[SCSI] fusion - mptctl - Event Log Fix
[safe/jmp/linux-2.6] / drivers / message / fusion / mptctl.c
1 /*
2  *  linux/drivers/message/fusion/mptctl.c
3  *      mpt Ioctl driver.
4  *      For use with LSI Logic PCI chip/adapters
5  *      running LSI Logic Fusion MPT (Message Passing Technology) firmware.
6  *
7  *  Copyright (c) 1999-2005 LSI Logic Corporation
8  *  (mailto:mpt_linux_developer@lsil.com)
9  *
10  */
11 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
12 /*
13     This program is free software; you can redistribute it and/or modify
14     it under the terms of the GNU General Public License as published by
15     the Free Software Foundation; version 2 of the License.
16
17     This program is distributed in the hope that it will be useful,
18     but WITHOUT ANY WARRANTY; without even the implied warranty of
19     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
20     GNU General Public License for more details.
21
22     NO WARRANTY
23     THE PROGRAM IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OR
24     CONDITIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED INCLUDING, WITHOUT
25     LIMITATION, ANY WARRANTIES OR CONDITIONS OF TITLE, NON-INFRINGEMENT,
26     MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE. Each Recipient is
27     solely responsible for determining the appropriateness of using and
28     distributing the Program and assumes all risks associated with its
29     exercise of rights under this Agreement, including but not limited to
30     the risks and costs of program errors, damage to or loss of data,
31     programs or equipment, and unavailability or interruption of operations.
32
33     DISCLAIMER OF LIABILITY
34     NEITHER RECIPIENT NOR ANY CONTRIBUTORS SHALL HAVE ANY LIABILITY FOR ANY
35     DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
36     DAMAGES (INCLUDING WITHOUT LIMITATION LOST PROFITS), HOWEVER CAUSED AND
37     ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR
38     TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE
39     USE OR DISTRIBUTION OF THE PROGRAM OR THE EXERCISE OF ANY RIGHTS GRANTED
40     HEREUNDER, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGES
41
42     You should have received a copy of the GNU General Public License
43     along with this program; if not, write to the Free Software
44     Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
45 */
46 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
47
48 #include <linux/kernel.h>
49 #include <linux/module.h>
50 #include <linux/errno.h>
51 #include <linux/init.h>
52 #include <linux/slab.h>
53 #include <linux/types.h>
54 #include <linux/pci.h>
55 #include <linux/delay.h>        /* for mdelay */
56 #include <linux/miscdevice.h>
57 #include <linux/smp_lock.h>
58 #include <linux/compat.h>
59
60 #include <asm/io.h>
61 #include <asm/uaccess.h>
62
63 #include <scsi/scsi.h>
64 #include <scsi/scsi_cmnd.h>
65 #include <scsi/scsi_device.h>
66 #include <scsi/scsi_host.h>
67 #include <scsi/scsi_tcq.h>
68
69 #define COPYRIGHT       "Copyright (c) 1999-2005 LSI Logic Corporation"
70 #define MODULEAUTHOR    "LSI Logic Corporation"
71 #include "mptbase.h"
72 #include "mptctl.h"
73
74 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
75 #define my_NAME         "Fusion MPT misc device (ioctl) driver"
76 #define my_VERSION      MPT_LINUX_VERSION_COMMON
77 #define MYNAM           "mptctl"
78
79 MODULE_AUTHOR(MODULEAUTHOR);
80 MODULE_DESCRIPTION(my_NAME);
81 MODULE_LICENSE("GPL");
82
83 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
84
85 static int mptctl_id = -1;
86
87 static DECLARE_WAIT_QUEUE_HEAD ( mptctl_wait );
88
89 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
90
91 struct buflist {
92         u8      *kptr;
93         int      len;
94 };
95
96 /*
97  * Function prototypes. Called from OS entry point mptctl_ioctl.
98  * arg contents specific to function.
99  */
100 static int mptctl_fw_download(unsigned long arg);
101 static int mptctl_getiocinfo(unsigned long arg, unsigned int cmd);
102 static int mptctl_gettargetinfo(unsigned long arg);
103 static int mptctl_readtest(unsigned long arg);
104 static int mptctl_mpt_command(unsigned long arg);
105 static int mptctl_eventquery(unsigned long arg);
106 static int mptctl_eventenable(unsigned long arg);
107 static int mptctl_eventreport(unsigned long arg);
108 static int mptctl_replace_fw(unsigned long arg);
109
110 static int mptctl_do_reset(unsigned long arg);
111 static int mptctl_hp_hostinfo(unsigned long arg, unsigned int cmd);
112 static int mptctl_hp_targetinfo(unsigned long arg);
113
114 static int  mptctl_probe(struct pci_dev *, const struct pci_device_id *);
115 static void mptctl_remove(struct pci_dev *);
116
117 #ifdef CONFIG_COMPAT
118 static long compat_mpctl_ioctl(struct file *f, unsigned cmd, unsigned long arg);
119 #endif
120 /*
121  * Private function calls.
122  */
123 static int mptctl_do_mpt_command(struct mpt_ioctl_command karg, void __user *mfPtr);
124 static int mptctl_do_fw_download(int ioc, char __user *ufwbuf, size_t fwlen);
125 static MptSge_t *kbuf_alloc_2_sgl(int bytes, u32 dir, int sge_offset, int *frags,
126                 struct buflist **blp, dma_addr_t *sglbuf_dma, MPT_ADAPTER *ioc);
127 static void kfree_sgl(MptSge_t *sgl, dma_addr_t sgl_dma,
128                 struct buflist *buflist, MPT_ADAPTER *ioc);
129 static void mptctl_timeout_expired (MPT_IOCTL *ioctl);
130 static int  mptctl_bus_reset(MPT_IOCTL *ioctl);
131 static int mptctl_set_tm_flags(MPT_SCSI_HOST *hd);
132 static void mptctl_free_tm_flags(MPT_ADAPTER *ioc);
133
134 /*
135  * Reset Handler cleanup function
136  */
137 static int  mptctl_ioc_reset(MPT_ADAPTER *ioc, int reset_phase);
138
139 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
140 /*
141  * Scatter gather list (SGL) sizes and limits...
142  */
143 //#define MAX_SCSI_FRAGS        9
144 #define MAX_FRAGS_SPILL1        9
145 #define MAX_FRAGS_SPILL2        15
146 #define FRAGS_PER_BUCKET        (MAX_FRAGS_SPILL2 + 1)
147
148 //#define MAX_CHAIN_FRAGS       64
149 //#define MAX_CHAIN_FRAGS       (15+15+15+16)
150 #define MAX_CHAIN_FRAGS         (4 * MAX_FRAGS_SPILL2 + 1)
151
152 //  Define max sg LIST bytes ( == (#frags + #chains) * 8 bytes each)
153 //  Works out to: 592d bytes!     (9+1)*8 + 4*(15+1)*8
154 //                  ^----------------- 80 + 512
155 #define MAX_SGL_BYTES           ((MAX_FRAGS_SPILL1 + 1 + (4 * FRAGS_PER_BUCKET)) * 8)
156
157 /* linux only seems to ever give 128kB MAX contiguous (GFP_USER) mem bytes */
158 #define MAX_KMALLOC_SZ          (128*1024)
159
160 #define MPT_IOCTL_DEFAULT_TIMEOUT 10    /* Default timeout value (seconds) */
161
162 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
163 /**
164  *      mptctl_syscall_down - Down the MPT adapter syscall semaphore.
165  *      @ioc: Pointer to MPT adapter
166  *      @nonblock: boolean, non-zero if O_NONBLOCK is set
167  *
168  *      All of the ioctl commands can potentially sleep, which is illegal
169  *      with a spinlock held, thus we perform mutual exclusion here.
170  *
171  *      Returns negative errno on error, or zero for success.
172  */
173 static inline int
174 mptctl_syscall_down(MPT_ADAPTER *ioc, int nonblock)
175 {
176         int rc = 0;
177         dctlprintk((KERN_INFO MYNAM "::mptctl_syscall_down(%p,%d) called\n", ioc, nonblock));
178
179         if (nonblock) {
180                 if (!mutex_trylock(&ioc->ioctl->ioctl_mutex))
181                         rc = -EAGAIN;
182         } else {
183                 if (mutex_lock_interruptible(&ioc->ioctl->ioctl_mutex))
184                         rc = -ERESTARTSYS;
185         }
186         dctlprintk((KERN_INFO MYNAM "::mptctl_syscall_down return %d\n", rc));
187         return rc;
188 }
189
190 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
191 /*
192  *  This is the callback for any message we have posted. The message itself
193  *  will be returned to the message pool when we return from the IRQ
194  *
195  *  This runs in irq context so be short and sweet.
196  */
197 static int
198 mptctl_reply(MPT_ADAPTER *ioc, MPT_FRAME_HDR *req, MPT_FRAME_HDR *reply)
199 {
200         char *sense_data;
201         int sz, req_index;
202         u16 iocStatus;
203         u8 cmd;
204
205         dctlprintk(("mptctl_reply()!\n"));
206         if (req)
207                  cmd = req->u.hdr.Function;
208         else
209                 return 1;
210
211         if (ioc->ioctl) {
212
213                 if (reply==NULL) {
214
215                         dctlprintk(("mptctl_reply() NULL Reply "
216                                 "Function=%x!\n", cmd));
217
218                         ioc->ioctl->status |= MPT_IOCTL_STATUS_COMMAND_GOOD;
219                         ioc->ioctl->reset &= ~MPTCTL_RESET_OK;
220
221                         /* We are done, issue wake up
222                         */
223                         ioc->ioctl->wait_done = 1;
224                         wake_up (&mptctl_wait);
225                         return 1;
226
227                 }
228
229                 dctlprintk(("mptctl_reply() with req=%p "
230                         "reply=%p Function=%x!\n", req, reply, cmd));
231
232                 /* Copy the reply frame (which much exist
233                  * for non-SCSI I/O) to the IOC structure.
234                  */
235                 dctlprintk(("Copying Reply Frame @%p to ioc%d!\n",
236                         reply, ioc->id));
237                 memcpy(ioc->ioctl->ReplyFrame, reply,
238                         min(ioc->reply_sz, 4*reply->u.reply.MsgLength));
239                 ioc->ioctl->status |= MPT_IOCTL_STATUS_RF_VALID;
240
241                 /* Set the command status to GOOD if IOC Status is GOOD
242                  * OR if SCSI I/O cmd and data underrun or recovered error.
243                  */
244                 iocStatus = le16_to_cpu(reply->u.reply.IOCStatus) & MPI_IOCSTATUS_MASK;
245                 if (iocStatus  == MPI_IOCSTATUS_SUCCESS)
246                         ioc->ioctl->status |= MPT_IOCTL_STATUS_COMMAND_GOOD;
247
248                 if ((cmd == MPI_FUNCTION_SCSI_IO_REQUEST) ||
249                         (cmd == MPI_FUNCTION_RAID_SCSI_IO_PASSTHROUGH)) {
250                         ioc->ioctl->reset &= ~MPTCTL_RESET_OK;
251
252                         if ((iocStatus == MPI_IOCSTATUS_SCSI_DATA_UNDERRUN) ||
253                         (iocStatus == MPI_IOCSTATUS_SCSI_RECOVERED_ERROR)) {
254                         ioc->ioctl->status |= MPT_IOCTL_STATUS_COMMAND_GOOD;
255                         }
256                 }
257
258                 /* Copy the sense data - if present
259                  */
260                 if ((cmd == MPI_FUNCTION_SCSI_IO_REQUEST) &&
261                         (reply->u.sreply.SCSIState &
262                          MPI_SCSI_STATE_AUTOSENSE_VALID)){
263                         sz = req->u.scsireq.SenseBufferLength;
264                         req_index =
265                             le16_to_cpu(req->u.frame.hwhdr.msgctxu.fld.req_idx);
266                         sense_data =
267                             ((u8 *)ioc->sense_buf_pool +
268                              (req_index * MPT_SENSE_BUFFER_ALLOC));
269                         memcpy(ioc->ioctl->sense, sense_data, sz);
270                         ioc->ioctl->status |= MPT_IOCTL_STATUS_SENSE_VALID;
271                 }
272
273                 if (cmd == MPI_FUNCTION_SCSI_TASK_MGMT)
274                         mptctl_free_tm_flags(ioc);
275
276                 /* We are done, issue wake up
277                  */
278                 ioc->ioctl->wait_done = 1;
279                 wake_up (&mptctl_wait);
280         }
281         return 1;
282 }
283
284 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
285 /* mptctl_timeout_expired
286  *
287  * Expecting an interrupt, however timed out.
288  *
289  */
290 static void mptctl_timeout_expired (MPT_IOCTL *ioctl)
291 {
292         int rc = 1;
293
294         dctlprintk((KERN_NOTICE MYNAM ": Timeout Expired! Host %d\n",
295                                 ioctl->ioc->id));
296         if (ioctl == NULL)
297                 return;
298
299         ioctl->wait_done = 0;
300         if (ioctl->reset & MPTCTL_RESET_OK)
301                 rc = mptctl_bus_reset(ioctl);
302
303         if (rc) {
304                 /* Issue a reset for this device.
305                  * The IOC is not responding.
306                  */
307                 dctlprintk((MYIOC_s_INFO_FMT "Calling HardReset! \n",
308                          ioctl->ioc->name));
309                 mpt_HardResetHandler(ioctl->ioc, NO_SLEEP);
310         }
311         return;
312
313 }
314
315 /* mptctl_bus_reset
316  *
317  * Bus reset code.
318  *
319  */
320 static int mptctl_bus_reset(MPT_IOCTL *ioctl)
321 {
322         MPT_FRAME_HDR   *mf;
323         SCSITaskMgmt_t  *pScsiTm;
324         MPT_SCSI_HOST   *hd;
325         int              ii;
326         int              retval;
327
328
329         ioctl->reset &= ~MPTCTL_RESET_OK;
330
331         if (ioctl->ioc->sh == NULL)
332                 return -EPERM;
333
334         hd = (MPT_SCSI_HOST *) ioctl->ioc->sh->hostdata;
335         if (hd == NULL)
336                 return -EPERM;
337
338         /* Single threading ....
339          */
340         if (mptctl_set_tm_flags(hd) != 0)
341                 return -EPERM;
342
343         /* Send request
344          */
345         if ((mf = mpt_get_msg_frame(mptctl_id, ioctl->ioc)) == NULL) {
346                 dctlprintk((MYIOC_s_WARN_FMT "IssueTaskMgmt, no msg frames!!\n",
347                                 ioctl->ioc->name));
348
349                 mptctl_free_tm_flags(ioctl->ioc);
350                 return -ENOMEM;
351         }
352
353         dtmprintk((MYIOC_s_INFO_FMT "IssueTaskMgmt request @ %p\n",
354                         ioctl->ioc->name, mf));
355
356         pScsiTm = (SCSITaskMgmt_t *) mf;
357         pScsiTm->TargetID = ioctl->target;
358         pScsiTm->Bus = hd->port;        /* 0 */
359         pScsiTm->ChainOffset = 0;
360         pScsiTm->Function = MPI_FUNCTION_SCSI_TASK_MGMT;
361         pScsiTm->Reserved = 0;
362         pScsiTm->TaskType = MPI_SCSITASKMGMT_TASKTYPE_RESET_BUS;
363         pScsiTm->Reserved1 = 0;
364         pScsiTm->MsgFlags = MPI_SCSITASKMGMT_MSGFLAGS_LIPRESET_RESET_OPTION;
365
366         for (ii= 0; ii < 8; ii++)
367                 pScsiTm->LUN[ii] = 0;
368
369         for (ii=0; ii < 7; ii++)
370                 pScsiTm->Reserved2[ii] = 0;
371
372         pScsiTm->TaskMsgContext = 0;
373         dtmprintk((MYIOC_s_INFO_FMT
374                 "mptctl_bus_reset: issued.\n", ioctl->ioc->name));
375
376         DBG_DUMP_TM_REQUEST_FRAME((u32 *)mf);
377
378         ioctl->wait_done=0;
379         if ((retval = mpt_send_handshake_request(mptctl_id, ioctl->ioc,
380              sizeof(SCSITaskMgmt_t), (u32*)pScsiTm, CAN_SLEEP)) != 0) {
381                 dfailprintk((MYIOC_s_ERR_FMT "_send_handshake FAILED!"
