4 * Device Driver for Tekram DC395(U/UW/F), DC315(U)
5 * PCI SCSI Bus Master Host Adapter
6 * (SCSI chip set used Tekram ASIC TRM-S1040)
9 * C.L. Huang <ching@tekram.com.tw>
10 * Erich Chen <erich@tekram.com.tw>
11 * (C) Copyright 1995-1999 Tekram Technology Co., Ltd.
13 * Kurt Garloff <garloff@suse.de>
14 * (C) 1999-2000 Kurt Garloff
16 * Oliver Neukum <oliver@neukum.name>
17 * Ali Akcaagac <aliakc@web.de>
18 * Jamie Lenehan <lenehan@twibble.org>
23 *************************************************************************
25 * Redistribution and use in source and binary forms, with or without
26 * modification, are permitted provided that the following conditions
28 * 1. Redistributions of source code must retain the above copyright
29 * notice, this list of conditions and the following disclaimer.
30 * 2. Redistributions in binary form must reproduce the above copyright
31 * notice, this list of conditions and the following disclaimer in the
32 * documentation and/or other materials provided with the distribution.
33 * 3. The name of the author may not be used to endorse or promote products
34 * derived from this software without specific prior written permission.
36 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
37 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
38 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
39 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
40 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
41 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
42 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
43 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
44 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
45 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
47 ************************************************************************
49 #include <linux/module.h>
50 #include <linux/moduleparam.h>
51 #include <linux/delay.h>
52 #include <linux/ctype.h>
53 #include <linux/blkdev.h>
54 #include <linux/interrupt.h>
55 #include <linux/init.h>
56 #include <linux/spinlock.h>
57 #include <linux/pci.h>
58 #include <linux/list.h>
59 #include <linux/vmalloc.h>
60 #include <linux/slab.h>
63 #include <scsi/scsi.h>
64 #include <scsi/scsi_cmnd.h>
65 #include <scsi/scsi_device.h>
66 #include <scsi/scsi_host.h>
70 #define DC395X_NAME "dc395x"
71 #define DC395X_BANNER "Tekram DC395(U/UW/F), DC315(U) - ASIC TRM-S1040"
72 #define DC395X_VERSION "v2.05, 2004/03/08"
74 /*---------------------------------------------------------------------------
76 ---------------------------------------------------------------------------*/
78 * Set to disable parts of the driver
80 /*#define DC395x_NO_DISCONNECT*/
81 /*#define DC395x_NO_TAGQ*/
82 /*#define DC395x_NO_SYNC*/
83 /*#define DC395x_NO_WIDE*/
85 /*---------------------------------------------------------------------------
87 ---------------------------------------------------------------------------*/
89 * Types of debugging that can be enabled and disabled
95 #define DBG_FIFO 0x0040
96 #define DBG_PIO 0x0080
100 * Set set of things to output debugging for.
101 * Undefine to remove all debugging
103 /*#define DEBUG_MASK (DBG_0|DBG_1|DBG_SG|DBG_FIFO|DBG_PIO)*/
104 /*#define DEBUG_MASK DBG_0*/
108 * Output a kernel mesage at the specified level and append the
109 * driver name and a ": " to the start of the message
111 #define dprintkl(level, format, arg...) \
112 printk(level DC395X_NAME ": " format , ## arg)
117 * print a debug message - this is formated with KERN_DEBUG, then the
118 * driver name followed by a ": " and then the message is output.
119 * This also checks that the specified debug level is enabled before
120 * outputing the message
122 #define dprintkdbg(type, format, arg...) \
124 if ((type) & (DEBUG_MASK)) \
125 dprintkl(KERN_DEBUG , format , ## arg); \
129 * Check if the specified type of debugging is enabled
131 #define debug_enabled(type) ((DEBUG_MASK) & (type))
135 * No debugging. Do nothing
137 #define dprintkdbg(type, format, arg...) \
139 #define debug_enabled(type) (0)
144 #ifndef PCI_VENDOR_ID_TEKRAM
145 #define PCI_VENDOR_ID_TEKRAM 0x1DE1 /* Vendor ID */
147 #ifndef PCI_DEVICE_ID_TEKRAM_TRMS1040
148 #define PCI_DEVICE_ID_TEKRAM_TRMS1040 0x0391 /* Device ID */
152 #define DC395x_LOCK_IO(dev,flags) spin_lock_irqsave(((struct Scsi_Host *)dev)->host_lock, flags)
153 #define DC395x_UNLOCK_IO(dev,flags) spin_unlock_irqrestore(((struct Scsi_Host *)dev)->host_lock, flags)
155 #define DC395x_read8(acb,address) (u8)(inb(acb->io_port_base + (address)))
156 #define DC395x_read16(acb,address) (u16)(inw(acb->io_port_base + (address)))
157 #define DC395x_read32(acb,address) (u32)(inl(acb->io_port_base + (address)))
158 #define DC395x_write8(acb,address,value) outb((value), acb->io_port_base + (address))
159 #define DC395x_write16(acb,address,value) outw((value), acb->io_port_base + (address))
160 #define DC395x_write32(acb,address,value) outl((value), acb->io_port_base + (address))
163 #define RES_TARGET 0x000000FF /* Target State */
164 #define RES_TARGET_LNX STATUS_MASK /* Only official ... */
165 #define RES_ENDMSG 0x0000FF00 /* End Message */
166 #define RES_DID 0x00FF0000 /* DID_ codes */
167 #define RES_DRV 0xFF000000 /* DRIVER_ codes */
169 #define MK_RES(drv,did,msg,tgt) ((int)(drv)<<24 | (int)(did)<<16 | (int)(msg)<<8 | (int)(tgt))
170 #define MK_RES_LNX(drv,did,msg,tgt) ((int)(drv)<<24 | (int)(did)<<16 | (int)(msg)<<8 | (int)(tgt)<<1)
172 #define SET_RES_TARGET(who,tgt) { who &= ~RES_TARGET; who |= (int)(tgt); }
173 #define SET_RES_TARGET_LNX(who,tgt) { who &= ~RES_TARGET_LNX; who |= (int)(tgt) << 1; }
174 #define SET_RES_MSG(who,msg) { who &= ~RES_ENDMSG; who |= (int)(msg) << 8; }
175 #define SET_RES_DID(who,did) { who &= ~RES_DID; who |= (int)(did) << 16; }
176 #define SET_RES_DRV(who,drv) { who &= ~RES_DRV; who |= (int)(drv) << 24; }
181 * srb->segement_x is the hw sg list. It is always allocated as a
182 * DC395x_MAX_SG_LISTENTRY entries in a linear block which does not
183 * cross a page boundy.
185 #define SEGMENTX_LEN (sizeof(struct SGentry)*DC395x_MAX_SG_LISTENTRY)
189 u32 address
; /* bus! address */
193 /* The SEEPROM structure for TRM_S1040 */
195 u8 cfg0
; /* Target configuration byte 0 */
196 u8 period
; /* Target period */
197 u8 cfg2
; /* Target configuration byte 2 */
198 u8 cfg3
; /* Target configuration byte 3 */
202 u8 sub_vendor_id
[2]; /* 0,1 Sub Vendor ID */
203 u8 sub_sys_id
[2]; /* 2,3 Sub System ID */
204 u8 sub_class
; /* 4 Sub Class */
205 u8 vendor_id
[2]; /* 5,6 Vendor ID */
206 u8 device_id
[2]; /* 7,8 Device ID */
207 u8 reserved
; /* 9 Reserved */
208 struct NVRamTarget target
[DC395x_MAX_SCSI_ID
];
215 u8 scsi_id
; /* 74 Host Adapter SCSI ID */
216 u8 channel_cfg
; /* 75 Channel configuration */
217 u8 delay_time
; /* 76 Power on delay time */
218 u8 max_tag
; /* 77 Maximum tags */
219 u8 reserved0
; /* 78 */
220 u8 boot_target
; /* 79 */
221 u8 boot_lun
; /* 80 */
222 u8 reserved1
; /* 81 */
223 u16 reserved2
[22]; /* 82,..125 */
224 u16 cksum
; /* 126,127 */
228 struct list_head list
; /* next/prev ptrs for srb lists */
229 struct DeviceCtlBlk
*dcb
;
230 struct scsi_cmnd
*cmd
;
232 struct SGentry
*segment_x
; /* Linear array of hw sg entries (up to 64 entries) */
233 dma_addr_t sg_bus_addr
; /* Bus address of sg list (ie, of segment_x) */
235 u8 sg_count
; /* No of HW sg entries for this request */
236 u8 sg_index
; /* Index of HW sg entry for this request */
237 size_t total_xfer_length
; /* Total number of bytes remaining to be transferred */
238 size_t request_length
; /* Total number of bytes in this request */
240 * The sense buffer handling function, request_sense, uses
241 * the first hw sg entry (segment_x[0]) and the transfer
242 * length (total_xfer_length). While doing this it stores the
243 * original values into the last sg hw list
244 * (srb->segment_x[DC395x_MAX_SG_LISTENTRY - 1] and the
245 * total_xfer_length in xferred. These values are restored in
246 * pci_unmap_srb_sense. This is the only place xferred is used.
248 size_t xferred
; /* Saved copy of total_xfer_length */
268 struct DeviceCtlBlk
{
269 struct list_head list
; /* next/prev ptrs for the dcb list */
270 struct AdapterCtlBlk
*acb
;
271 struct list_head srb_going_list
; /* head of going srb list */
272 struct list_head srb_waiting_list
; /* head of waiting srb list */
274 struct ScsiReqBlk
*active_srb
;
279 u8 target_id
; /* SCSI Target ID (SCSI Only) */
280 u8 target_lun
; /* SCSI Log. Unit (SCSI Only) */
284 u8 inquiry7
; /* To store Inquiry flags */
285 u8 sync_mode
; /* 0:async mode */
286 u8 min_nego_period
; /* for nego. */
287 u8 sync_period
; /* for reg. */
289 u8 sync_offset
; /* for reg. and nego.(low nibble) */
295 struct AdapterCtlBlk
{
296 struct Scsi_Host
*scsi_host
;
298 unsigned long io_port_base
;
299 unsigned long io_port_len
;
301 struct list_head dcb_list
; /* head of going dcb list */
302 struct DeviceCtlBlk
*dcb_run_robin
;
303 struct DeviceCtlBlk
*active_dcb
;
305 struct list_head srb_free_list
; /* head of free srb list */
306 struct ScsiReqBlk
*tmp_srb
;
307 struct timer_list waiting_timer
;
308 struct timer_list selto_timer
;
310 unsigned long last_reset
;
316 unsigned int irq_level
;
326 u8 dcb_map
[DC395x_MAX_SCSI_ID
];
327 struct DeviceCtlBlk
*children
[DC395x_MAX_SCSI_ID
][32];
333 struct ScsiReqBlk srb_array
[DC395x_MAX_SRB_CNT
];
334 struct ScsiReqBlk srb
;
336 struct NvRamType eeprom
; /* eeprom settings for this adapter */
340 /*---------------------------------------------------------------------------
342 ---------------------------------------------------------------------------*/
343 static void data_out_phase0(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
345 static void data_in_phase0(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
347 static void command_phase0(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
349 static void status_phase0(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
351 static void msgout_phase0(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
353 static void msgin_phase0(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
355 static void data_out_phase1(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
357 static void data_in_phase1(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
359 static void command_phase1(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
361 static void status_phase1(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
363 static void msgout_phase1(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
365 static void msgin_phase1(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
367 static void nop0(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
369 static void nop1(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
371 static void set_basic_config(struct AdapterCtlBlk
*acb
);
372 static void cleanup_after_transfer(struct AdapterCtlBlk
*acb
,
373 struct ScsiReqBlk
*srb
);
374 static void reset_scsi_bus(struct AdapterCtlBlk
*acb
);
375 static void data_io_transfer(struct AdapterCtlBlk
*acb
,
376 struct ScsiReqBlk
*srb
, u16 io_dir
);
377 static void disconnect(struct AdapterCtlBlk
*acb
);
378 static void reselect(struct AdapterCtlBlk
*acb
);
379 static u8
start_scsi(struct AdapterCtlBlk
*acb
, struct DeviceCtlBlk
*dcb
,
380 struct ScsiReqBlk
*srb
);
381 static inline void enable_msgout_abort(struct AdapterCtlBlk
*acb
,
382 struct ScsiReqBlk
*srb
);
383 static void build_srb(struct scsi_cmnd
*cmd
, struct DeviceCtlBlk
*dcb
,
384 struct ScsiReqBlk
*srb
);
385 static void doing_srb_done(struct AdapterCtlBlk
*acb
, u8 did_code
,
386 struct scsi_cmnd
*cmd
, u8 force
);
387 static void scsi_reset_detect(struct AdapterCtlBlk
*acb
);
388 static void pci_unmap_srb(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
);
389 static void pci_unmap_srb_sense(struct AdapterCtlBlk
*acb
,
390 struct ScsiReqBlk
*srb
);
391 static void srb_done(struct AdapterCtlBlk
*acb
, struct DeviceCtlBlk
*dcb
,
392 struct ScsiReqBlk
*srb
);
393 static void request_sense(struct AdapterCtlBlk
*acb
, struct DeviceCtlBlk
*dcb
,
394 struct ScsiReqBlk
*srb
);
395 static void set_xfer_rate(struct AdapterCtlBlk
*acb
,
396 struct DeviceCtlBlk
*dcb
);
397 static void waiting_timeout(struct timer_list
*t
);
400 /*---------------------------------------------------------------------------
402 ---------------------------------------------------------------------------*/
403 static u16 current_sync_offset
= 0;
405 static void *dc395x_scsi_phase0
[] = {
406 data_out_phase0
,/* phase:0 */
407 data_in_phase0
, /* phase:1 */
408 command_phase0
, /* phase:2 */
409 status_phase0
, /* phase:3 */
410 nop0
, /* phase:4 PH_BUS_FREE .. initial phase */
411 nop0
, /* phase:5 PH_BUS_FREE .. initial phase */
412 msgout_phase0
, /* phase:6 */
413 msgin_phase0
, /* phase:7 */
416 static void *dc395x_scsi_phase1
[] = {
417 data_out_phase1
,/* phase:0 */
418 data_in_phase1
, /* phase:1 */
419 command_phase1
, /* phase:2 */
420 status_phase1
, /* phase:3 */
421 nop1
, /* phase:4 PH_BUS_FREE .. initial phase */
422 nop1
, /* phase:5 PH_BUS_FREE .. initial phase */
423 msgout_phase1
, /* phase:6 */
424 msgin_phase1
, /* phase:7 */
428 *Fast20: 000 50ns, 20.0 MHz
430 * 010 100ns, 10.0 MHz
437 *Fast40(LVDS): 000 25ns, 40.0 MHz
440 * 011 100ns, 10.0 MHz
446 /*static u8 clock_period[] = {12,19,25,31,37,44,50,62};*/
448 /* real period:48ns,76ns,100ns,124ns,148ns,176ns,200ns,248ns */
449 static u8 clock_period
[] = { 12, 18, 25, 31, 37, 43, 50, 62 };
450 static u16 clock_speed
[] = { 200, 133, 100, 80, 67, 58, 50, 40 };
453 /*---------------------------------------------------------------------------
455 ---------------------------------------------------------------------------*/
457 * Module/boot parameters currently effect *all* instances of the
458 * card in the system.
462 * Command line parameters are stored in a structure below.
463 * These are the index's into the structure for the various
464 * command line options.
466 #define CFG_ADAPTER_ID 0
467 #define CFG_MAX_SPEED 1
468 #define CFG_DEV_MODE 2
469 #define CFG_ADAPTER_MODE 3
471 #define CFG_RESET_DELAY 5
473 #define CFG_NUM 6 /* number of configuration items */
477 * Value used to indicate that a command line override
478 * hasn't been used to modify the value.
480 #define CFG_PARAM_UNSET -1
484 * Hold command line parameters.
486 struct ParameterData
{
487 int value
; /* value of this setting */
488 int min
; /* minimum value */
489 int max
; /* maximum value */
490 int def
; /* default value */
491 int safe
; /* safe value */
493 static struct ParameterData cfg_data
[] = {
512 NTC_DO_PARITY_CHK
| NTC_DO_DISCONNECT
| NTC_DO_SYNC_NEGO
|
513 NTC_DO_WIDE_NEGO
| NTC_DO_TAG_QUEUEING
|
515 NTC_DO_PARITY_CHK
| NTC_DO_SEND_START
522 NAC_GT2DRIVES
| NAC_GREATER_1G
| NAC_POWERON_SCSI_RESET
523 /*| NAC_ACTIVE_NEG*/,
524 NAC_GT2DRIVES
| NAC_GREATER_1G
| NAC_POWERON_SCSI_RESET
| 0x08
530 3, /* 16 tags (??) */
544 * Safe settings. If set to zero the BIOS/default values with
545 * command line overrides will be used. If set to 1 then safe and
546 * slow settings will be used.
548 static bool use_safe_settings
= 0;
549 module_param_named(safe
, use_safe_settings
, bool, 0);
550 MODULE_PARM_DESC(safe
, "Use safe and slow settings only. Default: false");
553 module_param_named(adapter_id
, cfg_data
[CFG_ADAPTER_ID
].value
, int, 0);
554 MODULE_PARM_DESC(adapter_id
, "Adapter SCSI ID. Default 7 (0-15)");
556 module_param_named(max_speed
, cfg_data
[CFG_MAX_SPEED
].value
, int, 0);
557 MODULE_PARM_DESC(max_speed
, "Maximum bus speed. Default 1 (0-7) Speeds: 0=20, 1=13.3, 2=10, 3=8, 4=6.7, 5=5.8, 6=5, 7=4 Mhz");
559 module_param_named(dev_mode
, cfg_data
[CFG_DEV_MODE
].value
, int, 0);
560 MODULE_PARM_DESC(dev_mode
, "Device mode.");
562 module_param_named(adapter_mode
, cfg_data
[CFG_ADAPTER_MODE
].value
, int, 0);
563 MODULE_PARM_DESC(adapter_mode
, "Adapter mode.");
565 module_param_named(tags
, cfg_data
[CFG_TAGS
].value
, int, 0);
566 MODULE_PARM_DESC(tags
, "Number of tags (1<<x). Default 3 (0-5)");
568 module_param_named(reset_delay
, cfg_data
[CFG_RESET_DELAY
].value
, int, 0);
569 MODULE_PARM_DESC(reset_delay
, "Reset delay in seconds. Default 1 (0-180)");
573 * set_safe_settings - if the use_safe_settings option is set then
574 * set all values to the safe and slow values.
576 static void set_safe_settings(void)
578 if (use_safe_settings
)
582 dprintkl(KERN_INFO
, "Using safe settings.\n");
583 for (i
= 0; i
< CFG_NUM
; i
++)
585 cfg_data
[i
].value
= cfg_data
[i
].safe
;
592 * fix_settings - reset any boot parameters which are out of range
593 * back to the default values.
595 static void fix_settings(void)
600 "setup: AdapterId=%08x MaxSpeed=%08x DevMode=%08x "
601 "AdapterMode=%08x Tags=%08x ResetDelay=%08x\n",
602 cfg_data
[CFG_ADAPTER_ID
].value
,
603 cfg_data
[CFG_MAX_SPEED
].value
,
604 cfg_data
[CFG_DEV_MODE
].value
,
605 cfg_data
[CFG_ADAPTER_MODE
].value
,
606 cfg_data
[CFG_TAGS
].value
,
607 cfg_data
[CFG_RESET_DELAY
].value
);
608 for (i
= 0; i
< CFG_NUM
; i
++)
610 if (cfg_data
[i
].value
< cfg_data
[i
].min
611 || cfg_data
[i
].value
> cfg_data
[i
].max
)
612 cfg_data
[i
].value
= cfg_data
[i
].def
;
619 * Mapping from the eeprom delay index value (index into this array)
620 * to the number of actual seconds that the delay should be for.
622 static char eeprom_index_to_delay_map
[] =
623 { 1, 3, 5, 10, 16, 30, 60, 120 };
627 * eeprom_index_to_delay - Take the eeprom delay setting and convert it
628 * into a number of seconds.
630 * @eeprom: The eeprom structure in which we find the delay index to map.
632 static void eeprom_index_to_delay(struct NvRamType
*eeprom
)
634 eeprom
->delay_time
= eeprom_index_to_delay_map
[eeprom
->delay_time
];
639 * delay_to_eeprom_index - Take a delay in seconds and return the
640 * closest eeprom index which will delay for at least that amount of
643 * @delay: The delay, in seconds, to find the eeprom index for.
645 static int delay_to_eeprom_index(int delay
)
648 while (idx
< 7 && eeprom_index_to_delay_map
[idx
] < delay
)
655 * eeprom_override - Override the eeprom settings, in the provided
656 * eeprom structure, with values that have been set on the command
659 * @eeprom: The eeprom data to override with command line options.
661 static void eeprom_override(struct NvRamType
*eeprom
)
665 /* Adapter Settings */
666 if (cfg_data
[CFG_ADAPTER_ID
].value
!= CFG_PARAM_UNSET
)
667 eeprom
->scsi_id
= (u8
)cfg_data
[CFG_ADAPTER_ID
].value
;
669 if (cfg_data
[CFG_ADAPTER_MODE
].value
!= CFG_PARAM_UNSET
)
670 eeprom
->channel_cfg
= (u8
)cfg_data
[CFG_ADAPTER_MODE
].value
;
672 if (cfg_data
[CFG_RESET_DELAY
].value
!= CFG_PARAM_UNSET
)
673 eeprom
->delay_time
= delay_to_eeprom_index(
674 cfg_data
[CFG_RESET_DELAY
].value
);
676 if (cfg_data
[CFG_TAGS
].value
!= CFG_PARAM_UNSET
)
677 eeprom
->max_tag
= (u8
)cfg_data
[CFG_TAGS
].value
;
679 /* Device Settings */
680 for (id
= 0; id
< DC395x_MAX_SCSI_ID
; id
++) {
681 if (cfg_data
[CFG_DEV_MODE
].value
!= CFG_PARAM_UNSET
)
682 eeprom
->target
[id
].cfg0
=
683 (u8
)cfg_data
[CFG_DEV_MODE
].value
;
685 if (cfg_data
[CFG_MAX_SPEED
].value
!= CFG_PARAM_UNSET
)
686 eeprom
->target
[id
].period
=
687 (u8
)cfg_data
[CFG_MAX_SPEED
].value
;
693 /*---------------------------------------------------------------------------
694 ---------------------------------------------------------------------------*/
696 static unsigned int list_size(struct list_head
*head
)
698 unsigned int count
= 0;
699 struct list_head
*pos
;
700 list_for_each(pos
, head
)
706 static struct DeviceCtlBlk
*dcb_get_next(struct list_head
*head
,
707 struct DeviceCtlBlk
*pos
)
710 struct DeviceCtlBlk
* next
= NULL
;
711 struct DeviceCtlBlk
* i
;
713 if (list_empty(head
))
716 /* find supplied dcb and then select the next one */
717 list_for_each_entry(i
, head
, list
)
721 } else if (i
== pos
) {
724 /* if no next one take the head one (ie, wraparound) */
726 list_for_each_entry(i
, head
, list
) {
735 static void free_tag(struct DeviceCtlBlk
*dcb
, struct ScsiReqBlk
*srb
)
737 if (srb
->tag_number
< 255) {
738 dcb
->tag_mask
&= ~(1 << srb
->tag_number
); /* free tag mask */
739 srb
->tag_number
= 255;
744 /* Find cmd in SRB list */
745 static inline struct ScsiReqBlk
*find_cmd(struct scsi_cmnd
*cmd
,
746 struct list_head
*head
)
748 struct ScsiReqBlk
*i
;
749 list_for_each_entry(i
, head
, list
)
755 /* Sets the timer to wake us up */
756 static void waiting_set_timer(struct AdapterCtlBlk
*acb
, unsigned long to
)
758 if (timer_pending(&acb
->waiting_timer
))
760 if (time_before(jiffies
+ to
, acb
->last_reset
- HZ
/ 2))
761 acb
->waiting_timer
.expires
=
762 acb
->last_reset
- HZ
/ 2 + 1;
764 acb
->waiting_timer
.expires
= jiffies
+ to
+ 1;
765 add_timer(&acb
->waiting_timer
);
769 /* Send the next command from the waiting list to the bus */
770 static void waiting_process_next(struct AdapterCtlBlk
*acb
)
772 struct DeviceCtlBlk
*start
= NULL
;
773 struct DeviceCtlBlk
*pos
;
774 struct DeviceCtlBlk
*dcb
;
775 struct ScsiReqBlk
*srb
;
776 struct list_head
*dcb_list_head
= &acb
->dcb_list
;
779 || (acb
->acb_flag
& (RESET_DETECT
+ RESET_DONE
+ RESET_DEV
)))
782 if (timer_pending(&acb
->waiting_timer
))
783 del_timer(&acb
->waiting_timer
);
785 if (list_empty(dcb_list_head
))
789 * Find the starting dcb. Need to find it again in the list
790 * since the list may have changed since we set the ptr to it
792 list_for_each_entry(dcb
, dcb_list_head
, list
)
793 if (dcb
== acb
->dcb_run_robin
) {
798 /* This can happen! */
799 start
= list_entry(dcb_list_head
->next
, typeof(*start
), list
);
800 acb
->dcb_run_robin
= start
;
805 * Loop over the dcb, but we start somewhere (potentially) in
806 * the middle of the loop so we need to manully do this.
