freebsd-nq/sys/dev/mps/mpsvar.h
Kenneth D. Merry be4aa869c1 Bring in LSI's latest mps(4) 6Gb SAS and WarpDrive driver, version
14.00.00.01-fbsd.

Their description of the changes is as follows:

1.	Copyright contents has been changed in all respective .c
	and .h files

2.	Support for WRITE12 and READ12 for direct-io (warpdrive only)
	has been added.

3.      Driver has added checks to see if Drive has READ_CAP_16
	support before sending it down to the device.
	If SPC3_SID_PROTECT flag is set in the inquiry data, the
	device supports protection information, and must support
	the 16 byte read capacity command, otherwise continue without
	sending read cap 16. This will optimize driver performance,
	since it will not send READ_CAP_16 to the drive which does
	not have support of READ_CAP_16.

4.      With new approach, "MPTIOCTL_RESET_ADAPTER" IOCTL will not
	use DELAY() which is busy loop implementation.
	It will use <msleep> (Better way to sleep without busy
	loop). Also from the HBA reset code path and some other
	places, DELAY() is replaced with msleep() or "pause()",
	which is based on sleep/wakeup style calls.  Driver use
	msleep()/pause() instead of DELAY based on CAN_SLEEP/NO_SLEEP
	flags to avoid busy loop which is not required all the
	time.e.a

	a. While driver is getting loaded, driver calls most of the
	   commands with NO_SLEEP.
	b. When Driver is functional and it needs Reinit of HBA,
	   CAN_SLEEP flag is used.

5.	<mpslsi> driver is not Endian safe. It will not work on Big
	Endian machines	like Sparc and PowerPC platforms because it
	assumes it is running on a Little Endian machine.

	Driver code is modified such way that it does not assume CPU
	arch is Little Endian.
	a. All places where Driver interacts from HBA to Host, it
	   converts Little Endian format to CPU format.
	b. All places where Driver interacts from Host to HBA, it
	   converts CPU format to Little Endian.

6.	Findout memory leaks in FreeBSD Driver and resolve those,
	such as memory leak in targ's luns creation/deletion.
	Also added additional checks to see memory allocation
	success/fail.

7.	Add loginfo prints as debug message, i.e. When FW sends any
	loginfo, Driver should print those as debug message.
	This will help for debugging purpose.

8.	There is possibility to get config request timeout. Current
	driver is able to detect config request timetout, but it does
	not do anything on config_request timeout.  Driver should
	call mps_reinit() if any request_poll (which is called as
	part of config_request) is time out.

9.	cdb length check is required for 32 byte CDB. Add correct mpi
	control value for 32 bit CDB as below while submitting SCSI IO
	Request to controller.
	mpi_control |= 4 << MPI2_SCSIIO_CONTROL_ADDCDBLEN_SHIFT;

10.	Check the actual status of Message unit reset
	(mps_message_unit_reset).Previously FreeBSD Driver just writes
	MPI2_FUNCTION_IOC_MESSAGE_UNIT_RESET and never check the ack
	(it just wait for 50 millisecond).  So, Driver now check the
	status of "MPI2_FUNCTION_IOC_MESSAGE_UNIT_RESET" after writing
	it to the FW.

	Now it also checking for whether doorbell ack uses msleep with
	proper sleep flags, instead of <DELAY>.

11.	Previously CAM does not detect Multi-Lun Devices. In order to
	detect Multi-Lun Devices by CAM the driver needs following change
	set:
	a. There is "max_lun" field which Driver need to set based on
	   hw/fw support. Currently LSI released driver does not set
	   this field.
	b. Default of "max_lun" should not be 0 in OS, but it is
	   currently set to 0 in CAM layer.
	c. Export max_lun capacity to 255

12.	Driver will not reset target info after port enable complete and
	also do Device removal when Device remove from FW.  The detail
	description is as follows
	a. When Driver receive WD PD add events, it will add all
	   information in driver local data structure.
	b. Only for WD, we have below checks after port enable
	   completes, where driver clear off all information retrieved
	   at #1.
	if ((sc->WD_available &&
             (sc->WD_hide_expose == MPS_WD_HIDE_ALWAYS)) ||
             (sc->WD_valid_config && (sc->WD_hide_expose ==
                            MPS_WD_HIDE_IF_VOLUME)) {
		  // clear off target data structure.
	}
	It is mainly not to attach PDs to OS.

