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1 #!/bin/sh
2 # Begin $rc_base/init.d/unbound
3
4 # Description : Unbound DNS resolver boot script for IPfire
5 # Author : Marcel Lorenz <marcel.lorenz@ipfire.org>
6
7 . /etc/sysconfig/rc
8 . ${rc_functions}
9
10 TEST_DOMAIN="ipfire.org"
11
12 # This domain will never validate
13 TEST_DOMAIN_FAIL="dnssec-failed.org"
14
15 INSECURE_ZONES=
16 USE_FORWARDERS=1
17
18 # Cache any local zones for 60 seconds
19 LOCAL_TTL=60
20
21 # EDNS buffer size
22 EDNS_DEFAULT_BUFFER_SIZE=4096
23
24 # Load optional configuration
25 [ -e "/etc/sysconfig/unbound" ] && . /etc/sysconfig/unbound
26
27 function cidr() {
28 local cidr nbits IFS;
29 IFS=. read -r i1 i2 i3 i4 <<< ${1}
30 IFS=. read -r m1 m2 m3 m4 <<< ${2}
31 cidr=$(printf "%d.%d.%d.%d\n" "$((i1 & m1))" "$((i2 & m2))" "$((i3 & m3))" "$((i4 & m4))")
32 nbits=0
33 IFS=.
34 for dec in $2 ; do
35 case $dec in
36 255) let nbits+=8;;
37 254) let nbits+=7;;
38 252) let nbits+=6;;
39 248) let nbits+=5;;
40 240) let nbits+=4;;
41 224) let nbits+=3;;
42 192) let nbits+=2;;
43 128) let nbits+=1;;
44 0);;
45 *) echo "Error: $dec is not recognised"; exit 1
46 esac
47 done
48 echo "${cidr}/${nbits}"
49 }
50
51 ip_address_revptr() {
52 local addr=${1}
53
54 local a1 a2 a3 a4
55 IFS=. read -r a1 a2 a3 a4 <<< ${addr}
56
57 echo "${a4}.${a3}.${a2}.${a1}.in-addr.arpa"
58 }
59
60 read_name_servers() {
61 local i
62 for i in 1 2; do
63 echo "$(</var/ipfire/red/dns${i})"
64 done 2>/dev/null | xargs echo
65 }
66
67 config_header() {
68 echo "# This file is automatically generated and any changes"
69 echo "# will be overwritten. DO NOT EDIT!"
70 echo
71 }
72
73 update_forwarders() {
74 if [ "${USE_FORWARDERS}" = "1" -a -e "/var/ipfire/red/active" ]; then
75 local forwarders
76 local broken_forwarders
77
78 local ns
79 for ns in $(read_name_servers); do
80 test_name_server ${ns} &>/dev/null
81 case "$?" in
82 # Only use DNSSEC-validating or DNSSEC-aware name servers
83 0|2)
84 forwarders="${forwarders} ${ns}"
85 ;;
86 *)
87 broken_forwarders="${broken_forwarders} ${ns}"
88 ;;
89 esac
90 done
91
92 # Determine EDNS buffer size
93 local new_edns_buffer_size=${EDNS_DEFAULT_BUFFER_SIZE}
94
95 for ns in ${forwarders}; do
96 local edns_buffer_size=$(ns_determine_edns_buffer_size ${ns})
97 if [ -n "${edns_buffer_size}" ]; then
98 if [ ${edns_buffer_size} -lt ${new_edns_buffer_size} ]; then
99 new_edns_buffer_size=${edns_buffer_size}
100 fi
101 fi
102 done
103
104 if [ ${new_edns_buffer_size} -lt ${EDNS_DEFAULT_BUFFER_SIZE} ]; then
105 boot_mesg "EDNS buffer size reduced to ${new_edns_buffer_size}" ${WARNING}
106 echo_warning
107
108 unbound-control -q set_option edns-buffer-size: ${new_edns_buffer_size}
109 fi
110
111 # Show warning for any broken upstream name servers
112 if [ -n "${broken_forwarders}" ]; then
113 boot_mesg "Ignoring broken upstream name server(s): ${broken_forwarders:1}" ${WARNING}
114 echo_warning
115 fi
116
117 if [ -n "${forwarders}" ]; then
118 boot_mesg "Configuring upstream name server(s): ${forwarders:1}" ${INFO}
