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2016-09-11 17:22:32 +02:00
/***************************************************************************
* _ _ ____ _
* Project ___| | | | _ \| |
* / __| | | | |_) | |
* | (__| |_| | _ <| |___
* \___|\___/|_| \_\_____|
*
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* Copyright (C) Daniel Stenberg, <daniel@haxx.se>, et al.
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*
* This software is licensed as described in the file COPYING, which
* you should have received as part of this distribution. The terms
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* are also available at https://curl.se/docs/copyright.html.
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*
* You may opt to use, copy, modify, merge, publish, distribute and/or sell
* copies of the Software, and permit persons to whom the Software is
* furnished to do so, under the terms of the COPYING file.
*
* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
* KIND, either express or implied.
*
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* SPDX-License-Identifier: curl
*
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* RFC2831 DIGEST-MD5 authentication
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* RFC7616 DIGEST-SHA256, DIGEST-SHA512-256 authentication
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*
***************************************************************************/
#include "curl_setup.h"
#if !defined(CURL_DISABLE_CRYPTO_AUTH)
#include <curl/curl.h>
#include "vauth/vauth.h"
#include "vauth/digest.h"
#include "urldata.h"
#include "curl_base64.h"
#include "curl_hmac.h"
#include "curl_md5.h"
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#include "curl_sha256.h"
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#include "vtls/vtls.h"
#include "warnless.h"
#include "strtok.h"
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#include "strcase.h"
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#include "curl_printf.h"
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#include "rand.h"
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/* The last #include files should be: */
#include "curl_memory.h"
#include "memdebug.h"
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#define SESSION_ALGO 1 /* for algos with this bit set */
#define ALGO_MD5 0
#define ALGO_MD5SESS (ALGO_MD5 | SESSION_ALGO)
#define ALGO_SHA256 2
#define ALGO_SHA256SESS (ALGO_SHA256 | SESSION_ALGO)
#define ALGO_SHA512_256 4
#define ALGO_SHA512_256SESS (ALGO_SHA512_256 | SESSION_ALGO)
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#if !defined(USE_WINDOWS_SSPI)
#define DIGEST_QOP_VALUE_AUTH (1 << 0)
#define DIGEST_QOP_VALUE_AUTH_INT (1 << 1)
#define DIGEST_QOP_VALUE_AUTH_CONF (1 << 2)
#define DIGEST_QOP_VALUE_STRING_AUTH "auth"
#define DIGEST_QOP_VALUE_STRING_AUTH_INT "auth-int"
#define DIGEST_QOP_VALUE_STRING_AUTH_CONF "auth-conf"
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#endif
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bool Curl_auth_digest_get_pair(const char *str, char *value, char *content,
const char **endptr)
{
int c;
bool starts_with_quote = FALSE;
bool escape = FALSE;
for(c = DIGEST_MAX_VALUE_LENGTH - 1; (*str && (*str != '=') && c--);)
*value++ = *str++;
*value = 0;
if('=' != *str++)
/* eek, no match */
return FALSE;
if('\"' == *str) {
/* This starts with a quote so it must end with one as well! */
str++;
starts_with_quote = TRUE;
}
for(c = DIGEST_MAX_CONTENT_LENGTH - 1; *str && c--; str++) {
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if(!escape) {
switch(*str) {
case '\\':
if(starts_with_quote) {
/* the start of an escaped quote */
escape = TRUE;
continue;
}
break;
case ',':
if(!starts_with_quote) {
/* This signals the end of the content if we didn't get a starting
quote and then we do "sloppy" parsing */
c = 0; /* the end */
continue;
}
break;
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case '\r':
case '\n':
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/* end of string */
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if(starts_with_quote)
return FALSE; /* No closing quote */
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c = 0;
continue;
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case '\"':
if(starts_with_quote) {
/* end of string */
c = 0;
continue;
}
else
return FALSE;
break;
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}
}
escape = FALSE;
*content++ = *str;
}
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if(escape)
