#line 2 "suites/main_test.function"
* *** THIS FILE HAS BEEN MACHINE GENERATED ***
*
* This file has been machine generated using the script:
* generate_test_code.py
*
* Test file : ./test_suite_psa_crypto_metadata.c
*
* The following files were used to create this file.
*
* Main code file : suites/main_test.function
* Platform code file : suites/host_test.function
* Helper file : suites/helpers.function
* Test suite file : suites/test_suite_psa_crypto_metadata.function
* Test suite data : suites/test_suite_psa_crypto_metadata.data
*
*/
#if defined(__unix__) || (defined(__APPLE__) && defined(__MACH__))
#if !defined(_POSIX_C_SOURCE)
#define _POSIX_C_SOURCE 200112L
#endif
#endif
#include "mbedtls/build_info.h"
* MBEDTLS_TEST_DEPRECATED is defined. When building tests, set
* MBEDTLS_TEST_DEPRECATED explicitly if MBEDTLS_DEPRECATED_WARNING is
* enabled but the corresponding warnings are not treated as errors.
*/
#if !defined(MBEDTLS_DEPRECATED_REMOVED) && !defined(MBEDTLS_DEPRECATED_WARNING)
#define MBEDTLS_TEST_DEPRECATED
#endif
#line 2 "suites/helpers.function"
#include <test/helpers.h>
#include <test/macros.h>
#include <test/random.h>
#include <test/bignum_helpers.h>
#include <test/psa_crypto_helpers.h>
#include <stdlib.h>
#if defined(MBEDTLS_ERROR_C)
#include "mbedtls/error.h"
#endif
#include "mbedtls/platform.h"
#if defined(MBEDTLS_MEMORY_BUFFER_ALLOC_C)
#include "mbedtls/memory_buffer_alloc.h"
#endif
#ifdef _MSC_VER
#include <basetsd.h>
typedef UINT8 uint8_t;
typedef INT32 int32_t;
typedef UINT32 uint32_t;
#define strncasecmp _strnicmp
#define strcasecmp _stricmp
#else
#include <stdint.h>
#endif
#include <string.h>
#if defined(__unix__) || (defined(__APPLE__) && defined(__MACH__)) || defined(__MINGW32__)
#include <strings.h>
#endif
#if defined(__unix__) || (defined(__APPLE__) && defined(__MACH__))
#include <unistd.h>
#endif
#define DEPENDENCY_SUPPORTED 0
#define KEY_VALUE_MAPPING_FOUND 0
#define DISPATCH_TEST_SUCCESS 0
#define KEY_VALUE_MAPPING_NOT_FOUND -1
#define DEPENDENCY_NOT_SUPPORTED -2
#define DISPATCH_TEST_FN_NOT_FOUND -3
#define DISPATCH_INVALID_TEST_DATA -4
Only int, string, binary data
and integer expressions are
allowed */
#define DISPATCH_UNSUPPORTED_SUITE -5
build */
* to initialize some strong entropy source. */
#if !defined(MBEDTLS_NO_DEFAULT_ENTROPY_SOURCES) && \
(!defined(MBEDTLS_NO_PLATFORM_ENTROPY) || \
defined(MBEDTLS_ENTROPY_HARDWARE_ALT) || \
defined(ENTROPY_NV_SEED))
#define ENTROPY_HAVE_STRONG
#endif
#if defined(__unix__) || (defined(__APPLE__) && defined(__MACH__))
static int redirect_output(FILE *out_stream, const char *path)
{
int out_fd, dup_fd;
FILE *path_stream;
out_fd = fileno(out_stream);
dup_fd = dup(out_fd);
if (dup_fd == -1) {
return -1;
}
path_stream = fopen(path, "w");
if (path_stream == NULL) {
close(dup_fd);
return -1;
}
fflush(out_stream);
if (dup2(fileno(path_stream), out_fd) == -1) {
close(dup_fd);
fclose(path_stream);
return -1;
}
fclose(path_stream);
return dup_fd;
}
static int restore_output(FILE *out_stream, int dup_fd)
{
int out_fd = fileno(out_stream);
fflush(out_stream);
if (dup2(dup_fd, out_fd) == -1) {
close(out_fd);
close(dup_fd);
return -1;
}
close(dup_fd);
return 0;
}
#endif
#line 43 "suites/main_test.function"
#define TEST_SUITE_ACTIVE
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
#line 2 "suites/test_suite_psa_crypto_metadata.function"
* This test suite only contains tests that don't require executing
* code. Other test suites validate macros that require creating a key
* and using it. */
#if defined(MBEDTLS_PSA_CRYPTO_SPM)
#include "spm/psa_defs.h"
#endif
#include "psa/crypto.h"
#include "psa_crypto_invasive.h"
* algorithm classification macro PSA_ALG_IS_xxx except for the
* category test macros, which are hard-coded in each
* category-specific function. The name of the flag is the name of the
* classification macro without the PSA_ prefix. */
#define ALG_IS_VENDOR_DEFINED (1u << 0)
#define ALG_IS_HMAC (1u << 1)
#define ALG_IS_BLOCK_CIPHER_MAC (1u << 2)
#define ALG_IS_STREAM_CIPHER (1u << 3)
#define ALG_IS_RSA_PKCS1V15_SIGN (1u << 4)
#define ALG_IS_RSA_PSS (1u << 5)
#define ALG_IS_RSA_PSS_ANY_SALT (1u << 6)
#define ALG_IS_RSA_PSS_STANDARD_SALT (1u << 7)
#define ALG_IS_DSA (1u << 8)
#define ALG_DSA_IS_DETERMINISTIC (1u << 9)
#define ALG_IS_DETERMINISTIC_DSA (1u << 10)
#define ALG_IS_RANDOMIZED_DSA (1u << 11)
#define ALG_IS_ECDSA (1u << 12)
#define ALG_ECDSA_IS_DETERMINISTIC (1u << 13)
#define ALG_IS_DETERMINISTIC_ECDSA (1u << 14)
#define ALG_IS_RANDOMIZED_ECDSA (1u << 15)
#define ALG_IS_HASH_EDDSA (1u << 16)
#define ALG_IS_SIGN_HASH (1u << 17)
#define ALG_IS_HASH_AND_SIGN (1u << 18)
#define ALG_IS_RSA_OAEP (1u << 19)
#define ALG_IS_HKDF (1u << 20)
#define ALG_IS_HKDF_EXTRACT (1u << 21)
#define ALG_IS_HKDF_EXPAND (1u << 22)
#define ALG_IS_FFDH (1u << 23)
#define ALG_IS_ECDH (1u << 24)
#define ALG_IS_WILDCARD (1u << 25)
#define ALG_IS_RAW_KEY_AGREEMENT (1u << 26)
#define ALG_IS_AEAD_ON_BLOCK_CIPHER (1u << 27)
#define ALG_IS_TLS12_PRF (1u << 28)
#define ALG_IS_TLS12_PSK_TO_MS (1u << 29)
#define ALG_FLAG_MASK_PLUS_ONE (1u << 30)
* key type classification macro PSA_KEY_TYPE_IS_xxx except for some that
* are tested as derived from other macros. The name of the flag is
* the name of the classification macro without the PSA_ prefix. */
#define KEY_TYPE_IS_VENDOR_DEFINED (1u << 0)
#define KEY_TYPE_IS_UNSTRUCTURED (1u << 1)
#define KEY_TYPE_IS_PUBLIC_KEY (1u << 2)
#define KEY_TYPE_IS_KEY_PAIR (1u << 3)
#define KEY_TYPE_IS_RSA (1u << 4)
#define KEY_TYPE_IS_DSA (1u << 5)
#define KEY_TYPE_IS_ECC (1u << 6)
#define KEY_TYPE_IS_DH (1u << 7)
#define KEY_TYPE_FLAG_MASK_PLUS_ONE (1u << 8)
* lifetime classification macro PSA_KEY_LIFETIME_IS_xxx. The name of the
* flag is the name of the classification macro without the PSA_ prefix. */
#define KEY_LIFETIME_IS_VOLATILE (1u << 0)
#define KEY_LIFETIME_IS_READ_ONLY (1u << 1)
#define KEY_LIFETIME_FLAG_MASK_PLUS_ONE (1u << 2)
* expanding to a number of the form 1 << k) is set if and only if
* PSA_##flag(alg) is true.
*
* Only perform this check if cond is true. Typically cond is 1, but it can
* be different if the value of the flag bit is only specified under specific
* conditions.
*
* Unconditionally mask flag into the ambient variable
* classification_flags_tested.
*/
#define TEST_CLASSIFICATION_MACRO(cond, flag, alg, flags) \
do \
{ \
if (cond) \
{ \
if ((flags) & (flag)) \
TEST_ASSERT(PSA_##flag(alg)); \
else \
TEST_ASSERT(!PSA_##flag(alg)); \
} \
classification_flags_tested |= (flag); \
} \
while (0)
*
* There are several numerical encodings for which the PSA Cryptography API
* specification deliberately defines encodings that all have the same
* parity. This way, a data glitch that flips one bit in the data cannot
* possibly turn a valid encoding into another valid encoding. Here in
* the tests, we check that the values (including Mbed TLS vendor-specific
* values) have the expected parity.
*
* The expected parity is even so that 0 is considered a valid encoding.
