288 lines
11 KiB
C++
288 lines
11 KiB
C++
/*
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* Copyright (C) 2022 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "wifi.h"
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#include <android-base/logging.h>
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#include "aidl_return_util.h"
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#include "aidl_sync_util.h"
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#include "wifi_status_util.h"
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namespace {
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// Starting Chip ID, will be assigned to primary chip
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static constexpr int32_t kPrimaryChipId = 0;
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} // namespace
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namespace aidl {
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namespace android {
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namespace hardware {
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namespace wifi {
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using aidl_return_util::validateAndCall;
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using aidl_return_util::validateAndCallWithLock;
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using aidl_sync_util::acquireGlobalLock;
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Wifi::Wifi(const std::shared_ptr<::android::wifi_system::InterfaceTool> iface_tool,
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const std::shared_ptr<legacy_hal::WifiLegacyHalFactory> legacy_hal_factory,
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const std::shared_ptr<mode_controller::WifiModeController> mode_controller,
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const std::shared_ptr<feature_flags::WifiFeatureFlags> feature_flags)
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: iface_tool_(iface_tool),
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legacy_hal_factory_(legacy_hal_factory),
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mode_controller_(mode_controller),
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feature_flags_(feature_flags),
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run_state_(RunState::STOPPED) {}
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bool Wifi::isValid() {
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// This object is always valid.
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return true;
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}
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ndk::ScopedAStatus Wifi::registerEventCallback(
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const std::shared_ptr<IWifiEventCallback>& in_callback) {
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return validateAndCall(this, WifiStatusCode::ERROR_UNKNOWN,
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&Wifi::registerEventCallbackInternal, in_callback);
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}
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ndk::ScopedAStatus Wifi::isStarted(bool* _aidl_return) {
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*_aidl_return = (run_state_ != RunState::STOPPED);
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return ndk::ScopedAStatus::ok();
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}
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ndk::ScopedAStatus Wifi::start() {
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return validateAndCall(this, WifiStatusCode::ERROR_UNKNOWN, &Wifi::startInternal);
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}
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ndk::ScopedAStatus Wifi::stop() {
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return validateAndCallWithLock(this, WifiStatusCode::ERROR_UNKNOWN, &Wifi::stopInternal);
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}
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ndk::ScopedAStatus Wifi::getChipIds(std::vector<int32_t>* _aidl_return) {
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return validateAndCall(this, WifiStatusCode::ERROR_UNKNOWN, &Wifi::getChipIdsInternal,
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_aidl_return);
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}
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ndk::ScopedAStatus Wifi::getChip(int32_t in_chipId, std::shared_ptr<IWifiChip>* _aidl_return) {
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return validateAndCall(this, WifiStatusCode::ERROR_UNKNOWN, &Wifi::getChipInternal,
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_aidl_return, in_chipId);
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}
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binder_status_t Wifi::dump(int fd, const char** args, uint32_t numArgs) {
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const auto lock = acquireGlobalLock();
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LOG(INFO) << "-----------Debug was called----------------";
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if (chips_.size() == 0) {
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LOG(INFO) << "No chips to display.";
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return STATUS_OK;
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}
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for (std::shared_ptr<WifiChip> chip : chips_) {
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if (!chip.get()) continue;
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chip->dump(fd, args, numArgs);
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}
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return STATUS_OK;
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}
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ndk::ScopedAStatus Wifi::registerEventCallbackInternal(
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const std::shared_ptr<IWifiEventCallback>& event_callback) {
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if (!event_cb_handler_.addCallback(event_callback)) {
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return createWifiStatus(WifiStatusCode::ERROR_UNKNOWN);
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}
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return ndk::ScopedAStatus::ok();
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}
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ndk::ScopedAStatus Wifi::startInternal() {
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if (run_state_ == RunState::STARTED) {
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return ndk::ScopedAStatus::ok();
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} else if (run_state_ == RunState::STOPPING) {
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return createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE, "HAL is stopping");
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}
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ndk::ScopedAStatus wifi_status = initializeModeControllerAndLegacyHal();
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if (wifi_status.isOk()) {
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// Register the callback for subsystem restart
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const auto& on_subsystem_restart_callback = [this](const std::string& error) {
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ndk::ScopedAStatus wifi_status = createWifiStatus(WifiStatusCode::ERROR_UNKNOWN, error);
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for (const auto& callback : event_cb_handler_.getCallbacks()) {
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LOG(INFO) << "Attempting to invoke onSubsystemRestart "
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"callback";
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WifiStatusCode errorCode =
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static_cast<WifiStatusCode>(wifi_status.getServiceSpecificError());
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if (!callback->onSubsystemRestart(errorCode).isOk()) {
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LOG(ERROR) << "Failed to invoke onSubsystemRestart callback";
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} else {
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LOG(INFO) << "Succeeded to invoke onSubsystemRestart "
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"callback";
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}
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}
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};
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// Create the chip instance once the HAL is started.
