2002-09-03 19:52:59 +08:00
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/***************************************************************************
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2004-02-23 16:22:43 +08:00
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* _ _ ____ _
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* Project ___| | | | _ \| |
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* / __| | | | |_) | |
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* | (__| |_| | _ <| |___
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2001-08-03 21:51:44 +08:00
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* \___|\___/|_| \_\_____|
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*
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2016-03-14 01:14:57 +08:00
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* Copyright (C) 1998 - 2016, Daniel Stenberg, <daniel@haxx.se>, et al.
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2001-08-03 21:51:44 +08:00
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*
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2002-09-03 19:52:59 +08:00
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* This software is licensed as described in the file COPYING, which
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* you should have received as part of this distribution. The terms
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2016-02-03 07:19:02 +08:00
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* are also available at https://curl.haxx.se/docs/copyright.html.
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2004-02-23 16:22:43 +08:00
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*
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2001-08-03 21:51:44 +08:00
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* You may opt to use, copy, modify, merge, publish, distribute and/or sell
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* copies of the Software, and permit persons to whom the Software is
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2002-09-03 19:52:59 +08:00
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* furnished to do so, under the terms of the COPYING file.
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2001-08-03 21:51:44 +08:00
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*
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* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
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* KIND, either express or implied.
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*
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2002-09-03 19:52:59 +08:00
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***************************************************************************/
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2001-08-03 21:51:44 +08:00
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2011-04-18 05:03:33 +08:00
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/* Base64 encoding/decoding */
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2000-09-28 16:01:52 +08:00
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2013-01-07 02:06:49 +08:00
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#include "curl_setup.h"
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2016-06-21 21:47:12 +08:00
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#include "urldata.h" /* for the Curl_easy definition */
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2013-01-04 09:50:28 +08:00
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#include "warnless.h"
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2008-08-17 08:25:38 +08:00
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#include "curl_base64.h"
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2013-01-04 09:50:28 +08:00
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#include "non-ascii.h"
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2000-09-28 16:01:52 +08:00
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2016-04-29 21:46:40 +08:00
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/* The last 3 #include files should be in this order */
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#include "curl_printf.h"
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2015-03-25 06:12:03 +08:00
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#include "curl_memory.h"
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2013-01-04 09:50:28 +08:00
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#include "memdebug.h"
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2004-05-11 19:30:23 +08:00
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2007-01-04 07:04:38 +08:00
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/* ---- Base64 Encoding/Decoding Table --- */
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2014-07-25 14:24:03 +08:00
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static const char base64[]=
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2007-01-04 07:04:38 +08:00
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"ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
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2000-10-09 19:12:34 +08:00
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2014-07-25 14:24:03 +08:00
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/* The Base 64 encoding with an URL and filename safe alphabet, RFC 4648
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section 5 */
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static const char base64url[]=
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"ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789-_";
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2013-12-01 19:05:11 +08:00
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static size_t decodeQuantum(unsigned char *dest, const char *src)
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1999-12-29 22:20:26 +08:00
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{
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2013-12-01 19:05:11 +08:00
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size_t padding = 0;
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2010-02-22 03:59:09 +08:00
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const char *s, *p;
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2014-10-14 15:44:06 +08:00
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unsigned long i, x = 0;
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2007-01-04 07:04:38 +08:00
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2010-02-22 03:59:09 +08:00
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for(i = 0, s = src; i < 4; i++, s++) {
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2014-10-14 15:44:06 +08:00
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unsigned long v = 0;
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2013-12-01 19:05:11 +08:00
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if(*s == '=') {
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2003-01-06 20:41:33 +08:00
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x = (x << 6);
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2013-12-01 19:05:11 +08:00
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padding++;
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}
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else {
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2014-07-25 14:24:03 +08:00
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p = base64;
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2013-12-01 19:05:11 +08:00
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while(*p && (*p != *s)) {
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v++;
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p++;
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}
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if(*p == *s)
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x = (x << 6) + v;
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else
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return 0;
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}
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2001-08-03 21:51:44 +08:00
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}
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2013-12-02 00:40:55 +08:00
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if(padding < 1)
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2013-12-01 21:47:11 +08:00
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dest[2] = curlx_ultouc(x & 0xFFUL);
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2004-03-01 20:54:59 +08:00
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x >>= 8;
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2013-12-02 00:40:55 +08:00
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if(padding < 2)
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2013-12-01 21:47:11 +08:00
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dest[1] = curlx_ultouc(x & 0xFFUL);
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2004-03-01 20:54:59 +08:00
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x >>= 8;
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2012-03-22 09:40:19 +08:00
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dest[0] = curlx_ultouc(x & 0xFFUL);
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2013-12-01 19:05:11 +08:00
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return 3 - padding;
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2000-09-28 16:01:52 +08:00
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}
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1999-12-29 22:20:26 +08:00
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2004-02-23 16:22:43 +08:00
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/*
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* Curl_base64_decode()
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*
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2011-08-24 14:07:36 +08:00
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* Given a base64 NUL-terminated string at src, decode it and return a
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* pointer in *outptr to a newly allocated memory area holding decoded
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* data. Size of decoded data is returned in variable pointed by outlen.
