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318 lines
10 KiB
C++
318 lines
10 KiB
C++
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#ifndef libhis_createkey_hpp
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#define libhis_createkey_hpp
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#ifdef WINDOWS
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#include "tspi.h"
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#include "tss_error.h"
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#include "tss_defines.h"
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#endif
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#ifdef LINUX
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#include <tss/tspi.h>
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#include <tss/tss_error.h>
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#include <tss/tss_defines.h>
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#endif
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#include "libhis_exception.hpp"
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#include "libhis_utils.hpp"
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class libhis_createkey
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{
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public:
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libhis_createkey()
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{
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//set default values
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init_key_size = TSS_KEY_SIZE_DEFAULT;
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init_key_type = TSS_KEY_TYPE_DEFAULT;
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init_key_authorized = TSS_KEY_AUTHORIZATION;
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init_key_migratable = TSS_KEY_NOT_MIGRATABLE;
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init_key_volatile = TSS_KEY_VOLATILE;
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init_key_scheme = 0;
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binitialized = false;
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//create a context object
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result = Tspi_Context_Create(&hcontext);
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if(result != TSS_SUCCESS) throw libhis_exception("Create Conntext", result);
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//create an SRK object
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result = Tspi_Context_CreateObject(hcontext, TSS_OBJECT_TYPE_RSAKEY, TSS_KEY_TSP_SRK, &hkey_srk);
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if(result != TSS_SUCCESS) throw libhis_exception("Create SRK", result);
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//Create SRK policy
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result = Tspi_Context_CreateObject(hcontext, TSS_OBJECT_TYPE_POLICY, TSS_POLICY_USAGE, &hpolicy_srk);
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if(result != TSS_SUCCESS) throw libhis_exception("Create SRK Policy", result);
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//Create key policy
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result = Tspi_Context_CreateObject(hcontext, TSS_OBJECT_TYPE_POLICY, TSS_POLICY_USAGE, &hpolicy_key);
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if(result != TSS_SUCCESS) throw libhis_exception("Create key Policy", result);
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}
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void initsign(unsigned int in_size, unsigned int in_scheme)
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{
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//set the type
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init_key_type = TSS_KEY_TYPE_SIGNING;
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//set the key size
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if(in_size == 0)
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init_key_size = TSS_KEY_SIZE_DEFAULT;
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else if(in_size == 512)
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init_key_size = TSS_KEY_SIZE_512;
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else if(in_size == 1024)
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init_key_size = TSS_KEY_SIZE_1024;
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else if(in_size == 2048)
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init_key_size = TSS_KEY_SIZE_2048;
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else if(in_size == 4096)
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init_key_size = TSS_KEY_SIZE_4096;
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else if(in_size == 8192)
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init_key_size = TSS_KEY_SIZE_8192;
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else if(in_size == 16384)
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init_key_size = TSS_KEY_SIZE_16384;
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else throw libhis_exception("Invalid key size", 400);
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//set the signature scheme
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if(in_scheme == 0)
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init_key_scheme = TSS_SS_RSASSAPKCS1V15_SHA1;
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else if(in_scheme == 1)
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init_key_scheme = TSS_SS_RSASSAPKCS1V15_DER;
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else
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init_key_scheme = TSS_SS_NONE;
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//combine the init flags
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init_key = init_key_size | init_key_type | init_key_authorized | init_key_migratable | init_key_volatile;
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//Create key object
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result = Tspi_Context_CreateObject(hcontext, TSS_OBJECT_TYPE_RSAKEY, init_key, &hkey_key);
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if(result != TSS_SUCCESS) throw libhis_exception("Create key", result);
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//Set the signature scheme
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result = Tspi_SetAttribUint32(hkey_key, TSS_TSPATTRIB_KEY_INFO, TSS_TSPATTRIB_KEYINFO_SIGSCHEME, init_key_scheme);
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if(result != TSS_SUCCESS) throw libhis_exception("Set signature scheme", result);
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binitialized = true;
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}
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void initbind(unsigned int in_size, unsigned int in_scheme)
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{
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//set the type
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init_key_type = TSS_KEY_TYPE_BIND;
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//set the key size
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if(in_size == 0)
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init_key_size = TSS_KEY_SIZE_DEFAULT;
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else if(in_size == 512)
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init_key_size = TSS_KEY_SIZE_512;
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else if(in_size == 1024)
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init_key_size = TSS_KEY_SIZE_1024;
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else if(in_size == 2048)
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init_key_size = TSS_KEY_SIZE_2048;
