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2a78bf8596
The Process::Handler type has KResultOr<FlatPtr> as its return type. Using a different return type with an equally-sized template parameter sort of works but breaks once that condition is no longer true, e.g. for KResultOr<int> on x86_64. Ideally the syscall handlers would also take FlatPtrs as their args so we can get rid of the reinterpret_cast for the function pointer but I didn't quite feel like cleaning that up as well.
188 lines
4.3 KiB
C++
188 lines
4.3 KiB
C++
/*
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* Copyright (c) 2018-2020, Andreas Kling <kling@serenityos.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <Kernel/Process.h>
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namespace Kernel {
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KResultOr<FlatPtr> Process::sys$seteuid(uid_t new_euid)
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{
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REQUIRE_PROMISE(id);
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if (new_euid != uid() && new_euid != suid() && !is_superuser())
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return EPERM;
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if (euid() != new_euid)
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set_dumpable(false);
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ProtectedDataMutationScope scope { *this };
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m_euid = new_euid;
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return 0;
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}
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KResultOr<FlatPtr> Process::sys$setegid(gid_t new_egid)
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{
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REQUIRE_PROMISE(id);
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if (new_egid != gid() && new_egid != sgid() && !is_superuser())
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return EPERM;
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if (egid() != new_egid)
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set_dumpable(false);
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ProtectedDataMutationScope scope { *this };
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m_egid = new_egid;
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return 0;
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}
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KResultOr<FlatPtr> Process::sys$setuid(uid_t new_uid)
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{
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REQUIRE_PROMISE(id);
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if (new_uid != uid() && new_uid != euid() && !is_superuser())
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return EPERM;
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if (euid() != new_uid)
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set_dumpable(false);
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ProtectedDataMutationScope scope { *this };
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m_uid = new_uid;
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m_euid = new_uid;
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m_suid = new_uid;
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return 0;
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}
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KResultOr<FlatPtr> Process::sys$setgid(gid_t new_gid)
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{
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REQUIRE_PROMISE(id);
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if (new_gid != gid() && new_gid != egid() && !is_superuser())
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return EPERM;
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if (egid() != new_gid)
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set_dumpable(false);
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ProtectedDataMutationScope scope { *this };
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m_gid = new_gid;
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m_egid = new_gid;
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m_sgid = new_gid;
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return 0;
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}
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KResultOr<FlatPtr> Process::sys$setreuid(uid_t new_ruid, uid_t new_euid)
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{
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REQUIRE_PROMISE(id);
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if (new_ruid == (uid_t)-1)
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new_ruid = uid();
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if (new_euid == (uid_t)-1)
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new_euid = euid();
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auto ok = [this](uid_t id) { return id == uid() || id == euid() || id == suid(); };
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if (!ok(new_ruid) || !ok(new_euid))
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return EPERM;
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if (new_ruid < (uid_t)-1 || new_euid < (uid_t)-1)
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return EINVAL;
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if (euid() != new_euid)
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set_dumpable(false);
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ProtectedDataMutationScope scope { *this };
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m_uid = new_ruid;
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m_euid = new_euid;
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return 0;
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}
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KResultOr<FlatPtr> Process::sys$setresuid(uid_t new_ruid, uid_t new_euid, uid_t new_suid)
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{
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REQUIRE_PROMISE(id);
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if (new_ruid == (uid_t)-1)
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new_ruid = uid();
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if (new_euid == (uid_t)-1)
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new_euid = euid();
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if (new_suid == (uid_t)-1)
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new_suid = suid();
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auto ok = [this](uid_t id) { return id == uid() || id == euid() || id == suid(); };
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if ((!ok(new_ruid) || !ok(new_euid) || !ok(new_suid)) && !is_superuser())
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return EPERM;
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if (euid() != new_euid)
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set_dumpable(false);
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ProtectedDataMutationScope scope { *this };
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m_uid = new_ruid;
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m_euid = new_euid;
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m_suid = new_suid;
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return 0;
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}
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KResultOr<FlatPtr> Process::sys$setresgid(gid_t new_rgid, gid_t new_egid, gid_t new_sgid)
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{
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REQUIRE_PROMISE(id);
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if (new_rgid == (gid_t)-1)
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new_rgid = gid();
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if (new_egid == (gid_t)-1)
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new_egid = egid();
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if (new_sgid == (gid_t)-1)
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new_sgid = sgid();
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auto ok = [this](gid_t id) { return id == gid() || id == egid() || id == sgid(); };
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if ((!ok(new_rgid) || !ok(new_egid) || !ok(new_sgid)) && !is_superuser())
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return EPERM;
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if (egid() != new_egid)
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set_dumpable(false);
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ProtectedDataMutationScope scope { *this };
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m_gid = new_rgid;
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m_egid = new_egid;
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m_sgid = new_sgid;
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return 0;
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}
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KResultOr<FlatPtr> Process::sys$setgroups(size_t count, Userspace<const gid_t*> user_gids)
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{
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REQUIRE_PROMISE(id);
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if (!is_superuser())
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return EPERM;
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if (!count) {
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ProtectedDataMutationScope scope { *this };
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m_extra_gids.clear();
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return 0;
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}
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Vector<gid_t> new_extra_gids;
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if (!new_extra_gids.try_resize(count))
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return ENOMEM;
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if (!copy_n_from_user(new_extra_gids.data(), user_gids, count))
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return EFAULT;
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HashTable<gid_t> unique_extra_gids;
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for (auto& extra_gid : new_extra_gids) {
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if (extra_gid != gid())
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unique_extra_gids.set(extra_gid);
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}
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ProtectedDataMutationScope scope { *this };
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if (!m_extra_gids.try_resize(unique_extra_gids.size()))
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return ENOMEM;
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size_t i = 0;
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for (auto& extra_gid : unique_extra_gids) {
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if (extra_gid == gid())
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continue;
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m_extra_gids[i++] = extra_gid;
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}
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return 0;
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}
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}
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