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stdsoap2.cpp
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stdsoap2.cpp
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/*
stdsoap2.c[pp] 2.7.13
gSOAP runtime engine
gSOAP XML Web services tools
Copyright (C) 2000-2008, Robert van Engelen, Genivia Inc., All Rights Reserved.
This part of the software is released under ONE of the following licenses:
GPL, or the gSOAP public license, or Genivia's license for commercial use.
--------------------------------------------------------------------------------
Contributors:
Wind River Systems Inc., for the following additions under gSOAP public license:
- vxWorks compatible
--------------------------------------------------------------------------------
gSOAP public license.
The contents of this file are subject to the gSOAP Public License Version 1.3
(the "License"); you may not use this file except in compliance with the
License. You may obtain a copy of the License at
http://www.cs.fsu.edu/~engelen/soaplicense.html
Software distributed under the License is distributed on an "AS IS" basis,
WITHOUT WARRANTY OF ANY KIND, either express or implied. See the License
for the specific language governing rights and limitations under the License.
The Initial Developer of the Original Code is Robert A. van Engelen.
Copyright (C) 2000-2008, Robert van Engelen, Genivia Inc., All Rights Reserved.
--------------------------------------------------------------------------------
GPL license.
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 2 of 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.
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., 59 Temple
Place, Suite 330, Boston, MA 02111-1307 USA
Author contact information:
engelen@genivia.com / engelen@acm.org
This program is released under the GPL with the additional exemption that
compiling, linking, and/or using OpenSSL is allowed.
--------------------------------------------------------------------------------
A commercial use license is available from Genivia, Inc., contact@genivia.com
--------------------------------------------------------------------------------
Installation note:
Win32 build needs winsock.dll (Visual C++ "wsock32.lib")
To do this in Visual C++ 6.0, go to "Project", "settings", select the "Link"
tab (the project file needs to be selected in the file view) and add
"wsock32.lib" to the "Object/library modules" entry
On Mac OS X with gcc (GCC) 3.1 20020420 (prerelease) you MUST compile with
-fstack_check when using -O2 because gcc 3.1 has a bug that smashes the stack
when locally allocated data exceeds 64K.
*/
#ifdef AS400
# pragma convert(819) /* EBCDIC to ASCII */
#endif
#include "stdsoap2.h"
#ifdef __BORLANDC__
# pragma warn -8060
#else
# ifdef WIN32
# ifdef UNDER_CE
# pragma comment(lib, "winsock.lib")
# else
# pragma comment(lib, "wsock32.lib")
# endif
# pragma warning(disable : 4996) /* disable deprecation warnings */
# endif
#endif
#ifdef __cplusplus
SOAP_SOURCE_STAMP("@(#) stdsoap2.cpp ver 2.7.13 2009-03-21 00:00:00 GMT")
extern "C" {
#else
SOAP_SOURCE_STAMP("@(#) stdsoap2.c ver 2.7.13 2009-03-21 00:00:00 GMT")
#endif
/* 8bit character representing unknown/nonrepresentable character data (e.g. not supported by current locale with multibyte support enabled) */
#ifndef SOAP_UNKNOWN_CHAR
#define SOAP_UNKNOWN_CHAR (127)
