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Ralph Castain
3dbd4d9be7 Squeeeeeeze the launch message. This is the message sent to the daemons that provides all the data required for launching their local procs. In reorganizing the ODLS framework, I discovered that we were sending a significant amount of unnecessary and repeated data. This commit resolves this by:
1. taking advantage of the fact that we no longer create the launch  message via a GPR trigger. In earlier times, we had the GPR create the launch message based on a subscription. In that mode of operation, we could not guarantee the order in which the data was stored in the message - hence, we had no choice but to parse the message in a loop that checked each value against a list of possible "keys" until the corresponding value was found.

Now, however, we construct the message "by hand", so we know precisely what data is in each location in the message. Thus, we no longer need to send the character string "keys" for each data value any more. This represents a rather large savings in the message size - to give you an example, we typically would use a 30-char "key" for a 2-byte data value. As you can see, the overhead can become very large.

2. sending node-specific data only once. Again, because we used to construct the message via subscriptions that were done on a per-proc basis, the data for each node (e.g., the daemon's name, whether or not the node was oversubscribed) would be included in the data for each proc. Thus, the node-specific data was repeated for every proc.

Now that we construct the message "by hand", there is no reason to do this any more. Instead, we can insert the data for a specific node only once, and then provide the per-proc data for that node. We therefore not only save all that extra data in the message, but we also only need to parse the per-node data once.

The savings become significant at scale. Here is a comparison between the revised trunk and the trunk prior to this commit (all data was taken on odin, using openib, 64 nodes, unity message routing, tested with application consisting of mpi_init/mpi_barrier/mpi_finalize, all execution times given in seconds, all launch message sizes in bytes):

Per-node scaling, taken at 1ppn:

#nodes           original trunk                         revised trunk
             time               size                time               size
      1      0.10                819                0.09                564
      2      0.14               1070                0.14                677
      3      0.15               1321                0.14                790
      4      0.15               1572                0.15                903
      8      0.17               2576                0.20               1355
     16      0.25               4584                0.21               2259
     32      0.28               8600                0.27               4067
     64      0.50              16632                0.39               7683

Per-proc scaling, taken at 64 nodes

   ppn             original trunk                         revised trunk
              time               size                time               size
      1       0.50              16669                0.40               7720
      2       0.55              32733                0.54              11048
      3       0.87              48797                0.81              14376
      4       1.0               64861                0.85              17704


Condensing those numbers, it appears we gained:

per-node message size: 251 bytes/node -> 113 bytes/node

per-proc message size: 251 bytes/proc  -> 52 bytes/proc

per-job message size:  568 bytes/job -> 399 bytes/job 
(job-specific data such as jobid, override oversubscribe flag, total #procs in job, total slots allocated)

The fact that the two pre-commit trunk numbers are the same confirms the fact that each proc was containing the node data as well. It isn't quite the 10x message reduction I had hoped to get, but it is significant and gives much better scaling.

Note that the timing info was, as usual, pretty chaotic - the numbers cited here were typical across several runs taken after the initial one to avoid NFS file positioning influences.

Also note that this commit removes the orte_process_info.vpid_start field and the handful of places that passed that useless value. By definition, all jobs start at vpid=0, so all we were doing is passing "0" around. In fact, many places simply hardwired it to "0" anyway rather than deal with it.

This commit was SVN r16428.
2007-10-11 15:57:26 +00:00
Ralph Castain
d9acc93efa Compute and pass the local_rank and local number of procs (in that proc's job) on the node.
To be precise, given this hypothetical launching pattern:

host1: vpids 0, 2, 4, 6
host2: vpids 1, 3, 5, 7

The local_rank for these procs would be:

host1: vpids 0->local_rank 0, v2->lr1, v4->lr2, v6->lr3
host2: vpids 1->local_rank 0, v3->lr1, v5->lr2, v7->lr3

and the number of local procs on each node would be four. If vpid=0 then does a comm_spawn of one process on host1, the values of the parent job would remain unchanged. The local_rank of the child process would be 0 and its num_local_procs would be 1 since it is in a separate jobid.

I have verified this functionality for the rsh case - need to verify that slurm and other cases also get the right values. Some consolidation of common code is probably going to occur in the SDS components to make this simpler and more maintainable in the future.

This commit was SVN r14706.
2007-05-21 14:30:10 +00:00
Ralph Castain
6d6cebb4a7 Bring over the update to terminate orteds that are generated by a dynamic spawn such as comm_spawn. This introduces the concept of a job "family" - i.e., jobs that have a parent/child relationship. Comm_spawn'ed jobs have a parent (the one that spawned them). We track that relationship throughout the lineage - i.e., if a comm_spawned job in turn calls comm_spawn, then it has a parent (the one that spawned it) and a "root" job (the original job that started things).
Accordingly, there are new APIs to the name service to support the ability to get a job's parent, root, immediate children, and all its descendants. In addition, the terminate_job, terminate_orted, and signal_job APIs for the PLS have been modified to accept attributes that define the extent of their actions. For example, doing a "terminate_job" with an attribute of ORTE_NS_INCLUDE_DESCENDANTS will terminate the given jobid AND all jobs that descended from it.

I have tested this capability on a MacBook under rsh, Odin under SLURM, and LANL's Flash (bproc). It worked successfully on non-MPI jobs (both simple and including a spawn), and MPI jobs (again, both simple and with a spawn).

This commit was SVN r12597.
2006-11-14 19:34:59 +00:00
George Bosilca
2aa3e51223 Nothing relevant. Only a set of castings to have a clean compile on
Windows. The cl.exe compiler is pretty good at complaining about
any kind of non explicit cast.

This commit was SVN r12207.
2006-10-20 02:25:50 +00:00
Brian Barrett
566a050c23 Next step in the project split, mainly source code re-arranging
- move files out of toplevel include/ and etc/, moving it into the
    sub-projects
  - rather than including config headers with <project>/include, 
    have them as <project>
  - require all headers to be included with a project prefix, with
    the exception of the config headers ({opal,orte,ompi}_config.h
    mpi.h, and mpif.h)

This commit was SVN r8985.
2006-02-12 01:33:29 +00:00
Jeff Squyres
42ec26e640 Update the copyright notices for IU and UTK.
This commit was SVN r7999.
2005-11-05 19:57:48 +00:00
Brian Barrett
d7bb611a74 * make all the sds components follow the prefix rule. Shame on me.
This commit was SVN r6710.
2005-08-02 18:51:28 +00:00
Brian Barrett
1ce2e26272 Move set_my_name (NDS) functionality from ns_base and universe contact
test from orte_init_stage1 into a new framework, Startup Discovery Service
(sds).  This allows us to have more flexibility with platforms like
Red Storm, which do not have a universe in the usual meaning and don't have
a seed daemon they can contact

This commit was SVN r6630.
2005-07-27 23:18:16 +00:00