/* This program is free software; you can redistribute it and/or modify it
* under the terms of the license (GNU LGPL) which comes with this package. */
+#include <xbt/config.hpp>
+
#include "private.h"
#include "xbt/virtu.h"
#include "mc/mc.h"
#include "simgrid/sg_config.h"
#include "colls/colls.h"
+#include "src/simix/SynchroComm.hpp"
+
XBT_LOG_NEW_DEFAULT_SUBCATEGORY(smpi_base, smpi, "Logging specific to SMPI (base)");
static int match_recv(void* a, void* b, smx_synchro_t ignored) {
- MPI_Request ref = (MPI_Request)a;
- MPI_Request req = (MPI_Request)b;
+ MPI_Request ref = static_cast<MPI_Request>(a);
+ MPI_Request req = static_cast<MPI_Request>(b);
XBT_DEBUG("Trying to match a recv of src %d against %d, tag %d against %d",ref->src,req->src, ref->tag, req->tag);
xbt_assert(ref, "Cannot match recv against null reference");
if((ref->src == MPI_ANY_SOURCE || req->src == ref->src)
&& ((ref->tag == MPI_ANY_TAG && req->tag >=0) || req->tag == ref->tag)){
//we match, we can transfer some values
- // FIXME : move this to the copy function ?
- if(ref->src == MPI_ANY_SOURCE)ref->real_src = req->src;
- if(ref->tag == MPI_ANY_TAG)ref->real_tag = req->tag;
- if(ref->real_size < req->real_size) ref->truncated = 1;
- if(req->detached==1){
+ if(ref->src == MPI_ANY_SOURCE)
+ ref->real_src = req->src;
+ if(ref->tag == MPI_ANY_TAG)
+ ref->real_tag = req->tag;
+ if(ref->real_size < req->real_size)
+ ref->truncated = 1;
+ if(req->detached==1)
ref->detached_sender=req; //tie the sender to the receiver, as it is detached and has to be freed in the receiver
- }
XBT_DEBUG("match succeeded");
return 1;
}else return 0;
}
static int match_send(void* a, void* b,smx_synchro_t ignored) {
- MPI_Request ref = (MPI_Request)a;
- MPI_Request req = (MPI_Request)b;
+ MPI_Request ref = static_cast<MPI_Request>(a);
+ MPI_Request req = static_cast<MPI_Request>(b);
XBT_DEBUG("Trying to match a send of src %d against %d, tag %d against %d",ref->src,req->src, ref->tag, req->tag);
xbt_assert(ref, "Cannot match send against null reference");
xbt_assert(req, "Cannot match send against null request");
if((req->src == MPI_ANY_SOURCE || req->src == ref->src)
&& ((req->tag == MPI_ANY_TAG && ref->tag >=0)|| req->tag == ref->tag))
{
- if(req->src == MPI_ANY_SOURCE)req->real_src = ref->src;
- if(req->tag == MPI_ANY_TAG)req->real_tag = ref->tag;
- if(req->real_size < ref->real_size) req->truncated = 1;
- if(ref->detached==1){
+ if(req->src == MPI_ANY_SOURCE)
+ req->real_src = ref->src;
+ if(req->tag == MPI_ANY_TAG)
+ req->real_tag = ref->tag;
+ if(req->real_size < ref->real_size)
+ req->truncated = 1;
+ if(ref->detached==1)
req->detached_sender=ref; //tie the sender to the receiver, as it is detached and has to be freed in the receiver
- }
- XBT_DEBUG("match succeeded");
+ XBT_DEBUG("match succeeded");
return 1;
} else return 0;
}
int nb_values;
double values[4];//arbitrary set to 4
} s_smpi_factor_multival_t;
+
xbt_dynar_t smpi_os_values = NULL;
xbt_dynar_t smpi_or_values = NULL;
xbt_dynar_t smpi_ois_values = NULL;
-double smpi_wtime_sleep = 0.0;
-double smpi_iprobe_sleep = 1e-4;
-double smpi_test_sleep = 1e-4;
+static simgrid::config::Flag<double> smpi_wtime_sleep(
+ "smpi/wtime", "Minimum time to inject inside a call to MPI_Wtime", 0.0);
+static simgrid::config::Flag<double> smpi_iprobe_sleep(
+ "smpi/iprobe", "Minimum time to inject inside a call to MPI_Iprobe", 1e-4);
+static simgrid::config::Flag<double> smpi_test_sleep(
+ "smpi/test", "Minimum time to inject inside a call to MPI_Test", 1e-4);
static int factor_cmp(const void *pa, const void *pb)
{
- return (((s_smpi_factor_multival_t*)pa)->factor > ((s_smpi_factor_multival_t*)pb)->factor) ? 1 :
- (((s_smpi_factor_multival_t*)pa)->factor < ((s_smpi_factor_multival_t*)pb)->factor) ? -1 : 0;
+ return ((static_cast<const s_smpi_factor_multival_t*>(pa))->factor > (static_cast<const s_smpi_factor_multival_t*>(pb))->factor) ? 1 :
+ ((static_cast<const s_smpi_factor_multival_t*>(pa))->factor < (static_cast<const s_smpi_factor_multival_t*>(pb))->factor) ? -1 : 0;
}
static xbt_dynar_t parse_factor(const char *smpi_coef_string)
s_smpi_factor_multival_t fact;
fact.nb_values=0;
unsigned int i=0;
- xbt_dynar_t smpi_factor, radical_elements, radical_elements2 = NULL;
+ xbt_dynar_t radical_elements2 = NULL;
- smpi_factor = xbt_dynar_new(sizeof(s_smpi_factor_multival_t), NULL);
- radical_elements = xbt_str_split(smpi_coef_string, ";");
+ xbt_dynar_t smpi_factor = xbt_dynar_new(sizeof(s_smpi_factor_multival_t), NULL);
+ xbt_dynar_t radical_elements = xbt_str_split(smpi_coef_string, ";");
xbt_dynar_foreach(radical_elements, iter, value) {
memset(&fact, 0, sizeof(s_smpi_factor_multival_t));
