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 "ListCommand.h"
18 
19 #include <getopt.h>
20 
21 #include <algorithm>
22 #include <fstream>
23 #include <functional>
24 #include <iomanip>
25 #include <iostream>
26 #include <map>
27 #include <regex>
28 #include <sstream>
29 
30 #include <android-base/file.h>
31 #include <android-base/logging.h>
32 #include <android/hidl/manager/1.0/IServiceManager.h>
33 #include <hidl-hash/Hash.h>
34 #include <hidl-util/FQName.h>
35 #include <private/android_filesystem_config.h>
36 #include <sys/stat.h>
37 #include <vintf/HalManifest.h>
38 #include <vintf/parse_string.h>
39 #include <vintf/parse_xml.h>
40 
41 #include "Lshal.h"
42 #include "PipeRelay.h"
43 #include "Timeout.h"
44 #include "utils.h"
45 
46 using ::android::hardware::hidl_string;
47 using ::android::hardware::hidl_vec;
48 using ::android::hidl::base::V1_0::DebugInfo;
49 using ::android::hidl::base::V1_0::IBase;
50 using ::android::hidl::manager::V1_0::IServiceManager;
51 
52 namespace android {
53 namespace lshal {
54 
toSchemaType(Partition p)55 vintf::SchemaType toSchemaType(Partition p) {
56     return (p == Partition::SYSTEM) ? vintf::SchemaType::FRAMEWORK : vintf::SchemaType::DEVICE;
57 }
58 
toPartition(vintf::SchemaType t)59 Partition toPartition(vintf::SchemaType t) {
60     switch (t) {
61         case vintf::SchemaType::FRAMEWORK: return Partition::SYSTEM;
62         // TODO(b/71555570): Device manifest does not distinguish HALs from vendor or ODM.
63         case vintf::SchemaType::DEVICE: return Partition::VENDOR;
64     }
65     return Partition::UNKNOWN;
66 }
67 
getPackageAndVersion(const std::string & fqInstance)68 std::string getPackageAndVersion(const std::string& fqInstance) {
69     return splitFirst(fqInstance, ':').first;
70 }
71 
out() const72 NullableOStream<std::ostream> ListCommand::out() const {
73     return mLshal.out();
74 }
75 
err() const76 NullableOStream<std::ostream> ListCommand::err() const {
77     return mLshal.err();
78 }
79 
GetName()80 std::string ListCommand::GetName() {
81     return "list";
82 }
getSimpleDescription() const83 std::string ListCommand::getSimpleDescription() const {
84     return "List HIDL HALs.";
85 }
86 
parseCmdline(pid_t pid) const87 std::string ListCommand::parseCmdline(pid_t pid) const {
88     return android::procpartition::getCmdline(pid);
89 }
90 
getCmdline(pid_t pid)91 const std::string &ListCommand::getCmdline(pid_t pid) {
92     static const std::string kEmptyString{};
93     if (pid == NO_PID) return kEmptyString;
94     auto pair = mCmdlines.find(pid);
95     if (pair != mCmdlines.end()) {
96         return pair->second;
97     }
98     mCmdlines[pid] = parseCmdline(pid);
99     return mCmdlines[pid];
100 }
101 
removeDeadProcesses(Pids * pids)102 void ListCommand::removeDeadProcesses(Pids *pids) {
103     static const pid_t myPid = getpid();
104     pids->erase(std::remove_if(pids->begin(), pids->end(), [this](auto pid) {
105         return pid == myPid || this->getCmdline(pid).empty();
106     }), pids->end());
107 }
108 
getPartition(pid_t pid)109 Partition ListCommand::getPartition(pid_t pid) {
110     if (pid == NO_PID) return Partition::UNKNOWN;
111     auto it = mPartitions.find(pid);
112     if (it != mPartitions.end()) {
113         return it->second;
114     }
115     Partition partition = android::procpartition::getPartition(pid);
116     mPartitions.emplace(pid, partition);
117     return partition;
118 }
119 
120 // Give sensible defaults when nothing can be inferred from runtime.
121 // process: Partition inferred from executable location or cmdline.
resolvePartition(Partition process,const FqInstance & fqInstance) const122 Partition ListCommand::resolvePartition(Partition process, const FqInstance& fqInstance) const {
123     if (fqInstance.inPackage("vendor") || fqInstance.inPackage("com")) {
124         return Partition::VENDOR;
125     }
126 
127     if (fqInstance.inPackage("android.frameworks") || fqInstance.inPackage("android.system") ||
128         fqInstance.inPackage("android.hidl")) {
129         return Partition::SYSTEM;
130     }
131 
132     // Some android.hardware HALs are served from system. Check the value from executable
133     // location / cmdline first.
134     if (fqInstance.inPackage("android.hardware")) {
135         if (process != Partition::UNKNOWN) {
136             return process;
137         }
138         return Partition::VENDOR;
139     }
140 
141     return process;
142 }
143 
match(const vintf::ManifestInstance & instance,const FqInstance & fqInstance,vintf::TransportArch ta)144 bool match(const vintf::ManifestInstance& instance, const FqInstance& fqInstance,
145            vintf::TransportArch ta) {
146     // For hwbinder libs, allow missing arch in manifest.
147     // For passthrough libs, allow missing interface/instance in table.
