mirror of
https://github.com/AuxXxilium/linux_dsm_epyc7002.git
synced 2024-12-24 12:55:47 +07:00
075892d7a2
firmare -> firmware Signed-off-by: Julia Lawall <Julia.Lawall@lip6.fr> Signed-off-by: Martin K. Petersen <martin.petersen@oracle.com>
528 lines
14 KiB
C
528 lines
14 KiB
C
/*
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* Copyright 2014 Cisco Systems, Inc. All rights reserved.
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*
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* This program is free software; you may redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; version 2 of the License.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
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* BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
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* ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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* SOFTWARE.
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*/
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#ifndef __SNIC_FWINT_H
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#define __SNIC_FWINT_H
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#define SNIC_CDB_LEN 32 /* SCSI CDB size 32, can be used for 16 bytes */
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#define LUN_ADDR_LEN 8
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/*
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* Command entry type
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*/
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enum snic_io_type {
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/*
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* Initiator request types
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*/
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SNIC_REQ_REPORT_TGTS = 0x2, /* Report Targets */
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SNIC_REQ_ICMND, /* Initiator command for SCSI IO */
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SNIC_REQ_ITMF, /* Initiator command for Task Mgmt */
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SNIC_REQ_HBA_RESET, /* SNIC Reset */
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SNIC_REQ_EXCH_VER, /* Exchange Version Information */
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SNIC_REQ_TGT_INFO, /* Backend/Target Information */
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SNIC_REQ_BOOT_LUNS,
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/*
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* Response type
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*/
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SNIC_RSP_REPORT_TGTS_CMPL = 0x12,/* Report Targets Completion */
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SNIC_RSP_ICMND_CMPL, /* SCSI IO Completion */
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SNIC_RSP_ITMF_CMPL, /* Task Management Completion */
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SNIC_RSP_HBA_RESET_CMPL, /* SNIC Reset Completion */
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SNIC_RSP_EXCH_VER_CMPL, /* Exchange Version Completion*/
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SNIC_RSP_BOOT_LUNS_CMPL,
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/*
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* Misc Request types
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*/
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SNIC_MSG_ACK = 0x80, /* Ack: snic_notify_msg */
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SNIC_MSG_ASYNC_EVNOTIFY, /* Asynchronous Event Notification */
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}; /* end of enum snic_io_type */
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/*
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* Header status codes from firmware
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*/
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enum snic_io_status {
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SNIC_STAT_IO_SUCCESS = 0, /* request was successful */
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/*
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* If a request to the fw is rejected, the original request header
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* will be returned with the status set to one of the following:
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*/
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SNIC_STAT_INVALID_HDR, /* header contains invalid data */
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SNIC_STAT_OUT_OF_RES, /* out of resources to complete request */
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SNIC_STAT_INVALID_PARM, /* some parameter in request is not valid */
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SNIC_STAT_REQ_NOT_SUP, /* req type is not supported */
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SNIC_STAT_IO_NOT_FOUND, /* requested IO was not found */
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/*
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* Once a request is processed, the fw will usually return
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* a cmpl message type. In cases where errors occurred,
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* the header status would be filled in with one of the following:
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*/
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SNIC_STAT_ABORTED, /* req was aborted */
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SNIC_STAT_TIMEOUT, /* req was timed out */
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SNIC_STAT_SGL_INVALID, /* req was aborted due to sgl error */
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SNIC_STAT_DATA_CNT_MISMATCH, /*recv/sent more/less data than expec */
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SNIC_STAT_FW_ERR, /* req was terminated due to fw error */
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SNIC_STAT_ITMF_REJECT, /* itmf req was rejected by target */
