638 lines
18 KiB
C
638 lines
18 KiB
C
/*
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WebDAV property manipulation
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Copyright (C) 2000-2005, Joe Orton <joe@manyfish.co.uk>
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Library General Public
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License as published by the Free Software Foundation; either
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version 2 of the License, or (at your option) any later version.
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This library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Library General Public License for more details.
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You should have received a copy of the GNU Library General Public
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License along with this library; if not, write to the Free
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Software Foundation, Inc., 59 Temple Place - Suite 330, Boston,
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MA 02111-1307, USA
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*/
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#include "config.h"
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#ifdef HAVE_STDLIB_H
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#include <stdlib.h>
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#endif
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#ifdef HAVE_STRING_H
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#include <string.h>
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#endif
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#include "ne_alloc.h"
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#include "ne_xml.h"
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#include "ne_props.h"
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#include "ne_basic.h"
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#include "ne_locks.h"
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#include "ne_i18n.h"
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/* don't store flat props with a value > 10K */
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#define MAX_FLATPROP_LEN (102400)
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#define EOL "\r\n"
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struct ne_propfind_handler_s {
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ne_session *sess;
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ne_request *request;
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int has_props; /* whether we've already written some
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* props to the body. */
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ne_buffer *body;
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ne_207_parser *parser207;
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ne_xml_parser *parser;
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/* Callback to create the private structure. */
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ne_props_create_complex private_creator;
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void *private_userdata;
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/* Current propset, or NULL if none being processed. */
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ne_prop_result_set *current;
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ne_buffer *value; /* current flat property value */
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int depth; /* nesting depth within a flat property */
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ne_props_result callback;
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void *userdata;
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};
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#define ELM_flatprop (NE_207_STATE_TOP - 1)
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/* We build up the results of one 'response' element in memory. */
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struct prop {
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char *name, *nspace, *value, *lang;
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/* Store a ne_propname here too, for convienience. pname.name =
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* name, pname.nspace = nspace, but they are const'ed in pname. */
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ne_propname pname;
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};
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#define NSPACE(x) ((x) ? (x) : "")
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struct propstat {
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struct prop *props;
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int numprops;
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ne_status status;
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};
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/* Results set. */
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struct ne_prop_result_set_s {
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struct propstat *pstats;
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int numpstats, counter;
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void *private;
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char *href;
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};
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#define MAX_PROP_COUNTER (1024)
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static int
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startelm(void *userdata, int state, const char *name, const char *nspace,
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const char **atts);
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static int
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endelm(void *userdata, int state, const char *name, const char *nspace);
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/* Handle character data; flat property value. */
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static int chardata(void *userdata, int state, const char *data, size_t len)
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{
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ne_propfind_handler *hdl = userdata;
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if (state == ELM_flatprop && hdl->value->length < MAX_FLATPROP_LEN)
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ne_buffer_append(hdl->value, data, len);
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return 0;
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}
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ne_xml_parser *ne_propfind_get_parser(ne_propfind_handler *handler)
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{
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return handler->parser;
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}
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ne_request *ne_propfind_get_request(ne_propfind_handler *handler)
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{
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return handler->request;
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}
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static int propfind(ne_propfind_handler *handler,
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ne_props_result results, void *userdata)
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{
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int ret;
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ne_request *req = handler->request;
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/* Register the flat property handler to catch any properties
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* which the user isn't handling as 'complex'. */
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ne_xml_push_handler(handler->parser, startelm, chardata, endelm, handler);
