• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 /*
2  * dell_rbu.c
3  * Bios Update driver for Dell systems
4  * Author: Dell Inc
5  *         Abhay Salunke <abhay_salunke@dell.com>
6  *
7  * Copyright (C) 2005 Dell Inc.
8  *
9  * Remote BIOS Update (rbu) driver is used for updating DELL BIOS by
10  * creating entries in the /sys file systems on Linux 2.6 and higher
11  * kernels. The driver supports two mechanism to update the BIOS namely
12  * contiguous and packetized. Both these methods still require having some
13  * application to set the CMOS bit indicating the BIOS to update itself
14  * after a reboot.
15  *
16  * Contiguous method:
17  * This driver writes the incoming data in a monolithic image by allocating
18  * contiguous physical pages large enough to accommodate the incoming BIOS
19  * image size.
20  *
21  * Packetized method:
22  * The driver writes the incoming packet image by allocating a new packet
23  * on every time the packet data is written. This driver requires an
24  * application to break the BIOS image in to fixed sized packet chunks.
25  *
26  * See Documentation/dell_rbu.txt for more info.
27  *
28  * This program is free software; you can redistribute it and/or modify
29  * it under the terms of the GNU General Public License v2.0 as published by
30  * the Free Software Foundation
31  *
32  * This program is distributed in the hope that it will be useful,
33  * but WITHOUT ANY WARRANTY; without even the implied warranty of
34  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
35  * GNU General Public License for more details.
36  */
37 #include <linux/init.h>
38 #include <linux/module.h>
39 #include <linux/slab.h>
40 #include <linux/string.h>
41 #include <linux/errno.h>
42 #include <linux/blkdev.h>
43 #include <linux/platform_device.h>
44 #include <linux/spinlock.h>
45 #include <linux/moduleparam.h>
46 #include <linux/firmware.h>
47 #include <linux/dma-mapping.h>
48 #include <asm/set_memory.h>
49 
50 MODULE_AUTHOR("Abhay Salunke <abhay_salunke@dell.com>");
51 MODULE_DESCRIPTION("Driver for updating BIOS image on DELL systems");
52 MODULE_LICENSE("GPL");
53 MODULE_VERSION("3.2");
54 
55 #define BIOS_SCAN_LIMIT 0xffffffff
56 #define MAX_IMAGE_LENGTH 16
57 static struct _rbu_data {
58 	void *image_update_buffer;
59 	unsigned long image_update_buffer_size;
60 	unsigned long bios_image_size;
61 	int image_update_ordernum;
62 	int dma_alloc;
63 	spinlock_t lock;
64 	unsigned long packet_read_count;
65 	unsigned long num_packets;
66 	unsigned long packetsize;
67 	unsigned long imagesize;
68 	int entry_created;
69 } rbu_data;
70 
71 static char image_type[MAX_IMAGE_LENGTH + 1] = "mono";
72 module_param_string(image_type, image_type, sizeof (image_type), 0);
73 MODULE_PARM_DESC(image_type,
74 	"BIOS image type. choose- mono or packet or init");
75 
76 static unsigned long allocation_floor = 0x100000;
77 module_param(allocation_floor, ulong, 0644);
78 MODULE_PARM_DESC(allocation_floor,
79     "Minimum address for allocations when using Packet mode");
80 
81 struct packet_data {
82 	struct list_head list;
83 	size_t length;
84 	void *data;
85 	int ordernum;
86 };
87 
88 static struct packet_data packet_data_head;
89 
90 static struct platform_device *rbu_device;
91 static int context;
92 static dma_addr_t dell_rbu_dmaaddr;
93 
init_packet_head(void)94 static void init_packet_head(void)
95 {
96 	INIT_LIST_HEAD(&packet_data_head.list);
97 	rbu_data.packet_read_count = 0;
98 	rbu_data.num_packets = 0;
99 	rbu_data.packetsize = 0;
100 	rbu_data.imagesize = 0;
101 }
102 
create_packet(void * data,size_t length)103 static int create_packet(void *data, size_t length)
104 {
105 	struct packet_data *newpacket;
106 	int ordernum = 0;
107 	int retval = 0;
108 	unsigned int packet_array_size = 0;
109 	void **invalid_addr_packet_array = NULL;
110 	void *packet_data_temp_buf = NULL;
111 	unsigned int idx = 0;
112 
113 	pr_debug("create_packet: entry \n");
114 
115 	if (!rbu_data.packetsize) {
116 		pr_debug("create_packet: packetsize not specified\n");
117 		retval = -EINVAL;
118 		goto out_noalloc;
119 	}
120 
121 	spin_unlock(&rbu_data.lock);
122 
123 	newpacket = kzalloc(sizeof (struct packet_data), GFP_KERNEL);
124 
125 	if (!newpacket) {
126 		printk(KERN_WARNING
127 			"dell_rbu:%s: failed to allocate new "
128 			"packet\n", __func__);
129 		retval = -ENOMEM;
130 		spin_lock(&rbu_data.lock);
131 		goto out_noalloc;
132 	}
133 
134 	ordernum = get_order(length);
135 
136 	/*
137 	 * BIOS errata mean we cannot allocate packets below 1MB or they will
138 	 * be overwritten by BIOS.