radical_elements2 = xbt_str_split(value, ":");
static double smpi_os(double size)
{
- if (!smpi_os_values) {
+ if (smpi_os_values == NULL) {
smpi_os_values = parse_factor(xbt_cfg_get_string("smpi/os"));
smpi_register_static(smpi_os_values, xbt_dynar_free_voidp);
}
static double smpi_ois(double size)
{
- if (!smpi_ois_values) {
+ if (smpi_ois_values == NULL) {
smpi_ois_values = parse_factor(xbt_cfg_get_string("smpi/ois"));
smpi_register_static(smpi_ois_values, xbt_dynar_free_voidp);
}
static double smpi_or(double size)
{
- if (!smpi_or_values) {
+ if (smpi_or_values == NULL) {
smpi_or_values = parse_factor(xbt_cfg_get_string("smpi/or"));
smpi_register_static(smpi_or_values, xbt_dynar_free_voidp);
}
double smpi_mpi_wtime(){
double time;
- if (smpi_process_initialized() && !smpi_process_finalized() && !smpi_process_get_sampling()) {
+ if (smpi_process_initialized() != 0 &&
+ smpi_process_finalized() == 0 &&
+ smpi_process_get_sampling() == 0) {
smpi_bench_end();
time = SIMIX_get_clock();
// to avoid deadlocks if used as a break condition, such as
// }
// because the time will not normally advance when only calls to MPI_Wtime
// are made -> deadlock (MPI_Wtime never reaches the time limit)
- if(smpi_wtime_sleep > 0) simcall_process_sleep(smpi_wtime_sleep);
+ if(smpi_wtime_sleep > 0)
+ simcall_process_sleep(smpi_wtime_sleep);
smpi_bench_begin();
} else {
time = SIMIX_get_clock();
s_smpi_subtype_t *subtype = static_cast<s_smpi_subtype_t*>(datatype->substruct);
- if(((flags & RECV) && (flags & ACCUMULATE)) || (datatype->sizeof_subtype != 0)){
+ if((((flags & RECV) != 0) && ((flags & ACCUMULATE) !=0)) || (datatype->sizeof_substruct != 0)){
// This part handles the problem of non-contiguous memory
old_buf = buf;
buf = count==0 ? NULL : xbt_malloc(count*smpi_datatype_size(datatype));
- if ((datatype->sizeof_subtype != 0) && (flags & SEND)) {
+ if ((datatype->sizeof_substruct != 0) && ((flags & SEND) != 0)) {
subtype->serialize(old_buf, buf, count, datatype->substruct);
}
}
request->old_type = datatype;
request->size = smpi_datatype_size(datatype) * count;
+ smpi_datatype_use(datatype);
request->src = src;
request->dst = dst;
request->tag = tag;
request->comm = comm;
+ smpi_comm_use(request->comm);
request->action = NULL;
request->flags = flags;
request->detached = 0;
request->op = MPI_REPLACE;
request->send = 0;
request->recv = 0;
- if (flags & SEND) smpi_datatype_unuse(datatype);
return request;
}
int dst, int tag, MPI_Comm comm)
{
MPI_Request request = NULL; /* MC needs the comm to be set to NULL during the call */
- request = build_request(buf==MPI_BOTTOM ? (void*)0 : buf, count, datatype, smpi_process_index(),
+ request = build_request(buf==MPI_BOTTOM ? NULL : buf, count, datatype, smpi_process_index(),
smpi_group_index(smpi_comm_group(comm), dst), tag, comm, PERSISTENT | SEND | PREPARED);
return request;
}
int dst, int tag, MPI_Comm comm)
{
MPI_Request request = NULL; /* MC needs the comm to be set to NULL during the call */
- request = build_request(buf==MPI_BOTTOM ? (void*)0 : buf, count, datatype, smpi_process_index(),
+ request = build_request(buf==MPI_BOTTOM ? NULL : buf, count, datatype, smpi_process_index(),
smpi_group_index(smpi_comm_group(comm), dst), tag, comm, PERSISTENT | SSEND | SEND | PREPARED);
return request;
}
int src, int tag, MPI_Comm comm)
{
MPI_Request request = NULL; /* MC needs the comm to be set to NULL during the call */
- request = build_request(buf==MPI_BOTTOM ? (void*)0 : buf, count, datatype,
+ request = build_request(buf==MPI_BOTTOM ? NULL : buf, count, datatype,
src == MPI_ANY_SOURCE ? MPI_ANY_SOURCE : smpi_group_index(smpi_comm_group(comm), src),
smpi_process_index(), tag, comm, PERSISTENT | RECV | PREPARED);
return request;
request->flags &= ~FINISHED;
request->refcount++;
- if (request->flags & RECV) {
+ if ((request->flags & RECV) != 0) {
print_request("New recv", request);
- int async_small_thresh = xbt_cfg_get_int("smpi/async_small_thresh");
+ int async_small_thresh = xbt_cfg_get_int("smpi/async-small-thresh");
xbt_mutex_t mut = smpi_process_mailboxes_mutex();
- if (async_small_thresh != 0 ||request->flags & RMA)
+ if (async_small_thresh != 0 || (request->flags & RMA) != 0)
xbt_mutex_acquire(mut);
- if (async_small_thresh == 0 && !(request->flags & RMA)) {
+ if (async_small_thresh == 0 && (request->flags & RMA) == 0 ) {
mailbox = smpi_process_mailbox();
- } else if (request->flags & RMA || static_cast<int>(request->size) < async_small_thresh){
+ } else if (((request->flags & RMA) != 0) || static_cast<int>(request->size) < async_small_thresh){
//We have to check both mailboxes (because SSEND messages are sent to the large mbox).