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int32_t chipId = kPrimaryChipId;
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for (auto& hal : legacy_hals_) {
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chips_.push_back(
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WifiChip::create(chipId, chipId == kPrimaryChipId, hal, mode_controller_,
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std::make_shared<iface_util::WifiIfaceUtil>(iface_tool_, hal),
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feature_flags_, on_subsystem_restart_callback, false));
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chipId++;
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}
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run_state_ = RunState::STARTED;
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for (const auto& callback : event_cb_handler_.getCallbacks()) {
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if (!callback->onStart().isOk()) {
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LOG(ERROR) << "Failed to invoke onStart callback";
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};
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}
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LOG(INFO) << "Wifi HAL started";
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} else {
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for (const auto& callback : event_cb_handler_.getCallbacks()) {
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WifiStatusCode errorCode =
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static_cast<WifiStatusCode>(wifi_status.getServiceSpecificError());
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if (!callback->onFailure(errorCode).isOk()) {
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LOG(ERROR) << "Failed to invoke onFailure callback";
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}
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}
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LOG(ERROR) << "Wifi HAL start failed";
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// Clear the event callback objects since the HAL start failed.
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event_cb_handler_.invalidate();
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}
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return wifi_status;
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}
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ndk::ScopedAStatus Wifi::stopInternal(
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/* NONNULL */ std::unique_lock<std::recursive_mutex>* lock) {
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if (run_state_ == RunState::STOPPED) {
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return ndk::ScopedAStatus::ok();
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} else if (run_state_ == RunState::STOPPING) {
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return createWifiStatus(WifiStatusCode::ERROR_NOT_AVAILABLE, "HAL is stopping");
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}
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// Clear the chip object and its child objects since the HAL is now
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// stopped.
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for (auto& chip : chips_) {
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if (chip.get()) {
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chip->invalidate();
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chip.reset();
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}
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}
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chips_.clear();
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ndk::ScopedAStatus wifi_status = stopLegacyHalAndDeinitializeModeController(lock);
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if (wifi_status.isOk()) {
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for (const auto& callback : event_cb_handler_.getCallbacks()) {
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if (!callback->onStop().isOk()) {
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LOG(ERROR) << "Failed to invoke onStop callback";
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};
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}
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LOG(INFO) << "Wifi HAL stopped";
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} else {
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for (const auto& callback : event_cb_handler_.getCallbacks()) {
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WifiStatusCode errorCode =
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static_cast<WifiStatusCode>(wifi_status.getServiceSpecificError());
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if (!callback->onFailure(errorCode).isOk()) {
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LOG(ERROR) << "Failed to invoke onFailure callback";
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}
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}
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LOG(ERROR) << "Wifi HAL stop failed";
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}
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// Clear the event callback objects since the HAL is now stopped.
