7c6ca97834
This is not a public API, so simplify the number of internal header files where important types are defined. Change-Id: I115d0497d37e3cfe399c3a5b2546d20aa4fe24b4 Signed-off-by: Ben Walker <benjamin.walker@intel.com> Reviewed-on: https://review.gerrithub.io/376249 Reviewed-by: Daniel Verkamp <daniel.verkamp@intel.com> Tested-by: SPDK Automated Test System <sys_sgsw@intel.com> Reviewed-by: Jim Harris <james.r.harris@intel.com>
393 lines
12 KiB
C
393 lines
12 KiB
C
/*-
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* BSD LICENSE
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*
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* Copyright (c) Intel Corporation.
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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*
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* * Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* * Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in
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* the documentation and/or other materials provided with the
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* distribution.
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* * Neither the name of Intel Corporation nor the names of its
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* contributors may be used to endorse or promote products derived
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* from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "spdk/stdinc.h"
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#include "nvmf_internal.h"
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#include "spdk/bdev.h"
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#include "spdk/endian.h"
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#include "spdk/io_channel.h"
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#include "spdk/nvme.h"
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#include "spdk/nvmf_spec.h"
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#include "spdk/trace.h"
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#include "spdk/scsi_spec.h"
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#include "spdk/string.h"
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#include "spdk/util.h"
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#include "spdk_internal/log.h"
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/* read command dword 12 */
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struct __attribute__((packed)) nvme_read_cdw12 {
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uint16_t nlb; /* number of logical blocks */
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uint16_t rsvd : 10;
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uint8_t prinfo : 4; /* protection information field */
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uint8_t fua : 1; /* force unit access */
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uint8_t lr : 1; /* limited retry */
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};
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bool
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spdk_nvmf_ctrlr_dsm_supported(struct spdk_nvmf_ctrlr *ctrlr)
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{
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struct spdk_nvmf_subsystem *subsystem = ctrlr->subsys;
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struct spdk_nvmf_ns *ns;
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for (ns = spdk_nvmf_subsystem_get_first_ns(subsystem); ns != NULL;
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ns = spdk_nvmf_subsystem_get_next_ns(subsystem, ns)) {
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if (ns->bdev == NULL) {
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continue;
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}
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if (!spdk_bdev_io_type_supported(ns->bdev, SPDK_BDEV_IO_TYPE_UNMAP)) {
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SPDK_DEBUGLOG(SPDK_TRACE_NVMF,
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"Subsystem %s namespace %u (%s) does not support unmap - not enabling DSM\n",
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spdk_nvmf_subsystem_get_nqn(subsystem),
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ns->id, spdk_bdev_get_name(ns->bdev));
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return false;
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}
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}
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SPDK_DEBUGLOG(SPDK_TRACE_NVMF, "All devices in Subsystem %s support unmap - enabling DSM\n",
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spdk_nvmf_subsystem_get_nqn(subsystem));
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return true;
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}
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static void
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nvmf_bdev_ctrlr_complete_cmd(struct spdk_bdev_io *bdev_io, bool success,
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void *cb_arg)
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{
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struct spdk_nvmf_request *req = cb_arg;
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struct spdk_nvme_cpl *response = &req->rsp->nvme_cpl;
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int sc, sct;
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spdk_bdev_io_get_nvme_status(bdev_io, &sc, &sct);
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response->status.sc = sc;
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response->status.sct = sct;
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spdk_nvmf_request_complete(req);
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spdk_bdev_free_io(bdev_io);
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}
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int
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spdk_nvmf_bdev_ctrlr_identify_ns(struct spdk_bdev *bdev, struct spdk_nvme_ns_data *nsdata)
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{
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uint64_t num_blocks;
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num_blocks = spdk_bdev_get_num_blocks(bdev);
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nsdata->nsze = num_blocks;
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nsdata->ncap = num_blocks;
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nsdata->nuse = num_blocks;
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nsdata->nlbaf = 0;
