mirror of
https://git.kernel.org/pub/scm/linux/kernel/git/stable/linux.git
synced 2026-08-09 06:14:34 +02:00
Pull MM updates from Andrew Morton:
- "selftests/mm: clean up build output and verbosity" (Li Wang)
Remove some noise from the MM selftests build
- "mm: Free contiguous order-0 pages efficiently" (Ryan Roberts)
Speed up the freeing of a batch of 0-order pages by first scanning
them for coalescing opportunities. This is applicable to vfree() and
to the releasing of frozen pages
- "mm/damon: introduce DAMOS failed region quota charge ratio"
(SeongJae Park)
Address a DAMOS usability issue: The DAMOS quota often exhausts
prematurely because it charges for all memory attempted, causing slow
and inconsistent performance when actions fail on unreclaimable
memory.
To fix this, a new feature lets users set a smaller, flexible quota
charge ratio (via a numerator and denominator) for failed regions.
Since failed actions cause less overhead, reducing their quota cost
ensures more predictable and efficient DAMOS processing
- "selftests/cgroup: improve zswap tests robustness and support large
page sizes" (Li Wang)
Fix various spurious failures and improves the overall robustness of
the cgroup zswap selftests
- "fix MAP_DROPPABLE not supported errno" (Anthony Yznaga)
Fix an issue in the mlock selftests on arm32
- "mm: huge_memory: clean up defrag sysfs with shared" (Breno Leitao)
Some maintenance work in the huge_memory code
- "treewide: fixup gfp_t printks" (Brendan Jackman)
Use the special vprintf() gfp_t conversion in various places
- "mm: Fix vmemmap optimization accounting and initialization" (Muchun
Song)
Fix several bugs in the vmemmap optimization, mainly around incorrect
page accounting and memmap initialization in the DAX and memory
hotplug paths. It also fixes pageblock migratetype initialization and
struct page initialization for ZONE_DEVICE compound pages
- "mm/damon: repost non-hotfix reviewed patches in damon/next tree"
A sprinkle of unrelated minor bugfixes for DAMON
- "mm: remove page_mapped()" (David Hildenbrand)
Remove this function from the tree, replacing it with folio_mapped()
- "mm/damon: let DAMON be paused and resumed" (SeongJae Park)
Allow DAMON to be paused and resumed without losing its current state
- "kasan: hw_tags: Disable tagging for stack and page-tables" (Muhammad
Usama Anjum)
Simplify and speed up kasan by removing its ineffective tagging of
stacks and page tables
- "mm/damon/reclaim,lru_sort: monitor all system rams by default"
(SeongJae Park)
Simplify deployment on diverse hardware like NUMA systems by updating
DAMON_RECLAIM and DAMON_LRU_SORT to automatically monitor the
physical address range covering all System RAM areas by default,
replacing the overly restrictive behavior that only targeted the
single largest memory block to save on negligible overhead
- "mm/damon/sysfs: document filters/ directory as deprecated" (SeongJae
Park)
Update some DAMON docs
- "mm: use spinlock guards for zone lock" (Dmitry Ilvokhin)
Switch zone->lock handling over to using the guard() mechanisms
- "mm/filemap: tighten mmap_miss hit accounting" (fujunjie)
Fix a flaw where the mmap_miss counter over-credited page cache hits
during fault-arounds and page-fault retries. This results in
significant reduction of redundant synchronous mmap readahead I/O,
drastically cutting down execution time and gigabytes read for sparse
random or strided memory access workloads
- "selftests/cgroup: Fix false positive failures in test_percpu_basic"
(Li Wang)
Fix a couple of false-positives in the cgroup kmem selftests
- "mm/damon/reclaim: support monitoring intervals auto-tuning"
(SeongJae Park)
Add a new parameter to DAMON permitting DAMON_RECLAIM to
automatically tune DAMON's sampling and aggregation intervals
- "mm/damon/stat: add kdamond_pid parameter" (SeongJae Park)
Change DAMON_STAT to provide the pid of its kdamond
- "mm/kmemleak: dedupe verbose scan output" (Breno Leitao)
Remove large amounts of duplicated backtraces from the verbose-mode
kmemleak output
- "mm: remove CONFIG_HAVE_BOOTMEM_INFO_NODE (Part 1)" (David
Hildenbrand)
Reduce our use of CONFIG_HAVE_BOOTMEM_INFO_NODE, with a view to
removing it entirely in a later series
- "mm/damon: validate min_region_size to be power of 2" (Liew Rui Yan)
Prevent users from passing a non-power-of-2 value of `addr_unit', as
this later results in undesirable behavior
- "mm: document read_pages and simplify usage" (Frederick Mayle)
- "tools/mm/page-types: Fix misc bugs" (Ye Liu)
Fix three issues in tools/mm/page-types.c
- "mm: misc cleanups from __GFP_UNMAPPED series" (Brendan Jackman)
Implement several cleanups in the page allocator and related code
- "mm, swap: swap table phase IV: unify allocation" (Kairui Song)
Unify the allocation and charging of anon and shmem swap in folios,
provides better synchronization, consolidates the metadata
management, hence dropping the static array and map, and improves
performance
- "mm/damon: introduce data attributes monitoring" (SeongJae Park(
Extend DAMON to monitor general data attributes other than accesses
- "mm/vmalloc: free unused pages on vrealloc() shrink" (Shivam Kalra)
Implement the TODO in vrealloc() to unmap and free unused pages when
shrinking across a page boundary
- "mm/damon: documentation and comment fixes" (niecheng)
- "remove mmap_action success, error hooks" (Lorenzo Stoakes)
Eliminate custom hooks from mmap_action by removing the problematic
success_hook which allowed drivers to improperly access uninitialized
VMAs. It replaces the error_hook with a simple error-code field and
updates the memory char driver accordingly
- "mm/damon: minor improvements for code readability and tests"
(SeongJae Park)
- "mm/damon: fix macro arguments and clarify quota goals doc" (Maksym
Shcherba)
- "userfaultfd: merge fs/userfaultfd.c into mm/userfaultfd.c" (Mike
Rapoport)
- "mm/mglru: improve reclaim loop and dirty folio" (Kairui Song and
others)
Clean up and slightly improves MGLRU's reclaim loop and dirty
writeback handling. Large performance improvements are measured
- "use vma locks for proc/pid/{smaps|numa_maps} reads" (Suren
Baghdasaryan)
Use per-vma locks when reading /proc/pid/smaps and numa_maps similar
to reduce contention on central mmap_lock
- "refactors thpsize_shmem_enabled_store() and thpsize_shmem_enabled_show()"
(Ran Xiaokai)
Some cleanup work in the THP code
- "selftests/memfd: fix compilation warnings" (Konstantin Khorenko)
Fix a few build glitches in the memfd selftest code.
