0db068b63c
Add capability for vibrator HAL to detect whether the device is face-up and adjust/scale haptic alerts to avoid loud and startling buzzing when there is no case on the device. Added global compile-time disable that can be set in the environment. Bug: 198239103 Test: Verified tests and functionality Change-Id: I6b2355acb7fa5e0323b8eca6327bb19ac42a2c56 Signed-off-by: Chris Paulo <chrispaulo@google.com>
216 lines
7.7 KiB
C++
216 lines
7.7 KiB
C++
/*
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* Copyright 2022 Google LLC. All Rights Reserved.
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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 "CapoDetector.h"
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#include <google/protobuf/message.h>
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#include <google/protobuf/io/coded_stream.h>
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#include <google/protobuf/io/zero_copy_stream_impl.h>
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#include <log/log.h>
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#ifdef LOG_TAG
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#undef LOG_TAG
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#define LOG_TAG "CapoDetector"
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#endif
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namespace android {
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namespace chre {
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namespace { // anonymous namespace for file-local definitions
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static capo::ConfigureDetector_ConfigData config_data = capo::ConfigureDetector_ConfigData();
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static capo::ConfigureDetector msg = capo::ConfigureDetector();
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/**
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* Called when onConnected() to send NanoappList request.
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*/
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void requestNanoappList(SocketClient &client) {
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flatbuffers::FlatBufferBuilder builder;
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HostProtocolHost::encodeNanoappListRequest(builder);
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if (!client.sendMessage(builder.GetBufferPointer(), builder.GetSize())) {
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ALOGE("Failed to send NanoappList request");
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}
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}
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} // namespace
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/**
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* Called when initializing connection with CHRE socket.
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*/
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sp<CapoDetector> CapoDetector::start() {
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sp<CapoDetector> listener = new CapoDetector();
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if (!listener->connectInBackground(kChreSocketName, listener)) {
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ALOGE("Couldn't connect to CHRE socket");
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return nullptr;
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}
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ALOGI("%s connect to CHRE socket.", __func__);
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return listener;
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}
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/**
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* Called when the socket is successfully (re-)connected.
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* Reset the position and try to send NanoappList request.
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*/
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void CapoDetector::onConnected() {
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flatbuffers::FlatBufferBuilder builder;
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// Reset the last position type.
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last_position_type_ = capo::PositionType::UNKNOWN;
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requestNanoappList(*this);
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}
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/**
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* Called when we have failed to (re-)connect the socket after many attempts
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* and are giving up.
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*/
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void CapoDetector::onConnectionAborted() {
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ALOGE("%s, Capo Aborting Connection!", __func__);
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}
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/**
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* Invoked when the socket is disconnected, and this connection loss was not
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* the result of an explicit call to disconnect().
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* Reset the position while disconnecting.
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*/
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void CapoDetector::onDisconnected() {
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last_position_type_ = capo::PositionType::UNKNOWN;
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}
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/**
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* Decode unix socket msgs to CHRE messages, and call the appropriate
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* callback depending on the CHRE message.
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*/
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void CapoDetector::onMessageReceived(const void *data, size_t length) {
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if (!HostProtocolHost::decodeMessageFromChre(data, length, *this)) {
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ALOGE("Failed to decode message");
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}
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}
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/**
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* Listen for messages from capo nanoapp and handle the message.
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*/
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void CapoDetector::handleNanoappMessage(const fbs::NanoappMessageT &message) {
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ALOGI("%s, Id %" PRIu64 ", type %d, size %d", __func__, message.app_id, message.message_type,
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static_cast<int>(message.message.size()));
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// Exclude the message with unmatched nanoapp id.
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if (message.app_id != kCapoNanoappId)
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return;
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// Handle the message with message_type.
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switch (message.message_type) {
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case capo::MessageType::ACK_NOTIFICATION: {
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capo::AckNotification gd;
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gd.set_notification_type(static_cast<capo::NotificationType>(message.message[1]));
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ALOGD("%s, get notification event from capo nanoapp, type %d", __func__,
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gd.notification_type());
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break;
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}
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case capo::MessageType::POSITION_DETECTED: {
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capo::PositionDetected gd;
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gd.set_position_type(static_cast<capo::PositionType>(message.message[1]));
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ALOGD("%s, get position event from capo nanoapp, type %d", __func__,
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gd.position_type());
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// Callback to function while getting carried position event.
