blob: c655e971c15864019a09258ba719048df42a8a88 [file] [log] [blame]
Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * Common Flash Interface support:
3 * Intel Extended Vendor Command Set (ID 0x0001)
4 *
5 * (C) 2000 Red Hat. GPL'd
6 *
Nicolas Pitre8bc3b382005-11-23 22:07:56 +00007 * $Id: cfi_cmdset_0001.c,v 1.186 2005/11/23 22:07:52 nico Exp $
Linus Torvalds1da177e2005-04-16 15:20:36 -07008 *
Thomas Gleixner1f948b42005-11-07 11:15:37 +00009 *
Linus Torvalds1da177e2005-04-16 15:20:36 -070010 * 10/10/2000 Nicolas Pitre <nico@cam.org>
11 * - completely revamped method functions so they are aware and
12 * independent of the flash geometry (buswidth, interleave, etc.)
13 * - scalability vs code size is completely set at compile-time
14 * (see include/linux/mtd/cfi.h for selection)
15 * - optimized write buffer method
16 * 02/05/2002 Christopher Hoover <ch@hpl.hp.com>/<ch@murgatroid.com>
17 * - reworked lock/unlock/erase support for var size flash
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -080018 * 21/03/2007 Rodolfo Giometti <giometti@linux.it>
19 * - auto unlock sectors on resume for auto locking flash on power up
Linus Torvalds1da177e2005-04-16 15:20:36 -070020 */
21
22#include <linux/module.h>
23#include <linux/types.h>
24#include <linux/kernel.h>
25#include <linux/sched.h>
26#include <linux/init.h>
27#include <asm/io.h>
28#include <asm/byteorder.h>
29
30#include <linux/errno.h>
31#include <linux/slab.h>
32#include <linux/delay.h>
33#include <linux/interrupt.h>
Nicolas Pitre963a6fb2005-04-01 02:59:56 +010034#include <linux/reboot.h>
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -080035#include <linux/bitmap.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070036#include <linux/mtd/xip.h>
37#include <linux/mtd/map.h>
38#include <linux/mtd/mtd.h>
39#include <linux/mtd/compatmac.h>
40#include <linux/mtd/cfi.h>
41
42/* #define CMDSET0001_DISABLE_ERASE_SUSPEND_ON_WRITE */
43/* #define CMDSET0001_DISABLE_WRITE_SUSPEND */
44
45// debugging, turns off buffer write mode if set to 1
46#define FORCE_WORD_WRITE 0
47
48#define MANUFACTURER_INTEL 0x0089
49#define I82802AB 0x00ad
50#define I82802AC 0x00ac
51#define MANUFACTURER_ST 0x0020
52#define M50LPW080 0x002F
53
54static int cfi_intelext_read (struct mtd_info *, loff_t, size_t, size_t *, u_char *);
Linus Torvalds1da177e2005-04-16 15:20:36 -070055static int cfi_intelext_write_words(struct mtd_info *, loff_t, size_t, size_t *, const u_char *);
56static int cfi_intelext_write_buffers(struct mtd_info *, loff_t, size_t, size_t *, const u_char *);
Nicolas Pitree102d542005-08-06 05:46:59 +010057static int cfi_intelext_writev(struct mtd_info *, const struct kvec *, unsigned long, loff_t, size_t *);
Linus Torvalds1da177e2005-04-16 15:20:36 -070058static int cfi_intelext_erase_varsize(struct mtd_info *, struct erase_info *);
59static void cfi_intelext_sync (struct mtd_info *);
60static int cfi_intelext_lock(struct mtd_info *mtd, loff_t ofs, size_t len);
61static int cfi_intelext_unlock(struct mtd_info *mtd, loff_t ofs, size_t len);
Todd Poynor8048d2f2005-03-31 00:57:33 +010062#ifdef CONFIG_MTD_OTP
Nicolas Pitref77814d2005-02-08 17:11:19 +000063static int cfi_intelext_read_fact_prot_reg (struct mtd_info *, loff_t, size_t, size_t *, u_char *);
64static int cfi_intelext_read_user_prot_reg (struct mtd_info *, loff_t, size_t, size_t *, u_char *);
65static int cfi_intelext_write_user_prot_reg (struct mtd_info *, loff_t, size_t, size_t *, u_char *);
66static int cfi_intelext_lock_user_prot_reg (struct mtd_info *, loff_t, size_t);
67static int cfi_intelext_get_fact_prot_info (struct mtd_info *,
68 struct otp_info *, size_t);
69static int cfi_intelext_get_user_prot_info (struct mtd_info *,
70 struct otp_info *, size_t);
Todd Poynor8048d2f2005-03-31 00:57:33 +010071#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -070072static int cfi_intelext_suspend (struct mtd_info *);
73static void cfi_intelext_resume (struct mtd_info *);
Nicolas Pitre963a6fb2005-04-01 02:59:56 +010074static int cfi_intelext_reboot (struct notifier_block *, unsigned long, void *);
Linus Torvalds1da177e2005-04-16 15:20:36 -070075
76static void cfi_intelext_destroy(struct mtd_info *);
77
78struct mtd_info *cfi_cmdset_0001(struct map_info *, int);
79
80static struct mtd_info *cfi_intelext_setup (struct mtd_info *);
81static int cfi_intelext_partition_fixup(struct mtd_info *, struct cfi_private **);
82
83static int cfi_intelext_point (struct mtd_info *mtd, loff_t from, size_t len,
84 size_t *retlen, u_char **mtdbuf);
85static void cfi_intelext_unpoint (struct mtd_info *mtd, u_char *addr, loff_t from,
86 size_t len);
87
88static int get_chip(struct map_info *map, struct flchip *chip, unsigned long adr, int mode);
89static void put_chip(struct map_info *map, struct flchip *chip, unsigned long adr);
90#include "fwh_lock.h"
91
92
93
94/*
95 * *********** SETUP AND PROBE BITS ***********
96 */
97
98static struct mtd_chip_driver cfi_intelext_chipdrv = {
99 .probe = NULL, /* Not usable directly */
100 .destroy = cfi_intelext_destroy,
101 .name = "cfi_cmdset_0001",
102 .module = THIS_MODULE
103};
104
105/* #define DEBUG_LOCK_BITS */
106/* #define DEBUG_CFI_FEATURES */
107
108#ifdef DEBUG_CFI_FEATURES
109static void cfi_tell_features(struct cfi_pri_intelext *extp)
110{
111 int i;
Nicolas Pitre638d9832005-08-06 05:40:46 +0100112 printk(" Extended Query version %c.%c\n", extp->MajorVersion, extp->MinorVersion);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700113 printk(" Feature/Command Support: %4.4X\n", extp->FeatureSupport);
114 printk(" - Chip Erase: %s\n", extp->FeatureSupport&1?"supported":"unsupported");
115 printk(" - Suspend Erase: %s\n", extp->FeatureSupport&2?"supported":"unsupported");
116 printk(" - Suspend Program: %s\n", extp->FeatureSupport&4?"supported":"unsupported");
117 printk(" - Legacy Lock/Unlock: %s\n", extp->FeatureSupport&8?"supported":"unsupported");
118 printk(" - Queued Erase: %s\n", extp->FeatureSupport&16?"supported":"unsupported");
119 printk(" - Instant block lock: %s\n", extp->FeatureSupport&32?"supported":"unsupported");
120 printk(" - Protection Bits: %s\n", extp->FeatureSupport&64?"supported":"unsupported");
121 printk(" - Page-mode read: %s\n", extp->FeatureSupport&128?"supported":"unsupported");
122 printk(" - Synchronous read: %s\n", extp->FeatureSupport&256?"supported":"unsupported");
123 printk(" - Simultaneous operations: %s\n", extp->FeatureSupport&512?"supported":"unsupported");
Nicolas Pitre638d9832005-08-06 05:40:46 +0100124 printk(" - Extended Flash Array: %s\n", extp->FeatureSupport&1024?"supported":"unsupported");
125 for (i=11; i<32; i++) {
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000126 if (extp->FeatureSupport & (1<<i))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700127 printk(" - Unknown Bit %X: supported\n", i);
128 }
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000129
Linus Torvalds1da177e2005-04-16 15:20:36 -0700130 printk(" Supported functions after Suspend: %2.2X\n", extp->SuspendCmdSupport);
131 printk(" - Program after Erase Suspend: %s\n", extp->SuspendCmdSupport&1?"supported":"unsupported");
132 for (i=1; i<8; i++) {
133 if (extp->SuspendCmdSupport & (1<<i))
134 printk(" - Unknown Bit %X: supported\n", i);
135 }
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000136
Linus Torvalds1da177e2005-04-16 15:20:36 -0700137 printk(" Block Status Register Mask: %4.4X\n", extp->BlkStatusRegMask);
138 printk(" - Lock Bit Active: %s\n", extp->BlkStatusRegMask&1?"yes":"no");
Nicolas Pitre638d9832005-08-06 05:40:46 +0100139 printk(" - Lock-Down Bit Active: %s\n", extp->BlkStatusRegMask&2?"yes":"no");
140 for (i=2; i<3; i++) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700141 if (extp->BlkStatusRegMask & (1<<i))
142 printk(" - Unknown Bit %X Active: yes\n",i);
143 }
Nicolas Pitre638d9832005-08-06 05:40:46 +0100144 printk(" - EFA Lock Bit: %s\n", extp->BlkStatusRegMask&16?"yes":"no");
145 printk(" - EFA Lock-Down Bit: %s\n", extp->BlkStatusRegMask&32?"yes":"no");
146 for (i=6; i<16; i++) {
147 if (extp->BlkStatusRegMask & (1<<i))
148 printk(" - Unknown Bit %X Active: yes\n",i);
149 }
150
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000151 printk(" Vcc Logic Supply Optimum Program/Erase Voltage: %d.%d V\n",
Linus Torvalds1da177e2005-04-16 15:20:36 -0700152 extp->VccOptimal >> 4, extp->VccOptimal & 0xf);
153 if (extp->VppOptimal)
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000154 printk(" Vpp Programming Supply Optimum Program/Erase Voltage: %d.%d V\n",
Linus Torvalds1da177e2005-04-16 15:20:36 -0700155 extp->VppOptimal >> 4, extp->VppOptimal & 0xf);
156}
157#endif
158
159#ifdef CMDSET0001_DISABLE_ERASE_SUSPEND_ON_WRITE
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000160/* Some Intel Strata Flash prior to FPO revision C has bugs in this area */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700161static void fixup_intel_strataflash(struct mtd_info *mtd, void* param)
162{
163 struct map_info *map = mtd->priv;
164 struct cfi_private *cfi = map->fldrv_priv;
165 struct cfi_pri_amdstd *extp = cfi->cmdset_priv;
166
167 printk(KERN_WARNING "cfi_cmdset_0001: Suspend "
168 "erase on write disabled.\n");
169 extp->SuspendCmdSupport &= ~1;
170}
171#endif
172
173#ifdef CMDSET0001_DISABLE_WRITE_SUSPEND
174static void fixup_no_write_suspend(struct mtd_info *mtd, void* param)
175{
176 struct map_info *map = mtd->priv;
177 struct cfi_private *cfi = map->fldrv_priv;
178 struct cfi_pri_intelext *cfip = cfi->cmdset_priv;
179
180 if (cfip && (cfip->FeatureSupport&4)) {
181 cfip->FeatureSupport &= ~4;
182 printk(KERN_WARNING "cfi_cmdset_0001: write suspend disabled\n");
183 }
184}
185#endif
186
187static void fixup_st_m28w320ct(struct mtd_info *mtd, void* param)
188{
189 struct map_info *map = mtd->priv;
190 struct cfi_private *cfi = map->fldrv_priv;
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000191
Linus Torvalds1da177e2005-04-16 15:20:36 -0700192 cfi->cfiq->BufWriteTimeoutTyp = 0; /* Not supported */
193 cfi->cfiq->BufWriteTimeoutMax = 0; /* Not supported */
194}
195
196static void fixup_st_m28w320cb(struct mtd_info *mtd, void* param)
197{
198 struct map_info *map = mtd->priv;
199 struct cfi_private *cfi = map->fldrv_priv;
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000200
Linus Torvalds1da177e2005-04-16 15:20:36 -0700201 /* Note this is done after the region info is endian swapped */
202 cfi->cfiq->EraseRegionInfo[1] =
203 (cfi->cfiq->EraseRegionInfo[1] & 0xffff0000) | 0x3e;
204};
205
206static void fixup_use_point(struct mtd_info *mtd, void *param)
207{
208 struct map_info *map = mtd->priv;
209 if (!mtd->point && map_is_linear(map)) {
210 mtd->point = cfi_intelext_point;
211 mtd->unpoint = cfi_intelext_unpoint;
212 }
213}
214
215static void fixup_use_write_buffers(struct mtd_info *mtd, void *param)
216{
217 struct map_info *map = mtd->priv;
218 struct cfi_private *cfi = map->fldrv_priv;
219 if (cfi->cfiq->BufWriteTimeoutTyp) {
220 printk(KERN_INFO "Using buffer write method\n" );
221 mtd->write = cfi_intelext_write_buffers;
Nicolas Pitree102d542005-08-06 05:46:59 +0100222 mtd->writev = cfi_intelext_writev;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700223 }
224}
225
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -0800226/*
227 * Some chips power-up with all sectors locked by default.
228 */
229static void fixup_use_powerup_lock(struct mtd_info *mtd, void *param)
230{
231 printk(KERN_INFO "Using auto-unlock on power-up/resume\n" );
232 mtd->flags |= MTD_STUPID_LOCK;
233}
234
Linus Torvalds1da177e2005-04-16 15:20:36 -0700235static struct cfi_fixup cfi_fixup_table[] = {
236#ifdef CMDSET0001_DISABLE_ERASE_SUSPEND_ON_WRITE
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000237 { CFI_MFR_ANY, CFI_ID_ANY, fixup_intel_strataflash, NULL },
Linus Torvalds1da177e2005-04-16 15:20:36 -0700238#endif
239#ifdef CMDSET0001_DISABLE_WRITE_SUSPEND
240 { CFI_MFR_ANY, CFI_ID_ANY, fixup_no_write_suspend, NULL },
241#endif
242#if !FORCE_WORD_WRITE
243 { CFI_MFR_ANY, CFI_ID_ANY, fixup_use_write_buffers, NULL },
244#endif
245 { CFI_MFR_ST, 0x00ba, /* M28W320CT */ fixup_st_m28w320ct, NULL },
246 { CFI_MFR_ST, 0x00bb, /* M28W320CB */ fixup_st_m28w320cb, NULL },
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -0800247 { MANUFACTURER_INTEL, 0x891c, fixup_use_powerup_lock, NULL, },
Linus Torvalds1da177e2005-04-16 15:20:36 -0700248 { 0, 0, NULL, NULL }
249};
250
251static struct cfi_fixup jedec_fixup_table[] = {
252 { MANUFACTURER_INTEL, I82802AB, fixup_use_fwh_lock, NULL, },
253 { MANUFACTURER_INTEL, I82802AC, fixup_use_fwh_lock, NULL, },
254 { MANUFACTURER_ST, M50LPW080, fixup_use_fwh_lock, NULL, },
255 { 0, 0, NULL, NULL }
256};
257static struct cfi_fixup fixup_table[] = {
258 /* The CFI vendor ids and the JEDEC vendor IDs appear
259 * to be common. It is like the devices id's are as
260 * well. This table is to pick all cases where
261 * we know that is the case.
