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v6.13.7
  1// SPDX-License-Identifier: (GPL-2.0 OR BSD-3-Clause)
  2/*
  3 * proc.c - procfs support for Protocol family CAN core module
  4 *
  5 * Copyright (c) 2002-2007 Volkswagen Group Electronic Research
  6 * All rights reserved.
  7 *
  8 * Redistribution and use in source and binary forms, with or without
  9 * modification, are permitted provided that the following conditions
 10 * are met:
 11 * 1. Redistributions of source code must retain the above copyright
 12 *    notice, this list of conditions and the following disclaimer.
 13 * 2. Redistributions in binary form must reproduce the above copyright
 14 *    notice, this list of conditions and the following disclaimer in the
 15 *    documentation and/or other materials provided with the distribution.
 16 * 3. Neither the name of Volkswagen nor the names of its contributors
 17 *    may be used to endorse or promote products derived from this software
 18 *    without specific prior written permission.
 19 *
 20 * Alternatively, provided that this notice is retained in full, this
 21 * software may be distributed under the terms of the GNU General
 22 * Public License ("GPL") version 2, in which case the provisions of the
 23 * GPL apply INSTEAD OF those given above.
 24 *
 25 * The provided data structures and external interfaces from this code
 26 * are not restricted to be used by modules with a GPL compatible license.
 27 *
 28 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
 29 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
 30 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
 31 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
 32 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
 33 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
 34 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
 35 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
 36 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
 37 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
 38 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
 39 * DAMAGE.
 40 *
 41 */
 42
 43#include <linux/module.h>
 44#include <linux/proc_fs.h>
 45#include <linux/list.h>
 46#include <linux/rcupdate.h>
 47#include <linux/if_arp.h>
 48#include <linux/can/can-ml.h>
 49#include <linux/can/core.h>
 50
 51#include "af_can.h"
 52
 53/*
 54 * proc filenames for the PF_CAN core
 55 */
 56
 
 57#define CAN_PROC_STATS       "stats"
 58#define CAN_PROC_RESET_STATS "reset_stats"
 59#define CAN_PROC_RCVLIST_ALL "rcvlist_all"
 60#define CAN_PROC_RCVLIST_FIL "rcvlist_fil"
 61#define CAN_PROC_RCVLIST_INV "rcvlist_inv"
 62#define CAN_PROC_RCVLIST_SFF "rcvlist_sff"
 63#define CAN_PROC_RCVLIST_EFF "rcvlist_eff"
 64#define CAN_PROC_RCVLIST_ERR "rcvlist_err"
 65
 66static int user_reset;
 67
 68static const char rx_list_name[][8] = {
 69	[RX_ERR] = "rx_err",
 70	[RX_ALL] = "rx_all",
 71	[RX_FIL] = "rx_fil",
 72	[RX_INV] = "rx_inv",
 73};
 74
 75/*
 76 * af_can statistics stuff
 77 */
 78
 79static void can_init_stats(struct net *net)
 80{
 81	struct can_pkg_stats *pkg_stats = net->can.pkg_stats;
 82	struct can_rcv_lists_stats *rcv_lists_stats = net->can.rcv_lists_stats;
 83	/*
 84	 * This memset function is called from a timer context (when
 85	 * can_stattimer is active which is the default) OR in a process
 86	 * context (reading the proc_fs when can_stattimer is disabled).
 87	 */
 88	memset(pkg_stats, 0, sizeof(struct can_pkg_stats));
 89	pkg_stats->jiffies_init = jiffies;
 90
 91	rcv_lists_stats->stats_reset++;
 92
 93	if (user_reset) {
 94		user_reset = 0;
 95		rcv_lists_stats->user_reset++;
 96	}
 97}
 98
 99static unsigned long calc_rate(unsigned long oldjif, unsigned long newjif,
100			       unsigned long count)
101{
 
 
102	if (oldjif == newjif)
103		return 0;
104
105	/* see can_stat_update() - this should NEVER happen! */
106	if (count > (ULONG_MAX / HZ)) {
107		printk(KERN_ERR "can: calc_rate: count exceeded! %ld\n",
108		       count);
109		return 99999999;
110	}
111
112	return (count * HZ) / (newjif - oldjif);
 
