1 /* from src/prism2/download/prism2dl.c
3 * utility for downloading prism2 images moved into kernelspace
5 * Copyright (C) 1999 AbsoluteValue Systems, Inc. All Rights Reserved.
6 * --------------------------------------------------------------------
10 * The contents of this file are subject to the Mozilla Public
11 * License Version 1.1 (the "License"); you may not use this file
12 * except in compliance with the License. You may obtain a copy of
13 * the License at http://www.mozilla.org/MPL/
15 * Software distributed under the License is distributed on an "AS
16 * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
17 * implied. See the License for the specific language governing
18 * rights and limitations under the License.
20 * Alternatively, the contents of this file may be used under the
21 * terms of the GNU Public License version 2 (the "GPL"), in which
22 * case the provisions of the GPL are applicable instead of the
23 * above. If you wish to allow the use of your version of this file
24 * only under the terms of the GPL and not to allow others to use
25 * your version of this file under the MPL, indicate your decision
26 * by deleting the provisions above and replace them with the notice
27 * and other provisions required by the GPL. If you do not delete
28 * the provisions above, a recipient may use your version of this
29 * file under either the MPL or the GPL.
31 * --------------------------------------------------------------------
33 * Inquiries regarding the linux-wlan Open Source project can be
36 * AbsoluteValue Systems Inc.
38 * http://www.linux-wlan.com
40 * --------------------------------------------------------------------
42 * Portions of the development of this software were funded by
43 * Intersil Corporation as part of PRISM(R) chipset product development.
45 * --------------------------------------------------------------------
48 /*================================================================*/
50 #include <linux/ihex.h>
51 #include <linux/slab.h>
53 /*================================================================*/
56 #define PRISM2_USB_FWFILE "prism2_ru.fw"
57 MODULE_FIRMWARE(PRISM2_USB_FWFILE
);
59 #define S3DATA_MAX 5000
60 #define S3PLUG_MAX 200
64 #define S3ADDR_PLUG (0xff000000UL)
65 #define S3ADDR_CRC (0xff100000UL)
66 #define S3ADDR_INFO (0xff200000UL)
67 #define S3ADDR_START (0xff400000UL)
69 #define CHUNKS_MAX 100
71 #define WRITESIZE_MAX 4096
73 /*================================================================*/
99 hfa384x_compident_t version
;
100 hfa384x_caplevel_t compat
;
102 hfa384x_compident_t platform
;
107 u8 buf
[HFA384x_PDA_LEN_MAX
];
108 hfa384x_pdrec_t
*rec
[HFA384x_PDA_RECS_MAX
];
113 u32 addr
; /* start address */
114 u32 len
; /* in bytes */
115 u16 crc
; /* CRC value (if it falls at a chunk boundary) */
119 /*================================================================*/
120 /* Local Static Definitions */
122 /*----------------------------------------------------------------*/
123 /* s-record image processing */
126 static unsigned int ns3data
;
127 static struct s3datarec s3data
[S3DATA_MAX
];
130 static unsigned int ns3plug
;
131 static struct s3plugrec s3plug
[S3PLUG_MAX
];
134 static unsigned int ns3crc
;
135 static struct s3crcrec s3crc
[S3CRC_MAX
];
138 static unsigned int ns3info
;
139 static struct s3inforec s3info
[S3INFO_MAX
];
141 /* S7 record (there _better_ be only one) */
142 static u32 startaddr
;
144 /* Load image chunks */
145 static unsigned int nfchunks
;
146 static struct imgchunk fchunk
[CHUNKS_MAX
];
148 /* Note that for the following pdrec_t arrays, the len and code */
149 /* fields are stored in HOST byte order. The mkpdrlist() function */
150 /* does the conversion. */
151 /*----------------------------------------------------------------*/
152 /* PDA, built from [card|newfile]+[addfile1+addfile2...] */
154 static struct pda pda
;
155 static hfa384x_compident_t nicid
;
156 static hfa384x_caplevel_t rfid
;
157 static hfa384x_caplevel_t macid
;
158 static hfa384x_caplevel_t priid
;
160 /*================================================================*/
161 /* Local Function Declarations */
163 static int prism2_fwapply(const struct ihex_binrec
*rfptr
,
164 wlandevice_t
*wlandev
);
166 static int read_fwfile(const struct ihex_binrec
*rfptr
);
168 static int mkimage(struct imgchunk
*clist
, unsigned int *ccnt
);
170 static int read_cardpda(struct pda
*pda
, wlandevice_t
*wlandev
);
172 static int mkpdrlist(struct pda
*pda
);
174 static int plugimage(struct imgchunk
*fchunk
, unsigned int nfchunks
,
175 struct s3plugrec
*s3plug
, unsigned int ns3plug
, struct pda
*pda
);
177 static int crcimage(struct imgchunk
*fchunk
, unsigned int nfchunks
,
178 struct s3crcrec
*s3crc
, unsigned int ns3crc
);
180 static int writeimage(wlandevice_t
*wlandev
, struct imgchunk
*fchunk
,
181 unsigned int nfchunks
);
182 static void free_chunks(struct imgchunk
*fchunk
