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c33c794828
Convert all instances of direct pte_t* dereferencing to instead use ptep_get() helper. This means that by default, the accesses change from a C dereference to a READ_ONCE(). This is technically the correct thing to do since where pgtables are modified by HW (for access/dirty) they are volatile and therefore we should always ensure READ_ONCE() semantics. But more importantly, by always using the helper, it can be overridden by the architecture to fully encapsulate the contents of the pte. Arch code is deliberately not converted, as the arch code knows best. It is intended that arch code (arm64) will override the default with its own implementation that can (e.g.) hide certain bits from the core code, or determine young/dirty status by mixing in state from another source. Conversion was done using Coccinelle: ---- // $ make coccicheck \ // COCCI=ptepget.cocci \ // SPFLAGS="--include-headers" \ // MODE=patch virtual patch @ depends on patch @ pte_t *v; @@ - *v + ptep_get(v) ---- Then reviewed and hand-edited to avoid multiple unnecessary calls to ptep_get(), instead opting to store the result of a single call in a variable, where it is correct to do so. This aims to negate any cost of READ_ONCE() and will benefit arch-overrides that may be more complex. Included is a fix for an issue in an earlier version of this patch that was pointed out by kernel test robot. The issue arose because config MMU=n elides definition of the ptep helper functions, including ptep_get(). HUGETLB_PAGE=n configs still define a simple huge_ptep_clear_flush() for linking purposes, which dereferences the ptep. So when both configs are disabled, this caused a build error because ptep_get() is not defined. Fix by continuing to do a direct dereference when MMU=n. This is safe because for this config the arch code cannot be trying to virtualize the ptes because none of the ptep helpers are defined. Link: https://lkml.kernel.org/r/20230612151545.3317766-4-ryan.roberts@arm.com Reported-by: kernel test robot <lkp@intel.com> Link: https://lore.kernel.org/oe-kbuild-all/202305120142.yXsNEo6H-lkp@intel.com/ Signed-off-by: Ryan Roberts <ryan.roberts@arm.com> Cc: Adrian Hunter <adrian.hunter@intel.com> Cc: Alexander Potapenko <glider@google.com> Cc: Alexander Shishkin <alexander.shishkin@linux.intel.com> Cc: Alex Williamson <alex.williamson@redhat.com> Cc: Al Viro <viro@zeniv.linux.org.uk> Cc: Andrey Konovalov <andreyknvl@gmail.com> Cc: Andrey Ryabinin <ryabinin.a.a@gmail.com> Cc: Christian Brauner <brauner@kernel.org> Cc: Christoph Hellwig <hch@infradead.org> Cc: Daniel Vetter <daniel@ffwll.ch> Cc: Dave Airlie <airlied@gmail.com> Cc: Dimitri Sivanich <dimitri.sivanich@hpe.com> Cc: Dmitry Vyukov <dvyukov@google.com> Cc: Ian Rogers <irogers@google.com> Cc: Jason Gunthorpe <jgg@ziepe.ca> Cc: Jérôme Glisse <jglisse@redhat.com> Cc: Jiri Olsa <jolsa@kernel.org> Cc: Johannes Weiner <hannes@cmpxchg.org> Cc: Kirill A. Shutemov <kirill.shutemov@linux.intel.com> Cc: Lorenzo Stoakes <lstoakes@gmail.com> Cc: Mark Rutland <mark.rutland@arm.com> Cc: Matthew Wilcox <willy@infradead.org> Cc: Miaohe Lin <linmiaohe@huawei.com> Cc: Michal Hocko <mhocko@kernel.org> Cc: Mike Kravetz <mike.kravetz@oracle.com> Cc: Mike Rapoport (IBM) <rppt@kernel.org> Cc: Muchun Song <muchun.song@linux.dev> Cc: Namhyung Kim <namhyung@kernel.org> Cc: Naoya Horiguchi <naoya.horiguchi@nec.com> Cc: Oleksandr Tyshchenko <oleksandr_tyshchenko@epam.com> Cc: Pavel Tatashin <pasha.tatashin@soleen.com> Cc: Roman Gushchin <roman.gushchin@linux.dev> Cc: SeongJae Park <sj@kernel.org> Cc: Shakeel Butt <shakeelb@google.com> Cc: Uladzislau Rezki (Sony) <urezki@gmail.com> Cc: Vincenzo Frascino <vincenzo.frascino@arm.com> Cc: Yu Zhao <yuzhao@google.com> Signed-off-by: Andrew Morton <akpm@linux-foundation.org>
352 lines
7.7 KiB
C
352 lines
7.7 KiB
C
// SPDX-License-Identifier: GPL-2.0
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/*
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* DAMON Primitives for The Physical Address Space
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*
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* Author: SeongJae Park <sj@kernel.org>
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*/
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#define pr_fmt(fmt) "damon-pa: " fmt
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#include <linux/mmu_notifier.h>
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#include <linux/page_idle.h>
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#include <linux/pagemap.h>
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#include <linux/rmap.h>
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#include <linux/swap.h>
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#include "../internal.h"
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#include "ops-common.h"
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static bool __damon_pa_mkold(struct folio *folio, struct vm_area_struct *vma,
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unsigned long addr, void *arg)
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{
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DEFINE_FOLIO_VMA_WALK(pvmw, folio, vma, addr, 0);
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while (page_vma_mapped_walk(&pvmw)) {
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addr = pvmw.address;
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if (pvmw.pte)
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damon_ptep_mkold(pvmw.pte, vma, addr);
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else
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damon_pmdp_mkold(pvmw.pmd, vma, addr);
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}
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return true;
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}
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static void damon_pa_mkold(unsigned long paddr)
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{
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struct folio *folio = damon_get_folio(PHYS_PFN(paddr));
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struct rmap_walk_control rwc = {
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.rmap_one = __damon_pa_mkold,
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.anon_lock = folio_lock_anon_vma_read,
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};
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bool need_lock;
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if (!folio)
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return;
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if (!folio_mapped(folio) || !folio_raw_mapping(folio)) {
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folio_set_idle(folio);
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goto out;
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}
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need_lock = !folio_test_anon(folio) || folio_test_ksm(folio);
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if (need_lock && !folio_trylock(folio))
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goto out;
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rmap_walk(folio, &rwc);
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if (need_lock)
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folio_unlock(folio);
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out:
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folio_put(folio);
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}
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static void __damon_pa_prepare_access_check(struct damon_region *r)
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{
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r->sampling_addr = damon_rand(r->ar.start, r->ar.end);
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damon_pa_mkold(r->sampling_addr);
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}
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static void damon_pa_prepare_access_checks(struct damon_ctx *ctx)
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{
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struct damon_target *t;
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struct damon_region *r;
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damon_for_each_target(t, ctx) {
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damon_for_each_region(r, t)
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__damon_pa_prepare_access_check(r);
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}
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}