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*
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* Returns CURLE_OK on success, otherwise specific error code. Function
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* output shall not be considered valid unless CURLE_OK is returned.
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*
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* When decoded data length is 0, returns NULL in *outptr.
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2011-06-10 20:40:46 +08:00
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*
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* @unittest: 1302
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2001-08-03 21:51:44 +08:00
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*/
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2011-08-24 14:07:36 +08:00
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CURLcode Curl_base64_decode(const char *src,
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unsigned char **outptr, size_t *outlen)
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2000-09-28 16:01:52 +08:00
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{
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2013-12-01 21:47:11 +08:00
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size_t srclen = 0;
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2010-02-20 09:15:10 +08:00
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size_t length = 0;
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2013-12-01 21:47:11 +08:00
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size_t padding = 0;
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2010-02-20 09:15:10 +08:00
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size_t i;
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size_t numQuantums;
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size_t rawlen = 0;
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2013-12-01 19:05:11 +08:00
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unsigned char *pos;
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2005-02-22 20:10:30 +08:00
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unsigned char *newstr;
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*outptr = NULL;
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2011-08-24 14:07:36 +08:00
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*outlen = 0;
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2013-12-01 21:47:11 +08:00
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srclen = strlen(src);
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2004-02-23 16:22:43 +08:00
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2013-10-30 15:31:22 +08:00
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/* Check the length of the input string is valid */
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2013-12-01 21:47:11 +08:00
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if(!srclen || srclen % 4)
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2013-10-30 15:31:22 +08:00
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return CURLE_BAD_CONTENT_ENCODING;
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/* Find the position of any = padding characters */
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2001-08-03 21:51:44 +08:00
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while((src[length] != '=') && src[length])
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length++;
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2013-10-30 15:31:22 +08:00
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2005-03-01 07:54:17 +08:00
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/* A maximum of two = padding characters is allowed */
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if(src[length] == '=') {
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2013-12-01 21:47:11 +08:00
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padding++;
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if(src[length + 1] == '=')
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padding++;
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2005-03-01 07:54:17 +08:00
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}
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2013-10-30 16:11:10 +08:00
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2013-10-30 15:31:22 +08:00
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/* Check the = padding characters weren't part way through the input */
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2013-12-01 21:47:11 +08:00
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if(length + padding != srclen)
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2013-10-30 15:31:22 +08:00
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return CURLE_BAD_CONTENT_ENCODING;
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2004-02-23 16:22:43 +08:00
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2013-10-30 15:31:22 +08:00
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/* Calculate the number of quantums */
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2013-12-01 21:47:11 +08:00
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numQuantums = srclen / 4;
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2005-03-01 07:54:17 +08:00
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2013-10-30 15:31:22 +08:00
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/* Calculate the size of the decoded string */
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2013-12-01 21:47:11 +08:00
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rawlen = (numQuantums * 3) - padding;
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2004-02-23 16:22:43 +08:00
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2013-12-01 03:09:09 +08:00
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/* Allocate our buffer including room for a zero terminator */
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newstr = malloc(rawlen + 1);
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2005-02-22 20:10:30 +08:00
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if(!newstr)
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2011-08-24 14:07:36 +08:00
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return CURLE_OUT_OF_MEMORY;
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2005-02-22 20:10:30 +08:00
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2013-12-01 19:05:11 +08:00
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pos = newstr;
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2005-02-22 20:10:30 +08:00
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2013-12-01 21:47:11 +08:00
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/* Decode the quantums */
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for(i = 0; i < numQuantums; i++) {
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2014-10-14 15:44:06 +08:00
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size_t result = decodeQuantum(pos, src);
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2013-12-01 19:05:11 +08:00
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if(!result) {
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2015-03-16 22:01:15 +08:00
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free(newstr);
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2013-12-01 19:05:11 +08:00
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return CURLE_BAD_CONTENT_ENCODING;
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}
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pos += result;
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src += 4;
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2000-09-28 16:01:52 +08:00
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}
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2001-08-03 21:51:44 +08:00