139 	 *
140 	 * array to temporarily hold packets
141 	 * that are below the allocation floor
142 	 *
143 	 * NOTE: very simplistic because we only need the floor to be at 1MB
144 	 *       due to BIOS errata. This shouldn't be used for higher floors
145 	 *       or you will run out of mem trying to allocate the array.
146 	 */
147 	packet_array_size = max(
148 	       		(unsigned int)(allocation_floor / rbu_data.packetsize),
149 			(unsigned int)1);
150 	invalid_addr_packet_array = kcalloc(packet_array_size, sizeof(void *),
151 						GFP_KERNEL);
152 
153 	if (!invalid_addr_packet_array) {
154 		printk(KERN_WARNING
155 			"dell_rbu:%s: failed to allocate "
156 			"invalid_addr_packet_array \n",
157 			__func__);
158 		retval = -ENOMEM;
159 		spin_lock(&rbu_data.lock);
160 		goto out_alloc_packet;
161 	}
162 
163 	while (!packet_data_temp_buf) {
164 		packet_data_temp_buf = (unsigned char *)
165 			__get_free_pages(GFP_KERNEL, ordernum);
166 		if (!packet_data_temp_buf) {
167 			printk(KERN_WARNING
168 				"dell_rbu:%s: failed to allocate new "
169 				"packet\n", __func__);
170 			retval = -ENOMEM;
171 			spin_lock(&rbu_data.lock);
172 			goto out_alloc_packet_array;
173 		}
174 
175 		if ((unsigned long)virt_to_phys(packet_data_temp_buf)
176 				< allocation_floor) {
177 			pr_debug("packet 0x%lx below floor at 0x%lx.\n",
178 					(unsigned long)virt_to_phys(
179 						packet_data_temp_buf),
180 					allocation_floor);
181 			invalid_addr_packet_array[idx++] = packet_data_temp_buf;
182 			packet_data_temp_buf = NULL;
183 		}
184 	}
185 	/*
186 	 * set to uncachable or it may never get written back before reboot
187 	 */
188 	set_memory_uc((unsigned long)packet_data_temp_buf, 1 << ordernum);
189 
190 	spin_lock(&rbu_data.lock);
191 
192 	newpacket->data = packet_data_temp_buf;
193 
194 	pr_debug("create_packet: newpacket at physical addr %lx\n",
195 		(unsigned long)virt_to_phys(newpacket->data));
196 
197 	/* packets may not have fixed size */
198 	newpacket->length = length;
199 	newpacket->ordernum = ordernum;
200 	++rbu_data.num_packets;
201 
202 	/* initialize the newly created packet headers */
203 	INIT_LIST_HEAD(&newpacket->list);
204 	list_add_tail(&newpacket->list, &packet_data_head.list);
205 
206 	memcpy(newpacket->data, data, length);
207 
208 	pr_debug("create_packet: exit \n");
209 
210 out_alloc_packet_array:
211 	/* always free packet array */
212 	for (;idx>0;idx--) {
213 		pr_debug("freeing unused packet below floor 0x%lx.\n",
214 			(unsigned long)virt_to_phys(
215 				invalid_addr_packet_array[idx-1]));
216 		free_pages((unsigned long)invalid_addr_packet_array[idx-1],
217 			ordernum);
218 	}
219 	kfree(invalid_addr_packet_array);
220 
221 out_alloc_packet:
222 	/* if error, free data */
223 	if (retval)
224 		kfree(newpacket);
225 
226 out_noalloc:
227 	return retval;
228 }
229 
packetize_data(const u8 * data,size_t length)230 static int packetize_data(const u8 *data, size_t length)
231 {
232 	int rc = 0;
233 	int done = 0;
234 	int packet_length;
235 	u8 *temp;
236 	u8 *end = (u8 *) data + length;
237 	pr_debug("packetize_data: data length %zd\n", length);
238 	if (!rbu_data.packetsize) {
239 		printk(KERN_WARNING
240 			"dell_rbu: packetsize not specified\n");
241 		return -EIO;
242 	}
243 
244 	temp = (u8 *) data;
245 
246 	/* packetize the hunk */
247 	while (!done) {
248 		if ((temp + rbu_data.packetsize) < end)
249 			packet_length = rbu_data.packetsize;
250 		else {
251 			/* this is the last packet */
252 			packet_length = end - temp;
253 			done = 1;
254 		}
255 
256 		if ((rc = create_packet(temp, packet_length)))
257 			return rc;
258 
259 		pr_debug("%p:%td\n", temp, (end - temp));
260 		temp += packet_length;
261 	}
262 
263 	rbu_data.imagesize = length;
264 
265 	return rc;
266 }
267 
do_packet_read(char * data,struct list_head * ptemp_list,int length,int bytes_read,int * list_read_count)268 static int do_packet_read(char *data, struct list_head *ptemp_list,
269 	int length, int bytes_read, int *list_read_count)
270 {
271 	void *ptemp_buf;
272 	struct packet_data *newpacket = NULL;
273 	int bytes_copied = 0;
274 	int j = 0;
275 
276 	newpacket = list_entry(ptemp_list, struct packet_data, list);
277 	*list_read_count += newpacket->length;
278 
279 	if (*list_read_count > bytes_read) {
280 		/* point to the start of unread data */
