2214f0502d
- reworked btl error logging macros This commit was SVN r6701.
610 строки
23 KiB
C
610 строки
23 KiB
C
/*
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* Copyright (c) 2004-2005 The Trustees of Indiana University.
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* All rights reserved.
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* Copyright (c) 2004-2005 The Trustees of the University of Tennessee.
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* All rights reserved.
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* Copyright (c) 2004-2005 High Performance Computing Center Stuttgart,
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* University of Stuttgart. All rights reserved.
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* Copyright (c) 2004-2005 The Regents of the University of California.
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* All rights reserved.
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* $COPYRIGHT$
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*
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* Additional copyrights may follow
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*
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* $HEADER$
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*/
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#include "ompi_config.h"
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#include "include/constants.h"
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#include "opal/event/event.h"
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#include "opal/util/if.h"
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#include "opal/util/argv.h"
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#include "opal/util/output.h"
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#include "mca/pml/pml.h"
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#include "mca/btl/btl.h"
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#include "mca/base/mca_base_param.h"
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#include "mca/errmgr/errmgr.h"
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#include "mca/common/vapi/vapi_mem_reg.h"
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#include "mca/mpool/base/base.h"
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#include "btl_mvapi.h"
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#include "btl_mvapi_frag.h"
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#include "btl_mvapi_endpoint.h"
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#include "mca/btl/base/base.h"
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#include <vapi.h>
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#include <vapi_common.h>
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#include "datatype/convertor.h"
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#include "mca/mpool/mvapi/mpool_mvapi.h"
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mca_btl_mvapi_component_t mca_btl_mvapi_component = {
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{
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/* First, the mca_base_component_t struct containing meta information
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about the component itself */
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{
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/* Indicate that we are a pml v1.0.0 component (which also implies a
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specific MCA version) */
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MCA_BTL_BASE_VERSION_1_0_0,
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"mvapi", /* MCA component name */
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OMPI_MAJOR_VERSION, /* MCA component major version */
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OMPI_MINOR_VERSION, /* MCA component minor version */
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OMPI_RELEASE_VERSION, /* MCA component release version */
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mca_btl_mvapi_component_open, /* component open */
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mca_btl_mvapi_component_close /* component close */
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},
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/* Next the MCA v1.0.0 component meta data */
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{
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/* Whether the component is checkpointable or not */
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false
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},
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mca_btl_mvapi_component_init,
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mca_btl_mvapi_component_progress,
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}
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};
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/*
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* utility routines for parameter registration
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*/
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static inline char* mca_btl_mvapi_param_register_string(
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const char* param_name,
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const char* default_value)
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{
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char *param_value;
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int id = mca_base_param_register_string("btl","mvapi",param_name,NULL,default_value);
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mca_base_param_lookup_string(id, ¶m_value);
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return param_value;
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}
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static inline int mca_btl_mvapi_param_register_int(
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const char* param_name,
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int default_value)
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{
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int id = mca_base_param_register_int("btl","mvapi",param_name,NULL,default_value);
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int param_value = default_value;
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mca_base_param_lookup_int(id,¶m_value);
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return param_value;
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}
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/*
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* Called by MCA framework to open the component, registers
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* component parameters.