148     return (ta.transport == instance.transport()) &&
149             (ta.transport == vintf::Transport::HWBINDER ||
150              vintf::contains(instance.arch(), ta.arch)) &&
151             (!fqInstance.hasInterface() || fqInstance.getInterface() == instance.interface()) &&
152             (!fqInstance.hasInstance() || fqInstance.getInstance() == instance.instance());
153 }
154 
match(const vintf::MatrixInstance & instance,const FqInstance & fqInstance,vintf::TransportArch)155 bool match(const vintf::MatrixInstance& instance, const FqInstance& fqInstance,
156            vintf::TransportArch /* ta */) {
157     return (!fqInstance.hasInterface() || fqInstance.getInterface() == instance.interface()) &&
158             (!fqInstance.hasInstance() || instance.matchInstance(fqInstance.getInstance()));
159 }
160 
161 template <typename ObjectType>
getVintfInfo(const std::shared_ptr<const ObjectType> & object,const FqInstance & fqInstance,vintf::TransportArch ta,VintfInfo value)162 VintfInfo getVintfInfo(const std::shared_ptr<const ObjectType>& object,
163                        const FqInstance& fqInstance, vintf::TransportArch ta, VintfInfo value) {
164     bool found = false;
165     (void)object->forEachHidlInstanceOfVersion(fqInstance.getPackage(), fqInstance.getVersion(),
166                                                [&](const auto& instance) {
167                                                    found = match(instance, fqInstance, ta);
168                                                    return !found; // continue if not found
169                                                });
170     return found ? value : VINTF_INFO_EMPTY;
171 }
172 
getDeviceManifest() const173 std::shared_ptr<const vintf::HalManifest> ListCommand::getDeviceManifest() const {
174     return vintf::VintfObject::GetDeviceHalManifest();
175 }
176 
getDeviceMatrix() const177 std::shared_ptr<const vintf::CompatibilityMatrix> ListCommand::getDeviceMatrix() const {
178     return vintf::VintfObject::GetDeviceCompatibilityMatrix();
179 }
180 
getFrameworkManifest() const181 std::shared_ptr<const vintf::HalManifest> ListCommand::getFrameworkManifest() const {
182     return vintf::VintfObject::GetFrameworkHalManifest();
183 }
184 
getFrameworkMatrix() const185 std::shared_ptr<const vintf::CompatibilityMatrix> ListCommand::getFrameworkMatrix() const {
186     return vintf::VintfObject::GetFrameworkCompatibilityMatrix();
187 }
188 
getVintfInfo(const std::string & fqInstanceName,vintf::TransportArch ta) const189 VintfInfo ListCommand::getVintfInfo(const std::string& fqInstanceName,
190                                     vintf::TransportArch ta) const {
191     FqInstance fqInstance;
192     if (!fqInstance.setTo(fqInstanceName) &&
193         // Ignore interface / instance for passthrough libs
194         !fqInstance.setTo(getPackageAndVersion(fqInstanceName))) {
195         err() << "Warning: Cannot parse '" << fqInstanceName << "'; no VINTF info." << std::endl;
196         return VINTF_INFO_EMPTY;
197     }
198 
199     return lshal::getVintfInfo(getDeviceManifest(), fqInstance, ta, DEVICE_MANIFEST) |
200             lshal::getVintfInfo(getFrameworkManifest(), fqInstance, ta, FRAMEWORK_MANIFEST) |
201             lshal::getVintfInfo(getDeviceMatrix(), fqInstance, ta, DEVICE_MATRIX) |
202             lshal::getVintfInfo(getFrameworkMatrix(), fqInstance, ta, FRAMEWORK_MATRIX);
203 }
204 
getPidInfo(pid_t serverPid,BinderPidInfo * pidInfo) const205 bool ListCommand::getPidInfo(
206         pid_t serverPid, BinderPidInfo *pidInfo) const {
207     const auto& status = getBinderPidInfo(BinderDebugContext::HWBINDER, serverPid, pidInfo);
208     return status == OK;
209 }
210 
getPidInfoCached(pid_t serverPid)211 const BinderPidInfo* ListCommand::getPidInfoCached(pid_t serverPid) {
212     auto pair = mCachedPidInfos.insert({serverPid, BinderPidInfo{}});
213     if (pair.second /* did insertion take place? */) {
214         if (!getPidInfo(serverPid, &pair.first->second)) {
215             return nullptr;
216         }
217     }
218     return &pair.first->second;
219 }
220 
shouldFetchHalType(const HalType & type) const221 bool ListCommand::shouldFetchHalType(const HalType &type) const {
222     return (std::find(mFetchTypes.begin(), mFetchTypes.end(), type) != mFetchTypes.end());
223 }
224 
tableForType(HalType type)225 Table* ListCommand::tableForType(HalType type) {
226     switch (type) {
227         case HalType::BINDERIZED_SERVICES:
228             return &mServicesTable;
229         case HalType::PASSTHROUGH_CLIENTS:
230             return &mPassthroughRefTable;
231         case HalType::PASSTHROUGH_LIBRARIES:
232             return &mImplementationsTable;
233         case HalType::VINTF_MANIFEST:
234             return &mManifestHalsTable;
235         case HalType::LAZY_HALS:
236             return &mLazyHalsTable;
237         default:
238             LOG(FATAL) << "Unknown HAL type " << static_cast<int64_t>(type);
239             return nullptr;
240     }
241 }
tableForType(HalType type) const242 const Table* ListCommand::tableForType(HalType type) const {
243     return const_cast<ListCommand*>(this)->tableForType(type);
244 }
245 
forEachTable(const std::function<void (Table &)> & f)246 void ListCommand::forEachTable(const std::function<void(Table &)> &f) {
247     for (const auto& type : mListTypes) {
248         f(*tableForType(type));
249     }
250 }
forEachTable(const std::function<void (const Table &)> & f) const251 void ListCommand::forEachTable(const std::function<void(const Table &)> &f) const {
252     for (const auto& type : mListTypes) {
253         f(*tableForType(type));
254     }
255 }
256 
postprocess()257 void ListCommand::postprocess() {
258     forEachTable([this](Table &table) {
259         if (mSortColumn) {
260             std::sort(table.begin(), table.end(), mSortColumn);
261         }
262         for (TableEntry &entry : table) {
263             entry.serverCmdline = getCmdline(entry.serverPid);
264             removeDeadProcesses(&entry.clientPids);
265             for (auto pid : entry.clientPids) {
266                 entry.clientCmdlines.push_back(this->getCmdline(pid));
267             }
268         }
269         for (TableEntry& entry : table) {
270             if (entry.partition == Partition::UNKNOWN) {
271                 entry.partition = getPartition(entry.serverPid);
272             }
273             entry.vintfInfo = getVintfInfo(entry.interfaceName, {entry.transport, entry.arch});
274         }
275     });
276     // use a double for loop here because lshal doesn't care about efficiency.
