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Roshan Piusaabe5752016-09-29 09:03:59 -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
17#include <array>
18
Roshan Piusaabe5752016-09-29 09:03:59 -070019#include <android-base/logging.h>
20#include <cutils/properties.h>
Roshan Pius908a69a2016-10-03 13:33:23 -070021#include <wifi_system/interface_tool.h>
Roshan Piusaabe5752016-09-29 09:03:59 -070022
Roshan Pius955542e2016-10-28 09:42:44 -070023#include "wifi_legacy_hal.h"
24
25namespace android {
26namespace hardware {
27namespace wifi {
28namespace V1_0 {
29namespace implementation {
30namespace legacy_hal {
Roshan Pius76ff3022016-10-28 10:33:34 -070031// Constants ported over from the legacy HAL calling code
32// (com_android_server_wifi_WifiNative.cpp). This will all be thrown
33// away when this shim layer is replaced by the real vendor
34// implementation.
Roshan Pius511cc492016-10-28 09:54:26 -070035static constexpr uint32_t kMaxVersionStringLength = 256;
Roshan Pius76ff3022016-10-28 10:33:34 -070036static constexpr uint32_t kMaxCachedGscanResults = 64;
37static constexpr uint32_t kMaxGscanFrequenciesForBand = 64;
Roshan Pius7cece412016-10-28 10:38:21 -070038static constexpr uint32_t kLinkLayerStatsDataMpduSizeThreshold = 128;
Roshan Pius8714a3e2016-10-28 10:43:51 -070039static constexpr uint32_t kMaxWakeReasonStatsArraySize = 32;
40static constexpr uint32_t kMaxRingBuffers = 10;
Roshan Pius511cc492016-10-28 09:54:26 -070041
Roshan Piusaabe5752016-09-29 09:03:59 -070042// Legacy HAL functions accept "C" style function pointers, so use global
43// functions to pass to the legacy HAL function and store the corresponding
44// std::function methods to be invoked.
45// Callback to be invoked once |stop| is complete.
46std::function<void(wifi_handle handle)> on_stop_complete_internal_callback;
47void onStopComplete(wifi_handle handle) {
48 if (on_stop_complete_internal_callback) {
49 on_stop_complete_internal_callback(handle);
50 }
51}
Roshan Piuscdb77f32016-10-03 14:09:57 -070052
53// Callback to be invoked for driver dump.
54std::function<void(char*, int)> on_driver_memory_dump_internal_callback;
55void onDriverMemoryDump(char* buffer, int buffer_size) {
56 if (on_driver_memory_dump_internal_callback) {
57 on_driver_memory_dump_internal_callback(buffer, buffer_size);
58 }
59}
60
61// Callback to be invoked for firmware dump.
62std::function<void(char*, int)> on_firmware_memory_dump_internal_callback;
63void onFirmwareMemoryDump(char* buffer, int buffer_size) {
64 if (on_firmware_memory_dump_internal_callback) {
65 on_firmware_memory_dump_internal_callback(buffer, buffer_size);
66 }
67}
Roshan Pius76ff3022016-10-28 10:33:34 -070068
69// Callback to be invoked for Gscan events.
70std::function<void(wifi_request_id, wifi_scan_event)>
71 on_gscan_event_internal_callback;
72void onGscanEvent(wifi_request_id id, wifi_scan_event event) {
73 if (on_gscan_event_internal_callback) {
74 on_gscan_event_internal_callback(id, event);
75 }
76}
77
78// Callback to be invoked for Gscan full results.
79std::function<void(wifi_request_id, wifi_scan_result*, uint32_t)>
80 on_gscan_full_result_internal_callback;
81void onGscanFullResult(wifi_request_id id,
82 wifi_scan_result* result,
83 uint32_t buckets_scanned) {
84 if (on_gscan_full_result_internal_callback) {
85 on_gscan_full_result_internal_callback(id, result, buckets_scanned);
86 }
87}
88
Roshan Pius7cece412016-10-28 10:38:21 -070089// Callback to be invoked for link layer stats results.
90std::function<void((wifi_request_id, wifi_iface_stat*, int, wifi_radio_stat*))>
91 on_link_layer_stats_result_internal_callback;
92void onLinkLayerStatsDataResult(wifi_request_id id,
93 wifi_iface_stat* iface_stat,
94 int num_radios,
95 wifi_radio_stat* radio_stat) {
96 if (on_link_layer_stats_result_internal_callback) {
97 on_link_layer_stats_result_internal_callback(
98 id, iface_stat, num_radios, radio_stat);
99 }
100}
101
Roshan Pius8714a3e2016-10-28 10:43:51 -0700102// Callback to be invoked for ring buffer data indication.