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SNIC_STAT_ITMF_FAIL, /* itmf req was failed */
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SNIC_STAT_ITMF_INCORRECT_LUN, /* itmf req has incorrect LUN id*/
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SNIC_STAT_CMND_REJECT, /* req was invalid and rejected */
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SNIC_STAT_DEV_OFFLINE, /* req sent to offline device */
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SNIC_STAT_NO_BOOTLUN,
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SNIC_STAT_SCSI_ERR, /* SCSI error returned by Target. */
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SNIC_STAT_NOT_READY, /* sNIC Subsystem is not ready */
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SNIC_STAT_FATAL_ERROR, /* sNIC is in unrecoverable state */
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}; /* end of enum snic_io_status */
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/*
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* snic_io_hdr : host <--> firmware
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*
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* for any other message that will be queued to firmware should
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* have the following request header
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*/
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struct snic_io_hdr {
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__le32 hid;
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__le32 cmnd_id; /* tag here */
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ulong init_ctx; /* initiator context */
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u8 type; /* request/response type */
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u8 status; /* header status entry */
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u8 protocol; /* Protocol specific, may needed for RoCE*/
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u8 flags;
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__le16 sg_cnt;
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u16 resvd;
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};
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/* auxillary funciton for encoding the snic_io_hdr */
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static inline void
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snic_io_hdr_enc(struct snic_io_hdr *hdr, u8 typ, u8 status, u32 id, u32 hid,
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u16 sg_cnt, ulong ctx)
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{
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hdr->type = typ;
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hdr->status = status;
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hdr->protocol = 0;
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hdr->hid = cpu_to_le32(hid);
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hdr->cmnd_id = cpu_to_le32(id);
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hdr->sg_cnt = cpu_to_le16(sg_cnt);
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hdr->init_ctx = ctx;
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hdr->flags = 0;
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}
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/* auxillary funciton for decoding the snic_io_hdr */
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static inline void
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snic_io_hdr_dec(struct snic_io_hdr *hdr, u8 *typ, u8 *stat, u32 *cmnd_id,
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u32 *hid, ulong *ctx)
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{
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*typ = hdr->type;
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*stat = hdr->status;
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*hid = le32_to_cpu(hdr->hid);
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*cmnd_id = le32_to_cpu(hdr->cmnd_id);
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*ctx = hdr->init_ctx;
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}
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/*
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* snic_host_info: host -> firmware
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*
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* Used for sending host information to firmware, and request fw version
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*/
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struct snic_exch_ver_req {
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__le32 drvr_ver; /* for debugging, when fw dump captured */
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__le32 os_type; /* for OS specific features */
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};
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/*
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* os_type flags
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* Bit 0-7 : OS information
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* Bit 8-31: Feature/Capability Information
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*/
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#define SNIC_OS_LINUX 0x1
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#define SNIC_OS_WIN 0x2
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#define SNIC_OS_ESX 0x3
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/*
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* HBA Capabilities
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* Bit 1: Reserved.
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* Bit 2: Dynamic Discovery of LUNs.
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* Bit 3: Async event notifications on on tgt online/offline events.
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* Bit 4: IO timeout support in FW.
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* Bit 5-31: Reserved.
