vmime/src/body.cpp

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//
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// VMime library (http://www.vmime.org)
// Copyright (C) 2002-2009 Vincent Richard <vincent@vincent-richard.net>
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//
// This program is free software; you can redistribute it and/or
// modify it under the terms of the GNU General Public License as
// published by the Free Software Foundation; either version 3 of
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// the License, or (at your option) any later version.
//
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
// General Public License for more details.
//
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// You should have received a copy of the GNU General Public License along
// with this program; if not, write to the Free Software Foundation, Inc.,
// 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
//
// Linking this library statically or dynamically with other modules is making
// a combined work based on this library. Thus, the terms and conditions of
// the GNU General Public License cover the whole combination.
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//
#include "vmime/bodyPart.hpp"
#include "vmime/body.hpp"
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#include "vmime/options.hpp"
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#include "vmime/contentTypeField.hpp"
#include "vmime/text.hpp"
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#include "vmime/utility/random.hpp"
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#include "vmime/utility/seekableInputStreamRegionAdapter.hpp"
#include "vmime/parserHelpers.hpp"
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#include "vmime/emptyContentHandler.hpp"
#include "vmime/stringContentHandler.hpp"
#include "vmime/streamContentHandler.hpp"
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namespace vmime
{
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body::body()
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: m_contents(create <emptyContentHandler>()), m_part(NULL), m_header(NULL)
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{
}
body::~body()
{
}
void body::parseImpl
(ref <utility::parserInputStreamAdapter> parser,
const utility::stream::size_type position,
const utility::stream::size_type end,
utility::stream::size_type* newPosition)
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{
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removeAllParts();
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m_prologText.clear();
m_epilogText.clear();
if (end == position)
{
setParsedBounds(position, end);
if (newPosition)
*newPosition = end;
return;
}
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// Check whether the body is a MIME-multipart
bool isMultipart = false;
string boundary;
try
{
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const ref <const contentTypeField> ctf =
m_header.acquire()->findField(fields::CONTENT_TYPE).dynamicCast <contentTypeField>();
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const mediaType type = *ctf->getValue().dynamicCast <const mediaType>();
if (type.getType() == mediaTypes::MULTIPART)
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{
isMultipart = true;
try
{
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boundary = ctf->getBoundary();
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}
catch (exceptions::no_such_parameter&)
{
// No "boundary" parameter specified: we can try to
// guess it by scanning the body contents...
utility::stream::size_type pos = position;
parser->seek(pos);
if (pos + 2 < end && parser->matchBytes("--", 2))
{
pos += 2;
}
else
{
pos = parser->findNext("\n--", position);
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if ((pos != utility::stream::npos) && (pos + 3 < end))
pos += 3; // skip \n--
}
if ((pos != utility::stream::npos) && (pos < end))
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{
parser->seek(pos);
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// Read some bytes after boundary separator
utility::stream::value_type buffer[256];
const utility::stream::size_type bufferLen =
parser->read(buffer, std::min(end - pos, sizeof(buffer) / sizeof(buffer[0])));
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buffer[sizeof(buffer) / sizeof(buffer[0]) - 1] = '\0';
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// Extract boundary from buffer (stop at first CR or LF).
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// We have to stop after a reasonnably long boundary length (100)
// not to take the whole body contents for a boundary...
string::value_type boundaryBytes[100];
string::size_type boundaryLen = 0;
for (string::value_type c = buffer[0] ;
boundaryLen < bufferLen && boundaryLen < 100 && !(c == '\r' || c == '\n') ;
c = buffer[++boundaryLen])
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{
boundaryBytes[boundaryLen] = buffer[boundaryLen];
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}
if (boundaryLen >= 1 && boundaryLen < 100)
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{
// RFC #1521, Page 31:
// "...the boundary parameter, which consists of 1 to 70
// characters from a set of characters known to be very
// robust through email gateways, and NOT ending with
// white space..."
while (boundaryLen != 0 &&
parserHelpers::isSpace(boundaryBytes[boundaryLen - 1]))
{
boundaryLen--;
}
if (boundaryLen >= 1)
boundary = string(boundaryBytes, boundaryBytes + boundaryLen);
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}
}
}
}
}
catch (exceptions::no_such_field&)
{
// No "Content-Type" field...
