forked from Mirrors/freeswitch
38b306b6fe
git-svn-id: http://svn.freeswitch.org/svn/freeswitch/trunk@8558 d0543943-73ff-0310-b7d9-9358b9ac24b2
606 lines
17 KiB
C
606 lines
17 KiB
C
/* Make an XML-RPC call.
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User specifies details of the call on the command line.
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We print the result on Standard Output.
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Example:
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$ xmlrpc http://localhost:8080/RPC2 sample.add i/3 i/5
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Result:
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Integer: 8
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$ xmlrpc localhost:8080 sample.add i/3 i/5
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Result:
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Integer: 8
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This is just the beginnings of this program. It should be extended
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to deal with all types of parameters and results.
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An example of a good syntax for parameters would be:
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$ xmlrpc http://www.oreillynet.com/meerkat/xml-rpc/server.php \
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meerkat.getItems \
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struct/{search:linux,descriptions:i/76,time_period:12hour}
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Result:
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Array:
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Struct:
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title: String: DatabaseJournal: OpenEdge-Based Finance ...
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link: String: http://linuxtoday.com/news_story.php3?ltsn=...
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description: String: "Finance application with embedded ...
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Struct:
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title: ...
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link: ...
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description: ...
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*/
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//#define _GNU_SOURCE
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include <errno.h>
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#include <assert.h>
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#include "xmlrpc_config.h" /* information about this build environment */
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#include "bool.h"
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#include "int.h"
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#include "mallocvar.h"
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#include "girstring.h"
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#include "casprintf.h"
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#include "string_parser.h"
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#include "cmdline_parser.h"
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#include "dumpvalue.h"
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#include "xmlrpc-c/base.h"
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#include "xmlrpc-c/client.h"
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#define NAME "xmlrpc command line program"
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#define VERSION "1.0"
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struct cmdlineInfo {
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const char * url;
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const char * username;
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const char * password;
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const char * methodName;
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unsigned int paramCount;
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const char ** params;
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/* Array of parameters, in order. Has 'paramCount' entries. */
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const char * transport;
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/* Name of XML transport he wants to use. NULL if he has no
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preference.
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*/
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const char * curlinterface;
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/* "network interface" parameter for the Curl transport. (Not
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valid if 'transport' names a non-Curl transport).
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*/
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xmlrpc_bool curlnoverifypeer;
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xmlrpc_bool curlnoverifyhost;
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const char * curluseragent;
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};
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static void
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die_if_fault_occurred (xmlrpc_env * const envP) {
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if (envP->fault_occurred) {
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fprintf(stderr, "Failed. %s\n", envP->fault_string);
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exit(1);
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}
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}
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static void GNU_PRINTF_ATTR(2,3)
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setError(xmlrpc_env * const envP, const char format[], ...) {
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va_list args;
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const char * faultString;
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va_start(args, format);
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cvasprintf(&faultString, format, args);
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va_end(args);
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xmlrpc_env_set_fault(envP, XMLRPC_INTERNAL_ERROR, faultString);
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strfree(faultString);
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}
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static void
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processArguments(xmlrpc_env * const envP,
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cmdlineParser const cp,
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struct cmdlineInfo * const cmdlineP) {
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if (cmd_argumentCount(cp) < 2)
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setError(envP, "Not enough arguments. Need at least a URL and "
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"method name.");
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else {
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unsigned int i;
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cmdlineP->url = cmd_getArgument(cp, 0);
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cmdlineP->methodName = cmd_getArgument(cp, 1);
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cmdlineP->paramCount = cmd_argumentCount(cp) - 2;
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MALLOCARRAY(cmdlineP->params, cmdlineP->paramCount);
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for (i = 0; i < cmdlineP->paramCount; ++i)
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cmdlineP->params[i] = cmd_getArgument(cp, i+2);
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}
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}
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static void
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chooseTransport(xmlrpc_env * const envP ATTR_UNUSED,
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cmdlineParser const cp,
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const char ** const transportPP) {
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const char * transportOpt = cmd_getOptionValueString(cp, "transport");
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if (transportOpt) {
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*transportPP = transportOpt;
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} else {
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if (cmd_optionIsPresent(cp, "curlinterface") ||
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cmd_optionIsPresent(cp, "curlnoverifypeer") ||