- "memcg: shrink obj_stock_pcp and cache multiple objcgs" (Shakeel
Butt)
Resolve a 68% performance regression caused by NUMA-node cache
thrashing around struct obj_stock_pcp by shrinking its existing
fields and expanding it into a multi-slot array that caches up to
five obj_cgroup pointers per CPU, allowing per-node variants of the
same memcg to coexist within a single 64-byte cache line.
- "zram: writeback fixes" (Sergey Senozhatsky)
address a couple of unrelated zram writeback issues
- "mm: switch THP shrinker to list_lru" (Johannes Weiner)
Resolve NUMA-awareness issues and streamlines callsite interaction by
refactoring and extending the list_lru API to completely replace the
complex, open-coded deferred split queue for Transparent Huge Pages
- "mm: improve large folio readahead for exec memory" (Usama Arif)
Improve large-folio readahead on systems like 64K-page arm64 by
preventing the mmap_miss check from permanently disabling
target-oriented VM_EXEC readahead, and by generalizing the
force_thp_readahead gate to support mappings with any usefully large
maximum folio order under the cache cap.
- "userfaultfd/pagemap: pre-existing fixes" (Kiryl Shutsemau)
Fix a bunch of minor issues in the userfaultfd/pagemap, all of which
were flagged by Sashiko review of proposed new material
- "mm/sparse-vmemmap: Provide generic vmemmap_set_pmd() and
vmemmap_check_pmd()" (Muchun Song)
Provide generic versions of these two functions so the four
arch-specific implementations can be removed.
- "mm/swap, PM: hibernate: fix swapoff race in uswsusp by pinning swap
device" (Youngjun Park)
Address a uswsusp-vs-swapoff race and reduces the swap device
reference taking/releasing frequency.
- "mm/hmm: A fix and a selftest" (Dev Jain)
* tag 'mm-stable-2026-06-18-09-26' of git://git.kernel.org/pub/scm/linux/kernel/git/akpm/mm: (321 commits)
selftests/mm/hmm-tests: test pagemap reads of PMD device-private entries
fs/proc/task_mmu: do not warn on seeing non-migration pmd entry
lib/test_hmm: check alloc_page_vma() return value and handle OOM
mm/compaction: cap compact_gap() at COMPACT_CLUSTER_MAX
mm/swap: remove redundant swap device reference in alloc/free
mm/swap, PM: hibernate: fix swapoff race in uswsusp by pinning swap device
mm/filemap: use folio_next_index() for start
vmalloc: fix NULL pointer dereference in is_vm_area_hugepages()
sparc/mm: drop vmemmap_check_pmd helper and use generic code
loongarch/mm: drop vmemmap_check_pmd helper and use generic code
riscv/mm: drop vmemmap_pmd helpers and use generic code
arm64/mm: drop vmemmap_pmd helpers and use generic code
mm/sparse-vmemmap: provide generic vmemmap_set_pmd() and vmemmap_check_pmd()
rust: page: mark Page::nid as inline
userfaultfd: build __VMA_UFFD_FLAGS from config-gated masks
userfaultfd: gate must_wait writability check on pte_present()
mm/huge_memory: preserve pmd_swp_uffd_wp on device-private PMD downgrade
fs/proc/task_mmu: fix hugetlb self-deadlock in pagemap_scan_pte_hole()
fs/proc/task_mmu: use huge_page_size() in pagemap_scan_hugetlb_entry()
fs/proc/task_mmu: fix make_uffd_wp_huge_pte() prot-update race
...
875 lines
24 KiB
C
875 lines
24 KiB
C
// SPDX-License-Identifier: GPL-2.0
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/*
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* Test cases for KFENCE memory safety error detector. Since the interface with
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* which KFENCE's reports are obtained is via the console, this is the output we
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* should verify. For each test case checks the presence (or absence) of
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* generated reports. Relies on 'console' tracepoint to capture reports as they
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* appear in the kernel log.
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*
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* Copyright (C) 2020, Google LLC.
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* Author: Alexander Potapenko <glider@google.com>
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* Marco Elver <elver@google.com>
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*/
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#include <kunit/test.h>
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#include <linux/jiffies.h>
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#include <linux/kernel.h>
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#include <linux/kfence.h>
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#include <linux/mm.h>
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#include <linux/random.h>
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#include <linux/slab.h>
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#include <linux/spinlock.h>
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#include <linux/string.h>
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#include <linux/string_choices.h>
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#include <linux/tracepoint.h>
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#include <trace/events/printk.h>
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#include <asm/kfence.h>
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#include "kfence.h"
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/* May be overridden by <asm/kfence.h>. */
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#ifndef arch_kfence_test_address
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#define arch_kfence_test_address(addr) (addr)
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#endif
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#define KFENCE_TEST_REQUIRES(test, cond) do { \
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if (!(cond)) \
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kunit_skip((test), "Test requires: " #cond); \
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} while (0)
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/* Report as observed from console. */
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static struct {
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spinlock_t lock;
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int nlines;
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char lines[2][256];
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} observed = {
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.lock = __SPIN_LOCK_UNLOCKED(observed.lock),
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};
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/* Probe for console output: obtains observed lines of interest. */
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static void probe_console(void *ignore, const char *buf, size_t len)
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{
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unsigned long flags;
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int nlines;
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spin_lock_irqsave(&observed.lock, flags);
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nlines = observed.nlines;
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if (strnstr(buf, "BUG: KFENCE: ", len) && strnstr(buf, "test_", len)) {
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/*
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* KFENCE report and related to the test.
