307 lines
10 KiB
C++
307 lines
10 KiB
C++
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/*
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* Copyright (C) 2020 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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#define LOG_TAG "android.hardware.usb.gadget.aidl-service"
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#include "UsbGadget.h"
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#include <dirent.h>
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#include <fcntl.h>
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#include <stdio.h>
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#include <sys/inotify.h>
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#include <sys/mount.h>
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#include <sys/stat.h>
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#include <sys/types.h>
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#include <unistd.h>
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#include <aidl/android/frameworks/stats/IStats.h>
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namespace aidl {
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namespace android {
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namespace hardware {
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namespace usb {
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namespace gadget {
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string enabledPath;
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constexpr char kHsi2cPath[] = "/sys/devices/platform/10d50000.hsi2c";
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constexpr char kI2CPath[] = "/sys/devices/platform/10d50000.hsi2c/i2c-";
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constexpr char kAccessoryLimitCurrent[] = "i2c-max77759tcpc/usb_limit_accessory_current";
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constexpr char kAccessoryLimitCurrentEnable[] = "i2c-max77759tcpc/usb_limit_accessory_enable";
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UsbGadget::UsbGadget() : mGadgetIrqPath("") {
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}
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Status UsbGadget::getUsbGadgetIrqPath() {
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std::string irqs;
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size_t read_pos = 0;
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size_t found_pos = 0;
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if (!ReadFileToString(kProcInterruptsPath, &irqs)) {
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ALOGE("cannot read all interrupts");
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return Status::ERROR;
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}
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while (true) {
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found_pos = irqs.find_first_of("\n", read_pos);
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if (found_pos == std::string::npos) {
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ALOGI("the string of all interrupts is unexpected");
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return Status::ERROR;
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}
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std::string single_irq = irqs.substr(read_pos, found_pos - read_pos);
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if (single_irq.find("dwc3", 0) != std::string::npos) {
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unsigned int dwc3_irq_number;
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size_t dwc3_pos = single_irq.find_first_of(":");
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if (!ParseUint(single_irq.substr(0, dwc3_pos), &dwc3_irq_number)) {
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ALOGI("unknown IRQ strings");
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return Status::ERROR;
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}
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mGadgetIrqPath = kProcIrqPath + single_irq.substr(0, dwc3_pos) + kSmpAffinityList;
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break;
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}
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if (found_pos == irqs.npos) {
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ALOGI("USB gadget doesn't start");
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return Status::ERROR;
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}
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read_pos = found_pos + 1;
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}
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return Status::SUCCESS;
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}
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void currentFunctionsAppliedCallback(bool functionsApplied, void *payload) {
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UsbGadget *gadget = (UsbGadget *)payload;
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gadget->mCurrentUsbFunctionsApplied = functionsApplied;
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}
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ScopedAStatus UsbGadget::getCurrentUsbFunctions(const shared_ptr<IUsbGadgetCallback>& callback,
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int64_t in_transactionId) {
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if (callback == nullptr) {
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return ScopedAStatus::fromExceptionCode(EX_NULL_POINTER);
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}
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ScopedAStatus ret = callback->getCurrentUsbFunctionsCb(
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mCurrentUsbFunctions,
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mCurrentUsbFunctionsApplied ? Status::FUNCTIONS_APPLIED : Status::FUNCTIONS_NOT_APPLIED,
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in_transactionId);
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if (!ret.isOk())
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ALOGE("Call to getCurrentUsbFunctionsCb failed %s", ret.getDescription().c_str());
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return ScopedAStatus::ok();
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}
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ScopedAStatus UsbGadget::getUsbSpeed(const shared_ptr<IUsbGadgetCallback> &callback,
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int64_t in_transactionId) {
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std::string current_speed;
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if (ReadFileToString(SPEED_PATH, ¤t_speed)) {
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current_speed = Trim(current_speed);
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ALOGI("current USB speed is %s", current_speed.c_str());
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if (current_speed == "low-speed")
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mUsbSpeed = UsbSpeed::LOWSPEED;
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else if (current_speed == "full-speed")
