
557
454f18a9 558 /* vmbus_probe() error does not get propergate to device_register(). */
3e7ee490
HJ
559 ret = child_device_ctx->probe_error;
560
561 if (ret)
90c9960e
GKH
562 DPRINT_ERR(VMBUS_DRV, "unable to register child device (%p)",
563 &child_device_ctx->device);
3e7ee490 564 else
90c9960e
GKH
565 DPRINT_INFO(VMBUS_DRV, "child device (%p) registered",
566 &child_device_ctx->device);
3e7ee490 567
3e7ee490
HJ
568 return ret;
569}
570
3e189519
HJ
571/*
572 * vmbus_child_device_unregister - Remove the specified child device
573 * from the vmbus.
90c9960e 574 */
3d3b5518 575static void vmbus_child_device_unregister(struct hv_device *device_obj)
3e7ee490 576{
f916a34d 577 struct vm_device *device_ctx = to_vm_device(device_obj);
3e7ee490 578
90c9960e
GKH
579 DPRINT_INFO(VMBUS_DRV, "unregistering child device (%p)",
580 &device_ctx->device);
3e7ee490 581
90c9960e
GKH
582 /*
583 * Kick off the process of unregistering the device.
584 * This will call vmbus_remove() and eventually vmbus_device_release()
585 */
3e7ee490
HJ
586 device_unregister(&device_ctx->device);
587
90c9960e
GKH
588 DPRINT_INFO(VMBUS_DRV, "child device (%p) unregistered",
589 &device_ctx->device);
3e7ee490
HJ
590}
591
3e189519 592/*
90c9960e
GKH
593 * vmbus_child_device_destroy - Destroy the specified child device on the vmbus.
594 */
3d3b5518 595static void vmbus_child_device_destroy(struct hv_device *device_obj)
3e7ee490 596{
3e7ee490
HJ
597}
598
3e189519 599/*
90c9960e
GKH
600 * vmbus_uevent - add uevent for our device
601 *
602 * This routine is invoked when a device is added or removed on the vmbus to
603 * generate a uevent to udev in the userspace. The udev will then look at its
604 * rule and the uevent generated here to load the appropriate driver
605 */
3e7ee490
HJ
606static int vmbus_uevent(struct device *device, struct kobj_uevent_env *env)
607{
f916a34d 608 struct vm_device *device_ctx = device_to_vm_device(device);
3e7ee490
HJ
609 int ret;
610
90c9960e
GKH
611 DPRINT_INFO(VMBUS_DRV, "generating uevent - VMBUS_DEVICE_CLASS_GUID={"
612 "%02x%02x%02x%02x-%02x%02x-%02x%02x-"
613 "%02x%02x%02x%02x%02x%02x%02x%02x}",
614 device_ctx->class_id.data[3], device_ctx->class_id.data[2],
615 device_ctx->class_id.data[1], device_ctx->class_id.data[0],
616 device_ctx->class_id.data[5], device_ctx->class_id.data[4],
617 device_ctx->class_id.data[7], device_ctx->class_id.data[6],
618 device_ctx->class_id.data[8], device_ctx->class_id.data[9],
619 device_ctx->class_id.data[10],
620 device_ctx->class_id.data[11],
621 device_ctx->class_id.data[12],
622 device_ctx->class_id.data[13],
623 device_ctx->class_id.data[14],
624 device_ctx->class_id.data[15]);
3e7ee490 625
90c9960e
GKH
626 ret = add_uevent_var(env, "VMBUS_DEVICE_CLASS_GUID={"
627 "%02x%02x%02x%02x-%02x%02x-%02x%02x-"
628 "%02x%02x%02x%02x%02x%02x%02x%02x}",
629 device_ctx->class_id.data[3],
630 device_ctx->class_id.data[2],
631 device_ctx->class_id.data[1],
632 device_ctx->class_id.data[0],
633 device_ctx->class_id.data[5],
634 device_ctx->class_id.data[4],
635 device_ctx->class_id.data[7],
636 device_ctx->class_id.data[6],
637 device_ctx->class_id.data[8],
638 device_ctx->class_id.data[9],
639 device_ctx->class_id.data[10],
640 device_ctx->class_id.data[11],
641 device_ctx->class_id.data[12],
642 device_ctx->class_id.data[13],
643 device_ctx->class_id.data[14],
644 device_ctx->class_id.data[15]);
3e7ee490
HJ
645
646 if (ret)