382                         " (hd %p, ioc %p, mf %p) \n", hd->ioc->name, hd,
383                         hd->ioc, mf));
384                 goto mptctl_bus_reset_done;
385         }
386
387         /* Now wait for the command to complete */
388         ii = wait_event_timeout(mptctl_wait,
389              ioctl->wait_done == 1,
390              HZ*5 /* 5 second timeout */);
391
392         if(ii <=0 && (ioctl->wait_done != 1 ))  {
393                 mpt_free_msg_frame(hd->ioc, mf);
394                 ioctl->wait_done = 0;
395                 retval = -1; /* return failure */
396         }
397
398 mptctl_bus_reset_done:
399
400         mptctl_free_tm_flags(ioctl->ioc);
401         return retval;
402 }
403
404 static int
405 mptctl_set_tm_flags(MPT_SCSI_HOST *hd) {
406         unsigned long flags;
407
408         spin_lock_irqsave(&hd->ioc->FreeQlock, flags);
409
410         if (hd->tmState == TM_STATE_NONE) {
411                 hd->tmState = TM_STATE_IN_PROGRESS;
412                 hd->tmPending = 1;
413                 spin_unlock_irqrestore(&hd->ioc->FreeQlock, flags);
414         } else {
415                 spin_unlock_irqrestore(&hd->ioc->FreeQlock, flags);
416                 return -EBUSY;
417         }
418
419         return 0;
420 }
421
422 static void
423 mptctl_free_tm_flags(MPT_ADAPTER *ioc)
424 {
425         MPT_SCSI_HOST * hd;
426         unsigned long flags;
427
428         hd = (MPT_SCSI_HOST *) ioc->sh->hostdata;
429         if (hd == NULL)
430                 return;
431
432         spin_lock_irqsave(&ioc->FreeQlock, flags);
433
434         hd->tmState = TM_STATE_NONE;
435         hd->tmPending = 0;
436         spin_unlock_irqrestore(&ioc->FreeQlock, flags);
437
438         return;
439 }
440
441 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
442 /* mptctl_ioc_reset
443  *
444  * Clean-up functionality. Used only if there has been a
445  * reload of the FW due.
446  *
447  */
448 static int
449 mptctl_ioc_reset(MPT_ADAPTER *ioc, int reset_phase)
450 {
451         MPT_IOCTL *ioctl = ioc->ioctl;
452         dctlprintk((KERN_INFO MYNAM ": IOC %s_reset routed to IOCTL driver!\n",
453                 reset_phase==MPT_IOC_SETUP_RESET ? "setup" : (
454                 reset_phase==MPT_IOC_PRE_RESET ? "pre" : "post")));
455
456         if(ioctl == NULL)
457                 return 1;
458
459         switch(reset_phase) {
460         case MPT_IOC_SETUP_RESET:
461                 ioctl->status |= MPT_IOCTL_STATUS_DID_IOCRESET;
462                 break;
463         case MPT_IOC_POST_RESET:
464                 ioctl->status &= ~MPT_IOCTL_STATUS_DID_IOCRESET;
465                 break;
466         case MPT_IOC_PRE_RESET:
467         default:
468                 break;
469         }
470
471         return 1;
472 }
473
474 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
475 /*
476  *  MPT ioctl handler
477  *  cmd - specify the particular IOCTL command to be issued
478  *  arg - data specific to the command. Must not be null.
479  */
480 static long
481 __mptctl_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
482 {
483         mpt_ioctl_header __user *uhdr = (void __user *) arg;
484         mpt_ioctl_header         khdr;
485         int iocnum;
486         unsigned iocnumX;
487         int nonblock = (file->f_flags & O_NONBLOCK);
488         int ret;
489         MPT_ADAPTER *iocp = NULL;
490
491         dctlprintk(("mptctl_ioctl() called\n"));
492
493         if (copy_from_user(&khdr, uhdr, sizeof(khdr))) {
494                 printk(KERN_ERR "%s::mptctl_ioctl() @%d - "
495                                 "Unable to copy mpt_ioctl_header data @ %p\n",
496                                 __FILE__, __LINE__, uhdr);
497                 return -EFAULT;
498         }
499         ret = -ENXIO;                           /* (-6) No such device or address */
500
501         /* Verify intended MPT adapter - set iocnum and the adapter
502          * pointer (iocp)
503          */
504         iocnumX = khdr.iocnum & 0xFF;
505         if (((iocnum = mpt_verify_adapter(iocnumX, &iocp)) < 0) ||
506             (iocp == NULL)) {
507                 dctlprintk((KERN_ERR "%s::mptctl_ioctl() @%d - ioc%d not found!\n",
508                                 __FILE__, __LINE__, iocnumX));
509                 return -ENODEV;
510         }
511
512         if (!iocp->active) {
513                 printk(KERN_ERR "%s::mptctl_ioctl() @%d - Controller disabled.\n",
514                                 __FILE__, __LINE__);
515                 return -EFAULT;
516         }
517
518         /* Handle those commands that are just returning
519          * information stored in the driver.
520          * These commands should never time out and are unaffected
521          * by TM and FW reloads.
522          */
523         if ((cmd & ~IOCSIZE_MASK) == (MPTIOCINFO & ~IOCSIZE_MASK)) {
524                 return mptctl_getiocinfo(arg, _IOC_SIZE(cmd));
525         } else if (cmd == MPTTARGETINFO) {
526                 return mptctl_gettargetinfo(arg);
527         } else if (cmd == MPTTEST) {
528                 return mptctl_readtest(arg);
529         } else if (cmd == MPTEVENTQUERY) {
530                 return mptctl_eventquery(arg);
531         } else if (cmd == MPTEVENTENABLE) {
532                 return mptctl_eventenable(arg);
533         } else if (cmd == MPTEVENTREPORT) {
534                 return mptctl_eventreport(arg);
535         } else if (cmd == MPTFWREPLACE) {
536                 return mptctl_replace_fw(arg);
537         }
538
539         /* All of these commands require an interrupt or
540          * are unknown/illegal.
541          */
542         if ((ret = mptctl_syscall_down(iocp, nonblock)) != 0)
543                 return ret;
544
545         dctlprintk((MYIOC_s_INFO_FMT ": mptctl_ioctl()\n", iocp->name));
546
547         if (cmd == MPTFWDOWNLOAD)
548                 ret = mptctl_fw_download(arg);
549         else if (cmd == MPTCOMMAND)
550                 ret = mptctl_mpt_command(arg);
551         else if (cmd == MPTHARDRESET)
552                 ret = mptctl_do_reset(arg);
553         else if ((cmd & ~IOCSIZE_MASK) == (HP_GETHOSTINFO & ~IOCSIZE_MASK))
554                 ret = mptctl_hp_hostinfo(arg, _IOC_SIZE(cmd));
555         else if (cmd == HP_GETTARGETINFO)
556                 ret = mptctl_hp_targetinfo(arg);
557         else
558                 ret = -EINVAL;
559
560         mutex_unlock(&iocp->ioctl->ioctl_mutex);
561
562         return ret;
563 }
564
565 static long
566 mptctl_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
567 {
568         long ret;
569         lock_kernel();
570         ret = __mptctl_ioctl(file, cmd, arg);
571         unlock_kernel();
572         return ret;
573 }
574
575 static int mptctl_do_reset(unsigned long arg)
576 {
577         struct mpt_ioctl_diag_reset __user *urinfo = (void __user *) arg;
578         struct mpt_ioctl_diag_reset krinfo;
579         MPT_ADAPTER             *iocp;
580
581         dctlprintk((KERN_INFO "mptctl_do_reset called.\n"));
582
583         if (copy_from_user(&krinfo, urinfo, sizeof(struct mpt_ioctl_diag_reset))) {
584                 printk(KERN_ERR "%s@%d::mptctl_do_reset - "
585                                 "Unable to copy mpt_ioctl_diag_reset struct @ %p\n",
586                                 __FILE__, __LINE__, urinfo);
587                 return -EFAULT;
588         }
589
590         if (mpt_verify_adapter(krinfo.hdr.iocnum, &iocp) < 0) {
591                 dctlprintk((KERN_ERR "%s@%d::mptctl_do_reset - ioc%d not found!\n",
592                                 __FILE__, __LINE__, krinfo.hdr.iocnum));
593                 return -ENODEV; /* (-6) No such device or address */
594         }
595
596         if (mpt_HardResetHandler(iocp, CAN_SLEEP) != 0) {
597                 printk (KERN_ERR "%s@%d::mptctl_do_reset - reset failed.\n",
598                         __FILE__, __LINE__);
599                 return -1;
600         }
601
602         return 0;
603 }
604
605 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
606 /*
607  * MPT FW download function.  Cast the arg into the mpt_fw_xfer structure.
608  * This structure contains: iocnum, firmware length (bytes),
609  *      pointer to user space memory where the fw image is stored.
610  *
611  * Outputs:     None.
612  * Return:      0 if successful
613  *              -EFAULT if data unavailable
614  *              -ENXIO  if no such device
615  *              -EAGAIN if resource problem
616  *              -ENOMEM if no memory for SGE
617  *              -EMLINK if too many chain buffers required
618  *              -EBADRQC if adapter does not support FW download
619  *              -EBUSY if adapter is busy
620  *              -ENOMSG if FW upload returned bad status
621  */
622 static int
623 mptctl_fw_download(unsigned long arg)
624 {
625         struct mpt_fw_xfer __user *ufwdl = (void __user *) arg;
626         struct mpt_fw_xfer       kfwdl;
627
628         dctlprintk((KERN_INFO "mptctl_fwdl called. mptctl_id = %xh\n", mptctl_id)); //tc
629         if (copy_from_user(&kfwdl, ufwdl, sizeof(struct mpt_fw_xfer))) {
630                 printk(KERN_ERR "%s@%d::_ioctl_fwdl - "
631                                 "Unable to copy mpt_fw_xfer struct @ %p\n",
632                                 __FILE__, __LINE__, ufwdl);
633                 return -EFAULT;
634         }
635
636         return mptctl_do_fw_download(kfwdl.iocnum, kfwdl.bufp, kfwdl.fwlen);
637 }
638
639 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
640 /*
641  * FW Download engine.
642  * Outputs:     None.
643  * Return:      0 if successful
644  *              -EFAULT if data unavailable
645  *              -ENXIO  if no such device
646  *              -EAGAIN if resource problem
647  *              -ENOMEM if no memory for SGE
648  *              -EMLINK if too many chain buffers required
649  *              -EBADRQC if adapter does not support FW download
650  *              -EBUSY if adapter is busy
651  *              -ENOMSG if FW upload returned bad status
652  */
653 static int
654 mptctl_do_fw_download(int ioc, char __user *ufwbuf, size_t fwlen)
655 {
656         FWDownload_t            *dlmsg;
657         MPT_FRAME_HDR           *mf;
658         MPT_ADAPTER             *iocp;
659         FWDownloadTCSGE_t       *ptsge;
660         MptSge_t                *sgl, *sgIn;
661         char                    *sgOut;
662         struct buflist          *buflist;
663         struct buflist          *bl;
664         dma_addr_t               sgl_dma;
665         int                      ret;
666         int                      numfrags = 0;
667         int                      maxfrags;
668         int                      n = 0;
669         u32                      sgdir;
670         u32                      nib;
671         int                      fw_bytes_copied = 0;
672         int                      i;
673         int                      sge_offset = 0;
674         u16                      iocstat;
675         pFWDownloadReply_t       ReplyMsg = NULL;
676
677         dctlprintk((KERN_INFO "mptctl_do_fwdl called. mptctl_id = %xh.\n", mptctl_id));
678
679         dctlprintk((KERN_INFO "DbG: kfwdl.bufp  = %p\n", ufwbuf));
680         dctlprintk((KERN_INFO "DbG: kfwdl.fwlen = %d\n", (int)fwlen));
681         dctlprintk((KERN_INFO "DbG: kfwdl.ioc   = %04xh\n", ioc));
682
683         if ((ioc = mpt_verify_adapter(ioc, &iocp)) < 0) {
684                 dctlprintk(("%s@%d::_ioctl_fwdl - ioc%d not found!\n",
685                                 __FILE__, __LINE__, ioc));
686                 return -ENODEV; /* (-6) No such device or address */
687         }
688
689         /*  Valid device. Get a message frame and construct the FW download message.
690          */
691         if ((mf = mpt_get_msg_frame(mptctl_id, iocp)) == NULL)
692                 return -EAGAIN;
693         dlmsg = (FWDownload_t*) mf;
694         ptsge = (FWDownloadTCSGE_t *) &dlmsg->SGL;
695         sgOut = (char *) (ptsge + 1);
696
697         /*
698          * Construct f/w download request
699          */
700         dlmsg->ImageType = MPI_FW_DOWNLOAD_ITYPE_FW;
701         dlmsg->Reserved = 0;
702         dlmsg->ChainOffset = 0;
703         dlmsg->Function = MPI_FUNCTION_FW_DOWNLOAD;
704         dlmsg->Reserved1[0] = dlmsg->Reserved1[1] = dlmsg->Reserved1[2] = 0;
705         dlmsg->MsgFlags = 0;
706
707         /* Set up the Transaction SGE.
708          */
709         ptsge->Reserved = 0;
710         ptsge->ContextSize = 0;
711         ptsge->DetailsLength = 12;
712         ptsge->Flags = MPI_SGE_FLAGS_TRANSACTION_ELEMENT;
713         ptsge->Reserved_0100_Checksum = 0;
714         ptsge->ImageOffset = 0;
715         ptsge->ImageSize = cpu_to_le32(fwlen);
716
717         /* Add the SGL
718          */
719
720         /*
721          * Need to kmalloc area(s) for holding firmware image bytes.
722          * But we need to do it piece meal, using a proper
723          * scatter gather list (with 128kB MAX hunks).
724          *
725          * A practical limit here might be # of sg hunks that fit into
726          * a single IOC request frame; 12 or 8 (see below), so:
727          * For FC9xx: 12 x 128kB == 1.5 mB (max)
728          * For C1030:  8 x 128kB == 1   mB (max)
729          * We could support chaining, but things get ugly(ier:)
730          *
731          * Set the sge_offset to the start of the sgl (bytes).
732          */
733         sgdir = 0x04000000;             /* IOC will READ from sys mem */
734         sge_offset = sizeof(MPIHeader_t) + sizeof(FWDownloadTCSGE_t);
735         if ((sgl = kbuf_alloc_2_sgl(fwlen, sgdir, sge_offset,
736                                     &numfrags, &buflist, &sgl_dma, iocp)) == NULL)
737                 return -ENOMEM;
738
739         /*
740          * We should only need SGL with 2 simple_32bit entries (up to 256 kB)
741          * for FC9xx f/w image, but calculate max number of sge hunks
742          * we can fit into a request frame, and limit ourselves to that.