103std::function<void(char*, char*, int, wifi_ring_buffer_status*)>
104 on_ring_buffer_data_internal_callback;
105void onRingBufferData(char* ring_name,
106 char* buffer,
107 int buffer_size,
108 wifi_ring_buffer_status* status) {
109 if (on_ring_buffer_data_internal_callback) {
110 on_ring_buffer_data_internal_callback(
111 ring_name, buffer, buffer_size, status);
112 }
113}
114
Roshan Piusd8e915a2016-10-28 11:23:11 -0700115// Callback to be invoked for rtt results results.
116std::function<void(
117 wifi_request_id, unsigned num_results, wifi_rtt_result* rtt_results[])>
118 on_rtt_results_internal_callback;
119void onRttResults(wifi_request_id id,
120 unsigned num_results,
121 wifi_rtt_result* rtt_results[]) {
122 if (on_rtt_results_internal_callback) {
123 on_rtt_results_internal_callback(id, num_results, rtt_results);
124 }
125}
126
Roshan Pius955542e2016-10-28 09:42:44 -0700127// End of the free-standing "C" style callbacks.
Roshan Piusaabe5752016-09-29 09:03:59 -0700128
Roshan Piusaabe5752016-09-29 09:03:59 -0700129WifiLegacyHal::WifiLegacyHal()
130 : global_handle_(nullptr),
131 wlan_interface_handle_(nullptr),
Roshan Pius908a69a2016-10-03 13:33:23 -0700132 awaiting_event_loop_termination_(false) {}
Roshan Piusaabe5752016-09-29 09:03:59 -0700133
134wifi_error WifiLegacyHal::start() {
135 // Ensure that we're starting in a good state.
136 CHECK(!global_handle_ && !wlan_interface_handle_ &&
137 !awaiting_event_loop_termination_);
138
Roshan Pius908a69a2016-10-03 13:33:23 -0700139 android::wifi_system::InterfaceTool if_tool;
Roshan Pius955542e2016-10-28 09:42:44 -0700140 // TODO: Add back the HAL Tool if we need to. All we need from the HAL tool
141 // for now is this function call which we can directly call.
142 wifi_error status = init_wifi_vendor_hal_func_table(&global_func_table_);
143 if (status != WIFI_SUCCESS) {
Roshan Pius908a69a2016-10-03 13:33:23 -0700144 LOG(ERROR) << "Failed to initialize legacy hal function table";
145 return WIFI_ERROR_UNKNOWN;
146 }
147 if (!if_tool.SetWifiUpState(true)) {
148 LOG(ERROR) << "Failed to set WiFi interface up";
149 return WIFI_ERROR_UNKNOWN;
150 }
151
Roshan Piusaabe5752016-09-29 09:03:59 -0700152 LOG(INFO) << "Starting legacy HAL";
Roshan Pius955542e2016-10-28 09:42:44 -0700153 status = global_func_table_.wifi_initialize(&global_handle_);
Roshan Piusaabe5752016-09-29 09:03:59 -0700154 if (status != WIFI_SUCCESS || !global_handle_) {
155 LOG(ERROR) << "Failed to retrieve global handle";
156 return status;
157 }
158 event_loop_thread_ = std::thread(&WifiLegacyHal::runEventLoop, this);
159 status = retrieveWlanInterfaceHandle();
160 if (status != WIFI_SUCCESS || !wlan_interface_handle_) {
161 LOG(ERROR) << "Failed to retrieve wlan interface handle";
162 return status;
163 }
164 LOG(VERBOSE) << "Legacy HAL start complete";
165 return WIFI_SUCCESS;
166}
167
168wifi_error WifiLegacyHal::stop(
169 const std::function<void()>& on_stop_complete_user_callback) {
170 LOG(INFO) << "Stopping legacy HAL";
171 on_stop_complete_internal_callback = [&](wifi_handle handle) {
172 CHECK_EQ(global_handle_, handle) << "Handle mismatch";
173 on_stop_complete_user_callback();
Roshan Pius511cc492016-10-28 09:54:26 -0700174 // Invalidate all the internal pointers now that the HAL is
175 // stopped.
176 invalidate();
Roshan Piusaabe5752016-09-29 09:03:59 -0700177 };
178 awaiting_event_loop_termination_ = true;
179 global_func_table_.wifi_cleanup(global_handle_, onStopComplete);
180 LOG(VERBOSE) << "Legacy HAL stop initiated";
181 return WIFI_SUCCESS;
182}
183
Roshan Piusab5c4712016-10-06 14:37:15 -0700184std::string WifiLegacyHal::getApIfaceName() {
185 // Fake name. This interface does not exist in legacy HAL
186 // API's.
187 return "ap0";
188}
189
190std::string WifiLegacyHal::getNanIfaceName() {
191 // Fake name. This interface does not exist in legacy HAL
192 // API's.