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*/
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#define SNIC_HBA_CAP_DDL 0x02 /* Supports Dynamic Discovery of LUNs */
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#define SNIC_HBA_CAP_AEN 0x04 /* Supports Async Event Noitifcation */
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#define SNIC_HBA_CAP_TMO 0x08 /* Supports IO timeout in FW */
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/*
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* snic_exch_ver_rsp : firmware -> host
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*
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* Used by firmware to send response to version request
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*/
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struct snic_exch_ver_rsp {
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__le32 version;
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__le32 hid;
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__le32 max_concur_ios; /* max concurrent ios */
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__le32 max_sgs_per_cmd; /* max sgls per IO */
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__le32 max_io_sz; /* max io size supported */
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__le32 hba_cap; /* hba capabilities */
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__le32 max_tgts; /* max tgts supported */
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__le16 io_timeout; /* FW extended timeout */
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u16 rsvd;
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};
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/*
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* snic_report_tgts : host -> firmware request
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*
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* Used by the host to request list of targets
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*/
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struct snic_report_tgts {
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__le16 sg_cnt;
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__le16 flags; /* specific flags from fw */
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u8 _resvd[4];
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__le64 sg_addr; /* Points to SGL */
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__le64 sense_addr;
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};
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enum snic_type {
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SNIC_NONE = 0x0,
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SNIC_DAS,
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SNIC_SAN,
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};
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/* Report Target Response */
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enum snic_tgt_type {
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SNIC_TGT_NONE = 0x0,
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SNIC_TGT_DAS, /* DAS Target */
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SNIC_TGT_SAN, /* SAN Target */
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};
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/* target id format */
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struct snic_tgt_id {
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__le32 tgt_id; /* target id */
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__le16 tgt_type; /* tgt type */
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__le16 vnic_id; /* corresponding vnic id */
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};
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/*
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* snic_report_tgts_cmpl : firmware -> host response
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*
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* Used by firmware to send response to Report Targets request
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*/
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struct snic_report_tgts_cmpl {
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__le32 tgt_cnt; /* Number of Targets accessible */
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u32 _resvd;
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};
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/*
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* Command flags
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*
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* Bit 0: Read flags
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* Bit 1: Write flag
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* Bit 2: ESGL - sg/esg array contains extended sg
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* ESGE - is a host buffer contains sg elements
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* Bit 3-4: Task Attributes
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* 00b - simple
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* 01b - head of queue
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* 10b - ordered
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* Bit 5-7: Priority - future use
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* Bit 8-15: Reserved
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*/
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#define SNIC_ICMND_WR 0x01 /* write command */
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#define SNIC_ICMND_RD 0x02 /* read command */
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#define SNIC_ICMND_ESGL 0x04 /* SGE/ESGE array contains valid data*/
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/*
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* Priority/Task Attribute settings
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*/
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#define SNIC_ICMND_TSK_SHIFT 2 /* task attr starts at bit 2 */
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#define SNIC_ICMND_TSK_MASK(x) ((x>>SNIC_ICMND_TSK_SHIFT) & ~(0xffff))
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#define SNIC_ICMND_TSK_SIMPLE 0 /* simple task attr */
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#define SNIC_ICMND_TSK_HEAD_OF_QUEUE 1 /* head of qeuue task attr */
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#define SNIC_ICMND_TSK_ORDERED 2 /* ordered task attr */
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#define SNIC_ICMND_PRI_SHIFT 5 /* prio val starts at bit 5 */
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/*
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* snic_icmnd : host-> firmware request
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*
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* used for sending out an initiator SCSI 16/32-byte command
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*/
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struct snic_icmnd {
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__le16 sg_cnt; /* Number of SG Elements */
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__le16 flags; /* flags */
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__le32 sense_len; /* Sense buffer length */
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__le64 tgt_id; /* Destination Target ID */
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__le64 lun_id; /* Destination LUN ID */
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u8 cdb_len;
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u8 _resvd;
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__le16 time_out; /* ms time for Res allocations fw to handle io*/
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__le32 data_len; /* Total number of bytes to be transferred */
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u8 cdb[SNIC_CDB_LEN];
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__le64 sg_addr; /* Points to SG List */
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__le64 sense_addr; /* Sense buffer address */
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};
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/* Response flags */
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/* Bit 0: Under run
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* Bit 1: Over Run
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* Bit 2-7: Reserved
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*/
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#define SNIC_ICMND_CMPL_UNDR_RUN 0x01 /* resid under and valid */
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#define SNIC_ICMND_CMPL_OVER_RUN 0x02 /* resid over and valid */
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/*
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* snic_icmnd_cmpl: firmware -> host response
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*
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* Used for sending the host a response to an icmnd (initiator command)
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*/
