1 /*
2 * Copyright (C) 2011 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17 // #define LOG_NDEBUG 0
18
19 /*
20 * The CommandListener, FrameworkListener don't allow for
21 * multiple calls in parallel to reach the BandwidthController.
22 * If they ever were to allow it, then netd/ would need some tweaking.
23 */
24
25 #include <ctype.h>
26 #include <errno.h>
27 #include <fcntl.h>
28 #include <stdio.h>
29 #include <stdlib.h>
30 #include <string.h>
31 #include <string>
32 #include <vector>
33
34 #define __STDC_FORMAT_MACROS 1
35 #include <inttypes.h>
36
37 #include <sys/socket.h>
38 #include <sys/stat.h>
39 #include <sys/types.h>
40 #include <sys/wait.h>
41
42 #include <linux/netlink.h>
43 #include <linux/rtnetlink.h>
44 #include <linux/pkt_sched.h>
45
46 #include "android-base/stringprintf.h"
47 #include "android-base/strings.h"
48 #define LOG_TAG "BandwidthController"
49 #include <cutils/properties.h>
50 #include <log/log.h>
51 #include <logwrap/logwrap.h>
52
53 #include <netdutils/Syscalls.h>
54 #include "BandwidthController.h"
55 #include "Controllers.h"
56 #include "FirewallController.h" /* For makeCriticalCommands */
57 #include "Fwmark.h"
58 #include "NetdConstants.h"
59 #include "TrafficController.h"
60 #include "bpf/BpfUtils.h"
61
62 /* Alphabetical */
63 #define ALERT_IPT_TEMPLATE "%s %s -m quota2 ! --quota %" PRId64" --name %s\n"
64 const char BandwidthController::LOCAL_INPUT[] = "bw_INPUT";
65 const char BandwidthController::LOCAL_FORWARD[] = "bw_FORWARD";
66 const char BandwidthController::LOCAL_OUTPUT[] = "bw_OUTPUT";
67 const char BandwidthController::LOCAL_RAW_PREROUTING[] = "bw_raw_PREROUTING";
68 const char BandwidthController::LOCAL_MANGLE_POSTROUTING[] = "bw_mangle_POSTROUTING";
69 const char BandwidthController::LOCAL_GLOBAL_ALERT[] = "bw_global_alert";
70
71 auto BandwidthController::iptablesRestoreFunction = execIptablesRestoreWithOutput;
72
73 using android::base::Join;
74 using android::base::StringAppendF;
75 using android::base::StringPrintf;
76 using android::net::FirewallController;
77 using android::net::gCtls;
78 using android::netdutils::Status;
79 using android::netdutils::StatusOr;
80 using android::netdutils::UniqueFile;
81
82 namespace {
83
84 const char ALERT_GLOBAL_NAME[] = "globalAlert";
85 const std::string NEW_CHAIN_COMMAND = "-N ";
86
87 const char NAUGHTY_CHAIN[] = "bw_penalty_box";
88 const char NICE_CHAIN[] = "bw_happy_box";
89
90 /**
91 * Some comments about the rules:
92 * * Ordering
93 * - when an interface is marked as costly it should be INSERTED into the INPUT/OUTPUT chains.
94 * E.g. "-I bw_INPUT -i rmnet0 --jump costly"
95 * - quota'd rules in the costly chain should be before bw_penalty_box lookups.
96 * - the qtaguid counting is done at the end of the bw_INPUT/bw_OUTPUT user chains.
97 *
98 * * global quota vs per interface quota
99 * - global quota for all costly interfaces uses a single costly chain:
100 * . initial rules
101 * iptables -N bw_costly_shared
102 * iptables -I bw_INPUT -i iface0 --jump bw_costly_shared
103 * iptables -I bw_OUTPUT -o iface0 --jump bw_costly_shared
104 * iptables -I bw_costly_shared -m quota \! --quota 500000 \
105 * --jump REJECT --reject-with icmp-net-prohibited
106 * iptables -A bw_costly_shared --jump bw_penalty_box
107 * iptables -A bw_penalty_box --jump bw_happy_box
108 * iptables -A bw_happy_box --jump bw_data_saver
109 *
110 * . adding a new iface to this, E.g.:
111 * iptables -I bw_INPUT -i iface1 --jump bw_costly_shared
112 * iptables -I bw_OUTPUT -o iface1 --jump bw_costly_shared
113 *
114 * - quota per interface. This is achieve by having "costly" chains per quota.
115 * E.g. adding a new costly interface iface0 with its own quota:
116 * iptables -N bw_costly_iface0
117 * iptables -I bw_INPUT -i iface0 --jump bw_costly_iface0
118 * iptables -I bw_OUTPUT -o iface0 --jump bw_costly_iface0
119 * iptables -A bw_costly_iface0 -m quota \! --quota 500000 \
120 * --jump REJECT --reject-with icmp-port-unreachable
121 * iptables -A bw_costly_iface0 --jump bw_penalty_box
122 *
123 * * Penalty box, happy box and data saver.