#endif
/* EOF=-1 */
#define SOAP_LT (soap_wchar)(-2) /* XML character '<' */
#define SOAP_TT (soap_wchar)(-3) /* XML character '</' */
#define SOAP_GT (soap_wchar)(-4) /* XML character '>' */
#define SOAP_QT (soap_wchar)(-5) /* XML character '"' */
#define SOAP_AP (soap_wchar)(-6) /* XML character ''' */
#define soap_blank(c) ((c) >= 0 && (c) <= 32)
#define soap_notblank(c) ((c) > 32)
#if defined(WIN32) && !defined(UNDER_CE)
#define soap_hash_ptr(p) ((PtrToUlong(p) >> 3) & (SOAP_PTRHASH - 1))
#else
#define soap_hash_ptr(p) ((size_t)(((unsigned long)(p) >> 3) & (SOAP_PTRHASH-1)))
#endif
#ifndef PALM_1
static void soap_init_logs(struct soap*);
#endif
#ifdef SOAP_DEBUG
static void soap_close_logfile(struct soap*, int);
static void soap_set_logfile(struct soap*, int, const char*);
#endif
#ifdef SOAP_MEM_DEBUG
static void soap_init_mht(struct soap*);
static void soap_free_mht(struct soap*);
static void soap_track_unlink(struct soap*, const void*);
#endif
#ifndef PALM_2
static int soap_set_error(struct soap*, const char*, const char*, const char*, const char*, int);
static int soap_copy_fault(struct soap*, const char*, const char*, const char*, const char*);
static int soap_getattrval(struct soap*, char*, size_t, soap_wchar);
#endif
#ifndef PALM_1
static void soap_free_ns(struct soap *soap);
static soap_wchar soap_char(struct soap*);
static soap_wchar soap_get_pi(struct soap*);
static int soap_isxdigit(int);
static void *fplugin(struct soap*, const char*);
static char *soap_get_http_body(struct soap*);
static size_t soap_count_attachments(struct soap *soap);
static int soap_try_connect_command(struct soap*, int http_command, const char *endpoint, const char *action);
#ifndef WITH_NOIDREF
static void soap_update_ptrs(struct soap*, char*, char*, char*, char*);
static int soap_has_copies(struct soap*, const char*, const char*);
static void soap_init_iht(struct soap*);
static void soap_free_iht(struct soap*);
static void soap_init_pht(struct soap*);
static void soap_free_pht(struct soap*);
#endif
#endif
#ifndef WITH_LEAN
static const char *soap_set_validation_fault(struct soap*, const char*, const char*);
static int soap_isnumeric(struct soap*, const char*);
static struct soap_nlist *soap_push_ns(struct soap *soap, const char *id, const char *ns, short utilized);
static void soap_utilize_ns(struct soap *soap, const char *tag, size_t n);
#endif
#ifndef WITH_LEANER
#ifndef PALM_1
static struct soap_multipart *soap_new_multipart(struct soap*, struct soap_multipart**, struct soap_multipart**, char*, size_t);
static int soap_putdimefield(struct soap*, const char*, size_t);
static char *soap_getdimefield(struct soap*, size_t);
static void soap_select_mime_boundary(struct soap*);
static int soap_valid_mime_boundary(struct soap*);
static void soap_resolve_attachment(struct soap*, struct soap_multipart*);
#endif
#endif
#ifdef WITH_GZIP
static int soap_getgziphdr(struct soap*);
#endif
#ifdef WITH_OPENSSL
int soap_ssl_init_done = 0;
static int ssl_auth_init(struct soap*);
static int ssl_verify_callback(int, X509_STORE_CTX*);
static int ssl_verify_callback_allow_expired_certificate(int, X509_STORE_CTX*);
static int ssl_password(char*, int, int, void *);
/* The callback below is included for future references:
static DH *ssl_tmp_dh(SSL*, int, int);
*/
#endif
#if !defined(WITH_NOHTTP) || !defined(WITH_LEANER)