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handler->callback = results;
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handler->userdata = userdata;
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ne_set_request_body_buffer(req, handler->body->data,
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ne_buffer_size(handler->body));
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ne_add_request_header(req, "Content-Type", NE_XML_MEDIA_TYPE);
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ne_add_response_body_reader(req, ne_accept_207, ne_xml_parse_v,
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handler->parser);
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ret = ne_request_dispatch(req);
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if (ret == NE_OK && ne_get_status(req)->klass != 2) {
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ret = NE_ERROR;
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} else if (ne_xml_failed(handler->parser)) {
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ne_set_error(handler->sess, "%s", ne_xml_get_error(handler->parser));
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ret = NE_ERROR;
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}
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return ret;
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}
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static void set_body(ne_propfind_handler *hdl, const ne_propname *names)
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{
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ne_buffer *body = hdl->body;
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int n;
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if (!hdl->has_props) {
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ne_buffer_zappend(body, "<prop>" EOL);
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hdl->has_props = 1;
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}
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for (n = 0; names[n].name != NULL; n++) {
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ne_buffer_concat(body, "<", names[n].name, " xmlns=\"",
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NSPACE(names[n].nspace), "\"/>" EOL, NULL);
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}
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}
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int ne_propfind_allprop(ne_propfind_handler *handler,
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ne_props_result results, void *userdata)
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{
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ne_buffer_zappend(handler->body, "<allprop/></propfind>" EOL);
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return propfind(handler, results, userdata);
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}
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int ne_propfind_named(ne_propfind_handler *handler, const ne_propname *props,
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ne_props_result results, void *userdata)
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{
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set_body(handler, props);
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ne_buffer_zappend(handler->body, "</prop></propfind>" EOL);
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return propfind(handler, results, userdata);
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}
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/* The easy one... PROPPATCH */
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int ne_proppatch(ne_session *sess, const char *uri,
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const ne_proppatch_operation *items)
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{
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ne_request *req = ne_request_create(sess, "PROPPATCH", uri);
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ne_buffer *body = ne_buffer_create();
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int n, ret;
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/* Create the request body */
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ne_buffer_zappend(body, "<?xml version=\"1.0\" encoding=\"utf-8\" ?>" EOL
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"<D:propertyupdate xmlns:D=\"DAV:\">");
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for (n = 0; items[n].name != NULL; n++) {
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const char *elm = (items[n].type == ne_propset) ? "set" : "remove";
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/* <set><prop><prop-name>value</prop-name></prop></set> */
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ne_buffer_concat(body, "<D:", elm, "><D:prop>"
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"<", items[n].name->name, NULL);
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if (items[n].name->nspace) {
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ne_buffer_concat(body, " xmlns=\"", items[n].name->nspace, "\"", NULL);
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}
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if (items[n].type == ne_propset) {
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ne_buffer_concat(body, ">", items[n].value, NULL);
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} else {
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ne_buffer_append(body, ">", 1);
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}
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ne_buffer_concat(body, "</", items[n].name->name, "></D:prop></D:", elm, ">"
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EOL, NULL);
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}
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ne_buffer_zappend(body, "</D:propertyupdate>" EOL);
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ne_set_request_body_buffer(req, body->data, ne_buffer_size(body));
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ne_add_request_header(req, "Content-Type", NE_XML_MEDIA_TYPE);
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#ifdef NE_HAVE_DAV
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ne_lock_using_resource(req, uri, NE_DEPTH_ZERO);
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#endif
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ret = ne_simple_request(sess, req);
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ne_buffer_destroy(body);
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return ret;
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}
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/* Compare two property names. */
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static int pnamecmp(const ne_propname *pn1, const ne_propname *pn2)
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{
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if (pn1->nspace == NULL && pn2->nspace != NULL) {
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return 1;
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} else if (pn1->nspace != NULL && pn2->nspace == NULL) {
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return -1;
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} else if (pn1->nspace == NULL) {
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return strcmp(pn1->name, pn2->name);
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} else {
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return (strcmp(pn1->nspace, pn2->nspace) ||
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strcmp(pn1->name, pn2->name));
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}
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}
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/* Find property in 'set' with name 'pname'. If found, set pstat_ret
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* to the containing propstat, likewise prop_ret, and returns zero.
