Merge tag 'scsi-misc' of git://git.kernel.org/pub/scm/linux/kernel/git/jejb/scsi
Pull SCSI updates from James Bottomley: "This is mostly updates of the usual drivers: UFS, esp_scsi, NCR5380, qla2xxx, lpfc, libsas, hisi_sas. In addition there's a set of mostly small updates to the target subsystem a set of conversions to the generic DMA API, which do have some potential for issues in the older drivers but we'll handle those as case by case fixes. A new myrs driver for the DAC960/mylex raid controllers to replace the block based DAC960 which is also being removed by Jens in this merge window. Plus the usual slew of trivial changes" [ "myrs" stands for "MYlex Raid Scsi". Obviously. Silly of me to even wonder. There's also a "myrb" driver, where the 'b' stands for 'block'. Truly, somebody has got mad naming skillz. - Linus ] * tag 'scsi-misc' of git://git.kernel.org/pub/scm/linux/kernel/git/jejb/scsi: (237 commits) scsi: myrs: Fix the processor absent message in processor_show() scsi: myrs: Fix a logical vs bitwise bug scsi: hisi_sas: Fix NULL pointer dereference scsi: myrs: fix build failure on 32 bit scsi: fnic: replace gross legacy tag hack with blk-mq hack scsi: mesh: switch to generic DMA API scsi: ips: switch to generic DMA API scsi: smartpqi: fully convert to the generic DMA API scsi: vmw_pscsi: switch to generic DMA API scsi: snic: switch to generic DMA API scsi: qla4xxx: fully convert to the generic DMA API scsi: qla2xxx: fully convert to the generic DMA API scsi: qla1280: switch to generic DMA API scsi: qedi: fully convert to the generic DMA API scsi: qedf: fully convert to the generic DMA API scsi: pm8001: switch to generic DMA API scsi: nsp32: switch to generic DMA API scsi: mvsas: fully convert to the generic DMA API scsi: mvumi: switch to generic DMA API scsi: mpt3sas: switch to generic DMA API ...
这个提交包含在:
@@ -1052,10 +1052,9 @@ do { \
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__ret; \
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})
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#define __wait_event_interruptible_lock_irq_timeout(wq_head, condition, \
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lock, timeout) \
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#define __wait_event_lock_irq_timeout(wq_head, condition, lock, timeout, state) \
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___wait_event(wq_head, ___wait_cond_timeout(condition), \
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TASK_INTERRUPTIBLE, 0, timeout, \
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state, 0, timeout, \
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spin_unlock_irq(&lock); \
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__ret = schedule_timeout(__ret); \
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spin_lock_irq(&lock));
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@@ -1089,8 +1088,19 @@ do { \
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({ \
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long __ret = timeout; \
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if (!___wait_cond_timeout(condition)) \
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__ret = __wait_event_interruptible_lock_irq_timeout( \
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wq_head, condition, lock, timeout); \
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__ret = __wait_event_lock_irq_timeout( \
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wq_head, condition, lock, timeout, \
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TASK_INTERRUPTIBLE); \
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__ret; \
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})
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#define wait_event_lock_irq_timeout(wq_head, condition, lock, timeout) \
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({ \
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long __ret = timeout; \
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if (!___wait_cond_timeout(condition)) \
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__ret = __wait_event_lock_irq_timeout( \
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wq_head, condition, lock, timeout, \
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TASK_UNINTERRUPTIBLE); \
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__ret; \
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})
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@@ -25,6 +25,7 @@ struct sock;
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#define ISCSIT_TCP_BACKLOG 256
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#define ISCSI_RX_THREAD_NAME "iscsi_trx"
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#define ISCSI_TX_THREAD_NAME "iscsi_ttx"
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#define ISCSI_IQN_LEN 224
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/* struct iscsi_node_attrib sanity values */
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#define NA_DATAOUT_TIMEOUT 3
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@@ -270,9 +271,9 @@ struct iscsi_conn_ops {
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};
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struct iscsi_sess_ops {
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char InitiatorName[224];
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char InitiatorName[ISCSI_IQN_LEN];
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char InitiatorAlias[256];
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char TargetName[224];
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char TargetName[ISCSI_IQN_LEN];
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char TargetAlias[256];
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char TargetAddress[256];
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u16 TargetPortalGroupTag; /* [0..65535] */
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@@ -855,7 +856,6 @@ struct iscsi_wwn_stat_grps {
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};
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struct iscsi_tiqn {
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#define ISCSI_IQN_LEN 224
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unsigned char tiqn[ISCSI_IQN_LEN];
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enum tiqn_state_table tiqn_state;
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int tiqn_access_count;
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@@ -33,7 +33,7 @@ struct iscsi_sess_err_stats {
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u32 cxn_timeout_errors;
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u32 pdu_format_errors;
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u32 last_sess_failure_type;
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char last_sess_fail_rem_name[224];
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char last_sess_fail_rem_name[ISCSI_IQN_LEN];
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} ____cacheline_aligned;
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/* iSCSI login failure types (sub oids) */
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@@ -56,7 +56,7 @@ struct iscsi_login_stats {
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u32 last_fail_type;
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int last_intr_fail_ip_family;
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struct sockaddr_storage last_intr_fail_sockaddr;
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char last_intr_fail_name[224];
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char last_intr_fail_name[ISCSI_IQN_LEN];
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} ____cacheline_aligned;
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/* iSCSI logout stats */
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@@ -138,7 +138,6 @@ enum se_cmd_flags_table {
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SCF_ALUA_NON_OPTIMIZED = 0x00008000,
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SCF_PASSTHROUGH_SG_TO_MEM_NOALLOC = 0x00020000,
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SCF_COMPARE_AND_WRITE = 0x00080000,