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*
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* The provided @buf is not NUL-terminated; copy no more than
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* @len bytes and let strscpy() add the missing NUL-terminator.
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*/
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strscpy(observed.lines[0], buf, min(len + 1, sizeof(observed.lines[0])));
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nlines = 1;
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} else if (nlines == 1 && (strnstr(buf, "at 0x", len) || strnstr(buf, "of 0x", len))) {
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strscpy(observed.lines[nlines++], buf, min(len + 1, sizeof(observed.lines[0])));
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}
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WRITE_ONCE(observed.nlines, nlines); /* Publish new nlines. */
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spin_unlock_irqrestore(&observed.lock, flags);
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}
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/* Check if a report related to the test exists. */
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static bool report_available(void)
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{
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return READ_ONCE(observed.nlines) == ARRAY_SIZE(observed.lines);
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}
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/* Information we expect in a report. */
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struct expect_report {
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enum kfence_error_type type; /* The type or error. */
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void *fn; /* Function pointer to expected function where access occurred. */
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char *addr; /* Address at which the bad access occurred. */
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bool is_write; /* Is access a write. */
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};
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static const char *get_access_type(const struct expect_report *r)
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{
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return str_write_read(r->is_write);
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}
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/* Check observed report matches information in @r. */
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static bool report_matches(const struct expect_report *r)
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{
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unsigned long addr = (unsigned long)r->addr;
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bool ret = false;
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unsigned long flags;
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typeof(observed.lines) expect;
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const char *end;
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char *cur;
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/* Doubled-checked locking. */
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if (!report_available())
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return false;
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/* Generate expected report contents. */
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/* Title */
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cur = expect[0];
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end = ARRAY_END(expect[0]);
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switch (r->type) {
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case KFENCE_ERROR_OOB:
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cur += scnprintf(cur, end - cur, "BUG: KFENCE: out-of-bounds %s",
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get_access_type(r));
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break;
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case KFENCE_ERROR_UAF:
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cur += scnprintf(cur, end - cur, "BUG: KFENCE: use-after-free %s",
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get_access_type(r));
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break;
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case KFENCE_ERROR_CORRUPTION:
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cur += scnprintf(cur, end - cur, "BUG: KFENCE: memory corruption");
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break;
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case KFENCE_ERROR_INVALID:
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cur += scnprintf(cur, end - cur, "BUG: KFENCE: invalid %s",
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get_access_type(r));
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break;
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case KFENCE_ERROR_INVALID_FREE:
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cur += scnprintf(cur, end - cur, "BUG: KFENCE: invalid free");
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break;
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}
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scnprintf(cur, end - cur, " in %pS", r->fn);
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/* The exact offset won't match, remove it; also strip module name. */
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cur = strchr(expect[0], '+');
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if (cur)
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*cur = '\0';
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/* Access information */
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cur = expect[1];
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end = ARRAY_END(expect[1]);
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switch (r->type) {
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case KFENCE_ERROR_OOB:
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cur += scnprintf(cur, end - cur, "Out-of-bounds %s at", get_access_type(r));
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addr = arch_kfence_test_address(addr);
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break;
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case KFENCE_ERROR_UAF:
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cur += scnprintf(cur, end - cur, "Use-after-free %s at", get_access_type(r));
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addr = arch_kfence_test_address(addr);
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break;
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case KFENCE_ERROR_CORRUPTION:
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cur += scnprintf(cur, end - cur, "Corrupted memory at");
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break;
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case KFENCE_ERROR_INVALID:
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cur += scnprintf(cur, end - cur, "Invalid %s at", get_access_type(r));
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addr = arch_kfence_test_address(addr);
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break;
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case KFENCE_ERROR_INVALID_FREE:
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cur += scnprintf(cur, end - cur, "Invalid free of");
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break;
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}
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cur += scnprintf(cur, end - cur, " 0x%p", (void *)addr);
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spin_lock_irqsave(&observed.lock, flags);
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if (!report_available())
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goto out; /* A new report is being captured. */
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/* Finally match expected output to what we actually observed. */
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ret = strstr(observed.lines[0], expect[0]) && strstr(observed.lines[1], expect[1]);
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out:
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spin_unlock_irqrestore(&observed.lock, flags);
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return ret;
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}
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/* ===== Test cases ===== */
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#define TEST_PRIV_WANT_MEMCACHE ((void *)1)
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/* Cache used by tests; if NULL, allocate from kmalloc instead. */
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static struct kmem_cache *test_cache;
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static size_t setup_test_cache(struct kunit *test, size_t size, slab_flags_t flags,
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void (*ctor)(void *))
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{
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if (test->priv != TEST_PRIV_WANT_MEMCACHE)
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return size;
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kunit_info(test, "%s: size=%zu, ctor=%ps\n", __func__, size, ctor);
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/*
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* Use SLAB_NO_MERGE to prevent merging with existing caches.
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* Use SLAB_ACCOUNT to allocate via memcg, if enabled.