3e7ee490 647 return ret;
3e7ee490 648
90c9960e
GKH
649 ret = add_uevent_var(env, "VMBUS_DEVICE_DEVICE_GUID={"
650 "%02x%02x%02x%02x-%02x%02x-%02x%02x-"
651 "%02x%02x%02x%02x%02x%02x%02x%02x}",
652 device_ctx->device_id.data[3],
653 device_ctx->device_id.data[2],
654 device_ctx->device_id.data[1],
655 device_ctx->device_id.data[0],
656 device_ctx->device_id.data[5],
657 device_ctx->device_id.data[4],
658 device_ctx->device_id.data[7],
659 device_ctx->device_id.data[6],
660 device_ctx->device_id.data[8],
661 device_ctx->device_id.data[9],
662 device_ctx->device_id.data[10],
663 device_ctx->device_id.data[11],
664 device_ctx->device_id.data[12],
665 device_ctx->device_id.data[13],
666 device_ctx->device_id.data[14],
667 device_ctx->device_id.data[15]);
3e7ee490 668 if (ret)
3e7ee490 669 return ret;
3e7ee490 670
3e7ee490
HJ
671 return 0;
672}
673
3e189519 674/*
90c9960e
GKH
675 * vmbus_match - Attempt to match the specified device to the specified driver
676 */
3e7ee490
HJ
677static int vmbus_match(struct device *device, struct device_driver *driver)
678{
90c9960e 679 int match = 0;
3e7ee490 680 struct driver_context *driver_ctx = driver_to_driver_context(driver);
f916a34d 681 struct vm_device *device_ctx = device_to_vm_device(device);
3e7ee490 682
454f18a9 683 /* We found our driver ? */
90c9960e
GKH
684 if (memcmp(&device_ctx->class_id, &driver_ctx->class_id,
685 sizeof(struct hv_guid)) == 0) {
686 /*
687 * !! NOTE: The driver_ctx is not a vmbus_drv_ctx. We typecast
688 * it here to access the struct hv_driver field
689 */
690 struct vmbus_driver_context *vmbus_drv_ctx =
691 (struct vmbus_driver_context *)driver_ctx;
692
3e7ee490 693 device_ctx->device_obj.Driver = &vmbus_drv_ctx->drv_obj.Base;
90c9960e
GKH
694 DPRINT_INFO(VMBUS_DRV,
695 "device object (%p) set to driver object (%p)",
696 &device_ctx->device_obj,
697 device_ctx->device_obj.Driver);
3e7ee490
HJ
698
699 match = 1;
700 }
3e7ee490
HJ
701 return match;
702}
703
3e189519 704/*
90c9960e
GKH
705 * vmbus_probe_failed_cb - Callback when a driver probe failed in vmbus_probe()
706 *
707 * We need a callback because we cannot invoked device_unregister() inside
708 * vmbus_probe() since vmbus_probe() may be invoked inside device_register()
709 * i.e. we cannot call device_unregister() inside device_register()
710 */
3e7ee490 711static void vmbus_probe_failed_cb(struct work_struct *context)
3e7ee490 712{
f916a34d 713 struct vm_device *device_ctx = (struct vm_device *)context;
3e7ee490 714
90c9960e
GKH
715 /*
716 * Kick off the process of unregistering the device.
717 * This will call vmbus_remove() and eventually vmbus_device_release()
718 */
3e7ee490
HJ
719 device_unregister(&device_ctx->device);
720
454f18a9 721 /* put_device(&device_ctx->device); */
3e7ee490
HJ
722}
723
3e189519 724/*
90c9960e
GKH
725 * vmbus_probe - Add the new vmbus's child device
726 */
3e7ee490
HJ
727static int vmbus_probe(struct device *child_device)
728{
90c9960e
GKH
729 int ret = 0;
730 struct driver_context *driver_ctx =
731 driver_to_driver_context(child_device->driver);
f916a34d
HZ
732 struct vm_device *device_ctx =
733 device_to_vm_device(child_device);
3e7ee490 734
454f18a9 735 /* Let the specific open-source driver handles the probe if it can */
90c9960e 736 if (driver_ctx->probe) {
3e7ee490 737 ret = device_ctx->probe_error = driver_ctx->probe(child_device);
90c9960e
GKH
738 if (ret != 0) {
739 DPRINT_ERR(VMBUS_DRV, "probe() failed for device %s "
