blob: a2bdbb9785a9afc04043a4bc6514b6dd15c54f73 [file] [log] [blame]
Gabriel Birenf3262f92022-07-15 23:25:39 +00001/*
2 * Copyright (C) 2022 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#include "wifi_chip.h"
18
19#include <android-base/logging.h>
20#include <android-base/unique_fd.h>
21#include <cutils/properties.h>
22#include <fcntl.h>
23#include <net/if.h>
24#include <sys/stat.h>
25#include <sys/sysmacros.h>
26
27#include "aidl_return_util.h"
28#include "aidl_struct_util.h"
maheshkkva8aba172023-02-13 12:33:26 -080029#include "wifi_legacy_hal.h"
Gabriel Birenf3262f92022-07-15 23:25:39 +000030#include "wifi_status_util.h"
31
32#define P2P_MGMT_DEVICE_PREFIX "p2p-dev-"
33
34namespace {
35using aidl::android::hardware::wifi::IfaceType;
36using aidl::android::hardware::wifi::IWifiChip;
37using CoexRestriction = aidl::android::hardware::wifi::IWifiChip::CoexRestriction;
Shuibing Daie5fbcab2022-12-19 15:37:19 -080038using ChannelCategoryMask = aidl::android::hardware::wifi::IWifiChip::ChannelCategoryMask;
Gabriel Birenf3262f92022-07-15 23:25:39 +000039using android::base::unique_fd;
40
41constexpr char kCpioMagic[] = "070701";
42constexpr size_t kMaxBufferSizeBytes = 1024 * 1024 * 3;
43constexpr uint32_t kMaxRingBufferFileAgeSeconds = 60 * 60 * 10;
44constexpr uint32_t kMaxRingBufferFileNum = 20;
45constexpr char kTombstoneFolderPath[] = "/data/vendor/tombstones/wifi/";
46constexpr char kActiveWlanIfaceNameProperty[] = "wifi.active.interface";
47constexpr char kNoActiveWlanIfaceNamePropertyValue[] = "";
48constexpr unsigned kMaxWlanIfaces = 5;
49constexpr char kApBridgeIfacePrefix[] = "ap_br_";
50
51template <typename Iface>
52void invalidateAndClear(std::vector<std::shared_ptr<Iface>>& ifaces, std::shared_ptr<Iface> iface) {
53 iface->invalidate();
54 ifaces.erase(std::remove(ifaces.begin(), ifaces.end(), iface), ifaces.end());
55}
56
57template <typename Iface>
58void invalidateAndClearAll(std::vector<std::shared_ptr<Iface>>& ifaces) {
59 for (const auto& iface : ifaces) {
60 iface->invalidate();
61 }
62 ifaces.clear();
63}
64
65template <typename Iface>
66std::vector<std::string> getNames(std::vector<std::shared_ptr<Iface>>& ifaces) {
67 std::vector<std::string> names;
68 for (const auto& iface : ifaces) {
69 names.emplace_back(iface->getName());
70 }
71 return names;
72}
73
74template <typename Iface>
75std::shared_ptr<Iface> findUsingName(std::vector<std::shared_ptr<Iface>>& ifaces,
76 const std::string& name) {
77 std::vector<std::string> names;
78 for (const auto& iface : ifaces) {
79 if (name == iface->getName()) {
80 return iface;
81 }
82 }
83 return nullptr;
84}
85
86std::string getWlanIfaceName(unsigned idx) {
87 if (idx >= kMaxWlanIfaces) {
88 CHECK(false) << "Requested interface beyond wlan" << kMaxWlanIfaces;
89 return {};
90 }
91
92 std::array<char, PROPERTY_VALUE_MAX> buffer;
93 if (idx == 0 || idx == 1) {
94 const char* altPropName = (idx == 0) ? "wifi.interface" : "wifi.concurrent.interface";
95 auto res = property_get(altPropName, buffer.data(), nullptr);
96 if (res > 0) return buffer.data();
97 }
98 std::string propName = "wifi.interface." + std::to_string(idx);
99 auto res = property_get(propName.c_str(), buffer.data(), nullptr);
100 if (res > 0) return buffer.data();
101
102 return "wlan" + std::to_string(idx);
103}
104
105// Returns the dedicated iface name if defined.
106// Returns two ifaces in bridged mode.
107std::vector<std::string> getPredefinedApIfaceNames(bool is_bridged) {
108 std::vector<std::string> ifnames;
109 std::array<char, PROPERTY_VALUE_MAX> buffer;
110 buffer.fill(0);
111 if (property_get("ro.vendor.wifi.sap.interface", buffer.data(), nullptr) == 0) {
112 return ifnames;
113 }
114 ifnames.push_back(buffer.data());
115 if (is_bridged) {
116 buffer.fill(0);
117 if (property_get("ro.vendor.wifi.sap.concurrent.iface", buffer.data(), nullptr) == 0) {
118 return ifnames;
119 }
120 ifnames.push_back(buffer.data());
121 }
122 return ifnames;
123}
124
125std::string getPredefinedP2pIfaceName() {
126 std::array<char, PROPERTY_VALUE_MAX> primaryIfaceName;
127 char p2pParentIfname[100];
128 std::string p2pDevIfName = "";
129 std::array<char, PROPERTY_VALUE_MAX> buffer;
130 property_get("wifi.direct.interface", buffer.data(), "p2p0");
131 if (strncmp(buffer.data(), P2P_MGMT_DEVICE_PREFIX, strlen(P2P_MGMT_DEVICE_PREFIX)) == 0) {
132 /* Get the p2p parent interface name from p2p device interface name set
133 * in property */
134 strlcpy(p2pParentIfname, buffer.data() + strlen(P2P_MGMT_DEVICE_PREFIX),
135 strlen(buffer.data()) - strlen(P2P_MGMT_DEVICE_PREFIX));
136 if (property_get(kActiveWlanIfaceNameProperty, primaryIfaceName.data(), nullptr) == 0) {
137 return buffer.data();
138 }
139 /* Check if the parent interface derived from p2p device interface name
140 * is active */
141 if (strncmp(p2pParentIfname, primaryIfaceName.data(),
142 strlen(buffer.data()) - strlen(P2P_MGMT_DEVICE_PREFIX)) != 0) {
143 /*
144 * Update the predefined p2p device interface parent interface name
145 * with current active wlan interface
146 */
147 p2pDevIfName += P2P_MGMT_DEVICE_PREFIX;
148 p2pDevIfName += primaryIfaceName.data();
149 LOG(INFO) << "update the p2p device interface name to " << p2pDevIfName.c_str();
150 return p2pDevIfName;
151 }
152 }
153 return buffer.data();
154}
155
156// Returns the dedicated iface name if one is defined.
157std::string getPredefinedNanIfaceName() {
158 std::array<char, PROPERTY_VALUE_MAX> buffer;
159 if (property_get("wifi.aware.interface", buffer.data(), nullptr) == 0) {
160 return {};
161 }
162 return buffer.data();
163}
164
165void setActiveWlanIfaceNameProperty(const std::string& ifname) {
166 auto res = property_set(kActiveWlanIfaceNameProperty, ifname.data());
167 if (res != 0) {
168 PLOG(ERROR) << "Failed to set active wlan iface name property";
169 }
170}
171
172// Delete files that meet either condition:
173// 1. Older than a predefined time in the wifi tombstone dir.
174// 2. Files in excess to a predefined amount, starting from the oldest ones
175bool removeOldFilesInternal() {
176 time_t now = time(0);
177 const time_t delete_files_before = now - kMaxRingBufferFileAgeSeconds;
178 std::unique_ptr<DIR, decltype(&closedir)> dir_dump(opendir(kTombstoneFolderPath), closedir);
179 if (!dir_dump) {
180 PLOG(ERROR) << "Failed to open directory";
181 return false;
182 }
183 struct dirent* dp;
184 bool success = true;
185 std::list<std::pair<const time_t, std::string>> valid_files;
186 while ((dp = readdir(dir_dump.get()))) {
187 if (dp->d_type != DT_REG) {
188 continue;
189 }
190 std::string cur_file_name(dp->d_name);
191 struct stat cur_file_stat;
192 std::string cur_file_path = kTombstoneFolderPath + cur_file_name;
193 if (stat(cur_file_path.c_str(), &cur_file_stat) == -1) {
194 PLOG(ERROR) << "Failed to get file stat for " << cur_file_path;
195 success = false;
196 continue;
197 }
198 const time_t cur_file_time = cur_file_stat.st_mtime;
199 valid_files.push_back(std::pair<const time_t, std::string>(cur_file_time, cur_file_path));
200 }
201 valid_files.sort(); // sort the list of files by last modified time from
202 // small to big.
203 uint32_t cur_file_count = valid_files.size();
204 for (auto cur_file : valid_files) {
205 if (cur_file_count > kMaxRingBufferFileNum || cur_file.first < delete_files_before) {
206 if (unlink(cur_file.second.c_str()) != 0) {
207 PLOG(ERROR) << "Error deleting file";
208 success = false;
209 }
210 cur_file_count--;
211 } else {
212 break;
213 }
214 }
215 return success;
216}
217
218// Helper function for |cpioArchiveFilesInDir|
219bool cpioWriteHeader(int out_fd, struct stat& st, const char* file_name, size_t file_name_len) {
220 const int buf_size = 32 * 1024;
221 std::array<char, buf_size> read_buf;
222 ssize_t llen = snprintf(
223 read_buf.data(), buf_size, "%s%08X%08X%08X%08X%08X%08X%08X%08X%08X%08X%08X%08X%08X",
224 kCpioMagic, static_cast<int>(st.st_ino), st.st_mode, st.st_uid, st.st_gid,
225 static_cast<int>(st.st_nlink), static_cast<int>(st.st_mtime),
226 static_cast<int>(st.st_size), major(st.st_dev), minor(st.st_dev), major(st.st_rdev),
227 minor(st.st_rdev), static_cast<uint32_t>(file_name_len), 0);
228 if (write(out_fd, read_buf.data(), llen < buf_size ? llen : buf_size - 1) == -1) {
229 PLOG(ERROR) << "Error writing cpio header to file " << file_name;
230 return false;
231 }
232 if (write(out_fd, file_name, file_name_len) == -1) {
233 PLOG(ERROR) << "Error writing filename to file " << file_name;
234 return false;
235 }
236
237 // NUL Pad header up to 4 multiple bytes.
238 llen = (llen + file_name_len) % 4;
239 if (llen != 0) {
240 const uint32_t zero = 0;
241 if (write(out_fd, &zero, 4 - llen) == -1) {
242 PLOG(ERROR) << "Error padding 0s to file " << file_name;
243 return false;
244 }
245 }
246 return true;
247}
248
249// Helper function for |cpioArchiveFilesInDir|
250size_t cpioWriteFileContent(int fd_read, int out_fd, struct stat& st) {
251 // writing content of file
252 std::array<char, 32 * 1024> read_buf;
253 ssize_t llen = st.st_size;
254 size_t n_error = 0;
255 while (llen > 0) {
256 ssize_t bytes_read = read(fd_read, read_buf.data(), read_buf.size());
257 if (bytes_read == -1) {
258 PLOG(ERROR) << "Error reading file";
259 return ++n_error;
260 }
261 llen -= bytes_read;
262 if (write(out_fd, read_buf.data(), bytes_read) == -1) {
263 PLOG(ERROR) << "Error writing data to file";
264 return ++n_error;
265 }
266 if (bytes_read == 0) { // this should never happen, but just in case
267 // to unstuck from while loop
268 PLOG(ERROR) << "Unexpected read result";
269 n_error++;
270 break;
271 }
272 }
273 llen = st.st_size % 4;
274 if (llen != 0) {
275 const uint32_t zero = 0;
276 if (write(out_fd, &zero, 4 - llen) == -1) {
277 PLOG(ERROR) << "Error padding 0s to file";
278 return ++n_error;
279 }
280 }
281 return n_error;
282}
283
284// Helper function for |cpioArchiveFilesInDir|
285bool cpioWriteFileTrailer(int out_fd) {
286 const int buf_size = 4096;
287 std::array<char, buf_size> read_buf;
288 read_buf.fill(0);
289 ssize_t llen = snprintf(read_buf.data(), 4096, "070701%040X%056X%08XTRAILER!!!", 1, 0x0b, 0);
290 if (write(out_fd, read_buf.data(), (llen < buf_size ? llen : buf_size - 1) + 4) == -1) {
291 PLOG(ERROR) << "Error writing trailing bytes";
292 return false;
293 }
294 return true;
295}
296
297// Archives all files in |input_dir| and writes result into |out_fd|
298// Logic obtained from //external/toybox/toys/posix/cpio.c "Output cpio archive"
299// portion
300size_t cpioArchiveFilesInDir(int out_fd, const char* input_dir) {
301 struct dirent* dp;
302 size_t n_error = 0;
303 std::unique_ptr<DIR, decltype(&closedir)> dir_dump(opendir(input_dir), closedir);
304 if (!dir_dump) {
305 PLOG(ERROR) << "Failed to open directory";
306 return ++n_error;
307 }
308 while ((dp = readdir(dir_dump.get()))) {
309 if (dp->d_type != DT_REG) {
310 continue;
311 }
312 std::string cur_file_name(dp->d_name);
313 struct stat st;
314 const std::string cur_file_path = kTombstoneFolderPath + cur_file_name;
315 if (stat(cur_file_path.c_str(), &st) == -1) {
316 PLOG(ERROR) << "Failed to get file stat for " << cur_file_path;
317 n_error++;
318 continue;
319 }
320 const int fd_read = open(cur_file_path.c_str(), O_RDONLY);
321 if (fd_read == -1) {
322 PLOG(ERROR) << "Failed to open file " << cur_file_path;
323 n_error++;
324 continue;
325 }
326 std::string file_name_with_last_modified_time =
327 cur_file_name + "-" + std::to_string(st.st_mtime);
328 // string.size() does not include the null terminator. The cpio FreeBSD
329 // file header expects the null character to be included in the length.