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*/
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int mca_btl_mvapi_component_open(void)
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{
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int param, value;
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/* initialize state */
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mca_btl_mvapi_component.ib_num_btls=0;
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mca_btl_mvapi_component.mvapi_btls=NULL;
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/* initialize objects */
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OBJ_CONSTRUCT(&mca_btl_mvapi_component.ib_procs, opal_list_t);
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/* register IB component parameters */
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mca_btl_mvapi_component.ib_free_list_num =
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mca_btl_mvapi_param_register_int ("free_list_num", 8);
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mca_btl_mvapi_component.ib_free_list_max =
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mca_btl_mvapi_param_register_int ("free_list_max", 1024);
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mca_btl_mvapi_component.ib_free_list_inc =
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mca_btl_mvapi_param_register_int ("free_list_inc", 32);
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mca_btl_mvapi_component.ib_mem_registry_hints_log_size =
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mca_btl_mvapi_param_register_int ("hints_log_size", 8);
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mca_btl_mvapi_component.ib_mpool_name =
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mca_btl_mvapi_param_register_string("mpool", "mvapi");
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mca_btl_mvapi_component.ib_rr_buf_max =
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mca_btl_mvapi_param_register_int("rr_buf_max", 16);
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mca_btl_mvapi_component.ib_rr_buf_min =
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mca_btl_mvapi_param_register_int("rr_buf_min", 8);
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mca_btl_mvapi_component.reg_mru_len =
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mca_btl_mvapi_param_register_int("reg_mru_len", 16);
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mca_btl_mvapi_component.use_srq =
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mca_btl_mvapi_param_register_int("use_srq", 0);
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mca_btl_mvapi_component.ib_cq_size =
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mca_btl_mvapi_param_register_int("ib_cq_size",
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40000);
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mca_btl_mvapi_component.ib_wq_size =
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mca_btl_mvapi_param_register_int("ib_wq_size",
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10000);
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mca_btl_mvapi_component.ib_sg_list_size =
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mca_btl_mvapi_param_register_int("ib_sg_list_size",
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1);
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mca_btl_mvapi_component.ib_pkey_ix =
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mca_btl_mvapi_param_register_int("ib_pkey_ix",
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0);
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mca_btl_mvapi_component.ib_psn =
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mca_btl_mvapi_param_register_int("ib_psn",
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0);
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mca_btl_mvapi_component.ib_qp_ous_rd_atom =
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mca_btl_mvapi_param_register_int("ib_qp_ous_rd_atom",
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1);
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mca_btl_mvapi_component.ib_mtu =
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mca_btl_mvapi_param_register_int("ib_mtu",
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MTU1024);
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mca_btl_mvapi_component.ib_min_rnr_timer =
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mca_btl_mvapi_param_register_int("ib_min_rnr_timer",
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5);
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mca_btl_mvapi_component.ib_timeout =
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mca_btl_mvapi_param_register_int("ib_timeout",
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10);
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mca_btl_mvapi_component.ib_retry_count =
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mca_btl_mvapi_param_register_int("ib_retry_count",
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7);
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mca_btl_mvapi_component.ib_rnr_retry =
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mca_btl_mvapi_param_register_int("ib_rnr_retry",
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7);
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mca_btl_mvapi_component.ib_max_rdma_dst_ops =
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mca_btl_mvapi_param_register_int("ib_max_rdma_dst_ops",
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16);
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mca_btl_mvapi_component.ib_service_level =
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mca_btl_mvapi_param_register_int("ib_service_level",