//begin with the more appropriate one : the small one.
mailbox = smpi_process_mailbox_small();
XBT_DEBUG("Is there a corresponding send already posted in the small mailbox %p (in case of SSEND)?", mailbox);
- smx_synchro_t action = simcall_comm_iprobe(mailbox, 0, request->src,request->tag, &match_recv, (void*)request);
+ smx_synchro_t action = simcall_comm_iprobe(mailbox, 0, request->src,request->tag, &match_recv, static_cast<void*>(request));
if(action ==NULL){
mailbox = smpi_process_mailbox();
XBT_DEBUG("No, nothing in the small mailbox test the other one : %p", mailbox);
- action = simcall_comm_iprobe(mailbox, 0, request->src,request->tag, &match_recv, (void*)request);
+ action = simcall_comm_iprobe(mailbox, 0, request->src,request->tag, &match_recv, static_cast<void*>(request));
if(action ==NULL){
XBT_DEBUG("Still nothing, switch back to the small mailbox : %p", mailbox);
mailbox = smpi_process_mailbox_small();
}
//integrate pseudo-timing for buffering of small messages, do not bother to execute the simcall if 0
- double sleeptime = request->detached ? smpi_or(request->size) : 0.0;
- if(sleeptime!=0.0){
+ double sleeptime = (request->detached != 0) ? smpi_or(request->size) : 0.0;
+ if(sleeptime > 0.0){
simcall_process_sleep(sleeptime);
XBT_DEBUG("receiving size of %zu : sleep %f ", request->size, smpi_or(request->size));
}
// we make a copy here, as the size is modified by simix, and we may reuse the request in another receive later
request->real_size=request->size;
- smpi_datatype_use(request->old_type);
- smpi_comm_use(request->comm);
request->action = simcall_comm_irecv(SIMIX_process_self(), mailbox, request->buf, &request->real_size, &match_recv,
- !smpi_process_get_replaying()? &smpi_comm_copy_buffer_callback
+ ! smpi_process_get_replaying()? &smpi_comm_copy_buffer_callback
: &smpi_comm_null_copy_buffer_callback, request, -1.0);
XBT_DEBUG("recv simcall posted");
- if (async_small_thresh != 0 || (request->flags & RMA))
+ if (async_small_thresh != 0 || (request->flags & RMA) != 0 )
xbt_mutex_release(mut);
} else {
int receiver = request->dst;
//if we are giving back the control to the user without waiting for completion, we have to inject timings
double sleeptime = 0.0;
- if(request->detached || (request->flags & (ISEND|SSEND))){// issend should be treated as isend
+ if(request->detached != 0 || (request->flags & (ISEND|SSEND))){// issend should be treated as isend
//isend and send timings may be different
- sleeptime = (request->flags & ISEND)? smpi_ois(request->size) : smpi_os(request->size);
+ sleeptime = ((request->flags & ISEND) != 0)? smpi_ois(request->size) : smpi_os(request->size);
}
- if(sleeptime != 0.0){
+ if(sleeptime > 0.0){
simcall_process_sleep(sleeptime);
XBT_DEBUG("sending size of %zu : sleep %f ", request->size, smpi_os(request->size));
}
- int async_small_thresh = xbt_cfg_get_int("smpi/async_small_thresh");
+ int async_small_thresh = xbt_cfg_get_int("smpi/async-small-thresh");
xbt_mutex_t mut=smpi_process_remote_mailboxes_mutex(receiver);
- if (async_small_thresh != 0 || (request->flags & RMA))
+ if (async_small_thresh != 0 || (request->flags & RMA) != 0)
xbt_mutex_acquire(mut);
- if (!(async_small_thresh != 0 || (request->flags & RMA))) {
+ if (!(async_small_thresh != 0 || (request->flags & RMA) !=0)) {
mailbox = smpi_process_remote_mailbox(receiver);
}
- else if (request->flags & RMA || static_cast<int>(request->size) < async_small_thresh) { // eager mode
+ else if (((request->flags & RMA) != 0) || static_cast<int>(request->size) < async_small_thresh) { // eager mode
mailbox = smpi_process_remote_mailbox(receiver);
XBT_DEBUG("Is there a corresponding recv already posted in the large mailbox %p?", mailbox);
- smx_synchro_t action = simcall_comm_iprobe(mailbox, 1,request->dst, request->tag, &match_send, (void*)request);
+ smx_synchro_t action = simcall_comm_iprobe(mailbox, 1,request->dst, request->tag, &match_send, static_cast<void*>(request));
if(action ==NULL){
- if (! (request->flags & SSEND)){
+ if ((request->flags & SSEND) == 0){
mailbox = smpi_process_remote_mailbox_small(receiver);
XBT_DEBUG("No, nothing in the large mailbox, message is to be sent on the small one %p", mailbox);
} else{
mailbox = smpi_process_remote_mailbox_small(receiver);
XBT_DEBUG("SSEND : Is there a corresponding recv already posted in the small mailbox %p?", mailbox);
- action = simcall_comm_iprobe(mailbox, 1,request->dst, request->tag, &match_send, (void*)request);
+ action = simcall_comm_iprobe(mailbox, 1,request->dst, request->tag, &match_send, static_cast<void*>(request));
if(action ==NULL){
XBT_DEBUG("No, we are first, send to large mailbox");
mailbox = smpi_process_remote_mailbox(receiver);
}
void* buf = request->buf;
- if ( (! (request->flags & SSEND)) && ((request->flags & RMA) ||
