1 /*
2 * Copyright (C) 2017 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17 #include "CompatibilityMatrix.h"
18
19 #include <iostream>
20 #include <utility>
21
22 #include <android-base/logging.h>
23 #include <android-base/strings.h>
24
25 #include "parse_string.h"
26 #include "parse_xml.h"
27 #include "utils.h"
28
29 namespace android {
30 namespace vintf {
31
32 using details::mergeField;
33
add(MatrixHal && halToAdd,std::string *)34 bool CompatibilityMatrix::add(MatrixHal&& halToAdd, std::string*) {
35 CHECK(addInternal(std::move(halToAdd)) != nullptr);
36 return true;
37 }
38
addAllHals(CompatibilityMatrix * other,std::string *)39 bool CompatibilityMatrix::addAllHals(CompatibilityMatrix* other, std::string*) {
40 std::string internalError;
41 for (auto& pair : other->mHals) {
42 CHECK(add(std::move(pair.second), &internalError)) << internalError;
43 }
44 other->mHals.clear();
45 return true;
46 }
47
addKernel(MatrixKernel && kernel,std::string * error)48 bool CompatibilityMatrix::addKernel(MatrixKernel&& kernel, std::string* error) {
49 if (mType != SchemaType::FRAMEWORK) {
50 if (error) {
51 *error = "Cannot add <kernel> to a " + to_string(mType) + " compatibility matrix.";
52 }
53 return false;
54 }
55
56 if (kernel.getSourceMatrixLevel() == Level::UNSPECIFIED) {
57 kernel.setSourceMatrixLevel(level());
58 }
59
60 auto it = framework.mKernels.begin();
61 for (; it != framework.mKernels.end(); ++it) {
62 if (it->getSourceMatrixLevel() != kernel.getSourceMatrixLevel()) {
63 continue;
64 }
65 if (it->minLts() == kernel.minLts()) {
66 break;
67 }
68 if (it->minLts().dropMinor() == kernel.minLts().dropMinor()) {
69 if (error) {
70 *error = "Kernel version mismatch; for level " +
71 to_string(kernel.getSourceMatrixLevel()) + ", cannot add " +
72 to_string(kernel.minLts()) + " because " + to_string(it->minLts()) +
73 " was added.";
74 }
75 return false;
76 }
77 }
78
79 bool seenVersion = it != framework.mKernels.end();
80
81 if (seenVersion) {
82 // If no conditions, must be the first among the same minLts
83 // because O libvintf only checks the first <kernel> tag that version matches.
84 if (kernel.conditions().empty()) {
85 // Found first <kernel> with the same minLts.
86 // Append config if it does not have <condition>s, else error.
87 if (it->conditions().empty()) {
88 const auto& configs = kernel.configs();
89 it->mConfigs.insert(it->mConfigs.end(), configs.begin(), configs.end());
90 } else {
91 if (error) {
92 *error =
93 "Base compatibility matrix has <condition> for the first <kernel> "
94 "with minlts " +
95 to_string(kernel.minLts()) + " for unknown reason.";
96 }
97 return false;
98 }
99 return true;
100 }
101 } else {
102 // First <kernel> of a minLts must not have <condition>'s for backwards compatibility
103 // with O libvintf.
