321 lines
7.5 KiB
C
321 lines
7.5 KiB
C
// SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause
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/* Authors: Cheng Xu <chengyou@linux.alibaba.com> */
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/* Kai Shen <kaishen@linux.alibaba.com> */
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/* Copyright (c) 2020-2022, Alibaba Group. */
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#include "erdma_verbs.h"
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#define MAX_POLL_CHUNK_SIZE 16
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void notify_eq(struct erdma_eq *eq)
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{
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u64 db_data = FIELD_PREP(ERDMA_EQDB_CI_MASK, eq->ci) |
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FIELD_PREP(ERDMA_EQDB_ARM_MASK, 1);
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*eq->db_record = db_data;
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writeq(db_data, eq->db_addr);
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atomic64_inc(&eq->notify_num);
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}
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void *get_next_valid_eqe(struct erdma_eq *eq)
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{
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u64 *eqe = get_queue_entry(eq->qbuf, eq->ci, eq->depth, EQE_SHIFT);
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u32 owner = FIELD_GET(ERDMA_CEQE_HDR_O_MASK, READ_ONCE(*eqe));
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return owner ^ !!(eq->ci & eq->depth) ? eqe : NULL;
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}
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void erdma_aeq_event_handler(struct erdma_dev *dev)
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{
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struct erdma_aeqe *aeqe;
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u32 cqn, qpn;
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struct erdma_qp *qp;
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struct erdma_cq *cq;
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struct ib_event event;
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u32 poll_cnt = 0;
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memset(&event, 0, sizeof(event));
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while (poll_cnt < MAX_POLL_CHUNK_SIZE) {
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aeqe = get_next_valid_eqe(&dev->aeq);
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if (!aeqe)
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break;
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dma_rmb();
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dev->aeq.ci++;
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atomic64_inc(&dev->aeq.event_num);
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poll_cnt++;
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if (FIELD_GET(ERDMA_AEQE_HDR_TYPE_MASK,
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le32_to_cpu(aeqe->hdr)) == ERDMA_AE_TYPE_CQ_ERR) {
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cqn = le32_to_cpu(aeqe->event_data0);
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cq = find_cq_by_cqn(dev, cqn);
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if (!cq)
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continue;
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event.device = cq->ibcq.device;
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event.element.cq = &cq->ibcq;
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event.event = IB_EVENT_CQ_ERR;
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if (cq->ibcq.event_handler)
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cq->ibcq.event_handler(&event,
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cq->ibcq.cq_context);
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} else {
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qpn = le32_to_cpu(aeqe->event_data0);
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qp = find_qp_by_qpn(dev, qpn);
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if (!qp)
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continue;
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event.device = qp->ibqp.device;
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event.element.qp = &qp->ibqp;
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event.event = IB_EVENT_QP_FATAL;
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if (qp->ibqp.event_handler)
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qp->ibqp.event_handler(&event,
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qp->ibqp.qp_context);
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}
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}
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notify_eq(&dev->aeq);
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}
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int erdma_aeq_init(struct erdma_dev *dev)
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{
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struct erdma_eq *eq = &dev->aeq;
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u32 buf_size;
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eq->depth = ERDMA_DEFAULT_EQ_DEPTH;
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buf_size = eq->depth << EQE_SHIFT;
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eq->qbuf =
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dma_alloc_coherent(&dev->pdev->dev, WARPPED_BUFSIZE(buf_size),
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&eq->qbuf_dma_addr, GFP_KERNEL | __GFP_ZERO);
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if (!eq->qbuf)
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return -ENOMEM;
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spin_lock_init(&eq->lock);
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atomic64_set(&eq->event_num, 0);
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atomic64_set(&eq->notify_num, 0);
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eq->db_addr = (u64 __iomem *)(dev->func_bar + ERDMA_REGS_AEQ_DB_REG);
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eq->db_record = (u64 *)(eq->qbuf + buf_size);
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erdma_reg_write32(dev, ERDMA_REGS_AEQ_ADDR_H_REG,
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upper_32_bits(eq->qbuf_dma_addr));
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erdma_reg_write32(dev, ERDMA_REGS_AEQ_ADDR_L_REG,
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lower_32_bits(eq->qbuf_dma_addr));