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* If not found, returns non-zero. */
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static int findprop(const ne_prop_result_set *set, const ne_propname *pname,
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struct propstat **pstat_ret, struct prop **prop_ret)
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{
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int ps, p;
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for (ps = 0; ps < set->numpstats; ps++) {
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for (p = 0; p < set->pstats[ps].numprops; p++) {
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struct prop *prop = &set->pstats[ps].props[p];
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if (pnamecmp(&prop->pname, pname) == 0) {
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if (pstat_ret != NULL)
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*pstat_ret = &set->pstats[ps];
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if (prop_ret != NULL)
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*prop_ret = prop;
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return 0;
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}
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}
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}
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return -1;
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}
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const char *ne_propset_value(const ne_prop_result_set *set,
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const ne_propname *pname)
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{
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struct prop *prop;
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if (findprop(set, pname, NULL, &prop)) {
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return NULL;
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} else {
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return prop->value;
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}
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}
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const char *ne_propset_lang(const ne_prop_result_set *set,
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const ne_propname *pname)
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{
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struct prop *prop;
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if (findprop(set, pname, NULL, &prop)) {
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return NULL;
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} else {
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return prop->lang;
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}
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}
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void *ne_propfind_current_private(ne_propfind_handler *handler)
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{
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return handler->current ? handler->current->private : NULL;
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}
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void *ne_propset_private(const ne_prop_result_set *set)
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{
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return set->private;
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}
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int ne_propset_iterate(const ne_prop_result_set *set,
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ne_propset_iterator iterator, void *userdata)
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{
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int ps, p;
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for (ps = 0; ps < set->numpstats; ps++) {
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for (p = 0; p < set->pstats[ps].numprops; p++) {
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struct prop *prop = &set->pstats[ps].props[p];
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int ret = iterator(userdata, &prop->pname, prop->value,
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&set->pstats[ps].status);
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if (ret)
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return ret;
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}
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}
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return 0;
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}
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const ne_status *ne_propset_status(const ne_prop_result_set *set,
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const ne_propname *pname)
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{
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struct propstat *pstat;
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if (findprop(set, pname, &pstat, NULL)) {
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/* TODO: it is tempting to return a dummy status object here
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* rather than NULL, which says "Property result was not given
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* by server." but I'm not sure if this is best left to the
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* client. */
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return NULL;
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} else {
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return &pstat->status;
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}
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}
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static void *start_response(void *userdata, const char *href)
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{
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ne_prop_result_set *set = ne_calloc(sizeof(*set));
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ne_propfind_handler *hdl = userdata;
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set->href = ne_strdup(href);
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if (hdl->private_creator != NULL) {
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set->private = hdl->private_creator(hdl->private_userdata, href);
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}
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hdl->current = set;
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return set;
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}
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static void *start_propstat(void *userdata, void *response)
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{
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ne_prop_result_set *set = response;
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ne_propfind_handler *hdl = userdata;
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struct propstat *pstat;
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int n;
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if (++hdl->current->counter == MAX_PROP_COUNTER) {
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ne_xml_set_error(hdl->parser, _("Response exceeds maximum property count"));
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return NULL;
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}
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n = set->numpstats;
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set->pstats = ne_realloc(set->pstats, sizeof(struct propstat) * (n+1));
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set->numpstats = n+1;
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pstat = &set->pstats[n];
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memset(pstat, 0, sizeof(*pstat));
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/* And return this as the new pstat. */
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return &set->pstats[n];
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}
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static int startelm(void *userdata, int parent,
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const char *nspace, const char *name, const char **atts)
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{
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ne_propfind_handler *hdl = userdata;
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struct propstat *pstat = ne_207_get_current_propstat(hdl->parser207);
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struct prop *prop;
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int n;
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const char *lang;
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/* Just handle all children of propstat and their descendants. */
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if ((parent != NE_207_STATE_PROP && parent != ELM_flatprop)
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|| pstat == NULL)
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return NE_XML_DECLINE;
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if (parent == ELM_flatprop) {
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/* collecting the flatprop value. */
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hdl->depth++;
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if (hdl->value->used < MAX_FLATPROP_LEN)
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ne_buffer_concat(hdl->value, "<", name, ">", NULL);
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return ELM_flatprop;
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}
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/* Enforce maximum number of properties per resource to prevent a
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* memory exhaustion attack by a hostile server. */
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if (++hdl->current->counter == MAX_PROP_COUNTER) {
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ne_xml_set_error(hdl->parser, _("Response exceeds maximum property count"));
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return NE_XML_ABORT;
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}
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/* Add a property to this propstat */
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n = pstat->numprops;
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pstat->props = ne_realloc(pstat->props, sizeof(struct prop) * (n + 1));
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pstat->numprops = n+1;
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/* Fill in the new property. */
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prop = &pstat->props[n];
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prop->pname.name = prop->name = ne_strdup(name);
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if (nspace[0] == '\0') {
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prop->pname.nspace = prop->nspace = NULL;
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} else {
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prop->pname.nspace = prop->nspace = ne_strdup(nspace);
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}
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prop->value = NULL;
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NE_DEBUG(NE_DBG_XML, "Got property #%d: {%s}%s.\n", n,
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NSPACE(prop->nspace), prop->name);
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/* This is under discussion at time of writing (April '01), and it
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* looks like we need to retrieve the xml:lang property from any
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* element here or above.