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0);
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mca_btl_mvapi_component.ib_static_rate =
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mca_btl_mvapi_param_register_int("ib_static_rate",
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0);
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mca_btl_mvapi_component.ib_src_path_bits =
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mca_btl_mvapi_param_register_int("ib_src_path_bits",
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0);
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mca_btl_mvapi_module.super.btl_exclusivity =
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mca_btl_mvapi_param_register_int ("exclusivity", 0);
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mca_btl_mvapi_module.super.btl_eager_limit =
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mca_btl_mvapi_param_register_int ("eager_limit", (64*1024))
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- sizeof(mca_btl_mvapi_header_t);
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mca_btl_mvapi_module.super.btl_min_send_size =
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mca_btl_mvapi_param_register_int ("min_send_size", (64*1024))
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- sizeof(mca_btl_mvapi_header_t);
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mca_btl_mvapi_module.super.btl_max_send_size =
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mca_btl_mvapi_param_register_int ("max_send_size", (128*1024))
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- sizeof(mca_btl_mvapi_header_t);
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mca_btl_mvapi_module.super.btl_min_rdma_size =
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mca_btl_mvapi_param_register_int("min_rdma_size",
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1024*1024);
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mca_btl_mvapi_module.super.btl_max_rdma_size =
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mca_btl_mvapi_param_register_int("max_rdma_size",
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1024*1024);
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mca_btl_mvapi_module.super.btl_flags =
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mca_btl_mvapi_param_register_int("flags",
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MCA_BTL_FLAGS_RDMA);
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param = mca_base_param_find("mpi", NULL, "leave_pinned");
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mca_base_param_lookup_int(param, &value);
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mca_btl_mvapi_component.leave_pinned = value;
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mca_btl_mvapi_component.max_send_size = mca_btl_mvapi_module.super.btl_max_send_size;
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mca_btl_mvapi_component.eager_limit = mca_btl_mvapi_module.super.btl_eager_limit;
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return OMPI_SUCCESS;
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}
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/*
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* component cleanup - sanity checking of queue lengths
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*/
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int mca_btl_mvapi_component_close(void)
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{
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return OMPI_SUCCESS;
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}
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/*
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* IB component initialization:
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* (1) read interface list from kernel and compare against component parameters
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* then create a BTL instance for selected interfaces
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* (2) setup IB listen socket for incoming connection attempts
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* (3) register BTL parameters with the MCA
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*/
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mca_btl_base_module_t** mca_btl_mvapi_component_init(int *num_btl_modules,
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bool enable_progress_threads,
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bool enable_mpi_threads)
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{
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VAPI_ret_t vapi_ret;
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VAPI_hca_id_t* hca_ids;
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VAPI_hca_hndl_t hca_hndl;
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VAPI_hca_vendor_t hca_vendor;
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VAPI_hca_cap_t hca_cap;
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VAPI_hca_port_t hca_port;
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uint32_t num_hcas;
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mca_btl_base_module_t** btls;
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uint32_t i,j, length;
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struct mca_mpool_base_resources_t hca_pd;
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opal_list_t btl_list;
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mca_btl_mvapi_module_t * mvapi_btl;
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mca_btl_base_selected_module_t* ib_selected;
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opal_list_item_t* item;
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/* initialization */
