blob: 515fda187719b399fdb305043be821af49eba6f8 [file] [log] [blame]
Gabriel Biren72cf9a52021-06-25 23:29:26 +00001/*
2 * aidl interface for wpa_hostapd daemon
3 * Copyright (c) 2004-2018, Jouni Malinen <j@w1.fi>
4 * Copyright (c) 2004-2018, Roshan Pius <rpius@google.com>
5 *
6 * This software may be distributed under the terms of the BSD license.
7 * See README for more details.
8 */
9#include <iomanip>
10#include <sstream>
11#include <string>
12#include <vector>
13#include <net/if.h>
14#include <sys/socket.h>
15#include <linux/if_bridge.h>
16
17#include <android-base/file.h>
18#include <android-base/stringprintf.h>
19#include <android-base/unique_fd.h>
20
21#include "hostapd.h"
22#include <aidl/android/hardware/wifi/hostapd/ApInfo.h>
23#include <aidl/android/hardware/wifi/hostapd/BandMask.h>
24#include <aidl/android/hardware/wifi/hostapd/ChannelParams.h>
25#include <aidl/android/hardware/wifi/hostapd/ClientInfo.h>
26#include <aidl/android/hardware/wifi/hostapd/EncryptionType.h>
27#include <aidl/android/hardware/wifi/hostapd/HostapdStatusCode.h>
28#include <aidl/android/hardware/wifi/hostapd/IfaceParams.h>
29#include <aidl/android/hardware/wifi/hostapd/NetworkParams.h>
30#include <aidl/android/hardware/wifi/hostapd/ParamSizeLimits.h>
31
32extern "C"
33{
34#include "common/wpa_ctrl.h"
35#include "drivers/linux_ioctl.h"
36}
37
38// The AIDL implementation for hostapd creates a hostapd.conf dynamically for
39// each interface. This file can then be used to hook onto the normal config
40// file parsing logic in hostapd code. Helps us to avoid duplication of code
41// in the AIDL interface.
42// TOOD(b/71872409): Add unit tests for this.
43namespace {
44constexpr char kConfFileNameFmt[] = "/data/vendor/wifi/hostapd/hostapd_%s.conf";
45
46using android::base::RemoveFileIfExists;
47using android::base::StringPrintf;
48using android::base::WriteStringToFile;
49using aidl::android::hardware::wifi::hostapd::BandMask;
50using aidl::android::hardware::wifi::hostapd::Bandwidth;
51using aidl::android::hardware::wifi::hostapd::ChannelParams;
52using aidl::android::hardware::wifi::hostapd::EncryptionType;
53using aidl::android::hardware::wifi::hostapd::Generation;
54using aidl::android::hardware::wifi::hostapd::HostapdStatusCode;
55using aidl::android::hardware::wifi::hostapd::IfaceParams;
56using aidl::android::hardware::wifi::hostapd::NetworkParams;
57using aidl::android::hardware::wifi::hostapd::ParamSizeLimits;
58
59int band2Ghz = (int)BandMask::BAND_2_GHZ;
60int band5Ghz = (int)BandMask::BAND_5_GHZ;
61int band6Ghz = (int)BandMask::BAND_6_GHZ;
62int band60Ghz = (int)BandMask::BAND_60_GHZ;
63
64#define MAX_PORTS 1024
65bool GetInterfacesInBridge(std::string br_name,
66 std::vector<std::string>* interfaces) {
67 android::base::unique_fd sock(socket(PF_INET, SOCK_DGRAM | SOCK_CLOEXEC, 0));
68 if (sock.get() < 0) {
69 wpa_printf(MSG_ERROR, "Failed to create sock (%s) in %s",
70 strerror(errno), __FUNCTION__);
71 return false;
72 }
73
74 struct ifreq request;
75 int i, ifindices[MAX_PORTS];
76 char if_name[IFNAMSIZ];
77 unsigned long args[3];
78
79 memset(ifindices, 0, MAX_PORTS * sizeof(int));
80
81 args[0] = BRCTL_GET_PORT_LIST;
82 args[1] = (unsigned long) ifindices;
83 args[2] = MAX_PORTS;
84
85 strlcpy(request.ifr_name, br_name.c_str(), IFNAMSIZ);
86 request.ifr_data = (char *)args;
87
88 if (ioctl(sock.get(), SIOCDEVPRIVATE, &request) < 0) {
89 wpa_printf(MSG_ERROR, "Failed to ioctl SIOCDEVPRIVATE in %s",
90 __FUNCTION__);
91 return false;
92 }
93
94 for (i = 0; i < MAX_PORTS; i ++) {
95 memset(if_name, 0, IFNAMSIZ);
96 if (ifindices[i] == 0 || !if_indextoname(ifindices[i], if_name)) {
97 continue;
98 }
99 interfaces->push_back(if_name);
100 }
101 return true;
102}
103
104std::string WriteHostapdConfig(
105 const std::string& interface_name, const std::string& config)
106{
107 const std::string file_path =
108 StringPrintf(kConfFileNameFmt, interface_name.c_str());
109 if (WriteStringToFile(
110 config, file_path, S_IRUSR | S_IWUSR | S_IRGRP | S_IWGRP,
111 getuid(), getgid())) {
112 return file_path;
113 }
114 // Diagnose failure
115 int error = errno;
116 wpa_printf(
117 MSG_ERROR, "Cannot write hostapd config to %s, error: %s",
118 file_path.c_str(), strerror(error));
119 struct stat st;
120 int result = stat(file_path.c_str(), &st);
121 if (result == 0) {
122 wpa_printf(
123 MSG_ERROR, "hostapd config file uid: %d, gid: %d, mode: %d",
124 st.st_uid, st.st_gid, st.st_mode);
125 } else {
126 wpa_printf(
127 MSG_ERROR,
128 "Error calling stat() on hostapd config file: %s",
129 strerror(errno));
130 }
131 return "";
132}
133
134/*