#ifndef PALM_1
static const char *soap_decode(char*, size_t, const char*, const char*);
#endif
#endif
#ifndef WITH_NOHTTP
#ifndef PALM_1
static soap_wchar soap_getchunkchar(struct soap*);
static const char *http_error(struct soap*, int);
static int http_post(struct soap*, const char*, const char*, int, const char*, const char*, size_t);
static int http_get(struct soap*);
static int http_put(struct soap*);
static int http_del(struct soap*);
static int http_head(struct soap*);
static int http_send_header(struct soap*, const char*);
static int http_post_header(struct soap*, const char*, const char*);
static int http_response(struct soap*, int, size_t);
static int http_parse(struct soap*);
static int http_parse_header(struct soap*, const char*, const char*);
#endif
#endif
#ifndef WITH_NOIO
#ifndef PALM_1
static int fsend(struct soap*, const char*, size_t);
static size_t frecv(struct soap*, char*, size_t);
static int tcp_init(struct soap*);
static const char *tcp_error(struct soap*);
#ifndef WITH_IPV6
static int tcp_gethost(struct soap*, const char *addr, struct in_addr *inaddr);
#endif
static SOAP_SOCKET tcp_connect(struct soap*, const char *endpoint, const char *host, int port);
static SOAP_SOCKET tcp_accept(struct soap*, SOAP_SOCKET, struct sockaddr*, int*);
static int tcp_disconnect(struct soap*);
static int tcp_closesocket(struct soap*, SOAP_SOCKET);
static int tcp_shutdownsocket(struct soap*, SOAP_SOCKET, int);
static const char *soap_strerror(struct soap*);
#endif
#if defined(WIN32)
#define SOAP_SOCKBLOCK(fd) \
{ u_long blocking = 0; \
ioctlsocket(fd, FIONBIO, &blocking); \
}
#define SOAP_SOCKNONBLOCK(fd) \
{ u_long nonblocking = 1; \
ioctlsocket(fd, FIONBIO, &nonblocking); \
}
#elif defined(VXWORKS)
#define SOAP_SOCKBLOCK(fd) \
{ u_long blocking = 0; \
ioctl(fd, FIONBIO, (int)(&blocking)); \
}
#define SOAP_SOCKNONBLOCK(fd) \
{ u_long nonblocking = 1; \
ioctl(fd, FIONBIO, (int)(&nonblocking)); \
}
#elif defined(PALM)
#define SOAP_SOCKBLOCK(fd) fcntl(fd, F_SETFL, fcntl(fd, F_GETFL, 0)&~O_NONBLOCK);
#define SOAP_SOCKNONBLOCK(fd) fcntl(fd, F_SETFL, fcntl(fd, F_GETFL, 0)|O_NONBLOCK);
#elif defined(SYMBIAN)
#define SOAP_SOCKBLOCK(fd) \
{ long blocking = 0; \
ioctl(fd, 0/*FIONBIO*/, &blocking); \
}
#define SOAP_SOCKNONBLOCK(fd) \
{ long nonblocking = 1; \
ioctl(fd, 0/*FIONBIO*/, &nonblocking); \
}
#else
#define SOAP_SOCKBLOCK(fd) fcntl(fd, F_SETFL, fcntl(fd, F_GETFL)&~O_NONBLOCK);
#define SOAP_SOCKNONBLOCK(fd) fcntl(fd, F_SETFL, fcntl(fd, F_GETFL)|O_NONBLOCK);
#endif
#endif
#if defined(PALM) && !defined(PALM_2)
unsigned short errno;
#endif
#ifndef PALM_1
static const char soap_env1[42] = "http://schemas.xmlsoap.org/soap/envelope/";
static const char soap_enc1[42] = "http://schemas.xmlsoap.org/soap/encoding/";
static const char soap_env2[40] = "http://www.w3.org/2003/05/soap-envelope";
static const char soap_enc2[40] = "http://www.w3.org/2003/05/soap-encoding";
static const char soap_rpc[35] = "http://www.w3.org/2003/05/soap-rpc";
#endif
#ifndef PALM_1
const struct soap_double_nan soap_double_nan = {0xFFFFFFFF, 0xFFFFFFFF};
static const char soap_base64o[65] = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
static const char soap_base64i[81] = "\76XXX\77\64\65\66\67\70\71\72\73\74\75XXXXXXX\00\01\02\03\04\05\06\07\10\11\12\13\14\15\16\17\20\21\22\23\24\25\26\27\30\31XXXXXX\32\33\34\35\36\37\40\41\42\43\44\45\46\47\50\51\52\53\54\55\56\57\60\61\62\63";