}
// This is a multi-part body
if (isMultipart && !boundary.empty())
{
const string boundarySep("--" + boundary);
utility::stream::size_type partStart = position;
utility::stream::size_type pos = position;
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bool lastPart = false;
while (pos != utility::stream::npos && pos < end)
{
pos = parser->findNext(boundarySep, pos);
if (pos == utility::stream::npos)
break; // not found
if (pos != 0)
{
parser->seek(pos - 1);
if (parser->peekByte() != '\n')
{
// Boundary is not at a beginning of a line
pos++;
continue;
}
parser->skip(1 + boundarySep.length());
}
else
{
parser->seek(pos + boundarySep.length());
}
const utility::stream::value_type next = parser->peekByte();
if (next == '\r' || next == '\n' || next == '-')
break;
// Boundary is a prefix of another, continue the search
pos++;
}
if (pos != utility::stream::npos && pos < end)
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{
vmime::text text;
text.parse(parser, position, pos);
m_prologText = text.getWholeBuffer();
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}
for (int index = 0 ; !lastPart && (pos != utility::stream::npos) && (pos < end) ; ++index)
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{
utility::stream::size_type partEnd = pos;
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// Get rid of the [CR]LF just before the boundary string
if (pos >= (position + 1))
{
parser->seek(pos - 1);
if (parser->peekByte() == '\n')
--partEnd;
}
if (pos >= (position + 2))
{
parser->seek(pos - 2);
if (parser->peekByte() == '\r')
--partEnd;
}
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// Check whether it is the last part (boundary terminated by "--")
pos += boundarySep.length();
parser->seek(pos);
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if (pos + 1 < end && parser->matchBytes("--", 2))
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{
lastPart = true;
pos += 2;
}
// RFC #1521, Page 31:
// "...(If a boundary appears to end with white space, the
// white space must be presumed to have been added by a
// gateway, and must be deleted.)..."
parser->seek(pos);
pos += parser->skipIf(parserHelpers::isSpaceOrTab, end);
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// End of boundary line
if (pos + 1 < end && parser->matchBytes("\r\n", 2))
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{
pos += 2;
}
else if (pos < end && parser->peekByte() == '\n')
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{
++pos;
}
if (index > 0)
{
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ref <bodyPart> part = vmime::create <bodyPart>();
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// End before start may happen on empty bodyparts (directly
// successive boundaries without even a line-break)
if (partEnd < partStart)
std::swap(partStart, partEnd);
part->parse(parser, partStart, partEnd, NULL);
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part->m_parent = m_part;
m_parts.push_back(part);
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}
partStart = pos;
while (pos != utility::stream::npos && pos < end)
{
pos = parser->findNext(boundarySep, pos);
if (pos == utility::stream::npos)
break; // not found
if (pos != 0)
{
parser->seek(pos - 1);
if (parser->peekByte() != '\n')
{
// Boundary is not at a beginning of a line
pos++;
continue;
}
parser->skip(1 + boundarySep.length());
}
else
{
parser->seek(pos + boundarySep.length());
}
const utility::stream::value_type next = parser->peekByte();
if (next == '\r' || next == '\n' || next == '-')
break;
// Boundary is a prefix of another, continue the search
pos++;
}
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}
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m_contents = vmime::create <emptyContentHandler>();
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// Last part was not found: recover from missing boundary
if (!lastPart && pos == utility::stream::npos)
{
ref <bodyPart> part = vmime::create <bodyPart>();
try
{
part->parse(parser, partStart, end);
}
catch (std::exception&)
{
throw;
}
part->m_parent = m_part;
m_parts.push_back(part);
}
// Treat remaining text as epilog
else if (partStart < end)
{
vmime::text text;
text.parse(parser, partStart, end);
m_epilogText = text.getWholeBuffer();
}
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}
// Treat the contents as 'simple' data
else
{
encoding enc;
try
{
const ref <const headerField> cef =
m_header.acquire()->findField(fields::CONTENT_TRANSFER_ENCODING);
enc = *cef->getValue().dynamicCast <const encoding>();
}
catch (exceptions::no_such_field&)
{
// Defaults to "7bit" (RFC-1521)
enc = vmime::encoding(encodingTypes::SEVEN_BIT);
// Set header field
m_header.acquire()->ContentTransferEncoding()->setValue(enc);
}
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// Extract the (encoded) contents
const utility::stream::size_type length = end - position;
ref <utility::inputStream> contentStream =
vmime::create <utility::seekableInputStreamRegionAdapter>
(parser->getUnderlyingStream(), position, length);
m_contents = vmime::create <streamContentHandler>(contentStream, length, enc);
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}
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setParsedBounds(position, end);
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if (newPosition)
*newPosition = end;
}
void body::generateImpl(utility::outputStream& os, const string::size_type maxLineLength,
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const string::size_type /* curLinePos */, string::size_type* newLinePos) const
{
// MIME-Multipart
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if (getPartCount() != 0)
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{
string boundary;
if (m_header.acquire() == NULL)
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{
boundary = generateRandomBoundaryString();
}
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else
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{
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try
{
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ref <const contentTypeField> ctf =
m_header.acquire()->findField(fields::CONTENT_TYPE)
.dynamicCast <const contentTypeField>();
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boundary = ctf->getBoundary();
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}
catch (exceptions::no_such_field&)
{
// Warning: no content-type and no boundary string specified!