104 if (!kernel.conditions().empty()) {
105 framework.mKernels.push_back(MatrixKernel(KernelVersion{kernel.minLts()}, {}));
106 }
107 }
108
109 framework.mKernels.push_back(std::move(kernel));
110 return true;
111 }
112
type() const113 SchemaType CompatibilityMatrix::type() const {
114 return mType;
115 }
116
level() const117 Level CompatibilityMatrix::level() const {
118 return mLevel;
119 }
120
fetchAllInformation(const FileSystem * fileSystem,const std::string & path,std::string * error)121 status_t CompatibilityMatrix::fetchAllInformation(const FileSystem* fileSystem,
122 const std::string& path, std::string* error) {
123 return details::fetchAllInformation(fileSystem, path, gCompatibilityMatrixConverter, this,
124 error);
125 }
126
getXmlSchemaPath(const std::string & xmlFileName,const Version & version) const127 std::string CompatibilityMatrix::getXmlSchemaPath(const std::string& xmlFileName,
128 const Version& version) const {
129 using std::literals::string_literals::operator""s;
130 auto range = getXmlFiles(xmlFileName);
131 for (auto it = range.first; it != range.second; ++it) {
132 const MatrixXmlFile& matrixXmlFile = it->second;
133 if (matrixXmlFile.versionRange().contains(version)) {
134 if (!matrixXmlFile.overriddenPath().empty()) {
135 return matrixXmlFile.overriddenPath();
136 }
137 return "/"s + (type() == SchemaType::DEVICE ? "vendor" : "system") + "/etc/" +
138 xmlFileName + "_V" + std::to_string(matrixXmlFile.versionRange().majorVer) +
139 "_" + std::to_string(matrixXmlFile.versionRange().maxMinor) + "." +
140 to_string(matrixXmlFile.format());
141 }
142 }
143 return "";
144 }
145
146 // Split existingHal into a HAL that contains only interface/instance and a HAL
147 // that does not contain it. Return the HAL that contains only interface/instance.
148 // - Return nullptr if existingHal does not contain interface/instance
149 // - Return existingHal if existingHal contains only interface/instance
150 // - Remove interface/instance from existingHal, and return a new MatrixHal (that is added
151 // to "this") that contains only interface/instance.
splitInstance(MatrixHal * existingHal,const std::string & interface,const std::string & instanceOrPattern,bool isRegex)152 MatrixHal* CompatibilityMatrix::splitInstance(MatrixHal* existingHal, const std::string& interface,
153 const std::string& instanceOrPattern, bool isRegex) {
154 bool found = false;
155 bool foundOthers = false;
156 existingHal->forEachInstance([&](const auto& matrixInstance) {
157 bool interfaceMatch = matrixInstance.interface() == interface;
158 bool instanceMatch = false;
159 if (matrixInstance.isRegex() && isRegex) {
160 instanceMatch = (matrixInstance.regexPattern() == instanceOrPattern);
161 } else if (!matrixInstance.isRegex() && !isRegex) {
162 instanceMatch = (matrixInstance.exactInstance() == instanceOrPattern);
163 }
164
165 bool match = interfaceMatch && instanceMatch;
166
167 found |= match;
168 foundOthers |= (!match);
169
170 return !found || !foundOthers;
171 });
172
173 if (!found) {
174 return nullptr;
175 }
176
177 if (!foundOthers) {
178 return existingHal;
179 }
180
181 existingHal->removeInstance(interface, instanceOrPattern, isRegex);
182 MatrixHal copy = *existingHal;
183 copy.clearInstances();
184 copy.insertInstance(interface, instanceOrPattern, isRegex);
185
186 return addInternal(std::move(copy));
187 }
188
189 // Add all package@other_version::interface/instance as an optional instance.
190 // If package@this_version::interface/instance is in this (that is, some instance
191 // with the same package and interface and instance exists), then other_version is
192 // considered a possible replacement to this_version.
193 // See LibVintfTest.AddOptionalHal* tests for details.
addAllHalsAsOptional(CompatibilityMatrix * other,std::string * error)194 bool CompatibilityMatrix::addAllHalsAsOptional(CompatibilityMatrix* other, std::string* error) {
195 if (other == nullptr || other->level() <= level()) {
196 return true;
197 }
198
199 for (auto& pair : other->mHals) {
200 const std::string& name = pair.first;
201 MatrixHal& halToAdd = pair.second;
202
203 std::set<std::pair<std::string, std::string>> insertedInstances;
204 std::set<std::pair<std::string, std::string>> insertedRegex;
205 auto existingHals = getHals(name);
206
207 halToAdd.forEachInstance([&](const std::vector<VersionRange>& versionRanges,
208 const std::string& interface,
209 const std::string& instanceOrPattern, bool isRegex) {
210 for (auto* existingHal : existingHals) {
211 // Ignore HALs with different format.
