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468 lines
15 KiB
468 lines
15 KiB
/* |
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* Copyright (C) 2017 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 "VtsHalGnssV1_0TargetTest" |
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#include <android/hardware/gnss/1.0/IGnss.h> |
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#include <log/log.h> |
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#include <VtsHalHidlTargetTestBase.h> |
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#include <chrono> |
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#include <condition_variable> |
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#include <mutex> |
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using android::hardware::Return; |
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using android::hardware::Void; |
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using android::hardware::gnss::V1_0::GnssLocation; |
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using android::hardware::gnss::V1_0::GnssLocationFlags; |
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using android::hardware::gnss::V1_0::IGnss; |
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using android::hardware::gnss::V1_0::IGnssCallback; |
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using android::hardware::gnss::V1_0::IGnssDebug; |
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using android::hardware::gnss::V1_0::IGnssMeasurement; |
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using android::sp; |
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#define TIMEOUT_SEC 2 // for basic commands/responses |
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// for command line argument on how strictly to run the test |
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bool sAgpsIsPresent = false; // if SUPL or XTRA assistance available |
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bool sSignalIsWeak = false; // if GNSS signals are weak (e.g. light indoor) |
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// The main test class for GNSS HAL. |
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class GnssHalTest : public ::testing::VtsHalHidlTargetTestBase { |
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public: |
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virtual void SetUp() override { |
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// Clean between tests |
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capabilities_called_count_ = 0; |
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location_called_count_ = 0; |
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info_called_count_ = 0; |
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notify_count_ = 0; |
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gnss_hal_ = ::testing::VtsHalHidlTargetTestBase::getService<IGnss>(); |
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ASSERT_NE(gnss_hal_, nullptr); |
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gnss_cb_ = new GnssCallback(*this); |
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ASSERT_NE(gnss_cb_, nullptr); |
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auto result = gnss_hal_->setCallback(gnss_cb_); |
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if (!result.isOk()) { |
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ALOGE("result of failed setCallback %s", result.description().c_str()); |
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} |
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ASSERT_TRUE(result.isOk()); |
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ASSERT_TRUE(result); |
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/* |
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* At least one callback should trigger - it may be capabilites, or |
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* system info first, so wait again if capabilities not received. |
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*/ |
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EXPECT_EQ(std::cv_status::no_timeout, wait(TIMEOUT_SEC)); |
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if (capabilities_called_count_ == 0) { |
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EXPECT_EQ(std::cv_status::no_timeout, wait(TIMEOUT_SEC)); |
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} |
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/* |
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* Generally should be 1 capabilites callback - |
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* or possibly 2 in some recovery cases (default cached & refreshed) |
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*/ |
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EXPECT_GE(capabilities_called_count_, 1); |
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EXPECT_LE(capabilities_called_count_, 2); |
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/* |
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* Clear notify/waiting counter, allowing up till the timeout after |
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* the last reply for final startup messages to arrive (esp. system |
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* info.) |
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*/ |
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while (wait(TIMEOUT_SEC) == std::cv_status::no_timeout) { |
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} |
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} |
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virtual void TearDown() override { |
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if (gnss_hal_ != nullptr) { |
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gnss_hal_->cleanup(); |
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} |
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if (notify_count_ > 0) { |
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ALOGW("%d unprocessed callbacks discarded", notify_count_); |
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} |
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} |
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/* Used as a mechanism to inform the test that a callback has occurred */ |
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inline void notify() { |
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std::unique_lock<std::mutex> lock(mtx_); |
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notify_count_++; |
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cv_.notify_one(); |
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} |
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/* Test code calls this function to wait for a callback */ |
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inline std::cv_status wait(int timeoutSeconds) { |
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std::unique_lock<std::mutex> lock(mtx_); |
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std::cv_status status = std::cv_status::no_timeout; |
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auto now = std::chrono::system_clock::now(); |
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while (notify_count_ == 0) { |
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status = cv_.wait_until(lock, now + std::chrono::seconds(timeoutSeconds)); |
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if (status == std::cv_status::timeout) return status; |
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} |
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notify_count_--; |
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return status; |
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} |
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/* |
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* StartAndGetSingleLocation: |
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* Helper function to get one Location and check fields |
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* |
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* returns true if a location was successfully generated |
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*/ |
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bool StartAndGetSingleLocation(bool checkAccuracies) { |
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auto result = gnss_hal_->start(); |
