[SCSI] qla1280: remove dead per-host flag variables
[linux-2.6-block.git] / drivers / scsi / qla1280.c
CommitLineData
1da177e4
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1/******************************************************************************
2* QLOGIC LINUX SOFTWARE
3*
4* QLogic QLA1280 (Ultra2) and QLA12160 (Ultra3) SCSI driver
5* Copyright (C) 2000 Qlogic Corporation (www.qlogic.com)
6* Copyright (C) 2001-2004 Jes Sorensen, Wild Open Source Inc.
7* Copyright (C) 2003-2004 Christoph Hellwig
8*
9* This program is free software; you can redistribute it and/or modify it
10* under the terms of the GNU General Public License as published by the
11* Free Software Foundation; either version 2, or (at your option) any
12* later version.
13*
14* This program is distributed in the hope that it will be useful, but
15* WITHOUT ANY WARRANTY; without even the implied warranty of
16* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
17* General Public License for more details.
18*
19******************************************************************************/
20#define QLA1280_VERSION "3.25"
21/*****************************************************************************
22 Revision History:
23 Rev 3.25.1, February 10, 2005 Christoph Hellwig
24 - use pci_map_single to map non-S/G requests
25 - remove qla1280_proc_info
26 Rev 3.25, September 28, 2004, Christoph Hellwig
27 - add support for ISP1020/1040
28 - don't include "scsi.h" anymore for 2.6.x
29 Rev 3.24.4 June 7, 2004 Christoph Hellwig
30 - restructure firmware loading, cleanup initialization code
31 - prepare support for ISP1020/1040 chips
32 Rev 3.24.3 January 19, 2004, Jes Sorensen
33 - Handle PCI DMA mask settings correctly
34 - Correct order of error handling in probe_one, free_irq should not
35 be called if request_irq failed
36 Rev 3.24.2 January 19, 2004, James Bottomley & Andrew Vasquez
37 - Big endian fixes (James)
38 - Remove bogus IOCB content on zero data transfer commands (Andrew)
39 Rev 3.24.1 January 5, 2004, Jes Sorensen
40 - Initialize completion queue to avoid OOPS on probe
41 - Handle interrupts during mailbox testing
42 Rev 3.24 November 17, 2003, Christoph Hellwig
43 - use struct list_head for completion queue
44 - avoid old Scsi_FOO typedefs
45 - cleanup 2.4 compat glue a bit
46 - use <scsi/scsi_*.h> headers on 2.6 instead of "scsi.h"
47 - make initialization for memory mapped vs port I/O more similar
48 - remove broken pci config space manipulation
49 - kill more cruft
50 - this is an almost perfect 2.6 scsi driver now! ;)
51 Rev 3.23.39 December 17, 2003, Jes Sorensen
52 - Delete completion queue from srb if mailbox command failed to
53 to avoid qla1280_done completeting qla1280_error_action's
54 obsolete context
55 - Reduce arguments for qla1280_done
56 Rev 3.23.38 October 18, 2003, Christoph Hellwig
57 - Convert to new-style hotplugable driver for 2.6
58 - Fix missing scsi_unregister/scsi_host_put on HBA removal
59 - Kill some more cruft
60 Rev 3.23.37 October 1, 2003, Jes Sorensen
61 - Make MMIO depend on CONFIG_X86_VISWS instead of yet another
62 random CONFIG option
63 - Clean up locking in probe path
64 Rev 3.23.36 October 1, 2003, Christoph Hellwig
65 - queuecommand only ever receives new commands - clear flags
66 - Reintegrate lost fixes from Linux 2.5
67 Rev 3.23.35 August 14, 2003, Jes Sorensen
68 - Build against 2.6
69 Rev 3.23.34 July 23, 2003, Jes Sorensen
70 - Remove pointless TRUE/FALSE macros
71 - Clean up vchan handling
72 Rev 3.23.33 July 3, 2003, Jes Sorensen
73 - Don't define register access macros before define determining MMIO.
74 This just happend to work out on ia64 but not elsewhere.
75 - Don't try and read from the card while it is in reset as
76 it won't respond and causes an MCA
77 Rev 3.23.32 June 23, 2003, Jes Sorensen
78 - Basic support for boot time arguments
79 Rev 3.23.31 June 8, 2003, Jes Sorensen
80 - Reduce boot time messages
81 Rev 3.23.30 June 6, 2003, Jes Sorensen
82 - Do not enable sync/wide/ppr before it has been determined
83 that the target device actually supports it
84 - Enable DMA arbitration for multi channel controllers
85 Rev 3.23.29 June 3, 2003, Jes Sorensen
86 - Port to 2.5.69
87 Rev 3.23.28 June 3, 2003, Jes Sorensen
88 - Eliminate duplicate marker commands on bus resets
89 - Handle outstanding commands appropriately on bus/device resets
90 Rev 3.23.27 May 28, 2003, Jes Sorensen
91 - Remove bogus input queue code, let the Linux SCSI layer do the work
92 - Clean up NVRAM handling, only read it once from the card
93 - Add a number of missing default nvram parameters
94 Rev 3.23.26 Beta May 28, 2003, Jes Sorensen
95 - Use completion queue for mailbox commands instead of busy wait
96 Rev 3.23.25 Beta May 27, 2003, James Bottomley
97 - Migrate to use new error handling code
98 Rev 3.23.24 Beta May 21, 2003, James Bottomley
99 - Big endian support
100 - Cleanup data direction code
101 Rev 3.23.23 Beta May 12, 2003, Jes Sorensen
102 - Switch to using MMIO instead of PIO
103 Rev 3.23.22 Beta April 15, 2003, Jes Sorensen
104 - Fix PCI parity problem with 12160 during reset.
105 Rev 3.23.21 Beta April 14, 2003, Jes Sorensen
106 - Use pci_map_page()/pci_unmap_page() instead of map_single version.
107 Rev 3.23.20 Beta April 9, 2003, Jes Sorensen
108 - Remove < 2.4.x support
109 - Introduce HOST_LOCK to make the spin lock changes portable.
110 - Remove a bunch of idiotic and unnecessary typedef's
111 - Kill all leftovers of target-mode support which never worked anyway
112 Rev 3.23.19 Beta April 11, 2002, Linus Torvalds
113 - Do qla1280_pci_config() before calling request_irq() and
114 request_region()
115 - Use pci_dma_hi32() to handle upper word of DMA addresses instead
116 of large shifts
117 - Hand correct arguments to free_irq() in case of failure
118 Rev 3.23.18 Beta April 11, 2002, Jes Sorensen
119 - Run source through Lindent and clean up the output
120 Rev 3.23.17 Beta April 11, 2002, Jes Sorensen
121 - Update SCSI firmware to qla1280 v8.15.00 and qla12160 v10.04.32
122 Rev 3.23.16 Beta March 19, 2002, Jes Sorensen
123 - Rely on mailbox commands generating interrupts - do not
124 run qla1280_isr() from ql1280_mailbox_command()
125 - Remove device_reg_t
126 - Integrate ql12160_set_target_parameters() with 1280 version
127 - Make qla1280_setup() non static
128 - Do not call qla1280_check_for_dead_scsi_bus() on every I/O request
129 sent to the card - this command pauses the firmare!!!
130 Rev 3.23.15 Beta March 19, 2002, Jes Sorensen
131 - Clean up qla1280.h - remove obsolete QL_DEBUG_LEVEL_x definitions
132 - Remove a pile of pointless and confusing (srb_t **) and
133 (scsi_lu_t *) typecasts
134 - Explicit mark that we do not use the new error handling (for now)
135 - Remove scsi_qla_host_t and use 'struct' instead
136 - Remove in_abort, watchdog_enabled, dpc, dpc_sched, bios_enabled,
137 pci_64bit_slot flags which weren't used for anything anyway
138 - Grab host->host_lock while calling qla1280_isr() from abort()
139 - Use spin_lock()/spin_unlock() in qla1280_intr_handler() - we
140 do not need to save/restore flags in the interrupt handler
141 - Enable interrupts early (before any mailbox access) in preparation
142 for cleaning up the mailbox handling
143 Rev 3.23.14 Beta March 14, 2002, Jes Sorensen
144 - Further cleanups. Remove all trace of QL_DEBUG_LEVEL_x and replace
145 it with proper use of dprintk().
146 - Make qla1280_print_scsi_cmd() and qla1280_dump_buffer() both take
147 a debug level argument to determine if data is to be printed
148 - Add KERN_* info to printk()
149 Rev 3.23.13 Beta March 14, 2002, Jes Sorensen
150 - Significant cosmetic cleanups
151 - Change debug code to use dprintk() and remove #if mess
152 Rev 3.23.12 Beta March 13, 2002, Jes Sorensen
153 - More cosmetic cleanups, fix places treating return as function
154 - use cpu_relax() in qla1280_debounce_register()
155 Rev 3.23.11 Beta March 13, 2002, Jes Sorensen
156 - Make it compile under 2.5.5
157 Rev 3.23.10 Beta October 1, 2001, Jes Sorensen
158 - Do no typecast short * to long * in QL1280BoardTbl, this
159 broke miserably on big endian boxes
160 Rev 3.23.9 Beta September 30, 2001, Jes Sorensen
161 - Remove pre 2.2 hack for checking for reentrance in interrupt handler
162 - Make data types used to receive from SCSI_{BUS,TCN,LUN}_32
163 unsigned int to match the types from struct scsi_cmnd
164 Rev 3.23.8 Beta September 29, 2001, Jes Sorensen
165 - Remove bogus timer_t typedef from qla1280.h
166 - Remove obsolete pre 2.2 PCI setup code, use proper #define's
167 for PCI_ values, call pci_set_master()
168 - Fix memleak of qla1280_buffer on module unload
169 - Only compile module parsing code #ifdef MODULE - should be
170 changed to use individual MODULE_PARM's later
171 - Remove dummy_buffer that was never modified nor printed
172 - ENTER()/LEAVE() are noops unless QL_DEBUG_LEVEL_3, hence remove
173 #ifdef QL_DEBUG_LEVEL_3/#endif around ENTER()/LEAVE() calls
174 - Remove \r from print statements, this is Linux, not DOS
175 - Remove obsolete QLA1280_{SCSILU,INTR,RING}_{LOCK,UNLOCK}
176 dummy macros
177 - Remove C++ compile hack in header file as Linux driver are not
178 supposed to be compiled as C++
179 - Kill MS_64BITS macro as it makes the code more readable
180 - Remove unnecessary flags.in_interrupts bit
181 Rev 3.23.7 Beta August 20, 2001, Jes Sorensen
182 - Dont' check for set flags on q->q_flag one by one in qla1280_next()
183 - Check whether the interrupt was generated by the QLA1280 before
184 doing any processing
185 - qla1280_status_entry(): Only zero out part of sense_buffer that
186 is not being copied into
187 - Remove more superflouous typecasts
188 - qla1280_32bit_start_scsi() replace home-brew memcpy() with memcpy()
189 Rev 3.23.6 Beta August 20, 2001, Tony Luck, Intel
190 - Don't walk the entire list in qla1280_putq_t() just to directly
191 grab the pointer to the last element afterwards
192 Rev 3.23.5 Beta August 9, 2001, Jes Sorensen
193 - Don't use SA_INTERRUPT, it's use is deprecated for this kinda driver
194 Rev 3.23.4 Beta August 8, 2001, Jes Sorensen
195 - Set dev->max_sectors to 1024
196 Rev 3.23.3 Beta August 6, 2001, Jes Sorensen
197 - Provide compat macros for pci_enable_device(), pci_find_subsys()
198 and scsi_set_pci_device()
199 - Call scsi_set_pci_device() for all devices
200 - Reduce size of kernel version dependent device probe code
201 - Move duplicate probe/init code to separate function
202 - Handle error if qla1280_mem_alloc() fails
203 - Kill OFFSET() macro and use Linux's PCI definitions instead
204 - Kill private structure defining PCI config space (struct config_reg)
205 - Only allocate I/O port region if not in MMIO mode
206 - Remove duplicate (unused) sanity check of sife of srb_t
207 Rev 3.23.2 Beta August 6, 2001, Jes Sorensen
208 - Change home-brew memset() implementations to use memset()
209 - Remove all references to COMTRACE() - accessing a PC's COM2 serial
210 port directly is not legal under Linux.
211 Rev 3.23.1 Beta April 24, 2001, Jes Sorensen
212 - Remove pre 2.2 kernel support
213 - clean up 64 bit DMA setting to use 2.4 API (provide backwards compat)
214 - Fix MMIO access to use readl/writel instead of directly
215 dereferencing pointers
216 - Nuke MSDOS debugging code
217 - Change true/false data types to int from uint8_t
218 - Use int for counters instead of uint8_t etc.
219 - Clean up size & byte order conversion macro usage
220 Rev 3.23 Beta January 11, 2001 BN Qlogic
221 - Added check of device_id when handling non
222 QLA12160s during detect().
223 Rev 3.22 Beta January 5, 2001 BN Qlogic
224 - Changed queue_task() to schedule_task()
225 for kernels 2.4.0 and higher.
226 Note: 2.4.0-testxx kernels released prior to
227 the actual 2.4.0 kernel release on January 2001
228 will get compile/link errors with schedule_task().
229 Please update your kernel to released 2.4.0 level,
230 or comment lines in this file flagged with 3.22
231 to resolve compile/link error of schedule_task().
232 - Added -DCONFIG_SMP in addition to -D__SMP__
233 in Makefile for 2.4.0 builds of driver as module.
234 Rev 3.21 Beta January 4, 2001 BN Qlogic
235 - Changed criteria of 64/32 Bit mode of HBA
236 operation according to BITS_PER_LONG rather
237 than HBA's NVRAM setting of >4Gig memory bit;
238 so that the HBA auto-configures without the need
239 to setup each system individually.
240 Rev 3.20 Beta December 5, 2000 BN Qlogic
241 - Added priority handling to IA-64 onboard SCSI
242 ISP12160 chip for kernels greater than 2.3.18.
243 - Added irqrestore for qla1280_intr_handler.
244 - Enabled /proc/scsi/qla1280 interface.
245 - Clear /proc/scsi/qla1280 counters in detect().
246 Rev 3.19 Beta October 13, 2000 BN Qlogic
247 - Declare driver_template for new kernel
248 (2.4.0 and greater) scsi initialization scheme.
249 - Update /proc/scsi entry for 2.3.18 kernels and
250 above as qla1280
251 Rev 3.18 Beta October 10, 2000 BN Qlogic
252 - Changed scan order of adapters to map
253 the QLA12160 followed by the QLA1280.
254 Rev 3.17 Beta September 18, 2000 BN Qlogic
255 - Removed warnings for 32 bit 2.4.x compiles
256 - Corrected declared size for request and response
257 DMA addresses that are kept in each ha
258 Rev. 3.16 Beta August 25, 2000 BN Qlogic
259 - Corrected 64 bit addressing issue on IA-64
260 where the upper 32 bits were not properly
261 passed to the RISC engine.
262 Rev. 3.15 Beta August 22, 2000 BN Qlogic
263 - Modified qla1280_setup_chip to properly load
264 ISP firmware for greater that 4 Gig memory on IA-64
265 Rev. 3.14 Beta August 16, 2000 BN Qlogic
266 - Added setting of dma_mask to full 64 bit
267 if flags.enable_64bit_addressing is set in NVRAM
268 Rev. 3.13 Beta August 16, 2000 BN Qlogic
269 - Use new PCI DMA mapping APIs for 2.4.x kernel
270 Rev. 3.12 July 18, 2000 Redhat & BN Qlogic
271 - Added check of pci_enable_device to detect() for 2.3.x
272 - Use pci_resource_start() instead of
273 pdev->resource[0].start in detect() for 2.3.x
274 - Updated driver version
275 Rev. 3.11 July 14, 2000 BN Qlogic
276 - Updated SCSI Firmware to following versions:
277 qla1x80: 8.13.08
278 qla1x160: 10.04.08
279 - Updated driver version to 3.11
280 Rev. 3.10 June 23, 2000 BN Qlogic
281 - Added filtering of AMI SubSys Vendor ID devices
282 Rev. 3.9
283 - DEBUG_QLA1280 undefined and new version BN Qlogic
284 Rev. 3.08b May 9, 2000 MD Dell
285 - Added logic to check against AMI subsystem vendor ID
286 Rev. 3.08 May 4, 2000 DG Qlogic
287 - Added logic to check for PCI subsystem ID.
288 Rev. 3.07 Apr 24, 2000 DG & BN Qlogic
289 - Updated SCSI Firmware to following versions:
290 qla12160: 10.01.19
291 qla1280: 8.09.00
292 Rev. 3.06 Apr 12, 2000 DG & BN Qlogic
293 - Internal revision; not released
294 Rev. 3.05 Mar 28, 2000 DG & BN Qlogic
295 - Edit correction for virt_to_bus and PROC.
296 Rev. 3.04 Mar 28, 2000 DG & BN Qlogic
297 - Merge changes from ia64 port.
298 Rev. 3.03 Mar 28, 2000 BN Qlogic
299 - Increase version to reflect new code drop with compile fix
300 of issue with inclusion of linux/spinlock for 2.3 kernels
301 Rev. 3.02 Mar 15, 2000 BN Qlogic
302 - Merge qla1280_proc_info from 2.10 code base
303 Rev. 3.01 Feb 10, 2000 BN Qlogic
304 - Corrected code to compile on a 2.2.x kernel.
305 Rev. 3.00 Jan 17, 2000 DG Qlogic
306 - Added 64-bit support.
307 Rev. 2.07 Nov 9, 1999 DG Qlogic
308 - Added new routine to set target parameters for ISP12160.
309 Rev. 2.06 Sept 10, 1999 DG Qlogic
310 - Added support for ISP12160 Ultra 3 chip.
311 Rev. 2.03 August 3, 1999 Fred Lewis, Intel DuPont
312 - Modified code to remove errors generated when compiling with
313 Cygnus IA64 Compiler.
314 - Changed conversion of pointers to unsigned longs instead of integers.
315 - Changed type of I/O port variables from uint32_t to unsigned long.
316 - Modified OFFSET macro to work with 64-bit as well as 32-bit.
317 - Changed sprintf and printk format specifiers for pointers to %p.
318 - Changed some int to long type casts where needed in sprintf & printk.
319 - Added l modifiers to sprintf and printk format specifiers for longs.
320 - Removed unused local variables.
321 Rev. 1.20 June 8, 1999 DG, Qlogic
322 Changes to support RedHat release 6.0 (kernel 2.2.5).
323 - Added SCSI exclusive access lock (io_request_lock) when accessing
324 the adapter.
325 - Added changes for the new LINUX interface template. Some new error
326 handling routines have been added to the template, but for now we
327 will use the old ones.
328 - Initial Beta Release.
329*****************************************************************************/
330
331
332#include <linux/config.h>
333#include <linux/module.h>
334
335#include <linux/version.h>
336#include <linux/types.h>
337#include <linux/string.h>
338#include <linux/errno.h>
339#include <linux/kernel.h>
340#include <linux/ioport.h>
341#include <linux/delay.h>
342#include <linux/timer.h>
343#include <linux/sched.h>
344#include <linux/pci.h>
345#include <linux/proc_fs.h>
346#include <linux/stat.h>
347#include <linux/slab.h>
348#include <linux/pci_ids.h>
349#include <linux/interrupt.h>
350#include <linux/init.h>
351
352#include <asm/io.h>
353#include <asm/irq.h>
354#include <asm/byteorder.h>
355#include <asm/processor.h>
356#include <asm/types.h>
357#include <asm/system.h>
358
359#if LINUX_VERSION_CODE >= 0x020545
360#include <scsi/scsi.h>
361#include <scsi/scsi_cmnd.h>
362#include <scsi/scsi_device.h>
363#include <scsi/scsi_host.h>
364#include <scsi/scsi_tcq.h>
365#else
366#include <linux/blk.h>
367#include "scsi.h"
368#include <scsi/scsi_host.h>
369#include "sd.h"
370#endif
371
372#if defined(CONFIG_IA64_GENERIC) || defined(CONFIG_IA64_SGI_SN2)
373#include <asm/sn/io.h>
374#endif
375
376#if LINUX_VERSION_CODE < 0x020407
377#error "Kernels older than 2.4.7 are no longer supported"
378#endif
379
380
381/*
382 * Compile time Options:
383 * 0 - Disable and 1 - Enable
384 */
385#define DEBUG_QLA1280_INTR 0
386#define DEBUG_PRINT_NVRAM 0
387#define DEBUG_QLA1280 0
388
389/*
390 * The SGI VISWS is broken and doesn't support MMIO ;-(
391 */
392#ifdef CONFIG_X86_VISWS
393#define MEMORY_MAPPED_IO 0
394#else
395#define MEMORY_MAPPED_IO 1
396#endif
397
398#define UNIQUE_FW_NAME
399#include "qla1280.h"
400#include "ql12160_fw.h" /* ISP RISC codes */
401#include "ql1280_fw.h"
402#include "ql1040_fw.h"
403
404
405/*
406 * Missing PCI ID's
407 */
408#ifndef PCI_DEVICE_ID_QLOGIC_ISP1080
409#define PCI_DEVICE_ID_QLOGIC_ISP1080 0x1080
410#endif
411#ifndef PCI_DEVICE_ID_QLOGIC_ISP1240
412#define PCI_DEVICE_ID_QLOGIC_ISP1240 0x1240
413#endif
414#ifndef PCI_DEVICE_ID_QLOGIC_ISP1280
415#define PCI_DEVICE_ID_QLOGIC_ISP1280 0x1280
416#endif
417#ifndef PCI_DEVICE_ID_QLOGIC_ISP10160
418#define PCI_DEVICE_ID_QLOGIC_ISP10160 0x1016
419#endif
420#ifndef PCI_DEVICE_ID_QLOGIC_ISP12160
421#define PCI_DEVICE_ID_QLOGIC_ISP12160 0x1216
422#endif
423
424#ifndef PCI_VENDOR_ID_AMI
425#define PCI_VENDOR_ID_AMI 0x101e
426#endif
427
428#ifndef BITS_PER_LONG
429#error "BITS_PER_LONG not defined!"
430#endif
431#if (BITS_PER_LONG == 64) || defined CONFIG_HIGHMEM
432#define QLA_64BIT_PTR 1
433#endif
434
435#ifdef QLA_64BIT_PTR
436#define pci_dma_hi32(a) ((a >> 16) >> 16)
437#else
438#define pci_dma_hi32(a) 0
439#endif
440#define pci_dma_lo32(a) (a & 0xffffffff)
441
442#define NVRAM_DELAY() udelay(500) /* 2 microseconds */
443
444#if LINUX_VERSION_CODE < 0x020500
445#define HOST_LOCK &io_request_lock
446#define irqreturn_t void
447#define IRQ_RETVAL(foo)
448#define MSG_ORDERED_TAG 1
449
450#define DMA_BIDIRECTIONAL SCSI_DATA_UNKNOWN
451#define DMA_TO_DEVICE SCSI_DATA_WRITE
452#define DMA_FROM_DEVICE SCSI_DATA_READ
453#define DMA_NONE SCSI_DATA_NONE
454
455#ifndef HAVE_SECTOR_T
456typedef unsigned int sector_t;
457#endif
458
459static inline void
460scsi_adjust_queue_depth(struct scsi_device *device, int tag, int depth)
461{
462 if (tag) {
463 device->tagged_queue = tag;
464 device->current_tag = 0;
465 }
466 device->queue_depth = depth;
467}
468static inline struct Scsi_Host *scsi_host_alloc(Scsi_Host_Template *t, size_t s)
469{
470 return scsi_register(t, s);
471}
472static inline void scsi_host_put(struct Scsi_Host *h)
473{
474 scsi_unregister(h);
475}
476#else
477#define HOST_LOCK ha->host->host_lock
478#endif
479#if LINUX_VERSION_CODE < 0x020600
480#define DEV_SIMPLE_TAGS(device) device->tagged_queue
481/*
482 * Hack around that qla1280_remove_one is called from
483 * qla1280_release in 2.4
484 */
485#undef __devexit
486#define __devexit
487#else
488#define DEV_SIMPLE_TAGS(device) device->simple_tags
489#endif
490#if defined(__ia64__) && !defined(ia64_platform_is)
491#define ia64_platform_is(foo) (!strcmp(x, platform_name))
492#endif
493
494
495#define IS_ISP1040(ha) (ha->pdev->device == PCI_DEVICE_ID_QLOGIC_ISP1020)
496#define IS_ISP1x40(ha) (ha->pdev->device == PCI_DEVICE_ID_QLOGIC_ISP1020 || \
497 ha->pdev->device == PCI_DEVICE_ID_QLOGIC_ISP1240)
498#define IS_ISP1x160(ha) (ha->pdev->device == PCI_DEVICE_ID_QLOGIC_ISP10160 || \
499 ha->pdev->device == PCI_DEVICE_ID_QLOGIC_ISP12160)
500
501
502static int qla1280_probe_one(struct pci_dev *, const struct pci_device_id *);
503static void qla1280_remove_one(struct pci_dev *);
504
505/*
506 * QLogic Driver Support Function Prototypes.
