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x86/mce/amd: Cleanup threshold device remove path
Pass in the bank pointer directly to the cleaning up functions, obviating the need for per-CPU accesses. Make the clean up path interrupt-safe by cleaning the bank pointer first so that the rest of the teardown happens safe from the thresholding interrupt. No functional changes. [ bp: Write commit message and reverse bank->shared test to save an indentation level in threshold_remove_bank(). ] Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Signed-off-by: Borislav Petkov <bp@suse.de> Link: https://lkml.kernel.org/r/20200403161943.1458-7-bp@alien8.de
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@ -57,6 +57,7 @@ struct threshold_bank {
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/* initialized to the number of CPUs on the node sharing this bank */
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refcount_t cpus;
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unsigned int shared;
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};
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struct amd_northbridge {
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@ -1362,6 +1362,7 @@ static int threshold_create_bank(struct threshold_bank **bp, unsigned int cpu,
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}
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if (is_shared_bank(bank)) {
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b->shared = 1;
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refcount_set(&b->cpus, 1);
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/* nb is already initialized, see above */
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@ -1391,21 +1392,16 @@ static void threshold_block_release(struct kobject *kobj)
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kfree(to_block(kobj));
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}
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static void deallocate_threshold_block(unsigned int cpu, unsigned int bank)
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static void deallocate_threshold_blocks(struct threshold_bank *bank)
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{
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struct threshold_block *pos = NULL;
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struct threshold_block *tmp = NULL;
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struct threshold_bank *head = per_cpu(threshold_banks, cpu)[bank];
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struct threshold_block *pos, *tmp;
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if (!head)
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return;
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list_for_each_entry_safe(pos, tmp, &head->blocks->miscj, miscj) {
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list_for_each_entry_safe(pos, tmp, &bank->blocks->miscj, miscj) {
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list_del(&pos->miscj);
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kobject_put(&pos->kobj);
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}
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kobject_put(&head->blocks->kobj);
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kobject_put(&bank->blocks->kobj);
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}
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static void __threshold_remove_blocks(struct threshold_bank *b)
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@ -1419,57 +1415,56 @@ static void __threshold_remove_blocks(struct threshold_bank *b)
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kobject_del(&pos->kobj);
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}
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static void threshold_remove_bank(unsigned int cpu, int bank)
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static void threshold_remove_bank(struct threshold_bank *bank)
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{
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struct amd_northbridge *nb;
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struct threshold_bank *b;
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b = per_cpu(threshold_banks, cpu)[bank];
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if (!b)
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if (!bank->blocks)
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goto out_free;
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if (!bank->shared)
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goto out_dealloc;
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if (!refcount_dec_and_test(&bank->cpus)) {
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__threshold_remove_blocks(bank);
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return;
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if (!b->blocks)
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goto free_out;
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if (is_shared_bank(bank)) {
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if (!refcount_dec_and_test(&b->cpus)) {
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__threshold_remove_blocks(b);
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per_cpu(threshold_banks, cpu)[bank] = NULL;
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return;
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} else {
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/*
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* the last CPU on this node using the shared bank is
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* going away, remove that bank now.
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*/
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nb = node_to_amd_nb(amd_get_nb_id(cpu));
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nb->bank4 = NULL;
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}
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} else {
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/*
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* The last CPU on this node using the shared bank is going
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* away, remove that bank now.
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*/
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nb = node_to_amd_nb(amd_get_nb_id(smp_processor_id()));
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nb->bank4 = NULL;
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}
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deallocate_threshold_block(cpu, bank);
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out_dealloc:
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deallocate_threshold_blocks(bank);
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free_out:
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kobject_del(b->kobj);
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kobject_put(b->kobj);
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kfree(b);
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per_cpu(threshold_banks, cpu)[bank] = NULL;
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out_free:
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kobject_put(bank->kobj);
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kfree(bank);
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}
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int mce_threshold_remove_device(unsigned int cpu)
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{
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struct threshold_bank **bp = this_cpu_read(threshold_banks);
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unsigned int bank;
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unsigned int bank, numbanks = this_cpu_read(mce_num_banks);
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if (!bp)
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return 0;
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for (bank = 0; bank < per_cpu(mce_num_banks, cpu); ++bank) {
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if (!(per_cpu(bank_map, cpu) & (1 << bank)))
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continue;
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threshold_remove_bank(cpu, bank);
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}
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/* Clear the pointer before freeing the memory */
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/*
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* Clear the pointer before cleaning up, so that the interrupt won't
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* touch anything of this.
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*/
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this_cpu_write(threshold_banks, NULL);
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for (bank = 0; bank < numbanks; bank++) {
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if (bp[bank]) {
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threshold_remove_bank(bp[bank]);
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bp[bank] = NULL;
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}
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}
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kfree(bp);
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return 0;
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}
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