124 * - bw_penalty box is a blacklist of apps that are rejected.
125 * - bw_happy_box is a whitelist of apps. It always includes all system apps
126 * - bw_data_saver implements data usage restrictions.
127 * - Via the UI the user can add and remove apps from the whitelist and
128 * blacklist, and turn on/off data saver.
129 * - The blacklist takes precedence over the whitelist and the whitelist
130 * takes precedence over data saver.
131 *
132 * * bw_penalty_box handling:
133 * - only one bw_penalty_box for all interfaces
134 * E.g Adding an app:
135 * iptables -I bw_penalty_box -m owner --uid-owner app_3 \
136 * --jump REJECT --reject-with icmp-port-unreachable
137 *
138 * * bw_happy_box handling:
139 * - The bw_happy_box comes after the penalty box.
140 * E.g Adding a happy app,
141 * iptables -I bw_happy_box -m owner --uid-owner app_3 \
142 * --jump RETURN
143 *
144 * * bw_data_saver handling:
145 * - The bw_data_saver comes after the happy box.
146 * Enable data saver:
147 * iptables -R 1 bw_data_saver --jump REJECT --reject-with icmp-port-unreachable
148 * Disable data saver:
149 * iptables -R 1 bw_data_saver --jump RETURN
150 */
151
152 const std::string COMMIT_AND_CLOSE = "COMMIT\n";
153 const std::string HAPPY_BOX_MATCH_WHITELIST_COMMAND =
154 StringPrintf("-I bw_happy_box -m owner --uid-owner %d-%d --jump RETURN", 0, MAX_SYSTEM_UID);
155 const std::string BPF_HAPPY_BOX_MATCH_WHITELIST_COMMAND = StringPrintf(
156 "-I bw_happy_box -m bpf --object-pinned %s -j RETURN", XT_BPF_WHITELIST_PROG_PATH);
157 const std::string BPF_PENALTY_BOX_MATCH_BLACKLIST_COMMAND = StringPrintf(
158 "-I bw_penalty_box -m bpf --object-pinned %s -j REJECT", XT_BPF_BLACKLIST_PROG_PATH);
159
160 static const std::vector<std::string> IPT_FLUSH_COMMANDS = {
161 /*
162 * Cleanup rules.
163 * Should normally include bw_costly_<iface>, but we rely on the way they are setup
164 * to allow coexistance.
165 */
166 "*filter",
167 ":bw_INPUT -",
168 ":bw_OUTPUT -",
169 ":bw_FORWARD -",
170 ":bw_happy_box -",
171 ":bw_penalty_box -",
172 ":bw_data_saver -",
173 ":bw_costly_shared -",
174 ":bw_global_alert -",
175 "COMMIT",
176 "*raw",
177 ":bw_raw_PREROUTING -",
178 "COMMIT",
179 "*mangle",
180 ":bw_mangle_POSTROUTING -",
181 COMMIT_AND_CLOSE};
182
183 static const uint32_t uidBillingMask = Fwmark::getUidBillingMask();
184
185 /**
186 * Basic commands for creation of hooks into data accounting and data boxes.
187 *
188 * Included in these commands are rules to prevent the double-counting of IPsec
189 * packets. The general overview is as follows:
190 * > All interface counters (counted in PREROUTING, POSTROUTING) must be
191 * completely accurate, and count only the outer packet. As such, the inner
192 * packet must be ignored, which is done through the use of two rules: use
193 * of the policy module (for tunnel mode), and VTI interface checks (for
194 * tunnel or transport-in-tunnel mode). The VTI interfaces should be named
195 * ipsec*
196 * > Outbound UID billing can always be done with the outer packets, due to the
197 * ability to always find the correct UID (based on the skb->sk). As such,
198 * the inner packets should be ignored based on the policy module, or the
199 * output interface if a VTI (ipsec+)
200 * > Inbound UDP-encap-ESP packets can be correctly mapped to the UID that
201 * opened the encap socket, and as such, should be billed as early as
202 * possible (for transport mode; tunnel mode usage should be billed to
203 * sending/receiving application). Due to the inner packet being
204 * indistinguishable from the inner packet of ESP, a uidBillingDone mark
205 * has to be applied to prevent counting a second time.
206 * > Inbound ESP has no socket, and as such must be accounted later. ESP
207 * protocol packets are skipped via a blanket rule.
208 * > Note that this solution is asymmetrical. Adding the VTI or policy matcher
209 * ignore rule in the input chain would actually break the INPUT chain;
210 * Those rules are designed to ignore inner packets, and in the tunnel
211 * mode UDP, or any ESP case, we would not have billed the outer packet.
212 *
213 * See go/ipsec-data-accounting for more information.