262 */
263 { CFI_MFR_ANY, CFI_ID_ANY, fixup_use_point, NULL },
264 { 0, 0, NULL, NULL }
265};
266
267static inline struct cfi_pri_intelext *
268read_pri_intelext(struct map_info *map, __u16 adr)
269{
270 struct cfi_pri_intelext *extp;
271 unsigned int extp_size = sizeof(*extp);
272
273 again:
274 extp = (struct cfi_pri_intelext *)cfi_read_pri(map, adr, extp_size, "Intel/Sharp");
275 if (!extp)
276 return NULL;
277
Todd Poynord88f9772005-07-20 22:01:17 +0100278 if (extp->MajorVersion != '1' ||
Nicolas Pitre638d9832005-08-06 05:40:46 +0100279 (extp->MinorVersion < '0' || extp->MinorVersion > '4')) {
Todd Poynord88f9772005-07-20 22:01:17 +0100280 printk(KERN_ERR " Unknown Intel/Sharp Extended Query "
281 "version %c.%c.\n", extp->MajorVersion,
282 extp->MinorVersion);
283 kfree(extp);
284 return NULL;
285 }
286
Linus Torvalds1da177e2005-04-16 15:20:36 -0700287 /* Do some byteswapping if necessary */
288 extp->FeatureSupport = le32_to_cpu(extp->FeatureSupport);
289 extp->BlkStatusRegMask = le16_to_cpu(extp->BlkStatusRegMask);
290 extp->ProtRegAddr = le16_to_cpu(extp->ProtRegAddr);
291
Nicolas Pitre638d9832005-08-06 05:40:46 +0100292 if (extp->MajorVersion == '1' && extp->MinorVersion >= '3') {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700293 unsigned int extra_size = 0;
294 int nb_parts, i;
295
296 /* Protection Register info */
Nicolas Pitre72b56a22005-02-05 02:06:19 +0000297 extra_size += (extp->NumProtectionFields - 1) *
298 sizeof(struct cfi_intelext_otpinfo);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700299
300 /* Burst Read info */
Nicolas Pitre6f6ed052005-10-25 21:28:43 +0100301 extra_size += 2;
302 if (extp_size < sizeof(*extp) + extra_size)
303 goto need_more;
304 extra_size += extp->extra[extra_size-1];
Linus Torvalds1da177e2005-04-16 15:20:36 -0700305
306 /* Number of hardware-partitions */
307 extra_size += 1;
308 if (extp_size < sizeof(*extp) + extra_size)
309 goto need_more;
310 nb_parts = extp->extra[extra_size - 1];
311
Nicolas Pitre638d9832005-08-06 05:40:46 +0100312 /* skip the sizeof(partregion) field in CFI 1.4 */
313 if (extp->MinorVersion >= '4')
314 extra_size += 2;
315
Linus Torvalds1da177e2005-04-16 15:20:36 -0700316 for (i = 0; i < nb_parts; i++) {
317 struct cfi_intelext_regioninfo *rinfo;
318 rinfo = (struct cfi_intelext_regioninfo *)&extp->extra[extra_size];
319 extra_size += sizeof(*rinfo);
320 if (extp_size < sizeof(*extp) + extra_size)
321 goto need_more;
322 rinfo->NumIdentPartitions=le16_to_cpu(rinfo->NumIdentPartitions);
323 extra_size += (rinfo->NumBlockTypes - 1)
324 * sizeof(struct cfi_intelext_blockinfo);
325 }
326
Nicolas Pitre638d9832005-08-06 05:40:46 +0100327 if (extp->MinorVersion >= '4')
328 extra_size += sizeof(struct cfi_intelext_programming_regioninfo);
329
Linus Torvalds1da177e2005-04-16 15:20:36 -0700330 if (extp_size < sizeof(*extp) + extra_size) {
331 need_more:
332 extp_size = sizeof(*extp) + extra_size;
333 kfree(extp);
334 if (extp_size > 4096) {
335 printk(KERN_ERR
336 "%s: cfi_pri_intelext is too fat\n",
337 __FUNCTION__);
338 return NULL;
339 }
340 goto again;
341 }
342 }
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000343
Linus Torvalds1da177e2005-04-16 15:20:36 -0700344 return extp;
345}
346
Linus Torvalds1da177e2005-04-16 15:20:36 -0700347struct mtd_info *cfi_cmdset_0001(struct map_info *map, int primary)
348{
349 struct cfi_private *cfi = map->fldrv_priv;
350 struct mtd_info *mtd;
351 int i;
352
Burman Yan95b93a02006-11-15 21:10:29 +0200353 mtd = kzalloc(sizeof(*mtd), GFP_KERNEL);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700354 if (!mtd) {
355 printk(KERN_ERR "Failed to allocate memory for MTD device\n");
356 return NULL;
357 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700358 mtd->priv = map;
359 mtd->type = MTD_NORFLASH;
360
361 /* Fill in the default mtd operations */
362 mtd->erase = cfi_intelext_erase_varsize;
363 mtd->read = cfi_intelext_read;
364 mtd->write = cfi_intelext_write_words;
365 mtd->sync = cfi_intelext_sync;
366 mtd->lock = cfi_intelext_lock;
367 mtd->unlock = cfi_intelext_unlock;
368 mtd->suspend = cfi_intelext_suspend;
369 mtd->resume = cfi_intelext_resume;
370 mtd->flags = MTD_CAP_NORFLASH;
371 mtd->name = map->name;
Artem B. Bityutskiy17ffc7b2006-06-22 18:15:48 +0400372 mtd->writesize = 1;
Nicolas Pitre963a6fb2005-04-01 02:59:56 +0100373
374 mtd->reboot_notifier.notifier_call = cfi_intelext_reboot;
375
Linus Torvalds1da177e2005-04-16 15:20:36 -0700376 if (cfi->cfi_mode == CFI_MODE_CFI) {
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000377 /*
Linus Torvalds1da177e2005-04-16 15:20:36 -0700378 * It's a real CFI chip, not one for which the probe
379 * routine faked a CFI structure. So we read the feature
380 * table from it.
381 */
382 __u16 adr = primary?cfi->cfiq->P_ADR:cfi->cfiq->A_ADR;
383 struct cfi_pri_intelext *extp;
384
385 extp = read_pri_intelext(map, adr);
386 if (!extp) {
387 kfree(mtd);
388 return NULL;
389 }
390
391 /* Install our own private info structure */
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000392 cfi->cmdset_priv = extp;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700393
394 cfi_fixup(mtd, cfi_fixup_table);
395
396#ifdef DEBUG_CFI_FEATURES
397 /* Tell the user about it in lots of lovely detail */
398 cfi_tell_features(extp);
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000399#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -0700400
401 if(extp->SuspendCmdSupport & 1) {
402 printk(KERN_NOTICE "cfi_cmdset_0001: Erase suspend on write enabled\n");
403 }
404 }
405 else if (cfi->cfi_mode == CFI_MODE_JEDEC) {
406 /* Apply jedec specific fixups */
407 cfi_fixup(mtd, jedec_fixup_table);
408 }
409 /* Apply generic fixups */
410 cfi_fixup(mtd, fixup_table);
411
412 for (i=0; i< cfi->numchips; i++) {
David Woodhouse2a5bd592007-02-09 14:39:10 +0000413 if (cfi->cfiq->WordWriteTimeoutTyp)
414 cfi->chips[i].word_write_time =
415 1<<cfi->cfiq->WordWriteTimeoutTyp;
416 else
417 cfi->chips[i].word_write_time = 50000;
418
419 if (cfi->cfiq->BufWriteTimeoutTyp)
420 cfi->chips[i].buffer_write_time =
421 1<<cfi->cfiq->BufWriteTimeoutTyp;
422 /* No default; if it isn't specified, we won't use it */
423
424 if (cfi->cfiq->BlockEraseTimeoutTyp)
425 cfi->chips[i].erase_time =
426 1000<<cfi->cfiq->BlockEraseTimeoutTyp;
427 else
428 cfi->chips[i].erase_time = 2000000;
429
Linus Torvalds1da177e2005-04-16 15:20:36 -0700430 cfi->chips[i].ref_point_counter = 0;
Simon Voglc314b6f2006-02-24 13:04:09 -0800431 init_waitqueue_head(&(cfi->chips[i].wq));
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000432 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700433
434 map->fldrv = &cfi_intelext_chipdrv;
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000435
Linus Torvalds1da177e2005-04-16 15:20:36 -0700436 return cfi_intelext_setup(mtd);
437}
David Woodhousea15bdee2006-05-08 22:35:05 +0100438struct mtd_info *cfi_cmdset_0003(struct map_info *map, int primary) __attribute__((alias("cfi_cmdset_0001")));
439struct mtd_info *cfi_cmdset_0200(struct map_info *map, int primary) __attribute__((alias("cfi_cmdset_0001")));
440EXPORT_SYMBOL_GPL(cfi_cmdset_0001);
441EXPORT_SYMBOL_GPL(cfi_cmdset_0003);
442EXPORT_SYMBOL_GPL(cfi_cmdset_0200);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700443
444static struct mtd_info *cfi_intelext_setup(struct mtd_info *mtd)
445{
446 struct map_info *map = mtd->priv;
447 struct cfi_private *cfi = map->fldrv_priv;
448 unsigned long offset = 0;
449 int i,j;
450 unsigned long devsize = (1<<cfi->cfiq->DevSize) * cfi->interleave;
451
452 //printk(KERN_DEBUG "number of CFI chips: %d\n", cfi->numchips);
453
454 mtd->size = devsize * cfi->numchips;
455
456 mtd->numeraseregions = cfi->cfiq->NumEraseRegions * cfi->numchips;
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000457 mtd->eraseregions = kmalloc(sizeof(struct mtd_erase_region_info)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700458 * mtd->numeraseregions, GFP_KERNEL);
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000459 if (!mtd->eraseregions) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700460 printk(KERN_ERR "Failed to allocate memory for MTD erase region info\n");
461 goto setup_err;
462 }
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000463
Linus Torvalds1da177e2005-04-16 15:20:36 -0700464 for (i=0; i<cfi->cfiq->NumEraseRegions; i++) {
465 unsigned long ernum, ersize;
466 ersize = ((cfi->cfiq->EraseRegionInfo[i] >> 8) & ~0xff) * cfi->interleave;
467 ernum = (cfi->cfiq->EraseRegionInfo[i] & 0xffff) + 1;
468
469 if (mtd->erasesize < ersize) {
470 mtd->erasesize = ersize;
471 }
472 for (j=0; j<cfi->numchips; j++) {
473 mtd->eraseregions[(j*cfi->cfiq->NumEraseRegions)+i].offset = (j*devsize)+offset;
474 mtd->eraseregions[(j*cfi->cfiq->NumEraseRegions)+i].erasesize = ersize;
475 mtd->eraseregions[(j*cfi->cfiq->NumEraseRegions)+i].numblocks = ernum;
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -0800476 mtd->eraseregions[(j*cfi->cfiq->NumEraseRegions)+i].lockmap = kmalloc(ernum / 8 + 1, GFP_KERNEL);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700477 }
478 offset += (ersize * ernum);
479 }
480
481 if (offset != devsize) {
482 /* Argh */
483 printk(KERN_WARNING "Sum of regions (%lx) != total size of set of interleaved chips (%lx)\n", offset, devsize);
484 goto setup_err;
485 }
486
487 for (i=0; i<mtd->numeraseregions;i++){
Nicolas Pitre48436532005-08-06 05:16:52 +0100488 printk(KERN_DEBUG "erase region %d: offset=0x%x,size=0x%x,blocks=%d\n",
Linus Torvalds1da177e2005-04-16 15:20:36 -0700489 i,mtd->eraseregions[i].offset,
490 mtd->eraseregions[i].erasesize,
491 mtd->eraseregions[i].numblocks);
492 }
493
Nicolas Pitref77814d2005-02-08 17:11:19 +0000494#ifdef CONFIG_MTD_OTP
Linus Torvalds1da177e2005-04-16 15:20:36 -0700495 mtd->read_fact_prot_reg = cfi_intelext_read_fact_prot_reg;
Nicolas Pitref77814d2005-02-08 17:11:19 +0000496 mtd->read_user_prot_reg = cfi_intelext_read_user_prot_reg;
497 mtd->write_user_prot_reg = cfi_intelext_write_user_prot_reg;
498 mtd->lock_user_prot_reg = cfi_intelext_lock_user_prot_reg;
499 mtd->get_fact_prot_info = cfi_intelext_get_fact_prot_info;
500 mtd->get_user_prot_info = cfi_intelext_get_user_prot_info;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700501#endif
502
503 /* This function has the potential to distort the reality
504 a bit and therefore should be called last. */
505 if (cfi_intelext_partition_fixup(mtd, &cfi) != 0)
506 goto setup_err;
507
508 __module_get(THIS_MODULE);
Nicolas Pitre963a6fb2005-04-01 02:59:56 +0100509 register_reboot_notifier(&mtd->reboot_notifier);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700510 return mtd;
511
512 setup_err:
513 if(mtd) {
Jesper Juhlfa671642005-11-07 01:01:27 -0800514 kfree(mtd->eraseregions);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700515 kfree(mtd);
516 }
517 kfree(cfi->cmdset_priv);
518 return NULL;
519}
520
521static int cfi_intelext_partition_fixup(struct mtd_info *mtd,
522 struct cfi_private **pcfi)
523{
524 struct map_info *map = mtd->priv;
525 struct cfi_private *cfi = *pcfi;
526 struct cfi_pri_intelext *extp = cfi->cmdset_priv;
527
528 /*
Jesper Juhl8f1a8662007-07-05 02:18:34 +0200529 * Probing of multi-partition flash chips.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700530 *
531 * To support multiple partitions when available, we simply arrange
532 * for each of them to have their own flchip structure even if they
533 * are on the same physical chip. This means completely recreating
534 * a new cfi_private structure right here which is a blatent code
535 * layering violation, but this is still the least intrusive
536 * arrangement at this point. This can be rearranged in the future
537 * if someone feels motivated enough. --nico
538 */
Nicolas Pitre638d9832005-08-06 05:40:46 +0100539 if (extp && extp->MajorVersion == '1' && extp->MinorVersion >= '3'
Linus Torvalds1da177e2005-04-16 15:20:36 -0700540 && extp->FeatureSupport & (1 << 9)) {
541 struct cfi_private *newcfi;
542 struct flchip *chip;
543 struct flchip_shared *shared;
544 int offs, numregions, numparts, partshift, numvirtchips, i, j;
545
546 /* Protection Register info */
Nicolas Pitre72b56a22005-02-05 02:06:19 +0000547 offs = (extp->NumProtectionFields - 1) *
548 sizeof(struct cfi_intelext_otpinfo);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700549
550 /* Burst Read info */
Nicolas Pitre6f6ed052005-10-25 21:28:43 +0100551 offs += extp->extra[offs+1]+2;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700552
553 /* Number of partition regions */
554 numregions = extp->extra[offs];
555 offs += 1;
556
Nicolas Pitre638d9832005-08-06 05:40:46 +0100557 /* skip the sizeof(partregion) field in CFI 1.4 */
558 if (extp->MinorVersion >= '4')
559 offs += 2;
560
Linus Torvalds1da177e2005-04-16 15:20:36 -0700561 /* Number of hardware partitions */
562 numparts = 0;
563 for (i = 0; i < numregions; i++) {
564 struct cfi_intelext_regioninfo *rinfo;
565 rinfo = (struct cfi_intelext_regioninfo *)&extp->extra[offs];
566 numparts += rinfo->NumIdentPartitions;
567 offs += sizeof(*rinfo)
568 + (rinfo->NumBlockTypes - 1) *
569 sizeof(struct cfi_intelext_blockinfo);
570 }
571
Nicolas Pitre638d9832005-08-06 05:40:46 +0100572 /* Programming Region info */
573 if (extp->MinorVersion >= '4') {
574 struct cfi_intelext_programming_regioninfo *prinfo;
575 prinfo = (struct cfi_intelext_programming_regioninfo *)&extp->extra[offs];
Joern Engel28318772006-05-22 23:18:05 +0200576 mtd->writesize = cfi->interleave << prinfo->ProgRegShift;
Joern Engel5fa43392006-05-22 23:18:29 +0200577 mtd->flags &= ~MTD_BIT_WRITEABLE;
Nicolas Pitre638d9832005-08-06 05:40:46 +0100578 printk(KERN_DEBUG "%s: program region size/ctrl_valid/ctrl_inval = %d/%d/%d\n",
Joern Engel28318772006-05-22 23:18:05 +0200579 map->name, mtd->writesize,
Artem Bityutskiyd4160852007-01-30 10:45:55 +0200580 cfi->interleave * prinfo->ControlValid,
581 cfi->interleave * prinfo->ControlInvalid);
Nicolas Pitre638d9832005-08-06 05:40:46 +0100582 }
583
Linus Torvalds1da177e2005-04-16 15:20:36 -0700584 /*
585 * All functions below currently rely on all chips having
586 * the same geometry so we'll just assume that all hardware
587 * partitions are of the same size too.
