4 #include <linux/genhd.h>
5 #include <linux/mutex.h>
11 #define MAX_PART (1 << NWD_SHIFT)
15 #define IO_NEEDS_RETRY 3
22 typedef struct ctlr_info ctlr_info_t
;
24 struct access_method
{
25 void (*submit_command
)(ctlr_info_t
*h
, CommandList_struct
*c
);
26 void (*set_intr_mask
)(ctlr_info_t
*h
, unsigned long val
);
27 unsigned long (*fifo_full
)(ctlr_info_t
*h
);
28 unsigned long (*intr_pending
)(ctlr_info_t
*h
);
29 unsigned long (*command_completed
)(ctlr_info_t
*h
);
31 typedef struct _drive_info_struct
33 unsigned char LunID
[8];
35 struct request_queue
*queue
;
41 int raid_level
; /* set to -1 to indicate that
42 * the drive is not in use/configured
44 int busy_configuring
; /* This is set when a drive is being removed
45 * to prevent it from being opened or it's
46 * queue from being started.
49 __u8 serial_no
[16]; /* from inquiry page 0x83,
50 * not necc. null terminated.
52 char vendor
[VENDOR_LEN
+ 1]; /* SCSI vendor string */
53 char model
[MODEL_LEN
+ 1]; /* SCSI model string */
54 char rev
[REV_LEN
+ 1]; /* SCSI revision string */
55 char device_initialized
; /* indicates whether dev is initialized */
63 char firm_ver
[4]; // Firmware version
68 int nr_cmds
; /* Number of commands allowed on this controller */
69 CfgTable_struct __iomem
*cfgtable
;
70 int interrupts_enabled
;
73 int commands_outstanding
;
74 int max_outstanding
; /* Debug */
77 int usage_count
; /* number of opens all all minor devices */
78 # define DOORBELL_INT 0
79 # define PERF_MODE_INT 1
80 # define SIMPLE_MODE_INT 2
81 # define MEMQ_MODE_INT 3
83 unsigned int msix_vector
;
84 unsigned int msi_vector
;
85 int cciss_max_sectors
;
88 BYTE cciss_read_capacity
;
90 // information about each logical volume
91 drive_info_struct
*drv
[CISS_MAX_LUN
];
93 struct access_method access
;
95 /* queue and queue Info */
96 struct hlist_head reqQ
;
97 struct hlist_head cmpQ
;
99 unsigned int maxQsinceinit
;
103 //* pointers to command and error info pool */
104 CommandList_struct
*cmd_pool
;
105 dma_addr_t cmd_pool_dhandle
;
106 ErrorInfo_struct
*errinfo_pool
;
107 dma_addr_t errinfo_pool_dhandle
;
108 unsigned long *cmd_pool_bits
;
111 int busy_configuring
;
112 int busy_initializing
;
114 struct mutex busy_shutting_down
;
116 /* This element holds the zero based queue number of the last
117 * queue to be started. It is used for fairness.
121 // Disk structures we need to pass back
122 struct gendisk
*gendisk
[CISS_MAX_LUN
];
123 #ifdef CONFIG_CISS_SCSI_TAPE
124 void *scsi_ctlr
; /* ptr to structure containing scsi related stuff */
125 /* list of block side commands the scsi error handling sucked up */
126 /* and saved for later processing */
129 struct list_head scan_list
;
130 struct completion scan_wait
;
134 /* Defining the diffent access_menthods */
136 * Memory mapped FIFO interface (SMART 53xx cards)
138 #define SA5_DOORBELL 0x20
139 #define SA5_REQUEST_PORT_OFFSET 0x40
140 #define SA5_REPLY_INTR_MASK_OFFSET 0x34
141 #define SA5_REPLY_PORT_OFFSET 0x44
142 #define SA5_INTR_STATUS 0x30
143 #define SA5_SCRATCHPAD_OFFSET 0xB0
145 #define SA5_CTCFG_OFFSET 0xB4
146 #define SA5_CTMEM_OFFSET 0xB8
148 #define SA5_INTR_OFF 0x08
149 #define SA5B_INTR_OFF 0x04
150 #define SA5_INTR_PENDING 0x08
151 #define SA5B_INTR_PENDING 0x04
152 #define FIFO_EMPTY 0xffffffff
153 #define CCISS_FIRMWARE_READY 0xffff0000 /* value in scratchpad register */
155 #define CISS_ERROR_BIT 0x02
157 #define CCISS_INTR_ON 1
158 #define CCISS_INTR_OFF 0
160 Send the command to the hardware
162 static void SA5_submit_command( ctlr_info_t
*h
, CommandList_struct
*c
)
165 printk("Sending %x - down to controller\n", c
->busaddr
);
166 #endif /* CCISS_DEBUG */
167 writel(c
->busaddr
, h
->vaddr
+ SA5_REQUEST_PORT_OFFSET
);
168 h
->commands_outstanding
++;
169 if ( h
->commands_outstanding
> h
->max_outstanding
)
170 h
->max_outstanding
= h
->commands_outstanding
;
174 * This card is the opposite of the other cards.
