2 * MTD chip driver for pre-CFI Sharp flash chips
4 * Copyright 2000,2001 David A. Schleef <ds@schleef.org>
5 * 2000,2001 Lineo, Inc.
7 * $Id: sharp.c,v 1.14 2004/08/09 13:19:43 dwmw2 Exp $
10 * LH28F016SCT Symmetrical block flash memory, 2Mx8
11 * LH28F008SCT Symmetrical block flash memory, 1Mx8
14 * http://www.sharpmeg.com/datasheets/memic/flashcmp/
15 * http://www.sharpmeg.com/datasheets/memic/flashcmp/01symf/16m/016sctl9.pdf
19 * This driver only supports 4x1 arrangement of chips.
20 * Not tested on anything but PowerPC.
23 #include <linux/kernel.h>
24 #include <linux/module.h>
25 #include <linux/types.h>
26 #include <linux/sched.h>
27 #include <linux/errno.h>
28 #include <linux/interrupt.h>
29 #include <linux/mtd/map.h>
30 #include <linux/mtd/mtd.h>
31 #include <linux/mtd/cfi.h>
32 #include <linux/delay.h>
33 #include <linux/init.h>
35 #define CMD_RESET 0xffffffff
36 #define CMD_READ_ID 0x90909090
37 #define CMD_READ_STATUS 0x70707070
38 #define CMD_CLEAR_STATUS 0x50505050
39 #define CMD_BLOCK_ERASE_1 0x20202020
40 #define CMD_BLOCK_ERASE_2 0xd0d0d0d0
41 #define CMD_BYTE_WRITE 0x40404040
42 #define CMD_SUSPEND 0xb0b0b0b0
43 #define CMD_RESUME 0xd0d0d0d0
44 #define CMD_SET_BLOCK_LOCK_1 0x60606060
45 #define CMD_SET_BLOCK_LOCK_2 0x01010101
46 #define CMD_SET_MASTER_LOCK_1 0x60606060
47 #define CMD_SET_MASTER_LOCK_2 0xf1f1f1f1
48 #define CMD_CLEAR_BLOCK_LOCKS_1 0x60606060
49 #define CMD_CLEAR_BLOCK_LOCKS_2 0xd0d0d0d0
51 #define SR_READY 0x80808080 // 1 = ready
52 #define SR_ERASE_SUSPEND 0x40404040 // 1 = block erase suspended
53 #define SR_ERROR_ERASE 0x20202020 // 1 = error in block erase or clear lock bits
54 #define SR_ERROR_WRITE 0x10101010 // 1 = error in byte write or set lock bit
55 #define SR_VPP 0x08080808 // 1 = Vpp is low
56 #define SR_WRITE_SUSPEND 0x04040404 // 1 = byte write suspended
57 #define SR_PROTECT 0x02020202 // 1 = lock bit set
58 #define SR_RESERVED 0x01010101
60 #define SR_ERRORS (SR_ERROR_ERASE|SR_ERROR_WRITE|SR_VPP|SR_PROTECT)
62 /* Configuration options */
64 #undef AUTOUNLOCK /* automatically unlocks blocks before erasing */
66 struct mtd_info
*sharp_probe(struct map_info
*);
68 static int sharp_probe_map(struct map_info
*map
,struct mtd_info
*mtd
);
70 static int sharp_read(struct mtd_info
*mtd
, loff_t from
, size_t len
,
71 size_t *retlen
, u_char
*buf
);
72 static int sharp_write(struct mtd_info
*mtd
, loff_t from
, size_t len
,
73 size_t *retlen
, const u_char
*buf
);
74 static int sharp_erase(struct mtd_info
*mtd
, struct erase_info
*instr
);
75 static void sharp_sync(struct mtd_info
*mtd
);
76 static int sharp_suspend(struct mtd_info
*mtd
);
77 static void sharp_resume(struct mtd_info
*mtd
);
78 static void sharp_destroy(struct mtd_info
*mtd
);
80 static int sharp_write_oneword(struct map_info
*map
, struct flchip
*chip
,
81 unsigned long adr
, __u32 datum
);
82 static int sharp_erase_oneblock(struct map_info
*map
, struct flchip
*chip
,