214 */
215
getBasicAccountingCommands(const bool useBpf)216 const std::vector<std::string> getBasicAccountingCommands(const bool useBpf) {
217 const std::vector<std::string> ipt_basic_accounting_commands = {
218 "*filter",
219
220 "-A bw_INPUT -j bw_global_alert",
221 // Prevents IPSec double counting (ESP and UDP-encap-ESP respectively)
222 "-A bw_INPUT -p esp -j RETURN",
223 StringPrintf("-A bw_INPUT -m mark --mark 0x%x/0x%x -j RETURN", uidBillingMask,
224 uidBillingMask),
225 useBpf ? "" : "-A bw_INPUT -m owner --socket-exists",
226 StringPrintf("-A bw_INPUT -j MARK --or-mark 0x%x", uidBillingMask),
227
228 "-A bw_OUTPUT -j bw_global_alert",
229 // Prevents IPSec double counting (Tunnel mode and Transport mode,
230 // respectively)
231 "-A bw_OUTPUT -o " IPSEC_IFACE_PREFIX "+ -j RETURN",
232 "-A bw_OUTPUT -m policy --pol ipsec --dir out -j RETURN",
233 useBpf ? "" : "-A bw_OUTPUT -m owner --socket-exists",
234
235 "-A bw_costly_shared --jump bw_penalty_box",
236 useBpf ? BPF_PENALTY_BOX_MATCH_BLACKLIST_COMMAND : "",
237 "-A bw_penalty_box --jump bw_happy_box", "-A bw_happy_box --jump bw_data_saver",
238 "-A bw_data_saver -j RETURN",
239 useBpf ? BPF_HAPPY_BOX_MATCH_WHITELIST_COMMAND : HAPPY_BOX_MATCH_WHITELIST_COMMAND,
240 "COMMIT",
241
242 "*raw",
243 // Prevents IPSec double counting (Tunnel mode and Transport mode,
244 // respectively)
245 "-A bw_raw_PREROUTING -i " IPSEC_IFACE_PREFIX "+ -j RETURN",
246 "-A bw_raw_PREROUTING -m policy --pol ipsec --dir in -j RETURN",
247 useBpf ? StringPrintf("-A bw_raw_PREROUTING -m bpf --object-pinned %s",
248 XT_BPF_INGRESS_PROG_PATH)
249 : "-A bw_raw_PREROUTING -m owner --socket-exists",
250 "COMMIT",
251
252 "*mangle",
253 // Prevents IPSec double counting (Tunnel mode and Transport mode,
254 // respectively)
255 "-A bw_mangle_POSTROUTING -o " IPSEC_IFACE_PREFIX "+ -j RETURN",
256 "-A bw_mangle_POSTROUTING -m policy --pol ipsec --dir out -j RETURN",
257 useBpf ? "" : "-A bw_mangle_POSTROUTING -m owner --socket-exists",
258 StringPrintf("-A bw_mangle_POSTROUTING -j MARK --set-mark 0x0/0x%x",
259 uidBillingMask), // Clear the mark before sending this packet
260 useBpf ? StringPrintf("-A bw_mangle_POSTROUTING -m bpf --object-pinned %s",
261 XT_BPF_EGRESS_PROG_PATH)
262 : "",
263 COMMIT_AND_CLOSE};
264 return ipt_basic_accounting_commands;
265 }
266
267
toStrVec(int num,const char * const strs[])268 std::vector<std::string> toStrVec(int num, const char* const strs[]) {
269 return std::vector<std::string>(strs, strs + num);
270 }
271
272 } // namespace
273
setBpfEnabled(bool isEnabled)274 void BandwidthController::setBpfEnabled(bool isEnabled) {
275 mBpfSupported = isEnabled;
276 }
277
BandwidthController()278 BandwidthController::BandwidthController() {
279 }
280
flushCleanTables(bool doClean)281 void BandwidthController::flushCleanTables(bool doClean) {
282 /* Flush and remove the bw_costly_<iface> tables */
283 flushExistingCostlyTables(doClean);
284
285 std::string commands = Join(IPT_FLUSH_COMMANDS, '\n');
286 iptablesRestoreFunction(V4V6, commands, nullptr);
287 }
288
setupIptablesHooks()289 int BandwidthController::setupIptablesHooks() {
290 /* flush+clean is allowed to fail */
291 flushCleanTables(true);
292 return 0;
293 }
294
enableBandwidthControl()295 int BandwidthController::enableBandwidthControl() {
296 /* Let's pretend we started from scratch ... */
297 mSharedQuotaIfaces.clear();
298 mQuotaIfaces.clear();
299 mGlobalAlertBytes = 0;
300 mSharedQuotaBytes = mSharedAlertBytes = 0;
301
302 flushCleanTables(false);
303
304 std::string commands = Join(getBasicAccountingCommands(mBpfSupported), '\n');
305 return iptablesRestoreFunction(V4V6, commands, nullptr);
306 }
307
disableBandwidthControl()308 int BandwidthController::disableBandwidthControl() {
309
310 flushCleanTables(false);
311 return 0;
312 }
313
makeDataSaverCommand(IptablesTarget target,bool enable)314 std::string BandwidthController::makeDataSaverCommand(IptablesTarget target, bool enable) {
315 std::string cmd;
316 const char *chainName = "bw_data_saver";
317 const char *op = jumpToString(enable ? IptJumpReject : IptJumpReturn);
318 std::string criticalCommands = enable ?