return FALSE; /* No character after backslash */
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*content = 0;
*endptr = str;
return TRUE;
}
#if !defined(USE_WINDOWS_SSPI)
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/* Convert md5 chunk to RFC2617 (section 3.1.3) -suitable ascii string */
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static void auth_digest_md5_to_ascii(unsigned char *source, /* 16 bytes */
unsigned char *dest) /* 33 bytes */
{
int i;
for(i = 0; i < 16; i++)
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msnprintf((char *) &dest[i * 2], 3, "%02x", source[i]);
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}
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/* Convert sha256 chunk to RFC7616 -suitable ascii string */
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static void auth_digest_sha256_to_ascii(unsigned char *source, /* 32 bytes */
unsigned char *dest) /* 65 bytes */
{
int i;
for(i = 0; i < 32; i++)
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msnprintf((char *) &dest[i * 2], 3, "%02x", source[i]);
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}
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/* Perform quoted-string escaping as described in RFC2616 and its errata */
static char *auth_digest_string_quoted(const char *source)
{
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char *dest;
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const char *s = source;
size_t n = 1; /* null terminator */
/* Calculate size needed */
while(*s) {
++n;
if(*s == '"' || *s == '\\') {
++n;
}
++s;
}
dest = malloc(n);
if(dest) {
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char *d = dest;
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s = source;
while(*s) {
if(*s == '"' || *s == '\\') {
*d++ = '\\';
}
*d++ = *s++;
}
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*d = '\0';
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}
return dest;
}
/* Retrieves the value for a corresponding key from the challenge string
* returns TRUE if the key could be found, FALSE if it does not exists
*/
static bool auth_digest_get_key_value(const char *chlg,
const char *key,
char *value,
size_t max_val_len,
char end_char)
{
char *find_pos;
size_t i;
find_pos = strstr(chlg, key);
if(!find_pos)
return FALSE;
find_pos += strlen(key);
for(i = 0; *find_pos && *find_pos != end_char && i < max_val_len - 1; ++i)
value[i] = *find_pos++;
value[i] = '\0';
return TRUE;
}
static CURLcode auth_digest_get_qop_values(const char *options, int *value)
{
char *tmp;
char *token;
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char *tok_buf = NULL;
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/* Initialise the output */
*value = 0;
/* Tokenise the list of qop values. Use a temporary clone of the buffer since
strtok_r() ruins it. */
tmp = strdup(options);
if(!tmp)
return CURLE_OUT_OF_MEMORY;
token = strtok_r(tmp, ",", &tok_buf);
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while(token) {
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if(strcasecompare(token, DIGEST_QOP_VALUE_STRING_AUTH))
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*value |= DIGEST_QOP_VALUE_AUTH;
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else if(strcasecompare(token, DIGEST_QOP_VALUE_STRING_AUTH_INT))
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*value |= DIGEST_QOP_VALUE_AUTH_INT;
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else if(strcasecompare(token, DIGEST_QOP_VALUE_STRING_AUTH_CONF))
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*value |= DIGEST_QOP_VALUE_AUTH_CONF;
token = strtok_r(NULL, ",", &tok_buf);
}
free(tmp);
return CURLE_OK;
}
/*
* auth_decode_digest_md5_message()
*
* This is used internally to decode an already encoded DIGEST-MD5 challenge
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* message into the separate attributes.
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*
* Parameters:
*
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* chlgref [in] - The challenge message.
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* nonce [in/out] - The buffer where the nonce will be stored.
* nlen [in] - The length of the nonce buffer.
* realm [in/out] - The buffer where the realm will be stored.
* rlen [in] - The length of the realm buffer.
* alg [in/out] - The buffer where the algorithm will be stored.
* alen [in] - The length of the algorithm buffer.
* qop [in/out] - The buffer where the qop-options will be stored.
* qlen [in] - The length of the qop buffer.
*
* Returns CURLE_OK on success.