, unsigned int *nfchunks
);
184 static void free_srecs(void);
186 static int validate_identity(void);
188 /*================================================================*/
189 /* Function Definitions */
191 /*----------------------------------------------------------------
194 * Try and get firmware into memory
197 * udev usb device structure
198 * wlandev wlan device structure
203 ----------------------------------------------------------------*/
204 static int prism2_fwtry(struct usb_device
*udev
, wlandevice_t
*wlandev
)
206 const struct firmware
*fw_entry
= NULL
;
208 netdev_info(wlandev
->netdev
, "prism2_usb: Checking for firmware %s\n",
210 if (request_ihex_firmware(&fw_entry
,
211 PRISM2_USB_FWFILE
, &udev
->dev
) != 0) {
212 netdev_info(wlandev
->netdev
,
213 "prism2_usb: Firmware not available, but not essential\n");
214 netdev_info(wlandev
->netdev
,
215 "prism2_usb: can continue to use card anyway.\n");
219 netdev_info(wlandev
->netdev
,
220 "prism2_usb: %s will be processed, size %zu\n",
221 PRISM2_USB_FWFILE
, fw_entry
->size
);
222 prism2_fwapply((const struct ihex_binrec
*)fw_entry
->data
, wlandev
);
224 release_firmware(fw_entry
);
228 /*----------------------------------------------------------------
231 * Apply the firmware loaded into memory
234 * rfptr firmware image in kernel memory
240 ----------------------------------------------------------------*/
241 static int prism2_fwapply(const struct ihex_binrec
*rfptr
,
242 wlandevice_t
*wlandev
)
244 signed int result
= 0;
245 struct p80211msg_dot11req_mibget getmsg
;
249 /* Initialize the data structures */
251 memset(s3data
, 0, sizeof(s3data
));
253 memset(s3plug
, 0, sizeof(s3plug
));
255 memset(s3crc
, 0, sizeof(s3crc
));
257 memset(s3info
, 0, sizeof(s3info
));
261 memset(fchunk
, 0, sizeof(fchunk
));
262 memset(&nicid
, 0, sizeof(nicid
));
263 memset(&rfid
, 0, sizeof(rfid
));
264 memset(&macid
, 0, sizeof(macid
));
265 memset(&priid
, 0, sizeof(priid
));
267 /* clear the pda and add an initial END record */
268 memset(&pda
, 0, sizeof(pda
));
269 pda
.rec
[0] = (hfa384x_pdrec_t
*) pda
.buf
;
270 pda
.rec
[0]->len
= cpu_to_le16(2); /* len in words */
271 pda
.rec
[0]->code
= cpu_to_le16(HFA384x_PDR_END_OF_PDA
);
274 /*-----------------------------------------------------*/
275 /* Put card into fwload state */
276 prism2sta_ifstate(wlandev
, P80211ENUM_ifstate_fwload
);
278 /* Build the PDA we're going to use. */
279 if (read_cardpda(&pda
, wlandev
)) {
280 netdev_err(wlandev
->netdev
, "load_cardpda failed, exiting.\n");
285 /* read the card's PRI-SUP */
286 memset(&getmsg
, 0, sizeof(getmsg
));
287 getmsg
.msgcode
= DIDmsg_dot11req_mibget
;
288 getmsg
.msglen
= sizeof(getmsg
);
289 strcpy(getmsg
.devname
, wlandev
->name
);
291 getmsg
.mibattribute
.did
= DIDmsg_dot11req_mibget_mibattribute
;
292 getmsg
.mibattribute
.status
= P80211ENUM_msgitem_status_data_ok
;
293 getmsg
.resultcode
.did
= DIDmsg_dot11req_mibget_resultcode
;
294 getmsg
.resultcode
.status
= P80211ENUM_msgitem_status_no_value
;
296 item
= (p80211itemd_t
*) getmsg
.mibattribute
.data
;
297 item
->did
= DIDmib_p2_p2NIC_p2PRISupRange
;
298 item
->status
= P80211ENUM_msgitem_status_no_value
;
300 data
= (u32
*) item
->data
;
302 /* DIDmsg_dot11req_mibget */
303 prism2mgmt_mibset_mibget(wlandev
, &getmsg
);
304 if (getmsg
.resultcode
.data
!= P80211ENUM_resultcode_success
)
305 netdev_err(wlandev
->netdev
, "Couldn't fetch PRI-SUP info\n");
307 /* Already in host order */
308 priid
.role
= *data
++;
310 priid
.variant
= *data
++;
311 priid
.bottom
= *data
++;
314 /* Read the S3 file */
315 result
= read_fwfile(rfptr
);
317 netdev_err(wlandev
->netdev
,
318 "Failed to read the data exiting.\n");
322 result
= validate_identity();
324 netdev_err(wlandev
->netdev
, "Incompatible firmware image.\n");
328 if (startaddr
== 0x00000000) {
329 netdev_err(wlandev
->netdev
,
330 "Can't RAM download a Flash image!\n");
335 /* Make the image chunks */
336 result
= mkimage(fchunk
, &nfchunks
);
338 netdev_err(wlandev
->netdev
, "Failed to make image chunk.\n");
342 /* Do any plugging */
343 result
= plugimage(fchunk
, nfchunks
, s3plug
, ns3plug
, &pda
);
345 netdev_err(wlandev
->netdev
, "Failed to plug data.\n");
349 /* Insert any CRCs */
350 result
= crcimage(fchunk
, nfchunks
, s3crc
, ns3crc
);
352 netdev_err(wlandev
->netdev
, "Failed to insert all CRCs\n");
356 /* Write the image */
357 result
= writeimage(wlandev
, fchunk
, nfchunks
);
359 netdev_err(wlandev
->netdev
, "Failed to ramwrite image data.\n");
363 netdev_info(wlandev
->netdev
, "prism2_usb: firmware loading finished.\n");
366 /* clear any allocated memory */
367 free_chunks(fchunk
, &nfchunks
);
374 /*----------------------------------------------------------------
377 * Adds a CRC16 in the two bytes prior to each block identified by
378 * an S3 CRC record. Currently, we don't actually do a CRC we just
379 * insert the value 0xC0DE in hfa384x order.