boundary = generateRandomBoundaryString();
}
catch (exceptions::no_such_parameter&)
{
// Warning: no boundary string specified!
boundary = generateRandomBoundaryString();
}
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}
const string& prologText =
m_prologText.empty()
? (isRootPart()
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? options::getInstance()->multipart.getPrologText()
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: NULL_STRING
)
: m_prologText;
const string& epilogText =
m_epilogText.empty()
? (isRootPart()
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? options::getInstance()->multipart.getEpilogText()
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: NULL_STRING
)
: m_epilogText;
if (!prologText.empty())
{
text prolog(prologText, vmime::charset("us-ascii"));
prolog.encodeAndFold(os, maxLineLength, 0,
NULL, text::FORCE_NO_ENCODING | text::NO_NEW_LINE_SEQUENCE);
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os << CRLF;
}
os << "--" << boundary;
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for (int p = 0 ; p < getPartCount() ; ++p)
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{
os << CRLF;
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getPartAt(p)->generate(os, maxLineLength, 0);
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os << CRLF << "--" << boundary;
}
os << "--" << CRLF;
if (!epilogText.empty())
{
text epilog(epilogText, vmime::charset("us-ascii"));
epilog.encodeAndFold(os, maxLineLength, 0,
NULL, text::FORCE_NO_ENCODING | text::NO_NEW_LINE_SEQUENCE);
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os << CRLF;
}
if (newLinePos)
*newLinePos = 0;
}
// Simple body
else
{
// Generate the contents
m_contents->generate(os, getEncoding(), maxLineLength);
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}
}
/*
RFC #1521, Page 32:
7.2.1. Multipart: The common syntax
"...Encapsulation boundaries must not appear within the
encapsulations, and must be no longer than 70 characters..."
boundary := 0*69<bchars> bcharsnospace
bchars := bcharsnospace / " "
bcharsnospace := DIGIT / ALPHA / "'" / "(" / ")" / "+" /"_"
/ "," / "-" / "." / "/" / ":" / "=" / "?"
*/
const string body::generateRandomBoundaryString()
{
// 64 characters that can be _safely_ used in a boundary string
static const char bchars[] = "0123456789abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ-+";
/*
RFC #1521, Page 19:
Since the hyphen character ("-") is represented as itself in the
Quoted-Printable encoding, care must be taken, when encapsulating a
quoted-printable encoded body in a multipart entity, to ensure that
the encapsulation boundary does not appear anywhere in the encoded
body. (A good strategy is to choose a boundary that includes a
character sequence such as "=_" which can never appear in a quoted-
printable body. See the definition of multipart messages later in
this document.)
