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Mon, 24 Aug 2026 15:57:08 -0700 (PDT) X-Relaying-Domain: purestorage.com Received: from dev-sgogte.dev.purestorage.com (dev-sgogte.dev.purestorage.com [10.112.19.91]) by c7-smtp-2026.dev.purestorage.com (Postfix) with ESMTP id 46AFB402B2; Mon, 24 Aug 2026 16:57:08 -0600 (MDT) Received: by dev-sgogte.dev.purestorage.com (Postfix, from userid 1557734945) id 43B9051D05; Mon, 24 Aug 2026 16:57:08 -0600 (MDT) From: Surabhi Gogte To: Keith Busch , Jens Axboe , Christoph Hellwig , Sagi Grimberg Cc: linux-nvme@lists.infradead.org, linux-kernel@vger.kernel.org, mkhalfella@purestorage.com, randyj@purestorage.com, adailey@purestorage.com, Surabhi Gogte Subject: [PATCH v2 2/2] nvme-tcp: parallelize I/O queue allocation and startup Date: Mon, 24 Aug 2026 16:56:48 -0600 Message-ID: <20260824225648.316962-3-sgogte@purestorage.com> X-Mailer: git-send-email 2.55.0 In-Reply-To: <20260824225648.316962-1-sgogte@purestorage.com> References: <20260824225648.316962-1-sgogte@purestorage.com> Precedence: bulk X-Mailing-List: linux-kernel@vger.kernel.org List-Id: List-Subscribe: List-Unsubscribe: MIME-Version: 1.0 Content-Transfer-Encoding: 8bit Similar to commit 2a8513091d2f ("nvme-rdma: parallelize I/O queue allocation and startup"), refactor nvme tcp I/O queue setup to use async API, combining allocation and startup into a single parallel operation per queue. This reduces connection and reconnection setup time when there are delays in establishing connections, which is especially important for high-core-count hosts. Key changes: - Use async API to facilitate parallel calls for io queue setup. - Add nvme_tcp_setup_ctx for propagating errors from async workers. - Remove nvme_tcp_start_io_queues() and __nvme_tcp_alloc_io_queues(); their logic is folded into nvme_tcp_setup_io_queues() and nvme_tcp_configure_io_queues(). - Allocate the io tag set before the queues so that the queue range is known, and only set up the reconnect grow case if the queue count actually increased. - Serialize the cpu scan and claim in nvme_tcp_set_queue_io_cpu() with a spinlock, as concurrent callers would otherwise select the same cpu. The per-cpu counters no longer need to be atomics. - Use init_net in nvme_tcp_alloc_queue() instead of the namespace of current, which is no longer the connecting task once the allocation runs from a worker. A controller is not guaranteed to be tied to a namespace, as the reconnect and error recovery paths already run from a workqueue in init_net. Testing on a 64-core host with 64 IO-queues shows nvme-tcp connection time reduced from 61ms to 11ms. Signed-off-by: Surabhi Gogte --- drivers/nvme/host/tcp.c | 126 +++++++++++++++++++++++++--------------- 1 file changed, 80 insertions(+), 46 deletions(-) diff --git a/drivers/nvme/host/tcp.c b/drivers/nvme/host/tcp.c index 354668ad29ac..30fe4c5abe0b 100644 --- a/drivers/nvme/host/tcp.c +++ b/drivers/nvme/host/tcp.c @@ -7,6 +7,7 @@ #include #include #include +#include #include #include #include @@ -54,7 +55,8 @@ MODULE_PARM_DESC(tls_handshake_timeout, "nvme TLS handshake timeout in seconds (default 10)"); #endif -static atomic_t nvme_tcp_cpu_queues[NR_CPUS]; +static int nvme_tcp_cpu_queues[NR_CPUS]; +static DEFINE_SPINLOCK(nvme_tcp_cpu_queues_lock); enum nvme_tcp_send_state { NVME_TCP_SEND_CMD_PDU = 0, @@ -154,6 +156,12 @@ struct nvme_tcp_queue { static DEFINE_MUTEX(nvme_tcp_ctrl_mutex); static LIST_HEAD_GUARDED(nvme_tcp_ctrl_list, nvme_tcp_ctrl_mutex); +struct nvme_tcp_setup_ctx { + struct nvme_ctrl *ctrl; + int qid; + int *err; +}; + struct nvme_tcp_ctrl { /* read only in the hot path */ struct nvme_tcp_queue *queues; @@ -1718,9 +1726,10 @@ static void nvme_tcp_set_queue_io_cpu(struct nvme_tcp_queue *queue) goto out; /* Search for the least used cpu from the mq_map */ + spin_lock(&nvme_tcp_cpu_queues_lock); io_cpu = WORK_CPU_UNBOUND; for_each_online_cpu(cpu) { - int num_queues = atomic_read(&nvme_tcp_cpu_queues[cpu]); + int num_queues = nvme_tcp_cpu_queues[cpu]; if (mq_map[cpu] != qid) continue; @@ -1731,9 +1740,10 @@ static void nvme_tcp_set_queue_io_cpu(struct nvme_tcp_queue *queue) } if (io_cpu != WORK_CPU_UNBOUND) { queue->io_cpu = io_cpu; - atomic_inc(&nvme_tcp_cpu_queues[io_cpu]); + nvme_tcp_cpu_queues[io_cpu]++; set_bit(NVME_TCP_Q_IO_CPU_SET, &queue->flags); } + spin_unlock(&nvme_tcp_cpu_queues_lock); out: dev_dbg(ctrl->ctrl.device, "queue %d: using cpu %d\n", qid, queue->io_cpu); @@ -1846,7 +1856,7 @@ static int nvme_tcp_alloc_queue(struct nvme_ctrl *nctrl, int qid, queue->cmnd_capsule_len = sizeof(struct nvme_command) + NVME_TCP_ADMIN_CCSZ; - ret = sock_create_kern(current->nsproxy->net_ns, + ret = sock_create_kern(&init_net, ctrl->addr.ss_family, SOCK_STREAM, IPPROTO_TCP, &queue->sock); if (ret) { @@ -2010,8 +2020,11 @@ static void nvme_tcp_stop_queue_nowait(struct nvme_ctrl *nctrl, int qid) if (!test_bit(NVME_TCP_Q_ALLOCATED, &queue->flags)) return; - if (test_and_clear_bit(NVME_TCP_Q_IO_CPU_SET, &queue->flags)) - atomic_dec(&nvme_tcp_cpu_queues[queue->io_cpu]); + if (test_and_clear_bit(NVME_TCP_Q_IO_CPU_SET, &queue->flags)) { + spin_lock(&nvme_tcp_cpu_queues_lock); + nvme_tcp_cpu_queues[queue->io_cpu]--; + spin_unlock(&nvme_tcp_cpu_queues_lock); + } mutex_lock(&queue->queue_lock); if (test_and_clear_bit(NVME_TCP_Q_LIVE, &queue->flags)) @@ -2118,25 +2131,6 @@ static void nvme_tcp_stop_io_queues(struct nvme_ctrl *ctrl) nvme_tcp_wait_queue(ctrl, i); } -static int nvme_tcp_start_io_queues(struct nvme_ctrl *ctrl, - int first, int last) -{ - int i, ret; - - for (i = first; i < last; i++) { - ret = nvme_tcp_start_queue(ctrl, i); - if (ret) - goto out_stop_queues; - } - - return 0; - -out_stop_queues: - for (i--; i >= first; i--) - nvme_tcp_stop_queue(ctrl, i); - return ret; -} - static int nvme_tcp_alloc_admin_queue(struct nvme_ctrl *ctrl) { int ret; @@ -2197,22 +2191,64 @@ static int nvme_tcp_tls_check_psk(struct nvme_ctrl *ctrl) return 0; } -static int __nvme_tcp_alloc_io_queues(struct nvme_ctrl *ctrl) +static void nvme_tcp_setup_queue_async(void *data, async_cookie_t cookie) { - int i, ret; + struct