743          * (currently no chain support)
744          * maxfrags = (Request Size - FWdownload Size ) / Size of 32 bit SGE
745          *      Request         maxfrags
746          *      128             12
747          *      96              8
748          *      64              4
749          */
750         maxfrags = (iocp->req_sz - sizeof(MPIHeader_t) - sizeof(FWDownloadTCSGE_t))
751                         / (sizeof(dma_addr_t) + sizeof(u32));
752         if (numfrags > maxfrags) {
753                 ret = -EMLINK;
754                 goto fwdl_out;
755         }
756
757         dctlprintk((KERN_INFO "DbG: sgl buffer  = %p, sgfrags = %d\n", sgl, numfrags));
758
759         /*
760          * Parse SG list, copying sgl itself,
761          * plus f/w image hunks from user space as we go...
762          */
763         ret = -EFAULT;
764         sgIn = sgl;
765         bl = buflist;
766         for (i=0; i < numfrags; i++) {
767
768                 /* Get the SGE type: 0 - TCSGE, 3 - Chain, 1 - Simple SGE
769                  * Skip everything but Simple. If simple, copy from
770                  *      user space into kernel space.
771                  * Note: we should not have anything but Simple as
772                  *      Chain SGE are illegal.
773                  */
774                 nib = (sgIn->FlagsLength & 0x30000000) >> 28;
775                 if (nib == 0 || nib == 3) {
776                         ;
777                 } else if (sgIn->Address) {
778                         mpt_add_sge(sgOut, sgIn->FlagsLength, sgIn->Address);
779                         n++;
780                         if (copy_from_user(bl->kptr, ufwbuf+fw_bytes_copied, bl->len)) {
781                                 printk(KERN_ERR "%s@%d::_ioctl_fwdl - "
782                                                 "Unable to copy f/w buffer hunk#%d @ %p\n",
783                                                 __FILE__, __LINE__, n, ufwbuf);
784                                 goto fwdl_out;
785                         }
786                         fw_bytes_copied += bl->len;
787                 }
788                 sgIn++;
789                 bl++;
790                 sgOut += (sizeof(dma_addr_t) + sizeof(u32));
791         }
792
793 #ifdef MPT_DEBUG
794         {
795                 u32 *m = (u32 *)mf;
796                 printk(KERN_INFO MYNAM ": F/W download request:\n" KERN_INFO " ");
797                 for (i=0; i < 7+numfrags*2; i++)
798                         printk(" %08x", le32_to_cpu(m[i]));
799                 printk("\n");
800         }
801 #endif
802
803         /*
804          * Finally, perform firmware download.
805          */
806         iocp->ioctl->wait_done = 0;
807         mpt_put_msg_frame(mptctl_id, iocp, mf);
808
809         /* Now wait for the command to complete */
810         ret = wait_event_timeout(mptctl_wait,
811              iocp->ioctl->wait_done == 1,
812              HZ*60);
813
814         if(ret <=0 && (iocp->ioctl->wait_done != 1 )) {
815         /* Now we need to reset the board */
816                 mptctl_timeout_expired(iocp->ioctl);
817                 ret = -ENODATA;
818                 goto fwdl_out;
819         }
820
821         if (sgl)
822                 kfree_sgl(sgl, sgl_dma, buflist, iocp);
823
824         ReplyMsg = (pFWDownloadReply_t)iocp->ioctl->ReplyFrame;
825         iocstat = le16_to_cpu(ReplyMsg->IOCStatus) & MPI_IOCSTATUS_MASK;
826         if (iocstat == MPI_IOCSTATUS_SUCCESS) {
827                 printk(KERN_INFO MYNAM ": F/W update successfully sent to %s!\n", iocp->name);
828                 return 0;
829         } else if (iocstat == MPI_IOCSTATUS_INVALID_FUNCTION) {
830                 printk(KERN_WARNING MYNAM ": ?Hmmm...  %s says it doesn't support F/W download!?!\n",
831                                 iocp->name);
832                 printk(KERN_WARNING MYNAM ": (time to go bang on somebodies door)\n");
833                 return -EBADRQC;
834         } else if (iocstat == MPI_IOCSTATUS_BUSY) {
835                 printk(KERN_WARNING MYNAM ": Warning!  %s says: IOC_BUSY!\n", iocp->name);
836                 printk(KERN_WARNING MYNAM ": (try again later?)\n");
837                 return -EBUSY;
838         } else {
839                 printk(KERN_WARNING MYNAM "::ioctl_fwdl() ERROR!  %s returned [bad] status = %04xh\n",
840                                     iocp->name, iocstat);
841                 printk(KERN_WARNING MYNAM ": (bad VooDoo)\n");
842                 return -ENOMSG;
843         }
844         return 0;
845
846 fwdl_out:
847         kfree_sgl(sgl, sgl_dma, buflist, iocp);
848         return ret;
849 }
850
851 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
852 /*
853  * SGE Allocation routine
854  *
855  * Inputs:      bytes - number of bytes to be transferred
856  *              sgdir - data direction
857  *              sge_offset - offset (in bytes) from the start of the request
858  *                      frame to the first SGE
859  *              ioc - pointer to the mptadapter
860  * Outputs:     frags - number of scatter gather elements
861  *              blp - point to the buflist pointer
862  *              sglbuf_dma - pointer to the (dma) sgl
863  * Returns:     Null if failes
864  *              pointer to the (virtual) sgl if successful.
865  */
866 static MptSge_t *
867 kbuf_alloc_2_sgl(int bytes, u32 sgdir, int sge_offset, int *frags,
868                  struct buflist **blp, dma_addr_t *sglbuf_dma, MPT_ADAPTER *ioc)
869 {
870         MptSge_t        *sglbuf = NULL;         /* pointer to array of SGE */
871                                                 /* and chain buffers */
872         struct buflist  *buflist = NULL;        /* kernel routine */
873         MptSge_t        *sgl;
874         int              numfrags = 0;
875         int              fragcnt = 0;
876         int              alloc_sz = min(bytes,MAX_KMALLOC_SZ);  // avoid kernel warning msg!
877         int              bytes_allocd = 0;
878         int              this_alloc;
879         dma_addr_t       pa;                                    // phys addr
880         int              i, buflist_ent;
881         int              sg_spill = MAX_FRAGS_SPILL1;
882         int              dir;
883         /* initialization */
884         *frags = 0;
885         *blp = NULL;
886
887         /* Allocate and initialize an array of kernel
888          * structures for the SG elements.
889          */
890         i = MAX_SGL_BYTES / 8;
891         buflist = kmalloc(i, GFP_USER);
892         if (buflist == NULL)
893                 return NULL;
894         memset(buflist, 0, i);
895         buflist_ent = 0;
896
897         /* Allocate a single block of memory to store the sg elements and
898          * the chain buffers.  The calling routine is responsible for
899          * copying the data in this array into the correct place in the
900          * request and chain buffers.
901          */
902         sglbuf = pci_alloc_consistent(ioc->pcidev, MAX_SGL_BYTES, sglbuf_dma);
903         if (sglbuf == NULL)
904                 goto free_and_fail;
905
906         if (sgdir & 0x04000000)
907                 dir = PCI_DMA_TODEVICE;
908         else
909                 dir = PCI_DMA_FROMDEVICE;
910
911         /* At start:
912          *      sgl = sglbuf = point to beginning of sg buffer
913          *      buflist_ent = 0 = first kernel structure
914          *      sg_spill = number of SGE that can be written before the first
915          *              chain element.
916          *
917          */
918         sgl = sglbuf;
919         sg_spill = ((ioc->req_sz - sge_offset)/(sizeof(dma_addr_t) + sizeof(u32))) - 1;
920         while (bytes_allocd < bytes) {
921                 this_alloc = min(alloc_sz, bytes-bytes_allocd);
922                 buflist[buflist_ent].len = this_alloc;
923                 buflist[buflist_ent].kptr = pci_alloc_consistent(ioc->pcidev,
924                                                                  this_alloc,
925                                                                  &pa);
926                 if (buflist[buflist_ent].kptr == NULL) {
927                         alloc_sz = alloc_sz / 2;
928                         if (alloc_sz == 0) {
929                                 printk(KERN_WARNING MYNAM "-SG: No can do - "
930                                                     "not enough memory!   :-(\n");
931                                 printk(KERN_WARNING MYNAM "-SG: (freeing %d frags)\n",
932                                                     numfrags);
933                                 goto free_and_fail;
934                         }
935                         continue;
936                 } else {
937                         dma_addr_t dma_addr;
938
939                         bytes_allocd += this_alloc;
940                         sgl->FlagsLength = (0x10000000|MPT_SGE_FLAGS_ADDRESSING|sgdir|this_alloc);
941                         dma_addr = pci_map_single(ioc->pcidev, buflist[buflist_ent].kptr, this_alloc, dir);
942                         sgl->Address = dma_addr;
943
944                         fragcnt++;
945                         numfrags++;
946                         sgl++;
947                         buflist_ent++;
948                 }
949
950                 if (bytes_allocd >= bytes)
951                         break;
952
953                 /* Need to chain? */
954                 if (fragcnt == sg_spill) {
955                         printk(KERN_WARNING MYNAM "-SG: No can do - " "Chain required!   :-(\n");
956                         printk(KERN_WARNING MYNAM "(freeing %d frags)\n", numfrags);
957                         goto free_and_fail;
958                 }
959
960                 /* overflow check... */
961                 if (numfrags*8 > MAX_SGL_BYTES){
962                         /* GRRRRR... */
963                         printk(KERN_WARNING MYNAM "-SG: No can do - "
964                                             "too many SG frags!   :-(\n");
965                         printk(KERN_WARNING MYNAM "-SG: (freeing %d frags)\n",
966                                             numfrags);
967                         goto free_and_fail;
968                 }
969         }
970
971         /* Last sge fixup: set LE+eol+eob bits */
972         sgl[-1].FlagsLength |= 0xC1000000;
973
974         *frags = numfrags;
975         *blp = buflist;
976
977         dctlprintk((KERN_INFO MYNAM "-SG: kbuf_alloc_2_sgl() - "
978                            "%d SG frags generated!\n",
979                            numfrags));
980
981         dctlprintk((KERN_INFO MYNAM "-SG: kbuf_alloc_2_sgl() - "
982                            "last (big) alloc_sz=%d\n",
983                            alloc_sz));
984
985         return sglbuf;
986
987 free_and_fail:
988         if (sglbuf != NULL) {
989                 int i;
990
991                 for (i = 0; i < numfrags; i++) {
992                         dma_addr_t dma_addr;
993                         u8 *kptr;
994                         int len;
995
996                         if ((sglbuf[i].FlagsLength >> 24) == 0x30)
997                                 continue;
998
999                         dma_addr = sglbuf[i].Address;
1000                         kptr = buflist[i].kptr;
1001                         len = buflist[i].len;
1002
1003                         pci_free_consistent(ioc->pcidev, len, kptr, dma_addr);
1004                 }
1005                 pci_free_consistent(ioc->pcidev, MAX_SGL_BYTES, sglbuf, *sglbuf_dma);
1006         }
1007         kfree(buflist);
1008         return NULL;
1009 }
1010
1011 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
1012 /*
1013  * Routine to free the SGL elements.
1014  */
1015 static void
1016 kfree_sgl(MptSge_t *sgl, dma_addr_t sgl_dma, struct buflist *buflist, MPT_ADAPTER *ioc)
1017 {
1018         MptSge_t        *sg = sgl;
1019         struct buflist  *bl = buflist;
1020         u32              nib;
1021         int              dir;
1022         int              n = 0;
1023
1024         if (sg->FlagsLength & 0x04000000)
1025                 dir = PCI_DMA_TODEVICE;
1026         else
1027                 dir = PCI_DMA_FROMDEVICE;
1028
1029         nib = (sg->FlagsLength & 0xF0000000) >> 28;
1030         while (! (nib & 0x4)) { /* eob */
1031                 /* skip ignore/chain. */
1032                 if (nib == 0 || nib == 3) {
1033                         ;
1034                 } else if (sg->Address) {
1035                         dma_addr_t dma_addr;
1036                         void *kptr;
1037                         int len;
1038
1039                         dma_addr = sg->Address;
1040                         kptr = bl->kptr;
1041                         len = bl->len;
1042                         pci_unmap_single(ioc->pcidev, dma_addr, len, dir);
1043                         pci_free_consistent(ioc->pcidev, len, kptr, dma_addr);
1044                         n++;
1045                 }
1046                 sg++;
1047                 bl++;
1048                 nib = (le32_to_cpu(sg->FlagsLength) & 0xF0000000) >> 28;
1049         }
1050
1051         /* we're at eob! */
1052         if (sg->Address) {
1053                 dma_addr_t dma_addr;
1054                 void *kptr;
1055                 int len;
1056
1057                 dma_addr = sg->Address;
1058                 kptr = bl->kptr;
1059                 len = bl->len;
1060                 pci_unmap_single(ioc->pcidev, dma_addr, len, dir);
1061                 pci_free_consistent(ioc->pcidev, len, kptr, dma_addr);
1062                 n++;
1063         }
1064
1065         pci_free_consistent(ioc->pcidev, MAX_SGL_BYTES, sgl, sgl_dma);
1066         kfree(buflist);
1067         dctlprintk((KERN_INFO MYNAM "-SG: Free'd 1 SGL buf + %d kbufs!\n", n));
1068 }
1069
1070 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
1071 /*
1072  *      mptctl_getiocinfo - Query the host adapter for IOC information.
1073  *      @arg: User space argument
1074  *
1075  * Outputs:     None.
1076  * Return:      0 if successful
1077  *              -EFAULT if data unavailable
1078  *              -ENODEV  if no such device/adapter
1079  */
1080 static int
1081 mptctl_getiocinfo (unsigned long arg, unsigned int data_size)
1082 {
1083         struct mpt_ioctl_iocinfo __user *uarg = (void __user *) arg;
1084         struct mpt_ioctl_iocinfo *karg;
1085         MPT_ADAPTER             *ioc;
1086         struct pci_dev          *pdev;
1087         struct Scsi_Host        *sh;
1088         MPT_SCSI_HOST           *hd;
1089         int                     iocnum;
1090         int                     numDevices = 0;
1091         unsigned int            max_id;
1092         int                     ii;
1093         unsigned int            port;
1094         int                     cim_rev;
1095         u8                      revision;
1096
1097         dctlprintk((": mptctl_getiocinfo called.\n"));
1098         /* Add of PCI INFO results in unaligned access for
1099          * IA64 and Sparc. Reset long to int. Return no PCI
1100          * data for obsolete format.