135 * Get the op_class for a channel/band
136 * The logic here is based on Table E-4 in the 802.11 Specification
137 */
138int getOpClassForChannel(int channel, int band, bool support11n, bool support11ac) {
139 // 2GHz Band
140 if ((band & band2Ghz) != 0) {
141 if (channel == 14) {
142 return 82;
143 }
144 if (channel >= 1 && channel <= 13) {
145 if (!support11n) {
146 //20MHz channel
147 return 81;
148 }
149 if (channel <= 9) {
150 // HT40 with secondary channel above primary
151 return 83;
152 }
153 // HT40 with secondary channel below primary
154 return 84;
155 }
156 // Error
157 return 0;
158 }
159
160 // 5GHz Band
161 if ((band & band5Ghz) != 0) {
162 if (support11ac) {
163 switch (channel) {
164 case 42:
165 case 58:
166 case 106:
167 case 122:
168 case 138:
169 case 155:
170 // 80MHz channel
171 return 128;
172 case 50:
173 case 114:
174 // 160MHz channel
175 return 129;
176 }
177 }
178
179 if (!support11n) {
180 if (channel >= 36 && channel <= 48) {
181 return 115;
182 }
183 if (channel >= 52 && channel <= 64) {
184 return 118;
185 }
186 if (channel >= 100 && channel <= 144) {
187 return 121;
188 }
189 if (channel >= 149 && channel <= 161) {
190 return 124;
191 }
192 if (channel >= 165 && channel <= 169) {
193 return 125;
194 }
195 } else {
196 switch (channel) {
197 case 36:
198 case 44:
199 // HT40 with secondary channel above primary
200 return 116;
201 case 40:
202 case 48:
203 // HT40 with secondary channel below primary
204 return 117;
205 case 52:
206 case 60:
207 // HT40 with secondary channel above primary
208 return 119;
209 case 56:
210 case 64:
211 // HT40 with secondary channel below primary
212 return 120;
213 case 100:
214 case 108:
215 case 116:
216 case 124:
217 case 132:
218 case 140:
219 // HT40 with secondary channel above primary
220 return 122;
221 case 104:
222 case 112:
223 case 120:
224 case 128:
225 case 136:
226 case 144:
227 // HT40 with secondary channel below primary
228 return 123;
229 case 149:
230 case 157:
231 // HT40 with secondary channel above primary
232 return 126;
233 case 153:
234 case 161:
235 // HT40 with secondary channel below primary
236 return 127;
237 }
238 }
239 // Error
240 return 0;
241 }
242
243 // 6GHz Band
244 if ((band & band6Ghz) != 0) {
245 // Channels 1, 5. 9, 13, ...
246 if ((channel & 0x03) == 0x01) {
247 // 20MHz channel
248 return 131;
249 }
250 // Channels 3, 11, 19, 27, ...
251 if ((channel & 0x07) == 0x03) {
252 // 40MHz channel
253 return 132;
254 }
255 // Channels 7, 23, 39, 55, ...
256 if ((channel & 0x0F) == 0x07) {
257 // 80MHz channel
258 return 133;
259 }
260 // Channels 15, 47, 69, ...
261 if ((channel & 0x1F) == 0x0F) {
262 // 160MHz channel
263 return 134;
264 }
265 if (channel == 2) {
266 // 20MHz channel
267 return 136;
268 }
269 // Error
270 return 0;
271 }
272
273 if ((band & band60Ghz) != 0) {
274 if (1 <= channel && channel <= 8) {
275 return 180;
276 } else if (9 <= channel && channel <= 15) {
277 return 181;
278 } else if (17 <= channel && channel <= 22) {
279 return 182;
280 } else if (25 <= channel && channel <= 29) {
281 return 183;
282 }
283 // Error
284 return 0;
285 }
286
287 return 0;
288}
289
290bool validatePassphrase(int passphrase_len, int min_len, int max_len)
291{
292 if (min_len != -1 && passphrase_len < min_len) return false;
293 if (max_len != -1 && passphrase_len > max_len) return false;
294 return true;
295}
296
297std::string CreateHostapdConfig(
298 const IfaceParams& iface_params,
299 const ChannelParams& channelParams,
300 const NetworkParams& nw_params,
Purushottam Kushwaha0316c882021-12-20 15:07:44 +0530301 const std::string br_name,
302 const std::string owe_transition_ifname)
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000303{
304 if (nw_params.ssid.size() >
305 static_cast<uint32_t>(
306 ParamSizeLimits::SSID_MAX_LEN_IN_BYTES)) {
307 wpa_printf(
308 MSG_ERROR, "Invalid SSID size: %zu", nw_params.ssid.size());
309 return "";
310 }
311
312 // SSID string
313 std::stringstream ss;
314 ss << std::hex;
315 ss << std::setfill('0');
316 for (uint8_t b : nw_params.ssid) {
317 ss << std::setw(2) << static_cast<unsigned int>(b);
318 }
319 const std::string ssid_as_string = ss.str();
320
321 // Encryption config string
322 uint32_t band = 0;
323 band |= static_cast<uint32_t>(channelParams.bandMask);
324 bool is_6Ghz_band_only = band == static_cast<uint32_t>(band6Ghz);
325 bool is_60Ghz_band_only = band == static_cast<uint32_t>(band60Ghz);
326 std::string encryption_config_as_string;
327 switch (nw_params.encryptionType) {
328 case EncryptionType::NONE:
329 // no security params
330 break;
331 case EncryptionType::WPA:
332 if (!validatePassphrase(