*/
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static CURLcode auth_decode_digest_md5_message(const struct bufref *chlgref,
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char *nonce, size_t nlen,
char *realm, size_t rlen,
char *alg, size_t alen,
char *qop, size_t qlen)
{
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const char *chlg = (const char *) Curl_bufref_ptr(chlgref);
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/* Ensure we have a valid challenge message */
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if(!Curl_bufref_len(chlgref))
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return CURLE_BAD_CONTENT_ENCODING;
/* Retrieve nonce string from the challenge */
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if(!auth_digest_get_key_value(chlg, "nonce=\"", nonce, nlen, '\"'))
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return CURLE_BAD_CONTENT_ENCODING;
/* Retrieve realm string from the challenge */
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if(!auth_digest_get_key_value(chlg, "realm=\"", realm, rlen, '\"')) {
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/* Challenge does not have a realm, set empty string [RFC2831] page 6 */
strcpy(realm, "");
}
/* Retrieve algorithm string from the challenge */
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if(!auth_digest_get_key_value(chlg, "algorithm=", alg, alen, ','))
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return CURLE_BAD_CONTENT_ENCODING;
/* Retrieve qop-options string from the challenge */
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if(!auth_digest_get_key_value(chlg, "qop=\"", qop, qlen, '\"'))
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return CURLE_BAD_CONTENT_ENCODING;
return CURLE_OK;
}
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/*
* Curl_auth_is_digest_supported()
*
* This is used to evaluate if DIGEST is supported.
*
* Parameters: None
*
* Returns TRUE as DIGEST as handled by libcurl.
*/
bool Curl_auth_is_digest_supported(void)
{
return TRUE;
}
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/*
* Curl_auth_create_digest_md5_message()
*
* This is used to generate an already encoded DIGEST-MD5 response message
* ready for sending to the recipient.
*
* Parameters:
*
* data [in] - The session handle.
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* chlg [in] - The challenge message.
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* userp [in] - The user name.
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* passwdp [in] - The user's password.
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* service [in] - The service type such as http, smtp, pop or imap.
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* out [out] - The result storage.
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*
* Returns CURLE_OK on success.
*/
CURLcode Curl_auth_create_digest_md5_message(struct Curl_easy *data,
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const struct bufref *chlg,
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const char *userp,
const char *passwdp,
const char *service,
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struct bufref *out)
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{
size_t i;
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struct MD5_context *ctxt;
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char *response = NULL;
unsigned char digest[MD5_DIGEST_LEN];
char HA1_hex[2 * MD5_DIGEST_LEN + 1];
char HA2_hex[2 * MD5_DIGEST_LEN + 1];
char resp_hash_hex[2 * MD5_DIGEST_LEN + 1];
char nonce[64];
char realm[128];
char algorithm[64];
char qop_options[64];
int qop_values;
char cnonce[33];
char nonceCount[] = "00000001";
char method[] = "AUTHENTICATE";
char qop[] = DIGEST_QOP_VALUE_STRING_AUTH;
char *spn = NULL;
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/* Decode the challenge message */
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CURLcode result = auth_decode_digest_md5_message(chlg,
nonce, sizeof(nonce),
realm, sizeof(realm),
algorithm,
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sizeof(algorithm),
qop_options,
sizeof(qop_options));
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if(result)
return result;
/* We only support md5 sessions */
if(strcmp(algorithm, "md5-sess") != 0)
return CURLE_BAD_CONTENT_ENCODING;