588 */
589 partshift = cfi->chipshift - __ffs(numparts);
590
591 if ((1 << partshift) < mtd->erasesize) {
592 printk( KERN_ERR
593 "%s: bad number of hw partitions (%d)\n",
594 __FUNCTION__, numparts);
595 return -EINVAL;
596 }
597
598 numvirtchips = cfi->numchips * numparts;
599 newcfi = kmalloc(sizeof(struct cfi_private) + numvirtchips * sizeof(struct flchip), GFP_KERNEL);
600 if (!newcfi)
601 return -ENOMEM;
602 shared = kmalloc(sizeof(struct flchip_shared) * cfi->numchips, GFP_KERNEL);
603 if (!shared) {
604 kfree(newcfi);
605 return -ENOMEM;
606 }
607 memcpy(newcfi, cfi, sizeof(struct cfi_private));
608 newcfi->numchips = numvirtchips;
609 newcfi->chipshift = partshift;
610
611 chip = &newcfi->chips[0];
612 for (i = 0; i < cfi->numchips; i++) {
613 shared[i].writing = shared[i].erasing = NULL;
614 spin_lock_init(&shared[i].lock);
615 for (j = 0; j < numparts; j++) {
616 *chip = cfi->chips[i];
617 chip->start += j << partshift;
618 chip->priv = &shared[i];
619 /* those should be reset too since
620 they create memory references. */
621 init_waitqueue_head(&chip->wq);
622 spin_lock_init(&chip->_spinlock);
623 chip->mutex = &chip->_spinlock;
624 chip++;
625 }
626 }
627
628 printk(KERN_DEBUG "%s: %d set(s) of %d interleaved chips "
629 "--> %d partitions of %d KiB\n",
630 map->name, cfi->numchips, cfi->interleave,
631 newcfi->numchips, 1<<(newcfi->chipshift-10));
632
633 map->fldrv_priv = newcfi;
634 *pcfi = newcfi;
635 kfree(cfi);
636 }
637
638 return 0;
639}
640
641/*
642 * *********** CHIP ACCESS FUNCTIONS ***********
643 */
644
645static int get_chip(struct map_info *map, struct flchip *chip, unsigned long adr, int mode)
646{
647 DECLARE_WAITQUEUE(wait, current);
648 struct cfi_private *cfi = map->fldrv_priv;
649 map_word status, status_OK = CMD(0x80), status_PWS = CMD(0x01);
650 unsigned long timeo;
651 struct cfi_pri_intelext *cfip = cfi->cmdset_priv;
652
653 resettime:
654 timeo = jiffies + HZ;
655 retry:
Nicolas Pitref77814d2005-02-08 17:11:19 +0000656 if (chip->priv && (mode == FL_WRITING || mode == FL_ERASING || mode == FL_OTP_WRITE)) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700657 /*
658 * OK. We have possibility for contension on the write/erase
659 * operations which are global to the real chip and not per
660 * partition. So let's fight it over in the partition which
661 * currently has authority on the operation.
662 *
663 * The rules are as follows:
664 *
665 * - any write operation must own shared->writing.
666 *
667 * - any erase operation must own _both_ shared->writing and
668 * shared->erasing.
669 *
670 * - contension arbitration is handled in the owner's context.
671 *
Nicolas Pitre8bc3b382005-11-23 22:07:56 +0000672 * The 'shared' struct can be read and/or written only when
673 * its lock is taken.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700674 */
675 struct flchip_shared *shared = chip->priv;
676 struct flchip *contender;
677 spin_lock(&shared->lock);
678 contender = shared->writing;
679 if (contender && contender != chip) {
680 /*
681 * The engine to perform desired operation on this
682 * partition is already in use by someone else.
683 * Let's fight over it in the context of the chip
684 * currently using it. If it is possible to suspend,
685 * that other partition will do just that, otherwise
686 * it'll happily send us to sleep. In any case, when
687 * get_chip returns success we're clear to go ahead.
688 */
689 int ret = spin_trylock(contender->mutex);
690 spin_unlock(&shared->lock);
691 if (!ret)
692 goto retry;
693 spin_unlock(chip->mutex);
694 ret = get_chip(map, contender, contender->start, mode);
695 spin_lock(chip->mutex);
696 if (ret) {
697 spin_unlock(contender->mutex);
698 return ret;
699 }
700 timeo = jiffies + HZ;
701 spin_lock(&shared->lock);
Nicolas Pitre8bc3b382005-11-23 22:07:56 +0000702 spin_unlock(contender->mutex);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700703 }
704
705 /* We now own it */
706 shared->writing = chip;
707 if (mode == FL_ERASING)
708 shared->erasing = chip;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700709 spin_unlock(&shared->lock);
710 }
711
712 switch (chip->state) {
713
714 case FL_STATUS:
715 for (;;) {
716 status = map_read(map, adr);
717 if (map_word_andequal(map, status, status_OK, status_OK))
718 break;
719
720 /* At this point we're fine with write operations
721 in other partitions as they don't conflict. */
722 if (chip->priv && map_word_andequal(map, status, status_PWS, status_PWS))
723 break;
724
725 if (time_after(jiffies, timeo)) {
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000726 printk(KERN_ERR "%s: Waiting for chip to be ready timed out. Status %lx\n",
Nicolas Pitre48436532005-08-06 05:16:52 +0100727 map->name, status.x[0]);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700728 return -EIO;
729 }
730 spin_unlock(chip->mutex);
731 cfi_udelay(1);
732 spin_lock(chip->mutex);
733 /* Someone else might have been playing with it. */
734 goto retry;
735 }
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000736
Linus Torvalds1da177e2005-04-16 15:20:36 -0700737 case FL_READY:
738 case FL_CFI_QUERY:
739 case FL_JEDEC_QUERY:
740 return 0;
741
742 case FL_ERASING:
743 if (!cfip ||
744 !(cfip->FeatureSupport & 2) ||
745 !(mode == FL_READY || mode == FL_POINT ||
746 (mode == FL_WRITING && (cfip->SuspendCmdSupport & 1))))
747 goto sleep;
748
749
750 /* Erase suspend */
751 map_write(map, CMD(0xB0), adr);
752
753 /* If the flash has finished erasing, then 'erase suspend'
754 * appears to make some (28F320) flash devices switch to
755 * 'read' mode. Make sure that we switch to 'read status'
756 * mode so we get the right data. --rmk
757 */
758 map_write(map, CMD(0x70), adr);
759 chip->oldstate = FL_ERASING;
760 chip->state = FL_ERASE_SUSPENDING;
761 chip->erase_suspended = 1;
762 for (;;) {
763 status = map_read(map, adr);
764 if (map_word_andequal(map, status, status_OK, status_OK))
765 break;
766
767 if (time_after(jiffies, timeo)) {
768 /* Urgh. Resume and pretend we weren't here. */
769 map_write(map, CMD(0xd0), adr);
770 /* Make sure we're in 'read status' mode if it had finished */
771 map_write(map, CMD(0x70), adr);
772 chip->state = FL_ERASING;
773 chip->oldstate = FL_READY;
Nicolas Pitre48436532005-08-06 05:16:52 +0100774 printk(KERN_ERR "%s: Chip not ready after erase "
775 "suspended: status = 0x%lx\n", map->name, status.x[0]);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700776 return -EIO;
777 }
778
779 spin_unlock(chip->mutex);
780 cfi_udelay(1);
781 spin_lock(chip->mutex);
782 /* Nobody will touch it while it's in state FL_ERASE_SUSPENDING.
783 So we can just loop here. */
784 }
785 chip->state = FL_STATUS;
786 return 0;
787
788 case FL_XIP_WHILE_ERASING:
789 if (mode != FL_READY && mode != FL_POINT &&
790 (mode != FL_WRITING || !cfip || !(cfip->SuspendCmdSupport&1)))
791 goto sleep;
792 chip->oldstate = chip->state;
793 chip->state = FL_READY;
794 return 0;
795
796 case FL_POINT:
797 /* Only if there's no operation suspended... */
798 if (mode == FL_READY && chip->oldstate == FL_READY)
799 return 0;
800
801 default:
802 sleep:
803 set_current_state(TASK_UNINTERRUPTIBLE);
804 add_wait_queue(&chip->wq, &wait);
805 spin_unlock(chip->mutex);
806 schedule();
807 remove_wait_queue(&chip->wq, &wait);
808 spin_lock(chip->mutex);
809 goto resettime;
810 }
811}
812
813static void put_chip(struct map_info *map, struct flchip *chip, unsigned long adr)
814{
815 struct cfi_private *cfi = map->fldrv_priv;
816
817 if (chip->priv) {
818 struct flchip_shared *shared = chip->priv;
819 spin_lock(&shared->lock);
820 if (shared->writing == chip && chip->oldstate == FL_READY) {
821 /* We own the ability to write, but we're done */
822 shared->writing = shared->erasing;
823 if (shared->writing && shared->writing != chip) {
824 /* give back ownership to who we loaned it from */
825 struct flchip *loaner = shared->writing;
826 spin_lock(loaner->mutex);
827 spin_unlock(&shared->lock);
828 spin_unlock(chip->mutex);
829 put_chip(map, loaner, loaner->start);
830 spin_lock(chip->mutex);
831 spin_unlock(loaner->mutex);
832 wake_up(&chip->wq);
833 return;
834 }
835 shared->erasing = NULL;
836 shared->writing = NULL;
837 } else if (shared->erasing == chip && shared->writing != chip) {
838 /*
839 * We own the ability to erase without the ability
840 * to write, which means the erase was suspended
841 * and some other partition is currently writing.
842 * Don't let the switch below mess things up since
843 * we don't have ownership to resume anything.
844 */
845 spin_unlock(&shared->lock);
846 wake_up(&chip->wq);
847 return;
848 }
849 spin_unlock(&shared->lock);
850 }
851
852 switch(chip->oldstate) {
853 case FL_ERASING:
854 chip->state = chip->oldstate;
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000855 /* What if one interleaved chip has finished and the
Linus Torvalds1da177e2005-04-16 15:20:36 -0700856 other hasn't? The old code would leave the finished
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000857 one in READY mode. That's bad, and caused -EROFS
Linus Torvalds1da177e2005-04-16 15:20:36 -0700858 errors to be returned from do_erase_oneblock because
859 that's the only bit it checked for at the time.
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000860 As the state machine appears to explicitly allow
Linus Torvalds1da177e2005-04-16 15:20:36 -0700861 sending the 0x70 (Read Status) command to an erasing
Thomas Gleixner1f948b42005-11-07 11:15:37 +0000862 chip and expecting it to be ignored, that's what we
Linus Torvalds1da177e2005-04-16 15:20:36 -0700863 do. */
864 map_write(map, CMD(0xd0), adr);
865 map_write(map, CMD(0x70), adr);
866 chip->oldstate = FL_READY;
867 chip->state = FL_ERASING;
868 break;
869
870 case FL_XIP_WHILE_ERASING:
871 chip->state = chip->oldstate;
872 chip->oldstate = FL_READY;
873 break;
874
875 case FL_READY:
876 case FL_STATUS:
877 case FL_JEDEC_QUERY:
878 /* We should really make set_vpp() count, rather than doing this */
879 DISABLE_VPP(map);
880 break;
881 default:
Nicolas Pitre48436532005-08-06 05:16:52 +0100882 printk(KERN_ERR "%s: put_chip() called with oldstate %d!!\n", map->name, chip->oldstate);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700883 }
884 wake_up(&chip->wq);
885}
886
887#ifdef CONFIG_MTD_XIP
888
889/*
890 * No interrupt what so ever can be serviced while the flash isn't in array
891 * mode. This is ensured by the xip_disable() and xip_enable() functions
892 * enclosing any code path where the flash is known not to be in array mode.
