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Roshan Pius3c4e8a32016-10-03 14:53:58 -07001/*
2 * Copyright (C) 2016 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
xshu5899e8e2018-01-09 15:36:03 -080017#include <fcntl.h>
18
Roshan Pius3c4e8a32016-10-03 14:53:58 -070019#include <android-base/logging.h>
xshu5899e8e2018-01-09 15:36:03 -080020#include <android-base/unique_fd.h>
Roshan Pius9377a0d2017-10-06 13:18:54 -070021#include <cutils/properties.h>
xshu5899e8e2018-01-09 15:36:03 -080022#include <sys/stat.h>
23#include <sys/sysmacros.h>
Roshan Pius3c4e8a32016-10-03 14:53:58 -070024
Roshan Pius3c868522016-10-27 12:43:49 -070025#include "hidl_return_util.h"
Roshan Piuse2d0ab52016-12-05 15:24:20 -080026#include "hidl_struct_util.h"
Roshan Pius3c868522016-10-27 12:43:49 -070027#include "wifi_chip.h"
Roshan Pius5c055462016-10-11 08:27:27 -070028#include "wifi_status_util.h"
Roshan Pius3c4e8a32016-10-03 14:53:58 -070029
Roshan Pius35d958c2016-10-06 16:47:38 -070030namespace {
xshu5899e8e2018-01-09 15:36:03 -080031using android::base::unique_fd;
Roshan Pius35d958c2016-10-06 16:47:38 -070032using android::hardware::hidl_string;
Roshan Piusabcf78f2017-10-06 16:30:38 -070033using android::hardware::hidl_vec;
Roshan Pius2c06a3f2016-12-15 17:51:40 -080034using android::hardware::wifi::V1_0::ChipModeId;
Roshan Pius52947fb2016-11-18 11:38:07 -080035using android::hardware::wifi::V1_0::IfaceType;
Roshan Pius675609b2017-10-31 14:24:58 -070036using android::hardware::wifi::V1_0::IWifiChip;
Roshan Piusabcf78f2017-10-06 16:30:38 -070037using android::sp;
Roshan Pius52947fb2016-11-18 11:38:07 -080038
Roshan Pius2c06a3f2016-12-15 17:51:40 -080039constexpr ChipModeId kInvalidModeId = UINT32_MAX;
Roshan Piuscc338202017-11-02 13:54:09 -070040// These mode ID's should be unique (even across combo versions). Refer to
41// handleChipConfiguration() for it's usage.
42// Mode ID's for V1
43constexpr ChipModeId kV1StaChipModeId = 0;
44constexpr ChipModeId kV1ApChipModeId = 1;
45// Mode ID for V2
46constexpr ChipModeId kV2ChipModeId = 2;
Roshan Pius35d958c2016-10-06 16:47:38 -070047
xshu5899e8e2018-01-09 15:36:03 -080048constexpr char kCpioMagic[] = "070701";
49constexpr size_t kMaxBufferSizeBytes = 1024 * 1024;
50constexpr uint32_t kMaxRingBufferFileAgeSeconds = 60 * 60;
51constexpr char kTombstoneFolderPath[] = "/data/vendor/tombstones/wifi/";
52
Roshan Pius35d958c2016-10-06 16:47:38 -070053template <typename Iface>
Roshan Pius675609b2017-10-31 14:24:58 -070054void invalidateAndClear(std::vector<sp<Iface>>& ifaces, sp<Iface> iface) {
55 iface->invalidate();
56 ifaces.erase(std::remove(ifaces.begin(), ifaces.end(), iface),
57 ifaces.end());
58}
59
60template <typename Iface>
61void invalidateAndClearAll(std::vector<sp<Iface>>& ifaces) {
62 for (const auto& iface : ifaces) {
Roshan Piusabcf78f2017-10-06 16:30:38 -070063 iface->invalidate();
Roshan Piusabcf78f2017-10-06 16:30:38 -070064 }
Roshan Pius675609b2017-10-31 14:24:58 -070065 ifaces.clear();
66}
67
68template <typename Iface>
69std::vector<hidl_string> getNames(std::vector<sp<Iface>>& ifaces) {
70 std::vector<hidl_string> names;
71 for (const auto& iface : ifaces) {
72 names.emplace_back(iface->getName());
73 }
74 return names;
75}
76
77template <typename Iface>
78sp<Iface> findUsingName(std::vector<sp<Iface>>& ifaces,
79 const std::string& name) {
80 std::vector<hidl_string> names;
81 for (const auto& iface : ifaces) {
82 if (name == iface->getName()) {
83 return iface;
84 }
85 }
86 return nullptr;
Roshan Pius35d958c2016-10-06 16:47:38 -070087}
Roshan Pius9377a0d2017-10-06 13:18:54 -070088
89std::string getWlan0IfaceName() {
Roshan Piusabcf78f2017-10-06 16:30:38 -070090 std::array<char, PROPERTY_VALUE_MAX> buffer;
91 property_get("wifi.interface", buffer.data(), "wlan0");
92 return buffer.data();
Roshan Pius9377a0d2017-10-06 13:18:54 -070093}
94
Roshan Pius9377a0d2017-10-06 13:18:54 -070095std::string getWlan1IfaceName() {
Roshan Pius8e3c7ef2017-11-03 09:43:08 -070096 std::array<char, PROPERTY_VALUE_MAX> buffer;
97 property_get("wifi.concurrent.interface", buffer.data(), "wlan1");
98 return buffer.data();
Roshan Pius9377a0d2017-10-06 13:18:54 -070099}
Roshan Pius9377a0d2017-10-06 13:18:54 -0700100
101std::string getP2pIfaceName() {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700102 std::array<char, PROPERTY_VALUE_MAX> buffer;
103 property_get("wifi.direct.interface", buffer.data(), "p2p0");
104 return buffer.data();
Roshan Pius9377a0d2017-10-06 13:18:54 -0700105}
106
xshu5899e8e2018-01-09 15:36:03 -0800107// delete files older than a predefined time in the wifi tombstone dir
108bool removeOldFilesInternal() {
109 time_t now = time(0);
110 const time_t delete_files_before = now - kMaxRingBufferFileAgeSeconds;
111 DIR* dir_dump = opendir(kTombstoneFolderPath);
112 if (!dir_dump) {
113 LOG(ERROR) << "Failed to open directory: " << strerror(errno);
114 return false;
115 }
116 unique_fd dir_auto_closer(dirfd(dir_dump));
117 struct dirent* dp;
118 bool success = true;
119 while ((dp = readdir(dir_dump))) {
120 if (dp->d_type != DT_REG) {
121 continue;
122 }
123 std::string cur_file_name(dp->d_name);
124 struct stat cur_file_stat;
125 std::string cur_file_path = kTombstoneFolderPath + cur_file_name;
126 if (stat(cur_file_path.c_str(), &cur_file_stat) != -1) {
127 if (cur_file_stat.st_mtime < delete_files_before) {
128 if (unlink(cur_file_path.c_str()) != 0) {
129 LOG(ERROR) << "Error deleting file " << strerror(errno);
130 success = false;
131 }
132 }
133 } else {
134 LOG(ERROR) << "Failed to get file stat for " << cur_file_path
135 << ": " << strerror(errno);
136 success = false;
137 }
138 }
139 return success;
140}
141
142// Archives all files in |input_dir| and writes result into |out_fd|
143// Logic obtained from //external/toybox/toys/posix/cpio.c "Output cpio archive"
144// portion
145size_t cpioFilesInDir(int out_fd, const char* input_dir) {
146 struct dirent* dp;
147 size_t n_error = 0;
148 char read_buf[32 * 1024];
149 DIR* dir_dump = opendir(input_dir);
150 if (!dir_dump) {
151 LOG(ERROR) << "Failed to open directory: " << strerror(errno);
152 n_error++;
153 return n_error;
154 }
155 unique_fd dir_auto_closer(dirfd(dir_dump));
156 while ((dp = readdir(dir_dump))) {
157 if (dp->d_type != DT_REG) {
158 continue;
159 }
160 std::string cur_file_name(dp->d_name);
161 const size_t file_name_len =
162 cur_file_name.size() + 1; // string.size() does not include the
163 // null terminator. The cpio FreeBSD file
164 // header expects the null character to
165 // be included in the length.
166 struct stat st;
167 ssize_t llen;
168 const std::string cur_file_path = kTombstoneFolderPath + cur_file_name;
169 if (stat(cur_file_path.c_str(), &st) != -1) {
170 const int fd_read = open(cur_file_path.c_str(), O_RDONLY);
171 unique_fd file_auto_closer(fd_read);
172 if (fd_read == -1) {
173 LOG(ERROR) << "Failed to read file " << cur_file_path << " "
174 << strerror(errno);
175 n_error++;
176 continue;
177 }
178 llen = sprintf(
179 read_buf,
180 "%s%08X%08X%08X%08X%08X%08X%08X%08X%08X%08X%08X%08X%08X",
181 kCpioMagic, static_cast<int>(st.st_ino), st.st_mode, st.st_uid,
182 st.st_gid, static_cast<int>(st.st_nlink),
183 static_cast<int>(st.st_mtime), static_cast<int>(st.st_size),
184 major(st.st_dev), minor(st.st_dev), major(st.st_rdev),
185 minor(st.st_rdev), static_cast<uint32_t>(file_name_len), 0);
186 if (write(out_fd, read_buf, llen) == -1) {
187 LOG(ERROR) << "Error writing cpio header to file "
188 << cur_file_path << " " << strerror(errno);
189 n_error++;
190 return n_error;
191 }
192 if (write(out_fd, cur_file_name.c_str(), file_name_len) == -1) {
193 LOG(ERROR) << "Error writing filename to file " << cur_file_path
194 << " " << strerror(errno);
195 n_error++;
196 return n_error;
197 }
198
199 // NUL Pad header up to 4 multiple bytes.
