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481 lines
18 KiB
481 lines
18 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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#include "CompatibilityMatrix.h" |
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#include <iostream> |
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#include <utility> |
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#include <android-base/strings.h> |
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#include "parse_string.h" |
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#include "parse_xml.h" |
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#include "utils.h" |
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namespace android { |
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namespace vintf { |
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using details::mergeField; |
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bool CompatibilityMatrix::addKernel(MatrixKernel&& kernel, std::string* error) { |
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if (mType != SchemaType::FRAMEWORK) { |
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if (error) { |
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*error = "Cannot add <kernel> to a " + to_string(mType) + " compatibility matrix."; |
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} |
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return false; |
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} |
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auto it = framework.mKernels.begin(); |
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for (; it != framework.mKernels.end(); ++it) { |
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if (it->minLts() == kernel.minLts()) { |
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break; |
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} |
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if (it->minLts().version == kernel.minLts().version && |
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it->minLts().majorRev == kernel.minLts().majorRev) { |
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if (error) { |
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*error = "Kernel version mismatch; cannot add " + to_string(kernel.minLts()) + |
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" because " + to_string(it->minLts()) + " was added."; |
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} |
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return false; |
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} |
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} |
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bool seenVersion = it != framework.mKernels.end(); |
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if (seenVersion) { |
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// If no conditions, must be the first among the same minLts |
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// because O libvintf only checks the first <kernel> tag that version matches. |
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if (kernel.conditions().empty()) { |
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// Found first <kernel> with the same minLts. |
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// Append config if it does not have <condition>s, else error. |
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if (it->conditions().empty()) { |
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const auto& configs = kernel.configs(); |
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it->mConfigs.insert(it->mConfigs.end(), configs.begin(), configs.end()); |
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} else { |
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if (error) { |
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*error = |
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"Base compatibility matrix has <condition> for the first <kernel> " |
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"with minlts " + |
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to_string(kernel.minLts()) + " for unknown reason."; |
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} |
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return false; |
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} |
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return true; |
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} |
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} else { |
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// First <kernel> of a minLts must not have <condition>'s for backwards compatibility |
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// with O libvintf. |
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if (!kernel.conditions().empty()) { |
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framework.mKernels.push_back(MatrixKernel(KernelVersion{kernel.minLts()}, {})); |
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} |
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} |
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framework.mKernels.push_back(std::move(kernel)); |
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return true; |
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} |
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SchemaType CompatibilityMatrix::type() const { |
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return mType; |
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} |
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Level CompatibilityMatrix::level() const { |
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return mLevel; |
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} |
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Version CompatibilityMatrix::getMinimumMetaVersion() const { |
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// TODO(b/62801658): this needs to depend on whether there are 1.1 requirements |
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// (e.g. required <xmlfile> entry) |
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return {1, 0}; |
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} |
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status_t CompatibilityMatrix::fetchAllInformation(const FileSystem* fileSystem, |
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const std::string& path, std::string* error) { |
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return details::fetchAllInformation(fileSystem, path, gCompatibilityMatrixConverter, this, |
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error); |
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} |
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std::string CompatibilityMatrix::getXmlSchemaPath(const std::string& xmlFileName, |
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const Version& version) const { |
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using std::literals::string_literals::operator""s; |
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auto range = getXmlFiles(xmlFileName); |
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for (auto it = range.first; it != range.second; ++it) { |
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const MatrixXmlFile& matrixXmlFile = it->second; |
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if (matrixXmlFile.versionRange().contains(version)) { |
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if (!matrixXmlFile.overriddenPath().empty()) { |
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return matrixXmlFile.overriddenPath(); |
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} |
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return "/"s + (type() == SchemaType::DEVICE ? "vendor" : "system") + "/etc/" + |
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xmlFileName + "_V" + std::to_string(matrixXmlFile.versionRange().majorVer) + |
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"_" + std::to_string(matrixXmlFile.versionRange().maxMinor) + "." + |
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to_string(matrixXmlFile.format()); |
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} |
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} |
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return ""; |
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} |
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// Split existingHal into a HAL that contains only interface/instance and a HAL |
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// that does not contain it. Return the HAL that contains only interface/instance. |
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// - Return nullptr if existingHal does not contain interface/instance |
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// - Return existingHal if existingHal contains only interface/instance |
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// - Remove interface/instance from existingHal, and return a new MatrixHal (that is added |
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// to "this") that contains only interface/instance. |