- (static_cast<int>(request->size) < xbt_cfg_get_int("smpi/send_is_detached_thresh")))) {
+ if ( ((request->flags & SSEND) == 0) && (((request->flags & RMA) != 0) ||
+ (static_cast<int>(request->size) < xbt_cfg_get_int("smpi/send-is-detached-thresh")))) {
void *oldbuf = NULL;
request->detached = 1;
XBT_DEBUG("Send request %p is detached", request);
request->refcount++;
- if(request->old_type->sizeof_subtype == 0){
+ if(request->old_type->sizeof_substruct == 0){
oldbuf = request->buf;
- if (!smpi_process_get_replaying() && oldbuf && request->size!=0){
- if((smpi_privatize_global_variables)
- && ((char*) request->buf >= smpi_start_data_exe)
- && ((char*)request->buf < smpi_start_data_exe + smpi_size_data_exe )){
+ if (!smpi_process_get_replaying() && oldbuf != NULL && request->size!=0){
+ if((smpi_privatize_global_variables != 0)
+ && (static_cast<char*>(request->buf) >= smpi_start_data_exe)
+ && (static_cast<char*>(request->buf) < smpi_start_data_exe + smpi_size_data_exe )){
XBT_DEBUG("Privatization : We are sending from a zone inside global memory. Switch data segment ");
smpi_switch_data_segment(request->src);
}
// we make a copy here, as the size is modified by simix, and we may reuse the request in another receive later
request->real_size=request->size;
- smpi_datatype_use(request->old_type);
- smpi_comm_use(request->comm);
request->action = simcall_comm_isend(SIMIX_process_from_PID(request->src+1), mailbox, request->size, -1.0,
buf, request->real_size, &match_send,
&xbt_free_f, // how to free the userdata if a detached send fails
- !smpi_process_get_replaying()? &smpi_comm_copy_buffer_callback
+ !smpi_process_get_replaying() ? &smpi_comm_copy_buffer_callback
: &smpi_comm_null_copy_buffer_callback, request,
// detach if msg size < eager/rdv switch limit
request->detached);
if (request->action)
simcall_set_category(request->action, TRACE_internal_smpi_get_category());
- if (async_small_thresh != 0 || request->flags & RMA)
+ if (async_small_thresh != 0 || ((request->flags & RMA)!=0))
xbt_mutex_release(mut);
}
}
void smpi_mpi_startall(int count, MPI_Request * requests)
{
- if(requests==NULL) return;
+ if(requests==NULL)
+ return;
for(int i = 0; i < count; i++) {
smpi_mpi_start(requests[i]);
if((*request)->refcount<0) xbt_die("wrong refcount");
if((*request)->refcount==0){
+ smpi_datatype_unuse((*request)->old_type);
+ smpi_comm_unuse((*request)->comm);
print_request("Destroying", (*request));
xbt_free(*request);
*request = MPI_REQUEST_NULL;
{
MPI_Request request = NULL; /* MC needs the comm to be set to NULL during the call */
if(op==MPI_OP_NULL){
- request = build_request(buf==MPI_BOTTOM ? (void*)0 : buf , count, datatype, src, dst, tag,
+ request = build_request(buf==MPI_BOTTOM ? NULL : buf , count, datatype, src, dst, tag,
comm, RMA | NON_PERSISTENT | ISEND | SEND | PREPARED);
}else{
- request = build_request(buf==MPI_BOTTOM ? (void*)0 : buf, count, datatype, src, dst, tag,
+ request = build_request(buf==MPI_BOTTOM ? NULL : buf, count, datatype, src, dst, tag,
comm, RMA | NON_PERSISTENT | ISEND | SEND | PREPARED | ACCUMULATE);
request->op = op;
}
{
MPI_Request request = NULL; /* MC needs the comm to be set to NULL during the call */
if(op==MPI_OP_NULL){
- request = build_request(buf==MPI_BOTTOM ? (void*)0 : buf, count, datatype, src, dst, tag,
+ request = build_request(buf==MPI_BOTTOM ? NULL : buf, count, datatype, src, dst, tag,
comm, RMA | NON_PERSISTENT | RECV | PREPARED);
}else{
- request = build_request(buf==MPI_BOTTOM ? (void*)0 : buf, count, datatype, src, dst, tag,
+ request = build_request(buf==MPI_BOTTOM ? NULL : buf, count, datatype, src, dst, tag,
comm, RMA | NON_PERSISTENT | RECV | PREPARED | ACCUMULATE);
request->op = op;
}
MPI_Request smpi_isend_init(void *buf, int count, MPI_Datatype datatype, int dst, int tag, MPI_Comm comm)
{
MPI_Request request = NULL; /* MC needs the comm to be set to NULL during the call */
- request = build_request(buf==MPI_BOTTOM ? (void*)0 : buf , count, datatype, smpi_process_index(),
+ request = build_request(buf==MPI_BOTTOM ? NULL : buf , count, datatype, smpi_process_index(),
smpi_group_index(smpi_comm_group(comm), dst), tag,comm, PERSISTENT | ISEND | SEND | PREPARED);
return request;
}
MPI_Request smpi_mpi_isend(void *buf, int count, MPI_Datatype datatype, int dst, int tag, MPI_Comm comm)
{
MPI_Request request = NULL; /* MC needs the comm to be set to NULL during the call */
- request = build_request(buf==MPI_BOTTOM?(void*)0:buf, count, datatype, smpi_process_index(),
+ request = build_request(buf==MPI_BOTTOM ? NULL : buf, count, datatype, smpi_process_index(),
smpi_group_index(smpi_comm_group(comm), dst), tag, comm, NON_PERSISTENT | ISEND | SEND);
smpi_mpi_start(request);
return request;
MPI_Request smpi_mpi_issend(void *buf, int count, MPI_Datatype datatype, int dst, int tag, MPI_Comm comm)