330 const size_t file_name_len = file_name_with_last_modified_time.size() + 1;
331 unique_fd file_auto_closer(fd_read);
332 if (!cpioWriteHeader(out_fd, st, file_name_with_last_modified_time.c_str(),
333 file_name_len)) {
334 return ++n_error;
335 }
336 size_t write_error = cpioWriteFileContent(fd_read, out_fd, st);
337 if (write_error) {
338 return n_error + write_error;
339 }
340 }
341 if (!cpioWriteFileTrailer(out_fd)) {
342 return ++n_error;
343 }
344 return n_error;
345}
346
347// Helper function to create a non-const char*.
348std::vector<char> makeCharVec(const std::string& str) {
349 std::vector<char> vec(str.size() + 1);
350 vec.assign(str.begin(), str.end());
351 vec.push_back('\0');
352 return vec;
353}
354
355} // namespace
356
357namespace aidl {
358namespace android {
359namespace hardware {
360namespace wifi {
361using aidl_return_util::validateAndCall;
362using aidl_return_util::validateAndCallWithLock;
363
364WifiChip::WifiChip(int32_t chip_id, bool is_primary,
365 const std::weak_ptr<legacy_hal::WifiLegacyHal> legacy_hal,
366 const std::weak_ptr<mode_controller::WifiModeController> mode_controller,
367 const std::shared_ptr<iface_util::WifiIfaceUtil> iface_util,
368 const std::weak_ptr<feature_flags::WifiFeatureFlags> feature_flags,
Gabriel Biren989c78a2023-06-14 22:42:07 +0000369 const std::function<void(const std::string&)>& handler,
370 bool using_dynamic_iface_combination)
Gabriel Birenf3262f92022-07-15 23:25:39 +0000371 : chip_id_(chip_id),
372 legacy_hal_(legacy_hal),
373 mode_controller_(mode_controller),
374 iface_util_(iface_util),
375 is_valid_(true),
376 current_mode_id_(feature_flags::chip_mode_ids::kInvalid),
377 modes_(feature_flags.lock()->getChipModes(is_primary)),
378 debug_ring_buffer_cb_registered_(false),
Gabriel Biren989c78a2023-06-14 22:42:07 +0000379 using_dynamic_iface_combination_(using_dynamic_iface_combination),
Gabriel Birenf3262f92022-07-15 23:25:39 +0000380 subsystemCallbackHandler_(handler) {
381 setActiveWlanIfaceNameProperty(kNoActiveWlanIfaceNamePropertyValue);
Sunil Ravi2be1f262023-02-15 20:56:56 +0000382}
383
384void WifiChip::retrieveDynamicIfaceCombination() {
385 if (using_dynamic_iface_combination_) return;
386
387 legacy_hal::wifi_iface_concurrency_matrix legacy_matrix;
388 legacy_hal::wifi_error legacy_status;
389
390 std::tie(legacy_status, legacy_matrix) =
391 legacy_hal_.lock()->getSupportedIfaceConcurrencyMatrix();
392 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
393 LOG(ERROR) << "Failed to get SupportedIfaceCombinations matrix from legacy HAL: "
394 << legacyErrorToString(legacy_status);
395 return;
396 }
397
398 IWifiChip::ChipMode aidl_chip_mode;
399 if (!aidl_struct_util::convertLegacyIfaceCombinationsMatrixToChipMode(legacy_matrix,
400 &aidl_chip_mode)) {
401 LOG(ERROR) << "Failed convertLegacyIfaceCombinationsMatrixToChipMode() ";
402 return;
403 }
404
405 LOG(INFO) << "Reloading iface concurrency combination from driver";
406 aidl_chip_mode.id = feature_flags::chip_mode_ids::kV3;
407 modes_.clear();
408 modes_.push_back(aidl_chip_mode);
409 using_dynamic_iface_combination_ = true;
Gabriel Birenf3262f92022-07-15 23:25:39 +0000410}
411
412std::shared_ptr<WifiChip> WifiChip::create(
413 int32_t chip_id, bool is_primary, const std::weak_ptr<legacy_hal::WifiLegacyHal> legacy_hal,
414 const std::weak_ptr<mode_controller::WifiModeController> mode_controller,
415 const std::shared_ptr<iface_util::WifiIfaceUtil> iface_util,
416 const std::weak_ptr<feature_flags::WifiFeatureFlags> feature_flags,
Gabriel Biren989c78a2023-06-14 22:42:07 +0000417 const std::function<void(const std::string&)>& handler,
418 bool using_dynamic_iface_combination) {
Gabriel Birenf3262f92022-07-15 23:25:39 +0000419 std::shared_ptr<WifiChip> ptr = ndk::SharedRefBase::make<WifiChip>(
Gabriel Biren989c78a2023-06-14 22:42:07 +0000420 chip_id, is_primary, legacy_hal, mode_controller, iface_util, feature_flags, handler,
421 using_dynamic_iface_combination);
Gabriel Birenf3262f92022-07-15 23:25:39 +0000422 std::weak_ptr<WifiChip> weak_ptr_this(ptr);
423 ptr->setWeakPtr(weak_ptr_this);
424 return ptr;
425}
426
427void WifiChip::invalidate() {
428 if (!writeRingbufferFilesInternal()) {
429 LOG(ERROR) << "Error writing files to flash";
430 }
431 invalidateAndRemoveAllIfaces();
432 setActiveWlanIfaceNameProperty(kNoActiveWlanIfaceNamePropertyValue);
433 legacy_hal_.reset();
434 event_cb_handler_.invalidate();
435 is_valid_ = false;
436}
437
438void WifiChip::setWeakPtr(std::weak_ptr<WifiChip> ptr) {
439 weak_ptr_this_ = ptr;
440}
441
442bool WifiChip::isValid() {
443 return is_valid_;
444}
445
446std::set<std::shared_ptr<IWifiChipEventCallback>> WifiChip::getEventCallbacks() {
447 return event_cb_handler_.getCallbacks();
448}
449
450ndk::ScopedAStatus WifiChip::getId(int32_t* _aidl_return) {
451 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID, &WifiChip::getIdInternal,
452 _aidl_return);
453}
454
455ndk::ScopedAStatus WifiChip::registerEventCallback(
456 const std::shared_ptr<IWifiChipEventCallback>& event_callback) {
457 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
458 &WifiChip::registerEventCallbackInternal, event_callback);
459}
460
Gabriel Biren2f862492023-03-09 19:13:07 +0000461ndk::ScopedAStatus WifiChip::getFeatureSet(int32_t* _aidl_return) {
Gabriel Birenf3262f92022-07-15 23:25:39 +0000462 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
Gabriel Biren2f862492023-03-09 19:13:07 +0000463 &WifiChip::getFeatureSetInternal, _aidl_return);
Gabriel Birenf3262f92022-07-15 23:25:39 +0000464}
465
466ndk::ScopedAStatus WifiChip::getAvailableModes(std::vector<IWifiChip::ChipMode>* _aidl_return) {
467 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
468 &WifiChip::getAvailableModesInternal, _aidl_return);
469}
470
471ndk::ScopedAStatus WifiChip::configureChip(int32_t in_modeId) {
472 return validateAndCallWithLock(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
473 &WifiChip::configureChipInternal, in_modeId);
474}
475
476ndk::ScopedAStatus WifiChip::getMode(int32_t* _aidl_return) {
477 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
478 &WifiChip::getModeInternal, _aidl_return);
479}
480
481ndk::ScopedAStatus WifiChip::requestChipDebugInfo(IWifiChip::ChipDebugInfo* _aidl_return) {
482 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
483 &WifiChip::requestChipDebugInfoInternal, _aidl_return);
484}
485
486ndk::ScopedAStatus WifiChip::requestDriverDebugDump(std::vector<uint8_t>* _aidl_return) {
487 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
488 &WifiChip::requestDriverDebugDumpInternal, _aidl_return);
489}
490
491ndk::ScopedAStatus WifiChip::requestFirmwareDebugDump(std::vector<uint8_t>* _aidl_return) {
492 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
493 &WifiChip::requestFirmwareDebugDumpInternal, _aidl_return);
494}
495
496ndk::ScopedAStatus WifiChip::createApIface(std::shared_ptr<IWifiApIface>* _aidl_return) {
497 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
498 &WifiChip::createApIfaceInternal, _aidl_return);
499}
500
501ndk::ScopedAStatus WifiChip::createBridgedApIface(std::shared_ptr<IWifiApIface>* _aidl_return) {
502 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
503 &WifiChip::createBridgedApIfaceInternal, _aidl_return);
504}
505
506ndk::ScopedAStatus WifiChip::getApIfaceNames(std::vector<std::string>* _aidl_return) {
507 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
508 &WifiChip::getApIfaceNamesInternal, _aidl_return);
509}
510
511ndk::ScopedAStatus WifiChip::getApIface(const std::string& in_ifname,
512 std::shared_ptr<IWifiApIface>* _aidl_return) {
513 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
514 &WifiChip::getApIfaceInternal, _aidl_return, in_ifname);
515}
516
517ndk::ScopedAStatus WifiChip::removeApIface(const std::string& in_ifname) {
518 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
519 &WifiChip::removeApIfaceInternal, in_ifname);
520}
521
522ndk::ScopedAStatus WifiChip::removeIfaceInstanceFromBridgedApIface(
523 const std::string& in_brIfaceName, const std::string& in_ifaceInstanceName) {
524 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
525 &WifiChip::removeIfaceInstanceFromBridgedApIfaceInternal, in_brIfaceName,
526 in_ifaceInstanceName);
527}
528
529ndk::ScopedAStatus WifiChip::createNanIface(std::shared_ptr<IWifiNanIface>* _aidl_return) {
530 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
531 &WifiChip::createNanIfaceInternal, _aidl_return);
532}
533
534ndk::ScopedAStatus WifiChip::getNanIfaceNames(std::vector<std::string>* _aidl_return) {
535 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
536 &WifiChip::getNanIfaceNamesInternal, _aidl_return);
537}
538
539ndk::ScopedAStatus WifiChip::getNanIface(const std::string& in_ifname,
540 std::shared_ptr<IWifiNanIface>* _aidl_return) {
541 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
542 &WifiChip::getNanIfaceInternal, _aidl_return, in_ifname);
543}
544
545ndk::ScopedAStatus WifiChip::removeNanIface(const std::string& in_ifname) {
546 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
547 &WifiChip::removeNanIfaceInternal, in_ifname);
548}
549
550ndk::ScopedAStatus WifiChip::createP2pIface(std::shared_ptr<IWifiP2pIface>* _aidl_return) {
551 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
552 &WifiChip::createP2pIfaceInternal, _aidl_return);
553}
554
555ndk::ScopedAStatus WifiChip::getP2pIfaceNames(std::vector<std::string>* _aidl_return) {
556 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
557 &WifiChip::getP2pIfaceNamesInternal, _aidl_return);
558}
559
560ndk::ScopedAStatus WifiChip::getP2pIface(const std::string& in_ifname,
561 std::shared_ptr<IWifiP2pIface>* _aidl_return) {
562 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
563 &WifiChip::getP2pIfaceInternal, _aidl_return, in_ifname);
564}
565
566ndk::ScopedAStatus WifiChip::removeP2pIface(const std::string& in_ifname) {
567 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
568 &WifiChip::removeP2pIfaceInternal, in_ifname);
569}
570
571ndk::ScopedAStatus WifiChip::createStaIface(std::shared_ptr<IWifiStaIface>* _aidl_return) {
572 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
573 &WifiChip::createStaIfaceInternal, _aidl_return);
574}
575
576ndk::ScopedAStatus WifiChip::getStaIfaceNames(std::vector<std::string>* _aidl_return) {
577 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
578 &WifiChip::getStaIfaceNamesInternal, _aidl_return);
579}
580
581ndk::ScopedAStatus WifiChip::getStaIface(const std::string& in_ifname,
582 std::shared_ptr<IWifiStaIface>* _aidl_return) {
583 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
584 &WifiChip::getStaIfaceInternal, _aidl_return, in_ifname);
585}
586
587ndk::ScopedAStatus WifiChip::removeStaIface(const std::string& in_ifname) {
588 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
589 &WifiChip::removeStaIfaceInternal, in_ifname);
590}
591
592ndk::ScopedAStatus WifiChip::createRttController(
593 const std::shared_ptr<IWifiStaIface>& in_boundIface,
594 std::shared_ptr<IWifiRttController>* _aidl_return) {
595 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
596 &WifiChip::createRttControllerInternal, _aidl_return, in_boundIface);
597}
598
599ndk::ScopedAStatus WifiChip::getDebugRingBuffersStatus(
600 std::vector<WifiDebugRingBufferStatus>* _aidl_return) {
601 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
602 &WifiChip::getDebugRingBuffersStatusInternal, _aidl_return);
603}
604
605ndk::ScopedAStatus WifiChip::startLoggingToDebugRingBuffer(
606 const std::string& in_ringName, WifiDebugRingBufferVerboseLevel in_verboseLevel,
607 int32_t in_maxIntervalInSec, int32_t in_minDataSizeInBytes) {
608 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
609 &WifiChip::startLoggingToDebugRingBufferInternal, in_ringName,
610 in_verboseLevel, in_maxIntervalInSec, in_minDataSizeInBytes);
611}
612
613ndk::ScopedAStatus WifiChip::forceDumpToDebugRingBuffer(const std::string& in_ringName) {
614 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
615 &WifiChip::forceDumpToDebugRingBufferInternal, in_ringName);
616}
617
618ndk::ScopedAStatus WifiChip::flushRingBufferToFile() {
619 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
620 &WifiChip::flushRingBufferToFileInternal);
621}
622
623ndk::ScopedAStatus WifiChip::stopLoggingToDebugRingBuffer() {
624 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
625 &WifiChip::stopLoggingToDebugRingBufferInternal);
626}
627
628ndk::ScopedAStatus WifiChip::getDebugHostWakeReasonStats(
629 WifiDebugHostWakeReasonStats* _aidl_return) {
630 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
631 &WifiChip::getDebugHostWakeReasonStatsInternal, _aidl_return);
632}
633
634ndk::ScopedAStatus WifiChip::enableDebugErrorAlerts(bool in_enable) {
635 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
636 &WifiChip::enableDebugErrorAlertsInternal, in_enable);
637}
638
639ndk::ScopedAStatus WifiChip::selectTxPowerScenario(IWifiChip::TxPowerScenario in_scenario) {
640 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
641 &WifiChip::selectTxPowerScenarioInternal, in_scenario);
642}
643
644ndk::ScopedAStatus WifiChip::resetTxPowerScenario() {
645 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
646 &WifiChip::resetTxPowerScenarioInternal);
647}
648
649ndk::ScopedAStatus WifiChip::setLatencyMode(IWifiChip::LatencyMode in_mode) {
650 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
651 &WifiChip::setLatencyModeInternal, in_mode);
652}
653
654binder_status_t WifiChip::dump(int fd, const char**, uint32_t) {
655 {
656 std::unique_lock<std::mutex> lk(lock_t);
657 for (const auto& item : ringbuffer_map_) {
658 forceDumpToDebugRingBufferInternal(item.first);
659 }
660 // unique_lock unlocked here
661 }
662 usleep(100 * 1000); // sleep for 100 milliseconds to wait for
663 // ringbuffer updates.
