if stdin is connected to a closed pipe or similar, imply
PTY_FORWARD_READ_ONLY so we don't even try to read from it
in the first place. Otherwise we'll immediately get a hangup
which will cause the forwarder to call sd_event_exit() and
shut down the event loop.
Debugged-by: Christian Brauner <brauner@kernel.org>
# Context
#40195 defines the initial proposal and the motivation behind this PR.
This PR introduces 3 new options for `.link` files `[Link]` section:
- `IRQAffinityPolicy=`
- `IRQAffinity=`
- `IRQAffinityNUMA=`
The purpose is to allow `systemd-udevd` to configure a NIC's IRQs
affinity to specific CPU(s).
`IRQAffinityPolicy=` supports two policies:
- `single`: assign all the NIC IRQs to CPU 0, or the first CPU in the
CPU set resulting from the union of `IRQAffinity=` and
`IRQAffinityNUMA=`.
- `spread`: assign all the NIC IRQs to all the CPUs (or the union of
`IRQAffinity=` and `IRQAffinityNUMA=` if defined) in a round-robin
fashion while optimizing for cache locally while spreading apart queues
on CPUs as much as possible.
Both `IRQAffinity=` and `IRQAffinityNUMA=` behaves as filters to reduce
the CPU set to assign IRQs to, and are only valid if
`IRQAffinityPolicy=` is defined.
# Spreading IRQs
This section describes the algorithm responsible for spreading IRQs over
different CPUs to maximize performance.
## 1. Discover CPU topology
Read from `/sys/devices/system/cpu/cpu*/topology` to identify:
- L3 cache domains (dies)
- Physical cores VS hyperthreads
- NUMA nodes
- Core ordering within each die
```
Example: Dual-socket server with 2 dies per socket, 4 cores per die
┌─────────────────────────────────────────────────────────────────┐
│ NUMA Node 0 │
│ ┌─────────────────────────┐ ┌─────────────────────────┐ │
│ │ Die 0 (L3 Cache) │ │ Die 1 (L3 Cache) │ │
│ │ ┌────┐┌────┐┌────┐┌────│ │ ┌────┐┌────┐┌────┐┌────│ │
│ │ │ C0 ││ C1 ││ C2 ││ C3 │ │ │ C4 ││ C5 ││ C6 ││ C7 │ │
│ │ │0,16││1,17││2,18││3,19│ │ │4,20││5,21││6,22││7,23│ │
│ │ └────┘└────┘└────┘└────│ │ └────┘└────┘└────┘└────│ │
│ └─────────────────────────┘ └─────────────────────────┘ │
└─────────────────────────────────────────────────────────────────┘
┌─────────────────────────────────────────────────────────────────┐
│ NUMA Node 1 │
│ ┌─────────────────────────┐ ┌─────────────────────────┐ │
│ │ Die 2 (L3 Cache) │ │ Die 3 (L3 Cache) │ │
│ │ ┌────┐┌────┐┌────┐┌────│ │ ┌────┐┌────┐┌────┐┌────│ │
│ │ │ C8 ││ C9 ││C10 ││C11 │ │ │C12 ││C13 ││C14 ││C15 │ │
│ │ │8,24││9,25││10,2││11,2│ │ │12,2││13,2││14,3││15,3│ │
│ │ └────┘└────┘└────┘└────│ │ └────┘└────┘└────┘└────│ │
│ └─────────────────────────┘ └─────────────────────────┘ │
└─────────────────────────────────────────────────────────────────┘
(Numbers show CPU IDs: first HT, second HT)
```
## 2. Filter the first hyperthread only
Use only the first hyperthread of each physical core to avoid SMT
contention. Two IRQs on sibling HTs contend for ALU/cache without cache
benefit.
```
Before: CPUs 0-31 (16 cores × 2 HTs)
After: CPUs 0-15 (first HT of each core)
```
## 3. Equidistant permutations
Reorder dies and CPUs so consecutive selections are maximally spread
apart.