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2013-12-01 03:09:09 +08:00
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/* Zero terminate */
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2013-12-01 21:47:11 +08:00
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*pos = '\0';
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2011-08-24 14:07:36 +08:00
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2013-12-01 19:05:11 +08:00
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/* Return the decoded data */
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*outptr = newstr;
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2013-12-01 03:09:09 +08:00
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*outlen = rawlen;
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2011-08-24 14:07:36 +08:00
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return CURLE_OK;
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2000-09-28 16:01:52 +08:00
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}
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2000-09-21 16:46:44 +08:00
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2014-07-25 14:24:03 +08:00
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static CURLcode base64_encode(const char *table64,
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2016-06-21 21:47:12 +08:00
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struct Curl_easy *data,
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2014-07-25 14:24:03 +08:00
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const char *inputbuff, size_t insize,
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char **outptr, size_t *outlen)
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2000-09-28 16:01:52 +08:00
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{
|
2016-03-14 01:14:57 +08:00
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CURLcode result;
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2001-08-03 21:51:44 +08:00
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unsigned char ibuf[3];
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unsigned char obuf[4];
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int i;
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int inputparts;
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char *output;
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char *base64data;
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2007-02-01 20:23:00 +08:00
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char *convbuf = NULL;
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2001-08-03 21:51:44 +08:00
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2009-06-05 07:55:56 +08:00
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const char *indata = inputbuff;
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2001-08-03 21:51:44 +08:00
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2011-08-24 14:07:36 +08:00
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*outptr = NULL;
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*outlen = 0;
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2004-05-12 21:23:17 +08:00
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2016-03-14 01:59:06 +08:00
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if(!insize)
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2001-08-03 21:51:44 +08:00
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insize = strlen(indata);
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2016-03-14 01:59:06 +08:00
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base64data = output = malloc(insize * 4 / 3 + 4);
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if(!output)
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2011-08-24 14:07:36 +08:00
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return CURLE_OUT_OF_MEMORY;
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2001-08-03 21:51:44 +08:00
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2007-01-04 07:04:38 +08:00
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/*
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* The base64 data needs to be created using the network encoding
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* not the host encoding. And we can't change the actual input
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* so we copy it to a buffer, translate it, and use that instead.
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*/
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2016-03-14 01:14:57 +08:00
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result = Curl_convert_clone(data, indata, insize, &convbuf);
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if(result) {
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2011-05-23 22:55:49 +08:00
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free(output);
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2016-03-14 01:14:57 +08:00
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return result;
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2011-05-23 22:55:49 +08:00
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}
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2011-04-20 06:48:20 +08:00
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if(convbuf)
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indata = (char *)convbuf;
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2007-01-04 07:04:38 +08:00
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2001-08-03 21:51:44 +08:00
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while(insize > 0) {
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2011-04-20 21:17:42 +08:00
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for(i = inputparts = 0; i < 3; i++) {
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2003-02-14 02:30:10 +08:00
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if(insize > 0) {
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2001-08-03 21:51:44 +08:00
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inputparts++;
|
2010-02-21 03:51:02 +08:00
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ibuf[i] = (unsigned char) *indata;
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2001-08-03 21:51:44 +08:00
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indata++;
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insize--;
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}
|
1999-12-29 22:20:26 +08:00
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else
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2001-08-03 21:51:44 +08:00
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ibuf[i] = 0;
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1999-12-29 22:20:26 +08:00
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}
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2004-02-23 16:22:43 +08:00
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2006-07-20 05:14:02 +08:00
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obuf[0] = (unsigned char) ((ibuf[0] & 0xFC) >> 2);
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obuf[1] = (unsigned char) (((ibuf[0] & 0x03) << 4) | \
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((ibuf[1] & 0xF0) >> 4));
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obuf[2] = (unsigned char) (((ibuf[1] & 0x0F) << 2) | \
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((ibuf[2] & 0xC0) >> 6));
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obuf[3] = (unsigned char) (ibuf[2] & 0x3F);
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2001-08-03 21:51:44 +08:00
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switch(inputparts) {
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case 1: /* only one byte read */
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2004-06-24 19:54:11 +08:00
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snprintf(output, 5, "%c%c==",