277     for (TableEntry &packageEntry : mImplementationsTable) {
278         std::string packageName = packageEntry.interfaceName;
279         FQName fqPackageName;
280         if (!FQName::parse(packageName.substr(0, packageName.find("::")), &fqPackageName)) {
281             continue;
282         }
283         for (TableEntry &interfaceEntry : mPassthroughRefTable) {
284             if (interfaceEntry.arch != vintf::Arch::ARCH_EMPTY) {
285                 continue;
286             }
287             FQName interfaceName;
288             if (!FQName::parse(splitFirst(interfaceEntry.interfaceName, '/').first, &interfaceName)) {
289                 continue;
290             }
291             if (interfaceName.getPackageAndVersion() == fqPackageName) {
292                 interfaceEntry.arch = packageEntry.arch;
293             }
294         }
295     }
296 
297     mServicesTable.setDescription(
298             "| All HIDL binderized services (registered with hwservicemanager)");
299     mPassthroughRefTable.setDescription(
300             "| All HIDL interfaces getService() has ever returned as a passthrough interface;\n"
301             "| PIDs / processes shown below might be inaccurate because the process\n"
302             "| might have relinquished the interface or might have died.\n"
303             "| The Server / Server CMD column can be ignored.\n"
304             "| The Clients / Clients CMD column shows all process that have ever dlopen'ed \n"
305             "| the library and successfully fetched the passthrough implementation.");
306     mImplementationsTable.setDescription(
307             "| All available HIDL passthrough implementations (all -impl.so files).\n"
308             "| These may return subclasses through their respective HIDL_FETCH_I* functions.");
309     mManifestHalsTable.setDescription(
310             "| All HIDL HALs that are in VINTF manifest.");
311     mLazyHalsTable.setDescription(
312             "| All HIDL HALs that are declared in VINTF manifest:\n"
313             "|    - as hwbinder HALs but are not registered to hwservicemanager, and\n"
314             "|    - as hwbinder/passthrough HALs with no implementation.");
315 }
316 
addEntryWithInstance(const TableEntry & entry,vintf::HalManifest * manifest) const317 bool ListCommand::addEntryWithInstance(const TableEntry& entry,
318                                        vintf::HalManifest* manifest) const {
319     FqInstance fqInstance;
320     if (!fqInstance.setTo(entry.interfaceName)) {
321         err() << "Warning: '" << entry.interfaceName << "' is not a valid FqInstance." << std::endl;
322         return false;
323     }
324 
325     if (fqInstance.getPackage() == "android.hidl.base") {
326         return true; // always remove IBase from manifest
327     }
328 
329     Partition partition = resolvePartition(entry.partition, fqInstance);
330 
331     if (partition == Partition::UNKNOWN) {
332         err() << "Warning: Cannot guess the partition of FqInstance " << fqInstance.string()
333               << std::endl;
334         return false;
335     }
336 
337     if (partition != mVintfPartition) {
338         return true; // strip out instances that is in a different partition.
339     }
340 
341     vintf::Arch arch;
342     if (entry.transport == vintf::Transport::HWBINDER) {
343         arch = vintf::Arch::ARCH_EMPTY; // no need to specify arch in manifest
344     } else if (entry.transport == vintf::Transport::PASSTHROUGH) {
345         if (entry.arch == vintf::Arch::ARCH_EMPTY) {
346             err() << "Warning: '" << entry.interfaceName << "' doesn't have bitness info.";
347             return false;
348         }
349         arch = entry.arch;
350     } else {
351         err() << "Warning: '" << entry.transport << "' is not a valid transport." << std::endl;
352         return false;
353     }
354 
355     std::string e;
356     if (!manifest->insertInstance(fqInstance, entry.transport, arch, vintf::HalFormat::HIDL, &e)) {
357         err() << "Warning: Cannot insert '" << fqInstance.string() << ": " << e << std::endl;
358         return false;
359     }
360     return true;
361 }
362 
addEntryWithoutInstance(const TableEntry & entry,const vintf::HalManifest * manifest) const363 bool ListCommand::addEntryWithoutInstance(const TableEntry& entry,
364                                           const vintf::HalManifest* manifest) const {
365     const auto& packageAndVersion = splitFirst(getPackageAndVersion(entry.interfaceName), '@');
366     const auto& package = packageAndVersion.first;
367     vintf::Version version;
368     if (!vintf::parse(packageAndVersion.second, &version)) {
369         err() << "Warning: Cannot parse version '" << packageAndVersion.second << "' for entry '"
370               << entry.interfaceName << "'" << std::endl;
371         return false;
372     }
373 
374     bool found = false;
375     (void)manifest->forEachHidlInstanceOfVersion(package, version, [&found](const auto&) {
376         found = true;
377         return false; // break
378     });
379     return found;
380 }
381 
dumpVintf(const NullableOStream<std::ostream> & out) const382 void ListCommand::dumpVintf(const NullableOStream<std::ostream>& out) const {
383     using vintf::operator|=;
384     using vintf::operator<<;
385     using namespace std::placeholders;
386 
387     vintf::HalManifest manifest;
388     manifest.setType(toSchemaType(mVintfPartition));
389 
390     std::vector<std::string> error;
391     for (const TableEntry& entry : mServicesTable)
392         if (!addEntryWithInstance(entry, &manifest)) error.push_back(entry.interfaceName);
393     for (const TableEntry& entry : mPassthroughRefTable)
394         if (!addEntryWithInstance(entry, &manifest)) error.push_back(entry.interfaceName);
395     for (const TableEntry& entry : mManifestHalsTable)
396         if (!addEntryWithInstance(entry, &manifest)) error.push_back(entry.interfaceName);
397 
398     std::vector<std::string> passthrough;
399     for (const TableEntry& entry : mImplementationsTable)
400         if (!addEntryWithoutInstance(entry, &manifest)) passthrough.push_back(entry.interfaceName);
401 
402     out << "<!-- " << std::endl
403         << "    This is a skeleton " << manifest.type() << " manifest. Notes: " << std::endl
404         << INIT_VINTF_NOTES;
405     if (!error.empty()) {
406         out << std::endl << "    The following HALs are not added; see warnings." << std::endl;
407         for (const auto& e : error) {
408             out << "        " << e << std::endl;
409         }
410     }
411     if (!passthrough.empty()) {
412         out << std::endl
413             << "    The following HALs are passthrough and no interface or instance " << std::endl
414             << "    names can be inferred." << std::endl;
415         for (const auto& e : passthrough) {
416             out << "        " << e << std::endl;
417         }
418     }
419     out << "-->" << std::endl;
420     out << vintf::toXml(manifest, vintf::SerializeFlags::HALS_ONLY);
421 }
422 
423 std::string ListCommand::INIT_VINTF_NOTES{
424     "    1. If a HAL is supported in both hwbinder and passthrough transport,\n"
425     "       only hwbinder is shown.\n"
426     "    2. It is likely that HALs in passthrough transport does not have\n"
427     "       <interface> declared; users will have to write them by hand.\n"
428     "    3. A HAL with lower minor version can be overridden by a HAL with\n"
429     "       higher minor version if they have the same name and major version.\n"
430     "    4. This output is intended for launch devices.\n"
431     "       Upgrading devices should not use this tool to generate device\n"
432     "       manifest and replace the existing manifest directly, but should\n"
433     "       edit the existing manifest manually.\n"
434     "       Specifically, devices which launched at Android O-MR1 or earlier\n"
435     "       should not use the 'fqname' format for required HAL entries and\n"
436     "       should instead use the legacy package, name, instance-name format\n"
437     "       until they are updated.\n"
438 };
439 
fromBaseArchitecture(::android::hidl::base::V1_0::DebugInfo::Architecture a)440 static vintf::Arch fromBaseArchitecture(::android::hidl::base::V1_0::DebugInfo::Architecture a) {
441     switch (a) {
442         case ::android::hidl::base::V1_0::DebugInfo::Architecture::IS_64BIT:
443             return vintf::Arch::ARCH_64;
444         case ::android::hidl::base::V1_0::DebugInfo::Architecture::IS_32BIT:
445             return vintf::Arch::ARCH_32;
446         case ::android::hidl::base::V1_0::DebugInfo::Architecture::UNKNOWN: // fallthrough
447         default:
448             return vintf::Arch::ARCH_EMPTY;
449     }
450 }
451 
dumpTable(const NullableOStream<std::ostream> & out) const452 void ListCommand::dumpTable(const NullableOStream<std::ostream>& out) const {
453     if (mNeat) {
454         std::vector<const Table*> tables;
455         forEachTable([&tables](const Table &table) {
456             tables.push_back(&table);
457         });
458         MergedTable(std::move(tables)).createTextTable().dump(out.buf());
459         return;
460     }
461 
462     forEachTable([this, &out](const Table &table) {
463 
464         // We're only interested in dumping debug info for already
465         // instantiated services. There's little value in dumping the
466         // debug info for a service we create on the fly, so we only operate
467         // on the "mServicesTable".