212 if (halToAdd.format != existingHal->format) {
213 continue;
214 }
215
216 MatrixHal* splitInstance =
217 this->splitInstance(existingHal, interface, instanceOrPattern, isRegex);
218 if (splitInstance != nullptr) {
219 splitInstance->insertVersionRanges(versionRanges);
220 if (isRegex) {
221 insertedRegex.insert(std::make_pair(interface, instanceOrPattern));
222 } else {
223 insertedInstances.insert(std::make_pair(interface, instanceOrPattern));
224 }
225 }
226 }
227 return true;
228 });
229
230 // Add the remaining instances.
231 for (const auto& pair : insertedInstances) {
232 halToAdd.removeInstance(pair.first, pair.second, false /* isRegex */);
233 }
234 for (const auto& pair : insertedRegex) {
235 halToAdd.removeInstance(pair.first, pair.second, true /* isRegex */);
236 }
237
238 if (halToAdd.instancesCount() > 0) {
239 halToAdd.setOptional(true);
240 if (!add(std::move(halToAdd))) {
241 if (error) {
242 *error = "Cannot add HAL " + name + " for unknown reason.";
243 }
244 return false;
245 }
246 }
247 }
248 return true;
249 }
250
addAllXmlFilesAsOptional(CompatibilityMatrix * other,std::string * error)251 bool CompatibilityMatrix::addAllXmlFilesAsOptional(CompatibilityMatrix* other, std::string* error) {
252 if (other == nullptr || other->level() <= level()) {
253 return true;
254 }
255 for (auto& pair : other->mXmlFiles) {
256 const std::string& name = pair.first;
257 MatrixXmlFile& xmlFileToAdd = pair.second;
258
259 xmlFileToAdd.mOptional = true;
260 if (!addXmlFile(std::move(xmlFileToAdd))) {
261 if (error) {
262 *error = "Cannot add XML File " + name + " for unknown reason.";
263 }
264 return false;
265 }
266 }
267 return true;
268 }
269
270 // Merge Kernel. See KernelInfo::getMatchedKernelRequirements for details on compatibility checks.
addAllKernels(CompatibilityMatrix * other,std::string * error)271 bool CompatibilityMatrix::addAllKernels(CompatibilityMatrix* other, std::string* error) {
272 for (MatrixKernel& kernel : other->framework.mKernels) {
273 if (kernel.getSourceMatrixLevel() == Level::UNSPECIFIED) {
274 kernel.setSourceMatrixLevel(other->level());
275 }
276 KernelVersion ver = kernel.minLts();
277 if (!addKernel(std::move(kernel), error)) {
278 if (error) {
279 *error = "Cannot add kernel version " + to_string(ver) + ": " + *error;
280 }
281 return false;
282 }
283 }
284 return true;
285 }
286
addSepolicy(CompatibilityMatrix * other,std::string * error)287 bool CompatibilityMatrix::addSepolicy(CompatibilityMatrix* other, std::string* error) {
288 bool success = mergeField(&this->framework.mSepolicy, &other->framework.mSepolicy);
289 if (!success && error) *error = "<sepolicy> is already defined";
290 return success;
291 }
292
addAvbMetaVersion(CompatibilityMatrix * other,std::string * error)293 bool CompatibilityMatrix::addAvbMetaVersion(CompatibilityMatrix* other, std::string* error) {
294 bool success = mergeField(&this->framework.mAvbMetaVersion, &other->framework.mAvbMetaVersion);
295 if (!success && error) *error = "<avb><vbmeta-version> is already defined";
296 return success;
297 }
298
addVndk(CompatibilityMatrix * other,std::string * error)299 bool CompatibilityMatrix::addVndk(CompatibilityMatrix* other, std::string* error) {
300 #pragma clang diagnostic push
301 #pragma clang diagnostic ignored "-Wdeprecated-declarations"
302 bool success = mergeField(&this->device.mVndk, &other->device.mVndk);
303 #pragma clang diagnostic pop
304 if (!success && error) *error = "<vndk> is already defined";
305 return success;
306 }
307
addVendorNdk(CompatibilityMatrix * other,std::string * error)308 bool CompatibilityMatrix::addVendorNdk(CompatibilityMatrix* other, std::string* error) {
309 bool success = mergeField(&this->device.mVendorNdk, &other->device.mVendorNdk);
310 if (!success && error) *error = "<vendor-ndk> is already defined";
311 return success;
312 }
313
addSystemSdk(CompatibilityMatrix * other,std::string *)314 bool CompatibilityMatrix::addSystemSdk(CompatibilityMatrix* other, std::string* /* error */) {
315 this->device.mSystemSdk.addAll(&other->device.mSystemSdk);
316 return true;
317 }
318
operator ==(const CompatibilityMatrix & lft,const CompatibilityMatrix & rgt)319 bool operator==(const CompatibilityMatrix &lft, const CompatibilityMatrix &rgt) {
320 // ignore fileName().