```
Original order: [0, 1, 2, 3] (adjacent dies/CPUs)
|
v
Equidistant: [0, 2, 1, 3] (spread apart)
```
This ensures that even if only 2 IRQs are assigned, they land on dies 0
and 2 (not 0 and 1), maximizing physical distance. The permutation is
also applied within each die:
```
Die permutation: Die0 -> Die2 -> Die1 -> Die3
Within each die:
┌───────────────────────────────────────────────┐
│ Die 0: [C0,C1,C2,C3] -> [C0,C2,C1,C3] │
│ Die 1: [C4,C5,C6,C7] -> [C4,C6,C5,C7] │
│ Die 2: [C8,C9,C10,C11] -> [C8,C10,C9,C11] │
│ Die 3: [C12,C13,C14,C15] -> [C12,C14,C13,C15] │
└───────────────────────────────────────────────┘
```
## 4. Round-robin selection across dies
Pick one CPU from each die in rotation, following permuted order.
```
Round 1: Die0->C0 Die2->C8 Die1->C4 Die3->C12
| | | |
v v v v
IRQs: [IRQ0] [IRQ1] [IRQ2] [IRQ3]
Round 2: Die0->C2 Die2->C10 Die1->C6 Die3->C14
| | | |
v v v v
IRQs: [IRQ4] [IRQ5] [IRQ6] [IRQ7]
```
If there are more IRQs than physical cores, this logic wraps around and
reuse CPUs. Only the first hyperthread of each core is used to avoid
cache line contention between queues.
Closes#40195.
- test-random-util is reworked to not use sqrt()
- pretty-print.c inlines ceil() so libm doesn't have
to be linked into libshared
- We add fno-math-errno to allow inlining of more math
functions by not requiring standard math functions to
set errno on invalid input.
Run acquire_root_devno() on the varlink-provided node so symlinks (e.g.
/dev/disk/by-id/...) resolve to their canonical /dev/ path before being
used. Without this, sym_fdisk_partname() produces a "-partN" symlink
that udev hasn't created yet when repart calls open() on it right after
BLKPG_ADD_PARTITION, failing with ENOENT.
This also brings the varlink path in line with the CLI path's
partition-to-whole-disk and dm-crypt-to-backing resolution.
The fuzzy translations are always wrong, but meson's integration does
not allow skipping them. Add a tiny wrapper for 'msgmerge' to
workaround the issue and skip them when running ninja systemd-update-po
SNP requires a named, stable CPU model so the launch measurement is
reproducible across hosts. EPYC-v4 is the baseline that covers all
SNP-capable processors (Milan and later).
Signed-off-by: Paul Meyer <katexochen0@gmail.com>
Add --confidential-computing=sev-snp to run the guest as an AMD SEV-SNP
confidential VM. Loads a raw OVMF firmware blob via -bios (SNP doesn't
support the pflash + NVRAM split), attaches a sev-snp-guest object,
and hashes the kernel, initrd and cmdline into the launch measurement
when direct kernel boot is used. Incompatible features (Secure Boot,
CXL, virtio-balloon, SMBIOS credentials) are rejected or disabled; an
attached vTPM must be treated as untrusted by the guest.
The feature is marked experimental in the man page.
Co-developed-by: Claude Opus 4.7 <noreply@anthropic.com>
Signed-off-by: Paul Meyer <katexochen0@gmail.com>
Add support for filtering IRQ affinity to CPUs on a specific NUMA node
via the new IRQAffinityNUMA= option in .link files. The option accepts:
- "local": use the NUMA node local to the NIC's PCIe slot
- Explicit node number (0, 1, 2, ...): use CPUs on the specified node
When both IRQAffinity= and IRQAffinityNUMA= are specified, their
intersection is used. If the intersection is empty, an error is logged
and IRQ affinity configuration is skipped.
When "local" is specified but the device's NUMA node cannot be
determined (numa_node shows -1), a warning is logged and IRQ affinity
configuration is skipped.
Add IRQAffinity= option to .link files that filters the set of CPUs
eligible for IRQ placement. This works in conjunction with
IRQAffinityPolicy= to constrain which CPUs receive network IRQs.
