// SPDX-License-Identifier: GPL-2.0-only /* * Test cases for <linux/hash.h> and <linux/stringhash.h> * This just verifies that various ways of computing a hash * produce the same thing and, for cases where a k-bit hash * value is requested, is of the requested size. * * We fill a buffer with a 255-byte null-terminated string, * and use both full_name_hash() and hashlen_string() to hash the * substrings from i to j, where 0 <= i < j < 256. * * The returned values are used to check that __hash_32() and * __hash_32_generic() compute the same thing. Likewise hash_32() * and hash_64().
*/
/* Given a non-zero x, returns a non-zero byte. */ static u8 __attribute_const__
mod255(u32 x)
{
x = (x & 0xffff) + (x >> 16); /* 1 <= x <= 0x1fffe */
x = (x & 0xff) + (x >> 8); /* 1 <= x <= 0x2fd */
x = (x & 0xff) + (x >> 8); /* 1 <= x <= 0x100 */
x = (x & 0xff) + (x >> 8); /* 1 <= x <= 0xff */ return x;
}
/* Fill the buffer with non-zero bytes. */ staticvoid fill_buf(char *buf, size_t len, u32 seed)
{
size_t i;
for (i = 0; i < len; i++) {
seed = xorshift(seed);
buf[i] = mod255(seed);
}
}
/* Holds most testing variables for the int test. */ struct test_hash_params { /* Pointer to integer to be hashed. */ unsignedlonglong *h64; /* Low 32-bits of integer to be hashed. */
u32 h0; /* Arch-specific hash result. */
u32 h1; /* Generic hash result. */
u32 h2; /* ORed hashes of given size (in bits). */
u32 (*hash_or)[33];
};
/* * Test the various integer hash functions. h64 (or its low-order bits) * is the integer to hash. hash_or accumulates the OR of the hash values, * which are later checked to see that they cover all the requested bits. * * Because these functions (as opposed to the string hashes) are all * inline, the code being tested is actually in the module, and you can * recompile and re-test the module without rebooting.
*/ staticvoid
test_int_hash(struct kunit *test, unsignedlonglong h64, u32 hash_or[2][33])
{ int k; struct test_hash_params params = { &h64, (u32)h64, 0, 0, hash_or };
staticvoid test_string_or(struct kunit *test)
{ char buf[SIZE+1];
u32 string_or = 0; int i, j;
fill_buf(buf, SIZE, 1);
/* Test every possible non-empty substring in the buffer. */ for (j = SIZE; j > 0; --j) {
buf[j] = '\0';
for (i = 0; i <= j; i++) {
u32 h0 = full_name_hash(buf+i, buf+i, j-i);
string_or |= h0;
} /* i */
} /* j */
/* The OR of all the hash values should cover all the bits */
KUNIT_EXPECT_EQ_MSG(test, string_or, -1u, "OR of all string hash results = %#x != %#x",
string_or, -1u);
}
/* Test every possible non-empty substring in the buffer. */ for (j = SIZE; j > 0; --j) {
buf[j] = '\0';
for (i = 0; i <= j; i++) {
u64 hashlen = hashlen_string(buf+i, buf+i);
u32 h0 = full_name_hash(buf+i, buf+i, j-i);
/* Check that hashlen_string gets the length right */
KUNIT_EXPECT_EQ_MSG(test, hashlen_len(hashlen), j-i, "hashlen_string(%d..%d) returned length %u, expected %d",
i, j, hashlen_len(hashlen), j-i); /* Check that the hashes match */
KUNIT_EXPECT_EQ_MSG(test, hashlen_hash(hashlen), h0, "hashlen_string(%d..%d) = %08x != full_name_hash() = %08x",
i, j, hashlen_hash(hashlen), h0);
h64 = h64 << 32 | h0; /* For use with hash_64 */
test_int_hash(test, h64, hash_or);
} /* i */
} /* j */
KUNIT_EXPECT_EQ_MSG(test, hash_or[0][0], -1u, "OR of all __hash_32 results = %#x != %#x",
hash_or[0][0], -1u); #ifdef HAVE_ARCH__HASH_32 #if HAVE_ARCH__HASH_32 != 1 /* Test is pointless if results match */
KUNIT_EXPECT_EQ_MSG(test, hash_or[1][0], -1u, "OR of all __hash_32_generic results = %#x != %#x",
hash_or[1][0], -1u); #endif #endif
/* Likewise for all the i-bit hash values */ for (i = 1; i <= 32; i++) {
u32 const m = ((u32)2 << (i-1)) - 1; /* Low i bits set */
KUNIT_EXPECT_EQ_MSG(test, hash_or[0][i], m, "OR of all hash_32(%d) results = %#x (%#x expected)",
i, hash_or[0][i], m);
KUNIT_EXPECT_EQ_MSG(test, hash_or[1][i], m, "OR of all hash_64(%d) results = %#x (%#x expected)",
i, hash_or[1][i], m);
}
}
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