*
* Return a nonzero value if value has even parity and 0 otherwise. */
int has_even_parity(uint32_t value)
{
value ^= value >> 16;
value ^= value >> 8;
value ^= value >> 4;
return 0x9669 & 1 << (value & 0xf);
}
#define TEST_PARITY(value) \
TEST_ASSERT(has_even_parity(value))
static void algorithm_classification(psa_algorithm_t alg, unsigned flags)
{
unsigned classification_flags_tested = 0;
TEST_CLASSIFICATION_MACRO(1, ALG_IS_VENDOR_DEFINED, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_HMAC, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_BLOCK_CIPHER_MAC, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_STREAM_CIPHER, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_RSA_PKCS1V15_SIGN, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_RSA_PSS, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_RSA_PSS_ANY_SALT, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_RSA_PSS_STANDARD_SALT, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_DSA, alg, flags);
TEST_CLASSIFICATION_MACRO(PSA_ALG_IS_DSA(alg),
ALG_DSA_IS_DETERMINISTIC, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_DETERMINISTIC_DSA, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_RANDOMIZED_DSA, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_ECDSA, alg, flags);
TEST_CLASSIFICATION_MACRO(PSA_ALG_IS_ECDSA(alg),
ALG_ECDSA_IS_DETERMINISTIC, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_DETERMINISTIC_ECDSA, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_RANDOMIZED_ECDSA, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_HASH_EDDSA, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_SIGN_HASH, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_HASH_AND_SIGN, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_RSA_OAEP, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_HKDF, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_HKDF_EXTRACT, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_HKDF_EXPAND, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_WILDCARD, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_ECDH, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_FFDH, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_RAW_KEY_AGREEMENT, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_AEAD_ON_BLOCK_CIPHER, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_TLS12_PRF, alg, flags);
TEST_CLASSIFICATION_MACRO(1, ALG_IS_TLS12_PSK_TO_MS, alg, flags);
TEST_EQUAL(classification_flags_tested, ALG_FLAG_MASK_PLUS_ONE - 1);
exit:;
}
static void key_type_classification(psa_key_type_t type, unsigned flags)
{
unsigned classification_flags_tested = 0;
TEST_CLASSIFICATION_MACRO(1, KEY_TYPE_IS_VENDOR_DEFINED, type, flags);
TEST_CLASSIFICATION_MACRO(1, KEY_TYPE_IS_UNSTRUCTURED, type, flags);
TEST_CLASSIFICATION_MACRO(1, KEY_TYPE_IS_PUBLIC_KEY, type, flags);
TEST_CLASSIFICATION_MACRO(1, KEY_TYPE_IS_KEY_PAIR, type, flags);
TEST_CLASSIFICATION_MACRO(1, KEY_TYPE_IS_RSA, type, flags);
TEST_CLASSIFICATION_MACRO(1, KEY_TYPE_IS_DSA, type, flags);
TEST_CLASSIFICATION_MACRO(1, KEY_TYPE_IS_ECC, type, flags);
TEST_CLASSIFICATION_MACRO(1, KEY_TYPE_IS_DH, type, flags);
TEST_EQUAL(classification_flags_tested, KEY_TYPE_FLAG_MASK_PLUS_ONE - 1);
TEST_EQUAL(PSA_KEY_TYPE_IS_ASYMMETRIC(type),
(PSA_KEY_TYPE_IS_PUBLIC_KEY(type) ||
PSA_KEY_TYPE_IS_KEY_PAIR(type)));
TEST_EQUAL(PSA_KEY_TYPE_IS_ECC_KEY_PAIR(type),
(PSA_KEY_TYPE_IS_ECC(type) &&
PSA_KEY_TYPE_IS_KEY_PAIR(type)));
TEST_EQUAL(PSA_KEY_TYPE_IS_ECC_PUBLIC_KEY(type),
(PSA_KEY_TYPE_IS_ECC(type) &&
PSA_KEY_TYPE_IS_PUBLIC_KEY(type)));
TEST_EQUAL(PSA_KEY_TYPE_IS_DH_KEY_PAIR(type),
(PSA_KEY_TYPE_IS_DH(type) &&
PSA_KEY_TYPE_IS_KEY_PAIR(type)));
TEST_EQUAL(PSA_KEY_TYPE_IS_DH_PUBLIC_KEY(type),
(PSA_KEY_TYPE_IS_DH(type) &&
PSA_KEY_TYPE_IS_PUBLIC_KEY(type)));
TEST_PARITY(type);
exit:;
}
static void mac_algorithm_core(psa_algorithm_t alg, int classification_flags,
psa_key_type_t key_type, size_t key_bits,
size_t length)
{
TEST_ASSERT(!PSA_ALG_IS_HASH(alg));
TEST_ASSERT(PSA_ALG_IS_MAC(alg));
TEST_ASSERT(!PSA_ALG_IS_CIPHER(alg));
TEST_ASSERT(!PSA_ALG_IS_AEAD(alg));
TEST_ASSERT(!PSA_ALG_IS_SIGN(alg));
TEST_ASSERT(!PSA_ALG_IS_ASYMMETRIC_ENCRYPTION(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_AGREEMENT(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_DERIVATION(alg));
TEST_ASSERT(!PSA_ALG_IS_PAKE(alg));
algorithm_classification(alg, classification_flags);
TEST_EQUAL(length, PSA_MAC_LENGTH(key_type, key_bits, alg));
#if defined(MBEDTLS_TEST_HOOKS) && defined(MBEDTLS_PSA_CRYPTO_C)
PSA_ASSERT(psa_mac_key_can_do(alg, key_type));
#endif
exit:;
}
static void aead_algorithm_core(psa_algorithm_t alg, int classification_flags,
psa_key_type_t key_type, size_t key_bits,
size_t tag_length)
{
TEST_ASSERT(!PSA_ALG_IS_HASH(alg));
TEST_ASSERT(!PSA_ALG_IS_MAC(alg));
TEST_ASSERT(!PSA_ALG_IS_CIPHER(alg));
TEST_ASSERT(PSA_ALG_IS_AEAD(alg));
TEST_ASSERT(!PSA_ALG_IS_SIGN(alg));
TEST_ASSERT(!PSA_ALG_IS_ASYMMETRIC_ENCRYPTION(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_AGREEMENT(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_DERIVATION(alg));
TEST_ASSERT(!PSA_ALG_IS_PAKE(alg));
algorithm_classification(alg, classification_flags);
TEST_EQUAL(tag_length, PSA_AEAD_TAG_LENGTH(key_type, key_bits, alg));
exit:;
}
#line 251 "suites/test_suite_psa_crypto_metadata.function"
static void test_hash_algorithm(int alg_arg, int length_arg)
{
psa_algorithm_t alg = alg_arg;
size_t length = length_arg;
psa_algorithm_t hmac_alg = PSA_ALG_HMAC(alg);
psa_algorithm_t rsa_pkcs1v15_sign_alg = PSA_ALG_RSA_PKCS1V15_SIGN(alg);
psa_algorithm_t rsa_pss_alg = PSA_ALG_RSA_PSS(alg);
psa_algorithm_t dsa_alg = PSA_ALG_DSA(alg);
psa_algorithm_t deterministic_dsa_alg = PSA_ALG_DETERMINISTIC_DSA(alg);
psa_algorithm_t ecdsa_alg = PSA_ALG_ECDSA(alg);
psa_algorithm_t deterministic_ecdsa_alg = PSA_ALG_DETERMINISTIC_ECDSA(alg);
psa_algorithm_t rsa_oaep_alg = PSA_ALG_RSA_OAEP(alg);
psa_algorithm_t hkdf_alg = PSA_ALG_HKDF(alg);
TEST_ASSERT(PSA_ALG_IS_HASH(alg));
TEST_ASSERT(!PSA_ALG_IS_MAC(alg));
TEST_ASSERT(!PSA_ALG_IS_CIPHER(alg));
TEST_ASSERT(!PSA_ALG_IS_AEAD(alg));
TEST_ASSERT(!PSA_ALG_IS_SIGN(alg));
TEST_ASSERT(!PSA_ALG_IS_ASYMMETRIC_ENCRYPTION(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_AGREEMENT(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_DERIVATION(alg));
TEST_ASSERT(!PSA_ALG_IS_PAKE(alg));
algorithm_classification(alg, 0);
TEST_EQUAL(PSA_ALG_HMAC_GET_HASH(hmac_alg), alg);
TEST_EQUAL(PSA_ALG_SIGN_GET_HASH(rsa_pkcs1v15_sign_alg), alg);
TEST_EQUAL(PSA_ALG_SIGN_GET_HASH(rsa_pss_alg), alg);
TEST_EQUAL(PSA_ALG_SIGN_GET_HASH(dsa_alg), alg);
TEST_EQUAL(PSA_ALG_SIGN_GET_HASH(deterministic_dsa_alg), alg);
TEST_EQUAL(PSA_ALG_SIGN_GET_HASH(ecdsa_alg), alg);
TEST_EQUAL(PSA_ALG_SIGN_GET_HASH(deterministic_ecdsa_alg), alg);
TEST_EQUAL(PSA_ALG_RSA_OAEP_GET_HASH(rsa_oaep_alg), alg);
TEST_EQUAL(PSA_ALG_HKDF_GET_HASH(hkdf_alg), alg);
TEST_EQUAL(length, PSA_HASH_LENGTH(alg));
TEST_ASSERT(length <= PSA_HASH_MAX_SIZE);
exit:
;
}
static void test_hash_algorithm_wrapper( void ** params )
{
test_hash_algorithm( *( (int *) params[0] ), *( (int *) params[1] ) );
}
#line 295 "suites/test_suite_psa_crypto_metadata.function"
static void test_mac_algorithm(int alg_arg, int classification_flags,
int length_arg,
int key_type_arg, int key_bits_arg)
{
psa_algorithm_t alg = alg_arg;
size_t length = length_arg;
size_t n;
size_t key_type = key_type_arg;
size_t key_bits = key_bits_arg;
mac_algorithm_core(alg, classification_flags,
key_type, key_bits, length);
TEST_EQUAL(PSA_ALG_FULL_LENGTH_MAC(alg), alg);
TEST_ASSERT(length <= PSA_MAC_MAX_SIZE);
for (n = 1; n <= length; n++) {
psa_algorithm_t truncated_alg = PSA_ALG_TRUNCATED_MAC(alg, n);
mac_algorithm_core(truncated_alg, classification_flags,
key_type, key_bits, n);
TEST_EQUAL(PSA_ALG_FULL_LENGTH_MAC(truncated_alg), alg);
* of the outer truncation (even if the outer length is smaller than
* the inner length). */
TEST_EQUAL(PSA_ALG_TRUNCATED_MAC(truncated_alg, 1),
PSA_ALG_TRUNCATED_MAC(alg, 1));
TEST_EQUAL(PSA_ALG_TRUNCATED_MAC(truncated_alg, length - 1),
PSA_ALG_TRUNCATED_MAC(alg, length - 1));
TEST_EQUAL(PSA_ALG_TRUNCATED_MAC(truncated_alg, length),
PSA_ALG_TRUNCATED_MAC(alg, length));
* earlier constructed with PSA_ALG_AT_LEAST_THIS_LENGTH_MAC gives the
* length of the outer truncation (even if the outer length is smaller
* than the inner length). */
TEST_EQUAL(PSA_ALG_TRUNCATED_MAC(
PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(truncated_alg, n), 1),
PSA_ALG_TRUNCATED_MAC(alg, 1));
TEST_EQUAL(PSA_ALG_TRUNCATED_MAC(
PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(truncated_alg, n), length - 1),
PSA_ALG_TRUNCATED_MAC(alg, length - 1));
TEST_EQUAL(PSA_ALG_TRUNCATED_MAC(
PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(truncated_alg, n), length),
PSA_ALG_TRUNCATED_MAC(alg, length));
}
for (n = 1; n <= length; n++) {
psa_algorithm_t policy_alg = PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(alg, n);
mac_algorithm_core(policy_alg, classification_flags | ALG_IS_WILDCARD,
key_type, key_bits, n);
TEST_EQUAL(PSA_ALG_FULL_LENGTH_MAC(policy_alg), alg);
* length of the outer truncation (even if the outer length is smaller
* than the inner length). */
TEST_EQUAL(PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(policy_alg, 1),
PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(alg, 1));
TEST_EQUAL(PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(policy_alg, length - 1),
PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(alg, length - 1));
TEST_EQUAL(PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(policy_alg, length),
PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(alg, length));
* earlier constructed with PSA_ALG_TRUNCATED_MAC gives the length of
* the outer truncation (even if the outer length is smaller than the
* inner length). */
TEST_EQUAL(PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(
PSA_ALG_TRUNCATED_MAC(policy_alg, n), 1),
PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(alg, 1));
TEST_EQUAL(PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(
PSA_ALG_TRUNCATED_MAC(policy_alg, n), length - 1),
PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(alg, length - 1));
TEST_EQUAL(PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(
PSA_ALG_TRUNCATED_MAC(policy_alg, n), length),
PSA_ALG_AT_LEAST_THIS_LENGTH_MAC(alg, length));
}
exit:
;
}
static void test_mac_algorithm_wrapper( void ** params )
{
test_mac_algorithm( *( (int *) params[0] ), *( (int *) params[1] ), *( (int *) params[2] ), *( (int *) params[3] ), *( (int *) params[4] ) );
}
#line 375 "suites/test_suite_psa_crypto_metadata.function"
static void test_hmac_algorithm(int alg_arg,
int length_arg,
int block_size_arg)
{
psa_algorithm_t alg = alg_arg;
psa_algorithm_t hash_alg = PSA_ALG_HMAC_GET_HASH(alg);
size_t block_size = block_size_arg;
size_t length = length_arg;
size_t n;
TEST_ASSERT(PSA_ALG_IS_HASH(hash_alg));
TEST_EQUAL(PSA_ALG_HMAC(hash_alg), alg);
TEST_ASSERT(block_size == PSA_HASH_BLOCK_LENGTH(alg));
TEST_ASSERT(block_size <= PSA_HMAC_MAX_HASH_BLOCK_SIZE);
test_mac_algorithm(alg_arg, ALG_IS_HMAC, length,
PSA_KEY_TYPE_HMAC, PSA_BYTES_TO_BITS(length));
for (n = 1; n <= length; n++) {
psa_algorithm_t truncated_alg = PSA_ALG_TRUNCATED_MAC(alg, n);
TEST_EQUAL(PSA_ALG_HMAC_GET_HASH(truncated_alg), hash_alg);
}
exit:
;
}
static void test_hmac_algorithm_wrapper( void ** params )
{
test_hmac_algorithm( *( (int *) params[0] ), *( (int *) params[1] ), *( (int *) params[2] ) );
}
#line 402 "suites/test_suite_psa_crypto_metadata.function"
static void test_cipher_algorithm(int alg_arg, int classification_flags)
{
psa_algorithm_t alg = alg_arg;
TEST_ASSERT(!PSA_ALG_IS_HASH(alg));
TEST_ASSERT(!PSA_ALG_IS_MAC(alg));
TEST_ASSERT(PSA_ALG_IS_CIPHER(alg));
TEST_ASSERT(!PSA_ALG_IS_AEAD(alg));
TEST_ASSERT(!PSA_ALG_IS_SIGN(alg));
TEST_ASSERT(!PSA_ALG_IS_ASYMMETRIC_ENCRYPTION(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_AGREEMENT(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_DERIVATION(alg));
TEST_ASSERT(!PSA_ALG_IS_PAKE(alg));
algorithm_classification(alg, classification_flags);
exit:
;
}
static void test_cipher_algorithm_wrapper( void ** params )
{
test_cipher_algorithm( *( (int *) params[0] ), *( (int *) params[1] ) );
}
#line 421 "suites/test_suite_psa_crypto_metadata.function"
static void test_aead_algorithm(int alg_arg, int classification_flags,
int tag_length_arg,
int key_type_arg, int key_bits_arg)
{
psa_algorithm_t alg = alg_arg;
size_t tag_length = tag_length_arg;
size_t n;
psa_key_type_t key_type = key_type_arg;
size_t key_bits = key_bits_arg;
aead_algorithm_core(alg, classification_flags,
key_type, key_bits, tag_length);
for (n = 1; n <= tag_length; n++) {
psa_algorithm_t truncated_alg = PSA_ALG_AEAD_WITH_SHORTENED_TAG(alg, n);
aead_algorithm_core(truncated_alg, classification_flags,
key_type, key_bits, n);
TEST_EQUAL(PSA_ALG_AEAD_WITH_DEFAULT_LENGTH_TAG(truncated_alg),
alg);
* the length of the outer truncation (even if the outer length is
* smaller than the inner length). */
TEST_EQUAL(PSA_ALG_AEAD_WITH_SHORTENED_TAG(truncated_alg, 1),
PSA_ALG_AEAD_WITH_SHORTENED_TAG(alg, 1));
TEST_EQUAL(PSA_ALG_AEAD_WITH_SHORTENED_TAG(truncated_alg, tag_length - 1),
PSA_ALG_AEAD_WITH_SHORTENED_TAG(alg, tag_length - 1));
TEST_EQUAL(PSA_ALG_AEAD_WITH_SHORTENED_TAG(truncated_alg, tag_length),
PSA_ALG_AEAD_WITH_SHORTENED_TAG(alg, tag_length));
* earlier constructed with PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG
* gives the length of the outer truncation (even if the outer length is
* smaller than the inner length). */
TEST_EQUAL(PSA_ALG_AEAD_WITH_SHORTENED_TAG(
PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(truncated_alg, n), 1),
PSA_ALG_AEAD_WITH_SHORTENED_TAG(alg, 1));
TEST_EQUAL(PSA_ALG_AEAD_WITH_SHORTENED_TAG(
PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(truncated_alg,
n), tag_length - 1),
PSA_ALG_AEAD_WITH_SHORTENED_TAG(alg, tag_length - 1));
TEST_EQUAL(PSA_ALG_AEAD_WITH_SHORTENED_TAG(
PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(truncated_alg, n), tag_length),
PSA_ALG_AEAD_WITH_SHORTENED_TAG(alg, tag_length));
}
for (n = 1; n <= tag_length; n++) {
psa_algorithm_t policy_alg = PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(alg, n);
aead_algorithm_core(policy_alg, classification_flags | ALG_IS_WILDCARD,
key_type, key_bits, n);
TEST_EQUAL(PSA_ALG_AEAD_WITH_DEFAULT_LENGTH_TAG(policy_alg),
alg);
* gives the length of the outer truncation (even if the outer length is
* smaller than the inner length). */
TEST_EQUAL(PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(policy_alg, 1),
PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(alg, 1));
TEST_EQUAL(PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(policy_alg, tag_length - 1),
PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(alg, tag_length - 1));
TEST_EQUAL(PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(policy_alg, tag_length),
PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(alg, tag_length));
* algorithm earlier constructed with PSA_ALG_AEAD_WITH_SHORTENED_TAG
* gives the length of the outer truncation (even if the outer length is
* smaller than the inner length). */
TEST_EQUAL(PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(
PSA_ALG_AEAD_WITH_SHORTENED_TAG(policy_alg, n), 1),
PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(alg, 1));
TEST_EQUAL(PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(
PSA_ALG_AEAD_WITH_SHORTENED_TAG(policy_alg, n), tag_length - 1),
PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(alg, tag_length - 1));
TEST_EQUAL(PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(
PSA_ALG_AEAD_WITH_SHORTENED_TAG(policy_alg, n), tag_length),
PSA_ALG_AEAD_WITH_AT_LEAST_THIS_LENGTH_TAG(alg, tag_length));
}
exit:
;
}
static void test_aead_algorithm_wrapper( void ** params )
{
test_aead_algorithm( *( (int *) params[0] ), *( (int *) params[1] ), *( (int *) params[2] ), *( (int *) params[3] ), *( (int *) params[4] ) );
}
#line 502 "suites/test_suite_psa_crypto_metadata.function"
static void test_asymmetric_signature_algorithm(int alg_arg, int classification_flags)
{
psa_algorithm_t alg = alg_arg;
TEST_ASSERT(!PSA_ALG_IS_HASH(alg));
TEST_ASSERT(!PSA_ALG_IS_MAC(alg));
TEST_ASSERT(!PSA_ALG_IS_CIPHER(alg));
TEST_ASSERT(!PSA_ALG_IS_AEAD(alg));
TEST_ASSERT(PSA_ALG_IS_SIGN(alg));
TEST_ASSERT(!PSA_ALG_IS_ASYMMETRIC_ENCRYPTION(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_AGREEMENT(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_DERIVATION(alg));
TEST_ASSERT(!PSA_ALG_IS_PAKE(alg));
algorithm_classification(alg, classification_flags);
exit:
;
}
static void test_asymmetric_signature_algorithm_wrapper( void ** params )
{
test_asymmetric_signature_algorithm( *( (int *) params[0] ), *( (int *) params[1] ) );
}
#line 521 "suites/test_suite_psa_crypto_metadata.function"
static void test_asymmetric_signature_wildcard(int alg_arg, int classification_flags)
{
classification_flags |= ALG_IS_WILDCARD;
classification_flags |= ALG_IS_SIGN_HASH;
classification_flags |= ALG_IS_HASH_AND_SIGN;
test_asymmetric_signature_algorithm(alg_arg, classification_flags);
* asymmetric_signature_algorithm. Pacify -Werror=unused-label. */
goto exit;
exit:
;
}
static void test_asymmetric_signature_wildcard_wrapper( void ** params )
{
test_asymmetric_signature_wildcard( *( (int *) params[0] ), *( (int *) params[1] ) );
}
#line 534 "suites/test_suite_psa_crypto_metadata.function"