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*/
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flags |= SLAB_NO_MERGE | SLAB_ACCOUNT;
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test_cache = kmem_cache_create("test", size, 1, flags, ctor);
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KUNIT_ASSERT_TRUE_MSG(test, test_cache, "could not create cache");
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return size;
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}
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static void test_cache_destroy(void)
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{
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if (!test_cache)
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return;
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kmem_cache_destroy(test_cache);
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test_cache = NULL;
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}
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static inline size_t kmalloc_cache_alignment(size_t size)
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{
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/* just to get ->align so no need to pass in the real caller */
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enum kmalloc_cache_type type = kmalloc_type(GFP_KERNEL, __kmalloc_token(0));
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return kmalloc_caches[type][__kmalloc_index(size, false)]->align;
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}
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/* Must always inline to match stack trace against caller. */
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static __always_inline void test_free(void *ptr)
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{
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if (test_cache)
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kmem_cache_free(test_cache, ptr);
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else
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kfree(ptr);
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}
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/*
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* If this should be a KFENCE allocation, and on which side the allocation and
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* the closest guard page should be.
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*/
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enum allocation_policy {
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ALLOCATE_ANY, /* KFENCE, any side. */
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ALLOCATE_LEFT, /* KFENCE, left side of page. */
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ALLOCATE_RIGHT, /* KFENCE, right side of page. */
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ALLOCATE_NONE, /* No KFENCE allocation. */
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};
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/*
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* Try to get a guarded allocation from KFENCE. Uses either kmalloc() or the
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* current test_cache if set up.
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*/
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static void *test_alloc(struct kunit *test, size_t size, gfp_t gfp, enum allocation_policy policy)
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{
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void *alloc;
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unsigned long timeout, resched_after;
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const char *policy_name;
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switch (policy) {
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case ALLOCATE_ANY:
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policy_name = "any";
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break;
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case ALLOCATE_LEFT:
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policy_name = "left";
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break;
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case ALLOCATE_RIGHT:
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policy_name = "right";
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break;
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case ALLOCATE_NONE:
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policy_name = "none";
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break;
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}
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kunit_info(test, "%s: size=%zu, gfp=%pGg, policy=%s, cache=%i\n", __func__, size, &gfp,
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policy_name, !!test_cache);
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/*
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* 100x the sample interval should be more than enough to ensure we get
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* a KFENCE allocation eventually.
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*/
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timeout = jiffies + msecs_to_jiffies(100 * kfence_sample_interval);
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/*
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* Especially for non-preemption kernels, ensure the allocation-gate
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* timer can catch up: after @resched_after, every failed allocation
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* attempt yields, to ensure the allocation-gate timer is scheduled.
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*/
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resched_after = jiffies + msecs_to_jiffies(kfence_sample_interval);
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do {
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if (test_cache)
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alloc = kmem_cache_alloc(test_cache, gfp);
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else
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alloc = kmalloc(size, gfp);
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if (is_kfence_address(alloc)) {
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struct slab *slab = virt_to_slab(alloc);
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enum kmalloc_cache_type type = kmalloc_type(GFP_KERNEL, __kmalloc_token(size));
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struct kmem_cache *s = test_cache ?:
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kmalloc_caches[type][__kmalloc_index(size, false)];
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/*
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* Verify that various helpers return the right values
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* even for KFENCE objects; these are required so that
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* memcg accounting works correctly.
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*/
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KUNIT_EXPECT_EQ(test, obj_to_index(s, slab, alloc), 0U);
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KUNIT_EXPECT_EQ(test, objs_per_slab(s, slab), 1);
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if (policy == ALLOCATE_ANY)
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return alloc;
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if (policy == ALLOCATE_LEFT && PAGE_ALIGNED(alloc))
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return alloc;
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if (policy == ALLOCATE_RIGHT && !PAGE_ALIGNED(alloc))
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return alloc;
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} else if (policy == ALLOCATE_NONE)
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return alloc;
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test_free(alloc);
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if (time_after(jiffies, resched_after))
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cond_resched();
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} while (time_before(jiffies, timeout));
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KUNIT_ASSERT_TRUE_MSG(test, false, "failed to allocate from KFENCE");
|
|
return NULL; /* Unreachable. */
|
|
}
|
|
|
|
static void test_out_of_bounds_read(struct kunit *test)
|
|
{
|
|
size_t size = 32;
|
|
struct expect_report expect = {
|
|
.type = KFENCE_ERROR_OOB,
|
|
.fn = test_out_of_bounds_read,
|
|
.is_write = false,
|
|
};
|
|
char *buf;
|
|
|
|
setup_test_cache(test, size, 0, NULL);
|
|
|
|
/*
|
|
* If we don't have our own cache, adjust based on alignment, so that we
|
|
* actually access guard pages on either side.