664 if (!writeRingbufferFilesInternal()) {
665 LOG(ERROR) << "Error writing files to flash";
666 }
667 uint32_t n_error = cpioArchiveFilesInDir(fd, kTombstoneFolderPath);
668 if (n_error != 0) {
669 LOG(ERROR) << n_error << " errors occurred in cpio function";
670 }
671 fsync(fd);
672 return STATUS_OK;
673}
674
675ndk::ScopedAStatus WifiChip::setMultiStaPrimaryConnection(const std::string& in_ifName) {
676 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
677 &WifiChip::setMultiStaPrimaryConnectionInternal, in_ifName);
678}
679
680ndk::ScopedAStatus WifiChip::setMultiStaUseCase(IWifiChip::MultiStaUseCase in_useCase) {
681 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
682 &WifiChip::setMultiStaUseCaseInternal, in_useCase);
683}
684
685ndk::ScopedAStatus WifiChip::setCoexUnsafeChannels(
686 const std::vector<IWifiChip::CoexUnsafeChannel>& in_unsafeChannels,
Gabriel Biren3b86a782023-02-04 00:42:53 +0000687 int32_t in_restrictions) {
Gabriel Birenf3262f92022-07-15 23:25:39 +0000688 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
689 &WifiChip::setCoexUnsafeChannelsInternal, in_unsafeChannels,
690 in_restrictions);
691}
692
693ndk::ScopedAStatus WifiChip::setCountryCode(const std::array<uint8_t, 2>& in_code) {
694 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_IFACE_INVALID,
695 &WifiChip::setCountryCodeInternal, in_code);
696}
697
Gabriel Biren3b86a782023-02-04 00:42:53 +0000698ndk::ScopedAStatus WifiChip::getUsableChannels(WifiBand in_band, int32_t in_ifaceModeMask,
699 int32_t in_filterMask,
Gabriel Birenf3262f92022-07-15 23:25:39 +0000700 std::vector<WifiUsableChannel>* _aidl_return) {
701 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
702 &WifiChip::getUsableChannelsInternal, _aidl_return, in_band,
703 in_ifaceModeMask, in_filterMask);
704}
705
Oscar Shuab8313c2022-12-13 00:55:11 +0000706ndk::ScopedAStatus WifiChip::setAfcChannelAllowance(
Oscar Shu4275c872023-03-08 22:48:09 +0000707 const AfcChannelAllowance& afcChannelAllowance) {
Oscar Shuab8313c2022-12-13 00:55:11 +0000708 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
Oscar Shu4275c872023-03-08 22:48:09 +0000709 &WifiChip::setAfcChannelAllowanceInternal, afcChannelAllowance);
Oscar Shuab8313c2022-12-13 00:55:11 +0000710}
711
Gabriel Birenf3262f92022-07-15 23:25:39 +0000712ndk::ScopedAStatus WifiChip::triggerSubsystemRestart() {
713 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
714 &WifiChip::triggerSubsystemRestartInternal);
715}
716
Gabriel Biren263db452023-02-24 21:07:38 +0000717ndk::ScopedAStatus WifiChip::getSupportedRadioCombinations(
718 std::vector<WifiRadioCombination>* _aidl_return) {
Gabriel Birenf3262f92022-07-15 23:25:39 +0000719 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
Gabriel Biren263db452023-02-24 21:07:38 +0000720 &WifiChip::getSupportedRadioCombinationsInternal, _aidl_return);
Gabriel Birenf3262f92022-07-15 23:25:39 +0000721}
722
Mahesh KKVc84d3772022-12-02 16:53:28 -0800723ndk::ScopedAStatus WifiChip::getWifiChipCapabilities(WifiChipCapabilities* _aidl_return) {
724 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
725 &WifiChip::getWifiChipCapabilitiesInternal, _aidl_return);
726}
727
Gabriel Biren3b86a782023-02-04 00:42:53 +0000728ndk::ScopedAStatus WifiChip::enableStaChannelForPeerNetwork(int32_t in_channelCategoryEnableFlag) {
Shuibing Daie5fbcab2022-12-19 15:37:19 -0800729 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
730 &WifiChip::enableStaChannelForPeerNetworkInternal,
731 in_channelCategoryEnableFlag);
732}
733
maheshkkva8aba172023-02-13 12:33:26 -0800734ndk::ScopedAStatus WifiChip::setMloMode(const ChipMloMode in_mode) {
735 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
736 &WifiChip::setMloModeInternal, in_mode);
737}
738
Gabriel Birenf3262f92022-07-15 23:25:39 +0000739void WifiChip::invalidateAndRemoveAllIfaces() {
740 invalidateAndClearBridgedApAll();
741 invalidateAndClearAll(ap_ifaces_);
742 invalidateAndClearAll(nan_ifaces_);
743 invalidateAndClearAll(p2p_ifaces_);
744 invalidateAndClearAll(sta_ifaces_);
745 // Since all the ifaces are invalid now, all RTT controller objects
746 // using those ifaces also need to be invalidated.
747 for (const auto& rtt : rtt_controllers_) {
748 rtt->invalidate();
749 }
750 rtt_controllers_.clear();
751}
752
753void WifiChip::invalidateAndRemoveDependencies(const std::string& removed_iface_name) {
754 for (auto it = nan_ifaces_.begin(); it != nan_ifaces_.end();) {
755 auto nan_iface = *it;
756 if (nan_iface->getName() == removed_iface_name) {
757 nan_iface->invalidate();
758 for (const auto& callback : event_cb_handler_.getCallbacks()) {
759 if (!callback->onIfaceRemoved(IfaceType::NAN_IFACE, removed_iface_name).isOk()) {
760 LOG(ERROR) << "Failed to invoke onIfaceRemoved callback";
761 }
762 }
763 it = nan_ifaces_.erase(it);
764 } else {
765 ++it;
766 }
767 }
768
769 for (auto it = rtt_controllers_.begin(); it != rtt_controllers_.end();) {
770 auto rtt = *it;
771 if (rtt->getIfaceName() == removed_iface_name) {
772 rtt->invalidate();
773 it = rtt_controllers_.erase(it);
774 } else {
775 ++it;
776 }
777 }
778}
779
780std::pair<int32_t, ndk::ScopedAStatus> WifiChip::getIdInternal() {
781 return {chip_id_, ndk::ScopedAStatus::ok()};
782}
783
784ndk::ScopedAStatus WifiChip::registerEventCallbackInternal(
785 const std::shared_ptr<IWifiChipEventCallback>& event_callback) {
786 if (!event_cb_handler_.addCallback(event_callback)) {
787 return createWifiStatus(WifiStatusCode::ERROR_UNKNOWN);
788 }
789 return ndk::ScopedAStatus::ok();
790}
791
Gabriel Biren2f862492023-03-09 19:13:07 +0000792std::pair<int32_t, ndk::ScopedAStatus> WifiChip::getFeatureSetInternal() {
Gabriel Birenf3262f92022-07-15 23:25:39 +0000793 legacy_hal::wifi_error legacy_status;
794 uint64_t legacy_feature_set;
795 uint32_t legacy_logger_feature_set;
796 const auto ifname = getFirstActiveWlanIfaceName();
797 std::tie(legacy_status, legacy_feature_set) =
798 legacy_hal_.lock()->getSupportedFeatureSet(ifname);
799 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
Gabriel Biren3b86a782023-02-04 00:42:53 +0000800 return {0, createWifiStatusFromLegacyError(legacy_status)};
Gabriel Birenf3262f92022-07-15 23:25:39 +0000801 }
802 std::tie(legacy_status, legacy_logger_feature_set) =
803 legacy_hal_.lock()->getLoggerSupportedFeatureSet(ifname);
804 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
805 // some devices don't support querying logger feature set
806 legacy_logger_feature_set = 0;
807 }
Gabriel Biren2f862492023-03-09 19:13:07 +0000808 uint32_t aidl_feature_set;
809 if (!aidl_struct_util::convertLegacyChipFeaturesToAidl(legacy_feature_set, &aidl_feature_set)) {
Gabriel Biren3b86a782023-02-04 00:42:53 +0000810 return {0, createWifiStatus(WifiStatusCode::ERROR_UNKNOWN)};
Gabriel Birenf3262f92022-07-15 23:25:39 +0000811 }
Gabriel Biren2f862492023-03-09 19:13:07 +0000812 return {aidl_feature_set, ndk::ScopedAStatus::ok()};
Gabriel Birenf3262f92022-07-15 23:25:39 +0000813}
814
815std::pair<std::vector<IWifiChip::ChipMode>, ndk::ScopedAStatus>
816WifiChip::getAvailableModesInternal() {
817 return {modes_, ndk::ScopedAStatus::ok()};
818}
819
820ndk::ScopedAStatus WifiChip::configureChipInternal(
821 /* NONNULL */ std::unique_lock<std::recursive_mutex>* lock, int32_t mode_id) {
822 if (!isValidModeId(mode_id)) {
823 return createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS);
824 }
825 if (mode_id == current_mode_id_) {
826 LOG(DEBUG) << "Already in the specified mode " << mode_id;
827 return ndk::ScopedAStatus::ok();
828 }
829 ndk::ScopedAStatus status = handleChipConfiguration(lock, mode_id);
830 if (!status.isOk()) {
831 WifiStatusCode errorCode = static_cast<WifiStatusCode>(status.getServiceSpecificError());
832 for (const auto& callback : event_cb_handler_.getCallbacks()) {
833 if (!callback->onChipReconfigureFailure(errorCode).isOk()) {
834 LOG(ERROR) << "Failed to invoke onChipReconfigureFailure callback";
835 }
836 }
837 return status;
838 }
839 for (const auto& callback : event_cb_handler_.getCallbacks()) {
840 if (!callback->onChipReconfigured(mode_id).isOk()) {
841 LOG(ERROR) << "Failed to invoke onChipReconfigured callback";
842 }
843 }
844 current_mode_id_ = mode_id;
845 LOG(INFO) << "Configured chip in mode " << mode_id;
846 setActiveWlanIfaceNameProperty(getFirstActiveWlanIfaceName());
847
848 legacy_hal_.lock()->registerSubsystemRestartCallbackHandler(subsystemCallbackHandler_);
849
850 return status;
851}
852
853std::pair<int32_t, ndk::ScopedAStatus> WifiChip::getModeInternal() {
854 if (!isValidModeId(current_mode_id_)) {
855 return {current_mode_id_, createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE)};
856 }
857 return {current_mode_id_, ndk::ScopedAStatus::ok()};
858}
859
860std::pair<IWifiChip::ChipDebugInfo, ndk::ScopedAStatus> WifiChip::requestChipDebugInfoInternal() {
861 IWifiChip::ChipDebugInfo result;
862 legacy_hal::wifi_error legacy_status;
863 std::string driver_desc;
864 const auto ifname = getFirstActiveWlanIfaceName();
865 std::tie(legacy_status, driver_desc) = legacy_hal_.lock()->getDriverVersion(ifname);
866 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
867 LOG(ERROR) << "Failed to get driver version: " << legacyErrorToString(legacy_status);
868 ndk::ScopedAStatus status =
869 createWifiStatusFromLegacyError(legacy_status, "failed to get driver version");
870 return {std::move(result), std::move(status)};
