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linux-stable-mirror/include/linux/ring_buffer.h
T
Masami Hiramatsu (Google) 68413a36f0 ring-buffer: Add persistent ring buffer invalid-page inject test
Add a self-corrupting test for the persistent ring buffer.

This will inject an erroneous value to some sub-buffer pages (where
the index is even or multiples of 5) in the persistent ring buffer
when the kernel panics, and checks whether the number of detected
invalid pages and the total entry_bytes are the same as the recorded
values after reboot.

This ensures that the kernel can correctly recover a partially
corrupted persistent ring buffer after a reboot or panic.

The test only runs on the persistent ring buffer whose name is
"ptracingtest". The user has to fill it with events before a
kernel panic.

To run the test, enable CONFIG_RING_BUFFER_PERSISTENT_INJECT
and add the following kernel cmdline:

 reserve_mem=20M:2M:trace trace_instance=ptracingtest^traceoff@trace
 panic=1

Run the following commands after the 1st boot:

 cd /sys/kernel/tracing/instances/ptracingtest
 echo 1 > tracing_on
 echo 1 > events/enable
 sleep 3
 echo c > /proc/sysrq-trigger

After panic message, the kernel will reboot and run the verification
on the persistent ring buffer, e.g.

 Ring buffer meta [2] invalid buffer page detected
 Ring buffer meta [2] is from previous boot! (318 pages discarded)
 Ring buffer testing [2] invalid pages: PASSED (318/318)
 Ring buffer testing [2] entry_bytes: PASSED (1300476/1300476)

Link: https://patch.msgid.link/20260522171051.260140328@kernel.org
Signed-off-by: Masami Hiramatsu (Google) <mhiramat@kernel.org>
Signed-off-by: Steven Rostedt <rostedt@goodmis.org>
2026-05-28 22:40:51 -04:00

