nvmet: rename nvme_completion instances from rsp to cqe
Use NVMe namings for improving code readability. Signed-off-by: Max Gurtovoy <maxg@mellanox.com> Reviewed-by : Chaitanya Kulkarni <chaitanya.kulkarni@wdc.com> Signed-off-by: Christoph Hellwig <hch@lst.de>
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fc6c973072
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@ -647,7 +647,7 @@ static void nvmet_update_sq_head(struct nvmet_req *req)
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} while (cmpxchg(&req->sq->sqhd, old_sqhd, new_sqhd) !=
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old_sqhd);
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}
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req->rsp->sq_head = cpu_to_le16(req->sq->sqhd & 0x0000FFFF);
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req->cqe->sq_head = cpu_to_le16(req->sq->sqhd & 0x0000FFFF);
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}
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static void nvmet_set_error(struct nvmet_req *req, u16 status)
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@ -656,7 +656,7 @@ static void nvmet_set_error(struct nvmet_req *req, u16 status)
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struct nvme_error_slot *new_error_slot;
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unsigned long flags;
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req->rsp->status = cpu_to_le16(status << 1);
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req->cqe->status = cpu_to_le16(status << 1);
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if (!ctrl || req->error_loc == NVMET_NO_ERROR_LOC)
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return;
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@ -676,15 +676,15 @@ static void nvmet_set_error(struct nvmet_req *req, u16 status)
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spin_unlock_irqrestore(&ctrl->error_lock, flags);
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/* set the more bit for this request */
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req->rsp->status |= cpu_to_le16(1 << 14);
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req->cqe->status |= cpu_to_le16(1 << 14);
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}
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static void __nvmet_req_complete(struct nvmet_req *req, u16 status)
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{
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if (!req->sq->sqhd_disabled)
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nvmet_update_sq_head(req);
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req->rsp->sq_id = cpu_to_le16(req->sq->qid);
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req->rsp->command_id = req->cmd->common.command_id;
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req->cqe->sq_id = cpu_to_le16(req->sq->qid);
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req->cqe->command_id = req->cmd->common.command_id;
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if (unlikely(status))
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nvmet_set_error(req, status);
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@ -841,8 +841,8 @@ bool nvmet_req_init(struct nvmet_req *req, struct nvmet_cq *cq,
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req->sg = NULL;
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req->sg_cnt = 0;
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req->transfer_len = 0;
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req->rsp->status = 0;
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req->rsp->sq_head = 0;
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req->cqe->status = 0;
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req->cqe->sq_head = 0;
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req->ns = NULL;
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req->error_loc = NVMET_NO_ERROR_LOC;
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req->error_slba = 0;
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@ -1069,7 +1069,7 @@ u16 nvmet_ctrl_find_get(const char *subsysnqn, const char *hostnqn, u16 cntlid,
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if (!subsys) {
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pr_warn("connect request for invalid subsystem %s!\n",
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subsysnqn);
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req->rsp->result.u32 = IPO_IATTR_CONNECT_DATA(subsysnqn);
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req->cqe->result.u32 = IPO_IATTR_CONNECT_DATA(subsysnqn);
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return NVME_SC_CONNECT_INVALID_PARAM | NVME_SC_DNR;
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}
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@ -1090,7 +1090,7 @@ u16 nvmet_ctrl_find_get(const char *subsysnqn, const char *hostnqn, u16 cntlid,
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pr_warn("could not find controller %d for subsys %s / host %s\n",
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cntlid, subsysnqn, hostnqn);
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req->rsp->result.u32 = IPO_IATTR_CONNECT_DATA(cntlid);
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req->cqe->result.u32 = IPO_IATTR_CONNECT_DATA(cntlid);
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status = NVME_SC_CONNECT_INVALID_PARAM | NVME_SC_DNR;
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out:
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@ -1188,7 +1188,7 @@ u16 nvmet_alloc_ctrl(const char *subsysnqn, const char *hostnqn,
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if (!subsys) {
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pr_warn("connect request for invalid subsystem %s!\n",
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subsysnqn);
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req->rsp->result.u32 = IPO_IATTR_CONNECT_DATA(subsysnqn);
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req->cqe->result.u32 = IPO_IATTR_CONNECT_DATA(subsysnqn);
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goto out;
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}
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@ -1197,7 +1197,7 @@ u16 nvmet_alloc_ctrl(const char *subsysnqn, const char *hostnqn,
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if (!nvmet_host_allowed(subsys, hostnqn)) {
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pr_info("connect by host %s for subsystem %s not allowed\n",
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hostnqn, subsysnqn);
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req->rsp->result.u32 = IPO_IATTR_CONNECT_DATA(hostnqn);
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req->cqe->result.u32 = IPO_IATTR_CONNECT_DATA(hostnqn);
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up_read(&nvmet_config_sem);
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status = NVME_SC_CONNECT_INVALID_HOST | NVME_SC_DNR;
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goto out_put_subsystem;
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@ -72,7 +72,7 @@ static void nvmet_execute_prop_get(struct nvmet_req *req)
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offsetof(struct nvmf_property_get_command, attrib);
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}
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req->rsp->result.u64 = cpu_to_le64(val);
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req->cqe->result.u64 = cpu_to_le64(val);
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nvmet_req_complete(req, status);
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}