333 nw_params.passphrase.size(),
334 static_cast<uint32_t>(ParamSizeLimits::
335 WPA2_PSK_PASSPHRASE_MIN_LEN_IN_BYTES),
336 static_cast<uint32_t>(ParamSizeLimits::
337 WPA2_PSK_PASSPHRASE_MAX_LEN_IN_BYTES))) {
338 return "";
339 }
340 encryption_config_as_string = StringPrintf(
341 "wpa=3\n"
342 "wpa_pairwise=%s\n"
343 "wpa_passphrase=%s",
344 is_60Ghz_band_only ? "GCMP" : "TKIP CCMP",
345 nw_params.passphrase.c_str());
346 break;
347 case EncryptionType::WPA2:
348 if (!validatePassphrase(
349 nw_params.passphrase.size(),
350 static_cast<uint32_t>(ParamSizeLimits::
351 WPA2_PSK_PASSPHRASE_MIN_LEN_IN_BYTES),
352 static_cast<uint32_t>(ParamSizeLimits::
353 WPA2_PSK_PASSPHRASE_MAX_LEN_IN_BYTES))) {
354 return "";
355 }
356 encryption_config_as_string = StringPrintf(
357 "wpa=2\n"
358 "rsn_pairwise=%s\n"
Sunil Ravib3580db2022-01-28 12:25:46 -0800359#ifdef ENABLE_HOSTAPD_CONFIG_80211W_MFP_OPTIONAL
360 "ieee80211w=1\n"
361#endif
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000362 "wpa_passphrase=%s",
363 is_60Ghz_band_only ? "GCMP" : "CCMP",
364 nw_params.passphrase.c_str());
365 break;
366 case EncryptionType::WPA3_SAE_TRANSITION:
367 if (!validatePassphrase(
368 nw_params.passphrase.size(),
369 static_cast<uint32_t>(ParamSizeLimits::
370 WPA2_PSK_PASSPHRASE_MIN_LEN_IN_BYTES),
371 static_cast<uint32_t>(ParamSizeLimits::
372 WPA2_PSK_PASSPHRASE_MAX_LEN_IN_BYTES))) {
373 return "";
374 }
375 encryption_config_as_string = StringPrintf(
376 "wpa=2\n"
377 "rsn_pairwise=%s\n"
378 "wpa_key_mgmt=WPA-PSK SAE\n"
379 "ieee80211w=1\n"
380 "sae_require_mfp=1\n"
381 "wpa_passphrase=%s\n"
382 "sae_password=%s",
383 is_60Ghz_band_only ? "GCMP" : "CCMP",
384 nw_params.passphrase.c_str(),
385 nw_params.passphrase.c_str());
386 break;
387 case EncryptionType::WPA3_SAE:
388 if (!validatePassphrase(nw_params.passphrase.size(), 1, -1)) {
389 return "";
390 }
391 encryption_config_as_string = StringPrintf(
392 "wpa=2\n"
393 "rsn_pairwise=%s\n"
394 "wpa_key_mgmt=SAE\n"
395 "ieee80211w=2\n"
396 "sae_require_mfp=2\n"
397 "sae_pwe=%d\n"
398 "sae_password=%s",
399 is_60Ghz_band_only ? "GCMP" : "CCMP",
400 is_6Ghz_band_only ? 1 : 2,
401 nw_params.passphrase.c_str());
402 break;
Ahmed ElArabawy1aaf1802022-02-04 15:58:55 -0800403 case EncryptionType::WPA3_OWE_TRANSITION:
404 encryption_config_as_string = StringPrintf(
405 "wpa=2\n"
406 "rsn_pairwise=%s\n"
407 "wpa_key_mgmt=OWE\n"
408 "ieee80211w=2",
409 is_60Ghz_band_only ? "GCMP" : "CCMP");
410 break;
411 case EncryptionType::WPA3_OWE:
Purushottam Kushwaha0316c882021-12-20 15:07:44 +0530412 encryption_config_as_string = StringPrintf(
413 "wpa=2\n"
414 "rsn_pairwise=%s\n"
415 "wpa_key_mgmt=OWE\n"
416 "ieee80211w=2",
417 is_60Ghz_band_only ? "GCMP" : "CCMP");
418 break;
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000419 default:
420 wpa_printf(MSG_ERROR, "Unknown encryption type");
421 return "";
422 }
423
424 std::string channel_config_as_string;
425 bool isFirst = true;
426 if (channelParams.enableAcs) {
427 std::string freqList_as_string;
428 for (const auto &range :
429 channelParams.acsChannelFreqRangesMhz) {
430 if (!isFirst) {
431 freqList_as_string += ",";
432 }
433 isFirst = false;
434
435 if (range.startMhz != range.endMhz) {
436 freqList_as_string +=
437 StringPrintf("%d-%d", range.startMhz, range.endMhz);
438 } else {
439 freqList_as_string += StringPrintf("%d", range.startMhz);
440 }
441 }
442 channel_config_as_string = StringPrintf(
443 "channel=0\n"
444 "acs_exclude_dfs=%d\n"
445 "freqlist=%s",
446 channelParams.acsShouldExcludeDfs,
447 freqList_as_string.c_str());
448 } else {
449 int op_class = getOpClassForChannel(
450 channelParams.channel,
451 band,
452 iface_params.hwModeParams.enable80211N,
453 iface_params.hwModeParams.enable80211AC);
454 channel_config_as_string = StringPrintf(
455 "channel=%d\n"
456 "op_class=%d",
457 channelParams.channel, op_class);
458 }
459
460 std::string hw_mode_as_string;
461 std::string ht_cap_vht_oper_chwidth_as_string;
462 std::string enable_edmg_as_string;
463 std::string edmg_channel_as_string;
464 bool is_60Ghz_used = false;
465
466 if (((band & band60Ghz) != 0)) {
467 hw_mode_as_string = "hw_mode=ad";
468 if (iface_params.hwModeParams.enableEdmg) {
469 enable_edmg_as_string = "enable_edmg=1";
470 edmg_channel_as_string = StringPrintf(
471 "edmg_channel=%d",
472 channelParams.channel);
473 }
474 is_60Ghz_used = true;
475 } else if ((band & band2Ghz) != 0) {
476 if (((band & band5Ghz) != 0)
477 || ((band & band6Ghz) != 0)) {
478 hw_mode_as_string = "hw_mode=any";
479 if (iface_params.hwModeParams.enable80211AC) {
480 ht_cap_vht_oper_chwidth_as_string =