193 return "nan0";
194}
195
196std::string WifiLegacyHal::getP2pIfaceName() {
197 std::array<char, PROPERTY_VALUE_MAX> buffer;
198 property_get("wifi.direct.interface", buffer.data(), "p2p0");
199 return buffer.data();
200}
201
202std::string WifiLegacyHal::getStaIfaceName() {
203 std::array<char, PROPERTY_VALUE_MAX> buffer;
204 property_get("wifi.interface", buffer.data(), "wlan0");
205 return buffer.data();
206}
207
208std::pair<wifi_error, std::string> WifiLegacyHal::getDriverVersion() {
Roshan Pius4b26c832016-10-03 12:49:58 -0700209 std::array<char, kMaxVersionStringLength> buffer;
210 buffer.fill(0);
211 wifi_error status = global_func_table_.wifi_get_driver_version(
212 wlan_interface_handle_, buffer.data(), buffer.size());
Roshan Pius0a47c182016-10-28 10:23:00 -0700213 return {status, buffer.data()};
Roshan Pius4b26c832016-10-03 12:49:58 -0700214}
215
Roshan Piusab5c4712016-10-06 14:37:15 -0700216std::pair<wifi_error, std::string> WifiLegacyHal::getFirmwareVersion() {
Roshan Pius4b26c832016-10-03 12:49:58 -0700217 std::array<char, kMaxVersionStringLength> buffer;
218 buffer.fill(0);
219 wifi_error status = global_func_table_.wifi_get_firmware_version(
220 wlan_interface_handle_, buffer.data(), buffer.size());
Roshan Pius0a47c182016-10-28 10:23:00 -0700221 return {status, buffer.data()};
Roshan Pius4b26c832016-10-03 12:49:58 -0700222}
223
Roshan Pius3c868522016-10-27 12:43:49 -0700224std::pair<wifi_error, std::vector<uint8_t>>
Roshan Piusab5c4712016-10-06 14:37:15 -0700225WifiLegacyHal::requestDriverMemoryDump() {
Roshan Pius3c868522016-10-27 12:43:49 -0700226 std::vector<uint8_t> driver_dump;
Roshan Piuscdb77f32016-10-03 14:09:57 -0700227 on_driver_memory_dump_internal_callback = [&driver_dump](char* buffer,
228 int buffer_size) {
Roshan Pius3c868522016-10-27 12:43:49 -0700229 driver_dump.insert(driver_dump.end(),
230 reinterpret_cast<uint8_t*>(buffer),
231 reinterpret_cast<uint8_t*>(buffer) + buffer_size);
Roshan Piuscdb77f32016-10-03 14:09:57 -0700232 };
233 wifi_error status = global_func_table_.wifi_get_driver_memory_dump(
234 wlan_interface_handle_, {onDriverMemoryDump});
235 on_driver_memory_dump_internal_callback = nullptr;
Roshan Pius0a47c182016-10-28 10:23:00 -0700236 return {status, std::move(driver_dump)};
Roshan Piuscdb77f32016-10-03 14:09:57 -0700237}
238
Roshan Pius3c868522016-10-27 12:43:49 -0700239std::pair<wifi_error, std::vector<uint8_t>>
Roshan Piusab5c4712016-10-06 14:37:15 -0700240WifiLegacyHal::requestFirmwareMemoryDump() {
Roshan Pius3c868522016-10-27 12:43:49 -0700241 std::vector<uint8_t> firmware_dump;
Roshan Piuscdb77f32016-10-03 14:09:57 -0700242 on_firmware_memory_dump_internal_callback = [&firmware_dump](
243 char* buffer, int buffer_size) {
Roshan Pius3c868522016-10-27 12:43:49 -0700244 firmware_dump.insert(firmware_dump.end(),
245 reinterpret_cast<uint8_t*>(buffer),
246 reinterpret_cast<uint8_t*>(buffer) + buffer_size);
Roshan Piuscdb77f32016-10-03 14:09:57 -0700247 };
248 wifi_error status = global_func_table_.wifi_get_firmware_memory_dump(
249 wlan_interface_handle_, {onFirmwareMemoryDump});
250 on_firmware_memory_dump_internal_callback = nullptr;
Roshan Pius0a47c182016-10-28 10:23:00 -0700251 return {status, std::move(firmware_dump)};
252}
253
254std::pair<wifi_error, uint32_t> WifiLegacyHal::getSupportedFeatureSet() {
255 feature_set set;
256 static_assert(sizeof(set) == sizeof(uint32_t),
257 "Some features can not be represented in output");
258 wifi_error status = global_func_table_.wifi_get_supported_feature_set(
259 wlan_interface_handle_, &set);
260 return {status, static_cast<uint32_t>(set)};
261}
262
263std::pair<wifi_error, PacketFilterCapabilities>
264WifiLegacyHal::getPacketFilterCapabilities() {
265 PacketFilterCapabilities caps;
266 wifi_error status = global_func_table_.wifi_get_packet_filter_capabilities(
267 wlan_interface_handle_, &caps.version, &caps.max_len);
268 return {status, caps};
269}
270
271wifi_error WifiLegacyHal::setPacketFilter(const std::vector<uint8_t>& program) {
272 return global_func_table_.wifi_set_packet_filter(
273 wlan_interface_handle_, program.data(), program.size());
Roshan Piuscdb77f32016-10-03 14:09:57 -0700274}
275
Roshan Pius76ff3022016-10-28 10:33:34 -0700276std::pair<wifi_error, wifi_gscan_capabilities>
277WifiLegacyHal::getGscanCapabilities() {
278 wifi_gscan_capabilities caps;
279 wifi_error status = global_func_table_.wifi_get_gscan_capabilities(
280 wlan_interface_handle_, &caps);
281 return {status, caps};
282}
283
284wifi_error WifiLegacyHal::startGscan(
285 wifi_request_id id,
286 const wifi_scan_cmd_params& params,
287 const std::function<void(wifi_request_id)>& on_failure_user_callback,
288 const on_gscan_results_callback& on_results_user_callback,
289 const on_gscan_full_result_callback& on_full_result_user_callback) {
290 // If there is already an ongoing background scan, reject new scan requests.