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nsdata->flbas.format = 0;
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nsdata->lbaf[0].lbads = spdk_u32log2(spdk_bdev_get_block_size(bdev));
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nsdata->noiob = spdk_bdev_get_optimal_io_boundary(bdev);
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return SPDK_NVMF_REQUEST_EXEC_STATUS_COMPLETE;
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}
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static int
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nvmf_bdev_ctrlr_rw_cmd(struct spdk_bdev *bdev, struct spdk_bdev_desc *desc,
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struct spdk_io_channel *ch, struct spdk_nvmf_request *req)
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{
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uint64_t lba_address;
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uint64_t blockcnt;
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uint64_t io_bytes;
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uint64_t offset;
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uint64_t llen;
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uint32_t block_size = spdk_bdev_get_block_size(bdev);
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struct spdk_nvme_cmd *cmd = &req->cmd->nvme_cmd;
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struct spdk_nvme_cpl *response = &req->rsp->nvme_cpl;
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struct nvme_read_cdw12 *cdw12 = (struct nvme_read_cdw12 *)&cmd->cdw12;
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blockcnt = spdk_bdev_get_num_blocks(bdev);
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lba_address = cmd->cdw11;
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lba_address = (lba_address << 32) + cmd->cdw10;
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offset = lba_address * block_size;
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llen = cdw12->nlb + 1;
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if (lba_address >= blockcnt || llen > blockcnt || lba_address > (blockcnt - llen)) {
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SPDK_ERRLOG("end of media\n");
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response->status.sc = SPDK_NVME_SC_LBA_OUT_OF_RANGE;
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return SPDK_NVMF_REQUEST_EXEC_STATUS_COMPLETE;
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}
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io_bytes = llen * block_size;
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if (io_bytes > req->length) {
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SPDK_ERRLOG("Read/Write NLB > SGL length\n");
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response->status.sc = SPDK_NVME_SC_DATA_SGL_LENGTH_INVALID;
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return SPDK_NVMF_REQUEST_EXEC_STATUS_COMPLETE;
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}
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if (cmd->opc == SPDK_NVME_OPC_READ) {
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spdk_trace_record(TRACE_NVMF_LIB_READ_START, 0, 0, (uint64_t)req, 0);
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if (spdk_bdev_read(desc, ch, req->data, offset, req->length, nvmf_bdev_ctrlr_complete_cmd,
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req)) {
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response->status.sc = SPDK_NVME_SC_INTERNAL_DEVICE_ERROR;
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return SPDK_NVMF_REQUEST_EXEC_STATUS_COMPLETE;
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}
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} else {
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spdk_trace_record(TRACE_NVMF_LIB_WRITE_START, 0, 0, (uint64_t)req, 0);
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if (spdk_bdev_write(desc, ch, req->data, offset, req->length, nvmf_bdev_ctrlr_complete_cmd,
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req)) {
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response->status.sc = SPDK_NVME_SC_INTERNAL_DEVICE_ERROR;
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return SPDK_NVMF_REQUEST_EXEC_STATUS_COMPLETE;
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}
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}
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return SPDK_NVMF_REQUEST_EXEC_STATUS_ASYNCHRONOUS;
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}
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static int
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nvmf_bdev_ctrlr_flush_cmd(struct spdk_bdev *bdev, struct spdk_bdev_desc *desc,
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struct spdk_io_channel *ch, struct spdk_nvmf_request *req)
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{
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uint64_t nbytes;
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struct spdk_nvme_cpl *response = &req->rsp->nvme_cpl;
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nbytes = spdk_bdev_get_num_blocks(bdev) * spdk_bdev_get_block_size(bdev);
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if (spdk_bdev_flush(desc, ch, 0, nbytes, nvmf_bdev_ctrlr_complete_cmd, req)) {
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response->status.sc = SPDK_NVME_SC_INTERNAL_DEVICE_ERROR;
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return SPDK_NVMF_REQUEST_EXEC_STATUS_COMPLETE;
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}
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return SPDK_NVMF_REQUEST_EXEC_STATUS_ASYNCHRONOUS;
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}
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struct nvmf_virtual_ctrlr_unmap {
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struct spdk_nvmf_request *req;
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uint32_t count;
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};
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static void
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nvmf_virtual_ctrlr_dsm_cpl(struct spdk_bdev_io *bdev_io, bool success,
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void *cb_arg)
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{
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struct nvmf_virtual_ctrlr_unmap *unmap_ctx = cb_arg;
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struct spdk_nvmf_request *req = unmap_ctx->req;
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struct spdk_nvme_cpl *response = &req->rsp->nvme_cpl;