	FreeBSD does bus rescan as older Parallel scsi style. So Driver
	needs to handle which Drive is visible to OS.  That is a reason
	we have to clear off targ information for PDs.

	Again, above logic was implemented long time ago. Similar concept
	we have for non-wd also. For that, LSI have introduced different
	logic to hide PDs.

	Eventually, because of above gap, when Phy goes offline, we
	observe below failure. That is what Driver is not doing complete
	removal of device with FW. (which was pointed by Scott)
	Apr  5 02:39:24 Freebsd7 kernel: mpslsi0: mpssas_prepare_remove
	Apr  5 02:39:24 Freebsd7 kernel: mpssas_prepare_remove 497 : invalid handle 0xe

	Now Driver will not reset target info after port enable complete
	and also will do Device removal when Device remove from FW.

13.	Returning "CAM_SEL_TIMEOUT" instead of "CAM_TID_INVALID"
	error code on request to the Target IDs that have no devices
	conected at that moment.  As if "CAM_TID_INVALID" error code
	is returned to the CAM Layaer then it results in a huge chain
	of errors in verbose kernel messages on boot and every
	hot-plug event.

Submitted by:	Sreekanth Reddy <Sreekanth.Reddy@lsi.com>
MFC after:	3 days
2012-06-28 03:48:54 +00:00