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@ -124,7 +124,7 @@ static u16 nvmet_install_queue(struct nvmet_ctrl *ctrl, struct nvmet_req *req)
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if (c->cattr & NVME_CONNECT_DISABLE_SQFLOW) {
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req->sq->sqhd_disabled = true;
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req->rsp->sq_head = cpu_to_le16(0xffff);
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req->cqe->sq_head = cpu_to_le16(0xffff);
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}
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if (ctrl->ops->install_queue) {
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@ -158,7 +158,7 @@ static void nvmet_execute_admin_connect(struct nvmet_req *req)
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goto out;
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/* zero out initial completion result, assign values as needed */
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req->rsp->result.u32 = 0;
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req->cqe->result.u32 = 0;
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if (c->recfmt != 0) {
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pr_warn("invalid connect version (%d).\n",
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@ -172,7 +172,7 @@ static void nvmet_execute_admin_connect(struct nvmet_req *req)
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pr_warn("connect attempt for invalid controller ID %#x\n",
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d->cntlid);
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status = NVME_SC_CONNECT_INVALID_PARAM | NVME_SC_DNR;
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req->rsp->result.u32 = IPO_IATTR_CONNECT_DATA(cntlid);
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req->cqe->result.u32 = IPO_IATTR_CONNECT_DATA(cntlid);
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goto out;
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}
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@ -195,7 +195,7 @@ static void nvmet_execute_admin_connect(struct nvmet_req *req)
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pr_info("creating controller %d for subsystem %s for NQN %s.\n",
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ctrl->cntlid, ctrl->subsys->subsysnqn, ctrl->hostnqn);
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req->rsp->result.u16 = cpu_to_le16(ctrl->cntlid);
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req->cqe->result.u16 = cpu_to_le16(ctrl->cntlid);
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out:
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kfree(d);
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@ -222,7 +222,7 @@ static void nvmet_execute_io_connect(struct nvmet_req *req)
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goto out;
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/* zero out initial completion result, assign values as needed */
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req->rsp->result.u32 = 0;
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req->cqe->result.u32 = 0;
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if (c->recfmt != 0) {
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pr_warn("invalid connect version (%d).\n",
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@ -240,14 +240,14 @@ static void nvmet_execute_io_connect(struct nvmet_req *req)
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if (unlikely(qid > ctrl->subsys->max_qid)) {
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pr_warn("invalid queue id (%d)\n", qid);
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status = NVME_SC_CONNECT_INVALID_PARAM | NVME_SC_DNR;
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req->rsp->result.u32 = IPO_IATTR_CONNECT_SQE(qid);
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req->cqe->result.u32 = IPO_IATTR_CONNECT_SQE(qid);
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goto out_ctrl_put;
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}
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status = nvmet_install_queue(ctrl, req);
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if (status) {
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/* pass back cntlid that had the issue of installing queue */
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req->rsp->result.u16 = cpu_to_le16(ctrl->cntlid);
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req->cqe->result.u16 = cpu_to_le16(ctrl->cntlid);
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goto out_ctrl_put;
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}
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@ -2184,7 +2184,7 @@ nvmet_fc_handle_fcp_rqst(struct nvmet_fc_tgtport *tgtport,
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}
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fod->req.cmd = &fod->cmdiubuf.sqe;
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fod->req.rsp = &fod->rspiubuf.cqe;
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fod->req.cqe = &fod->rspiubuf.cqe;
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fod->req.port = tgtport->pe->port;
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/* clear any response payload */
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@ -18,7 +18,7 @@
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struct nvme_loop_iod {
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struct nvme_request nvme_req;
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struct nvme_command cmd;
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struct nvme_completion rsp;
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struct nvme_completion cqe;
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struct nvmet_req req;
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struct nvme_loop_queue *queue;
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struct work_struct work;
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@ -94,7 +94,7 @@ static void nvme_loop_queue_response(struct nvmet_req *req)
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{
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struct nvme_loop_queue *queue =
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container_of(req->sq, struct nvme_loop_queue, nvme_sq);
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struct nvme_completion *cqe = req->rsp;
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struct nvme_completion *cqe = req->cqe;
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/*
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* AEN requests are special as they don't time out and can
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@ -207,7 +207,7 @@ static int nvme_loop_init_iod(struct nvme_loop_ctrl *ctrl,
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struct nvme_loop_iod *iod, unsigned int queue_idx)
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{
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iod->req.cmd = &iod->cmd;
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iod->req.rsp = &iod->rsp;
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iod->req.cqe = &iod->cqe;
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iod->queue = &ctrl->queues[queue_idx];
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INIT_WORK(&iod->work, nvme_loop_execute_work);
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return 0;
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@ -284,7 +284,7 @@ struct nvmet_fabrics_ops {
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struct nvmet_req {
