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Fri, 04 Sep 2026 09:24:40 -0700 (PDT) From: Magnus Lindholm To: richard.henderson@linaro.org, mattst88@gmail.com, linux-kernel@vger.kernel.org, linux-alpha@vger.kernel.org Cc: linmag7@gmail.com Subject: [PATCH 2/3] alpha: do not skip TLB shootdown IPIs for kthread-borrowed mms Date: Fri, 4 Sep 2026 18:23:30 +0200 Message-ID: <20260904162424.376504-3-linmag7@gmail.com> X-Mailer: git-send-email 2.53.0 In-Reply-To: <20260904162424.376504-1-linmag7@gmail.com> References: <20260904162424.376504-1-linmag7@gmail.com> Precedence: bulk X-Mailing-List: linux-alpha@vger.kernel.org List-Id: List-Subscribe: List-Unsubscribe: MIME-Version: 1.0 Content-Transfer-Encoding: 8bit flush_tlb_mm(), flush_tlb_page() and flush_icache_user_page() skip the shootdown IPI when mm_users <= 1, on the assumption that no other CPU can be running the mm. A task that borrows an mm through kthread_use_mm() takes mmgrab() rather than mmget(), so it never appears in mm_users, and kthread_use_mm() may be handed an mm that is already the caller's active_mm and loaded on that CPU. Such a CPU was not only left without an IPI, its mm->context[cpu] was cleared from under it. mm->context[cpu] is already the record of which CPUs hold an ASN for the mm. Test it rather than clearing it: take the shortcut only when no other CPU has one, and otherwise fall through to the IPI, which invalidates those CPUs properly. A CPU that merely ran the mm in the past also holds a context and now costs an IPI, which errs in the safe direction. Dropping that clearing loop leaves every runtime write to mm->context[] targeting the writing CPU's own slot, so the array becomes a lockless publication of which CPUs may be using the mm, with a single writer per slot. Mark the two stores that are now observed from other CPUs; flush_tlb_other() already uses WRITE_ONCE(). The uniprocessor flush_icache_user_page() is left alone, as nothing reads another CPU's slot there, and init_new_context() runs before the mm is shared. The reads also need ordering against the changes that led to the flush. A CPU that publishes a context is in turn ordered before it goes on to access the mm, by two different barriers: kthread_use_mm() issues one through mmdrop_lazy_tlb() for the initial direct switch, and if the task later migrates, the context published from ev5_switch_mm() is followed by the scheduler's post-switch barrier, on alpha the mb() in arch_spin_unlock() from finish_lock_switch(), as described in Documentation/scheduler/membarrier.rst. So a CPU either already holds a context and is seen here, or it allocates a fresh one before going on to use the mm, and a fresh ASN carries nothing over from the previous context. Fixes: 1da177e4c3f4 ("Linux-2.6.12-rc2") Signed-off-by: Magnus Lindholm --- arch/alpha/include/asm/mmu_context.h | 2 +- arch/alpha/kernel/smp.c | 48 ++++++++++++++-------------- arch/alpha/mm/fault.c | 2 +- 3 files changed, 26 insertions(+), 26 deletions(-) diff --git a/arch/alpha/include/asm/mmu_context.h b/arch/alpha/include/asm/mmu_context.h index 825d3b9605c9..a829f557396d 100644 --- a/arch/alpha/include/asm/mmu_context.h +++ b/arch/alpha/include/asm/mmu_context.h @@ -147,7 +147,7 @@ ev5_switch_mm(struct mm_struct *prev_mm, struct mm_struct *next_mm, mmc = next_mm->context[cpu]; if ((mmc ^ asn) & ~HARDWARE_ASN_MASK) { mmc = __get_new_mm_context(next_mm, cpu); - next_mm->context[cpu] = mmc; + WRITE_ONCE(next_mm->context[cpu], mmc); } #ifdef CONFIG_SMP else diff --git a/arch/alpha/kernel/smp.c b/arch/alpha/kernel/smp.c index e21bc3920bec..c4d12d8312a7 100644 --- a/arch/alpha/kernel/smp.c +++ b/arch/alpha/kernel/smp.c @@ -631,6 +631,24 @@ ipi_flush_tlb_mm(void *x) flush_tlb_other(mm); } +/* True if a CPU other than this one holds an ASN for MM. */ +static bool +mm_context_elsewhere(struct mm_struct *mm) +{ + int cpu, this_cpu = smp_processor_id(); + + /* Pairs with the barrier the publishing CPU issues before using MM. */ + smp_mb(); + + for_each_online_cpu(cpu) { + if (cpu == this_cpu) + continue; + if (READ_ONCE(mm->context[cpu])) + return true; + } + return false; +} + void flush_tlb_mm(struct mm_struct *mm) { @@ -638,14 +656,8 @@ flush_tlb_mm(struct mm_struct *mm) if (mm == current->active_mm) { flush_tlb_current(mm); - if (atomic_read(&mm->mm_users) <= 1) { - int cpu, this_cpu = smp_processor_id(); - for (cpu = 0; cpu < NR_CPUS; cpu++) { - if (!cpu_online(cpu) || cpu == this_cpu) - continue; - if (mm->context[cpu]) - mm->context[cpu] = 0; - } + if (atomic_read(&mm->mm_users) <= 1 && + !mm_context_elsewhere(mm)) { preempt_enable(); return; } @@ -690,14 +702,8 @@ flush_tlb_page(struct vm_area_struct *vma, unsigned long addr) /* As in ipi_flush_tlb_page(): a targeted tbi() needs MM current. */ if (mm == current->mm) { flush_tlb_current_page(mm, vma, addr); - if (atomic_read(&mm->mm_users) <= 1) { - int cpu, this_cpu = smp_processor_id(); - for (cpu = 0; cpu < NR_CPUS; cpu++) { - if (!cpu_online(cpu) || cpu == this_cpu) - continue; - if (mm->context[cpu]) - mm->context[cpu] = 0; - } + if (atomic_read(&mm->mm_users) <= 1 && + !mm_context_elsewhere(mm)) { preempt_enable(); return; } @@ -747,14 +753,8 @@ flush_icache_user_page(struct vm_area_struct *vma, struct page *page, if (mm == current->active_mm) { __load_new_mm_context(mm); - if (atomic_read(&mm->mm_users) <= 1) { - int cpu, this_cpu = smp_processor_id(); - for (cpu = 0; cpu < NR_CPUS; cpu++) { - if (!cpu_online(cpu) || cpu == this_cpu) - continue; - if (mm->context[cpu]) - mm->context[cpu] = 0; - } + if (atomic_read(&mm->mm_users) <= 1 && + !mm_context_elsewhere(mm)) { preempt_enable(); return; } diff --git a/arch/alpha/mm/fault.c b/arch/alpha/mm/fault.c index a9816bbc9f34..7bbba9010dac 100644 --- a/arch/alpha/mm/fault.c +++ b/arch/alpha/mm/fault.c @@ -45,7 +45,7 @@ __load_new_mm_context(struct mm_struct *next_mm) struct pcb_struct *pcb; mmc = __get_new_mm_context(next_mm, smp_processor_id()); - next_mm->context[smp_processor_id()] = mmc; + WRITE_ONCE(next_mm->context[smp_processor_id()], mmc); pcb = ¤t_thread_info()->pcb; pcb->asn = mmc & HARDWARE_ASN_MASK; -- 2.55.0