boinc/sched/sample_work_generator.cpp

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// This file is part of BOINC.
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// http://boinc.berkeley.edu
// Copyright (C) 2008 University of California
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//
// BOINC is free software; you can redistribute it and/or modify it
// under the terms of the GNU Lesser General Public License
// as published by the Free Software Foundation,
// either version 3 of the License, or (at your option) any later version.
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//
// BOINC is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
// See the GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with BOINC. If not, see <http://www.gnu.org/licenses/>.
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// sample_work_generator.cpp: an example BOINC work generator.
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// This work generator has the following properties
// (you may need to change some or all of these):
//
// - Runs as a daemon, and creates an unbounded supply of work.
// It attempts to maintain a "cushion" of 100 unsent job instances.
// (your app may not work this way; e.g. you might create work in batches)
// - Creates work for the application "example_app".
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// - Creates a new input file for each job;
// the file (and the workunit names) contain a timestamp
// and sequence number, so that they're unique.
#include <unistd.h>
#include <cstdlib>
#include <string>
#include <cstring>
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#include "boinc_db.h"
#include "error_numbers.h"
#include "backend_lib.h"
#include "parse.h"
#include "util.h"
#include "svn_version.h"
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#include "sched_config.h"
#include "sched_util.h"
#include "sched_msgs.h"
#include "str_util.h"
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#define CUSHION 100
// maintain at least this many unsent results
#define REPLICATION_FACTOR 2
char* app_name = (char*) "example_app";
char* in_template_file = (char*) "example_app_in.xml";
char* out_template_file = (char*) "example_app_out.xml";
char* in_template;
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DB_APP app;
int start_time;
int seqno;
// create one new job
//
int make_job() {
DB_WORKUNIT wu;
char name[256], path[256];
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const char* infiles[1];
int retval;
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// make a unique name (for the job and its input file)
//
sprintf(name, "%s_%d_%d", app_name, start_time, seqno++);
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// Create the input file.
// Put it at the right place in the download dir hierarchy
//
retval = config.download_path(name, path);
if (retval) return retval;
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FILE* f = fopen(path, "w");
if (!f) return ERR_FOPEN;
fprintf(f, "This is the input file for job %s", name);
fclose(f);
// Fill in the job parameters
//
wu.clear();
wu.appid = app.id;
strcpy(wu.name, name);
wu.rsc_fpops_est = 1e12;
wu.rsc_fpops_bound = 1e14;
wu.rsc_memory_bound = 1e8;
wu.rsc_disk_bound = 1e8;
wu.delay_bound = 86400;
wu.min_quorum = REPLICATION_FACTOR;
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wu.target_nresults = REPLICATION_FACTOR;
wu.max_error_results = REPLICATION_FACTOR*4;
wu.max_total_results = REPLICATION_FACTOR*8;
wu.max_success_results = REPLICATION_FACTOR*4;
infiles[0] = name;
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// Register the job with BOINC
//
sprintf(path, "templates/%s", out_template_file);
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return create_work(
wu,
in_template,
path,
config.project_path(path),
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infiles,
1,
config
);
}
void main_loop() {
int retval;
while (1) {
check_stop_daemons();
int n;
retval = count_unsent_results(n, 0);
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if (n > CUSHION) {
sleep(60);
} else {
int njobs = (CUSHION-n)/REPLICATION_FACTOR;
log_messages.printf(MSG_DEBUG,
"Making %d jobs\n", njobs
);
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for (int i=0; i<njobs; i++) {
retval = make_job();
if (retval) {
log_messages.printf(MSG_CRITICAL,
"can't make job: %s\n", boincerror(retval)
);
exit(retval);
}
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}
// Now sleep for a few seconds to let the transitioner
// create instances for the jobs we just created.
