blob: 6f0befda6a8a649d360820f0bb3d50b36a665c90 [file] [log] [blame]
Frederic Barrat5ef31662018-01-23 12:31:41 +01001// SPDX-License-Identifier: GPL-2.0+
2// Copyright 2017 IBM Corp.
3#include <linux/fs.h>
4#include <linux/poll.h>
5#include <linux/sched/signal.h>
6#include <linux/uaccess.h>
7#include <uapi/misc/ocxl.h>
8#include "ocxl_internal.h"
9
10
11#define OCXL_NUM_MINORS 256 /* Total to reserve */
12
13static dev_t ocxl_dev;
14static struct class *ocxl_class;
15static struct mutex minors_idr_lock;
16static struct idr minors_idr;
17
18static struct ocxl_afu *find_and_get_afu(dev_t devno)
19{
20 struct ocxl_afu *afu;
21 int afu_minor;
22
23 afu_minor = MINOR(devno);
24 /*
25 * We don't declare an RCU critical section here, as our AFU
26 * is protected by a reference counter on the device. By the time the
27 * minor number of a device is removed from the idr, the ref count of
28 * the device is already at 0, so no user API will access that AFU and
29 * this function can't return it.
30 */
31 afu = idr_find(&minors_idr, afu_minor);
32 if (afu)
33 ocxl_afu_get(afu);
34 return afu;
35}
36
37static int allocate_afu_minor(struct ocxl_afu *afu)
38{
39 int minor;
40
41 mutex_lock(&minors_idr_lock);
42 minor = idr_alloc(&minors_idr, afu, 0, OCXL_NUM_MINORS, GFP_KERNEL);
43 mutex_unlock(&minors_idr_lock);
44 return minor;
45}
46
47static void free_afu_minor(struct ocxl_afu *afu)
48{
49 mutex_lock(&minors_idr_lock);
50 idr_remove(&minors_idr, MINOR(afu->dev.devt));
51 mutex_unlock(&minors_idr_lock);
52}
53
54static int afu_open(struct inode *inode, struct file *file)
55{
56 struct ocxl_afu *afu;
57 struct ocxl_context *ctx;
58 int rc;
59
60 pr_debug("%s for device %x\n", __func__, inode->i_rdev);
61
62 afu = find_and_get_afu(inode->i_rdev);
63 if (!afu)
64 return -ENODEV;
65
66 ctx = ocxl_context_alloc();
67 if (!ctx) {
68 rc = -ENOMEM;
69 goto put_afu;
70 }
71
72 rc = ocxl_context_init(ctx, afu, inode->i_mapping);
73 if (rc)
74 goto put_afu;
75 file->private_data = ctx;
76 ocxl_afu_put(afu);
77 return 0;
78
79put_afu:
80 ocxl_afu_put(afu);
81 return rc;
82}
83
84static long afu_ioctl_attach(struct ocxl_context *ctx,
85 struct ocxl_ioctl_attach __user *uarg)
86{
87 struct ocxl_ioctl_attach arg;
88 u64 amr = 0;
89 int rc;
90
91 pr_debug("%s for context %d\n", __func__, ctx->pasid);
92
93 if (copy_from_user(&arg, uarg, sizeof(arg)))
94 return -EFAULT;
95
96 /* Make sure reserved fields are not set for forward compatibility */
97 if (arg.reserved1 || arg.reserved2 || arg.reserved3)
98 return -EINVAL;
99
100 amr = arg.amr & mfspr(SPRN_UAMOR);
101 rc = ocxl_context_attach(ctx, amr);
102 return rc;
103}
104
105#define CMD_STR(x) (x == OCXL_IOCTL_ATTACH ? "ATTACH" : \
106 "UNKNOWN")
107
108static long afu_ioctl(struct file *file, unsigned int cmd,
109 unsigned long args)
110{
111 struct ocxl_context *ctx = file->private_data;
112 long rc;
113
114 pr_debug("%s for context %d, command %s\n", __func__, ctx->pasid,
115 CMD_STR(cmd));
116
117 if (ctx->status == CLOSED)
