static struct rnd_state rng;
static void *test_buffers[RAID6_KUNIT_MAX_BUFFERS];
+static void *aligned_buffers[RAID6_KUNIT_MAX_BUFFERS];
static void *test_recov_buffers[RAID6_KUNIT_MAX_FAILURES];
static size_t test_buflen;
RAID6_MIN_DISKS;
}
+/* Generate a random alignment that is a multiple of 64. */
+static unsigned int random_alignment(unsigned int max_alignment)
+{
+ if (max_alignment == 0)
+ return 0;
+ return (rand32() % (max_alignment + 1)) & ~63;
+}
+
static void makedata(int start, int stop)
{
int i;
for (i = 0; i < RAID6_KUNIT_MAX_FAILURES; i++)
memset(test_recov_buffers[i], 0xf0, test_buflen);
- memcpy(dataptrs, test_buffers, sizeof(dataptrs));
+ memcpy(dataptrs, aligned_buffers, sizeof(dataptrs));
dataptrs[faila] = test_recov_buffers[0];
dataptrs[failb] = test_recov_buffers[1];
ta->recov->data2(nr_buffers, len, faila, failb, dataptrs);
}
- KUNIT_EXPECT_MEMEQ_MSG(test, test_buffers[faila], test_recov_buffers[0],
+ KUNIT_EXPECT_MEMEQ_MSG(test, aligned_buffers[faila], dataptrs[faila],
len,
"faila miscompared: %3d[%c] buffers %u len %u (failb=%3d[%c])\n",
faila, member_type(nr_buffers, faila),
nr_buffers, len,
failb, member_type(nr_buffers, failb));
- KUNIT_EXPECT_MEMEQ_MSG(test, test_buffers[failb], test_recov_buffers[1],
+ KUNIT_EXPECT_MEMEQ_MSG(test, aligned_buffers[failb], dataptrs[failb],
len,
"failb miscompared: %3d[%c] buffers %u len %u (faila=%3d[%c])\n",
failb, member_type(nr_buffers, failb),
{
const struct test_args *ta = test->param_value;
- ta->gen->xor_syndrome(nr_buffers, p1, p2, len, test_buffers);
+ ta->gen->xor_syndrome(nr_buffers, p1, p2, len, aligned_buffers);
makedata(p1, p2);
- ta->gen->xor_syndrome(nr_buffers, p1, p2, len, test_buffers);
+ ta->gen->xor_syndrome(nr_buffers, p1, p2, len, aligned_buffers);
test_recover(test, nr_buffers, len);
}
const struct test_args *ta = test->param_value;
unsigned int nr_buffers = random_nr_buffers();
unsigned int len = random_length(RAID6_KUNIT_MAX_BYTES);
+ unsigned int max_alignment;
+ int i;
/* Nuke syndromes */
memset(test_buffers[nr_buffers - 2], 0xee, test_buflen);
memset(test_buffers[nr_buffers - 1], 0xee, test_buflen);
+ /*
+ * If we're not using the entire buffer size, inject randomize alignment
+ * into the buffer.
+ */
+ max_alignment = RAID6_KUNIT_MAX_BYTES - len;
+ if (rand32() % 2 == 0) {
+ /* Use random alignments mod 64 */
+ for (i = 0; i < nr_buffers; i++)
+ aligned_buffers[i] = test_buffers[i] +
+ random_alignment(max_alignment);
+ } else {
+ /* Go up to the guard page, to catch buffer overreads */
+ unsigned int align = test_buflen - len;
+
+ for (i = 0; i < nr_buffers; i++)
+ aligned_buffers[i] = test_buffers[i] + align;
+ }
+
/* Generate assumed good syndrome */
- ta->gen->gen_syndrome(nr_buffers, len, test_buffers);
+ ta->gen->gen_syndrome(nr_buffers, len, aligned_buffers);
test_recover(test, nr_buffers, len);