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cmd_optionIsPresent(cp, "curlnoverifyhost") ||
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cmd_optionIsPresent(cp, "curluseragent"))
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*transportPP = strdup("curl");
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else
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*transportPP = NULL;
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}
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}
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static void
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parseCommandLine(xmlrpc_env * const envP,
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int const argc,
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const char ** const argv,
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struct cmdlineInfo * const cmdlineP) {
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cmdlineParser const cp = cmd_createOptionParser();
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const char * error;
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cmd_defineOption(cp, "transport", OPTTYPE_STRING);
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cmd_defineOption(cp, "username", OPTTYPE_STRING);
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cmd_defineOption(cp, "password", OPTTYPE_STRING);
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cmd_defineOption(cp, "curlinterface", OPTTYPE_STRING);
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cmd_defineOption(cp, "curlnoverifypeer", OPTTYPE_STRING);
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cmd_defineOption(cp, "curlnoverifyhost", OPTTYPE_STRING);
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cmd_defineOption(cp, "curluseragent", OPTTYPE_STRING);
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cmd_processOptions(cp, argc, argv, &error);
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if (error) {
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setError(envP, "Command syntax error. %s", error);
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strfree(error);
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} else {
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cmdlineP->username = cmd_getOptionValueString(cp, "username");
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cmdlineP->password = cmd_getOptionValueString(cp, "password");
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if (cmdlineP->username && !cmdlineP->password)
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setError(envP, "When you specify -username, you must also "
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"specify -password.");
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else {
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chooseTransport(envP, cp, &cmdlineP->transport);
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cmdlineP->curlinterface =
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cmd_getOptionValueString(cp, "curlinterface");
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cmdlineP->curlnoverifypeer =
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cmd_optionIsPresent(cp, "curlnoverifypeer");
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cmdlineP->curlnoverifyhost =
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cmd_optionIsPresent(cp, "curlnoverifyhost");
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cmdlineP->curluseragent =
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cmd_getOptionValueString(cp, "curluseragent");
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if ((!cmdlineP->transport ||
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!streq(cmdlineP->transport, "curl"))
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&&
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(cmdlineP->curlinterface ||
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cmdlineP->curlnoverifypeer ||
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cmdlineP->curlnoverifyhost ||
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cmdlineP->curluseragent))
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setError(envP, "You may not specify a Curl transport "
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"option unless you also specify -transport=curl");
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processArguments(envP, cp, cmdlineP);
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}
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}
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cmd_destroyOptionParser(cp);
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}
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static void
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freeCmdline(struct cmdlineInfo const cmdline) {
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unsigned int i;
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strfree(cmdline.url);
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strfree(cmdline.methodName);
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if (cmdline.transport)
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strfree(cmdline.transport);
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if (cmdline.curlinterface)
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strfree(cmdline.curlinterface);
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if (cmdline.curluseragent)
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strfree(cmdline.curluseragent);
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if (cmdline.username)
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strfree(cmdline.username);
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if (cmdline.password)
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strfree(cmdline.password);
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for (i = 0; i < cmdline.paramCount; ++i)
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strfree(cmdline.params[i]);
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}
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static void
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computeUrl(const char * const urlArg,
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const char ** const urlP) {
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if (strstr(urlArg, "://") != 0)
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casprintf(urlP, "%s", urlArg);
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else
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casprintf(urlP, "http://%s/RPC2", urlArg);
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}
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static void
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buildString(xmlrpc_env * const envP,
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const char * const valueString,
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xmlrpc_value ** const paramPP) {
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*paramPP = xmlrpc_string_new(envP, valueString);
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}
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static void
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buildBytestring(xmlrpc_env * const envP,
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const char * const valueString,
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xmlrpc_value ** const paramPP) {
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size_t const valueStringSize = strlen(valueString);
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if (valueStringSize / 2 * 2 != valueStringSize)
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xmlrpc_faultf(envP, "Hexadecimal text is not an even "
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"number of characters (it is %u characters)",
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strlen(valueString));
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else {
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size_t const byteStringSize = strlen(valueString)/2;
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unsigned char byteString[byteStringSize];
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size_t bsCursor;
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size_t strCursor;
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strCursor = 0;
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bsCursor = 0;
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while (strCursor < valueStringSize && !envP->fault_occurred) {
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int rc;
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assert(bsCursor < byteStringSize);