175 * 0 turns interrupts on...
176 * 0x08 turns them off...
178 static void SA5_intr_mask(ctlr_info_t
*h
, unsigned long val
)
181 { /* Turn interrupts on */
182 h
->interrupts_enabled
= 1;
183 writel(0, h
->vaddr
+ SA5_REPLY_INTR_MASK_OFFSET
);
184 } else /* Turn them off */
186 h
->interrupts_enabled
= 0;
187 writel( SA5_INTR_OFF
,
188 h
->vaddr
+ SA5_REPLY_INTR_MASK_OFFSET
);
192 * This card is the opposite of the other cards.
193 * 0 turns interrupts on...
194 * 0x04 turns them off...
196 static void SA5B_intr_mask(ctlr_info_t
*h
, unsigned long val
)
199 { /* Turn interrupts on */
200 h
->interrupts_enabled
= 1;
201 writel(0, h
->vaddr
+ SA5_REPLY_INTR_MASK_OFFSET
);
202 } else /* Turn them off */
204 h
->interrupts_enabled
= 0;
205 writel( SA5B_INTR_OFF
,
206 h
->vaddr
+ SA5_REPLY_INTR_MASK_OFFSET
);
210 * Returns true if fifo is full.
213 static unsigned long SA5_fifo_full(ctlr_info_t
*h
)
215 if( h
->commands_outstanding
>= h
->max_commands
)
222 * returns value read from hardware.
223 * returns FIFO_EMPTY if there is nothing to read
225 static unsigned long SA5_completed(ctlr_info_t
*h
)
227 unsigned long register_value
228 = readl(h
->vaddr
+ SA5_REPLY_PORT_OFFSET
);
229 if(register_value
!= FIFO_EMPTY
)
231 h
->commands_outstanding
--;
233 printk("cciss: Read %lx back from board\n", register_value
);
234 #endif /* CCISS_DEBUG */
239 printk("cciss: FIFO Empty read\n");
242 return ( register_value
);
246 * Returns true if an interrupt is pending..
248 static unsigned long SA5_intr_pending(ctlr_info_t
*h
)
250 unsigned long register_value
=
251 readl(h
->vaddr
+ SA5_INTR_STATUS
);
253 printk("cciss: intr_pending %lx\n", register_value
);
254 #endif /* CCISS_DEBUG */
255 if( register_value
& SA5_INTR_PENDING
)
261 * Returns true if an interrupt is pending..
263 static unsigned long SA5B_intr_pending(ctlr_info_t
*h
)
265 unsigned long register_value
=
266 readl(h
->vaddr
+ SA5_INTR_STATUS
);
268 printk("cciss: intr_pending %lx\n", register_value
);
269 #endif /* CCISS_DEBUG */
270 if( register_value
& SA5B_INTR_PENDING
)
276 static struct access_method SA5_access
= {
284 static struct access_method SA5B_access
= {
295 struct access_method
*access
;
296 int nr_cmds
; /* Max cmds this kind of ctlr can handle. */
299 #define CCISS_LOCK(i) (&hba[i]->lock)