871 }
872 result.driverDescription = driver_desc.c_str();
873
874 std::string firmware_desc;
875 std::tie(legacy_status, firmware_desc) = legacy_hal_.lock()->getFirmwareVersion(ifname);
876 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
877 LOG(ERROR) << "Failed to get firmware version: " << legacyErrorToString(legacy_status);
878 ndk::ScopedAStatus status =
879 createWifiStatusFromLegacyError(legacy_status, "failed to get firmware version");
880 return {std::move(result), std::move(status)};
881 }
882 result.firmwareDescription = firmware_desc.c_str();
883
884 return {std::move(result), ndk::ScopedAStatus::ok()};
885}
886
887std::pair<std::vector<uint8_t>, ndk::ScopedAStatus> WifiChip::requestDriverDebugDumpInternal() {
888 legacy_hal::wifi_error legacy_status;
889 std::vector<uint8_t> driver_dump;
890 std::tie(legacy_status, driver_dump) =
891 legacy_hal_.lock()->requestDriverMemoryDump(getFirstActiveWlanIfaceName());
892 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
893 LOG(ERROR) << "Failed to get driver debug dump: " << legacyErrorToString(legacy_status);
894 return {std::vector<uint8_t>(), createWifiStatusFromLegacyError(legacy_status)};
895 }
896 return {driver_dump, ndk::ScopedAStatus::ok()};
897}
898
899std::pair<std::vector<uint8_t>, ndk::ScopedAStatus> WifiChip::requestFirmwareDebugDumpInternal() {
900 legacy_hal::wifi_error legacy_status;
901 std::vector<uint8_t> firmware_dump;
902 std::tie(legacy_status, firmware_dump) =
903 legacy_hal_.lock()->requestFirmwareMemoryDump(getFirstActiveWlanIfaceName());
904 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
905 LOG(ERROR) << "Failed to get firmware debug dump: " << legacyErrorToString(legacy_status);
906 return {std::vector<uint8_t>(), createWifiStatusFromLegacyError(legacy_status)};
907 }
908 return {firmware_dump, ndk::ScopedAStatus::ok()};
909}
910
911ndk::ScopedAStatus WifiChip::createVirtualApInterface(const std::string& apVirtIf) {
912 legacy_hal::wifi_error legacy_status;
913 legacy_status = legacy_hal_.lock()->createVirtualInterface(
914 apVirtIf, aidl_struct_util::convertAidlIfaceTypeToLegacy(IfaceType::AP));
915 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
916 LOG(ERROR) << "Failed to add interface: " << apVirtIf << " "
917 << legacyErrorToString(legacy_status);
918 return createWifiStatusFromLegacyError(legacy_status);
919 }
920 return ndk::ScopedAStatus::ok();
921}
922
923std::shared_ptr<WifiApIface> WifiChip::newWifiApIface(std::string& ifname) {
924 std::vector<std::string> ap_instances;
925 for (auto const& it : br_ifaces_ap_instances_) {
926 if (it.first == ifname) {
927 ap_instances = it.second;
928 }
929 }
930 std::shared_ptr<WifiApIface> iface =
931 ndk::SharedRefBase::make<WifiApIface>(ifname, ap_instances, legacy_hal_, iface_util_);
932 ap_ifaces_.push_back(iface);
933 for (const auto& callback : event_cb_handler_.getCallbacks()) {
934 if (!callback->onIfaceAdded(IfaceType::AP, ifname).isOk()) {
935 LOG(ERROR) << "Failed to invoke onIfaceAdded callback";
936 }
937 }
938 setActiveWlanIfaceNameProperty(getFirstActiveWlanIfaceName());
939 return iface;
940}
941
942std::pair<std::shared_ptr<IWifiApIface>, ndk::ScopedAStatus> WifiChip::createApIfaceInternal() {
943 if (!canCurrentModeSupportConcurrencyTypeWithCurrentTypes(IfaceConcurrencyType::AP)) {
944 return {std::shared_ptr<WifiApIface>(),
945 createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE)};
946 }
947 std::string ifname = allocateApIfaceName();
948 ndk::ScopedAStatus status = createVirtualApInterface(ifname);
949 if (!status.isOk()) {
950 return {std::shared_ptr<WifiApIface>(), std::move(status)};
951 }
952 std::shared_ptr<WifiApIface> iface = newWifiApIface(ifname);
953 return {iface, ndk::ScopedAStatus::ok()};
954}
955
956std::pair<std::shared_ptr<IWifiApIface>, ndk::ScopedAStatus>
957WifiChip::createBridgedApIfaceInternal() {
958 if (!canCurrentModeSupportConcurrencyTypeWithCurrentTypes(IfaceConcurrencyType::AP_BRIDGED)) {
959 return {nullptr, createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE)};
960 }
961 std::vector<std::string> ap_instances = allocateBridgedApInstanceNames();
962 if (ap_instances.size() < 2) {
963 LOG(ERROR) << "Fail to allocate two instances";
964 return {nullptr, createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE)};
965 }
966 std::string br_ifname = kApBridgeIfacePrefix + ap_instances[0];
967 for (int i = 0; i < 2; i++) {
968 ndk::ScopedAStatus status = createVirtualApInterface(ap_instances[i]);
969 if (!status.isOk()) {
970 if (i != 0) { // The failure happened when creating second virtual
971 // iface.
972 legacy_hal_.lock()->deleteVirtualInterface(
973 ap_instances.front()); // Remove the first virtual iface.
974 }
975 return {nullptr, std::move(status)};
976 }
977 }
978 br_ifaces_ap_instances_[br_ifname] = ap_instances;
979 if (!iface_util_->createBridge(br_ifname)) {
980 LOG(ERROR) << "Failed createBridge - br_name=" << br_ifname.c_str();
981 invalidateAndClearBridgedAp(br_ifname);
982 return {nullptr, createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE)};
983 }
984 for (auto const& instance : ap_instances) {
985 // Bind ap instance interface to AP bridge
986 if (!iface_util_->addIfaceToBridge(br_ifname, instance)) {
987 LOG(ERROR) << "Failed add if to Bridge - if_name=" << instance.c_str();
988 invalidateAndClearBridgedAp(br_ifname);
989 return {nullptr, createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE)};
990 }
991 }
992 std::shared_ptr<WifiApIface> iface = newWifiApIface(br_ifname);
993 return {iface, ndk::ScopedAStatus::ok()};
994}
995
996std::pair<std::vector<std::string>, ndk::ScopedAStatus> WifiChip::getApIfaceNamesInternal() {
997 if (ap_ifaces_.empty()) {
998 return {std::vector<std::string>(), ndk::ScopedAStatus::ok()};
999 }
1000 return {getNames(ap_ifaces_), ndk::ScopedAStatus::ok()};
1001}
1002
1003std::pair<std::shared_ptr<IWifiApIface>, ndk::ScopedAStatus> WifiChip::getApIfaceInternal(
1004 const std::string& ifname) {
1005 const auto iface = findUsingName(ap_ifaces_, ifname);
1006 if (!iface.get()) {
1007 return {nullptr, createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS)};
1008 }
1009 return {iface, ndk::ScopedAStatus::ok()};
1010}
1011
1012ndk::ScopedAStatus WifiChip::removeApIfaceInternal(const std::string& ifname) {
1013 const auto iface = findUsingName(ap_ifaces_, ifname);
1014 if (!iface.get()) {
1015 return createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS);
1016 }
1017 // Invalidate & remove any dependent objects first.
1018 // Note: This is probably not required because we never create
1019 // nan/rtt objects over AP iface. But, there is no harm to do it
1020 // here and not make that assumption all over the place.
1021 invalidateAndRemoveDependencies(ifname);
1022 // Clear the bridge interface and the iface instance.
1023 invalidateAndClearBridgedAp(ifname);
1024 invalidateAndClear(ap_ifaces_, iface);
1025 for (const auto& callback : event_cb_handler_.getCallbacks()) {
1026 if (!callback->onIfaceRemoved(IfaceType::AP, ifname).isOk()) {
1027 LOG(ERROR) << "Failed to invoke onIfaceRemoved callback";
1028 }
1029 }
1030 setActiveWlanIfaceNameProperty(getFirstActiveWlanIfaceName());
1031 return ndk::ScopedAStatus::ok();
1032}
1033
1034ndk::ScopedAStatus WifiChip::removeIfaceInstanceFromBridgedApIfaceInternal(
1035 const std::string& ifname, const std::string& ifInstanceName) {
1036 const auto iface = findUsingName(ap_ifaces_, ifname);
1037 if (!iface.get() || ifInstanceName.empty()) {
1038 return createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS);
1039 }
1040 // Requires to remove one of the instance in bridge mode
1041 for (auto const& it : br_ifaces_ap_instances_) {
1042 if (it.first == ifname) {
1043 std::vector<std::string> ap_instances = it.second;
1044 for (auto const& iface : ap_instances) {
1045 if (iface == ifInstanceName) {
1046 if (!iface_util_->removeIfaceFromBridge(it.first, iface)) {
1047 LOG(ERROR) << "Failed to remove interface: " << ifInstanceName << " from "
1048 << ifname;
1049 return createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE);
1050 }
1051 legacy_hal::wifi_error legacy_status =
1052 legacy_hal_.lock()->deleteVirtualInterface(iface);
1053 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
1054 LOG(ERROR) << "Failed to del interface: " << iface << " "
1055 << legacyErrorToString(legacy_status);
1056 return createWifiStatusFromLegacyError(legacy_status);
1057 }
1058 ap_instances.erase(
1059 std::remove(ap_instances.begin(), ap_instances.end(), ifInstanceName),
1060 ap_instances.end());
1061 br_ifaces_ap_instances_[ifname] = ap_instances;
1062 break;
1063 }
1064 }
1065 break;
1066 }
1067 }
1068 iface->removeInstance(ifInstanceName);
1069 setActiveWlanIfaceNameProperty(getFirstActiveWlanIfaceName());
1070
1071 return ndk::ScopedAStatus::ok();
1072}
1073
1074std::pair<std::shared_ptr<IWifiNanIface>, ndk::ScopedAStatus> WifiChip::createNanIfaceInternal() {
1075 if (!canCurrentModeSupportConcurrencyTypeWithCurrentTypes(IfaceConcurrencyType::NAN_IFACE)) {
1076 return {nullptr, createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE)};
1077 }
1078 bool is_dedicated_iface = true;
1079 std::string ifname = getPredefinedNanIfaceName();
1080 if (ifname.empty() || !iface_util_->ifNameToIndex(ifname)) {
1081 // Use the first shared STA iface (wlan0) if a dedicated aware iface is
1082 // not defined.
