Fix race in trace point in zrl_add_impl
We hit an illegal memory access in the zrlock trace point. The problem is that zrl->zr_owner and zrl->zr_caller are assigned locklessly. And if zrl->zr_owner got assigned a longer string between when __string() calculate the strlen, and when __assign_str() does strcpy. The copy will overflow the buffer. == For example: Initial condition: zrl->zr_owner = A zrl->zr_caller = "abc" Thread A Thread B ------------------------------------------------- if (zrl->zr_owner == A) { DTRACE_PROBE2() { __string() { strlen(zrl->zr_caller) -> 3 allocate buf[4] } zrl->zr_owner = B zrl->zr_caller = "abcd" __assign_str() { strcpy(buf, zrl->zr_caller) <- buffer overflow == Dereferencing zrl->zr_owner->pid may also be problematic, in that the zrl->zr_owner got changed to other task, and that task exits, freeing the task_struct. This should be very unlikely, as the other task need to zrl_remove and exit between the dereferencing zr->zr_owner and zr->zr_owner->pid. Nevertheless, we'll deal with it as well. To fix the zrl->zr_caller issue, instead of copy the string content, we just copy the pointer, this is safe because it always points to __func__, which is static. As for the zrl->zr_owner issue, we pass in curthread instead of using zrl->zr_owner. Reviewed-by: Brian Behlendorf <behlendorf1@llnl.gov> Signed-off-by: Chunwei Chen <david.chen@nutanix.com> Closes #7291
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@ -42,27 +42,27 @@
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*/
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/* BEGIN CSTYLED */
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DECLARE_EVENT_CLASS(zfs_zrlock_class,
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TP_PROTO(zrlock_t *zrl, uint32_t n),
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TP_ARGS(zrl, n),
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TP_PROTO(zrlock_t *zrl, kthread_t *owner, uint32_t n),
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TP_ARGS(zrl, owner, n),
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TP_STRUCT__entry(
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__field(int32_t, refcount)
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#ifdef ZFS_DEBUG
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__field(pid_t, owner_pid)
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__string(caller, zrl->zr_caller)
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__field(const char *, caller)
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#endif
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__field(uint32_t, n)
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),
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TP_fast_assign(
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__entry->refcount = zrl->zr_refcount;
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#ifdef ZFS_DEBUG
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__entry->owner_pid = zrl->zr_owner ? zrl->zr_owner->pid : 0;
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__assign_str(caller, zrl->zr_caller);
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__entry->owner_pid = owner ? owner->pid : 0;
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__entry->caller = zrl->zr_caller ? zrl->zr_caller : "(null)";
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#endif
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__entry->n = n;
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),
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#ifdef ZFS_DEBUG
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TP_printk("zrl { refcount %d owner_pid %d caller %s } n %u",
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__entry->refcount, __entry->owner_pid, __get_str(caller),
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__entry->refcount, __entry->owner_pid, __entry->caller,
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__entry->n)
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#else
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TP_printk("zrl { refcount %d } n %u",
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@ -73,8 +73,8 @@ DECLARE_EVENT_CLASS(zfs_zrlock_class,
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#define DEFINE_ZRLOCK_EVENT(name) \
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DEFINE_EVENT(zfs_zrlock_class, name, \
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TP_PROTO(zrlock_t *zrl, uint32_t n), \
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TP_ARGS(zrl, n))
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TP_PROTO(zrlock_t *zrl, kthread_t *owner, uint32_t n), \
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TP_ARGS(zrl, owner, n))
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DEFINE_ZRLOCK_EVENT(zfs_zrlock__reentry);
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#endif /* _TRACE_ZRLOCK_H */
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@ -82,8 +82,10 @@ zrl_add_impl(zrlock_t *zrl, const char *zc)
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ASSERT3S((int32_t)n, >=, 0);
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#ifdef ZFS_DEBUG
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if (zrl->zr_owner == curthread) {
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DTRACE_PROBE2(zrlock__reentry,
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zrlock_t *, zrl, uint32_t, n);
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DTRACE_PROBE3(zrlock__reentry,
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zrlock_t *, zrl,
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kthread_t *, curthread,
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uint32_t, n);
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}
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zrl->zr_owner = curthread;
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zrl->zr_caller = zc;
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