893 * And within a XIP disabled code path, only functions marked with __xipram
894 * may be called and nothing else (it's a good thing to inspect generated
895 * assembly to make sure inline functions were actually inlined and that gcc
896 * didn't emit calls to its own support functions). Also configuring MTD CFI
897 * support to a single buswidth and a single interleave is also recommended.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700898 */
899
900static void xip_disable(struct map_info *map, struct flchip *chip,
901 unsigned long adr)
902{
903 /* TODO: chips with no XIP use should ignore and return */
904 (void) map_read(map, adr); /* ensure mmu mapping is up to date */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700905 local_irq_disable();
906}
907
908static void __xipram xip_enable(struct map_info *map, struct flchip *chip,
909 unsigned long adr)
910{
911 struct cfi_private *cfi = map->fldrv_priv;
912 if (chip->state != FL_POINT && chip->state != FL_READY) {
913 map_write(map, CMD(0xff), adr);
914 chip->state = FL_READY;
915 }
916 (void) map_read(map, adr);
Thomas Gleixner97f927a2005-07-07 16:50:16 +0200917 xip_iprefetch();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700918 local_irq_enable();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700919}
920
921/*
922 * When a delay is required for the flash operation to complete, the
Nicolas Pitrec1724712006-03-30 15:52:41 +0100923 * xip_wait_for_operation() function is polling for both the given timeout
924 * and pending (but still masked) hardware interrupts. Whenever there is an
925 * interrupt pending then the flash erase or write operation is suspended,
926 * array mode restored and interrupts unmasked. Task scheduling might also
927 * happen at that point. The CPU eventually returns from the interrupt or
928 * the call to schedule() and the suspended flash operation is resumed for
929 * the remaining of the delay period.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700930 *
931 * Warning: this function _will_ fool interrupt latency tracing tools.
932 */
933
Nicolas Pitrec1724712006-03-30 15:52:41 +0100934static int __xipram xip_wait_for_operation(
935 struct map_info *map, struct flchip *chip,
Alexey Korolev46a16522006-06-28 19:22:07 +0100936 unsigned long adr, unsigned int chip_op_time )
Linus Torvalds1da177e2005-04-16 15:20:36 -0700937{
938 struct cfi_private *cfi = map->fldrv_priv;
939 struct cfi_pri_intelext *cfip = cfi->cmdset_priv;
940 map_word status, OK = CMD(0x80);
Nicolas Pitrec1724712006-03-30 15:52:41 +0100941 unsigned long usec, suspended, start, done;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700942 flstate_t oldstate, newstate;
943
Nicolas Pitrec1724712006-03-30 15:52:41 +0100944 start = xip_currtime();
Alexey Korolev46a16522006-06-28 19:22:07 +0100945 usec = chip_op_time * 8;
Nicolas Pitrec1724712006-03-30 15:52:41 +0100946 if (usec == 0)
947 usec = 500000;
948 done = 0;
949
Linus Torvalds1da177e2005-04-16 15:20:36 -0700950 do {
951 cpu_relax();
952 if (xip_irqpending() && cfip &&
953 ((chip->state == FL_ERASING && (cfip->FeatureSupport&2)) ||
954 (chip->state == FL_WRITING && (cfip->FeatureSupport&4))) &&
955 (cfi_interleave_is_1(cfi) || chip->oldstate == FL_READY)) {
956 /*
957 * Let's suspend the erase or write operation when
958 * supported. Note that we currently don't try to
959 * suspend interleaved chips if there is already
960 * another operation suspended (imagine what happens
961 * when one chip was already done with the current
962 * operation while another chip suspended it, then
963 * we resume the whole thing at once). Yes, it
964 * can happen!
965 */
Nicolas Pitrec1724712006-03-30 15:52:41 +0100966 usec -= done;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700967 map_write(map, CMD(0xb0), adr);
968 map_write(map, CMD(0x70), adr);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700969 suspended = xip_currtime();
970 do {
971 if (xip_elapsed_since(suspended) > 100000) {
972 /*
973 * The chip doesn't want to suspend
974 * after waiting for 100 msecs.
975 * This is a critical error but there
976 * is not much we can do here.
977 */
Nicolas Pitrec1724712006-03-30 15:52:41 +0100978 return -EIO;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700979 }
980 status = map_read(map, adr);
981 } while (!map_word_andequal(map, status, OK, OK));
982
983 /* Suspend succeeded */
984 oldstate = chip->state;
985 if (oldstate == FL_ERASING) {
986 if (!map_word_bitsset(map, status, CMD(0x40)))
987 break;
988 newstate = FL_XIP_WHILE_ERASING;
989 chip->erase_suspended = 1;
990 } else {
991 if (!map_word_bitsset(map, status, CMD(0x04)))
992 break;
993 newstate = FL_XIP_WHILE_WRITING;
994 chip->write_suspended = 1;
995 }
996 chip->state = newstate;
997 map_write(map, CMD(0xff), adr);
998 (void) map_read(map, adr);
999 asm volatile (".rep 8; nop; .endr");
1000 local_irq_enable();
Nicolas Pitre6da70122005-05-19 18:05:47 +01001001 spin_unlock(chip->mutex);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001002 asm volatile (".rep 8; nop; .endr");
1003 cond_resched();
1004
1005 /*
1006 * We're back. However someone else might have
1007 * decided to go write to the chip if we are in
1008 * a suspended erase state. If so let's wait
1009 * until it's done.
1010 */
Nicolas Pitre6da70122005-05-19 18:05:47 +01001011 spin_lock(chip->mutex);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001012 while (chip->state != newstate) {
1013 DECLARE_WAITQUEUE(wait, current);
1014 set_current_state(TASK_UNINTERRUPTIBLE);
1015 add_wait_queue(&chip->wq, &wait);
Nicolas Pitre6da70122005-05-19 18:05:47 +01001016 spin_unlock(chip->mutex);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001017 schedule();
1018 remove_wait_queue(&chip->wq, &wait);
Nicolas Pitre6da70122005-05-19 18:05:47 +01001019 spin_lock(chip->mutex);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001020 }
1021 /* Disallow XIP again */
1022 local_irq_disable();
1023
1024 /* Resume the write or erase operation */
1025 map_write(map, CMD(0xd0), adr);
1026 map_write(map, CMD(0x70), adr);
1027 chip->state = oldstate;
1028 start = xip_currtime();
1029 } else if (usec >= 1000000/HZ) {
1030 /*
1031 * Try to save on CPU power when waiting delay
1032 * is at least a system timer tick period.
1033 * No need to be extremely accurate here.
1034 */
1035 xip_cpu_idle();
1036 }
1037 status = map_read(map, adr);
Nicolas Pitrec1724712006-03-30 15:52:41 +01001038 done = xip_elapsed_since(start);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001039 } while (!map_word_andequal(map, status, OK, OK)
Nicolas Pitrec1724712006-03-30 15:52:41 +01001040 && done < usec);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001041
Nicolas Pitrec1724712006-03-30 15:52:41 +01001042 return (done >= usec) ? -ETIME : 0;
1043}
Linus Torvalds1da177e2005-04-16 15:20:36 -07001044
1045/*
1046 * The INVALIDATE_CACHED_RANGE() macro is normally used in parallel while
1047 * the flash is actively programming or erasing since we have to poll for
1048 * the operation to complete anyway. We can't do that in a generic way with
Nicolas Pitre6da70122005-05-19 18:05:47 +01001049 * a XIP setup so do it before the actual flash operation in this case
Nicolas Pitrec1724712006-03-30 15:52:41 +01001050 * and stub it out from INVAL_CACHE_AND_WAIT.
Linus Torvalds1da177e2005-04-16 15:20:36 -07001051 */
Nicolas Pitre6da70122005-05-19 18:05:47 +01001052#define XIP_INVAL_CACHED_RANGE(map, from, size) \
1053 INVALIDATE_CACHED_RANGE(map, from, size)
1054
Alexey Korolev46a16522006-06-28 19:22:07 +01001055#define INVAL_CACHE_AND_WAIT(map, chip, cmd_adr, inval_adr, inval_len, usec) \
1056 xip_wait_for_operation(map, chip, cmd_adr, usec)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001057
1058#else
1059
1060#define xip_disable(map, chip, adr)
1061#define xip_enable(map, chip, adr)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001062#define XIP_INVAL_CACHED_RANGE(x...)
Nicolas Pitrec1724712006-03-30 15:52:41 +01001063#define INVAL_CACHE_AND_WAIT inval_cache_and_wait_for_operation
Linus Torvalds1da177e2005-04-16 15:20:36 -07001064
Nicolas Pitrec1724712006-03-30 15:52:41 +01001065static int inval_cache_and_wait_for_operation(
1066 struct map_info *map, struct flchip *chip,
1067 unsigned long cmd_adr, unsigned long inval_adr, int inval_len,
Alexey Korolev46a16522006-06-28 19:22:07 +01001068 unsigned int chip_op_time)
Nicolas Pitrec1724712006-03-30 15:52:41 +01001069{
1070 struct cfi_private *cfi = map->fldrv_priv;
1071 map_word status, status_OK = CMD(0x80);
Alexey Korolev46a16522006-06-28 19:22:07 +01001072 int chip_state = chip->state;
1073 unsigned int timeo, sleep_time;
Nicolas Pitre6da70122005-05-19 18:05:47 +01001074
Nicolas Pitrec1724712006-03-30 15:52:41 +01001075 spin_unlock(chip->mutex);
1076 if (inval_len)
1077 INVALIDATE_CACHED_RANGE(map, inval_adr, inval_len);
Nicolas Pitrec1724712006-03-30 15:52:41 +01001078 spin_lock(chip->mutex);
1079
Alexey Korolev46a16522006-06-28 19:22:07 +01001080 /* set our timeout to 8 times the expected delay */
1081 timeo = chip_op_time * 8;
1082 if (!timeo)
1083 timeo = 500000;
1084 sleep_time = chip_op_time / 2;
Nicolas Pitrec1724712006-03-30 15:52:41 +01001085
Nicolas Pitrec1724712006-03-30 15:52:41 +01001086 for (;;) {
Nicolas Pitrec1724712006-03-30 15:52:41 +01001087 status = map_read(map, cmd_adr);
1088 if (map_word_andequal(map, status, status_OK, status_OK))
1089 break;
1090
Alexey Korolev46a16522006-06-28 19:22:07 +01001091 if (!timeo) {
Nicolas Pitrec1724712006-03-30 15:52:41 +01001092 map_write(map, CMD(0x70), cmd_adr);
1093 chip->state = FL_STATUS;
1094 return -ETIME;
1095 }
1096
Alexey Korolev46a16522006-06-28 19:22:07 +01001097 /* OK Still waiting. Drop the lock, wait a while and retry. */
Nicolas Pitrec1724712006-03-30 15:52:41 +01001098 spin_unlock(chip->mutex);
Alexey Korolev46a16522006-06-28 19:22:07 +01001099 if (sleep_time >= 1000000/HZ) {
1100 /*
1101 * Half of the normal delay still remaining
1102 * can be performed with a sleeping delay instead
1103 * of busy waiting.
