2020-10-11 19:35:19 +03:00
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#include "lock.hh"
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2023-10-25 07:43:36 +03:00
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#include "file-system.hh"
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2020-05-20 00:25:44 +03:00
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#include "globals.hh"
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#include "pathlocks.hh"
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2024-03-29 21:40:56 +02:00
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#include "users.hh"
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2020-05-20 00:25:44 +03:00
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2020-10-17 20:25:17 +03:00
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#include <pwd.h>
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#include <grp.h>
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2020-05-20 00:25:44 +03:00
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namespace nix {
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2023-10-24 20:30:37 +03:00
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#if __linux__
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static std::vector<gid_t> get_group_list(const char *username, gid_t group_id)
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{
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std::vector<gid_t> gids;
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gids.resize(32); // Initial guess
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auto getgroupl_failed {[&] {
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int ngroups = gids.size();
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int err = getgrouplist(username, group_id, gids.data(), &ngroups);
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gids.resize(ngroups);
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return err == -1;
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}};
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// The first error means that the vector was not big enough.
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// If it happens again, there is some different problem.
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if (getgroupl_failed() && getgroupl_failed()) {
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throw SysError("failed to get list of supplementary groups for '%s'", username);
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}
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return gids;
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}
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#endif
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2020-05-20 00:25:44 +03:00
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struct SimpleUserLock : UserLock
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{
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AutoCloseFD fdUserLock;
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uid_t uid;
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gid_t gid;
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std::vector<gid_t> supplementaryGIDs;
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2022-11-08 17:03:42 +02:00
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uid_t getUID() override { assert(uid); return uid; }
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uid_t getUIDCount() override { return 1; }
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2020-05-20 00:25:44 +03:00
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gid_t getGID() override { assert(gid); return gid; }
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std::vector<gid_t> getSupplementaryGIDs() override { return supplementaryGIDs; }
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static std::unique_ptr<UserLock> acquire()
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{
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assert(settings.buildUsersGroup != "");
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createDirs(settings.nixStateDir + "/userpool");
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/* Get the members of the build-users-group. */
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struct group * gr = getgrnam(settings.buildUsersGroup.get().c_str());
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if (!gr)
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throw Error("the group '%s' specified in 'build-users-group' does not exist", settings.buildUsersGroup);
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/* Copy the result of getgrnam. */
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Strings users;
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for (char * * p = gr->gr_mem; *p; ++p) {
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debug("found build user '%s'", *p);
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users.push_back(*p);
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}
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if (users.empty())
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throw Error("the build users group '%s' has no members", settings.buildUsersGroup);
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/* Find a user account that isn't currently in use for another
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build. */
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for (auto & i : users) {
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debug("trying user '%s'", i);
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struct passwd * pw = getpwnam(i.c_str());
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if (!pw)
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throw Error("the user '%s' in the group '%s' does not exist", i, settings.buildUsersGroup);
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auto fnUserLock = fmt("%s/userpool/%s", settings.nixStateDir,pw->pw_uid);
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AutoCloseFD fd = open(fnUserLock.c_str(), O_RDWR | O_CREAT | O_CLOEXEC, 0600);
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if (!fd)
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throw SysError("opening user lock '%s'", fnUserLock);
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if (lockFile(fd.get(), ltWrite, false)) {
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auto lock = std::make_unique<SimpleUserLock>();
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lock->fdUserLock = std::move(fd);
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lock->uid = pw->pw_uid;
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lock->gid = gr->gr_gid;
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/* Sanity check... */
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if (lock->uid == getuid() || lock->uid == geteuid())
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throw Error("the Nix user should not be a member of '%s'", settings.buildUsersGroup);
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#if __linux__
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2023-10-24 20:30:37 +03:00
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/* Get the list of supplementary groups of this user. This is
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* usually either empty or contains a group such as "kvm". */
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2020-05-20 00:25:44 +03:00
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2022-11-03 18:43:40 +02:00
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// Finally, trim back the GID list to its real size.