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*
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* Also, I think we might need attribute namespace handling here. */
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lang = ne_xml_get_attr(hdl->parser, atts, NULL, "xml:lang");
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if (lang != NULL) {
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prop->lang = ne_strdup(lang);
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NE_DEBUG(NE_DBG_XML, "Property language is %s\n", prop->lang);
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} else {
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prop->lang = NULL;
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}
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hdl->depth = 0;
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return ELM_flatprop;
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}
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static int endelm(void *userdata, int state,
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const char *nspace, const char *name)
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{
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ne_propfind_handler *hdl = userdata;
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struct propstat *pstat = ne_207_get_current_propstat(hdl->parser207);
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int n;
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if (hdl->depth > 0) {
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/* nested. */
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if (hdl->value->used < MAX_FLATPROP_LEN)
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ne_buffer_concat(hdl->value, "</", name, ">", NULL);
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hdl->depth--;
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} else {
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/* end of the current property value */
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n = pstat->numprops - 1;
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pstat->props[n].value = ne_buffer_finish(hdl->value);
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hdl->value = ne_buffer_create();
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}
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return 0;
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}
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static void end_propstat(void *userdata, void *pstat_v,
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const ne_status *status,
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const char *description)
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{
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struct propstat *pstat = pstat_v;
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/* Nothing to do if no status was given. */
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if (!status) return;
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/* If we get a non-2xx response back here, we wipe the value for
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* each of the properties in this propstat, so the caller knows to
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* look at the status instead. It's annoying, since for each prop
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* we will have done an unnecessary strdup("") above, but there is
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* no easy way round that given the fact that we don't know
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* whether we've got an error or not till after we get the
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* property element.
