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openmpi/ompi/mca/vprotocol/pessimist/vprotocol_pessimist_sender_based.h
Ralph Castain 40a2bfa238 WARNING: Work on the temp branch being merged here encountered problems with bugs in subversion. Considerable effort has gone into validating the branch. However, not all conditions can be checked, so users are cautioned that it may be advisable to not update from the trunk for a few days to allow MTT to identify platform-specific issues.
This merges the branch containing the revamped build system based around converting autogen from a bash script to a Perl program. Jeff has provided emails explaining the features contained in the change.

Please note that configure requirements on components HAVE CHANGED. For example. a configure.params file is no longer required in each component directory. See Jeff's emails for an explanation.

This commit was SVN r23764.
2010-09-17 23:04:06 +00:00

215 строки
8.2 KiB
C

/*
* Copyright (c) 2004-2007 The Trustees of the University of Tennessee.
* All rights reserved.
* $COPYRIGHT$
*
* Additional copyrights may follow
*
* $HEADER$
*/
#ifndef __VPROTOCOL_PESSIMIST_SENDERBASED_H__
#define __VPROTOCOL_PESSIMIST_SENDERBASED_H__
#include "ompi_config.h"
#include "ompi/mca/pml/base/pml_base_sendreq.h"
#include "ompi/mca/pml/v/pml_v_output.h"
#include "vprotocol_pessimist_sender_based_types.h"
#include "vprotocol_pessimist_request.h"
#include "vprotocol_pessimist.h"
BEGIN_C_DECLS
/** Prepare for using the sender based storage
*/
int vprotocol_pessimist_sender_based_init(const char *mmapfile, size_t size);
/** Cleanup mmap etc
*/
void vprotocol_pessimist_sender_based_finalize(void);
/** Manage mmap floating window, allocating enough memory for the message to be
* asynchronously copied to disk.
*/
void vprotocol_pessimist_sender_based_alloc(size_t len);
/*******************************************************************************
* Convertor pack (blocking) method (good latency, bad bandwidth)
*/
#if defined(SB_USE_PACK_METHOD)
static inline void __SENDER_BASED_METHOD_COPY(mca_pml_base_send_request_t *pmlreq)
{
if(0 != pmlreq->req_bytes_packed)
{
opal_convertor_t conv;
size_t max_data;
size_t zero = 0;
unsigned int iov_count = 1;
struct iovec iov;
max_data = iov.iov_len = pmlreq->req_bytes_packed;
iov.iov_base = (IOVBASE_TYPE *) VPESSIMIST_SEND_FTREQ(pmlreq)->sb.cursor;
opal_convertor_clone_with_position( &pmlreq->req_base.req_convertor,
&conv, 0, &zero );
opal_convertor_pack(&conv, &iov, &iov_count, &max_data);
}
}
#define __SENDER_BASED_METHOD_FLUSH(REQ)
/*******************************************************************************
* Convertor replacement (non blocking) method (under testing)
*/
#elif defined(SB_USE_CONVERTOR_METHOD)
int32_t vprotocol_pessimist_sender_based_convertor_advance(opal_convertor_t*,
struct iovec*,
uint32_t*,
size_t*);
#define __SENDER_BASED_METHOD_COPY(REQ) do { \
opal_convertor_t *pConv; \
mca_vprotocol_pessimist_send_request_t *ftreq; \
\
pConv = & (REQ)->req_base.req_convertor; \
ftreq = VPESSIMIST_SEND_FTREQ(REQ); \
ftreq->sb.conv_flags = pConv->flags; \
ftreq->sb.conv_advance = pConv->fAdvance; \
\
pConv->flags &= ~CONVERTOR_NO_OP; \
pConv->fAdvance = vprotocol_pessimist_sender_based_convertor_advance; \
} while(0)
#define __SENDER_BASED_METHOD_FLUSH(REQ)
#define VPESSIMIST_CONV_REQ(CONV) ((mca_vprotocol_pessimist_send_request_t *) \
(mca_vprotocol_pessimist.sender_based.sb_conv_to_pessimist_offset + \
(uintptr_t) ((CONV)->clone_of)))
/*******************************************************************************
* progress method
*/
#elif defined(SB_USE_PROGRESS_METHOD)
static inline void __SENDER_BASED_METHOD_COPY(mca_pml_base_send_request_t *req)
{
if(req->req_bytes_packed)
{
mca_vprotocol_pessimist_send_request_t *ftreq = VPESSIMIST_SEND_FTREQ(req);
ftreq->sb.bytes_progressed = 0;
opal_list_append(&mca_vprotocol_pessimist.sender_based.sb_sendreq,