#endif
#ifndef WITH_LEAN
static const char soap_indent[11] = "\n\t\t\t\t\t\t\t\t\t";
/* Alternative indentation form for SOAP_XML_INDENT:
static const char soap_indent[21] = "\n ";
*/
#endif
#ifndef SOAP_CANARY
# define SOAP_CANARY (0xC0DE)
#endif
static const char soap_padding[4] = "\0\0\0";
#define SOAP_STR_PADDING (soap_padding)
#define SOAP_STR_EOS (soap_padding)
#define SOAP_NON_NULL (soap_padding)
#ifndef WITH_LEAN
static const struct soap_code_map html_entity_codes[] = /* entities for XHTML parsing */
{ { 160, "nbsp" },
{ 161, "iexcl" },
{ 162, "cent" },
{ 163, "pound" },
{ 164, "curren" },
{ 165, "yen" },
{ 166, "brvbar" },
{ 167, "sect" },
{ 168, "uml" },
{ 169, "copy" },
{ 170, "ordf" },
{ 171, "laquo" },
{ 172, "not" },
{ 173, "shy" },
{ 174, "reg" },
{ 175, "macr" },
{ 176, "deg" },
{ 177, "plusmn" },
{ 178, "sup2" },
{ 179, "sup3" },
{ 180, "acute" },
{ 181, "micro" },
{ 182, "para" },
{ 183, "middot" },
{ 184, "cedil" },
{ 185, "sup1" },
{ 186, "ordm" },
{ 187, "raquo" },
{ 188, "frac14" },
{ 189, "frac12" },
{ 190, "frac34" },
{ 191, "iquest" },
{ 192, "Agrave" },
{ 193, "Aacute" },
{ 194, "Acirc" },
{ 195, "Atilde" },
{ 196, "Auml" },
{ 197, "Aring" },
{ 198, "AElig" },
{ 199, "Ccedil" },
{ 200, "Egrave" },
{ 201, "Eacute" },
{ 202, "Ecirc" },
{ 203, "Euml" },
{ 204, "Igrave" },
{ 205, "Iacute" },
{ 206, "Icirc" },
{ 207, "Iuml" },
{ 208, "ETH" },
{ 209, "Ntilde" },
{ 210, "Ograve" },
{ 211, "Oacute" },
{ 212, "Ocirc" },
{ 213, "Otilde" },
{ 214, "Ouml" },
{ 215, "times" },
{ 216, "Oslash" },
{ 217, "Ugrave" },
{ 218, "Uacute" },
{ 219, "Ucirc" },
{ 220, "Uuml" },
{ 221, "Yacute" },
{ 222, "THORN" },
{ 223, "szlig" },
{ 224, "agrave" },
{ 225, "aacute" },
{ 226, "acirc" },
{ 227, "atilde" },
{ 228, "auml" },
{ 229, "aring" },
{ 230, "aelig" },
{ 231, "ccedil" },
{ 232, "egrave" },
{ 233, "eacute" },
{ 234, "ecirc" },
{ 235, "euml" },
{ 236, "igrave" },
{ 237, "iacute" },
{ 238, "icirc" },
{ 239, "iuml" },
{ 240, "eth" },
{ 241, "ntilde" },
{ 242, "ograve" },
{ 243, "oacute" },
{ 244, "ocirc" },
{ 245, "otilde" },
{ 246, "ouml" },
{ 247, "divide" },
{ 248, "oslash" },
{ 249, "ugrave" },
{ 250, "uacute" },
{ 251, "ucirc" },
{ 252, "uuml" },
{ 253, "yacute" },
{ 254, "thorn" },
{ 255, "yuml" },
{ 0, NULL }
};
#endif
#ifndef WITH_NOIO
#ifndef WITH_LEAN
static const struct soap_code_map h_error_codes[] =
{
#ifdef HOST_NOT_FOUND
{ HOST_NOT_FOUND, "Host not found" },
#endif
#ifdef TRY_AGAIN
{ TRY_AGAIN, "Try Again" },
#endif
#ifdef NO_RECOVERY
{ NO_RECOVERY, "No Recovery" },
#endif
#ifdef NO_DATA
{ NO_DATA, "No Data" },
#endif
#ifdef NO_ADDRESS
{ NO_ADDRESS, "No Address" },
#endif
{ 0, NULL }
};
#endif
#endif
#ifndef WITH_NOHTTP
#ifndef WITH_LEAN
static const struct soap_code_map h_http_error_codes[] =
{ { 200, "OK" },
{ 201, "Created" },
{ 202, "Accepted" },
{ 203, "Non-Authoritative Information" },
{ 204, "No Content" },
{ 205, "Reset Content" },
{ 206, "Partial Content" },
{ 300, "Multiple Choices" },
{ 301, "Moved Permanently" },
{ 302, "Found" },
{ 303, "See Other" },
{ 304, "Not Modified" },
{ 305, "Use Proxy" },
{ 307, "Temporary Redirect" },
{ 400, "Bad Request" },
{ 401, "Unauthorized" },
{ 402, "Payment Required" },
{ 403, "Forbidden" },
{ 404, "Not Found" },
{ 405, "Method Not Allowed" },