 
113}
114
115void can_stat_update(struct timer_list *t)
116{
117	struct net *net = from_timer(net, t, can.stattimer);
118	struct can_pkg_stats *pkg_stats = net->can.pkg_stats;
119	unsigned long j = jiffies; /* snapshot */
120
121	/* restart counting in timer context on user request */
122	if (user_reset)
123		can_init_stats(net);
124
125	/* restart counting on jiffies overflow */
126	if (j < pkg_stats->jiffies_init)
127		can_init_stats(net);
128
129	/* prevent overflow in calc_rate() */
130	if (pkg_stats->rx_frames > (ULONG_MAX / HZ))
131		can_init_stats(net);
132
133	/* prevent overflow in calc_rate() */
134	if (pkg_stats->tx_frames > (ULONG_MAX / HZ))
135		can_init_stats(net);
136
137	/* matches overflow - very improbable */
138	if (pkg_stats->matches > (ULONG_MAX / 100))
139		can_init_stats(net);
140
141	/* calc total values */
142	if (pkg_stats->rx_frames)
143		pkg_stats->total_rx_match_ratio = (pkg_stats->matches * 100) /
144			pkg_stats->rx_frames;
145
146	pkg_stats->total_tx_rate = calc_rate(pkg_stats->jiffies_init, j,
147					    pkg_stats->tx_frames);
148	pkg_stats->total_rx_rate = calc_rate(pkg_stats->jiffies_init, j,
149					    pkg_stats->rx_frames);
150
151	/* calc current values */
152	if (pkg_stats->rx_frames_delta)
153		pkg_stats->current_rx_match_ratio =
154			(pkg_stats->matches_delta * 100) /
155			pkg_stats->rx_frames_delta;
156
157	pkg_stats->current_tx_rate = calc_rate(0, HZ, pkg_stats->tx_frames_delta);
158	pkg_stats->current_rx_rate = calc_rate(0, HZ, pkg_stats->rx_frames_delta);
159
160	/* check / update maximum values */
161	if (pkg_stats->max_tx_rate < pkg_stats->current_tx_rate)
162		pkg_stats->max_tx_rate = pkg_stats->current_tx_rate;
163
164	if (pkg_stats->max_rx_rate < pkg_stats->current_rx_rate)
165		pkg_stats->max_rx_rate = pkg_stats->current_rx_rate;
166
167	if (pkg_stats->max_rx_match_ratio < pkg_stats->current_rx_match_ratio)
168		pkg_stats->max_rx_match_ratio = pkg_stats->current_rx_match_ratio;
169
170	/* clear values for 'current rate' calculation */
171	pkg_stats->tx_frames_delta = 0;
172	pkg_stats->rx_frames_delta = 0;
173	pkg_stats->matches_delta   = 0;
174
175	/* restart timer (one second) */
176	mod_timer(&net->can.stattimer, round_jiffies(jiffies + HZ));
177}
178
179/*
180 * proc read functions
181 */
182
183static void can_print_rcvlist(struct seq_file *m, struct hlist_head *rx_list,
184			      struct net_device *dev)
185{
186	struct receiver *r;
187
188	hlist_for_each_entry_rcu(r, rx_list, list) {
189		char *fmt = (r->can_id & CAN_EFF_FLAG)?
190			"   %-5s  %08x  %08x  %pK  %pK  %8ld  %s\n" :
191			"   %-5s     %03x    %08x  %pK  %pK  %8ld  %s\n";
192
193		seq_printf(m, fmt, DNAME(dev), r->can_id, r->mask,
194				r->func, r->data, r->matches, r->ident);
195	}
196}
197
198static void can_print_recv_banner(struct seq_file *m)
199{
200	/*
201	 *                  can1.  00000000  00000000  00000000
202	 *                 .......          0  tp20
203	 */
204	if (IS_ENABLED(CONFIG_64BIT))
205		seq_puts(m, "  device   can_id   can_mask      function          userdata       matches  ident\n");
206	else
207		seq_puts(m, "  device   can_id   can_mask  function  userdata   matches  ident\n");
208}
209
210static int can_stats_proc_show(struct seq_file *m, void *v)
211{
212	struct net *net = m->private;
213	struct can_pkg_stats *pkg_stats = net->can.pkg_stats;
214	struct can_rcv_lists_stats *rcv_lists_stats = net->can.rcv_lists_stats;
215
216	seq_putc(m, '\n');
217	seq_printf(m, " %8ld transmitted frames (TXF)\n", pkg_stats->tx_frames);
218	seq_printf(m, " %8ld received frames (RXF)\n", pkg_stats->rx_frames);
219	seq_printf(m, " %8ld matched frames (RXMF)\n", pkg_stats->matches);
220
221	seq_putc(m, '\n');
222
223	if (net->can.stattimer.function == can_stat_update) {
224		seq_printf(m, " %8ld %% total match ratio (RXMR)\n",
225				pkg_stats->total_rx_match_ratio);
226
227		seq_printf(m, " %8ld frames/s total tx rate (TXR)\n",
228				pkg_stats->total_tx_rate);
229		seq_printf(m, " %8ld frames/s total rx rate (RXR)\n",
230				pkg_stats->total_rx_rate);
231
232		seq_putc(m, '\n');
233
234		seq_printf(m, " %8ld %% current match ratio (CRXMR)\n",
235				pkg_stats->current_rx_match_ratio);
236
237		seq_printf(m, " %8ld frames/s current tx rate (CTXR)\n",
238				pkg_stats->current_tx_rate);
239		seq_printf(m, " %8ld frames/s current rx rate (CRXR)\n",
240				pkg_stats->current_rx_rate);
241
242		seq_putc(m, '\n');
243
244		seq_printf(m, " %8ld %% max match ratio (MRXMR)\n",
245				pkg_stats->max_rx_match_ratio);
246
247		seq_printf(m, " %8ld frames/s max tx rate (MTXR)\n",
248				pkg_stats->max_tx_rate);
249		seq_printf(m, " %8ld frames/s max rx rate (MRXR)\n",
250				pkg_stats->max_rx_rate);
251
252		seq_putc(m, '\n');
253	}
254
255	seq_printf(m, " %8ld current receive list entries (CRCV)\n",
256			rcv_lists_stats->rcv_entries);
257	seq_printf(m, " %8ld maximum receive list entries (MRCV)\n",
258			rcv_lists_stats->rcv_entries_max);
259
260	if (rcv_lists_stats->stats_reset)
261		seq_printf(m, "\n %8ld statistic resets (STR)\n",
262				rcv_lists_stats->stats_reset);
263
264	if (rcv_lists_stats->user_reset)
265		seq_printf(m, " %8ld user statistic resets (USTR)\n",
266				rcv_lists_stats->user_reset);
267
268	seq_putc(m, '\n');
269	return 0;
270}
271
 