321 return lft.mType == rgt.mType && lft.mLevel == rgt.mLevel && lft.mHals == rgt.mHals &&
322 lft.mXmlFiles == rgt.mXmlFiles &&
323 (lft.mType != SchemaType::DEVICE ||
324 (
325 #pragma clang diagnostic push
326 #pragma clang diagnostic ignored "-Wdeprecated-declarations"
327 lft.device.mVndk == rgt.device.mVndk &&
328 #pragma clang diagnostic pop
329 lft.device.mVendorNdk == rgt.device.mVendorNdk &&
330 lft.device.mSystemSdk == rgt.device.mSystemSdk)) &&
331 (lft.mType != SchemaType::FRAMEWORK ||
332 (lft.framework.mKernels == rgt.framework.mKernels &&
333 lft.framework.mSepolicy == rgt.framework.mSepolicy &&
334 lft.framework.mAvbMetaVersion == rgt.framework.mAvbMetaVersion));
335 }
336
combine(Level deviceLevel,std::vector<CompatibilityMatrix> * matrices,std::string * error)337 std::unique_ptr<CompatibilityMatrix> CompatibilityMatrix::combine(
338 Level deviceLevel, std::vector<CompatibilityMatrix>* matrices, std::string* error) {
339 // Check type.
340 for (const auto& e : *matrices) {
341 if (e.type() != SchemaType::FRAMEWORK) {
342 if (error) {
343 *error = "File \"" + e.fileName() + "\" is not a framework compatibility matrix.";
344 return nullptr;
345 }
346 }
347 }
348
349 // Matrices with unspecified (empty) level are auto-filled with deviceLevel.
350 for (auto& e : *matrices) {
351 if (e.level() == Level::UNSPECIFIED) {
352 e.mLevel = deviceLevel;
353 }
354 }
355
356 // Add from low to high FCM version so that optional <kernel> requirements are added correctly.
357 // See comment in addAllAsOptional.
358 std::sort(matrices->begin(), matrices->end(),
359 [](const auto& x, const auto& y) { return x.level() < y.level(); });
360
361 auto baseMatrix = std::make_unique<CompatibilityMatrix>();
362 baseMatrix->mLevel = deviceLevel;
363 baseMatrix->mType = SchemaType::FRAMEWORK;
364
365 std::vector<std::string> parsedFiles;
366 for (auto& e : *matrices) {
367 if (e.level() < deviceLevel) {
368 continue;
369 }
370
371 bool success = false;
372 if (e.level() == deviceLevel) {
373 success = baseMatrix->addAll(&e, error);
374 } else {
375 success = baseMatrix->addAllAsOptional(&e, error);
376 }
377 if (!success) {
378 if (error) {
379 *error = "Conflict when merging \"" + e.fileName() + "\": " + *error + "\n" +
380 "Previous files:\n" + base::Join(parsedFiles, "\n");
381 }
382 return nullptr;
383 }
384 parsedFiles.push_back(e.fileName());
385 }
386
387 return baseMatrix;
388 }
389
combineDeviceMatrices(std::vector<CompatibilityMatrix> * matrices,std::string * error)390 std::unique_ptr<CompatibilityMatrix> CompatibilityMatrix::combineDeviceMatrices(
391 std::vector<CompatibilityMatrix>* matrices, std::string* error) {
392 auto baseMatrix = std::make_unique<CompatibilityMatrix>();
393 baseMatrix->mType = SchemaType::DEVICE;
394
395 std::vector<std::string> parsedFiles;
396 for (auto& e : *matrices) {
397 bool success = baseMatrix->addAll(&e, error);
398 if (!success) {
399 if (error) {
400 *error = "Conflict when merging \"" + e.fileName() + "\": " + *error + "\n" +
401 "Previous files:\n" + base::Join(parsedFiles, "\n");
402 }
403 return nullptr;
404 }
405 parsedFiles.push_back(e.fileName());
406 }
407 return baseMatrix;
408 }
409