783 lines
23 KiB
C

/*-
* Copyright (c) 2009 Yahoo! Inc.
* Copyright (c) 2011, 2012 LSI Corp.
* All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
* 1. Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
*
* THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
* ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
* SUCH DAMAGE.
*
* LSI MPT-Fusion Host Adapter FreeBSD
*
* $FreeBSD$
*/
#ifndef _MPSVAR_H
#define _MPSVAR_H
#define MPS_DRIVER_VERSION "14.00.00.01-fbsd"
#define MPS_DB_MAX_WAIT 2500
#define MPS_REQ_FRAMES 1024
#define MPS_EVT_REPLY_FRAMES 32
#define MPS_REPLY_FRAMES MPS_REQ_FRAMES
#define MPS_CHAIN_FRAMES 2048
#define MPS_SENSE_LEN SSD_FULL_SIZE
#define MPS_MSI_COUNT 1
#define MPS_SGE64_SIZE 12
#define MPS_SGE32_SIZE 8
#define MPS_SGC_SIZE 8
#define CAN_SLEEP 1
#define NO_SLEEP 0
#define MPS_PERIODIC_DELAY 1 /* 1 second heartbeat/watchdog check */
#define MPS_SCSI_RI_INVALID_FRAME (0x00000002)
#define MPS_STRING_LENGTH 64
#include <sys/endian.h>
/*
* host mapping related macro definitions
*/
#define MPS_MAPTABLE_BAD_IDX 0xFFFFFFFF
#define MPS_DPM_BAD_IDX 0xFFFF
#define MPS_ENCTABLE_BAD_IDX 0xFF
#define MPS_MAX_MISSING_COUNT 0x0F
#define MPS_DEV_RESERVED 0x20000000
#define MPS_MAP_IN_USE 0x10000000
#define MPS_RAID_CHANNEL 1
#define MPS_MAP_BAD_ID 0xFFFFFFFF
/*
* WarpDrive controller
*/
#define MPS_CHIP_WD_DEVICE_ID 0x007E
#define MPS_WD_LSI_OEM 0x80
#define MPS_WD_HIDE_EXPOSE_MASK 0x03
#define MPS_WD_HIDE_ALWAYS 0x00
#define MPS_WD_EXPOSE_ALWAYS 0x01
#define MPS_WD_HIDE_IF_VOLUME 0x02
#define MPS_WD_RETRY 0x01
#define MPS_MAN_PAGE10_SIZE 0x5C /* Hardcode for now */
#define MPS_MAX_DISKS_IN_VOL 10
/*
* WarpDrive Event Logging
*/
#define MPI2_WD_LOG_ENTRY 0x8002
#define MPI2_WD_SSD_THROTTLING 0x0041
#define MPI2_WD_DRIVE_LIFE_WARN 0x0043
#define MPI2_WD_DRIVE_LIFE_DEAD 0x0044
#define MPI2_WD_RAIL_MON_FAIL 0x004D
typedef uint8_t u8;
typedef uint16_t u16;
typedef uint32_t u32;
typedef uint64_t u64;
/**
* struct dev_mapping_table - device mapping information
* @physical_id: SAS address for drives or WWID for RAID volumes
* @device_info: bitfield provides detailed info about the device
* @phy_bits: bitfields indicating controller phys
* @dpm_entry_num: index of this device in device persistent map table
* @dev_handle: device handle for the device pointed by this entry
* @channel: target channel
* @id: target id
* @missing_count: number of times the device not detected by driver
* @hide_flag: Hide this physical disk/not (foreign configuration)
* @init_complete: Whether the start of the day checks completed or not
*/
struct dev_mapping_table {
u64 physical_id;
u32 device_info;
u32 phy_bits;
u16 dpm_entry_num;
u16 dev_handle;
u8 reserved1;
u8 channel;
u16 id;
u8 missing_count;
u8 init_complete;
u8 TLR_bits;
u8 reserved2;
};
/**
* struct enc_mapping_table - mapping information about an enclosure
* @enclosure_id: Logical ID of this enclosure
* @start_index: index to the entry in dev_mapping_table
* @phy_bits: bitfields indicating controller phys
* @dpm_entry_num: index of this enclosure in device persistent map table
* @enc_handle: device handle for the enclosure pointed by this entry
* @num_slots: number of slots in the enclosure
* @start_slot: Starting slot id
* @missing_count: number of times the device not detected by driver
* @removal_flag: used to mark the device for removal
* @skip_search: used as a flag to include/exclude enclosure for search
* @init_complete: Whether the start of the day checks completed or not
