129 lines
5.1 KiB
C
129 lines
5.1 KiB
C
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//***************************************************************************************
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// Communicator manipulation and accessor routines.
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//***************************************************************************************
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//
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// Author: Rob F. Van der Wijngaart
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// Intel Corporation
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// Date: 12/22/2010
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//
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//***************************************************************************************
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//
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// Copyright 2010 Intel Corporation
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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//
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#include <metalsvm/stdio.h>
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#include <asm/RCCE_lib.h>
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#ifdef CONFIG_ROCKCREEK
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//--------------------------------------------------------------------------------------
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// FUNCTION: RCCE_comm_split
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// RCCE_comm_split works like MPI_Comm_split, but:
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// 1. Always uses the default global communicator as the basis, not an
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// arbitrary communicator
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// 2. Uses the rank of the UE in the global communicator as the key
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// 3. Uses a function, operating on UE's global rank, to compute color
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//--------------------------------------------------------------------------------------
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int RCCE_comm_split(
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int (*color)(int, void *), // function returning a color value for given ue and aux
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void *aux, // optional user-supplied data structure
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RCCE_COMM *comm // new communicator
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) {
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int i, my_color, error;
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if (!comm) return(RCCE_error_return(RCCE_debug_comm,RCCE_ERROR_COMM_UNDEFINED));
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// start with a barrier to make sure all UEs are participating, unless we are still
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// defining the global communicator; there is no danger in skipping the barrier in
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// that case, because the global communicator is defined in RCCE_init, which must be
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// called by all cores before any other RCCE calls
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if (comm != &RCCE_COMM_WORLD) RCCE_barrier(&RCCE_COMM_WORLD);
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// determine the size of the communicator
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my_color = color(RCCE_IAM, aux);
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comm->size = 0;
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for (i=0; i<RCCE_NP; i++) {
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if (color(i, aux) == my_color) {
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if (i == RCCE_IAM) comm->my_rank = comm->size;
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comm->member[comm->size++] = i;
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}
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}
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// note: we only need to allocate new synch flags if the communicator has not yet been
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// initialized. It is legal to overwrite an initialized communcator, in which case the
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// membership may change, but the same synchronization flags can be used
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if (comm->initialized == RCCE_COMM_INITIALIZED) return(RCCE_SUCCESS);
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if(error=RCCE_flag_alloc(&(comm->gather)))
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return(RCCE_error_return(RCCE_debug_comm,error));
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if(error=RCCE_flag_alloc(&(comm->release)))
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return(RCCE_error_return(RCCE_debug_comm,error));
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comm->initialized = RCCE_COMM_INITIALIZED;
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return(RCCE_SUCCESS);
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}
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// DO NOT USE THIS FUNCTION IN NON-GORY MODE UNTIL MALLOC_FREE HAS BEEN IMPLEMENTED
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int RCCE_comm_free(RCCE_COMM *comm) {
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kprintf("DO NOT USE IN NON-GORY MODE UNTIL MALLOC_FREE HAS BEEN IMPLEMENTED\n");
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if (comm->initialized != RCCE_COMM_INITIALIZED)
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return(RCCE_error_return(RCCE_debug_comm,RCCE_ERROR_COMM_INITIALIZED));
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RCCE_flag_free(&(comm->gather));
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RCCE_flag_free(&(comm->release));
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comm->initialized = RCCE_COMM_NOT_INITIALIZED;
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return(RCCE_SUCCESS);
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}
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//--------------------------------------------------------------------------------------
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// FUNCTION: RCCE_comm_size
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// returns the number of UEs inside the communicator
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//--------------------------------------------------------------------------------------
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int RCCE_comm_size(
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RCCE_COMM comm, // communicator
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int *size // return value (size)
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) {
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if (comm.initialized == RCCE_COMM_INITIALIZED) {
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*size = comm.size;
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return(RCCE_SUCCESS);
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}
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else return(RCCE_error_return(RCCE_debug_comm,RCCE_ERROR_COMM_INITIALIZED));
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}
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//--------------------------------------------------------------------------------------
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// FUNCTION: RCCE_comm_rank
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// returns the rank of the calling UE inside the communicator
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//--------------------------------------------------------------------------------------
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int RCCE_comm_rank(
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RCCE_COMM comm, // communicator
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int *rank // return value (rank)
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) {
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if (comm.initialized == RCCE_COMM_INITIALIZED) {
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*rank = comm.my_rank;
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return(RCCE_SUCCESS);
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}
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else return(RCCE_error_return(RCCE_debug_comm,RCCE_ERROR_COMM_INITIALIZED));
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}
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//--------------------------------------------------------------------------------------
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// FUNCTION: RCCE_global_color
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// use this trivial color function to define global communicator
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//--------------------------------------------------------------------------------------
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int RCCE_global_color(int rank, void *nothing) {return(1);}
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#endif
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