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struct nvme_command *cmd;
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struct nvme_completion *rsp;
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struct nvme_completion *cqe;
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struct nvmet_sq *sq;
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struct nvmet_cq *cq;
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struct nvmet_ns *ns;
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@ -322,7 +322,7 @@ extern struct workqueue_struct *buffered_io_wq;
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static inline void nvmet_set_result(struct nvmet_req *req, u32 result)
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{
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req->rsp->result.u32 = cpu_to_le32(result);
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req->cqe->result.u32 = cpu_to_le32(result);
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}
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/*
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@ -160,7 +160,7 @@ static inline bool nvmet_rdma_need_data_out(struct nvmet_rdma_rsp *rsp)
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{
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return !nvme_is_write(rsp->req.cmd) &&
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rsp->req.transfer_len &&
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!rsp->req.rsp->status &&
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!rsp->req.cqe->status &&
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!(rsp->flags & NVMET_RDMA_REQ_INLINE_DATA);
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}
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@ -364,17 +364,17 @@ static int nvmet_rdma_alloc_rsp(struct nvmet_rdma_device *ndev,
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struct nvmet_rdma_rsp *r)
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{
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/* NVMe CQE / RDMA SEND */
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r->req.rsp = kmalloc(sizeof(*r->req.rsp), GFP_KERNEL);
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if (!r->req.rsp)
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r->req.cqe = kmalloc(sizeof(*r->req.cqe), GFP_KERNEL);
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if (!r->req.cqe)
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goto out;
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r->send_sge.addr = ib_dma_map_single(ndev->device, r->req.rsp,
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sizeof(*r->req.rsp), DMA_TO_DEVICE);
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r->send_sge.addr = ib_dma_map_single(ndev->device, r->req.cqe,
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sizeof(*r->req.cqe), DMA_TO_DEVICE);
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if (ib_dma_mapping_error(ndev->device, r->send_sge.addr))
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goto out_free_rsp;
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r->req.p2p_client = &ndev->device->dev;
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r->send_sge.length = sizeof(*r->req.rsp);
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r->send_sge.length = sizeof(*r->req.cqe);
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r->send_sge.lkey = ndev->pd->local_dma_lkey;
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r->send_cqe.done = nvmet_rdma_send_done;
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@ -389,7 +389,7 @@ static int nvmet_rdma_alloc_rsp(struct nvmet_rdma_device *ndev,
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return 0;
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out_free_rsp:
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kfree(r->req.rsp);
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kfree(r->req.cqe);
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out:
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return -ENOMEM;
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}
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@ -398,8 +398,8 @@ static void nvmet_rdma_free_rsp(struct nvmet_rdma_device *ndev,
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struct nvmet_rdma_rsp *r)
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{
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ib_dma_unmap_single(ndev->device, r->send_sge.addr,
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sizeof(*r->req.rsp), DMA_TO_DEVICE);
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kfree(r->req.rsp);
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sizeof(*r->req.cqe), DMA_TO_DEVICE);
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kfree(r->req.cqe);
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}
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static int
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@ -161,14 +161,14 @@ static inline bool nvmet_tcp_has_data_in(struct nvmet_tcp_cmd *cmd)
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static inline bool nvmet_tcp_need_data_in(struct nvmet_tcp_cmd *cmd)
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{
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return nvmet_tcp_has_data_in(cmd) && !cmd->req.rsp->status;
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return nvmet_tcp_has_data_in(cmd) && !cmd->req.cqe->status;
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}
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static inline bool nvmet_tcp_need_data_out(struct nvmet_tcp_cmd *cmd)
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{
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return !nvme_is_write(cmd->req.cmd) &&
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cmd->req.transfer_len > 0 &&
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!cmd->req.rsp->status;
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!cmd->req.cqe->status;
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}
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static inline bool nvmet_tcp_has_inline_data(struct nvmet_tcp_cmd *cmd)
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@ -378,7 +378,7 @@ static void nvmet_setup_c2h_data_pdu(struct nvmet_tcp_cmd *cmd)
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pdu->hdr.plen =
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cpu_to_le32(pdu->hdr.hlen + hdgst +
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cmd->req.transfer_len + ddgst);
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pdu->command_id = cmd->req.rsp->command_id;
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pdu->command_id = cmd->req.cqe->command_id;
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pdu->data_length = cpu_to_le32(cmd->req.transfer_len);
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pdu->data_offset = cpu_to_le32(cmd->wbytes_done);
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@ -1224,7 +1224,7 @@ static int nvmet_tcp_alloc_cmd(struct nvmet_tcp_queue *queue,
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sizeof(*c->rsp_pdu) + hdgst, GFP_KERNEL | __GFP_ZERO);
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if (!c->rsp_pdu)
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goto out_free_cmd;
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c->req.rsp = &c->rsp_pdu->cqe;
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c->req.cqe = &c->rsp_pdu->cqe;
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c->data_pdu = page_frag_alloc(&queue->pf_cache,
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sizeof(*c->data_pdu) + hdgst, GFP_KERNEL | __GFP_ZERO);
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