481 "ht_capab=[HT40+]\n"
482 "vht_oper_chwidth=1";
483 }
484 } else {
485 hw_mode_as_string = "hw_mode=g";
486 }
487 } else if (((band & band5Ghz) != 0)
488 || ((band & band6Ghz) != 0)) {
489 hw_mode_as_string = "hw_mode=a";
490 if (iface_params.hwModeParams.enable80211AC) {
491 ht_cap_vht_oper_chwidth_as_string =
492 "ht_capab=[HT40+]\n"
493 "vht_oper_chwidth=1";
494 }
495 } else {
496 wpa_printf(MSG_ERROR, "Invalid band");
497 return "";
498 }
499
500 std::string he_params_as_string;
501#ifdef CONFIG_IEEE80211AX
502 if (iface_params.hwModeParams.enable80211AX && !is_60Ghz_used) {
503 he_params_as_string = StringPrintf(
504 "ieee80211ax=1\n"
505 "he_oper_chwidth=1\n"
506 "he_su_beamformer=%d\n"
507 "he_su_beamformee=%d\n"
508 "he_mu_beamformer=%d\n"
509 "he_twt_required=%d\n",
510 iface_params.hwModeParams.enableHeSingleUserBeamformer ? 1 : 0,
511 iface_params.hwModeParams.enableHeSingleUserBeamformee ? 1 : 0,
512 iface_params.hwModeParams.enableHeMultiUserBeamformer ? 1 : 0,
513 iface_params.hwModeParams.enableHeTargetWakeTime ? 1 : 0);
514 } else {
515 he_params_as_string = "ieee80211ax=0";
516 }
517#endif /* CONFIG_IEEE80211AX */
518
519#ifdef CONFIG_INTERWORKING
520 std::string access_network_params_as_string;
521 if (nw_params.isMetered) {
522 access_network_params_as_string = StringPrintf(
523 "interworking=1\n"
524 "access_network_type=2\n"); // CHARGEABLE_PUBLIC_NETWORK
525 } else {
526 access_network_params_as_string = StringPrintf(
527 "interworking=0\n");
528 }
529#endif /* CONFIG_INTERWORKING */
530
531 std::string bridge_as_string;
532 if (!br_name.empty()) {
533 bridge_as_string = StringPrintf("bridge=%s", br_name.c_str());
534 }
535
Serik Beketayev8af7a722021-12-23 12:25:36 -0800536 // vendor_elements string
537 std::string vendor_elements_as_string;
538 if (nw_params.vendorElements.size() > 0) {
539 std::stringstream ss;
540 ss << std::hex;
541 ss << std::setfill('0');
542 for (uint8_t b : nw_params.vendorElements) {
543 ss << std::setw(2) << static_cast<unsigned int>(b);
544 }
545 vendor_elements_as_string = StringPrintf("vendor_elements=%s", ss.str().c_str());
546 }
547
Purushottam Kushwaha0316c882021-12-20 15:07:44 +0530548 std::string owe_transition_ifname_as_string;
549 if (!owe_transition_ifname.empty()) {
550 owe_transition_ifname_as_string = StringPrintf(
551 "owe_transition_ifname=%s", owe_transition_ifname.c_str());
552 }
553
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000554 return StringPrintf(
555 "interface=%s\n"
556 "driver=nl80211\n"
557 "ctrl_interface=/data/vendor/wifi/hostapd/ctrl\n"
558 // ssid2 signals to hostapd that the value is not a literal value
559 // for use as a SSID. In this case, we're giving it a hex
560 // std::string and hostapd needs to expect that.
561 "ssid2=%s\n"
562 "%s\n"
563 "ieee80211n=%d\n"
564 "ieee80211ac=%d\n"
565 "%s\n"
566 "%s\n"
567 "%s\n"
568 "ignore_broadcast_ssid=%d\n"
569 "wowlan_triggers=any\n"
570#ifdef CONFIG_INTERWORKING
571 "%s\n"
572#endif /* CONFIG_INTERWORKING */
573 "%s\n"
574 "%s\n"
575 "%s\n"
Serik Beketayev8af7a722021-12-23 12:25:36 -0800576 "%s\n"
Purushottam Kushwaha0316c882021-12-20 15:07:44 +0530577 "%s\n"
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000578 "%s\n",
579 iface_params.name.c_str(), ssid_as_string.c_str(),
580 channel_config_as_string.c_str(),
581 iface_params.hwModeParams.enable80211N ? 1 : 0,
582 iface_params.hwModeParams.enable80211AC ? 1 : 0,
583 he_params_as_string.c_str(),
584 hw_mode_as_string.c_str(), ht_cap_vht_oper_chwidth_as_string.c_str(),
585 nw_params.isHidden ? 1 : 0,
586#ifdef CONFIG_INTERWORKING
587 access_network_params_as_string.c_str(),
588#endif /* CONFIG_INTERWORKING */
589 encryption_config_as_string.c_str(),
590 bridge_as_string.c_str(),
Purushottam Kushwaha0316c882021-12-20 15:07:44 +0530591 owe_transition_ifname_as_string.c_str(),
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000592 enable_edmg_as_string.c_str(),
Serik Beketayev8af7a722021-12-23 12:25:36 -0800593 edmg_channel_as_string.c_str(),
594 vendor_elements_as_string.c_str());
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000595}
596
597Generation getGeneration(hostapd_hw_modes *current_mode)
598{
599 wpa_printf(MSG_DEBUG, "getGeneration hwmode=%d, ht_enabled=%d,"
600 " vht_enabled=%d, he_supported=%d",
601 current_mode->mode, current_mode->ht_capab != 0,
602 current_mode->vht_capab != 0, current_mode->he_capab->he_supported);
603 switch (current_mode->mode) {
604 case HOSTAPD_MODE_IEEE80211B:
605 return Generation::WIFI_STANDARD_LEGACY;
606 case HOSTAPD_MODE_IEEE80211G:
607 return current_mode->ht_capab == 0 ?