1104 */
1105 msleep(sleep_time/1000);
1106 timeo -= sleep_time;
1107 sleep_time = 1000000/HZ;
1108 } else {
1109 udelay(1);
1110 cond_resched();
1111 timeo--;
1112 }
Nicolas Pitrec1724712006-03-30 15:52:41 +01001113 spin_lock(chip->mutex);
Nicolas Pitrec1724712006-03-30 15:52:41 +01001114
Joakim Tjernlund967bf622006-11-28 23:11:52 +00001115 while (chip->state != chip_state) {
Alexey Korolev46a16522006-06-28 19:22:07 +01001116 /* Someone's suspended the operation: sleep */
1117 DECLARE_WAITQUEUE(wait, current);
1118 set_current_state(TASK_UNINTERRUPTIBLE);
1119 add_wait_queue(&chip->wq, &wait);
1120 spin_unlock(chip->mutex);
1121 schedule();
1122 remove_wait_queue(&chip->wq, &wait);
1123 spin_lock(chip->mutex);
1124 }
1125 }
Nicolas Pitrec1724712006-03-30 15:52:41 +01001126
1127 /* Done and happy. */
1128 chip->state = FL_STATUS;
1129 return 0;
1130}
Nicolas Pitre6da70122005-05-19 18:05:47 +01001131
Linus Torvalds1da177e2005-04-16 15:20:36 -07001132#endif
1133
Nicolas Pitrec1724712006-03-30 15:52:41 +01001134#define WAIT_TIMEOUT(map, chip, adr, udelay) \
Alexey Korolev46a16522006-06-28 19:22:07 +01001135 INVAL_CACHE_AND_WAIT(map, chip, adr, 0, 0, udelay);
Nicolas Pitrec1724712006-03-30 15:52:41 +01001136
1137
Linus Torvalds1da177e2005-04-16 15:20:36 -07001138static int do_point_onechip (struct map_info *map, struct flchip *chip, loff_t adr, size_t len)
1139{
1140 unsigned long cmd_addr;
1141 struct cfi_private *cfi = map->fldrv_priv;
1142 int ret = 0;
1143
1144 adr += chip->start;
1145
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001146 /* Ensure cmd read/writes are aligned. */
1147 cmd_addr = adr & ~(map_bankwidth(map)-1);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001148
1149 spin_lock(chip->mutex);
1150
1151 ret = get_chip(map, chip, cmd_addr, FL_POINT);
1152
1153 if (!ret) {
1154 if (chip->state != FL_POINT && chip->state != FL_READY)
1155 map_write(map, CMD(0xff), cmd_addr);
1156
1157 chip->state = FL_POINT;
1158 chip->ref_point_counter++;
1159 }
1160 spin_unlock(chip->mutex);
1161
1162 return ret;
1163}
1164
1165static int cfi_intelext_point (struct mtd_info *mtd, loff_t from, size_t len, size_t *retlen, u_char **mtdbuf)
1166{
1167 struct map_info *map = mtd->priv;
1168 struct cfi_private *cfi = map->fldrv_priv;
Andy Lowe097f2572007-01-12 18:05:10 -05001169 unsigned long ofs, last_end = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001170 int chipnum;
1171 int ret = 0;
1172
1173 if (!map->virt || (from + len > mtd->size))
1174 return -EINVAL;
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001175
Linus Torvalds1da177e2005-04-16 15:20:36 -07001176 /* Now lock the chip(s) to POINT state */
1177
1178 /* ofs: offset within the first chip that the first read should start */
1179 chipnum = (from >> cfi->chipshift);
1180 ofs = from - (chipnum << cfi->chipshift);
1181
Andy Lowe097f2572007-01-12 18:05:10 -05001182 *mtdbuf = (void *)map->virt + cfi->chips[chipnum].start + ofs;
1183 *retlen = 0;
1184
Linus Torvalds1da177e2005-04-16 15:20:36 -07001185 while (len) {
1186 unsigned long thislen;
1187
1188 if (chipnum >= cfi->numchips)
1189 break;
1190
Andy Lowe097f2572007-01-12 18:05:10 -05001191 /* We cannot point across chips that are virtually disjoint */
1192 if (!last_end)
1193 last_end = cfi->chips[chipnum].start;
1194 else if (cfi->chips[chipnum].start != last_end)
1195 break;
1196
Linus Torvalds1da177e2005-04-16 15:20:36 -07001197 if ((len + ofs -1) >> cfi->chipshift)
1198 thislen = (1<<cfi->chipshift) - ofs;
1199 else
1200 thislen = len;
1201
1202 ret = do_point_onechip(map, &cfi->chips[chipnum], ofs, thislen);
1203 if (ret)
1204 break;
1205
1206 *retlen += thislen;
1207 len -= thislen;
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001208
Linus Torvalds1da177e2005-04-16 15:20:36 -07001209 ofs = 0;
Andy Lowe097f2572007-01-12 18:05:10 -05001210 last_end += 1 << cfi->chipshift;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001211 chipnum++;
1212 }
1213 return 0;
1214}
1215
1216static void cfi_intelext_unpoint (struct mtd_info *mtd, u_char *addr, loff_t from, size_t len)
1217{
1218 struct map_info *map = mtd->priv;
1219 struct cfi_private *cfi = map->fldrv_priv;
1220 unsigned long ofs;
1221 int chipnum;
1222
1223 /* Now unlock the chip(s) POINT state */
1224
1225 /* ofs: offset within the first chip that the first read should start */
1226 chipnum = (from >> cfi->chipshift);
1227 ofs = from - (chipnum << cfi->chipshift);
1228
1229 while (len) {
1230 unsigned long thislen;
1231 struct flchip *chip;
1232
1233 chip = &cfi->chips[chipnum];
1234 if (chipnum >= cfi->numchips)
1235 break;
1236
1237 if ((len + ofs -1) >> cfi->chipshift)
1238 thislen = (1<<cfi->chipshift) - ofs;
1239 else
1240 thislen = len;
1241
1242 spin_lock(chip->mutex);
1243 if (chip->state == FL_POINT) {
1244 chip->ref_point_counter--;
1245 if(chip->ref_point_counter == 0)
1246 chip->state = FL_READY;
1247 } else
Nicolas Pitre48436532005-08-06 05:16:52 +01001248 printk(KERN_ERR "%s: Warning: unpoint called on non pointed region\n", map->name); /* Should this give an error? */
Linus Torvalds1da177e2005-04-16 15:20:36 -07001249
1250 put_chip(map, chip, chip->start);
1251 spin_unlock(chip->mutex);
1252
1253 len -= thislen;
1254 ofs = 0;
1255 chipnum++;
1256 }
1257}
1258
1259static inline int do_read_onechip(struct map_info *map, struct flchip *chip, loff_t adr, size_t len, u_char *buf)
1260{
1261 unsigned long cmd_addr;
1262 struct cfi_private *cfi = map->fldrv_priv;
1263 int ret;
1264
1265 adr += chip->start;
1266
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001267 /* Ensure cmd read/writes are aligned. */
1268 cmd_addr = adr & ~(map_bankwidth(map)-1);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001269
1270 spin_lock(chip->mutex);
1271 ret = get_chip(map, chip, cmd_addr, FL_READY);
1272 if (ret) {
1273 spin_unlock(chip->mutex);
1274 return ret;
1275 }
1276
1277 if (chip->state != FL_POINT && chip->state != FL_READY) {
1278 map_write(map, CMD(0xff), cmd_addr);
1279
1280 chip->state = FL_READY;
1281 }
1282
1283 map_copy_from(map, buf, adr, len);
1284
1285 put_chip(map, chip, cmd_addr);
1286
1287 spin_unlock(chip->mutex);
1288 return 0;
1289}
1290
1291static int cfi_intelext_read (struct mtd_info *mtd, loff_t from, size_t len, size_t *retlen, u_char *buf)
1292{
1293 struct map_info *map = mtd->priv;
1294 struct cfi_private *cfi = map->fldrv_priv;
1295 unsigned long ofs;
1296 int chipnum;
1297 int ret = 0;
1298
1299 /* ofs: offset within the first chip that the first read should start */
1300 chipnum = (from >> cfi->chipshift);
1301 ofs = from - (chipnum << cfi->chipshift);
1302
1303 *retlen = 0;
1304
1305 while (len) {
1306 unsigned long thislen;
1307
1308 if (chipnum >= cfi->numchips)
1309 break;
1310
1311 if ((len + ofs -1) >> cfi->chipshift)
1312 thislen = (1<<cfi->chipshift) - ofs;
1313 else
1314 thislen = len;
1315
1316 ret = do_read_onechip(map, &cfi->chips[chipnum], ofs, thislen, buf);
1317 if (ret)
1318 break;
1319
1320 *retlen += thislen;
1321 len -= thislen;
1322 buf += thislen;
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001323
Linus Torvalds1da177e2005-04-16 15:20:36 -07001324 ofs = 0;
1325 chipnum++;
1326 }
1327 return ret;
1328}
1329
Linus Torvalds1da177e2005-04-16 15:20:36 -07001330static int __xipram do_write_oneword(struct map_info *map, struct flchip *chip,
Nicolas Pitref77814d2005-02-08 17:11:19 +00001331 unsigned long adr, map_word datum, int mode)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001332{
1333 struct cfi_private *cfi = map->fldrv_priv;
Nicolas Pitrec1724712006-03-30 15:52:41 +01001334 map_word status, write_cmd;
1335 int ret=0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001336
1337 adr += chip->start;
1338
Nicolas Pitref77814d2005-02-08 17:11:19 +00001339 switch (mode) {
Nicolas Pitre638d9832005-08-06 05:40:46 +01001340 case FL_WRITING:
1341 write_cmd = (cfi->cfiq->P_ID != 0x0200) ? CMD(0x40) : CMD(0x41);
1342 break;
1343 case FL_OTP_WRITE:
1344 write_cmd = CMD(0xc0);
1345 break;
1346 default:
1347 return -EINVAL;
Nicolas Pitref77814d2005-02-08 17:11:19 +00001348 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001349
1350 spin_lock(chip->mutex);
Nicolas Pitref77814d2005-02-08 17:11:19 +00001351 ret = get_chip(map, chip, adr, mode);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001352 if (ret) {
1353 spin_unlock(chip->mutex);
1354 return ret;
1355 }
1356
1357 XIP_INVAL_CACHED_RANGE(map, adr, map_bankwidth(map));
1358 ENABLE_VPP(map);
1359 xip_disable(map, chip, adr);
Nicolas Pitref77814d2005-02-08 17:11:19 +00001360 map_write(map, write_cmd, adr);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001361 map_write(map, datum, adr);
Nicolas Pitref77814d2005-02-08 17:11:19 +00001362 chip->state = mode;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001363
Nicolas Pitrec1724712006-03-30 15:52:41 +01001364 ret = INVAL_CACHE_AND_WAIT(map, chip, adr,
1365 adr, map_bankwidth(map),
Alexey Korolev46a16522006-06-28 19:22:07 +01001366 chip->word_write_time);
Nicolas Pitrec1724712006-03-30 15:52:41 +01001367 if (ret) {
1368 xip_enable(map, chip, adr);
1369 printk(KERN_ERR "%s: word write error (status timeout)\n", map->name);
1370 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001371 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001372
Nicolas Pitre48436532005-08-06 05:16:52 +01001373 /* check for errors */
Nicolas Pitrec1724712006-03-30 15:52:41 +01001374 status = map_read(map, adr);
Nicolas Pitre48436532005-08-06 05:16:52 +01001375 if (map_word_bitsset(map, status, CMD(0x1a))) {
1376 unsigned long chipstatus = MERGESTATUS(status);
1377
1378 /* reset status */
Linus Torvalds1da177e2005-04-16 15:20:36 -07001379 map_write(map, CMD(0x50), adr);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001380 map_write(map, CMD(0x70), adr);
Nicolas Pitre48436532005-08-06 05:16:52 +01001381 xip_enable(map, chip, adr);
1382
1383 if (chipstatus & 0x02) {
1384 ret = -EROFS;
1385 } else if (chipstatus & 0x08) {
1386 printk(KERN_ERR "%s: word write error (bad VPP)\n", map->name);
1387 ret = -EIO;
1388 } else {
1389 printk(KERN_ERR "%s: word write error (status 0x%lx)\n", map->name, chipstatus);
1390 ret = -EINVAL;
1391 }
1392
1393 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001394 }
1395
1396 xip_enable(map, chip, adr);
1397 out: put_chip(map, chip, adr);
1398 spin_unlock(chip->mutex);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001399 return ret;
1400}
1401
1402
1403static int cfi_intelext_write_words (struct mtd_info *mtd, loff_t to , size_t len, size_t *retlen, const u_char *buf)
1404{
1405 struct map_info *map = mtd->priv;
1406 struct cfi_private *cfi = map->fldrv_priv;
1407 int ret = 0;
1408 int chipnum;
1409 unsigned long ofs;
1410
1411 *retlen = 0;
1412 if (!len)
1413 return 0;
1414
1415 chipnum = to >> cfi->chipshift;
1416 ofs = to - (chipnum << cfi->chipshift);
1417
1418 /* If it's not bus-aligned, do the first byte write */
1419 if (ofs & (map_bankwidth(map)-1)) {
1420 unsigned long bus_ofs = ofs & ~(map_bankwidth(map)-1);
1421 int gap = ofs - bus_ofs;
1422 int n;
1423 map_word datum;
1424
1425 n = min_t(int, len, map_bankwidth(map)-gap);
1426 datum = map_word_ff(map);
1427 datum = map_word_load_partial(map, datum, buf, gap, n);
1428
1429 ret = do_write_oneword(map, &cfi->chips[chipnum],
Nicolas Pitref77814d2005-02-08 17:11:19 +00001430 bus_ofs, datum, FL_WRITING);
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001431 if (ret)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001432 return ret;
1433
1434 len -= n;
1435 ofs += n;
1436 buf += n;
1437 (*retlen) += n;
1438
1439 if (ofs >> cfi->chipshift) {
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001440 chipnum ++;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001441 ofs = 0;
1442 if (chipnum == cfi->numchips)
1443 return 0;
1444 }
1445 }
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001446
Linus Torvalds1da177e2005-04-16 15:20:36 -07001447 while(len >= map_bankwidth(map)) {
1448 map_word datum = map_word_load(map, buf);
1449
1450 ret = do_write_oneword(map, &cfi->chips[chipnum],
Nicolas Pitref77814d2005-02-08 17:11:19 +00001451 ofs, datum, FL_WRITING);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001452 if (ret)
1453 return ret;
1454
1455 ofs += map_bankwidth(map);
1456 buf += map_bankwidth(map);
1457 (*retlen) += map_bankwidth(map);
1458 len -= map_bankwidth(map);
1459
1460 if (ofs >> cfi->chipshift) {
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001461 chipnum ++;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001462 ofs = 0;
1463 if (chipnum == cfi->numchips)
1464 return 0;
1465 }
1466 }
1467
1468 if (len & (map_bankwidth(map)-1)) {
1469 map_word datum;
1470
1471 datum = map_word_ff(map);
1472 datum = map_word_load_partial(map, datum, buf, 0, len);
1473
1474 ret = do_write_oneword(map, &cfi->chips[chipnum],
Nicolas Pitref77814d2005-02-08 17:11:19 +00001475 ofs, datum, FL_WRITING);
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001476 if (ret)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001477 return ret;
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001478
Linus Torvalds1da177e2005-04-16 15:20:36 -07001479 (*retlen) += len;
1480 }
1481
1482 return 0;
1483}
1484
1485
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001486static int __xipram do_write_buffer(struct map_info *map, struct flchip *chip,
Nicolas Pitree102d542005-08-06 05:46:59 +01001487 unsigned long adr, const struct kvec **pvec,
1488 unsigned long *pvec_seek, int len)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001489{
1490 struct cfi_private *cfi = map->fldrv_priv;
Nicolas Pitrec1724712006-03-30 15:52:41 +01001491 map_word status, write_cmd, datum;
1492 unsigned long cmd_adr;
1493 int ret, wbufsize, word_gap, words;
Nicolas Pitree102d542005-08-06 05:46:59 +01001494 const struct kvec *vec;
1495 unsigned long vec_seek;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001496
1497 wbufsize = cfi_interleave(cfi) << cfi->cfiq->MaxBufWriteSize;
1498 adr += chip->start;
1499 cmd_adr = adr & ~(wbufsize-1);
Nicolas Pitre638d9832005-08-06 05:40:46 +01001500
Linus Torvalds1da177e2005-04-16 15:20:36 -07001501 /* Let's determine this according to the interleave only once */
Nicolas Pitre638d9832005-08-06 05:40:46 +01001502 write_cmd = (cfi->cfiq->P_ID != 0x0200) ? CMD(0xe8) : CMD(0xe9);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001503
1504 spin_lock(chip->mutex);
1505 ret = get_chip(map, chip, cmd_adr, FL_WRITING);
1506 if (ret) {
1507 spin_unlock(chip->mutex);
1508 return ret;
1509 }
1510
1511 XIP_INVAL_CACHED_RANGE(map, adr, len);
1512 ENABLE_VPP(map);
1513 xip_disable(map, chip, cmd_adr);
1514
David Woodhouse151e7652006-05-14 01:51:54 +01001515 /* §4.8 of the 28FxxxJ3A datasheet says "Any time SR.4 and/or SR.5 is set
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001516 [...], the device will not accept any more Write to Buffer commands".