{
MPI_Request request = NULL; /* MC needs the comm to be set to NULL during the call */
- request = build_request(buf==MPI_BOTTOM ? (void*)0 : buf, count, datatype, smpi_process_index(),
+ request = build_request(buf==MPI_BOTTOM ? NULL : buf, count, datatype, smpi_process_index(),
smpi_group_index(smpi_comm_group(comm), dst), tag,comm, NON_PERSISTENT | ISEND | SSEND | SEND);
smpi_mpi_start(request);
return request;
MPI_Request smpi_irecv_init(void *buf, int count, MPI_Datatype datatype, int src, int tag, MPI_Comm comm)
{
MPI_Request request = NULL; /* MC needs the comm to be set to NULL during the call */
- request = build_request(buf==MPI_BOTTOM ? (void*)0 : buf, count, datatype, src == MPI_ANY_SOURCE ? MPI_ANY_SOURCE :
+ request = build_request(buf==MPI_BOTTOM ? NULL : buf, count, datatype, src == MPI_ANY_SOURCE ? MPI_ANY_SOURCE :
smpi_group_index(smpi_comm_group(comm), src), smpi_process_index(), tag,
comm, PERSISTENT | RECV | PREPARED);
return request;
MPI_Request smpi_mpi_irecv(void *buf, int count, MPI_Datatype datatype, int src, int tag, MPI_Comm comm)
{
MPI_Request request = NULL; /* MC needs the comm to be set to NULL during the call */
- request = build_request(buf==MPI_BOTTOM ? (void*)0 : buf, count, datatype, src == MPI_ANY_SOURCE ? MPI_ANY_SOURCE :
+ request = build_request(buf==MPI_BOTTOM ? NULL : buf, count, datatype, src == MPI_ANY_SOURCE ? MPI_ANY_SOURCE :
smpi_group_index(smpi_comm_group(comm), src), smpi_process_index(), tag, comm,
NON_PERSISTENT | RECV);
smpi_mpi_start(request);
void smpi_mpi_send(void *buf, int count, MPI_Datatype datatype, int dst, int tag, MPI_Comm comm)
{
MPI_Request request = NULL; /* MC needs the comm to be set to NULL during the call */
- request = build_request(buf==MPI_BOTTOM ? (void*)0 : buf, count, datatype, smpi_process_index(),
+ request = build_request(buf==MPI_BOTTOM ? NULL : buf, count, datatype, smpi_process_index(),
smpi_group_index(smpi_comm_group(comm), dst), tag, comm, NON_PERSISTENT | SEND);
smpi_mpi_start(request);
void smpi_mpi_ssend(void *buf, int count, MPI_Datatype datatype, int dst, int tag, MPI_Comm comm)
{
MPI_Request request = NULL; /* MC needs the comm to be set to NULL during the call */
- request = build_request(buf==MPI_BOTTOM ? (void*)0 : buf, count, datatype, smpi_process_index(),
+ request = build_request(buf==MPI_BOTTOM ? NULL : buf, count, datatype, smpi_process_index(),
smpi_group_index(smpi_comm_group(comm), dst), tag, comm, NON_PERSISTENT | SSEND | SEND);
smpi_mpi_start(request);
MPI_Request req = *request;
smpi_empty_status(status);
- if(!(req->detached && req->flags & SEND) && !(req->flags & PREPARED)){
+ if(!((req->detached != 0) && req->flags & SEND) && ((req->flags & PREPARED) == 0)){
if(status != MPI_STATUS_IGNORE) {
int src = req->src == MPI_ANY_SOURCE ? req->real_src : req->src;
status->MPI_SOURCE = smpi_group_rank(smpi_comm_group(req->comm), src);
status->MPI_TAG = req->tag == MPI_ANY_TAG ? req->real_tag : req->tag;
- status->MPI_ERROR = req->truncated ? MPI_ERR_TRUNCATE : MPI_SUCCESS;
+ status->MPI_ERROR = req->truncated != 0 ? MPI_ERR_TRUNCATE : MPI_SUCCESS;
// this handles the case were size in receive differs from size in send
- // FIXME: really this should just contain the count of receive-type blocks, right?
status->count = req->real_size;
}
print_request("Finishing", req);
MPI_Datatype datatype = req->old_type;
- if((req->flags & ACCUMULATE) || (datatype->sizeof_subtype != 0)){
+ if(((req->flags & ACCUMULATE) != 0) || (datatype->sizeof_substruct != 0)){
if (!smpi_process_get_replaying()){
- if( smpi_privatize_global_variables && ((char*)req->old_buf >= smpi_start_data_exe)
+ if( smpi_privatize_global_variables != 0 && (static_cast<char*>(req->old_buf) >= smpi_start_data_exe)
&& ((char*)req->old_buf < smpi_start_data_exe + smpi_size_data_exe )){
XBT_VERB("Privatization : We are unserializing to a zone in global memory - Switch data segment ");
smpi_switch_data_segment(smpi_process_index());
}
}
- if(datatype->sizeof_subtype != 0){
+ if(datatype->sizeof_substruct != 0){
// This part handles the problem of non-contignous memory the unserialization at the reception
s_smpi_subtype_t *subtype = static_cast<s_smpi_subtype_t*>(datatype->substruct);
if(req->flags & RECV)
subtype->unserialize(req->buf, req->old_buf, req->real_size/smpi_datatype_size(datatype) ,
datatype->substruct, req->op);
- if(req->detached == 0) free(req->buf);
+ xbt_free(req->buf);
}else if(req->flags & RECV){//apply op on contiguous buffer for accumulate
int n =req->real_size/smpi_datatype_size(datatype);
smpi_op_apply(req->op, req->buf, req->old_buf, &n, &datatype);
+ xbt_free(req->buf);
}
}
- smpi_comm_unuse(req->comm);
- smpi_datatype_unuse(datatype);
}
- if (TRACE_smpi_view_internals()) {
- if(req->flags & RECV){
