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e84067d743
This code provides the interfaces to register remote and local ports of FC4 type 0x28 with the FC-NVMe transport and transports the requests (FC-NVMe FC link services and FC-NVMe commands IUs) to the fabric. It also provides the support for allocating h/w queues and aborting FC-NVMe FC requests. Signed-off-by: Darren Trapp <darren.trapp@cavium.com> Signed-off-by: Duane Grigsby <duane.grigsby@cavium.com> Signed-off-by: Anil Gurumurthy <anil.gurumurhty@cavium.com> Signed-off-by: Giridhar Malavali <giridhar.malavali@cavium.com> Signed-off-by: Himanshu Madhani <himanshu.madhani@cavium.com> Reviewed-by: Hannes Reinecke <hare@suse.com> Signed-off-by: Martin K. Petersen <martin.petersen@oracle.com>
132 lines
3.4 KiB
C
132 lines
3.4 KiB
C
/*
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* QLogic Fibre Channel HBA Driver
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* Copyright (c) 2003-2017 QLogic Corporation
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*
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* See LICENSE.qla2xxx for copyright and licensing details.
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*/
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#ifndef __QLA_NVME_H
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#define __QLA_NVME_H
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#include <linux/blk-mq.h>
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#include <uapi/scsi/fc/fc_fs.h>
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#include <uapi/scsi/fc/fc_els.h>
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#include <linux/nvme-fc-driver.h>
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#define NVME_ATIO_CMD_OFF 32
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#define NVME_FIRST_PACKET_CMDLEN (64 - NVME_ATIO_CMD_OFF)
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#define Q2T_NVME_NUM_TAGS 2048
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#define QLA_MAX_FC_SEGMENTS 64
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struct srb;
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struct nvme_private {
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struct srb *sp;
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struct nvmefc_ls_req *fd;
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struct work_struct ls_work;
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int comp_status;
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};
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struct nvme_rport {
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struct nvme_fc_port_info req;
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struct list_head list;
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struct fc_port *fcport;
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};
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#define COMMAND_NVME 0x88 /* Command Type FC-NVMe IOCB */
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struct cmd_nvme {
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uint8_t entry_type; /* Entry type. */
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uint8_t entry_count; /* Entry count. */
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uint8_t sys_define; /* System defined. */
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uint8_t entry_status; /* Entry Status. */
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uint32_t handle; /* System handle. */
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uint16_t nport_handle; /* N_PORT handle. */
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uint16_t timeout; /* Command timeout. */
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uint16_t dseg_count; /* Data segment count. */
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uint16_t nvme_rsp_dsd_len; /* NVMe RSP DSD length */
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uint64_t rsvd;
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uint16_t control_flags; /* Control Flags */
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#define CF_NVME_ENABLE BIT_9
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#define CF_DIF_SEG_DESCR_ENABLE BIT_3
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#define CF_DATA_SEG_DESCR_ENABLE BIT_2
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#define CF_READ_DATA BIT_1
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#define CF_WRITE_DATA BIT_0
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uint16_t nvme_cmnd_dseg_len; /* Data segment length. */
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uint32_t nvme_cmnd_dseg_address[2]; /* Data segment address. */
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uint32_t nvme_rsp_dseg_address[2]; /* Data segment address. */
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uint32_t byte_count; /* Total byte count. */
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uint8_t port_id[3]; /* PortID of destination port. */
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uint8_t vp_index;
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uint32_t nvme_data_dseg_address[2]; /* Data segment address. */
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uint32_t nvme_data_dseg_len; /* Data segment length. */
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};
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#define PT_LS4_REQUEST 0x89 /* Link Service pass-through IOCB (request) */
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struct pt_ls4_request {
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uint8_t entry_type;
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uint8_t entry_count;
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uint8_t sys_define;
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uint8_t entry_status;
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uint32_t handle;
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uint16_t status;
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uint16_t nport_handle;
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uint16_t tx_dseg_count;
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uint8_t vp_index;
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uint8_t rsvd;
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uint16_t timeout;
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uint16_t control_flags;
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#define CF_LS4_SHIFT 13
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#define CF_LS4_ORIGINATOR 0
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#define CF_LS4_RESPONDER 1
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#define CF_LS4_RESPONDER_TERM 2
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uint16_t rx_dseg_count;
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uint16_t rsvd2;
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uint32_t exchange_address;
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uint32_t rsvd3;
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uint32_t rx_byte_count;
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uint32_t tx_byte_count;
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uint32_t dseg0_address[2];
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uint32_t dseg0_len;
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uint32_t dseg1_address[2];
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uint32_t dseg1_len;
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};
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#define PT_LS4_UNSOL 0x56 /* pass-up unsolicited rec FC-NVMe request */
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struct pt_ls4_rx_unsol {
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uint8_t entry_type;
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uint8_t entry_count;
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uint16_t rsvd0;
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uint16_t rsvd1;
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uint8_t vp_index;
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uint8_t rsvd2;
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uint16_t rsvd3;
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uint16_t nport_handle;
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uint16_t frame_size;
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uint16_t rsvd4;
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uint32_t exchange_address;
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uint8_t d_id[3];
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uint8_t r_ctl;
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uint8_t s_id[3];
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uint8_t cs_ctl;
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uint8_t f_ctl[3];
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uint8_t type;
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uint16_t seq_cnt;
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uint8_t df_ctl;
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uint8_t seq_id;
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uint16_t rx_id;
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uint16_t ox_id;
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uint32_t param;
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uint32_t desc0;
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#define PT_LS4_PAYLOAD_OFFSET 0x2c
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#define PT_LS4_FIRST_PACKET_LEN 20
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uint32_t desc_len;
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uint32_t payload[3];
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};
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#endif
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