507 */
508static void qla1280_done(struct scsi_qla_host *);
509#if LINUX_VERSION_CODE < 0x020545
510static void qla1280_get_target_options(struct scsi_cmnd *, struct scsi_qla_host *);
511#endif
512static int qla1280_get_token(char *);
513static int qla1280_setup(char *s) __init;
514
515/*
516 * QLogic ISP1280 Hardware Support Function Prototypes.
517 */
518static int qla1280_load_firmware(struct scsi_qla_host *);
519static int qla1280_init_rings(struct scsi_qla_host *);
520static int qla1280_nvram_config(struct scsi_qla_host *);
521static int qla1280_mailbox_command(struct scsi_qla_host *,
522 uint8_t, uint16_t *);
523static int qla1280_bus_reset(struct scsi_qla_host *, int);
524static int qla1280_device_reset(struct scsi_qla_host *, int, int);
525static int qla1280_abort_device(struct scsi_qla_host *, int, int, int);
526static int qla1280_abort_command(struct scsi_qla_host *, struct srb *, int);
527static int qla1280_abort_isp(struct scsi_qla_host *);
528#ifdef QLA_64BIT_PTR
529static int qla1280_64bit_start_scsi(struct scsi_qla_host *, struct srb *);
530#else
531static int qla1280_32bit_start_scsi(struct scsi_qla_host *, struct srb *);
532#endif
533static void qla1280_nv_write(struct scsi_qla_host *, uint16_t);
534static void qla1280_poll(struct scsi_qla_host *);
535static void qla1280_reset_adapter(struct scsi_qla_host *);
536static void qla1280_marker(struct scsi_qla_host *, int, int, int, u8);
537static void qla1280_isp_cmd(struct scsi_qla_host *);
538static void qla1280_isr(struct scsi_qla_host *, struct list_head *);
539static void qla1280_rst_aen(struct scsi_qla_host *);
540static void qla1280_status_entry(struct scsi_qla_host *, struct response *,
541 struct list_head *);
542static void qla1280_error_entry(struct scsi_qla_host *, struct response *,
543 struct list_head *);
544static uint16_t qla1280_get_nvram_word(struct scsi_qla_host *, uint32_t);
545static uint16_t qla1280_nvram_request(struct scsi_qla_host *, uint32_t);
546static uint16_t qla1280_debounce_register(volatile uint16_t __iomem *);
547static request_t *qla1280_req_pkt(struct scsi_qla_host *);
548static int qla1280_check_for_dead_scsi_bus(struct scsi_qla_host *,
549 unsigned int);
550static void qla1280_get_target_parameters(struct scsi_qla_host *,
551 struct scsi_device *);
552static int qla1280_set_target_parameters(struct scsi_qla_host *, int, int);
553
554
555static struct qla_driver_setup driver_setup;
556
557/*
558 * convert scsi data direction to request_t control flags
559 */
560static inline uint16_t
561qla1280_data_direction(struct scsi_cmnd *cmnd)
562{
563 switch(cmnd->sc_data_direction) {
564 case DMA_FROM_DEVICE:
565 return BIT_5;
566 case DMA_TO_DEVICE:
567 return BIT_6;
568 case DMA_BIDIRECTIONAL:
569 return BIT_5 | BIT_6;
570 /*
571 * We could BUG() on default here if one of the four cases aren't
572 * met, but then again if we receive something like that from the
573 * SCSI layer we have more serious problems. This shuts up GCC.
574 */
575 case DMA_NONE:
576 default:
577 return 0;
578 }
579}
580
581#if DEBUG_QLA1280
582static void __qla1280_print_scsi_cmd(struct scsi_cmnd * cmd);
583static void __qla1280_dump_buffer(char *, int);
584#endif
585
586
587/*
588 * insmod needs to find the variable and make it point to something
589 */
590#ifdef MODULE
591static char *qla1280;
592
593/* insmod qla1280 options=verbose" */
594module_param(qla1280, charp, 0);
595#else
596__setup("qla1280=", qla1280_setup);
597#endif
598
599
600/*
601 * We use the scsi_pointer structure that's included with each scsi_command
602 * to overlay our struct srb over it. qla1280_init() checks that a srb is not
603 * bigger than a scsi_pointer.
604 */
605
606#define CMD_SP(Cmnd) &Cmnd->SCp
607#define CMD_CDBLEN(Cmnd) Cmnd->cmd_len
608#define CMD_CDBP(Cmnd) Cmnd->cmnd
609#define CMD_SNSP(Cmnd) Cmnd->sense_buffer
610#define CMD_SNSLEN(Cmnd) sizeof(Cmnd->sense_buffer)
611#define CMD_RESULT(Cmnd) Cmnd->result
612#define CMD_HANDLE(Cmnd) Cmnd->host_scribble
613#if LINUX_VERSION_CODE < 0x020545
614#define CMD_REQUEST(Cmnd) Cmnd->request.cmd
615#else
616#define CMD_REQUEST(Cmnd) Cmnd->request->cmd
617#endif
618
619#define CMD_HOST(Cmnd) Cmnd->device->host
620#define SCSI_BUS_32(Cmnd) Cmnd->device->channel
621#define SCSI_TCN_32(Cmnd) Cmnd->device->id
622#define SCSI_LUN_32(Cmnd) Cmnd->device->lun
623
624
625/*****************************************/
626/* ISP Boards supported by this driver */
627/*****************************************/
628
629struct qla_boards {
630 unsigned char name[9]; /* Board ID String */
631 int numPorts; /* Number of SCSI ports */
632 unsigned short *fwcode; /* pointer to FW array */
633 unsigned short *fwlen; /* number of words in array */
634 unsigned short *fwstart; /* start address for F/W */
635 unsigned char *fwver; /* Ptr to F/W version array */
636};
637
638/* NOTE: the last argument in each entry is used to index ql1280_board_tbl */
639static struct pci_device_id qla1280_pci_tbl[] = {
640 {PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP12160,
641 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
642#ifdef CONFIG_SCSI_QLOGIC_1280_1040
643 {PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP1020,
644 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 1},
645#endif
646 {PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP1080,
647 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 2},
648 {PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP1240,
649 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 3},
650 {PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP1280,
651 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 4},
652 {PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP10160,
653 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 5},
654 {0,}
655};
656MODULE_DEVICE_TABLE(pci, qla1280_pci_tbl);
657
658static struct qla_boards ql1280_board_tbl[] = {
659 /* Name , Number of ports, FW details */
660 {"QLA12160", 2, &fw12160i_code01[0], &fw12160i_length01,
661 &fw12160i_addr01, &fw12160i_version_str[0]},
662 {"QLA1040", 1, &risc_code01[0], &risc_code_length01,
663 &risc_code_addr01, &firmware_version[0]},
664 {"QLA1080", 1, &fw1280ei_code01[0], &fw1280ei_length01,
665 &fw1280ei_addr01, &fw1280ei_version_str[0]},
666 {"QLA1240", 2, &fw1280ei_code01[0], &fw1280ei_length01,
667 &fw1280ei_addr01, &fw1280ei_version_str[0]},
668 {"QLA1280", 2, &fw1280ei_code01[0], &fw1280ei_length01,
669 &fw1280ei_addr01, &fw1280ei_version_str[0]},
670 {"QLA10160", 1, &fw12160i_code01[0], &fw12160i_length01,
671 &fw12160i_addr01, &fw12160i_version_str[0]},
672 {" ", 0}
673};
674
675static int qla1280_verbose = 1;
676
677#if DEBUG_QLA1280
678static int ql_debug_level = 1;
679#define dprintk(level, format, a...) \
680 do { if (ql_debug_level >= level) printk(KERN_ERR format, ##a); } while(0)
681#define qla1280_dump_buffer(level, buf, size) \
682 if (ql_debug_level >= level) __qla1280_dump_buffer(buf, size)
683#define qla1280_print_scsi_cmd(level, cmd) \
684 if (ql_debug_level >= level) __qla1280_print_scsi_cmd(cmd)
685#else
686#define ql_debug_level 0
687#define dprintk(level, format, a...) do{}while(0)
688#define qla1280_dump_buffer(a, b, c) do{}while(0)
689#define qla1280_print_scsi_cmd(a, b) do{}while(0)
690#endif
691
692#define ENTER(x) dprintk(3, "qla1280 : Entering %s()\n", x);
693#define LEAVE(x) dprintk(3, "qla1280 : Leaving %s()\n", x);
694#define ENTER_INTR(x) dprintk(4, "qla1280 : Entering %s()\n", x);
695#define LEAVE_INTR(x) dprintk(4, "qla1280 : Leaving %s()\n", x);
696
697
698static int qla1280_read_nvram(struct scsi_qla_host *ha)
699{
700 uint16_t *wptr;
701 uint8_t chksum;
702 int cnt, i;
703 struct nvram *nv;
704
705 ENTER("qla1280_read_nvram");
706
707 if (driver_setup.no_nvram)
708 return 1;
709
710 printk(KERN_INFO "scsi(%ld): Reading NVRAM\n", ha->host_no);
711
712 wptr = (uint16_t *)&ha->nvram;
713 nv = &ha->nvram;
714 chksum = 0;
715 for (cnt = 0; cnt < 3; cnt++) {
716 *wptr = qla1280_get_nvram_word(ha, cnt);
717 chksum += *wptr & 0xff;
718 chksum += (*wptr >> 8) & 0xff;
719 wptr++;
720 }
721
722 if (nv->id0 != 'I' || nv->id1 != 'S' ||
723 nv->id2 != 'P' || nv->id3 != ' ' || nv->version < 1) {
724 dprintk(2, "Invalid nvram ID or version!\n");
725 chksum = 1;
726 } else {
727 for (; cnt < sizeof(struct nvram); cnt++) {
728 *wptr = qla1280_get_nvram_word(ha, cnt);
729 chksum += *wptr & 0xff;
730 chksum += (*wptr >> 8) & 0xff;
731 wptr++;
732 }
733 }
734
735 dprintk(3, "qla1280_read_nvram: NVRAM Magic ID= %c %c %c %02x"
736 " version %i\n", nv->id0, nv->id1, nv->id2, nv->id3,
737 nv->version);
738
739
740 if (chksum) {
741 if (!driver_setup.no_nvram)
742 printk(KERN_WARNING "scsi(%ld): Unable to identify or "
743 "validate NVRAM checksum, using default "
744 "settings\n", ha->host_no);
745 ha->nvram_valid = 0;
746 } else
747 ha->nvram_valid = 1;
748
749 /* The firmware interface is, um, interesting, in that the
750 * actual firmware image on the chip is little endian, thus,
751 * the process of taking that image to the CPU would end up
752 * little endian. However, the firmare interface requires it
753 * to be read a word (two bytes) at a time.
754 *
755 * The net result of this would be that the word (and
756 * doubleword) quantites in the firmware would be correct, but
757 * the bytes would be pairwise reversed. Since most of the
758 * firmware quantites are, in fact, bytes, we do an extra
759 * le16_to_cpu() in the firmware read routine.
760 *
761 * The upshot of all this is that the bytes in the firmware
762 * are in the correct places, but the 16 and 32 bit quantites
763 * are still in little endian format. We fix that up below by
764 * doing extra reverses on them */
765 nv->isp_parameter = cpu_to_le16(nv->isp_parameter);
766 nv->firmware_feature.w = cpu_to_le16(nv->firmware_feature.w);
767 for(i = 0; i < MAX_BUSES; i++) {
768 nv->bus[i].selection_timeout = cpu_to_le16(nv->bus[i].selection_timeout);
769 nv->bus[i].max_queue_depth = cpu_to_le16(nv->bus[i].max_queue_depth);
770 }
771 dprintk(1, "qla1280_read_nvram: Completed Reading NVRAM\n");
772 LEAVE("qla1280_read_nvram");
773
774 return chksum;
775}
776
777/**************************************************************************
778 * qla1280_info
779 * Return a string describing the driver.
780 **************************************************************************/
781static const char *
782qla1280_info(struct Scsi_Host *host)
783{
784 static char qla1280_scsi_name_buffer[125];
785 char *bp;
786 struct scsi_qla_host *ha;
787 struct qla_boards *bdp;
788
789 bp = &qla1280_scsi_name_buffer[0];
790 ha = (struct scsi_qla_host *)host->hostdata;
791 bdp = &ql1280_board_tbl[ha->devnum];
792 memset(bp, 0, sizeof(qla1280_scsi_name_buffer));
793
794 sprintf (bp,
795 "QLogic %s PCI to SCSI Host Adapter\n"
796 " Firmware version: %2d.%02d.%02d, Driver version %s",
797 &bdp->name[0], bdp->fwver[0], bdp->fwver[1], bdp->fwver[2],
798 QLA1280_VERSION);
799 return bp;
800}
801
802/**************************************************************************
803 * qla1200_queuecommand
804 * Queue a command to the controller.
805 *
806 * Note:
807 * The mid-level driver tries to ensures that queuecommand never gets invoked
808 * concurrently with itself or the interrupt handler (although the
809 * interrupt handler may call this routine as part of request-completion
810 * handling). Unfortunely, it sometimes calls the scheduler in interrupt
811 * context which is a big NO! NO!.
812 **************************************************************************/
813static int
814qla1280_queuecommand(struct scsi_cmnd *cmd, void (*fn)(struct scsi_cmnd *))
815{
816 struct Scsi_Host *host = cmd->device->host;
817 struct scsi_qla_host *ha = (struct scsi_qla_host *)host->hostdata;
818 struct srb *sp = (struct srb *)&cmd->SCp;
819 int status;
820
821 cmd->scsi_done = fn;
822 sp->cmd = cmd;
823 sp->flags = 0;
824
825 qla1280_print_scsi_cmd(5, cmd);
826
827#ifdef QLA_64BIT_PTR
828 /*
829 * Using 64 bit commands if the PCI bridge doesn't support it is a
830 * bit wasteful, however this should really only happen if one's
831 * PCI controller is completely broken, like the BCM1250. For
832 * sane hardware this is not an issue.
833 */
834 status = qla1280_64bit_start_scsi(ha, sp);
835#else
836 status = qla1280_32bit_start_scsi(ha, sp);
837#endif
838 return status;
839}
840
841enum action {
842 ABORT_COMMAND,
843 ABORT_DEVICE,
844 DEVICE_RESET,
845 BUS_RESET,
846 ADAPTER_RESET,
847 FAIL
848};
849
850/* timer action for error action processor */
851static void qla1280_error_wait_timeout(unsigned long __data)
852{
853 struct scsi_cmnd *cmd = (struct scsi_cmnd *)__data;
854 struct srb *sp = (struct srb *)CMD_SP(cmd);
855
856 complete(sp->wait);
857}
858
859static void qla1280_mailbox_timeout(unsigned long __data)
860{
861 struct scsi_qla_host *ha = (struct scsi_qla_host *)__data;
862 struct device_reg __iomem *reg;
863 reg = ha->iobase;
864
865 ha->mailbox_out[0] = RD_REG_WORD(&reg->mailbox0);
866 printk(KERN_ERR "scsi(%ld): mailbox timed out, mailbox0 %04x, "
867 "ictrl %04x, istatus %04x\n", ha->host_no, ha->mailbox_out[0],
868 RD_REG_WORD(&reg->ictrl), RD_REG_WORD(&reg->istatus));
869 complete(ha->mailbox_wait);
870}
871
872/**************************************************************************
873 * qla1200_error_action
874 * The function will attempt to perform a specified error action and
875 * wait for the results (or time out).
876 *
877 * Input:
878 * cmd = Linux SCSI command packet of the command that cause the
879 * bus reset.
880 * action = error action to take (see action_t)
881 *
882 * Returns:
883 * SUCCESS or FAILED
884 *
885 * Note:
886 * Resetting the bus always succeeds - is has to, otherwise the
887 * kernel will panic! Try a surgical technique - sending a BUS
888 * DEVICE RESET message - on the offending target before pulling
889 * the SCSI bus reset line.
890 **************************************************************************/
891static int
892qla1280_error_action(struct scsi_cmnd *cmd, enum action action)
893{
894 struct scsi_qla_host *ha;
895 int bus, target, lun;
896 struct srb *sp;
897 uint16_t data;
898 unsigned char *handle;
899 int result, i;
900 DECLARE_COMPLETION(wait);
901 struct timer_list timer;
902
903 ha = (struct scsi_qla_host *)(CMD_HOST(cmd)->hostdata);
904
905 dprintk(4, "error_action %i, istatus 0x%04x\n", action,
906 RD_REG_WORD(&ha->iobase->istatus));
907
908 dprintk(4, "host_cmd 0x%04x, ictrl 0x%04x, jiffies %li\n",
909 RD_REG_WORD(&ha->iobase->host_cmd),
910 RD_REG_WORD(&ha->iobase->ictrl), jiffies);
911
912 ENTER("qla1280_error_action");
913 if (qla1280_verbose)
914 printk(KERN_INFO "scsi(%li): Resetting Cmnd=0x%p, "
915 "Handle=0x%p, action=0x%x\n",
916 ha->host_no, cmd, CMD_HANDLE(cmd), action);
917
918 if (cmd == NULL) {
919 printk(KERN_WARNING "(scsi?:?:?:?) Reset called with NULL "
920 "si_Cmnd pointer, failing.\n");
921 LEAVE("qla1280_error_action");
922 return FAILED;
923 }
924
925 ha = (struct scsi_qla_host *)cmd->device->host->hostdata;
926 sp = (struct srb *)CMD_SP(cmd);
927 handle = CMD_HANDLE(cmd);
928
929 /* Check for pending interrupts. */
930 data = qla1280_debounce_register(&ha->iobase->istatus);
931 /*
932 * The io_request_lock is held when the reset handler is called, hence
933 * the interrupt handler cannot be running in parallel as it also
934 * grabs the lock. /Jes
935 */
936 if (data & RISC_INT)
937 qla1280_isr(ha, &ha->done_q);
938
939 /*
940 * Determine the suggested action that the mid-level driver wants
941 * us to perform.
942 */
943 if (handle == (unsigned char *)INVALID_HANDLE || handle == NULL) {
944 if(action == ABORT_COMMAND) {
945 /* we never got this command */
946 printk(KERN_INFO "qla1280: Aborting a NULL handle\n");
947 return SUCCESS; /* no action - we don't have command */
948 }
949 } else {
950 sp->wait = &wait;
951 }
952
953 bus = SCSI_BUS_32(cmd);
954 target = SCSI_TCN_32(cmd);
955 lun = SCSI_LUN_32(cmd);
956
957 /* Overloading result. Here it means the success or fail of the
958 * *issue* of the action. When we return from the routine, it must
959 * mean the actual success or fail of the action */
960 result = FAILED;
961 switch (action) {
962 case FAIL:
963 break;
964
965 case ABORT_COMMAND:
966 if ((sp->flags & SRB_ABORT_PENDING)) {
967 printk(KERN_WARNING
968 "scsi(): Command has a pending abort "
969 "message - ABORT_PENDING.\n");
970 /* This should technically be impossible since we
971 * now wait for abort completion */
972 break;
973 }
974
975 for (i = 0; i < MAX_OUTSTANDING_COMMANDS; i++) {
976 if (sp == ha->outstanding_cmds[i]) {
977 dprintk(1, "qla1280: RISC aborting command\n");
978 if (qla1280_abort_command(ha, sp, i) == 0)
979 result = SUCCESS;
980 else {
981 /*
982 * Since we don't know what might
983 * have happend to the command, it
984 * is unsafe to remove it from the
985 * device's queue at this point.
986 * Wait and let the escalation
987 * process take care of it.
988 */
989 printk(KERN_WARNING
990 "scsi(%li:%i:%i:%i): Unable"
991 " to abort command!\n",
992 ha->host_no, bus, target, lun);
993 }
994 }
995 }
996 break;
997
998 case ABORT_DEVICE:
1da177e4
LT
999 if (qla1280_verbose)
1000 printk(KERN_INFO
1001 "scsi(%ld:%d:%d:%d): Queueing abort device "
1002 "command.\n", ha->host_no, bus, target, lun);
1003 if (qla1280_abort_device(ha, bus, target, lun) == 0)
1004 result = SUCCESS;
1005 break;
1006
1007 case DEVICE_RESET:
1008 if (qla1280_verbose)
1009 printk(KERN_INFO
1010 "scsi(%ld:%d:%d:%d): Queueing device reset "
1011 "command.\n", ha->host_no, bus, target, lun);
1da177e4
LT
1012 if (qla1280_device_reset(ha, bus, target) == 0)
1013 result = SUCCESS;
1014 break;
1015
1016 case BUS_RESET:
1017 if (qla1280_verbose)
1018 printk(KERN_INFO "qla1280(%ld:%d): Issuing BUS "
1019 "DEVICE RESET\n", ha->host_no, bus);
1da177e4
LT
1020 if (qla1280_bus_reset(ha, bus == 0))
1021 result = SUCCESS;
1022
1023 break;
1024
1025 case ADAPTER_RESET:
1026 default:
1027 if (qla1280_verbose) {
1028 printk(KERN_INFO
1029 "scsi(%ld): Issued ADAPTER RESET\n",
1030 ha->host_no);
1031 printk(KERN_INFO "scsi(%ld): I/O processing will "
1032 "continue automatically\n", ha->host_no);
1033 }
1034 ha->flags.reset_active = 1;
1035 /*
1036 * We restarted all of the commands automatically, so the
1037 * mid-level code can expect completions momentitarily.
1038 */
1039 if (qla1280_abort_isp(ha) == 0)
1040 result = SUCCESS;
1041
1042 ha->flags.reset_active = 0;
1043 }
1044
1045 if (!list_empty(&ha->done_q))
1046 qla1280_done(ha);
1da177e4
LT
1047
1048 /* If we didn't manage to issue the action, or we have no
1049 * command to wait for, exit here */
1050 if (result == FAILED || handle == NULL ||
1051 handle == (unsigned char *)INVALID_HANDLE) {
1052 /*
1053 * Clear completion queue to avoid qla1280_done() trying
1054 * to complete the command at a later stage after we
1055 * have exited the current context
1056 */
1057 sp->wait = NULL;
1058 goto leave;
1059 }
1060
1061 /* set up a timer just in case we're really jammed */
1062 init_timer(&timer);
1063 timer.expires = jiffies + 4*HZ;
1064 timer.data = (unsigned long)cmd;
1065 timer.function = qla1280_error_wait_timeout;
1066 add_timer(&timer);
1067
1068 /* wait for the action to complete (or the timer to expire) */
1069 spin_unlock_irq(HOST_LOCK);
1070 wait_for_completion(&wait);
1071 del_timer_sync(&timer);
1072 spin_lock_irq(HOST_LOCK);
1073 sp->wait = NULL;
1074
1075 /* the only action we might get a fail for is abort */
1076 if (action == ABORT_COMMAND) {
1077 if(sp->flags & SRB_ABORTED)
1078 result = SUCCESS;
1079 else
1080 result = FAILED;
1081 }
1082
1083 leave:
1084 dprintk(1, "RESET returning %d\n", result);
1085
1086 LEAVE("qla1280_error_action");
1087 return result;
1088}
1089
1090/**************************************************************************
1091 * qla1280_abort
1092 * Abort the specified SCSI command(s).
1093 **************************************************************************/
1094static int
1095qla1280_eh_abort(struct scsi_cmnd * cmd)
1096{
8fa728a2
JG
1097 int rc;
1098
1099 spin_lock_irq(cmd->device->host->host_lock);
1100 rc = qla1280_error_action(cmd, ABORT_COMMAND);
1101 spin_unlock_irq(cmd->device->host->host_lock);
1102
1103 return rc;
1da177e4
LT
1104}
1105
1106/**************************************************************************
1107 * qla1280_device_reset
1108 * Reset the specified SCSI device
1109 **************************************************************************/
1110static int
1111qla1280_eh_device_reset(struct scsi_cmnd *cmd)
1112{
94d0e7b8
JG
1113 int rc;
1114
1115 spin_lock_irq(cmd->device->host->host_lock);
1116 rc = qla1280_error_action(cmd, DEVICE_RESET);
1117 spin_unlock_irq(cmd->device->host->host_lock);
1118
1119 return rc;
1da177e4
LT
1120}
1121
1122/**************************************************************************
1123 * qla1280_bus_reset
1124 * Reset the specified bus.