200 llen = (llen + file_name_len) % 4;
201 if (llen != 0) {
202 const uint32_t zero = 0;
203 if (write(out_fd, &zero, 4 - llen) == -1) {
204 LOG(ERROR) << "Error padding 0s to file " << cur_file_path
205 << " " << strerror(errno);
206 n_error++;
207 return n_error;
208 }
209 }
210
211 // writing content of file
212 llen = st.st_size;
213 while (llen > 0) {
214 ssize_t bytes_read = read(fd_read, read_buf, sizeof(read_buf));
215 if (bytes_read == -1) {
216 LOG(ERROR) << "Error reading file " << cur_file_path << " "
217 << strerror(errno);
218 n_error++;
219 return n_error;
220 }
221 llen -= bytes_read;
222 if (write(out_fd, read_buf, bytes_read) == -1) {
223 LOG(ERROR) << "Error writing data to file " << cur_file_path
224 << " " << strerror(errno);
225 n_error++;
226 return n_error;
227 }
228 if (bytes_read ==
229 0) { // this should never happen, but just in case
230 // to unstuck from while loop
231 LOG(ERROR) << "Unexpected file size for " << cur_file_path
232 << " " << strerror(errno);
233 n_error++;
234 break;
235 }
236 }
237 llen = st.st_size % 4;
238 if (llen != 0) {
239 const uint32_t zero = 0;
240 write(out_fd, &zero, 4 - llen);
241 }
242 } else {
243 LOG(ERROR) << "Failed to get file stat for " << cur_file_path
244 << ": " << strerror(errno);
245 n_error++;
246 }
247 }
248 memset(read_buf, 0, sizeof(read_buf));
249 if (write(out_fd, read_buf,
250 sprintf(read_buf, "070701%040X%056X%08XTRAILER!!!", 1, 0x0b, 0) +
251 4) == -1) {
252 LOG(ERROR) << "Error writing trailing bytes " << strerror(errno);
253 n_error++;
254 }
255 return n_error;
256}
257
258// Helper function to create a non-const char*.
259std::vector<char> makeCharVec(const std::string& str) {
260 std::vector<char> vec(str.size() + 1);
261 vec.assign(str.begin(), str.end());
262 vec.push_back('\0');
263 return vec;
264}
265
Roshan Piusabcf78f2017-10-06 16:30:38 -0700266} // namespace
Roshan Pius35d958c2016-10-06 16:47:38 -0700267
Roshan Pius3c4e8a32016-10-03 14:53:58 -0700268namespace android {
269namespace hardware {
270namespace wifi {
Etan Cohen6ce50902017-09-14 07:30:57 -0700271namespace V1_2 {
Roshan Pius79a99752016-10-04 13:03:58 -0700272namespace implementation {
Roshan Pius3c868522016-10-27 12:43:49 -0700273using hidl_return_util::validateAndCall;
Roshan Piusba38d9c2017-12-08 07:32:08 -0800274using hidl_return_util::validateAndCallWithLock;
Roshan Pius3c4e8a32016-10-03 14:53:58 -0700275
Roshan Pius52947fb2016-11-18 11:38:07 -0800276WifiChip::WifiChip(
Roshan Piusabcf78f2017-10-06 16:30:38 -0700277 ChipId chip_id, const std::weak_ptr<legacy_hal::WifiLegacyHal> legacy_hal,
Roshan Pius200a17d2017-11-01 13:03:35 -0700278 const std::weak_ptr<mode_controller::WifiModeController> mode_controller,
279 const std::weak_ptr<feature_flags::WifiFeatureFlags> feature_flags)
Roshan Pius52947fb2016-11-18 11:38:07 -0800280 : chip_id_(chip_id),
281 legacy_hal_(legacy_hal),
282 mode_controller_(mode_controller),
Roshan Pius200a17d2017-11-01 13:03:35 -0700283 feature_flags_(feature_flags),
Roshan Pius52947fb2016-11-18 11:38:07 -0800284 is_valid_(true),
Roshan Pius48185b22016-12-15 19:10:30 -0800285 current_mode_id_(kInvalidModeId),
Roshan Piuscc338202017-11-02 13:54:09 -0700286 debug_ring_buffer_cb_registered_(false) {
287 populateModes();
288}
Roshan Pius3c4e8a32016-10-03 14:53:58 -0700289
Roshan Piusaabe5752016-09-29 09:03:59 -0700290void WifiChip::invalidate() {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700291 invalidateAndRemoveAllIfaces();
292 legacy_hal_.reset();
293 event_cb_handler_.invalidate();
294 is_valid_ = false;
Roshan Pius3c4e8a32016-10-03 14:53:58 -0700295}
296
Roshan Piusabcf78f2017-10-06 16:30:38 -0700297bool WifiChip::isValid() { return is_valid_; }
Roshan Pius3c868522016-10-27 12:43:49 -0700298
Roshan Piusd37341f2017-01-31 13:13:28 -0800299std::set<sp<IWifiChipEventCallback>> WifiChip::getEventCallbacks() {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700300 return event_cb_handler_.getCallbacks();
Roshan Pius203cb032016-12-14 17:41:20 -0800301}
302
Roshan Pius5c055462016-10-11 08:27:27 -0700303Return<void> WifiChip::getId(getId_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700304 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
305 &WifiChip::getIdInternal, hidl_status_cb);
Roshan Piuscd566bd2016-10-10 08:03:42 -0700306}
307
Roshan Pius3c4e8a32016-10-03 14:53:58 -0700308Return<void> WifiChip::registerEventCallback(
Roshan Pius5c055462016-10-11 08:27:27 -0700309 const sp<IWifiChipEventCallback>& event_callback,
310 registerEventCallback_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700311 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
312 &WifiChip::registerEventCallbackInternal,
313 hidl_status_cb, event_callback);
Roshan Pius3c4e8a32016-10-03 14:53:58 -0700314}
315
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700316Return<void> WifiChip::getCapabilities(getCapabilities_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700317 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
318 &WifiChip::getCapabilitiesInternal, hidl_status_cb);
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700319}
320
Roshan Pius5c055462016-10-11 08:27:27 -0700321Return<void> WifiChip::getAvailableModes(getAvailableModes_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700322 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
323 &WifiChip::getAvailableModesInternal,
324 hidl_status_cb);
Roshan Pius3c4e8a32016-10-03 14:53:58 -0700325}
326
Roshan Pius2c06a3f2016-12-15 17:51:40 -0800327Return<void> WifiChip::configureChip(ChipModeId mode_id,
Roshan Pius5c055462016-10-11 08:27:27 -0700328 configureChip_cb hidl_status_cb) {
Roshan Piusba38d9c2017-12-08 07:32:08 -0800329 return validateAndCallWithLock(
330 this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
331 &WifiChip::configureChipInternal, hidl_status_cb, mode_id);
Roshan Pius3c4e8a32016-10-03 14:53:58 -0700332}
333
Roshan Pius5c055462016-10-11 08:27:27 -0700334Return<void> WifiChip::getMode(getMode_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700335 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
336 &WifiChip::getModeInternal, hidl_status_cb);
Roshan Pius3c4e8a32016-10-03 14:53:58 -0700337}
338
Roshan Pius5c055462016-10-11 08:27:27 -0700339Return<void> WifiChip::requestChipDebugInfo(
340 requestChipDebugInfo_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700341 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
342 &WifiChip::requestChipDebugInfoInternal,
343 hidl_status_cb);
Roshan Pius5c055462016-10-11 08:27:27 -0700344}
345
346Return<void> WifiChip::requestDriverDebugDump(
347 requestDriverDebugDump_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700348 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
349 &WifiChip::requestDriverDebugDumpInternal,
350 hidl_status_cb);
Roshan Pius3c4e8a32016-10-03 14:53:58 -0700351}
352
Roshan Pius5c055462016-10-11 08:27:27 -0700353Return<void> WifiChip::requestFirmwareDebugDump(
354 requestFirmwareDebugDump_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700355 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
356 &WifiChip::requestFirmwareDebugDumpInternal,
357 hidl_status_cb);
Roshan Pius3c4e8a32016-10-03 14:53:58 -0700358}
359
Roshan Pius5c055462016-10-11 08:27:27 -0700360Return<void> WifiChip::createApIface(createApIface_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700361 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
362 &WifiChip::createApIfaceInternal, hidl_status_cb);
Roshan Pius35d958c2016-10-06 16:47:38 -0700363}
364
Roshan Pius5c055462016-10-11 08:27:27 -0700365Return<void> WifiChip::getApIfaceNames(getApIfaceNames_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700366 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
367 &WifiChip::getApIfaceNamesInternal, hidl_status_cb);
Roshan Pius35d958c2016-10-06 16:47:38 -0700368}
369
Roshan Pius5c055462016-10-11 08:27:27 -0700370Return<void> WifiChip::getApIface(const hidl_string& ifname,
371 getApIface_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700372 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
373 &WifiChip::getApIfaceInternal, hidl_status_cb,
374 ifname);
Roshan Pius35d958c2016-10-06 16:47:38 -0700375}
376
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800377Return<void> WifiChip::removeApIface(const hidl_string& ifname,
378 removeApIface_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700379 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
380 &WifiChip::removeApIfaceInternal, hidl_status_cb,
381 ifname);
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800382}
383
Roshan Pius5c055462016-10-11 08:27:27 -0700384Return<void> WifiChip::createNanIface(createNanIface_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700385 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