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MatrixHal* CompatibilityMatrix::splitInstance(MatrixHal* existingHal, const std::string& interface, |
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const std::string& instanceOrPattern, bool isRegex) { |
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bool found = false; |
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bool foundOthers = false; |
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existingHal->forEachInstance([&](const auto& matrixInstance) { |
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bool interfaceMatch = matrixInstance.interface() == interface; |
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bool instanceMatch = false; |
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if (matrixInstance.isRegex() && isRegex) { |
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instanceMatch = (matrixInstance.regexPattern() == instanceOrPattern); |
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} else if (!matrixInstance.isRegex() && !isRegex) { |
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instanceMatch = (matrixInstance.exactInstance() == instanceOrPattern); |
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} |
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bool match = interfaceMatch && instanceMatch; |
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found |= match; |
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foundOthers |= (!match); |
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return !found || !foundOthers; |
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}); |
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if (!found) { |
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return nullptr; |
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} |
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if (!foundOthers) { |
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return existingHal; |
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} |
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existingHal->removeInstance(interface, instanceOrPattern, isRegex); |
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MatrixHal copy = *existingHal; |
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copy.clearInstances(); |
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copy.insertInstance(interface, instanceOrPattern, isRegex); |
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return addInternal(std::move(copy)); |
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} |
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// Add all package@other_version::interface/instance as an optional instance. |
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// If package@this_version::interface/instance is in this (that is, some instance |
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// with the same package and interface and instance exists), then other_version is |
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// considered a possible replacement to this_version. |
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// See LibVintfTest.AddOptionalHal* tests for details. |
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bool CompatibilityMatrix::addAllHalsAsOptional(CompatibilityMatrix* other, std::string* error) { |
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if (other == nullptr || other->level() <= level()) { |
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return true; |
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} |
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for (auto& pair : other->mHals) { |
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const std::string& name = pair.first; |
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MatrixHal& halToAdd = pair.second; |
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std::set<std::pair<std::string, std::string>> insertedInstances; |
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std::set<std::pair<std::string, std::string>> insertedRegex; |
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auto existingHals = getHals(name); |
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halToAdd.forEachInstance([&](const std::vector<VersionRange>& versionRanges, |
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const std::string& interface, |
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const std::string& instanceOrPattern, bool isRegex) { |
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for (auto* existingHal : existingHals) { |
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MatrixHal* splitInstance = |
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this->splitInstance(existingHal, interface, instanceOrPattern, isRegex); |
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if (splitInstance != nullptr) { |
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splitInstance->insertVersionRanges(versionRanges); |
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if (isRegex) { |
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insertedRegex.insert(std::make_pair(interface, instanceOrPattern)); |
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} else { |
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insertedInstances.insert(std::make_pair(interface, instanceOrPattern)); |
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} |
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} |
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} |
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return true; |
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}); |
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// Add the remaining instances. |
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for (const auto& pair : insertedInstances) { |
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halToAdd.removeInstance(pair.first, pair.second, false /* isRegex */); |
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} |
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for (const auto& pair : insertedRegex) { |
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halToAdd.removeInstance(pair.first, pair.second, true /* isRegex */); |
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} |
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if (halToAdd.instancesCount() > 0) { |
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halToAdd.setOptional(true); |
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if (!add(std::move(halToAdd))) { |
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if (error) { |
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*error = "Cannot add HAL " + name + " for unknown reason."; |
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} |
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return false; |
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} |
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} |
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} |
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return true; |
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} |
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bool CompatibilityMatrix::addAllXmlFilesAsOptional(CompatibilityMatrix* other, std::string* error) { |
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if (other == nullptr || other->level() <= level()) { |
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return true; |
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} |
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for (auto& pair : other->mXmlFiles) { |
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const std::string& name = pair.first; |
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MatrixXmlFile& xmlFileToAdd = pair.second; |
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xmlFileToAdd.mOptional = true; |
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if (!addXmlFile(std::move(xmlFileToAdd))) { |
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if (error) { |
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*error = "Cannot add XML File " + name + " for unknown reason."; |
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} |
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return false; |
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} |
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} |
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return true; |
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} |
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// Merge Kernel. |
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// Add <kernel> from exact "level", then optionally add <kernel> from high levels to low levels. |
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// For example, (each letter is a kernel version x.y.z) |
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// 1.xml: A1, B1 |
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// 2.xml: B2, C2, D2 |
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// 3.xml: D3, E3 |
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// Then the combined 1.xml should have |