1125 **************************************************************************/
1126static int
1127qla1280_eh_bus_reset(struct scsi_cmnd *cmd)
1128{
68b3aa7c
JG
1129 int rc;
1130
1131 spin_lock_irq(cmd->device->host->host_lock);
1132 rc = qla1280_error_action(cmd, BUS_RESET);
1133 spin_unlock_irq(cmd->device->host->host_lock);
1134
1135 return rc;
1da177e4
LT
1136}
1137
1138/**************************************************************************
1139 * qla1280_adapter_reset
1140 * Reset the specified adapter (both channels)
1141 **************************************************************************/
1142static int
1143qla1280_eh_adapter_reset(struct scsi_cmnd *cmd)
1144{
df0ae249
JG
1145 int rc;
1146
1147 spin_lock_irq(cmd->device->host->host_lock);
1148 rc = qla1280_error_action(cmd, ADAPTER_RESET);
1149 spin_unlock_irq(cmd->device->host->host_lock);
1150
1151 return rc;
1da177e4
LT
1152}
1153
1154static int
1155qla1280_biosparam(struct scsi_device *sdev, struct block_device *bdev,
1156 sector_t capacity, int geom[])
1157{
1158 int heads, sectors, cylinders;
1159
1160 heads = 64;
1161 sectors = 32;
1162 cylinders = (unsigned long)capacity / (heads * sectors);
1163 if (cylinders > 1024) {
1164 heads = 255;
1165 sectors = 63;
1166 cylinders = (unsigned long)capacity / (heads * sectors);
1167 /* if (cylinders > 1023)
1168 cylinders = 1023; */
1169 }
1170
1171 geom[0] = heads;
1172 geom[1] = sectors;
1173 geom[2] = cylinders;
1174
1175 return 0;
1176}
1177
1178#if LINUX_VERSION_CODE < 0x020600
1179static int
1180qla1280_detect(Scsi_Host_Template *template)
1181{
1182 struct pci_device_id *id = &qla1280_pci_tbl[0];
1183 struct pci_dev *pdev = NULL;
1184 int num_hosts = 0;
1185
1186 if (sizeof(struct srb) > sizeof(Scsi_Pointer)) {
1187 printk(KERN_WARNING
1188 "qla1280: struct srb too big, aborting\n");
1189 return 0;
1190 }
1191
1192 if ((DMA_BIDIRECTIONAL != PCI_DMA_BIDIRECTIONAL) ||
1193 (DMA_TO_DEVICE != PCI_DMA_TODEVICE) ||
1194 (DMA_FROM_DEVICE != PCI_DMA_FROMDEVICE) ||
1195 (DMA_NONE != PCI_DMA_NONE)) {
1196 printk(KERN_WARNING
1197 "qla1280: dma direction bits don't match\n");
1198 return 0;
1199 }
1200
1201#ifdef MODULE
1202 /*
1203 * If we are called as a module, the qla1280 pointer may not be null
1204 * and it would point to our bootup string, just like on the lilo
1205 * command line. IF not NULL, then process this config string with
1206 * qla1280_setup
1207 *
1208 * Boot time Options
1209 * To add options at boot time add a line to your lilo.conf file like:
1210 * append="qla1280=verbose,max_tags:{{255,255,255,255},{255,255,255,255}}"
1211 * which will result in the first four devices on the first two
1212 * controllers being set to a tagged queue depth of 32.
1213 */
1214 if (qla1280)
1215 qla1280_setup(qla1280);
1216#endif
1217
1218 /* First Initialize QLA12160 on PCI Bus 1 Dev 2 */
1219 while ((pdev = pci_find_device(id->vendor, id->device, pdev))) {
1220 if (pdev->bus->number == 1 && PCI_SLOT(pdev->devfn) == 2) {
1221 if (!qla1280_probe_one(pdev, id))
1222 num_hosts++;
1223 }
1224 }
1225
1226 pdev = NULL;
1227 /* Try and find each different type of adapter we support */
1228 for (id = &qla1280_pci_tbl[0]; id->device; id++) {
1229 while ((pdev = pci_find_device(id->vendor, id->device, pdev))) {
1230 /*
1231 * skip QLA12160 already initialized on
1232 * PCI Bus 1 Dev 2 since we already initialized
1233 * and presented it
1234 */
1235 if (id->device == PCI_DEVICE_ID_QLOGIC_ISP12160 &&
1236 pdev->bus->number == 1 &&
1237 PCI_SLOT(pdev->devfn) == 2)
1238 continue;
1239
1240 if (!qla1280_probe_one(pdev, id))
1241 num_hosts++;
1242 }
1243 }
1244
1245 return num_hosts;
1246}
1247
1248/*
1249 * This looks a bit ugly as we could just pass down host to
1250 * qla1280_remove_one, but I want to keep qla1280_release purely a wrapper
1251 * around pci_driver::remove as used from 2.6 onwards.
1252 */
1253static int
1254qla1280_release(struct Scsi_Host *host)
1255{
1256 struct scsi_qla_host *ha = (struct scsi_qla_host *)host->hostdata;
1257
1258 qla1280_remove_one(ha->pdev);
1259 return 0;
1260}
1261
1262static int
1263qla1280_biosparam_old(Disk * disk, kdev_t dev, int geom[])
1264{
1265 return qla1280_biosparam(disk->device, NULL, disk->capacity, geom);
1266}
1267#endif
1268
1269/**************************************************************************
1270 * qla1280_intr_handler
1271 * Handles the H/W interrupt
1272 **************************************************************************/
1273static irqreturn_t
1274qla1280_intr_handler(int irq, void *dev_id, struct pt_regs *regs)
1275{
1276 struct scsi_qla_host *ha;
1277 struct device_reg __iomem *reg;
1278 u16 data;
1279 int handled = 0;
1280
1281 ENTER_INTR ("qla1280_intr_handler");
1282 ha = (struct scsi_qla_host *)dev_id;
1283
1284 spin_lock(HOST_LOCK);
1285
1286 ha->isr_count++;
1287 reg = ha->iobase;
1288
1289 WRT_REG_WORD(&reg->ictrl, 0); /* disable our interrupt. */
1290
1291 data = qla1280_debounce_register(&reg->istatus);
1292 /* Check for pending interrupts. */
1293 if (data & RISC_INT) {
1294 qla1280_isr(ha, &ha->done_q);
1295 handled = 1;
1296 }
1297 if (!list_empty(&ha->done_q))
1298 qla1280_done(ha);
1299
1300 spin_unlock(HOST_LOCK);
1301
1302 /* enable our interrupt. */
1303 WRT_REG_WORD(&reg->ictrl, (ISP_EN_INT | ISP_EN_RISC));
1304
1305 LEAVE_INTR("qla1280_intr_handler");
1306 return IRQ_RETVAL(handled);
1307}
1308
1309
1310static int
1311qla1280_set_target_parameters(struct scsi_qla_host *ha, int bus, int target)
1312{
1313 uint8_t mr;
1314 uint16_t mb[MAILBOX_REGISTER_COUNT];
1315 struct nvram *nv;
1316 int status;
1317
1318 nv = &ha->nvram;
1319
1320 mr = BIT_3 | BIT_2 | BIT_1 | BIT_0;
1321
1322 /* Set Target Parameters. */
1323 mb[0] = MBC_SET_TARGET_PARAMETERS;
1324 mb[1] = (uint16_t) (bus ? target | BIT_7 : target);
1325 mb[1] <<= 8;
1326
1327 mb[2] = (nv->bus[bus].target[target].parameter.c << 8);
1328
1329 if (IS_ISP1x160(ha)) {
1330 mb[2] |= nv->bus[bus].target[target].ppr_1x160.flags.enable_ppr << 5;
1331 mb[3] = (nv->bus[bus].target[target].flags.flags1x160.sync_offset << 8) |
1332 nv->bus[bus].target[target].sync_period;
1333 mb[6] = (nv->bus[bus].target[target].ppr_1x160.flags.ppr_options << 8) |
1334 nv->bus[bus].target[target].ppr_1x160.flags.ppr_bus_width;
1335 mr |= BIT_6;
1336 } else {
1337 mb[3] = (nv->bus[bus].target[target].flags.flags1x80.sync_offset << 8) |
1338 nv->bus[bus].target[target].sync_period;
1339 }
1340
1341 status = qla1280_mailbox_command(ha, mr, &mb[0]);
1342
1343 if (status)
1344 printk(KERN_WARNING "scsi(%ld:%i:%i): "
1345 "qla1280_set_target_parameters() failed\n",
1346 ha->host_no, bus, target);
1347 return status;
1348}
1349
1350
1351/**************************************************************************
1352 * qla1280_slave_configure
1353 *
1354 * Description:
1355 * Determines the queue depth for a given device. There are two ways
1356 * a queue depth can be obtained for a tagged queueing device. One
1357 * way is the default queue depth which is determined by whether
1358 * If it is defined, then it is used
1359 * as the default queue depth. Otherwise, we use either 4 or 8 as the
1360 * default queue depth (dependent on the number of hardware SCBs).
1361 **************************************************************************/
1362static int
1363qla1280_slave_configure(struct scsi_device *device)
1364{
1365 struct scsi_qla_host *ha;
1366 int default_depth = 3;
1367 int bus = device->channel;
1368 int target = device->id;
1369 int status = 0;
1370 struct nvram *nv;
1371 unsigned long flags;
1372
1373 ha = (struct scsi_qla_host *)device->host->hostdata;
1374 nv = &ha->nvram;
1375
1376 if (qla1280_check_for_dead_scsi_bus(ha, bus))
1377 return 1;
1378
1379 if (device->tagged_supported &&
1380 (ha->bus_settings[bus].qtag_enables & (BIT_0 << target))) {
1381 scsi_adjust_queue_depth(device, MSG_ORDERED_TAG,
1382 ha->bus_settings[bus].hiwat);
1383 } else {
1384 scsi_adjust_queue_depth(device, 0, default_depth);
1385 }
1386
1387#if LINUX_VERSION_CODE > 0x020500
1388 nv->bus[bus].target[target].parameter.f.enable_sync = device->sdtr;
1389 nv->bus[bus].target[target].parameter.f.enable_wide = device->wdtr;
1390 nv->bus[bus].target[target].ppr_1x160.flags.enable_ppr = device->ppr;
1391#endif
1392
1393 if (driver_setup.no_sync ||
1394 (driver_setup.sync_mask &&
1395 (~driver_setup.sync_mask & (1 << target))))
1396 nv->bus[bus].target[target].parameter.f.enable_sync = 0;
1397 if (driver_setup.no_wide ||
1398 (driver_setup.wide_mask &&
1399 (~driver_setup.wide_mask & (1 << target))))
1400 nv->bus[bus].target[target].parameter.f.enable_wide = 0;
1401 if (IS_ISP1x160(ha)) {
1402 if (driver_setup.no_ppr ||
1403 (driver_setup.ppr_mask &&
1404 (~driver_setup.ppr_mask & (1 << target))))
1405 nv->bus[bus].target[target].ppr_1x160.flags.enable_ppr = 0;
1406 }
1407
1408 spin_lock_irqsave(HOST_LOCK, flags);
1409 if (nv->bus[bus].target[target].parameter.f.enable_sync)
1410 status = qla1280_set_target_parameters(ha, bus, target);
1411 qla1280_get_target_parameters(ha, device);
1412 spin_unlock_irqrestore(HOST_LOCK, flags);
1413 return status;
1414}
1415
1416#if LINUX_VERSION_CODE < 0x020545
1417/**************************************************************************
1418 * qla1280_select_queue_depth
1419 *
1420 * Sets the queue depth for each SCSI device hanging off the input
1421 * host adapter. We use a queue depth of 2 for devices that do not
1422 * support tagged queueing.
1423 **************************************************************************/
1424static void
1425qla1280_select_queue_depth(struct Scsi_Host *host, struct scsi_device *sdev_q)
1426{
1427 struct scsi_qla_host *ha = (struct scsi_qla_host *)host->hostdata;
1428 struct scsi_device *sdev;
1429
1430 ENTER("qla1280_select_queue_depth");
1431 for (sdev = sdev_q; sdev; sdev = sdev->next)
1432 if (sdev->host == host)
1433 qla1280_slave_configure(sdev);
1434
1435 if (sdev_q)
1436 qla1280_check_for_dead_scsi_bus(ha, sdev_q->channel);
1437 LEAVE("qla1280_select_queue_depth");
1438}
1439#endif
1440
1441/*
1442 * qla1280_done
1443 * Process completed commands.
1444 *
1445 * Input:
1446 * ha = adapter block pointer.
1447 * done_q = done queue.
1448 */
1449static void
1450qla1280_done(struct scsi_qla_host *ha)
1451{
1452 struct srb *sp;
1453 struct list_head *done_q;
1454 int bus, target, lun;
1455 struct scsi_cmnd *cmd;
1456
1457 ENTER("qla1280_done");
1458
1459 done_q = &ha->done_q;
1460
1461 while (!list_empty(done_q)) {
1462 sp = list_entry(done_q->next, struct srb, list);
1463
1464 list_del(&sp->list);
1465
1466 cmd = sp->cmd;
1467 bus = SCSI_BUS_32(cmd);
1468 target = SCSI_TCN_32(cmd);
1469 lun = SCSI_LUN_32(cmd);
1470
1471 switch ((CMD_RESULT(cmd) >> 16)) {
1472 case DID_RESET:
1473 /* Issue marker command. */
1474 qla1280_marker(ha, bus, target, 0, MK_SYNC_ID);
1475 break;
1476 case DID_ABORT:
1477 sp->flags &= ~SRB_ABORT_PENDING;
1478 sp->flags |= SRB_ABORTED;
1479 if (sp->flags & SRB_TIMEOUT)
1480 CMD_RESULT(sp->cmd) = DID_TIME_OUT << 16;
1481 break;
1482 default:
1483 break;
1484 }
1485
1486 /* Release memory used for this I/O */
1487 if (cmd->use_sg) {
1488 pci_unmap_sg(ha->pdev, cmd->request_buffer,
1489 cmd->use_sg, cmd->sc_data_direction);
1490 } else if (cmd->request_bufflen) {
1491 pci_unmap_single(ha->pdev, sp->saved_dma_handle,
1492 cmd->request_bufflen,
1493 cmd->sc_data_direction);
1494 }
1495
1496 /* Call the mid-level driver interrupt handler */
1497 CMD_HANDLE(sp->cmd) = (unsigned char *)INVALID_HANDLE;
1498 ha->actthreads--;
1499
1500#if LINUX_VERSION_CODE < 0x020500
1501 if (cmd->cmnd[0] == INQUIRY)
1502 qla1280_get_target_options(cmd, ha);
1503#endif
1504 (*(cmd)->scsi_done)(cmd);
1505
1506 if(sp->wait != NULL)
1507 complete(sp->wait);
1508 }
1509 LEAVE("qla1280_done");
1510}
1511
1512/*
1513 * Translates a ISP error to a Linux SCSI error
1514 */
1515static int
1516qla1280_return_status(struct response * sts, struct scsi_cmnd *cp)
1517{
1518 int host_status = DID_ERROR;
1519 uint16_t comp_status = le16_to_cpu(sts->comp_status);
1520 uint16_t state_flags = le16_to_cpu(sts->state_flags);
1521 uint16_t residual_length = le16_to_cpu(sts->residual_length);
1522 uint16_t scsi_status = le16_to_cpu(sts->scsi_status);
1523#if DEBUG_QLA1280_INTR
1524 static char *reason[] = {
1525 "DID_OK",
1526 "DID_NO_CONNECT",
1527 "DID_BUS_BUSY",
1528 "DID_TIME_OUT",
1529 "DID_BAD_TARGET",
1530 "DID_ABORT",
1531 "DID_PARITY",
1532 "DID_ERROR",
1533 "DID_RESET",
1534 "DID_BAD_INTR"
1535 };
1536#endif /* DEBUG_QLA1280_INTR */
1537
1538 ENTER("qla1280_return_status");
1539
1540#if DEBUG_QLA1280_INTR
1541 /*
1542 dprintk(1, "qla1280_return_status: compl status = 0x%04x\n",
1543 comp_status);
1544 */
1545#endif
1546
1547 switch (comp_status) {
1548 case CS_COMPLETE:
1549 host_status = DID_OK;
1550 break;
1551
1552 case CS_INCOMPLETE:
1553 if (!(state_flags & SF_GOT_BUS))
1554 host_status = DID_NO_CONNECT;
1555 else if (!(state_flags & SF_GOT_TARGET))
1556 host_status = DID_BAD_TARGET;
1557 else if (!(state_flags & SF_SENT_CDB))
1558 host_status = DID_ERROR;
1559 else if (!(state_flags & SF_TRANSFERRED_DATA))
1560 host_status = DID_ERROR;
1561 else if (!(state_flags & SF_GOT_STATUS))
1562 host_status = DID_ERROR;
1563 else if (!(state_flags & SF_GOT_SENSE))
1564 host_status = DID_ERROR;
1565 break;
1566
1567 case CS_RESET:
1568 host_status = DID_RESET;
1569 break;
1570
1571 case CS_ABORTED:
1572 host_status = DID_ABORT;
1573 break;
1574
1575 case CS_TIMEOUT:
1576 host_status = DID_TIME_OUT;
1577 break;
1578
1579 case CS_DATA_OVERRUN:
1580 dprintk(2, "Data overrun 0x%x\n", residual_length);
1581 dprintk(2, "qla1280_isr: response packet data\n");
1582 qla1280_dump_buffer(2, (char *)sts, RESPONSE_ENTRY_SIZE);
1583 host_status = DID_ERROR;
1584 break;
1585
1586 case CS_DATA_UNDERRUN:
1587 if ((cp->request_bufflen - residual_length) <
1588 cp->underflow) {
1589 printk(KERN_WARNING
1590 "scsi: Underflow detected - retrying "
1591 "command.\n");
1592 host_status = DID_ERROR;
1593 } else
1594 host_status = DID_OK;
1595 break;
1596
1597 default:
1598 host_status = DID_ERROR;
1599 break;
1600 }
1601
1602#if DEBUG_QLA1280_INTR
1603 dprintk(1, "qla1280 ISP status: host status (%s) scsi status %x\n",
1604 reason[host_status], scsi_status);
1605#endif
1606
1607 LEAVE("qla1280_return_status");
1608
1609 return (scsi_status & 0xff) | (host_status << 16);
1610}
1611
1612/****************************************************************************/
1613/* QLogic ISP1280 Hardware Support Functions. */
1614/****************************************************************************/
1615
1616 /*
1617 * qla2100_enable_intrs
1618 * qla2100_disable_intrs
1619 *
1620 * Input:
1621 * ha = adapter block pointer.
1622 *
1623 * Returns:
1624 * None
1625 */
1626static inline void
1627qla1280_enable_intrs(struct scsi_qla_host *ha)
1628{
1629 struct device_reg __iomem *reg;
1630
1631 reg = ha->iobase;
1632 /* enable risc and host interrupts */
1633 WRT_REG_WORD(&reg->ictrl, (ISP_EN_INT | ISP_EN_RISC));
1634 RD_REG_WORD(&reg->ictrl); /* PCI Posted Write flush */
1da177e4
LT
1635}
1636
1637static inline void
1638qla1280_disable_intrs(struct scsi_qla_host *ha)
1639{
1640 struct device_reg __iomem *reg;
1641
1642 reg = ha->iobase;
1643 /* disable risc and host interrupts */
1644 WRT_REG_WORD(&reg->ictrl, 0);
1645 RD_REG_WORD(&reg->ictrl); /* PCI Posted Write flush */
1da177e4
LT
1646}
1647
1648/*
1649 * qla1280_initialize_adapter
1650 * Initialize board.
1651 *
1652 * Input:
1653 * ha = adapter block pointer.
1654 *
1655 * Returns:
1656 * 0 = success
1657 */
1658static int __devinit
1659qla1280_initialize_adapter(struct scsi_qla_host *ha)
1660{
1661 struct device_reg __iomem *reg;
1662 int status;
1663 int bus;
1664#if LINUX_VERSION_CODE > 0x020500
1665 unsigned long flags;
1666#endif
1667
1668 ENTER("qla1280_initialize_adapter");
1669
1670 /* Clear adapter flags. */
1671 ha->flags.online = 0;
1672 ha->flags.disable_host_adapter = 0;
1673 ha->flags.reset_active = 0;
1674 ha->flags.abort_isp_active = 0;
1675
1da177e4
LT
1676#if defined(CONFIG_IA64_GENERIC) || defined(CONFIG_IA64_SGI_SN2)
1677 if (ia64_platform_is("sn2")) {
1678 printk(KERN_INFO "scsi(%li): Enabling SN2 PCI DMA "
1679 "dual channel lockup workaround\n", ha->host_no);
1680 ha->flags.use_pci_vchannel = 1;
1681 driver_setup.no_nvram = 1;
1682 }
1683#endif
1684
1685 /* TODO: implement support for the 1040 nvram format */
1686 if (IS_ISP1040(ha))
1687 driver_setup.no_nvram = 1;
1688
1689 dprintk(1, "Configure PCI space for adapter...\n");
1690
1691 reg = ha->iobase;
1692
1693 /* Insure mailbox registers are free. */
1694 WRT_REG_WORD(&reg->semaphore, 0);
1695 WRT_REG_WORD(&reg->host_cmd, HC_CLR_RISC_INT);
1696 WRT_REG_WORD(&reg->host_cmd, HC_CLR_HOST_INT);
1697 RD_REG_WORD(&reg->host_cmd);
1698
1699 if (qla1280_read_nvram(ha)) {
1700 dprintk(2, "qla1280_initialize_adapter: failed to read "
1701 "NVRAM\n");
1702 }
1703
1704#if LINUX_VERSION_CODE >= 0x020500
1705 /*
1706 * It's necessary to grab the spin here as qla1280_mailbox_command
1707 * needs to be able to drop the lock unconditionally to wait
1708 * for completion.
1709 * In 2.4 ->detect is called with the io_request_lock held.
1710 */
1711 spin_lock_irqsave(HOST_LOCK, flags);
1712#endif
1713
1714 status = qla1280_load_firmware(ha);
1715 if (status) {
1716 printk(KERN_ERR "scsi(%li): initialize: pci probe failed!\n",
1717 ha->host_no);
1718 goto out;
1719 }
1720
1721 /* Setup adapter based on NVRAM parameters. */
1722 dprintk(1, "scsi(%ld): Configure NVRAM parameters\n", ha->host_no);
1723 qla1280_nvram_config(ha);
1724
1725 if (ha->flags.disable_host_adapter) {
1726 status = 1;
1727 goto out;
1728 }
1729
1730 status = qla1280_init_rings(ha);
1731 if (status)
1732 goto out;
1733
1734 /* Issue SCSI reset, if we can't reset twice then bus is dead */
1735 for (bus = 0; bus < ha->ports; bus++) {
1736 if (!ha->bus_settings[bus].disable_scsi_reset &&
1737 qla1280_bus_reset(ha, bus) &&
1738 qla1280_bus_reset(ha, bus))
1739 ha->bus_settings[bus].scsi_bus_dead = 1;
1740 }
1741
1742 ha->flags.online = 1;
1743 out:
1744#if LINUX_VERSION_CODE >= 0x020500
1745 spin_unlock_irqrestore(HOST_LOCK, flags);
1746#endif
1747 if (status)
1748 dprintk(2, "qla1280_initialize_adapter: **** FAILED ****\n");
1749
1750 LEAVE("qla1280_initialize_adapter");
1751 return status;
1752}
1753
1754
1755/*
1756 * ISP Firmware Test
1757 * Checks if present version of RISC firmware is older than
1758 * driver firmware.
1759 *
1760 * Input:
1761 * ha = adapter block pointer.
1762 *
1763 * Returns:
1764 * 0 = firmware does not need to be loaded.
1765 */
1766static int
1767qla1280_isp_firmware(struct scsi_qla_host *ha)
1768{
1769 struct nvram *nv = (struct nvram *) ha->response_ring;
1770 int status = 0; /* dg 2/27 always loads RISC */
1771 uint16_t mb[MAILBOX_REGISTER_COUNT];
1772
1773 ENTER("qla1280_isp_firmware");
1774
1775 dprintk(1, "scsi(%li): Determining if RISC is loaded\n", ha->host_no);
1776
1777 /* Bad NVRAM data, load RISC code. */
1778 if (!ha->nvram_valid) {
1779 ha->flags.disable_risc_code_load = 0;
1780 } else
1781 ha->flags.disable_risc_code_load =
1782 nv->cntr_flags_1.disable_loading_risc_code;
1783
1784 if (ha->flags.disable_risc_code_load) {
1785 dprintk(3, "qla1280_isp_firmware: Telling RISC to verify "
1786 "checksum of loaded BIOS code.\n");
1787
1788 /* Verify checksum of loaded RISC code. */
1789 mb[0] = MBC_VERIFY_CHECKSUM;
1790 /* mb[1] = ql12_risc_code_addr01; */
1791 mb[1] = *ql1280_board_tbl[ha->devnum].fwstart;
1792
1793 if (!(status =
1794 qla1280_mailbox_command(ha, BIT_1 | BIT_0, &mb[0]))) {
1795 /* Start firmware execution. */
1796 dprintk(3, "qla1280_isp_firmware: Startng F/W "
1797 "execution.\n");
1798
1799 mb[0] = MBC_EXECUTE_FIRMWARE;
1800 /* mb[1] = ql12_risc_code_addr01; */
1801 mb[1] = *ql1280_board_tbl[ha->devnum].fwstart;
1802 qla1280_mailbox_command(ha, BIT_1 | BIT_0, &mb[0]);
1803 } else
1804 printk(KERN_INFO "qla1280: RISC checksum failed.\n");
1805 } else {
1806 dprintk(1, "qla1280: NVRAM configured to load RISC load.\n");
1807 status = 1;
1808 }
1809
1810 if (status)
1811 dprintk(2, "qla1280_isp_firmware: **** Load RISC code ****\n");
1812
1813 LEAVE("qla1280_isp_firmware");
1814 return status;
1815}
1816
1817/*
1818 * Chip diagnostics
1819 * Test chip for proper operation.