 
 
 
 
 
 
 
 
 
 
 
272static int can_reset_stats_proc_show(struct seq_file *m, void *v)
273{
274	struct net *net = m->private;
275	struct can_rcv_lists_stats *rcv_lists_stats = net->can.rcv_lists_stats;
276	struct can_pkg_stats *pkg_stats = net->can.pkg_stats;
277
278	user_reset = 1;
279
280	if (net->can.stattimer.function == can_stat_update) {
281		seq_printf(m, "Scheduled statistic reset #%ld.\n",
282				rcv_lists_stats->stats_reset + 1);
283	} else {
284		if (pkg_stats->jiffies_init != jiffies)
285			can_init_stats(net);
286
287		seq_printf(m, "Performed statistic reset #%ld.\n",
288				rcv_lists_stats->stats_reset);
289	}
290	return 0;
291}
292
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
293static inline void can_rcvlist_proc_show_one(struct seq_file *m, int idx,
294					     struct net_device *dev,
295					     struct can_dev_rcv_lists *dev_rcv_lists)
296{
297	if (!hlist_empty(&dev_rcv_lists->rx[idx])) {
298		can_print_recv_banner(m);
299		can_print_rcvlist(m, &dev_rcv_lists->rx[idx], dev);
300	} else
301		seq_printf(m, "  (%s: no entry)\n", DNAME(dev));
302
303}
304
305static int can_rcvlist_proc_show(struct seq_file *m, void *v)
306{
307	/* double cast to prevent GCC warning */
308	int idx = (int)(long)pde_data(m->file->f_inode);
309	struct net_device *dev;
310	struct can_dev_rcv_lists *dev_rcv_lists;
311	struct net *net = m->private;
312
313	seq_printf(m, "\nreceive list '%s':\n", rx_list_name[idx]);
314
315	rcu_read_lock();
316
317	/* receive list for 'all' CAN devices (dev == NULL) */
318	dev_rcv_lists = net->can.rx_alldev_list;
319	can_rcvlist_proc_show_one(m, idx, NULL, dev_rcv_lists);
320
321	/* receive list for registered CAN devices */
322	for_each_netdev_rcu(net, dev) {
323		struct can_ml_priv *can_ml = can_get_ml_priv(dev);
324
325		if (can_ml)
326			can_rcvlist_proc_show_one(m, idx, dev,
327						  &can_ml->dev_rcv_lists);
328	}
329
330	rcu_read_unlock();
331
332	seq_putc(m, '\n');
333	return 0;
334}
335
 
 
 
 
 
 
 
 
 
 
 
 
336static inline void can_rcvlist_proc_show_array(struct seq_file *m,
337					       struct net_device *dev,
338					       struct hlist_head *rcv_array,
339					       unsigned int rcv_array_sz)
340{
341	unsigned int i;
342	int all_empty = 1;
343
344	/* check whether at least one list is non-empty */
345	for (i = 0; i < rcv_array_sz; i++)
346		if (!hlist_empty(&rcv_array[i])) {
347			all_empty = 0;
348			break;
349		}
350
351	if (!all_empty) {
352		can_print_recv_banner(m);
353		for (i = 0; i < rcv_array_sz; i++) {
354			if (!hlist_empty(&rcv_array[i]))
355				can_print_rcvlist(m, &rcv_array[i], dev);
356		}
357	} else
358		seq_printf(m, "  (%s: no entry)\n", DNAME(dev));
359}
360
361static int can_rcvlist_sff_proc_show(struct seq_file *m, void *v)
362{
363	struct net_device *dev;
364	struct can_dev_rcv_lists *dev_rcv_lists;
365	struct net *net = m->private;
366
367	/* RX_SFF */
368	seq_puts(m, "\nreceive list 'rx_sff':\n");
369
370	rcu_read_lock();
371
372	/* sff receive list for 'all' CAN devices (dev == NULL) */
373	dev_rcv_lists = net->can.rx_alldev_list;
374	can_rcvlist_proc_show_array(m, NULL, dev_rcv_lists->rx_sff,
375				    ARRAY_SIZE(dev_rcv_lists->rx_sff));
376
377	/* sff receive list for registered CAN devices */
378	for_each_netdev_rcu(net, dev) {
379		struct can_ml_priv *can_ml = can_get_ml_priv(dev);
380
381		if (can_ml) {
382			dev_rcv_lists = &can_ml->dev_rcv_lists;
383			can_rcvlist_proc_show_array(m, dev, dev_rcv_lists->rx_sff,
384						    ARRAY_SIZE(dev_rcv_lists->rx_sff));
385		}
386	}
387
388	rcu_read_unlock();
389
390	seq_putc(m, '\n');
391	return 0;
392}
393
 
 
 
 
 
 
 
 
 
 
 
 
 
