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| author | Linus Torvalds <torvalds@linux-foundation.org> | 2026-08-30 09:22:00 -0700 |
|---|---|---|
| committer | Linus Torvalds <torvalds@linux-foundation.org> | 2026-08-30 09:22:00 -0700 |
| commit | 034dd340b08be1f2f0477ad16131d609f9dbd53c (patch) | |
| tree | 2536f4b2d7893ccd916b5abdf3c454ad6edc03c2 /include/net/fq_impl.h | |
| download | linux-stable-034dd340b08be1f2f0477ad16131d609f9dbd53c.tar.gz linux-stable-034dd340b08be1f2f0477ad16131d609f9dbd53c.zip | |
Merge tag 'trace-v7.3-2' of git://git.kernel.org/pub/scm/linux/kernel/git/trace/linux-tracegrafted
Pull tracing fixes from Steven Rostedt:
- Fix error output of boot instance creation failure
Currently if a boot instance creation fails, instead of printing out
the name of the instance that failed, it prints "(null)". That is
because it prints "cur_str" that had already been processed by
strsep(). Print the saved name instead.
While at it, print the error code of the failure.
- Fix use-after-free for same named historgrams
Histograms can be named so that they can be used in multiple events.
But if the named histogram has a variable attached, the second event
that uses the named histogram which duplicates it and needs to free
the original after duplication leaves the old variable in place and
still visible. If another histogram uses than variable, it will use
the stale one which will try to reference the freed duplicate
histogram and crash the kernel.
Free the duplicate variables along with the duplicated histogram
data.
- Check return value of kthread_run() in event self test
The events self tests uses a kthread for testing but does not check
if it succeeded in creating a kthread. If the kthread creation were
to fail, the code will still try to call kthread_stop() on the error
returned.
- Fix race between reading trace_pipe and updating subbuffer size
If a user is reading the trace_pipe file at the same time they update
the ring buffer sub-buffer size, can cause the trace_pipe read to
read stale data. Add trace_access_lock() around updating the ring
buffer sub-buffer size.
- Fix eventfs_inode on failure path in creation of the events directory
In the creation of the "events" directory, if after allocating the
eventfs_inode a failure is detected, it calls cleanup_ei() which
calls free_ei(). The free_ei() will test if eventfs_inode being freed
has no children. It is a bug if it does. But on the failure case of
the creation of the "events" directory, the children lists have not
yet been initialized and the free will trigger a warning because
list_empty() on an uninitialized list returns false.
Move the initialization into init_ei() where it makes more sense and
makes sure that a created eventfs_inode has its lists initialized
upon creation.
- Check return value of kthread_run() in ftrace direct sample code
The sample code that shows how to use the ftrace direct calls does
not test the return of kthread_run() to see if it succeeds. Return a
failure if the kthread_run() doesn't succeed.
- Clear user events state on fork in case of alloc failure
On fork, the child gets a pointer to the parent's user events state.
It makes a copy of it then updates the child's pointer to it. But if
the allocation fails, the duplication function leaves the child with
a pointer to its parent's descriptor. When the child cleans up its
data, it will free the parent's descriptor while the parent is still
using it.
In the duplication function, set the child's user_event_mm to NULL
before testing if the allocation succeeded, and when it exits it will
not free the parent's descriptor.
- Fix retry exhaustion in simple ring buffer reader swap
simple_ring_buffer_swap_reader_page() starts with retry set to 8 and
post-decrements it only after a failed link replacement. On the final
attempt, a successful replacement leaves retry at zero, while a
failed replacement leaves it at -1.
But the check for success expects the retry value to be non-zero and
exits with an error on zero. This is the opposite result. Fix it.
- Fail nicely when the remote swap_reader_page() returns an error
Currently, if the swap_reader_page() of a remote buffer fails, it
triggers a WARN_ON_ONCE() and continues normally. Instead, have it
exit with an error and a pr_warn() print instead of a full WARNING.