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2023-10-24 20:30:37 +03:00
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for (auto gid : get_group_list(pw->pw_name, pw->pw_gid)) {
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if (gid != lock->gid)
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lock->supplementaryGIDs.push_back(gid);
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}
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2020-05-20 00:25:44 +03:00
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#endif
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return lock;
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}
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}
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return nullptr;
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}
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};
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2022-11-08 17:03:42 +02:00
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struct AutoUserLock : UserLock
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2020-05-20 00:25:44 +03:00
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{
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AutoCloseFD fdUserLock;
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2022-11-08 17:03:42 +02:00
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uid_t firstUid = 0;
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2022-11-21 13:55:49 +02:00
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gid_t firstGid = 0;
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2022-11-08 17:03:42 +02:00
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uid_t nrIds = 1;
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2020-05-20 00:25:44 +03:00
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2022-11-08 17:03:42 +02:00
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uid_t getUID() override { assert(firstUid); return firstUid; }
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gid_t getUIDCount() override { return nrIds; }
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2020-05-20 00:25:44 +03:00
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2022-11-21 13:55:49 +02:00
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gid_t getGID() override { assert(firstGid); return firstGid; }
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2020-05-20 00:25:44 +03:00
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2020-05-20 12:57:33 +03:00
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std::vector<gid_t> getSupplementaryGIDs() override { return {}; }
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2020-05-20 00:25:44 +03:00
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2023-01-05 14:58:55 +02:00
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static std::unique_ptr<UserLock> acquire(uid_t nrIds, bool useUserNamespace)
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2020-05-20 00:25:44 +03:00
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{
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2023-01-05 14:58:55 +02:00
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#if !defined(__linux__)
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useUserNamespace = false;
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#endif
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2023-03-17 16:33:48 +02:00
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experimentalFeatureSettings.require(Xp::AutoAllocateUids);
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2020-05-20 00:25:44 +03:00
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assert(settings.startId > 0);
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2022-11-08 17:03:42 +02:00
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assert(settings.uidCount % maxIdsPerBuild == 0);
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2020-05-20 00:25:44 +03:00
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assert((uint64_t) settings.startId + (uint64_t) settings.uidCount <= std::numeric_limits<uid_t>::max());
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2022-11-08 17:03:42 +02:00
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assert(nrIds <= maxIdsPerBuild);
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2020-05-20 00:25:44 +03:00
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createDirs(settings.nixStateDir + "/userpool2");
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2022-11-08 17:03:42 +02:00
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size_t nrSlots = settings.uidCount / maxIdsPerBuild;
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2020-05-20 00:25:44 +03:00
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for (size_t i = 0; i < nrSlots; i++) {
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debug("trying user slot '%d'", i);
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createDirs(settings.nixStateDir + "/userpool2");
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auto fnUserLock = fmt("%s/userpool2/slot-%d", settings.nixStateDir, i);
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AutoCloseFD fd = open(fnUserLock.c_str(), O_RDWR | O_CREAT | O_CLOEXEC, 0600);
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if (!fd)
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throw SysError("opening user lock '%s'", fnUserLock);
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if (lockFile(fd.get(), ltWrite, false)) {
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2022-11-28 21:49:17 +02:00
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auto firstUid = settings.startId + i * maxIdsPerBuild;
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auto pw = getpwuid(firstUid);
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if (pw)
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throw Error("auto-allocated UID %d clashes with existing user account '%s'", firstUid, pw->pw_name);
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2022-11-08 17:03:42 +02:00
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auto lock = std::make_unique<AutoUserLock>();
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lock->fdUserLock = std::move(fd);
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2022-11-28 21:49:17 +02:00
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lock->firstUid = firstUid;
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2023-01-05 14:58:55 +02:00
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if (useUserNamespace)
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2022-11-28 21:49:17 +02:00
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lock->firstGid = firstUid;
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2022-11-21 13:55:49 +02:00
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else {
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struct group * gr = getgrnam(settings.buildUsersGroup.get().c_str());
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if (!gr)
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throw Error("the group '%s' specified in 'build-users-group' does not exist", settings.buildUsersGroup);
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lock->firstGid = gr->gr_gid;
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}
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2022-11-08 17:03:42 +02:00
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lock->nrIds = nrIds;
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return lock;
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}
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2020-05-20 00:25:44 +03:00
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}
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2022-11-08 17:03:42 +02:00
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return nullptr;
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}
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2020-05-20 00:25:44 +03:00
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};
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2023-01-05 14:58:55 +02:00
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std::unique_ptr<UserLock> acquireUserLock(uid_t nrIds, bool useUserNamespace)
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2020-05-20 00:25:44 +03:00
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{
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if (settings.autoAllocateUids)
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2023-01-05 14:58:55 +02:00
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return AutoUserLock::acquire(nrIds, useUserNamespace);
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2020-05-20 00:25:44 +03:00
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else
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return SimpleUserLock::acquire();
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}
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2020-05-20 12:24:21 +03:00
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bool useBuildUsers()
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{
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#if __linux__
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2024-03-29 21:40:56 +02:00
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static bool b = (settings.buildUsersGroup != "" || settings.autoAllocateUids) && isRootUser();
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2020-05-20 12:24:21 +03:00
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return b;
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#elif __APPLE__
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2024-03-29 21:40:56 +02:00
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static bool b = settings.buildUsersGroup != "" && isRootUser();
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2020-05-20 12:24:21 +03:00
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return b;
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#else
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return false;
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#endif
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}
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2020-05-20 00:25:44 +03:00
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}
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