Merge branch 'kcsan' of git://git.kernel.org/pub/scm/linux/kernel/git/paulmck/linux-rcu into locking/debug
Pull KCSAN updates from Paul E. McKenney: - improve comments - introduce CONFIG_KCSAN_STRICT (which RCU uses) - optimize use of get_ctx() by kcsan_found_watchpoint() - rework atomic.h into permissive.h - add the ability to ignore writes that change only one bit of a given data-racy variable. Signed-off-by: Ingo Molnar <mingo@kernel.org>
This commit is contained in:
@@ -1,23 +0,0 @@
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/* SPDX-License-Identifier: GPL-2.0 */
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/*
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* Rules for implicitly atomic memory accesses.
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*
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* Copyright (C) 2019, Google LLC.
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*/
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#ifndef _KERNEL_KCSAN_ATOMIC_H
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#define _KERNEL_KCSAN_ATOMIC_H
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#include <linux/types.h>
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/*
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* Special rules for certain memory where concurrent conflicting accesses are
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* common, however, the current convention is to not mark them; returns true if
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* access to @ptr should be considered atomic. Called from slow-path.
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*/
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static bool kcsan_is_atomic_special(const volatile void *ptr)
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{
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return false;
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}
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#endif /* _KERNEL_KCSAN_ATOMIC_H */
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+49
-28
@@ -20,9 +20,9 @@
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#include <linux/sched.h>
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#include <linux/uaccess.h>
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#include "atomic.h"
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#include "encoding.h"
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#include "kcsan.h"
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#include "permissive.h"
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static bool kcsan_early_enable = IS_ENABLED(CONFIG_KCSAN_EARLY_ENABLE);
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unsigned int kcsan_udelay_task = CONFIG_KCSAN_UDELAY_TASK;
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@@ -301,9 +301,9 @@ static inline void reset_kcsan_skip(void)
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this_cpu_write(kcsan_skip, skip_count);
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}
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static __always_inline bool kcsan_is_enabled(void)
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static __always_inline bool kcsan_is_enabled(struct kcsan_ctx *ctx)
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{
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return READ_ONCE(kcsan_enabled) && get_ctx()->disable_count == 0;
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return READ_ONCE(kcsan_enabled) && !ctx->disable_count;
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}
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/* Introduce delay depending on context and configuration. */
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@@ -353,10 +353,18 @@ static noinline void kcsan_found_watchpoint(const volatile void *ptr,
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atomic_long_t *watchpoint,
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long encoded_watchpoint)
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{
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const bool is_assert = (type & KCSAN_ACCESS_ASSERT) != 0;
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struct kcsan_ctx *ctx = get_ctx();
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unsigned long flags;
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bool consumed;
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if (!kcsan_is_enabled())
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/*
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* We know a watchpoint exists. Let's try to keep the race-window
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* between here and finally consuming the watchpoint below as small as
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* possible -- avoid unneccessarily complex code until consumed.
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*/
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if (!kcsan_is_enabled(ctx))
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return;
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/*
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@@ -364,14 +372,22 @@ static noinline void kcsan_found_watchpoint(const volatile void *ptr,
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* reporting a race where e.g. the writer set up the watchpoint, but the
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* reader has access_mask!=0, we have to ignore the found watchpoint.
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*/
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if (get_ctx()->access_mask != 0)
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if (ctx->access_mask)
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return;
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/*
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* Consume the watchpoint as soon as possible, to minimize the chances
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* of !consumed. Consuming the watchpoint must always be guarded by
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* kcsan_is_enabled() check, as otherwise we might erroneously
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* triggering reports when disabled.
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* If the other thread does not want to ignore the access, and there was
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* a value change as a result of this thread's operation, we will still
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* generate a report of unknown origin.
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*
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* Use CONFIG_KCSAN_REPORT_RACE_UNKNOWN_ORIGIN=n to filter.
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*/
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if (!is_assert && kcsan_ignore_address(ptr))
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return;
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/*
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* Consuming the watchpoint must be guarded by kcsan_is_enabled() to
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* avoid erroneously triggering reports if the context is disabled.