1101          */
1102         if (data_size == sizeof(struct mpt_ioctl_iocinfo_rev0))
1103                 cim_rev = 0;
1104         else if (data_size == sizeof(struct mpt_ioctl_iocinfo_rev1))
1105                 cim_rev = 1;
1106         else if (data_size == sizeof(struct mpt_ioctl_iocinfo))
1107                 cim_rev = 2;
1108         else if (data_size == (sizeof(struct mpt_ioctl_iocinfo_rev0)+12))
1109                 cim_rev = 0;    /* obsolete */
1110         else
1111                 return -EFAULT;
1112
1113         karg = kmalloc(data_size, GFP_KERNEL);
1114         if (karg == NULL) {
1115                 printk(KERN_ERR "%s::mpt_ioctl_iocinfo() @%d - no memory available!\n",
1116                                 __FILE__, __LINE__);
1117                 return -ENOMEM;
1118         }
1119
1120         if (copy_from_user(karg, uarg, data_size)) {
1121                 printk(KERN_ERR "%s@%d::mptctl_getiocinfo - "
1122                         "Unable to read in mpt_ioctl_iocinfo struct @ %p\n",
1123                                 __FILE__, __LINE__, uarg);
1124                 kfree(karg);
1125                 return -EFAULT;
1126         }
1127
1128         if (((iocnum = mpt_verify_adapter(karg->hdr.iocnum, &ioc)) < 0) ||
1129             (ioc == NULL)) {
1130                 dctlprintk((KERN_ERR "%s::mptctl_getiocinfo() @%d - ioc%d not found!\n",
1131                                 __FILE__, __LINE__, iocnum));
1132                 kfree(karg);
1133                 return -ENODEV;
1134         }
1135
1136         /* Verify the data transfer size is correct. */
1137         if (karg->hdr.maxDataSize != data_size) {
1138                 printk(KERN_ERR "%s@%d::mptctl_getiocinfo - "
1139                         "Structure size mismatch. Command not completed.\n",
1140                                 __FILE__, __LINE__);
1141                 kfree(karg);
1142                 return -EFAULT;
1143         }
1144
1145         /* Fill in the data and return the structure to the calling
1146          * program
1147          */
1148         if (ioc->bus_type == SAS)
1149                 karg->adapterType = MPT_IOCTL_INTERFACE_SAS;
1150         else if (ioc->bus_type == FC)
1151                 karg->adapterType = MPT_IOCTL_INTERFACE_FC;
1152         else
1153                 karg->adapterType = MPT_IOCTL_INTERFACE_SCSI;
1154
1155         if (karg->hdr.port > 1)
1156                 return -EINVAL;
1157         port = karg->hdr.port;
1158
1159         karg->port = port;
1160         pdev = (struct pci_dev *) ioc->pcidev;
1161
1162         karg->pciId = pdev->device;
1163         pci_read_config_byte(pdev, PCI_CLASS_REVISION, &revision);
1164         karg->hwRev = revision;
1165         karg->subSystemDevice = pdev->subsystem_device;
1166         karg->subSystemVendor = pdev->subsystem_vendor;
1167
1168         if (cim_rev == 1) {
1169                 /* Get the PCI bus, device, and function numbers for the IOC
1170                  */
1171                 karg->pciInfo.u.bits.busNumber = pdev->bus->number;
1172                 karg->pciInfo.u.bits.deviceNumber = PCI_SLOT( pdev->devfn );
1173                 karg->pciInfo.u.bits.functionNumber = PCI_FUNC( pdev->devfn );
1174         } else if (cim_rev == 2) {
1175                 /* Get the PCI bus, device, function and segment ID numbers
1176                    for the IOC */
1177                 karg->pciInfo.u.bits.busNumber = pdev->bus->number;
1178                 karg->pciInfo.u.bits.deviceNumber = PCI_SLOT( pdev->devfn );
1179                 karg->pciInfo.u.bits.functionNumber = PCI_FUNC( pdev->devfn );
1180                 karg->pciInfo.segmentID = pci_domain_nr(pdev->bus);
1181         }
1182
1183         /* Get number of devices
1184          */
1185         if ((sh = ioc->sh) != NULL) {
1186                  /* sh->max_id = maximum target ID + 1
1187                  */
1188                 max_id = sh->max_id - 1;
1189                 hd = (MPT_SCSI_HOST *) sh->hostdata;
1190
1191                 /* Check all of the target structures and
1192                  * keep a counter.
1193                  */
1194                 if (hd && hd->Targets) {
1195                         for (ii = 0; ii <= max_id; ii++) {
1196                                 if (hd->Targets[ii])
1197                                         numDevices++;
1198                         }
1199                 }
1200         }
1201         karg->numDevices = numDevices;
1202
1203         /* Set the BIOS and FW Version
1204          */
1205         karg->FWVersion = ioc->facts.FWVersion.Word;
1206         karg->BIOSVersion = ioc->biosVersion;
1207
1208         /* Set the Version Strings.
1209          */
1210         strncpy (karg->driverVersion, MPT_LINUX_PACKAGE_NAME, MPT_IOCTL_VERSION_LENGTH);
1211         karg->driverVersion[MPT_IOCTL_VERSION_LENGTH-1]='\0';
1212
1213         karg->busChangeEvent = 0;
1214         karg->hostId = ioc->pfacts[port].PortSCSIID;
1215         karg->rsvd[0] = karg->rsvd[1] = 0;
1216
1217         /* Copy the data from kernel memory to user memory
1218          */
1219         if (copy_to_user((char __user *)arg, karg, data_size)) {
1220                 printk(KERN_ERR "%s@%d::mptctl_getiocinfo - "
1221                         "Unable to write out mpt_ioctl_iocinfo struct @ %p\n",
1222                                 __FILE__, __LINE__, uarg);
1223                 kfree(karg);
1224                 return -EFAULT;
1225         }
1226
1227         kfree(karg);
1228         return 0;
1229 }
1230
1231 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
1232 /*
1233  *      mptctl_gettargetinfo - Query the host adapter for target information.
1234  *      @arg: User space argument
1235  *
1236  * Outputs:     None.
1237  * Return:      0 if successful
1238  *              -EFAULT if data unavailable
1239  *              -ENODEV  if no such device/adapter
1240  */
1241 static int
1242 mptctl_gettargetinfo (unsigned long arg)
1243 {
1244         struct mpt_ioctl_targetinfo __user *uarg = (void __user *) arg;
1245         struct mpt_ioctl_targetinfo karg;
1246         MPT_ADAPTER             *ioc;
1247         struct Scsi_Host        *sh;
1248         MPT_SCSI_HOST           *hd;
1249         VirtTarget              *vdev;
1250         char                    *pmem;
1251         int                     *pdata;
1252         IOCPage2_t              *pIoc2;
1253         IOCPage3_t              *pIoc3;
1254         int                     iocnum;
1255         int                     numDevices = 0;
1256         unsigned int            max_id;
1257         int                     id, jj, indexed_lun, lun_index;
1258         u32                     lun;
1259         int                     maxWordsLeft;
1260         int                     numBytes;
1261         u8                      port, devType, bus_id;
1262
1263         dctlprintk(("mptctl_gettargetinfo called.\n"));
1264         if (copy_from_user(&karg, uarg, sizeof(struct mpt_ioctl_targetinfo))) {
1265                 printk(KERN_ERR "%s@%d::mptctl_gettargetinfo - "
1266                         "Unable to read in mpt_ioctl_targetinfo struct @ %p\n",
1267                                 __FILE__, __LINE__, uarg);
1268                 return -EFAULT;
1269         }
1270
1271         if (((iocnum = mpt_verify_adapter(karg.hdr.iocnum, &ioc)) < 0) ||
1272             (ioc == NULL)) {
1273                 dctlprintk((KERN_ERR "%s::mptctl_gettargetinfo() @%d - ioc%d not found!\n",
1274                                 __FILE__, __LINE__, iocnum));
1275                 return -ENODEV;
1276         }
1277
1278         /* Get the port number and set the maximum number of bytes
1279          * in the returned structure.
1280          * Ignore the port setting.
1281          */
1282         numBytes = karg.hdr.maxDataSize - sizeof(mpt_ioctl_header);
1283         maxWordsLeft = numBytes/sizeof(int);
1284         port = karg.hdr.port;
1285
1286         if (maxWordsLeft <= 0) {
1287                 printk(KERN_ERR "%s::mptctl_gettargetinfo() @%d - no memory available!\n",
1288                                 __FILE__, __LINE__);
1289                 return -ENOMEM;
1290         }
1291
1292         /* Fill in the data and return the structure to the calling
1293          * program
1294          */
1295
1296         /* struct mpt_ioctl_targetinfo does not contain sufficient space
1297          * for the target structures so when the IOCTL is called, there is
1298          * not sufficient stack space for the structure. Allocate memory,
1299          * populate the memory, copy back to the user, then free memory.
1300          * targetInfo format:
1301          * bits 31-24: reserved
1302          *      23-16: LUN
1303          *      15- 8: Bus Number
1304          *       7- 0: Target ID
1305          */
1306         pmem = kmalloc(numBytes, GFP_KERNEL);
1307         if (pmem == NULL) {
1308                 printk(KERN_ERR "%s::mptctl_gettargetinfo() @%d - no memory available!\n",
1309                                 __FILE__, __LINE__);
1310                 return -ENOMEM;
1311         }
1312         memset(pmem, 0, numBytes);
1313         pdata =  (int *) pmem;
1314
1315         /* Get number of devices
1316          */
1317         if ((sh = ioc->sh) != NULL) {
1318
1319                 max_id = sh->max_id - 1;
1320                 hd = (MPT_SCSI_HOST *) sh->hostdata;
1321
1322                 /* Check all of the target structures.
1323                  * Save the Id and increment the counter,
1324                  * if ptr non-null.
1325                  * sh->max_id = maximum target ID + 1
1326                  */
1327                 if (hd && hd->Targets) {
1328                         mpt_findImVolumes(ioc);
1329                         pIoc2 = ioc->raid_data.pIocPg2;
1330                         for ( id = 0; id <= max_id; ) {
1331                                 if ( pIoc2 && pIoc2->NumActiveVolumes ) {
1332                                         if ( id == pIoc2->RaidVolume[0].VolumeID ) {
1333                                                 if (maxWordsLeft <= 0) {
1334                                                         printk(KERN_ERR "mptctl_gettargetinfo - "
1335                         "buffer is full but volume is available on ioc %d\n, numDevices=%d", iocnum, numDevices);
1336                                                         goto data_space_full;
1337                                                 }
1338                                                 if ( ( pIoc2->RaidVolume[0].Flags & MPI_IOCPAGE2_FLAG_VOLUME_INACTIVE ) == 0 )
1339                                                         devType = 0x80;
1340                                                 else
1341                                                         devType = 0xC0;
1342                                                 bus_id = pIoc2->RaidVolume[0].VolumeBus;
1343                                                 numDevices++;
1344                                                 *pdata = ( (devType << 24) | (bus_id << 8) | id );
1345                                                 dctlprintk((KERN_ERR "mptctl_gettargetinfo - "
1346                 "volume ioc=%d target=%x numDevices=%d pdata=%p\n", iocnum, *pdata, numDevices, pdata));
1347                                                 pdata++;
1348                                                 --maxWordsLeft;
1349                                                 goto next_id;
1350                                         } else {
1351                                                 pIoc3 = ioc->raid_data.pIocPg3;
1352                                                 for ( jj = 0; jj < pIoc3->NumPhysDisks; jj++ ) {
1353                                                         if ( pIoc3->PhysDisk[jj].PhysDiskID == id )
1354                                                                 goto next_id;
1355                                                 }
1356                                         }
1357                                 }
1358                                 if ( (vdev = hd->Targets[id]) ) {
1359                                         for (jj = 0; jj <= MPT_LAST_LUN; jj++) {
1360                                                 lun_index = (jj >> 5);
1361                                                 indexed_lun = (jj % 32);
1362                                                 lun = (1 << indexed_lun);
1363                                                 if (vdev->luns[lun_index] & lun) {
1364                                                         if (maxWordsLeft <= 0) {
1365                                                                 printk(KERN_ERR "mptctl_gettargetinfo - "
1366                         "buffer is full but more targets are available on ioc %d numDevices=%d\n", iocnum, numDevices);
1367                                                                 goto data_space_full;
1368                                                         }
1369                                                         bus_id = vdev->bus_id;
1370                                                         numDevices++;
1371                                                         *pdata = ( (jj << 16) | (bus_id << 8) | id );
1372                                                         dctlprintk((KERN_ERR "mptctl_gettargetinfo - "
1373                 "target ioc=%d target=%x numDevices=%d pdata=%p\n", iocnum, *pdata, numDevices, pdata));
1374                                                         pdata++;
1375                                                         --maxWordsLeft;
1376                                                 }
1377                                         }
1378                                 }
1379 next_id:
1380                                 id++;
1381                         }
1382                 }
1383         }
1384 data_space_full:
1385         karg.numDevices = numDevices;
1386
1387         /* Copy part of the data from kernel memory to user memory
1388          */
1389         if (copy_to_user((char __user *)arg, &karg,
1390                                 sizeof(struct mpt_ioctl_targetinfo))) {
1391                 printk(KERN_ERR "%s@%d::mptctl_gettargetinfo - "
1392                         "Unable to write out mpt_ioctl_targetinfo struct @ %p\n",
1393                                 __FILE__, __LINE__, uarg);
1394                 kfree(pmem);
1395                 return -EFAULT;
1396         }
1397
1398         /* Copy the remaining data from kernel memory to user memory
1399          */
1400         if (copy_to_user(uarg->targetInfo, pmem, numBytes)) {
1401                 printk(KERN_ERR "%s@%d::mptctl_gettargetinfo - "
1402                         "Unable to write out mpt_ioctl_targetinfo struct @ %p\n",
1403                                 __FILE__, __LINE__, pdata);
1404                 kfree(pmem);
1405                 return -EFAULT;
1406         }
1407
1408         kfree(pmem);
1409
1410         return 0;
1411 }
1412
1413 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
1414 /* MPT IOCTL Test function.
1415  *
1416  * Outputs:     None.
1417  * Return:      0 if successful
1418  *              -EFAULT if data unavailable
1419  *              -ENODEV  if no such device/adapter
1420  */
1421 static int
1422 mptctl_readtest (unsigned long arg)
1423 {
1424         struct mpt_ioctl_test __user *uarg = (void __user *) arg;
1425         struct mpt_ioctl_test    karg;
1426         MPT_ADAPTER *ioc;
1427         int iocnum;
1428
1429         dctlprintk(("mptctl_readtest called.\n"));
1430         if (copy_from_user(&karg, uarg, sizeof(struct mpt_ioctl_test))) {
1431                 printk(KERN_ERR "%s@%d::mptctl_readtest - "
1432                         "Unable to read in mpt_ioctl_test struct @ %p\n",
1433                                 __FILE__, __LINE__, uarg);
1434                 return -EFAULT;
1435         }
1436
1437         if (((iocnum = mpt_verify_adapter(karg.hdr.iocnum, &ioc)) < 0) ||
1438             (ioc == NULL)) {
1439                 dctlprintk((KERN_ERR "%s::mptctl_readtest() @%d - ioc%d not found!\n",
1440                                 __FILE__, __LINE__, iocnum));
1441                 return -ENODEV;
1442         }
1443
1444         /* Fill in the data and return the structure to the calling
1445          * program
1446          */
1447
1448 #ifdef MFCNT
1449         karg.chip_type = ioc->mfcnt;
1450 #else
1451         karg.chip_type = ioc->pcidev->device;
1452 #endif
1453         strncpy (karg.name, ioc->name, MPT_MAX_NAME);
1454         karg.name[MPT_MAX_NAME-1]='\0';
1455         strncpy (karg.product, ioc->prod_name, MPT_PRODUCT_LENGTH);
1456         karg.product[MPT_PRODUCT_LENGTH-1]='\0';
1457
1458         /* Copy the data from kernel memory to user memory
1459          */
1460         if (copy_to_user((char __user *)arg, &karg, sizeof(struct mpt_ioctl_test))) {
1461                 printk(KERN_ERR "%s@%d::mptctl_readtest - "
1462                         "Unable to write out mpt_ioctl_test struct @ %p\n",
1463                                 __FILE__, __LINE__, uarg);
1464                 return -EFAULT;
1465         }
1466
1467         return 0;
1468 }
1469
1470 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
1471 /*
1472  *      mptctl_eventquery - Query the host adapter for the event types
1473  *      that are being logged.