281 		j = newpacket->length - (*list_read_count - bytes_read);
282 		/* point to the offset in the packet buffer */
283 		ptemp_buf = (u8 *) newpacket->data + j;
284 		/*
285 		 * check if there is enough room in
286 		 * * the incoming buffer
287 		 */
288 		if (length > (*list_read_count - bytes_read))
289 			/*
290 			 * copy what ever is there in this
291 			 * packet and move on
292 			 */
293 			bytes_copied = (*list_read_count - bytes_read);
294 		else
295 			/* copy the remaining */
296 			bytes_copied = length;
297 		memcpy(data, ptemp_buf, bytes_copied);
298 	}
299 	return bytes_copied;
300 }
301 
packet_read_list(char * data,size_t * pread_length)302 static int packet_read_list(char *data, size_t * pread_length)
303 {
304 	struct list_head *ptemp_list;
305 	int temp_count = 0;
306 	int bytes_copied = 0;
307 	int bytes_read = 0;
308 	int remaining_bytes = 0;
309 	char *pdest = data;
310 
311 	/* check if we have any packets */
312 	if (0 == rbu_data.num_packets)
313 		return -ENOMEM;
314 
315 	remaining_bytes = *pread_length;
316 	bytes_read = rbu_data.packet_read_count;
317 
318 	ptemp_list = (&packet_data_head.list)->next;
319 	while (!list_empty(ptemp_list)) {
320 		bytes_copied = do_packet_read(pdest, ptemp_list,
321 			remaining_bytes, bytes_read, &temp_count);
322 		remaining_bytes -= bytes_copied;
323 		bytes_read += bytes_copied;
324 		pdest += bytes_copied;
325 		/*
326 		 * check if we reached end of buffer before reaching the
327 		 * last packet
328 		 */
329 		if (remaining_bytes == 0)
330 			break;
331 
332 		ptemp_list = ptemp_list->next;
333 	}
334 	/*finally set the bytes read */
335 	*pread_length = bytes_read - rbu_data.packet_read_count;
336 	rbu_data.packet_read_count = bytes_read;
337 	return 0;
338 }
339 
packet_empty_list(void)340 static void packet_empty_list(void)
341 {
342 	struct list_head *ptemp_list;
343 	struct list_head *pnext_list;
344 	struct packet_data *newpacket;
345 
346 	ptemp_list = (&packet_data_head.list)->next;
347 	while (!list_empty(ptemp_list)) {
348 		newpacket =
349 			list_entry(ptemp_list, struct packet_data, list);
350 		pnext_list = ptemp_list->next;
351 		list_del(ptemp_list);
352 		ptemp_list = pnext_list;
353 		/*
354 		 * zero out the RBU packet memory before freeing
355 		 * to make sure there are no stale RBU packets left in memory
356 		 */
357 		memset(newpacket->data, 0, rbu_data.packetsize);
358 		set_memory_wb((unsigned long)newpacket->data,
359 			1 << newpacket->ordernum);
360 		free_pages((unsigned long) newpacket->data,
361 			newpacket->ordernum);
362 		kfree(newpacket);
363 	}
364 	rbu_data.packet_read_count = 0;
365 	rbu_data.num_packets = 0;
366 	rbu_data.imagesize = 0;
367 }
368 
369 /*
370  * img_update_free: Frees the buffer allocated for storing BIOS image
371  * Always called with lock held and returned with lock held
372  */
img_update_free(void)373 static void img_update_free(void)
374 {
375 	if (!rbu_data.image_update_buffer)
376 		return;
377 	/*
378 	 * zero out this buffer before freeing it to get rid of any stale
379 	 * BIOS image copied in memory.
380 	 */
381 	memset(rbu_data.image_update_buffer, 0,
382 		rbu_data.image_update_buffer_size);
383 	if (rbu_data.dma_alloc == 1)
384 		dma_free_coherent(NULL, rbu_data.bios_image_size,
385 			rbu_data.image_update_buffer, dell_rbu_dmaaddr);
386 	else
387 		free_pages((unsigned long) rbu_data.image_update_buffer,
388 			rbu_data.image_update_ordernum);
389 
390 	/*
391 	 * Re-initialize the rbu_data variables after a free
392 	 */
393 	rbu_data.image_update_ordernum = -1;
394 	rbu_data.image_update_buffer = NULL;
395 	rbu_data.image_update_buffer_size = 0;
396 	rbu_data.bios_image_size = 0;
397 	rbu_data.dma_alloc = 0;
398 }
399 
400 /*
401  * img_update_realloc: This function allocates the contiguous pages to
402  * accommodate the requested size of data. The memory address and size
403  * values are stored globally and on every call to this function the new
404  * size is checked to see if more data is required than the existing size.
405  * If true the previous memory is freed and new allocation is done to
406  * accommodate the new size. If the incoming size is less then than the
407  * already allocated size, then that memory is reused. This function is
408  * called with lock held and returns with lock held.