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struct snic_icmnd_cmpl {
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u8 scsi_status; /* value as per SAM */
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u8 flags;
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__le16 sense_len; /* Sense Length */
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__le32 resid; /* Residue : # bytes under or over run */
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};
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/*
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* snic_itmf: host->firmware request
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*
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* used for requesting the firmware to abort a request and/or send out
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* a task management function
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*
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* the req_id field is valid in case of abort task and clear task
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*/
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struct snic_itmf {
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u8 tm_type; /* SCSI Task Management request */
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u8 resvd;
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__le16 flags; /* flags */
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__le32 req_id; /* Command id of snic req to be aborted */
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__le64 tgt_id; /* Target ID */
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__le64 lun_id; /* Destination LUN ID */
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__le16 timeout; /* in sec */
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};
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/*
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* Task Management Request
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*/
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enum snic_itmf_tm_type {
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SNIC_ITMF_ABTS_TASK = 0x01, /* Abort Task */
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SNIC_ITMF_ABTS_TASK_SET, /* Abort Task Set */
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SNIC_ITMF_CLR_TASK, /* Clear Task */
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SNIC_ITMF_CLR_TASKSET, /* Clear Task Set */
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SNIC_ITMF_LUN_RESET, /* Lun Reset */
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SNIC_ITMF_ABTS_TASK_TERM, /* Supported for SAN Targets */
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};
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/*
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* snic_itmf_cmpl: firmware -> host resposne
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*
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* used for sending the host a response for a itmf request
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*/
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struct snic_itmf_cmpl {
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__le32 nterminated; /* # IOs terminated as a result of tmf */
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u8 flags; /* flags */
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u8 _resvd[3];
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};
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/*
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* itmfl_cmpl flags
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* Bit 0 : 1 - Num terminated field valid
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* Bit 1 - 7 : Reserved
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*/
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#define SNIC_NUM_TERM_VALID 0x01 /* Number of IOs terminated */
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/*
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* snic_hba_reset: host -> firmware request
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*
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* used for requesting firmware to reset snic
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*/
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struct snic_hba_reset {
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__le16 flags; /* flags */
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u8 _resvd[6];
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};
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/*
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* snic_hba_reset_cmpl: firmware -> host response
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*
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* Used by firmware to respond to the host's hba reset request
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*/
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struct snic_hba_reset_cmpl {
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u8 flags; /* flags : more info needs to be added*/
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u8 _resvd[7];
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};
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/*
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* snic_notify_msg: firmware -> host response
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*
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* Used by firmware to notify host of the last work queue entry received
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*/
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struct snic_notify_msg {
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__le32 wqe_num; /* wq entry number */
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u8 flags; /* flags, macros */
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u8 _resvd[4];
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};
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#define SNIC_EVDATA_LEN 24 /* in bytes */
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/* snic_async_evnotify: firmware -> host notification
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*
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* Used by firmware to notify the host about configuration/state changes
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*/
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struct snic_async_evnotify {
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u8 FLS_EVENT_DESC;
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u8 vnic; /* vnic id */
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u8 _resvd[2];
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__le32 ev_id; /* Event ID */
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u8 ev_data[SNIC_EVDATA_LEN]; /* Event Data */
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u8 _resvd2[4];
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};
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/* async event flags */
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enum snic_ev_type {
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SNIC_EV_TGT_OFFLINE = 0x01, /* Target Offline, PL contains TGT ID */
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SNIC_EV_TGT_ONLINE, /* Target Online, PL contains TGT ID */
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SNIC_EV_LUN_OFFLINE, /* LUN Offline, PL contains LUN ID */
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SNIC_EV_LUN_ONLINE, /* LUN Online, PL contains LUN ID */
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SNIC_EV_CONF_CHG, /* Dev Config/Attr Change Event */
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SNIC_EV_TGT_ADDED, /* Target Added */
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SNIC_EV_TGT_DELTD, /* Target Del'd, PL contains TGT ID */
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SNIC_EV_LUN_ADDED, /* LUN Added */
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SNIC_EV_LUN_DELTD, /* LUN Del'd, PL cont. TGT & LUN ID */
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SNIC_EV_DISC_CMPL = 0x10, /* Discovery Completed Event */
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};
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#define SNIC_HOST_REQ_LEN 128 /*Exp length of host req, wq desc sz*/
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/* Payload 88 bytes = 128 - 24 - 16 */
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#define SNIC_HOST_REQ_PAYLOAD ((int)(SNIC_HOST_REQ_LEN - \
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sizeof(struct snic_io_hdr) - \
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(2 * sizeof(u64)) - sizeof(ulong)))
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/*
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* snic_host_req: host -> firmware request
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*
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* Basic structure for all snic requests that are sent from the host to
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* firmware. They are 128 bytes in size.