static void test_asymmetric_encryption_algorithm(int alg_arg, int classification_flags)
{
psa_algorithm_t alg = alg_arg;
TEST_ASSERT(!PSA_ALG_IS_HASH(alg));
TEST_ASSERT(!PSA_ALG_IS_MAC(alg));
TEST_ASSERT(!PSA_ALG_IS_CIPHER(alg));
TEST_ASSERT(!PSA_ALG_IS_AEAD(alg));
TEST_ASSERT(!PSA_ALG_IS_SIGN(alg));
TEST_ASSERT(PSA_ALG_IS_ASYMMETRIC_ENCRYPTION(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_AGREEMENT(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_DERIVATION(alg));
TEST_ASSERT(!PSA_ALG_IS_PAKE(alg));
algorithm_classification(alg, classification_flags);
exit:
;
}
static void test_asymmetric_encryption_algorithm_wrapper( void ** params )
{
test_asymmetric_encryption_algorithm( *( (int *) params[0] ), *( (int *) params[1] ) );
}
#line 553 "suites/test_suite_psa_crypto_metadata.function"
static void test_key_derivation_algorithm(int alg_arg, int classification_flags)
{
psa_algorithm_t alg = alg_arg;
psa_algorithm_t ecdh_alg = PSA_ALG_KEY_AGREEMENT(PSA_ALG_ECDH, alg);
psa_algorithm_t ffdh_alg = PSA_ALG_KEY_AGREEMENT(PSA_ALG_FFDH, alg);
TEST_ASSERT(!PSA_ALG_IS_HASH(alg));
TEST_ASSERT(!PSA_ALG_IS_MAC(alg));
TEST_ASSERT(!PSA_ALG_IS_CIPHER(alg));
TEST_ASSERT(!PSA_ALG_IS_AEAD(alg));
TEST_ASSERT(!PSA_ALG_IS_SIGN(alg));
TEST_ASSERT(!PSA_ALG_IS_ASYMMETRIC_ENCRYPTION(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_AGREEMENT(alg));
TEST_ASSERT(PSA_ALG_IS_KEY_DERIVATION(alg));
TEST_ASSERT(!PSA_ALG_IS_PAKE(alg));
algorithm_classification(alg, classification_flags);
TEST_ASSERT(PSA_ALG_IS_KEY_AGREEMENT(ecdh_alg));
TEST_ASSERT(PSA_ALG_IS_KEY_AGREEMENT(ffdh_alg));
TEST_EQUAL(PSA_ALG_KEY_AGREEMENT_GET_KDF(ecdh_alg), alg);
TEST_EQUAL(PSA_ALG_KEY_AGREEMENT_GET_KDF(ffdh_alg), alg);
exit:
;
}
static void test_key_derivation_algorithm_wrapper( void ** params )
{
test_key_derivation_algorithm( *( (int *) params[0] ), *( (int *) params[1] ) );
}
#line 580 "suites/test_suite_psa_crypto_metadata.function"
static void test_key_agreement_algorithm(int alg_arg, int classification_flags,
int ka_alg_arg, int kdf_alg_arg)
{
psa_algorithm_t alg = alg_arg;
psa_algorithm_t actual_ka_alg = PSA_ALG_KEY_AGREEMENT_GET_BASE(alg);
psa_algorithm_t expected_ka_alg = ka_alg_arg;
psa_algorithm_t actual_kdf_alg = PSA_ALG_KEY_AGREEMENT_GET_KDF(alg);
psa_algorithm_t expected_kdf_alg = kdf_alg_arg;
TEST_ASSERT(!PSA_ALG_IS_HASH(alg));
TEST_ASSERT(!PSA_ALG_IS_MAC(alg));
TEST_ASSERT(!PSA_ALG_IS_CIPHER(alg));
TEST_ASSERT(!PSA_ALG_IS_AEAD(alg));
TEST_ASSERT(!PSA_ALG_IS_SIGN(alg));
TEST_ASSERT(!PSA_ALG_IS_ASYMMETRIC_ENCRYPTION(alg));
TEST_ASSERT(PSA_ALG_IS_KEY_AGREEMENT(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_DERIVATION(alg));
TEST_ASSERT(!PSA_ALG_IS_PAKE(alg));
algorithm_classification(alg, classification_flags);
TEST_EQUAL(actual_ka_alg, expected_ka_alg);
TEST_EQUAL(actual_kdf_alg, expected_kdf_alg);
exit:
;
}
static void test_key_agreement_algorithm_wrapper( void ** params )
{
test_key_agreement_algorithm( *( (int *) params[0] ), *( (int *) params[1] ), *( (int *) params[2] ), *( (int *) params[3] ) );
}
#line 608 "suites/test_suite_psa_crypto_metadata.function"
static void test_pake_algorithm(int alg_arg)
{
psa_algorithm_t alg = alg_arg;
TEST_ASSERT(!PSA_ALG_IS_HASH(alg));
TEST_ASSERT(!PSA_ALG_IS_MAC(alg));
TEST_ASSERT(!PSA_ALG_IS_CIPHER(alg));
TEST_ASSERT(!PSA_ALG_IS_AEAD(alg));
TEST_ASSERT(!PSA_ALG_IS_SIGN(alg));
TEST_ASSERT(!PSA_ALG_IS_ASYMMETRIC_ENCRYPTION(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_AGREEMENT(alg));
TEST_ASSERT(!PSA_ALG_IS_KEY_DERIVATION(alg));
TEST_ASSERT(PSA_ALG_IS_PAKE(alg));
exit:
;
}
static void test_pake_algorithm_wrapper( void ** params )
{
test_pake_algorithm( *( (int *) params[0] ) );
}
#line 626 "suites/test_suite_psa_crypto_metadata.function"
static void test_key_type(int type_arg, int classification_flags)
{
psa_key_type_t type = type_arg;
key_type_classification(type, classification_flags);
if (classification_flags & KEY_TYPE_IS_PUBLIC_KEY) {
psa_key_type_t pair_type = PSA_KEY_TYPE_KEY_PAIR_OF_PUBLIC_KEY(type);
TEST_EQUAL(PSA_KEY_TYPE_PUBLIC_KEY_OF_KEY_PAIR(pair_type), type);
key_type_classification(pair_type,
(classification_flags
& ~KEY_TYPE_IS_PUBLIC_KEY)
| KEY_TYPE_IS_KEY_PAIR);
TEST_EQUAL(PSA_KEY_TYPE_PUBLIC_KEY_OF_KEY_PAIR(type), type);
}
if (classification_flags & KEY_TYPE_IS_KEY_PAIR) {
psa_key_type_t public_type = PSA_KEY_TYPE_PUBLIC_KEY_OF_KEY_PAIR(type);
TEST_EQUAL(PSA_KEY_TYPE_KEY_PAIR_OF_PUBLIC_KEY(public_type), type);
key_type_classification(public_type,
(classification_flags
& ~KEY_TYPE_IS_KEY_PAIR)
| KEY_TYPE_IS_PUBLIC_KEY);
TEST_EQUAL(PSA_KEY_TYPE_KEY_PAIR_OF_PUBLIC_KEY(type), type);
}
exit:
;
}
static void test_key_type_wrapper( void ** params )
{
test_key_type( *( (int *) params[0] ), *( (int *) params[1] ) );
}
#line 655 "suites/test_suite_psa_crypto_metadata.function"
static void test_block_cipher_key_type(int type_arg, int block_size_arg)
{
psa_key_type_t type = type_arg;
size_t block_size = block_size_arg;
test_key_type(type_arg, KEY_TYPE_IS_UNSTRUCTURED);
TEST_EQUAL(type & PSA_KEY_TYPE_CATEGORY_MASK,
PSA_KEY_TYPE_CATEGORY_SYMMETRIC);
TEST_EQUAL(PSA_BLOCK_CIPHER_BLOCK_LENGTH(type), block_size);
for PSA_ROUND_UP_TO_MULTIPLE(block_size, length) in crypto_sizes.h. */
TEST_ASSERT(((block_size - 1) & block_size) == 0);
exit:
;
}
static void test_block_cipher_key_type_wrapper( void ** params )
{
test_block_cipher_key_type( *( (int *) params[0] ), *( (int *) params[1] ) );
}
#line 673 "suites/test_suite_psa_crypto_metadata.function"
static void test_stream_cipher_key_type(int type_arg)
{
psa_key_type_t type = type_arg;
test_key_type(type_arg, KEY_TYPE_IS_UNSTRUCTURED);
TEST_EQUAL(type & PSA_KEY_TYPE_CATEGORY_MASK,
PSA_KEY_TYPE_CATEGORY_SYMMETRIC);
TEST_EQUAL(PSA_BLOCK_CIPHER_BLOCK_LENGTH(type), 1);
exit:
;
}
static void test_stream_cipher_key_type_wrapper( void ** params )
{
test_stream_cipher_key_type( *( (int *) params[0] ) );
}
#if defined(PSA_KEY_TYPE_ECC_PUBLIC_KEY)
#if defined(PSA_KEY_TYPE_ECC_KEY_PAIR)
#line 686 "suites/test_suite_psa_crypto_metadata.function"
static void test_ecc_key_family(int curve_arg)
{
psa_ecc_family_t curve = curve_arg;
psa_key_type_t public_type = PSA_KEY_TYPE_ECC_PUBLIC_KEY(curve);
psa_key_type_t pair_type = PSA_KEY_TYPE_ECC_KEY_PAIR(curve);
TEST_PARITY(curve);
test_key_type(public_type, KEY_TYPE_IS_ECC | KEY_TYPE_IS_PUBLIC_KEY);
test_key_type(pair_type, KEY_TYPE_IS_ECC | KEY_TYPE_IS_KEY_PAIR);
TEST_EQUAL(PSA_KEY_TYPE_ECC_GET_FAMILY(public_type), curve);
TEST_EQUAL(PSA_KEY_TYPE_ECC_GET_FAMILY(pair_type), curve);
exit:
;
}
static void test_ecc_key_family_wrapper( void ** params )
{
test_ecc_key_family( *( (int *) params[0] ) );
}
#endif
#endif
#if defined(MBEDTLS_DHM_C)
#line 703 "suites/test_suite_psa_crypto_metadata.function"
static void test_dh_key_family(int group_arg)
{
psa_dh_family_t group = group_arg;
psa_key_type_t public_type = PSA_KEY_TYPE_DH_PUBLIC_KEY(group);
psa_key_type_t pair_type = PSA_KEY_TYPE_DH_KEY_PAIR(group);
TEST_PARITY(group);
test_key_type(public_type, KEY_TYPE_IS_DH | KEY_TYPE_IS_PUBLIC_KEY);
test_key_type(pair_type, KEY_TYPE_IS_DH | KEY_TYPE_IS_KEY_PAIR);
TEST_EQUAL(PSA_KEY_TYPE_DH_GET_FAMILY(public_type), group);
TEST_EQUAL(PSA_KEY_TYPE_DH_GET_FAMILY(pair_type), group);
exit:
;
}
static void test_dh_key_family_wrapper( void ** params )
{
test_dh_key_family( *( (int *) params[0] ) );
}
#endif
#line 720 "suites/test_suite_psa_crypto_metadata.function"
static void test_lifetime(int lifetime_arg, int classification_flags,
int persistence_arg, int location_arg)
{
psa_key_lifetime_t lifetime = lifetime_arg;
psa_key_persistence_t persistence = persistence_arg;
psa_key_location_t location = location_arg;
unsigned flags = classification_flags;
unsigned classification_flags_tested = 0;
TEST_CLASSIFICATION_MACRO(1, KEY_LIFETIME_IS_VOLATILE, lifetime, flags);
TEST_CLASSIFICATION_MACRO(1, KEY_LIFETIME_IS_READ_ONLY, lifetime, flags);
TEST_EQUAL(classification_flags_tested,
KEY_LIFETIME_FLAG_MASK_PLUS_ONE - 1);
TEST_EQUAL(PSA_KEY_LIFETIME_GET_PERSISTENCE(lifetime), persistence);
TEST_EQUAL(PSA_KEY_LIFETIME_GET_LOCATION(lifetime), location);
exit:
;
}
static void test_lifetime_wrapper( void ** params )
{
test_lifetime( *( (int *) params[0] ), *( (int *) params[1] ), *( (int *) params[2] ), *( (int *) params[3] ) );
}
#endif
#line 54 "suites/main_test.function"
* \brief Evaluates an expression/macro into its literal integer value.
* For optimizing space for embedded targets each expression/macro
* is identified by a unique identifier instead of string literals.
* Identifiers and evaluation code is generated by script:
* generate_test_code.py
*
* \param exp_id Expression identifier.
* \param out_value Pointer to int to hold the integer.
*
* \return 0 if exp_id is found. 1 otherwise.
