| Age | Commit message (Collapse) | Author |
|
Add the first Landlock tracepoints, for ruleset lifecycle:
landlock_create_ruleset fires from the landlock_create_ruleset() syscall
handler, and landlock_free_ruleset fires in free_ruleset() before the
ruleset is freed.
These tracepoints, and the ones added by the following commits, share a
common design. Rather than one polymorphic event distinguished by a
status field (as audit uses a shared record type with a "status="
field), each lifecycle transition and denial type gets its own event
with a type-safe TP_PROTO, giving precise ftrace filtering by event name
and type-safe eBPF access. TP_PROTO passes the object pointer and the
fields are read from it in TP_fast_assign, so an eBPF program reads the
full object state (rules, access masks, hierarchy) via BTF from a single
pointer rather than from the flattened TP_STRUCT__entry fields. The
whole cost is paid only when a tracer is attached; the static branch is
not taken otherwise. Trace fields carry the bare access-right and scope
names (read_file), reusing the audit name tables; audit prepends the
category (fs.read_file), which the trace event name already conveys.
The trace header's DOC comment documents the consistency and locking
guarantees these events share.
create_ruleset needs no lock because the ruleset is not yet shared (its
file descriptor is not yet installed). The deallocation events use the
"free_" prefix, not "drop_", because they fire when the object is
actually freed.
Add trace.c, built for CONFIG_TRACEPOINTS, which defines
CREATE_TRACE_POINTS, and extend CONFIG_SECURITY_LANDLOCK_LOG to also be
selected by CONFIG_TRACEPOINTS so the common log framework is available
to a tracepoints-only build.
Add an id field to struct landlock_ruleset, gated on CONFIG_TRACEPOINTS
and assigned from landlock_get_id_range() at creation. Only the
tracepoints consume it (audit identifies domains, not rulesets), so it
does not exist in an audit-only build. The Landlock ID is a stable u64
that names the ruleset across the trace stream and uses the same scheme
as audit, so a ruleset can be correlated between trace and audit
records.
Cc: Günther Noack <gnoack@google.com>
Cc: Justin Suess <utilityemal77@gmail.com>
Cc: Masami Hiramatsu <mhiramat@kernel.org>
Cc: Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
Cc: Steven Rostedt <rostedt@goodmis.org>
Cc: Tingmao Wang <m@maowtm.org>
Link: https://patch.msgid.link/20260811094338.288094-8-mic@digikod.net
Signed-off-by: Mickaël Salaün <mic@digikod.net>
|
|
Tracepoint emission requires the denial framework (layer identification,
request validation) without depending on CONFIG_AUDIT. Separate the
denial logging infrastructure from the audit-specific code by
introducing a common log framework.
Create CONFIG_SECURITY_LANDLOCK_LOG, enabled by default when
CONFIG_AUDIT is set; a following commit extends it to CONFIG_TRACEPOINTS
when the first tracepoint consumer is added. Move the common framework
(the request types, the layer identification and request validation, and
the landlock_log_denial() and landlock_log_free_domain() entry points)
into log.c and log.h, and keep the audit-specific record formatting in
audit.c. log.o is built for CONFIG_SECURITY_LANDLOCK_LOG and audit.o for
CONFIG_AUDIT, so the common framework is available to a tracepoints-only
build. The entry points dispatch to no-op static inline audit stubs
without CONFIG_AUDIT, so the call sites stay unconditional. Rename the
former landlock_log_drop_domain() to landlock_log_free_domain() to match
the landlock_free_domain tracepoint added in a following commit.
landlock_log_denial() counts denials even without audit, so its
declaration and no-op stub are guarded by CONFIG_SECURITY_LANDLOCK_LOG,
not CONFIG_AUDIT; a CONFIG_AUDIT guard would expose the stub and clash
with log.c's definition in a tracepoints-only build.
Widen the ID allocation (id.o and the landlock_init_id() /
landlock_get_id_range() declarations) and the log-state representation
(the domain_exec and log_subdomains_off credential fields, the
landlock_hierarchy log fields, and the code that maintains them) from
CONFIG_AUDIT to CONFIG_SECURITY_LANDLOCK_LOG, so each field and its
writer share one guard and are available to tracing without audit
support.
Widen the denial-path state that feeds the per-denial logging decision
the same way, so the "logged" verdict is computed identically whether or
not CONFIG_AUDIT is set. Widening fown_layer is what keeps the
file-owner-signal path valid without audit: otherwise
hook_file_send_sigiotask() would leave layer_plus_one at zero, tripping
the is_valid_request() canary and dropping the LANDLOCK_SCOPE_SIGNAL
denial from tracing.
