1
1
openmpi/ompi/mca/btl/openib/btl_openib_eager_rdma.h
Gleb Natapov 6a2d210b7d Use OMPI object system to make fragment hierarchy more object oriented. The
main idea (except of cleanup) is to save on initialisation of unneeded fields
and to use C type checking system to catch obvious errors.

This commit was SVN r16779.
2007-11-28 07:11:14 +00:00

103 строки
3.8 KiB
C

/*
* Copyright (c) 2006-2007 Voltaire All rights reserved.
* $COPYRIGHT$
*
* Additional copyrights may follow
*
* $HEADER$
*/
#ifndef MCA_BTL_OPENIB_EAGER_RDMA_BUF_H
#define MCA_BTL_OPENIB_EAGER_RDMA_BUF_H
#include "ompi_config.h"
#include "btl_openib.h"
#if defined(c_plusplus) || defined(__cplusplus)
extern "C" {
#endif
struct mca_btl_openib_eager_rdma_local_t {
ompi_ptr_t base; /**< buffer for RDMAing eager messages */
mca_btl_openib_recv_frag_t *frags;
mca_btl_openib_reg_t *reg;
uint16_t head; /**< RDMA buffer to poll */
uint16_t tail; /**< Needed for credit managment */
int32_t credits; /**< number of RDMA credits */
int32_t rd_win;
#if OMPI_ENABLE_DEBUG
uint32_t seq;
#endif
opal_mutex_t lock; /**< guard access to RDMA buffer */
int32_t rd_low;
};
typedef struct mca_btl_openib_eager_rdma_local_t mca_btl_openib_eager_rdma_local_t;
struct mca_btl_openib_eager_rdma_remote_t {
ompi_ptr_t base; /**< address of remote buffer */
uint32_t rkey; /**< RKey for accessing remote buffer */
int32_t head; /**< RDMA buffer to post to */
int32_t tokens; /**< number of rdam tokens */
#if OMPI_ENABLE_DEBUG
uint32_t seq;
#endif
};
typedef struct mca_btl_openib_eager_rdma_remote_t mca_btl_openib_eager_rdma_remote_t;
#define MCA_BTL_OPENIB_RDMA_FRAG(F) \
(openib_frag_type(F) == MCA_BTL_OPENIB_FRAG_EAGER_RDMA)
#define EAGER_RDMA_BUFFER_REMOTE (0)
#define EAGER_RDMA_BUFFER_LOCAL (0xff)
#ifdef WORDS_BIGENDIAN
#define MCA_BTL_OPENIB_RDMA_FRAG_GET_SIZE(F) ((F)->u.size >> 8)
#define MCA_BTL_OPENIB_RDMA_FRAG_SET_SIZE(F, S) \
((F)->u.size = (S) << 8)
#else
#define MCA_BTL_OPENIB_RDMA_FRAG_GET_SIZE(F) ((F)->u.size & 0x00ffffff)
#define MCA_BTL_OPENIB_RDMA_FRAG_SET_SIZE(F, S) \
((F)->u.size = (S) & 0x00ffffff)
#endif
#define MCA_BTL_OPENIB_RDMA_FRAG_LOCAL(F) \
(((volatile uint8_t*)(F)->ftr->u.buf)[3] != EAGER_RDMA_BUFFER_REMOTE)
#define MCA_BTL_OPENIB_RDMA_FRAG_REMOTE(F) \
(!MCA_BTL_OPENIB_RDMA_FRAG_LOCAL(F))
#define MCA_BTL_OPENIB_RDMA_MAKE_REMOTE(F) do { \
((volatile uint8_t*)(F)->u.buf)[3] = EAGER_RDMA_BUFFER_REMOTE; \
}while (0)
#define MCA_BTL_OPENIB_RDMA_MAKE_LOCAL(F) do { \
((volatile uint8_t*)(F)->u.buf)[3] = EAGER_RDMA_BUFFER_LOCAL; \
}while (0)
#define MCA_BTL_OPENIB_GET_LOCAL_RDMA_FRAG(E, I) \
(&(E)->eager_rdma_local.frags[(I)])
#define MCA_BTL_OPENIB_RDMA_NEXT_INDEX(I) do { \
(I) = ((I) + 1); \
if((I) == \
mca_btl_openib_component.eager_rdma_num) \
(I) = 0; \
} while (0)
#define MCA_BTL_OPENIB_RDMA_MOVE_INDEX(HEAD, OLD_HEAD) \
do { \
int32_t new_head; \
do { \
OLD_HEAD = HEAD; \
new_head = OLD_HEAD + 1; \
if(new_head == mca_btl_openib_component.eager_rdma_num) \
new_head = 0; \
} while(!OPAL_ATOMIC_CMPSET_32(&HEAD, OLD_HEAD, new_head)); \
} while(0)
#if defined(c_plusplus) || defined(__cplusplus)
}
#endif
#endif