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rc = sscanf(&valueString[strCursor], "%2hhx",
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&byteString[bsCursor++]);
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if (rc != 1)
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xmlrpc_faultf(envP, "Invalid hex data '%s'",
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&valueString[strCursor]);
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else
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strCursor += 2;
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}
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if (!envP->fault_occurred)
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*paramPP = xmlrpc_base64_new(envP, byteStringSize, byteString);
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}
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}
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static void
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buildInt(xmlrpc_env * const envP,
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const char * const valueString,
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xmlrpc_value ** const paramPP) {
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if (strlen(valueString) < 1)
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setError(envP, "Integer argument has nothing after the 'i/'");
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else {
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int value;
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const char * error;
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interpretInt(valueString, &value, &error);
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if (error) {
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setError(envP, "'%s' is not a valid 32-bit integer. %s",
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valueString, error);
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strfree(error);
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} else
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*paramPP = xmlrpc_int_new(envP, value);
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}
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}
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static void
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buildBool(xmlrpc_env * const envP,
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const char * const valueString,
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xmlrpc_value ** const paramPP) {
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if (streq(valueString, "t") || streq(valueString, "true"))
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*paramPP = xmlrpc_bool_new(envP, true);
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else if (streq(valueString, "f") == 0 || streq(valueString, "false"))
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*paramPP = xmlrpc_bool_new(envP, false);
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else
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setError(envP, "Boolean argument has unrecognized value '%s'. "
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"recognized values are 't', 'f', 'true', and 'false'.",
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valueString);
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}
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static void
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buildDouble(xmlrpc_env * const envP,
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const char * const valueString,
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xmlrpc_value ** const paramPP) {
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if (strlen(valueString) < 1)
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setError(envP, "\"Double\" argument has nothing after the 'd/'");
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else {
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double value;
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char * tailptr;
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value = strtod(valueString, &tailptr);
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if (*tailptr != '\0')
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setError(envP,
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"\"Double\" argument has non-decimal crap in it: '%s'",
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tailptr);
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else
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*paramPP = xmlrpc_double_new(envP, value);
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}
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}
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static void
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buildNil(xmlrpc_env * const envP,
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const char * const valueString,
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xmlrpc_value ** const paramPP) {
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if (strlen(valueString) > 0)
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setError(envP, "Nil argument has something after the 'n/'");
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else {
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*paramPP = xmlrpc_nil_new(envP);
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}
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}
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static void
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buildI8(xmlrpc_env * const envP,
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const char * const valueString,
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xmlrpc_value ** const paramPP) {
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if (strlen(valueString) < 1)
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setError(envP, "Integer argument has nothing after the 'I/'");
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else {
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int64_t value;
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const char * error;
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interpretLl(valueString, &value, &error);
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if (error) {
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setError(envP, "'%s' is not a valid 64-bit integer. %s",
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valueString, error);
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strfree(error);
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} else
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*paramPP = xmlrpc_i8_new(envP, value);
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}
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}
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static void
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computeParameter(xmlrpc_env * const envP,
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const char * const paramArg,
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xmlrpc_value ** const paramPP) {
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if (strncmp(paramArg, "s/", 2) == 0)
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buildString(envP, ¶mArg[2], paramPP);
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else if (strncmp(paramArg, "h/", 2) == 0)
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buildBytestring(envP, ¶mArg[2], paramPP);
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else if (strncmp(paramArg, "i/", 2) == 0)
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buildInt(envP, ¶mArg[2], paramPP);
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else if (strncmp(paramArg, "I/", 2) == 0)
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buildI8(envP, ¶mArg[2], paramPP);
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else if (strncmp(paramArg, "d/", 2) == 0)
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buildDouble(envP, ¶mArg[2], paramPP);
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else if (strncmp(paramArg, "b/", 2) == 0)
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buildBool(envP, ¶mArg[2], paramPP);
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else if (strncmp(paramArg, "n/", 2) == 0)
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buildNil(envP, ¶mArg[2], paramPP);
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else {
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/* It's not in normal type/value format, so we take it to be
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the shortcut string notation