118 return -EIO;
119
120 switch (cmd) {
121 case OCXL_IOCTL_ATTACH:
122 rc = afu_ioctl_attach(ctx,
123 (struct ocxl_ioctl_attach __user *) args);
124 break;
125
126 default:
127 rc = -EINVAL;
128 }
129 return rc;
130}
131
132static long afu_compat_ioctl(struct file *file, unsigned int cmd,
133 unsigned long args)
134{
135 return afu_ioctl(file, cmd, args);
136}
137
138static int afu_mmap(struct file *file, struct vm_area_struct *vma)
139{
140 struct ocxl_context *ctx = file->private_data;
141
142 pr_debug("%s for context %d\n", __func__, ctx->pasid);
143 return ocxl_context_mmap(ctx, vma);
144}
145
146static bool has_xsl_error(struct ocxl_context *ctx)
147{
148 bool ret;
149
150 mutex_lock(&ctx->xsl_error_lock);
151 ret = !!ctx->xsl_error.addr;
152 mutex_unlock(&ctx->xsl_error_lock);
153
154 return ret;
155}
156
157/*
158 * Are there any events pending on the AFU
159 * ctx: The AFU context
160 * Returns: true if there are events pending
161 */
162static bool afu_events_pending(struct ocxl_context *ctx)
163{
164 if (has_xsl_error(ctx))
165 return true;
166 return false;
167}
168
169static unsigned int afu_poll(struct file *file, struct poll_table_struct *wait)
170{
171 struct ocxl_context *ctx = file->private_data;
172 unsigned int mask = 0;
173 bool closed;
174
175 pr_debug("%s for context %d\n", __func__, ctx->pasid);
176
177 poll_wait(file, &ctx->events_wq, wait);
178
179 mutex_lock(&ctx->status_mutex);
180 closed = (ctx->status == CLOSED);
181 mutex_unlock(&ctx->status_mutex);
182
183 if (afu_events_pending(ctx))
184 mask = POLLIN | POLLRDNORM;
185 else if (closed)
186 mask = POLLERR;
187
188 return mask;
189}
190
191/*
192 * Populate the supplied buffer with a single XSL error
193 * ctx: The AFU context to report the error from
194 * header: the event header to populate
195 * buf: The buffer to write the body into (should be at least
196 * AFU_EVENT_BODY_XSL_ERROR_SIZE)
197 * Return: the amount of buffer that was populated
198 */
199static ssize_t append_xsl_error(struct ocxl_context *ctx,
200 struct ocxl_kernel_event_header *header,
201 char __user *buf)
202{
203 struct ocxl_kernel_event_xsl_fault_error body;
204
205 memset(&body, 0, sizeof(body));
206
207 mutex_lock(&ctx->xsl_error_lock);
208 if (!ctx->xsl_error.addr) {
209 mutex_unlock(&ctx->xsl_error_lock);
210 return 0;
211 }
212
213 body.addr = ctx->xsl_error.addr;
214 body.dsisr = ctx->xsl_error.dsisr;
215 body.count = ctx->xsl_error.count;
216
217 ctx->xsl_error.addr = 0;
218 ctx->xsl_error.dsisr = 0;
219 ctx->xsl_error.count = 0;
220
221 mutex_unlock(&ctx->xsl_error_lock);
222
223 header->type = OCXL_AFU_EVENT_XSL_FAULT_ERROR;
224
225 if (copy_to_user(buf, &body, sizeof(body)))
226 return -EFAULT;
227
228 return sizeof(body);
229}
230
231#define AFU_EVENT_BODY_MAX_SIZE sizeof(struct ocxl_kernel_event_xsl_fault_error)
232
233/*
234 * Reports events on the AFU
235 * Format:
236 * Header (struct ocxl_kernel_event_header)
237 * Body (struct ocxl_kernel_event_*)
238 * Header...