394static int can_rcvlist_eff_proc_show(struct seq_file *m, void *v)
395{
396	struct net_device *dev;
397	struct can_dev_rcv_lists *dev_rcv_lists;
398	struct net *net = m->private;
399
400	/* RX_EFF */
401	seq_puts(m, "\nreceive list 'rx_eff':\n");
402
403	rcu_read_lock();
404
405	/* eff receive list for 'all' CAN devices (dev == NULL) */
406	dev_rcv_lists = net->can.rx_alldev_list;
407	can_rcvlist_proc_show_array(m, NULL, dev_rcv_lists->rx_eff,
408				    ARRAY_SIZE(dev_rcv_lists->rx_eff));
409
410	/* eff receive list for registered CAN devices */
411	for_each_netdev_rcu(net, dev) {
412		struct can_ml_priv *can_ml = can_get_ml_priv(dev);
413
414		if (can_ml) {
415			dev_rcv_lists = &can_ml->dev_rcv_lists;
416			can_rcvlist_proc_show_array(m, dev, dev_rcv_lists->rx_eff,
417						    ARRAY_SIZE(dev_rcv_lists->rx_eff));
418		}
419	}
420
421	rcu_read_unlock();
422
423	seq_putc(m, '\n');
424	return 0;
425}
426
 
 
 
 
 
 
 
 
 
 
 
 
427/*
428 * can_init_proc - create main CAN proc directory and procfs entries
429 */
430void can_init_proc(struct net *net)
431{
432	/* create /proc/net/can directory */
433	net->can.proc_dir = proc_net_mkdir(net, "can", net->proc_net);
434
435	if (!net->can.proc_dir) {
436		printk(KERN_INFO "can: failed to create /proc/net/can . "
437			   "CONFIG_PROC_FS missing?\n");
438		return;
439	}
440
441	/* own procfs entries from the AF_CAN core */
442	net->can.pde_stats = proc_create_net_single(CAN_PROC_STATS, 0644,
443			net->can.proc_dir, can_stats_proc_show, NULL);
444	net->can.pde_reset_stats = proc_create_net_single(CAN_PROC_RESET_STATS,
445			0644, net->can.proc_dir, can_reset_stats_proc_show,
446			NULL);
447	net->can.pde_rcvlist_err = proc_create_net_single(CAN_PROC_RCVLIST_ERR,
448			0644, net->can.proc_dir, can_rcvlist_proc_show,
449			(void *)RX_ERR);
450	net->can.pde_rcvlist_all = proc_create_net_single(CAN_PROC_RCVLIST_ALL,
451			0644, net->can.proc_dir, can_rcvlist_proc_show,
452			(void *)RX_ALL);
453	net->can.pde_rcvlist_fil = proc_create_net_single(CAN_PROC_RCVLIST_FIL,
454			0644, net->can.proc_dir, can_rcvlist_proc_show,
455			(void *)RX_FIL);
456	net->can.pde_rcvlist_inv = proc_create_net_single(CAN_PROC_RCVLIST_INV,
457			0644, net->can.proc_dir, can_rcvlist_proc_show,
458			(void *)RX_INV);
459	net->can.pde_rcvlist_eff = proc_create_net_single(CAN_PROC_RCVLIST_EFF,
460			0644, net->can.proc_dir, can_rcvlist_eff_proc_show, NULL);
461	net->can.pde_rcvlist_sff = proc_create_net_single(CAN_PROC_RCVLIST_SFF,
462			0644, net->can.proc_dir, can_rcvlist_sff_proc_show, NULL);
 
 
 
 
 
 
 
 
 
 
463}
464
465/*
466 * can_remove_proc - remove procfs entries and main CAN proc directory
467 */
468void can_remove_proc(struct net *net)
469{
470	if (!net->can.proc_dir)
471		return;
472
473	if (net->can.pde_stats)
474		remove_proc_entry(CAN_PROC_STATS, net->can.proc_dir);
475
476	if (net->can.pde_reset_stats)
477		remove_proc_entry(CAN_PROC_RESET_STATS, net->can.proc_dir);
478
479	if (net->can.pde_rcvlist_err)
480		remove_proc_entry(CAN_PROC_RCVLIST_ERR, net->can.proc_dir);
481
482	if (net->can.pde_rcvlist_all)
483		remove_proc_entry(CAN_PROC_RCVLIST_ALL, net->can.proc_dir);
484
485	if (net->can.pde_rcvlist_fil)
486		remove_proc_entry(CAN_PROC_RCVLIST_FIL, net->can.proc_dir);
487
488	if (net->can.pde_rcvlist_inv)
489		remove_proc_entry(CAN_PROC_RCVLIST_INV, net->can.proc_dir);
490
491	if (net->can.pde_rcvlist_eff)
492		remove_proc_entry(CAN_PROC_RCVLIST_EFF, net->can.proc_dir);
493
494	if (net->can.pde_rcvlist_sff)
495		remove_proc_entry(CAN_PROC_RCVLIST_SFF, net->can.proc_dir);
496
497	remove_proc_entry("can", net->proc_net);
 