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*num_btl_modules = 0;
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/* Determine the number of hca's available on the host */
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vapi_ret=EVAPI_list_hcas(0, &num_hcas, NULL);
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if( VAPI_EAGAIN != vapi_ret || 0 == num_hcas ) {
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BTL_ERROR(("No hca's found on this host!"));
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return NULL;
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}
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/* Allocate space for the hca's */
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hca_ids = (VAPI_hca_id_t*) malloc(num_hcas * sizeof(VAPI_hca_id_t));
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if(NULL == hca_ids) {
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ORTE_ERROR_LOG(ORTE_ERR_OUT_OF_RESOURCE);
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return NULL;
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}
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/* obtain a list of the hca's on this host */
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vapi_ret=EVAPI_list_hcas(num_hcas, &num_hcas, hca_ids);
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if( VAPI_OK != vapi_ret ) {
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ORTE_ERROR_LOG(ORTE_ERR_OUT_OF_RESOURCE);
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return NULL;
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}
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/** We must loop through all the hca id's, get there handles and
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for each hca we query the number of ports on the hca and set up
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a distinct btl module for each hca port */
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OBJ_CONSTRUCT(&btl_list, opal_list_t);
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OBJ_CONSTRUCT(&mca_btl_mvapi_component.ib_lock, opal_mutex_t);
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for(i = 0; i < num_hcas; i++){
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vapi_ret = EVAPI_get_hca_hndl(hca_ids[i], &hca_hndl);
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if(VAPI_OK != vapi_ret) {
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BTL_ERROR(("error getting hca handle: %s", VAPI_strerror(vapi_ret)));
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return NULL;
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}
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vapi_ret = VAPI_query_hca_cap(hca_hndl, &hca_vendor, &hca_cap);
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if(VAPI_OK != vapi_ret) {
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BTL_ERROR(("error getting hca properties %s", VAPI_strerror(vapi_ret)));
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return NULL;
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}
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/* Note ports are 1 based hence j = 1 */
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for(j = 1; j <= hca_cap.phys_port_num; j++){
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vapi_ret = VAPI_query_hca_port_prop(hca_hndl, (IB_port_t) j, &hca_port);
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if(VAPI_OK != vapi_ret) {
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BTL_ERROR(("error getting hca port properties %s", VAPI_strerror(vapi_ret)));
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return NULL;
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}
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if( PORT_ACTIVE == hca_port.state ){
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mvapi_btl = (mca_btl_mvapi_module_t*) malloc(sizeof(mca_btl_mvapi_module_t));
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memcpy(mvapi_btl, &mca_btl_mvapi_module, sizeof(mca_btl_mvapi_module));
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ib_selected = OBJ_NEW(mca_btl_base_selected_module_t);
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ib_selected->btl_module = (mca_btl_base_module_t*) mvapi_btl;
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memcpy(mvapi_btl->hca_id, hca_ids[i], sizeof(VAPI_hca_id_t));
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mvapi_btl->nic = hca_hndl;
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mvapi_btl->port_id = (IB_port_t) j;
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mvapi_btl->port = hca_port;
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opal_list_append(&btl_list, (opal_list_item_t*) ib_selected);
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mca_btl_mvapi_component.ib_num_btls ++;
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}
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}
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}
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/* Allocate space for btl modules */
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mca_btl_mvapi_component.mvapi_btls = (mca_btl_mvapi_module_t*) malloc(sizeof(mca_btl_mvapi_module_t) *
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mca_btl_mvapi_component.ib_num_btls);
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if(NULL == mca_btl_mvapi_component.mvapi_btls) {
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ORTE_ERROR_LOG(ORTE_ERR_OUT_OF_RESOURCE);
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return NULL;
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}
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btls = (struct mca_btl_base_module_t**)
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malloc(mca_btl_mvapi_component.ib_num_btls * sizeof(struct mca_btl_mvapi_module_t*));
