1 // SPDX-License-Identifier: GPL-2.0
3 * Character device driver for writing z/VM *MONITOR service records.
5 * Copyright IBM Corp. 2006, 2009
7 * Author(s): Melissa Howland <Melissa.Howland@us.ibm.com>
10 #define KMSG_COMPONENT "monwriter"
11 #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
13 #include <linux/module.h>
14 #include <linux/moduleparam.h>
15 #include <linux/init.h>
16 #include <linux/errno.h>
17 #include <linux/types.h>
18 #include <linux/kernel.h>
19 #include <linux/miscdevice.h>
20 #include <linux/ctype.h>
21 #include <linux/poll.h>
22 #include <linux/mutex.h>
23 #include <linux/platform_device.h>
24 #include <linux/slab.h>
25 #include <linux/uaccess.h>
26 #include <asm/ebcdic.h>
28 #include <asm/appldata.h>
29 #include <asm/monwriter.h>
31 #define MONWRITE_MAX_DATALEN 4010
33 static int mon_max_bufs
= 255;
34 static int mon_buf_count
;
37 struct list_head list
;
38 struct monwrite_hdr hdr
;
43 static LIST_HEAD(mon_priv_list
);
46 struct list_head priv_list
;
47 struct list_head list
;
48 struct monwrite_hdr hdr
;
51 struct mon_buf
*current_buf
;
52 struct mutex thread_mutex
;
59 static int monwrite_diag(struct monwrite_hdr
*myhdr
, char *buffer
, int fcn
)
61 struct appldata_parameter_list
*parm_list
;
62 struct appldata_product_id
*id
;
65 id
= kmalloc(sizeof(*id
), GFP_KERNEL
);
66 parm_list
= kmalloc(sizeof(*parm_list
), GFP_KERNEL
);
68 if (!id
|| !parm_list
)
70 memcpy(id
->prod_nr
, "LNXAPPL", 7);
71 id
->prod_fn
= myhdr
->applid
;
72 id
->record_nr
= myhdr
->record_num
;
73 id
->version_nr
= myhdr
->version
;
74 id
->release_nr
= myhdr
->release
;
75 id
->mod_lvl
= myhdr
->mod_level
;
76 rc
= appldata_asm(parm_list
, id
, fcn
,
77 (void *) buffer
, myhdr
->datalen
);
80 pr_err("Writing monitor data failed with rc=%i\n", rc
);
81 rc
= (rc
== 5) ? -EPERM
: -EINVAL
;
88 static struct mon_buf
*monwrite_find_hdr(struct mon_private
*monpriv
,
89 struct monwrite_hdr
*monhdr
)
91 struct mon_buf
*entry
, *next
;
93 list_for_each_entry_safe(entry
, next
, &monpriv
->list
, list
)
94 if ((entry
->hdr
.mon_function
== monhdr
->mon_function
||
95 monhdr
->mon_function
== MONWRITE_STOP_INTERVAL
) &&
96 entry
->hdr
.applid
== monhdr
->applid
&&
97 entry
->hdr
.record_num
== monhdr
->record_num
&&
98 entry
->hdr
.version
== monhdr
->version
&&
99 entry
->hdr
.release
== monhdr
->release
&&
100 entry
->hdr
.mod_level
== monhdr
->mod_level
)
106 static int monwrite_new_hdr(struct mon_private
*monpriv
)
108 struct monwrite_hdr
*monhdr
= &monpriv
->hdr
;
109 struct mon_buf
*monbuf
;
112 if (monhdr
->datalen
> MONWRITE_MAX_DATALEN
||
113 monhdr
->mon_function
> MONWRITE_START_CONFIG
||
114 monhdr
->hdrlen
!= sizeof(struct monwrite_hdr
))
117 if (monhdr
->mon_function
!= MONWRITE_GEN_EVENT
)
118 monbuf
= monwrite_find_hdr(monpriv
, monhdr
);
120 if (monhdr
->mon_function
== MONWRITE_STOP_INTERVAL
) {
121 monhdr
->datalen
= monbuf