* tag 'trace-v7.3-2' of git://git.kernel.org/pub/scm/linux/kernel/git/trace/linux-trace:
ring-buffer: Stop remote reader update when page swap fails
tracing: Fix retry exhaustion in simple ring buffer reader swap
tracing/user_events: Clear copied tracing state before fork duplication
samples/ftrace: Fix kthread_stop() on ERR_PTR in ftrace-direct-multi-modify
samples/ftrace: Fix kthread_stop() on ERR_PTR in ftrace-direct-modify
eventfs: Initialize ei->children and ei->list in init_ei()
tracing: Fix use-after-free in trace_pipe read on sub-buffer order change
tracing: Fix crash passing ERR_PTR to kthread_stop()
tracing: Fix use-after-free with same-name named triggers
tracing: Fix logged instance name on creation failure
Diffstat (limited to 'include/net/fq_impl.h')
| -rw-r--r-- | include/net/fq_impl.h | 393 |
1 files changed, 393 insertions, 0 deletions
diff --git a/include/net/fq_impl.h b/include/net/fq_impl.h new file mode 100644 index 000000000..8aca88193 --- /dev/null +++ b/include/net/fq_impl.h @@ -0,0 +1,393 @@ +/* SPDX-License-Identifier: GPL-2.0-only */ +/* + * Copyright (c) 2016 Qualcomm Atheros, Inc + * + * Based on net/sched/sch_fq_codel.c + */ +#ifndef __NET_SCHED_FQ_IMPL_H +#define __NET_SCHED_FQ_IMPL_H + +#include <net/fq.h> + +/* functions that are embedded into includer */ + + +static void +__fq_adjust_removal(struct fq *fq, struct fq_flow *flow, unsigned int packets, + unsigned int bytes, unsigned int truesize) +{ + struct fq_tin *tin = flow->tin; + int idx; + + tin->backlog_bytes -= bytes; + tin->backlog_packets -= packets; + flow->backlog -= bytes; + fq->backlog -= packets; + fq->memory_usage -= truesize; + + if (flow->backlog) + return; + + if (flow == &tin->default_flow) { + list_del_init(&tin->tin_list); + return; + } + + idx = flow - fq->flows; + __clear_bit(idx, fq->flows_bitmap); +} + +static void fq_adjust_removal(struct fq *fq, + struct fq_flow *flow, + struct sk_buff *skb) +{ + __fq_adjust_removal(fq, flow, 1, skb->len, skb->truesize); +} + +static struct sk_buff *fq_flow_dequeue(struct fq *fq, + struct fq_flow *flow) +{ + struct sk_buff *skb; + + lockdep_assert_held(&fq->lock); + + skb = __skb_dequeue(&flow->queue); + if (!skb) + return NULL; + + fq_adjust_removal(fq, flow, skb); + + return skb; +} + +static int fq_flow_drop(struct fq *fq, struct fq_flow *flow, + fq_skb_free_t free_func) +{ + unsigned int packets = 0, bytes = 0, truesize = 0; + struct fq_tin *tin = flow->tin; + struct sk_buff *skb; + int pending; + + lockdep_assert_held(&fq->lock); + + pending = min_t(int, 32, skb_queue_len(&flow->queue) / 2); + do { + skb = __skb_dequeue(&flow->queue); + if (!skb) + break; + + packets++; + bytes += skb->len; + truesize += skb->truesize; + free_func(fq, tin, flow, skb); + } while (packets < pending); + + __fq_adjust_removal(fq, flow, packets, bytes, truesize); + + return packets; +} + +static struct sk_buff *fq_tin_dequeue(struct fq *fq, + struct fq_tin *tin, + fq_tin_dequeue_t dequeue_func) +{ + struct fq_flow *flow; + struct list_head *head; + struct sk_buff *skb; + + lockdep_assert_held(&fq->lock); + +begin: + head = &tin->new_flows; + if (list_empty(head)) { + head = &tin->old_flows; + if (list_empty(head)) + return NULL; + } + + flow = list_first_entry(head, struct fq_flow, flowchain); + + if (flow->deficit <= 0) { + flow->deficit += fq->quantum; + list_move_tail(&flow->flowchain, + &tin->old_flows); + goto begin; + } + + skb = dequeue_func(fq, tin, flow); + if (!skb) { + /* force a pass through old_flows to prevent starvation */ + if ((head == &tin->new_flows) && + !list_empty(&tin->old_flows)) { + list_move_tail(&flow->flowchain, &tin->old_flows); + } else { + list_del_init(&flow->flowchain); + flow->tin = NULL; + } + goto begin; + } + + flow->deficit -= skb->len; + tin->tx_bytes += skb->len; + tin->tx_packets++; + + return skb; +} + +static u32 fq_flow_idx(struct fq *fq, struct sk_buff *skb) +{ + u32 hash = skb_get_hash(skb); + + return reciprocal_scale(hash, fq->flows_cnt); +} + +static struct fq_flow *fq_flow_classify(struct fq *fq, + struct fq_tin *tin, u32 idx, + struct sk_buff *skb) +{ + struct fq_flow *flow; + + lockdep_assert_held(&fq->lock); + + flow = &fq->flows[idx]; + if (flow->tin && flow->tin != tin) { + flow = &tin->default_flow; + tin->collisions++; + fq->collisions++; + } + + if (!flow->tin) + tin->flows++; + + return flow; +} + +static struct fq_flow *fq_find_fattest_flow(struct fq *fq) +{ + struct fq_tin *tin; + struct fq_flow *flow = NULL; + u32 len = 0; + int i; + + for_each_set_bit(i, fq->flows_bitmap, fq->flows_cnt) { + struct fq_flow *cur = &fq->flows[i]; + unsigned int cur_len; + + cur_len = cur->backlog; + if (cur_len <= len) + continue; + + flow = cur; + len = cur_len; + } + + list_for_each_entry(tin, &fq->tin_backlog, tin_list) { + unsigned int cur_len = tin->default_flow.backlog; + + if (cur_len <= len) + continue; + + flow = &tin->default_flow; + len = cur_len; + } + + return flow; +} + +static void fq_tin_enqueue(struct fq *fq, + struct fq_tin *tin, u32 idx, + struct sk_buff *skb, + fq_skb_free_t free_func) +{ + struct fq_flow *flow; + struct sk_buff *next; + bool oom; + + lockdep_assert_held(&fq->lock); + + flow = fq_flow_classify(fq, tin, idx, skb); + + if (!flow->backlog) { + if (flow != &tin->default_flow) + __set_bit(idx, fq->flows_bitmap); + else if (list_empty(&tin->tin_list)) + list_add(&tin->tin_list, &fq->tin_backlog); + } + + flow->tin = tin; + skb_list_walk_safe(skb, skb, next) { + skb_mark_not_on_list(skb); + flow->backlog += skb->len; + tin->backlog_bytes += skb->len; + tin->backlog_packets++; + fq->memory_usage += skb->truesize; + fq->backlog++; + __skb_queue_tail(&flow->queue, skb); + } + + if (list_empty(&flow->flowchain)) { + flow->deficit = fq->quantum; + list_add_tail(&flow->flowchain, + &tin->new_flows); + } + + oom = (fq->memory_usage > fq->memory_limit); + while (fq->backlog > fq->limit || oom) { + flow = fq_find_fattest_flow(fq); + if (!flow) + return; + + if (!fq_flow_drop(fq, flow, free_func)) + return; + + flow->tin->overlimit++; + fq->overlimit++; + if (oom) { + fq->overmemory++; + oom = (fq->memory_usage > fq->memory_limit); + } + } +} + +static void fq_flow_filter(struct fq *fq, + struct