1820 *
1821 * Input:
1822 * ha = adapter block pointer.
1823 *
1824 * Returns:
1825 * 0 = success.
1826 */
1827static int
1828qla1280_chip_diag(struct scsi_qla_host *ha)
1829{
1830 uint16_t mb[MAILBOX_REGISTER_COUNT];
1831 struct device_reg __iomem *reg = ha->iobase;
1832 int status = 0;
1833 int cnt;
1834 uint16_t data;
1835 dprintk(3, "qla1280_chip_diag: testing device at 0x%p \n", &reg->id_l);
1836
1837 dprintk(1, "scsi(%ld): Verifying chip\n", ha->host_no);
1838
1839 /* Soft reset chip and wait for it to finish. */
1840 WRT_REG_WORD(&reg->ictrl, ISP_RESET);
1841
1842 /*
1843 * We can't do a traditional PCI write flush here by reading
1844 * back the register. The card will not respond once the reset
1845 * is in action and we end up with a machine check exception
1846 * instead. Nothing to do but wait and hope for the best.
1847 * A portable pci_write_flush(pdev) call would be very useful here.
1848 */
1849 udelay(20);
1850 data = qla1280_debounce_register(&reg->ictrl);
1851 /*
1852 * Yet another QLogic gem ;-(
1853 */
1854 for (cnt = 1000000; cnt && data & ISP_RESET; cnt--) {
1855 udelay(5);
1856 data = RD_REG_WORD(&reg->ictrl);
1857 }
1858
1859 if (!cnt)
1860 goto fail;
1861
1862 /* Reset register cleared by chip reset. */
1863 dprintk(3, "qla1280_chip_diag: reset register cleared by chip reset\n");
1864
1865 WRT_REG_WORD(&reg->cfg_1, 0);
1866
1867 /* Reset RISC and disable BIOS which
1868 allows RISC to execute out of RAM. */
1869 WRT_REG_WORD(&reg->host_cmd, HC_RESET_RISC |
1870 HC_RELEASE_RISC | HC_DISABLE_BIOS);
1871
1872 RD_REG_WORD(&reg->id_l); /* Flush PCI write */
1873 data = qla1280_debounce_register(&reg->mailbox0);
1874
1875 /*
1876 * I *LOVE* this code!
1877 */
1878 for (cnt = 1000000; cnt && data == MBS_BUSY; cnt--) {
1879 udelay(5);
1880 data = RD_REG_WORD(&reg->mailbox0);
1881 }
1882
1883 if (!cnt)
1884 goto fail;
1885
1886 /* Check product ID of chip */
1887 dprintk(3, "qla1280_chip_diag: Checking product ID of chip\n");
1888
1889 if (RD_REG_WORD(&reg->mailbox1) != PROD_ID_1 ||
1890 (RD_REG_WORD(&reg->mailbox2) != PROD_ID_2 &&
1891 RD_REG_WORD(&reg->mailbox2) != PROD_ID_2a) ||
1892 RD_REG_WORD(&reg->mailbox3) != PROD_ID_3 ||
1893 RD_REG_WORD(&reg->mailbox4) != PROD_ID_4) {
1894 printk(KERN_INFO "qla1280: Wrong product ID = "
1895 "0x%x,0x%x,0x%x,0x%x\n",
1896 RD_REG_WORD(&reg->mailbox1),
1897 RD_REG_WORD(&reg->mailbox2),
1898 RD_REG_WORD(&reg->mailbox3),
1899 RD_REG_WORD(&reg->mailbox4));
1900 goto fail;
1901 }
1902
1903 /*
1904 * Enable ints early!!!
1905 */
1906 qla1280_enable_intrs(ha);
1907
1908 dprintk(1, "qla1280_chip_diag: Checking mailboxes of chip\n");
1909 /* Wrap Incoming Mailboxes Test. */
1910 mb[0] = MBC_MAILBOX_REGISTER_TEST;
1911 mb[1] = 0xAAAA;
1912 mb[2] = 0x5555;
1913 mb[3] = 0xAA55;
1914 mb[4] = 0x55AA;
1915 mb[5] = 0xA5A5;
1916 mb[6] = 0x5A5A;
1917 mb[7] = 0x2525;
1918
1919 status = qla1280_mailbox_command(ha, 0xff, mb);
1920 if (status)
1921 goto fail;
1922
1923 if (mb[1] != 0xAAAA || mb[2] != 0x5555 || mb[3] != 0xAA55 ||
1924 mb[4] != 0x55AA || mb[5] != 0xA5A5 || mb[6] != 0x5A5A ||
1925 mb[7] != 0x2525) {
1926 printk(KERN_INFO "qla1280: Failed mbox check\n");
1927 goto fail;
1928 }
1929
1930 dprintk(3, "qla1280_chip_diag: exiting normally\n");
1931 return 0;
1932 fail:
1933 dprintk(2, "qla1280_chip_diag: **** FAILED ****\n");
1934 return status;
1935}
1936
1937static int
1938qla1280_load_firmware_pio(struct scsi_qla_host *ha)
1939{
1940 uint16_t risc_address, *risc_code_address, risc_code_size;
1941 uint16_t mb[MAILBOX_REGISTER_COUNT], i;
1942 int err;
1943
1944 /* Load RISC code. */
1945 risc_address = *ql1280_board_tbl[ha->devnum].fwstart;
1946 risc_code_address = ql1280_board_tbl[ha->devnum].fwcode;
1947 risc_code_size = *ql1280_board_tbl[ha->devnum].fwlen;
1948
1949 for (i = 0; i < risc_code_size; i++) {
1950 mb[0] = MBC_WRITE_RAM_WORD;
1951 mb[1] = risc_address + i;
1952 mb[2] = risc_code_address[i];
1953
1954 err = qla1280_mailbox_command(ha, BIT_0 | BIT_1 | BIT_2, mb);
1955 if (err) {
1956 printk(KERN_ERR "scsi(%li): Failed to load firmware\n",
1957 ha->host_no);
1958 return err;
1959 }
1960 }
1961
1962 return 0;
1963}
1964
1965#define DUMP_IT_BACK 0 /* for debug of RISC loading */
1966static int
1967qla1280_load_firmware_dma(struct scsi_qla_host *ha)
1968{
1969 uint16_t risc_address, *risc_code_address, risc_code_size;
1970 uint16_t mb[MAILBOX_REGISTER_COUNT], cnt;
1971 int err = 0, num, i;
1972#if DUMP_IT_BACK
1973 uint8_t *sp, *tbuf;
1974 dma_addr_t p_tbuf;
1975
1976 tbuf = pci_alloc_consistent(ha->pdev, 8000, &p_tbuf);
1977 if (!tbuf)
1978 return -ENOMEM;
1979#endif
1980
1981 /* Load RISC code. */
1982 risc_address = *ql1280_board_tbl[ha->devnum].fwstart;
1983 risc_code_address = ql1280_board_tbl[ha->devnum].fwcode;
1984 risc_code_size = *ql1280_board_tbl[ha->devnum].fwlen;
1985
1986 dprintk(1, "%s: DMA RISC code (%i) words\n",
1987 __FUNCTION__, risc_code_size);
1988
1989 num = 0;
1990 while (risc_code_size > 0) {
1991 int warn __attribute__((unused)) = 0;
1992
1993 cnt = 2000 >> 1;
1994
1995 if (cnt > risc_code_size)
1996 cnt = risc_code_size;
1997
1998 dprintk(2, "qla1280_setup_chip: loading risc @ =(0x%p),"
1999 "%d,%d(0x%x)\n",
2000 risc_code_address, cnt, num, risc_address);
2001 for(i = 0; i < cnt; i++)
2002 ((uint16_t *)ha->request_ring)[i] =
2003 cpu_to_le16(risc_code_address[i]);
2004
2005 mb[0] = MBC_LOAD_RAM;
2006 mb[1] = risc_address;
2007 mb[4] = cnt;
2008 mb[3] = ha->request_dma & 0xffff;
2009 mb[2] = (ha->request_dma >> 16) & 0xffff;
2010 mb[7] = pci_dma_hi32(ha->request_dma) & 0xffff;
2011 mb[6] = pci_dma_hi32(ha->request_dma) >> 16;
2012 dprintk(2, "%s: op=%d 0x%p = 0x%4x,0x%4x,0x%4x,0x%4x\n",
2013 __FUNCTION__, mb[0],
2014 (void *)(long)ha->request_dma,
2015 mb[6], mb[7], mb[2], mb[3]);
2016 err = qla1280_mailbox_command(ha, BIT_4 | BIT_3 | BIT_2 |
2017 BIT_1 | BIT_0, mb);
2018 if (err) {
2019 printk(KERN_ERR "scsi(%li): Failed to load partial "
2020 "segment of f\n", ha->host_no);
2021 goto out;
2022 }
2023
2024#if DUMP_IT_BACK
2025 mb[0] = MBC_DUMP_RAM;
2026 mb[1] = risc_address;
2027 mb[4] = cnt;
2028 mb[3] = p_tbuf & 0xffff;
2029 mb[2] = (p_tbuf >> 16) & 0xffff;
2030 mb[7] = pci_dma_hi32(p_tbuf) & 0xffff;
2031 mb[6] = pci_dma_hi32(p_tbuf) >> 16;
2032
2033 err = qla1280_mailbox_command(ha, BIT_4 | BIT_3 | BIT_2 |
2034 BIT_1 | BIT_0, mb);
2035 if (err) {
2036 printk(KERN_ERR
2037 "Failed to dump partial segment of f/w\n");
2038 goto out;
2039 }
2040 sp = (uint8_t *)ha->request_ring;
2041 for (i = 0; i < (cnt << 1); i++) {
2042 if (tbuf[i] != sp[i] && warn++ < 10) {
2043 printk(KERN_ERR "%s: FW compare error @ "
2044 "byte(0x%x) loop#=%x\n",
2045 __FUNCTION__, i, num);
2046 printk(KERN_ERR "%s: FWbyte=%x "
2047 "FWfromChip=%x\n",
2048 __FUNCTION__, sp[i], tbuf[i]);
2049 /*break; */
2050 }
2051 }
2052#endif
2053 risc_address += cnt;
2054 risc_code_size = risc_code_size - cnt;
2055 risc_code_address = risc_code_address + cnt;
2056 num++;
2057 }
2058
2059 out:
2060#if DUMP_IT_BACK
2061 pci_free_consistent(ha->pdev, 8000, tbuf, p_tbuf);
2062#endif
2063 return err;
2064}
2065
2066static int
2067qla1280_start_firmware(struct scsi_qla_host *ha)
2068{
2069 uint16_t mb[MAILBOX_REGISTER_COUNT];
2070 int err;
2071
2072 dprintk(1, "%s: Verifying checksum of loaded RISC code.\n",
2073 __FUNCTION__);
2074
2075 /* Verify checksum of loaded RISC code. */
2076 mb[0] = MBC_VERIFY_CHECKSUM;
2077 /* mb[1] = ql12_risc_code_addr01; */
2078 mb[1] = *ql1280_board_tbl[ha->devnum].fwstart;
2079 err = qla1280_mailbox_command(ha, BIT_1 | BIT_0, mb);
2080 if (err) {
2081 printk(KERN_ERR "scsi(%li): Failed checksum\n", ha->host_no);
2082 return err;
2083 }
2084
2085 /* Start firmware execution. */
2086 dprintk(1, "%s: start firmware running.\n", __FUNCTION__);
2087 mb[0] = MBC_EXECUTE_FIRMWARE;
2088 mb[1] = *ql1280_board_tbl[ha->devnum].fwstart;
2089 err = qla1280_mailbox_command(ha, BIT_1 | BIT_0, &mb[0]);
2090 if (err) {
2091 printk(KERN_ERR "scsi(%li): Failed to start firmware\n",
2092 ha->host_no);
2093 }
2094
2095 return err;
2096}
2097
2098static int
2099qla1280_load_firmware(struct scsi_qla_host *ha)
2100{
2101 int err = -ENODEV;
2102
2103 /* If firmware needs to be loaded */
2104 if (!qla1280_isp_firmware(ha)) {
2105 printk(KERN_ERR "scsi(%li): isp_firmware() failed!\n",
2106 ha->host_no);
2107 goto out;
2108 }
2109
2110 err = qla1280_chip_diag(ha);
2111 if (err)
2112 goto out;
2113 if (IS_ISP1040(ha))
2114 err = qla1280_load_firmware_pio(ha);
2115 else
2116 err = qla1280_load_firmware_dma(ha);
2117 if (err)
2118 goto out;
2119 err = qla1280_start_firmware(ha);
2120 out:
2121 return err;
2122}
2123
2124/*
2125 * Initialize rings
2126 *
2127 * Input:
2128 * ha = adapter block pointer.
2129 * ha->request_ring = request ring virtual address
2130 * ha->response_ring = response ring virtual address
2131 * ha->request_dma = request ring physical address
2132 * ha->response_dma = response ring physical address
2133 *
2134 * Returns:
2135 * 0 = success.
2136 */
2137static int
2138qla1280_init_rings(struct scsi_qla_host *ha)
2139{
2140 uint16_t mb[MAILBOX_REGISTER_COUNT];
2141 int status = 0;
2142
2143 ENTER("qla1280_init_rings");
2144
2145 /* Clear outstanding commands array. */
2146 memset(ha->outstanding_cmds, 0,
2147 sizeof(struct srb *) * MAX_OUTSTANDING_COMMANDS);
2148
2149 /* Initialize request queue. */
2150 ha->request_ring_ptr = ha->request_ring;
2151 ha->req_ring_index = 0;
2152 ha->req_q_cnt = REQUEST_ENTRY_CNT;
2153 /* mb[0] = MBC_INIT_REQUEST_QUEUE; */
2154 mb[0] = MBC_INIT_REQUEST_QUEUE_A64;
2155 mb[1] = REQUEST_ENTRY_CNT;
2156 mb[3] = ha->request_dma & 0xffff;
2157 mb[2] = (ha->request_dma >> 16) & 0xffff;
2158 mb[4] = 0;
2159 mb[7] = pci_dma_hi32(ha->request_dma) & 0xffff;
2160 mb[6] = pci_dma_hi32(ha->request_dma) >> 16;
2161 if (!(status = qla1280_mailbox_command(ha, BIT_7 | BIT_6 | BIT_4 |
2162 BIT_3 | BIT_2 | BIT_1 | BIT_0,
2163 &mb[0]))) {
2164 /* Initialize response queue. */
2165 ha->response_ring_ptr = ha->response_ring;
2166 ha->rsp_ring_index = 0;
2167 /* mb[0] = MBC_INIT_RESPONSE_QUEUE; */
2168 mb[0] = MBC_INIT_RESPONSE_QUEUE_A64;
2169 mb[1] = RESPONSE_ENTRY_CNT;
2170 mb[3] = ha->response_dma & 0xffff;
2171 mb[2] = (ha->response_dma >> 16) & 0xffff;
2172 mb[5] = 0;
2173 mb[7] = pci_dma_hi32(ha->response_dma) & 0xffff;
2174 mb[6] = pci_dma_hi32(ha->response_dma) >> 16;
2175 status = qla1280_mailbox_command(ha, BIT_7 | BIT_6 | BIT_5 |
2176 BIT_3 | BIT_2 | BIT_1 | BIT_0,
2177 &mb[0]);
2178 }
2179
2180 if (status)
2181 dprintk(2, "qla1280_init_rings: **** FAILED ****\n");
2182
2183 LEAVE("qla1280_init_rings");
2184 return status;
2185}
2186
2187static void
2188qla1280_print_settings(struct nvram *nv)
2189{
2190 dprintk(1, "qla1280 : initiator scsi id bus[0]=%d\n",
2191 nv->bus[0].config_1.initiator_id);
2192 dprintk(1, "qla1280 : initiator scsi id bus[1]=%d\n",
2193 nv->bus[1].config_1.initiator_id);
2194
2195 dprintk(1, "qla1280 : bus reset delay[0]=%d\n",
2196 nv->bus[0].bus_reset_delay);
2197 dprintk(1, "qla1280 : bus reset delay[1]=%d\n",
2198 nv->bus[1].bus_reset_delay);
2199
2200 dprintk(1, "qla1280 : retry count[0]=%d\n", nv->bus[0].retry_count);
2201 dprintk(1, "qla1280 : retry delay[0]=%d\n", nv->bus[0].retry_delay);
2202 dprintk(1, "qla1280 : retry count[1]=%d\n", nv->bus[1].retry_count);
2203 dprintk(1, "qla1280 : retry delay[1]=%d\n", nv->bus[1].retry_delay);
2204
2205 dprintk(1, "qla1280 : async data setup time[0]=%d\n",
2206 nv->bus[0].config_2.async_data_setup_time);
2207 dprintk(1, "qla1280 : async data setup time[1]=%d\n",
2208 nv->bus[1].config_2.async_data_setup_time);
2209
2210 dprintk(1, "qla1280 : req/ack active negation[0]=%d\n",
2211 nv->bus[0].config_2.req_ack_active_negation);
2212 dprintk(1, "qla1280 : req/ack active negation[1]=%d\n",
2213 nv->bus[1].config_2.req_ack_active_negation);
2214
2215 dprintk(1, "qla1280 : data line active negation[0]=%d\n",
2216 nv->bus[0].config_2.data_line_active_negation);
2217 dprintk(1, "qla1280 : data line active negation[1]=%d\n",
2218 nv->bus[1].config_2.data_line_active_negation);
2219
2220 dprintk(1, "qla1280 : disable loading risc code=%d\n",
2221 nv->cntr_flags_1.disable_loading_risc_code);
2222
2223 dprintk(1, "qla1280 : enable 64bit addressing=%d\n",
2224 nv->cntr_flags_1.enable_64bit_addressing);
2225
2226 dprintk(1, "qla1280 : selection timeout limit[0]=%d\n",
2227 nv->bus[0].selection_timeout);
2228 dprintk(1, "qla1280 : selection timeout limit[1]=%d\n",
2229 nv->bus[1].selection_timeout);
2230
2231 dprintk(1, "qla1280 : max queue depth[0]=%d\n",
2232 nv->bus[0].max_queue_depth);
2233 dprintk(1, "qla1280 : max queue depth[1]=%d\n",
2234 nv->bus[1].max_queue_depth);
2235}
2236
2237static void
2238qla1280_set_target_defaults(struct scsi_qla_host *ha, int bus, int target)
2239{
2240 struct nvram *nv = &ha->nvram;
2241
2242 nv->bus[bus].target[target].parameter.f.renegotiate_on_error = 1;
2243 nv->bus[bus].target[target].parameter.f.auto_request_sense = 1;
2244 nv->bus[bus].target[target].parameter.f.tag_queuing = 1;
2245 nv->bus[bus].target[target].parameter.f.enable_sync = 1;
2246#if 1 /* Some SCSI Processors do not seem to like this */
2247 nv->bus[bus].target[target].parameter.f.enable_wide = 1;
2248#endif
2249 nv->bus[bus].target[target].parameter.f.parity_checking = 1;
2250 nv->bus[bus].target[target].parameter.f.disconnect_allowed = 1;
2251 nv->bus[bus].target[target].execution_throttle =
2252 nv->bus[bus].max_queue_depth - 1;
2253
2254 if (IS_ISP1x160(ha)) {
2255 nv->bus[bus].target[target].flags.flags1x160.device_enable = 1;
2256 nv->bus[bus].target[target].flags.flags1x160.sync_offset = 0x0e;
2257 nv->bus[bus].target[target].sync_period = 9;
2258 nv->bus[bus].target[target].ppr_1x160.flags.enable_ppr = 1;
2259 nv->bus[bus].target[target].ppr_1x160.flags.ppr_options = 2;
2260 nv->bus[bus].target[target].ppr_1x160.flags.ppr_bus_width = 1;
2261 } else {
2262 nv->bus[bus].target[target].flags.flags1x80.device_enable = 1;
2263 nv->bus[bus].target[target].flags.flags1x80.sync_offset = 12;
2264 nv->bus[bus].target[target].sync_period = 10;
2265 }
2266}
2267
2268static void
2269qla1280_set_defaults(struct scsi_qla_host *ha)
2270{
2271 struct nvram *nv = &ha->nvram;
2272 int bus, target;
2273
2274 dprintk(1, "Using defaults for NVRAM: \n");
2275 memset(nv, 0, sizeof(struct nvram));
2276
2277 /* nv->cntr_flags_1.disable_loading_risc_code = 1; */
2278 nv->firmware_feature.f.enable_fast_posting = 1;
2279 nv->firmware_feature.f.disable_synchronous_backoff = 1;
2280 nv->termination.f.scsi_bus_0_control = 3;
2281 nv->termination.f.scsi_bus_1_control = 3;
2282 nv->termination.f.auto_term_support = 1;
2283
2284 /*
2285 * Set default FIFO magic - What appropriate values would be here
2286 * is unknown. This is what I have found testing with 12160s.
2287 *
2288 * Now, I would love the magic decoder ring for this one, the
2289 * header file provided by QLogic seems to be bogus or incomplete
2290 * at best.
2291 */
2292 nv->isp_config.c = ISP_CFG1_BENAB|ISP_CFG1_F128;
2293 if (IS_ISP1x160(ha))
2294 nv->isp_parameter = 0x01; /* fast memory enable */
2295
2296 for (bus = 0; bus < MAX_BUSES; bus++) {
2297 nv->bus[bus].config_1.initiator_id = 7;
2298 nv->bus[bus].config_2.req_ack_active_negation = 1;
2299 nv->bus[bus].config_2.data_line_active_negation = 1;
2300 nv->bus[bus].selection_timeout = 250;
2301 nv->bus[bus].max_queue_depth = 256;
2302
2303 if (IS_ISP1040(ha)) {
2304 nv->bus[bus].bus_reset_delay = 3;
2305 nv->bus[bus].config_2.async_data_setup_time = 6;
2306 nv->bus[bus].retry_delay = 1;
2307 } else {
2308 nv->bus[bus].bus_reset_delay = 5;
2309 nv->bus[bus].config_2.async_data_setup_time = 8;
2310 }
2311
2312 for (target = 0; target < MAX_TARGETS; target++)
2313 qla1280_set_target_defaults(ha, bus, target);
2314 }
2315}
2316
2317static int
2318qla1280_config_target(struct scsi_qla_host *ha, int bus, int target)
2319{
2320 struct nvram *nv = &ha->nvram;
2321 uint16_t mb[MAILBOX_REGISTER_COUNT];
2322 int status, lun;
2323
2324 /* Set Target Parameters. */
2325 mb[0] = MBC_SET_TARGET_PARAMETERS;
2326 mb[1] = (uint16_t) (bus ? target | BIT_7 : target);
2327 mb[1] <<= 8;
2328
2329 /*
2330 * Do not enable wide, sync, and ppr for the initial
2331 * INQUIRY run. We enable this later if we determine
2332 * the target actually supports it.
2333 */
2334 nv->bus[bus].target[target].parameter.f.
2335 auto_request_sense = 1;
2336 nv->bus[bus].target[target].parameter.f.
2337 stop_queue_on_check = 0;
2338
2339 if (IS_ISP1x160(ha))
2340 nv->bus[bus].target[target].ppr_1x160.