386 &WifiChip::createNanIfaceInternal, hidl_status_cb);
Roshan Pius35d958c2016-10-06 16:47:38 -0700387}
388
Roshan Pius5c055462016-10-11 08:27:27 -0700389Return<void> WifiChip::getNanIfaceNames(getNanIfaceNames_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700390 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
391 &WifiChip::getNanIfaceNamesInternal, hidl_status_cb);
Roshan Pius35d958c2016-10-06 16:47:38 -0700392}
393
394Return<void> WifiChip::getNanIface(const hidl_string& ifname,
Roshan Pius5c055462016-10-11 08:27:27 -0700395 getNanIface_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700396 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
397 &WifiChip::getNanIfaceInternal, hidl_status_cb,
398 ifname);
Roshan Pius35d958c2016-10-06 16:47:38 -0700399}
400
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800401Return<void> WifiChip::removeNanIface(const hidl_string& ifname,
402 removeNanIface_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700403 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
404 &WifiChip::removeNanIfaceInternal, hidl_status_cb,
405 ifname);
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800406}
407
Roshan Pius5c055462016-10-11 08:27:27 -0700408Return<void> WifiChip::createP2pIface(createP2pIface_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700409 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
410 &WifiChip::createP2pIfaceInternal, hidl_status_cb);
Roshan Pius35d958c2016-10-06 16:47:38 -0700411}
412
Roshan Pius5c055462016-10-11 08:27:27 -0700413Return<void> WifiChip::getP2pIfaceNames(getP2pIfaceNames_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700414 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
415 &WifiChip::getP2pIfaceNamesInternal, hidl_status_cb);
Roshan Pius35d958c2016-10-06 16:47:38 -0700416}
417
418Return<void> WifiChip::getP2pIface(const hidl_string& ifname,
Roshan Pius5c055462016-10-11 08:27:27 -0700419 getP2pIface_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700420 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
421 &WifiChip::getP2pIfaceInternal, hidl_status_cb,
422 ifname);
Roshan Pius35d958c2016-10-06 16:47:38 -0700423}
424
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800425Return<void> WifiChip::removeP2pIface(const hidl_string& ifname,
426 removeP2pIface_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700427 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
428 &WifiChip::removeP2pIfaceInternal, hidl_status_cb,
429 ifname);
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800430}
431
Roshan Pius5c055462016-10-11 08:27:27 -0700432Return<void> WifiChip::createStaIface(createStaIface_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700433 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
434 &WifiChip::createStaIfaceInternal, hidl_status_cb);
Roshan Pius35d958c2016-10-06 16:47:38 -0700435}
436
Roshan Pius5c055462016-10-11 08:27:27 -0700437Return<void> WifiChip::getStaIfaceNames(getStaIfaceNames_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700438 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
439 &WifiChip::getStaIfaceNamesInternal, hidl_status_cb);
Roshan Pius35d958c2016-10-06 16:47:38 -0700440}
441
442Return<void> WifiChip::getStaIface(const hidl_string& ifname,
Roshan Pius5c055462016-10-11 08:27:27 -0700443 getStaIface_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700444 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
445 &WifiChip::getStaIfaceInternal, hidl_status_cb,
446 ifname);
Roshan Pius35d958c2016-10-06 16:47:38 -0700447}
448
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800449Return<void> WifiChip::removeStaIface(const hidl_string& ifname,
450 removeStaIface_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700451 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
452 &WifiChip::removeStaIfaceInternal, hidl_status_cb,
453 ifname);
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800454}
455
Roshan Pius5c055462016-10-11 08:27:27 -0700456Return<void> WifiChip::createRttController(
457 const sp<IWifiIface>& bound_iface, createRttController_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700458 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
459 &WifiChip::createRttControllerInternal,
460 hidl_status_cb, bound_iface);
Roshan Pius59268282016-10-06 20:23:47 -0700461}
462
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700463Return<void> WifiChip::getDebugRingBuffersStatus(
464 getDebugRingBuffersStatus_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700465 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
466 &WifiChip::getDebugRingBuffersStatusInternal,
467 hidl_status_cb);
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700468}
469
470Return<void> WifiChip::startLoggingToDebugRingBuffer(
Roshan Piusabcf78f2017-10-06 16:30:38 -0700471 const hidl_string& ring_name, WifiDebugRingBufferVerboseLevel verbose_level,
472 uint32_t max_interval_in_sec, uint32_t min_data_size_in_bytes,
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700473 startLoggingToDebugRingBuffer_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700474 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
475 &WifiChip::startLoggingToDebugRingBufferInternal,
476 hidl_status_cb, ring_name, verbose_level,
477 max_interval_in_sec, min_data_size_in_bytes);
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700478}
479
480Return<void> WifiChip::forceDumpToDebugRingBuffer(
481 const hidl_string& ring_name,
482 forceDumpToDebugRingBuffer_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700483 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
484 &WifiChip::forceDumpToDebugRingBufferInternal,
485 hidl_status_cb, ring_name);
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700486}
487
Roshan Pius8c0c8e92017-02-24 08:07:42 -0800488Return<void> WifiChip::stopLoggingToDebugRingBuffer(
489 stopLoggingToDebugRingBuffer_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700490 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
491 &WifiChip::stopLoggingToDebugRingBufferInternal,
492 hidl_status_cb);
Roshan Pius8c0c8e92017-02-24 08:07:42 -0800493}
494
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700495Return<void> WifiChip::getDebugHostWakeReasonStats(
496 getDebugHostWakeReasonStats_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700497 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
498 &WifiChip::getDebugHostWakeReasonStatsInternal,
499 hidl_status_cb);
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700500}
501
Roshan Pius203cb032016-12-14 17:41:20 -0800502Return<void> WifiChip::enableDebugErrorAlerts(
503 bool enable, enableDebugErrorAlerts_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700504 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
505 &WifiChip::enableDebugErrorAlertsInternal,
506 hidl_status_cb, enable);
Roshan Pius203cb032016-12-14 17:41:20 -0800507}
508
Roshan Pius735ff432017-07-25 08:48:08 -0700509Return<void> WifiChip::selectTxPowerScenario(
510 TxPowerScenario scenario, selectTxPowerScenario_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700511 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
512 &WifiChip::selectTxPowerScenarioInternal,
513 hidl_status_cb, scenario);
Roshan Piusdbd83ef2017-06-20 12:05:40 -0700514}
515
Roshan Pius735ff432017-07-25 08:48:08 -0700516Return<void> WifiChip::resetTxPowerScenario(
517 resetTxPowerScenario_cb hidl_status_cb) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700518 return validateAndCall(this, WifiStatusCode::ERROR_WIFI_CHIP_INVALID,
519 &WifiChip::resetTxPowerScenarioInternal,
520 hidl_status_cb);
Roshan Piusdbd83ef2017-06-20 12:05:40 -0700521}
522
xshu5899e8e2018-01-09 15:36:03 -0800523Return<void> WifiChip::debug(const hidl_handle& handle,
524 const hidl_vec<hidl_string>&) {
525 if (handle != nullptr && handle->numFds >= 1) {
526 int fd = handle->data[0];
527 if (!writeRingbufferFilesInternal()) {
528 LOG(ERROR) << "Error writing files to flash";
529 }
530 uint32_t n_error = cpioFilesInDir(fd, kTombstoneFolderPath);
531 if (n_error != 0) {
532 LOG(ERROR) << n_error << " errors occured in cpio function";
533 }
534 fsync(fd);
535 } else {
536 LOG(ERROR) << "File handle error";
537 }
538 return Void();
539}
540
Roshan Pius35d958c2016-10-06 16:47:38 -0700541void WifiChip::invalidateAndRemoveAllIfaces() {
Roshan Pius675609b2017-10-31 14:24:58 -0700542 invalidateAndClearAll(ap_ifaces_);
543 invalidateAndClearAll(nan_ifaces_);
544 invalidateAndClearAll(p2p_ifaces_);
545 invalidateAndClearAll(sta_ifaces_);
Roshan Piusabcf78f2017-10-06 16:30:38 -0700546 // Since all the ifaces are invalid now, all RTT controller objects
547 // using those ifaces also need to be invalidated.