498}
v4.17
 
  1/*
  2 * proc.c - procfs support for Protocol family CAN core module
  3 *
  4 * Copyright (c) 2002-2007 Volkswagen Group Electronic Research
  5 * All rights reserved.
  6 *
  7 * Redistribution and use in source and binary forms, with or without
  8 * modification, are permitted provided that the following conditions
  9 * are met:
 10 * 1. Redistributions of source code must retain the above copyright
 11 *    notice, this list of conditions and the following disclaimer.
 12 * 2. Redistributions in binary form must reproduce the above copyright
 13 *    notice, this list of conditions and the following disclaimer in the
 14 *    documentation and/or other materials provided with the distribution.
 15 * 3. Neither the name of Volkswagen nor the names of its contributors
 16 *    may be used to endorse or promote products derived from this software
 17 *    without specific prior written permission.
 18 *
 19 * Alternatively, provided that this notice is retained in full, this
 20 * software may be distributed under the terms of the GNU General
 21 * Public License ("GPL") version 2, in which case the provisions of the
 22 * GPL apply INSTEAD OF those given above.
 23 *
 24 * The provided data structures and external interfaces from this code
 25 * are not restricted to be used by modules with a GPL compatible license.
 26 *
 27 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
 28 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
 29 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
 30 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
 31 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
 32 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
 33 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
 34 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
 35 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
 36 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
 37 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
 38 * DAMAGE.
 39 *
 40 */
 41
 42#include <linux/module.h>
 43#include <linux/proc_fs.h>
 44#include <linux/list.h>
 45#include <linux/rcupdate.h>
 46#include <linux/if_arp.h>
 
 47#include <linux/can/core.h>
 48
 49#include "af_can.h"
 50
 51/*
 52 * proc filenames for the PF_CAN core
 53 */
 54
 55#define CAN_PROC_VERSION     "version"
 56#define CAN_PROC_STATS       "stats"
 57#define CAN_PROC_RESET_STATS "reset_stats"
 58#define CAN_PROC_RCVLIST_ALL "rcvlist_all"
 59#define CAN_PROC_RCVLIST_FIL "rcvlist_fil"
 60#define CAN_PROC_RCVLIST_INV "rcvlist_inv"
 61#define CAN_PROC_RCVLIST_SFF "rcvlist_sff"
 62#define CAN_PROC_RCVLIST_EFF "rcvlist_eff"
 63#define CAN_PROC_RCVLIST_ERR "rcvlist_err"
 64
 65static int user_reset;
 66
 67static const char rx_list_name[][8] = {
 68	[RX_ERR] = "rx_err",
 69	[RX_ALL] = "rx_all",
 70	[RX_FIL] = "rx_fil",
 71	[RX_INV] = "rx_inv",
 72};
 73
 74/*
 75 * af_can statistics stuff
 76 */
 77
 78static void can_init_stats(struct net *net)
 79{
 80	struct s_stats *can_stats = net->can.can_stats;
 81	struct s_pstats *can_pstats = net->can.can_pstats;
 82	/*
 83	 * This memset function is called from a timer context (when
 84	 * can_stattimer is active which is the default) OR in a process
 85	 * context (reading the proc_fs when can_stattimer is disabled).
 86	 */
 87	memset(can_stats, 0, sizeof(struct s_stats));
 88	can_stats->jiffies_init = jiffies;
 89
 90	can_pstats->stats_reset++;
 91
 92	if (user_reset) {
 93		user_reset = 0;
 94		can_pstats->user_reset++;
 95	}
 96}
 97
 98static unsigned long calc_rate(unsigned long oldjif, unsigned long newjif,
 99			       unsigned long count)
100{
101	unsigned long rate;
102
103	if (oldjif == newjif)
104		return 0;
105
106	/* see can_stat_update() - this should NEVER happen! */
107	if (count > (ULONG_MAX / HZ)) {
108		printk(KERN_ERR "can: calc_rate: count exceeded! %ld\n",
109		       count);
110		return 99999999;
111	}
112
113	rate = (count * HZ) / (newjif - oldjif);
114
115	return rate;
116}
117
118void can_stat_update(struct timer_list *t)
119{
120	struct net *net = from_timer(net, t, can.can_stattimer);
121	struct s_stats *can_stats = net->can.can_stats;
122	unsigned long j = jiffies; /* snapshot */
123
124	/* restart counting in timer context on user request */
125	if (user_reset)
126		can_init_stats(net);
127
128	/* restart counting on jiffies overflow */
129	if (j < can_stats->jiffies_init)
130		can_init_stats(net);
131
132	/* prevent overflow in calc_rate() */
133	if (can_stats->rx_frames > (ULONG_MAX / HZ))
134		can_init_stats(net);
135
136	/* prevent overflow in calc_rate() */
137	if (can_stats->tx_frames > (ULONG_MAX / HZ))
138		can_init_stats(net);
139
140	/* matches overflow - very improbable */
141	if (can_stats->matches > (ULONG_MAX / 100))
142		can_init_stats(net);
143
144	/* calc total values */
145	if (can_stats->rx_frames)
146		can_stats->total_rx_match_ratio = (can_stats->matches * 100) /
147			can_stats->rx_frames;
148
149	can_stats->total_tx_rate = calc_rate(can_stats->jiffies_init, j,
150					    can_stats->tx_frames);
151	can_stats->total_rx_rate = calc_rate(can_stats->jiffies_init, j,
152					    can_stats->rx_frames);
153
154	/* calc current values */
155	if (can_stats->rx_frames_delta)
156		can_stats->current_rx_match_ratio =
157			(can_stats->matches_delta * 100) /
158			can_stats->rx_frames_delta;
159
160	can_stats->current_tx_rate = calc_rate(0, HZ, can_stats->tx_frames_delta);
161	can_stats->current_rx_rate = calc_rate(0, HZ, can_stats->rx_frames_delta);
162
163	/* check / update maximum values */
164	if (can_stats->max_tx_rate < can_stats->current_tx_rate)
165		can_stats->max_tx_rate = can_stats->current_tx_rate;
166
167	if (can_stats->max_rx_rate < can_stats->current_rx_rate)
168		can_stats->max_rx_rate = can_stats->current_rx_rate;
169
170	if (can_stats->max_rx_match_ratio < can_stats->current_rx_match_ratio)
171		can_stats->max_rx_match_ratio = can_stats->current_rx_match_ratio;
172
173	/* clear values for 'current rate' calculation */
174	can_stats->tx_frames_delta = 0;
175	can_stats->rx_frames_delta = 0;
176	can_stats->matches_delta   = 0;
177
178	/* restart timer (one second) */
179	mod_timer(&net->can.can_stattimer, round_jiffies(jiffies + HZ));
180}
181
182/*
183 * proc read functions
184 */
185
186static void can_print_rcvlist(struct seq_file *m, struct hlist_head *rx_list,
187			      struct net_device *dev)
188{
189	struct receiver *r;
190
191	hlist_for_each_entry_rcu(r, rx_list, list) {
192		char *fmt = (r->can_id & CAN_EFF_FLAG)?
193			"   %-5s  %08x  %08x  %pK  %pK  %8ld  %s\n" :
194			"   %-5s     %03x    %08x  %pK  %pK  %8ld  %s\n";
195
196		seq_printf(m, fmt, DNAME(dev), r->can_id, r->mask,
197				r->func, r->data, r->matches, r->ident);
198	}
199}
200
201static void can_print_recv_banner(struct seq_file *m)
202{
203	/*
204	 *                  can1.  00000000  00000000  00000000
205	 *                 .......          0  tp20
206	 */
207	seq_puts(m, "  device   can_id   can_mask  function"
208			"  userdata   matches  ident\n");
 