382 * fchunk Array of image chunks
383 * nfchunks Number of image chunks
384 * s3crc Array of crc records
385 * ns3crc Number of crc records
390 ----------------------------------------------------------------*/
391 static int crcimage(struct imgchunk
*fchunk
, unsigned int nfchunks
,
392 struct s3crcrec
*s3crc
, unsigned int ns3crc
)
404 for (i
= 0; i
< ns3crc
; i
++) {
405 if (!s3crc
[i
].dowrite
)
407 crcstart
= s3crc
[i
].addr
;
408 crcend
= s3crc
[i
].addr
+ s3crc
[i
].len
;
410 for (c
= 0; c
< nfchunks
; c
++) {
411 cstart
= fchunk
[c
].addr
;
412 cend
= fchunk
[c
].addr
+ fchunk
[c
].len
;
413 /* the line below does an address & len match search */
414 /* unfortunately, I've found that the len fields of */
415 /* some crc records don't match with the length of */
416 /* the actual data, so we're not checking right now */
417 /* if (crcstart-2 >= cstart && crcend <= cend) break; */
419 /* note the -2 below, it's to make sure the chunk has */
420 /* space for the CRC value */
421 if (crcstart
- 2 >= cstart
&& crcstart
< cend
)
425 pr_err("Failed to find chunk for crcrec[%d], addr=0x%06x len=%d , aborting crc.\n",
426 i
, s3crc
[i
].addr
, s3crc
[i
].len
);
431 pr_debug("Adding crc @ 0x%06x\n", s3crc
[i
].addr
- 2);
432 chunkoff
= crcstart
- cstart
- 2;
433 dest
= fchunk
[c
].data
+ chunkoff
;
441 /*----------------------------------------------------------------
444 * Clears the chunklist data structures in preparation for a new file.
451 ----------------------------------------------------------------*/
452 static void free_chunks(struct imgchunk
*fchunk
, unsigned int *nfchunks
)
456 for (i
= 0; i
< *nfchunks
; i
++)
457 kfree(fchunk
[i
].data
);
460 memset(fchunk
, 0, sizeof(*fchunk
));
464 /*----------------------------------------------------------------
467 * Clears the srec data structures in preparation for a new file.
474 ----------------------------------------------------------------*/
475 static void free_srecs(void)
478 memset(s3data
, 0, sizeof(s3data
));
480 memset(s3plug
, 0, sizeof(s3plug
));
482 memset(s3crc
, 0, sizeof(s3crc
));
484 memset(s3info
, 0, sizeof(s3info
));
488 /*----------------------------------------------------------------
491 * Scans the currently loaded set of S records for data residing
492 * in contiguous memory regions. Each contiguous region is then
493 * made into a 'chunk'. This function assumes that we're building
494 * a new chunk list. Assumes the s3data items are in sorted order.