319 FirewallController::makeCriticalCommands(target, chainName) : "";
320 StringAppendF(&cmd,
321 "*filter\n"
322 ":%s -\n"
323 "%s"
324 "-A %s%s\n"
325 "COMMIT\n", chainName, criticalCommands.c_str(), chainName, op);
326 return cmd;
327 }
328
enableDataSaver(bool enable)329 int BandwidthController::enableDataSaver(bool enable) {
330 int ret = iptablesRestoreFunction(V4, makeDataSaverCommand(V4, enable), nullptr);
331 ret |= iptablesRestoreFunction(V6, makeDataSaverCommand(V6, enable), nullptr);
332 return ret;
333 }
334
335 // TODO: Remove after removing these commands in CommandListener
addNaughtyApps(int numUids,const char * const appUids[])336 int BandwidthController::addNaughtyApps(int numUids, const char* const appUids[]) {
337 return manipulateSpecialApps(toStrVec(numUids, appUids), NAUGHTY_CHAIN,
338 IptJumpReject, IptOpInsert);
339 }
340
341 // TODO: Remove after removing these commands in CommandListener
removeNaughtyApps(int numUids,const char * const appUids[])342 int BandwidthController::removeNaughtyApps(int numUids, const char* const appUids[]) {
343 return manipulateSpecialApps(toStrVec(numUids, appUids), NAUGHTY_CHAIN,
344 IptJumpReject, IptOpDelete);
345 }
346
347 // TODO: Remove after removing these commands in CommandListener
addNiceApps(int numUids,const char * const appUids[])348 int BandwidthController::addNiceApps(int numUids, const char* const appUids[]) {
349 return manipulateSpecialApps(toStrVec(numUids, appUids), NICE_CHAIN,
350 IptJumpReturn, IptOpInsert);
351 }
352
353 // TODO: Remove after removing these commands in CommandListener
removeNiceApps(int numUids,const char * const appUids[])354 int BandwidthController::removeNiceApps(int numUids, const char* const appUids[]) {
355 return manipulateSpecialApps(toStrVec(numUids, appUids), NICE_CHAIN,
356 IptJumpReturn, IptOpDelete);
357 }
358
addNaughtyApps(const std::vector<std::string> & appStrUid)359 int BandwidthController::addNaughtyApps(const std::vector<std::string>& appStrUid) {
360 return manipulateSpecialApps(appStrUid, NAUGHTY_CHAIN, IptJumpReject, IptOpInsert);
361 }
362
removeNaughtyApps(const std::vector<std::string> & appStrUid)363 int BandwidthController::removeNaughtyApps(const std::vector<std::string>& appStrUid) {
364 return manipulateSpecialApps(appStrUid, NAUGHTY_CHAIN, IptJumpReject, IptOpDelete);
365 }
366
addNiceApps(const std::vector<std::string> & appStrUid)367 int BandwidthController::addNiceApps(const std::vector<std::string>& appStrUid) {
368 return manipulateSpecialApps(appStrUid, NICE_CHAIN, IptJumpReturn, IptOpInsert);
369 }
370
removeNiceApps(const std::vector<std::string> & appStrUid)371 int BandwidthController::removeNiceApps(const std::vector<std::string>& appStrUid) {
372 return manipulateSpecialApps(appStrUid, NICE_CHAIN, IptJumpReturn, IptOpDelete);
373 }
374
manipulateSpecialApps(const std::vector<std::string> & appStrUids,const std::string & chain,IptJumpOp jumpHandling,IptOp op)375 int BandwidthController::manipulateSpecialApps(const std::vector<std::string>& appStrUids,
376 const std::string& chain, IptJumpOp jumpHandling,
377 IptOp op) {
378 if (mBpfSupported) {
379 Status status = gCtls->trafficCtrl.updateUidOwnerMap(appStrUids, jumpHandling, op);
380 if (!isOk(status)) {
381 ALOGE("unable to update the Bandwidth Uid Map: %s", toString(status).c_str());
382 }
383 return status.code();
384 }
385 std::string cmd = "*filter\n";
386 for (const auto& appStrUid : appStrUids) {
387 StringAppendF(&cmd, "%s %s -m owner --uid-owner %s%s\n", opToString(op), chain.c_str(),
388 appStrUid.c_str(), jumpToString(jumpHandling));
389 }
390 StringAppendF(&cmd, "COMMIT\n");
391 return iptablesRestoreFunction(V4V6, cmd, nullptr);
392 }
393
setInterfaceSharedQuota(const std::string & iface,int64_t maxBytes)394 int BandwidthController::setInterfaceSharedQuota(const std::string& iface, int64_t maxBytes) {