314 lines
11 KiB
C

/* SPDX-License-Identifier: GPL-2.0 */
#ifndef _LINUX_RING_BUFFER_H
#define _LINUX_RING_BUFFER_H
#include <linux/mm.h>
#include <linux/seq_file.h>
#include <linux/poll.h>
#include <uapi/linux/trace_mmap.h>
struct trace_buffer;
struct ring_buffer_iter;
/*
* Don't refer to this struct directly, use functions below.
*/
struct ring_buffer_event {
u32 type_len:5, time_delta:27;
u32 array[];
};
/**
* enum ring_buffer_type - internal ring buffer types
*
* @RINGBUF_TYPE_PADDING: Left over page padding or discarded event
* If time_delta is 0:
* array is ignored
* size is variable depending on how much
* padding is needed
* If time_delta is non zero:
* array[0] holds the actual length
* size = 4 + length (bytes)
*
* @RINGBUF_TYPE_TIME_EXTEND: Extend the time delta
* array[0] = time delta (28 .. 59)
* size = 8 bytes
*
* @RINGBUF_TYPE_TIME_STAMP: Absolute timestamp
* Same format as TIME_EXTEND except that the
* value is an absolute timestamp, not a delta
* event.time_delta contains bottom 27 bits
* array[0] = top (28 .. 59) bits
* size = 8 bytes
*
* <= @RINGBUF_TYPE_DATA_TYPE_LEN_MAX:
* Data record
* If type_len is zero:
* array[0] holds the actual length
* array[1..(length+3)/4] holds data
* size = 4 + length (bytes)
* else
* length = type_len << 2
* array[0..(length+3)/4-1] holds data
* size = 4 + length (bytes)
*/
enum ring_buffer_type {
RINGBUF_TYPE_DATA_TYPE_LEN_MAX = 28,
RINGBUF_TYPE_PADDING,
RINGBUF_TYPE_TIME_EXTEND,
RINGBUF_TYPE_TIME_STAMP,
};
unsigned ring_buffer_event_length(struct ring_buffer_event *event);
void *ring_buffer_event_data(struct ring_buffer_event *event);
u64 ring_buffer_event_time_stamp(struct trace_buffer *buffer,
struct ring_buffer_event *event);
/*
* ring_buffer_discard_commit will remove an event that has not
* been committed yet. If this is used, then ring_buffer_unlock_commit
* must not be called on the discarded event. This function
* will try to remove the event from the ring buffer completely
* if another event has not been written after it.
*
* Example use:
*
* if (some_condition)
* ring_buffer_discard_commit(buffer, event);
* else
* ring_buffer_unlock_commit(buffer, event);
*/
void ring_buffer_discard_commit(struct trace_buffer *buffer,
struct ring_buffer_event *event);
/*
* size is in bytes for each per CPU buffer.
*/
struct trace_buffer *
__ring_buffer_alloc(unsigned long size, unsigned flags, struct lock_class_key *key);
struct trace_buffer *__ring_buffer_alloc_range(unsigned long size, unsigned flags,
int order, unsigned long start,
unsigned long range_size,
unsigned long scratch_size,
struct lock_class_key *key);
void *ring_buffer_meta_scratch(struct trace_buffer *buffer, unsigned int *size);
/*
* Because the ring buffer is generic, if other users of the ring buffer get
* traced by ftrace, it can produce lockdep warnings. We need to keep each
* ring buffer's lock class separate.
*/
#define ring_buffer_alloc(size, flags) \
({ \
static struct lock_class_key __key; \
__ring_buffer_alloc((size), (flags), &__key); \
})
/*
* Because the ring buffer is generic, if other users of the ring buffer get
* traced by ftrace, it can produce lockdep warnings. We need to keep each
* ring buffer's lock class separate.
*/
#define ring_buffer_alloc_range(size, flags, order, start, range_size, s_size) \
({ \
static struct lock_class_key __key; \
__ring_buffer_alloc_range((size), (flags), (order), (start), \
(range_size), (s_size), &__key); \
})
typedef bool (*ring_buffer_cond_fn)(void *data);
int ring_buffer_wait(struct trace_buffer *buffer, int cpu, int full,
ring_buffer_cond_fn cond, void *data);
__poll_t ring_buffer_poll_wait(struct trace_buffer *buffer, int cpu,
struct file *filp, poll_table *poll_table, int full);
void ring_buffer_wake_waiters(struct trace_buffer *buffer, int cpu);
#define RING_BUFFER_ALL_CPUS -1
void ring_buffer_free(struct trace_buffer *buffer);
int ring_buffer_resize(struct trace_buffer *buffer, unsigned long size, int cpu);
void ring_buffer_change_overwrite(struct trace_buffer *buffer, int val);
struct ring_buffer_event *ring_buffer_lock_reserve(struct trace_buffer *buffer,
unsigned long length);
int ring_buffer_unlock_commit(struct trace_buffer *buffer);
int ring_buffer_write(struct trace_buffer *buffer,
unsigned long length, void *data);
void ring_buffer_nest_start(struct trace_buffer *buffer);
void ring_buffer_nest_end(struct trace_buffer *buffer);
DEFINE_GUARD(ring_buffer_nest, struct trace_buffer *,
ring_buffer_nest_start(_T), ring_buffer_nest_end(_T))
struct ring_buffer_event *
ring_buffer_peek(struct trace_buffer *buffer, int cpu, u64 *ts,
unsigned long *lost_events);
struct ring_buffer_event *
ring_buffer_consume(struct trace_buffer *buffer, int cpu, u64 *ts,
unsigned long *lost_events);
struct ring_buffer_iter *
ring_buffer_read_start(struct trace_buffer *buffer, int cpu, gfp_t flags);
void ring_buffer_read_finish(struct ring_buffer_iter *iter);
struct ring_buffer_event *
ring_buffer_iter_peek(struct ring_buffer_iter *iter, u64 *ts);
void ring_buffer_iter_advance(struct ring_buffer_iter *iter);
void ring_buffer_iter_reset(struct ring_buffer_iter *iter);
int ring_buffer_iter_empty(struct ring_buffer_iter *iter);
bool ring_buffer_iter_dropped(struct ring_buffer_iter *iter);
unsigned long ring_buffer_size(struct trace_buffer *buffer, int cpu);