291 if (on_gscan_event_internal_callback ||
292 on_gscan_full_result_internal_callback) {
293 return WIFI_ERROR_NOT_AVAILABLE;
294 }
295
296 // This callback will be used to either trigger |on_results_user_callback| or
297 // |on_failure_user_callback|.
298 on_gscan_event_internal_callback =
299 [on_failure_user_callback, on_results_user_callback, this](
300 wifi_request_id id, wifi_scan_event event) {
301 switch (event) {
302 case WIFI_SCAN_RESULTS_AVAILABLE:
303 case WIFI_SCAN_THRESHOLD_NUM_SCANS:
304 case WIFI_SCAN_THRESHOLD_PERCENT: {
305 wifi_error status;
306 std::vector<wifi_cached_scan_results> cached_scan_results;
307 std::tie(status, cached_scan_results) = getGscanCachedResults();
308 if (status == WIFI_SUCCESS) {
309 on_results_user_callback(id, cached_scan_results);
310 return;
311 }
312 }
313 // Fall through if failed. Failure to retrieve cached scan results
314 // should trigger a background scan failure.
315 case WIFI_SCAN_FAILED:
316 on_failure_user_callback(id);
317 on_gscan_event_internal_callback = nullptr;
318 on_gscan_full_result_internal_callback = nullptr;
319 return;
320 }
321 LOG(FATAL) << "Unexpected gscan event received: " << event;
322 };
323
324 on_gscan_full_result_internal_callback = [on_full_result_user_callback](
325 wifi_request_id id, wifi_scan_result* result, uint32_t buckets_scanned) {
326 if (result) {
327 on_full_result_user_callback(id, result, buckets_scanned);
328 }
329 };
330
331 wifi_scan_result_handler handler = {onGscanFullResult, onGscanEvent};
332 wifi_error status = global_func_table_.wifi_start_gscan(
333 id, wlan_interface_handle_, params, handler);
334 if (status != WIFI_SUCCESS) {
335 on_gscan_event_internal_callback = nullptr;
336 on_gscan_full_result_internal_callback = nullptr;
337 }
338 return status;
339}
340
341wifi_error WifiLegacyHal::stopGscan(wifi_request_id id) {
342 // If there is no an ongoing background scan, reject stop requests.
343 // TODO(b/32337212): This needs to be handled by the HIDL object because we
344 // need to return the NOT_STARTED error code.
345 if (!on_gscan_event_internal_callback &&
346 !on_gscan_full_result_internal_callback) {
347 return WIFI_ERROR_NOT_AVAILABLE;
348 }
349 wifi_error status =
350 global_func_table_.wifi_stop_gscan(id, wlan_interface_handle_);
351 // If the request Id is wrong, don't stop the ongoing background scan. Any
352 // other error should be treated as the end of background scan.
353 if (status != WIFI_ERROR_INVALID_REQUEST_ID) {
354 on_gscan_event_internal_callback = nullptr;
355 on_gscan_full_result_internal_callback = nullptr;
356 }
357 return status;
358}
359
360std::pair<wifi_error, std::vector<uint32_t>>
361WifiLegacyHal::getValidFrequenciesForGscan(wifi_band band) {
362 static_assert(sizeof(uint32_t) >= sizeof(wifi_channel),
363 "Wifi Channel cannot be represented in output");
364 std::vector<uint32_t> freqs;
365 freqs.resize(kMaxGscanFrequenciesForBand);
366 int32_t num_freqs = 0;
367 wifi_error status = global_func_table_.wifi_get_valid_channels(
368 wlan_interface_handle_,
369 band,
370 freqs.size(),
371 reinterpret_cast<wifi_channel*>(freqs.data()),
372 &num_freqs);
373 CHECK(num_freqs >= 0 &&
374 static_cast<uint32_t>(num_freqs) <= kMaxGscanFrequenciesForBand);
375 freqs.resize(num_freqs);
376 return {status, std::move(freqs)};
377}
378
Roshan Pius7cece412016-10-28 10:38:21 -0700379wifi_error WifiLegacyHal::enableLinkLayerStats(bool debug) {
380 wifi_link_layer_params params;
381 params.mpdu_size_threshold = kLinkLayerStatsDataMpduSizeThreshold;
382 params.aggressive_statistics_gathering = debug;
383 return global_func_table_.wifi_set_link_stats(wlan_interface_handle_, params);
384}
385
386wifi_error WifiLegacyHal::disableLinkLayerStats() {
387 // TODO: Do we care about these responses?
