1 // SPDX-License-Identifier: GPL-2.0-only
3 * Flash memory interface rev.5 driver for the Intel
4 * Flash chips used on the NetWinder.
6 * 20/08/2000 RMK use __ioremap to map flash into virtual memory
7 * make a few more places use "volatile"
8 * 22/05/2001 RMK - Lock read against write
9 * - merge printk level changes (with mods) from Alan Cox.
10 * - use *ppos as the file position, not file->f_pos.
11 * - fix check for out of range pos and r/w size
13 * Please note that we are tampering with the only flash chip in the
14 * machine, which contains the bootup code. We therefore have the
15 * power to convert these machines into doorstops...
18 #include <linux/module.h>
19 #include <linux/types.h>
21 #include <linux/errno.h>
23 #include <linux/delay.h>
24 #include <linux/proc_fs.h>
25 #include <linux/miscdevice.h>
26 #include <linux/spinlock.h>
27 #include <linux/rwsem.h>
28 #include <linux/init.h>
29 #include <linux/mutex.h>
30 #include <linux/jiffies.h>
32 #include <asm/hardware/dec21285.h>
34 #include <asm/mach-types.h>
35 #include <linux/uaccess.h>
37 /*****************************************************************************/
38 #include <asm/nwflash.h>
40 #define NWFLASH_VERSION "6.4"
42 static DEFINE_MUTEX(flash_mutex
);
43 static void kick_open(void);
44 static int get_flash_id(void);
45 static int erase_block(int nBlock
);
46 static int write_block(unsigned long p
, const char __user
*buf
, int count
);
48 #define KFLASH_SIZE 1024*1024 //1 Meg
49 #define KFLASH_SIZE4 4*1024*1024 //4 Meg
50 #define KFLASH_ID 0x89A6 //Intel flash
51 #define KFLASH_ID4 0xB0D4 //Intel flash 4Meg
53 static bool flashdebug
; //if set - we will display progress msgs
55 static int gbWriteEnable
;
56 static int gbWriteBase64Enable
;
57 static volatile unsigned char *FLASH_BASE
;
58 static int gbFlashSize
= KFLASH_SIZE
;
59 static DEFINE_MUTEX(nwflash_mutex
);
61 static int get_flash_id(void)
63 volatile unsigned int c1
, c2
;
66 * try to get flash chip ID
70 *(volatile unsigned char *) (FLASH_BASE
+ 0x8000) = 0x90;
72 c1
= *(volatile unsigned char *) FLASH_BASE
;
76 * on 4 Meg flash the second byte is actually at offset 2...
79 c2
= *(volatile unsigned char *) (FLASH_BASE
+ 2);
81 c2
= *(volatile unsigned char *) (FLASH_BASE
+ 1);
86 * set it back to read mode
88 *(volatile unsigned char *) (FLASH_BASE
+ 0x8000) = 0xFF;
91 gbFlashSize
= KFLASH_SIZE4
;
96 static long flash_ioctl(struct file
*filep
, unsigned int cmd
, unsigned long arg
)
98 mutex_lock(&flash_mutex
);
100 case CMD_WRITE_DISABLE
:
101 gbWriteBase64Enable
= 0;
105 case CMD_WRITE_ENABLE
:
109 case CMD_WRITE_BASE64K_ENABLE
:
110 gbWriteBase64Enable
= 1;
114 gbWriteBase64Enable
= 0;
116 mutex_unlock(&flash_mutex
);
119 mutex_unlock(&flash_mutex
);
123 static ssize_t
flash_read(struct file
*file
, char __user
*buf
, size_t size
,
129 printk(KERN_DEBUG
"flash_read: flash_read: offset=0x%llx, "
130 "buffer=%p, count=0x%zx.\n", *ppos
, buf
, size
);
132 * We now lock against reads and writes. --rmk
134 if (mutex_lock_interruptible(&nwflash_mutex
))
137 ret
= simple_read_from_buffer(buf
, size
, ppos
, (void *)FLASH_BASE
, gbFlashSize
);
138 mutex_unlock(&nwflash_mutex
);
143 static ssize_t
flash_write(struct file
*file
, const char __user
*buf
,
144 size_t size
, loff_t
* ppos
)
146 unsigned long p
= *ppos
;
147 unsigned int count
= size
;
149 int nBlock
, temp
, rc
;
153 printk("flash_write: offset=0x%lX, buffer=0x%p, count=0x%X.\n",
159 if (p
< 64 * 1024 && (!gbWriteBase64Enable
))
163 * check for out of range pos or count
165 if (p
>= gbFlashSize
)
166 return count
? -ENXIO
: 0;
168 if (count
> gbFlashSize
- p
)
169 count
= gbFlashSize
- p
;
171 if (!access_ok(buf
, count
))
175 * We now lock against reads and writes. --rmk
177 if (mutex_lock_interruptible(&nwflash_mutex
))
182 nBlock
= (int) p
>> 16; //block # of 64K bytes
185 * # of 64K blocks to erase and write
187 temp
= ((int) (p
+ count
) >> 16) - nBlock
+ 1;
190 * write ends at exactly 64k boundary?