*/
static int get_expression(int32_t exp_id, int32_t *out_value)
{
int ret = KEY_VALUE_MAPPING_FOUND;
(void) exp_id;
(void) out_value;
switch (exp_id) {
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
case 0:
{
*out_value = PSA_ALG_MD5;
}
break;
case 1:
{
*out_value = PSA_ALG_RIPEMD160;
}
break;
case 2:
{
*out_value = PSA_ALG_SHA_1;
}
break;
case 3:
{
*out_value = PSA_ALG_SHA_224;
}
break;
case 4:
{
*out_value = PSA_ALG_SHA_256;
}
break;
case 5:
{
*out_value = PSA_ALG_SHA_384;
}
break;
case 6:
{
*out_value = PSA_ALG_SHA_512;
}
break;
case 7:
{
*out_value = PSA_ALG_HMAC( PSA_ALG_MD5 );
}
break;
case 8:
{
*out_value = PSA_ALG_HMAC( PSA_ALG_RIPEMD160 );
}
break;
case 9:
{
*out_value = PSA_ALG_HMAC( PSA_ALG_SHA_1 );
}
break;
case 10:
{
*out_value = PSA_ALG_HMAC( PSA_ALG_SHA_224 );
}
break;
case 11:
{
*out_value = PSA_ALG_HMAC( PSA_ALG_SHA_256 );
}
break;
case 12:
{
*out_value = PSA_ALG_HMAC( PSA_ALG_SHA_384 );
}
break;
case 13:
{
*out_value = PSA_ALG_HMAC( PSA_ALG_SHA_512 );
}
break;
case 14:
{
*out_value = PSA_ALG_CBC_MAC;
}
break;
case 15:
{
*out_value = ALG_IS_BLOCK_CIPHER_MAC;
}
break;
case 16:
{
*out_value = PSA_KEY_TYPE_AES;
}
break;
case 17:
{
*out_value = PSA_KEY_TYPE_DES;
}
break;
case 18:
{
*out_value = PSA_ALG_CMAC;
}
break;
case 19:
{
*out_value = PSA_ALG_STREAM_CIPHER;
}
break;
case 20:
{
*out_value = ALG_IS_STREAM_CIPHER;
}
break;
case 21:
{
*out_value = PSA_ALG_CTR;
}
break;
case 22:
{
*out_value = PSA_ALG_CFB;
}
break;
case 23:
{
*out_value = PSA_ALG_OFB;
}
break;
case 24:
{
*out_value = PSA_ALG_ECB_NO_PADDING;
}
break;
case 25:
{
*out_value = PSA_ALG_CBC_NO_PADDING;
}
break;
case 26:
{
*out_value = PSA_ALG_CBC_PKCS7;
}
break;
case 27:
{
*out_value = PSA_ALG_XTS;
}
break;
case 28:
{
*out_value = PSA_ALG_CCM_STAR_NO_TAG;
}
break;
case 29:
{
*out_value = PSA_ALG_CCM;
}
break;
case 30:
{
*out_value = ALG_IS_AEAD_ON_BLOCK_CIPHER;
}
break;
case 31:
{
*out_value = PSA_KEY_TYPE_ARIA;
}
break;
case 32:
{
*out_value = PSA_KEY_TYPE_CAMELLIA;
}
break;
case 33:
{
*out_value = PSA_ALG_GCM;
}
break;
case 34:
{
*out_value = PSA_ALG_CHACHA20_POLY1305;
}
break;
case 35:
{
*out_value = PSA_KEY_TYPE_CHACHA20;
}
break;
case 36:
{
*out_value = PSA_ALG_RSA_PKCS1V15_SIGN_RAW;
}
break;
case 37:
{
*out_value = ALG_IS_RSA_PKCS1V15_SIGN | ALG_IS_SIGN_HASH;
}
break;
case 38:
{
*out_value = PSA_ALG_RSA_PKCS1V15_SIGN( PSA_ALG_SHA_256 );
}
break;
case 39:
{
*out_value = ALG_IS_RSA_PKCS1V15_SIGN | ALG_IS_SIGN_HASH | ALG_IS_HASH_AND_SIGN;
}
break;
case 40:
{
*out_value = PSA_ALG_RSA_PSS( PSA_ALG_SHA_256 );
}
break;
case 41:
{
*out_value = ALG_IS_RSA_PSS | ALG_IS_RSA_PSS_STANDARD_SALT | ALG_IS_SIGN_HASH | ALG_IS_HASH_AND_SIGN;
}
break;
case 42:
{
*out_value = PSA_ALG_RSA_PSS_ANY_SALT( PSA_ALG_SHA_256 );
}
break;
case 43:
{
*out_value = ALG_IS_RSA_PSS | ALG_IS_RSA_PSS_ANY_SALT | ALG_IS_SIGN_HASH | ALG_IS_HASH_AND_SIGN;
}
break;
case 44:
{
*out_value = PSA_ALG_ECDSA_ANY;
}
break;
case 45:
{
*out_value = ALG_IS_ECDSA | ALG_IS_RANDOMIZED_ECDSA | ALG_IS_SIGN_HASH;
}
break;
case 46:
{
*out_value = PSA_ALG_ECDSA( PSA_ALG_SHA_256 );
}
break;
case 47:
{
*out_value = ALG_IS_ECDSA | ALG_IS_RANDOMIZED_ECDSA | ALG_IS_SIGN_HASH | ALG_IS_HASH_AND_SIGN;
}
break;
case 48:
{
*out_value = PSA_ALG_DETERMINISTIC_ECDSA( PSA_ALG_SHA_256 );
}
break;
case 49:
{
*out_value = ALG_IS_ECDSA | ALG_IS_DETERMINISTIC_ECDSA | ALG_ECDSA_IS_DETERMINISTIC | ALG_IS_SIGN_HASH | ALG_IS_HASH_AND_SIGN;
}
break;
case 50:
{
*out_value = PSA_ALG_PURE_EDDSA;
}
break;
case 51:
{
*out_value = PSA_ALG_ED25519PH;
}
break;
case 52:
{
*out_value = ALG_IS_HASH_EDDSA | ALG_IS_SIGN_HASH | ALG_IS_HASH_AND_SIGN;
}
break;
case 53:
{
*out_value = PSA_ALG_ED448PH;
}
break;
case 54:
{
*out_value = PSA_ALG_RSA_PKCS1V15_SIGN( PSA_ALG_ANY_HASH );
}
break;
case 55:
{
*out_value = ALG_IS_RSA_PKCS1V15_SIGN;
}
break;
case 56:
{
*out_value = PSA_ALG_RSA_PSS( PSA_ALG_ANY_HASH );
}
break;
case 57:
{
*out_value = ALG_IS_RSA_PSS | ALG_IS_RSA_PSS_STANDARD_SALT;
}
break;
case 58:
{
*out_value = PSA_ALG_RSA_PSS_ANY_SALT( PSA_ALG_ANY_HASH );
}
break;
case 59:
{
*out_value = ALG_IS_RSA_PSS | ALG_IS_RSA_PSS_ANY_SALT;
}
break;
case 60:
{
*out_value = PSA_ALG_ECDSA( PSA_ALG_ANY_HASH );
}
break;
case 61:
{
*out_value = ALG_IS_ECDSA | ALG_IS_RANDOMIZED_ECDSA;
}
break;
case 62:
{
*out_value = PSA_ALG_DETERMINISTIC_ECDSA( PSA_ALG_ANY_HASH );
}
break;
case 63:
{
*out_value = ALG_IS_ECDSA | ALG_IS_DETERMINISTIC_ECDSA | ALG_ECDSA_IS_DETERMINISTIC;
}
break;
case 64:
{
*out_value = PSA_ALG_RSA_PKCS1V15_CRYPT;
}
break;
case 65:
{
*out_value = PSA_ALG_RSA_OAEP( PSA_ALG_SHA_256 );
}
break;
case 66:
{
*out_value = ALG_IS_RSA_OAEP;
}
break;
case 67:
{
*out_value = PSA_ALG_HKDF( PSA_ALG_SHA_256 );
}
break;
case 68:
{
*out_value = ALG_IS_HKDF;
}
break;
case 69:
{
*out_value = PSA_ALG_HKDF( PSA_ALG_SHA_384 );
}
break;
case 70:
{
*out_value = PSA_ALG_HKDF_EXTRACT( PSA_ALG_SHA_256 );
}
break;
case 71:
{
*out_value = ALG_IS_HKDF_EXTRACT;
}
break;
case 72:
{
*out_value = PSA_ALG_HKDF_EXTRACT( PSA_ALG_SHA_384 );
}
break;
case 73:
{
*out_value = PSA_ALG_HKDF_EXPAND( PSA_ALG_SHA_256 );
}
break;
case 74:
{
*out_value = ALG_IS_HKDF_EXPAND;
}
break;
case 75:
{
*out_value = PSA_ALG_HKDF_EXPAND( PSA_ALG_SHA_384 );
}
break;
case 76:
{
*out_value = PSA_ALG_TLS12_ECJPAKE_TO_PMS;
}
break;
case 77:
{
*out_value = PSA_ALG_TLS12_PRF( PSA_ALG_SHA_256 );
}
break;
case 78:
{
*out_value = ALG_IS_TLS12_PRF;
}
break;
case 79:
{
*out_value = PSA_ALG_TLS12_PRF( PSA_ALG_SHA_384 );
}
break;
case 80:
{
*out_value = PSA_ALG_TLS12_PSK_TO_MS( PSA_ALG_SHA_256 );
}
break;
case 81:
{
*out_value = ALG_IS_TLS12_PSK_TO_MS;
}
break;
case 82:
{
*out_value = PSA_ALG_TLS12_PSK_TO_MS( PSA_ALG_SHA_384 );
}
break;
case 83:
{
*out_value = PSA_ALG_FFDH;
}
break;
case 84:
{
*out_value = ALG_IS_FFDH | ALG_IS_RAW_KEY_AGREEMENT;
}
break;
case 85:
{
*out_value = PSA_ALG_CATEGORY_KEY_DERIVATION;
}
break;
case 86:
{
*out_value = PSA_ALG_KEY_AGREEMENT( PSA_ALG_FFDH, PSA_ALG_HKDF( PSA_ALG_SHA_256 ) );
}
break;
case 87:
{
*out_value = ALG_IS_FFDH;
}
break;
case 88:
{
*out_value = PSA_ALG_KEY_AGREEMENT( PSA_ALG_FFDH, PSA_ALG_HKDF( PSA_ALG_SHA_384 ) );
}
break;
case 89:
{
*out_value = PSA_ALG_ECDH;
}
break;
case 90:
{
*out_value = ALG_IS_ECDH | ALG_IS_RAW_KEY_AGREEMENT;
}
break;
case 91:
{
*out_value = PSA_ALG_KEY_AGREEMENT( PSA_ALG_ECDH, PSA_ALG_HKDF( PSA_ALG_SHA_256 ) );
}
break;
case 92:
{
*out_value = ALG_IS_ECDH;
}
break;
case 93:
{
*out_value = PSA_ALG_KEY_AGREEMENT( PSA_ALG_ECDH, PSA_ALG_HKDF( PSA_ALG_SHA_384 ) );
}
break;
case 94:
{
*out_value = PSA_ALG_JPAKE;
}
break;
case 95:
{
*out_value = PSA_KEY_TYPE_RAW_DATA;
}
break;
case 96:
{
*out_value = KEY_TYPE_IS_UNSTRUCTURED;
}
break;
case 97:
{
*out_value = PSA_KEY_TYPE_HMAC;
}
break;
case 98:
{
*out_value = PSA_KEY_TYPE_DERIVE;
}
break;
case 99:
{
*out_value = PSA_KEY_TYPE_PASSWORD;
}
break;
case 100:
{
*out_value = PSA_KEY_TYPE_PASSWORD_HASH;
}
break;
case 101:
{
*out_value = PSA_KEY_TYPE_RSA_PUBLIC_KEY;
}
break;
case 102:
{
*out_value = KEY_TYPE_IS_PUBLIC_KEY | KEY_TYPE_IS_RSA;
}
break;
case 103:
{
*out_value = PSA_KEY_TYPE_RSA_KEY_PAIR;
}
break;
case 104:
{
*out_value = KEY_TYPE_IS_KEY_PAIR | KEY_TYPE_IS_RSA;
}
break;
case 105:
{
*out_value = PSA_ECC_FAMILY_SECP_K1;
}
break;
case 106:
{
*out_value = PSA_ECC_FAMILY_SECP_R1;
}
break;
case 107:
{
*out_value = PSA_ECC_FAMILY_SECP_R2;
}
break;
case 108:
{
*out_value = PSA_ECC_FAMILY_SECT_K1;
}
break;
case 109:
{
*out_value = PSA_ECC_FAMILY_SECT_R1;
}
break;
case 110:
{
*out_value = PSA_ECC_FAMILY_SECT_R2;
}
break;
case 111:
{
*out_value = PSA_ECC_FAMILY_BRAINPOOL_P_R1;
}
break;
case 112:
{
*out_value = PSA_ECC_FAMILY_MONTGOMERY;
}
break;
case 113:
{
*out_value = PSA_ECC_FAMILY_TWISTED_EDWARDS;
}
break;
case 114:
{
*out_value = PSA_DH_FAMILY_RFC7919;
}
break;
case 115:
{
*out_value = PSA_KEY_LIFETIME_VOLATILE;
}
break;
case 116:
{
*out_value = KEY_LIFETIME_IS_VOLATILE;
}
break;
case 117:
{
*out_value = PSA_KEY_PERSISTENCE_VOLATILE;
}
break;
case 118:
{
*out_value = PSA_KEY_LOCATION_LOCAL_STORAGE;
}
break;
case 119:
{
*out_value = PSA_KEY_LIFETIME_PERSISTENT;
}
break;
case 120:
{
*out_value = PSA_KEY_PERSISTENCE_DEFAULT;
}
break;
case 121:
{
*out_value = PSA_KEY_LIFETIME_FROM_PERSISTENCE_AND_LOCATION(PSA_KEY_PERSISTENCE_VOLATILE, PSA_KEY_LOCATION_LOCAL_STORAGE);
}
break;
case 122:
{
*out_value = PSA_KEY_LIFETIME_FROM_PERSISTENCE_AND_LOCATION(PSA_KEY_PERSISTENCE_DEFAULT, PSA_KEY_LOCATION_LOCAL_STORAGE);
}
break;
case 123:
{
*out_value = PSA_KEY_LIFETIME_FROM_PERSISTENCE_AND_LOCATION(2, PSA_KEY_LOCATION_LOCAL_STORAGE);
}
break;
case 124:
{
*out_value = PSA_KEY_LIFETIME_FROM_PERSISTENCE_AND_LOCATION(254, PSA_KEY_LOCATION_LOCAL_STORAGE);
}
break;
case 125:
{
*out_value = PSA_KEY_LIFETIME_FROM_PERSISTENCE_AND_LOCATION(PSA_KEY_PERSISTENCE_READ_ONLY, PSA_KEY_LOCATION_LOCAL_STORAGE);
}
break;
case 126:
{
*out_value = KEY_LIFETIME_IS_READ_ONLY;
}
break;
case 127:
{
*out_value = PSA_KEY_PERSISTENCE_READ_ONLY;
}
break;
case 128:
{
