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70f5f9491d
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612 lines
16 KiB
C++
612 lines
16 KiB
C++
#include "CHTTPProtocol.h"
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#include "CLog.h"
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#include "XHTTP.h"
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#include "IInputStream.h"
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#include "IOutputStream.h"
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#include <ctype.h>
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#include <locale.h>
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#include <time.h>
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#include <algorithm>
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#include <sstream>
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//
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// CHTTPUtil::CaselessCmp
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//
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inline
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bool CHTTPUtil::CaselessCmp::cmpEqual(
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const CString::value_type& a,
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const CString::value_type& b)
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{
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// FIXME -- use std::tolower
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return tolower(a) == tolower(b);
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}
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inline
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bool CHTTPUtil::CaselessCmp::cmpLess(
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const CString::value_type& a,
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const CString::value_type& b)
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{
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// FIXME -- use std::tolower
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return tolower(a) < tolower(b);
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}
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bool CHTTPUtil::CaselessCmp::less(
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const CString& a,
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const CString& b)
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{
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return std::lexicographical_compare(
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a.begin(), a.end(),
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b.begin(), b.end(),
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&CHTTPUtil::CaselessCmp::cmpLess);
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}
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bool CHTTPUtil::CaselessCmp::equal(
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const CString& a,
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const CString& b)
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{
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return !(less(a, b) || less(b, a));
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}
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bool CHTTPUtil::CaselessCmp::operator()(
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const CString& a,
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const CString& b) const
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{
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return less(a, b);
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}
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//
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// CHTTPProtocol
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//
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CHTTPRequest* CHTTPProtocol::readRequest(IInputStream* stream)
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{
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CString scratch;
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// parse request line by line
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CHTTPRequest* request = new CHTTPRequest;
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try {
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CString line;
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// read request line. accept and discard leading empty lines.
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do {
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line = readLine(stream, scratch);
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} while (line.empty());
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// parse request line: <method> <uri> <version>
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{
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std::istringstream s(line);
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s.exceptions(std::ios::goodbit);
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CString version;
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s >> request->m_method >> request->m_uri >> version;
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if (!s || request->m_uri.empty() || version.find("HTTP/") != 0) {
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log((CLOG_DEBUG1 "failed to parse HTTP request line: %s", line.c_str()));
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throw XHTTP(400);
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}
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// parse version
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char dot;
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s.str(version);
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s.ignore(5);
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s >> request->m_majorVersion;
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s.get(dot);
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s >> request->m_minorVersion;
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if (!s || dot != '.') {
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log((CLOG_DEBUG1 "failed to parse HTTP request line: %s", line.c_str()));
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throw XHTTP(400);
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}
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}
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if (!isValidToken(request->m_method)) {
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log((CLOG_DEBUG1 "invalid HTTP method: %s", line.c_str()));
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throw XHTTP(400);
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}
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if (request->m_majorVersion < 1 || request->m_minorVersion < 0) {
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log((CLOG_DEBUG1 "invalid HTTP version: %s", line.c_str()));
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throw XHTTP(400);
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}
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// parse headers
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readHeaders(stream, request, false, scratch);
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// HTTP/1.1 requests must have a Host header
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if (request->m_majorVersion > 1 ||
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(request->m_majorVersion == 1 && request->m_minorVersion >= 1)) {
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if (request->m_headerIndexByName.count("Host") == 0) {
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log((CLOG_DEBUG1 "Host header missing"));
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throw XHTTP(400);
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}
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}
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// some methods may not have a body. ensure that the headers
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// that indicate the body length do not exist for those methods
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// and do exist for others.
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if ((request->m_headerIndexByName.count("Transfer-Encoding") == 0 &&
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request->m_headerIndexByName.count("Content-Length") == 0) !=
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(request->m_method == "GET" ||
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request->m_method == "HEAD")) {
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log((CLOG_DEBUG1 "HTTP method (%s)/body mismatch", request->m_method.c_str()));
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throw XHTTP(400);
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}
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// prepare to read the body. the length of the body is
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// determined using, in order:
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// 1. Transfer-Encoding indicates a "chunked" transfer
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// 2. Content-Length is present
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// Content-Length is ignored for "chunked" transfers.
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CHTTPRequest::CHeaderMap::iterator index = request->
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m_headerIndexByName.find("Transfer-Encoding");
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if (index != request->m_headerIndexByName.end()) {
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// we only understand "chunked" encodings
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if (!CHTTPUtil::CaselessCmp::equal(
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request->m_headers[index->second], "chunked")) {
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log((CLOG_DEBUG1 "unsupported Transfer-Encoding %s", request->m_headers[index->second].c_str()));
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throw XHTTP(501);
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}
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// chunked encoding
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UInt32 oldSize;
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do {
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oldSize = request->m_body.size();
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request->m_body += readChunk(stream, scratch);
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} while (request->m_body.size() != oldSize);
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// read footer
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readHeaders(stream, request, true, scratch);
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// remove "chunked" from Transfer-Encoding and set the
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// Content-Length.
