mirror of https://github.com/BOINC/boinc.git
306 lines
10 KiB
C
306 lines
10 KiB
C
// The contents of this file are subject to the BOINC Public License
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// Version 1.0 (the "License"); you may not use this file except in
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// compliance with the License. You may obtain a copy of the License at
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// http://boinc.berkeley.edu/license_1.0.txt
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//
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// Software distributed under the License is distributed on an "AS IS"
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// basis, WITHOUT WARRANTY OF ANY KIND, either express or implied. See the
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// License for the specific language governing rights and limitations
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// under the License.
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//
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// The Original Code is the Berkeley Open Infrastructure for Network Computing.
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//
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// The Initial Developer of the Original Code is the SETI@home project.
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// Portions created by the SETI@home project are Copyright (C) 2002
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// University of California at Berkeley. All Rights Reserved.
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//
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// Contributor(s):
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//
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// make_work
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// -wu_name name
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// -result_template filename
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// [ -cushion n ] // make work if fewer than this many unsent results
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// [ -max_wus n ] // don't make work if more than this many WUs
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// [ -min_quorum n ]
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// [ -target_nresults n ]
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// [ -max_error_results n ]
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// [ -max_total_results n ]
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// [ -max_success_results n ]
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//
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// Create WU and result records as needed to maintain a pool of work
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// (for testing purposes).
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// Clones the WU of the given name.
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//
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <unistd.h>
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#include <time.h>
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#include "boinc_db.h"
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#include "crypt.h"
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#include "util.h"
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#include "backend_lib.h"
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#include "sched_config.h"
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#include "parse.h"
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#include "sched_util.h"
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#define LOCKFILE "make_work.out"
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#define PIDFILE "make_work.pid"
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int max_wus = 0;
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int cushion = 300;
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int min_quorum = 2;
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int target_nresults = 5;
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int max_error_results = 10;
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int max_total_results = 20;
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int max_success_results = 10;
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char wu_name[256], result_template_file[256];
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// edit a WU XML doc, replacing one filename by another
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// (should appear twice, within <file_info> and <file_ref>)
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// Also patch the download URL (redundant)
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//
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void replace_file_name(
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char* xml_doc, char* filename, char* new_filename, char* download_url
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) {
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char buf[MEDIUM_BLOB_SIZE], temp[256], download_path[256],
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new_download_path[256];
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char * p;
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sprintf(download_path,"%s/%s", download_url, filename);
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sprintf(new_download_path,"%s/%s", download_url, new_filename);
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strcpy(buf, xml_doc);
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p = strtok(buf,"\n");
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while (p) {
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if (parse_str(p, "<name>", temp, sizeof(temp))) {
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if(!strcmp(filename, temp)) {
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replace_element(xml_doc + (p - buf),"<name>","</name>",new_filename);
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}
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} else if (parse_str(p, "<file_name>", temp, sizeof(temp))) {
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if(!strcmp(filename, temp)) {
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replace_element(xml_doc + (p - buf),"<file_name>","</file_name>",new_filename);
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}
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} else if (parse_str(p, "<url>", temp, sizeof(temp))) {
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if(!strcmp(temp, download_path)) {
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replace_element(xml_doc + (p - buf),"<url>","</url>",new_download_path);
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}
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}
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p = strtok(0, "\n");
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}
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}
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int count_results(char* query) {
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int n;
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DB_RESULT result;
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int retval = result.count(n, query);
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if (retval) {
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log_messages.printf(SchedMessages::CRITICAL, "can't count results\n");
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exit(1);
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}
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return n;
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}
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int count_workunits(const char* query="") {
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int n;
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DB_WORKUNIT workunit;
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int retval = workunit.count(n, const_cast<char*>(query));
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if (retval) {
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log_messages.printf(SchedMessages::CRITICAL, "can't count workunits\n");
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exit(1);
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}
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return n;
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}
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void make_work() {
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SCHED_CONFIG config;
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char * p;
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int retval, start_time=time(0);
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char keypath[256], result_template[MEDIUM_BLOB_SIZE];
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char file_name[256], buf[MEDIUM_BLOB_SIZE], pathname[256];
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char new_file_name[256], new_pathname[256], command[256];
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char starting_xml[MEDIUM_BLOB_SIZE], new_buf[MEDIUM_BLOB_SIZE];
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R_RSA_PRIVATE_KEY key;
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DB_WORKUNIT wu;
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int seqno = 0;
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retval = config.parse_file("..");
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if (retval) {
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log_messages.printf(SchedMessages::CRITICAL, "can't read config file\n");
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exit(1);
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}
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retval = boinc_db.open(config.db_name, config.db_host, config.db_passwd);
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if (retval) {
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log_messages.printf(SchedMessages::CRITICAL, "can't open db\n");
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exit(1);
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}
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sprintf(buf, "where name='%s'", wu_name);
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retval = wu.lookup(buf);
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if (retval) {
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log_messages.printf(SchedMessages::CRITICAL, "can't find wu %s\n", wu_name);
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exit(1);
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}
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strcpy(starting_xml, wu.xml_doc);
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sprintf(keypath, "%s/upload_private", config.key_dir);
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retval = read_key_file(keypath, key);
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if (retval) {
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log_messages.printf(SchedMessages::CRITICAL, "can't read key\n");
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exit(1);
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}
