mirror of
https://github.com/SoftEtherVPN/SoftEtherVPN.git
synced 2024-11-23 01:49:53 +03:00
src/Cedar/Proto_IkePacket: remove unused functions, redundant assignments
found by cppcheck [src/Cedar/Proto_IkePacket.c:958]: (style) The function 'IkeNewCertPayload' is never used. [src/Cedar/Proto_IkePacket.c:942]: (style) The function 'IkeNewCertRequestPayload' is never used. [src/Cedar/Proto_IkePacket.c:875]: (style) The function 'IkeNewNoticeErrorInvalidExchangeTypePayload' is never used. [src/Cedar/Proto_IkePacket.c:2542]: (style) The function 'IkeNewSpi' is never used. [src/Cedar/Proto_IkePacket.c:142]: (style) The function 'IkePhase1CryptIdToKeySize' is never used. [src/Cedar/Proto_IkePacket.c:157]: (style) The function 'IkePhase2CryptIdToKeySize' is never used. [src/Cedar/Proto_IkePacket.c:172]: (style) The function 'IkeStrToPhase1CryptId' is never used. [src/Cedar/Proto_IkePacket.c:187]: (style) The function 'IkeStrToPhase1HashId' is never used. [src/Cedar/Proto_IkePacket.c:196]: (style) The function 'IkeStrToPhase2CryptId' is never used. [src/Cedar/Proto_IkePacket.c:211]: (style) The function 'IkeStrToPhase2HashId' is never used. [src/Cedar/Proto_IkePacket.c:2168]: (style) Condition 'b==NULL' is always true
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8b7b45b301
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@ -138,86 +138,6 @@ BUF *IkeStrToPassword(char *str)
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return b;
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return b;
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}
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}
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// Phase 1: Convert the encryption algorithm name to key size
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UINT IkePhase1CryptIdToKeySize(UCHAR id)
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{
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switch (id)
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{
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case IKE_P1_CRYPTO_3DES_CBC:
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return DES3_KEY_SIZE;
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case IKE_P1_CRYPTO_DES_CBC:
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return DES_KEY_SIZE;
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}
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return 0;
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}
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// Phase 2: Convert the encryption algorithm name to key size
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UINT IkePhase2CryptIdToKeySize(UCHAR id)
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{
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switch (id)
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{
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case IKE_TRANSFORM_ID_P2_ESP_3DES:
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return DES3_KEY_SIZE;
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case IKE_TRANSFORM_ID_P2_ESP_DES:
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return DES_KEY_SIZE;
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}
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return 0;
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}
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// Convert a string to an algorithm name
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UCHAR IkeStrToPhase1CryptId(char *name)
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{
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if (StartWith(name, "3DES") || StartWith("3DES", name))
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{
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return IKE_P1_CRYPTO_3DES_CBC;
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}
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else if (StartWith(name, "DES") || StartWith("DES", name))
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{
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return IKE_P1_CRYPTO_DES_CBC;
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}
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else
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{
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return 0;
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}
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}
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UCHAR IkeStrToPhase1HashId(char *name)
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{
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if (StartWith(name, "SHA-1") || StartWith("SHA-1", name))
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{
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return IKE_P1_HASH_SHA1;
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}
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return 0;
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}
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UCHAR IkeStrToPhase2CryptId(char *name)
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{
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if (StartWith(name, "3DES") || StartWith("3DES", name))
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{
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return IKE_TRANSFORM_ID_P2_ESP_3DES;
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}
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else if (StartWith(name, "DES") || StartWith("DES", name))
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{
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return IKE_TRANSFORM_ID_P2_ESP_DES;
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}
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else
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{
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return 0;
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}
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}
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UCHAR IkeStrToPhase2HashId(char *name)
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{
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if (StartWith(name, "SHA-1") || StartWith("SHA-1", name))
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{
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return IKE_P2_HMAC_SHA1_96;
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}
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return 0;
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}
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// Build a data payload