*out_value = PSA_KEY_LIFETIME_FROM_PERSISTENCE_AND_LOCATION(PSA_KEY_PERSISTENCE_VOLATILE, 0x123456);
}
break;
case 129:
{
*out_value = PSA_KEY_LIFETIME_FROM_PERSISTENCE_AND_LOCATION(PSA_KEY_PERSISTENCE_DEFAULT, 0x123456);
}
break;
case 130:
{
*out_value = PSA_KEY_LIFETIME_FROM_PERSISTENCE_AND_LOCATION(2, 0x123456);
}
break;
case 131:
{
*out_value = PSA_KEY_LIFETIME_FROM_PERSISTENCE_AND_LOCATION(254, 0x123456);
}
break;
case 132:
{
*out_value = PSA_KEY_LIFETIME_FROM_PERSISTENCE_AND_LOCATION(PSA_KEY_PERSISTENCE_READ_ONLY, 0x123456);
}
break;
#endif
#line 82 "suites/main_test.function"
default:
{
ret = KEY_VALUE_MAPPING_NOT_FOUND;
}
break;
}
return ret;
}
* \brief Checks if the dependency i.e. the compile flag is set.
* For optimizing space for embedded targets each dependency
* is identified by a unique identifier instead of string literals.
* Identifiers and check code is generated by script:
* generate_test_code.py
*
* \param dep_id Dependency identifier.
*
* \return DEPENDENCY_SUPPORTED if set else DEPENDENCY_NOT_SUPPORTED
*/
static int dep_check(int dep_id)
{
int ret = DEPENDENCY_NOT_SUPPORTED;
(void) dep_id;
switch (dep_id) {
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
case 0:
{
#if defined(PSA_WANT_ALG_MD5)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 1:
{
#if defined(PSA_WANT_ALG_RIPEMD160)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 2:
{
#if defined(PSA_WANT_ALG_SHA_1)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 3:
{
#if defined(PSA_WANT_ALG_SHA_224)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 4:
{
#if defined(PSA_WANT_ALG_SHA_256)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 5:
{
#if defined(PSA_WANT_ALG_SHA_384)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 6:
{
#if defined(PSA_WANT_ALG_SHA_512)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 7:
{
#if defined(PSA_WANT_ALG_HMAC)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 8:
{
#if defined(PSA_WANT_ALG_CBC_MAC)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 9:
{
#if defined(PSA_WANT_KEY_TYPE_AES)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 10:
{
#if defined(MBEDTLS_CIPHER_C)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 11:
{
#if defined(PSA_WANT_KEY_TYPE_DES)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 12:
{
#if defined(PSA_WANT_ALG_CMAC)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 13:
{
#if defined(PSA_WANT_ALG_STREAM_CIPHER)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 14:
{
#if defined(PSA_WANT_ALG_CTR)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 15:
{
#if defined(PSA_WANT_ALG_CFB)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 16:
{
#if defined(PSA_WANT_ALG_OFB)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 17:
{
#if defined(PSA_WANT_ALG_ECB_NO_PADDING)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 18:
{
#if defined(PSA_WANT_ALG_CBC_NO_PADDING)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 19:
{
#if defined(PSA_WANT_ALG_CBC_PKCS7)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 20:
{
#if defined(PSA_WANT_ALG_XTS)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 21:
{
#if defined(PSA_WANT_ALG_CCM_STAR_NO_TAG)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 22:
{
#if defined(PSA_WANT_ALG_CCM)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 23:
{
#if defined(PSA_WANT_KEY_TYPE_ARIA)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 24:
{
#if defined(PSA_WANT_KEY_TYPE_CAMELLIA)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 25:
{
#if defined(PSA_WANT_ALG_GCM)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 26:
{
#if defined(PSA_WANT_ALG_CHACHA20_POLY1305)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 27:
{
#if defined(PSA_WANT_ALG_RSA_PKCS1V15_SIGN)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 28:
{
#if defined(PSA_WANT_ALG_RSA_PSS)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 29:
{
#if defined(PSA_WANT_ALG_ECDSA)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 30:
{
#if defined(PSA_WANT_ALG_DETERMINISTIC_ECDSA)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 31:
{
#if defined(PSA_WANT_ALG_EDDSA)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 32:
{
#if defined(PSA_WANT_ALG_RSA_PKCS1V15_CRYPT)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 33:
{
#if defined(PSA_WANT_ALG_RSA_OAEP)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 34:
{
#if defined(PSA_WANT_ALG_HKDF)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 35:
{
#if defined(PSA_WANT_ALG_HKDF_EXTRACT)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 36:
{
#if defined(PSA_WANT_ALG_HKDF_EXPAND)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 37:
{
#if defined(PSA_WANT_ALG_TLS12_ECJPAKE_TO_PMS)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 38:
{
#if defined(PSA_WANT_ALG_TLS12_PRF)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 39:
{
#if defined(PSA_WANT_ALG_TLS12_PSK_TO_MS)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 40:
{
#if defined(PSA_WANT_ALG_FFDH)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 41:
{
#if defined(PSA_WANT_ALG_ECDH)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 42:
{
#if defined(PSA_WANT_KEY_TYPE_HMAC)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 43:
{
#if defined(PSA_WANT_KEY_TYPE_CHACHA20)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 44:
{
#if defined(PSA_WANT_KEY_TYPE_RSA_PUBLIC_KEY)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
case 45:
{
#if defined(PSA_WANT_KEY_TYPE_RSA_KEY_PAIR)
ret = DEPENDENCY_SUPPORTED;
#else
ret = DEPENDENCY_NOT_SUPPORTED;
#endif
}
break;
#endif
#line 112 "suites/main_test.function"
default:
break;
}
return ret;
}
* \brief Function pointer type for test function wrappers.
*
* A test function wrapper decodes the parameters and passes them to the
* underlying test function. Both the wrapper and the underlying function
* return void. Test wrappers assume that they are passed a suitable
* parameter array and do not perform any error detection.
*
* \param param_array The array of parameters. Each element is a `void *`
* which the wrapper casts to the correct type and
* dereferences. Each wrapper function hard-codes the
* number and types of the parameters.
*/
typedef void (*TestWrapper_t)(void **param_array);
* \brief Table of test function wrappers. Used by dispatch_test().
* This table is populated by script:
* generate_test_code.py
*
*/
static TestWrapper_t test_funcs[] =
{
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
test_hash_algorithm_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
test_mac_algorithm_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
test_hmac_algorithm_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
test_cipher_algorithm_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
test_aead_algorithm_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
test_asymmetric_signature_algorithm_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
test_asymmetric_signature_wildcard_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
test_asymmetric_encryption_algorithm_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
test_key_derivation_algorithm_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
test_key_agreement_algorithm_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
test_pake_algorithm_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
test_key_type_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
test_block_cipher_key_type_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
test_stream_cipher_key_type_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT) && defined(PSA_KEY_TYPE_ECC_PUBLIC_KEY) && defined(PSA_KEY_TYPE_ECC_KEY_PAIR)
test_ecc_key_family_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT) && defined(MBEDTLS_DHM_C)
test_dh_key_family_wrapper,
#else
NULL,
#endif
#if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
test_lifetime_wrapper,
#else
NULL,
#endif
#line 145 "suites/main_test.function"
};
* \brief Dispatches test functions based on function index.
*
* \param func_idx Test function index.
* \param params The array of parameters to pass to the test function.
* It will be decoded by the #TestWrapper_t wrapper function.
*
* \return DISPATCH_TEST_SUCCESS if found
* DISPATCH_TEST_FN_NOT_FOUND if not found
* DISPATCH_UNSUPPORTED_SUITE if not compile time enabled.
*/
static int dispatch_test(size_t func_idx, void **params)
{
int ret = DISPATCH_TEST_SUCCESS;
TestWrapper_t fp = NULL;
if (func_idx < (int) (sizeof(test_funcs) / sizeof(TestWrapper_t))) {
fp = test_funcs[func_idx];
if (fp) {
#if defined(MBEDTLS_PSA_CRYPTO_EXTERNAL_RNG)
mbedtls_test_enable_insecure_external_rng();
#endif
fp(params);
#if defined(MBEDTLS_TEST_MUTEX_USAGE)
mbedtls_test_mutex_usage_check();
#endif
} else {
ret = DISPATCH_UNSUPPORTED_SUITE;
}
} else {
ret = DISPATCH_TEST_FN_NOT_FOUND;
}
return ret;
}
* \brief Checks if test function is supported in this build-time
* configuration.
*
* \param func_idx Test function index.