395 int res = 0;
396 std::string quotaCmd;
397 constexpr char cost[] = "shared";
398 constexpr char chain[] = "bw_costly_shared";
399
400 if (!maxBytes) {
401 /* Don't talk about -1, deprecate it. */
402 ALOGE("Invalid bytes value. 1..max_int64.");
403 return -1;
404 }
405 if (!isIfaceName(iface))
406 return -1;
407
408 if (maxBytes == -1) {
409 return removeInterfaceSharedQuota(iface);
410 }
411
412 auto it = mSharedQuotaIfaces.find(iface);
413
414 if (it == mSharedQuotaIfaces.end()) {
415 const int ruleInsertPos = (mGlobalAlertBytes) ? 2 : 1;
416 std::vector<std::string> cmds = {
417 "*filter",
418 StringPrintf("-I bw_INPUT %d -i %s --jump %s", ruleInsertPos, iface.c_str(), chain),
419 StringPrintf("-I bw_OUTPUT %d -o %s --jump %s", ruleInsertPos, iface.c_str(), chain),
420 StringPrintf("-A bw_FORWARD -i %s --jump %s", iface.c_str(), chain),
421 StringPrintf("-A bw_FORWARD -o %s --jump %s", iface.c_str(), chain),
422 };
423 if (mSharedQuotaIfaces.empty()) {
424 cmds.push_back(StringPrintf("-I %s -m quota2 ! --quota %" PRId64
425 " --name %s --jump REJECT",
426 chain, maxBytes, cost));
427 }
428 cmds.push_back("COMMIT\n");
429
430 res |= iptablesRestoreFunction(V4V6, Join(cmds, "\n"), nullptr);
431 if (res) {
432 ALOGE("Failed set quota rule");
433 removeInterfaceSharedQuota(iface);
434 return -1;
435 }
436 mSharedQuotaBytes = maxBytes;
437 mSharedQuotaIfaces.insert(iface);
438 }
439
440 if (maxBytes != mSharedQuotaBytes) {
441 res |= updateQuota(cost, maxBytes);
442 if (res) {
443 ALOGE("Failed update quota for %s", cost);
444 removeInterfaceSharedQuota(iface);
445 return -1;
446 }
447 mSharedQuotaBytes = maxBytes;
448 }
449 return 0;
450 }
451
452 /* It will also cleanup any shared alerts */
removeInterfaceSharedQuota(const std::string & iface)453 int BandwidthController::removeInterfaceSharedQuota(const std::string& iface) {
454 constexpr char cost[] = "shared";
455 constexpr char chain[] = "bw_costly_shared";
456
457 if (!isIfaceName(iface))
458 return -1;
459
460 auto it = mSharedQuotaIfaces.find(iface);
461
462 if (it == mSharedQuotaIfaces.end()) {
463 ALOGE("No such iface %s to delete", iface.c_str());
464 return -1;
465 }
466
467 std::vector<std::string> cmds = {
468 "*filter",
469 StringPrintf("-D bw_INPUT -i %s --jump %s", iface.c_str(), chain),
470 StringPrintf("-D bw_OUTPUT -o %s --jump %s", iface.c_str(), chain),
471 StringPrintf("-D bw_FORWARD -i %s --jump %s", iface.c_str(), chain),
472 StringPrintf("-D bw_FORWARD -o %s --jump %s", iface.c_str(), chain),
473 };
474 if (mSharedQuotaIfaces.size() == 1) {
475 cmds.push_back(StringPrintf("-D %s -m quota2 ! --quota %" PRIu64
476 " --name %s --jump REJECT",
477 chain, mSharedQuotaBytes, cost));
478 }
479 cmds.push_back("COMMIT\n");
480
481 if (iptablesRestoreFunction(V4V6, Join(cmds, "\n"), nullptr) != 0) {
482 ALOGE("Failed to remove shared quota on %s", iface.c_str());
483 return -1;
484 }
485
486 int res = 0;
487 mSharedQuotaIfaces.erase(it);
488 if (mSharedQuotaIfaces.empty()) {
489 mSharedQuotaBytes = 0;
490 if (mSharedAlertBytes) {
491 res = removeSharedAlert();
492 if (res == 0) {
493 mSharedAlertBytes = 0;
494 }
495 }
496 }
497
498 return res;
499
500 }
501
setInterfaceQuota(const std::string & iface,int64_t maxBytes)502 int BandwidthController::setInterfaceQuota(const std::string& iface, int64_t maxBytes) {
503 const std::string& cost = iface;
504
505 if (!isIfaceName(iface)) return -EINVAL;
506
507 if (!maxBytes) {
508 ALOGE("Invalid bytes value. 1..max_int64.");
509 return -ERANGE;
510 }
511 if (maxBytes == -1) {
512 return removeInterfaceQuota(iface);
513 }
514
515 /* Insert ingress quota. */
516 auto it = mQuotaIfaces.find(iface);
517
518 if (it != mQuotaIfaces.end()) {
519 if (int res = updateQuota(cost, maxBytes)) {
520 ALOGE("Failed update quota for %s", iface.c_str());