// Otherwise we could end up creating an excess of jobs.
sleep(5);
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}
}
}
void usage(char *name) {
fprintf(stderr, "This is an example BOINC work generator.\n"
"This work generator has the following properties\n"
"(you may need to change some or all of these):\n"
"- Runs as a daemon, and creates an unbounded supply of work.\n"
" It attempts to maintain a \"cushion\" of 100 unsent job instances.\n"
" (your app may not work this way; e.g. you might create work in batches)\n"
"- Creates work for the application \"example_app\".\n"
"- Creates a new input file for each job;\n"
" the file (and the workunit names) contain a timestamp\n"
" and sequence number, so that they're unique.\n\n"
"Usage: %s [OPTION]...\n\n"
"Options:\n"
" [ --app X Application name (default: example_app)\n"
" [ --in_template_file Input template (default: example_app_in)\n"
" [ --out_template_file Output template (default: example_app_out)\n"
" [ -d X ] Sets debug level to X.\n"
" [ -h | --help ] Shows this help text.\n"
" [ -v | --version ] Shows version information.\n",
name
);
}
int main(int argc, char** argv) {
int i, retval;
char buf[256];
for (i=1; i<argc; i++) {
- server: change the following from per-host to per-(host, app version): - daily quota mechanism - reliable mechanism (accelerated retries) - "trusted" mechanism (adaptive replication) - scheduler: enforce host scale probation only for apps with host_scale_check set. - validator: do scale probation on invalid results (need this in addition to error and timeout cases) - feeder: update app version scales every 10 min, not 10 sec - back-end apps: support --foo as well as -foo for options Notes: - If you have, say, cuda, cuda23 and cuda_fermi plan classes, a host will have separate quotas for each one. That means it could error out on 100 jobs for cuda_fermi, and when its quota goes to zero, error out on 100 jobs for cuda23, etc. This is intentional; there may be cases where one version works but not the others. - host.error_rate and host.max_results_day are deprecated TODO: - the values in the app table for limits on jobs in progress etc. should override rather than config.xml. Implementation notes: scheduler: process_request(): read all host_app_versions for host at start; Compute "reliable" and "trusted" for each one. write modified records at end get_app_version(): add "reliable_only" arg; if set, use only reliable versions skip over-quota versions Multi-pass scheduling: if have at least one reliable version, do a pass for jobs that need reliable, and use only reliable versions. Then clear best_app_versions cache. Score-based scheduling: for need-reliable jobs, it will pick the fastest version, then give a score bonus if that version happens to be reliable. When get back a successful result from client: increase daily quota When get back an error result from client: impose scale probation decrease daily quota if not aborted Validator: when handling a WU, create a vector of HOST_APP_VERSION parallel to vector of RESULT. Pass it to assign_credit_set(). Make copies of originals so we can update only modified ones update HOST_APP_VERSION error rates Transitioner: decrease quota on timeout svn path=/trunk/boinc/; revision=21181
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if (is_arg(argv[i], "d")) {
if (!argv[++i]) {
log_messages.printf(MSG_CRITICAL, "%s requires an argument\n\n", argv[--i]);
usage(argv[0]);
exit(1);
}
int dl = atoi(argv[i]);
log_messages.set_debug_level(dl);
if (dl == 4) g_print_queries = true;
} else if (!strcmp(argv[i], "--app")) {
app_name = argv[++i];
} else if (!strcmp(argv[i], "--in_template_file")) {
in_template_file = argv[++i];
} else if (!strcmp(argv[i], "--out_template_file")) {
out_template_file = argv[++i];
- server: change the following from per-host to per-(host, app version): - daily quota mechanism - reliable mechanism (accelerated retries) - "trusted" mechanism (adaptive replication) - scheduler: enforce host scale probation only for apps with host_scale_check set. - validator: do scale probation on invalid results (need this in addition to error and timeout cases) - feeder: update app version scales every 10 min, not 10 sec - back-end apps: support --foo as well as -foo for options Notes: - If you have, say, cuda, cuda23 and cuda_fermi plan classes, a host will have separate quotas for each one. That means it could error out on 100 jobs for cuda_fermi, and when its quota goes to zero, error out on 100 jobs for cuda23, etc. This is intentional; there may be cases where one version works but not the others. - host.error_rate and host.max_results_day are deprecated TODO: - the