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https://github.com/SoftEtherVPN/SoftEtherVPN.git
synced 2024-11-09 03:00:41 +03:00
Encrypt: remove unused functions detected by Cppcheck
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d3fc504279
commit
8b244ce660
@ -816,16 +816,6 @@ void GetPrintNameFromXA(char *str, UINT size, X *x)
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UniToStr(str, size, tmp);
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}
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void GetAllNameFromXEx(wchar_t *str, UINT size, X *x)
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{
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// Validate arguments
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if (x == NULL || str == NULL)
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{
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return;
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}
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GetAllNameFromNameEx(str, size, x->subject_name);
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}
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// Get the display name from NAME
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void GetPrintNameFromName(wchar_t *str, UINT size, NAME *name)
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@ -1178,29 +1168,6 @@ bool P12ToFileW(P12 *p12, wchar_t *filename)
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return true;
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}
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// Read a P12 from the file
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P12 *FileToP12W(wchar_t *filename)
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{
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BUF *b;
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P12 *p12;
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// Validate arguments
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if (filename == NULL)
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{
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return NULL;
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}
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b = ReadDumpW(filename);
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if (b == NULL)
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{
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return NULL;
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}
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p12 = BufToP12(b);
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FreeBuf(b);
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return p12;
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}
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// Release of P12
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void FreeP12(P12 *p12)
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{
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@ -4022,41 +3989,6 @@ void DesDecrypt(void *dest, void *src, UINT size, DES_KEY_VALUE *k, void *ivec)
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0);
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}
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// Release the 3DES key
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void Des3FreeKey(DES_KEY *k)
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{
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// Validate arguments
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if (k == NULL)
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{
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return;
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}
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DesFreeKeyValue(k->k1);
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DesFreeKeyValue(k->k2);
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DesFreeKeyValue(k->k3);
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Free(k);
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}
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// Create a 3DES key
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DES_KEY *Des3NewKey(void *k1, void *k2, void *k3)
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{
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DES_KEY *k;
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// Validate arguments
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if (k1 == NULL || k2 == NULL || k3 == NULL)
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{
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return NULL;
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}
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k = ZeroMalloc(sizeof(DES_KEY));
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k->k1 = DesNewKeyValue(k1);
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k->k2 = DesNewKeyValue(k2);
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k->k3 = DesNewKeyValue(k3);
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return k;
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}
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// Create a new DES key element
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DES_KEY_VALUE *DesNewKeyValue(void *value)
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{
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@ -4078,16 +4010,6 @@ DES_KEY_VALUE *DesNewKeyValue(void *value)
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return v;
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}
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// Random generation of new DES key element
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DES_KEY_VALUE *DesRandKeyValue()
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{
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UCHAR key_value[DES_KEY_SIZE];
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DES_random_key((DES_cblock *)key_value);
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return DesNewKeyValue(key_value);
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}
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// Release of DES key element
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void DesFreeKeyValue(DES_KEY_VALUE *v)
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{
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@ -4309,58 +4231,6 @@ bool IsAesNiSupported()
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return supported;
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}
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// Calculation of HMAC-SHA-1
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void MacSha1(void *dst, void *key, UINT key_size, void *data, UINT data_size)
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{
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UCHAR key_plus[SHA1_BLOCK_SIZE];
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UCHAR key_plus2[SHA1_BLOCK_SIZE];
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UCHAR key_plus5[SHA1_BLOCK_SIZE];
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UCHAR hash4[SHA1_HASH_SIZE];
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UINT i;
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BUF *buf3;
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BUF *buf6;
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// Validate arguments
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if (dst == NULL || key == NULL || data == NULL)
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{
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return;
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}
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Zero(key_plus, sizeof(key_plus));
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if (key_size <= SHA1_BLOCK_SIZE)
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{
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Copy(key_plus, key, key_size);
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}
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else
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{
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Sha1(key_plus, key, key_size);
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}
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for (i = 0;i < sizeof(key_plus);i++)
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{
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key_plus2[i] = key_plus[i] ^ 0x36;
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}
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buf3 = NewBuf();
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WriteBuf(buf3, key_plus2, sizeof(key_plus2));
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WriteBuf(buf3, data, data_size);
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Sha1(hash4, buf3->Buf, buf3->Size);
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for (i = 0;i < sizeof(key_plus);i++)
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{
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key_plus5[i] = key_plus[i] ^ 0x5c;
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}
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buf6 = NewBuf();
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WriteBuf(buf6, key_plus5, sizeof(key_plus5));
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WriteBuf(buf6, hash4, sizeof(hash4));
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Sha1(dst, buf6->Buf, buf6->Size);
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FreeBuf(buf3);
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FreeBuf(buf6);
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}
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// DH calculation
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bool DhCompute(DH_CTX *dh, void *dst_priv_key, void *src_pub_key, UINT key_size)
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{
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@ -452,7 +452,6 @@ BIO *P12ToBio(P12 *p12);
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BUF *P12ToBuf(P12 *p12);
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void FreePKCS12(PKCS12 *pkcs12);
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void FreeP12(P12 *p12);
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P12 *FileToP12W(wchar_t *filename);
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bool P12ToFileW(P12 *p12, wchar_t *filename);
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bool ParseP12(P12 *p12, X **x, K **k, char *password);
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bool IsEncryptedP12(P12 *p12);
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@ -466,7 +465,6 @@ void GetPrintNameFromName(wchar_t *str, UINT size, NAME *name);
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void GetAllNameFromX(wchar_t *str, UINT size, X *x);
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void GetAllNameFromName(wchar_t *str, UINT size, NAME *name);
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void GetAllNameFromNameEx(wchar_t *str, UINT size, NAME *name);
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void GetAllNameFromXEx(wchar_t *str, UINT size, X *x);
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BUF *BigNumToBuf(const BIGNUM *bn);
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BIGNUM *BinToBigNum(void *data, UINT size);
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X_SERIAL *CloneXSerial(X_SERIAL *src);
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@ -487,10 +485,7 @@ UINT RsaPublicSize(K *k);
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BUF *RsaPublicToBuf(K *k);
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DES_KEY_VALUE *DesNewKeyValue(void *value);
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DES_KEY_VALUE *DesRandKeyValue();
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void DesFreeKeyValue(DES_KEY_VALUE *v);
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DES_KEY *Des3NewKey(void *k1, void *k2, void *k3);
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void Des3FreeKey(DES_KEY *k);
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void Des3Encrypt2(void *dest, void *src, UINT size, DES_KEY_VALUE *k1, DES_KEY_VALUE *k2, DES_KEY_VALUE *k3, void *ivec);
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void Des3Decrypt2(void *dest, void *src, UINT size, DES_KEY_VALUE *k1, DES_KEY_VALUE *k2, DES_KEY_VALUE *k3, void *ivec);
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void Sha(UINT sha_type, void *dst, void *src, UINT size);
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@ -500,7 +495,6 @@ void Sha2_384(void *dst, void *src, UINT size);
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void Sha2_512(void *dst, void *src, UINT size);
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void Md5(void *dst, void *src, UINT size);
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void MacSha1(void *dst, void *key, UINT key_size, void *data, UINT data_size);
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void DesEncrypt(void *dest, void *src, UINT size, DES_KEY_VALUE *k, void *ivec);
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void DesDecrypt(void *dest, void *src, UINT size, DES_KEY_VALUE *k, void *ivec);
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void DesEcbEncrypt(void *dst, void *src, void *key_7bytes);
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