When specified with spread policy, only the listed CPUs are considered
for IRQ distribution. When specified with single policy, IRQs are
pinned to the first CPU in the allowed set instead of CPU 0.
Implement the spread policy for IRQ affinity distribution using a
topology-aware algorithm. The algorithm:
1. Discovers CPU topology from sysfs (NUMA node, package, die/L3, core)
2. Groups CPUs by L3 cache domain (die) with equidistant ordering
3. Round-robins across dies, spreading IRQs across the system
4. Uses first hyperthread of each core before second hyperthreads
5. Applies IRQ affinity via /proc/irq/<n>/smp_affinity
When there are more IRQs than CPUs, queues wrap around using round-robin.
Add support for configuring IRQ affinity for network interfaces via
systemd .link files. For now, the new IRQAffinityPolicy= option in the [Link]
section only accepts "single", which pins all MSI IRQs to CPU 0.
This allows declarative IRQ affinity configuration for network devices
during udev processing, which is useful for optimizing network
performance on multi-core systems.
Further commits will expand the options supported by IRQAffinityPolicy=.
Let's bail out early if the packet claims to contain some
questions or answer RRs, but the remaining packet data size is not
enough to hold a single such entry.
Follow-up for e7cd836dcf.
For every built executable, internal shared library, and plugin module,
verify two link-time properties via readelf:
1. No imported GLIBC symbol's version is newer than 2.34.
2. The dynamic section's NEEDED entries reference only glibc, the
runtime linker, our own libraries.
exp10() has a symbol version > 2.34 on latest glibc. To allow
dropping our baseline required glibc runtime version to <= 2.34,
let's add our own version to prevent pulling in the newer symbol
from glibc.
Methods:
- `io.systemd.Job.List` — list all queued jobs or look up by `id`/`unit`
name, with streaming support. Uses context/runtime split: `JobContext`
(Unit, JobType) and `JobRuntime` (Id, State, Result,
ActivationDetails). Follows the same SELinux and parameter-conflict
patterns as `io.systemd.Unit.List`.
- `io.systemd.Job.Cancel` — cancel a specific job by ID, with SELinux
and polkit authorization.
- `io.systemd.Job.ClearAll` — cancel all pending jobs, with SELinux and
polkit authorization.
There exists a small window of time in icmp6_bind() between creating the
ICMPv6 socket and binding it to an ifindex, where the link-scoped socket
can process an ICMPv6 packet received on any interface. The applies to
both sd-radv and sd-ndisc codepaths.
This change adds an explicit check for ifindex on the receive path and
ignores packets received on other interfaces.
Co-developed-by: OpenAI Codex <noreply@openai.com>
`message_skip_fields()` recursively processes D-Bus variant types in
message header fields with no depth limit. A crafted message with deeply
nested variants can cause unbounded recursion and overflow the stack.
Add a `depth` parameter checked against `BUS_CONTAINER_DEPTH` (128),
matching the limit already enforced by the public
`sd_bus_message_skip()` API. All recursive call sites pass `depth + 1`,
and the top-level caller in `message_parse_fields()` passes `0`.
The existing error reporting for the varlink `StartTransient` code
was converting all errors into `VARLINK_ERROR_UNIT_BAD_SETTING`.
This is not correct in some cases, we need to have a more targted
pattern here, i.e. only convert EINVAL to VARLINK_ERROR_UNIT_BAD_SETTING
and otherwise return the matching varlink error from the errno instead.
This commit fixes this issue. Thanks to Ivan Kruglov for raising
this.
Each dlopen_*() wrapper kept its dl handle as a file-scope
'static void *xxx_dl = NULL;' even though only the wrapper itself
ever referenced it. Move each one inside the corresponding function
so its scope matches its actual use, leaving the rest of each
translation unit free of the unused file-scope name.
In pcre2-util.c the assert(pcre2_dl) in pattern_matches_and_log()
becomes assert(sym_pcre2_match), which carries the same invariant
(pattern_compile_and_log() ran dlopen_pcre2()).
