#include "client_test_helpers.h"
#include "sa.h"
#include "sa_key_common.h"
#include "gtest/gtest.h"
using namespace client_test_helpers;
namespace {
TEST_P(SaKeyExportTest, nominal) {
auto key_type = std::get<0>(GetParam());
auto key_length = std::get<1>(GetParam());
sa_rights rights;
sa_rights_set_allow_all(&rights);
sa_status status;
std::vector<uint8_t> clear_key;
sa_elliptic_curve curve;
auto key = create_sa_key(key_type, key_length, clear_key, curve);
ASSERT_NE(key, nullptr);
if (*key == UNSUPPORTED_KEY)
GTEST_SKIP() << "key type, key size, or curve not supported";
size_t exported_key_length = 0;
status = sa_key_export(nullptr, &exported_key_length, nullptr, 0, *key);
ASSERT_EQ(status, SA_STATUS_OK);
ASSERT_TRUE(exported_key_length > sizeof(sa_header));
auto exported_key = std::vector<uint8_t>(exported_key_length);
status = sa_key_export(exported_key.data(), &exported_key_length, nullptr, 0, *key);
ASSERT_EQ(status, SA_STATUS_OK);
auto reimported_key = create_uninitialized_sa_key();
ASSERT_NE(reimported_key, nullptr);
status = sa_key_import(reimported_key.get(), SA_KEY_FORMAT_EXPORTED, exported_key.data(), exported_key.size(),
nullptr);
ASSERT_EQ(status, SA_STATUS_OK);
sa_type_parameters type_parameters;
memset(&type_parameters, 0, sizeof(sa_type_parameters));
if (key_type == SA_KEY_TYPE_DH) {
auto dh_parameters = get_dh_parameters(key_length);
memcpy(type_parameters.dh_parameters.p, std::get<0>(dh_parameters).data(),
std::get<0>(dh_parameters).size());
type_parameters.dh_parameters.p_length = std::get<0>(dh_parameters).size();
memcpy(type_parameters.dh_parameters.g, std::get<1>(dh_parameters).data(),
std::get<1>(dh_parameters).size());
type_parameters.dh_parameters.g_length = std::get<1>(dh_parameters).size();
} else if (key_type == SA_KEY_TYPE_EC) {
type_parameters.curve = curve;
}
auto exported_key_header = key_header(*reimported_key);
ASSERT_NE(nullptr, exported_key_header.get());
ASSERT_TRUE(memcmp(&rights, &exported_key_header->rights, sizeof(sa_rights)) == 0);
ASSERT_EQ(key_length, exported_key_header->size);
ASSERT_EQ(memcmp(&type_parameters, &exported_key_header->type_parameters, sizeof(sa_type_parameters)), 0);
ASSERT_EQ(key_type, exported_key_header->type);
ASSERT_TRUE(key_check(key_type, *reimported_key, clear_key));
}
TEST_P(SaKeyExportTest, nominalWithMixin) {
auto key_type = std::get<0>(GetParam());
auto key_length = std::get<1>(GetParam());
sa_rights rights;
sa_rights_set_allow_all(&rights);
sa_status status;
std::vector<uint8_t> clear_key;
sa_elliptic_curve curve;
auto key = create_sa_key(key_type, key_length, clear_key, curve);
ASSERT_NE(key, nullptr);
if (*key == UNSUPPORTED_KEY)
GTEST_SKIP() << "key type, key size, or curve not supported";
auto mixin = random(AES_BLOCK_SIZE);
size_t exported_key_length = 0;
status = sa_key_export(nullptr, &exported_key_length, mixin.data(), mixin.size(), *key);
ASSERT_EQ(status, SA_STATUS_OK);
ASSERT_TRUE(exported_key_length > sizeof(sa_header));
auto exported_key = std::vector<uint8_t>(exported_key_length);