Linus Torvalds1da177e2005-04-16 15:20:36 -07001517 So we must check here and reset those bits if they're set. Otherwise
1518 we're just pissing in the wind */
Nicolas Pitre6e7a6802006-03-29 23:31:42 +01001519 if (chip->state != FL_STATUS) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001520 map_write(map, CMD(0x70), cmd_adr);
Nicolas Pitre6e7a6802006-03-29 23:31:42 +01001521 chip->state = FL_STATUS;
1522 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001523 status = map_read(map, cmd_adr);
1524 if (map_word_bitsset(map, status, CMD(0x30))) {
1525 xip_enable(map, chip, cmd_adr);
1526 printk(KERN_WARNING "SR.4 or SR.5 bits set in buffer write (status %lx). Clearing.\n", status.x[0]);
1527 xip_disable(map, chip, cmd_adr);
1528 map_write(map, CMD(0x50), cmd_adr);
1529 map_write(map, CMD(0x70), cmd_adr);
1530 }
1531
1532 chip->state = FL_WRITING_TO_BUFFER;
Nicolas Pitrec1724712006-03-30 15:52:41 +01001533 map_write(map, write_cmd, cmd_adr);
1534 ret = WAIT_TIMEOUT(map, chip, cmd_adr, 0);
1535 if (ret) {
1536 /* Argh. Not ready for write to buffer */
1537 map_word Xstatus = map_read(map, cmd_adr);
1538 map_write(map, CMD(0x70), cmd_adr);
1539 chip->state = FL_STATUS;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001540 status = map_read(map, cmd_adr);
Nicolas Pitrec1724712006-03-30 15:52:41 +01001541 map_write(map, CMD(0x50), cmd_adr);
1542 map_write(map, CMD(0x70), cmd_adr);
1543 xip_enable(map, chip, cmd_adr);
1544 printk(KERN_ERR "%s: Chip not ready for buffer write. Xstatus = %lx, status = %lx\n",
1545 map->name, Xstatus.x[0], status.x[0]);
1546 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001547 }
1548
Nicolas Pitree102d542005-08-06 05:46:59 +01001549 /* Figure out the number of words to write */
1550 word_gap = (-adr & (map_bankwidth(map)-1));
1551 words = (len - word_gap + map_bankwidth(map) - 1) / map_bankwidth(map);
1552 if (!word_gap) {
1553 words--;
1554 } else {
1555 word_gap = map_bankwidth(map) - word_gap;
1556 adr -= word_gap;
1557 datum = map_word_ff(map);
1558 }
1559
Linus Torvalds1da177e2005-04-16 15:20:36 -07001560 /* Write length of data to come */
Nicolas Pitree102d542005-08-06 05:46:59 +01001561 map_write(map, CMD(words), cmd_adr );
Linus Torvalds1da177e2005-04-16 15:20:36 -07001562
1563 /* Write data */
Nicolas Pitree102d542005-08-06 05:46:59 +01001564 vec = *pvec;
1565 vec_seek = *pvec_seek;
1566 do {
1567 int n = map_bankwidth(map) - word_gap;
1568 if (n > vec->iov_len - vec_seek)
1569 n = vec->iov_len - vec_seek;
1570 if (n > len)
1571 n = len;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001572
Nicolas Pitree102d542005-08-06 05:46:59 +01001573 if (!word_gap && len < map_bankwidth(map))
1574 datum = map_word_ff(map);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001575
Nicolas Pitree102d542005-08-06 05:46:59 +01001576 datum = map_word_load_partial(map, datum,
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001577 vec->iov_base + vec_seek,
Nicolas Pitree102d542005-08-06 05:46:59 +01001578 word_gap, n);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001579
Nicolas Pitree102d542005-08-06 05:46:59 +01001580 len -= n;
1581 word_gap += n;
1582 if (!len || word_gap == map_bankwidth(map)) {
1583 map_write(map, datum, adr);
1584 adr += map_bankwidth(map);
1585 word_gap = 0;
1586 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001587
Nicolas Pitree102d542005-08-06 05:46:59 +01001588 vec_seek += n;
1589 if (vec_seek == vec->iov_len) {
1590 vec++;
1591 vec_seek = 0;
1592 }
1593 } while (len);
1594 *pvec = vec;
1595 *pvec_seek = vec_seek;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001596
1597 /* GO GO GO */
1598 map_write(map, CMD(0xd0), cmd_adr);
1599 chip->state = FL_WRITING;
1600
Nicolas Pitrec1724712006-03-30 15:52:41 +01001601 ret = INVAL_CACHE_AND_WAIT(map, chip, cmd_adr,
1602 adr, len,
Alexey Korolev46a16522006-06-28 19:22:07 +01001603 chip->buffer_write_time);
Nicolas Pitrec1724712006-03-30 15:52:41 +01001604 if (ret) {
1605 map_write(map, CMD(0x70), cmd_adr);
1606 chip->state = FL_STATUS;
1607 xip_enable(map, chip, cmd_adr);
1608 printk(KERN_ERR "%s: buffer write error (status timeout)\n", map->name);
1609 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001610 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001611
Nicolas Pitre48436532005-08-06 05:16:52 +01001612 /* check for errors */
Nicolas Pitrec1724712006-03-30 15:52:41 +01001613 status = map_read(map, cmd_adr);
Nicolas Pitre48436532005-08-06 05:16:52 +01001614 if (map_word_bitsset(map, status, CMD(0x1a))) {
1615 unsigned long chipstatus = MERGESTATUS(status);
1616
1617 /* reset status */
Linus Torvalds1da177e2005-04-16 15:20:36 -07001618 map_write(map, CMD(0x50), cmd_adr);
Nicolas Pitre48436532005-08-06 05:16:52 +01001619 map_write(map, CMD(0x70), cmd_adr);
1620 xip_enable(map, chip, cmd_adr);
1621
1622 if (chipstatus & 0x02) {
1623 ret = -EROFS;
1624 } else if (chipstatus & 0x08) {
1625 printk(KERN_ERR "%s: buffer write error (bad VPP)\n", map->name);
1626 ret = -EIO;
1627 } else {
1628 printk(KERN_ERR "%s: buffer write error (status 0x%lx)\n", map->name, chipstatus);
1629 ret = -EINVAL;
1630 }
1631
1632 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001633 }
1634
1635 xip_enable(map, chip, cmd_adr);
1636 out: put_chip(map, chip, cmd_adr);
1637 spin_unlock(chip->mutex);
1638 return ret;
1639}
1640
Nicolas Pitree102d542005-08-06 05:46:59 +01001641static int cfi_intelext_writev (struct mtd_info *mtd, const struct kvec *vecs,
1642 unsigned long count, loff_t to, size_t *retlen)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001643{
1644 struct map_info *map = mtd->priv;
1645 struct cfi_private *cfi = map->fldrv_priv;
1646 int wbufsize = cfi_interleave(cfi) << cfi->cfiq->MaxBufWriteSize;
1647 int ret = 0;
1648 int chipnum;
Nicolas Pitree102d542005-08-06 05:46:59 +01001649 unsigned long ofs, vec_seek, i;
1650 size_t len = 0;
1651
1652 for (i = 0; i < count; i++)
1653 len += vecs[i].iov_len;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001654
1655 *retlen = 0;
1656 if (!len)
1657 return 0;
1658
1659 chipnum = to >> cfi->chipshift;
Nicolas Pitree102d542005-08-06 05:46:59 +01001660 ofs = to - (chipnum << cfi->chipshift);
1661 vec_seek = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001662
Nicolas Pitree102d542005-08-06 05:46:59 +01001663 do {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001664 /* We must not cross write block boundaries */
1665 int size = wbufsize - (ofs & (wbufsize-1));
1666
1667 if (size > len)
1668 size = len;
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001669 ret = do_write_buffer(map, &cfi->chips[chipnum],
Nicolas Pitree102d542005-08-06 05:46:59 +01001670 ofs, &vecs, &vec_seek, size);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001671 if (ret)
1672 return ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001673
1674 ofs += size;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001675 (*retlen) += size;
1676 len -= size;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001677
1678 if (ofs >> cfi->chipshift) {
1679 chipnum ++;
1680 ofs = 0;
1681 if (chipnum == cfi->numchips)
1682 return 0;
1683 }
Josh Boyerdf54b52c2005-12-06 17:28:19 +00001684
1685 /* Be nice and reschedule with the chip in a usable state for other
1686 processes. */
1687 cond_resched();
1688
Nicolas Pitree102d542005-08-06 05:46:59 +01001689 } while (len);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001690
Linus Torvalds1da177e2005-04-16 15:20:36 -07001691 return 0;
1692}
1693
Nicolas Pitree102d542005-08-06 05:46:59 +01001694static int cfi_intelext_write_buffers (struct mtd_info *mtd, loff_t to,
1695 size_t len, size_t *retlen, const u_char *buf)
1696{
1697 struct kvec vec;
1698
1699 vec.iov_base = (void *) buf;
1700 vec.iov_len = len;
1701
1702 return cfi_intelext_writev(mtd, &vec, 1, to, retlen);
1703}
1704
Linus Torvalds1da177e2005-04-16 15:20:36 -07001705static int __xipram do_erase_oneblock(struct map_info *map, struct flchip *chip,
1706 unsigned long adr, int len, void *thunk)
1707{
1708 struct cfi_private *cfi = map->fldrv_priv;
Nicolas Pitrec1724712006-03-30 15:52:41 +01001709 map_word status;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001710 int retries = 3;
Nicolas Pitrec1724712006-03-30 15:52:41 +01001711 int ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001712
1713 adr += chip->start;
1714
Linus Torvalds1da177e2005-04-16 15:20:36 -07001715 retry:
1716 spin_lock(chip->mutex);
1717 ret = get_chip(map, chip, adr, FL_ERASING);
1718 if (ret) {
1719 spin_unlock(chip->mutex);
1720 return ret;
1721 }
1722
1723 XIP_INVAL_CACHED_RANGE(map, adr, len);
1724 ENABLE_VPP(map);
1725 xip_disable(map, chip, adr);
1726
1727 /* Clear the status register first */
1728 map_write(map, CMD(0x50), adr);
1729
1730 /* Now erase */
1731 map_write(map, CMD(0x20), adr);
1732 map_write(map, CMD(0xD0), adr);
1733 chip->state = FL_ERASING;
1734 chip->erase_suspended = 0;
1735
Nicolas Pitrec1724712006-03-30 15:52:41 +01001736 ret = INVAL_CACHE_AND_WAIT(map, chip, adr,
1737 adr, len,
Alexey Korolev46a16522006-06-28 19:22:07 +01001738 chip->erase_time);
Nicolas Pitrec1724712006-03-30 15:52:41 +01001739 if (ret) {
1740 map_write(map, CMD(0x70), adr);
1741 chip->state = FL_STATUS;
1742 xip_enable(map, chip, adr);
1743 printk(KERN_ERR "%s: block erase error: (status timeout)\n", map->name);
1744 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001745 }
1746
1747 /* We've broken this before. It doesn't hurt to be safe */
1748 map_write(map, CMD(0x70), adr);
1749 chip->state = FL_STATUS;
1750 status = map_read(map, adr);
1751
Nicolas Pitre48436532005-08-06 05:16:52 +01001752 /* check for errors */
Linus Torvalds1da177e2005-04-16 15:20:36 -07001753 if (map_word_bitsset(map, status, CMD(0x3a))) {
Nicolas Pitre48436532005-08-06 05:16:52 +01001754 unsigned long chipstatus = MERGESTATUS(status);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001755
1756 /* Reset the error bits */
1757 map_write(map, CMD(0x50), adr);
1758 map_write(map, CMD(0x70), adr);
1759 xip_enable(map, chip, adr);
1760
Linus Torvalds1da177e2005-04-16 15:20:36 -07001761 if ((chipstatus & 0x30) == 0x30) {
Nicolas Pitre48436532005-08-06 05:16:52 +01001762 printk(KERN_ERR "%s: block erase error: (bad command sequence, status 0x%lx)\n", map->name, chipstatus);
1763 ret = -EINVAL;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001764 } else if (chipstatus & 0x02) {
1765 /* Protection bit set */
1766 ret = -EROFS;
1767 } else if (chipstatus & 0x8) {
1768 /* Voltage */
Nicolas Pitre48436532005-08-06 05:16:52 +01001769 printk(KERN_ERR "%s: block erase error: (bad VPP)\n", map->name);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001770 ret = -EIO;
Nicolas Pitre48436532005-08-06 05:16:52 +01001771 } else if (chipstatus & 0x20 && retries--) {
1772 printk(KERN_DEBUG "block erase failed at 0x%08lx: status 0x%lx. Retrying...\n", adr, chipstatus);
Nicolas Pitre48436532005-08-06 05:16:52 +01001773 put_chip(map, chip, adr);
1774 spin_unlock(chip->mutex);
1775 goto retry;
1776 } else {
1777 printk(KERN_ERR "%s: block erase failed at 0x%08lx (status 0x%lx)\n", map->name, adr, chipstatus);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001778 ret = -EIO;
1779 }
Nicolas Pitre48436532005-08-06 05:16:52 +01001780
1781 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001782 }
1783
Nicolas Pitre48436532005-08-06 05:16:52 +01001784 xip_enable(map, chip, adr);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001785 out: put_chip(map, chip, adr);
1786 spin_unlock(chip->mutex);
1787 return ret;
1788}
1789
Ben Dooks029a9eb2007-05-28 20:11:37 +01001790static int cfi_intelext_erase_varsize(struct mtd_info *mtd, struct erase_info *instr)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001791{
1792 unsigned long ofs, len;
1793 int ret;
1794
1795 ofs = instr->addr;
1796 len = instr->len;
1797
1798 ret = cfi_varsize_frob(mtd, do_erase_oneblock, ofs, len, NULL);
1799 if (ret)
1800 return ret;
1801
1802 instr->state = MTD_ERASE_DONE;
1803 mtd_erase_callback(instr);
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001804
Linus Torvalds1da177e2005-04-16 15:20:36 -07001805 return 0;
1806}
1807
1808static void cfi_intelext_sync (struct mtd_info *mtd)
1809{
1810 struct map_info *map = mtd->priv;
1811 struct cfi_private *cfi = map->fldrv_priv;
1812 int i;
1813 struct flchip *chip;
1814 int ret = 0;
1815
1816 for (i=0; !ret && i<cfi->numchips; i++) {
1817 chip = &cfi->chips[i];
1818
1819 spin_lock(chip->mutex);
1820 ret = get_chip(map, chip, chip->start, FL_SYNCING);
1821
1822 if (!ret) {
1823 chip->oldstate = chip->state;
1824 chip->state = FL_SYNCING;
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001825 /* No need to wake_up() on this state change -
Linus Torvalds1da177e2005-04-16 15:20:36 -07001826 * as the whole point is that nobody can do anything
1827 * with the chip now anyway.