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// Build a data payload
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BUF *IkeBuildDataPayload(IKE_PACKET_DATA_PAYLOAD *t)
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BUF *IkeBuildDataPayload(IKE_PACKET_DATA_PAYLOAD *t)
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{
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{
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@ -871,23 +791,6 @@ IKE_PACKET_PAYLOAD *IkeNewNoticeErrorInvalidCookiePayload(UINT64 init_cookie, UI
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return ret;
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return ret;
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}
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}
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// Create an Invalid Exchange Type Payload
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IKE_PACKET_PAYLOAD *IkeNewNoticeErrorInvalidExchangeTypePayload(UINT64 init_cookie, UINT64 resp_cookie, UCHAR exchange_type)
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{
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IKE_PACKET_PAYLOAD *ret;
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BUF *b = NewBuf();
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WriteBufInt64(b, init_cookie);
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WriteBufInt64(b, resp_cookie);
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ret = IkeNewNoticePayload(IKE_PROTOCOL_ID_IKE, IKE_NOTICE_ERROR_INVALID_EXCHANGE_TYPE, b->Buf, b->Size,
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&exchange_type, 1);
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FreeBuf(b);
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return ret;
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}
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// Create an Invalid SPI payload
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// Create an Invalid SPI payload
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IKE_PACKET_PAYLOAD *IkeNewNoticeErrorInvalidSpiPayload(UINT spi)
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IKE_PACKET_PAYLOAD *IkeNewNoticeErrorInvalidSpiPayload(UINT spi)
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{
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{
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@ -938,38 +841,6 @@ IKE_PACKET_PAYLOAD *IkeNewNoticeDpdPayload(bool ack, UINT64 init_cookie, UINT64
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return ret;
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return ret;
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}
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}
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// Create a Certificate Request Payload
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IKE_PACKET_PAYLOAD *IkeNewCertRequestPayload(UCHAR cert_type, void *data, UINT size)
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{
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IKE_PACKET_PAYLOAD *p;
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if (data == NULL && size != 0)
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{
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return NULL;
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}
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p = IkeNewPayload(IKE_PAYLOAD_CERT_REQUEST);
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p->Payload.CertRequest.CertType = cert_type;
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p->Payload.CertRequest.Data = MemToBuf(data, size);
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return p;
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}
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// Create a Certificate payload
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IKE_PACKET_PAYLOAD *IkeNewCertPayload(UCHAR cert_type, void *cert_data, UINT cert_size)
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{
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IKE_PACKET_PAYLOAD *p;
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if (cert_data == NULL && cert_size != 0)
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{
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return NULL;
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}
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p = IkeNewPayload(IKE_PAYLOAD_CERT);
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p->Payload.Cert.CertType = cert_type;
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p->Payload.Cert.CertData = MemToBuf(cert_data, cert_size);
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return p;
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}
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// Create an ID payload
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// Create an ID payload
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IKE_PACKET_PAYLOAD *IkeNewIdPayload(UCHAR id_type, UCHAR protocol_id, USHORT port, void *id_data, UINT id_size)
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IKE_PACKET_PAYLOAD *IkeNewIdPayload(UCHAR id_type, UCHAR protocol_id, USHORT port, void *id_data, UINT id_size)
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{
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{
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@ -2292,12 +2163,7 @@ void IkeDebugUdpSendRawPacket(IKE_PACKET *p)
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p->FlagEncrypted = false;
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p->FlagEncrypted = false;
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b = NULL;
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b = IkeBuildEx(p, NULL, true);
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if (b == NULL)
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{
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b = IkeBuildEx(p, NULL, true);
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}
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if (b == NULL)
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if (b == NULL)
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{
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{
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@ -2538,21 +2404,6 @@ IKE_PACKET *IkeNew(UINT64 init_cookie, UINT64 resp_cookie, UCHAR exchange_type,
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return p;
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return p;
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}
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}