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*/
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struct snic_host_req {
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u64 ctrl_data[2]; /*16 bytes - Control Data */
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struct snic_io_hdr hdr;
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union {
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/*
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* Entry specific space, last byte contains color
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*/
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u8 buf[SNIC_HOST_REQ_PAYLOAD];
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/*
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* Exchange firmware version
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*/
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struct snic_exch_ver_req exch_ver;
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/* report targets */
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struct snic_report_tgts rpt_tgts;
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/* io request */
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struct snic_icmnd icmnd;
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/* task management request */
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struct snic_itmf itmf;
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/* hba reset */
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struct snic_hba_reset reset;
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} u;
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ulong req_pa;
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}; /* end of snic_host_req structure */
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#define SNIC_FW_REQ_LEN 64 /* Expected length of fw req */
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struct snic_fw_req {
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struct snic_io_hdr hdr;
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union {
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/*
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* Entry specific space, last byte contains color
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*/
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u8 buf[SNIC_FW_REQ_LEN - sizeof(struct snic_io_hdr)];
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/* Exchange Version Response */
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struct snic_exch_ver_rsp exch_ver_cmpl;
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/* Report Targets Response */
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struct snic_report_tgts_cmpl rpt_tgts_cmpl;
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/* scsi response */
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struct snic_icmnd_cmpl icmnd_cmpl;
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/* task management response */
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struct snic_itmf_cmpl itmf_cmpl;
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/* hba reset response */
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struct snic_hba_reset_cmpl reset_cmpl;
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/* notify message */
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struct snic_notify_msg ack;
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/* async notification event */
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struct snic_async_evnotify async_ev;
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} u;
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}; /* end of snic_fw_req structure */
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/*
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* Auxillary macro to verify specific snic req/cmpl structures
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* to ensure that it will be aligned to 64 bit, and not using
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* color bit field
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*/
|
|
#define VERIFY_REQ_SZ(x)
|
|
#define VERIFY_CMPL_SZ(x)
|
|
|
|
/*
|
|
* Access routines to encode and decode the color bit, which is the most
|
|
* significant bit of the structure.
|
|
*/
|
|
static inline void
|
|
snic_color_enc(struct snic_fw_req *req, u8 color)
|
|
{
|
|
u8 *c = ((u8 *) req) + sizeof(struct snic_fw_req) - 1;
|
|
|
|
if (color)
|
|
*c |= 0x80;
|
|
else
|
|
*c &= ~0x80;
|
|
}
|
|
|
|
static inline void
|
|
snic_color_dec(struct snic_fw_req *req, u8 *color)
|
|
{
|
|
u8 *c = ((u8 *) req) + sizeof(struct snic_fw_req) - 1;
|
|
|
|
*color = *c >> 7;
|
|
|
|
/* Make sure color bit is read from desc *before* other fields
|
|
* are read from desc. Hardware guarantees color bit is last
|
|
* bit (byte) written. Adding the rmb() prevents the compiler
|
|
* and/or CPU from reordering the reads which would potentially
|
|
* result in reading stale values.
|
|
*/
|
|
rmb();
|
|
}
|
|
#endif /* end of __SNIC_FWINT_H */
|