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erdma_reg_write32(dev, ERDMA_REGS_AEQ_DEPTH_REG, eq->depth);
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erdma_reg_write64(dev, ERDMA_AEQ_DB_HOST_ADDR_REG,
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eq->qbuf_dma_addr + buf_size);
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return 0;
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}
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void erdma_aeq_destroy(struct erdma_dev *dev)
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{
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struct erdma_eq *eq = &dev->aeq;
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dma_free_coherent(&dev->pdev->dev,
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WARPPED_BUFSIZE(eq->depth << EQE_SHIFT), eq->qbuf,
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eq->qbuf_dma_addr);
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}
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void erdma_ceq_completion_handler(struct erdma_eq_cb *ceq_cb)
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{
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struct erdma_dev *dev = ceq_cb->dev;
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struct erdma_cq *cq;
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u32 poll_cnt = 0;
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u64 *ceqe;
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int cqn;
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if (!ceq_cb->ready)
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return;
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while (poll_cnt < MAX_POLL_CHUNK_SIZE) {
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ceqe = get_next_valid_eqe(&ceq_cb->eq);
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if (!ceqe)
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break;
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dma_rmb();
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ceq_cb->eq.ci++;
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poll_cnt++;
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cqn = FIELD_GET(ERDMA_CEQE_HDR_CQN_MASK, READ_ONCE(*ceqe));
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cq = find_cq_by_cqn(dev, cqn);
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if (!cq)
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continue;
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if (rdma_is_kernel_res(&cq->ibcq.res))
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cq->kern_cq.cmdsn++;
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if (cq->ibcq.comp_handler)
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cq->ibcq.comp_handler(&cq->ibcq, cq->ibcq.cq_context);
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}
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notify_eq(&ceq_cb->eq);
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}
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static irqreturn_t erdma_intr_ceq_handler(int irq, void *data)
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{
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struct erdma_eq_cb *ceq_cb = data;
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tasklet_schedule(&ceq_cb->tasklet);
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return IRQ_HANDLED;
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}
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static void erdma_intr_ceq_task(unsigned long data)
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{
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erdma_ceq_completion_handler((struct erdma_eq_cb *)data);
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}
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static int erdma_set_ceq_irq(struct erdma_dev *dev, u16 ceqn)
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{
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struct erdma_eq_cb *eqc = &dev->ceqs[ceqn];
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int err;
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snprintf(eqc->irq.name, ERDMA_IRQNAME_SIZE, "erdma-ceq%u@pci:%s", ceqn,
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pci_name(dev->pdev));
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eqc->irq.msix_vector = pci_irq_vector(dev->pdev, ceqn + 1);
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tasklet_init(&dev->ceqs[ceqn].tasklet, erdma_intr_ceq_task,
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(unsigned long)&dev->ceqs[ceqn]);
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cpumask_set_cpu(cpumask_local_spread(ceqn + 1, dev->attrs.numa_node),
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&eqc->irq.affinity_hint_mask);
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err = request_irq(eqc->irq.msix_vector, erdma_intr_ceq_handler, 0,
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eqc->irq.name, eqc);
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if (err) {
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dev_err(&dev->pdev->dev, "failed to request_irq(%d)\n", err);
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return err;
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}
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irq_set_affinity_hint(eqc->irq.msix_vector,
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&eqc->irq.affinity_hint_mask);
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return 0;
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}
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static void erdma_free_ceq_irq(struct erdma_dev *dev, u16 ceqn)
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{
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struct erdma_eq_cb *eqc = &dev->ceqs[ceqn];
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irq_set_affinity_hint(eqc->irq.msix_vector, NULL);
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free_irq(eqc->irq.msix_vector, eqc);
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}
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static int create_eq_cmd(struct erdma_dev *dev, u32 eqn, struct erdma_eq *eq)
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{
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struct erdma_cmdq_create_eq_req req;
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dma_addr_t db_info_dma_addr;
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erdma_cmdq_build_reqhdr(&req.hdr, CMDQ_SUBMOD_COMMON,
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CMDQ_OPCODE_CREATE_EQ);
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req.eqn = eqn;