85 static void sharp_unlock_oneblock(struct map_info
*map
, struct flchip
*chip
,
95 struct flchip chips
[1];
98 struct mtd_info
*sharp_probe(struct map_info
*map
);
99 static void sharp_destroy(struct mtd_info
*mtd
);
101 static struct mtd_chip_driver sharp_chipdrv
= {
102 .probe
= sharp_probe
,
103 .destroy
= sharp_destroy
,
105 .module
= THIS_MODULE
109 struct mtd_info
*sharp_probe(struct map_info
*map
)
111 struct mtd_info
*mtd
= NULL
;
112 struct sharp_info
*sharp
= NULL
;
115 mtd
= kmalloc(sizeof(*mtd
), GFP_KERNEL
);
119 sharp
= kmalloc(sizeof(*sharp
), GFP_KERNEL
);
125 memset(mtd
, 0, sizeof(*mtd
));
127 width
= sharp_probe_map(map
,mtd
);
135 mtd
->type
= MTD_NORFLASH
;
136 mtd
->erase
= sharp_erase
;
137 mtd
->read
= sharp_read
;
138 mtd
->write
= sharp_write
;
139 mtd
->sync
= sharp_sync
;
140 mtd
->suspend
= sharp_suspend
;
141 mtd
->resume
= sharp_resume
;
142 mtd
->flags
= MTD_CAP_NORFLASH
;
143 mtd
->name
= map
->name
;
145 memset(sharp
, 0, sizeof(*sharp
));
146 sharp
->chipshift
= 23;
148 sharp
->chips
[0].start
= 0;
149 sharp
->chips
[0].state
= FL_READY
;
150 sharp
->chips
[0].mutex
= &sharp
->chips
[0]._spinlock
;
151 sharp
->chips
[0].word_write_time
= 0;
152 init_waitqueue_head(&sharp
->chips
[0].wq
);
153 spin_lock_init(&sharp
->chips
[0]._spinlock
);
155 map
->fldrv
= &sharp_chipdrv
;
156 map
->fldrv_priv
= sharp
;
158 __module_get(THIS_MODULE
);
162 static int sharp_probe_map(struct map_info
*map
,struct mtd_info
*mtd
)
165 unsigned long base
= 0;
169 tmp
= map_read32(map
, base
+0);
171 map_write32(map
, CMD_READ_ID
, base
+0);
173 read0
=map_read32(map
, base
+0);
174 read4
=map_read32(map
, base
+4);
175 if(read0
== 0x89898989){
176 printk("Looks like sharp flash\n");
180 /* aa - LH28F016SCT-L95 2Mx8, 32 64k blocks*/
181 /* a0 - LH28F016SCT-Z4 2Mx8, 32 64k blocks*/
182 mtd
->erasesize
= 0x10000 * width
;
183 mtd
->size
= 0x200000 * width
;
186 /* a6 - LH28F008SCT-L12 1Mx8, 16 64k blocks*/
187 /* a6 - LH28F008SCR-L85 1Mx8, 16 64k blocks*/
188 mtd
->erasesize
= 0x10000 * width
;
189 mtd
->size
= 0x100000 * width
;
192 case 0x00000000: /* unknown */
193 /* XX - LH28F004SCT 512kx8, 8 64k blocks*/
194 mtd
->erasesize
= 0x10000 * width
;
195 mtd
->size
= 0x80000 * width
;
199 printk("Sort-of looks like sharp flash, 0x%08x 0x%08x\n",
202 }else if((map_read32(map
, base
+0) == CMD_READ_ID
)){
204 printk("Looks like RAM\n");
205 map_write32(map
, tmp
, base
+0);
207 printk("Doesn't look like sharp flash, 0x%08x 0x%08x\n",
214 /* This function returns with the chip->mutex lock held. */
215 static int sharp_wait(struct map_info
*map
, struct flchip
*chip
)
218 unsigned long timeo
= jiffies
+ HZ
;
219 DECLARE_WAITQUEUE(wait
, current
);
223 spin_lock_bh(chip
->mutex
);
227 map_write32(map
,CMD_READ_STATUS
,adr
);
228 chip
->state
= FL_STATUS
;
230 status
= map_read32(map
,adr
);
231 //printk("status=%08x\n",status);
234 if((status
& SR_READY
)!=SR_READY
){
235 //printk(".status=%08x\n",status);