409  */
img_update_realloc(unsigned long size)410 static int img_update_realloc(unsigned long size)
411 {
412 	unsigned char *image_update_buffer = NULL;
413 	unsigned long rc;
414 	unsigned long img_buf_phys_addr;
415 	int ordernum;
416 	int dma_alloc = 0;
417 
418 	/*
419 	 * check if the buffer of sufficient size has been
420 	 * already allocated
421 	 */
422 	if (rbu_data.image_update_buffer_size >= size) {
423 		/*
424 		 * check for corruption
425 		 */
426 		if ((size != 0) && (rbu_data.image_update_buffer == NULL)) {
427 			printk(KERN_ERR "dell_rbu:%s: corruption "
428 				"check failed\n", __func__);
429 			return -EINVAL;
430 		}
431 		/*
432 		 * we have a valid pre-allocated buffer with
433 		 * sufficient size
434 		 */
435 		return 0;
436 	}
437 
438 	/*
439 	 * free any previously allocated buffer
440 	 */
441 	img_update_free();
442 
443 	spin_unlock(&rbu_data.lock);
444 
445 	ordernum = get_order(size);
446 	image_update_buffer =
447 		(unsigned char *) __get_free_pages(GFP_KERNEL, ordernum);
448 
449 	img_buf_phys_addr =
450 		(unsigned long) virt_to_phys(image_update_buffer);
451 
452 	if (img_buf_phys_addr > BIOS_SCAN_LIMIT) {
453 		free_pages((unsigned long) image_update_buffer, ordernum);
454 		ordernum = -1;
455 		image_update_buffer = dma_alloc_coherent(NULL, size,
456 			&dell_rbu_dmaaddr, GFP_KERNEL);
457 		dma_alloc = 1;
458 	}
459 
460 	spin_lock(&rbu_data.lock);
461 
462 	if (image_update_buffer != NULL) {
463 		rbu_data.image_update_buffer = image_update_buffer;
464 		rbu_data.image_update_buffer_size = size;
465 		rbu_data.bios_image_size =
466 			rbu_data.image_update_buffer_size;
467 		rbu_data.image_update_ordernum = ordernum;
468 		rbu_data.dma_alloc = dma_alloc;
469 		rc = 0;
470 	} else {
471 		pr_debug("Not enough memory for image update:"
472 			"size = %ld\n", size);
473 		rc = -ENOMEM;
474 	}
475 
476 	return rc;
477 }
478 
read_packet_data(char * buffer,loff_t pos,size_t count)479 static ssize_t read_packet_data(char *buffer, loff_t pos, size_t count)
480 {
481 	int retval;
482 	size_t bytes_left;
483 	size_t data_length;
484 	char *ptempBuf = buffer;
485 
486 	/* check to see if we have something to return */
487 	if (rbu_data.num_packets == 0) {
488 		pr_debug("read_packet_data: no packets written\n");
489 		retval = -ENOMEM;
490 		goto read_rbu_data_exit;
491 	}
492 
493 	if (pos > rbu_data.imagesize) {
494 		retval = 0;
495 		printk(KERN_WARNING "dell_rbu:read_packet_data: "
496 			"data underrun\n");
497 		goto read_rbu_data_exit;
498 	}
499 
500 	bytes_left = rbu_data.imagesize - pos;