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if(NULL == btls) {
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ORTE_ERROR_LOG(ORTE_ERR_OUT_OF_RESOURCE);
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return NULL;
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}
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for(i = 0; i < mca_btl_mvapi_component.ib_num_btls; i++){
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item = opal_list_remove_first(&btl_list);
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ib_selected = (mca_btl_base_selected_module_t*)item;
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mvapi_btl = (mca_btl_mvapi_module_t*) ib_selected->btl_module;
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memcpy(&(mca_btl_mvapi_component.mvapi_btls[i]), mvapi_btl , sizeof(mca_btl_mvapi_module_t));
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free(ib_selected);
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free(mvapi_btl);
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mvapi_btl = &mca_btl_mvapi_component.mvapi_btls[i];
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/* Initialize the modules function pointers */
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/* Initialize module state */
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OBJ_CONSTRUCT(&mvapi_btl->ib_lock, opal_mutex_t);
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OBJ_CONSTRUCT(&mvapi_btl->send_free_eager, ompi_free_list_t);
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OBJ_CONSTRUCT(&mvapi_btl->send_free_max, ompi_free_list_t);
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OBJ_CONSTRUCT(&mvapi_btl->send_free_frag, ompi_free_list_t);
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OBJ_CONSTRUCT(&mvapi_btl->recv_free_eager, ompi_free_list_t);
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OBJ_CONSTRUCT(&mvapi_btl->recv_free_max, ompi_free_list_t);
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OBJ_CONSTRUCT(&mvapi_btl->repost, opal_list_t);
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OBJ_CONSTRUCT(&mvapi_btl->reg_mru_list, opal_list_t);
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if(mca_btl_mvapi_module_init(mvapi_btl) != OMPI_SUCCESS) {
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free(hca_ids);
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return NULL;
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}
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hca_pd.hca = mvapi_btl->nic;
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hca_pd.pd_tag = mvapi_btl->ptag;
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/* initialize the memory pool using the hca */
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mvapi_btl->ib_pool =
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mca_mpool_base_module_create(mca_btl_mvapi_component.ib_mpool_name,
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&mvapi_btl->super,
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&hca_pd);
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if(NULL == mvapi_btl->ib_pool) {
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BTL_ERROR(("error creating vapi memory pool! aborting mvapi btl initialization"));
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return NULL;
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}
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/* Initialize pool of send fragments */
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length = sizeof(mca_btl_mvapi_frag_t) +
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sizeof(mca_btl_mvapi_header_t) +
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mvapi_btl->super.btl_eager_limit+
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2*MCA_BTL_IB_FRAG_ALIGN;
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ompi_free_list_init(&mvapi_btl->send_free_eager,
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length,
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OBJ_CLASS(mca_btl_mvapi_send_frag_eager_t),
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mca_btl_mvapi_component.ib_free_list_num,
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mca_btl_mvapi_component.ib_free_list_max,
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mca_btl_mvapi_component.ib_free_list_inc,
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mvapi_btl->ib_pool);
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ompi_free_list_init(&mvapi_btl->recv_free_eager,
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length,
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OBJ_CLASS(mca_btl_mvapi_recv_frag_eager_t),
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mca_btl_mvapi_component.ib_free_list_num,
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mca_btl_mvapi_component.ib_free_list_max,
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mca_btl_mvapi_component.ib_free_list_inc,
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mvapi_btl->ib_pool);
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length = sizeof(mca_btl_mvapi_frag_t) +
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sizeof(mca_btl_mvapi_header_t) +
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mvapi_btl->super.btl_max_send_size+
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2*MCA_BTL_IB_FRAG_ALIGN;
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ompi_free_list_init(&mvapi_btl->send_free_max,
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length,
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OBJ_CLASS(mca_btl_mvapi_send_frag_max_t),
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mca_btl_mvapi_component.ib_free_list_num,
