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Copy pathPHPCadesSymmetricAlgorithm.cpp
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PHPCadesSymmetricAlgorithm.cpp
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#include "stdafx.h"
#include "PHPCadesSymmetricAlgorithm.h"
#include "PHPCadesCPCertificate.h"
#include "Blob.h"
using namespace CryptoPro::PKI::CAdES;
using namespace CryptoPro;
PHP_METHOD(SymmetricAlgorithm, __construct) {
symmetric_algorithm_obj *obj =
(symmetric_algorithm_obj *)zend_object_store_get_object(getThis()
TSRMLS_CC);
obj->m_pCppCadesImpl = NS_SHARED_PTR::shared_ptr<CPPCadesSymmetricAlgorithmObject>(
new CPPCadesSymmetricAlgorithmObject());
}
PHP_METHOD(SymmetricAlgorithm, get_DiversData) {
CBlob value;
symmetric_algorithm_obj *obj =
(symmetric_algorithm_obj *)zend_object_store_get_object(getThis()
TSRMLS_CC);
HR_ERRORCHECK_RETURN(obj->m_pCppCadesImpl->get_DiversData(value));
char *ret_str = (char *)ecalloc(value.cbData(), sizeof(char));
strncpy(ret_str, (const char *)value.pbData(), value.cbData());
RETURN_STRINGL(ret_str, value.cbData(), 0)
}
PHP_METHOD(SymmetricAlgorithm, set_DiversData) {
char *str;
unsigned int len;
if (zend_parse_parameters(ZEND_NUM_ARGS() TSRMLS_CC, "s", &str, &len) ==
FAILURE)
RETURN_WITH_EXCEPTION(E_INVALIDARG);
symmetric_algorithm_obj *obj =
(symmetric_algorithm_obj *)zend_object_store_get_object(getThis()
TSRMLS_CC);
HR_ERRORCHECK_RETURN(obj->m_pCppCadesImpl->put_DiversData(str, len));
}
PHP_METHOD(SymmetricAlgorithm, get_IV) {
CBlob value;
symmetric_algorithm_obj *obj =
(symmetric_algorithm_obj *)zend_object_store_get_object(getThis()
TSRMLS_CC);
HR_ERRORCHECK_RETURN(obj->m_pCppCadesImpl->get_IV(value));
char *ret_str = (char *)ecalloc(value.cbData(), sizeof(char));
strncpy(ret_str, (const char *)value.pbData(), value.cbData());
RETURN_STRINGL(ret_str, value.cbData(), 0)
}
PHP_METHOD(SymmetricAlgorithm, set_IV) {
char *str;
unsigned int len;
if (zend_parse_parameters(ZEND_NUM_ARGS() TSRMLS_CC, "s", &str, &len) ==
FAILURE)
RETURN_WITH_EXCEPTION(E_INVALIDARG);
symmetric_algorithm_obj *obj =
(symmetric_algorithm_obj *)zend_object_store_get_object(getThis()
TSRMLS_CC);
HR_ERRORCHECK_RETURN(obj->m_pCppCadesImpl->put_IV(str, len));
}
PHP_METHOD(SymmetricAlgorithm, Encrypt) {
long isFinal = 1;
char *str;
int len;
if (zend_parse_parameters(ZEND_NUM_ARGS() TSRMLS_CC, "sl", &str, &len,
&isFinal) == FAILURE)
RETURN_WITH_EXCEPTION(E_INVALIDARG);
symmetric_algorithm_obj *obj =
(symmetric_algorithm_obj *)zend_object_store_get_object(getThis()
TSRMLS_CC);
CStringProxy retval;
HR_ERRORCHECK_RETURN(
obj->m_pCppCadesImpl->Encrypt(str, len, isFinal, retval));