608 Generation::WIFI_STANDARD_LEGACY : Generation::WIFI_STANDARD_11N;
609 case HOSTAPD_MODE_IEEE80211A:
610 if (current_mode->he_capab->he_supported) {
611 return Generation::WIFI_STANDARD_11AX;
612 }
613 return current_mode->vht_capab == 0 ?
614 Generation::WIFI_STANDARD_11N : Generation::WIFI_STANDARD_11AC;
615 case HOSTAPD_MODE_IEEE80211AD:
616 return Generation::WIFI_STANDARD_11AD;
617 default:
618 return Generation::WIFI_STANDARD_UNKNOWN;
619 }
620}
621
622Bandwidth getBandwidth(struct hostapd_config *iconf)
623{
624 wpa_printf(MSG_DEBUG, "getBandwidth %d, isHT=%d, isHT40=%d",
625 iconf->vht_oper_chwidth, iconf->ieee80211n,
626 iconf->secondary_channel);
627 switch (iconf->vht_oper_chwidth) {
628 case CHANWIDTH_80MHZ:
629 return Bandwidth::BANDWIDTH_80;
630 case CHANWIDTH_80P80MHZ:
631 return Bandwidth::BANDWIDTH_80P80;
632 break;
633 case CHANWIDTH_160MHZ:
634 return Bandwidth::BANDWIDTH_160;
635 break;
636 case CHANWIDTH_USE_HT:
637 if (iconf->ieee80211n) {
638 return iconf->secondary_channel != 0 ?
639 Bandwidth::BANDWIDTH_40 : Bandwidth::BANDWIDTH_20;
640 }
641 return Bandwidth::BANDWIDTH_20_NOHT;
642 case CHANWIDTH_2160MHZ:
643 return Bandwidth::BANDWIDTH_2160;
644 case CHANWIDTH_4320MHZ:
645 return Bandwidth::BANDWIDTH_4320;
646 case CHANWIDTH_6480MHZ:
647 return Bandwidth::BANDWIDTH_6480;
648 case CHANWIDTH_8640MHZ:
649 return Bandwidth::BANDWIDTH_8640;
650 default:
651 return Bandwidth::BANDWIDTH_INVALID;
652 }
653}
654
655bool forceStaDisconnection(struct hostapd_data* hapd,
656 const std::vector<uint8_t>& client_address,
657 const uint16_t reason_code) {
658 struct sta_info *sta;
659 for (sta = hapd->sta_list; sta; sta = sta->next) {
660 int res;
661 res = memcmp(sta->addr, client_address.data(), ETH_ALEN);
662 if (res == 0) {
663 wpa_printf(MSG_INFO, "Force client:" MACSTR " disconnect with reason: %d",
664 MAC2STR(client_address.data()), reason_code);
665 ap_sta_disconnect(hapd, sta, sta->addr, reason_code);
666 return true;
667 }
668 }
669 return false;
670}
671
672// hostapd core functions accept "C" style function pointers, so use global
673// functions to pass to the hostapd core function and store the corresponding
674// std::function methods to be invoked.
675//
676// NOTE: Using the pattern from the vendor HAL (wifi_legacy_hal.cpp).
677//
678// Callback to be invoked once setup is complete
679std::function<void(struct hostapd_data*)> on_setup_complete_internal_callback;
680void onAsyncSetupCompleteCb(void* ctx)
681{
682 struct hostapd_data* iface_hapd = (struct hostapd_data*)ctx;
683 if (on_setup_complete_internal_callback) {
684 on_setup_complete_internal_callback(iface_hapd);
685 // Invalidate this callback since we don't want this firing
686 // again in single AP mode.
687 if (strlen(iface_hapd->conf->bridge) > 0) {
688 on_setup_complete_internal_callback = nullptr;
689 }
690 }
691}
692
693// Callback to be invoked on hotspot client connection/disconnection
694std::function<void(struct hostapd_data*, const u8 *mac_addr, int authorized,
695 const u8 *p2p_dev_addr)> on_sta_authorized_internal_callback;
696void onAsyncStaAuthorizedCb(void* ctx, const u8 *mac_addr, int authorized,
697 const u8 *p2p_dev_addr)
698{
699 struct hostapd_data* iface_hapd = (struct hostapd_data*)ctx;
700 if (on_sta_authorized_internal_callback) {
701 on_sta_authorized_internal_callback(iface_hapd, mac_addr,
702 authorized, p2p_dev_addr);
703 }
704}
705
706std::function<void(struct hostapd_data*, int level,
707 enum wpa_msg_type type, const char *txt,
708 size_t len)> on_wpa_msg_internal_callback;
709
710void onAsyncWpaEventCb(void *ctx, int level,
711 enum wpa_msg_type type, const char *txt,
712 size_t len)
713{
714 struct hostapd_data* iface_hapd = (struct hostapd_data*)ctx;
715 if (on_wpa_msg_internal_callback) {
716 on_wpa_msg_internal_callback(iface_hapd, level,
717 type, txt, len);
718 }
719}
720
721inline ndk::ScopedAStatus createStatus(HostapdStatusCode status_code) {
722 return ndk::ScopedAStatus::fromServiceSpecificError(
723 static_cast<int32_t>(status_code));
724}
725
726inline ndk::ScopedAStatus createStatusWithMsg(
727 HostapdStatusCode status_code, std::string msg)
728{
729 return ndk::ScopedAStatus::fromServiceSpecificErrorWithMessage(
730 static_cast<int32_t>(status_code), msg.c_str());
731}
732
733// Method called by death_notifier_ on client death.