|
|
*/
|
|
if (!test_cache)
|
|
size = kmalloc_cache_alignment(size);
|
|
|
|
/* Test both sides. */
|
|
|
|
buf = test_alloc(test, size, GFP_KERNEL, ALLOCATE_LEFT);
|
|
expect.addr = buf - 1;
|
|
READ_ONCE(*expect.addr);
|
|
KUNIT_EXPECT_TRUE(test, report_matches(&expect));
|
|
test_free(buf);
|
|
|
|
buf = test_alloc(test, size, GFP_KERNEL, ALLOCATE_RIGHT);
|
|
expect.addr = buf + size;
|
|
READ_ONCE(*expect.addr);
|
|
KUNIT_EXPECT_TRUE(test, report_matches(&expect));
|
|
test_free(buf);
|
|
}
|
|
|
|
static void test_out_of_bounds_write(struct kunit *test)
|
|
{
|
|
size_t size = 32;
|
|
struct expect_report expect = {
|
|
.type = KFENCE_ERROR_OOB,
|
|
.fn = test_out_of_bounds_write,
|
|
.is_write = true,
|
|
};
|
|
char *buf;
|
|
|
|
setup_test_cache(test, size, 0, NULL);
|
|
buf = test_alloc(test, size, GFP_KERNEL, ALLOCATE_LEFT);
|
|
expect.addr = buf - 1;
|
|
WRITE_ONCE(*expect.addr, 42);
|
|
KUNIT_EXPECT_TRUE(test, report_matches(&expect));
|
|
test_free(buf);
|
|
}
|
|
|
|
static void test_use_after_free_read(struct kunit *test)
|
|
{
|
|
const size_t size = 32;
|
|
struct expect_report expect = {
|
|
.type = KFENCE_ERROR_UAF,
|
|
.fn = test_use_after_free_read,
|
|
.is_write = false,
|
|
};
|
|
|
|
setup_test_cache(test, size, 0, NULL);
|
|
expect.addr = test_alloc(test, size, GFP_KERNEL, ALLOCATE_ANY);
|
|
test_free(expect.addr);
|
|
READ_ONCE(*expect.addr);
|
|
KUNIT_EXPECT_TRUE(test, report_matches(&expect));
|
|
}
|
|
|
|
static void test_use_after_free_read_nofault(struct kunit *test)
|
|
{
|
|
const size_t size = 32;
|
|
char *addr;
|
|
char dst;
|
|
int ret;
|
|
|
|
setup_test_cache(test, size, 0, NULL);
|
|
addr = test_alloc(test, size, GFP_KERNEL, ALLOCATE_ANY);
|
|
test_free(addr);
|
|
/* Use after free with *_nofault() */
|
|
ret = copy_from_kernel_nofault(&dst, addr, 1);
|
|
KUNIT_EXPECT_EQ(test, ret, -EFAULT);
|
|
KUNIT_EXPECT_FALSE(test, report_available());
|
|
}
|
|
|
|
static void test_double_free(struct kunit *test)
|
|
{
|
|
const size_t size = 32;
|
|
struct expect_report expect = {
|
|
.type = KFENCE_ERROR_INVALID_FREE,
|
|
.fn = test_double_free,
|
|
};
|
|
|
|
setup_test_cache(test, size, 0, NULL);
|
|
expect.addr = test_alloc(test, size, GFP_KERNEL, ALLOCATE_ANY);
|
|
test_free(expect.addr);
|
|
test_free(expect.addr); /* Double-free. */
|
|
KUNIT_EXPECT_TRUE(test, report_matches(&expect));
|
|
}
|
|
|
|
static void test_invalid_addr_free(struct kunit *test)
|
|
{
|
|
const size_t size = 32;
|
|
struct expect_report expect = {
|
|
.type = KFENCE_ERROR_INVALID_FREE,
|
|
.fn = test_invalid_addr_free,
|
|
};
|
|
char *buf;
|
|
|
|
setup_test_cache(test, size, 0, NULL);
|
|
buf = test_alloc(test, size, GFP_KERNEL, ALLOCATE_ANY);
|
|
expect.addr = buf + 1; /* Free on invalid address. */
|
|
test_free(expect.addr); /* Invalid address free. */
|
|
test_free(buf); /* No error. */
|
|
KUNIT_EXPECT_TRUE(test, report_matches(&expect));
|
|
}
|
|
|
|
static void test_corruption(struct kunit *test)
|
|
{
|
|
size_t size = 32;
|
|
struct expect_report expect = {
|
|
.type = KFENCE_ERROR_CORRUPTION,
|
|
.fn = test_corruption,
|
|
};
|
|
char *buf;
|
|
|
|
setup_test_cache(test, size, 0, NULL);
|
|
|
|
/* Test both sides. */
|
|
|
|
buf = test_alloc(test, size, GFP_KERNEL, ALLOCATE_LEFT);
|
|
expect.addr = buf + size;
|
|
WRITE_ONCE(*expect.addr, 42);
|
|
test_free(buf);
|
|
KUNIT_EXPECT_TRUE(test, report_matches(&expect));
|
|
|
|
buf = test_alloc(test, size, GFP_KERNEL, ALLOCATE_RIGHT);
|
|
expect.addr = buf - 1;
|
|
WRITE_ONCE(*expect.addr, 42);
|
|
test_free(buf);
|
|
KUNIT_EXPECT_TRUE(test, report_matches(&expect));
|
|
}
|
|
|
|
/*
|
|
* KFENCE is unable to detect an OOB if the allocation's alignment requirements
|
|
* leave a gap between the object and the guard page. Specifically, an
|
|
* allocation of e.g. 73 bytes is aligned on 8 and 128 bytes for SLUB or SLAB
|
|
* respectively. Therefore it is impossible for the allocated object to
|
|
* contiguously line up with the right guard page.
|
|
*
|
|
* However, we test that an access to memory beyond the gap results in KFENCE
|
|
* detecting an OOB access.
|
|
*/
|
|
static void test_kmalloc_aligned_oob_read(struct kunit *test)
|
|
{
|
|
const size_t size = 73;
|
|
const size_t align = kmalloc_cache_alignment(size);
|
|
struct expect_report expect = {
|
|
.type = KFENCE_ERROR_OOB,
|
|
.fn = test_kmalloc_aligned_oob_read,
|
|
.is_write = false,
|
|
};
|
|
char *buf;
|
|
|
|
buf = test_alloc(test, size, GFP_KERNEL, ALLOCATE_RIGHT);
|
|
|
|
/*
|
|
* The object is offset to the right, so there won't be an OOB to the
|
|
* left of it.
|
|
*/
|
|
READ_ONCE(*(buf - 1));
|
|
KUNIT_EXPECT_FALSE(test, report_available());
|
|
|
|
/*
|
|
* @buf must be aligned on @align, therefore buf + size belongs to the
|
|
* same page -> no OOB.