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int sc, sct;
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unmap_ctx->count--;
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if (response->status.sct == SPDK_NVME_SCT_GENERIC &&
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response->status.sc == SPDK_NVME_SC_SUCCESS) {
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spdk_bdev_io_get_nvme_status(bdev_io, &sc, &sct);
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response->status.sc = sc;
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response->status.sct = sct;
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}
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if (unmap_ctx->count == 0) {
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spdk_nvmf_request_complete(req);
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spdk_bdev_free_io(bdev_io);
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free(unmap_ctx);
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}
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}
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static int
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nvmf_bdev_ctrlr_dsm_cmd(struct spdk_bdev *bdev, struct spdk_bdev_desc *desc,
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struct spdk_io_channel *ch, struct spdk_nvmf_request *req)
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{
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uint32_t attribute;
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uint16_t nr, i;
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struct spdk_nvme_cmd *cmd = &req->cmd->nvme_cmd;
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struct spdk_nvme_cpl *response = &req->rsp->nvme_cpl;
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nr = ((cmd->cdw10 & 0x000000ff) + 1);
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if (nr * sizeof(struct spdk_nvme_dsm_range) > req->length) {
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SPDK_ERRLOG("Dataset Management number of ranges > SGL length\n");
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response->status.sc = SPDK_NVME_SC_DATA_SGL_LENGTH_INVALID;
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return SPDK_NVMF_REQUEST_EXEC_STATUS_COMPLETE;
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}
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attribute = cmd->cdw11 & 0x00000007;
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if (attribute & SPDK_NVME_DSM_ATTR_DEALLOCATE) {
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struct nvmf_virtual_ctrlr_unmap *unmap_ctx;
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struct spdk_nvme_dsm_range *dsm_range;
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uint64_t lba;
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uint32_t lba_count;
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uint32_t block_size = spdk_bdev_get_block_size(bdev);
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unmap_ctx = calloc(1, sizeof(*unmap_ctx));
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if (!unmap_ctx) {
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response->status.sc = SPDK_NVME_SC_INTERNAL_DEVICE_ERROR;
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return SPDK_NVMF_REQUEST_EXEC_STATUS_COMPLETE;
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}
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unmap_ctx->req = req;
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response->status.sct = SPDK_NVME_SCT_GENERIC;
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response->status.sc = SPDK_NVME_SC_SUCCESS;
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dsm_range = (struct spdk_nvme_dsm_range *)req->data;
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for (i = 0; i < nr; i++) {
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lba = dsm_range[i].starting_lba;
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lba_count = dsm_range[i].length;
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unmap_ctx->count++;
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if (spdk_bdev_unmap(desc, ch, lba * block_size, lba_count * block_size,
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nvmf_virtual_ctrlr_dsm_cpl, unmap_ctx)) {
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response->status.sc = SPDK_NVME_SC_INTERNAL_DEVICE_ERROR;
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unmap_ctx->count--;
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/* We can't return here - we may have to wait for any other
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* unmaps already sent to complete */
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break;
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}
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}
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if (unmap_ctx->count == 0) {
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free(unmap_ctx);
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return SPDK_NVMF_REQUEST_EXEC_STATUS_COMPLETE;
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}
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return SPDK_NVMF_REQUEST_EXEC_STATUS_ASYNCHRONOUS;
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}
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response->status.sc = SPDK_NVME_SC_INTERNAL_DEVICE_ERROR;
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return SPDK_NVMF_REQUEST_EXEC_STATUS_COMPLETE;
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}
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static int
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nvmf_bdev_ctrlr_nvme_passthru_io(struct spdk_bdev *bdev, struct spdk_bdev_desc *desc,
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struct spdk_io_channel *ch, struct spdk_nvmf_request *req)
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{
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if (spdk_bdev_nvme_io_passthru(desc, ch, &req->cmd->nvme_cmd, req->data, req->length,
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nvmf_bdev_ctrlr_complete_cmd, req)) {
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req->rsp->nvme_cpl.status.sct = SPDK_NVME_SCT_GENERIC;
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req->rsp->nvme_cpl.status.sc = SPDK_NVME_SC_INVALID_OPCODE;
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return SPDK_NVMF_REQUEST_EXEC_STATUS_COMPLETE;
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}
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return SPDK_NVMF_REQUEST_EXEC_STATUS_ASYNCHRONOUS;
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}