521 removeInterfaceQuota(iface);
522 return res;
523 }
524 it->second.quota = maxBytes;
525 return 0;
526 }
527
528 const std::string chain = "bw_costly_" + iface;
529 const int ruleInsertPos = (mGlobalAlertBytes) ? 2 : 1;
530 std::vector<std::string> cmds = {
531 "*filter",
532 StringPrintf(":%s -", chain.c_str()),
533 StringPrintf("-A %s -j bw_penalty_box", chain.c_str()),
534 StringPrintf("-I bw_INPUT %d -i %s --jump %s", ruleInsertPos, iface.c_str(),
535 chain.c_str()),
536 StringPrintf("-I bw_OUTPUT %d -o %s --jump %s", ruleInsertPos, iface.c_str(),
537 chain.c_str()),
538 StringPrintf("-A bw_FORWARD -i %s --jump %s", iface.c_str(), chain.c_str()),
539 StringPrintf("-A bw_FORWARD -o %s --jump %s", iface.c_str(), chain.c_str()),
540 StringPrintf("-A %s -m quota2 ! --quota %" PRId64 " --name %s --jump REJECT",
541 chain.c_str(), maxBytes, cost.c_str()),
542 "COMMIT\n",
543 };
544 if (iptablesRestoreFunction(V4V6, Join(cmds, "\n"), nullptr) != 0) {
545 ALOGE("Failed set quota rule");
546 removeInterfaceQuota(iface);
547 return -EREMOTEIO;
548 }
549
550 mQuotaIfaces[iface] = QuotaInfo{maxBytes, 0};
551 return 0;
552 }
553
getInterfaceSharedQuota(int64_t * bytes)554 int BandwidthController::getInterfaceSharedQuota(int64_t *bytes) {
555 return getInterfaceQuota("shared", bytes);
556 }
557
getInterfaceQuota(const std::string & iface,int64_t * bytes)558 int BandwidthController::getInterfaceQuota(const std::string& iface, int64_t* bytes) {
559 const auto& sys = android::netdutils::sSyscalls.get();
560 const std::string fname = "/proc/net/xt_quota/" + iface;
561
562 if (!isIfaceName(iface)) return -1;
563
564 StatusOr<UniqueFile> file = sys.fopen(fname, "re");
565 if (!isOk(file)) {
566 ALOGE("Reading quota %s failed (%s)", iface.c_str(), toString(file).c_str());
567 return -1;
568 }
569 auto rv = sys.fscanf(file.value().get(), "%" SCNd64, bytes);
570 if (!isOk(rv)) {
571 ALOGE("Reading quota %s failed (%s)", iface.c_str(), toString(rv).c_str());
572 return -1;
573 }
574 ALOGV("Read quota res=%d bytes=%" PRId64, rv.value(), *bytes);
575 return rv.value() == 1 ? 0 : -1;
576 }
577
removeInterfaceQuota(const std::string & iface)578 int BandwidthController::removeInterfaceQuota(const std::string& iface) {
579 if (!isIfaceName(iface)) return -EINVAL;
580
581 auto it = mQuotaIfaces.find(iface);
582
583 if (it == mQuotaIfaces.end()) {
584 ALOGE("No such iface %s to delete", iface.c_str());
585 return -ENODEV;
586 }
587
588 const std::string chain = "bw_costly_" + iface;
589 std::vector<std::string> cmds = {
590 "*filter",
591 StringPrintf("-D bw_INPUT -i %s --jump %s", iface.c_str(), chain.c_str()),
592 StringPrintf("-D bw_OUTPUT -o %s --jump %s", iface.c_str(), chain.c_str()),
593 StringPrintf("-D bw_FORWARD -i %s --jump %s", iface.c_str(), chain.c_str()),
594 StringPrintf("-D bw_FORWARD -o %s --jump %s", iface.c_str(), chain.c_str()),
595 StringPrintf("-F %s", chain.c_str()),
596 StringPrintf("-X %s", chain.c_str()),
597 "COMMIT\n",
598 };
599
600 const int res = iptablesRestoreFunction(V4V6, Join(cmds, "\n"), nullptr);
601
602 if (res == 0) {
603 mQuotaIfaces.erase(it);
604 }
605
606 return res ? -EREMOTEIO : 0;
607 }
608
updateQuota(const std::string & quotaName,int64_t bytes)609 int BandwidthController::updateQuota(const std::string& quotaName, int64_t bytes) {
610 const auto& sys = android::netdutils::sSyscalls.get();
611 const std::string fname = "/proc/net/xt_quota/" + quotaName;
612
613 if (!isIfaceName(quotaName)) {
614 ALOGE("updateQuota: Invalid quotaName \"%s\"", quotaName.c_str());
615 return -EINVAL;
616 }
617
618 StatusOr<UniqueFile> file = sys.fopen(fname, "we");
619 if (!isOk(file)) {
620 int res = errno;
621 ALOGE("Updating quota %s failed (%s)", quotaName.c_str(), toString(file).c_str());
622 return -res;
623 }
624 // TODO: should we propagate this error?