388 uint32_t clear_mask_rsp;
389 uint8_t stop_rsp;
390 return global_func_table_.wifi_clear_link_stats(
391 wlan_interface_handle_, 0xFFFFFFFF, &clear_mask_rsp, 1, &stop_rsp);
392}
393
394std::pair<wifi_error, LinkLayerStats> WifiLegacyHal::getLinkLayerStats() {
395 LinkLayerStats link_stats{};
396 LinkLayerStats* link_stats_ptr = &link_stats;
397
398 on_link_layer_stats_result_internal_callback = [&link_stats_ptr](
399 wifi_request_id /* id */,
400 wifi_iface_stat* iface_stats_ptr,
401 int num_radios,
402 wifi_radio_stat* radio_stats_ptr) {
403 if (iface_stats_ptr != nullptr) {
404 link_stats_ptr->iface = *iface_stats_ptr;
405 link_stats_ptr->iface.num_peers = 0;
406 } else {
407 LOG(ERROR) << "Invalid iface stats in link layer stats";
408 }
409 if (num_radios == 1 && radio_stats_ptr != nullptr) {
410 link_stats_ptr->radio = *radio_stats_ptr;
411 // Copy over the tx level array to the separate vector.
412 if (radio_stats_ptr->num_tx_levels > 0 &&
413 radio_stats_ptr->tx_time_per_levels != nullptr) {
414 link_stats_ptr->radio_tx_time_per_levels.assign(
415 radio_stats_ptr->tx_time_per_levels,
416 radio_stats_ptr->tx_time_per_levels +
417 radio_stats_ptr->num_tx_levels);
418 }
419 link_stats_ptr->radio.num_tx_levels = 0;
420 link_stats_ptr->radio.tx_time_per_levels = nullptr;
421 } else {
422 LOG(ERROR) << "Invalid radio stats in link layer stats";
423 }
424 };
425
426 wifi_error status = global_func_table_.wifi_get_link_stats(
427 0, wlan_interface_handle_, {onLinkLayerStatsDataResult});
428 on_link_layer_stats_result_internal_callback = nullptr;
429 return {status, link_stats};
430}
431
Roshan Pius8714a3e2016-10-28 10:43:51 -0700432std::pair<wifi_error, uint32_t> WifiLegacyHal::getLoggerSupportedFeatureSet() {
433 uint32_t supported_features;
434 wifi_error status = global_func_table_.wifi_get_logger_supported_feature_set(
435 wlan_interface_handle_, &supported_features);
436 return {status, supported_features};
437}
438
439wifi_error WifiLegacyHal::startPktFateMonitoring() {
440 return global_func_table_.wifi_start_pkt_fate_monitoring(
441 wlan_interface_handle_);
442}
443
444std::pair<wifi_error, std::vector<wifi_tx_report>>
445WifiLegacyHal::getTxPktFates() {
446 std::vector<wifi_tx_report> tx_pkt_fates;
447 tx_pkt_fates.resize(MAX_FATE_LOG_LEN);
448 size_t num_fates = 0;
449 wifi_error status =
450 global_func_table_.wifi_get_tx_pkt_fates(wlan_interface_handle_,
451 tx_pkt_fates.data(),
452 tx_pkt_fates.size(),
453 &num_fates);
454 CHECK(num_fates <= MAX_FATE_LOG_LEN);
455 tx_pkt_fates.resize(num_fates);
456 return {status, std::move(tx_pkt_fates)};
457}
458
459std::pair<wifi_error, std::vector<wifi_rx_report>>
460WifiLegacyHal::getRxPktFates() {
461 std::vector<wifi_rx_report> rx_pkt_fates;
462 rx_pkt_fates.resize(MAX_FATE_LOG_LEN);
463 size_t num_fates = 0;
464 wifi_error status =
465 global_func_table_.wifi_get_rx_pkt_fates(wlan_interface_handle_,
466 rx_pkt_fates.data(),
467 rx_pkt_fates.size(),
468 &num_fates);
469 CHECK(num_fates <= MAX_FATE_LOG_LEN);
470 rx_pkt_fates.resize(num_fates);
471 return {status, std::move(rx_pkt_fates)};
472}
473
474std::pair<wifi_error, WakeReasonStats> WifiLegacyHal::getWakeReasonStats() {
475 WakeReasonStats stats;
476 stats.cmd_event_wake_cnt.resize(kMaxWakeReasonStatsArraySize);
477 stats.driver_fw_local_wake_cnt.resize(kMaxWakeReasonStatsArraySize);
478
479 // This legacy struct needs separate memory to store the variable sized wake
480 // reason types.