501 	data_length = min(bytes_left, count);
502 
503 	if ((retval = packet_read_list(ptempBuf, &data_length)) < 0)
504 		goto read_rbu_data_exit;
505 
506 	if ((pos + count) > rbu_data.imagesize) {
507 		rbu_data.packet_read_count = 0;
508 		/* this was the last copy */
509 		retval = bytes_left;
510 	} else
511 		retval = count;
512 
513       read_rbu_data_exit:
514 	return retval;
515 }
516 
read_rbu_mono_data(char * buffer,loff_t pos,size_t count)517 static ssize_t read_rbu_mono_data(char *buffer, loff_t pos, size_t count)
518 {
519 	/* check to see if we have something to return */
520 	if ((rbu_data.image_update_buffer == NULL) ||
521 		(rbu_data.bios_image_size == 0)) {
522 		pr_debug("read_rbu_data_mono: image_update_buffer %p ,"
523 			"bios_image_size %lu\n",
524 			rbu_data.image_update_buffer,
525 			rbu_data.bios_image_size);
526 		return -ENOMEM;
527 	}
528 
529 	return memory_read_from_buffer(buffer, count, &pos,
530 			rbu_data.image_update_buffer, rbu_data.bios_image_size);
531 }
532 
read_rbu_data(struct file * filp,struct kobject * kobj,struct bin_attribute * bin_attr,char * buffer,loff_t pos,size_t count)533 static ssize_t read_rbu_data(struct file *filp, struct kobject *kobj,
534 			     struct bin_attribute *bin_attr,
535 			     char *buffer, loff_t pos, size_t count)
536 {
537 	ssize_t ret_count = 0;
538 
539 	spin_lock(&rbu_data.lock);
540 
541 	if (!strcmp(image_type, "mono"))
542 		ret_count = read_rbu_mono_data(buffer, pos, count);
543 	else if (!strcmp(image_type, "packet"))
544 		ret_count = read_packet_data(buffer, pos, count);
545 	else
546 		pr_debug("read_rbu_data: invalid image type specified\n");
547 
548 	spin_unlock(&rbu_data.lock);
549 	return ret_count;
550 }
551 
callbackfn_rbu(const struct firmware * fw,void * context)552 static void callbackfn_rbu(const struct firmware *fw, void *context)
553 {
554 	rbu_data.entry_created = 0;
555 
556 	if (!fw)
557 		return;
558 
559 	if (!fw->size)
560 		goto out;
561 
562 	spin_lock(&rbu_data.lock);
563 	if (!strcmp(image_type, "mono")) {
564 		if (!img_update_realloc(fw->size))
565 			memcpy(rbu_data.image_update_buffer,
566 				fw->data, fw->size);
567 	} else if (!strcmp(image_type, "packet")) {
568 		/*
569 		 * we need to free previous packets if a
570 		 * new hunk of packets needs to be downloaded
571 		 */
572 		packet_empty_list();
573 		if (packetize_data(fw->data, fw->size))
574 			/* Incase something goes wrong when we are
575 			 * in middle of packetizing the data, we
576 			 * need to free up whatever packets might
577 			 * have been created before we quit.