{ 406, "Not Acceptable" },
{ 407, "Proxy Authentication Required" },
{ 408, "Request Time-out" },
{ 409, "Conflict" },
{ 410, "Gone" },
{ 411, "Length Required" },
{ 412, "Precondition Failed" },
{ 413, "Request Entity Too Large" },
{ 414, "Request-URI Too Large" },
{ 415, "Unsupported Media Type" },
{ 416, "Requested range not satisfiable" },
{ 417, "Expectation Failed" },
{ 500, "Internal Server Error" },
{ 501, "Not Implemented" },
{ 502, "Bad Gateway" },
{ 503, "Service Unavailable" },
{ 504, "Gateway Time-out" },
{ 505, "HTTP Version not supported" },
{ 0, NULL }
};
#endif
#endif
#ifdef WITH_OPENSSL
static const struct soap_code_map h_ssl_error_codes[] =
{
#define _SSL_ERROR(e) { e, #e }
_SSL_ERROR(SSL_ERROR_SSL),
_SSL_ERROR(SSL_ERROR_ZERO_RETURN),
_SSL_ERROR(SSL_ERROR_WANT_READ),
_SSL_ERROR(SSL_ERROR_WANT_WRITE),
_SSL_ERROR(SSL_ERROR_WANT_CONNECT),
_SSL_ERROR(SSL_ERROR_WANT_X509_LOOKUP),
_SSL_ERROR(SSL_ERROR_SYSCALL),
{ 0, NULL }
};
#endif
#ifndef WITH_LEANER
static const struct soap_code_map mime_codes[] =
{ { SOAP_MIME_7BIT, "7bit" },
{ SOAP_MIME_8BIT, "8bit" },
{ SOAP_MIME_BINARY, "binary" },
{ SOAP_MIME_QUOTED_PRINTABLE, "quoted-printable" },
{ SOAP_MIME_BASE64, "base64" },
{ SOAP_MIME_IETF_TOKEN, "ietf-token" },
{ SOAP_MIME_X_TOKEN, "x-token" },
{ 0, NULL }
};
#endif
#ifdef WIN32
static int tcp_done = 0;
#endif
#if defined(HP_UX) && defined(HAVE_GETHOSTBYNAME_R)
extern int h_errno;
#endif
/******************************************************************************/
#ifndef WITH_NOIO
#ifndef PALM_1
static int
fsend(struct soap *soap, const char *s, size_t n)
{ register int nwritten, err;
#if defined(__cplusplus) && !defined(WITH_LEAN) && !defined(WITH_COMPAT)
if (soap->os)
{ soap->os->write(s, (std::streamsize)n);
if (soap->os->good())
return SOAP_OK;
soap->errnum = 0;
return SOAP_EOF;
}
#endif
while (n)
{ if (soap_valid_socket(soap->socket))
{
#ifndef WITH_LEAN
if (soap->send_timeout)
{
#ifndef WIN32
if ((int)soap->socket >= (int)FD_SETSIZE)
return SOAP_FD_EXCEEDED; /* Hint: MUST increase FD_SETSIZE */
#endif
for (;;)
{ struct timeval timeout;
fd_set fd;
register int r;
if (soap->send_timeout > 0)
{ timeout.tv_sec = soap->send_timeout;
timeout.tv_usec = 0;
}
else
{ timeout.tv_sec = -soap->send_timeout/1000000;
timeout.tv_usec = -soap->send_timeout%1000000;
}
FD_ZERO(&fd);
FD_SET(soap->socket, &fd);
#ifdef WITH_OPENSSL
if (soap->ssl)
r = select((int)soap->socket + 1, &fd, &fd, &fd, &timeout);
else
#endif
r = select((int)soap->socket + 1, NULL, &fd, &fd, &timeout);
if (r > 0)
break;
if (!r)
{ soap->errnum = 0;
return SOAP_EOF;
}
err = soap_socket_errno(soap->socket);
if (err != SOAP_EINTR && err != SOAP_EAGAIN && err != SOAP_EWOULDBLOCK)
{ soap->errnum = err;
return SOAP_EOF;
}
}
}
#endif
#ifdef WITH_OPENSSL
if (soap->ssl)
nwritten = SSL_write(soap->ssl, s, (int)n);
else if (soap->bio)
nwritten = BIO_write(soap->bio, s, (int)n);
else
#endif
#ifndef WITH_LEAN
if ((soap->omode & SOAP_IO_UDP))
{ if (soap->peerlen)
nwritten = sendto(soap->socket, (char*)s, (SOAP_WINSOCKINT)n, soap->socket_flags, (struct sockaddr*)&soap->peer, (SOAP_WINSOCKINT)soap->peerlen);
else
nwritten = send(soap->socket, s, (SOAP_WINSOCKINT)n, soap->socket_flags);
/* retry and back-off algorithm */
/* TODO: this is not very clear from specs so verify and limit conditions under which we should loop (e.g. ENOBUFS) */