*/
struct enc_mapping_table {
u64 enclosure_id;
u32 start_index;
u32 phy_bits;
u16 dpm_entry_num;
u16 enc_handle;
u16 num_slots;
u16 start_slot;
u8 missing_count;
u8 removal_flag;
u8 skip_search;
u8 init_complete;
};
/**
* struct map_removal_table - entries to be removed from mapping table
* @dpm_entry_num: index of this device in device persistent map table
* @dev_handle: device handle for the device pointed by this entry
*/
struct map_removal_table{
u16 dpm_entry_num;
u16 dev_handle;
};
typedef struct mps_fw_diagnostic_buffer {
size_t size;
uint8_t extended_type;
uint8_t buffer_type;
uint8_t force_release;
uint32_t product_specific[23];
uint8_t immediate;
uint8_t enabled;
uint8_t valid_data;
uint8_t owned_by_firmware;
uint32_t unique_id;
} mps_fw_diagnostic_buffer_t;
struct mps_softc;
struct mps_command;
struct mpssas_softc;
union ccb;
struct mpssas_target;
struct mps_column_map;
MALLOC_DECLARE(M_MPT2);
typedef void mps_evt_callback_t(struct mps_softc *, uintptr_t,
MPI2_EVENT_NOTIFICATION_REPLY *reply);
typedef void mps_command_callback_t(struct mps_softc *, struct mps_command *cm);
struct mps_chain {
TAILQ_ENTRY(mps_chain) chain_link;
MPI2_SGE_IO_UNION *chain;
uint32_t chain_busaddr;
};
/*
* This needs to be at least 2 to support SMP passthrough.
*/
#define MPS_IOVEC_COUNT 2
struct mps_command {
TAILQ_ENTRY(mps_command) cm_link;
TAILQ_ENTRY(mps_command) cm_recovery;
struct mps_softc *cm_sc;
union ccb *cm_ccb;
void *cm_data;
u_int cm_length;
u_int cm_out_len;
struct uio cm_uio;
struct iovec cm_iovec[MPS_IOVEC_COUNT];
u_int cm_max_segs;
u_int cm_sglsize;
MPI2_SGE_IO_UNION *cm_sge;
uint8_t *cm_req;
uint8_t *cm_reply;
uint32_t cm_reply_data;
mps_command_callback_t *cm_complete;
void *cm_complete_data;
struct mpssas_target *cm_targ;
MPI2_REQUEST_DESCRIPTOR_UNION cm_desc;
u_int cm_lun;
u_int cm_flags;
#define MPS_CM_FLAGS_POLLED (1 << 0)
#define MPS_CM_FLAGS_COMPLETE (1 << 1)
#define MPS_CM_FLAGS_SGE_SIMPLE (1 << 2)
#define MPS_CM_FLAGS_DATAOUT (1 << 3)
#define MPS_CM_FLAGS_DATAIN (1 << 4)
#define MPS_CM_FLAGS_WAKEUP (1 << 5)
#define MPS_CM_FLAGS_DD_IO (1 << 6)
#define MPS_CM_FLAGS_USE_UIO (1 << 7)
#define MPS_CM_FLAGS_SMP_PASS (1 << 8)
#define MPS_CM_FLAGS_CHAIN_FAILED (1 << 9)
#define MPS_CM_FLAGS_ERROR_MASK MPS_CM_FLAGS_CHAIN_FAILED
u_int cm_state;
#define MPS_CM_STATE_FREE 0
#define MPS_CM_STATE_BUSY 1
#define MPS_CM_STATE_TIMEDOUT 2
bus_dmamap_t cm_dmamap;
struct scsi_sense_data *cm_sense;
TAILQ_HEAD(, mps_chain) cm_chain_list;
uint32_t cm_req_busaddr;
uint32_t cm_sense_busaddr;
struct callout cm_callout;
};
struct mps_column_map {
uint16_t dev_handle;
uint8_t phys_disk_num;
};
struct mps_event_handle {
TAILQ_ENTRY(mps_event_handle) eh_list;
mps_evt_callback_t *callback;
void *data;
u32 mask[MPI2_EVENT_NOTIFY_EVENTMASK_WORDS];
};
struct mps_softc {
device_t mps_dev;
struct cdev *mps_cdev;
u_int mps_flags;
#define MPS_FLAGS_INTX (1 << 0)
#define MPS_FLAGS_MSI (1 << 1)
#define MPS_FLAGS_BUSY (1 << 2)
#define MPS_FLAGS_SHUTDOWN (1 << 3)
#define MPS_FLAGS_DIAGRESET (1 << 4)
#define MPS_FLAGS_ATTACH_DONE (1 << 5)
#define MPS_FLAGS_WD_AVAILABLE (1 << 6)
u_int mps_debug;
u_int disable_msix;
u_int disable_msi;
int tm_cmds_active;
int io_cmds_active;
int io_cmds_highwater;
int chain_free;
int max_chains;
int chain_free_lowwater;
#if __FreeBSD_version >= 900030
uint64_t chain_alloc_fail;
#endif
struct sysctl_ctx_list sysctl_ctx;
struct sysctl_oid *sysctl_tree;
char fw_version[16];
struct mps_command *commands;
struct mps_chain *chains;