2341 flags.enable_ppr = 0;
2342
2343 /*
2344 * No sync, wide, etc. while probing
2345 */
2346 mb[2] = (nv->bus[bus].target[target].parameter.c << 8) &
2347 ~(TP_SYNC /*| TP_WIDE | TP_PPR*/);
2348
2349 if (IS_ISP1x160(ha))
2350 mb[3] = nv->bus[bus].target[target].flags.flags1x160.sync_offset << 8;
2351 else
2352 mb[3] = nv->bus[bus].target[target].flags.flags1x80.sync_offset << 8;
2353 mb[3] |= nv->bus[bus].target[target].sync_period;
2354
2355 status = qla1280_mailbox_command(ha, BIT_3 | BIT_2 | BIT_1 | BIT_0, &mb[0]);
2356
2357 /* Save Tag queuing enable flag. */
2358 mb[0] = BIT_0 << target;
2359 if (nv->bus[bus].target[target].parameter.f.tag_queuing)
2360 ha->bus_settings[bus].qtag_enables |= mb[0];
2361
2362 /* Save Device enable flag. */
2363 if (IS_ISP1x160(ha)) {
2364 if (nv->bus[bus].target[target].flags.flags1x160.device_enable)
2365 ha->bus_settings[bus].device_enables |= mb[0];
2366 ha->bus_settings[bus].lun_disables |= 0;
2367 } else {
2368 if (nv->bus[bus].target[target].flags.flags1x80.device_enable)
2369 ha->bus_settings[bus].device_enables |= mb[0];
2370 /* Save LUN disable flag. */
2371 if (nv->bus[bus].target[target].flags.flags1x80.lun_disable)
2372 ha->bus_settings[bus].lun_disables |= mb[0];
2373 }
2374
2375 /* Set Device Queue Parameters. */
2376 for (lun = 0; lun < MAX_LUNS; lun++) {
2377 mb[0] = MBC_SET_DEVICE_QUEUE;
2378 mb[1] = (uint16_t)(bus ? target | BIT_7 : target);
2379 mb[1] = mb[1] << 8 | lun;
2380 mb[2] = nv->bus[bus].max_queue_depth;
2381 mb[3] = nv->bus[bus].target[target].execution_throttle;
2382 status |= qla1280_mailbox_command(ha, 0x0f, &mb[0]);
2383 }
2384
2385 return status;
2386}
2387
2388static int
2389qla1280_config_bus(struct scsi_qla_host *ha, int bus)
2390{
2391 struct nvram *nv = &ha->nvram;
2392 uint16_t mb[MAILBOX_REGISTER_COUNT];
2393 int target, status;
2394
2395 /* SCSI Reset Disable. */
2396 ha->bus_settings[bus].disable_scsi_reset =
2397 nv->bus[bus].config_1.scsi_reset_disable;
2398
2399 /* Initiator ID. */
2400 ha->bus_settings[bus].id = nv->bus[bus].config_1.initiator_id;
2401 mb[0] = MBC_SET_INITIATOR_ID;
2402 mb[1] = bus ? ha->bus_settings[bus].id | BIT_7 :
2403 ha->bus_settings[bus].id;
2404 status = qla1280_mailbox_command(ha, BIT_1 | BIT_0, &mb[0]);
2405
2406 /* Reset Delay. */
2407 ha->bus_settings[bus].bus_reset_delay =
2408 nv->bus[bus].bus_reset_delay;
2409
2410 /* Command queue depth per device. */
2411 ha->bus_settings[bus].hiwat = nv->bus[bus].max_queue_depth - 1;
2412
2413 /* Set target parameters. */
2414 for (target = 0; target < MAX_TARGETS; target++)
2415 status |= qla1280_config_target(ha, bus, target);
2416
2417 return status;
2418}
2419
2420static int
2421qla1280_nvram_config(struct scsi_qla_host *ha)
2422{
2423 struct device_reg __iomem *reg = ha->iobase;
2424 struct nvram *nv = &ha->nvram;
2425 int bus, target, status = 0;
2426 uint16_t mb[MAILBOX_REGISTER_COUNT];
2427 uint16_t mask;
2428
2429 ENTER("qla1280_nvram_config");
2430
2431 if (ha->nvram_valid) {
2432 /* Always force AUTO sense for LINUX SCSI */
2433 for (bus = 0; bus < MAX_BUSES; bus++)
2434 for (target = 0; target < MAX_TARGETS; target++) {
2435 nv->bus[bus].target[target].parameter.f.
2436 auto_request_sense = 1;
2437 }
2438 } else {
2439 qla1280_set_defaults(ha);
2440 }
2441
2442 qla1280_print_settings(nv);
2443
2444 /* Disable RISC load of firmware. */
2445 ha->flags.disable_risc_code_load =
2446 nv->cntr_flags_1.disable_loading_risc_code;
2447
2448 if (IS_ISP1040(ha)) {
2449 uint16_t hwrev, cfg1, cdma_conf, ddma_conf;
2450
2451 hwrev = RD_REG_WORD(&reg->cfg_0) & ISP_CFG0_HWMSK;
2452
2453 cfg1 = RD_REG_WORD(&reg->cfg_1);
2454 cdma_conf = RD_REG_WORD(&reg->cdma_cfg);
2455 ddma_conf = RD_REG_WORD(&reg->ddma_cfg);
2456
2457 /* Busted fifo, says mjacob. */
2458 if (hwrev == ISP_CFG0_1040A)
2459 WRT_REG_WORD(&reg->cfg_1, cfg1 | ISP_CFG1_F64);
2460 else
2461 WRT_REG_WORD(&reg->cfg_1, cfg1 | ISP_CFG1_F64 | ISP_CFG1_BENAB);
2462
2463 WRT_REG_WORD(&reg->cdma_cfg, cdma_conf | CDMA_CONF_BENAB);
2464 WRT_REG_WORD(&reg->ddma_cfg, cdma_conf | DDMA_CONF_BENAB);
2465 } else {
2466 /* Set ISP hardware DMA burst */
2467 mb[0] = nv->isp_config.c;
2468 /* Enable DMA arbitration on dual channel controllers */
2469 if (ha->ports > 1)
2470 mb[0] |= BIT_13;
2471 WRT_REG_WORD(&reg->cfg_1, mb[0]);
2472
2473 /* Set SCSI termination. */
2474 WRT_REG_WORD(&reg->gpio_enable, (BIT_3 + BIT_2 + BIT_1 + BIT_0));
2475 mb[0] = nv->termination.c & (BIT_3 + BIT_2 + BIT_1 + BIT_0);
2476 WRT_REG_WORD(&reg->gpio_data, mb[0]);
2477 }
2478
2479 /* ISP parameter word. */
2480 mb[0] = MBC_SET_SYSTEM_PARAMETER;
2481 mb[1] = nv->isp_parameter;
2482 status |= qla1280_mailbox_command(ha, BIT_1 | BIT_0, &mb[0]);
2483
2484 if (IS_ISP1x40(ha)) {
2485 /* clock rate - for qla1240 and older, only */
2486 mb[0] = MBC_SET_CLOCK_RATE;
2487 mb[1] = 40;
2488 status |= qla1280_mailbox_command(ha, BIT_1 | BIT_0, mb);
2489 }
2490
2491 /* Firmware feature word. */
2492 mb[0] = MBC_SET_FIRMWARE_FEATURES;
2493 mask = BIT_5 | BIT_1 | BIT_0;
2494 mb[1] = le16_to_cpu(nv->firmware_feature.w) & (mask);
2495#if defined(CONFIG_IA64_GENERIC) || defined (CONFIG_IA64_SGI_SN2)
2496 if (ia64_platform_is("sn2")) {
2497 printk(KERN_INFO "scsi(%li): Enabling SN2 PCI DMA "
2498 "workaround\n", ha->host_no);
2499 mb[1] |= BIT_9;
2500 }
2501#endif
2502 status |= qla1280_mailbox_command(ha, mask, &mb[0]);
2503
2504 /* Retry count and delay. */
2505 mb[0] = MBC_SET_RETRY_COUNT;
2506 mb[1] = nv->bus[0].retry_count;
2507 mb[2] = nv->bus[0].retry_delay;
2508 mb[6] = nv->bus[1].retry_count;
2509 mb[7] = nv->bus[1].retry_delay;
2510 status |= qla1280_mailbox_command(ha, BIT_7 | BIT_6 | BIT_2 |
2511 BIT_1 | BIT_0, &mb[0]);
2512
2513 /* ASYNC data setup time. */
2514 mb[0] = MBC_SET_ASYNC_DATA_SETUP;
2515 mb[1] = nv->bus[0].config_2.async_data_setup_time;
2516 mb[2] = nv->bus[1].config_2.async_data_setup_time;
2517 status |= qla1280_mailbox_command(ha, BIT_2 | BIT_1 | BIT_0, &mb[0]);
2518
2519 /* Active negation states. */
2520 mb[0] = MBC_SET_ACTIVE_NEGATION;
2521 mb[1] = 0;
2522 if (nv->bus[0].config_2.req_ack_active_negation)
2523 mb[1] |= BIT_5;
2524 if (nv->bus[0].config_2.data_line_active_negation)
2525 mb[1] |= BIT_4;
2526 mb[2] = 0;
2527 if (nv->bus[1].config_2.req_ack_active_negation)
2528 mb[2] |= BIT_5;
2529 if (nv->bus[1].config_2.data_line_active_negation)
2530 mb[2] |= BIT_4;
2531 status |= qla1280_mailbox_command(ha, BIT_2 | BIT_1 | BIT_0, &mb[0]);
2532
2533 mb[0] = MBC_SET_DATA_OVERRUN_RECOVERY;
2534 mb[1] = 2; /* Reset SCSI bus and return all outstanding IO */
2535 status |= qla1280_mailbox_command(ha, BIT_1 | BIT_0, &mb[0]);
2536
2537 /* thingy */
2538 mb[0] = MBC_SET_PCI_CONTROL;
2539 mb[1] = 2; /* Data DMA Channel Burst Enable */
2540 mb[2] = 2; /* Command DMA Channel Burst Enable */
2541 status |= qla1280_mailbox_command(ha, BIT_2 | BIT_1 | BIT_0, &mb[0]);
2542
2543 mb[0] = MBC_SET_TAG_AGE_LIMIT;
2544 mb[1] = 8;
2545 status |= qla1280_mailbox_command(ha, BIT_1 | BIT_0, &mb[0]);
2546
2547 /* Selection timeout. */
2548 mb[0] = MBC_SET_SELECTION_TIMEOUT;
2549 mb[1] = nv->bus[0].selection_timeout;
2550 mb[2] = nv->bus[1].selection_timeout;
2551 status |= qla1280_mailbox_command(ha, BIT_2 | BIT_1 | BIT_0, &mb[0]);
2552
2553 for (bus = 0; bus < ha->ports; bus++)
2554 status |= qla1280_config_bus(ha, bus);
2555
2556 if (status)
2557 dprintk(2, "qla1280_nvram_config: **** FAILED ****\n");
2558
2559 LEAVE("qla1280_nvram_config");
2560 return status;
2561}
2562
2563/*
2564 * Get NVRAM data word
2565 * Calculates word position in NVRAM and calls request routine to
2566 * get the word from NVRAM.
2567 *
2568 * Input:
2569 * ha = adapter block pointer.
2570 * address = NVRAM word address.
2571 *
2572 * Returns:
2573 * data word.
2574 */
2575static uint16_t
2576qla1280_get_nvram_word(struct scsi_qla_host *ha, uint32_t address)
2577{
2578 uint32_t nv_cmd;
2579 uint16_t data;
2580
2581 nv_cmd = address << 16;
2582 nv_cmd |= NV_READ_OP;
2583
2584 data = le16_to_cpu(qla1280_nvram_request(ha, nv_cmd));
2585
2586 dprintk(8, "qla1280_get_nvram_word: exiting normally NVRAM data = "
2587 "0x%x", data);
2588
2589 return data;
2590}
2591
2592/*
2593 * NVRAM request
2594 * Sends read command to NVRAM and gets data from NVRAM.
2595 *
2596 * Input:
2597 * ha = adapter block pointer.
2598 * nv_cmd = Bit 26 = start bit
2599 * Bit 25, 24 = opcode
2600 * Bit 23-16 = address
2601 * Bit 15-0 = write data
2602 *
2603 * Returns:
2604 * data word.
2605 */
2606static uint16_t
2607qla1280_nvram_request(struct scsi_qla_host *ha, uint32_t nv_cmd)
2608{
2609 struct device_reg __iomem *reg = ha->iobase;
2610 int cnt;
2611 uint16_t data = 0;
2612 uint16_t reg_data;
2613
2614 /* Send command to NVRAM. */
2615
2616 nv_cmd <<= 5;
2617 for (cnt = 0; cnt < 11; cnt++) {
2618 if (nv_cmd & BIT_31)
2619 qla1280_nv_write(ha, NV_DATA_OUT);
2620 else
2621 qla1280_nv_write(ha, 0);
2622 nv_cmd <<= 1;
2623 }
2624
2625 /* Read data from NVRAM. */
2626
2627 for (cnt = 0; cnt < 16; cnt++) {
2628 WRT_REG_WORD(&reg->nvram, (NV_SELECT | NV_CLOCK));
2629 RD_REG_WORD(&reg->id_l); /* Flush PCI write */
2630 NVRAM_DELAY();
2631 data <<= 1;
2632 reg_data = RD_REG_WORD(&reg->nvram);
2633 if (reg_data & NV_DATA_IN)
2634 data |= BIT_0;
2635 WRT_REG_WORD(&reg->nvram, NV_SELECT);
2636 RD_REG_WORD(&reg->id_l); /* Flush PCI write */
2637 NVRAM_DELAY();
2638 }
2639
2640 /* Deselect chip. */
2641
2642 WRT_REG_WORD(&reg->nvram, NV_DESELECT);
2643 RD_REG_WORD(&reg->id_l); /* Flush PCI write */
2644 NVRAM_DELAY();
2645
2646 return data;
2647}
2648
2649static void
2650qla1280_nv_write(struct scsi_qla_host *ha, uint16_t data)
2651{
2652 struct device_reg __iomem *reg = ha->iobase;
2653
2654 WRT_REG_WORD(&reg->nvram, data | NV_SELECT);
2655 RD_REG_WORD(&reg->id_l); /* Flush PCI write */
2656 NVRAM_DELAY();
2657 WRT_REG_WORD(&reg->nvram, data | NV_SELECT | NV_CLOCK);
2658 RD_REG_WORD(&reg->id_l); /* Flush PCI write */
2659 NVRAM_DELAY();
2660 WRT_REG_WORD(&reg->nvram, data | NV_SELECT);
2661 RD_REG_WORD(&reg->id_l); /* Flush PCI write */
2662 NVRAM_DELAY();
2663}
2664
2665/*
2666 * Mailbox Command
2667 * Issue mailbox command and waits for completion.
2668 *
2669 * Input:
2670 * ha = adapter block pointer.
2671 * mr = mailbox registers to load.
2672 * mb = data pointer for mailbox registers.
2673 *
2674 * Output:
2675 * mb[MAILBOX_REGISTER_COUNT] = returned mailbox data.
2676 *
2677 * Returns:
2678 * 0 = success
2679 */
2680static int
2681qla1280_mailbox_command(struct scsi_qla_host *ha, uint8_t mr, uint16_t *mb)
2682{
2683 struct device_reg __iomem *reg = ha->iobase;
2684#if 0
2685 LIST_HEAD(done_q);
2686#endif
2687 int status = 0;
2688 int cnt;
2689 uint16_t *optr, *iptr;
2690 uint16_t __iomem *mptr;
2691 uint16_t data;
2692 DECLARE_COMPLETION(wait);
2693 struct timer_list timer;
2694
2695 ENTER("qla1280_mailbox_command");
2696
2697 if (ha->mailbox_wait) {
2698 printk(KERN_ERR "Warning mailbox wait already in use!\n");
2699 }
2700 ha->mailbox_wait = &wait;
2701
2702 /*
2703 * We really should start out by verifying that the mailbox is
2704 * available before starting sending the command data
2705 */
2706 /* Load mailbox registers. */
2707 mptr = (uint16_t __iomem *) &reg->mailbox0;
2708 iptr = mb;
2709 for (cnt = 0; cnt < MAILBOX_REGISTER_COUNT; cnt++) {
2710 if (mr & BIT_0) {
2711 WRT_REG_WORD(mptr, (*iptr));
2712 }
2713
2714 mr >>= 1;
2715 mptr++;
2716 iptr++;
2717 }
2718
2719 /* Issue set host interrupt command. */
2720
2721 /* set up a timer just in case we're really jammed */
2722 init_timer(&timer);
2723 timer.expires = jiffies + 20*HZ;
2724 timer.data = (unsigned long)ha;
2725 timer.function = qla1280_mailbox_timeout;
2726 add_timer(&timer);
2727
2728 spin_unlock_irq(HOST_LOCK);
2729 WRT_REG_WORD(&reg->host_cmd, HC_SET_HOST_INT);
2730 data = qla1280_debounce_register(&reg->istatus);
2731
2732 wait_for_completion(&wait);
2733 del_timer_sync(&timer);
2734
2735 spin_lock_irq(HOST_LOCK);
2736
2737 ha->mailbox_wait = NULL;
2738
2739 /* Check for mailbox command timeout. */
2740 if (ha->mailbox_out[0] != MBS_CMD_CMP) {
2741 printk(KERN_WARNING "qla1280_mailbox_command: Command failed, "
2742 "mailbox0 = 0x%04x, mailbox_out0 = 0x%04x, istatus = "
2743 "0x%04x\n",
2744 mb[0], ha->mailbox_out[0], RD_REG_WORD(&reg->istatus));
2745 printk(KERN_WARNING "m0 %04x, m1 %04x, m2 %04x, m3 %04x\n",
2746 RD_REG_WORD(&reg->mailbox0), RD_REG_WORD(&reg->mailbox1),
2747 RD_REG_WORD(&reg->mailbox2), RD_REG_WORD(&reg->mailbox3));
2748 printk(KERN_WARNING "m4 %04x, m5 %04x, m6 %04x, m7 %04x\n",
2749 RD_REG_WORD(&reg->mailbox4), RD_REG_WORD(&reg->mailbox5),
2750 RD_REG_WORD(&reg->mailbox6), RD_REG_WORD(&reg->mailbox7));
2751 status = 1;
2752 }
2753
2754 /* Load return mailbox registers. */
2755 optr = mb;
2756 iptr = (uint16_t *) &ha->mailbox_out[0];
2757 mr = MAILBOX_REGISTER_COUNT;
2758 memcpy(optr, iptr, MAILBOX_REGISTER_COUNT * sizeof(uint16_t));
2759
2760#if 0
2761 /* Go check for any response interrupts pending. */
2762 qla1280_isr(ha, &done_q);
2763#endif
2764
2765 if (ha->flags.reset_marker)
2766 qla1280_rst_aen(ha);
2767
2768#if 0
2769 if (!list_empty(&done_q))
2770 qla1280_done(ha, &done_q);
2771#endif
2772
2773 if (status)
2774 dprintk(2, "qla1280_mailbox_command: **** FAILED, mailbox0 = "
2775 "0x%x ****\n", mb[0]);
2776
2777 LEAVE("qla1280_mailbox_command");
2778 return status;
2779}
2780
2781/*
2782 * qla1280_poll
2783 * Polls ISP for interrupts.
2784 *
2785 * Input:
2786 * ha = adapter block pointer.
2787 */
2788static void
2789qla1280_poll(struct scsi_qla_host *ha)
2790{
2791 struct device_reg __iomem *reg = ha->iobase;
2792 uint16_t data;
2793 LIST_HEAD(done_q);
2794
2795 /* ENTER("qla1280_poll"); */
2796
2797 /* Check for pending interrupts. */
2798 data = RD_REG_WORD(&reg->istatus);
2799 if (data & RISC_INT)
2800 qla1280_isr(ha, &done_q);
2801
2802 if (!ha->mailbox_wait) {
2803 if (ha->flags.reset_marker)
2804 qla1280_rst_aen(ha);
2805 }
2806
2807 if (!list_empty(&done_q))
2808 qla1280_done(ha);
2809
2810 /* LEAVE("qla1280_poll"); */
2811}
2812
2813/*
2814 * qla1280_bus_reset
2815 * Issue SCSI bus reset.
2816 *
2817 * Input:
2818 * ha = adapter block pointer.
2819 * bus = SCSI bus number.
2820 *
2821 * Returns:
2822 * 0 = success
2823 */
2824static int
2825qla1280_bus_reset(struct scsi_qla_host *ha, int bus)
2826{
2827 uint16_t mb[MAILBOX_REGISTER_COUNT];
2828 uint16_t reset_delay;
2829 int status;
2830
2831 dprintk(3, "qla1280_bus_reset: entered\n");
2832
2833 if (qla1280_verbose)
2834 printk(KERN_INFO "scsi(%li:%i): Resetting SCSI BUS\n",
2835 ha->host_no, bus);
2836
2837 reset_delay = ha->bus_settings[bus].bus_reset_delay;
2838 mb[0] = MBC_BUS_RESET;
2839 mb[1] = reset_delay;
2840 mb[2] = (uint16_t) bus;
2841 status = qla1280_mailbox_command(ha, BIT_2 | BIT_1 | BIT_0, &mb[0]);
2842
2843 if (status) {
2844 if (ha->bus_settings[bus].failed_reset_count > 2)
2845 ha->bus_settings[bus].scsi_bus_dead = 1;
2846 ha->bus_settings[bus].failed_reset_count++;
2847 } else {
2848 spin_unlock_irq(HOST_LOCK);
117e4b27 2849 ssleep(reset_delay);
1da177e4
LT
2850 spin_lock_irq(HOST_LOCK);
2851
2852 ha->bus_settings[bus].scsi_bus_dead = 0;
2853 ha->bus_settings[bus].failed_reset_count = 0;
2854 ha->bus_settings[bus].reset_marker = 0;
2855 /* Issue marker command. */
2856 qla1280_marker(ha, bus, 0, 0, MK_SYNC_ALL);
2857 }
2858
2859 /*
2860 * We should probably call qla1280_set_target_parameters()
2861 * here as well for all devices on the bus.
2862 */
2863
2864 if (status)
2865 dprintk(2, "qla1280_bus_reset: **** FAILED ****\n");
2866 else
2867 dprintk(3, "qla1280_bus_reset: exiting normally\n");
2868
2869 return status;
2870}
2871
2872/*
2873 * qla1280_device_reset
2874 * Issue bus device reset message to the target.
2875 *
2876 * Input:
2877 * ha = adapter block pointer.
2878 * bus = SCSI BUS number.
2879 * target = SCSI ID.
2880 *
2881 * Returns:
2882 * 0 = success
2883 */
2884static int
2885qla1280_device_reset(struct scsi_qla_host *ha, int bus, int target)
2886{
2887 uint16_t mb[MAILBOX_REGISTER_COUNT];
2888 int status;
2889
2890 ENTER("qla1280_device_reset");
2891
2892 mb[0] = MBC_ABORT_TARGET;
2893 mb[1] = (bus ? (target | BIT_7) : target) << 8;
2894 mb[2] = 1;
2895 status = qla1280_mailbox_command(ha, BIT_2 | BIT_1 | BIT_0, &mb[0]);
2896
2897 /* Issue marker command. */
2898 qla1280_marker(ha, bus, target, 0, MK_SYNC_ID);
2899
2900 if (status)
2901 dprintk(2, "qla1280_device_reset: **** FAILED ****\n");
2902
2903 LEAVE("qla1280_device_reset");
2904 return status;
2905}
2906
2907/*
2908 * qla1280_abort_device
2909 * Issue an abort message to the device
2910 *
2911 * Input:
2912 * ha = adapter block pointer.
2913 * bus = SCSI BUS.
2914 * target = SCSI ID.
2915 * lun = SCSI LUN.
2916 *
2917 * Returns:
2918 * 0 = success
2919 */
2920static int
2921qla1280_abort_device(struct scsi_qla_host *ha, int bus, int target, int lun)
2922{
2923 uint16_t mb[MAILBOX_REGISTER_COUNT];
2924 int status;
2925
2926 ENTER("qla1280_abort_device");
2927
2928 mb[0] = MBC_ABORT_DEVICE;
2929 mb[1] = (bus ? target | BIT_7 : target) << 8 | lun;
2930 status = qla1280_mailbox_command(ha, BIT_1 | BIT_0, &mb[0]);
2931
2932 /* Issue marker command. */
2933 qla1280_marker(ha, bus, target, lun, MK_SYNC_ID_LUN);
2934
2935 if (status)
2936 dprintk(2, "qla1280_abort_device: **** FAILED ****\n");
2937
2938 LEAVE("qla1280_abort_device");
2939 return status;
2940}
2941
2942/*
2943 * qla1280_abort_command
2944 * Abort command aborts a specified IOCB.
2945 *
2946 * Input:
2947 * ha = adapter block pointer.
2948 * sp = SB structure pointer.
2949 *
2950 * Returns:
2951 * 0 = success
2952 */
2953static int
2954qla1280_abort_command(struct scsi_qla_host *ha, struct srb * sp, int handle)
2955{
2956 uint16_t mb[MAILBOX_REGISTER_COUNT];
2957 unsigned int bus, target, lun;
2958 int status;
2959
2960 ENTER("qla1280_abort_command");
2961
2962 bus = SCSI_BUS_32(sp->cmd);
2963 target = SCSI_TCN_32(sp->cmd);
2964 lun = SCSI_LUN_32(sp->cmd);
2965
2966 sp->flags |= SRB_ABORT_PENDING;
2967
2968 mb[0] = MBC_ABORT_COMMAND;
2969 mb[1] = (bus ? target | BIT_7 : target) << 8 | lun;
2970 mb[2] = handle >> 16;
2971 mb[3] = handle & 0xffff;
2972 status = qla1280_mailbox_command(ha, 0x0f, &mb[0]);
2973
2974 if (status) {
2975 dprintk(2, "qla1280_abort_command: **** FAILED ****\n");
2976 sp->flags &= ~SRB_ABORT_PENDING;
2977 }
2978
2979
2980 LEAVE("qla1280_abort_command");
2981 return status;
2982}
2983
2984/*
2985 * qla1280_reset_adapter
2986 * Reset adapter.
2987 *
2988 * Input:
2989 * ha = adapter block pointer.