500 * ~0 - failure (probably an errno)
501 ----------------------------------------------------------------*/
502 static int mkimage(struct imgchunk
*clist
, unsigned int *ccnt
)
515 /* There may already be data in the chunklist */
518 /* Establish the location and size of each chunk */
519 for (i
= 0; i
< ns3data
; i
++) {
520 if (s3data
[i
].addr
== nextaddr
) {
521 /* existing chunk, grow it */
522 clist
[currchunk
].len
+= s3data
[i
].len
;
523 nextaddr
+= s3data
[i
].len
;
527 currchunk
= *ccnt
- 1;
528 clist
[currchunk
].addr
= s3data
[i
].addr
;
529 clist
[currchunk
].len
= s3data
[i
].len
;
530 nextaddr
= s3data
[i
].addr
+ s3data
[i
].len
;
531 /* Expand the chunk if there is a CRC record at */
532 /* their beginning bound */
533 for (j
= 0; j
< ns3crc
; j
++) {
534 if (s3crc
[j
].dowrite
&&
535 s3crc
[j
].addr
== clist
[currchunk
].addr
) {
536 clist
[currchunk
].addr
-= 2;
537 clist
[currchunk
].len
+= 2;
543 /* We're currently assuming there aren't any overlapping chunks */
544 /* if this proves false, we'll need to add code to coalesce. */
546 /* Allocate buffer space for chunks */
547 for (i
= 0; i
< *ccnt
; i
++) {
548 clist
[i
].data
= kzalloc(clist
[i
].len
, GFP_KERNEL
);
549 if (!clist
[i
].data
) {
550 pr_err("failed to allocate image space, exitting.\n");
553 pr_debug("chunk[%d]: addr=0x%06x len=%d\n",
554 i
, clist
[i
].addr
, clist
[i
].len
);
557 /* Copy srec data to chunks */
558 for (i
= 0; i
< ns3data
; i
++) {
559 s3start
= s3data
[i
].addr
;
560 s3end
= s3start
+ s3data
[i
].len
- 1;
561 for (j
= 0; j
< *ccnt
; j
++) {
562 cstart
= clist
[j
].addr
;
563 cend
= cstart
+ clist
[j
].len
- 1;
564 if (s3start
>= cstart
&& s3end
<= cend
)
567 if (((unsigned int)j
) >= (*ccnt
)) {
568 pr_err("s3rec(a=0x%06x,l=%d), no chunk match, exiting.\n",
569 s3start
, s3data
[i
].len
);
572 coffset
= s3start
- cstart
;
573 memcpy(clist
[j
].data
+ coffset
, s3data
[i
].data
, s3data
[i
].len
);
579 /*----------------------------------------------------------------
582 * Reads a raw PDA and builds an array of pdrec_t structures.
585 * pda buffer containing raw PDA bytes
586 * pdrec ptr to an array of pdrec_t's. Will be filled on exit.
587 * nrec ptr to a variable that will contain the count of PDRs
591 * ~0 - failure (probably an errno)
592 ----------------------------------------------------------------*/
593 static int mkpdrlist(struct pda
*pda
)
595 u16
*pda16
= (u16
*) pda
->buf
;
596 int curroff
; /* in 'words' */
600 while (curroff
< (HFA384x_PDA_LEN_MAX
/ 2 - 1) &&
601 le16_to_cpu(pda16
[curroff
+ 1]) != HFA384x_PDR_END_OF_PDA
) {
602 pda
->rec
[pda
->nrec
] = (hfa384x_pdrec_t
*) &(pda16
[curroff
]);
604 if (le16_to_cpu(pda
->rec
[pda
->nrec
]->code
) ==
606 memcpy(&nicid
, &pda
->rec
[pda
->nrec
]->data
.nicid
,
608 nicid
.id
= le16_to_cpu(nicid
.id
);
609 nicid
.variant
= le16_to_cpu(nicid
.variant
);
610 nicid
.major
= le16_to_cpu(nicid
.major
);
611 nicid
.minor
= le16_to_cpu(nicid
.minor
);
613 if (le16_to_cpu(pda
->rec
[pda
->nrec
]->code
) ==
614 HFA384x_PDR_MFISUPRANGE
) {
615 memcpy(&rfid
, &pda
->rec
[pda
->nrec
]->data
.mfisuprange
,
617 rfid
.id
= le16_to_cpu(rfid
.id
);
618 rfid
.variant
= le16_to_cpu(rfid
.variant
);
619 rfid
.bottom
= le16_to_cpu(rfid
.bottom
);
620 rfid
.top
= le16_to_cpu(rfid
.top
);
622 if (le16_to_cpu(pda
->rec
[pda
->nrec
]->code
) ==
623 HFA384x_PDR_CFISUPRANGE
) {
624 memcpy(&macid
, &pda
->rec
[pda
->nrec
]->data
.cfisuprange
,
626 macid
.id
= le16_to_cpu(macid
.id
);
627 macid
.variant
= le16_to_cpu(macid
.variant
);
628 macid
.bottom
= le16_to_cpu(macid
.bottom
);
629 macid
.top
= le16_to_cpu(macid
.top
);
633 curroff
+= le16_to_cpu(pda16
[curroff
]) + 1;
636 if (curroff
>= (HFA384x_PDA_LEN_MAX
/ 2 - 1)) {
637 pr_err("no end record found or invalid lengths in PDR data, exiting. %x %d\n",
641 pda
->rec
[pda
->nrec
] = (hfa384x_pdrec_t
*) &(pda16
[curroff
]);
646 /*----------------------------------------------------------------
649 * Plugs the given image using the given plug records from the given
653 * fchunk Array of image chunks