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if (callback_func_ != nullptr) {
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last_position_type_ = gd.position_type();
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ALOGD("%s, sent position type %d to callback function", __func__,
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last_position_type_);
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callback_func_(last_position_type_);
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}
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break;
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}
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default:
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ALOGE("%s, get invalid message, type: %" PRIu32 ", from capo nanoapp.", __func__,
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message.message_type);
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break;
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}
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}
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/**
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* Handle the response of a NanoappList request.
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* Ensure that capo nanoapp is running.
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*/
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void CapoDetector::handleNanoappListResponse(const fbs::NanoappListResponseT &response) {
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for (const std::unique_ptr<fbs::NanoappListEntryT> &nanoapp : response.nanoapps) {
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if (nanoapp->app_id == kCapoNanoappId) {
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if (nanoapp->enabled)
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enable();
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else
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ALOGE("Capo nanoapp not enabled");
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return;
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}
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}
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ALOGE("Capo nanoapp not found");
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}
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/**
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* Send enabling message to the nanoapp.
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*/
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void CapoDetector::enable() {
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// Create CHRE message with serialized message
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flatbuffers::FlatBufferBuilder builder, config_builder, force_builder;
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config_data.set_still_time_threshold_nanosecond(mCapoDetectorMDParameters.still_time_threshold_ns);
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config_data.set_window_width_nanosecond(mCapoDetectorMDParameters.window_width_ns);
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config_data.set_motion_confidence_threshold(mCapoDetectorMDParameters.motion_confidence_threshold);
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config_data.set_still_confidence_threshold(mCapoDetectorMDParameters.still_confidence_threshold);
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config_data.set_var_threshold(mCapoDetectorMDParameters.var_threshold);
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config_data.set_var_threshold_delta(mCapoDetectorMDParameters.var_threshold_delta);
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msg.set_allocated_config_data(&config_data);
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auto pb_size = msg.ByteSizeLong();
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auto pb_data = std::make_unique<uint8_t[]>(pb_size);
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if (!msg.SerializeToArray(pb_data.get(), pb_size)) {
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ALOGE("Failed to serialize message.");
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}
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ALOGI("Configuring CapoDetector");
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// Configure the detector from host-side
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android::chre::HostProtocolHost::encodeNanoappMessage(
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config_builder, getNanoppAppId(), capo::MessageType::CONFIGURE_DETECTOR, getHostEndPoint(),
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pb_data.get(), pb_size);
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ALOGI("Sending capo config message to Nanoapp, %" PRIu32 " bytes", config_builder.GetSize());
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if (!sendMessage(config_builder.GetBufferPointer(), config_builder.GetSize())) {
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ALOGE("Failed to send config event for capo nanoapp");
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}
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ALOGI("Enabling CapoDetector");
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android::chre::HostProtocolHost::encodeNanoappMessage(
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builder, getNanoppAppId(), capo::MessageType::ENABLE_DETECTOR, getHostEndPoint(),
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/*messageData*/ nullptr, /*messageDataLenbuffer*/ 0);
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ALOGI("Sending enable message to Nanoapp, %" PRIu32 " bytes", builder.GetSize());
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if (!sendMessage(builder.GetBufferPointer(), builder.GetSize())) {
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ALOGE("Failed to send enable event for capo nanoapp");
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}
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ALOGI("Forcing CapoDetector to update state");
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// Force an updated state upon connection
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android::chre::HostProtocolHost::encodeNanoappMessage(
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force_builder, getNanoppAppId(), capo::MessageType::FORCE_UPDATE, getHostEndPoint(),
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/*messageData*/ nullptr, /*messageDataLenbuffer*/ 0);
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ALOGI("Sending force-update message to Nanoapp, %" PRIu32 " bytes", force_builder.GetSize());
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if (!sendMessage(force_builder.GetBufferPointer(), force_builder.GetSize())) {
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ALOGE("Failed to send force-update event for capo nanoapp");
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}
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}
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} // namespace chre
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} // namespace android
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