struct callout periodic;
struct mpssas_softc *sassc;
char tmp_string[MPS_STRING_LENGTH];
TAILQ_HEAD(, mps_command) req_list;
TAILQ_HEAD(, mps_command) high_priority_req_list;
TAILQ_HEAD(, mps_chain) chain_list;
TAILQ_HEAD(, mps_command) tm_list;
int replypostindex;
int replyfreeindex;
struct resource *mps_regs_resource;
bus_space_handle_t mps_bhandle;
bus_space_tag_t mps_btag;
int mps_regs_rid;
bus_dma_tag_t mps_parent_dmat;
bus_dma_tag_t buffer_dmat;
MPI2_IOC_FACTS_REPLY *facts;
MPI2_PORT_FACTS_REPLY *pfacts;
int num_reqs;
int num_replies;
int fqdepth; /* Free queue */
int pqdepth; /* Post queue */
u32 event_mask[MPI2_EVENT_NOTIFY_EVENTMASK_WORDS];
TAILQ_HEAD(, mps_event_handle) event_list;
struct mps_event_handle *mps_log_eh;
struct mtx mps_mtx;
struct intr_config_hook mps_ich;
struct resource *mps_irq[MPS_MSI_COUNT];
void *mps_intrhand[MPS_MSI_COUNT];
int mps_irq_rid[MPS_MSI_COUNT];
uint8_t *req_frames;
bus_addr_t req_busaddr;
bus_dma_tag_t req_dmat;
bus_dmamap_t req_map;
uint8_t *reply_frames;
bus_addr_t reply_busaddr;
bus_dma_tag_t reply_dmat;
bus_dmamap_t reply_map;
struct scsi_sense_data *sense_frames;
bus_addr_t sense_busaddr;
bus_dma_tag_t sense_dmat;
bus_dmamap_t sense_map;
uint8_t *chain_frames;
bus_addr_t chain_busaddr;
bus_dma_tag_t chain_dmat;
bus_dmamap_t chain_map;
MPI2_REPLY_DESCRIPTORS_UNION *post_queue;
bus_addr_t post_busaddr;
uint32_t *free_queue;
bus_addr_t free_busaddr;
bus_dma_tag_t queues_dmat;
bus_dmamap_t queues_map;
uint8_t *fw_diag_buffer;
bus_addr_t fw_diag_busaddr;
bus_dma_tag_t fw_diag_dmat;
bus_dmamap_t fw_diag_map;
uint8_t ir_firmware;
/* static config pages */
Mpi2IOCPage8_t ioc_pg8;
/* host mapping support */
struct dev_mapping_table *mapping_table;
struct enc_mapping_table *enclosure_table;
struct map_removal_table *removal_table;
uint8_t *dpm_entry_used;
uint8_t *dpm_flush_entry;
Mpi2DriverMappingPage0_t *dpm_pg0;
uint16_t max_devices;
uint16_t max_enclosures;
uint16_t max_expanders;
uint8_t max_volumes;
uint8_t num_enc_table_entries;
uint8_t num_rsvd_entries;
uint8_t num_channels;
uint16_t max_dpm_entries;
uint8_t is_dpm_enable;
uint8_t track_mapping_events;
uint32_t pending_map_events;
uint8_t mt_full_retry;
uint8_t mt_add_device_failed;
/* FW diag Buffer List */
mps_fw_diagnostic_buffer_t
fw_diag_buffer_list[MPI2_DIAG_BUF_TYPE_COUNT];
/* Event Recording IOCTL support */
uint32_t events_to_record[4];
mps_event_entry_t recorded_events[MPS_EVENT_QUEUE_SIZE];
uint8_t event_index;
uint32_t event_number;
/* EEDP and TLR support */
uint8_t eedp_enabled;
uint8_t control_TLR;
/* Shutdown Event Handler */
eventhandler_tag shutdown_eh;
/* To track topo events during reset */
#define MPS_DIAG_RESET_TIMEOUT 300000
uint8_t wait_for_port_enable;
uint8_t port_enable_complete;
uint8_t msleep_fake_chan;
/* WD controller */
uint8_t WD_available;
uint8_t WD_valid_config;
uint8_t WD_hide_expose;
/* Direct Drive for WarpDrive */
uint8_t DD_num_phys_disks;
uint16_t DD_dev_handle;
uint32_t DD_stripe_size;
uint32_t DD_stripe_exponent;
uint32_t DD_block_size;
uint16_t DD_block_exponent;
uint64_t DD_max_lba;
struct mps_column_map DD_column_map[MPS_MAX_DISKS_IN_VOL];
};
struct mps_config_params {
MPI2_CONFIG_EXT_PAGE_HEADER_UNION hdr;
u_int action;
u_int page_address; /* Attributes, not a phys address */
u_int status;
void *buffer;
u_int length;
int timeout;
void (*callback)(struct mps_softc *, struct mps_config_params *);
void *cbdata;
};
struct scsi_read_capacity_eedp
{
uint8_t addr[8];
uint8_t length[4];