/* Get the qop-values from the qop-options */
result = auth_digest_get_qop_values(qop_options, &qop_values);
if(result)
return result;
/* We only support auth quality-of-protection */
if(!(qop_values & DIGEST_QOP_VALUE_AUTH))
return CURLE_BAD_CONTENT_ENCODING;
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/* Generate 32 random hex chars, 32 bytes + 1 null-termination */
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result = Curl_rand_hex(data, (unsigned char *)cnonce, sizeof(cnonce));
if(result)
return result;
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/* So far so good, now calculate A1 and H(A1) according to RFC 2831 */
ctxt = Curl_MD5_init(Curl_DIGEST_MD5);
if(!ctxt)
return CURLE_OUT_OF_MEMORY;
Curl_MD5_update(ctxt, (const unsigned char *) userp,
curlx_uztoui(strlen(userp)));
Curl_MD5_update(ctxt, (const unsigned char *) ":", 1);
Curl_MD5_update(ctxt, (const unsigned char *) realm,
curlx_uztoui(strlen(realm)));
Curl_MD5_update(ctxt, (const unsigned char *) ":", 1);
Curl_MD5_update(ctxt, (const unsigned char *) passwdp,
curlx_uztoui(strlen(passwdp)));
Curl_MD5_final(ctxt, digest);
ctxt = Curl_MD5_init(Curl_DIGEST_MD5);
if(!ctxt)
return CURLE_OUT_OF_MEMORY;
Curl_MD5_update(ctxt, (const unsigned char *) digest, MD5_DIGEST_LEN);
Curl_MD5_update(ctxt, (const unsigned char *) ":", 1);
Curl_MD5_update(ctxt, (const unsigned char *) nonce,
curlx_uztoui(strlen(nonce)));
Curl_MD5_update(ctxt, (const unsigned char *) ":", 1);
Curl_MD5_update(ctxt, (const unsigned char *) cnonce,
curlx_uztoui(strlen(cnonce)));
Curl_MD5_final(ctxt, digest);
/* Convert calculated 16 octet hex into 32 bytes string */
for(i = 0; i < MD5_DIGEST_LEN; i++)
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msnprintf(&HA1_hex[2 * i], 3, "%02x", digest[i]);
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/* Generate our SPN */
spn = Curl_auth_build_spn(service, realm, NULL);
if(!spn)
return CURLE_OUT_OF_MEMORY;
/* Calculate H(A2) */
ctxt = Curl_MD5_init(Curl_DIGEST_MD5);
if(!ctxt) {
free(spn);
return CURLE_OUT_OF_MEMORY;
}
Curl_MD5_update(ctxt, (const unsigned char *) method,
curlx_uztoui(strlen(method)));
Curl_MD5_update(ctxt, (const unsigned char *) ":", 1);
Curl_MD5_update(ctxt, (const unsigned char *) spn,
curlx_uztoui(strlen(spn)));
Curl_MD5_final(ctxt, digest);
for(i = 0; i < MD5_DIGEST_LEN; i++)
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msnprintf(&HA2_hex[2 * i], 3, "%02x", digest[i]);
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/* Now calculate the response hash */
ctxt = Curl_MD5_init(Curl_DIGEST_MD5);
if(!ctxt) {
free(spn);
return CURLE_OUT_OF_MEMORY;
}
Curl_MD5_update(ctxt, (const unsigned char *) HA1_hex, 2 * MD5_DIGEST_LEN);
Curl_MD5_update(ctxt, (const unsigned char *) ":", 1);
Curl_MD5_update(ctxt, (const unsigned char *) nonce,
curlx_uztoui(strlen(nonce)));
Curl_MD5_update(ctxt, (const unsigned char *) ":", 1);
Curl_MD5_update(ctxt, (const unsigned char *) nonceCount,
curlx_uztoui(strlen(nonceCount)));
Curl_MD5_update(ctxt, (const unsigned char *) ":", 1);
Curl_MD5_update(ctxt, (const unsigned char *) cnonce,
curlx_uztoui(strlen(cnonce)));
Curl_MD5_update(ctxt, (const unsigned char *) ":", 1);
Curl_MD5_update(ctxt, (const unsigned char *) qop,
curlx_uztoui(strlen(qop)));
Curl_MD5_update(ctxt, (const unsigned char *) ":", 1);
Curl_MD5_update(ctxt, (const unsigned char *) HA2_hex, 2 * MD5_DIGEST_LEN);
Curl_MD5_final(ctxt, digest);
for(i = 0; i < MD5_DIGEST_LEN; i++)
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msnprintf(&resp_hash_hex[2 * i], 3, "%02x", digest[i]);
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/* Generate the response */
response = aprintf("username=\"%s\",realm=\"%s\",nonce=\"%s\","
"cnonce=\"%s\",nc=\"%s\",digest-uri=\"%s\",response=%s,"
"qop=%s",
userp, realm, nonce,
cnonce, nonceCount, spn, resp_hash_hex, qop);
free(spn);
if(!response)
return CURLE_OUT_OF_MEMORY;
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/* Return the response. */
Curl_bufref_set(out, response, strlen(response), curl_free);
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return result;
}
/*
* Curl_auth_decode_digest_http_message()
*
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* This is used to decode an HTTP DIGEST challenge message into the separate
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* attributes.