239 */
240static ssize_t afu_read(struct file *file, char __user *buf, size_t count,
241 loff_t *off)
242{
243 struct ocxl_context *ctx = file->private_data;
244 struct ocxl_kernel_event_header header;
245 ssize_t rc;
246 size_t used = 0;
247 DEFINE_WAIT(event_wait);
248
249 memset(&header, 0, sizeof(header));
250
251 /* Require offset to be 0 */
252 if (*off != 0)
253 return -EINVAL;
254
255 if (count < (sizeof(struct ocxl_kernel_event_header) +
256 AFU_EVENT_BODY_MAX_SIZE))
257 return -EINVAL;
258
259 for (;;) {
260 prepare_to_wait(&ctx->events_wq, &event_wait,
261 TASK_INTERRUPTIBLE);
262
263 if (afu_events_pending(ctx))
264 break;
265
266 if (ctx->status == CLOSED)
267 break;
268
269 if (file->f_flags & O_NONBLOCK) {
270 finish_wait(&ctx->events_wq, &event_wait);
271 return -EAGAIN;
272 }
273
274 if (signal_pending(current)) {
275 finish_wait(&ctx->events_wq, &event_wait);
276 return -ERESTARTSYS;
277 }
278
279 schedule();
280 }
281
282 finish_wait(&ctx->events_wq, &event_wait);
283
284 if (has_xsl_error(ctx)) {
285 used = append_xsl_error(ctx, &header, buf + sizeof(header));
286 if (used < 0)
287 return used;
288 }
289
290 if (!afu_events_pending(ctx))
291 header.flags |= OCXL_KERNEL_EVENT_FLAG_LAST;
292
293 if (copy_to_user(buf, &header, sizeof(header)))
294 return -EFAULT;
295
296 used += sizeof(header);
297
298 rc = (ssize_t) used;
299 return rc;
300}
301
302static int afu_release(struct inode *inode, struct file *file)
303{
304 struct ocxl_context *ctx = file->private_data;
305 int rc;
306
307 pr_debug("%s for device %x\n", __func__, inode->i_rdev);
308 rc = ocxl_context_detach(ctx);
309 mutex_lock(&ctx->mapping_lock);
310 ctx->mapping = NULL;
311 mutex_unlock(&ctx->mapping_lock);
312 wake_up_all(&ctx->events_wq);
313 if (rc != -EBUSY)
314 ocxl_context_free(ctx);
315 return 0;
316}
317
318static const struct file_operations ocxl_afu_fops = {
319 .owner = THIS_MODULE,
320 .open = afu_open,
321 .unlocked_ioctl = afu_ioctl,
322 .compat_ioctl = afu_compat_ioctl,
323 .mmap = afu_mmap,
324 .poll = afu_poll,
325 .read = afu_read,
326 .release = afu_release,
327};
328
329int ocxl_create_cdev(struct ocxl_afu *afu)
330{
331 int rc;
332
333 cdev_init(&afu->cdev, &ocxl_afu_fops);
334 rc = cdev_add(&afu->cdev, afu->dev.devt, 1);
335 if (rc) {
336 dev_err(&afu->dev, "Unable to add afu char device: %d\n", rc);
337 return rc;
338 }
339 return 0;
340}
341
342void ocxl_destroy_cdev(struct ocxl_afu *afu)
343{
344 cdev_del(&afu->cdev);
345}
346
347int ocxl_register_afu(struct ocxl_afu *afu)
348{
349 int minor;
350
351 minor = allocate_afu_minor(afu);
352 if (minor < 0)
353 return minor;
354 afu->dev.devt = MKDEV(MAJOR(ocxl_dev), minor);
355 afu->dev.class = ocxl_class;
356 return device_register(&afu->dev);
357}
358
359void ocxl_unregister_afu(struct ocxl_afu *afu)
360{
361 free_afu_minor(afu);
362}
363
364static char *ocxl_devnode(struct device *dev, umode_t *mode)
365{
366 return kasprintf(GFP_KERNEL, "ocxl/%s", dev_name(dev));
367}
368
369int ocxl_file_init(void)
370{
371 int rc;
372
373 mutex_init(&minors_idr_lock);
374 idr_init(&minors_idr);
375
376 rc = alloc_chrdev_region(&ocxl_dev, 0, OCXL_NUM_MINORS, "ocxl");
377 if (rc) {
378 pr_err("Unable to allocate ocxl major number: %d\n", rc);
379 return rc;
380 }
381
382 ocxl_class = class_create(THIS_MODULE, "ocxl");
383 if (IS_ERR(ocxl_class)) {
384 pr_err("Unable to create ocxl class\n");
385 unregister_chrdev_region(ocxl_dev, OCXL_NUM_MINORS);
386 return PTR_ERR(ocxl_class);
387 }
388
389 ocxl_class->devnode = ocxl_devnode;
390 return 0;
391}
392
393void ocxl_file_exit(void)
394{
395 class_destroy(ocxl_class);
396 unregister_chrdev_region(ocxl_dev, OCXL_NUM_MINORS);
397 idr_destroy(&minors_idr);
398}