RETURN_PROXY_STRING(retval)
}
PHP_METHOD(SymmetricAlgorithm, Decrypt) {
long isFinal = 1;
char *str;
int len;
if (zend_parse_parameters(ZEND_NUM_ARGS() TSRMLS_CC, "s|l", &str, &len,
&isFinal) == FAILURE)
RETURN_WITH_EXCEPTION(E_INVALIDARG);
symmetric_algorithm_obj *obj =
(symmetric_algorithm_obj *)zend_object_store_get_object(getThis()
TSRMLS_CC);
CBlob value;
HR_ERRORCHECK_RETURN(
obj->m_pCppCadesImpl->Decrypt(str, len, isFinal, value));
char *ret_str = (char *)ecalloc(value.cbData(), sizeof(char));
strncpy(ret_str, (const char *)value.pbData(), value.cbData());
RETURN_STRINGL(ret_str, value.cbData(), 0)
}
PHP_METHOD(SymmetricAlgorithm, DiversifyKey) {
NS_SHARED_PTR::shared_ptr<CPPCadesSymmetricAlgorithmObject> pVal;
symmetric_algorithm_obj *obj =
(symmetric_algorithm_obj *)zend_object_store_get_object(getThis()
TSRMLS_CC);
HR_ERRORCHECK_RETURN(obj->m_pCppCadesImpl->DiversifyKey(pVal));
object_init_ex(return_value, symmetric_algorithm_ce);
symmetric_algorithm_obj *psym_algo_obj =
(symmetric_algorithm_obj *)zend_object_store_get_object(
return_value TSRMLS_CC);
psym_algo_obj->m_pCppCadesImpl = pVal;
}
PHP_METHOD(SymmetricAlgorithm, GenerateKey) {
long lAlgo = -1;
if (zend_parse_parameters(ZEND_NUM_ARGS() TSRMLS_CC, "|l", &lAlgo) ==
FAILURE)
RETURN_WITH_EXCEPTION(E_INVALIDARG);
CADESCOM_ENCRYPTION_ALGORITHM algorithm =
CADESCOM_ENCRYPTION_ALGORITHM_GOST_28147_89;
if (lAlgo != -1)
algorithm = (CADESCOM_ENCRYPTION_ALGORITHM)lAlgo;
symmetric_algorithm_obj *obj =
(symmetric_algorithm_obj *)zend_object_store_get_object(getThis()
TSRMLS_CC);
HR_ERRORCHECK_RETURN(obj->m_pCppCadesImpl->GenerateKey(algorithm));
}
PHP_METHOD(SymmetricAlgorithm, ExportKey) {
zval *z_recipient;
if (zend_parse_parameters(ZEND_NUM_ARGS() TSRMLS_CC, "O", &z_recipient,
cert_ce) == FAILURE)
RETURN_WITH_EXCEPTION(E_INVALIDARG);
symmetric_algorithm_obj *obj =
(symmetric_algorithm_obj *)zend_object_store_get_object(getThis()
TSRMLS_CC);
cert_obj *pCert =
(cert_obj *)zend_object_store_get_object(z_recipient TSRMLS_CC);
CBlob value;
HR_ERRORCHECK_RETURN(
obj->m_pCppCadesImpl->ExportKey(pCert->m_pCppCadesImpl, value));
char *ret_str = (char *)ecalloc(value.cbData(), sizeof(char));
strncpy(ret_str, (const char *)value.pbData(), value.cbData());
RETURN_STRINGL(ret_str, value.cbData(), 0)
}
PHP_METHOD(SymmetricAlgorithm, ImportKey) {
zval *z_recipient;
char *data_str;
long ldata_str = 0;
char *pin_str;
long lpin_str = 0;
if (zend_parse_parameters(ZEND_NUM_ARGS() TSRMLS_CC, "sO|s", &data_str,
&ldata_str, &z_recipient, cert_ce, &pin_str,
&lpin_str) == FAILURE)
RETURN_WITH_EXCEPTION(E_INVALIDARG);
symmetric_algorithm_obj *obj =