740 "(%p) on driver %s (%d)...",
741 dev_name(child_device), child_device,
742 child_device->driver->name, ret);
743
744 INIT_WORK(&device_ctx->probe_failed_work_item,
745 vmbus_probe_failed_cb);
3e7ee490
HJ
746 schedule_work(&device_ctx->probe_failed_work_item);
747 }
90c9960e
GKH
748 } else {
749 DPRINT_ERR(VMBUS_DRV, "probe() method not set for driver - %s",
750 child_device->driver->name);
3e7ee490
HJ
751 ret = -1;
752 }
3e7ee490
HJ
753 return ret;
754}
755
3e189519 756/*
90c9960e
GKH
757 * vmbus_remove - Remove a vmbus device
758 */
3e7ee490
HJ
759static int vmbus_remove(struct device *child_device)
760{
90c9960e 761 int ret;
3e7ee490
HJ
762 struct driver_context *driver_ctx;
763
454f18a9 764 /* Special case root bus device */
90c9960e
GKH
765 if (child_device->parent == NULL) {
766 /*
767 * No-op since it is statically defined and handle in
768 * vmbus_bus_exit()
769 */
3e7ee490
HJ
770 return 0;
771 }
772
90c9960e 773 if (child_device->driver) {
3e7ee490
HJ
774 driver_ctx = driver_to_driver_context(child_device->driver);
775
90c9960e
GKH
776 /*
777 * Let the specific open-source driver handles the removal if
778 * it can
779 */
780 if (driver_ctx->remove) {
3e7ee490 781 ret = driver_ctx->remove(child_device);
90c9960e
GKH
782 } else {
783 DPRINT_ERR(VMBUS_DRV,
784 "remove() method not set for driver - %s",
785 child_device->driver->name);
3e7ee490
HJ
786 ret = -1;
787 }
788 }
3e7ee490 789
3e7ee490
HJ
790 return 0;
791}
792
3e189519 793/*
90c9960e
GKH
794 * vmbus_shutdown - Shutdown a vmbus device
795 */
3e7ee490
HJ
796static void vmbus_shutdown(struct device *child_device)
797{
798 struct driver_context *driver_ctx;
799
454f18a9 800 /* Special case root bus device */
90c9960e
GKH
801 if (child_device->parent == NULL) {
802 /*
803 * No-op since it is statically defined and handle in
804 * vmbus_bus_exit()
805 */
3e7ee490
HJ
806 return;
807 }
808
454f18a9 809 /* The device may not be attached yet */
83c720ea 810 if (!child_device->driver)
3e7ee490 811 return;
3e7ee490
HJ
812
813 driver_ctx = driver_to_driver_context(child_device->driver);
814
454f18a9 815 /* Let the specific open-source driver handles the removal if it can */
3e7ee490 816 if (driver_ctx->shutdown)
3e7ee490 817 driver_ctx->shutdown(child_device);
3e7ee490 818
3e7ee490
HJ
819 return;
820}
821
3e189519 822/*
90c9960e
GKH
823 * vmbus_bus_release - Final callback release of the vmbus root device
824 */
3e7ee490
HJ
825static void vmbus_bus_release(struct device *device)
826{
689bf406
GKH
827 /* FIXME */
828 /* Empty release functions are a bug, or a major sign
829 * of a problem design, this MUST BE FIXED! */
830 dev_err(device, "%s needs to be fixed!\n", __func__);
831 WARN_ON(1);
3e7ee490
HJ
832}
833
3e189519 834/*
90c9960e
GKH
835 * vmbus_device_release - Final callback release of the vmbus child device
836 */
3e7ee490
HJ
837static void vmbus_device_release(struct device *device)
838{
f916a34d 839 struct vm_device *device_ctx = device_to_vm_device(device);
3e7ee490 840
454f18a9 841 /* vmbus_child_device_destroy(&device_ctx->device_obj); */
3e7ee490
HJ
842 kfree(device_ctx);
843
454f18a9 844 /* !!DO NOT REFERENCE device_ctx anymore at this point!! */
3e7ee490
HJ
845}
846
3e189519 847/*
90c9960e
GKH
848 * vmbus_msg_dpc - Tasklet routine to handle hypervisor messages
849 */
3e7ee490
HJ
850static void vmbus_msg_dpc(unsigned long data)
851{
ee3d7ddf 852 struct vmbus_driver *vmbus_drv_obj = (struct vmbus_driver *)data;