548 for (const auto& rtt : rtt_controllers_) {
549 rtt->invalidate();
550 }
551 rtt_controllers_.clear();
Roshan Pius35d958c2016-10-06 16:47:38 -0700552}
553
Roshan Pius3c868522016-10-27 12:43:49 -0700554std::pair<WifiStatus, ChipId> WifiChip::getIdInternal() {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700555 return {createWifiStatus(WifiStatusCode::SUCCESS), chip_id_};
Roshan Pius3c868522016-10-27 12:43:49 -0700556}
557
558WifiStatus WifiChip::registerEventCallbackInternal(
559 const sp<IWifiChipEventCallback>& event_callback) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700560 if (!event_cb_handler_.addCallback(event_callback)) {
561 return createWifiStatus(WifiStatusCode::ERROR_UNKNOWN);
562 }
563 return createWifiStatus(WifiStatusCode::SUCCESS);
Roshan Pius3c868522016-10-27 12:43:49 -0700564}
565
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700566std::pair<WifiStatus, uint32_t> WifiChip::getCapabilitiesInternal() {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700567 legacy_hal::wifi_error legacy_status;
568 uint32_t legacy_feature_set;
569 uint32_t legacy_logger_feature_set;
570 std::tie(legacy_status, legacy_feature_set) =
571 legacy_hal_.lock()->getSupportedFeatureSet(getWlan0IfaceName());
572 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
573 return {createWifiStatusFromLegacyError(legacy_status), 0};
574 }
575 std::tie(legacy_status, legacy_logger_feature_set) =
576 legacy_hal_.lock()->getLoggerSupportedFeatureSet(getWlan0IfaceName());
577 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
578 return {createWifiStatusFromLegacyError(legacy_status), 0};
579 }
580 uint32_t hidl_caps;
581 if (!hidl_struct_util::convertLegacyFeaturesToHidlChipCapabilities(
582 legacy_feature_set, legacy_logger_feature_set, &hidl_caps)) {
583 return {createWifiStatus(WifiStatusCode::ERROR_UNKNOWN), 0};
584 }
585 return {createWifiStatus(WifiStatusCode::SUCCESS), hidl_caps};
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700586}
587
Roshan Pius3c868522016-10-27 12:43:49 -0700588std::pair<WifiStatus, std::vector<IWifiChip::ChipMode>>
589WifiChip::getAvailableModesInternal() {
Roshan Piuscc338202017-11-02 13:54:09 -0700590 return {createWifiStatus(WifiStatusCode::SUCCESS), modes_};
Roshan Pius3c868522016-10-27 12:43:49 -0700591}
592
Roshan Piusba38d9c2017-12-08 07:32:08 -0800593WifiStatus WifiChip::configureChipInternal(
594 /* NONNULL */ std::unique_lock<std::recursive_mutex>* lock,
595 ChipModeId mode_id) {
Roshan Piuscc338202017-11-02 13:54:09 -0700596 if (!isValidModeId(mode_id)) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700597 return createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS);
598 }
599 if (mode_id == current_mode_id_) {
600 LOG(DEBUG) << "Already in the specified mode " << mode_id;
601 return createWifiStatus(WifiStatusCode::SUCCESS);
602 }
Roshan Piusba38d9c2017-12-08 07:32:08 -0800603 WifiStatus status = handleChipConfiguration(lock, mode_id);
Roshan Piusabcf78f2017-10-06 16:30:38 -0700604 if (status.code != WifiStatusCode::SUCCESS) {
605 for (const auto& callback : event_cb_handler_.getCallbacks()) {
606 if (!callback->onChipReconfigureFailure(status).isOk()) {
607 LOG(ERROR)
608 << "Failed to invoke onChipReconfigureFailure callback";
609 }
610 }
611 return status;
612 }
Roshan Piusd37341f2017-01-31 13:13:28 -0800613 for (const auto& callback : event_cb_handler_.getCallbacks()) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700614 if (!callback->onChipReconfigured(mode_id).isOk()) {
615 LOG(ERROR) << "Failed to invoke onChipReconfigured callback";
616 }
Roshan Pius52947fb2016-11-18 11:38:07 -0800617 }
Roshan Piusabcf78f2017-10-06 16:30:38 -0700618 current_mode_id_ = mode_id;
Roshan Piusba38d9c2017-12-08 07:32:08 -0800619 LOG(INFO) << "Configured chip in mode " << mode_id;
Roshan Pius2c06a3f2016-12-15 17:51:40 -0800620 return status;
Roshan Pius3c868522016-10-27 12:43:49 -0700621}
622
623std::pair<WifiStatus, uint32_t> WifiChip::getModeInternal() {
Roshan Piuscc338202017-11-02 13:54:09 -0700624 if (!isValidModeId(current_mode_id_)) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700625 return {createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE),
626 current_mode_id_};
627 }
628 return {createWifiStatus(WifiStatusCode::SUCCESS), current_mode_id_};
Roshan Pius3c868522016-10-27 12:43:49 -0700629}
630
631std::pair<WifiStatus, IWifiChip::ChipDebugInfo>
632WifiChip::requestChipDebugInfoInternal() {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700633 IWifiChip::ChipDebugInfo result;
634 legacy_hal::wifi_error legacy_status;
635 std::string driver_desc;
636 std::tie(legacy_status, driver_desc) =
637 legacy_hal_.lock()->getDriverVersion(getWlan0IfaceName());
638 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
639 LOG(ERROR) << "Failed to get driver version: "
640 << legacyErrorToString(legacy_status);
641 WifiStatus status = createWifiStatusFromLegacyError(
642 legacy_status, "failed to get driver version");
643 return {status, result};
644 }
645 result.driverDescription = driver_desc.c_str();
Roshan Pius3c868522016-10-27 12:43:49 -0700646
Roshan Piusabcf78f2017-10-06 16:30:38 -0700647 std::string firmware_desc;
648 std::tie(legacy_status, firmware_desc) =
649 legacy_hal_.lock()->getFirmwareVersion(getWlan0IfaceName());
650 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
651 LOG(ERROR) << "Failed to get firmware version: "
652 << legacyErrorToString(legacy_status);
653 WifiStatus status = createWifiStatusFromLegacyError(
654 legacy_status, "failed to get firmware version");
655 return {status, result};
656 }
657 result.firmwareDescription = firmware_desc.c_str();
Roshan Pius3c868522016-10-27 12:43:49 -0700658
Roshan Piusabcf78f2017-10-06 16:30:38 -0700659 return {createWifiStatus(WifiStatusCode::SUCCESS), result};
Roshan Pius3c868522016-10-27 12:43:49 -0700660}
661
662std::pair<WifiStatus, std::vector<uint8_t>>
663WifiChip::requestDriverDebugDumpInternal() {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700664 legacy_hal::wifi_error legacy_status;
665 std::vector<uint8_t> driver_dump;
666 std::tie(legacy_status, driver_dump) =
667 legacy_hal_.lock()->requestDriverMemoryDump(getWlan0IfaceName());
668 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
669 LOG(ERROR) << "Failed to get driver debug dump: "
670 << legacyErrorToString(legacy_status);
671 return {createWifiStatusFromLegacyError(legacy_status),
672 std::vector<uint8_t>()};
673 }
674 return {createWifiStatus(WifiStatusCode::SUCCESS), driver_dump};
Roshan Pius3c868522016-10-27 12:43:49 -0700675}
676
677std::pair<WifiStatus, std::vector<uint8_t>>
678WifiChip::requestFirmwareDebugDumpInternal() {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700679 legacy_hal::wifi_error legacy_status;
680 std::vector<uint8_t> firmware_dump;
681 std::tie(legacy_status, firmware_dump) =
682 legacy_hal_.lock()->requestFirmwareMemoryDump(getWlan0IfaceName());
683 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
684 LOG(ERROR) << "Failed to get firmware debug dump: "
685 << legacyErrorToString(legacy_status);
686 return {createWifiStatusFromLegacyError(legacy_status), {}};
687 }
688 return {createWifiStatus(WifiStatusCode::SUCCESS), firmware_dump};
Roshan Pius3c868522016-10-27 12:43:49 -0700689}
690
691std::pair<WifiStatus, sp<IWifiApIface>> WifiChip::createApIfaceInternal() {
Roshan Piuscc338202017-11-02 13:54:09 -0700692 if (!canCurrentModeSupportIfaceOfType(IfaceType::AP)) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700693 return {createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE), {}};
Roshan Piusbc662202017-01-30 17:07:42 -0800694 }
Roshan Pius8e3c7ef2017-11-03 09:43:08 -0700695 std::string ifname = allocateApOrStaIfaceName();
Roshan Pius675609b2017-10-31 14:24:58 -0700696 sp<WifiApIface> iface = new WifiApIface(ifname, legacy_hal_);
697 ap_ifaces_.push_back(iface);
Roshan Piusabcf78f2017-10-06 16:30:38 -0700698 for (const auto& callback : event_cb_handler_.getCallbacks()) {
699 if (!callback->onIfaceAdded(IfaceType::AP, ifname).isOk()) {
700 LOG(ERROR) << "Failed to invoke onIfaceAdded callback";
701 }
702 }
Roshan Pius675609b2017-10-31 14:24:58 -0700703 return {createWifiStatus(WifiStatusCode::SUCCESS), iface};
Roshan Pius3c868522016-10-27 12:43:49 -0700704}
705
706std::pair<WifiStatus, std::vector<hidl_string>>
707WifiChip::getApIfaceNamesInternal() {
Roshan Pius675609b2017-10-31 14:24:58 -0700708 if (ap_ifaces_.empty()) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700709 return {createWifiStatus(WifiStatusCode::SUCCESS), {}};
710 }
Roshan Pius675609b2017-10-31 14:24:58 -0700711 return {createWifiStatus(WifiStatusCode::SUCCESS), getNames(ap_ifaces_)};
Roshan Pius3c868522016-10-27 12:43:49 -0700712}
713
714std::pair<WifiStatus, sp<IWifiApIface>> WifiChip::getApIfaceInternal(
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800715 const std::string& ifname) {
Roshan Pius675609b2017-10-31 14:24:58 -0700716 const auto iface = findUsingName(ap_ifaces_, ifname);
717 if (!iface.get()) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700718 return {createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS), nullptr};
719 }
Roshan Pius675609b2017-10-31 14:24:58 -0700720 return {createWifiStatus(WifiStatusCode::SUCCESS), iface};
Roshan Pius3c868522016-10-27 12:43:49 -0700721}
722
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800723WifiStatus WifiChip::removeApIfaceInternal(const std::string& ifname) {
Roshan Pius675609b2017-10-31 14:24:58 -0700724 const auto iface = findUsingName(ap_ifaces_, ifname);
725 if (!iface.get()) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700726 return createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS);
Roshan Piusbc662202017-01-30 17:07:42 -0800727 }
Roshan Pius675609b2017-10-31 14:24:58 -0700728 invalidateAndClear(ap_ifaces_, iface);
Roshan Piusabcf78f2017-10-06 16:30:38 -0700729 for (const auto& callback : event_cb_handler_.getCallbacks()) {
730 if (!callback->onIfaceRemoved(IfaceType::AP, ifname).isOk()) {
731 LOG(ERROR) << "Failed to invoke onIfaceRemoved callback";
732 }
733 }
734 return createWifiStatus(WifiStatusCode::SUCCESS);
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800735}
736
Roshan Pius3c868522016-10-27 12:43:49 -0700737std::pair<WifiStatus, sp<IWifiNanIface>> WifiChip::createNanIfaceInternal() {
Roshan Piuscc338202017-11-02 13:54:09 -0700738 if (!canCurrentModeSupportIfaceOfType(IfaceType::NAN)) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700739 return {createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE), {}};
Etan Cohenc5700402017-03-08 16:43:38 -0800740 }
Roshan Pius8e3c7ef2017-11-03 09:43:08 -0700741 // These are still assumed to be based on wlan0.
