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http NTLM: remaining bits from 0001-Moved-ntlm-[...]-curl_ntlm-mod_3.patch
* Added function comments: - Curl_ntlm_decode_type2_message - Curl_ntlm_create_type1_message - Curl_ntlm_create_type3_message * Modification of ntlm processing state to NTLMSTATE_TYPE2 is now done only when Curl_ntlm_decode_type2_message() has fully succeeded.
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@ -252,9 +252,9 @@ static unsigned int readint_le(unsigned char *buf)
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/*
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NTLM message structure notes:
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A 'short' is a little-endian, 16-bit unsigned value.
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A 'short' is a 'network short', a little-endian 16-bit unsigned value.
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A 'long' is a little-endian, 32-bit unsigned value.
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A 'long' is a 'network long', a little-endian, 32-bit unsigned value.
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A 'security buffer' represents a triplet used to point to a buffer,
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consisting of two shorts and one long:
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@ -265,6 +265,22 @@ static unsigned int readint_le(unsigned char *buf)
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from the beginning of the NTLM message.
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*/
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/*
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* Curl_ntlm_decode_type2_message()
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*
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* This is used to decode a ntlm type-2 message received from a: HTTP, SMTP
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* or POP3 server. The message is first decoded from a base64 string into a
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* raw ntlm message and checked for validity before the appropriate data for
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* creating a type-3 message is written to the given ntlm data structure.
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*
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* Parameters:
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*
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* data [in] - Pointer to session handle.
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* header [in] - Pointer to the input buffer.
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* ntlm [in] - Pointer to ntlm data struct being used and modified.
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*
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* Returns CURLE_OK on success.
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*/
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CURLcode Curl_ntlm_decode_type2_message(struct SessionHandle *data,
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const char* header,
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struct ntlmdata* ntlm)
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@ -300,8 +316,6 @@ CURLcode Curl_ntlm_decode_type2_message(struct SessionHandle *data,
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if(!buffer)
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return CURLE_OUT_OF_MEMORY;
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ntlm->state = NTLMSTATE_TYPE2; /* we got a type-2 */
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#ifdef USE_WINDOWS_SSPI
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ntlm->type_2 = malloc(size + 1);
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if(ntlm->type_2 == NULL) {
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@ -661,7 +675,23 @@ static void unicodecpy(unsigned char *dest,
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}
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#endif
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/*
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* Curl_ntlm_create_type1_message()
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*
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* This is used to generate a ntlm type-1 message ready for encoding
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* and sending to the recipient, be it a: HTTP, SMTP or POP3 server,
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* using the appropriate compile time crypo API.
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*
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* Parameters:
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*
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* userp [in] - The user name in the format User or Domain\User.
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* passdwp [in] - The user's password.
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* ntlm [in] - The ntlm data struct being used and modified.
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* ntlmbuf [in] - Pointer to preallocated buffer to receive message.
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* sizep [out] - Size of message written into output buffer.
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*
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* Returns CURLE_OK on success.
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*/
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CURLcode Curl_ntlm_create_type1_message(const char *userp,
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const char *passwdp,
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struct ntlmdata *ntlm,
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@ -865,6 +895,24 @@ CURLcode Curl_ntlm_create_type1_message(const char *userp,
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return CURLE_OK;
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}
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/*
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* Curl_ntlm_create_type3_message()
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*
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* This is used to generate a ntlm type-3 message ready for encoding
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* and sending to the recipient, be it a: HTTP, SMTP or POP3 server,
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* using the appropriate compile time crypo API.
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*
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* Parameters:
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*
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* data [in] - The session handle.
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* userp [in] - The user name in the format User or Domain\User.
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* passdwp [in] - The user's password.
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* ntlm [in] - The ntlm data struct being used and modified.
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* ntlmbuf [in] - Pointer to preallocated buffer to receive message.
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* sizep [out] - Size of message written into output buffer.
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*
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* Returns CURLE_OK on success.
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*/
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CURLcode Curl_ntlm_create_type3_message(struct SessionHandle *data,
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const char *userp,
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const char *passwdp,
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@ -105,11 +105,11 @@ CURLcode Curl_input_ntlm(struct connectdata *conn,
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header++;
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if(*header) {
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/* We got a type-2 message */
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result = Curl_ntlm_decode_type2_message(conn->data, header, ntlm);
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if(CURLE_OK != result)
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return result;
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ntlm->state = NTLMSTATE_TYPE2; /* We got a type-2 message */
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}
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else {
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if(ntlm->state >= NTLMSTATE_TYPE1) {
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@ -117,7 +117,7 @@ CURLcode Curl_input_ntlm(struct connectdata *conn,
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return CURLE_REMOTE_ACCESS_DENIED;
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}
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ntlm->state = NTLMSTATE_TYPE1; /* we should sent away a type-1 */
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ntlm->state = NTLMSTATE_TYPE1; /* We should send away a type-1 */
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}
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}
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