The ruleset-level quiet_masks stays on no CONFIG guard: it is builder
state validated and stored from user input, kept available so
LANDLOCK_ADD_RULE_QUIET flags are accepted and ignored, not rejected,
when CONFIG_SECURITY_LANDLOCK_LOG is disabled.
Cc: Günther Noack <gnoack@google.com>
Link: https://patch.msgid.link/20260811094338.288094-5-mic@digikod.net
Signed-off-by: Mickaël Salaün <mic@digikod.net>
|
|
Add the SECURITY_LANDLOCK_KUNIT_TEST option to enable KUnit tests for
Landlock. The minimal required configuration is listed in the
security/landlock/.kunitconfig file.
Add an initial landlock_fs KUnit test suite with 7 test cases for
filesystem helpers. These are related to the LANDLOCK_ACCESS_FS_REFER
right.
There is one KUnit test case per:
* mutated state (e.g. test_scope_to_request_*) or,
* shared state between tests (e.g. test_is_eaccess_*).
Add macros to improve readability of tests (i.e. one per line). Test
cases are collocated with the tested functions to help maintenance and
improve documentation. This is why SECURITY_LANDLOCK_KUNIT_TEST cannot
be set as module.
This is a nice complement to Landlock's user space kselftests. We
expect new Landlock features to come with KUnit tests as well.
Thanks to UML support, we can run all KUnit tests for Landlock with:
./tools/testing/kunit/kunit.py run --kunitconfig security/landlock
[00:00:00] ======================= landlock_fs =======================
[00:00:00] [PASSED] test_no_more_access
[00:00:00] [PASSED] test_scope_to_request_with_exec_none
[00:00:00] [PASSED] test_scope_to_request_with_exec_some
[00:00:00] [PASSED] test_scope_to_request_without_access
[00:00:00] [PASSED] test_is_eacces_with_none
[00:00:00] [PASSED] test_is_eacces_with_refer
[00:00:00] [PASSED] test_is_eacces_with_write
[00:00:00] =================== [PASSED] landlock_fs ===================
[00:00:00] ============================================================
[00:00:00] Testing complete. Ran 7 tests: passed: 7
Cc: Konstantin Meskhidze <konstantin.meskhidze@huawei.com>
Reviewed-by: Günther Noack <gnoack@google.com>
Link: https://lore.kernel.org/r/20240118113632.1948478-1-mic@digikod.net
Signed-off-by: Mickaël Salaün <mic@digikod.net>
|
|
Add network rules support in the ruleset management helpers and the
landlock_create_ruleset() syscall. Extend user space API to support
network actions:
* Add new network access rights: LANDLOCK_ACCESS_NET_BIND_TCP and
LANDLOCK_ACCESS_NET_CONNECT_TCP.
* Add a new network rule type: LANDLOCK_RULE_NET_PORT tied to struct
landlock_net_port_attr. The allowed_access field contains the network
access rights, and the port field contains the port value according to
the controlled protocol. This field can take up to a 64-bit value
but the maximum value depends on the related protocol (e.g. 16-bit
value for TCP). Network port is in host endianness [1].
* Add a new handled_access_net field to struct landlock_ruleset_attr
that contains network access rights.
* Increment the Landlock ABI version to 4.
Implement socket_bind() and socket_connect() LSM hooks, which enable
to control TCP socket binding and connection to specific ports.
Expand access_masks_t from u16 to u32 to be able to store network access
rights alongside filesystem access rights for rulesets' handled access
rights.
Access rights are not tied to socket file descriptors but checked at
bind() or connect() call time against the caller's Landlock domain. For
the filesystem, a file descriptor is a direct access to a file/data.
However, for network sockets, we cannot identify for which data or peer
a newly created socket will give access to. Indeed, we need to wait for
a connect or bind request to identify the use case for this socket.
Likewise a directory file descriptor may enable to open another file
(i.e. a new data item), but this opening is also restricted by the
caller's domain, not the file descriptor's access rights [2].
[1] https://lore.kernel.org/r/278ab07f-7583-a4e0-3d37-1bacd091531d@digikod.net
[2] https://lore.kernel.org/r/263c1eb3-602f-57fe-8450-3f138581bee7@digikod.net
Signed-off-by: Konstantin Meskhidze <konstantin.meskhidze@huawei.com>
Link: https://lore.kernel.org/r/20231026014751.414649-9-konstantin.meskhidze@huawei.com
[mic: Extend commit message, fix typo in comments, and specify
endianness in the documentation]
Co-developed-by: Mickaël Salaün <mic@digikod.net>
Signed-off-by: Mickaël Salaün <mic@digikod.net>
|
|
hostfs creates a new inode for each opened or created file, which
created useless inode allocations and forbade identifying a host file
with a kernel inode.