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mUsbSpeed = UsbSpeed::FULLSPEED;
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else if (current_speed == "high-speed")
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mUsbSpeed = UsbSpeed::HIGHSPEED;
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else if (current_speed == "super-speed")
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mUsbSpeed = UsbSpeed::SUPERSPEED;
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else if (current_speed == "super-speed-plus")
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mUsbSpeed = UsbSpeed::SUPERSPEED_10Gb;
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else if (current_speed == "UNKNOWN")
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mUsbSpeed = UsbSpeed::UNKNOWN;
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else
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mUsbSpeed = UsbSpeed::UNKNOWN;
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} else {
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ALOGE("Fail to read current speed");
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mUsbSpeed = UsbSpeed::UNKNOWN;
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}
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if (callback) {
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ScopedAStatus ret = callback->getUsbSpeedCb(mUsbSpeed, in_transactionId);
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if (!ret.isOk())
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ALOGE("Call to getUsbSpeedCb failed %s", ret.getDescription().c_str());
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}
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return ScopedAStatus::ok();
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}
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Status UsbGadget::tearDownGadget() {
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return Status::SUCCESS;
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}
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ScopedAStatus UsbGadget::reset(const shared_ptr<IUsbGadgetCallback> &callback,
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int64_t in_transactionId) {
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if (callback)
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callback->resetCb(Status::SUCCESS, in_transactionId);
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return ScopedAStatus::ok();
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}
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Status UsbGadget::setupFunctions(long functions,
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const shared_ptr<IUsbGadgetCallback> &callback, uint64_t timeout,
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int64_t in_transactionId) {
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bool ffsEnabled = false;
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if (timeout == 0) {
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ALOGI("timeout not setup");
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}
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if ((functions & GadgetFunction::ADB) != 0) {
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ffsEnabled = true;
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}
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if ((functions & GadgetFunction::NCM) != 0) {
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ALOGI("setCurrentUsbFunctions ncm");
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}
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// Pull up the gadget right away when there are no ffs functions.
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if (!ffsEnabled) {
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mCurrentUsbFunctionsApplied = true;
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if (callback)
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callback->setCurrentUsbFunctionsCb(functions, Status::SUCCESS, in_transactionId);
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return Status::SUCCESS;
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}
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return Status::SUCCESS;
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}
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Status getI2cBusHelper(string *name) {
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DIR *dp;
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dp = opendir(kHsi2cPath);
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if (dp != NULL) {
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struct dirent *ep;
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while ((ep = readdir(dp))) {
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if (ep->d_type == DT_DIR) {
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if (string::npos != string(ep->d_name).find("i2c-")) {
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std::strtok(ep->d_name, "-");
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*name = std::strtok(NULL, "-");
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}
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}
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}
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closedir(dp);
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return Status::SUCCESS;
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}
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ALOGE("Failed to open %s", kHsi2cPath);
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return Status::ERROR;
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}
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ScopedAStatus UsbGadget::setCurrentUsbFunctions(int64_t functions,
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const shared_ptr<IUsbGadgetCallback> &callback,
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int64_t timeoutMs,
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int64_t in_transactionId) {
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std::unique_lock<std::mutex> lk(mLockSetCurrentFunction);
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std::string current_usb_power_operation_mode, current_usb_type;
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std::string usb_limit_sink_enable;
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string accessoryCurrentLimitEnablePath, accessoryCurrentLimitPath, path;
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mCurrentUsbFunctions = functions;
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mCurrentUsbFunctionsApplied = false;
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getI2cBusHelper(&path);
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accessoryCurrentLimitPath = kI2CPath + path + "/" + kAccessoryLimitCurrent;
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accessoryCurrentLimitEnablePath = kI2CPath + path + "/" + kAccessoryLimitCurrentEnable;
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// Get the gadget IRQ number before tearDownGadget()
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if (mGadgetIrqPath.empty())
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getUsbGadgetIrqPath();
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// Unlink the gadget and stop the monitor if running.