*
* \return DISPATCH_TEST_SUCCESS if found
* DISPATCH_TEST_FN_NOT_FOUND if not found
* DISPATCH_UNSUPPORTED_SUITE if not compile time enabled.
*/
static int check_test(size_t func_idx)
{
int ret = DISPATCH_TEST_SUCCESS;
TestWrapper_t fp = NULL;
if (func_idx < (int) (sizeof(test_funcs)/sizeof(TestWrapper_t))) {
fp = test_funcs[func_idx];
if (fp == NULL) {
ret = DISPATCH_UNSUPPORTED_SUITE;
}
} else {
ret = DISPATCH_TEST_FN_NOT_FOUND;
}
return ret;
}
#line 2 "suites/host_test.function"
* \brief Verifies that string is in string parameter format i.e. "<str>"
* It also strips enclosing '"' from the input string.
*
* \param str String parameter.
*
* \return 0 if success else 1
*/
static int verify_string(char **str)
{
if ((*str)[0] != '"' ||
(*str)[strlen(*str) - 1] != '"') {
mbedtls_fprintf(stderr,
"Expected string (with \"\") for parameter and got: %s\n", *str);
return -1;
}
(*str)++;
(*str)[strlen(*str) - 1] = '\0';
return 0;
}
* \brief Verifies that string is an integer. Also gives the converted
* integer value.
*
* \param str Input string.
* \param value Pointer to int for output value.
*
* \return 0 if success else 1
*/
static int verify_int(char *str, int32_t *value)
{
size_t i;
int minus = 0;
int digits = 1;
int hex = 0;
for (i = 0; i < strlen(str); i++) {
if (i == 0 && str[i] == '-') {
minus = 1;
continue;
}
if (((minus && i == 2) || (!minus && i == 1)) &&
str[i - 1] == '0' && (str[i] == 'x' || str[i] == 'X')) {
hex = 1;
continue;
}
if (!((str[i] >= '0' && str[i] <= '9') ||
(hex && ((str[i] >= 'a' && str[i] <= 'f') ||
(str[i] >= 'A' && str[i] <= 'F'))))) {
digits = 0;
break;
}
}
if (digits) {
if (hex) {
*value = strtol(str, NULL, 16);
} else {
*value = strtol(str, NULL, 10);
}
return 0;
}
mbedtls_fprintf(stderr,
"Expected integer for parameter and got: %s\n", str);
return KEY_VALUE_MAPPING_NOT_FOUND;
}
* \brief Usage string.
*
*/
#define USAGE \
"Usage: %s [OPTIONS] files...\n\n" \
" Command line arguments:\n" \
" files... One or more test data files. If no file is\n" \
" specified the following default test case\n" \
" file is used:\n" \
" %s\n\n" \
" Options:\n" \
" -v | --verbose Display full information about each test\n" \
" -h | --help Display this information\n\n", \
argv[0], \
"TESTCASE_FILENAME"
* \brief Read a line from the passed file pointer.
*
* \param f FILE pointer
* \param buf Pointer to memory to hold read line.
* \param len Length of the buf.
*
* \return 0 if success else -1
*/
static int get_line(FILE *f, char *buf, size_t len)
{
char *ret;
int i = 0, str_len = 0, has_string = 0;
do {
ret = fgets(buf, len, f);
if (ret == NULL) {
return -1;
}
str_len = strlen(buf);
if (str_len == 0 || buf[0] == '#') {
continue;
}
has_string = 0;
for (i = 0; i < str_len; i++) {
char c = buf[i];
if (c != ' ' && c != '\t' && c != '\n' &&
c != '\v' && c != '\f' && c != '\r') {
has_string = 1;
break;
}
}
} while (!has_string);
ret = buf + strlen(buf);
if (ret-- > buf && *ret == '\n') {
*ret = '\0';
}
if (ret-- > buf && *ret == '\r') {
*ret = '\0';
}
return 0;
}
* \brief Splits string delimited by ':'. Ignores '\:'.
*
* \param buf Input string
* \param len Input string length
* \param params Out params found
* \param params_len Out params array len
*
* \return Count of strings found.
*/
static int parse_arguments(char *buf, size_t len, char **params,
size_t params_len)
{
size_t cnt = 0, i;
char *cur = buf;
char *p = buf, *q;
params[cnt++] = cur;
while (*p != '\0' && p < (buf + len)) {
if (*p == '\\') {
p++;
p++;
continue;
}
if (*p == ':') {
if (p + 1 < buf + len) {
cur = p + 1;
TEST_HELPER_ASSERT(cnt < params_len);
params[cnt++] = cur;
}
*p = '\0';
}
p++;
}
for (i = 0; i < cnt; i++) {
p = params[i];
q = params[i];
while (*p != '\0') {
if (*p == '\\' && *(p + 1) == 'n') {
p += 2;
*(q++) = '\n';
} else if (*p == '\\' && *(p + 1) == ':') {
p += 2;
*(q++) = ':';
} else if (*p == '\\' && *(p + 1) == '?') {
p += 2;
*(q++) = '?';
} else {
*(q++) = *(p++);
}
}
*q = '\0';
}
return cnt;
}
* \brief Converts parameters into test function consumable parameters.
* Example: Input: {"int", "0", "char*", "Hello",
* "hex", "abef", "exp", "1"}
* Output: {
* 0, // Verified int
* "Hello", // Verified string
* 2, { 0xab, 0xef },// Converted len,hex pair
* 9600 // Evaluated expression
* }
*
*
* \param cnt Parameter array count.
* \param params Out array of found parameters.
* \param int_params_store Memory for storing processed integer parameters.
*
* \return 0 for success else 1
*/
static int convert_params(size_t cnt, char **params, int32_t *int_params_store)
{
char **cur = params;
char **out = params;
int ret = DISPATCH_TEST_SUCCESS;
while (cur < params + cnt) {
char *type = *cur++;
char *val = *cur++;
if (strcmp(type, "char*") == 0) {
if (verify_string(&val) == 0) {
*out++ = val;
} else {
ret = (DISPATCH_INVALID_TEST_DATA);
break;
}
} else if (strcmp(type, "int") == 0) {
if (verify_int(val, int_params_store) == 0) {
*out++ = (char *) int_params_store++;
} else {
ret = (DISPATCH_INVALID_TEST_DATA);
break;
}
} else if (strcmp(type, "hex") == 0) {
if (verify_string(&val) == 0) {
size_t len;
TEST_HELPER_ASSERT(
mbedtls_test_unhexify((unsigned char *) val, strlen(val),
val, &len) == 0);
*int_params_store = len;
*out++ = val;
*out++ = (char *) (int_params_store++);
} else {
ret = (DISPATCH_INVALID_TEST_DATA);
break;
}
} else if (strcmp(type, "exp") == 0) {
int exp_id = strtol(val, NULL, 10);
if (get_expression(exp_id, int_params_store) == 0) {
*out++ = (char *) int_params_store++;
} else {
ret = (DISPATCH_INVALID_TEST_DATA);
break;
}
} else {
ret = (DISPATCH_INVALID_TEST_DATA);
break;
}
}
return ret;
}
* \brief Tests snprintf implementation with test input.
*
* \note
* At high optimization levels (e.g. gcc -O3), this function may be
* inlined in run_test_snprintf. This can trigger a spurious warning about
* potential misuse of snprintf from gcc -Wformat-truncation (observed with
* gcc 7.2). This warning makes tests in run_test_snprintf redundant on gcc
* only. They are still valid for other compilers. Avoid this warning by
* forbidding inlining of this function by gcc.
*
* \param n Buffer test length.
* \param ref_buf Expected buffer.
* \param ref_ret Expected snprintf return value.
*
* \return 0 for success else 1
*/
#if defined(__GNUC__)
__attribute__((__noinline__))
#endif
static int test_snprintf(size_t n, const char *ref_buf, int ref_ret)
{
int ret;
char buf[10] = "xxxxxxxxx";
const char ref[10] = "xxxxxxxxx";
if (n >= sizeof(buf)) {
return -1;
}
ret = mbedtls_snprintf(buf, n, "%s", "123");
if (ret < 0 || (size_t) ret >= n) {
ret = -1;
}
if (strncmp(ref_buf, buf, sizeof(buf)) != 0 ||
ref_ret != ret ||
memcmp(buf + n, ref + n, sizeof(buf) - n) != 0) {
return 1;
}
return 0;
}
* \brief Tests snprintf implementation.
*
* \return 0 for success else 1
*/
static int run_test_snprintf(void)
{
return test_snprintf(0, "xxxxxxxxx", -1) != 0 ||
test_snprintf(1, "", -1) != 0 ||
test_snprintf(2, "1", -1) != 0 ||
test_snprintf(3, "12", -1) != 0 ||
test_snprintf(4, "123", 3) != 0 ||
test_snprintf(5, "123", 3) != 0;
}
*
* \param outcome_file The file to write to.
* If this is \c NULL, this function does nothing.
* \param argv0 The test suite name.
* \param test_case The test case description.
*/
static void write_outcome_entry(FILE *outcome_file,
const char *argv0,
const char *test_case)
{
static const char *platform = NULL;
static const char *configuration = NULL;
static const char *test_suite = NULL;
if (outcome_file == NULL) {
return;
}
if (platform == NULL) {
platform = getenv("MBEDTLS_TEST_PLATFORM");
if (platform == NULL) {
platform = "unknown";
}
}
if (configuration == NULL) {
configuration = getenv("MBEDTLS_TEST_CONFIGURATION");
if (configuration == NULL) {
configuration = "unknown";
}
}
if (test_suite == NULL) {
test_suite = strrchr(argv0, '/');
if (test_suite != NULL) {
test_suite += 1;
} else {
test_suite = argv0;
}
}
* Ignore errors: writing the outcome file is on a best-effort basis. */
mbedtls_fprintf(outcome_file, "%s;%s;%s;%s;",
platform, configuration, test_suite, test_case);
}
*
* \param outcome_file The file to write to.
* If this is \c NULL, this function does nothing.
* \param unmet_dep_count The number of unmet dependencies.
* \param unmet_dependencies The array of unmet dependencies.
* \param missing_unmet_dependencies Non-zero if there was a problem tracking
* all unmet dependencies, 0 otherwise.
* \param ret The test dispatch status (DISPATCH_xxx).
* \param info A pointer to the test info structure.
*/
static void write_outcome_result(FILE *outcome_file,
size_t unmet_dep_count,
int unmet_dependencies[],
int missing_unmet_dependencies,
int ret,
const mbedtls_test_info_t *info)
{
if (outcome_file == NULL) {
return;
}
* Ignore errors: writing the outcome file is on a best-effort basis. */
switch (ret) {
case DISPATCH_TEST_SUCCESS:
if (unmet_dep_count > 0) {
size_t i;
mbedtls_fprintf(outcome_file, "SKIP");
for (i = 0; i < unmet_dep_count; i++) {
mbedtls_fprintf(outcome_file, "%c%d",
i == 0 ? ';' : ':',
unmet_dependencies[i]);
}
if (missing_unmet_dependencies) {
mbedtls_fprintf(outcome_file, ":...");
}
break;
}
switch (info->result) {
case MBEDTLS_TEST_RESULT_SUCCESS:
mbedtls_fprintf(outcome_file, "PASS;");
break;
case MBEDTLS_TEST_RESULT_SKIPPED:
mbedtls_fprintf(outcome_file, "SKIP;Runtime skip");
break;
default:
mbedtls_fprintf(outcome_file, "FAIL;%s:%d:%s",
info->filename, info->line_no,
info->test);
break;
}
break;
case DISPATCH_TEST_FN_NOT_FOUND:
mbedtls_fprintf(outcome_file, "FAIL;Test function not found");
break;
case DISPATCH_INVALID_TEST_DATA:
mbedtls_fprintf(outcome_file, "FAIL;Invalid test data");
break;
case DISPATCH_UNSUPPORTED_SUITE:
mbedtls_fprintf(outcome_file, "SKIP;Unsupported suite");
break;
default:
mbedtls_fprintf(outcome_file, "FAIL;Unknown cause");
break;
}
mbedtls_fprintf(outcome_file, "\n");
fflush(outcome_file);
}
* \brief Desktop implementation of execute_tests().