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req.depth = ilog2(eq->depth);
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req.qbuf_addr = eq->qbuf_dma_addr;
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req.qtype = ERDMA_EQ_TYPE_CEQ;
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/* Vector index is the same as EQN. */
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req.vector_idx = eqn;
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db_info_dma_addr = eq->qbuf_dma_addr + (eq->depth << EQE_SHIFT);
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req.db_dma_addr_l = lower_32_bits(db_info_dma_addr);
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req.db_dma_addr_h = upper_32_bits(db_info_dma_addr);
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return erdma_post_cmd_wait(&dev->cmdq, &req, sizeof(req), NULL, NULL);
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}
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static int erdma_ceq_init_one(struct erdma_dev *dev, u16 ceqn)
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{
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struct erdma_eq *eq = &dev->ceqs[ceqn].eq;
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u32 buf_size = ERDMA_DEFAULT_EQ_DEPTH << EQE_SHIFT;
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int ret;
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eq->qbuf =
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dma_alloc_coherent(&dev->pdev->dev, WARPPED_BUFSIZE(buf_size),
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&eq->qbuf_dma_addr, GFP_KERNEL | __GFP_ZERO);
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if (!eq->qbuf)
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return -ENOMEM;
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spin_lock_init(&eq->lock);
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atomic64_set(&eq->event_num, 0);
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atomic64_set(&eq->notify_num, 0);
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eq->depth = ERDMA_DEFAULT_EQ_DEPTH;
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eq->db_addr =
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(u64 __iomem *)(dev->func_bar + ERDMA_REGS_CEQ_DB_BASE_REG +
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(ceqn + 1) * ERDMA_DB_SIZE);
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eq->db_record = (u64 *)(eq->qbuf + buf_size);
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eq->ci = 0;
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dev->ceqs[ceqn].dev = dev;
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/* CEQ indexed from 1, 0 rsvd for CMDQ-EQ. */
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ret = create_eq_cmd(dev, ceqn + 1, eq);
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dev->ceqs[ceqn].ready = ret ? false : true;
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return ret;
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}
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static void erdma_ceq_uninit_one(struct erdma_dev *dev, u16 ceqn)
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{
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struct erdma_eq *eq = &dev->ceqs[ceqn].eq;
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u32 buf_size = ERDMA_DEFAULT_EQ_DEPTH << EQE_SHIFT;
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struct erdma_cmdq_destroy_eq_req req;
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int err;
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dev->ceqs[ceqn].ready = 0;
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erdma_cmdq_build_reqhdr(&req.hdr, CMDQ_SUBMOD_COMMON,
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CMDQ_OPCODE_DESTROY_EQ);
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/* CEQ indexed from 1, 0 rsvd for CMDQ-EQ. */
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req.eqn = ceqn + 1;
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req.qtype = ERDMA_EQ_TYPE_CEQ;
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req.vector_idx = ceqn + 1;
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err = erdma_post_cmd_wait(&dev->cmdq, &req, sizeof(req), NULL, NULL);
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if (err)
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return;
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dma_free_coherent(&dev->pdev->dev, WARPPED_BUFSIZE(buf_size), eq->qbuf,
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eq->qbuf_dma_addr);
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}
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int erdma_ceqs_init(struct erdma_dev *dev)
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{
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u32 i, j;
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int err;
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for (i = 0; i < dev->attrs.irq_num - 1; i++) {
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err = erdma_ceq_init_one(dev, i);
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if (err)
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goto out_err;
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err = erdma_set_ceq_irq(dev, i);
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if (err) {
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erdma_ceq_uninit_one(dev, i);
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goto out_err;
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}
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}
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return 0;
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out_err:
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for (j = 0; j < i; j++) {
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erdma_free_ceq_irq(dev, j);
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erdma_ceq_uninit_one(dev, j);
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}
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return err;
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}
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void erdma_ceqs_uninit(struct erdma_dev *dev)
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{
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u32 i;
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for (i = 0; i < dev->attrs.irq_num - 1; i++) {
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erdma_free_ceq_irq(dev, i);
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erdma_ceq_uninit_one(dev, i);
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}
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}
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