481 stats.wake_reason_cnt.cmd_event_wake_cnt =
482 reinterpret_cast<int32_t*>(stats.cmd_event_wake_cnt.data());
483 stats.wake_reason_cnt.cmd_event_wake_cnt_sz = stats.cmd_event_wake_cnt.size();
484 stats.wake_reason_cnt.cmd_event_wake_cnt_used = 0;
485 stats.wake_reason_cnt.driver_fw_local_wake_cnt =
486 reinterpret_cast<int32_t*>(stats.driver_fw_local_wake_cnt.data());
487 stats.wake_reason_cnt.driver_fw_local_wake_cnt_sz =
488 stats.driver_fw_local_wake_cnt.size();
489 stats.wake_reason_cnt.driver_fw_local_wake_cnt_used = 0;
490
491 wifi_error status = global_func_table_.wifi_get_wake_reason_stats(
492 wlan_interface_handle_, &stats.wake_reason_cnt);
493
494 CHECK(stats.wake_reason_cnt.cmd_event_wake_cnt_used >= 0 &&
495 static_cast<uint32_t>(stats.wake_reason_cnt.cmd_event_wake_cnt_used) <=
496 kMaxWakeReasonStatsArraySize);
497 stats.cmd_event_wake_cnt.resize(
498 stats.wake_reason_cnt.cmd_event_wake_cnt_used);
499 stats.wake_reason_cnt.cmd_event_wake_cnt = nullptr;
500
501 CHECK(stats.wake_reason_cnt.driver_fw_local_wake_cnt_used >= 0 &&
502 static_cast<uint32_t>(
503 stats.wake_reason_cnt.driver_fw_local_wake_cnt_used) <=
504 kMaxWakeReasonStatsArraySize);
505 stats.driver_fw_local_wake_cnt.resize(
506 stats.wake_reason_cnt.driver_fw_local_wake_cnt_used);
507 stats.wake_reason_cnt.driver_fw_local_wake_cnt = nullptr;
508
509 return {status, stats};
510}
511
512wifi_error WifiLegacyHal::registerRingBufferCallbackHandler(
513 const on_ring_buffer_data_callback& on_user_data_callback) {
514 if (on_ring_buffer_data_internal_callback) {
515 return WIFI_ERROR_NOT_AVAILABLE;
516 }
517 on_ring_buffer_data_internal_callback = [on_user_data_callback](
518 char* ring_name,
519 char* buffer,
520 int buffer_size,
521 wifi_ring_buffer_status* status) {
522 if (status && buffer) {
523 std::vector<uint8_t> buffer_vector(
524 reinterpret_cast<uint8_t*>(buffer),
525 reinterpret_cast<uint8_t*>(buffer) + buffer_size);
526 on_user_data_callback(ring_name, buffer_vector, *status);
527 }
528 };
529 return global_func_table_.wifi_set_log_handler(
530 0, wlan_interface_handle_, {onRingBufferData});
531}
532
533std::pair<wifi_error, std::vector<wifi_ring_buffer_status>>
534WifiLegacyHal::getRingBuffersStatus() {
535 std::vector<wifi_ring_buffer_status> ring_buffers_status;
536 ring_buffers_status.resize(kMaxRingBuffers);
537 uint32_t num_rings = 0;
538 wifi_error status = global_func_table_.wifi_get_ring_buffers_status(
539 wlan_interface_handle_, &num_rings, ring_buffers_status.data());
540 CHECK(num_rings <= kMaxRingBuffers);
541 ring_buffers_status.resize(num_rings);
542 return {status, std::move(ring_buffers_status)};
543}
544
545wifi_error WifiLegacyHal::startRingBufferLogging(const std::string& ring_name,
546 uint32_t verbose_level,
547 uint32_t max_interval_sec,
548 uint32_t min_data_size) {
549 std::vector<char> ring_name_internal(ring_name.begin(), ring_name.end());
550 return global_func_table_.wifi_start_logging(wlan_interface_handle_,
551 verbose_level,
552 0,
553 max_interval_sec,
554 min_data_size,
555 ring_name_internal.data());
556}
557
558wifi_error WifiLegacyHal::getRingBufferData(const std::string& ring_name) {
559 std::vector<char> ring_name_internal(ring_name.begin(), ring_name.end());
560 return global_func_table_.wifi_get_ring_data(wlan_interface_handle_,
561 ring_name_internal.data());
562}
563
Roshan Piusd8e915a2016-10-28 11:23:11 -0700564wifi_error WifiLegacyHal::startRttRangeRequest(
565 wifi_request_id id,
566 const std::vector<wifi_rtt_config>& rtt_configs,
567 const on_rtt_results_callback& on_results_user_callback) {
568 if (on_rtt_results_internal_callback) {
569 return WIFI_ERROR_NOT_AVAILABLE;
570 }
571