Fix this uncommon filesystem behavior by tying kernel inodes to host
file's inode and device IDs. Even if the host filesystem inodes may be
recycled, this cannot happen while a file referencing it is opened,
which is the case with hostfs. It should be noted that hostfs inode IDs
may not be unique for the same hostfs superblock because multiple host's
(backed) superblocks may be used.
Delete inodes when dropping them to force backed host's file descriptors
closing.
This enables to entirely remove ARCH_EPHEMERAL_INODES, and then makes
Landlock fully supported by UML. This is very useful for testing
changes.
These changes also factor out and simplify some helpers thanks to the
new hostfs_inode_update() and the hostfs_iget() revamp: read_name(),
hostfs_create(), hostfs_lookup(), hostfs_mknod(), and
hostfs_fill_sb_common().
A following commit with new Landlock tests check this new hostfs inode
consistency.
Cc: Anton Ivanov <anton.ivanov@cambridgegreys.com>
Cc: Johannes Berg <johannes@sipsolutions.net>
Acked-by: Richard Weinberger <richard@nod.at>
Link: https://lore.kernel.org/r/20230612191430.339153-2-mic@digikod.net
Signed-off-by: Mickaël Salaün <mic@digikod.net>
|
|
Using Landlock objects and ruleset, it is possible to tag inodes
according to a process's domain. To enable an unprivileged process to
express a file hierarchy, it first needs to open a directory (or a file)
and pass this file descriptor to the kernel through
landlock_add_rule(2). When checking if a file access request is
allowed, we walk from the requested dentry to the real root, following
the different mount layers. The access to each "tagged" inodes are
collected according to their rule layer level, and ANDed to create
access to the requested file hierarchy. This makes possible to identify
a lot of files without tagging every inodes nor modifying the
filesystem, while still following the view and understanding the user
has from the filesystem.
Add a new ARCH_EPHEMERAL_INODES for UML because it currently does not
keep the same struct inodes for the same inodes whereas these inodes are
in use.
This commit adds a minimal set of supported filesystem access-control
which doesn't enable to restrict all file-related actions. This is the
result of multiple discussions to minimize the code of Landlock to ease
review. Thanks to the Landlock design, extending this access-control
without breaking user space will not be a problem. Moreover, seccomp
filters can be used to restrict the use of syscall families which may
not be currently handled by Landlock.
Cc: Al Viro <viro@zeniv.linux.org.uk>
Cc: Anton Ivanov <anton.ivanov@cambridgegreys.com>
Cc: James Morris <jmorris@namei.org>
Cc: Jann Horn <jannh@google.com>
Cc: Jeff Dike <jdike@addtoit.com>
Cc: Kees Cook <keescook@chromium.org>
Cc: Richard Weinberger <richard@nod.at>
Cc: Serge E. Hallyn <serge@hallyn.com>
Signed-off-by: Mickaël Salaün <mic@linux.microsoft.com>
Link: https://lore.kernel.org/r/20210422154123.13086-8-mic@digikod.net
Signed-off-by: James Morris <jamorris@linux.microsoft.com>
|
|
A Landlock object enables to identify a kernel object (e.g. an inode).
A Landlock rule is a set of access rights allowed on an object. Rules
are grouped in rulesets that may be tied to a set of processes (i.e.
subjects) to enforce a scoped access-control (i.e. a domain).
Because Landlock's goal is to empower any process (especially
unprivileged ones) to sandbox themselves, we cannot rely on a
system-wide object identification such as file extended attributes.
Indeed, we need innocuous, composable and modular access-controls.
The main challenge with these constraints is to identify kernel objects
while this identification is useful (i.e. when a security policy makes
use of this object). But this identification data should be freed once
no policy is using it. This ephemeral tagging should not and may not be
written in the filesystem. We then need to manage the lifetime of a
rule according to the lifetime of its objects. To avoid a global lock,
this implementation make use of RCU and counters to safely reference
objects.
A following commit uses this generic object management for inodes.
Cc: James Morris <jmorris@namei.org>
Signed-off-by: Mickaël Salaün <mic@linux.microsoft.com>
Reviewed-by: Jann Horn <jannh@google.com>
Acked-by: Serge Hallyn <serge@hallyn.com>
Reviewed-by: Kees Cook <keescook@chromium.org>
Link: https://lore.kernel.org/r/20210422154123.13086-2-mic@digikod.net
Signed-off-by: James Morris <jamorris@linux.microsoft.com>
|