if (nwritten < 0)
{ struct timeval timeout;
fd_set fd;
int udp_repeat;
int udp_delay;
#ifndef WIN32
if ((int)soap->socket >= (int)FD_SETSIZE)
return SOAP_FD_EXCEEDED; /* Hint: MUST increase FD_SETSIZE */
#endif
if ((soap->connect_flags & SO_BROADCAST))
udp_repeat = 3; /* SOAP-over-UDP MULTICAST_UDP_REPEAT - 1 */
else
udp_repeat = 1; /* SOAP-over-UDP UNICAST_UDP_REPEAT - 1 */
udp_delay = (soap_random % 201) + 50; /* UDP_MIN_DELAY .. UDP_MAX_DELAY */
do
{ timeout.tv_sec = 0;
timeout.tv_usec = 1000 * udp_delay; /* ms */
FD_ZERO(&fd);
FD_SET(soap->socket, &fd);
select((int)soap->socket + 1, NULL, NULL, &fd, &timeout);
if (soap->peerlen)
nwritten = sendto(soap->socket, s, (SOAP_WINSOCKINT)n, soap->socket_flags, (struct sockaddr*)&soap->peer, (SOAP_WINSOCKINT)soap->peerlen);
else
nwritten = send(soap->socket, s, (SOAP_WINSOCKINT)n, soap->socket_flags);
udp_delay <<= 1;
if (udp_delay > 500) /* UDP_UPPER_DELAY */
udp_delay = 500;
}
while (nwritten < 0 && --udp_repeat > 0);
}
}
else
#endif
#if !defined(PALM) && !defined(AS400)
nwritten = send(soap->socket, s, (int)n, soap->socket_flags);
#else
nwritten = send(soap->socket, (void*)s, n, soap->socket_flags);
#endif
if (nwritten <= 0)
{
#if defined(WITH_OPENSSL) || !defined(WITH_LEAN)
register int r = 0;
#endif
err = soap_socket_errno(soap->socket);
#ifdef WITH_OPENSSL
if (soap->ssl && (r = SSL_get_error(soap->ssl, nwritten)) != SSL_ERROR_NONE && r != SSL_ERROR_WANT_READ && r != SSL_ERROR_WANT_WRITE)
{ soap->errnum = err;
return SOAP_EOF;
}
#endif
if (err == SOAP_EWOULDBLOCK || err == SOAP_EAGAIN)
{
#ifndef WITH_LEAN
struct timeval timeout;
fd_set fd;
#ifndef WIN32
if ((int)soap->socket >= (int)FD_SETSIZE)
return SOAP_FD_EXCEEDED; /* Hint: MUST increase FD_SETSIZE */
#endif
if (soap->send_timeout > 0)
{ timeout.tv_sec = soap->send_timeout;
timeout.tv_usec = 0;
}
else if (soap->send_timeout < 0)
{ timeout.tv_sec = -soap->send_timeout/1000000;
timeout.tv_usec = -soap->send_timeout%1000000;
}
else
{ timeout.tv_sec = 0;
timeout.tv_usec = 10000;
}
FD_ZERO(&fd);
FD_SET(soap->socket, &fd);
#ifdef WITH_OPENSSL
if (soap->ssl && r == SSL_ERROR_WANT_READ)
r = select((int)soap->socket + 1, &fd, NULL, &fd, &timeout);
else
r = select((int)soap->socket + 1, NULL, &fd, &fd, &timeout);
#else
r = select((int)soap->socket + 1, NULL, &fd, &fd, &timeout);
#endif
if (!r && soap->send_timeout)
{ soap->errnum = 0;
return SOAP_EOF;
}
if (r < 0 && (r = soap_socket_errno(soap->socket)) != SOAP_EINTR)
{ soap->errnum = r;
return SOAP_EOF;
}
#endif
}
else if (err && err != SOAP_EINTR)
{ soap->errnum = err;
return SOAP_EOF;
}
nwritten = 0; /* and call write() again */
}
}
else
{
#ifdef WITH_FASTCGI
nwritten = fwrite((void*)s, 1, n, stdout);
fflush(stdout);
#else
#ifdef UNDER_CE
nwritten = fwrite(s, 1, n, soap->sendfd);
#else
#ifdef VXWORKS
#ifdef WMW_RPM_IO
if (soap->rpmreqid)
nwritten = (httpBlockPut(soap->rpmreqid, s, n) == 0) ? n : -1;
else
#endif
nwritten = fwrite(s, sizeof(char), n, fdopen(soap->sendfd, "w"));
#else
#ifdef WIN32
nwritten = _write(soap->sendfd, s, (unsigned int)n);
#else
nwritten = write(soap->sendfd, s, (unsigned int)n);
#endif
#endif
#endif
#endif
if (nwritten <= 0)
{
#ifndef WITH_FASTCGI
err = soap_errno;
#else
err = EOF;
#endif
if (err && err != SOAP_EINTR && err != SOAP_EWOULDBLOCK && err != SOAP_EAGAIN)
{ soap->errnum = err;
return SOAP_EOF;
