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| author | Linus Torvalds <torvalds@linux-foundation.org> | 2026-10-02 12:17:24 -0700 |
|---|---|---|
| committer | Linus Torvalds <torvalds@linux-foundation.org> | 2026-10-02 12:17:24 -0700 |
| commit | 3f1fe48a36b0b6722dc3fd421d93512bac138e9a (patch) | |
| tree | b767d7f6e26bc64334d3f14f8422d187239dc45d /tools/tracing/rtla/example | |
| download | linux-stable-3f1fe48a36b0b6722dc3fd421d93512bac138e9a.tar.gz linux-stable-3f1fe48a36b0b6722dc3fd421d93512bac138e9a.zip | |
Merge tag 'io_uring-7.3-20261002' of git://git.kernel.org/pub/scm/linux/kernel/git/axboe/linuxgrafted
Pull io_uring fixes from Jens Axboe:
- Fix a task_work add use-after-free with SQPOLL.
The sqpoll thread could pop and complete the last request while
io_req_normal_work_add() was still looking at them after the mpscq
push.
Use the same approach as DEFER_TASKRUN to protect from that, holding
an RCU read lock across the add, and have exit wait for an RCU grace
period for SQPOLL rings as well.
- CQE32 ring fixes: correct the free entry check for 32b CQEs, zero the
big_cqe for aux CQEs, and only post the dummy skip CQE on CQE_MIXED
rings
- Mark the source filter table as COW when cloning bpf filters, so
registering another filter on the source doesn't modify the shared
table in place
- Initialize the task context before running the BPF loop
- Requeue zcrx multishot receives stopped by a local resource
- End a TX_TIMESTAMP multishot cmd when the CQ is full (lollipopkit)
* tag 'io_uring-7.3-20261002' of git://git.kernel.org/pub/scm/linux/kernel/git/axboe/linux:
io_uring: fix task_work add use-after-free with SQPOLL
io_uring/cmd_net: end TX_TIMESTAMP multishot when the CQ is full
io_uring/zcrx: requeue multishot receives stopped by a local resource
io_uring: initialize task context before running the BPF loop
io_uring: zero big_cqe for aux CQEs on CQE32 rings
io_uring: fix free entry check for 32b CQEs on CQE32 rings
io_uring: only post the dummy skip CQE on CQE_MIXED rings
io_uring/bpf_filter: mark source as COW when cloning filters
Diffstat (limited to 'tools/tracing/rtla/example')
| -rw-r--r-- | tools/tracing/rtla/example/timerlat_bpf_action.c | 16 | ||||
| -rw-r--r-- | tools/tracing/rtla/example/timerlat_load.py | 78 |
2 files changed, 94 insertions, 0 deletions
diff --git a/tools/tracing/rtla/example/timerlat_bpf_action.c b/tools/tracing/rtla/example/timerlat_bpf_action.c new file mode 100644 index 000000000..ac1be049a --- /dev/null +++ b/tools/tracing/rtla/example/timerlat_bpf_action.c @@ -0,0 +1,16 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <linux/bpf.h> +#include <bpf/bpf_tracing.h> + +char LICENSE[] SEC("license") = "GPL"; + +struct trace_event_raw_timerlat_sample { + unsigned long long timer_latency; +} __attribute__((preserve_access_index)); + +SEC("tp/timerlat_action") +int action_handler(struct trace_event_raw_timerlat_sample *tp_args) +{ + bpf_printk("Latency: %lld\n", tp_args->timer_latency); + return 0; +} diff --git a/tools/tracing/rtla/example/timerlat_load.py b/tools/tracing/rtla/example/timerlat_load.py new file mode 100644 index 000000000..a819c3588 --- /dev/null +++ b/tools/tracing/rtla/example/timerlat_load.py @@ -0,0 +1,78 @@ +#!/usr/bin/env python3 +# SPDX-License-Identifier: GPL-2.0-only +# +# Copyright (C) 2024 Red Hat, Inc. Daniel Bristot de Oliveira <bristot@kernel.org> +# +# This is a sample code about how to use timerlat's timer by any workload +# so rtla can measure and provide auto-analysis for the overall latency (IOW +# the response time) for a task. +# +# Before running it, you need to dispatch timerlat with -U option in a terminal. +# Then # run this script pinned to a CPU on another terminal. For example: +# +# timerlat_load.py 1 -p 95 +# +# The "Timerlat IRQ" is the IRQ latency, The thread latency is the latency +# for the python process to get the CPU. The Ret from user Timer Latency is +# the overall latency. In other words, it is the response time for that +# activation. +# +# This is just an example, the load is reading 20MB of data from /dev/full +# It is in python because it is easy to read :-) + +import argparse +import sys +import os + +parser = argparse.ArgumentParser(description='user-space timerlat thread in Python') +parser.add_argument("cpu", type=int, help='CPU to run timerlat thread') +parser.add_argument("-p", "--prio", type=int, help='FIFO priority') +args = parser.parse_args() + +try: + affinity_mask = {args.cpu} + os.sched_setaffinity(0, affinity_mask) +except Exception as e: + print(f"Error setting affinity: {e}") + sys.exit(1) + +if args.prio: + try: + param = os.sched_param(args.prio) + os.sched_setscheduler(0, os.SCHED_FIFO, param) + except Exception as e: + print(f"Error setting priority: {e}") + sys.exit(1) + +try: + timerlat_path = f"/sys/kernel/tracing/osnoise/per_cpu/cpu{args.cpu}/timerlat_fd" + timerlat_fd = open(timerlat_path, 'r') +except PermissionError: + print("Permission denied. Please check your access rights.") + sys.exit(1) +except OSError: + print("Error opening timerlat fd, did you run timerlat -U?") + sys.exit(1) + +try: + data_fd = open("/dev/full", 'r') +except Exception as e: + print(f"Error opening data fd: {e}") + sys.exit(1) + +while True: + try: + timerlat_fd.read(1) + data_fd.read(20 * 1024 * 1024) + except KeyboardInterrupt: + print("Leaving") + break + except IOError as e: + print(f"I/O error occurred: {e}") + break + except Exception as e: + print(f"Unexpected error: {e}") + break + +timerlat_fd.close() +data_fd.close() |