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SCF_COMPARE_AND_WRITE_POST = 0x00100000,
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SCF_PASSTHROUGH_PROT_SG_TO_MEM_NOALLOC = 0x00200000,
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SCF_ACK_KREF = 0x00400000,
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SCF_USE_CPUID = 0x00800000,
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106
include/uapi/scsi/scsi_bsg_ufs.h
普通文件
106
include/uapi/scsi/scsi_bsg_ufs.h
普通文件
@@ -0,0 +1,106 @@
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/* SPDX-License-Identifier: GPL-2.0 */
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/*
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* UFS Transport SGIO v4 BSG Message Support
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*
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* Copyright (C) 2011-2013 Samsung India Software Operations
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* Copyright (C) 2018 Western Digital Corporation
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*/
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#ifndef SCSI_BSG_UFS_H
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#define SCSI_BSG_UFS_H
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#include <linux/types.h>
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/*
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* This file intended to be included by both kernel and user space
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*/
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#define UFS_CDB_SIZE 16
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#define UPIU_TRANSACTION_UIC_CMD 0x1F
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/* uic commands are 4DW long, per UFSHCI V2.1 paragraph 5.6.1 */
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#define UIC_CMD_SIZE (sizeof(__u32) * 4)
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/**
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* struct utp_upiu_header - UPIU header structure
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* @dword_0: UPIU header DW-0
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* @dword_1: UPIU header DW-1
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* @dword_2: UPIU header DW-2
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*/
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struct utp_upiu_header {
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__be32 dword_0;
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__be32 dword_1;
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__be32 dword_2;
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};
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/**
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* struct utp_upiu_query - upiu request buffer structure for
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* query request.
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* @opcode: command to perform B-0
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* @idn: a value that indicates the particular type of data B-1
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* @index: Index to further identify data B-2
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* @selector: Index to further identify data B-3
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* @reserved_osf: spec reserved field B-4,5
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* @length: number of descriptor bytes to read/write B-6,7
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* @value: Attribute value to be written DW-5
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* @reserved: spec reserved DW-6,7
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*/
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struct utp_upiu_query {
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__u8 opcode;
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__u8 idn;
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__u8 index;
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__u8 selector;
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__be16 reserved_osf;
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__be16 length;
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__be32 value;
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__be32 reserved[2];
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};
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/**
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* struct utp_upiu_cmd - Command UPIU structure
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* @data_transfer_len: Data Transfer Length DW-3
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* @cdb: Command Descriptor Block CDB DW-4 to DW-7
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*/
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struct utp_upiu_cmd {
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__be32 exp_data_transfer_len;
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__u8 cdb[UFS_CDB_SIZE];
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};
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/**
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* struct utp_upiu_req - general upiu request structure
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* @header:UPIU header structure DW-0 to DW-2
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* @sc: fields structure for scsi command DW-3 to DW-7
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* @qr: fields structure for query request DW-3 to DW-7
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*/
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struct utp_upiu_req {
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struct utp_upiu_header header;
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union {
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struct utp_upiu_cmd sc;
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struct utp_upiu_query qr;
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struct utp_upiu_query tr;
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/* use utp_upiu_query to host the 4 dwords of uic command */
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struct utp_upiu_query uc;
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};
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};
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/* request (CDB) structure of the sg_io_v4 */
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struct ufs_bsg_request {
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__u32 msgcode;
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struct utp_upiu_req upiu_req;
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};
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/* response (request sense data) structure of the sg_io_v4 */
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struct ufs_bsg_reply {
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/*
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* The completion result. Result exists in two forms:
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* if negative, it is an -Exxx system errno value. There will
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* be no further reply information supplied.
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* else, it's the 4-byte scsi error result, with driver, host,
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* msg and status fields. The per-msgcode reply structure
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* will contain valid data.
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*/
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__u32 result;
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/* If there was reply_payload, how much was received? */
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__u32 reply_payload_rcv_len;
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struct utp_upiu_req upiu_rsp;
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};
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#endif /* UFS_BSG_H */
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