1828 */
1829 }
1830 spin_unlock(chip->mutex);
1831 }
1832
1833 /* Unlock the chips again */
1834
1835 for (i--; i >=0; i--) {
1836 chip = &cfi->chips[i];
1837
1838 spin_lock(chip->mutex);
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001839
Linus Torvalds1da177e2005-04-16 15:20:36 -07001840 if (chip->state == FL_SYNCING) {
1841 chip->state = chip->oldstate;
Nicolas Pitre09c79332005-03-16 22:41:09 +00001842 chip->oldstate = FL_READY;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001843 wake_up(&chip->wq);
1844 }
1845 spin_unlock(chip->mutex);
1846 }
1847}
1848
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -08001849static int __xipram do_getlockstatus_oneblock(struct map_info *map,
Linus Torvalds1da177e2005-04-16 15:20:36 -07001850 struct flchip *chip,
1851 unsigned long adr,
1852 int len, void *thunk)
1853{
1854 struct cfi_private *cfi = map->fldrv_priv;
1855 int status, ofs_factor = cfi->interleave * cfi->device_type;
1856
Todd Poynorc25bb1f2005-04-27 21:01:52 +01001857 adr += chip->start;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001858 xip_disable(map, chip, adr+(2*ofs_factor));
Todd Poynorc25bb1f2005-04-27 21:01:52 +01001859 map_write(map, CMD(0x90), adr+(2*ofs_factor));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001860 chip->state = FL_JEDEC_QUERY;
1861 status = cfi_read_query(map, adr+(2*ofs_factor));
1862 xip_enable(map, chip, 0);
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -08001863 return status;
1864}
1865
1866#ifdef DEBUG_LOCK_BITS
1867static int __xipram do_printlockstatus_oneblock(struct map_info *map,
1868 struct flchip *chip,
1869 unsigned long adr,
1870 int len, void *thunk)
1871{
Linus Torvalds1da177e2005-04-16 15:20:36 -07001872 printk(KERN_DEBUG "block status register for 0x%08lx is %x\n",
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -08001873 adr, do_getlockstatus_oneblock(map, chip, adr, len, thunk));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001874 return 0;
1875}
1876#endif
1877
1878#define DO_XXLOCK_ONEBLOCK_LOCK ((void *) 1)
1879#define DO_XXLOCK_ONEBLOCK_UNLOCK ((void *) 2)
1880
1881static int __xipram do_xxlock_oneblock(struct map_info *map, struct flchip *chip,
1882 unsigned long adr, int len, void *thunk)
1883{
1884 struct cfi_private *cfi = map->fldrv_priv;
Todd Poynor9a6e73e2005-03-29 23:06:40 +01001885 struct cfi_pri_intelext *extp = cfi->cmdset_priv;
Nicolas Pitrec1724712006-03-30 15:52:41 +01001886 int udelay;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001887 int ret;
1888
1889 adr += chip->start;
1890
Linus Torvalds1da177e2005-04-16 15:20:36 -07001891 spin_lock(chip->mutex);
1892 ret = get_chip(map, chip, adr, FL_LOCKING);
1893 if (ret) {
1894 spin_unlock(chip->mutex);
1895 return ret;
1896 }
1897
1898 ENABLE_VPP(map);
1899 xip_disable(map, chip, adr);
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001900
Linus Torvalds1da177e2005-04-16 15:20:36 -07001901 map_write(map, CMD(0x60), adr);
1902 if (thunk == DO_XXLOCK_ONEBLOCK_LOCK) {
1903 map_write(map, CMD(0x01), adr);
1904 chip->state = FL_LOCKING;
1905 } else if (thunk == DO_XXLOCK_ONEBLOCK_UNLOCK) {
1906 map_write(map, CMD(0xD0), adr);
1907 chip->state = FL_UNLOCKING;
1908 } else
1909 BUG();
1910
Todd Poynor9a6e73e2005-03-29 23:06:40 +01001911 /*
1912 * If Instant Individual Block Locking supported then no need
1913 * to delay.
1914 */
Nicolas Pitrec1724712006-03-30 15:52:41 +01001915 udelay = (!extp || !(extp->FeatureSupport & (1 << 5))) ? 1000000/HZ : 0;
Todd Poynor9a6e73e2005-03-29 23:06:40 +01001916
Nicolas Pitrec1724712006-03-30 15:52:41 +01001917 ret = WAIT_TIMEOUT(map, chip, adr, udelay);
1918 if (ret) {
1919 map_write(map, CMD(0x70), adr);
1920 chip->state = FL_STATUS;
1921 xip_enable(map, chip, adr);
1922 printk(KERN_ERR "%s: block unlock error: (status timeout)\n", map->name);
1923 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001924 }
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001925
Linus Torvalds1da177e2005-04-16 15:20:36 -07001926 xip_enable(map, chip, adr);
Nicolas Pitrec1724712006-03-30 15:52:41 +01001927out: put_chip(map, chip, adr);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001928 spin_unlock(chip->mutex);
Nicolas Pitrec1724712006-03-30 15:52:41 +01001929 return ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001930}
1931
1932static int cfi_intelext_lock(struct mtd_info *mtd, loff_t ofs, size_t len)
1933{
1934 int ret;
1935
1936#ifdef DEBUG_LOCK_BITS
1937 printk(KERN_DEBUG "%s: lock status before, ofs=0x%08llx, len=0x%08X\n",
1938 __FUNCTION__, ofs, len);
1939 cfi_varsize_frob(mtd, do_printlockstatus_oneblock,
Randy Dunlap1da1caf2007-06-28 23:00:09 +01001940 ofs, len, NULL);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001941#endif
1942
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001943 ret = cfi_varsize_frob(mtd, do_xxlock_oneblock,
Linus Torvalds1da177e2005-04-16 15:20:36 -07001944 ofs, len, DO_XXLOCK_ONEBLOCK_LOCK);
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001945
Linus Torvalds1da177e2005-04-16 15:20:36 -07001946#ifdef DEBUG_LOCK_BITS
1947 printk(KERN_DEBUG "%s: lock status after, ret=%d\n",
1948 __FUNCTION__, ret);
1949 cfi_varsize_frob(mtd, do_printlockstatus_oneblock,
Randy Dunlap1da1caf2007-06-28 23:00:09 +01001950 ofs, len, NULL);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001951#endif
1952
1953 return ret;
1954}
1955
1956static int cfi_intelext_unlock(struct mtd_info *mtd, loff_t ofs, size_t len)
1957{
1958 int ret;
1959
1960#ifdef DEBUG_LOCK_BITS
1961 printk(KERN_DEBUG "%s: lock status before, ofs=0x%08llx, len=0x%08X\n",
1962 __FUNCTION__, ofs, len);
1963 cfi_varsize_frob(mtd, do_printlockstatus_oneblock,
Randy Dunlap1da1caf2007-06-28 23:00:09 +01001964 ofs, len, NULL);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001965#endif
1966
1967 ret = cfi_varsize_frob(mtd, do_xxlock_oneblock,
1968 ofs, len, DO_XXLOCK_ONEBLOCK_UNLOCK);
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001969
Linus Torvalds1da177e2005-04-16 15:20:36 -07001970#ifdef DEBUG_LOCK_BITS
1971 printk(KERN_DEBUG "%s: lock status after, ret=%d\n",
1972 __FUNCTION__, ret);
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001973 cfi_varsize_frob(mtd, do_printlockstatus_oneblock,
Randy Dunlap1da1caf2007-06-28 23:00:09 +01001974 ofs, len, NULL);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001975#endif
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001976
Linus Torvalds1da177e2005-04-16 15:20:36 -07001977 return ret;
1978}
1979
Nicolas Pitref77814d2005-02-08 17:11:19 +00001980#ifdef CONFIG_MTD_OTP
1981
Thomas Gleixner1f948b42005-11-07 11:15:37 +00001982typedef int (*otp_op_t)(struct map_info *map, struct flchip *chip,
Nicolas Pitref77814d2005-02-08 17:11:19 +00001983 u_long data_offset, u_char *buf, u_int size,
1984 u_long prot_offset, u_int groupno, u_int groupsize);
1985
1986static int __xipram
1987do_otp_read(struct map_info *map, struct flchip *chip, u_long offset,
1988 u_char *buf, u_int size, u_long prot, u_int grpno, u_int grpsz)
1989{
1990 struct cfi_private *cfi = map->fldrv_priv;
1991 int ret;
1992
1993 spin_lock(chip->mutex);
1994 ret = get_chip(map, chip, chip->start, FL_JEDEC_QUERY);
1995 if (ret) {
1996 spin_unlock(chip->mutex);
1997 return ret;
1998 }
1999
2000 /* let's ensure we're not reading back cached data from array mode */
Nicolas Pitre6da70122005-05-19 18:05:47 +01002001 INVALIDATE_CACHED_RANGE(map, chip->start + offset, size);
Nicolas Pitref77814d2005-02-08 17:11:19 +00002002
2003 xip_disable(map, chip, chip->start);
2004 if (chip->state != FL_JEDEC_QUERY) {
2005 map_write(map, CMD(0x90), chip->start);
2006 chip->state = FL_JEDEC_QUERY;
2007 }
2008 map_copy_from(map, buf, chip->start + offset, size);
2009 xip_enable(map, chip, chip->start);
2010
2011 /* then ensure we don't keep OTP data in the cache */
Nicolas Pitre6da70122005-05-19 18:05:47 +01002012 INVALIDATE_CACHED_RANGE(map, chip->start + offset, size);
Nicolas Pitref77814d2005-02-08 17:11:19 +00002013
2014 put_chip(map, chip, chip->start);
2015 spin_unlock(chip->mutex);
2016 return 0;
2017}
2018
2019static int
2020do_otp_write(struct map_info *map, struct flchip *chip, u_long offset,
2021 u_char *buf, u_int size, u_long prot, u_int grpno, u_int grpsz)
2022{
2023 int ret;
2024
2025 while (size) {
2026 unsigned long bus_ofs = offset & ~(map_bankwidth(map)-1);
2027 int gap = offset - bus_ofs;
2028 int n = min_t(int, size, map_bankwidth(map)-gap);
2029 map_word datum = map_word_ff(map);
2030
2031 datum = map_word_load_partial(map, datum, buf, gap, n);
2032 ret = do_write_oneword(map, chip, bus_ofs, datum, FL_OTP_WRITE);
Thomas Gleixner1f948b42005-11-07 11:15:37 +00002033 if (ret)
Nicolas Pitref77814d2005-02-08 17:11:19 +00002034 return ret;
2035
2036 offset += n;
2037 buf += n;
2038 size -= n;
2039 }
2040
2041 return 0;
2042}
2043
2044static int
2045do_otp_lock(struct map_info *map, struct flchip *chip, u_long offset,
2046 u_char *buf, u_int size, u_long prot, u_int grpno, u_int grpsz)
2047{
2048 struct cfi_private *cfi = map->fldrv_priv;
2049 map_word datum;
2050
2051 /* make sure area matches group boundaries */
Nicolas Pitre332d71f2005-02-17 20:35:04 +00002052 if (size != grpsz)
Nicolas Pitref77814d2005-02-08 17:11:19 +00002053 return -EXDEV;
2054
2055 datum = map_word_ff(map);
2056 datum = map_word_clr(map, datum, CMD(1 << grpno));
2057 return do_write_oneword(map, chip, prot, datum, FL_OTP_WRITE);
2058}
2059
2060static int cfi_intelext_otp_walk(struct mtd_info *mtd, loff_t from, size_t len,
2061 size_t *retlen, u_char *buf,
2062 otp_op_t action, int user_regs)
2063{
2064 struct map_info *map = mtd->priv;
2065 struct cfi_private *cfi = map->fldrv_priv;
2066 struct cfi_pri_intelext *extp = cfi->cmdset_priv;
2067 struct flchip *chip;
2068 struct cfi_intelext_otpinfo *otp;
2069 u_long devsize, reg_prot_offset, data_offset;
2070 u_int chip_num, chip_step, field, reg_fact_size, reg_user_size;
2071 u_int groups, groupno, groupsize, reg_fact_groups, reg_user_groups;
2072 int ret;
2073
2074 *retlen = 0;
2075
2076 /* Check that we actually have some OTP registers */
2077 if (!extp || !(extp->FeatureSupport & 64) || !extp->NumProtectionFields)
2078 return -ENODATA;
2079
2080 /* we need real chips here not virtual ones */
2081 devsize = (1 << cfi->cfiq->DevSize) * cfi->interleave;
2082 chip_step = devsize >> cfi->chipshift;
Nicolas Pitredce2b4d2005-04-01 17:36:29 +01002083 chip_num = 0;
Nicolas Pitref77814d2005-02-08 17:11:19 +00002084
Nicolas Pitredce2b4d2005-04-01 17:36:29 +01002085 /* Some chips have OTP located in the _top_ partition only.
2086 For example: Intel 28F256L18T (T means top-parameter device) */
2087 if (cfi->mfr == MANUFACTURER_INTEL) {
2088 switch (cfi->id) {
2089 case 0x880b:
2090 case 0x880c:
2091 case 0x880d:
2092 chip_num = chip_step - 1;
2093 }
2094 }
2095
2096 for ( ; chip_num < cfi->numchips; chip_num += chip_step) {
Nicolas Pitref77814d2005-02-08 17:11:19 +00002097 chip = &cfi->chips[chip_num];
2098 otp = (struct cfi_intelext_otpinfo *)&extp->extra[0];
2099
2100 /* first OTP region */
2101 field = 0;
2102 reg_prot_offset = extp->ProtRegAddr;
2103 reg_fact_groups = 1;
2104 reg_fact_size = 1 << extp->FactProtRegSize;
2105 reg_user_groups = 1;
2106 reg_user_size = 1 << extp->UserProtRegSize;
2107
2108 while (len > 0) {
2109 /* flash geometry fixup */
2110 data_offset = reg_prot_offset + 1;
2111 data_offset *= cfi->interleave * cfi->device_type;
2112 reg_prot_offset *= cfi->interleave * cfi->device_type;
2113 reg_fact_size *= cfi->interleave;
2114 reg_user_size *= cfi->interleave;
2115
2116 if (user_regs) {
2117 groups = reg_user_groups;
2118 groupsize = reg_user_size;
2119 /* skip over factory reg area */
2120 groupno = reg_fact_groups;
2121 data_offset += reg_fact_groups * reg_fact_size;
2122 } else {
2123 groups = reg_fact_groups;
2124 groupsize = reg_fact_size;
2125 groupno = 0;
2126 }
2127
Nicolas Pitre332d71f2005-02-17 20:35:04 +00002128 while (len > 0 && groups > 0) {
Nicolas Pitref77814d2005-02-08 17:11:19 +00002129 if (!action) {
2130 /*
2131 * Special case: if action is NULL
2132 * we fill buf with otp_info records.