468         std::function<std::string(const std::string&)> emitDebugInfo = nullptr;
469         if (mEmitDebugInfo && &table == &mServicesTable) {
470             emitDebugInfo = [this](const auto& iName) {
471                 std::stringstream ss;
472                 auto pair = splitFirst(iName, '/');
473                 mLshal.emitDebugInfo(pair.first, pair.second, {},
474                                      ParentDebugInfoLevel::FQNAME_ONLY, ss,
475                                      NullableOStream<std::ostream>(nullptr));
476                 return ss.str();
477             };
478         }
479         table.createTextTable(mNeat, emitDebugInfo).dump(out.buf());
480         out << std::endl;
481     });
482 }
483 
dump()484 Status ListCommand::dump() {
485     auto dump = mVintf ? &ListCommand::dumpVintf : &ListCommand::dumpTable;
486 
487     if (mFileOutputPath.empty()) {
488         (*this.*dump)(out());
489         return OK;
490     }
491 
492     std::ofstream fileOutput(mFileOutputPath);
493     if (!fileOutput.is_open()) {
494         err() << "Could not open file '" << mFileOutputPath << "'." << std::endl;
495         return IO_ERROR;
496     }
497     chown(mFileOutputPath.c_str(), AID_SHELL, AID_SHELL);
498 
499     (*this.*dump)(NullableOStream<std::ostream>(fileOutput));
500 
501     fileOutput.flush();
502     fileOutput.close();
503     return OK;
504 }
505 
putEntry(HalType type,TableEntry && entry)506 void ListCommand::putEntry(HalType type, TableEntry &&entry) {
507     tableForType(type)->add(std::forward<TableEntry>(entry));
508 }
509 
fetchAllLibraries(const sp<IServiceManager> & manager)510 Status ListCommand::fetchAllLibraries(const sp<IServiceManager> &manager) {
511     if (!shouldFetchHalType(HalType::PASSTHROUGH_LIBRARIES)) { return OK; }
512 
513     using namespace ::android::hardware;
514     using namespace ::android::hidl::manager::V1_0;
515     using namespace ::android::hidl::base::V1_0;
516     using std::literals::chrono_literals::operator""s;
517     auto ret = timeoutIPC(10s, manager, &IServiceManager::debugDump, [&] (const auto &infos) {
518         std::map<std::string, TableEntry> entries;
519         for (const auto &info : infos) {
520             std::string interfaceName = std::string{info.interfaceName.c_str()} + "/" +
521                     std::string{info.instanceName.c_str()};
522             entries.emplace(interfaceName, TableEntry{
523                 .interfaceName = interfaceName,
524                 .transport = vintf::Transport::PASSTHROUGH,
525                 .clientPids = info.clientPids,
526             }).first->second.arch |= fromBaseArchitecture(info.arch);
527         }
528         for (auto &&pair : entries) {
529             putEntry(HalType::PASSTHROUGH_LIBRARIES, std::move(pair.second));
530         }
531     });
532     if (!ret.isOk()) {
533         err() << "Error: Failed to call list on getPassthroughServiceManager(): "
534              << ret.description() << std::endl;
535         return DUMP_ALL_LIBS_ERROR;
536     }
537     return OK;
538 }
539 
fetchPassthrough(const sp<IServiceManager> & manager)540 Status ListCommand::fetchPassthrough(const sp<IServiceManager> &manager) {
541     if (!shouldFetchHalType(HalType::PASSTHROUGH_CLIENTS)) { return OK; }
542 
543     using namespace ::android::hardware;
544     using namespace ::android::hardware::details;
545     using namespace ::android::hidl::manager::V1_0;
546     using namespace ::android::hidl::base::V1_0;
547     auto ret = timeoutIPC(manager, &IServiceManager::debugDump, [&] (const auto &infos) {
548         for (const auto &info : infos) {
549             if (info.clientPids.size() <= 0) {
550                 continue;
551             }
552             putEntry(HalType::PASSTHROUGH_CLIENTS, {
553                 .interfaceName =
554                         std::string{info.interfaceName.c_str()} + "/" +
555                         std::string{info.instanceName.c_str()},
556                 .transport = vintf::Transport::PASSTHROUGH,
557                 .serverPid = info.clientPids.size() == 1 ? info.clientPids[0] : NO_PID,
558                 .clientPids = info.clientPids,
559                 .arch = fromBaseArchitecture(info.arch)
560             });
561         }
562     });
563     if (!ret.isOk()) {
564         err() << "Error: Failed to call debugDump on defaultServiceManager(): "
565              << ret.description() << std::endl;
566         return DUMP_PASSTHROUGH_ERROR;
567     }
568     return OK;
569 }
570 
fetchBinderized(const sp<IServiceManager> & manager)571 Status ListCommand::fetchBinderized(const sp<IServiceManager> &manager) {
572     using vintf::operator<<;
573 
574     if (!shouldFetchHalType(HalType::BINDERIZED_SERVICES)) { return OK; }
575 
576     const vintf::Transport mode = vintf::Transport::HWBINDER;
577     hidl_vec<hidl_string> fqInstanceNames;
578     // copying out for timeoutIPC
579     auto listRet = timeoutIPC(manager, &IServiceManager::list, [&] (const auto &names) {
580         fqInstanceNames = names;
581     });
582     if (!listRet.isOk()) {
583         err() << "Error: Failed to list services for " << mode << ": "
584              << listRet.description() << std::endl;
585         return DUMP_BINDERIZED_ERROR;
586     }
587 
588     Status status = OK;
589     std::map<std::string, TableEntry> allTableEntries;
590     for (const auto &fqInstanceName : fqInstanceNames) {
591         // create entry and default assign all fields.