734void onDeath(void* cookie) {
735 wpa_printf(MSG_ERROR, "Client died. Terminating...");
736 eloop_terminate();
737}
738
739} // namespace
740
741namespace aidl {
742namespace android {
743namespace hardware {
744namespace wifi {
745namespace hostapd {
746
747Hostapd::Hostapd(struct hapd_interfaces* interfaces)
748 : interfaces_(interfaces)
749{
750 death_notifier_ = AIBinder_DeathRecipient_new(onDeath);
751}
752
753::ndk::ScopedAStatus Hostapd::addAccessPoint(
754 const IfaceParams& iface_params, const NetworkParams& nw_params)
755{
756 return addAccessPointInternal(iface_params, nw_params);
757}
758
759::ndk::ScopedAStatus Hostapd::removeAccessPoint(const std::string& iface_name)
760{
761 return removeAccessPointInternal(iface_name);
762}
763
764::ndk::ScopedAStatus Hostapd::terminate()
765{
766 wpa_printf(MSG_INFO, "Terminating...");
767 // Clear the callback to avoid IPCThreadState shutdown during the
768 // callback event.
769 callbacks_.clear();
770 eloop_terminate();
771 return ndk::ScopedAStatus::ok();
772}
773
774::ndk::ScopedAStatus Hostapd::registerCallback(
775 const std::shared_ptr<IHostapdCallback>& callback)
776{
777 return registerCallbackInternal(callback);
778}
779
780::ndk::ScopedAStatus Hostapd::forceClientDisconnect(
781 const std::string& iface_name, const std::vector<uint8_t>& client_address,
782 Ieee80211ReasonCode reason_code)
783{
784 return forceClientDisconnectInternal(iface_name, client_address, reason_code);
785}
786
787::ndk::ScopedAStatus Hostapd::setDebugParams(DebugLevel level)
788{
789 return setDebugParamsInternal(level);
790}
791
792::ndk::ScopedAStatus Hostapd::addAccessPointInternal(
793 const IfaceParams& iface_params,
794 const NetworkParams& nw_params)
795{
796 int channelParamsSize = iface_params.channelParams.size();
797 if (channelParamsSize == 1) {
798 // Single AP
799 wpa_printf(MSG_INFO, "AddSingleAccessPoint, iface=%s",
800 iface_params.name.c_str());
801 return addSingleAccessPoint(iface_params, iface_params.channelParams[0],
Purushottam Kushwaha0316c882021-12-20 15:07:44 +0530802 nw_params, "", "");
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000803 } else if (channelParamsSize == 2) {
804 // Concurrent APs
805 wpa_printf(MSG_INFO, "AddDualAccessPoint, iface=%s",
806 iface_params.name.c_str());
807 return addConcurrentAccessPoints(iface_params, nw_params);
808 }
809 return createStatus(HostapdStatusCode::FAILURE_ARGS_INVALID);
810}
811
Purushottam Kushwaha0316c882021-12-20 15:07:44 +0530812std::vector<uint8_t> generateRandomOweSsid()
813{
814 u8 random[8] = {0};
815 os_get_random(random, 8);
816
817 std::string ssid = StringPrintf("Owe-%s", random);
818 wpa_printf(MSG_INFO, "Generated OWE SSID: %s", ssid.c_str());
819 std::vector<uint8_t> vssid(ssid.begin(), ssid.end());
820
821 return vssid;
822}
823
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000824::ndk::ScopedAStatus Hostapd::addConcurrentAccessPoints(
825 const IfaceParams& iface_params, const NetworkParams& nw_params)
826{
827 int channelParamsListSize = iface_params.channelParams.size();
828 // Get available interfaces in bridge
829 std::vector<std::string> managed_interfaces;
830 std::string br_name = StringPrintf(
831 "%s", iface_params.name.c_str());
832 if (!GetInterfacesInBridge(br_name, &managed_interfaces)) {
833 return createStatusWithMsg(HostapdStatusCode::FAILURE_UNKNOWN,
834 "Get interfaces in bridge failed.");
835 }
836 if (managed_interfaces.size() < channelParamsListSize) {
837 return createStatusWithMsg(HostapdStatusCode::FAILURE_UNKNOWN,
838 "Available interfaces less than requested bands");
839 }
840 // start BSS on specified bands
841 for (std::size_t i = 0; i < channelParamsListSize; i ++) {
842 IfaceParams iface_params_new = iface_params;
Purushottam Kushwaha0316c882021-12-20 15:07:44 +0530843 NetworkParams nw_params_new = nw_params;
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000844 iface_params_new.name = managed_interfaces[i];
Purushottam Kushwaha0316c882021-12-20 15:07:44 +0530845
846 std::string owe_transition_ifname = "";
Ahmed ElArabawy1aaf1802022-02-04 15:58:55 -0800847 if (nw_params.encryptionType == EncryptionType::WPA3_OWE_TRANSITION) {
Purushottam Kushwaha0316c882021-12-20 15:07:44 +0530848 if (i == 0 && i+1 < channelParamsListSize) {
849 owe_transition_ifname = managed_interfaces[i+1];
850 nw_params_new.encryptionType = EncryptionType::NONE;
851 } else {
852 owe_transition_ifname = managed_interfaces[0];
853 nw_params_new.isHidden = true;