810 struct list_head
*waiting_list_head
= &pos
->srb_waiting_list
;
812 /* Make sure, the next another device gets scheduled ... */
813 acb
->dcb_run_robin
= dcb_get_next(dcb_list_head
,
816 if (list_empty(waiting_list_head
) ||
817 pos
->max_command
<= list_size(&pos
->srb_going_list
)) {
818 /* move to next dcb */
819 pos
= dcb_get_next(dcb_list_head
, pos
);
821 srb
= list_entry(waiting_list_head
->next
,
822 struct ScsiReqBlk
, list
);
824 /* Try to send to the bus */
825 if (!start_scsi(acb
, pos
, srb
))
826 list_move(&srb
->list
, &pos
->srb_going_list
);
828 waiting_set_timer(acb
, HZ
/50);
831 } while (pos
!= start
);
835 /* Wake up waiting queue */
836 static void waiting_timeout(struct timer_list
*t
)
839 struct AdapterCtlBlk
*acb
= from_timer(acb
, t
, waiting_timer
);
841 "waiting_timeout: Queue woken up by timer. acb=%p\n", acb
);
842 DC395x_LOCK_IO(acb
->scsi_host
, flags
);
843 waiting_process_next(acb
);
844 DC395x_UNLOCK_IO(acb
->scsi_host
, flags
);
848 /* Get the DCB for a given ID/LUN combination */
849 static struct DeviceCtlBlk
*find_dcb(struct AdapterCtlBlk
*acb
, u8 id
, u8 lun
)
851 return acb
->children
[id
][lun
];
855 /* Send SCSI Request Block (srb) to adapter (acb) */
856 static void send_srb(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
)
858 struct DeviceCtlBlk
*dcb
= srb
->dcb
;
860 if (dcb
->max_command
<= list_size(&dcb
->srb_going_list
) ||
862 (acb
->acb_flag
& (RESET_DETECT
+ RESET_DONE
+ RESET_DEV
))) {
863 list_add_tail(&srb
->list
, &dcb
->srb_waiting_list
);
864 waiting_process_next(acb
);
868 if (!start_scsi(acb
, dcb
, srb
)) {
869 list_add_tail(&srb
->list
, &dcb
->srb_going_list
);
871 list_add(&srb
->list
, &dcb
->srb_waiting_list
);
872 waiting_set_timer(acb
, HZ
/ 50);
876 /* Prepare SRB for being sent to Device DCB w/ command *cmd */
877 static void build_srb(struct scsi_cmnd
*cmd
, struct DeviceCtlBlk
*dcb
,
878 struct ScsiReqBlk
*srb
)
881 enum dma_data_direction dir
= cmd
->sc_data_direction
;
882 dprintkdbg(DBG_0
, "build_srb: (0x%p) <%02i-%i>\n",
883 cmd
, dcb
->target_id
, dcb
->target_lun
);
888 srb
->total_xfer_length
= 0;
889 srb
->sg_bus_addr
= 0;
891 srb
->adapter_status
= 0;
892 srb
->target_status
= 0;
897 srb
->retry_count
= 0;
898 srb
->tag_number
= TAG_NONE
;
899 srb
->scsi_phase
= PH_BUS_FREE
; /* initial phase */
900 srb
->end_message
= 0;
902 nseg
= scsi_dma_map(cmd
);
905 if (dir
== DMA_NONE
|| !nseg
) {
907 "build_srb: [0] len=%d buf=%p use_sg=%d !MAP=%08x\n",
908 cmd
->bufflen
, scsi_sglist(cmd
), scsi_sg_count(cmd
),
909 srb
->segment_x
[0].address
);
912 u32 reqlen
= scsi_bufflen(cmd
);
913 struct scatterlist
*sg
;
914 struct SGentry
*sgp
= srb
->segment_x
;
916 srb
->sg_count
= nseg
;
919 "build_srb: [n] len=%d buf=%p use_sg=%d segs=%d\n",
920 reqlen
, scsi_sglist(cmd
), scsi_sg_count(cmd
),
923 scsi_for_each_sg(cmd
, sg
, srb
->sg_count
, i
) {
924 u32 busaddr
= (u32
)sg_dma_address(sg
);
925 u32 seglen
= (u32
)sg
->length
;
926 sgp
[i
].address
= busaddr
;
927 sgp
[i
].length
= seglen
;
928 srb
->total_xfer_length
+= seglen
;
930 sgp
+= srb
->sg_count
- 1;
933 * adjust last page if too big as it is allocated
934 * on even page boundaries
936 if (srb
->total_xfer_length
> reqlen
) {
937 sgp
->length
-= (srb
->total_xfer_length
- reqlen
);
938 srb
->total_xfer_length
= reqlen
;
941 /* Fixup for WIDE padding - make sure length is even */
942 if (dcb
->sync_period
& WIDE_SYNC
&&
943 srb
->total_xfer_length
% 2) {
944 srb
->total_xfer_length
++;
948 srb
->sg_bus_addr
= dma_map_single(&dcb
->acb
->dev
->dev
,
949 srb
->segment_x
, SEGMENTX_LEN
, DMA_TO_DEVICE
);
951 dprintkdbg(DBG_SG
, "build_srb: [n] map sg %p->%08x(%05x)\n",
952 srb
->segment_x
, srb
->sg_bus_addr
, SEGMENTX_LEN
);
955 srb
->request_length
= srb
->total_xfer_length
;
960 * dc395x_queue_command - queue scsi command passed from the mid
961 * layer, invoke 'done' on completion
963 * @cmd: pointer to scsi command object
964 * @done: function pointer to be invoked on completion
966 * Returns 1 if the adapter (host) is busy, else returns 0. One
967 * reason for an adapter to be busy is that the number
968 * of outstanding queued commands is already equal to
969 * struct Scsi_Host::can_queue .
971 * Required: if struct Scsi_Host::can_queue is ever non-zero
972 * then this function is required.
974 * Locks: struct Scsi_Host::host_lock held on entry (with "irqsave")
975 * and is expected to be held on return.
978 static int dc395x_queue_command_lck(struct scsi_cmnd
*cmd
, void (*done
)(struct scsi_cmnd
*))
980 struct DeviceCtlBlk
*dcb
;
981 struct ScsiReqBlk
*srb
;
982 struct AdapterCtlBlk
*acb
=
983 (struct AdapterCtlBlk
*)cmd
->device
->host
->hostdata
;
984 dprintkdbg(DBG_0
, "queue_command: (0x%p) <%02i-%i> cmnd=0x%02x\n",
985 cmd
, cmd
->device
->id
, (u8
)cmd
->device
->lun
, cmd
->cmnd
[0]);
987 /* Assume BAD_TARGET; will be cleared later */
988 cmd
->result
= DID_BAD_TARGET
<< 16;
990 /* ignore invalid targets */
991 if (cmd
->device
->id
>= acb
->scsi_host
->max_id
||
992 cmd
->device
->lun
>= acb
->scsi_host
->max_lun
||
993 cmd
->device
->lun
>31) {
997 /* does the specified lun on the specified device exist */
998 if (!(acb
->dcb_map
[cmd
->device
->id
] & (1 << cmd
->device
->lun
))) {
999 dprintkl(KERN_INFO
, "queue_command: Ignore target <%02i-%i>\n",
1000 cmd
->device
->id
, (u8
)cmd
->device
->lun
);
1004 /* do we have a DCB for the device */
1005 dcb
= find_dcb(acb
, cmd
->device
->id
, cmd
->device
->lun
);
1007 /* should never happen */
1008 dprintkl(KERN_ERR
, "queue_command: No such device <%02i-%i>",
1009 cmd
->device
->id
, (u8
)cmd
->device
->lun
);
1013 /* set callback and clear result in the command */
1014 cmd
->scsi_done
= done
;
1017 srb
= list_first_entry_or_null(&acb
->srb_free_list
,
1018 struct ScsiReqBlk
, list
);
1021 * Return 1 since we are unable to queue this command at this
1024 dprintkdbg(DBG_0
, "queue_command: No free srb's\n");
1027 list_del(&srb
->list
);
1029 build_srb(cmd
, dcb
, srb
);
1031 if (!list_empty(&dcb
->srb_waiting_list
)) {
1032 /* append to waiting queue */
1033 list_add_tail(&srb
->list
, &dcb
->srb_waiting_list
);
1034 waiting_process_next(acb
);
1036 /* process immediately */
1039 dprintkdbg(DBG_1
, "queue_command: (0x%p) done\n", cmd
);
1044 * Complete the command immediatey, and then return 0 to
1045 * indicate that we have handled the command. This is usually
1046 * done when the commad is for things like non existent
1053 static DEF_SCSI_QCMD(dc395x_queue_command
)
1055 static void dump_register_info(struct AdapterCtlBlk
*acb
,
1056 struct DeviceCtlBlk
*dcb
, struct ScsiReqBlk
*srb
)
1059 struct pci_dev
*dev
= acb
->dev
;
1060 pci_read_config_word(dev
, PCI_STATUS
, &pstat
);
1062 dcb
= acb
->active_dcb
;
1064 srb
= dcb
->active_srb
;
1067 dprintkl(KERN_INFO
, "dump: srb=%p cmd=%p OOOPS!\n",
1070 dprintkl(KERN_INFO
, "dump: srb=%p cmd=%p "
1071 "cmnd=0x%02x <%02i-%i>\n",
1073 srb
->cmd
->cmnd
[0], srb
->cmd
->device
->id
,
1074 (u8
)srb
->cmd
->device
->lun
);
1075 printk(" sglist=%p cnt=%i idx=%i len=%zu\n",
1076 srb
->segment_x
, srb
->sg_count
, srb
->sg_index
,
1077 srb
->total_xfer_length
);
1078 printk(" state=0x%04x status=0x%02x phase=0x%02x (%sconn.)\n",
1079 srb
->state
, srb
->status
, srb
->scsi_phase
,
1080 (acb
->active_dcb
) ? "" : "not");
1082 dprintkl(KERN_INFO
, "dump: SCSI{status=0x%04x fifocnt=0x%02x "
1083 "signals=0x%02x irqstat=0x%02x sync=0x%02x target=0x%02x "
1084 "rselid=0x%02x ctr=0x%08x irqen=0x%02x config=0x%04x "
1085 "config2=0x%02x cmd=0x%02x selto=0x%02x}\n",
1086 DC395x_read16(acb
, TRM_S1040_SCSI_STATUS
),
1087 DC395x_read8(acb
, TRM_S1040_SCSI_FIFOCNT
),
1088 DC395x_read8(acb
, TRM_S1040_SCSI_SIGNAL
),
1089 DC395x_read8(acb
, TRM_S1040_SCSI_INTSTATUS
),
1090 DC395x_read8(acb
, TRM_S1040_SCSI_SYNC
),
1091 DC395x_read8(acb
, TRM_S1040_SCSI_TARGETID
),
1092 DC395x_read8(acb
, TRM_S1040_SCSI_IDMSG
),
1093 DC395x_read32(acb
, TRM_S1040_SCSI_COUNTER
),
1094 DC395x_read8(acb
, TRM_S1040_SCSI_INTEN
),
1095 DC395x_read16(acb
, TRM_S1040_SCSI_CONFIG0
),
1096 DC395x_read8(acb
, TRM_S1040_SCSI_CONFIG2
),
1097 DC395x_read8(acb
, TRM_S1040_SCSI_COMMAND
),
1098 DC395x_read8(acb
, TRM_S1040_SCSI_TIMEOUT
));
1099 dprintkl(KERN_INFO
, "dump: DMA{cmd=0x%04x fifocnt=0x%02x fstat=0x%02x "
1100 "irqstat=0x%02x irqen=0x%02x cfg=0x%04x tctr=0x%08x "
1101 "ctctr=0x%08x addr=0x%08x:0x%08x}\n",
1102 DC395x_read16(acb
, TRM_S1040_DMA_COMMAND
),
1103 DC395x_read8(acb
, TRM_S1040_DMA_FIFOCNT
),
1104 DC395x_read8(acb
, TRM_S1040_DMA_FIFOSTAT
),
1105 DC395x_read8(acb
, TRM_S1040_DMA_STATUS
),
1106 DC395x_read8(acb
, TRM_S1040_DMA_INTEN
),
1107 DC395x_read16(acb
, TRM_S1040_DMA_CONFIG
),
1108 DC395x_read32(acb
, TRM_S1040_DMA_XCNT
),
1109 DC395x_read32(acb
, TRM_S1040_DMA_CXCNT
),
1110 DC395x_read32(acb
, TRM_S1040_DMA_XHIGHADDR
),
1111 DC395x_read32(acb
, TRM_S1040_DMA_XLOWADDR
));
1112 dprintkl(KERN_INFO
, "dump: gen{gctrl=0x%02x gstat=0x%02x gtmr=0x%02x} "
1113 "pci{status=0x%04x}\n",
1114 DC395x_read8(acb
, TRM_S1040_GEN_CONTROL
),
1115 DC395x_read8(acb
, TRM_S1040_GEN_STATUS
),
1116 DC395x_read8(acb
, TRM_S1040_GEN_TIMER
),
1121 static inline void clear_fifo(struct AdapterCtlBlk
*acb
, char *txt
)
1123 #if debug_enabled(DBG_FIFO)
1124 u8 lines
= DC395x_read8(acb
, TRM_S1040_SCSI_SIGNAL
);
1125 u8 fifocnt
= DC395x_read8(acb
, TRM_S1040_SCSI_FIFOCNT
);
1126 if (!(fifocnt
& 0x40))
1127 dprintkdbg(DBG_FIFO
,
1128 "clear_fifo: (%i bytes) on phase %02x in %s\n",
1129 fifocnt
& 0x3f, lines
, txt
);
1131 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_CLRFIFO
);
1135 static void reset_dev_param(struct AdapterCtlBlk
*acb
)
1137 struct DeviceCtlBlk
*dcb
;
1138 struct NvRamType
*eeprom
= &acb
->eeprom
;
1139 dprintkdbg(DBG_0
, "reset_dev_param: acb=%p\n", acb
);
1141 list_for_each_entry(dcb
, &acb
->dcb_list
, list
) {
1144 dcb
->sync_mode
&= ~(SYNC_NEGO_DONE
+ WIDE_NEGO_DONE
);
1145 dcb
->sync_period
= 0;
1146 dcb
->sync_offset
= 0;
1148 dcb
->dev_mode
= eeprom
->target
[dcb
->target_id
].cfg0
;
1149 period_index
= eeprom
->target
[dcb
->target_id
].period
& 0x07;
1150 dcb
->min_nego_period
= clock_period
[period_index
];
1151 if (!(dcb
->dev_mode
& NTC_DO_WIDE_NEGO
)
1152 || !(acb
->config
& HCC_WIDE_CARD
))
1153 dcb
->sync_mode
&= ~WIDE_NEGO_ENABLE
;
1159 * perform a hard reset on the SCSI bus
1160 * @cmd - some command for this host (for fetching hooks)
1161 * Returns: SUCCESS (0x2002) on success, else FAILED (0x2003).
1163 static int __dc395x_eh_bus_reset(struct scsi_cmnd
*cmd
)
1165 struct AdapterCtlBlk
*acb
=
1166 (struct AdapterCtlBlk
*)cmd
->device
->host
->hostdata
;
1168 "eh_bus_reset: (0%p) target=<%02i-%i> cmd=%p\n",
1169 cmd
, cmd
->device
->id
, (u8
)cmd
->device
->lun
, cmd
);
1171 if (timer_pending(&acb
->waiting_timer
))
1172 del_timer(&acb
->waiting_timer
);
1177 DC395x_write8(acb
, TRM_S1040_DMA_INTEN
, 0x00);
1178 DC395x_write8(acb
, TRM_S1040_SCSI_INTEN
, 0x00);
1179 DC395x_write8(acb
, TRM_S1040_SCSI_CONTROL
, DO_RSTMODULE
);
1180 DC395x_write8(acb
, TRM_S1040_DMA_CONTROL
, DMARESETMODULE
);
1182 reset_scsi_bus(acb
);
1185 /* We may be in serious trouble. Wait some seconds */
1187 jiffies
+ 3 * HZ
/ 2 +
1188 HZ
* acb
->eeprom
.delay_time
;
1191 * re-enable interrupt
1193 /* Clear SCSI FIFO */
1194 DC395x_write8(acb
, TRM_S1040_DMA_CONTROL
, CLRXFIFO
);
1195 clear_fifo(acb
, "eh_bus_reset");
1196 /* Delete pending IRQ */
1197 DC395x_read8(acb
, TRM_S1040_SCSI_INTSTATUS
);
1198 set_basic_config(acb
);
1200 reset_dev_param(acb
);
1201 doing_srb_done(acb
, DID_RESET
, cmd
, 0);
1202 acb
->active_dcb
= NULL
;
1203 acb
->acb_flag
= 0; /* RESET_DETECT, RESET_DONE ,RESET_DEV */
1204 waiting_process_next(acb
);
1209 static int dc395x_eh_bus_reset(struct scsi_cmnd
*cmd
)
1213 spin_lock_irq(cmd
->device
->host
->host_lock
);
1214 rc
= __dc395x_eh_bus_reset(cmd
);
1215 spin_unlock_irq(cmd
->device
->host
->host_lock
);
1221 * abort an errant SCSI command
1222 * @cmd - command to be aborted
1223 * Returns: SUCCESS (0x2002) on success, else FAILED (0x2003).
1225 static int dc395x_eh_abort(struct scsi_cmnd
*cmd
)
1228 * Look into our command queues: If it has not been sent already,
1229 * we remove it and return success. Otherwise fail.
1231 struct AdapterCtlBlk
*acb
=
1232 (struct AdapterCtlBlk
*)cmd
->device
->host
->hostdata
;
1233 struct DeviceCtlBlk
*dcb
;
1234 struct ScsiReqBlk
*srb
;
1235 dprintkl(KERN_INFO
, "eh_abort: (0x%p) target=<%02i-%i> cmd=%p\n",
1236 cmd
, cmd
->device
->id
, (u8
)cmd
->device
->lun
, cmd
);
1238 dcb
= find_dcb(acb
, cmd
->device
->id
, cmd
->device
->lun
);
1240 dprintkl(KERN_DEBUG
, "eh_abort: No such device\n");
1244 srb
= find_cmd(cmd
, &dcb
->srb_waiting_list
);
1246 list_del(&srb
->list
);
1247 pci_unmap_srb_sense(acb
, srb
);
1248 pci_unmap_srb(acb
, srb
);
1250 list_add_tail(&srb
->list
, &acb
->srb_free_list
);
1251 dprintkl(KERN_DEBUG
, "eh_abort: Command was waiting\n");
1252 cmd
->result
= DID_ABORT
<< 16;
1255 srb
= find_cmd(cmd
, &dcb
->srb_going_list
);
1257 dprintkl(KERN_DEBUG
, "eh_abort: Command in progress\n");
1258 /* XXX: Should abort the command here */
1260 dprintkl(KERN_DEBUG
, "eh_abort: Command not found\n");
1267 static void build_sdtr(struct AdapterCtlBlk
*acb
, struct DeviceCtlBlk
*dcb
,
1268 struct ScsiReqBlk
*srb
)
1270 u8
*ptr
= srb
->msgout_buf
+ srb
->msg_count
;
1271 if (srb
->msg_count
> 1) {
1273 "build_sdtr: msgout_buf BUSY (%i: %02x %02x)\n",
1274 srb
->msg_count
, srb
->msgout_buf
[0],
1275 srb
->msgout_buf
[1]);
1278 if (!(dcb
->dev_mode
& NTC_DO_SYNC_NEGO
)) {
1279 dcb
->sync_offset
= 0;
1280 dcb
->min_nego_period
= 200 >> 2;
1281 } else if (dcb
->sync_offset
== 0)
1282 dcb
->sync_offset
= SYNC_NEGO_OFFSET
;
1284 *ptr
++ = MSG_EXTENDED
; /* (01h) */
1285 *ptr
++ = 3; /* length */
1286 *ptr
++ = EXTENDED_SDTR
; /* (01h) */
1287 *ptr
++ = dcb
->min_nego_period
; /* Transfer period (in 4ns) */
1288 *ptr
++ = dcb
->sync_offset
; /* Transfer period (max. REQ/ACK dist) */
1289 srb
->msg_count
+= 5;
1290 srb
->state
|= SRB_DO_SYNC_NEGO
;
1295 static void build_wdtr(struct AdapterCtlBlk
*acb
, struct DeviceCtlBlk
*dcb
,
1296 struct ScsiReqBlk
*srb
)
1298 u8 wide
= ((dcb
->dev_mode
& NTC_DO_WIDE_NEGO
) &
1299 (acb
->config
& HCC_WIDE_CARD
)) ? 1 : 0;
1300 u8
*ptr
= srb
->msgout_buf
+ srb
->msg_count
;
1301 if (srb
->msg_count
> 1) {
1303 "build_wdtr: msgout_buf BUSY (%i: %02x %02x)\n",
1304 srb
->msg_count
, srb
->msgout_buf
[0],
1305 srb
->msgout_buf
[1]);
1308 *ptr
++ = MSG_EXTENDED
; /* (01h) */
1309 *ptr
++ = 2; /* length */
1310 *ptr
++ = EXTENDED_WDTR
; /* (03h) */
1312 srb
->msg_count
+= 4;
1313 srb
->state
|= SRB_DO_WIDE_NEGO
;
1318 /* Timer to work around chip flaw: When selecting and the bus is
1319 * busy, we sometimes miss a Selection timeout IRQ */
1320 void selection_timeout_missed(unsigned long ptr
);
1321 /* Sets the timer to wake us up */
1322 static void selto_timer(struct AdapterCtlBlk
*acb
)
1324 if (timer_pending(&acb
->selto_timer
))
1326 acb
->selto_timer
.function
= selection_timeout_missed
;
1327 acb
->selto_timer
.data
= (unsigned long) acb
;
1329 (jiffies
+ HZ
, acb
->last_reset
+ HZ
/ 2))
1330 acb
->selto_timer
.expires
=
1331 acb
->last_reset
+ HZ
/ 2 + 1;
1333 acb
->selto_timer
.expires
= jiffies
+ HZ
+ 1;
1334 add_timer(&acb
->selto_timer
);
1338 void selection_timeout_missed(unsigned long ptr
)
1340 unsigned long flags
;
1341 struct AdapterCtlBlk
*acb
= (struct AdapterCtlBlk
*)ptr
;
1342 struct ScsiReqBlk
*srb
;
1343 dprintkl(KERN_DEBUG
, "Chip forgot to produce SelTO IRQ!\n");
1344 if (!acb
->active_dcb
|| !acb
->active_dcb
->active_srb
) {
1345 dprintkl(KERN_DEBUG
, "... but no cmd pending? Oops!\n");
1348 DC395x_LOCK_IO(acb
->scsi_host
, flags
);
1349 srb
= acb
->active_dcb
->active_srb
;
1351 DC395x_UNLOCK_IO(acb
->scsi_host
, flags
);
1356 static u8
start_scsi(struct AdapterCtlBlk
* acb
, struct DeviceCtlBlk
* dcb
,
1357 struct ScsiReqBlk
* srb
)
1359 u16 __maybe_unused s_stat2
, return_code
;
1360 u8 s_stat
, scsicommand
, i
, identify_message
;
1362 dprintkdbg(DBG_0
, "start_scsi: (0x%p) <%02i-%i> srb=%p\n",
1363 dcb
->target_id
, dcb
->target_lun
, srb
);
1365 srb
->tag_number
= TAG_NONE
; /* acb->tag_max_num: had error read in eeprom */
1367 s_stat
= DC395x_read8(acb
, TRM_S1040_SCSI_SIGNAL
);
1369 s_stat2
= DC395x_read16(acb
, TRM_S1040_SCSI_STATUS
);
1371 if (s_stat
& 0x20 /* s_stat2 & 0x02000 */ ) {
1372 dprintkdbg(DBG_KG
, "start_scsi: (0x%p) BUSY %02x %04x\n",
1377 * We could, BUT: Sometimes the TRM_S1040 misses to produce a Selection
1378 * Timeout, a Disconnect or a Reselection IRQ, so we would be screwed!