592         TableEntry& entry = allTableEntries[fqInstanceName];
593         entry.interfaceName = fqInstanceName;
594         entry.transport = mode;
595         entry.serviceStatus = ServiceStatus::NON_RESPONSIVE;
596 
597         status |= fetchBinderizedEntry(manager, &entry);
598     }
599 
600     for (auto& pair : allTableEntries) {
601         putEntry(HalType::BINDERIZED_SERVICES, std::move(pair.second));
602     }
603     return status;
604 }
605 
fetchBinderizedEntry(const sp<IServiceManager> & manager,TableEntry * entry)606 Status ListCommand::fetchBinderizedEntry(const sp<IServiceManager> &manager,
607                                          TableEntry *entry) {
608     Status status = OK;
609     const auto handleError = [&](Status additionalError, const std::string& msg) {
610         err() << "Warning: Skipping \"" << entry->interfaceName << "\": " << msg << std::endl;
611         status |= DUMP_BINDERIZED_ERROR | additionalError;
612     };
613 
614     const auto pair = splitFirst(entry->interfaceName, '/');
615     const auto &serviceName = pair.first;
616     const auto &instanceName = pair.second;
617     auto getRet = timeoutIPC(manager, &IServiceManager::get, serviceName, instanceName);
618     if (!getRet.isOk()) {
619         handleError(TRANSACTION_ERROR,
620                     "cannot be fetched from service manager:" + getRet.description());
621         return status;
622     }
623     sp<IBase> service = getRet;
624     if (service == nullptr) {
625         handleError(NO_INTERFACE, "cannot be fetched from service manager (null)");
626         return status;
627     }
628 
629     // getDebugInfo
630     do {
631         DebugInfo debugInfo;
632         auto debugRet = timeoutIPC(service, &IBase::getDebugInfo, [&] (const auto &received) {
633             debugInfo = received;
634         });
635         if (!debugRet.isOk()) {
636             handleError(TRANSACTION_ERROR,
637                         "debugging information cannot be retrieved: " + debugRet.description());
638             break; // skip getPidInfo
639         }
640 
641         entry->serverPid = debugInfo.pid;
642         entry->serverObjectAddress = debugInfo.ptr;
643         entry->arch = fromBaseArchitecture(debugInfo.arch);
644 
645         if (debugInfo.pid != NO_PID) {
646             const BinderPidInfo* pidInfo = getPidInfoCached(debugInfo.pid);
647             if (pidInfo == nullptr) {
648                 handleError(IO_ERROR,
649                             "no information for PID " + std::to_string(debugInfo.pid) +
650                             ", are you root?");
651                 break;
652             }
653             if (debugInfo.ptr != NO_PTR) {
654                 auto it = pidInfo->refPids.find(debugInfo.ptr);
655                 if (it != pidInfo->refPids.end()) {
656                     entry->clientPids = it->second;
657                 }
658             }
659             entry->threadUsage = pidInfo->threadUsage;
660             entry->threadCount = pidInfo->threadCount;
661         }
662     } while (0);
663 
664     // hash
665     do {
666         ssize_t hashIndex = -1;
667         auto ifaceChainRet = timeoutIPC(service, &IBase::interfaceChain, [&] (const auto& c) {
668             for (size_t i = 0; i < c.size(); ++i) {
669                 if (serviceName == c[i]) {
670                     hashIndex = static_cast<ssize_t>(i);
671                     break;
672                 }
673             }
674         });
675         if (!ifaceChainRet.isOk()) {
676             handleError(TRANSACTION_ERROR,
677                         "interfaceChain fails: " + ifaceChainRet.description());
678             break; // skip getHashChain
679         }
680         if (hashIndex < 0) {
681             handleError(BAD_IMPL, "Interface name does not exist in interfaceChain.");
682             break; // skip getHashChain
683         }
684         auto hashRet = timeoutIPC(service, &IBase::getHashChain, [&] (const auto& hashChain) {
685             if (static_cast<size_t>(hashIndex) >= hashChain.size()) {
686                 handleError(BAD_IMPL,
687                             "interfaceChain indicates position " + std::to_string(hashIndex) +
688                             " but getHashChain returns " + std::to_string(hashChain.size()) +
689                             " hashes");
690                 return;
691             }
692 
693             auto&& hashArray = hashChain[hashIndex];
694             std::vector<uint8_t> hashVec{hashArray.data(), hashArray.data() + hashArray.size()};
695             entry->hash = Hash::hexString(hashVec);
696         });
697         if (!hashRet.isOk()) {
698             handleError(TRANSACTION_ERROR, "getHashChain failed: " + hashRet.description());
699         }
700     } while (0);
701     if (status == OK) {
702         entry->serviceStatus = ServiceStatus::ALIVE;
703     }
704     return status;
705 }
706 
fetchManifestHals()707 Status ListCommand::fetchManifestHals() {
708     if (!shouldFetchHalType(HalType::VINTF_MANIFEST)) { return OK; }
709     Status status = OK;
710 
711     for (auto manifest : {getDeviceManifest(), getFrameworkManifest()}) {
712         if (manifest == nullptr) {
713             status |= VINTF_ERROR;
714             continue;
715         }
716 
717         std::map<std::string, TableEntry> entries;
718 
719         manifest->forEachHidlInstance([&] (const vintf::ManifestInstance& manifestInstance) {
720             TableEntry entry{
721                 .interfaceName = manifestInstance.description(),
722                 .transport = manifestInstance.transport(),
723                 .arch = manifestInstance.arch(),
724                 // TODO(b/71555570): Device manifest does not distinguish HALs from vendor or ODM.