|
|
*/
|
|
READ_ONCE(*(buf + size));
|
|
KUNIT_EXPECT_FALSE(test, report_available());
|
|
|
|
/* Overflowing by @align bytes will result in an OOB. */
|
|
expect.addr = buf + size + align;
|
|
READ_ONCE(*expect.addr);
|
|
KUNIT_EXPECT_TRUE(test, report_matches(&expect));
|
|
|
|
test_free(buf);
|
|
}
|
|
|
|
static void test_kmalloc_aligned_oob_write(struct kunit *test)
|
|
{
|
|
const size_t size = 73;
|
|
struct expect_report expect = {
|
|
.type = KFENCE_ERROR_CORRUPTION,
|
|
.fn = test_kmalloc_aligned_oob_write,
|
|
};
|
|
char *buf;
|
|
|
|
buf = test_alloc(test, size, GFP_KERNEL, ALLOCATE_RIGHT);
|
|
/*
|
|
* The object is offset to the right, so we won't get a page
|
|
* fault immediately after it.
|
|
*/
|
|
expect.addr = buf + size;
|
|
WRITE_ONCE(*expect.addr, READ_ONCE(*expect.addr) + 1);
|
|
KUNIT_EXPECT_FALSE(test, report_available());
|
|
test_free(buf);
|
|
KUNIT_EXPECT_TRUE(test, report_matches(&expect));
|
|
}
|
|
|
|
/* Test cache shrinking and destroying with KFENCE. */
|
|
static void test_shrink_memcache(struct kunit *test)
|
|
{
|
|
const size_t size = 32;
|
|
void *buf;
|
|
|
|
setup_test_cache(test, size, 0, NULL);
|
|
KUNIT_EXPECT_TRUE(test, test_cache);
|
|
buf = test_alloc(test, size, GFP_KERNEL, ALLOCATE_ANY);
|
|
kmem_cache_shrink(test_cache);
|
|
test_free(buf);
|
|
|
|
KUNIT_EXPECT_FALSE(test, report_available());
|
|
}
|
|
|
|
static void ctor_set_x(void *obj)
|
|
{
|
|
/* Every object has at least 8 bytes. */
|
|
memset(obj, 'x', 8);
|
|
}
|
|
|
|
/* Ensure that SL*B does not modify KFENCE objects on bulk free. */
|
|
static void test_free_bulk(struct kunit *test)
|
|
{
|
|
int iter;
|
|
|
|
for (iter = 0; iter < 5; iter++) {
|
|
const size_t size = setup_test_cache(test, get_random_u32_inclusive(8, 307),
|
|
0, (iter & 1) ? ctor_set_x : NULL);
|
|
void *objects[] = {
|
|
test_alloc(test, size, GFP_KERNEL, ALLOCATE_RIGHT),
|
|
test_alloc(test, size, GFP_KERNEL, ALLOCATE_NONE),
|
|
test_alloc(test, size, GFP_KERNEL, ALLOCATE_LEFT),
|
|
test_alloc(test, size, GFP_KERNEL, ALLOCATE_NONE),
|
|
test_alloc(test, size, GFP_KERNEL, ALLOCATE_NONE),
|
|
};
|
|
|
|
kmem_cache_free_bulk(test_cache, ARRAY_SIZE(objects), objects);
|
|
KUNIT_ASSERT_FALSE(test, report_available());
|
|
test_cache_destroy();
|
|
}
|
|
}
|
|
|
|
/* Test init-on-free works. */
|
|
static void test_init_on_free(struct kunit *test)
|
|
{
|
|
const size_t size = 32;
|
|
struct expect_report expect = {
|
|
.type = KFENCE_ERROR_UAF,
|
|
.fn = test_init_on_free,
|
|
.is_write = false,
|
|
};
|
|
int i;
|
|
|
|
KFENCE_TEST_REQUIRES(test, IS_ENABLED(CONFIG_INIT_ON_FREE_DEFAULT_ON));
|
|
/* Assume it hasn't been disabled on command line. */
|
|
|
|
setup_test_cache(test, size, 0, NULL);
|
|
expect.addr = test_alloc(test, size, GFP_KERNEL, ALLOCATE_ANY);
|
|
for (i = 0; i < size; i++)
|
|
expect.addr[i] = i + 1;
|
|
test_free(expect.addr);
|
|
|
|
for (i = 0; i < size; i++) {
|
|
/*
|
|
* This may fail if the page was recycled by KFENCE and then
|
|
* written to again -- this however, is near impossible with a
|
|
* default config.