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retval = read_filename(result_template_file, result_template);
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if (retval) {
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log_messages.printf(SchedMessages::CRITICAL, "can't open result template\n");
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exit(1);
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}
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while (1) {
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check_stop_trigger();
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sprintf(buf,
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"where appid=%d and server_state=%d",
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wu.appid, RESULT_SERVER_STATE_UNSENT
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);
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int unsent_results = count_results(buf);
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int total_wus = count_workunits();
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if (max_wus && total_wus >= max_wus) {
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log_messages.printf(SchedMessages::NORMAL, "Reached max_wus = %d\n", max_wus);
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exit(0);
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}
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if (unsent_results > cushion) {
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sleep(1);
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continue;
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}
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strcpy(buf, starting_xml);
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p = strtok(buf, "\n");
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strcpy(file_name, "");
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// make new copies of all the WU's input files
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//
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while (p) {
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if (parse_str(p, "<name>", file_name, sizeof(file_name))) {
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sprintf(
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new_file_name, "%s__%d_%d", file_name, start_time, seqno++
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);
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sprintf(pathname, "%s/%s", config.download_dir, file_name);
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sprintf(
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new_pathname, "%s/%s",config.download_dir, new_file_name
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);
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sprintf(command,"ln %s %s", pathname, new_pathname);
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log_messages.printf(SchedMessages::DEBUG, "executing command: %s\n", command);
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retval = system(command);
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if (retval) {
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log_messages.printf(
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SchedMessages::CRITICAL, "system() error %d\n", retval
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);
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perror(command);
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exit(1);
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}
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strcpy(new_buf, starting_xml);
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replace_file_name(
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new_buf, file_name, new_file_name, config.download_url
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);
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strcpy(wu.xml_doc, new_buf);
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}
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p = strtok(0, "\n");
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}
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// set various fields for new WU (all others are copied)
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//
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wu.id = 0;
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wu.create_time = time(0);
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sprintf(wu.name, "wu_%d_%d", start_time, seqno++);
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wu.min_quorum = min_quorum;
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wu.target_nresults = target_nresults;
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wu.max_error_results = max_error_results;
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wu.max_total_results = max_total_results;
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wu.max_success_results = max_success_results;
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wu.need_validate = false;
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wu.canonical_resultid = 0;
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wu.canonical_credit = 0;
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wu.transition_time = time(0);
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wu.error_mask = 0;
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wu.file_delete_state = FILE_DELETE_INIT;
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wu.assimilate_state = ASSIMILATE_INIT;
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strcpy(wu.result_template, result_template);
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process_result_template_upload_url_only(wu.result_template, config.upload_url);
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retval = wu.insert();
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if (retval) {
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log_messages.printf(SchedMessages::CRITICAL,
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"Failed to created WU, error %d; exiting\n", retval
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);
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exit(retval);
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}
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wu.id = boinc_db.insert_id();
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log_messages.printf(SchedMessages::DEBUG, "[%s] Created new WU\n", wu.name);
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}
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}
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int main(int argc, char** argv) {
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bool asynch = false;
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int i;
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check_stop_trigger();
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for (i=1; i<argc; i++) {
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if (!strcmp(argv[i], "-asynch")) {
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asynch = true;
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} else if (!strcmp(argv[i], "-cushion")) {
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cushion = atoi(argv[++i]);
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} else if (!strcmp(argv[i], "-result_template")) {
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strcpy(result_template_file, argv[++i]);
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} else if (!strcmp(argv[i], "-d")) {
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log_messages.set_debug_level(atoi(argv[++i]));
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} else if (!strcmp(argv[i], "-wu_name")) {
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strcpy(wu_name, argv[++i]);
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} else if (!strcmp(argv[i], "-max_wus")) {
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max_wus = atoi(argv[++i]);
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} else if (!strcmp(argv[i], "-min_quorum")) {
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min_quorum = atoi(argv[++i]);
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} else if (!strcmp(argv[i], "-target_nresults")) {
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target_nresults = atoi(argv[++i]);
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} else if (!strcmp(argv[i], "-max_error_results")) {
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max_error_results = atoi(argv[++i]);
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} else if (!strcmp(argv[i], "-max_total_results")) {
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max_total_results = atoi(argv[++i]);
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} else if (!strcmp(argv[i], "-max_success_results")) {
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max_success_results = atoi(argv[++i]);
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}
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}
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#define CHKARG(x,m) do { if (!(x)) { fprintf(stderr, "make_work: bad command line: "m"\n"); exit(1); } } while (0)
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#define CHKARG_STR(v,m) CHKARG(strlen(v),m)
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CHKARG_STR(result_template_file , "need -result_template_file");
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CHKARG_STR(wu_name , "need -wu_name");
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#undef CHKARG
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#undef CHKARG_STR
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if (asynch) {
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if (fork()) {
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exit(0);
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}
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}
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// // Call lock_file after fork(), because file locks are not always inherited
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// if (lock_file(LOCKFILE)) {
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// log_messages.printf(SchedMessages::NORMAL, "Another copy of make_work is already running\n");
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// exit(1);
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// }
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// write_pid_file(PIDFILE);
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log_messages.printf(
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SchedMessages::NORMAL,
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"Starting: min_quorum=%d target_nresults=%d max_error_results=%d max_total_results=%d max_success_results=%d\n",
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min_quorum, target_nresults, max_error_results, max_total_results, max_success_results
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);
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install_stop_signal_handler();
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srand48(getpid() + time(0));
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make_work();
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}
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