}
nwritten = 0; /* and call write() again */
}
}
n -= nwritten;
s += nwritten;
}
return SOAP_OK;
}
#endif
#endif
/******************************************************************************/
#ifndef PALM_1
SOAP_FMAC1
int
SOAP_FMAC2
soap_send_raw(struct soap *soap, const char *s, size_t n)
{ if (!n)
return SOAP_OK;
if (soap->mode & SOAP_IO_LENGTH)
{ soap->count += n;
#ifndef WITH_LEANER
if (soap->fpreparesend && (soap->mode & SOAP_IO) != SOAP_IO_STORE)
return soap->error = soap->fpreparesend(soap, s, n);
#endif
return SOAP_OK;
}
if (soap->mode & SOAP_IO)
{ register size_t i = SOAP_BUFLEN - soap->bufidx;
while (n >= i)
{ memcpy(soap->buf + soap->bufidx, s, i);
soap->bufidx = SOAP_BUFLEN;
if (soap_flush(soap))
return soap->error;
s += i;
n -= i;
i = SOAP_BUFLEN;
}
memcpy(soap->buf + soap->bufidx, s, n);
soap->bufidx += n;
return SOAP_OK;
}
return soap_flush_raw(soap, s, n);
}
#endif
/******************************************************************************/
#ifndef PALM_1
SOAP_FMAC1
int
SOAP_FMAC2
soap_flush(struct soap *soap)
{ register size_t n = soap->bufidx;
if (n)
{ soap->bufidx = 0;
#ifdef WITH_ZLIB
if (soap->mode & SOAP_ENC_ZLIB)
{ soap->d_stream->next_in = (Byte*)soap->buf;
soap->d_stream->avail_in = (unsigned int)n;
#ifdef WITH_GZIP
soap->z_crc = crc32(soap->z_crc, (Byte*)soap->buf, (unsigned int)n);
#endif
do
{ DBGLOG(TEST, SOAP_MESSAGE(fdebug, "Deflating %u bytes\n", soap->d_stream->avail_in));
if (deflate(soap->d_stream, Z_NO_FLUSH) != Z_OK)
{ DBGLOG(TEST, SOAP_MESSAGE(fdebug, "Unable to deflate: %s\n", soap->d_stream->msg?soap->d_stream->msg:SOAP_STR_EOS));
return soap->error = SOAP_ZLIB_ERROR;
}
if (!soap->d_stream->avail_out)
{ if (soap_flush_raw(soap, soap->z_buf, SOAP_BUFLEN))
return soap->error;
soap->d_stream->next_out = (Byte*)soap->z_buf;
soap->d_stream->avail_out = SOAP_BUFLEN;
}
} while (soap->d_stream->avail_in);
}
else
#endif
return soap_flush_raw(soap, soap->buf, n);
}
return SOAP_OK;
}
#endif
/******************************************************************************/
#ifndef PALM_1
SOAP_FMAC1
int
SOAP_FMAC2
soap_flush_raw(struct soap *soap, const char *s, size_t n)
{ if ((soap->mode & SOAP_IO) == SOAP_IO_STORE)
{ register char *t;
if (!(t = (char*)soap_push_block(soap, NULL, n)))
return soap->error = SOAP_EOM;
memcpy(t, s, n);
#ifndef WITH_LEANER
if (soap->fpreparesend)
return soap->error = soap->fpreparesend(soap, s, n);
#endif
return SOAP_OK;
}
#ifndef WITH_LEANER
if ((soap->mode & SOAP_IO) == SOAP_IO_CHUNK)
{ char t[16];
sprintf(t, "\r\n%lX\r\n" + (soap->chunksize ? 0 : 2), (unsigned long)n);
DBGMSG(SENT, t, strlen(t));
if ((soap->error = soap->fsend(soap, t, strlen(t))))
return soap->error;
soap->chunksize += n;
}
DBGMSG(SENT, s, n);
#endif
return soap->error = soap->fsend(soap, s, n);
}
#endif
/******************************************************************************/
#ifndef PALM_1
SOAP_FMAC1
int
SOAP_FMAC2
soap_send(struct soap *soap, const char *s)
{ if (s)
return soap_send_raw(soap, s, strlen(s));
return SOAP_OK;
}
#endif
/******************************************************************************/
#ifndef WITH_LEANER
#ifndef PALM_1
SOAP_FMAC1
int
SOAP_FMAC2
soap_send2(struct soap *soap, const char *s1, const char *s2)
{ if (soap_send(soap, s1))
return soap->error;
return soap_send(soap, s2);
}
#endif
#endif