192 if (((int) (p
+ count
) & 0xFFFF) == 0)
196 printk(KERN_DEBUG
"flash_write: writing %d block(s) "
197 "starting at %d.\n", temp
, nBlock
);
199 for (; temp
; temp
--, nBlock
++) {
201 printk(KERN_DEBUG
"flash_write: erasing block %d.\n", nBlock
);
204 * first we have to erase the block(s), where we will write...
210 rc
= erase_block(nBlock
);
212 } while (rc
&& i
< 10);
215 printk(KERN_ERR
"flash_write: erase error %x\n", rc
);
219 printk(KERN_DEBUG
"flash_write: writing offset %lX, "
220 "from buf %p, bytes left %X.\n", p
, buf
,
224 * write_block will limit write to space left in this block
226 rc
= write_block(p
, buf
, count
- written
);
230 * if somehow write verify failed? Can't happen??
234 * retry up to 10 times
240 * else quit with error...
246 printk(KERN_ERR
"flash_write: write error %X\n", rc
);
255 printk(KERN_DEBUG
"flash_write: written 0x%X bytes OK.\n", written
);
258 mutex_unlock(&nwflash_mutex
);
265 * The memory devices use the full 32/64 bits of the offset, and so we cannot
266 * check against negative addresses: they are ok. The return value is weird,
267 * though, in that case (0).
269 * also note that seeking relative to the "end of file" isn't supported:
270 * it has no meaning, so it returns -EINVAL.
272 static loff_t
flash_llseek(struct file
*file
, loff_t offset
, int orig
)
276 mutex_lock(&flash_mutex
);
278 printk(KERN_DEBUG
"flash_llseek: offset=0x%X, orig=0x%X.\n",
279 (unsigned int) offset
, orig
);
281 ret
= no_seek_end_llseek_size(file
, offset
, orig
, gbFlashSize
);
282 mutex_unlock(&flash_mutex
);
288 * assume that main Write routine did the parameter checking...
289 * so just go ahead and erase, what requested!
292 static int erase_block(int nBlock
)
294 volatile unsigned int c1
;
295 volatile unsigned char *pWritePtr
;
296 unsigned long timeout
;
300 * reset footbridge to the correct offset 0 (...0..3)
302 *CSR_ROMWRITEREG
= 0;
307 c1
= *(volatile unsigned char *) (FLASH_BASE
+ 0x8000);
311 * reset status if old errors
313 *(volatile unsigned char *) (FLASH_BASE
+ 0x8000) = 0x50;
317 * aim at the middle of a current block...
319 pWritePtr
= (unsigned char *) ((unsigned int) (FLASH_BASE
+ 0x8000 + (nBlock
<< 16)));
329 *(volatile unsigned char *) pWritePtr
= 0x20;
334 *(volatile unsigned char *) pWritePtr
= 0xD0;
342 * wait while erasing in process (up to 10 sec)
344 timeout
= jiffies
+ 10 * HZ
;
346 while (!(c1
& 0x80) && time_before(jiffies
, timeout
)) {
351 c1
= *(volatile unsigned char *) (pWritePtr
);
352 // printk("Flash_erase: status=%X.\n",c1);
356 * set flash for normal read access
359 // *(volatile unsigned char*)(FLASH_BASE+0x8000) = 0xFF;
360 *(volatile unsigned char *) pWritePtr
= 0xFF; //back to normal operation
363 * check if erase errors were reported
366 printk(KERN_ERR
"flash_erase: err at %p\n", pWritePtr
);
371 *(volatile unsigned char *) (FLASH_BASE
+ 0x8000) = 0x50;
376 * just to make sure - verify if erased OK...
380 pWritePtr
= (unsigned char *) ((unsigned int) (FLASH_BASE
+ (nBlock
<< 16)));
382 for (temp
= 0; temp
< 16 * 1024; temp
++, pWritePtr
+= 4) {
383 if ((temp1
= *(volatile unsigned int *) pWritePtr
) != 0xFFFFFFFF) {
384 printk(KERN_ERR
"flash_erase: verify err at %p = %X\n",
395 * write_block will limit number of bytes written to the space in this block
397 static int write_block(unsigned long p
, const char __user
*buf
, int count
)
399 volatile unsigned int c1
;
400 volatile unsigned int c2
;
401 unsigned char *pWritePtr
;
402 unsigned int uAddress
;
404 unsigned long timeout
;
405 unsigned long timeout1
;
407 pWritePtr
= (unsigned char *) ((unsigned int) (FLASH_BASE
+ p
));
410 * check if write will end in this block....