*
* Parameters:
*
* chlg [in] - The challenge message.
* digest [in/out] - The digest data struct being used and modified.
*
* Returns CURLE_OK on success.
*/
CURLcode Curl_auth_decode_digest_http_message(const char *chlg,
struct digestdata *digest)
{
bool before = FALSE; /* got a nonce before */
bool foundAuth = FALSE;
bool foundAuthInt = FALSE;
char *token = NULL;
char *tmp = NULL;
/* If we already have received a nonce, keep that in mind */
if(digest->nonce)
before = TRUE;
/* Clean up any former leftovers and initialise to defaults */
Curl_auth_digest_cleanup(digest);
for(;;) {
char value[DIGEST_MAX_VALUE_LENGTH];
char content[DIGEST_MAX_CONTENT_LENGTH];
/* Pass all additional spaces here */
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while(*chlg && ISBLANK(*chlg))
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chlg++;
/* Extract a value=content pair */
if(Curl_auth_digest_get_pair(chlg, value, content, &chlg)) {
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if(strcasecompare(value, "nonce")) {
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free(digest->nonce);
digest->nonce = strdup(content);
if(!digest->nonce)
return CURLE_OUT_OF_MEMORY;
}
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else if(strcasecompare(value, "stale")) {
if(strcasecompare(content, "true")) {
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digest->stale = TRUE;
digest->nc = 1; /* we make a new nonce now */
}
}
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else if(strcasecompare(value, "realm")) {
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free(digest->realm);
digest->realm = strdup(content);
if(!digest->realm)
return CURLE_OUT_OF_MEMORY;
}
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else if(strcasecompare(value, "opaque")) {
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free(digest->opaque);
digest->opaque = strdup(content);
if(!digest->opaque)
return CURLE_OUT_OF_MEMORY;
}
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else if(strcasecompare(value, "qop")) {
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char *tok_buf = NULL;
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/* Tokenize the list and choose auth if possible, use a temporary
clone of the buffer since strtok_r() ruins it */
tmp = strdup(content);
if(!tmp)
return CURLE_OUT_OF_MEMORY;
token = strtok_r(tmp, ",", &tok_buf);
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while(token) {
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/* Pass additional spaces here */
while(*token && ISBLANK(*token))
token++;
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if(strcasecompare(token, DIGEST_QOP_VALUE_STRING_AUTH)) {
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foundAuth = TRUE;
}
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else if(strcasecompare(token, DIGEST_QOP_VALUE_STRING_AUTH_INT)) {
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foundAuthInt = TRUE;
}
token = strtok_r(NULL, ",", &tok_buf);
}
free(tmp);
/* Select only auth or auth-int. Otherwise, ignore */
if(foundAuth) {
free(digest->qop);
digest->qop = strdup(DIGEST_QOP_VALUE_STRING_AUTH);
if(!digest->qop)
return CURLE_OUT_OF_MEMORY;
}
else if(foundAuthInt) {
free(digest->qop);
digest->qop = strdup(DIGEST_QOP_VALUE_STRING_AUTH_INT);
if(!digest->qop)
return CURLE_OUT_OF_MEMORY;
}
}
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else if(strcasecompare(value, "algorithm")) {
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free(digest->algorithm);
digest->algorithm = strdup(content);
if(!digest->algorithm)
return CURLE_OUT_OF_MEMORY;
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if(strcasecompare(content, "MD5-sess"))
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digest->algo = ALGO_MD5SESS;
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else if(strcasecompare(content, "MD5"))
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digest->algo = ALGO_MD5;
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else if(strcasecompare(content, "SHA-256"))
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digest->algo = ALGO_SHA256;
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else if(strcasecompare(content, "SHA-256-SESS"))
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digest->algo = ALGO_SHA256SESS;
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else if(strcasecompare(content, "SHA-512-256"))
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digest->algo = ALGO_SHA512_256;
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else if(strcasecompare(content, "SHA-512-256-SESS"))
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digest->algo = ALGO_SHA512_256SESS;