578 			 */
579 			packet_empty_list();
580 	} else
581 		pr_debug("invalid image type specified.\n");
582 	spin_unlock(&rbu_data.lock);
583  out:
584 	release_firmware(fw);
585 }
586 
read_rbu_image_type(struct file * filp,struct kobject * kobj,struct bin_attribute * bin_attr,char * buffer,loff_t pos,size_t count)587 static ssize_t read_rbu_image_type(struct file *filp, struct kobject *kobj,
588 				   struct bin_attribute *bin_attr,
589 				   char *buffer, loff_t pos, size_t count)
590 {
591 	int size = 0;
592 	if (!pos)
593 		size = scnprintf(buffer, count, "%s\n", image_type);
594 	return size;
595 }
596 
write_rbu_image_type(struct file * filp,struct kobject * kobj,struct bin_attribute * bin_attr,char * buffer,loff_t pos,size_t count)597 static ssize_t write_rbu_image_type(struct file *filp, struct kobject *kobj,
598 				    struct bin_attribute *bin_attr,
599 				    char *buffer, loff_t pos, size_t count)
600 {
601 	int rc = count;
602 	int req_firm_rc = 0;
603 	int i;
604 	spin_lock(&rbu_data.lock);
605 	/*
606 	 * Find the first newline or space
607 	 */
608 	for (i = 0; i < count; ++i)
609 		if (buffer[i] == '\n' || buffer[i] == ' ') {
610 			buffer[i] = '\0';
611 			break;
612 		}
613 	if (i == count)
614 		buffer[count] = '\0';
615 
616 	if (strstr(buffer, "mono"))
617 		strcpy(image_type, "mono");
618 	else if (strstr(buffer, "packet"))
619 		strcpy(image_type, "packet");
620 	else if (strstr(buffer, "init")) {
621 		/*
622 		 * If due to the user error the driver gets in a bad
623 		 * state where even though it is loaded , the
624 		 * /sys/class/firmware/dell_rbu entries are missing.
625 		 * to cover this situation the user can recreate entries
626 		 * by writing init to image_type.