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EXPECT_TRUE(result.isOk()); |
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EXPECT_TRUE(result); |
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/* |
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* GPS signals initially optional for this test, so don't expect fast fix, |
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* or no timeout, unless signal is present |
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*/ |
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int firstGnssLocationTimeoutSeconds = sAgpsIsPresent ? 15 : 45; |
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if (sSignalIsWeak) { |
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// allow more time for weak signals |
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firstGnssLocationTimeoutSeconds += 30; |
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} |
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wait(firstGnssLocationTimeoutSeconds); |
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if (sAgpsIsPresent) { |
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EXPECT_EQ(location_called_count_, 1); |
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} |
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if (location_called_count_ > 0) { |
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CheckLocation(last_location_, checkAccuracies); |
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return true; |
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} |
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return false; |
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} |
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/* |
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* StopAndClearLocations: |
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* Helper function to stop locations |
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* |
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* returns true if a location was successfully generated |
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*/ |
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void StopAndClearLocations() { |
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auto result = gnss_hal_->stop(); |
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EXPECT_TRUE(result.isOk()); |
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EXPECT_TRUE(result); |
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/* |
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* Clear notify/waiting counter, allowing up till the timeout after |
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* the last reply for final startup messages to arrive (esp. system |
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* info.) |
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*/ |
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while (wait(TIMEOUT_SEC) == std::cv_status::no_timeout) { |
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} |
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} |
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/* |
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* CheckLocation: |
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* Helper function to vet Location fields |
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*/ |
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void CheckLocation(GnssLocation& location, bool checkAccuracies) { |
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EXPECT_TRUE(location.gnssLocationFlags & GnssLocationFlags::HAS_LAT_LONG); |
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EXPECT_TRUE(location.gnssLocationFlags & GnssLocationFlags::HAS_ALTITUDE); |
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EXPECT_TRUE(location.gnssLocationFlags & GnssLocationFlags::HAS_SPEED); |
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EXPECT_TRUE(location.gnssLocationFlags & GnssLocationFlags::HAS_HORIZONTAL_ACCURACY); |
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// New uncertainties available in O must be provided, |
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// at least when paired with modern hardware (2017+) |
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if (checkAccuracies) { |
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EXPECT_TRUE(location.gnssLocationFlags & GnssLocationFlags::HAS_VERTICAL_ACCURACY); |
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EXPECT_TRUE(location.gnssLocationFlags & GnssLocationFlags::HAS_SPEED_ACCURACY); |
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if (location.gnssLocationFlags & GnssLocationFlags::HAS_BEARING) { |
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EXPECT_TRUE(location.gnssLocationFlags & GnssLocationFlags::HAS_BEARING_ACCURACY); |
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} |
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} |
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EXPECT_GE(location.latitudeDegrees, -90.0); |
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EXPECT_LE(location.latitudeDegrees, 90.0); |
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EXPECT_GE(location.longitudeDegrees, -180.0); |
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EXPECT_LE(location.longitudeDegrees, 180.0); |
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EXPECT_GE(location.altitudeMeters, -1000.0); |
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EXPECT_LE(location.altitudeMeters, 30000.0); |
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EXPECT_GE(location.speedMetersPerSec, 0.0); |
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EXPECT_LE(location.speedMetersPerSec, 5.0); // VTS tests are stationary. |
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// Non-zero speeds must be reported with an associated bearing |
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if (location.speedMetersPerSec > 0.0) { |
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EXPECT_TRUE(location.gnssLocationFlags & GnssLocationFlags::HAS_BEARING); |
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} |
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/* |
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* Tolerating some especially high values for accuracy estimate, in case of |
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* first fix with especially poor geometry (happens occasionally) |
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*/ |
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EXPECT_GT(location.horizontalAccuracyMeters, 0.0); |
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EXPECT_LE(location.horizontalAccuracyMeters, 250.0); |
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/* |
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* Some devices may define bearing as -180 to +180, others as 0 to 360. |
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* Both are okay & understandable. |
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*/ |
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if (location.gnssLocationFlags & GnssLocationFlags::HAS_BEARING) { |
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EXPECT_GE(location.bearingDegrees, -180.0); |
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EXPECT_LE(location.bearingDegrees, 360.0); |
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} |
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if (location.gnssLocationFlags & GnssLocationFlags::HAS_VERTICAL_ACCURACY) { |
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EXPECT_GT(location.verticalAccuracyMeters, 0.0); |
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EXPECT_LE(location.verticalAccuracyMeters, 500.0); |
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} |
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if (location.gnssLocationFlags & GnssLocationFlags::HAS_SPEED_ACCURACY) { |
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EXPECT_GT(location.speedAccuracyMetersPerSecond, 0.0); |
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EXPECT_LE(location.speedAccuracyMetersPerSecond, 50.0); |
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} |
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if (location.gnssLocationFlags & GnssLocationFlags::HAS_BEARING_ACCURACY) { |
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EXPECT_GT(location.bearingAccuracyDegrees, 0.0); |