uint8_t protect;
};
static __inline uint32_t
mps_regread(struct mps_softc *sc, uint32_t offset)
{
return (bus_space_read_4(sc->mps_btag, sc->mps_bhandle, offset));
}
static __inline void
mps_regwrite(struct mps_softc *sc, uint32_t offset, uint32_t val)
{
bus_space_write_4(sc->mps_btag, sc->mps_bhandle, offset, val);
}
/* free_queue must have Little Endian address
* TODO- cm_reply_data is unwanted. We can remove it.
* */
static __inline void
mps_free_reply(struct mps_softc *sc, uint32_t busaddr)
{
if (++sc->replyfreeindex >= sc->fqdepth)
sc->replyfreeindex = 0;
sc->free_queue[sc->replyfreeindex] = htole32(busaddr);
mps_regwrite(sc, MPI2_REPLY_FREE_HOST_INDEX_OFFSET, sc->replyfreeindex);
}
static __inline struct mps_chain *
mps_alloc_chain(struct mps_softc *sc)
{
struct mps_chain *chain;
if ((chain = TAILQ_FIRST(&sc->chain_list)) != NULL) {
TAILQ_REMOVE(&sc->chain_list, chain, chain_link);
sc->chain_free--;
if (sc->chain_free < sc->chain_free_lowwater)
sc->chain_free_lowwater = sc->chain_free;
}
#if __FreeBSD_version >= 900030
else
sc->chain_alloc_fail++;
#endif
return (chain);
}
static __inline void
mps_free_chain(struct mps_softc *sc, struct mps_chain *chain)
{
#if 0
bzero(chain->chain, 128);
#endif
sc->chain_free++;
TAILQ_INSERT_TAIL(&sc->chain_list, chain, chain_link);
}
static __inline void
mps_free_command(struct mps_softc *sc, struct mps_command *cm)
{
struct mps_chain *chain, *chain_temp;
if (cm->cm_reply != NULL)
mps_free_reply(sc, cm->cm_reply_data);
cm->cm_reply = NULL;
cm->cm_flags = 0;
cm->cm_complete = NULL;
cm->cm_complete_data = NULL;
cm->cm_ccb = NULL;
cm->cm_targ = NULL;
cm->cm_max_segs = 0;
cm->cm_lun = 0;
cm->cm_state = MPS_CM_STATE_FREE;
cm->cm_data = NULL;
cm->cm_length = 0;
cm->cm_out_len = 0;
cm->cm_sglsize = 0;
cm->cm_sge = NULL;
TAILQ_FOREACH_SAFE(chain, &cm->cm_chain_list, chain_link, chain_temp) {
TAILQ_REMOVE(&cm->cm_chain_list, chain, chain_link);
mps_free_chain(sc, chain);
}
TAILQ_INSERT_TAIL(&sc->req_list, cm, cm_link);
}
static __inline struct mps_command *
mps_alloc_command(struct mps_softc *sc)
{
struct mps_command *cm;
cm = TAILQ_FIRST(&sc->req_list);
if (cm == NULL)
return (NULL);
TAILQ_REMOVE(&sc->req_list, cm, cm_link);
KASSERT(cm->cm_state == MPS_CM_STATE_FREE, ("mps: Allocating busy command\n"));
cm->cm_state = MPS_CM_STATE_BUSY;
return (cm);
}
static __inline void
mps_free_high_priority_command(struct mps_softc *sc, struct mps_command *cm)
{
struct mps_chain *chain, *chain_temp;
if (cm->cm_reply != NULL)
mps_free_reply(sc, cm->cm_reply_data);
cm->cm_reply = NULL;
cm->cm_flags = 0;
cm->cm_complete = NULL;
cm->cm_complete_data = NULL;
cm->cm_ccb = NULL;
cm->cm_targ = NULL;
cm->cm_lun = 0;
cm->cm_state = MPS_CM_STATE_FREE;
TAILQ_FOREACH_SAFE(chain, &cm->cm_chain_list, chain_link, chain_temp) {
TAILQ_REMOVE(&cm->cm_chain_list, chain, chain_link);
mps_free_chain(sc, chain);
}
TAILQ_INSERT_TAIL(&sc->high_priority_req_list, cm, cm_link);
}
static __inline struct mps_command *
mps_alloc_high_priority_command(struct mps_softc *sc)
{
struct mps_command *cm;
cm = TAILQ_FIRST(&sc->high_priority_req_list);
if (cm == NULL)
return (NULL);
TAILQ_REMOVE(&sc->high_priority_req_list, cm, cm_link);
KASSERT(cm->cm_state == MPS_CM_STATE_FREE, ("mps: Allocating busy command\n"));
cm->cm_state = MPS_CM_STATE_BUSY;
return (cm);
}
static __inline void
mps_lock(struct mps_softc *sc)
{
mtx_lock(&sc->mps_mtx);
}
static __inline void
mps_unlock(struct mps_softc *sc)
{
mtx_unlock(&sc->mps_mtx);
}