572 on_rtt_results_internal_callback = [on_results_user_callback](
573 wifi_request_id id,
574 unsigned num_results,
575 wifi_rtt_result* rtt_results[]) {
576 if (num_results > 0 && !rtt_results) {
577 LOG(ERROR) << "Unexpected nullptr in RTT results";
578 return;
579 }
580 std::vector<const wifi_rtt_result*> rtt_results_vec;
581 std::copy_if(
582 rtt_results,
583 rtt_results + num_results,
584 back_inserter(rtt_results_vec),
585 [](wifi_rtt_result* rtt_result) { return rtt_result != nullptr; });
586 on_results_user_callback(id, rtt_results_vec);
587 };
588
589 std::vector<wifi_rtt_config> rtt_configs_internal(rtt_configs);
590 return global_func_table_.wifi_rtt_range_request(id,
591 wlan_interface_handle_,
592 rtt_configs.size(),
593 rtt_configs_internal.data(),
594 {onRttResults});
595}
596
597wifi_error WifiLegacyHal::cancelRttRangeRequest(
598 wifi_request_id id, const std::vector<std::array<uint8_t, 6>>& mac_addrs) {
599 if (!on_rtt_results_internal_callback) {
600 return WIFI_ERROR_NOT_AVAILABLE;
601 }
602 static_assert(sizeof(mac_addr) == sizeof(std::array<uint8_t, 6>),
603 "MAC address size mismatch");
604 // TODO: How do we handle partial cancels (i.e only a subset of enabled mac
605 // addressed are cancelled).
606 std::vector<std::array<uint8_t, 6>> mac_addrs_internal(mac_addrs);
607 wifi_error status = global_func_table_.wifi_rtt_range_cancel(
608 id,
609 wlan_interface_handle_,
610 mac_addrs.size(),
611 reinterpret_cast<mac_addr*>(mac_addrs_internal.data()));
612 // If the request Id is wrong, don't stop the ongoing range request. Any
613 // other error should be treated as the end of rtt ranging.
614 if (status != WIFI_ERROR_INVALID_REQUEST_ID) {
615 on_rtt_results_internal_callback = nullptr;
616 }
617 return status;
618}
619
620std::pair<wifi_error, wifi_rtt_capabilities>
621WifiLegacyHal::getRttCapabilities() {
622 wifi_rtt_capabilities rtt_caps;
623 wifi_error status = global_func_table_.wifi_get_rtt_capabilities(
624 wlan_interface_handle_, &rtt_caps);
625 return {status, rtt_caps};
626}
627
628std::pair<wifi_error, wifi_rtt_responder> WifiLegacyHal::getRttResponderInfo() {
629 wifi_rtt_responder rtt_responder;
630 wifi_error status = global_func_table_.wifi_rtt_get_responder_info(
631 wlan_interface_handle_, &rtt_responder);
632 return {status, rtt_responder};
633}
634
635wifi_error WifiLegacyHal::enableRttResponder(
636 wifi_request_id id,
637 const wifi_channel_info& channel_hint,
638 uint32_t max_duration_secs,
639 const wifi_rtt_responder& info) {
640 wifi_rtt_responder info_internal(info);
641 return global_func_table_.wifi_enable_responder(id,
642 wlan_interface_handle_,
643 channel_hint,
644 max_duration_secs,
645 &info_internal);
646}
647
648wifi_error WifiLegacyHal::disableRttResponder(wifi_request_id id) {
649 return global_func_table_.wifi_disable_responder(id, wlan_interface_handle_);
650}
651
652wifi_error WifiLegacyHal::setRttLci(wifi_request_id id,
653 const wifi_lci_information& info) {
654 wifi_lci_information info_internal(info);
655 return global_func_table_.wifi_set_lci(
656 id, wlan_interface_handle_, &info_internal);
657}
658
659wifi_error WifiLegacyHal::setRttLcr(wifi_request_id id,
660 const wifi_lcr_information& info) {
661 wifi_lcr_information info_internal(info);
662 return global_func_table_.wifi_set_lcr(
663 id, wlan_interface_handle_, &info_internal);
664}
665
Roshan Piusaabe5752016-09-29 09:03:59 -0700666wifi_error WifiLegacyHal::retrieveWlanInterfaceHandle() {
Roshan Piusab5c4712016-10-06 14:37:15 -0700667 const std::string& ifname_to_find = getStaIfaceName();
Roshan Piusaabe5752016-09-29 09:03:59 -0700668 wifi_interface_handle* iface_handles = nullptr;
669 int num_iface_handles = 0;
670 wifi_error status = global_func_table_.wifi_get_ifaces(