Roshan Piuscc338202017-11-02 13:54:09 -0700742 std::string ifname = getWlan0IfaceName();
743 sp<WifiNanIface> iface = new WifiNanIface(ifname, legacy_hal_);
744 nan_ifaces_.push_back(iface);
745 for (const auto& callback : event_cb_handler_.getCallbacks()) {
746 if (!callback->onIfaceAdded(IfaceType::NAN, ifname).isOk()) {
747 LOG(ERROR) << "Failed to invoke onIfaceAdded callback";
748 }
749 }
750 return {createWifiStatus(WifiStatusCode::SUCCESS), iface};
Roshan Pius3c868522016-10-27 12:43:49 -0700751}
752
753std::pair<WifiStatus, std::vector<hidl_string>>
754WifiChip::getNanIfaceNamesInternal() {
Roshan Pius675609b2017-10-31 14:24:58 -0700755 if (nan_ifaces_.empty()) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700756 return {createWifiStatus(WifiStatusCode::SUCCESS), {}};
757 }
Roshan Pius675609b2017-10-31 14:24:58 -0700758 return {createWifiStatus(WifiStatusCode::SUCCESS), getNames(nan_ifaces_)};
Roshan Pius3c868522016-10-27 12:43:49 -0700759}
760
761std::pair<WifiStatus, sp<IWifiNanIface>> WifiChip::getNanIfaceInternal(
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800762 const std::string& ifname) {
Roshan Pius675609b2017-10-31 14:24:58 -0700763 const auto iface = findUsingName(nan_ifaces_, ifname);
764 if (!iface.get()) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700765 return {createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS), nullptr};
766 }
Roshan Pius675609b2017-10-31 14:24:58 -0700767 return {createWifiStatus(WifiStatusCode::SUCCESS), iface};
Roshan Pius3c868522016-10-27 12:43:49 -0700768}
769
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800770WifiStatus WifiChip::removeNanIfaceInternal(const std::string& ifname) {
Roshan Pius675609b2017-10-31 14:24:58 -0700771 const auto iface = findUsingName(nan_ifaces_, ifname);
772 if (!iface.get()) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700773 return createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS);
Roshan Piusbc662202017-01-30 17:07:42 -0800774 }
Roshan Pius675609b2017-10-31 14:24:58 -0700775 invalidateAndClear(nan_ifaces_, iface);
Roshan Piusabcf78f2017-10-06 16:30:38 -0700776 for (const auto& callback : event_cb_handler_.getCallbacks()) {
777 if (!callback->onIfaceRemoved(IfaceType::NAN, ifname).isOk()) {
778 LOG(ERROR) << "Failed to invoke onIfaceAdded callback";
779 }
780 }
781 return createWifiStatus(WifiStatusCode::SUCCESS);
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800782}
783
Roshan Pius3c868522016-10-27 12:43:49 -0700784std::pair<WifiStatus, sp<IWifiP2pIface>> WifiChip::createP2pIfaceInternal() {
Roshan Piuscc338202017-11-02 13:54:09 -0700785 if (!canCurrentModeSupportIfaceOfType(IfaceType::P2P)) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700786 return {createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE), {}};
Roshan Piusbc662202017-01-30 17:07:42 -0800787 }
Roshan Piusabcf78f2017-10-06 16:30:38 -0700788 std::string ifname = getP2pIfaceName();
Roshan Pius675609b2017-10-31 14:24:58 -0700789 sp<WifiP2pIface> iface = new WifiP2pIface(ifname, legacy_hal_);
790 p2p_ifaces_.push_back(iface);
Roshan Piusabcf78f2017-10-06 16:30:38 -0700791 for (const auto& callback : event_cb_handler_.getCallbacks()) {
792 if (!callback->onIfaceAdded(IfaceType::P2P, ifname).isOk()) {
793 LOG(ERROR) << "Failed to invoke onIfaceAdded callback";
794 }
795 }
Roshan Pius675609b2017-10-31 14:24:58 -0700796 return {createWifiStatus(WifiStatusCode::SUCCESS), iface};
Roshan Pius3c868522016-10-27 12:43:49 -0700797}
798
799std::pair<WifiStatus, std::vector<hidl_string>>
800WifiChip::getP2pIfaceNamesInternal() {
Roshan Pius675609b2017-10-31 14:24:58 -0700801 if (p2p_ifaces_.empty()) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700802 return {createWifiStatus(WifiStatusCode::SUCCESS), {}};
803 }
Roshan Pius675609b2017-10-31 14:24:58 -0700804 return {createWifiStatus(WifiStatusCode::SUCCESS), getNames(p2p_ifaces_)};
Roshan Pius3c868522016-10-27 12:43:49 -0700805}
806
807std::pair<WifiStatus, sp<IWifiP2pIface>> WifiChip::getP2pIfaceInternal(
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800808 const std::string& ifname) {
Roshan Pius675609b2017-10-31 14:24:58 -0700809 const auto iface = findUsingName(p2p_ifaces_, ifname);
810 if (!iface.get()) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700811 return {createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS), nullptr};
812 }
Roshan Pius675609b2017-10-31 14:24:58 -0700813 return {createWifiStatus(WifiStatusCode::SUCCESS), iface};
Roshan Pius3c868522016-10-27 12:43:49 -0700814}
815
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800816WifiStatus WifiChip::removeP2pIfaceInternal(const std::string& ifname) {
Roshan Pius675609b2017-10-31 14:24:58 -0700817 const auto iface = findUsingName(p2p_ifaces_, ifname);
818 if (!iface.get()) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700819 return createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS);
Roshan Piusbc662202017-01-30 17:07:42 -0800820 }
Roshan Pius675609b2017-10-31 14:24:58 -0700821 invalidateAndClear(p2p_ifaces_, iface);
Roshan Piusabcf78f2017-10-06 16:30:38 -0700822 for (const auto& callback : event_cb_handler_.getCallbacks()) {
823 if (!callback->onIfaceRemoved(IfaceType::P2P, ifname).isOk()) {
824 LOG(ERROR) << "Failed to invoke onIfaceRemoved callback";
825 }
826 }
827 return createWifiStatus(WifiStatusCode::SUCCESS);
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800828}
829
Roshan Pius3c868522016-10-27 12:43:49 -0700830std::pair<WifiStatus, sp<IWifiStaIface>> WifiChip::createStaIfaceInternal() {
Roshan Piuscc338202017-11-02 13:54:09 -0700831 if (!canCurrentModeSupportIfaceOfType(IfaceType::STA)) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700832 return {createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE), {}};
Roshan Piusbc662202017-01-30 17:07:42 -0800833 }
Roshan Pius8e3c7ef2017-11-03 09:43:08 -0700834 std::string ifname = allocateApOrStaIfaceName();
Roshan Pius675609b2017-10-31 14:24:58 -0700835 sp<WifiStaIface> iface = new WifiStaIface(ifname, legacy_hal_);
836 sta_ifaces_.push_back(iface);
Roshan Piusabcf78f2017-10-06 16:30:38 -0700837 for (const auto& callback : event_cb_handler_.getCallbacks()) {
838 if (!callback->onIfaceAdded(IfaceType::STA, ifname).isOk()) {
839 LOG(ERROR) << "Failed to invoke onIfaceAdded callback";
840 }
841 }
Roshan Pius675609b2017-10-31 14:24:58 -0700842 return {createWifiStatus(WifiStatusCode::SUCCESS), iface};
Roshan Pius3c868522016-10-27 12:43:49 -0700843}
844
845std::pair<WifiStatus, std::vector<hidl_string>>
846WifiChip::getStaIfaceNamesInternal() {
Roshan Pius675609b2017-10-31 14:24:58 -0700847 if (sta_ifaces_.empty()) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700848 return {createWifiStatus(WifiStatusCode::SUCCESS), {}};
849 }
Roshan Pius675609b2017-10-31 14:24:58 -0700850 return {createWifiStatus(WifiStatusCode::SUCCESS), getNames(sta_ifaces_)};
Roshan Pius3c868522016-10-27 12:43:49 -0700851}
852
853std::pair<WifiStatus, sp<IWifiStaIface>> WifiChip::getStaIfaceInternal(
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800854 const std::string& ifname) {
Roshan Pius675609b2017-10-31 14:24:58 -0700855 const auto iface = findUsingName(sta_ifaces_, ifname);
856 if (!iface.get()) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700857 return {createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS), nullptr};
858 }
Roshan Pius675609b2017-10-31 14:24:58 -0700859 return {createWifiStatus(WifiStatusCode::SUCCESS), iface};
Roshan Pius3c868522016-10-27 12:43:49 -0700860}
861
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800862WifiStatus WifiChip::removeStaIfaceInternal(const std::string& ifname) {