/******************************************************************************/
#ifndef WITH_LEANER
#ifndef PALM_1
SOAP_FMAC1
int
SOAP_FMAC2
soap_send3(struct soap *soap, const char *s1, const char *s2, const char *s3)
{ if (soap_send(soap, s1)
|| soap_send(soap, s2))
return soap->error;
return soap_send(soap, s3);
}
#endif
#endif
/******************************************************************************/
#ifndef WITH_NOIO
#ifndef PALM_1
static size_t
frecv(struct soap *soap, char *s, size_t n)
{ register int r;
#ifndef WITH_LEAN
register int retries = 100; /* max 100 retries with non-blocking sockets */
#endif
soap->errnum = 0;
#if defined(__cplusplus) && !defined(WITH_LEAN) && !defined(WITH_COMPAT)
if (soap->is)
{ if (soap->is->good())
return soap->is->read(s, (std::streamsize)n).gcount();
return 0;
}
#endif
if (soap_valid_socket(soap->socket))
{ for (;;)
{
#ifdef WITH_OPENSSL
register int err = 0;
#endif
#ifndef WITH_LEAN
#ifdef WITH_OPENSSL
if (soap->recv_timeout && !soap->ssl) /* SSL: sockets are nonblocking */
#else
if (soap->recv_timeout)
#endif
{
#ifndef WIN32
if ((int)soap->socket >= (int)FD_SETSIZE)
{ soap->error = SOAP_FD_EXCEEDED;
return 0; /* Hint: MUST increase FD_SETSIZE */
}
#endif
for (;;)
{ struct timeval timeout;
fd_set fd;
if (soap->recv_timeout > 0)
{ timeout.tv_sec = soap->recv_timeout;
timeout.tv_usec = 0;
}
else
{ timeout.tv_sec = -soap->recv_timeout/1000000;
timeout.tv_usec = -soap->recv_timeout%1000000;
}
FD_ZERO(&fd);
FD_SET(soap->socket, &fd);
r = select((int)soap->socket + 1, &fd, NULL, &fd, &timeout);
if (r > 0)
break;
if (!r)
{ soap->errnum = 0;
return 0;
}
r = soap_socket_errno(soap->socket);
if (r != SOAP_EINTR && r != SOAP_EAGAIN && r != SOAP_EWOULDBLOCK)
{ soap->errnum = r;
return 0;
}
}
}
#endif
#ifdef WITH_OPENSSL
if (soap->ssl)
{ r = SSL_read(soap->ssl, s, (int)n);
if (r > 0)
return (size_t)r;
err = SSL_get_error(soap->ssl, r);
if (err != SSL_ERROR_NONE && err != SSL_ERROR_WANT_READ && err != SSL_ERROR_WANT_WRITE)
return 0;
}
else if (soap->bio)
{ r = BIO_read(soap->bio, s, (int)n);
if (r > 0)
return (size_t)r;
return 0;
}
else
#endif
{
#ifndef WITH_LEAN
if ((soap->omode & SOAP_IO_UDP))
{ SOAP_SOCKLEN_T k = (SOAP_SOCKLEN_T)sizeof(soap->peer);
memset((void*)&soap->peer, 0, sizeof(soap->peer));
r = recvfrom(soap->socket, s, (SOAP_WINSOCKINT)n, soap->socket_flags, (struct sockaddr*)&soap->peer, &k); /* portability note: see SOAP_SOCKLEN_T definition in stdsoap2.h */
soap->peerlen = (size_t)k;
#ifndef WITH_IPV6
soap->ip = ntohl(soap->peer.sin_addr.s_addr);
#endif
}
else
#endif
r = recv(soap->socket, s, (int)n, soap->socket_flags);
#ifdef PALM
/* CycleSyncDisplay(curStatusMsg); */
#endif
if (r >= 0)
return (size_t)r;
r = soap_socket_errno(soap->socket);
if (r != SOAP_EINTR && r != SOAP_EAGAIN && r != SOAP_EWOULDBLOCK)
{ soap->errnum = r;
return 0;
}
}
#ifndef WITH_LEAN
{ struct timeval timeout;
fd_set fd;
if (soap->recv_timeout > 0)
{ timeout.tv_sec = soap->recv_timeout;
timeout.tv_usec = 0;
}
else if (soap->recv_timeout < 0)
{ timeout.tv_sec = -soap->recv_timeout/1000000;
timeout.tv_usec = -soap->recv_timeout%1000000;
}
else
{ timeout.tv_sec = 5;
timeout.tv_usec = 0;
}
#ifndef WIN32
if ((int)soap->socket >= (int)FD_SETSIZE)
{ soap->error = SOAP_FD_EXCEEDED;
return 0; /* Hint: MUST increase FD_SETSIZE */
}
#endif
FD_ZERO(&fd);
FD_SET(soap->socket, &fd);
#ifdef WITH_OPENSSL