854 nw_params_new.ssid = generateRandomOweSsid();
855 }
856 }
857
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000858 ndk::ScopedAStatus status = addSingleAccessPoint(
Purushottam Kushwaha0316c882021-12-20 15:07:44 +0530859 iface_params_new, iface_params.channelParams[i], nw_params_new,
860 br_name, owe_transition_ifname);
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000861 if (!status.isOk()) {
862 wpa_printf(MSG_ERROR, "Failed to addAccessPoint %s",
863 managed_interfaces[i].c_str());
864 return status;
865 }
866 }
867 // Save bridge interface info
868 br_interfaces_[br_name] = managed_interfaces;
869 return ndk::ScopedAStatus::ok();
870}
871
872::ndk::ScopedAStatus Hostapd::addSingleAccessPoint(
873 const IfaceParams& iface_params,
874 const ChannelParams& channelParams,
875 const NetworkParams& nw_params,
Purushottam Kushwaha0316c882021-12-20 15:07:44 +0530876 const std::string br_name,
877 const std::string owe_transition_ifname)
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000878{
879 if (hostapd_get_iface(interfaces_, iface_params.name.c_str())) {
880 wpa_printf(
881 MSG_ERROR, "Interface %s already present",
882 iface_params.name.c_str());
883 return createStatus(HostapdStatusCode::FAILURE_IFACE_EXISTS);
884 }
Purushottam Kushwaha0316c882021-12-20 15:07:44 +0530885 const auto conf_params = CreateHostapdConfig(iface_params, channelParams, nw_params,
886 br_name, owe_transition_ifname);
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000887 if (conf_params.empty()) {
888 wpa_printf(MSG_ERROR, "Failed to create config params");
889 return createStatus(HostapdStatusCode::FAILURE_ARGS_INVALID);
890 }
891 const auto conf_file_path =
892 WriteHostapdConfig(iface_params.name, conf_params);
893 if (conf_file_path.empty()) {
894 wpa_printf(MSG_ERROR, "Failed to write config file");
895 return createStatus(HostapdStatusCode::FAILURE_UNKNOWN);
896 }
897 std::string add_iface_param_str = StringPrintf(
898 "%s config=%s", iface_params.name.c_str(),
899 conf_file_path.c_str());
900 std::vector<char> add_iface_param_vec(
901 add_iface_param_str.begin(), add_iface_param_str.end() + 1);
902 if (hostapd_add_iface(interfaces_, add_iface_param_vec.data()) < 0) {
903 wpa_printf(
904 MSG_ERROR, "Adding interface %s failed",
905 add_iface_param_str.c_str());
906 return createStatus(HostapdStatusCode::FAILURE_UNKNOWN);
907 }
908 struct hostapd_data* iface_hapd =
909 hostapd_get_iface(interfaces_, iface_params.name.c_str());
910 WPA_ASSERT(iface_hapd != nullptr && iface_hapd->iface != nullptr);
911 // Register the setup complete callbacks
912 on_setup_complete_internal_callback =
913 [this](struct hostapd_data* iface_hapd) {
914 wpa_printf(
915 MSG_INFO, "AP interface setup completed - state %s",
916 hostapd_state_text(iface_hapd->iface->state));
917 if (iface_hapd->iface->state == HAPD_IFACE_DISABLED) {
918 // Invoke the failure callback on all registered
919 // clients.
920 for (const auto& callback : callbacks_) {
921 callback->onFailure(strlen(iface_hapd->conf->bridge) > 0 ?
Les Leee08c2862021-10-29 16:36:41 +0800922 iface_hapd->conf->bridge : iface_hapd->conf->iface,
923 iface_hapd->conf->iface);
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000924 }
925 }
926 };
927
928 // Register for new client connect/disconnect indication.
929 on_sta_authorized_internal_callback =
930 [this](struct hostapd_data* iface_hapd, const u8 *mac_addr,
931 int authorized, const u8 *p2p_dev_addr) {
932 wpa_printf(MSG_DEBUG, "notify client " MACSTR " %s",
933 MAC2STR(mac_addr),
934 (authorized) ? "Connected" : "Disconnected");
935 ClientInfo info;
936 info.ifaceName = strlen(iface_hapd->conf->bridge) > 0 ?
937 iface_hapd->conf->bridge : iface_hapd->conf->iface;
938 info.apIfaceInstance = iface_hapd->conf->iface;
939 info.clientAddress.assign(mac_addr, mac_addr + ETH_ALEN);
940 info.isConnected = authorized;
941 for (const auto &callback : callbacks_) {
942 callback->onConnectedClientsChanged(info);
943 }
944 };
945
946 // Register for wpa_event which used to get channel switch event
947 on_wpa_msg_internal_callback =
948 [this](struct hostapd_data* iface_hapd, int level,
949 enum wpa_msg_type type, const char *txt,
950 size_t len) {
951 wpa_printf(MSG_DEBUG, "Receive wpa msg : %s", txt);
952 if (os_strncmp(txt, AP_EVENT_ENABLED,
953 strlen(AP_EVENT_ENABLED)) == 0 ||
954 os_strncmp(txt, WPA_EVENT_CHANNEL_SWITCH,
955 strlen(WPA_EVENT_CHANNEL_SWITCH)) == 0) {
956 ApInfo info;
957 info.ifaceName = strlen(iface_hapd->conf->bridge) > 0 ?
