overflow: Provide constant expression struct_size

There have been cases where struct_size() (or flex_array_size()) needs
to be calculated for an initializer, which requires it be a constant
expression. This is possible when the "count" argument is a constant
expression, so provide this ability for the helpers.

Cc: Gustavo A. R. Silva <gustavoars@kernel.org>
Cc: Nathan Chancellor <nathan@kernel.org>
Cc: Nick Desaulniers <ndesaulniers@google.com>
Cc: Rasmus Villemoes <linux@rasmusvillemoes.dk>
Signed-off-by: Kees Cook <keescook@chromium.org>
Reviewed-by: Gustavo A. R. Silva <gustavoars@kernel.org>
Tested-by: Gustavo A. R. Silva <gustavoars@kernel.org>
Link: https://lore.kernel.org/lkml/20220210010407.GA701603@embeddedor
This commit is contained in:
Kees Cook 2022-02-09 16:40:41 -08:00
Родитель e1be43d9b5
Коммит 230f6fa2c1
2 изменённых файлов: 24 добавлений и 12 удалений

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@ -4,6 +4,7 @@
#include <linux/compiler.h> #include <linux/compiler.h>
#include <linux/limits.h> #include <linux/limits.h>
#include <linux/const.h>
/* /*
* We need to compute the minimum and maximum values representable in a given * We need to compute the minimum and maximum values representable in a given
@ -221,8 +222,9 @@ static inline size_t __must_check size_sub(size_t minuend, size_t subtrahend)
* Return: number of bytes needed or SIZE_MAX on overflow. * Return: number of bytes needed or SIZE_MAX on overflow.
*/ */
#define flex_array_size(p, member, count) \ #define flex_array_size(p, member, count) \
size_mul(count, \ __builtin_choose_expr(__is_constexpr(count), \
sizeof(*(p)->member) + __must_be_array((p)->member)) (count) * sizeof(*(p)->member) + __must_be_array((p)->member), \
size_mul(count, sizeof(*(p)->member) + __must_be_array((p)->member)))
/** /**
* struct_size() - Calculate size of structure with trailing flexible array. * struct_size() - Calculate size of structure with trailing flexible array.
@ -237,6 +239,8 @@ static inline size_t __must_check size_sub(size_t minuend, size_t subtrahend)
* Return: number of bytes needed or SIZE_MAX on overflow. * Return: number of bytes needed or SIZE_MAX on overflow.
*/ */
#define struct_size(p, member, count) \ #define struct_size(p, member, count) \
size_add(sizeof(*(p)), flex_array_size(p, member, count)) __builtin_choose_expr(__is_constexpr(count), \
sizeof(*(p)) + flex_array_size(p, member, count), \
size_add(sizeof(*(p)), flex_array_size(p, member, count)))
#endif /* __LINUX_OVERFLOW_H */ #endif /* __LINUX_OVERFLOW_H */

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@ -602,10 +602,18 @@ struct __test_flex_array {
static int __init test_overflow_size_helpers(void) static int __init test_overflow_size_helpers(void)
{ {
/* Make sure struct_size() can be used in a constant expression. */
u8 ce_array[struct_size((struct __test_flex_array *)0, data, 55)];
struct __test_flex_array *obj; struct __test_flex_array *obj;
int count = 0; int count = 0;
int err = 0; int err = 0;
int var; int var;
volatile int unconst = 0;
/* Verify constant expression against runtime version. */
var = 55;
OPTIMIZER_HIDE_VAR(var);
err |= sizeof(ce_array) != struct_size(obj, data, var);
#define check_one_size_helper(expected, func, args...) ({ \ #define check_one_size_helper(expected, func, args...) ({ \
bool __failure = false; \ bool __failure = false; \
@ -663,28 +671,28 @@ static int __init test_overflow_size_helpers(void)
flex_array_size, obj, data, var++); flex_array_size, obj, data, var++);
err |= check_one_size_helper(5 * sizeof(*obj->data), err |= check_one_size_helper(5 * sizeof(*obj->data),
flex_array_size, obj, data, var++); flex_array_size, obj, data, var++);
err |= check_one_size_helper(0, flex_array_size, obj, data, 0); err |= check_one_size_helper(0, flex_array_size, obj, data, 0 + unconst);
err |= check_one_size_helper(sizeof(*obj->data), err |= check_one_size_helper(sizeof(*obj->data),
flex_array_size, obj, data, 1); flex_array_size, obj, data, 1 + unconst);
err |= check_one_size_helper(7 * sizeof(*obj->data), err |= check_one_size_helper(7 * sizeof(*obj->data),
flex_array_size, obj, data, 7); flex_array_size, obj, data, 7 + unconst);
err |= check_one_size_helper(SIZE_MAX, err |= check_one_size_helper(SIZE_MAX,
flex_array_size, obj, data, -1); flex_array_size, obj, data, -1 + unconst);
err |= check_one_size_helper(SIZE_MAX, err |= check_one_size_helper(SIZE_MAX,
flex_array_size, obj, data, SIZE_MAX - 4); flex_array_size, obj, data, SIZE_MAX - 4 + unconst);
var = 4; var = 4;
err |= check_one_size_helper(sizeof(*obj) + (4 * sizeof(*obj->data)), err |= check_one_size_helper(sizeof(*obj) + (4 * sizeof(*obj->data)),
struct_size, obj, data, var++); struct_size, obj, data, var++);
err |= check_one_size_helper(sizeof(*obj) + (5 * sizeof(*obj->data)), err |= check_one_size_helper(sizeof(*obj) + (5 * sizeof(*obj->data)),
struct_size, obj, data, var++); struct_size, obj, data, var++);
err |= check_one_size_helper(sizeof(*obj), struct_size, obj, data, 0); err |= check_one_size_helper(sizeof(*obj), struct_size, obj, data, 0 + unconst);
err |= check_one_size_helper(sizeof(*obj) + sizeof(*obj->data), err |= check_one_size_helper(sizeof(*obj) + sizeof(*obj->data),
struct_size, obj, data, 1); struct_size, obj, data, 1 + unconst);
err |= check_one_size_helper(SIZE_MAX, err |= check_one_size_helper(SIZE_MAX,
struct_size, obj, data, -3); struct_size, obj, data, -3 + unconst);
err |= check_one_size_helper(SIZE_MAX, err |= check_one_size_helper(SIZE_MAX,
struct_size, obj, data, SIZE_MAX - 3); struct_size, obj, data, SIZE_MAX - 3 + unconst);
pr_info("%d overflow size helper tests finished\n", count); pr_info("%d overflow size helper tests finished\n", count);