725                 .partition = toPartition(manifest->type()),
726                 .serviceStatus = ServiceStatus::DECLARED};
727             std::string key = entry.interfaceName;
728             entries.emplace(std::move(key), std::move(entry));
729             return true;
730         });
731 
732         for (auto&& pair : entries)
733             mManifestHalsTable.add(std::move(pair.second));
734     }
735     return status;
736 }
737 
fetchLazyHals()738 Status ListCommand::fetchLazyHals() {
739     using vintf::operator<<;
740 
741     if (!shouldFetchHalType(HalType::LAZY_HALS)) { return OK; }
742     Status status = OK;
743 
744     for (const TableEntry& manifestEntry : mManifestHalsTable) {
745         if (manifestEntry.transport == vintf::Transport::HWBINDER) {
746             if (!hasHwbinderEntry(manifestEntry)) {
747                 mLazyHalsTable.add(TableEntry(manifestEntry));
748             }
749             continue;
750         }
751         if (manifestEntry.transport == vintf::Transport::PASSTHROUGH) {
752             if (!hasPassthroughEntry(manifestEntry)) {
753                 mLazyHalsTable.add(TableEntry(manifestEntry));
754             }
755             continue;
756         }
757         err() << "Warning: unrecognized transport in VINTF manifest: "
758               << manifestEntry.transport;
759         status |= VINTF_ERROR;
760     }
761     return status;
762 }
763 
hasHwbinderEntry(const TableEntry & entry) const764 bool ListCommand::hasHwbinderEntry(const TableEntry& entry) const {
765     for (const TableEntry& existing : mServicesTable) {
766         if (existing.interfaceName == entry.interfaceName) {
767             return true;
768         }
769     }
770     return false;
771 }
772 
hasPassthroughEntry(const TableEntry & entry) const773 bool ListCommand::hasPassthroughEntry(const TableEntry& entry) const {
774     FqInstance entryFqInstance;
775     if (!entryFqInstance.setTo(entry.interfaceName)) {
776         return false; // cannot parse, so add it anyway.
777     }
778     for (const TableEntry& existing : mImplementationsTable) {
779         FqInstance existingFqInstance;
780         if (!existingFqInstance.setTo(getPackageAndVersion(existing.interfaceName))) {
781             continue;
782         }
783 
784         // For example, manifest may say graphics.mapper@2.1 but passthroughServiceManager
785         // can only list graphics.mapper@2.0.
786         if (entryFqInstance.getPackage() == existingFqInstance.getPackage() &&
787             vintf::Version{entryFqInstance.getVersion()}
788                 .minorAtLeast(vintf::Version{existingFqInstance.getVersion()})) {
789             return true;
790         }
791     }
792     return false;
793 }
794 
fetch()795 Status ListCommand::fetch() {
796     Status status = OK;
797     auto bManager = mLshal.serviceManager();
798     if (bManager == nullptr) {
799         err() << "Failed to get defaultServiceManager()!" << std::endl;
800         status |= NO_BINDERIZED_MANAGER;
801     } else {
802         status |= fetchBinderized(bManager);
803         // Passthrough PIDs are registered to the binderized manager as well.
804         status |= fetchPassthrough(bManager);
805     }
806 
807     auto pManager = mLshal.passthroughManager();
808     if (pManager == nullptr) {
809         err() << "Failed to get getPassthroughServiceManager()!" << std::endl;
810         status |= NO_PASSTHROUGH_MANAGER;
811     } else {
812         status |= fetchAllLibraries(pManager);
813     }
814     status |= fetchManifestHals();
815     status |= fetchLazyHals();
816     return status;
817 }
818 
initFetchTypes()819 void ListCommand::initFetchTypes() {
820     // TODO: refactor to do polymorphism on each table (so that dependency graph is not hardcoded).
821     static const std::map<HalType, std::set<HalType>> kDependencyGraph{
822         {HalType::LAZY_HALS, {HalType::BINDERIZED_SERVICES,
823                               HalType::PASSTHROUGH_LIBRARIES,
824                               HalType::VINTF_MANIFEST}},
825     };
826     mFetchTypes.insert(mListTypes.begin(), mListTypes.end());
827     for (HalType listType : mListTypes) {
828         auto it = kDependencyGraph.find(listType);
829         if (it != kDependencyGraph.end()) {
830             mFetchTypes.insert(it->second.begin(), it->second.end());
831         }
832     }
833 }
834 
835 // Get all values of enum type T, assuming the first value is 0 and the last value is T::LAST.
836 // T::LAST is not included in the returned list.
837 template <typename T>
GetAllValues()838 std::vector<T> GetAllValues() {
839     using BaseType = std::underlying_type_t<T>;
840     std::vector<T> ret;
841     for (BaseType i = 0; i < static_cast<BaseType>(T::LAST); ++i) {
842         ret.push_back(static_cast<T>(i));
843     }
844     return ret;
845 }
846 
registerAllOptions()847 void ListCommand::registerAllOptions() {
848     int v = mOptions.size();
849     // A list of acceptable command line options
850     // key: value returned by getopt_long
851     // long options with short alternatives
852     mOptions.push_back({'h', "help", no_argument, v++, [](ListCommand*, const char*) {
853         return USAGE;
854     }, ""});
855     mOptions.push_back({'i', "interface", no_argument, v++, [](ListCommand* thiz, const char*) {
856         thiz->mSelectedColumns.push_back(TableColumnType::INTERFACE_NAME);
857         return OK;
858     }, "print the instance name column"});
859     mOptions.push_back({'l', "released", no_argument, v++, [](ListCommand* thiz, const char*) {
860         thiz->mSelectedColumns.push_back(TableColumnType::RELEASED);
861         return OK;
862     }, "print the 'is released?' column\n(Y=released, N=unreleased, ?=unknown)"});
863     mOptions.push_back({'t', "transport", no_argument, v++, [](ListCommand* thiz, const char*) {
864         thiz->mSelectedColumns.push_back(TableColumnType::TRANSPORT);
865         return OK;
866     }, "print the transport mode column"});
867     mOptions.push_back({'r', "arch", no_argument, v++, [](ListCommand* thiz, const char*) {
868         thiz->mSelectedColumns.push_back(TableColumnType::ARCH);
869         return OK;
870     }, "print the bitness column"});
871     mOptions.push_back({'s', "hash", no_argument, v++, [](ListCommand* thiz, const char*) {
872         thiz->mSelectedColumns.push_back(TableColumnType::HASH);
873         return OK;
874     }, "print hash of the interface"});
875     mOptions.push_back({'p', "pid", no_argument, v++, [](ListCommand* thiz, const char*) {
876         thiz->mSelectedColumns.push_back(TableColumnType::SERVER_PID);
877         return OK;
878     }, "print the server PID, or server cmdline if -m is set"});
879     mOptions.push_back({'a', "address", no_argument, v++, [](ListCommand* thiz, const char*) {
880         thiz->mSelectedColumns.push_back(TableColumnType::SERVER_ADDR);
881         return OK;
882     }, "print the server object address column"});
883     mOptions.push_back({'c', "clients", no_argument, v++, [](ListCommand* thiz, const char*) {
884         thiz->mSelectedColumns.push_back(TableColumnType::CLIENT_PIDS);
885         return OK;
886     }, "print the client PIDs, or client cmdlines if -m is set"});
887     mOptions.push_back({'e', "threads", no_argument, v++, [](ListCommand* thiz, const char*) {