1474  *      @arg: User space argument
1475  *
1476  * Outputs:     None.
1477  * Return:      0 if successful
1478  *              -EFAULT if data unavailable
1479  *              -ENODEV  if no such device/adapter
1480  */
1481 static int
1482 mptctl_eventquery (unsigned long arg)
1483 {
1484         struct mpt_ioctl_eventquery __user *uarg = (void __user *) arg;
1485         struct mpt_ioctl_eventquery      karg;
1486         MPT_ADAPTER *ioc;
1487         int iocnum;
1488
1489         dctlprintk(("mptctl_eventquery called.\n"));
1490         if (copy_from_user(&karg, uarg, sizeof(struct mpt_ioctl_eventquery))) {
1491                 printk(KERN_ERR "%s@%d::mptctl_eventquery - "
1492                         "Unable to read in mpt_ioctl_eventquery struct @ %p\n",
1493                                 __FILE__, __LINE__, uarg);
1494                 return -EFAULT;
1495         }
1496
1497         if (((iocnum = mpt_verify_adapter(karg.hdr.iocnum, &ioc)) < 0) ||
1498             (ioc == NULL)) {
1499                 dctlprintk((KERN_ERR "%s::mptctl_eventquery() @%d - ioc%d not found!\n",
1500                                 __FILE__, __LINE__, iocnum));
1501                 return -ENODEV;
1502         }
1503
1504         karg.eventEntries = MPTCTL_EVENT_LOG_SIZE;
1505         karg.eventTypes = ioc->eventTypes;
1506
1507         /* Copy the data from kernel memory to user memory
1508          */
1509         if (copy_to_user((char __user *)arg, &karg, sizeof(struct mpt_ioctl_eventquery))) {
1510                 printk(KERN_ERR "%s@%d::mptctl_eventquery - "
1511                         "Unable to write out mpt_ioctl_eventquery struct @ %p\n",
1512                                 __FILE__, __LINE__, uarg);
1513                 return -EFAULT;
1514         }
1515         return 0;
1516 }
1517
1518 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
1519 static int
1520 mptctl_eventenable (unsigned long arg)
1521 {
1522         struct mpt_ioctl_eventenable __user *uarg = (void __user *) arg;
1523         struct mpt_ioctl_eventenable     karg;
1524         MPT_ADAPTER *ioc;
1525         int iocnum;
1526
1527         dctlprintk(("mptctl_eventenable called.\n"));
1528         if (copy_from_user(&karg, uarg, sizeof(struct mpt_ioctl_eventenable))) {
1529                 printk(KERN_ERR "%s@%d::mptctl_eventenable - "
1530                         "Unable to read in mpt_ioctl_eventenable struct @ %p\n",
1531                                 __FILE__, __LINE__, uarg);
1532                 return -EFAULT;
1533         }
1534
1535         if (((iocnum = mpt_verify_adapter(karg.hdr.iocnum, &ioc)) < 0) ||
1536             (ioc == NULL)) {
1537                 dctlprintk((KERN_ERR "%s::mptctl_eventenable() @%d - ioc%d not found!\n",
1538                                 __FILE__, __LINE__, iocnum));
1539                 return -ENODEV;
1540         }
1541
1542         if (ioc->events == NULL) {
1543                 /* Have not yet allocated memory - do so now.
1544                  */
1545                 int sz = MPTCTL_EVENT_LOG_SIZE * sizeof(MPT_IOCTL_EVENTS);
1546                 ioc->events = kmalloc(sz, GFP_KERNEL);
1547                 if (ioc->events == NULL) {
1548                         printk(KERN_ERR MYNAM ": ERROR - Insufficient memory to add adapter!\n");
1549                         return -ENOMEM;
1550                 }
1551                 memset(ioc->events, 0, sz);
1552                 ioc->alloc_total += sz;
1553
1554                 ioc->eventContext = 0;
1555         }
1556
1557         /* Update the IOC event logging flag.
1558          */
1559         ioc->eventTypes = karg.eventTypes;
1560
1561         return 0;
1562 }
1563
1564 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
1565 static int
1566 mptctl_eventreport (unsigned long arg)
1567 {
1568         struct mpt_ioctl_eventreport __user *uarg = (void __user *) arg;
1569         struct mpt_ioctl_eventreport     karg;
1570         MPT_ADAPTER              *ioc;
1571         int                      iocnum;
1572         int                      numBytes, maxEvents, max;
1573
1574         dctlprintk(("mptctl_eventreport called.\n"));
1575         if (copy_from_user(&karg, uarg, sizeof(struct mpt_ioctl_eventreport))) {
1576                 printk(KERN_ERR "%s@%d::mptctl_eventreport - "
1577                         "Unable to read in mpt_ioctl_eventreport struct @ %p\n",
1578                                 __FILE__, __LINE__, uarg);
1579                 return -EFAULT;
1580         }
1581
1582         if (((iocnum = mpt_verify_adapter(karg.hdr.iocnum, &ioc)) < 0) ||
1583             (ioc == NULL)) {
1584                 dctlprintk((KERN_ERR "%s::mptctl_eventreport() @%d - ioc%d not found!\n",
1585                                 __FILE__, __LINE__, iocnum));
1586                 return -ENODEV;
1587         }
1588
1589         numBytes = karg.hdr.maxDataSize - sizeof(mpt_ioctl_header);
1590         maxEvents = numBytes/sizeof(MPT_IOCTL_EVENTS);
1591
1592
1593         max = MPTCTL_EVENT_LOG_SIZE < maxEvents ? MPTCTL_EVENT_LOG_SIZE : maxEvents;
1594
1595         /* If fewer than 1 event is requested, there must have
1596          * been some type of error.
1597          */
1598         if ((max < 1) || !ioc->events)
1599                 return -ENODATA;
1600
1601         /* Copy the data from kernel memory to user memory
1602          */
1603         numBytes = max * sizeof(MPT_IOCTL_EVENTS);
1604         if (copy_to_user(uarg->eventData, ioc->events, numBytes)) {
1605                 printk(KERN_ERR "%s@%d::mptctl_eventreport - "
1606                         "Unable to write out mpt_ioctl_eventreport struct @ %p\n",
1607                                 __FILE__, __LINE__, ioc->events);
1608                 return -EFAULT;
1609         }
1610
1611         return 0;
1612 }
1613
1614 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
1615 static int
1616 mptctl_replace_fw (unsigned long arg)
1617 {
1618         struct mpt_ioctl_replace_fw __user *uarg = (void __user *) arg;
1619         struct mpt_ioctl_replace_fw      karg;
1620         MPT_ADAPTER              *ioc;
1621         int                      iocnum;
1622         int                      newFwSize;
1623
1624         dctlprintk(("mptctl_replace_fw called.\n"));
1625         if (copy_from_user(&karg, uarg, sizeof(struct mpt_ioctl_replace_fw))) {
1626                 printk(KERN_ERR "%s@%d::mptctl_replace_fw - "
1627                         "Unable to read in mpt_ioctl_replace_fw struct @ %p\n",
1628                                 __FILE__, __LINE__, uarg);
1629                 return -EFAULT;
1630         }
1631
1632         if (((iocnum = mpt_verify_adapter(karg.hdr.iocnum, &ioc)) < 0) ||
1633             (ioc == NULL)) {
1634                 dctlprintk((KERN_ERR "%s::mptctl_replace_fw() @%d - ioc%d not found!\n",
1635                                 __FILE__, __LINE__, iocnum));
1636                 return -ENODEV;
1637         }
1638
1639         /* If caching FW, Free the old FW image
1640          */
1641         if (ioc->cached_fw == NULL)
1642                 return 0;
1643
1644         mpt_free_fw_memory(ioc);
1645
1646         /* Allocate memory for the new FW image
1647          */
1648         newFwSize = karg.newImageSize;
1649
1650         if (newFwSize & 0x01)
1651                 newFwSize += 1;
1652         if (newFwSize & 0x02)
1653                 newFwSize += 2;
1654
1655         mpt_alloc_fw_memory(ioc, newFwSize);
1656         if (ioc->cached_fw == NULL)
1657                 return -ENOMEM;
1658
1659         /* Copy the data from user memory to kernel space
1660          */
1661         if (copy_from_user(ioc->cached_fw, uarg->newImage, newFwSize)) {
1662                 printk(KERN_ERR "%s@%d::mptctl_replace_fw - "
1663                                 "Unable to read in mpt_ioctl_replace_fw image "
1664                                 "@ %p\n", __FILE__, __LINE__, uarg);
1665                 mpt_free_fw_memory(ioc);
1666                 return -EFAULT;
1667         }
1668
1669         /* Update IOCFactsReply
1670          */
1671         ioc->facts.FWImageSize = newFwSize;
1672         return 0;
1673 }
1674
1675 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
1676 /* MPT IOCTL MPTCOMMAND function.
1677  * Cast the arg into the mpt_ioctl_mpt_command structure.
1678  *
1679  * Outputs:     None.
1680  * Return:      0 if successful
1681  *              -EBUSY  if previous command timout and IOC reset is not complete.
1682  *              -EFAULT if data unavailable
1683  *              -ENODEV if no such device/adapter
1684  *              -ETIME  if timer expires
1685  *              -ENOMEM if memory allocation error
1686  */
1687 static int
1688 mptctl_mpt_command (unsigned long arg)
1689 {
1690         struct mpt_ioctl_command __user *uarg = (void __user *) arg;
1691         struct mpt_ioctl_command  karg;
1692         MPT_ADAPTER     *ioc;
1693         int             iocnum;
1694         int             rc;
1695
1696         dctlprintk(("mptctl_command called.\n"));
1697
1698         if (copy_from_user(&karg, uarg, sizeof(struct mpt_ioctl_command))) {
1699                 printk(KERN_ERR "%s@%d::mptctl_mpt_command - "
1700                         "Unable to read in mpt_ioctl_command struct @ %p\n",
1701                                 __FILE__, __LINE__, uarg);
1702                 return -EFAULT;
1703         }
1704
1705         if (((iocnum = mpt_verify_adapter(karg.hdr.iocnum, &ioc)) < 0) ||
1706             (ioc == NULL)) {
1707                 dctlprintk((KERN_ERR "%s::mptctl_mpt_command() @%d - ioc%d not found!\n",
1708                                 __FILE__, __LINE__, iocnum));
1709                 return -ENODEV;
1710         }
1711
1712         rc = mptctl_do_mpt_command (karg, &uarg->MF);
1713
1714         return rc;
1715 }
1716
1717 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
1718 /* Worker routine for the IOCTL MPTCOMMAND and MPTCOMMAND32 (sparc) commands.
1719  *
1720  * Outputs:     None.
1721  * Return:      0 if successful
1722  *              -EBUSY  if previous command timout and IOC reset is not complete.
1723  *              -EFAULT if data unavailable
1724  *              -ENODEV if no such device/adapter
1725  *              -ETIME  if timer expires
1726  *              -ENOMEM if memory allocation error
1727  *              -EPERM if SCSI I/O and target is untagged
1728  */
1729 static int
1730 mptctl_do_mpt_command (struct mpt_ioctl_command karg, void __user *mfPtr)
1731 {
1732         MPT_ADAPTER     *ioc;
1733         MPT_FRAME_HDR   *mf = NULL;
1734         MPIHeader_t     *hdr;
1735         char            *psge;
1736         struct buflist  bufIn;  /* data In buffer */
1737         struct buflist  bufOut; /* data Out buffer */
1738         dma_addr_t      dma_addr_in;
1739         dma_addr_t      dma_addr_out;
1740         int             sgSize = 0;     /* Num SG elements */
1741         int             iocnum, flagsLength;
1742         int             sz, rc = 0;
1743         int             msgContext;
1744         u16             req_idx;
1745         ulong           timeout;
1746
1747         dctlprintk(("mptctl_do_mpt_command called.\n"));
1748         bufIn.kptr = bufOut.kptr = NULL;
1749
1750         if (((iocnum = mpt_verify_adapter(karg.hdr.iocnum, &ioc)) < 0) ||
1751             (ioc == NULL)) {
1752                 dctlprintk((KERN_ERR "%s::mptctl_do_mpt_command() @%d - ioc%d not found!\n",
1753                                 __FILE__, __LINE__, iocnum));
1754                 return -ENODEV;
1755         }
1756         if (!ioc->ioctl) {
1757                 printk(KERN_ERR "%s@%d::mptctl_do_mpt_command - "
1758                         "No memory available during driver init.\n",
1759                                 __FILE__, __LINE__);
1760                 return -ENOMEM;
1761         } else if (ioc->ioctl->status & MPT_IOCTL_STATUS_DID_IOCRESET) {
1762                 printk(KERN_ERR "%s@%d::mptctl_do_mpt_command - "
1763                         "Busy with IOC Reset \n", __FILE__, __LINE__);
1764                 return -EBUSY;
1765         }
1766
1767         /* Verify that the final request frame will not be too large.
1768          */
1769         sz = karg.dataSgeOffset * 4;
1770         if (karg.dataInSize > 0)
1771                 sz += sizeof(dma_addr_t) + sizeof(u32);
1772         if (karg.dataOutSize > 0)
1773                 sz += sizeof(dma_addr_t) + sizeof(u32);
1774
1775         if (sz > ioc->req_sz) {
1776                 printk(KERN_ERR "%s@%d::mptctl_do_mpt_command - "
1777                         "Request frame too large (%d) maximum (%d)\n",
1778                                 __FILE__, __LINE__, sz, ioc->req_sz);
1779                 return -EFAULT;
1780         }
1781
1782         /* Get a free request frame and save the message context.
1783          */
1784         if ((mf = mpt_get_msg_frame(mptctl_id, ioc)) == NULL)
1785                 return -EAGAIN;
1786
1787         hdr = (MPIHeader_t *) mf;
1788         msgContext = le32_to_cpu(hdr->MsgContext);
1789         req_idx = le16_to_cpu(mf->u.frame.hwhdr.msgctxu.fld.req_idx);
1790
1791         /* Copy the request frame
1792          * Reset the saved message context.
1793          * Request frame in user space
1794          */
1795         if (copy_from_user(mf, mfPtr, karg.dataSgeOffset * 4)) {
1796                 printk(KERN_ERR "%s@%d::mptctl_do_mpt_command - "
1797                         "Unable to read MF from mpt_ioctl_command struct @ %p\n",
1798                         __FILE__, __LINE__, mfPtr);
1799                 rc = -EFAULT;
1800                 goto done_free_mem;
1801         }
1802         hdr->MsgContext = cpu_to_le32(msgContext);
1803
1804
1805         /* Verify that this request is allowed.