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int
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spdk_nvmf_ctrlr_process_io_cmd(struct spdk_nvmf_request *req)
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{
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uint32_t nsid;
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struct spdk_nvmf_ns *ns;
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struct spdk_bdev *bdev;
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struct spdk_bdev_desc *desc;
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struct spdk_io_channel *ch;
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struct spdk_nvmf_subsystem *subsystem = req->qpair->ctrlr->subsys;
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struct spdk_nvme_cmd *cmd = &req->cmd->nvme_cmd;
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struct spdk_nvme_cpl *response = &req->rsp->nvme_cpl;
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/* pre-set response details for this command */
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response->status.sc = SPDK_NVME_SC_SUCCESS;
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nsid = cmd->nsid;
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ns = _spdk_nvmf_subsystem_get_ns(subsystem, nsid);
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if (ns == NULL || ns->bdev == NULL) {
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SPDK_ERRLOG("Unsuccessful query for nsid %u\n", cmd->nsid);
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response->status.sc = SPDK_NVME_SC_INVALID_NAMESPACE_OR_FORMAT;
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return SPDK_NVMF_REQUEST_EXEC_STATUS_COMPLETE;
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}
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bdev = ns->bdev;
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desc = ns->desc;
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ch = ns->ch;
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switch (cmd->opc) {
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case SPDK_NVME_OPC_READ:
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case SPDK_NVME_OPC_WRITE:
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return nvmf_bdev_ctrlr_rw_cmd(bdev, desc, ch, req);
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case SPDK_NVME_OPC_FLUSH:
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return nvmf_bdev_ctrlr_flush_cmd(bdev, desc, ch, req);
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case SPDK_NVME_OPC_DATASET_MANAGEMENT:
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return nvmf_bdev_ctrlr_dsm_cmd(bdev, desc, ch, req);
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default:
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return nvmf_bdev_ctrlr_nvme_passthru_io(bdev, desc, ch, req);
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}
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}
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static int
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spdk_nvmf_ns_bdev_attach(struct spdk_nvmf_ns *ns)
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{
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if (ns->bdev == NULL) {
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return 0;
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}
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ns->ch = spdk_bdev_get_io_channel(ns->desc);
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if (ns->ch == NULL) {
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SPDK_ERRLOG("io_channel allocation failed\n");
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return -1;
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}
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return 0;
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}
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static void
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spdk_nvmf_ns_bdev_detach(struct spdk_nvmf_ns *ns)
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{
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if (ns->bdev == NULL) {
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return;
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}
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if (ns->ch) {
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spdk_put_io_channel(ns->ch);
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ns->ch = NULL;
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}
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if (ns->desc) {
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spdk_bdev_close(ns->desc);
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ns->desc = NULL;
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}
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ns->bdev = NULL;
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}
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int
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spdk_nvmf_subsystem_bdev_attach(struct spdk_nvmf_subsystem *subsystem)
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{
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struct spdk_nvmf_ns *ns;
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for (ns = spdk_nvmf_subsystem_get_first_ns(subsystem); ns != NULL;
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ns = spdk_nvmf_subsystem_get_next_ns(subsystem, ns)) {
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if (spdk_nvmf_ns_bdev_attach(ns)) {
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return -1;
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}
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}
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return 0;
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}
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void
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spdk_nvmf_subsystem_bdev_detach(struct spdk_nvmf_subsystem *subsystem)
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{
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struct spdk_nvmf_ns *ns;
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for (ns = spdk_nvmf_subsystem_get_first_ns(subsystem); ns != NULL;
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ns = spdk_nvmf_subsystem_get_next_ns(subsystem, ns)) {
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spdk_nvmf_ns_bdev_detach(ns);
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}
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subsystem->max_nsid = 0;
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}
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