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static bool __damon_pa_young(struct folio *folio, struct vm_area_struct *vma,
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unsigned long addr, void *arg)
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{
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bool *accessed = arg;
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DEFINE_FOLIO_VMA_WALK(pvmw, folio, vma, addr, 0);
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*accessed = false;
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while (page_vma_mapped_walk(&pvmw)) {
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addr = pvmw.address;
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if (pvmw.pte) {
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*accessed = pte_young(ptep_get(pvmw.pte)) ||
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!folio_test_idle(folio) ||
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mmu_notifier_test_young(vma->vm_mm, addr);
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} else {
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#ifdef CONFIG_TRANSPARENT_HUGEPAGE
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*accessed = pmd_young(*pvmw.pmd) ||
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!folio_test_idle(folio) ||
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mmu_notifier_test_young(vma->vm_mm, addr);
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#else
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WARN_ON_ONCE(1);
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#endif /* CONFIG_TRANSPARENT_HUGEPAGE */
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}
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if (*accessed) {
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page_vma_mapped_walk_done(&pvmw);
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break;
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}
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}
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/* If accessed, stop walking */
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return *accessed == false;
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}
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static bool damon_pa_young(unsigned long paddr, unsigned long *folio_sz)
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{
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struct folio *folio = damon_get_folio(PHYS_PFN(paddr));
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bool accessed = false;
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struct rmap_walk_control rwc = {
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.arg = &accessed,
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.rmap_one = __damon_pa_young,
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.anon_lock = folio_lock_anon_vma_read,
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};
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bool need_lock;
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if (!folio)
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return false;
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if (!folio_mapped(folio) || !folio_raw_mapping(folio)) {
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if (folio_test_idle(folio))
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accessed = false;
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else
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accessed = true;
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goto out;
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}
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need_lock = !folio_test_anon(folio) || folio_test_ksm(folio);
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if (need_lock && !folio_trylock(folio))
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goto out;
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rmap_walk(folio, &rwc);
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if (need_lock)
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folio_unlock(folio);
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out:
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*folio_sz = folio_size(folio);
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folio_put(folio);
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return accessed;
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}
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static void __damon_pa_check_access(struct damon_region *r)
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{
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static unsigned long last_addr;
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static unsigned long last_folio_sz = PAGE_SIZE;
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static bool last_accessed;
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/* If the region is in the last checked page, reuse the result */
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if (ALIGN_DOWN(last_addr, last_folio_sz) ==
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ALIGN_DOWN(r->sampling_addr, last_folio_sz)) {
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if (last_accessed)
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r->nr_accesses++;
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return;
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}
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last_accessed = damon_pa_young(r->sampling_addr, &last_folio_sz);
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if (last_accessed)
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r->nr_accesses++;
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last_addr = r->sampling_addr;
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}
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static unsigned int damon_pa_check_accesses(struct damon_ctx *ctx)
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{
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struct damon_target *t;
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struct damon_region *r;
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unsigned int max_nr_accesses = 0;
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damon_for_each_target(t, ctx) {
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damon_for_each_region(r, t) {
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__damon_pa_check_access(r);
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max_nr_accesses = max(r->nr_accesses, max_nr_accesses);
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}
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}
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return max_nr_accesses;
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}
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static bool __damos_pa_filter_out(struct damos_filter *filter,
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struct folio *folio)
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{
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bool matched = false;
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struct mem_cgroup *memcg;
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switch (filter->type) {
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case DAMOS_FILTER_TYPE_ANON:
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matched = folio_test_anon(folio);
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break;
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case DAMOS_FILTER_TYPE_MEMCG:
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rcu_read_lock();
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memcg = folio_memcg_check(folio);
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if (!memcg)
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matched = false;
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else
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matched = filter->memcg_id == mem_cgroup_id(memcg);
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rcu_read_unlock();
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break;
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default:
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break;
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}
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return matched == filter->matching;
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}
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/*
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* damos_pa_filter_out - Return true if the page should be filtered out.
