mvsdio: allow automatic loading when modular
[linux-2.6] / drivers / s390 / char / monwriter.c
1 /*
2  * drivers/s390/char/monwriter.c
3  *
4  * Character device driver for writing z/VM *MONITOR service records.
5  *
6  * Copyright (C) IBM Corp. 2006
7  *
8  * Author(s): Melissa Howland <Melissa.Howland@us.ibm.com>
9  */
10
11 #define KMSG_COMPONENT "monwriter"
12 #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
13
14 #include <linux/module.h>
15 #include <linux/moduleparam.h>
16 #include <linux/init.h>
17 #include <linux/errno.h>
18 #include <linux/smp_lock.h>
19 #include <linux/types.h>
20 #include <linux/kernel.h>
21 #include <linux/miscdevice.h>
22 #include <linux/ctype.h>
23 #include <linux/poll.h>
24 #include <linux/mutex.h>
25 #include <asm/uaccess.h>
26 #include <asm/ebcdic.h>
27 #include <asm/io.h>
28 #include <asm/appldata.h>
29 #include <asm/monwriter.h>
30
31 #define MONWRITE_MAX_DATALEN    4010
32
33 static int mon_max_bufs = 255;
34 static int mon_buf_count;
35
36 struct mon_buf {
37         struct list_head list;
38         struct monwrite_hdr hdr;
39         int diag_done;
40         char *data;
41 };
42
43 struct mon_private {
44         struct list_head list;
45         struct monwrite_hdr hdr;
46         size_t hdr_to_read;
47         size_t data_to_read;
48         struct mon_buf *current_buf;
49         struct mutex thread_mutex;
50 };
51
52 /*
53  * helper functions
54  */
55
56 static int monwrite_diag(struct monwrite_hdr *myhdr, char *buffer, int fcn)
57 {
58         struct appldata_product_id id;
59         int rc;
60
61         strcpy(id.prod_nr, "LNXAPPL");
62         id.prod_fn = myhdr->applid;
63         id.record_nr = myhdr->record_num;
64         id.version_nr = myhdr->version;
65         id.release_nr = myhdr->release;
66         id.mod_lvl = myhdr->mod_level;
67         rc = appldata_asm(&id, fcn, (void *) buffer, myhdr->datalen);
68         if (rc <= 0)
69                 return rc;
70         pr_err("Writing monitor data failed with rc=%i\n", rc);
71         if (rc == 5)
72                 return -EPERM;
73         return -EINVAL;
74 }
75
76 static struct mon_buf *monwrite_find_hdr(struct mon_private *monpriv,
77                                          struct monwrite_hdr *monhdr)
78 {
79         struct mon_buf *entry, *next;
80
81         list_for_each_entry_safe(entry, next, &monpriv->list, list)
82                 if ((entry->hdr.mon_function == monhdr->mon_function ||
83                      monhdr->mon_function == MONWRITE_STOP_INTERVAL) &&
84                     entry->hdr.applid == monhdr->applid &&
85                     entry->hdr.record_num == monhdr->record_num &&
86                     entry->hdr.version == monhdr->version &&
87                     entry->hdr.release == monhdr->release &&
88                     entry->hdr.mod_level == monhdr->mod_level)
89                         return entry;
90
91         return NULL;
92 }
93
94 static int monwrite_new_hdr(struct mon_private *monpriv)
95 {
96         struct monwrite_hdr *monhdr = &monpriv->hdr;
97         struct mon_buf *monbuf;
98         int rc;
99
100         if (monhdr->datalen > MONWRITE_MAX_DATALEN ||
101             monhdr->mon_function > MONWRITE_START_CONFIG ||
102             monhdr->hdrlen != sizeof(struct monwrite_hdr))
103                 return -EINVAL;
104         monbuf = NULL;
105         if (monhdr->mon_function != MONWRITE_GEN_EVENT)
106                 monbuf = monwrite_find_hdr(monpriv, monhdr);
107         if (monbuf) {
108                 if (monhdr->mon_function == MONWRITE_STOP_INTERVAL) {
109                         monhdr->datalen = monbuf->hdr.datalen;
110                         rc = monwrite_diag(monhdr, monbuf->data,
111                                            APPLDATA_STOP_REC);
112                         list_del(&monbuf->list);
113                         mon_buf_count--;
114                         kfree(monbuf->data);
115                         kfree(monbuf);
116                         monbuf = NULL;
117                 }
118         } else if (monhdr->mon_function != MONWRITE_STOP_INTERVAL) {
119                 if (mon_buf_count >= mon_max_bufs)
120                         return -ENOSPC;
121                 monbuf = kzalloc(sizeof(struct mon_buf), GFP_KERNEL);
122                 if (!monbuf)
123                         return -ENOMEM;
124                 monbuf->data = kzalloc(monhdr->datalen,
125                                        GFP_KERNEL | GFP_DMA);
126                 if (!monbuf->data) {
127                         kfree(monbuf);
128                         return -ENOMEM;
129                 }
130                 monbuf->hdr = *monhdr;
131                 list_add_tail(&monbuf->list, &monpriv->list);
132                 if (monhdr->mon_function != MONWRITE_GEN_EVENT)
133                         mon_buf_count++;
134         }
135         monpriv->current_buf = monbuf;
136         return 0;
137 }
138
139 static int monwrite_new_data(struct mon_private *monpriv)
140 {
141         struct monwrite_hdr *monhdr = &monpriv->hdr;
142         struct mon_buf *monbuf = monpriv->current_buf;
143         int rc = 0;
144
145         switch (monhdr->mon_function) {
146         case MONWRITE_START_INTERVAL:
147                 if (!monbuf->diag_done) {
148                         rc = monwrite_diag(monhdr, monbuf->data,
149                                            APPLDATA_START_INTERVAL_REC);
150                         monbuf->diag_done = 1;
151                 }
152                 break;
153         case MONWRITE_START_CONFIG:
154                 if (!monbuf->diag_done) {
155                         rc = monwrite_diag(monhdr, monbuf->data,
156                                            APPLDATA_START_CONFIG_REC);