- int rank = smpi_process_index();
- int src_traced = (req->src == MPI_ANY_SOURCE ? req->real_src : req->src);
- TRACE_smpi_recv(rank, src_traced, rank);
- }
+ if (TRACE_smpi_view_internals() && req->flags & RECV){
+ int rank = smpi_process_index();
+ int src_traced = (req->src == MPI_ANY_SOURCE ? req->real_src : req->src);
+ TRACE_smpi_recv(rank, src_traced, rank);
}
if(req->detached_sender!=NULL){
// because the time will not normally advance when only calls to MPI_Test are made -> deadlock
// multiplier to the sleeptime, to increase speed of execution, each failed test will increase it
static int nsleeps = 1;
- if(smpi_test_sleep > 0) simcall_process_sleep(nsleeps*smpi_test_sleep);
+ if(smpi_test_sleep > 0)
+ simcall_process_sleep(nsleeps*smpi_test_sleep);
smpi_empty_status(status);
int flag = 1;
- if (!((*request)->flags & PREPARED)) {
+ if (((*request)->flags & PREPARED) == 0) {
if ((*request)->action != NULL)
flag = simcall_comm_test((*request)->action);
if (flag) {
finish_wait(request, status);
nsleeps=1;//reset the number of sleeps we will do next time
- if (*request != MPI_REQUEST_NULL && !((*request)->flags & PERSISTENT))
+ if (*request != MPI_REQUEST_NULL && ((*request)->flags & PERSISTENT)==0)
*request = MPI_REQUEST_NULL;
}else{
nsleeps++;
int smpi_mpi_testany(int count, MPI_Request requests[], int *index, MPI_Status * status)
{
xbt_dynar_t comms;
- int i, flag, size;
+ int i;
int* map;
+ int flag = 0;
+ int size = 0;
*index = MPI_UNDEFINED;
- flag = 0;
comms = xbt_dynar_new(sizeof(smx_synchro_t), NULL);
map = xbt_new(int, count);
- size = 0;
for(i = 0; i < count; i++) {
if ((requests[i] != MPI_REQUEST_NULL) && requests[i]->action && !(requests[i]->flags & PREPARED)) {
xbt_dynar_push(comms, &requests[i]->action);
if(size > 0) {
//multiplier to the sleeptime, to increase speed of execution, each failed testany will increase it
static int nsleeps = 1;
- if(smpi_test_sleep > 0) simcall_process_sleep(nsleeps*smpi_test_sleep);
+ if(smpi_test_sleep > 0)
+ simcall_process_sleep(nsleeps*smpi_test_sleep);
i = simcall_comm_testany(comms);
// not MPI_UNDEFINED, as this is a simix return code
void smpi_mpi_probe(int source, int tag, MPI_Comm comm, MPI_Status* status){
int flag=0;
- //FIXME find another wait to avoid busy waiting ?
+ //FIXME find another way to avoid busy waiting ?
// the issue here is that we have to wait on a nonexistent comm
while(flag==0){
smpi_mpi_iprobe(source, tag, comm, &flag, status);
// (especially when used as a break condition, such as while(MPI_Iprobe(...)) ... )
// multiplier to the sleeptime, to increase speed of execution, each failed iprobe will increase it
static int nsleeps = 1;
- if(smpi_iprobe_sleep > 0) simcall_process_sleep(nsleeps*smpi_iprobe_sleep);
+ if(smpi_iprobe_sleep > 0)
+ simcall_process_sleep(nsleeps*smpi_iprobe_sleep);
// behave like a receive, but don't do it
smx_mailbox_t mailbox;
print_request("New iprobe", request);
// We have to test both mailboxes as we don't know if we will receive one one or another
- if (xbt_cfg_get_int("smpi/async_small_thresh")>0){
+ if (xbt_cfg_get_int("smpi/async-small-thresh")>0){
mailbox = smpi_process_mailbox_small();
XBT_DEBUG("trying to probe the perm recv mailbox");
- request->action = simcall_comm_iprobe(mailbox, 0, request->src, request->tag, &match_recv, (void*)request);
+ request->action = simcall_comm_iprobe(mailbox, 0, request->src, request->tag, &match_recv, static_cast<void*>(request));
}
if (request->action==NULL){
mailbox = smpi_process_mailbox();
XBT_DEBUG("trying to probe the other mailbox");
- request->action = simcall_comm_iprobe(mailbox, 0, request->src,request->tag, &match_recv, (void*)request);
+ request->action = simcall_comm_iprobe(mailbox, 0, request->src,request->tag, &match_recv, static_cast<void*>(request));
}
if (request->action){
- MPI_Request req = (MPI_Request)SIMIX_comm_get_src_data(request->action);
+ simgrid::simix::Comm *sync_comm = static_cast<simgrid::simix::Comm*>(request->action);
+ MPI_Request req = static_cast<MPI_Request>(sync_comm->src_data);
*flag = 1;
- if(status != MPI_STATUS_IGNORE && !(req->flags & PREPARED)) {
+ if(status != MPI_STATUS_IGNORE && (req->flags & PREPARED)==0) {
status->MPI_SOURCE = smpi_group_rank(smpi_comm_group(comm), req->src);
status->MPI_TAG = req->tag;
status->MPI_ERROR = MPI_SUCCESS;
return;
}
- if ((*request)->action != NULL) { // this is not a detached send
+ if ((*request)->action != NULL)
+ // this is not a detached send
simcall_comm_wait((*request)->action, -1.0);
- if((MC_is_active() || MC_record_replay_is_active()) && (*request)->action)
- (*request)->action->comm.dst_data = NULL; // dangling pointer : dst_data is freed with a wait, need to set it to
- // NULL for system state comparison
- }
-
finish_wait(request, status);
- if (*request != MPI_REQUEST_NULL && ((*request)->flags & NON_PERSISTENT))
