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| author | Kees Cook <kees+treewide@kernel.org> | 2026-09-02 15:31:14 -0700 |
|---|---|---|
| committer | Kees Cook <kees@kernel.org> | 2026-09-04 21:37:00 -0700 |
| commit | 3a2c4d55e32ad65efebdb6de44eef3bfa08bb49d (patch) | |
| tree | c65086f9bdcd48c6360fb7cb4598bca084da1f32 /io_uring/loop.c | |
| download | linux-stable-3a2c4d55e32ad65efebdb6de44eef3bfa08bb49d.tar.gz linux-stable-3a2c4d55e32ad65efebdb6de44eef3bfa08bb49d.zip | |
treewide: refresh kmalloc_obj() conversionsgrafted
This is another run of the Coccinelle script for converting kmalloc()
family of allocations to kmalloc_obj() via the existing rules in
scripts/coccinelle/api/kmalloc_objs.cocci
This catches both the set of kmalloc() uses added since the first
kmalloc_obj() conversions in v7.0 and adds a large group missed in the
first pass due to Coccinelle not interacting well with the cleanup.h
scoped_...() family of macros[1]. I worked around this with spatch's
"--macro-file" argument to a file with all the scoped_...() macros mapped
to Coccinelle's YACFE_ITERATOR[2] as that was the closest viable control
flow indicator I could find.
Build tested allmodconfig on x86, arm64, arm, loongarch, mips, powerpc,
riscv, and s390 with no new warnings.
Link: https://lore.kernel.org/lkml/202609021314.8A9C0B8@keescook/ [1]
Link: https://github.com/coccinelle/coccinelle/blob/master/standard.h [2]
Signed-off-by: Kees Cook <kees+treewide@kernel.org>
Diffstat (limited to 'io_uring/loop.c')
| -rw-r--r-- | io_uring/loop.c | 91 |
1 files changed, 91 insertions, 0 deletions
diff --git a/io_uring/loop.c b/io_uring/loop.c new file mode 100644 index 000000000..bbbb6ef14 --- /dev/null +++ b/io_uring/loop.c @@ -0,0 +1,91 @@ +/* SPDX-License-Identifier: GPL-2.0 */ +#include "io_uring.h" +#include "wait.h" +#include "loop.h" + +static inline int io_loop_nr_cqes(const struct io_ring_ctx *ctx, + const struct iou_loop_params *lp) +{ + return lp->cq_wait_idx - READ_ONCE(ctx->rings->cq.tail); +} + +static inline void io_loop_wait_start(struct io_ring_ctx *ctx, unsigned nr_wait) +{ + atomic_set(&ctx->cq_wait_nr, nr_wait); + set_current_state(TASK_INTERRUPTIBLE); +} + +static inline void io_loop_wait_finish(struct io_ring_ctx *ctx) +{ + __set_current_state(TASK_RUNNING); + atomic_set(&ctx->cq_wait_nr, IO_CQ_WAKE_INIT); +} + +static void io_loop_wait(struct io_ring_ctx *ctx, struct iou_loop_params *lp, + unsigned nr_wait) +{ + io_loop_wait_start(ctx, nr_wait); + + if (unlikely(io_local_work_pending(ctx) || + io_loop_nr_cqes(ctx, lp) <= 0) || + READ_ONCE(ctx->check_cq)) { + io_loop_wait_finish(ctx); + return; + } + + mutex_unlock(&ctx->uring_lock); + schedule(); + io_loop_wait_finish(ctx); + mutex_lock(&ctx->uring_lock); +} + +static int __io_run_loop(struct io_ring_ctx *ctx) +{ + struct iou_loop_params lp = {}; + + while (true) { + int nr_wait, step_res; + + if (unlikely(!ctx->loop_step)) + return -EFAULT; + + step_res = ctx->loop_step(io_loop_mangle_ctx(ctx), &lp); + if (step_res == IOU_LOOP_STOP) + break; + if (step_res != IOU_LOOP_CONTINUE) + return -EINVAL; + + nr_wait = io_loop_nr_cqes(ctx, &lp); + if (nr_wait > 0) + io_loop_wait(ctx, &lp, nr_wait); + else + nr_wait = 0; + + if (task_work_pending(current)) { + mutex_unlock(&ctx->uring_lock); + io_run_task_work(); + mutex_lock(&ctx->uring_lock); + } + if (unlikely(task_sigpending(current))) + return -EINTR; + io_run_local_work_locked(ctx, nr_wait); + + if (READ_ONCE(ctx->check_cq) & BIT(IO_CHECK_CQ_OVERFLOW_BIT)) + io_cqring_overflow_flush_locked(ctx); + } + + return 0; +} + +int io_run_loop(struct io_ring_ctx *ctx) +{ + int ret; + + if (!io_allowed_run_tw(ctx)) + return -EEXIST; + + mutex_lock(&ctx->uring_lock); + ret = __io_run_loop(ctx); + mutex_unlock(&ctx->uring_lock); + return ret; +} |