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// Create a new SPI value
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UINT IkeNewSpi()
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{
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while (true)
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{
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UINT i = Rand32();
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if (i >= 4096)
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{
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return i;
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}
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}
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}
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// Create an encryption engine for IKE
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// Create an encryption engine for IKE
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IKE_ENGINE *NewIkeEngine()
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IKE_ENGINE *NewIkeEngine()
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{
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{
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@ -698,15 +698,12 @@ IKE_PACKET_PAYLOAD *IkeNewProposalPayload(UCHAR number, UCHAR protocol_id, void
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IKE_PACKET_PAYLOAD *IkeNewTransformPayload(UCHAR number, UCHAR transform_id, LIST *value_list);
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IKE_PACKET_PAYLOAD *IkeNewTransformPayload(UCHAR number, UCHAR transform_id, LIST *value_list);
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IKE_PACKET_TRANSFORM_VALUE *IkeNewTransformValue(UCHAR type, UINT value);
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IKE_PACKET_TRANSFORM_VALUE *IkeNewTransformValue(UCHAR type, UINT value);
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IKE_PACKET_PAYLOAD *IkeNewIdPayload(UCHAR id_type, UCHAR protocol_id, USHORT port, void *id_data, UINT id_size);
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IKE_PACKET_PAYLOAD *IkeNewIdPayload(UCHAR id_type, UCHAR protocol_id, USHORT port, void *id_data, UINT id_size);
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IKE_PACKET_PAYLOAD *IkeNewCertPayload(UCHAR cert_type, void *cert_data, UINT cert_size);
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IKE_PACKET_PAYLOAD *IkeNewCertRequestPayload(UCHAR cert_type, void *data, UINT size);
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IKE_PACKET_PAYLOAD *IkeNewNoticePayload(UCHAR protocol_id, USHORT message_type,
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IKE_PACKET_PAYLOAD *IkeNewNoticePayload(UCHAR protocol_id, USHORT message_type,
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void *spi, UINT spi_size,
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void *spi, UINT spi_size,
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void *message, UINT message_size);
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void *message, UINT message_size);
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IKE_PACKET_PAYLOAD *IkeNewDeletePayload(UCHAR protocol_id, LIST *spi_list);
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IKE_PACKET_PAYLOAD *IkeNewDeletePayload(UCHAR protocol_id, LIST *spi_list);
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IKE_PACKET_PAYLOAD *IkeNewNoticeErrorInvalidCookiePayload(UINT64 init_cookie, UINT64 resp_cookie);
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IKE_PACKET_PAYLOAD *IkeNewNoticeErrorInvalidCookiePayload(UINT64 init_cookie, UINT64 resp_cookie);
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IKE_PACKET_PAYLOAD *IkeNewNoticeErrorInvalidExchangeTypePayload(UINT64 init_cookie, UINT64 resp_cookie, UCHAR exchange_type);
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IKE_PACKET_PAYLOAD *IkeNewNoticeErrorInvalidSpiPayload(UINT spi);
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IKE_PACKET_PAYLOAD *IkeNewNoticeErrorInvalidSpiPayload(UINT spi);
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IKE_PACKET_PAYLOAD *IkeNewNoticeErrorNoProposalChosenPayload(bool quick_mode, UINT64 init_cookie, UINT64 resp_cookie);
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IKE_PACKET_PAYLOAD *IkeNewNoticeErrorNoProposalChosenPayload(bool quick_mode, UINT64 init_cookie, UINT64 resp_cookie);
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IKE_PACKET_PAYLOAD *IkeNewNoticeDpdPayload(bool ack, UINT64 init_cookie, UINT64 resp_cookie, UINT seq_no);
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IKE_PACKET_PAYLOAD *IkeNewNoticeDpdPayload(bool ack, UINT64 init_cookie, UINT64 resp_cookie, UINT seq_no);
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@ -732,15 +729,7 @@ BUF *IkeBuildTransformPayload(IKE_PACKET_TRANSFORM_PAYLOAD *t);
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UINT IkeGetTransformValue(IKE_PACKET_TRANSFORM_PAYLOAD *t, UINT type, UINT index);
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UINT IkeGetTransformValue(IKE_PACKET_TRANSFORM_PAYLOAD *t, UINT type, UINT index);
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UINT IkeGetTransformValueNum(IKE_PACKET_TRANSFORM_PAYLOAD *t, UINT type);
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UINT IkeGetTransformValueNum(IKE_PACKET_TRANSFORM_PAYLOAD *t, UINT type);
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UCHAR IkeStrToPhase1CryptId(char *name);
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UCHAR IkeStrToPhase1HashId(char *name);
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UCHAR IkeStrToPhase2CryptId(char *name);
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UCHAR IkeStrToPhase2HashId(char *name);
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BUF *IkeStrToPassword(char *str);
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BUF *IkeStrToPassword(char *str);
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UINT IkePhase1CryptIdToKeySize(UCHAR id);
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UINT IkePhase2CryptIdToKeySize(UCHAR id);
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UINT IkeNewSpi();
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IKE_ENGINE *NewIkeEngine();
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IKE_ENGINE *NewIkeEngine();
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IKE_CRYPTO *NewIkeCrypto(IKE_ENGINE *e, UINT crypto_id, char *name, UINT *key_sizes, UINT num_key_sizes, UINT block_size);
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IKE_CRYPTO *NewIkeCrypto(IKE_ENGINE *e, UINT crypto_id, char *name, UINT *key_sizes, UINT num_key_sizes, UINT block_size);
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