*/
string::value_type boundary[2 + 48 + 1] = { 0 };
boundary[0] = '=';
boundary[1] = '_';
// Generate a string of random characters
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unsigned int r = utility::random::getTime();
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unsigned int m = sizeof(unsigned int);
for (size_t i = 2 ; i < (sizeof(boundary) / sizeof(boundary[0]) - 1) ; ++i)
{
boundary[i] = bchars[r & 63];
r >>= 6;
if (--m == 0)
{
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r = utility::random::getNext();
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m = sizeof(unsigned int);
}
}
return (string(boundary));
}
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bool body::isValidBoundary(const string& boundary)
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{
static const string validChars("0123456789abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ'()+_,-./:=?");
const string::const_iterator end = boundary.end();
bool valid = false;
if (boundary.length() > 0 && boundary.length() < 70)
{
const string::value_type last = *(end - 1);
if (!(last == ' ' || last == '\t' || last == '\n'))
{
valid = true;
for (string::const_iterator i = boundary.begin() ; valid && i != end ; ++i)
valid = (validChars.find_first_of(*i) != string::npos);
}
}
return (valid);
}
//
// Quick-access functions
//
void body::setContentType(const mediaType& type, const charset& chset)
{
ref <contentTypeField> ctf = m_header.acquire()->ContentType().dynamicCast <contentTypeField>();
ctf->setValue(type);
ctf->setCharset(chset);
}
void body::setContentType(const mediaType& type)
{
m_header.acquire()->ContentType()->setValue(type);
}
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const mediaType body::getContentType() const
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{
try
{
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ref <const contentTypeField> ctf =
m_header.acquire()->findField(fields::CONTENT_TYPE).dynamicCast <const contentTypeField>();
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return (*ctf->getValue().dynamicCast <const mediaType>());
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}
catch (exceptions::no_such_field&)
{
// Defaults to "text/plain" (RFC-1521)
return (mediaType(mediaTypes::TEXT, mediaTypes::TEXT_PLAIN));
}
}
void body::setCharset(const charset& chset)
{
// If a Content-Type field exists, set charset
try
{
ref <contentTypeField> ctf =
m_header.acquire()->findField(fields::CONTENT_TYPE).dynamicCast <contentTypeField>();
ctf->setCharset(chset);
}
// Else, create a new Content-Type field of default type "text/plain"
// and set charset on it
catch (exceptions::no_such_field&)
{
setContentType(mediaType(mediaTypes::TEXT, mediaTypes::TEXT_PLAIN), chset);
}
}
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const charset body::getCharset() const
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{
try
{
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const ref <const contentTypeField> ctf =
m_header.acquire()->findField(fields::CONTENT_TYPE).dynamicCast <contentTypeField>();
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return (ctf->getCharset());
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}
catch (exceptions::no_such_parameter&)
{
// Defaults to "us-ascii" (RFC-1521)
return (vmime::charset(charsets::US_ASCII));
}
catch (exceptions::no_such_field&)
{
// Defaults to "us-ascii" (RFC-1521)
return (vmime::charset(charsets::US_ASCII));
}
}
void body::setEncoding(const encoding& enc)
{
m_header.acquire()->ContentTransferEncoding()->setValue(enc);
}
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const encoding body::getEncoding() const
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{
try
{
const ref <const headerField> cef =
m_header.acquire()->findField(fields::CONTENT_TRANSFER_ENCODING);
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return (*cef->getValue().dynamicCast <const encoding>());
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}
catch (exceptions::no_such_field&)
{
if (m_contents->isEncoded())
{
return m_contents->getEncoding();
}
else
{
// Defaults to "7bit" (RFC-1521)
return vmime::encoding(encodingTypes::SEVEN_BIT);
}
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}
}
void body::setParentPart(ref <bodyPart> parent)
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{
m_part = parent;
m_header = (parent != NULL ? parent->getHeader() : NULL);
}
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bool body::isRootPart() const
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{
ref <const bodyPart> part = m_part.acquire();
return (part == NULL || part->getParentPart() == NULL);
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}
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ref <component> body::clone() const
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{
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ref <body> bdy = vmime::create <body>();
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bdy->copyFrom(*this);
return (bdy);
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}
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void body::copyFrom(const component& other)
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{
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const body& bdy = dynamic_cast <const body&>(other);
m_prologText = bdy.m_prologText;
m_epilogText = bdy.m_epilogText;
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m_contents = bdy.m_contents;
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removeAllParts();
for (int p = 0 ; p < bdy.getPartCount() ; ++p)
{
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ref <bodyPart> part = bdy.getPartAt(p)->clone().dynamicCast <bodyPart>();
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part->m_parent = m_part;
m_parts.push_back(part);
}
}
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body& body::operator=(const body& other)
{
copyFrom(other);
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return (*this);
}
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const string& body::getPrologText() const
{
return (m_prologText);
}
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void body::setPrologText(const string& prologText)
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{
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m_prologText = prologText;
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}
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const string& body::getEpilogText() const
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{
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return (m_epilogText);
}
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void body::setEpilogText(const string& epilogText)
{
m_epilogText = epilogText;
}
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const ref <const contentHandler> body::getContents() const
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{
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return (m_contents);
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}
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void body::setContents(ref <const contentHandler> contents)
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{
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m_contents = contents;
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}
void body::setContents(ref <const contentHandler> contents, const mediaType& type)
{
m_contents = contents;
setContentType(type);
}
void body::setContents(ref <const contentHandler> contents, const mediaType& type, const charset& chset)
{
m_contents = contents;
setContentType(type, chset);
}
void body::setContents(ref <const contentHandler> contents, const mediaType& type,
const charset& chset, const encoding& enc)
{
m_contents = contents;
setContentType(type, chset);
setEncoding(enc);
}
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void body::initNewPart(ref <bodyPart> part)
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{
part->m_parent = m_part;
ref <header> hdr = m_header.acquire();
if (hdr != NULL)
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{
// Check whether we have a boundary string
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try
{
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ref <contentTypeField> ctf =
hdr->findField(fields::CONTENT_TYPE).dynamicCast <contentTypeField>();
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try
{
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const string boundary = ctf->getBoundary();
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if (boundary.empty() || !isValidBoundary(boundary))
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ctf->setBoundary(generateRandomBoundaryString());
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}
catch (exceptions::no_such_parameter&)
{
// No "boundary" parameter: generate a random one.