671 global_handle_, &num_iface_handles, &iface_handles);
672 if (status != WIFI_SUCCESS) {
Roshan Pius511cc492016-10-28 09:54:26 -0700673 LOG(ERROR) << "Failed to enumerate interface handles";
Roshan Piusaabe5752016-09-29 09:03:59 -0700674 return status;
675 }
676 for (int i = 0; i < num_iface_handles; ++i) {
677 std::array<char, IFNAMSIZ> current_ifname;
678 current_ifname.fill(0);
679 status = global_func_table_.wifi_get_iface_name(
680 iface_handles[i], current_ifname.data(), current_ifname.size());
681 if (status != WIFI_SUCCESS) {
Roshan Pius511cc492016-10-28 09:54:26 -0700682 LOG(WARNING) << "Failed to get interface handle name";
Roshan Piusaabe5752016-09-29 09:03:59 -0700683 continue;
684 }
685 if (ifname_to_find == current_ifname.data()) {
686 wlan_interface_handle_ = iface_handles[i];
687 return WIFI_SUCCESS;
688 }
689 }
690 return WIFI_ERROR_UNKNOWN;
691}
692
693void WifiLegacyHal::runEventLoop() {
694 LOG(VERBOSE) << "Starting legacy HAL event loop";
695 global_func_table_.wifi_event_loop(global_handle_);
696 if (!awaiting_event_loop_termination_) {
697 LOG(FATAL) << "Legacy HAL event loop terminated, but HAL was not stopping";
698 }
699 LOG(VERBOSE) << "Legacy HAL event loop terminated";
700 awaiting_event_loop_termination_ = false;
Roshan Pius908a69a2016-10-03 13:33:23 -0700701 android::wifi_system::InterfaceTool if_tool;
702 if_tool.SetWifiUpState(false);
Roshan Piusaabe5752016-09-29 09:03:59 -0700703}
704
Roshan Pius76ff3022016-10-28 10:33:34 -0700705std::pair<wifi_error, std::vector<wifi_cached_scan_results>>
706WifiLegacyHal::getGscanCachedResults() {
707 std::vector<wifi_cached_scan_results> cached_scan_results;
708 cached_scan_results.resize(kMaxCachedGscanResults);
709 int32_t num_results = 0;
710 wifi_error status = global_func_table_.wifi_get_cached_gscan_results(
711 wlan_interface_handle_,
712 true /* always flush */,
713 cached_scan_results.size(),
714 cached_scan_results.data(),
715 &num_results);
716 CHECK(num_results >= 0 &&
717 static_cast<uint32_t>(num_results) <= kMaxCachedGscanResults);
718 cached_scan_results.resize(num_results);
719 // Check for invalid IE lengths in these cached scan results and correct it.
720 for (auto& cached_scan_result : cached_scan_results) {
721 int num_scan_results = cached_scan_result.num_results;
722 for (int i = 0; i < num_scan_results; i++) {
723 auto& scan_result = cached_scan_result.results[i];
724 if (scan_result.ie_length > 0) {
725 LOG(ERROR) << "Cached scan result has non-zero IE length "
726 << scan_result.ie_length;
727 scan_result.ie_length = 0;
728 }
729 }
730 }
731 return {status, std::move(cached_scan_results)};
732}
733
Roshan Pius511cc492016-10-28 09:54:26 -0700734void WifiLegacyHal::invalidate() {
735 global_handle_ = nullptr;
736 wlan_interface_handle_ = nullptr;
737 on_stop_complete_internal_callback = nullptr;
738 on_driver_memory_dump_internal_callback = nullptr;
739 on_firmware_memory_dump_internal_callback = nullptr;
Roshan Pius76ff3022016-10-28 10:33:34 -0700740 on_gscan_event_internal_callback = nullptr;
741 on_gscan_full_result_internal_callback = nullptr;
Roshan Pius7cece412016-10-28 10:38:21 -0700742 on_link_layer_stats_result_internal_callback = nullptr;
Roshan Pius8714a3e2016-10-28 10:43:51 -0700743 on_ring_buffer_data_internal_callback = nullptr;
Roshan Piusd8e915a2016-10-28 11:23:11 -0700744 on_rtt_results_internal_callback = nullptr;
Roshan Pius511cc492016-10-28 09:54:26 -0700745}
Roshan Pius955542e2016-10-28 09:42:44 -0700746
747} // namespace legacy_hal
Roshan Piusaabe5752016-09-29 09:03:59 -0700748} // namespace implementation
749} // namespace V1_0
750} // namespace wifi
751} // namespace hardware
752} // namespace android