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table64[obuf[0]],
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table64[obuf[1]]);
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2001-08-03 21:51:44 +08:00
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break;
|
2016-03-14 01:59:06 +08:00
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2001-08-03 21:51:44 +08:00
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case 2: /* two bytes read */
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2004-06-24 19:54:11 +08:00
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snprintf(output, 5, "%c%c%c=",
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table64[obuf[0]],
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table64[obuf[1]],
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table64[obuf[2]]);
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2001-08-03 21:51:44 +08:00
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break;
|
2016-03-14 01:59:06 +08:00
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2001-08-03 21:51:44 +08:00
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default:
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2004-06-24 19:54:11 +08:00
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snprintf(output, 5, "%c%c%c%c",
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table64[obuf[0]],
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table64[obuf[1]],
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table64[obuf[2]],
|
2016-04-04 02:28:34 +08:00
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table64[obuf[3]]);
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2001-08-03 21:51:44 +08:00
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break;
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1999-12-29 22:20:26 +08:00
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}
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2001-08-03 21:51:44 +08:00
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output += 4;
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1999-12-29 22:20:26 +08:00
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}
|
2016-03-14 01:59:06 +08:00
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/* Zero terminate */
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2011-08-24 14:07:36 +08:00
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*output = '\0';
|
2016-03-14 01:59:06 +08:00
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/* Return the pointer to the new data (allocated memory) */
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*outptr = base64data;
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2001-08-03 21:51:44 +08:00
|
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|
|
2015-03-12 00:41:01 +08:00
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free(convbuf);
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2011-04-20 06:48:20 +08:00
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2016-03-14 01:59:06 +08:00
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/* Return the length of the new data */
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*outlen = strlen(base64data);
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2011-08-24 14:07:36 +08:00
|
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return CURLE_OK;
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2001-08-03 21:51:44 +08:00
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}
|
2014-07-25 14:24:03 +08:00
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/*
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* Curl_base64_encode()
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*
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* Given a pointer to an input buffer and an input size, encode it and
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* return a pointer in *outptr to a newly allocated memory area holding
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* encoded data. Size of encoded data is returned in variable pointed by
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* outlen.
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*
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* Input length of 0 indicates input buffer holds a NUL-terminated string.
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*
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* Returns CURLE_OK on success, otherwise specific error code. Function
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* output shall not be considered valid unless CURLE_OK is returned.
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*
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* When encoded data length is 0, returns NULL in *outptr.
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*
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* @unittest: 1302
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*/
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2016-06-21 21:47:12 +08:00
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CURLcode Curl_base64_encode(struct Curl_easy *data,
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2014-07-25 14:24:03 +08:00
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const char *inputbuff, size_t insize,
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char **outptr, size_t *outlen)
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{
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return base64_encode(base64, data, inputbuff, insize, outptr, outlen);
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}
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/*
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* Curl_base64url_encode()
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*
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* Given a pointer to an input buffer and an input size, encode it and
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* return a pointer in *outptr to a newly allocated memory area holding
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* encoded data. Size of encoded data is returned in variable pointed by
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* outlen.
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*
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* Input length of 0 indicates input buffer holds a NUL-terminated string.
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*
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* Returns CURLE_OK on success, otherwise specific error code. Function
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* output shall not be considered valid unless CURLE_OK is returned.
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*
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* When encoded data length is 0, returns NULL in *outptr.
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*
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2014-07-25 14:38:16 +08:00
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* @unittest: 1302
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2014-07-25 14:24:03 +08:00
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*/
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2016-06-21 21:47:12 +08:00
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CURLcode Curl_base64url_encode(struct Curl_easy *data,
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2014-07-25 14:24:03 +08:00
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const char *inputbuff, size_t insize,
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char **outptr, size_t *outlen)
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{
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return base64_encode(base64url, data, inputbuff, insize, outptr, outlen);
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}
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