1379 * (This is likely to be a bug in the hardware. Obviously, most people
1380 * only have one initiator per SCSI bus.)
1381 * Instead let this fail and have the timer make sure the command is
1382 * tried again after a short time
1384 /*selto_timer (acb); */
1388 if (acb
->active_dcb
) {
1389 dprintkl(KERN_DEBUG
, "start_scsi: (0x%p) Attempt to start a"
1390 "command while another command (0x%p) is active.",
1392 acb
->active_dcb
->active_srb
?
1393 acb
->active_dcb
->active_srb
->cmd
: 0);
1396 if (DC395x_read16(acb
, TRM_S1040_SCSI_STATUS
) & SCSIINTERRUPT
) {
1397 dprintkdbg(DBG_KG
, "start_scsi: (0x%p) Failed (busy)\n", srb
->cmd
);
1400 /* Allow starting of SCSI commands half a second before we allow the mid-level
1401 * to queue them again after a reset */
1402 if (time_before(jiffies
, acb
->last_reset
- HZ
/ 2)) {
1403 dprintkdbg(DBG_KG
, "start_scsi: Refuse cmds (reset wait)\n");
1408 clear_fifo(acb
, "start_scsi");
1409 DC395x_write8(acb
, TRM_S1040_SCSI_HOSTID
, acb
->scsi_host
->this_id
);
1410 DC395x_write8(acb
, TRM_S1040_SCSI_TARGETID
, dcb
->target_id
);
1411 DC395x_write8(acb
, TRM_S1040_SCSI_SYNC
, dcb
->sync_period
);
1412 DC395x_write8(acb
, TRM_S1040_SCSI_OFFSET
, dcb
->sync_offset
);
1413 srb
->scsi_phase
= PH_BUS_FREE
; /* initial phase */
1415 identify_message
= dcb
->identify_msg
;
1416 /*DC395x_TRM_write8(TRM_S1040_SCSI_IDMSG, identify_message); */
1417 /* Don't allow disconnection for AUTO_REQSENSE: Cont.All.Cond.! */
1418 if (srb
->flag
& AUTO_REQSENSE
)
1419 identify_message
&= 0xBF;
1421 if (((srb
->cmd
->cmnd
[0] == INQUIRY
)
1422 || (srb
->cmd
->cmnd
[0] == REQUEST_SENSE
)
1423 || (srb
->flag
& AUTO_REQSENSE
))
1424 && (((dcb
->sync_mode
& WIDE_NEGO_ENABLE
)
1425 && !(dcb
->sync_mode
& WIDE_NEGO_DONE
))
1426 || ((dcb
->sync_mode
& SYNC_NEGO_ENABLE
)
1427 && !(dcb
->sync_mode
& SYNC_NEGO_DONE
)))
1428 && (dcb
->target_lun
== 0)) {
1429 srb
->msgout_buf
[0] = identify_message
;
1431 scsicommand
= SCMD_SEL_ATNSTOP
;
1432 srb
->state
= SRB_MSGOUT
;
1434 if (dcb
->sync_mode
& WIDE_NEGO_ENABLE
1435 && dcb
->inquiry7
& SCSI_INQ_WBUS16
) {
1436 build_wdtr(acb
, dcb
, srb
);
1440 if (dcb
->sync_mode
& SYNC_NEGO_ENABLE
1441 && dcb
->inquiry7
& SCSI_INQ_SYNC
) {
1442 build_sdtr(acb
, dcb
, srb
);
1445 if (dcb
->sync_mode
& WIDE_NEGO_ENABLE
1446 && dcb
->inquiry7
& SCSI_INQ_WBUS16
) {
1447 build_wdtr(acb
, dcb
, srb
);
1452 /* Send identify message */
1453 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, identify_message
);
1455 scsicommand
= SCMD_SEL_ATN
;
1456 srb
->state
= SRB_START_
;
1457 #ifndef DC395x_NO_TAGQ
1458 if ((dcb
->sync_mode
& EN_TAG_QUEUEING
)
1459 && (identify_message
& 0xC0)) {
1460 /* Send Tag message */
1463 while (tag_mask
& dcb
->tag_mask
1464 && tag_number
< dcb
->max_command
) {
1465 tag_mask
= tag_mask
<< 1;
1468 if (tag_number
>= dcb
->max_command
) {
1469 dprintkl(KERN_WARNING
, "start_scsi: (0x%p) "
1470 "Out of tags target=<%02i-%i>)\n",
1471 srb
->cmd
, srb
->cmd
->device
->id
,
1472 (u8
)srb
->cmd
->device
->lun
);
1473 srb
->state
= SRB_READY
;
1474 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
,
1479 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, MSG_SIMPLE_QTAG
);
1480 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, tag_number
);
1481 dcb
->tag_mask
|= tag_mask
;
1482 srb
->tag_number
= tag_number
;
1483 scsicommand
= SCMD_SEL_ATN3
;
1484 srb
->state
= SRB_START_
;
1488 /* Send CDB ..command block ......... */
1489 dprintkdbg(DBG_KG
, "start_scsi: (0x%p) <%02i-%i> cmnd=0x%02x tag=%i\n",
1490 srb
->cmd
, srb
->cmd
->device
->id
, (u8
)srb
->cmd
->device
->lun
,
1491 srb
->cmd
->cmnd
[0], srb
->tag_number
);
1492 if (srb
->flag
& AUTO_REQSENSE
) {
1493 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, REQUEST_SENSE
);
1494 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, (dcb
->target_lun
<< 5));
1495 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, 0);
1496 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, 0);
1497 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, SCSI_SENSE_BUFFERSIZE
);
1498 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, 0);
1500 ptr
= (u8
*)srb
->cmd
->cmnd
;
1501 for (i
= 0; i
< srb
->cmd
->cmd_len
; i
++)
1502 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, *ptr
++);
1505 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
,
1506 DO_HWRESELECT
| DO_DATALATCH
);
1507 if (DC395x_read16(acb
, TRM_S1040_SCSI_STATUS
) & SCSIINTERRUPT
) {
1509 * If start_scsi return 1:
1510 * we caught an interrupt (must be reset or reselection ... )
1511 * : Let's process it first!
1513 dprintkdbg(DBG_0
, "start_scsi: (0x%p) <%02i-%i> Failed - busy\n",
1514 srb
->cmd
, dcb
->target_id
, dcb
->target_lun
);
1515 srb
->state
= SRB_READY
;
1519 /* This IRQ should NOT get lost, as we did not acknowledge it */
1522 * If start_scsi returns 0:
1523 * we know that the SCSI processor is free
1525 srb
->scsi_phase
= PH_BUS_FREE
; /* initial phase */
1526 dcb
->active_srb
= srb
;
1527 acb
->active_dcb
= dcb
;
1529 /* it's important for atn stop */
1530 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
,
1531 DO_DATALATCH
| DO_HWRESELECT
);
1533 DC395x_write8(acb
, TRM_S1040_SCSI_COMMAND
, scsicommand
);
1539 #define DC395x_ENABLE_MSGOUT \
1540 DC395x_write16 (acb, TRM_S1040_SCSI_CONTROL, DO_SETATN); \
1541 srb->state |= SRB_MSGOUT
1545 static inline void enable_msgout_abort(struct AdapterCtlBlk
*acb
,
1546 struct ScsiReqBlk
*srb
)
1548 srb
->msgout_buf
[0] = ABORT
;
1550 DC395x_ENABLE_MSGOUT
;
1551 srb
->state
&= ~SRB_MSGIN
;
1552 srb
->state
|= SRB_MSGOUT
;
1557 * dc395x_handle_interrupt - Handle an interrupt that has been confirmed to
1558 * have been triggered for this card.
1560 * @acb: a pointer to the adpter control block
1561 * @scsi_status: the status return when we checked the card
1563 static void dc395x_handle_interrupt(struct AdapterCtlBlk
*acb
,
1566 struct DeviceCtlBlk
*dcb
;
1567 struct ScsiReqBlk
*srb
;
1570 unsigned long flags
;
1571 void (*dc395x_statev
)(struct AdapterCtlBlk
*, struct ScsiReqBlk
*,
1574 DC395x_LOCK_IO(acb
->scsi_host
, flags
);
1576 /* This acknowledges the IRQ */
1577 scsi_intstatus
= DC395x_read8(acb
, TRM_S1040_SCSI_INTSTATUS
);
1578 if ((scsi_status
& 0x2007) == 0x2002)
1579 dprintkl(KERN_DEBUG
,
1580 "COP after COP completed? %04x\n", scsi_status
);
1581 if (debug_enabled(DBG_KG
)) {
1582 if (scsi_intstatus
& INT_SELTIMEOUT
)
1583 dprintkdbg(DBG_KG
, "handle_interrupt: Selection timeout\n");
1585 /*dprintkl(KERN_DEBUG, "handle_interrupt: intstatus = 0x%02x ", scsi_intstatus); */
1587 if (timer_pending(&acb
->selto_timer
))
1588 del_timer(&acb
->selto_timer
);
1590 if (scsi_intstatus
& (INT_SELTIMEOUT
| INT_DISCONNECT
)) {
1591 disconnect(acb
); /* bus free interrupt */
1594 if (scsi_intstatus
& INT_RESELECTED
) {
1598 if (scsi_intstatus
& INT_SELECT
) {
1599 dprintkl(KERN_INFO
, "Host does not support target mode!\n");
1602 if (scsi_intstatus
& INT_SCSIRESET
) {
1603 scsi_reset_detect(acb
);
1606 if (scsi_intstatus
& (INT_BUSSERVICE
| INT_CMDDONE
)) {
1607 dcb
= acb
->active_dcb
;
1609 dprintkl(KERN_DEBUG
,
1610 "Oops: BusService (%04x %02x) w/o ActiveDCB!\n",
1611 scsi_status
, scsi_intstatus
);
1614 srb
= dcb
->active_srb
;
1615 if (dcb
->flag
& ABORT_DEV_
) {
1616 dprintkdbg(DBG_0
, "MsgOut Abort Device.....\n");
1617 enable_msgout_abort(acb
, srb
);
1620 /* software sequential machine */
1621 phase
= (u16
)srb
->scsi_phase
;
1625 * call dc395x_scsi_phase0[]... "phase entry"
1626 * handle every phase before start transfer
1628 /* data_out_phase0, phase:0 */
1629 /* data_in_phase0, phase:1 */
1630 /* command_phase0, phase:2 */
1631 /* status_phase0, phase:3 */
1632 /* nop0, phase:4 PH_BUS_FREE .. initial phase */
1633 /* nop0, phase:5 PH_BUS_FREE .. initial phase */
1634 /* msgout_phase0, phase:6 */
1635 /* msgin_phase0, phase:7 */
1636 dc395x_statev
= dc395x_scsi_phase0
[phase
];
1637 dc395x_statev(acb
, srb
, &scsi_status
);
1640 * if there were any exception occurred scsi_status
1641 * will be modify to bus free phase new scsi_status
1642 * transfer out from ... previous dc395x_statev
1644 srb
->scsi_phase
= scsi_status
& PHASEMASK
;
1645 phase
= (u16
)scsi_status
& PHASEMASK
;
1648 * call dc395x_scsi_phase1[]... "phase entry" handle
1649 * every phase to do transfer
1651 /* data_out_phase1, phase:0 */
1652 /* data_in_phase1, phase:1 */
1653 /* command_phase1, phase:2 */
1654 /* status_phase1, phase:3 */
1655 /* nop1, phase:4 PH_BUS_FREE .. initial phase */
1656 /* nop1, phase:5 PH_BUS_FREE .. initial phase */
1657 /* msgout_phase1, phase:6 */
1658 /* msgin_phase1, phase:7 */
1659 dc395x_statev
= dc395x_scsi_phase1
[phase
];
1660 dc395x_statev(acb
, srb
, &scsi_status
);
1663 DC395x_UNLOCK_IO(acb
->scsi_host
, flags
);
1667 static irqreturn_t
dc395x_interrupt(int irq
, void *dev_id
)
1669 struct AdapterCtlBlk
*acb
= dev_id
;
1672 irqreturn_t handled
= IRQ_NONE
;
1675 * Check for pending interrupt
1677 scsi_status
= DC395x_read16(acb
, TRM_S1040_SCSI_STATUS
);
1678 dma_status
= DC395x_read8(acb
, TRM_S1040_DMA_STATUS
);
1679 if (scsi_status
& SCSIINTERRUPT
) {
1680 /* interrupt pending - let's process it! */
1681 dc395x_handle_interrupt(acb
, scsi_status
);
1682 handled
= IRQ_HANDLED
;
1684 else if (dma_status
& 0x20) {
1685 /* Error from the DMA engine */
1686 dprintkl(KERN_INFO
, "Interrupt from DMA engine: 0x%02x!\n", dma_status
);
1688 dprintkl(KERN_INFO
, "This means DMA error! Try to handle ...\n");
1689 if (acb
->active_dcb
) {
1690 acb
->active_dcb
-> flag
|= ABORT_DEV_
;
1691 if (acb
->active_dcb
->active_srb
)
1692 enable_msgout_abort(acb
, acb
->active_dcb
->active_srb
);
1694 DC395x_write8(acb
, TRM_S1040_DMA_CONTROL
, ABORTXFER
| CLRXFIFO
);
1696 dprintkl(KERN_INFO
, "Ignoring DMA error (probably a bad thing) ...\n");
1699 handled
= IRQ_HANDLED
;
1706 static void msgout_phase0(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
1709 dprintkdbg(DBG_0
, "msgout_phase0: (0x%p)\n", srb
->cmd
);
1710 if (srb
->state
& (SRB_UNEXPECT_RESEL
+ SRB_ABORT_SENT
))
1711 *pscsi_status
= PH_BUS_FREE
; /*.. initial phase */
1713 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_DATALATCH
); /* it's important for atn stop */
1714 srb
->state
&= ~SRB_MSGOUT
;
1718 static void msgout_phase1(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
1723 dprintkdbg(DBG_0
, "msgout_phase1: (0x%p)\n", srb
->cmd
);
1725 clear_fifo(acb
, "msgout_phase1");
1726 if (!(srb
->state
& SRB_MSGOUT
)) {
1727 srb
->state
|= SRB_MSGOUT
;
1728 dprintkl(KERN_DEBUG
,
1729 "msgout_phase1: (0x%p) Phase unexpected\n",
1730 srb
->cmd
); /* So what ? */
1732 if (!srb
->msg_count
) {
1733 dprintkdbg(DBG_0
, "msgout_phase1: (0x%p) NOP msg\n",
1735 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, MSG_NOP
);
1736 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_DATALATCH
); /* it's important for atn stop */
1737 DC395x_write8(acb
, TRM_S1040_SCSI_COMMAND
, SCMD_FIFO_OUT
);
1740 ptr
= (u8
*)srb
->msgout_buf
;
1741 for (i
= 0; i
< srb
->msg_count
; i
++)
1742 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, *ptr
++);
1744 if (srb
->msgout_buf
[0] == MSG_ABORT
)
1745 srb
->state
= SRB_ABORT_SENT
;
1747 DC395x_write8(acb
, TRM_S1040_SCSI_COMMAND
, SCMD_FIFO_OUT
);
1751 static void command_phase0(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
1754 dprintkdbg(DBG_0
, "command_phase0: (0x%p)\n", srb
->cmd
);
1755 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_DATALATCH
);
1759 static void command_phase1(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
1762 struct DeviceCtlBlk
*dcb
;
1765 dprintkdbg(DBG_0
, "command_phase1: (0x%p)\n", srb
->cmd
);
1767 clear_fifo(acb
, "command_phase1");
1768 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_CLRATN
);
1769 if (!(srb
->flag
& AUTO_REQSENSE
)) {
1770 ptr
= (u8
*)srb
->cmd
->cmnd
;
1771 for (i
= 0; i
< srb
->cmd
->cmd_len
; i
++) {
1772 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, *ptr
);
1776 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, REQUEST_SENSE
);
1777 dcb
= acb
->active_dcb
;
1779 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, (dcb
->target_lun
<< 5));
1780 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, 0);
1781 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, 0);
1782 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, SCSI_SENSE_BUFFERSIZE
);
1783 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, 0);
1785 srb
->state
|= SRB_COMMAND
;
1786 /* it's important for atn stop */
1787 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_DATALATCH
);
1789 DC395x_write8(acb
, TRM_S1040_SCSI_COMMAND
, SCMD_FIFO_OUT
);
1794 * Verify that the remaining space in the hw sg lists is the same as
1795 * the count of remaining bytes in srb->total_xfer_length
1797 static void sg_verify_length(struct ScsiReqBlk
*srb
)
1799 if (debug_enabled(DBG_SG
)) {
1801 unsigned idx
= srb
->sg_index
;
1802 struct SGentry
*psge
= srb
->segment_x
+ idx
;
1803 for (; idx
< srb
->sg_count
; psge
++, idx
++)
1804 len
+= psge
->length
;
1805 if (len
!= srb
->total_xfer_length
)
1807 "Inconsistent SRB S/G lengths (Tot=%i, Count=%i) !!\n",
1808 srb
->total_xfer_length
, len
);
1814 * Compute the next Scatter Gather list index and adjust its length
1815 * and address if necessary
1817 static void sg_update_list(struct ScsiReqBlk
*srb
, u32 left
)
1820 u32 xferred
= srb
->total_xfer_length
- left
; /* bytes transferred */
1821 struct SGentry
*psge
= srb
->segment_x
+ srb
->sg_index
;
1824 "sg_update_list: Transferred %i of %i bytes, %i remain\n",
1825 xferred
, srb
->total_xfer_length
, left
);
1827 /* nothing to update since we did not transfer any data */
1831 sg_verify_length(srb
);
1832 srb
->total_xfer_length
= left
; /* update remaining count */
1833 for (idx
= srb
->sg_index
; idx
< srb
->sg_count
; idx
++) {
1834 if (xferred
>= psge
->length
) {
1835 /* Complete SG entries done */
1836 xferred
-= psge
->length
;
1838 /* Partial SG entry done */
1839 dma_sync_single_for_cpu(&srb
->dcb
->acb
->dev
->dev
,
1840 srb
->sg_bus_addr
, SEGMENTX_LEN
,
1842 psge
->length
-= xferred
;
1843 psge
->address
+= xferred
;
1844 srb
->sg_index
= idx
;
1845 dma_sync_single_for_device(&srb
->dcb
->acb
->dev
->dev
,
1846 srb
->sg_bus_addr
, SEGMENTX_LEN
,
1852 sg_verify_length(srb
);
1857 * We have transferred a single byte (PIO mode?) and need to update
1858 * the count of bytes remaining (total_xfer_length) and update the sg
1859 * entry to either point to next byte in the current sg entry, or of
1860 * already at the end to point to the start of the next sg entry
1862 static void sg_subtract_one(struct ScsiReqBlk
*srb
)
1864 sg_update_list(srb
, srb
->total_xfer_length
- 1);
1869 * cleanup_after_transfer
1871 * Makes sure, DMA and SCSI engine are empty, after the transfer has finished
1872 * KG: Currently called from StatusPhase1 ()
1873 * Should probably also be called from other places
1874 * Best might be to call it in DataXXPhase0, if new phase will differ
1876 static void cleanup_after_transfer(struct AdapterCtlBlk
*acb
,
1877 struct ScsiReqBlk
*srb
)
1879 /*DC395x_write8 (TRM_S1040_DMA_STATUS, FORCEDMACOMP); */
1880 if (DC395x_read16(acb
, TRM_S1040_DMA_COMMAND
) & 0x0001) { /* read */
1881 if (!(DC395x_read8(acb
, TRM_S1040_SCSI_FIFOCNT
) & 0x40))
1882 clear_fifo(acb
, "cleanup/in");
1883 if (!(DC395x_read8(acb
, TRM_S1040_DMA_FIFOSTAT
) & 0x80))
1884 DC395x_write8(acb
, TRM_S1040_DMA_CONTROL
, CLRXFIFO
);
1885 } else { /* write */
1886 if (!(DC395x_read8(acb
, TRM_S1040_DMA_FIFOSTAT
) & 0x80))
1887 DC395x_write8(acb
, TRM_S1040_DMA_CONTROL
, CLRXFIFO
);
1888 if (!(DC395x_read8(acb
, TRM_S1040_SCSI_FIFOCNT
) & 0x40))
1889 clear_fifo(acb
, "cleanup/out");
1891 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_DATALATCH
);
1896 * Those no of bytes will be transferred w/ PIO through the SCSI FIFO
1897 * Seems to be needed for unknown reasons; could be a hardware bug :-(
1899 #define DC395x_LASTPIO 4
1902 static void data_out_phase0(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
1905 struct DeviceCtlBlk
*dcb
= srb
->dcb
;
1906 u16 scsi_status
= *pscsi_status
;
1907 u32 d_left_counter
= 0;
1908 dprintkdbg(DBG_0
, "data_out_phase0: (0x%p) <%02i-%i>\n",
1909 srb
->cmd
, srb
->cmd
->device
->id
, (u8
)srb
->cmd
->device
->lun
);
1912 * KG: We need to drain the buffers before we draw any conclusions!