Roshan Pius675609b2017-10-31 14:24:58 -0700863 const auto iface = findUsingName(sta_ifaces_, ifname);
864 if (!iface.get()) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700865 return createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS);
Roshan Piusbc662202017-01-30 17:07:42 -0800866 }
Roshan Pius675609b2017-10-31 14:24:58 -0700867 invalidateAndClear(sta_ifaces_, iface);
Roshan Piusabcf78f2017-10-06 16:30:38 -0700868 for (const auto& callback : event_cb_handler_.getCallbacks()) {
869 if (!callback->onIfaceRemoved(IfaceType::STA, ifname).isOk()) {
870 LOG(ERROR) << "Failed to invoke onIfaceRemoved callback";
871 }
872 }
873 return createWifiStatus(WifiStatusCode::SUCCESS);
Roshan Pius8b55e6f2016-12-09 12:05:12 -0800874}
875
Roshan Pius3c868522016-10-27 12:43:49 -0700876std::pair<WifiStatus, sp<IWifiRttController>>
877WifiChip::createRttControllerInternal(const sp<IWifiIface>& bound_iface) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700878 sp<WifiRttController> rtt =
879 new WifiRttController(getWlan0IfaceName(), bound_iface, legacy_hal_);
880 rtt_controllers_.emplace_back(rtt);
881 return {createWifiStatus(WifiStatusCode::SUCCESS), rtt};
Roshan Pius3c868522016-10-27 12:43:49 -0700882}
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700883
884std::pair<WifiStatus, std::vector<WifiDebugRingBufferStatus>>
885WifiChip::getDebugRingBuffersStatusInternal() {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700886 legacy_hal::wifi_error legacy_status;
887 std::vector<legacy_hal::wifi_ring_buffer_status>
888 legacy_ring_buffer_status_vec;
889 std::tie(legacy_status, legacy_ring_buffer_status_vec) =
890 legacy_hal_.lock()->getRingBuffersStatus(getWlan0IfaceName());
891 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
892 return {createWifiStatusFromLegacyError(legacy_status), {}};
893 }
894 std::vector<WifiDebugRingBufferStatus> hidl_ring_buffer_status_vec;
895 if (!hidl_struct_util::convertLegacyVectorOfDebugRingBufferStatusToHidl(
896 legacy_ring_buffer_status_vec, &hidl_ring_buffer_status_vec)) {
897 return {createWifiStatus(WifiStatusCode::ERROR_UNKNOWN), {}};
898 }
899 return {createWifiStatus(WifiStatusCode::SUCCESS),
900 hidl_ring_buffer_status_vec};
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700901}
902
903WifiStatus WifiChip::startLoggingToDebugRingBufferInternal(
Roshan Piusabcf78f2017-10-06 16:30:38 -0700904 const hidl_string& ring_name, WifiDebugRingBufferVerboseLevel verbose_level,
905 uint32_t max_interval_in_sec, uint32_t min_data_size_in_bytes) {
906 WifiStatus status = registerDebugRingBufferCallback();
907 if (status.code != WifiStatusCode::SUCCESS) {
908 return status;
909 }
910 legacy_hal::wifi_error legacy_status =
911 legacy_hal_.lock()->startRingBufferLogging(
912 getWlan0IfaceName(), ring_name,
913 static_cast<
914 std::underlying_type<WifiDebugRingBufferVerboseLevel>::type>(
915 verbose_level),
916 max_interval_in_sec, min_data_size_in_bytes);
xshu5899e8e2018-01-09 15:36:03 -0800917 ringbuffer_map_.insert(std::pair<std::string, Ringbuffer>(
918 ring_name, Ringbuffer(kMaxBufferSizeBytes)));
Roshan Piusabcf78f2017-10-06 16:30:38 -0700919 return createWifiStatusFromLegacyError(legacy_status);
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700920}
921
922WifiStatus WifiChip::forceDumpToDebugRingBufferInternal(
Roshan Piuse2d0ab52016-12-05 15:24:20 -0800923 const hidl_string& ring_name) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700924 WifiStatus status = registerDebugRingBufferCallback();
925 if (status.code != WifiStatusCode::SUCCESS) {
926 return status;
927 }
928 legacy_hal::wifi_error legacy_status =
929 legacy_hal_.lock()->getRingBufferData(getWlan0IfaceName(), ring_name);
xshu5899e8e2018-01-09 15:36:03 -0800930
Roshan Piusabcf78f2017-10-06 16:30:38 -0700931 return createWifiStatusFromLegacyError(legacy_status);
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700932}
933
Roshan Pius8c0c8e92017-02-24 08:07:42 -0800934WifiStatus WifiChip::stopLoggingToDebugRingBufferInternal() {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700935 legacy_hal::wifi_error legacy_status =
936 legacy_hal_.lock()->deregisterRingBufferCallbackHandler(
937 getWlan0IfaceName());
938 return createWifiStatusFromLegacyError(legacy_status);
Roshan Pius8c0c8e92017-02-24 08:07:42 -0800939}
940
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700941std::pair<WifiStatus, WifiDebugHostWakeReasonStats>
942WifiChip::getDebugHostWakeReasonStatsInternal() {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700943 legacy_hal::wifi_error legacy_status;
944 legacy_hal::WakeReasonStats legacy_stats;
945 std::tie(legacy_status, legacy_stats) =
946 legacy_hal_.lock()->getWakeReasonStats(getWlan0IfaceName());
947 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
948 return {createWifiStatusFromLegacyError(legacy_status), {}};
949 }
950 WifiDebugHostWakeReasonStats hidl_stats;
951 if (!hidl_struct_util::convertLegacyWakeReasonStatsToHidl(legacy_stats,
952 &hidl_stats)) {
953 return {createWifiStatus(WifiStatusCode::ERROR_UNKNOWN), {}};
954 }
955 return {createWifiStatus(WifiStatusCode::SUCCESS), hidl_stats};
Roshan Pius7d08d7a2016-10-27 14:35:05 -0700956}
957
Roshan Pius203cb032016-12-14 17:41:20 -0800958WifiStatus WifiChip::enableDebugErrorAlertsInternal(bool enable) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700959 legacy_hal::wifi_error legacy_status;
960 if (enable) {
961 android::wp<WifiChip> weak_ptr_this(this);
962 const auto& on_alert_callback = [weak_ptr_this](
963 int32_t error_code,
964 std::vector<uint8_t> debug_data) {
965 const auto shared_ptr_this = weak_ptr_this.promote();
966 if (!shared_ptr_this.get() || !shared_ptr_this->isValid()) {
967 LOG(ERROR) << "Callback invoked on an invalid object";
968 return;
969 }
970 for (const auto& callback : shared_ptr_this->getEventCallbacks()) {
971 if (!callback->onDebugErrorAlert(error_code, debug_data)
972 .isOk()) {
973 LOG(ERROR) << "Failed to invoke onDebugErrorAlert callback";
974 }
975 }
976 };
977 legacy_status = legacy_hal_.lock()->registerErrorAlertCallbackHandler(
Roshan Piusacededb2017-10-06 14:59:26 -0700978 getWlan0IfaceName(), on_alert_callback);
Roshan Piusabcf78f2017-10-06 16:30:38 -0700979 } else {
980 legacy_status = legacy_hal_.lock()->deregisterErrorAlertCallbackHandler(
Roshan Piusacededb2017-10-06 14:59:26 -0700981 getWlan0IfaceName());
Roshan Piusabcf78f2017-10-06 16:30:38 -0700982 }
983 return createWifiStatusFromLegacyError(legacy_status);
Roshan Pius203cb032016-12-14 17:41:20 -0800984}
Roshan Pius2c06a3f2016-12-15 17:51:40 -0800985
Roshan Pius735ff432017-07-25 08:48:08 -0700986WifiStatus WifiChip::selectTxPowerScenarioInternal(TxPowerScenario scenario) {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700987 auto legacy_status = legacy_hal_.lock()->selectTxPowerScenario(
988 getWlan0IfaceName(),
989 hidl_struct_util::convertHidlTxPowerScenarioToLegacy(scenario));
990 return createWifiStatusFromLegacyError(legacy_status);
Roshan Piusdbd83ef2017-06-20 12:05:40 -0700991}
992
Roshan Pius735ff432017-07-25 08:48:08 -0700993WifiStatus WifiChip::resetTxPowerScenarioInternal() {
Roshan Piusabcf78f2017-10-06 16:30:38 -0700994 auto legacy_status =
995 legacy_hal_.lock()->resetTxPowerScenario(getWlan0IfaceName());
996 return createWifiStatusFromLegacyError(legacy_status);
Roshan Piusdbd83ef2017-06-20 12:05:40 -0700997}
998
Roshan Piusba38d9c2017-12-08 07:32:08 -0800999WifiStatus WifiChip::handleChipConfiguration(
1000 /* NONNULL */ std::unique_lock<std::recursive_mutex>* lock,
1001 ChipModeId mode_id) {
Roshan Piusabcf78f2017-10-06 16:30:38 -07001002 // If the chip is already configured in a different mode, stop
1003 // the legacy HAL and then start it after firmware mode change.