1806          */
1807         switch (hdr->Function) {
1808         case MPI_FUNCTION_IOC_FACTS:
1809         case MPI_FUNCTION_PORT_FACTS:
1810                 karg.dataOutSize  = karg.dataInSize = 0;
1811                 break;
1812
1813         case MPI_FUNCTION_CONFIG:
1814         case MPI_FUNCTION_FC_COMMON_TRANSPORT_SEND:
1815         case MPI_FUNCTION_FC_EX_LINK_SRVC_SEND:
1816         case MPI_FUNCTION_FW_UPLOAD:
1817         case MPI_FUNCTION_SCSI_ENCLOSURE_PROCESSOR:
1818         case MPI_FUNCTION_FW_DOWNLOAD:
1819         case MPI_FUNCTION_FC_PRIMITIVE_SEND:
1820         case MPI_FUNCTION_TOOLBOX:
1821         case MPI_FUNCTION_SAS_IO_UNIT_CONTROL:
1822                 break;
1823
1824         case MPI_FUNCTION_SCSI_IO_REQUEST:
1825                 if (ioc->sh) {
1826                         SCSIIORequest_t *pScsiReq = (SCSIIORequest_t *) mf;
1827                         VirtTarget      *pTarget = NULL;
1828                         MPT_SCSI_HOST   *hd = NULL;
1829                         int qtag = MPI_SCSIIO_CONTROL_UNTAGGED;
1830                         int scsidir = 0;
1831                         int target = (int) pScsiReq->TargetID;
1832                         int dataSize;
1833
1834                         if ((target < 0) || (target >= ioc->sh->max_id)) {
1835                                 printk(KERN_ERR "%s@%d::mptctl_do_mpt_command - "
1836                                         "Target ID out of bounds. \n",
1837                                         __FILE__, __LINE__);
1838                                 rc = -ENODEV;
1839                                 goto done_free_mem;
1840                         }
1841
1842                         pScsiReq->MsgFlags = mpt_msg_flags();
1843
1844                         /* verify that app has not requested
1845                          *      more sense data than driver
1846                          *      can provide, if so, reset this parameter
1847                          * set the sense buffer pointer low address
1848                          * update the control field to specify Q type
1849                          */
1850                         if (karg.maxSenseBytes > MPT_SENSE_BUFFER_SIZE)
1851                                 pScsiReq->SenseBufferLength = MPT_SENSE_BUFFER_SIZE;
1852                         else
1853                                 pScsiReq->SenseBufferLength = karg.maxSenseBytes;
1854
1855                         pScsiReq->SenseBufferLowAddr =
1856                                 cpu_to_le32(ioc->sense_buf_low_dma
1857                                    + (req_idx * MPT_SENSE_BUFFER_ALLOC));
1858
1859                         if ((hd = (MPT_SCSI_HOST *) ioc->sh->hostdata)) {
1860                                 if (hd->Targets)
1861                                         pTarget = hd->Targets[target];
1862                         }
1863
1864                         if (pTarget &&(pTarget->tflags & MPT_TARGET_FLAGS_Q_YES))
1865                                 qtag = MPI_SCSIIO_CONTROL_SIMPLEQ;
1866
1867                         /* Have the IOCTL driver set the direction based
1868                          * on the dataOutSize (ordering issue with Sparc).
1869                          */
1870                         if (karg.dataOutSize > 0) {
1871                                 scsidir = MPI_SCSIIO_CONTROL_WRITE;
1872                                 dataSize = karg.dataOutSize;
1873                         } else {
1874                                 scsidir = MPI_SCSIIO_CONTROL_READ;
1875                                 dataSize = karg.dataInSize;
1876                         }
1877
1878                         pScsiReq->Control = cpu_to_le32(scsidir | qtag);
1879                         pScsiReq->DataLength = cpu_to_le32(dataSize);
1880
1881                         ioc->ioctl->reset = MPTCTL_RESET_OK;
1882                         ioc->ioctl->target = target;
1883
1884                 } else {
1885                         printk(KERN_ERR "%s@%d::mptctl_do_mpt_command - "
1886                                 "SCSI driver is not loaded. \n",
1887                                         __FILE__, __LINE__);
1888                         rc = -EFAULT;
1889                         goto done_free_mem;
1890                 }
1891                 break;
1892
1893         case MPI_FUNCTION_SMP_PASSTHROUGH:
1894                 /* Check mf->PassthruFlags to determine if
1895                  * transfer is ImmediateMode or not.
1896                  * Immediate mode returns data in the ReplyFrame.
1897                  * Else, we are sending request and response data
1898                  * in two SGLs at the end of the mf.
1899                  */
1900                 break;
1901
1902         case MPI_FUNCTION_SATA_PASSTHROUGH:
1903                 if (!ioc->sh) {
1904                         printk(KERN_ERR "%s@%d::mptctl_do_mpt_command - "
1905                                 "SCSI driver is not loaded. \n",
1906                                         __FILE__, __LINE__);
1907                         rc = -EFAULT;
1908                         goto done_free_mem;
1909                 }
1910                 break;
1911
1912         case MPI_FUNCTION_RAID_ACTION:
1913                 /* Just add a SGE
1914                  */
1915                 break;
1916
1917         case MPI_FUNCTION_RAID_SCSI_IO_PASSTHROUGH:
1918                 if (ioc->sh) {
1919                         SCSIIORequest_t *pScsiReq = (SCSIIORequest_t *) mf;
1920                         int qtag = MPI_SCSIIO_CONTROL_SIMPLEQ;
1921                         int scsidir = MPI_SCSIIO_CONTROL_READ;
1922                         int dataSize;
1923
1924                         pScsiReq->MsgFlags = mpt_msg_flags();
1925
1926                         /* verify that app has not requested
1927                          *      more sense data than driver
1928                          *      can provide, if so, reset this parameter
1929                          * set the sense buffer pointer low address
1930                          * update the control field to specify Q type
1931                          */
1932                         if (karg.maxSenseBytes > MPT_SENSE_BUFFER_SIZE)
1933                                 pScsiReq->SenseBufferLength = MPT_SENSE_BUFFER_SIZE;
1934                         else
1935                                 pScsiReq->SenseBufferLength = karg.maxSenseBytes;
1936
1937                         pScsiReq->SenseBufferLowAddr =
1938                                 cpu_to_le32(ioc->sense_buf_low_dma
1939                                    + (req_idx * MPT_SENSE_BUFFER_ALLOC));
1940
1941                         /* All commands to physical devices are tagged
1942                          */
1943
1944                         /* Have the IOCTL driver set the direction based
1945                          * on the dataOutSize (ordering issue with Sparc).
1946                          */
1947                         if (karg.dataOutSize > 0) {
1948                                 scsidir = MPI_SCSIIO_CONTROL_WRITE;
1949                                 dataSize = karg.dataOutSize;
1950                         } else {
1951                                 scsidir = MPI_SCSIIO_CONTROL_READ;
1952                                 dataSize = karg.dataInSize;
1953                         }
1954
1955                         pScsiReq->Control = cpu_to_le32(scsidir | qtag);
1956                         pScsiReq->DataLength = cpu_to_le32(dataSize);
1957
1958                         ioc->ioctl->reset = MPTCTL_RESET_OK;
1959                         ioc->ioctl->target = pScsiReq->TargetID;
1960                 } else {
1961                         printk(KERN_ERR "%s@%d::mptctl_do_mpt_command - "
1962                                 "SCSI driver is not loaded. \n",
1963                                         __FILE__, __LINE__);
1964                         rc = -EFAULT;
1965                         goto done_free_mem;
1966                 }
1967                 break;
1968
1969         case MPI_FUNCTION_SCSI_TASK_MGMT:
1970                 {
1971                         MPT_SCSI_HOST *hd = NULL;
1972                         if ((ioc->sh == NULL) || ((hd = (MPT_SCSI_HOST *)ioc->sh->hostdata) == NULL)) {
1973                                 printk(KERN_ERR "%s@%d::mptctl_do_mpt_command - "
1974                                         "SCSI driver not loaded or SCSI host not found. \n",
1975                                         __FILE__, __LINE__);
1976                                 rc = -EFAULT;
1977                                 goto done_free_mem;
1978                         } else if (mptctl_set_tm_flags(hd) != 0) {
1979                                 rc = -EPERM;
1980                                 goto done_free_mem;
1981                         }
1982                 }
1983                 break;
1984
1985         case MPI_FUNCTION_IOC_INIT:
1986                 {
1987                         IOCInit_t       *pInit = (IOCInit_t *) mf;
1988                         u32             high_addr, sense_high;
1989
1990                         /* Verify that all entries in the IOC INIT match
1991                          * existing setup (and in LE format).
1992                          */
1993                         if (sizeof(dma_addr_t) == sizeof(u64)) {
1994                                 high_addr = cpu_to_le32((u32)((u64)ioc->req_frames_dma >> 32));
1995                                 sense_high= cpu_to_le32((u32)((u64)ioc->sense_buf_pool_dma >> 32));
1996                         } else {
1997                                 high_addr = 0;
1998                                 sense_high= 0;
1999                         }
2000
2001                         if ((pInit->Flags != 0) || (pInit->MaxDevices != ioc->facts.MaxDevices) ||
2002                                 (pInit->MaxBuses != ioc->facts.MaxBuses) ||
2003                                 (pInit->ReplyFrameSize != cpu_to_le16(ioc->reply_sz)) ||
2004                                 (pInit->HostMfaHighAddr != high_addr) ||
2005                                 (pInit->SenseBufferHighAddr != sense_high)) {
2006                                 printk(KERN_ERR "%s@%d::mptctl_do_mpt_command - "
2007                                         "IOC_INIT issued with 1 or more incorrect parameters. Rejected.\n",
2008                                         __FILE__, __LINE__);
2009                                 rc = -EFAULT;
2010                                 goto done_free_mem;
2011                         }
2012                 }
2013                 break;
2014         default:
2015                 /*
2016                  * MPI_FUNCTION_PORT_ENABLE
2017                  * MPI_FUNCTION_TARGET_CMD_BUFFER_POST
2018                  * MPI_FUNCTION_TARGET_ASSIST
2019                  * MPI_FUNCTION_TARGET_STATUS_SEND
2020                  * MPI_FUNCTION_TARGET_MODE_ABORT
2021                  * MPI_FUNCTION_IOC_MESSAGE_UNIT_RESET
2022                  * MPI_FUNCTION_IO_UNIT_RESET
2023                  * MPI_FUNCTION_HANDSHAKE
2024                  * MPI_FUNCTION_REPLY_FRAME_REMOVAL
2025                  * MPI_FUNCTION_EVENT_NOTIFICATION
2026                  *  (driver handles event notification)
2027                  * MPI_FUNCTION_EVENT_ACK
2028                  */
2029
2030                 /*  What to do with these???  CHECK ME!!!
2031                         MPI_FUNCTION_FC_LINK_SRVC_BUF_POST
2032                         MPI_FUNCTION_FC_LINK_SRVC_RSP
2033                         MPI_FUNCTION_FC_ABORT
2034                         MPI_FUNCTION_LAN_SEND
2035                         MPI_FUNCTION_LAN_RECEIVE
2036                         MPI_FUNCTION_LAN_RESET
2037                 */
2038
2039                 printk(KERN_ERR "%s@%d::mptctl_do_mpt_command - "
2040                         "Illegal request (function 0x%x) \n",
2041                         __FILE__, __LINE__, hdr->Function);
2042                 rc = -EFAULT;
2043                 goto done_free_mem;
2044         }
2045
2046         /* Add the SGL ( at most one data in SGE and one data out SGE )
2047          * In the case of two SGE's - the data out (write) will always
2048          * preceede the data in (read) SGE. psgList is used to free the
2049          * allocated memory.
2050          */
2051         psge = (char *) (((int *) mf) + karg.dataSgeOffset);
2052         flagsLength = 0;
2053
2054         /* bufIn and bufOut are used for user to kernel space transfers
2055          */
2056         bufIn.kptr = bufOut.kptr = NULL;
2057         bufIn.len = bufOut.len = 0;
2058
2059         if (karg.dataOutSize > 0)
2060                 sgSize ++;
2061
2062         if (karg.dataInSize > 0)
2063                 sgSize ++;
2064
2065         if (sgSize > 0) {
2066
2067                 /* Set up the dataOut memory allocation */
2068                 if (karg.dataOutSize > 0) {
2069                         if (karg.dataInSize > 0) {
2070                                 flagsLength = ( MPI_SGE_FLAGS_SIMPLE_ELEMENT |
2071                                                 MPI_SGE_FLAGS_END_OF_BUFFER |
2072                                                 MPI_SGE_FLAGS_DIRECTION |
2073                                                 mpt_addr_size() )
2074                                                 << MPI_SGE_FLAGS_SHIFT;
2075                         } else {
2076                                 flagsLength = MPT_SGE_FLAGS_SSIMPLE_WRITE;
2077                         }
2078                         flagsLength |= karg.dataOutSize;
2079                         bufOut.len = karg.dataOutSize;
2080                         bufOut.kptr = pci_alloc_consistent(
2081                                         ioc->pcidev, bufOut.len, &dma_addr_out);
2082
2083                         if (bufOut.kptr == NULL) {
2084                                 rc = -ENOMEM;
2085                                 goto done_free_mem;
2086                         } else {
2087                                 /* Set up this SGE.
2088                                  * Copy to MF and to sglbuf
2089                                  */
2090                                 mpt_add_sge(psge, flagsLength, dma_addr_out);
2091                                 psge += (sizeof(u32) + sizeof(dma_addr_t));
2092
2093                                 /* Copy user data to kernel space.
2094                                  */
2095                                 if (copy_from_user(bufOut.kptr,
2096                                                 karg.dataOutBufPtr,
2097                                                 bufOut.len)) {
2098                                         printk(KERN_ERR
2099                                                 "%s@%d::mptctl_do_mpt_command - Unable "
2100                                                 "to read user data "
2101                                                 "struct @ %p\n",
2102                                                 __FILE__, __LINE__,karg.dataOutBufPtr);
2103                                         rc =  -EFAULT;
2104                                         goto done_free_mem;
2105                                 }
2106                         }
2107                 }
2108
2109                 if (karg.dataInSize > 0) {
2110                         flagsLength = MPT_SGE_FLAGS_SSIMPLE_READ;
2111                         flagsLength |= karg.dataInSize;
2112
2113                         bufIn.len = karg.dataInSize;
2114                         bufIn.kptr = pci_alloc_consistent(ioc->pcidev,
2115                                         bufIn.len, &dma_addr_in);
2116
2117                         if (bufIn.kptr == NULL) {
2118                                 rc = -ENOMEM;
2119                                 goto done_free_mem;
2120                         } else {
2121                                 /* Set up this SGE
2122                                  * Copy to MF and to sglbuf
2123                                  */
2124                                 mpt_add_sge(psge, flagsLength, dma_addr_in);
2125                         }
2126                 }
2127         } else  {
2128                 /* Add a NULL SGE
2129                  */
2130                 mpt_add_sge(psge, flagsLength, (dma_addr_t) -1);
2131         }
2132
2133         ioc->ioctl->wait_done = 0;
2134         if (hdr->Function == MPI_FUNCTION_SCSI_TASK_MGMT) {
2135
2136                 DBG_DUMP_TM_REQUEST_FRAME((u32 *)mf);
2137
2138                 if (mpt_send_handshake_request(mptctl_id, ioc,
2139                         sizeof(SCSITaskMgmt_t), (u32*)mf,
2140                         CAN_SLEEP) != 0) {
2141                         dfailprintk((MYIOC_s_ERR_FMT "_send_handshake FAILED!"
2142                                 " (ioc %p, mf %p) \n", ioc->name,
2143                                 ioc, mf));
2144                         mptctl_free_tm_flags(ioc);
2145                         rc = -ENODATA;
2146                         goto done_free_mem;
2147                 }
2148
2149         } else
2150                 mpt_put_msg_frame(mptctl_id, ioc, mf);
2151
2152         /* Now wait for the command to complete */
2153         timeout = (karg.timeout > 0) ? karg.timeout : MPT_IOCTL_DEFAULT_TIMEOUT;
2154         timeout = wait_event_timeout(mptctl_wait,
2155              ioc->ioctl->wait_done == 1,
2156              HZ*timeout);
2157
2158         if(timeout <=0 && (ioc->ioctl->wait_done != 1 )) {
2159         /* Now we need to reset the board */
2160
2161                 if (hdr->Function == MPI_FUNCTION_SCSI_TASK_MGMT)
2162                         mptctl_free_tm_flags(ioc);
2163
2164                 mptctl_timeout_expired(ioc->ioctl);
2165                 rc = -ENODATA;
2166                 goto done_free_mem;
2167         }
2168
2169         mf = NULL;
2170
2171         /* If a valid reply frame, copy to the user.