119 echo_ok
120
121 # Make sure DNSSEC is activated
122 enable_dnssec
123
124 echo "${forwarders}" > /var/ipfire/red/dns
125 unbound-control -q forward ${forwarders}
126 return 0
127
128 # In case we have found no working forwarders
129 else
130 # Test if the recursor mode is available
131 if can_resolve_root +bufsize=${new_edns_buffer_size}; then
132 # Make sure DNSSEC is activated
133 enable_dnssec
134
135 boot_mesg "Falling back to recursor mode" ${WARNING}
136 echo_warning
137
138 # If not, we set DNSSEC in permissive mode and allow using all recursors
139 elif [ -n "${broken_forwarders}" ]; then
140 disable_dnssec
141
142 boot_mesg "DNSSEC has been set to permissive mode" ${FAILURE}
143 echo_failure
144
145 echo "${broken_forwarders}" > /var/ipfire/red/dns
146 unbound-control -q forward ${broken_forwarders}
147 return 0
148 fi
149 fi
150 fi
151
152 # If forwarders cannot be used we run in recursor mode
153 echo "local recursor" > /var/ipfire/red/dns
154 unbound-control -q forward off
155 }
156
157 own_hostname() {
158 local hostname=$(hostname -f)
159 # 1.1.1.1 is reserved for unused green, skip this
160 if [ -n "${GREEN_ADDRESS}" -a "${GREEN_ADDRESS}" != "1.1.1.1" ]; then
161 unbound-control -q local_data "${hostname} ${LOCAL_TTL} IN A ${GREEN_ADDRESS}"
162 fi
163
164 local address
165 for address in ${GREEN_ADDRESS} ${BLUE_ADDRESS} ${ORANGE_ADDRESS}; do
166 [ -n "${address}" ] || continue
167 [ "${address}" = "1.1.1.1" ] && continue
168
169 address=$(ip_address_revptr ${address})
170 unbound-control -q local_data "${address} ${LOCAL_TTL} IN PTR ${hostname}"
171 done
172 }
173
174 update_hosts() {
175 local enabled address hostname domainname
176
177 while IFS="," read -r enabled address hostname domainname; do
178 [ "${enabled}" = "on" ] || continue
179
180 # Build FQDN
181 local fqdn="${hostname}.${domainname}"
182
183 unbound-control -q local_data "${fqdn} ${LOCAL_TTL} IN A ${address}"
184
185 # Skip reverse resolution if the address equals the GREEN address
186 [ "${address}" = "${GREEN_ADDRESS}" ] && continue
187
188 # Add RDNS
189 address=$(ip_address_revptr ${address})
190 unbound-control -q local_data "${address} ${LOCAL_TTL} IN PTR ${fqdn}"
191 done < /var/ipfire/main/hosts
192 }
193
194 write_forward_conf() {
195 (
196 config_header
197
198 local insecure_zones="${INSECURE_ZONES}"
199
200 local enabled zone server remark
201 while IFS="," read -r enabled zone server remark; do
202 # Line must be enabled.
203 [ "${enabled}" = "on" ] || continue
204
205 # Zones that end with .local are commonly used for internal
206 # zones and therefore not signed
207 case "${zone}" in
208 *.local)
209 insecure_zones="${insecure_zones} ${zone}"
210 ;;
211 esac
212
213 # Reverse-lookup zones must be stubs
214 case "${zone}" in
215 *.in-addr.arpa)
216 echo "stub-zone:"
217 echo " name: ${zone}."
218 echo " stub-addr: ${server}"
219 echo
220 echo "server:"
221 echo " local-zone: \"${zone}.\" transparent"
222 echo
223 ;;
224 *)
225 echo "forward-zone:"
226 echo " name: ${zone}."