3e7ee490 853
a3810b0e 854 /* ASSERT(vmbus_drv_obj->OnMsgDpc != NULL); */
3e7ee490 855
454f18a9 856 /* Call to bus driver to handle interrupt */
3e7ee490 857 vmbus_drv_obj->OnMsgDpc(&vmbus_drv_obj->Base);
3e7ee490
HJ
858}
859
3e189519 860/*
90c9960e
GKH
861 * vmbus_msg_dpc - Tasklet routine to handle hypervisor events
862 */
3e7ee490
HJ
863static void vmbus_event_dpc(unsigned long data)
864{
ee3d7ddf 865 struct vmbus_driver *vmbus_drv_obj = (struct vmbus_driver *)data;
3e7ee490 866
a3810b0e 867 /* ASSERT(vmbus_drv_obj->OnEventDpc != NULL); */
3e7ee490 868
454f18a9 869 /* Call to bus driver to handle interrupt */
3e7ee490 870 vmbus_drv_obj->OnEventDpc(&vmbus_drv_obj->Base);
3e7ee490
HJ
871}
872
90c9960e 873static irqreturn_t vmbus_isr(int irq, void *dev_id)
3e7ee490 874{
ee3d7ddf 875 struct vmbus_driver *vmbus_driver_obj = &g_vmbus_drv.drv_obj;
90c9960e 876 int ret;
3e7ee490 877
a3810b0e 878 /* ASSERT(vmbus_driver_obj->OnIsr != NULL); */
3e7ee490 879
454f18a9 880 /* Call to bus driver to handle interrupt */
3e7ee490
HJ
881 ret = vmbus_driver_obj->OnIsr(&vmbus_driver_obj->Base);
882
454f18a9 883 /* Schedules a dpc if necessary */
90c9960e
GKH
884 if (ret > 0) {
885 if (test_bit(0, (unsigned long *)&ret))
3e7ee490 886 tasklet_schedule(&g_vmbus_drv.msg_dpc);
3e7ee490 887
90c9960e 888 if (test_bit(1, (unsigned long *)&ret))
3e7ee490 889 tasklet_schedule(&g_vmbus_drv.event_dpc);
3e7ee490 890
3e7ee490 891 return IRQ_HANDLED;
90c9960e 892 } else {
3e7ee490
HJ
893 return IRQ_NONE;
894 }
895}
896
c22090fa
GKH
897static struct dmi_system_id __initdata microsoft_hv_dmi_table[] = {
898 {
899 .ident = "Hyper-V",
900 .matches = {
901 DMI_MATCH(DMI_SYS_VENDOR, "Microsoft Corporation"),
902 DMI_MATCH(DMI_PRODUCT_NAME, "Virtual Machine"),
903 DMI_MATCH(DMI_BOARD_NAME, "Virtual Machine"),
904 },
905 },
906 { },
907};
908MODULE_DEVICE_TABLE(dmi, microsoft_hv_dmi_table);
909
3e7ee490
HJ
910static int __init vmbus_init(void)
911{
3e7ee490
HJ
912 DPRINT_INFO(VMBUS_DRV,
913 "Vmbus initializing.... current log level 0x%x (%x,%x)",
914 vmbus_loglevel, HIWORD(vmbus_loglevel), LOWORD(vmbus_loglevel));
90c9960e 915 /* Todo: it is used for loglevel, to be ported to new kernel. */
3e7ee490 916
c22090fa
GKH
917 if (!dmi_check_system(microsoft_hv_dmi_table))
918 return -ENODEV;
919
83c720ea 920 return vmbus_bus_init(VmbusInitialize);
3e7ee490
HJ
921}
922
3e7ee490
HJ
923static void __exit vmbus_exit(void)
924{
3e7ee490 925 vmbus_bus_exit();
90c9960e 926 /* Todo: it is used for loglevel, to be ported to new kernel. */
3e7ee490
HJ
927}
928
9a775dbd
GKH
929/*
930 * We use a PCI table to determine if we should autoload this driver This is
931 * needed by distro tools to determine if the hyperv drivers should be
932 * installed and/or configured. We don't do anything else with the table, but
933 * it needs to be present.
9a775dbd 934 */
15f0beb1 935static const struct pci_device_id microsoft_hv_pci_table[] = {
9a775dbd
GKH
936 { PCI_DEVICE(0x1414, 0x5353) }, /* VGA compatible controller */
937 { 0 }
938};
939MODULE_DEVICE_TABLE(pci, microsoft_hv_pci_table);
940
90c9960e 941MODULE_LICENSE("GPL");
26c14cc1 942MODULE_VERSION(HV_DRV_VERSION);
3e7ee490
HJ
943module_param(vmbus_irq, int, S_IRUGO);
944module_param(vmbus_loglevel, int, S_IRUGO);
3e7ee490
HJ
945
946module_init(vmbus_init);
947module_exit(vmbus_exit);
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