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*/
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static bool damos_pa_filter_out(struct damos *scheme, struct folio *folio)
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{
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struct damos_filter *filter;
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damos_for_each_filter(filter, scheme) {
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if (__damos_pa_filter_out(filter, folio))
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return true;
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}
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return false;
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}
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static unsigned long damon_pa_pageout(struct damon_region *r, struct damos *s)
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{
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unsigned long addr, applied;
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LIST_HEAD(folio_list);
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for (addr = r->ar.start; addr < r->ar.end; addr += PAGE_SIZE) {
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struct folio *folio = damon_get_folio(PHYS_PFN(addr));
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if (!folio)
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continue;
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if (damos_pa_filter_out(s, folio))
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goto put_folio;
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folio_clear_referenced(folio);
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folio_test_clear_young(folio);
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if (!folio_isolate_lru(folio))
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goto put_folio;
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if (folio_test_unevictable(folio))
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folio_putback_lru(folio);
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else
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list_add(&folio->lru, &folio_list);
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put_folio:
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folio_put(folio);
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}
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applied = reclaim_pages(&folio_list);
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cond_resched();
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return applied * PAGE_SIZE;
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}
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static inline unsigned long damon_pa_mark_accessed_or_deactivate(
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struct damon_region *r, struct damos *s, bool mark_accessed)
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{
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unsigned long addr, applied = 0;
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for (addr = r->ar.start; addr < r->ar.end; addr += PAGE_SIZE) {
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struct folio *folio = damon_get_folio(PHYS_PFN(addr));
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if (!folio)
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continue;
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if (damos_pa_filter_out(s, folio))
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goto put_folio;
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if (mark_accessed)
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folio_mark_accessed(folio);
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else
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folio_deactivate(folio);
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applied += folio_nr_pages(folio);
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put_folio:
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folio_put(folio);
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}
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return applied * PAGE_SIZE;
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}
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static unsigned long damon_pa_mark_accessed(struct damon_region *r,
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struct damos *s)
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{
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return damon_pa_mark_accessed_or_deactivate(r, s, true);
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}
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static unsigned long damon_pa_deactivate_pages(struct damon_region *r,
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struct damos *s)
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{
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return damon_pa_mark_accessed_or_deactivate(r, s, false);
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}
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static unsigned long damon_pa_apply_scheme(struct damon_ctx *ctx,
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struct damon_target *t, struct damon_region *r,
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struct damos *scheme)
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{
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switch (scheme->action) {
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case DAMOS_PAGEOUT:
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return damon_pa_pageout(r, scheme);
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case DAMOS_LRU_PRIO:
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return damon_pa_mark_accessed(r, scheme);
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case DAMOS_LRU_DEPRIO:
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return damon_pa_deactivate_pages(r, scheme);
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case DAMOS_STAT:
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break;
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default:
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/* DAMOS actions that not yet supported by 'paddr'. */
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break;
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}
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return 0;
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}
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static int damon_pa_scheme_score(struct damon_ctx *context,
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struct damon_target *t, struct damon_region *r,
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struct damos *scheme)
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{
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switch (scheme->action) {
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case DAMOS_PAGEOUT:
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return damon_cold_score(context, r, scheme);
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case DAMOS_LRU_PRIO:
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return damon_hot_score(context, r, scheme);
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case DAMOS_LRU_DEPRIO:
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return damon_cold_score(context, r, scheme);
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default:
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break;
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}
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return DAMOS_MAX_SCORE;
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}
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static int __init damon_pa_initcall(void)
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{
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struct damon_operations ops = {
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.id = DAMON_OPS_PADDR,
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.init = NULL,
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.update = NULL,
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.prepare_access_checks = damon_pa_prepare_access_checks,
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.check_accesses = damon_pa_check_accesses,
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.reset_aggregated = NULL,
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.target_valid = NULL,
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.cleanup = NULL,
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.apply_scheme = damon_pa_apply_scheme,
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.get_scheme_score = damon_pa_scheme_score,
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};
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return damon_register_ops(&ops);
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};
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subsys_initcall(damon_pa_initcall);
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