1913 * This means telling the DMA to push the rest into SCSI, telling
1914 * SCSI to push the rest to the bus.
1915 * However, the device might have been the one to stop us (phase
1916 * change), and the data in transit just needs to be accounted so
1917 * it can be retransmitted.)
1920 * KG: Stop DMA engine pushing more data into the SCSI FIFO
1921 * If we need more data, the DMA SG list will be freshly set up, anyway
1923 dprintkdbg(DBG_PIO
, "data_out_phase0: "
1924 "DMA{fifocnt=0x%02x fifostat=0x%02x} "
1925 "SCSI{fifocnt=0x%02x cnt=0x%06x status=0x%04x} total=0x%06x\n",
1926 DC395x_read8(acb
, TRM_S1040_DMA_FIFOCNT
),
1927 DC395x_read8(acb
, TRM_S1040_DMA_FIFOSTAT
),
1928 DC395x_read8(acb
, TRM_S1040_SCSI_FIFOCNT
),
1929 DC395x_read32(acb
, TRM_S1040_SCSI_COUNTER
), scsi_status
,
1930 srb
->total_xfer_length
);
1931 DC395x_write8(acb
, TRM_S1040_DMA_CONTROL
, STOPDMAXFER
| CLRXFIFO
);
1933 if (!(srb
->state
& SRB_XFERPAD
)) {
1934 if (scsi_status
& PARITYERROR
)
1935 srb
->status
|= PARITY_ERROR
;
1938 * KG: Right, we can't just rely on the SCSI_COUNTER, because this
1939 * is the no of bytes it got from the DMA engine not the no it
1940 * transferred successfully to the device. (And the difference could
1941 * be as much as the FIFO size, I guess ...)
1943 if (!(scsi_status
& SCSIXFERDONE
)) {
1945 * when data transfer from DMA FIFO to SCSI FIFO
1946 * if there was some data left in SCSI FIFO
1949 (u32
)(DC395x_read8(acb
, TRM_S1040_SCSI_FIFOCNT
) &
1951 if (dcb
->sync_period
& WIDE_SYNC
)
1952 d_left_counter
<<= 1;
1954 dprintkdbg(DBG_KG
, "data_out_phase0: FIFO contains %i %s\n"
1955 "SCSI{fifocnt=0x%02x cnt=0x%08x} "
1956 "DMA{fifocnt=0x%04x cnt=0x%02x ctr=0x%08x}\n",
1957 DC395x_read8(acb
, TRM_S1040_SCSI_FIFOCNT
),
1958 (dcb
->sync_period
& WIDE_SYNC
) ? "words" : "bytes",
1959 DC395x_read8(acb
, TRM_S1040_SCSI_FIFOCNT
),
1960 DC395x_read32(acb
, TRM_S1040_SCSI_COUNTER
),
1961 DC395x_read8(acb
, TRM_S1040_DMA_FIFOCNT
),
1962 DC395x_read8(acb
, TRM_S1040_DMA_FIFOSTAT
),
1963 DC395x_read32(acb
, TRM_S1040_DMA_CXCNT
));
1966 * calculate all the residue data that not yet tranfered
1967 * SCSI transfer counter + left in SCSI FIFO data
1969 * .....TRM_S1040_SCSI_COUNTER (24bits)
1970 * The counter always decrement by one for every SCSI byte transfer.
1971 * .....TRM_S1040_SCSI_FIFOCNT ( 5bits)
1972 * The counter is SCSI FIFO offset counter (in units of bytes or! words)
1974 if (srb
->total_xfer_length
> DC395x_LASTPIO
)
1976 DC395x_read32(acb
, TRM_S1040_SCSI_COUNTER
);
1978 /* Is this a good idea? */
1979 /*clear_fifo(acb, "DOP1"); */
1980 /* KG: What is this supposed to be useful for? WIDE padding stuff? */
1981 if (d_left_counter
== 1 && dcb
->sync_period
& WIDE_SYNC
1982 && scsi_bufflen(srb
->cmd
) % 2) {
1985 "data_out_phase0: Discard 1 byte (0x%02x)\n",
1989 * KG: Oops again. Same thinko as above: The SCSI might have been
1990 * faster than the DMA engine, so that it ran out of data.
1991 * In that case, we have to do just nothing!
1992 * But: Why the interrupt: No phase change. No XFERCNT_2_ZERO. Or?
1995 * KG: This is nonsense: We have been WRITING data to the bus
1996 * If the SCSI engine has no bytes left, how should the DMA engine?
1998 if (d_left_counter
== 0) {
1999 srb
->total_xfer_length
= 0;
2002 * if transfer not yet complete
2003 * there were some data residue in SCSI FIFO or
2004 * SCSI transfer counter not empty
2007 srb
->total_xfer_length
- d_left_counter
;
2009 (dcb
->sync_period
& WIDE_SYNC
) ? 2 : 1;
2010 sg_update_list(srb
, d_left_counter
);
2011 /* KG: Most ugly hack! Apparently, this works around a chip bug */
2012 if ((srb
->segment_x
[srb
->sg_index
].length
==
2013 diff
&& scsi_sg_count(srb
->cmd
))
2014 || ((oldxferred
& ~PAGE_MASK
) ==
2017 dprintkl(KERN_INFO
, "data_out_phase0: "
2018 "Work around chip bug (%i)?\n", diff
);
2020 srb
->total_xfer_length
- diff
;
2021 sg_update_list(srb
, d_left_counter
);
2022 /*srb->total_xfer_length -= diff; */
2023 /*srb->virt_addr += diff; */
2024 /*if (srb->cmd->use_sg) */
2025 /* srb->sg_index++; */
2029 if ((*pscsi_status
& PHASEMASK
) != PH_DATA_OUT
) {
2030 cleanup_after_transfer(acb
, srb
);
2035 static void data_out_phase1(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
2038 dprintkdbg(DBG_0
, "data_out_phase1: (0x%p) <%02i-%i>\n",
2039 srb
->cmd
, srb
->cmd
->device
->id
, (u8
)srb
->cmd
->device
->lun
);
2040 clear_fifo(acb
, "data_out_phase1");
2041 /* do prepare before transfer when data out phase */
2042 data_io_transfer(acb
, srb
, XFERDATAOUT
);
2045 static void data_in_phase0(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
2048 u16 scsi_status
= *pscsi_status
;
2050 dprintkdbg(DBG_0
, "data_in_phase0: (0x%p) <%02i-%i>\n",
2051 srb
->cmd
, srb
->cmd
->device
->id
, (u8
)srb
->cmd
->device
->lun
);
2054 * KG: DataIn is much more tricky than DataOut. When the device is finished
2055 * and switches to another phase, the SCSI engine should be finished too.
2056 * But: There might still be bytes left in its FIFO to be fetched by the DMA
2057 * engine and transferred to memory.
2058 * We should wait for the FIFOs to be emptied by that (is there any way to
2059 * enforce this?) and then stop the DMA engine, because it might think, that
2060 * there are more bytes to follow. Yes, the device might disconnect prior to
2061 * having all bytes transferred!
2062 * Also we should make sure that all data from the DMA engine buffer's really
2063 * made its way to the system memory! Some documentation on this would not
2064 * seem to be a bad idea, actually.
2066 if (!(srb
->state
& SRB_XFERPAD
)) {
2068 unsigned int sc
, fc
;
2070 if (scsi_status
& PARITYERROR
) {
2071 dprintkl(KERN_INFO
, "data_in_phase0: (0x%p) "
2072 "Parity Error\n", srb
->cmd
);
2073 srb
->status
|= PARITY_ERROR
;
2076 * KG: We should wait for the DMA FIFO to be empty ...
2077 * but: it would be better to wait first for the SCSI FIFO and then the
2078 * the DMA FIFO to become empty? How do we know, that the device not already
2079 * sent data to the FIFO in a MsgIn phase, eg.?
2081 if (!(DC395x_read8(acb
, TRM_S1040_DMA_FIFOSTAT
) & 0x80)) {
2084 dprintkl(KERN_DEBUG
,
2085 "DIP0: Wait for DMA FIFO to flush ...\n");
2086 /*DC395x_write8 (TRM_S1040_DMA_CONTROL, STOPDMAXFER); */
2087 /*DC395x_write32 (TRM_S1040_SCSI_COUNTER, 7); */
2088 /*DC395x_write8 (TRM_S1040_SCSI_COMMAND, SCMD_DMA_IN); */
2090 (DC395x_read16(acb
, TRM_S1040_DMA_FIFOSTAT
) &
2092 if (ctr
< 6000000 - 1)
2094 "DIP0: Had to wait for DMA ...\n");
2097 "Deadlock in DIP0 waiting for DMA FIFO empty!!\n");
2098 /*DC395x_write32 (TRM_S1040_SCSI_COUNTER, 0); */
2100 dprintkdbg(DBG_KG
, "data_in_phase0: "
2101 "DMA{fifocnt=0x%02x fifostat=0x%02x}\n",
2102 DC395x_read8(acb
, TRM_S1040_DMA_FIFOCNT
),
2103 DC395x_read8(acb
, TRM_S1040_DMA_FIFOSTAT
));
2105 /* Now: Check remainig data: The SCSI counters should tell us ... */
2106 sc
= DC395x_read32(acb
, TRM_S1040_SCSI_COUNTER
);
2107 fc
= DC395x_read8(acb
, TRM_S1040_SCSI_FIFOCNT
);
2108 d_left_counter
= sc
+ ((fc
& 0x1f)
2109 << ((srb
->dcb
->sync_period
& WIDE_SYNC
) ? 1 :
2111 dprintkdbg(DBG_KG
, "data_in_phase0: "
2112 "SCSI{fifocnt=0x%02x%s ctr=0x%08x} "
2113 "DMA{fifocnt=0x%02x fifostat=0x%02x ctr=0x%08x} "
2114 "Remain{totxfer=%i scsi_fifo+ctr=%i}\n",
2116 (srb
->dcb
->sync_period
& WIDE_SYNC
) ? "words" : "bytes",
2119 DC395x_read8(acb
, TRM_S1040_DMA_FIFOSTAT
),
2120 DC395x_read32(acb
, TRM_S1040_DMA_CXCNT
),
2121 srb
->total_xfer_length
, d_left_counter
);
2123 /* KG: Less than or equal to 4 bytes can not be transferred via DMA, it seems. */
2125 && srb
->total_xfer_length
<= DC395x_LASTPIO
) {
2126 size_t left_io
= srb
->total_xfer_length
;
2128 /*u32 addr = (srb->segment_x[srb->sg_index].address); */
2129 /*sg_update_list (srb, d_left_counter); */
2130 dprintkdbg(DBG_PIO
, "data_in_phase0: PIO (%i %s) "
2131 "for remaining %i bytes:",
2133 (srb
->dcb
->sync_period
& WIDE_SYNC
) ?
2135 srb
->total_xfer_length
);
2136 if (srb
->dcb
->sync_period
& WIDE_SYNC
)
2137 DC395x_write8(acb
, TRM_S1040_SCSI_CONFIG2
,
2140 unsigned char *virt
, *base
= NULL
;
2141 unsigned long flags
= 0;
2142 size_t len
= left_io
;
2143 size_t offset
= srb
->request_length
- left_io
;
2145 local_irq_save(flags
);
2146 /* Assumption: it's inside one page as it's at most 4 bytes and
2147 I just assume it's on a 4-byte boundary */
2148 base
= scsi_kmap_atomic_sg(scsi_sglist(srb
->cmd
),
2149 srb
->sg_count
, &offset
, &len
);
2150 virt
= base
+ offset
;
2156 byte
= DC395x_read8(acb
, TRM_S1040_SCSI_FIFO
);
2159 if (debug_enabled(DBG_PIO
))
2160 printk(" %02x", byte
);
2163 sg_subtract_one(srb
);
2167 fc
= DC395x_read8(acb
, TRM_S1040_SCSI_FIFOCNT
);
2175 WARN_ON((fc
!= 0x40) == !d_left_counter
);
2177 if (fc
== 0x40 && (srb
->dcb
->sync_period
& WIDE_SYNC
)) {
2178 /* Read the last byte ... */
2179 if (srb
->total_xfer_length
> 0) {
2180 u8 byte
= DC395x_read8(acb
, TRM_S1040_SCSI_FIFO
);
2183 srb
->total_xfer_length
--;
2184 if (debug_enabled(DBG_PIO
))
2185 printk(" %02x", byte
);
2188 DC395x_write8(acb
, TRM_S1040_SCSI_CONFIG2
, 0);
2191 scsi_kunmap_atomic_sg(base
);
2192 local_irq_restore(flags
);
2194 /*printk(" %08x", *(u32*)(bus_to_virt (addr))); */
2195 /*srb->total_xfer_length = 0; */
2196 if (debug_enabled(DBG_PIO
))
2199 #endif /* DC395x_LASTPIO */
2203 * KG: This was in DATAOUT. Does it also belong here?
2204 * Nobody seems to know what counter and fifo_cnt count exactly ...
2206 if (!(scsi_status
& SCSIXFERDONE
)) {
2208 * when data transfer from DMA FIFO to SCSI FIFO
2209 * if there was some data left in SCSI FIFO
2212 (u32
)(DC395x_read8(acb
, TRM_S1040_SCSI_FIFOCNT
) &
2214 if (srb
->dcb
->sync_period
& WIDE_SYNC
)
2215 d_left_counter
<<= 1;
2217 * if WIDE scsi SCSI FIFOCNT unit is word !!!
2219 * KG: Seems to be correct ...
2223 /* KG: This should not be needed any more! */
2224 if (d_left_counter
== 0
2225 || (scsi_status
& SCSIXFERCNT_2_ZERO
)) {
2231 DC395x_read8(acb
, TRM_S1040_DMA_STATUS
);
2232 } while (!(TempDMAstatus
& DMAXFERCOMP
) && --ctr
);
2235 "Deadlock in DataInPhase0 waiting for DMA!!\n");
2236 srb
->total_xfer_length
= 0;
2238 srb
->total_xfer_length
= d_left_counter
;
2239 } else { /* phase changed */
2242 * when a transfer not yet complete
2243 * but be disconnected by target
2244 * if transfer not yet complete
2245 * there were some data residue in SCSI FIFO or
2246 * SCSI transfer counter not empty
2248 sg_update_list(srb
, d_left_counter
);
2251 /* KG: The target may decide to disconnect: Empty FIFO before! */
2252 if ((*pscsi_status
& PHASEMASK
) != PH_DATA_IN
) {
2253 cleanup_after_transfer(acb
, srb
);
2258 static void data_in_phase1(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
2261 dprintkdbg(DBG_0
, "data_in_phase1: (0x%p) <%02i-%i>\n",
2262 srb
->cmd
, srb
->cmd
->device
->id
, (u8
)srb
->cmd
->device
->lun
);
2263 data_io_transfer(acb
, srb
, XFERDATAIN
);
2267 static void data_io_transfer(struct AdapterCtlBlk
*acb
,
2268 struct ScsiReqBlk
*srb
, u16 io_dir
)
2270 struct DeviceCtlBlk
*dcb
= srb
->dcb
;
2273 "data_io_transfer: (0x%p) <%02i-%i> %c len=%i, sg=(%i/%i)\n",
2274 srb
->cmd
, srb
->cmd
->device
->id
, (u8
)srb
->cmd
->device
->lun
,
2275 ((io_dir
& DMACMD_DIR
) ? 'r' : 'w'),
2276 srb
->total_xfer_length
, srb
->sg_index
, srb
->sg_count
);
2277 if (srb
== acb
->tmp_srb
)
2278 dprintkl(KERN_ERR
, "data_io_transfer: Using tmp_srb!\n");
2279 if (srb
->sg_index
>= srb
->sg_count
) {
2280 /* can't happen? out of bounds error */
2284 if (srb
->total_xfer_length
> DC395x_LASTPIO
) {
2285 u8 dma_status
= DC395x_read8(acb
, TRM_S1040_DMA_STATUS
);
2287 * KG: What should we do: Use SCSI Cmd 0x90/0x92?
2288 * Maybe, even ABORTXFER would be appropriate
2290 if (dma_status
& XFERPENDING
) {
2291 dprintkl(KERN_DEBUG
, "data_io_transfer: Xfer pending! "
2292 "Expect trouble!\n");
2293 dump_register_info(acb
, dcb
, srb
);
2294 DC395x_write8(acb
, TRM_S1040_DMA_CONTROL
, CLRXFIFO
);
2296 /* clear_fifo(acb, "IO"); */
2298 * load what physical address of Scatter/Gather list table
2299 * want to be transfer
2301 srb
->state
|= SRB_DATA_XFER
;
2302 DC395x_write32(acb
, TRM_S1040_DMA_XHIGHADDR
, 0);
2303 if (scsi_sg_count(srb
->cmd
)) { /* with S/G */
2304 io_dir
|= DMACMD_SG
;
2305 DC395x_write32(acb
, TRM_S1040_DMA_XLOWADDR
,
2307 sizeof(struct SGentry
) *
2309 /* load how many bytes in the sg list table */
2310 DC395x_write32(acb
, TRM_S1040_DMA_XCNT
,
2311 ((u32
)(srb
->sg_count
-
2312 srb
->sg_index
) << 3));
2313 } else { /* without S/G */
2314 io_dir
&= ~DMACMD_SG
;
2315 DC395x_write32(acb
, TRM_S1040_DMA_XLOWADDR
,
2316 srb
->segment_x
[0].address
);
2317 DC395x_write32(acb
, TRM_S1040_DMA_XCNT
,
2318 srb
->segment_x
[0].length
);
2320 /* load total transfer length (24bits) max value 16Mbyte */
2321 DC395x_write32(acb
, TRM_S1040_SCSI_COUNTER
,
2322 srb
->total_xfer_length
);
2323 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_DATALATCH
); /* it's important for atn stop */
2324 if (io_dir
& DMACMD_DIR
) { /* read */
2325 DC395x_write8(acb
, TRM_S1040_SCSI_COMMAND
,
2327 DC395x_write16(acb
, TRM_S1040_DMA_COMMAND
, io_dir
);
2329 DC395x_write16(acb
, TRM_S1040_DMA_COMMAND
, io_dir
);
2330 DC395x_write8(acb
, TRM_S1040_SCSI_COMMAND
,
2336 else if (srb
->total_xfer_length
> 0) { /* The last four bytes: Do PIO */
2338 * load what physical address of Scatter/Gather list table
2339 * want to be transfer
2341 srb
->state
|= SRB_DATA_XFER
;
2342 /* load total transfer length (24bits) max value 16Mbyte */
2343 DC395x_write32(acb
, TRM_S1040_SCSI_COUNTER
,
2344 srb
->total_xfer_length
);
2345 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_DATALATCH
); /* it's important for atn stop */
2346 if (io_dir
& DMACMD_DIR
) { /* read */
2347 DC395x_write8(acb
, TRM_S1040_SCSI_COMMAND
,
2349 } else { /* write */
2350 int ln
= srb
->total_xfer_length
;
2351 size_t left_io
= srb
->total_xfer_length
;
2353 if (srb
->dcb
->sync_period
& WIDE_SYNC
)
2354 DC395x_write8(acb
, TRM_S1040_SCSI_CONFIG2
,
2358 unsigned char *virt
, *base
= NULL
;
2359 unsigned long flags
= 0;
2360 size_t len
= left_io
;
2361 size_t offset
= srb
->request_length
- left_io
;
2363 local_irq_save(flags
);
2364 /* Again, max 4 bytes */
2365 base
= scsi_kmap_atomic_sg(scsi_sglist(srb
->cmd
),
2366 srb
->sg_count
, &offset
, &len
);
2367 virt
= base
+ offset
;
2372 if (debug_enabled(DBG_PIO
))
2373 printk(" %02x", *virt
);
2375 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, *virt
++);
2377 sg_subtract_one(srb
);
2380 scsi_kunmap_atomic_sg(base
);
2381 local_irq_restore(flags
);
2383 if (srb
->dcb
->sync_period
& WIDE_SYNC
) {
2385 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, 0);
2386 if (debug_enabled(DBG_PIO
))
2389 DC395x_write8(acb
, TRM_S1040_SCSI_CONFIG2
, 0);
2391 /*DC395x_write32(acb, TRM_S1040_SCSI_COUNTER, ln); */
2392 if (debug_enabled(DBG_PIO
))
2394 DC395x_write8(acb
, TRM_S1040_SCSI_COMMAND
,
2398 #endif /* DC395x_LASTPIO */
2399 else { /* xfer pad */
2400 if (srb
->sg_count
) {
2401 srb
->adapter_status
= H_OVER_UNDER_RUN
;
2402 srb
->status
|= OVER_RUN
;
2405 * KG: despite the fact that we are using 16 bits I/O ops
2406 * the SCSI FIFO is only 8 bits according to the docs
2407 * (we can set bit 1 in 0x8f to serialize FIFO access ...)
