throughput.c revision 50479
1/*-
2 * Copyright (c) 1997 Brian Somers <brian@Awfulhak.org>
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 *    notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 *    notice, this list of conditions and the following disclaimer in the
12 *    documentation and/or other materials provided with the distribution.
13 *
14 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
15 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
16 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
17 * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
18 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
19 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
20 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
21 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
22 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
23 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
24 * SUCH DAMAGE.
25 *
26 * $FreeBSD: head/usr.sbin/ppp/throughput.c 50479 1999-08-28 01:35:59Z peter $
27 */
28
29#include <sys/types.h>
30
31#include <stdio.h>
32#include <stdlib.h>
33#include <string.h>
34#include <termios.h>
35#include <time.h>
36
37#include "log.h"
38#include "timer.h"
39#include "throughput.h"
40#include "descriptor.h"
41#include "prompt.h"
42
43void
44throughput_init(struct pppThroughput *t, int period)
45{
46  t->OctetsIn = t->OctetsOut = 0;
47  t->SamplePeriod = period;
48  t->SampleOctets = (long long *)calloc(period, sizeof *t->SampleOctets);
49  t->OctetsPerSecond = t->BestOctetsPerSecond = 0;
50  t->nSample = 0;
51  time(&t->BestOctetsPerSecondTime);
52  memset(&t->Timer, '\0', sizeof t->Timer);
53  t->Timer.name = "throughput";
54  t->uptime = 0;
55  t->downtime = 0;
56  t->rolling = 0;
57  t->callback.data = NULL;
58  t->callback.fn = NULL;
59  throughput_stop(t);
60}
61
62void
63throughput_destroy(struct pppThroughput *t)
64{
65  if (t && t->SampleOctets) {
66    throughput_stop(t);
67    free(t->SampleOctets);
68    t->SampleOctets = 0;
69  }
70}
71
72int
73throughput_uptime(struct pppThroughput *t)
74{
75  time_t downat;
76
77  downat = t->downtime ? t->downtime : time(NULL);
78  if (t->uptime && downat < t->uptime) {
79    /* Euch !  The clock's gone back ! */
80    int i;
81
82    for (i = 0; i < t->SamplePeriod; i++)
83      t->SampleOctets[i] = 0;
84    t->nSample = 0;
85    t->uptime = downat;
86  }
87  return t->uptime ? downat - t->uptime : 0;
88}
89
90void
91throughput_disp(struct pppThroughput *t, struct prompt *prompt)
92{
93  int secs_up, divisor;
94
95  secs_up = throughput_uptime(t);
96  prompt_Printf(prompt, "Connect time: %d:%02d:%02d", secs_up / 3600,
97                (secs_up / 60) % 60, secs_up % 60);
98  if (t->downtime)
99    prompt_Printf(prompt, " - down at %s", ctime(&t->downtime));
100  else
101    prompt_Printf(prompt, "\n");
102
103  divisor = secs_up ? secs_up : 1;
104  prompt_Printf(prompt, "%llu octets in, %llu octets out\n",
105                t->OctetsIn, t->OctetsOut);
106  if (t->rolling) {
107    prompt_Printf(prompt, "  overall   %6qu bytes/sec\n",
108                  (t->OctetsIn + t->OctetsOut) / divisor);
109    prompt_Printf(prompt, "  %s %6qu bytes/sec (over the last"
110                  " %d secs)\n", t->downtime ? "average  " : "currently",
111                  t->OctetsPerSecond,
112                  secs_up > t->SamplePeriod ? t->SamplePeriod : secs_up);
113    prompt_Printf(prompt, "  peak      %6qu bytes/sec on %s",
114                  t->BestOctetsPerSecond, ctime(&t->BestOctetsPerSecondTime));
115  } else
116    prompt_Printf(prompt, "Overall %llu bytes/sec\n",
117                  (t->OctetsIn + t->OctetsOut) / divisor);
118}
119
120
121void
122throughput_log(struct pppThroughput *t, int level, const char *title)
123{
124  if (t->uptime) {
125    int secs_up;
126
127    secs_up = throughput_uptime(t);
128    if (title)
129      log_Printf(level, "%s: Connect time: %d secs: %llu octets in, %llu octets"
130                " out\n", title, secs_up, t->OctetsIn, t->OctetsOut);
131    else
132      log_Printf(level, "Connect time: %d secs: %llu octets in,"