654 * nfchunks Number of image chunks
655 * s3plug Array of plug records
656 * ns3plug Number of plug records
657 * pda Current pda data
662 ----------------------------------------------------------------*/
663 static int plugimage(struct imgchunk
*fchunk
, unsigned int nfchunks
,
664 struct s3plugrec
*s3plug
, unsigned int ns3plug
, struct pda
*pda
)
667 int i
; /* plug index */
668 int j
; /* index of PDR or -1 if fname plug */
669 int c
; /* chunk index */
677 /* for each plug record */
678 for (i
= 0; i
< ns3plug
; i
++) {
679 pstart
= s3plug
[i
].addr
;
680 pend
= s3plug
[i
].addr
+ s3plug
[i
].len
;
681 /* find the matching PDR (or filename) */
682 if (s3plug
[i
].itemcode
!= 0xffffffffUL
) { /* not filename */
683 for (j
= 0; j
< pda
->nrec
; j
++) {
684 if (s3plug
[i
].itemcode
==
685 le16_to_cpu(pda
->rec
[j
]->code
))
691 if (j
>= pda
->nrec
&& j
!= -1) { /* if no matching PDR, fail */
692 pr_warn("warning: Failed to find PDR for plugrec 0x%04x.\n",
694 continue; /* and move on to the next PDR */
696 /* MSM: They swear that unless it's the MAC address,
697 * the serial number, or the TX calibration records,
698 * then there's reasonable defaults in the f/w
699 * image. Therefore, missing PDRs in the card
700 * should only be a warning, not fatal.
701 * TODO: add fatals for the PDRs mentioned above.
708 /* Validate plug len against PDR len */
709 if (j
!= -1 && s3plug
[i
].len
< le16_to_cpu(pda
->rec
[j
]->len
)) {
710 pr_err("error: Plug vs. PDR len mismatch for plugrec 0x%04x, abort plugging.\n",
717 * Validate plug address against
718 * chunk data and identify chunk
720 for (c
= 0; c
< nfchunks
; c
++) {
721 cstart
= fchunk
[c
].addr
;
722 cend
= fchunk
[c
].addr
+ fchunk
[c
].len
;
723 if (pstart
>= cstart
&& pend
<= cend
)
727 pr_err("error: Failed to find image chunk for plugrec 0x%04x.\n",
734 chunkoff
= pstart
- cstart
;
735 dest
= fchunk
[c
].data
+ chunkoff
;
736 pr_debug("Plugging item 0x%04x @ 0x%06x, len=%d, cnum=%d coff=0x%06x\n",
737 s3plug
[i
].itemcode
, pstart
, s3plug
[i
].len
,
740 if (j
== -1) { /* plug the filename */
741 memset(dest
, 0, s3plug
[i
].len
);
742 strncpy(dest
, PRISM2_USB_FWFILE
, s3plug
[i
].len
- 1);
743 } else { /* plug a PDR */
744 memcpy(dest
, &(pda
->rec
[j
]->data
), s3plug
[i
].len
);
751 /*----------------------------------------------------------------
754 * Sends the command for the driver to read the pda from the card
755 * named in the device variable. Upon success, the card pda is
756 * stored in the "cardpda" variables. Note that the pda structure
757 * is considered 'well formed' after this function. That means
758 * that the nrecs is valid, the rec array has been set up, and there's
759 * a valid PDAEND record in the raw PDA data.
767 * ~0 - failure (probably an errno)
768 ----------------------------------------------------------------*/
769 static int read_cardpda(struct pda
*pda
, wlandevice_t
*wlandev
)
772 struct p80211msg_p2req_readpda
*msg
;
774 msg
= kzalloc(sizeof(*msg
), GFP_KERNEL
);
779 msg
->msgcode
= DIDmsg_p2req_readpda
;
780 msg
->msglen
= sizeof(msg
);
781 strcpy(msg
->devname
, wlandev
->name
);
782 msg
->pda
.did
= DIDmsg_p2req_readpda_pda
;
783 msg
->pda
.len
= HFA384x_PDA_LEN_MAX
;
784 msg
->pda
.status
= P80211ENUM_msgitem_status_no_value
;
785 msg
->resultcode
.did
= DIDmsg_p2req_readpda_resultcode
;
786 msg
->resultcode
.len
= sizeof(u32
);
787 msg
->resultcode
.status
= P80211ENUM_msgitem_status_no_value
;
789 if (prism2mgmt_readpda(wlandev
, msg
) != 0) {
790 /* prism2mgmt_readpda prints an errno if appropriate */
792 } else if (msg
->resultcode
.data
== P80211ENUM_resultcode_success
) {
793 memcpy(pda
->buf
, msg
->pda
.data
, HFA384x_PDA_LEN_MAX
);
794 result
= mkpdrlist(pda
);
796 /* resultcode must've been something other than success */
804 /*----------------------------------------------------------------
807 * Reads the given fw file which should have been compiled from an srec
808 * file. Each record in the fw file will either be a plain data record,
809 * a start address record, or other records used for plugging.