2409 if (dcb
->sync_period
& WIDE_SYNC
) {
2410 DC395x_write32(acb
, TRM_S1040_SCSI_COUNTER
, 2);
2411 DC395x_write8(acb
, TRM_S1040_SCSI_CONFIG2
,
2413 if (io_dir
& DMACMD_DIR
) {
2414 DC395x_read8(acb
, TRM_S1040_SCSI_FIFO
);
2415 DC395x_read8(acb
, TRM_S1040_SCSI_FIFO
);
2417 /* Danger, Robinson: If you find KGs
2418 * scattered over the wide disk, the driver
2419 * or chip is to blame :-( */
2420 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, 'K');
2421 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, 'G');
2423 DC395x_write8(acb
, TRM_S1040_SCSI_CONFIG2
, 0);
2425 DC395x_write32(acb
, TRM_S1040_SCSI_COUNTER
, 1);
2426 /* Danger, Robinson: If you find a collection of Ks on your disk
2427 * something broke :-( */
2428 if (io_dir
& DMACMD_DIR
)
2429 DC395x_read8(acb
, TRM_S1040_SCSI_FIFO
);
2431 DC395x_write8(acb
, TRM_S1040_SCSI_FIFO
, 'K');
2433 srb
->state
|= SRB_XFERPAD
;
2434 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_DATALATCH
); /* it's important for atn stop */
2436 bval
= (io_dir
& DMACMD_DIR
) ? SCMD_FIFO_IN
: SCMD_FIFO_OUT
;
2437 DC395x_write8(acb
, TRM_S1040_SCSI_COMMAND
, bval
);
2442 static void status_phase0(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
2445 dprintkdbg(DBG_0
, "status_phase0: (0x%p) <%02i-%i>\n",
2446 srb
->cmd
, srb
->cmd
->device
->id
, (u8
)srb
->cmd
->device
->lun
);
2447 srb
->target_status
= DC395x_read8(acb
, TRM_S1040_SCSI_FIFO
);
2448 srb
->end_message
= DC395x_read8(acb
, TRM_S1040_SCSI_FIFO
); /* get message */
2449 srb
->state
= SRB_COMPLETED
;
2450 *pscsi_status
= PH_BUS_FREE
; /*.. initial phase */
2451 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_DATALATCH
); /* it's important for atn stop */
2452 DC395x_write8(acb
, TRM_S1040_SCSI_COMMAND
, SCMD_MSGACCEPT
);
2456 static void status_phase1(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
2459 dprintkdbg(DBG_0
, "status_phase1: (0x%p) <%02i-%i>\n",
2460 srb
->cmd
, srb
->cmd
->device
->id
, (u8
)srb
->cmd
->device
->lun
);
2461 srb
->state
= SRB_STATUS
;
2462 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_DATALATCH
); /* it's important for atn stop */
2463 DC395x_write8(acb
, TRM_S1040_SCSI_COMMAND
, SCMD_COMP
);
2467 /* Check if the message is complete */
2468 static inline u8
msgin_completed(u8
* msgbuf
, u32 len
)
2470 if (*msgbuf
== EXTENDED_MESSAGE
) {
2473 if (len
< msgbuf
[1] + 2)
2475 } else if (*msgbuf
>= 0x20 && *msgbuf
<= 0x2f) /* two byte messages */
2482 static inline void msgin_reject(struct AdapterCtlBlk
*acb
,
2483 struct ScsiReqBlk
*srb
)
2485 srb
->msgout_buf
[0] = MESSAGE_REJECT
;
2487 DC395x_ENABLE_MSGOUT
;
2488 srb
->state
&= ~SRB_MSGIN
;
2489 srb
->state
|= SRB_MSGOUT
;
2490 dprintkl(KERN_INFO
, "msgin_reject: 0x%02x <%02i-%i>\n",
2492 srb
->dcb
->target_id
, srb
->dcb
->target_lun
);
2496 static struct ScsiReqBlk
*msgin_qtag(struct AdapterCtlBlk
*acb
,
2497 struct DeviceCtlBlk
*dcb
, u8 tag
)
2499 struct ScsiReqBlk
*srb
= NULL
;
2500 struct ScsiReqBlk
*i
;
2501 dprintkdbg(DBG_0
, "msgin_qtag: (0x%p) tag=%i srb=%p\n",
2502 srb
->cmd
, tag
, srb
);
2504 if (!(dcb
->tag_mask
& (1 << tag
)))
2505 dprintkl(KERN_DEBUG
,
2506 "msgin_qtag: tag_mask=0x%08x does not reserve tag %i!\n",
2507 dcb
->tag_mask
, tag
);
2509 if (list_empty(&dcb
->srb_going_list
))
2511 list_for_each_entry(i
, &dcb
->srb_going_list
, list
) {
2512 if (i
->tag_number
== tag
) {
2520 dprintkdbg(DBG_0
, "msgin_qtag: (0x%p) <%02i-%i>\n",
2521 srb
->cmd
, srb
->dcb
->target_id
, srb
->dcb
->target_lun
);
2522 if (dcb
->flag
& ABORT_DEV_
) {
2523 /*srb->state = SRB_ABORT_SENT; */
2524 enable_msgout_abort(acb
, srb
);
2527 if (!(srb
->state
& SRB_DISCONNECT
))
2530 memcpy(srb
->msgin_buf
, dcb
->active_srb
->msgin_buf
, acb
->msg_len
);
2531 srb
->state
|= dcb
->active_srb
->state
;
2532 srb
->state
|= SRB_DATA_XFER
;
2533 dcb
->active_srb
= srb
;
2534 /* How can we make the DORS happy? */
2539 srb
->state
= SRB_UNEXPECT_RESEL
;
2540 dcb
->active_srb
= srb
;
2541 srb
->msgout_buf
[0] = MSG_ABORT_TAG
;
2543 DC395x_ENABLE_MSGOUT
;
2544 dprintkl(KERN_DEBUG
, "msgin_qtag: Unknown tag %i - abort\n", tag
);
2549 static inline void reprogram_regs(struct AdapterCtlBlk
*acb
,
2550 struct DeviceCtlBlk
*dcb
)
2552 DC395x_write8(acb
, TRM_S1040_SCSI_TARGETID
, dcb
->target_id
);
2553 DC395x_write8(acb
, TRM_S1040_SCSI_SYNC
, dcb
->sync_period
);
2554 DC395x_write8(acb
, TRM_S1040_SCSI_OFFSET
, dcb
->sync_offset
);
2555 set_xfer_rate(acb
, dcb
);
2559 /* set async transfer mode */
2560 static void msgin_set_async(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
)
2562 struct DeviceCtlBlk
*dcb
= srb
->dcb
;
2563 dprintkl(KERN_DEBUG
, "msgin_set_async: No sync transfers <%02i-%i>\n",
2564 dcb
->target_id
, dcb
->target_lun
);
2566 dcb
->sync_mode
&= ~(SYNC_NEGO_ENABLE
);
2567 dcb
->sync_mode
|= SYNC_NEGO_DONE
;
2568 /*dcb->sync_period &= 0; */
2569 dcb
->sync_offset
= 0;
2570 dcb
->min_nego_period
= 200 >> 2; /* 200ns <=> 5 MHz */
2571 srb
->state
&= ~SRB_DO_SYNC_NEGO
;
2572 reprogram_regs(acb
, dcb
);
2573 if ((dcb
->sync_mode
& WIDE_NEGO_ENABLE
)
2574 && !(dcb
->sync_mode
& WIDE_NEGO_DONE
)) {
2575 build_wdtr(acb
, dcb
, srb
);
2576 DC395x_ENABLE_MSGOUT
;
2577 dprintkdbg(DBG_0
, "msgin_set_async(rej): Try WDTR anyway\n");
2582 /* set sync transfer mode */
2583 static void msgin_set_sync(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
)
2585 struct DeviceCtlBlk
*dcb
= srb
->dcb
;
2588 dprintkdbg(DBG_1
, "msgin_set_sync: <%02i> Sync: %ins "
2589 "(%02i.%01i MHz) Offset %i\n",
2590 dcb
->target_id
, srb
->msgin_buf
[3] << 2,
2591 (250 / srb
->msgin_buf
[3]),
2592 ((250 % srb
->msgin_buf
[3]) * 10) / srb
->msgin_buf
[3],
2595 if (srb
->msgin_buf
[4] > 15)
2596 srb
->msgin_buf
[4] = 15;
2597 if (!(dcb
->dev_mode
& NTC_DO_SYNC_NEGO
))
2598 dcb
->sync_offset
= 0;
2599 else if (dcb
->sync_offset
== 0)
2600 dcb
->sync_offset
= srb
->msgin_buf
[4];
2601 if (srb
->msgin_buf
[4] > dcb
->sync_offset
)
2602 srb
->msgin_buf
[4] = dcb
->sync_offset
;
2604 dcb
->sync_offset
= srb
->msgin_buf
[4];
2606 while (bval
< 7 && (srb
->msgin_buf
[3] > clock_period
[bval
]
2607 || dcb
->min_nego_period
>
2608 clock_period
[bval
]))
2610 if (srb
->msgin_buf
[3] < clock_period
[bval
])
2612 "msgin_set_sync: Increase sync nego period to %ins\n",
2613 clock_period
[bval
] << 2);
2614 srb
->msgin_buf
[3] = clock_period
[bval
];
2615 dcb
->sync_period
&= 0xf0;
2616 dcb
->sync_period
|= ALT_SYNC
| bval
;
2617 dcb
->min_nego_period
= srb
->msgin_buf
[3];
2619 if (dcb
->sync_period
& WIDE_SYNC
)
2625 "Target %02i: %s Sync: %ins Offset %i (%02i.%01i MB/s)\n",
2626 dcb
->target_id
, (fact
== 500) ? "Wide16" : "",
2627 dcb
->min_nego_period
<< 2, dcb
->sync_offset
,
2628 (fact
/ dcb
->min_nego_period
),
2629 ((fact
% dcb
->min_nego_period
) * 10 +
2630 dcb
->min_nego_period
/ 2) / dcb
->min_nego_period
);
2632 if (!(srb
->state
& SRB_DO_SYNC_NEGO
)) {
2633 /* Reply with corrected SDTR Message */
2634 dprintkl(KERN_DEBUG
, "msgin_set_sync: answer w/%ins %i\n",
2635 srb
->msgin_buf
[3] << 2, srb
->msgin_buf
[4]);
2637 memcpy(srb
->msgout_buf
, srb
->msgin_buf
, 5);
2639 DC395x_ENABLE_MSGOUT
;
2640 dcb
->sync_mode
|= SYNC_NEGO_DONE
;
2642 if ((dcb
->sync_mode
& WIDE_NEGO_ENABLE
)
2643 && !(dcb
->sync_mode
& WIDE_NEGO_DONE
)) {
2644 build_wdtr(acb
, dcb
, srb
);
2645 DC395x_ENABLE_MSGOUT
;
2646 dprintkdbg(DBG_0
, "msgin_set_sync: Also try WDTR\n");
2649 srb
->state
&= ~SRB_DO_SYNC_NEGO
;
2650 dcb
->sync_mode
|= SYNC_NEGO_DONE
| SYNC_NEGO_ENABLE
;
2652 reprogram_regs(acb
, dcb
);
2656 static inline void msgin_set_nowide(struct AdapterCtlBlk
*acb
,
2657 struct ScsiReqBlk
*srb
)
2659 struct DeviceCtlBlk
*dcb
= srb
->dcb
;
2660 dprintkdbg(DBG_1
, "msgin_set_nowide: <%02i>\n", dcb
->target_id
);
2662 dcb
->sync_period
&= ~WIDE_SYNC
;
2663 dcb
->sync_mode
&= ~(WIDE_NEGO_ENABLE
);
2664 dcb
->sync_mode
|= WIDE_NEGO_DONE
;
2665 srb
->state
&= ~SRB_DO_WIDE_NEGO
;
2666 reprogram_regs(acb
, dcb
);
2667 if ((dcb
->sync_mode
& SYNC_NEGO_ENABLE
)
2668 && !(dcb
->sync_mode
& SYNC_NEGO_DONE
)) {
2669 build_sdtr(acb
, dcb
, srb
);
2670 DC395x_ENABLE_MSGOUT
;
2671 dprintkdbg(DBG_0
, "msgin_set_nowide: Rejected. Try SDTR anyway\n");
2675 static void msgin_set_wide(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
)
2677 struct DeviceCtlBlk
*dcb
= srb
->dcb
;
2678 u8 wide
= (dcb
->dev_mode
& NTC_DO_WIDE_NEGO
2679 && acb
->config
& HCC_WIDE_CARD
) ? 1 : 0;
2680 dprintkdbg(DBG_1
, "msgin_set_wide: <%02i>\n", dcb
->target_id
);
2682 if (srb
->msgin_buf
[3] > wide
)
2683 srb
->msgin_buf
[3] = wide
;
2685 if (!(srb
->state
& SRB_DO_WIDE_NEGO
)) {
2686 dprintkl(KERN_DEBUG
,
2687 "msgin_set_wide: Wide nego initiated <%02i>\n",
2689 memcpy(srb
->msgout_buf
, srb
->msgin_buf
, 4);
2691 srb
->state
|= SRB_DO_WIDE_NEGO
;
2692 DC395x_ENABLE_MSGOUT
;
2695 dcb
->sync_mode
|= (WIDE_NEGO_ENABLE
| WIDE_NEGO_DONE
);
2696 if (srb
->msgin_buf
[3] > 0)
2697 dcb
->sync_period
|= WIDE_SYNC
;
2699 dcb
->sync_period
&= ~WIDE_SYNC
;
2700 srb
->state
&= ~SRB_DO_WIDE_NEGO
;
2701 /*dcb->sync_mode &= ~(WIDE_NEGO_ENABLE+WIDE_NEGO_DONE); */
2703 "msgin_set_wide: Wide (%i bit) negotiated <%02i>\n",
2704 (8 << srb
->msgin_buf
[3]), dcb
->target_id
);
2705 reprogram_regs(acb
, dcb
);
2706 if ((dcb
->sync_mode
& SYNC_NEGO_ENABLE
)
2707 && !(dcb
->sync_mode
& SYNC_NEGO_DONE
)) {
2708 build_sdtr(acb
, dcb
, srb
);
2709 DC395x_ENABLE_MSGOUT
;
2710 dprintkdbg(DBG_0
, "msgin_set_wide: Also try SDTR.\n");
2716 * extended message codes:
2721 * 00h MODIFY DATA POINTER
2722 * 01h SYNCHRONOUS DATA TRANSFER REQUEST
2723 * 03h WIDE DATA TRANSFER REQUEST
2724 * 04h - 7Fh Reserved
2725 * 80h - FFh Vendor specific
2727 static void msgin_phase0(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
2730 struct DeviceCtlBlk
*dcb
= acb
->active_dcb
;
2731 dprintkdbg(DBG_0
, "msgin_phase0: (0x%p)\n", srb
->cmd
);
2733 srb
->msgin_buf
[acb
->msg_len
++] = DC395x_read8(acb
, TRM_S1040_SCSI_FIFO
);
2734 if (msgin_completed(srb
->msgin_buf
, acb
->msg_len
)) {
2735 /* Now eval the msg */
2736 switch (srb
->msgin_buf
[0]) {
2738 srb
->state
= SRB_DISCONNECT
;
2741 case SIMPLE_QUEUE_TAG
:
2742 case HEAD_OF_QUEUE_TAG
:
2743 case ORDERED_QUEUE_TAG
:
2745 msgin_qtag(acb
, dcb
,
2749 case MESSAGE_REJECT
:
2750 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
,
2751 DO_CLRATN
| DO_DATALATCH
);
2752 /* A sync nego message was rejected ! */
2753 if (srb
->state
& SRB_DO_SYNC_NEGO
) {
2754 msgin_set_async(acb
, srb
);
2757 /* A wide nego message was rejected ! */
2758 if (srb
->state
& SRB_DO_WIDE_NEGO
) {
2759 msgin_set_nowide(acb
, srb
);
2762 enable_msgout_abort(acb
, srb
);
2763 /*srb->state |= SRB_ABORT_SENT */
2766 case EXTENDED_MESSAGE
:
2768 if (srb
->msgin_buf
[1] == 3
2769 && srb
->msgin_buf
[2] == EXTENDED_SDTR
) {
2770 msgin_set_sync(acb
, srb
);
2774 if (srb
->msgin_buf
[1] == 2
2775 && srb
->msgin_buf
[2] == EXTENDED_WDTR
2776 && srb
->msgin_buf
[3] <= 2) { /* sanity check ... */
2777 msgin_set_wide(acb
, srb
);
2780 msgin_reject(acb
, srb
);
2783 case MSG_IGNOREWIDE
:
2784 /* Discard wide residual */
2785 dprintkdbg(DBG_0
, "msgin_phase0: Ignore Wide Residual!\n");
2788 case COMMAND_COMPLETE
:
2789 /* nothing has to be done */
2794 * SAVE POINTER may be ignored as we have the struct
2795 * ScsiReqBlk* associated with the scsi command.
2797 dprintkdbg(DBG_0
, "msgin_phase0: (0x%p) "
2798 "SAVE POINTER rem=%i Ignore\n",
2799 srb
->cmd
, srb
->total_xfer_length
);
2802 case RESTORE_POINTERS
:
2803 dprintkdbg(DBG_0
, "msgin_phase0: RESTORE POINTER. Ignore\n");
2807 dprintkdbg(DBG_0
, "msgin_phase0: (0x%p) "
2808 "<%02i-%i> ABORT msg\n",
2809 srb
->cmd
, dcb
->target_id
,
2811 dcb
->flag
|= ABORT_DEV_
;
2812 enable_msgout_abort(acb
, srb
);
2816 /* reject unknown messages */
2817 if (srb
->msgin_buf
[0] & IDENTIFY_BASE
) {
2818 dprintkdbg(DBG_0
, "msgin_phase0: Identify msg\n");
2820 srb
->msgout_buf
[0] = dcb
->identify_msg
;
2821 DC395x_ENABLE_MSGOUT
;
2822 srb
->state
|= SRB_MSGOUT
;
2825 msgin_reject(acb
, srb
);
2828 /* Clear counter and MsgIn state */
2829 srb
->state
&= ~SRB_MSGIN
;
2832 *pscsi_status
= PH_BUS_FREE
;
2833 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_DATALATCH
); /* it's important ... you know! */
2834 DC395x_write8(acb
, TRM_S1040_SCSI_COMMAND
, SCMD_MSGACCEPT
);
2838 static void msgin_phase1(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
2841 dprintkdbg(DBG_0
, "msgin_phase1: (0x%p)\n", srb
->cmd
);
2842 clear_fifo(acb
, "msgin_phase1");
2843 DC395x_write32(acb
, TRM_S1040_SCSI_COUNTER
, 1);
2844 if (!(srb
->state
& SRB_MSGIN
)) {
2845 srb
->state
&= ~SRB_DISCONNECT
;
2846 srb
->state
|= SRB_MSGIN
;
2848 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_DATALATCH
); /* it's important for atn stop */
2850 DC395x_write8(acb
, TRM_S1040_SCSI_COMMAND
, SCMD_FIFO_IN
);
2854 static void nop0(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
2860 static void nop1(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
,
2866 static void set_xfer_rate(struct AdapterCtlBlk
*acb
, struct DeviceCtlBlk
*dcb
)
2868 struct DeviceCtlBlk
*i
;
2870 /* set all lun device's period, offset */
2871 if (dcb
->identify_msg
& 0x07)
2874 if (acb
->scan_devices
) {
2875 current_sync_offset
= dcb
->sync_offset
;
2879 list_for_each_entry(i
, &acb
->dcb_list
, list
)
2880 if (i
->target_id
== dcb
->target_id
) {
2881 i
->sync_period
= dcb
->sync_period
;
2882 i
->sync_offset
= dcb
->sync_offset
;
2883 i
->sync_mode
= dcb
->sync_mode
;
2884 i
->min_nego_period
= dcb
->min_nego_period
;
2889 static void disconnect(struct AdapterCtlBlk
*acb
)
2891 struct DeviceCtlBlk
*dcb
= acb
->active_dcb
;
2892 struct ScsiReqBlk
*srb
;
2895 dprintkl(KERN_ERR
, "disconnect: No such device\n");
2897 /* Suspend queue for a while */
2900 HZ
* acb
->eeprom
.delay_time
;
2901 clear_fifo(acb
, "disconnectEx");
2902 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_HWRESELECT
);
2905 srb
= dcb
->active_srb
;
2906 acb
->active_dcb
= NULL
;
2907 dprintkdbg(DBG_0
, "disconnect: (0x%p)\n", srb
->cmd
);
2909 srb
->scsi_phase
= PH_BUS_FREE
; /* initial phase */
2910 clear_fifo(acb
, "disconnect");
2911 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_HWRESELECT
);
2912 if (srb
->state
& SRB_UNEXPECT_RESEL
) {
2914 "disconnect: Unexpected reselection <%02i-%i>\n",
2915 dcb
->target_id
, dcb
->target_lun
);
2917 waiting_process_next(acb
);
2918 } else if (srb
->state
& SRB_ABORT_SENT
) {
2919 dcb
->flag
&= ~ABORT_DEV_
;
2920 acb
->last_reset
= jiffies
+ HZ
/ 2 + 1;
2921 dprintkl(KERN_ERR
, "disconnect: SRB_ABORT_SENT\n");
2922 doing_srb_done(acb
, DID_ABORT
, srb
->cmd
, 1);
2923 waiting_process_next(acb
);
2925 if ((srb
->state
& (SRB_START_
+ SRB_MSGOUT
))
2927 state
& (SRB_DISCONNECT
+ SRB_COMPLETED
))) {
2929 * Selection time out
2930 * SRB_START_ || SRB_MSGOUT || (!SRB_DISCONNECT && !SRB_COMPLETED)
2932 /* Unexp. Disc / Sel Timeout */
2933 if (srb
->state
!= SRB_START_
2934 && srb
->state
!= SRB_MSGOUT
) {
2935 srb
->state
= SRB_READY
;
2936 dprintkl(KERN_DEBUG
,
2937 "disconnect: (0x%p) Unexpected\n",
2939 srb
->target_status
= SCSI_STAT_SEL_TIMEOUT
;
2942 /* Normal selection timeout */
2943 dprintkdbg(DBG_KG
, "disconnect: (0x%p) "
2944 "<%02i-%i> SelTO\n", srb
->cmd
,
2945 dcb
->target_id
, dcb
->target_lun
);
2946 if (srb
->retry_count
++ > DC395x_MAX_RETRIES
2947 || acb
->scan_devices
) {
2948 srb
->target_status
=
2949 SCSI_STAT_SEL_TIMEOUT
;
2953 list_move(&srb
->list
, &dcb
->srb_waiting_list
);
2955 "disconnect: (0x%p) Retry\n",
2957 waiting_set_timer(acb
, HZ
/ 20);
2959 } else if (srb
->state
& SRB_DISCONNECT
) {
2960 u8 bval
= DC395x_read8(acb
, TRM_S1040_SCSI_SIGNAL
);
2962 * SRB_DISCONNECT (This is what we expect!)