 
209}
210
211static int can_stats_proc_show(struct seq_file *m, void *v)
212{
213	struct net *net = m->private;
214	struct s_stats *can_stats = net->can.can_stats;
215	struct s_pstats *can_pstats = net->can.can_pstats;
216
217	seq_putc(m, '\n');
218	seq_printf(m, " %8ld transmitted frames (TXF)\n", can_stats->tx_frames);
219	seq_printf(m, " %8ld received frames (RXF)\n", can_stats->rx_frames);
220	seq_printf(m, " %8ld matched frames (RXMF)\n", can_stats->matches);
221
222	seq_putc(m, '\n');
223
224	if (net->can.can_stattimer.function == can_stat_update) {
225		seq_printf(m, " %8ld %% total match ratio (RXMR)\n",
226				can_stats->total_rx_match_ratio);
227
228		seq_printf(m, " %8ld frames/s total tx rate (TXR)\n",
229				can_stats->total_tx_rate);
230		seq_printf(m, " %8ld frames/s total rx rate (RXR)\n",
231				can_stats->total_rx_rate);
232
233		seq_putc(m, '\n');
234
235		seq_printf(m, " %8ld %% current match ratio (CRXMR)\n",
236				can_stats->current_rx_match_ratio);
237
238		seq_printf(m, " %8ld frames/s current tx rate (CTXR)\n",
239				can_stats->current_tx_rate);
240		seq_printf(m, " %8ld frames/s current rx rate (CRXR)\n",
241				can_stats->current_rx_rate);
242
243		seq_putc(m, '\n');
244
245		seq_printf(m, " %8ld %% max match ratio (MRXMR)\n",
246				can_stats->max_rx_match_ratio);
247
248		seq_printf(m, " %8ld frames/s max tx rate (MTXR)\n",
249				can_stats->max_tx_rate);
250		seq_printf(m, " %8ld frames/s max rx rate (MRXR)\n",
251				can_stats->max_rx_rate);
252
253		seq_putc(m, '\n');
254	}
255
256	seq_printf(m, " %8ld current receive list entries (CRCV)\n",
257			can_pstats->rcv_entries);
258	seq_printf(m, " %8ld maximum receive list entries (MRCV)\n",
259			can_pstats->rcv_entries_max);
260
261	if (can_pstats->stats_reset)
262		seq_printf(m, "\n %8ld statistic resets (STR)\n",
263				can_pstats->stats_reset);
264
265	if (can_pstats->user_reset)
266		seq_printf(m, " %8ld user statistic resets (USTR)\n",
267				can_pstats->user_reset);
268
269	seq_putc(m, '\n');
270	return 0;
271}
272
273static int can_stats_proc_open(struct inode *inode, struct file *file)
274{
275	return single_open_net(inode, file, can_stats_proc_show);
276}
277
278static const struct file_operations can_stats_proc_fops = {
279	.open		= can_stats_proc_open,
280	.read		= seq_read,
281	.llseek		= seq_lseek,
282	.release	= single_release,
283};
284
285static int can_reset_stats_proc_show(struct seq_file *m, void *v)
286{
287	struct net *net = m->private;
288	struct s_pstats *can_pstats = net->can.can_pstats;
289	struct s_stats *can_stats = net->can.can_stats;
290
291	user_reset = 1;
292
293	if (net->can.can_stattimer.function == can_stat_update) {
294		seq_printf(m, "Scheduled statistic reset #%ld.\n",
295				can_pstats->stats_reset + 1);
296	} else {
297		if (can_stats->jiffies_init != jiffies)
298			can_init_stats(net);
299
300		seq_printf(m, "Performed statistic reset #%ld.\n",
301				can_pstats->stats_reset);
302	}
303	return 0;
304}
305
306static int can_reset_stats_proc_open(struct inode *inode, struct file *file)
307{
308	return single_open_net(inode, file, can_reset_stats_proc_show);
309}
310
311static const struct file_operations can_reset_stats_proc_fops = {
312	.open		= can_reset_stats_proc_open,
313	.read		= seq_read,
314	.llseek		= seq_lseek,
315	.release	= single_release,
316};
317
318static int can_version_proc_show(struct seq_file *m, void *v)
319{
320	seq_printf(m, "%s\n", CAN_VERSION_STRING);
321	return 0;
322}
323
324static int can_version_proc_open(struct inode *inode, struct file *file)
325{
326	return single_open_net(inode, file, can_version_proc_show);
327}
328
329static const struct file_operations can_version_proc_fops = {
330	.open		= can_version_proc_open,
331	.read		= seq_read,
332	.llseek		= seq_lseek,
333	.release	= single_release,
334};
335
336static inline void can_rcvlist_proc_show_one(struct seq_file *m, int idx,
337					     struct net_device *dev,
338					     struct can_dev_rcv_lists *d)
339{
340	if (!hlist_empty(&d->rx[idx])) {
341		can_print_recv_banner(m);
342		can_print_rcvlist(m, &d->rx[idx], dev);
343	} else
344		seq_printf(m, "  (%s: no entry)\n", DNAME(dev));
345
346}
347
348static int can_rcvlist_proc_show(struct seq_file *m, void *v)
349{
350	/* double cast to prevent GCC warning */
351	int idx = (int)(long)PDE_DATA(m->file->f_inode);
352	struct net_device *dev;
353	struct can_dev_rcv_lists *d;
354	struct net *net = m->private;
355
356	seq_printf(m, "\nreceive list '%s':\n", rx_list_name[idx]);
357
358	rcu_read_lock();
359
360	/* receive list for 'all' CAN devices (dev == NULL) */
361	d = net->can.can_rx_alldev_list;
362	can_rcvlist_proc_show_one(m, idx, NULL, d);
363
364	/* receive list for registered CAN devices */
365	for_each_netdev_rcu(net, dev) {
366		if (dev->type == ARPHRD_CAN && dev->ml_priv)
367			can_rcvlist_proc_show_one(m, idx, dev, dev->ml_priv);
 