addAll(CompatibilityMatrix * inputMatrix,std::string * error)410 bool CompatibilityMatrix::addAll(CompatibilityMatrix* inputMatrix, std::string* error) {
411 if (!addAllHals(inputMatrix, error) || !addAllXmlFiles(inputMatrix, error) ||
412 !addAllKernels(inputMatrix, error) || !addSepolicy(inputMatrix, error) ||
413 !addAvbMetaVersion(inputMatrix, error) || !addVndk(inputMatrix, error) ||
414 !addVendorNdk(inputMatrix, error) || !addSystemSdk(inputMatrix, error)) {
415 if (error) {
416 *error = "File \"" + inputMatrix->fileName() + "\" cannot be added: " + *error + ".";
417 }
418 return false;
419 }
420 return true;
421 }
422
addAllAsOptional(CompatibilityMatrix * inputMatrix,std::string * error)423 bool CompatibilityMatrix::addAllAsOptional(CompatibilityMatrix* inputMatrix, std::string* error) {
424 if (!addAllHalsAsOptional(inputMatrix, error) ||
425 !addAllXmlFilesAsOptional(inputMatrix, error) || !addAllKernels(inputMatrix, error)) {
426 if (error) {
427 *error = "File \"" + inputMatrix->fileName() + "\" cannot be added: " + *error;
428 }
429 return false;
430 }
431 // ignore <sepolicy> requirement from higher level
432 // ignore <avb> requirement from higher level
433 return true;
434 }
435
forEachInstanceOfVersion(HalFormat format,const std::string & package,const Version & expectVersion,const std::function<bool (const MatrixInstance &)> & func) const436 bool CompatibilityMatrix::forEachInstanceOfVersion(
437 HalFormat format, const std::string& package, const Version& expectVersion,
438 const std::function<bool(const MatrixInstance&)>& func) const {
439 for (const MatrixHal* hal : getHals(package)) {
440 bool cont = hal->forEachInstance([&](const MatrixInstance& matrixInstance) {
441 if (matrixInstance.format() == format &&
442 matrixInstance.versionRange().contains(expectVersion)) {
443 return func(matrixInstance);
444 }
445 return true;
446 });
447 if (!cont) return false;
448 }
449 return true;
450 }
451
matchInstance(HalFormat format,const std::string & halName,const Version & version,const std::string & interfaceName,const std::string & instance) const452 bool CompatibilityMatrix::matchInstance(HalFormat format, const std::string& halName,
453 const Version& version, const std::string& interfaceName,
454 const std::string& instance) const {
455 bool found = false;
456 (void)forEachInstanceOfInterface(format, halName, version, interfaceName,
457 [&found, &instance](const auto& e) {
458 found |= (e.matchInstance(instance));
459 return !found; // if not found, continue
460 });
461 return found;
462 }
463
getVendorNdkVersion() const464 std::string CompatibilityMatrix::getVendorNdkVersion() const {
465 return type() == SchemaType::DEVICE ? device.mVendorNdk.version() : "";
466 }
467
getSourceMatrixLevel(const MatrixKernel * matrixKernel) const468 Level CompatibilityMatrix::getSourceMatrixLevel(const MatrixKernel* matrixKernel) const {
469 CHECK(std::find_if(framework.mKernels.begin(), framework.mKernels.end(),
470 [matrixKernel](const auto& e) { return &e == matrixKernel; }) !=
471 framework.mKernels.end());
472 Level ret = matrixKernel->getSourceMatrixLevel();
473 if (ret != Level::UNSPECIFIED) return ret;
474 return level();
475 }
476
477 } // namespace vintf
478 } // namespace android
479