240 printk("Waiting for chip\n");
242 set_current_state(TASK_INTERRUPTIBLE
);
243 add_wait_queue(&chip
->wq
, &wait
);
245 spin_unlock_bh(chip
->mutex
);
248 remove_wait_queue(&chip
->wq
, &wait
);
250 if(signal_pending(current
))
253 timeo
= jiffies
+ HZ
;
258 map_write32(map
,CMD_RESET
, adr
);
260 chip
->state
= FL_READY
;
265 static void sharp_release(struct flchip
*chip
)
268 spin_unlock_bh(chip
->mutex
);
271 static int sharp_read(struct mtd_info
*mtd
, loff_t from
, size_t len
,
272 size_t *retlen
, u_char
*buf
)
274 struct map_info
*map
= mtd
->priv
;
275 struct sharp_info
*sharp
= map
->fldrv_priv
;
280 chipnum
= (from
>> sharp
->chipshift
);
281 ofs
= from
& ((1 << sharp
->chipshift
)-1);
286 unsigned long thislen
;
288 if(chipnum
>=sharp
->numchips
)
292 if(ofs
+thislen
>= (1<<sharp
->chipshift
))
293 thislen
= (1<<sharp
->chipshift
) - ofs
;
295 ret
= sharp_wait(map
,&sharp
->chips
[chipnum
]);
299 map_copy_from(map
,buf
,ofs
,thislen
);
301 sharp_release(&sharp
->chips
[chipnum
]);
313 static int sharp_write(struct mtd_info
*mtd
, loff_t to
, size_t len
,
314 size_t *retlen
, const u_char
*buf
)
316 struct map_info
*map
= mtd
->priv
;
317 struct sharp_info
*sharp
= map
->fldrv_priv
;
322 union { u32 l
; unsigned char uc
[4]; } tbuf
;
328 chipnum
= to
>> sharp
->chipshift
;
329 ofs
= to
& ((1<<sharp
->chipshift
)-1);
332 for(i
=ofs
&3;i
<4 && len
;i
++){
339 sharp_write_oneword(map
, &sharp
->chips
[chipnum
], ofs
&~3, tbuf
.l
);
348 static int sharp_write_oneword(struct map_info
*map
, struct flchip
*chip
,
349 unsigned long adr
, __u32 datum
)
357 ret
= sharp_wait(map
,chip
);
359 for(try=0;try<10;try++){
360 map_write32(map
,CMD_BYTE_WRITE
,adr
);
361 /* cpu_to_le32 -> hack to fix the writel be->le conversion */
362 map_write32(map
,cpu_to_le32(datum
),adr
);
364 chip
->state
= FL_WRITING
;
366 timeo
= jiffies
+ (HZ
/2);
368 map_write32(map
,CMD_READ_STATUS
,adr
);
370 status
= map_read32(map
,adr
);
371 if((status
& SR_READY
)==SR_READY
)
375 printk("sharp: timed out writing\n");
378 if(!(status
&SR_ERRORS
))
381 printk("sharp: error writing byte at addr=%08lx status=%08x\n",adr
,status
);
383 map_write32(map
,CMD_CLEAR_STATUS
,adr
);
385 map_write32(map
,CMD_RESET
,adr
);
386 chip
->state
= FL_READY
;
389 spin_unlock_bh(chip
->mutex
);
394 static int sharp_erase(struct mtd_info
*mtd
, struct erase_info
*instr
)
396 struct map_info
*map
= mtd
->priv
;
397 struct sharp_info
*sharp
= map
->fldrv_priv
;
398 unsigned long adr
,len
;
401 //printk("sharp_erase()\n");
402 if(instr
->addr
& (mtd
->erasesize
- 1))
404 if(instr
->len
& (mtd
->erasesize
- 1))
406 if(instr
->len
+ instr
->addr
> mtd
->size
)
409 chipnum
= instr
->addr
>> sharp
->chipshift
;
410 adr
= instr
->addr
& ((1<<sharp
->chipshift
)-1);
414 ret
= sharp_erase_oneblock(map
, &sharp
->chips
[chipnum
], adr
);
417 adr
+= mtd
->erasesize
;
418 len
-= mtd
->erasesize
;
419 if(adr
>> sharp
->chipshift
){
422 if(chipnum
>=sharp