unsigned long ring_buffer_max_event_size(struct trace_buffer *buffer);
void ring_buffer_reset_cpu(struct trace_buffer *buffer, int cpu);
void ring_buffer_reset_online_cpus(struct trace_buffer *buffer);
void ring_buffer_reset(struct trace_buffer *buffer);
#ifdef CONFIG_RING_BUFFER_ALLOW_SWAP
int ring_buffer_swap_cpu(struct trace_buffer *buffer_a,
struct trace_buffer *buffer_b, int cpu);
#else
static inline int
ring_buffer_swap_cpu(struct trace_buffer *buffer_a,
struct trace_buffer *buffer_b, int cpu)
{
return -ENODEV;
}
#endif
bool ring_buffer_empty(struct trace_buffer *buffer);
bool ring_buffer_empty_cpu(struct trace_buffer *buffer, int cpu);
void ring_buffer_record_disable(struct trace_buffer *buffer);
void ring_buffer_record_enable(struct trace_buffer *buffer);
void ring_buffer_record_off(struct trace_buffer *buffer);
void ring_buffer_record_on(struct trace_buffer *buffer);
bool ring_buffer_record_is_on(struct trace_buffer *buffer);
bool ring_buffer_record_is_set_on(struct trace_buffer *buffer);
bool ring_buffer_record_is_on_cpu(struct trace_buffer *buffer, int cpu);
void ring_buffer_record_disable_cpu(struct trace_buffer *buffer, int cpu);
void ring_buffer_record_enable_cpu(struct trace_buffer *buffer, int cpu);
u64 ring_buffer_oldest_event_ts(struct trace_buffer *buffer, int cpu);
unsigned long ring_buffer_bytes_cpu(struct trace_buffer *buffer, int cpu);
unsigned long ring_buffer_entries(struct trace_buffer *buffer);
unsigned long ring_buffer_overruns(struct trace_buffer *buffer);
unsigned long ring_buffer_entries_cpu(struct trace_buffer *buffer, int cpu);
unsigned long ring_buffer_overrun_cpu(struct trace_buffer *buffer, int cpu);
unsigned long ring_buffer_commit_overrun_cpu(struct trace_buffer *buffer, int cpu);
unsigned long ring_buffer_dropped_events_cpu(struct trace_buffer *buffer, int cpu);
unsigned long ring_buffer_read_events_cpu(struct trace_buffer *buffer, int cpu);
u64 ring_buffer_time_stamp(struct trace_buffer *buffer);
void ring_buffer_normalize_time_stamp(struct trace_buffer *buffer,
int cpu, u64 *ts);
void ring_buffer_set_clock(struct trace_buffer *buffer,
u64 (*clock)(void));
void ring_buffer_set_time_stamp_abs(struct trace_buffer *buffer, bool abs);
bool ring_buffer_time_stamp_abs(struct trace_buffer *buffer);
size_t ring_buffer_nr_dirty_pages(struct trace_buffer *buffer, int cpu);
struct buffer_data_read_page;
struct buffer_data_read_page *
ring_buffer_alloc_read_page(struct trace_buffer *buffer, int cpu);
void ring_buffer_free_read_page(struct trace_buffer *buffer, int cpu,
struct buffer_data_read_page *page);
int ring_buffer_read_page(struct trace_buffer *buffer,
struct buffer_data_read_page *data_page,
size_t len, int cpu, int full);
void *ring_buffer_read_page_data(struct buffer_data_read_page *page);
struct trace_seq;
int ring_buffer_print_entry_header(struct trace_seq *s);
int ring_buffer_print_page_header(struct trace_buffer *buffer, struct trace_seq *s);
int ring_buffer_subbuf_order_get(struct trace_buffer *buffer);
int ring_buffer_subbuf_order_set(struct trace_buffer *buffer, int order);
int ring_buffer_subbuf_size_get(struct trace_buffer *buffer);
enum ring_buffer_flags {
RB_FL_OVERWRITE = 1 << 0,
RB_FL_TESTING = 1 << 1,
};
#ifdef CONFIG_RING_BUFFER
int trace_rb_cpu_prepare(unsigned int cpu, struct hlist_node *node);
#else
#define trace_rb_cpu_prepare NULL
#endif
int ring_buffer_map(struct trace_buffer *buffer, int cpu,
struct vm_area_struct *vma);
void ring_buffer_map_dup(struct trace_buffer *buffer, int cpu);
int ring_buffer_unmap(struct trace_buffer *buffer, int cpu);
int ring_buffer_map_get_reader(struct trace_buffer *buffer, int cpu);
struct ring_buffer_desc {
int cpu;
unsigned int nr_page_va; /* excludes the meta page */
unsigned long meta_va;
unsigned long page_va[] __counted_by(nr_page_va);
};
struct trace_buffer_desc {
int nr_cpus;
size_t struct_len;
char __data[]; /* list of ring_buffer_desc */
};
static inline struct ring_buffer_desc *__next_ring_buffer_desc(struct ring_buffer_desc *desc)
{
size_t len = struct_size(desc, page_va, desc->nr_page_va);
return (struct ring_buffer_desc *)((void *)desc + len);
}
static inline struct ring_buffer_desc *__first_ring_buffer_desc(struct trace_buffer_desc *desc)
{
return (struct ring_buffer_desc *)(&desc->__data[0]);
}
static inline size_t trace_buffer_desc_size(size_t buffer_size, unsigned int nr_cpus)
{
unsigned int nr_pages = max(DIV_ROUND_UP(buffer_size, PAGE_SIZE), 2UL) + 1;
struct ring_buffer_desc *rbdesc;
return size_add(offsetof(struct trace_buffer_desc, __data),
size_mul(nr_cpus, struct_size(rbdesc, page_va, nr_pages)));
}
#define for_each_ring_buffer_desc(__pdesc, __cpu, __trace_pdesc) \
for (__pdesc = __first_ring_buffer_desc(__trace_pdesc), __cpu = 0; \
(__cpu) < (__trace_pdesc)->nr_cpus; \
(__cpu)++, __pdesc = __next_ring_buffer_desc(__pdesc))
struct ring_buffer_remote {
struct trace_buffer_desc *desc;
int (*swap_reader_page)(unsigned int cpu, void *priv);
int (*reset)(unsigned int cpu, void *priv);
void *priv;
};
int ring_buffer_poll_remote(struct trace_buffer *buffer, int cpu);
struct trace_buffer *
__ring_buffer_alloc_remote(struct ring_buffer_remote *remote,
struct lock_class_key *key);
#define ring_buffer_alloc_remote(remote) \
({ \
static struct lock_class_key __key; \
__ring_buffer_alloc_remote(remote, &__key); \
})
#endif /* _LINUX_RING_BUFFER_H */