958 iface_hapd->conf->bridge : iface_hapd->conf->iface,
959 info.apIfaceInstance = iface_hapd->conf->iface;
960 info.freqMhz = iface_hapd->iface->freq;
961 info.bandwidth = getBandwidth(iface_hapd->iconf);
962 info.generation = getGeneration(iface_hapd->iface->current_mode);
963 info.apIfaceInstanceMacAddress.assign(iface_hapd->own_addr,
964 iface_hapd->own_addr + ETH_ALEN);
965 for (const auto &callback : callbacks_) {
966 callback->onApInstanceInfoChanged(info);
967 }
Yu Ouyang378d3c42021-08-20 17:31:08 +0800968 } else if (os_strncmp(txt, AP_EVENT_DISABLED, strlen(AP_EVENT_DISABLED)) == 0) {
969 // Invoke the failure callback on all registered clients.
970 for (const auto& callback : callbacks_) {
971 callback->onFailure(strlen(iface_hapd->conf->bridge) > 0 ?
Les Leee08c2862021-10-29 16:36:41 +0800972 iface_hapd->conf->bridge : iface_hapd->conf->iface,
973 iface_hapd->conf->iface);
Yu Ouyang378d3c42021-08-20 17:31:08 +0800974 }
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000975 }
Yu Ouyang378d3c42021-08-20 17:31:08 +0800976 };
Gabriel Biren72cf9a52021-06-25 23:29:26 +0000977
978 // Setup callback
979 iface_hapd->setup_complete_cb = onAsyncSetupCompleteCb;
980 iface_hapd->setup_complete_cb_ctx = iface_hapd;
981 iface_hapd->sta_authorized_cb = onAsyncStaAuthorizedCb;
982 iface_hapd->sta_authorized_cb_ctx = iface_hapd;
983 wpa_msg_register_cb(onAsyncWpaEventCb);
984
985 if (hostapd_enable_iface(iface_hapd->iface) < 0) {
986 wpa_printf(
987 MSG_ERROR, "Enabling interface %s failed",
988 iface_params.name.c_str());
989 return createStatus(HostapdStatusCode::FAILURE_UNKNOWN);
990 }
991 return ndk::ScopedAStatus::ok();
992}
993
994::ndk::ScopedAStatus Hostapd::removeAccessPointInternal(const std::string& iface_name)
995{
996 // interfaces to be removed
997 std::vector<std::string> interfaces;
998 bool is_error = false;
999
1000 const auto it = br_interfaces_.find(iface_name);
1001 if (it != br_interfaces_.end()) {
1002 // In case bridge, remove managed interfaces
1003 interfaces = it->second;
1004 br_interfaces_.erase(iface_name);
1005 } else {
1006 // else remove current interface
1007 interfaces.push_back(iface_name);
1008 }
1009
1010 for (auto& iface : interfaces) {
1011 std::vector<char> remove_iface_param_vec(
1012 iface.begin(), iface.end() + 1);
1013 if (hostapd_remove_iface(interfaces_, remove_iface_param_vec.data()) < 0) {
1014 wpa_printf(MSG_INFO, "Remove interface %s failed", iface.c_str());
1015 is_error = true;
1016 }
1017 }
1018 if (is_error) {
1019 return createStatus(HostapdStatusCode::FAILURE_UNKNOWN);
1020 }
1021 return ndk::ScopedAStatus::ok();
1022}
1023
1024::ndk::ScopedAStatus Hostapd::registerCallbackInternal(
1025 const std::shared_ptr<IHostapdCallback>& callback)
1026{
1027 binder_status_t status = AIBinder_linkToDeath(callback->asBinder().get(),
1028 death_notifier_, this /* cookie */);
1029 if (status != STATUS_OK) {
1030 wpa_printf(
1031 MSG_ERROR,
1032 "Error registering for death notification for "
1033 "hostapd callback object");
1034 return createStatus(HostapdStatusCode::FAILURE_UNKNOWN);
1035 }
1036 callbacks_.push_back(callback);
1037 return ndk::ScopedAStatus::ok();
1038}
1039
1040::ndk::ScopedAStatus Hostapd::forceClientDisconnectInternal(const std::string& iface_name,
1041 const std::vector<uint8_t>& client_address, Ieee80211ReasonCode reason_code)
1042{
1043 struct hostapd_data *hapd = hostapd_get_iface(interfaces_, iface_name.c_str());
1044 bool result;
1045 if (!hapd) {
1046 for (auto const& iface : br_interfaces_) {
1047 if (iface.first == iface_name) {
1048 for (auto const& instance : iface.second) {
1049 hapd = hostapd_get_iface(interfaces_, instance.c_str());
1050 if (hapd) {
1051 result = forceStaDisconnection(hapd, client_address,
1052 (uint16_t) reason_code);
1053 if (result) break;
1054 }
1055 }
1056 }
1057 }
1058 } else {
1059 result = forceStaDisconnection(hapd, client_address, (uint16_t) reason_code);
1060 }
1061 if (!hapd) {
1062 wpa_printf(MSG_ERROR, "Interface %s doesn't exist", iface_name.c_str());
1063 return createStatus(HostapdStatusCode::FAILURE_IFACE_UNKNOWN);
1064 }
1065 if (result) {
1066 return ndk::ScopedAStatus::ok();
1067 }
1068 return createStatus(HostapdStatusCode::FAILURE_CLIENT_UNKNOWN);
1069}
1070
1071::ndk::ScopedAStatus Hostapd::setDebugParamsInternal(DebugLevel level)
1072{
1073 wpa_debug_level = static_cast<uint32_t>(level);
1074 return ndk::ScopedAStatus::ok();
1075}
1076
1077} // namespace hostapd
1078} // namespace wifi
1079} // namespace hardware
1080} // namespace android
Les Leee08c2862021-10-29 16:36:41 +08001081} // namespace aidl