Roshan Piuscc338202017-11-02 13:54:09 -07001004 if (isValidModeId(current_mode_id_)) {
Roshan Piusba38d9c2017-12-08 07:32:08 -08001005 LOG(INFO) << "Reconfiguring chip from mode " << current_mode_id_
1006 << " to mode " << mode_id;
1007 invalidateAndRemoveAllIfaces();
1008 legacy_hal::wifi_error legacy_status =
1009 legacy_hal_.lock()->stop(lock, []() {});
1010 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
1011 LOG(ERROR) << "Failed to stop legacy HAL: "
1012 << legacyErrorToString(legacy_status);
1013 return createWifiStatusFromLegacyError(legacy_status);
1014 }
Roshan Piusabcf78f2017-10-06 16:30:38 -07001015 }
Roshan Piuscc338202017-11-02 13:54:09 -07001016 // Firmware mode change not needed for V2 devices.
1017 bool success = true;
1018 if (mode_id == kV1StaChipModeId) {
Roshan Piusabcf78f2017-10-06 16:30:38 -07001019 success = mode_controller_.lock()->changeFirmwareMode(IfaceType::STA);
Roshan Piuscc338202017-11-02 13:54:09 -07001020 } else if (mode_id == kV1ApChipModeId) {
Roshan Piusabcf78f2017-10-06 16:30:38 -07001021 success = mode_controller_.lock()->changeFirmwareMode(IfaceType::AP);
1022 }
1023 if (!success) {
1024 return createWifiStatus(WifiStatusCode::ERROR_UNKNOWN);
1025 }
1026 legacy_hal::wifi_error legacy_status = legacy_hal_.lock()->start();
1027 if (legacy_status != legacy_hal::WIFI_SUCCESS) {
1028 LOG(ERROR) << "Failed to start legacy HAL: "
1029 << legacyErrorToString(legacy_status);
1030 return createWifiStatusFromLegacyError(legacy_status);
1031 }
1032 return createWifiStatus(WifiStatusCode::SUCCESS);
Roshan Pius2c06a3f2016-12-15 17:51:40 -08001033}
Roshan Pius48185b22016-12-15 19:10:30 -08001034
1035WifiStatus WifiChip::registerDebugRingBufferCallback() {
Roshan Piusabcf78f2017-10-06 16:30:38 -07001036 if (debug_ring_buffer_cb_registered_) {
1037 return createWifiStatus(WifiStatusCode::SUCCESS);
Roshan Pius48185b22016-12-15 19:10:30 -08001038 }
Roshan Pius3797e182017-03-30 18:01:54 -07001039
Roshan Piusabcf78f2017-10-06 16:30:38 -07001040 android::wp<WifiChip> weak_ptr_this(this);
1041 const auto& on_ring_buffer_data_callback =
xshu5899e8e2018-01-09 15:36:03 -08001042 [weak_ptr_this](const std::string& name,
Roshan Piusabcf78f2017-10-06 16:30:38 -07001043 const std::vector<uint8_t>& data,
1044 const legacy_hal::wifi_ring_buffer_status& status) {
1045 const auto shared_ptr_this = weak_ptr_this.promote();
1046 if (!shared_ptr_this.get() || !shared_ptr_this->isValid()) {
1047 LOG(ERROR) << "Callback invoked on an invalid object";
1048 return;
1049 }
1050 WifiDebugRingBufferStatus hidl_status;
1051 if (!hidl_struct_util::convertLegacyDebugRingBufferStatusToHidl(
1052 status, &hidl_status)) {
1053 LOG(ERROR) << "Error converting ring buffer status";
1054 return;
1055 }
xshu5899e8e2018-01-09 15:36:03 -08001056 const auto& target = shared_ptr_this->ringbuffer_map_.find(name);
1057 if (target != shared_ptr_this->ringbuffer_map_.end()) {
1058 Ringbuffer& cur_buffer = target->second;
1059 cur_buffer.append(data);
1060 } else {
1061 LOG(ERROR) << "Ringname " << name << " not found";
1062 return;
Roshan Piusabcf78f2017-10-06 16:30:38 -07001063 }
1064 };
1065 legacy_hal::wifi_error legacy_status =
1066 legacy_hal_.lock()->registerRingBufferCallbackHandler(
1067 getWlan0IfaceName(), on_ring_buffer_data_callback);
Roshan Pius48185b22016-12-15 19:10:30 -08001068
Roshan Piusabcf78f2017-10-06 16:30:38 -07001069 if (legacy_status == legacy_hal::WIFI_SUCCESS) {
1070 debug_ring_buffer_cb_registered_ = true;
1071 }
1072 return createWifiStatusFromLegacyError(legacy_status);
Roshan Pius48185b22016-12-15 19:10:30 -08001073}
1074
Roshan Piuscc338202017-11-02 13:54:09 -07001075void WifiChip::populateModes() {
1076 // The chip combination supported for current devices is fixed.
1077 // They can be one of the following based on device features:
1078 // a) 2 separate modes of operation with 1 interface combination each:
1079 // Mode 1 (STA mode): Will support 1 STA and 1 P2P or NAN(optional)
1080 // concurrent iface operations.
1081 // Mode 2 (AP mode): Will support 1 AP iface operation.
1082 //
1083 // b) 1 mode of operation with 2 interface combinations
1084 // (conditional on isDualInterfaceSupported()):
1085 // Interface Combination 1: Will support 1 STA and 1 P2P or NAN(optional)
1086 // concurrent iface operations.
1087 // Interface Combination 2: Will support 1 STA and 1 STA or AP concurrent
1088 // iface operations.
1089 // If Aware is enabled (conditional on isAwareSupported()), the iface
1090 // combination will be modified to support either P2P or NAN in place of
1091 // just P2P.
1092 if (feature_flags_.lock()->isDualInterfaceSupported()) {
1093 // V2 Iface combinations for Mode Id = 2.