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else
return CURLE_BAD_CONTENT_ENCODING;
}
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else if(strcasecompare(value, "userhash")) {
if(strcasecompare(content, "true")) {
digest->userhash = TRUE;
}
}
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else {
/* Unknown specifier, ignore it! */
}
}
else
break; /* We're done here */
/* Pass all additional spaces here */
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while(*chlg && ISBLANK(*chlg))
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chlg++;
/* Allow the list to be comma-separated */
if(',' == *chlg)
chlg++;
}
/* We had a nonce since before, and we got another one now without
'stale=true'. This means we provided bad credentials in the previous
request */
if(before && !digest->stale)
return CURLE_BAD_CONTENT_ENCODING;
/* We got this header without a nonce, that's a bad Digest line! */
if(!digest->nonce)
return CURLE_BAD_CONTENT_ENCODING;
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/* "<algo>-sess" protocol versions require "auth" or "auth-int" qop */
if(!digest->qop && (digest->algo & SESSION_ALGO))
return CURLE_BAD_CONTENT_ENCODING;
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return CURLE_OK;
}
/*
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* auth_create_digest_http_message()
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*
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* This is used to generate an HTTP DIGEST response message ready for sending
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* to the recipient.
*
* Parameters:
*
* data [in] - The session handle.
* userp [in] - The user name.
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* passwdp [in] - The user's password.
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* request [in] - The HTTP request.
* uripath [in] - The path of the HTTP uri.
* digest [in/out] - The digest data struct being used and modified.
* outptr [in/out] - The address where a pointer to newly allocated memory
* holding the result will be stored upon completion.
* outlen [out] - The length of the output message.
*
* Returns CURLE_OK on success.
*/
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static CURLcode auth_create_digest_http_message(
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struct Curl_easy *data,
const char *userp,
const char *passwdp,
const unsigned char *request,
const unsigned char *uripath,
struct digestdata *digest,
char **outptr, size_t *outlen,
void (*convert_to_ascii)(unsigned char *, unsigned char *),
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CURLcode (*hash)(unsigned char *, const unsigned char *,
const size_t))
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{
CURLcode result;
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unsigned char hashbuf[32]; /* 32 bytes/256 bits */
unsigned char request_digest[65];
unsigned char ha1[65]; /* 64 digits and 1 zero byte */
unsigned char ha2[65]; /* 64 digits and 1 zero byte */
char userh[65];
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char *cnonce = NULL;
size_t cnonce_sz = 0;
char *userp_quoted;
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char *realm_quoted;
char *nonce_quoted;
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char *response = NULL;
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char *hashthis = NULL;
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char *tmp = NULL;
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memset(hashbuf, 0, sizeof(hashbuf));
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if(!digest->nc)
digest->nc = 1;
if(!digest->cnonce) {
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char cnoncebuf[33];
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result = Curl_rand_hex(data, (unsigned char *)cnoncebuf,
sizeof(cnoncebuf));
if(result)
return result;
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result = Curl_base64_encode(cnoncebuf, strlen(cnoncebuf),
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&cnonce, &cnonce_sz);
if(result)
return result;
digest->cnonce = cnonce;
}
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if(digest->userhash) {
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hashthis = aprintf("%s:%s", userp, digest->realm ? digest->realm : "");
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if(!hashthis)
return CURLE_OUT_OF_MEMORY;
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hash(hashbuf, (unsigned char *) hashthis, strlen(hashthis));
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free(hashthis);
convert_to_ascii(hashbuf, (unsigned char *)userh);
}