2172          * Offset 2: reply length in U32's
2173          */
2174         if (ioc->ioctl->status & MPT_IOCTL_STATUS_RF_VALID) {
2175                 if (karg.maxReplyBytes < ioc->reply_sz) {
2176                          sz = min(karg.maxReplyBytes, 4*ioc->ioctl->ReplyFrame[2]);
2177                 } else {
2178                          sz = min(ioc->reply_sz, 4*ioc->ioctl->ReplyFrame[2]);
2179                 }
2180
2181                 if (sz > 0) {
2182                         if (copy_to_user(karg.replyFrameBufPtr,
2183                                  &ioc->ioctl->ReplyFrame, sz)){
2184                                  printk(KERN_ERR
2185                                      "%s@%d::mptctl_do_mpt_command - "
2186                                  "Unable to write out reply frame %p\n",
2187                                  __FILE__, __LINE__, karg.replyFrameBufPtr);
2188                                  rc =  -ENODATA;
2189                                  goto done_free_mem;
2190                         }
2191                 }
2192         }
2193
2194         /* If valid sense data, copy to user.
2195          */
2196         if (ioc->ioctl->status & MPT_IOCTL_STATUS_SENSE_VALID) {
2197                 sz = min(karg.maxSenseBytes, MPT_SENSE_BUFFER_SIZE);
2198                 if (sz > 0) {
2199                         if (copy_to_user(karg.senseDataPtr, ioc->ioctl->sense, sz)) {
2200                                 printk(KERN_ERR "%s@%d::mptctl_do_mpt_command - "
2201                                 "Unable to write sense data to user %p\n",
2202                                 __FILE__, __LINE__,
2203                                 karg.senseDataPtr);
2204                                 rc =  -ENODATA;
2205                                 goto done_free_mem;
2206                         }
2207                 }
2208         }
2209
2210         /* If the overall status is _GOOD and data in, copy data
2211          * to user.
2212          */
2213         if ((ioc->ioctl->status & MPT_IOCTL_STATUS_COMMAND_GOOD) &&
2214                                 (karg.dataInSize > 0) && (bufIn.kptr)) {
2215
2216                 if (copy_to_user(karg.dataInBufPtr,
2217                                  bufIn.kptr, karg.dataInSize)) {
2218                         printk(KERN_ERR "%s@%d::mptctl_do_mpt_command - "
2219                                 "Unable to write data to user %p\n",
2220                                 __FILE__, __LINE__,
2221                                 karg.dataInBufPtr);
2222                         rc =  -ENODATA;
2223                 }
2224         }
2225
2226 done_free_mem:
2227
2228         ioc->ioctl->status &= ~(MPT_IOCTL_STATUS_COMMAND_GOOD |
2229                 MPT_IOCTL_STATUS_SENSE_VALID |
2230                 MPT_IOCTL_STATUS_RF_VALID );
2231
2232         /* Free the allocated memory.
2233          */
2234         if (bufOut.kptr != NULL) {
2235                 pci_free_consistent(ioc->pcidev,
2236                         bufOut.len, (void *) bufOut.kptr, dma_addr_out);
2237         }
2238
2239         if (bufIn.kptr != NULL) {
2240                 pci_free_consistent(ioc->pcidev,
2241                         bufIn.len, (void *) bufIn.kptr, dma_addr_in);
2242         }
2243
2244         /* mf is null if command issued successfully
2245          * otherwise, failure occured after mf acquired.
2246          */
2247         if (mf)
2248                 mpt_free_msg_frame(ioc, mf);
2249
2250         return rc;
2251 }
2252
2253 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2254 /* Prototype Routine for the HP HOST INFO command.
2255  *
2256  * Outputs:     None.
2257  * Return:      0 if successful
2258  *              -EFAULT if data unavailable
2259  *              -EBUSY  if previous command timout and IOC reset is not complete.
2260  *              -ENODEV if no such device/adapter
2261  *              -ETIME  if timer expires
2262  *              -ENOMEM if memory allocation error
2263  */
2264 static int
2265 mptctl_hp_hostinfo(unsigned long arg, unsigned int data_size)
2266 {
2267         hp_host_info_t  __user *uarg = (void __user *) arg;
2268         MPT_ADAPTER             *ioc;
2269         struct pci_dev          *pdev;
2270         char                    *pbuf;
2271         dma_addr_t              buf_dma;
2272         hp_host_info_t          karg;
2273         CONFIGPARMS             cfg;
2274         ConfigPageHeader_t      hdr;
2275         int                     iocnum;
2276         int                     rc, cim_rev;
2277
2278         dctlprintk((": mptctl_hp_hostinfo called.\n"));
2279         /* Reset long to int. Should affect IA64 and SPARC only
2280          */
2281         if (data_size == sizeof(hp_host_info_t))
2282                 cim_rev = 1;
2283         else if (data_size == sizeof(hp_host_info_rev0_t))
2284                 cim_rev = 0;    /* obsolete */
2285         else
2286                 return -EFAULT;
2287
2288         if (copy_from_user(&karg, uarg, sizeof(hp_host_info_t))) {
2289                 printk(KERN_ERR "%s@%d::mptctl_hp_host_info - "
2290                         "Unable to read in hp_host_info struct @ %p\n",
2291                                 __FILE__, __LINE__, uarg);
2292                 return -EFAULT;
2293         }
2294
2295         if (((iocnum = mpt_verify_adapter(karg.hdr.iocnum, &ioc)) < 0) ||
2296             (ioc == NULL)) {
2297                 dctlprintk((KERN_ERR "%s::mptctl_hp_hostinfo() @%d - ioc%d not found!\n",
2298                                 __FILE__, __LINE__, iocnum));
2299                 return -ENODEV;
2300         }
2301
2302         /* Fill in the data and return the structure to the calling
2303          * program
2304          */
2305         pdev = (struct pci_dev *) ioc->pcidev;
2306
2307         karg.vendor = pdev->vendor;
2308         karg.device = pdev->device;
2309         karg.subsystem_id = pdev->subsystem_device;
2310         karg.subsystem_vendor = pdev->subsystem_vendor;
2311         karg.devfn = pdev->devfn;
2312         karg.bus = pdev->bus->number;
2313
2314         /* Save the SCSI host no. if
2315          * SCSI driver loaded
2316          */
2317         if (ioc->sh != NULL)
2318                 karg.host_no = ioc->sh->host_no;
2319         else
2320                 karg.host_no =  -1;
2321
2322         /* Reformat the fw_version into a string
2323          */
2324         karg.fw_version[0] = ioc->facts.FWVersion.Struct.Major >= 10 ?
2325                 ((ioc->facts.FWVersion.Struct.Major / 10) + '0') : '0';
2326         karg.fw_version[1] = (ioc->facts.FWVersion.Struct.Major % 10 ) + '0';
2327         karg.fw_version[2] = '.';
2328         karg.fw_version[3] = ioc->facts.FWVersion.Struct.Minor >= 10 ?
2329                 ((ioc->facts.FWVersion.Struct.Minor / 10) + '0') : '0';
2330         karg.fw_version[4] = (ioc->facts.FWVersion.Struct.Minor % 10 ) + '0';
2331         karg.fw_version[5] = '.';
2332         karg.fw_version[6] = ioc->facts.FWVersion.Struct.Unit >= 10 ?
2333                 ((ioc->facts.FWVersion.Struct.Unit / 10) + '0') : '0';
2334         karg.fw_version[7] = (ioc->facts.FWVersion.Struct.Unit % 10 ) + '0';
2335         karg.fw_version[8] = '.';
2336         karg.fw_version[9] = ioc->facts.FWVersion.Struct.Dev >= 10 ?
2337                 ((ioc->facts.FWVersion.Struct.Dev / 10) + '0') : '0';
2338         karg.fw_version[10] = (ioc->facts.FWVersion.Struct.Dev % 10 ) + '0';
2339         karg.fw_version[11] = '\0';
2340
2341         /* Issue a config request to get the device serial number
2342          */
2343         hdr.PageVersion = 0;
2344         hdr.PageLength = 0;
2345         hdr.PageNumber = 0;
2346         hdr.PageType = MPI_CONFIG_PAGETYPE_MANUFACTURING;
2347         cfg.cfghdr.hdr = &hdr;
2348         cfg.physAddr = -1;
2349         cfg.pageAddr = 0;
2350         cfg.action = MPI_CONFIG_ACTION_PAGE_HEADER;
2351         cfg.dir = 0;    /* read */
2352         cfg.timeout = 10;
2353
2354         strncpy(karg.serial_number, " ", 24);
2355         if (mpt_config(ioc, &cfg) == 0) {
2356                 if (cfg.cfghdr.hdr->PageLength > 0) {
2357                         /* Issue the second config page request */
2358                         cfg.action = MPI_CONFIG_ACTION_PAGE_READ_CURRENT;
2359
2360                         pbuf = pci_alloc_consistent(ioc->pcidev, hdr.PageLength * 4, &buf_dma);
2361                         if (pbuf) {
2362                                 cfg.physAddr = buf_dma;
2363                                 if (mpt_config(ioc, &cfg) == 0) {
2364                                         ManufacturingPage0_t *pdata = (ManufacturingPage0_t *) pbuf;
2365                                         if (strlen(pdata->BoardTracerNumber) > 1) {
2366                                                 strncpy(karg.serial_number,                                                                         pdata->BoardTracerNumber, 24);
2367                                                 karg.serial_number[24-1]='\0';
2368                                         }
2369                                 }
2370                                 pci_free_consistent(ioc->pcidev, hdr.PageLength * 4, pbuf, buf_dma);
2371                                 pbuf = NULL;
2372                         }
2373                 }
2374         }
2375         rc = mpt_GetIocState(ioc, 1);
2376         switch (rc) {
2377         case MPI_IOC_STATE_OPERATIONAL:
2378                 karg.ioc_status =  HP_STATUS_OK;
2379                 break;
2380
2381         case MPI_IOC_STATE_FAULT:
2382                 karg.ioc_status =  HP_STATUS_FAILED;
2383                 break;
2384
2385         case MPI_IOC_STATE_RESET:
2386         case MPI_IOC_STATE_READY:
2387         default:
2388                 karg.ioc_status =  HP_STATUS_OTHER;
2389                 break;
2390         }
2391
2392         karg.base_io_addr = pci_resource_start(pdev, 0);
2393
2394         if ((ioc->bus_type == SAS) || (ioc->bus_type == FC))
2395                 karg.bus_phys_width = HP_BUS_WIDTH_UNK;
2396         else
2397                 karg.bus_phys_width = HP_BUS_WIDTH_16;
2398
2399         karg.hard_resets = 0;
2400         karg.soft_resets = 0;
2401         karg.timeouts = 0;
2402         if (ioc->sh != NULL) {
2403                 MPT_SCSI_HOST *hd =  (MPT_SCSI_HOST *)ioc->sh->hostdata;
2404
2405                 if (hd && (cim_rev == 1)) {
2406                         karg.hard_resets = hd->hard_resets;
2407                         karg.soft_resets = hd->soft_resets;
2408                         karg.timeouts = hd->timeouts;
2409                 }
2410         }
2411
2412         cfg.pageAddr = 0;
2413         cfg.action = MPI_TOOLBOX_ISTWI_READ_WRITE_TOOL;
2414         cfg.dir = MPI_TB_ISTWI_FLAGS_READ;
2415         cfg.timeout = 10;
2416         pbuf = pci_alloc_consistent(ioc->pcidev, 4, &buf_dma);
2417         if (pbuf) {
2418                 cfg.physAddr = buf_dma;
2419                 if ((mpt_toolbox(ioc, &cfg)) == 0) {
2420                         karg.rsvd = *(u32 *)pbuf;
2421                 }
2422                 pci_free_consistent(ioc->pcidev, 4, pbuf, buf_dma);
2423                 pbuf = NULL;
2424         }
2425
2426         /* Copy the data from kernel memory to user memory
2427          */
2428         if (copy_to_user((char __user *)arg, &karg, sizeof(hp_host_info_t))) {
2429                 printk(KERN_ERR "%s@%d::mptctl_hpgethostinfo - "
2430                         "Unable to write out hp_host_info @ %p\n",
2431                                 __FILE__, __LINE__, uarg);
2432                 return -EFAULT;
2433         }
2434
2435         return 0;
2436
2437 }
2438
2439 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2440 /* Prototype Routine for the HP TARGET INFO command.
2441  *
2442  * Outputs:     None.
2443  * Return:      0 if successful
2444  *              -EFAULT if data unavailable
2445  *              -EBUSY  if previous command timout and IOC reset is not complete.
2446  *              -ENODEV if no such device/adapter
2447  *              -ETIME  if timer expires
2448  *              -ENOMEM if memory allocation error
2449  */
2450 static int
2451 mptctl_hp_targetinfo(unsigned long arg)
2452 {
2453         hp_target_info_t __user *uarg = (void __user *) arg;
2454         SCSIDevicePage0_t       *pg0_alloc;
2455         SCSIDevicePage3_t       *pg3_alloc;
2456         MPT_ADAPTER             *ioc;
2457         MPT_SCSI_HOST           *hd = NULL;
2458         hp_target_info_t        karg;
2459         int                     iocnum;
2460         int                     data_sz;
2461         dma_addr_t              page_dma;
2462         CONFIGPARMS             cfg;
2463         ConfigPageHeader_t      hdr;
2464         int                     tmp, np, rc = 0;
2465
2466         dctlprintk((": mptctl_hp_targetinfo called.\n"));
2467         if (copy_from_user(&karg, uarg, sizeof(hp_target_info_t))) {
2468                 printk(KERN_ERR "%s@%d::mptctl_hp_targetinfo - "
2469                         "Unable to read in hp_host_targetinfo struct @ %p\n",
2470                                 __FILE__, __LINE__, uarg);
2471                 return -EFAULT;
2472         }
2473
2474         if (((iocnum = mpt_verify_adapter(karg.hdr.iocnum, &ioc)) < 0) ||
2475                 (ioc == NULL)) {
2476                 dctlprintk((KERN_ERR "%s::mptctl_hp_targetinfo() @%d - ioc%d not found!\n",
2477                                 __FILE__, __LINE__, iocnum));
2478                 return -ENODEV;
2479         }
2480
2481         /*  There is nothing to do for FCP parts.
2482          */
2483         if ((ioc->bus_type == SAS) || (ioc->bus_type == FC))
2484                 return 0;
2485
2486         if ((ioc->spi_data.sdp0length == 0) || (ioc->sh == NULL))
2487                 return 0;
2488
2489         if (ioc->sh->host_no != karg.hdr.host)
2490                 return -ENODEV;
2491
2492        /* Get the data transfer speeds
2493         */
2494         data_sz = ioc->spi_data.sdp0length * 4;
2495         pg0_alloc = (SCSIDevicePage0_t *) pci_alloc_consistent(ioc->pcidev, data_sz, &page_dma);
2496         if (pg0_alloc) {
2497                 hdr.PageVersion = ioc->spi_data.sdp0version;
2498                 hdr.PageLength = data_sz;
2499                 hdr.PageNumber = 0;
2500                 hdr.PageType = MPI_CONFIG_PAGETYPE_SCSI_DEVICE;
2501
2502                 cfg.cfghdr.hdr = &hdr;
2503                 cfg.action = MPI_CONFIG_ACTION_PAGE_READ_CURRENT;
2504                 cfg.dir = 0;
2505                 cfg.timeout = 0;
2506                 cfg.physAddr = page_dma;
2507
2508                 cfg.pageAddr = (karg.hdr.channel << 8) | karg.hdr.id;
2509
2510                 if ((rc = mpt_config(ioc, &cfg)) == 0) {
2511                         np = le32_to_cpu(pg0_alloc->NegotiatedParameters);
2512                         karg.negotiated_width = np & MPI_SCSIDEVPAGE0_NP_WIDE ?