#define MPS_INFO (1 << 0)
#define MPS_TRACE (1 << 1)
#define MPS_FAULT (1 << 2)
#define MPS_EVENT (1 << 3)
#define MPS_LOG (1 << 4)
#define mps_printf(sc, args...) \
device_printf((sc)->mps_dev, ##args)
#define mps_vprintf(sc, args...) \
do { \
if (bootverbose) \
mps_printf(sc, ##args); \
} while (0)
#define mps_dprint(sc, level, msg, args...) \
do { \
if (sc->mps_debug & level) \
device_printf(sc->mps_dev, msg, ##args); \
} while (0)
#define mps_dprint_field(sc, level, msg, args...) \
do { \
if (sc->mps_debug & level) \
printf("\t" msg, ##args); \
} while (0)
#define MPS_PRINTFIELD_START(sc, tag...) \
mps_dprint((sc), MPS_INFO, ##tag); \
mps_dprint_field((sc), MPS_INFO, ":\n")
#define MPS_PRINTFIELD_END(sc, tag) \
mps_dprint((sc), MPS_INFO, tag "\n")
#define MPS_PRINTFIELD(sc, facts, attr, fmt) \
mps_dprint_field((sc), MPS_INFO, #attr ": " #fmt "\n", (facts)->attr)
#define MPS_EVENTFIELD_START(sc, tag...) \
mps_dprint((sc), MPS_EVENT, ##tag); \
mps_dprint_field((sc), MPS_EVENT, ":\n")
#define MPS_EVENTFIELD(sc, facts, attr, fmt) \
mps_dprint_field((sc), MPS_EVENT, #attr ": " #fmt "\n", (facts)->attr)
#define CAN_SLEEP 1
#define NO_SLEEP 0
static __inline void
mps_from_u64(uint64_t data, U64 *mps)
{
(mps)->High = (uint32_t)((data) >> 32);
(mps)->Low = (uint32_t)((data) & 0xffffffff);
}
static __inline uint64_t
mps_to_u64(U64 *data)
{
return (((uint64_t)data->High << 32) | data->Low);
}
static __inline void
mps_mask_intr(struct mps_softc *sc)
{
uint32_t mask;
mask = mps_regread(sc, MPI2_HOST_INTERRUPT_MASK_OFFSET);
mask |= MPI2_HIM_REPLY_INT_MASK;
mps_regwrite(sc, MPI2_HOST_INTERRUPT_MASK_OFFSET, mask);
}
static __inline void
mps_unmask_intr(struct mps_softc *sc)
{
uint32_t mask;
mask = mps_regread(sc, MPI2_HOST_INTERRUPT_MASK_OFFSET);
mask &= ~MPI2_HIM_REPLY_INT_MASK;
mps_regwrite(sc, MPI2_HOST_INTERRUPT_MASK_OFFSET, mask);
}
int mps_pci_setup_interrupts(struct mps_softc *sc);
int mps_pci_restore(struct mps_softc *sc);
int mps_attach(struct mps_softc *sc);
int mps_free(struct mps_softc *sc);
void mps_intr(void *);
void mps_intr_msi(void *);
void mps_intr_locked(void *);
int mps_register_events(struct mps_softc *, u32 *, mps_evt_callback_t *,
void *, struct mps_event_handle **);
int mps_restart(struct mps_softc *);
int mps_update_events(struct mps_softc *, struct mps_event_handle *, u32 *);
void mps_deregister_events(struct mps_softc *, struct mps_event_handle *);
int mps_push_sge(struct mps_command *, void *, size_t, int);
int mps_add_dmaseg(struct mps_command *, vm_paddr_t, size_t, u_int, int);
int mps_attach_sas(struct mps_softc *sc);
int mps_detach_sas(struct mps_softc *sc);
int mps_read_config_page(struct mps_softc *, struct mps_config_params *);
int mps_write_config_page(struct mps_softc *, struct mps_config_params *);
void mps_memaddr_cb(void *, bus_dma_segment_t *, int , int );
void mpi_init_sge(struct mps_command *cm, void *req, void *sge);
int mps_attach_user(struct mps_softc *);
void mps_detach_user(struct mps_softc *);
void mpssas_record_event(struct mps_softc *sc,
MPI2_EVENT_NOTIFICATION_REPLY *event_reply);
int mps_map_command(struct mps_softc *sc, struct mps_command *cm);
int mps_wait_command(struct mps_softc *sc, struct mps_command *cm, int timeout);
int mps_request_polled(struct mps_softc *sc, struct mps_command *cm);
int mps_config_get_bios_pg3(struct mps_softc *sc, Mpi2ConfigReply_t
*mpi_reply, Mpi2BiosPage3_t *config_page);
int mps_config_get_raid_volume_pg0(struct mps_softc *sc, Mpi2ConfigReply_t