->hdr
.datalen
;
122 rc
= monwrite_diag(monhdr
, monbuf
->data
,
124 list_del(&monbuf
->list
);
130 } else if (monhdr
->mon_function
!= MONWRITE_STOP_INTERVAL
) {
131 if (mon_buf_count
>= mon_max_bufs
)
133 monbuf
= kzalloc(sizeof(struct mon_buf
), GFP_KERNEL
);
136 monbuf
->data
= kzalloc(monhdr
->datalen
,
137 GFP_KERNEL
| GFP_DMA
);
142 monbuf
->hdr
= *monhdr
;
143 list_add_tail(&monbuf
->list
, &monpriv
->list
);
144 if (monhdr
->mon_function
!= MONWRITE_GEN_EVENT
)
147 monpriv
->current_buf
= monbuf
;
151 static int monwrite_new_data(struct mon_private
*monpriv
)
153 struct monwrite_hdr
*monhdr
= &monpriv
->hdr
;
154 struct mon_buf
*monbuf
= monpriv
->current_buf
;
157 switch (monhdr
->mon_function
) {
158 case MONWRITE_START_INTERVAL
:
159 if (!monbuf
->diag_done
) {
160 rc
= monwrite_diag(monhdr
, monbuf
->data
,
161 APPLDATA_START_INTERVAL_REC
);
162 monbuf
->diag_done
= 1;
165 case MONWRITE_START_CONFIG
:
166 if (!monbuf
->diag_done
) {
167 rc
= monwrite_diag(monhdr
, monbuf
->data
,
168 APPLDATA_START_CONFIG_REC
);
169 monbuf
->diag_done
= 1;
172 case MONWRITE_GEN_EVENT
:
173 rc
= monwrite_diag(monhdr
, monbuf
->data
,
174 APPLDATA_GEN_EVENT_REC
);
175 list_del(&monpriv
->current_buf
->list
);
176 kfree(monpriv
->current_buf
->data
);
177 kfree(monpriv
->current_buf
);
178 monpriv
->current_buf
= NULL
;
181 /* monhdr->mon_function is checked in monwrite_new_hdr */
191 static int monwrite_open(struct inode
*inode
, struct file
*filp
)
193 struct mon_private
*monpriv
;
195 monpriv
= kzalloc(sizeof(struct mon_private
), GFP_KERNEL
);
198 INIT_LIST_HEAD(&monpriv
->list
);
199 monpriv
->hdr_to_read
= sizeof(monpriv
->hdr
);
200 mutex_init(&monpriv
->thread_mutex
);
201 filp
->private_data
= monpriv
;
202 list_add_tail(&monpriv
->priv_list
, &mon_priv_list
);
203 return nonseekable_open(inode
, filp
);
206 static int monwrite_close(struct inode
*inode
, struct file
*filp
)
208 struct mon_private
*monpriv
= filp
->private_data
;
209 struct mon_buf
*entry
, *next
;
211 list_for_each_entry_safe(entry
, next
, &monpriv
->list
, list
) {
212 if (entry
->hdr
.mon_function
!= MONWRITE_GEN_EVENT
)
213 monwrite_diag(&entry
->hdr
, entry
->data
,
216 list_del(&entry
->list
);
220 list_del(&monpriv
->priv_list
);
225 static ssize_t
monwrite_write(struct file
*filp
, const char __user
*data
,
226 size_t count
, loff_t
*ppos
)
228 struct mon_private
*monpriv
= filp
->private_data
;
233 mutex_lock(&monpriv
->thread_mutex
);
234 for (written
= 0; written
< count
; ) {
235 if (monpriv
->hdr_to_read
) {
236 len
= min(count
- written
, monpriv
->hdr_to_read
);
237 to
= (char *) &monpriv
->hdr
+
238 sizeof(monpriv
->hdr
) - monpriv
->hdr_to_read
;
239 if (copy_from_user(to
, data
+ written
, len
)) {
243 monpriv
->hdr_to_read
-= len
;
245 if (monpriv
->hdr_to_read
> 0)
247 rc
= monwrite_new_hdr(monpriv
);
250 monpriv
->data_to_read
= monpriv
->current_buf
?