2513                                         HP_BUS_WIDTH_16 : HP_BUS_WIDTH_8;
2514
2515                         if (np & MPI_SCSIDEVPAGE0_NP_NEG_SYNC_OFFSET_MASK) {
2516                                 tmp = (np & MPI_SCSIDEVPAGE0_NP_NEG_SYNC_PERIOD_MASK) >> 8;
2517                                 if (tmp < 0x09)
2518                                         karg.negotiated_speed = HP_DEV_SPEED_ULTRA320;
2519                                 else if (tmp <= 0x09)
2520                                         karg.negotiated_speed = HP_DEV_SPEED_ULTRA160;
2521                                 else if (tmp <= 0x0A)
2522                                         karg.negotiated_speed = HP_DEV_SPEED_ULTRA2;
2523                                 else if (tmp <= 0x0C)
2524                                         karg.negotiated_speed = HP_DEV_SPEED_ULTRA;
2525                                 else if (tmp <= 0x25)
2526                                         karg.negotiated_speed = HP_DEV_SPEED_FAST;
2527                                 else
2528                                         karg.negotiated_speed = HP_DEV_SPEED_ASYNC;
2529                         } else
2530                                 karg.negotiated_speed = HP_DEV_SPEED_ASYNC;
2531                 }
2532
2533                 pci_free_consistent(ioc->pcidev, data_sz, (u8 *) pg0_alloc, page_dma);
2534         }
2535
2536         /* Set defaults
2537          */
2538         karg.message_rejects = -1;
2539         karg.phase_errors = -1;
2540         karg.parity_errors = -1;
2541         karg.select_timeouts = -1;
2542
2543         /* Get the target error parameters
2544          */
2545         hdr.PageVersion = 0;
2546         hdr.PageLength = 0;
2547         hdr.PageNumber = 3;
2548         hdr.PageType = MPI_CONFIG_PAGETYPE_SCSI_DEVICE;
2549
2550         cfg.cfghdr.hdr = &hdr;
2551         cfg.action = MPI_CONFIG_ACTION_PAGE_HEADER;
2552         cfg.dir = 0;
2553         cfg.timeout = 0;
2554         cfg.physAddr = -1;
2555         if ((mpt_config(ioc, &cfg) == 0) && (cfg.cfghdr.hdr->PageLength > 0)) {
2556                 /* Issue the second config page request */
2557                 cfg.action = MPI_CONFIG_ACTION_PAGE_READ_CURRENT;
2558                 data_sz = (int) cfg.cfghdr.hdr->PageLength * 4;
2559                 pg3_alloc = (SCSIDevicePage3_t *) pci_alloc_consistent(
2560                                                         ioc->pcidev, data_sz, &page_dma);
2561                 if (pg3_alloc) {
2562                         cfg.physAddr = page_dma;
2563                         cfg.pageAddr = (karg.hdr.channel << 8) | karg.hdr.id;
2564                         if ((rc = mpt_config(ioc, &cfg)) == 0) {
2565                                 karg.message_rejects = (u32) le16_to_cpu(pg3_alloc->MsgRejectCount);
2566                                 karg.phase_errors = (u32) le16_to_cpu(pg3_alloc->PhaseErrorCount);
2567                                 karg.parity_errors = (u32) le16_to_cpu(pg3_alloc->ParityErrorCount);
2568                         }
2569                         pci_free_consistent(ioc->pcidev, data_sz, (u8 *) pg3_alloc, page_dma);
2570                 }
2571         }
2572         hd = (MPT_SCSI_HOST *) ioc->sh->hostdata;
2573         if (hd != NULL)
2574                 karg.select_timeouts = hd->sel_timeout[karg.hdr.id];
2575
2576         /* Copy the data from kernel memory to user memory
2577          */
2578         if (copy_to_user((char __user *)arg, &karg, sizeof(hp_target_info_t))) {
2579                 printk(KERN_ERR "%s@%d::mptctl_hp_target_info - "
2580                         "Unable to write out mpt_ioctl_targetinfo struct @ %p\n",
2581                                 __FILE__, __LINE__, uarg);
2582                 return -EFAULT;
2583         }
2584
2585         return 0;
2586 }
2587
2588 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2589
2590 static struct file_operations mptctl_fops = {
2591         .owner =        THIS_MODULE,
2592         .llseek =       no_llseek,
2593         .unlocked_ioctl = mptctl_ioctl,
2594 #ifdef CONFIG_COMPAT
2595         .compat_ioctl = compat_mpctl_ioctl,
2596 #endif
2597 };
2598
2599 static struct miscdevice mptctl_miscdev = {
2600         MPT_MINOR,
2601         MYNAM,
2602         &mptctl_fops
2603 };
2604
2605 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2606
2607 #ifdef CONFIG_COMPAT
2608
2609 static int
2610 compat_mptfwxfer_ioctl(struct file *filp, unsigned int cmd,
2611                         unsigned long arg)
2612 {
2613         struct mpt_fw_xfer32 kfw32;
2614         struct mpt_fw_xfer kfw;
2615         MPT_ADAPTER *iocp = NULL;
2616         int iocnum, iocnumX;
2617         int nonblock = (filp->f_flags & O_NONBLOCK);
2618         int ret;
2619
2620         dctlprintk((KERN_INFO MYNAM "::compat_mptfwxfer_ioctl() called\n"));
2621
2622         if (copy_from_user(&kfw32, (char __user *)arg, sizeof(kfw32)))
2623                 return -EFAULT;
2624
2625         /* Verify intended MPT adapter */
2626         iocnumX = kfw32.iocnum & 0xFF;
2627         if (((iocnum = mpt_verify_adapter(iocnumX, &iocp)) < 0) ||
2628             (iocp == NULL)) {
2629                 dctlprintk((KERN_ERR MYNAM "::compat_mptfwxfer_ioctl @%d - ioc%d not found!\n",
2630                                 __LINE__, iocnumX));
2631                 return -ENODEV;
2632         }
2633
2634         if ((ret = mptctl_syscall_down(iocp, nonblock)) != 0)
2635                 return ret;
2636
2637         kfw.iocnum = iocnum;
2638         kfw.fwlen = kfw32.fwlen;
2639         kfw.bufp = compat_ptr(kfw32.bufp);
2640
2641         ret = mptctl_do_fw_download(kfw.iocnum, kfw.bufp, kfw.fwlen);
2642
2643         mutex_unlock(&iocp->ioctl->ioctl_mutex);
2644
2645         return ret;
2646 }
2647
2648 static int
2649 compat_mpt_command(struct file *filp, unsigned int cmd,
2650                         unsigned long arg)
2651 {
2652         struct mpt_ioctl_command32 karg32;
2653         struct mpt_ioctl_command32 __user *uarg = (struct mpt_ioctl_command32 __user *) arg;
2654         struct mpt_ioctl_command karg;
2655         MPT_ADAPTER *iocp = NULL;
2656         int iocnum, iocnumX;
2657         int nonblock = (filp->f_flags & O_NONBLOCK);
2658         int ret;
2659
2660         dctlprintk((KERN_INFO MYNAM "::compat_mpt_command() called\n"));
2661
2662         if (copy_from_user(&karg32, (char __user *)arg, sizeof(karg32)))
2663                 return -EFAULT;
2664
2665         /* Verify intended MPT adapter */
2666         iocnumX = karg32.hdr.iocnum & 0xFF;
2667         if (((iocnum = mpt_verify_adapter(iocnumX, &iocp)) < 0) ||
2668             (iocp == NULL)) {
2669                 dctlprintk((KERN_ERR MYNAM "::compat_mpt_command @%d - ioc%d not found!\n",
2670                                 __LINE__, iocnumX));
2671                 return -ENODEV;
2672         }
2673
2674         if ((ret = mptctl_syscall_down(iocp, nonblock)) != 0)
2675                 return ret;
2676
2677         /* Copy data to karg */
2678         karg.hdr.iocnum = karg32.hdr.iocnum;
2679         karg.hdr.port = karg32.hdr.port;
2680         karg.timeout = karg32.timeout;
2681         karg.maxReplyBytes = karg32.maxReplyBytes;
2682
2683         karg.dataInSize = karg32.dataInSize;
2684         karg.dataOutSize = karg32.dataOutSize;
2685         karg.maxSenseBytes = karg32.maxSenseBytes;
2686         karg.dataSgeOffset = karg32.dataSgeOffset;
2687
2688         karg.replyFrameBufPtr = (char __user *)(unsigned long)karg32.replyFrameBufPtr;
2689         karg.dataInBufPtr = (char __user *)(unsigned long)karg32.dataInBufPtr;
2690         karg.dataOutBufPtr = (char __user *)(unsigned long)karg32.dataOutBufPtr;
2691         karg.senseDataPtr = (char __user *)(unsigned long)karg32.senseDataPtr;
2692
2693         /* Pass new structure to do_mpt_command
2694          */
2695         ret = mptctl_do_mpt_command (karg, &uarg->MF);
2696
2697         mutex_unlock(&iocp->ioctl->ioctl_mutex);
2698
2699         return ret;
2700 }
2701
2702 static long compat_mpctl_ioctl(struct file *f, unsigned int cmd, unsigned long arg)
2703 {
2704         long ret;
2705         lock_kernel();
2706         switch (cmd) {
2707         case MPTIOCINFO:
2708         case MPTIOCINFO1:
2709         case MPTIOCINFO2:
2710         case MPTTARGETINFO:
2711         case MPTEVENTQUERY:
2712         case MPTEVENTENABLE:
2713         case MPTEVENTREPORT:
2714         case MPTHARDRESET:
2715         case HP_GETHOSTINFO:
2716         case HP_GETTARGETINFO:
2717         case MPTTEST:
2718                 ret = __mptctl_ioctl(f, cmd, arg);
2719                 break;
2720         case MPTCOMMAND32:
2721                 ret = compat_mpt_command(f, cmd, arg);
2722                 break;
2723         case MPTFWDOWNLOAD32:
2724                 ret = compat_mptfwxfer_ioctl(f, cmd, arg);
2725                 break;
2726         default:
2727                 ret = -ENOIOCTLCMD;
2728                 break;
2729         }
2730         unlock_kernel();
2731         return ret;
2732 }
2733
2734 #endif
2735
2736
2737 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2738 /*
2739  *      mptctl_probe - Installs ioctl devices per bus.
2740  *      @pdev: Pointer to pci_dev structure
2741  *
2742  *      Returns 0 for success, non-zero for failure.
2743  *
2744  */
2745
2746 static int
2747 mptctl_probe(struct pci_dev *pdev, const struct pci_device_id *id)
2748 {
2749         int err;
2750         int sz;
2751         u8 *mem;
2752         MPT_ADAPTER *ioc = pci_get_drvdata(pdev);
2753
2754         /*
2755          * Allocate and inite a MPT_IOCTL structure
2756         */
2757         sz = sizeof (MPT_IOCTL);
2758         mem = kmalloc(sz, GFP_KERNEL);
2759         if (mem == NULL) {
2760                 err = -ENOMEM;
2761                 goto out_fail;
2762         }
2763
2764         memset(mem, 0, sz);
2765         ioc->ioctl = (MPT_IOCTL *) mem;
2766         ioc->ioctl->ioc = ioc;
2767         mutex_init(&ioc->ioctl->ioctl_mutex);
2768         return 0;
2769
2770 out_fail:
2771
2772         mptctl_remove(pdev);
2773         return err;
2774 }
2775
2776 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2777 /*
2778  *      mptctl_remove - Removed ioctl devices
2779  *      @pdev: Pointer to pci_dev structure
2780  *
2781  *
2782  */
2783 static void
2784 mptctl_remove(struct pci_dev *pdev)
2785 {
2786         MPT_ADAPTER *ioc = pci_get_drvdata(pdev);
2787
2788         kfree ( ioc->ioctl );
2789 }
2790
2791 static struct mpt_pci_driver mptctl_driver = {
2792   .probe                = mptctl_probe,
2793   .remove               = mptctl_remove,
2794 };
2795
2796 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2797 static int __init mptctl_init(void)
2798 {
2799         int err;
2800         int where = 1;
2801
2802         show_mptmod_ver(my_NAME, my_VERSION);
2803
2804         if(mpt_device_driver_register(&mptctl_driver,
2805           MPTCTL_DRIVER) != 0 ) {
2806                 dprintk((KERN_INFO MYNAM
2807                 ": failed to register dd callbacks\n"));
2808         }
2809
2810         /* Register this device */
2811         err = misc_register(&mptctl_miscdev);
2812         if (err < 0) {
2813                 printk(KERN_ERR MYNAM ": Can't register misc device [minor=%d].\n", MPT_MINOR);
2814                 goto out_fail;
2815         }
2816         printk(KERN_INFO MYNAM ": Registered with Fusion MPT base driver\n");
2817         printk(KERN_INFO MYNAM ": /dev/%s @ (major,minor=%d,%d)\n",
2818                          mptctl_miscdev.name, MISC_MAJOR, mptctl_miscdev.minor);
2819
2820         /*
2821          *  Install our handler
2822          */
2823         ++where;
2824         if ((mptctl_id = mpt_register(mptctl_reply, MPTCTL_DRIVER)) < 0) {
2825                 printk(KERN_ERR MYNAM ": ERROR: Failed to register with Fusion MPT base driver\n");
2826                 misc_deregister(&mptctl_miscdev);
2827                 err = -EBUSY;
2828                 goto out_fail;
2829         }
2830
2831         if (mpt_reset_register(mptctl_id, mptctl_ioc_reset) == 0) {
2832                 dprintk((KERN_INFO MYNAM ": Registered for IOC reset notifications\n"));
2833         } else {
2834                 /* FIXME! */
2835         }
2836
2837         return 0;
2838
2839 out_fail:
2840
2841         mpt_device_driver_deregister(MPTCTL_DRIVER);
2842
2843         return err;
2844 }
2845
2846 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2847 static void mptctl_exit(void)
2848 {
2849         misc_deregister(&mptctl_miscdev);
2850         printk(KERN_INFO MYNAM ": Deregistered /dev/%s @ (major,minor=%d,%d)\n",
2851                          mptctl_miscdev.name, MISC_MAJOR, mptctl_miscdev.minor);
2852
2853         /* De-register reset handler from base module */
2854         mpt_reset_deregister(mptctl_id);
2855         dprintk((KERN_INFO MYNAM ": Deregistered for IOC reset notifications\n"));
2856
2857         /* De-register callback handler from base module */
2858         mpt_deregister(mptctl_id);
2859         printk(KERN_INFO MYNAM ": Deregistered from Fusion MPT base driver\n");
2860
2861         mpt_device_driver_deregister(MPTCTL_DRIVER);
2862
2863 }
2864
2865 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2866
2867 module_init(mptctl_init);
2868 module_exit(mptctl_exit);