888         thiz->mSelectedColumns.push_back(TableColumnType::THREADS);
889         return OK;
890     }, "print currently used/available threads\n(note, available threads created lazily)"});
891     mOptions.push_back({'m', "cmdline", no_argument, v++, [](ListCommand* thiz, const char*) {
892         thiz->mEnableCmdlines = true;
893         return OK;
894     }, "print cmdline instead of PIDs"});
895     mOptions.push_back({'d', "debug", optional_argument, v++, [](ListCommand* thiz, const char* arg) {
896         thiz->mEmitDebugInfo = true;
897         if (arg) thiz->mFileOutputPath = arg;
898         return OK;
899     }, "Emit debug info from\nIBase::debug with empty options. Cannot be used with --neat.\n"
900         "Writes to specified file if 'arg' is provided, otherwise stdout."});
901 
902     mOptions.push_back({'V', "vintf", no_argument, v++, [](ListCommand* thiz, const char*) {
903         thiz->mSelectedColumns.push_back(TableColumnType::VINTF);
904         return OK;
905     }, "print VINTF info. This column contains a comma-separated list of:\n"
906        "    - DM: if the HIDL HAL is in the device manifest\n"
907        "    - DC: if the HIDL HAL is in the device compatibility matrix\n"
908        "    - FM: if the HIDL HAL is in the framework manifest\n"
909        "    - FC: if the HIDL HAL is in the framework compatibility matrix\n"
910        "    - X: if the HIDL HAL is in none of the above lists"});
911     mOptions.push_back({'S', "service-status", no_argument, v++, [](ListCommand* thiz, const char*) {
912         thiz->mSelectedColumns.push_back(TableColumnType::SERVICE_STATUS);
913         return OK;
914     }, "print service status column. Possible values are:\n"
915        "    - alive: alive and running hwbinder service;\n"
916        "    - registered;dead: registered to hwservicemanager but is not responsive;\n"
917        "    - declared: only declared in VINTF manifest but is not registered to hwservicemanager;\n"
918        "    - N/A: no information for passthrough HALs."});
919 
920     mOptions.push_back({'A', "all", no_argument, v++,
921                         [](ListCommand* thiz, const char*) {
922                             auto allColumns = GetAllValues<TableColumnType>();
923                             thiz->mSelectedColumns.insert(thiz->mSelectedColumns.end(),
924                                                           allColumns.begin(), allColumns.end());
925                             return OK;
926                         },
927                         "print all columns"});
928 
929     // long options without short alternatives
930     mOptions.push_back({'\0', "init-vintf", no_argument, v++, [](ListCommand* thiz, const char* arg) {
931         thiz->mVintf = true;
932         if (thiz->mVintfPartition == Partition::UNKNOWN)
933             thiz->mVintfPartition = Partition::VENDOR;
934         if (arg) thiz->mFileOutputPath = arg;
935         return OK;
936     }, "form a skeleton HAL manifest to specified file,\nor stdout if no file specified."});
937     mOptions.push_back({'\0', "init-vintf-partition", required_argument, v++, [](ListCommand* thiz, const char* arg) {
938         if (!arg) return USAGE;
939         thiz->mVintfPartition = android::procpartition::parsePartition(arg);
940         if (thiz->mVintfPartition == Partition::UNKNOWN) return USAGE;
941         return OK;
942     }, "Specify the partition of the HAL manifest\ngenerated by --init-vintf.\n"
943        "Valid values are 'system', 'vendor', and 'odm'. Default is 'vendor'."});
944     mOptions.push_back({'\0', "sort", required_argument, v++, [](ListCommand* thiz, const char* arg) {
945         if (strcmp(arg, "interface") == 0 || strcmp(arg, "i") == 0) {
946             thiz->mSortColumn = TableEntry::sortByInterfaceName;
947         } else if (strcmp(arg, "pid") == 0 || strcmp(arg, "p") == 0) {
948             thiz->mSortColumn = TableEntry::sortByServerPid;
949         } else {
950             thiz->err() << "Unrecognized sorting column: " << arg << std::endl;
951             return USAGE;
952         }
953         return OK;
954     }, "sort by a column. 'arg' can be (i|interface) or (p|pid)."});
955     mOptions.push_back({'\0', "neat", no_argument, v++, [](ListCommand* thiz, const char*) {
956         thiz->mNeat = true;
957         return OK;
958     }, "output is machine parsable (no explanatory text).\nCannot be used with --debug."});
959     mOptions.push_back(
960             {'\0', "types", required_argument, v++,
961              [](ListCommand* thiz, const char* arg) {
962                  if (!arg) {
963                      return USAGE;
964                  }
965 
966                  static const std::map<std::string, std::vector<HalType>> kHalTypeMap{
967                          {"binderized", {HalType::BINDERIZED_SERVICES}},
968                          {"b", {HalType::BINDERIZED_SERVICES}},
969                          {"passthrough_clients", {HalType::PASSTHROUGH_CLIENTS}},
970                          {"c", {HalType::PASSTHROUGH_CLIENTS}},
971                          {"passthrough_libs", {HalType::PASSTHROUGH_LIBRARIES}},
972                          {"l", {HalType::PASSTHROUGH_LIBRARIES}},
973                          {"vintf", {HalType::VINTF_MANIFEST}},
974                          {"v", {HalType::VINTF_MANIFEST}},
975                          {"lazy", {HalType::LAZY_HALS}},
976                          {"z", {HalType::LAZY_HALS}},
977                          {"all", GetAllValues<HalType>()},
978                          {"a", GetAllValues<HalType>()},
979                  };
980 
981                  std::vector<std::string> halTypesArgs = split(std::string(arg), ',');
982                  for (const auto& halTypeArg : halTypesArgs) {
983                      if (halTypeArg.empty()) continue;
984 
985                      const auto& halTypeIter = kHalTypeMap.find(halTypeArg);
986                      if (halTypeIter == kHalTypeMap.end()) {
987                          thiz->err() << "Unrecognized HAL type: " << halTypeArg << std::endl;
988                          return USAGE;
989                      }
990 
991                      // Append unique (non-repeated) HAL types to the reporting list
992                      for (auto halType : halTypeIter->second) {
993                          if (std::find(thiz->mListTypes.begin(), thiz->mListTypes.end(), halType) ==
994                              thiz->mListTypes.end()) {
995                              thiz->mListTypes.push_back(halType);
996                          }
997                      }
998                  }
999 
1000                  if (thiz->mListTypes.empty()) {
1001                      return USAGE;
1002                  }
1003                  return OK;
1004              },
1005              "comma-separated list of one or more sections.\nThe output is restricted to the "
1006              "selected section(s). Valid options\nare: (b|binderized), (c|passthrough_clients), (l|"
1007              "passthrough_libs), (v|vintf), (z|lazy), and (a|all).\nDefault is `b,c,l`."});
1008 }
1009 
1010 // Create 'longopts' argument to getopt_long. Caller is responsible for maintaining
1011 // the lifetime of "options" during the usage of the returned array.