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// A1, B1 (from 1.xml, required), C2, D2, E3 (optional, use earliest possible). |
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bool CompatibilityMatrix::addAllKernels(CompatibilityMatrix* other, std::string* error) { |
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for (MatrixKernel& kernel : other->framework.mKernels) { |
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KernelVersion ver = kernel.minLts(); |
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if (!addKernel(std::move(kernel), error)) { |
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if (error) { |
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*error = "Cannot add kernel version " + to_string(ver) + ": " + *error; |
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} |
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return false; |
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} |
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} |
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return true; |
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} |
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bool CompatibilityMatrix::addAllKernelsAsOptional(CompatibilityMatrix* other, std::string* error) { |
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if (other == nullptr || other->level() <= level()) { |
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return true; |
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} |
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for (MatrixKernel& kernelToAdd : other->framework.mKernels) { |
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bool exists = |
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std::any_of(this->framework.mKernels.begin(), this->framework.mKernels.end(), |
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[&kernelToAdd](const MatrixKernel& existing) { |
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return kernelToAdd.minLts().version == existing.minLts().version && |
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kernelToAdd.minLts().majorRev == existing.minLts().majorRev; |
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}); |
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if (exists) { |
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// Shouldn't retroactively add requirements to minLts(), so ignore this. |
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// This happens even when kernelToAdd.conditions() != existing.conditions(). |
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continue; |
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} |
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KernelVersion minLts = kernelToAdd.minLts(); |
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if (!addKernel(std::move(kernelToAdd), error)) { |
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if (error) { |
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*error = "Cannot add " + to_string(minLts) + ": " + *error; |
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} |
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return false; |
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} |
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} |
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return true; |
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} |
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bool CompatibilityMatrix::addSepolicy(CompatibilityMatrix* other, std::string* error) { |
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bool success = mergeField(&this->framework.mSepolicy, &other->framework.mSepolicy); |
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if (!success && error) *error = "<sepolicy> is already defined"; |
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return success; |
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} |
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bool CompatibilityMatrix::addAvbMetaVersion(CompatibilityMatrix* other, std::string* error) { |
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bool success = mergeField(&this->framework.mAvbMetaVersion, &other->framework.mAvbMetaVersion); |
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if (!success && error) *error = "<avb><vbmeta-version> is already defined"; |
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return success; |
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} |
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bool CompatibilityMatrix::addVndk(CompatibilityMatrix* other, std::string* error) { |
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#pragma clang diagnostic push |
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#pragma clang diagnostic ignored "-Wdeprecated-declarations" |
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bool success = mergeField(&this->device.mVndk, &other->device.mVndk); |
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#pragma clang diagnostic pop |
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if (!success && error) *error = "<vndk> is already defined"; |
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return success; |
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} |
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bool CompatibilityMatrix::addVendorNdk(CompatibilityMatrix* other, std::string* error) { |
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bool success = mergeField(&this->device.mVendorNdk, &other->device.mVendorNdk); |
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if (!success && error) *error = "<vendor-ndk> is already defined"; |
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return success; |
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} |
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bool CompatibilityMatrix::addSystemSdk(CompatibilityMatrix* other, std::string* /* error */) { |
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this->device.mSystemSdk.addAll(&other->device.mSystemSdk); |
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return true; |
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} |
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bool operator==(const CompatibilityMatrix &lft, const CompatibilityMatrix &rgt) { |
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return lft.mType == rgt.mType && lft.mLevel == rgt.mLevel && lft.mHals == rgt.mHals && |
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lft.mXmlFiles == rgt.mXmlFiles && |
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(lft.mType != SchemaType::DEVICE || |
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( |
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#pragma clang diagnostic push |
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#pragma clang diagnostic ignored "-Wdeprecated-declarations" |
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lft.device.mVndk == rgt.device.mVndk && |
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#pragma clang diagnostic pop |
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lft.device.mVendorNdk == rgt.device.mVendorNdk && |
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lft.device.mSystemSdk == rgt.device.mSystemSdk)) && |
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(lft.mType != SchemaType::FRAMEWORK || |
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(lft.framework.mKernels == rgt.framework.mKernels && |
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lft.framework.mSepolicy == rgt.framework.mSepolicy && |
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lft.framework.mAvbMetaVersion == rgt.framework.mAvbMetaVersion)); |
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} |
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std::unique_ptr<CompatibilityMatrix> CompatibilityMatrix::combine( |
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Level deviceLevel, std::vector<Named<CompatibilityMatrix>>* matrices, std::string* error) { |
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// Check type. |
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for (const auto& e : *matrices) { |
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if (e.object.type() != SchemaType::FRAMEWORK) { |
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if (error) { |
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*error = "File \"" + e.name + "\" is not a framework compatibility matrix."; |
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return nullptr; |
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} |
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} |
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} |
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// Matrices with unspecified (empty) level are auto-filled with deviceLevel. |
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for (auto& e : *matrices) { |
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if (e.object.level() == Level::UNSPECIFIED) { |
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e.object.mLevel = deviceLevel; |
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} |
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} |