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EXPECT_LE(location.bearingAccuracyDegrees, 360.0); |
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} |
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// Check timestamp > 1.48e12 (47 years in msec - 1970->2017+) |
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EXPECT_GT(location.timestamp, 1.48e12); |
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} |
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/* Callback class for data & Event. */ |
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class GnssCallback : public IGnssCallback { |
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public: |
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GnssHalTest& parent_; |
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GnssCallback(GnssHalTest& parent) : parent_(parent){}; |
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virtual ~GnssCallback() = default; |
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// Dummy callback handlers |
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Return<void> gnssStatusCb( |
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const IGnssCallback::GnssStatusValue /* status */) override { |
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return Void(); |
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} |
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Return<void> gnssSvStatusCb( |
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const IGnssCallback::GnssSvStatus& /* svStatus */) override { |
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return Void(); |
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} |
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Return<void> gnssNmeaCb( |
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int64_t /* timestamp */, |
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const android::hardware::hidl_string& /* nmea */) override { |
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return Void(); |
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} |
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Return<void> gnssAcquireWakelockCb() override { return Void(); } |
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Return<void> gnssReleaseWakelockCb() override { return Void(); } |
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Return<void> gnssRequestTimeCb() override { return Void(); } |
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// Actual (test) callback handlers |
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Return<void> gnssLocationCb(const GnssLocation& location) override { |
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ALOGI("Location received"); |
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parent_.location_called_count_++; |
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parent_.last_location_ = location; |
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parent_.notify(); |
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return Void(); |
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} |
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Return<void> gnssSetCapabilitesCb(uint32_t capabilities) override { |
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ALOGI("Capabilities received %d", capabilities); |
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parent_.capabilities_called_count_++; |
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parent_.last_capabilities_ = capabilities; |
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parent_.notify(); |
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return Void(); |
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} |
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Return<void> gnssSetSystemInfoCb( |
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const IGnssCallback::GnssSystemInfo& info) override { |
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ALOGI("Info received, year %d", info.yearOfHw); |
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parent_.info_called_count_++; |
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parent_.last_info_ = info; |
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parent_.notify(); |
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return Void(); |
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} |
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}; |
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sp<IGnss> gnss_hal_; // GNSS HAL to call into |
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sp<IGnssCallback> gnss_cb_; // Primary callback interface |
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/* Count of calls to set the following items, and the latest item (used by |
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* test.) |
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*/ |
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int capabilities_called_count_; |
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uint32_t last_capabilities_; |
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int location_called_count_; |
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GnssLocation last_location_; |
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int info_called_count_; |
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IGnssCallback::GnssSystemInfo last_info_; |
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private: |
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std::mutex mtx_; |
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std::condition_variable cv_; |
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int notify_count_; |
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}; |
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/* |
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* SetCallbackCapabilitiesCleanup: |
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* Sets up the callback, awaits the capabilities, and calls cleanup |
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* |
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* Since this is just the basic operation of SetUp() and TearDown(), |
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* the function definition is intentionally empty |
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*/ |
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TEST_F(GnssHalTest, SetCallbackCapabilitiesCleanup) {} |
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/* |
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* GetLocation: |
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* Turns on location, waits 45 second for at least 5 locations, |
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* and checks them for reasonable validity. |
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*/ |
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TEST_F(GnssHalTest, GetLocation) { |
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#define MIN_INTERVAL_MSEC 500 |
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#define PREFERRED_ACCURACY 0 // Ideally perfect (matches GnssLocationProvider) |
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#define PREFERRED_TIME_MSEC 0 // Ideally immediate |
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#define LOCATION_TIMEOUT_SUBSEQUENT_SEC 3 |
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#define LOCATIONS_TO_CHECK 5 |
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bool checkMoreAccuracies = |
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(info_called_count_ > 0 && last_info_.yearOfHw >= 2017); |
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auto result = gnss_hal_->setPositionMode( |
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IGnss::GnssPositionMode::MS_BASED, |
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IGnss::GnssPositionRecurrence::RECURRENCE_PERIODIC, MIN_INTERVAL_MSEC, |
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PREFERRED_ACCURACY, PREFERRED_TIME_MSEC); |
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ASSERT_TRUE(result.isOk()); |
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EXPECT_TRUE(result); |
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/* |
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* GPS signals initially optional for this test, so don't expect no timeout |
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* yet |
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*/ |