811 * Note that data records are expected to be sorted into
812 * ascending address order in the fw file.
814 * Note also that the start address record, originally an S7 record in
815 * the srec file, is expected in the fw file to be like a data record but
816 * with a certain address to make it identifiable.
818 * Here's the SREC format that the fw should have come from:
819 * S[37]nnaaaaaaaaddd...dddcc
821 * nn - number of bytes starting with the address field
822 * aaaaaaaa - address in readable (or big endian) format
823 * dd....dd - 0-245 data bytes (two chars per byte)
826 * The S7 record's (there should be only one) address value gets
827 * converted to an S3 record with address of 0xff400000, with the
828 * start address being stored as a 4 byte data word. That address is
829 * the start execution address used for RAM downloads.
831 * The S3 records have a collection of subformats indicated by the
833 * 0xff000000 - Plug record, data field format:
834 * xxxxxxxxaaaaaaaassssssss
835 * x - PDR code number (little endian)
836 * a - Address in load image to plug (little endian)
837 * s - Length of plug data area (little endian)
839 * 0xff100000 - CRC16 generation record, data field format:
840 * aaaaaaaassssssssbbbbbbbb
841 * a - Start address for CRC calculation (little endian)
842 * s - Length of data to calculate over (little endian)
843 * b - Boolean, true=write crc, false=don't write
845 * 0xff200000 - Info record, data field format:
847 * s - Size in words (little endian)
848 * t - Info type (little endian), see #defines and
849 * struct s3inforec for details about types.
850 * d - (s - 1) little endian words giving the contents of
851 * the given info type.
853 * 0xff400000 - Start address record, data field format:
855 * a - Address in load image to plug (little endian)
858 * record firmware image (ihex record structure) in kernel memory
862 * ~0 - failure (probably an errno)
863 ----------------------------------------------------------------*/
864 static int read_fwfile(const struct ihex_binrec
*record
)
870 u32
*ptr32
, len
, addr
;
872 pr_debug("Reading fw file ...\n");
878 len
= be16_to_cpu(record
->len
);
879 addr
= be32_to_cpu(record
->addr
);
881 /* Point into data for different word lengths */
882 ptr32
= (u32
*) record
->data
;
883 ptr16
= (u16
*) record
->data
;
885 /* parse what was an S3 srec and put it in the right array */
889 pr_debug(" S7 start addr, record=%d addr=0x%08x\n",
894 s3plug
[ns3plug
].itemcode
= *ptr32
;
895 s3plug
[ns3plug
].addr
= *(ptr32
+ 1);
896 s3plug
[ns3plug
].len
= *(ptr32
+ 2);
898 pr_debug(" S3 plugrec, record=%d itemcode=0x%08x addr=0x%08x len=%d\n",
900 s3plug
[ns3plug
].itemcode
,
901 s3plug
[ns3plug
].addr
,
902 s3plug
[ns3plug
].len
);
905 if (ns3plug
== S3PLUG_MAX
) {
906 pr_err("S3 plugrec limit reached - aborting\n");
911 s3crc
[ns3crc
].addr
= *ptr32
;
912 s3crc
[ns3crc
].len
= *(ptr32
+ 1);
913 s3crc
[ns3crc
].dowrite
= *(ptr32
+ 2);
915 pr_debug(" S3 crcrec, record=%d addr=0x%08x len=%d write=0x%08x\n",
919 s3crc
[ns3crc
].dowrite
);
921 if (ns3crc
== S3CRC_MAX
) {
922 pr_err("S3 crcrec limit reached - aborting\n");
927 s3info
[ns3info
].len
= *ptr16
;
928 s3info
[ns3info
].type
= *(ptr16
+ 1);
930 pr_debug(" S3 inforec, record=%d len=0x%04x type=0x%04x\n",
933 s3info
[ns3info
].type
);
934 if (((s3info
[ns3info
].len
- 1) * sizeof(u16
)) >
935 sizeof(s3info
[ns3info
].info
)) {
936 pr_err("S3 inforec length too long - aborting\n");
940 tmpinfo
= (u16
*)&(s3info
[ns3info
].info
.version
);
942 for (i
= 0; i
< s3info
[ns3info
].len
- 1; i
++) {
943 tmpinfo
[i
] = *(ptr16
+ 2 + i
);
944 pr_debug("%04x ", tmpinfo
[i
]);
949 if (ns3info
== S3INFO_MAX
) {
950 pr_err("S3 inforec limit reached - aborting\n");
954 default: /* Data record */
955 s3data
[ns3data
].addr
= addr
;
956 s3data
[ns3data
].len
= len
;
957 s3data
[ns3data
].data
= (uint8_t *) record
->data
;
959 if (ns3data
== S3DATA_MAX
) {
960 pr_err("S3 datarec limit reached - aborting\n");
965 record
= ihex_next_binrec(record
);
970 /*----------------------------------------------------------------
973 * Takes the chunks, builds p80211 messages and sends them down
974 * to the driver for writing to the card.