251 monpriv
->current_buf
->hdr
.datalen
: 0;
254 if (monpriv
->data_to_read
) {
255 len
= min(count
- written
, monpriv
->data_to_read
);
256 to
= monpriv
->current_buf
->data
+
257 monpriv
->hdr
.datalen
- monpriv
->data_to_read
;
258 if (copy_from_user(to
, data
+ written
, len
)) {
262 monpriv
->data_to_read
-= len
;
264 if (monpriv
->data_to_read
> 0)
266 rc
= monwrite_new_data(monpriv
);
270 monpriv
->hdr_to_read
= sizeof(monpriv
->hdr
);
272 mutex_unlock(&monpriv
->thread_mutex
);
276 monpriv
->data_to_read
= 0;
277 monpriv
->hdr_to_read
= sizeof(struct monwrite_hdr
);
278 mutex_unlock(&monpriv
->thread_mutex
);
282 static const struct file_operations monwrite_fops
= {
283 .owner
= THIS_MODULE
,
284 .open
= &monwrite_open
,
285 .release
= &monwrite_close
,
286 .write
= &monwrite_write
,
287 .llseek
= noop_llseek
,
290 static struct miscdevice mon_dev
= {
292 .fops
= &monwrite_fops
,
293 .minor
= MISC_DYNAMIC_MINOR
,
300 static int monwriter_freeze(struct device
*dev
)
302 struct mon_private
*monpriv
;
303 struct mon_buf
*monbuf
;
305 list_for_each_entry(monpriv
, &mon_priv_list
, priv_list
) {
306 list_for_each_entry(monbuf
, &monpriv
->list
, list
) {
307 if (monbuf
->hdr
.mon_function
!= MONWRITE_GEN_EVENT
)
308 monwrite_diag(&monbuf
->hdr
, monbuf
->data
,
315 static int monwriter_restore(struct device
*dev
)
317 struct mon_private
*monpriv
;
318 struct mon_buf
*monbuf
;
320 list_for_each_entry(monpriv
, &mon_priv_list
, priv_list
) {
321 list_for_each_entry(monbuf
, &monpriv
->list
, list
) {
322 if (monbuf
->hdr
.mon_function
== MONWRITE_START_INTERVAL
)
323 monwrite_diag(&monbuf
->hdr
, monbuf
->data
,
324 APPLDATA_START_INTERVAL_REC
);
325 if (monbuf
->hdr
.mon_function
== MONWRITE_START_CONFIG
)
326 monwrite_diag(&monbuf
->hdr
, monbuf
->data
,
327 APPLDATA_START_CONFIG_REC
);
333 static int monwriter_thaw(struct device
*dev
)
335 return monwriter_restore(dev
);
338 static const struct dev_pm_ops monwriter_pm_ops
= {
339 .freeze
= monwriter_freeze
,
340 .thaw
= monwriter_thaw
,
341 .restore
= monwriter_restore
,
344 static struct platform_driver monwriter_pdrv
= {
347 .pm
= &monwriter_pm_ops
,
351 static struct platform_device
*monwriter_pdev
;
357 static int __init
mon_init(void)
364 rc
= platform_driver_register(&monwriter_pdrv
);
368 monwriter_pdev
= platform_device_register_simple("monwriter", -1, NULL
,
370 if (IS_ERR(monwriter_pdev
)) {
371 rc
= PTR_ERR(monwriter_pdev
);
376 * misc_register() has to be the last action in module_init(), because
377 * file operations will be available right after this.
379 rc
= misc_register(&mon_dev
);
385 platform_device_unregister(monwriter_pdev
);
387 platform_driver_unregister(&monwriter_pdrv
);
391 static void __exit
mon_exit(void)
393 misc_deregister(&mon_dev
);
394 platform_device_unregister(monwriter_pdev
);
395 platform_driver_unregister(&monwriter_pdrv
);
398 module_init(mon_init
);
399 module_exit(mon_exit
);
401 module_param_named(max_bufs
, mon_max_bufs
, int, 0644);
402 MODULE_PARM_DESC(max_bufs
, "Maximum number of sample monitor data buffers "
403 "that can be active at one time");
405 MODULE_AUTHOR("Melissa Howland <Melissa.Howland@us.ibm.com>");
406 MODULE_DESCRIPTION("Character device driver for writing z/VM "
407 "APPLDATA monitor records.");
408 MODULE_LICENSE("GPL");