 
 
368	}
369
370	rcu_read_unlock();
371
372	seq_putc(m, '\n');
373	return 0;
374}
375
376static int can_rcvlist_proc_open(struct inode *inode, struct file *file)
377{
378	return single_open_net(inode, file, can_rcvlist_proc_show);
379}
380
381static const struct file_operations can_rcvlist_proc_fops = {
382	.open		= can_rcvlist_proc_open,
383	.read		= seq_read,
384	.llseek		= seq_lseek,
385	.release	= single_release,
386};
387
388static inline void can_rcvlist_proc_show_array(struct seq_file *m,
389					       struct net_device *dev,
390					       struct hlist_head *rcv_array,
391					       unsigned int rcv_array_sz)
392{
393	unsigned int i;
394	int all_empty = 1;
395
396	/* check whether at least one list is non-empty */
397	for (i = 0; i < rcv_array_sz; i++)
398		if (!hlist_empty(&rcv_array[i])) {
399			all_empty = 0;
400			break;
401		}
402
403	if (!all_empty) {
404		can_print_recv_banner(m);
405		for (i = 0; i < rcv_array_sz; i++) {
406			if (!hlist_empty(&rcv_array[i]))
407				can_print_rcvlist(m, &rcv_array[i], dev);
408		}
409	} else
410		seq_printf(m, "  (%s: no entry)\n", DNAME(dev));
411}
412
413static int can_rcvlist_sff_proc_show(struct seq_file *m, void *v)
414{
415	struct net_device *dev;
416	struct can_dev_rcv_lists *d;
417	struct net *net = m->private;
418
419	/* RX_SFF */
420	seq_puts(m, "\nreceive list 'rx_sff':\n");
421
422	rcu_read_lock();
423
424	/* sff receive list for 'all' CAN devices (dev == NULL) */
425	d = net->can.can_rx_alldev_list;
426	can_rcvlist_proc_show_array(m, NULL, d->rx_sff, ARRAY_SIZE(d->rx_sff));
 
427
428	/* sff receive list for registered CAN devices */
429	for_each_netdev_rcu(net, dev) {
430		if (dev->type == ARPHRD_CAN && dev->ml_priv) {
431			d = dev->ml_priv;
432			can_rcvlist_proc_show_array(m, dev, d->rx_sff,
433						    ARRAY_SIZE(d->rx_sff));
 
 
434		}
435	}
436
437	rcu_read_unlock();
438
439	seq_putc(m, '\n');
440	return 0;
441}
442
443static int can_rcvlist_sff_proc_open(struct inode *inode, struct file *file)
444{
445	return single_open_net(inode, file, can_rcvlist_sff_proc_show);
446}
447
448static const struct file_operations can_rcvlist_sff_proc_fops = {
449	.open		= can_rcvlist_sff_proc_open,
450	.read		= seq_read,
451	.llseek		= seq_lseek,
452	.release	= single_release,
453};
454
455
456static int can_rcvlist_eff_proc_show(struct seq_file *m, void *v)
457{
458	struct net_device *dev;
459	struct can_dev_rcv_lists *d;
460	struct net *net = m->private;
461
462	/* RX_EFF */
463	seq_puts(m, "\nreceive list 'rx_eff':\n");
464
465	rcu_read_lock();
466
467	/* eff receive list for 'all' CAN devices (dev == NULL) */
468	d = net->can.can_rx_alldev_list;
469	can_rcvlist_proc_show_array(m, NULL, d->rx_eff, ARRAY_SIZE(d->rx_eff));
 