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ctf->setBoundary(generateRandomBoundaryString());
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}
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if (ctf->getValue().dynamicCast <const mediaType>()->getType() != mediaTypes::MULTIPART)
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{
// Warning: multi-part body but the Content-Type is
// not specified as "multipart/..."
}
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}
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catch (exceptions::no_such_field&)
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{
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// No "Content-Type" field: create a new one and generate
// a random boundary string.
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ref <contentTypeField> ctf =
hdr->getField(fields::CONTENT_TYPE).dynamicCast <contentTypeField>();
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ctf->setValue(mediaType(mediaTypes::MULTIPART, mediaTypes::MULTIPART_MIXED));
ctf->setBoundary(generateRandomBoundaryString());
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}
}
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}
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void body::appendPart(ref <bodyPart> part)
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{
initNewPart(part);
m_parts.push_back(part);
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}
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void body::insertPartBefore(ref <bodyPart> beforePart, ref <bodyPart> part)
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{
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initNewPart(part);
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const std::vector <ref <bodyPart> >::iterator it = std::find
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(m_parts.begin(), m_parts.end(), beforePart);
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if (it == m_parts.end())
throw exceptions::no_such_part();
m_parts.insert(it, part);
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}
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void body::insertPartBefore(const int pos, ref <bodyPart> part)
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{
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initNewPart(part);
m_parts.insert(m_parts.begin() + pos, part);
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}
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void body::insertPartAfter(ref <bodyPart> afterPart, ref <bodyPart> part)
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{
initNewPart(part);
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const std::vector <ref <bodyPart> >::iterator it = std::find
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(m_parts.begin(), m_parts.end(), afterPart);
if (it == m_parts.end())
throw exceptions::no_such_part();
m_parts.insert(it + 1, part);
}
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void body::insertPartAfter(const int pos, ref <bodyPart> part)
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{
initNewPart(part);
m_parts.insert(m_parts.begin() + pos + 1, part);
}
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void body::removePart(ref <bodyPart> part)
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{
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const std::vector <ref <bodyPart> >::iterator it = std::find
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(m_parts.begin(), m_parts.end(), part);
if (it == m_parts.end())
throw exceptions::no_such_part();
m_parts.erase(it);
}
void body::removePart(const int pos)
{
m_parts.erase(m_parts.begin() + pos);
}
void body::removeAllParts()
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{
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m_parts.clear();
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}
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int body::getPartCount() const
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{
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return (m_parts.size());
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}
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bool body::isEmpty() const
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{
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return (m_parts.size() == 0);
}
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ref <bodyPart> body::getPartAt(const int pos)
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{
return (m_parts[pos]);
}
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const ref <const bodyPart> body::getPartAt(const int pos) const
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{
return (m_parts[pos]);
}
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const std::vector <ref <const bodyPart> > body::getPartList() const
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{
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std::vector <ref <const bodyPart> > list;
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list.reserve(m_parts.size());
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for (std::vector <ref <bodyPart> >::const_iterator it = m_parts.begin() ;
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it != m_parts.end() ; ++it)
{
list.push_back(*it);
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}
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return (list);
}
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const std::vector <ref <bodyPart> > body::getPartList()
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{
return (m_parts);
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}
const std::vector <ref <component> > body::getChildComponents()
{
std::vector <ref <component> > list;
copy_vector(m_parts, list);
return (list);
}
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} // vmime