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*/
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buildString(envP, paramArg, paramPP);
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}
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}
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static void
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computeParamArray(xmlrpc_env * const envP,
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unsigned int const paramCount,
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const char ** const params,
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xmlrpc_value ** const paramArrayPP) {
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unsigned int i;
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xmlrpc_value * paramArrayP;
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paramArrayP = xmlrpc_array_new(envP);
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for (i = 0; i < paramCount && !envP->fault_occurred; ++i) {
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xmlrpc_value * paramP;
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computeParameter(envP, params[i], ¶mP);
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if (!envP->fault_occurred) {
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xmlrpc_array_append_item(envP, paramArrayP, paramP);
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xmlrpc_DECREF(paramP);
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}
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}
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*paramArrayPP = paramArrayP;
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}
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static void
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dumpResult(xmlrpc_value * const resultP) {
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printf("Result:\n\n");
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dumpValue("", resultP);
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}
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static void
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callWithClient(xmlrpc_env * const envP,
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const xmlrpc_server_info * const serverInfoP,
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const char * const methodName,
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xmlrpc_value * const paramArrayP,
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xmlrpc_value ** const resultPP) {
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xmlrpc_env env;
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xmlrpc_env_init(&env);
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*resultPP = xmlrpc_client_call_server_params(
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&env, serverInfoP, methodName, paramArrayP);
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if (env.fault_occurred)
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xmlrpc_faultf(envP, "Call failed. %s. (XML-RPC fault code %d)",
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env.fault_string, env.fault_code);
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xmlrpc_env_clean(&env);
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}
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static void
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doCall(xmlrpc_env * const envP,
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const char * const transport,
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const char * const curlinterface,
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xmlrpc_bool const curlnoverifypeer,
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xmlrpc_bool const curlnoverifyhost,
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const char * const curluseragent,
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const xmlrpc_server_info * const serverInfoP,
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const char * const methodName,
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xmlrpc_value * const paramArrayP,
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xmlrpc_value ** const resultPP) {
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struct xmlrpc_clientparms clientparms;
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XMLRPC_ASSERT(xmlrpc_value_type(paramArrayP) == XMLRPC_TYPE_ARRAY);
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clientparms.transport = transport;
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if (transport && streq(transport, "curl")) {
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struct xmlrpc_curl_xportparms * curlXportParmsP;
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MALLOCVAR(curlXportParmsP);
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curlXportParmsP->network_interface = curlinterface;
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curlXportParmsP->no_ssl_verifypeer = curlnoverifypeer;
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curlXportParmsP->no_ssl_verifyhost = curlnoverifyhost;
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curlXportParmsP->user_agent = curluseragent;
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clientparms.transportparmsP = curlXportParmsP;
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clientparms.transportparm_size = XMLRPC_CXPSIZE(user_agent);
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} else {
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clientparms.transportparmsP = NULL;
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clientparms.transportparm_size = 0;
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}
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xmlrpc_client_init2(envP, XMLRPC_CLIENT_NO_FLAGS, NAME, VERSION,
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&clientparms, XMLRPC_CPSIZE(transportparm_size));
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if (!envP->fault_occurred) {
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callWithClient(envP, serverInfoP, methodName, paramArrayP, resultPP);
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xmlrpc_client_cleanup();
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}
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if (clientparms.transportparmsP)
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free((void*)clientparms.transportparmsP);
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}
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static void
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createServerInfo(xmlrpc_env * const envP,
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const char * const serverUrl,
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const char * const userName,
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const char * const password,
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xmlrpc_server_info ** const serverInfoPP) {
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xmlrpc_server_info * serverInfoP;
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serverInfoP = xmlrpc_server_info_new(envP, serverUrl);
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if (!envP->fault_occurred) {
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if (userName) {
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xmlrpc_server_info_set_basic_auth(
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envP, serverInfoP, userName, password);
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}
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}
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*serverInfoPP = serverInfoP;
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}
|
|
|
|
|
|
|
|
int
|
|
main(int const argc,
|
|
const char ** const argv) {
|
|
|
|
struct cmdlineInfo cmdline;
|
|
xmlrpc_env env;
|
|
xmlrpc_value * paramArrayP;
|
|
xmlrpc_value * resultP;
|
|
const char * url;
|
|
xmlrpc_server_info * serverInfoP;
|
|
|
|
xmlrpc_env_init(&env);
|
|
|
|
parseCommandLine(&env, argc, argv, &cmdline);
|
|
die_if_fault_occurred(&env);
|
|
|
|
computeUrl(cmdline.url, &url);
|
|
|
|
computeParamArray(&env, cmdline.paramCount, cmdline.params, ¶mArrayP);
|
|
die_if_fault_occurred(&env);
|
|
|
|
createServerInfo(&env, url, cmdline.username, cmdline.password,
|
|
&serverInfoP);
|
|
die_if_fault_occurred(&env);
|
|
|
|
doCall(&env, cmdline.transport, cmdline.curlinterface,
|
|
cmdline.curlnoverifypeer, cmdline.curlnoverifyhost,
|
|
cmdline.curluseragent,
|
|
serverInfoP,
|
|
cmdline.methodName, paramArrayP,
|
|
&resultP);
|
|
die_if_fault_occurred(&env);
|
|
|
|
dumpResult(resultP);
|
|
|
|
strfree(url);
|
|
|
|
xmlrpc_DECREF(resultP);
|
|
|
|
freeCmdline(cmdline);
|
|
|
|
xmlrpc_env_clean(&env);
|
|
|
|
return 0;
|
|
}
|