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mca_btl_mvapi_component.ib_free_list_max,
|
|
mca_btl_mvapi_component.ib_free_list_inc,
|
|
mvapi_btl->ib_pool);
|
|
|
|
|
|
|
|
/* Initialize pool of receive fragments */
|
|
ompi_free_list_init (&mvapi_btl->recv_free_max,
|
|
length,
|
|
OBJ_CLASS (mca_btl_mvapi_recv_frag_max_t),
|
|
mca_btl_mvapi_component.ib_free_list_num,
|
|
mca_btl_mvapi_component.ib_free_list_max,
|
|
mca_btl_mvapi_component.ib_free_list_inc, mvapi_btl->ib_pool);
|
|
|
|
|
|
|
|
length = sizeof(mca_btl_mvapi_frag_t) +
|
|
sizeof(mca_btl_mvapi_header_t)+
|
|
2*MCA_BTL_IB_FRAG_ALIGN;
|
|
|
|
|
|
|
|
|
|
ompi_free_list_init(&mvapi_btl->send_free_frag,
|
|
length,
|
|
OBJ_CLASS(mca_btl_mvapi_send_frag_frag_t),
|
|
mca_btl_mvapi_component.ib_free_list_num,
|
|
mca_btl_mvapi_component.ib_free_list_max,
|
|
mca_btl_mvapi_component.ib_free_list_inc,
|
|
mvapi_btl->ib_pool);
|
|
|
|
|
|
/* Initialize the rr_desc_post array for posting of rr*/
|
|
mvapi_btl->rr_desc_post = (VAPI_rr_desc_t*) malloc((mca_btl_mvapi_component.ib_rr_buf_max * sizeof(VAPI_rr_desc_t)));
|
|
|
|
btls[i] = &mvapi_btl->super;
|
|
}
|
|
|
|
/* Post OOB receive to support dynamic connection setup */
|
|
mca_btl_mvapi_post_recv();
|
|
|
|
*num_btl_modules = mca_btl_mvapi_component.ib_num_btls;
|
|
free(hca_ids);
|
|
return btls;
|
|
}
|
|
|
|
/*
|
|
* IB component progress.
|
|
*/
|
|
|
|
|
|
int mca_btl_mvapi_component_progress()
|
|
{
|
|
uint32_t i;
|
|
int count = 0;
|
|
mca_btl_mvapi_frag_t* frag;
|
|
mca_btl_mvapi_endpoint_t* endpoint;
|
|
/* Poll for completions */
|
|
for(i = 0; i < mca_btl_mvapi_component.ib_num_btls; i++) {
|
|
VAPI_ret_t ret;
|
|
VAPI_wc_desc_t comp;
|
|
mca_btl_mvapi_module_t* mvapi_btl = &mca_btl_mvapi_component.mvapi_btls[i];
|
|
|
|
|
|
/* we have two completion queues, one for "high" priority and one for "low".
|
|
* we will check the high priority and process them until there are none left.
|
|
* note that low priority messages are only processed one per progress call.
|
|
*/
|
|
do{
|
|
ret = VAPI_poll_cq(mvapi_btl->nic, mvapi_btl->cq_hndl_high, &comp);
|
|
if(VAPI_OK == ret) {
|
|
if(comp.status != VAPI_SUCCESS) {
|
|
BTL_ERROR(("Got error : %s, Vendor code : %d Frag : %p",
|
|
VAPI_wc_status_sym(comp.status),
|
|
comp.vendor_err_syndrome, comp.id));
|
|
return OMPI_ERROR;
|
|
}
|
|
|
|
/* Handle work completions */
|
|
switch(comp.opcode) {
|
|
case VAPI_CQE_RQ_RDMA_WITH_IMM:
|
|
BTL_ERROR(("Got an RDMA with Immediate data!, not supported!"));
|
|
return OMPI_ERROR;
|
|
|
|
case VAPI_CQE_SQ_RDMA_WRITE:
|
|
case VAPI_CQE_SQ_SEND_DATA :
|
|
|
|
/* Process a completed send or an rdma write */
|
|
frag = (mca_btl_mvapi_frag_t*) comp.id;
|
|
frag->rc = OMPI_SUCCESS;
|
|
frag->base.des_cbfunc(&mvapi_btl->super, frag->endpoint, &frag->base, frag->rc);
|
|
count++;
|
|
break;
|
|
|
|
case VAPI_CQE_RQ_SEND_DATA:
|
|
|
|
/* Process a RECV */
|
|
BTL_DEBUG(("Got a recv completion"));
|
|
frag = (mca_btl_mvapi_frag_t*) comp.id;
|
|
endpoint = (mca_btl_mvapi_endpoint_t*) frag->endpoint;
|
|
|
|
frag->rc=OMPI_SUCCESS;
|
|
frag->segment.seg_len = comp.byte_len-((unsigned char*) frag->segment.seg_addr.pval - (unsigned char*) frag->hdr);
|
|
/* advance the segment address past the header and subtract from the length..*/
|
|
mvapi_btl->ib_reg[frag->hdr->tag].cbfunc(&mvapi_btl->super, frag->hdr->tag, &frag->base, mvapi_btl->ib_reg[frag->hdr->tag].cbdata);
|
|
|
|
OMPI_FREE_LIST_RETURN(&(mvapi_btl->recv_free_eager), (opal_list_item_t*) frag);
|
|
|
|
|
|
if(mca_btl_mvapi_component.use_srq) {
|
|
OPAL_THREAD_ADD32(&mvapi_btl->srr_posted_high, -1);
|
|
MCA_BTL_MVAPI_POST_SRR_HIGH(mvapi_btl, 0);
|
|
} else {
|
|
OPAL_THREAD_ADD32(&endpoint->rr_posted_high, -1);
|
|
MCA_BTL_MVAPI_ENDPOINT_POST_RR_HIGH(((mca_btl_mvapi_frag_t*)comp.id)->endpoint, 0);
|
|
}
|
|
count++;
|
|
break;
|
|
|
|
default:
|
|
BTL_ERROR(("Unhandled work completion opcode is %d", comp.opcode));
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
while(VAPI_OK == ret);
|
|
|
|
ret = VAPI_poll_cq(mvapi_btl->nic, mvapi_btl->cq_hndl_low, &comp);
|
|
if(VAPI_OK == ret) {
|
|
if(comp.status != VAPI_SUCCESS) {
|
|
BTL_ERROR(("Got error : %s, Vendor code : %d Frag : %p",
|
|
VAPI_wc_status_sym(comp.status),
|
|
comp.vendor_err_syndrome, comp.id));
|
|
return OMPI_ERROR;
|
|
}
|
|
|
|
/* Handle n/w completions */
|
|
switch(comp.opcode) {
|
|
case VAPI_CQE_RQ_RDMA_WITH_IMM:
|
|
BTL_ERROR(("Got an RDMA with Immediate data!, not supported!"));
|
|
return OMPI_ERROR;
|
|
|
|
case VAPI_CQE_SQ_RDMA_WRITE:
|
|
case VAPI_CQE_SQ_SEND_DATA :
|
|
|
|
/* Process a completed send */
|
|
frag = (mca_btl_mvapi_frag_t*) comp.id;
|
|
frag->rc = OMPI_SUCCESS;
|
|
frag->base.des_cbfunc(&mvapi_btl->super, frag->endpoint, &frag->base, frag->rc);
|
|
count++;
|
|
break;
|
|
|
|
case VAPI_CQE_RQ_SEND_DATA:
|
|
|
|
BTL_DEBUG(("Got a recv completion"));
|
|
frag = (mca_btl_mvapi_frag_t*) comp.id;
|
|
endpoint = (mca_btl_mvapi_endpoint_t*) frag->endpoint;
|
|
frag->rc=OMPI_SUCCESS;
|
|
frag->segment.seg_len = comp.byte_len-((unsigned char*) frag->segment.seg_addr.pval - (unsigned char*) frag->hdr);
|
|
/* advance the segment address past the header and subtract from the length..*/
|
|
mvapi_btl->ib_reg[frag->hdr->tag].cbfunc(&mvapi_btl->super, frag->hdr->tag, &frag->base, mvapi_btl->ib_reg[frag->hdr->tag].cbdata);
|
|
|
|
OMPI_FREE_LIST_RETURN(&(mvapi_btl->recv_free_max), (opal_list_item_t*) frag);
|
|
|
|
|
|
if(mca_btl_mvapi_component.use_srq) {
|
|
OPAL_THREAD_ADD32(&mvapi_btl->srr_posted_low, -1);
|
|
MCA_BTL_MVAPI_POST_SRR_LOW(mvapi_btl, 0);
|
|
} else {
|
|
OPAL_THREAD_ADD32(&endpoint->rr_posted_low, -1);
|
|
MCA_BTL_MVAPI_ENDPOINT_POST_RR_LOW(((mca_btl_mvapi_frag_t*)comp.id)->endpoint, 0);
|
|
}
|
|
count++;
|
|
break;
|
|
|
|
default:
|
|
BTL_ERROR(("Errorneous network completion"));
|
|
break;
|
|
}
|
|
}
|
|
|
|
}
|
|
return count;
|
|
}
|