978 * fchunk Array of image chunks
979 * nfchunks Number of image chunks
984 ----------------------------------------------------------------*/
985 static int writeimage(wlandevice_t
*wlandev
, struct imgchunk
*fchunk
,
986 unsigned int nfchunks
)
989 struct p80211msg_p2req_ramdl_state
*rstmsg
;
990 struct p80211msg_p2req_ramdl_write
*rwrmsg
;
994 unsigned int nwrites
;
999 rstmsg
= kzalloc(sizeof(*rstmsg
), GFP_KERNEL
);
1000 rwrmsg
= kzalloc(sizeof(*rwrmsg
), GFP_KERNEL
);
1001 if (!rstmsg
|| !rwrmsg
) {
1004 netdev_err(wlandev
->netdev
,
1005 "writeimage: no memory for firmware download, aborting download\n");
1009 /* Initialize the messages */
1010 strcpy(rstmsg
->devname
, wlandev
->name
);
1011 rstmsg
->msgcode
= DIDmsg_p2req_ramdl_state
;
1012 rstmsg
->msglen
= sizeof(*rstmsg
);
1013 rstmsg
->enable
.did
= DIDmsg_p2req_ramdl_state_enable
;
1014 rstmsg
->exeaddr
.did
= DIDmsg_p2req_ramdl_state_exeaddr
;
1015 rstmsg
->resultcode
.did
= DIDmsg_p2req_ramdl_state_resultcode
;
1016 rstmsg
->enable
.status
= P80211ENUM_msgitem_status_data_ok
;
1017 rstmsg
->exeaddr
.status
= P80211ENUM_msgitem_status_data_ok
;
1018 rstmsg
->resultcode
.status
= P80211ENUM_msgitem_status_no_value
;
1019 rstmsg
->enable
.len
= sizeof(u32
);
1020 rstmsg
->exeaddr
.len
= sizeof(u32
);
1021 rstmsg
->resultcode
.len
= sizeof(u32
);
1023 strcpy(rwrmsg
->devname
, wlandev
->name
);
1024 rwrmsg
->msgcode
= DIDmsg_p2req_ramdl_write
;
1025 rwrmsg
->msglen
= sizeof(*rwrmsg
);
1026 rwrmsg
->addr
.did
= DIDmsg_p2req_ramdl_write_addr
;
1027 rwrmsg
->len
.did
= DIDmsg_p2req_ramdl_write_len
;
1028 rwrmsg
->data
.did
= DIDmsg_p2req_ramdl_write_data
;
1029 rwrmsg
->resultcode
.did
= DIDmsg_p2req_ramdl_write_resultcode
;
1030 rwrmsg
->addr
.status
= P80211ENUM_msgitem_status_data_ok
;
1031 rwrmsg
->len
.status
= P80211ENUM_msgitem_status_data_ok
;
1032 rwrmsg
->data
.status
= P80211ENUM_msgitem_status_data_ok
;
1033 rwrmsg
->resultcode
.status
= P80211ENUM_msgitem_status_no_value
;
1034 rwrmsg
->addr
.len
= sizeof(u32
);
1035 rwrmsg
->len
.len
= sizeof(u32
);
1036 rwrmsg
->data
.len
= WRITESIZE_MAX
;
1037 rwrmsg
->resultcode
.len
= sizeof(u32
);
1039 /* Send xxx_state(enable) */
1040 pr_debug("Sending dl_state(enable) message.\n");
1041 rstmsg
->enable
.data
= P80211ENUM_truth_true
;
1042 rstmsg
->exeaddr
.data
= startaddr
;
1044 result
= prism2mgmt_ramdl_state(wlandev
, rstmsg
);
1046 netdev_err(wlandev
->netdev
,
1047 "writeimage state enable failed w/ result=%d, aborting download\n",
1051 resultcode
= rstmsg
->resultcode
.data
;
1052 if (resultcode
!= P80211ENUM_resultcode_success
) {
1053 netdev_err(wlandev
->netdev
,
1054 "writeimage()->xxxdl_state msg indicates failure, w/ resultcode=%d, aborting download.\n",
1060 /* Now, loop through the data chunks and send WRITESIZE_MAX data */
1061 for (i
= 0; i
< nfchunks
; i
++) {
1062 nwrites
= fchunk
[i
].len
/ WRITESIZE_MAX
;
1063 nwrites
+= (fchunk
[i
].len
% WRITESIZE_MAX
) ? 1 : 0;
1065 for (j
= 0; j
< nwrites
; j
++) {
1066 /* TODO Move this to a separate function */
1067 int lenleft
= fchunk
[i
].len
- (WRITESIZE_MAX
* j
);
1069 if (fchunk
[i
].len
> WRITESIZE_MAX
)
1070 currlen
= WRITESIZE_MAX
;
1073 curroff
= j
* WRITESIZE_MAX
;
1074 currdaddr
= fchunk
[i
].addr
+ curroff
;
1075 /* Setup the message */
1076 rwrmsg
->addr
.data
= currdaddr
;
1077 rwrmsg
->len
.data
= currlen
;
1078 memcpy(rwrmsg
->data