status = sa_key_export(exported_key.data(), &exported_key_length, mixin.data(), mixin.size(), *key);
ASSERT_EQ(status, SA_STATUS_OK);
auto reimported_key = create_uninitialized_sa_key();
ASSERT_NE(reimported_key, nullptr);
status = sa_key_import(reimported_key.get(), SA_KEY_FORMAT_EXPORTED, exported_key.data(), exported_key.size(),
nullptr);
ASSERT_EQ(status, SA_STATUS_OK);
sa_type_parameters type_parameters;
memset(&type_parameters, 0, sizeof(sa_type_parameters));
if (key_type == SA_KEY_TYPE_DH) {
auto dh_parameters = get_dh_parameters(key_length);
memcpy(type_parameters.dh_parameters.p, std::get<0>(dh_parameters).data(),
std::get<0>(dh_parameters).size());
type_parameters.dh_parameters.p_length = std::get<0>(dh_parameters).size();
memcpy(type_parameters.dh_parameters.g, std::get<1>(dh_parameters).data(),
std::get<1>(dh_parameters).size());
type_parameters.dh_parameters.g_length = std::get<1>(dh_parameters).size();
} else if (key_type == SA_KEY_TYPE_EC) {
type_parameters.curve = curve;
}
auto exported_key_header = key_header(*reimported_key);
ASSERT_NE(nullptr, exported_key_header.get());
ASSERT_TRUE(memcmp(&rights, &exported_key_header->rights, sizeof(sa_rights)) == 0);
ASSERT_EQ(key_length, exported_key_header->size);
ASSERT_EQ(memcmp(&type_parameters, &exported_key_header->type_parameters, sizeof(sa_type_parameters)), 0);
ASSERT_EQ(key_type, exported_key_header->type);
ASSERT_TRUE(key_check(key_type, *reimported_key, clear_key));
}
TEST_F(SaKeyExportTest, failsNoCacheableFlag) {
auto clear_key = random(SYM_128_KEY_SIZE);
sa_rights rights;
sa_rights_set_allow_all(&rights);
SA_USAGE_BIT_CLEAR(rights.usage_flags, SA_USAGE_FLAG_CACHEABLE);
auto key = create_sa_key_symmetric(&rights, clear_key);
ASSERT_NE(key, nullptr);
size_t out_length = 0;
sa_status const status = sa_key_export(nullptr, &out_length, nullptr, 0, *key);
ASSERT_EQ(status, SA_STATUS_OPERATION_NOT_ALLOWED);
}
TEST_F(SaKeyExportTest, failsNullOutLength) {
auto clear_key = random(SYM_128_KEY_SIZE);
sa_rights rights;
sa_rights_set_allow_all(&rights);
auto key = create_sa_key_symmetric(&rights, clear_key);
ASSERT_NE(key, nullptr);
auto out = std::vector<uint8_t>(4096);
sa_status const status = sa_key_export(out.data(), nullptr, nullptr, 0, *key);
ASSERT_EQ(status, SA_STATUS_NULL_PARAMETER);
}
TEST_F(SaKeyExportTest, failsInvalidMixinLength) {
auto clear_key = random(SYM_128_KEY_SIZE);
sa_rights rights;
sa_rights_set_allow_all(&rights);
auto key = create_sa_key_symmetric(&rights, clear_key);
ASSERT_NE(key, nullptr);
auto mixin = random(17);
auto out = std::vector<uint8_t>(4096);
size_t out_length = out.size();
sa_status const status = sa_key_export(out.data(), &out_length, mixin.data(), mixin.size(), *key);
ASSERT_EQ(status, SA_STATUS_INVALID_PARAMETER);
}
TEST_F(SaKeyExportTest, failsInvalidKey) {
size_t out_length = 0;
sa_status const status = sa_key_export(nullptr, &out_length, nullptr, 0, INVALID_HANDLE);
ASSERT_EQ(status, SA_STATUS_INVALID_PARAMETER);
}
}