2965 dprintkdbg(DBG_0
, "disconnect: SCSI bus stat "
2966 " 0x%02x: ACK set! Other controllers?\n",
2968 /* It could come from another initiator, therefore don't do much ! */
2970 waiting_process_next(acb
);
2971 } else if (srb
->state
& SRB_COMPLETED
) {
2977 dcb
->active_srb
= NULL
;
2978 srb
->state
= SRB_FREE
;
2979 srb_done(acb
, dcb
, srb
);
2985 static void reselect(struct AdapterCtlBlk
*acb
)
2987 struct DeviceCtlBlk
*dcb
= acb
->active_dcb
;
2988 struct ScsiReqBlk
*srb
= NULL
;
2989 u16 rsel_tar_lun_id
;
2991 dprintkdbg(DBG_0
, "reselect: acb=%p\n", acb
);
2993 clear_fifo(acb
, "reselect");
2994 /*DC395x_write16(acb, TRM_S1040_SCSI_CONTROL, DO_HWRESELECT | DO_DATALATCH); */
2995 /* Read Reselected Target ID and LUN */
2996 rsel_tar_lun_id
= DC395x_read16(acb
, TRM_S1040_SCSI_TARGETID
);
2997 if (dcb
) { /* Arbitration lost but Reselection win */
2998 srb
= dcb
->active_srb
;
3000 dprintkl(KERN_DEBUG
, "reselect: Arb lost Resel won, "
3001 "but active_srb == NULL\n");
3002 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_DATALATCH
); /* it's important for atn stop */
3006 if (!acb
->scan_devices
) {
3007 dprintkdbg(DBG_KG
, "reselect: (0x%p) <%02i-%i> "
3008 "Arb lost but Resel win rsel=%i stat=0x%04x\n",
3009 srb
->cmd
, dcb
->target_id
,
3010 dcb
->target_lun
, rsel_tar_lun_id
,
3011 DC395x_read16(acb
, TRM_S1040_SCSI_STATUS
));
3012 /*srb->state |= SRB_DISCONNECT; */
3014 srb
->state
= SRB_READY
;
3016 list_move(&srb
->list
, &dcb
->srb_waiting_list
);
3017 waiting_set_timer(acb
, HZ
/ 20);
3022 /* Read Reselected Target Id and LUN */
3023 if (!(rsel_tar_lun_id
& (IDENTIFY_BASE
<< 8)))
3024 dprintkl(KERN_DEBUG
, "reselect: Expects identify msg. "
3025 "Got %i!\n", rsel_tar_lun_id
);
3026 id
= rsel_tar_lun_id
& 0xff;
3027 lun
= (rsel_tar_lun_id
>> 8) & 7;
3028 dcb
= find_dcb(acb
, id
, lun
);
3030 dprintkl(KERN_ERR
, "reselect: From non existent device "
3031 "<%02i-%i>\n", id
, lun
);
3032 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_DATALATCH
); /* it's important for atn stop */
3035 acb
->active_dcb
= dcb
;
3037 if (!(dcb
->dev_mode
& NTC_DO_DISCONNECT
))
3038 dprintkl(KERN_DEBUG
, "reselect: in spite of forbidden "
3039 "disconnection? <%02i-%i>\n",
3040 dcb
->target_id
, dcb
->target_lun
);
3042 if (dcb
->sync_mode
& EN_TAG_QUEUEING
) {
3044 dcb
->active_srb
= srb
;
3046 /* There can be only one! */
3047 srb
= dcb
->active_srb
;
3048 if (!srb
|| !(srb
->state
& SRB_DISCONNECT
)) {
3052 dprintkl(KERN_DEBUG
,
3053 "reselect: w/o disconnected cmds <%02i-%i>\n",
3054 dcb
->target_id
, dcb
->target_lun
);
3056 srb
->state
= SRB_UNEXPECT_RESEL
;
3057 dcb
->active_srb
= srb
;
3058 enable_msgout_abort(acb
, srb
);
3060 if (dcb
->flag
& ABORT_DEV_
) {
3061 /*srb->state = SRB_ABORT_SENT; */
3062 enable_msgout_abort(acb
, srb
);
3064 srb
->state
= SRB_DATA_XFER
;
3068 srb
->scsi_phase
= PH_BUS_FREE
; /* initial phase */
3070 /* Program HA ID, target ID, period and offset */
3071 dprintkdbg(DBG_0
, "reselect: select <%i>\n", dcb
->target_id
);
3072 DC395x_write8(acb
, TRM_S1040_SCSI_HOSTID
, acb
->scsi_host
->this_id
); /* host ID */
3073 DC395x_write8(acb
, TRM_S1040_SCSI_TARGETID
, dcb
->target_id
); /* target ID */
3074 DC395x_write8(acb
, TRM_S1040_SCSI_OFFSET
, dcb
->sync_offset
); /* offset */
3075 DC395x_write8(acb
, TRM_S1040_SCSI_SYNC
, dcb
->sync_period
); /* sync period, wide */
3076 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_DATALATCH
); /* it's important for atn stop */
3078 DC395x_write8(acb
, TRM_S1040_SCSI_COMMAND
, SCMD_MSGACCEPT
);
3082 static inline u8
tagq_blacklist(char *name
)
3084 #ifndef DC395x_NO_TAGQ
3087 for (i
= 0; i
< BADDEVCNT
; i
++)
3088 if (memcmp(name
, DC395x_baddevname1
[i
], 28) == 0)
3098 static void disc_tagq_set(struct DeviceCtlBlk
*dcb
, struct ScsiInqData
*ptr
)
3100 /* Check for SCSI format (ANSI and Response data format) */
3101 if ((ptr
->Vers
& 0x07) >= 2 || (ptr
->RDF
& 0x0F) == 2) {
3102 if ((ptr
->Flags
& SCSI_INQ_CMDQUEUE
)
3103 && (dcb
->dev_mode
& NTC_DO_TAG_QUEUEING
) &&
3104 /*(dcb->dev_mode & NTC_DO_DISCONNECT) */
3105 /* ((dcb->dev_type == TYPE_DISK)
3106 || (dcb->dev_type == TYPE_MOD)) && */
3107 !tagq_blacklist(((char *)ptr
) + 8)) {
3108 if (dcb
->max_command
== 1)
3110 dcb
->acb
->tag_max_num
;
3111 dcb
->sync_mode
|= EN_TAG_QUEUEING
;
3112 /*dcb->tag_mask = 0; */
3114 dcb
->max_command
= 1;
3119 static void add_dev(struct AdapterCtlBlk
*acb
, struct DeviceCtlBlk
*dcb
,
3120 struct ScsiInqData
*ptr
)
3122 u8 bval1
= ptr
->DevType
& SCSI_DEVTYPE
;
3123 dcb
->dev_type
= bval1
;
3124 /* if (bval1 == TYPE_DISK || bval1 == TYPE_MOD) */
3125 disc_tagq_set(dcb
, ptr
);
3129 /* unmap mapped pci regions from SRB */
3130 static void pci_unmap_srb(struct AdapterCtlBlk
*acb
, struct ScsiReqBlk
*srb
)
3132 struct scsi_cmnd
*cmd
= srb
->cmd
;
3133 enum dma_data_direction dir
= cmd
->sc_data_direction
;
3135 if (scsi_sg_count(cmd
) && dir
!= DMA_NONE
) {
3136 /* unmap DC395x SG list */
3137 dprintkdbg(DBG_SG
, "pci_unmap_srb: list=%08x(%05x)\n",
3138 srb
->sg_bus_addr
, SEGMENTX_LEN
);
3139 dma_unmap_single(&acb
->dev
->dev
, srb
->sg_bus_addr
, SEGMENTX_LEN
,
3141 dprintkdbg(DBG_SG
, "pci_unmap_srb: segs=%i buffer=%p\n",
3142 scsi_sg_count(cmd
), scsi_bufflen(cmd
));
3143 /* unmap the sg segments */
3144 scsi_dma_unmap(cmd
);
3149 /* unmap mapped pci sense buffer from SRB */
3150 static void pci_unmap_srb_sense(struct AdapterCtlBlk
*acb
,
3151 struct ScsiReqBlk
*srb
)
3153 if (!(srb
->flag
& AUTO_REQSENSE
))
3155 /* Unmap sense buffer */
3156 dprintkdbg(DBG_SG
, "pci_unmap_srb_sense: buffer=%08x\n",
3157 srb
->segment_x
[0].address
);
3158 dma_unmap_single(&acb
->dev
->dev
, srb
->segment_x
[0].address
,
3159 srb
->segment_x
[0].length
, DMA_FROM_DEVICE
);
3160 /* Restore SG stuff */
3161 srb
->total_xfer_length
= srb
->xferred
;
3162 srb
->segment_x
[0].address
=
3163 srb
->segment_x
[DC395x_MAX_SG_LISTENTRY
- 1].address
;
3164 srb
->segment_x
[0].length
=
3165 srb
->segment_x
[DC395x_MAX_SG_LISTENTRY
- 1].length
;
3170 * Complete execution of a SCSI command
3171 * Signal completion to the generic SCSI driver
3173 static void srb_done(struct AdapterCtlBlk
*acb
, struct DeviceCtlBlk
*dcb
,
3174 struct ScsiReqBlk
*srb
)
3177 struct scsi_cmnd
*cmd
= srb
->cmd
;
3178 enum dma_data_direction dir
= cmd
->sc_data_direction
;
3181 dprintkdbg(DBG_1
, "srb_done: (0x%p) <%02i-%i>\n", srb
->cmd
,
3182 srb
->cmd
->device
->id
, (u8
)srb
->cmd
->device
->lun
);
3183 dprintkdbg(DBG_SG
, "srb_done: srb=%p sg=%i(%i/%i) buf=%p\n",
3184 srb
, scsi_sg_count(cmd
), srb
->sg_index
, srb
->sg_count
,
3186 status
= srb
->target_status
;
3187 if (srb
->flag
& AUTO_REQSENSE
) {
3188 dprintkdbg(DBG_0
, "srb_done: AUTO_REQSENSE1\n");
3189 pci_unmap_srb_sense(acb
, srb
);
3191 ** target status..........................
3193 srb
->flag
&= ~AUTO_REQSENSE
;
3194 srb
->adapter_status
= 0;
3195 srb
->target_status
= CHECK_CONDITION
<< 1;
3196 if (debug_enabled(DBG_1
)) {
3197 switch (cmd
->sense_buffer
[2] & 0x0f) {
3199 dprintkl(KERN_DEBUG
,
3200 "ReqSense: NOT_READY cmnd=0x%02x <%02i-%i> stat=%i scan=%i ",
3201 cmd
->cmnd
[0], dcb
->target_id
,
3202 dcb
->target_lun
, status
, acb
->scan_devices
);
3204 case UNIT_ATTENTION
:
3205 dprintkl(KERN_DEBUG
,
3206 "ReqSense: UNIT_ATTENTION cmnd=0x%02x <%02i-%i> stat=%i scan=%i ",
3207 cmd
->cmnd
[0], dcb
->target_id
,
3208 dcb
->target_lun
, status
, acb
->scan_devices
);
3210 case ILLEGAL_REQUEST
:
3211 dprintkl(KERN_DEBUG
,
3212 "ReqSense: ILLEGAL_REQUEST cmnd=0x%02x <%02i-%i> stat=%i scan=%i ",
3213 cmd
->cmnd
[0], dcb
->target_id
,
3214 dcb
->target_lun
, status
, acb
->scan_devices
);
3217 dprintkl(KERN_DEBUG
,
3218 "ReqSense: MEDIUM_ERROR cmnd=0x%02x <%02i-%i> stat=%i scan=%i ",
3219 cmd
->cmnd
[0], dcb
->target_id
,
3220 dcb
->target_lun
, status
, acb
->scan_devices
);
3222 case HARDWARE_ERROR
:
3223 dprintkl(KERN_DEBUG
,
3224 "ReqSense: HARDWARE_ERROR cmnd=0x%02x <%02i-%i> stat=%i scan=%i ",
3225 cmd
->cmnd
[0], dcb
->target_id
,
3226 dcb
->target_lun
, status
, acb
->scan_devices
);
3229 if (cmd
->sense_buffer
[7] >= 6)
3230 printk("sense=0x%02x ASC=0x%02x ASCQ=0x%02x "
3231 "(0x%08x 0x%08x)\n",
3232 cmd
->sense_buffer
[2], cmd
->sense_buffer
[12],
3233 cmd
->sense_buffer
[13],
3234 *((unsigned int *)(cmd
->sense_buffer
+ 3)),
3235 *((unsigned int *)(cmd
->sense_buffer
+ 8)));
3237 printk("sense=0x%02x No ASC/ASCQ (0x%08x)\n",
3238 cmd
->sense_buffer
[2],
3239 *((unsigned int *)(cmd
->sense_buffer
+ 3)));
3242 if (status
== (CHECK_CONDITION
<< 1)) {
3243 cmd
->result
= DID_BAD_TARGET
<< 16;
3246 dprintkdbg(DBG_0
, "srb_done: AUTO_REQSENSE2\n");
3248 if (srb
->total_xfer_length
3249 && srb
->total_xfer_length
>= cmd
->underflow
)
3251 MK_RES_LNX(DRIVER_SENSE
, DID_OK
,
3252 srb
->end_message
, CHECK_CONDITION
);
3253 /*SET_RES_DID(cmd->result,DID_OK) */
3256 MK_RES_LNX(DRIVER_SENSE
, DID_OK
,
3257 srb
->end_message
, CHECK_CONDITION
);
3262 /*************************************************************/
3265 * target status..........................
3267 if (status_byte(status
) == CHECK_CONDITION
) {
3268 request_sense(acb
, dcb
, srb
);
3270 } else if (status_byte(status
) == QUEUE_FULL
) {
3271 tempcnt
= (u8
)list_size(&dcb
->srb_going_list
);
3272 dprintkl(KERN_INFO
, "QUEUE_FULL for dev <%02i-%i> with %i cmnds\n",
3273 dcb
->target_id
, dcb
->target_lun
, tempcnt
);
3276 dcb
->max_command
= tempcnt
;
3278 list_move(&srb
->list
, &dcb
->srb_waiting_list
);
3279 waiting_set_timer(acb
, HZ
/ 20);
3280 srb
->adapter_status
= 0;
3281 srb
->target_status
= 0;
3283 } else if (status
== SCSI_STAT_SEL_TIMEOUT
) {
3284 srb
->adapter_status
= H_SEL_TIMEOUT
;
3285 srb
->target_status
= 0;
3286 cmd
->result
= DID_NO_CONNECT
<< 16;
3288 srb
->adapter_status
= 0;
3289 SET_RES_DID(cmd
->result
, DID_ERROR
);
3290 SET_RES_MSG(cmd
->result
, srb
->end_message
);
3291 SET_RES_TARGET(cmd
->result
, status
);
3296 ** process initiator status..........................
3298 status
= srb
->adapter_status
;
3299 if (status
& H_OVER_UNDER_RUN
) {
3300 srb
->target_status
= 0;
3301 SET_RES_DID(cmd
->result
, DID_OK
);
3302 SET_RES_MSG(cmd
->result
, srb
->end_message
);
3303 } else if (srb
->status
& PARITY_ERROR
) {
3304 SET_RES_DID(cmd
->result
, DID_PARITY
);
3305 SET_RES_MSG(cmd
->result
, srb
->end_message
);
3306 } else { /* No error */
3308 srb
->adapter_status
= 0;
3309 srb
->target_status
= 0;
3310 SET_RES_DID(cmd
->result
, DID_OK
);
3315 /* Check Error Conditions */
3318 pci_unmap_srb(acb
, srb
);
3320 if (cmd
->cmnd
[0] == INQUIRY
) {
3321 unsigned char *base
= NULL
;
3322 struct ScsiInqData
*ptr
;
3323 unsigned long flags
= 0;
3324 struct scatterlist
* sg
= scsi_sglist(cmd
);
3325 size_t offset
= 0, len
= sizeof(struct ScsiInqData
);
3327 local_irq_save(flags
);
3328 base
= scsi_kmap_atomic_sg(sg
, scsi_sg_count(cmd
), &offset
, &len
);
3329 ptr
= (struct ScsiInqData
*)(base
+ offset
);
3331 if (!ckc_only
&& (cmd
->result
& RES_DID
) == 0
3332 && cmd
->cmnd
[2] == 0 && scsi_bufflen(cmd
) >= 8
3333 && dir
!= DMA_NONE
&& ptr
&& (ptr
->Vers
& 0x07) >= 2)
3334 dcb
->inquiry7
= ptr
->Flags
;
3336 /*if( srb->cmd->cmnd[0] == INQUIRY && */
3337 /* (host_byte(cmd->result) == DID_OK || status_byte(cmd->result) & CHECK_CONDITION) ) */
3338 if ((cmd
->result
== (DID_OK
<< 16) ||
3339 status_byte(cmd
->result
) == CHECK_CONDITION
)) {
3340 if (!dcb
->init_tcq_flag
) {
3341 add_dev(acb
, dcb
, ptr
);
3342 dcb
->init_tcq_flag
= 1;
3346 scsi_kunmap_atomic_sg(base
);
3347 local_irq_restore(flags
);
3350 /* Here is the info for Doug Gilbert's sg3 ... */
3351 scsi_set_resid(cmd
, srb
->total_xfer_length
);
3352 /* This may be interpreted by sb. or not ... */
3353 cmd
->SCp
.this_residual
= srb
->total_xfer_length
;
3354 cmd
->SCp
.buffers_residual
= 0;
3355 if (debug_enabled(DBG_KG
)) {
3356 if (srb
->total_xfer_length
)
3357 dprintkdbg(DBG_KG
, "srb_done: (0x%p) <%02i-%i> "
3358 "cmnd=0x%02x Missed %i bytes\n",
3359 cmd
, cmd
->device
->id
, (u8
)cmd
->device
->lun
,
3360 cmd
->cmnd
[0], srb
->total_xfer_length
);
3363 if (srb
!= acb
->tmp_srb
) {
3364 /* Add to free list */
3365 dprintkdbg(DBG_0
, "srb_done: (0x%p) done result=0x%08x\n",
3367 list_move_tail(&srb
->list
, &acb
->srb_free_list
);
3369 dprintkl(KERN_ERR
, "srb_done: ERROR! Completed cmd with tmp_srb\n");
3372 cmd
->scsi_done(cmd
);
3373 waiting_process_next(acb
);
3377 /* abort all cmds in our queues */
3378 static void doing_srb_done(struct AdapterCtlBlk
*acb
, u8 did_flag
,
3379 struct scsi_cmnd
*cmd
, u8 force
)
3381 struct DeviceCtlBlk
*dcb
;
3382 dprintkl(KERN_INFO
, "doing_srb_done: pids ");
3384 list_for_each_entry(dcb
, &acb
->dcb_list
, list
) {
3385 struct ScsiReqBlk
*srb
;
3386 struct ScsiReqBlk
*tmp
;
3387 struct scsi_cmnd
*p
;
3389 list_for_each_entry_safe(srb
, tmp
, &dcb
->srb_going_list
, list
) {
3393 result
= MK_RES(0, did_flag
, 0, 0);
3394 printk("G:%p(%02i-%i) ", p
,
3395 p
->device
->id
, (u8
)p
->device
->lun
);
3396 list_del(&srb
->list
);
3398 list_add_tail(&srb
->list
, &acb
->srb_free_list
);
3400 pci_unmap_srb_sense(acb
, srb
);
3401 pci_unmap_srb(acb
, srb
);
3403 /* For new EH, we normally don't need to give commands back,
3404 * as they all complete or all time out */
3408 if (!list_empty(&dcb
->srb_going_list
))
3409 dprintkl(KERN_DEBUG
,
3410 "How could the ML send cmnds to the Going queue? <%02i-%i>\n",
3411 dcb
->target_id
, dcb
->target_lun
);
3413 dprintkl(KERN_DEBUG
,
3414 "tag_mask for <%02i-%i> should be empty, is %08x!\n",
3415 dcb
->target_id
, dcb
->target_lun
,
3419 list_for_each_entry_safe(srb
, tmp
, &dcb
->srb_waiting_list
, list
) {
3423 result
= MK_RES(0, did_flag
, 0, 0);
3424 printk("W:%p<%02i-%i>", p
, p
->device
->id
,
3425 (u8
)p
->device
->lun
);
3426 list_move_tail(&srb
->list
, &acb
->srb_free_list
);
3428 pci_unmap_srb_sense(acb
, srb
);
3429 pci_unmap_srb(acb
, srb
);
3431 /* For new EH, we normally don't need to give commands back,
3432 * as they all complete or all time out */
3433 cmd
->scsi_done(cmd
);
3436 if (!list_empty(&dcb
->srb_waiting_list
))
3437 dprintkl(KERN_DEBUG
, "ML queued %i cmnds again to <%02i-%i>\n",
3438 list_size(&dcb
->srb_waiting_list
), dcb
->target_id
,
3440 dcb
->flag
&= ~ABORT_DEV_
;
3446 static void reset_scsi_bus(struct AdapterCtlBlk
*acb
)
3448 dprintkdbg(DBG_0
, "reset_scsi_bus: acb=%p\n", acb
);
3449 acb
->acb_flag
|= RESET_DEV
; /* RESET_DETECT, RESET_DONE, RESET_DEV */
3450 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_RSTSCSI
);
3452 while (!(DC395x_read8(acb
, TRM_S1040_SCSI_INTSTATUS
) & INT_SCSIRESET
))
3457 static void set_basic_config(struct AdapterCtlBlk
*acb
)
3461 DC395x_write8(acb
, TRM_S1040_SCSI_TIMEOUT
, acb
->sel_timeout
);
3462 if (acb
->config
& HCC_PARITY
)
3463 bval
= PHASELATCH
| INITIATOR
| BLOCKRST
| PARITYCHECK
;
3465 bval
= PHASELATCH
| INITIATOR
| BLOCKRST
;
3467 DC395x_write8(acb
, TRM_S1040_SCSI_CONFIG0
, bval
);
3469 /* program configuration 1: Act_Neg (+ Act_Neg_Enh? + Fast_Filter? + DataDis?) */
3470 DC395x_write8(acb
, TRM_S1040_SCSI_CONFIG1
, 0x03); /* was 0x13: default */
3471 /* program Host ID */
3472 DC395x_write8(acb
, TRM_S1040_SCSI_HOSTID
, acb
->scsi_host
->this_id
);
3473 /* set ansynchronous transfer */
3474 DC395x_write8(acb
, TRM_S1040_SCSI_OFFSET
, 0x00);
3475 /* Turn LED control off */
3476 wval
= DC395x_read16(acb
, TRM_S1040_GEN_CONTROL
) & 0x7F;
3477 DC395x_write16(acb
, TRM_S1040_GEN_CONTROL
, wval
);
3479 wval
= DC395x_read16(acb
, TRM_S1040_DMA_CONFIG
) & ~DMA_FIFO_CTRL
;
3481 DMA_FIFO_HALF_HALF
| DMA_ENHANCE
/*| DMA_MEM_MULTI_READ */ ;
3482 DC395x_write16(acb
, TRM_S1040_DMA_CONFIG
, wval
);
3483 /* Clear pending interrupt status */
3484 DC395x_read8(acb
, TRM_S1040_SCSI_INTSTATUS
);
3485 /* Enable SCSI interrupt */
3486 DC395x_write8(acb
, TRM_S1040_SCSI_INTEN
, 0x7F);
3487 DC395x_write8(acb
, TRM_S1040_DMA_INTEN
, EN_SCSIINTR
| EN_DMAXFERERROR
3488 /*| EN_DMAXFERABORT | EN_DMAXFERCOMP | EN_FORCEDMACOMP */
3493 static void scsi_reset_detect(struct AdapterCtlBlk
*acb
)
3495 dprintkl(KERN_INFO
, "scsi_reset_detect: acb=%p\n", acb
);
3496 /* delay half a second */
3497 if (timer_pending(&acb
->waiting_timer
))
3498 del_timer(&acb
->waiting_timer
);
3500 DC395x_write8(acb
, TRM_S1040_SCSI_CONTROL
, DO_RSTMODULE
);
3501 DC395x_write8(acb
, TRM_S1040_DMA_CONTROL
, DMARESETMODULE
);
3502 /*DC395x_write8(acb, TRM_S1040_DMA_CONTROL,STOPDMAXFER); */
3504 /* Maybe we locked up the bus? Then lets wait even longer ... */
3506 jiffies
+ 5 * HZ
/ 2 +
3507 HZ
* acb
->eeprom
.delay_time
;
3509 clear_fifo(acb
, "scsi_reset_detect");
3510 set_basic_config(acb
);
3512 /*DC395x_write16(acb, TRM_S1040_SCSI_CONTROL, DO_HWRESELECT); */
3514 if (acb
->acb_flag
& RESET_DEV
) { /* RESET_DETECT, RESET_DONE, RESET_DEV */
3515 acb
->acb_flag
|= RESET_DONE
;
3517 acb
->acb_flag
|= RESET_DETECT
;
3518 reset_dev_param(acb
);
3519 doing_srb_done(acb
, DID_RESET
, NULL
, 1);
3520 /*DC395x_RecoverSRB( acb ); */
3521 acb
->active_dcb
= NULL
;
3523 waiting_process_next(acb
);
3528 static void request_sense(struct AdapterCtlBlk
*acb
, struct DeviceCtlBlk
*dcb
,
3529 struct ScsiReqBlk
*srb
)
3531 struct scsi_cmnd
*cmd
= srb
->cmd
;
3532 dprintkdbg(DBG_1
, "request_sense: (0x%p) <%02i-%i>\n",
3533 cmd
, cmd
->device
->id
, (u8
)cmd
->device
->lun
);
3535 srb
->flag
|= AUTO_REQSENSE
;
3536 srb
->adapter_status
= 0;
3537 srb
->target_status
= 0;
3539 /* KG: Can this prevent crap sense data ? */
3540 memset(cmd
->sense_buffer
, 0, SCSI_SENSE_BUFFERSIZE
);
3542 /* Save some data */
3543 srb
->segment_x
[DC395x_MAX_SG_LISTENTRY
- 1].address
=
3544 srb
->segment_x
[0].address
;
3545 srb
->segment_x
[DC395x_MAX_SG_LISTENTRY
- 1].length
=
3546 srb
->segment_x
[0].length
;
3547 srb
->xferred
= srb
->total_xfer_length
;
3548 /* srb->segment_x : a one entry of S/G list table */
3549 srb
->total_xfer_length
= SCSI_SENSE_BUFFERSIZE
;
3550 srb
->segment_x
[0].length
= SCSI_SENSE_BUFFERSIZE
;
3551 /* Map sense buffer */
3552 srb
->segment_x
[0].address
= dma_map_single(&acb
->dev
->dev
,
3553 cmd
->sense_buffer
, SCSI_SENSE_BUFFERSIZE
,
3555 dprintkdbg(DBG_SG
, "request_sense: map buffer %p->%08x(%05x)\n",
3556 cmd
->sense_buffer
, srb
->segment_x
[0].address
,
3557 SCSI_SENSE_BUFFERSIZE
);
3561 if (start_scsi(acb
, dcb
, srb
)) { /* Should only happen, if sb. else grabs the bus */
3562 dprintkl(KERN_DEBUG
,
3563 "request_sense: (0x%p) failed <%02i-%i>\n",
3564 srb
->cmd
, dcb
->target_id
, dcb
->target_lun
);
3565 list_move(&srb
->list
, &dcb
->srb_waiting_list
);
3566 waiting_set_timer(acb
, HZ
/ 100);
3572 * device_alloc - Allocate a new device instance. This create the
3573 * devices instance and sets up all the data items. The adapter
3574 * instance is required to obtain confiuration information for this
3575 * device. This does *not* add this device to the adapters device
3578 * @acb: The adapter to obtain configuration information from.