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else if(in_size == 4096)
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init_key_size = TSS_KEY_SIZE_4096;
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else if(in_size == 8192)
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init_key_size = TSS_KEY_SIZE_8192;
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else if(in_size == 16384)
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init_key_size = TSS_KEY_SIZE_16384;
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else throw libhis_exception("Invalid key size", 400);
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//set the encryption scheme
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if(in_scheme == 0)
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init_key_scheme = TSS_ES_RSAESPKCSV15;
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else if(in_scheme == 1)
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init_key_scheme = TSS_ES_RSAESOAEP_SHA1_MGF1;
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else if(in_scheme == 2)
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init_key_scheme = TSS_ES_SYM_CNT;
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else if(in_scheme == 3)
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init_key_scheme = TSS_ES_SYM_OFB;
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else if(in_scheme == 4)
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init_key_scheme = TSS_ES_SYM_CBC_PKCS5PAD;
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else
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init_key_scheme = TSS_ES_NONE;
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//combine the init flags
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init_key = init_key_size | init_key_type | init_key_authorized | init_key_migratable | init_key_volatile;
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//Create key object
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result = Tspi_Context_CreateObject(hcontext, TSS_OBJECT_TYPE_RSAKEY, init_key, &hkey_key);
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if(result != TSS_SUCCESS) throw libhis_exception("Create key", result);
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//Set the encryption scheme
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result = Tspi_SetAttribUint32(hkey_key, TSS_TSPATTRIB_KEY_INFO, TSS_TSPATTRIB_KEYINFO_ENCSCHEME, init_key_scheme);
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if(result != TSS_SUCCESS) throw libhis_exception("Set encryption scheme", result);
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binitialized = true;
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}
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void initstorage(unsigned int in_size, unsigned int in_location)
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{
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//set the type
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init_key_type = TSS_KEY_TYPE_STORAGE;
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//set the key size
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if(in_size == 0)
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init_key_size = TSS_KEY_SIZE_DEFAULT;
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else if(in_size == 512)
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init_key_size = TSS_KEY_SIZE_512;
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else if(in_size == 1024)
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init_key_size = TSS_KEY_SIZE_1024;
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else if(in_size == 2048)
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init_key_size = TSS_KEY_SIZE_2048;
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else if(in_size == 4096)
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init_key_size = TSS_KEY_SIZE_4096;
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else if(in_size == 8192)
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init_key_size = TSS_KEY_SIZE_8192;
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else if(in_size == 16384)
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init_key_size = TSS_KEY_SIZE_16384;
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else throw libhis_exception("Invalid key size", 400);
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//set the encryption scheme
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if(in_location == 0)
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init_key_location = TSS_PS_TYPE_SYSTEM;
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else
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init_key_location = TSS_PS_TYPE_USER;
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//combine the init flags
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init_key = init_key_size | init_key_type | init_key_authorized | init_key_migratable | init_key_volatile | init_key_location;
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//Create key object
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result = Tspi_Context_CreateObject(hcontext, TSS_OBJECT_TYPE_RSAKEY, init_key, &hkey_key);
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if(result != TSS_SUCCESS) throw libhis_exception("Create key", result);
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binitialized = true;
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}
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void createkey(
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unsigned char *auth_srk_value,
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unsigned long auth_srk_size,
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bool auth_srk_sha1,
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unsigned char *auth_key_value,
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unsigned long auth_key_size,
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bool auth_key_sha1,
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unsigned char *uuid_key_value,
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bool uuid_overwrite)
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{
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//establish a session
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result = Tspi_Context_Connect(hcontext, 0);
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if(result != TSS_SUCCESS) throw libhis_exception("Connect Context", result);
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//get the TPM object
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result = Tspi_Context_GetTpmObject(hcontext, &htpm);
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if(result != TSS_SUCCESS) throw libhis_exception("Get TPM Object", result);
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//load the SRK
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TSS_UUID uuid_srk = TSS_UUID_SRK;
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result = Tspi_Context_LoadKeyByUUID(hcontext, TSS_PS_TYPE_SYSTEM, uuid_srk, &hkey_srk);
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if(result != TSS_SUCCESS) throw libhis_exception("Load SRK", result);
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//set up SRK auth
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if(auth_srk_sha1)
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{
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result = Tspi_Policy_SetSecret(hpolicy_srk, TSS_SECRET_MODE_SHA1, auth_srk_size, auth_srk_value);
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if(result != TSS_SUCCESS) throw libhis_exception("Set SRK Secret SHA1", result);
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}