227 echo " forward-addr: ${server}"
228 echo
229 ;;
230 esac
231 done < /var/ipfire/dnsforward/config
232
233 if [ -n "${insecure_zones}" ]; then
234 echo "server:"
235
236 for zone in ${insecure_zones}; do
237 echo " domain-insecure: ${zone}"
238 done
239 fi
240 ) > /etc/unbound/forward.conf
241 }
242
243 write_tuning_conf() {
244 # https://www.unbound.net/documentation/howto_optimise.html
245
246 # Determine number of online processors
247 local processors=$(getconf _NPROCESSORS_ONLN)
248
249 # Determine number of slabs
250 local slabs=1
251 while [ ${slabs} -lt ${processors} ]; do
252 slabs=$(( ${slabs} * 2 ))
253 done
254
255 # Determine amount of system memory
256 local mem=$(get_memory_amount)
257
258 # In the worst case scenario, unbound can use double the
259 # amount of memory allocated to a cache due to malloc overhead
260
261 # Even larger systems with more than 8GB of RAM
262 if [ ${mem} -ge 8192 ]; then
263 mem=1024
264
265 # Extra large systems with more than 4GB of RAM
266 elif [ ${mem} -ge 4096 ]; then
267 mem=512
268
269 # Large systems with more than 2GB of RAM
270 elif [ ${mem} -ge 2048 ]; then
271 mem=256
272
273 # Medium systems with more than 1GB of RAM
274 elif [ ${mem} -ge 1024 ]; then
275 mem=128
276
277 # Small systems with less than 256MB of RAM
278 elif [ ${mem} -le 256 ]; then
279 mem=16
280
281 # Everything else
282 else
283 mem=64
284 fi
285
286 (
287 config_header
288
289 # We run one thread per processor
290 echo "num-threads: ${processors}"
291 echo "so-reuseport: yes"
292
293 # Adjust number of slabs
294 echo "infra-cache-slabs: ${slabs}"
295 echo "key-cache-slabs: ${slabs}"
296 echo "msg-cache-slabs: ${slabs}"
297 echo "rrset-cache-slabs: ${slabs}"
298
299 # Slice up the cache
300 echo "rrset-cache-size: $(( ${mem} / 2 ))m"
301 echo "msg-cache-size: $(( ${mem} / 4 ))m"
302 echo "key-cache-size: $(( ${mem} / 4 ))m"
303
304 # Increase parallel queries
305 echo "outgoing-range: 8192"
306 echo "num-queries-per-thread: 4096"
307
308 # Use larger send/receive buffers
309 echo "so-sndbuf: 4m"
310 echo "so-rcvbuf: 4m"
311 ) > /etc/unbound/tuning.conf
312 }
313
314 get_memory_amount() {
315 local key val unit
316
317 while read -r key val unit; do
318 case "${key}" in
319 MemTotal:*)
320 # Convert to MB
321 echo "$(( ${val} / 1024 ))"
322 break
323 ;;
324 esac
325 done < /proc/meminfo
326 }
327
328 test_name_server() {
329 local ns=${1}
330 local args
331
332 # Return codes:
333 # 0 DNSSEC validating
334 # 1 Error: unreachable, etc.
335 # 2 DNSSEC aware
336 # 3 NOT DNSSEC-aware
337
338 # Exit when the server is not reachable
339 ns_is_online ${ns} || return 1
340
341 # Determine the maximum edns buffer size that works
342 local edns_buffer_size=$(ns_determine_edns_buffer_size ${ns})
343 if [ -n "${edns_buffer_size}" ]; then
344 args="${args} +bufsize=${edns_buffer_size}"
345 fi
346
347 local errors
348 for rr in DNSKEY DS RRSIG; do
349 if ! ns_forwards_${rr} ${ns} ${args}; then
350 errors="${errors} ${rr}"
351 fi
352 done
353
354 if [ -n "${errors}" ]; then
355 echo >&2 "Unable to retrieve the following resource records from ${ns}: ${errors:1}"
356 return 3
357 fi
358
359 if ns_is_validating ${ns} ${args}; then
360 # Return 0 if validating
361 return 0
362 else
363 # Is DNSSEC-aware
364 return 2
365 fi
366 }
367
368 # Sends an A query to the nameserver w/o DNSSEC
369 ns_is_online() {
370 local ns=${1}
371 shift
372
373 dig @${ns} +nodnssec A ${TEST_DOMAIN} $@ >/dev/null
374 }
375
376 # Resolving ${TEST_DOMAIN_FAIL} will fail if the nameserver is validating
377 ns_is_validating() {
378 local ns=${1}
379 shift
380
381 dig @${ns} A ${TEST_DOMAIN_FAIL} $@ | grep -q SERVFAIL
382 }
383
384 # Checks if we can retrieve the DNSKEY for this domain.
385 # dig will print the SOA if nothing was found
386 ns_forwards_DNSKEY() {
387 local ns=${1}
388 shift
389
390 dig @${ns} DNSKEY ${TEST_DOMAIN} $@ | grep -qv SOA
391 }
392
393 ns_forwards_DS() {
394 local ns=${1}
395 shift
396
397 dig @${ns} DS ${TEST_DOMAIN} $@ | grep -qv SOA
398 }
399
400 ns_forwards_RRSIG() {
401 local ns=${1}
402 shift
403
404 dig @${ns} +dnssec A ${TEST_DOMAIN} $@ | grep -q RRSIG
405 }
406
407 ns_supports_tcp() {
408 local ns=${1}
409 shift
410
411 dig @${ns} +tcp A ${TEST_DOMAIN} $@ >/dev/null || return 1
412 }
413
414 ns_determine_edns_buffer_size() {
415 local ns=${1}
416 shift
417
418 local b
419 for b in 4096 2048 1500 1480 1464 1400 1280 512; do
420 if dig @${ns} +dnssec +bufsize=${b} A ${TEST_DOMAIN} $@ >/dev/null; then
421 echo "${b}"
422 return 0
423 fi
424 done
425
426 return 1
427 }
428
429 get_root_nameservers() {
430 while read -r hostname ttl record address; do
431 # Searching for A records
432 [ "${record}" = "A" ] || continue
433
434 echo "${address}"
435 done < /etc/unbound/root.hints
436 }
437
438 can_resolve_root() {
439 local ns
440 for ns in $(get_root_nameservers); do
441 if dig @${ns} +dnssec SOA . $@ >/dev/null; then
442 return 0
443 fi
444 done
445
446 # none of the servers was reachable
447 return 1
448 }
449
450 enable_dnssec() {
451 local status=$(unbound-control get_option val-permissive-mode)
452
453 # Log DNSSEC status
454 echo "on" > /var/ipfire/red/dnssec-status
455
456 # Don't do anything if DNSSEC is already activated
457 [ "${status}" = "no" ] && return 0
458
459 # Activate DNSSEC and flush cache with any stale and unvalidated data
460 unbound-control -q set_option val-permissive-mode: no
461 unbound-control -q flush_zone .