3579 * @target: The target for the new device.
3580 * @lun: The lun for the new device.
3582 * Return the new device if successful or NULL on failure.
3584 static struct DeviceCtlBlk
*device_alloc(struct AdapterCtlBlk
*acb
,
3587 struct NvRamType
*eeprom
= &acb
->eeprom
;
3588 u8 period_index
= eeprom
->target
[target
].period
& 0x07;
3589 struct DeviceCtlBlk
*dcb
;
3591 dcb
= kmalloc(sizeof(struct DeviceCtlBlk
), GFP_ATOMIC
);
3592 dprintkdbg(DBG_0
, "device_alloc: <%02i-%i>\n", target
, lun
);
3596 INIT_LIST_HEAD(&dcb
->srb_going_list
);
3597 INIT_LIST_HEAD(&dcb
->srb_waiting_list
);
3598 dcb
->active_srb
= NULL
;
3600 dcb
->max_command
= 1;
3601 dcb
->target_id
= target
;
3602 dcb
->target_lun
= lun
;
3603 dcb
->dev_mode
= eeprom
->target
[target
].cfg0
;
3604 #ifndef DC395x_NO_DISCONNECT
3606 IDENTIFY(dcb
->dev_mode
& NTC_DO_DISCONNECT
, lun
);
3608 dcb
->identify_msg
= IDENTIFY(0, lun
);
3612 dcb
->min_nego_period
= clock_period
[period_index
];
3613 dcb
->sync_period
= 0;
3614 dcb
->sync_offset
= 0;
3617 #ifndef DC395x_NO_WIDE
3618 if ((dcb
->dev_mode
& NTC_DO_WIDE_NEGO
)
3619 && (acb
->config
& HCC_WIDE_CARD
))
3620 dcb
->sync_mode
|= WIDE_NEGO_ENABLE
;
3622 #ifndef DC395x_NO_SYNC
3623 if (dcb
->dev_mode
& NTC_DO_SYNC_NEGO
)
3624 if (!(lun
) || current_sync_offset
)
3625 dcb
->sync_mode
|= SYNC_NEGO_ENABLE
;
3627 if (dcb
->target_lun
!= 0) {
3629 struct DeviceCtlBlk
*p
;
3630 list_for_each_entry(p
, &acb
->dcb_list
, list
)
3631 if (p
->target_id
== dcb
->target_id
)
3634 "device_alloc: <%02i-%i> copy from <%02i-%i>\n",
3635 dcb
->target_id
, dcb
->target_lun
,
3636 p
->target_id
, p
->target_lun
);
3637 dcb
->sync_mode
= p
->sync_mode
;
3638 dcb
->sync_period
= p
->sync_period
;
3639 dcb
->min_nego_period
= p
->min_nego_period
;
3640 dcb
->sync_offset
= p
->sync_offset
;
3641 dcb
->inquiry7
= p
->inquiry7
;
3648 * adapter_add_device - Adds the device instance to the adaptor instance.
3650 * @acb: The adapter device to be updated
3651 * @dcb: A newly created and initialised device instance to add.
3653 static void adapter_add_device(struct AdapterCtlBlk
*acb
,
3654 struct DeviceCtlBlk
*dcb
)
3656 /* backpointer to adapter */
3659 /* set run_robin to this device if it is currently empty */
3660 if (list_empty(&acb
->dcb_list
))
3661 acb
->dcb_run_robin
= dcb
;
3663 /* add device to list */
3664 list_add_tail(&dcb
->list
, &acb
->dcb_list
);
3666 /* update device maps */
3667 acb
->dcb_map
[dcb
->target_id
] |= (1 << dcb
->target_lun
);
3668 acb
->children
[dcb
->target_id
][dcb
->target_lun
] = dcb
;
3673 * adapter_remove_device - Removes the device instance from the adaptor
3674 * instance. The device instance is not check in any way or freed by this.
3675 * The caller is expected to take care of that. This will simply remove the
3676 * device from the adapters data strcutures.
3678 * @acb: The adapter device to be updated
3679 * @dcb: A device that has previously been added to the adapter.
3681 static void adapter_remove_device(struct AdapterCtlBlk
*acb
,
3682 struct DeviceCtlBlk
*dcb
)
3684 struct DeviceCtlBlk
*i
;
3685 struct DeviceCtlBlk
*tmp
;
3686 dprintkdbg(DBG_0
, "adapter_remove_device: <%02i-%i>\n",
3687 dcb
->target_id
, dcb
->target_lun
);
3689 /* fix up any pointers to this device that we have in the adapter */
3690 if (acb
->active_dcb
== dcb
)
3691 acb
->active_dcb
= NULL
;
3692 if (acb
->dcb_run_robin
== dcb
)
3693 acb
->dcb_run_robin
= dcb_get_next(&acb
->dcb_list
, dcb
);
3695 /* unlink from list */
3696 list_for_each_entry_safe(i
, tmp
, &acb
->dcb_list
, list
)
3702 /* clear map and children */
3703 acb
->dcb_map
[dcb
->target_id
] &= ~(1 << dcb
->target_lun
);
3704 acb
->children
[dcb
->target_id
][dcb
->target_lun
] = NULL
;
3710 * adapter_remove_and_free_device - Removes a single device from the adapter
3711 * and then frees the device information.
3713 * @acb: The adapter device to be updated
3714 * @dcb: A device that has previously been added to the adapter.
3716 static void adapter_remove_and_free_device(struct AdapterCtlBlk
*acb
,
3717 struct DeviceCtlBlk
*dcb
)
3719 if (list_size(&dcb
->srb_going_list
) > 1) {
3720 dprintkdbg(DBG_1
, "adapter_remove_and_free_device: <%02i-%i> "
3721 "Won't remove because of %i active requests.\n",
3722 dcb
->target_id
, dcb
->target_lun
,
3723 list_size(&dcb
->srb_going_list
));
3726 adapter_remove_device(acb
, dcb
);
3732 * adapter_remove_and_free_all_devices - Removes and frees all of the
3733 * devices associated with the specified adapter.
3735 * @acb: The adapter from which all devices should be removed.
3737 static void adapter_remove_and_free_all_devices(struct AdapterCtlBlk
* acb
)
3739 struct DeviceCtlBlk
*dcb
;
3740 struct DeviceCtlBlk
*tmp
;
3741 dprintkdbg(DBG_1
, "adapter_remove_and_free_all_devices: num=%i\n",
3742 list_size(&acb
->dcb_list
));
3744 list_for_each_entry_safe(dcb
, tmp
, &acb
->dcb_list
, list
)
3745 adapter_remove_and_free_device(acb
, dcb
);
3750 * dc395x_slave_alloc - Called by the scsi mid layer to tell us about a new
3751 * scsi device that we need to deal with. We allocate a new device and then
3752 * insert that device into the adapters device list.
3754 * @scsi_device: The new scsi device that we need to handle.
3756 static int dc395x_slave_alloc(struct scsi_device
*scsi_device
)
3758 struct AdapterCtlBlk
*acb
= (struct AdapterCtlBlk
*)scsi_device
->host
->hostdata
;
3759 struct DeviceCtlBlk
*dcb
;
3761 dcb
= device_alloc(acb
, scsi_device
->id
, scsi_device
->lun
);
3764 adapter_add_device(acb
, dcb
);
3771 * dc395x_slave_destroy - Called by the scsi mid layer to tell us about a
3772 * device that is going away.
3774 * @scsi_device: The new scsi device that we need to handle.
3776 static void dc395x_slave_destroy(struct scsi_device
*scsi_device
)
3778 struct AdapterCtlBlk
*acb
= (struct AdapterCtlBlk
*)scsi_device
->host
->hostdata
;
3779 struct DeviceCtlBlk
*dcb
= find_dcb(acb
, scsi_device
->id
, scsi_device
->lun
);
3781 adapter_remove_and_free_device(acb
, dcb
);
3788 * trms1040_wait_30us: wait for 30 us
3790 * Waits for 30us (using the chip by the looks of it..)
3792 * @io_port: base I/O address
3794 static void trms1040_wait_30us(unsigned long io_port
)
3796 /* ScsiPortStallExecution(30); wait 30 us */
3797 outb(5, io_port
+ TRM_S1040_GEN_TIMER
);
3798 while (!(inb(io_port
+ TRM_S1040_GEN_STATUS
) & GTIMEOUT
))
3804 * trms1040_write_cmd - write the secified command and address to
3807 * @io_port: base I/O address
3808 * @cmd: SB + op code (command) to send
3809 * @addr: address to send
3811 static void trms1040_write_cmd(unsigned long io_port
, u8 cmd
, u8 addr
)
3816 /* program SB + OP code */
3817 for (i
= 0; i
< 3; i
++, cmd
<<= 1) {
3818 send_data
= NVR_SELECT
;
3819 if (cmd
& 0x04) /* Start from bit 2 */
3820 send_data
|= NVR_BITOUT
;
3822 outb(send_data
, io_port
+ TRM_S1040_GEN_NVRAM
);
3823 trms1040_wait_30us(io_port
);
3824 outb((send_data
| NVR_CLOCK
),
3825 io_port
+ TRM_S1040_GEN_NVRAM
);
3826 trms1040_wait_30us(io_port
);
3830 for (i
= 0; i
< 7; i
++, addr
<<= 1) {
3831 send_data
= NVR_SELECT
;
3832 if (addr
& 0x40) /* Start from bit 6 */
3833 send_data
|= NVR_BITOUT
;
3835 outb(send_data
, io_port
+ TRM_S1040_GEN_NVRAM
);
3836 trms1040_wait_30us(io_port
);
3837 outb((send_data
| NVR_CLOCK
),
3838 io_port
+ TRM_S1040_GEN_NVRAM
);
3839 trms1040_wait_30us(io_port
);
3841 outb(NVR_SELECT
, io_port
+ TRM_S1040_GEN_NVRAM
);
3842 trms1040_wait_30us(io_port
);
3847 * trms1040_set_data - store a single byte in the eeprom
3849 * Called from write all to write a single byte into the SSEEPROM
3850 * Which is done one bit at a time.
3852 * @io_port: base I/O address
3853 * @addr: offset into EEPROM
3854 * @byte: bytes to write
3856 static void trms1040_set_data(unsigned long io_port
, u8 addr
, u8 byte
)
3861 /* Send write command & address */
3862 trms1040_write_cmd(io_port
, 0x05, addr
);
3865 for (i
= 0; i
< 8; i
++, byte
<<= 1) {
3866 send_data
= NVR_SELECT
;
3867 if (byte
& 0x80) /* Start from bit 7 */
3868 send_data
|= NVR_BITOUT
;
3870 outb(send_data
, io_port
+ TRM_S1040_GEN_NVRAM
);
3871 trms1040_wait_30us(io_port
);
3872 outb((send_data
| NVR_CLOCK
), io_port
+ TRM_S1040_GEN_NVRAM
);
3873 trms1040_wait_30us(io_port
);
3875 outb(NVR_SELECT
, io_port
+ TRM_S1040_GEN_NVRAM
);
3876 trms1040_wait_30us(io_port
);
3878 /* Disable chip select */
3879 outb(0, io_port
+ TRM_S1040_GEN_NVRAM
);
3880 trms1040_wait_30us(io_port
);
3882 outb(NVR_SELECT
, io_port
+ TRM_S1040_GEN_NVRAM
);
3883 trms1040_wait_30us(io_port
);
3885 /* Wait for write ready */
3887 outb((NVR_SELECT
| NVR_CLOCK
), io_port
+ TRM_S1040_GEN_NVRAM
);
3888 trms1040_wait_30us(io_port
);
3890 outb(NVR_SELECT
, io_port
+ TRM_S1040_GEN_NVRAM
);
3891 trms1040_wait_30us(io_port
);
3893 if (inb(io_port
+ TRM_S1040_GEN_NVRAM
) & NVR_BITIN
)
3897 /* Disable chip select */
3898 outb(0, io_port
+ TRM_S1040_GEN_NVRAM
);
3903 * trms1040_write_all - write 128 bytes to the eeprom
3905 * Write the supplied 128 bytes to the chips SEEPROM
3907 * @eeprom: the data to write
3908 * @io_port: the base io port
3910 static void trms1040_write_all(struct NvRamType
*eeprom
, unsigned long io_port
)
3912 u8
*b_eeprom
= (u8
*)eeprom
;
3915 /* Enable SEEPROM */
3916 outb((inb(io_port
+ TRM_S1040_GEN_CONTROL
) | EN_EEPROM
),
3917 io_port
+ TRM_S1040_GEN_CONTROL
);
3920 trms1040_write_cmd(io_port
, 0x04, 0xFF);
3921 outb(0, io_port
+ TRM_S1040_GEN_NVRAM
);
3922 trms1040_wait_30us(io_port
);
3925 for (addr
= 0; addr
< 128; addr
++, b_eeprom
++)
3926 trms1040_set_data(io_port
, addr
, *b_eeprom
);
3929 trms1040_write_cmd(io_port
, 0x04, 0x00);
3930 outb(0, io_port
+ TRM_S1040_GEN_NVRAM
);
3931 trms1040_wait_30us(io_port
);
3933 /* Disable SEEPROM */
3934 outb((inb(io_port
+ TRM_S1040_GEN_CONTROL
) & ~EN_EEPROM
),
3935 io_port
+ TRM_S1040_GEN_CONTROL
);
3940 * trms1040_get_data - get a single byte from the eeprom
3942 * Called from read all to read a single byte into the SSEEPROM
3943 * Which is done one bit at a time.
3945 * @io_port: base I/O address
3946 * @addr: offset into SEEPROM
3948 * Returns the byte read.
3950 static u8
trms1040_get_data(unsigned long io_port
, u8 addr
)
3956 /* Send read command & address */
3957 trms1040_write_cmd(io_port
, 0x06, addr
);
3960 for (i
= 0; i
< 8; i
++) {
3961 outb((NVR_SELECT
| NVR_CLOCK
), io_port
+ TRM_S1040_GEN_NVRAM
);
3962 trms1040_wait_30us(io_port
);
3963 outb(NVR_SELECT
, io_port
+ TRM_S1040_GEN_NVRAM
);
3965 /* Get data bit while falling edge */
3966 read_byte
= inb(io_port
+ TRM_S1040_GEN_NVRAM
);
3968 if (read_byte
& NVR_BITIN
)
3971 trms1040_wait_30us(io_port
);
3974 /* Disable chip select */
3975 outb(0, io_port
+ TRM_S1040_GEN_NVRAM
);
3981 * trms1040_read_all - read all bytes from the eeprom
3983 * Read the 128 bytes from the SEEPROM.
3985 * @eeprom: where to store the data
3986 * @io_port: the base io port
3988 static void trms1040_read_all(struct NvRamType
*eeprom
, unsigned long io_port
)
3990 u8
*b_eeprom
= (u8
*)eeprom
;
3993 /* Enable SEEPROM */
3994 outb((inb(io_port
+ TRM_S1040_GEN_CONTROL
) | EN_EEPROM
),
3995 io_port
+ TRM_S1040_GEN_CONTROL
);
3998 for (addr
= 0; addr
< 128; addr
++, b_eeprom
++)
3999 *b_eeprom
= trms1040_get_data(io_port
, addr
);
4001 /* Disable SEEPROM */
4002 outb((inb(io_port
+ TRM_S1040_GEN_CONTROL
) & ~EN_EEPROM
),
4003 io_port
+ TRM_S1040_GEN_CONTROL
);
4009 * check_eeprom - get and check contents of the eeprom
4011 * Read seeprom 128 bytes into the memory provider in eeprom.
4012 * Checks the checksum and if it's not correct it uses a set of default
4015 * @eeprom: caller allocated strcuture to read the eeprom data into
4016 * @io_port: io port to read from
4018 static void check_eeprom(struct NvRamType
*eeprom
, unsigned long io_port
)
4020 u16
*w_eeprom
= (u16
*)eeprom
;
4026 trms1040_read_all(eeprom
, io_port
); /* read eeprom */
4029 for (w_addr
= 0, w_eeprom
= (u16
*)eeprom
; w_addr
< 64;
4030 w_addr
++, w_eeprom
++)
4032 if (cksum
!= 0x1234) {
4034 * Checksum is wrong.
4035 * Load a set of defaults into the eeprom buffer
4037 dprintkl(KERN_WARNING
,
4038 "EEProm checksum error: using default values and options.\n");
4039 eeprom
->sub_vendor_id
[0] = (u8
)PCI_VENDOR_ID_TEKRAM
;
4040 eeprom
->sub_vendor_id
[1] = (u8
)(PCI_VENDOR_ID_TEKRAM
>> 8);
4041 eeprom
->sub_sys_id
[0] = (u8
)PCI_DEVICE_ID_TEKRAM_TRMS1040
;
4042 eeprom
->sub_sys_id
[1] =
4043 (u8
)(PCI_DEVICE_ID_TEKRAM_TRMS1040
>> 8);
4044 eeprom
->sub_class
= 0x00;
4045 eeprom
->vendor_id
[0] = (u8
)PCI_VENDOR_ID_TEKRAM
;
4046 eeprom
->vendor_id
[1] = (u8
)(PCI_VENDOR_ID_TEKRAM
>> 8);
4047 eeprom
->device_id
[0] = (u8
)PCI_DEVICE_ID_TEKRAM_TRMS1040
;
4048 eeprom
->device_id
[1] =
4049 (u8
)(PCI_DEVICE_ID_TEKRAM_TRMS1040
>> 8);
4050 eeprom
->reserved
= 0x00;
4052 for (d_addr
= 0, d_eeprom
= (u32
*)eeprom
->target
;
4053 d_addr
< 16; d_addr
++, d_eeprom
++)
4054 *d_eeprom
= 0x00000077; /* cfg3,cfg2,period,cfg0 */
4056 *d_eeprom
++ = 0x04000F07; /* max_tag,delay_time,channel_cfg,scsi_id */
4057 *d_eeprom
++ = 0x00000015; /* reserved1,boot_lun,boot_target,reserved0 */
4058 for (d_addr
= 0; d_addr
< 12; d_addr
++, d_eeprom
++)
4061 /* Now load defaults (maybe set by boot/module params) */
4062 set_safe_settings();
4064 eeprom_override(eeprom
);
4066 eeprom
->cksum
= 0x00;
4067 for (w_addr
= 0, cksum
= 0, w_eeprom
= (u16
*)eeprom
;
4068 w_addr
< 63; w_addr
++, w_eeprom
++)
4071 *w_eeprom
= 0x1234 - cksum
;
4072 trms1040_write_all(eeprom
, io_port
);
4073 eeprom
->delay_time
= cfg_data
[CFG_RESET_DELAY
].value
;
4075 set_safe_settings();
4076 eeprom_index_to_delay(eeprom
);
4077 eeprom_override(eeprom
);
4083 * print_eeprom_settings - output the eeprom settings
4084 * to the kernel log so people can see what they were.
4086 * @eeprom: The eeprom data strucutre to show details for.
4088 static void print_eeprom_settings(struct NvRamType
*eeprom
)
4090 dprintkl(KERN_INFO
, "Used settings: AdapterID=%02i, Speed=%i(%02i.%01iMHz), dev_mode=0x%02x\n",
4092 eeprom
->target
[0].period
,
4093 clock_speed
[eeprom
->target
[0].period
] / 10,
4094 clock_speed
[eeprom
->target
[0].period
] % 10,
4095 eeprom
->target
[0].cfg0
);
4096 dprintkl(KERN_INFO
, " AdaptMode=0x%02x, Tags=%i(%02i), DelayReset=%is\n",
4097 eeprom
->channel_cfg
, eeprom
->max_tag
,
4098 1 << eeprom
->max_tag
, eeprom
->delay_time
);
4102 /* Free SG tables */
4103 static void adapter_sg_tables_free(struct AdapterCtlBlk
*acb
)
4106 const unsigned srbs_per_page
= PAGE_SIZE
/SEGMENTX_LEN
;
4108 for (i
= 0; i
< DC395x_MAX_SRB_CNT
; i
+= srbs_per_page
)
4109 kfree(acb
->srb_array
[i
].segment_x
);
4114 * Allocate SG tables; as we have to pci_map them, an SG list (struct SGentry*)
4115 * should never cross a page boundary */
4116 static int adapter_sg_tables_alloc(struct AdapterCtlBlk
*acb
)
4118 const unsigned mem_needed
= (DC395x_MAX_SRB_CNT
+1)
4120 int pages
= (mem_needed
+(PAGE_SIZE
-1))/PAGE_SIZE
;
4121 const unsigned srbs_per_page
= PAGE_SIZE
/SEGMENTX_LEN
;
4124 struct SGentry
*ptr
;
4126 for (i
= 0; i
< DC395x_MAX_SRB_CNT
; i
++)
4127 acb
->srb_array
[i
].segment_x
= NULL
;
4129 dprintkdbg(DBG_1
, "Allocate %i pages for SG tables\n", pages
);
4131 ptr
= kmalloc(PAGE_SIZE
, GFP_KERNEL
);
4133 adapter_sg_tables_free(acb
);
4136 dprintkdbg(DBG_1
, "Allocate %li bytes at %p for SG segments %i\n",
4137 PAGE_SIZE
, ptr
, srb_idx
);
4139 while (i
< srbs_per_page
&& srb_idx
< DC395x_MAX_SRB_CNT
)
4140 acb
->srb_array
[srb_idx
++].segment_x
=
4141 ptr
+ (i
++ * DC395x_MAX_SG_LISTENTRY
);
4143 if (i
< srbs_per_page
)
4144 acb
->srb
.segment_x
=
4145 ptr
+ (i
* DC395x_MAX_SG_LISTENTRY
);
4147 dprintkl(KERN_DEBUG
, "No space for tmsrb SG table reserved?!\n");
4154 * adapter_print_config - print adapter connection and termination
4157 * The io port in the adapter needs to have been set before calling
4160 * @acb: The adapter to print the information for.