2990 */
2991static void
2992qla1280_reset_adapter(struct scsi_qla_host *ha)
2993{
2994 struct device_reg __iomem *reg = ha->iobase;
2995
2996 ENTER("qla1280_reset_adapter");
2997
2998 /* Disable ISP chip */
2999 ha->flags.online = 0;
3000 WRT_REG_WORD(&reg->ictrl, ISP_RESET);
3001 WRT_REG_WORD(&reg->host_cmd,
3002 HC_RESET_RISC | HC_RELEASE_RISC | HC_DISABLE_BIOS);
3003 RD_REG_WORD(&reg->id_l); /* Flush PCI write */
3004
3005 LEAVE("qla1280_reset_adapter");
3006}
3007
3008/*
3009 * Issue marker command.
3010 * Function issues marker IOCB.
3011 *
3012 * Input:
3013 * ha = adapter block pointer.
3014 * bus = SCSI BUS number
3015 * id = SCSI ID
3016 * lun = SCSI LUN
3017 * type = marker modifier
3018 */
3019static void
3020qla1280_marker(struct scsi_qla_host *ha, int bus, int id, int lun, u8 type)
3021{
3022 struct mrk_entry *pkt;
3023
3024 ENTER("qla1280_marker");
3025
3026 /* Get request packet. */
3027 if ((pkt = (struct mrk_entry *) qla1280_req_pkt(ha))) {
3028 pkt->entry_type = MARKER_TYPE;
3029 pkt->lun = (uint8_t) lun;
3030 pkt->target = (uint8_t) (bus ? (id | BIT_7) : id);
3031 pkt->modifier = type;
3032 pkt->entry_status = 0;
3033
3034 /* Issue command to ISP */
3035 qla1280_isp_cmd(ha);
3036 }
3037
3038 LEAVE("qla1280_marker");
3039}
3040
3041
3042/*
3043 * qla1280_64bit_start_scsi
3044 * The start SCSI is responsible for building request packets on
3045 * request ring and modifying ISP input pointer.
3046 *
3047 * Input:
3048 * ha = adapter block pointer.
3049 * sp = SB structure pointer.
3050 *
3051 * Returns:
3052 * 0 = success, was able to issue command.
3053 */
3054#ifdef QLA_64BIT_PTR
3055static int
3056qla1280_64bit_start_scsi(struct scsi_qla_host *ha, struct srb * sp)
3057{
3058 struct device_reg __iomem *reg = ha->iobase;
3059 struct scsi_cmnd *cmd = sp->cmd;
3060 cmd_a64_entry_t *pkt;
3061 struct scatterlist *sg = NULL;
3062 u32 *dword_ptr;
3063 dma_addr_t dma_handle;
3064 int status = 0;
3065 int cnt;
3066 int req_cnt;
3067 u16 seg_cnt;
3068 u8 dir;
3069
3070 ENTER("qla1280_64bit_start_scsi:");
3071
3072 /* Calculate number of entries and segments required. */
3073 req_cnt = 1;
3074 if (cmd->use_sg) {
3075 sg = (struct scatterlist *) cmd->request_buffer;
3076 seg_cnt = pci_map_sg(ha->pdev, sg, cmd->use_sg,
3077 cmd->sc_data_direction);
3078
3079 if (seg_cnt > 2) {
3080 req_cnt += (seg_cnt - 2) / 5;
3081 if ((seg_cnt - 2) % 5)
3082 req_cnt++;
3083 }
3084 } else if (cmd->request_bufflen) { /* If data transfer. */
3085 seg_cnt = 1;
3086 } else {
3087 seg_cnt = 0;
3088 }
3089
3090 if ((req_cnt + 2) >= ha->req_q_cnt) {
3091 /* Calculate number of free request entries. */
3092 cnt = RD_REG_WORD(&reg->mailbox4);
3093 if (ha->req_ring_index < cnt)
3094 ha->req_q_cnt = cnt - ha->req_ring_index;
3095 else
3096 ha->req_q_cnt =
3097 REQUEST_ENTRY_CNT - (ha->req_ring_index - cnt);
3098 }
3099
3100 /* If room for request in request ring. */
3101 if ((req_cnt + 2) >= ha->req_q_cnt) {
3102 status = 1;
3103 dprintk(2, "qla1280_64bit_start_scsi: in-ptr=0x%x req_q_cnt="
3104 "0x%xreq_cnt=0x%x", ha->req_ring_index, ha->req_q_cnt,
3105 req_cnt);
3106 goto out;
3107 }
3108
3109 /* Check for room in outstanding command list. */
3110 for (cnt = 0; cnt < MAX_OUTSTANDING_COMMANDS &&
3111 ha->outstanding_cmds[cnt] != 0; cnt++);
3112
3113 if (cnt >= MAX_OUTSTANDING_COMMANDS) {
3114 status = 1;
3115 dprintk(2, "qla1280_64bit_start_scsi: NO ROOM IN "
3116 "OUTSTANDING ARRAY, req_q_cnt=0x%x", ha->req_q_cnt);
3117 goto out;
3118 }
3119
3120 ha->outstanding_cmds[cnt] = sp;
3121 ha->req_q_cnt -= req_cnt;
3122 CMD_HANDLE(sp->cmd) = (unsigned char *)(unsigned long)(cnt + 1);
3123
3124 dprintk(2, "64bit_start: cmd=%p sp=%p CDB=%xm, handle %lx\n", cmd, sp,
3125 cmd->cmnd[0], (long)CMD_HANDLE(sp->cmd));
3126 dprintk(2, " bus %i, target %i, lun %i\n",
3127 SCSI_BUS_32(cmd), SCSI_TCN_32(cmd), SCSI_LUN_32(cmd));
3128 qla1280_dump_buffer(2, cmd->cmnd, MAX_COMMAND_SIZE);
3129
3130 /*
3131 * Build command packet.
3132 */
3133 pkt = (cmd_a64_entry_t *) ha->request_ring_ptr;
3134
3135 pkt->entry_type = COMMAND_A64_TYPE;
3136 pkt->entry_count = (uint8_t) req_cnt;
3137 pkt->sys_define = (uint8_t) ha->req_ring_index;
3138 pkt->entry_status = 0;
3139 pkt->handle = cpu_to_le32(cnt);
3140
3141 /* Zero out remaining portion of packet. */
3142 memset(((char *)pkt + 8), 0, (REQUEST_ENTRY_SIZE - 8));
3143
3144 /* Set ISP command timeout. */
3145 pkt->timeout = cpu_to_le16(30);
3146
3147 /* Set device target ID and LUN */
3148 pkt->lun = SCSI_LUN_32(cmd);
3149 pkt->target = SCSI_BUS_32(cmd) ?
3150 (SCSI_TCN_32(cmd) | BIT_7) : SCSI_TCN_32(cmd);
3151
3152 /* Enable simple tag queuing if device supports it. */
3153 if (DEV_SIMPLE_TAGS(cmd->device))
3154 pkt->control_flags |= cpu_to_le16(BIT_3);
3155
3156 /* Load SCSI command packet. */
3157 pkt->cdb_len = cpu_to_le16(CMD_CDBLEN(cmd));
3158 memcpy(pkt->scsi_cdb, &(CMD_CDBP(cmd)), CMD_CDBLEN(cmd));
3159 /* dprintk(1, "Build packet for command[0]=0x%x\n",pkt->scsi_cdb[0]); */
3160
3161 /* Set transfer direction. */
3162 dir = qla1280_data_direction(cmd);
3163 pkt->control_flags |= cpu_to_le16(dir);
3164
3165 /* Set total data segment count. */
3166 pkt->dseg_count = cpu_to_le16(seg_cnt);
3167
3168 /*
3169 * Load data segments.
3170 */
3171 if (seg_cnt) { /* If data transfer. */
3172 /* Setup packet address segment pointer. */
3173 dword_ptr = (u32 *)&pkt->dseg_0_address;
3174
3175 if (cmd->use_sg) { /* If scatter gather */
3176 /* Load command entry data segments. */
3177 for (cnt = 0; cnt < 2 && seg_cnt; cnt++, seg_cnt--) {
3178 dma_handle = sg_dma_address(sg);
3179#if defined(CONFIG_IA64_GENERIC) || defined(CONFIG_IA64_SGI_SN2)
3180 if (ha->flags.use_pci_vchannel)
3181 sn_pci_set_vchan(ha->pdev,
3182 (unsigned long *)&dma_handle,
3183 SCSI_BUS_32(cmd));
3184#endif
3185 *dword_ptr++ =
3186 cpu_to_le32(pci_dma_lo32(dma_handle));
3187 *dword_ptr++ =
3188 cpu_to_le32(pci_dma_hi32(dma_handle));
3189 *dword_ptr++ = cpu_to_le32(sg_dma_len(sg));
3190 sg++;
3191 dprintk(3, "S/G Segment phys_addr=%x %x, len=0x%x\n",
3192 cpu_to_le32(pci_dma_hi32(dma_handle)),
3193 cpu_to_le32(pci_dma_lo32(dma_handle)),
3194 cpu_to_le32(sg_dma_len(sg)));
3195 }
3196 dprintk(5, "qla1280_64bit_start_scsi: Scatter/gather "
3197 "command packet data - b %i, t %i, l %i \n",
3198 SCSI_BUS_32(cmd), SCSI_TCN_32(cmd),
3199 SCSI_LUN_32(cmd));
3200 qla1280_dump_buffer(5, (char *)pkt,
3201 REQUEST_ENTRY_SIZE);
3202
3203 /*
3204 * Build continuation packets.
3205 */
3206 dprintk(3, "S/G Building Continuation...seg_cnt=0x%x "
3207 "remains\n", seg_cnt);
3208
3209 while (seg_cnt > 0) {
3210 /* Adjust ring index. */
3211 ha->req_ring_index++;
3212 if (ha->req_ring_index == REQUEST_ENTRY_CNT) {
3213 ha->req_ring_index = 0;
3214 ha->request_ring_ptr =
3215 ha->request_ring;
3216 } else
3217 ha->request_ring_ptr++;
3218
3219 pkt = (cmd_a64_entry_t *)ha->request_ring_ptr;
3220
3221 /* Zero out packet. */
3222 memset(pkt, 0, REQUEST_ENTRY_SIZE);
3223
3224 /* Load packet defaults. */
3225 ((struct cont_a64_entry *) pkt)->entry_type =
3226 CONTINUE_A64_TYPE;
3227 ((struct cont_a64_entry *) pkt)->entry_count = 1;
3228 ((struct cont_a64_entry *) pkt)->sys_define =
3229 (uint8_t)ha->req_ring_index;
3230 /* Setup packet address segment pointer. */
3231 dword_ptr =
3232 (u32 *)&((struct cont_a64_entry *) pkt)->dseg_0_address;
3233
3234 /* Load continuation entry data segments. */
3235 for (cnt = 0; cnt < 5 && seg_cnt;
3236 cnt++, seg_cnt--) {
3237 dma_handle = sg_dma_address(sg);
3238#if defined(CONFIG_IA64_GENERIC) || defined(CONFIG_IA64_SGI_SN2)
3239 if (ha->flags.use_pci_vchannel)
3240 sn_pci_set_vchan(ha->pdev,
3241 (unsigned long *)&dma_handle,
3242 SCSI_BUS_32(cmd));
3243#endif
3244 *dword_ptr++ =
3245 cpu_to_le32(pci_dma_lo32(dma_handle));
3246 *dword_ptr++ =
3247 cpu_to_le32(pci_dma_hi32(dma_handle));
3248 *dword_ptr++ =
3249 cpu_to_le32(sg_dma_len(sg));
3250 dprintk(3, "S/G Segment Cont. phys_addr=%x %x, len=0x%x\n",
3251 cpu_to_le32(pci_dma_hi32(dma_handle)),
3252 cpu_to_le32(pci_dma_lo32(dma_handle)),
3253 cpu_to_le32(sg_dma_len(sg)));
3254 sg++;
3255 }
3256 dprintk(5, "qla1280_64bit_start_scsi: "
3257 "continuation packet data - b %i, t "
3258 "%i, l %i \n", SCSI_BUS_32(cmd),
3259 SCSI_TCN_32(cmd), SCSI_LUN_32(cmd));
3260 qla1280_dump_buffer(5, (char *)pkt,
3261 REQUEST_ENTRY_SIZE);
3262 }
3263 } else { /* No scatter gather data transfer */
3264 dma_handle = pci_map_single(ha->pdev,
3265 cmd->request_buffer,
3266 cmd->request_bufflen,
3267 cmd->sc_data_direction);
3268
3269 sp->saved_dma_handle = dma_handle;
3270#if defined(CONFIG_IA64_GENERIC) || defined(CONFIG_IA64_SGI_SN2)
3271 if (ha->flags.use_pci_vchannel)
3272 sn_pci_set_vchan(ha->pdev,
3273 (unsigned long *)&dma_handle,
3274 SCSI_BUS_32(cmd));
3275#endif
3276 *dword_ptr++ = cpu_to_le32(pci_dma_lo32(dma_handle));
3277 *dword_ptr++ = cpu_to_le32(pci_dma_hi32(dma_handle));
3278 *dword_ptr = cpu_to_le32(cmd->request_bufflen);
3279
3280 dprintk(5, "qla1280_64bit_start_scsi: No scatter/"
3281 "gather command packet data - b %i, t %i, "
3282 "l %i \n", SCSI_BUS_32(cmd), SCSI_TCN_32(cmd),
3283 SCSI_LUN_32(cmd));
3284 qla1280_dump_buffer(5, (char *)pkt,
3285 REQUEST_ENTRY_SIZE);
3286 }
3287 } else { /* No data transfer */
3288 dprintk(5, "qla1280_64bit_start_scsi: No data, command "
3289 "packet data - b %i, t %i, l %i \n",
3290 SCSI_BUS_32(cmd), SCSI_TCN_32(cmd), SCSI_LUN_32(cmd));
3291 qla1280_dump_buffer(5, (char *)pkt, REQUEST_ENTRY_SIZE);
3292 }
3293 /* Adjust ring index. */
3294 ha->req_ring_index++;
3295 if (ha->req_ring_index == REQUEST_ENTRY_CNT) {
3296 ha->req_ring_index = 0;
3297 ha->request_ring_ptr = ha->request_ring;
3298 } else
3299 ha->request_ring_ptr++;
3300
3301 /* Set chip new ring index. */
3302 dprintk(2,
3303 "qla1280_64bit_start_scsi: Wakeup RISC for pending command\n");
3304 sp->flags |= SRB_SENT;
3305 ha->actthreads++;
3306 WRT_REG_WORD(&reg->mailbox4, ha->req_ring_index);
3307 /* Enforce mmio write ordering; see comment in qla1280_isp_cmd(). */
3308 mmiowb();
3309
3310 out:
3311 if (status)
3312 dprintk(2, "qla1280_64bit_start_scsi: **** FAILED ****\n");
3313 else
3314 dprintk(3, "qla1280_64bit_start_scsi: exiting normally\n");
3315
3316 return status;
3317}
3318#else /* !QLA_64BIT_PTR */
3319
3320/*
3321 * qla1280_32bit_start_scsi
3322 * The start SCSI is responsible for building request packets on
3323 * request ring and modifying ISP input pointer.
3324 *
3325 * The Qlogic firmware interface allows every queue slot to have a SCSI
3326 * command and up to 4 scatter/gather (SG) entries. If we need more
3327 * than 4 SG entries, then continuation entries are used that can
3328 * hold another 7 entries each. The start routine determines if there
3329 * is eought empty slots then build the combination of requests to
3330 * fulfill the OS request.
3331 *
3332 * Input:
3333 * ha = adapter block pointer.
3334 * sp = SCSI Request Block structure pointer.
3335 *
3336 * Returns:
3337 * 0 = success, was able to issue command.
3338 */
3339static int
3340qla1280_32bit_start_scsi(struct scsi_qla_host *ha, struct srb * sp)
3341{
3342 struct device_reg __iomem *reg = ha->iobase;
3343 struct scsi_cmnd *cmd = sp->cmd;
3344 struct cmd_entry *pkt;
3345 struct scatterlist *sg = NULL;
3346 uint32_t *dword_ptr;
3347 int status = 0;
3348 int cnt;
3349 int req_cnt;
3350 uint16_t seg_cnt;
3351 dma_addr_t dma_handle;
3352 u8 dir;
3353
3354 ENTER("qla1280_32bit_start_scsi");
3355
3356 dprintk(1, "32bit_start: cmd=%p sp=%p CDB=%x\n", cmd, sp,
3357 cmd->cmnd[0]);
3358
3359 /* Calculate number of entries and segments required. */
3360 req_cnt = 1;
3361 if (cmd->use_sg) {
3362 /*
3363 * We must build an SG list in adapter format, as the kernel's
3364 * SG list cannot be used directly because of data field size
3365 * (__alpha__) differences and the kernel SG list uses virtual
3366 * addresses where we need physical addresses.
3367 */
3368 sg = (struct scatterlist *) cmd->request_buffer;
3369 seg_cnt = pci_map_sg(ha->pdev, sg, cmd->use_sg,
3370 cmd->sc_data_direction);
3371
3372 /*
3373 * if greater than four sg entries then we need to allocate
3374 * continuation entries
3375 */
3376 if (seg_cnt > 4) {
3377 req_cnt += (seg_cnt - 4) / 7;
3378 if ((seg_cnt - 4) % 7)
3379 req_cnt++;
3380 }
3381 dprintk(3, "S/G Transfer cmd=%p seg_cnt=0x%x, req_cnt=%x\n",
3382 cmd, seg_cnt, req_cnt);
3383 } else if (cmd->request_bufflen) { /* If data transfer. */
3384 dprintk(3, "No S/G transfer t=%x cmd=%p len=%x CDB=%x\n",
3385 SCSI_TCN_32(cmd), cmd, cmd->request_bufflen,
3386 cmd->cmnd[0]);
3387 seg_cnt = 1;
3388 } else {
3389 /* dprintk(1, "No data transfer \n"); */
3390 seg_cnt = 0;
3391 }
3392
3393 if ((req_cnt + 2) >= ha->req_q_cnt) {
3394 /* Calculate number of free request entries. */
3395 cnt = RD_REG_WORD(&reg->mailbox4);
3396 if (ha->req_ring_index < cnt)
3397 ha->req_q_cnt = cnt - ha->req_ring_index;
3398 else
3399 ha->req_q_cnt =
3400 REQUEST_ENTRY_CNT - (ha->req_ring_index - cnt);
3401 }
3402
3403 dprintk(3, "Number of free entries=(%d) seg_cnt=0x%x\n",
3404 ha->req_q_cnt, seg_cnt);
3405 /* If room for request in request ring. */
3406 if ((req_cnt + 2) >= ha->req_q_cnt) {
3407 status = 1;
3408 dprintk(2, "qla1280_32bit_start_scsi: in-ptr=0x%x, "
3409 "req_q_cnt=0x%x, req_cnt=0x%x", ha->req_ring_index,
3410 ha->req_q_cnt, req_cnt);
3411 goto out;
3412 }
3413
3414 /* Check for empty slot in outstanding command list. */
3415 for (cnt = 0; cnt < MAX_OUTSTANDING_COMMANDS &&
3416 (ha->outstanding_cmds[cnt] != 0); cnt++) ;
3417
3418 if (cnt >= MAX_OUTSTANDING_COMMANDS) {
3419 status = 1;
3420 dprintk(2, "qla1280_32bit_start_scsi: NO ROOM IN OUTSTANDING "
3421 "ARRAY, req_q_cnt=0x%x\n", ha->req_q_cnt);
3422 goto out;
3423 }
3424
3425 CMD_HANDLE(sp->cmd) = (unsigned char *) (unsigned long)(cnt + 1);
3426 ha->outstanding_cmds[cnt] = sp;
3427 ha->req_q_cnt -= req_cnt;
3428
3429 /*
3430 * Build command packet.
3431 */
3432 pkt = (struct cmd_entry *) ha->request_ring_ptr;
3433
3434 pkt->entry_type = COMMAND_TYPE;
3435 pkt->entry_count = (uint8_t) req_cnt;
3436 pkt->sys_define = (uint8_t) ha->req_ring_index;
3437 pkt->entry_status = 0;
3438 pkt->handle = cpu_to_le32(cnt);
3439
3440 /* Zero out remaining portion of packet. */
3441 memset(((char *)pkt + 8), 0, (REQUEST_ENTRY_SIZE - 8));
3442
3443 /* Set ISP command timeout. */
3444 pkt->timeout = cpu_to_le16(30);
3445
3446 /* Set device target ID and LUN */
3447 pkt->lun = SCSI_LUN_32(cmd);
3448 pkt->target = SCSI_BUS_32(cmd) ?
3449 (SCSI_TCN_32(cmd) | BIT_7) : SCSI_TCN_32(cmd);
3450
3451 /* Enable simple tag queuing if device supports it. */
3452 if (DEV_SIMPLE_TAGS(cmd->device))
3453 pkt->control_flags |= cpu_to_le16(BIT_3);
3454
3455 /* Load SCSI command packet. */
3456 pkt->cdb_len = cpu_to_le16(CMD_CDBLEN(cmd));
3457 memcpy(pkt->scsi_cdb, &(CMD_CDBP(cmd)), CMD_CDBLEN(cmd));
3458
3459 /*dprintk(1, "Build packet for command[0]=0x%x\n",pkt->scsi_cdb[0]); */
3460 /* Set transfer direction. */
3461 dir = qla1280_data_direction(cmd);
3462 pkt->control_flags |= cpu_to_le16(dir);
3463
3464 /* Set total data segment count. */
3465 pkt->dseg_count = cpu_to_le16(seg_cnt);
3466
3467 /*
3468 * Load data segments.
3469 */
3470 if (seg_cnt) {
3471 /* Setup packet address segment pointer. */
3472 dword_ptr = &pkt->dseg_0_address;
3473
3474 if (cmd->use_sg) { /* If scatter gather */
3475 dprintk(3, "Building S/G data segments..\n");
3476 qla1280_dump_buffer(1, (char *)sg, 4 * 16);
3477
3478 /* Load command entry data segments. */
3479 for (cnt = 0; cnt < 4 && seg_cnt; cnt++, seg_cnt--) {
3480 *dword_ptr++ =
3481 cpu_to_le32(pci_dma_lo32(sg_dma_address(sg)));
3482 *dword_ptr++ =
3483 cpu_to_le32(sg_dma_len(sg));
3484 dprintk(3, "S/G Segment phys_addr=0x%lx, len=0x%x\n",
3485 (pci_dma_lo32(sg_dma_address(sg))),
3486 (sg_dma_len(sg)));
3487 sg++;
3488 }
3489 /*
3490 * Build continuation packets.
3491 */
3492 dprintk(3, "S/G Building Continuation"
3493 "...seg_cnt=0x%x remains\n", seg_cnt);
3494 while (seg_cnt > 0) {
3495 /* Adjust ring index. */
3496 ha->req_ring_index++;
3497 if (ha->req_ring_index == REQUEST_ENTRY_CNT) {
3498 ha->req_ring_index = 0;
3499 ha->request_ring_ptr =
3500 ha->request_ring;
3501 } else
3502 ha->request_ring_ptr++;
3503
3504 pkt = (struct cmd_entry *)ha->request_ring_ptr;
3505
3506 /* Zero out packet. */
3507 memset(pkt, 0, REQUEST_ENTRY_SIZE);
3508
3509 /* Load packet defaults. */
3510 ((struct cont_entry *) pkt)->
3511 entry_type = CONTINUE_TYPE;
3512 ((struct cont_entry *) pkt)->entry_count = 1;
3513
3514 ((struct cont_entry *) pkt)->sys_define =
3515 (uint8_t) ha->req_ring_index;
3516
3517 /* Setup packet address segment pointer. */
3518 dword_ptr =
3519 &((struct cont_entry *) pkt)->dseg_0_address;
3520
3521 /* Load continuation entry data segments. */
3522 for (cnt = 0; cnt < 7 && seg_cnt;
3523 cnt++, seg_cnt--) {
3524 *dword_ptr++ =
3525 cpu_to_le32(pci_dma_lo32(sg_dma_address(sg)));
3526 *dword_ptr++ =
3527 cpu_to_le32(sg_dma_len(sg));
3528 dprintk(1,
3529 "S/G Segment Cont. phys_addr=0x%x, "
3530 "len=0x%x\n",
3531 cpu_to_le32(pci_dma_lo32(sg_dma_address(sg))),
3532 cpu_to_le32(sg_dma_len(sg)));
3533 sg++;
3534 }
3535 dprintk(5, "qla1280_32bit_start_scsi: "
3536 "continuation packet data - "
3537 "scsi(%i:%i:%i)\n", SCSI_BUS_32(cmd),
3538 SCSI_TCN_32(cmd), SCSI_LUN_32(cmd));
3539 qla1280_dump_buffer(5, (char *)pkt,
3540 REQUEST_ENTRY_SIZE);
3541 }
3542 } else { /* No S/G data transfer */
3543 dma_handle = pci_map_single(ha->pdev,
3544 cmd->request_buffer,
3545 cmd->request_bufflen,
3546 cmd->sc_data_direction);
3547 sp->saved_dma_handle = dma_handle;
3548
3549 *dword_ptr++ = cpu_to_le32(pci_dma_lo32(dma_handle));
3550 *dword_ptr = cpu_to_le32(cmd->request_bufflen);
3551 }
3552 } else { /* No data transfer at all */
3553 dprintk(5, "qla1280_32bit_start_scsi: No data, command "
3554 "packet data - \n");
3555 qla1280_dump_buffer(5, (char *)pkt, REQUEST_ENTRY_SIZE);
3556 }
3557 dprintk(5, "qla1280_32bit_start_scsi: First IOCB block:\n");
3558 qla1280_dump_buffer(5, (char *)ha->request_ring_ptr,
3559 REQUEST_ENTRY_SIZE);
3560
3561 /* Adjust ring index. */
3562 ha->req_ring_index++;
3563 if (ha->req_ring_index == REQUEST_ENTRY_CNT) {
3564 ha->req_ring_index = 0;
3565 ha->request_ring_ptr = ha->request_ring;
3566 } else
3567 ha->request_ring_ptr++;
3568
3569 /* Set chip new ring index. */
3570 dprintk(2, "qla1280_32bit_start_scsi: Wakeup RISC "
3571 "for pending command\n");
3572 sp->flags |= SRB_SENT;
3573 ha->actthreads++;
3574 WRT_REG_WORD(&reg->mailbox4, ha->req_ring_index);
3575 /* Enforce mmio write ordering; see comment in qla1280_isp_cmd(). */
3576 mmiowb();
3577
3578out:
3579 if (status)
3580 dprintk(2, "qla1280_32bit_start_scsi: **** FAILED ****\n");
3581
3582 LEAVE("qla1280_32bit_start_scsi");
3583
3584 return status;
3585}
3586#endif
3587
3588/*
3589 * qla1280_req_pkt
3590 * Function is responsible for locking ring and
3591 * getting a zeroed out request packet.