Commit 881e4717c7 ("test: pin stress-ng --vm-method to a portable
scalar method in TEST-55-OOMD") pinned --vm-method=zero-one with the
rationale that it is "a long-standing scalar method". That rationale is
wrong: stress_vm_zero_one() in stress-ng's stress-vm.c is declared
static size_t TARGET_CLONES stress_vm_zero_one(...)
i.e. it carries the exact same TARGET_CLONES attribute as 33 of the 35
other vm methods. On x86_64 with GCC >=5, TARGET_CLONES expands (see
core-target-clones.h in stress-ng) to a target_clones attribute
including "arch=skylake-avx512", "arch=cooperlake", "arch=tigerlake",
"arch=sapphirerapids", and several other AVX-512-bearing arch variants,
plus "default". GCC generates AVX-512 clones of stress_vm_zero_one() and
the IFUNC resolver picks them on any CPU that advertises AVX-512.
The only vm methods in stress-ng's registry whose function definitions
omit TARGET_CLONES entirely (and are therefore guaranteed not to
dispatch to an AVX-512 clone) are lfsr32 (portable, always registered)
and write64ds (x86_64-only, gated on HAVE_ASM_X86_MOVDIRI, i.e. Intel
Tremont / Tiger Lake+ MOVDIRI instruction).
Switch the four stress-ng --vm invocations in TEST-55-OOMD to
--vm-method=lfsr32 so the AVX-512 SIGILL on CPUs without AVX-512 (e.g.
AMD Zen 1-3) can no longer occur regardless of compiler version,
optimization level, or stress-ng package build.
Follow-up for 881e4717c7
Co-developed-by: Claude Opus 4.7 <noreply@anthropic.com>
The test waited for the OnFailure= service's filesystem side effect
(`rmdir` of the directory) and then immediately invoked
`systemctl is-active`. Between `rmdir(2)` returning (which causes the
shell loop to exit) and PID1 reaping the child and transitioning the
oneshot service from `activating` to `active`, there is a small window
where `is-active` can observe `activating` and fail the test.
Wait directly on the unit state instead, matching the pattern used a
few lines above for the `is-failed` case.
[ 1880.326704] TEST-07-PID1.sh[21489]: + timeout --foreground 60 bash -c 'while [[ -d '\''/tmp/TEST-07-PID1-socket-8467/test'\'' ]]; do sleep .5; done'
[ 1880.330482] TEST-07-PID1.sh[21489]: + [[ ! -e /tmp/TEST-07-PID1-socket-8467/test ]]
[ 1880.330482] TEST-07-PID1.sh[21489]: + systemctl is-active TEST-07-PID1-socket-OnFailure.service
[ 1880.347470] TEST-07-PID1.sh[21520]: activating
[ 1880.349508] TEST-07-PID1.sh[21489]: + at_exit
[ 1880.349508] TEST-07-PID1.sh[21489]: + systemctl stop TEST-07-PID1-socket-8467.socket
[ 1880.367331] TEST-07-PID1.sh[107]: Subtest /usr/lib/systemd/tests/testdata/units/TEST-07-PID1.socket-on-failure.sh failed
[ 1880.367331] TEST-07-PID1.sh[107]: + return 1
Co-developed-by: Claude Opus 4.7 <noreply@anthropic.com>
Craft a raw D-Bus message with an unknown header field containing
BUS_CONTAINER_DEPTH+1 nested variants and verify that message parsing
rejects it with -EBADMSG rather than recursing until stack overflow.
message_skip_fields() recurses for each nested variant ('v') type in
D-Bus message header fields. A crafted message with deeply nested
variants (e.g., a variant containing a variant containing a variant...)
causes unbounded stack growth, leading to stack overflow and crash.
Add a depth parameter that increments on each recursive call and
rejects messages exceeding BUS_CONTAINER_DEPTH with -EBADMSG. This
matches the existing depth limits enforced elsewhere in the sd-bus
message processing (e.g., bus_message_enter_container).
meson test --wrapper hook to print a gdb backtrace inline in the test
log when a test exits with an actual crash signal (SIGSEGV, SIGABRT,
SIGBUS, SIGFPE, SIGILL). Wired into the default add_test_setup() so it
runs automatically on every `meson test`.