414 if (offset
+ count
> 0x10000)
415 count
= 0x10000 - offset
;
418 * wait up to 30 sec for this block
420 timeout
= jiffies
+ 30 * HZ
;
422 for (offset
= 0; offset
< count
; offset
++, pWritePtr
++) {
423 uAddress
= (unsigned int) pWritePtr
;
424 uAddress
&= 0xFFFFFFFC;
425 if (__get_user(c2
, buf
+ offset
))
432 c1
= *(volatile unsigned char *) (FLASH_BASE
+ 0x8000);
435 * kick open the write gate
440 * program footbridge to the correct offset...0..3
442 *CSR_ROMWRITEREG
= (unsigned int) pWritePtr
& 3;
447 *(volatile unsigned char *) (uAddress
) = 0x40;
452 *(volatile unsigned char *) (uAddress
) = c2
;
457 *(volatile unsigned char *) (FLASH_BASE
+ 0x10000) = 0x70;
462 * wait up to 1 sec for this byte
464 timeout1
= jiffies
+ 1 * HZ
;
469 while (!(c1
& 0x80) && time_before(jiffies
, timeout1
))
470 c1
= *(volatile unsigned char *) (FLASH_BASE
+ 0x8000);
473 * if timeout getting status
475 if (time_after_eq(jiffies
, timeout1
)) {
480 *(volatile unsigned char *) (FLASH_BASE
+ 0x8000) = 0x50;
485 * switch on read access, as a default flash operation mode
491 *(volatile unsigned char *) (FLASH_BASE
+ 0x8000) = 0xFF;
494 * if hardware reports an error writing, and not timeout -
495 * reset the chip and retry
502 *(volatile unsigned char *) (FLASH_BASE
+ 0x8000) = 0x50;
507 if (time_before(jiffies
, timeout
)) {
509 printk(KERN_DEBUG
"write_block: Retrying write at 0x%X)n",
510 pWritePtr
- FLASH_BASE
);
519 printk(KERN_ERR
"write_block: timeout at 0x%X\n",
520 pWritePtr
- FLASH_BASE
);
532 pWritePtr
= (unsigned char *) ((unsigned int) (FLASH_BASE
+ p
));
534 for (offset
= 0; offset
< count
; offset
++) {
536 if (__get_user(c
, buf
))
539 if ((c1
= *pWritePtr
++) != c
) {
540 printk(KERN_ERR
"write_block: verify error at 0x%X (%02X!=%02X)\n",
541 pWritePtr
- FLASH_BASE
, c1
, c
);
550 static void kick_open(void)
555 * we want to write a bit pattern XXX1 to Xilinx to enable
556 * the write gate, which will be open for about the next 2ms.
558 raw_spin_lock_irqsave(&nw_gpio_lock
, flags
);
559 nw_cpld_modify(CPLD_FLASH_WR_ENABLE
, CPLD_FLASH_WR_ENABLE
);
560 raw_spin_unlock_irqrestore(&nw_gpio_lock
, flags
);
563 * let the ISA bus to catch on...
568 static const struct file_operations flash_fops
=
570 .owner
= THIS_MODULE
,
571 .llseek
= flash_llseek
,
573 .write
= flash_write
,
574 .unlocked_ioctl
= flash_ioctl
,
577 static struct miscdevice flash_miscdev
=
584 static int __init
nwflash_init(void)
588 if (machine_is_netwinder()) {
591 FLASH_BASE
= ioremap(DC21285_FLASH
, KFLASH_SIZE4
);
596 if ((id
!= KFLASH_ID
) && (id
!= KFLASH_ID4
)) {
598 iounmap((void *)FLASH_BASE
);
599 printk("Flash: incorrect ID 0x%04X.\n", id
);
603 printk("Flash ROM driver v.%s, flash device ID 0x%04X, size %d Mb.\n",
604 NWFLASH_VERSION
, id
, gbFlashSize
/ (1024 * 1024));
606 ret
= misc_register(&flash_miscdev
);
608 iounmap((void *)FLASH_BASE
);
615 static void __exit
nwflash_exit(void)
617 misc_deregister(&flash_miscdev
);
618 iounmap((void *)FLASH_BASE
);
621 MODULE_LICENSE("GPL");
623 module_param(flashdebug
, bool, 0644);
625 module_init(nwflash_init
);
626 module_exit(nwflash_exit
);