d6b92ffa99
kernel APIs. List of sources used: 1) rdma-core was cloned from "https://github.com/linux-rdma/rdma-core.git" Top commit d65138ef93af30b3ea249f3a84aa6a24ba7f8a75 2) OpenSM was cloned from git://git.openfabrics.org/~halr/opensm.git Top commit 85f841cf209f791c89a075048a907020e924528d 3) libibmad was cloned from "git://git.openfabrics.org/~iraweiny/libibmad.git" Tag 1.3.13 with some additional patches from Mellanox. 4) infiniband-diags was cloned from "git://git.openfabrics.org/~iraweiny/infiniband-diags.git" Tag 1.6.7 with some additional patches from Mellanox. Added the required Makefiles for building and installing. Sponsored by: Mellanox Technologies
326 lines
8.0 KiB
C
326 lines
8.0 KiB
C
/*
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* Copyright (c) 2007 Cisco, Inc. 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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#include <config.h>
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#include <stdlib.h>
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#include <pthread.h>
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#include <string.h>
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#include "mlx4.h"
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#include "doorbell.h"
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#include "wqe.h"
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#include "mlx4-abi.h"
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static void *get_wqe(struct mlx4_srq *srq, int n)
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{
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return srq->buf.buf + (n << srq->wqe_shift);
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}
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void mlx4_free_srq_wqe(struct mlx4_srq *srq, int ind)
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{
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struct mlx4_wqe_srq_next_seg *next;
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pthread_spin_lock(&srq->lock);
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next = get_wqe(srq, srq->tail);
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next->next_wqe_index = htobe16(ind);
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srq->tail = ind;
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pthread_spin_unlock(&srq->lock);
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}
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int mlx4_post_srq_recv(struct ibv_srq *ibsrq,
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struct ibv_recv_wr *wr,
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struct ibv_recv_wr **bad_wr)
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{
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struct mlx4_srq *srq = to_msrq(ibsrq);
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struct mlx4_wqe_srq_next_seg *next;
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struct mlx4_wqe_data_seg *scat;
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int err = 0;
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int nreq;
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int i;
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pthread_spin_lock(&srq->lock);
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for (nreq = 0; wr; ++nreq, wr = wr->next) {
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if (wr->num_sge > srq->max_gs) {
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err = -1;
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*bad_wr = wr;
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break;
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}
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if (srq->head == srq->tail) {
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/* SRQ is full*/
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err = -1;
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*bad_wr = wr;
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break;
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}
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srq->wrid[srq->head] = wr->wr_id;
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next = get_wqe(srq, srq->head);
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srq->head = be16toh(next->next_wqe_index);
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scat = (struct mlx4_wqe_data_seg *) (next + 1);
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for (i = 0; i < wr->num_sge; ++i) {
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scat[i].byte_count = htobe32(wr->sg_list[i].length);
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scat[i].lkey = htobe32(wr->sg_list[i].lkey);
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scat[i].addr = htobe64(wr->sg_list[i].addr);
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}
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if (i < srq->max_gs) {
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scat[i].byte_count = 0;
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scat[i].lkey = htobe32(MLX4_INVALID_LKEY);
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scat[i].addr = 0;
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}
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}
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if (nreq) {
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srq->counter += nreq;
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/*
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* Make sure that descriptors are written before
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* we write doorbell record.
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*/
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udma_to_device_barrier();
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*srq->db = htobe32(srq->counter);
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}
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pthread_spin_unlock(&srq->lock);
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return err;
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}
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int mlx4_alloc_srq_buf(struct ibv_pd *pd, struct ibv_srq_attr *attr,
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struct mlx4_srq *srq)
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{
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struct mlx4_wqe_srq_next_seg *next;
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struct mlx4_wqe_data_seg *scatter;
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int size;
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int buf_size;
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int i;
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srq->wrid = malloc(srq->max * sizeof (uint64_t));
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if (!srq->wrid)
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return -1;
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size = sizeof (struct mlx4_wqe_srq_next_seg) +
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srq->max_gs * sizeof (struct mlx4_wqe_data_seg);
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for (srq->wqe_shift = 5; 1 << srq->wqe_shift < size; ++srq->wqe_shift)
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; /* nothing */
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buf_size = srq->max << srq->wqe_shift;
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if (mlx4_alloc_buf(&srq->buf, buf_size,
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to_mdev(pd->context->device)->page_size)) {
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free(srq->wrid);
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return -1;
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}
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memset(srq->buf.buf, 0, buf_size);
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/*
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* Now initialize the SRQ buffer so that all of the WQEs are
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* linked into the list of free WQEs.