Environmental terminations (SIGTERM/SIGKILL/SIGPIPE/SIGALRM) are passed
through without replay, and the original signal is re-raised so the
parent's wait() observes WIFSIGNALED rather than a plain exit code.
as specified by the haproxy documentation:
https://www.haproxy.org/download/1.8/doc/proxy-protocol.txt
only protocol v1 is implemented for now, protocol v2 is binary,
and will be implemented in the future.
the proxy protocol allows the destination/target to know the
address/port of the client connectiing.
in nginx it's supported by enabling the `proxy_protocol` parameter to
the `listen` directive.
Each dlopen_*() wrapper kept its dl handle as a file-scope
'static void *xxx_dl = NULL;' even though only the wrapper itself
ever referenced it. Move each one inside the corresponding function
so its scope matches its actual use, leaving the rest of each
translation unit free of the unused file-scope name.
In pcre2-util.c the assert(pcre2_dl) in pattern_matches_and_log()
becomes assert(sym_pcre2_match), which carries the same invariant
(pattern_compile_and_log() ran dlopen_pcre2()).
Some drivers (currently mlx5_core) expose sub-functions (SFs) of a PCI
Physical or Virtual Function as auxiliary devices that carry a stable
`sfnum` sysfs attribute (the user-defined SF number passed to `devlink
port add ... sfnum N`). Their leaf devices (net, infiniband, ...)
currently inherit the parent PF/VF's `ID_PATH` and the SF netdev falls
through to the kernel-assigned `eth<N>` name.
Two patches:
1. `udev-builtin-path_id`: prepend an `sf-<N>` token when the walk
crosses an aux device with `sfnum`, so SF leaf devices get an `ID_PATH`
distinct from the parent PF/VF (e.g. `pci-0000:c1:00.0-sf-88`). Aux
devices without `sfnum` keep the pre-patch behaviour, so existing
`ID_PATH` values are unchanged and the patch needs no naming-scheme gate
(path_id is unversioned).
2. `udev-builtin-net_id`: name SF host netdevs analogously to SR-IOV VF
host netdevs — walk to the parent PCI function and append a
single-character `S<sfnum>` suffix. SFs hosted on SR-IOV VFs (VF-SF) get
both suffixes chained on the PF's base name (`enp193s0f0v0S88`). Gated
behind `NAMING_SUBFUNC` / `NAMING_V261`. Man page
(`systemd.net-naming-scheme(7)`) updated.
The patches apply to any driver that exposes its SF leaf devices below
an aux device exposing `sfnum`.
Validated on mlx5 hardware: PF, VF, SF-on-PF (`enp8s0f0S88`,
`pci-0000:08:00.0-sf-88`). VF-SF case verified with a fake-sysfs setup
since this is not supported by any real device and is more a theoretical
use case.
* 77fce77807 apk: Implement repository_key_fetch for the postmarketOS distribution
* 7068ed49ab postmarketos: Add ruff to tools tree
* dea4b6bfc8 Add newline when writing machine id into /etc/machine-id
* 944b775d40 tools: add libtss2-tcti-device0 to opensuse tools tree
* d856d65d3b mkosi-initrd: Also add cryptsetup-libs explicitly to the initrd
* 1cc967c5b3 mkosi-initrd: Trim orphaned GPU/audio modules, add ACPI platform attrs
* a3e95a7c29 mkosi-tools: Add fish to misc profile
* 76b02d1f84 mkosi-tools: Add jujutsu to misc profile
* 0afe4cd254 mkosi-tools: Move gh to misc profile
* 9077634bad mkosi-tools: Add cryptsetup-libs to centos/fedora/opensuse
* 82846347af box: Drop background tinting
* 3e50b97101 mkosi-tools: Add libfido2
* 78c2784827 vmspawn: Use --ephemeral rather than copy_ephemeral()
* dc801b00a3 Added second call to update kerneltype after kernel is defined
* 0c5cc04a8b vmspawn: Forward journal-remote settings to vmspawn
* 2518468c65 nspawn: Use --forward-journal instead of running journal-remote ourselves
* d2b798d00c apk: skip removal of packages that aren't installed