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/*
If the algorithm is "MD5" or unspecified (which then defaults to MD5):
A1 = unq(username-value) ":" unq(realm-value) ":" passwd
If the algorithm is "MD5-sess" then:
A1 = H(unq(username-value) ":" unq(realm-value) ":" passwd) ":"
unq(nonce-value) ":" unq(cnonce-value)
*/
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hashthis = aprintf("%s:%s:%s", userp, digest->realm ? digest->realm : "",
passwdp);
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if(!hashthis)
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return CURLE_OUT_OF_MEMORY;
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hash(hashbuf, (unsigned char *) hashthis, strlen(hashthis));
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free(hashthis);
convert_to_ascii(hashbuf, ha1);
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if(digest->algo & SESSION_ALGO) {
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/* nonce and cnonce are OUTSIDE the hash */
tmp = aprintf("%s:%s:%s", ha1, digest->nonce, digest->cnonce);
if(!tmp)
return CURLE_OUT_OF_MEMORY;
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hash(hashbuf, (unsigned char *) tmp, strlen(tmp));
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free(tmp);
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convert_to_ascii(hashbuf, ha1);
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}
/*
If the "qop" directive's value is "auth" or is unspecified, then A2 is:
A2 = Method ":" digest-uri-value
If the "qop" value is "auth-int", then A2 is:
A2 = Method ":" digest-uri-value ":" H(entity-body)
(The "Method" value is the HTTP request method as specified in section
5.1.1 of RFC 2616)
*/
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hashthis = aprintf("%s:%s", request, uripath);
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if(!hashthis)
return CURLE_OUT_OF_MEMORY;
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if(digest->qop && strcasecompare(digest->qop, "auth-int")) {
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/* We don't support auth-int for PUT or POST */
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char hashed[65];
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char *hashthis2;
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hash(hashbuf, (const unsigned char *)"", 0);
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convert_to_ascii(hashbuf, (unsigned char *)hashed);
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hashthis2 = aprintf("%s:%s", hashthis, hashed);
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free(hashthis);
hashthis = hashthis2;
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}
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if(!hashthis)
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return CURLE_OUT_OF_MEMORY;
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hash(hashbuf, (unsigned char *) hashthis, strlen(hashthis));
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free(hashthis);
convert_to_ascii(hashbuf, ha2);
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if(digest->qop) {
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hashthis = aprintf("%s:%s:%08x:%s:%s:%s", ha1, digest->nonce, digest->nc,
digest->cnonce, digest->qop, ha2);
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}
else {
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hashthis = aprintf("%s:%s:%s", ha1, digest->nonce, ha2);
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}
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if(!hashthis)
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return CURLE_OUT_OF_MEMORY;
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hash(hashbuf, (unsigned char *) hashthis, strlen(hashthis));
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free(hashthis);
convert_to_ascii(hashbuf, request_digest);
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/* For test case 64 (snooped from a Mozilla 1.3a request)
Authorization: Digest username="testuser", realm="testrealm", \
nonce="1053604145", uri="/64", response="c55f7f30d83d774a3d2dcacf725abaca"
Digest parameters are all quoted strings. Username which is provided by
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the user will need double quotes and backslashes within it escaped.
realm, nonce, and opaque will need backslashes as well as they were
de-escaped when copied from request header. cnonce is generated with
web-safe characters. uri is already percent encoded. nc is 8 hex
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characters. algorithm and qop with standard values only contain web-safe
characters.