->numchips
)
427 instr
->state
= MTD_ERASE_DONE
;
428 mtd_erase_callback(instr
);
433 static int sharp_do_wait_for_ready(struct map_info
*map
, struct flchip
*chip
,
439 DECLARE_WAITQUEUE(wait
, current
);
441 map_write32(map
,CMD_READ_STATUS
,adr
);
442 status
= map_read32(map
,adr
);
444 timeo
= jiffies
+ HZ
;
446 while(time_before(jiffies
, timeo
)){
447 map_write32(map
,CMD_READ_STATUS
,adr
);
448 status
= map_read32(map
,adr
);
449 if((status
& SR_READY
)==SR_READY
){
453 set_current_state(TASK_INTERRUPTIBLE
);
454 add_wait_queue(&chip
->wq
, &wait
);
456 //spin_unlock_bh(chip->mutex);
460 remove_wait_queue(&chip
->wq
, &wait
);
462 //spin_lock_bh(chip->mutex);
464 if (signal_pending(current
)){
475 static int sharp_erase_oneblock(struct map_info
*map
, struct flchip
*chip
,
483 //printk("sharp_erase_oneblock()\n");
486 /* This seems like a good place to do an unlock */
487 sharp_unlock_oneblock(map
,chip
,adr
);
490 map_write32(map
,CMD_BLOCK_ERASE_1
,adr
);
491 map_write32(map
,CMD_BLOCK_ERASE_2
,adr
);
493 chip
->state
= FL_ERASING
;
495 ret
= sharp_do_wait_for_ready(map
,chip
,adr
);
498 map_write32(map
,CMD_READ_STATUS
,adr
);
499 status
= map_read32(map
,adr
);
501 if(!(status
&SR_ERRORS
)){
502 map_write32(map
,CMD_RESET
,adr
);
503 chip
->state
= FL_READY
;
504 //spin_unlock_bh(chip->mutex);
508 printk("sharp: error erasing block at addr=%08lx status=%08x\n",adr
,status
);
509 map_write32(map
,CMD_CLEAR_STATUS
,adr
);
511 //spin_unlock_bh(chip->mutex);
517 static void sharp_unlock_oneblock(struct map_info
*map
, struct flchip
*chip
,
523 map_write32(map
,CMD_CLEAR_BLOCK_LOCKS_1
,adr
);
524 map_write32(map
,CMD_CLEAR_BLOCK_LOCKS_2
,adr
);
528 status
= map_read32(map
,adr
);
529 printk("status=%08x\n",status
);
532 //map_write32(map,CMD_READ_STATUS,adr);
533 status
= map_read32(map
,adr
);
534 if((status
& SR_READY
)==SR_READY
)
539 printk("sharp: timed out unlocking block\n");
542 if(!(status
&SR_ERRORS
)){
543 map_write32(map
,CMD_RESET
,adr
);
544 chip
->state
= FL_READY
;
548 printk("sharp: error unlocking block at addr=%08lx status=%08x\n",adr
,status
);
549 map_write32(map
,CMD_CLEAR_STATUS
,adr
);
553 static void sharp_sync(struct mtd_info
*mtd
)
555 //printk("sharp_sync()\n");
558 static int sharp_suspend(struct mtd_info
*mtd
)
560 printk("sharp_suspend()\n");
564 static void sharp_resume(struct mtd_info
*mtd
)
566 printk("sharp_resume()\n");
570 static void sharp_destroy(struct mtd_info
*mtd
)
572 printk("sharp_destroy()\n");
576 int __init
sharp_probe_init(void)
578 printk("MTD Sharp chip driver <ds@lineo.com>\n");
580 register_mtd_chip_driver(&sharp_chipdrv
);
585 static void __exit
sharp_probe_exit(void)
587 unregister_mtd_chip_driver(&sharp_chipdrv
);
590 module_init(sharp_probe_init
);
591 module_exit(sharp_probe_exit
);
594 MODULE_LICENSE("GPL");
595 MODULE_AUTHOR("David Schleef <ds@schleef.org>");
596 MODULE_DESCRIPTION("Old MTD chip driver for pre-CFI Sharp flash chips");