1083 ifname = getFirstActiveWlanIfaceName();
1084 is_dedicated_iface = false;
1085 }
1086 std::shared_ptr<WifiNanIface> iface =
1087 WifiNanIface::create(ifname, is_dedicated_iface, legacy_hal_, iface_util_);
1088 nan_ifaces_.push_back(iface);
1089 for (const auto& callback : event_cb_handler_.getCallbacks()) {
1090 if (!callback->onIfaceAdded(IfaceType::NAN_IFACE, ifname).isOk()) {
1091 LOG(ERROR) << "Failed to invoke onIfaceAdded callback";
1092 }
1093 }
1094 return {iface, ndk::ScopedAStatus::ok()};
1095}
1096
1097std::pair<std::vector<std::string>, ndk::ScopedAStatus> WifiChip::getNanIfaceNamesInternal() {
1098 if (nan_ifaces_.empty()) {
1099 return {std::vector<std::string>(), ndk::ScopedAStatus::ok()};
1100 }
1101 return {getNames(nan_ifaces_), ndk::ScopedAStatus::ok()};
1102}
1103
1104std::pair<std::shared_ptr<IWifiNanIface>, ndk::ScopedAStatus> WifiChip::getNanIfaceInternal(
1105 const std::string& ifname) {
1106 const auto iface = findUsingName(nan_ifaces_, ifname);
1107 if (!iface.get()) {
1108 return {nullptr, createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS)};
1109 }
1110 return {iface, ndk::ScopedAStatus::ok()};
1111}
1112
1113ndk::ScopedAStatus WifiChip::removeNanIfaceInternal(const std::string& ifname) {
1114 const auto iface = findUsingName(nan_ifaces_, ifname);
1115 if (!iface.get()) {
1116 return createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS);
1117 }
1118 invalidateAndClear(nan_ifaces_, iface);
1119 for (const auto& callback : event_cb_handler_.getCallbacks()) {
1120 if (!callback->onIfaceRemoved(IfaceType::NAN_IFACE, ifname).isOk()) {
1121 LOG(ERROR) << "Failed to invoke onIfaceAdded callback";
1122 }
1123 }
1124 return ndk::ScopedAStatus::ok();
1125}
1126
1127std::pair<std::shared_ptr<IWifiP2pIface>, ndk::ScopedAStatus> WifiChip::createP2pIfaceInternal() {
1128 if (!canCurrentModeSupportConcurrencyTypeWithCurrentTypes(IfaceConcurrencyType::P2P)) {
1129 return {nullptr, createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE)};
1130 }
1131 std::string ifname = getPredefinedP2pIfaceName();
1132 std::shared_ptr<WifiP2pIface> iface =
1133 ndk::SharedRefBase::make<WifiP2pIface>(ifname, legacy_hal_);
1134 p2p_ifaces_.push_back(iface);
1135 for (const auto& callback : event_cb_handler_.getCallbacks()) {
1136 if (!callback->onIfaceAdded(IfaceType::P2P, ifname).isOk()) {
1137 LOG(ERROR) << "Failed to invoke onIfaceAdded callback";
1138 }
1139 }
1140 return {iface, ndk::ScopedAStatus::ok()};
1141}
1142
1143std::pair<std::vector<std::string>, ndk::ScopedAStatus> WifiChip::getP2pIfaceNamesInternal() {
1144 if (p2p_ifaces_.empty()) {
1145 return {std::vector<std::string>(), ndk::ScopedAStatus::ok()};
1146 }
1147 return {getNames(p2p_ifaces_), ndk::ScopedAStatus::ok()};
1148}
1149
1150std::pair<std::shared_ptr<IWifiP2pIface>, ndk::ScopedAStatus> WifiChip::getP2pIfaceInternal(
1151 const std::string& ifname) {
1152 const auto iface = findUsingName(p2p_ifaces_, ifname);
1153 if (!iface.get()) {
1154 return {nullptr, createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS)};
1155 }
1156 return {iface, ndk::ScopedAStatus::ok()};
1157}
1158
1159ndk::ScopedAStatus WifiChip::removeP2pIfaceInternal(const std::string& ifname) {
1160 const auto iface = findUsingName(p2p_ifaces_, ifname);
1161 if (!iface.get()) {
1162 return createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS);
1163 }
1164 invalidateAndClear(p2p_ifaces_, iface);
1165 for (const auto& callback : event_cb_handler_.getCallbacks()) {
1166 if (!callback->onIfaceRemoved(IfaceType::P2P, ifname).isOk()) {
1167 LOG(ERROR) << "Failed to invoke onIfaceRemoved callback";
1168 }
1169 }
1170 return ndk::ScopedAStatus::ok();
1171}
1172
1173std::pair<std::shared_ptr<IWifiStaIface>, ndk::ScopedAStatus> WifiChip::createStaIfaceInternal() {
1174 if (!canCurrentModeSupportConcurrencyTypeWithCurrentTypes(IfaceConcurrencyType::STA)) {
1175 return {nullptr, createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE)};
1176 }
1177 std::string ifname = allocateStaIfaceName();
1178 legacy_hal::wifi_error legacy_status = legacy_hal_.lock()->createVirtualInterface(
1179 ifname, aidl_struct_util::convertAidlIfaceTypeToLegacy(IfaceType::STA));
1180 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
1181 LOG(ERROR) << "Failed to add interface: " << ifname << " "
1182 << legacyErrorToString(legacy_status);
1183 return {nullptr, createWifiStatusFromLegacyError(legacy_status)};
1184 }
Gabriel Biren2f7bec812023-01-31 01:07:38 +00001185 std::shared_ptr<WifiStaIface> iface = WifiStaIface::create(ifname, legacy_hal_, iface_util_);
Gabriel Birenf3262f92022-07-15 23:25:39 +00001186 sta_ifaces_.push_back(iface);
1187 for (const auto& callback : event_cb_handler_.getCallbacks()) {
1188 if (!callback->onIfaceAdded(IfaceType::STA, ifname).isOk()) {
1189 LOG(ERROR) << "Failed to invoke onIfaceAdded callback";
1190 }
1191 }
1192 setActiveWlanIfaceNameProperty(getFirstActiveWlanIfaceName());
1193 return {iface, ndk::ScopedAStatus::ok()};
1194}
1195
1196std::pair<std::vector<std::string>, ndk::ScopedAStatus> WifiChip::getStaIfaceNamesInternal() {
1197 if (sta_ifaces_.empty()) {
1198 return {std::vector<std::string>(), ndk::ScopedAStatus::ok()};
1199 }
1200 return {getNames(sta_ifaces_), ndk::ScopedAStatus::ok()};
1201}
1202
1203std::pair<std::shared_ptr<IWifiStaIface>, ndk::ScopedAStatus> WifiChip::getStaIfaceInternal(
1204 const std::string& ifname) {
1205 const auto iface = findUsingName(sta_ifaces_, ifname);
1206 if (!iface.get()) {
1207 return {nullptr, createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS)};
1208 }
1209 return {iface, ndk::ScopedAStatus::ok()};
1210}
1211
1212ndk::ScopedAStatus WifiChip::removeStaIfaceInternal(const std::string& ifname) {
1213 const auto iface = findUsingName(sta_ifaces_, ifname);
1214 if (!iface.get()) {
1215 return createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS);
1216 }
1217 // Invalidate & remove any dependent objects first.
1218 invalidateAndRemoveDependencies(ifname);
1219 legacy_hal::wifi_error legacy_status = legacy_hal_.lock()->deleteVirtualInterface(ifname);
1220 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
1221 LOG(ERROR) << "Failed to remove interface: " << ifname << " "
1222 << legacyErrorToString(legacy_status);
1223 }
1224 invalidateAndClear(sta_ifaces_, iface);
1225 for (const auto& callback : event_cb_handler_.getCallbacks()) {
1226 if (!callback->onIfaceRemoved(IfaceType::STA, ifname).isOk()) {
1227 LOG(ERROR) << "Failed to invoke onIfaceRemoved callback";
1228 }
1229 }
1230 setActiveWlanIfaceNameProperty(getFirstActiveWlanIfaceName());
1231 return ndk::ScopedAStatus::ok();
1232}
1233
1234std::pair<std::shared_ptr<IWifiRttController>, ndk::ScopedAStatus>
1235WifiChip::createRttControllerInternal(const std::shared_ptr<IWifiStaIface>& bound_iface) {
1236 if (sta_ifaces_.size() == 0 &&
1237 !canCurrentModeSupportConcurrencyTypeWithCurrentTypes(IfaceConcurrencyType::STA)) {
1238 LOG(ERROR) << "createRttControllerInternal: Chip cannot support STAs "
1239 "(and RTT by extension)";
1240 return {nullptr, createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE)};
1241 }
1242 std::shared_ptr<WifiRttController> rtt =
1243 WifiRttController::create(getFirstActiveWlanIfaceName(), bound_iface, legacy_hal_);
1244 rtt_controllers_.emplace_back(rtt);
1245 return {rtt, ndk::ScopedAStatus::ok()};
1246}
1247
1248std::pair<std::vector<WifiDebugRingBufferStatus>, ndk::ScopedAStatus>
1249WifiChip::getDebugRingBuffersStatusInternal() {
1250 legacy_hal::wifi_error legacy_status;
1251 std::vector<legacy_hal::wifi_ring_buffer_status> legacy_ring_buffer_status_vec;
1252 std::tie(legacy_status, legacy_ring_buffer_status_vec) =
1253 legacy_hal_.lock()->getRingBuffersStatus(getFirstActiveWlanIfaceName());
1254 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
1255 return {std::vector<WifiDebugRingBufferStatus>(),
1256 createWifiStatusFromLegacyError(legacy_status)};
1257 }
1258 std::vector<WifiDebugRingBufferStatus> aidl_ring_buffer_status_vec;
1259 if (!aidl_struct_util::convertLegacyVectorOfDebugRingBufferStatusToAidl(
1260 legacy_ring_buffer_status_vec, &aidl_ring_buffer_status_vec)) {
1261 return {std::vector<WifiDebugRingBufferStatus>(),
1262 createWifiStatus(WifiStatusCode::ERROR_UNKNOWN)};
1263 }
1264 return {aidl_ring_buffer_status_vec, ndk::ScopedAStatus::ok()};
1265}
1266
1267ndk::ScopedAStatus WifiChip::startLoggingToDebugRingBufferInternal(
1268 const std::string& ring_name, WifiDebugRingBufferVerboseLevel verbose_level,
1269 uint32_t max_interval_in_sec, uint32_t min_data_size_in_bytes) {
1270 ndk::ScopedAStatus status = registerDebugRingBufferCallback();
1271 if (!status.isOk()) {
1272 return status;
1273 }
1274 legacy_hal::wifi_error legacy_status = legacy_hal_.lock()->startRingBufferLogging(
1275 getFirstActiveWlanIfaceName(), ring_name,
1276 static_cast<std::underlying_type<WifiDebugRingBufferVerboseLevel>::type>(verbose_level),
1277 max_interval_in_sec, min_data_size_in_bytes);
1278 ringbuffer_map_.insert(
1279 std::pair<std::string, Ringbuffer>(ring_name, Ringbuffer(kMaxBufferSizeBytes)));
1280 // if verbose logging enabled, turn up HAL daemon logging as well.