*/
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userp_quoted = auth_digest_string_quoted(digest->userhash ? userh : userp);
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if(!userp_quoted)
return CURLE_OUT_OF_MEMORY;
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if(digest->realm)
realm_quoted = auth_digest_string_quoted(digest->realm);
else {
realm_quoted = malloc(1);
if(realm_quoted)
realm_quoted[0] = 0;
}
if(!realm_quoted) {
free(userp_quoted);
return CURLE_OUT_OF_MEMORY;
}
nonce_quoted = auth_digest_string_quoted(digest->nonce);
if(!nonce_quoted) {
free(realm_quoted);
free(userp_quoted);
return CURLE_OUT_OF_MEMORY;
}
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if(digest->qop) {
response = aprintf("username=\"%s\", "
"realm=\"%s\", "
"nonce=\"%s\", "
"uri=\"%s\", "
"cnonce=\"%s\", "
"nc=%08x, "
"qop=%s, "
"response=\"%s\"",
userp_quoted,
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realm_quoted,
nonce_quoted,
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uripath,
digest->cnonce,
digest->nc,
digest->qop,
request_digest);
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/* Increment nonce-count to use another nc value for the next request */
digest->nc++;
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}
else {
response = aprintf("username=\"%s\", "
"realm=\"%s\", "
"nonce=\"%s\", "
"uri=\"%s\", "
"response=\"%s\"",
userp_quoted,
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realm_quoted,
nonce_quoted,
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uripath,
request_digest);
}
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free(nonce_quoted);
free(realm_quoted);
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free(userp_quoted);
if(!response)
return CURLE_OUT_OF_MEMORY;
/* Add the optional fields */
if(digest->opaque) {
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char *opaque_quoted;
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/* Append the opaque */
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opaque_quoted = auth_digest_string_quoted(digest->opaque);
if(!opaque_quoted) {
free(response);
return CURLE_OUT_OF_MEMORY;
}
tmp = aprintf("%s, opaque=\"%s\"", response, opaque_quoted);
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free(response);
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free(opaque_quoted);
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if(!tmp)
return CURLE_OUT_OF_MEMORY;
response = tmp;
}
if(digest->algorithm) {
/* Append the algorithm */
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tmp = aprintf("%s, algorithm=%s", response, digest->algorithm);
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free(response);
if(!tmp)
return CURLE_OUT_OF_MEMORY;
response = tmp;
}
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if(digest->userhash) {
/* Append the userhash */
tmp = aprintf("%s, userhash=true", response);
free(response);
if(!tmp)
return CURLE_OUT_OF_MEMORY;
response = tmp;
}
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/* Return the output */
*outptr = response;
*outlen = strlen(response);
return CURLE_OK;
}
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/*
* Curl_auth_create_digest_http_message()
*
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* This is used to generate an HTTP DIGEST response message ready for sending
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* to the recipient.
*
* Parameters:
*
* data [in] - The session handle.
* userp [in] - The user name.
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* passwdp [in] - The user's password.
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* request [in] - The HTTP request.
* uripath [in] - The path of the HTTP uri.
* digest [in/out] - The digest data struct being used and modified.
* outptr [in/out] - The address where a pointer to newly allocated memory
* holding the result will be stored upon completion.
* outlen [out] - The length of the output message.
*
* Returns CURLE_OK on success.
*/
CURLcode Curl_auth_create_digest_http_message(struct Curl_easy *data,
const char *userp,
const char *passwdp,
const unsigned char *request,
const unsigned char *uripath,
struct digestdata *digest,
char **outptr, size_t *outlen)
{
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if(digest->algo <= ALGO_MD5SESS)
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return auth_create_digest_http_message(data, userp, passwdp,
request, uripath, digest,
outptr, outlen,
auth_digest_md5_to_ascii,
Curl_md5it);
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DEBUGASSERT(digest->algo <= ALGO_SHA512_256SESS);
return auth_create_digest_http_message(data, userp, passwdp,
request, uripath, digest,
outptr, outlen,
auth_digest_sha256_to_ascii,
Curl_sha256it);
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}
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/*
* Curl_auth_digest_cleanup()
*
* This is used to clean up the digest specific data.
*
* Parameters:
*
* digest [in/out] - The digest data struct being cleaned up.
*
*/
void Curl_auth_digest_cleanup(struct digestdata *digest)
{
Curl_safefree(digest->nonce);
Curl_safefree(digest->cnonce);
Curl_safefree(digest->realm);
Curl_safefree(digest->opaque);
Curl_safefree(digest->qop);
Curl_safefree(digest->algorithm);
digest->nc = 0;
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digest->algo = ALGO_MD5; /* default algorithm */
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digest->stale = FALSE; /* default means normal, not stale */
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digest->userhash = FALSE;
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}
#endif /* !USE_WINDOWS_SSPI */
#endif /* CURL_DISABLE_CRYPTO_AUTH */