*mpi_reply, Mpi2RaidVolPage0_t *config_page, u32 page_address);
int mps_config_get_ioc_pg8(struct mps_softc *sc, Mpi2ConfigReply_t *,
Mpi2IOCPage8_t *);
int mps_config_get_man_pg10(struct mps_softc *sc, Mpi2ConfigReply_t *mpi_reply);
int mps_config_get_sas_device_pg0(struct mps_softc *, Mpi2ConfigReply_t *,
Mpi2SasDevicePage0_t *, u32 , u16 );
int mps_config_get_dpm_pg0(struct mps_softc *, Mpi2ConfigReply_t *,
Mpi2DriverMappingPage0_t *, u16 );
int mps_config_get_raid_volume_pg1(struct mps_softc *sc,
Mpi2ConfigReply_t *mpi_reply, Mpi2RaidVolPage1_t *config_page, u32 form,
u16 handle);
int mps_config_get_volume_wwid(struct mps_softc *sc, u16 volume_handle,
u64 *wwid);
int mps_config_get_raid_pd_pg0(struct mps_softc *sc,
Mpi2ConfigReply_t *mpi_reply, Mpi2RaidPhysDiskPage0_t *config_page,
u32 page_address);
void mpssas_ir_shutdown(struct mps_softc *sc);
int mps_reinit(struct mps_softc *sc);
void mpssas_handle_reinit(struct mps_softc *sc);
void mps_base_static_config_pages(struct mps_softc *sc);
void mps_wd_config_pages(struct mps_softc *sc);
int mps_mapping_initialize(struct mps_softc *);
void mps_mapping_topology_change_event(struct mps_softc *,
Mpi2EventDataSasTopologyChangeList_t *);
int mps_mapping_is_reinit_required(struct mps_softc *);
void mps_mapping_free_memory(struct mps_softc *sc);
int mps_config_set_dpm_pg0(struct mps_softc *, Mpi2ConfigReply_t *,
Mpi2DriverMappingPage0_t *, u16 );
void mps_mapping_exit(struct mps_softc *);
void mps_mapping_check_devices(struct mps_softc *, int);
int mps_mapping_allocate_memory(struct mps_softc *sc);
unsigned int mps_mapping_get_sas_id(struct mps_softc *, uint64_t , u16);
unsigned int mps_mapping_get_sas_id_from_handle(struct mps_softc *sc,
u16 handle);
unsigned int mps_mapping_get_raid_id(struct mps_softc *sc, u64 wwid,
u16 handle);
unsigned int mps_mapping_get_raid_id_from_handle(struct mps_softc *sc,
u16 volHandle);
void mps_mapping_enclosure_dev_status_change_event(struct mps_softc *,
Mpi2EventDataSasEnclDevStatusChange_t *event_data);
void mps_mapping_ir_config_change_event(struct mps_softc *sc,
Mpi2EventDataIrConfigChangeList_t *event_data);
void mpssas_evt_handler(struct mps_softc *sc, uintptr_t data,
MPI2_EVENT_NOTIFICATION_REPLY *event);
void mpssas_prepare_remove(struct mpssas_softc *sassc, uint16_t handle);
void mpssas_prepare_volume_remove(struct mpssas_softc *sassc, uint16_t handle);
int mpssas_startup(struct mps_softc *sc);
struct mpssas_target * mpssas_find_target_by_handle(struct mpssas_softc *, int, uint16_t);
SYSCTL_DECL(_hw_mps);
/* Compatibility shims for different OS versions */
#if __FreeBSD_version >= 800001
#define mps_kproc_create(func, farg, proc_ptr, flags, stackpgs, fmtstr, arg) \
kproc_create(func, farg, proc_ptr, flags, stackpgs, fmtstr, arg)
#define mps_kproc_exit(arg) kproc_exit(arg)
#else
#define mps_kproc_create(func, farg, proc_ptr, flags, stackpgs, fmtstr, arg) \
kthread_create(func, farg, proc_ptr, flags, stackpgs, fmtstr, arg)
#define mps_kproc_exit(arg) kthread_exit(arg)
#endif
#if defined(CAM_PRIORITY_XPT)
#define MPS_PRIORITY_XPT CAM_PRIORITY_XPT
#else
#define MPS_PRIORITY_XPT 5
#endif
#if __FreeBSD_version < 800107
// Prior to FreeBSD-8.0 scp3_flags was not defined.
#define spc3_flags reserved
#define SPC3_SID_PROTECT 0x01
#define SPC3_SID_3PC 0x08
#define SPC3_SID_TPGS_MASK 0x30
#define SPC3_SID_TPGS_IMPLICIT 0x10
#define SPC3_SID_TPGS_EXPLICIT 0x20
#define SPC3_SID_ACC 0x40
#define SPC3_SID_SCCS 0x80
#define CAM_PRIORITY_NORMAL CAM_PRIORITY_NONE
#endif
#endif