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// Add from low to high FCM version so that optional <kernel> requirements are added correctly. |
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// See comment in addAllAsOptional. |
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std::sort(matrices->begin(), matrices->end(), |
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[](const auto& x, const auto& y) { return x.object.level() < y.object.level(); }); |
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auto baseMatrix = std::make_unique<CompatibilityMatrix>(); |
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baseMatrix->mLevel = deviceLevel; |
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baseMatrix->mType = SchemaType::FRAMEWORK; |
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std::vector<std::string> parsedFiles; |
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for (auto& e : *matrices) { |
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if (e.object.level() < deviceLevel) { |
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continue; |
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} |
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bool success = false; |
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if (e.object.level() == deviceLevel) { |
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success = baseMatrix->addAll(&e, error); |
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} else { |
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success = baseMatrix->addAllAsOptional(&e, error); |
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} |
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if (!success) { |
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if (error) { |
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*error = "Conflict when merging \"" + e.name + "\": " + *error + "\n" + |
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"Previous files:\n" + base::Join(parsedFiles, "\n"); |
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} |
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return nullptr; |
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} |
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parsedFiles.push_back(e.name); |
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} |
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return baseMatrix; |
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} |
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std::unique_ptr<CompatibilityMatrix> CompatibilityMatrix::combineDeviceMatrices( |
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std::vector<Named<CompatibilityMatrix>>* matrices, std::string* error) { |
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auto baseMatrix = std::make_unique<CompatibilityMatrix>(); |
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baseMatrix->mType = SchemaType::DEVICE; |
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std::vector<std::string> parsedFiles; |
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for (auto& e : *matrices) { |
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bool success = baseMatrix->addAll(&e, error); |
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if (!success) { |
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if (error) { |
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*error = "Conflict when merging \"" + e.name + "\": " + *error + "\n" + |
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"Previous files:\n" + base::Join(parsedFiles, "\n"); |
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} |
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return nullptr; |
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} |
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parsedFiles.push_back(e.name); |
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} |
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return baseMatrix; |
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} |
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bool CompatibilityMatrix::addAll(Named<CompatibilityMatrix>* inputMatrix, std::string* error) { |
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if (!addAllHals(&inputMatrix->object, error) || !addAllXmlFiles(&inputMatrix->object, error) || |
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!addAllKernels(&inputMatrix->object, error) || !addSepolicy(&inputMatrix->object, error) || |
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!addAvbMetaVersion(&inputMatrix->object, error) || !addVndk(&inputMatrix->object, error) || |
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!addVendorNdk(&inputMatrix->object, error) || !addSystemSdk(&inputMatrix->object, error)) { |
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if (error) { |
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*error = "File \"" + inputMatrix->name + "\" cannot be added: " + *error + "."; |
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} |
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return false; |
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} |
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return true; |
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} |
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bool CompatibilityMatrix::addAllAsOptional(Named<CompatibilityMatrix>* inputMatrix, |
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std::string* error) { |
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if (!addAllHalsAsOptional(&inputMatrix->object, error) || |
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!addAllXmlFilesAsOptional(&inputMatrix->object, error) || |
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!addAllKernelsAsOptional(&inputMatrix->object, error)) { |
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if (error) { |
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*error = "File \"" + inputMatrix->name + "\" cannot be added: " + *error; |
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} |
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return false; |
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} |
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// ignore <sepolicy> requirement from higher level |
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// ignore <avb> requirement from higher level |
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return true; |
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} |
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bool CompatibilityMatrix::forEachInstanceOfVersion( |
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const std::string& package, const Version& expectVersion, |
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const std::function<bool(const MatrixInstance&)>& func) const { |
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for (const MatrixHal* hal : getHals(package)) { |
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bool cont = hal->forEachInstance([&](const MatrixInstance& matrixInstance) { |
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if (matrixInstance.versionRange().contains(expectVersion)) { |
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return func(matrixInstance); |
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} |
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return true; |
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}); |
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if (!cont) return false; |
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} |
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return true; |
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} |
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bool CompatibilityMatrix::matchInstance(const std::string& halName, const Version& version, |
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const std::string& interfaceName, |
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const std::string& instance) const { |
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bool found = false; |
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(void)forEachInstanceOfInterface(halName, version, interfaceName, |
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[&found, &instance](const auto& e) { |
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found |= (e.matchInstance(instance)); |
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return !found; // if not found, continue |
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}); |
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return found; |
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} |
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std::string CompatibilityMatrix::getVendorNdkVersion() const { |
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return type() == SchemaType::DEVICE ? device.mVendorNdk.version() : ""; |
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} |
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} // namespace vintf |
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} // namespace android
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