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401 lines
12 KiB
C
401 lines
12 KiB
C
/*
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* Copyright (c) 2005 Topspin Communications. All rights reserved.
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* Copyright (c) 2005 Mellanox Technologies Ltd. All rights reserved.
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* Copyright (c) 2009 HNR Consulting. All rights reserved.
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*
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* This software is available to you under a choice of one of two
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* licenses. You may choose to be licensed under the terms of the GNU
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* General Public License (GPL) Version 2, available from the file
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* COPYING in the main directory of this source tree, or the
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* OpenIB.org BSD license below:
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*
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* Redistribution and use in source and binary forms, with or
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* without modification, are permitted provided that the following
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* conditions are met:
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*
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* - Redistributions of source code must retain the above
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* copyright notice, this list of conditions and the following
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* disclaimer.
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*
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* - Redistributions in binary form must reproduce the above
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* copyright notice, this list of conditions and the following
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* disclaimer in the documentation and/or other materials
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* provided with the distribution.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
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* BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
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* ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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* SOFTWARE.
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*
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* $Id$
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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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int main(int argc, char *argv[])
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{
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int ret_parser,i = 0;
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struct ibv_device *ib_dev = NULL;
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struct pingpong_context ctx;
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struct pingpong_dest *my_dest,*rem_dest;
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struct perftest_parameters user_param;
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struct perftest_comm user_comm;
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struct bw_report_data my_bw_rep, rem_bw_rep;
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/* init default values to user's parameters */
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memset(&user_param,0,sizeof(struct perftest_parameters));
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memset(&user_comm,0,sizeof(struct perftest_comm));
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memset(&ctx,0,sizeof(struct pingpong_context));
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user_param.verb = WRITE;
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user_param.tst = BW;
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strncpy(user_param.version, VERSION, sizeof(user_param.version));
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/* Configure the parameters values according to user arguments or default values. */
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ret_parser = parser(&user_param,argv,argc);
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if (ret_parser) {
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if (ret_parser != VERSION_EXIT && ret_parser != HELP_EXIT)
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fprintf(stderr," Parser function exited with Error\n");
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return FAILURE;
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}
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if((user_param.connection_type == DC || user_param.use_xrc) && user_param.duplex) {
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user_param.num_of_qps *= 2;
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}
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/* Finding the IB device selected (or default if none is selected). */
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ib_dev = ctx_find_dev(user_param.ib_devname);
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if (!ib_dev) {
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fprintf(stderr," Unable to find the Infiniband/RoCE device\n");
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return FAILURE;
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}
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/* Getting the relevant context from the device */
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ctx.context = ibv_open_device(ib_dev);
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if (!ctx.context) {
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fprintf(stderr, " Couldn't get context for the device\n");
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return FAILURE;
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}
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/* See if MTU and link type are valid and supported. */
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if (check_link(ctx.context,&user_param)) {
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fprintf(stderr, " Couldn't get context for the device\n");
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return FAILURE;
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}
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/* copy the relevant user parameters to the comm struct + creating rdma_cm resources. */
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if (create_comm_struct(&user_comm,&user_param)) {
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fprintf(stderr," Unable to create RDMA_CM resources\n");
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return FAILURE;
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}
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if (user_param.output == FULL_VERBOSITY && user_param.machine == SERVER) {
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printf("\n************************************\n");
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printf("* Waiting for client to connect... *\n");
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printf("************************************\n");
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}
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/* Initialize the connection and print the local data. */
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if (establish_connection(&user_comm)) {
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fprintf(stderr," Unable to init the socket connection\n");
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return FAILURE;
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}
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sleep(1);
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exchange_versions(&user_comm, &user_param);
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check_sys_data(&user_comm, &user_param);
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/* See if MTU and link type are valid and supported. */
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if (check_mtu(ctx.context,&user_param, &user_comm)) {
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fprintf(stderr, " Couldn't get context for the device\n");
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return FAILURE;
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}
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ALLOCATE(my_dest , struct pingpong_dest , user_param.num_of_qps);
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memset(my_dest, 0, sizeof(struct pingpong_dest)*user_param.num_of_qps);
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ALLOCATE(rem_dest , struct pingpong_dest , user_param.num_of_qps);
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memset(rem_dest, 0, sizeof(struct pingpong_dest)*user_param.num_of_qps);
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/* Allocating arrays needed for the test. */
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alloc_ctx(&ctx,&user_param);