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Status status = tearDownGadget();
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if (status != Status::SUCCESS) {
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goto error;
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}
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ALOGI("Returned from tearDown gadget");
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// Leave the gadget pulled down to give time for the host to sense disconnect.
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//usleep(kDisconnectWaitUs);
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if (functions == GadgetFunction::NONE) {
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if (callback == NULL)
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return ScopedAStatus::fromServiceSpecificErrorWithMessage(
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-1, "callback == NULL");
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ScopedAStatus ret = callback->setCurrentUsbFunctionsCb(functions, Status::SUCCESS, in_transactionId);
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if (!ret.isOk())
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ALOGE("Error while calling setCurrentUsbFunctionsCb %s", ret.getDescription().c_str());
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return ScopedAStatus::fromServiceSpecificErrorWithMessage(
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-1, "Error while calling setCurrentUsbFunctionsCb");
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}
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status = setupFunctions(functions, callback, timeoutMs, in_transactionId);
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if (status != Status::SUCCESS) {
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goto error;
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}
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if (functions & GadgetFunction::NCM) {
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if (!mGadgetIrqPath.empty()) {
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if (!WriteStringToFile(BIG_CORE, mGadgetIrqPath))
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ALOGI("Cannot move gadget IRQ to big core, path:%s", mGadgetIrqPath.c_str());
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}
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} else {
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if (!mGadgetIrqPath.empty()) {
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if (!WriteStringToFile(MEDIUM_CORE, mGadgetIrqPath))
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ALOGI("Cannot move gadget IRQ to medium core, path:%s", mGadgetIrqPath.c_str());
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}
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}
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if (ReadFileToString(CURRENT_USB_TYPE_PATH, ¤t_usb_type))
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current_usb_type = Trim(current_usb_type);
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if (ReadFileToString(CURRENT_USB_POWER_OPERATION_MODE_PATH, ¤t_usb_power_operation_mode))
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current_usb_power_operation_mode = Trim(current_usb_power_operation_mode);
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if (functions & GadgetFunction::ACCESSORY &&
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current_usb_type == "Unknown SDP [CDP] DCP" &&
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(current_usb_power_operation_mode == "default" ||
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current_usb_power_operation_mode == "1.5A")) {
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if (!WriteStringToFile("1300000", accessoryCurrentLimitPath)) {
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ALOGI("Write 1.3A to limit current fail");
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} else {
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if (!WriteStringToFile("1", accessoryCurrentLimitEnablePath)) {
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ALOGI("Enable limit current fail");
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}
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}
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} else {
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if (!WriteStringToFile("0", accessoryCurrentLimitEnablePath))
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ALOGI("unvote accessory limit current failed");
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}
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ALOGI("Usb Gadget setcurrent functions called successfully");
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return ScopedAStatus::fromServiceSpecificErrorWithMessage(
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-1, "Usb Gadget setcurrent functions called successfully");
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error:
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ALOGI("Usb Gadget setcurrent functions failed");
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if (callback == NULL)
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return ScopedAStatus::fromServiceSpecificErrorWithMessage(
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-1, "Usb Gadget setcurrent functions failed");
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ScopedAStatus ret = callback->setCurrentUsbFunctionsCb(functions, status, in_transactionId);
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if (!ret.isOk())
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ALOGE("Error while calling setCurrentUsbFunctionsCb %s", ret.getDescription().c_str());
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return ScopedAStatus::fromServiceSpecificErrorWithMessage(
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-1, "Error while calling setCurrentUsbFunctionsCb");
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}
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} // namespace gadget
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} // namespace usb
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} // namespace hardware
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} // namespace android
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} // aidl
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