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*/
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consumed = try_consume_watchpoint(watchpoint, encoded_watchpoint);
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@@ -391,7 +407,7 @@ static noinline void kcsan_found_watchpoint(const volatile void *ptr,
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atomic_long_inc(&kcsan_counters[KCSAN_COUNTER_REPORT_RACES]);
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}
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if ((type & KCSAN_ACCESS_ASSERT) != 0)
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if (is_assert)
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atomic_long_inc(&kcsan_counters[KCSAN_COUNTER_ASSERT_FAILURES]);
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else
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atomic_long_inc(&kcsan_counters[KCSAN_COUNTER_DATA_RACES]);
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@@ -409,6 +425,7 @@ kcsan_setup_watchpoint(const volatile void *ptr, size_t size, int type)
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unsigned long access_mask;
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enum kcsan_value_change value_change = KCSAN_VALUE_CHANGE_MAYBE;
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unsigned long ua_flags = user_access_save();
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struct kcsan_ctx *ctx = get_ctx();
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unsigned long irq_flags = 0;
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/*
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@@ -417,16 +434,14 @@ kcsan_setup_watchpoint(const volatile void *ptr, size_t size, int type)
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*/
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reset_kcsan_skip();
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if (!kcsan_is_enabled())
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if (!kcsan_is_enabled(ctx))
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goto out;
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/*
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* Special atomic rules: unlikely to be true, so we check them here in
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* the slow-path, and not in the fast-path in is_atomic(). Call after
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* kcsan_is_enabled(), as we may access memory that is not yet
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* initialized during early boot.
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* Check to-ignore addresses after kcsan_is_enabled(), as we may access
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* memory that is not yet initialized during early boot.
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*/
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if (!is_assert && kcsan_is_atomic_special(ptr))
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if (!is_assert && kcsan_ignore_address(ptr))
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goto out;
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if (!check_encodable((unsigned long)ptr, size)) {
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@@ -479,15 +494,6 @@ kcsan_setup_watchpoint(const volatile void *ptr, size_t size, int type)
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break; /* ignore; we do not diff the values */
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}
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if (IS_ENABLED(CONFIG_KCSAN_DEBUG)) {
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kcsan_disable_current();
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pr_err("watching %s, size: %zu, addr: %px [slot: %d, encoded: %lx]\n",
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is_write ? "write" : "read", size, ptr,
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watchpoint_slot((unsigned long)ptr),
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encode_watchpoint((unsigned long)ptr, size, is_write));
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kcsan_enable_current();
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}
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/*
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* Delay this thread, to increase probability of observing a racy
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* conflicting access.
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@@ -498,7 +504,7 @@ kcsan_setup_watchpoint(const volatile void *ptr, size_t size, int type)
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* Re-read value, and check if it is as expected; if not, we infer a
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* racy access.
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*/
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access_mask = get_ctx()->access_mask;
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access_mask = ctx->access_mask;
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new = 0;
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switch (size) {
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case 1:
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@@ -521,8 +527,14 @@ kcsan_setup_watchpoint(const volatile void *ptr, size_t size, int type)
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if (access_mask)
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diff &= access_mask;
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/* Were we able to observe a value-change? */
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if (diff != 0)
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/*
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* Check if we observed a value change.
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*
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* Also check if the data race should be ignored (the rules depend on
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* non-zero diff); if it is to be ignored, the below rules for
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* KCSAN_VALUE_CHANGE_MAYBE apply.
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*/
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if (diff && !kcsan_ignore_data_race(size, type, old, new, diff))
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value_change = KCSAN_VALUE_CHANGE_TRUE;
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/* Check if this access raced with another. */
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@@ -644,6 +656,15 @@ void __init kcsan_init(void)
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pr_info("enabled early\n");
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WRITE_ONCE(kcsan_enabled, true);
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}
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if (IS_ENABLED(CONFIG_KCSAN_REPORT_VALUE_CHANGE_ONLY) ||
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IS_ENABLED(CONFIG_KCSAN_ASSUME_PLAIN_WRITES_ATOMIC) ||
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IS_ENABLED(CONFIG_KCSAN_PERMISSIVE) ||
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IS_ENABLED(CONFIG_KCSAN_IGNORE_ATOMICS)) {
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pr_warn("non-strict mode configured - use CONFIG_KCSAN_STRICT=y to see all data races\n");
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} else {
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pr_info("strict mode configured\n");
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}
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}
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/* === Exported interface =================================================== */
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@@ -414,6 +414,14 @@ static noinline void test_kernel_atomic_builtins(void)
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__atomic_load_n(&test_var, __ATOMIC_RELAXED);
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}
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static noinline void test_kernel_xor_1bit(void)
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{
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/* Do not report data races between the read-writes. */
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kcsan_nestable_atomic_begin();
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test_var ^= 0x10000;
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kcsan_nestable_atomic_end();
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}
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/* ===== Test cases ===== */
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/* Simple test with normal data race. */
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@@ -952,6 +960,29 @@ static void test_atomic_builtins(struct kunit *test)
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KUNIT_EXPECT_FALSE(test, match_never);
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}
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__no_kcsan
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static void test_1bit_value_change(struct kunit *test)
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{
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const struct expect_report expect = {
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.access = {
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{ test_kernel_read, &test_var, sizeof(test_var), 0 },
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{ test_kernel_xor_1bit, &test_var, sizeof(test_var), __KCSAN_ACCESS_RW(KCSAN_ACCESS_WRITE) },
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},
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};
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bool match = false;
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begin_test_checks(test_kernel_read, test_kernel_xor_1bit);
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do {
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match = IS_ENABLED(CONFIG_KCSAN_PERMISSIVE)
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? report_available()
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: report_matches(&expect);
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} while (!end_test_checks(match));
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if (IS_ENABLED(CONFIG_KCSAN_PERMISSIVE))
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KUNIT_EXPECT_FALSE(test, match);
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else
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KUNIT_EXPECT_TRUE(test, match);
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}
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/*
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* Generate thread counts for all test cases. Values generated are in interval
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* [2, 5] followed by exponentially increasing thread counts from 8 to 32.