462 }
463
464 disable_dnssec() {
465 # Log DNSSEC status
466 echo "off" > /var/ipfire/red/dnssec-status
467
468 unbound-control -q set_option val-permissive-mode: yes
469 }
470
471 fix_time_if_dns_fail() {
472 # If DNS still not work try to init ntp with
473 # hardcoded ntp.ipfire.org (81.3.27.46)
474 if [ -e /var/ipfire/red/active ]; then
475 host 0.ipfire.pool.ntp.org > /dev/null 2>&1
476 if [ "${?}" != "0" ]; then
477 boot_mesg "DNS still not work ... init time with ntp.ipfire.org at 81.3.27.46 ..."
478 loadproc /usr/local/bin/settime 81.3.27.46
479 fi
480 fi
481 }
482
483 case "$1" in
484 start)
485 # Print a nicer messagen when unbound is already running
486 if pidofproc -s unbound; then
487 statusproc /usr/sbin/unbound
488 exit 0
489 fi
490
491 eval $(/usr/local/bin/readhash /var/ipfire/ethernet/settings)
492
493 # Create control keys at first run
494 if [ ! -r "/etc/unbound/unbound_control.key" ]; then
495 unbound-control-setup -d /etc/unbound &>/dev/null
496 fi
497
498 # Update configuration files
499 write_tuning_conf
500 write_forward_conf
501
502 boot_mesg "Starting Unbound DNS Proxy..."
503 loadproc /usr/sbin/unbound || exit $?
504
505 # Make own hostname resolveable
506 own_hostname
507
508 # Update any known forwarding name servers
509 update_forwarders
510
511 # Update hosts
512 update_hosts
513
514 fix_time_if_dns_fail
515 ;;
516
517 stop)
518 boot_mesg "Stopping Unbound DNS Proxy..."
519 killproc /usr/sbin/unbound
520 ;;
521
522 restart)
523 $0 stop
524 sleep 1
525 $0 start
526 ;;
527
528 status)
529 statusproc /usr/sbin/unbound
530 ;;
531
532 update-forwarders)
533 # Do not try updating forwarders when unbound is not running
534 if ! pgrep unbound &>/dev/null; then
535 exit 0
536 fi
537
538 update_forwarders
539
540 unbound-control flush_negative > /dev/null
541 unbound-control flush_bogus > /dev/null
542
543 fix_time_if_dns_fail
544 ;;
545
546 test-name-server)
547 ns=${2}
548
549 test_name_server ${ns}
550 ret=${?}
551
552 case "${ret}" in
553 0)
554 echo "${ns} is validating"
555 ;;
556 2)
557 echo "${ns} is DNSSEC-aware"
558 ;;
559 3)
560 echo "${ns} is NOT DNSSEC-aware"
561 ;;
562 *)
563 echo "Test failed for an unknown reason"
564 exit ${ret}
565 ;;
566 esac
567
568 if ns_supports_tcp ${ns}; then
569 echo "${ns} supports TCP fallback"
570 else
571 echo "${ns} does not support TCP fallback"
572 fi
573
574 edns_buffer_size=$(ns_determine_edns_buffer_size ${ns})
575 if [ -n "${edns_buffer_size}" ]; then
576 echo "EDNS buffer size for ${ns}: ${edns_buffer_size}"
577 fi
578
579 exit ${ret}
580 ;;
581
582 *)
583 echo "Usage: $0 {start|stop|restart|status|update-forwarders|test-name-server}"
584 exit 1
585 ;;
586 esac
587
588 # End $rc_base/init.d/unbound