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// FIXME
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// FIXME -- note that just deleting Transfer-Encoding will
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// mess up indices in m_headerIndexByName, and replacing
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// it with Content-Length could lead to two of those.
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}
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else if ((index = request->m_headerIndexByName.
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find("Content-Length")) !=
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request->m_headerIndexByName.end()) {
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// FIXME -- check for overly-long requests
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// parse content-length
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UInt32 length;
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{
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std::istringstream s(request->m_headers[index->second]);
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s.exceptions(std::ios::goodbit);
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s >> length;
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if (!s) {
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log((CLOG_DEBUG1 "cannot parse Content-Length", request->m_headers[index->second].c_str()));
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throw XHTTP(400);
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}
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}
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// use content length
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request->m_body = readBlock(stream, length, scratch);
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if (request->m_body.size() != length) {
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// length must match size of body
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log((CLOG_DEBUG1 "Content-Length/actual length mismatch (%d vs %d)", length, request->m_body.size()));
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throw XHTTP(400);
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}
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}
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}
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catch (...) {
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delete request;
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throw;
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}
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return request;
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}
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void CHTTPProtocol::reply(
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IOutputStream* stream,
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CHTTPReply& reply)
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{
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// suppress body for certain replies
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bool hasBody = true;
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if ((reply.m_status / 100) == 1 ||
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reply.m_status == 204 ||
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reply.m_status == 304) {
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hasBody = false;
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}
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// adjust headers
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for (CHTTPReply::CHeaderList::iterator
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index = reply.m_headers.begin();
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index != reply.m_headers.end(); ) {
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const CString& header = index->first;
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// remove certain headers
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if (CHTTPUtil::CaselessCmp::equal(header, "Content-Length") ||
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CHTTPUtil::CaselessCmp::equal(header, "Date") ||
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CHTTPUtil::CaselessCmp::equal(header, "Transfer-Encoding")) {
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// FIXME -- Transfer-Encoding should be left as-is if
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// not "chunked" and if the version is 1.1 or up.
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index = reply.m_headers.erase(index);
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}
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// keep as-is
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else {
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++index;
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}
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}
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// write reply header
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ostringstream s;
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s << "HTTP/" << reply.m_majorVersion << "." <<
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reply.m_minorVersion << " " <<
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reply.m_status << " " <<
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reply.m_reason << "\r\n";
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// get date
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// FIXME -- should use C++ locale stuff but VC++ time_put is broken.
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// FIXME -- double check that VC++ is broken
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// FIXME -- should mutex gmtime() since the return value may not
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// be thread safe
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char date[30];
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{
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const char* oldLocale = setlocale(LC_TIME, "C");
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time_t t = time(NULL);
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struct tm* tm = gmtime(&t);
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strftime(date, sizeof(date), "%a, %d %b %Y %H:%M:%S GMT", tm);
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setlocale(LC_TIME, oldLocale);
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}
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// write headers
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s << "Date: " << date << "\r\n";
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for (CHTTPReply::CHeaderList::const_iterator
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index = reply.m_headers.begin();
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index != reply.m_headers.end(); ++index) {
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s << index->first << ": " << index->second << "\r\n";
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}
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if (hasBody) {
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s << "Content-Length: " << reply.m_body.size() << "\r\n";
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}
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s << "Connection: close\r\n";
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// write end of headers
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s << "\r\n";
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// write to stream
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stream->write(s.str().data(), s.str().size());
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// write body. replies to HEAD method never have a body (though
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// they do have the Content-Length header).