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@@ -1024,6 +1055,7 @@ static struct kunit_case kcsan_test_cases[] = {
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KCSAN_KUNIT_CASE(test_jiffies_noreport),
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KCSAN_KUNIT_CASE(test_seqlock_noreport),
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KCSAN_KUNIT_CASE(test_atomic_builtins),
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KCSAN_KUNIT_CASE(test_1bit_value_change),
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{},
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};
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@@ -0,0 +1,94 @@
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/* SPDX-License-Identifier: GPL-2.0 */
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/*
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* Special rules for ignoring entire classes of data-racy memory accesses. None
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* of the rules here imply that such data races are generally safe!
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*
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* All rules in this file can be configured via CONFIG_KCSAN_PERMISSIVE. Keep
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* them separate from core code to make it easier to audit.
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*
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* Copyright (C) 2019, Google LLC.
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*/
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#ifndef _KERNEL_KCSAN_PERMISSIVE_H
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#define _KERNEL_KCSAN_PERMISSIVE_H
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#include <linux/bitops.h>
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#include <linux/sched.h>
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#include <linux/types.h>
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/*
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* Access ignore rules based on address.
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*/
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static __always_inline bool kcsan_ignore_address(const volatile void *ptr)
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{
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if (!IS_ENABLED(CONFIG_KCSAN_PERMISSIVE))
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return false;
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/*
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* Data-racy bitops on current->flags are too common, ignore completely
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* for now.
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*/
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return ptr == ¤t->flags;
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}
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/*
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* Data race ignore rules based on access type and value change patterns.
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*/
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static bool
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kcsan_ignore_data_race(size_t size, int type, u64 old, u64 new, u64 diff)
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{
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if (!IS_ENABLED(CONFIG_KCSAN_PERMISSIVE))
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return false;
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/*
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* Rules here are only for plain read accesses, so that we still report
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* data races between plain read-write accesses.
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*/
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if (type || size > sizeof(long))
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return false;
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/*
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* A common pattern is checking/setting just 1 bit in a variable; for
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* example:
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*
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* if (flags & SOME_FLAG) { ... }
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*
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* and elsewhere flags is updated concurrently:
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*
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* flags |= SOME_OTHER_FLAG; // just 1 bit
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*
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* While it is still recommended that such accesses be marked
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* appropriately, in many cases these types of data races are so common
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* that marking them all is often unrealistic and left to maintainer
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* preference.
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*
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* The assumption in all cases is that with all known compiler
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* optimizations (including those that tear accesses), because no more
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* than 1 bit changed, the plain accesses are safe despite the presence
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* of data races.
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*
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* The rules here will ignore the data races if we observe no more than
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* 1 bit changed.
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*
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* Of course many operations can effecively change just 1 bit, but the
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* general assuption that data races involving 1-bit changes can be
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* tolerated still applies.
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*
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* And in case a true bug is missed, the bug likely manifests as a
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* reportable data race elsewhere.
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*/
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if (hweight64(diff) == 1) {
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/*
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* Exception: Report data races where the values look like
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* ordinary booleans (one of them was 0 and the 0th bit was
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* changed) More often than not, they come with interesting
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* memory ordering requirements, so let's report them.
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*/
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if (!((!old || !new) && diff == 1))
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return true;
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}
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return false;
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}
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#endif /* _KERNEL_KCSAN_PERMISSIVE_H */
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