470
471	/* eff receive list for registered CAN devices */
472	for_each_netdev_rcu(net, dev) {
473		if (dev->type == ARPHRD_CAN && dev->ml_priv) {
474			d = dev->ml_priv;
475			can_rcvlist_proc_show_array(m, dev, d->rx_eff,
476						    ARRAY_SIZE(d->rx_eff));
 
 
477		}
478	}
479
480	rcu_read_unlock();
481
482	seq_putc(m, '\n');
483	return 0;
484}
485
486static int can_rcvlist_eff_proc_open(struct inode *inode, struct file *file)
487{
488	return single_open_net(inode, file, can_rcvlist_eff_proc_show);
489}
490
491static const struct file_operations can_rcvlist_eff_proc_fops = {
492	.open		= can_rcvlist_eff_proc_open,
493	.read		= seq_read,
494	.llseek		= seq_lseek,
495	.release	= single_release,
496};
497
498/*
499 * can_init_proc - create main CAN proc directory and procfs entries
500 */
501void can_init_proc(struct net *net)
502{
503	/* create /proc/net/can directory */
504	net->can.proc_dir = proc_net_mkdir(net, "can", net->proc_net);
505
506	if (!net->can.proc_dir) {
507		printk(KERN_INFO "can: failed to create /proc/net/can . "
508			   "CONFIG_PROC_FS missing?\n");
509		return;
510	}
511
512	/* own procfs entries from the AF_CAN core */
513	net->can.pde_version     = proc_create(CAN_PROC_VERSION, 0644,
514					       net->can.proc_dir,
515					       &can_version_proc_fops);
516	net->can.pde_stats       = proc_create(CAN_PROC_STATS, 0644,
517					       net->can.proc_dir,
518					       &can_stats_proc_fops);
519	net->can.pde_reset_stats = proc_create(CAN_PROC_RESET_STATS, 0644,
520					       net->can.proc_dir,
521					       &can_reset_stats_proc_fops);
522	net->can.pde_rcvlist_err = proc_create_data(CAN_PROC_RCVLIST_ERR, 0644,
523						    net->can.proc_dir,
524						    &can_rcvlist_proc_fops,
525						    (void *)RX_ERR);
526	net->can.pde_rcvlist_all = proc_create_data(CAN_PROC_RCVLIST_ALL, 0644,
527						    net->can.proc_dir,
528						    &can_rcvlist_proc_fops,
529						    (void *)RX_ALL);
530	net->can.pde_rcvlist_fil = proc_create_data(CAN_PROC_RCVLIST_FIL, 0644,
531						    net->can.proc_dir,
532						    &can_rcvlist_proc_fops,
533						    (void *)RX_FIL);
534	net->can.pde_rcvlist_inv = proc_create_data(CAN_PROC_RCVLIST_INV, 0644,
535						    net->can.proc_dir,
536						    &can_rcvlist_proc_fops,
537						    (void *)RX_INV);
538	net->can.pde_rcvlist_eff = proc_create(CAN_PROC_RCVLIST_EFF, 0644,
539					       net->can.proc_dir,
540					       &can_rcvlist_eff_proc_fops);
541	net->can.pde_rcvlist_sff = proc_create(CAN_PROC_RCVLIST_SFF, 0644,
542					       net->can.proc_dir,
543					       &can_rcvlist_sff_proc_fops);
544}
545
546/*
547 * can_remove_proc - remove procfs entries and main CAN proc directory
548 */
549void can_remove_proc(struct net *net)
550{
551	if (net->can.pde_version)
552		remove_proc_entry(CAN_PROC_VERSION, net->can.proc_dir);
553
554	if (net->can.pde_stats)
555		remove_proc_entry(CAN_PROC_STATS, net->can.proc_dir);
556
557	if (net->can.pde_reset_stats)
558		remove_proc_entry(CAN_PROC_RESET_STATS, net->can.proc_dir);
559
560	if (net->can.pde_rcvlist_err)
561		remove_proc_entry(CAN_PROC_RCVLIST_ERR, net->can.proc_dir);
562
563	if (net->can.pde_rcvlist_all)
564		remove_proc_entry(CAN_PROC_RCVLIST_ALL, net->can.proc_dir);
565
566	if (net->can.pde_rcvlist_fil)
567		remove_proc_entry(CAN_PROC_RCVLIST_FIL, net->can.proc_dir);
568
569	if (net->can.pde_rcvlist_inv)
570		remove_proc_entry(CAN_PROC_RCVLIST_INV, net->can.proc_dir);
571
572	if (net->can.pde_rcvlist_eff)
573		remove_proc_entry(CAN_PROC_RCVLIST_EFF, net->can.proc_dir);
574
575	if (net->can.pde_rcvlist_sff)
576		remove_proc_entry(CAN_PROC_RCVLIST_SFF, net->can.proc_dir);
577
578	if (net->can.proc_dir)
579		remove_proc_entry("can", net->proc_net);
580}