625 sys.fprintf(file.value().get(), "%" PRId64 "\n", bytes).ignoreError();
626 return 0;
627 }
628
runIptablesAlertCmd(IptOp op,const std::string & alertName,int64_t bytes)629 int BandwidthController::runIptablesAlertCmd(IptOp op, const std::string& alertName,
630 int64_t bytes) {
631 const char *opFlag = opToString(op);
632 std::string alertQuotaCmd = "*filter\n";
633
634 // TODO: consider using an alternate template for the delete that does not include the --quota
635 // value. This code works because the --quota value is ignored by deletes
636
637 /*
638 * Add alert rule in bw_global_alert chain, 3 chains might reference bw_global_alert.
639 * bw_INPUT, bw_OUTPUT (added by BandwidthController in enableBandwidthControl)
640 * bw_FORWARD (added by TetherController in setTetherGlobalAlertRule if nat enable/disable)
641 */
642 StringAppendF(&alertQuotaCmd, ALERT_IPT_TEMPLATE, opFlag, LOCAL_GLOBAL_ALERT, bytes,
643 alertName.c_str());
644 StringAppendF(&alertQuotaCmd, "COMMIT\n");
645
646 return iptablesRestoreFunction(V4V6, alertQuotaCmd, nullptr);
647 }
648
setGlobalAlert(int64_t bytes)649 int BandwidthController::setGlobalAlert(int64_t bytes) {
650 const char *alertName = ALERT_GLOBAL_NAME;
651
652 if (!bytes) {
653 ALOGE("Invalid bytes value. 1..max_int64.");
654 return -ERANGE;
655 }
656
657 int res = 0;
658 if (mGlobalAlertBytes) {
659 res = updateQuota(alertName, bytes);
660 } else {
661 res = runIptablesAlertCmd(IptOpInsert, alertName, bytes);
662 if (res) {
663 res = -EREMOTEIO;
664 }
665 }
666 mGlobalAlertBytes = bytes;
667 return res;
668 }
669
removeGlobalAlert()670 int BandwidthController::removeGlobalAlert() {
671
672 const char *alertName = ALERT_GLOBAL_NAME;
673
674 if (!mGlobalAlertBytes) {
675 ALOGE("No prior alert set");
676 return -1;
677 }
678
679 int res = 0;
680 res = runIptablesAlertCmd(IptOpDelete, alertName, mGlobalAlertBytes);
681 mGlobalAlertBytes = 0;
682 return res;
683 }
684
setSharedAlert(int64_t bytes)685 int BandwidthController::setSharedAlert(int64_t bytes) {
686 if (!mSharedQuotaBytes) {
687 ALOGE("Need to have a prior shared quota set to set an alert");
688 return -1;
689 }
690 if (!bytes) {
691 ALOGE("Invalid bytes value. 1..max_int64.");
692 return -1;
693 }
694 return setCostlyAlert("shared", bytes, &mSharedAlertBytes);
695 }
696
removeSharedAlert()697 int BandwidthController::removeSharedAlert() {
698 return removeCostlyAlert("shared", &mSharedAlertBytes);
699 }
700
setInterfaceAlert(const std::string & iface,int64_t bytes)701 int BandwidthController::setInterfaceAlert(const std::string& iface, int64_t bytes) {
702 if (!isIfaceName(iface)) {
703 ALOGE("setInterfaceAlert: Invalid iface \"%s\"", iface.c_str());
704 return -EINVAL;
705 }
706
707 if (!bytes) {
708 ALOGE("Invalid bytes value. 1..max_int64.");
709 return -ERANGE;
710 }
711 auto it = mQuotaIfaces.find(iface);
712
713 if (it == mQuotaIfaces.end()) {
714 ALOGE("Need to have a prior interface quota set to set an alert");
715 return -ENOENT;
716 }
717
718 return setCostlyAlert(iface, bytes, &it->second.alert);
719 }
720
removeInterfaceAlert(const std::string & iface)721 int BandwidthController::removeInterfaceAlert(const std::string& iface) {
722 if (!isIfaceName(iface)) {
723 ALOGE("removeInterfaceAlert: Invalid iface \"%s\"", iface.c_str());
724 return -EINVAL;
725 }
726
727 auto it = mQuotaIfaces.find(iface);
728
729 if (it == mQuotaIfaces.end()) {
730 ALOGE("No prior alert set for interface %s", iface.c_str());
731 return -ENOENT;
732 }
733
734 return removeCostlyAlert(iface, &it->second.alert);
735 }
736
setCostlyAlert(const std::string & costName,int64_t bytes,int64_t * alertBytes)737 int BandwidthController::setCostlyAlert(const std::string& costName, int64_t bytes,
738 int64_t* alertBytes) {
739 int res = 0;
740
741 if (!isIfaceName(costName)) {
742 ALOGE("setCostlyAlert: Invalid costName \"%s\"", costName.c_str());
743 return -EINVAL;
744 }
745
746 if (!bytes) {
747 ALOGE("Invalid bytes value. 1..max_int64.");
748 return -ERANGE;