627 		 */
628 		if (!rbu_data.entry_created) {
629 			spin_unlock(&rbu_data.lock);
630 			req_firm_rc = request_firmware_nowait(THIS_MODULE,
631 				FW_ACTION_NOHOTPLUG, "dell_rbu",
632 				&rbu_device->dev, GFP_KERNEL, &context,
633 				callbackfn_rbu);
634 			if (req_firm_rc) {
635 				printk(KERN_ERR
636 					"dell_rbu:%s request_firmware_nowait"
637 					" failed %d\n", __func__, rc);
638 				rc = -EIO;
639 			} else
640 				rbu_data.entry_created = 1;
641 
642 			spin_lock(&rbu_data.lock);
643 		}
644 	} else {
645 		printk(KERN_WARNING "dell_rbu: image_type is invalid\n");
646 		spin_unlock(&rbu_data.lock);
647 		return -EINVAL;
648 	}
649 
650 	/* we must free all previous allocations */
651 	packet_empty_list();
652 	img_update_free();
653 	spin_unlock(&rbu_data.lock);
654 
655 	return rc;
656 }
657 
read_rbu_packet_size(struct file * filp,struct kobject * kobj,struct bin_attribute * bin_attr,char * buffer,loff_t pos,size_t count)658 static ssize_t read_rbu_packet_size(struct file *filp, struct kobject *kobj,
659 				    struct bin_attribute *bin_attr,
660 				    char *buffer, loff_t pos, size_t count)
661 {
662 	int size = 0;
663 	if (!pos) {
664 		spin_lock(&rbu_data.lock);
665 		size = scnprintf(buffer, count, "%lu\n", rbu_data.packetsize);
666 		spin_unlock(&rbu_data.lock);
667 	}
668 	return size;
669 }
670 
write_rbu_packet_size(struct file * filp,struct kobject * kobj,struct bin_attribute * bin_attr,char * buffer,loff_t pos,size_t count)671 static ssize_t write_rbu_packet_size(struct file *filp, struct kobject *kobj,
672 				     struct bin_attribute *bin_attr,
673 				     char *buffer, loff_t pos, size_t count)
674 {
675 	unsigned long temp;
676 	spin_lock(&rbu_data.lock);
677 	packet_empty_list();
678 	sscanf(buffer, "%lu", &temp);
679 	if (temp < 0xffffffff)
680 		rbu_data.packetsize = temp;
681 
682 	spin_unlock(&rbu_data.lock);
683 	return count;
684 }
685 
686 static struct bin_attribute rbu_data_attr = {
687 	.attr = {.name = "data", .mode = 0444},
688 	.read = read_rbu_data,
689 };
690 
691 static struct bin_attribute rbu_image_type_attr = {
692 	.attr = {.name = "image_type", .mode = 0644},
693 	.read = read_rbu_image_type,
694 	.write = write_rbu_image_type,
695 };
696 
697 static struct bin_attribute rbu_packet_size_attr = {
698 	.attr = {.name = "packet_size", .mode = 0644},
699 	.read = read_rbu_packet_size,
700 	.write = write_rbu_packet_size,
701 };
702 
dcdrbu_init(void)703 static int __init dcdrbu_init(void)
704 {
705 	int rc;
706 	spin_lock_init(&rbu_data.lock);
707 
708 	init_packet_head();
709 	rbu_device = platform_device_register_simple("dell_rbu", -1, NULL, 0);
710 	if (IS_ERR(rbu_device)) {
711 		printk(KERN_ERR
712 			"dell_rbu:%s:platform_device_register_simple "
713 			"failed\n", __func__);
714 		return PTR_ERR(rbu_device);
715 	}
716 
717 	rc = sysfs_create_bin_file(&rbu_device->dev.kobj, &rbu_data_attr);
718 	if (rc)
719 		goto out_devreg;
720 	rc = sysfs_create_bin_file(&rbu_device->dev.kobj, &rbu_image_type_attr);
721 	if (rc)
722 		goto out_data;
723 	rc = sysfs_create_bin_file(&rbu_device->dev.kobj,
724 		&rbu_packet_size_attr);
725 	if (rc)
726 		goto out_imtype;
727 
728 	rbu_data.entry_created = 0;
729 	return 0;
730 
731 out_imtype:
732 	sysfs_remove_bin_file(&rbu_device->dev.kobj, &rbu_image_type_attr);
733 out_data:
734 	sysfs_remove_bin_file(&rbu_device->dev.kobj, &rbu_data_attr);
735 out_devreg:
736 	platform_device_unregister(rbu_device);
737 	return rc;
738 }
739 
dcdrbu_exit(void)740 static __exit void dcdrbu_exit(void)
741 {
742 	spin_lock(&rbu_data.lock);
743 	packet_empty_list();
744 	img_update_free();
745 	spin_unlock(&rbu_data.lock);
746 	platform_device_unregister(rbu_device);
747 }
748 
749 module_exit(dcdrbu_exit);
750 module_init(dcdrbu_init);
751 
752 /* vim:noet:ts=8:sw=8
753 */
754