3592 *
3593 * Input:
3594 * ha = adapter block pointer.
3595 *
3596 * Returns:
3597 * 0 = failed to get slot.
3598 */
3599static request_t *
3600qla1280_req_pkt(struct scsi_qla_host *ha)
3601{
3602 struct device_reg __iomem *reg = ha->iobase;
3603 request_t *pkt = NULL;
3604 int cnt;
3605 uint32_t timer;
3606
3607 ENTER("qla1280_req_pkt");
3608
3609 /*
3610 * This can be called from interrupt context, damn it!!!
3611 */
3612 /* Wait for 30 seconds for slot. */
3613 for (timer = 15000000; timer; timer--) {
3614 if (ha->req_q_cnt > 0) {
3615 /* Calculate number of free request entries. */
3616 cnt = RD_REG_WORD(&reg->mailbox4);
3617 if (ha->req_ring_index < cnt)
3618 ha->req_q_cnt = cnt - ha->req_ring_index;
3619 else
3620 ha->req_q_cnt =
3621 REQUEST_ENTRY_CNT - (ha->req_ring_index - cnt);
3622 }
3623
3624 /* Found empty request ring slot? */
3625 if (ha->req_q_cnt > 0) {
3626 ha->req_q_cnt--;
3627 pkt = ha->request_ring_ptr;
3628
3629 /* Zero out packet. */
3630 memset(pkt, 0, REQUEST_ENTRY_SIZE);
3631
3632 /*
3633 * How can this be right when we have a ring
3634 * size of 512???
3635 */
3636 /* Set system defined field. */
3637 pkt->sys_define = (uint8_t) ha->req_ring_index;
3638
3639 /* Set entry count. */
3640 pkt->entry_count = 1;
3641
3642 break;
3643 }
3644
3645 udelay(2); /* 10 */
3646
3647 /* Check for pending interrupts. */
3648 qla1280_poll(ha);
3649 }
3650
3651 if (!pkt)
3652 dprintk(2, "qla1280_req_pkt: **** FAILED ****\n");
3653 else
3654 dprintk(3, "qla1280_req_pkt: exiting normally\n");
3655
3656 return pkt;
3657}
3658
3659/*
3660 * qla1280_isp_cmd
3661 * Function is responsible for modifying ISP input pointer.
3662 * Releases ring lock.
3663 *
3664 * Input:
3665 * ha = adapter block pointer.
3666 */
3667static void
3668qla1280_isp_cmd(struct scsi_qla_host *ha)
3669{
3670 struct device_reg __iomem *reg = ha->iobase;
3671
3672 ENTER("qla1280_isp_cmd");
3673
3674 dprintk(5, "qla1280_isp_cmd: IOCB data:\n");
3675 qla1280_dump_buffer(5, (char *)ha->request_ring_ptr,
3676 REQUEST_ENTRY_SIZE);
3677
3678 /* Adjust ring index. */
3679 ha->req_ring_index++;
3680 if (ha->req_ring_index == REQUEST_ENTRY_CNT) {
3681 ha->req_ring_index = 0;
3682 ha->request_ring_ptr = ha->request_ring;
3683 } else
3684 ha->request_ring_ptr++;
3685
3686 /*
3687 * Update request index to mailbox4 (Request Queue In).
3688 * The mmiowb() ensures that this write is ordered with writes by other
3689 * CPUs. Without the mmiowb(), it is possible for the following:
3690 * CPUA posts write of index 5 to mailbox4
3691 * CPUA releases host lock
3692 * CPUB acquires host lock
3693 * CPUB posts write of index 6 to mailbox4
3694 * On PCI bus, order reverses and write of 6 posts, then index 5,
3695 * causing chip to issue full queue of stale commands
3696 * The mmiowb() prevents future writes from crossing the barrier.
3697 * See Documentation/DocBook/deviceiobook.tmpl for more information.
3698 */
3699 WRT_REG_WORD(&reg->mailbox4, ha->req_ring_index);
3700 mmiowb();
3701
3702 LEAVE("qla1280_isp_cmd");
3703}
3704
3705/****************************************************************************/
3706/* Interrupt Service Routine. */
3707/****************************************************************************/
3708
3709/****************************************************************************
3710 * qla1280_isr
3711 * Calls I/O done on command completion.
3712 *
3713 * Input:
3714 * ha = adapter block pointer.
3715 * done_q = done queue.
3716 ****************************************************************************/
3717static void
3718qla1280_isr(struct scsi_qla_host *ha, struct list_head *done_q)
3719{
3720 struct device_reg __iomem *reg = ha->iobase;
3721 struct response *pkt;
3722 struct srb *sp = NULL;
3723 uint16_t mailbox[MAILBOX_REGISTER_COUNT];
3724 uint16_t *wptr;
3725 uint32_t index;
3726 u16 istatus;
3727
3728 ENTER("qla1280_isr");
3729
3730 istatus = RD_REG_WORD(&reg->istatus);
3731 if (!(istatus & (RISC_INT | PCI_INT)))
3732 return;
3733
3734 /* Save mailbox register 5 */
3735 mailbox[5] = RD_REG_WORD(&reg->mailbox5);
3736
3737 /* Check for mailbox interrupt. */
3738
3739 mailbox[0] = RD_REG_WORD_dmasync(&reg->semaphore);
3740
3741 if (mailbox[0] & BIT_0) {
3742 /* Get mailbox data. */
3743 /* dprintk(1, "qla1280_isr: In Get mailbox data \n"); */
3744
3745 wptr = &mailbox[0];
3746 *wptr++ = RD_REG_WORD(&reg->mailbox0);
3747 *wptr++ = RD_REG_WORD(&reg->mailbox1);
3748 *wptr = RD_REG_WORD(&reg->mailbox2);
3749 if (mailbox[0] != MBA_SCSI_COMPLETION) {
3750 wptr++;
3751 *wptr++ = RD_REG_WORD(&reg->mailbox3);
3752 *wptr++ = RD_REG_WORD(&reg->mailbox4);
3753 wptr++;
3754 *wptr++ = RD_REG_WORD(&reg->mailbox6);
3755 *wptr = RD_REG_WORD(&reg->mailbox7);
3756 }
3757
3758 /* Release mailbox registers. */
3759
3760 WRT_REG_WORD(&reg->semaphore, 0);
3761 WRT_REG_WORD(&reg->host_cmd, HC_CLR_RISC_INT);
3762
3763 dprintk(5, "qla1280_isr: mailbox interrupt mailbox[0] = 0x%x",
3764 mailbox[0]);
3765
3766 /* Handle asynchronous event */
3767 switch (mailbox[0]) {
3768 case MBA_SCSI_COMPLETION: /* Response completion */
3769 dprintk(5, "qla1280_isr: mailbox SCSI response "
3770 "completion\n");
3771
3772 if (ha->flags.online) {
3773 /* Get outstanding command index. */
3774 index = mailbox[2] << 16 | mailbox[1];
3775
3776 /* Validate handle. */
3777 if (index < MAX_OUTSTANDING_COMMANDS)
3778 sp = ha->outstanding_cmds[index];
3779 else
3780 sp = NULL;
3781
3782 if (sp) {
3783 /* Free outstanding command slot. */
3784 ha->outstanding_cmds[index] = NULL;
3785
3786 /* Save ISP completion status */
3787 CMD_RESULT(sp->cmd) = 0;
3788
3789 /* Place block on done queue */
3790 list_add_tail(&sp->list, done_q);
3791 } else {
3792 /*
3793 * If we get here we have a real problem!
3794 */
3795 printk(KERN_WARNING
3796 "qla1280: ISP invalid handle");
3797 }
3798 }
3799 break;
3800
3801 case MBA_BUS_RESET: /* SCSI Bus Reset */
3802 ha->flags.reset_marker = 1;
3803 index = mailbox[6] & BIT_0;
3804 ha->bus_settings[index].reset_marker = 1;
3805
3806 printk(KERN_DEBUG "qla1280_isr(): index %i "
3807 "asynchronous BUS_RESET\n", index);
3808 break;
3809
3810 case MBA_SYSTEM_ERR: /* System Error */
3811 printk(KERN_WARNING
3812 "qla1280: ISP System Error - mbx1=%xh, mbx2="
3813 "%xh, mbx3=%xh\n", mailbox[1], mailbox[2],
3814 mailbox[3]);
3815 break;
3816
3817 case MBA_REQ_TRANSFER_ERR: /* Request Transfer Error */
3818 printk(KERN_WARNING
3819 "qla1280: ISP Request Transfer Error\n");
3820 break;
3821
3822 case MBA_RSP_TRANSFER_ERR: /* Response Transfer Error */
3823 printk(KERN_WARNING
3824 "qla1280: ISP Response Transfer Error\n");
3825 break;
3826
3827 case MBA_WAKEUP_THRES: /* Request Queue Wake-up */
3828 dprintk(2, "qla1280_isr: asynchronous WAKEUP_THRES\n");
3829 break;
3830
3831 case MBA_TIMEOUT_RESET: /* Execution Timeout Reset */
3832 dprintk(2,
3833 "qla1280_isr: asynchronous TIMEOUT_RESET\n");
3834 break;
3835
3836 case MBA_DEVICE_RESET: /* Bus Device Reset */
3837 printk(KERN_INFO "qla1280_isr(): asynchronous "
3838 "BUS_DEVICE_RESET\n");
3839
3840 ha->flags.reset_marker = 1;
3841 index = mailbox[6] & BIT_0;
3842 ha->bus_settings[index].reset_marker = 1;
3843 break;
3844
3845 case MBA_BUS_MODE_CHANGE:
3846 dprintk(2,
3847 "qla1280_isr: asynchronous BUS_MODE_CHANGE\n");
3848 break;
3849
3850 default:
3851 /* dprintk(1, "qla1280_isr: default case of switch MB \n"); */
3852 if (mailbox[0] < MBA_ASYNC_EVENT) {
3853 wptr = &mailbox[0];
3854 memcpy((uint16_t *) ha->mailbox_out, wptr,
3855 MAILBOX_REGISTER_COUNT *
3856 sizeof(uint16_t));
3857
3858 if(ha->mailbox_wait != NULL)
3859 complete(ha->mailbox_wait);
3860 }
3861 break;
3862 }
3863 } else {
3864 WRT_REG_WORD(&reg->host_cmd, HC_CLR_RISC_INT);
3865 }
3866
3867 /*
3868 * We will receive interrupts during mailbox testing prior to
3869 * the card being marked online, hence the double check.
3870 */
3871 if (!(ha->flags.online && !ha->mailbox_wait)) {
3872 dprintk(2, "qla1280_isr: Response pointer Error\n");
3873 goto out;
3874 }
3875
3876 if (mailbox[5] >= RESPONSE_ENTRY_CNT)
3877 goto out;
3878
3879 while (ha->rsp_ring_index != mailbox[5]) {
3880 pkt = ha->response_ring_ptr;
3881
3882 dprintk(5, "qla1280_isr: ha->rsp_ring_index = 0x%x, mailbox[5]"
3883 " = 0x%x\n", ha->rsp_ring_index, mailbox[5]);
3884 dprintk(5,"qla1280_isr: response packet data\n");
3885 qla1280_dump_buffer(5, (char *)pkt, RESPONSE_ENTRY_SIZE);
3886
3887 if (pkt->entry_type == STATUS_TYPE) {
3888 if ((le16_to_cpu(pkt->scsi_status) & 0xff)
3889 || pkt->comp_status || pkt->entry_status) {
3890 dprintk(2, "qla1280_isr: ha->rsp_ring_index = "
3891 "0x%x mailbox[5] = 0x%x, comp_status "
3892 "= 0x%x, scsi_status = 0x%x\n",
3893 ha->rsp_ring_index, mailbox[5],
3894 le16_to_cpu(pkt->comp_status),
3895 le16_to_cpu(pkt->scsi_status));
3896 }
3897 } else {
3898 dprintk(2, "qla1280_isr: ha->rsp_ring_index = "
3899 "0x%x, mailbox[5] = 0x%x\n",
3900 ha->rsp_ring_index, mailbox[5]);
3901 dprintk(2, "qla1280_isr: response packet data\n");
3902 qla1280_dump_buffer(2, (char *)pkt,
3903 RESPONSE_ENTRY_SIZE);
3904 }
3905
3906 if (pkt->entry_type == STATUS_TYPE || pkt->entry_status) {
3907 dprintk(2, "status: Cmd %p, handle %i\n",
3908 ha->outstanding_cmds[pkt->handle]->cmd,
3909 pkt->handle);
3910 if (pkt->entry_type == STATUS_TYPE)
3911 qla1280_status_entry(ha, pkt, done_q);
3912 else
3913 qla1280_error_entry(ha, pkt, done_q);
3914 /* Adjust ring index. */
3915 ha->rsp_ring_index++;
3916 if (ha->rsp_ring_index == RESPONSE_ENTRY_CNT) {
3917 ha->rsp_ring_index = 0;
3918 ha->response_ring_ptr = ha->response_ring;
3919 } else
3920 ha->response_ring_ptr++;
3921 WRT_REG_WORD(&reg->mailbox5, ha->rsp_ring_index);
3922 }
3923 }
3924
3925 out:
3926 LEAVE("qla1280_isr");
3927}
3928
3929/*
3930 * qla1280_rst_aen
3931 * Processes asynchronous reset.
3932 *
3933 * Input:
3934 * ha = adapter block pointer.
3935 */
3936static void
3937qla1280_rst_aen(struct scsi_qla_host *ha)
3938{
3939 uint8_t bus;
3940
3941 ENTER("qla1280_rst_aen");
3942
3943 if (ha->flags.online && !ha->flags.reset_active &&
3944 !ha->flags.abort_isp_active) {
3945 ha->flags.reset_active = 1;
3946 while (ha->flags.reset_marker) {
3947 /* Issue marker command. */
3948 ha->flags.reset_marker = 0;
3949 for (bus = 0; bus < ha->ports &&
3950 !ha->flags.reset_marker; bus++) {
3951 if (ha->bus_settings[bus].reset_marker) {
3952 ha->bus_settings[bus].reset_marker = 0;
3953 qla1280_marker(ha, bus, 0, 0,
3954 MK_SYNC_ALL);
3955 }
3956 }
3957 }
3958 }
3959
3960 LEAVE("qla1280_rst_aen");
3961}
3962
3963
3964#if LINUX_VERSION_CODE < 0x020500
3965/*
3966 *
3967 */
3968static void
3969qla1280_get_target_options(struct scsi_cmnd *cmd, struct scsi_qla_host *ha)
3970{
3971 unsigned char *result;
3972 struct nvram *n;
3973 int bus, target, lun;
3974
3975 bus = SCSI_BUS_32(cmd);
3976 target = SCSI_TCN_32(cmd);
3977 lun = SCSI_LUN_32(cmd);
3978
3979 /*
3980 * Make sure to not touch anything if someone is using the
3981 * sg interface.
3982 */
3983 if (cmd->use_sg || (CMD_RESULT(cmd) >> 16) != DID_OK || lun)
3984 return;
3985
3986 result = cmd->request_buffer;
3987 n = &ha->nvram;
3988
3989 n->bus[bus].target[target].parameter.f.enable_wide = 0;
3990 n->bus[bus].target[target].parameter.f.enable_sync = 0;
3991 n->bus[bus].target[target].ppr_1x160.flags.enable_ppr = 0;
3992
3993 if (result[7] & 0x60)
3994 n->bus[bus].target[target].parameter.f.enable_wide = 1;
3995 if (result[7] & 0x10)
3996 n->bus[bus].target[target].parameter.f.enable_sync = 1;
3997 if ((result[2] >= 3) && (result[4] + 5 > 56) &&
3998 (result[56] & 0x4))
3999 n->bus[bus].target[target].ppr_1x160.flags.enable_ppr = 1;
4000
4001 dprintk(2, "get_target_options(): wide %i, sync %i, ppr %i\n",
4002 n->bus[bus].target[target].parameter.f.enable_wide,
4003 n->bus[bus].target[target].parameter.f.enable_sync,
4004 n->bus[bus].target[target].ppr_1x160.flags.enable_ppr);
4005}
4006#endif
4007
4008/*
4009 * qla1280_status_entry
4010 * Processes received ISP status entry.
4011 *
4012 * Input:
4013 * ha = adapter block pointer.
4014 * pkt = entry pointer.
4015 * done_q = done queue.
4016 */
4017static void
4018qla1280_status_entry(struct scsi_qla_host *ha, struct response *pkt,
4019 struct list_head *done_q)
4020{
4021 unsigned int bus, target, lun;
4022 int sense_sz;
4023 struct srb *sp;
4024 struct scsi_cmnd *cmd;
4025 uint32_t handle = le32_to_cpu(pkt->handle);
4026 uint16_t scsi_status = le16_to_cpu(pkt->scsi_status);
4027 uint16_t comp_status = le16_to_cpu(pkt->comp_status);
4028
4029 ENTER("qla1280_status_entry");
4030
4031 /* Validate handle. */
4032 if (handle < MAX_OUTSTANDING_COMMANDS)
4033 sp = ha->outstanding_cmds[handle];
4034 else
4035 sp = NULL;
4036
4037 if (!sp) {
4038 printk(KERN_WARNING "qla1280: Status Entry invalid handle\n");
4039 goto out;
4040 }
4041
4042 /* Free outstanding command slot. */
4043 ha->outstanding_cmds[handle] = NULL;
4044
4045 cmd = sp->cmd;
4046
4047 /* Generate LU queue on cntrl, target, LUN */
4048 bus = SCSI_BUS_32(cmd);
4049 target = SCSI_TCN_32(cmd);
4050 lun = SCSI_LUN_32(cmd);
4051
4052 if (comp_status || scsi_status) {
4053 dprintk(3, "scsi: comp_status = 0x%x, scsi_status = "
4054 "0x%x, handle = 0x%x\n", comp_status,
4055 scsi_status, handle);
4056 }
4057
7d0e11fb
JH
4058 /* Target busy or queue full */
4059 if ((scsi_status & 0xFF) == SAM_STAT_TASK_SET_FULL ||
4060 (scsi_status & 0xFF) == SAM_STAT_BUSY) {
4061 CMD_RESULT(cmd) = scsi_status & 0xff;
1da177e4
LT
4062 } else {
4063
4064 /* Save ISP completion status */
4065 CMD_RESULT(cmd) = qla1280_return_status(pkt, cmd);
4066
4067 if (scsi_status & SS_CHECK_CONDITION) {
4068 if (comp_status != CS_ARS_FAILED) {
4069 uint16_t req_sense_length =
4070 le16_to_cpu(pkt->req_sense_length);
4071 if (req_sense_length < CMD_SNSLEN(cmd))
4072 sense_sz = req_sense_length;
4073 else
4074 /*
4075 * scsi_cmnd->sense_buffer is
4076 * 64 bytes, why only copy 63?
4077 * This looks wrong! /Jes
4078 */
4079 sense_sz = CMD_SNSLEN(cmd) - 1;
4080
4081 memcpy(cmd->sense_buffer,
4082 &pkt->req_sense_data, sense_sz);
4083 } else
4084 sense_sz = 0;
4085 memset(cmd->sense_buffer + sense_sz, 0,
4086 sizeof(cmd->sense_buffer) - sense_sz);
4087
4088 dprintk(2, "qla1280_status_entry: Check "
4089 "condition Sense data, b %i, t %i, "
4090 "l %i\n", bus, target, lun);
4091 if (sense_sz)
4092 qla1280_dump_buffer(2,
4093 (char *)cmd->sense_buffer,
4094 sense_sz);
4095 }
4096 }
4097
4098 /* Place command on done queue. */
4099 list_add_tail(&sp->list, done_q);
4100 out:
4101 LEAVE("qla1280_status_entry");
4102}
4103
4104/*
4105 * qla1280_error_entry
4106 * Processes error entry.
4107 *
4108 * Input:
4109 * ha = adapter block pointer.
4110 * pkt = entry pointer.
4111 * done_q = done queue.
4112 */
4113static void
4114qla1280_error_entry(struct scsi_qla_host *ha, struct response *pkt,
4115 struct list_head *done_q)
4116{
4117 struct srb *sp;
4118 uint32_t handle = le32_to_cpu(pkt->handle);
4119
4120 ENTER("qla1280_error_entry");
4121
4122 if (pkt->entry_status & BIT_3)
4123 dprintk(2, "qla1280_error_entry: BAD PAYLOAD flag error\n");
4124 else if (pkt->entry_status & BIT_2)
4125 dprintk(2, "qla1280_error_entry: BAD HEADER flag error\n");
4126 else if (pkt->entry_status & BIT_1)
4127 dprintk(2, "qla1280_error_entry: FULL flag error\n");
4128 else
4129 dprintk(2, "qla1280_error_entry: UNKNOWN flag error\n");
4130
4131 /* Validate handle. */
4132 if (handle < MAX_OUTSTANDING_COMMANDS)
4133 sp = ha->outstanding_cmds[handle];
4134 else
4135 sp = NULL;
4136
4137 if (sp) {
4138 /* Free outstanding command slot. */
4139 ha->outstanding_cmds[handle] = NULL;
4140
4141 /* Bad payload or header */
4142 if (pkt->entry_status & (BIT_3 + BIT_2)) {
4143 /* Bad payload or header, set error status. */
4144 /* CMD_RESULT(sp->cmd) = CS_BAD_PAYLOAD; */
4145 CMD_RESULT(sp->cmd) = DID_ERROR << 16;
4146 } else if (pkt->entry_status & BIT_1) { /* FULL flag */
4147 CMD_RESULT(sp->cmd) = DID_BUS_BUSY << 16;
4148 } else {
4149 /* Set error status. */
4150 CMD_RESULT(sp->cmd) = DID_ERROR << 16;
4151 }
4152
4153 /* Place command on done queue. */
4154 list_add_tail(&sp->list, done_q);
4155 }
4156#ifdef QLA_64BIT_PTR
4157 else if (pkt->entry_type == COMMAND_A64_TYPE) {
4158 printk(KERN_WARNING "!qla1280: Error Entry invalid handle");
4159 }
4160#endif
4161
4162 LEAVE("qla1280_error_entry");
4163}
4164
4165/*
4166 * qla1280_abort_isp
4167 * Resets ISP and aborts all outstanding commands.
4168 *
4169 * Input:
4170 * ha = adapter block pointer.