+ if (*request != MPI_REQUEST_NULL && (((*request)->flags & NON_PERSISTENT)!=0))
*request = MPI_REQUEST_NULL;
- // FIXME for a detached send, finish_wait is not called:
}
int smpi_mpi_waitany(int count, MPI_Request requests[], MPI_Status * status)
{
xbt_dynar_t comms;
- int i, size, index;
+ int i;
+ int size = 0;
+ int index = MPI_UNDEFINED;
int *map;
- index = MPI_UNDEFINED;
if(count > 0) {
// Wait for a request to complete
comms = xbt_dynar_new(sizeof(smx_synchro_t), NULL);
map = xbt_new(int, count);
- size = 0;
XBT_DEBUG("Wait for one of %d", count);
for(i = 0; i < count; i++) {
if (requests[i] != MPI_REQUEST_NULL && !(requests[i]->flags & PREPARED) && !(requests[i]->flags & FINISHED)) {
int smpi_mpi_waitsome(int incount, MPI_Request requests[], int *indices, MPI_Status status[])
{
- int i, count, index;
+ int i;
+ int count = 0;
+ int index;
MPI_Status stat;
MPI_Status *pstat = status == MPI_STATUSES_IGNORE ? MPI_STATUS_IGNORE : &stat;
- count = 0;
for(i = 0; i < incount; i++)
{
index=smpi_mpi_waitany(incount, requests, pstat);
int smpi_mpi_testsome(int incount, MPI_Request requests[], int *indices, MPI_Status status[])
{
- int i, count, count_dead;
+ int i;
+ int count = 0;
+ int count_dead = 0;
MPI_Status stat;
MPI_Status *pstat = status == MPI_STATUSES_IGNORE ? MPI_STATUS_IGNORE : &stat;
- count = 0;
- count_dead = 0;
for(i = 0; i < incount; i++) {
if((requests[i] != MPI_REQUEST_NULL)) {
if(smpi_mpi_test(&requests[i], pstat)) {
count_dead++;
}
}
- if(count_dead==incount)return MPI_UNDEFINED;
+ if(count_dead==incount)
+ return MPI_UNDEFINED;
else return count;
}
// Send buffer to root
smpi_mpi_send(sendbuf, sendcount, sendtype, root, system_tag, comm);
} else {
- // FIXME: check for errors
smpi_datatype_extent(recvtype, &lb, &recvext);
// Local copy from root
- smpi_datatype_copy(sendbuf, sendcount, sendtype, (char *)recvbuf + root * recvcount * recvext, recvcount, recvtype);
+ smpi_datatype_copy(sendbuf, sendcount, sendtype, static_cast<char*>(recvbuf) + root * recvcount * recvext, recvcount, recvtype);
// Receive buffers from senders
requests = xbt_new(MPI_Request, size - 1);
index = 0;
for(src = 0; src < size; src++) {
if(src != root) {
- requests[index] = smpi_irecv_init((char *)recvbuf + src * recvcount * recvext, recvcount, recvtype,
+ requests[index] = smpi_irecv_init(static_cast<char*>(recvbuf) + src * recvcount * recvext, recvcount, recvtype,
src, system_tag, comm);
index++;
}
displs[i] = count;
count += recvcounts[i];
}
- tmpbuf=(void*)smpi_get_tmp_sendbuffer(count*smpi_datatype_get_extent(datatype));
+ tmpbuf=static_cast<void*>(smpi_get_tmp_sendbuffer(count*smpi_datatype_get_extent(datatype)));
mpi_coll_reduce_fun(sendbuf, tmpbuf, count, datatype, op, 0, comm);
smpi_mpi_scatterv(tmpbuf, recvcounts, displs, datatype, recvbuf, recvcounts[rank], datatype, 0, comm);
// Send buffer to root
smpi_mpi_send(sendbuf, sendcount, sendtype, root, system_tag, comm);
} else {
- // FIXME: check for errors
smpi_datatype_extent(recvtype, &lb, &recvext);
// Local copy from root
- smpi_datatype_copy(sendbuf, sendcount, sendtype, (char *)recvbuf + displs[root] * recvext,
+ smpi_datatype_copy(sendbuf, sendcount, sendtype, static_cast<char*>(recvbuf) + displs[root] * recvext,
recvcounts[root], recvtype);
// Receive buffers from senders
requests = xbt_new(MPI_Request, size - 1);
index = 0;
for(src = 0; src < size; src++) {
if(src != root) {
- requests[index] = smpi_irecv_init((char *)recvbuf + displs[src] * recvext,
+ requests[index] = smpi_irecv_init(static_cast<char*>(recvbuf) + displs[src] * recvext,
recvcounts[src], recvtype, src, system_tag, comm);
index++;
}
// FIXME: check for errors
smpi_datatype_extent(recvtype, &lb, &recvext);
// Local copy from self
- smpi_datatype_copy(sendbuf, sendcount, sendtype, (char *)recvbuf + rank * recvcount * recvext, recvcount, recvtype);
+ smpi_datatype_copy(sendbuf, sendcount, sendtype, static_cast<char *>(recvbuf) + rank * recvcount * recvext, recvcount, recvtype);
// Send/Recv buffers to/from others;
requests = xbt_new(MPI_Request, 2 * (size - 1));
index = 0;
if(other != rank) {
requests[index] = smpi_isend_init(sendbuf, sendcount, sendtype, other, system_tag,comm);
index++;
- requests[index] = smpi_irecv_init((char *)recvbuf + other * recvcount * recvext, recvcount, recvtype, other,
+ requests[index] = smpi_irecv_init(static_cast<char *>(recvbuf) + other * recvcount * recvext, recvcount, recvtype, other,
system_tag, comm);
index++;
}
rank = smpi_comm_rank(comm);
size = smpi_comm_size(comm);
- // FIXME: check for errors
smpi_datatype_extent(recvtype, &lb, &recvext);
// Local copy from self
- smpi_datatype_copy(sendbuf, sendcount, sendtype, (char *)recvbuf + displs[rank] * recvext,recvcounts[rank], recvtype);