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*
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* Interestingly IIS breaks the 2518 DTD and puts the status
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* element first in the propstat. This is useful since then we
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* *do* know whether each subsequent empty prop element means, but
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* we can't rely on that here. */
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if (status->klass != 2) {
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int n;
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for (n = 0; n < pstat->numprops; n++) {
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ne_free(pstat->props[n].value);
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pstat->props[n].value = NULL;
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}
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}
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/* copy the status structure, and dup the reason phrase. */
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pstat->status = *status;
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pstat->status.reason_phrase = ne_strdup(status->reason_phrase);
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}
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/* Frees up a results set */
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static void free_propset(ne_prop_result_set *set)
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{
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int n;
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for (n = 0; n < set->numpstats; n++) {
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int m;
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struct propstat *p = &set->pstats[n];
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for (m = 0; m < p->numprops; m++) {
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NE_FREE(p->props[m].nspace);
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ne_free(p->props[m].name);
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NE_FREE(p->props[m].lang);
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NE_FREE(p->props[m].value);
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}
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|
|
if (p->status.reason_phrase)
|
|
ne_free(p->status.reason_phrase);
|
|
if (p->props)
|
|
ne_free(p->props);
|
|
}
|
|
|
|
if (set->pstats)
|
|
ne_free(set->pstats);
|
|
ne_free(set->href);
|
|
ne_free(set);
|
|
}
|
|
|
|
static void end_response(void *userdata, void *resource,
|
|
const ne_status *status,
|
|
const char *description)
|
|
{
|
|
ne_propfind_handler *handler = userdata;
|
|
ne_prop_result_set *set = resource;
|
|
|
|
/* Pass back the results for this resource. */
|
|
if (handler->callback && set->numpstats > 0)
|
|
handler->callback(handler->userdata, set->href, set);
|
|
|
|
/* Clean up the propset tree we've just built. */
|
|
free_propset(set);
|
|
handler->current = NULL;
|
|
}
|
|
|
|
ne_propfind_handler *
|
|
ne_propfind_create(ne_session *sess, const char *uri, int depth)
|
|
{
|
|
ne_propfind_handler *ret = ne_calloc(sizeof(ne_propfind_handler));
|
|
|
|
ret->parser = ne_xml_create();
|
|
ret->parser207 = ne_207_create(ret->parser, ret);
|
|
ret->sess = sess;
|
|
ret->body = ne_buffer_create();
|
|
ret->request = ne_request_create(sess, "PROPFIND", uri);
|
|
ret->value = ne_buffer_create();
|
|
|
|
ne_add_depth_header(ret->request, depth);
|
|
|
|
ne_207_set_response_handlers(ret->parser207,
|
|
start_response, end_response);
|
|
|
|
ne_207_set_propstat_handlers(ret->parser207, start_propstat,
|
|
end_propstat);
|
|
|
|
/* The start of the request body is fixed: */
|
|
ne_buffer_concat(ret->body,
|
|
"<?xml version=\"1.0\" encoding=\"utf-8\"?>" EOL
|
|
"<propfind xmlns=\"DAV:\">", NULL);
|
|
|
|
return ret;
|
|
}
|
|
|
|
/* Destroy a propfind handler */
|
|
void ne_propfind_destroy(ne_propfind_handler *handler)
|
|
{
|
|
ne_buffer_destroy(handler->value);
|
|
if (handler->current)
|
|
free_propset(handler->current);
|
|
ne_207_destroy(handler->parser207);
|
|
ne_xml_destroy(handler->parser);
|
|
ne_buffer_destroy(handler->body);
|
|
ne_request_destroy(handler->request);
|
|
ne_free(handler);
|
|
}
|
|
|
|
int ne_simple_propfind(ne_session *sess, const char *href, int depth,
|
|
const ne_propname *props,
|
|
ne_props_result results, void *userdata)
|
|
{
|
|
ne_propfind_handler *hdl;
|
|
int ret;
|
|
|
|
hdl = ne_propfind_create(sess, href, depth);
|
|
if (props != NULL) {
|
|
ret = ne_propfind_named(hdl, props, results, userdata);
|
|
} else {
|
|
ret = ne_propfind_allprop(hdl, results, userdata);
|
|
}
|
|
|
|
ne_propfind_destroy(hdl);
|
|
|
|
return ret;
|
|
}
|
|
|
|
int ne_propnames(ne_session *sess, const char *href, int depth,
|
|
ne_props_result results, void *userdata)
|
|
{
|
|
ne_propfind_handler *hdl;
|
|
int ret;
|
|
|
|
hdl = ne_propfind_create(sess, href, depth);
|
|
|
|
ne_buffer_zappend(hdl->body, "<propname/></propfind>");
|
|
|
|
ret = propfind(hdl, results, userdata);
|
|
|
|
ne_propfind_destroy(hdl);
|
|
|
|
return ret;
|
|
}
|
|
|
|
void ne_propfind_set_private(ne_propfind_handler *hdl,
|
|
ne_props_create_complex creator,
|
|
void *userdata)
|
|
{
|
|
hdl->private_creator = creator;
|
|
hdl->private_userdata = userdata;
|
|
}
|