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746fc76b82
Updates to the usual drivers (ufs, qla2xx, target, lpfc, smartpqi, mpi3mr). The main driver change that might cause issues on down the road is the conversion of some of our oldest surviving drivers to the DMA API (should only affect m68k). The only major core change is the rework of async resume; the rest are either completely trivial or for updating deprecated APIs. Signed-off-by: James E.J. Bottomley <jejb@linux.ibm.com> -----BEGIN PGP SIGNATURE----- iJwEABMIAEQWIQTnYEDbdso9F2cI+arnQslM7pishQUCYuvakyYcamFtZXMuYm90 dG9tbGV5QGhhbnNlbnBhcnRuZXJzaGlwLmNvbQAKCRDnQslM7pishfvOAP4m0N6b e3JwoBtB1c0JMKv6G4gka8suEG8p5f4khDu8wwD+LfGUCzG49Y5Ts7rByXfEiGgO krSdwsAZiV6yKg/HuPw= =Ak9L -----END PGP SIGNATURE----- Merge tag 'scsi-misc' of git://git.kernel.org/pub/scm/linux/kernel/git/jejb/scsi Pull SCSI updates from James Bottomley: "Updates to the usual drivers (ufs, qla2xx, target, lpfc, smartpqi, mpi3mr). The main driver change that might cause issues on down the road is the conversion of some of our oldest surviving drivers to the DMA API (should only affect m68k). The only major core change is the rework of async resume; the rest are either completely trivial or for updating deprecated APIs" * tag 'scsi-misc' of git://git.kernel.org/pub/scm/linux/kernel/git/jejb/scsi: (195 commits) scsi: target: Remove XDWRITEREAD emulated support scsi: megaraid: Remove the static variable initialisation scsi: ch: Do not initialise statics to 0 scsi: ufs: core: Fix spelling mistake "Cannnot" -> "Cannot" scsi: target: iscsi: Do not require target authentication scsi: target: iscsi: Allow AuthMethod=None scsi: target: iscsi: Support base64 in CHAP scsi: target: iscsi: Add support for extended CDB AHS scsi: ufs: dt-bindings: Add SC8280XP binding scsi: target: iscsi: Fix clang -Wformat warnings scsi: ufs: core: Read device property for ref clock scsi: libsas: Resume SAS host for phy reset or enable via sysfs scsi: hisi_sas: Modify v3 HW SATA completion error processing scsi: hisi_sas: Relocate DMA unmap of SMP task scsi: hisi_sas: Remove unnecessary variable to hold DMA map elements scsi: hisi_sas: Call hisi_sas_slave_configure() from slave_configure_v3_hw() scsi: mpi3mr: Delete a stray tab scsi: mpi3mr: Unlock on error path scsi: mpi3mr: Reduce VD queue depth on detecting throttling scsi: mpi3mr: Resource Based Metering ...
514 lines
13 KiB
C
514 lines
13 KiB
C
/* SPDX-License-Identifier: GPL-2.0-only */
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/* Copyright 2014 Cisco Systems, Inc. All rights reserved. */
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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 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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/*
|
|
* Entry specific space, last byte contains color
|
|
*/
|
|
u8 buf[SNIC_FW_REQ_LEN - sizeof(struct snic_io_hdr)];
|
|
|
|
/* Exchange Version Response */
|
|
struct snic_exch_ver_rsp exch_ver_cmpl;
|
|
|
|
/* Report Targets Response */
|
|
struct snic_report_tgts_cmpl rpt_tgts_cmpl;
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|
|
|
/* scsi response */
|
|
struct snic_icmnd_cmpl icmnd_cmpl;
|
|
|
|
/* task management response */
|
|
struct snic_itmf_cmpl itmf_cmpl;
|
|
|
|
/* hba reset response */
|
|
struct snic_hba_reset_cmpl reset_cmpl;
|
|
|
|
/* notify message */
|
|
struct snic_notify_msg ack;
|
|
|
|
/* async notification event */
|
|
struct snic_async_evnotify async_ev;
|
|
|
|
} u;
|
|
}; /* end of snic_fw_req structure */
|
|
|
|
/*
|
|
* Auxillary macro to verify specific snic req/cmpl structures
|
|
* to ensure that it will be aligned to 64 bit, and not using
|
|
* color bit field
|
|
*/
|
|
#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 */
|