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/* Create (if necessary) the rdma_cm ids and channel. */
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if (user_param.work_rdma_cm == ON) {
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if (user_param.machine == CLIENT) {
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if (retry_rdma_connect(&ctx,&user_param)) {
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fprintf(stderr,"Unable to perform rdma_client function\n");
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return FAILURE;
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}
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} else {
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if (create_rdma_resources(&ctx,&user_param)) {
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fprintf(stderr," Unable to create the rdma_resources\n");
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return FAILURE;
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}
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if (rdma_server_connect(&ctx,&user_param)) {
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fprintf(stderr,"Unable to perform rdma_client function\n");
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return FAILURE;
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}
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}
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} else {
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/* create all the basic IB resources (data buffer, PD, MR, CQ and events channel) */
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if (ctx_init(&ctx, &user_param)) {
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fprintf(stderr, " Couldn't create IB resources\n");
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return FAILURE;
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}
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}
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/* Set up the Connection. */
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if (set_up_connection(&ctx,&user_param,my_dest)) {
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fprintf(stderr," Unable to set up socket connection\n");
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return FAILURE;
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}
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/* Print basic test information. */
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ctx_print_test_info(&user_param);
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/* Print this machine QP information */
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for (i=0; i < user_param.num_of_qps; i++)
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ctx_print_pingpong_data(&my_dest[i],&user_comm);
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user_comm.rdma_params->side = REMOTE;
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for (i=0; i < user_param.num_of_qps; i++) {
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if (ctx_hand_shake(&user_comm,&my_dest[i],&rem_dest[i])) {
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fprintf(stderr," Failed to exchange data between server and clients\n");
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return FAILURE;
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}
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ctx_print_pingpong_data(&rem_dest[i],&user_comm);
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}
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if (user_param.work_rdma_cm == OFF) {
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if (ctx_check_gid_compatibility(&my_dest[0], &rem_dest[0])) {
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fprintf(stderr,"\n Found Incompatibility issue with GID types.\n");
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fprintf(stderr," Please Try to use a different IP version.\n\n");
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return FAILURE;
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}
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}
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if (user_param.work_rdma_cm == OFF) {
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if (ctx_connect(&ctx,rem_dest,&user_param,my_dest)) {
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fprintf(stderr," Unable to Connect the HCA's through the link\n");
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return FAILURE;
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}
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}
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/* An additional handshake is required after moving qp to RTR. */
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if (ctx_hand_shake(&user_comm,&my_dest[0],&rem_dest[0])) {
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fprintf(stderr," Failed to exchange data between server and clients\n");
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return FAILURE;
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}
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if (user_param.output == FULL_VERBOSITY) {
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if (user_param.report_per_port) {
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printf(RESULT_LINE_PER_PORT);
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printf((user_param.report_fmt == MBS ? RESULT_FMT_PER_PORT : RESULT_FMT_G_PER_PORT));
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}
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else {
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printf(RESULT_LINE);
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printf((user_param.report_fmt == MBS ? RESULT_FMT : RESULT_FMT_G));
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}
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printf((user_param.cpu_util_data.enable ? RESULT_EXT_CPU_UTIL : RESULT_EXT));
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}
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/* For half duplex tests, server just waits for client to exit */
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if (user_param.machine == SERVER && !user_param.duplex) {
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if (ctx_hand_shake(&user_comm,&my_dest[0],&rem_dest[0])) {
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fprintf(stderr," Failed to exchange data between server and clients\n");
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return FAILURE;
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}
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xchg_bw_reports(&user_comm, &my_bw_rep,&rem_bw_rep,atof(user_param.rem_version));
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print_full_bw_report(&user_param, &rem_bw_rep, NULL);
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if (ctx_close_connection(&user_comm,&my_dest[0],&rem_dest[0])) {
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fprintf(stderr,"Failed to close connection between server and client\n");
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return FAILURE;
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}
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if (user_param.output == FULL_VERBOSITY) {
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if (user_param.report_per_port)
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printf(RESULT_LINE_PER_PORT);
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else
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printf(RESULT_LINE);
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}
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if (user_param.work_rdma_cm == ON) {
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if (destroy_ctx(&ctx,&user_param)) {
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fprintf(stderr, "Failed to destroy resources\n");
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return FAILURE;
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}
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user_comm.rdma_params->work_rdma_cm = ON;
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return destroy_ctx(user_comm.rdma_ctx,user_comm.rdma_params);
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}
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return destroy_ctx(&ctx,&user_param);
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}
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if (user_param.test_method == RUN_ALL) {
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for (i = 1; i < 24 ; ++i) {
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user_param.size = (uint64_t)1 << i;
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ctx_set_send_wqes(&ctx,&user_param,rem_dest);
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if (user_param.perform_warm_up) {
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if(perform_warm_up(&ctx, &user_param)) {
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fprintf(stderr, "Problems with warm up\n");
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return FAILURE;
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}
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}
