272 lines
7.9 KiB
C
272 lines
7.9 KiB
C
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/* context.h */
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#include <windows.h>
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#ifndef DSSCSP_CONTEXT_H
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#define DSSCSP_CONTEXT_H
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#ifdef CSP_USE_MD5
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#include "md5.h"
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#endif
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#ifdef CSP_USE_SHA1
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#include "sha.h"
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#endif
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// definition for disabling encryption in France
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#define CRYPT_DISABLE_CRYPT 0x1
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/*********************************/
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/* Definitions */
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/*********************************/
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#define KEY_MAGIC 0xBADF
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/* State definitions */
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#define KEY_INIT 0x0001
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#define MAX_BLOCKLEN 8
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// types of key storage
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#define PROTECTED_STORAGE_KEYS 1
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#define PROTECTION_API_KEYS 2
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#define HASH_MAGIC 0xBADE
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/* State Flags */
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#define HASH_INIT 0x0001
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#define HASH_DATA 0x0002
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#define HASH_FINISH 0x0004
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#define MAX_HASH_LEN 20
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#define CRYPT_BLKLEN 8
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#define HMAC_DEFAULT_STRING_LEN 64
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#define HMAC_STARTED 1
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#define HMAC_FINISHED 2
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/*********************************/
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/* Structure Definitions */
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/*********************************/
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typedef struct _Key_t_ {
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int magic; // Magic number
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void *pContext;
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int state; // State of object
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ALG_ID algId; // Algorithm Id
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DWORD flags; // General flags associated with key
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void *algParams; // Parameters for algorithm
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uchar IV[MAX_BLOCKLEN];
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uchar Temp_IV[MAX_BLOCKLEN];
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uchar *pbKey;
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DWORD cbKey;
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uchar *pbSalt;
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DWORD cbSalt;
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BYTE *pbData;
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DWORD cbData;
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DWORD cbEffectiveKeyLen;
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int mode;
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int pad;
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int mode_bits;
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BOOL InProgress; // if key is being used
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BOOL fUIOnKey; // flag to indicate if UI was to be set on the key
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} Key_t;
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// Packed version of Key_t. This is used when building opaque
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// blobs, and is necessary to properly support WOW64 operation.
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typedef struct _Packed_Key_t_ {
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// BLOBHEADER
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int magic; // Magic number
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int state; // State of object
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ALG_ID algId; // Algorithm Id
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DWORD flags; // General flags associated with key
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uchar IV[MAX_BLOCKLEN];
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uchar Temp_IV[MAX_BLOCKLEN];
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DWORD cbKey;
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DWORD cbData;
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DWORD cbEffectiveKeyLen;
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int mode;
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int pad;
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int mode_bits;
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BOOL InProgress; // if key is being used
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BOOL fUIOnKey; // flag to indicate if UI was to be set on the key
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// cbKey data bytes
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// cbData data bytes
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} Packed_Key_t;
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typedef struct {
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int magic; // Magic number
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void *pContext; // associated context
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int state; // State of hash object
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ALG_ID algId; // Algorithm Id
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DWORD size; // Size of hash
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void *pMAC; // pointer to mac state
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BYTE hashval[MAX_HASH_LEN];
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BYTE *pbData;
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DWORD cbData;
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Key_t *pKey;
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BOOL fInternalKey;
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ALG_ID HMACAlgid;
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DWORD HMACState;
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BYTE *pbHMACInner;
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DWORD cbHMACInner;
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BYTE *pbHMACOuter;
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DWORD cbHMACOuter;
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union {
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#ifdef CSP_USE_MD5
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MD5_CTX md5;
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#endif // CSP_USE_MD5
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#ifdef CSP_USE_SHA1
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A_SHA_CTX sha;
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#endif // CSP_USE_SHA1
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} algData;
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} Hash_t;
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/*********************************/
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/* Definitions */
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/*********************************/
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#define CONTEXT_MAGIC 0xDEADBEEF
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#define CONTEXT_RANDOM_LENGTH 20
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typedef struct _PStore_Info
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{
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HINSTANCE hInst;
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void *pProv;