fq_flow *flow, + fq_skb_filter_t filter_func, + void *filter_data, + fq_skb_free_t free_func) +{ + struct fq_tin *tin = flow->tin; + struct sk_buff *skb, *tmp; + + lockdep_assert_held(&fq->lock); + + skb_queue_walk_safe(&flow->queue, skb, tmp) { + if (!filter_func(fq, tin, flow, skb, filter_data)) + continue; + + __skb_unlink(skb, &flow->queue); + fq_adjust_removal(fq, flow, skb); + free_func(fq, tin, flow, skb); + } +} + +static void fq_tin_filter(struct fq *fq, + struct fq_tin *tin, + fq_skb_filter_t filter_func, + void *filter_data, + fq_skb_free_t free_func) +{ + struct fq_flow *flow; + + lockdep_assert_held(&fq->lock); + + list_for_each_entry(flow, &tin->new_flows, flowchain) + fq_flow_filter(fq, flow, filter_func, filter_data, free_func); + list_for_each_entry(flow, &tin->old_flows, flowchain) + fq_flow_filter(fq, flow, filter_func, filter_data, free_func); +} + +static void fq_flow_reset(struct fq *fq, + struct fq_flow *flow, + fq_skb_free_t free_func) +{ + struct fq_tin *tin = flow->tin; + struct sk_buff *skb; + + while ((skb = fq_flow_dequeue(fq, flow))) + free_func(fq, tin, flow, skb); + + if (!list_empty(&flow->flowchain)) { + list_del_init(&flow->flowchain); + if (list_empty(&tin->new_flows) && + list_empty(&tin->old_flows)) + list_del_init(&tin->tin_list); + } + + flow->tin = NULL; + + WARN_ON_ONCE(flow->backlog); +} + +static void fq_tin_reset(struct fq *fq, + struct fq_tin *tin, + fq_skb_free_t free_func) +{ + struct list_head *head; + struct fq_flow *flow; + + for (;;) { + head = &tin->new_flows; + if (list_empty(head)) { + head = &tin->old_flows; + if (list_empty(head)) + break; + } + + flow = list_first_entry(head, struct fq_flow, flowchain); + fq_flow_reset(fq, flow, free_func); + } + + WARN_ON_ONCE(!list_empty(&tin->tin_list)); + WARN_ON_ONCE(tin->backlog_bytes); + WARN_ON_ONCE(tin->backlog_packets); +} + +static void fq_flow_init(struct fq_flow *flow) +{ + INIT_LIST_HEAD(&flow->flowchain); + __skb_queue_head_init(&flow->queue); +} + +static void fq_tin_init(struct fq_tin *tin) +{ + INIT_LIST_HEAD(&tin->new_flows); + INIT_LIST_HEAD(&tin->old_flows); + INIT_LIST_HEAD(&tin->tin_list); + fq_flow_init(&tin->default_flow); +} + +static int fq_init(struct fq *fq, int flows_cnt) +{ + int i; + + memset(fq, 0, sizeof(fq[0])); + spin_lock_init(&fq->lock); + INIT_LIST_HEAD(&fq->tin_backlog); + fq->flows_cnt = max_t(u32, flows_cnt, 1); + fq->quantum = 300; + fq->limit = 8192; + fq->memory_limit = 16 << 20; /* 16 MBytes */ + + fq->flows = kvzalloc_objs(fq->flows[0], fq->flows_cnt); + if (!fq->flows) + return -ENOMEM; + + fq->flows_bitmap = bitmap_zalloc(fq->flows_cnt, GFP_KERNEL); + if (!fq->flows_bitmap) { + kvfree(fq->flows); + fq->flows = NULL; + return -ENOMEM; + } + + for (i = 0; i < fq->flows_cnt; i++) + fq_flow_init(&fq->flows[i]); + + return 0; +} + +static void fq_reset(struct fq *fq, + fq_skb_free_t free_func) +{ + int i; + + for (i = 0; i < fq->flows_cnt; i++) + fq_flow_reset(fq, &fq->flows[i], free_func); + + kvfree(fq->flows); + fq->flows = NULL; + + bitmap_free(fq->flows_bitmap); + fq->flows_bitmap = NULL; +} + +#endif |