.data
,
1079 fchunk
[i
].data
+ curroff
, currlen
);
1081 /* Send flashdl_write(pda) */
1083 ("Sending xxxdl_write message addr=%06x len=%d.\n",
1084 currdaddr
, currlen
);
1086 result
= prism2mgmt_ramdl_write(wlandev
, rwrmsg
);
1088 /* Check the results */
1090 netdev_err(wlandev
->netdev
,
1091 "writeimage chunk write failed w/ result=%d, aborting download\n",
1095 resultcode
= rstmsg
->resultcode
.data
;
1096 if (resultcode
!= P80211ENUM_resultcode_success
) {
1097 pr_err("writeimage()->xxxdl_write msg indicates failure, w/ resultcode=%d, aborting download.\n",
1106 /* Send xxx_state(disable) */
1107 pr_debug("Sending dl_state(disable) message.\n");
1108 rstmsg
->enable
.data
= P80211ENUM_truth_false
;
1109 rstmsg
->exeaddr
.data
= 0;
1111 result
= prism2mgmt_ramdl_state(wlandev
, rstmsg
);
1113 netdev_err(wlandev
->netdev
,
1114 "writeimage state disable failed w/ result=%d, aborting download\n",
1118 resultcode
= rstmsg
->resultcode
.data
;
1119 if (resultcode
!= P80211ENUM_resultcode_success
) {
1120 netdev_err(wlandev
->netdev
,
1121 "writeimage()->xxxdl_state msg indicates failure, w/ resultcode=%d, aborting download.\n",
1133 static int validate_identity(void)
1139 pr_debug("NIC ID: %#x v%d.%d.%d\n",
1140 nicid
.id
, nicid
.major
, nicid
.minor
, nicid
.variant
);
1141 pr_debug("MFI ID: %#x v%d %d->%d\n",
1142 rfid
.id
, rfid
.variant
, rfid
.bottom
, rfid
.top
);
1143 pr_debug("CFI ID: %#x v%d %d->%d\n",
1144 macid
.id
, macid
.variant
, macid
.bottom
, macid
.top
);
1145 pr_debug("PRI ID: %#x v%d %d->%d\n",
1146 priid
.id
, priid
.variant
, priid
.bottom
, priid
.top
);
1148 for (i
= 0; i
< ns3info
; i
++) {
1149 switch (s3info
[i
].type
) {
1151 pr_debug("Version: ID %#x %d.%d.%d\n",
1152 s3info
[i
].info
.version
.id
,
1153 s3info
[i
].info
.version
.major
,
1154 s3info
[i
].info
.version
.minor
,
1155 s3info
[i
].info
.version
.variant
);
1158 pr_debug("Compat: Role %#x Id %#x v%d %d->%d\n",
1159 s3info
[i
].info
.compat
.role
,
1160 s3info
[i
].info
.compat
.id
,
1161 s3info
[i
].info
.compat
.variant
,
1162 s3info
[i
].info
.compat
.bottom
,
1163 s3info
[i
].info
.compat
.top
);
1165 /* MAC compat range */
1166 if ((s3info
[i
].info
.compat
.role
== 1) &&
1167 (s3info
[i
].info
.compat
.id
== 2)) {
1168 if (s3info
[i
].info
.compat
.variant
!=
1174 /* PRI compat range */
1175 if ((s3info
[i
].info
.compat
.role
== 1) &&
1176 (s3info
[i
].info
.compat
.id
== 3)) {
1177 if ((s3info
[i
].info
.compat
.bottom
> priid
.top
)
1178 || (s3info
[i
].info
.compat
.top
<
1183 /* SEC compat range */
1184 if ((s3info
[i
].info
.compat
.role
== 1) &&
1185 (s3info
[i
].info
.compat
.id
== 4)) {
1186 /* FIXME: isn't something missing here? */
1191 pr_debug("Seq: %#x\n", s3info
[i
].info
.buildseq
);
1195 pr_debug("Platform: ID %#x %d.%d.%d\n",
1196 s3info
[i
].info
.version
.id
,
1197 s3info
[i
].info
.version
.major
,
1198 s3info
[i
].info
.version
.minor
,
1199 s3info
[i
].info
.version
.variant
);
1201 if (nicid
.id
!= s3info
[i
].info
.version
.id
)
1203 if (nicid
.major
!= s3info
[i
].info
.version
.major
)
1205 if (nicid
.minor
!= s3info
[i
].info
.version
.minor
)
1207 if ((nicid
.variant
!= s3info
[i
].info
.version
.variant
) &&
1208 (nicid
.id
!= 0x8008))
1214 pr_debug("name inforec len %d\n", s3info
[i
].len
);
1218 pr_debug("Unknown inforec type %d\n", s3info
[i
].type
);
1223 if (trump
&& (result
!= 2))