getLongOptions(const ListCommand::RegisteredOptions & options,int * longOptFlag)1012 static std::unique_ptr<struct option[]> getLongOptions(
1013         const ListCommand::RegisteredOptions& options,
1014         int* longOptFlag) {
1015     std::unique_ptr<struct option[]> ret{new struct option[options.size() + 1]};
1016     int i = 0;
1017     for (const auto& e : options) {
1018         ret[i].name = e.longOption.c_str();
1019         ret[i].has_arg = e.hasArg;
1020         ret[i].flag = longOptFlag;
1021         ret[i].val = e.val;
1022 
1023         i++;
1024     }
1025     // getopt_long last option has all zeros
1026     ret[i].name = nullptr;
1027     ret[i].has_arg = 0;
1028     ret[i].flag = nullptr;
1029     ret[i].val = 0;
1030 
1031     return ret;
1032 }
1033 
1034 // Create 'optstring' argument to getopt_long.
1035 static std::string getShortOptions(const ListCommand::RegisteredOptions& options) {
1036     std::stringstream ss;
1037     for (const auto& e : options) {
1038         if (e.shortOption != '\0') {
1039             ss << e.shortOption;
1040         }
1041     }
1042     return ss.str();
1043 }
1044 
1045 Status ListCommand::parseArgs(const Arg &arg) {
1046     mListTypes.clear();
1047 
1048     if (mOptions.empty()) {
1049         registerAllOptions();
1050     }
1051     int longOptFlag;
1052     std::unique_ptr<struct option[]> longOptions = getLongOptions(mOptions, &longOptFlag);
1053     std::string shortOptions = getShortOptions(mOptions);
1054 
1055     // suppress output to std::err for unknown options
1056     opterr = 0;
1057 
1058     int optionIndex;
1059     int c;
1060     // Lshal::parseArgs has set optind to the next option to parse
1061     for (;;) {
1062         c = getopt_long(arg.argc, arg.argv,
1063                 shortOptions.c_str(), longOptions.get(), &optionIndex);
1064         if (c == -1) {
1065             break;
1066         }
1067         const RegisteredOption* found = nullptr;
1068         if (c == 0) {
1069             // see long option
1070             for (const auto& e : mOptions) {
1071                 if (longOptFlag == e.val) found = &e;
1072             }
1073         } else {
1074             // see short option
1075             for (const auto& e : mOptions) {
1076                 if (c == e.shortOption) found = &e;
1077             }
1078         }
1079 
1080         if (found == nullptr) {
1081             // see unrecognized options
1082             err() << "unrecognized option `" << arg.argv[optind - 1] << "'" << std::endl;
1083             return USAGE;
1084         }
1085 
1086         Status status = found->op(this, optarg);
1087         if (status != OK) {
1088             return status;
1089         }
1090     }
1091     if (optind < arg.argc) {
1092         // see non option
1093         err() << "unrecognized option `" << arg.argv[optind] << "'" << std::endl;
1094         return USAGE;
1095     }
1096 
1097     if (mNeat && mEmitDebugInfo) {
1098         err() << "Error: --neat should not be used with --debug." << std::endl;
1099         return USAGE;
1100     }
1101 
1102     if (mSelectedColumns.empty()) {
1103         mSelectedColumns = {TableColumnType::VINTF, TableColumnType::RELEASED,
1104                             TableColumnType::INTERFACE_NAME, TableColumnType::THREADS,
1105                             TableColumnType::SERVER_PID, TableColumnType::CLIENT_PIDS};
1106     }
1107 
1108     if (mEnableCmdlines) {
1109         for (size_t i = 0; i < mSelectedColumns.size(); ++i) {
1110             if (mSelectedColumns[i] == TableColumnType::SERVER_PID) {
1111                 mSelectedColumns[i] = TableColumnType::SERVER_CMD;
1112             }
1113             if (mSelectedColumns[i] == TableColumnType::CLIENT_PIDS) {
1114                 mSelectedColumns[i] = TableColumnType::CLIENT_CMDS;
1115             }
1116         }
1117     }
1118 
1119     // By default, list all HAL types
1120     if (mListTypes.empty()) {
1121         mListTypes = {HalType::BINDERIZED_SERVICES, HalType::PASSTHROUGH_CLIENTS,
1122                       HalType::PASSTHROUGH_LIBRARIES};
1123     }
1124     initFetchTypes();
1125 
1126     forEachTable([this] (Table& table) {
1127         table.setSelectedColumns(this->mSelectedColumns);
1128     });
1129 
1130     return OK;
1131 }
1132 
1133 Status ListCommand::main(const Arg &arg) {
1134     Status status = parseArgs(arg);
1135     if (status != OK) {
1136         return status;
1137     }
1138     status = fetch();
1139     postprocess();
1140     status |= dump();
1141     return status;
1142 }
1143 
1144 const std::string& ListCommand::RegisteredOption::getHelpMessageForArgument() const {
1145     static const std::string empty{};
1146     static const std::string optional{"[=<arg>]"};
1147     static const std::string required{"=<arg>"};
1148 
1149     if (hasArg == optional_argument) {
1150         return optional;
1151     }
1152     if (hasArg == required_argument) {
1153         return required;
1154     }
1155     return empty;
1156 }
1157 
1158 void ListCommand::usage() const {
1159 
1160     err() << "list:" << std::endl
1161           << "    lshal" << std::endl
1162           << "    lshal list" << std::endl
1163           << "        List all hals with default ordering and columns (`lshal list -Vliepc`)" << std::endl
1164           << "    lshal list [-h|--help]" << std::endl
1165           << "        -h, --help: Print help message for list (`lshal help list`)" << std::endl
1166           << "    lshal [list] [OPTIONS...]" << std::endl;
1167     for (const auto& e : mOptions) {
1168         if (e.help.empty()) {
1169             continue;
1170         }
1171         err() << "        ";
1172         if (e.shortOption != '\0')
1173             err() << "-" << e.shortOption << e.getHelpMessageForArgument();
1174         if (e.shortOption != '\0' && !e.longOption.empty())
1175             err() << ", ";
1176         if (!e.longOption.empty())
1177             err() << "--" << e.longOption << e.getHelpMessageForArgument();
1178         err() << ": ";
1179         std::vector<std::string> lines = split(e.help, '\n');
1180         for (const auto& line : lines) {
1181             if (&line != &lines.front())
1182                 err() << "            ";
1183             err() << line << std::endl;
1184         }
1185     }
1186 }
1187 
1188 }  // namespace lshal
1189 }  // namespace android
1190 
1191