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else
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{
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result = Tspi_Policy_SetSecret(hpolicy_srk, TSS_SECRET_MODE_PLAIN, auth_srk_size, auth_srk_value);
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if(result != TSS_SUCCESS) throw libhis_exception("Set SRK Secret Plain", result);
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}
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//assign the SRK auth
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result = Tspi_Policy_AssignToObject(hpolicy_srk, hkey_srk);
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if(result != TSS_SUCCESS) throw libhis_exception("Assign SRK Secret", result);
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//set up key auth
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if(auth_key_sha1)
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{
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result = Tspi_Policy_SetSecret(hpolicy_key, TSS_SECRET_MODE_SHA1, auth_key_size, auth_key_value);
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if(result != TSS_SUCCESS) throw libhis_exception("Set key Secret SHA1", result);
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}
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else
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{
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result = Tspi_Policy_SetSecret(hpolicy_key, TSS_SECRET_MODE_PLAIN, auth_key_size, auth_key_value);
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if(result != TSS_SUCCESS) throw libhis_exception("Set key Secret Plain", result);
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}
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//assign the key auth
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result = Tspi_Policy_AssignToObject(hpolicy_key, hkey_key);
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if(result != TSS_SUCCESS) throw libhis_exception("Assign key Secret", result);
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//create the key
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result = Tspi_Key_CreateKey(hkey_key, hkey_srk, 0);
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//Unwrap the newly generated key
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result = Tspi_Key_LoadKey(hkey_key, hkey_srk);
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if(result != TSS_SUCCESS) throw libhis_exception("Unwrap key", result);
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//Set up the key UUID
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hextouuid(uuid_key_value, uuid_key);
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try
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{
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//save key
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result = Tspi_Context_RegisterKey(hcontext, hkey_key, TSS_PS_TYPE_SYSTEM, uuid_key, TSS_PS_TYPE_SYSTEM, uuid_srk);
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if(result != TSS_SUCCESS) throw libhis_exception("Save key By UUID", result);
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}
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catch(libhis_exception &e)
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{
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if(uuid_overwrite)
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{
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//Unregister the existing key
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result = Tspi_Context_UnregisterKey(hcontext, TSS_PS_TYPE_SYSTEM, uuid_key, &hkey_unregister);
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if(result != TSS_SUCCESS) throw libhis_exception("Unregister slot", result);
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//Register a new key
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result = Tspi_Context_RegisterKey(hcontext, hkey_key, TSS_PS_TYPE_SYSTEM, uuid_key, TSS_PS_TYPE_SYSTEM, uuid_srk);
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if(result != TSS_SUCCESS) throw libhis_exception("Resave key By UUID", result);
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}
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else throw e;
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}
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return;
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}
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~libhis_createkey()
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{
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//clean up key policy
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result = Tspi_Context_CloseObject(hcontext, hpolicy_key);
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if(result != TSS_SUCCESS) throw libhis_exception("Close key Policy", result);
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if(binitialized)
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{
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//clean up key
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result = Tspi_Context_CloseObject(hcontext, hkey_key);
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if(result != TSS_SUCCESS) throw libhis_exception("Close key", result);
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}
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//clean up SRK policy
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result = Tspi_Context_CloseObject(hcontext, hpolicy_srk);
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if(result != TSS_SUCCESS) throw libhis_exception("Close SRK Policy", result);
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//clean up SRK object
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result = Tspi_Context_CloseObject(hcontext, hkey_srk);
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if(result != TSS_SUCCESS) throw libhis_exception("Close SRK", result);
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//close context
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result = Tspi_Context_Close(hcontext);
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if(result != TSS_SUCCESS) throw libhis_exception("Close Context", result);
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}
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private:
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TSS_RESULT result;
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TSS_HCONTEXT hcontext;
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TSS_HTPM htpm;
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TSS_HKEY hkey_srk,
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hkey_key,
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hkey_unregister;
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TSS_HPOLICY hpolicy_srk,
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hpolicy_key;
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TSS_UUID uuid_key;
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UINT32 init_key,
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init_key_size,
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init_key_type,
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init_key_authorized,
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init_key_migratable,
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init_key_volatile,
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init_key_scheme,
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init_key_location;
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bool binitialized;
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};
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#endif
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