157                         monbuf->diag_done = 1;
158                 }
159                 break;
160         case MONWRITE_GEN_EVENT:
161                 rc = monwrite_diag(monhdr, monbuf->data,
162                                    APPLDATA_GEN_EVENT_REC);
163                 list_del(&monpriv->current_buf->list);
164                 kfree(monpriv->current_buf->data);
165                 kfree(monpriv->current_buf);
166                 monpriv->current_buf = NULL;
167                 break;
168         default:
169                 /* monhdr->mon_function is checked in monwrite_new_hdr */
170                 BUG();
171         }
172         return rc;
173 }
174
175 /*
176  * file operations
177  */
178
179 static int monwrite_open(struct inode *inode, struct file *filp)
180 {
181         struct mon_private *monpriv;
182
183         monpriv = kzalloc(sizeof(struct mon_private), GFP_KERNEL);
184         if (!monpriv)
185                 return -ENOMEM;
186         lock_kernel();
187         INIT_LIST_HEAD(&monpriv->list);
188         monpriv->hdr_to_read = sizeof(monpriv->hdr);
189         mutex_init(&monpriv->thread_mutex);
190         filp->private_data = monpriv;
191         unlock_kernel();
192         return nonseekable_open(inode, filp);
193 }
194
195 static int monwrite_close(struct inode *inode, struct file *filp)
196 {
197         struct mon_private *monpriv = filp->private_data;
198         struct mon_buf *entry, *next;
199
200         list_for_each_entry_safe(entry, next, &monpriv->list, list) {
201                 if (entry->hdr.mon_function != MONWRITE_GEN_EVENT)
202                         monwrite_diag(&entry->hdr, entry->data,
203                                       APPLDATA_STOP_REC);
204                 mon_buf_count--;
205                 list_del(&entry->list);
206                 kfree(entry->data);
207                 kfree(entry);
208         }
209         kfree(monpriv);
210         return 0;
211 }
212
213 static ssize_t monwrite_write(struct file *filp, const char __user *data,
214                               size_t count, loff_t *ppos)
215 {
216         struct mon_private *monpriv = filp->private_data;
217         size_t len, written;
218         void *to;
219         int rc;
220
221         mutex_lock(&monpriv->thread_mutex);
222         for (written = 0; written < count; ) {
223                 if (monpriv->hdr_to_read) {
224                         len = min(count - written, monpriv->hdr_to_read);
225                         to = (char *) &monpriv->hdr +
226                                 sizeof(monpriv->hdr) - monpriv->hdr_to_read;
227                         if (copy_from_user(to, data + written, len)) {
228                                 rc = -EFAULT;
229                                 goto out_error;
230                         }
231                         monpriv->hdr_to_read -= len;
232                         written += len;
233                         if (monpriv->hdr_to_read > 0)
234                                 continue;
235                         rc = monwrite_new_hdr(monpriv);
236                         if (rc)
237                                 goto out_error;
238                         monpriv->data_to_read = monpriv->current_buf ?
239                                 monpriv->current_buf->hdr.datalen : 0;
240                 }
241
242                 if (monpriv->data_to_read) {
243                         len = min(count - written, monpriv->data_to_read);
244                         to = monpriv->current_buf->data +
245                                 monpriv->hdr.datalen - monpriv->data_to_read;
246                         if (copy_from_user(to, data + written, len)) {
247                                 rc = -EFAULT;
248                                 goto out_error;
249                         }
250                         monpriv->data_to_read -= len;
251                         written += len;
252                         if (monpriv->data_to_read > 0)
253                                 continue;
254                         rc = monwrite_new_data(monpriv);
255                         if (rc)
256                                 goto out_error;
257                 }
258                 monpriv->hdr_to_read = sizeof(monpriv->hdr);
259         }
260         mutex_unlock(&monpriv->thread_mutex);
261         return written;
262
263 out_error:
264         monpriv->data_to_read = 0;
265         monpriv->hdr_to_read = sizeof(struct monwrite_hdr);
266         mutex_unlock(&monpriv->thread_mutex);
267         return rc;
268 }
269
270 static const struct file_operations monwrite_fops = {
271         .owner   = THIS_MODULE,
272         .open    = &monwrite_open,
273         .release = &monwrite_close,
274         .write   = &monwrite_write,
275 };
276
277 static struct miscdevice mon_dev = {
278         .name   = "monwriter",
279         .fops   = &monwrite_fops,
280         .minor  = MISC_DYNAMIC_MINOR,
281 };
282
283 /*
284  * module init/exit
285  */
286
287 static int __init mon_init(void)
288 {
289         if (MACHINE_IS_VM)
290                 return misc_register(&mon_dev);
291         else
292                 return -ENODEV;
293 }
294
295 static void __exit mon_exit(void)
296 {
297         WARN_ON(misc_deregister(&mon_dev) != 0);
298 }
299
300 module_init(mon_init);
301 module_exit(mon_exit);
302
303 module_param_named(max_bufs, mon_max_bufs, int, 0644);
304 MODULE_PARM_DESC(max_bufs, "Maximum number of sample monitor data buffers "
305                  "that can be active at one time");
306
307 MODULE_AUTHOR("Melissa Howland <Melissa.Howland@us.ibm.com>");
308 MODULE_DESCRIPTION("Character device driver for writing z/VM "
309                    "APPLDATA monitor records.");
310 MODULE_LICENSE("GPL");