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if(user_param.duplex) {
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if (ctx_hand_shake(&user_comm,&my_dest[0],&rem_dest[0])) {
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fprintf(stderr,"Failed to sync between server and client between different msg sizes\n");
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return FAILURE;
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}
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}
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if(run_iter_bw(&ctx,&user_param)) {
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fprintf(stderr," Failed to complete run_iter_bw function successfully\n");
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return FAILURE;
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}
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if (user_param.duplex && (atof(user_param.version) >= 4.6)) {
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if (ctx_hand_shake(&user_comm,&my_dest[0],&rem_dest[0])) {
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fprintf(stderr,"Failed to sync between server and client between different msg sizes\n");
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return FAILURE;
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}
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}
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print_report_bw(&user_param,&my_bw_rep);
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if (user_param.duplex) {
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xchg_bw_reports(&user_comm, &my_bw_rep,&rem_bw_rep,atof(user_param.rem_version));
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print_full_bw_report(&user_param, &my_bw_rep, &rem_bw_rep);
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}
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}
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} else if (user_param.test_method == RUN_REGULAR) {
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ctx_set_send_wqes(&ctx,&user_param,rem_dest);
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if (user_param.verb != SEND) {
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if (user_param.perform_warm_up) {
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if(perform_warm_up(&ctx, &user_param)) {
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fprintf(stderr, "Problems with warm up\n");
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return FAILURE;
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}
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}
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}
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if(user_param.duplex) {
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if (ctx_hand_shake(&user_comm,&my_dest[0],&rem_dest[0])) {
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fprintf(stderr,"Failed to sync between server and client between different msg sizes\n");
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return FAILURE;
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}
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}
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if(run_iter_bw(&ctx,&user_param)) {
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fprintf(stderr," Failed to complete run_iter_bw function successfully\n");
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return FAILURE;
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}
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print_report_bw(&user_param,&my_bw_rep);
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if (user_param.duplex) {
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xchg_bw_reports(&user_comm, &my_bw_rep,&rem_bw_rep,atof(user_param.rem_version));
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print_full_bw_report(&user_param, &my_bw_rep, &rem_bw_rep);
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}
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if (user_param.report_both && user_param.duplex) {
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printf(RESULT_LINE);
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printf("\n Local results: \n");
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printf(RESULT_LINE);
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printf((user_param.report_fmt == MBS ? RESULT_FMT : RESULT_FMT_G));
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printf((user_param.cpu_util_data.enable ? RESULT_EXT_CPU_UTIL : RESULT_EXT));
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print_full_bw_report(&user_param, &my_bw_rep, NULL);
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printf(RESULT_LINE);
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printf("\n Remote results: \n");
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printf(RESULT_LINE);
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printf((user_param.report_fmt == MBS ? RESULT_FMT : RESULT_FMT_G));
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printf((user_param.cpu_util_data.enable ? RESULT_EXT_CPU_UTIL : RESULT_EXT));
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print_full_bw_report(&user_param, &rem_bw_rep, NULL);
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}
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} else if (user_param.test_method == RUN_INFINITELY) {
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ctx_set_send_wqes(&ctx,&user_param,rem_dest);
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if(run_iter_bw_infinitely(&ctx,&user_param)) {
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fprintf(stderr," Error occurred while running infinitely! aborting ...\n");
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return FAILURE;
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}
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}
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if (user_param.output == FULL_VERBOSITY) {
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if (user_param.report_per_port)
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printf(RESULT_LINE_PER_PORT);
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else
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printf(RESULT_LINE);
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}
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/* For half duplex tests, server just waits for client to exit */
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if (user_param.machine == CLIENT && !user_param.duplex) {
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if (ctx_hand_shake(&user_comm,&my_dest[0],&rem_dest[0])) {
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fprintf(stderr," Failed to exchange data between server and clients\n");
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return FAILURE;
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}
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xchg_bw_reports(&user_comm, &my_bw_rep,&rem_bw_rep,atof(user_param.rem_version));
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}
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/* Closing connection. */
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if (ctx_close_connection(&user_comm,&my_dest[0],&rem_dest[0])) {
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fprintf(stderr,"Failed to close connection between server and client\n");
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return FAILURE;
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}
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if (!user_param.is_bw_limit_passed && (user_param.is_limit_bw == ON ) ) {
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fprintf(stderr,"Error: BW result is below bw limit\n");
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return FAILURE;
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}
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if (!user_param.is_msgrate_limit_passed && (user_param.is_limit_bw == ON )) {
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fprintf(stderr,"Error: Msg rate is below msg_rate limit\n");
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return FAILURE;
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}
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free(my_dest);
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free(rem_dest);
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if (user_param.work_rdma_cm == ON) {
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if (destroy_ctx(&ctx,&user_param)) {
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fprintf(stderr, "Failed to destroy resources\n");
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return FAILURE;
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}
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user_comm.rdma_params->work_rdma_cm = ON;
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return destroy_ctx(user_comm.rdma_ctx,user_comm.rdma_params);
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}
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return destroy_ctx(&ctx,&user_param);
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}
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