1281 if (verbose_level < WifiDebugRingBufferVerboseLevel::VERBOSE) {
1282 ::android::base::SetMinimumLogSeverity(::android::base::DEBUG);
1283 } else {
1284 ::android::base::SetMinimumLogSeverity(::android::base::VERBOSE);
1285 }
1286 return createWifiStatusFromLegacyError(legacy_status);
1287}
1288
1289ndk::ScopedAStatus WifiChip::forceDumpToDebugRingBufferInternal(const std::string& ring_name) {
1290 ndk::ScopedAStatus status = registerDebugRingBufferCallback();
1291 if (!status.isOk()) {
1292 return status;
1293 }
1294 legacy_hal::wifi_error legacy_status =
1295 legacy_hal_.lock()->getRingBufferData(getFirstActiveWlanIfaceName(), ring_name);
1296
1297 return createWifiStatusFromLegacyError(legacy_status);
1298}
1299
1300ndk::ScopedAStatus WifiChip::flushRingBufferToFileInternal() {
1301 if (!writeRingbufferFilesInternal()) {
1302 LOG(ERROR) << "Error writing files to flash";
1303 return createWifiStatus(WifiStatusCode::ERROR_UNKNOWN);
1304 }
1305 return ndk::ScopedAStatus::ok();
1306}
1307
1308ndk::ScopedAStatus WifiChip::stopLoggingToDebugRingBufferInternal() {
1309 legacy_hal::wifi_error legacy_status =
1310 legacy_hal_.lock()->deregisterRingBufferCallbackHandler(getFirstActiveWlanIfaceName());
1311 if (legacy_status == legacy_hal::WIFI_SUCCESS) {
1312 debug_ring_buffer_cb_registered_ = false;
1313 }
1314 return createWifiStatusFromLegacyError(legacy_status);
1315}
1316
1317std::pair<WifiDebugHostWakeReasonStats, ndk::ScopedAStatus>
1318WifiChip::getDebugHostWakeReasonStatsInternal() {
1319 legacy_hal::wifi_error legacy_status;
1320 legacy_hal::WakeReasonStats legacy_stats;
1321 std::tie(legacy_status, legacy_stats) =
1322 legacy_hal_.lock()->getWakeReasonStats(getFirstActiveWlanIfaceName());
1323 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
1324 return {WifiDebugHostWakeReasonStats{}, createWifiStatusFromLegacyError(legacy_status)};
1325 }
1326 WifiDebugHostWakeReasonStats aidl_stats;
1327 if (!aidl_struct_util::convertLegacyWakeReasonStatsToAidl(legacy_stats, &aidl_stats)) {
1328 return {WifiDebugHostWakeReasonStats{}, createWifiStatus(WifiStatusCode::ERROR_UNKNOWN)};
1329 }
1330 return {aidl_stats, ndk::ScopedAStatus::ok()};
1331}
1332
1333ndk::ScopedAStatus WifiChip::enableDebugErrorAlertsInternal(bool enable) {
1334 legacy_hal::wifi_error legacy_status;
1335 if (enable) {
1336 std::weak_ptr<WifiChip> weak_ptr_this = weak_ptr_this_;
1337 const auto& on_alert_callback = [weak_ptr_this](int32_t error_code,
1338 std::vector<uint8_t> debug_data) {
1339 const auto shared_ptr_this = weak_ptr_this.lock();
1340 if (!shared_ptr_this.get() || !shared_ptr_this->isValid()) {
1341 LOG(ERROR) << "Callback invoked on an invalid object";
1342 return;
1343 }
1344 for (const auto& callback : shared_ptr_this->getEventCallbacks()) {
1345 if (!callback->onDebugErrorAlert(error_code, debug_data).isOk()) {
1346 LOG(ERROR) << "Failed to invoke onDebugErrorAlert callback";
1347 }
1348 }
1349 };
1350 legacy_status = legacy_hal_.lock()->registerErrorAlertCallbackHandler(
1351 getFirstActiveWlanIfaceName(), on_alert_callback);
1352 } else {
1353 legacy_status = legacy_hal_.lock()->deregisterErrorAlertCallbackHandler(
1354 getFirstActiveWlanIfaceName());
1355 }
1356 return createWifiStatusFromLegacyError(legacy_status);
1357}
1358
1359ndk::ScopedAStatus WifiChip::selectTxPowerScenarioInternal(IWifiChip::TxPowerScenario scenario) {
1360 auto legacy_status = legacy_hal_.lock()->selectTxPowerScenario(
1361 getFirstActiveWlanIfaceName(),
1362 aidl_struct_util::convertAidlTxPowerScenarioToLegacy(scenario));
1363 return createWifiStatusFromLegacyError(legacy_status);
1364}
1365
1366ndk::ScopedAStatus WifiChip::resetTxPowerScenarioInternal() {
1367 auto legacy_status = legacy_hal_.lock()->resetTxPowerScenario(getFirstActiveWlanIfaceName());
1368 return createWifiStatusFromLegacyError(legacy_status);
1369}
1370
1371ndk::ScopedAStatus WifiChip::setLatencyModeInternal(IWifiChip::LatencyMode mode) {
1372 auto legacy_status = legacy_hal_.lock()->setLatencyMode(
1373 getFirstActiveWlanIfaceName(), aidl_struct_util::convertAidlLatencyModeToLegacy(mode));
1374 return createWifiStatusFromLegacyError(legacy_status);
1375}
1376
1377ndk::ScopedAStatus WifiChip::setMultiStaPrimaryConnectionInternal(const std::string& ifname) {
1378 auto legacy_status = legacy_hal_.lock()->multiStaSetPrimaryConnection(ifname);
1379 return createWifiStatusFromLegacyError(legacy_status);
1380}
1381
1382ndk::ScopedAStatus WifiChip::setMultiStaUseCaseInternal(IWifiChip::MultiStaUseCase use_case) {
1383 auto legacy_status = legacy_hal_.lock()->multiStaSetUseCase(
1384 aidl_struct_util::convertAidlMultiStaUseCaseToLegacy(use_case));
1385 return createWifiStatusFromLegacyError(legacy_status);
1386}
1387
1388ndk::ScopedAStatus WifiChip::setCoexUnsafeChannelsInternal(
Gabriel Biren3b86a782023-02-04 00:42:53 +00001389 std::vector<IWifiChip::CoexUnsafeChannel> unsafe_channels, int32_t aidl_restrictions) {
Gabriel Birenf3262f92022-07-15 23:25:39 +00001390 std::vector<legacy_hal::wifi_coex_unsafe_channel> legacy_unsafe_channels;
1391 if (!aidl_struct_util::convertAidlVectorOfCoexUnsafeChannelToLegacy(unsafe_channels,
1392 &legacy_unsafe_channels)) {
1393 return createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS);
1394 }
Gabriel Birenf3262f92022-07-15 23:25:39 +00001395 uint32_t legacy_restrictions = 0;
1396 if (aidl_restrictions & static_cast<uint32_t>(CoexRestriction::WIFI_DIRECT)) {
1397 legacy_restrictions |= legacy_hal::wifi_coex_restriction::WIFI_DIRECT;
1398 }
1399 if (aidl_restrictions & static_cast<uint32_t>(CoexRestriction::SOFTAP)) {
1400 legacy_restrictions |= legacy_hal::wifi_coex_restriction::SOFTAP;
1401 }
1402 if (aidl_restrictions & static_cast<uint32_t>(CoexRestriction::WIFI_AWARE)) {
1403 legacy_restrictions |= legacy_hal::wifi_coex_restriction::WIFI_AWARE;
1404 }
1405 auto legacy_status =
1406 legacy_hal_.lock()->setCoexUnsafeChannels(legacy_unsafe_channels, legacy_restrictions);
1407 return createWifiStatusFromLegacyError(legacy_status);
1408}
1409
1410ndk::ScopedAStatus WifiChip::setCountryCodeInternal(const std::array<uint8_t, 2>& code) {
1411 auto legacy_status = legacy_hal_.lock()->setCountryCode(getFirstActiveWlanIfaceName(), code);
1412 return createWifiStatusFromLegacyError(legacy_status);
1413}
1414
1415std::pair<std::vector<WifiUsableChannel>, ndk::ScopedAStatus> WifiChip::getUsableChannelsInternal(
Gabriel Biren3b86a782023-02-04 00:42:53 +00001416 WifiBand band, int32_t ifaceModeMask, int32_t filterMask) {
Gabriel Birenf3262f92022-07-15 23:25:39 +00001417 legacy_hal::wifi_error legacy_status;
1418 std::vector<legacy_hal::wifi_usable_channel> legacy_usable_channels;
1419 std::tie(legacy_status, legacy_usable_channels) = legacy_hal_.lock()->getUsableChannels(
1420 aidl_struct_util::convertAidlWifiBandToLegacyMacBand(band),
Gabriel Biren3b86a782023-02-04 00:42:53 +00001421 aidl_struct_util::convertAidlWifiIfaceModeToLegacy(ifaceModeMask),
1422 aidl_struct_util::convertAidlUsableChannelFilterToLegacy(filterMask));
Gabriel Birenf3262f92022-07-15 23:25:39 +00001423
1424 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
1425 return {std::vector<WifiUsableChannel>(), createWifiStatusFromLegacyError(legacy_status)};
1426 }
1427 std::vector<WifiUsableChannel> aidl_usable_channels;
1428 if (!aidl_struct_util::convertLegacyWifiUsableChannelsToAidl(legacy_usable_channels,
1429 &aidl_usable_channels)) {
1430 return {std::vector<WifiUsableChannel>(), createWifiStatus(WifiStatusCode::ERROR_UNKNOWN)};
1431 }
1432 return {aidl_usable_channels, ndk::ScopedAStatus::ok()};
1433}
1434
Oscar Shuab8313c2022-12-13 00:55:11 +00001435ndk::ScopedAStatus WifiChip::setAfcChannelAllowanceInternal(
Oscar Shu4275c872023-03-08 22:48:09 +00001436 const AfcChannelAllowance& afcChannelAllowance) {
1437 LOG(INFO) << "setAfcChannelAllowance is not yet supported. availableAfcFrequencyInfos size="
1438 << afcChannelAllowance.availableAfcFrequencyInfos.size()
1439 << " availableAfcChannelInfos size="
1440 << afcChannelAllowance.availableAfcChannelInfos.size()
1441 << " availabilityExpireTimeMs=" << afcChannelAllowance.availabilityExpireTimeMs;
Oscar Shuab8313c2022-12-13 00:55:11 +00001442 return createWifiStatus(WifiStatusCode::ERROR_NOT_SUPPORTED);
1443}
1444
Gabriel Biren263db452023-02-24 21:07:38 +00001445std::pair<std::vector<WifiRadioCombination>, ndk::ScopedAStatus>
1446WifiChip::getSupportedRadioCombinationsInternal() {
Gabriel Birenf3262f92022-07-15 23:25:39 +00001447 legacy_hal::wifi_error legacy_status;
1448 legacy_hal::wifi_radio_combination_matrix* legacy_matrix;
Gabriel Biren263db452023-02-24 21:07:38 +00001449 std::vector<WifiRadioCombination> aidl_combinations;
Gabriel Birenf3262f92022-07-15 23:25:39 +00001450
1451 std::tie(legacy_status, legacy_matrix) =
1452 legacy_hal_.lock()->getSupportedRadioCombinationsMatrix();
1453 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
1454 LOG(ERROR) << "Failed to get SupportedRadioCombinations matrix from legacy HAL: "
1455 << legacyErrorToString(legacy_status);
Gabriel Biren263db452023-02-24 21:07:38 +00001456 return {aidl_combinations, createWifiStatusFromLegacyError(legacy_status)};
Gabriel Birenf3262f92022-07-15 23:25:39 +00001457 }
1458
Gabriel Birenf3262f92022-07-15 23:25:39 +00001459 if (!aidl_struct_util::convertLegacyRadioCombinationsMatrixToAidl(legacy_matrix,
Gabriel Biren263db452023-02-24 21:07:38 +00001460 &aidl_combinations)) {
Gabriel Birenf3262f92022-07-15 23:25:39 +00001461 LOG(ERROR) << "Failed convertLegacyRadioCombinationsMatrixToAidl() ";
Gabriel Biren263db452023-02-24 21:07:38 +00001462 return {aidl_combinations, createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS)};
Gabriel Birenf3262f92022-07-15 23:25:39 +00001463 }
Gabriel Biren263db452023-02-24 21:07:38 +00001464 return {aidl_combinations, ndk::ScopedAStatus::ok()};
Gabriel Birenf3262f92022-07-15 23:25:39 +00001465}
1466
Mahesh KKVc84d3772022-12-02 16:53:28 -08001467std::pair<WifiChipCapabilities, ndk::ScopedAStatus> WifiChip::getWifiChipCapabilitiesInternal() {
1468 legacy_hal::wifi_error legacy_status;
1469 legacy_hal::wifi_chip_capabilities legacy_chip_capabilities;
1470 std::tie(legacy_status, legacy_chip_capabilities) =
1471 legacy_hal_.lock()->getWifiChipCapabilities();
1472 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
1473 LOG(ERROR) << "Failed to get chip capabilities from legacy HAL: "
1474 << legacyErrorToString(legacy_status);
1475 return {WifiChipCapabilities(), createWifiStatusFromLegacyError(legacy_status)};
1476 }
1477 WifiChipCapabilities aidl_chip_capabilities;
1478 if (!aidl_struct_util::convertLegacyWifiChipCapabilitiesToAidl(legacy_chip_capabilities,
1479 aidl_chip_capabilities)) {
1480 LOG(ERROR) << "Failed convertLegacyWifiChipCapabilitiesToAidl() ";
1481 return {WifiChipCapabilities(), createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS)};
1482 }
1483
1484 return {aidl_chip_capabilities, ndk::ScopedAStatus::ok()};
1485}
1486
Shuibing Daie5fbcab2022-12-19 15:37:19 -08001487ndk::ScopedAStatus WifiChip::enableStaChannelForPeerNetworkInternal(
Gabriel Biren3b86a782023-02-04 00:42:53 +00001488 int32_t channelCategoryEnableFlag) {
Shuibing Daie5fbcab2022-12-19 15:37:19 -08001489 auto legacy_status = legacy_hal_.lock()->enableStaChannelForPeerNetwork(
Gabriel Biren3b86a782023-02-04 00:42:53 +00001490 aidl_struct_util::convertAidlChannelCategoryToLegacy(channelCategoryEnableFlag));
Shuibing Daie5fbcab2022-12-19 15:37:19 -08001491 return createWifiStatusFromLegacyError(legacy_status);
1492}
1493
Gabriel Birenf3262f92022-07-15 23:25:39 +00001494ndk::ScopedAStatus WifiChip::triggerSubsystemRestartInternal() {
1495 auto legacy_status = legacy_hal_.lock()->triggerSubsystemRestart();
1496 return createWifiStatusFromLegacyError(legacy_status);
1497}
1498
1499ndk::ScopedAStatus WifiChip::handleChipConfiguration(
1500 /* NONNULL */ std::unique_lock<std::recursive_mutex>* lock, int32_t mode_id) {
1501 // If the chip is already configured in a different mode, stop
1502 // the legacy HAL and then start it after firmware mode change.