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bool gotLocation = StartAndGetSingleLocation(checkMoreAccuracies); |
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if (gotLocation) { |
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for (int i = 1; i < LOCATIONS_TO_CHECK; i++) { |
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EXPECT_EQ(std::cv_status::no_timeout, wait(LOCATION_TIMEOUT_SUBSEQUENT_SEC)); |
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EXPECT_EQ(location_called_count_, i + 1); |
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CheckLocation(last_location_, checkMoreAccuracies); |
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} |
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} |
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StopAndClearLocations(); |
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} |
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/* |
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* InjectDelete: |
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* Ensures that calls to inject and/or delete information state are handled. |
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*/ |
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TEST_F(GnssHalTest, InjectDelete) { |
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// confidently, well north of Alaska |
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auto result = gnss_hal_->injectLocation(80.0, -170.0, 1000.0); |
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ASSERT_TRUE(result.isOk()); |
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EXPECT_TRUE(result); |
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// fake time, but generally reasonable values (time in Aug. 2018) |
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result = gnss_hal_->injectTime(1534567890123L, 123456L, 10000L); |
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ASSERT_TRUE(result.isOk()); |
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EXPECT_TRUE(result); |
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auto resultVoid = gnss_hal_->deleteAidingData(IGnss::GnssAidingData::DELETE_ALL); |
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ASSERT_TRUE(resultVoid.isOk()); |
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// Ensure we can get a good location after a bad injection has been deleted |
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StartAndGetSingleLocation(false); |
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StopAndClearLocations(); |
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} |
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/* |
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* GetAllExtentions: |
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* Tries getting all optional extensions, and ensures a valid return |
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* null or actual extension, no crash. |
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* Confirms year-based required extensions (Measurement & Debug) are present |
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*/ |
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TEST_F(GnssHalTest, GetAllExtensions) { |
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// Basic call-is-handled checks |
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auto gnssXtra = gnss_hal_->getExtensionXtra(); |
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ASSERT_TRUE(gnssXtra.isOk()); |
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auto gnssRil = gnss_hal_->getExtensionAGnssRil(); |
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ASSERT_TRUE(gnssRil.isOk()); |
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auto gnssAgnss = gnss_hal_->getExtensionAGnss(); |
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ASSERT_TRUE(gnssAgnss.isOk()); |
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auto gnssNi = gnss_hal_->getExtensionGnssNi(); |
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ASSERT_TRUE(gnssNi.isOk()); |
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auto gnssNavigationMessage = gnss_hal_->getExtensionGnssNavigationMessage(); |
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ASSERT_TRUE(gnssNavigationMessage.isOk()); |
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auto gnssConfiguration = gnss_hal_->getExtensionGnssConfiguration(); |
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ASSERT_TRUE(gnssConfiguration.isOk()); |
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auto gnssGeofencing = gnss_hal_->getExtensionGnssGeofencing(); |
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ASSERT_TRUE(gnssGeofencing.isOk()); |
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auto gnssBatching = gnss_hal_->getExtensionGnssBatching(); |
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ASSERT_TRUE(gnssBatching.isOk()); |
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// Verifying, in some cases, that these return actual extensions |
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auto gnssMeasurement = gnss_hal_->getExtensionGnssMeasurement(); |
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ASSERT_TRUE(gnssMeasurement.isOk()); |
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if (last_capabilities_ & IGnssCallback::Capabilities::MEASUREMENTS) { |
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sp<IGnssMeasurement> iGnssMeas = gnssMeasurement; |
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EXPECT_NE(iGnssMeas, nullptr); |
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} |
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auto gnssDebug = gnss_hal_->getExtensionGnssDebug(); |
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ASSERT_TRUE(gnssDebug.isOk()); |
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if (info_called_count_ > 0 && last_info_.yearOfHw >= 2017) { |
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sp<IGnssDebug> iGnssDebug = gnssDebug; |
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EXPECT_NE(iGnssDebug, nullptr); |
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} |
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} |
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/* |
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* MeasurementCapabilities: |
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* Verifies that modern hardware supports measurement capabilities. |
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*/ |
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TEST_F(GnssHalTest, MeasurementCapabilites) { |
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if (info_called_count_ > 0 && last_info_.yearOfHw >= 2016) { |
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EXPECT_TRUE(last_capabilities_ & IGnssCallback::Capabilities::MEASUREMENTS); |
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} |
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} |
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int main(int argc, char** argv) { |
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::testing::InitGoogleTest(&argc, argv); |
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/* |
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* These arguments not used by automated VTS testing. |
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* Only for use in manual testing, when wanting to run |
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* stronger tests that require the presence of GPS signal. |
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*/ |
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for (int i = 1; i < argc; i++) { |
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if (strcmp(argv[i], "-agps") == 0) { |
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sAgpsIsPresent = true; |
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} else if (strcmp(argv[i], "-weak") == 0) { |
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sSignalIsWeak = true; |
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} |
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} |
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int status = RUN_ALL_TESTS(); |
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ALOGI("Test result = %d", status); |
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return status; |
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}
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