4162 static void adapter_print_config(struct AdapterCtlBlk
*acb
)
4166 bval
= DC395x_read8(acb
, TRM_S1040_GEN_STATUS
);
4167 dprintkl(KERN_INFO
, "%sConnectors: ",
4168 ((bval
& WIDESCSI
) ? "(Wide) " : ""));
4169 if (!(bval
& CON5068
))
4170 printk("ext%s ", !(bval
& EXT68HIGH
) ? "68" : "50");
4171 if (!(bval
& CON68
))
4172 printk("int68%s ", !(bval
& INT68HIGH
) ? "" : "(50)");
4173 if (!(bval
& CON50
))
4175 if ((bval
& (CON5068
| CON50
| CON68
)) ==
4176 0 /*(CON5068 | CON50 | CON68) */ )
4177 printk(" Oops! (All 3?) ");
4178 bval
= DC395x_read8(acb
, TRM_S1040_GEN_CONTROL
);
4179 printk(" Termination: ");
4180 if (bval
& DIS_TERM
)
4181 printk("Disabled\n");
4183 if (bval
& AUTOTERM
)
4185 if (bval
& LOW8TERM
)
4195 * adapter_init_params - Initialize the various parameters in the
4196 * adapter structure. Note that the pointer to the scsi_host is set
4197 * early (when this instance is created) and the io_port and irq
4198 * values are set later after they have been reserved. This just gets
4199 * everything set to a good starting position.
4201 * The eeprom structure in the adapter needs to have been set before
4202 * calling this function.
4204 * @acb: The adapter to initialize.
4206 static void adapter_init_params(struct AdapterCtlBlk
*acb
)
4208 struct NvRamType
*eeprom
= &acb
->eeprom
;
4211 /* NOTE: acb->scsi_host is set at scsi_host/acb creation time */
4212 /* NOTE: acb->io_port_base is set at port registration time */
4213 /* NOTE: acb->io_port_len is set at port registration time */
4215 INIT_LIST_HEAD(&acb
->dcb_list
);
4216 acb
->dcb_run_robin
= NULL
;
4217 acb
->active_dcb
= NULL
;
4219 INIT_LIST_HEAD(&acb
->srb_free_list
);
4220 /* temp SRB for Q tag used or abort command used */
4221 acb
->tmp_srb
= &acb
->srb
;
4222 timer_setup(&acb
->waiting_timer
, waiting_timeout
, 0);
4223 timer_setup(&acb
->selto_timer
, NULL
, 0);
4225 acb
->srb_count
= DC395x_MAX_SRB_CNT
;
4227 acb
->sel_timeout
= DC395x_SEL_TIMEOUT
; /* timeout=250ms */
4228 /* NOTE: acb->irq_level is set at IRQ registration time */
4230 acb
->tag_max_num
= 1 << eeprom
->max_tag
;
4231 if (acb
->tag_max_num
> 30)
4232 acb
->tag_max_num
= 30;
4234 acb
->acb_flag
= 0; /* RESET_DETECT, RESET_DONE, RESET_DEV */
4235 acb
->gmode2
= eeprom
->channel_cfg
;
4236 acb
->config
= 0; /* NOTE: actually set in adapter_init_chip */
4238 if (eeprom
->channel_cfg
& NAC_SCANLUN
)
4240 acb
->scan_devices
= 1;
4242 acb
->scsi_host
->this_id
= eeprom
->scsi_id
;
4243 acb
->hostid_bit
= (1 << acb
->scsi_host
->this_id
);
4245 for (i
= 0; i
< DC395x_MAX_SCSI_ID
; i
++)
4246 acb
->dcb_map
[i
] = 0;
4250 /* link static array of srbs into the srb free list */
4251 for (i
= 0; i
< acb
->srb_count
- 1; i
++)
4252 list_add_tail(&acb
->srb_array
[i
].list
, &acb
->srb_free_list
);
4257 * adapter_init_host - Initialize the scsi host instance based on
4258 * values that we have already stored in the adapter instance. There's
4259 * some mention that a lot of these are deprecated, so we won't use
4260 * them (we'll use the ones in the adapter instance) but we'll fill
4261 * them in in case something else needs them.
4263 * The eeprom structure, irq and io ports in the adapter need to have
4264 * been set before calling this function.
4266 * @host: The scsi host instance to fill in the values for.
4268 static void adapter_init_scsi_host(struct Scsi_Host
*host
)
4270 struct AdapterCtlBlk
*acb
= (struct AdapterCtlBlk
*)host
->hostdata
;
4271 struct NvRamType
*eeprom
= &acb
->eeprom
;
4273 host
->max_cmd_len
= 24;
4274 host
->can_queue
= DC395x_MAX_CMD_QUEUE
;
4275 host
->cmd_per_lun
= DC395x_MAX_CMD_PER_LUN
;
4276 host
->this_id
= (int)eeprom
->scsi_id
;
4277 host
->io_port
= acb
->io_port_base
;
4278 host
->n_io_port
= acb
->io_port_len
;
4279 host
->dma_channel
= -1;
4280 host
->unique_id
= acb
->io_port_base
;
4281 host
->irq
= acb
->irq_level
;
4282 acb
->last_reset
= jiffies
;
4285 if (host
->max_id
- 1 == eeprom
->scsi_id
)
4288 if (eeprom
->channel_cfg
& NAC_SCANLUN
)
4296 * adapter_init_chip - Get the chip into a know state and figure out
4297 * some of the settings that apply to this adapter.
4299 * The io port in the adapter needs to have been set before calling
4300 * this function. The config will be configured correctly on return.
4302 * @acb: The adapter which we are to init.
4304 static void adapter_init_chip(struct AdapterCtlBlk
*acb
)
4306 struct NvRamType
*eeprom
= &acb
->eeprom
;
4308 /* Mask all the interrupt */
4309 DC395x_write8(acb
, TRM_S1040_DMA_INTEN
, 0x00);
4310 DC395x_write8(acb
, TRM_S1040_SCSI_INTEN
, 0x00);
4312 /* Reset SCSI module */
4313 DC395x_write16(acb
, TRM_S1040_SCSI_CONTROL
, DO_RSTMODULE
);
4315 /* Reset PCI/DMA module */
4316 DC395x_write8(acb
, TRM_S1040_DMA_CONTROL
, DMARESETMODULE
);
4319 /* program configuration 0 */
4320 acb
->config
= HCC_AUTOTERM
| HCC_PARITY
;
4321 if (DC395x_read8(acb
, TRM_S1040_GEN_STATUS
) & WIDESCSI
)
4322 acb
->config
|= HCC_WIDE_CARD
;
4324 if (eeprom
->channel_cfg
& NAC_POWERON_SCSI_RESET
)
4325 acb
->config
|= HCC_SCSI_RESET
;
4327 if (acb
->config
& HCC_SCSI_RESET
) {
4328 dprintkl(KERN_INFO
, "Performing initial SCSI bus reset\n");
4329 DC395x_write8(acb
, TRM_S1040_SCSI_CONTROL
, DO_RSTSCSI
);
4331 /*while (!( DC395x_read8(acb, TRM_S1040_SCSI_INTSTATUS) & INT_SCSIRESET )); */
4332 /*spin_unlock_irq (&io_request_lock); */
4337 HZ
* acb
->eeprom
.delay_time
;
4339 /*spin_lock_irq (&io_request_lock); */
4345 * init_adapter - Grab the resource for the card, setup the adapter
4346 * information, set the card into a known state, create the various
4347 * tables etc etc. This basically gets all adapter information all up
4348 * to date, initialised and gets the chip in sync with it.
4350 * @host: This hosts adapter structure
4351 * @io_port: The base I/O port
4354 * Returns 0 if the initialization succeeds, any other value on
4357 static int adapter_init(struct AdapterCtlBlk
*acb
, unsigned long io_port
,
4358 u32 io_port_len
, unsigned int irq
)
4360 if (!request_region(io_port
, io_port_len
, DC395X_NAME
)) {
4361 dprintkl(KERN_ERR
, "Failed to reserve IO region 0x%lx\n", io_port
);
4364 /* store port base to indicate we have registered it */
4365 acb
->io_port_base
= io_port
;
4366 acb
->io_port_len
= io_port_len
;
4368 if (request_irq(irq
, dc395x_interrupt
, IRQF_SHARED
, DC395X_NAME
, acb
)) {
4369 /* release the region we just claimed */
4370 dprintkl(KERN_INFO
, "Failed to register IRQ\n");
4373 /* store irq to indicate we have registered it */
4374 acb
->irq_level
= irq
;
4376 /* get eeprom configuration information and command line settings etc */
4377 check_eeprom(&acb
->eeprom
, io_port
);
4378 print_eeprom_settings(&acb
->eeprom
);
4380 /* setup adapter control block */
4381 adapter_init_params(acb
);
4383 /* display card connectors/termination settings */
4384 adapter_print_config(acb
);
4386 if (adapter_sg_tables_alloc(acb
)) {
4387 dprintkl(KERN_DEBUG
, "Memory allocation for SG tables failed\n");
4390 adapter_init_scsi_host(acb
->scsi_host
);
4391 adapter_init_chip(acb
);
4392 set_basic_config(acb
);
4395 "adapter_init: acb=%p, pdcb_map=%p psrb_array=%p "
4396 "size{acb=0x%04x dcb=0x%04x srb=0x%04x}\n",
4397 acb
, acb
->dcb_map
, acb
->srb_array
, sizeof(struct AdapterCtlBlk
),
4398 sizeof(struct DeviceCtlBlk
), sizeof(struct ScsiReqBlk
));
4403 free_irq(acb
->irq_level
, acb
);
4404 if (acb
->io_port_base
)
4405 release_region(acb
->io_port_base
, acb
->io_port_len
);
4406 adapter_sg_tables_free(acb
);
4413 * adapter_uninit_chip - cleanly shut down the scsi controller chip,
4414 * stopping all operations and disabling interrupt generation on the
4417 * @acb: The adapter which we are to shutdown.
4419 static void adapter_uninit_chip(struct AdapterCtlBlk
*acb
)
4421 /* disable interrupts */
4422 DC395x_write8(acb
, TRM_S1040_DMA_INTEN
, 0);
4423 DC395x_write8(acb
, TRM_S1040_SCSI_INTEN
, 0);
4425 /* reset the scsi bus */
4426 if (acb
->config
& HCC_SCSI_RESET
)
4427 reset_scsi_bus(acb
);
4429 /* clear any pending interrupt state */
4430 DC395x_read8(acb
, TRM_S1040_SCSI_INTSTATUS
);
4436 * adapter_uninit - Shut down the chip and release any resources that
4437 * we had allocated. Once this returns the adapter should not be used
4440 * @acb: The adapter which we are to un-initialize.
4442 static void adapter_uninit(struct AdapterCtlBlk
*acb
)
4444 unsigned long flags
;
4445 DC395x_LOCK_IO(acb
->scsi_host
, flags
);
4448 if (timer_pending(&acb
->waiting_timer
))
4449 del_timer(&acb
->waiting_timer
);
4450 if (timer_pending(&acb
->selto_timer
))
4451 del_timer(&acb
->selto_timer
);
4453 adapter_uninit_chip(acb
);
4454 adapter_remove_and_free_all_devices(acb
);
4455 DC395x_UNLOCK_IO(acb
->scsi_host
, flags
);
4458 free_irq(acb
->irq_level
, acb
);
4459 if (acb
->io_port_base
)
4460 release_region(acb
->io_port_base
, acb
->io_port_len
);
4462 adapter_sg_tables_free(acb
);
4468 if (YN) seq_printf(m, " Yes ");\
4469 else seq_printf(m, " No ")
4471 static int dc395x_show_info(struct seq_file
*m
, struct Scsi_Host
*host
)
4473 struct AdapterCtlBlk
*acb
= (struct AdapterCtlBlk
*)host
->hostdata
;
4475 struct DeviceCtlBlk
*dcb
;
4476 unsigned long flags
;
4479 seq_puts(m
, DC395X_BANNER
" PCI SCSI Host Adapter\n"
4480 " Driver Version " DC395X_VERSION
"\n");
4482 DC395x_LOCK_IO(acb
->scsi_host
, flags
);
4484 seq_printf(m
, "SCSI Host Nr %i, ", host
->host_no
);
4485 seq_printf(m
, "DC395U/UW/F DC315/U %s\n",
4486 (acb
->config
& HCC_WIDE_CARD
) ? "Wide" : "");
4487 seq_printf(m
, "io_port_base 0x%04lx, ", acb
->io_port_base
);
4488 seq_printf(m
, "irq_level 0x%04x, ", acb
->irq_level
);
4489 seq_printf(m
, " SelTimeout %ims\n", (1638 * acb
->sel_timeout
) / 1000);
4491 seq_printf(m
, "MaxID %i, MaxLUN %llu, ", host
->max_id
, host
->max_lun
);
4492 seq_printf(m
, "AdapterID %i\n", host
->this_id
);
4494 seq_printf(m
, "tag_max_num %i", acb
->tag_max_num
);
4495 /*seq_printf(m, ", DMA_Status %i\n", DC395x_read8(acb, TRM_S1040_DMA_STATUS)); */
4496 seq_printf(m
, ", FilterCfg 0x%02x",
4497 DC395x_read8(acb
, TRM_S1040_SCSI_CONFIG1
));
4498 seq_printf(m
, ", DelayReset %is\n", acb
->eeprom
.delay_time
);
4499 /*seq_printf(m, "\n"); */
4501 seq_printf(m
, "Nr of DCBs: %i\n", list_size(&acb
->dcb_list
));
4502 seq_printf(m
, "Map of attached LUNs: %8ph\n", &acb
->dcb_map
[0]);
4503 seq_printf(m
, " %8ph\n", &acb
->dcb_map
[8]);
4506 "Un ID LUN Prty Sync Wide DsCn SndS TagQ nego_period SyncFreq SyncOffs MaxCmd\n");
4509 list_for_each_entry(dcb
, &acb
->dcb_list
, list
) {
4511 seq_printf(m
, "%02i %02i %02i ", dev
, dcb
->target_id
,
4513 YESNO(dcb
->dev_mode
& NTC_DO_PARITY_CHK
);
4514 YESNO(dcb
->sync_offset
);
4515 YESNO(dcb
->sync_period
& WIDE_SYNC
);
4516 YESNO(dcb
->dev_mode
& NTC_DO_DISCONNECT
);
4517 YESNO(dcb
->dev_mode
& NTC_DO_SEND_START
);
4518 YESNO(dcb
->sync_mode
& EN_TAG_QUEUEING
);
4519 nego_period
= clock_period
[dcb
->sync_period
& 0x07] << 2;
4520 if (dcb
->sync_offset
)
4521 seq_printf(m
, " %03i ns ", nego_period
);
4523 seq_printf(m
, " (%03i ns)", (dcb
->min_nego_period
<< 2));
4525 if (dcb
->sync_offset
& 0x0f) {
4526 spd
= 1000 / (nego_period
);
4527 spd1
= 1000 % (nego_period
);
4528 spd1
= (spd1
* 10 + nego_period
/ 2) / (nego_period
);
4529 seq_printf(m
, " %2i.%1i M %02i ", spd
, spd1
,
4530 (dcb
->sync_offset
& 0x0f));
4534 /* Add more info ... */
4535 seq_printf(m
, " %02i\n", dcb
->max_command
);
4539 if (timer_pending(&acb
->waiting_timer
))
4540 seq_puts(m
, "Waiting queue timer running\n");
4544 list_for_each_entry(dcb
, &acb
->dcb_list
, list
) {
4545 struct ScsiReqBlk
*srb
;
4546 if (!list_empty(&dcb
->srb_waiting_list
))
4547 seq_printf(m
, "DCB (%02i-%i): Waiting: %i:",
4548 dcb
->target_id
, dcb
->target_lun
,
4549 list_size(&dcb
->srb_waiting_list
));
4550 list_for_each_entry(srb
, &dcb
->srb_waiting_list
, list
)
4551 seq_printf(m
, " %p", srb
->cmd
);
4552 if (!list_empty(&dcb
->srb_going_list
))
4553 seq_printf(m
, "\nDCB (%02i-%i): Going : %i:",
4554 dcb
->target_id
, dcb
->target_lun
,
4555 list_size(&dcb
->srb_going_list
));
4556 list_for_each_entry(srb
, &dcb
->srb_going_list
, list
)
4557 seq_printf(m
, " %p", srb
->cmd
);
4558 if (!list_empty(&dcb
->srb_waiting_list
) || !list_empty(&dcb
->srb_going_list
))
4562 if (debug_enabled(DBG_1
)) {
4563 seq_printf(m
, "DCB list for ACB %p:\n", acb
);
4564 list_for_each_entry(dcb
, &acb
->dcb_list
, list
) {
4565 seq_printf(m
, "%p -> ", dcb
);
4567 seq_puts(m
, "END\n");
4570 DC395x_UNLOCK_IO(acb
->scsi_host
, flags
);
4575 static struct scsi_host_template dc395x_driver_template
= {
4576 .module
= THIS_MODULE
,
4577 .proc_name
= DC395X_NAME
,
4578 .show_info
= dc395x_show_info
,
4579 .name
= DC395X_BANNER
" " DC395X_VERSION
,
4580 .queuecommand
= dc395x_queue_command
,
4581 .slave_alloc
= dc395x_slave_alloc
,
4582 .slave_destroy
= dc395x_slave_destroy
,
4583 .can_queue
= DC395x_MAX_CAN_QUEUE
,
4585 .sg_tablesize
= DC395x_MAX_SG_TABLESIZE
,
4586 .cmd_per_lun
= DC395x_MAX_CMD_PER_LUN
,
4587 .eh_abort_handler
= dc395x_eh_abort
,
4588 .eh_bus_reset_handler
= dc395x_eh_bus_reset
,
4589 .dma_boundary
= PAGE_SIZE
- 1,
4594 * banner_display - Display banner on first instance of driver
4597 static void banner_display(void)
4599 static int banner_done
= 0;
4602 dprintkl(KERN_INFO
, "%s %s\n", DC395X_BANNER
, DC395X_VERSION
);
4609 * dc395x_init_one - Initialise a single instance of the adapter.
4611 * The PCI layer will call this once for each instance of the adapter
4612 * that it finds in the system. The pci_dev strcuture indicates which
4613 * instance we are being called from.
4615 * @dev: The PCI device to initialize.
4616 * @id: Looks like a pointer to the entry in our pci device table
4617 * that was actually matched by the PCI subsystem.
4619 * Returns 0 on success, or an error code (-ve) on failure.
4621 static int dc395x_init_one(struct pci_dev
*dev
, const struct pci_device_id
*id
)
4623 struct Scsi_Host
*scsi_host
= NULL
;
4624 struct AdapterCtlBlk
*acb
= NULL
;
4625 unsigned long io_port_base
;
4626 unsigned int io_port_len
;
4629 dprintkdbg(DBG_0
, "Init one instance (%s)\n", pci_name(dev
));
4632 if (pci_enable_device(dev
))
4634 dprintkl(KERN_INFO
, "PCI Enable device failed.\n");
4637 io_port_base
= pci_resource_start(dev
, 0) & PCI_BASE_ADDRESS_IO_MASK
;
4638 io_port_len
= pci_resource_len(dev
, 0);
4640 dprintkdbg(DBG_0
, "IO_PORT=0x%04lx, IRQ=0x%x\n", io_port_base
, dev
->irq
);
4642 /* allocate scsi host information (includes out adapter) */
4643 scsi_host
= scsi_host_alloc(&dc395x_driver_template
,
4644 sizeof(struct AdapterCtlBlk
));
4646 dprintkl(KERN_INFO
, "scsi_host_alloc failed\n");
4649 acb
= (struct AdapterCtlBlk
*)scsi_host
->hostdata
;
4650 acb
->scsi_host
= scsi_host
;
4653 /* initialise the adapter and everything we need */
4654 if (adapter_init(acb
, io_port_base
, io_port_len
, irq
)) {
4655 dprintkl(KERN_INFO
, "adapter init failed\n");
4659 pci_set_master(dev
);
4661 /* get the scsi mid level to scan for new devices on the bus */
4662 if (scsi_add_host(scsi_host
, &dev
->dev
)) {
4663 dprintkl(KERN_ERR
, "scsi_add_host failed\n");
4666 pci_set_drvdata(dev
, scsi_host
);
4667 scsi_scan_host(scsi_host
);
4673 adapter_uninit(acb
);
4674 if (scsi_host
!= NULL
)
4675 scsi_host_put(scsi_host
);
4676 pci_disable_device(dev
);
4682 * dc395x_remove_one - Called to remove a single instance of the
4685 * @dev: The PCI device to initialize.
4687 static void dc395x_remove_one(struct pci_dev
*dev
)
4689 struct Scsi_Host
*scsi_host
= pci_get_drvdata(dev
);
4690 struct AdapterCtlBlk
*acb
= (struct AdapterCtlBlk
*)(scsi_host
->hostdata
);
4692 dprintkdbg(DBG_0
, "dc395x_remove_one: acb=%p\n", acb
);
4694 scsi_remove_host(scsi_host
);
4695 adapter_uninit(acb
);
4696 pci_disable_device(dev
);
4697 scsi_host_put(scsi_host
);
4701 static struct pci_device_id dc395x_pci_table
[] = {
4703 .vendor
= PCI_VENDOR_ID_TEKRAM
,
4704 .device
= PCI_DEVICE_ID_TEKRAM_TRMS1040
,
4705 .subvendor
= PCI_ANY_ID
,
4706 .subdevice
= PCI_ANY_ID
,
4708 {} /* Terminating entry */
4710 MODULE_DEVICE_TABLE(pci
, dc395x_pci_table
);
4713 static struct pci_driver dc395x_driver
= {
4714 .name
= DC395X_NAME
,
4715 .id_table
= dc395x_pci_table
,
4716 .probe
= dc395x_init_one
,
4717 .remove
= dc395x_remove_one
,
4719 module_pci_driver(dc395x_driver
);
4721 MODULE_AUTHOR("C.L. Huang / Erich Chen / Kurt Garloff");
4722 MODULE_DESCRIPTION("SCSI host adapter driver for Tekram TRM-S1040 based adapters: Tekram DC395 and DC315 series");
4723 MODULE_LICENSE("GPL");