1503 if (isValidModeId(current_mode_id_)) {
1504 LOG(INFO) << "Reconfiguring chip from mode " << current_mode_id_ << " to mode " << mode_id;
1505 invalidateAndRemoveAllIfaces();
1506 legacy_hal::wifi_error legacy_status = legacy_hal_.lock()->stop(lock, []() {});
1507 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
1508 LOG(ERROR) << "Failed to stop legacy HAL: " << legacyErrorToString(legacy_status);
1509 return createWifiStatusFromLegacyError(legacy_status);
1510 }
1511 }
1512 // Firmware mode change not needed for V2 devices.
1513 bool success = true;
1514 if (mode_id == feature_flags::chip_mode_ids::kV1Sta) {
1515 success = mode_controller_.lock()->changeFirmwareMode(IfaceType::STA);
1516 } else if (mode_id == feature_flags::chip_mode_ids::kV1Ap) {
1517 success = mode_controller_.lock()->changeFirmwareMode(IfaceType::AP);
1518 }
1519 if (!success) {
1520 return createWifiStatus(WifiStatusCode::ERROR_UNKNOWN);
1521 }
1522 legacy_hal::wifi_error legacy_status = legacy_hal_.lock()->start();
1523 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
1524 LOG(ERROR) << "Failed to start legacy HAL: " << legacyErrorToString(legacy_status);
1525 return createWifiStatusFromLegacyError(legacy_status);
1526 }
1527 // Every time the HAL is restarted, we need to register the
1528 // radio mode change callback.
1529 ndk::ScopedAStatus status = registerRadioModeChangeCallback();
1530 if (!status.isOk()) {
1531 // This is probably not a critical failure?
1532 LOG(ERROR) << "Failed to register radio mode change callback";
1533 }
1534 // Extract and save the version information into property.
1535 std::pair<IWifiChip::ChipDebugInfo, ndk::ScopedAStatus> version_info;
1536 version_info = WifiChip::requestChipDebugInfoInternal();
1537 if (version_info.second.isOk()) {
1538 property_set("vendor.wlan.firmware.version",
1539 version_info.first.firmwareDescription.c_str());
1540 property_set("vendor.wlan.driver.version", version_info.first.driverDescription.c_str());
1541 }
Sunil Ravi2be1f262023-02-15 20:56:56 +00001542 // Get the driver supported interface combination.
1543 retrieveDynamicIfaceCombination();
Gabriel Birenf3262f92022-07-15 23:25:39 +00001544
1545 return ndk::ScopedAStatus::ok();
1546}
1547
1548ndk::ScopedAStatus WifiChip::registerDebugRingBufferCallback() {
1549 if (debug_ring_buffer_cb_registered_) {
1550 return ndk::ScopedAStatus::ok();
1551 }
1552
1553 std::weak_ptr<WifiChip> weak_ptr_this = weak_ptr_this_;
1554 const auto& on_ring_buffer_data_callback =
1555 [weak_ptr_this](const std::string& name, const std::vector<uint8_t>& data,
1556 const legacy_hal::wifi_ring_buffer_status& status) {
1557 const auto shared_ptr_this = weak_ptr_this.lock();
1558 if (!shared_ptr_this.get() || !shared_ptr_this->isValid()) {
1559 LOG(ERROR) << "Callback invoked on an invalid object";
1560 return;
1561 }
1562 WifiDebugRingBufferStatus aidl_status;
1563 Ringbuffer::AppendStatus appendstatus;
1564 if (!aidl_struct_util::convertLegacyDebugRingBufferStatusToAidl(status,
1565 &aidl_status)) {
1566 LOG(ERROR) << "Error converting ring buffer status";
1567 return;
1568 }
1569 {
1570 std::unique_lock<std::mutex> lk(shared_ptr_this->lock_t);
1571 const auto& target = shared_ptr_this->ringbuffer_map_.find(name);
1572 if (target != shared_ptr_this->ringbuffer_map_.end()) {
1573 Ringbuffer& cur_buffer = target->second;
1574 appendstatus = cur_buffer.append(data);
1575 } else {
1576 LOG(ERROR) << "Ringname " << name << " not found";
1577 return;
1578 }
1579 // unique_lock unlocked here
1580 }
1581 if (appendstatus == Ringbuffer::AppendStatus::FAIL_RING_BUFFER_CORRUPTED) {
1582 LOG(ERROR) << "Ringname " << name << " is corrupted. Clear the ring buffer";
1583 shared_ptr_this->writeRingbufferFilesInternal();
1584 return;
1585 }
1586 };
1587 legacy_hal::wifi_error legacy_status = legacy_hal_.lock()->registerRingBufferCallbackHandler(
1588 getFirstActiveWlanIfaceName(), on_ring_buffer_data_callback);
1589
1590 if (legacy_status == legacy_hal::WIFI_SUCCESS) {
1591 debug_ring_buffer_cb_registered_ = true;
1592 }
1593 return createWifiStatusFromLegacyError(legacy_status);
1594}
1595
1596ndk::ScopedAStatus WifiChip::registerRadioModeChangeCallback() {
1597 std::weak_ptr<WifiChip> weak_ptr_this = weak_ptr_this_;
1598 const auto& on_radio_mode_change_callback =
1599 [weak_ptr_this](const std::vector<legacy_hal::WifiMacInfo>& mac_infos) {
1600 const auto shared_ptr_this = weak_ptr_this.lock();
1601 if (!shared_ptr_this.get() || !shared_ptr_this->isValid()) {
1602 LOG(ERROR) << "Callback invoked on an invalid object";
1603 return;
1604 }
1605 std::vector<IWifiChipEventCallback::RadioModeInfo> aidl_radio_mode_infos;
1606 if (!aidl_struct_util::convertLegacyWifiMacInfosToAidl(mac_infos,
1607 &aidl_radio_mode_infos)) {
1608 LOG(ERROR) << "Error converting wifi mac info";
1609 return;
1610 }
1611 for (const auto& callback : shared_ptr_this->getEventCallbacks()) {
1612 if (!callback->onRadioModeChange(aidl_radio_mode_infos).isOk()) {
1613 LOG(ERROR) << "Failed to invoke onRadioModeChange callback";
1614 }
1615 }
1616 };
1617 legacy_hal::wifi_error legacy_status =
1618 legacy_hal_.lock()->registerRadioModeChangeCallbackHandler(
1619 getFirstActiveWlanIfaceName(), on_radio_mode_change_callback);
1620 return createWifiStatusFromLegacyError(legacy_status);
1621}
1622
1623std::vector<IWifiChip::ChipConcurrencyCombination>
1624WifiChip::getCurrentModeConcurrencyCombinations() {
1625 if (!isValidModeId(current_mode_id_)) {
1626 LOG(ERROR) << "Chip not configured in a mode yet";
1627 return std::vector<IWifiChip::ChipConcurrencyCombination>();
1628 }
1629 for (const auto& mode : modes_) {
1630 if (mode.id == current_mode_id_) {
1631 return mode.availableCombinations;
1632 }
1633 }
1634 CHECK(0) << "Expected to find concurrency combinations for current mode!";
1635 return std::vector<IWifiChip::ChipConcurrencyCombination>();
1636}
1637
1638// Returns a map indexed by IfaceConcurrencyType with the number of ifaces currently
1639// created of the corresponding concurrency type.
1640std::map<IfaceConcurrencyType, size_t> WifiChip::getCurrentConcurrencyCombination() {
1641 std::map<IfaceConcurrencyType, size_t> iface_counts;
1642 uint32_t num_ap = 0;
1643 uint32_t num_ap_bridged = 0;
1644 for (const auto& ap_iface : ap_ifaces_) {
1645 std::string ap_iface_name = ap_iface->getName();
1646 if (br_ifaces_ap_instances_.count(ap_iface_name) > 0 &&
1647 br_ifaces_ap_instances_[ap_iface_name].size() > 1) {
1648 num_ap_bridged++;
1649 } else {
1650 num_ap++;
1651 }
1652 }
1653 iface_counts[IfaceConcurrencyType::AP] = num_ap;
1654 iface_counts[IfaceConcurrencyType::AP_BRIDGED] = num_ap_bridged;
1655 iface_counts[IfaceConcurrencyType::NAN_IFACE] = nan_ifaces_.size();
1656 iface_counts[IfaceConcurrencyType::P2P] = p2p_ifaces_.size();
1657 iface_counts[IfaceConcurrencyType::STA] = sta_ifaces_.size();
1658 return iface_counts;
1659}
1660
1661// This expands the provided concurrency combinations to a more parseable
1662// form. Returns a vector of available combinations possible with the number
1663// of each concurrency type in the combination.
1664// This method is a port of HalDeviceManager.expandConcurrencyCombos() from framework.
1665std::vector<std::map<IfaceConcurrencyType, size_t>> WifiChip::expandConcurrencyCombinations(
1666 const IWifiChip::ChipConcurrencyCombination& combination) {
1667 int32_t num_expanded_combos = 1;
1668 for (const auto& limit : combination.limits) {
1669 for (int32_t i = 0; i < limit.maxIfaces; i++) {
1670 num_expanded_combos *= limit.types.size();
1671 }
1672 }
1673
1674 // Allocate the vector of expanded combos and reset all concurrency type counts to 0
1675 // in each combo.
1676 std::vector<std::map<IfaceConcurrencyType, size_t>> expanded_combos;
1677 expanded_combos.resize(num_expanded_combos);
1678 for (auto& expanded_combo : expanded_combos) {
1679 for (const auto type : {IfaceConcurrencyType::AP, IfaceConcurrencyType::AP_BRIDGED,
1680 IfaceConcurrencyType::NAN_IFACE, IfaceConcurrencyType::P2P,
1681 IfaceConcurrencyType::STA}) {
1682 expanded_combo[type] = 0;
1683 }
1684 }
1685 int32_t span = num_expanded_combos;
1686 for (const auto& limit : combination.limits) {
1687 for (int32_t i = 0; i < limit.maxIfaces; i++) {
1688 span /= limit.types.size();
1689 for (int32_t k = 0; k < num_expanded_combos; ++k) {
1690 const auto iface_type = limit.types[(k / span) % limit.types.size()];
1691 expanded_combos[k][iface_type]++;
1692 }
1693 }
1694 }
1695 return expanded_combos;
1696}
1697
1698bool WifiChip::canExpandedConcurrencyComboSupportConcurrencyTypeWithCurrentTypes(
1699 const std::map<IfaceConcurrencyType, size_t>& expanded_combo,
1700 IfaceConcurrencyType requested_type) {
1701 const auto current_combo = getCurrentConcurrencyCombination();
1702
1703 // Check if we have space for 1 more iface of |type| in this combo
1704 for (const auto type :
1705 {IfaceConcurrencyType::AP, IfaceConcurrencyType::AP_BRIDGED,
1706 IfaceConcurrencyType::NAN_IFACE, IfaceConcurrencyType::P2P, IfaceConcurrencyType::STA}) {
1707 size_t num_ifaces_needed = current_combo.at(type);
1708 if (type == requested_type) {
1709 num_ifaces_needed++;
1710 }
1711 size_t num_ifaces_allowed = expanded_combo.at(type);
1712 if (num_ifaces_needed > num_ifaces_allowed) {
1713 return false;
1714 }
1715 }
1716 return true;
1717}
1718
1719// This method does the following:
1720// a) Enumerate all possible concurrency combos by expanding the current
1721// ChipConcurrencyCombination.
1722// b) Check if the requested concurrency type can be added to the current mode
1723// with the concurrency combination that is already active.
1724bool WifiChip::canCurrentModeSupportConcurrencyTypeWithCurrentTypes(
1725 IfaceConcurrencyType requested_type) {
1726 if (!isValidModeId(current_mode_id_)) {
1727 LOG(ERROR) << "Chip not configured in a mode yet";
1728 return false;
1729 }
1730 const auto combinations = getCurrentModeConcurrencyCombinations();
1731 for (const auto& combination : combinations) {
1732 const auto expanded_combos = expandConcurrencyCombinations(combination);
1733 for (const auto& expanded_combo : expanded_combos) {
1734 if (canExpandedConcurrencyComboSupportConcurrencyTypeWithCurrentTypes(expanded_combo,
1735 requested_type)) {
1736 return true;
1737 }
1738 }
1739 }
1740 return false;
1741}
1742
1743// Note: This does not consider concurrency types already active. It only checks if the
1744// provided expanded concurrency combination can support the requested combo.