* Parses command line and executes tests from
* supplied or default data file.
*
* \param argc Command line argument count.
* \param argv Argument array.
*
* \return Program exit status.
*/
static int execute_tests(int argc, const char **argv)
{
const char *default_filename = "./test_suite_psa_crypto_metadata.datax";
const char *test_filename = NULL;
const char **test_files = NULL;
size_t testfile_count = 0;
int option_verbose = 0;
size_t function_id = 0;
int arg_index = 1;
const char *next_arg;
size_t testfile_index, i, cnt;
int ret;
unsigned total_errors = 0, total_tests = 0, total_skipped = 0;
FILE *file;
char buf[5000];
char *params[50];
int32_t int_params[50];
void *pointer;
#if defined(__unix__) || (defined(__APPLE__) && defined(__MACH__))
int stdout_fd = -1;
#endif
const char *outcome_file_name = getenv("MBEDTLS_TEST_OUTCOME_FILE");
FILE *outcome_file = NULL;
#if defined(MBEDTLS_MEMORY_BUFFER_ALLOC_C) && \
!defined(TEST_SUITE_MEMORY_BUFFER_ALLOC)
unsigned char alloc_buf[1000000];
mbedtls_memory_buffer_alloc_init(alloc_buf, sizeof(alloc_buf));
#endif
#if defined(MBEDTLS_TEST_MUTEX_USAGE)
mbedtls_test_mutex_usage_init();
#endif
* The C standard doesn't guarantee that all-bits-0 is the representation
* of a NULL pointer. We do however use that in our code for initializing
* structures, which should work on every modern platform. Let's be sure.
*/
memset(&pointer, 0, sizeof(void *));
if (pointer != NULL) {
mbedtls_fprintf(stderr, "all-bits-zero is not a NULL pointer\n");
return 1;
}
* Make sure we have a snprintf that correctly zero-terminates
*/
if (run_test_snprintf() != 0) {
mbedtls_fprintf(stderr, "the snprintf implementation is broken\n");
return 1;
}
if (outcome_file_name != NULL && *outcome_file_name != '\0') {
outcome_file = fopen(outcome_file_name, "a");
if (outcome_file == NULL) {
mbedtls_fprintf(stderr, "Unable to open outcome file. Continuing anyway.\n");
}
}
while (arg_index < argc) {
next_arg = argv[arg_index];
if (strcmp(next_arg, "--verbose") == 0 ||
strcmp(next_arg, "-v") == 0) {
option_verbose = 1;
} else if (strcmp(next_arg, "--help") == 0 ||
strcmp(next_arg, "-h") == 0) {
mbedtls_fprintf(stdout, USAGE);
mbedtls_exit(EXIT_SUCCESS);
} else {
* list.
*/
test_files = &argv[arg_index];
testfile_count = argc - arg_index;
break;
}
arg_index++;
}
if (test_files == NULL || testfile_count == 0) {
test_files = &default_filename;
testfile_count = 1;
}
mbedtls_test_info_reset();
for (testfile_index = 0;
testfile_index < testfile_count;
testfile_index++) {
size_t unmet_dep_count = 0;
int unmet_dependencies[20];
int missing_unmet_dependencies = 0;
test_filename = test_files[testfile_index];
file = fopen(test_filename, "r");
if (file == NULL) {
mbedtls_fprintf(stderr, "Failed to open test file: %s\n",
test_filename);
if (outcome_file != NULL) {
fclose(outcome_file);
}
return 1;
}
while (!feof(file)) {
if (unmet_dep_count > 0) {
mbedtls_fprintf(stderr,
"FATAL: Dep count larger than zero at start of loop\n");
mbedtls_exit(MBEDTLS_EXIT_FAILURE);
}
unmet_dep_count = 0;
missing_unmet_dependencies = 0;
if ((ret = get_line(file, buf, sizeof(buf))) != 0) {
break;
}
mbedtls_fprintf(stdout, "%s%.66s",
mbedtls_test_info.result == MBEDTLS_TEST_RESULT_FAILED ?
"\n" : "", buf);
mbedtls_fprintf(stdout, " ");
for (i = strlen(buf) + 1; i < 67; i++) {
mbedtls_fprintf(stdout, ".");
}
mbedtls_fprintf(stdout, " ");
fflush(stdout);
write_outcome_entry(outcome_file, argv[0], buf);
total_tests++;
if ((ret = get_line(file, buf, sizeof(buf))) != 0) {
break;
}
cnt = parse_arguments(buf, strlen(buf), params,
sizeof(params) / sizeof(params[0]));
if (strcmp(params[0], "depends_on") == 0) {
for (i = 1; i < cnt; i++) {
int dep_id = strtol(params[i], NULL, 10);
if (dep_check(dep_id) != DEPENDENCY_SUPPORTED) {
if (unmet_dep_count <
ARRAY_LENGTH(unmet_dependencies)) {
unmet_dependencies[unmet_dep_count] = dep_id;
unmet_dep_count++;
} else {
missing_unmet_dependencies = 1;
}
}
}
if ((ret = get_line(file, buf, sizeof(buf))) != 0) {
break;
}
cnt = parse_arguments(buf, strlen(buf), params,
sizeof(params) / sizeof(params[0]));
}
if (unmet_dep_count == 0) {
mbedtls_test_info_reset();
#if defined(__unix__) || (defined(__APPLE__) && defined(__MACH__))
* mode
*/
if (!option_verbose) {
stdout_fd = redirect_output(stdout, "/dev/null");
if (stdout_fd == -1) {
exit(1);
}
}
#endif
function_id = strtoul(params[0], NULL, 10);
if ((ret = check_test(function_id)) == DISPATCH_TEST_SUCCESS) {
ret = convert_params(cnt - 1, params + 1, int_params);
if (DISPATCH_TEST_SUCCESS == ret) {
ret = dispatch_test(function_id, (void **) (params + 1));
}
}
#if defined(__unix__) || (defined(__APPLE__) && defined(__MACH__))
if (!option_verbose && restore_output(stdout, stdout_fd)) {
exit(1);
}
#endif
}
write_outcome_result(outcome_file,
unmet_dep_count, unmet_dependencies,
missing_unmet_dependencies,
ret, &mbedtls_test_info);
if (unmet_dep_count > 0 || ret == DISPATCH_UNSUPPORTED_SUITE) {
total_skipped++;
mbedtls_fprintf(stdout, "----");
if (1 == option_verbose && ret == DISPATCH_UNSUPPORTED_SUITE) {
mbedtls_fprintf(stdout, "\n Test Suite not enabled");
}
if (1 == option_verbose && unmet_dep_count > 0) {
mbedtls_fprintf(stdout, "\n Unmet dependencies: ");
for (i = 0; i < unmet_dep_count; i++) {
mbedtls_fprintf(stdout, "%d ",
unmet_dependencies[i]);
}
if (missing_unmet_dependencies) {
mbedtls_fprintf(stdout, "...");
}
}
mbedtls_fprintf(stdout, "\n");
fflush(stdout);
unmet_dep_count = 0;
missing_unmet_dependencies = 0;
} else if (ret == DISPATCH_TEST_SUCCESS) {
if (mbedtls_test_info.result == MBEDTLS_TEST_RESULT_SUCCESS) {
mbedtls_fprintf(stdout, "PASS\n");
} else if (mbedtls_test_info.result == MBEDTLS_TEST_RESULT_SKIPPED) {
mbedtls_fprintf(stdout, "----\n");
total_skipped++;
} else {
total_errors++;
mbedtls_fprintf(stdout, "FAILED\n");
mbedtls_fprintf(stdout, " %s\n at ",
mbedtls_test_info.test);
if (mbedtls_test_info.step != (unsigned long) (-1)) {
mbedtls_fprintf(stdout, "step %lu, ",
mbedtls_test_info.step);
}
mbedtls_fprintf(stdout, "line %d, %s",
mbedtls_test_info.line_no,
mbedtls_test_info.filename);
if (mbedtls_test_info.line1[0] != 0) {
mbedtls_fprintf(stdout, "\n %s",
mbedtls_test_info.line1);
}
if (mbedtls_test_info.line2[0] != 0) {
mbedtls_fprintf(stdout, "\n %s",
mbedtls_test_info.line2);
}
}
fflush(stdout);
} else if (ret == DISPATCH_INVALID_TEST_DATA) {
mbedtls_fprintf(stderr, "FAILED: FATAL PARSE ERROR\n");
fclose(file);
mbedtls_exit(2);
} else if (ret == DISPATCH_TEST_FN_NOT_FOUND) {
mbedtls_fprintf(stderr, "FAILED: FATAL TEST FUNCTION NOT FOUND\n");
fclose(file);
mbedtls_exit(2);
} else {
total_errors++;
}
}
fclose(file);
}
if (outcome_file != NULL) {
fclose(outcome_file);
}
mbedtls_fprintf(stdout,
"\n----------------------------------------------------------------------------\n\n");
if (total_errors == 0) {
mbedtls_fprintf(stdout, "PASSED");
} else {
mbedtls_fprintf(stdout, "FAILED");
}
mbedtls_fprintf(stdout, " (%u / %u tests (%u skipped))\n",
total_tests - total_errors, total_tests, total_skipped);
#if defined(MBEDTLS_MEMORY_BUFFER_ALLOC_C) && \
!defined(TEST_SUITE_MEMORY_BUFFER_ALLOC)
#if defined(MBEDTLS_MEMORY_DEBUG)
mbedtls_memory_buffer_alloc_status();
#endif
mbedtls_memory_buffer_alloc_free();
#endif
return total_errors != 0;
}
#line 217 "suites/main_test.function"
* \brief Program main. Invokes platform specific execute_tests().
*
* \param argc Command line arguments count.
* \param argv Array of command line arguments.
*
* \return Exit code.
*/
int main(int argc, const char *argv[])
{
#if defined(MBEDTLS_TEST_HOOKS)
extern void (*mbedtls_test_hook_test_fail)(const char *test, int line, const char *file);
mbedtls_test_hook_test_fail = &mbedtls_test_fail;
#if defined(MBEDTLS_ERROR_C)
mbedtls_test_hook_error_add = &mbedtls_test_err_add_check;
#endif
#endif
int ret = mbedtls_test_platform_setup();
if (ret != 0) {
mbedtls_fprintf(stderr,
"FATAL: Failed to initialize platform - error %d\n",
ret);
return -1;
}
ret = execute_tests(argc, argv);
mbedtls_test_platform_teardown();
return ret;
}