|
|
*/
|
|
KUNIT_EXPECT_EQ(test, expect.addr[i], (char)0);
|
|
|
|
if (!i) /* Only check first access to not fail test if page is ever re-protected. */
|
|
KUNIT_EXPECT_TRUE(test, report_matches(&expect));
|
|
}
|
|
}
|
|
|
|
/* Ensure that constructors work properly. */
|
|
static void test_memcache_ctor(struct kunit *test)
|
|
{
|
|
const size_t size = 32;
|
|
char *buf;
|
|
int i;
|
|
|
|
setup_test_cache(test, size, 0, ctor_set_x);
|
|
buf = test_alloc(test, size, GFP_KERNEL, ALLOCATE_ANY);
|
|
|
|
for (i = 0; i < 8; i++)
|
|
KUNIT_EXPECT_EQ(test, buf[i], (char)'x');
|
|
|
|
test_free(buf);
|
|
|
|
KUNIT_EXPECT_FALSE(test, report_available());
|
|
}
|
|
|
|
/* Test that memory is zeroed if requested. */
|
|
static void test_gfpzero(struct kunit *test)
|
|
{
|
|
const size_t size = PAGE_SIZE; /* PAGE_SIZE so we can use ALLOCATE_ANY. */
|
|
char *buf1, *buf2;
|
|
int i;
|
|
|
|
/* Skip if we think it'd take too long. */
|
|
KFENCE_TEST_REQUIRES(test, kfence_sample_interval <= 100);
|
|
|
|
setup_test_cache(test, size, 0, NULL);
|
|
buf1 = test_alloc(test, size, GFP_KERNEL, ALLOCATE_ANY);
|
|
for (i = 0; i < size; i++)
|
|
buf1[i] = i + 1;
|
|
test_free(buf1);
|
|
|
|
/* Try to get same address again -- this can take a while. */
|
|
for (i = 0;; i++) {
|
|
buf2 = test_alloc(test, size, GFP_KERNEL | __GFP_ZERO, ALLOCATE_ANY);
|
|
if (buf1 == buf2)
|
|
break;
|
|
test_free(buf2);
|
|
|
|
if (kthread_should_stop() || (i == CONFIG_KFENCE_NUM_OBJECTS)) {
|
|
kunit_warn(test, "giving up ... cannot get same object back\n");
|
|
return;
|
|
}
|
|
cond_resched();
|
|
}
|
|
|
|
for (i = 0; i < size; i++)
|
|
KUNIT_EXPECT_EQ(test, buf2[i], (char)0);
|
|
|
|
test_free(buf2);
|
|
|
|
KUNIT_EXPECT_FALSE(test, report_available());
|
|
}
|
|
|
|
static void test_invalid_access(struct kunit *test)
|
|
{
|
|
const struct expect_report expect = {
|
|
.type = KFENCE_ERROR_INVALID,
|
|
.fn = test_invalid_access,
|
|
.addr = &__kfence_pool[10],
|
|
.is_write = false,
|
|
};
|
|
|
|
READ_ONCE(__kfence_pool[10]);
|
|
KUNIT_EXPECT_TRUE(test, report_matches(&expect));
|
|
}
|
|
|
|
/* Test SLAB_TYPESAFE_BY_RCU works. */
|
|
static void test_memcache_typesafe_by_rcu(struct kunit *test)
|
|
{
|
|
const size_t size = 32;
|
|
struct expect_report expect = {
|
|
.type = KFENCE_ERROR_UAF,
|
|
.fn = test_memcache_typesafe_by_rcu,
|
|
.is_write = false,
|
|
};
|
|
|
|
setup_test_cache(test, size, SLAB_TYPESAFE_BY_RCU, NULL);
|
|
KUNIT_EXPECT_TRUE(test, test_cache); /* Want memcache. */
|
|
|
|
expect.addr = test_alloc(test, size, GFP_KERNEL, ALLOCATE_ANY);
|
|
*expect.addr = 42;
|
|
|
|
rcu_read_lock();
|
|
test_free(expect.addr);
|
|
KUNIT_EXPECT_EQ(test, *expect.addr, (char)42);
|
|
/*
|
|
* Up to this point, memory should not have been freed yet, and
|
|
* therefore there should be no KFENCE report from the above access.
|
|
*/
|
|
rcu_read_unlock();
|
|
|
|
/* Above access to @expect.addr should not have generated a report! */
|
|
KUNIT_EXPECT_FALSE(test, report_available());
|
|
|
|
/* Only after rcu_barrier() is the memory guaranteed to be freed. */
|
|
rcu_barrier();
|
|
|
|
/* Expect use-after-free. */
|
|
KUNIT_EXPECT_EQ(test, *expect.addr, (char)42);
|
|
KUNIT_EXPECT_TRUE(test, report_matches(&expect));
|
|
}
|
|
|
|
/* Test krealloc(). */
|
|
static void test_krealloc(struct kunit *test)
|
|
{
|
|
const size_t size = 32;
|
|
const struct expect_report expect = {
|
|
.type = KFENCE_ERROR_UAF,
|
|
.fn = test_krealloc,
|
|
.addr = test_alloc(test, size, GFP_KERNEL, ALLOCATE_ANY),
|
|
.is_write = false,
|
|
};
|
|
char *buf = expect.addr;
|
|
int i;
|
|
|
|
KUNIT_EXPECT_FALSE(test, test_cache);
|
|
KUNIT_EXPECT_EQ(test, ksize(buf), size); /* Precise size match after KFENCE alloc. */
|
|
for (i = 0; i < size; i++)
|
|
buf[i] = i + 1;
|
|
|
|
/* Check that we successfully change the size. */
|
|
buf = krealloc(buf, size * 3, GFP_KERNEL); /* Grow. */
|
|
/* Note: Might no longer be a KFENCE alloc. */
|
|
KUNIT_EXPECT_GE(test, ksize(buf), size * 3);
|
|
for (i = 0; i < size; i++)
|
|
KUNIT_EXPECT_EQ(test, buf[i], (char)(i + 1));
|
|
for (; i < size * 3; i++) /* Fill to extra bytes. */
|
|
buf[i] = i + 1;
|
|
|
|
buf = krealloc(buf, size * 2, GFP_KERNEL); /* Shrink. */
|
|
KUNIT_EXPECT_GE(test, ksize(buf), size * 2);
|
|
for (i = 0; i < size * 2; i++)
|
|
KUNIT_EXPECT_EQ(test, buf[i], (char)(i + 1));
|
|
|
|
buf = krealloc(buf, 0, GFP_KERNEL); /* Free. */
|
|
KUNIT_EXPECT_EQ(test, (unsigned long)buf, (unsigned long)ZERO_SIZE_PTR);
|
|
KUNIT_ASSERT_FALSE(test, report_available()); /* No reports yet! */
|
|
|
|
READ_ONCE(*expect.addr); /* Ensure krealloc() actually freed earlier KFENCE object. */
|
|
KUNIT_ASSERT_TRUE(test, report_matches(&expect));
|
|
}
|
|
|
|
/* Test that some objects from a bulk allocation belong to KFENCE pool. */
|
|
static void test_memcache_alloc_bulk(struct kunit *test)
|
|
{
|
|
const size_t size = 32;
|
|
bool pass = false;
|
|
unsigned long timeout;
|
|
|
|
setup_test_cache(test, size, 0, NULL);
|
|
KUNIT_EXPECT_TRUE(test, test_cache); /* Want memcache. */
|
|
/*
|
|
* 100x the sample interval should be more than enough to ensure we get
|
|
* a KFENCE allocation eventually.