(symmetric_algorithm_obj *)zend_object_store_get_object(getThis()
TSRMLS_CC);
cert_obj *pCert =
(cert_obj *)zend_object_store_get_object(z_recipient TSRMLS_CC);
HR_ERRORCHECK_RETURN(obj->m_pCppCadesImpl->ImportKey(
data_str, ldata_str, pCert->m_pCppCadesImpl, pin_str, lpin_str));
}
zend_object_handlers symmetric_algorithm_obj_handlers;
zend_class_entry *symmetric_algorithm_ce;
void symmetric_algorithm_free_storage(void *object TSRMLS_DC) {
symmetric_algorithm_obj *obj = (symmetric_algorithm_obj *)object;
obj->m_pCppCadesImpl.reset();
zend_hash_destroy(obj->zo.properties);
FREE_HASHTABLE(obj->zo.properties);
efree(obj);
}
zend_object_value symmetric_algorithm_create_handler(zend_class_entry *type
TSRMLS_DC) {
zend_object_value retval;
symmetric_algorithm_obj *obj =
(symmetric_algorithm_obj *)emalloc(sizeof(symmetric_algorithm_obj));
memset(obj, 0, sizeof(symmetric_algorithm_obj));
obj->zo.ce = type;
ALLOC_HASHTABLE(obj->zo.properties);
zend_hash_init(obj->zo.properties, 0, NULL, ZVAL_PTR_DTOR, 0);
#if PHP_VERSION_ID < 50399
zval *tmp;
zend_hash_copy(obj->zo.properties, &(type->default_properties),
(copy_ctor_func_t)zval_add_ref, (void *)&tmp,
sizeof(zval *));
#else
object_properties_init(&obj->zo, type);
#endif
retval.handle = zend_objects_store_put(
obj, NULL, symmetric_algorithm_free_storage, NULL TSRMLS_CC);
retval.handlers = &symmetric_algorithm_obj_handlers;
return retval;
}
//���������� ������� ������ � function entry
zend_function_entry symmetric_algorithm_methods[] = {
PHP_ME(SymmetricAlgorithm, __construct, NULL,
ZEND_ACC_PUBLIC | ZEND_ACC_CTOR)
PHP_ME(SymmetricAlgorithm, get_DiversData, NULL, ZEND_ACC_PUBLIC)
PHP_ME(SymmetricAlgorithm, set_DiversData, NULL, ZEND_ACC_PUBLIC)
PHP_ME(SymmetricAlgorithm, get_IV, NULL, ZEND_ACC_PUBLIC)
PHP_ME(SymmetricAlgorithm, set_IV, NULL, ZEND_ACC_PUBLIC)
PHP_ME(SymmetricAlgorithm, Encrypt, NULL, ZEND_ACC_PUBLIC)
PHP_ME(SymmetricAlgorithm, Decrypt, NULL, ZEND_ACC_PUBLIC)
PHP_ME(SymmetricAlgorithm, GenerateKey, NULL, ZEND_ACC_PUBLIC)
PHP_ME(SymmetricAlgorithm, DiversifyKey, NULL, ZEND_ACC_PUBLIC)
PHP_ME(SymmetricAlgorithm, ImportKey, NULL, ZEND_ACC_PUBLIC)
PHP_ME(SymmetricAlgorithm, ExportKey, NULL, ZEND_ACC_PUBLIC){NULL, NULL,
NULL}};
void symmetric_algorithm_init(TSRMLS_D) {
zend_class_entry ce;
INIT_CLASS_ENTRY(ce, "SymmetricAlgorithm", symmetric_algorithm_methods);
symmetric_algorithm_ce = zend_register_internal_class(&ce TSRMLS_CC);
symmetric_algorithm_ce->create_object = symmetric_algorithm_create_handler;
memcpy(&symmetric_algorithm_obj_handlers, zend_get_std_object_handlers(),
sizeof(zend_object_handlers));
symmetric_algorithm_obj_handlers.clone_obj = NULL;
}