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openmpi/opal/mca/rcache/base/rcache_base_vma.c
Nathan Hjelm d4afb16f5a opal: rework mpool and rcache frameworks
This commit rewrites both the mpool and rcache frameworks. Summary of
changes:

 - Before this change a significant portion of the rcache
   functionality lived in mpool components. This meant that it was
   impossible to add a new memory pool to use with rdma networks
   (ugni, openib, etc) without duplicating the functionality of an
   existing mpool component. All the registration functionality has
   been removed from the mpool and placed in the rcache framework.

 - All registration cache mpools components (udreg, grdma, gpusm,
   rgpusm) have been changed to rcache components. rcaches are
   allocated and released in the same way mpool components were.

 - It is now valid to pass NULL as the resources argument when
   creating an rcache. At this time the gpusm and rgpusm components
   support this. All other rcache components require non-NULL
   resources.

 - A new mpool component has been added: hugepage. This component
   supports huge page allocations on linux.

 - Memory pools are now allocated using "hints". Each mpool component
   is queried with the hints and returns a priority. The current hints
   supported are NULL (uses posix_memalign/malloc), page_size=x (huge
   page mpool), and mpool=x.

 - The sm mpool has been moved to common/sm. This reflects that the sm
   mpool is specialized and not meant for any general
   allocations. This mpool may be moved back into the mpool framework
   if there is any objection.

 - The opal_free_list_init arguments have been updated. The unused0
   argument is not used to pass in the registration cache module. The
   mpool registration flags are now rcache registration flags.

 - All components have been updated to make use of the new framework
   interfaces.

As this commit makes significant changes to both the mpool and rcache
frameworks both versions have been bumped to 3.0.0.

Signed-off-by: Nathan Hjelm <hjelmn@lanl.gov>
2016-03-14 10:50:41 -06:00

152 строки
5.3 KiB
C

/* -*- Mode: C; c-basic-offset:4 ; indent-tabs-mode:nil -*- */
/*
* Copyright (c) 2004-2005 The Trustees of Indiana University and Indiana
* University Research and Technology
* Corporation. All rights reserved.
* Copyright (c) 2004-2007 The University of Tennessee and The University
* of Tennessee Research Foundation. All rights
* reserved.
* Copyright (c) 2004-2005 High Performance Computing Center Stuttgart,
* University of Stuttgart. All rights reserved.
* Copyright (c) 2004-2005 The Regents of the University of California.
* All rights reserved.
* Copyright (c) 2006 Voltaire. All rights reserved.
* Copyright (c) 2009-2013 Cisco Systems, Inc. All rights reserved.
* Copyright (c) 2009 IBM Corporation. All rights reserved.
* Copyright (c) 2013 NVIDIA Corporation. All rights reserved.
* Copyright (c) 2015 Los Alamos National Security, LLC. All rights
* reserved.
*
* $COPYRIGHT$
*
* Additional copyrights may follow
*
* $HEADER$
*/
#include "opal_config.h"
#include MCA_memory_IMPLEMENTATION_HEADER
#include "opal/mca/memory/memory.h"
#include "opal/mca/rcache/rcache.h"
#include "rcache_base_vma.h"
#include "rcache_base_vma_tree.h"
/**
* Initialize the rcache
*/
static void mca_rcache_base_vma_module_construct (mca_rcache_base_vma_module_t *vma_module) {
OBJ_CONSTRUCT(&vma_module->vma_lock, opal_recursive_mutex_t);
(void) mca_rcache_base_vma_tree_init (vma_module);
}
static void mca_rcache_base_vma_module_destruct (mca_rcache_base_vma_module_t *vma_module) {
OBJ_DESTRUCT(&vma_module->vma_lock);
mca_rcache_base_vma_tree_finalize (vma_module);
}
OBJ_CLASS_INSTANCE(mca_rcache_base_vma_module_t, opal_object_t,
mca_rcache_base_vma_module_construct,
mca_rcache_base_vma_module_destruct);
mca_rcache_base_vma_module_t *mca_rcache_base_vma_module_alloc (void)
{
return OBJ_NEW(mca_rcache_base_vma_module_t);
}
int mca_rcache_base_vma_find (mca_rcache_base_vma_module_t *vma_module, void *addr,
size_t size, mca_rcache_base_registration_t **reg)
{
int rc;
unsigned char *bound_addr;
if (size == 0) {
return OPAL_ERROR;
}
bound_addr = (unsigned char *) ((intptr_t) addr + size - 1);
/* Check to ensure that the cache is valid */
if (OPAL_UNLIKELY(opal_memory_changed() &&
NULL != opal_memory->memoryc_process &&
OPAL_SUCCESS != (rc = opal_memory->memoryc_process()))) {
return rc;
}
*reg = mca_rcache_base_vma_tree_find (vma_module, (unsigned char *) addr, bound_addr);
return OPAL_SUCCESS;
}
int mca_rcache_base_vma_find_all (mca_rcache_base_vma_module_t *vma_module, void *addr,
size_t size, mca_rcache_base_registration_t **regs,
int reg_cnt)
{
int rc;
unsigned char *bound_addr;
if(size == 0) {
return OPAL_ERROR;
}
bound_addr = (unsigned char *) ((intptr_t) addr + size - 1);
/* Check to ensure that the cache is valid */
if (OPAL_UNLIKELY(opal_memory_changed() &&
NULL != opal_memory->memoryc_process &&
OPAL_SUCCESS != (rc = opal_memory->memoryc_process()))) {
return rc;
}
return mca_rcache_base_vma_tree_find_all (vma_module, (unsigned char *) addr,
bound_addr, regs, reg_cnt);
}
int mca_rcache_base_vma_insert (mca_rcache_base_vma_module_t *vma_module,
mca_rcache_base_registration_t *reg, size_t limit)
{
size_t reg_size = reg->bound - reg->base + 1;
int rc;
if (limit != 0 && reg_size > limit) {
/* return out of resources if request is bigger than cache size
* return temp out of resources otherwise */
return OPAL_ERR_OUT_OF_RESOURCE;
}
/* Check to ensure that the cache is valid */
if (OPAL_UNLIKELY(opal_memory_changed() &&
NULL != opal_memory->memoryc_process &&
OPAL_SUCCESS != (rc = opal_memory->memoryc_process()))) {
return rc;
}
rc = mca_rcache_base_vma_tree_insert (vma_module, reg, limit);
if (OPAL_LIKELY(OPAL_SUCCESS == rc)) {
/* If we successfully registered, then tell the memory manager
to start monitoring this region */
opal_memory->memoryc_register (reg->base, (uint64_t) reg_size,
(uint64_t) (uintptr_t) reg);
}
return rc;
}
int mca_rcache_base_vma_delete (mca_rcache_base_vma_module_t *vma_module,
mca_rcache_base_registration_t *reg)
{
/* Tell the memory manager that we no longer care about this
region */
opal_memory->memoryc_deregister (reg->base,
(uint64_t) (reg->bound - reg->base),
(uint64_t) (uintptr_t) reg);
return mca_rcache_base_vma_tree_delete (vma_module, reg);
}
void mca_rcache_base_vma_dump_range (mca_rcache_base_vma_module_t *vma_module,
unsigned char *base, size_t size, char *msg)
{
mca_rcache_base_vma_tree_dump_range (vma_module, base, size, msg);
}