values in the app table for limits on jobs in progress etc. should override rather than config.xml. Implementation notes: scheduler: process_request(): read all host_app_versions for host at start; Compute "reliable" and "trusted" for each one. write modified records at end get_app_version(): add "reliable_only" arg; if set, use only reliable versions skip over-quota versions Multi-pass scheduling: if have at least one reliable version, do a pass for jobs that need reliable, and use only reliable versions. Then clear best_app_versions cache. Score-based scheduling: for need-reliable jobs, it will pick the fastest version, then give a score bonus if that version happens to be reliable. When get back a successful result from client: increase daily quota When get back an error result from client: impose scale probation decrease daily quota if not aborted Validator: when handling a WU, create a vector of HOST_APP_VERSION parallel to vector of RESULT. Pass it to assign_credit_set(). Make copies of originals so we can update only modified ones update HOST_APP_VERSION error rates Transitioner: decrease quota on timeout svn path=/trunk/boinc/; revision=21181
2010-04-15 03:13:56 +00:00
} else if (is_arg(argv[i], "h") || is_arg(argv[i], "help")) {
usage(argv[0]);
exit(0);
- server: change the following from per-host to per-(host, app version): - daily quota mechanism - reliable mechanism (accelerated retries) - "trusted" mechanism (adaptive replication) - scheduler: enforce host scale probation only for apps with host_scale_check set. - validator: do scale probation on invalid results (need this in addition to error and timeout cases) - feeder: update app version scales every 10 min, not 10 sec - back-end apps: support --foo as well as -foo for options Notes: - If you have, say, cuda, cuda23 and cuda_fermi plan classes, a host will have separate quotas for each one. That means it could error out on 100 jobs for cuda_fermi, and when its quota goes to zero, error out on 100 jobs for cuda23, etc. This is intentional; there may be cases where one version works but not the others. - host.error_rate and host.max_results_day are deprecated TODO: - the values in the app table for limits on jobs in progress etc. should override rather than config.xml. Implementation notes: scheduler: process_request(): read all host_app_versions for host at start; Compute "reliable" and "trusted" for each one. write modified records at end get_app_version(): add "reliable_only" arg; if set, use only reliable versions skip over-quota versions Multi-pass scheduling: if have at least one reliable version, do a pass for jobs that need reliable, and use only reliable versions. Then clear best_app_versions cache. Score-based scheduling: for need-reliable jobs, it will pick the fastest version, then give a score bonus if that version happens to be reliable. When get back a successful result from client: increase daily quota When get back an error result from client: impose scale probation decrease daily quota if not aborted Validator: when handling a WU, create a vector of HOST_APP_VERSION parallel to vector of RESULT. Pass it to assign_credit_set(). Make copies of originals so we can update only modified ones update HOST_APP_VERSION error rates Transitioner: decrease quota on timeout svn path=/trunk/boinc/; revision=21181
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} else if (is_arg(argv[i], "v") || is_arg(argv[i], "version")) {
printf("%s\n", SVN_VERSION);
exit(0);
} else {
log_messages.printf(MSG_CRITICAL, "unknown command line argument: %s\n\n", argv[i]);
usage(argv[0]);
exit(1);
}
}
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retval = config.parse_file();
if (retval) {
log_messages.printf(MSG_CRITICAL,
"Can't parse config.xml: %s\n", boincerror(retval)
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);
exit(1);
}
retval = boinc_db.open(
config.db_name, config.db_host, config.db_user, config.db_passwd
);
if (retval) {
log_messages.printf(MSG_CRITICAL, "can't open db\n");
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exit(1);
}
sprintf(buf, "where name='%s'", app_name);
if (app.lookup(buf)) {
log_messages.printf(MSG_CRITICAL, "can't find app %s\n", app_name);
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exit(1);
}
sprintf(buf, "templates/%s", in_template_file);
if (read_file_malloc(config.project_path(buf), in_template)) {
log_messages.printf(MSG_CRITICAL, "can't read input template %s\n", buf);
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exit(1);
}
start_time = time(0);
seqno = 0;
log_messages.printf(MSG_NORMAL, "Starting\n");
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main_loop();
}