nvme_tcp_setup_ctx *ctx = data; + struct nvme_ctrl *ctrl = ctx->ctrl; + int ret; - for (i = 1; i < ctrl->queue_count; i++) { - ret = nvme_tcp_alloc_queue(ctrl, i, - ctrl->tls_pskid); - if (ret) - goto out_free_queues; + ret = nvme_tcp_alloc_queue(ctrl, ctx->qid, ctrl->tls_pskid); + if (ret) + goto out_err; + + ret = nvme_tcp_start_queue(ctrl, ctx->qid); + if (ret) + goto out_err; + + return; + +out_err: + WRITE_ONCE(*ctx->err, ret); +} + +static int nvme_tcp_setup_io_queues(struct nvme_ctrl *ctrl, unsigned int first, + unsigned int last) +{ + ASYNC_DOMAIN_EXCLUSIVE(queue_domain); + struct nvme_tcp_setup_ctx *ctxs; + int nr_queues = last - first; + int err = 0, i, ret; + + ctxs = kmalloc_objs(*ctxs, nr_queues); + if (!ctxs) + return -ENOMEM; + + for (i = 0; i < nr_queues; i++) { + ctxs[i].ctrl = ctrl; + ctxs[i].qid = first + i; + ctxs[i].err = &err; + async_schedule_domain(nvme_tcp_setup_queue_async, &ctxs[i], + &queue_domain); } + async_synchronize_full_domain(&queue_domain); + kfree(ctxs); + + ret = READ_ONCE(err); + if (ret) + goto out_free_queues; + return 0; out_free_queues: - for (i--; i >= 1; i--) - nvme_tcp_free_queue(ctrl, i); + for (i = first; i < last; i++) { + struct nvme_tcp_queue *queue = &to_tcp_ctrl(ctrl)->queues[i]; + + if (test_bit(NVME_TCP_Q_LIVE, &queue->flags)) + nvme_tcp_stop_queue(ctrl, i); + if (test_bit(NVME_TCP_Q_ALLOCATED, &queue->flags)) + nvme_tcp_free_queue(ctrl, i); + } return ret; } @@ -2254,10 +2290,6 @@ static int nvme_tcp_configure_io_queues(struct nvme_ctrl *ctrl, bool new) if (ret) return ret; - ret = __nvme_tcp_alloc_io_queues(ctrl); - if (ret) - return ret; - if (new) { ret = nvme_alloc_io_tag_set(ctrl, &to_tcp_ctrl(ctrl)->tag_set, &nvme_tcp_mq_ops, @@ -2268,12 +2300,12 @@ static int nvme_tcp_configure_io_queues(struct nvme_ctrl *ctrl, bool new) } /* - * Only start IO queues for which we have allocated the tagset + * Only setup IO queues for which we have allocated the tagset * and limited it to the available queues. On reconnects, the * queue number might have changed. */ nr_queues = min(ctrl->tagset->nr_hw_queues + 1, ctrl->queue_count); - ret = nvme_tcp_start_io_queues(ctrl, 1, nr_queues); + ret = nvme_tcp_setup_io_queues(ctrl, 1, nr_queues); if (ret) goto out_cleanup_connect_q; @@ -2297,12 +2329,14 @@ static int nvme_tcp_configure_io_queues(struct nvme_ctrl *ctrl, bool new) /* * If the number of queues has increased (reconnect case) - * start all new queues now. + * setup all new queues now. */ - ret = nvme_tcp_start_io_queues(ctrl, nr_queues, - ctrl->tagset->nr_hw_queues + 1); - if (ret) - goto out_wait_freeze_timed_out; + if (ctrl->tagset->nr_hw_queues + 1 > nr_queues) { + ret = nvme_tcp_setup_io_queues(ctrl, nr_queues, + ctrl->tagset->nr_hw_queues + 1); + if (ret) + goto out_wait_freeze_timed_out; + } return 0; @@ -3140,7 +3174,7 @@ static int __init nvme_tcp_init_module(void) return -ENOMEM; for_each_possible_cpu(cpu) - atomic_set(&nvme_tcp_cpu_queues[cpu], 0); + nvme_tcp_cpu_queues[cpu] = 0; nvmf_register_transport(&nvme_tcp_transport); return 0; -- 2.55.0