1745bool WifiChip::canExpandedConcurrencyComboSupportConcurrencyCombo(
1746 const std::map<IfaceConcurrencyType, size_t>& expanded_combo,
1747 const std::map<IfaceConcurrencyType, size_t>& req_combo) {
1748 // Check if we have space for 1 more |type| in this combo
1749 for (const auto type :
1750 {IfaceConcurrencyType::AP, IfaceConcurrencyType::AP_BRIDGED,
1751 IfaceConcurrencyType::NAN_IFACE, IfaceConcurrencyType::P2P, IfaceConcurrencyType::STA}) {
1752 if (req_combo.count(type) == 0) {
1753 // Concurrency type not in the req_combo.
1754 continue;
1755 }
1756 size_t num_ifaces_needed = req_combo.at(type);
1757 size_t num_ifaces_allowed = expanded_combo.at(type);
1758 if (num_ifaces_needed > num_ifaces_allowed) {
1759 return false;
1760 }
1761 }
1762 return true;
1763}
1764
1765// This method does the following:
1766// a) Enumerate all possible concurrency combos by expanding the current
1767// ChipConcurrencyCombination.
1768// b) Check if the requested concurrency combo can be added to the current mode.
1769// Note: This does not consider concurrency types already active. It only checks if the
1770// current mode can support the requested combo.
1771bool WifiChip::canCurrentModeSupportConcurrencyCombo(
1772 const std::map<IfaceConcurrencyType, size_t>& req_combo) {
1773 if (!isValidModeId(current_mode_id_)) {
1774 LOG(ERROR) << "Chip not configured in a mode yet";
1775 return false;
1776 }
1777 const auto combinations = getCurrentModeConcurrencyCombinations();
1778 for (const auto& combination : combinations) {
1779 const auto expanded_combos = expandConcurrencyCombinations(combination);
1780 for (const auto& expanded_combo : expanded_combos) {
1781 if (canExpandedConcurrencyComboSupportConcurrencyCombo(expanded_combo, req_combo)) {
1782 return true;
1783 }
1784 }
1785 }
1786 return false;
1787}
1788
1789// This method does the following:
1790// a) Enumerate all possible concurrency combos by expanding the current
1791// ChipConcurrencyCombination.
1792// b) Check if the requested concurrency type can be added to the current mode.
1793bool WifiChip::canCurrentModeSupportConcurrencyType(IfaceConcurrencyType requested_type) {
1794 // Check if we can support at least 1 of the requested concurrency type.
1795 std::map<IfaceConcurrencyType, size_t> req_iface_combo;
1796 req_iface_combo[requested_type] = 1;
1797 return canCurrentModeSupportConcurrencyCombo(req_iface_combo);
1798}
1799
1800bool WifiChip::isValidModeId(int32_t mode_id) {
1801 for (const auto& mode : modes_) {
1802 if (mode.id == mode_id) {
1803 return true;
1804 }
1805 }
1806 return false;
1807}
1808
1809bool WifiChip::isStaApConcurrencyAllowedInCurrentMode() {
1810 // Check if we can support at least 1 STA & 1 AP concurrently.
1811 std::map<IfaceConcurrencyType, size_t> req_iface_combo;
1812 req_iface_combo[IfaceConcurrencyType::STA] = 1;
1813 req_iface_combo[IfaceConcurrencyType::AP] = 1;
1814 return canCurrentModeSupportConcurrencyCombo(req_iface_combo);
1815}
1816
1817bool WifiChip::isDualStaConcurrencyAllowedInCurrentMode() {
1818 // Check if we can support at least 2 STA concurrently.
1819 std::map<IfaceConcurrencyType, size_t> req_iface_combo;
1820 req_iface_combo[IfaceConcurrencyType::STA] = 2;
1821 return canCurrentModeSupportConcurrencyCombo(req_iface_combo);
1822}
1823
1824std::string WifiChip::getFirstActiveWlanIfaceName() {
1825 if (sta_ifaces_.size() > 0) return sta_ifaces_[0]->getName();
1826 if (ap_ifaces_.size() > 0) {
1827 // If the first active wlan iface is bridged iface.
1828 // Return first instance name.
1829 for (auto const& it : br_ifaces_ap_instances_) {
1830 if (it.first == ap_ifaces_[0]->getName()) {
1831 return it.second[0];
1832 }
1833 }
1834 return ap_ifaces_[0]->getName();
1835 }
1836 // This could happen if the chip call is made before any STA/AP
1837 // iface is created. Default to wlan0 for such cases.
1838 LOG(WARNING) << "No active wlan interfaces in use! Using default";
1839 return getWlanIfaceNameWithType(IfaceType::STA, 0);
1840}
1841
1842// Return the first wlan (wlan0, wlan1 etc.) starting from |start_idx|
1843// not already in use.
1844// Note: This doesn't check the actual presence of these interfaces.
1845std::string WifiChip::allocateApOrStaIfaceName(IfaceType type, uint32_t start_idx) {
1846 for (unsigned idx = start_idx; idx < kMaxWlanIfaces; idx++) {
1847 const auto ifname = getWlanIfaceNameWithType(type, idx);
1848 if (findUsingNameFromBridgedApInstances(ifname)) continue;
1849 if (findUsingName(ap_ifaces_, ifname)) continue;
1850 if (findUsingName(sta_ifaces_, ifname)) continue;
1851 return ifname;
1852 }
1853 // This should never happen. We screwed up somewhere if it did.
1854 CHECK(false) << "All wlan interfaces in use already!";
1855 return {};
1856}
1857
1858uint32_t WifiChip::startIdxOfApIface() {
1859 if (isDualStaConcurrencyAllowedInCurrentMode()) {
1860 // When the HAL support dual STAs, AP should start with idx 2.
1861 return 2;
1862 } else if (isStaApConcurrencyAllowedInCurrentMode()) {
1863 // When the HAL support STA + AP but it doesn't support dual STAs.
1864 // AP should start with idx 1.
1865 return 1;
1866 }
1867 // No concurrency support.
1868 return 0;
1869}
1870
1871// AP iface names start with idx 1 for modes supporting
1872// concurrent STA and not dual AP, else start with idx 0.
1873std::string WifiChip::allocateApIfaceName() {
1874 // Check if we have a dedicated iface for AP.
1875 std::vector<std::string> ifnames = getPredefinedApIfaceNames(true);
1876 for (auto const& ifname : ifnames) {
1877 if (findUsingName(ap_ifaces_, ifname)) continue;
1878 return ifname;
1879 }
1880 return allocateApOrStaIfaceName(IfaceType::AP, startIdxOfApIface());
1881}
1882
1883std::vector<std::string> WifiChip::allocateBridgedApInstanceNames() {
1884 // Check if we have a dedicated iface for AP.
1885 std::vector<std::string> instances = getPredefinedApIfaceNames(true);
1886 if (instances.size() == 2) {
1887 return instances;
1888 } else {
1889 int num_ifaces_need_to_allocate = 2 - instances.size();
1890 for (int i = 0; i < num_ifaces_need_to_allocate; i++) {
1891 std::string instance_name =
1892 allocateApOrStaIfaceName(IfaceType::AP, startIdxOfApIface() + i);
1893 if (!instance_name.empty()) {
1894 instances.push_back(instance_name);
1895 }
1896 }
1897 }
1898 return instances;
1899}
1900
1901// STA iface names start with idx 0.
1902// Primary STA iface will always be 0.
1903std::string WifiChip::allocateStaIfaceName() {
1904 return allocateApOrStaIfaceName(IfaceType::STA, 0);
1905}
1906
1907bool WifiChip::writeRingbufferFilesInternal() {
1908 if (!removeOldFilesInternal()) {
1909 LOG(ERROR) << "Error occurred while deleting old tombstone files";
1910 return false;
1911 }
1912 // write ringbuffers to file
1913 {
1914 std::unique_lock<std::mutex> lk(lock_t);
1915 for (auto& item : ringbuffer_map_) {
1916 Ringbuffer& cur_buffer = item.second;
1917 if (cur_buffer.getData().empty()) {
1918 continue;
1919 }
1920 const std::string file_path_raw = kTombstoneFolderPath + item.first + "XXXXXXXXXX";
1921 const int dump_fd = mkstemp(makeCharVec(file_path_raw).data());
1922 if (dump_fd == -1) {
1923 PLOG(ERROR) << "create file failed";
1924 return false;
1925 }
1926 unique_fd file_auto_closer(dump_fd);
1927 for (const auto& cur_block : cur_buffer.getData()) {
1928 if (cur_block.size() <= 0 || cur_block.size() > kMaxBufferSizeBytes) {
1929 PLOG(ERROR) << "Ring buffer: " << item.first
1930 << " is corrupted. Invalid block size: " << cur_block.size();
1931 break;
1932 }
1933 if (write(dump_fd, cur_block.data(), sizeof(cur_block[0]) * cur_block.size()) ==
1934 -1) {
1935 PLOG(ERROR) << "Error writing to file";
1936 }
1937 }
1938 cur_buffer.clear();
1939 }
1940 // unique_lock unlocked here
1941 }
1942 return true;
1943}
1944
1945std::string WifiChip::getWlanIfaceNameWithType(IfaceType type, unsigned idx) {
1946 std::string ifname;
1947
1948 // let the legacy hal override the interface name
1949 legacy_hal::wifi_error err = legacy_hal_.lock()->getSupportedIfaceName((uint32_t)type, ifname);
1950 if (err == legacy_hal::WIFI_SUCCESS) return ifname;
1951
1952 return getWlanIfaceName(idx);
1953}
1954
1955void WifiChip::invalidateAndClearBridgedApAll() {
1956 for (auto const& it : br_ifaces_ap_instances_) {
1957 for (auto const& iface : it.second) {
1958 iface_util_->removeIfaceFromBridge(it.first, iface);
1959 legacy_hal_.lock()->deleteVirtualInterface(iface);
1960 }
1961 iface_util_->deleteBridge(it.first);
1962 }
1963 br_ifaces_ap_instances_.clear();
1964}
1965
1966void WifiChip::invalidateAndClearBridgedAp(const std::string& br_name) {
1967 if (br_name.empty()) return;
1968 // delete managed interfaces
1969 for (auto const& it : br_ifaces_ap_instances_) {
1970 if (it.first == br_name) {
1971 for (auto const& iface : it.second) {
1972 iface_util_->removeIfaceFromBridge(br_name, iface);
1973 legacy_hal_.lock()->deleteVirtualInterface(iface);
1974 }
1975 iface_util_->deleteBridge(br_name);
1976 br_ifaces_ap_instances_.erase(br_name);
1977 break;
1978 }
1979 }
1980 return;
1981}
1982
1983bool WifiChip::findUsingNameFromBridgedApInstances(const std::string& name) {
1984 for (auto const& it : br_ifaces_ap_instances_) {
1985 if (it.first == name) {
1986 return true;
1987 }
1988 for (auto const& iface : it.second) {
1989 if (iface == name) {
1990 return true;
1991 }
1992 }
1993 }
1994 return false;
1995}
1996
maheshkkva8aba172023-02-13 12:33:26 -08001997ndk::ScopedAStatus WifiChip::setMloModeInternal(const WifiChip::ChipMloMode in_mode) {
1998 legacy_hal::wifi_mlo_mode mode;
1999 switch (in_mode) {
2000 case WifiChip::ChipMloMode::DEFAULT:
2001 mode = legacy_hal::wifi_mlo_mode::WIFI_MLO_MODE_DEFAULT;
2002 break;
2003 case WifiChip::ChipMloMode::LOW_LATENCY:
2004 mode = legacy_hal::wifi_mlo_mode::WIFI_MLO_MODE_LOW_LATENCY;
2005 break;
2006 case WifiChip::ChipMloMode::HIGH_THROUGHPUT:
2007 mode = legacy_hal::wifi_mlo_mode::WIFI_MLO_MODE_HIGH_THROUGHPUT;
2008 break;
2009 case WifiChip::ChipMloMode::LOW_POWER:
2010 mode = legacy_hal::wifi_mlo_mode::WIFI_MLO_MODE_LOW_POWER;
2011 break;
2012 default:
2013 PLOG(ERROR) << "Error: invalid mode: " << toString(in_mode);
2014 return createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS);
2015 }
2016 return createWifiStatusFromLegacyError(legacy_hal_.lock()->setMloMode(mode));
2017}
2018
Gabriel Birenf3262f92022-07-15 23:25:39 +00002019} // namespace wifi
2020} // namespace hardware
2021} // namespace android
2022} // namespace aidl