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GUID SigType;
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GUID SigSubtype;
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GUID ExchType;
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GUID ExchSubtype;
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LPWSTR szPrompt;
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DWORD cbPrompt;
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} PSTORE_INFO;
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/*********************************/
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/* Structure Definitions */
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/*********************************/
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typedef struct {
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DWORD magic; // Magic number
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DWORD dwProvType; // Type of provider being called as
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LPSTR szProvName; // Name of provider being called as
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BOOL fMachineKeyset; // TRUE if keyset is for machine
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DWORD rights; // Privileges
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BOOL fIsLocalSystem; // check if running as local system
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KEY_CONTAINER_INFO ContInfo;
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Key_t *pSigKey; // pointer to the DSS sig key
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Key_t *pKExKey; // pointer to the DH key exchange key
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HKEY hKeys; // Handle to registry
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DWORD dwEnumalgs; // index for enumerating algorithms
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DWORD dwEnumalgsEx; // index for enumerating algorithms
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DWORD dwiSubKey; // index for enumerating containers
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DWORD dwMaxSubKey; // max number of containers
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void *contextData; // Context specific data
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CRITICAL_SECTION CritSec; // critical section for decrypting keys
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HWND hWnd; // handle to window for UI
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PSTORE_INFO *pPStore; // pointer to PStore information
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LPWSTR pwszPrompt; // UI prompt to be used
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DWORD dwOldKeyFlags; // flags to tell how keys should be migrated
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DWORD dwKeysetType; // type of storage used
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HANDLE hRNGDriver; // handle to hardware RNG driver
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EXPO_OFFLOAD_STRUCT *pOffloadInfo; // info for offloading modular expo
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DWORD dwPolicyId; // Index into policy keylengh arrays.
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} Context_t;
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/*********************************/
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/* Policy Definitions */
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/*********************************/
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extern PROV_ENUMALGS_EX *g_AlgTables[];
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// NOTE -- These definitions must match the order of entries in g_AlgTables.
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#define POLICY_DSS_BASE 0 // Policy for MS_DEF_DSS_PROV
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#define POLICY_DSSDH_BASE 1 // Policy for MS_DEF_DSS_DH_PROV
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#define POLICY_DSSDH_ENHANCED 2 // Policy for MS_ENH_DSS_DH_PROV
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#define POLICY_DSSDH_SCHANNEL 3 // Policy for MS_DEF_DH_SCHANNEL_PROV
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/*********************************/
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/* Function Definitions */
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/*********************************/
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extern void
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freeContext(
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Context_t *pContext);
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extern Context_t *
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checkContext(
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HCRYPTPROV hProv);
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extern Context_t *
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allocContext(
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void);
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// Initialize a context
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extern DWORD
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initContext(
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IN OUT Context_t *pContext,
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IN DWORD dwFlags,
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IN DWORD dwProvType,
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IN LPCSTR szProvName,
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IN DWORD dwPolicyId);
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extern HCRYPTPROV
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AddContext(
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Context_t *pContext);
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extern HCRYPTHASH
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addContextHash(
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Context_t *pContext,
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Hash_t *pHash);
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extern Hash_t *
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checkContextHash(
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Context_t *pContext,
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HCRYPTHASH hHash);
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// Add key to context
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extern HCRYPTKEY
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addContextKey(
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Context_t *pContext,
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Key_t *pKey);
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// Check if key exists in context
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extern Key_t *
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checkContextKey(
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IN Context_t *pContext,
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IN HCRYPTKEY hKey);
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// random number generation prototype
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extern DWORD
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FIPS186GenRandom(
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IN HANDLE hRNGDriver,
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IN BYTE **ppbContextSeed,
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IN DWORD *pcbContextSeed,
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IN OUT BYTE *pb,
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IN DWORD cb);
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// Scrub sensitive data from memory
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extern void
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memnuke(
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volatile BYTE *pData,
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DWORD dwLen);
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#include "dh_key.h"
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extern DWORD EncryptPrivateKeyInMemory(
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IN DHKey_t *pDH,
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IN BOOL fSigKey);
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extern DWORD CopyAndDecryptPrivateKey(
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IN DHKey_t *pDH,
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IN DHKey_t *pDH_copy,
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IN BOOL fSigKey);
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#endif
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