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if (hasBody && reply.m_method != "HEAD") {
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stream->write(reply.m_body.data(), reply.m_body.size());
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}
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}
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bool CHTTPProtocol::parseFormData(
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const CHTTPRequest& request,
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CFormParts& parts)
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{
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static const char formData[] = "multipart/form-data";
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static const char boundary[] = "boundary=";
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static const char disposition[] = "Content-Disposition:";
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static const char nameAttr[] = "name=";
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static const char quote[] = "\"";
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// find the Content-Type header
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CHTTPRequest::CHeaderMap::const_iterator contentTypeIndex =
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request.m_headerIndexByName.find("Content-Type");
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if (contentTypeIndex == request.m_headerIndexByName.end()) {
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// missing required Content-Type header
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return false;
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}
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const CString contentType = request.m_headers[contentTypeIndex->second];
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// parse type
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CString::const_iterator index = std::search(
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contentType.begin(), contentType.end(),
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formData, formData + sizeof(formData) - 1,
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CHTTPUtil::CaselessCmp::cmpEqual);
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if (index == contentType.end()) {
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// not form-data
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return false;
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}
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index += sizeof(formData) - 1;
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index = std::search(index, contentType.end(),
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boundary, boundary + sizeof(boundary) - 1,
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CHTTPUtil::CaselessCmp::cmpEqual);
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if (index == contentType.end()) {
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// no boundary
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return false;
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}
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CString delimiter = contentType.c_str() +
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(index - contentType.begin()) +
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sizeof(boundary) - 1;
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// find first delimiter
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const CString& body = request.m_body;
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CString::size_type partIndex = body.find(delimiter);
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if (partIndex == CString::npos) {
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return false;
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}
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// skip over it
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partIndex += delimiter.size();
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// prepend CRLF-- to delimiter
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delimiter = "\r\n--" + delimiter;
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// parse parts until there are no more
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for (;;) {
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// is it the last part?
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if (body.size() >= partIndex + 2 &&
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body[partIndex ] == '-' &&
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body[partIndex + 1] == '-') {
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// found last part. success if there's no trailing data.
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// FIXME -- check for trailing data (other than a single CRLF)
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return true;
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}
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// find the end of this part
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CString::size_type nextPart = body.find(delimiter, partIndex);
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if (nextPart == CString::npos) {
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// no terminator
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return false;
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}
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// find end of headers
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CString::size_type endOfHeaders = body.find("\r\n\r\n", partIndex);
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if (endOfHeaders == CString::npos || endOfHeaders > nextPart) {
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// bad part
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return false;
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}
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endOfHeaders += 2;
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// now find Content-Disposition
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index = std::search(body.begin() + partIndex,
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body.begin() + endOfHeaders,
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disposition,
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disposition + sizeof(disposition) - 1,
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CHTTPUtil::CaselessCmp::cmpEqual);
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if (index == contentType.begin() + endOfHeaders) {
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// bad part
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return false;
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}
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// find the name in the Content-Disposition
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CString::size_type endOfHeader = body.find("\r\n",
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index - body.begin());
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if (endOfHeader >= endOfHeaders) {
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// bad part
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return false;
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}
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index = std::search(index, body.begin() + endOfHeader,
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nameAttr, nameAttr + sizeof(nameAttr) - 1,
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CHTTPUtil::CaselessCmp::cmpEqual);
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if (index == body.begin() + endOfHeader) {
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// no name
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return false;
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}
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// extract the name
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CString name;
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index += sizeof(nameAttr) - 1;
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if (*index == quote[0]) {
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// quoted name
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++index;
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CString::size_type namePos = index - body.begin();
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index = std::search(index, body.begin() + endOfHeader,
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quote, quote + 1,
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CHTTPUtil::CaselessCmp::cmpEqual);
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if (index == body.begin() + endOfHeader) {
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// missing close quote
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return false;
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}
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name = body.substr(namePos, index - body.begin() - namePos);
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}
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else {
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// unquoted name
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name = body.substr(index - body.begin(),
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body.find_first_of(" \t\r\n"));
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}
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// save part. add 2 to endOfHeaders to skip CRLF.
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parts.insert(std::make_pair(name, body.substr(endOfHeaders + 2,
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nextPart - (endOfHeaders + 2))));
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// move to next part
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partIndex = nextPart + delimiter.size();
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}
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// should've found the last delimiter inside the loop but we did not
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return false;
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}
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CString CHTTPProtocol::readLine(
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IInputStream* stream,
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CString& tmpBuffer)
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{
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// read up to and including a CRLF from stream, using whatever
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// is in tmpBuffer as if it were at the head of the stream.
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for (;;) {
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// scan tmpBuffer for CRLF
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CString::size_type newline = tmpBuffer.find("\r\n");
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if (newline != CString::npos) {
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// copy line without the CRLF
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CString line = tmpBuffer.substr(0, newline);
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// discard line and CRLF from tmpBuffer
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tmpBuffer.erase(0, newline + 2);
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return line;
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}
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// read more from stream
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char buffer[4096];
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UInt32 n = stream->read(buffer, sizeof(buffer));
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if (n == 0) {
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// stream is empty. return what's leftover.
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CString line = tmpBuffer;
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tmpBuffer.erase();
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return line;
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}
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// append stream data
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tmpBuffer.append(buffer, n);
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}
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}
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CString CHTTPProtocol::readBlock(
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IInputStream* stream,
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UInt32 numBytes,
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CString& tmpBuffer)
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{
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CString data;
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// read numBytes from stream, using whatever is in tmpBuffer as
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// if it were at the head of the stream.