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event_cb_handler_.invalidate();
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return wifi_status;
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}
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std::pair<std::vector<int32_t>, ndk::ScopedAStatus> Wifi::getChipIdsInternal() {
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std::vector<int32_t> chip_ids;
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for (auto& chip : chips_) {
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int32_t chip_id = getChipIdFromWifiChip(chip);
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if (chip_id != INT32_MAX) chip_ids.emplace_back(chip_id);
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}
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return {std::move(chip_ids), ndk::ScopedAStatus::ok()};
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}
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std::pair<std::shared_ptr<IWifiChip>, ndk::ScopedAStatus> Wifi::getChipInternal(int32_t chip_id) {
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for (auto& chip : chips_) {
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int32_t cand_id = getChipIdFromWifiChip(chip);
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if ((cand_id != INT32_MAX) && (cand_id == chip_id)) return {chip, ndk::ScopedAStatus::ok()};
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}
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return {nullptr, createWifiStatus(WifiStatusCode::ERROR_INVALID_ARGS)};
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}
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ndk::ScopedAStatus Wifi::initializeModeControllerAndLegacyHal() {
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if (!mode_controller_->initialize()) {
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LOG(ERROR) << "Failed to initialize firmware mode controller";
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return createWifiStatus(WifiStatusCode::ERROR_UNKNOWN);
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}
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legacy_hals_ = legacy_hal_factory_->getHals();
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if (legacy_hals_.empty()) return createWifiStatus(WifiStatusCode::ERROR_UNKNOWN);
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int index = 0; // for failure log
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for (auto& hal : legacy_hals_) {
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legacy_hal::wifi_error legacy_status = hal->initialize();
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if (legacy_status != legacy_hal::WIFI_SUCCESS) {
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// Currently WifiLegacyHal::initialize does not allocate extra mem,
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// only initializes the function table. If this changes, need to
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// implement WifiLegacyHal::deinitialize and deinitalize the
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// HALs already initialized
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LOG(ERROR) << "Failed to initialize legacy HAL index: " << index
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<< " error: " << legacyErrorToString(legacy_status);
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return createWifiStatusFromLegacyError(legacy_status);
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}
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index++;
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}
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return ndk::ScopedAStatus::ok();
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}
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ndk::ScopedAStatus Wifi::stopLegacyHalAndDeinitializeModeController(
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/* NONNULL */ std::unique_lock<std::recursive_mutex>* lock) {
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legacy_hal::wifi_error legacy_status = legacy_hal::WIFI_SUCCESS;
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int index = 0;
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run_state_ = RunState::STOPPING;
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for (auto& hal : legacy_hals_) {
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legacy_hal::wifi_error tmp = hal->stop(lock, [&]() {});
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if (tmp != legacy_hal::WIFI_SUCCESS) {
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LOG(ERROR) << "Failed to stop legacy HAL index: " << index
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<< " error: " << legacyErrorToString(legacy_status);
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legacy_status = tmp;
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}
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index++;
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}
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run_state_ = RunState::STOPPED;
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if (legacy_status != legacy_hal::WIFI_SUCCESS) {
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LOG(ERROR) << "One or more legacy HALs failed to stop";
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return createWifiStatusFromLegacyError(legacy_status);
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}
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if (!mode_controller_->deinitialize()) {
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LOG(ERROR) << "Failed to deinitialize firmware mode controller";
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return createWifiStatus(WifiStatusCode::ERROR_UNKNOWN);
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}
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return ndk::ScopedAStatus::ok();
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}
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int32_t Wifi::getChipIdFromWifiChip(std::shared_ptr<WifiChip>& chip) {
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int32_t chip_id = INT32_MAX;
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if (chip.get()) {
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ndk::ScopedAStatus status = chip->getId(&chip_id);
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if (!status.isOk()) {
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// Reset value if operation failed.
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chip_id = INT32_MAX;
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}
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}
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return chip_id;
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}
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} // namespace wifi
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} // namespace hardware
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} // namespace android
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} // namespace aidl
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