&ftreq->list_item);
}
}
static inline int vprotocol_pessimist_sb_progress_req(mca_pml_base_send_request_t *req)
{
mca_vprotocol_pessimist_request_t *ftreq = VPESSIMIST_SEND_FTREQ(req);
size_t max_data = 0;
if(ftreq->sb.bytes_progressed < req->req_bytes_packed)
{
opal_convertor_t conv;
unsigned int iov_count = 1;
struct iovec iov;
uintptr_t position = ftreq->sb.bytes_progressed;
max_data = req->req_bytes_packed - ftreq->sb.bytes_progressed;
iov.iov_len = max_data;
iov.iov_base = (IOVBASE_TYPE *) (ftreq->sb.cursor + position);
V_OUTPUT_VERBOSE(80, "pessimist:\tsb\tprgress\t%"PRIpclock"\tsize %lu from position %lu", ftreq->reqid, max_data, position);
opal_convertor_clone_with_position(&req->req_base.req_convertor,
&conv, 0, &position );
opal_convertor_pack(&conv, &iov, &iov_count, &max_data);
ftreq->sb.bytes_progressed += max_data;
}
return max_data;
}
static inline int vprotocol_pessimist_sb_progress_all_reqs(void)
{
int ret = 0;
/* progress any waiting Sender Based copy */
if(!opal_list_is_empty(&mca_vprotocol_pessimist.sender_based.sb_sendreq))
{
mca_vprotocol_pessimist_request_t *ftreq = (mca_vprotocol_pessimist_request_t *)
opal_list_remove_first(&mca_vprotocol_pessimist.sender_based.sb_sendreq);
if(vprotocol_pessimist_sb_progress_req(VPROTOCOL_SEND_REQ(ftreq)))
ret = 1;
opal_list_append(&mca_vprotocol_pessimist.sender_based.sb_sendreq,
&ftreq->list_item);
}
return ret;
}
static inline void __SENDER_BASED_METHOD_FLUSH(ompi_request_t *req)
{
mca_pml_base_send_request_t *pmlreq = (mca_pml_base_send_request_t *) req;
if((pmlreq->req_base.req_type == MCA_PML_REQUEST_SEND) &&
pmlreq->req_bytes_packed)
{
mca_vprotocol_pessimist_request_t *ftreq = VPESSIMIST_SEND_FTREQ(req);
assert(!opal_list_is_empty(&mca_vprotocol_pessimist.sender_based.sb_sendreq));
opal_list_remove_item(&mca_vprotocol_pessimist.sender_based.sb_sendreq,
(opal_list_item_t *) ftreq);
vprotocol_pessimist_sb_progress_req(pmlreq);
assert(pmlreq->req_bytes_packed == ftreq->sb.bytes_progressed);
}
}
#endif /* SB_USE_*_METHOD */
/** Copy data associated to a pml_base_send_request_t to the sender based
* message payload buffer
*/
static inline void vprotocol_pessimist_sender_based_copy_start(ompi_request_t *req)
{
vprotocol_pessimist_sender_based_header_t *sbhdr;
mca_vprotocol_pessimist_request_t *ftreq = VPESSIMIST_SEND_FTREQ(req);
mca_pml_base_send_request_t *pmlreq = (mca_pml_base_send_request_t *) req;
/* Allocate enough sender-based space to hold the message */
if(mca_vprotocol_pessimist.sender_based.sb_available <
pmlreq->req_bytes_packed +
sizeof(vprotocol_pessimist_sender_based_header_t))
{
vprotocol_pessimist_sender_based_alloc(pmlreq->req_bytes_packed);
}
/* Copy message header to the sender-based space */
/* /!\ This is NOT thread safe */
ftreq->sb.cursor = mca_vprotocol_pessimist.sender_based.sb_cursor;
#if 1
mca_vprotocol_pessimist.sender_based.sb_cursor +=
sizeof(vprotocol_pessimist_sender_based_header_t) +
pmlreq->req_bytes_packed;
mca_vprotocol_pessimist.sender_based.sb_available -=
sizeof(vprotocol_pessimist_sender_based_header_t) +
pmlreq->req_bytes_packed;
#endif
sbhdr = (vprotocol_pessimist_sender_based_header_t *) ftreq->sb.cursor;
sbhdr->size = pmlreq->req_bytes_packed;
sbhdr->dst = pmlreq->req_base.req_peer;
sbhdr->tag = pmlreq->req_base.req_tag;
sbhdr->contextid = pmlreq->req_base.req_comm->c_contextid;
sbhdr->sequence = pmlreq->req_base.req_sequence;
ftreq->sb.cursor += sizeof(vprotocol_pessimist_sender_based_header_t);
V_OUTPUT_VERBOSE(70, "pessimist:\tsb\tsend\t%"PRIpclock"\tsize %lu (+%lu header)", VPESSIMIST_FTREQ(req)->reqid, (long unsigned)pmlreq->req_bytes_packed, (long unsigned)sizeof(vprotocol_pessimist_sender_based_header_t));
/* Use one of the previous data copy method */
__SENDER_BASED_METHOD_COPY(pmlreq);
}
/** Ensure sender based is finished before allowing user to touch send buffer
*/
#define vprotocol_pessimist_sender_based_flush(REQ) __SENDER_BASED_METHOD_FLUSH(REQ)
END_C_DECLS
#endif