+ smpi_datatype_copy(sendbuf, sendcount, sendtype, static_cast<char *>(recvbuf) + displs[rank] * recvext,recvcounts[rank], recvtype);
// Send buffers to others;
requests = xbt_new(MPI_Request, 2 * (size - 1));
index = 0;
requests[index] =
smpi_isend_init(sendbuf, sendcount, sendtype, other, system_tag, comm);
index++;
- requests[index] = smpi_irecv_init((char *)recvbuf + displs[other] * recvext, recvcounts[other],
+ requests[index] = smpi_irecv_init(static_cast<char *>(recvbuf) + displs[other] * recvext, recvcounts[other],
recvtype, other, system_tag, comm);
index++;
}
// Recv buffer from root
smpi_mpi_recv(recvbuf, recvcount, recvtype, root, system_tag, comm, MPI_STATUS_IGNORE);
} else {
- // FIXME: check for errors
smpi_datatype_extent(sendtype, &lb, &sendext);
// Local copy from root
if(recvbuf!=MPI_IN_PLACE){
- smpi_datatype_copy((char *)sendbuf + root * sendcount * sendext,
+ smpi_datatype_copy(static_cast<char *>(sendbuf) + root * sendcount * sendext,
sendcount, sendtype, recvbuf, recvcount, recvtype);
}
// Send buffers to receivers
index = 0;
for(dst = 0; dst < size; dst++) {
if(dst != root) {
- requests[index] = smpi_isend_init((char *)sendbuf + dst * sendcount * sendext, sendcount, sendtype, dst,
+ requests[index] = smpi_isend_init(static_cast<char *>(sendbuf) + dst * sendcount * sendext, sendcount, sendtype, dst,
system_tag, comm);
index++;
}
// Recv buffer from root
smpi_mpi_recv(recvbuf, recvcount, recvtype, root, system_tag, comm, MPI_STATUS_IGNORE);
} else {
- // FIXME: check for errors
smpi_datatype_extent(sendtype, &lb, &sendext);
// Local copy from root
if(recvbuf!=MPI_IN_PLACE){
- smpi_datatype_copy((char *)sendbuf + displs[root] * sendext, sendcounts[root],
+ smpi_datatype_copy(static_cast<char *>(sendbuf) + displs[root] * sendext, sendcounts[root],
sendtype, recvbuf, recvcount, recvtype);
}
// Send buffers to receivers
index = 0;
for(dst = 0; dst < size; dst++) {
if(dst != root) {
- requests[index] = smpi_isend_init((char *)sendbuf + displs[dst] * sendext, sendcounts[dst],
+ requests[index] = smpi_isend_init(static_cast<char *>(sendbuf) + displs[dst] * sendext, sendcounts[dst],
sendtype, dst, system_tag, comm);
index++;
}
MPI_Request *requests;
void **tmpbufs;
- char* sendtmpbuf = (char*) sendbuf;
- if( sendbuf == MPI_IN_PLACE ) {
- sendtmpbuf = (char *)smpi_get_tmp_sendbuffer(count*smpi_datatype_get_extent(datatype));
- smpi_datatype_copy(recvbuf, count, datatype,sendtmpbuf, count, datatype);
- }
+ char* sendtmpbuf = static_cast<char *>(sendbuf);
+
rank = smpi_comm_rank(comm);
size = smpi_comm_size(comm);
smpi_coll_tuned_reduce_ompi_basic_linear(sendtmpbuf, recvbuf, count, datatype, op, root, comm);
return;
}
+
+ if( sendbuf == MPI_IN_PLACE ) {
+ sendtmpbuf = static_cast<char *>(smpi_get_tmp_sendbuffer(count*smpi_datatype_get_extent(datatype)));
+ smpi_datatype_copy(recvbuf, count, datatype,sendtmpbuf, count, datatype);
+ }
if(rank != root) {
// Send buffer to root
smpi_mpi_send(sendtmpbuf, count, datatype, root, system_tag, comm);
} else {
- // FIXME: check for errors
smpi_datatype_extent(datatype, &lb, &dataext);
// Local copy from root
- if (sendtmpbuf && recvbuf)
+ if (sendtmpbuf != NULL && recvbuf != NULL)
smpi_datatype_copy(sendtmpbuf, count, datatype, recvbuf, count, datatype);
// Receive buffers from senders
- //TODO: make a MPI_barrier here ?
requests = xbt_new(MPI_Request, size - 1);
tmpbufs = xbt_new(void *, size - 1);
index = 0;
for(src = 0; src < size; src++) {
if(src != root) {
- // FIXME: possibly overkill we we have contiguous/noncontiguous data
- // mapping...
if (!smpi_process_get_replaying())
tmpbufs[index] = xbt_malloc(count * dataext);
else
xbt_free(tmpbufs);
xbt_free(requests);
- if( sendbuf == MPI_IN_PLACE ) {
- smpi_free_tmp_buffer(sendtmpbuf);
- }
+ }
+ if( sendbuf == MPI_IN_PLACE ) {
+ smpi_free_tmp_buffer(sendtmpbuf);
}
}
rank = smpi_comm_rank(comm);
size = smpi_comm_size(comm);
- // FIXME: check for errors
smpi_datatype_extent(datatype, &lb, &dataext);
// Local copy from self
tmpbufs = xbt_new(void *, rank);
index = 0;
for(other = 0; other < rank; other++) {
- // FIXME: possibly overkill we we have contiguous/noncontiguous data
- // mapping...
tmpbufs[index] = smpi_get_tmp_sendbuffer(count * dataext);
requests[index] = smpi_irecv_init(tmpbufs[index], count, datatype, other, system_tag, comm);
index++;
rank = smpi_comm_rank(comm);
size = smpi_comm_size(comm);
- // FIXME: check for errors
smpi_datatype_extent(datatype, &lb, &dataext);
// Send/Recv buffers to/from others;
tmpbufs = xbt_new(void *, rank);
index = 0;
for(other = 0; other < rank; other++) {
- // FIXME: possibly overkill we we have contiguous/noncontiguous data
- // mapping...
tmpbufs[index] = smpi_get_tmp_sendbuffer(count * dataext);
requests[index] =
smpi_irecv_init(tmpbufs[index], count, datatype, other, system_tag, comm);