133                 " %llu octets out\n", secs_up, t->OctetsIn, t->OctetsOut);
134    if (secs_up == 0)
135      secs_up = 1;
136    if (t->rolling)
137      log_Printf(level, " total %llu bytes/sec, peak %llu bytes/sec on %s",
138                 (t->OctetsIn + t->OctetsOut) / secs_up, t->BestOctetsPerSecond,
139                 ctime(&t->BestOctetsPerSecondTime));
140    else
141      log_Printf(level, " total %llu bytes/sec\n",
142                 (t->OctetsIn + t->OctetsOut) / secs_up);
143  }
144}
145
146static void
147throughput_sampler(void *v)
148{
149  struct pppThroughput *t = (struct pppThroughput *)v;
150  unsigned long long old;
151  int uptime, divisor;
152
153  timer_Stop(&t->Timer);
154
155  uptime = throughput_uptime(t);
156  divisor = uptime < t->SamplePeriod ? uptime + 1 : t->SamplePeriod;
157  old = t->SampleOctets[t->nSample];
158  t->SampleOctets[t->nSample] = t->OctetsIn + t->OctetsOut;
159  t->OctetsPerSecond = (t->SampleOctets[t->nSample] - old) / divisor;
160  if (t->BestOctetsPerSecond < t->OctetsPerSecond) {
161    t->BestOctetsPerSecond = t->OctetsPerSecond;
162    time(&t->BestOctetsPerSecondTime);
163  }
164  if (++t->nSample == t->SamplePeriod)
165    t->nSample = 0;
166
167  if (t->callback.fn != NULL && uptime >= t->SamplePeriod)
168    (*t->callback.fn)(t->callback.data);
169
170  timer_Start(&t->Timer);
171}
172
173void
174throughput_start(struct pppThroughput *t, const char *name, int rolling)
175{
176  int i;
177  timer_Stop(&t->Timer);
178
179  for (i = 0; i < t->SamplePeriod; i++)
180    t->SampleOctets[i] = 0;
181  t->nSample = 0;
182  t->OctetsIn = t->OctetsOut = 0;
183  t->OctetsPerSecond = t->BestOctetsPerSecond = 0;
184  time(&t->BestOctetsPerSecondTime);
185  t->downtime = 0;
186  time(&t->uptime);
187  throughput_restart(t, name, rolling);
188}
189
190void
191throughput_restart(struct pppThroughput *t, const char *name, int rolling)
192{
193  timer_Stop(&t->Timer);
194  t->rolling = rolling ? 1 : 0;
195  if (t->rolling) {
196    t->Timer.load = SECTICKS;
197    t->Timer.func = throughput_sampler;
198    t->Timer.name = name;
199    t->Timer.arg = t;
200    timer_Start(&t->Timer);
201  } else {
202    t->Timer.load = 0;
203    t->Timer.func = NULL;
204    t->Timer.name = NULL;
205    t->Timer.arg = NULL;
206  }
207}
208
209void
210throughput_stop(struct pppThroughput *t)
211{
212  if (t->Timer.state != TIMER_STOPPED)
213    time(&t->downtime);
214  timer_Stop(&t->Timer);
215}
216
217void
218throughput_addin(struct pppThroughput *t, long long n)
219{
220  t->OctetsIn += n;
221}
222
223void
224throughput_addout(struct pppThroughput *t, long long n)
225{
226  t->OctetsOut += n;
227}
228
229void
230throughput_clear(struct pppThroughput *t, int clear_type, struct prompt *prompt)
231{
232  if (clear_type & (THROUGHPUT_OVERALL|THROUGHPUT_CURRENT)) {
233    int i;
234
235    for (i = 0; i < t->SamplePeriod; i++)
236      t->SampleOctets[i] = 0;
237    t->nSample = 0;
238  }
239
240  if (clear_type & THROUGHPUT_OVERALL) {
241    int divisor;
242
243    if ((divisor = throughput_uptime(t)) == 0)
244      divisor = 1;
245    prompt_Printf(prompt, "overall cleared (was %6qu bytes/sec)\n",
246                  (t->OctetsIn + t->OctetsOut) / divisor);
247    t->OctetsIn = t->OctetsOut = 0;
248    t->downtime = 0;
249    time(&t->uptime);
250  }
251
252  if (clear_type & THROUGHPUT_CURRENT) {
253    prompt_Printf(prompt, "current cleared (was %6qu bytes/sec)\n",
254                  t->OctetsPerSecond);
255    t->OctetsPerSecond = 0;
256  }
257
258  if (clear_type & THROUGHPUT_PEAK) {
259    char *time_buf, *last;
260
261    time_buf = ctime(&t->BestOctetsPerSecondTime);
262    last = time_buf + strlen(time_buf);
263    if (last > time_buf && *--last == '\n')
264      *last = '\0';
265    prompt_Printf(prompt, "peak    cleared (was %6qu bytes/sec on %s)\n",
266                  t->BestOctetsPerSecond, time_buf);
267    t->BestOctetsPerSecond = 0;
268    time(&t->BestOctetsPerSecondTime);
269  }
270}
271
272void
273throughput_callback(struct pppThroughput *t, void (*fn)(void *), void *data)
274{
275  t->callback.fn = fn;
276  t->callback.data = data;
277}
278