1094 const IWifiChip::ChipIfaceCombinationLimit
1095 chip_iface_combination_limit_1 = {{IfaceType::STA}, 1};
1096 const IWifiChip::ChipIfaceCombinationLimit
1097 chip_iface_combination_limit_2 = {{IfaceType::STA, IfaceType::AP},
1098 1};
1099 IWifiChip::ChipIfaceCombinationLimit chip_iface_combination_limit_3;
1100 if (feature_flags_.lock()->isAwareSupported()) {
1101 chip_iface_combination_limit_3 = {{IfaceType::P2P, IfaceType::NAN},
1102 1};
1103 } else {
1104 chip_iface_combination_limit_3 = {{IfaceType::P2P}, 1};
1105 }
1106 const IWifiChip::ChipIfaceCombination chip_iface_combination_1 = {
1107 {chip_iface_combination_limit_1, chip_iface_combination_limit_2}};
1108 const IWifiChip::ChipIfaceCombination chip_iface_combination_2 = {
1109 {chip_iface_combination_limit_1, chip_iface_combination_limit_3}};
1110 const IWifiChip::ChipMode chip_mode = {
1111 kV2ChipModeId,
1112 {chip_iface_combination_1, chip_iface_combination_2}};
1113 modes_ = {chip_mode};
1114 } else {
1115 // V1 Iface combinations for Mode Id = 0. (STA Mode)
1116 const IWifiChip::ChipIfaceCombinationLimit
1117 sta_chip_iface_combination_limit_1 = {{IfaceType::STA}, 1};
1118 IWifiChip::ChipIfaceCombinationLimit sta_chip_iface_combination_limit_2;
1119 if (feature_flags_.lock()->isAwareSupported()) {
1120 sta_chip_iface_combination_limit_2 = {
1121 {IfaceType::P2P, IfaceType::NAN}, 1};
1122 } else {
1123 sta_chip_iface_combination_limit_2 = {{IfaceType::P2P}, 1};
1124 }
1125 const IWifiChip::ChipIfaceCombination sta_chip_iface_combination = {
1126 {sta_chip_iface_combination_limit_1,
1127 sta_chip_iface_combination_limit_2}};
1128 const IWifiChip::ChipMode sta_chip_mode = {
1129 kV1StaChipModeId, {sta_chip_iface_combination}};
1130 // Iface combinations for Mode Id = 1. (AP Mode)
1131 const IWifiChip::ChipIfaceCombinationLimit
1132 ap_chip_iface_combination_limit = {{IfaceType::AP}, 1};
1133 const IWifiChip::ChipIfaceCombination ap_chip_iface_combination = {
1134 {ap_chip_iface_combination_limit}};
1135 const IWifiChip::ChipMode ap_chip_mode = {kV1ApChipModeId,
1136 {ap_chip_iface_combination}};
1137 modes_ = {sta_chip_mode, ap_chip_mode};
1138 }
1139}
1140
1141std::vector<IWifiChip::ChipIfaceCombination>
1142WifiChip::getCurrentModeIfaceCombinations() {
1143 if (!isValidModeId(current_mode_id_)) {
1144 LOG(ERROR) << "Chip not configured in a mode yet";
1145 return {};
1146 }
1147 for (const auto& mode : modes_) {
1148 if (mode.id == current_mode_id_) {
1149 return mode.availableCombinations;
1150 }
1151 }
1152 CHECK(0) << "Expected to find iface combinations for current mode!";
1153 return {};
1154}
1155
1156// Returns a map indexed by IfaceType with the number of ifaces currently
1157// created of the corresponding type.
1158std::map<IfaceType, size_t> WifiChip::getCurrentIfaceCombination() {
1159 std::map<IfaceType, size_t> iface_counts;
1160 iface_counts[IfaceType::AP] = ap_ifaces_.size();
1161 iface_counts[IfaceType::NAN] = nan_ifaces_.size();
1162 iface_counts[IfaceType::P2P] = p2p_ifaces_.size();
1163 iface_counts[IfaceType::STA] = sta_ifaces_.size();
1164 return iface_counts;
1165}
1166
1167// This expands the provided iface combinations to a more parseable
1168// form. Returns a vector of available combinations possible with the number
1169// of ifaces of each type in the combination.
1170// This method is a port of HalDeviceManager.expandIfaceCombos() from framework.
1171std::vector<std::map<IfaceType, size_t>> WifiChip::expandIfaceCombinations(
1172 const IWifiChip::ChipIfaceCombination& combination) {
1173 uint32_t num_expanded_combos = 1;
1174 for (const auto& limit : combination.limits) {
1175 for (uint32_t i = 0; i < limit.maxIfaces; i++) {
1176 num_expanded_combos *= limit.types.size();
1177 }
1178 }
1179
1180 // Allocate the vector of expanded combos and reset all iface counts to 0
1181 // in each combo.
1182 std::vector<std::map<IfaceType, size_t>> expanded_combos;
1183 expanded_combos.resize(num_expanded_combos);
1184 for (auto& expanded_combo : expanded_combos) {
1185 for (const auto type :
1186 {IfaceType::AP, IfaceType::NAN, IfaceType::P2P, IfaceType::STA}) {
1187 expanded_combo[type] = 0;
1188 }
1189 }
1190 uint32_t span = num_expanded_combos;
1191 for (const auto& limit : combination.limits) {
1192 for (uint32_t i = 0; i < limit.maxIfaces; i++) {
1193 span /= limit.types.size();
1194 for (uint32_t k = 0; k < num_expanded_combos; ++k) {
1195 const auto iface_type =
1196 limit.types[(k / span) % limit.types.size()];
1197 expanded_combos[k][iface_type]++;
1198 }
1199 }
1200 }
1201 return expanded_combos;
1202}
1203
1204bool WifiChip::canExpandedIfaceCombinationSupportIfaceOfType(
1205 const std::map<IfaceType, size_t>& combo, IfaceType requested_type) {
1206 const auto current_combo = getCurrentIfaceCombination();
1207
1208 // Check if we have space for 1 more iface of |type| in this combo
1209 for (const auto type :
1210 {IfaceType::AP, IfaceType::NAN, IfaceType::P2P, IfaceType::STA}) {
1211 size_t num_ifaces_needed = current_combo.at(type);
1212 if (type == requested_type) {
1213 num_ifaces_needed++;
1214 }
1215 size_t num_ifaces_allowed = combo.at(type);
1216 if (num_ifaces_needed > num_ifaces_allowed) {
1217 return false;
1218 }
1219 }
1220 return true;
1221}
1222
1223// This method does the following:
1224// a) Enumerate all possible iface combos by expanding the current
1225// ChipIfaceCombination.
1226// b) Check if the requested iface type can be added to the current mode.
1227bool WifiChip::canCurrentModeSupportIfaceOfType(IfaceType type) {
1228 if (!isValidModeId(current_mode_id_)) {
1229 LOG(ERROR) << "Chip not configured in a mode yet";
1230 return false;
1231 }
1232 const auto combinations = getCurrentModeIfaceCombinations();
1233 for (const auto& combination : combinations) {
1234 const auto expanded_combos = expandIfaceCombinations(combination);
1235 for (const auto& expanded_combo : expanded_combos) {
1236 if (canExpandedIfaceCombinationSupportIfaceOfType(expanded_combo,
1237 type)) {
1238 return true;
1239 }
1240 }
1241 }
1242 return false;
1243}
1244
1245bool WifiChip::isValidModeId(ChipModeId mode_id) {
1246 for (const auto& mode : modes_) {
1247 if (mode.id == mode_id) {
1248 return true;
1249 }
1250 }
1251 return false;
1252}
1253
Roshan Pius8e3c7ef2017-11-03 09:43:08 -07001254// Return "wlan0", if "wlan0" is not already in use, else return "wlan1".
1255// This is based on the assumption that we'll have a max of 2 concurrent
1256// AP/STA ifaces.
1257std::string WifiChip::allocateApOrStaIfaceName() {
1258 auto ap_iface = findUsingName(ap_ifaces_, getWlan0IfaceName());
1259 auto sta_iface = findUsingName(sta_ifaces_, getWlan0IfaceName());
1260 if (!ap_iface.get() && !sta_iface.get()) {
1261 return getWlan0IfaceName();
1262 }
1263 ap_iface = findUsingName(ap_ifaces_, getWlan1IfaceName());
1264 sta_iface = findUsingName(sta_ifaces_, getWlan1IfaceName());
1265 if (!ap_iface.get() && !sta_iface.get()) {
1266 return getWlan1IfaceName();
1267 }
1268 // This should never happen. We screwed up somewhere if it did.
1269 CHECK(0) << "wlan0 and wlan1 in use already!";
1270 return {};
1271}
1272
xshu5899e8e2018-01-09 15:36:03 -08001273bool WifiChip::writeRingbufferFilesInternal() {
1274 if (!removeOldFilesInternal()) {
1275 LOG(ERROR) << "Error occurred while deleting old tombstone files";
1276 return false;
1277 }
1278 // write ringbuffers to file
1279 for (const auto& item : ringbuffer_map_) {
1280 const Ringbuffer& cur_buffer = item.second;
1281 if (cur_buffer.getData().empty()) {
1282 continue;
1283 }
1284 const std::string file_path_raw =
1285 kTombstoneFolderPath + item.first + "XXXXXXXXXX";
1286 const int dump_fd = mkstemp(makeCharVec(file_path_raw).data());
1287 if (dump_fd == -1) {
1288 LOG(ERROR) << "create file failed: " << strerror(errno);
1289 return false;
1290 }
1291 unique_fd file_auto_closer(dump_fd);
1292 for (const auto& cur_block : cur_buffer.getData()) {
1293 if (write(dump_fd, cur_block.data(),
1294 sizeof(cur_block[0]) * cur_block.size()) == -1) {
1295 LOG(ERROR) << "Error writing to file " << strerror(errno);
1296 }
1297 }
1298 }
1299 return true;
1300}
1301
Roshan Pius79a99752016-10-04 13:03:58 -07001302} // namespace implementation
Etan Cohen6ce50902017-09-14 07:30:57 -07001303} // namespace V1_2
Roshan Pius3c4e8a32016-10-03 14:53:58 -07001304} // namespace wifi
1305} // namespace hardware
1306} // namespace android