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if (tmpBuffer.size() > 0) {
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// ignore stream if there's enough data in tmpBuffer
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if (tmpBuffer.size() >= numBytes) {
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data = tmpBuffer.substr(0, numBytes);
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tmpBuffer.erase(0, numBytes);
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return data;
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}
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// move everything out of tmpBuffer into data
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data = tmpBuffer;
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tmpBuffer.erase();
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}
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// account for bytes read so far
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assert(data.size() < numBytes);
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numBytes -= data.size();
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// read until we have all the requested data
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while (numBytes > 0) {
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// read max(4096, bytes_left) bytes into buffer
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char buffer[4096];
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UInt32 n = sizeof(buffer);
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if (n > numBytes) {
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n = numBytes;
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}
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n = stream->read(buffer, n);
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// if stream is empty then return what we've got so far
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if (n == 0) {
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break;
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}
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// append stream data
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data.append(buffer, n);
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numBytes -= n;
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}
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return data;
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}
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CString CHTTPProtocol::readChunk(
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IInputStream* stream,
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CString& tmpBuffer)
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{
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CString line;
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// get chunk header
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line = readLine(stream, tmpBuffer);
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// parse chunk size
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UInt32 size;
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{
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std::istringstream s(line);
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s.exceptions(std::ios::goodbit);
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s >> std::hex >> size;
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if (!s) {
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log((CLOG_DEBUG1 "cannot parse chunk size", line.c_str()));
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throw XHTTP(400);
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}
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}
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if (size == 0) {
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return CString();
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}
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// read size bytes
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// FIXME -- check for overly-long requests
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CString data = readBlock(stream, size, tmpBuffer);
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if (data.size() != size) {
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log((CLOG_DEBUG1 "expected/actual chunk size mismatch", size, data.size()));
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throw XHTTP(400);
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}
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// read an discard CRLF
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line = readLine(stream, tmpBuffer);
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if (!line.empty()) {
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log((CLOG_DEBUG1 "missing CRLF after chunk"));
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throw XHTTP(400);
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}
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return data;
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}
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void CHTTPProtocol::readHeaders(
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IInputStream* stream,
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CHTTPRequest* request,
|
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bool isFooter,
|
|
CString& tmpBuffer)
|
|
{
|
|
// parse headers. done with headers when we get a blank line.
|
|
CString line = readLine(stream, tmpBuffer);
|
|
while (!line.empty()) {
|
|
// if line starts with space or tab then append it to the
|
|
// previous header. if there is no previous header then
|
|
// throw.
|
|
if (line[0] == ' ' || line[0] == '\t') {
|
|
if (request->m_headers.size() == 0) {
|
|
log((CLOG_DEBUG1 "first header is a continuation"));
|
|
throw XHTTP(400);
|
|
}
|
|
request->m_headers.back() += ",";
|
|
request->m_headers.back() == line;
|
|
}
|
|
|
|
// line should have the form: <name>:[<value>]
|
|
else {
|
|
// parse
|
|
CString name, value;
|
|
std::istringstream s(line);
|
|
s.exceptions(std::ios::goodbit);
|
|
std::getline(s, name, ':');
|
|
if (!s || !isValidToken(name)) {
|
|
log((CLOG_DEBUG1 "invalid header: %s", line.c_str()));
|
|
throw XHTTP(400);
|
|
}
|
|
std::getline(s, value);
|
|
|
|
// check validity of name
|
|
if (isFooter) {
|
|
// FIXME -- only certain names are allowed in footers
|
|
}
|
|
|
|
// check if we've seen this header before
|
|
CHTTPRequest::CHeaderMap::iterator index =
|
|
request->m_headerIndexByName.find(name);
|
|
if (index == request->m_headerIndexByName.end()) {
|
|
// it's a new header
|
|
request->m_headerIndexByName.insert(std::make_pair(name,
|
|
request->m_headers.size()));
|
|
request->m_headers.push_back(value);
|
|
}
|
|
else {
|
|
// it's an existing header. append value to previous
|
|
// header, separated by a comma.
|
|
request->m_headers[index->second] += ',';
|
|
request->m_headers[index->second] += value;
|
|
}
|
|
}
|
|
|
|
// next header
|
|
line = readLine(stream, tmpBuffer);
|
|
|
|
// FIXME -- should check for overly-long requests
|
|
}
|
|
}
|
|
|
|
bool CHTTPProtocol::isValidToken(const CString& token)
|
|
{
|
|
return (token.find("()<>@,;:\\\"/[]?={} "
|
|
"\0\1\2\3\4\5\6\7"
|
|
"\10\11\12\13\14\15\16\17"
|
|
"\20\21\22\23\24\25\26\27"
|
|
"\30\31\32\33\34\35\36\37\177") == CString::npos);
|
|
}
|