749 }
750
751 std::string alertName = costName + "Alert";
752 std::string chainName = "bw_costly_" + costName;
753 if (*alertBytes) {
754 res = updateQuota(alertName, *alertBytes);
755 } else {
756 std::vector<std::string> commands = {
757 "*filter\n",
758 StringPrintf(ALERT_IPT_TEMPLATE, "-A", chainName.c_str(), bytes, alertName.c_str()),
759 "COMMIT\n"
760 };
761 res = iptablesRestoreFunction(V4V6, Join(commands, ""), nullptr);
762 if (res) {
763 ALOGE("Failed to set costly alert for %s", costName.c_str());
764 res = -EREMOTEIO;
765 }
766 }
767 if (res == 0) {
768 *alertBytes = bytes;
769 }
770 return res;
771 }
772
removeCostlyAlert(const std::string & costName,int64_t * alertBytes)773 int BandwidthController::removeCostlyAlert(const std::string& costName, int64_t* alertBytes) {
774 if (!isIfaceName(costName)) {
775 ALOGE("removeCostlyAlert: Invalid costName \"%s\"", costName.c_str());
776 return -EINVAL;
777 }
778
779 if (!*alertBytes) {
780 ALOGE("No prior alert set for %s alert", costName.c_str());
781 return -ENOENT;
782 }
783
784 std::string alertName = costName + "Alert";
785 std::string chainName = "bw_costly_" + costName;
786 std::vector<std::string> commands = {
787 "*filter\n",
788 StringPrintf(ALERT_IPT_TEMPLATE, "-D", chainName.c_str(), *alertBytes, alertName.c_str()),
789 "COMMIT\n"
790 };
791 if (iptablesRestoreFunction(V4V6, Join(commands, ""), nullptr) != 0) {
792 ALOGE("Failed to remove costly alert %s", costName.c_str());
793 return -EREMOTEIO;
794 }
795
796 *alertBytes = 0;
797 return 0;
798 }
799
flushExistingCostlyTables(bool doClean)800 void BandwidthController::flushExistingCostlyTables(bool doClean) {
801 std::string fullCmd = "*filter\n-S\nCOMMIT\n";
802 std::string ruleList;
803
804 /* Only lookup ip4 table names as ip6 will have the same tables ... */
805 if (int ret = iptablesRestoreFunction(V4, fullCmd, &ruleList)) {
806 ALOGE("Failed to list existing costly tables ret=%d", ret);
807 return;
808 }
809 /* ... then flush/clean both ip4 and ip6 iptables. */
810 parseAndFlushCostlyTables(ruleList, doClean);
811 }
812
parseAndFlushCostlyTables(const std::string & ruleList,bool doRemove)813 void BandwidthController::parseAndFlushCostlyTables(const std::string& ruleList, bool doRemove) {
814 std::stringstream stream(ruleList);
815 std::string rule;
816 std::vector<std::string> clearCommands = { "*filter" };
817 std::string chainName;
818
819 // Find and flush all rules starting with "-N bw_costly_<iface>" except "-N bw_costly_shared".
820 while (std::getline(stream, rule, '\n')) {
821 if (rule.find(NEW_CHAIN_COMMAND) != 0) continue;
822 chainName = rule.substr(NEW_CHAIN_COMMAND.size());
823 ALOGV("parse chainName=<%s> orig line=<%s>", chainName.c_str(), rule.c_str());
824
825 if (chainName.find("bw_costly_") != 0 || chainName == std::string("bw_costly_shared")) {
826 continue;
827 }
828
829 clearCommands.push_back(StringPrintf(":%s -", chainName.c_str()));
830 if (doRemove) {
831 clearCommands.push_back(StringPrintf("-X %s", chainName.c_str()));
832 }
833 }
834
835 if (clearCommands.size() == 1) {
836 // No rules found.
837 return;
838 }
839
840 clearCommands.push_back("COMMIT\n");
841 iptablesRestoreFunction(V4V6, Join(clearCommands, '\n'), nullptr);
842 }
843
opToString(IptOp op)844 inline const char *BandwidthController::opToString(IptOp op) {
845 switch (op) {
846 case IptOpInsert:
847 return "-I";
848 case IptOpDelete:
849 return "-D";
850 }
851 }
852
jumpToString(IptJumpOp jumpHandling)853 inline const char *BandwidthController::jumpToString(IptJumpOp jumpHandling) {
854 /*
855 * Must be careful what one rejects with, as upper layer protocols will just
856 * keep on hammering the device until the number of retries are done.
857 * For port-unreachable (default), TCP should consider as an abort (RFC1122).
858 */
859 switch (jumpHandling) {
860 case IptJumpNoAdd:
861 return "";
862 case IptJumpReject:
863 return " --jump REJECT";
864 case IptJumpReturn:
865 return " --jump RETURN";
866 }
867 }
868