4171 *
4172 * Returns:
4173 * 0 = success
4174 */
4175static int
4176qla1280_abort_isp(struct scsi_qla_host *ha)
4177{
4178 struct device_reg __iomem *reg = ha->iobase;
4179 struct srb *sp;
4180 int status = 0;
4181 int cnt;
4182 int bus;
4183
4184 ENTER("qla1280_abort_isp");
4185
4186 if (ha->flags.abort_isp_active || !ha->flags.online)
4187 goto out;
4188
4189 ha->flags.abort_isp_active = 1;
4190
4191 /* Disable ISP interrupts. */
4192 qla1280_disable_intrs(ha);
4193 WRT_REG_WORD(&reg->host_cmd, HC_PAUSE_RISC);
4194 RD_REG_WORD(&reg->id_l);
4195
4196 printk(KERN_INFO "scsi(%li): dequeuing outstanding commands\n",
4197 ha->host_no);
4198 /* Dequeue all commands in outstanding command list. */
4199 for (cnt = 0; cnt < MAX_OUTSTANDING_COMMANDS; cnt++) {
4200 struct scsi_cmnd *cmd;
4201 sp = ha->outstanding_cmds[cnt];
4202 if (sp) {
4203
4204 cmd = sp->cmd;
4205 CMD_RESULT(cmd) = DID_RESET << 16;
4206
4207 sp->cmd = NULL;
4208 ha->outstanding_cmds[cnt] = NULL;
4209
4210 (*cmd->scsi_done)(cmd);
4211
4212 sp->flags = 0;
4213 }
4214 }
4215
4216 status = qla1280_load_firmware(ha);
4217 if (status)
4218 goto out;
4219
4220 /* Setup adapter based on NVRAM parameters. */
4221 qla1280_nvram_config (ha);
4222
4223 status = qla1280_init_rings(ha);
4224 if (status)
4225 goto out;
4226
4227 /* Issue SCSI reset. */
4228 for (bus = 0; bus < ha->ports; bus++)
4229 qla1280_bus_reset(ha, bus);
4230
4231 ha->flags.abort_isp_active = 0;
4232 out:
4233 if (status) {
4234 printk(KERN_WARNING
4235 "qla1280: ISP error recovery failed, board disabled");
4236 qla1280_reset_adapter(ha);
4237 dprintk(2, "qla1280_abort_isp: **** FAILED ****\n");
4238 }
4239
4240 LEAVE("qla1280_abort_isp");
4241 return status;
4242}
4243
4244
4245/*
4246 * qla1280_debounce_register
4247 * Debounce register.
4248 *
4249 * Input:
4250 * port = register address.
4251 *
4252 * Returns:
4253 * register value.
4254 */
4255static u16
4256qla1280_debounce_register(volatile u16 __iomem * addr)
4257{
4258 volatile u16 ret;
4259 volatile u16 ret2;
4260
4261 ret = RD_REG_WORD(addr);
4262 ret2 = RD_REG_WORD(addr);
4263
4264 if (ret == ret2)
4265 return ret;
4266
4267 do {
4268 cpu_relax();
4269 ret = RD_REG_WORD(addr);
4270 ret2 = RD_REG_WORD(addr);
4271 } while (ret != ret2);
4272
4273 return ret;
4274}
4275
4276
4277/************************************************************************
4278 * qla1280_check_for_dead_scsi_bus *
4279 * *
4280 * This routine checks for a dead SCSI bus *
4281 ************************************************************************/
4282#define SET_SXP_BANK 0x0100
4283#define SCSI_PHASE_INVALID 0x87FF
4284static int
4285qla1280_check_for_dead_scsi_bus(struct scsi_qla_host *ha, unsigned int bus)
4286{
4287 uint16_t config_reg, scsi_control;
4288 struct device_reg __iomem *reg = ha->iobase;
4289
4290 if (ha->bus_settings[bus].scsi_bus_dead) {
4291 WRT_REG_WORD(&reg->host_cmd, HC_PAUSE_RISC);
4292 config_reg = RD_REG_WORD(&reg->cfg_1);
4293 WRT_REG_WORD(&reg->cfg_1, SET_SXP_BANK);
4294 scsi_control = RD_REG_WORD(&reg->scsiControlPins);
4295 WRT_REG_WORD(&reg->cfg_1, config_reg);
4296 WRT_REG_WORD(&reg->host_cmd, HC_RELEASE_RISC);
4297
4298 if (scsi_control == SCSI_PHASE_INVALID) {
4299 ha->bus_settings[bus].scsi_bus_dead = 1;
4300#if 0
4301 CMD_RESULT(cp) = DID_NO_CONNECT << 16;
4302 CMD_HANDLE(cp) = INVALID_HANDLE;
4303 /* ha->actthreads--; */
4304
4305 (*(cp)->scsi_done)(cp);
4306#endif
4307 return 1; /* bus is dead */
4308 } else {
4309 ha->bus_settings[bus].scsi_bus_dead = 0;
4310 ha->bus_settings[bus].failed_reset_count = 0;
4311 }
4312 }
4313 return 0; /* bus is not dead */
4314}
4315
4316static void
4317qla1280_get_target_parameters(struct scsi_qla_host *ha,
4318 struct scsi_device *device)
4319{
4320 uint16_t mb[MAILBOX_REGISTER_COUNT];
4321 int bus, target, lun;
4322
4323 bus = device->channel;
4324 target = device->id;
4325 lun = device->lun;
4326
4327
4328 mb[0] = MBC_GET_TARGET_PARAMETERS;
4329 mb[1] = (uint16_t) (bus ? target | BIT_7 : target);
4330 mb[1] <<= 8;
4331 qla1280_mailbox_command(ha, BIT_6 | BIT_3 | BIT_2 | BIT_1 | BIT_0,
4332 &mb[0]);
4333
4334 printk(KERN_INFO "scsi(%li:%d:%d:%d):", ha->host_no, bus, target, lun);
4335
4336 if (mb[3] != 0) {
4337 printk(" Sync: period %d, offset %d",
4338 (mb[3] & 0xff), (mb[3] >> 8));
4339 if (mb[2] & BIT_13)
4340 printk(", Wide");
4341 if ((mb[2] & BIT_5) && ((mb[6] >> 8) & 0xff) >= 2)
4342 printk(", DT");
4343 } else
4344 printk(" Async");
4345
4346 if (DEV_SIMPLE_TAGS(device))
4347 printk(", Tagged queuing: depth %d", device->queue_depth);
4348 printk("\n");
4349}
4350
4351
4352#if DEBUG_QLA1280
4353static void
4354__qla1280_dump_buffer(char *b, int size)
4355{
4356 int cnt;
4357 u8 c;
4358
4359 printk(KERN_DEBUG " 0 1 2 3 4 5 6 7 8 9 Ah "
4360 "Bh Ch Dh Eh Fh\n");
4361 printk(KERN_DEBUG "---------------------------------------------"
4362 "------------------\n");
4363
4364 for (cnt = 0; cnt < size;) {
4365 c = *b++;
4366
4367 printk("0x%02x", c);
4368 cnt++;
4369 if (!(cnt % 16))
4370 printk("\n");
4371 else
4372 printk(" ");
4373 }
4374 if (cnt % 16)
4375 printk("\n");
4376}
4377
4378/**************************************************************************
4379 * ql1280_print_scsi_cmd
4380 *
4381 **************************************************************************/
4382static void
4383__qla1280_print_scsi_cmd(struct scsi_cmnd *cmd)
4384{
4385 struct scsi_qla_host *ha;
4386 struct Scsi_Host *host = CMD_HOST(cmd);
4387 struct srb *sp;
4388 /* struct scatterlist *sg; */
4389
4390 int i;
4391 ha = (struct scsi_qla_host *)host->hostdata;
4392
4393 sp = (struct srb *)CMD_SP(cmd);
4394 printk("SCSI Command @= 0x%p, Handle=0x%p\n", cmd, CMD_HANDLE(cmd));
4395 printk(" chan=%d, target = 0x%02x, lun = 0x%02x, cmd_len = 0x%02x\n",
4396 SCSI_BUS_32(cmd), SCSI_TCN_32(cmd), SCSI_LUN_32(cmd),
4397 CMD_CDBLEN(cmd));
4398 printk(" CDB = ");
4399 for (i = 0; i < cmd->cmd_len; i++) {
4400 printk("0x%02x ", cmd->cmnd[i]);
4401 }
4402 printk(" seg_cnt =%d\n", cmd->use_sg);
4403 printk(" request buffer=0x%p, request buffer len=0x%x\n",
4404 cmd->request_buffer, cmd->request_bufflen);
4405 /* if (cmd->use_sg)
4406 {
4407 sg = (struct scatterlist *) cmd->request_buffer;
4408 printk(" SG buffer: \n");
4409 qla1280_dump_buffer(1, (char *)sg, (cmd->use_sg*sizeof(struct scatterlist)));
4410 } */
4411 printk(" tag=%d, transfersize=0x%x \n",
4412 cmd->tag, cmd->transfersize);
4413 printk(" Pid=%li, SP=0x%p\n", cmd->pid, CMD_SP(cmd));
4414 printk(" underflow size = 0x%x, direction=0x%x\n",
4415 cmd->underflow, cmd->sc_data_direction);
4416}
4417
4418/**************************************************************************
4419 * ql1280_dump_device
4420 *
4421 **************************************************************************/
4422static void
4423ql1280_dump_device(struct scsi_qla_host *ha)
4424{
4425
4426 struct scsi_cmnd *cp;
4427 struct srb *sp;
4428 int i;
4429
4430 printk(KERN_DEBUG "Outstanding Commands on controller:\n");
4431
4432 for (i = 0; i < MAX_OUTSTANDING_COMMANDS; i++) {
4433 if ((sp = ha->outstanding_cmds[i]) == NULL)
4434 continue;
4435 if ((cp = sp->cmd) == NULL)
4436 continue;
4437 qla1280_print_scsi_cmd(1, cp);
4438 }
4439}
4440#endif
4441
4442
4443enum tokens {
4444 TOKEN_NVRAM,
4445 TOKEN_SYNC,
4446 TOKEN_WIDE,
4447 TOKEN_PPR,
4448 TOKEN_VERBOSE,
4449 TOKEN_DEBUG,
4450};
4451
4452struct setup_tokens {
4453 char *token;
4454 int val;
4455};
4456
4457static struct setup_tokens setup_token[] __initdata =
4458{
4459 { "nvram", TOKEN_NVRAM },
4460 { "sync", TOKEN_SYNC },
4461 { "wide", TOKEN_WIDE },
4462 { "ppr", TOKEN_PPR },
4463 { "verbose", TOKEN_VERBOSE },
4464 { "debug", TOKEN_DEBUG },
4465};
4466
4467
4468/**************************************************************************
4469 * qla1280_setup
4470 *
4471 * Handle boot parameters. This really needs to be changed so one
4472 * can specify per adapter parameters.
4473 **************************************************************************/
4474static int __init
4475qla1280_setup(char *s)
4476{
4477 char *cp, *ptr;
4478 unsigned long val;
4479 int toke;
4480
4481 cp = s;
4482
4483 while (cp && (ptr = strchr(cp, ':'))) {
4484 ptr++;
4485 if (!strcmp(ptr, "yes")) {
4486 val = 0x10000;
4487 ptr += 3;
4488 } else if (!strcmp(ptr, "no")) {
4489 val = 0;
4490 ptr += 2;
4491 } else
4492 val = simple_strtoul(ptr, &ptr, 0);
4493
4494 switch ((toke = qla1280_get_token(cp))) {
4495 case TOKEN_NVRAM:
4496 if (!val)
4497 driver_setup.no_nvram = 1;
4498 break;
4499 case TOKEN_SYNC:
4500 if (!val)
4501 driver_setup.no_sync = 1;
4502 else if (val != 0x10000)
4503 driver_setup.sync_mask = val;
4504 break;
4505 case TOKEN_WIDE:
4506 if (!val)
4507 driver_setup.no_wide = 1;
4508 else if (val != 0x10000)
4509 driver_setup.wide_mask = val;
4510 break;
4511 case TOKEN_PPR:
4512 if (!val)
4513 driver_setup.no_ppr = 1;
4514 else if (val != 0x10000)
4515 driver_setup.ppr_mask = val;
4516 break;
4517 case TOKEN_VERBOSE:
4518 qla1280_verbose = val;
4519 break;
4520 default:
4521 printk(KERN_INFO "qla1280: unknown boot option %s\n",
4522 cp);
4523 }
4524
4525 cp = strchr(ptr, ';');
4526 if (cp)
4527 cp++;
4528 else {
4529 break;
4530 }
4531 }
4532 return 1;
4533}
4534
4535
4536static int
4537qla1280_get_token(char *str)
4538{
4539 char *sep;
4540 long ret = -1;
4541 int i, len;
4542
4543 len = sizeof(setup_token)/sizeof(struct setup_tokens);
4544
4545 sep = strchr(str, ':');
4546
4547 if (sep) {
4548 for (i = 0; i < len; i++){
4549
4550 if (!strncmp(setup_token[i].token, str, (sep - str))) {
4551 ret = setup_token[i].val;
4552 break;
4553 }
4554 }
4555 }
4556
4557 return ret;
4558}
4559
4560#if LINUX_VERSION_CODE >= 0x020600
4561static struct scsi_host_template qla1280_driver_template = {
4562 .module = THIS_MODULE,
4563 .proc_name = "qla1280",
4564 .name = "Qlogic ISP 1280/12160",
4565 .info = qla1280_info,
4566 .slave_configure = qla1280_slave_configure,
4567 .queuecommand = qla1280_queuecommand,
4568 .eh_abort_handler = qla1280_eh_abort,
4569 .eh_device_reset_handler= qla1280_eh_device_reset,
4570 .eh_bus_reset_handler = qla1280_eh_bus_reset,
4571 .eh_host_reset_handler = qla1280_eh_adapter_reset,
4572 .bios_param = qla1280_biosparam,
4573 .can_queue = 0xfffff,
4574 .this_id = -1,
4575 .sg_tablesize = SG_ALL,
4576 .cmd_per_lun = 1,
4577 .use_clustering = ENABLE_CLUSTERING,
4578};
4579#else
4580static Scsi_Host_Template qla1280_driver_template = {
4581 .proc_name = "qla1280",
4582 .name = "Qlogic ISP 1280/12160",
4583 .detect = qla1280_detect,
4584 .release = qla1280_release,
4585 .info = qla1280_info,
4586 .queuecommand = qla1280_queuecommand,
4587 .eh_abort_handler = qla1280_eh_abort,
4588 .eh_device_reset_handler= qla1280_eh_device_reset,
4589 .eh_bus_reset_handler = qla1280_eh_bus_reset,
4590 .eh_host_reset_handler = qla1280_eh_adapter_reset,
4591 .bios_param = qla1280_biosparam_old,
4592 .can_queue = 0xfffff,
4593 .this_id = -1,
4594 .sg_tablesize = SG_ALL,
4595 .cmd_per_lun = 1,
4596 .use_clustering = ENABLE_CLUSTERING,
4597 .use_new_eh_code = 1,
4598};
4599#endif
4600
4601static int __devinit
4602qla1280_probe_one(struct pci_dev *pdev, const struct pci_device_id *id)
4603{
4604 int devnum = id->driver_data;
4605 struct qla_boards *bdp = &ql1280_board_tbl[devnum];
4606 struct Scsi_Host *host;
4607 struct scsi_qla_host *ha;
4608 int error = -ENODEV;
4609
4610 /* Bypass all AMI SUBSYS VENDOR IDs */
4611 if (pdev->subsystem_vendor == PCI_VENDOR_ID_AMI) {
4612 printk(KERN_INFO
4613 "qla1280: Skipping AMI SubSys Vendor ID Chip\n");
4614 goto error;
4615 }
4616
4617 printk(KERN_INFO "qla1280: %s found on PCI bus %i, dev %i\n",
4618 bdp->name, pdev->bus->number, PCI_SLOT(pdev->devfn));
4619
4620 if (pci_enable_device(pdev)) {
4621 printk(KERN_WARNING
4622 "qla1280: Failed to enabled pci device, aborting.\n");
4623 goto error;
4624 }
4625
4626 pci_set_master(pdev);
4627
4628 error = -ENOMEM;
4629 host = scsi_host_alloc(&qla1280_driver_template, sizeof(*ha));
4630 if (!host) {
4631 printk(KERN_WARNING
4632 "qla1280: Failed to register host, aborting.\n");
4633 goto error_disable_device;
4634 }
4635
4636 ha = (struct scsi_qla_host *)host->hostdata;
4637 memset(ha, 0, sizeof(struct scsi_qla_host));
4638
4639 ha->pdev = pdev;
4640 ha->devnum = devnum; /* specifies microcode load address */
4641
4642#ifdef QLA_64BIT_PTR
4643 if (pci_set_dma_mask(ha->pdev, (dma_addr_t) ~ 0ULL)) {
4644 if (pci_set_dma_mask(ha->pdev, 0xffffffff)) {
4645 printk(KERN_WARNING "scsi(%li): Unable to set a "
4646 " suitable DMA mask - aboring\n", ha->host_no);
4647 error = -ENODEV;
4648 goto error_free_irq;
4649 }
4650 } else
4651 dprintk(2, "scsi(%li): 64 Bit PCI Addressing Enabled\n",
4652 ha->host_no);
4653#else
4654 if (pci_set_dma_mask(ha->pdev, 0xffffffff)) {
4655 printk(KERN_WARNING "scsi(%li): Unable to set a "
4656 " suitable DMA mask - aboring\n", ha->host_no);
4657 error = -ENODEV;
4658 goto error_free_irq;
4659 }
4660#endif
4661
4662 ha->request_ring = pci_alloc_consistent(ha->pdev,
4663 ((REQUEST_ENTRY_CNT + 1) * (sizeof(request_t))),
4664 &ha->request_dma);
4665 if (!ha->request_ring) {
4666 printk(KERN_INFO "qla1280: Failed to get request memory\n");
4667 goto error_put_host;
4668 }
4669
4670 ha->response_ring = pci_alloc_consistent(ha->pdev,
4671 ((RESPONSE_ENTRY_CNT + 1) * (sizeof(struct response))),
4672 &ha->response_dma);
4673 if (!ha->response_ring) {
4674 printk(KERN_INFO "qla1280: Failed to get response memory\n");
4675 goto error_free_request_ring;
4676 }
4677
4678 ha->ports = bdp->numPorts;
4679
4680 ha->host = host;
4681 ha->host_no = host->host_no;
4682
4683 host->irq = pdev->irq;
4684 host->max_channel = bdp->numPorts - 1;
4685 host->max_lun = MAX_LUNS - 1;
4686 host->max_id = MAX_TARGETS;
4687 host->max_sectors = 1024;
4688 host->unique_id = host->host_no;
4689
4690#if LINUX_VERSION_CODE < 0x020545
4691 host->select_queue_depths = qla1280_select_queue_depth;
4692#endif
4693
4694 error = -ENODEV;
4695
4696#if MEMORY_MAPPED_IO
4697 ha->mmpbase = ioremap(pci_resource_start(ha->pdev, 1),
4698 pci_resource_len(ha->pdev, 1));
4699 if (!ha->mmpbase) {
4700 printk(KERN_INFO "qla1280: Unable to map I/O memory\n");
4701 goto error_free_response_ring;
4702 }
4703
4704 host->base = (unsigned long)ha->mmpbase;
4705 ha->iobase = (struct device_reg __iomem *)ha->mmpbase;
4706#else
4707 host->io_port = pci_resource_start(ha->pdev, 0);
4708 if (!request_region(host->io_port, 0xff, "qla1280")) {
4709 printk(KERN_INFO "qla1280: Failed to reserve i/o region "
4710 "0x%04lx-0x%04lx - already in use\n",
4711 host->io_port, host->io_port + 0xff);
4712 goto error_free_response_ring;
4713 }
4714
4715 ha->iobase = (struct device_reg *)host->io_port;
4716#endif
4717
4718 INIT_LIST_HEAD(&ha->done_q);
4719
4720 /* Disable ISP interrupts. */
4721 qla1280_disable_intrs(ha);
4722
4723 if (request_irq(pdev->irq, qla1280_intr_handler, SA_SHIRQ,
4724 "qla1280", ha)) {
4725 printk("qla1280 : Failed to reserve interrupt %d already "
4726 "in use\n", pdev->irq);
4727 goto error_release_region;
4728 }
4729
4730 /* load the F/W, read paramaters, and init the H/W */
4731 if (qla1280_initialize_adapter(ha)) {
4732 printk(KERN_INFO "qla1x160: Failed to initialize adapter\n");
4733 goto error_free_irq;
4734 }
4735
4736 /* set our host ID (need to do something about our two IDs) */
4737 host->this_id = ha->bus_settings[0].id;
4738
4739 pci_set_drvdata(pdev, host);
4740
4741#if LINUX_VERSION_CODE >= 0x020600
4742 error = scsi_add_host(host, &pdev->dev);
4743 if (error)
4744 goto error_disable_adapter;
4745 scsi_scan_host(host);
4746#else
4747 scsi_set_pci_device(host, pdev);
4748#endif
4749
4750 return 0;
4751
4752#if LINUX_VERSION_CODE >= 0x020600
4753 error_disable_adapter:
4754 WRT_REG_WORD(&ha->iobase->ictrl, 0);
4755#endif
4756 error_free_irq:
4757 free_irq(pdev->irq, ha);
4758 error_release_region:
4759#if MEMORY_MAPPED_IO
4760 iounmap(ha->mmpbase);
4761#else
4762 release_region(host->io_port, 0xff);
4763#endif
4764 error_free_response_ring:
4765 pci_free_consistent(ha->pdev,
4766 ((RESPONSE_ENTRY_CNT + 1) * (sizeof(struct response))),
4767 ha->response_ring, ha->response_dma);
4768 error_free_request_ring:
4769 pci_free_consistent(ha->pdev,
4770 ((REQUEST_ENTRY_CNT + 1) * (sizeof(request_t))),
4771 ha->request_ring, ha->request_dma);
4772 error_put_host:
4773 scsi_host_put(host);
4774 error_disable_device:
4775 pci_disable_device(pdev);
4776 error:
4777 return error;
4778}
4779
4780
4781static void __devexit
4782qla1280_remove_one(struct pci_dev *pdev)
4783{
4784 struct Scsi_Host *host = pci_get_drvdata(pdev);
4785 struct scsi_qla_host *ha = (struct scsi_qla_host *)host->hostdata;
4786
4787#if LINUX_VERSION_CODE >= 0x020600
4788 scsi_remove_host(host);
4789#endif
4790
4791 WRT_REG_WORD(&ha->iobase->ictrl, 0);
4792
4793 free_irq(pdev->irq, ha);
4794
4795#if MEMORY_MAPPED_IO
4796 iounmap(ha->mmpbase);
4797#else
4798 release_region(host->io_port, 0xff);
4799#endif
4800
4801 pci_free_consistent(ha->pdev,
4802 ((REQUEST_ENTRY_CNT + 1) * (sizeof(request_t))),
4803 ha->request_ring, ha->request_dma);
4804 pci_free_consistent(ha->pdev,
4805 ((RESPONSE_ENTRY_CNT + 1) * (sizeof(struct response))),
4806 ha->response_ring, ha->response_dma);
4807
4808 pci_disable_device(pdev);
4809
4810 scsi_host_put(host);
4811}
4812
4813#if LINUX_VERSION_CODE >= 0x020600
4814static struct pci_driver qla1280_pci_driver = {
4815 .name = "qla1280",
4816 .id_table = qla1280_pci_tbl,
4817 .probe = qla1280_probe_one,
4818 .remove = __devexit_p(qla1280_remove_one),
4819};
4820
4821static int __init
4822qla1280_init(void)
4823{
4824 if (sizeof(struct srb) > sizeof(struct scsi_pointer)) {
4825 printk(KERN_WARNING
4826 "qla1280: struct srb too big, aborting\n");
4827 return -EINVAL;
4828 }
4829
4830#ifdef MODULE
4831 /*
4832 * If we are called as a module, the qla1280 pointer may not be null
4833 * and it would point to our bootup string, just like on the lilo
4834 * command line. IF not NULL, then process this config string with
4835 * qla1280_setup
4836 *
4837 * Boot time Options
4838 * To add options at boot time add a line to your lilo.conf file like:
4839 * append="qla1280=verbose,max_tags:{{255,255,255,255},{255,255,255,255}}"
4840 * which will result in the first four devices on the first two
4841 * controllers being set to a tagged queue depth of 32.
4842 */
4843 if (qla1280)
4844 qla1280_setup(qla1280);
4845#endif
4846
4847 return pci_module_init(&qla1280_pci_driver);
4848}
4849
4850static void __exit
4851qla1280_exit(void)
4852{
4853 pci_unregister_driver(&qla1280_pci_driver);
4854}
4855
4856module_init(qla1280_init);
4857module_exit(qla1280_exit);
4858
4859#else
4860# define driver_template qla1280_driver_template
4861# include "scsi_module.c"
4862#endif
4863
4864MODULE_AUTHOR("Qlogic & Jes Sorensen");
4865MODULE_DESCRIPTION("Qlogic ISP SCSI (qla1x80/qla1x160) driver");
4866MODULE_LICENSE("GPL");
4867MODULE_VERSION(QLA1280_VERSION);
4868
4869/*
4870 * Overrides for Emacs so that we almost follow Linus's tabbing style.
4871 * Emacs will notice this stuff at the end of the file and automatically
4872 * adjust the settings for this buffer only. This must remain at the end
4873 * of the file.
4874 * ---------------------------------------------------------------------------
4875 * Local variables:
4876 * c-basic-offset: 8
4877 * tab-width: 8
4878 * End:
4879 */