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*/
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for (i = 0; i < srq->max; ++i) {
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next = get_wqe(srq, i);
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next->next_wqe_index = htobe16((i + 1) & (srq->max - 1));
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for (scatter = (void *) (next + 1);
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(void *) scatter < (void *) next + (1 << srq->wqe_shift);
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++scatter)
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scatter->lkey = htobe32(MLX4_INVALID_LKEY);
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}
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srq->head = 0;
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srq->tail = srq->max - 1;
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return 0;
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}
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void mlx4_init_xsrq_table(struct mlx4_xsrq_table *xsrq_table, int size)
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{
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memset(xsrq_table, 0, sizeof *xsrq_table);
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xsrq_table->num_xsrq = size;
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xsrq_table->shift = ffs(size) - 1 - MLX4_XSRQ_TABLE_BITS;
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xsrq_table->mask = (1 << xsrq_table->shift) - 1;
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pthread_mutex_init(&xsrq_table->mutex, NULL);
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}
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struct mlx4_srq *mlx4_find_xsrq(struct mlx4_xsrq_table *xsrq_table, uint32_t srqn)
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{
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int index;
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index = (srqn & (xsrq_table->num_xsrq - 1)) >> xsrq_table->shift;
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if (xsrq_table->xsrq_table[index].refcnt)
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return xsrq_table->xsrq_table[index].table[srqn & xsrq_table->mask];
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return NULL;
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}
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int mlx4_store_xsrq(struct mlx4_xsrq_table *xsrq_table, uint32_t srqn,
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struct mlx4_srq *srq)
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{
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int index, ret = 0;
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index = (srqn & (xsrq_table->num_xsrq - 1)) >> xsrq_table->shift;
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pthread_mutex_lock(&xsrq_table->mutex);
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if (!xsrq_table->xsrq_table[index].refcnt) {
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xsrq_table->xsrq_table[index].table = calloc(xsrq_table->mask + 1,
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sizeof(struct mlx4_srq *));
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if (!xsrq_table->xsrq_table[index].table) {
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ret = -1;
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goto out;
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}
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}
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xsrq_table->xsrq_table[index].refcnt++;
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xsrq_table->xsrq_table[index].table[srqn & xsrq_table->mask] = srq;
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out:
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pthread_mutex_unlock(&xsrq_table->mutex);
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return ret;
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}
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void mlx4_clear_xsrq(struct mlx4_xsrq_table *xsrq_table, uint32_t srqn)
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{
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int index;
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index = (srqn & (xsrq_table->num_xsrq - 1)) >> xsrq_table->shift;
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pthread_mutex_lock(&xsrq_table->mutex);
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if (--xsrq_table->xsrq_table[index].refcnt)
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xsrq_table->xsrq_table[index].table[srqn & xsrq_table->mask] = NULL;
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else
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free(xsrq_table->xsrq_table[index].table);
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pthread_mutex_unlock(&xsrq_table->mutex);
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}
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struct ibv_srq *mlx4_create_xrc_srq(struct ibv_context *context,
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struct ibv_srq_init_attr_ex *attr_ex)
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{
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struct mlx4_create_xsrq cmd;
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struct mlx4_create_srq_resp resp;
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struct mlx4_srq *srq;
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int ret;
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/* Sanity check SRQ size before proceeding */
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if (attr_ex->attr.max_wr > 1 << 16 || attr_ex->attr.max_sge > 64)
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return NULL;
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srq = calloc(1, sizeof *srq);
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if (!srq)
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return NULL;
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if (pthread_spin_init(&srq->lock, PTHREAD_PROCESS_PRIVATE))
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goto err;
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srq->max = align_queue_size(attr_ex->attr.max_wr + 1);
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srq->max_gs = attr_ex->attr.max_sge;
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srq->counter = 0;
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srq->ext_srq = 1;
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if (mlx4_alloc_srq_buf(attr_ex->pd, &attr_ex->attr, srq))
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goto err;
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srq->db = mlx4_alloc_db(to_mctx(context), MLX4_DB_TYPE_RQ);
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if (!srq->db)
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goto err_free;
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*srq->db = 0;
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cmd.buf_addr = (uintptr_t) srq->buf.buf;
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cmd.db_addr = (uintptr_t) srq->db;
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ret = ibv_cmd_create_srq_ex(context, &srq->verbs_srq,
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sizeof(srq->verbs_srq),
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attr_ex,
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&cmd.ibv_cmd, sizeof cmd,
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&resp.ibv_resp, sizeof resp);
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if (ret)
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goto err_db;
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ret = mlx4_store_xsrq(&to_mctx(context)->xsrq_table,
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srq->verbs_srq.srq_num, srq);
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if (ret)
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goto err_destroy;
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return &srq->verbs_srq.srq;
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err_destroy:
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ibv_cmd_destroy_srq(&srq->verbs_srq.srq);
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err_db:
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mlx4_free_db(to_mctx(context), MLX4_DB_TYPE_RQ, srq->db);
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err_free:
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free(srq->wrid);
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mlx4_free_buf(&srq->buf);
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err:
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free(srq);
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return NULL;
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}
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int mlx4_destroy_xrc_srq(struct ibv_srq *srq)
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{
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struct mlx4_context *mctx = to_mctx(srq->context);
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struct mlx4_srq *msrq = to_msrq(srq);
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struct mlx4_cq *mcq;
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int ret;
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mcq = to_mcq(msrq->verbs_srq.cq);
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mlx4_cq_clean(mcq, 0, msrq);
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pthread_spin_lock(&mcq->lock);
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mlx4_clear_xsrq(&mctx->xsrq_table, msrq->verbs_srq.srq_num);
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pthread_spin_unlock(&mcq->lock);
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ret = ibv_cmd_destroy_srq(srq);
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if (ret) {
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pthread_spin_lock(&mcq->lock);
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mlx4_store_xsrq(&mctx->xsrq_table, msrq->verbs_srq.srq_num, msrq);
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pthread_spin_unlock(&mcq->lock);
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return ret;
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}
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mlx4_free_db(mctx, MLX4_DB_TYPE_RQ, msrq->db);
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mlx4_free_buf(&msrq->buf);
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free(msrq->wrid);
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free(msrq);
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return 0;
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}
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