2133 */
2134 struct otp_info *otpinfo;
2135 map_word lockword;
2136 len -= sizeof(struct otp_info);
2137 if (len <= 0)
2138 return -ENOSPC;
2139 ret = do_otp_read(map, chip,
2140 reg_prot_offset,
2141 (u_char *)&lockword,
2142 map_bankwidth(map),
2143 0, 0, 0);
2144 if (ret)
2145 return ret;
2146 otpinfo = (struct otp_info *)buf;
2147 otpinfo->start = from;
2148 otpinfo->length = groupsize;
2149 otpinfo->locked =
2150 !map_word_bitsset(map, lockword,
2151 CMD(1 << groupno));
2152 from += groupsize;
2153 buf += sizeof(*otpinfo);
2154 *retlen += sizeof(*otpinfo);
2155 } else if (from >= groupsize) {
2156 from -= groupsize;
Nicolas Pitre332d71f2005-02-17 20:35:04 +00002157 data_offset += groupsize;
Nicolas Pitref77814d2005-02-08 17:11:19 +00002158 } else {
2159 int size = groupsize;
2160 data_offset += from;
2161 size -= from;
2162 from = 0;
2163 if (size > len)
2164 size = len;
2165 ret = action(map, chip, data_offset,
2166 buf, size, reg_prot_offset,
2167 groupno, groupsize);
2168 if (ret < 0)
2169 return ret;
2170 buf += size;
2171 len -= size;
2172 *retlen += size;
Nicolas Pitre332d71f2005-02-17 20:35:04 +00002173 data_offset += size;
Nicolas Pitref77814d2005-02-08 17:11:19 +00002174 }
2175 groupno++;
2176 groups--;
2177 }
2178
2179 /* next OTP region */
2180 if (++field == extp->NumProtectionFields)
2181 break;
2182 reg_prot_offset = otp->ProtRegAddr;
2183 reg_fact_groups = otp->FactGroups;
2184 reg_fact_size = 1 << otp->FactProtRegSize;
2185 reg_user_groups = otp->UserGroups;
2186 reg_user_size = 1 << otp->UserProtRegSize;
2187 otp++;
2188 }
2189 }
2190
2191 return 0;
2192}
2193
2194static int cfi_intelext_read_fact_prot_reg(struct mtd_info *mtd, loff_t from,
2195 size_t len, size_t *retlen,
2196 u_char *buf)
2197{
2198 return cfi_intelext_otp_walk(mtd, from, len, retlen,
2199 buf, do_otp_read, 0);
2200}
2201
2202static int cfi_intelext_read_user_prot_reg(struct mtd_info *mtd, loff_t from,
2203 size_t len, size_t *retlen,
2204 u_char *buf)
2205{
2206 return cfi_intelext_otp_walk(mtd, from, len, retlen,
2207 buf, do_otp_read, 1);
2208}
2209
2210static int cfi_intelext_write_user_prot_reg(struct mtd_info *mtd, loff_t from,
2211 size_t len, size_t *retlen,
2212 u_char *buf)
2213{
2214 return cfi_intelext_otp_walk(mtd, from, len, retlen,
2215 buf, do_otp_write, 1);
2216}
2217
2218static int cfi_intelext_lock_user_prot_reg(struct mtd_info *mtd,
2219 loff_t from, size_t len)
2220{
2221 size_t retlen;
2222 return cfi_intelext_otp_walk(mtd, from, len, &retlen,
2223 NULL, do_otp_lock, 1);
2224}
2225
Thomas Gleixner1f948b42005-11-07 11:15:37 +00002226static int cfi_intelext_get_fact_prot_info(struct mtd_info *mtd,
Nicolas Pitref77814d2005-02-08 17:11:19 +00002227 struct otp_info *buf, size_t len)
2228{
2229 size_t retlen;
2230 int ret;
2231
2232 ret = cfi_intelext_otp_walk(mtd, 0, len, &retlen, (u_char *)buf, NULL, 0);
2233 return ret ? : retlen;
2234}
2235
2236static int cfi_intelext_get_user_prot_info(struct mtd_info *mtd,
2237 struct otp_info *buf, size_t len)
2238{
2239 size_t retlen;
2240 int ret;
2241
2242 ret = cfi_intelext_otp_walk(mtd, 0, len, &retlen, (u_char *)buf, NULL, 1);
2243 return ret ? : retlen;
2244}
2245
2246#endif
2247
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -08002248static void cfi_intelext_save_locks(struct mtd_info *mtd)
2249{
2250 struct mtd_erase_region_info *region;
2251 int block, status, i;
2252 unsigned long adr;
2253 size_t len;
2254
2255 for (i = 0; i < mtd->numeraseregions; i++) {
2256 region = &mtd->eraseregions[i];
2257 if (!region->lockmap)
2258 continue;
2259
2260 for (block = 0; block < region->numblocks; block++){
2261 len = region->erasesize;
2262 adr = region->offset + block * len;
2263
2264 status = cfi_varsize_frob(mtd,
Ben Dooks029a9eb2007-05-28 20:11:37 +01002265 do_getlockstatus_oneblock, adr, len, NULL);
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -08002266 if (status)
2267 set_bit(block, region->lockmap);
2268 else
2269 clear_bit(block, region->lockmap);
2270 }
2271 }
2272}
2273
Linus Torvalds1da177e2005-04-16 15:20:36 -07002274static int cfi_intelext_suspend(struct mtd_info *mtd)
2275{
2276 struct map_info *map = mtd->priv;
2277 struct cfi_private *cfi = map->fldrv_priv;
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -08002278 struct cfi_pri_intelext *extp = cfi->cmdset_priv;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002279 int i;
2280 struct flchip *chip;
2281 int ret = 0;
2282
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -08002283 if ((mtd->flags & MTD_STUPID_LOCK)
2284 && extp && (extp->FeatureSupport & (1 << 5)))
2285 cfi_intelext_save_locks(mtd);
2286
Linus Torvalds1da177e2005-04-16 15:20:36 -07002287 for (i=0; !ret && i<cfi->numchips; i++) {
2288 chip = &cfi->chips[i];
2289
2290 spin_lock(chip->mutex);
2291
2292 switch (chip->state) {
2293 case FL_READY:
2294 case FL_STATUS:
2295 case FL_CFI_QUERY:
2296 case FL_JEDEC_QUERY:
2297 if (chip->oldstate == FL_READY) {
David Andersa86aaa62006-10-19 19:33:19 +03002298 /* place the chip in a known state before suspend */
2299 map_write(map, CMD(0xFF), cfi->chips[i].start);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002300 chip->oldstate = chip->state;
2301 chip->state = FL_PM_SUSPENDED;
Thomas Gleixner1f948b42005-11-07 11:15:37 +00002302 /* No need to wake_up() on this state change -
Linus Torvalds1da177e2005-04-16 15:20:36 -07002303 * as the whole point is that nobody can do anything
2304 * with the chip now anyway.
2305 */
2306 } else {
2307 /* There seems to be an operation pending. We must wait for it. */
2308 printk(KERN_NOTICE "Flash device refused suspend due to pending operation (oldstate %d)\n", chip->oldstate);
2309 ret = -EAGAIN;
2310 }
2311 break;
2312 default:
2313 /* Should we actually wait? Once upon a time these routines weren't
2314 allowed to. Or should we return -EAGAIN, because the upper layers
2315 ought to have already shut down anything which was using the device
2316 anyway? The latter for now. */
2317 printk(KERN_NOTICE "Flash device refused suspend due to active operation (state %d)\n", chip->oldstate);
2318 ret = -EAGAIN;
2319 case FL_PM_SUSPENDED:
2320 break;
2321 }
2322 spin_unlock(chip->mutex);
2323 }
2324
2325 /* Unlock the chips again */
2326
2327 if (ret) {
2328 for (i--; i >=0; i--) {
2329 chip = &cfi->chips[i];
Thomas Gleixner1f948b42005-11-07 11:15:37 +00002330
Linus Torvalds1da177e2005-04-16 15:20:36 -07002331 spin_lock(chip->mutex);
Thomas Gleixner1f948b42005-11-07 11:15:37 +00002332
Linus Torvalds1da177e2005-04-16 15:20:36 -07002333 if (chip->state == FL_PM_SUSPENDED) {
2334 /* No need to force it into a known state here,
2335 because we're returning failure, and it didn't
2336 get power cycled */
2337 chip->state = chip->oldstate;
2338 chip->oldstate = FL_READY;
2339 wake_up(&chip->wq);
2340 }
2341 spin_unlock(chip->mutex);
2342 }
Thomas Gleixner1f948b42005-11-07 11:15:37 +00002343 }
2344
Linus Torvalds1da177e2005-04-16 15:20:36 -07002345 return ret;
2346}
2347
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -08002348static void cfi_intelext_restore_locks(struct mtd_info *mtd)
2349{
2350 struct mtd_erase_region_info *region;
2351 int block, i;
2352 unsigned long adr;
2353 size_t len;
2354
2355 for (i = 0; i < mtd->numeraseregions; i++) {
2356 region = &mtd->eraseregions[i];
2357 if (!region->lockmap)
2358 continue;
2359
2360 for (block = 0; block < region->numblocks; block++) {
2361 len = region->erasesize;
2362 adr = region->offset + block * len;
2363
2364 if (!test_bit(block, region->lockmap))
2365 cfi_intelext_unlock(mtd, adr, len);
2366 }
2367 }
2368}
2369
Linus Torvalds1da177e2005-04-16 15:20:36 -07002370static void cfi_intelext_resume(struct mtd_info *mtd)
2371{
2372 struct map_info *map = mtd->priv;
2373 struct cfi_private *cfi = map->fldrv_priv;
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -08002374 struct cfi_pri_intelext *extp = cfi->cmdset_priv;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002375 int i;
2376 struct flchip *chip;
2377
2378 for (i=0; i<cfi->numchips; i++) {
Thomas Gleixner1f948b42005-11-07 11:15:37 +00002379
Linus Torvalds1da177e2005-04-16 15:20:36 -07002380 chip = &cfi->chips[i];
2381
2382 spin_lock(chip->mutex);
Thomas Gleixner1f948b42005-11-07 11:15:37 +00002383
Linus Torvalds1da177e2005-04-16 15:20:36 -07002384 /* Go to known state. Chip may have been power cycled */
2385 if (chip->state == FL_PM_SUSPENDED) {
2386 map_write(map, CMD(0xFF), cfi->chips[i].start);
2387 chip->oldstate = chip->state = FL_READY;
2388 wake_up(&chip->wq);
2389 }
2390
2391 spin_unlock(chip->mutex);
2392 }
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -08002393
2394 if ((mtd->flags & MTD_STUPID_LOCK)
2395 && extp && (extp->FeatureSupport & (1 << 5)))
2396 cfi_intelext_restore_locks(mtd);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002397}
2398
Nicolas Pitre963a6fb2005-04-01 02:59:56 +01002399static int cfi_intelext_reset(struct mtd_info *mtd)
2400{
2401 struct map_info *map = mtd->priv;
2402 struct cfi_private *cfi = map->fldrv_priv;
2403 int i, ret;
2404
2405 for (i=0; i < cfi->numchips; i++) {
2406 struct flchip *chip = &cfi->chips[i];
2407
2408 /* force the completion of any ongoing operation
Thomas Gleixner1f948b42005-11-07 11:15:37 +00002409 and switch to array mode so any bootloader in
Nicolas Pitre963a6fb2005-04-01 02:59:56 +01002410 flash is accessible for soft reboot. */
2411 spin_lock(chip->mutex);
2412 ret = get_chip(map, chip, chip->start, FL_SYNCING);
2413 if (!ret) {
2414 map_write(map, CMD(0xff), chip->start);
2415 chip->state = FL_READY;
2416 }
2417 spin_unlock(chip->mutex);
2418 }
2419
2420 return 0;
2421}
2422
2423static int cfi_intelext_reboot(struct notifier_block *nb, unsigned long val,
2424 void *v)
2425{
2426 struct mtd_info *mtd;
2427
2428 mtd = container_of(nb, struct mtd_info, reboot_notifier);
2429 cfi_intelext_reset(mtd);
2430 return NOTIFY_DONE;
2431}
2432
Linus Torvalds1da177e2005-04-16 15:20:36 -07002433static void cfi_intelext_destroy(struct mtd_info *mtd)
2434{
2435 struct map_info *map = mtd->priv;
2436 struct cfi_private *cfi = map->fldrv_priv;
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -08002437 struct mtd_erase_region_info *region;
2438 int i;
Nicolas Pitre963a6fb2005-04-01 02:59:56 +01002439 cfi_intelext_reset(mtd);
2440 unregister_reboot_notifier(&mtd->reboot_notifier);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002441 kfree(cfi->cmdset_priv);
2442 kfree(cfi->cfiq);
2443 kfree(cfi->chips[0].priv);
2444 kfree(cfi);
Rodolfo Giometti0ecbc812007-03-26 21:45:43 -08002445 for (i = 0; i < mtd->numeraseregions; i++) {
2446 region = &mtd->eraseregions[i];
2447 if (region->lockmap)
2448 kfree(region->lockmap);
2449 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002450 kfree(mtd->eraseregions);
2451}
2452
Linus Torvalds1da177e2005-04-16 15:20:36 -07002453MODULE_LICENSE("GPL");
2454MODULE_AUTHOR("David Woodhouse <dwmw2@infradead.org> et al.");
2455MODULE_DESCRIPTION("MTD chip driver for Intel/Sharp flash chips");
David Woodhousea15bdee2006-05-08 22:35:05 +01002456MODULE_ALIAS("cfi_cmdset_0003");
2457MODULE_ALIAS("cfi_cmdset_0200");