|
|
*/
|
|
timeout = jiffies + msecs_to_jiffies(100 * kfence_sample_interval);
|
|
do {
|
|
void *objects[100];
|
|
int i;
|
|
|
|
if (!kmem_cache_alloc_bulk(test_cache, GFP_ATOMIC,
|
|
ARRAY_SIZE(objects), objects))
|
|
continue;
|
|
for (i = 0; i < ARRAY_SIZE(objects); i++) {
|
|
if (is_kfence_address(objects[i])) {
|
|
pass = true;
|
|
break;
|
|
}
|
|
}
|
|
kmem_cache_free_bulk(test_cache, ARRAY_SIZE(objects), objects);
|
|
/*
|
|
* kmem_cache_alloc_bulk() disables interrupts, and calling it
|
|
* in a tight loop may not give KFENCE a chance to switch the
|
|
* static branch. Call cond_resched() to let KFENCE chime in.
|
|
*/
|
|
cond_resched();
|
|
} while (!pass && time_before(jiffies, timeout));
|
|
|
|
KUNIT_EXPECT_TRUE(test, pass);
|
|
KUNIT_EXPECT_FALSE(test, report_available());
|
|
}
|
|
|
|
/*
|
|
* KUnit does not provide a way to provide arguments to tests, and we encode
|
|
* additional info in the name. Set up 2 tests per test case, one using the
|
|
* default allocator, and another using a custom memcache (suffix '-memcache').
|
|
*/
|
|
#define KFENCE_KUNIT_CASE(test_name) \
|
|
{ .run_case = test_name, .name = #test_name }, \
|
|
{ .run_case = test_name, .name = #test_name "-memcache" }
|
|
|
|
static struct kunit_case kfence_test_cases[] = {
|
|
KFENCE_KUNIT_CASE(test_out_of_bounds_read),
|
|
KFENCE_KUNIT_CASE(test_out_of_bounds_write),
|
|
KFENCE_KUNIT_CASE(test_use_after_free_read),
|
|
KFENCE_KUNIT_CASE(test_use_after_free_read_nofault),
|
|
KFENCE_KUNIT_CASE(test_double_free),
|
|
KFENCE_KUNIT_CASE(test_invalid_addr_free),
|
|
KFENCE_KUNIT_CASE(test_corruption),
|
|
KFENCE_KUNIT_CASE(test_free_bulk),
|
|
KFENCE_KUNIT_CASE(test_init_on_free),
|
|
KUNIT_CASE(test_kmalloc_aligned_oob_read),
|
|
KUNIT_CASE(test_kmalloc_aligned_oob_write),
|
|
KUNIT_CASE(test_shrink_memcache),
|
|
KUNIT_CASE(test_memcache_ctor),
|
|
KUNIT_CASE(test_invalid_access),
|
|
KUNIT_CASE(test_gfpzero),
|
|
KUNIT_CASE(test_memcache_typesafe_by_rcu),
|
|
KUNIT_CASE(test_krealloc),
|
|
KUNIT_CASE(test_memcache_alloc_bulk),
|
|
{},
|
|
};
|
|
|
|
/* ===== End test cases ===== */
|
|
|
|
static int test_init(struct kunit *test)
|
|
{
|
|
unsigned long flags;
|
|
int i;
|
|
|
|
if (!__kfence_pool)
|
|
return -EINVAL;
|
|
|
|
spin_lock_irqsave(&observed.lock, flags);
|
|
for (i = 0; i < ARRAY_SIZE(observed.lines); i++)
|
|
observed.lines[i][0] = '\0';
|
|
observed.nlines = 0;
|
|
spin_unlock_irqrestore(&observed.lock, flags);
|
|
|
|
/* Any test with 'memcache' in its name will want a memcache. */
|
|
if (strstr(test->name, "memcache"))
|
|
test->priv = TEST_PRIV_WANT_MEMCACHE;
|
|
else
|
|
test->priv = NULL;
|
|
|
|
return 0;
|
|
}
|
|
|
|
static void test_exit(struct kunit *test)
|
|
{
|
|
test_cache_destroy();
|
|
}
|
|
|
|
static int kfence_suite_init(struct kunit_suite *suite)
|
|
{
|
|
register_trace_console(probe_console, NULL);
|
|
return 0;
|
|
}
|
|
|
|
static void kfence_suite_exit(struct kunit_suite *suite)
|
|
{
|
|
unregister_trace_console(probe_console, NULL);
|
|
tracepoint_synchronize_unregister();
|
|
}
|
|
|
|
static struct kunit_suite kfence_test_suite = {
|
|
.name = "kfence",
|
|
.test_cases = kfence_test_cases,
|
|
.init = test_init,
|
|
.exit = test_exit,
|
|
.suite_init = kfence_suite_init,
|
|
.suite_exit = kfence_suite_exit,
|
|
};
|
|
|
|
kunit_test_suites(&kfence_test_suite);
|
|
|
|
MODULE_LICENSE("GPL v2");
|
|
MODULE_AUTHOR("Alexander Potapenko <glider@google.com>, Marco Elver <elver@google.com>");
|
|
MODULE_DESCRIPTION("kfence unit test suite");
|